/* * Copyright (C) 2009 - 2019 Xilinx, Inc. * All rights reserved. * * Redistribution and use in source and binary forms, with or without modification, * are permitted provided that the following conditions are met: * * 1. Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright notice, * this list of conditions and the following disclaimer in the documentation * and/or other materials provided with the distribution. * 3. The name of the author may not be used to endorse or promote products * derived from this software without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT * SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY * OF SUCH DAMAGE. * */ #include #include "xparameters.h" #include "netif/xadapter.h" #include "platform.h" #include "platform_config.h" #if defined (__arm__) || defined(__aarch64__) #include "xil_printf.h" #endif #include "lwip/tcp.h" extern void tcp_tmr(void); /* declared in tcp_priv.h, not in public tcp.h */ #include "xil_cache.h" #include "GPIO_Driv.h" #include "SPI_Driv.h" #include "cal_meas.h" #if LWIP_IPV6==1 #include "lwip/ip.h" #else #if LWIP_DHCP==1 #include "lwip/dhcp.h" #endif #endif /* defined by each RAW mode application */ void print_app_header(); int start_application(); int transfer_data(); /* missing declaration in lwIP */ void lwip_init(); #if LWIP_IPV6==0 #if LWIP_DHCP==1 extern volatile int dhcp_timoutcntr; err_t dhcp_start(struct netif *netif); #endif #endif static struct netif server_netif; struct netif *echo_netif; #if LWIP_IPV6==1 void print_ip6(char *msg, ip_addr_t *ip) { print(msg); xil_printf(" %x:%x:%x:%x:%x:%x:%x:%x\n\r", IP6_ADDR_BLOCK1(&ip->u_addr.ip6), IP6_ADDR_BLOCK2(&ip->u_addr.ip6), IP6_ADDR_BLOCK3(&ip->u_addr.ip6), IP6_ADDR_BLOCK4(&ip->u_addr.ip6), IP6_ADDR_BLOCK5(&ip->u_addr.ip6), IP6_ADDR_BLOCK6(&ip->u_addr.ip6), IP6_ADDR_BLOCK7(&ip->u_addr.ip6), IP6_ADDR_BLOCK8(&ip->u_addr.ip6)); } #else void print_ip(char *msg, ip_addr_t *ip) { print(msg); xil_printf("%d.%d.%d.%d\n\r", ip4_addr1(ip), ip4_addr2(ip), ip4_addr3(ip), ip4_addr4(ip)); } void print_ip_settings(ip_addr_t *ip, ip_addr_t *mask, ip_addr_t *gw) { print_ip("Board IP: ", ip); print_ip("Netmask : ", mask); print_ip("Gateway : ", gw); } #endif #if defined (__arm__) && !defined (ARMR5) #if XPAR_GIGE_PCS_PMA_SGMII_CORE_PRESENT == 1 || XPAR_GIGE_PCS_PMA_1000BASEX_CORE_PRESENT == 1 int ProgramSi5324(void); int ProgramSfpPhy(void); #endif #endif #ifdef XPS_BOARD_ZCU102 #ifdef XPAR_XIICPS_0_DEVICE_ID int IicPhyReset(void); #endif #endif int main() { #if LWIP_IPV6==0 ip_addr_t ipaddr, netmask, gw; #endif /* the mac address of the board. this should be unique per board */ unsigned char mac_ethernet_address[] = { 0x00, 0x0a, 0x35, 0x00, 0x01, 0x01 }; echo_netif = &server_netif; #if defined (__arm__) && !defined (ARMR5) #if XPAR_GIGE_PCS_PMA_SGMII_CORE_PRESENT == 1 || XPAR_GIGE_PCS_PMA_1000BASEX_CORE_PRESENT == 1 ProgramSi5324(); ProgramSfpPhy(); #endif #endif /* Define this board specific macro in order perform PHY reset on ZCU102 */ #ifdef XPS_BOARD_ZCU102 if(IicPhyReset()) { xil_printf("Error performing PHY reset \n\r"); return -1; } #endif init_platform(); #if LWIP_IPV6==0 #if LWIP_DHCP==1 ipaddr.addr = 0; gw.addr = 0; netmask.addr = 0; #else /* initialize IP addresses to be used */ IP4_ADDR(&ipaddr, 192, 168, 100, 110); IP4_ADDR(&netmask, 255, 255, 255, 0); IP4_ADDR(&gw, 192, 168, 100, 1); #endif #endif print_app_header(); lwip_init(); #if (LWIP_IPV6 == 0) /* Add network interface to the netif_list, and set it as default */ if (!xemac_add(echo_netif, &ipaddr, &netmask, &gw, mac_ethernet_address, PLATFORM_EMAC_BASEADDR)) { xil_printf("Error adding N/W interface\n\r"); return -1; } #else /* Add network interface to the netif_list, and set it as default */ if (!xemac_add(echo_netif, NULL, NULL, NULL, mac_ethernet_address, PLATFORM_EMAC_BASEADDR)) { xil_printf("Error adding N/W interface\n\r"); return -1; } echo_netif->ip6_autoconfig_enabled = 1; netif_create_ip6_linklocal_address(echo_netif, 1); netif_ip6_addr_set_state(echo_netif, 0, IP6_ADDR_VALID); print_ip6("\n\rBoard IPv6 address ", &echo_netif->ip6_addr[0].u_addr.ip6); #endif netif_set_default(echo_netif); /* now enable interrupts */ //platform_enable_interrupts(); /* specify that the network if is up */ netif_set_up(echo_netif); #if (LWIP_IPV6 == 0) #if (LWIP_DHCP==1) /* Create a new DHCP client for this interface. * Note: you must call dhcp_fine_tmr() and dhcp_coarse_tmr() at * the predefined regular intervals after starting the client. */ dhcp_start(echo_netif); dhcp_timoutcntr = 24; while(((echo_netif->ip_addr.addr) == 0) && (dhcp_timoutcntr > 0)) xemacif_input(echo_netif); if (dhcp_timoutcntr <= 0) { if ((echo_netif->ip_addr.addr) == 0) { xil_printf("DHCP Timeout\r\n"); xil_printf("Configuring default IP of 192.168.100.110\r\n"); IP4_ADDR(&(echo_netif->ip_addr), 192, 168, 100, 110); IP4_ADDR(&(echo_netif->netmask), 255, 255, 255, 0); IP4_ADDR(&(echo_netif->gw), 192, 168, 100, 1); } } ipaddr.addr = echo_netif->ip_addr.addr; gw.addr = echo_netif->gw.addr; netmask.addr = echo_netif->netmask.addr; #endif print_ip_settings(&ipaddr, &netmask, &gw); #endif EMIO_config(); interface_initial(CPLD_U1); interface_initial(CPLD_U2); interface_initial(CPLD_U3); rst_CPLD(CPLD_U1,4); rst_CPLD(CPLD_U2,4); rst_CPLD(CPLD_U3,4); /* start the application (web server, rxtest, txtest, etc..) */ start_application(); /* receive and process packets */ while (1) { tcp_tmr(); xemacif_input(echo_netif); transfer_data(); } /* never reached */ cleanup_platform(); return 0; }