module CPLD_Con ( input i_sys_clk, input i_rst_n, input i_con_exec, input [23:0]i_freq_relay1, input [23:0]i_freq_relay2, input [23:0]i_freq_relay3, input [23:0]i_freq_relay4, output o_con_done, output [3:0]o_PMU_RC, output o_err ); //Relay Reg reg [3:0] PMU_RC; //Flags reg exec_flag; reg err_flag; reg [3:0]slot_exec_flag; reg done_flag; //Counter reg [15:0]delay_cnt; always @(posedge i_sys_clk) begin if (i_rst_n == 1'b0) begin delay_cnt <= 'd0; end else begin if (exec_flag == 1'b1) begin delay_cnt <= delay_cnt + 1'd1; end else begin delay_cnt <= 'd0; end end end always @(posedge i_sys_clk) begin if (i_rst_n == 1'b0) begin exec_flag <= 1'b0; err_flag <= 1'b0; slot_exec_flag <= 'd0; done_flag <= 'd1; PMU_RC <= 4'b1111; end else begin if ((i_con_exec == 1'b1) & (exec_flag == 1'b0)) begin exec_flag <= 1'b1; done_flag <= 1'b0; //To DO: More Sanity Check? if ( (i_freq_relay1[0] + i_freq_relay2[0] + i_freq_relay3[0] + i_freq_relay4[0]) > 2'd1 ) begin err_flag <= 1'b1; end else begin slot_exec_flag[0] <= i_freq_relay1[0]; slot_exec_flag[1] <= i_freq_relay2[0]; slot_exec_flag[2] <= i_freq_relay3[0]; slot_exec_flag[3] <= i_freq_relay4[0]; end end else if (exec_flag == 1'b1) begin case (slot_exec_flag) 4'b0001: begin PMU_RC <= 4'b1111; end 4'b0010: begin PMU_RC <= 4'b1100; end 4'b0100: begin PMU_RC <= 4'b1010; end 4'b1000: begin PMU_RC <= 4'b0110; end endcase done_flag <= 1'b1; end end if (done_flag == 1) begin exec_flag <= 1'b0; end end assign o_con_done = done_flag; assign o_PMU_RC = PMU_RC; assign o_err = err_flag; endmodule