2 * NFS support driver - based on etherboot and U-BOOT's tftp.c
4 * Masami Komiya <mkomiya@sonare.it> 2004
8 /* NOTE: the NFS code is heavily inspired by the NetBSD netboot code (read:
9 * large portions are copied verbatim) as distributed in OSKit 0.97. A few
10 * changes were necessary to adapt the code to Etherboot and to fix several
11 * inconsistencies. Also the RPC message preparation is done "by hand" to
12 * avoid adding netsprintf() which I find hard to understand and use. */
14 /* NOTE 2: Etherboot does not care about things beyond the kernel image, so
15 * it loads the kernel image off the boot server (ARP_SERVER) and does not
16 * access the client root disk (root-path in dhcpd.conf), which would use
17 * ARP_ROOTSERVER. The root disk is something the operating system we are
18 * about to load needs to use. This is different from the OSKit 0.97 logic. */
20 /* NOTE 3: Symlink handling introduced by Anselm M Hoffmeister, 2003-July-14
21 * If a symlink is encountered, it is followed as far as possible (recursion
22 * possible, maximum 16 steps). There is no clearing of ".."'s inside the
23 * path, so please DON'T DO THAT. thx. */
25 /* NOTE 4: NFSv3 support added by Guillaume GARDET, 2016-June-20.
26 * NFSv2 is still used by default. But if server does not support NFSv2, then
27 * NFSv3 is used, if available on NFS server. */
40 #define HASHES_PER_LINE 65 /* Number of "loading" hashes per line */
41 #define NFS_RETRY_COUNT 30
42 #ifndef CONFIG_NFS_TIMEOUT
43 # define NFS_TIMEOUT 2000UL
45 # define NFS_TIMEOUT CONFIG_NFS_TIMEOUT
49 #define NFS_RPC_DROP 124
51 static int fs_mounted;
52 static unsigned long rpc_id;
53 static int nfs_offset = -1;
55 static ulong nfs_timeout = NFS_TIMEOUT;
57 static char dirfh[NFS_FHSIZE]; /* NFSv2 / NFSv3 file handle of directory */
58 static char filefh[NFS3_FHSIZE]; /* NFSv2 / NFSv3 file handle */
59 static int filefh3_length; /* (variable) length of filefh when NFSv3 */
61 static enum net_loop_state nfs_download_state;
62 static struct in_addr nfs_server_ip;
63 static int nfs_server_mount_port;
64 static int nfs_server_port;
65 static int nfs_our_port;
66 static int nfs_timeout_count;
68 #define STATE_PRCLOOKUP_PROG_MOUNT_REQ 1
69 #define STATE_PRCLOOKUP_PROG_NFS_REQ 2
70 #define STATE_MOUNT_REQ 3
71 #define STATE_UMOUNT_REQ 4
72 #define STATE_LOOKUP_REQ 5
73 #define STATE_READ_REQ 6
74 #define STATE_READLINK_REQ 7
76 static char *nfs_filename;
77 static char *nfs_path;
78 static char nfs_path_buff[2048];
81 #define NFSV3_FLAG 1 << 1
82 static char supported_nfs_versions = NFSV2_FLAG | NFSV3_FLAG;
84 static inline int store_block(uchar *src, unsigned offset, unsigned len)
86 ulong newsize = offset + len;
87 #ifdef CONFIG_SYS_DIRECT_FLASH_NFS
90 for (i = 0; i < CONFIG_SYS_MAX_FLASH_BANKS; i++) {
91 /* start address in flash? */
92 if (image_load_addr + offset >= flash_info[i].start[0]) {
98 if (rc) { /* Flash is destination for this packet */
99 rc = flash_write((uchar *)src, (ulong)image_load_addr + offset,
106 #endif /* CONFIG_SYS_DIRECT_FLASH_NFS */
108 void *ptr = map_sysmem(image_load_addr + offset, len);
110 memcpy(ptr, src, len);
114 if (net_boot_file_size < (offset + len))
115 net_boot_file_size = newsize;
119 static char *basename(char *path)
123 fname = path + strlen(path) - 1;
124 while (fname >= path) {
134 static char *dirname(char *path)
138 fname = basename(path);
144 /**************************************************************************
145 RPC_ADD_CREDENTIALS - Add RPC authentication/verifier entries
146 **************************************************************************/
147 static uint32_t *rpc_add_credentials(uint32_t *p)
149 /* Here's the executive summary on authentication requirements of the
150 * various NFS server implementations: Linux accepts both AUTH_NONE
151 * and AUTH_UNIX authentication (also accepts an empty hostname field
152 * in the AUTH_UNIX scheme). *BSD refuses AUTH_NONE, but accepts
153 * AUTH_UNIX (also accepts an empty hostname field in the AUTH_UNIX
154 * scheme). To be safe, use AUTH_UNIX and pass the hostname if we have
155 * it (if the BOOTP/DHCP reply didn't give one, just use an empty
158 /* Provide an AUTH_UNIX credential. */
159 *p++ = htonl(1); /* AUTH_UNIX */
160 *p++ = htonl(20); /* auth length */
161 *p++ = 0; /* stamp */
162 *p++ = 0; /* hostname string */
165 *p++ = 0; /* auxiliary gid list */
167 /* Provide an AUTH_NONE verifier. */
168 *p++ = 0; /* AUTH_NONE */
169 *p++ = 0; /* auth length */
174 /**************************************************************************
175 RPC_LOOKUP - Lookup RPC Port numbers
176 **************************************************************************/
177 static void rpc_req(int rpc_prog, int rpc_proc, uint32_t *data, int datalen)
179 struct rpc_t rpc_pkt;
186 rpc_pkt.u.call.id = htonl(id);
187 rpc_pkt.u.call.type = htonl(MSG_CALL);
188 rpc_pkt.u.call.rpcvers = htonl(2); /* use RPC version 2 */
189 rpc_pkt.u.call.prog = htonl(rpc_prog);
192 if (supported_nfs_versions & NFSV2_FLAG)
193 rpc_pkt.u.call.vers = htonl(2); /* NFS v2 */
194 else /* NFSV3_FLAG */
195 rpc_pkt.u.call.vers = htonl(3); /* NFS v3 */
200 rpc_pkt.u.call.vers = htonl(2); /* portmapper is version 2 */
202 rpc_pkt.u.call.proc = htonl(rpc_proc);
203 p = rpc_pkt.u.call.data;
206 memcpy(p, data, datalen * sizeof(uint32_t));
208 pktlen = (char *)p + datalen * sizeof(uint32_t) - (char *)&rpc_pkt;
210 memcpy((char *)net_tx_packet + net_eth_hdr_size() + IP_UDP_HDR_SIZE,
211 &rpc_pkt.u.data[0], pktlen);
213 if (rpc_prog == PROG_PORTMAP)
215 else if (rpc_prog == PROG_MOUNT)
216 sport = nfs_server_mount_port;
218 sport = nfs_server_port;
220 net_send_udp_packet(net_server_ethaddr, nfs_server_ip, sport,
221 nfs_our_port, pktlen);
224 /**************************************************************************
225 RPC_LOOKUP - Lookup RPC Port numbers
226 **************************************************************************/
227 static void rpc_lookup_req(int prog, int ver)
231 data[0] = 0; data[1] = 0; /* auth credential */
232 data[2] = 0; data[3] = 0; /* auth verifier */
233 data[4] = htonl(prog);
234 data[5] = htonl(ver);
235 data[6] = htonl(17); /* IP_UDP */
237 rpc_req(PROG_PORTMAP, PORTMAP_GETPORT, data, 8);
240 /**************************************************************************
241 NFS_MOUNT - Mount an NFS Filesystem
242 **************************************************************************/
243 static void nfs_mount_req(char *path)
250 pathlen = strlen(path);
253 p = rpc_add_credentials(p);
255 *p++ = htonl(pathlen);
257 *(p + pathlen / 4) = 0;
258 memcpy(p, path, pathlen);
259 p += (pathlen + 3) / 4;
261 len = (uint32_t *)p - (uint32_t *)&(data[0]);
263 rpc_req(PROG_MOUNT, MOUNT_ADDENTRY, data, len);
266 /**************************************************************************
267 NFS_UMOUNTALL - Unmount all our NFS Filesystems on the Server
268 **************************************************************************/
269 static void nfs_umountall_req(void)
275 if ((nfs_server_mount_port == -1) || (!fs_mounted))
276 /* Nothing mounted, nothing to umount */
280 p = rpc_add_credentials(p);
282 len = (uint32_t *)p - (uint32_t *)&(data[0]);
284 rpc_req(PROG_MOUNT, MOUNT_UMOUNTALL, data, len);
287 /***************************************************************************
288 * NFS_READLINK (AH 2003-07-14)
289 * This procedure is called when read of the first block fails -
290 * this probably happens when it's a directory or a symlink
291 * In case of successful readlink(), the dirname is manipulated,
292 * so that inside the nfs() function a recursion can be done.
293 **************************************************************************/
294 static void nfs_readlink_req(void)
301 p = rpc_add_credentials(p);
303 if (supported_nfs_versions & NFSV2_FLAG) {
304 memcpy(p, filefh, NFS_FHSIZE);
305 p += (NFS_FHSIZE / 4);
306 } else { /* NFSV3_FLAG */
307 *p++ = htonl(filefh3_length);
308 memcpy(p, filefh, filefh3_length);
309 p += (filefh3_length / 4);
312 len = (uint32_t *)p - (uint32_t *)&(data[0]);
314 rpc_req(PROG_NFS, NFS_READLINK, data, len);
317 /**************************************************************************
318 NFS_LOOKUP - Lookup Pathname
319 **************************************************************************/
320 static void nfs_lookup_req(char *fname)
327 fnamelen = strlen(fname);
330 p = rpc_add_credentials(p);
332 if (supported_nfs_versions & NFSV2_FLAG) {
333 memcpy(p, dirfh, NFS_FHSIZE);
334 p += (NFS_FHSIZE / 4);
335 *p++ = htonl(fnamelen);
337 *(p + fnamelen / 4) = 0;
338 memcpy(p, fname, fnamelen);
339 p += (fnamelen + 3) / 4;
341 len = (uint32_t *)p - (uint32_t *)&(data[0]);
343 rpc_req(PROG_NFS, NFS_LOOKUP, data, len);
344 } else { /* NFSV3_FLAG */
345 *p++ = htonl(NFS_FHSIZE); /* Dir handle length */
346 memcpy(p, dirfh, NFS_FHSIZE);
347 p += (NFS_FHSIZE / 4);
348 *p++ = htonl(fnamelen);
350 *(p + fnamelen / 4) = 0;
351 memcpy(p, fname, fnamelen);
352 p += (fnamelen + 3) / 4;
354 len = (uint32_t *)p - (uint32_t *)&(data[0]);
356 rpc_req(PROG_NFS, NFS3PROC_LOOKUP, data, len);
360 /**************************************************************************
361 NFS_READ - Read File on NFS Server
362 **************************************************************************/
363 static void nfs_read_req(int offset, int readlen)
370 p = rpc_add_credentials(p);
372 if (supported_nfs_versions & NFSV2_FLAG) {
373 memcpy(p, filefh, NFS_FHSIZE);
374 p += (NFS_FHSIZE / 4);
375 *p++ = htonl(offset);
376 *p++ = htonl(readlen);
378 } else { /* NFSV3_FLAG */
379 *p++ = htonl(filefh3_length);
380 memcpy(p, filefh, filefh3_length);
381 p += (filefh3_length / 4);
382 *p++ = htonl(0); /* offset is 64-bit long, so fill with 0 */
383 *p++ = htonl(offset);
384 *p++ = htonl(readlen);
388 len = (uint32_t *)p - (uint32_t *)&(data[0]);
390 rpc_req(PROG_NFS, NFS_READ, data, len);
393 /**************************************************************************
394 RPC request dispatcher
395 **************************************************************************/
396 static void nfs_send(void)
398 debug("%s\n", __func__);
401 case STATE_PRCLOOKUP_PROG_MOUNT_REQ:
402 if (supported_nfs_versions & NFSV2_FLAG)
403 rpc_lookup_req(PROG_MOUNT, 1);
404 else /* NFSV3_FLAG */
405 rpc_lookup_req(PROG_MOUNT, 3);
407 case STATE_PRCLOOKUP_PROG_NFS_REQ:
408 if (supported_nfs_versions & NFSV2_FLAG)
409 rpc_lookup_req(PROG_NFS, 2);
410 else /* NFSV3_FLAG */
411 rpc_lookup_req(PROG_NFS, 3);
413 case STATE_MOUNT_REQ:
414 nfs_mount_req(nfs_path);
416 case STATE_UMOUNT_REQ:
419 case STATE_LOOKUP_REQ:
420 nfs_lookup_req(nfs_filename);
423 nfs_read_req(nfs_offset, nfs_len);
425 case STATE_READLINK_REQ:
431 /**************************************************************************
432 Handlers for the reply from server
433 **************************************************************************/
435 static int rpc_lookup_reply(int prog, uchar *pkt, unsigned len)
437 struct rpc_t rpc_pkt;
439 memcpy(&rpc_pkt.u.data[0], pkt, len);
441 debug("%s\n", __func__);
443 if (ntohl(rpc_pkt.u.reply.id) > rpc_id)
445 else if (ntohl(rpc_pkt.u.reply.id) < rpc_id)
446 return -NFS_RPC_DROP;
448 if (rpc_pkt.u.reply.rstatus ||
449 rpc_pkt.u.reply.verifier ||
450 rpc_pkt.u.reply.astatus)
455 nfs_server_mount_port = ntohl(rpc_pkt.u.reply.data[0]);
458 nfs_server_port = ntohl(rpc_pkt.u.reply.data[0]);
465 static int nfs_mount_reply(uchar *pkt, unsigned len)
467 struct rpc_t rpc_pkt;
469 debug("%s\n", __func__);
471 memcpy(&rpc_pkt.u.data[0], pkt, len);
473 if (ntohl(rpc_pkt.u.reply.id) > rpc_id)
475 else if (ntohl(rpc_pkt.u.reply.id) < rpc_id)
476 return -NFS_RPC_DROP;
478 if (rpc_pkt.u.reply.rstatus ||
479 rpc_pkt.u.reply.verifier ||
480 rpc_pkt.u.reply.astatus ||
481 rpc_pkt.u.reply.data[0])
485 /* NFSv2 and NFSv3 use same structure */
486 memcpy(dirfh, rpc_pkt.u.reply.data + 1, NFS_FHSIZE);
491 static int nfs_umountall_reply(uchar *pkt, unsigned len)
493 struct rpc_t rpc_pkt;
495 debug("%s\n", __func__);
497 memcpy(&rpc_pkt.u.data[0], pkt, len);
499 if (ntohl(rpc_pkt.u.reply.id) > rpc_id)
501 else if (ntohl(rpc_pkt.u.reply.id) < rpc_id)
502 return -NFS_RPC_DROP;
504 if (rpc_pkt.u.reply.rstatus ||
505 rpc_pkt.u.reply.verifier ||
506 rpc_pkt.u.reply.astatus)
510 memset(dirfh, 0, sizeof(dirfh));
515 static int nfs_lookup_reply(uchar *pkt, unsigned len)
517 struct rpc_t rpc_pkt;
519 debug("%s\n", __func__);
521 memcpy(&rpc_pkt.u.data[0], pkt, len);
523 if (ntohl(rpc_pkt.u.reply.id) > rpc_id)
525 else if (ntohl(rpc_pkt.u.reply.id) < rpc_id)
526 return -NFS_RPC_DROP;
528 if (rpc_pkt.u.reply.rstatus ||
529 rpc_pkt.u.reply.verifier ||
530 rpc_pkt.u.reply.astatus ||
531 rpc_pkt.u.reply.data[0]) {
532 switch (ntohl(rpc_pkt.u.reply.astatus)) {
533 case NFS_RPC_SUCCESS: /* Not an error */
535 case NFS_RPC_PROG_MISMATCH:
536 /* Remote can't support NFS version */
537 switch (ntohl(rpc_pkt.u.reply.data[0])) {
538 /* Minimal supported NFS version */
540 debug("*** Warning: NFS version not supported: Requested: V%d, accepted: min V%d - max V%d\n",
541 (supported_nfs_versions & NFSV2_FLAG) ?
543 ntohl(rpc_pkt.u.reply.data[0]),
544 ntohl(rpc_pkt.u.reply.data[1]));
545 debug("Will retry with NFSv3\n");
546 /* Clear NFSV2_FLAG from supported versions */
547 supported_nfs_versions &= ~NFSV2_FLAG;
548 return -NFS_RPC_PROG_MISMATCH;
551 puts("*** ERROR: NFS version not supported");
552 debug(": Requested: V%d, accepted: min V%d - max V%d\n",
553 (supported_nfs_versions & NFSV2_FLAG) ?
555 ntohl(rpc_pkt.u.reply.data[0]),
556 ntohl(rpc_pkt.u.reply.data[1]));
560 case NFS_RPC_PROG_UNAVAIL:
561 case NFS_RPC_PROC_UNAVAIL:
562 case NFS_RPC_GARBAGE_ARGS:
563 case NFS_RPC_SYSTEM_ERR:
564 default: /* Unknown error on 'accept state' flag */
565 debug("*** ERROR: accept state error (%d)\n",
566 ntohl(rpc_pkt.u.reply.astatus));
572 if (supported_nfs_versions & NFSV2_FLAG) {
573 if (((uchar *)&(rpc_pkt.u.reply.data[0]) - (uchar *)(&rpc_pkt) + NFS_FHSIZE) > len)
574 return -NFS_RPC_DROP;
575 memcpy(filefh, rpc_pkt.u.reply.data + 1, NFS_FHSIZE);
576 } else { /* NFSV3_FLAG */
577 filefh3_length = ntohl(rpc_pkt.u.reply.data[1]);
578 if (filefh3_length > NFS3_FHSIZE)
579 filefh3_length = NFS3_FHSIZE;
580 if (((uchar *)&(rpc_pkt.u.reply.data[0]) - (uchar *)(&rpc_pkt) + filefh3_length) > len)
581 return -NFS_RPC_DROP;
582 memcpy(filefh, rpc_pkt.u.reply.data + 2, filefh3_length);
588 static int nfs3_get_attributes_offset(uint32_t *data)
591 /* 'attributes_follow' flag is TRUE,
592 * so we have attributes on 21 dwords */
593 /* Skip unused values :
596 nlink; 32 bits value,
603 fileid; 64 bits value,
604 atime; 64 bits value,
605 mtime; 64 bits value,
606 ctime; 64 bits value,
610 /* 'attributes_follow' flag is FALSE,
611 * so we don't have any attributes */
616 static int nfs_readlink_reply(uchar *pkt, unsigned len)
618 struct rpc_t rpc_pkt;
620 int nfsv3_data_offset = 0;
622 debug("%s\n", __func__);
624 memcpy((unsigned char *)&rpc_pkt, pkt, len);
626 if (ntohl(rpc_pkt.u.reply.id) > rpc_id)
628 else if (ntohl(rpc_pkt.u.reply.id) < rpc_id)
629 return -NFS_RPC_DROP;
631 if (rpc_pkt.u.reply.rstatus ||
632 rpc_pkt.u.reply.verifier ||
633 rpc_pkt.u.reply.astatus ||
634 rpc_pkt.u.reply.data[0])
637 if (!(supported_nfs_versions & NFSV2_FLAG)) { /* NFSV3_FLAG */
639 nfs3_get_attributes_offset(rpc_pkt.u.reply.data);
642 /* new path length */
643 rlen = ntohl(rpc_pkt.u.reply.data[1 + nfsv3_data_offset]);
645 if (((uchar *)&(rpc_pkt.u.reply.data[0]) - (uchar *)(&rpc_pkt) + rlen) > len)
646 return -NFS_RPC_DROP;
648 if (*((char *)&(rpc_pkt.u.reply.data[2 + nfsv3_data_offset])) != '/') {
651 strcat(nfs_path, "/");
652 pathlen = strlen(nfs_path);
653 memcpy(nfs_path + pathlen,
654 (uchar *)&(rpc_pkt.u.reply.data[2 + nfsv3_data_offset]),
656 nfs_path[pathlen + rlen] = 0;
659 (uchar *)&(rpc_pkt.u.reply.data[2 + nfsv3_data_offset]),
666 static int nfs_read_reply(uchar *pkt, unsigned len)
668 struct rpc_t rpc_pkt;
672 debug("%s\n", __func__);
674 memcpy(&rpc_pkt.u.data[0], pkt, sizeof(rpc_pkt.u.reply));
676 if (ntohl(rpc_pkt.u.reply.id) > rpc_id)
678 else if (ntohl(rpc_pkt.u.reply.id) < rpc_id)
679 return -NFS_RPC_DROP;
681 if (rpc_pkt.u.reply.rstatus ||
682 rpc_pkt.u.reply.verifier ||
683 rpc_pkt.u.reply.astatus ||
684 rpc_pkt.u.reply.data[0]) {
685 if (rpc_pkt.u.reply.rstatus)
687 if (rpc_pkt.u.reply.astatus)
689 return -ntohl(rpc_pkt.u.reply.data[0]);
692 if ((nfs_offset != 0) && !((nfs_offset) %
693 (NFS_READ_SIZE / 2 * 10 * HASHES_PER_LINE)))
695 if (!(nfs_offset % ((NFS_READ_SIZE / 2) * 10)))
698 if (supported_nfs_versions & NFSV2_FLAG) {
699 rlen = ntohl(rpc_pkt.u.reply.data[18]);
700 data_ptr = (uchar *)&(rpc_pkt.u.reply.data[19]);
701 } else { /* NFSV3_FLAG */
702 int nfsv3_data_offset =
703 nfs3_get_attributes_offset(rpc_pkt.u.reply.data);
706 rlen = ntohl(rpc_pkt.u.reply.data[1 + nfsv3_data_offset]);
707 /* Skip unused values :
709 data_size: 32 bits value,
712 &(rpc_pkt.u.reply.data[4 + nfsv3_data_offset]);
715 if (((uchar *)&(rpc_pkt.u.reply.data[0]) - (uchar *)(&rpc_pkt) + rlen) > len)
718 if (store_block(data_ptr, nfs_offset, rlen))
724 /**************************************************************************
726 **************************************************************************/
727 static void nfs_timeout_handler(void)
729 if (++nfs_timeout_count > NFS_RETRY_COUNT) {
730 puts("\nRetry count exceeded; starting again\n");
734 net_set_timeout_handler(nfs_timeout +
735 NFS_TIMEOUT * nfs_timeout_count,
736 nfs_timeout_handler);
741 static void nfs_handler(uchar *pkt, unsigned dest, struct in_addr sip,
742 unsigned src, unsigned len)
747 debug("%s\n", __func__);
749 if (len > sizeof(struct rpc_t))
752 if (dest != nfs_our_port)
756 case STATE_PRCLOOKUP_PROG_MOUNT_REQ:
757 if (rpc_lookup_reply(PROG_MOUNT, pkt, len) == -NFS_RPC_DROP)
759 nfs_state = STATE_PRCLOOKUP_PROG_NFS_REQ;
763 case STATE_PRCLOOKUP_PROG_NFS_REQ:
764 if (rpc_lookup_reply(PROG_NFS, pkt, len) == -NFS_RPC_DROP)
766 nfs_state = STATE_MOUNT_REQ;
770 case STATE_MOUNT_REQ:
771 reply = nfs_mount_reply(pkt, len);
772 if (reply == -NFS_RPC_DROP) {
774 } else if (reply == -NFS_RPC_ERR) {
775 puts("*** ERROR: Cannot mount\n");
776 /* just to be sure... */
777 nfs_state = STATE_UMOUNT_REQ;
780 nfs_state = STATE_LOOKUP_REQ;
785 case STATE_UMOUNT_REQ:
786 reply = nfs_umountall_reply(pkt, len);
787 if (reply == -NFS_RPC_DROP) {
789 } else if (reply == -NFS_RPC_ERR) {
790 debug("*** ERROR: Cannot umount\n");
791 net_set_state(NETLOOP_FAIL);
794 net_set_state(nfs_download_state);
798 case STATE_LOOKUP_REQ:
799 reply = nfs_lookup_reply(pkt, len);
800 if (reply == -NFS_RPC_DROP) {
802 } else if (reply == -NFS_RPC_ERR) {
803 puts("*** ERROR: File lookup fail\n");
804 nfs_state = STATE_UMOUNT_REQ;
806 } else if (reply == -NFS_RPC_PROG_MISMATCH &&
807 supported_nfs_versions != 0) {
809 nfs_state = STATE_UMOUNT_REQ;
811 /* And retry with another supported version */
812 nfs_state = STATE_PRCLOOKUP_PROG_MOUNT_REQ;
815 nfs_state = STATE_READ_REQ;
817 nfs_len = NFS_READ_SIZE;
822 case STATE_READLINK_REQ:
823 reply = nfs_readlink_reply(pkt, len);
824 if (reply == -NFS_RPC_DROP) {
826 } else if (reply == -NFS_RPC_ERR) {
827 puts("*** ERROR: Symlink fail\n");
828 nfs_state = STATE_UMOUNT_REQ;
831 debug("Symlink --> %s\n", nfs_path);
832 nfs_filename = basename(nfs_path);
833 nfs_path = dirname(nfs_path);
835 nfs_state = STATE_MOUNT_REQ;
841 rlen = nfs_read_reply(pkt, len);
842 if (rlen == -NFS_RPC_DROP)
844 net_set_timeout_handler(nfs_timeout, nfs_timeout_handler);
848 } else if ((rlen == -NFSERR_ISDIR) || (rlen == -NFSERR_INVAL)) {
850 nfs_state = STATE_READLINK_REQ;
854 nfs_download_state = NETLOOP_SUCCESS;
856 debug("NFS READ error (%d)\n", rlen);
857 nfs_state = STATE_UMOUNT_REQ;
867 debug("%s\n", __func__);
868 nfs_download_state = NETLOOP_FAIL;
870 nfs_server_ip = net_server_ip;
871 nfs_path = (char *)nfs_path_buff;
873 if (nfs_path == NULL) {
874 net_set_state(NETLOOP_FAIL);
875 printf("*** ERROR: Fail allocate memory\n");
879 if (!net_parse_bootfile(&nfs_server_ip, nfs_path,
880 sizeof(nfs_path_buff))) {
881 sprintf(nfs_path, "/nfsroot/%02X%02X%02X%02X.img",
882 net_ip.s_addr & 0xFF,
883 (net_ip.s_addr >> 8) & 0xFF,
884 (net_ip.s_addr >> 16) & 0xFF,
885 (net_ip.s_addr >> 24) & 0xFF);
887 printf("*** Warning: no boot file name; using '%s'\n",
891 nfs_filename = basename(nfs_path);
892 nfs_path = dirname(nfs_path);
894 printf("Using %s device\n", eth_get_name());
896 printf("File transfer via NFS from server %pI4; our IP address is %pI4",
897 &nfs_server_ip, &net_ip);
899 /* Check if we need to send across this subnet */
900 if (net_gateway.s_addr && net_netmask.s_addr) {
901 struct in_addr our_net;
902 struct in_addr server_net;
904 our_net.s_addr = net_ip.s_addr & net_netmask.s_addr;
905 server_net.s_addr = nfs_server_ip.s_addr & net_netmask.s_addr;
906 if (our_net.s_addr != server_net.s_addr)
907 printf("; sending through gateway %pI4",
910 printf("\nFilename '%s/%s'.", nfs_path, nfs_filename);
912 if (net_boot_file_expected_size_in_blocks) {
913 printf(" Size is 0x%x Bytes = ",
914 net_boot_file_expected_size_in_blocks << 9);
915 print_size(net_boot_file_expected_size_in_blocks << 9, "");
917 printf("\nLoad address: 0x%lx\nLoading: *\b", image_load_addr);
919 net_set_timeout_handler(nfs_timeout, nfs_timeout_handler);
920 net_set_udp_handler(nfs_handler);
922 nfs_timeout_count = 0;
923 nfs_state = STATE_PRCLOOKUP_PROG_MOUNT_REQ;
925 /*nfs_our_port = 4096 + (get_ticks() % 3072);*/
929 /* zero out server ether in case the server ip has changed */
930 memset(net_server_ethaddr, 0, 6);