]>
Commit | Line | Data |
---|---|---|
f739fcd8 | 1 | // SPDX-License-Identifier: GPL-2.0 |
d280d3f4 JH |
2 | /* |
3 | * Copied from Linux Monitor (LiMon) - Networking. | |
4 | * | |
5 | * Copyright 1994 - 2000 Neil Russell. | |
6 | * (See License) | |
7 | * Copyright 2000 Roland Borde | |
8 | * Copyright 2000 Paolo Scaffardi | |
9 | * Copyright 2000-2002 Wolfgang Denk, [email protected] | |
10 | */ | |
11 | ||
12 | #include <common.h> | |
09140113 | 13 | #include <env.h> |
f7ae49fc | 14 | #include <log.h> |
90526e9f | 15 | #include <net.h> |
c05ed00a | 16 | #include <linux/delay.h> |
d280d3f4 JH |
17 | |
18 | #include "arp.h" | |
19 | ||
20 | #ifndef CONFIG_ARP_TIMEOUT | |
21 | /* Milliseconds before trying ARP again */ | |
22 | # define ARP_TIMEOUT 5000UL | |
23 | #else | |
24 | # define ARP_TIMEOUT CONFIG_ARP_TIMEOUT | |
25 | #endif | |
26 | ||
27 | ||
28 | #ifndef CONFIG_NET_RETRY_COUNT | |
29 | # define ARP_TIMEOUT_COUNT 5 /* # of timeouts before giving up */ | |
30 | #else | |
31 | # define ARP_TIMEOUT_COUNT CONFIG_NET_RETRY_COUNT | |
32 | #endif | |
33 | ||
049a95a7 JH |
34 | struct in_addr net_arp_wait_packet_ip; |
35 | static struct in_addr net_arp_wait_reply_ip; | |
d280d3f4 | 36 | /* MAC address of waiting packet's destination */ |
85d25e0e JH |
37 | uchar *arp_wait_packet_ethaddr; |
38 | int arp_wait_tx_packet_size; | |
39 | ulong arp_wait_timer_start; | |
40 | int arp_wait_try; | |
ac3f26cc | 41 | uchar *arp_tx_packet; /* THE ARP transmit packet */ |
85d25e0e | 42 | static uchar arp_tx_packet_buf[PKTSIZE_ALIGN + PKTALIGN]; |
e94070c4 | 43 | |
85d25e0e | 44 | void arp_init(void) |
d280d3f4 JH |
45 | { |
46 | /* XXX problem with bss workaround */ | |
85d25e0e | 47 | arp_wait_packet_ethaddr = NULL; |
049a95a7 JH |
48 | net_arp_wait_packet_ip.s_addr = 0; |
49 | net_arp_wait_reply_ip.s_addr = 0; | |
85d25e0e JH |
50 | arp_wait_tx_packet_size = 0; |
51 | arp_tx_packet = &arp_tx_packet_buf[0] + (PKTALIGN - 1); | |
52 | arp_tx_packet -= (ulong)arp_tx_packet % PKTALIGN; | |
d280d3f4 JH |
53 | } |
54 | ||
85d25e0e | 55 | void arp_raw_request(struct in_addr source_ip, const uchar *target_ethaddr, |
049a95a7 | 56 | struct in_addr target_ip) |
d280d3f4 JH |
57 | { |
58 | uchar *pkt; | |
738853bb | 59 | struct arp_hdr *arp; |
00f33268 | 60 | int eth_hdr_size; |
d280d3f4 | 61 | |
85d25e0e | 62 | debug_cond(DEBUG_DEV_PKT, "ARP broadcast %d\n", arp_wait_try); |
d280d3f4 | 63 | |
85d25e0e | 64 | pkt = arp_tx_packet; |
d280d3f4 | 65 | |
1203fcce | 66 | eth_hdr_size = net_set_ether(pkt, net_bcast_ethaddr, PROT_ARP); |
00f33268 | 67 | pkt += eth_hdr_size; |
d280d3f4 | 68 | |
85d25e0e | 69 | arp = (struct arp_hdr *)pkt; |
d280d3f4 JH |
70 | |
71 | arp->ar_hrd = htons(ARP_ETHER); | |
72 | arp->ar_pro = htons(PROT_IP); | |
674bb249 JH |
73 | arp->ar_hln = ARP_HLEN; |
74 | arp->ar_pln = ARP_PLEN; | |
d280d3f4 JH |
75 | arp->ar_op = htons(ARPOP_REQUEST); |
76 | ||
0adb5b76 | 77 | memcpy(&arp->ar_sha, net_ethaddr, ARP_HLEN); /* source ET addr */ |
049a95a7 | 78 | net_write_ip(&arp->ar_spa, source_ip); /* source IP addr */ |
85d25e0e | 79 | memcpy(&arp->ar_tha, target_ethaddr, ARP_HLEN); /* target ET addr */ |
049a95a7 | 80 | net_write_ip(&arp->ar_tpa, target_ip); /* target IP addr */ |
22804189 | 81 | |
85d25e0e | 82 | net_send_packet(arp_tx_packet, eth_hdr_size + ARP_HDR_SIZE); |
22804189 JH |
83 | } |
84 | ||
85d25e0e | 85 | void arp_request(void) |
22804189 | 86 | { |
049a95a7 JH |
87 | if ((net_arp_wait_packet_ip.s_addr & net_netmask.s_addr) != |
88 | (net_ip.s_addr & net_netmask.s_addr)) { | |
89 | if (net_gateway.s_addr == 0) { | |
d280d3f4 | 90 | puts("## Warning: gatewayip needed but not set\n"); |
049a95a7 | 91 | net_arp_wait_reply_ip = net_arp_wait_packet_ip; |
d280d3f4 | 92 | } else { |
049a95a7 | 93 | net_arp_wait_reply_ip = net_gateway; |
d280d3f4 JH |
94 | } |
95 | } else { | |
049a95a7 | 96 | net_arp_wait_reply_ip = net_arp_wait_packet_ip; |
d280d3f4 JH |
97 | } |
98 | ||
0adb5b76 | 99 | arp_raw_request(net_ip, net_null_ethaddr, net_arp_wait_reply_ip); |
d280d3f4 JH |
100 | } |
101 | ||
45b47734 | 102 | int arp_timeout_check(void) |
d280d3f4 JH |
103 | { |
104 | ulong t; | |
105 | ||
3f02c98b | 106 | if (!arp_is_waiting()) |
45b47734 | 107 | return 0; |
d280d3f4 JH |
108 | |
109 | t = get_timer(0); | |
110 | ||
111 | /* check for arp timeout */ | |
85d25e0e JH |
112 | if ((t - arp_wait_timer_start) > ARP_TIMEOUT) { |
113 | arp_wait_try++; | |
d280d3f4 | 114 | |
85d25e0e | 115 | if (arp_wait_try >= ARP_TIMEOUT_COUNT) { |
d280d3f4 | 116 | puts("\nARP Retry count exceeded; starting again\n"); |
85d25e0e | 117 | arp_wait_try = 0; |
94323111 | 118 | net_set_state(NETLOOP_FAIL); |
d280d3f4 | 119 | } else { |
85d25e0e JH |
120 | arp_wait_timer_start = t; |
121 | arp_request(); | |
d280d3f4 JH |
122 | } |
123 | } | |
45b47734 | 124 | return 1; |
d280d3f4 JH |
125 | } |
126 | ||
85d25e0e | 127 | void arp_receive(struct ethernet_hdr *et, struct ip_udp_hdr *ip, int len) |
d280d3f4 | 128 | { |
738853bb | 129 | struct arp_hdr *arp; |
049a95a7 | 130 | struct in_addr reply_ip_addr; |
00f33268 | 131 | int eth_hdr_size; |
ac3f26cc | 132 | uchar *tx_packet; |
d280d3f4 JH |
133 | |
134 | /* | |
135 | * We have to deal with two types of ARP packets: | |
136 | * - REQUEST packets will be answered by sending our | |
137 | * IP address - if we know it. | |
138 | * - REPLY packates are expected only after we asked | |
139 | * for the TFTP server's or the gateway's ethernet | |
140 | * address; so if we receive such a packet, we set | |
141 | * the server ethernet address | |
142 | */ | |
4ef8d53c | 143 | debug_cond(DEBUG_NET_PKT, "Got ARP\n"); |
d280d3f4 | 144 | |
738853bb | 145 | arp = (struct arp_hdr *)ip; |
d280d3f4 JH |
146 | if (len < ARP_HDR_SIZE) { |
147 | printf("bad length %d < %d\n", len, ARP_HDR_SIZE); | |
148 | return; | |
149 | } | |
150 | if (ntohs(arp->ar_hrd) != ARP_ETHER) | |
151 | return; | |
152 | if (ntohs(arp->ar_pro) != PROT_IP) | |
153 | return; | |
674bb249 | 154 | if (arp->ar_hln != ARP_HLEN) |
d280d3f4 | 155 | return; |
674bb249 | 156 | if (arp->ar_pln != ARP_PLEN) |
d280d3f4 JH |
157 | return; |
158 | ||
049a95a7 | 159 | if (net_ip.s_addr == 0) |
d280d3f4 JH |
160 | return; |
161 | ||
049a95a7 | 162 | if (net_read_ip(&arp->ar_tpa).s_addr != net_ip.s_addr) |
d280d3f4 JH |
163 | return; |
164 | ||
165 | switch (ntohs(arp->ar_op)) { | |
166 | case ARPOP_REQUEST: | |
167 | /* reply with our IP address */ | |
4ef8d53c | 168 | debug_cond(DEBUG_DEV_PKT, "Got ARP REQUEST, return our IP\n"); |
e7111015 | 169 | eth_hdr_size = net_update_ether(et, et->et_src, PROT_ARP); |
d280d3f4 | 170 | arp->ar_op = htons(ARPOP_REPLY); |
674bb249 | 171 | memcpy(&arp->ar_tha, &arp->ar_sha, ARP_HLEN); |
049a95a7 | 172 | net_copy_ip(&arp->ar_tpa, &arp->ar_spa); |
0adb5b76 | 173 | memcpy(&arp->ar_sha, net_ethaddr, ARP_HLEN); |
049a95a7 | 174 | net_copy_ip(&arp->ar_spa, &net_ip); |
c6975762 JH |
175 | |
176 | #ifdef CONFIG_CMD_LINK_LOCAL | |
177 | /* | |
178 | * Work-around for brain-damaged Cisco equipment with | |
179 | * arp-proxy enabled. | |
180 | * | |
181 | * If the requesting IP is not on our subnet, wait 5ms to | |
182 | * reply to ARP request so that our reply will overwrite | |
183 | * the arp-proxy's instead of the other way around. | |
184 | */ | |
049a95a7 JH |
185 | if ((net_read_ip(&arp->ar_tpa).s_addr & net_netmask.s_addr) != |
186 | (net_read_ip(&arp->ar_spa).s_addr & net_netmask.s_addr)) | |
c6975762 JH |
187 | udelay(5000); |
188 | #endif | |
ac3f26cc JH |
189 | tx_packet = net_get_async_tx_pkt_buf(); |
190 | memcpy(tx_packet, et, eth_hdr_size + ARP_HDR_SIZE); | |
191 | net_send_packet(tx_packet, eth_hdr_size + ARP_HDR_SIZE); | |
d280d3f4 JH |
192 | return; |
193 | ||
194 | case ARPOP_REPLY: /* arp reply */ | |
3f02c98b JH |
195 | /* are we waiting for a reply? */ |
196 | if (!arp_is_waiting()) | |
d280d3f4 JH |
197 | break; |
198 | ||
199 | #ifdef CONFIG_KEEP_SERVERADDR | |
049a95a7 | 200 | if (net_server_ip.s_addr == net_arp_wait_packet_ip.s_addr) { |
d280d3f4 | 201 | char buf[20]; |
a0bc44e6 | 202 | sprintf(buf, "%pM", &arp->ar_sha); |
382bee57 | 203 | env_set("serveraddr", buf); |
d280d3f4 JH |
204 | } |
205 | #endif | |
206 | ||
049a95a7 | 207 | reply_ip_addr = net_read_ip(&arp->ar_spa); |
d280d3f4 JH |
208 | |
209 | /* matched waiting packet's address */ | |
049a95a7 | 210 | if (reply_ip_addr.s_addr == net_arp_wait_reply_ip.s_addr) { |
4ef8d53c | 211 | debug_cond(DEBUG_DEV_PKT, |
85d25e0e JH |
212 | "Got ARP REPLY, set eth addr (%pM)\n", |
213 | arp->ar_data); | |
d280d3f4 JH |
214 | |
215 | /* save address for later use */ | |
85d25e0e JH |
216 | if (arp_wait_packet_ethaddr != NULL) |
217 | memcpy(arp_wait_packet_ethaddr, | |
f1d2d284 | 218 | &arp->ar_sha, ARP_HLEN); |
d280d3f4 | 219 | |
ece223b5 | 220 | net_get_arp_handler()((uchar *)arp, 0, reply_ip_addr, |
85d25e0e | 221 | 0, len); |
ece223b5 | 222 | |
e94070c4 JH |
223 | /* set the mac address in the waiting packet's header |
224 | and transmit it */ | |
1203fcce JH |
225 | memcpy(((struct ethernet_hdr *)net_tx_packet)->et_dest, |
226 | &arp->ar_sha, ARP_HLEN); | |
85d25e0e | 227 | net_send_packet(net_tx_packet, arp_wait_tx_packet_size); |
d280d3f4 JH |
228 | |
229 | /* no arp request pending now */ | |
049a95a7 | 230 | net_arp_wait_packet_ip.s_addr = 0; |
85d25e0e JH |
231 | arp_wait_tx_packet_size = 0; |
232 | arp_wait_packet_ethaddr = NULL; | |
d280d3f4 JH |
233 | } |
234 | return; | |
235 | default: | |
236 | debug("Unexpected ARP opcode 0x%x\n", | |
237 | ntohs(arp->ar_op)); | |
238 | return; | |
239 | } | |
240 | } | |
3f02c98b JH |
241 | |
242 | bool arp_is_waiting(void) | |
243 | { | |
244 | return !!net_arp_wait_packet_ip.s_addr; | |
245 | } |