Mercurial > ecos-v3_0-branch
view packages/net/tcpip/current/src/lib/network_support.c @ 103:95f3e12a6327 ecos-sw-2000-06-23
Merge from eCos master repository on 2000-06-23-16:41:10-BST
| author | jlarmour |
|---|---|
| date | Fri, 23 Jun 2000 17:06:31 +0000 |
| parents | ced4577552cd |
| children | 84e4bde58b26 |
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//========================================================================== // // lib/net_support.c // // Misc network support functions // //========================================================================== //####COPYRIGHTBEGIN#### // // ------------------------------------------- // The contents of this file are subject to the Red Hat eCos Public License // Version 1.1 (the "License"); you may not use this file except in // compliance with the License. You may obtain a copy of the License at // http://www.redhat.com/ // // Software distributed under the License is distributed on an "AS IS" // basis, WITHOUT WARRANTY OF ANY KIND, either express or implied. See the // License for the specific language governing rights and limitations under // the License. // // The Original Code is eCos - Embedded Configurable Operating System, // released September 30, 1998. // // The Initial Developer of the Original Code is Red Hat. // Portions created by Red Hat are // Copyright (C) 1998, 1999, 2000 Red Hat, Inc. // All Rights Reserved. // ------------------------------------------- // //####COPYRIGHTEND#### //####BSDCOPYRIGHTBEGIN#### // // ------------------------------------------- // // Portions of this software may have been derived from OpenBSD or other sources, // and are covered by the appropriate copyright disclaimers included herein. // // ------------------------------------------- // //####BSDCOPYRIGHTEND#### //========================================================================== //#####DESCRIPTIONBEGIN#### // // Author(s): gthomas // Contributors: gthomas, sorin@netappi.com ("Sorin Babeanu"), hmt // Date: 2000-01-10 // Purpose: // Description: // // //####DESCRIPTIONEND#### // //========================================================================== // BOOTP support #include <pkgconf/net.h> #undef _KERNEL #include <sys/param.h> #include <sys/socket.h> #include <sys/ioctl.h> #include <sys/errno.h> #include <net/if.h> #include <netinet/in.h> #include <netinet/ip.h> #include <netinet/ip_icmp.h> #include <net/route.h> #include <cyg/infra/diag.h> #include <cyg/kernel/kapi.h> #include <stdio.h> // for 'sprintf()' #include <bootp.h> #include <network.h> #include <arpa/inet.h> #ifdef CYGHWR_NET_DRIVER_ETH0 struct bootp eth0_bootp_data; cyg_bool_t eth0_up = false; const char *eth0_name = "eth0"; #endif #ifdef CYGHWR_NET_DRIVER_ETH1 struct bootp eth1_bootp_data; cyg_bool_t eth1_up = false; const char *eth1_name = "eth1"; #endif #define _string(s) #s #define string(s) _string(s) #ifdef CYGPKG_NET_NLOOP #if 0 < CYGPKG_NET_NLOOP // // Initialize loopback interface ---------- Added by sorin@netappi.com // cyg_bool_t init_loopback_interface(int lo) { struct sockaddr_in *addrp; struct ifreq ifr; int s; int one = 1; struct ecos_rtentry route; struct in_addr netmask, gateway; //diag_printf("Init_loopback_interface\n"); s = socket(AF_INET, SOCK_DGRAM, 0); if (s < 0) { perror("socket"); return false; } if (setsockopt(s, SOL_SOCKET, SO_BROADCAST, &one, sizeof(one))) { perror("setsockopt"); return false; } addrp = (struct sockaddr_in *) &ifr.ifr_addr; memset(addrp, 0, sizeof(*addrp)); addrp->sin_family = AF_INET; addrp->sin_len = sizeof(*addrp); addrp->sin_port = 0; // Make an address 127.0.<lo>.1 to manage multiple loopback ifs. // (There is normally only 1, so it's the standard 127.0.0.1) addrp->sin_addr.s_addr = htonl((0x100 * lo) + INADDR_LOOPBACK) ; // Init the one we were told to sprintf(ifr.ifr_name, "lo%d", lo); if (ioctl(s, SIOCSIFADDR, &ifr)) { perror("SIOCIFADDR"); return false; } #if 1 < CYGPKG_NET_NLOOP // We cheat to make different nets for multiple loopback devs addrp->sin_addr.s_addr = netmask.s_addr = htonl(IN_CLASSC_NET); #else // addrp->sin_addr.s_addr = netmask.s_addr = htonl(IN_CLASSA_NET); #endif if (ioctl(s, SIOCSIFNETMASK, &ifr)) { perror("SIOCSIFNETMASK"); return false; } ifr.ifr_flags = IFF_UP | IFF_BROADCAST | IFF_RUNNING; if (ioctl(s, SIOCSIFFLAGS, &ifr)) { perror("SIOCSIFFLAGS"); return false; } gateway.s_addr = htonl(INADDR_LOOPBACK); memset(&route, 0, sizeof(route)); addrp->sin_family = AF_INET; addrp->sin_port = 0; addrp->sin_addr.s_addr = htonl((0x100 * lo) + INADDR_LOOPBACK) & netmask.s_addr; memcpy(&route.rt_dst, addrp, sizeof(*addrp)); addrp->sin_addr = netmask; memcpy(&route.rt_genmask, addrp, sizeof(*addrp)); addrp->sin_addr = gateway; memcpy(&route.rt_gateway, addrp, sizeof(*addrp)); route.rt_dev = ifr.ifr_name; route.rt_flags = RTF_UP|RTF_GATEWAY; route.rt_metric = 0; if (ioctl(s, SIOCADDRT, &route)) { diag_printf("Route - dst: %s", inet_ntoa(((struct sockaddr_in *)&route.rt_dst)->sin_addr)); diag_printf(", mask: %s", inet_ntoa(((struct sockaddr_in *)&route.rt_genmask)->sin_addr)); diag_printf(", gateway: %s\n", inet_ntoa(((struct sockaddr_in *)&route.rt_gateway)->sin_addr)); if (errno != EEXIST) { perror("SIOCADDRT 3"); return false; } } close(s); return true; } #endif #endif #if defined(CYGHWR_NET_DRIVER_ETH0_ADDRS_IP) \ || defined(CYGHWR_NET_DRIVER_ETH1_ADDRS_IP) // // Internal function which builds up a fake BOOTP database for // an interface. // static unsigned char * add_tag(unsigned char *vp, unsigned char tag, void *val, int len) { int i; unsigned char *xp = (unsigned char *)val; *vp++ = tag; *vp++ = len; for (i = 0; i < len; i++) { *vp++ = *xp++; } return vp; } static void build_bootp_record(struct bootp *bp, const char *addrs_ip, const char *addrs_netmask, const char *addrs_broadcast, const char *addrs_gateway, const char *addrs_server) { int i; in_addr_t addr; unsigned char *vp; unsigned char cookie[] = VM_RFC1048; bzero(bp, sizeof(struct bootp)); bp->bp_op = BOOTREPLY; bp->bp_htype = HTYPE_ETHERNET; bp->bp_hlen = 6; for (i = 0; i < bp->bp_hlen; i++) { bp->bp_chaddr[i] = 0xFF; } bp->bp_ciaddr.s_addr = inet_addr(addrs_ip); bp->bp_yiaddr.s_addr = inet_addr(addrs_ip); bp->bp_siaddr.s_addr = inet_addr(addrs_server); bp->bp_giaddr.s_addr = inet_addr(addrs_gateway); vp = &bp->bp_vend[0]; bcopy(&cookie, vp, sizeof(cookie)); vp += sizeof(cookie); addr = inet_addr(addrs_netmask); vp = add_tag(vp, TAG_SUBNET_MASK, &addr, sizeof(in_addr_t)); addr = inet_addr(addrs_broadcast); vp = add_tag(vp, TAG_IP_BROADCAST, &addr, sizeof(in_addr_t)); *vp = TAG_END; } #endif // // Initialize network interface[s] using BOOTP/DHCP // void init_all_network_interfaces(void) { static volatile int in_init_all_network_interfaces = 0; cyg_scheduler_lock(); while ( in_init_all_network_interfaces ) { // Another thread is doing this... cyg_scheduler_unlock(); cyg_thread_delay( 10 ); cyg_scheduler_lock(); } in_init_all_network_interfaces = 1; cyg_scheduler_unlock(); #ifdef CYGHWR_NET_DRIVER_ETH0 if ( ! eth0_up ) { // Make this call idempotent #ifdef CYGHWR_NET_DRIVER_ETH0_BOOTP // Perform a complete initialization, using BOOTP/DHCP eth0_up = true; if (do_bootp(eth0_name, ð0_bootp_data)) { #ifdef CYGHWR_NET_DRIVER_ETH0_BOOTP_SHOW show_bootp(eth0_name, ð0_bootp_data); #endif } else { diag_printf("BOOTP failed on eth0\n"); eth0_up = false; } #elif defined(CYGHWR_NET_DRIVER_ETH0_ADDRS_IP) eth0_up = true; build_bootp_record(ð0_bootp_data, string(CYGHWR_NET_DRIVER_ETH0_ADDRS_IP), string(CYGHWR_NET_DRIVER_ETH0_ADDRS_NETMASK), string(CYGHWR_NET_DRIVER_ETH0_ADDRS_BROADCAST), string(CYGHWR_NET_DRIVER_ETH0_ADDRS_GATEWAY), string(CYGHWR_NET_DRIVER_ETH0_ADDRS_SERVER)); show_bootp(eth0_name, ð0_bootp_data); #endif } #endif // CYGHWR_NET_DRIVER_ETH0 #ifdef CYGHWR_NET_DRIVER_ETH1 if ( ! eth1_up ) { // Make this call idempotent #ifdef CYGHWR_NET_DRIVER_ETH1_BOOTP // Perform a complete initialization, using BOOTP/DHCP eth1_up = true; if (do_bootp(eth1_name, ð1_bootp_data)) { #ifdef CYGHWR_NET_DRIVER_ETH1_BOOTP_SHOW show_bootp(eth1_name, ð1_bootp_data); #endif } else { diag_printf("BOOTP failed on eth1\n"); eth1_up = false; } #elif defined(CYGHWR_NET_DRIVER_ETH1_ADDRS_IP) eth1_up = true; build_bootp_record(ð1_bootp_data, string(CYGHWR_NET_DRIVER_ETH1_ADDRS_IP), string(CYGHWR_NET_DRIVER_ETH1_ADDRS_NETMASK), string(CYGHWR_NET_DRIVER_ETH1_ADDRS_BROADCAST), string(CYGHWR_NET_DRIVER_ETH1_ADDRS_GATEWAY), string(CYGHWR_NET_DRIVER_ETH1_ADDRS_SERVER)); show_bootp(eth1_name, ð1_bootp_data); #endif } #endif // CYGHWR_NET_DRIVER_ETH1 #ifdef CYGHWR_NET_DRIVER_ETH0 #ifndef CYGHWR_NET_DRIVER_ETH0_MANUAL if (eth0_up) { if (!init_net(eth0_name, ð0_bootp_data)) { diag_printf("Network initialization failed for eth0\n"); eth0_up = false; } } #endif #endif #ifdef CYGHWR_NET_DRIVER_ETH1 #ifndef CYGHWR_NET_DRIVER_ETH1_MANUAL if (eth1_up) { if (!init_net(eth1_name, ð1_bootp_data)) { diag_printf("Network initialization failed for eth1\n"); eth1_up = false; } } #endif #endif #ifdef CYGPKG_NET_NLOOP #if 0 < CYGPKG_NET_NLOOP { static int loop_init = 0; int i; if ( 0 == loop_init++ ) for ( i = 0; i < CYGPKG_NET_NLOOP; i++ ) init_loopback_interface( i ); } #endif #endif // Open the monitor to other threads. in_init_all_network_interfaces = 0; }
