/* * This is a DHCP client implementation for the RTL837x-based switches */ // #define REGDBG // #define DEBUG #include #include "rtl837x_sfr.h" #include "rtl837x_common.h" #include "dhcp.h" #include "uip.h" #include "uip/uip.h" __xdata struct dhcp_state dhcp_state; __xdata uip_ipaddr_t server; #define DHCP_HW_TYPE_ETH 1 #define DHCP_SUBNET_MASK 1 #define DHCP_SUBNET_MASK_LEN 4 #define DHCP_ROUTER 3 #define DHCP_ROUTER_LEN 4 #define DHCP_DNS 6 #define DHCP_DNS_LEN 4 #define DHCP_BROADCAST 28 #define DHCP_BROADCAST_LEN 4 #define DHCP_SERVER_ID 54 #define DHCP_SERVER_ID_LEN 4 #define DHCP_MESSAGE_TYPE 53 #define DHCP_MESSAGE_TYPE_LEN 1 #define DHCP_MESSAGE_DISCOVER 1 #define DHCP_MESSAGE_OFFER 2 #define DHCP_MESSAGE_REQUEST 3 #define DHCP_MESSAGE_ACK 5 #define DHCP_LEASE 51 #define DHCP_LEASE_LEN 4 #define DHCP_RENEWAL 58 #define DHCP_RENEWAL_LEN 4 #define DHCP_REBIND 59 #define DHCP_REBIND_LEN 4 #define DHCP_CLIENT_ID 61 #define DHCP_CLIENT_ID_LEN 7 #define DHCP_REQUEST_IP 50 #define DHCP_REQUEST_IP_LEN 4 #define DHCP_PARAMS 55 #define DHCP_PARAM_SUBNET 1 #define DHCP_PARAM_ROUTER 3 #define DHCP_PARAM_DNS 6 #define DHCP_END 255 #pragma codeseg BANK2 #pragma constseg BANK2 struct dhcp_pkt { uint8_t type; uint8_t hw; uint8_t hw_len; uint8_t hops; uint32_t tid; uint16_t delay; uint16_t flags; uint8_t client_ip[4]; uint8_t your_ip[4]; uint8_t next_server_ip[4]; uint8_t relay_ip[4]; uint8_t client_addr[6]; uint8_t client_pad[10]; uint8_t server_name[64]; uint8_t file[128]; uint8_t cookie[4]; }; /* #define DHCP_P ((__xdata struct dhcp_pkt *)&uip_buf[RTL_TAG_SIZE + VLAN_TAG_SIZE]) #define DHCP_OPT ((__xdata uint8_t *)&uip_buf[RTL_TAG_SIZE + VLAN_TAG_SIZE + sizeof (struct dhcp_pkt)]) */ #define DHCP_P ((__xdata struct dhcp_pkt *)uip_appdata) #define DHCP_OPT ((__xdata uint8_t *)(uip_appdata) + sizeof (struct dhcp_pkt)) __xdata uint32_t long_value; void dhcp_print_ip(__xdata uint8_t *a) { itoa(a[0]); write_char('.'); itoa(a[1]); write_char('.'); itoa(a[2]); write_char('.'); itoa(a[3]); } void dhcp_prepare_request(void) { DHCP_P->type = 1; DHCP_P->hw = DHCP_HW_TYPE_ETH; DHCP_P->hw_len = 6; DHCP_P->hops = 0; DHCP_P->tid = HTONS(dhcp_state.transaction_id); DHCP_P->delay = HTONS(0); DHCP_P->flags = 0; // Clear fields client_ip to bootp_file memset(DHCP_P->client_ip, 0, 224); memcpy(DHCP_P->client_addr, uip_ethaddr.addr, 6); DHCP_P->cookie[0] = 0x63; DHCP_P->cookie[1] = 0x82; DHCP_P->cookie[2] = 0x53; DHCP_P->cookie[3] = 0x63; } void dhcp_addopt_client_id(void) { DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_CLIENT_ID; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_CLIENT_ID_LEN; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_HW_TYPE_ETH; memcpy(&DHCP_OPT[dhcp_state.opt_ptr], uip_ethaddr.addr, 6); dhcp_state.opt_ptr += 6; } void dhcp_addopt_request_ip(void) { DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_REQUEST_IP; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_REQUEST_IP_LEN; DHCP_OPT[dhcp_state.opt_ptr++] = dhcp_state.current_ip[0]; DHCP_OPT[dhcp_state.opt_ptr++] = dhcp_state.current_ip[1]; DHCP_OPT[dhcp_state.opt_ptr++] = dhcp_state.current_ip[2]; DHCP_OPT[dhcp_state.opt_ptr++] = dhcp_state.current_ip[3]; memcpy(&DHCP_OPT[dhcp_state.opt_ptr], uip_ethaddr.addr, 4); } void dhcp_addopt_server_id(void) { DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_SERVER_ID; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_SERVER_ID_LEN; DHCP_OPT[dhcp_state.opt_ptr++] = dhcp_state.server[0]; DHCP_OPT[dhcp_state.opt_ptr++] = dhcp_state.server[1]; DHCP_OPT[dhcp_state.opt_ptr++] = dhcp_state.server[2]; DHCP_OPT[dhcp_state.opt_ptr++] = dhcp_state.server[3]; memcpy(&DHCP_OPT[dhcp_state.opt_ptr], uip_ethaddr.addr, 4); } void dhcp_send_discover(void) { print_string("dhcp_send_discover called\n"); dhcp_prepare_request(); dhcp_state.opt_ptr = 0; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_MESSAGE_TYPE; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_MESSAGE_TYPE_LEN; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_MESSAGE_DISCOVER; dhcp_addopt_client_id(); dhcp_addopt_request_ip(); DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_PARAMS; DHCP_OPT[dhcp_state.opt_ptr++] = 3; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_PARAM_SUBNET; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_PARAM_ROUTER; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_PARAM_DNS; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_END; // Padding to 300 bytes DHCP_OPT[dhcp_state.opt_ptr++] = 0; DHCP_OPT[dhcp_state.opt_ptr++] = 0; DHCP_OPT[dhcp_state.opt_ptr++] = 0; DHCP_OPT[dhcp_state.opt_ptr++] = 0; DHCP_OPT[dhcp_state.opt_ptr++] = 0; DHCP_OPT[dhcp_state.opt_ptr++] = 0; uip_udp_send(sizeof(struct dhcp_pkt) + dhcp_state.opt_ptr); dhcp_state.state = DHCP_DISCOVER_SENT; dhcp_state.ticks = SYS_TICK_HZ; dhcp_state.dhcp_timer = 30; // Timeout for discover } void dhcp_send_request(void) { print_string("dhcp_send_request called\n"); dhcp_prepare_request(); dhcp_state.opt_ptr = 0; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_MESSAGE_TYPE; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_MESSAGE_TYPE_LEN; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_MESSAGE_REQUEST; dhcp_addopt_client_id(); dhcp_addopt_request_ip(); dhcp_addopt_server_id(); DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_PARAMS; DHCP_OPT[dhcp_state.opt_ptr++] = 3; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_PARAM_SUBNET; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_PARAM_ROUTER; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_PARAM_DNS; DHCP_OPT[dhcp_state.opt_ptr++] = DHCP_END; // Padding to 300 bytes DHCP_OPT[dhcp_state.opt_ptr++] = 0; DHCP_OPT[dhcp_state.opt_ptr++] = 0; DHCP_OPT[dhcp_state.opt_ptr++] = 0; DHCP_OPT[dhcp_state.opt_ptr++] = 0; DHCP_OPT[dhcp_state.opt_ptr++] = 0; DHCP_OPT[dhcp_state.opt_ptr++] = 0; uip_udp_send(sizeof(struct dhcp_pkt) + dhcp_state.opt_ptr); dhcp_state.state = DHCP_REQUEST_SENT; dhcp_state.ticks = SYS_TICK_HZ; dhcp_state.dhcp_timer = 30; // Timeout for request } void ip_opt(__xdata uint8_t * ip) { dhcp_state.opt_ptr++; uint8_t len = DHCP_OPT[dhcp_state.opt_ptr++]; *ip++ = DHCP_OPT[dhcp_state.opt_ptr++]; *ip++ = DHCP_OPT[dhcp_state.opt_ptr++]; *ip++ = DHCP_OPT[dhcp_state.opt_ptr++]; *ip++ = DHCP_OPT[dhcp_state.opt_ptr++]; // There may be more than one IP option, such as 2 DNS servers advertised dhcp_state.opt_ptr += len - 4; } void long_opt(void) { dhcp_state.opt_ptr++; dhcp_state.opt_ptr++; long_value = DHCP_OPT[dhcp_state.opt_ptr++]; long_value <<= 8; long_value |= DHCP_OPT[dhcp_state.opt_ptr++]; long_value <<= 8; long_value |= DHCP_OPT[dhcp_state.opt_ptr++]; long_value <<= 8; long_value |= DHCP_OPT[dhcp_state.opt_ptr++]; } void parse_opts(void) { while (DHCP_OPT[dhcp_state.opt_ptr] && DHCP_OPT[dhcp_state.opt_ptr] != DHCP_END) { switch(DHCP_OPT[dhcp_state.opt_ptr]) { case DHCP_SUBNET_MASK: ip_opt(&dhcp_state.subnet[0]); break; case DHCP_ROUTER: ip_opt(&dhcp_state.router[0]); break; case DHCP_DNS: ip_opt(&dhcp_state.dns[0]); break; case DHCP_SERVER_ID: ip_opt(&dhcp_state.server[0]); break; case DHCP_BROADCAST: ip_opt(&dhcp_state.broadcast[0]); break; case DHCP_LEASE: long_opt(); dhcp_state.lease = long_value; break; case DHCP_REBIND: long_opt(); dhcp_state.rebind = long_value; break; case DHCP_RENEWAL: long_opt(); dhcp_state.renewal = long_value; break; case DHCP_END: break; default: print_string("Unknown DHCP option: "); print_byte(DHCP_OPT[dhcp_state.opt_ptr]); write_char('\n'); dhcp_state.opt_ptr++; dhcp_state.opt_ptr += DHCP_OPT[dhcp_state.opt_ptr]; dhcp_state.opt_ptr++; } } } void parse_dhcp(void) { if (!DHCP_P->tid == HTONS(dhcp_state.transaction_id)) return; if (DHCP_P->cookie[0] != 0x63 || DHCP_P->cookie[1] != 0x82 || DHCP_P->cookie[2] != 0x53 || DHCP_P->cookie[3] != 0x63) return; dhcp_state.opt_ptr = 0; if (DHCP_OPT[dhcp_state.opt_ptr++] != DHCP_MESSAGE_TYPE || DHCP_OPT[dhcp_state.opt_ptr++] != DHCP_MESSAGE_TYPE_LEN) return; if (DHCP_OPT[dhcp_state.opt_ptr] == DHCP_MESSAGE_OFFER) { dhcp_state.opt_ptr++; dhcp_state.current_ip[0] = DHCP_P->your_ip[0]; dhcp_state.current_ip[1] = DHCP_P->your_ip[1]; dhcp_state.current_ip[2] = DHCP_P->your_ip[2]; dhcp_state.current_ip[3] = DHCP_P->your_ip[3]; parse_opts(); print_string("DHCP offer received for IP "); dhcp_print_ip(dhcp_state.current_ip); write_char('\n'); dhcp_send_request(); } else if (DHCP_OPT[dhcp_state.opt_ptr++] == DHCP_MESSAGE_ACK) { parse_opts(); print_string("DHCP ACK, our IP is "); dhcp_print_ip(dhcp_state.current_ip); write_char('\n'); print_string("DHCP netmask "); dhcp_print_ip(dhcp_state.subnet); write_char('\n'); print_string("DHCP gateway "); dhcp_print_ip(dhcp_state.router); write_char('\n'); print_string("DHCP lease-time "); print_long(dhcp_state.lease); write_char('\n'); uip_ipaddr(&uip_hostaddr, dhcp_state.current_ip[0], dhcp_state.current_ip[1], dhcp_state.current_ip[2], dhcp_state.current_ip[3]); uip_ipaddr(&uip_draddr, dhcp_state.router[0], dhcp_state.router[1], dhcp_state.router[2], dhcp_state.router[3]); uip_ipaddr(&uip_netmask, dhcp_state.subnet[0], dhcp_state.subnet[1], dhcp_state.subnet[2], dhcp_state.subnet[3]); dhcp_state.state = DHCP_LEASING; dhcp_state.ticks = SYS_TICK_HZ; dhcp_state.dhcp_timer = dhcp_state.renewal > 0xffff ? 0xffff : dhcp_state.renewal; } } void dhcp_start(void) __banked { uip_ipaddr(server, 255,255,255,255); dhcp_state.conn = uip_udp_new(&server, HTONS(DHCPC_SERVER_PORT)); dhcp_state.current_ip[0] = dhcp_state.current_ip[1] = dhcp_state.current_ip[2] = dhcp_state.current_ip[3] = 0; if(dhcp_state.conn) { uip_udp_bind(dhcp_state.conn, HTONS(DHCPC_CLIENT_PORT)); } else { print_string("dhcp_start failed to set up socket\n"); return; } get_random_32(); dhcp_state.transaction_id = SFR_DATA_U32; dhcp_state.state = DHCP_START; print_string("dhcp_start done\n"); } void dhcp_stop(void) __banked { print_string("dhcp_stop called\n"); uip_udp_remove(dhcp_state.conn); dhcp_state.state = DHCP_OFF; } void dhcp_callback(void) __banked { if (!dhcp_state.state) return; if (uip_closed()) { print_string("Closed\n"); return; } else if (uip_newdata()) { parse_dhcp(); } else { if (dhcp_state.state == DHCP_START) { dhcp_send_discover(); } else if (!--dhcp_state.ticks) { // print_string("Timer: "); print_short(dhcp_state.ticks); write_char(' '); print_short(dhcp_state.dhcp_timer); dhcp_state.dhcp_timer--; dhcp_state.ticks = SYS_TICK_HZ; } if (!dhcp_state.dhcp_timer) { switch (dhcp_state.state) { case DHCP_DISCOVER_SENT: dhcp_send_discover(); break; case DHCP_LEASING: case DHCP_REQUEST_SENT: dhcp_send_request(); break; default: print_string("UNKNOWN STATE\n"); } } } // By default we do not send anything out uip_len = 0; }