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CommitLineData
2d966958
WD
1/*
2 * Copied from Linux Monitor (LiMon) - Networking.
3 *
4 * Copyright 1994 - 2000 Neil Russell.
5 * (See License)
6 * Copyright 2000 Roland Borde
7 * Copyright 2000 Paolo Scaffardi
8 * Copyright 2000-2002 Wolfgang Denk, wd@denx.de
2ea91039 9 * SPDX-License-Identifier: GPL-2.0
2d966958
WD
10 */
11
12/*
13 * General Desription:
14 *
15 * The user interface supports commands for BOOTP, RARP, and TFTP.
16 * Also, we support ARP internally. Depending on available data,
17 * these interact as follows:
18 *
19 * BOOTP:
20 *
21 * Prerequisites: - own ethernet address
22 * We want: - own IP address
23 * - TFTP server IP address
24 * - name of bootfile
25 * Next step: ARP
26 *
d22c338e
JH
27 * LINK_LOCAL:
28 *
29 * Prerequisites: - own ethernet address
30 * We want: - own IP address
31 * Next step: ARP
32 *
2d966958
WD
33 * RARP:
34 *
35 * Prerequisites: - own ethernet address
36 * We want: - own IP address
37 * - TFTP server IP address
38 * Next step: ARP
39 *
40 * ARP:
41 *
42 * Prerequisites: - own ethernet address
43 * - own IP address
44 * - TFTP server IP address
45 * We want: - TFTP server ethernet address
46 * Next step: TFTP
47 *
48 * DHCP:
49 *
b2f50807
WD
50 * Prerequisites: - own ethernet address
51 * We want: - IP, Netmask, ServerIP, Gateway IP
52 * - bootfilename, lease time
53 * Next step: - TFTP
2d966958
WD
54 *
55 * TFTP:
56 *
57 * Prerequisites: - own ethernet address
58 * - own IP address
59 * - TFTP server IP address
60 * - TFTP server ethernet address
61 * - name of bootfile (if unknown, we use a default name
62 * derived from our own IP address)
63 * We want: - load the boot file
64 * Next step: none
cbd8a35c
WD
65 *
66 * NFS:
67 *
68 * Prerequisites: - own ethernet address
69 * - own IP address
70 * - name of bootfile (if unknown, we use a default name
71 * derived from our own IP address)
72 * We want: - load the boot file
73 * Next step: none
ea287deb
WD
74 *
75 * SNTP:
76 *
b2f50807 77 * Prerequisites: - own ethernet address
ea287deb
WD
78 * - own IP address
79 * We want: - network time
80 * Next step: none
2d966958
WD
81 */
82
83
84#include <common.h>
2d966958 85#include <command.h>
a9f51c9b 86#include <environment.h>
60304592 87#include <errno.h>
2d966958 88#include <net.h>
4545f4e6 89#if defined(CONFIG_STATUS_LED)
fc3e2165 90#include <miiphy.h>
4545f4e6 91#include <status_led.h>
fc3e2165 92#endif
4545f4e6
JH
93#include <watchdog.h>
94#include <linux/compiler.h>
95#include "arp.h"
96#include "bootp.h"
f575ae1f 97#include "cdp.h"
1a32bf41
RG
98#if defined(CONFIG_CMD_DNS)
99#include "dns.h"
100#endif
d22c338e 101#include "link_local.h"
4545f4e6 102#include "nfs.h"
a36b12f9 103#include "ping.h"
4545f4e6
JH
104#include "rarp.h"
105#if defined(CONFIG_CMD_SNTP)
106#include "sntp.h"
107#endif
108#include "tftp.h"
2d966958 109
d87080b7
WD
110DECLARE_GLOBAL_DATA_PTR;
111
2d966958
WD
112/** BOOTP EXTENTIONS **/
113
3e38e429 114/* Our subnet mask (0=unknown) */
049a95a7 115struct in_addr net_netmask;
3e38e429 116/* Our gateways IP address */
049a95a7 117struct in_addr net_gateway;
3e38e429 118/* Our DNS IP address */
049a95a7 119struct in_addr net_dns_server;
1fe80d79 120#if defined(CONFIG_BOOTP_DNS2)
3e38e429 121/* Our 2nd DNS IP address */
049a95a7 122struct in_addr net_dns_server2;
3e38e429 123#endif
2d966958 124
53a5c424 125#ifdef CONFIG_MCAST_TFTP /* Multicast TFTP */
049a95a7 126struct in_addr net_mcast_addr;
53a5c424
DU
127#endif
128
2d966958
WD
129/** END OF BOOTP EXTENTIONS **/
130
3e38e429 131/* Our ethernet address */
0adb5b76 132u8 net_ethaddr[6];
3e38e429 133/* Boot server enet address */
0adb5b76 134u8 net_server_ethaddr[6];
3e38e429 135/* Our IP addr (0 = unknown) */
049a95a7 136struct in_addr net_ip;
3e38e429 137/* Server IP addr (0 = unknown) */
049a95a7 138struct in_addr net_server_ip;
3e38e429 139/* Current receive packet */
1203fcce 140uchar *net_rx_packet;
3e38e429 141/* Current rx packet length */
1203fcce 142int net_rx_packet_len;
3e38e429
LC
143/* IP packet ID */
144unsigned NetIPID;
145/* Ethernet bcast address */
0adb5b76
JH
146const u8 net_bcast_ethaddr[6] = { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
147const u8 net_null_ethaddr[6];
f85b6071 148#ifdef CONFIG_API
db288a96 149void (*push_packet)(void *, int len) = 0;
f85b6071 150#endif
3e38e429 151/* Network loop state */
22f6e99d 152enum net_loop_state net_state;
3e38e429 153/* Tried all network devices */
c586ce6e 154int NetRestartWrap;
3e38e429 155/* Network loop restarted */
c586ce6e 156static int NetRestarted;
3e38e429 157/* At least one device configured */
c586ce6e 158static int NetDevExists;
2d966958 159
6e592385 160/* XXX in both little & big endian machines 0xFFFF == ntohs(-1) */
3e38e429
LC
161/* default is without VLAN */
162ushort NetOurVLAN = 0xFFFF;
163/* ditto */
164ushort NetOurNativeVLAN = 0xFFFF;
a3d991bd 165
3e38e429 166/* Boot File name */
1411157d
JH
167char net_boot_file_name[128];
168/* The actual transferred size of the bootfile (in bytes) */
169u32 net_boot_file_size;
170/* Boot file size in blocks as reported by the DHCP server */
171u32 net_boot_file_expected_size_in_blocks;
2d966958 172
643d1ab2 173#if defined(CONFIG_CMD_SNTP)
3e38e429 174/* NTP server IP address */
049a95a7 175struct in_addr net_ntp_server;
3e38e429 176/* offset time from UTC */
c586ce6e 177int NetTimeOffset;
ea287deb
WD
178#endif
179
1203fcce 180static uchar net_pkt_buf[(PKTBUFSRX+1) * PKTSIZE_ALIGN + PKTALIGN];
2a504df0
JH
181/* Receive packets */
182uchar *net_rx_packets[PKTBUFSRX];
ece223b5
JH
183/* Current UDP RX packet handler */
184static rxhand_f *udp_packet_handler;
185/* Current ARP RX packet handler */
186static rxhand_f *arp_packet_handler;
39bccd21 187#ifdef CONFIG_CMD_TFTPPUT
ece223b5
JH
188/* Current ICMP rx handler */
189static rxhand_icmp_f *packet_icmp_handler;
39bccd21 190#endif
3e38e429
LC
191/* Current timeout handler */
192static thand_f *timeHandler;
193/* Time base value */
194static ulong timeStart;
195/* Current timeout value */
196static ulong timeDelta;
197/* THE transmit packet */
1203fcce 198uchar *net_tx_packet;
2d966958 199
e4bf0c5c 200static int net_check_prereq(enum proto_t protocol);
2d966958 201
67b96e87
RB
202static int NetTryCount;
203
b63056d6
JL
204int __maybe_unused net_busy_flag;
205
73a8b27c
WD
206/**********************************************************************/
207
a9f51c9b
JH
208static int on_bootfile(const char *name, const char *value, enum env_op op,
209 int flags)
210{
211 switch (op) {
212 case env_op_create:
213 case env_op_overwrite:
1411157d
JH
214 copy_filename(net_boot_file_name, value,
215 sizeof(net_boot_file_name));
a9f51c9b
JH
216 break;
217 default:
218 break;
219 }
220
221 return 0;
222}
223U_BOOT_ENV_CALLBACK(bootfile, on_bootfile);
224
e4a3d57d
SG
225/*
226 * Check if autoload is enabled. If so, use either NFS or TFTP to download
227 * the boot file.
228 */
229void net_auto_load(void)
230{
ec8a252c 231#if defined(CONFIG_CMD_NFS)
e4a3d57d
SG
232 const char *s = getenv("autoload");
233
ec8a252c
JH
234 if (s != NULL && strcmp(s, "NFS") == 0) {
235 /*
236 * Use NFS to load the bootfile.
237 */
68c76a3a 238 nfs_start();
ec8a252c
JH
239 return;
240 }
e4a3d57d 241#endif
ec8a252c
JH
242 if (getenv_yesno("autoload") == 0) {
243 /*
244 * Just use BOOTP/RARP to configure system;
245 * Do not use TFTP to load the bootfile.
246 */
247 net_set_state(NETLOOP_SUCCESS);
248 return;
e4a3d57d 249 }
8885c5fe 250 tftp_start(TFTPGET);
e4a3d57d
SG
251}
252
cb1c9911 253static void NetInitLoop(void)
2f70c49e 254{
c586ce6e 255 static int env_changed_id;
4f63acd0 256 int env_id = get_env_id();
2f70c49e
HS
257
258 /* update only when the environment has changed */
3c172c4f 259 if (env_changed_id != env_id) {
049a95a7
JH
260 net_ip = getenv_ip("ipaddr");
261 net_gateway = getenv_ip("gatewayip");
262 net_netmask = getenv_ip("netmask");
263 net_server_ip = getenv_ip("serverip");
2f70c49e 264 NetOurNativeVLAN = getenv_VLAN("nvlan");
3c172c4f 265 NetOurVLAN = getenv_VLAN("vlan");
1a32bf41 266#if defined(CONFIG_CMD_DNS)
049a95a7 267 net_dns_server = getenv_ip("dnsip");
1a32bf41 268#endif
3c172c4f 269 env_changed_id = env_id;
2f70c49e 270 }
7315cfd9 271 if (eth_get_dev())
0adb5b76 272 memcpy(net_ethaddr, eth_get_ethaddr(), 6);
3c172c4f 273
da95427c 274 return;
2f70c49e
HS
275}
276
ece223b5
JH
277static void net_clear_handlers(void)
278{
279 net_set_udp_handler(NULL);
280 net_set_arp_handler(NULL);
281 NetSetTimeout(0, NULL);
282}
283
284static void net_cleanup_loop(void)
285{
286 net_clear_handlers();
287}
288
46c495d5
JH
289void net_init(void)
290{
291 static int first_call = 1;
292
293 if (first_call) {
294 /*
295 * Setup packet buffers, aligned correctly.
296 */
297 int i;
298
1203fcce
JH
299 net_tx_packet = &net_pkt_buf[0] + (PKTALIGN - 1);
300 net_tx_packet -= (ulong)net_tx_packet % PKTALIGN;
2a504df0 301 for (i = 0; i < PKTBUFSRX; i++) {
1203fcce
JH
302 net_rx_packets[i] = net_tx_packet +
303 (i + 1) * PKTSIZE_ALIGN;
2a504df0 304 }
85d25e0e 305 arp_init();
46c495d5
JH
306 net_clear_handlers();
307
308 /* Only need to setup buffer pointers once. */
309 first_call = 0;
310 }
311
312 NetInitLoop();
313}
314
2d966958
WD
315/**********************************************************************/
316/*
317 * Main network processing loop.
318 */
319
e4bf0c5c 320int NetLoop(enum proto_t protocol)
2d966958 321{
60304592 322 int ret = -EINVAL;
2d966958 323
2d966958
WD
324 NetRestarted = 0;
325 NetDevExists = 0;
67b96e87 326 NetTryCount = 1;
4ef8d53c 327 debug_cond(DEBUG_INT_STATE, "--- NetLoop Entry\n");
73a8b27c 328
573f14fe 329 bootstage_mark_name(BOOTSTAGE_ID_ETH_START, "eth_start");
46c495d5 330 net_init();
f8be7d65 331 if (eth_is_on_demand_init() || protocol != NETCONS) {
b1bf6f2c 332 eth_halt();
f8be7d65 333 eth_set_current();
60304592
JH
334 ret = eth_init();
335 if (ret < 0) {
f8be7d65 336 eth_halt();
60304592 337 return ret;
f8be7d65
JH
338 }
339 } else
d2eaec60 340 eth_init_state_only();
2d966958
WD
341
342restart:
b63056d6
JL
343#ifdef CONFIG_USB_KEYBOARD
344 net_busy_flag = 0;
345#endif
22f6e99d 346 net_set_state(NETLOOP_CONTINUE);
2d966958
WD
347
348 /*
349 * Start the ball rolling with the given start function. From
350 * here on, this code is a state machine driven by received
351 * packets and timer events.
352 */
4ef8d53c 353 debug_cond(DEBUG_INT_STATE, "--- NetLoop Init\n");
cb1c9911 354 NetInitLoop();
2d966958 355
4f63acd0 356 switch (net_check_prereq(protocol)) {
2d966958
WD
357 case 1:
358 /* network not configured */
b1bf6f2c 359 eth_halt();
60304592 360 return -ENODEV;
2d966958 361
2d966958
WD
362 case 2:
363 /* network device not configured */
364 break;
2d966958
WD
365
366 case 0:
2d966958 367 NetDevExists = 1;
1411157d 368 net_boot_file_size = 0;
2d966958 369 switch (protocol) {
e4bf0c5c 370 case TFTPGET:
1fb7cd49
SG
371#ifdef CONFIG_CMD_TFTPPUT
372 case TFTPPUT:
373#endif
2d966958 374 /* always use ARP to get server ethernet address */
8885c5fe 375 tftp_start(protocol);
2d966958 376 break;
7a83af07
LC
377#ifdef CONFIG_CMD_TFTPSRV
378 case TFTPSRV:
8885c5fe 379 tftp_start_server();
7a83af07
LC
380 break;
381#endif
643d1ab2 382#if defined(CONFIG_CMD_DHCP)
2d966958 383 case DHCP:
7044c6bb 384 bootp_reset();
049a95a7 385 net_ip.s_addr = 0;
7044c6bb 386 dhcp_request(); /* Basically same as BOOTP */
2d966958 387 break;
610f2e9c 388#endif
2d966958
WD
389
390 case BOOTP:
7044c6bb 391 bootp_reset();
049a95a7 392 net_ip.s_addr = 0;
7044c6bb 393 bootp_request();
2d966958
WD
394 break;
395
bf6cb247 396#if defined(CONFIG_CMD_RARP)
2d966958 397 case RARP:
698d78e5 398 rarp_try = 0;
049a95a7 399 net_ip.s_addr = 0;
698d78e5 400 rarp_request();
2d966958 401 break;
bf6cb247 402#endif
643d1ab2 403#if defined(CONFIG_CMD_PING)
73a8b27c 404 case PING:
a36b12f9 405 ping_start();
73a8b27c 406 break;
cbd8a35c 407#endif
643d1ab2 408#if defined(CONFIG_CMD_NFS)
cbd8a35c 409 case NFS:
68c76a3a 410 nfs_start();
cbd8a35c 411 break;
a3d991bd 412#endif
643d1ab2 413#if defined(CONFIG_CMD_CDP)
a3d991bd 414 case CDP:
6aede5b7 415 cdp_start();
a3d991bd 416 break;
68ceb29e 417#endif
1f9ce306 418#if defined (CONFIG_NETCONSOLE) && !(CONFIG_SPL_BUILD)
68ceb29e
WD
419 case NETCONS:
420 NcStart();
421 break;
ea287deb 422#endif
643d1ab2 423#if defined(CONFIG_CMD_SNTP)
ea287deb 424 case SNTP:
38ba2558 425 sntp_start();
ea287deb 426 break;
1a32bf41
RG
427#endif
428#if defined(CONFIG_CMD_DNS)
429 case DNS:
786eac5f 430 dns_start();
1a32bf41 431 break;
d22c338e
JH
432#endif
433#if defined(CONFIG_CMD_LINK_LOCAL)
434 case LINKLOCAL:
435 link_local_start();
436 break;
73a8b27c 437#endif
2d966958
WD
438 default:
439 break;
440 }
441
2d966958
WD
442 break;
443 }
444
643d1ab2 445#if defined(CONFIG_MII) || defined(CONFIG_CMD_MII)
3e38e429
LC
446#if defined(CONFIG_SYS_FAULT_ECHO_LINK_DOWN) && \
447 defined(CONFIG_STATUS_LED) && \
448 defined(STATUS_LED_RED)
fc3e2165 449 /*
42d1f039 450 * Echo the inverted link state to the fault LED.
fc3e2165 451 */
d3c65b01 452 if (miiphy_link(eth_get_dev()->name, CONFIG_SYS_FAULT_MII_ADDR))
4f63acd0 453 status_led_set(STATUS_LED_RED, STATUS_LED_OFF);
d3c65b01 454 else
4f63acd0 455 status_led_set(STATUS_LED_RED, STATUS_LED_ON);
6d0f6bcf 456#endif /* CONFIG_SYS_FAULT_ECHO_LINK_DOWN, ... */
fc3e2165 457#endif /* CONFIG_MII, ... */
b63056d6
JL
458#ifdef CONFIG_USB_KEYBOARD
459 net_busy_flag = 1;
460#endif
2d966958
WD
461
462 /*
463 * Main packet reception loop. Loop receiving packets until
22f6e99d 464 * someone sets `net_state' to a state that terminates.
2d966958
WD
465 */
466 for (;;) {
467 WATCHDOG_RESET();
468#ifdef CONFIG_SHOW_ACTIVITY
48522bb5 469 show_activity(1);
2d966958
WD
470#endif
471 /*
472 * Check the ethernet for a new packet. The ethernet
473 * receive routine will process it.
60304592
JH
474 * Most drivers return the most recent packet size, but not
475 * errors that may have happened.
2d966958 476 */
40cb90ee 477 eth_rx();
2d966958
WD
478
479 /*
480 * Abort if ctrl-c was pressed.
481 */
482 if (ctrlc()) {
e94070c4 483 /* cancel any ARP that may not have completed */
049a95a7 484 net_arp_wait_packet_ip.s_addr = 0;
e94070c4 485
ece223b5 486 net_cleanup_loop();
8bde7f77 487 eth_halt();
f8be7d65
JH
488 /* Invalidate the last protocol */
489 eth_set_last_protocol(BOOTP);
490
4f63acd0 491 puts("\nAbort\n");
4ef8d53c
JH
492 /* include a debug print as well incase the debug
493 messages are directed to stderr */
494 debug_cond(DEBUG_INT_STATE, "--- NetLoop Abort!\n");
4793ee65 495 goto done;
2d966958
WD
496 }
497
85d25e0e 498 arp_timeout_check();
2d966958
WD
499
500 /*
501 * Check for a timeout, and run the timeout handler
502 * if we have one.
503 */
e0ac62d7 504 if (timeHandler && ((get_timer(0) - timeStart) > timeDelta)) {
2d966958
WD
505 thand_f *x;
506
643d1ab2 507#if defined(CONFIG_MII) || defined(CONFIG_CMD_MII)
4f63acd0
LC
508#if defined(CONFIG_SYS_FAULT_ECHO_LINK_DOWN) && \
509 defined(CONFIG_STATUS_LED) && \
510 defined(STATUS_LED_RED)
fc3e2165 511 /*
42d1f039 512 * Echo the inverted link state to the fault LED.
fc3e2165 513 */
4f63acd0 514 if (miiphy_link(eth_get_dev()->name,
3e38e429 515 CONFIG_SYS_FAULT_MII_ADDR)) {
4f63acd0 516 status_led_set(STATUS_LED_RED, STATUS_LED_OFF);
fc3e2165 517 } else {
4f63acd0 518 status_led_set(STATUS_LED_RED, STATUS_LED_ON);
fc3e2165 519 }
4f63acd0 520#endif /* CONFIG_SYS_FAULT_ECHO_LINK_DOWN, ... */
fc3e2165 521#endif /* CONFIG_MII, ... */
4ef8d53c 522 debug_cond(DEBUG_INT_STATE, "--- NetLoop timeout\n");
2d966958
WD
523 x = timeHandler;
524 timeHandler = (thand_f *)0;
525 (*x)();
526 }
527
5c421331 528 if (net_state == NETLOOP_FAIL)
60304592 529 ret = NetStartAgain();
2d966958 530
22f6e99d 531 switch (net_state) {
2d966958
WD
532
533 case NETLOOP_RESTART:
2d966958 534 NetRestarted = 1;
2d966958
WD
535 goto restart;
536
537 case NETLOOP_SUCCESS:
ece223b5 538 net_cleanup_loop();
1411157d
JH
539 if (net_boot_file_size > 0) {
540 printf("Bytes transferred = %d (%x hex)\n",
541 net_boot_file_size, net_boot_file_size);
542 setenv_hex("filesize", net_boot_file_size);
978226da 543 setenv_hex("fileaddr", load_addr);
2d966958 544 }
f8be7d65
JH
545 if (protocol != NETCONS)
546 eth_halt();
547 else
548 eth_halt_state_only();
549
550 eth_set_last_protocol(protocol);
551
1411157d 552 ret = net_boot_file_size;
4ef8d53c 553 debug_cond(DEBUG_INT_STATE, "--- NetLoop Success!\n");
4793ee65 554 goto done;
2d966958
WD
555
556 case NETLOOP_FAIL:
ece223b5 557 net_cleanup_loop();
f8be7d65
JH
558 /* Invalidate the last protocol */
559 eth_set_last_protocol(BOOTP);
4ef8d53c 560 debug_cond(DEBUG_INT_STATE, "--- NetLoop Fail!\n");
4793ee65 561 goto done;
22f6e99d
JH
562
563 case NETLOOP_CONTINUE:
564 continue;
2d966958
WD
565 }
566 }
4793ee65
SG
567
568done:
b63056d6
JL
569#ifdef CONFIG_USB_KEYBOARD
570 net_busy_flag = 0;
571#endif
39bccd21 572#ifdef CONFIG_CMD_TFTPPUT
4793ee65 573 /* Clear out the handlers */
ece223b5 574 net_set_udp_handler(NULL);
4793ee65 575 net_set_icmp_handler(NULL);
39bccd21 576#endif
4793ee65 577 return ret;
2d966958
WD
578}
579
580/**********************************************************************/
581
582static void
583startAgainTimeout(void)
584{
22f6e99d 585 net_set_state(NETLOOP_RESTART);
2d966958
WD
586}
587
60304592 588int NetStartAgain(void)
2d966958 589{
6e592385 590 char *nretry;
67b96e87
RB
591 int retry_forever = 0;
592 unsigned long retrycnt = 0;
60304592 593 int ret;
67b96e87
RB
594
595 nretry = getenv("netretry");
596 if (nretry) {
597 if (!strcmp(nretry, "yes"))
598 retry_forever = 1;
599 else if (!strcmp(nretry, "no"))
600 retrycnt = 0;
601 else if (!strcmp(nretry, "once"))
602 retrycnt = 1;
603 else
604 retrycnt = simple_strtoul(nretry, NULL, 0);
5c421331
JH
605 } else {
606 retrycnt = 0;
607 retry_forever = 0;
608 }
67b96e87
RB
609
610 if ((!retry_forever) && (NetTryCount >= retrycnt)) {
611 eth_halt();
22f6e99d 612 net_set_state(NETLOOP_FAIL);
60304592
JH
613 /*
614 * We don't provide a way for the protocol to return an error,
615 * but this is almost always the reason.
616 */
617 return -ETIMEDOUT;
a3d991bd 618 }
67b96e87
RB
619
620 NetTryCount++;
621
4f63acd0 622 eth_halt();
8b0c5c12 623#if !defined(CONFIG_NET_DO_NOT_TRY_ANOTHER)
4f63acd0 624 eth_try_another(!NetRestarted);
8b0c5c12 625#endif
60304592 626 ret = eth_init();
6e592385 627 if (NetRestartWrap) {
2d966958 628 NetRestartWrap = 0;
67b96e87 629 if (NetDevExists) {
4f63acd0 630 NetSetTimeout(10000UL, startAgainTimeout);
ece223b5 631 net_set_udp_handler(NULL);
6e592385 632 } else {
22f6e99d 633 net_set_state(NETLOOP_FAIL);
2d966958 634 }
6e592385 635 } else {
22f6e99d 636 net_set_state(NETLOOP_RESTART);
2d966958 637 }
60304592 638 return ret;
2d966958
WD
639}
640
641/**********************************************************************/
642/*
643 * Miscelaneous bits.
644 */
645
ece223b5 646static void dummy_handler(uchar *pkt, unsigned dport,
049a95a7 647 struct in_addr sip, unsigned sport,
ece223b5 648 unsigned len)
d280d3f4 649{
d280d3f4
JH
650}
651
ece223b5
JH
652rxhand_f *net_get_udp_handler(void)
653{
654 return udp_packet_handler;
655}
d280d3f4 656
ece223b5
JH
657void net_set_udp_handler(rxhand_f *f)
658{
4ef8d53c 659 debug_cond(DEBUG_INT_STATE, "--- NetLoop UDP handler set (%p)\n", f);
ece223b5
JH
660 if (f == NULL)
661 udp_packet_handler = dummy_handler;
662 else
663 udp_packet_handler = f;
664}
665
666rxhand_f *net_get_arp_handler(void)
2d966958 667{
ece223b5
JH
668 return arp_packet_handler;
669}
670
671void net_set_arp_handler(rxhand_f *f)
672{
4ef8d53c 673 debug_cond(DEBUG_INT_STATE, "--- NetLoop ARP handler set (%p)\n", f);
ece223b5
JH
674 if (f == NULL)
675 arp_packet_handler = dummy_handler;
676 else
677 arp_packet_handler = f;
2d966958
WD
678}
679
39bccd21 680#ifdef CONFIG_CMD_TFTPPUT
4793ee65
SG
681void net_set_icmp_handler(rxhand_icmp_f *f)
682{
683 packet_icmp_handler = f;
684}
39bccd21 685#endif
2d966958
WD
686
687void
6b147d11 688NetSetTimeout(ulong iv, thand_f *f)
2d966958
WD
689{
690 if (iv == 0) {
4ef8d53c
JH
691 debug_cond(DEBUG_INT_STATE,
692 "--- NetLoop timeout handler cancelled\n");
2d966958
WD
693 timeHandler = (thand_f *)0;
694 } else {
4ef8d53c
JH
695 debug_cond(DEBUG_INT_STATE,
696 "--- NetLoop timeout handler set (%p)\n", f);
2d966958 697 timeHandler = f;
e0ac62d7 698 timeStart = get_timer(0);
1389f98f 699 timeDelta = iv * CONFIG_SYS_HZ / 1000;
2d966958
WD
700 }
701}
702
1203fcce 703int net_send_udp_packet(uchar *ether, struct in_addr dest, int dport, int sport,
206d07fd 704 int payload_len)
73a8b27c 705{
a3d991bd 706 uchar *pkt;
9214637a
JH
707 int eth_hdr_size;
708 int pkt_hdr_size;
a3d991bd 709
1203fcce
JH
710 /* make sure the net_tx_packet is initialized (NetInit() was called) */
711 assert(net_tx_packet != NULL);
712 if (net_tx_packet == NULL)
46c495d5
JH
713 return -1;
714
73a8b27c 715 /* convert to new style broadcast */
049a95a7
JH
716 if (dest.s_addr == 0)
717 dest.s_addr = 0xFFFFFFFF;
73a8b27c
WD
718
719 /* if broadcast, make the ether address a broadcast and don't do ARP */
049a95a7 720 if (dest.s_addr == 0xFFFFFFFF)
0adb5b76 721 ether = (uchar *)net_bcast_ethaddr;
73a8b27c 722
1203fcce 723 pkt = (uchar *)net_tx_packet;
9214637a 724
1203fcce 725 eth_hdr_size = net_set_ether(pkt, ether, PROT_IP);
9214637a
JH
726 pkt += eth_hdr_size;
727 net_set_udp_header(pkt, dest, dport, sport, payload_len);
728 pkt_hdr_size = eth_hdr_size + IP_UDP_HDR_SIZE;
73a8b27c 729
e94070c4 730 /* if MAC address was not discovered yet, do an ARP request */
0adb5b76 731 if (memcmp(ether, net_null_ethaddr, 6) == 0) {
4ef8d53c 732 debug_cond(DEBUG_DEV_PKT, "sending ARP for %pI4\n", &dest);
0ebf04c6 733
9214637a 734 /* save the ip and eth addr for the packet to send after arp */
049a95a7 735 net_arp_wait_packet_ip = dest;
85d25e0e 736 arp_wait_packet_ethaddr = ether;
a3d991bd 737
73a8b27c 738 /* size of the waiting packet */
85d25e0e 739 arp_wait_tx_packet_size = pkt_hdr_size + payload_len;
73a8b27c
WD
740
741 /* and do the ARP request */
85d25e0e
JH
742 arp_wait_try = 1;
743 arp_wait_timer_start = get_timer(0);
744 arp_request();
73a8b27c 745 return 1; /* waiting */
9214637a 746 } else {
4ef8d53c
JH
747 debug_cond(DEBUG_DEV_PKT, "sending UDP to %pI4/%pM\n",
748 &dest, ether);
1203fcce 749 net_send_packet(net_tx_packet, pkt_hdr_size + payload_len);
9214637a 750 return 0; /* transmitted */
73a8b27c 751 }
73a8b27c
WD
752}
753
5cfaa4e5
AR
754#ifdef CONFIG_IP_DEFRAG
755/*
756 * This function collects fragments in a single packet, according
757 * to the algorithm in RFC815. It returns NULL or the pointer to
758 * a complete packet, in static storage
759 */
760#ifndef CONFIG_NET_MAXDEFRAG
761#define CONFIG_NET_MAXDEFRAG 16384
762#endif
763/*
764 * MAXDEFRAG, above, is chosen in the config file and is real data
765 * so we need to add the NFS overhead, which is more than TFTP.
766 * To use sizeof in the internal unnamed structures, we need a real
767 * instance (can't do "sizeof(struct rpc_t.u.reply))", unfortunately).
768 * The compiler doesn't complain nor allocates the actual structure
769 */
770static struct rpc_t rpc_specimen;
771#define IP_PKTSIZE (CONFIG_NET_MAXDEFRAG + sizeof(rpc_specimen.u.reply))
772
c5c59df0 773#define IP_MAXUDP (IP_PKTSIZE - IP_HDR_SIZE)
5cfaa4e5
AR
774
775/*
776 * this is the packet being assembled, either data or frag control.
777 * Fragments go by 8 bytes, so this union must be 8 bytes long
778 */
779struct hole {
780 /* first_byte is address of this structure */
781 u16 last_byte; /* last byte in this hole + 1 (begin of next hole) */
782 u16 next_hole; /* index of next (in 8-b blocks), 0 == none */
783 u16 prev_hole; /* index of prev, 0 == none */
784 u16 unused;
785};
786
594c26f8 787static struct ip_udp_hdr *__NetDefragment(struct ip_udp_hdr *ip, int *lenp)
5cfaa4e5 788{
48522bb5 789 static uchar pkt_buff[IP_PKTSIZE] __aligned(PKTALIGN);
5cfaa4e5
AR
790 static u16 first_hole, total_len;
791 struct hole *payload, *thisfrag, *h, *newh;
594c26f8 792 struct ip_udp_hdr *localip = (struct ip_udp_hdr *)pkt_buff;
5cfaa4e5
AR
793 uchar *indata = (uchar *)ip;
794 int offset8, start, len, done = 0;
795 u16 ip_off = ntohs(ip->ip_off);
796
797 /* payload starts after IP header, this fragment is in there */
c5c59df0 798 payload = (struct hole *)(pkt_buff + IP_HDR_SIZE);
5cfaa4e5
AR
799 offset8 = (ip_off & IP_OFFS);
800 thisfrag = payload + offset8;
801 start = offset8 * 8;
c5c59df0 802 len = ntohs(ip->ip_len) - IP_HDR_SIZE;
5cfaa4e5
AR
803
804 if (start + len > IP_MAXUDP) /* fragment extends too far */
805 return NULL;
806
807 if (!total_len || localip->ip_id != ip->ip_id) {
808 /* new (or different) packet, reset structs */
809 total_len = 0xffff;
810 payload[0].last_byte = ~0;
811 payload[0].next_hole = 0;
812 payload[0].prev_hole = 0;
813 first_hole = 0;
814 /* any IP header will work, copy the first we received */
c5c59df0 815 memcpy(localip, ip, IP_HDR_SIZE);
5cfaa4e5
AR
816 }
817
818 /*
819 * What follows is the reassembly algorithm. We use the payload
820 * array as a linked list of hole descriptors, as each hole starts
821 * at a multiple of 8 bytes. However, last byte can be whatever value,
822 * so it is represented as byte count, not as 8-byte blocks.
823 */
824
825 h = payload + first_hole;
826 while (h->last_byte < start) {
827 if (!h->next_hole) {
828 /* no hole that far away */
829 return NULL;
830 }
831 h = payload + h->next_hole;
832 }
833
e397e59e
FS
834 /* last fragment may be 1..7 bytes, the "+7" forces acceptance */
835 if (offset8 + ((len + 7) / 8) <= h - payload) {
5cfaa4e5
AR
836 /* no overlap with holes (dup fragment?) */
837 return NULL;
838 }
839
840 if (!(ip_off & IP_FLAGS_MFRAG)) {
841 /* no more fragmentss: truncate this (last) hole */
842 total_len = start + len;
843 h->last_byte = start + len;
844 }
845
846 /*
847 * There is some overlap: fix the hole list. This code doesn't
848 * deal with a fragment that overlaps with two different holes
849 * (thus being a superset of a previously-received fragment).
850 */
851
4f63acd0 852 if ((h >= thisfrag) && (h->last_byte <= start + len)) {
5cfaa4e5
AR
853 /* complete overlap with hole: remove hole */
854 if (!h->prev_hole && !h->next_hole) {
855 /* last remaining hole */
856 done = 1;
857 } else if (!h->prev_hole) {
858 /* first hole */
859 first_hole = h->next_hole;
860 payload[h->next_hole].prev_hole = 0;
861 } else if (!h->next_hole) {
862 /* last hole */
863 payload[h->prev_hole].next_hole = 0;
864 } else {
865 /* in the middle of the list */
866 payload[h->next_hole].prev_hole = h->prev_hole;
867 payload[h->prev_hole].next_hole = h->next_hole;
868 }
869
870 } else if (h->last_byte <= start + len) {
871 /* overlaps with final part of the hole: shorten this hole */
872 h->last_byte = start;
873
874 } else if (h >= thisfrag) {
875 /* overlaps with initial part of the hole: move this hole */
876 newh = thisfrag + (len / 8);
877 *newh = *h;
878 h = newh;
879 if (h->next_hole)
880 payload[h->next_hole].prev_hole = (h - payload);
881 if (h->prev_hole)
882 payload[h->prev_hole].next_hole = (h - payload);
883 else
884 first_hole = (h - payload);
885
886 } else {
887 /* fragment sits in the middle: split the hole */
888 newh = thisfrag + (len / 8);
889 *newh = *h;
890 h->last_byte = start;
891 h->next_hole = (newh - payload);
892 newh->prev_hole = (h - payload);
893 if (newh->next_hole)
894 payload[newh->next_hole].prev_hole = (newh - payload);
895 }
896
897 /* finally copy this fragment and possibly return whole packet */
c5c59df0 898 memcpy((uchar *)thisfrag, indata + IP_HDR_SIZE, len);
5cfaa4e5
AR
899 if (!done)
900 return NULL;
901
902 localip->ip_len = htons(total_len);
c5c59df0 903 *lenp = total_len + IP_HDR_SIZE;
5cfaa4e5
AR
904 return localip;
905}
906
594c26f8 907static inline struct ip_udp_hdr *NetDefragment(struct ip_udp_hdr *ip, int *lenp)
5cfaa4e5
AR
908{
909 u16 ip_off = ntohs(ip->ip_off);
910 if (!(ip_off & (IP_OFFS | IP_FLAGS_MFRAG)))
911 return ip; /* not a fragment */
912 return __NetDefragment(ip, lenp);
913}
914
915#else /* !CONFIG_IP_DEFRAG */
916
594c26f8 917static inline struct ip_udp_hdr *NetDefragment(struct ip_udp_hdr *ip, int *lenp)
5cfaa4e5
AR
918{
919 u16 ip_off = ntohs(ip->ip_off);
920 if (!(ip_off & (IP_OFFS | IP_FLAGS_MFRAG)))
921 return ip; /* not a fragment */
922 return NULL;
923}
924#endif
a3d991bd 925
8f79bb17
SG
926/**
927 * Receive an ICMP packet. We deal with REDIRECT and PING here, and silently
928 * drop others.
929 *
930 * @parma ip IP packet containing the ICMP
931 */
594c26f8 932static void receive_icmp(struct ip_udp_hdr *ip, int len,
049a95a7 933 struct in_addr src_ip, struct ethernet_hdr *et)
8f79bb17 934{
e0a63079 935 struct icmp_hdr *icmph = (struct icmp_hdr *)&ip->udp_src;
8f79bb17
SG
936
937 switch (icmph->type) {
938 case ICMP_REDIRECT:
939 if (icmph->code != ICMP_REDIR_HOST)
940 return;
941 printf(" ICMP Host Redirect to %pI4 ",
942 &icmph->un.gateway);
943 break;
a36b12f9 944 default:
8f79bb17 945#if defined(CONFIG_CMD_PING)
a36b12f9 946 ping_receive(et, ip, len);
8f79bb17 947#endif
39bccd21 948#ifdef CONFIG_CMD_TFTPPUT
4793ee65
SG
949 if (packet_icmp_handler)
950 packet_icmp_handler(icmph->type, icmph->code,
951 ntohs(ip->udp_dst), src_ip, ntohs(ip->udp_src),
952 icmph->un.data, ntohs(ip->udp_len));
39bccd21 953#endif
8f79bb17
SG
954 break;
955 }
956}
957
2a504df0 958void net_process_received_packet(uchar *in_packet, int len)
2d966958 959{
cb487f56 960 struct ethernet_hdr *et;
594c26f8 961 struct ip_udp_hdr *ip;
049a95a7
JH
962 struct in_addr dst_ip;
963 struct in_addr src_ip;
8d353eb8 964 int eth_proto;
643d1ab2 965#if defined(CONFIG_CMD_CDP)
a3d991bd
WD
966 int iscdp;
967#endif
968 ushort cti = 0, vlanid = VLAN_NONE, myvlanid, mynvlanid;
969
4ef8d53c 970 debug_cond(DEBUG_NET_PKT, "packet received\n");
2d966958 971
1203fcce
JH
972 net_rx_packet = in_packet;
973 net_rx_packet_len = len;
2a504df0 974 et = (struct ethernet_hdr *)in_packet;
a3d991bd
WD
975
976 /* too small packet? */
977 if (len < ETHER_HDR_SIZE)
978 return;
979
f85b6071
RJ
980#ifdef CONFIG_API
981 if (push_packet) {
2a504df0 982 (*push_packet)(in_packet, len);
f85b6071
RJ
983 return;
984 }
985#endif
986
643d1ab2 987#if defined(CONFIG_CMD_CDP)
a3d991bd 988 /* keep track if packet is CDP */
17351883 989 iscdp = is_cdp_packet(et->et_dest);
a3d991bd
WD
990#endif
991
992 myvlanid = ntohs(NetOurVLAN);
993 if (myvlanid == (ushort)-1)
994 myvlanid = VLAN_NONE;
995 mynvlanid = ntohs(NetOurNativeVLAN);
996 if (mynvlanid == (ushort)-1)
997 mynvlanid = VLAN_NONE;
2d966958 998
8d353eb8 999 eth_proto = ntohs(et->et_protlen);
2d966958 1000
8d353eb8 1001 if (eth_proto < 1514) {
cb487f56 1002 struct e802_hdr *et802 = (struct e802_hdr *)et;
2d966958 1003 /*
da5ebe2c
JH
1004 * Got a 802.2 packet. Check the other protocol field.
1005 * XXX VLAN over 802.2+SNAP not implemented!
2d966958 1006 */
8d353eb8 1007 eth_proto = ntohs(et802->et_prot);
a3d991bd 1008
2a504df0 1009 ip = (struct ip_udp_hdr *)(in_packet + E802_HDR_SIZE);
2d966958 1010 len -= E802_HDR_SIZE;
a3d991bd 1011
8d353eb8 1012 } else if (eth_proto != PROT_VLAN) { /* normal packet */
2a504df0 1013 ip = (struct ip_udp_hdr *)(in_packet + ETHER_HDR_SIZE);
2d966958 1014 len -= ETHER_HDR_SIZE;
a3d991bd
WD
1015
1016 } else { /* VLAN packet */
c68cca35
JH
1017 struct vlan_ethernet_hdr *vet =
1018 (struct vlan_ethernet_hdr *)et;
a3d991bd 1019
4ef8d53c 1020 debug_cond(DEBUG_NET_PKT, "VLAN packet received\n");
0ebf04c6 1021
a3d991bd
WD
1022 /* too small packet? */
1023 if (len < VLAN_ETHER_HDR_SIZE)
1024 return;
1025
1026 /* if no VLAN active */
1027 if ((ntohs(NetOurVLAN) & VLAN_IDMASK) == VLAN_NONE
643d1ab2 1028#if defined(CONFIG_CMD_CDP)
a3d991bd
WD
1029 && iscdp == 0
1030#endif
1031 )
1032 return;
1033
1034 cti = ntohs(vet->vet_tag);
1035 vlanid = cti & VLAN_IDMASK;
8d353eb8 1036 eth_proto = ntohs(vet->vet_type);
a3d991bd 1037
2a504df0 1038 ip = (struct ip_udp_hdr *)(in_packet + VLAN_ETHER_HDR_SIZE);
a3d991bd 1039 len -= VLAN_ETHER_HDR_SIZE;
2d966958
WD
1040 }
1041
4ef8d53c 1042 debug_cond(DEBUG_NET_PKT, "Receive from protocol 0x%x\n", eth_proto);
2d966958 1043
643d1ab2 1044#if defined(CONFIG_CMD_CDP)
a3d991bd 1045 if (iscdp) {
0b4c5ff4 1046 cdp_receive((uchar *)ip, len);
a3d991bd
WD
1047 return;
1048 }
1049#endif
1050
1051 if ((myvlanid & VLAN_IDMASK) != VLAN_NONE) {
1052 if (vlanid == VLAN_NONE)
1053 vlanid = (mynvlanid & VLAN_IDMASK);
1054 /* not matched? */
1055 if (vlanid != (myvlanid & VLAN_IDMASK))
1056 return;
1057 }
1058
8d353eb8 1059 switch (eth_proto) {
2d966958
WD
1060
1061 case PROT_ARP:
85d25e0e 1062 arp_receive(et, ip, len);
289f932c 1063 break;
2d966958 1064
bf6cb247 1065#ifdef CONFIG_CMD_RARP
2d966958 1066 case PROT_RARP:
8b9c5322 1067 rarp_receive(ip, len);
2d966958 1068 break;
bf6cb247 1069#endif
2d966958 1070 case PROT_IP:
4ef8d53c 1071 debug_cond(DEBUG_NET_PKT, "Got IP\n");
5cfaa4e5 1072 /* Before we start poking the header, make sure it is there */
594c26f8
JH
1073 if (len < IP_UDP_HDR_SIZE) {
1074 debug("len bad %d < %lu\n", len,
1075 (ulong)IP_UDP_HDR_SIZE);
2d966958
WD
1076 return;
1077 }
5cfaa4e5 1078 /* Check the packet length */
2d966958 1079 if (len < ntohs(ip->ip_len)) {
4ef8d53c 1080 debug("len bad %d < %d\n", len, ntohs(ip->ip_len));
2d966958
WD
1081 return;
1082 }
1083 len = ntohs(ip->ip_len);
4ef8d53c
JH
1084 debug_cond(DEBUG_NET_PKT, "len=%d, v=%02x\n",
1085 len, ip->ip_hl_v & 0xff);
0ebf04c6 1086
5cfaa4e5 1087 /* Can't deal with anything except IPv4 */
d3c65b01 1088 if ((ip->ip_hl_v & 0xf0) != 0x40)
2d966958 1089 return;
5cfaa4e5 1090 /* Can't deal with IP options (headers != 20 bytes) */
d3c65b01 1091 if ((ip->ip_hl_v & 0x0f) > 0x05)
6b52cfe1 1092 return;
5cfaa4e5 1093 /* Check the Checksum of the header */
0da0fcd5 1094 if (!ip_checksum_ok((uchar *)ip, IP_HDR_SIZE)) {
4ef8d53c 1095 debug("checksum bad\n");
2d966958
WD
1096 return;
1097 }
5cfaa4e5 1098 /* If it is not for us, ignore it */
049a95a7
JH
1099 dst_ip = net_read_ip(&ip->ip_dst);
1100 if (net_ip.s_addr && dst_ip.s_addr != net_ip.s_addr &&
1101 dst_ip.s_addr != 0xFFFFFFFF) {
53a5c424 1102#ifdef CONFIG_MCAST_TFTP
049a95a7 1103 if (net_mcast_addr != dst_ip)
53a5c424 1104#endif
c819abee 1105 return;
2d966958 1106 }
03eb129f 1107 /* Read source IP address for later use */
049a95a7 1108 src_ip = net_read_ip(&ip->ip_src);
5cfaa4e5
AR
1109 /*
1110 * The function returns the unchanged packet if it's not
1111 * a fragment, and either the complete packet or NULL if
1112 * it is a fragment (if !CONFIG_IP_DEFRAG, it returns NULL)
1113 */
ccb9ebef
LC
1114 ip = NetDefragment(ip, &len);
1115 if (!ip)
5cfaa4e5 1116 return;
2d966958
WD
1117 /*
1118 * watch for ICMP host redirects
1119 *
8bde7f77
WD
1120 * There is no real handler code (yet). We just watch
1121 * for ICMP host redirect messages. In case anybody
1122 * sees these messages: please contact me
1123 * (wd@denx.de), or - even better - send me the
1124 * necessary fixes :-)
2d966958 1125 *
8bde7f77
WD
1126 * Note: in all cases where I have seen this so far
1127 * it was a problem with the router configuration,
1128 * for instance when a router was configured in the
1129 * BOOTP reply, but the TFTP server was on the same
1130 * subnet. So this is probably a warning that your
1131 * configuration might be wrong. But I'm not really
1132 * sure if there aren't any other situations.
4793ee65
SG
1133 *
1134 * Simon Glass <sjg@chromium.org>: We get an ICMP when
1135 * we send a tftp packet to a dead connection, or when
1136 * there is no server at the other end.
2d966958
WD
1137 */
1138 if (ip->ip_p == IPPROTO_ICMP) {
8f79bb17
SG
1139 receive_icmp(ip, len, src_ip, et);
1140 return;
2d966958
WD
1141 } else if (ip->ip_p != IPPROTO_UDP) { /* Only UDP packets */
1142 return;
1143 }
1144
4ef8d53c
JH
1145 debug_cond(DEBUG_DEV_PKT,
1146 "received UDP (to=%pI4, from=%pI4, len=%d)\n",
1147 &dst_ip, &src_ip, len);
1148
8534bf9a
SR
1149#ifdef CONFIG_UDP_CHECKSUM
1150 if (ip->udp_xsum != 0) {
b2f50807 1151 ulong xsum;
8534bf9a
SR
1152 ushort *sumptr;
1153 ushort sumlen;
1154
1155 xsum = ip->ip_p;
1156 xsum += (ntohs(ip->udp_len));
049a95a7
JH
1157 xsum += (ntohl(ip->ip_src.s_addr) >> 16) & 0x0000ffff;
1158 xsum += (ntohl(ip->ip_src.s_addr) >> 0) & 0x0000ffff;
1159 xsum += (ntohl(ip->ip_dst.s_addr) >> 16) & 0x0000ffff;
1160 xsum += (ntohl(ip->ip_dst.s_addr) >> 0) & 0x0000ffff;
8534bf9a
SR
1161
1162 sumlen = ntohs(ip->udp_len);
1163 sumptr = (ushort *) &(ip->udp_src);
1164
1165 while (sumlen > 1) {
b2f50807 1166 ushort sumdata;
8534bf9a
SR
1167
1168 sumdata = *sumptr++;
1169 xsum += ntohs(sumdata);
1170 sumlen -= 2;
1171 }
1172 if (sumlen > 0) {
b2f50807 1173 ushort sumdata;
8534bf9a
SR
1174
1175 sumdata = *(unsigned char *) sumptr;
b2f50807 1176 sumdata = (sumdata << 8) & 0xff00;
8534bf9a
SR
1177 xsum += sumdata;
1178 }
1179 while ((xsum >> 16) != 0) {
3e38e429
LC
1180 xsum = (xsum & 0x0000ffff) +
1181 ((xsum >> 16) & 0x0000ffff);
8534bf9a
SR
1182 }
1183 if ((xsum != 0x00000000) && (xsum != 0x0000ffff)) {
9b55a253
WD
1184 printf(" UDP wrong checksum %08lx %08x\n",
1185 xsum, ntohs(ip->udp_xsum));
8534bf9a
SR
1186 return;
1187 }
1188 }
1189#endif
1190
53a5c424 1191
1f9ce306 1192#if defined (CONFIG_NETCONSOLE) && !(CONFIG_SPL_BUILD)
594c26f8 1193 nc_input_packet((uchar *)ip + IP_UDP_HDR_SIZE,
8cab08e8 1194 src_ip,
594c26f8
JH
1195 ntohs(ip->udp_dst),
1196 ntohs(ip->udp_src),
1197 ntohs(ip->udp_len) - UDP_HDR_SIZE);
68ceb29e 1198#endif
2d966958
WD
1199 /*
1200 * IP header OK. Pass the packet to the current handler.
1201 */
ece223b5
JH
1202 (*udp_packet_handler)((uchar *)ip + IP_UDP_HDR_SIZE,
1203 ntohs(ip->udp_dst),
1204 src_ip,
1205 ntohs(ip->udp_src),
1206 ntohs(ip->udp_len) - UDP_HDR_SIZE);
2d966958
WD
1207 break;
1208 }
1209}
1210
1211
1212/**********************************************************************/
1213
e4bf0c5c 1214static int net_check_prereq(enum proto_t protocol)
2d966958
WD
1215{
1216 switch (protocol) {
6e592385 1217 /* Fall through */
643d1ab2 1218#if defined(CONFIG_CMD_PING)
73a8b27c 1219 case PING:
049a95a7 1220 if (net_ping_ip.s_addr == 0) {
4f63acd0 1221 puts("*** ERROR: ping address not given\n");
92895de9 1222 return 1;
6e592385
WD
1223 }
1224 goto common;
cbd8a35c 1225#endif
643d1ab2 1226#if defined(CONFIG_CMD_SNTP)
ea287deb 1227 case SNTP:
049a95a7 1228 if (net_ntp_server.s_addr == 0) {
4f63acd0 1229 puts("*** ERROR: NTP server address not given\n");
92895de9 1230 return 1;
ea287deb
WD
1231 }
1232 goto common;
1233#endif
1a32bf41
RG
1234#if defined(CONFIG_CMD_DNS)
1235 case DNS:
049a95a7 1236 if (net_dns_server.s_addr == 0) {
1a32bf41
RG
1237 puts("*** ERROR: DNS server address not given\n");
1238 return 1;
1239 }
1240 goto common;
1241#endif
643d1ab2 1242#if defined(CONFIG_CMD_NFS)
cbd8a35c 1243 case NFS:
73a8b27c 1244#endif
e4bf0c5c 1245 case TFTPGET:
1fb7cd49 1246 case TFTPPUT:
049a95a7 1247 if (net_server_ip.s_addr == 0) {
4f63acd0 1248 puts("*** ERROR: `serverip' not set\n");
92895de9 1249 return 1;
6e592385 1250 }
4f63acd0
LC
1251#if defined(CONFIG_CMD_PING) || defined(CONFIG_CMD_SNTP) || \
1252 defined(CONFIG_CMD_DNS)
1253common:
73a8b27c 1254#endif
8b6bbe10 1255 /* Fall through */
73a8b27c 1256
8b6bbe10 1257 case NETCONS:
7a83af07 1258 case TFTPSRV:
049a95a7 1259 if (net_ip.s_addr == 0) {
4f63acd0 1260 puts("*** ERROR: `ipaddr' not set\n");
92895de9 1261 return 1;
6e592385
WD
1262 }
1263 /* Fall through */
2d966958 1264
bf6cb247 1265#ifdef CONFIG_CMD_RARP
2d966958 1266 case RARP:
bf6cb247 1267#endif
2d966958 1268 case BOOTP:
a3d991bd 1269 case CDP:
bf6cb247 1270 case DHCP:
d22c338e 1271 case LINKLOCAL:
0adb5b76 1272 if (memcmp(net_ethaddr, "\0\0\0\0\0\0", 6) == 0) {
4f63acd0 1273 int num = eth_get_dev_index();
2d966958 1274
6e592385
WD
1275 switch (num) {
1276 case -1:
4f63acd0 1277 puts("*** ERROR: No ethernet found.\n");
92895de9 1278 return 1;
6e592385 1279 case 0:
4f63acd0 1280 puts("*** ERROR: `ethaddr' not set\n");
2d966958 1281 break;
6e592385 1282 default:
4f63acd0 1283 printf("*** ERROR: `eth%daddr' not set\n",
2d966958
WD
1284 num);
1285 break;
6e592385 1286 }
2d966958 1287
4f63acd0 1288 NetStartAgain();
92895de9 1289 return 2;
6e592385
WD
1290 }
1291 /* Fall through */
1292 default:
92895de9 1293 return 0;
2d966958 1294 }
92895de9 1295 return 0; /* OK */
2d966958
WD
1296}
1297/**********************************************************************/
1298
a3d991bd 1299int
1203fcce 1300net_eth_hdr_size(void)
a3d991bd
WD
1301{
1302 ushort myvlanid;
2d966958 1303
a3d991bd
WD
1304 myvlanid = ntohs(NetOurVLAN);
1305 if (myvlanid == (ushort)-1)
1306 myvlanid = VLAN_NONE;
1307
3e38e429
LC
1308 return ((myvlanid & VLAN_IDMASK) == VLAN_NONE) ? ETHER_HDR_SIZE :
1309 VLAN_ETHER_HDR_SIZE;
a3d991bd
WD
1310}
1311
1203fcce 1312int net_set_ether(uchar *xet, const uchar *dest_ethaddr, uint prot)
2d966958 1313{
cb487f56 1314 struct ethernet_hdr *et = (struct ethernet_hdr *)xet;
a3d991bd
WD
1315 ushort myvlanid;
1316
1317 myvlanid = ntohs(NetOurVLAN);
1318 if (myvlanid == (ushort)-1)
1319 myvlanid = VLAN_NONE;
2d966958 1320
0adb5b76
JH
1321 memcpy(et->et_dest, dest_ethaddr, 6);
1322 memcpy(et->et_src, net_ethaddr, 6);
a3d991bd 1323 if ((myvlanid & VLAN_IDMASK) == VLAN_NONE) {
c819abee 1324 et->et_protlen = htons(prot);
a3d991bd
WD
1325 return ETHER_HDR_SIZE;
1326 } else {
c68cca35
JH
1327 struct vlan_ethernet_hdr *vet =
1328 (struct vlan_ethernet_hdr *)xet;
2d966958 1329
a3d991bd
WD
1330 vet->vet_vlan_type = htons(PROT_VLAN);
1331 vet->vet_tag = htons((0 << 5) | (myvlanid & VLAN_IDMASK));
1332 vet->vet_type = htons(prot);
1333 return VLAN_ETHER_HDR_SIZE;
1334 }
1335}
2d966958 1336
e7111015
JH
1337int net_update_ether(struct ethernet_hdr *et, uchar *addr, uint prot)
1338{
1339 ushort protlen;
1340
1341 memcpy(et->et_dest, addr, 6);
0adb5b76 1342 memcpy(et->et_src, net_ethaddr, 6);
e7111015
JH
1343 protlen = ntohs(et->et_protlen);
1344 if (protlen == PROT_VLAN) {
1345 struct vlan_ethernet_hdr *vet =
1346 (struct vlan_ethernet_hdr *)et;
1347 vet->vet_type = htons(prot);
1348 return VLAN_ETHER_HDR_SIZE;
1349 } else if (protlen > 1514) {
1350 et->et_protlen = htons(prot);
1351 return ETHER_HDR_SIZE;
1352 } else {
1353 /* 802.2 + SNAP */
1354 struct e802_hdr *et802 = (struct e802_hdr *)et;
1355 et802->et_prot = htons(prot);
1356 return E802_HDR_SIZE;
1357 }
1358}
1359
049a95a7 1360void net_set_ip_header(uchar *pkt, struct in_addr dest, struct in_addr source)
2d966958 1361{
4b11c916 1362 struct ip_udp_hdr *ip = (struct ip_udp_hdr *)pkt;
2d966958
WD
1363
1364 /*
4b11c916 1365 * Construct an IP header.
2d966958 1366 */
3e38e429
LC
1367 /* IP_HDR_SIZE / 4 (not including UDP) */
1368 ip->ip_hl_v = 0x45;
2d966958 1369 ip->ip_tos = 0;
4b11c916 1370 ip->ip_len = htons(IP_HDR_SIZE);
2d966958 1371 ip->ip_id = htons(NetIPID++);
e0c07b86 1372 ip->ip_off = htons(IP_FLAGS_DFRAG); /* Don't fragment */
2d966958 1373 ip->ip_ttl = 255;
2d966958 1374 ip->ip_sum = 0;
3e38e429 1375 /* already in network byte order */
049a95a7 1376 net_copy_ip((void *)&ip->ip_src, &source);
4b11c916 1377 /* already in network byte order */
049a95a7 1378 net_copy_ip((void *)&ip->ip_dst, &dest);
4b11c916
JH
1379}
1380
049a95a7 1381void net_set_udp_header(uchar *pkt, struct in_addr dest, int dport, int sport,
4b11c916
JH
1382 int len)
1383{
1384 struct ip_udp_hdr *ip = (struct ip_udp_hdr *)pkt;
1385
1386 /*
1387 * If the data is an odd number of bytes, zero the
1388 * byte after the last byte so that the checksum
1389 * will work.
1390 */
1391 if (len & 1)
1392 pkt[IP_UDP_HDR_SIZE + len] = 0;
1393
049a95a7 1394 net_set_ip_header(pkt, dest, net_ip);
4b11c916
JH
1395 ip->ip_len = htons(IP_UDP_HDR_SIZE + len);
1396 ip->ip_p = IPPROTO_UDP;
0da0fcd5 1397 ip->ip_sum = compute_ip_checksum(ip, IP_HDR_SIZE);
4b11c916 1398
2d966958
WD
1399 ip->udp_src = htons(sport);
1400 ip->udp_dst = htons(dport);
594c26f8 1401 ip->udp_len = htons(UDP_HDR_SIZE + len);
2d966958 1402 ip->udp_xsum = 0;
2d966958
WD
1403}
1404
4f63acd0 1405void copy_filename(char *dst, const char *src, int size)
2d966958
WD
1406{
1407 if (*src && (*src == '"')) {
1408 ++src;
1409 --size;
1410 }
1411
d3c65b01 1412 while ((--size > 0) && *src && (*src != '"'))
2d966958 1413 *dst++ = *src++;
2d966958
WD
1414 *dst = '\0';
1415}
1416
3e38e429
LC
1417#if defined(CONFIG_CMD_NFS) || \
1418 defined(CONFIG_CMD_SNTP) || \
1419 defined(CONFIG_CMD_DNS)
1a32bf41 1420/*
9739946c
RG
1421 * make port a little random (1024-17407)
1422 * This keeps the math somewhat trivial to compute, and seems to work with
1423 * all supported protocols/clients/servers
1a32bf41
RG
1424 */
1425unsigned int random_port(void)
1426{
9739946c 1427 return 1024 + (get_timer(0) % 0x4000);
1a32bf41
RG
1428}
1429#endif
1430
049a95a7 1431void ip_to_string(struct in_addr x, char *s)
2d966958 1432{
049a95a7 1433 x.s_addr = ntohl(x.s_addr);
4f63acd0 1434 sprintf(s, "%d.%d.%d.%d",
049a95a7
JH
1435 (int) ((x.s_addr >> 24) & 0xff),
1436 (int) ((x.s_addr >> 16) & 0xff),
1437 (int) ((x.s_addr >> 8) & 0xff),
1438 (int) ((x.s_addr >> 0) & 0xff)
6e592385 1439 );
2d966958
WD
1440}
1441
a3d991bd
WD
1442void VLAN_to_string(ushort x, char *s)
1443{
1444 x = ntohs(x);
1445
1446 if (x == (ushort)-1)
1447 x = VLAN_NONE;
1448
1449 if (x == VLAN_NONE)
1450 strcpy(s, "none");
1451 else
1452 sprintf(s, "%d", x & VLAN_IDMASK);
1453}
1454
2e3ef6e4 1455ushort string_to_VLAN(const char *s)
a3d991bd
WD
1456{
1457 ushort id;
1458
1459 if (s == NULL)
b9711de1 1460 return htons(VLAN_NONE);
a3d991bd
WD
1461
1462 if (*s < '0' || *s > '9')
1463 id = VLAN_NONE;
1464 else
1465 id = (ushort)simple_strtoul(s, NULL, 10);
1466
b9711de1 1467 return htons(id);
a3d991bd
WD
1468}
1469
a3d991bd
WD
1470ushort getenv_VLAN(char *var)
1471{
92895de9 1472 return string_to_VLAN(getenv(var));
a3d991bd 1473}