nfs.c 18 KB

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  1. /*
  2. * NFS support driver - based on etherboot and U-BOOT's tftp.c
  3. *
  4. * Masami Komiya <mkomiya@sonare.it> 2004
  5. *
  6. */
  7. /* NOTE: the NFS code is heavily inspired by the NetBSD netboot code (read:
  8. * large portions are copied verbatim) as distributed in OSKit 0.97. A few
  9. * changes were necessary to adapt the code to Etherboot and to fix several
  10. * inconsistencies. Also the RPC message preparation is done "by hand" to
  11. * avoid adding netsprintf() which I find hard to understand and use. */
  12. /* NOTE 2: Etherboot does not care about things beyond the kernel image, so
  13. * it loads the kernel image off the boot server (ARP_SERVER) and does not
  14. * access the client root disk (root-path in dhcpd.conf), which would use
  15. * ARP_ROOTSERVER. The root disk is something the operating system we are
  16. * about to load needs to use. This is different from the OSKit 0.97 logic. */
  17. /* NOTE 3: Symlink handling introduced by Anselm M Hoffmeister, 2003-July-14
  18. * If a symlink is encountered, it is followed as far as possible (recursion
  19. * possible, maximum 16 steps). There is no clearing of ".."'s inside the
  20. * path, so please DON'T DO THAT. thx. */
  21. #include <common.h>
  22. #include <command.h>
  23. #include <net.h>
  24. #include <malloc.h>
  25. #include "nfs.h"
  26. #include "bootp.h"
  27. /*#define NFS_DEBUG*/
  28. #if defined(CONFIG_CMD_NET) && defined(CONFIG_CMD_NFS)
  29. #define HASHES_PER_LINE 65 /* Number of "loading" hashes per line */
  30. #define NFS_TIMEOUT 60UL
  31. static int fs_mounted = 0;
  32. static unsigned long rpc_id = 0;
  33. static int nfs_offset = -1;
  34. static int nfs_len;
  35. static char dirfh[NFS_FHSIZE]; /* file handle of directory */
  36. static char filefh[NFS_FHSIZE]; /* file handle of kernel image */
  37. static int NfsDownloadState;
  38. static IPaddr_t NfsServerIP;
  39. static int NfsSrvMountPort;
  40. static int NfsSrvNfsPort;
  41. static int NfsOurPort;
  42. static int NfsTimeoutCount;
  43. static int NfsState;
  44. #define STATE_PRCLOOKUP_PROG_MOUNT_REQ 1
  45. #define STATE_PRCLOOKUP_PROG_NFS_REQ 2
  46. #define STATE_MOUNT_REQ 3
  47. #define STATE_UMOUNT_REQ 4
  48. #define STATE_LOOKUP_REQ 5
  49. #define STATE_READ_REQ 6
  50. #define STATE_READLINK_REQ 7
  51. static char default_filename[64];
  52. static char *nfs_filename;
  53. static char *nfs_path;
  54. static char nfs_path_buff[2048];
  55. static __inline__ int
  56. store_block (uchar * src, unsigned offset, unsigned len)
  57. {
  58. ulong newsize = offset + len;
  59. #ifdef CFG_DIRECT_FLASH_NFS
  60. int i, rc = 0;
  61. for (i=0; i<CFG_MAX_FLASH_BANKS; i++) {
  62. /* start address in flash? */
  63. if (load_addr + offset >= flash_info[i].start[0]) {
  64. rc = 1;
  65. break;
  66. }
  67. }
  68. if (rc) { /* Flash is destination for this packet */
  69. rc = flash_write ((uchar *)src, (ulong)(load_addr+offset), len);
  70. if (rc) {
  71. flash_perror (rc);
  72. return -1;
  73. }
  74. } else
  75. #endif /* CFG_DIRECT_FLASH_NFS */
  76. {
  77. (void)memcpy ((void *)(load_addr + offset), src, len);
  78. }
  79. if (NetBootFileXferSize < (offset+len))
  80. NetBootFileXferSize = newsize;
  81. return 0;
  82. }
  83. static char*
  84. basename (char *path)
  85. {
  86. char *fname;
  87. fname = path + strlen(path) - 1;
  88. while (fname >= path) {
  89. if (*fname == '/') {
  90. fname++;
  91. break;
  92. }
  93. fname--;
  94. }
  95. return fname;
  96. }
  97. static char*
  98. dirname (char *path)
  99. {
  100. char *fname;
  101. fname = basename (path);
  102. --fname;
  103. *fname = '\0';
  104. return path;
  105. }
  106. /**************************************************************************
  107. RPC_ADD_CREDENTIALS - Add RPC authentication/verifier entries
  108. **************************************************************************/
  109. static long *rpc_add_credentials (long *p)
  110. {
  111. int hl;
  112. int hostnamelen;
  113. char hostname[256];
  114. strcpy (hostname, "");
  115. hostnamelen=strlen (hostname);
  116. /* Here's the executive summary on authentication requirements of the
  117. * various NFS server implementations: Linux accepts both AUTH_NONE
  118. * and AUTH_UNIX authentication (also accepts an empty hostname field
  119. * in the AUTH_UNIX scheme). *BSD refuses AUTH_NONE, but accepts
  120. * AUTH_UNIX (also accepts an empty hostname field in the AUTH_UNIX
  121. * scheme). To be safe, use AUTH_UNIX and pass the hostname if we have
  122. * it (if the BOOTP/DHCP reply didn't give one, just use an empty
  123. * hostname). */
  124. hl = (hostnamelen + 3) & ~3;
  125. /* Provide an AUTH_UNIX credential. */
  126. *p++ = htonl(1); /* AUTH_UNIX */
  127. *p++ = htonl(hl+20); /* auth length */
  128. *p++ = htonl(0); /* stamp */
  129. *p++ = htonl(hostnamelen); /* hostname string */
  130. if (hostnamelen & 3) {
  131. *(p + hostnamelen / 4) = 0; /* add zero padding */
  132. }
  133. memcpy (p, hostname, hostnamelen);
  134. p += hl / 4;
  135. *p++ = 0; /* uid */
  136. *p++ = 0; /* gid */
  137. *p++ = 0; /* auxiliary gid list */
  138. /* Provide an AUTH_NONE verifier. */
  139. *p++ = 0; /* AUTH_NONE */
  140. *p++ = 0; /* auth length */
  141. return p;
  142. }
  143. /**************************************************************************
  144. RPC_LOOKUP - Lookup RPC Port numbers
  145. **************************************************************************/
  146. static void
  147. rpc_req (int rpc_prog, int rpc_proc, uint32_t *data, int datalen)
  148. {
  149. struct rpc_t pkt;
  150. unsigned long id;
  151. uint32_t *p;
  152. int pktlen;
  153. int sport;
  154. id = ++rpc_id;
  155. pkt.u.call.id = htonl(id);
  156. pkt.u.call.type = htonl(MSG_CALL);
  157. pkt.u.call.rpcvers = htonl(2); /* use RPC version 2 */
  158. pkt.u.call.prog = htonl(rpc_prog);
  159. pkt.u.call.vers = htonl(2); /* portmapper is version 2 */
  160. pkt.u.call.proc = htonl(rpc_proc);
  161. p = (uint32_t *)&(pkt.u.call.data);
  162. if (datalen)
  163. memcpy ((char *)p, (char *)data, datalen*sizeof(uint32_t));
  164. pktlen = (char *)p + datalen*sizeof(uint32_t) - (char *)&pkt;
  165. memcpy ((char *)NetTxPacket + NetEthHdrSize() + IP_HDR_SIZE, (char *)&pkt, pktlen);
  166. if (rpc_prog == PROG_PORTMAP)
  167. sport = SUNRPC_PORT;
  168. else if (rpc_prog == PROG_MOUNT)
  169. sport = NfsSrvMountPort;
  170. else
  171. sport = NfsSrvNfsPort;
  172. NetSendUDPPacket (NetServerEther, NfsServerIP, sport, NfsOurPort, pktlen);
  173. }
  174. /**************************************************************************
  175. RPC_LOOKUP - Lookup RPC Port numbers
  176. **************************************************************************/
  177. static void
  178. rpc_lookup_req (int prog, int ver)
  179. {
  180. uint32_t data[16];
  181. data[0] = 0; data[1] = 0; /* auth credential */
  182. data[2] = 0; data[3] = 0; /* auth verifier */
  183. data[4] = htonl(prog);
  184. data[5] = htonl(ver);
  185. data[6] = htonl(17); /* IP_UDP */
  186. data[7] = 0;
  187. rpc_req (PROG_PORTMAP, PORTMAP_GETPORT, data, 8);
  188. }
  189. /**************************************************************************
  190. NFS_MOUNT - Mount an NFS Filesystem
  191. **************************************************************************/
  192. static void
  193. nfs_mount_req (char *path)
  194. {
  195. uint32_t data[1024];
  196. uint32_t *p;
  197. int len;
  198. int pathlen;
  199. pathlen = strlen (path);
  200. p = &(data[0]);
  201. p = (uint32_t *)rpc_add_credentials((long *)p);
  202. *p++ = htonl(pathlen);
  203. if (pathlen & 3) *(p + pathlen / 4) = 0;
  204. memcpy (p, path, pathlen);
  205. p += (pathlen + 3) / 4;
  206. len = (uint32_t *)p - (uint32_t *)&(data[0]);
  207. rpc_req (PROG_MOUNT, MOUNT_ADDENTRY, data, len);
  208. }
  209. /**************************************************************************
  210. NFS_UMOUNTALL - Unmount all our NFS Filesystems on the Server
  211. **************************************************************************/
  212. static void
  213. nfs_umountall_req (void)
  214. {
  215. uint32_t data[1024];
  216. uint32_t *p;
  217. int len;
  218. if ((NfsSrvMountPort == -1) || (!fs_mounted)) {
  219. /* Nothing mounted, nothing to umount */
  220. return;
  221. }
  222. p = &(data[0]);
  223. p = (uint32_t *)rpc_add_credentials ((long *)p);
  224. len = (uint32_t *)p - (uint32_t *)&(data[0]);
  225. rpc_req (PROG_MOUNT, MOUNT_UMOUNTALL, data, len);
  226. }
  227. /***************************************************************************
  228. * NFS_READLINK (AH 2003-07-14)
  229. * This procedure is called when read of the first block fails -
  230. * this probably happens when it's a directory or a symlink
  231. * In case of successful readlink(), the dirname is manipulated,
  232. * so that inside the nfs() function a recursion can be done.
  233. **************************************************************************/
  234. static void
  235. nfs_readlink_req (void)
  236. {
  237. uint32_t data[1024];
  238. uint32_t *p;
  239. int len;
  240. p = &(data[0]);
  241. p = (uint32_t *)rpc_add_credentials ((long *)p);
  242. memcpy (p, filefh, NFS_FHSIZE);
  243. p += (NFS_FHSIZE / 4);
  244. len = (uint32_t *)p - (uint32_t *)&(data[0]);
  245. rpc_req (PROG_NFS, NFS_READLINK, data, len);
  246. }
  247. /**************************************************************************
  248. NFS_LOOKUP - Lookup Pathname
  249. **************************************************************************/
  250. static void
  251. nfs_lookup_req (char *fname)
  252. {
  253. uint32_t data[1024];
  254. uint32_t *p;
  255. int len;
  256. int fnamelen;
  257. fnamelen = strlen (fname);
  258. p = &(data[0]);
  259. p = (uint32_t *)rpc_add_credentials ((long *)p);
  260. memcpy (p, dirfh, NFS_FHSIZE);
  261. p += (NFS_FHSIZE / 4);
  262. *p++ = htonl(fnamelen);
  263. if (fnamelen & 3) *(p + fnamelen / 4) = 0;
  264. memcpy (p, fname, fnamelen);
  265. p += (fnamelen + 3) / 4;
  266. len = (uint32_t *)p - (uint32_t *)&(data[0]);
  267. rpc_req (PROG_NFS, NFS_LOOKUP, data, len);
  268. }
  269. /**************************************************************************
  270. NFS_READ - Read File on NFS Server
  271. **************************************************************************/
  272. static void
  273. nfs_read_req (int offset, int readlen)
  274. {
  275. uint32_t data[1024];
  276. uint32_t *p;
  277. int len;
  278. p = &(data[0]);
  279. p = (uint32_t *)rpc_add_credentials ((long *)p);
  280. memcpy (p, filefh, NFS_FHSIZE);
  281. p += (NFS_FHSIZE / 4);
  282. *p++ = htonl(offset);
  283. *p++ = htonl(readlen);
  284. *p++ = 0;
  285. len = (uint32_t *)p - (uint32_t *)&(data[0]);
  286. rpc_req (PROG_NFS, NFS_READ, data, len);
  287. }
  288. /**************************************************************************
  289. RPC request dispatcher
  290. **************************************************************************/
  291. static void
  292. NfsSend (void)
  293. {
  294. #ifdef NFS_DEBUG
  295. printf ("%s\n", __FUNCTION__);
  296. #endif
  297. switch (NfsState) {
  298. case STATE_PRCLOOKUP_PROG_MOUNT_REQ:
  299. rpc_lookup_req (PROG_MOUNT, 1);
  300. break;
  301. case STATE_PRCLOOKUP_PROG_NFS_REQ:
  302. rpc_lookup_req (PROG_NFS, 2);
  303. break;
  304. case STATE_MOUNT_REQ:
  305. nfs_mount_req (nfs_path);
  306. break;
  307. case STATE_UMOUNT_REQ:
  308. nfs_umountall_req ();
  309. break;
  310. case STATE_LOOKUP_REQ:
  311. nfs_lookup_req (nfs_filename);
  312. break;
  313. case STATE_READ_REQ:
  314. nfs_read_req (nfs_offset, nfs_len);
  315. break;
  316. case STATE_READLINK_REQ:
  317. nfs_readlink_req ();
  318. break;
  319. }
  320. }
  321. /**************************************************************************
  322. Handlers for the reply from server
  323. **************************************************************************/
  324. static int
  325. rpc_lookup_reply (int prog, uchar *pkt, unsigned len)
  326. {
  327. struct rpc_t rpc_pkt;
  328. memcpy ((unsigned char *)&rpc_pkt, pkt, len);
  329. #ifdef NFS_DEBUG
  330. printf ("%s\n", __FUNCTION__);
  331. #endif
  332. if (ntohl(rpc_pkt.u.reply.id) != rpc_id)
  333. return -1;
  334. if (rpc_pkt.u.reply.rstatus ||
  335. rpc_pkt.u.reply.verifier ||
  336. rpc_pkt.u.reply.astatus) {
  337. return -1;
  338. }
  339. switch (prog) {
  340. case PROG_MOUNT:
  341. NfsSrvMountPort = ntohl(rpc_pkt.u.reply.data[0]);
  342. break;
  343. case PROG_NFS:
  344. NfsSrvNfsPort = ntohl(rpc_pkt.u.reply.data[0]);
  345. break;
  346. }
  347. return 0;
  348. }
  349. static int
  350. nfs_mount_reply (uchar *pkt, unsigned len)
  351. {
  352. struct rpc_t rpc_pkt;
  353. #ifdef NFS_DEBUG
  354. printf ("%s\n", __FUNCTION__);
  355. #endif
  356. memcpy ((unsigned char *)&rpc_pkt, pkt, len);
  357. if (ntohl(rpc_pkt.u.reply.id) != rpc_id)
  358. return -1;
  359. if (rpc_pkt.u.reply.rstatus ||
  360. rpc_pkt.u.reply.verifier ||
  361. rpc_pkt.u.reply.astatus ||
  362. rpc_pkt.u.reply.data[0]) {
  363. return -1;
  364. }
  365. fs_mounted = 1;
  366. memcpy (dirfh, rpc_pkt.u.reply.data + 1, NFS_FHSIZE);
  367. return 0;
  368. }
  369. static int
  370. nfs_umountall_reply (uchar *pkt, unsigned len)
  371. {
  372. struct rpc_t rpc_pkt;
  373. #ifdef NFS_DEBUG
  374. printf ("%s\n", __FUNCTION__);
  375. #endif
  376. memcpy ((unsigned char *)&rpc_pkt, pkt, len);
  377. if (ntohl(rpc_pkt.u.reply.id) != rpc_id)
  378. return -1;
  379. if (rpc_pkt.u.reply.rstatus ||
  380. rpc_pkt.u.reply.verifier ||
  381. rpc_pkt.u.reply.astatus) {
  382. return -1;
  383. }
  384. fs_mounted = 0;
  385. memset (dirfh, 0, sizeof(dirfh));
  386. return 0;
  387. }
  388. static int
  389. nfs_lookup_reply (uchar *pkt, unsigned len)
  390. {
  391. struct rpc_t rpc_pkt;
  392. #ifdef NFS_DEBUG
  393. printf ("%s\n", __FUNCTION__);
  394. #endif
  395. memcpy ((unsigned char *)&rpc_pkt, pkt, len);
  396. if (ntohl(rpc_pkt.u.reply.id) != rpc_id)
  397. return -1;
  398. if (rpc_pkt.u.reply.rstatus ||
  399. rpc_pkt.u.reply.verifier ||
  400. rpc_pkt.u.reply.astatus ||
  401. rpc_pkt.u.reply.data[0]) {
  402. return -1;
  403. }
  404. memcpy (filefh, rpc_pkt.u.reply.data + 1, NFS_FHSIZE);
  405. return 0;
  406. }
  407. static int
  408. nfs_readlink_reply (uchar *pkt, unsigned len)
  409. {
  410. struct rpc_t rpc_pkt;
  411. int rlen;
  412. #ifdef NFS_DEBUG
  413. printf ("%s\n", __FUNCTION__);
  414. #endif
  415. memcpy ((unsigned char *)&rpc_pkt, pkt, len);
  416. if (ntohl(rpc_pkt.u.reply.id) != rpc_id)
  417. return -1;
  418. if (rpc_pkt.u.reply.rstatus ||
  419. rpc_pkt.u.reply.verifier ||
  420. rpc_pkt.u.reply.astatus ||
  421. rpc_pkt.u.reply.data[0]) {
  422. return -1;
  423. }
  424. rlen = ntohl (rpc_pkt.u.reply.data[1]); /* new path length */
  425. if (*((char *)&(rpc_pkt.u.reply.data[2])) != '/') {
  426. int pathlen;
  427. strcat (nfs_path, "/");
  428. pathlen = strlen(nfs_path);
  429. memcpy (nfs_path+pathlen, (uchar *)&(rpc_pkt.u.reply.data[2]), rlen);
  430. nfs_path[pathlen+rlen+1] = 0;
  431. } else {
  432. memcpy (nfs_path, (uchar *)&(rpc_pkt.u.reply.data[2]), rlen);
  433. nfs_path[rlen] = 0;
  434. }
  435. return 0;
  436. }
  437. static int
  438. nfs_read_reply (uchar *pkt, unsigned len)
  439. {
  440. struct rpc_t rpc_pkt;
  441. int rlen;
  442. #ifdef NFS_DEBUG_nop
  443. printf ("%s\n", __FUNCTION__);
  444. #endif
  445. memcpy ((uchar *)&rpc_pkt, pkt, sizeof(rpc_pkt.u.reply));
  446. if (ntohl(rpc_pkt.u.reply.id) != rpc_id)
  447. return -1;
  448. if (rpc_pkt.u.reply.rstatus ||
  449. rpc_pkt.u.reply.verifier ||
  450. rpc_pkt.u.reply.astatus ||
  451. rpc_pkt.u.reply.data[0]) {
  452. if (rpc_pkt.u.reply.rstatus) {
  453. return -9999;
  454. }
  455. if (rpc_pkt.u.reply.astatus) {
  456. return -9999;
  457. }
  458. return -ntohl(rpc_pkt.u.reply.data[0]);;
  459. }
  460. if ((nfs_offset!=0) && !((nfs_offset) % (NFS_READ_SIZE/2*10*HASHES_PER_LINE))) {
  461. puts ("\n\t ");
  462. }
  463. if (!(nfs_offset % ((NFS_READ_SIZE/2)*10))) {
  464. putc ('#');
  465. }
  466. rlen = ntohl(rpc_pkt.u.reply.data[18]);
  467. if ( store_block ((uchar *)pkt+sizeof(rpc_pkt.u.reply), nfs_offset, rlen) )
  468. return -9999;
  469. return rlen;
  470. }
  471. /**************************************************************************
  472. Interfaces of U-BOOT
  473. **************************************************************************/
  474. static void
  475. NfsTimeout (void)
  476. {
  477. puts ("Timeout\n");
  478. NetState = NETLOOP_FAIL;
  479. return;
  480. }
  481. static void
  482. NfsHandler (uchar *pkt, unsigned dest, unsigned src, unsigned len)
  483. {
  484. int rlen;
  485. #ifdef NFS_DEBUG
  486. printf ("%s\n", __FUNCTION__);
  487. #endif
  488. if (dest != NfsOurPort) return;
  489. switch (NfsState) {
  490. case STATE_PRCLOOKUP_PROG_MOUNT_REQ:
  491. rpc_lookup_reply (PROG_MOUNT, pkt, len);
  492. NfsState = STATE_PRCLOOKUP_PROG_NFS_REQ;
  493. NfsSend ();
  494. break;
  495. case STATE_PRCLOOKUP_PROG_NFS_REQ:
  496. rpc_lookup_reply (PROG_NFS, pkt, len);
  497. NfsState = STATE_MOUNT_REQ;
  498. NfsSend ();
  499. break;
  500. case STATE_MOUNT_REQ:
  501. if (nfs_mount_reply(pkt, len)) {
  502. puts ("*** ERROR: Cannot mount\n");
  503. /* just to be sure... */
  504. NfsState = STATE_UMOUNT_REQ;
  505. NfsSend ();
  506. } else {
  507. NfsState = STATE_LOOKUP_REQ;
  508. NfsSend ();
  509. }
  510. break;
  511. case STATE_UMOUNT_REQ:
  512. if (nfs_umountall_reply(pkt, len)) {
  513. puts ("*** ERROR: Cannot umount\n");
  514. NetState = NETLOOP_FAIL;
  515. } else {
  516. puts ("\ndone\n");
  517. NetState = NfsDownloadState;
  518. }
  519. break;
  520. case STATE_LOOKUP_REQ:
  521. if (nfs_lookup_reply(pkt, len)) {
  522. puts ("*** ERROR: File lookup fail\n");
  523. NfsState = STATE_UMOUNT_REQ;
  524. NfsSend ();
  525. } else {
  526. NfsState = STATE_READ_REQ;
  527. nfs_offset = 0;
  528. nfs_len = NFS_READ_SIZE;
  529. NfsSend ();
  530. }
  531. break;
  532. case STATE_READLINK_REQ:
  533. if (nfs_readlink_reply(pkt, len)) {
  534. puts ("*** ERROR: Symlink fail\n");
  535. NfsState = STATE_UMOUNT_REQ;
  536. NfsSend ();
  537. } else {
  538. #ifdef NFS_DEBUG
  539. printf ("Symlink --> %s\n", nfs_path);
  540. #endif
  541. nfs_filename = basename (nfs_path);
  542. nfs_path = dirname (nfs_path);
  543. NfsState = STATE_MOUNT_REQ;
  544. NfsSend ();
  545. }
  546. break;
  547. case STATE_READ_REQ:
  548. rlen = nfs_read_reply (pkt, len);
  549. NetSetTimeout (NFS_TIMEOUT * CFG_HZ, NfsTimeout);
  550. if (rlen > 0) {
  551. nfs_offset += rlen;
  552. NfsSend ();
  553. }
  554. else if ((rlen == -NFSERR_ISDIR)||(rlen == -NFSERR_INVAL)) {
  555. /* symbolic link */
  556. NfsState = STATE_READLINK_REQ;
  557. NfsSend ();
  558. } else {
  559. if ( ! rlen ) NfsDownloadState = NETLOOP_SUCCESS;
  560. NfsState = STATE_UMOUNT_REQ;
  561. NfsSend ();
  562. }
  563. break;
  564. }
  565. }
  566. void
  567. NfsStart (void)
  568. {
  569. #ifdef NFS_DEBUG
  570. printf ("%s\n", __FUNCTION__);
  571. #endif
  572. NfsDownloadState = NETLOOP_FAIL;
  573. NfsServerIP = NetServerIP;
  574. nfs_path = (char *)nfs_path_buff;
  575. if (nfs_path == NULL) {
  576. NetState = NETLOOP_FAIL;
  577. puts ("*** ERROR: Fail allocate memory\n");
  578. return;
  579. }
  580. if (BootFile[0] == '\0') {
  581. sprintf (default_filename, "/nfsroot/%02lX%02lX%02lX%02lX.img",
  582. NetOurIP & 0xFF,
  583. (NetOurIP >> 8) & 0xFF,
  584. (NetOurIP >> 16) & 0xFF,
  585. (NetOurIP >> 24) & 0xFF );
  586. strcpy (nfs_path, default_filename);
  587. printf ("*** Warning: no boot file name; using '%s'\n",
  588. nfs_path);
  589. } else {
  590. char *p=BootFile;
  591. p = strchr (p, ':');
  592. if (p != NULL) {
  593. NfsServerIP = string_to_ip (BootFile);
  594. ++p;
  595. strcpy (nfs_path, p);
  596. } else {
  597. strcpy (nfs_path, BootFile);
  598. }
  599. }
  600. nfs_filename = basename (nfs_path);
  601. nfs_path = dirname (nfs_path);
  602. #if defined(CONFIG_NET_MULTI)
  603. printf ("Using %s device\n", eth_get_name());
  604. #endif
  605. puts ("File transfer via NFS from server "); print_IPaddr (NfsServerIP);
  606. puts ("; our IP address is "); print_IPaddr (NetOurIP);
  607. /* Check if we need to send across this subnet */
  608. if (NetOurGatewayIP && NetOurSubnetMask) {
  609. IPaddr_t OurNet = NetOurIP & NetOurSubnetMask;
  610. IPaddr_t ServerNet = NetServerIP & NetOurSubnetMask;
  611. if (OurNet != ServerNet) {
  612. puts ("; sending through gateway ");
  613. print_IPaddr (NetOurGatewayIP) ;
  614. }
  615. }
  616. printf ("\nFilename '%s/%s'.", nfs_path, nfs_filename);
  617. if (NetBootFileSize) {
  618. printf (" Size is 0x%x Bytes = ", NetBootFileSize<<9);
  619. print_size (NetBootFileSize<<9, "");
  620. }
  621. printf ("\nLoad address: 0x%lx\n"
  622. "Loading: *\b", load_addr);
  623. NetSetTimeout (NFS_TIMEOUT * CFG_HZ, NfsTimeout);
  624. NetSetHandler (NfsHandler);
  625. NfsTimeoutCount = 0;
  626. NfsState = STATE_PRCLOOKUP_PROG_MOUNT_REQ;
  627. /*NfsOurPort = 4096 + (get_ticks() % 3072);*/
  628. /*FIX ME !!!*/
  629. NfsOurPort = 1000;
  630. /* zero out server ether in case the server ip has changed */
  631. memset (NetServerEther, 0, 6);
  632. NfsSend ();
  633. }
  634. #endif