// Verilog netlist produced by program ldbanno, Version Diamond (64-bit) 3.14.0.75.2 // ldbanno -n Verilog -o NewExtIns_CPLD1_impl1_mapvo.vo -w -neg -gui -msgset /home/ly0kos/work/prj/New_CalBoard/2.FW/CPLD1/promote.xml NewExtIns_CPLD1_impl1_map.ncd // Netlist created on Tue May 26 15:47:46 2026 // Netlist written on Tue May 26 15:47:47 2026 // Design is for device LCMXO2-7000HC // Design is for package FPBGA484 // Design is for performance grade 4 `timescale 1 ns / 1 ps module RelayConTop ( i_sys_clk, i_rst_n, i_sclk, i_mosi, i_cs, o_miso, i_rready, i_wvalid, o_wready, o_err, o_con_done, o_DMM_EN, o_IO_RC1, o_RC_T27, o_RC_T28, o_RC_T29, o_RC_T30, o_RC_T31, o_RC_T32, o_RC_RLSel, o_RC_VSel, o_RC_ISel, o_RC_LOF, o_RC_LOS, o_PMU_OC_1, o_PMU_OC_2, o_PMU_OC_3, o_PMU_OC_4 ); input i_sys_clk, i_rst_n, i_sclk, i_mosi, i_cs, i_rready, i_wvalid; output o_miso, o_wready, o_err, o_con_done; output [18:0] o_DMM_EN; output o_IO_RC1, o_RC_T27, o_RC_T28, o_RC_T29, o_RC_T30, o_RC_T31, o_RC_T32; output [17:0] o_RC_RLSel; output o_RC_VSel, o_RC_ISel; output [1:0] o_RC_LOF; output [1:0] o_RC_LOS; output [31:0] o_PMU_OC_1; output [31:0] o_PMU_OC_2; output [31:0] o_PMU_OC_3; output [31:0] o_PMU_OC_4; wire i_rst_n_c, \CPLD_Con_1/RC_Tx_1_sqmuxa , \BUS_Con_1.cs_sync[0] , i_rst_n_c_i_set, i_sys_clk_c, \BUS_Con_1.cs_sync_rep0[1] , \CPLD_Con_1.err_flag_1_sqmuxa , \BUS_Con_1/N_244 , \BUS_Con_1/cs_sync[1] , \BUS_Con_1/bit_cnt[1] , \BUS_Con_1/bit_cnt[0] , \BUS_Con_1.sclk_sync[0] , \BUS_Con_1/sclk_sync[1] , \BUS_Con_1/bit_cnt_6[1] , \BUS_Con_1/bit_cnt_6[0] , \BUS_Con_1/bit_cnt_0_sqmuxa_1_i_a2_RNISVNVG , \BUS_Con_1/un1_bit_cnt_9_c2 , \BUS_Con_1/bit_cnt[3] , \BUS_Con_1/bit_cnt[2] , \BUS_Con_1/bit_cnt_6[3] , \BUS_Con_1/bit_cnt_6[2] , \BUS_Con_1/un1_bit_cnt_9_c4 , \BUS_Con_1/bit_cnt[5] , \BUS_Con_1/bit_cnt[4] , \BUS_Con_1/bit_cnt_6[5] , \BUS_Con_1/bit_cnt_6[4] , \BUS_Con_1/data_readyc_2_0 , \BUS_Con_1/data_readyc_3 , \BUS_Con_1/data_readyc , \BUS_Con_1/data_ready , \BUS_Con_1/tx_buffer[1] , \BUS_Con_1/miso_shift[0] , \BUS_Con_1/tx_buffer[0] , \BUS_Con_1/miso_shift_6[1] , \BUS_Con_1/miso_shift_6[0] , \BUS_Con_1/miso_shift_1_sqmuxa_i_0 , \BUS_Con_1/miso_shift[1] , \BUS_Con_1/tx_buffer[3] , \BUS_Con_1/miso_shift[2] , \BUS_Con_1/tx_buffer[2] , \BUS_Con_1/miso_shift_6[3] , \BUS_Con_1/miso_shift_6[2] , \BUS_Con_1/miso_shift[3] , \BUS_Con_1/tx_buffer[5] , \BUS_Con_1/miso_shift[4] , \BUS_Con_1/tx_buffer[4] , \BUS_Con_1/miso_shift_6[5] , \BUS_Con_1/miso_shift_6[4] , \BUS_Con_1/miso_shift[5] , \BUS_Con_1/tx_buffer[7] , \BUS_Con_1/miso_shift[6] , \BUS_Con_1/tx_buffer[6] , \BUS_Con_1/miso_shift_6[7] , \BUS_Con_1/miso_shift_6[6] , \BUS_Con_1/miso_shift[7] , \BUS_Con_1/tx_buffer[9] , \BUS_Con_1/miso_shift[8] , \BUS_Con_1/tx_buffer[8] , \BUS_Con_1/miso_shift_6[9] , \BUS_Con_1/miso_shift_6[8] , \BUS_Con_1/miso_shift[9] , \BUS_Con_1/tx_buffer[11] , \BUS_Con_1/miso_shift[10] , \BUS_Con_1/tx_buffer[10] , \BUS_Con_1/miso_shift_6[11] , \BUS_Con_1/miso_shift_6[10] , \BUS_Con_1/miso_shift[11] , \BUS_Con_1/tx_buffer[13] , \BUS_Con_1/miso_shift[12] , \BUS_Con_1/tx_buffer[12] , \BUS_Con_1/miso_shift_6[13] , \BUS_Con_1/miso_shift_6[12] , \BUS_Con_1/miso_shift[13] , \BUS_Con_1/tx_buffer[15] , \BUS_Con_1/miso_shift[14] , \BUS_Con_1/tx_buffer[14] , \BUS_Con_1/miso_shift_6[15] , \BUS_Con_1/miso_shift_6[14] , \BUS_Con_1/miso_shift[15] , \BUS_Con_1/tx_buffer[17] , \BUS_Con_1/miso_shift[16] , \BUS_Con_1/tx_buffer[16] , \BUS_Con_1/miso_shift_6[17] , \BUS_Con_1/miso_shift_6[16] , \BUS_Con_1/miso_shift[17] , \BUS_Con_1/tx_buffer[19] , \BUS_Con_1/miso_shift[18] , \BUS_Con_1/tx_buffer[18] , \BUS_Con_1/miso_shift_6[19] , \BUS_Con_1/miso_shift_6[18] , \BUS_Con_1/miso_shift[19] , \BUS_Con_1/tx_buffer[21] , \BUS_Con_1/miso_shift[20] , \BUS_Con_1/tx_buffer[20] , \BUS_Con_1/miso_shift_6[21] , \BUS_Con_1/miso_shift_6[20] , \BUS_Con_1/miso_shift[21] , \BUS_Con_1/tx_buffer[23] , \BUS_Con_1/miso_shift[22] , \BUS_Con_1/tx_buffer[22] , \BUS_Con_1/miso_shift_6[23] , \BUS_Con_1/miso_shift_6[22] , \BUS_Con_1/miso_shift[23] , \BUS_Con_1/miso_shift[24] , \BUS_Con_1/miso_shift_6[25] , \BUS_Con_1/miso_shift_6[24] , \BUS_Con_1/miso_shift[25] , \BUS_Con_1/miso_shift[26] , \BUS_Con_1/miso_shift_6[27] , \BUS_Con_1/miso_shift_6[26] , \BUS_Con_1/miso_shift[27] , \BUS_Con_1/miso_shift[28] , \BUS_Con_1/miso_shift_6[29] , \BUS_Con_1/miso_shift_6[28] , \BUS_Con_1/miso_shift[29] , \BUS_Con_1/miso_shift_6[30] , \BUS_Con_1/miso_shift[30] , \BUS_Con_1/N_249 , \BUS_Con_1/state[1] , \BUS_Con_1/state[0] , reg_busy, \BUS_Con_1/m3_i_o2 , \BUS_Con_1/state_nss[1] , \BUS_Con_1/state_nss[0] , \DC_Con4[0] , \DC_Con3[0] , \DC_Con2[0] , \DC_Con1[0] , \CPLD_Con_1/dc_t_2 , \BUS_Con_1.mosi_sync[0] , \CPLD_Con_1/dc_t , \CPLD_Con_1/CO0 , \BUS_Con_1/mosi_sync[1] , \CPLD_Con_1/N_6_0 , \CPLD_Con_1/N_18_c1 , \CPLD_Con_1/N_18_0_c1 , \CPLD_Con_1/N_20 , \CPLD_Con_1/N_19 , \CPLD_Con_1/en_t[1] , \CPLD_Con_1/en_t[2] , \freq1_relay[0] , \CPLD_Con_1/m2 , \CPLD_Con_1/SUM0 , \CPLD_Con_1/N_21 , \CPLD_Con_1/en_t[3] , \freq4_relay[0] , \freq3_relay[0] , \freq2_relay[0] , \CPLD_Con_1/freq_t_2 , \CPLD_Con_1/freq_t , \CPLD_Con_1.io_RC_2 , \w_data[8] , \CPLD_Reg_1/regtable[9]_1_sqmuxa , \CPLD_Reg_1.regtable[9]_fast[8] , \reg_addr[6] , \reg_addr[5] , \reg_addr[4] , \CPLD_Reg_1/N_1167 , con_exec, cmd_valid, \CPLD_Reg_1/state[0] , \CPLD_Reg_1/err_flag8 , \CPLD_Reg_1/N_812 , \CPLD_Reg_1/un10_0 , \CPLD_Reg_1/reg_err_flag , o_con_done_c, \CPLD_Reg_1/state[1] , \w_data[23] , \CPLD_Reg_1/regtable[1][23] , \CPLD_Reg_1/N_1057_i , \CPLD_Reg_1/un12_i , \CPLD_Reg_1/N_22 , \w_data[15] , \w_data[16] , \CPLD_Reg_1/regtable[9][16] , \CPLD_Reg_1/regtable[9][15] , \CPLD_Reg_1/N_25 , \CPLD_Reg_1/N_21 , \CPLD_Reg_1/state_ns[1] , \CPLD_Reg_1/state_ns[0] , \w_data[20] , \w_data[21] , \DC_Con4[21] , \DC_Con4[20] , \w_data[22] , \DC_Con4[23] , \DC_Con4[22] , \BUS_Con_1/err_flag_1_sqmuxa_0_a2_0_0 , \BUS_Con_1/N_241 , \BUS_Con_1/N_243_i , \BUS_Con_1/N_238_i , bus_err_flag, \BUS_Con_1/N_34_i_0 , \w_data[0] , \CPLD_Reg_1/regtable[1]_RNO[0] , \CPLD_Reg_1/un11_0 , con_rvalid, \CPLD_Con_1/RC_VISel41_0_a2_0_a3_RNILT4CU4 , \CPLD_Con_1/g0_2 , \CPLD_Con_1/err_flag_0_sqmuxa_0_0 , \CPLD_Con_1/err_flag25 , \CPLD_Con_1/un1_err_flag_0_sqmuxa , \CPLD_Con_1/g0_8_1_0 , \CPLD_Con_1/RC_Tx_0_sqmuxa , \CPLD_Con_1/un1_RC_Tx_0_sqmuxa_1 , \CPLD_Con_1/err_flag_RNO , cpld_err_flag, \o_PMU_OC_2_c[3] , \CPLD_Con_1/un1_exec_flag_3_0_0_RNISFCLD4 , \CPLD_Con_1/N_103 , \CPLD_Con_1.un1_exec_flag_3_i , \o_PMU_OC_2_c[1] , \CPLD_Con_1/PMU_OC_2_8[1] , \CPLD_Con_1/PMU_OC_2d_0[3] , \CPLD_Con_1/PMU_OC_2d_0[1] , \o_PMU_OC_2_c[7] , \CPLD_Con_1/N_64 , \o_PMU_OC_2_c[5] , \CPLD_Con_1/N_63 , \CPLD_Con_1/PMU_OC_2d_0[7] , \CPLD_Con_1/PMU_OC_2d_0[5] , \o_PMU_OC_3_c[3] , \CPLD_Con_1/un1_exec_flag_2_0_0_RNI3RHOG1 , \CPLD_Con_1/N_144 , \CPLD_Con_1.un1_exec_flag_2_i , \o_PMU_OC_3_c[1] , \CPLD_Con_1/PMU_OC_3_8[1] , \CPLD_Con_1/PMU_OC_3d_0[3] , \CPLD_Con_1/PMU_OC_3d_0[1] , \o_PMU_OC_3_c[7] , \CPLD_Con_1/N_148 , \o_PMU_OC_3_c[5] , \CPLD_Con_1/N_147 , \CPLD_Con_1/PMU_OC_3d_0[7] , \CPLD_Con_1/PMU_OC_3d_0[5] , \o_PMU_OC_4_c[4] , \CPLD_Con_1/PMU_OC_4_8_0_a2_RNIL1I393[20] , N_195, \CPLD_Con_1.un1_exec_flag_8_i , \o_PMU_OC_4_c[1] , \CPLD_Con_1/N_198 , \CPLD_Con_1/PMU_OC_4d_0[4] , \CPLD_Con_1/PMU_OC_4d_0[1] , \o_PMU_OC_4_c[20] , N_193, \o_PMU_OC_4_c[5] , N_194, \CPLD_Con_1/PMU_OC_4d_0[20] , \CPLD_Con_1/PMU_OC_4d_0[5] , \DC_Con3[22] , \CPLD_Con_1/dc_slot_flag[3] , \CPLD_Con_1/dc_slot_flag[2] , \CPLD_Con_1/dc_slot_flag[1] , \CPLD_Con_1/dc_slot_flag[0] , \CPLD_Con_1/m9_0_1_tz , \CPLD_Con_1/m9_0_0 , \CPLD_Con_1/RC_VISel_6 , o_RC_ISel_c, reg_addr_3_rep1, \CPLD_Reg_1/regtable[14][0] , reg_addr_3_rep2, \CPLD_Reg_1/regtable[10][0] , \CPLD_Reg_1/rdata_reg_2[0] , \reg_addr[1] , reg_addr_2_rep1, \CPLD_Reg_1/N_350 , \CPLD_Reg_1/N_326 , \CPLD_Reg_1/rdata_reg_1_sqmuxa , \CPLD_Reg_1/N_230 , \r_data[0] , \DC_Con1[1] , \CPLD_Reg_1/regtable[14][1] , \freq1_relay[1] , \CPLD_Reg_1/regtable[10][1] , \CPLD_Reg_1/rdata_reg_2[1] , \CPLD_Reg_1/N_351 , \CPLD_Reg_1/N_327 , \CPLD_Reg_1/N_231 , \r_data[1] , \DC_Con1[2] , \CPLD_Reg_1/regtable[14][2] , \freq1_relay[2] , \CPLD_Reg_1/regtable[10][2] , \CPLD_Reg_1/rdata_reg_2[2] , \CPLD_Reg_1/N_352 , \CPLD_Reg_1/N_328 , \CPLD_Reg_1/N_232 , \r_data[2] , \DC_Con1[3] , \CPLD_Reg_1/regtable[14][3] , \freq1_relay[3] , \CPLD_Reg_1/regtable[10][3] , \CPLD_Reg_1/rdata_reg_2[3] , \CPLD_Reg_1/N_353 , \CPLD_Reg_1/N_329 , \CPLD_Reg_1/N_233 , \r_data[3] , \DC_Con1[4] , \CPLD_Reg_1/regtable[14][4] , \freq1_relay[4] , \CPLD_Reg_1/regtable[10][4] , \CPLD_Reg_1/rdata_reg_2[4] , \CPLD_Reg_1/N_354 , \CPLD_Reg_1/N_330 , \CPLD_Reg_1/N_234 , \r_data[4] , \DC_Con1[5] , \CPLD_Reg_1/regtable[14][5] , \freq1_relay[5] , \CPLD_Reg_1/regtable[10][5] , \CPLD_Reg_1/rdata_reg_2[5] , \CPLD_Reg_1/N_355 , \CPLD_Reg_1/N_331 , \CPLD_Reg_1/N_235 , \r_data[5] , \DC_Con1[6] , \CPLD_Reg_1/regtable[14][6] , \freq1_relay[6] , \CPLD_Reg_1/regtable[10][6] , \CPLD_Reg_1/rdata_reg_2[6] , \CPLD_Reg_1/N_356 , \CPLD_Reg_1/N_332 , \CPLD_Reg_1/N_236 , \r_data[6] , \DC_Con1[7] , \CPLD_Reg_1/regtable[14][7] , \freq1_relay[7] , \CPLD_Reg_1/regtable[10][7] , \CPLD_Reg_1/rdata_reg_2[7] , \CPLD_Reg_1/N_357 , \CPLD_Reg_1/N_333 , \CPLD_Reg_1/N_237 , \r_data[7] , \DC_Con1[8] , \CPLD_Reg_1/regtable[14][8] , \reg_addr[3] , \freq1_relay[8] , \CPLD_Reg_1/regtable[10][8] , \CPLD_Reg_1/rdata_reg_2[8] , \CPLD_Reg_1/N_358 , \CPLD_Reg_1/N_334 , \CPLD_Reg_1/N_238 , \r_data[8] , \DC_Con1[9] , \CPLD_Reg_1/regtable[14][9] , \freq1_relay[9] , \CPLD_Reg_1/regtable[10][9] , \CPLD_Reg_1/rdata_reg_2[9] , \CPLD_Reg_1/N_359 , \CPLD_Reg_1/N_335 , \CPLD_Reg_1/N_239 , \r_data[9] , \CPLD_Reg_1/regtable[14][10] , \CPLD_Reg_1/regtable[6][10] , \CPLD_Reg_1/regtable[10][10] , \CPLD_Reg_1/regtable[2][10] , \CPLD_Reg_1/rdata_reg_2[10] , \CPLD_Reg_1/N_118 , \CPLD_Reg_1/N_336 , \CPLD_Reg_1/N_1234 , \r_data[10] , \CPLD_Reg_1/regtable[14][11] , \CPLD_Reg_1/regtable[6][11] , \CPLD_Reg_1/regtable[10][11] , \CPLD_Reg_1/regtable[2][11] , \CPLD_Reg_1/rdata_reg_2[11] , \CPLD_Reg_1/N_1246 , \CPLD_Reg_1/N_337 , \CPLD_Reg_1/N_1235 , \r_data[11] , \CPLD_Reg_1/regtable[14][12] , \CPLD_Reg_1/regtable[6][12] , \CPLD_Reg_1/regtable[10][12] , \CPLD_Reg_1/regtable[2][12] , \CPLD_Reg_1/rdata_reg_2[12] , \CPLD_Reg_1/N_1245 , \CPLD_Reg_1/N_338 , \CPLD_Reg_1/N_1236 , \r_data[12] , \CPLD_Reg_1/regtable[14][13] , \CPLD_Reg_1/regtable[6][13] , \CPLD_Reg_1/regtable[10][13] , \CPLD_Reg_1/regtable[2][13] , \CPLD_Reg_1/rdata_reg_2[13] , \CPLD_Reg_1/N_1244 , \CPLD_Reg_1/N_339 , \CPLD_Reg_1/N_1237 , \r_data[13] , \CPLD_Reg_1/regtable[14][14] , \CPLD_Reg_1/regtable[6][14] , \CPLD_Reg_1/regtable[10][14] , \CPLD_Reg_1/regtable[2][14] , \CPLD_Reg_1/rdata_reg_2[14] , \CPLD_Reg_1/N_1243 , \CPLD_Reg_1/N_340 , \CPLD_Reg_1/N_1238 , \r_data[14] , \CPLD_Reg_1/regtable[14][15] , \CPLD_Reg_1/regtable[6][15] , \CPLD_Reg_1/regtable[10][15] , \CPLD_Reg_1/regtable[2][15] , \CPLD_Reg_1/rdata_reg_2[15] , \CPLD_Reg_1/N_1242 , \CPLD_Reg_1/N_341 , \CPLD_Reg_1/N_1239 , \r_data[15] , \CPLD_Reg_1/regtable[14][16] , \CPLD_Reg_1/regtable[6][16] , \CPLD_Reg_1/regtable[10][16] , \CPLD_Reg_1/regtable[2][16] , \CPLD_Reg_1/rdata_reg_2[16] , \CPLD_Reg_1/N_1241 , \CPLD_Reg_1/N_342 , \CPLD_Reg_1/N_1240 , \r_data[16] , \DC_Con1[17] , \CPLD_Reg_1/regtable[14][17] , \CPLD_Reg_1/regtable[10][17] , \CPLD_Reg_1/regtable[2][17] , \CPLD_Reg_1/rdata_reg_2[17] , \CPLD_Reg_1/N_367 , \CPLD_Reg_1/N_343 , \CPLD_Reg_1/N_247 , \r_data[17] , \DC_Con1[18] , \CPLD_Reg_1/regtable[14][18] , \CPLD_Reg_1/regtable[10][18] , \CPLD_Reg_1/regtable[2][18] , \CPLD_Reg_1/rdata_reg_2[18] , \CPLD_Reg_1/N_368 , \CPLD_Reg_1/N_344 , \CPLD_Reg_1/N_248 , \r_data[18] , \DC_Con1[19] , \CPLD_Reg_1/regtable[14][19] , \CPLD_Reg_1/regtable[10][19] , \CPLD_Reg_1/regtable[2][19] , \CPLD_Reg_1/rdata_reg_2[19] , \CPLD_Reg_1/N_369 , \CPLD_Reg_1/N_345 , \CPLD_Reg_1/N_249 , \r_data[19] , \DC_Con1[20] , \CPLD_Reg_1/regtable[14][20] , \CPLD_Reg_1/regtable[10][20] , \CPLD_Reg_1/regtable[2][20] , \CPLD_Reg_1/rdata_reg_2[20] , \CPLD_Reg_1/N_370 , \CPLD_Reg_1/N_346 , \CPLD_Reg_1/N_250 , \r_data[20] , \DC_Con1[21] , \CPLD_Reg_1/regtable[14][21] , \CPLD_Reg_1/regtable[10][21] , \CPLD_Reg_1/regtable[2][21] , \CPLD_Reg_1/rdata_reg_2[21] , \CPLD_Reg_1/N_371 , \CPLD_Reg_1/N_347 , \CPLD_Reg_1/N_251 , \r_data[21] , \DC_Con1[22] , \CPLD_Reg_1/regtable[14][22] , \CPLD_Reg_1/regtable[10][22] , \CPLD_Reg_1/regtable[2][22] , \CPLD_Reg_1/rdata_reg_2[22] , \CPLD_Reg_1/N_372 , \CPLD_Reg_1/N_348 , \CPLD_Reg_1/N_252 , \r_data[22] , \DC_Con1[23] , \CPLD_Reg_1/regtable[14][23] , \CPLD_Reg_1/regtable[10][23] , \CPLD_Reg_1/regtable[2][23] , \CPLD_Reg_1/rdata_reg_2[23] , \CPLD_Reg_1/N_373 , \CPLD_Reg_1/N_349 , \CPLD_Reg_1/N_253 , \r_data[23] , \BUS_Con_1/recv_reg[25] , \BUS_Con_1/recv_reg[26] , \BUS_Con_1/N_237_i , \BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK , \reg_addr[2] , \BUS_Con_1/recv_reg[27] , \BUS_Con_1/recv_reg[28] , \BUS_Con_1/recv_reg[29] , \BUS_Con_1/recv_reg[30] , \CPLD_Reg_1/busy_flag_1_i_a3_0_0 , \CPLD_Reg_1/N_43_i , \CPLD_Reg_1/state_6_d_i , \BUS_Con_1/recv_reg[0] , \reg_addr_fast[3] , \BUS_Con_1/recv_reg[1] , \BUS_Con_1/recv_reg[2] , \w_data[2] , \w_data[1] , \BUS_Con_1/recv_reg[3] , \BUS_Con_1/recv_reg[4] , \w_data[4] , \w_data[3] , \BUS_Con_1/recv_reg[5] , \BUS_Con_1/recv_reg[6] , \w_data[6] , \w_data[5] , \BUS_Con_1/recv_reg[7] , \BUS_Con_1/recv_reg[8] , \w_data[7] , \BUS_Con_1/recv_reg[13] , \BUS_Con_1/recv_reg[12] , o_wready_c, \w_data[12] , \w_data[13] , \BUS_Con_1/recv_reg[15] , \BUS_Con_1/recv_reg[14] , o_RC_ISel_c_i, \w_data[14] , \CPLD_Reg_1/un34_regtable_5[1] , \DC_Con2[2] , \DC_Con2[1] , \DC_Con4[3] , \DC_Con4[2] , \CPLD_Reg_1.regtable[9]_fast[4] , \BUS_Con_1/recv_reg[17] , \BUS_Con_1/recv_reg[16] , \CPLD_Con_1/g0_19_1 , \CPLD_Con_1/g0_21_N_3L3 , \w_data[17] , \CPLD_Reg_1.regtable[8]_fast[6] , \CPLD_Reg_1.regtable[8]_fast[5] , \BUS_Con_1/recv_reg[19] , \BUS_Con_1/recv_reg[18] , \CPLD_Con_1/OC_x0112lto2_0 , \w_data[18] , \CPLD_Con_1/g0_3_1_N_2L1 , \w_data[19] , \DC_Con2[20] , \DC_Con2[19] , \BUS_Con_1/recv_reg[21] , \BUS_Con_1/recv_reg[20] , \CPLD_Con_1/N_51 , \CPLD_Con_1/OC_x0112lto8_0 , \DC_Con4[19] , \CPLD_Con_1/dc_slot_flag_3_rep1 , \CPLD_Con_1.exec_flag , \BUS_Con_1/recv_reg[23] , \BUS_Con_1/recv_reg[22] , \CPLD_Con_1/err_flag39 , \CPLD_Con_1/N_165 , \freq2_relay[3] , \freq2_relay[2] , \freq2_relay[1] , \CPLD_Con_1/N_100 , \CPLD_Con_1/N_96 , \DC_Con2[6] , \DC_Con2[5] , \BUS_Con_1/recv_reg[24] , \BUS_Con_1/wr_out_6 , \CPLD_Con_1.PMU_OC_2_8[21] , wr_flag, \CPLD_Con_1/OC_x0126lt3 , \reg_addr[0] , \CPLD_Con_1/m9_0_a5_1_1 , \DC_Con2[22] , \CPLD_Con_1/un1_i_freq_relay1lt8 , \CPLD_Con_1/un1_i_freq_relay1_1 , \CPLD_Con_1/DMM_en_2_sqmuxa_1_0 , \CPLD_Con_1/un1_i_DC_Con1_1[3] , \CPLD_Con_1/un1_DMM_en_1[0] , \CPLD_Con_1/N_41_1 , \CPLD_Con_1/N_311 , \CPLD_Con_1.DMM_en_22[2] , \freq3_relay[9] , \freq3_relay[8] , \CPLD_Con_1/N_90 , \CPLD_Con_1/DMM_en_12_sqmuxa_1_1 , \CPLD_Con_1/N_42_1 , \CPLD_Con_1.DMM_en_22[11] , \CPLD_Con_1/OC_x0112 , \CPLD_Con_1/N_40_1 , \CPLD_Con_1.DMM_en_22[1] , \CPLD_Con_1/N_349 , \CPLD_Con_1/un1_i_freq_relay3lt8 , \CPLD_Con_1/OC_x0163 , \CPLD_Con_1/DMM_en_10_sqmuxa_1 , \CPLD_Con_1.DMM_en_22[9] , \CPLD_Con_1/DMM_en_1_sqmuxa_1_0 , \CPLD_Con_1/N_39_1 , \CPLD_Con_1.DMM_en_22[0] , \CPLD_Con_1/N_9 , \CPLD_Con_1/OC_x0138_3 , \CPLD_Con_1.DMM_en_22[8] , \CPLD_Reg_1/regtable[15][0] , \CPLD_Reg_1/regtable[11][0] , reg_addr_0_rep2, reg_addr_2_rep2, \CPLD_Reg_1/N_278 , \CPLD_Reg_1/regtable[13][23] , \DC_Con3[23] , \CPLD_Reg_1/regtable[12][23] , reg_addr_0_rep1, \CPLD_Reg_1/N_325 , \CPLD_Reg_1/N_277 , \CPLD_Reg_1/regtable[13][0] , \CPLD_Reg_1/regtable[12][0] , \CPLD_Reg_1/N_302 , \CPLD_Reg_1/N_254 , \DC_Con4[9] , \CPLD_Reg_1/regtable[13][9] , \DC_Con3[9] , \CPLD_Reg_1/regtable[12][9] , \CPLD_Reg_1/N_311 , \CPLD_Reg_1/N_263 , \CPLD_Reg_1/regtable[13][16] , \CPLD_Reg_1/regtable[12][16] , \CPLD_Reg_1/regtable[8][16] , \CPLD_Reg_1/N_1233 , \CPLD_Reg_1/N_270 , \CPLD_Reg_1/regtable[13][15] , \CPLD_Reg_1/regtable[12][15] , \CPLD_Reg_1/regtable[8][15] , \CPLD_Reg_1/N_1232 , \CPLD_Reg_1/N_269 , \CPLD_Reg_1/regtable[13][14] , \CPLD_Reg_1/regtable[9][14] , \CPLD_Reg_1/regtable[12][14] , \CPLD_Reg_1/regtable[8][14] , \CPLD_Reg_1/N_1231 , \CPLD_Reg_1/N_268 , \CPLD_Reg_1/regtable[13][13] , \CPLD_Reg_1/regtable[9][13] , \CPLD_Reg_1/regtable[12][13] , \CPLD_Reg_1/regtable[8][13] , \CPLD_Reg_1/N_1230 , \CPLD_Reg_1/N_267 , \CPLD_Reg_1/regtable[13][12] , \CPLD_Reg_1/regtable[9][12] , \CPLD_Reg_1/regtable[12][12] , \CPLD_Reg_1/regtable[8][12] , \CPLD_Reg_1/N_1229 , \CPLD_Reg_1/N_266 , \CPLD_Reg_1/regtable[13][11] , \CPLD_Reg_1/regtable[9][11] , \CPLD_Reg_1/regtable[12][11] , \CPLD_Reg_1/regtable[8][11] , \CPLD_Reg_1/N_1228 , \CPLD_Reg_1/N_265 , \CPLD_Reg_1/regtable[13][10] , \CPLD_Reg_1/regtable[9][10] , \CPLD_Reg_1/regtable[12][10] , \CPLD_Reg_1/regtable[8][10] , \CPLD_Reg_1/N_1227 , \CPLD_Reg_1/N_264 , \DC_Con4[18] , \CPLD_Reg_1/regtable[13][18] , \DC_Con3[18] , \CPLD_Reg_1/regtable[12][18] , \CPLD_Reg_1/N_320 , \CPLD_Reg_1/N_272 , \DC_Con4[1] , \CPLD_Reg_1/regtable[13][1] , \DC_Con3[1] , \CPLD_Reg_1/regtable[12][1] , \CPLD_Reg_1/N_303 , \CPLD_Reg_1/N_255 , \CPLD_Reg_1/regtable[13][2] , \DC_Con3[2] , \CPLD_Reg_1/regtable[12][2] , \CPLD_Reg_1/N_304 , \CPLD_Reg_1/N_256 , \CPLD_Reg_1/regtable[13][3] , \DC_Con3[3] , \CPLD_Reg_1/regtable[12][3] , \CPLD_Reg_1/N_305 , \CPLD_Reg_1/N_257 , \DC_Con4[4] , \CPLD_Reg_1/regtable[13][4] , \DC_Con3[4] , \CPLD_Reg_1/regtable[12][4] , \CPLD_Reg_1/N_306 , \CPLD_Reg_1/N_258 , \DC_Con4[5] , \CPLD_Reg_1/regtable[13][5] , \DC_Con3[5] , \CPLD_Reg_1/regtable[12][5] , \CPLD_Reg_1/N_307 , \CPLD_Reg_1/N_259 , \DC_Con4[6] , \CPLD_Reg_1/regtable[13][6] , \DC_Con3[6] , \CPLD_Reg_1/regtable[12][6] , \CPLD_Reg_1/N_308 , \CPLD_Reg_1/N_260 , \DC_Con4[7] , \CPLD_Reg_1/regtable[13][7] , \DC_Con3[7] , \CPLD_Reg_1/regtable[12][7] , \CPLD_Reg_1/N_309 , \CPLD_Reg_1/N_261 , \DC_Con4[8] , \CPLD_Reg_1/regtable[13][8] , \DC_Con3[8] , \CPLD_Reg_1/regtable[12][8] , \CPLD_Reg_1/N_310 , \CPLD_Reg_1/N_262 , \DC_Con4[17] , \CPLD_Reg_1/regtable[13][17] , \DC_Con3[17] , \CPLD_Reg_1/regtable[12][17] , \CPLD_Reg_1/N_319 , \CPLD_Reg_1/N_271 , \CPLD_Reg_1/regtable[13][19] , \DC_Con3[19] , \CPLD_Reg_1/regtable[12][19] , \CPLD_Reg_1/N_321 , \CPLD_Reg_1/N_273 , \CPLD_Reg_1/regtable[13][20] , \DC_Con3[20] , \CPLD_Reg_1/regtable[12][20] , \CPLD_Reg_1/N_322 , \CPLD_Reg_1/N_274 , \CPLD_Reg_1/regtable[13][21] , \DC_Con3[21] , \CPLD_Reg_1/regtable[12][21] , \CPLD_Reg_1/N_323 , \CPLD_Reg_1/N_275 , \CPLD_Reg_1/regtable[13][22] , \CPLD_Reg_1/regtable[12][22] , \CPLD_Reg_1/N_324 , \CPLD_Reg_1/N_276 , \DC_Con2[23] , \CPLD_Reg_1/regtable[15][23] , \CPLD_Reg_1/regtable[11][23] , \CPLD_Reg_1/regtable[3][23] , \CPLD_Reg_1/N_301 , \CPLD_Reg_1/regtable[5][23] , \CPLD_Reg_1/regtable[4][23] , \CPLD_Reg_1/regtable[0][23] , \CPLD_Reg_1/regtable[0][0] , \DC_Con2[9] , \CPLD_Reg_1/regtable[15][9] , \freq2_relay[9] , \CPLD_Reg_1/regtable[11][9] , \CPLD_Reg_1/N_287 , \freq4_relay[9] , \CPLD_Reg_1/regtable[1][9] , \CPLD_Reg_1/regtable[0][9] , \CPLD_Reg_1/regtable[15][16] , \CPLD_Reg_1/regtable[7][16] , \CPLD_Reg_1/regtable[11][16] , \CPLD_Reg_1/regtable[3][16] , \CPLD_Reg_1/N_79 , \CPLD_Reg_1/regtable[15][15] , \CPLD_Reg_1/regtable[7][15] , \CPLD_Reg_1/regtable[11][15] , \CPLD_Reg_1/regtable[3][15] , \CPLD_Reg_1/N_80 , \CPLD_Reg_1/regtable[15][14] , \CPLD_Reg_1/regtable[7][14] , \CPLD_Reg_1/regtable[11][14] , \CPLD_Reg_1/regtable[3][14] , \CPLD_Reg_1/N_81 , \CPLD_Reg_1/regtable[15][13] , \CPLD_Reg_1/regtable[7][13] , \CPLD_Reg_1/regtable[11][13] , \CPLD_Reg_1/regtable[3][13] , \CPLD_Reg_1/N_82 , \CPLD_Reg_1/regtable[15][12] , \CPLD_Reg_1/regtable[7][12] , \CPLD_Reg_1/regtable[11][12] , \CPLD_Reg_1/regtable[3][12] , \CPLD_Reg_1/N_83 , \CPLD_Reg_1/regtable[15][11] , \CPLD_Reg_1/regtable[7][11] , \CPLD_Reg_1/regtable[11][11] , \CPLD_Reg_1/regtable[3][11] , \CPLD_Reg_1/N_1267 , \CPLD_Reg_1/regtable[15][10] , \CPLD_Reg_1/regtable[7][10] , \CPLD_Reg_1/regtable[11][10] , \CPLD_Reg_1/regtable[3][10] , \CPLD_Reg_1/N_1268 , \freq4_relay[16] , \CPLD_Reg_1/regtable[4][16] , \CPLD_Reg_1/regtable[1][16] , \CPLD_Reg_1/regtable[0][16] , \freq4_relay[15] , \CPLD_Reg_1/regtable[4][15] , \CPLD_Reg_1/regtable[1][15] , \CPLD_Reg_1/regtable[0][15] , \freq4_relay[14] , \CPLD_Reg_1/regtable[4][14] , \CPLD_Reg_1/regtable[1][14] , \CPLD_Reg_1/regtable[0][14] , \freq4_relay[13] , \CPLD_Reg_1/regtable[4][13] , \CPLD_Reg_1/regtable[1][13] , \CPLD_Reg_1/regtable[0][13] , \freq4_relay[12] , \CPLD_Reg_1/regtable[4][12] , \CPLD_Reg_1/regtable[1][12] , \CPLD_Reg_1/regtable[0][12] , \CPLD_Reg_1/regtable[5][11] , \CPLD_Reg_1/regtable[4][11] , \CPLD_Reg_1/regtable[1][11] , \CPLD_Reg_1/regtable[0][11] , \CPLD_Reg_1/regtable[5][10] , \CPLD_Reg_1/regtable[4][10] , \CPLD_Reg_1/regtable[1][10] , \CPLD_Reg_1/regtable[0][10] , \DC_Con2[18] , \CPLD_Reg_1/regtable[15][18] , \CPLD_Reg_1/regtable[11][18] , \CPLD_Reg_1/regtable[3][18] , \CPLD_Reg_1/N_296 , \CPLD_Reg_1/regtable[5][18] , \CPLD_Reg_1/regtable[4][18] , \CPLD_Reg_1/regtable[1][18] , \CPLD_Reg_1/regtable[0][18] , \CPLD_Reg_1/regtable[15][1] , \CPLD_Reg_1/regtable[11][1] , \CPLD_Reg_1/N_279 , \freq4_relay[1] , \freq3_relay[1] , \CPLD_Reg_1/regtable[1][1] , \CPLD_Reg_1/regtable[0][1] , \freq4_relay[2] , \freq3_relay[2] , \CPLD_Reg_1/regtable[1][2] , \CPLD_Reg_1/regtable[0][2] , \CPLD_Reg_1/regtable[15][2] , \CPLD_Reg_1/regtable[11][2] , \CPLD_Reg_1/N_280 , \freq4_relay[3] , \freq3_relay[3] , \CPLD_Reg_1/regtable[1][3] , \CPLD_Reg_1/regtable[0][3] , \DC_Con2[3] , \CPLD_Reg_1/regtable[15][3] , \CPLD_Reg_1/regtable[11][3] , \CPLD_Reg_1/N_281 , \freq4_relay[4] , \freq3_relay[4] , \CPLD_Reg_1/regtable[1][4] , \CPLD_Reg_1/regtable[0][4] , \DC_Con2[4] , \CPLD_Reg_1/regtable[15][4] , \freq2_relay[4] , \CPLD_Reg_1/regtable[11][4] , \CPLD_Reg_1/N_282 , \freq4_relay[5] , \freq3_relay[5] , \CPLD_Reg_1/regtable[1][5] , \CPLD_Reg_1/regtable[0][5] , \CPLD_Reg_1/regtable[15][5] , \freq2_relay[5] , \CPLD_Reg_1/regtable[11][5] , \CPLD_Reg_1/N_283 , \freq4_relay[6] , \freq3_relay[6] , \CPLD_Reg_1/regtable[1][6] , \CPLD_Reg_1/regtable[0][6] , \CPLD_Reg_1/regtable[15][6] , \freq2_relay[6] , \CPLD_Reg_1/regtable[11][6] , \CPLD_Reg_1/N_284 , \freq4_relay[7] , \freq3_relay[7] , \CPLD_Reg_1/regtable[1][7] , \CPLD_Reg_1/regtable[0][7] , \DC_Con2[7] , \CPLD_Reg_1/regtable[15][7] , \freq2_relay[7] , \CPLD_Reg_1/regtable[11][7] , \CPLD_Reg_1/N_285 , \freq4_relay[8] , \CPLD_Reg_1/regtable[1][8] , \CPLD_Reg_1/regtable[0][8] , \DC_Con2[8] , \CPLD_Reg_1/regtable[15][8] , \freq2_relay[8] , \CPLD_Reg_1/regtable[11][8] , \CPLD_Reg_1/N_286 , \freq4_relay[17] , \CPLD_Reg_1/regtable[4][17] , \CPLD_Reg_1/regtable[1][17] , \CPLD_Reg_1/regtable[0][17] , \DC_Con2[17] , \CPLD_Reg_1/regtable[15][17] , \CPLD_Reg_1/regtable[11][17] , \CPLD_Reg_1/regtable[3][17] , \CPLD_Reg_1/N_295 , \CPLD_Reg_1/regtable[5][19] , \CPLD_Reg_1/regtable[4][19] , \CPLD_Reg_1/regtable[1][19] , \CPLD_Reg_1/regtable[0][19] , \CPLD_Reg_1/regtable[15][19] , \CPLD_Reg_1/regtable[11][19] , \CPLD_Reg_1/regtable[3][19] , \CPLD_Reg_1/N_297 , \CPLD_Reg_1/regtable[5][20] , \CPLD_Reg_1/regtable[4][20] , \CPLD_Reg_1/regtable[1][20] , \CPLD_Reg_1/regtable[0][20] , \CPLD_Reg_1/regtable[15][20] , \CPLD_Reg_1/regtable[11][20] , \CPLD_Reg_1/regtable[3][20] , \CPLD_Reg_1/N_298 , \CPLD_Reg_1/regtable[5][21] , \CPLD_Reg_1/regtable[4][21] , \CPLD_Reg_1/regtable[1][21] , \CPLD_Reg_1/regtable[0][21] , \DC_Con2[21] , \CPLD_Reg_1/regtable[15][21] , \CPLD_Reg_1/regtable[11][21] , \CPLD_Reg_1/regtable[3][21] , \CPLD_Reg_1/N_299 , \CPLD_Reg_1/regtable[5][22] , \CPLD_Reg_1/regtable[4][22] , \CPLD_Reg_1/regtable[1][22] , \CPLD_Reg_1/regtable[0][22] , \CPLD_Reg_1/regtable[15][22] , \CPLD_Reg_1/regtable[11][22] , \CPLD_Reg_1/regtable[3][22] , \CPLD_Reg_1/N_300 , \CPLD_Con_1/un1_i_DC_Con1_iv_1[1] , \CPLD_Con_1/un1_i_DC_Con1_iv_0_1[0] , \CPLD_Con_1/un1_i_DC_Con1_iv_0_0[0] , \CPLD_Con_1/un1_i_DC_Con1_iv_0[1] , \CPLD_Con_1/N_216 , \CPLD_Con_1/un1_i_DC_Con1_4_axbxc1 , \CPLD_Reg_1/regtable[4]_1_sqmuxa , N_235, \CPLD_Con_1/N_353 , \CPLD_Con_1/N_344 , \CPLD_Con_1/N_85 , \CPLD_Con_1/N_338 , \CPLD_Con_1/DMM_en_22_0_0[15] , \BUS_Con_1/un1_addr_out_0_sqmuxa_0_i , \BUS_Con_1/recv_reg_1_sqmuxa_1_i , \BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O , \CPLD_Con_1/N_357 , \CPLD_Con_1/DMM_en_22_0_a2_2[10] , \CPLD_Con_1/N_305 , \CPLD_Con_1/N_330 , \w_data[11] , \CPLD_Reg_1/regtable[6]_1_sqmuxa , \CPLD_Con_1/N_298 , \CPLD_Con_1/DMM_en_3_sqmuxa_1_0_a2_0_a2_0_a2_1 , \w_data[9] , \CPLD_Reg_1/regtable[8]_1_sqmuxa , \CPLD_Con_1.N_259 , \CPLD_Con_1/g0_14_N_2L1 , \CPLD_Con_1/N_30 , \CPLD_Con_1/DMM_en_11_sqmuxa_0_147_i_i_0_0_tz , \CPLD_Con_1/g0_26_x0 , \CPLD_Con_1/g1_0_0 , \CPLD_Con_1/RC_VISel41 , \CPLD_Con_1/N_192 , \CPLD_Reg_1/regtable[3]_1_sqmuxa , \CPLD_Con_1.PMU_OC_4_8[13] , \CPLD_Con_1/N_190 , \CPLD_Con_1.PMU_OC_4_8[15] , \CPLD_Con_1/N_350 , \CPLD_Con_1/DMM_en_1_sqmuxa_1_0_a2_0_a2_0_a2_2 , \CPLD_Con_1/DMM_en_1_sqmuxa_1_0_a2_0_a2_0_a2_0 , \CPLD_Con_1.N_333 , \CPLD_Con_1/PMU_OC_4_8_0_a2_2[3] , \w_data[10] , \CPLD_Con_1.PMU_OC_4_8[3] , \CPLD_Con_1/un1_i_DC_Con1_1_iv_0[4] , \CPLD_Con_1/i_DC_Con4_m[8] , \CPLD_Con_1/dc_slot_flag_2_rep1 , \CPLD_Con_1/un1_i_DC_Con1_1[4] , \CPLD_Con_1/un1_i_DC_Con1_1[5] , \CPLD_Reg_1/regtable[11]_1_sqmuxa , \CPLD_Con_1/un1_DMM_en[3] , \CPLD_Con_1/N_113 , \CPLD_Con_1/N_116 , \CPLD_Reg_1/regtable[12]_1_sqmuxa , \CPLD_Con_1.PMU_OC_1_8[27] , \CPLD_Con_1/N_115 , \CPLD_Con_1.PMU_OC_1_8[29] , \CPLD_Con_1/N_118 , \CPLD_Reg_1/regtable[13]_1_sqmuxa , \CPLD_Con_1.PMU_OC_1_8[31] , \CPLD_Con_1/RC_VISel38 , \CPLD_Con_1.PMU_OC_1_8[11] , \CPLD_Con_1/N_117 , \CPLD_Con_1.PMU_OC_1_8[15] , \CPLD_Reg_1.regtable[6]_fast[6] , \CPLD_Reg_1.regtable[6]_fast[5] , \CPLD_Con_1/N_38 , \CPLD_Reg_1/regtable[14]_1_sqmuxa , \CPLD_Con_1.PMU_OC_1_8[17] , \CPLD_Con_1/N_119 , \CPLD_Con_1.PMU_OC_1_8[23] , \CPLD_Con_1/N_43 , \CPLD_Con_1.PMU_OC_2_8[17] , \CPLD_Con_1/RC_VISel39 , \CPLD_Con_1/N_95 , \CPLD_Con_1.PMU_OC_2_8[9] , \CPLD_Con_1/un1_i_DC_Con1_1_iv_0[5] , \CPLD_Con_1/i_DC_Con3_m[9] , \CPLD_Con_1/N_351 , \CPLD_Con_1/N_114 , \CPLD_Con_1.PMU_OC_1_8[24] , \CPLD_Con_1/N_67_i , \CPLD_Con_1/g0_12_N_3L3 , \CPLD_Con_1/N_214 , \CPLD_Con_1/DMM_en_0_sqmuxa_7 , \CPLD_Reg_1/regtable[7]_1_sqmuxa , \CPLD_Reg_1.regtable[7]_fast[5] , \CPLD_Reg_1.regtable[7]_fast[6] , \CPLD_Con_1/N_196 , \CPLD_Con_1/un1_exec_flag_8_0_0 , \CPLD_Con_1/N_191 , \PMU_OC_4_8_0_a2_RNIS7H393[18] , \CPLD_Con_1/un1_i_DC_Con1_1_iv_1[2] , \CPLD_Con_1/un1_i_DC_Con1_1_iv_0[2] , \CPLD_Con_1/DMM_en_22_0_a2_2_1[4] , \CPLD_Con_1/N_360 , \CPLD_Con_1/N_323 , \CPLD_Con_1/un1_i_DC_Con1_1[1] , \CPLD_Con_1/un1_i_DC_Con1_1[0] , \CPLD_Con_1.DMM_en_22[5] , \CPLD_Con_1/un1_i_DC_Con1_1_iv_0[1] , \CPLD_Con_1/i_DC_Con4_m[5] , \CPLD_Con_1/N_325 , \CPLD_Con_1.DMM_en_22[6] , \CPLD_Con_1/DMM_en_22_0_a2_1_1[12] , \CPLD_Con_1/N_363 , \CPLD_Con_1/N_333 , \CPLD_Con_1.DMM_en_22[12] , \CPLD_Con_1/N_70 , \CPLD_Con_1/un1_i_DC_Con1_1_iv_0_0[0] , \CPLD_Con_1/N_336 , \CPLD_Con_1.DMM_en_22[14] , \CPLD_Con_1/N_364 , \CPLD_Con_1/N_307 , \CPLD_Con_1/N_306 , \CPLD_Con_1/DMM_en_22_0_RNO[13] , \CPLD_Con_1.DMM_en_22[13] , \BUS_Con_1/recv_reg[9] , \CPLD_Con_1/g2_0 , \CPLD_Con_1/RC_VISel40 , \CPLD_Con_1/N_140 , \CPLD_Con_1/un1_exec_flag_2_0_0 , \CPLD_Con_1/DMM_en_0_sqmuxa_6 , \CPLD_Con_1/g0_13_sn , \CPLD_Con_1/g0_13_rn_0 , \CPLD_Con_1/err_flag19_0_0_0 , \CPLD_Con_1/N_99 , \CPLD_Con_1/un1_exec_flag_3_0_0 , \CPLD_Con_1/DMM_en_0_sqmuxa_5 , \CPLD_Con_1/N_407 , \CPLD_Con_1/N_329 , \CPLD_Con_1/DMM_en_22_0_a2_1[7] , \CPLD_Con_1/DMM_en_22_0_0[7] , \CPLD_Con_1.DMM_en_22[7] , \CPLD_Con_1/freq_slot_flag[2] , \CPLD_Con_1/freq_slot_flag[0] , \CPLD_Con_1.DMM_en_22[3] , \CPLD_Con_1/dc_slot_flag_1_rep1 , \CPLD_Con_1/dc_slot_flag_0_rep1 , \CPLD_Con_1/un1_exec_flag_4_0_0 , \CPLD_Con_1/DMM_en_0_sqmuxa_3 , \CPLD_Con_1.un1_exec_flag_4_i , \CPLD_Con_1/N_202 , \CPLD_Con_1/RC_RLSel_13_0_a3_2_N_4L5 , \CPLD_Con_1/RC_RLSel_13_0_a3_2_N_3L3 , \CPLD_Con_1/RC_RLSel_13_0_a3_2_N_2L1 , \CPLD_Reg_1/regtable[5]_1_sqmuxa , N_234, N_233, \CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 , \CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 , \CPLD_Con_1.RC_RLSel_13[12] , N_232, \CPLD_Con_1.RC_RLSel_13[11] , \CPLD_Con_1/N_78 , \CPLD_Con_1/err_flag25_0_o2_2 , \CPLD_Con_1/err_flag25_0_0_0 , \CPLD_Con_1/err_flag19 , \CPLD_Con_1/un1_i_DC_Con1_1_iv_0[3] , \CPLD_Con_1/i_DC_Con4_m[7] , \CPLD_Con_1/DMM_en_22_0_0[10] , \CPLD_Con_1.DMM_en_22[10] , \CPLD_Con_1/un1_i_DC_Con1_iv_0_1[4] , \CPLD_Con_1/un1_i_DC_Con1_iv_0_0[4] , \CPLD_Con_1/RC_RLSel_13_1[16] , \CPLD_Con_1.RC_RLSel_13[17] , \CPLD_Con_1.RC_RLSel_13[16] , \CPLD_Con_1/DMM_en_22_2[16] , \CPLD_Con_1.DMM_en_22[16] , \CPLD_Con_1/un1_DMM_en_1_sqmuxa_tz , \CPLD_Con_1/N_59_1 , \CPLD_Con_1.DMM_en_22[17] , \CPLD_Con_1/N_60_1 , \CPLD_Con_1.DMM_en_22[18] , \CPLD_Con_1/N_356 , \CPLD_Con_1/N_342 , \CPLD_Con_1/N_308 , \CPLD_Con_1.N_315 , \CPLD_Con_1/freq_slot_flag[3] , \CPLD_Con_1/freq_slot_flag[1] , \CPLD_Con_1/DMM_en_7_sqmuxa_0_121_a2_0_a2_0 , \DMM_en_22_0_o2_0_RNI5A4QI[7] , \CPLD_Con_1/DMM_en_22_0_a2_0[6] , \CPLD_Reg_1/regtable[10]_1_sqmuxa , \CPLD_Con_1/DMM_en_22_0_a2_0_1[10] , \CPLD_Con_1/un1_err_flag41_i , \CPLD_Con_1.RC_Tx_0_sqmuxa_1_i , \CPLD_Con_1/OC_x0112lto8_4_0 , N_22, \CPLD_Con_1/N_143 , \CPLD_Con_1/N_136 , \CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 , \CPLD_Con_1.PMU_OC_3_8[26] , \CPLD_Con_1/N_141 , \CPLD_Con_1.PMU_OC_3_8[27] , \CPLD_Con_1.PMU_OC_3_8[28] , \CPLD_Con_1/N_150 , \CPLD_Reg_1/regtable[15]_1_sqmuxa , \CPLD_Con_1.PMU_OC_3_8[10] , \CPLD_Con_1.PMU_OC_3_8[11] , \CPLD_Con_1/N_137 , \CPLD_Con_1.PMU_OC_3_8[18] , \CPLD_Con_1.PMU_OC_3_8[2] , \CPLD_Reg_1/regtable[2]_1_sqmuxa , \CPLD_Con_1.PMU_OC_3_8[4] , \CPLD_Con_1.PMU_OC_3_8[6] , \CPLD_Con_1/N_102 , \CPLD_Con_1.PMU_OC_2_8[26] , \CPLD_Con_1.PMU_OC_2_8[27] , \CPLD_Con_1/N_111 , \CPLD_Con_1.PMU_OC_2_8[10] , \CPLD_Con_1.PMU_OC_2_8[11] , \CPLD_Con_1.PMU_OC_2_8[18] , \CPLD_Con_1.PMU_OC_2_8[2] , \CPLD_Con_1.PMU_OC_2_8[4] , \CPLD_Con_1.PMU_OC_2_8[6] , \CPLD_Con_1/err_flag13_0_o2_0_2 , \CPLD_Con_1/N_65 , \CPLD_Con_1/err_flag13_0_0_0 , \CPLD_Con_1/N_365 , \DMM_en_22_0_a2_3_RNIK2BQH[4] , \DMM_en_22_0_o2_RNI8QTBL[15] , \CPLD_Con_1.PMU_OC_3_8[8] , \CPLD_Con_1/N_227 , \CPLD_Con_1/N_206 , \CPLD_Con_1.PMU_OC_4_8[29] , \CPLD_Con_1/N_188 , \CPLD_Con_1.PMU_OC_4_8[17] , \CPLD_Con_1.PMU_OC_4_8[21] , \CPLD_Con_1/N_361 , \CPLD_Con_1/OC_x0153lt3 , \CPLD_Con_1/dc_slot_flag_fast[3] , \CPLD_Con_1/dc_slot_flag_fast[2] , \CPLD_Con_1/dc_slot_flag_fast[1] , \CPLD_Con_1/dc_slot_flag_fast[0] , \CPLD_Con_1/N_215 , \CPLD_Con_1/PMU_OC_4_8_0[25] , \CPLD_Con_1.PMU_OC_4_8[25] , \CPLD_Con_1/err_flag13_0_o2_0_2_RNIH4D9O_0 , \CPLD_Con_1/N_57 , \CPLD_Con_1/err_flag13_0_0_0_RNIM0FM71 , \CPLD_Con_1/err_flag19_0_o2_2_RNIDVKG21 , \CPLD_Con_1/dc_slot_flag_RNIQ9AIV[0] , \CPLD_Con_1/err_flag19_0_0_0_RNIAI9L43 , \CPLD_Con_1/DMM_en_12_sqmuxa_1_0 , \CPLD_Con_1/un1_i_DC_Con1_iv_0_0[2] , \CPLD_Con_1/RC_RLSel_141_N_2_3_0 , \CPLD_Con_1/N_173 , \CPLD_Con_1/un1_i_DC_Con1_iv_0_0[3] , \CPLD_Con_1/g0_8_1 , \CPLD_Con_1/g0_2_N_5L7_N_6L9_0_1 , \CPLD_Con_1/g0_2_1 , \CPLD_Con_1/err_flag19_0_o2_2 , \CPLD_Reg_1.regtable[7]_fast[7] , \CPLD_Con_1/g2_0_0 , \CPLD_Con_1/OC_x17_0_sqmuxa_i_1 , \CPLD_Con_1/g0_21_N_2L1 , \CPLD_Con_1/N_60 , \CPLD_Con_1/g0_7_2 , \CPLD_Con_1/g0_6_2 , \CPLD_Con_1/g0_2_N_2L1_1_N_2L1 , \CPLD_Con_1/g0_2_1_1 , \CPLD_Reg_1.regtable[9]_fast[6] , \CPLD_Con_1/g1_1_3 , \CPLD_Reg_1.regtable[9]_fast[7] , \CPLD_Reg_1.regtable[9]_fast[5] , \CPLD_Con_1/un1_exec_flag_10_i_1 , \CPLD_Con_1.un1_exec_flag_10_i , \CPLD_Con_1/g0_3_1_N_5L8 , \CPLD_Con_1/g0_1_2_0 , \CPLD_Con_1/g0_1_0_0_1 , \CPLD_Con_1/un1_exec_flag_10_0 , \CPLD_Con_1/un1_i_DC_Con1_iv_0_RNIL5OH12[2] , \CPLD_Con_1/g0_10_N_3L3 , \CPLD_Con_1/g0_10_N_2L1 , \CPLD_Con_1/g0_1_0 , \CPLD_Con_1/err_flag13_0_0_0_RNI92FNE1_0 , err_flag13_0_0_0_RNILOU7L8, \CPLD_Con_1/err_flag19_0_0_0_RNI2M1DH2 , \CPLD_Con_1/DMM_en_22_0_N_2L1_0 , \CPLD_Con_1.DMM_en_22[4] , \CPLD_Con_1/g0_12_N_2L1 , \CPLD_Con_1/RC_VISel41_0_a2_0_a3_RNI54G4K2_0 , \CPLD_Con_1/g0_3_1 , \CPLD_Con_1/dc_slot_flag_0_rep1_RNIULU4R , \CPLD_Con_1/dc_t_RNI2Q6P8_0 , \CPLD_Con_1/g0_2_1_0 , \CPLD_Con_1/dc_slot_flag_RNIANH1R_3[0] , \CPLD_Con_1/freq_t_RNIDK1OA3 , \CPLD_Con_1/freq_slot_flag_RNIBOV481[0] , \CPLD_Con_1/dc_slot_flag_0_rep1_RNI421QK , \CPLD_Con_1/freq_t_RNI8PH26 , \CPLD_Con_1.DMM_en_0_sqmuxa_9_i , \CPLD_Con_1/g0_2_x1_N_2L1 , \CPLD_Reg_1/un34_regtable_1_0_0 , \CPLD_Reg_1/state_ns_0_a4_0_1[1] , \CPLD_Reg_1/regtable[0]_1_sqmuxa_1 , \CPLD_Reg_1/rdata_reg_1_sqmuxa_2 , \reg_addr_fast[0] , \CPLD_Reg_1/N_1185 , \reg_addr_fast[2] , \CPLD_Reg_1/regtable[0]_1_sqmuxa , \CPLD_Reg_1/regtable[1]_1_sqmuxa , \CPLD_Reg_1/N_1186 , \CPLD_Reg_1/regtable[7]_1_sqmuxa_2 , \CPLD_Reg_1/N_1169 , \CPLD_Reg_1/N_1171 , \CPLD_Reg_1/regtable[5]_1_sqmuxa_0_a2_0 , \CPLD_Reg_1/un10_0_a3_0 , \BUS_Con_1/N_240 , \BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNIVM1LH , \BUS_Con_1/recv_reg[10] , \BUS_Con_1/recv_reg[11] , \BUS_Con_1/N_253 , \BUS_Con_1/N_242 , \CPLD_Con_1.PMU_OC_4_8[9] , \CPLD_Con_1.PMU_OC_4_8[8] , \CPLD_Con_1.PMU_OC_4_8[11] , \CPLD_Con_1.PMU_OC_4_8[31] , \CPLD_Con_1.PMU_OC_4_8[28] , \CPLD_Con_1.PMU_OC_4_8[24] , \CPLD_Con_1.PMU_OC_4_8[27] , \CPLD_Con_1.PMU_OC_4_8[14] , \CPLD_Con_1.PMU_OC_1_8[13] , \CPLD_Con_1.PMU_OC_1_8[5] , \CPLD_Con_1.PMU_OC_1_8[19] , \CPLD_Con_1.PMU_OC_1_8[3] , \CPLD_Con_1.PMU_OC_1_8[25] , \CPLD_Con_1.PMU_OC_1_8[1] , \CPLD_Con_1.PMU_OC_4_8[26] , \CPLD_Con_1.PMU_OC_4_8[10] , \CPLD_Con_1.PMU_OC_2_8[25] , \CPLD_Con_1.PMU_OC_2_8[8] , \CPLD_Con_1.PMU_OC_1_8[22] , \CPLD_Con_1.PMU_OC_1_8[6] , \CPLD_Con_1.PMU_OC_1_8[20] , \CPLD_Con_1.PMU_OC_1_8[4] , \CPLD_Con_1.PMU_OC_1_8[18] , \CPLD_Con_1.PMU_OC_1_8[2] , \CPLD_Con_1.PMU_OC_1_8[12] , \CPLD_Con_1.PMU_OC_1_8[28] , \CPLD_Con_1.PMU_OC_1_8[10] , \CPLD_Con_1.PMU_OC_1_8[26] , \CPLD_Con_1.PMU_OC_3_8[29] , \CPLD_Con_1.PMU_OC_3_8[25] , \CPLD_Con_1.PMU_OC_3_8[30] , \CPLD_Con_1.PMU_OC_3_8[24] , \CPLD_Con_1.PMU_OC_3_8[13] , \CPLD_Con_1.PMU_OC_3_8[9] , \CPLD_Con_1.PMU_OC_3_8[19] , \CPLD_Con_1.PMU_OC_3_8[17] , \CPLD_Con_1.PMU_OC_3_8[20] , \CPLD_Con_1.PMU_OC_3_8[22] , \CPLD_Con_1.PMU_OC_3_8[21] , \CPLD_Con_1.PMU_OC_3_8[23] , \CPLD_Con_1.PMU_OC_2_8[28] , \CPLD_Con_1.PMU_OC_2_8[30] , \CPLD_Con_1.PMU_OC_2_8[29] , \CPLD_Con_1.PMU_OC_2_8[31] , \CPLD_Con_1.PMU_OC_2_8[13] , \CPLD_Con_1.PMU_OC_2_8[15] , \CPLD_Con_1.PMU_OC_2_8[19] , \CPLD_Con_1.PMU_OC_2_8[23] , \CPLD_Con_1.PMU_OC_2_8[20] , \CPLD_Con_1.PMU_OC_2_8[22] , \CPLD_Con_1.PMU_OC_4_8[23] , N_197, \CPLD_Con_1.PMU_OC_4_8[12] , N_155_i, \CPLD_Con_1.PMU_OC_1_8[21] , \CPLD_Con_1.PMU_OC_1_8[7] , \CPLD_Con_1.PMU_OC_1_8[9] , \CPLD_Con_1.PMU_OC_1_8[8] , \CPLD_Con_1.PMU_OC_1_8[14] , \CPLD_Con_1.PMU_OC_1_8[30] , \CPLD_Con_1.PMU_OC_3_8[31] , \CPLD_Con_1.PMU_OC_3_8[15] , \CPLD_Con_1.PMU_OC_3_8[12] , \CPLD_Con_1.PMU_OC_3_8[14] , \CPLD_Con_1.N_364 , \CPLD_Con_1.PMU_OC_2_8[12] , \CPLD_Con_1.PMU_OC_2_8[14] , \CPLD_Con_1.io_RC_1_sqmuxa , \CPLD_Con_1.OC_x17_0_sqmuxa_i , \CPLD_Con_1.RC_RLSel_13[8] , \CPLD_Con_1.RC_RLSel_13[4] , \CPLD_Con_1.RC_RLSel_13[7] , \CPLD_Con_1.RC_RLSel_13[15] , \CPLD_Con_1.RC_RLSel_13[6] , \CPLD_Con_1.RC_RLSel_13[10] , \CPLD_Con_1.RC_RLSel_13[5] , \CPLD_Con_1.RC_RLSel_13[9] , i_rst_n_c_i_en, \CPLD_Con_1.PMU_OC_2_8[24] , \CPLD_Con_1.RC_RLSel_13[14] , \CPLD_Con_1.RC_RLSel_13[13] , \CPLD_Con_1.PMU_OC_4_8[30] , \CPLD_Con_1.PMU_OC_4_8[19] , i_rst_n_c_i_rst, o_err_c, \CPLD_Con_1.DMM_en_22[15] , miso_shift31, \o_PMU_OC_4_c[31] , \o_PMU_OC_4_c[30] , \o_PMU_OC_4_c[29] , \o_PMU_OC_4_c[28] , \o_PMU_OC_4_c[27] , \o_PMU_OC_4_c[26] , \o_PMU_OC_4_c[25] , \o_PMU_OC_4_c[24] , \o_PMU_OC_4_c[23] , \o_PMU_OC_4_c[22] , \o_PMU_OC_4_c[21] , \o_PMU_OC_4_c[19] , \o_PMU_OC_4_c[18] , \o_PMU_OC_4_c[17] , \o_PMU_OC_4_c[16] , \o_PMU_OC_4_c[15] , \o_PMU_OC_4_c[14] , \o_PMU_OC_4_c[13] , \o_PMU_OC_4_c[12] , \o_PMU_OC_4_c[11] , \o_PMU_OC_4_c[10] , \o_PMU_OC_4_c[9] , \o_PMU_OC_4_c[8] , \o_PMU_OC_4_c[7] , \o_PMU_OC_4_c[6] , \o_PMU_OC_4_c[3] , \o_PMU_OC_4_c[2] , \o_PMU_OC_4_c[0] , \o_PMU_OC_3_c[31] , \o_PMU_OC_3_c[30] , \o_PMU_OC_3_c[29] , \o_PMU_OC_3_c[28] , \o_PMU_OC_3_c[27] , \o_PMU_OC_3_c[26] , \o_PMU_OC_3_c[25] , \o_PMU_OC_3_c[24] , \o_PMU_OC_3_c[23] , \o_PMU_OC_3_c[22] , \o_PMU_OC_3_c[21] , \o_PMU_OC_3_c[20] , \o_PMU_OC_3_c[19] , \o_PMU_OC_3_c[18] , \o_PMU_OC_3_c[17] , \o_PMU_OC_3_c[16] , \o_PMU_OC_3_c[15] , \o_PMU_OC_3_c[14] , \o_PMU_OC_3_c[13] , \o_PMU_OC_3_c[12] , \o_PMU_OC_3_c[11] , \o_PMU_OC_3_c[10] , \o_PMU_OC_3_c[9] , \o_PMU_OC_3_c[8] , \o_PMU_OC_3_c[6] , \o_PMU_OC_3_c[4] , \o_PMU_OC_3_c[2] , \o_PMU_OC_3_c[0] , \o_PMU_OC_2_c[31] , \o_PMU_OC_2_c[30] , \o_PMU_OC_2_c[29] , \o_PMU_OC_2_c[28] , \o_PMU_OC_2_c[27] , \o_PMU_OC_2_c[26] , \o_PMU_OC_2_c[25] , \o_PMU_OC_2_c[24] , \o_PMU_OC_2_c[23] , \o_PMU_OC_2_c[22] , \o_PMU_OC_2_c[21] , \o_PMU_OC_2_c[20] , \o_PMU_OC_2_c[19] , \o_PMU_OC_2_c[18] , \o_PMU_OC_2_c[17] , \o_PMU_OC_2_c[16] , \o_PMU_OC_2_c[15] , \o_PMU_OC_2_c[14] , \o_PMU_OC_2_c[13] , \o_PMU_OC_2_c[12] , \o_PMU_OC_2_c[11] , \o_PMU_OC_2_c[10] , \o_PMU_OC_2_c[9] , \o_PMU_OC_2_c[8] , \o_PMU_OC_2_c[6] , \o_PMU_OC_2_c[4] , \o_PMU_OC_2_c[2] , \o_PMU_OC_2_c[0] , \o_PMU_OC_1_c[31] , \o_PMU_OC_1_c[30] , \o_PMU_OC_1_c[29] , \o_PMU_OC_1_c[28] , \o_PMU_OC_1_c[27] , \o_PMU_OC_1_c[26] , \o_PMU_OC_1_c[25] , \o_PMU_OC_1_c[24] , \o_PMU_OC_1_c[23] , \o_PMU_OC_1_c[22] , \o_PMU_OC_1_c[21] , \o_PMU_OC_1_c[20] , \o_PMU_OC_1_c[19] , \o_PMU_OC_1_c[18] , \o_PMU_OC_1_c[17] , \o_PMU_OC_1_c[16] , \o_PMU_OC_1_c[15] , \o_PMU_OC_1_c[14] , \o_PMU_OC_1_c[13] , \o_PMU_OC_1_c[12] , \o_PMU_OC_1_c[11] , \o_PMU_OC_1_c[10] , \o_PMU_OC_1_c[9] , \o_PMU_OC_1_c[8] , \o_PMU_OC_1_c[7] , \o_PMU_OC_1_c[6] , \o_PMU_OC_1_c[5] , \o_PMU_OC_1_c[4] , \o_PMU_OC_1_c[3] , \o_PMU_OC_1_c[2] , \o_PMU_OC_1_c[1] , \o_PMU_OC_1_c[0] , \o_RC_RLSel_c[17] , \o_RC_RLSel_c[16] , \o_RC_RLSel_c[15] , \o_RC_RLSel_c[14] , \o_RC_RLSel_c[13] , \o_RC_RLSel_c[12] , \o_RC_RLSel_c[11] , \o_RC_RLSel_c[10] , \o_RC_RLSel_c[9] , \o_RC_RLSel_c[8] , \o_RC_RLSel_c[7] , \o_RC_RLSel_c[6] , \o_RC_RLSel_c[5] , \o_RC_RLSel_c[4] , \o_RC_RLSel_c[3] , \o_RC_RLSel_c[2] , \o_RC_RLSel_c[1] , \o_RC_RLSel_c[0] , o_RC_T32_c, o_RC_T31_c, o_RC_T30_c, o_RC_T29_c, o_RC_T28_c, o_RC_T27_c, o_IO_RC1_c, \o_DMM_EN_c[18] , \o_DMM_EN_c[17] , \o_DMM_EN_c[16] , \o_DMM_EN_c[15] , \o_DMM_EN_c[14] , \o_DMM_EN_c[13] , \o_DMM_EN_c[12] , \o_DMM_EN_c[11] , \o_DMM_EN_c[10] , \o_DMM_EN_c[9] , \o_DMM_EN_c[8] , \o_DMM_EN_c[7] , \o_DMM_EN_c[6] , \o_DMM_EN_c[5] , \o_DMM_EN_c[4] , \o_DMM_EN_c[3] , \o_DMM_EN_c[2] , \o_DMM_EN_c[1] , \o_DMM_EN_c[0] , i_cs_c, i_mosi_c, i_sclk_c, VCCI; SLICE_0 SLICE_0( .B1(i_rst_n_c), .A1(\CPLD_Con_1/RC_Tx_1_sqmuxa ), .B0(i_rst_n_c), .A0(\BUS_Con_1.cs_sync[0] ), .DI0(i_rst_n_c_i_set), .CLK(i_sys_clk_c), .F0(i_rst_n_c_i_set), .Q0(\BUS_Con_1.cs_sync_rep0[1] ), .F1(\CPLD_Con_1.err_flag_1_sqmuxa )); BUS_Con_1_SLICE_1 \BUS_Con_1/SLICE_1 ( .D1(\BUS_Con_1/N_244 ), .C1(\BUS_Con_1/cs_sync[1] ), .B1(\BUS_Con_1/bit_cnt[1] ), .A1(\BUS_Con_1/bit_cnt[0] ), .D0(\BUS_Con_1.sclk_sync[0] ), .C0(\BUS_Con_1/sclk_sync[1] ), .B0(\BUS_Con_1/bit_cnt[0] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/bit_cnt_6[1] ), .DI0(\BUS_Con_1/bit_cnt_6[0] ), .LSR(\BUS_Con_1/bit_cnt_0_sqmuxa_1_i_a2_RNISVNVG ), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/bit_cnt_6[0] ), .Q0(\BUS_Con_1/bit_cnt[0] ), .F1(\BUS_Con_1/bit_cnt_6[1] ), .Q1(\BUS_Con_1/bit_cnt[1] )); BUS_Con_1_SLICE_2 \BUS_Con_1/SLICE_2 ( .C1(\BUS_Con_1/un1_bit_cnt_9_c2 ), .B1(\BUS_Con_1/bit_cnt[3] ), .A1(\BUS_Con_1/bit_cnt[2] ), .B0(\BUS_Con_1/un1_bit_cnt_9_c2 ), .A0(\BUS_Con_1/bit_cnt[2] ), .DI1(\BUS_Con_1/bit_cnt_6[3] ), .DI0(\BUS_Con_1/bit_cnt_6[2] ), .LSR(\BUS_Con_1/bit_cnt_0_sqmuxa_1_i_a2_RNISVNVG ), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/bit_cnt_6[2] ), .Q0(\BUS_Con_1/bit_cnt[2] ), .F1(\BUS_Con_1/bit_cnt_6[3] ), .Q1(\BUS_Con_1/bit_cnt[3] )); BUS_Con_1_SLICE_3 \BUS_Con_1/SLICE_3 ( .C1(\BUS_Con_1/un1_bit_cnt_9_c4 ), .B1(\BUS_Con_1/bit_cnt[5] ), .A1(\BUS_Con_1/bit_cnt[4] ), .D0(\BUS_Con_1/un1_bit_cnt_9_c2 ), .C0(\BUS_Con_1/bit_cnt[4] ), .B0(\BUS_Con_1/bit_cnt[3] ), .A0(\BUS_Con_1/bit_cnt[2] ), .DI1(\BUS_Con_1/bit_cnt_6[5] ), .DI0(\BUS_Con_1/bit_cnt_6[4] ), .LSR(\BUS_Con_1/bit_cnt_0_sqmuxa_1_i_a2_RNISVNVG ), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/bit_cnt_6[4] ), .Q0(\BUS_Con_1/bit_cnt[4] ), .F1(\BUS_Con_1/bit_cnt_6[5] ), .Q1(\BUS_Con_1/bit_cnt[5] )); BUS_Con_1_SLICE_5 \BUS_Con_1/SLICE_5 ( .D1(\BUS_Con_1/bit_cnt[5] ), .C1(\BUS_Con_1/bit_cnt[3] ), .B1(\BUS_Con_1/bit_cnt[1] ), .A1(\BUS_Con_1/bit_cnt[0] ), .D0(\BUS_Con_1.sclk_sync[0] ), .C0(\BUS_Con_1/sclk_sync[1] ), .B0(\BUS_Con_1/data_readyc_2_0 ), .A0(\BUS_Con_1/data_readyc_3 ), .DI0(\BUS_Con_1/data_readyc ), .M1(\BUS_Con_1.cs_sync[0] ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/data_readyc ), .Q0(\BUS_Con_1/data_ready ), .F1(\BUS_Con_1/data_readyc_2_0 ), .Q1(\BUS_Con_1/cs_sync[1] )); BUS_Con_1_SLICE_6 \BUS_Con_1/SLICE_6 ( .C1(\BUS_Con_1/tx_buffer[1] ), .B1(\BUS_Con_1/miso_shift[0] ), .A1(\BUS_Con_1/cs_sync[1] ), .B0(\BUS_Con_1/tx_buffer[0] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[1] ), .DI0(\BUS_Con_1/miso_shift_6[0] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[0] ), .Q0(\BUS_Con_1/miso_shift[0] ), .F1(\BUS_Con_1/miso_shift_6[1] ), .Q1(\BUS_Con_1/miso_shift[1] )); BUS_Con_1_SLICE_7 \BUS_Con_1/SLICE_7 ( .C1(\BUS_Con_1/tx_buffer[3] ), .B1(\BUS_Con_1/miso_shift[2] ), .A1(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1/tx_buffer[2] ), .B0(\BUS_Con_1/miso_shift[1] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[3] ), .DI0(\BUS_Con_1/miso_shift_6[2] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[2] ), .Q0(\BUS_Con_1/miso_shift[2] ), .F1(\BUS_Con_1/miso_shift_6[3] ), .Q1(\BUS_Con_1/miso_shift[3] )); BUS_Con_1_SLICE_8 \BUS_Con_1/SLICE_8 ( .C1(\BUS_Con_1/tx_buffer[5] ), .B1(\BUS_Con_1/miso_shift[4] ), .A1(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1/tx_buffer[4] ), .B0(\BUS_Con_1/miso_shift[3] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[5] ), .DI0(\BUS_Con_1/miso_shift_6[4] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[4] ), .Q0(\BUS_Con_1/miso_shift[4] ), .F1(\BUS_Con_1/miso_shift_6[5] ), .Q1(\BUS_Con_1/miso_shift[5] )); BUS_Con_1_SLICE_9 \BUS_Con_1/SLICE_9 ( .C1(\BUS_Con_1/tx_buffer[7] ), .B1(\BUS_Con_1/miso_shift[6] ), .A1(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1/tx_buffer[6] ), .B0(\BUS_Con_1/miso_shift[5] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[7] ), .DI0(\BUS_Con_1/miso_shift_6[6] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[6] ), .Q0(\BUS_Con_1/miso_shift[6] ), .F1(\BUS_Con_1/miso_shift_6[7] ), .Q1(\BUS_Con_1/miso_shift[7] )); BUS_Con_1_SLICE_10 \BUS_Con_1/SLICE_10 ( .C1(\BUS_Con_1/tx_buffer[9] ), .B1(\BUS_Con_1/miso_shift[8] ), .A1(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1/tx_buffer[8] ), .B0(\BUS_Con_1/miso_shift[7] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[9] ), .DI0(\BUS_Con_1/miso_shift_6[8] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[8] ), .Q0(\BUS_Con_1/miso_shift[8] ), .F1(\BUS_Con_1/miso_shift_6[9] ), .Q1(\BUS_Con_1/miso_shift[9] )); BUS_Con_1_SLICE_11 \BUS_Con_1/SLICE_11 ( .C1(\BUS_Con_1/tx_buffer[11] ), .B1(\BUS_Con_1/miso_shift[10] ), .A1(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1/tx_buffer[10] ), .B0(\BUS_Con_1/miso_shift[9] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[11] ), .DI0(\BUS_Con_1/miso_shift_6[10] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[10] ), .Q0(\BUS_Con_1/miso_shift[10] ), .F1(\BUS_Con_1/miso_shift_6[11] ), .Q1(\BUS_Con_1/miso_shift[11] )); BUS_Con_1_SLICE_12 \BUS_Con_1/SLICE_12 ( .C1(\BUS_Con_1/tx_buffer[13] ), .B1(\BUS_Con_1/miso_shift[12] ), .A1(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1/tx_buffer[12] ), .B0(\BUS_Con_1/miso_shift[11] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[13] ), .DI0(\BUS_Con_1/miso_shift_6[12] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[12] ), .Q0(\BUS_Con_1/miso_shift[12] ), .F1(\BUS_Con_1/miso_shift_6[13] ), .Q1(\BUS_Con_1/miso_shift[13] )); BUS_Con_1_SLICE_13 \BUS_Con_1/SLICE_13 ( .C1(\BUS_Con_1/tx_buffer[15] ), .B1(\BUS_Con_1/miso_shift[14] ), .A1(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1/tx_buffer[14] ), .B0(\BUS_Con_1/miso_shift[13] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[15] ), .DI0(\BUS_Con_1/miso_shift_6[14] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[14] ), .Q0(\BUS_Con_1/miso_shift[14] ), .F1(\BUS_Con_1/miso_shift_6[15] ), .Q1(\BUS_Con_1/miso_shift[15] )); BUS_Con_1_SLICE_14 \BUS_Con_1/SLICE_14 ( .C1(\BUS_Con_1/tx_buffer[17] ), .B1(\BUS_Con_1/miso_shift[16] ), .A1(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1/tx_buffer[16] ), .B0(\BUS_Con_1/miso_shift[15] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[17] ), .DI0(\BUS_Con_1/miso_shift_6[16] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[16] ), .Q0(\BUS_Con_1/miso_shift[16] ), .F1(\BUS_Con_1/miso_shift_6[17] ), .Q1(\BUS_Con_1/miso_shift[17] )); BUS_Con_1_SLICE_15 \BUS_Con_1/SLICE_15 ( .C1(\BUS_Con_1/tx_buffer[19] ), .B1(\BUS_Con_1/miso_shift[18] ), .A1(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1/tx_buffer[18] ), .B0(\BUS_Con_1/miso_shift[17] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[19] ), .DI0(\BUS_Con_1/miso_shift_6[18] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[18] ), .Q0(\BUS_Con_1/miso_shift[18] ), .F1(\BUS_Con_1/miso_shift_6[19] ), .Q1(\BUS_Con_1/miso_shift[19] )); BUS_Con_1_SLICE_16 \BUS_Con_1/SLICE_16 ( .C1(\BUS_Con_1/tx_buffer[21] ), .B1(\BUS_Con_1/miso_shift[20] ), .A1(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1/tx_buffer[20] ), .B0(\BUS_Con_1/miso_shift[19] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[21] ), .DI0(\BUS_Con_1/miso_shift_6[20] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[20] ), .Q0(\BUS_Con_1/miso_shift[20] ), .F1(\BUS_Con_1/miso_shift_6[21] ), .Q1(\BUS_Con_1/miso_shift[21] )); BUS_Con_1_SLICE_17 \BUS_Con_1/SLICE_17 ( .C1(\BUS_Con_1/tx_buffer[23] ), .B1(\BUS_Con_1/miso_shift[22] ), .A1(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1/tx_buffer[22] ), .B0(\BUS_Con_1/miso_shift[21] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[23] ), .DI0(\BUS_Con_1/miso_shift_6[22] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[22] ), .Q0(\BUS_Con_1/miso_shift[22] ), .F1(\BUS_Con_1/miso_shift_6[23] ), .Q1(\BUS_Con_1/miso_shift[23] )); BUS_Con_1_SLICE_18 \BUS_Con_1/SLICE_18 ( .B1(\BUS_Con_1/miso_shift[24] ), .A1(\BUS_Con_1/cs_sync[1] ), .B0(\BUS_Con_1/miso_shift[23] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[25] ), .DI0(\BUS_Con_1/miso_shift_6[24] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[24] ), .Q0(\BUS_Con_1/miso_shift[24] ), .F1(\BUS_Con_1/miso_shift_6[25] ), .Q1(\BUS_Con_1/miso_shift[25] )); BUS_Con_1_SLICE_19 \BUS_Con_1/SLICE_19 ( .B1(\BUS_Con_1/miso_shift[26] ), .A1(\BUS_Con_1/cs_sync[1] ), .B0(\BUS_Con_1/miso_shift[25] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[27] ), .DI0(\BUS_Con_1/miso_shift_6[26] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[26] ), .Q0(\BUS_Con_1/miso_shift[26] ), .F1(\BUS_Con_1/miso_shift_6[27] ), .Q1(\BUS_Con_1/miso_shift[27] )); BUS_Con_1_SLICE_20 \BUS_Con_1/SLICE_20 ( .B1(\BUS_Con_1/miso_shift[28] ), .A1(\BUS_Con_1/cs_sync[1] ), .B0(\BUS_Con_1/miso_shift[27] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI1(\BUS_Con_1/miso_shift_6[29] ), .DI0(\BUS_Con_1/miso_shift_6[28] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[28] ), .Q0(\BUS_Con_1/miso_shift[28] ), .F1(\BUS_Con_1/miso_shift_6[29] ), .Q1(\BUS_Con_1/miso_shift[29] )); BUS_Con_1_SLICE_21 \BUS_Con_1/SLICE_21 ( .D1(\BUS_Con_1/cs_sync[1] ), .C1(\BUS_Con_1.cs_sync[0] ), .B1(\BUS_Con_1/bit_cnt[4] ), .A1(\BUS_Con_1/bit_cnt[2] ), .B0(\BUS_Con_1/miso_shift[29] ), .A0(\BUS_Con_1/cs_sync[1] ), .DI0(\BUS_Con_1/miso_shift_6[30] ), .CE(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/miso_shift_6[30] ), .Q0(\BUS_Con_1/miso_shift[30] ), .F1(\BUS_Con_1/data_readyc_3 )); BUS_Con_1_SLICE_40 \BUS_Con_1/SLICE_40 ( .D1(i_rst_n_c), .C1(\BUS_Con_1/N_249 ), .B1(\BUS_Con_1/state[1] ), .A1(\BUS_Con_1/state[0] ), .D0(reg_busy), .C0(i_rst_n_c), .B0(\BUS_Con_1/state[0] ), .A0(\BUS_Con_1/m3_i_o2 ), .DI1(\BUS_Con_1/state_nss[1] ), .DI0(\BUS_Con_1/state_nss[0] ), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/state_nss[0] ), .Q0(\BUS_Con_1/state[0] ), .F1(\BUS_Con_1/state_nss[1] ), .Q1(\BUS_Con_1/state[1] )); SLICE_62 SLICE_62( .C1(\DC_Con4[0] ), .B1(\DC_Con3[0] ), .A1(\DC_Con2[0] ), .D0(\DC_Con4[0] ), .C0(\DC_Con3[0] ), .B0(\DC_Con2[0] ), .A0(\DC_Con1[0] ), .DI0(\CPLD_Con_1/dc_t_2 ), .M1(\BUS_Con_1.mosi_sync[0] ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/dc_t_2 ), .Q0(\CPLD_Con_1/dc_t ), .F1(\CPLD_Con_1/CO0 ), .Q1(\BUS_Con_1/mosi_sync[1] )); CPLD_Con_1_SLICE_63 \CPLD_Con_1/SLICE_63 ( .D1(\CPLD_Con_1/N_6_0 ), .C1(\CPLD_Con_1/CO0 ), .B1(\CPLD_Con_1/N_18_c1 ), .A1(\CPLD_Con_1/N_18_0_c1 ), .D0(\CPLD_Con_1/N_6_0 ), .C0(\CPLD_Con_1/CO0 ), .B0(\CPLD_Con_1/N_18_c1 ), .A0(\CPLD_Con_1/N_18_0_c1 ), .DI1(\CPLD_Con_1/N_20 ), .DI0(\CPLD_Con_1/N_19 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_19 ), .Q0(\CPLD_Con_1/en_t[1] ), .F1(\CPLD_Con_1/N_20 ), .Q1(\CPLD_Con_1/en_t[2] )); SLICE_64 SLICE_64( .C1(\freq1_relay[0] ), .B1(\CPLD_Con_1/m2 ), .A1(\CPLD_Con_1/SUM0 ), .D0(\CPLD_Con_1/N_6_0 ), .C0(\CPLD_Con_1/CO0 ), .B0(\CPLD_Con_1/N_18_c1 ), .A0(\CPLD_Con_1/N_18_0_c1 ), .DI0(\CPLD_Con_1/N_21 ), .M1(\BUS_Con_1.sclk_sync[0] ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_21 ), .Q0(\CPLD_Con_1/en_t[3] ), .F1(\CPLD_Con_1/N_18_0_c1 ), .Q1(\BUS_Con_1/sclk_sync[1] )); CPLD_Con_1_SLICE_67 \CPLD_Con_1/SLICE_67 ( .D1(\freq4_relay[0] ), .C1(\freq3_relay[0] ), .B1(\freq2_relay[0] ), .A1(\freq1_relay[0] ), .D0(\freq4_relay[0] ), .C0(\freq3_relay[0] ), .B0(\freq2_relay[0] ), .A0(\freq1_relay[0] ), .DI0(\CPLD_Con_1/freq_t_2 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/freq_t_2 ), .Q0(\CPLD_Con_1/freq_t ), .F1(\CPLD_Con_1.io_RC_2 )); CPLD_Reg_1_SLICE_74 \CPLD_Reg_1/SLICE_74 ( .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .Q0(\CPLD_Reg_1.regtable[9]_fast[8] )); CPLD_Reg_1_SLICE_75 \CPLD_Reg_1/SLICE_75 ( .D1(\reg_addr[6] ), .C1(\reg_addr[5] ), .B1(\reg_addr[4] ), .A1(\CPLD_Reg_1/N_1167 ), .D0(con_exec), .C0(cmd_valid), .B0(\CPLD_Reg_1/state[0] ), .A0(\CPLD_Reg_1/err_flag8 ), .DI0(\CPLD_Reg_1/N_812 ), .CE(\CPLD_Reg_1/un10_0 ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/N_812 ), .Q0(\CPLD_Reg_1/reg_err_flag ), .F1(\CPLD_Reg_1/err_flag8 )); CPLD_Reg_1_SLICE_171 \CPLD_Reg_1/SLICE_171 ( .B1(o_con_done_c), .A1(\CPLD_Reg_1/state[1] ), .D0(\w_data[23] ), .C0(o_con_done_c), .B0(\CPLD_Reg_1/state[1] ), .A0(\CPLD_Reg_1/regtable[1][23] ), .DI0(\CPLD_Reg_1/N_1057_i ), .CE(\CPLD_Reg_1/un12_i ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/N_1057_i ), .Q0(\CPLD_Reg_1/regtable[1][23] ), .F1(\CPLD_Reg_1/N_22 )); CPLD_Reg_1_SLICE_212 \CPLD_Reg_1/SLICE_212 ( .M1(\w_data[15] ), .M0(\w_data[16] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .Q0(\CPLD_Reg_1/regtable[9][16] ), .Q1(\CPLD_Reg_1/regtable[9][15] )); CPLD_Reg_1_SLICE_213 \CPLD_Reg_1/SLICE_213 ( .D1(\CPLD_Reg_1/state[0] ), .C1(\CPLD_Reg_1/N_25 ), .B1(\CPLD_Reg_1/N_22 ), .A1(\CPLD_Reg_1/N_21 ), .D0(cmd_valid), .C0(\CPLD_Reg_1/state[0] ), .B0(\CPLD_Reg_1/N_22 ), .A0(\CPLD_Reg_1/N_21 ), .DI1(\CPLD_Reg_1/state_ns[1] ), .DI0(\CPLD_Reg_1/state_ns[0] ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/state_ns[0] ), .Q0(\CPLD_Reg_1/state[0] ), .F1(\CPLD_Reg_1/state_ns[1] ), .Q1(\CPLD_Reg_1/state[1] )); CPLD_Reg_1_SLICE_248 \CPLD_Reg_1/SLICE_248 ( .M1(\w_data[20] ), .M0(\w_data[21] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .Q0(\DC_Con4[21] ), .Q1(\DC_Con4[20] )); CPLD_Reg_1_SLICE_249 \CPLD_Reg_1/SLICE_249 ( .M1(\w_data[22] ), .M0(\w_data[23] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .Q0(\DC_Con4[23] ), .Q1(\DC_Con4[22] )); BUS_Con_1_SLICE_250 \BUS_Con_1/SLICE_250 ( .D1(\BUS_Con_1/err_flag_1_sqmuxa_0_a2_0_0 ), .C1(\BUS_Con_1.cs_sync[0] ), .B1(\BUS_Con_1/bit_cnt[4] ), .A1(\BUS_Con_1/bit_cnt[2] ), .D0(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1.sclk_sync[0] ), .B0(\BUS_Con_1/sclk_sync[1] ), .A0(\BUS_Con_1/N_241 ), .DI0(\BUS_Con_1/N_243_i ), .CE(\BUS_Con_1/N_238_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/N_243_i ), .Q0(bus_err_flag), .F1(\BUS_Con_1/N_241 )); BUS_Con_1_SLICE_251 \BUS_Con_1/SLICE_251 ( .D1(\BUS_Con_1/data_ready ), .C1(reg_busy), .B1(\BUS_Con_1/state[0] ), .A1(\BUS_Con_1/state[1] ), .D0(reg_busy), .C0(\BUS_Con_1/state[1] ), .B0(\BUS_Con_1/state[0] ), .A0(\BUS_Con_1/data_ready ), .DI0(\BUS_Con_1/N_34_i_0 ), .CE(\BUS_Con_1/m3_i_o2 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/N_34_i_0 ), .Q0(cmd_valid), .F1(\BUS_Con_1/m3_i_o2 )); CPLD_Reg_1_SLICE_252 \CPLD_Reg_1/SLICE_252 ( .B1(con_exec), .A1(\CPLD_Reg_1/state[1] ), .D0(o_con_done_c), .C0(\CPLD_Reg_1/state[1] ), .B0(con_exec), .A0(\w_data[0] ), .DI0(\CPLD_Reg_1/regtable[1]_RNO[0] ), .CE(\CPLD_Reg_1/un12_i ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/regtable[1]_RNO[0] ), .Q0(con_exec), .F1(\CPLD_Reg_1/N_21 )); CPLD_Reg_1_SLICE_253 \CPLD_Reg_1/SLICE_253 ( .M0(\CPLD_Reg_1/state[0] ), .CE(\CPLD_Reg_1/un11_0 ), .CLK(i_sys_clk_c), .Q0(con_rvalid)); CPLD_Con_1_SLICE_254 \CPLD_Con_1/SLICE_254 ( .D1(\CPLD_Con_1/RC_VISel41_0_a2_0_a3_RNILT4CU4 ), .C1(\CPLD_Con_1/g0_2 ), .B1(\CPLD_Con_1/err_flag_0_sqmuxa_0_0 ), .A1(\CPLD_Con_1/err_flag25 ), .C0(\CPLD_Con_1/un1_err_flag_0_sqmuxa ), .B0(\CPLD_Con_1/g0_8_1_0 ), .A0(\CPLD_Con_1/RC_Tx_0_sqmuxa ), .DI0(\CPLD_Con_1/un1_RC_Tx_0_sqmuxa_1 ), .CE(\CPLD_Con_1/err_flag_RNO ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_RC_Tx_0_sqmuxa_1 ), .Q0(cpld_err_flag), .F1(\CPLD_Con_1/un1_err_flag_0_sqmuxa )); CPLD_Con_1_SLICE_278 \CPLD_Con_1/SLICE_278 ( .D1(\o_PMU_OC_2_c[3] ), .C1(\CPLD_Con_1/un1_exec_flag_3_0_0_RNISFCLD4 ), .B1(\CPLD_Con_1/N_103 ), .A1(\CPLD_Con_1.un1_exec_flag_3_i ), .D0(\o_PMU_OC_2_c[1] ), .C0(\CPLD_Con_1/un1_exec_flag_3_0_0_RNISFCLD4 ), .B0(\CPLD_Con_1.un1_exec_flag_3_i ), .A0(\CPLD_Con_1/PMU_OC_2_8[1] ), .DI1(\CPLD_Con_1/PMU_OC_2d_0[3] ), .DI0(\CPLD_Con_1/PMU_OC_2d_0[1] ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/PMU_OC_2d_0[1] ), .Q0(\o_PMU_OC_2_c[1] ), .F1(\CPLD_Con_1/PMU_OC_2d_0[3] ), .Q1(\o_PMU_OC_2_c[3] )); CPLD_Con_1_SLICE_279 \CPLD_Con_1/SLICE_279 ( .D1(\o_PMU_OC_2_c[7] ), .C1(\CPLD_Con_1/un1_exec_flag_3_0_0_RNISFCLD4 ), .B1(\CPLD_Con_1/N_64 ), .A1(\CPLD_Con_1.un1_exec_flag_3_i ), .D0(\o_PMU_OC_2_c[5] ), .C0(\CPLD_Con_1/un1_exec_flag_3_0_0_RNISFCLD4 ), .B0(\CPLD_Con_1/N_63 ), .A0(\CPLD_Con_1.un1_exec_flag_3_i ), .DI1(\CPLD_Con_1/PMU_OC_2d_0[7] ), .DI0(\CPLD_Con_1/PMU_OC_2d_0[5] ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/PMU_OC_2d_0[5] ), .Q0(\o_PMU_OC_2_c[5] ), .F1(\CPLD_Con_1/PMU_OC_2d_0[7] ), .Q1(\o_PMU_OC_2_c[7] )); CPLD_Con_1_SLICE_280 \CPLD_Con_1/SLICE_280 ( .D1(\o_PMU_OC_3_c[3] ), .C1(\CPLD_Con_1/un1_exec_flag_2_0_0_RNI3RHOG1 ), .B1(\CPLD_Con_1/N_144 ), .A1(\CPLD_Con_1.un1_exec_flag_2_i ), .D0(\o_PMU_OC_3_c[1] ), .C0(\CPLD_Con_1/un1_exec_flag_2_0_0_RNI3RHOG1 ), .B0(\CPLD_Con_1.un1_exec_flag_2_i ), .A0(\CPLD_Con_1/PMU_OC_3_8[1] ), .DI1(\CPLD_Con_1/PMU_OC_3d_0[3] ), .DI0(\CPLD_Con_1/PMU_OC_3d_0[1] ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/PMU_OC_3d_0[1] ), .Q0(\o_PMU_OC_3_c[1] ), .F1(\CPLD_Con_1/PMU_OC_3d_0[3] ), .Q1(\o_PMU_OC_3_c[3] )); CPLD_Con_1_SLICE_281 \CPLD_Con_1/SLICE_281 ( .D1(\o_PMU_OC_3_c[7] ), .C1(\CPLD_Con_1/un1_exec_flag_2_0_0_RNI3RHOG1 ), .B1(\CPLD_Con_1/N_148 ), .A1(\CPLD_Con_1.un1_exec_flag_2_i ), .D0(\o_PMU_OC_3_c[5] ), .C0(\CPLD_Con_1/un1_exec_flag_2_0_0_RNI3RHOG1 ), .B0(\CPLD_Con_1/N_147 ), .A0(\CPLD_Con_1.un1_exec_flag_2_i ), .DI1(\CPLD_Con_1/PMU_OC_3d_0[7] ), .DI0(\CPLD_Con_1/PMU_OC_3d_0[5] ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/PMU_OC_3d_0[5] ), .Q0(\o_PMU_OC_3_c[5] ), .F1(\CPLD_Con_1/PMU_OC_3d_0[7] ), .Q1(\o_PMU_OC_3_c[7] )); CPLD_Con_1_SLICE_282 \CPLD_Con_1/SLICE_282 ( .D1(\o_PMU_OC_4_c[4] ), .C1(\CPLD_Con_1/PMU_OC_4_8_0_a2_RNIL1I393[20] ), .B1(N_195), .A1(\CPLD_Con_1.un1_exec_flag_8_i ), .D0(\o_PMU_OC_4_c[1] ), .C0(\CPLD_Con_1/PMU_OC_4_8_0_a2_RNIL1I393[20] ), .B0(\CPLD_Con_1/N_198 ), .A0(\CPLD_Con_1.un1_exec_flag_8_i ), .DI1(\CPLD_Con_1/PMU_OC_4d_0[4] ), .DI0(\CPLD_Con_1/PMU_OC_4d_0[1] ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/PMU_OC_4d_0[1] ), .Q0(\o_PMU_OC_4_c[1] ), .F1(\CPLD_Con_1/PMU_OC_4d_0[4] ), .Q1(\o_PMU_OC_4_c[4] )); CPLD_Con_1_SLICE_283 \CPLD_Con_1/SLICE_283 ( .D1(\o_PMU_OC_4_c[20] ), .C1(\CPLD_Con_1/PMU_OC_4_8_0_a2_RNIL1I393[20] ), .B1(N_193), .A1(\CPLD_Con_1.un1_exec_flag_8_i ), .D0(\o_PMU_OC_4_c[5] ), .C0(\CPLD_Con_1/PMU_OC_4_8_0_a2_RNIL1I393[20] ), .B0(N_194), .A0(\CPLD_Con_1.un1_exec_flag_8_i ), .DI1(\CPLD_Con_1/PMU_OC_4d_0[20] ), .DI0(\CPLD_Con_1/PMU_OC_4d_0[5] ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/PMU_OC_4d_0[5] ), .Q0(\o_PMU_OC_4_c[5] ), .F1(\CPLD_Con_1/PMU_OC_4d_0[20] ), .Q1(\o_PMU_OC_4_c[20] )); CPLD_Con_1_SLICE_284 \CPLD_Con_1/SLICE_284 ( .D1(\DC_Con4[22] ), .C1(\DC_Con3[22] ), .B1(\CPLD_Con_1/dc_slot_flag[3] ), .A1(\CPLD_Con_1/dc_slot_flag[2] ), .D0(\CPLD_Con_1/dc_slot_flag[1] ), .C0(\CPLD_Con_1/dc_slot_flag[0] ), .B0(\CPLD_Con_1/m9_0_1_tz ), .A0(\CPLD_Con_1/m9_0_0 ), .DI0(\CPLD_Con_1/RC_VISel_6 ), .CE(\CPLD_Con_1/g0_8_1_0 ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/RC_VISel_6 ), .Q0(o_RC_ISel_c), .F1(\CPLD_Con_1/m9_0_1_tz )); CPLD_Reg_1_SLICE_286 \CPLD_Reg_1/SLICE_286 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[0] ), .A1(\CPLD_Reg_1/regtable[14][0] ), .C0(reg_addr_3_rep2), .B0(\freq1_relay[0] ), .A0(\CPLD_Reg_1/regtable[10][0] ), .DI1(\CPLD_Reg_1/rdata_reg_2[0] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_350 ), .FXA(\CPLD_Reg_1/N_326 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_230 ), .Q1(\r_data[0] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[0] )); CPLD_Reg_1_SLICE_287 \CPLD_Reg_1/SLICE_287 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[1] ), .A1(\CPLD_Reg_1/regtable[14][1] ), .C0(reg_addr_3_rep2), .B0(\freq1_relay[1] ), .A0(\CPLD_Reg_1/regtable[10][1] ), .DI1(\CPLD_Reg_1/rdata_reg_2[1] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_351 ), .FXA(\CPLD_Reg_1/N_327 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_231 ), .Q1(\r_data[1] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[1] )); CPLD_Reg_1_SLICE_288 \CPLD_Reg_1/SLICE_288 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[2] ), .A1(\CPLD_Reg_1/regtable[14][2] ), .C0(reg_addr_3_rep2), .B0(\freq1_relay[2] ), .A0(\CPLD_Reg_1/regtable[10][2] ), .DI1(\CPLD_Reg_1/rdata_reg_2[2] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_352 ), .FXA(\CPLD_Reg_1/N_328 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_232 ), .Q1(\r_data[2] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[2] )); CPLD_Reg_1_SLICE_289 \CPLD_Reg_1/SLICE_289 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[3] ), .A1(\CPLD_Reg_1/regtable[14][3] ), .C0(reg_addr_3_rep2), .B0(\freq1_relay[3] ), .A0(\CPLD_Reg_1/regtable[10][3] ), .DI1(\CPLD_Reg_1/rdata_reg_2[3] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_353 ), .FXA(\CPLD_Reg_1/N_329 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_233 ), .Q1(\r_data[3] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[3] )); CPLD_Reg_1_SLICE_290 \CPLD_Reg_1/SLICE_290 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[4] ), .A1(\CPLD_Reg_1/regtable[14][4] ), .C0(reg_addr_3_rep2), .B0(\freq1_relay[4] ), .A0(\CPLD_Reg_1/regtable[10][4] ), .DI1(\CPLD_Reg_1/rdata_reg_2[4] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_354 ), .FXA(\CPLD_Reg_1/N_330 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_234 ), .Q1(\r_data[4] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[4] )); CPLD_Reg_1_SLICE_291 \CPLD_Reg_1/SLICE_291 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[5] ), .A1(\CPLD_Reg_1/regtable[14][5] ), .C0(reg_addr_3_rep2), .B0(\freq1_relay[5] ), .A0(\CPLD_Reg_1/regtable[10][5] ), .DI1(\CPLD_Reg_1/rdata_reg_2[5] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_355 ), .FXA(\CPLD_Reg_1/N_331 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_235 ), .Q1(\r_data[5] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[5] )); CPLD_Reg_1_SLICE_292 \CPLD_Reg_1/SLICE_292 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[6] ), .A1(\CPLD_Reg_1/regtable[14][6] ), .C0(reg_addr_3_rep2), .B0(\freq1_relay[6] ), .A0(\CPLD_Reg_1/regtable[10][6] ), .DI1(\CPLD_Reg_1/rdata_reg_2[6] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_356 ), .FXA(\CPLD_Reg_1/N_332 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_236 ), .Q1(\r_data[6] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[6] )); CPLD_Reg_1_SLICE_293 \CPLD_Reg_1/SLICE_293 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[7] ), .A1(\CPLD_Reg_1/regtable[14][7] ), .C0(reg_addr_3_rep2), .B0(\freq1_relay[7] ), .A0(\CPLD_Reg_1/regtable[10][7] ), .DI1(\CPLD_Reg_1/rdata_reg_2[7] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_357 ), .FXA(\CPLD_Reg_1/N_333 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_237 ), .Q1(\r_data[7] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[7] )); CPLD_Reg_1_SLICE_294 \CPLD_Reg_1/SLICE_294 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[8] ), .A1(\CPLD_Reg_1/regtable[14][8] ), .C0(\reg_addr[3] ), .B0(\freq1_relay[8] ), .A0(\CPLD_Reg_1/regtable[10][8] ), .DI1(\CPLD_Reg_1/rdata_reg_2[8] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_358 ), .FXA(\CPLD_Reg_1/N_334 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_238 ), .Q1(\r_data[8] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[8] )); CPLD_Reg_1_SLICE_295 \CPLD_Reg_1/SLICE_295 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[9] ), .A1(\CPLD_Reg_1/regtable[14][9] ), .C0(\reg_addr[3] ), .B0(\freq1_relay[9] ), .A0(\CPLD_Reg_1/regtable[10][9] ), .DI1(\CPLD_Reg_1/rdata_reg_2[9] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_359 ), .FXA(\CPLD_Reg_1/N_335 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_239 ), .Q1(\r_data[9] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[9] )); CPLD_Reg_1_SLICE_296 \CPLD_Reg_1/SLICE_296 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[14][10] ), .A1(\CPLD_Reg_1/regtable[6][10] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][10] ), .A0(\CPLD_Reg_1/regtable[2][10] ), .DI1(\CPLD_Reg_1/rdata_reg_2[10] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_118 ), .FXA(\CPLD_Reg_1/N_336 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_1234 ), .Q1(\r_data[10] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[10] )); CPLD_Reg_1_SLICE_297 \CPLD_Reg_1/SLICE_297 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[14][11] ), .A1(\CPLD_Reg_1/regtable[6][11] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][11] ), .A0(\CPLD_Reg_1/regtable[2][11] ), .DI1(\CPLD_Reg_1/rdata_reg_2[11] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_1246 ), .FXA(\CPLD_Reg_1/N_337 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_1235 ), .Q1(\r_data[11] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[11] )); CPLD_Reg_1_SLICE_298 \CPLD_Reg_1/SLICE_298 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[14][12] ), .A1(\CPLD_Reg_1/regtable[6][12] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][12] ), .A0(\CPLD_Reg_1/regtable[2][12] ), .DI1(\CPLD_Reg_1/rdata_reg_2[12] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_1245 ), .FXA(\CPLD_Reg_1/N_338 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_1236 ), .Q1(\r_data[12] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[12] )); CPLD_Reg_1_SLICE_299 \CPLD_Reg_1/SLICE_299 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[14][13] ), .A1(\CPLD_Reg_1/regtable[6][13] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][13] ), .A0(\CPLD_Reg_1/regtable[2][13] ), .DI1(\CPLD_Reg_1/rdata_reg_2[13] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_1244 ), .FXA(\CPLD_Reg_1/N_339 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_1237 ), .Q1(\r_data[13] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[13] )); CPLD_Reg_1_SLICE_300 \CPLD_Reg_1/SLICE_300 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[14][14] ), .A1(\CPLD_Reg_1/regtable[6][14] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][14] ), .A0(\CPLD_Reg_1/regtable[2][14] ), .DI1(\CPLD_Reg_1/rdata_reg_2[14] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_1243 ), .FXA(\CPLD_Reg_1/N_340 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_1238 ), .Q1(\r_data[14] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[14] )); CPLD_Reg_1_SLICE_301 \CPLD_Reg_1/SLICE_301 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[14][15] ), .A1(\CPLD_Reg_1/regtable[6][15] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][15] ), .A0(\CPLD_Reg_1/regtable[2][15] ), .DI1(\CPLD_Reg_1/rdata_reg_2[15] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_1242 ), .FXA(\CPLD_Reg_1/N_341 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_1239 ), .Q1(\r_data[15] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[15] )); CPLD_Reg_1_SLICE_302 \CPLD_Reg_1/SLICE_302 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[14][16] ), .A1(\CPLD_Reg_1/regtable[6][16] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][16] ), .A0(\CPLD_Reg_1/regtable[2][16] ), .DI1(\CPLD_Reg_1/rdata_reg_2[16] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_1241 ), .FXA(\CPLD_Reg_1/N_342 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_1240 ), .Q1(\r_data[16] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[16] )); CPLD_Reg_1_SLICE_303 \CPLD_Reg_1/SLICE_303 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[17] ), .A1(\CPLD_Reg_1/regtable[14][17] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][17] ), .A0(\CPLD_Reg_1/regtable[2][17] ), .DI1(\CPLD_Reg_1/rdata_reg_2[17] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_367 ), .FXA(\CPLD_Reg_1/N_343 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_247 ), .Q1(\r_data[17] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[17] )); CPLD_Reg_1_SLICE_304 \CPLD_Reg_1/SLICE_304 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[18] ), .A1(\CPLD_Reg_1/regtable[14][18] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][18] ), .A0(\CPLD_Reg_1/regtable[2][18] ), .DI1(\CPLD_Reg_1/rdata_reg_2[18] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_368 ), .FXA(\CPLD_Reg_1/N_344 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_248 ), .Q1(\r_data[18] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[18] )); CPLD_Reg_1_SLICE_305 \CPLD_Reg_1/SLICE_305 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[19] ), .A1(\CPLD_Reg_1/regtable[14][19] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][19] ), .A0(\CPLD_Reg_1/regtable[2][19] ), .DI1(\CPLD_Reg_1/rdata_reg_2[19] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_369 ), .FXA(\CPLD_Reg_1/N_345 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_249 ), .Q1(\r_data[19] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[19] )); CPLD_Reg_1_SLICE_306 \CPLD_Reg_1/SLICE_306 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[20] ), .A1(\CPLD_Reg_1/regtable[14][20] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][20] ), .A0(\CPLD_Reg_1/regtable[2][20] ), .DI1(\CPLD_Reg_1/rdata_reg_2[20] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_370 ), .FXA(\CPLD_Reg_1/N_346 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_250 ), .Q1(\r_data[20] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[20] )); CPLD_Reg_1_SLICE_307 \CPLD_Reg_1/SLICE_307 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[21] ), .A1(\CPLD_Reg_1/regtable[14][21] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][21] ), .A0(\CPLD_Reg_1/regtable[2][21] ), .DI1(\CPLD_Reg_1/rdata_reg_2[21] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_371 ), .FXA(\CPLD_Reg_1/N_347 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_251 ), .Q1(\r_data[21] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[21] )); CPLD_Reg_1_SLICE_308 \CPLD_Reg_1/SLICE_308 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[22] ), .A1(\CPLD_Reg_1/regtable[14][22] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][22] ), .A0(\CPLD_Reg_1/regtable[2][22] ), .DI1(\CPLD_Reg_1/rdata_reg_2[22] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_372 ), .FXA(\CPLD_Reg_1/N_348 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_252 ), .Q1(\r_data[22] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[22] )); CPLD_Reg_1_SLICE_309 \CPLD_Reg_1/SLICE_309 ( .C1(reg_addr_3_rep1), .B1(\DC_Con1[23] ), .A1(\CPLD_Reg_1/regtable[14][23] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[10][23] ), .A0(\CPLD_Reg_1/regtable[2][23] ), .DI1(\CPLD_Reg_1/rdata_reg_2[23] ), .M1(\reg_addr[1] ), .M0(reg_addr_2_rep1), .FXB(\CPLD_Reg_1/N_373 ), .FXA(\CPLD_Reg_1/N_349 ), .CE(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .CLK(i_sys_clk_c), .OFX0(\CPLD_Reg_1/N_253 ), .Q1(\r_data[23] ), .OFX1(\CPLD_Reg_1/rdata_reg_2[23] )); BUS_Con_1_SLICE_311 \BUS_Con_1/SLICE_311 ( .M1(\BUS_Con_1/recv_reg[25] ), .M0(\BUS_Con_1/recv_reg[26] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(\reg_addr[2] ), .Q1(\reg_addr[1] )); BUS_Con_1_SLICE_312 \BUS_Con_1/SLICE_312 ( .M1(\BUS_Con_1/recv_reg[27] ), .M0(\BUS_Con_1/recv_reg[28] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(\reg_addr[4] ), .Q1(\reg_addr[3] )); BUS_Con_1_SLICE_313 \BUS_Con_1/SLICE_313 ( .M1(\BUS_Con_1/recv_reg[29] ), .M0(\BUS_Con_1/recv_reg[30] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(\reg_addr[6] ), .Q1(\reg_addr[5] )); CPLD_Reg_1_SLICE_319 \CPLD_Reg_1/SLICE_319 ( .B1(con_exec), .A1(cmd_valid), .D0(o_con_done_c), .C0(\CPLD_Reg_1/state[1] ), .B0(\CPLD_Reg_1/state[0] ), .A0(\CPLD_Reg_1/busy_flag_1_i_a3_0_0 ), .DI0(\CPLD_Reg_1/N_43_i ), .CE(\CPLD_Reg_1/state_6_d_i ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/N_43_i ), .Q0(reg_busy), .F1(\CPLD_Reg_1/busy_flag_1_i_a3_0_0 )); BUS_Con_1_SLICE_320 \BUS_Con_1/SLICE_320 ( .M1(\BUS_Con_1/recv_reg[27] ), .M0(\BUS_Con_1/recv_reg[0] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(\w_data[0] ), .Q1(\reg_addr_fast[3] )); BUS_Con_1_SLICE_321 \BUS_Con_1/SLICE_321 ( .M1(\BUS_Con_1/recv_reg[1] ), .M0(\BUS_Con_1/recv_reg[2] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(\w_data[2] ), .Q1(\w_data[1] )); BUS_Con_1_SLICE_322 \BUS_Con_1/SLICE_322 ( .M1(\BUS_Con_1/recv_reg[3] ), .M0(\BUS_Con_1/recv_reg[4] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(\w_data[4] ), .Q1(\w_data[3] )); BUS_Con_1_SLICE_323 \BUS_Con_1/SLICE_323 ( .M1(\BUS_Con_1/recv_reg[5] ), .M0(\BUS_Con_1/recv_reg[6] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(\w_data[6] ), .Q1(\w_data[5] )); BUS_Con_1_SLICE_324 \BUS_Con_1/SLICE_324 ( .M1(\BUS_Con_1/recv_reg[7] ), .M0(\BUS_Con_1/recv_reg[8] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(\w_data[8] ), .Q1(\w_data[7] )); BUS_Con_1_SLICE_326 \BUS_Con_1/SLICE_326 ( .B0(\BUS_Con_1/state[1] ), .A0(\BUS_Con_1/state[0] ), .M1(\BUS_Con_1/recv_reg[13] ), .M0(\BUS_Con_1/recv_reg[12] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .F0(o_wready_c), .Q0(\w_data[12] ), .Q1(\w_data[13] )); SLICE_327 SLICE_327( .C1(\reg_addr[6] ), .B1(\reg_addr[5] ), .A1(\reg_addr[4] ), .A0(o_RC_ISel_c), .M1(\BUS_Con_1/recv_reg[15] ), .M0(\BUS_Con_1/recv_reg[14] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .F0(o_RC_ISel_c_i), .Q0(\w_data[14] ), .F1(\CPLD_Reg_1/un34_regtable_5[1] ), .Q1(\w_data[15] )); SLICE_328 SLICE_328( .B1(\DC_Con2[2] ), .A1(\DC_Con2[1] ), .C0(\DC_Con4[3] ), .B0(\DC_Con4[2] ), .A0(\CPLD_Reg_1.regtable[9]_fast[4] ), .M1(\BUS_Con_1/recv_reg[17] ), .M0(\BUS_Con_1/recv_reg[16] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/g0_19_1 ), .Q0(\w_data[16] ), .F1(\CPLD_Con_1/g0_21_N_3L3 ), .Q1(\w_data[17] )); SLICE_329 SLICE_329( .B1(\CPLD_Reg_1.regtable[8]_fast[6] ), .A1(\CPLD_Reg_1.regtable[8]_fast[5] ), .B0(\freq1_relay[2] ), .A0(\freq1_relay[1] ), .M1(\BUS_Con_1/recv_reg[19] ), .M0(\BUS_Con_1/recv_reg[18] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/OC_x0112lto2_0 ), .Q0(\w_data[18] ), .F1(\CPLD_Con_1/g0_3_1_N_2L1 ), .Q1(\w_data[19] )); SLICE_330 SLICE_330( .B1(\freq1_relay[9] ), .A1(\freq1_relay[8] ), .B0(\DC_Con2[20] ), .A0(\DC_Con2[19] ), .M1(\BUS_Con_1/recv_reg[21] ), .M0(\BUS_Con_1/recv_reg[20] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_51 ), .Q0(\w_data[20] ), .F1(\CPLD_Con_1/OC_x0112lto8_0 ), .Q1(\w_data[21] )); SLICE_331 SLICE_331( .B1(\DC_Con4[19] ), .A1(\CPLD_Con_1/dc_slot_flag_3_rep1 ), .B0(con_exec), .A0(\CPLD_Con_1.exec_flag ), .M1(\BUS_Con_1/recv_reg[23] ), .M0(\BUS_Con_1/recv_reg[22] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/err_flag39 ), .Q0(\w_data[22] ), .F1(\CPLD_Con_1/N_165 ), .Q1(\w_data[23] )); SLICE_332 SLICE_332( .C1(\freq2_relay[3] ), .B1(\freq2_relay[2] ), .A1(\freq2_relay[1] ), .D0(\CPLD_Con_1/N_100 ), .C0(\CPLD_Con_1/N_96 ), .B0(\DC_Con2[6] ), .A0(\DC_Con2[5] ), .M1(\BUS_Con_1/recv_reg[24] ), .M0(\BUS_Con_1/wr_out_6 ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[21] ), .Q0(wr_flag), .F1(\CPLD_Con_1/OC_x0126lt3 ), .Q1(\reg_addr[0] )); CPLD_Con_1_RC_VISel_6_m9_0_0_SLICE_333 \CPLD_Con_1/RC_VISel_6.m9_0_0/SLICE_333 ( .C1(\CPLD_Con_1/m9_0_a5_1_1 ), .B1(\DC_Con1[22] ), .A1(\CPLD_Con_1/dc_slot_flag[2] ), .D0(\CPLD_Con_1/dc_slot_flag[1] ), .C0(\DC_Con2[22] ), .B0(\CPLD_Con_1/dc_slot_flag[2] ), .A0(\CPLD_Con_1/dc_slot_flag[3] ), .M0(\CPLD_Con_1/dc_slot_flag[0] ), .OFX0(\CPLD_Con_1/m9_0_0 )); CPLD_Con_1_DMM_en_22_2__SLICE_334 \CPLD_Con_1/DMM_en_22[2]/SLICE_334 ( .D1(\CPLD_Con_1/un1_i_freq_relay1lt8 ), .C1(\CPLD_Con_1/un1_i_freq_relay1_1 ), .B1(\CPLD_Con_1/OC_x0112lto8_0 ), .A1(\CPLD_Con_1/DMM_en_2_sqmuxa_1_0 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .B0(\CPLD_Con_1/un1_DMM_en_1[0] ), .A0(\CPLD_Con_1/N_41_1 ), .M0(\CPLD_Con_1/N_311 ), .OFX0(\CPLD_Con_1.DMM_en_22[2] )); CPLD_Con_1_DMM_en_22_11__SLICE_335 \CPLD_Con_1/DMM_en_22[11]/SLICE_335 ( .D1(\freq3_relay[9] ), .C1(\freq3_relay[8] ), .B1(\CPLD_Con_1/N_90 ), .A1(\CPLD_Con_1/DMM_en_12_sqmuxa_1_1 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .B0(\CPLD_Con_1/un1_DMM_en_1[0] ), .A0(\CPLD_Con_1/N_42_1 ), .M0(\CPLD_Con_1/N_311 ), .OFX0(\CPLD_Con_1.DMM_en_22[11] )); CPLD_Con_1_DMM_en_22_1__SLICE_336 \CPLD_Con_1/DMM_en_22[1]/SLICE_336 ( .D1(\CPLD_Con_1/un1_i_freq_relay1lt8 ), .C1(\CPLD_Con_1/OC_x0112lto8_0 ), .B1(\CPLD_Con_1/OC_x0112 ), .A1(\CPLD_Con_1/DMM_en_2_sqmuxa_1_0 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .B0(\CPLD_Con_1/un1_DMM_en_1[0] ), .A0(\CPLD_Con_1/N_40_1 ), .M0(\CPLD_Con_1/N_311 ), .OFX0(\CPLD_Con_1.DMM_en_22[1] )); CPLD_Con_1_DMM_en_22_9__SLICE_337 \CPLD_Con_1/DMM_en_22[9]/SLICE_337 ( .D1(\CPLD_Con_1/N_349 ), .C1(\CPLD_Con_1/un1_i_freq_relay3lt8 ), .B1(\CPLD_Con_1/OC_x0163 ), .A1(\CPLD_Con_1/DMM_en_10_sqmuxa_1 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .B0(\CPLD_Con_1/un1_DMM_en_1[0] ), .A0(\CPLD_Con_1/N_40_1 ), .M0(\CPLD_Con_1/N_311 ), .OFX0(\CPLD_Con_1.DMM_en_22[9] )); CPLD_Con_1_DMM_en_22_0__SLICE_338 \CPLD_Con_1/DMM_en_22[0]/SLICE_338 ( .B1(\CPLD_Con_1/OC_x0112 ), .A1(\CPLD_Con_1/DMM_en_1_sqmuxa_1_0 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .B0(\CPLD_Con_1/un1_DMM_en_1[0] ), .A0(\CPLD_Con_1/N_39_1 ), .M0(\CPLD_Con_1/N_311 ), .OFX0(\CPLD_Con_1.DMM_en_22[0] )); CPLD_Con_1_DMM_en_22_8__SLICE_339 \CPLD_Con_1/DMM_en_22[8]/SLICE_339 ( .D1(\CPLD_Con_1/N_90 ), .C1(\CPLD_Con_1/N_9 ), .B1(\CPLD_Con_1/OC_x0163 ), .A1(\CPLD_Con_1/OC_x0138_3 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .B0(\CPLD_Con_1/un1_DMM_en_1[0] ), .A0(\CPLD_Con_1/N_39_1 ), .M0(\CPLD_Con_1/N_311 ), .OFX0(\CPLD_Con_1.DMM_en_22[8] )); CPLD_Reg_1_rdata_reg_2_10_0__SLICE_340 \CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[0] ), .A1(\CPLD_Reg_1/regtable[15][0] ), .C0(\reg_addr[3] ), .B0(\freq2_relay[0] ), .A0(\CPLD_Reg_1/regtable[11][0] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_278 ), .FXA(\CPLD_Reg_1/N_230 ), .OFX0(\CPLD_Reg_1/N_278 ), .OFX1(\CPLD_Reg_1/N_350 )); CPLD_Reg_1_rdata_reg_2_11_23__SLICE_341 \CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341 ( .C1(\DC_Con4[23] ), .B1(\CPLD_Reg_1/regtable[13][23] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[23] ), .A0(\CPLD_Reg_1/regtable[12][23] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_325 ), .FXA(\CPLD_Reg_1/N_277 ), .OFX0(\CPLD_Reg_1/N_325 ), .OFX1(\CPLD_Reg_1/N_349 )); CPLD_Reg_1_rdata_reg_2_11_0__SLICE_342 \CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342 ( .C1(reg_addr_2_rep2), .B1(\DC_Con4[0] ), .A1(\CPLD_Reg_1/regtable[13][0] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[0] ), .A0(\CPLD_Reg_1/regtable[12][0] ), .M1(\reg_addr_fast[3] ), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_302 ), .FXA(\CPLD_Reg_1/N_254 ), .OFX0(\CPLD_Reg_1/N_302 ), .OFX1(\CPLD_Reg_1/N_326 )); CPLD_Reg_1_rdata_reg_2_11_9__SLICE_343 \CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343 ( .C1(\DC_Con4[9] ), .B1(\CPLD_Reg_1/regtable[13][9] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[9] ), .A0(\CPLD_Reg_1/regtable[12][9] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_311 ), .FXA(\CPLD_Reg_1/N_263 ), .OFX0(\CPLD_Reg_1/N_311 ), .OFX1(\CPLD_Reg_1/N_335 )); CPLD_Reg_1_rdata_reg_2_11_16__SLICE_344 \CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344 ( .C1(\CPLD_Reg_1/regtable[13][16] ), .B1(\CPLD_Reg_1/regtable[9][16] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\CPLD_Reg_1/regtable[12][16] ), .A0(\CPLD_Reg_1/regtable[8][16] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_1233 ), .FXA(\CPLD_Reg_1/N_270 ), .OFX0(\CPLD_Reg_1/N_1233 ), .OFX1(\CPLD_Reg_1/N_342 )); CPLD_Reg_1_rdata_reg_2_11_15__SLICE_345 \CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345 ( .C1(\CPLD_Reg_1/regtable[13][15] ), .B1(\CPLD_Reg_1/regtable[9][15] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\CPLD_Reg_1/regtable[12][15] ), .A0(\CPLD_Reg_1/regtable[8][15] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_1232 ), .FXA(\CPLD_Reg_1/N_269 ), .OFX0(\CPLD_Reg_1/N_1232 ), .OFX1(\CPLD_Reg_1/N_341 )); CPLD_Reg_1_rdata_reg_2_11_14__SLICE_346 \CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346 ( .C1(\CPLD_Reg_1/regtable[13][14] ), .B1(\CPLD_Reg_1/regtable[9][14] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\CPLD_Reg_1/regtable[12][14] ), .A0(\CPLD_Reg_1/regtable[8][14] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_1231 ), .FXA(\CPLD_Reg_1/N_268 ), .OFX0(\CPLD_Reg_1/N_1231 ), .OFX1(\CPLD_Reg_1/N_340 )); CPLD_Reg_1_rdata_reg_2_11_13__SLICE_347 \CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347 ( .C1(\CPLD_Reg_1/regtable[13][13] ), .B1(\CPLD_Reg_1/regtable[9][13] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\CPLD_Reg_1/regtable[12][13] ), .A0(\CPLD_Reg_1/regtable[8][13] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_1230 ), .FXA(\CPLD_Reg_1/N_267 ), .OFX0(\CPLD_Reg_1/N_1230 ), .OFX1(\CPLD_Reg_1/N_339 )); CPLD_Reg_1_rdata_reg_2_11_12__SLICE_348 \CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348 ( .C1(\CPLD_Reg_1/regtable[13][12] ), .B1(\CPLD_Reg_1/regtable[9][12] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\CPLD_Reg_1/regtable[12][12] ), .A0(\CPLD_Reg_1/regtable[8][12] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_1229 ), .FXA(\CPLD_Reg_1/N_266 ), .OFX0(\CPLD_Reg_1/N_1229 ), .OFX1(\CPLD_Reg_1/N_338 )); CPLD_Reg_1_rdata_reg_2_11_11__SLICE_349 \CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349 ( .C1(\CPLD_Reg_1/regtable[13][11] ), .B1(\CPLD_Reg_1/regtable[9][11] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\CPLD_Reg_1/regtable[12][11] ), .A0(\CPLD_Reg_1/regtable[8][11] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_1228 ), .FXA(\CPLD_Reg_1/N_265 ), .OFX0(\CPLD_Reg_1/N_1228 ), .OFX1(\CPLD_Reg_1/N_337 )); CPLD_Reg_1_rdata_reg_2_11_10__SLICE_350 \CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350 ( .C1(\CPLD_Reg_1/regtable[13][10] ), .B1(\CPLD_Reg_1/regtable[9][10] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\CPLD_Reg_1/regtable[12][10] ), .A0(\CPLD_Reg_1/regtable[8][10] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_1227 ), .FXA(\CPLD_Reg_1/N_264 ), .OFX0(\CPLD_Reg_1/N_1227 ), .OFX1(\CPLD_Reg_1/N_336 )); CPLD_Reg_1_rdata_reg_2_11_18__SLICE_351 \CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351 ( .C1(\DC_Con4[18] ), .B1(\CPLD_Reg_1/regtable[13][18] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[18] ), .A0(\CPLD_Reg_1/regtable[12][18] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_320 ), .FXA(\CPLD_Reg_1/N_272 ), .OFX0(\CPLD_Reg_1/N_320 ), .OFX1(\CPLD_Reg_1/N_344 )); CPLD_Reg_1_rdata_reg_2_11_1__SLICE_352 \CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352 ( .C1(reg_addr_2_rep2), .B1(\DC_Con4[1] ), .A1(\CPLD_Reg_1/regtable[13][1] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[1] ), .A0(\CPLD_Reg_1/regtable[12][1] ), .M1(\reg_addr_fast[3] ), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_303 ), .FXA(\CPLD_Reg_1/N_255 ), .OFX0(\CPLD_Reg_1/N_303 ), .OFX1(\CPLD_Reg_1/N_327 )); CPLD_Reg_1_rdata_reg_2_11_2__SLICE_353 \CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353 ( .C1(reg_addr_2_rep2), .B1(\DC_Con4[2] ), .A1(\CPLD_Reg_1/regtable[13][2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[2] ), .A0(\CPLD_Reg_1/regtable[12][2] ), .M1(\reg_addr_fast[3] ), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_304 ), .FXA(\CPLD_Reg_1/N_256 ), .OFX0(\CPLD_Reg_1/N_304 ), .OFX1(\CPLD_Reg_1/N_328 )); CPLD_Reg_1_rdata_reg_2_11_3__SLICE_354 \CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354 ( .C1(\DC_Con4[3] ), .B1(\CPLD_Reg_1/regtable[13][3] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[3] ), .A0(\CPLD_Reg_1/regtable[12][3] ), .M1(\reg_addr_fast[3] ), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_305 ), .FXA(\CPLD_Reg_1/N_257 ), .OFX0(\CPLD_Reg_1/N_305 ), .OFX1(\CPLD_Reg_1/N_329 )); CPLD_Reg_1_rdata_reg_2_11_4__SLICE_355 \CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355 ( .C1(\DC_Con4[4] ), .B1(\CPLD_Reg_1/regtable[13][4] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[4] ), .A0(\CPLD_Reg_1/regtable[12][4] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_306 ), .FXA(\CPLD_Reg_1/N_258 ), .OFX0(\CPLD_Reg_1/N_306 ), .OFX1(\CPLD_Reg_1/N_330 )); CPLD_Reg_1_rdata_reg_2_11_5__SLICE_356 \CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356 ( .C1(\DC_Con4[5] ), .B1(\CPLD_Reg_1/regtable[13][5] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[5] ), .A0(\CPLD_Reg_1/regtable[12][5] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_307 ), .FXA(\CPLD_Reg_1/N_259 ), .OFX0(\CPLD_Reg_1/N_307 ), .OFX1(\CPLD_Reg_1/N_331 )); CPLD_Reg_1_rdata_reg_2_11_6__SLICE_357 \CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357 ( .C1(\DC_Con4[6] ), .B1(\CPLD_Reg_1/regtable[13][6] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[6] ), .A0(\CPLD_Reg_1/regtable[12][6] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_308 ), .FXA(\CPLD_Reg_1/N_260 ), .OFX0(\CPLD_Reg_1/N_308 ), .OFX1(\CPLD_Reg_1/N_332 )); CPLD_Reg_1_rdata_reg_2_11_7__SLICE_358 \CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358 ( .C1(\DC_Con4[7] ), .B1(\CPLD_Reg_1/regtable[13][7] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[7] ), .A0(\CPLD_Reg_1/regtable[12][7] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_309 ), .FXA(\CPLD_Reg_1/N_261 ), .OFX0(\CPLD_Reg_1/N_309 ), .OFX1(\CPLD_Reg_1/N_333 )); CPLD_Reg_1_rdata_reg_2_11_8__SLICE_359 \CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359 ( .C1(\DC_Con4[8] ), .B1(\CPLD_Reg_1/regtable[13][8] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[8] ), .A0(\CPLD_Reg_1/regtable[12][8] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_310 ), .FXA(\CPLD_Reg_1/N_262 ), .OFX0(\CPLD_Reg_1/N_310 ), .OFX1(\CPLD_Reg_1/N_334 )); CPLD_Reg_1_rdata_reg_2_11_17__SLICE_360 \CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360 ( .C1(\DC_Con4[17] ), .B1(\CPLD_Reg_1/regtable[13][17] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[17] ), .A0(\CPLD_Reg_1/regtable[12][17] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_319 ), .FXA(\CPLD_Reg_1/N_271 ), .OFX0(\CPLD_Reg_1/N_319 ), .OFX1(\CPLD_Reg_1/N_343 )); CPLD_Reg_1_rdata_reg_2_11_19__SLICE_361 \CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361 ( .C1(\DC_Con4[19] ), .B1(\CPLD_Reg_1/regtable[13][19] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[19] ), .A0(\CPLD_Reg_1/regtable[12][19] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_321 ), .FXA(\CPLD_Reg_1/N_273 ), .OFX0(\CPLD_Reg_1/N_321 ), .OFX1(\CPLD_Reg_1/N_345 )); CPLD_Reg_1_rdata_reg_2_11_20__SLICE_362 \CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362 ( .C1(\DC_Con4[20] ), .B1(\CPLD_Reg_1/regtable[13][20] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[20] ), .A0(\CPLD_Reg_1/regtable[12][20] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_322 ), .FXA(\CPLD_Reg_1/N_274 ), .OFX0(\CPLD_Reg_1/N_322 ), .OFX1(\CPLD_Reg_1/N_346 )); CPLD_Reg_1_rdata_reg_2_11_21__SLICE_363 \CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363 ( .C1(\DC_Con4[21] ), .B1(\CPLD_Reg_1/regtable[13][21] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[21] ), .A0(\CPLD_Reg_1/regtable[12][21] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_323 ), .FXA(\CPLD_Reg_1/N_275 ), .OFX0(\CPLD_Reg_1/N_323 ), .OFX1(\CPLD_Reg_1/N_347 )); CPLD_Reg_1_rdata_reg_2_11_22__SLICE_364 \CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364 ( .C1(\DC_Con4[22] ), .B1(\CPLD_Reg_1/regtable[13][22] ), .A1(\reg_addr[2] ), .C0(\reg_addr[2] ), .B0(\DC_Con3[22] ), .A0(\CPLD_Reg_1/regtable[12][22] ), .M1(reg_addr_3_rep1), .M0(reg_addr_0_rep1), .FXB(\CPLD_Reg_1/N_324 ), .FXA(\CPLD_Reg_1/N_276 ), .OFX0(\CPLD_Reg_1/N_324 ), .OFX1(\CPLD_Reg_1/N_348 )); CPLD_Reg_1_rdata_reg_2_10_23__SLICE_365 \CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[23] ), .A1(\CPLD_Reg_1/regtable[15][23] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][23] ), .A0(\CPLD_Reg_1/regtable[3][23] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_301 ), .FXA(\CPLD_Reg_1/N_253 ), .OFX0(\CPLD_Reg_1/N_301 ), .OFX1(\CPLD_Reg_1/N_373 )); CPLD_Reg_1_rdata_reg_2_9_23__SLICE_366 \CPLD_Reg_1/rdata_reg_2_9[23]/SLICE_366 ( .C1(\CPLD_Reg_1/regtable[5][23] ), .B1(\CPLD_Reg_1/regtable[4][23] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][23] ), .A0(\CPLD_Reg_1/regtable[0][23] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_277 )); CPLD_Reg_1_rdata_reg_2_9_0__SLICE_367 \CPLD_Reg_1/rdata_reg_2_9[0]/SLICE_367 ( .C1(reg_addr_0_rep2), .B1(\freq4_relay[0] ), .A1(\freq3_relay[0] ), .C0(\reg_addr[0] ), .B0(con_exec), .A0(\CPLD_Reg_1/regtable[0][0] ), .M0(reg_addr_2_rep1), .OFX0(\CPLD_Reg_1/N_254 )); CPLD_Reg_1_rdata_reg_2_10_9__SLICE_368 \CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[9] ), .A1(\CPLD_Reg_1/regtable[15][9] ), .C0(\reg_addr[3] ), .B0(\freq2_relay[9] ), .A0(\CPLD_Reg_1/regtable[11][9] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_287 ), .FXA(\CPLD_Reg_1/N_239 ), .OFX0(\CPLD_Reg_1/N_287 ), .OFX1(\CPLD_Reg_1/N_359 )); CPLD_Reg_1_rdata_reg_2_9_9__SLICE_369 \CPLD_Reg_1/rdata_reg_2_9[9]/SLICE_369 ( .C1(reg_addr_0_rep2), .B1(\freq4_relay[9] ), .A1(\freq3_relay[9] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][9] ), .A0(\CPLD_Reg_1/regtable[0][9] ), .M0(reg_addr_2_rep1), .OFX0(\CPLD_Reg_1/N_263 )); CPLD_Reg_1_rdata_reg_2_10_i_m2_16__SLICE_370 \CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[15][16] ), .A1(\CPLD_Reg_1/regtable[7][16] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][16] ), .A0(\CPLD_Reg_1/regtable[3][16] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_79 ), .FXA(\CPLD_Reg_1/N_1240 ), .OFX0(\CPLD_Reg_1/N_79 ), .OFX1(\CPLD_Reg_1/N_1241 )); CPLD_Reg_1_rdata_reg_2_10_i_m2_15__SLICE_371 \CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[15][15] ), .A1(\CPLD_Reg_1/regtable[7][15] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][15] ), .A0(\CPLD_Reg_1/regtable[3][15] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_80 ), .FXA(\CPLD_Reg_1/N_1239 ), .OFX0(\CPLD_Reg_1/N_80 ), .OFX1(\CPLD_Reg_1/N_1242 )); CPLD_Reg_1_rdata_reg_2_10_i_m2_14__SLICE_372 \CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[15][14] ), .A1(\CPLD_Reg_1/regtable[7][14] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][14] ), .A0(\CPLD_Reg_1/regtable[3][14] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_81 ), .FXA(\CPLD_Reg_1/N_1238 ), .OFX0(\CPLD_Reg_1/N_81 ), .OFX1(\CPLD_Reg_1/N_1243 )); CPLD_Reg_1_rdata_reg_2_10_i_m2_13__SLICE_373 \CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[15][13] ), .A1(\CPLD_Reg_1/regtable[7][13] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][13] ), .A0(\CPLD_Reg_1/regtable[3][13] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_82 ), .FXA(\CPLD_Reg_1/N_1237 ), .OFX0(\CPLD_Reg_1/N_82 ), .OFX1(\CPLD_Reg_1/N_1244 )); CPLD_Reg_1_rdata_reg_2_10_i_m2_12__SLICE_374 \CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[15][12] ), .A1(\CPLD_Reg_1/regtable[7][12] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][12] ), .A0(\CPLD_Reg_1/regtable[3][12] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_83 ), .FXA(\CPLD_Reg_1/N_1236 ), .OFX0(\CPLD_Reg_1/N_83 ), .OFX1(\CPLD_Reg_1/N_1245 )); CPLD_Reg_1_rdata_reg_2_10_i_m2_11__SLICE_375 \CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[15][11] ), .A1(\CPLD_Reg_1/regtable[7][11] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][11] ), .A0(\CPLD_Reg_1/regtable[3][11] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_1267 ), .FXA(\CPLD_Reg_1/N_1235 ), .OFX0(\CPLD_Reg_1/N_1267 ), .OFX1(\CPLD_Reg_1/N_1246 )); CPLD_Reg_1_rdata_reg_2_10_i_m2_10__SLICE_376 \CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376 ( .C1(reg_addr_3_rep2), .B1(\CPLD_Reg_1/regtable[15][10] ), .A1(\CPLD_Reg_1/regtable[7][10] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][10] ), .A0(\CPLD_Reg_1/regtable[3][10] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_1268 ), .FXA(\CPLD_Reg_1/N_1234 ), .OFX0(\CPLD_Reg_1/N_1268 ), .OFX1(\CPLD_Reg_1/N_118 )); CPLD_Reg_1_rdata_reg_2_9_16__SLICE_377 \CPLD_Reg_1/rdata_reg_2_9[16]/SLICE_377 ( .C1(\freq4_relay[16] ), .B1(\CPLD_Reg_1/regtable[4][16] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][16] ), .A0(\CPLD_Reg_1/regtable[0][16] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_270 )); CPLD_Reg_1_rdata_reg_2_9_15__SLICE_378 \CPLD_Reg_1/rdata_reg_2_9[15]/SLICE_378 ( .C1(\freq4_relay[15] ), .B1(\CPLD_Reg_1/regtable[4][15] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][15] ), .A0(\CPLD_Reg_1/regtable[0][15] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_269 )); CPLD_Reg_1_rdata_reg_2_9_14__SLICE_379 \CPLD_Reg_1/rdata_reg_2_9[14]/SLICE_379 ( .C1(\freq4_relay[14] ), .B1(\CPLD_Reg_1/regtable[4][14] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][14] ), .A0(\CPLD_Reg_1/regtable[0][14] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_268 )); CPLD_Reg_1_rdata_reg_2_9_13__SLICE_380 \CPLD_Reg_1/rdata_reg_2_9[13]/SLICE_380 ( .C1(\freq4_relay[13] ), .B1(\CPLD_Reg_1/regtable[4][13] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][13] ), .A0(\CPLD_Reg_1/regtable[0][13] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_267 )); CPLD_Reg_1_rdata_reg_2_9_12__SLICE_381 \CPLD_Reg_1/rdata_reg_2_9[12]/SLICE_381 ( .C1(\freq4_relay[12] ), .B1(\CPLD_Reg_1/regtable[4][12] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][12] ), .A0(\CPLD_Reg_1/regtable[0][12] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_266 )); CPLD_Reg_1_rdata_reg_2_9_11__SLICE_382 \CPLD_Reg_1/rdata_reg_2_9[11]/SLICE_382 ( .C1(\CPLD_Reg_1/regtable[5][11] ), .B1(\CPLD_Reg_1/regtable[4][11] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][11] ), .A0(\CPLD_Reg_1/regtable[0][11] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_265 )); CPLD_Reg_1_rdata_reg_2_9_10__SLICE_383 \CPLD_Reg_1/rdata_reg_2_9[10]/SLICE_383 ( .C1(reg_addr_0_rep2), .B1(\CPLD_Reg_1/regtable[5][10] ), .A1(\CPLD_Reg_1/regtable[4][10] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][10] ), .A0(\CPLD_Reg_1/regtable[0][10] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_264 )); CPLD_Reg_1_rdata_reg_2_10_18__SLICE_384 \CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[18] ), .A1(\CPLD_Reg_1/regtable[15][18] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][18] ), .A0(\CPLD_Reg_1/regtable[3][18] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_296 ), .FXA(\CPLD_Reg_1/N_248 ), .OFX0(\CPLD_Reg_1/N_296 ), .OFX1(\CPLD_Reg_1/N_368 )); CPLD_Reg_1_rdata_reg_2_9_18__SLICE_385 \CPLD_Reg_1/rdata_reg_2_9[18]/SLICE_385 ( .C1(\CPLD_Reg_1/regtable[5][18] ), .B1(\CPLD_Reg_1/regtable[4][18] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][18] ), .A0(\CPLD_Reg_1/regtable[0][18] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_272 )); CPLD_Reg_1_rdata_reg_2_10_1__SLICE_386 \CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[1] ), .A1(\CPLD_Reg_1/regtable[15][1] ), .C0(\reg_addr[3] ), .B0(\freq2_relay[1] ), .A0(\CPLD_Reg_1/regtable[11][1] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_279 ), .FXA(\CPLD_Reg_1/N_231 ), .OFX0(\CPLD_Reg_1/N_279 ), .OFX1(\CPLD_Reg_1/N_351 )); CPLD_Reg_1_rdata_reg_2_9_1__SLICE_387 \CPLD_Reg_1/rdata_reg_2_9[1]/SLICE_387 ( .C1(reg_addr_0_rep2), .B1(\freq4_relay[1] ), .A1(\freq3_relay[1] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][1] ), .A0(\CPLD_Reg_1/regtable[0][1] ), .M0(reg_addr_2_rep1), .OFX0(\CPLD_Reg_1/N_255 )); CPLD_Reg_1_rdata_reg_2_9_2__SLICE_388 \CPLD_Reg_1/rdata_reg_2_9[2]/SLICE_388 ( .C1(reg_addr_0_rep2), .B1(\freq4_relay[2] ), .A1(\freq3_relay[2] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][2] ), .A0(\CPLD_Reg_1/regtable[0][2] ), .M0(reg_addr_2_rep1), .OFX0(\CPLD_Reg_1/N_256 )); CPLD_Reg_1_rdata_reg_2_10_2__SLICE_389 \CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[2] ), .A1(\CPLD_Reg_1/regtable[15][2] ), .C0(\reg_addr[3] ), .B0(\freq2_relay[2] ), .A0(\CPLD_Reg_1/regtable[11][2] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_280 ), .FXA(\CPLD_Reg_1/N_232 ), .OFX0(\CPLD_Reg_1/N_280 ), .OFX1(\CPLD_Reg_1/N_352 )); CPLD_Reg_1_rdata_reg_2_9_3__SLICE_390 \CPLD_Reg_1/rdata_reg_2_9[3]/SLICE_390 ( .C1(reg_addr_0_rep2), .B1(\freq4_relay[3] ), .A1(\freq3_relay[3] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][3] ), .A0(\CPLD_Reg_1/regtable[0][3] ), .M0(reg_addr_2_rep1), .OFX0(\CPLD_Reg_1/N_257 )); CPLD_Reg_1_rdata_reg_2_10_3__SLICE_391 \CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[3] ), .A1(\CPLD_Reg_1/regtable[15][3] ), .C0(\reg_addr[3] ), .B0(\freq2_relay[3] ), .A0(\CPLD_Reg_1/regtable[11][3] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_281 ), .FXA(\CPLD_Reg_1/N_233 ), .OFX0(\CPLD_Reg_1/N_281 ), .OFX1(\CPLD_Reg_1/N_353 )); CPLD_Reg_1_rdata_reg_2_9_4__SLICE_392 \CPLD_Reg_1/rdata_reg_2_9[4]/SLICE_392 ( .C1(reg_addr_0_rep2), .B1(\freq4_relay[4] ), .A1(\freq3_relay[4] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][4] ), .A0(\CPLD_Reg_1/regtable[0][4] ), .M0(reg_addr_2_rep1), .OFX0(\CPLD_Reg_1/N_258 )); CPLD_Reg_1_rdata_reg_2_10_4__SLICE_393 \CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[4] ), .A1(\CPLD_Reg_1/regtable[15][4] ), .C0(\reg_addr[3] ), .B0(\freq2_relay[4] ), .A0(\CPLD_Reg_1/regtable[11][4] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_282 ), .FXA(\CPLD_Reg_1/N_234 ), .OFX0(\CPLD_Reg_1/N_282 ), .OFX1(\CPLD_Reg_1/N_354 )); CPLD_Reg_1_rdata_reg_2_9_5__SLICE_394 \CPLD_Reg_1/rdata_reg_2_9[5]/SLICE_394 ( .C1(reg_addr_0_rep2), .B1(\freq4_relay[5] ), .A1(\freq3_relay[5] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][5] ), .A0(\CPLD_Reg_1/regtable[0][5] ), .M0(reg_addr_2_rep1), .OFX0(\CPLD_Reg_1/N_259 )); CPLD_Reg_1_rdata_reg_2_10_5__SLICE_395 \CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[5] ), .A1(\CPLD_Reg_1/regtable[15][5] ), .C0(\reg_addr[3] ), .B0(\freq2_relay[5] ), .A0(\CPLD_Reg_1/regtable[11][5] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_283 ), .FXA(\CPLD_Reg_1/N_235 ), .OFX0(\CPLD_Reg_1/N_283 ), .OFX1(\CPLD_Reg_1/N_355 )); CPLD_Reg_1_rdata_reg_2_9_6__SLICE_396 \CPLD_Reg_1/rdata_reg_2_9[6]/SLICE_396 ( .C1(reg_addr_0_rep2), .B1(\freq4_relay[6] ), .A1(\freq3_relay[6] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][6] ), .A0(\CPLD_Reg_1/regtable[0][6] ), .M0(reg_addr_2_rep1), .OFX0(\CPLD_Reg_1/N_260 )); CPLD_Reg_1_rdata_reg_2_10_6__SLICE_397 \CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[6] ), .A1(\CPLD_Reg_1/regtable[15][6] ), .C0(\reg_addr[3] ), .B0(\freq2_relay[6] ), .A0(\CPLD_Reg_1/regtable[11][6] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_284 ), .FXA(\CPLD_Reg_1/N_236 ), .OFX0(\CPLD_Reg_1/N_284 ), .OFX1(\CPLD_Reg_1/N_356 )); CPLD_Reg_1_rdata_reg_2_9_7__SLICE_398 \CPLD_Reg_1/rdata_reg_2_9[7]/SLICE_398 ( .C1(reg_addr_0_rep2), .B1(\freq4_relay[7] ), .A1(\freq3_relay[7] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][7] ), .A0(\CPLD_Reg_1/regtable[0][7] ), .M0(reg_addr_2_rep1), .OFX0(\CPLD_Reg_1/N_261 )); CPLD_Reg_1_rdata_reg_2_10_7__SLICE_399 \CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[7] ), .A1(\CPLD_Reg_1/regtable[15][7] ), .C0(\reg_addr[3] ), .B0(\freq2_relay[7] ), .A0(\CPLD_Reg_1/regtable[11][7] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_285 ), .FXA(\CPLD_Reg_1/N_237 ), .OFX0(\CPLD_Reg_1/N_285 ), .OFX1(\CPLD_Reg_1/N_357 )); CPLD_Reg_1_rdata_reg_2_9_8__SLICE_400 \CPLD_Reg_1/rdata_reg_2_9[8]/SLICE_400 ( .C1(reg_addr_0_rep2), .B1(\freq4_relay[8] ), .A1(\freq3_relay[8] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][8] ), .A0(\CPLD_Reg_1/regtable[0][8] ), .M0(reg_addr_2_rep1), .OFX0(\CPLD_Reg_1/N_262 )); CPLD_Reg_1_rdata_reg_2_10_8__SLICE_401 \CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[8] ), .A1(\CPLD_Reg_1/regtable[15][8] ), .C0(\reg_addr[3] ), .B0(\freq2_relay[8] ), .A0(\CPLD_Reg_1/regtable[11][8] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_286 ), .FXA(\CPLD_Reg_1/N_238 ), .OFX0(\CPLD_Reg_1/N_286 ), .OFX1(\CPLD_Reg_1/N_358 )); CPLD_Reg_1_rdata_reg_2_9_17__SLICE_402 \CPLD_Reg_1/rdata_reg_2_9[17]/SLICE_402 ( .C1(\freq4_relay[17] ), .B1(\CPLD_Reg_1/regtable[4][17] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][17] ), .A0(\CPLD_Reg_1/regtable[0][17] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_271 )); CPLD_Reg_1_rdata_reg_2_10_17__SLICE_403 \CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[17] ), .A1(\CPLD_Reg_1/regtable[15][17] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][17] ), .A0(\CPLD_Reg_1/regtable[3][17] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_295 ), .FXA(\CPLD_Reg_1/N_247 ), .OFX0(\CPLD_Reg_1/N_295 ), .OFX1(\CPLD_Reg_1/N_367 )); CPLD_Reg_1_rdata_reg_2_9_19__SLICE_404 \CPLD_Reg_1/rdata_reg_2_9[19]/SLICE_404 ( .C1(\CPLD_Reg_1/regtable[5][19] ), .B1(\CPLD_Reg_1/regtable[4][19] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][19] ), .A0(\CPLD_Reg_1/regtable[0][19] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_273 )); CPLD_Reg_1_rdata_reg_2_10_19__SLICE_405 \CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[19] ), .A1(\CPLD_Reg_1/regtable[15][19] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][19] ), .A0(\CPLD_Reg_1/regtable[3][19] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_297 ), .FXA(\CPLD_Reg_1/N_249 ), .OFX0(\CPLD_Reg_1/N_297 ), .OFX1(\CPLD_Reg_1/N_369 )); CPLD_Reg_1_rdata_reg_2_9_20__SLICE_406 \CPLD_Reg_1/rdata_reg_2_9[20]/SLICE_406 ( .C1(\CPLD_Reg_1/regtable[5][20] ), .B1(\CPLD_Reg_1/regtable[4][20] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][20] ), .A0(\CPLD_Reg_1/regtable[0][20] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_274 )); CPLD_Reg_1_rdata_reg_2_10_20__SLICE_407 \CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[20] ), .A1(\CPLD_Reg_1/regtable[15][20] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][20] ), .A0(\CPLD_Reg_1/regtable[3][20] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_298 ), .FXA(\CPLD_Reg_1/N_250 ), .OFX0(\CPLD_Reg_1/N_298 ), .OFX1(\CPLD_Reg_1/N_370 )); CPLD_Reg_1_rdata_reg_2_9_21__SLICE_408 \CPLD_Reg_1/rdata_reg_2_9[21]/SLICE_408 ( .C1(\CPLD_Reg_1/regtable[5][21] ), .B1(\CPLD_Reg_1/regtable[4][21] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][21] ), .A0(\CPLD_Reg_1/regtable[0][21] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_275 )); CPLD_Reg_1_rdata_reg_2_10_21__SLICE_409 \CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[21] ), .A1(\CPLD_Reg_1/regtable[15][21] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][21] ), .A0(\CPLD_Reg_1/regtable[3][21] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_299 ), .FXA(\CPLD_Reg_1/N_251 ), .OFX0(\CPLD_Reg_1/N_299 ), .OFX1(\CPLD_Reg_1/N_371 )); CPLD_Reg_1_rdata_reg_2_9_22__SLICE_410 \CPLD_Reg_1/rdata_reg_2_9[22]/SLICE_410 ( .C1(\CPLD_Reg_1/regtable[5][22] ), .B1(\CPLD_Reg_1/regtable[4][22] ), .A1(\reg_addr[0] ), .C0(\reg_addr[0] ), .B0(\CPLD_Reg_1/regtable[1][22] ), .A0(\CPLD_Reg_1/regtable[0][22] ), .M0(reg_addr_2_rep2), .OFX0(\CPLD_Reg_1/N_276 )); CPLD_Reg_1_rdata_reg_2_10_22__SLICE_411 \CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411 ( .C1(reg_addr_3_rep2), .B1(\DC_Con2[22] ), .A1(\CPLD_Reg_1/regtable[15][22] ), .C0(\reg_addr[3] ), .B0(\CPLD_Reg_1/regtable[11][22] ), .A0(\CPLD_Reg_1/regtable[3][22] ), .M1(reg_addr_0_rep2), .M0(reg_addr_2_rep2), .FXB(\CPLD_Reg_1/N_300 ), .FXA(\CPLD_Reg_1/N_252 ), .OFX0(\CPLD_Reg_1/N_300 ), .OFX1(\CPLD_Reg_1/N_372 )); SLICE_412 SLICE_412( .D1(\CPLD_Con_1/un1_i_DC_Con1_iv_1[1] ), .C1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[0] ), .B1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[0] ), .A1(\CPLD_Con_1/un1_i_DC_Con1_iv_0[1] ), .D0(\CPLD_Con_1/N_216 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[0] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[0] ), .A0(\CPLD_Con_1/un1_i_DC_Con1_4_axbxc1 ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(N_235), .Q0(\freq3_relay[4] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_4_axbxc1 ), .Q1(\freq3_relay[5] )); SLICE_413 SLICE_413( .D1(\freq4_relay[8] ), .C1(\CPLD_Con_1/N_353 ), .B1(\CPLD_Con_1/N_344 ), .A1(\CPLD_Con_1/N_85 ), .D0(\freq4_relay[9] ), .C0(\CPLD_Con_1/N_353 ), .B0(\CPLD_Con_1/N_344 ), .A0(\CPLD_Con_1/N_338 ), .M1(\r_data[23] ), .M0(\r_data[22] ), .CE(con_rvalid), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/DMM_en_22_0_0[15] ), .Q0(\BUS_Con_1/tx_buffer[22] ), .F1(\CPLD_Con_1/N_338 ), .Q1(\BUS_Con_1/tx_buffer[23] )); BUS_Con_1_SLICE_414 \BUS_Con_1/SLICE_414 ( .D1(reg_busy), .C1(\BUS_Con_1/state[1] ), .B1(\BUS_Con_1/state[0] ), .A1(\BUS_Con_1/data_ready ), .D0(\BUS_Con_1/state[0] ), .C0(\BUS_Con_1/state[1] ), .B0(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i ), .A0(i_rst_n_c), .M1(\BUS_Con_1/recv_reg[15] ), .M0(\BUS_Con_1/recv_reg[14] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .Q0(\BUS_Con_1/recv_reg[15] ), .F1(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i ), .Q1(\BUS_Con_1/recv_reg[16] )); SLICE_415 SLICE_415( .D1(\freq3_relay[9] ), .C1(\freq3_relay[7] ), .B1(\CPLD_Con_1/N_357 ), .A1(\CPLD_Con_1/freq_t ), .D0(\freq3_relay[8] ), .C0(\freq3_relay[9] ), .B0(\CPLD_Con_1/DMM_en_22_0_a2_2[10] ), .A0(\CPLD_Con_1/N_305 ), .M1(\r_data[3] ), .M0(\r_data[2] ), .CE(con_rvalid), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_330 ), .Q0(\BUS_Con_1/tx_buffer[2] ), .F1(\CPLD_Con_1/DMM_en_22_0_a2_2[10] ), .Q1(\BUS_Con_1/tx_buffer[3] )); SLICE_416 SLICE_416( .C1(\CPLD_Con_1/freq_t ), .B1(\CPLD_Con_1.exec_flag ), .A1(\CPLD_Con_1/dc_t ), .D0(\CPLD_Con_1.exec_flag ), .C0(con_exec), .B0(\CPLD_Con_1/g0_8_1_0 ), .A0(\CPLD_Con_1/un1_err_flag_0_sqmuxa ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/err_flag_RNO ), .Q0(\CPLD_Reg_1/regtable[6][11] ), .F1(\CPLD_Con_1/g0_8_1_0 ), .Q1(\CPLD_Reg_1/regtable[6][12] )); SLICE_417 SLICE_417( .D1(\freq1_relay[8] ), .C1(\CPLD_Con_1/N_298 ), .B1(\CPLD_Con_1/un1_i_freq_relay1lt8 ), .A1(\CPLD_Con_1/DMM_en_3_sqmuxa_1_0_a2_0_a2_0_a2_1 ), .C0(\freq1_relay[7] ), .B0(\freq1_relay[6] ), .A0(\CPLD_Con_1/N_298 ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_freq_relay1lt8 ), .Q0(\DC_Con3[8] ), .F1(\CPLD_Con_1.N_259 ), .Q1(\DC_Con3[9] )); SLICE_418 SLICE_418( .D1(\freq3_relay[6] ), .C1(\freq3_relay[5] ), .B1(\freq3_relay[4] ), .A1(\CPLD_Con_1/g0_14_N_2L1 ), .D0(\freq3_relay[7] ), .C0(\freq3_relay[4] ), .B0(\CPLD_Con_1/N_305 ), .A0(\CPLD_Con_1/N_30 ), .M1(\BUS_Con_1/recv_reg[20] ), .M0(\BUS_Con_1/recv_reg[19] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/DMM_en_11_sqmuxa_0_147_i_i_0_0_tz ), .Q0(\BUS_Con_1/recv_reg[20] ), .F1(\CPLD_Con_1/N_305 ), .Q1(\BUS_Con_1/recv_reg[21] )); SLICE_419 SLICE_419( .D1(\DC_Con3[23] ), .C1(\DC_Con3[20] ), .B1(\DC_Con3[21] ), .A1(\CPLD_Con_1/g0_26_x0 ), .D0(\DC_Con3[21] ), .C0(\DC_Con3[19] ), .B0(\DC_Con3[18] ), .A0(\DC_Con3[17] ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/g0_26_x0 ), .Q0(\DC_Con1[4] ), .F1(\CPLD_Con_1/g1_0_0 ), .Q1(\DC_Con1[5] )); SLICE_420 SLICE_420( .D1(\DC_Con4[9] ), .C1(\DC_Con4[7] ), .B1(\DC_Con4[5] ), .A1(\CPLD_Con_1/RC_VISel41 ), .D0(\DC_Con4[4] ), .C0(\DC_Con4[6] ), .B0(\CPLD_Con_1/N_192 ), .A0(\DC_Con4[8] ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[13] ), .Q0(\CPLD_Reg_1/regtable[3][22] ), .F1(\CPLD_Con_1/N_192 ), .Q1(\CPLD_Reg_1/regtable[3][23] )); SLICE_421 SLICE_421( .D1(\DC_Con4[9] ), .C1(\DC_Con4[7] ), .B1(\DC_Con4[5] ), .A1(\CPLD_Con_1/RC_VISel41 ), .D0(\DC_Con4[4] ), .C0(\DC_Con4[6] ), .B0(\CPLD_Con_1/N_190 ), .A0(\DC_Con4[8] ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[15] ), .Q0(\CPLD_Reg_1/regtable[3][13] ), .F1(\CPLD_Con_1/N_190 ), .Q1(\CPLD_Reg_1/regtable[3][14] )); SLICE_422 SLICE_422( .D1(\CPLD_Con_1/N_350 ), .C1(\CPLD_Con_1/N_298 ), .B1(\CPLD_Con_1/DMM_en_1_sqmuxa_1_0_a2_0_a2_0_a2_2 ), .A1(\CPLD_Con_1/DMM_en_1_sqmuxa_1_0_a2_0_a2_0_a2_0 ), .C0(\freq1_relay[6] ), .B0(\freq1_relay[7] ), .A0(\freq1_relay[8] ), .M1(\BUS_Con_1/recv_reg[24] ), .M0(\BUS_Con_1/recv_reg[23] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/DMM_en_1_sqmuxa_1_0_a2_0_a2_0_a2_0 ), .Q0(\BUS_Con_1/recv_reg[24] ), .F1(\CPLD_Con_1.N_333 ), .Q1(\BUS_Con_1/recv_reg[25] )); SLICE_423 SLICE_423( .D1(\DC_Con4[9] ), .C1(\DC_Con4[8] ), .B1(\DC_Con4[7] ), .A1(\DC_Con4[5] ), .D0(\DC_Con4[4] ), .C0(\DC_Con4[6] ), .B0(\CPLD_Con_1/PMU_OC_4_8_0_a2_2[3] ), .A0(\CPLD_Con_1/RC_VISel41 ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[3] ), .Q0(\freq2_relay[0] ), .F1(\CPLD_Con_1/PMU_OC_4_8_0_a2_2[3] ), .Q1(\CPLD_Reg_1/regtable[3][10] )); SLICE_424 SLICE_424( .D1(\DC_Con3[8] ), .C1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[4] ), .B1(\CPLD_Con_1/i_DC_Con4_m[8] ), .A1(\CPLD_Con_1/dc_slot_flag_2_rep1 ), .D0(\CPLD_Con_1/un1_i_DC_Con1_1[4] ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[5] ), .B0(\CPLD_Con_1/N_42_1 ), .A0(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_DMM_en[3] ), .Q0(\CPLD_Reg_1/regtable[11][4] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_1[4] ), .Q1(\CPLD_Reg_1/regtable[11][5] )); SLICE_425 SLICE_425( .B1(\DC_Con1[6] ), .A1(\DC_Con1[5] ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_113 ), .A0(\CPLD_Con_1/N_116 ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[27] ), .Q0(\CPLD_Reg_1/regtable[12][20] ), .F1(\CPLD_Con_1/N_116 ), .Q1(\CPLD_Reg_1/regtable[12][21] )); SLICE_426 SLICE_426( .B1(\DC_Con1[6] ), .A1(\DC_Con1[5] ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_113 ), .A0(\CPLD_Con_1/N_115 ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[29] ), .Q0(\CPLD_Reg_1/regtable[12][4] ), .F1(\CPLD_Con_1/N_115 ), .Q1(\CPLD_Reg_1/regtable[12][5] )); SLICE_427 SLICE_427( .B1(\DC_Con1[8] ), .A1(\DC_Con1[7] ), .D0(\DC_Con1[5] ), .C0(\DC_Con1[6] ), .B0(\CPLD_Con_1/N_113 ), .A0(\CPLD_Con_1/N_118 ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[31] ), .Q0(\CPLD_Reg_1/regtable[13][22] ), .F1(\CPLD_Con_1/N_118 ), .Q1(\CPLD_Reg_1/regtable[13][23] )); SLICE_428 SLICE_428( .C1(\DC_Con1[9] ), .B1(\DC_Con1[4] ), .A1(\CPLD_Con_1/RC_VISel38 ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_113 ), .A0(\CPLD_Con_1/N_116 ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[11] ), .Q0(\CPLD_Reg_1/regtable[12][22] ), .F1(\CPLD_Con_1/N_113 ), .Q1(\CPLD_Reg_1/regtable[12][23] )); SLICE_429 SLICE_429( .B1(\DC_Con1[8] ), .A1(\DC_Con1[7] ), .D0(\DC_Con1[5] ), .C0(\DC_Con1[6] ), .B0(\CPLD_Con_1/N_113 ), .A0(\CPLD_Con_1/N_117 ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[15] ), .Q0(\CPLD_Reg_1/regtable[13][13] ), .F1(\CPLD_Con_1/N_117 ), .Q1(\CPLD_Reg_1/regtable[13][14] )); SLICE_430 SLICE_430( .B1(\CPLD_Reg_1.regtable[6]_fast[6] ), .A1(\CPLD_Reg_1.regtable[6]_fast[5] ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_38 ), .A0(\CPLD_Con_1/N_113 ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[17] ), .Q0(\CPLD_Reg_1/regtable[14][0] ), .F1(\CPLD_Con_1/N_38 ), .Q1(\CPLD_Reg_1/regtable[14][10] )); SLICE_431 SLICE_431( .B1(\DC_Con1[6] ), .A1(\DC_Con1[5] ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_113 ), .A0(\CPLD_Con_1/N_119 ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[23] ), .Q0(\CPLD_Reg_1/regtable[13][2] ), .F1(\CPLD_Con_1/N_119 ), .Q1(\CPLD_Reg_1/regtable[13][3] )); SLICE_432 SLICE_432( .B1(\DC_Con2[6] ), .A1(\DC_Con2[5] ), .D0(\DC_Con2[4] ), .C0(\DC_Con2[8] ), .B0(\CPLD_Con_1/N_43 ), .A0(\CPLD_Con_1/N_96 ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[17] ), .Q0(\CPLD_Reg_1/regtable[14][11] ), .F1(\CPLD_Con_1/N_43 ), .Q1(\CPLD_Reg_1/regtable[14][12] )); SLICE_433 SLICE_433( .C1(\DC_Con2[9] ), .B1(\DC_Con2[7] ), .A1(\CPLD_Con_1/RC_VISel39 ), .D0(\DC_Con2[4] ), .C0(\DC_Con2[8] ), .B0(\CPLD_Con_1/N_43 ), .A0(\CPLD_Con_1/N_95 ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[9] ), .Q0(\CPLD_Reg_1/regtable[14][15] ), .F1(\CPLD_Con_1/N_95 ), .Q1(\CPLD_Reg_1/regtable[14][16] )); SLICE_434 SLICE_434( .D1(\DC_Con4[9] ), .C1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[5] ), .B1(\CPLD_Con_1/i_DC_Con3_m[9] ), .A1(\CPLD_Con_1/dc_slot_flag_3_rep1 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[4] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[5] ), .A0(\CPLD_Con_1/N_311 ), .M1(\r_data[5] ), .M0(\r_data[4] ), .CE(con_rvalid), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_351 ), .Q0(\BUS_Con_1/tx_buffer[4] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_1[5] ), .Q1(\BUS_Con_1/tx_buffer[5] )); SLICE_435 SLICE_435( .C1(\DC_Con1[9] ), .B1(\DC_Con1[4] ), .A1(\CPLD_Con_1/RC_VISel38 ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_38 ), .A0(\CPLD_Con_1/N_114 ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[24] ), .Q0(\CPLD_Reg_1/regtable[13][4] ), .F1(\CPLD_Con_1/N_114 ), .Q1(\CPLD_Reg_1/regtable[13][5] )); SLICE_436 SLICE_436( .D1(\CPLD_Con_1/N_67_i ), .C1(\DC_Con4[23] ), .B1(\CPLD_Con_1/g0_12_N_3L3 ), .A1(\CPLD_Con_1/RC_VISel41 ), .D0(\CPLD_Con_1/RC_VISel38 ), .C0(\CPLD_Con_1/g0_8_1_0 ), .B0(\CPLD_Con_1/N_214 ), .A0(\CPLD_Con_1/DMM_en_0_sqmuxa_7 ), .M1(\w_data[6] ), .M0(\w_data[5] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.un1_exec_flag_8_i ), .Q0(\CPLD_Reg_1.regtable[7]_fast[5] ), .F1(\CPLD_Con_1/DMM_en_0_sqmuxa_7 ), .Q1(\CPLD_Reg_1.regtable[7]_fast[6] )); SLICE_437 SLICE_437( .C1(\CPLD_Con_1/N_214 ), .B1(\CPLD_Con_1/g0_8_1_0 ), .A1(\CPLD_Con_1/RC_VISel38 ), .D0(i_rst_n_c), .C0(\CPLD_Con_1/N_196 ), .B0(\CPLD_Con_1/un1_exec_flag_8_0_0 ), .A0(\CPLD_Con_1/DMM_en_0_sqmuxa_7 ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/PMU_OC_4_8_0_a2_RNIL1I393[20] ), .Q0(\CPLD_Reg_1/regtable[3][11] ), .F1(\CPLD_Con_1/un1_exec_flag_8_0_0 ), .Q1(\CPLD_Reg_1/regtable[3][12] )); SLICE_438 SLICE_438( .D1(\DC_Con4[9] ), .C1(\DC_Con4[7] ), .B1(\DC_Con4[5] ), .A1(\CPLD_Con_1/RC_VISel41 ), .D0(i_rst_n_c), .C0(\CPLD_Con_1/N_191 ), .B0(\CPLD_Con_1/un1_exec_flag_8_0_0 ), .A0(\CPLD_Con_1/DMM_en_0_sqmuxa_7 ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\PMU_OC_4_8_0_a2_RNIS7H393[18] ), .Q0(\freq2_relay[8] ), .F1(\CPLD_Con_1/N_191 ), .Q1(\freq2_relay[9] )); SLICE_439 SLICE_439( .D1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_1[2] ), .C1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[2] ), .B1(\CPLD_Con_1/un1_DMM_en_1[0] ), .A1(\CPLD_Con_1/DMM_en_22_0_a2_2_1[4] ), .D0(\CPLD_Con_1/N_360 ), .C0(\CPLD_Con_1/N_323 ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .A0(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .M1(\r_data[16] ), .M0(\r_data[15] ), .CE(con_rvalid), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[5] ), .Q0(\BUS_Con_1/tx_buffer[15] ), .F1(\CPLD_Con_1/N_360 ), .Q1(\BUS_Con_1/tx_buffer[16] )); SLICE_440 SLICE_440( .D1(\CPLD_Reg_1.regtable[8]_fast[5] ), .C1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[1] ), .B1(\CPLD_Con_1/i_DC_Con4_m[5] ), .A1(\CPLD_Con_1/dc_slot_flag[2] ), .D0(\CPLD_Con_1/N_360 ), .C0(\CPLD_Con_1/N_325 ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .A0(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .M1(\r_data[18] ), .M0(\r_data[17] ), .CE(con_rvalid), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[6] ), .Q0(\BUS_Con_1/tx_buffer[17] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .Q1(\BUS_Con_1/tx_buffer[18] )); SLICE_441 SLICE_441( .D1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_1[2] ), .C1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[2] ), .B1(\CPLD_Con_1/un1_DMM_en_1[0] ), .A1(\CPLD_Con_1/DMM_en_22_0_a2_1_1[12] ), .D0(\CPLD_Con_1/N_363 ), .C0(\CPLD_Con_1/N_333 ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .A0(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .M1(\BUS_Con_1/recv_reg[6] ), .M0(\BUS_Con_1/recv_reg[5] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[12] ), .Q0(\BUS_Con_1/recv_reg[6] ), .F1(\CPLD_Con_1/N_363 ), .Q1(\BUS_Con_1/recv_reg[7] )); SLICE_442 SLICE_442( .D1(\CPLD_Con_1/N_70 ), .C1(\DC_Con3[4] ), .B1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0_0[0] ), .A1(\CPLD_Con_1/dc_slot_flag[2] ), .D0(\CPLD_Con_1/N_363 ), .C0(\CPLD_Con_1/N_336 ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .A0(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .M1(\r_data[10] ), .M0(\r_data[0] ), .CE(con_rvalid), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[14] ), .Q0(\BUS_Con_1/tx_buffer[0] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .Q1(\BUS_Con_1/tx_buffer[10] )); SLICE_443 SLICE_443( .D1(\freq4_relay[7] ), .C1(\CPLD_Con_1/N_364 ), .B1(\CPLD_Con_1/N_307 ), .A1(\CPLD_Con_1/N_306 ), .D0(\CPLD_Con_1/DMM_en_22_0_RNO[13] ), .C0(\CPLD_Con_1/N_363 ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .A0(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .M1(\BUS_Con_1/recv_reg[8] ), .M0(\BUS_Con_1/recv_reg[7] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[13] ), .Q0(\BUS_Con_1/recv_reg[8] ), .F1(\CPLD_Con_1/DMM_en_22_0_RNO[13] ), .Q1(\BUS_Con_1/recv_reg[9] )); SLICE_444 SLICE_444( .D1(\DC_Con3[9] ), .C1(\CPLD_Con_1/g2_0 ), .B1(\CPLD_Con_1/g1_0_0 ), .A1(\CPLD_Con_1/RC_VISel40 ), .D0(i_rst_n_c), .C0(\CPLD_Con_1/N_140 ), .B0(\CPLD_Con_1/un1_exec_flag_2_0_0 ), .A0(\CPLD_Con_1/DMM_en_0_sqmuxa_6 ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_exec_flag_2_0_0_RNI3RHOG1 ), .Q0(\DC_Con2[20] ), .F1(\CPLD_Con_1/DMM_en_0_sqmuxa_6 ), .Q1(\DC_Con2[21] )); SLICE_445 SLICE_445( .C1(\CPLD_Con_1/g0_13_sn ), .B1(\CPLD_Con_1/g0_13_rn_0 ), .A1(\CPLD_Con_1/err_flag19_0_0_0 ), .D0(i_rst_n_c), .C0(\CPLD_Con_1/N_99 ), .B0(\CPLD_Con_1/un1_exec_flag_3_0_0 ), .A0(\CPLD_Con_1/DMM_en_0_sqmuxa_5 ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_exec_flag_3_0_0_RNISFCLD4 ), .Q0(\DC_Con2[4] ), .F1(\CPLD_Con_1/DMM_en_0_sqmuxa_5 ), .Q1(\DC_Con2[5] )); SLICE_446 SLICE_446( .D1(\freq2_relay[7] ), .C1(\CPLD_Con_1/N_407 ), .B1(\CPLD_Con_1/N_329 ), .A1(\CPLD_Con_1/DMM_en_22_0_a2_1[7] ), .D0(\CPLD_Con_1/N_360 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .A0(\CPLD_Con_1/DMM_en_22_0_0[7] ), .M1(\r_data[1] ), .M0(\r_data[19] ), .CE(con_rvalid), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[7] ), .Q0(\BUS_Con_1/tx_buffer[19] ), .F1(\CPLD_Con_1/DMM_en_22_0_0[7] ), .Q1(\BUS_Con_1/tx_buffer[1] )); SLICE_447 SLICE_447( .D1(\CPLD_Con_1/N_350 ), .C1(\CPLD_Con_1/N_9 ), .B1(\CPLD_Con_1/freq_slot_flag[2] ), .A1(\CPLD_Con_1/freq_slot_flag[0] ), .D0(\CPLD_Con_1/N_311 ), .C0(\CPLD_Con_1/un1_i_freq_relay1_1 ), .B0(\CPLD_Con_1/un1_DMM_en[3] ), .A0(\CPLD_Con_1/DMM_en_1_sqmuxa_1_0 ), .M1(\BUS_Con_1/recv_reg[2] ), .M0(\BUS_Con_1/recv_reg[30] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[3] ), .Q0(\BUS_Con_1/wr_out_6 ), .F1(\CPLD_Con_1/DMM_en_1_sqmuxa_1_0 ), .Q1(\BUS_Con_1/recv_reg[3] )); SLICE_448 SLICE_448( .D1(\CPLD_Con_1/dc_slot_flag_3_rep1 ), .C1(\CPLD_Con_1/dc_slot_flag_2_rep1 ), .B1(\CPLD_Con_1/dc_slot_flag_1_rep1 ), .A1(\CPLD_Con_1/dc_slot_flag_0_rep1 ), .C0(\CPLD_Con_1/un1_exec_flag_4_0_0 ), .B0(\CPLD_Con_1/RC_VISel38 ), .A0(\CPLD_Con_1/DMM_en_0_sqmuxa_3 ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.un1_exec_flag_4_i ), .Q0(\DC_Con2[8] ), .F1(\CPLD_Con_1/RC_VISel38 ), .Q1(\DC_Con2[9] )); SLICE_449 SLICE_449( .D1(\CPLD_Con_1/N_202 ), .C1(\CPLD_Con_1/RC_RLSel_13_0_a3_2_N_4L5 ), .B1(\CPLD_Con_1/RC_RLSel_13_0_a3_2_N_3L3 ), .A1(\CPLD_Con_1/RC_RLSel_13_0_a3_2_N_2L1 ), .D0(\CPLD_Con_1/N_216 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[0] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[0] ), .A0(\CPLD_Con_1/un1_i_DC_Con1_4_axbxc1 ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(N_234), .Q0(\freq4_relay[0] ), .F1(\CPLD_Con_1/N_216 ), .Q1(\CPLD_Reg_1/regtable[5][10] )); SLICE_450 SLICE_450( .C1(N_233), .B1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .D0(\CPLD_Con_1/N_216 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[0] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[0] ), .A0(\CPLD_Con_1/un1_i_DC_Con1_4_axbxc1 ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(N_233), .Q0(\freq3_relay[8] ), .F1(\CPLD_Con_1.RC_RLSel_13[12] ), .Q1(\freq3_relay[9] )); SLICE_451 SLICE_451( .C1(N_232), .B1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .D0(\CPLD_Con_1/N_216 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[0] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[0] ), .A0(\CPLD_Con_1/un1_i_DC_Con1_4_axbxc1 ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(N_232), .Q0(\freq3_relay[6] ), .F1(\CPLD_Con_1.RC_RLSel_13[11] ), .Q1(\freq3_relay[7] )); SLICE_452 SLICE_452( .D1(\CPLD_Con_1/N_78 ), .C1(\DC_Con3[9] ), .B1(\CPLD_Con_1/err_flag25_0_o2_2 ), .A1(\CPLD_Con_1/err_flag25_0_0_0 ), .D0(\DC_Con3[23] ), .C0(\CPLD_Con_1/un1_exec_flag_2_0_0 ), .B0(\CPLD_Con_1/err_flag25 ), .A0(\CPLD_Con_1/RC_VISel40 ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.un1_exec_flag_2_i ), .Q0(\DC_Con2[22] ), .F1(\CPLD_Con_1/err_flag25 ), .Q1(\DC_Con2[23] )); SLICE_453 SLICE_453( .D1(\CPLD_Con_1/dc_slot_flag[3] ), .C1(\CPLD_Con_1/dc_slot_flag[2] ), .B1(\CPLD_Con_1/dc_slot_flag[1] ), .A1(\CPLD_Con_1/dc_slot_flag[0] ), .D0(\DC_Con2[23] ), .C0(\CPLD_Con_1/un1_exec_flag_3_0_0 ), .B0(\CPLD_Con_1/err_flag19 ), .A0(\CPLD_Con_1/RC_VISel39 ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.un1_exec_flag_3_i ), .Q0(\DC_Con2[2] ), .F1(\CPLD_Con_1/RC_VISel39 ), .Q1(\DC_Con2[3] )); SLICE_454 SLICE_454( .D1(\DC_Con3[7] ), .C1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[3] ), .B1(\CPLD_Con_1/i_DC_Con4_m[7] ), .A1(\CPLD_Con_1/dc_slot_flag[2] ), .D0(\CPLD_Con_1/N_351 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .B0(\CPLD_Con_1/N_41_1 ), .A0(\CPLD_Con_1/DMM_en_22_0_0[10] ), .M1(\BUS_Con_1/recv_reg[4] ), .M0(\BUS_Con_1/recv_reg[3] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[10] ), .Q0(\BUS_Con_1/recv_reg[4] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .Q1(\BUS_Con_1/recv_reg[5] )); SLICE_455 SLICE_455( .C1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[4] ), .B1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[4] ), .A1(\CPLD_Con_1/un1_i_DC_Con1_4_axbxc1 ), .D0(\CPLD_Con_1/N_202 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[0] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[0] ), .A0(\CPLD_Con_1/RC_RLSel_13_1[16] ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.RC_RLSel_13[17] ), .Q0(\CPLD_Reg_1/regtable[4][17] ), .F1(\CPLD_Con_1/RC_RLSel_13_1[16] ), .Q1(\CPLD_Reg_1/regtable[4][18] )); SLICE_456 SLICE_456( .D1(\DC_Con4[17] ), .C1(\DC_Con3[17] ), .B1(\CPLD_Con_1/dc_slot_flag[3] ), .A1(\CPLD_Con_1/dc_slot_flag[2] ), .D0(\CPLD_Con_1/N_202 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[0] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[0] ), .A0(\CPLD_Con_1/RC_RLSel_13_1[16] ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.RC_RLSel_13[16] ), .Q0(\CPLD_Reg_1/regtable[4][15] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[0] ), .Q1(\CPLD_Reg_1/regtable[4][16] )); SLICE_457 SLICE_457( .D1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_1[2] ), .C1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[2] ), .B1(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .A1(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .D0(\CPLD_Con_1/un1_i_DC_Con1_1[5] ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .B0(\CPLD_Con_1/N_39_1 ), .A0(\CPLD_Con_1/DMM_en_22_2[16] ), .M1(\BUS_Con_1/recv_reg[26] ), .M0(\BUS_Con_1/recv_reg[25] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[16] ), .Q0(\BUS_Con_1/recv_reg[26] ), .F1(\CPLD_Con_1/N_39_1 ), .Q1(\BUS_Con_1/recv_reg[27] )); SLICE_458 SLICE_458( .D1(i_rst_n_c), .C1(\CPLD_Con_1/un1_DMM_en_1_sqmuxa_tz ), .B1(\CPLD_Con_1/freq_t ), .A1(\CPLD_Con_1/dc_t ), .D0(\CPLD_Con_1/N_311 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[5] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[4] ), .A0(\CPLD_Con_1/N_59_1 ), .M1(\BUS_Con_1/recv_reg[28] ), .M0(\BUS_Con_1/recv_reg[27] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[17] ), .Q0(\BUS_Con_1/recv_reg[28] ), .F1(\CPLD_Con_1/N_311 ), .Q1(\BUS_Con_1/recv_reg[29] )); SLICE_459 SLICE_459( .B1(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .A1(\CPLD_Con_1/N_41_1 ), .D0(\CPLD_Con_1/N_311 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[5] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[4] ), .A0(\CPLD_Con_1/N_60_1 ), .M1(\BUS_Con_1/recv_reg[29] ), .M0(\BUS_Con_1/recv_reg[1] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[18] ), .Q0(\BUS_Con_1/recv_reg[2] ), .F1(\CPLD_Con_1/N_60_1 ), .Q1(\BUS_Con_1/recv_reg[30] )); SLICE_460 SLICE_460( .C1(i_rst_n_c), .B1(\CPLD_Con_1/freq_slot_flag[2] ), .A1(\CPLD_Con_1/freq_slot_flag[0] ), .C0(\CPLD_Con_1/N_356 ), .B0(\CPLD_Con_1/N_342 ), .A0(\CPLD_Con_1/N_308 ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.N_315 ), .Q0(\CPLD_Reg_1/regtable[11][20] ), .F1(\CPLD_Con_1/N_342 ), .Q1(\CPLD_Reg_1/regtable[11][21] )); SLICE_461 SLICE_461( .D1(\freq2_relay[9] ), .C1(\CPLD_Con_1/N_342 ), .B1(\CPLD_Con_1/freq_slot_flag[3] ), .A1(\CPLD_Con_1/freq_slot_flag[1] ), .D0(\freq2_relay[8] ), .C0(\freq2_relay[7] ), .B0(\CPLD_Con_1/N_407 ), .A0(\CPLD_Con_1/DMM_en_7_sqmuxa_0_121_a2_0_a2_0 ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\DMM_en_22_0_o2_0_RNI5A4QI[7] ), .Q0(\CPLD_Reg_1/regtable[11][19] ), .F1(\CPLD_Con_1/DMM_en_7_sqmuxa_0_121_a2_0_a2_0 ), .Q1(\CPLD_Reg_1/regtable[11][1] )); SLICE_462 SLICE_462( .C1(\freq4_relay[9] ), .B1(\CPLD_Con_1/freq_slot_flag[3] ), .A1(\CPLD_Con_1/freq_slot_flag[1] ), .C0(\CPLD_Con_1/N_356 ), .B0(\CPLD_Con_1/N_344 ), .A0(\CPLD_Con_1/N_308 ), .M1(\r_data[9] ), .M0(\r_data[8] ), .CE(con_rvalid), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_336 ), .Q0(\BUS_Con_1/tx_buffer[8] ), .F1(\CPLD_Con_1/N_356 ), .Q1(\BUS_Con_1/tx_buffer[9] )); SLICE_463 SLICE_463( .D1(\freq2_relay[9] ), .C1(\CPLD_Con_1/N_344 ), .B1(\CPLD_Con_1/freq_slot_flag[3] ), .A1(\CPLD_Con_1/freq_slot_flag[1] ), .D0(\freq2_relay[8] ), .C0(\freq2_relay[7] ), .B0(\CPLD_Con_1/N_407 ), .A0(\CPLD_Con_1/DMM_en_22_0_a2_0[6] ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_325 ), .Q0(\CPLD_Reg_1/regtable[10][4] ), .F1(\CPLD_Con_1/DMM_en_22_0_a2_0[6] ), .Q1(\CPLD_Reg_1/regtable[10][5] )); SLICE_464 SLICE_464( .D1(\freq3_relay[6] ), .C1(\freq3_relay[5] ), .B1(\freq3_relay[4] ), .A1(\CPLD_Con_1/N_30 ), .D0(\CPLD_Con_1/N_349 ), .C0(\CPLD_Con_1/N_330 ), .B0(\CPLD_Con_1/un1_i_freq_relay3lt8 ), .A0(\CPLD_Con_1/DMM_en_22_0_a2_0_1[10] ), .M1(\r_data[21] ), .M0(\r_data[20] ), .CE(con_rvalid), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/DMM_en_22_0_0[10] ), .Q0(\BUS_Con_1/tx_buffer[20] ), .F1(\CPLD_Con_1/N_349 ), .Q1(\BUS_Con_1/tx_buffer[21] )); CPLD_Con_1_SLICE_465 \CPLD_Con_1/SLICE_465 ( .D1(\CPLD_Con_1/err_flag39 ), .C1(\CPLD_Con_1/en_t[3] ), .B1(\CPLD_Con_1/en_t[2] ), .A1(\CPLD_Con_1/en_t[1] ), .C0(con_exec), .B0(\CPLD_Con_1.exec_flag ), .A0(\CPLD_Con_1/RC_Tx_0_sqmuxa ), .M0(\CPLD_Con_1.exec_flag ), .CE(\CPLD_Con_1/un1_err_flag41_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_err_flag41_i ), .Q0(o_con_done_c), .F1(\CPLD_Con_1/RC_Tx_0_sqmuxa )); SLICE_466 SLICE_466( .D1(\CPLD_Con_1/err_flag39 ), .C1(\CPLD_Con_1/en_t[3] ), .B1(\CPLD_Con_1/en_t[2] ), .A1(\CPLD_Con_1/en_t[1] ), .B0(i_rst_n_c), .A0(\CPLD_Con_1/RC_Tx_1_sqmuxa ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.RC_Tx_0_sqmuxa_1_i ), .Q0(\freq4_relay[13] ), .F1(\CPLD_Con_1/RC_Tx_1_sqmuxa ), .Q1(\freq4_relay[14] )); SLICE_467 SLICE_467( .B1(\freq1_relay[7] ), .A1(\freq1_relay[6] ), .D0(\freq1_relay[9] ), .C0(\freq1_relay[8] ), .B0(\CPLD_Con_1/N_298 ), .A0(\CPLD_Con_1/OC_x0112lto8_4_0 ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_freq_relay1_1 ), .Q0(\DC_Con3[6] ), .F1(\CPLD_Con_1/OC_x0112lto8_4_0 ), .Q1(\DC_Con3[7] )); SLICE_468 SLICE_468( .C1(\freq4_relay[6] ), .B1(\freq4_relay[5] ), .A1(\freq4_relay[4] ), .D0(\freq4_relay[8] ), .C0(\freq4_relay[7] ), .B0(\CPLD_Con_1/N_307 ), .A0(\CPLD_Con_1/N_306 ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_308 ), .Q0(\CPLD_Reg_1/regtable[11][17] ), .F1(\CPLD_Con_1/N_307 ), .Q1(\CPLD_Reg_1/regtable[11][18] )); SLICE_469 SLICE_469( .D1(i_rst_n_c), .C1(\CPLD_Con_1/N_350 ), .B1(\CPLD_Con_1/freq_slot_flag[2] ), .A1(\CPLD_Con_1/freq_slot_flag[0] ), .D0(\freq3_relay[8] ), .C0(\CPLD_Con_1/N_357 ), .B0(\CPLD_Con_1/N_90 ), .A0(\CPLD_Con_1/DMM_en_11_sqmuxa_0_147_i_i_0_0_tz ), .M1(\w_data[6] ), .M0(\w_data[5] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(N_22), .Q0(\CPLD_Reg_1.regtable[8]_fast[5] ), .F1(\CPLD_Con_1/N_357 ), .Q1(\CPLD_Reg_1.regtable[8]_fast[6] )); SLICE_470 SLICE_470( .B1(\DC_Con3[8] ), .A1(\DC_Con3[4] ), .D0(\CPLD_Con_1/N_143 ), .C0(\CPLD_Con_1/N_136 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[19] ), .M0(\w_data[18] ), .CE(\CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[26] ), .Q0(\CPLD_Reg_1/regtable[1][18] ), .F1(\CPLD_Con_1/N_143 ), .Q1(\CPLD_Reg_1/regtable[1][19] )); SLICE_471 SLICE_471( .B1(\DC_Con3[8] ), .A1(\DC_Con3[4] ), .D0(\CPLD_Con_1/N_141 ), .C0(\CPLD_Con_1/N_136 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[20] ), .M0(\w_data[1] ), .CE(\CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[27] ), .Q0(\CPLD_Reg_1/regtable[1][1] ), .F1(\CPLD_Con_1/N_141 ), .Q1(\CPLD_Reg_1/regtable[1][20] )); SLICE_472 SLICE_472( .C1(\DC_Con3[9] ), .B1(\DC_Con3[7] ), .A1(\CPLD_Con_1/RC_VISel40 ), .D0(\CPLD_Con_1/N_143 ), .C0(\CPLD_Con_1/N_136 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[22] ), .M0(\w_data[21] ), .CE(\CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[28] ), .Q0(\CPLD_Reg_1/regtable[1][21] ), .F1(\CPLD_Con_1/N_136 ), .Q1(\CPLD_Reg_1/regtable[1][22] )); SLICE_473 SLICE_473( .C1(\CPLD_Con_1/N_136 ), .B1(\DC_Con3[8] ), .A1(\DC_Con3[4] ), .C0(\CPLD_Con_1/N_150 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[10] ), .Q0(\CPLD_Reg_1/regtable[15][2] ), .F1(\CPLD_Con_1/N_150 ), .Q1(\CPLD_Reg_1/regtable[15][3] )); SLICE_474 SLICE_474( .B1(\DC_Con3[8] ), .A1(\DC_Con3[4] ), .D0(\CPLD_Con_1/N_140 ), .C0(\CPLD_Con_1/N_136 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[11] ), .Q0(\CPLD_Reg_1/regtable[15][4] ), .F1(\CPLD_Con_1/N_140 ), .Q1(\CPLD_Reg_1/regtable[15][5] )); SLICE_475 SLICE_475( .C1(\DC_Con3[9] ), .B1(\DC_Con3[7] ), .A1(\CPLD_Con_1/RC_VISel40 ), .D0(\CPLD_Con_1/N_143 ), .C0(\CPLD_Con_1/N_137 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[11] ), .M0(\w_data[10] ), .CE(\CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[18] ), .Q0(\CPLD_Reg_1/regtable[1][10] ), .F1(\CPLD_Con_1/N_137 ), .Q1(\CPLD_Reg_1/regtable[1][11] )); SLICE_476 SLICE_476( .C1(\CPLD_Con_1/N_137 ), .B1(\DC_Con3[6] ), .A1(\DC_Con3[5] ), .C0(\CPLD_Con_1/N_144 ), .B0(\DC_Con3[8] ), .A0(\DC_Con3[4] ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[2] ), .Q0(\CPLD_Reg_1/regtable[1][4] ), .F1(\CPLD_Con_1/N_144 ), .Q1(\CPLD_Reg_1/regtable[1][5] )); SLICE_477 SLICE_477( .C1(\CPLD_Con_1/N_137 ), .B1(\DC_Con3[6] ), .A1(\DC_Con3[5] ), .C0(\CPLD_Con_1/N_147 ), .B0(\DC_Con3[8] ), .A0(\DC_Con3[4] ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[4] ), .Q0(\freq1_relay[0] ), .F1(\CPLD_Con_1/N_147 ), .Q1(\CPLD_Reg_1/regtable[2][10] )); SLICE_478 SLICE_478( .C1(\CPLD_Con_1/N_137 ), .B1(\DC_Con3[6] ), .A1(\DC_Con3[5] ), .C0(\CPLD_Con_1/N_148 ), .B0(\DC_Con3[8] ), .A0(\DC_Con3[4] ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[6] ), .Q0(\CPLD_Reg_1/regtable[2][11] ), .F1(\CPLD_Con_1/N_148 ), .Q1(\CPLD_Reg_1/regtable[2][12] )); SLICE_479 SLICE_479( .B1(\DC_Con2[8] ), .A1(\DC_Con2[4] ), .D0(\CPLD_Con_1/N_102 ), .C0(\CPLD_Con_1/N_95 ), .B0(\DC_Con2[6] ), .A0(\DC_Con2[5] ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[26] ), .Q0(\CPLD_Reg_1/regtable[15][0] ), .F1(\CPLD_Con_1/N_102 ), .Q1(\CPLD_Reg_1/regtable[15][10] )); SLICE_480 SLICE_480( .B1(\DC_Con2[8] ), .A1(\DC_Con2[4] ), .D0(\CPLD_Con_1/N_100 ), .C0(\CPLD_Con_1/N_95 ), .B0(\DC_Con2[6] ), .A0(\DC_Con2[5] ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[27] ), .Q0(\CPLD_Reg_1/regtable[15][11] ), .F1(\CPLD_Con_1/N_100 ), .Q1(\CPLD_Reg_1/regtable[15][12] )); SLICE_481 SLICE_481( .C1(\CPLD_Con_1/N_95 ), .B1(\DC_Con2[8] ), .A1(\DC_Con2[4] ), .C0(\CPLD_Con_1/N_111 ), .B0(\DC_Con2[6] ), .A0(\DC_Con2[5] ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[10] ), .Q0(\CPLD_Reg_1/regtable[14][19] ), .F1(\CPLD_Con_1/N_111 ), .Q1(\CPLD_Reg_1/regtable[14][1] )); SLICE_482 SLICE_482( .B1(\DC_Con2[8] ), .A1(\DC_Con2[4] ), .D0(\CPLD_Con_1/N_99 ), .C0(\CPLD_Con_1/N_95 ), .B0(\DC_Con2[6] ), .A0(\DC_Con2[5] ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[11] ), .Q0(\CPLD_Reg_1/regtable[14][20] ), .F1(\CPLD_Con_1/N_99 ), .Q1(\CPLD_Reg_1/regtable[14][21] )); SLICE_483 SLICE_483( .C1(\DC_Con2[9] ), .B1(\DC_Con2[7] ), .A1(\CPLD_Con_1/RC_VISel39 ), .D0(\CPLD_Con_1/N_102 ), .C0(\CPLD_Con_1/N_96 ), .B0(\DC_Con2[6] ), .A0(\DC_Con2[5] ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[18] ), .Q0(\CPLD_Reg_1/regtable[14][4] ), .F1(\CPLD_Con_1/N_96 ), .Q1(\CPLD_Reg_1/regtable[14][5] )); SLICE_484 SLICE_484( .C1(\CPLD_Con_1/N_96 ), .B1(\DC_Con2[6] ), .A1(\DC_Con2[5] ), .C0(\CPLD_Con_1/N_103 ), .B0(\DC_Con2[8] ), .A0(\DC_Con2[4] ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[2] ), .Q0(\CPLD_Reg_1/regtable[15][17] ), .F1(\CPLD_Con_1/N_103 ), .Q1(\CPLD_Reg_1/regtable[15][18] )); SLICE_485 SLICE_485( .C1(\CPLD_Con_1/N_96 ), .B1(\DC_Con2[6] ), .A1(\DC_Con2[5] ), .C0(\CPLD_Con_1/N_63 ), .B0(\DC_Con2[8] ), .A0(\DC_Con2[4] ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[4] ), .Q0(\CPLD_Reg_1/regtable[15][19] ), .F1(\CPLD_Con_1/N_63 ), .Q1(\CPLD_Reg_1/regtable[15][1] )); SLICE_486 SLICE_486( .C1(\CPLD_Con_1/N_96 ), .B1(\DC_Con2[6] ), .A1(\DC_Con2[5] ), .C0(\CPLD_Con_1/N_64 ), .B0(\DC_Con2[8] ), .A0(\DC_Con2[4] ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[6] ), .Q0(\CPLD_Reg_1/regtable[15][20] ), .F1(\CPLD_Con_1/N_64 ), .Q1(\CPLD_Reg_1/regtable[15][21] )); SLICE_487 SLICE_487( .D1(i_rst_n_c), .C1(\CPLD_Con_1/freq_t ), .B1(\CPLD_Con_1/freq_slot_flag[2] ), .A1(\CPLD_Con_1/freq_slot_flag[0] ), .D0(\freq4_relay[8] ), .C0(\CPLD_Con_1/N_356 ), .B0(\CPLD_Con_1/N_344 ), .A0(\CPLD_Con_1/N_85 ), .M1(\r_data[7] ), .M0(\r_data[6] ), .CE(con_rvalid), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_333 ), .Q0(\BUS_Con_1/tx_buffer[6] ), .F1(\CPLD_Con_1/N_344 ), .Q1(\BUS_Con_1/tx_buffer[7] )); SLICE_488 SLICE_488( .D1(\CPLD_Con_1/N_38 ), .C1(\DC_Con1[8] ), .B1(\DC_Con1[7] ), .A1(\CPLD_Con_1/err_flag13_0_o2_0_2 ), .D0(\CPLD_Con_1/N_65 ), .C0(\DC_Con1[23] ), .B0(\DC_Con1[9] ), .A0(\CPLD_Con_1/err_flag13_0_0_0 ), .M1(\BUS_Con_1/recv_reg[0] ), .M0(\BUS_Con_1/recv_reg[18] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/DMM_en_0_sqmuxa_3 ), .Q0(\BUS_Con_1/recv_reg[19] ), .F1(\CPLD_Con_1/N_65 ), .Q1(\BUS_Con_1/recv_reg[1] )); SLICE_489 SLICE_489( .D1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_1[2] ), .C1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[2] ), .B1(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .A1(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .A0(\CPLD_Con_1/N_40_1 ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_59_1 ), .Q0(\DC_Con2[17] ), .F1(\CPLD_Con_1/N_40_1 ), .Q1(\DC_Con2[18] )); SLICE_490 SLICE_490( .D1(\freq2_relay[9] ), .C1(\freq2_relay[8] ), .B1(\CPLD_Con_1/freq_slot_flag[3] ), .A1(\CPLD_Con_1/freq_slot_flag[1] ), .D0(\freq2_relay[7] ), .C0(\CPLD_Con_1/N_407 ), .B0(\CPLD_Con_1/N_365 ), .A0(\CPLD_Con_1/N_344 ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_323 ), .Q0(\CPLD_Reg_1/regtable[10][2] ), .F1(\CPLD_Con_1/N_365 ), .Q1(\CPLD_Reg_1/regtable[10][3] )); SLICE_491 SLICE_491( .D1(\freq2_relay[6] ), .C1(\freq2_relay[5] ), .B1(\freq2_relay[4] ), .A1(\CPLD_Con_1/OC_x0126lt3 ), .D0(\freq2_relay[7] ), .C0(\CPLD_Con_1/N_407 ), .B0(\CPLD_Con_1/N_365 ), .A0(\CPLD_Con_1/N_342 ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\DMM_en_22_0_a2_3_RNIK2BQH[4] ), .Q0(\CPLD_Reg_1/regtable[11][13] ), .F1(\CPLD_Con_1/N_407 ), .Q1(\CPLD_Reg_1/regtable[11][14] )); SLICE_492 SLICE_492( .B1(\freq4_relay[7] ), .A1(\CPLD_Con_1/N_306 ), .D0(\freq4_relay[8] ), .C0(\CPLD_Con_1/N_356 ), .B0(\CPLD_Con_1/N_342 ), .A0(\CPLD_Con_1/N_85 ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\DMM_en_22_0_o2_RNI8QTBL[15] ), .Q0(\CPLD_Reg_1/regtable[11][22] ), .F1(\CPLD_Con_1/N_85 ), .Q1(\CPLD_Reg_1/regtable[11][23] )); SLICE_493 SLICE_493( .D1(\CPLD_Con_1/dc_slot_flag_3_rep1 ), .C1(\CPLD_Con_1/dc_slot_flag_2_rep1 ), .B1(\CPLD_Con_1/dc_slot_flag_1_rep1 ), .A1(\CPLD_Con_1/dc_slot_flag_0_rep1 ), .D0(\CPLD_Con_1/N_78 ), .C0(\DC_Con3[9] ), .B0(\DC_Con3[7] ), .A0(\CPLD_Con_1/RC_VISel40 ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[8] ), .Q0(\CPLD_Reg_1/regtable[2][13] ), .F1(\CPLD_Con_1/RC_VISel40 ), .Q1(\CPLD_Reg_1/regtable[2][14] )); SLICE_494 SLICE_494( .D1(\DC_Con4[6] ), .C1(\CPLD_Reg_1.regtable[8]_fast[6] ), .B1(\CPLD_Con_1/dc_slot_flag[3] ), .A1(\CPLD_Con_1/dc_slot_flag[2] ), .D0(\CPLD_Con_1/un1_i_DC_Con1_1_iv_1[2] ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[2] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .A0(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_41_1 ), .Q0(\CPLD_Reg_1/regtable[7][13] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_1[2] ), .Q1(\CPLD_Reg_1/regtable[7][14] )); SLICE_495 SLICE_495( .D1(\DC_Con2[6] ), .C1(\DC_Con1[6] ), .B1(\CPLD_Con_1/dc_slot_flag[1] ), .A1(\CPLD_Con_1/dc_slot_flag[0] ), .D0(\CPLD_Con_1/un1_i_DC_Con1_1_iv_1[2] ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[2] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .A0(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_42_1 ), .Q0(\CPLD_Reg_1/regtable[7][15] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[2] ), .Q1(\CPLD_Reg_1/regtable[7][16] )); SLICE_496 SLICE_496( .C1(\DC_Con4[0] ), .B1(\DC_Con3[0] ), .A1(\DC_Con2[0] ), .D0(\freq2_relay[0] ), .C0(\freq1_relay[0] ), .B0(\CPLD_Con_1/m2 ), .A0(\CPLD_Con_1/SUM0 ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_18_c1 ), .Q0(\CPLD_Reg_1/regtable[12][11] ), .F1(\CPLD_Con_1/SUM0 ), .Q1(\CPLD_Reg_1/regtable[12][12] )); SLICE_497 SLICE_497( .B1(\DC_Con4[6] ), .A1(\DC_Con4[4] ), .D0(\CPLD_Con_1/N_227 ), .C0(\CPLD_Con_1/N_206 ), .B0(\DC_Con4[7] ), .A0(\DC_Con4[5] ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[29] ), .Q0(\freq1_relay[8] ), .F1(\CPLD_Con_1/N_206 ), .Q1(\freq1_relay[9] )); SLICE_498 SLICE_498( .B1(\DC_Con4[6] ), .A1(\DC_Con4[4] ), .D0(\CPLD_Con_1/N_227 ), .C0(\CPLD_Con_1/N_188 ), .B0(\DC_Con4[7] ), .A0(\DC_Con4[5] ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[17] ), .Q0(\CPLD_Reg_1/regtable[2][22] ), .F1(\CPLD_Con_1/N_188 ), .Q1(\CPLD_Reg_1/regtable[2][23] )); SLICE_499 SLICE_499( .C1(\DC_Con4[9] ), .B1(\DC_Con4[8] ), .A1(\CPLD_Con_1/RC_VISel41 ), .D0(\CPLD_Con_1/N_227 ), .C0(\CPLD_Con_1/N_206 ), .B0(\DC_Con4[7] ), .A0(\DC_Con4[5] ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[21] ), .Q0(\freq1_relay[6] ), .F1(\CPLD_Con_1/N_227 ), .Q1(\freq1_relay[7] )); SLICE_500 SLICE_500( .B1(\freq3_relay[8] ), .A1(\CPLD_Con_1/N_357 ), .D0(\freq3_relay[9] ), .C0(\freq3_relay[7] ), .B0(\CPLD_Con_1/N_361 ), .A0(\CPLD_Con_1/freq_t ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/DMM_en_22_0_a2_0_1[10] ), .Q0(\CPLD_Reg_1/regtable[10][6] ), .F1(\CPLD_Con_1/N_361 ), .Q1(\CPLD_Reg_1/regtable[10][7] )); SLICE_501 SLICE_501( .D1(\freq1_relay[8] ), .C1(\freq1_relay[9] ), .B1(\CPLD_Con_1/OC_x0112lto8_4_0 ), .A1(\CPLD_Con_1/N_298 ), .D0(\freq1_relay[5] ), .C0(\freq1_relay[4] ), .B0(\freq1_relay[3] ), .A0(\CPLD_Con_1/OC_x0112lto2_0 ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_298 ), .Q0(\CPLD_Reg_1/regtable[12][13] ), .F1(\CPLD_Con_1/OC_x0112 ), .Q1(\CPLD_Reg_1/regtable[12][14] )); SLICE_502 SLICE_502( .C1(\freq4_relay[3] ), .B1(\freq4_relay[2] ), .A1(\freq4_relay[1] ), .D0(\freq4_relay[6] ), .C0(\freq4_relay[5] ), .B0(\freq4_relay[4] ), .A0(\CPLD_Con_1/OC_x0153lt3 ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_306 ), .Q0(\CPLD_Reg_1/regtable[11][15] ), .F1(\CPLD_Con_1/OC_x0153lt3 ), .Q1(\CPLD_Reg_1/regtable[11][16] )); SLICE_503 SLICE_503( .D1(\CPLD_Con_1/dc_slot_flag_fast[3] ), .C1(\CPLD_Con_1/dc_slot_flag_fast[2] ), .B1(\CPLD_Con_1/dc_slot_flag_fast[1] ), .A1(\CPLD_Con_1/dc_slot_flag_fast[0] ), .D0(\DC_Con4[9] ), .C0(\DC_Con4[7] ), .B0(\DC_Con4[5] ), .A0(\CPLD_Con_1/RC_VISel41 ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_196 ), .Q0(\freq1_relay[4] ), .F1(\CPLD_Con_1/RC_VISel41 ), .Q1(\freq1_relay[5] )); SLICE_504 SLICE_504( .D1(\CPLD_Con_1/dc_slot_flag_3_rep1 ), .C1(\CPLD_Con_1/dc_slot_flag_2_rep1 ), .B1(\CPLD_Con_1/dc_slot_flag_1_rep1 ), .A1(\CPLD_Con_1/dc_slot_flag_0_rep1 ), .D0(\CPLD_Con_1/N_215 ), .C0(\CPLD_Con_1/N_214 ), .B0(\CPLD_Con_1/freq_t ), .A0(\CPLD_Con_1/dc_t ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_202 ), .Q0(\CPLD_Reg_1/regtable[5][11] ), .F1(\CPLD_Con_1/N_215 ), .Q1(\freq4_relay[12] )); SLICE_505 SLICE_505( .C1(\DC_Con4[9] ), .B1(\DC_Con4[7] ), .A1(\DC_Con4[5] ), .D0(\CPLD_Con_1/N_188 ), .C0(\DC_Con4[8] ), .B0(\CPLD_Con_1/RC_VISel41 ), .A0(\CPLD_Con_1/PMU_OC_4_8_0[25] ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[25] ), .Q0(\CPLD_Reg_1/regtable[2][19] ), .F1(\CPLD_Con_1/PMU_OC_4_8_0[25] ), .Q1(\freq1_relay[1] )); SLICE_506 SLICE_506( .D1(\DC_Con1[23] ), .C1(\DC_Con1[9] ), .B1(\CPLD_Con_1/err_flag13_0_o2_0_2_RNIH4D9O_0 ), .A1(\CPLD_Con_1/err_flag13_0_0_0 ), .D0(\CPLD_Con_1/N_57 ), .C0(\DC_Con1[21] ), .B0(\DC_Con1[18] ), .A0(\DC_Con1[17] ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/err_flag13_0_0_0 ), .Q0(\CPLD_Reg_1/regtable[5][20] ), .F1(\CPLD_Con_1/err_flag13_0_0_0_RNIM0FM71 ), .Q1(\CPLD_Reg_1/regtable[5][21] )); SLICE_507 SLICE_507( .D1(\CPLD_Con_1/g0_13_rn_0 ), .C1(\CPLD_Con_1/err_flag19_0_o2_2_RNIDVKG21 ), .B1(\CPLD_Con_1/dc_slot_flag_RNIQ9AIV[0] ), .A1(\CPLD_Con_1/err_flag19_0_0_0 ), .D0(\CPLD_Con_1/N_51 ), .C0(\DC_Con2[21] ), .B0(\DC_Con2[18] ), .A0(\DC_Con2[17] ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/err_flag19_0_0_0 ), .Q0(\freq4_relay[6] ), .F1(\CPLD_Con_1/err_flag19_0_0_0_RNIAI9L43 ), .Q1(\freq4_relay[7] )); SLICE_508 SLICE_508( .B1(i_rst_n_c), .A1(\CPLD_Con_1/freq_t ), .D0(\CPLD_Con_1/N_350 ), .C0(\CPLD_Con_1/freq_slot_flag[2] ), .B0(\CPLD_Con_1/freq_slot_flag[0] ), .A0(\CPLD_Con_1/DMM_en_12_sqmuxa_1_0 ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/DMM_en_12_sqmuxa_1_1 ), .Q0(\CPLD_Reg_1/regtable[11][6] ), .F1(\CPLD_Con_1/DMM_en_12_sqmuxa_1_0 ), .Q1(\CPLD_Reg_1/regtable[11][7] )); SLICE_509 SLICE_509( .D1(\CPLD_Con_1/dc_slot_flag_3_rep1 ), .C1(\CPLD_Con_1/dc_slot_flag_2_rep1 ), .B1(\CPLD_Con_1/dc_slot_flag_1_rep1 ), .A1(\CPLD_Con_1/dc_slot_flag_0_rep1 ), .C0(\CPLD_Con_1/N_214 ), .B0(\CPLD_Con_1/g0_8_1_0 ), .A0(\CPLD_Con_1/RC_VISel41 ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_exec_flag_4_0_0 ), .Q0(\DC_Con2[6] ), .F1(\CPLD_Con_1/N_214 ), .Q1(\DC_Con2[7] )); SLICE_510 SLICE_510( .B1(\CPLD_Con_1/freq_slot_flag[3] ), .A1(\CPLD_Con_1/freq_slot_flag[1] ), .D0(\CPLD_Con_1/N_350 ), .C0(\CPLD_Con_1/freq_slot_flag[2] ), .B0(\CPLD_Con_1/freq_slot_flag[0] ), .A0(\CPLD_Con_1/DMM_en_12_sqmuxa_1_0 ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/DMM_en_2_sqmuxa_1_0 ), .Q0(\CPLD_Reg_1/regtable[12][17] ), .F1(\CPLD_Con_1/N_350 ), .Q1(\CPLD_Reg_1/regtable[12][18] )); SLICE_511 SLICE_511( .D1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[0] ), .C1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[0] ), .B1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .D0(\CPLD_Con_1/N_165 ), .C0(\DC_Con3[19] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[2] ), .A0(\CPLD_Con_1/dc_slot_flag_2_rep1 ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .Q0(\CPLD_Reg_1/regtable[8][13] ), .F1(\CPLD_Con_1/RC_RLSel_13_0_a3_2_N_4L5 ), .Q1(\CPLD_Reg_1/regtable[8][14] )); SLICE_512 SLICE_512( .C1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .B1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .A1(\CPLD_Con_1/RC_RLSel_141_N_2_3_0 ), .D0(\CPLD_Con_1/N_173 ), .C0(\DC_Con3[20] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[3] ), .A0(\CPLD_Con_1/dc_slot_flag_fast[2] ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .Q0(\CPLD_Reg_1/regtable[8][15] ), .F1(\CPLD_Con_1/g0_8_1 ), .Q1(\CPLD_Reg_1/regtable[8][16] )); SLICE_513 SLICE_513( .B1(i_rst_n_c), .A1(\CPLD_Con_1/freq_t ), .D0(\freq3_relay[9] ), .C0(\freq3_relay[8] ), .B0(\freq3_relay[7] ), .A0(\CPLD_Con_1/N_9 ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/DMM_en_10_sqmuxa_1 ), .Q0(\CPLD_Reg_1/regtable[11][8] ), .F1(\CPLD_Con_1/N_9 ), .Q1(\CPLD_Reg_1/regtable[11][9] )); SLICE_514 SLICE_514( .B1(\CPLD_Con_1/N_78 ), .A1(\CPLD_Con_1/err_flag25_0_o2_2 ), .D0(\DC_Con3[8] ), .C0(\DC_Con3[4] ), .B0(\CPLD_Reg_1.regtable[8]_fast[6] ), .A0(\CPLD_Reg_1.regtable[8]_fast[5] ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_78 ), .Q0(\CPLD_Reg_1/regtable[2][17] ), .F1(\CPLD_Con_1/g2_0 ), .Q1(\CPLD_Reg_1/regtable[2][18] )); CPLD_Con_1_SLICE_515 \CPLD_Con_1/SLICE_515 ( .D1(\freq1_relay[8] ), .C1(\CPLD_Con_1/N_350 ), .B1(\CPLD_Con_1/OC_x0112lto8_4_0 ), .A1(\CPLD_Con_1/DMM_en_1_sqmuxa_1_0_a2_0_a2_0_a2_2 ), .D0(i_rst_n_c), .C0(\freq1_relay[9] ), .B0(\CPLD_Con_1/freq_slot_flag[2] ), .A0(\CPLD_Con_1/freq_slot_flag[0] ), .M1(\freq2_relay[0] ), .M0(\freq1_relay[0] ), .CE(\CPLD_Con_1/RC_Tx_1_sqmuxa ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/DMM_en_1_sqmuxa_1_0_a2_0_a2_0_a2_2 ), .Q0(\CPLD_Con_1/freq_slot_flag[0] ), .F1(\CPLD_Con_1/DMM_en_3_sqmuxa_1_0_a2_0_a2_0_a2_1 ), .Q1(\CPLD_Con_1/freq_slot_flag[1] )); SLICE_516 SLICE_516( .B1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[4] ), .A1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[4] ), .D0(\DC_Con2[21] ), .C0(\DC_Con1[21] ), .B0(\CPLD_Con_1/dc_slot_flag[1] ), .A0(\CPLD_Con_1/dc_slot_flag[0] ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[4] ), .Q0(\DC_Con3[20] ), .F1(\CPLD_Con_1/RC_RLSel_13_0_a3_2_N_2L1 ), .Q1(\DC_Con3[21] )); SLICE_517 SLICE_517( .B1(\CPLD_Con_1/un1_i_DC_Con1_iv_1[1] ), .A1(\CPLD_Con_1/un1_i_DC_Con1_iv_0[1] ), .D0(\DC_Con2[18] ), .C0(\DC_Con1[18] ), .B0(\CPLD_Con_1/dc_slot_flag_1_rep1 ), .A0(\CPLD_Con_1/dc_slot_flag_0_rep1 ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_DC_Con1_iv_0[1] ), .Q0(\CPLD_Reg_1/regtable[8][11] ), .F1(\CPLD_Con_1/RC_RLSel_13_0_a3_2_N_3L3 ), .Q1(\CPLD_Reg_1/regtable[8][12] )); SLICE_518 SLICE_518( .D1(\CPLD_Con_1/un1_i_DC_Con1_iv_1[1] ), .C1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[0] ), .B1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[0] ), .A1(\CPLD_Con_1/un1_i_DC_Con1_iv_0[1] ), .D0(\DC_Con4[18] ), .C0(\DC_Con3[18] ), .B0(\CPLD_Con_1/dc_slot_flag_3_rep1 ), .A0(\CPLD_Con_1/dc_slot_flag_2_rep1 ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_DC_Con1_iv_1[1] ), .Q0(\DC_Con3[4] ), .F1(\CPLD_Con_1/RC_RLSel_141_N_2_3_0 ), .Q1(\DC_Con3[5] )); SLICE_519 SLICE_519( .D1(\DC_Con2[9] ), .C1(\CPLD_Con_1/g0_2_N_5L7_N_6L9_0_1 ), .B1(\CPLD_Con_1/g0_2_1 ), .A1(\CPLD_Con_1/err_flag19_0_o2_2 ), .D0(\DC_Con2[3] ), .C0(\DC_Con2[2] ), .B0(\DC_Con2[1] ), .A0(\CPLD_Reg_1.regtable[7]_fast[7] ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/err_flag19_0_o2_2 ), .Q0(\DC_Con1[0] ), .F1(\CPLD_Con_1/err_flag19_0_o2_2_RNIDVKG21 ), .Q1(\CPLD_Reg_1/regtable[6][10] )); SLICE_520 SLICE_520( .D1(\CPLD_Con_1/N_38 ), .C1(\DC_Con1[8] ), .B1(\DC_Con1[7] ), .A1(\CPLD_Con_1/err_flag13_0_o2_0_2 ), .D0(\DC_Con1[4] ), .C0(\DC_Con1[3] ), .B0(\DC_Con1[2] ), .A0(\DC_Con1[1] ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/err_flag13_0_o2_0_2 ), .Q0(\freq4_relay[4] ), .F1(\CPLD_Con_1/err_flag13_0_o2_0_2_RNIH4D9O_0 ), .Q1(\freq4_relay[5] )); SLICE_521 SLICE_521( .D1(\freq3_relay[9] ), .C1(\CPLD_Con_1/N_305 ), .B1(\CPLD_Con_1/g2_0_0 ), .A1(\CPLD_Con_1/OC_x0163 ), .D0(\CPLD_Con_1/freq_slot_flag[3] ), .C0(\CPLD_Con_1/freq_slot_flag[2] ), .B0(\CPLD_Con_1/freq_slot_flag[1] ), .A0(\CPLD_Con_1/freq_slot_flag[0] ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/OC_x0163 ), .Q0(\CPLD_Reg_1/regtable[6][13] ), .F1(\CPLD_Con_1/OC_x17_0_sqmuxa_i_1 ), .Q1(\CPLD_Reg_1/regtable[6][14] )); SLICE_522 SLICE_522( .D1(\DC_Con2[8] ), .C1(\DC_Con2[4] ), .B1(\CPLD_Con_1/g0_21_N_3L3 ), .A1(\CPLD_Con_1/g0_21_N_2L1 ), .C0(\CPLD_Con_1/N_60 ), .B0(\DC_Con2[9] ), .A0(\CPLD_Con_1/err_flag19_0_0_0 ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/err_flag19 ), .Q0(\freq4_relay[8] ), .F1(\CPLD_Con_1/N_60 ), .Q1(\freq4_relay[9] )); CPLD_Con_1_SLICE_523 \CPLD_Con_1/SLICE_523 ( .D1(\CPLD_Con_1/N_60 ), .C1(\DC_Con2[23] ), .B1(\DC_Con2[9] ), .A1(\CPLD_Con_1/g0_7_2 ), .D0(\CPLD_Con_1/dc_slot_flag[3] ), .C0(\CPLD_Con_1/dc_slot_flag[2] ), .B0(\CPLD_Con_1/dc_slot_flag[1] ), .A0(\CPLD_Con_1/dc_slot_flag[0] ), .M1(\DC_Con4[0] ), .M0(\DC_Con3[0] ), .CE(\CPLD_Con_1/RC_Tx_1_sqmuxa ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/g0_7_2 ), .Q0(\CPLD_Con_1/dc_slot_flag_2_rep1 ), .F1(\CPLD_Con_1/g0_13_sn ), .Q1(\CPLD_Con_1/dc_slot_flag_3_rep1 )); CPLD_Con_1_SLICE_524 \CPLD_Con_1/SLICE_524 ( .D1(\CPLD_Con_1/g0_6_2 ), .C1(\CPLD_Con_1/g0_2_N_2L1_1_N_2L1 ), .B1(\CPLD_Con_1/freq_t ), .A1(\CPLD_Con_1.exec_flag ), .D0(\CPLD_Con_1/freq_slot_flag[3] ), .C0(\CPLD_Con_1/freq_slot_flag[2] ), .B0(\CPLD_Con_1/freq_slot_flag[1] ), .A0(\CPLD_Con_1/freq_slot_flag[0] ), .M1(\freq4_relay[0] ), .M0(\freq3_relay[0] ), .CE(\CPLD_Con_1/RC_Tx_1_sqmuxa ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/g0_6_2 ), .Q0(\CPLD_Con_1/freq_slot_flag[2] ), .F1(\CPLD_Con_1/g0_2_1_1 ), .Q1(\CPLD_Con_1/freq_slot_flag[3] )); SLICE_525 SLICE_525( .D1(\DC_Con4[9] ), .C1(\CPLD_Reg_1.regtable[9]_fast[6] ), .B1(\CPLD_Con_1/g1_1_3 ), .A1(\CPLD_Con_1/g0_19_1 ), .D0(\DC_Con4[1] ), .C0(\CPLD_Reg_1.regtable[9]_fast[8] ), .B0(\CPLD_Reg_1.regtable[9]_fast[7] ), .A0(\CPLD_Reg_1.regtable[9]_fast[5] ), .M1(\w_data[6] ), .M0(\w_data[5] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/g1_1_3 ), .Q0(\CPLD_Reg_1.regtable[6]_fast[5] ), .F1(\CPLD_Con_1/N_67_i ), .Q1(\CPLD_Reg_1.regtable[6]_fast[6] )); SLICE_526 SLICE_526( .D1(\CPLD_Con_1/un1_exec_flag_10_i_1 ), .C1(\CPLD_Con_1/RC_VISel41_0_a2_0_a3_RNILT4CU4 ), .B1(\CPLD_Con_1/freq_t ), .A1(\CPLD_Con_1/err_flag_0_sqmuxa_0_0 ), .D0(\CPLD_Con_1/N_65 ), .C0(\DC_Con1[9] ), .B0(\CPLD_Con_1/err_flag13_0_0_0 ), .A0(\CPLD_Con_1/RC_VISel38 ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/err_flag_0_sqmuxa_0_0 ), .Q0(\CPLD_Reg_1/regtable[5][22] ), .F1(\CPLD_Con_1.un1_exec_flag_10_i ), .Q1(\CPLD_Reg_1/regtable[5][23] )); SLICE_527 SLICE_527( .D1(\DC_Con3[8] ), .C1(\DC_Con3[4] ), .B1(\CPLD_Con_1/g0_3_1_N_2L1 ), .A1(\CPLD_Con_1/err_flag25_0_o2_2 ), .D0(\DC_Con3[7] ), .C0(\DC_Con3[3] ), .B0(\DC_Con3[2] ), .A0(\DC_Con3[1] ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/err_flag25_0_o2_2 ), .Q0(\DC_Con1[6] ), .F1(\CPLD_Con_1/g0_3_1_N_5L8 ), .Q1(\DC_Con1[7] )); CPLD_Con_1_SLICE_528 \CPLD_Con_1/SLICE_528 ( .D1(\CPLD_Con_1/N_60 ), .C1(\DC_Con2[9] ), .B1(\CPLD_Con_1/g0_1_2_0 ), .A1(\CPLD_Con_1/err_flag19_0_0_0 ), .D0(\CPLD_Con_1/dc_slot_flag_3_rep1 ), .C0(\CPLD_Con_1/dc_slot_flag_2_rep1 ), .B0(\CPLD_Con_1/dc_slot_flag_1_rep1 ), .A0(\CPLD_Con_1/dc_slot_flag_0_rep1 ), .M1(\DC_Con2[0] ), .M0(\DC_Con1[0] ), .CE(\CPLD_Con_1/RC_Tx_1_sqmuxa ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/g0_1_2_0 ), .Q0(\CPLD_Con_1/dc_slot_flag[0] ), .F1(\CPLD_Con_1/g0_1_0_0_1 ), .Q1(\CPLD_Con_1/dc_slot_flag[1] )); CPLD_Con_1_SLICE_529 \CPLD_Con_1/SLICE_529 ( .D1(\CPLD_Con_1/un1_exec_flag_10_0 ), .C1(\CPLD_Con_1/g0_8_1 ), .B1(\CPLD_Con_1/g0_2 ), .A1(\CPLD_Con_1/err_flag25 ), .C0(\CPLD_Con_1/freq_t ), .B0(\CPLD_Con_1.exec_flag ), .A0(\CPLD_Con_1/dc_t ), .M1(\DC_Con2[0] ), .M0(\DC_Con1[0] ), .CE(\CPLD_Con_1/RC_Tx_1_sqmuxa ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_exec_flag_10_0 ), .Q0(\CPLD_Con_1/dc_slot_flag_fast[0] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_RNIL5OH12[2] ), .Q1(\CPLD_Con_1/dc_slot_flag_fast[1] )); CPLD_Con_1_SLICE_530 \CPLD_Con_1/SLICE_530 ( .D1(\CPLD_Con_1/g0_2 ), .C1(\CPLD_Con_1.exec_flag ), .B1(\CPLD_Con_1/err_flag25 ), .A1(\CPLD_Con_1/dc_t ), .D0(\CPLD_Con_1/dc_slot_flag[3] ), .C0(\CPLD_Con_1/dc_slot_flag[2] ), .B0(\CPLD_Con_1/dc_slot_flag[1] ), .A0(\CPLD_Con_1/dc_slot_flag[0] ), .M1(\DC_Con2[0] ), .M0(\DC_Con1[0] ), .CE(\CPLD_Con_1/RC_Tx_1_sqmuxa ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/g0_2 ), .Q0(\CPLD_Con_1/dc_slot_flag_0_rep1 ), .F1(\CPLD_Con_1/un1_exec_flag_10_i_1 ), .Q1(\CPLD_Con_1/dc_slot_flag_1_rep1 )); SLICE_531 SLICE_531( .D1(\CPLD_Con_1/N_67_i ), .C1(\CPLD_Con_1/g0_10_N_3L3 ), .B1(\CPLD_Con_1/g0_1_0_0_1 ), .A1(\CPLD_Con_1/RC_VISel41 ), .D0(\DC_Con4[21] ), .C0(\DC_Con4[18] ), .B0(\DC_Con4[17] ), .A0(\CPLD_Con_1/g0_10_N_2L1 ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/g0_10_N_3L3 ), .Q0(\DC_Con1[20] ), .F1(\CPLD_Con_1/g0_1_0 ), .Q1(\DC_Con1[21] )); SLICE_532 SLICE_532( .D1(\CPLD_Con_1/N_65 ), .C1(\DC_Con1[9] ), .B1(\CPLD_Con_1/err_flag13_0_0_0 ), .A1(\CPLD_Con_1/RC_VISel38 ), .D0(i_rst_n_c), .C0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_RNIL5OH12[2] ), .B0(\CPLD_Con_1/err_flag13_0_0_0_RNI92FNE1_0 ), .A0(\CPLD_Con_1/g0_1_0 ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(err_flag13_0_0_0_RNILOU7L8), .Q0(\freq4_relay[2] ), .F1(\CPLD_Con_1/err_flag13_0_0_0_RNI92FNE1_0 ), .Q1(\freq4_relay[3] )); SLICE_533 SLICE_533( .D1(\CPLD_Con_1/N_60 ), .C1(\DC_Con2[9] ), .B1(\CPLD_Con_1/g0_1_2_0 ), .A1(\CPLD_Con_1/err_flag19_0_0_0 ), .D0(\CPLD_Con_1/N_67_i ), .C0(\CPLD_Con_1/err_flag19_0_0_0_RNI2M1DH2 ), .B0(\CPLD_Con_1/g0_10_N_3L3 ), .A0(\CPLD_Con_1/RC_VISel41 ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/RC_VISel41_0_a2_0_a3_RNILT4CU4 ), .Q0(\freq4_relay[15] ), .F1(\CPLD_Con_1/err_flag19_0_0_0_RNI2M1DH2 ), .Q1(\freq4_relay[16] )); SLICE_534 SLICE_534( .D1(\freq2_relay[7] ), .C1(\CPLD_Con_1/N_407 ), .B1(\CPLD_Con_1/N_365 ), .A1(\CPLD_Con_1/N_344 ), .D0(\CPLD_Con_1/N_360 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .A0(\CPLD_Con_1/DMM_en_22_0_N_2L1_0 ), .M1(\r_data[14] ), .M0(\r_data[13] ), .CE(con_rvalid), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[4] ), .Q0(\BUS_Con_1/tx_buffer[13] ), .F1(\CPLD_Con_1/DMM_en_22_0_N_2L1_0 ), .Q1(\BUS_Con_1/tx_buffer[14] )); SLICE_535 SLICE_535( .D1(\CPLD_Con_1/N_67_i ), .C1(\DC_Con4[23] ), .B1(\CPLD_Con_1/g0_12_N_3L3 ), .A1(\CPLD_Con_1/RC_VISel41 ), .D0(\DC_Con4[21] ), .C0(\DC_Con4[18] ), .B0(\DC_Con4[17] ), .A0(\CPLD_Con_1/g0_12_N_2L1 ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/g0_12_N_3L3 ), .Q0(\DC_Con1[22] ), .F1(\CPLD_Con_1/RC_VISel41_0_a2_0_a3_RNI54G4K2_0 ), .Q1(\DC_Con1[23] )); SLICE_536 SLICE_536( .D1(\CPLD_Con_1/g0_3_1 ), .C1(\CPLD_Con_1/err_flag19_0_0_0_RNIAI9L43 ), .B1(\CPLD_Con_1/dc_slot_flag_0_rep1_RNIULU4R ), .A1(\CPLD_Con_1/RC_VISel41_0_a2_0_a3_RNI54G4K2_0 ), .D0(\DC_Con3[9] ), .C0(\CPLD_Con_1/g0_3_1_N_5L8 ), .B0(\CPLD_Con_1/dc_t_RNI2Q6P8_0 ), .A0(\CPLD_Con_1/RC_VISel40 ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/g0_3_1 ), .Q0(\CPLD_Reg_1/regtable[5][19] ), .F1(\CPLD_Con_1/g0_2_1_0 ), .Q1(\freq4_relay[1] )); SLICE_537 SLICE_537( .C1(\CPLD_Con_1/err_flag25_0_0_0 ), .B1(\DC_Con3[23] ), .A1(\CPLD_Con_1/RC_VISel40 ), .C0(\DC_Con3[20] ), .B0(\DC_Con3[21] ), .A0(\CPLD_Con_1/g0_26_x0 ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/err_flag25_0_0_0 ), .Q0(\DC_Con1[2] ), .F1(\CPLD_Con_1/dc_slot_flag_0_rep1_RNIULU4R ), .Q1(\DC_Con1[3] )); SLICE_538 SLICE_538( .D1(\CPLD_Con_1/dc_slot_flag[3] ), .C1(\CPLD_Con_1/dc_slot_flag[2] ), .B1(\CPLD_Con_1/dc_slot_flag[1] ), .A1(\CPLD_Con_1/dc_slot_flag[0] ), .B0(\DC_Con2[23] ), .A0(\CPLD_Con_1/dc_slot_flag_RNIANH1R_3[0] ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/dc_slot_flag_RNIQ9AIV[0] ), .Q0(\freq4_relay[17] ), .F1(\CPLD_Con_1/dc_slot_flag_RNIANH1R_3[0] ), .Q1(\CPLD_Reg_1/regtable[5][18] )); SLICE_539 SLICE_539( .D1(i_rst_n_c), .C1(\CPLD_Con_1/freq_t_RNIDK1OA3 ), .B1(\CPLD_Con_1/g0_2_1_1 ), .A1(\CPLD_Con_1/g0_2_1_0 ), .D0(\CPLD_Con_1/freq_slot_flag_RNIBOV481[0] ), .C0(\CPLD_Con_1/dc_slot_flag_0_rep1_RNI421QK ), .B0(\CPLD_Con_1/freq_t_RNI8PH26 ), .A0(\CPLD_Con_1/err_flag13_0_0_0_RNIM0FM71 ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/freq_t_RNIDK1OA3 ), .Q0(\DC_Con1[17] ), .F1(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .Q1(\DC_Con1[18] )); SLICE_540 SLICE_540( .B1(\freq3_relay[8] ), .A1(\freq3_relay[7] ), .D0(\freq3_relay[9] ), .C0(\CPLD_Con_1/N_305 ), .B0(\CPLD_Con_1/g0_6_2 ), .A0(\CPLD_Con_1/g0_2_x1_N_2L1 ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/freq_slot_flag_RNIBOV481[0] ), .Q0(\CPLD_Reg_1/regtable[6][15] ), .F1(\CPLD_Con_1/g0_2_x1_N_2L1 ), .Q1(\CPLD_Reg_1/regtable[6][16] )); CPLD_Reg_1_SLICE_541 \CPLD_Reg_1/SLICE_541 ( .D1(\CPLD_Reg_1/un34_regtable_5[1] ), .C1(\CPLD_Reg_1/un34_regtable_1_0_0 ), .B1(\CPLD_Reg_1/state_ns_0_a4_0_1[1] ), .A1(\CPLD_Reg_1/N_21 ), .D0(\CPLD_Reg_1/reg_err_flag ), .C0(wr_flag), .B0(\CPLD_Reg_1/state[0] ), .A0(\w_data[0] ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/state_ns_0_a4_0_1[1] ), .Q0(\CPLD_Reg_1/regtable[10][0] ), .F1(\CPLD_Reg_1/N_25 ), .Q1(\CPLD_Reg_1/regtable[10][10] )); CPLD_Reg_1_SLICE_542 \CPLD_Reg_1/SLICE_542 ( .D1(\reg_addr_fast[3] ), .C1(\CPLD_Reg_1/un34_regtable_5[1] ), .B1(\CPLD_Reg_1/regtable[0]_1_sqmuxa_1 ), .A1(\CPLD_Reg_1/rdata_reg_1_sqmuxa_2 ), .D0(\reg_addr[1] ), .C0(\reg_addr_fast[0] ), .B0(\CPLD_Reg_1/N_1185 ), .A0(\reg_addr_fast[2] ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .Q0(\CPLD_Reg_1/regtable[0][6] ), .F1(\CPLD_Reg_1/N_1185 ), .Q1(\CPLD_Reg_1/regtable[0][7] )); CPLD_Reg_1_SLICE_543 \CPLD_Reg_1/SLICE_543 ( .D1(\CPLD_Reg_1/reg_err_flag ), .C1(\CPLD_Reg_1/un34_regtable_5[1] ), .B1(\CPLD_Reg_1/un34_regtable_1_0_0 ), .A1(\CPLD_Reg_1/regtable[0]_1_sqmuxa_1 ), .C0(\CPLD_Reg_1/state[1] ), .B0(\CPLD_Reg_1/state[0] ), .A0(\CPLD_Reg_1/regtable[1]_1_sqmuxa ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ), .Q0(\CPLD_Reg_1/regtable[0][13] ), .F1(\CPLD_Reg_1/regtable[1]_1_sqmuxa ), .Q1(\CPLD_Reg_1/regtable[0][14] )); CPLD_Reg_1_SLICE_544 \CPLD_Reg_1/SLICE_544 ( .D1(\CPLD_Reg_1/un34_regtable_5[1] ), .C1(\CPLD_Reg_1/regtable[0]_1_sqmuxa_1 ), .B1(\CPLD_Reg_1/rdata_reg_1_sqmuxa_2 ), .A1(\CPLD_Reg_1/N_1186 ), .C0(\reg_addr_fast[3] ), .B0(\reg_addr_fast[2] ), .A0(\CPLD_Reg_1/regtable[7]_1_sqmuxa_2 ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .Q0(\CPLD_Reg_1/regtable[0][22] ), .F1(\CPLD_Reg_1/regtable[7]_1_sqmuxa_2 ), .Q1(\CPLD_Reg_1/regtable[0][23] )); CPLD_Reg_1_SLICE_545 \CPLD_Reg_1/SLICE_545 ( .D1(\CPLD_Reg_1/un34_regtable_5[1] ), .C1(\CPLD_Reg_1/regtable[0]_1_sqmuxa_1 ), .B1(\CPLD_Reg_1/rdata_reg_1_sqmuxa_2 ), .A1(\CPLD_Reg_1/N_1169 ), .C0(\reg_addr_fast[2] ), .B0(\reg_addr[1] ), .A0(\CPLD_Reg_1/N_1171 ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .Q0(\CPLD_Reg_1/regtable[0][15] ), .F1(\CPLD_Reg_1/N_1171 ), .Q1(\CPLD_Reg_1/regtable[0][16] )); CPLD_Reg_1_SLICE_546 \CPLD_Reg_1/SLICE_546 ( .B1(wr_flag), .A1(con_exec), .D0(\CPLD_Reg_1/un34_regtable_5[1] ), .C0(\CPLD_Reg_1/regtable[5]_1_sqmuxa_0_a2_0 ), .B0(\CPLD_Reg_1/regtable[0]_1_sqmuxa_1 ), .A0(\CPLD_Reg_1/rdata_reg_1_sqmuxa_2 ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/regtable[5]_1_sqmuxa ), .Q0(\CPLD_Reg_1/regtable[0][19] ), .F1(\CPLD_Reg_1/regtable[0]_1_sqmuxa_1 ), .Q1(\CPLD_Reg_1/regtable[0][1] )); CPLD_Reg_1_SLICE_547 \CPLD_Reg_1/SLICE_547 ( .B1(wr_flag), .A1(\CPLD_Reg_1/reg_err_flag ), .D0(con_exec), .C0(\CPLD_Reg_1/un10_0_a3_0 ), .B0(\CPLD_Reg_1/state[1] ), .A0(\CPLD_Reg_1/state[0] ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/un10_0 ), .Q0(\CPLD_Reg_1/regtable[10][11] ), .F1(\CPLD_Reg_1/un10_0_a3_0 ), .Q1(\CPLD_Reg_1/regtable[10][12] )); CPLD_Reg_1_SLICE_548 \CPLD_Reg_1/SLICE_548 ( .C1(\CPLD_Reg_1/reg_err_flag ), .B1(\CPLD_Reg_1/state[1] ), .A1(\CPLD_Reg_1/state[0] ), .C0(wr_flag), .B0(i_rst_n_c), .A0(\CPLD_Reg_1/rdata_reg_1_sqmuxa_2 ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/rdata_reg_1_sqmuxa ), .Q0(\CPLD_Reg_1/regtable[9][13] ), .F1(\CPLD_Reg_1/rdata_reg_1_sqmuxa_2 ), .Q1(\CPLD_Reg_1/regtable[9][14] )); CPLD_Reg_1_SLICE_549 \CPLD_Reg_1/SLICE_549 ( .B1(\reg_addr_fast[3] ), .A1(\reg_addr_fast[0] ), .D0(wr_flag), .C0(reg_addr_2_rep1), .B0(\reg_addr[1] ), .A0(\CPLD_Reg_1/N_1169 ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/N_1167 ), .Q0(\CPLD_Reg_1/regtable[9][11] ), .F1(\CPLD_Reg_1/N_1169 ), .Q1(\CPLD_Reg_1/regtable[9][12] )); BUS_Con_1_SLICE_550 \BUS_Con_1/SLICE_550 ( .D1(\BUS_Con_1/N_244 ), .C1(\BUS_Con_1/N_241 ), .B1(\BUS_Con_1/N_240 ), .A1(\BUS_Con_1/cs_sync[1] ), .B0(i_rst_n_c), .A0(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNIVM1LH ), .M1(\BUS_Con_1/recv_reg[9] ), .M0(\BUS_Con_1/mosi_sync[1] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .Q0(\BUS_Con_1/recv_reg[0] ), .F1(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNIVM1LH ), .Q1(\BUS_Con_1/recv_reg[10] )); BUS_Con_1_SLICE_551 \BUS_Con_1/SLICE_551 ( .B1(\BUS_Con_1/state[1] ), .A1(\BUS_Con_1/state[0] ), .D0(\BUS_Con_1/N_244 ), .C0(\BUS_Con_1/N_241 ), .B0(\BUS_Con_1/N_240 ), .A0(\BUS_Con_1/cs_sync[1] ), .M1(\BUS_Con_1/recv_reg[11] ), .M0(\BUS_Con_1/recv_reg[10] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .Q0(\BUS_Con_1/recv_reg[11] ), .F1(\BUS_Con_1/N_240 ), .Q1(\BUS_Con_1/recv_reg[12] )); SLICE_552 SLICE_552( .C1(\BUS_Con_1/sclk_sync[1] ), .B1(\BUS_Con_1.sclk_sync[0] ), .A1(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1/N_253 ), .B0(\BUS_Con_1/N_242 ), .A0(\BUS_Con_1.cs_sync[0] ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/N_238_i ), .Q0(\CPLD_Reg_1/regtable[10][22] ), .F1(\BUS_Con_1/N_242 ), .Q1(\CPLD_Reg_1/regtable[10][23] )); SLICE_553 SLICE_553( .D1(\BUS_Con_1/err_flag_1_sqmuxa_0_a2_0_0 ), .C1(\BUS_Con_1/bit_cnt[5] ), .B1(\BUS_Con_1/bit_cnt[4] ), .A1(\BUS_Con_1/bit_cnt[2] ), .D0(i_rst_n_c), .C0(\BUS_Con_1/N_253 ), .B0(\BUS_Con_1/N_242 ), .A0(\BUS_Con_1.cs_sync[0] ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/bit_cnt_0_sqmuxa_1_i_a2_RNISVNVG ), .Q0(\CPLD_Reg_1/regtable[10][17] ), .F1(\BUS_Con_1/N_253 ), .Q1(\CPLD_Reg_1/regtable[10][18] )); BUS_Con_1_SLICE_554 \BUS_Con_1/SLICE_554 ( .D1(\BUS_Con_1/N_244 ), .C1(\BUS_Con_1/cs_sync[1] ), .B1(\BUS_Con_1/bit_cnt[1] ), .A1(\BUS_Con_1/bit_cnt[0] ), .C0(\BUS_Con_1/un1_bit_cnt_9_c2 ), .B0(\BUS_Con_1/bit_cnt[3] ), .A0(\BUS_Con_1/bit_cnt[2] ), .M1(\BUS_Con_1/recv_reg[17] ), .M0(\BUS_Con_1/recv_reg[16] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/un1_bit_cnt_9_c4 ), .Q0(\BUS_Con_1/recv_reg[17] ), .F1(\BUS_Con_1/un1_bit_cnt_9_c2 ), .Q1(\BUS_Con_1/recv_reg[18] )); SLICE_555 SLICE_555( .D1(\CPLD_Con_1/N_192 ), .C1(\DC_Con4[8] ), .B1(\DC_Con4[6] ), .A1(\DC_Con4[4] ), .D0(\DC_Con4[4] ), .C0(\DC_Con4[6] ), .B0(\CPLD_Con_1/N_192 ), .A0(\DC_Con4[8] ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[9] ), .Q0(\freq2_relay[2] ), .F1(\CPLD_Con_1.PMU_OC_4_8[8] ), .Q1(\freq2_relay[3] )); SLICE_556 SLICE_556( .D1(\DC_Con4[8] ), .C1(\CPLD_Con_1/N_190 ), .B1(\DC_Con4[6] ), .A1(\DC_Con4[4] ), .D0(\DC_Con4[4] ), .C0(\DC_Con4[6] ), .B0(\CPLD_Con_1/N_190 ), .A0(\DC_Con4[8] ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[11] ), .Q0(\CPLD_Reg_1/regtable[3][17] ), .F1(\CPLD_Con_1.PMU_OC_4_8[31] ), .Q1(\CPLD_Reg_1/regtable[3][18] )); SLICE_557 SLICE_557( .D1(\DC_Con4[4] ), .C1(\DC_Con4[6] ), .B1(\DC_Con4[8] ), .A1(\CPLD_Con_1/N_192 ), .D0(\DC_Con4[4] ), .C0(\DC_Con4[6] ), .B0(\DC_Con4[8] ), .A0(\CPLD_Con_1/N_192 ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[28] ), .Q0(\freq2_relay[4] ), .F1(\CPLD_Con_1.PMU_OC_4_8[24] ), .Q1(\freq2_relay[5] )); SLICE_558 SLICE_558( .D1(\DC_Con4[4] ), .C1(\DC_Con4[6] ), .B1(\DC_Con4[8] ), .A1(\CPLD_Con_1/N_190 ), .D0(\DC_Con4[4] ), .C0(\DC_Con4[6] ), .B0(\DC_Con4[8] ), .A0(\CPLD_Con_1/N_190 ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[27] ), .Q0(\CPLD_Reg_1/regtable[3][15] ), .F1(\CPLD_Con_1.PMU_OC_4_8[14] ), .Q1(\CPLD_Reg_1/regtable[3][16] )); SLICE_559 SLICE_559( .D1(\CPLD_Con_1/N_115 ), .C1(\CPLD_Con_1/N_113 ), .B1(\DC_Con1[8] ), .A1(\DC_Con1[7] ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_113 ), .A0(\CPLD_Con_1/N_115 ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[13] ), .Q0(\CPLD_Reg_1/regtable[12][6] ), .F1(\CPLD_Con_1.PMU_OC_1_8[5] ), .Q1(\CPLD_Reg_1/regtable[12][7] )); SLICE_560 SLICE_560( .D1(\CPLD_Con_1/N_116 ), .C1(\CPLD_Con_1/N_113 ), .B1(\DC_Con1[8] ), .A1(\DC_Con1[7] ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_113 ), .A0(\CPLD_Con_1/N_116 ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[19] ), .Q0(\CPLD_Reg_1/regtable[12][2] ), .F1(\CPLD_Con_1.PMU_OC_1_8[3] ), .Q1(\CPLD_Reg_1/regtable[12][3] )); SLICE_561 SLICE_561( .D1(\CPLD_Con_1/N_113 ), .C1(\CPLD_Con_1/N_38 ), .B1(\DC_Con1[8] ), .A1(\DC_Con1[7] ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_38 ), .A0(\CPLD_Con_1/N_113 ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[25] ), .Q0(\CPLD_Reg_1/regtable[13][6] ), .F1(\CPLD_Con_1.PMU_OC_1_8[1] ), .Q1(\CPLD_Reg_1/regtable[13][7] )); SLICE_562 SLICE_562( .D1(\DC_Con4[4] ), .C1(\DC_Con4[6] ), .B1(\DC_Con4[8] ), .A1(\CPLD_Con_1/N_190 ), .D0(\DC_Con4[4] ), .C0(\DC_Con4[6] ), .B0(\DC_Con4[8] ), .A0(\CPLD_Con_1/N_190 ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[26] ), .Q0(\CPLD_Reg_1/regtable[3][20] ), .F1(\CPLD_Con_1.PMU_OC_4_8[10] ), .Q1(\CPLD_Reg_1/regtable[3][21] )); SLICE_563 SLICE_563( .D1(\CPLD_Con_1/N_95 ), .C1(\CPLD_Con_1/N_43 ), .B1(\DC_Con2[8] ), .A1(\DC_Con2[4] ), .D0(\DC_Con2[4] ), .C0(\DC_Con2[8] ), .B0(\CPLD_Con_1/N_43 ), .A0(\CPLD_Con_1/N_95 ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[25] ), .Q0(\CPLD_Reg_1/regtable[14][13] ), .F1(\CPLD_Con_1.PMU_OC_2_8[8] ), .Q1(\CPLD_Reg_1/regtable[14][14] )); SLICE_564 SLICE_564( .D1(\CPLD_Con_1/N_119 ), .C1(\CPLD_Con_1/N_114 ), .B1(\DC_Con1[8] ), .A1(\DC_Con1[7] ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_114 ), .A0(\CPLD_Con_1/N_119 ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[22] ), .Q0(\CPLD_Reg_1/regtable[13][11] ), .F1(\CPLD_Con_1.PMU_OC_1_8[6] ), .Q1(\CPLD_Reg_1/regtable[13][12] )); SLICE_565 SLICE_565( .D1(\CPLD_Con_1/N_115 ), .C1(\CPLD_Con_1/N_114 ), .B1(\DC_Con1[8] ), .A1(\DC_Con1[7] ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_114 ), .A0(\CPLD_Con_1/N_115 ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[20] ), .Q0(\CPLD_Reg_1/regtable[13][20] ), .F1(\CPLD_Con_1.PMU_OC_1_8[4] ), .Q1(\CPLD_Reg_1/regtable[13][21] )); SLICE_566 SLICE_566( .D1(\CPLD_Con_1/N_116 ), .C1(\CPLD_Con_1/N_114 ), .B1(\DC_Con1[8] ), .A1(\DC_Con1[7] ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_114 ), .A0(\CPLD_Con_1/N_116 ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[18] ), .Q0(\CPLD_Reg_1/regtable[13][17] ), .F1(\CPLD_Con_1.PMU_OC_1_8[2] ), .Q1(\CPLD_Reg_1/regtable[13][18] )); SLICE_567 SLICE_567( .D1(\DC_Con1[7] ), .C1(\DC_Con1[8] ), .B1(\CPLD_Con_1/N_114 ), .A1(\CPLD_Con_1/N_115 ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_114 ), .A0(\CPLD_Con_1/N_115 ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[12] ), .Q0(\CPLD_Reg_1/regtable[13][19] ), .F1(\CPLD_Con_1.PMU_OC_1_8[28] ), .Q1(\CPLD_Reg_1/regtable[13][1] )); SLICE_568 SLICE_568( .D1(\DC_Con1[7] ), .C1(\DC_Con1[8] ), .B1(\CPLD_Con_1/N_114 ), .A1(\CPLD_Con_1/N_116 ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_114 ), .A0(\CPLD_Con_1/N_116 ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[10] ), .Q0(\CPLD_Reg_1/regtable[13][15] ), .F1(\CPLD_Con_1.PMU_OC_1_8[26] ), .Q1(\CPLD_Reg_1/regtable[13][16] )); SLICE_569 SLICE_569( .D1(\CPLD_Con_1/N_141 ), .C1(\CPLD_Con_1/N_136 ), .B1(\DC_Con3[6] ), .A1(\DC_Con3[5] ), .D0(\CPLD_Con_1/N_141 ), .C0(\CPLD_Con_1/N_136 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[29] ), .Q0(\CPLD_Reg_1/regtable[1][2] ), .F1(\CPLD_Con_1.PMU_OC_3_8[25] ), .Q1(\CPLD_Reg_1/regtable[1][3] )); SLICE_570 SLICE_570( .D1(\CPLD_Con_1/N_143 ), .C1(\CPLD_Con_1/N_136 ), .B1(\DC_Con3[6] ), .A1(\DC_Con3[5] ), .D0(\CPLD_Con_1/N_143 ), .C0(\CPLD_Con_1/N_136 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[30] ), .Q0(\CPLD_Reg_1/regtable[1][6] ), .F1(\CPLD_Con_1.PMU_OC_3_8[24] ), .Q1(\CPLD_Reg_1/regtable[1][7] )); SLICE_571 SLICE_571( .D1(\CPLD_Con_1/N_140 ), .C1(\CPLD_Con_1/N_136 ), .B1(\DC_Con3[6] ), .A1(\DC_Con3[5] ), .D0(\CPLD_Con_1/N_140 ), .C0(\CPLD_Con_1/N_136 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[13] ), .Q0(\CPLD_Reg_1/regtable[15][8] ), .F1(\CPLD_Con_1.PMU_OC_3_8[9] ), .Q1(\CPLD_Reg_1/regtable[15][9] )); SLICE_572 SLICE_572( .D1(\CPLD_Con_1/N_141 ), .C1(\CPLD_Con_1/N_137 ), .B1(\DC_Con3[6] ), .A1(\DC_Con3[5] ), .D0(\CPLD_Con_1/N_141 ), .C0(\CPLD_Con_1/N_137 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[13] ), .M0(\w_data[12] ), .CE(\CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[19] ), .Q0(\CPLD_Reg_1/regtable[1][12] ), .F1(\CPLD_Con_1.PMU_OC_3_8[17] ), .Q1(\CPLD_Reg_1/regtable[1][13] )); SLICE_573 SLICE_573( .D1(\CPLD_Con_1/N_143 ), .C1(\CPLD_Con_1/N_137 ), .B1(\DC_Con3[6] ), .A1(\DC_Con3[5] ), .D0(\CPLD_Con_1/N_143 ), .C0(\CPLD_Con_1/N_137 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[15] ), .M0(\w_data[14] ), .CE(\CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[20] ), .Q0(\CPLD_Reg_1/regtable[1][14] ), .F1(\CPLD_Con_1.PMU_OC_3_8[22] ), .Q1(\CPLD_Reg_1/regtable[1][15] )); SLICE_574 SLICE_574( .D1(\CPLD_Con_1/N_141 ), .C1(\CPLD_Con_1/N_137 ), .B1(\DC_Con3[6] ), .A1(\DC_Con3[5] ), .D0(\CPLD_Con_1/N_141 ), .C0(\CPLD_Con_1/N_137 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[17] ), .M0(\w_data[16] ), .CE(\CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[21] ), .Q0(\CPLD_Reg_1/regtable[1][16] ), .F1(\CPLD_Con_1.PMU_OC_3_8[23] ), .Q1(\CPLD_Reg_1/regtable[1][17] )); SLICE_575 SLICE_575( .D1(\CPLD_Con_1/N_102 ), .C1(\CPLD_Con_1/N_95 ), .B1(\DC_Con2[6] ), .A1(\DC_Con2[5] ), .D0(\CPLD_Con_1/N_102 ), .C0(\CPLD_Con_1/N_95 ), .B0(\DC_Con2[6] ), .A0(\DC_Con2[5] ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[28] ), .Q0(\CPLD_Reg_1/regtable[15][13] ), .F1(\CPLD_Con_1.PMU_OC_2_8[30] ), .Q1(\CPLD_Reg_1/regtable[15][14] )); SLICE_576 SLICE_576( .D1(\CPLD_Con_1/N_100 ), .C1(\CPLD_Con_1/N_95 ), .B1(\DC_Con2[6] ), .A1(\DC_Con2[5] ), .D0(\CPLD_Con_1/N_100 ), .C0(\CPLD_Con_1/N_95 ), .B0(\DC_Con2[6] ), .A0(\DC_Con2[5] ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[29] ), .Q0(\CPLD_Reg_1/regtable[15][15] ), .F1(\CPLD_Con_1.PMU_OC_2_8[31] ), .Q1(\CPLD_Reg_1/regtable[15][16] )); SLICE_577 SLICE_577( .D1(\CPLD_Con_1/N_99 ), .C1(\CPLD_Con_1/N_95 ), .B1(\DC_Con2[6] ), .A1(\DC_Con2[5] ), .D0(\CPLD_Con_1/N_99 ), .C0(\CPLD_Con_1/N_95 ), .B0(\DC_Con2[6] ), .A0(\DC_Con2[5] ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[13] ), .Q0(\CPLD_Reg_1/regtable[14][2] ), .F1(\CPLD_Con_1.PMU_OC_2_8[15] ), .Q1(\CPLD_Reg_1/regtable[14][3] )); SLICE_578 SLICE_578( .D1(\CPLD_Con_1/N_100 ), .C1(\CPLD_Con_1/N_96 ), .B1(\DC_Con2[6] ), .A1(\DC_Con2[5] ), .D0(\CPLD_Con_1/N_100 ), .C0(\CPLD_Con_1/N_96 ), .B0(\DC_Con2[6] ), .A0(\DC_Con2[5] ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[19] ), .Q0(\CPLD_Reg_1/regtable[14][6] ), .F1(\CPLD_Con_1.PMU_OC_2_8[23] ), .Q1(\CPLD_Reg_1/regtable[14][7] )); SLICE_579 SLICE_579( .D1(\CPLD_Con_1/N_102 ), .C1(\CPLD_Con_1/N_96 ), .B1(\DC_Con2[6] ), .A1(\DC_Con2[5] ), .D0(\CPLD_Con_1/N_102 ), .C0(\CPLD_Con_1/N_96 ), .B0(\DC_Con2[6] ), .A0(\DC_Con2[5] ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[20] ), .Q0(\CPLD_Reg_1/regtable[14][8] ), .F1(\CPLD_Con_1.PMU_OC_2_8[22] ), .Q1(\CPLD_Reg_1/regtable[14][9] )); SLICE_580 SLICE_580( .D1(\CPLD_Con_1/dc_slot_flag[0] ), .C1(\CPLD_Con_1/dc_slot_flag[1] ), .B1(\CPLD_Con_1/dc_slot_flag[2] ), .A1(\CPLD_Con_1/dc_slot_flag[3] ), .D0(\CPLD_Con_1/dc_slot_flag[3] ), .C0(\CPLD_Con_1/dc_slot_flag[2] ), .B0(\CPLD_Con_1/dc_slot_flag[1] ), .A0(\CPLD_Con_1/dc_slot_flag[0] ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_DMM_en_1_sqmuxa_tz ), .Q0(\CPLD_Reg_1/regtable[7][11] ), .F1(\CPLD_Con_1/g0_13_rn_0 ), .Q1(\CPLD_Reg_1/regtable[7][12] )); CPLD_Reg_1_SLICE_581 \CPLD_Reg_1/SLICE_581 ( .D1(\reg_addr_fast[2] ), .C1(\reg_addr_fast[0] ), .B1(\reg_addr[1] ), .A1(\CPLD_Reg_1/N_1185 ), .D0(\reg_addr[1] ), .C0(\reg_addr_fast[0] ), .B0(\CPLD_Reg_1/N_1185 ), .A0(\reg_addr_fast[2] ), .M1(\w_data[5] ), .M0(\w_data[4] ), .CE(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .Q0(\CPLD_Reg_1/regtable[0][4] ), .F1(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .Q1(\CPLD_Reg_1/regtable[0][5] )); CPLD_Reg_1_SLICE_582 \CPLD_Reg_1/SLICE_582 ( .D1(\reg_addr_fast[2] ), .C1(reg_addr_0_rep1), .B1(\reg_addr[1] ), .A1(\CPLD_Reg_1/N_1185 ), .D0(\reg_addr_fast[2] ), .C0(reg_addr_0_rep1), .B0(\reg_addr[1] ), .A0(\CPLD_Reg_1/N_1185 ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .Q0(\CPLD_Reg_1/regtable[0][0] ), .F1(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .Q1(\CPLD_Reg_1/regtable[0][10] )); CPLD_Reg_1_SLICE_583 \CPLD_Reg_1/SLICE_583 ( .D1(\reg_addr_fast[2] ), .C1(\reg_addr_fast[0] ), .B1(\reg_addr[1] ), .A1(\CPLD_Reg_1/N_1185 ), .D0(\reg_addr_fast[2] ), .C0(\reg_addr_fast[0] ), .B0(\reg_addr[1] ), .A0(\CPLD_Reg_1/N_1185 ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .Q0(\CPLD_Reg_1/regtable[0][8] ), .F1(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .Q1(\CPLD_Reg_1/regtable[0][9] )); CPLD_Reg_1_SLICE_584 \CPLD_Reg_1/SLICE_584 ( .D1(\reg_addr_fast[3] ), .C1(\reg_addr_fast[2] ), .B1(\reg_addr_fast[0] ), .A1(\reg_addr[1] ), .D0(\reg_addr_fast[3] ), .C0(\reg_addr_fast[2] ), .B0(\reg_addr_fast[0] ), .A0(\reg_addr[1] ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/un34_regtable_1_0_0 ), .Q0(\CPLD_Reg_1/regtable[10][15] ), .F1(\CPLD_Reg_1/regtable[5]_1_sqmuxa_0_a2_0 ), .Q1(\CPLD_Reg_1/regtable[10][16] )); SLICE_585 SLICE_585( .C1(\DC_Con4[8] ), .B1(\DC_Con4[6] ), .A1(\DC_Con4[4] ), .C0(\DC_Con4[4] ), .B0(\DC_Con4[6] ), .A0(\DC_Con4[8] ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[23] ), .Q0(\freq3_relay[0] ), .F1(N_193), .Q1(\CPLD_Reg_1/regtable[4][10] )); SLICE_586 SLICE_586( .C1(\DC_Con4[8] ), .B1(\DC_Con4[6] ), .A1(\DC_Con4[4] ), .C0(\DC_Con4[4] ), .B0(\DC_Con4[6] ), .A0(\DC_Con4[8] ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(N_194), .Q0(\CPLD_Reg_1/regtable[2][20] ), .F1(N_195), .Q1(\CPLD_Reg_1/regtable[2][21] )); SLICE_587 SLICE_587( .C1(\DC_Con4[8] ), .B1(\DC_Con4[6] ), .A1(\DC_Con4[4] ), .C0(\DC_Con4[4] ), .B0(\DC_Con4[6] ), .A0(\DC_Con4[8] ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_198 ), .Q0(\CPLD_Reg_1/regtable[4][11] ), .F1(N_197), .Q1(\CPLD_Reg_1/regtable[4][12] )); SLICE_588 SLICE_588( .C1(\DC_Con4[4] ), .B1(\DC_Con4[6] ), .A1(\DC_Con4[8] ), .D0(\DC_Con4[4] ), .C0(\DC_Con4[6] ), .B0(\DC_Con4[8] ), .A0(\CPLD_Con_1/N_192 ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[12] ), .Q0(\freq2_relay[6] ), .F1(N_155_i), .Q1(\freq2_relay[7] )); SLICE_589 SLICE_589( .D1(\CPLD_Con_1/N_119 ), .C1(\CPLD_Con_1/N_113 ), .B1(\DC_Con1[8] ), .A1(\DC_Con1[7] ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_113 ), .A0(\CPLD_Con_1/N_115 ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[21] ), .Q0(\CPLD_Reg_1/regtable[12][8] ), .F1(\CPLD_Con_1.PMU_OC_1_8[7] ), .Q1(\CPLD_Reg_1/regtable[12][9] )); SLICE_590 SLICE_590( .D1(\DC_Con1[7] ), .C1(\DC_Con1[8] ), .B1(\CPLD_Con_1/N_38 ), .A1(\CPLD_Con_1/N_114 ), .D0(\DC_Con1[7] ), .C0(\DC_Con1[8] ), .B0(\CPLD_Con_1/N_38 ), .A0(\CPLD_Con_1/N_113 ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[9] ), .Q0(\CPLD_Reg_1/regtable[13][8] ), .F1(\CPLD_Con_1.PMU_OC_1_8[8] ), .Q1(\CPLD_Reg_1/regtable[13][9] )); SLICE_591 SLICE_591( .D1(\DC_Con1[5] ), .C1(\DC_Con1[6] ), .B1(\CPLD_Con_1/N_114 ), .A1(\CPLD_Con_1/N_118 ), .D0(\DC_Con1[5] ), .C0(\DC_Con1[6] ), .B0(\CPLD_Con_1/N_114 ), .A0(\CPLD_Con_1/N_117 ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[13]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_1_8[14] ), .Q0(\CPLD_Reg_1/regtable[13][0] ), .F1(\CPLD_Con_1.PMU_OC_1_8[30] ), .Q1(\CPLD_Reg_1/regtable[13][10] )); SLICE_592 SLICE_592( .D1(\CPLD_Con_1/N_140 ), .C1(\CPLD_Con_1/N_136 ), .B1(\DC_Con3[6] ), .A1(\DC_Con3[5] ), .D0(\CPLD_Con_1/N_141 ), .C0(\CPLD_Con_1/N_136 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[31] ), .Q0(\CPLD_Reg_1/regtable[1][8] ), .F1(\CPLD_Con_1.PMU_OC_3_8[15] ), .Q1(\CPLD_Reg_1/regtable[1][9] )); SLICE_593 SLICE_593( .C1(\CPLD_Con_1/N_150 ), .B1(\DC_Con3[6] ), .A1(\DC_Con3[5] ), .C0(\CPLD_Con_1/N_150 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[7] ), .M0(\w_data[6] ), .CE(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_3_8[12] ), .Q0(\CPLD_Reg_1/regtable[15][6] ), .F1(\CPLD_Con_1.PMU_OC_3_8[14] ), .Q1(\CPLD_Reg_1/regtable[15][7] )); SLICE_594 SLICE_594( .D1(\freq3_relay[9] ), .C1(\freq3_relay[8] ), .B1(\freq3_relay[7] ), .A1(\CPLD_Con_1/N_305 ), .D0(\freq3_relay[8] ), .C0(\freq3_relay[7] ), .B0(\CPLD_Con_1/N_357 ), .A0(\CPLD_Con_1/N_305 ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.N_364 ), .Q0(\CPLD_Reg_1/regtable[12][19] ), .F1(\CPLD_Con_1/g0_2_N_2L1_1_N_2L1 ), .Q1(\CPLD_Reg_1/regtable[12][1] )); SLICE_595 SLICE_595( .C1(\CPLD_Con_1/N_111 ), .B1(\DC_Con2[6] ), .A1(\DC_Con2[5] ), .C0(\CPLD_Con_1/N_111 ), .B0(\DC_Con2[6] ), .A0(\DC_Con2[5] ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[12] ), .Q0(\CPLD_Reg_1/regtable[14][22] ), .F1(\CPLD_Con_1.PMU_OC_2_8[14] ), .Q1(\CPLD_Reg_1/regtable[14][23] )); SLICE_596 SLICE_596( .D1(\freq2_relay[8] ), .C1(\CPLD_Con_1/N_344 ), .B1(\CPLD_Con_1/freq_slot_flag[3] ), .A1(\CPLD_Con_1/freq_slot_flag[1] ), .D0(\freq2_relay[9] ), .C0(\CPLD_Con_1/N_344 ), .B0(\CPLD_Con_1/freq_slot_flag[3] ), .A0(\CPLD_Con_1/freq_slot_flag[1] ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_329 ), .Q0(\CPLD_Reg_1/regtable[10][8] ), .F1(\CPLD_Con_1/DMM_en_22_0_a2_1[7] ), .Q1(\CPLD_Reg_1/regtable[10][9] )); SLICE_597 SLICE_597( .C1(\freq4_relay[0] ), .B1(\freq3_relay[0] ), .A1(\DC_Con1[0] ), .C0(\freq4_relay[0] ), .B0(\freq3_relay[0] ), .A0(\DC_Con1[0] ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_6_0 ), .Q0(\CPLD_Reg_1/regtable[12][0] ), .F1(\CPLD_Con_1/m2 ), .Q1(\CPLD_Reg_1/regtable[12][10] )); SLICE_598 SLICE_598( .D1(i_rst_n_c), .C1(\CPLD_Con_1/freq_t ), .B1(\CPLD_Con_1.exec_flag ), .A1(\CPLD_Con_1/OC_x17_0_sqmuxa_i_1 ), .C0(i_rst_n_c), .B0(\CPLD_Con_1/freq_t ), .A0(\CPLD_Con_1.exec_flag ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.io_RC_1_sqmuxa ), .Q0(\DC_Con2[0] ), .F1(\CPLD_Con_1.OC_x17_0_sqmuxa_i ), .Q1(\CPLD_Reg_1/regtable[7][10] )); SLICE_599 SLICE_599( .C1(\freq3_relay[3] ), .B1(\freq3_relay[2] ), .A1(\freq3_relay[1] ), .C0(\freq3_relay[3] ), .B0(\freq3_relay[2] ), .A0(\freq3_relay[1] ), .M1(\BUS_Con_1/recv_reg[22] ), .M0(\BUS_Con_1/recv_reg[21] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_30 ), .Q0(\BUS_Con_1/recv_reg[22] ), .F1(\CPLD_Con_1/g0_14_N_2L1 ), .Q1(\BUS_Con_1/recv_reg[23] )); SLICE_600 SLICE_600( .C1(N_233), .B1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .C0(N_233), .B0(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A0(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.RC_RLSel_13[8] ), .Q0(\freq3_relay[2] ), .F1(\CPLD_Con_1.RC_RLSel_13[4] ), .Q1(\freq3_relay[3] )); SLICE_601 SLICE_601( .C1(N_232), .B1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .C0(N_232), .B0(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A0(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.RC_RLSel_13[7] ), .Q0(\CPLD_Reg_1/regtable[4][22] ), .F1(\CPLD_Con_1.RC_RLSel_13[15] ), .Q1(\CPLD_Reg_1/regtable[4][23] )); SLICE_602 SLICE_602( .C1(N_235), .B1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .C0(N_235), .B0(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A0(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.RC_RLSel_13[6] ), .Q0(\CPLD_Reg_1/regtable[4][20] ), .F1(\CPLD_Con_1.RC_RLSel_13[10] ), .Q1(\CPLD_Reg_1/regtable[4][21] )); SLICE_603 SLICE_603( .C1(N_234), .B1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .C0(N_234), .B0(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A0(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.RC_RLSel_13[5] ), .Q0(\CPLD_Reg_1/regtable[4][19] ), .F1(\CPLD_Con_1.RC_RLSel_13[9] ), .Q1(\freq3_relay[1] )); CPLD_Reg_1_SLICE_604 \CPLD_Reg_1/SLICE_604 ( .C1(\reg_addr_fast[2] ), .B1(\reg_addr[1] ), .A1(\CPLD_Reg_1/N_1171 ), .C0(\reg_addr_fast[2] ), .B0(\reg_addr[1] ), .A0(\CPLD_Reg_1/N_1171 ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .Q0(\CPLD_Reg_1/regtable[0][20] ), .F1(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .Q1(\CPLD_Reg_1/regtable[0][21] )); BUS_Con_1_SLICE_605 \BUS_Con_1/SLICE_605 ( .C1(\BUS_Con_1/sclk_sync[1] ), .B1(\BUS_Con_1.sclk_sync[0] ), .A1(\BUS_Con_1/cs_sync[1] ), .D0(\BUS_Con_1/cs_sync[1] ), .C0(\BUS_Con_1.sclk_sync[0] ), .B0(\BUS_Con_1/sclk_sync[1] ), .A0(i_rst_n_c), .M1(\BUS_Con_1/recv_reg[13] ), .M0(\BUS_Con_1/recv_reg[12] ), .CE(\BUS_Con_1/recv_reg_1_sqmuxa_1_i ), .LSR(\BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ), .CLK(i_sys_clk_c), .F0(i_rst_n_c_i_en), .Q0(\BUS_Con_1/recv_reg[13] ), .F1(\BUS_Con_1/miso_shift_1_sqmuxa_i_0 ), .Q1(\BUS_Con_1/recv_reg[14] )); SLICE_606 SLICE_606( .C1(reg_busy), .B1(\BUS_Con_1/state[1] ), .A1(\BUS_Con_1/data_ready ), .D0(reg_busy), .C0(\BUS_Con_1/state[1] ), .B0(\BUS_Con_1/state[0] ), .A0(\BUS_Con_1/data_ready ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/N_237_i ), .Q0(\CPLD_Reg_1/regtable[10][19] ), .F1(\BUS_Con_1/N_249 ), .Q1(\CPLD_Reg_1/regtable[10][1] )); SLICE_607 SLICE_607( .B1(\DC_Con2[8] ), .A1(\DC_Con2[4] ), .D0(\DC_Con2[4] ), .C0(\DC_Con2[8] ), .B0(\CPLD_Con_1/N_43 ), .A0(\CPLD_Con_1/N_95 ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[14]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_2_8[24] ), .Q0(\CPLD_Reg_1/regtable[14][17] ), .F1(\CPLD_Con_1/g0_2_N_5L7_N_6L9_0_1 ), .Q1(\CPLD_Reg_1/regtable[14][18] )); SLICE_608 SLICE_608( .B1(\freq3_relay[7] ), .A1(\CPLD_Con_1/N_305 ), .B0(\freq3_relay[7] ), .A0(\CPLD_Con_1/N_305 ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_freq_relay3lt8 ), .Q0(\DC_Con4[0] ), .F1(\CPLD_Con_1/N_90 ), .Q1(\CPLD_Reg_1/regtable[9][10] )); SLICE_609 SLICE_609( .C1(\CPLD_Con_1/N_215 ), .B1(\CPLD_Con_1/g0_8_1_0 ), .A1(\CPLD_Con_1/RC_VISel40 ), .C0(\CPLD_Con_1/N_215 ), .B0(\CPLD_Con_1/g0_8_1_0 ), .A0(\CPLD_Con_1/RC_VISel39 ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_exec_flag_2_0_0 ), .Q0(\DC_Con2[19] ), .F1(\CPLD_Con_1/un1_exec_flag_3_0_0 ), .Q1(\DC_Con2[1] )); SLICE_610 SLICE_610( .D1(\DC_Con2[8] ), .C1(\DC_Con1[8] ), .B1(\CPLD_Con_1/dc_slot_flag_fast[1] ), .A1(\CPLD_Con_1/dc_slot_flag_fast[0] ), .D0(\DC_Con2[20] ), .C0(\DC_Con1[20] ), .B0(\CPLD_Con_1/dc_slot_flag_fast[1] ), .A0(\CPLD_Con_1/dc_slot_flag_fast[0] ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[3] ), .Q0(\DC_Con3[19] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[4] ), .Q1(\DC_Con3[1] )); SLICE_611 SLICE_611( .D1(\DC_Con2[17] ), .C1(\DC_Con1[17] ), .B1(\CPLD_Con_1/dc_slot_flag[1] ), .A1(\CPLD_Con_1/dc_slot_flag[0] ), .D0(\DC_Con2[4] ), .C0(\DC_Con1[4] ), .B0(\CPLD_Con_1/dc_slot_flag[1] ), .A0(\CPLD_Con_1/dc_slot_flag[0] ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0_0[0] ), .Q0(\DC_Con3[0] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[0] ), .Q1(\CPLD_Reg_1/regtable[8][10] )); SLICE_612 SLICE_612( .D1(\DC_Con2[7] ), .C1(\DC_Con1[7] ), .B1(\CPLD_Con_1/dc_slot_flag[1] ), .A1(\CPLD_Con_1/dc_slot_flag[0] ), .D0(\DC_Con1[5] ), .C0(\CPLD_Reg_1.regtable[7]_fast[5] ), .B0(\CPLD_Con_1/dc_slot_flag[1] ), .A0(\CPLD_Con_1/dc_slot_flag[0] ), .M0(\w_data[7] ), .CE(\CPLD_Reg_1/regtable[7]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[1] ), .Q0(\CPLD_Reg_1.regtable[7]_fast[7] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[3] )); SLICE_613 SLICE_613( .C1(N_234), .B1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A1(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .C0(N_235), .B0(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_6 ), .A0(\CPLD_Con_1/un1_i_DC_Con1_4_ac0_4 ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[4]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.RC_RLSel_13[14] ), .Q0(\CPLD_Reg_1/regtable[4][13] ), .F1(\CPLD_Con_1.RC_RLSel_13[13] ), .Q1(\CPLD_Reg_1/regtable[4][14] )); SLICE_614 SLICE_614( .D1(\DC_Con2[3] ), .C1(\CPLD_Reg_1.regtable[7]_fast[7] ), .B1(\CPLD_Reg_1.regtable[7]_fast[6] ), .A1(\CPLD_Reg_1.regtable[7]_fast[5] ), .B0(\CPLD_Reg_1.regtable[7]_fast[6] ), .A0(\CPLD_Reg_1.regtable[7]_fast[5] ), .M1(\w_data[9] ), .M0(\w_data[8] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/g0_2_1 ), .Q0(\DC_Con1[8] ), .F1(\CPLD_Con_1/g0_21_N_2L1 ), .Q1(\DC_Con1[9] )); SLICE_615 SLICE_615( .B1(\DC_Con4[20] ), .A1(\DC_Con4[19] ), .B0(\DC_Con4[20] ), .A0(\DC_Con4[19] ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[6]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/g0_10_N_2L1 ), .Q0(\DC_Con1[19] ), .F1(\CPLD_Con_1/g0_12_N_2L1 ), .Q1(\DC_Con1[1] )); SLICE_616 SLICE_616( .B1(\CPLD_Con_1/N_311 ), .A1(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .B0(\CPLD_Con_1/N_311 ), .A0(\CPLD_Con_1/un1_i_DC_Con1_1[3] ), .M1(\w_data[10] ), .M0(\w_data[0] ), .CE(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/DMM_en_22_0_a2_1_1[12] ), .Q0(\CPLD_Reg_1/regtable[11][0] ), .F1(\CPLD_Con_1/DMM_en_22_0_a2_2_1[4] ), .Q1(\CPLD_Reg_1/regtable[11][10] )); CPLD_Con_1_SLICE_617 \CPLD_Con_1/SLICE_617 ( .B1(\CPLD_Con_1/freq_t ), .A1(\CPLD_Con_1.exec_flag ), .C0(\CPLD_Con_1/freq_t ), .B0(\CPLD_Con_1.exec_flag ), .A0(\CPLD_Con_1/dc_t ), .M1(\DC_Con4[0] ), .M0(\DC_Con3[0] ), .CE(\CPLD_Con_1/RC_Tx_1_sqmuxa ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/dc_t_RNI2Q6P8_0 ), .Q0(\CPLD_Con_1/dc_slot_flag_fast[2] ), .F1(\CPLD_Con_1/freq_t_RNI8PH26 ), .Q1(\CPLD_Con_1/dc_slot_flag_fast[3] )); CPLD_Reg_1_SLICE_618 \CPLD_Reg_1/SLICE_618 ( .B1(\CPLD_Reg_1/state[1] ), .A1(\CPLD_Reg_1/state[0] ), .C0(\CPLD_Reg_1/state[1] ), .B0(\CPLD_Reg_1/state[0] ), .A0(\CPLD_Reg_1/regtable[1]_1_sqmuxa ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/un12_i ), .Q0(\CPLD_Reg_1/regtable[0][11] ), .F1(\CPLD_Reg_1/state_6_d_i ), .Q1(\CPLD_Reg_1/regtable[0][12] )); CPLD_Reg_1_SLICE_619 \CPLD_Reg_1/SLICE_619 ( .B1(\reg_addr_fast[0] ), .A1(\reg_addr[1] ), .D0(\reg_addr_fast[2] ), .C0(\reg_addr_fast[0] ), .B0(\reg_addr[1] ), .A0(\CPLD_Reg_1/N_1185 ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .Q0(\CPLD_Reg_1/regtable[0][2] ), .F1(\CPLD_Reg_1/N_1186 ), .Q1(\CPLD_Reg_1/regtable[0][3] )); SLICE_620 SLICE_620( .B1(\DC_Con4[4] ), .A1(\CPLD_Con_1/dc_slot_flag[3] ), .D0(\DC_Con4[4] ), .C0(\DC_Con4[6] ), .B0(\DC_Con4[8] ), .A0(\CPLD_Con_1/N_190 ), .M1(\w_data[1] ), .M0(\w_data[19] ), .CE(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[30] ), .Q0(\CPLD_Reg_1/regtable[3][19] ), .F1(\CPLD_Con_1/N_70 ), .Q1(\freq2_relay[1] )); SLICE_621 SLICE_621( .B1(\CPLD_Con_1/un1_i_DC_Con1_1[5] ), .A1(\CPLD_Con_1/un1_i_DC_Con1_1[4] ), .B0(\CPLD_Con_1/N_311 ), .A0(\CPLD_Con_1/un1_i_DC_Con1_1[4] ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/DMM_en_22_2[16] ), .Q0(\CPLD_Reg_1/regtable[11][2] ), .F1(\CPLD_Con_1/un1_DMM_en_1[0] ), .Q1(\CPLD_Reg_1/regtable[11][3] )); SLICE_622 SLICE_622( .D1(\DC_Con2[9] ), .C1(\DC_Con1[9] ), .B1(\CPLD_Con_1/dc_slot_flag_fast[1] ), .A1(\CPLD_Con_1/dc_slot_flag_fast[0] ), .D0(\CPLD_Con_1/N_43 ), .C0(\DC_Con2[9] ), .B0(\DC_Con2[7] ), .A0(\CPLD_Con_1/RC_VISel39 ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[15]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/PMU_OC_2_8[1] ), .Q0(\CPLD_Reg_1/regtable[15][22] ), .F1(\CPLD_Con_1/un1_i_DC_Con1_1_iv_0[5] ), .Q1(\CPLD_Reg_1/regtable[15][23] )); SLICE_623 SLICE_623( .B1(\DC_Con4[7] ), .A1(\CPLD_Con_1/dc_slot_flag[3] ), .D0(\CPLD_Con_1/N_227 ), .C0(\CPLD_Con_1/N_188 ), .B0(\DC_Con4[7] ), .A0(\DC_Con4[5] ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.PMU_OC_4_8[19] ), .Q0(\freq1_relay[2] ), .F1(\CPLD_Con_1/i_DC_Con4_m[7] ), .Q1(\freq1_relay[3] )); SLICE_624 SLICE_624( .B1(\CPLD_Con_1/dc_slot_flag[3] ), .A1(\CPLD_Con_1/dc_slot_flag[1] ), .D0(\DC_Con4[21] ), .C0(\DC_Con3[21] ), .B0(\CPLD_Con_1/dc_slot_flag[3] ), .A0(\CPLD_Con_1/dc_slot_flag[2] ), .M1(\w_data[23] ), .M0(\w_data[22] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_1[4] ), .Q0(\DC_Con3[22] ), .F1(\CPLD_Con_1/m9_0_a5_1_1 ), .Q1(\DC_Con3[23] )); SLICE_625 SLICE_625( .B1(\DC_Con1[20] ), .A1(\DC_Con1[19] ), .D0(\DC_Con2[19] ), .C0(\DC_Con1[19] ), .B0(\CPLD_Con_1/dc_slot_flag_1_rep1 ), .A0(\CPLD_Con_1/dc_slot_flag_0_rep1 ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/un1_i_DC_Con1_iv_0_0[2] ), .Q0(\DC_Con3[17] ), .F1(\CPLD_Con_1/N_57 ), .Q1(\DC_Con3[18] )); SLICE_626 SLICE_626( .B1(\freq3_relay[8] ), .A1(\freq3_relay[7] ), .B0(\freq3_relay[9] ), .A0(\freq3_relay[8] ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[12]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/OC_x0138_3 ), .Q0(\CPLD_Reg_1/regtable[12][15] ), .F1(\CPLD_Con_1/g2_0_0 ), .Q1(\CPLD_Reg_1/regtable[12][16] )); SLICE_627 SLICE_627( .B1(\CPLD_Reg_1.regtable[9]_fast[8] ), .A1(\CPLD_Con_1/dc_slot_flag_fast[3] ), .B0(\DC_Con4[20] ), .A0(\CPLD_Con_1/dc_slot_flag_fast[3] ), .M1(\w_data[3] ), .M0(\w_data[2] ), .CE(\CPLD_Reg_1/regtable[8]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_173 ), .Q0(\DC_Con3[2] ), .F1(\CPLD_Con_1/i_DC_Con4_m[8] ), .Q1(\DC_Con3[3] )); SLICE_628 SLICE_628( .C1(i_rst_n_c), .B1(\BUS_Con_1/miso_shift[30] ), .A1(\BUS_Con_1/cs_sync[1] ), .B0(i_rst_n_c), .A0(\CPLD_Con_1/RC_VISel38 ), .M1(\DC_Con4[0] ), .M0(\DC_Con3[0] ), .CE(\CPLD_Con_1/RC_Tx_1_sqmuxa ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/dc_slot_flag_0_rep1_RNI421QK ), .Q0(\CPLD_Con_1/dc_slot_flag[2] ), .F1(i_rst_n_c_i_rst), .Q1(\CPLD_Con_1/dc_slot_flag[3] )); CPLD_Reg_1_SLICE_629 \CPLD_Reg_1/SLICE_629 ( .C1(\reg_addr_fast[2] ), .B1(\reg_addr[1] ), .A1(\CPLD_Reg_1/N_1171 ), .C0(\reg_addr_fast[3] ), .B0(\reg_addr_fast[2] ), .A0(\CPLD_Reg_1/regtable[7]_1_sqmuxa_2 ), .M1(\w_data[18] ), .M0(\w_data[17] ), .CE(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/regtable[3]_1_sqmuxa ), .Q0(\CPLD_Reg_1/regtable[0][17] ), .F1(\CPLD_Reg_1/regtable[0]_1_sqmuxa ), .Q1(\CPLD_Reg_1/regtable[0][18] )); CPLD_Reg_1_SLICE_630 \CPLD_Reg_1/SLICE_630 ( .C1(\CPLD_Reg_1/reg_err_flag ), .B1(cpld_err_flag), .A1(bus_err_flag), .D0(wr_flag), .C0(\CPLD_Reg_1/reg_err_flag ), .B0(\CPLD_Reg_1/state[1] ), .A0(\CPLD_Reg_1/state[0] ), .M1(\w_data[14] ), .M0(\w_data[13] ), .CE(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Reg_1/un11_0 ), .Q0(\CPLD_Reg_1/regtable[10][13] ), .F1(o_err_c), .Q1(\CPLD_Reg_1/regtable[10][14] )); SLICE_631 SLICE_631( .C1(\BUS_Con_1/bit_cnt[3] ), .B1(\BUS_Con_1/bit_cnt[1] ), .A1(\BUS_Con_1/bit_cnt[0] ), .B0(\BUS_Con_1/sclk_sync[1] ), .A0(\BUS_Con_1.sclk_sync[0] ), .M1(\w_data[21] ), .M0(\w_data[20] ), .CE(\CPLD_Reg_1/regtable[10]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\BUS_Con_1/N_244 ), .Q0(\CPLD_Reg_1/regtable[10][20] ), .F1(\BUS_Con_1/err_flag_1_sqmuxa_0_a2_0_0 ), .Q1(\CPLD_Reg_1/regtable[10][21] )); SLICE_632 SLICE_632( .B1(\DC_Con4[5] ), .A1(\CPLD_Con_1/dc_slot_flag[3] ), .D0(\CPLD_Con_1/N_363 ), .C0(\CPLD_Con_1/un1_i_DC_Con1_1[1] ), .B0(\CPLD_Con_1/un1_i_DC_Con1_1[0] ), .A0(\CPLD_Con_1/DMM_en_22_0_0[15] ), .M1(\r_data[12] ), .M0(\r_data[11] ), .CE(con_rvalid), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1.DMM_en_22[15] ), .Q0(\BUS_Con_1/tx_buffer[11] ), .F1(\CPLD_Con_1/i_DC_Con4_m[5] ), .Q1(\BUS_Con_1/tx_buffer[12] )); SLICE_633 SLICE_633( .D1(\freq4_relay[8] ), .C1(\CPLD_Con_1/N_356 ), .B1(\CPLD_Con_1/N_342 ), .A1(\CPLD_Con_1/freq_t ), .B0(\CPLD_Con_1/freq_slot_flag[3] ), .A0(\CPLD_Con_1/freq_slot_flag[1] ), .M1(\w_data[12] ), .M0(\w_data[11] ), .CE(\CPLD_Reg_1/regtable[11]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/N_353 ), .Q0(\CPLD_Reg_1/regtable[11][11] ), .F1(\CPLD_Con_1/N_364 ), .Q1(\CPLD_Reg_1/regtable[11][12] )); SLICE_634 SLICE_634( .B1(\DC_Con3[9] ), .A1(\CPLD_Con_1/dc_slot_flag_fast[2] ), .C0(\CPLD_Con_1/N_137 ), .B0(\DC_Con3[6] ), .A0(\DC_Con3[5] ), .M1(\w_data[16] ), .M0(\w_data[15] ), .CE(\CPLD_Reg_1/regtable[2]_1_sqmuxa ), .CLK(i_sys_clk_c), .F0(\CPLD_Con_1/PMU_OC_3_8[1] ), .Q0(\CPLD_Reg_1/regtable[2][15] ), .F1(\CPLD_Con_1/i_DC_Con3_m[9] ), .Q1(\CPLD_Reg_1/regtable[2][16] )); CPLD_Reg_1_SLICE_672 \CPLD_Reg_1/SLICE_672 ( .M1(\w_data[4] ), .M0(\w_data[5] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .Q0(\CPLD_Reg_1.regtable[9]_fast[5] ), .Q1(\CPLD_Reg_1.regtable[9]_fast[4] )); CPLD_Reg_1_SLICE_673 \CPLD_Reg_1/SLICE_673 ( .M1(\w_data[6] ), .M0(\w_data[7] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .Q0(\CPLD_Reg_1.regtable[9]_fast[7] ), .Q1(\CPLD_Reg_1.regtable[9]_fast[6] )); CPLD_Reg_1_SLICE_830 \CPLD_Reg_1/SLICE_830 ( .M1(\w_data[19] ), .M0(\w_data[1] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .Q0(\DC_Con4[1] ), .Q1(\DC_Con4[19] )); CPLD_Reg_1_SLICE_831 \CPLD_Reg_1/SLICE_831 ( .M1(\w_data[2] ), .M0(\w_data[3] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .Q0(\DC_Con4[3] ), .Q1(\DC_Con4[2] )); CPLD_Reg_1_SLICE_832 \CPLD_Reg_1/SLICE_832 ( .M1(\w_data[4] ), .M0(\w_data[5] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .Q0(\DC_Con4[5] ), .Q1(\DC_Con4[4] )); CPLD_Reg_1_SLICE_833 \CPLD_Reg_1/SLICE_833 ( .M1(\w_data[6] ), .M0(\w_data[7] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .Q0(\DC_Con4[7] ), .Q1(\DC_Con4[6] )); CPLD_Reg_1_SLICE_834 \CPLD_Reg_1/SLICE_834 ( .M1(\w_data[8] ), .M0(\w_data[9] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .Q0(\DC_Con4[9] ), .Q1(\DC_Con4[8] )); CPLD_Reg_1_SLICE_835 \CPLD_Reg_1/SLICE_835 ( .M1(\w_data[17] ), .M0(\w_data[18] ), .CE(\CPLD_Reg_1/regtable[9]_1_sqmuxa ), .CLK(i_sys_clk_c), .Q0(\DC_Con4[18] ), .Q1(\DC_Con4[17] )); BUS_Con_1_SLICE_864 \BUS_Con_1/SLICE_864 ( .M1(\BUS_Con_1/recv_reg[24] ), .M0(\BUS_Con_1/recv_reg[24] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(reg_addr_0_rep2), .Q1(reg_addr_0_rep1)); BUS_Con_1_SLICE_865 \BUS_Con_1/SLICE_865 ( .M1(\BUS_Con_1/recv_reg[26] ), .M0(\BUS_Con_1/recv_reg[26] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(reg_addr_2_rep2), .Q1(reg_addr_2_rep1)); BUS_Con_1_SLICE_866 \BUS_Con_1/SLICE_866 ( .M1(\BUS_Con_1/recv_reg[27] ), .M0(\BUS_Con_1/recv_reg[27] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(reg_addr_3_rep2), .Q1(reg_addr_3_rep1)); BUS_Con_1_SLICE_867 \BUS_Con_1/SLICE_867 ( .M1(\BUS_Con_1/recv_reg[24] ), .M0(\BUS_Con_1/recv_reg[26] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(\reg_addr_fast[2] ), .Q1(\reg_addr_fast[0] )); BUS_Con_1_SLICE_872 \BUS_Con_1/SLICE_872 ( .M0(\BUS_Con_1/recv_reg[9] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(\w_data[9] )); BUS_Con_1_SLICE_873 \BUS_Con_1/SLICE_873 ( .M1(\BUS_Con_1/recv_reg[10] ), .M0(\BUS_Con_1/recv_reg[11] ), .CE(\BUS_Con_1/N_237_i ), .LSR(\BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ), .CLK(i_sys_clk_c), .Q0(\w_data[11] ), .Q1(\w_data[10] )); o_miso o_miso_I( .IOLDO(miso_shift31), .PADDT(\BUS_Con_1.cs_sync_rep0[1] ), .o_miso(o_miso)); o_miso_MGIOL o_miso_MGIOL( .IOLDO(miso_shift31), .OPOS(i_rst_n_c_i_rst), .CE(i_rst_n_c_i_en), .CLK(i_sys_clk_c)); o_wready o_wready_I( .PADDO(o_wready_c), .o_wready(o_wready)); i_sys_clk i_sys_clk_I( .PADDI(i_sys_clk_c), .i_sys_clk(i_sys_clk)); o_PMU_OC_4_31_ \o_PMU_OC_4[31]_I ( .IOLDO(\o_PMU_OC_4_c[31] ), .oPMUOC431(o_PMU_OC_4[31])); o_PMU_OC_4_31__MGIOL \o_PMU_OC_4[31]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[31] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[31] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_30_ \o_PMU_OC_4[30]_I ( .IOLDO(\o_PMU_OC_4_c[30] ), .oPMUOC430(o_PMU_OC_4[30])); o_PMU_OC_4_30__MGIOL \o_PMU_OC_4[30]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[30] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[30] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_29_ \o_PMU_OC_4[29]_I ( .IOLDO(\o_PMU_OC_4_c[29] ), .oPMUOC429(o_PMU_OC_4[29])); o_PMU_OC_4_29__MGIOL \o_PMU_OC_4[29]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[29] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[29] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_28_ \o_PMU_OC_4[28]_I ( .IOLDO(\o_PMU_OC_4_c[28] ), .oPMUOC428(o_PMU_OC_4[28])); o_PMU_OC_4_28__MGIOL \o_PMU_OC_4[28]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[28] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[28] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_27_ \o_PMU_OC_4[27]_I ( .IOLDO(\o_PMU_OC_4_c[27] ), .oPMUOC427(o_PMU_OC_4[27])); o_PMU_OC_4_27__MGIOL \o_PMU_OC_4[27]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[27] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[27] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_26_ \o_PMU_OC_4[26]_I ( .IOLDO(\o_PMU_OC_4_c[26] ), .oPMUOC426(o_PMU_OC_4[26])); o_PMU_OC_4_26__MGIOL \o_PMU_OC_4[26]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[26] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[26] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_25_ \o_PMU_OC_4[25]_I ( .IOLDO(\o_PMU_OC_4_c[25] ), .oPMUOC425(o_PMU_OC_4[25])); o_PMU_OC_4_25__MGIOL \o_PMU_OC_4[25]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[25] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[25] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_24_ \o_PMU_OC_4[24]_I ( .IOLDO(\o_PMU_OC_4_c[24] ), .oPMUOC424(o_PMU_OC_4[24])); o_PMU_OC_4_24__MGIOL \o_PMU_OC_4[24]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[24] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[24] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_23_ \o_PMU_OC_4[23]_I ( .IOLDO(\o_PMU_OC_4_c[23] ), .oPMUOC423(o_PMU_OC_4[23])); o_PMU_OC_4_23__MGIOL \o_PMU_OC_4[23]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[23] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[23] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(\PMU_OC_4_8_0_a2_RNIS7H393[18] ), .CLK(i_sys_clk_c)); o_PMU_OC_4_22_ \o_PMU_OC_4[22]_I ( .IOLDO(\o_PMU_OC_4_c[22] ), .oPMUOC422(o_PMU_OC_4[22])); o_PMU_OC_4_22__MGIOL \o_PMU_OC_4[22]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[22] ), .OPOS(N_193), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(\PMU_OC_4_8_0_a2_RNIS7H393[18] ), .CLK(i_sys_clk_c)); o_PMU_OC_4_21_ \o_PMU_OC_4[21]_I ( .IOLDO(\o_PMU_OC_4_c[21] ), .oPMUOC421(o_PMU_OC_4[21])); o_PMU_OC_4_21__MGIOL \o_PMU_OC_4[21]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[21] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[21] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_20_ \o_PMU_OC_4[20]_I ( .PADDO(\o_PMU_OC_4_c[20] ), .oPMUOC420(o_PMU_OC_4[20])); o_PMU_OC_4_19_ \o_PMU_OC_4[19]_I ( .IOLDO(\o_PMU_OC_4_c[19] ), .oPMUOC419(o_PMU_OC_4[19])); o_PMU_OC_4_19__MGIOL \o_PMU_OC_4[19]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[19] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[19] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_18_ \o_PMU_OC_4[18]_I ( .IOLDO(\o_PMU_OC_4_c[18] ), .oPMUOC418(o_PMU_OC_4[18])); o_PMU_OC_4_18__MGIOL \o_PMU_OC_4[18]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[18] ), .OPOS(N_197), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(\PMU_OC_4_8_0_a2_RNIS7H393[18] ), .CLK(i_sys_clk_c)); o_PMU_OC_4_17_ \o_PMU_OC_4[17]_I ( .IOLDO(\o_PMU_OC_4_c[17] ), .oPMUOC417(o_PMU_OC_4[17])); o_PMU_OC_4_17__MGIOL \o_PMU_OC_4[17]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[17] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[17] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_16_ \o_PMU_OC_4[16]_I ( .IOLDO(\o_PMU_OC_4_c[16] ), .oPMUOC416(o_PMU_OC_4[16])); o_PMU_OC_4_16__MGIOL \o_PMU_OC_4[16]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[16] ), .OPOS(\CPLD_Con_1.N_315 ), .CE(\CPLD_Con_1.OC_x17_0_sqmuxa_i ), .CLK(i_sys_clk_c)); o_PMU_OC_4_15_ \o_PMU_OC_4[15]_I ( .IOLDO(\o_PMU_OC_4_c[15] ), .oPMUOC415(o_PMU_OC_4[15])); o_PMU_OC_4_15__MGIOL \o_PMU_OC_4[15]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[15] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[15] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_14_ \o_PMU_OC_4[14]_I ( .IOLDO(\o_PMU_OC_4_c[14] ), .oPMUOC414(o_PMU_OC_4[14])); o_PMU_OC_4_14__MGIOL \o_PMU_OC_4[14]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[14] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[14] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_13_ \o_PMU_OC_4[13]_I ( .IOLDO(\o_PMU_OC_4_c[13] ), .oPMUOC413(o_PMU_OC_4[13])); o_PMU_OC_4_13__MGIOL \o_PMU_OC_4[13]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[13] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[13] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_12_ \o_PMU_OC_4[12]_I ( .IOLDO(\o_PMU_OC_4_c[12] ), .oPMUOC412(o_PMU_OC_4[12])); o_PMU_OC_4_12__MGIOL \o_PMU_OC_4[12]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[12] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[12] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_11_ \o_PMU_OC_4[11]_I ( .IOLDO(\o_PMU_OC_4_c[11] ), .oPMUOC411(o_PMU_OC_4[11])); o_PMU_OC_4_11__MGIOL \o_PMU_OC_4[11]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[11] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[11] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_10_ \o_PMU_OC_4[10]_I ( .IOLDO(\o_PMU_OC_4_c[10] ), .oPMUOC410(o_PMU_OC_4[10])); o_PMU_OC_4_10__MGIOL \o_PMU_OC_4[10]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[10] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[10] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_9_ \o_PMU_OC_4[9]_I ( .IOLDO(\o_PMU_OC_4_c[9] ), .oPMUOC49(o_PMU_OC_4[9])); o_PMU_OC_4_9__MGIOL \o_PMU_OC_4[9]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[9] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[9] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_8_ \o_PMU_OC_4[8]_I ( .IOLDO(\o_PMU_OC_4_c[8] ), .oPMUOC48(o_PMU_OC_4[8])); o_PMU_OC_4_8__MGIOL \o_PMU_OC_4[8]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[8] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[8] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_7_ \o_PMU_OC_4[7]_I ( .IOLDO(\o_PMU_OC_4_c[7] ), .oPMUOC47(o_PMU_OC_4[7])); o_PMU_OC_4_7__MGIOL \o_PMU_OC_4[7]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[7] ), .OPOS(N_194), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(\PMU_OC_4_8_0_a2_RNIS7H393[18] ), .CLK(i_sys_clk_c)); o_PMU_OC_4_6_ \o_PMU_OC_4[6]_I ( .IOLDO(\o_PMU_OC_4_c[6] ), .oPMUOC46(o_PMU_OC_4[6])); o_PMU_OC_4_6__MGIOL \o_PMU_OC_4[6]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[6] ), .OPOS(N_195), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(\PMU_OC_4_8_0_a2_RNIS7H393[18] ), .CLK(i_sys_clk_c)); o_PMU_OC_4_5_ \o_PMU_OC_4[5]_I ( .PADDO(\o_PMU_OC_4_c[5] ), .oPMUOC45(o_PMU_OC_4[5])); o_PMU_OC_4_4_ \o_PMU_OC_4[4]_I ( .PADDO(\o_PMU_OC_4_c[4] ), .oPMUOC44(o_PMU_OC_4[4])); o_PMU_OC_4_3_ \o_PMU_OC_4[3]_I ( .IOLDO(\o_PMU_OC_4_c[3] ), .oPMUOC43(o_PMU_OC_4[3])); o_PMU_OC_4_3__MGIOL \o_PMU_OC_4[3]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[3] ), .OPOS(\CPLD_Con_1.PMU_OC_4_8[3] ), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_4_2_ \o_PMU_OC_4[2]_I ( .IOLDO(\o_PMU_OC_4_c[2] ), .oPMUOC42(o_PMU_OC_4[2])); o_PMU_OC_4_2__MGIOL \o_PMU_OC_4[2]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[2] ), .OPOS(N_155_i), .CE(\CPLD_Con_1.un1_exec_flag_8_i ), .LSR(\PMU_OC_4_8_0_a2_RNIS7H393[18] ), .CLK(i_sys_clk_c)); o_PMU_OC_4_1_ \o_PMU_OC_4[1]_I ( .PADDO(\o_PMU_OC_4_c[1] ), .oPMUOC41(o_PMU_OC_4[1])); o_PMU_OC_4_0_ \o_PMU_OC_4[0]_I ( .IOLDO(\o_PMU_OC_4_c[0] ), .oPMUOC40(o_PMU_OC_4[0])); o_PMU_OC_4_0__MGIOL \o_PMU_OC_4[0]_MGIOL ( .IOLDO(\o_PMU_OC_4_c[0] ), .OPOS(\DMM_en_22_0_o2_RNI8QTBL[15] ), .CE(\CPLD_Con_1.OC_x17_0_sqmuxa_i ), .CLK(i_sys_clk_c)); o_PMU_OC_3_31_ \o_PMU_OC_3[31]_I ( .IOLDO(\o_PMU_OC_3_c[31] ), .oPMUOC331(o_PMU_OC_3[31])); o_PMU_OC_3_31__MGIOL \o_PMU_OC_3[31]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[31] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[31] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_30_ \o_PMU_OC_3[30]_I ( .IOLDO(\o_PMU_OC_3_c[30] ), .oPMUOC330(o_PMU_OC_3[30])); o_PMU_OC_3_30__MGIOL \o_PMU_OC_3[30]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[30] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[30] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_29_ \o_PMU_OC_3[29]_I ( .IOLDO(\o_PMU_OC_3_c[29] ), .oPMUOC329(o_PMU_OC_3[29])); o_PMU_OC_3_29__MGIOL \o_PMU_OC_3[29]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[29] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[29] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_28_ \o_PMU_OC_3[28]_I ( .IOLDO(\o_PMU_OC_3_c[28] ), .oPMUOC328(o_PMU_OC_3[28])); o_PMU_OC_3_28__MGIOL \o_PMU_OC_3[28]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[28] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[28] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_27_ \o_PMU_OC_3[27]_I ( .IOLDO(\o_PMU_OC_3_c[27] ), .oPMUOC327(o_PMU_OC_3[27])); o_PMU_OC_3_27__MGIOL \o_PMU_OC_3[27]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[27] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[27] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_26_ \o_PMU_OC_3[26]_I ( .IOLDO(\o_PMU_OC_3_c[26] ), .oPMUOC326(o_PMU_OC_3[26])); o_PMU_OC_3_26__MGIOL \o_PMU_OC_3[26]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[26] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[26] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_25_ \o_PMU_OC_3[25]_I ( .IOLDO(\o_PMU_OC_3_c[25] ), .oPMUOC325(o_PMU_OC_3[25])); o_PMU_OC_3_25__MGIOL \o_PMU_OC_3[25]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[25] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[25] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_24_ \o_PMU_OC_3[24]_I ( .IOLDO(\o_PMU_OC_3_c[24] ), .oPMUOC324(o_PMU_OC_3[24])); o_PMU_OC_3_24__MGIOL \o_PMU_OC_3[24]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[24] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[24] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_23_ \o_PMU_OC_3[23]_I ( .IOLDO(\o_PMU_OC_3_c[23] ), .oPMUOC323(o_PMU_OC_3[23])); o_PMU_OC_3_23__MGIOL \o_PMU_OC_3[23]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[23] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[23] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_22_ \o_PMU_OC_3[22]_I ( .IOLDO(\o_PMU_OC_3_c[22] ), .oPMUOC322(o_PMU_OC_3[22])); o_PMU_OC_3_22__MGIOL \o_PMU_OC_3[22]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[22] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[22] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_21_ \o_PMU_OC_3[21]_I ( .IOLDO(\o_PMU_OC_3_c[21] ), .oPMUOC321(o_PMU_OC_3[21])); o_PMU_OC_3_21__MGIOL \o_PMU_OC_3[21]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[21] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[21] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_20_ \o_PMU_OC_3[20]_I ( .IOLDO(\o_PMU_OC_3_c[20] ), .oPMUOC320(o_PMU_OC_3[20])); o_PMU_OC_3_20__MGIOL \o_PMU_OC_3[20]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[20] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[20] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_19_ \o_PMU_OC_3[19]_I ( .IOLDO(\o_PMU_OC_3_c[19] ), .oPMUOC319(o_PMU_OC_3[19])); o_PMU_OC_3_19__MGIOL \o_PMU_OC_3[19]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[19] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[19] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_18_ \o_PMU_OC_3[18]_I ( .IOLDO(\o_PMU_OC_3_c[18] ), .oPMUOC318(o_PMU_OC_3[18])); o_PMU_OC_3_18__MGIOL \o_PMU_OC_3[18]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[18] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[18] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_17_ \o_PMU_OC_3[17]_I ( .IOLDO(\o_PMU_OC_3_c[17] ), .oPMUOC317(o_PMU_OC_3[17])); o_PMU_OC_3_17__MGIOL \o_PMU_OC_3[17]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[17] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[17] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_16_ \o_PMU_OC_3[16]_I ( .IOLDO(\o_PMU_OC_3_c[16] ), .oPMUOC316(o_PMU_OC_3[16])); o_PMU_OC_3_16__MGIOL \o_PMU_OC_3[16]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[16] ), .OPOS(N_22), .CE(\CPLD_Con_1.OC_x17_0_sqmuxa_i ), .CLK(i_sys_clk_c)); o_PMU_OC_3_15_ \o_PMU_OC_3[15]_I ( .IOLDO(\o_PMU_OC_3_c[15] ), .oPMUOC315(o_PMU_OC_3[15])); o_PMU_OC_3_15__MGIOL \o_PMU_OC_3[15]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[15] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[15] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_14_ \o_PMU_OC_3[14]_I ( .IOLDO(\o_PMU_OC_3_c[14] ), .oPMUOC314(o_PMU_OC_3[14])); o_PMU_OC_3_14__MGIOL \o_PMU_OC_3[14]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[14] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[14] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_13_ \o_PMU_OC_3[13]_I ( .IOLDO(\o_PMU_OC_3_c[13] ), .oPMUOC313(o_PMU_OC_3[13])); o_PMU_OC_3_13__MGIOL \o_PMU_OC_3[13]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[13] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[13] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_12_ \o_PMU_OC_3[12]_I ( .IOLDO(\o_PMU_OC_3_c[12] ), .oPMUOC312(o_PMU_OC_3[12])); o_PMU_OC_3_12__MGIOL \o_PMU_OC_3[12]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[12] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[12] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_11_ \o_PMU_OC_3[11]_I ( .IOLDO(\o_PMU_OC_3_c[11] ), .oPMUOC311(o_PMU_OC_3[11])); o_PMU_OC_3_11__MGIOL \o_PMU_OC_3[11]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[11] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[11] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_10_ \o_PMU_OC_3[10]_I ( .IOLDO(\o_PMU_OC_3_c[10] ), .oPMUOC310(o_PMU_OC_3[10])); o_PMU_OC_3_10__MGIOL \o_PMU_OC_3[10]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[10] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[10] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_9_ \o_PMU_OC_3[9]_I ( .IOLDO(\o_PMU_OC_3_c[9] ), .oPMUOC39(o_PMU_OC_3[9])); o_PMU_OC_3_9__MGIOL \o_PMU_OC_3[9]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[9] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[9] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_8_ \o_PMU_OC_3[8]_I ( .IOLDO(\o_PMU_OC_3_c[8] ), .oPMUOC38(o_PMU_OC_3[8])); o_PMU_OC_3_8__MGIOL \o_PMU_OC_3[8]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[8] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[8] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_7_ \o_PMU_OC_3[7]_I ( .PADDO(\o_PMU_OC_3_c[7] ), .oPMUOC37(o_PMU_OC_3[7])); o_PMU_OC_3_6_ \o_PMU_OC_3[6]_I ( .IOLDO(\o_PMU_OC_3_c[6] ), .oPMUOC36(o_PMU_OC_3[6])); o_PMU_OC_3_6__MGIOL \o_PMU_OC_3[6]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[6] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[6] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_5_ \o_PMU_OC_3[5]_I ( .PADDO(\o_PMU_OC_3_c[5] ), .oPMUOC35(o_PMU_OC_3[5])); o_PMU_OC_3_4_ \o_PMU_OC_3[4]_I ( .IOLDO(\o_PMU_OC_3_c[4] ), .oPMUOC34(o_PMU_OC_3[4])); o_PMU_OC_3_4__MGIOL \o_PMU_OC_3[4]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[4] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[4] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_3_ \o_PMU_OC_3[3]_I ( .PADDO(\o_PMU_OC_3_c[3] ), .oPMUOC33(o_PMU_OC_3[3])); o_PMU_OC_3_2_ \o_PMU_OC_3[2]_I ( .IOLDO(\o_PMU_OC_3_c[2] ), .oPMUOC32(o_PMU_OC_3[2])); o_PMU_OC_3_2__MGIOL \o_PMU_OC_3[2]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[2] ), .OPOS(\CPLD_Con_1.PMU_OC_3_8[2] ), .CE(\CPLD_Con_1.un1_exec_flag_2_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_3_1_ \o_PMU_OC_3[1]_I ( .PADDO(\o_PMU_OC_3_c[1] ), .oPMUOC31(o_PMU_OC_3[1])); o_PMU_OC_3_0_ \o_PMU_OC_3[0]_I ( .IOLDO(\o_PMU_OC_3_c[0] ), .oPMUOC30(o_PMU_OC_3[0])); o_PMU_OC_3_0__MGIOL \o_PMU_OC_3[0]_MGIOL ( .IOLDO(\o_PMU_OC_3_c[0] ), .OPOS(\CPLD_Con_1.N_364 ), .CE(\CPLD_Con_1.OC_x17_0_sqmuxa_i ), .CLK(i_sys_clk_c)); o_PMU_OC_2_31_ \o_PMU_OC_2[31]_I ( .IOLDO(\o_PMU_OC_2_c[31] ), .oPMUOC231(o_PMU_OC_2[31])); o_PMU_OC_2_31__MGIOL \o_PMU_OC_2[31]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[31] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[31] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_30_ \o_PMU_OC_2[30]_I ( .IOLDO(\o_PMU_OC_2_c[30] ), .oPMUOC230(o_PMU_OC_2[30])); o_PMU_OC_2_30__MGIOL \o_PMU_OC_2[30]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[30] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[30] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_29_ \o_PMU_OC_2[29]_I ( .IOLDO(\o_PMU_OC_2_c[29] ), .oPMUOC229(o_PMU_OC_2[29])); o_PMU_OC_2_29__MGIOL \o_PMU_OC_2[29]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[29] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[29] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_28_ \o_PMU_OC_2[28]_I ( .IOLDO(\o_PMU_OC_2_c[28] ), .oPMUOC228(o_PMU_OC_2[28])); o_PMU_OC_2_28__MGIOL \o_PMU_OC_2[28]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[28] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[28] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_27_ \o_PMU_OC_2[27]_I ( .IOLDO(\o_PMU_OC_2_c[27] ), .oPMUOC227(o_PMU_OC_2[27])); o_PMU_OC_2_27__MGIOL \o_PMU_OC_2[27]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[27] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[27] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_26_ \o_PMU_OC_2[26]_I ( .IOLDO(\o_PMU_OC_2_c[26] ), .oPMUOC226(o_PMU_OC_2[26])); o_PMU_OC_2_26__MGIOL \o_PMU_OC_2[26]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[26] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[26] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_25_ \o_PMU_OC_2[25]_I ( .IOLDO(\o_PMU_OC_2_c[25] ), .oPMUOC225(o_PMU_OC_2[25])); o_PMU_OC_2_25__MGIOL \o_PMU_OC_2[25]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[25] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[25] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_24_ \o_PMU_OC_2[24]_I ( .IOLDO(\o_PMU_OC_2_c[24] ), .oPMUOC224(o_PMU_OC_2[24])); o_PMU_OC_2_24__MGIOL \o_PMU_OC_2[24]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[24] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[24] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_23_ \o_PMU_OC_2[23]_I ( .IOLDO(\o_PMU_OC_2_c[23] ), .oPMUOC223(o_PMU_OC_2[23])); o_PMU_OC_2_23__MGIOL \o_PMU_OC_2[23]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[23] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[23] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_22_ \o_PMU_OC_2[22]_I ( .IOLDO(\o_PMU_OC_2_c[22] ), .oPMUOC222(o_PMU_OC_2[22])); o_PMU_OC_2_22__MGIOL \o_PMU_OC_2[22]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[22] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[22] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_21_ \o_PMU_OC_2[21]_I ( .IOLDO(\o_PMU_OC_2_c[21] ), .oPMUOC221(o_PMU_OC_2[21])); o_PMU_OC_2_21__MGIOL \o_PMU_OC_2[21]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[21] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[21] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_20_ \o_PMU_OC_2[20]_I ( .IOLDO(\o_PMU_OC_2_c[20] ), .oPMUOC220(o_PMU_OC_2[20])); o_PMU_OC_2_20__MGIOL \o_PMU_OC_2[20]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[20] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[20] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_19_ \o_PMU_OC_2[19]_I ( .IOLDO(\o_PMU_OC_2_c[19] ), .oPMUOC219(o_PMU_OC_2[19])); o_PMU_OC_2_19__MGIOL \o_PMU_OC_2[19]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[19] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[19] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_18_ \o_PMU_OC_2[18]_I ( .IOLDO(\o_PMU_OC_2_c[18] ), .oPMUOC218(o_PMU_OC_2[18])); o_PMU_OC_2_18__MGIOL \o_PMU_OC_2[18]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[18] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[18] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_17_ \o_PMU_OC_2[17]_I ( .IOLDO(\o_PMU_OC_2_c[17] ), .oPMUOC217(o_PMU_OC_2[17])); o_PMU_OC_2_17__MGIOL \o_PMU_OC_2[17]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[17] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[17] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_16_ \o_PMU_OC_2[16]_I ( .IOLDO(\o_PMU_OC_2_c[16] ), .oPMUOC216(o_PMU_OC_2[16])); o_PMU_OC_2_16__MGIOL \o_PMU_OC_2[16]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[16] ), .OPOS(\DMM_en_22_0_o2_0_RNI5A4QI[7] ), .CE(\CPLD_Con_1.OC_x17_0_sqmuxa_i ), .CLK(i_sys_clk_c)); o_PMU_OC_2_15_ \o_PMU_OC_2[15]_I ( .IOLDO(\o_PMU_OC_2_c[15] ), .oPMUOC215(o_PMU_OC_2[15])); o_PMU_OC_2_15__MGIOL \o_PMU_OC_2[15]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[15] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[15] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_14_ \o_PMU_OC_2[14]_I ( .IOLDO(\o_PMU_OC_2_c[14] ), .oPMUOC214(o_PMU_OC_2[14])); o_PMU_OC_2_14__MGIOL \o_PMU_OC_2[14]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[14] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[14] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_13_ \o_PMU_OC_2[13]_I ( .IOLDO(\o_PMU_OC_2_c[13] ), .oPMUOC213(o_PMU_OC_2[13])); o_PMU_OC_2_13__MGIOL \o_PMU_OC_2[13]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[13] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[13] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_12_ \o_PMU_OC_2[12]_I ( .IOLDO(\o_PMU_OC_2_c[12] ), .oPMUOC212(o_PMU_OC_2[12])); o_PMU_OC_2_12__MGIOL \o_PMU_OC_2[12]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[12] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[12] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_11_ \o_PMU_OC_2[11]_I ( .IOLDO(\o_PMU_OC_2_c[11] ), .oPMUOC211(o_PMU_OC_2[11])); o_PMU_OC_2_11__MGIOL \o_PMU_OC_2[11]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[11] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[11] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_10_ \o_PMU_OC_2[10]_I ( .IOLDO(\o_PMU_OC_2_c[10] ), .oPMUOC210(o_PMU_OC_2[10])); o_PMU_OC_2_10__MGIOL \o_PMU_OC_2[10]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[10] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[10] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_9_ \o_PMU_OC_2[9]_I ( .IOLDO(\o_PMU_OC_2_c[9] ), .oPMUOC29(o_PMU_OC_2[9])); o_PMU_OC_2_9__MGIOL \o_PMU_OC_2[9]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[9] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[9] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_8_ \o_PMU_OC_2[8]_I ( .IOLDO(\o_PMU_OC_2_c[8] ), .oPMUOC28(o_PMU_OC_2[8])); o_PMU_OC_2_8__MGIOL \o_PMU_OC_2[8]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[8] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[8] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_7_ \o_PMU_OC_2[7]_I ( .PADDO(\o_PMU_OC_2_c[7] ), .oPMUOC27(o_PMU_OC_2[7])); o_PMU_OC_2_6_ \o_PMU_OC_2[6]_I ( .IOLDO(\o_PMU_OC_2_c[6] ), .oPMUOC26(o_PMU_OC_2[6])); o_PMU_OC_2_6__MGIOL \o_PMU_OC_2[6]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[6] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[6] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_5_ \o_PMU_OC_2[5]_I ( .PADDO(\o_PMU_OC_2_c[5] ), .oPMUOC25(o_PMU_OC_2[5])); o_PMU_OC_2_4_ \o_PMU_OC_2[4]_I ( .IOLDO(\o_PMU_OC_2_c[4] ), .oPMUOC24(o_PMU_OC_2[4])); o_PMU_OC_2_4__MGIOL \o_PMU_OC_2[4]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[4] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[4] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_3_ \o_PMU_OC_2[3]_I ( .PADDO(\o_PMU_OC_2_c[3] ), .oPMUOC23(o_PMU_OC_2[3])); o_PMU_OC_2_2_ \o_PMU_OC_2[2]_I ( .IOLDO(\o_PMU_OC_2_c[2] ), .oPMUOC22(o_PMU_OC_2[2])); o_PMU_OC_2_2__MGIOL \o_PMU_OC_2[2]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[2] ), .OPOS(\CPLD_Con_1.PMU_OC_2_8[2] ), .CE(\CPLD_Con_1.un1_exec_flag_3_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_2_1_ \o_PMU_OC_2[1]_I ( .PADDO(\o_PMU_OC_2_c[1] ), .oPMUOC21(o_PMU_OC_2[1])); o_PMU_OC_2_0_ \o_PMU_OC_2[0]_I ( .IOLDO(\o_PMU_OC_2_c[0] ), .oPMUOC20(o_PMU_OC_2[0])); o_PMU_OC_2_0__MGIOL \o_PMU_OC_2[0]_MGIOL ( .IOLDO(\o_PMU_OC_2_c[0] ), .OPOS(\DMM_en_22_0_a2_3_RNIK2BQH[4] ), .CE(\CPLD_Con_1.OC_x17_0_sqmuxa_i ), .CLK(i_sys_clk_c)); o_PMU_OC_1_31_ \o_PMU_OC_1[31]_I ( .IOLDO(\o_PMU_OC_1_c[31] ), .oPMUOC131(o_PMU_OC_1[31])); o_PMU_OC_1_31__MGIOL \o_PMU_OC_1[31]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[31] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[31] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_30_ \o_PMU_OC_1[30]_I ( .IOLDO(\o_PMU_OC_1_c[30] ), .oPMUOC130(o_PMU_OC_1[30])); o_PMU_OC_1_30__MGIOL \o_PMU_OC_1[30]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[30] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[30] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_29_ \o_PMU_OC_1[29]_I ( .IOLDO(\o_PMU_OC_1_c[29] ), .oPMUOC129(o_PMU_OC_1[29])); o_PMU_OC_1_29__MGIOL \o_PMU_OC_1[29]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[29] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[29] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_28_ \o_PMU_OC_1[28]_I ( .IOLDO(\o_PMU_OC_1_c[28] ), .oPMUOC128(o_PMU_OC_1[28])); o_PMU_OC_1_28__MGIOL \o_PMU_OC_1[28]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[28] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[28] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_27_ \o_PMU_OC_1[27]_I ( .IOLDO(\o_PMU_OC_1_c[27] ), .oPMUOC127(o_PMU_OC_1[27])); o_PMU_OC_1_27__MGIOL \o_PMU_OC_1[27]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[27] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[27] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_26_ \o_PMU_OC_1[26]_I ( .IOLDO(\o_PMU_OC_1_c[26] ), .oPMUOC126(o_PMU_OC_1[26])); o_PMU_OC_1_26__MGIOL \o_PMU_OC_1[26]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[26] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[26] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_25_ \o_PMU_OC_1[25]_I ( .IOLDO(\o_PMU_OC_1_c[25] ), .oPMUOC125(o_PMU_OC_1[25])); o_PMU_OC_1_25__MGIOL \o_PMU_OC_1[25]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[25] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[25] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_24_ \o_PMU_OC_1[24]_I ( .IOLDO(\o_PMU_OC_1_c[24] ), .oPMUOC124(o_PMU_OC_1[24])); o_PMU_OC_1_24__MGIOL \o_PMU_OC_1[24]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[24] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[24] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_23_ \o_PMU_OC_1[23]_I ( .IOLDO(\o_PMU_OC_1_c[23] ), .oPMUOC123(o_PMU_OC_1[23])); o_PMU_OC_1_23__MGIOL \o_PMU_OC_1[23]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[23] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[23] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_22_ \o_PMU_OC_1[22]_I ( .IOLDO(\o_PMU_OC_1_c[22] ), .oPMUOC122(o_PMU_OC_1[22])); o_PMU_OC_1_22__MGIOL \o_PMU_OC_1[22]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[22] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[22] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_21_ \o_PMU_OC_1[21]_I ( .IOLDO(\o_PMU_OC_1_c[21] ), .oPMUOC121(o_PMU_OC_1[21])); o_PMU_OC_1_21__MGIOL \o_PMU_OC_1[21]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[21] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[21] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_20_ \o_PMU_OC_1[20]_I ( .IOLDO(\o_PMU_OC_1_c[20] ), .oPMUOC120(o_PMU_OC_1[20])); o_PMU_OC_1_20__MGIOL \o_PMU_OC_1[20]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[20] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[20] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_19_ \o_PMU_OC_1[19]_I ( .IOLDO(\o_PMU_OC_1_c[19] ), .oPMUOC119(o_PMU_OC_1[19])); o_PMU_OC_1_19__MGIOL \o_PMU_OC_1[19]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[19] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[19] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_18_ \o_PMU_OC_1[18]_I ( .IOLDO(\o_PMU_OC_1_c[18] ), .oPMUOC118(o_PMU_OC_1[18])); o_PMU_OC_1_18__MGIOL \o_PMU_OC_1[18]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[18] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[18] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_17_ \o_PMU_OC_1[17]_I ( .IOLDO(\o_PMU_OC_1_c[17] ), .oPMUOC117(o_PMU_OC_1[17])); o_PMU_OC_1_17__MGIOL \o_PMU_OC_1[17]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[17] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[17] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_16_ \o_PMU_OC_1[16]_I ( .IOLDO(\o_PMU_OC_1_c[16] ), .oPMUOC116(o_PMU_OC_1[16])); o_PMU_OC_1_16__MGIOL \o_PMU_OC_1[16]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[16] ), .OPOS(\CPLD_Con_1.N_259 ), .CE(\CPLD_Con_1.OC_x17_0_sqmuxa_i ), .CLK(i_sys_clk_c)); o_PMU_OC_1_15_ \o_PMU_OC_1[15]_I ( .IOLDO(\o_PMU_OC_1_c[15] ), .oPMUOC115(o_PMU_OC_1[15])); o_PMU_OC_1_15__MGIOL \o_PMU_OC_1[15]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[15] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[15] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_14_ \o_PMU_OC_1[14]_I ( .IOLDO(\o_PMU_OC_1_c[14] ), .oPMUOC114(o_PMU_OC_1[14])); o_PMU_OC_1_14__MGIOL \o_PMU_OC_1[14]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[14] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[14] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_13_ \o_PMU_OC_1[13]_I ( .IOLDO(\o_PMU_OC_1_c[13] ), .oPMUOC113(o_PMU_OC_1[13])); o_PMU_OC_1_13__MGIOL \o_PMU_OC_1[13]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[13] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[13] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_12_ \o_PMU_OC_1[12]_I ( .IOLDO(\o_PMU_OC_1_c[12] ), .oPMUOC112(o_PMU_OC_1[12])); o_PMU_OC_1_12__MGIOL \o_PMU_OC_1[12]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[12] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[12] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_11_ \o_PMU_OC_1[11]_I ( .IOLDO(\o_PMU_OC_1_c[11] ), .oPMUOC111(o_PMU_OC_1[11])); o_PMU_OC_1_11__MGIOL \o_PMU_OC_1[11]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[11] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[11] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_10_ \o_PMU_OC_1[10]_I ( .IOLDO(\o_PMU_OC_1_c[10] ), .oPMUOC110(o_PMU_OC_1[10])); o_PMU_OC_1_10__MGIOL \o_PMU_OC_1[10]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[10] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[10] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_9_ \o_PMU_OC_1[9]_I ( .IOLDO(\o_PMU_OC_1_c[9] ), .oPMUOC19(o_PMU_OC_1[9])); o_PMU_OC_1_9__MGIOL \o_PMU_OC_1[9]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[9] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[9] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_8_ \o_PMU_OC_1[8]_I ( .IOLDO(\o_PMU_OC_1_c[8] ), .oPMUOC18(o_PMU_OC_1[8])); o_PMU_OC_1_8__MGIOL \o_PMU_OC_1[8]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[8] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[8] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_7_ \o_PMU_OC_1[7]_I ( .IOLDO(\o_PMU_OC_1_c[7] ), .oPMUOC17(o_PMU_OC_1[7])); o_PMU_OC_1_7__MGIOL \o_PMU_OC_1[7]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[7] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[7] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_6_ \o_PMU_OC_1[6]_I ( .IOLDO(\o_PMU_OC_1_c[6] ), .oPMUOC16(o_PMU_OC_1[6])); o_PMU_OC_1_6__MGIOL \o_PMU_OC_1[6]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[6] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[6] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_5_ \o_PMU_OC_1[5]_I ( .IOLDO(\o_PMU_OC_1_c[5] ), .oPMUOC15(o_PMU_OC_1[5])); o_PMU_OC_1_5__MGIOL \o_PMU_OC_1[5]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[5] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[5] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_4_ \o_PMU_OC_1[4]_I ( .IOLDO(\o_PMU_OC_1_c[4] ), .oPMUOC14(o_PMU_OC_1[4])); o_PMU_OC_1_4__MGIOL \o_PMU_OC_1[4]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[4] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[4] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_3_ \o_PMU_OC_1[3]_I ( .IOLDO(\o_PMU_OC_1_c[3] ), .oPMUOC13(o_PMU_OC_1[3])); o_PMU_OC_1_3__MGIOL \o_PMU_OC_1[3]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[3] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[3] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_2_ \o_PMU_OC_1[2]_I ( .IOLDO(\o_PMU_OC_1_c[2] ), .oPMUOC12(o_PMU_OC_1[2])); o_PMU_OC_1_2__MGIOL \o_PMU_OC_1[2]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[2] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[2] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_1_ \o_PMU_OC_1[1]_I ( .IOLDO(\o_PMU_OC_1_c[1] ), .oPMUOC11(o_PMU_OC_1[1])); o_PMU_OC_1_1__MGIOL \o_PMU_OC_1[1]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[1] ), .OPOS(\CPLD_Con_1.PMU_OC_1_8[1] ), .CE(\CPLD_Con_1.un1_exec_flag_4_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_PMU_OC_1_0_ \o_PMU_OC_1[0]_I ( .IOLDO(\o_PMU_OC_1_c[0] ), .oPMUOC10(o_PMU_OC_1[0])); o_PMU_OC_1_0__MGIOL \o_PMU_OC_1[0]_MGIOL ( .IOLDO(\o_PMU_OC_1_c[0] ), .OPOS(\CPLD_Con_1.N_333 ), .CE(\CPLD_Con_1.OC_x17_0_sqmuxa_i ), .CLK(i_sys_clk_c)); o_RC_LOS_1_ \o_RC_LOS[1]_I ( .PADDO(o_RC_ISel_c), .oRCLOS1(o_RC_LOS[1])); o_RC_LOS_0_ \o_RC_LOS[0]_I ( .PADDO(o_RC_ISel_c_i), .oRCLOS0(o_RC_LOS[0])); o_RC_LOF_1_ \o_RC_LOF[1]_I ( .PADDO(o_RC_ISel_c), .oRCLOF1(o_RC_LOF[1])); o_RC_LOF_0_ \o_RC_LOF[0]_I ( .PADDO(o_RC_ISel_c_i), .oRCLOF0(o_RC_LOF[0])); o_RC_ISel o_RC_ISel_I( .PADDO(o_RC_ISel_c), .o_RC_ISel(o_RC_ISel)); o_RC_VSel o_RC_VSel_I( .PADDO(o_RC_ISel_c_i), .o_RC_VSel(o_RC_VSel)); o_RC_RLSel_17_ \o_RC_RLSel[17]_I ( .IOLDO(\o_RC_RLSel_c[17] ), .oRCRLSel17(o_RC_RLSel[17])); o_RC_RLSel_17__MGIOL \o_RC_RLSel[17]_MGIOL ( .IOLDO(\o_RC_RLSel_c[17] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[17] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(err_flag13_0_0_0_RNILOU7L8), .CLK(i_sys_clk_c)); o_RC_RLSel_16_ \o_RC_RLSel[16]_I ( .IOLDO(\o_RC_RLSel_c[16] ), .oRCRLSel16(o_RC_RLSel[16])); o_RC_RLSel_16__MGIOL \o_RC_RLSel[16]_MGIOL ( .IOLDO(\o_RC_RLSel_c[16] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[16] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(err_flag13_0_0_0_RNILOU7L8), .CLK(i_sys_clk_c)); o_RC_RLSel_15_ \o_RC_RLSel[15]_I ( .IOLDO(\o_RC_RLSel_c[15] ), .oRCRLSel15(o_RC_RLSel[15])); o_RC_RLSel_15__MGIOL \o_RC_RLSel[15]_MGIOL ( .IOLDO(\o_RC_RLSel_c[15] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[15] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_RC_RLSel_14_ \o_RC_RLSel[14]_I ( .IOLDO(\o_RC_RLSel_c[14] ), .oRCRLSel14(o_RC_RLSel[14])); o_RC_RLSel_14__MGIOL \o_RC_RLSel[14]_MGIOL ( .IOLDO(\o_RC_RLSel_c[14] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[14] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_RC_RLSel_13_ \o_RC_RLSel[13]_I ( .IOLDO(\o_RC_RLSel_c[13] ), .oRCRLSel13(o_RC_RLSel[13])); o_RC_RLSel_13__MGIOL \o_RC_RLSel[13]_MGIOL ( .IOLDO(\o_RC_RLSel_c[13] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[13] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_RC_RLSel_12_ \o_RC_RLSel[12]_I ( .IOLDO(\o_RC_RLSel_c[12] ), .oRCRLSel12(o_RC_RLSel[12])); o_RC_RLSel_12__MGIOL \o_RC_RLSel[12]_MGIOL ( .IOLDO(\o_RC_RLSel_c[12] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[12] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_RC_RLSel_11_ \o_RC_RLSel[11]_I ( .IOLDO(\o_RC_RLSel_c[11] ), .oRCRLSel11(o_RC_RLSel[11])); o_RC_RLSel_11__MGIOL \o_RC_RLSel[11]_MGIOL ( .IOLDO(\o_RC_RLSel_c[11] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[11] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_RC_RLSel_10_ \o_RC_RLSel[10]_I ( .IOLDO(\o_RC_RLSel_c[10] ), .oRCRLSel10(o_RC_RLSel[10])); o_RC_RLSel_10__MGIOL \o_RC_RLSel[10]_MGIOL ( .IOLDO(\o_RC_RLSel_c[10] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[10] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_RC_RLSel_9_ \o_RC_RLSel[9]_I ( .IOLDO(\o_RC_RLSel_c[9] ), .oRCRLSel9(o_RC_RLSel[9])); o_RC_RLSel_9__MGIOL \o_RC_RLSel[9]_MGIOL ( .IOLDO(\o_RC_RLSel_c[9] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[9] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_RC_RLSel_8_ \o_RC_RLSel[8]_I ( .IOLDO(\o_RC_RLSel_c[8] ), .oRCRLSel8(o_RC_RLSel[8])); o_RC_RLSel_8__MGIOL \o_RC_RLSel[8]_MGIOL ( .IOLDO(\o_RC_RLSel_c[8] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[8] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_RC_RLSel_7_ \o_RC_RLSel[7]_I ( .IOLDO(\o_RC_RLSel_c[7] ), .oRCRLSel7(o_RC_RLSel[7])); o_RC_RLSel_7__MGIOL \o_RC_RLSel[7]_MGIOL ( .IOLDO(\o_RC_RLSel_c[7] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[7] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_RC_RLSel_6_ \o_RC_RLSel[6]_I ( .IOLDO(\o_RC_RLSel_c[6] ), .oRCRLSel6(o_RC_RLSel[6])); o_RC_RLSel_6__MGIOL \o_RC_RLSel[6]_MGIOL ( .IOLDO(\o_RC_RLSel_c[6] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[6] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_RC_RLSel_5_ \o_RC_RLSel[5]_I ( .IOLDO(\o_RC_RLSel_c[5] ), .oRCRLSel5(o_RC_RLSel[5])); o_RC_RLSel_5__MGIOL \o_RC_RLSel[5]_MGIOL ( .IOLDO(\o_RC_RLSel_c[5] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[5] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_RC_RLSel_4_ \o_RC_RLSel[4]_I ( .IOLDO(\o_RC_RLSel_c[4] ), .oRCRLSel4(o_RC_RLSel[4])); o_RC_RLSel_4__MGIOL \o_RC_RLSel[4]_MGIOL ( .IOLDO(\o_RC_RLSel_c[4] ), .OPOS(\CPLD_Con_1.RC_RLSel_13[4] ), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(i_rst_n_c), .CLK(i_sys_clk_c)); o_RC_RLSel_3_ \o_RC_RLSel[3]_I ( .IOLDO(\o_RC_RLSel_c[3] ), .oRCRLSel3(o_RC_RLSel[3])); o_RC_RLSel_3__MGIOL \o_RC_RLSel[3]_MGIOL ( .IOLDO(\o_RC_RLSel_c[3] ), .OPOS(N_232), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(err_flag13_0_0_0_RNILOU7L8), .CLK(i_sys_clk_c)); o_RC_RLSel_2_ \o_RC_RLSel[2]_I ( .IOLDO(\o_RC_RLSel_c[2] ), .oRCRLSel2(o_RC_RLSel[2])); o_RC_RLSel_2__MGIOL \o_RC_RLSel[2]_MGIOL ( .IOLDO(\o_RC_RLSel_c[2] ), .OPOS(N_235), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(err_flag13_0_0_0_RNILOU7L8), .CLK(i_sys_clk_c)); o_RC_RLSel_1_ \o_RC_RLSel[1]_I ( .IOLDO(\o_RC_RLSel_c[1] ), .oRCRLSel1(o_RC_RLSel[1])); o_RC_RLSel_1__MGIOL \o_RC_RLSel[1]_MGIOL ( .IOLDO(\o_RC_RLSel_c[1] ), .OPOS(N_234), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(err_flag13_0_0_0_RNILOU7L8), .CLK(i_sys_clk_c)); o_RC_RLSel_0_ \o_RC_RLSel[0]_I ( .IOLDO(\o_RC_RLSel_c[0] ), .oRCRLSel0(o_RC_RLSel[0])); o_RC_RLSel_0__MGIOL \o_RC_RLSel[0]_MGIOL ( .IOLDO(\o_RC_RLSel_c[0] ), .OPOS(N_233), .CE(\CPLD_Con_1.un1_exec_flag_10_i ), .LSR(err_flag13_0_0_0_RNILOU7L8), .CLK(i_sys_clk_c)); o_RC_T32 o_RC_T32_I( .IOLDO(o_RC_T32_c), .o_RC_T32(o_RC_T32)); o_RC_T32_MGIOL o_RC_T32_MGIOL( .IOLDO(o_RC_T32_c), .OPOS(\freq4_relay[12] ), .CE(\CPLD_Con_1.err_flag_1_sqmuxa ), .CLK(i_sys_clk_c)); o_RC_T31 o_RC_T31_I( .IOLDO(o_RC_T31_c), .o_RC_T31(o_RC_T31)); o_RC_T31_MGIOL o_RC_T31_MGIOL( .IOLDO(o_RC_T31_c), .OPOS(\freq4_relay[13] ), .CE(\CPLD_Con_1.err_flag_1_sqmuxa ), .CLK(i_sys_clk_c)); o_RC_T30 o_RC_T30_I( .IOLDO(o_RC_T30_c), .o_RC_T30(o_RC_T30)); o_RC_T30_MGIOL o_RC_T30_MGIOL( .IOLDO(o_RC_T30_c), .OPOS(\freq4_relay[14] ), .CE(\CPLD_Con_1.err_flag_1_sqmuxa ), .CLK(i_sys_clk_c)); o_RC_T29 o_RC_T29_I( .IOLDO(o_RC_T29_c), .o_RC_T29(o_RC_T29)); o_RC_T29_MGIOL o_RC_T29_MGIOL( .IOLDO(o_RC_T29_c), .OPOS(\freq4_relay[15] ), .CE(\CPLD_Con_1.err_flag_1_sqmuxa ), .CLK(i_sys_clk_c)); o_RC_T28 o_RC_T28_I( .IOLDO(o_RC_T28_c), .o_RC_T28(o_RC_T28)); o_RC_T28_MGIOL o_RC_T28_MGIOL( .IOLDO(o_RC_T28_c), .OPOS(\freq4_relay[16] ), .CE(\CPLD_Con_1.err_flag_1_sqmuxa ), .CLK(i_sys_clk_c)); o_RC_T27 o_RC_T27_I( .IOLDO(o_RC_T27_c), .o_RC_T27(o_RC_T27)); o_RC_T27_MGIOL o_RC_T27_MGIOL( .IOLDO(o_RC_T27_c), .OPOS(\freq4_relay[17] ), .CE(\CPLD_Con_1.err_flag_1_sqmuxa ), .CLK(i_sys_clk_c)); o_IO_RC1 o_IO_RC1_I( .IOLDO(o_IO_RC1_c), .o_IO_RC1(o_IO_RC1)); o_IO_RC1_MGIOL o_IO_RC1_MGIOL( .IOLDO(o_IO_RC1_c), .OPOS(\CPLD_Con_1.io_RC_2 ), .CE(\CPLD_Con_1.io_RC_1_sqmuxa ), .CLK(i_sys_clk_c)); o_DMM_EN_18_ \o_DMM_EN[18]_I ( .IOLDO(\o_DMM_EN_c[18] ), .oDMMEN18(o_DMM_EN[18])); o_DMM_EN_18__MGIOL \o_DMM_EN[18]_MGIOL ( .IOLDO(\o_DMM_EN_c[18] ), .OPOS(\CPLD_Con_1.DMM_en_22[18] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_17_ \o_DMM_EN[17]_I ( .IOLDO(\o_DMM_EN_c[17] ), .oDMMEN17(o_DMM_EN[17])); o_DMM_EN_17__MGIOL \o_DMM_EN[17]_MGIOL ( .IOLDO(\o_DMM_EN_c[17] ), .OPOS(\CPLD_Con_1.DMM_en_22[17] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_16_ \o_DMM_EN[16]_I ( .IOLDO(\o_DMM_EN_c[16] ), .oDMMEN16(o_DMM_EN[16])); o_DMM_EN_16__MGIOL \o_DMM_EN[16]_MGIOL ( .IOLDO(\o_DMM_EN_c[16] ), .OPOS(\CPLD_Con_1.DMM_en_22[16] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_15_ \o_DMM_EN[15]_I ( .IOLDO(\o_DMM_EN_c[15] ), .oDMMEN15(o_DMM_EN[15])); o_DMM_EN_15__MGIOL \o_DMM_EN[15]_MGIOL ( .IOLDO(\o_DMM_EN_c[15] ), .OPOS(\CPLD_Con_1.DMM_en_22[15] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_14_ \o_DMM_EN[14]_I ( .IOLDO(\o_DMM_EN_c[14] ), .oDMMEN14(o_DMM_EN[14])); o_DMM_EN_14__MGIOL \o_DMM_EN[14]_MGIOL ( .IOLDO(\o_DMM_EN_c[14] ), .OPOS(\CPLD_Con_1.DMM_en_22[14] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_13_ \o_DMM_EN[13]_I ( .IOLDO(\o_DMM_EN_c[13] ), .oDMMEN13(o_DMM_EN[13])); o_DMM_EN_13__MGIOL \o_DMM_EN[13]_MGIOL ( .IOLDO(\o_DMM_EN_c[13] ), .OPOS(\CPLD_Con_1.DMM_en_22[13] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_12_ \o_DMM_EN[12]_I ( .IOLDO(\o_DMM_EN_c[12] ), .oDMMEN12(o_DMM_EN[12])); o_DMM_EN_12__MGIOL \o_DMM_EN[12]_MGIOL ( .IOLDO(\o_DMM_EN_c[12] ), .OPOS(\CPLD_Con_1.DMM_en_22[12] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_11_ \o_DMM_EN[11]_I ( .IOLDO(\o_DMM_EN_c[11] ), .oDMMEN11(o_DMM_EN[11])); o_DMM_EN_11__MGIOL \o_DMM_EN[11]_MGIOL ( .IOLDO(\o_DMM_EN_c[11] ), .OPOS(\CPLD_Con_1.DMM_en_22[11] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_10_ \o_DMM_EN[10]_I ( .IOLDO(\o_DMM_EN_c[10] ), .oDMMEN10(o_DMM_EN[10])); o_DMM_EN_10__MGIOL \o_DMM_EN[10]_MGIOL ( .IOLDO(\o_DMM_EN_c[10] ), .OPOS(\CPLD_Con_1.DMM_en_22[10] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_9_ \o_DMM_EN[9]_I ( .IOLDO(\o_DMM_EN_c[9] ), .oDMMEN9(o_DMM_EN[9])); o_DMM_EN_9__MGIOL \o_DMM_EN[9]_MGIOL ( .IOLDO(\o_DMM_EN_c[9] ), .OPOS(\CPLD_Con_1.DMM_en_22[9] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_8_ \o_DMM_EN[8]_I ( .IOLDO(\o_DMM_EN_c[8] ), .oDMMEN8(o_DMM_EN[8])); o_DMM_EN_8__MGIOL \o_DMM_EN[8]_MGIOL ( .IOLDO(\o_DMM_EN_c[8] ), .OPOS(\CPLD_Con_1.DMM_en_22[8] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_7_ \o_DMM_EN[7]_I ( .IOLDO(\o_DMM_EN_c[7] ), .oDMMEN7(o_DMM_EN[7])); o_DMM_EN_7__MGIOL \o_DMM_EN[7]_MGIOL ( .IOLDO(\o_DMM_EN_c[7] ), .OPOS(\CPLD_Con_1.DMM_en_22[7] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_6_ \o_DMM_EN[6]_I ( .IOLDO(\o_DMM_EN_c[6] ), .oDMMEN6(o_DMM_EN[6])); o_DMM_EN_6__MGIOL \o_DMM_EN[6]_MGIOL ( .IOLDO(\o_DMM_EN_c[6] ), .OPOS(\CPLD_Con_1.DMM_en_22[6] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_5_ \o_DMM_EN[5]_I ( .IOLDO(\o_DMM_EN_c[5] ), .oDMMEN5(o_DMM_EN[5])); o_DMM_EN_5__MGIOL \o_DMM_EN[5]_MGIOL ( .IOLDO(\o_DMM_EN_c[5] ), .OPOS(\CPLD_Con_1.DMM_en_22[5] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_4_ \o_DMM_EN[4]_I ( .IOLDO(\o_DMM_EN_c[4] ), .oDMMEN4(o_DMM_EN[4])); o_DMM_EN_4__MGIOL \o_DMM_EN[4]_MGIOL ( .IOLDO(\o_DMM_EN_c[4] ), .OPOS(\CPLD_Con_1.DMM_en_22[4] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_3_ \o_DMM_EN[3]_I ( .IOLDO(\o_DMM_EN_c[3] ), .oDMMEN3(o_DMM_EN[3])); o_DMM_EN_3__MGIOL \o_DMM_EN[3]_MGIOL ( .IOLDO(\o_DMM_EN_c[3] ), .OPOS(\CPLD_Con_1.DMM_en_22[3] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_2_ \o_DMM_EN[2]_I ( .IOLDO(\o_DMM_EN_c[2] ), .oDMMEN2(o_DMM_EN[2])); o_DMM_EN_2__MGIOL \o_DMM_EN[2]_MGIOL ( .IOLDO(\o_DMM_EN_c[2] ), .OPOS(\CPLD_Con_1.DMM_en_22[2] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_1_ \o_DMM_EN[1]_I ( .IOLDO(\o_DMM_EN_c[1] ), .oDMMEN1(o_DMM_EN[1])); o_DMM_EN_1__MGIOL \o_DMM_EN[1]_MGIOL ( .IOLDO(\o_DMM_EN_c[1] ), .OPOS(\CPLD_Con_1.DMM_en_22[1] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_DMM_EN_0_ \o_DMM_EN[0]_I ( .IOLDO(\o_DMM_EN_c[0] ), .oDMMEN0(o_DMM_EN[0])); o_DMM_EN_0__MGIOL \o_DMM_EN[0]_MGIOL ( .IOLDO(\o_DMM_EN_c[0] ), .OPOS(\CPLD_Con_1.DMM_en_22[0] ), .CE(\CPLD_Con_1.DMM_en_0_sqmuxa_9_i ), .CLK(i_sys_clk_c)); o_con_done o_con_done_I( .PADDO(o_con_done_c), .o_con_done(o_con_done)); o_err o_err_I( .PADDO(o_err_c), .o_err(o_err)); i_cs i_cs_I( .PADDI(i_cs_c), .i_cs(i_cs)); i_cs_MGIOL i_cs_MGIOL( .DI(i_cs_c), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .IN(\BUS_Con_1.cs_sync[0] )); i_mosi i_mosi_I( .PADDI(i_mosi_c), .i_mosi(i_mosi)); i_mosi_MGIOL i_mosi_MGIOL( .DI(i_mosi_c), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .IN(\BUS_Con_1.mosi_sync[0] )); i_sclk i_sclk_I( .PADDI(i_sclk_c), .i_sclk(i_sclk)); i_sclk_MGIOL i_sclk_MGIOL( .DI(i_sclk_c), .LSR(i_rst_n_c), .CLK(i_sys_clk_c), .IN(\BUS_Con_1.sclk_sync[0] )); i_rst_n i_rst_n_I( .PADDI(i_rst_n_c), .i_rst_n(i_rst_n)); i_rst_n_MGIOL i_rst_n_MGIOL( .DI(i_rst_n_c), .CE(\CPLD_Con_1.RC_Tx_0_sqmuxa_1_i ), .LSR(o_con_done_c), .CLK(i_sys_clk_c), .IN(\CPLD_Con_1.exec_flag )); GSR_INST GSR_INST( .GSRNET(i_rst_n_c)); VHI VHI_INST( .Z(VCCI)); PUR PUR_INST( .PUR(VCCI)); endmodule module SLICE_0 ( input B1, A1, B0, A0, DI0, CLK, output F0, Q0, F1 ); wire GNDI, VCCI, DI0_dly, CLK_dly; lut4 \CPLD_Con_1/err_flag_1_sqmuxa ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40001 \BUS_Con_1/cs_sync_rep0_set[1] ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre \BUS_Con_1_cs_sync_rep0io[1] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut4 ( input A, B, C, D, output Z ); ROM16X1A #(16'h8888) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module gnd ( output PWR0 ); VLO INST1( .Z(PWR0)); endmodule module lut40001 ( input A, B, C, D, output Z ); ROM16X1A #(16'hBBBB) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module vmuxregsre ( input D0, D1, SD, SP, CK, LSR, output Q ); FL1P3DX INST01( .D0(D0), .D1(D1), .SP(SP), .CK(CK), .SD(SD), .CD(LSR), .Q(Q)); defparam INST01.GSR = "DISABLED"; endmodule module vcc ( output PWR1 ); VHI INST1( .Z(PWR1)); endmodule module BUS_Con_1_SLICE_1 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI1, DI0, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, DI1_dly, CLK_dly, DI0_dly, LSR_dly; lut40002 \BUS_Con_1/un1_bit_cnt_9_axbxc1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40003 \BUS_Con_1/bit_cnt_RNO[0] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/bit_cnt[1] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/bit_cnt[0] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40002 ( input A, B, C, D, output Z ); ROM16X1A #(16'hCCC6) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40003 ( input A, B, C, D, output Z ); ROM16X1A #(16'hC9CC) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module vmuxregsre0004 ( input D0, D1, SD, SP, CK, LSR, output Q ); FL1P3IY INST01( .D0(D0), .D1(D1), .SP(SP), .CK(CK), .SD(SD), .CD(LSR), .Q(Q)); defparam INST01.GSR = "DISABLED"; endmodule module BUS_Con_1_SLICE_2 ( input C1, B1, A1, B0, A0, DI1, DI0, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, DI1_dly, CLK_dly, DI0_dly, LSR_dly; lut40005 \BUS_Con_1/un1_bit_cnt_9_axbxc3 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40006 \BUS_Con_1/un1_bit_cnt_9_axbxc2 ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/bit_cnt[3] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/bit_cnt[2] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40005 ( input A, B, C, D, output Z ); ROM16X1A #(16'h6C6C) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40006 ( input A, B, C, D, output Z ); ROM16X1A #(16'h6666) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module BUS_Con_1_SLICE_3 ( input C1, B1, A1, D0, C0, B0, A0, DI1, DI0, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, DI1_dly, CLK_dly, DI0_dly, LSR_dly; lut40005 \BUS_Con_1/un1_bit_cnt_9_axbxc5 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40007 \BUS_Con_1/un1_bit_cnt_9_axbxc4 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/bit_cnt[5] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/bit_cnt[4] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40007 ( input A, B, C, D, output Z ); ROM16X1A #(16'h78F0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module BUS_Con_1_SLICE_5 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI0, M1, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, DI0_dly, CLK_dly, M1_dly, LSR_dly; lut40008 \BUS_Con_1/data_readyc_2_0 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40009 \BUS_Con_1/data_ready_RNO ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0010 \BUS_Con_1/cs_sync[1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/data_ready ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40008 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0100) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40009 ( input A, B, C, D, output Z ); ROM16X1A #(16'h8088) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module vmuxregsre0010 ( input D0, D1, SD, SP, CK, LSR, output Q ); FL1P3JY INST01( .D0(D0), .D1(D1), .SP(SP), .CK(CK), .SD(SD), .PD(LSR), .Q(Q)); defparam INST01.GSR = "DISABLED"; endmodule module inverter ( input I, output Z ); INV INST1( .A(I), .Z(Z)); endmodule module BUS_Con_1_SLICE_6 ( input C1, B1, A1, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40011 \BUS_Con_1/miso_shift_6[1] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut4 \BUS_Con_1/miso_shift_6[0] ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[1] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[0] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40011 ( input A, B, C, D, output Z ); ROM16X1A #(16'hE4E4) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module BUS_Con_1_SLICE_7 ( input C1, B1, A1, C0, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40011 \BUS_Con_1/miso_shift_6[3] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40011 \BUS_Con_1/miso_shift_6[2] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[3] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[2] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_8 ( input C1, B1, A1, C0, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40011 \BUS_Con_1/miso_shift_6[5] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40011 \BUS_Con_1/miso_shift_6[4] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[5] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[4] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_9 ( input C1, B1, A1, C0, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40011 \BUS_Con_1/miso_shift_6[7] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40011 \BUS_Con_1/miso_shift_6[6] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[7] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[6] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_10 ( input C1, B1, A1, C0, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40011 \BUS_Con_1/miso_shift_6[9] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40011 \BUS_Con_1/miso_shift_6[8] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[9] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[8] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_11 ( input C1, B1, A1, C0, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40011 \BUS_Con_1/miso_shift_6[11] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40011 \BUS_Con_1/miso_shift_6[10] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[11] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[10] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_12 ( input C1, B1, A1, C0, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40011 \BUS_Con_1/miso_shift_6[13] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40011 \BUS_Con_1/miso_shift_6[12] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[13] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[12] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_13 ( input C1, B1, A1, C0, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40011 \BUS_Con_1/miso_shift_6[15] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40011 \BUS_Con_1/miso_shift_6[14] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[15] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[14] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_14 ( input C1, B1, A1, C0, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40011 \BUS_Con_1/miso_shift_6[17] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40011 \BUS_Con_1/miso_shift_6[16] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[17] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[16] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_15 ( input C1, B1, A1, C0, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40011 \BUS_Con_1/miso_shift_6[19] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40011 \BUS_Con_1/miso_shift_6[18] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[19] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[18] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_16 ( input C1, B1, A1, C0, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40011 \BUS_Con_1/miso_shift_6[21] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40011 \BUS_Con_1/miso_shift_6[20] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[21] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[20] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_17 ( input C1, B1, A1, C0, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40011 \BUS_Con_1/miso_shift_6[23] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40011 \BUS_Con_1/miso_shift_6[22] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[23] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[22] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_18 ( input B1, A1, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40012 \BUS_Con_1/miso_shift_6[25] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40012 \BUS_Con_1/miso_shift_6[24] ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[25] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[24] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40012 ( input A, B, C, D, output Z ); ROM16X1A #(16'h4444) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module BUS_Con_1_SLICE_19 ( input B1, A1, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40012 \BUS_Con_1/miso_shift_6[27] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40012 \BUS_Con_1/miso_shift_6[26] ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[27] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[26] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_20 ( input B1, A1, B0, A0, DI1, DI0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, CE_dly, LSR_dly; lut40012 \BUS_Con_1/miso_shift_6[29] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40012 \BUS_Con_1/miso_shift_6[28] ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/miso_shift[29] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/miso_shift[28] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_21 ( input D1, C1, B1, A1, B0, A0, DI0, CE, LSR, CLK, output F0, Q0, F1 ); wire GNDI, VCCI, LSR_NOTIN, DI0_dly, CLK_dly, CE_dly, LSR_dly; lut40013 \BUS_Con_1/data_readyc_3 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40012 \BUS_Con_1/miso_shift_6[30] ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/miso_shift[30] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40013 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0010) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module BUS_Con_1_SLICE_40 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI1, DI0, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, DI1_dly, CLK_dly, DI0_dly; lut40014 \BUS_Con_1/state_srsts[1] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40015 \BUS_Con_1/state_srsts[0] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre \BUS_Con_1/state[1] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre \BUS_Con_1/state[0] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40014 ( input A, B, C, D, output Z ); ROM16X1A #(16'hF200) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40015 ( input A, B, C, D, output Z ); ROM16X1A #(16'hE0A0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_62 ( input C1, B1, A1, D0, C0, B0, A0, DI0, M1, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI0_dly, CLK_dly, M1_dly, LSR_dly; lut40016 \CPLD_Con_1/N_11_1.CO0 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40017 \CPLD_Con_1/dc_t_2_2.SUM0 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/mosi_sync[1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \CPLD_Con_1/dc_t ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40016 ( input A, B, C, D, output Z ); ROM16X1A #(16'hE8E8) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40017 ( input A, B, C, D, output Z ); ROM16X1A #(16'h6996) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_SLICE_63 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI1, DI0, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, LSR_NOTIN, DI1_dly, CLK_dly, DI0_dly, LSR_dly; lut40018 \CPLD_Con_1/en_t_RNO[2] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40019 \CPLD_Con_1/en_t_RNO[1] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \CPLD_Con_1/en_t[2] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \CPLD_Con_1/en_t[1] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40018 ( input A, B, C, D, output Z ); ROM16X1A #(16'hE87E) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40019 ( input A, B, C, D, output Z ); ROM16X1A #(16'h9669) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_64 ( input C1, B1, A1, D0, C0, B0, A0, DI0, M1, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, DI0_dly, CLK_dly, M1_dly, LSR_dly; lut40016 \CPLD_Con_1/N_18_0_c1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40020 \CPLD_Con_1/en_t_RNO[3] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/sclk_sync[1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \CPLD_Con_1/en_t[3] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40020 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0080) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_SLICE_67 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI0, LSR, CLK, output F0, Q0, F1 ); wire VCCI, LSR_NOTIN, DI0_dly, CLK_dly, LSR_dly; lut40021 \CPLD_Con_1/io_RC_2 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40017 \CPLD_Con_1/freq_t_2_2.SUM0 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \CPLD_Con_1/freq_t ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40021 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFFFE) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_SLICE_74 ( input M0, CE, CLK, output Q0 ); wire VCCI, GNDI, M0_dly, CLK_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/regtable[9]_fast[8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module vmuxregsre0022 ( input D0, D1, SD, SP, CK, LSR, output Q ); FL1P3DX INST01( .D0(D0), .D1(D1), .SP(SP), .CK(CK), .SD(SD), .CD(LSR), .Q(Q)); defparam INST01.GSR = "ENABLED"; endmodule module CPLD_Reg_1_SLICE_75 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI0, CE, CLK, output F0, Q0, F1 ); wire VCCI, GNDI, DI0_dly, CLK_dly, CE_dly; lut40021 \CPLD_Reg_1/err_flag8 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40023 \CPLD_Reg_1/err_flag_RNO ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/err_flag ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40023 ( input A, B, C, D, output Z ); ROM16X1A #(16'hCCEC) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_SLICE_171 ( input B1, A1, D0, C0, B0, A0, DI0, CE, CLK, output F0, Q0, F1 ); wire GNDI, VCCI, DI0_dly, CLK_dly, CE_dly; lut40024 \CPLD_Reg_1/state_RNI7UVD8[1] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40025 \CPLD_Reg_1/regtable[1]_RNO[23] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0026 \CPLD_Reg_1/regtable[1][23] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40024 ( input A, B, C, D, output Z ); ROM16X1A #(16'h2222) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40025 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFBC8) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module vmuxregsre0026 ( input D0, D1, SD, SP, CK, LSR, output Q ); FL1P3BX INST01( .D0(D0), .D1(D1), .SP(SP), .CK(CK), .SD(SD), .PD(LSR), .Q(Q)); defparam INST01.GSR = "ENABLED"; endmodule module CPLD_Reg_1_SLICE_212 ( input M1, M0, CE, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/regtable[9][15] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][16] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_213 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI1, DI0, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, DI1_dly, CLK_dly, DI0_dly; lut40027 \CPLD_Reg_1/state_ns_0[1] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40028 \CPLD_Reg_1/state_ns_0[0] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/state[1] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/state[0] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40027 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFCFE) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40028 ( input A, B, C, D, output Z ); ROM16X1A #(16'hCDCC) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_SLICE_248 ( input M1, M0, CE, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/regtable[9][20] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][21] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_249 ( input M1, M0, CE, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/regtable[9][22] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][23] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_250 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI0, CE, LSR, CLK, output F0, Q0, F1 ); wire VCCI, LSR_NOTIN, DI0_dly, CLK_dly, CE_dly, LSR_dly; lut40029 \BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_0 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40030 \BUS_Con_1/err_flag_RNO ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/err_flag ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40029 ( input A, B, C, D, output Z ); ROM16X1A #(16'h1F0F) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40030 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0045) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module BUS_Con_1_SLICE_251 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI0, CE, LSR, CLK, output F0, Q0, F1 ); wire VCCI, LSR_NOTIN, DI0_dly, CLK_dly, CE_dly, LSR_dly; lut40031 \BUS_Con_1/state_ns_1_0_.m3_i_o2 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40032 \BUS_Con_1/cmd_valid_out_RNO ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/cmd_valid_out ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40031 ( input A, B, C, D, output Z ); ROM16X1A #(16'h4746) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40032 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0032) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_SLICE_252 ( input B1, A1, D0, C0, B0, A0, DI0, CE, CLK, output F0, Q0, F1 ); wire GNDI, VCCI, DI0_dly, CLK_dly, CE_dly; lut40033 \CPLD_Reg_1/state_ns_0_o4[1] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40034 \CPLD_Reg_1/regtable[1]_RNO[0] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][0] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40033 ( input A, B, C, D, output Z ); ROM16X1A #(16'hEEEE) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40034 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0ACA) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_SLICE_253 ( input M0, CE, CLK, output Q0 ); wire VCCI, GNDI, M0_dly, CLK_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/rvalid_flag ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Con_1_SLICE_254 ( input D1, C1, B1, A1, C0, B0, A0, DI0, CE, LSR, CLK, output F0, Q0, F1 ); wire GNDI, VCCI, LSR_NOTIN, DI0_dly, CLK_dly, CE_dly, LSR_dly; lut40035 \CPLD_Con_1/err_flag13_0_0_0_RNI0U1AS7 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40036 \CPLD_Con_1/un1_RC_Tx_0_sqmuxa_1 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \CPLD_Con_1/err_flag ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40035 ( input A, B, C, D, output Z ); ROM16X1A #(16'hECFF) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40036 ( input A, B, C, D, output Z ); ROM16X1A #(16'hEAEA) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_SLICE_278 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI1, DI0, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, DI1_dly, CLK_dly, DI0_dly; lut40037 \CPLD_Con_1/PMU_OC_2d[3] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40038 \CPLD_Con_1/PMU_OC_2d[1] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre \CPLD_Con_1/PMU_OC_2[3] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre \CPLD_Con_1/PMU_OC_2[1] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40037 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0D08) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40038 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0B08) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_SLICE_279 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI1, DI0, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, DI1_dly, CLK_dly, DI0_dly; lut40037 \CPLD_Con_1/PMU_OC_2d[7] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40037 \CPLD_Con_1/PMU_OC_2d[5] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre \CPLD_Con_1/PMU_OC_2[7] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre \CPLD_Con_1/PMU_OC_2[5] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Con_1_SLICE_280 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI1, DI0, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, DI1_dly, CLK_dly, DI0_dly; lut40037 \CPLD_Con_1/PMU_OC_3d[3] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40038 \CPLD_Con_1/PMU_OC_3d[1] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre \CPLD_Con_1/PMU_OC_3[3] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre \CPLD_Con_1/PMU_OC_3[1] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Con_1_SLICE_281 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI1, DI0, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, DI1_dly, CLK_dly, DI0_dly; lut40037 \CPLD_Con_1/PMU_OC_3d[7] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40037 \CPLD_Con_1/PMU_OC_3d[5] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre \CPLD_Con_1/PMU_OC_3[7] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre \CPLD_Con_1/PMU_OC_3[5] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Con_1_SLICE_282 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI1, DI0, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, DI1_dly, CLK_dly, DI0_dly; lut40037 \CPLD_Con_1/PMU_OC_4d[4] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40037 \CPLD_Con_1/PMU_OC_4d[1] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre \CPLD_Con_1/PMU_OC_4[4] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre \CPLD_Con_1/PMU_OC_4[1] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Con_1_SLICE_283 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI1, DI0, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, DI1_dly, CLK_dly, DI0_dly; lut40037 \CPLD_Con_1/PMU_OC_4d[20] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40037 \CPLD_Con_1/PMU_OC_4d[5] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre \CPLD_Con_1/PMU_OC_4[20] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre \CPLD_Con_1/PMU_OC_4[5] ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(VCCI), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Con_1_SLICE_284 ( input D1, C1, B1, A1, D0, C0, B0, A0, DI0, CE, LSR, CLK, output F0, Q0, F1 ); wire VCCI, LSR_NOTIN, DI0_dly, CLK_dly, CE_dly, LSR_dly; lut40039 \CPLD_Con_1/RC_VISel_6.m9_0_1_tz ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40040 \CPLD_Con_1/RC_VISel_6.m9_0 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \CPLD_Con_1/RC_VISel ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40039 ( input A, B, C, D, output Z ); ROM16X1A #(16'h6420) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40040 ( input A, B, C, D, output Z ); ROM16X1A #(16'hAAAE) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_SLICE_286 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_286/CPLD_Reg_1/rdata_reg_2_8[0]/GATE_H1 , \CPLD_Reg_1/SLICE_286/CPLD_Reg_1/SLICE_286_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[0]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_286/CPLD_Reg_1/rdata_reg_2_8[0]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/SLICE_286_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_286/CPLD_Reg_1/SLICE_286_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[0] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_286_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_286/CPLD_Reg_1/SLICE_286_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_286/CPLD_Reg_1/rdata_reg_2_8[0]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_286_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40041 ( input A, B, C, D, output Z ); ROM16X1A #(16'hACAC) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module selmux2 ( input D0, D1, SD, output Z ); MUX21 INST1( .D0(D0), .D1(D1), .SD(SD), .Z(Z)); endmodule module CPLD_Reg_1_SLICE_287 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_287/CPLD_Reg_1/rdata_reg_2_8[1]/GATE_H1 , \CPLD_Reg_1/SLICE_287/CPLD_Reg_1/SLICE_287_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[1]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_287/CPLD_Reg_1/rdata_reg_2_8[1]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/SLICE_287_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_287/CPLD_Reg_1/SLICE_287_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[1] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_287_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_287/CPLD_Reg_1/SLICE_287_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_287/CPLD_Reg_1/rdata_reg_2_8[1]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_287_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_288 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_288/CPLD_Reg_1/rdata_reg_2_8[2]/GATE_H1 , \CPLD_Reg_1/SLICE_288/CPLD_Reg_1/SLICE_288_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[2]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_288/CPLD_Reg_1/rdata_reg_2_8[2]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/SLICE_288_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_288/CPLD_Reg_1/SLICE_288_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[2] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_288_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_288/CPLD_Reg_1/SLICE_288_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_288/CPLD_Reg_1/rdata_reg_2_8[2]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_288_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_289 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_289/CPLD_Reg_1/rdata_reg_2_8[3]/GATE_H1 , \CPLD_Reg_1/SLICE_289/CPLD_Reg_1/SLICE_289_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[3]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_289/CPLD_Reg_1/rdata_reg_2_8[3]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/SLICE_289_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_289/CPLD_Reg_1/SLICE_289_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[3] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_289_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_289/CPLD_Reg_1/SLICE_289_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_289/CPLD_Reg_1/rdata_reg_2_8[3]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_289_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_290 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_290/CPLD_Reg_1/rdata_reg_2_8[4]/GATE_H1 , \CPLD_Reg_1/SLICE_290/CPLD_Reg_1/SLICE_290_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[4]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_290/CPLD_Reg_1/rdata_reg_2_8[4]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/SLICE_290_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_290/CPLD_Reg_1/SLICE_290_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[4] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_290_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_290/CPLD_Reg_1/SLICE_290_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_290/CPLD_Reg_1/rdata_reg_2_8[4]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_290_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_291 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_291/CPLD_Reg_1/rdata_reg_2_8[5]/GATE_H1 , \CPLD_Reg_1/SLICE_291/CPLD_Reg_1/SLICE_291_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[5]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_291/CPLD_Reg_1/rdata_reg_2_8[5]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/SLICE_291_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_291/CPLD_Reg_1/SLICE_291_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[5] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_291_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_291/CPLD_Reg_1/SLICE_291_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_291/CPLD_Reg_1/rdata_reg_2_8[5]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_291_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_292 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_292/CPLD_Reg_1/rdata_reg_2_8[6]/GATE_H1 , \CPLD_Reg_1/SLICE_292/CPLD_Reg_1/SLICE_292_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[6]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_292/CPLD_Reg_1/rdata_reg_2_8[6]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/SLICE_292_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_292/CPLD_Reg_1/SLICE_292_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[6] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_292_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_292/CPLD_Reg_1/SLICE_292_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_292/CPLD_Reg_1/rdata_reg_2_8[6]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_292_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_293 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_293/CPLD_Reg_1/rdata_reg_2_8[7]/GATE_H1 , \CPLD_Reg_1/SLICE_293/CPLD_Reg_1/SLICE_293_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[7]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_293/CPLD_Reg_1/rdata_reg_2_8[7]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/SLICE_293_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_293/CPLD_Reg_1/SLICE_293_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[7] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_293_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_293/CPLD_Reg_1/SLICE_293_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_293/CPLD_Reg_1/rdata_reg_2_8[7]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_293_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_294 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_294/CPLD_Reg_1/rdata_reg_2_8[8]/GATE_H1 , \CPLD_Reg_1/SLICE_294/CPLD_Reg_1/SLICE_294_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[8]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_294/CPLD_Reg_1/rdata_reg_2_8[8]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/SLICE_294_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_294/CPLD_Reg_1/SLICE_294_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[8] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_294_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_294/CPLD_Reg_1/SLICE_294_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_294/CPLD_Reg_1/rdata_reg_2_8[8]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_294_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_295 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_295/CPLD_Reg_1/rdata_reg_2_8[9]/GATE_H1 , \CPLD_Reg_1/SLICE_295/CPLD_Reg_1/SLICE_295_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[9]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_295/CPLD_Reg_1/rdata_reg_2_8[9]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/SLICE_295_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_295/CPLD_Reg_1/SLICE_295_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[9] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_295_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_295/CPLD_Reg_1/SLICE_295_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_295/CPLD_Reg_1/rdata_reg_2_8[9]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_295_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_296 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_296/CPLD_Reg_1/rdata_reg_2_8_i_m2[10]/GATE_H1 , \CPLD_Reg_1/SLICE_296/CPLD_Reg_1/SLICE_296_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40042 \CPLD_Reg_1/rdata_reg_2_8_i_m2[10]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_296/CPLD_Reg_1/rdata_reg_2_8_i_m2[10]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_296_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_296/CPLD_Reg_1/SLICE_296_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[10] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_296_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_296/CPLD_Reg_1/SLICE_296_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_296/CPLD_Reg_1/rdata_reg_2_8_i_m2[10]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_296_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40042 ( input A, B, C, D, output Z ); ROM16X1A #(16'hCACA) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_SLICE_297 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_297/CPLD_Reg_1/rdata_reg_2_8_i_m2[11]/GATE_H1 , \CPLD_Reg_1/SLICE_297/CPLD_Reg_1/SLICE_297_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40042 \CPLD_Reg_1/rdata_reg_2_8_i_m2[11]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_297/CPLD_Reg_1/rdata_reg_2_8_i_m2[11]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_297_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_297/CPLD_Reg_1/SLICE_297_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[11] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_297_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_297/CPLD_Reg_1/SLICE_297_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_297/CPLD_Reg_1/rdata_reg_2_8_i_m2[11]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_297_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_298 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_298/CPLD_Reg_1/rdata_reg_2_8_i_m2[12]/GATE_H1 , \CPLD_Reg_1/SLICE_298/CPLD_Reg_1/SLICE_298_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40042 \CPLD_Reg_1/rdata_reg_2_8_i_m2[12]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_298/CPLD_Reg_1/rdata_reg_2_8_i_m2[12]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_298_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_298/CPLD_Reg_1/SLICE_298_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[12] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_298_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_298/CPLD_Reg_1/SLICE_298_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_298/CPLD_Reg_1/rdata_reg_2_8_i_m2[12]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_298_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_299 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_299/CPLD_Reg_1/rdata_reg_2_8_i_m2[13]/GATE_H1 , \CPLD_Reg_1/SLICE_299/CPLD_Reg_1/SLICE_299_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40042 \CPLD_Reg_1/rdata_reg_2_8_i_m2[13]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_299/CPLD_Reg_1/rdata_reg_2_8_i_m2[13]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_299_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_299/CPLD_Reg_1/SLICE_299_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[13] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_299_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_299/CPLD_Reg_1/SLICE_299_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_299/CPLD_Reg_1/rdata_reg_2_8_i_m2[13]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_299_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_300 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_300/CPLD_Reg_1/rdata_reg_2_8_i_m2[14]/GATE_H1 , \CPLD_Reg_1/SLICE_300/CPLD_Reg_1/SLICE_300_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40042 \CPLD_Reg_1/rdata_reg_2_8_i_m2[14]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_300/CPLD_Reg_1/rdata_reg_2_8_i_m2[14]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_300_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_300/CPLD_Reg_1/SLICE_300_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[14] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_300_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_300/CPLD_Reg_1/SLICE_300_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_300/CPLD_Reg_1/rdata_reg_2_8_i_m2[14]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_300_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_301 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_301/CPLD_Reg_1/rdata_reg_2_8_i_m2[15]/GATE_H1 , \CPLD_Reg_1/SLICE_301/CPLD_Reg_1/SLICE_301_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40042 \CPLD_Reg_1/rdata_reg_2_8_i_m2[15]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_301/CPLD_Reg_1/rdata_reg_2_8_i_m2[15]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_301_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_301/CPLD_Reg_1/SLICE_301_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[15] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_301_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_301/CPLD_Reg_1/SLICE_301_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_301/CPLD_Reg_1/rdata_reg_2_8_i_m2[15]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_301_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_302 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_302/CPLD_Reg_1/rdata_reg_2_8_i_m2[16]/GATE_H1 , \CPLD_Reg_1/SLICE_302/CPLD_Reg_1/SLICE_302_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40042 \CPLD_Reg_1/rdata_reg_2_8_i_m2[16]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_302/CPLD_Reg_1/rdata_reg_2_8_i_m2[16]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_302_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_302/CPLD_Reg_1/SLICE_302_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[16] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_302_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_302/CPLD_Reg_1/SLICE_302_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_302/CPLD_Reg_1/rdata_reg_2_8_i_m2[16]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_302_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_303 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_303/CPLD_Reg_1/rdata_reg_2_8[17]/GATE_H1 , \CPLD_Reg_1/SLICE_303/CPLD_Reg_1/SLICE_303_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[17]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_303/CPLD_Reg_1/rdata_reg_2_8[17]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_303_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_303/CPLD_Reg_1/SLICE_303_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[17] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_303_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_303/CPLD_Reg_1/SLICE_303_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_303/CPLD_Reg_1/rdata_reg_2_8[17]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_303_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_304 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_304/CPLD_Reg_1/rdata_reg_2_8[18]/GATE_H1 , \CPLD_Reg_1/SLICE_304/CPLD_Reg_1/SLICE_304_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[18]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_304/CPLD_Reg_1/rdata_reg_2_8[18]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_304_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_304/CPLD_Reg_1/SLICE_304_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[18] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_304_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_304/CPLD_Reg_1/SLICE_304_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_304/CPLD_Reg_1/rdata_reg_2_8[18]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_304_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_305 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_305/CPLD_Reg_1/rdata_reg_2_8[19]/GATE_H1 , \CPLD_Reg_1/SLICE_305/CPLD_Reg_1/SLICE_305_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[19]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_305/CPLD_Reg_1/rdata_reg_2_8[19]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_305_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_305/CPLD_Reg_1/SLICE_305_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[19] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_305_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_305/CPLD_Reg_1/SLICE_305_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_305/CPLD_Reg_1/rdata_reg_2_8[19]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_305_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_306 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_306/CPLD_Reg_1/rdata_reg_2_8[20]/GATE_H1 , \CPLD_Reg_1/SLICE_306/CPLD_Reg_1/SLICE_306_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[20]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_306/CPLD_Reg_1/rdata_reg_2_8[20]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_306_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_306/CPLD_Reg_1/SLICE_306_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[20] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_306_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_306/CPLD_Reg_1/SLICE_306_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_306/CPLD_Reg_1/rdata_reg_2_8[20]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_306_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_307 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_307/CPLD_Reg_1/rdata_reg_2_8[21]/GATE_H1 , \CPLD_Reg_1/SLICE_307/CPLD_Reg_1/SLICE_307_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[21]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_307/CPLD_Reg_1/rdata_reg_2_8[21]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_307_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_307/CPLD_Reg_1/SLICE_307_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[21] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_307_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_307/CPLD_Reg_1/SLICE_307_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_307/CPLD_Reg_1/rdata_reg_2_8[21]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_307_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_308 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_308/CPLD_Reg_1/rdata_reg_2_8[22]/GATE_H1 , \CPLD_Reg_1/SLICE_308/CPLD_Reg_1/SLICE_308_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[22]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_308/CPLD_Reg_1/rdata_reg_2_8[22]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_308_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_308/CPLD_Reg_1/SLICE_308_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[22] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_308_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_308/CPLD_Reg_1/SLICE_308_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_308/CPLD_Reg_1/rdata_reg_2_8[22]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_308_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_309 ( input C1, B1, A1, C0, B0, A0, DI1, M1, M0, FXB, FXA, CE, CLK, output OFX0, Q1, OFX1 ); wire GNDI, \CPLD_Reg_1/SLICE_309/CPLD_Reg_1/rdata_reg_2_8[23]/GATE_H1 , \CPLD_Reg_1/SLICE_309/CPLD_Reg_1/SLICE_309_K0_H0 , VCCI, DI1_dly, CLK_dly, CE_dly; lut40041 \CPLD_Reg_1/rdata_reg_2_8[23]/GATE ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_309/CPLD_Reg_1/rdata_reg_2_8[23]/GATE_H1 )); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/SLICE_309_K0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/SLICE_309/CPLD_Reg_1/SLICE_309_K0_H0 )); vmuxregsre \CPLD_Reg_1/rdata_reg[23] ( .D0(VCCI), .D1(DI1_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); selmux2 \CPLD_Reg_1/SLICE_309_K0K1MUX ( .D0(\CPLD_Reg_1/SLICE_309/CPLD_Reg_1/SLICE_309_K0_H0 ), .D1(\CPLD_Reg_1/SLICE_309/CPLD_Reg_1/rdata_reg_2_8[23]/GATE_H1 ), .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/SLICE_309_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI1, 0:0:0, 0:0:0,,,, CLK_dly, DI1_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_311 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/addr_out[1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/addr_out[2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_312 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/addr_out[3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/addr_out[4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_313 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/addr_out[5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/addr_out[6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_319 ( input B1, A1, D0, C0, B0, A0, DI0, CE, CLK, output F0, Q0, F1 ); wire GNDI, VCCI, DI0_dly, CLK_dly, CE_dly; lut40043 \CPLD_Reg_1/busy_flag_1_i_a3_0_0_0 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40044 \CPLD_Reg_1/busy_flag_RNO ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/busy_flag ( .D0(VCCI), .D1(DI0_dly), .SD(VCCI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI0, 0:0:0, 0:0:0,,,, CLK_dly, DI0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40043 ( input A, B, C, D, output Z ); ROM16X1A #(16'h1111) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40044 ( input A, B, C, D, output Z ); ROM16X1A #(16'h3DFD) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module BUS_Con_1_SLICE_320 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/addr_out_fast[3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/data_out[0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_321 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/data_out[1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/data_out[2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_322 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/data_out[3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/data_out[4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_323 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/data_out[5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/data_out[6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_324 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/data_out[7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/data_out[8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_326 ( input B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40043 \BUS_Con_1/state_s0_0_a2_0_a4 ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/data_out[13] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/data_out[12] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_327 ( input C1, B1, A1, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40045 \CPLD_Reg_1/regtable[0]_1_sqmuxa_8_0_a2 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40046 \CPLD_Con_1/RC_VISel_RNIN1MR2 ( .A(A0), .B(GNDI), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/data_out[15] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/data_out[14] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40045 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0101) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40046 ( input A, B, C, D, output Z ); ROM16X1A #(16'h5555) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_328 ( input B1, A1, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40043 \CPLD_Con_1/g0_21_N_3L3 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40045 \CPLD_Con_1/g0_19_1 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/data_out[17] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/data_out[16] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_329 ( input B1, A1, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40043 \CPLD_Con_1/g0_3_1_N_2L1 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40043 \CPLD_Con_1/OC_x0112lto2_0 ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/data_out[19] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/data_out[18] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_330 ( input B1, A1, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40043 \CPLD_Con_1/OC_x0112lto8_0 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40033 \CPLD_Con_1/err_flag19_0_0_0_RNO ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/data_out[21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/data_out[20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_331 ( input B1, A1, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut4 \CPLD_Con_1/un1_i_DC_Con1_iv_0_a5_2[2] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40012 \CPLD_Con_1/err_flag39 ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/data_out[23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/data_out[22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_332 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40045 \CPLD_Con_1/OC_x0126lto2 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40047 \CPLD_Con_1/PMU_OC_2_8_0_a4[21] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/addr_out[0] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/wr_out ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40047 ( input A, B, C, D, output Z ); ROM16X1A #(16'h4000) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_RC_VISel_6_m9_0_0_SLICE_333 ( input C1, B1, A1, D0, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Con_1/RC_VISel_6.m9_0_0/SLICE_333/CPLD_Con_1/RC_VISel_6.m9_0_0/SLICE_333_K1_H1 , \CPLD_Con_1/RC_VISel_6.m9_0_0/SLICE_333/CPLD_Con_1/RC_VISel_6.m9_0_0/GATE_H0 ; lut40048 \CPLD_Con_1/RC_VISel_6.m9_0_0/SLICE_333_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Con_1/RC_VISel_6.m9_0_0/SLICE_333/CPLD_Con_1/RC_VISel_6.m9_0_0/SLICE_333_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40049 \CPLD_Con_1/RC_VISel_6.m9_0_0/GATE ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(\CPLD_Con_1/RC_VISel_6.m9_0_0/SLICE_333/CPLD_Con_1/RC_VISel_6.m9_0_0/GATE_H0 ) ); selmux2 \CPLD_Con_1/RC_VISel_6.m9_0_0/SLICE_333_K0K1MUX ( .D0(\CPLD_Con_1/RC_VISel_6.m9_0_0/SLICE_333/CPLD_Con_1/RC_VISel_6.m9_0_0/GATE_H0 ) , .D1(\CPLD_Con_1/RC_VISel_6.m9_0_0/SLICE_333/CPLD_Con_1/RC_VISel_6.m9_0_0/SLICE_333_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (D0 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module lut40048 ( input A, B, C, D, output Z ); ROM16X1A #(16'h4040) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40049 ( input A, B, C, D, output Z ); ROM16X1A #(16'h1000) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_DMM_en_22_2__SLICE_334 ( input D1, C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire \CPLD_Con_1/DMM_en_22[2]/SLICE_334/CPLD_Con_1/DMM_en_22[2]/SLICE_334_K1_H1 , GNDI, \CPLD_Con_1/DMM_en_22[2]/SLICE_334/CPLD_Con_1/DMM_en_22[2]/GATE_H0 ; lut40050 \CPLD_Con_1/DMM_en_22[2]/SLICE_334_K1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(\CPLD_Con_1/DMM_en_22[2]/SLICE_334/CPLD_Con_1/DMM_en_22[2]/SLICE_334_K1_H1 ) ); lut40051 \CPLD_Con_1/DMM_en_22[2]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Con_1/DMM_en_22[2]/SLICE_334/CPLD_Con_1/DMM_en_22[2]/GATE_H0 )); gnd DRIVEGND( .PWR0(GNDI)); selmux2 \CPLD_Con_1/DMM_en_22[2]/SLICE_334_K0K1MUX ( .D0(\CPLD_Con_1/DMM_en_22[2]/SLICE_334/CPLD_Con_1/DMM_en_22[2]/GATE_H0 ), .D1(\CPLD_Con_1/DMM_en_22[2]/SLICE_334/CPLD_Con_1/DMM_en_22[2]/SLICE_334_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (D1 => OFX0) = (0:0:0,0:0:0); (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module lut40050 ( input A, B, C, D, output Z ); ROM16X1A #(16'h20A0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40051 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0808) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_DMM_en_22_11__SLICE_335 ( input D1, C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire \CPLD_Con_1/DMM_en_22[11]/SLICE_335/CPLD_Con_1/DMM_en_22[11]/SLICE_335_K1_H1 , GNDI, \CPLD_Con_1/DMM_en_22[11]/SLICE_335/CPLD_Con_1/DMM_en_22[11]/GATE_H0 ; lut40052 \CPLD_Con_1/DMM_en_22[11]/SLICE_335_K1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(\CPLD_Con_1/DMM_en_22[11]/SLICE_335/CPLD_Con_1/DMM_en_22[11]/SLICE_335_K1_H1 ) ); lut40053 \CPLD_Con_1/DMM_en_22[11]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Con_1/DMM_en_22[11]/SLICE_335/CPLD_Con_1/DMM_en_22[11]/GATE_H0 )); gnd DRIVEGND( .PWR0(GNDI)); selmux2 \CPLD_Con_1/DMM_en_22[11]/SLICE_335_K0K1MUX ( .D0(\CPLD_Con_1/DMM_en_22[11]/SLICE_335/CPLD_Con_1/DMM_en_22[11]/GATE_H0 ), .D1(\CPLD_Con_1/DMM_en_22[11]/SLICE_335/CPLD_Con_1/DMM_en_22[11]/SLICE_335_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (D1 => OFX0) = (0:0:0,0:0:0); (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module lut40052 ( input A, B, C, D, output Z ); ROM16X1A #(16'hAA80) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40053 ( input A, B, C, D, output Z ); ROM16X1A #(16'h8080) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_DMM_en_22_1__SLICE_336 ( input D1, C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire \CPLD_Con_1/DMM_en_22[1]/SLICE_336/CPLD_Con_1/DMM_en_22[1]/SLICE_336_K1_H1 , GNDI, \CPLD_Con_1/DMM_en_22[1]/SLICE_336/CPLD_Con_1/DMM_en_22[1]/GATE_H0 ; lut40054 \CPLD_Con_1/DMM_en_22[1]/SLICE_336_K1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(\CPLD_Con_1/DMM_en_22[1]/SLICE_336/CPLD_Con_1/DMM_en_22[1]/SLICE_336_K1_H1 ) ); lut40051 \CPLD_Con_1/DMM_en_22[1]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Con_1/DMM_en_22[1]/SLICE_336/CPLD_Con_1/DMM_en_22[1]/GATE_H0 )); gnd DRIVEGND( .PWR0(GNDI)); selmux2 \CPLD_Con_1/DMM_en_22[1]/SLICE_336_K0K1MUX ( .D0(\CPLD_Con_1/DMM_en_22[1]/SLICE_336/CPLD_Con_1/DMM_en_22[1]/GATE_H0 ), .D1(\CPLD_Con_1/DMM_en_22[1]/SLICE_336/CPLD_Con_1/DMM_en_22[1]/SLICE_336_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (D1 => OFX0) = (0:0:0,0:0:0); (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module lut40054 ( input A, B, C, D, output Z ); ROM16X1A #(16'h2000) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_DMM_en_22_9__SLICE_337 ( input D1, C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire \CPLD_Con_1/DMM_en_22[9]/SLICE_337/CPLD_Con_1/DMM_en_22[9]/SLICE_337_K1_H1 , GNDI, \CPLD_Con_1/DMM_en_22[9]/SLICE_337/CPLD_Con_1/DMM_en_22[9]/GATE_H0 ; lut40055 \CPLD_Con_1/DMM_en_22[9]/SLICE_337_K1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(\CPLD_Con_1/DMM_en_22[9]/SLICE_337/CPLD_Con_1/DMM_en_22[9]/SLICE_337_K1_H1 ) ); lut40053 \CPLD_Con_1/DMM_en_22[9]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Con_1/DMM_en_22[9]/SLICE_337/CPLD_Con_1/DMM_en_22[9]/GATE_H0 )); gnd DRIVEGND( .PWR0(GNDI)); selmux2 \CPLD_Con_1/DMM_en_22[9]/SLICE_337_K0K1MUX ( .D0(\CPLD_Con_1/DMM_en_22[9]/SLICE_337/CPLD_Con_1/DMM_en_22[9]/GATE_H0 ), .D1(\CPLD_Con_1/DMM_en_22[9]/SLICE_337/CPLD_Con_1/DMM_en_22[9]/SLICE_337_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (D1 => OFX0) = (0:0:0,0:0:0); (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module lut40055 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0080) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_DMM_en_22_0__SLICE_338 ( input B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Con_1/DMM_en_22[0]/SLICE_338/CPLD_Con_1/DMM_en_22[0]/SLICE_338_K1_H1 , \CPLD_Con_1/DMM_en_22[0]/SLICE_338/CPLD_Con_1/DMM_en_22[0]/GATE_H0 ; lut40056 \CPLD_Con_1/DMM_en_22[0]/SLICE_338_K1 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(\CPLD_Con_1/DMM_en_22[0]/SLICE_338/CPLD_Con_1/DMM_en_22[0]/SLICE_338_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40051 \CPLD_Con_1/DMM_en_22[0]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Con_1/DMM_en_22[0]/SLICE_338/CPLD_Con_1/DMM_en_22[0]/GATE_H0 )); selmux2 \CPLD_Con_1/DMM_en_22[0]/SLICE_338_K0K1MUX ( .D0(\CPLD_Con_1/DMM_en_22[0]/SLICE_338/CPLD_Con_1/DMM_en_22[0]/GATE_H0 ), .D1(\CPLD_Con_1/DMM_en_22[0]/SLICE_338/CPLD_Con_1/DMM_en_22[0]/SLICE_338_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module lut40056 ( input A, B, C, D, output Z ); ROM16X1A #(16'h8888) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_DMM_en_22_8__SLICE_339 ( input D1, C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire \CPLD_Con_1/DMM_en_22[8]/SLICE_339/CPLD_Con_1/DMM_en_22[8]/SLICE_339_K1_H1 , GNDI, \CPLD_Con_1/DMM_en_22[8]/SLICE_339/CPLD_Con_1/DMM_en_22[8]/GATE_H0 ; lut40057 \CPLD_Con_1/DMM_en_22[8]/SLICE_339_K1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(\CPLD_Con_1/DMM_en_22[8]/SLICE_339/CPLD_Con_1/DMM_en_22[8]/SLICE_339_K1_H1 ) ); lut40053 \CPLD_Con_1/DMM_en_22[8]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Con_1/DMM_en_22[8]/SLICE_339/CPLD_Con_1/DMM_en_22[8]/GATE_H0 )); gnd DRIVEGND( .PWR0(GNDI)); selmux2 \CPLD_Con_1/DMM_en_22[8]/SLICE_339_K0K1MUX ( .D0(\CPLD_Con_1/DMM_en_22[8]/SLICE_339/CPLD_Con_1/DMM_en_22[8]/GATE_H0 ), .D1(\CPLD_Con_1/DMM_en_22[8]/SLICE_339/CPLD_Con_1/DMM_en_22[8]/SLICE_339_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (D1 => OFX0) = (0:0:0,0:0:0); (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module lut40057 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0008) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_rdata_reg_2_10_0__SLICE_340 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340/CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340/CPLD_Reg_1/rdata_reg_2_10[0]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340/CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_10[0]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340/CPLD_Reg_1/rdata_reg_2_10[0]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340/CPLD_Reg_1/rdata_reg_2_10[0]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340/CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[0]/SLICE_340_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_23__SLICE_341 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341/CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341/CPLD_Reg_1/rdata_reg_2_11[23]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341/CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[23]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341/CPLD_Reg_1/rdata_reg_2_11[23]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341/CPLD_Reg_1/rdata_reg_2_11[23]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341/CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[23]/SLICE_341_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module lut40058 ( input A, B, C, D, output Z ); ROM16X1A #(16'hD8D8) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_rdata_reg_2_11_0__SLICE_342 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342/CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342/CPLD_Reg_1/rdata_reg_2_11[0]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342/CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[0]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342/CPLD_Reg_1/rdata_reg_2_11[0]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342/CPLD_Reg_1/rdata_reg_2_11[0]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342/CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[0]/SLICE_342_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_9__SLICE_343 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343/CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343/CPLD_Reg_1/rdata_reg_2_11[9]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343/CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[9]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343/CPLD_Reg_1/rdata_reg_2_11[9]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343/CPLD_Reg_1/rdata_reg_2_11[9]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343/CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[9]/SLICE_343_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_16__SLICE_344 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344/CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344/CPLD_Reg_1/rdata_reg_2_11[16]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344/CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_11[16]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344/CPLD_Reg_1/rdata_reg_2_11[16]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344/CPLD_Reg_1/rdata_reg_2_11[16]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344/CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[16]/SLICE_344_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module lut40059 ( input A, B, C, D, output Z ); ROM16X1A #(16'hE4E4) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_rdata_reg_2_11_15__SLICE_345 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345/CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345/CPLD_Reg_1/rdata_reg_2_11[15]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345/CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_11[15]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345/CPLD_Reg_1/rdata_reg_2_11[15]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345/CPLD_Reg_1/rdata_reg_2_11[15]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345/CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[15]/SLICE_345_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_14__SLICE_346 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346/CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346/CPLD_Reg_1/rdata_reg_2_11[14]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346/CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_11[14]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346/CPLD_Reg_1/rdata_reg_2_11[14]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346/CPLD_Reg_1/rdata_reg_2_11[14]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346/CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[14]/SLICE_346_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_13__SLICE_347 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347/CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347/CPLD_Reg_1/rdata_reg_2_11[13]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347/CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_11[13]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347/CPLD_Reg_1/rdata_reg_2_11[13]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347/CPLD_Reg_1/rdata_reg_2_11[13]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347/CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[13]/SLICE_347_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_12__SLICE_348 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348/CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348/CPLD_Reg_1/rdata_reg_2_11[12]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348/CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_11[12]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348/CPLD_Reg_1/rdata_reg_2_11[12]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348/CPLD_Reg_1/rdata_reg_2_11[12]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348/CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[12]/SLICE_348_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_11__SLICE_349 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349/CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349/CPLD_Reg_1/rdata_reg_2_11[11]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349/CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_11[11]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349/CPLD_Reg_1/rdata_reg_2_11[11]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349/CPLD_Reg_1/rdata_reg_2_11[11]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349/CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[11]/SLICE_349_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_10__SLICE_350 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350/CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350/CPLD_Reg_1/rdata_reg_2_11[10]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350/CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_11[10]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350/CPLD_Reg_1/rdata_reg_2_11[10]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350/CPLD_Reg_1/rdata_reg_2_11[10]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350/CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[10]/SLICE_350_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_18__SLICE_351 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351/CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351/CPLD_Reg_1/rdata_reg_2_11[18]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351/CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[18]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351/CPLD_Reg_1/rdata_reg_2_11[18]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351/CPLD_Reg_1/rdata_reg_2_11[18]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351/CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[18]/SLICE_351_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_1__SLICE_352 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352/CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352/CPLD_Reg_1/rdata_reg_2_11[1]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352/CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[1]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352/CPLD_Reg_1/rdata_reg_2_11[1]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352/CPLD_Reg_1/rdata_reg_2_11[1]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352/CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[1]/SLICE_352_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_2__SLICE_353 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353/CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353/CPLD_Reg_1/rdata_reg_2_11[2]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353/CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[2]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353/CPLD_Reg_1/rdata_reg_2_11[2]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353/CPLD_Reg_1/rdata_reg_2_11[2]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353/CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[2]/SLICE_353_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_3__SLICE_354 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354/CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354/CPLD_Reg_1/rdata_reg_2_11[3]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354/CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[3]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354/CPLD_Reg_1/rdata_reg_2_11[3]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354/CPLD_Reg_1/rdata_reg_2_11[3]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354/CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[3]/SLICE_354_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_4__SLICE_355 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355/CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355/CPLD_Reg_1/rdata_reg_2_11[4]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355/CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[4]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355/CPLD_Reg_1/rdata_reg_2_11[4]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355/CPLD_Reg_1/rdata_reg_2_11[4]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355/CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[4]/SLICE_355_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_5__SLICE_356 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356/CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356/CPLD_Reg_1/rdata_reg_2_11[5]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356/CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[5]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356/CPLD_Reg_1/rdata_reg_2_11[5]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356/CPLD_Reg_1/rdata_reg_2_11[5]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356/CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[5]/SLICE_356_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_6__SLICE_357 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357/CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357/CPLD_Reg_1/rdata_reg_2_11[6]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357/CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[6]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357/CPLD_Reg_1/rdata_reg_2_11[6]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357/CPLD_Reg_1/rdata_reg_2_11[6]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357/CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[6]/SLICE_357_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_7__SLICE_358 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358/CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358/CPLD_Reg_1/rdata_reg_2_11[7]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358/CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[7]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358/CPLD_Reg_1/rdata_reg_2_11[7]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358/CPLD_Reg_1/rdata_reg_2_11[7]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358/CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[7]/SLICE_358_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_8__SLICE_359 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359/CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359/CPLD_Reg_1/rdata_reg_2_11[8]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359/CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[8]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359/CPLD_Reg_1/rdata_reg_2_11[8]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359/CPLD_Reg_1/rdata_reg_2_11[8]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359/CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[8]/SLICE_359_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_17__SLICE_360 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360/CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360/CPLD_Reg_1/rdata_reg_2_11[17]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360/CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[17]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360/CPLD_Reg_1/rdata_reg_2_11[17]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360/CPLD_Reg_1/rdata_reg_2_11[17]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360/CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[17]/SLICE_360_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_19__SLICE_361 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361/CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361/CPLD_Reg_1/rdata_reg_2_11[19]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361/CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[19]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361/CPLD_Reg_1/rdata_reg_2_11[19]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361/CPLD_Reg_1/rdata_reg_2_11[19]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361/CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[19]/SLICE_361_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_20__SLICE_362 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362/CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362/CPLD_Reg_1/rdata_reg_2_11[20]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362/CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[20]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362/CPLD_Reg_1/rdata_reg_2_11[20]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362/CPLD_Reg_1/rdata_reg_2_11[20]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362/CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[20]/SLICE_362_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_21__SLICE_363 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363/CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363/CPLD_Reg_1/rdata_reg_2_11[21]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363/CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[21]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363/CPLD_Reg_1/rdata_reg_2_11[21]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363/CPLD_Reg_1/rdata_reg_2_11[21]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363/CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[21]/SLICE_363_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_11_22__SLICE_364 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364/CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364_K1_H1 , \CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364/CPLD_Reg_1/rdata_reg_2_11[22]/GATE_H0 ; lut40058 \CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364/CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_11[22]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364/CPLD_Reg_1/rdata_reg_2_11[22]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364/CPLD_Reg_1/rdata_reg_2_11[22]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364/CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_11[22]/SLICE_364_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_23__SLICE_365 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365/CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365/CPLD_Reg_1/rdata_reg_2_10[23]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365/CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10[23]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365/CPLD_Reg_1/rdata_reg_2_10[23]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365/CPLD_Reg_1/rdata_reg_2_10[23]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365/CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[23]/SLICE_365_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_23__SLICE_366 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[23]/SLICE_366/CPLD_Reg_1/rdata_reg_2_9[23]/SLICE_366_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[23]/SLICE_366/CPLD_Reg_1/rdata_reg_2_9[23]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[23]/SLICE_366_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[23]/SLICE_366/CPLD_Reg_1/rdata_reg_2_9[23]/SLICE_366_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[23]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[23]/SLICE_366/CPLD_Reg_1/rdata_reg_2_9[23]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[23]/SLICE_366_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[23]/SLICE_366/CPLD_Reg_1/rdata_reg_2_9[23]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[23]/SLICE_366/CPLD_Reg_1/rdata_reg_2_9[23]/SLICE_366_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_0__SLICE_367 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[0]/SLICE_367/CPLD_Reg_1/rdata_reg_2_9[0]/SLICE_367_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[0]/SLICE_367/CPLD_Reg_1/rdata_reg_2_9[0]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_9[0]/SLICE_367_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[0]/SLICE_367/CPLD_Reg_1/rdata_reg_2_9[0]/SLICE_367_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[0]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[0]/SLICE_367/CPLD_Reg_1/rdata_reg_2_9[0]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[0]/SLICE_367_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[0]/SLICE_367/CPLD_Reg_1/rdata_reg_2_9[0]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[0]/SLICE_367/CPLD_Reg_1/rdata_reg_2_9[0]/SLICE_367_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_9__SLICE_368 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368/CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368/CPLD_Reg_1/rdata_reg_2_10[9]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368/CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_10[9]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368/CPLD_Reg_1/rdata_reg_2_10[9]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368/CPLD_Reg_1/rdata_reg_2_10[9]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368/CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[9]/SLICE_368_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_9__SLICE_369 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[9]/SLICE_369/CPLD_Reg_1/rdata_reg_2_9[9]/SLICE_369_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[9]/SLICE_369/CPLD_Reg_1/rdata_reg_2_9[9]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_9[9]/SLICE_369_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[9]/SLICE_369/CPLD_Reg_1/rdata_reg_2_9[9]/SLICE_369_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[9]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[9]/SLICE_369/CPLD_Reg_1/rdata_reg_2_9[9]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[9]/SLICE_369_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[9]/SLICE_369/CPLD_Reg_1/rdata_reg_2_9[9]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[9]/SLICE_369/CPLD_Reg_1/rdata_reg_2_9[9]/SLICE_369_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_i_m2_16__SLICE_370 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370/CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370/CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370/CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370/CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370/CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370/CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[16]/SLICE_370_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_i_m2_15__SLICE_371 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371/CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371/CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371/CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371/CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371/CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371/CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[15]/SLICE_371_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_i_m2_14__SLICE_372 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372/CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372/CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372/CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372/CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372/CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372/CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[14]/SLICE_372_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_i_m2_13__SLICE_373 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373/CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373/CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373/CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373/CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373/CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373/CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[13]/SLICE_373_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_i_m2_12__SLICE_374 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374/CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374/CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374/CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374/CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374/CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374/CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[12]/SLICE_374_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_i_m2_11__SLICE_375 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375/CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375/CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375/CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375/CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375/CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375/CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[11]/SLICE_375_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_i_m2_10__SLICE_376 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376/CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376/CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376/CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376/CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376/CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376/CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10_i_m2[10]/SLICE_376_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_16__SLICE_377 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[16]/SLICE_377/CPLD_Reg_1/rdata_reg_2_9[16]/SLICE_377_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[16]/SLICE_377/CPLD_Reg_1/rdata_reg_2_9[16]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[16]/SLICE_377_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[16]/SLICE_377/CPLD_Reg_1/rdata_reg_2_9[16]/SLICE_377_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[16]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[16]/SLICE_377/CPLD_Reg_1/rdata_reg_2_9[16]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[16]/SLICE_377_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[16]/SLICE_377/CPLD_Reg_1/rdata_reg_2_9[16]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[16]/SLICE_377/CPLD_Reg_1/rdata_reg_2_9[16]/SLICE_377_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_15__SLICE_378 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[15]/SLICE_378/CPLD_Reg_1/rdata_reg_2_9[15]/SLICE_378_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[15]/SLICE_378/CPLD_Reg_1/rdata_reg_2_9[15]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[15]/SLICE_378_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[15]/SLICE_378/CPLD_Reg_1/rdata_reg_2_9[15]/SLICE_378_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[15]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[15]/SLICE_378/CPLD_Reg_1/rdata_reg_2_9[15]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[15]/SLICE_378_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[15]/SLICE_378/CPLD_Reg_1/rdata_reg_2_9[15]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[15]/SLICE_378/CPLD_Reg_1/rdata_reg_2_9[15]/SLICE_378_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_14__SLICE_379 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[14]/SLICE_379/CPLD_Reg_1/rdata_reg_2_9[14]/SLICE_379_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[14]/SLICE_379/CPLD_Reg_1/rdata_reg_2_9[14]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[14]/SLICE_379_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[14]/SLICE_379/CPLD_Reg_1/rdata_reg_2_9[14]/SLICE_379_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[14]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[14]/SLICE_379/CPLD_Reg_1/rdata_reg_2_9[14]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[14]/SLICE_379_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[14]/SLICE_379/CPLD_Reg_1/rdata_reg_2_9[14]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[14]/SLICE_379/CPLD_Reg_1/rdata_reg_2_9[14]/SLICE_379_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_13__SLICE_380 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[13]/SLICE_380/CPLD_Reg_1/rdata_reg_2_9[13]/SLICE_380_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[13]/SLICE_380/CPLD_Reg_1/rdata_reg_2_9[13]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[13]/SLICE_380_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[13]/SLICE_380/CPLD_Reg_1/rdata_reg_2_9[13]/SLICE_380_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[13]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[13]/SLICE_380/CPLD_Reg_1/rdata_reg_2_9[13]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[13]/SLICE_380_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[13]/SLICE_380/CPLD_Reg_1/rdata_reg_2_9[13]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[13]/SLICE_380/CPLD_Reg_1/rdata_reg_2_9[13]/SLICE_380_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_12__SLICE_381 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[12]/SLICE_381/CPLD_Reg_1/rdata_reg_2_9[12]/SLICE_381_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[12]/SLICE_381/CPLD_Reg_1/rdata_reg_2_9[12]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[12]/SLICE_381_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[12]/SLICE_381/CPLD_Reg_1/rdata_reg_2_9[12]/SLICE_381_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[12]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[12]/SLICE_381/CPLD_Reg_1/rdata_reg_2_9[12]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[12]/SLICE_381_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[12]/SLICE_381/CPLD_Reg_1/rdata_reg_2_9[12]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[12]/SLICE_381/CPLD_Reg_1/rdata_reg_2_9[12]/SLICE_381_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_11__SLICE_382 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[11]/SLICE_382/CPLD_Reg_1/rdata_reg_2_9[11]/SLICE_382_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[11]/SLICE_382/CPLD_Reg_1/rdata_reg_2_9[11]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[11]/SLICE_382_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[11]/SLICE_382/CPLD_Reg_1/rdata_reg_2_9[11]/SLICE_382_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[11]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[11]/SLICE_382/CPLD_Reg_1/rdata_reg_2_9[11]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[11]/SLICE_382_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[11]/SLICE_382/CPLD_Reg_1/rdata_reg_2_9[11]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[11]/SLICE_382/CPLD_Reg_1/rdata_reg_2_9[11]/SLICE_382_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_10__SLICE_383 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[10]/SLICE_383/CPLD_Reg_1/rdata_reg_2_9[10]/SLICE_383_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[10]/SLICE_383/CPLD_Reg_1/rdata_reg_2_9[10]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_9[10]/SLICE_383_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[10]/SLICE_383/CPLD_Reg_1/rdata_reg_2_9[10]/SLICE_383_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[10]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[10]/SLICE_383/CPLD_Reg_1/rdata_reg_2_9[10]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[10]/SLICE_383_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[10]/SLICE_383/CPLD_Reg_1/rdata_reg_2_9[10]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[10]/SLICE_383/CPLD_Reg_1/rdata_reg_2_9[10]/SLICE_383_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_18__SLICE_384 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384/CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384/CPLD_Reg_1/rdata_reg_2_10[18]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384/CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10[18]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384/CPLD_Reg_1/rdata_reg_2_10[18]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384/CPLD_Reg_1/rdata_reg_2_10[18]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384/CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[18]/SLICE_384_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_18__SLICE_385 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[18]/SLICE_385/CPLD_Reg_1/rdata_reg_2_9[18]/SLICE_385_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[18]/SLICE_385/CPLD_Reg_1/rdata_reg_2_9[18]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[18]/SLICE_385_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[18]/SLICE_385/CPLD_Reg_1/rdata_reg_2_9[18]/SLICE_385_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[18]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[18]/SLICE_385/CPLD_Reg_1/rdata_reg_2_9[18]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[18]/SLICE_385_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[18]/SLICE_385/CPLD_Reg_1/rdata_reg_2_9[18]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[18]/SLICE_385/CPLD_Reg_1/rdata_reg_2_9[18]/SLICE_385_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_1__SLICE_386 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386/CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386/CPLD_Reg_1/rdata_reg_2_10[1]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386/CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_10[1]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386/CPLD_Reg_1/rdata_reg_2_10[1]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386/CPLD_Reg_1/rdata_reg_2_10[1]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386/CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[1]/SLICE_386_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_1__SLICE_387 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[1]/SLICE_387/CPLD_Reg_1/rdata_reg_2_9[1]/SLICE_387_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[1]/SLICE_387/CPLD_Reg_1/rdata_reg_2_9[1]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_9[1]/SLICE_387_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[1]/SLICE_387/CPLD_Reg_1/rdata_reg_2_9[1]/SLICE_387_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[1]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[1]/SLICE_387/CPLD_Reg_1/rdata_reg_2_9[1]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[1]/SLICE_387_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[1]/SLICE_387/CPLD_Reg_1/rdata_reg_2_9[1]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[1]/SLICE_387/CPLD_Reg_1/rdata_reg_2_9[1]/SLICE_387_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_2__SLICE_388 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[2]/SLICE_388/CPLD_Reg_1/rdata_reg_2_9[2]/SLICE_388_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[2]/SLICE_388/CPLD_Reg_1/rdata_reg_2_9[2]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_9[2]/SLICE_388_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[2]/SLICE_388/CPLD_Reg_1/rdata_reg_2_9[2]/SLICE_388_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[2]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[2]/SLICE_388/CPLD_Reg_1/rdata_reg_2_9[2]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[2]/SLICE_388_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[2]/SLICE_388/CPLD_Reg_1/rdata_reg_2_9[2]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[2]/SLICE_388/CPLD_Reg_1/rdata_reg_2_9[2]/SLICE_388_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_2__SLICE_389 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389/CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389/CPLD_Reg_1/rdata_reg_2_10[2]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389/CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_10[2]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389/CPLD_Reg_1/rdata_reg_2_10[2]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389/CPLD_Reg_1/rdata_reg_2_10[2]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389/CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[2]/SLICE_389_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_3__SLICE_390 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[3]/SLICE_390/CPLD_Reg_1/rdata_reg_2_9[3]/SLICE_390_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[3]/SLICE_390/CPLD_Reg_1/rdata_reg_2_9[3]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_9[3]/SLICE_390_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[3]/SLICE_390/CPLD_Reg_1/rdata_reg_2_9[3]/SLICE_390_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[3]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[3]/SLICE_390/CPLD_Reg_1/rdata_reg_2_9[3]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[3]/SLICE_390_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[3]/SLICE_390/CPLD_Reg_1/rdata_reg_2_9[3]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[3]/SLICE_390/CPLD_Reg_1/rdata_reg_2_9[3]/SLICE_390_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_3__SLICE_391 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391/CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391/CPLD_Reg_1/rdata_reg_2_10[3]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391/CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_10[3]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391/CPLD_Reg_1/rdata_reg_2_10[3]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391/CPLD_Reg_1/rdata_reg_2_10[3]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391/CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[3]/SLICE_391_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_4__SLICE_392 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[4]/SLICE_392/CPLD_Reg_1/rdata_reg_2_9[4]/SLICE_392_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[4]/SLICE_392/CPLD_Reg_1/rdata_reg_2_9[4]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_9[4]/SLICE_392_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[4]/SLICE_392/CPLD_Reg_1/rdata_reg_2_9[4]/SLICE_392_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[4]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[4]/SLICE_392/CPLD_Reg_1/rdata_reg_2_9[4]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[4]/SLICE_392_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[4]/SLICE_392/CPLD_Reg_1/rdata_reg_2_9[4]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[4]/SLICE_392/CPLD_Reg_1/rdata_reg_2_9[4]/SLICE_392_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_4__SLICE_393 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393/CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393/CPLD_Reg_1/rdata_reg_2_10[4]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393/CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_10[4]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393/CPLD_Reg_1/rdata_reg_2_10[4]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393/CPLD_Reg_1/rdata_reg_2_10[4]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393/CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[4]/SLICE_393_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_5__SLICE_394 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[5]/SLICE_394/CPLD_Reg_1/rdata_reg_2_9[5]/SLICE_394_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[5]/SLICE_394/CPLD_Reg_1/rdata_reg_2_9[5]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_9[5]/SLICE_394_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[5]/SLICE_394/CPLD_Reg_1/rdata_reg_2_9[5]/SLICE_394_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[5]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[5]/SLICE_394/CPLD_Reg_1/rdata_reg_2_9[5]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[5]/SLICE_394_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[5]/SLICE_394/CPLD_Reg_1/rdata_reg_2_9[5]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[5]/SLICE_394/CPLD_Reg_1/rdata_reg_2_9[5]/SLICE_394_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_5__SLICE_395 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395/CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395/CPLD_Reg_1/rdata_reg_2_10[5]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395/CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_10[5]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395/CPLD_Reg_1/rdata_reg_2_10[5]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395/CPLD_Reg_1/rdata_reg_2_10[5]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395/CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[5]/SLICE_395_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_6__SLICE_396 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[6]/SLICE_396/CPLD_Reg_1/rdata_reg_2_9[6]/SLICE_396_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[6]/SLICE_396/CPLD_Reg_1/rdata_reg_2_9[6]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_9[6]/SLICE_396_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[6]/SLICE_396/CPLD_Reg_1/rdata_reg_2_9[6]/SLICE_396_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[6]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[6]/SLICE_396/CPLD_Reg_1/rdata_reg_2_9[6]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[6]/SLICE_396_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[6]/SLICE_396/CPLD_Reg_1/rdata_reg_2_9[6]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[6]/SLICE_396/CPLD_Reg_1/rdata_reg_2_9[6]/SLICE_396_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_6__SLICE_397 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397/CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397/CPLD_Reg_1/rdata_reg_2_10[6]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397/CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_10[6]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397/CPLD_Reg_1/rdata_reg_2_10[6]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397/CPLD_Reg_1/rdata_reg_2_10[6]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397/CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[6]/SLICE_397_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_7__SLICE_398 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[7]/SLICE_398/CPLD_Reg_1/rdata_reg_2_9[7]/SLICE_398_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[7]/SLICE_398/CPLD_Reg_1/rdata_reg_2_9[7]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_9[7]/SLICE_398_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[7]/SLICE_398/CPLD_Reg_1/rdata_reg_2_9[7]/SLICE_398_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[7]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[7]/SLICE_398/CPLD_Reg_1/rdata_reg_2_9[7]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[7]/SLICE_398_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[7]/SLICE_398/CPLD_Reg_1/rdata_reg_2_9[7]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[7]/SLICE_398/CPLD_Reg_1/rdata_reg_2_9[7]/SLICE_398_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_7__SLICE_399 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399/CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399/CPLD_Reg_1/rdata_reg_2_10[7]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399/CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_10[7]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399/CPLD_Reg_1/rdata_reg_2_10[7]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399/CPLD_Reg_1/rdata_reg_2_10[7]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399/CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[7]/SLICE_399_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_8__SLICE_400 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[8]/SLICE_400/CPLD_Reg_1/rdata_reg_2_9[8]/SLICE_400_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[8]/SLICE_400/CPLD_Reg_1/rdata_reg_2_9[8]/GATE_H0 ; lut40042 \CPLD_Reg_1/rdata_reg_2_9[8]/SLICE_400_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[8]/SLICE_400/CPLD_Reg_1/rdata_reg_2_9[8]/SLICE_400_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[8]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[8]/SLICE_400/CPLD_Reg_1/rdata_reg_2_9[8]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[8]/SLICE_400_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[8]/SLICE_400/CPLD_Reg_1/rdata_reg_2_9[8]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[8]/SLICE_400/CPLD_Reg_1/rdata_reg_2_9[8]/SLICE_400_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_8__SLICE_401 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401/CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401/CPLD_Reg_1/rdata_reg_2_10[8]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401/CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40041 \CPLD_Reg_1/rdata_reg_2_10[8]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401/CPLD_Reg_1/rdata_reg_2_10[8]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401/CPLD_Reg_1/rdata_reg_2_10[8]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401/CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[8]/SLICE_401_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_17__SLICE_402 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[17]/SLICE_402/CPLD_Reg_1/rdata_reg_2_9[17]/SLICE_402_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[17]/SLICE_402/CPLD_Reg_1/rdata_reg_2_9[17]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[17]/SLICE_402_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[17]/SLICE_402/CPLD_Reg_1/rdata_reg_2_9[17]/SLICE_402_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[17]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[17]/SLICE_402/CPLD_Reg_1/rdata_reg_2_9[17]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[17]/SLICE_402_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[17]/SLICE_402/CPLD_Reg_1/rdata_reg_2_9[17]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[17]/SLICE_402/CPLD_Reg_1/rdata_reg_2_9[17]/SLICE_402_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_17__SLICE_403 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403/CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403/CPLD_Reg_1/rdata_reg_2_10[17]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403/CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10[17]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403/CPLD_Reg_1/rdata_reg_2_10[17]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403/CPLD_Reg_1/rdata_reg_2_10[17]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403/CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[17]/SLICE_403_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_19__SLICE_404 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[19]/SLICE_404/CPLD_Reg_1/rdata_reg_2_9[19]/SLICE_404_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[19]/SLICE_404/CPLD_Reg_1/rdata_reg_2_9[19]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[19]/SLICE_404_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[19]/SLICE_404/CPLD_Reg_1/rdata_reg_2_9[19]/SLICE_404_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[19]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[19]/SLICE_404/CPLD_Reg_1/rdata_reg_2_9[19]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[19]/SLICE_404_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[19]/SLICE_404/CPLD_Reg_1/rdata_reg_2_9[19]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[19]/SLICE_404/CPLD_Reg_1/rdata_reg_2_9[19]/SLICE_404_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_19__SLICE_405 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405/CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405/CPLD_Reg_1/rdata_reg_2_10[19]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405/CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10[19]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405/CPLD_Reg_1/rdata_reg_2_10[19]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405/CPLD_Reg_1/rdata_reg_2_10[19]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405/CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[19]/SLICE_405_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_20__SLICE_406 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[20]/SLICE_406/CPLD_Reg_1/rdata_reg_2_9[20]/SLICE_406_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[20]/SLICE_406/CPLD_Reg_1/rdata_reg_2_9[20]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[20]/SLICE_406_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[20]/SLICE_406/CPLD_Reg_1/rdata_reg_2_9[20]/SLICE_406_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[20]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[20]/SLICE_406/CPLD_Reg_1/rdata_reg_2_9[20]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[20]/SLICE_406_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[20]/SLICE_406/CPLD_Reg_1/rdata_reg_2_9[20]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[20]/SLICE_406/CPLD_Reg_1/rdata_reg_2_9[20]/SLICE_406_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_20__SLICE_407 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407/CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407/CPLD_Reg_1/rdata_reg_2_10[20]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407/CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10[20]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407/CPLD_Reg_1/rdata_reg_2_10[20]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407/CPLD_Reg_1/rdata_reg_2_10[20]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407/CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[20]/SLICE_407_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_21__SLICE_408 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[21]/SLICE_408/CPLD_Reg_1/rdata_reg_2_9[21]/SLICE_408_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[21]/SLICE_408/CPLD_Reg_1/rdata_reg_2_9[21]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[21]/SLICE_408_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[21]/SLICE_408/CPLD_Reg_1/rdata_reg_2_9[21]/SLICE_408_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[21]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[21]/SLICE_408/CPLD_Reg_1/rdata_reg_2_9[21]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[21]/SLICE_408_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[21]/SLICE_408/CPLD_Reg_1/rdata_reg_2_9[21]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[21]/SLICE_408/CPLD_Reg_1/rdata_reg_2_9[21]/SLICE_408_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_21__SLICE_409 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409/CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409/CPLD_Reg_1/rdata_reg_2_10[21]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409/CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10[21]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409/CPLD_Reg_1/rdata_reg_2_10[21]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409/CPLD_Reg_1/rdata_reg_2_10[21]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409/CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[21]/SLICE_409_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_9_22__SLICE_410 ( input C1, B1, A1, C0, B0, A0, M0, output OFX0 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_9[22]/SLICE_410/CPLD_Reg_1/rdata_reg_2_9[22]/SLICE_410_K1_H1 , \CPLD_Reg_1/rdata_reg_2_9[22]/SLICE_410/CPLD_Reg_1/rdata_reg_2_9[22]/GATE_H0 ; lut40059 \CPLD_Reg_1/rdata_reg_2_9[22]/SLICE_410_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[22]/SLICE_410/CPLD_Reg_1/rdata_reg_2_9[22]/SLICE_410_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_9[22]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_9[22]/SLICE_410/CPLD_Reg_1/rdata_reg_2_9[22]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_9[22]/SLICE_410_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_9[22]/SLICE_410/CPLD_Reg_1/rdata_reg_2_9[22]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_9[22]/SLICE_410/CPLD_Reg_1/rdata_reg_2_9[22]/SLICE_410_K1_H1 ) , .SD(M0), .Z(OFX0)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); endspecify endmodule module CPLD_Reg_1_rdata_reg_2_10_22__SLICE_411 ( input C1, B1, A1, C0, B0, A0, M1, M0, FXB, FXA, output OFX0, OFX1 ); wire GNDI, \CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411/CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411_K1_H1 , \CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411/CPLD_Reg_1/rdata_reg_2_10[22]/GATE_H0 ; lut40041 \CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411_K1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411/CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411_K1_H1 ) ); gnd DRIVEGND( .PWR0(GNDI)); lut40042 \CPLD_Reg_1/rdata_reg_2_10[22]/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(\CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411/CPLD_Reg_1/rdata_reg_2_10[22]/GATE_H0 ) ); selmux2 \CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411_K0K1MUX ( .D0(\CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411/CPLD_Reg_1/rdata_reg_2_10[22]/GATE_H0 ) , .D1(\CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411/CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411_K1_H1 ) , .SD(M0), .Z(OFX0)); selmux2 \CPLD_Reg_1/rdata_reg_2_10[22]/SLICE_411_FXMUX ( .D0(FXA), .D1(FXB), .SD(M1), .Z(OFX1)); specify (C1 => OFX0) = (0:0:0,0:0:0); (B1 => OFX0) = (0:0:0,0:0:0); (A1 => OFX0) = (0:0:0,0:0:0); (C0 => OFX0) = (0:0:0,0:0:0); (B0 => OFX0) = (0:0:0,0:0:0); (A0 => OFX0) = (0:0:0,0:0:0); (M1 => OFX1) = (0:0:0,0:0:0); (M0 => OFX0) = (0:0:0,0:0:0); (FXB => OFX1) = (0:0:0,0:0:0); (FXA => OFX1) = (0:0:0,0:0:0); endspecify endmodule module SLICE_412 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40060 \CPLD_Con_1/un1_i_DC_Con1_4_axbxc1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40061 \CPLD_Con_1/RC_RLSel_13_0_a3[10] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40060 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFCA9) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40061 ( input A, B, C, D, output Z ); ROM16X1A #(16'hA800) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_413 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40062 \CPLD_Con_1/DMM_en_22_0_a2[15] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40063 \CPLD_Con_1/DMM_en_22_0_0[15] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/tx_buffer[23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/tx_buffer[22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40062 ( input A, B, C, D, output Z ); ROM16X1A #(16'h8000) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40063 ( input A, B, C, D, output Z ); ROM16X1A #(16'hEAAA) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module BUS_Con_1_SLICE_414 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40064 \BUS_Con_1/un1_addr_out_0_sqmuxa_0_i ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40065 \BUS_Con_1/un1_addr_out_0_sqmuxa_0_i_RNIJF3IK ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/recv_reg[15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40064 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFD3D) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40065 ( input A, B, C, D, output Z ); ROM16X1A #(16'h7775) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_415 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40066 \CPLD_Con_1/DMM_en_22_0_a2_2[10] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40067 \CPLD_Con_1/DMM_en_22_0_0_RNO[10] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/tx_buffer[3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/tx_buffer[2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40066 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0008) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40067 ( input A, B, C, D, output Z ); ROM16X1A #(16'h4448) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_416 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40068 \CPLD_Con_1/RC_VISel_1_sqmuxa ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40069 \CPLD_Con_1/err_flag_RNO ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40068 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0808) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40069 ( input A, B, C, D, output Z ); ROM16X1A #(16'h88F8) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_417 ( input D1, C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40070 \CPLD_Con_1/un1_i_freq_relay1lto6_RNI064ES ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40071 \CPLD_Con_1/un1_i_freq_relay1lto6 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40070 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0511) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40071 ( input A, B, C, D, output Z ); ROM16X1A #(16'h1F1F) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_418 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40072 \CPLD_Con_1/g0_14 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40028 \CPLD_Con_1/DMM_en_11_sqmuxa_0_147_i_i_0_0_tz ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/recv_reg[20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40072 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFFF4) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_419 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40073 \CPLD_Con_1/g1_0_0 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40074 \CPLD_Con_1/g0_26_x0 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40073 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFFCA) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40074 ( input A, B, C, D, output Z ); ROM16X1A #(16'hF801) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_420 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40075 \CPLD_Con_1/PMU_OC_4_8_0_a2[28] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40047 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNIPVVMC[28] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40075 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0020) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_421 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40020 \CPLD_Con_1/PMU_OC_4_8_0_a2[26] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40047 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNINTVMC[26] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_422 ( input D1, C1, B1, A1, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40076 \CPLD_Con_1/OC_x0112lto8_1_i_RNI7NLPL ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40045 \CPLD_Con_1/DMM_en_1_sqmuxa_1_0_a2_0_a2_0_a2_0_0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/recv_reg[25] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/recv_reg[24] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40076 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0800) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_423 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40077 \CPLD_Con_1/PMU_OC_4_8_0_a2_2[3] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40076 \CPLD_Con_1/PMU_OC_4_8_0_a2_2_RNID4RHA[3] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40077 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0002) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_424 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40078 \CPLD_Con_1/un1_i_DC_Con1_1_iv[4] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40079 \CPLD_Con_1/DMM_en_22_RNO[3] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40078 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFEFC) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40079 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0004) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_425 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40024 \CPLD_Con_1/PMU_OC_1_8_0_a2[27] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40062 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNI3C04G[27] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_426 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40012 \CPLD_Con_1/PMU_OC_1_8_0_a2[29] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40062 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNI5E04G[29] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_427 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut4 \CPLD_Con_1/PMU_OC_1_8_0_a2[26] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40062 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNIU604G[26] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_428 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40068 \CPLD_Con_1/PMU_OC_1_8_0_a2[1] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40076 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNI3C04G_0[27] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_429 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40024 \CPLD_Con_1/PMU_OC_1_8_0_a2[10] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40062 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNINUU3G[10] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_430 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40033 \CPLD_Con_1/PMU_OC_1_8_0_o2[17] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40075 \CPLD_Con_1/PMU_OC_1_8_0_o2_RNIGGDKI_1[17] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_431 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut4 \CPLD_Con_1/PMU_OC_1_8_0_a2[31] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40020 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNIU714G[31] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_432 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40033 \CPLD_Con_1/g0_27 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40080 \CPLD_Con_1/PMU_OC_2_8_0_a2_RNIFF75V[17] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40080 ( input A, B, C, D, output Z ); ROM16X1A #(16'h2000) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_433 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40068 \CPLD_Con_1/PMU_OC_2_8_0_a2[8] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40081 \CPLD_Con_1/PMU_OC_2_8_0_a2_RNIV5H461_0[8] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40081 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0200) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_434 ( input D1, C1, B1, A1, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40078 \CPLD_Con_1/un1_i_DC_Con1_1_iv[5] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40045 \CPLD_Con_1/DMM_en_22_0_RNO[10] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/tx_buffer[5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/tx_buffer[4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_435 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40082 \CPLD_Con_1/PMU_OC_1_8_0_a2[24] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40080 \CPLD_Con_1/PMU_OC_1_8_0_o2_RNI5VQ7I[17] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40082 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0202) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_436 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40083 \CPLD_Con_1/RC_VISel41_0_a2_0_a3_RNI54G4K2 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40013 \CPLD_Con_1/un1_exec_flag_8_0_a3_RNIM00E93 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[7]_fast[6] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7]_fast[5] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40083 ( input A, B, C, D, output Z ); ROM16X1A #(16'hA2AA) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_437 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40084 \CPLD_Con_1/un1_exec_flag_8_0_0 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40085 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNIL1I393[20] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40084 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFBFB) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40085 ( input A, B, C, D, output Z ); ROM16X1A #(16'h01FF) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_438 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40066 \CPLD_Con_1/PMU_OC_4_8_0_a2[18] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40085 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNIS7H393[18] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_439 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40086 \CPLD_Con_1/DMM_en_22_0_a2_2[4] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40087 \CPLD_Con_1/DMM_en_22_0[5] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/tx_buffer[16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/tx_buffer[15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40086 ( input A, B, C, D, output Z ); ROM16X1A #(16'h8880) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40087 ( input A, B, C, D, output Z ); ROM16X1A #(16'hF2F0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_440 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40078 \CPLD_Con_1/un1_i_DC_Con1_1_iv[1] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40088 \CPLD_Con_1/DMM_en_22_0[6] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/tx_buffer[18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/tx_buffer[17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40088 ( input A, B, C, D, output Z ); ROM16X1A #(16'hF4F0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_441 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40086 \CPLD_Con_1/DMM_en_22_0_a2_1[12] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40089 \CPLD_Con_1/DMM_en_22_0[12] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/recv_reg[6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40089 ( input A, B, C, D, output Z ); ROM16X1A #(16'hF1F0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_442 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40090 \CPLD_Con_1/un1_i_DC_Con1_1_iv_0[0] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40088 \CPLD_Con_1/DMM_en_22_0[14] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/tx_buffer[10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/tx_buffer[0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40090 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFFEC) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_443 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40091 \CPLD_Con_1/DMM_en_22_0_RNO[13] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40092 \CPLD_Con_1/DMM_en_22_0[13] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/recv_reg[8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40091 ( input A, B, C, D, output Z ); ROM16X1A #(16'h30A0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40092 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFF20) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_444 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40093 \CPLD_Con_1/PMU_OC_3_8_0_o2_RNIBDD741[8] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40085 \CPLD_Con_1/un1_exec_flag_2_0_0_RNI3RHOG1 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40093 ( input A, B, C, D, output Z ); ROM16X1A #(16'h8AA8) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_445 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40094 \CPLD_Con_1/err_flag19_0_0_0_RNI48FPT3 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40085 \CPLD_Con_1/un1_exec_flag_3_0_0_RNISFCLD4 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40094 ( input A, B, C, D, output Z ); ROM16X1A #(16'hACAC) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_446 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40095 \CPLD_Con_1/DMM_en_22_0_0[7] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40063 \CPLD_Con_1/DMM_en_22_0[7] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/tx_buffer[1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/tx_buffer[19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40095 ( input A, B, C, D, output Z ); ROM16X1A #(16'hEEEC) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_447 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40081 \CPLD_Con_1/OC_x0161_1_RNI65N7D_0 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40096 \CPLD_Con_1/DMM_en_22[3] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/recv_reg[31] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40096 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0ACC) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_448 ( input D1, C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40077 \CPLD_Con_1/dc_slot_flag_0_rep1_RNI2FE7E_1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40097 \CPLD_Con_1/un1_exec_flag_4_0_0_RNIJDPEM ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40097 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0B0B) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_449 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40098 \CPLD_Con_1/RC_RLSel_13_0_a3_2[12] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40008 \CPLD_Con_1/RC_RLSel_13_0_a3_0[9] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40098 ( input A, B, C, D, output Z ); ROM16X1A #(16'h6A00) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_450 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40099 \CPLD_Con_1/RC_RLSel_13_0_a2[12] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40100 \CPLD_Con_1/RC_RLSel_13_0_a3_0[12] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40099 ( input A, B, C, D, output Z ); ROM16X1A #(16'h8080) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40100 ( input A, B, C, D, output Z ); ROM16X1A #(16'h5400) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_451 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40099 \CPLD_Con_1/RC_RLSel_13_0_a2[11] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40081 \CPLD_Con_1/RC_RLSel_13_0_a3[11] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_452 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40101 \CPLD_Con_1/PMU_OC_3_8_0_o2_RNIO6S4K[8] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40102 \CPLD_Con_1/un1_exec_flag_2_0_0_RNIB6HR41 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40101 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFAEB) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40102 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0507) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_453 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40079 \CPLD_Con_1/dc_slot_flag_RNIANH1R_1[0] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40102 \CPLD_Con_1/un1_exec_flag_3_0_0_RNIRD7G43 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_454 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40078 \CPLD_Con_1/un1_i_DC_Con1_1_iv[3] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40063 \CPLD_Con_1/DMM_en_22_0[10] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/recv_reg[4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_455 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40103 \CPLD_Con_1/RC_RLSel_13_0_a2_1[16] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40081 \CPLD_Con_1/RC_RLSel_13_0_a2[17] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40103 ( input A, B, C, D, output Z ); ROM16X1A #(16'h5454) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_456 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40104 \CPLD_Con_1/un1_i_DC_Con1_iv_0_1[0] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40061 \CPLD_Con_1/RC_RLSel_13_0_a2[16] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40104 ( input A, B, C, D, output Z ); ROM16X1A #(16'hECA0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_457 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40105 \CPLD_Con_1/un1_DMM_en_42 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40066 \CPLD_Con_1/DMM_en_22[16] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[27] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/recv_reg[26] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40105 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0001) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_458 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40106 \CPLD_Con_1/un1_i_rst_n_i_o2 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40066 \CPLD_Con_1/DMM_en_22[17] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[29] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/recv_reg[28] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40106 ( input A, B, C, D, output Z ); ROM16X1A #(16'hDFFF) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_459 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40024 \CPLD_Con_1/un1_DMM_en_64 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40066 \CPLD_Con_1/DMM_en_22[18] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[30] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/recv_reg[2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_460 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40107 \CPLD_Con_1/freq_slot_flag_RNI40NF7[0] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40099 \CPLD_Con_1/DMM_en_22_0_o2_RNI6TDVF[14] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40107 ( input A, B, C, D, output Z ); ROM16X1A #(16'h1010) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_461 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40075 \CPLD_Con_1/freq_slot_flag_RNI84VGB[1] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40108 \CPLD_Con_1/DMM_en_22_0_o2_0_RNI5A4QI[7] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40108 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0280) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_462 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40109 \CPLD_Con_1/DMM_en_22_0_a2_3[14] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40099 \CPLD_Con_1/DMM_en_22_0_a2[14] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/tx_buffer[9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/tx_buffer[8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40109 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0404) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_463 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40075 \CPLD_Con_1/DMM_en_22_0_a2_0_0[6] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40108 \CPLD_Con_1/DMM_en_22_0_a2[6] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_464 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40105 \CPLD_Con_1/OC_x0139_i_0_a2 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40110 \CPLD_Con_1/DMM_en_22_0_0[10] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/tx_buffer[21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/tx_buffer[20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40110 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFAF2) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_SLICE_465 ( input D1, C1, B1, A1, C0, B0, A0, M0, CE, LSR, CLK, output F0, Q0, F1 ); wire GNDI, VCCI, LSR_NOTIN, M0_dly, CLK_dly, CE_dly, LSR_dly; lut40111 \CPLD_Con_1/RC_Tx_0_sqmuxa ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40103 \CPLD_Con_1/done_flag_RNO ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0010 \CPLD_Con_1/done_flag ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40111 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFE00) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_466 ( input D1, C1, B1, A1, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40008 \CPLD_Con_1/RC_Tx_1_sqmuxa ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40001 \CPLD_Con_1/RC_Tx_1_sqmuxa_RNIGOE0D ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_467 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40043 \CPLD_Con_1/DMM_en_1_sqmuxa_1_0_a2_0_a2_0_a2_0 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40112 \CPLD_Con_1/un1_i_freq_relay1_1lto8 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40112 ( input A, B, C, D, output Z ); ROM16X1A #(16'h002F) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_468 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40113 \CPLD_Con_1/DMM_en_22_0_o2_1[13] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40114 \CPLD_Con_1/DMM_en_22_0_o2[14] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40113 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFEFE) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40114 ( input A, B, C, D, output Z ); ROM16X1A #(16'h05C0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_469 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40047 \CPLD_Con_1/OC_x0161_1_RNI5O3CC ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40091 \CPLD_Con_1/un1_i_freq_relay3_1lto8_i_o2_RNIASAE02 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[8]_fast[6] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8]_fast[5] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_470 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40012 \CPLD_Con_1/PMU_OC_3_8_0_a2[18] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40080 \CPLD_Con_1/PMU_OC_3_8_0_a4[26] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][19] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][18] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_471 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut4 \CPLD_Con_1/PMU_OC_3_8_0_a2_0[17] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40080 \CPLD_Con_1/PMU_OC_3_8_0_a4[27] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][20] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][1] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_472 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40068 \CPLD_Con_1/PMU_OC_3_8_0_a2[8] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40047 \CPLD_Con_1/PMU_OC_3_8_0_a4[28] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][22] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][21] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_473 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40107 \CPLD_Con_1/PMU_OC_3_8_0_a2[10] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40115 \CPLD_Con_1/PMU_OC_3_8_0_a4[10] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40115 ( input A, B, C, D, output Z ); ROM16X1A #(16'h2020) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_474 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40024 \CPLD_Con_1/PMU_OC_3_8_0_a2[1] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40080 \CPLD_Con_1/PMU_OC_3_8_0_a4[11] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_475 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40082 \CPLD_Con_1/PMU_OC_3_8_0_a2[17] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40080 \CPLD_Con_1/PMU_OC_3_8_0_a4[18] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][11] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][10] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_476 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40115 \CPLD_Con_1/PMU_OC_3_8_0_a2_0[18] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40107 \CPLD_Con_1/PMU_OC_3_8_0_a4[2] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_477 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40116 \CPLD_Con_1/PMU_OC_3_8_0_a2[20] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40107 \CPLD_Con_1/PMU_OC_3_8_0_a4[4] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40116 ( input A, B, C, D, output Z ); ROM16X1A #(16'h4040) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_478 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40099 \CPLD_Con_1/PMU_OC_3_8_0_a2[22] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40107 \CPLD_Con_1/PMU_OC_3_8_0_a4[6] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_479 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40012 \CPLD_Con_1/PMU_OC_2_8_0_a2[18] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40080 \CPLD_Con_1/PMU_OC_2_8_0_a4[26] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_480 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut4 \CPLD_Con_1/PMU_OC_2_8_0_a2_0[17] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40080 \CPLD_Con_1/PMU_OC_2_8_0_a4[27] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_481 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40107 \CPLD_Con_1/PMU_OC_2_8_0_a2[10] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40115 \CPLD_Con_1/PMU_OC_2_8_0_a4[10] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_482 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40024 \CPLD_Con_1/PMU_OC_2_8_0_a2[1] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40080 \CPLD_Con_1/PMU_OC_2_8_0_a4[11] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_483 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40082 \CPLD_Con_1/PMU_OC_2_8_0_a2[17] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40080 \CPLD_Con_1/PMU_OC_2_8_0_a4[18] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_484 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40115 \CPLD_Con_1/PMU_OC_2_8_0_a2_0[18] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40107 \CPLD_Con_1/PMU_OC_2_8_0_a4[2] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_485 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40116 \CPLD_Con_1/PMU_OC_2_8_0_a2[20] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40107 \CPLD_Con_1/PMU_OC_2_8_0_a4[4] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_486 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40099 \CPLD_Con_1/PMU_OC_2_8_0_a2[22] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40107 \CPLD_Con_1/PMU_OC_2_8_0_a4[6] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_487 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40117 \CPLD_Con_1/DMM_en_22_0_a2_1[4] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40118 \CPLD_Con_1/DMM_en_22_0_a2[12] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/tx_buffer[7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/tx_buffer[6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40117 ( input A, B, C, D, output Z ); ROM16X1A #(16'h1000) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40118 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0040) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_488 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40021 \CPLD_Con_1/err_flag13_0_o2_0_2_RNIH4D9O ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40119 \CPLD_Con_1/DMM_en_0_sqmuxa_3 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/recv_reg[19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40119 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0104) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_489 ( input D1, C1, B1, A1, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40077 \CPLD_Con_1/un1_DMM_en_43 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40024 \CPLD_Con_1/un1_DMM_en_63 ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_490 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40077 \CPLD_Con_1/DMM_en_22_0_a2_3[4] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40120 \CPLD_Con_1/DMM_en_22_0_a2[5] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40120 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0880) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_491 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40072 \CPLD_Con_1/DMM_en_22_0_o2_0[7] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40066 \CPLD_Con_1/DMM_en_22_0_a2_3_RNIK2BQH[4] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_492 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40033 \CPLD_Con_1/DMM_en_22_0_o2[15] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40118 \CPLD_Con_1/DMM_en_22_0_o2_RNI8QTBL[15] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_493 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40013 \CPLD_Con_1/dc_slot_flag_0_rep1_RNI2FE7E ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40066 \CPLD_Con_1/PMU_OC_3_8_0_a4[8] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_494 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40104 \CPLD_Con_1/un1_i_DC_Con1_1_iv_1[2] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40079 \CPLD_Con_1/un1_DMM_en_44_0_a2 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_495 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40104 \CPLD_Con_1/un1_i_DC_Con1_1_iv_0[2] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40066 \CPLD_Con_1/un1_DMM_en_45 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_496 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40121 \CPLD_Con_1/N_11_1.SUM0 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40122 \CPLD_Con_1/N_18_ac0 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40121 ( input A, B, C, D, output Z ); ROM16X1A #(16'h9696) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40122 ( input A, B, C, D, output Z ); ROM16X1A #(16'h9600) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_497 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40123 \CPLD_Con_1/PMU_OC_2_2_500_0_a2_i_o2 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40124 \CPLD_Con_1/PMU_OC_4_8_0_a2[29] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40123 ( input A, B, C, D, output Z ); ROM16X1A #(16'h7777) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40124 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0400) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_498 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40024 \CPLD_Con_1/PMU_OC_2_2_504_a2_0_0_a3 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40117 \CPLD_Con_1/PMU_OC_4_8_0_a2[17] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_499 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40068 \CPLD_Con_1/PMU_OC_4_8_0_a3[29] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40008 \CPLD_Con_1/PMU_OC_4_8_0_a2[21] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_500 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40024 \CPLD_Con_1/DMM_en_22_0_a2_0_2_RNO[10] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40020 \CPLD_Con_1/DMM_en_22_0_a2_0_2[10] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_501 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40079 \CPLD_Con_1/OC_x0112lto8 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40125 \CPLD_Con_1/OC_x0112lto8_1_i ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40125 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFFD0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_502 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40045 \CPLD_Con_1/OC_x0153lto2 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40072 \CPLD_Con_1/DMM_en_22_0_o2[13] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_503 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40008 \CPLD_Con_1/RC_VISel41_0_a2_0_a3 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40077 \CPLD_Con_1/PMU_OC_4_8_0_a2[20] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_504 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40126 \CPLD_Con_1/un1_exec_flag_3_0_a3 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40127 \CPLD_Con_1/RC_RLSel_13_0_o3[16] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40126 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0102) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40127 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFFFD) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_505 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40109 \CPLD_Con_1/PMU_OC_4_8_0[25] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40062 \CPLD_Con_1/PMU_OC_4_8[25] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_506 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40128 \CPLD_Con_1/err_flag13_0_0_0_RNIM0FM71 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40129 \CPLD_Con_1/err_flag13_0_0_0 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40128 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0041) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40129 ( input A, B, C, D, output Z ); ROM16X1A #(16'hF081) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_507 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40130 \CPLD_Con_1/err_flag19_0_0_0_RNIAI9L43 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40129 \CPLD_Con_1/err_flag19_0_0_0 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40130 ( input A, B, C, D, output Z ); ROM16X1A #(16'h407F) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_508 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut4 \CPLD_Con_1/freq_t_RNI306E7 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40080 \CPLD_Con_1/DMM_en_22_bm_RNO[11] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_509 ( input D1, C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40131 \CPLD_Con_1/un1_exec_flag_8_0_a3 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40084 \CPLD_Con_1/un1_exec_flag_4_0_0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40131 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0014) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_510 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40043 \CPLD_Con_1/OC_x0161_1 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40076 \CPLD_Con_1/OC_x0161_1_RNI65N7D ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_511 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40105 \CPLD_Con_1/RC_RLSel_13_0_a3_2_N_4L5 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40090 \CPLD_Con_1/un1_i_DC_Con1_iv_0[2] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_512 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40132 \CPLD_Con_1/un1_i_DC_Con1_iv_0_RNIHD3I9[2] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40090 \CPLD_Con_1/un1_i_DC_Con1_iv_0[3] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40132 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0909) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_513 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40123 \CPLD_Con_1/freq_t_RNI306E7_0 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40079 \CPLD_Con_1/DMM_en_22_bm_RNO[9] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_514 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40043 \CPLD_Con_1/PMU_OC_3_8_0_o2_RNI8EC98[8] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40021 \CPLD_Con_1/PMU_OC_3_8_0_o2[8] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Con_1_SLICE_515 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40133 \CPLD_Con_1/OC_x0161_1_RNIRLPBK ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40081 \CPLD_Con_1/freq_slot_flag_RNI3HKF9[0] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \CPLD_Con_1/freq_slot_flag[1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \CPLD_Con_1/freq_slot_flag[0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40133 ( input A, B, C, D, output Z ); ROM16X1A #(16'h7F5F) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_516 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40043 \CPLD_Con_1/RC_RLSel_13_0_a3_2_N_2L1 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40104 \CPLD_Con_1/un1_i_DC_Con1_iv_0_0[4] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_517 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40043 \CPLD_Con_1/RC_RLSel_13_0_a3_2_N_3L3 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40104 \CPLD_Con_1/un1_i_DC_Con1_iv_0[1] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_518 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40105 \CPLD_Con_1/un1_i_DC_Con1_iv_0_RNIUHIA9[1] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40104 \CPLD_Con_1/un1_i_DC_Con1_iv_1[1] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_519 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40134 \CPLD_Con_1/err_flag19_0_o2_2_RNIDVKG21 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40021 \CPLD_Con_1/err_flag19_0_o2_2 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40134 ( input A, B, C, D, output Z ); ROM16X1A #(16'h10EF) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_520 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40105 \CPLD_Con_1/err_flag13_0_o2_0_2_RNIH4D9O_0 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40021 \CPLD_Con_1/err_flag13_0_o2_0_2 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_521 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40135 \CPLD_Con_1/freq_slot_flag_RNIBOV481_0[0] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40013 \CPLD_Con_1/freq_slot_flag_RNI6S8Q1_0[0] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40135 ( input A, B, C, D, output Z ); ROM16X1A #(16'h55DF) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_522 ( input D1, C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40136 \CPLD_Con_1/g0_21 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40137 \CPLD_Con_1/err_flag19_0_0_0_RNI07J532 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40136 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFFF7) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40137 ( input A, B, C, D, output Z ); ROM16X1A #(16'hEBEB) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_SLICE_523 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40138 \CPLD_Con_1/dc_slot_flag_RNI1V47R2[0] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40079 \CPLD_Con_1/dc_slot_flag_RNIANH1R_2[0] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \CPLD_Con_1/dc_slot_flag_3_rep1 ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \CPLD_Con_1/dc_slot_flag_2_rep1 ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40138 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0208) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_SLICE_524 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40139 \CPLD_Con_1/freq_t_RNIJHH7E1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40140 \CPLD_Con_1/freq_slot_flag_RNI6S8Q1[0] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \CPLD_Con_1/freq_slot_flag[3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \CPLD_Con_1/freq_slot_flag[2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40139 ( input A, B, C, D, output Z ); ROM16X1A #(16'h777F) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40140 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFFEF) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_525 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40141 \CPLD_Con_1/g0_19 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40021 \CPLD_Con_1/g1_1_3 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[6]_fast[6] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6]_fast[5] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40141 ( input A, B, C, D, output Z ); ROM16X1A #(16'h02FD) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_526 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40117 \CPLD_Con_1/freq_t_RNI2O8358 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40142 \CPLD_Con_1/err_flag13_0_0_0_RNI92FNE1 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40142 ( input A, B, C, D, output Z ); ROM16X1A #(16'hA88A) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_527 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40079 \CPLD_Con_1/g0_3_1_N_5L8 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40021 \CPLD_Con_1/g0_29 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Con_1_SLICE_528 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40143 \CPLD_Con_1/err_flag19_0_0_0_RNI2M1DH2_0 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40079 \CPLD_Con_1/dc_slot_flag_0_rep1_RNI2FE7E_0 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \CPLD_Con_1/dc_slot_flag[1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \CPLD_Con_1/dc_slot_flag[0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40143 ( input A, B, C, D, output Z ); ROM16X1A #(16'h3773) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_SLICE_529 ( input D1, C1, B1, A1, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40144 \CPLD_Con_1/un1_i_DC_Con1_iv_0_RNIL5OH12[2] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40145 \CPLD_Con_1/dc_t_RNI2Q6P8 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \CPLD_Con_1/dc_slot_flag_fast[1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \CPLD_Con_1/dc_slot_flag_fast[0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40144 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0007) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40145 ( input A, B, C, D, output Z ); ROM16X1A #(16'hF7F7) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Con_1_SLICE_530 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40146 \CPLD_Con_1/dc_t_RNI3B14N1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40013 \CPLD_Con_1/dc_slot_flag_RNIANH1R[0] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \CPLD_Con_1/dc_slot_flag_1_rep1 ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \CPLD_Con_1/dc_slot_flag_0_rep1 ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40146 ( input A, B, C, D, output Z ); ROM16X1A #(16'h20A0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_531 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40147 \CPLD_Con_1/RC_VISel41_0_a2_0_a3_RNILT4CU4_0 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40148 \CPLD_Con_1/g0_10_N_3L3 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40147 ( input A, B, C, D, output Z ); ROM16X1A #(16'h3BBB) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40148 ( input A, B, C, D, output Z ); ROM16X1A #(16'h2AFD) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_532 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40149 \CPLD_Con_1/err_flag13_0_0_0_RNI92FNE1_0 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40150 \CPLD_Con_1/err_flag13_0_0_0_RNILOU7L8 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40149 ( input A, B, C, D, output Z ); ROM16X1A #(16'h5775) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40150 ( input A, B, C, D, output Z ); ROM16X1A #(16'h40FF) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_533 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40143 \CPLD_Con_1/err_flag19_0_0_0_RNI2M1DH2 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40151 \CPLD_Con_1/RC_VISel41_0_a2_0_a3_RNILT4CU4 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40151 ( input A, B, C, D, output Z ); ROM16X1A #(16'hD050) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_534 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40066 \CPLD_Con_1/DMM_en_22_0_N_2L1_0 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40152 \CPLD_Con_1/DMM_en_22_0[4] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/tx_buffer[14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/tx_buffer[13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40152 ( input A, B, C, D, output Z ); ROM16X1A #(16'hABAA) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_535 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40153 \CPLD_Con_1/RC_VISel41_0_a2_0_a3_RNI54G4K2_0 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40148 \CPLD_Con_1/g0_12_N_3L3 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40153 ( input A, B, C, D, output Z ); ROM16X1A #(16'h5D55) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_536 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40020 \CPLD_Con_1/RC_VISel41_0_a2_0_a3_RNIKV6UQ7 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40154 \CPLD_Con_1/dc_t_RNI7JEV61 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40154 ( input A, B, C, D, output Z ); ROM16X1A #(16'h3BB3) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_537 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40155 \CPLD_Con_1/dc_slot_flag_0_rep1_RNIULU4R ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40156 \CPLD_Con_1/g0_26/GATE ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40155 ( input A, B, C, D, output Z ); ROM16X1A #(16'h5757) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40156 ( input A, B, C, D, output Z ); ROM16X1A #(16'hCACA) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_538 ( input D1, C1, B1, A1, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40079 \CPLD_Con_1/dc_slot_flag_RNIANH1R_3[0] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40024 \CPLD_Con_1/dc_slot_flag_RNIQ9AIV[0] ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[5][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_539 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40157 \CPLD_Con_1/freq_t_RNIMOCGQC ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40158 \CPLD_Con_1/freq_t_RNIDK1OA3 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40157 ( input A, B, C, D, output Z ); ROM16X1A #(16'hB1F5) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40158 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFAFB) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_540 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40123 \CPLD_Con_1/g0_2_x1_N_2L1 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40159 \CPLD_Con_1/freq_slot_flag_RNIBOV481[0] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40159 ( input A, B, C, D, output Z ); ROM16X1A #(16'h3310) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_SLICE_541 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40047 \CPLD_Reg_1/state_ns_0_a4_0[1] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40020 \CPLD_Reg_1/state_ns_0_a4_0_RNO[1] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_542 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Reg_1/regtable[8]_1_sqmuxa_0_a2_1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40047 \CPLD_Reg_1/regtable[8]_1_sqmuxa_0_a2_1_RNIJS6KB_0 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_543 ( input D1, C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40020 \CPLD_Reg_1/regtable[1]_1_sqmuxa ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40068 \CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A_0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_544 ( input D1, C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Reg_1/regtable[7]_1_sqmuxa_0_a2_2 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40068 \CPLD_Reg_1/regtable[7]_1_sqmuxa_0_a2 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_545 ( input D1, C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Reg_1/regtable[6]_1_sqmuxa_0_a2_0 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40068 \CPLD_Reg_1/regtable[2]_1_sqmuxa_0_a2 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_546 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40012 \CPLD_Reg_1/regtable[0]_1_sqmuxa_1 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40062 \CPLD_Reg_1/regtable[5]_1_sqmuxa_0_a2 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_547 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40012 \CPLD_Reg_1/state_ns_0_a4_0_0[1] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40160 \CPLD_Reg_1/un10_0 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40160 ( input A, B, C, D, output Z ); ROM16X1A #(16'h3111) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_SLICE_548 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40082 \CPLD_Reg_1/rdata_reg_1_sqmuxa_2 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40068 \CPLD_Reg_1/rdata_reg_1_sqmuxa ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_549 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40043 \CPLD_Reg_1/err_flag8_1_0_a2_0 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40081 \CPLD_Reg_1/err_flag8_1_0_a2 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_550 ( input D1, C1, B1, A1, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40161 \BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNIVM1LH ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40001 \BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4_RNI1AK7O ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/recv_reg[10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/recv_reg[0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40161 ( input A, B, C, D, output Z ); ROM16X1A #(16'h3733) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module BUS_Con_1_SLICE_551 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40123 \BUS_Con_1/recv_reg_1_sqmuxa_1_0_o4 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40162 \BUS_Con_1/recv_reg_1_sqmuxa_1_i ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/recv_reg[11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40162 ( input A, B, C, D, output Z ); ROM16X1A #(16'h3777) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_552 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40163 \BUS_Con_1/bit_cnt_0_sqmuxa_1_i_o2 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40082 \BUS_Con_1/err_flag_RNO_0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40163 ( input A, B, C, D, output Z ); ROM16X1A #(16'hAEAE) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_553 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40008 \BUS_Con_1/bit_cnt_0_sqmuxa_1_i_a2 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40164 \BUS_Con_1/bit_cnt_0_sqmuxa_1_i_a2_RNISVNVG ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40164 ( input A, B, C, D, output Z ); ROM16X1A #(16'h02FF) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module BUS_Con_1_SLICE_554 ( input D1, C1, B1, A1, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40066 \BUS_Con_1/un1_bit_cnt_9_ac0_1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40099 \BUS_Con_1/un1_bit_cnt_9_ac0_5 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/recv_reg[18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/recv_reg[17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_555 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40165 \CPLD_Con_1/PMU_OC_4_8_0_a5[8] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40124 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNIPVVMC_0[28] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40165 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0100) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_556 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40166 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNINTVMC_0[26] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40124 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNINTVMC_2[26] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40166 ( input A, B, C, D, output Z ); ROM16X1A #(16'h8000) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_557 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40066 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNIPVVMC_3[28] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40020 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNIPVVMC_1[28] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_558 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40075 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNINTVMC_4[26] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40076 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNINTVMC_1[26] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_559 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40117 \CPLD_Con_1/PMU_OC_1_8_0_a5[5] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40076 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNI5E04G_0[29] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_560 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40117 \CPLD_Con_1/PMU_OC_1_8_0_a5[3] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40020 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNI3C04G_1[27] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_561 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40008 \CPLD_Con_1/PMU_OC_1_8_0_a5[1] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40080 \CPLD_Con_1/PMU_OC_1_8_0_o2_RNIGGDKI[17] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_562 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40077 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNINTVMC_6[26] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40066 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNINTVMC_5[26] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_563 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40008 \CPLD_Con_1/PMU_OC_2_8_0_a4[8] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40080 \CPLD_Con_1/PMU_OC_2_8_0_a2_RNIV5H461[8] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_564 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40117 \CPLD_Con_1/PMU_OC_1_8_0_a5[6] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40020 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNIJMENF[31] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_565 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40117 \CPLD_Con_1/PMU_OC_1_8_0_a5[4] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40020 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNIQSDNF_1[29] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_566 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40117 \CPLD_Con_1/PMU_OC_1_8_0_a5[2] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40020 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNIOQDNF_1[27] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_567 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNIQSDNF[29] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40076 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNIQSDNF_0[29] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_568 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNIOQDNF[27] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40076 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNIOQDNF_0[27] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_569 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40117 \CPLD_Con_1/PMU_OC_3_8_0_a4[25] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40047 \CPLD_Con_1/PMU_OC_3_8_0_a4[29] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_570 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40117 \CPLD_Con_1/PMU_OC_3_8_0_a4[24] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40062 \CPLD_Con_1/PMU_OC_3_8_0_a4[30] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_571 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40117 \CPLD_Con_1/PMU_OC_3_8_0_a4[9] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40047 \CPLD_Con_1/PMU_OC_3_8_0_a4[13] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_572 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40117 \CPLD_Con_1/PMU_OC_3_8_0_a4[17] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40080 \CPLD_Con_1/PMU_OC_3_8_0_a4[19] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][13] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][12] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_573 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Con_1/PMU_OC_3_8_0_a4[22] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40047 \CPLD_Con_1/PMU_OC_3_8_0_a4[20] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][15] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][14] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_574 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Con_1/PMU_OC_3_8_0_a4[23] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40047 \CPLD_Con_1/PMU_OC_3_8_0_a4[21] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][17] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][16] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_575 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Con_1/PMU_OC_2_8_0_a4[30] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40047 \CPLD_Con_1/PMU_OC_2_8_0_a4[28] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_576 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Con_1/PMU_OC_2_8_0_a4[31] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40047 \CPLD_Con_1/PMU_OC_2_8_0_a4[29] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_577 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Con_1/PMU_OC_2_8_0_a4[15] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40047 \CPLD_Con_1/PMU_OC_2_8_0_a4[13] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_578 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Con_1/PMU_OC_2_8_0_a4[23] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40080 \CPLD_Con_1/PMU_OC_2_8_0_a4[19] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_579 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Con_1/PMU_OC_2_8_0_a4[22] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40047 \CPLD_Con_1/PMU_OC_2_8_0_a4[20] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_580 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40013 \CPLD_Con_1/dc_slot_flag_RNIANH1R_0[0] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40167 \CPLD_Con_1/un1_DMM_en_1_sqmuxa_tz ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40167 ( input A, B, C, D, output Z ); ROM16X1A #(16'h0116) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_SLICE_581 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40081 \CPLD_Reg_1/regtable[12]_1_sqmuxa_0_a2 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40062 \CPLD_Reg_1/regtable[8]_1_sqmuxa_0_a2_1_RNIJS6KB ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][5] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0026 \CPLD_Reg_1/regtable[0][4] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_582 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40076 \CPLD_Reg_1/regtable[14]_1_sqmuxa_0_a2 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40080 \CPLD_Reg_1/regtable[13]_1_sqmuxa_0_a2 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_583 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40066 \CPLD_Reg_1/regtable[10]_1_sqmuxa_0_a2 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40075 \CPLD_Reg_1/regtable[9]_1_sqmuxa_0_a2 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0026 \CPLD_Reg_1/regtable[0][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_584 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40118 \CPLD_Reg_1/regtable[5]_1_sqmuxa_0_a2_0_0 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40079 \CPLD_Reg_1/un34_regtable_1_0_0 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_585 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40116 \CPLD_Con_1/PMU_OC_4_8_0_a2_0[28] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40099 \CPLD_Con_1/PMU_OC_4_8_0_a5[23] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_586 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40109 \CPLD_Con_1/PMU_OC_4_8_0_a2[12] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40116 \CPLD_Con_1/PMU_OC_4_8_0_a2[13] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_587 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40107 \CPLD_Con_1/PMU_OC_4_8_0_a2_0[26] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40107 \CPLD_Con_1/PMU_OC_4d_RNO[1] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_588 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40045 \CPLD_Con_1/N_155_i ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40075 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNIPVVMC_2[28] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_589 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40117 \CPLD_Con_1/PMU_OC_1_8_0_a5[7] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40020 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNI5E04G_1[29] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_590 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40081 \CPLD_Con_1/PMU_OC_1_8_0_o2_RNI5VQ7I_0[17] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40081 \CPLD_Con_1/PMU_OC_1_8_0_o2_RNIGGDKI_0[17] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_591 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNIJLDNF[26] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40062 \CPLD_Con_1/PMU_OC_1_8_0_a2_RNICDCNF[10] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[13][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_592 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40062 \CPLD_Con_1/PMU_OC_3_8_0_a4[15] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40062 \CPLD_Con_1/PMU_OC_3_8_0_a4[31] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[1][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_593 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40099 \CPLD_Con_1/PMU_OC_3_8_0_a4[14] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40116 \CPLD_Con_1/PMU_OC_3_8_0_a4[12] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][7] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][6] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_594 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40168 \CPLD_Con_1/g0_2_N_2L1_1_N_2L1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40079 \CPLD_Con_1/OC_x0161_1_RNI9RGEE1 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40168 ( input A, B, C, D, output Z ); ROM16X1A #(16'h007F) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_595 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40099 \CPLD_Con_1/PMU_OC_2_8_0_a4[14] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40116 \CPLD_Con_1/PMU_OC_2_8_0_a4[12] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_596 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40080 \CPLD_Con_1/DMM_en_22_0_a2_1_1[7] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40080 \CPLD_Con_1/DMM_en_22_0_a2_1[7] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_597 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40121 \CPLD_Con_1/N_13_1.m2 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40169 \CPLD_Con_1/N_13_1.m5 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40169 ( input A, B, C, D, output Z ); ROM16X1A #(16'h1717) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_598 ( input D1, C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40170 \CPLD_Con_1/freq_t_RNIL44QK1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40099 \CPLD_Con_1/io_RC_1_sqmuxa ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40170 ( input A, B, C, D, output Z ); ROM16X1A #(16'h80FF) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_599 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40045 \CPLD_Con_1/g0_14_N_2L1 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40113 \CPLD_Con_1/DMM_en_11_sqmuxa_0_147_i_i_o2 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/recv_reg[22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_600 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40115 \CPLD_Con_1/RC_RLSel_13_0_a2[4] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40116 \CPLD_Con_1/RC_RLSel_13_0_a2[8] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_601 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40107 \CPLD_Con_1/RC_RLSel_13_0_a2[15] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40116 \CPLD_Con_1/RC_RLSel_13_0_a2[7] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_602 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40116 \CPLD_Con_1/RC_RLSel_13_0_a2[10] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40115 \CPLD_Con_1/RC_RLSel_13_0_a2[6] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_603 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40116 \CPLD_Con_1/RC_RLSel_13_0_a2[9] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40115 \CPLD_Con_1/RC_RLSel_13_0_a2[5] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_604 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40115 \CPLD_Reg_1/regtable[4]_1_sqmuxa_0_a2 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40099 \CPLD_Reg_1/regtable[6]_1_sqmuxa_0_a2 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0026 \CPLD_Reg_1/regtable[0][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_605 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40171 \BUS_Con_1/miso_shift_1_sqmuxa_i_0 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40172 \BUS_Con_1/sclk_sync_RNIUSFSG[1] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/recv_reg[14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0004 \BUS_Con_1/recv_reg[13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40171 ( input A, B, C, D, output Z ); ROM16X1A #(16'hBABA) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40172 ( input A, B, C, D, output Z ); ROM16X1A #(16'hFF5D) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_606 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40173 \BUS_Con_1/state_ns_1_0_.m6_i_a2 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40174 \BUS_Con_1/data_ready_RNIG4BLN ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40173 ( input A, B, C, D, output Z ); ROM16X1A #(16'hE0E0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40174 ( input A, B, C, D, output Z ); ROM16X1A #(16'h02C2) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_607 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40043 \CPLD_Con_1/g0_2_N_5L7_N_6L9_0_1 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40075 \CPLD_Con_1/PMU_OC_2_8_0_a2_RNIV5H461_1[8] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[14][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_608 ( input B1, A1, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40033 \CPLD_Con_1/un1_i_freq_relay3_1lto8_i_o2 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40123 \CPLD_Con_1/un1_i_freq_relay3_2lto7_1 ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_609 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40084 \CPLD_Con_1/un1_exec_flag_3_0_0 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40084 \CPLD_Con_1/un1_exec_flag_2_0_0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[7][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_610 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40104 \CPLD_Con_1/un1_i_DC_Con1_1_iv_0[4] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40104 \CPLD_Con_1/un1_i_DC_Con1_iv_0_0[3] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_611 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40104 \CPLD_Con_1/un1_i_DC_Con1_iv_0_0[0] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40104 \CPLD_Con_1/un1_i_DC_Con1_1_iv_0_0[0] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_612 ( input D1, C1, B1, A1, D0, C0, B0, A0, M0, CE, CLK, output F0, Q0, F1 ); wire VCCI, GNDI, M0_dly, CLK_dly, CE_dly; lut40104 \CPLD_Con_1/un1_i_DC_Con1_1_iv_0[3] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40175 \CPLD_Con_1/un1_i_DC_Con1_1_iv_0[1] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[7]_fast[7] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40175 ( input A, B, C, D, output Z ); ROM16X1A #(16'hEAC0) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_613 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40099 \CPLD_Con_1/RC_RLSel_13_0_a2[13] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40099 \CPLD_Con_1/RC_RLSel_13_0_a2[14] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[4][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_614 ( input D1, C1, B1, A1, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40105 \CPLD_Con_1/g0_21_N_2L1 ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40033 \CPLD_Con_1/g0_2_1 ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][9] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][8] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_615 ( input B1, A1, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40043 \CPLD_Con_1/g0_12_N_2L1 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40043 \CPLD_Con_1/g0_10_N_2L1 ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[6][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_616 ( input B1, A1, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40043 \CPLD_Con_1/DMM_en_22_0_a2_2_1[4] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40024 \CPLD_Con_1/DMM_en_22_0_a2_1_1[12] ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][0] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Con_1_SLICE_617 ( input B1, A1, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40123 \CPLD_Con_1/freq_t_RNI8PH26 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40068 \CPLD_Con_1/dc_t_RNI2Q6P8_0 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0004 \CPLD_Con_1/dc_slot_flag_fast[3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \CPLD_Con_1/dc_slot_flag_fast[2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_618 ( input B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40176 \CPLD_Reg_1/busy_flag_RNO_0 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40177 \CPLD_Reg_1/regtable[1]_1_sqmuxa_RNIAN41A ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40176 ( input A, B, C, D, output Z ); ROM16X1A #(16'hDDDD) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module lut40177 ( input A, B, C, D, output Z ); ROM16X1A #(16'hC8C8) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module CPLD_Reg_1_SLICE_619 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut4 \CPLD_Reg_1/regtable[7]_1_sqmuxa_0_a2_0 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40077 \CPLD_Reg_1/regtable[8]_1_sqmuxa_0_a2 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_620 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut4 \CPLD_Con_1/un1_i_DC_Con1_1_iv_0_a5_1[0] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40020 \CPLD_Con_1/PMU_OC_4_8_0_a2_RNINTVMC_3[26] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][1] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[3][19] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_621 ( input B1, A1, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40043 \CPLD_Con_1/un1_DMM_en_102_1 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40024 \CPLD_Con_1/DMM_en_22_2[16] ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_622 ( input D1, C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40104 \CPLD_Con_1/un1_i_DC_Con1_1_iv_0[5] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40077 \CPLD_Con_1/PMU_OC_2_8_0_a4_1[1] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[15][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_623 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut4 \CPLD_Con_1/un1_i_DC_Con1_1_iv_RNO[3] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40080 \CPLD_Con_1/PMU_OC_4_8_0_a2[19] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_624 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40043 \CPLD_Con_1/RC_VISel_6.m9_0_a5_1_1 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40104 \CPLD_Con_1/un1_i_DC_Con1_iv_0_1[4] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][23] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][22] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_625 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40033 \CPLD_Con_1/err_flag13_0_o2 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40104 \CPLD_Con_1/un1_i_DC_Con1_iv_0_0[2] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_626 ( input B1, A1, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40123 \CPLD_Con_1/g0_15 ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40043 \CPLD_Con_1/OC_x0138lto8_3 ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[12][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_627 ( input B1, A1, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut4 \CPLD_Con_1/un1_i_DC_Con1_1_iv_RNO[4] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut4 \CPLD_Con_1/un1_i_DC_Con1_iv_0_a5_2[3] ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[8][2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_628 ( input C1, B1, A1, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut40116 \BUS_Con_1/miso_shift_rst[31] ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40123 \CPLD_Con_1/dc_slot_flag_0_rep1_RNI421QK ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0004 \CPLD_Con_1/dc_slot_flag[3] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \CPLD_Con_1/dc_slot_flag[2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_629 ( input C1, B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40082 \CPLD_Reg_1/regtable[0]_1_sqmuxa_0_a2 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40082 \CPLD_Reg_1/regtable[3]_1_sqmuxa_0_a2 ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][18] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[0][17] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_630 ( input C1, B1, A1, D0, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40113 \CPLD_Reg_1/o_err ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40178 \CPLD_Reg_1/un11_0 ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][14] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][13] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module lut40178 ( input A, B, C, D, output Z ); ROM16X1A #(16'h1113) INST10( .AD0(A), .AD1(B), .AD2(C), .AD3(D), .DO0(Z)); endmodule module SLICE_631 ( input C1, B1, A1, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40045 \BUS_Con_1/err_flag_1_sqmuxa_0_a2_0_0 ( .A(A1), .B(B1), .C(C1), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40176 \BUS_Con_1/err_flag_1_sqmuxa_0_o4 ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][21] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[10][20] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_632 ( input B1, A1, D0, C0, B0, A0, M1, M0, CE, LSR, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, LSR_NOTIN, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; lut4 \CPLD_Con_1/un1_i_DC_Con1_1_iv_RNO[1] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40063 \CPLD_Con_1/DMM_en_22_0[15] ( .A(A0), .B(B0), .C(C0), .D(D0), .Z(F0)); vmuxregsre0004 \BUS_Con_1/tx_buffer[12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); vmuxregsre0004 \BUS_Con_1/tx_buffer[11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (D0 => F0) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_633 ( input D1, C1, B1, A1, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut40020 \CPLD_Con_1/DMM_en_22_0_a2_2[12] ( .A(A1), .B(B1), .C(C1), .D(D1), .Z(F1)); lut40012 \CPLD_Con_1/DMM_en_22_0_a2_2[15] ( .A(A0), .B(B0), .C(GNDI), .D(GNDI), .Z(F0)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][12] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[11][11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (D1 => F1) = (0:0:0,0:0:0); (C1 => F1) = (0:0:0,0:0:0); (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module SLICE_634 ( input B1, A1, C0, B0, A0, M1, M0, CE, CLK, output F0, Q0, F1, Q1 ); wire GNDI, VCCI, M1_dly, CLK_dly, M0_dly, CE_dly; lut4 \CPLD_Con_1/un1_i_DC_Con1_1_iv_RNO[5] ( .A(A1), .B(B1), .C(GNDI), .D(GNDI), .Z(F1)); gnd DRIVEGND( .PWR0(GNDI)); lut40107 \CPLD_Con_1/PMU_OC_3_8_0_a4_1[1] ( .A(A0), .B(B0), .C(C0), .D(GNDI), .Z(F0)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][16] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); vmuxregsre0022 \CPLD_Reg_1/regtable[2][15] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (B1 => F1) = (0:0:0,0:0:0); (A1 => F1) = (0:0:0,0:0:0); (C0 => F0) = (0:0:0,0:0:0); (B0 => F0) = (0:0:0,0:0:0); (A0 => F0) = (0:0:0,0:0:0); (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_672 ( input M1, M0, CE, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/regtable[9]_fast[4] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9]_fast[5] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_673 ( input M1, M0, CE, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/regtable[9]_fast[6] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9]_fast[7] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_830 ( input M1, M0, CE, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/regtable[9][19] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][1] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_831 ( input M1, M0, CE, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/regtable[9][2] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][3] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_832 ( input M1, M0, CE, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/regtable[9][4] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][5] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_833 ( input M1, M0, CE, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/regtable[9][6] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][7] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_834 ( input M1, M0, CE, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/regtable[9][8] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][9] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module CPLD_Reg_1_SLICE_835 ( input M1, M0, CE, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly; vmuxregsre0022 \CPLD_Reg_1/regtable[9][17] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0022 \CPLD_Reg_1/regtable[9][18] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_864 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/addr_out_0_rep1 ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/addr_out_0_rep2 ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_865 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/addr_out_2_rep1 ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/addr_out_2_rep2 ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_866 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/addr_out_3_rep1 ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/addr_out_3_rep2 ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_867 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/addr_out_fast[0] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/addr_out_fast[2] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_872 ( input M0, CE, LSR, CLK, output Q0 ); wire VCCI, GNDI, M0_dly, CLK_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/data_out[9] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => Q0) = (0:0:0,0:0:0); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module BUS_Con_1_SLICE_873 ( input M1, M0, CE, LSR, CLK, output Q0, Q1 ); wire VCCI, GNDI, M1_dly, CLK_dly, M0_dly, CE_dly, LSR_dly; vmuxregsre0004 \BUS_Con_1/data_out[10] ( .D0(M1_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q1)); vcc DRIVEVCC( .PWR1(VCCI)); gnd DRIVEGND( .PWR0(GNDI)); vmuxregsre0004 \BUS_Con_1/data_out[11] ( .D0(M0_dly), .D1(VCCI), .SD(GNDI), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(Q0)); specify (CLK => Q0) = (0:0:0,0:0:0); (CLK => Q1) = (0:0:0,0:0:0); $setuphold (posedge CLK, M1, 0:0:0, 0:0:0,,,, CLK_dly, M1_dly); $setuphold (posedge CLK, M0, 0:0:0, 0:0:0,,,, CLK_dly, M0_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge LSR, 0:0:0); $width (negedge LSR, 0:0:0); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_miso ( input IOLDO, PADDT, output o_miso ); xo2iobuf o_miso_pad( .I(IOLDO), .T(PADDT), .PAD(o_miso)); specify (IOLDO => o_miso) = (0:0:0,0:0:0); (PADDT => o_miso) = (0:0:0,0:0:0,0:0:0,0:0:0,0:0:0,0:0:0); endspecify endmodule module xo2iobuf ( input I, T, output PAD ); OBZ INST5( .I(I), .T(T), .O(PAD)); endmodule module o_miso_MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \BUS_Con_1_miso_shiftio[31] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module mfflsre ( input D0, SP, CK, LSR, output Q ); FD1P3DX INST01( .D(D0), .SP(SP), .CK(CK), .CD(LSR), .Q(Q)); defparam INST01.GSR = "DISABLED"; endmodule module o_wready ( input PADDO, output o_wready ); xo2iobuf0179 o_wready_pad( .I(PADDO), .PAD(o_wready)); specify (PADDO => o_wready) = (0:0:0,0:0:0); endspecify endmodule module xo2iobuf0179 ( input I, output PAD ); OB INST5( .I(I), .O(PAD)); endmodule module i_sys_clk ( output PADDI, input i_sys_clk ); xo2iobuf0180 i_sys_clk_pad( .Z(PADDI), .PAD(i_sys_clk)); specify (i_sys_clk => PADDI) = (0:0:0,0:0:0); $width (posedge i_sys_clk, 0:0:0); $width (negedge i_sys_clk, 0:0:0); endspecify endmodule module xo2iobuf0180 ( output Z, input PAD ); IBPD INST1( .I(PAD), .O(Z)); endmodule module o_PMU_OC_4_31_ ( input IOLDO, output oPMUOC431 ); xo2iobuf0179 \o_PMU_OC_4_pad[31] ( .I(IOLDO), .PAD(oPMUOC431)); specify (IOLDO => oPMUOC431) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_31__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[31] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module mfflsre0181 ( input D0, SP, CK, LSR, output Q ); FD1P3IX INST01( .D(D0), .SP(SP), .CK(CK), .CD(LSR), .Q(Q)); defparam INST01.GSR = "DISABLED"; endmodule module o_PMU_OC_4_30_ ( input IOLDO, output oPMUOC430 ); xo2iobuf0179 \o_PMU_OC_4_pad[30] ( .I(IOLDO), .PAD(oPMUOC430)); specify (IOLDO => oPMUOC430) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_30__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[30] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_29_ ( input IOLDO, output oPMUOC429 ); xo2iobuf0179 \o_PMU_OC_4_pad[29] ( .I(IOLDO), .PAD(oPMUOC429)); specify (IOLDO => oPMUOC429) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_29__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[29] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_28_ ( input IOLDO, output oPMUOC428 ); xo2iobuf0179 \o_PMU_OC_4_pad[28] ( .I(IOLDO), .PAD(oPMUOC428)); specify (IOLDO => oPMUOC428) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_28__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[28] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_27_ ( input IOLDO, output oPMUOC427 ); xo2iobuf0179 \o_PMU_OC_4_pad[27] ( .I(IOLDO), .PAD(oPMUOC427)); specify (IOLDO => oPMUOC427) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_27__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[27] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_26_ ( input IOLDO, output oPMUOC426 ); xo2iobuf0179 \o_PMU_OC_4_pad[26] ( .I(IOLDO), .PAD(oPMUOC426)); specify (IOLDO => oPMUOC426) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_26__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[26] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_25_ ( input IOLDO, output oPMUOC425 ); xo2iobuf0179 \o_PMU_OC_4_pad[25] ( .I(IOLDO), .PAD(oPMUOC425)); specify (IOLDO => oPMUOC425) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_25__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[25] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_24_ ( input IOLDO, output oPMUOC424 ); xo2iobuf0179 \o_PMU_OC_4_pad[24] ( .I(IOLDO), .PAD(oPMUOC424)); specify (IOLDO => oPMUOC424) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_24__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[24] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_23_ ( input IOLDO, output oPMUOC423 ); xo2iobuf0179 \o_PMU_OC_4_pad[23] ( .I(IOLDO), .PAD(oPMUOC423)); specify (IOLDO => oPMUOC423) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_23__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[23] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IOLDO)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_22_ ( input IOLDO, output oPMUOC422 ); xo2iobuf0179 \o_PMU_OC_4_pad[22] ( .I(IOLDO), .PAD(oPMUOC422)); specify (IOLDO => oPMUOC422) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_22__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[22] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IOLDO)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_21_ ( input IOLDO, output oPMUOC421 ); xo2iobuf0179 \o_PMU_OC_4_pad[21] ( .I(IOLDO), .PAD(oPMUOC421)); specify (IOLDO => oPMUOC421) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_21__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[21] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_20_ ( input PADDO, output oPMUOC420 ); xo2iobuf0179 \o_PMU_OC_4_pad[20] ( .I(PADDO), .PAD(oPMUOC420)); specify (PADDO => oPMUOC420) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_19_ ( input IOLDO, output oPMUOC419 ); xo2iobuf0179 \o_PMU_OC_4_pad[19] ( .I(IOLDO), .PAD(oPMUOC419)); specify (IOLDO => oPMUOC419) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_19__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[19] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_18_ ( input IOLDO, output oPMUOC418 ); xo2iobuf0179 \o_PMU_OC_4_pad[18] ( .I(IOLDO), .PAD(oPMUOC418)); specify (IOLDO => oPMUOC418) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_18__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[18] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IOLDO)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_17_ ( input IOLDO, output oPMUOC417 ); xo2iobuf0179 \o_PMU_OC_4_pad[17] ( .I(IOLDO), .PAD(oPMUOC417)); specify (IOLDO => oPMUOC417) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_17__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[17] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_16_ ( input IOLDO, output oPMUOC416 ); wire GNDI; xo2iobuf0182 \o_PMU_OC_4_pad[16] ( .I(IOLDO), .T(GNDI), .PAD(oPMUOC416)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oPMUOC416) = (0:0:0,0:0:0); endspecify endmodule module xo2iobuf0182 ( input I, T, output PAD ); OBZPD INST5( .I(I), .T(T), .O(PAD)); endmodule module o_PMU_OC_4_16__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_OC_x17io[3] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_15_ ( input IOLDO, output oPMUOC415 ); xo2iobuf0179 \o_PMU_OC_4_pad[15] ( .I(IOLDO), .PAD(oPMUOC415)); specify (IOLDO => oPMUOC415) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_15__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[15] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_14_ ( input IOLDO, output oPMUOC414 ); xo2iobuf0179 \o_PMU_OC_4_pad[14] ( .I(IOLDO), .PAD(oPMUOC414)); specify (IOLDO => oPMUOC414) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_14__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[14] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_13_ ( input IOLDO, output oPMUOC413 ); xo2iobuf0179 \o_PMU_OC_4_pad[13] ( .I(IOLDO), .PAD(oPMUOC413)); specify (IOLDO => oPMUOC413) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_13__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[13] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_12_ ( input IOLDO, output oPMUOC412 ); xo2iobuf0179 \o_PMU_OC_4_pad[12] ( .I(IOLDO), .PAD(oPMUOC412)); specify (IOLDO => oPMUOC412) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_12__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[12] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_11_ ( input IOLDO, output oPMUOC411 ); xo2iobuf0179 \o_PMU_OC_4_pad[11] ( .I(IOLDO), .PAD(oPMUOC411)); specify (IOLDO => oPMUOC411) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_11__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[11] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_10_ ( input IOLDO, output oPMUOC410 ); xo2iobuf0179 \o_PMU_OC_4_pad[10] ( .I(IOLDO), .PAD(oPMUOC410)); specify (IOLDO => oPMUOC410) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_10__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[10] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_9_ ( input IOLDO, output oPMUOC49 ); xo2iobuf0179 \o_PMU_OC_4_pad[9] ( .I(IOLDO), .PAD(oPMUOC49)); specify (IOLDO => oPMUOC49) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_9__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[9] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_8_ ( input IOLDO, output oPMUOC48 ); xo2iobuf0179 \o_PMU_OC_4_pad[8] ( .I(IOLDO), .PAD(oPMUOC48)); specify (IOLDO => oPMUOC48) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_8__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[8] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_7_ ( input IOLDO, output oPMUOC47 ); xo2iobuf0179 \o_PMU_OC_4_pad[7] ( .I(IOLDO), .PAD(oPMUOC47)); specify (IOLDO => oPMUOC47) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_7__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[7] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IOLDO)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_6_ ( input IOLDO, output oPMUOC46 ); xo2iobuf0179 \o_PMU_OC_4_pad[6] ( .I(IOLDO), .PAD(oPMUOC46)); specify (IOLDO => oPMUOC46) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_6__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[6] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IOLDO)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_5_ ( input PADDO, output oPMUOC45 ); xo2iobuf0179 \o_PMU_OC_4_pad[5] ( .I(PADDO), .PAD(oPMUOC45)); specify (PADDO => oPMUOC45) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_4_ ( input PADDO, output oPMUOC44 ); xo2iobuf0179 \o_PMU_OC_4_pad[4] ( .I(PADDO), .PAD(oPMUOC44)); specify (PADDO => oPMUOC44) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_3_ ( input IOLDO, output oPMUOC43 ); xo2iobuf0179 \o_PMU_OC_4_pad[3] ( .I(IOLDO), .PAD(oPMUOC43)); specify (IOLDO => oPMUOC43) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_3__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[3] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_2_ ( input IOLDO, output oPMUOC42 ); xo2iobuf0179 \o_PMU_OC_4_pad[2] ( .I(IOLDO), .PAD(oPMUOC42)); specify (IOLDO => oPMUOC42) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_2__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_4io[2] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IOLDO)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_4_1_ ( input PADDO, output oPMUOC41 ); xo2iobuf0179 \o_PMU_OC_4_pad[1] ( .I(PADDO), .PAD(oPMUOC41)); specify (PADDO => oPMUOC41) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_0_ ( input IOLDO, output oPMUOC40 ); wire GNDI; xo2iobuf0182 \o_PMU_OC_4_pad[0] ( .I(IOLDO), .T(GNDI), .PAD(oPMUOC40)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oPMUOC40) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_4_0__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_OC_x01io[3] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_31_ ( input IOLDO, output oPMUOC331 ); xo2iobuf0179 \o_PMU_OC_3_pad[31] ( .I(IOLDO), .PAD(oPMUOC331)); specify (IOLDO => oPMUOC331) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_31__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[31] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_30_ ( input IOLDO, output oPMUOC330 ); xo2iobuf0179 \o_PMU_OC_3_pad[30] ( .I(IOLDO), .PAD(oPMUOC330)); specify (IOLDO => oPMUOC330) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_30__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[30] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_29_ ( input IOLDO, output oPMUOC329 ); xo2iobuf0179 \o_PMU_OC_3_pad[29] ( .I(IOLDO), .PAD(oPMUOC329)); specify (IOLDO => oPMUOC329) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_29__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[29] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_28_ ( input IOLDO, output oPMUOC328 ); xo2iobuf0179 \o_PMU_OC_3_pad[28] ( .I(IOLDO), .PAD(oPMUOC328)); specify (IOLDO => oPMUOC328) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_28__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[28] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_27_ ( input IOLDO, output oPMUOC327 ); xo2iobuf0179 \o_PMU_OC_3_pad[27] ( .I(IOLDO), .PAD(oPMUOC327)); specify (IOLDO => oPMUOC327) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_27__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[27] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_26_ ( input IOLDO, output oPMUOC326 ); xo2iobuf0179 \o_PMU_OC_3_pad[26] ( .I(IOLDO), .PAD(oPMUOC326)); specify (IOLDO => oPMUOC326) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_26__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[26] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_25_ ( input IOLDO, output oPMUOC325 ); xo2iobuf0179 \o_PMU_OC_3_pad[25] ( .I(IOLDO), .PAD(oPMUOC325)); specify (IOLDO => oPMUOC325) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_25__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[25] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_24_ ( input IOLDO, output oPMUOC324 ); xo2iobuf0179 \o_PMU_OC_3_pad[24] ( .I(IOLDO), .PAD(oPMUOC324)); specify (IOLDO => oPMUOC324) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_24__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[24] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_23_ ( input IOLDO, output oPMUOC323 ); xo2iobuf0179 \o_PMU_OC_3_pad[23] ( .I(IOLDO), .PAD(oPMUOC323)); specify (IOLDO => oPMUOC323) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_23__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[23] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_22_ ( input IOLDO, output oPMUOC322 ); xo2iobuf0179 \o_PMU_OC_3_pad[22] ( .I(IOLDO), .PAD(oPMUOC322)); specify (IOLDO => oPMUOC322) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_22__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[22] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_21_ ( input IOLDO, output oPMUOC321 ); xo2iobuf0179 \o_PMU_OC_3_pad[21] ( .I(IOLDO), .PAD(oPMUOC321)); specify (IOLDO => oPMUOC321) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_21__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[21] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_20_ ( input IOLDO, output oPMUOC320 ); xo2iobuf0179 \o_PMU_OC_3_pad[20] ( .I(IOLDO), .PAD(oPMUOC320)); specify (IOLDO => oPMUOC320) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_20__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[20] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_19_ ( input IOLDO, output oPMUOC319 ); xo2iobuf0179 \o_PMU_OC_3_pad[19] ( .I(IOLDO), .PAD(oPMUOC319)); specify (IOLDO => oPMUOC319) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_19__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[19] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_18_ ( input IOLDO, output oPMUOC318 ); xo2iobuf0179 \o_PMU_OC_3_pad[18] ( .I(IOLDO), .PAD(oPMUOC318)); specify (IOLDO => oPMUOC318) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_18__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[18] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_17_ ( input IOLDO, output oPMUOC317 ); xo2iobuf0179 \o_PMU_OC_3_pad[17] ( .I(IOLDO), .PAD(oPMUOC317)); specify (IOLDO => oPMUOC317) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_17__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[17] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_16_ ( input IOLDO, output oPMUOC316 ); wire GNDI; xo2iobuf0182 \o_PMU_OC_3_pad[16] ( .I(IOLDO), .T(GNDI), .PAD(oPMUOC316)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oPMUOC316) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_16__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_OC_x17io[2] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_15_ ( input IOLDO, output oPMUOC315 ); xo2iobuf0179 \o_PMU_OC_3_pad[15] ( .I(IOLDO), .PAD(oPMUOC315)); specify (IOLDO => oPMUOC315) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_15__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[15] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_14_ ( input IOLDO, output oPMUOC314 ); xo2iobuf0179 \o_PMU_OC_3_pad[14] ( .I(IOLDO), .PAD(oPMUOC314)); specify (IOLDO => oPMUOC314) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_14__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[14] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_13_ ( input IOLDO, output oPMUOC313 ); xo2iobuf0179 \o_PMU_OC_3_pad[13] ( .I(IOLDO), .PAD(oPMUOC313)); specify (IOLDO => oPMUOC313) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_13__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[13] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_12_ ( input IOLDO, output oPMUOC312 ); xo2iobuf0179 \o_PMU_OC_3_pad[12] ( .I(IOLDO), .PAD(oPMUOC312)); specify (IOLDO => oPMUOC312) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_12__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[12] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_11_ ( input IOLDO, output oPMUOC311 ); xo2iobuf0179 \o_PMU_OC_3_pad[11] ( .I(IOLDO), .PAD(oPMUOC311)); specify (IOLDO => oPMUOC311) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_11__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[11] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_10_ ( input IOLDO, output oPMUOC310 ); xo2iobuf0179 \o_PMU_OC_3_pad[10] ( .I(IOLDO), .PAD(oPMUOC310)); specify (IOLDO => oPMUOC310) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_10__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[10] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_9_ ( input IOLDO, output oPMUOC39 ); xo2iobuf0179 \o_PMU_OC_3_pad[9] ( .I(IOLDO), .PAD(oPMUOC39)); specify (IOLDO => oPMUOC39) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_9__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[9] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_8_ ( input IOLDO, output oPMUOC38 ); xo2iobuf0179 \o_PMU_OC_3_pad[8] ( .I(IOLDO), .PAD(oPMUOC38)); specify (IOLDO => oPMUOC38) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_8__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[8] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_7_ ( input PADDO, output oPMUOC37 ); xo2iobuf0179 \o_PMU_OC_3_pad[7] ( .I(PADDO), .PAD(oPMUOC37)); specify (PADDO => oPMUOC37) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_6_ ( input IOLDO, output oPMUOC36 ); xo2iobuf0179 \o_PMU_OC_3_pad[6] ( .I(IOLDO), .PAD(oPMUOC36)); specify (IOLDO => oPMUOC36) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_6__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[6] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_5_ ( input PADDO, output oPMUOC35 ); xo2iobuf0179 \o_PMU_OC_3_pad[5] ( .I(PADDO), .PAD(oPMUOC35)); specify (PADDO => oPMUOC35) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_4_ ( input IOLDO, output oPMUOC34 ); xo2iobuf0179 \o_PMU_OC_3_pad[4] ( .I(IOLDO), .PAD(oPMUOC34)); specify (IOLDO => oPMUOC34) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_4__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[4] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_3_ ( input PADDO, output oPMUOC33 ); xo2iobuf0179 \o_PMU_OC_3_pad[3] ( .I(PADDO), .PAD(oPMUOC33)); specify (PADDO => oPMUOC33) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_2_ ( input IOLDO, output oPMUOC32 ); xo2iobuf0179 \o_PMU_OC_3_pad[2] ( .I(IOLDO), .PAD(oPMUOC32)); specify (IOLDO => oPMUOC32) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_2__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_3io[2] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_3_1_ ( input PADDO, output oPMUOC31 ); xo2iobuf0179 \o_PMU_OC_3_pad[1] ( .I(PADDO), .PAD(oPMUOC31)); specify (PADDO => oPMUOC31) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_0_ ( input IOLDO, output oPMUOC30 ); xo2iobuf0179 \o_PMU_OC_3_pad[0] ( .I(IOLDO), .PAD(oPMUOC30)); specify (IOLDO => oPMUOC30) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_3_0__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_OC_x01io[2] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_31_ ( input IOLDO, output oPMUOC231 ); xo2iobuf0179 \o_PMU_OC_2_pad[31] ( .I(IOLDO), .PAD(oPMUOC231)); specify (IOLDO => oPMUOC231) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_31__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[31] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_30_ ( input IOLDO, output oPMUOC230 ); xo2iobuf0179 \o_PMU_OC_2_pad[30] ( .I(IOLDO), .PAD(oPMUOC230)); specify (IOLDO => oPMUOC230) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_30__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[30] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_29_ ( input IOLDO, output oPMUOC229 ); xo2iobuf0179 \o_PMU_OC_2_pad[29] ( .I(IOLDO), .PAD(oPMUOC229)); specify (IOLDO => oPMUOC229) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_29__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[29] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_28_ ( input IOLDO, output oPMUOC228 ); xo2iobuf0179 \o_PMU_OC_2_pad[28] ( .I(IOLDO), .PAD(oPMUOC228)); specify (IOLDO => oPMUOC228) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_28__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[28] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_27_ ( input IOLDO, output oPMUOC227 ); xo2iobuf0179 \o_PMU_OC_2_pad[27] ( .I(IOLDO), .PAD(oPMUOC227)); specify (IOLDO => oPMUOC227) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_27__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[27] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_26_ ( input IOLDO, output oPMUOC226 ); xo2iobuf0179 \o_PMU_OC_2_pad[26] ( .I(IOLDO), .PAD(oPMUOC226)); specify (IOLDO => oPMUOC226) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_26__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[26] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_25_ ( input IOLDO, output oPMUOC225 ); xo2iobuf0179 \o_PMU_OC_2_pad[25] ( .I(IOLDO), .PAD(oPMUOC225)); specify (IOLDO => oPMUOC225) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_25__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[25] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_24_ ( input IOLDO, output oPMUOC224 ); xo2iobuf0179 \o_PMU_OC_2_pad[24] ( .I(IOLDO), .PAD(oPMUOC224)); specify (IOLDO => oPMUOC224) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_24__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[24] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_23_ ( input IOLDO, output oPMUOC223 ); xo2iobuf0179 \o_PMU_OC_2_pad[23] ( .I(IOLDO), .PAD(oPMUOC223)); specify (IOLDO => oPMUOC223) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_23__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[23] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_22_ ( input IOLDO, output oPMUOC222 ); xo2iobuf0179 \o_PMU_OC_2_pad[22] ( .I(IOLDO), .PAD(oPMUOC222)); specify (IOLDO => oPMUOC222) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_22__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[22] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_21_ ( input IOLDO, output oPMUOC221 ); xo2iobuf0179 \o_PMU_OC_2_pad[21] ( .I(IOLDO), .PAD(oPMUOC221)); specify (IOLDO => oPMUOC221) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_21__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[21] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_20_ ( input IOLDO, output oPMUOC220 ); xo2iobuf0179 \o_PMU_OC_2_pad[20] ( .I(IOLDO), .PAD(oPMUOC220)); specify (IOLDO => oPMUOC220) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_20__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[20] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_19_ ( input IOLDO, output oPMUOC219 ); xo2iobuf0179 \o_PMU_OC_2_pad[19] ( .I(IOLDO), .PAD(oPMUOC219)); specify (IOLDO => oPMUOC219) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_19__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[19] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_18_ ( input IOLDO, output oPMUOC218 ); xo2iobuf0179 \o_PMU_OC_2_pad[18] ( .I(IOLDO), .PAD(oPMUOC218)); specify (IOLDO => oPMUOC218) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_18__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[18] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_17_ ( input IOLDO, output oPMUOC217 ); xo2iobuf0179 \o_PMU_OC_2_pad[17] ( .I(IOLDO), .PAD(oPMUOC217)); specify (IOLDO => oPMUOC217) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_17__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[17] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_16_ ( input IOLDO, output oPMUOC216 ); wire GNDI; xo2iobuf0182 \o_PMU_OC_2_pad[16] ( .I(IOLDO), .T(GNDI), .PAD(oPMUOC216)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oPMUOC216) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_16__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_OC_x17io[1] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_15_ ( input IOLDO, output oPMUOC215 ); xo2iobuf0179 \o_PMU_OC_2_pad[15] ( .I(IOLDO), .PAD(oPMUOC215)); specify (IOLDO => oPMUOC215) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_15__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[15] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_14_ ( input IOLDO, output oPMUOC214 ); xo2iobuf0179 \o_PMU_OC_2_pad[14] ( .I(IOLDO), .PAD(oPMUOC214)); specify (IOLDO => oPMUOC214) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_14__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[14] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_13_ ( input IOLDO, output oPMUOC213 ); xo2iobuf0179 \o_PMU_OC_2_pad[13] ( .I(IOLDO), .PAD(oPMUOC213)); specify (IOLDO => oPMUOC213) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_13__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[13] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_12_ ( input IOLDO, output oPMUOC212 ); xo2iobuf0179 \o_PMU_OC_2_pad[12] ( .I(IOLDO), .PAD(oPMUOC212)); specify (IOLDO => oPMUOC212) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_12__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[12] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_11_ ( input IOLDO, output oPMUOC211 ); xo2iobuf0179 \o_PMU_OC_2_pad[11] ( .I(IOLDO), .PAD(oPMUOC211)); specify (IOLDO => oPMUOC211) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_11__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[11] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_10_ ( input IOLDO, output oPMUOC210 ); xo2iobuf0179 \o_PMU_OC_2_pad[10] ( .I(IOLDO), .PAD(oPMUOC210)); specify (IOLDO => oPMUOC210) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_10__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[10] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_9_ ( input IOLDO, output oPMUOC29 ); xo2iobuf0179 \o_PMU_OC_2_pad[9] ( .I(IOLDO), .PAD(oPMUOC29)); specify (IOLDO => oPMUOC29) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_9__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[9] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_8_ ( input IOLDO, output oPMUOC28 ); xo2iobuf0179 \o_PMU_OC_2_pad[8] ( .I(IOLDO), .PAD(oPMUOC28)); specify (IOLDO => oPMUOC28) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_8__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[8] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_7_ ( input PADDO, output oPMUOC27 ); xo2iobuf0179 \o_PMU_OC_2_pad[7] ( .I(PADDO), .PAD(oPMUOC27)); specify (PADDO => oPMUOC27) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_6_ ( input IOLDO, output oPMUOC26 ); xo2iobuf0179 \o_PMU_OC_2_pad[6] ( .I(IOLDO), .PAD(oPMUOC26)); specify (IOLDO => oPMUOC26) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_6__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[6] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_5_ ( input PADDO, output oPMUOC25 ); xo2iobuf0179 \o_PMU_OC_2_pad[5] ( .I(PADDO), .PAD(oPMUOC25)); specify (PADDO => oPMUOC25) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_4_ ( input IOLDO, output oPMUOC24 ); xo2iobuf0179 \o_PMU_OC_2_pad[4] ( .I(IOLDO), .PAD(oPMUOC24)); specify (IOLDO => oPMUOC24) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_4__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[4] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_3_ ( input PADDO, output oPMUOC23 ); xo2iobuf0179 \o_PMU_OC_2_pad[3] ( .I(PADDO), .PAD(oPMUOC23)); specify (PADDO => oPMUOC23) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_2_ ( input IOLDO, output oPMUOC22 ); xo2iobuf0179 \o_PMU_OC_2_pad[2] ( .I(IOLDO), .PAD(oPMUOC22)); specify (IOLDO => oPMUOC22) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_2__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_2io[2] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_2_1_ ( input PADDO, output oPMUOC21 ); xo2iobuf0179 \o_PMU_OC_2_pad[1] ( .I(PADDO), .PAD(oPMUOC21)); specify (PADDO => oPMUOC21) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_0_ ( input IOLDO, output oPMUOC20 ); wire GNDI; xo2iobuf0182 \o_PMU_OC_2_pad[0] ( .I(IOLDO), .T(GNDI), .PAD(oPMUOC20)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oPMUOC20) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_2_0__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_OC_x01io[1] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_31_ ( input IOLDO, output oPMUOC131 ); xo2iobuf0179 \o_PMU_OC_1_pad[31] ( .I(IOLDO), .PAD(oPMUOC131)); specify (IOLDO => oPMUOC131) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_31__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[31] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_30_ ( input IOLDO, output oPMUOC130 ); xo2iobuf0179 \o_PMU_OC_1_pad[30] ( .I(IOLDO), .PAD(oPMUOC130)); specify (IOLDO => oPMUOC130) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_30__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[30] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_29_ ( input IOLDO, output oPMUOC129 ); xo2iobuf0179 \o_PMU_OC_1_pad[29] ( .I(IOLDO), .PAD(oPMUOC129)); specify (IOLDO => oPMUOC129) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_29__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[29] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_28_ ( input IOLDO, output oPMUOC128 ); xo2iobuf0179 \o_PMU_OC_1_pad[28] ( .I(IOLDO), .PAD(oPMUOC128)); specify (IOLDO => oPMUOC128) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_28__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[28] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_27_ ( input IOLDO, output oPMUOC127 ); xo2iobuf0179 \o_PMU_OC_1_pad[27] ( .I(IOLDO), .PAD(oPMUOC127)); specify (IOLDO => oPMUOC127) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_27__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[27] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_26_ ( input IOLDO, output oPMUOC126 ); xo2iobuf0179 \o_PMU_OC_1_pad[26] ( .I(IOLDO), .PAD(oPMUOC126)); specify (IOLDO => oPMUOC126) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_26__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[26] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_25_ ( input IOLDO, output oPMUOC125 ); xo2iobuf0179 \o_PMU_OC_1_pad[25] ( .I(IOLDO), .PAD(oPMUOC125)); specify (IOLDO => oPMUOC125) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_25__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[25] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_24_ ( input IOLDO, output oPMUOC124 ); xo2iobuf0179 \o_PMU_OC_1_pad[24] ( .I(IOLDO), .PAD(oPMUOC124)); specify (IOLDO => oPMUOC124) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_24__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[24] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_23_ ( input IOLDO, output oPMUOC123 ); xo2iobuf0179 \o_PMU_OC_1_pad[23] ( .I(IOLDO), .PAD(oPMUOC123)); specify (IOLDO => oPMUOC123) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_23__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[23] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_22_ ( input IOLDO, output oPMUOC122 ); xo2iobuf0179 \o_PMU_OC_1_pad[22] ( .I(IOLDO), .PAD(oPMUOC122)); specify (IOLDO => oPMUOC122) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_22__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[22] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_21_ ( input IOLDO, output oPMUOC121 ); xo2iobuf0179 \o_PMU_OC_1_pad[21] ( .I(IOLDO), .PAD(oPMUOC121)); specify (IOLDO => oPMUOC121) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_21__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[21] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_20_ ( input IOLDO, output oPMUOC120 ); xo2iobuf0179 \o_PMU_OC_1_pad[20] ( .I(IOLDO), .PAD(oPMUOC120)); specify (IOLDO => oPMUOC120) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_20__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[20] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_19_ ( input IOLDO, output oPMUOC119 ); xo2iobuf0179 \o_PMU_OC_1_pad[19] ( .I(IOLDO), .PAD(oPMUOC119)); specify (IOLDO => oPMUOC119) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_19__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[19] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_18_ ( input IOLDO, output oPMUOC118 ); xo2iobuf0179 \o_PMU_OC_1_pad[18] ( .I(IOLDO), .PAD(oPMUOC118)); specify (IOLDO => oPMUOC118) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_18__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[18] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_17_ ( input IOLDO, output oPMUOC117 ); xo2iobuf0179 \o_PMU_OC_1_pad[17] ( .I(IOLDO), .PAD(oPMUOC117)); specify (IOLDO => oPMUOC117) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_17__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[17] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_16_ ( input IOLDO, output oPMUOC116 ); wire GNDI; xo2iobuf0182 \o_PMU_OC_1_pad[16] ( .I(IOLDO), .T(GNDI), .PAD(oPMUOC116)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oPMUOC116) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_16__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_OC_x17io[0] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_15_ ( input IOLDO, output oPMUOC115 ); xo2iobuf0179 \o_PMU_OC_1_pad[15] ( .I(IOLDO), .PAD(oPMUOC115)); specify (IOLDO => oPMUOC115) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_15__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[15] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_14_ ( input IOLDO, output oPMUOC114 ); xo2iobuf0179 \o_PMU_OC_1_pad[14] ( .I(IOLDO), .PAD(oPMUOC114)); specify (IOLDO => oPMUOC114) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_14__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[14] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_13_ ( input IOLDO, output oPMUOC113 ); xo2iobuf0179 \o_PMU_OC_1_pad[13] ( .I(IOLDO), .PAD(oPMUOC113)); specify (IOLDO => oPMUOC113) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_13__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[13] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_12_ ( input IOLDO, output oPMUOC112 ); xo2iobuf0179 \o_PMU_OC_1_pad[12] ( .I(IOLDO), .PAD(oPMUOC112)); specify (IOLDO => oPMUOC112) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_12__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[12] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_11_ ( input IOLDO, output oPMUOC111 ); xo2iobuf0179 \o_PMU_OC_1_pad[11] ( .I(IOLDO), .PAD(oPMUOC111)); specify (IOLDO => oPMUOC111) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_11__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[11] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_10_ ( input IOLDO, output oPMUOC110 ); xo2iobuf0179 \o_PMU_OC_1_pad[10] ( .I(IOLDO), .PAD(oPMUOC110)); specify (IOLDO => oPMUOC110) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_10__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[10] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_9_ ( input IOLDO, output oPMUOC19 ); xo2iobuf0179 \o_PMU_OC_1_pad[9] ( .I(IOLDO), .PAD(oPMUOC19)); specify (IOLDO => oPMUOC19) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_9__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[9] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_8_ ( input IOLDO, output oPMUOC18 ); xo2iobuf0179 \o_PMU_OC_1_pad[8] ( .I(IOLDO), .PAD(oPMUOC18)); specify (IOLDO => oPMUOC18) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_8__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[8] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_7_ ( input IOLDO, output oPMUOC17 ); xo2iobuf0179 \o_PMU_OC_1_pad[7] ( .I(IOLDO), .PAD(oPMUOC17)); specify (IOLDO => oPMUOC17) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_7__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[7] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_6_ ( input IOLDO, output oPMUOC16 ); xo2iobuf0179 \o_PMU_OC_1_pad[6] ( .I(IOLDO), .PAD(oPMUOC16)); specify (IOLDO => oPMUOC16) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_6__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[6] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_5_ ( input IOLDO, output oPMUOC15 ); xo2iobuf0179 \o_PMU_OC_1_pad[5] ( .I(IOLDO), .PAD(oPMUOC15)); specify (IOLDO => oPMUOC15) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_5__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[5] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_4_ ( input IOLDO, output oPMUOC14 ); xo2iobuf0179 \o_PMU_OC_1_pad[4] ( .I(IOLDO), .PAD(oPMUOC14)); specify (IOLDO => oPMUOC14) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_4__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[4] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_3_ ( input IOLDO, output oPMUOC13 ); xo2iobuf0179 \o_PMU_OC_1_pad[3] ( .I(IOLDO), .PAD(oPMUOC13)); specify (IOLDO => oPMUOC13) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_3__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[3] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_2_ ( input IOLDO, output oPMUOC12 ); xo2iobuf0179 \o_PMU_OC_1_pad[2] ( .I(IOLDO), .PAD(oPMUOC12)); specify (IOLDO => oPMUOC12) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_2__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[2] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_1_ ( input IOLDO, output oPMUOC11 ); xo2iobuf0179 \o_PMU_OC_1_pad[1] ( .I(IOLDO), .PAD(oPMUOC11)); specify (IOLDO => oPMUOC11) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_1__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_PMU_OC_1io[1] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_PMU_OC_1_0_ ( input IOLDO, output oPMUOC10 ); wire GNDI; xo2iobuf0182 \o_PMU_OC_1_pad[0] ( .I(IOLDO), .T(GNDI), .PAD(oPMUOC10)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oPMUOC10) = (0:0:0,0:0:0); endspecify endmodule module o_PMU_OC_1_0__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_OC_x01io[0] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_LOS_1_ ( input PADDO, output oRCLOS1 ); wire GNDI; xo2iobuf0182 \o_RC_LOS_pad[1] ( .I(PADDO), .T(GNDI), .PAD(oRCLOS1)); gnd DRIVEGND( .PWR0(GNDI)); specify (PADDO => oRCLOS1) = (0:0:0,0:0:0); endspecify endmodule module o_RC_LOS_0_ ( input PADDO, output oRCLOS0 ); wire GNDI; xo2iobuf0182 \o_RC_LOS_pad[0] ( .I(PADDO), .T(GNDI), .PAD(oRCLOS0)); gnd DRIVEGND( .PWR0(GNDI)); specify (PADDO => oRCLOS0) = (0:0:0,0:0:0); endspecify endmodule module o_RC_LOF_1_ ( input PADDO, output oRCLOF1 ); wire GNDI; xo2iobuf0182 \o_RC_LOF_pad[1] ( .I(PADDO), .T(GNDI), .PAD(oRCLOF1)); gnd DRIVEGND( .PWR0(GNDI)); specify (PADDO => oRCLOF1) = (0:0:0,0:0:0); endspecify endmodule module o_RC_LOF_0_ ( input PADDO, output oRCLOF0 ); wire GNDI; xo2iobuf0182 \o_RC_LOF_pad[0] ( .I(PADDO), .T(GNDI), .PAD(oRCLOF0)); gnd DRIVEGND( .PWR0(GNDI)); specify (PADDO => oRCLOF0) = (0:0:0,0:0:0); endspecify endmodule module o_RC_ISel ( input PADDO, output o_RC_ISel ); wire GNDI; xo2iobuf0182 o_RC_ISel_pad( .I(PADDO), .T(GNDI), .PAD(o_RC_ISel)); gnd DRIVEGND( .PWR0(GNDI)); specify (PADDO => o_RC_ISel) = (0:0:0,0:0:0); endspecify endmodule module o_RC_VSel ( input PADDO, output o_RC_VSel ); wire GNDI; xo2iobuf0182 o_RC_VSel_pad( .I(PADDO), .T(GNDI), .PAD(o_RC_VSel)); gnd DRIVEGND( .PWR0(GNDI)); specify (PADDO => o_RC_VSel) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_17_ ( input IOLDO, output oRCRLSel17 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[17] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel17)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel17) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_17__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[17] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IOLDO)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_16_ ( input IOLDO, output oRCRLSel16 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[16] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel16)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel16) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_16__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[16] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IOLDO)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_15_ ( input IOLDO, output oRCRLSel15 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[15] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel15)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel15) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_15__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[15] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_14_ ( input IOLDO, output oRCRLSel14 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[14] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel14)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel14) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_14__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[14] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_13_ ( input IOLDO, output oRCRLSel13 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[13] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel13)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel13) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_13__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[13] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_12_ ( input IOLDO, output oRCRLSel12 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[12] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel12)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel12) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_12__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[12] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_11_ ( input IOLDO, output oRCRLSel11 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[11] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel11)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel11) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_11__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[11] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_10_ ( input IOLDO, output oRCRLSel10 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[10] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel10)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel10) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_10__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[10] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_9_ ( input IOLDO, output oRCRLSel9 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[9] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel9)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel9) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_9__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[9] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_8_ ( input IOLDO, output oRCRLSel8 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[8] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel8)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel8) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_8__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[8] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_7_ ( input IOLDO, output oRCRLSel7 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[7] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel7)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel7) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_7__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[7] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_6_ ( input IOLDO, output oRCRLSel6 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[6] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel6)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel6) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_6__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[6] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_5_ ( input IOLDO, output oRCRLSel5 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[5] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel5)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel5) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_5__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[5] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_4_ ( input IOLDO, output oRCRLSel4 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[4] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel4)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel4) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_4__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire LSR_NOTIN, OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[4] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IOLDO)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_3_ ( input IOLDO, output oRCRLSel3 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[3] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel3)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel3) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_3__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[3] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IOLDO)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_2_ ( input IOLDO, output oRCRLSel2 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[2] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel2)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel2) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_2__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[2] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IOLDO)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_1_ ( input IOLDO, output oRCRLSel1 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[1] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel1)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel1) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_1__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[1] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IOLDO)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_RLSel_0_ ( input IOLDO, output oRCRLSel0 ); wire GNDI; xo2iobuf0182 \o_RC_RLSel_pad[0] ( .I(IOLDO), .T(GNDI), .PAD(oRCRLSel0)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oRCRLSel0) = (0:0:0,0:0:0); endspecify endmodule module o_RC_RLSel_0__MGIOL ( output IOLDO, input OPOS, CE, LSR, CLK ); wire OPOS_dly, CLK_dly, CE_dly, LSR_dly; mfflsre0181 \CPLD_Con_1_RC_RLSelio[0] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IOLDO)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_T32 ( input IOLDO, output o_RC_T32 ); wire GNDI; xo2iobuf0182 o_RC_T32_pad( .I(IOLDO), .T(GNDI), .PAD(o_RC_T32)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => o_RC_T32) = (0:0:0,0:0:0); endspecify endmodule module o_RC_T32_MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_RC_Txio[0] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_T31 ( input IOLDO, output o_RC_T31 ); wire GNDI; xo2iobuf0182 o_RC_T31_pad( .I(IOLDO), .T(GNDI), .PAD(o_RC_T31)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => o_RC_T31) = (0:0:0,0:0:0); endspecify endmodule module o_RC_T31_MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_RC_Txio[1] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_T30 ( input IOLDO, output o_RC_T30 ); wire GNDI; xo2iobuf0182 o_RC_T30_pad( .I(IOLDO), .T(GNDI), .PAD(o_RC_T30)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => o_RC_T30) = (0:0:0,0:0:0); endspecify endmodule module o_RC_T30_MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_RC_Txio[2] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_T29 ( input IOLDO, output o_RC_T29 ); wire GNDI; xo2iobuf0182 o_RC_T29_pad( .I(IOLDO), .T(GNDI), .PAD(o_RC_T29)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => o_RC_T29) = (0:0:0,0:0:0); endspecify endmodule module o_RC_T29_MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_RC_Txio[3] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_T28 ( input IOLDO, output o_RC_T28 ); wire GNDI; xo2iobuf0182 o_RC_T28_pad( .I(IOLDO), .T(GNDI), .PAD(o_RC_T28)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => o_RC_T28) = (0:0:0,0:0:0); endspecify endmodule module o_RC_T28_MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_RC_Txio[4] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_RC_T27 ( input IOLDO, output o_RC_T27 ); wire GNDI; xo2iobuf0182 o_RC_T27_pad( .I(IOLDO), .T(GNDI), .PAD(o_RC_T27)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => o_RC_T27) = (0:0:0,0:0:0); endspecify endmodule module o_RC_T27_MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_RC_Txio[5] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_IO_RC1 ( input IOLDO, output o_IO_RC1 ); wire GNDI; xo2iobuf0182 o_IO_RC1_pad( .I(IOLDO), .T(GNDI), .PAD(o_IO_RC1)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => o_IO_RC1) = (0:0:0,0:0:0); endspecify endmodule module o_IO_RC1_MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre CPLD_Con_1_io_RCio( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_18_ ( input IOLDO, output oDMMEN18 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[18] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN18)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN18) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_18__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[18] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_17_ ( input IOLDO, output oDMMEN17 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[17] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN17)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN17) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_17__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[17] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_16_ ( input IOLDO, output oDMMEN16 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[16] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN16)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN16) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_16__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[16] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_15_ ( input IOLDO, output oDMMEN15 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[15] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN15)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN15) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_15__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[15] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_14_ ( input IOLDO, output oDMMEN14 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[14] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN14)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN14) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_14__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[14] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_13_ ( input IOLDO, output oDMMEN13 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[13] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN13)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN13) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_13__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[13] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_12_ ( input IOLDO, output oDMMEN12 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[12] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN12)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN12) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_12__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[12] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_11_ ( input IOLDO, output oDMMEN11 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[11] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN11)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN11) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_11__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[11] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_10_ ( input IOLDO, output oDMMEN10 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[10] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN10)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN10) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_10__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[10] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_9_ ( input IOLDO, output oDMMEN9 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[9] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN9)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN9) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_9__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[9] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_8_ ( input IOLDO, output oDMMEN8 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[8] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN8)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN8) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_8__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[8] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_7_ ( input IOLDO, output oDMMEN7 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[7] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN7)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN7) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_7__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[7] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_6_ ( input IOLDO, output oDMMEN6 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[6] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN6)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN6) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_6__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[6] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_5_ ( input IOLDO, output oDMMEN5 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[5] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN5)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN5) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_5__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[5] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_4_ ( input IOLDO, output oDMMEN4 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[4] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN4)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN4) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_4__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[4] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_3_ ( input IOLDO, output oDMMEN3 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[3] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN3)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN3) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_3__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[3] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_2_ ( input IOLDO, output oDMMEN2 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[2] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN2)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN2) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_2__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[2] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_1_ ( input IOLDO, output oDMMEN1 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[1] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN1)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN1) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_1__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[1] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_DMM_EN_0_ ( input IOLDO, output oDMMEN0 ); wire GNDI; xo2iobuf0182 \o_DMM_EN_pad[0] ( .I(IOLDO), .T(GNDI), .PAD(oDMMEN0)); gnd DRIVEGND( .PWR0(GNDI)); specify (IOLDO => oDMMEN0) = (0:0:0,0:0:0); endspecify endmodule module o_DMM_EN_0__MGIOL ( output IOLDO, input OPOS, CE, CLK ); wire GNDI, OPOS_dly, CLK_dly, CE_dly; mfflsre \CPLD_Con_1_DMM_enio[0] ( .D0(OPOS_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(GNDI), .Q(IOLDO)); gnd DRIVEGND( .PWR0(GNDI)); specify (CLK => IOLDO) = (0:0:0,0:0:0); $setuphold (posedge CLK, OPOS, 0:0:0, 0:0:0,,,, CLK_dly, OPOS_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module o_con_done ( input PADDO, output o_con_done ); wire GNDI; xo2iobuf0182 o_con_done_pad( .I(PADDO), .T(GNDI), .PAD(o_con_done)); gnd DRIVEGND( .PWR0(GNDI)); specify (PADDO => o_con_done) = (0:0:0,0:0:0); endspecify endmodule module o_err ( input PADDO, output o_err ); wire GNDI; xo2iobuf0182 o_err_pad( .I(PADDO), .T(GNDI), .PAD(o_err)); gnd DRIVEGND( .PWR0(GNDI)); specify (PADDO => o_err) = (0:0:0,0:0:0); endspecify endmodule module i_cs ( output PADDI, input i_cs ); xo2iobuf0180 i_cs_pad( .Z(PADDI), .PAD(i_cs)); specify (i_cs => PADDI) = (0:0:0,0:0:0); $width (posedge i_cs, 0:0:0); $width (negedge i_cs, 0:0:0); endspecify endmodule module i_cs_MGIOL ( input DI, LSR, CLK, output IN ); wire VCCI, LSR_NOTIN, DI_dly, CLK_dly, LSR_dly; smuxlregsre \BUS_Con_1_cs_syncio[0] ( .D0(DI_dly), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IN)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IN) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI, 0:0:0, 0:0:0,,,, CLK_dly, DI_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module smuxlregsre ( input D0, SP, CK, LSR, output Q ); IFS1P3JX INST01( .D(D0), .SP(SP), .SCLK(CK), .PD(LSR), .Q(Q)); defparam INST01.GSR = "DISABLED"; endmodule module i_mosi ( output PADDI, input i_mosi ); xo2iobuf0180 i_mosi_pad( .Z(PADDI), .PAD(i_mosi)); specify (i_mosi => PADDI) = (0:0:0,0:0:0); $width (posedge i_mosi, 0:0:0); $width (negedge i_mosi, 0:0:0); endspecify endmodule module i_mosi_MGIOL ( input DI, LSR, CLK, output IN ); wire VCCI, LSR_NOTIN, DI_dly, CLK_dly, LSR_dly; smuxlregsre0183 \BUS_Con_1_mosi_syncio[0] ( .D0(DI_dly), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IN)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IN) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI, 0:0:0, 0:0:0,,,, CLK_dly, DI_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module smuxlregsre0183 ( input D0, SP, CK, LSR, output Q ); IFS1P3IX INST01( .D(D0), .SP(SP), .SCLK(CK), .CD(LSR), .Q(Q)); defparam INST01.GSR = "DISABLED"; endmodule module i_sclk ( output PADDI, input i_sclk ); xo2iobuf0180 i_sclk_pad( .Z(PADDI), .PAD(i_sclk)); specify (i_sclk => PADDI) = (0:0:0,0:0:0); $width (posedge i_sclk, 0:0:0); $width (negedge i_sclk, 0:0:0); endspecify endmodule module i_sclk_MGIOL ( input DI, LSR, CLK, output IN ); wire VCCI, LSR_NOTIN, DI_dly, CLK_dly, LSR_dly; smuxlregsre0183 \BUS_Con_1_sclk_syncio[0] ( .D0(DI_dly), .SP(VCCI), .CK(CLK_dly), .LSR(LSR_NOTIN), .Q(IN)); vcc DRIVEVCC( .PWR1(VCCI)); inverter LSR_INVERTERIN( .I(LSR_dly), .Z(LSR_NOTIN)); specify (CLK => IN) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI, 0:0:0, 0:0:0,,,, CLK_dly, DI_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module i_rst_n ( output PADDI, input i_rst_n ); xo2iobuf0180 i_rst_n_pad( .Z(PADDI), .PAD(i_rst_n)); specify (i_rst_n => PADDI) = (0:0:0,0:0:0); $width (posedge i_rst_n, 0:0:0); $width (negedge i_rst_n, 0:0:0); endspecify endmodule module i_rst_n_MGIOL ( input DI, CE, LSR, CLK, output IN ); wire DI_dly, CLK_dly, CE_dly, LSR_dly; smuxlregsre0183 CPLD_Con_1_exec_flagio( .D0(DI_dly), .SP(CE_dly), .CK(CLK_dly), .LSR(LSR_dly), .Q(IN)); specify (CLK => IN) = (0:0:0,0:0:0); $setuphold (posedge CLK, DI, 0:0:0, 0:0:0,,,, CLK_dly, DI_dly); $setuphold (posedge CLK, CE, 0:0:0, 0:0:0,,,, CLK_dly, CE_dly); $setuphold (posedge CLK, LSR, 0:0:0, 0:0:0,,,, CLK_dly, LSR_dly); $width (posedge CLK, 0:0:0); $width (negedge CLK, 0:0:0); endspecify endmodule module GSR_INST ( input GSRNET ); GSR5MODE GSR_INST_GSRMODE( .GSR(GSRNET)); specify endspecify endmodule module GSR5MODE ( input GSR ); wire GSRMODE; BUFBA INST10( .A(GSR), .Z(GSRMODE)); GSR INST20( .GSR(GSRMODE)); endmodule