Change rpc_nfs_rename to rpc_nfs3_rename
[deb_libnfs.git] / lib / libnfs.c
1 /*
2 Copyright (C) 2010 by Ronnie Sahlberg <ronniesahlberg@gmail.com>
3
4 This program is free software; you can redistribute it and/or modify
5 it under the terms of the GNU Lesser General Public License as published by
6 the Free Software Foundation; either version 2.1 of the License, or
7 (at your option) any later version.
8
9 This program is distributed in the hope that it will be useful,
10 but WITHOUT ANY WARRANTY; without even the implied warranty of
11 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 GNU Lesser General Public License for more details.
13
14 You should have received a copy of the GNU Lesser General Public License
15 along with this program; if not, see <http://www.gnu.org/licenses/>.
16 */
17 /*
18 * High level api to nfs filesystems
19 */
20 #ifdef HAVE_CONFIG_H
21 #include "config.h"
22 #endif
23
24 #ifdef AROS
25 #include "aros_compat.h"
26 #endif
27
28 #ifdef WIN32
29 #include "win32_compat.h"
30 #endif
31
32 #ifdef HAVE_UTIME_H
33 #include <utime.h>
34 #endif
35
36 #ifdef ANDROID
37 #define statvfs statfs
38 #endif
39
40 #define _GNU_SOURCE
41
42 #ifdef HAVE_UNISTD_H
43 #include <unistd.h>
44 #endif
45
46 #ifdef HAVE_SYS_VFS_H
47 #include <sys/vfs.h>
48 #endif
49
50 #ifdef HAVE_SYS_STATVFS_H
51 #include <sys/statvfs.h>
52 #endif
53
54 #ifdef HAVE_NETINET_IN_H
55 #include <netinet/in.h>
56 #endif
57
58 #ifdef HAVE_STRINGS_H
59 #include <strings.h>
60 #endif
61
62 #include <stdio.h>
63 #include <stdarg.h>
64 #include <stdlib.h>
65 #include <string.h>
66 #include <assert.h>
67 #include <errno.h>
68 #include <sys/types.h>
69 #include <sys/stat.h>
70 #include <fcntl.h>
71 #include "libnfs-zdr.h"
72 #include "libnfs.h"
73 #include "libnfs-raw.h"
74 #include "libnfs-raw-mount.h"
75 #include "libnfs-raw-nfs.h"
76 #include "libnfs-private.h"
77
78 struct nfsdir {
79 struct nfsdirent *entries;
80 struct nfsdirent *current;
81 };
82
83 struct nfsfh {
84 struct nfs_fh3 fh;
85 int is_sync;
86 uint64_t offset;
87 };
88
89 struct nfs_context {
90 struct rpc_context *rpc;
91 char *server;
92 char *export;
93 struct nfs_fh3 rootfh;
94 uint64_t readmax;
95 uint64_t writemax;
96 };
97
98 void nfs_free_nfsdir(struct nfsdir *nfsdir)
99 {
100 while (nfsdir->entries) {
101 struct nfsdirent *dirent = nfsdir->entries->next;
102 if (nfsdir->entries->name != NULL) {
103 free(nfsdir->entries->name);
104 }
105 free(nfsdir->entries);
106 nfsdir->entries = dirent;
107 }
108 free(nfsdir);
109 }
110
111 struct nfs_cb_data;
112 typedef int (*continue_func)(struct nfs_context *nfs, struct nfs_cb_data *data);
113
114 struct nfs_cb_data {
115 struct nfs_context *nfs;
116 struct nfsfh *nfsfh;
117 char *saved_path, *path;
118
119 nfs_cb cb;
120 void *private_data;
121
122 continue_func continue_cb;
123 void *continue_data;
124 void (*free_continue_data)(void *);
125 int continue_int;
126
127 struct nfs_fh3 fh;
128
129 /* for multi-read/write calls. */
130 int error;
131 int cancel;
132 int num_calls;
133 uint64_t start_offset, max_offset;
134 char *buffer;
135 };
136
137 struct nfs_mcb_data {
138 struct nfs_cb_data *data;
139 uint64_t offset;
140 uint64_t count;
141 };
142
143 static int nfs_lookup_path_async_internal(struct nfs_context *nfs, struct nfs_cb_data *data, struct nfs_fh3 *fh);
144
145
146 void nfs_set_auth(struct nfs_context *nfs, struct AUTH *auth)
147 {
148 rpc_set_auth(nfs->rpc, auth);
149 }
150
151 int nfs_get_fd(struct nfs_context *nfs)
152 {
153 return rpc_get_fd(nfs->rpc);
154 }
155
156 int nfs_queue_length(struct nfs_context *nfs)
157 {
158 return rpc_queue_length(nfs->rpc);
159 }
160
161 int nfs_which_events(struct nfs_context *nfs)
162 {
163 return rpc_which_events(nfs->rpc);
164 }
165
166 int nfs_service(struct nfs_context *nfs, int revents)
167 {
168 return rpc_service(nfs->rpc, revents);
169 }
170
171 char *nfs_get_error(struct nfs_context *nfs)
172 {
173 return rpc_get_error(nfs->rpc);
174 };
175
176 static int nfs_set_context_args(struct nfs_context *nfs, char *arg, char *val)
177 {
178 if (!strncmp(arg, "tcp-syncnt", 10)) {
179 rpc_set_tcp_syncnt(nfs_get_rpc_context(nfs), atoi(val));
180 } else if (!strncmp(arg, "uid", 3)) {
181 rpc_set_uid(nfs_get_rpc_context(nfs), atoi(val));
182 } else if (!strncmp(arg, "gid", 3)) {
183 rpc_set_gid(nfs_get_rpc_context(nfs), atoi(val));
184 }
185 return 0;
186 }
187
188 static struct nfs_url *nfs_parse_url(struct nfs_context *nfs, const char *url, int dir, int incomplete)
189 {
190 struct nfs_url *urls;
191 char *strp, *flagsp, *strp2;
192
193 if (strncmp(url, "nfs://", 6)) {
194 rpc_set_error(nfs->rpc, "Invalid URL specified");
195 return NULL;
196 }
197
198 urls = malloc(sizeof(struct nfs_url));
199 if (urls == NULL) {
200 rpc_set_error(nfs->rpc, "Out of memory");
201 return NULL;
202 }
203
204 memset(urls, 0x00, sizeof(struct nfs_url));
205 urls->server = strdup(url + 6);
206 if (urls->server == NULL) {
207 nfs_destroy_url(urls);
208 rpc_set_error(nfs->rpc, "Out of memory");
209 return NULL;
210 }
211
212 if (urls->server[0] == '/' || urls->server[0] == '\0' ||
213 urls->server[0] == '?') {
214 if (incomplete) {
215 flagsp = strchr(urls->server, '?');
216 goto flags;
217 }
218 nfs_destroy_url(urls);
219 rpc_set_error(nfs->rpc, "Invalid server string");
220 return NULL;
221 }
222
223 strp = strchr(urls->server, '/');
224 if (strp == NULL) {
225 if (incomplete) {
226 flagsp = strchr(urls->server, '?');
227 goto flags;
228 }
229 nfs_destroy_url(urls);
230 rpc_set_error(nfs->rpc, "Incomplete or invalid URL specified.");
231 return NULL;
232 }
233
234 urls->path = strdup(strp);
235 if (urls->path == NULL) {
236 nfs_destroy_url(urls);
237 rpc_set_error(nfs->rpc, "Out of memory");
238 return NULL;
239 }
240 *strp = 0;
241
242 if (dir) {
243 flagsp = strchr(urls->path, '?');
244 goto flags;
245 }
246
247 strp = strrchr(urls->path, '/');
248 if (strp == NULL) {
249 if (incomplete) {
250 flagsp = strchr(urls->path, '?');
251 goto flags;
252 }
253 nfs_destroy_url(urls);
254 rpc_set_error(nfs->rpc, "Incomplete or invalid URL specified.");
255 return NULL;
256 }
257 urls->file = strdup(strp);
258 if (urls->path == NULL) {
259 nfs_destroy_url(urls);
260 rpc_set_error(nfs->rpc, "Out of memory");
261 return NULL;
262 }
263 *strp = 0;
264 flagsp = strchr(urls->file, '?');
265
266 flags:
267 if (flagsp) {
268 *flagsp = 0;
269 }
270
271 if (urls->file && !strlen(urls->file)) {
272 free(urls->file);
273 urls->file = NULL;
274 if (!incomplete) {
275 nfs_destroy_url(urls);
276 rpc_set_error(nfs->rpc, "Incomplete or invalid URL specified.");
277 return NULL;
278 }
279 }
280
281 while (flagsp != NULL && *(flagsp+1) != 0) {
282 strp = flagsp + 1;
283 flagsp = strchr(strp, '&');
284 if (flagsp) {
285 *flagsp = 0;
286 }
287 strp2 = strchr(strp, '=');
288 if (strp2) {
289 *strp2 = 0;
290 strp2++;
291 nfs_set_context_args(nfs, strp, strp2);
292 }
293 }
294
295 if (urls->server && strlen(urls->server) <= 1) {
296 free(urls->server);
297 urls->server = NULL;
298 }
299
300 return urls;
301 }
302
303 struct nfs_url *nfs_parse_url_full(struct nfs_context *nfs, const char *url)
304 {
305 return nfs_parse_url(nfs, url, 0, 0);
306 }
307
308 struct nfs_url *nfs_parse_url_dir(struct nfs_context *nfs, const char *url)
309 {
310 return nfs_parse_url(nfs, url, 1, 0);
311 }
312
313 struct nfs_url *nfs_parse_url_incomplete(struct nfs_context *nfs, const char *url)
314 {
315 return nfs_parse_url(nfs, url, 0, 1);
316 }
317
318
319 void nfs_destroy_url(struct nfs_url *url)
320 {
321 if (url) {
322 free(url->server);
323 free(url->path);
324 free(url->file);
325 }
326 free(url);
327 }
328
329 struct nfs_context *nfs_init_context(void)
330 {
331 struct nfs_context *nfs;
332
333 nfs = malloc(sizeof(struct nfs_context));
334 if (nfs == NULL) {
335 return NULL;
336 }
337 nfs->rpc = rpc_init_context();
338 if (nfs->rpc == NULL) {
339 free(nfs);
340 return NULL;
341 }
342
343 nfs->server = NULL;
344 nfs->export = NULL;
345
346 nfs->rootfh.data.data_len = 0;
347 nfs->rootfh.data.data_val = NULL;
348
349 return nfs;
350 }
351
352 void nfs_destroy_context(struct nfs_context *nfs)
353 {
354 rpc_destroy_context(nfs->rpc);
355 nfs->rpc = NULL;
356
357 if (nfs->server) {
358 free(nfs->server);
359 nfs->server = NULL;
360 }
361
362 if (nfs->export) {
363 free(nfs->export);
364 nfs->export = NULL;
365 }
366
367 if (nfs->rootfh.data.data_val != NULL) {
368 free(nfs->rootfh.data.data_val);
369 nfs->rootfh.data.data_val = NULL;
370 }
371
372 free(nfs);
373 }
374
375 struct rpc_cb_data {
376 char *server;
377 uint32_t program;
378 uint32_t version;
379
380 rpc_cb cb;
381 void *private_data;
382 };
383
384 void free_rpc_cb_data(struct rpc_cb_data *data)
385 {
386 free(data->server);
387 data->server = NULL;
388 free(data);
389 }
390
391 static void rpc_connect_program_4_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
392 {
393 struct rpc_cb_data *data = private_data;
394
395 assert(rpc->magic == RPC_CONTEXT_MAGIC);
396
397 /* Dont want any more callbacks even if the socket is closed */
398 rpc->connect_cb = NULL;
399
400 if (status == RPC_STATUS_ERROR) {
401 data->cb(rpc, status, command_data, data->private_data);
402 free_rpc_cb_data(data);
403 return;
404 }
405 if (status == RPC_STATUS_CANCEL) {
406 data->cb(rpc, status, "Command was cancelled", data->private_data);
407 free_rpc_cb_data(data);
408 return;
409 }
410
411 data->cb(rpc, status, NULL, data->private_data);
412 free_rpc_cb_data(data);
413 }
414
415 static void rpc_connect_program_3_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
416 {
417 struct rpc_cb_data *data = private_data;
418 uint32_t rpc_port;
419
420 assert(rpc->magic == RPC_CONTEXT_MAGIC);
421
422 if (status == RPC_STATUS_ERROR) {
423 data->cb(rpc, status, command_data, data->private_data);
424 free_rpc_cb_data(data);
425 return;
426 }
427 if (status == RPC_STATUS_CANCEL) {
428 data->cb(rpc, status, "Command was cancelled", data->private_data);
429 free_rpc_cb_data(data);
430 return;
431 }
432
433 rpc_port = *(uint32_t *)command_data;
434 if (rpc_port == 0) {
435 rpc_set_error(rpc, "RPC error. Program is not available on %s", data->server);
436 data->cb(rpc, RPC_STATUS_ERROR, rpc_get_error(rpc), data->private_data);
437 free_rpc_cb_data(data);
438 return;
439 }
440
441 rpc_disconnect(rpc, "normal disconnect");
442 if (rpc_connect_async(rpc, data->server, rpc_port, rpc_connect_program_4_cb, data) != 0) {
443 data->cb(rpc, status, command_data, data->private_data);
444 free_rpc_cb_data(data);
445 return;
446 }
447 }
448
449 static void rpc_connect_program_2_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
450 {
451 struct rpc_cb_data *data = private_data;
452
453 assert(rpc->magic == RPC_CONTEXT_MAGIC);
454
455 if (status == RPC_STATUS_ERROR) {
456 data->cb(rpc, status, command_data, data->private_data);
457 free_rpc_cb_data(data);
458 return;
459 }
460 if (status == RPC_STATUS_CANCEL) {
461 data->cb(rpc, status, "Command was cancelled", data->private_data);
462 free_rpc_cb_data(data);
463 return;
464 }
465
466 if (rpc_pmap_getport_async(rpc, data->program, data->version, IPPROTO_TCP, rpc_connect_program_3_cb, private_data) != 0) {
467 data->cb(rpc, status, command_data, data->private_data);
468 free_rpc_cb_data(data);
469 return;
470 }
471 }
472
473 static void rpc_connect_program_1_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
474 {
475 struct rpc_cb_data *data = private_data;
476
477 assert(rpc->magic == RPC_CONTEXT_MAGIC);
478
479 /* Dont want any more callbacks even if the socket is closed */
480 rpc->connect_cb = NULL;
481
482 if (status == RPC_STATUS_ERROR) {
483 data->cb(rpc, status, command_data, data->private_data);
484 free_rpc_cb_data(data);
485 return;
486 }
487 if (status == RPC_STATUS_CANCEL) {
488 data->cb(rpc, status, "Command was cancelled", data->private_data);
489 free_rpc_cb_data(data);
490 return;
491 }
492
493 if (rpc_pmap_null_async(rpc, rpc_connect_program_2_cb, data) != 0) {
494 data->cb(rpc, status, command_data, data->private_data);
495 free_rpc_cb_data(data);
496 return;
497 }
498 }
499
500 int rpc_connect_program_async(struct rpc_context *rpc, char *server, int program, int version, rpc_cb cb, void *private_data)
501 {
502 struct rpc_cb_data *data;
503
504 data = malloc(sizeof(struct rpc_cb_data));
505 if (data == NULL) {
506 return -1;
507 }
508 memset(data, 0, sizeof(struct rpc_cb_data));
509 data->server = strdup(server);
510 data->program = program;
511 data->version = version;
512
513 data->cb = cb;
514 data->private_data = private_data;
515
516 if (rpc_connect_async(rpc, server, 111, rpc_connect_program_1_cb, data) != 0) {
517 rpc_set_error(rpc, "Failed to start connection");
518 free_rpc_cb_data(data);
519 return -1;
520 }
521 return 0;
522 }
523
524 void free_nfs_cb_data(struct nfs_cb_data *data)
525 {
526 if (data->saved_path != NULL) {
527 free(data->saved_path);
528 data->saved_path = NULL;
529 }
530
531 if (data->continue_data != NULL) {
532 data->free_continue_data(data->continue_data);
533 data->continue_data = NULL;
534 }
535
536 if (data->fh.data.data_val != NULL) {
537 free(data->fh.data.data_val);
538 data->fh.data.data_val = NULL;
539 }
540
541 if (data->buffer != NULL) {
542 free(data->buffer);
543 data->buffer = NULL;
544 }
545
546 free(data);
547 }
548
549
550
551
552
553 static void nfs_mount_10_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
554 {
555 struct nfs_cb_data *data = private_data;
556 struct nfs_context *nfs = data->nfs;
557
558 assert(rpc->magic == RPC_CONTEXT_MAGIC);
559
560 if (status == RPC_STATUS_ERROR) {
561 data->cb(-EFAULT, nfs, command_data, data->private_data);
562 free_nfs_cb_data(data);
563 return;
564 }
565 if (status == RPC_STATUS_CANCEL) {
566 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
567 free_nfs_cb_data(data);
568 return;
569 }
570
571 data->cb(0, nfs, NULL, data->private_data);
572 free_nfs_cb_data(data);
573 }
574
575 static void nfs_mount_9_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
576 {
577 struct nfs_cb_data *data = private_data;
578 struct nfs_context *nfs = data->nfs;
579 FSINFO3res *res = command_data;
580 struct GETATTR3args args;
581
582 assert(rpc->magic == RPC_CONTEXT_MAGIC);
583
584 if (status == RPC_STATUS_ERROR) {
585 data->cb(-EFAULT, nfs, command_data, data->private_data);
586 free_nfs_cb_data(data);
587 return;
588 }
589 if (status == RPC_STATUS_CANCEL) {
590 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
591 free_nfs_cb_data(data);
592 return;
593 }
594
595 nfs->readmax = res->FSINFO3res_u.resok.rtmax;
596 nfs->writemax = res->FSINFO3res_u.resok.wtmax;
597
598 memset(&args, 0, sizeof(GETATTR3args));
599 args.object.data.data_len = nfs->rootfh.data.data_len;
600 args.object.data.data_val = nfs->rootfh.data.data_val;
601
602 if (rpc_nfs3_getattr_async(rpc, nfs_mount_10_cb, &args, data) != 0) {
603 data->cb(-ENOMEM, nfs, command_data, data->private_data);
604 free_nfs_cb_data(data);
605 return;
606 }
607 }
608
609 static void nfs_mount_8_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
610 {
611 struct nfs_cb_data *data = private_data;
612 struct nfs_context *nfs = data->nfs;
613 struct FSINFO3args args;
614
615 assert(rpc->magic == RPC_CONTEXT_MAGIC);
616
617 if (status == RPC_STATUS_ERROR) {
618 data->cb(-EFAULT, nfs, command_data, data->private_data);
619 free_nfs_cb_data(data);
620 return;
621 }
622 if (status == RPC_STATUS_CANCEL) {
623 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
624 free_nfs_cb_data(data);
625 return;
626 }
627
628 args.fsroot = nfs->rootfh;
629 if (rpc_nfs3_fsinfo_async(rpc, nfs_mount_9_cb, &args, data) != 0) {
630 data->cb(-ENOMEM, nfs, command_data, data->private_data);
631 free_nfs_cb_data(data);
632 return;
633 }
634 }
635
636
637 static void nfs_mount_7_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
638 {
639 struct nfs_cb_data *data = private_data;
640 struct nfs_context *nfs = data->nfs;
641
642 assert(rpc->magic == RPC_CONTEXT_MAGIC);
643
644 /* Dont want any more callbacks even if the socket is closed */
645 rpc->connect_cb = NULL;
646
647 if (status == RPC_STATUS_ERROR) {
648 data->cb(-EFAULT, nfs, command_data, data->private_data);
649 free_nfs_cb_data(data);
650 return;
651 }
652 if (status == RPC_STATUS_CANCEL) {
653 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
654 free_nfs_cb_data(data);
655 return;
656 }
657
658 if (rpc_nfs3_null_async(rpc, nfs_mount_8_cb, data) != 0) {
659 data->cb(-ENOMEM, nfs, command_data, data->private_data);
660 free_nfs_cb_data(data);
661 return;
662 }
663 }
664
665
666 static void nfs_mount_6_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
667 {
668 struct nfs_cb_data *data = private_data;
669 struct nfs_context *nfs = data->nfs;
670 mountres3 *res;
671
672 assert(rpc->magic == RPC_CONTEXT_MAGIC);
673
674 if (status == RPC_STATUS_ERROR) {
675 data->cb(-EFAULT, nfs, command_data, data->private_data);
676 free_nfs_cb_data(data);
677 return;
678 }
679 if (status == RPC_STATUS_CANCEL) {
680 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
681 free_nfs_cb_data(data);
682 return;
683 }
684
685 res = command_data;
686 if (res->fhs_status != MNT3_OK) {
687 rpc_set_error(rpc, "RPC error: Mount failed with error %s(%d) %s(%d)", mountstat3_to_str(res->fhs_status), res->fhs_status, strerror(-mountstat3_to_errno(res->fhs_status)), -mountstat3_to_errno(res->fhs_status));
688 data->cb(mountstat3_to_errno(res->fhs_status), nfs, rpc_get_error(rpc), data->private_data);
689 free_nfs_cb_data(data);
690 return;
691 }
692
693 nfs->rootfh.data.data_len = res->mountres3_u.mountinfo.fhandle.fhandle3_len;
694 nfs->rootfh.data.data_val = malloc(nfs->rootfh.data.data_len);
695 if (nfs->rootfh.data.data_val == NULL) {
696 rpc_set_error(rpc, "Out of memory. Could not allocate memory to store root filehandle");
697 data->cb(-ENOMEM, nfs, rpc_get_error(rpc), data->private_data);
698 free_nfs_cb_data(data);
699 return;
700 }
701 memcpy(nfs->rootfh.data.data_val, res->mountres3_u.mountinfo.fhandle.fhandle3_val, nfs->rootfh.data.data_len);
702
703 rpc_disconnect(rpc, "normal disconnect");
704 if (rpc_connect_async(rpc, nfs->server, 2049, nfs_mount_7_cb, data) != 0) {
705 data->cb(-ENOMEM, nfs, command_data, data->private_data);
706 free_nfs_cb_data(data);
707 return;
708 }
709 /* NFS TCP connections we want to autoreconnect after sessions are torn down (due to inactivity or error) */
710 rpc_set_autoreconnect(rpc);
711 }
712
713
714 static void nfs_mount_5_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
715 {
716 struct nfs_cb_data *data = private_data;
717 struct nfs_context *nfs = data->nfs;
718
719 assert(rpc->magic == RPC_CONTEXT_MAGIC);
720
721 if (status == RPC_STATUS_ERROR) {
722 data->cb(-EFAULT, nfs, command_data, data->private_data);
723 free_nfs_cb_data(data);
724 return;
725 }
726 if (status == RPC_STATUS_CANCEL) {
727 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
728 free_nfs_cb_data(data);
729 return;
730 }
731
732 if (rpc_mount3_mnt_async(rpc, nfs_mount_6_cb, nfs->export, data) != 0) {
733 data->cb(-ENOMEM, nfs, command_data, data->private_data);
734 free_nfs_cb_data(data);
735 return;
736 }
737 }
738
739 static void nfs_mount_4_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
740 {
741 struct nfs_cb_data *data = private_data;
742 struct nfs_context *nfs = data->nfs;
743
744 assert(rpc->magic == RPC_CONTEXT_MAGIC);
745
746 /* Dont want any more callbacks even if the socket is closed */
747 rpc->connect_cb = NULL;
748
749 if (status == RPC_STATUS_ERROR) {
750 data->cb(-EFAULT, nfs, command_data, data->private_data);
751 free_nfs_cb_data(data);
752 return;
753 }
754 if (status == RPC_STATUS_CANCEL) {
755 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
756 free_nfs_cb_data(data);
757 return;
758 }
759
760 if (rpc_mount3_null_async(rpc, nfs_mount_5_cb, data) != 0) {
761 data->cb(-ENOMEM, nfs, command_data, data->private_data);
762 free_nfs_cb_data(data);
763 return;
764 }
765 }
766
767 static void nfs_mount_3_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
768 {
769 struct nfs_cb_data *data = private_data;
770 struct nfs_context *nfs = data->nfs;
771 uint32_t mount_port;
772
773 assert(rpc->magic == RPC_CONTEXT_MAGIC);
774
775 if (status == RPC_STATUS_ERROR) {
776 data->cb(-EFAULT, nfs, command_data, data->private_data);
777 free_nfs_cb_data(data);
778 return;
779 }
780 if (status == RPC_STATUS_CANCEL) {
781 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
782 free_nfs_cb_data(data);
783 return;
784 }
785
786 mount_port = *(uint32_t *)command_data;
787 if (mount_port == 0) {
788 rpc_set_error(rpc, "RPC error. Mount program is not available on %s", nfs->server);
789 data->cb(-ENOENT, nfs, command_data, data->private_data);
790 free_nfs_cb_data(data);
791 return;
792 }
793
794 rpc_disconnect(rpc, "normal disconnect");
795 if (rpc_connect_async(rpc, nfs->server, mount_port, nfs_mount_4_cb, data) != 0) {
796 data->cb(-ENOMEM, nfs, command_data, data->private_data);
797 free_nfs_cb_data(data);
798 return;
799 }
800 }
801
802
803 static void nfs_mount_2_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
804 {
805 struct nfs_cb_data *data = private_data;
806 struct nfs_context *nfs = data->nfs;
807
808 assert(rpc->magic == RPC_CONTEXT_MAGIC);
809
810 if (status == RPC_STATUS_ERROR) {
811 data->cb(-EFAULT, nfs, command_data, data->private_data);
812 free_nfs_cb_data(data);
813 return;
814 }
815 if (status == RPC_STATUS_CANCEL) {
816 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
817 free_nfs_cb_data(data);
818 return;
819 }
820
821 if (rpc_pmap_getport_async(rpc, MOUNT_PROGRAM, MOUNT_V3, IPPROTO_TCP, nfs_mount_3_cb, private_data) != 0) {
822 data->cb(-ENOMEM, nfs, command_data, data->private_data);
823 free_nfs_cb_data(data);
824 return;
825 }
826 }
827
828 static void nfs_mount_1_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
829 {
830 struct nfs_cb_data *data = private_data;
831 struct nfs_context *nfs = data->nfs;
832
833 assert(rpc->magic == RPC_CONTEXT_MAGIC);
834
835 /* Dont want any more callbacks even if the socket is closed */
836 rpc->connect_cb = NULL;
837
838 if (status == RPC_STATUS_ERROR) {
839 data->cb(-EFAULT, nfs, command_data, data->private_data);
840 free_nfs_cb_data(data);
841 return;
842 }
843 if (status == RPC_STATUS_CANCEL) {
844 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
845 free_nfs_cb_data(data);
846 return;
847 }
848
849 if (rpc_pmap_null_async(rpc, nfs_mount_2_cb, data) != 0) {
850 data->cb(-ENOMEM, nfs, command_data, data->private_data);
851 free_nfs_cb_data(data);
852 return;
853 }
854 }
855
856 /*
857 * Async call for mounting an nfs share and geting the root filehandle
858 */
859 int nfs_mount_async(struct nfs_context *nfs, const char *server, const char *export, nfs_cb cb, void *private_data)
860 {
861 struct nfs_cb_data *data;
862 char *new_server, *new_export;
863
864 data = malloc(sizeof(struct nfs_cb_data));
865 if (data == NULL) {
866 rpc_set_error(nfs->rpc, "out of memory. failed to allocate memory for nfs mount data");
867 return -1;
868 }
869 memset(data, 0, sizeof(struct nfs_cb_data));
870 new_server = strdup(server);
871 new_export = strdup(export);
872 if (nfs->server != NULL) {
873 free(nfs->server);
874 }
875 nfs->server = new_server;
876 if (nfs->export != NULL) {
877 free(nfs->export);
878 }
879 nfs->export = new_export;
880 data->nfs = nfs;
881 data->cb = cb;
882 data->private_data = private_data;
883
884 if (rpc_connect_async(nfs->rpc, server, 111, nfs_mount_1_cb, data) != 0) {
885 rpc_set_error(nfs->rpc, "Failed to start connection");
886 free_nfs_cb_data(data);
887 return -1;
888 }
889
890 return 0;
891 }
892
893
894
895 /*
896 * Functions to first look up a path, component by component, and then finally call a specific function once
897 * the filehandle for the final component is found.
898 */
899 static void nfs_lookup_path_1_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
900 {
901 struct nfs_cb_data *data = private_data;
902 struct nfs_context *nfs = data->nfs;
903 LOOKUP3res *res;
904
905 assert(rpc->magic == RPC_CONTEXT_MAGIC);
906
907 if (status == RPC_STATUS_ERROR) {
908 data->cb(-EFAULT, nfs, command_data, data->private_data);
909 free_nfs_cb_data(data);
910 return;
911 }
912 if (status == RPC_STATUS_CANCEL) {
913 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
914 free_nfs_cb_data(data);
915 return;
916 }
917
918 res = command_data;
919 if (res->status != NFS3_OK) {
920 rpc_set_error(nfs->rpc, "NFS: Lookup of %s failed with %s(%d)", data->saved_path, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
921 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
922 free_nfs_cb_data(data);
923 return;
924 }
925
926 if (nfs_lookup_path_async_internal(nfs, data, &res->LOOKUP3res_u.resok.object) != 0) {
927 rpc_set_error(nfs->rpc, "Failed to create lookup pdu");
928 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
929 free_nfs_cb_data(data);
930 return;
931 }
932 }
933
934 static int nfs_lookup_path_async_internal(struct nfs_context *nfs, struct nfs_cb_data *data, struct nfs_fh3 *fh)
935 {
936 char *path, *str;
937 LOOKUP3args args;
938
939 while (*data->path == '/') {
940 data->path++;
941 }
942
943 path = data->path;
944 str = strchr(path, '/');
945 if (str != NULL) {
946 *str = 0;
947 data->path = str+1;
948 } else {
949 while (*data->path != 0) {
950 data->path++;
951 }
952 }
953
954 if (*path == 0) {
955 data->fh.data.data_len = fh->data.data_len;
956 data->fh.data.data_val = malloc(data->fh.data.data_len);
957 if (data->fh.data.data_val == NULL) {
958 rpc_set_error(nfs->rpc, "Out of memory: Failed to allocate fh for %s", data->path);
959 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
960 free_nfs_cb_data(data);
961 return -1;
962 }
963 memcpy(data->fh.data.data_val, fh->data.data_val, data->fh.data.data_len);
964 data->continue_cb(nfs, data);
965 return 0;
966 }
967
968
969 memset(&args, 0, sizeof(LOOKUP3args));
970 args.what.dir.data.data_len = fh->data.data_len;
971 args.what.dir.data.data_val = fh->data.data_val;
972 args.what.name = path;
973
974 if (rpc_nfs3_lookup_async(nfs->rpc, nfs_lookup_path_1_cb, &args, data) != 0) {
975 rpc_set_error(nfs->rpc, "RPC error: Failed to send lookup call for %s", data->path);
976 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
977 free_nfs_cb_data(data);
978 return -1;
979 }
980 return 0;
981 }
982
983 static int nfs_lookuppath_async(struct nfs_context *nfs, const char *path, nfs_cb cb, void *private_data, continue_func continue_cb, void *continue_data, void (*free_continue_data)(void *), int continue_int)
984 {
985 struct nfs_cb_data *data;
986
987 if (path[0] != 0 && path[0] != '/') {
988 rpc_set_error(nfs->rpc, "Pathname is not absolute %s", path);
989 return -1;
990 }
991
992 data = malloc(sizeof(struct nfs_cb_data));
993 if (data == NULL) {
994 rpc_set_error(nfs->rpc, "out of memory: failed to allocate nfs_cb_data structure");
995 return -1;
996 }
997 memset(data, 0, sizeof(struct nfs_cb_data));
998 data->nfs = nfs;
999 data->cb = cb;
1000 data->continue_cb = continue_cb;
1001 data->continue_data = continue_data;
1002 data->free_continue_data = free_continue_data;
1003 data->continue_int = continue_int;
1004 data->private_data = private_data;
1005 data->saved_path = strdup(path);
1006 if (data->saved_path == NULL) {
1007 rpc_set_error(nfs->rpc, "out of memory: failed to copy path string");
1008 free_nfs_cb_data(data);
1009 return -1;
1010 }
1011 data->path = data->saved_path;
1012
1013 if (nfs_lookup_path_async_internal(nfs, data, &nfs->rootfh) != 0) {
1014 /* return 0 here since the callback will be invoked if there is a failure */
1015 return 0;
1016 }
1017 return 0;
1018 }
1019
1020
1021
1022
1023
1024 /*
1025 * Async stat()
1026 */
1027 static void nfs_stat_1_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
1028 {
1029 GETATTR3res *res;
1030 struct nfs_cb_data *data = private_data;
1031 struct nfs_context *nfs = data->nfs;
1032 struct stat st;
1033
1034 assert(rpc->magic == RPC_CONTEXT_MAGIC);
1035
1036 if (status == RPC_STATUS_ERROR) {
1037 data->cb(-EFAULT, nfs, command_data, data->private_data);
1038 free_nfs_cb_data(data);
1039 return;
1040 }
1041 if (status == RPC_STATUS_CANCEL) {
1042 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
1043 free_nfs_cb_data(data);
1044 return;
1045 }
1046
1047 res = command_data;
1048 if (res->status != NFS3_OK) {
1049 rpc_set_error(nfs->rpc, "NFS: GETATTR of %s failed with %s(%d)", data->saved_path, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
1050 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
1051 free_nfs_cb_data(data);
1052 return;
1053 }
1054
1055 st.st_dev = -1;
1056 st.st_ino = res->GETATTR3res_u.resok.obj_attributes.fileid;
1057 st.st_mode = res->GETATTR3res_u.resok.obj_attributes.mode;
1058 if (res->GETATTR3res_u.resok.obj_attributes.type == NF3DIR) {
1059 st.st_mode |= S_IFDIR ;
1060 }
1061 if (res->GETATTR3res_u.resok.obj_attributes.type == NF3REG) {
1062 st.st_mode |= S_IFREG ;
1063 }
1064 st.st_nlink = res->GETATTR3res_u.resok.obj_attributes.nlink;
1065 st.st_uid = res->GETATTR3res_u.resok.obj_attributes.uid;
1066 st.st_gid = res->GETATTR3res_u.resok.obj_attributes.gid;
1067 st.st_rdev = 0;
1068 st.st_size = res->GETATTR3res_u.resok.obj_attributes.size;
1069 #ifndef WIN32
1070 st.st_blksize = 4096;
1071 st.st_blocks = res->GETATTR3res_u.resok.obj_attributes.size / 4096;
1072 #endif//WIN32
1073 st.st_atime = res->GETATTR3res_u.resok.obj_attributes.atime.seconds;
1074 st.st_mtime = res->GETATTR3res_u.resok.obj_attributes.mtime.seconds;
1075 st.st_ctime = res->GETATTR3res_u.resok.obj_attributes.ctime.seconds;
1076
1077 data->cb(0, nfs, &st, data->private_data);
1078 free_nfs_cb_data(data);
1079 }
1080
1081 static int nfs_stat_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
1082 {
1083 struct GETATTR3args args;
1084
1085 memset(&args, 0, sizeof(GETATTR3args));
1086 args.object.data.data_len = data->fh.data.data_len;
1087 args.object.data.data_val = data->fh.data.data_val;
1088
1089 if (rpc_nfs3_getattr_async(nfs->rpc, nfs_stat_1_cb, &args, data) != 0) {
1090 rpc_set_error(nfs->rpc, "RPC error: Failed to send STAT GETATTR call for %s", data->path);
1091 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1092 free_nfs_cb_data(data);
1093 return -1;
1094 }
1095 return 0;
1096 }
1097
1098 int nfs_stat_async(struct nfs_context *nfs, const char *path, nfs_cb cb, void *private_data)
1099 {
1100 if (nfs_lookuppath_async(nfs, path, cb, private_data, nfs_stat_continue_internal, NULL, NULL, 0) != 0) {
1101 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
1102 return -1;
1103 }
1104
1105 return 0;
1106 }
1107
1108
1109
1110
1111
1112 /*
1113 * Async open()
1114 */
1115 static void nfs_open_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
1116 {
1117 ACCESS3res *res;
1118 struct nfs_cb_data *data = private_data;
1119 struct nfs_context *nfs = data->nfs;
1120 struct nfsfh *nfsfh;
1121 unsigned int nfsmode = 0;
1122
1123 assert(rpc->magic == RPC_CONTEXT_MAGIC);
1124
1125 if (status == RPC_STATUS_ERROR) {
1126 data->cb(-EFAULT, nfs, command_data, data->private_data);
1127 free_nfs_cb_data(data);
1128 return;
1129 }
1130 if (status == RPC_STATUS_CANCEL) {
1131 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
1132 free_nfs_cb_data(data);
1133 return;
1134 }
1135
1136 res = command_data;
1137 if (res->status != NFS3_OK) {
1138 rpc_set_error(nfs->rpc, "NFS: ACCESS of %s failed with %s(%d)", data->saved_path, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
1139 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
1140 free_nfs_cb_data(data);
1141 return;
1142 }
1143
1144 if (data->continue_int & O_WRONLY) {
1145 nfsmode |= ACCESS3_MODIFY;
1146 }
1147 if (data->continue_int & O_RDWR) {
1148 nfsmode |= ACCESS3_READ|ACCESS3_MODIFY;
1149 }
1150 if (!(data->continue_int & (O_WRONLY|O_RDWR))) {
1151 nfsmode |= ACCESS3_READ;
1152 }
1153
1154
1155 if (res->ACCESS3res_u.resok.access != nfsmode) {
1156 rpc_set_error(nfs->rpc, "NFS: ACCESS denied. Required access %c%c%c. Allowed access %c%c%c",
1157 nfsmode&ACCESS3_READ?'r':'-',
1158 nfsmode&ACCESS3_MODIFY?'w':'-',
1159 nfsmode&ACCESS3_EXECUTE?'x':'-',
1160 res->ACCESS3res_u.resok.access&ACCESS3_READ?'r':'-',
1161 res->ACCESS3res_u.resok.access&ACCESS3_MODIFY?'w':'-',
1162 res->ACCESS3res_u.resok.access&ACCESS3_EXECUTE?'x':'-');
1163 data->cb(-EACCES, nfs, rpc_get_error(nfs->rpc), data->private_data);
1164 free_nfs_cb_data(data);
1165 return;
1166 }
1167
1168 nfsfh = malloc(sizeof(struct nfsfh));
1169 if (nfsfh == NULL) {
1170 rpc_set_error(nfs->rpc, "NFS: Failed to allocate nfsfh structure");
1171 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1172 free_nfs_cb_data(data);
1173 return;
1174 }
1175 memset(nfsfh, 0, sizeof(struct nfsfh));
1176
1177 if (data->continue_int & O_SYNC) {
1178 nfsfh->is_sync = 1;
1179 }
1180
1181 /* steal the filehandle */
1182 nfsfh->fh.data.data_len = data->fh.data.data_len;
1183 nfsfh->fh.data.data_val = data->fh.data.data_val;
1184 data->fh.data.data_val = NULL;
1185
1186 data->cb(0, nfs, nfsfh, data->private_data);
1187 free_nfs_cb_data(data);
1188 }
1189
1190 static int nfs_open_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
1191 {
1192 int nfsmode = 0;
1193 ACCESS3args args;
1194
1195 if (data->continue_int & O_WRONLY) {
1196 nfsmode |= ACCESS3_MODIFY;
1197 }
1198 if (data->continue_int & O_RDWR) {
1199 nfsmode |= ACCESS3_READ|ACCESS3_MODIFY;
1200 }
1201 if (!(data->continue_int & (O_WRONLY|O_RDWR))) {
1202 nfsmode |= ACCESS3_READ;
1203 }
1204
1205 memset(&args, 0, sizeof(ACCESS3args));
1206 args.object.data.data_len = data->fh.data.data_len;
1207 args.object.data.data_val = data->fh.data.data_val;
1208 args.access = nfsmode;
1209
1210 if (rpc_nfs3_access_async(nfs->rpc, nfs_open_cb, &args, data) != 0) {
1211 rpc_set_error(nfs->rpc, "RPC error: Failed to send OPEN ACCESS call for %s", data->path);
1212 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1213 free_nfs_cb_data(data);
1214 return -1;
1215 }
1216 return 0;
1217 }
1218
1219 int nfs_open_async(struct nfs_context *nfs, const char *path, int mode, nfs_cb cb, void *private_data)
1220 {
1221 if (nfs_lookuppath_async(nfs, path, cb, private_data, nfs_open_continue_internal, NULL, NULL, mode) != 0) {
1222 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
1223 return -1;
1224 }
1225
1226 return 0;
1227 }
1228
1229
1230
1231
1232
1233 /*
1234 * Async pread()
1235 */
1236 static void nfs_pread_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
1237 {
1238 struct nfs_cb_data *data = private_data;
1239 struct nfs_context *nfs = data->nfs;
1240 READ3res *res;
1241
1242 assert(rpc->magic == RPC_CONTEXT_MAGIC);
1243
1244 if (status == RPC_STATUS_ERROR) {
1245 data->cb(-EFAULT, nfs, command_data, data->private_data);
1246 free_nfs_cb_data(data);
1247 return;
1248 }
1249 if (status == RPC_STATUS_CANCEL) {
1250 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
1251 free_nfs_cb_data(data);
1252 return;
1253 }
1254
1255 res = command_data;
1256 if (res->status != NFS3_OK) {
1257 rpc_set_error(nfs->rpc, "NFS: Read failed with %s(%d)", nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
1258 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
1259 free_nfs_cb_data(data);
1260 return;
1261 }
1262
1263 data->nfsfh->offset += res->READ3res_u.resok.count;
1264 data->cb(res->READ3res_u.resok.count, nfs, res->READ3res_u.resok.data.data_val, data->private_data);
1265 free_nfs_cb_data(data);
1266 }
1267
1268 static void nfs_pread_mcb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
1269 {
1270 struct nfs_mcb_data *mdata = private_data;
1271 struct nfs_cb_data *data = mdata->data;
1272 struct nfs_context *nfs = data->nfs;
1273 READ3res *res;
1274
1275 assert(rpc->magic == RPC_CONTEXT_MAGIC);
1276
1277 data->num_calls--;
1278
1279 if (status == RPC_STATUS_ERROR) {
1280 /* flag the failure but do not invoke callback until we have received all responses */
1281 data->error = 1;
1282 }
1283 if (status == RPC_STATUS_CANCEL) {
1284 /* flag the cancellation but do not invoke callback until we have received all responses */
1285 data->cancel = 1;
1286 }
1287
1288 /* reassemble the data into the buffer */
1289 if (status == RPC_STATUS_SUCCESS) {
1290 res = command_data;
1291 if (res->status != NFS3_OK) {
1292 rpc_set_error(nfs->rpc, "NFS: Read failed with %s(%d)", nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
1293 data->error = 1;
1294 } else {
1295 if (res->READ3res_u.resok.count > 0) {
1296 memcpy(&data->buffer[mdata->offset - data->start_offset], res->READ3res_u.resok.data.data_val, res->READ3res_u.resok.count);
1297 if ((unsigned)data->max_offset < mdata->offset + res->READ3res_u.resok.count) {
1298 data->max_offset = mdata->offset + res->READ3res_u.resok.count;
1299 }
1300 }
1301 }
1302 }
1303
1304 if (data->num_calls > 0) {
1305 /* still waiting for more replies */
1306 free(mdata);
1307 return;
1308 }
1309
1310 if (data->error != 0) {
1311 data->cb(-EFAULT, nfs, command_data, data->private_data);
1312 free_nfs_cb_data(data);
1313 free(mdata);
1314 return;
1315 }
1316 if (data->cancel != 0) {
1317 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
1318 free_nfs_cb_data(data);
1319 free(mdata);
1320 return;
1321 }
1322
1323 data->nfsfh->offset = data->max_offset;
1324 data->cb(data->max_offset - data->start_offset, nfs, data->buffer, data->private_data);
1325
1326 free_nfs_cb_data(data);
1327 free(mdata);
1328 }
1329
1330 int nfs_pread_async(struct nfs_context *nfs, struct nfsfh *nfsfh, uint64_t offset, uint64_t count, nfs_cb cb, void *private_data)
1331 {
1332 struct nfs_cb_data *data;
1333
1334 data = malloc(sizeof(struct nfs_cb_data));
1335 if (data == NULL) {
1336 rpc_set_error(nfs->rpc, "out of memory: failed to allocate nfs_cb_data structure");
1337 return -1;
1338 }
1339 memset(data, 0, sizeof(struct nfs_cb_data));
1340 data->nfs = nfs;
1341 data->cb = cb;
1342 data->private_data = private_data;
1343 data->nfsfh = nfsfh;
1344
1345 nfsfh->offset = offset;
1346
1347 if (count <= nfs_get_readmax(nfs)) {
1348 READ3args args;
1349
1350 memset(&args, 0, sizeof(READ3args));
1351 args.file.data.data_len = nfsfh->fh.data.data_len;
1352 args.file.data.data_val = nfsfh->fh.data.data_val;
1353 args.offset = offset;
1354 args.count = count;
1355
1356 if (rpc_nfs3_read_async(nfs->rpc, nfs_pread_cb, &args, data) != 0) {
1357 rpc_set_error(nfs->rpc, "RPC error: Failed to send READ call for %s", data->path);
1358 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1359 free_nfs_cb_data(data);
1360 return -1;
1361 }
1362 return 0;
1363 }
1364
1365 /* trying to read more than maximum server read size, we has to chop it up into smaller
1366 * reads and collect into a reassembly buffer.
1367 * we send all reads in parallel so that performance is still good.
1368 */
1369 data->max_offset = offset;
1370 data->start_offset = offset;
1371
1372 data->buffer = malloc(count);
1373 if (data->buffer == NULL) {
1374 rpc_set_error(nfs->rpc, "Out-Of-Memory: Failed to allocate reassembly buffer for %d bytes", (int)count);
1375 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1376 free_nfs_cb_data(data);
1377 return -1;
1378 }
1379
1380 while (count > 0) {
1381 uint64_t readcount = count;
1382 struct nfs_mcb_data *mdata;
1383 READ3args args;
1384
1385 if (readcount > nfs_get_readmax(nfs)) {
1386 readcount = nfs_get_readmax(nfs);
1387 }
1388
1389 mdata = malloc(sizeof(struct nfs_mcb_data));
1390 if (mdata == NULL) {
1391 rpc_set_error(nfs->rpc, "out of memory: failed to allocate nfs_mcb_data structure");
1392 return -1;
1393 }
1394 memset(mdata, 0, sizeof(struct nfs_mcb_data));
1395 mdata->data = data;
1396 mdata->offset = offset;
1397 mdata->count = readcount;
1398
1399 memset(&args, 0, sizeof(READ3args));
1400 args.file.data.data_len = nfsfh->fh.data.data_len;
1401 args.file.data.data_val = nfsfh->fh.data.data_val;
1402 args.offset = offset;
1403 args.count = readcount;
1404
1405 if (rpc_nfs3_read_async(nfs->rpc, nfs_pread_mcb, &args, mdata) != 0) {
1406 rpc_set_error(nfs->rpc, "RPC error: Failed to send READ call for %s", data->path);
1407 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1408 free(mdata);
1409 return -1;
1410 }
1411
1412 count -= readcount;
1413 offset += readcount;
1414 data->num_calls++;
1415 }
1416
1417 return 0;
1418 }
1419
1420 /*
1421 * Async read()
1422 */
1423 int nfs_read_async(struct nfs_context *nfs, struct nfsfh *nfsfh, uint64_t count, nfs_cb cb, void *private_data)
1424 {
1425 return nfs_pread_async(nfs, nfsfh, nfsfh->offset, count, cb, private_data);
1426 }
1427
1428
1429
1430 /*
1431 * Async pwrite()
1432 */
1433 static void nfs_pwrite_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
1434 {
1435 struct nfs_cb_data *data = private_data;
1436 struct nfs_context *nfs = data->nfs;
1437 WRITE3res *res;
1438
1439 assert(rpc->magic == RPC_CONTEXT_MAGIC);
1440
1441 if (status == RPC_STATUS_ERROR) {
1442 data->cb(-EFAULT, nfs, command_data, data->private_data);
1443 free_nfs_cb_data(data);
1444 return;
1445 }
1446 if (status == RPC_STATUS_CANCEL) {
1447 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
1448 free_nfs_cb_data(data);
1449 return;
1450 }
1451
1452 res = command_data;
1453 if (res->status != NFS3_OK) {
1454 rpc_set_error(nfs->rpc, "NFS: Write failed with %s(%d)", nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
1455 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
1456 free_nfs_cb_data(data);
1457 return;
1458 }
1459
1460 data->nfsfh->offset += res->WRITE3res_u.resok.count;
1461 data->cb(res->WRITE3res_u.resok.count, nfs, NULL, data->private_data);
1462 free_nfs_cb_data(data);
1463 }
1464
1465 static void nfs_pwrite_mcb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
1466 {
1467 struct nfs_mcb_data *mdata = private_data;
1468 struct nfs_cb_data *data = mdata->data;
1469 struct nfs_context *nfs = data->nfs;
1470 WRITE3res *res;
1471
1472 assert(rpc->magic == RPC_CONTEXT_MAGIC);
1473
1474 data->num_calls--;
1475
1476 if (status == RPC_STATUS_ERROR) {
1477 /* flag the failure but do not invoke callback until we have received all responses */
1478 data->error = 1;
1479 }
1480 if (status == RPC_STATUS_CANCEL) {
1481 /* flag the cancellation but do not invoke callback until we have received all responses */
1482 data->cancel = 1;
1483 }
1484
1485 if (status == RPC_STATUS_SUCCESS) {
1486 res = command_data;
1487 if (res->status != NFS3_OK) {
1488 rpc_set_error(nfs->rpc, "NFS: Write failed with %s(%d)", nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
1489 data->error = 1;
1490 } else {
1491 if (res->WRITE3res_u.resok.count > 0) {
1492 if ((unsigned)data->max_offset < mdata->offset + res->WRITE3res_u.resok.count) {
1493 data->max_offset = mdata->offset + res->WRITE3res_u.resok.count;
1494 }
1495 }
1496 }
1497 }
1498
1499 if (data->num_calls > 0) {
1500 /* still waiting for more replies */
1501 free(mdata);
1502 return;
1503 }
1504
1505 if (data->error != 0) {
1506 data->cb(-EFAULT, nfs, command_data, data->private_data);
1507 free_nfs_cb_data(data);
1508 free(mdata);
1509 return;
1510 }
1511 if (data->cancel != 0) {
1512 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
1513 free_nfs_cb_data(data);
1514 free(mdata);
1515 return;
1516 }
1517
1518 data->nfsfh->offset = data->max_offset;
1519 data->cb(data->max_offset - data->start_offset, nfs, NULL, data->private_data);
1520
1521 free_nfs_cb_data(data);
1522 free(mdata);
1523 }
1524
1525
1526 int nfs_pwrite_async(struct nfs_context *nfs, struct nfsfh *nfsfh, uint64_t offset, uint64_t count, char *buf, nfs_cb cb, void *private_data)
1527 {
1528 struct nfs_cb_data *data;
1529
1530 data = malloc(sizeof(struct nfs_cb_data));
1531 if (data == NULL) {
1532 rpc_set_error(nfs->rpc, "out of memory: failed to allocate nfs_cb_data structure");
1533 return -1;
1534 }
1535 memset(data, 0, sizeof(struct nfs_cb_data));
1536 data->nfs = nfs;
1537 data->cb = cb;
1538 data->private_data = private_data;
1539 data->nfsfh = nfsfh;
1540
1541 nfsfh->offset = offset;
1542
1543 if (count <= nfs_get_writemax(nfs)) {
1544 WRITE3args args;
1545
1546 memset(&args, 0, sizeof(WRITE3args));
1547 args.file.data.data_len = nfsfh->fh.data.data_len;
1548 args.file.data.data_val = nfsfh->fh.data.data_val;
1549 args.offset = offset;
1550 args.count = count;
1551 args.stable = nfsfh->is_sync?FILE_SYNC:UNSTABLE;
1552 args.data.data_len = count;
1553 args.data.data_val = buf;
1554
1555 if (rpc_nfs3_write_async(nfs->rpc, nfs_pwrite_cb, &args, data) != 0) {
1556 rpc_set_error(nfs->rpc, "RPC error: Failed to send WRITE call for %s", data->path);
1557 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1558 free_nfs_cb_data(data);
1559 return -1;
1560 }
1561 return 0;
1562 }
1563
1564 /* trying to write more than maximum server write size, we has to chop it up into smaller
1565 * chunks.
1566 * we send all writes in parallel so that performance is still good.
1567 */
1568 data->max_offset = offset;
1569 data->start_offset = offset;
1570
1571 while (count > 0) {
1572 uint64_t writecount = count;
1573 struct nfs_mcb_data *mdata;
1574 WRITE3args args;
1575
1576 if (writecount > nfs_get_writemax(nfs)) {
1577 writecount = nfs_get_writemax(nfs);
1578 }
1579
1580 mdata = malloc(sizeof(struct nfs_mcb_data));
1581 if (mdata == NULL) {
1582 rpc_set_error(nfs->rpc, "out of memory: failed to allocate nfs_mcb_data structure");
1583 return -1;
1584 }
1585 memset(mdata, 0, sizeof(struct nfs_mcb_data));
1586 mdata->data = data;
1587 mdata->offset = offset;
1588 mdata->count = writecount;
1589
1590 memset(&args, 0, sizeof(WRITE3args));
1591 args.file.data.data_len = nfsfh->fh.data.data_len;
1592 args.file.data.data_val = nfsfh->fh.data.data_val;
1593 args.offset = offset;
1594 args.count = writecount;
1595 args.stable = nfsfh->is_sync?FILE_SYNC:UNSTABLE;
1596 args.data.data_len = writecount;
1597 args.data.data_val = &buf[offset - data->start_offset];
1598
1599 if (rpc_nfs3_write_async(nfs->rpc, nfs_pwrite_mcb, &args, mdata) != 0) {
1600 rpc_set_error(nfs->rpc, "RPC error: Failed to send WRITE call for %s", data->path);
1601 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1602 free(mdata);
1603 return -1;
1604 }
1605
1606 count -= writecount;
1607 offset += writecount;
1608 data->num_calls++;
1609 }
1610
1611 return 0;
1612 }
1613
1614 /*
1615 * Async write()
1616 */
1617 int nfs_write_async(struct nfs_context *nfs, struct nfsfh *nfsfh, uint64_t count, char *buf, nfs_cb cb, void *private_data)
1618 {
1619 return nfs_pwrite_async(nfs, nfsfh, nfsfh->offset, count, buf, cb, private_data);
1620 }
1621
1622
1623
1624
1625 /*
1626 * close
1627 */
1628
1629 int nfs_close_async(struct nfs_context *nfs, struct nfsfh *nfsfh, nfs_cb cb, void *private_data)
1630 {
1631 if (nfsfh->fh.data.data_val != NULL){
1632 free(nfsfh->fh.data.data_val);
1633 nfsfh->fh.data.data_val = NULL;
1634 }
1635 free(nfsfh);
1636
1637 cb(0, nfs, NULL, private_data);
1638 return 0;
1639 };
1640
1641
1642
1643
1644
1645 /*
1646 * Async fstat()
1647 */
1648 int nfs_fstat_async(struct nfs_context *nfs, struct nfsfh *nfsfh, nfs_cb cb, void *private_data)
1649 {
1650 struct nfs_cb_data *data;
1651 struct GETATTR3args args;
1652
1653 data = malloc(sizeof(struct nfs_cb_data));
1654 if (data == NULL) {
1655 rpc_set_error(nfs->rpc, "out of memory: failed to allocate nfs_cb_data structure");
1656 return -1;
1657 }
1658 memset(data, 0, sizeof(struct nfs_cb_data));
1659 data->nfs = nfs;
1660 data->cb = cb;
1661 data->private_data = private_data;
1662
1663 memset(&args, 0, sizeof(GETATTR3args));
1664 args.object.data.data_len = nfsfh->fh.data.data_len;
1665 args.object.data.data_val = nfsfh->fh.data.data_val;
1666
1667 if (rpc_nfs3_getattr_async(nfs->rpc, nfs_stat_1_cb, &args, data) != 0) {
1668 rpc_set_error(nfs->rpc, "RPC error: Failed to send STAT GETATTR call for %s", data->path);
1669 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1670 free_nfs_cb_data(data);
1671 return -1;
1672 }
1673 return 0;
1674 }
1675
1676
1677
1678 /*
1679 * Async fsync()
1680 */
1681 static void nfs_fsync_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
1682 {
1683 struct nfs_cb_data *data = private_data;
1684 struct nfs_context *nfs = data->nfs;
1685 COMMIT3res *res;
1686
1687 assert(rpc->magic == RPC_CONTEXT_MAGIC);
1688
1689 if (status == RPC_STATUS_ERROR) {
1690 data->cb(-EFAULT, nfs, command_data, data->private_data);
1691 free_nfs_cb_data(data);
1692 return;
1693 }
1694 if (status == RPC_STATUS_CANCEL) {
1695 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
1696 free_nfs_cb_data(data);
1697 return;
1698 }
1699
1700 res = command_data;
1701 if (res->status != NFS3_OK) {
1702 rpc_set_error(nfs->rpc, "NFS: Commit failed with %s(%d)", nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
1703 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
1704 free_nfs_cb_data(data);
1705 return;
1706 }
1707
1708 data->cb(0, nfs, NULL, data->private_data);
1709 free_nfs_cb_data(data);
1710 }
1711
1712 int nfs_fsync_async(struct nfs_context *nfs, struct nfsfh *nfsfh, nfs_cb cb, void *private_data)
1713 {
1714 struct nfs_cb_data *data;
1715 struct COMMIT3args args;
1716
1717 data = malloc(sizeof(struct nfs_cb_data));
1718 if (data == NULL) {
1719 rpc_set_error(nfs->rpc, "out of memory: failed to allocate nfs_cb_data structure");
1720 return -1;
1721 }
1722 memset(data, 0, sizeof(struct nfs_cb_data));
1723 data->nfs = nfs;
1724 data->cb = cb;
1725 data->private_data = private_data;
1726
1727 args.file = nfsfh->fh;
1728 args.offset = 0;
1729 args.count = 0;
1730 if (rpc_nfs3_commit_async(nfs->rpc, nfs_fsync_cb, &args, data) != 0) {
1731 rpc_set_error(nfs->rpc, "RPC error: Failed to send COMMIT call for %s", data->path);
1732 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1733 free_nfs_cb_data(data);
1734 return -1;
1735 }
1736 return 0;
1737 }
1738
1739
1740
1741
1742 /*
1743 * Async ftruncate()
1744 */
1745 static void nfs_ftruncate_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
1746 {
1747 struct nfs_cb_data *data = private_data;
1748 struct nfs_context *nfs = data->nfs;
1749 SETATTR3res *res;
1750
1751 assert(rpc->magic == RPC_CONTEXT_MAGIC);
1752
1753 if (status == RPC_STATUS_ERROR) {
1754 data->cb(-EFAULT, nfs, command_data, data->private_data);
1755 free_nfs_cb_data(data);
1756 return;
1757 }
1758 if (status == RPC_STATUS_CANCEL) {
1759 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
1760 free_nfs_cb_data(data);
1761 return;
1762 }
1763
1764 res = command_data;
1765 if (res->status != NFS3_OK) {
1766 rpc_set_error(nfs->rpc, "NFS: Setattr failed with %s(%d)", nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
1767 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
1768 free_nfs_cb_data(data);
1769 return;
1770 }
1771
1772 data->cb(0, nfs, NULL, data->private_data);
1773 free_nfs_cb_data(data);
1774 }
1775
1776 int nfs_ftruncate_async(struct nfs_context *nfs, struct nfsfh *nfsfh, uint64_t length, nfs_cb cb, void *private_data)
1777 {
1778 struct nfs_cb_data *data;
1779 SETATTR3args args;
1780
1781 data = malloc(sizeof(struct nfs_cb_data));
1782 if (data == NULL) {
1783 rpc_set_error(nfs->rpc, "out of memory: failed to allocate nfs_cb_data structure");
1784 return -1;
1785 }
1786 memset(data, 0, sizeof(struct nfs_cb_data));
1787 data->nfs = nfs;
1788 data->cb = cb;
1789 data->private_data = private_data;
1790
1791 memset(&args, 0, sizeof(SETATTR3args));
1792 args.object.data.data_len = nfsfh->fh.data.data_len;
1793 args.object.data.data_val = nfsfh->fh.data.data_val;
1794 args.new_attributes.size.set_it = 1;
1795 args.new_attributes.size.set_size3_u.size = length;
1796
1797 if (rpc_nfs3_setattr_async(nfs->rpc, nfs_ftruncate_cb, &args, data) != 0) {
1798 rpc_set_error(nfs->rpc, "RPC error: Failed to send SETATTR call for %s", data->path);
1799 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1800 free_nfs_cb_data(data);
1801 return -1;
1802 }
1803 return 0;
1804 }
1805
1806
1807 /*
1808 * Async truncate()
1809 */
1810 static int nfs_truncate_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
1811 {
1812 uint64_t offset = data->continue_int;
1813 struct nfsfh nfsfh;
1814
1815 nfsfh.fh.data.data_val = data->fh.data.data_val;
1816 nfsfh.fh.data.data_len = data->fh.data.data_len;
1817
1818 if (nfs_ftruncate_async(nfs, &nfsfh, offset, data->cb, data->private_data) != 0) {
1819 rpc_set_error(nfs->rpc, "RPC error: Failed to send SETATTR call for %s", data->path);
1820 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1821 free_nfs_cb_data(data);
1822 return -1;
1823 }
1824 free_nfs_cb_data(data);
1825 return 0;
1826 }
1827
1828 int nfs_truncate_async(struct nfs_context *nfs, const char *path, uint64_t length, nfs_cb cb, void *private_data)
1829 {
1830 uint64_t offset;
1831
1832 offset = length;
1833
1834 if (nfs_lookuppath_async(nfs, path, cb, private_data, nfs_truncate_continue_internal, NULL, NULL, offset) != 0) {
1835 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
1836 return -1;
1837 }
1838
1839 return 0;
1840 }
1841
1842
1843
1844
1845 /*
1846 * Async mkdir()
1847 */
1848 static void nfs_mkdir_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
1849 {
1850 MKDIR3res *res;
1851 struct nfs_cb_data *data = private_data;
1852 struct nfs_context *nfs = data->nfs;
1853 char *str = data->continue_data;
1854
1855 assert(rpc->magic == RPC_CONTEXT_MAGIC);
1856
1857 str = &str[strlen(str) + 1];
1858
1859 if (status == RPC_STATUS_ERROR) {
1860 data->cb(-EFAULT, nfs, command_data, data->private_data);
1861 free_nfs_cb_data(data);
1862 return;
1863 }
1864 if (status == RPC_STATUS_CANCEL) {
1865 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
1866 free_nfs_cb_data(data);
1867 return;
1868 }
1869
1870 res = command_data;
1871 if (res->status != NFS3_OK) {
1872 rpc_set_error(nfs->rpc, "NFS: MKDIR of %s/%s failed with %s(%d)", data->saved_path, str, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
1873 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
1874 free_nfs_cb_data(data);
1875 return;
1876 }
1877
1878 data->cb(0, nfs, NULL, data->private_data);
1879 free_nfs_cb_data(data);
1880 }
1881
1882 static int nfs_mkdir_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
1883 {
1884 char *str = data->continue_data;
1885 MKDIR3args args;
1886
1887 str = &str[strlen(str) + 1];
1888
1889 memset(&args, 0, sizeof(MKDIR3args));
1890 args.where.dir.data.data_len = data->fh.data.data_len;
1891 args.where.dir.data.data_val = data->fh.data.data_val;
1892 args.where.name = str;
1893 args.attributes.mode.set_it = 1;
1894 args.attributes.mode.set_mode3_u.mode = 0755;
1895
1896 if (rpc_nfs3_mkdir_async(nfs->rpc, nfs_mkdir_cb, &args, data) != 0) {
1897 rpc_set_error(nfs->rpc, "RPC error: Failed to send MKDIR call for %s", data->path);
1898 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1899 free_nfs_cb_data(data);
1900 return -1;
1901 }
1902 return 0;
1903 }
1904
1905 int nfs_mkdir_async(struct nfs_context *nfs, const char *path, nfs_cb cb, void *private_data)
1906 {
1907 char *new_path;
1908 char *ptr;
1909
1910 new_path = strdup(path);
1911 if (new_path == NULL) {
1912 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate mode buffer for path");
1913 return -1;
1914 }
1915
1916 ptr = strrchr(new_path, '/');
1917 if (ptr == NULL) {
1918 rpc_set_error(nfs->rpc, "Invalid path %s", path);
1919 return -1;
1920 }
1921 *ptr = 0;
1922
1923 /* new_path now points to the parent directory, and beyond the nul terminateor is the new directory to create */
1924 if (nfs_lookuppath_async(nfs, new_path, cb, private_data, nfs_mkdir_continue_internal, new_path, free, 0) != 0) {
1925 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path component");
1926 return -1;
1927 }
1928
1929 return 0;
1930 }
1931
1932
1933
1934
1935
1936 /*
1937 * Async rmdir()
1938 */
1939 static void nfs_rmdir_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
1940 {
1941 RMDIR3res *res;
1942 struct nfs_cb_data *data = private_data;
1943 struct nfs_context *nfs = data->nfs;
1944 char *str = data->continue_data;
1945
1946 assert(rpc->magic == RPC_CONTEXT_MAGIC);
1947
1948 str = &str[strlen(str) + 1];
1949
1950 if (status == RPC_STATUS_ERROR) {
1951 data->cb(-EFAULT, nfs, command_data, data->private_data);
1952 free_nfs_cb_data(data);
1953 return;
1954 }
1955 if (status == RPC_STATUS_CANCEL) {
1956 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
1957 free_nfs_cb_data(data);
1958 return;
1959 }
1960
1961 res = command_data;
1962 if (res->status != NFS3_OK) {
1963 rpc_set_error(nfs->rpc, "NFS: RMDIR of %s/%s failed with %s(%d)", data->saved_path, str, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
1964 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
1965 free_nfs_cb_data(data);
1966 return;
1967 }
1968
1969 data->cb(0, nfs, NULL, data->private_data);
1970 free_nfs_cb_data(data);
1971 }
1972
1973 static int nfs_rmdir_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
1974 {
1975 char *str = data->continue_data;
1976 RMDIR3args args;
1977
1978 str = &str[strlen(str) + 1];
1979
1980 args.object.dir = data->fh;
1981 args.object.name = str;
1982 if (rpc_nfs3_rmdir_async(nfs->rpc, nfs_rmdir_cb, &args, data) != 0) {
1983 rpc_set_error(nfs->rpc, "RPC error: Failed to send RMDIR call for %s", data->path);
1984 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
1985 free_nfs_cb_data(data);
1986 return -1;
1987 }
1988 return 0;
1989 }
1990
1991 int nfs_rmdir_async(struct nfs_context *nfs, const char *path, nfs_cb cb, void *private_data)
1992 {
1993 char *new_path;
1994 char *ptr;
1995
1996 new_path = strdup(path);
1997 if (new_path == NULL) {
1998 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate mode buffer for path");
1999 return -1;
2000 }
2001
2002 ptr = strrchr(new_path, '/');
2003 if (ptr == NULL) {
2004 rpc_set_error(nfs->rpc, "Invalid path %s", path);
2005 return -1;
2006 }
2007 *ptr = 0;
2008
2009 /* new_path now points to the parent directory, and beyond the nul terminateor is the new directory to create */
2010 if (nfs_lookuppath_async(nfs, new_path, cb, private_data, nfs_rmdir_continue_internal, new_path, free, 0) != 0) {
2011 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
2012 return -1;
2013 }
2014
2015 return 0;
2016 }
2017
2018
2019
2020
2021 /*
2022 * Async creat()
2023 */
2024 static void nfs_create_2_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
2025 {
2026 LOOKUP3res *res;
2027 struct nfs_cb_data *data = private_data;
2028 struct nfs_context *nfs = data->nfs;
2029 struct nfsfh *nfsfh;
2030 char *str = data->continue_data;
2031
2032 assert(rpc->magic == RPC_CONTEXT_MAGIC);
2033
2034 if (status == RPC_STATUS_ERROR) {
2035 data->cb(-EFAULT, nfs, command_data, data->private_data);
2036 free_nfs_cb_data(data);
2037 return;
2038 }
2039 if (status == RPC_STATUS_CANCEL) {
2040 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
2041 free_nfs_cb_data(data);
2042 return;
2043 }
2044
2045 str = &str[strlen(str) + 1];
2046 res = command_data;
2047 if (res->status != NFS3_OK) {
2048 rpc_set_error(nfs->rpc, "NFS: CREATE of %s/%s failed with %s(%d)", data->saved_path, str, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
2049 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
2050
2051 return;
2052 }
2053
2054 nfsfh = malloc(sizeof(struct nfsfh));
2055 if (nfsfh == NULL) {
2056 rpc_set_error(nfs->rpc, "NFS: Failed to allocate nfsfh structure");
2057 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2058 free_nfs_cb_data(data);
2059 return;
2060 }
2061 memset(nfsfh, 0, sizeof(struct nfsfh));
2062
2063 /* copy the filehandle */
2064 nfsfh->fh.data.data_len = res->LOOKUP3res_u.resok.object.data.data_len;
2065 nfsfh->fh.data.data_val = malloc(nfsfh->fh.data.data_len);
2066 memcpy(nfsfh->fh.data.data_val, res->LOOKUP3res_u.resok.object.data.data_val, nfsfh->fh.data.data_len);
2067
2068 data->cb(0, nfs, nfsfh, data->private_data);
2069 free_nfs_cb_data(data);
2070 }
2071
2072
2073
2074 static void nfs_creat_1_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
2075 {
2076 CREATE3res *res;
2077 struct nfs_cb_data *data = private_data;
2078 struct nfs_context *nfs = data->nfs;
2079 char *str = data->continue_data;
2080 LOOKUP3args args;
2081
2082 assert(rpc->magic == RPC_CONTEXT_MAGIC);
2083
2084 if (status == RPC_STATUS_ERROR) {
2085 data->cb(-EFAULT, nfs, command_data, data->private_data);
2086 free_nfs_cb_data(data);
2087 return;
2088 }
2089 if (status == RPC_STATUS_CANCEL) {
2090 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
2091 free_nfs_cb_data(data);
2092 return;
2093 }
2094
2095 str = &str[strlen(str) + 1];
2096 res = command_data;
2097 if (res->status != NFS3_OK) {
2098 rpc_set_error(nfs->rpc, "NFS: CREATE of %s/%s failed with %s(%d)", data->saved_path, str, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
2099 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
2100 free_nfs_cb_data(data);
2101 return;
2102 }
2103
2104 memset(&args, 0, sizeof(LOOKUP3args));
2105 args.what.dir.data.data_len = data->fh.data.data_len;
2106 args.what.dir.data.data_val = data->fh.data.data_val;
2107 args.what.name = str;
2108
2109 if (rpc_nfs3_lookup_async(nfs->rpc, nfs_create_2_cb, &args, data) != 0) {
2110 rpc_set_error(nfs->rpc, "RPC error: Failed to send lookup call for %s/%s", data->saved_path, str);
2111 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2112 free_nfs_cb_data(data);
2113 return;
2114 }
2115 return;
2116 }
2117
2118 static int nfs_creat_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
2119 {
2120 char *str = data->continue_data;
2121 CREATE3args args;
2122
2123 str = &str[strlen(str) + 1];
2124
2125 memset(&args, 0, sizeof(CREATE3args));
2126 args.where.dir.data.data_len = data->fh.data.data_len;
2127 args.where.dir.data.data_val = data->fh.data.data_val;
2128 args.where.name = str;
2129 args.how.mode = UNCHECKED;
2130 args.how.createhow3_u.obj_attributes.mode.set_it = 1;
2131 args.how.createhow3_u.obj_attributes.mode.set_mode3_u.mode = data->continue_int;
2132
2133 if (rpc_nfs3_create_async(nfs->rpc, nfs_creat_1_cb, &args, data) != 0) {
2134 rpc_set_error(nfs->rpc, "RPC error: Failed to send CREATE call for %s/%s", data->path, str);
2135 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2136 free_nfs_cb_data(data);
2137 return -1;
2138 }
2139 return 0;
2140 }
2141
2142 int nfs_creat_async(struct nfs_context *nfs, const char *path, int mode, nfs_cb cb, void *private_data)
2143 {
2144 char *new_path;
2145 char *ptr;
2146
2147 new_path = strdup(path);
2148 if (new_path == NULL) {
2149 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate mode buffer for path");
2150 return -1;
2151 }
2152
2153 ptr = strrchr(new_path, '/');
2154 if (ptr == NULL) {
2155 rpc_set_error(nfs->rpc, "Invalid path %s", path);
2156 return -1;
2157 }
2158 *ptr = 0;
2159
2160 /* new_path now points to the parent directory, and beyond the nul terminator is the new directory to create */
2161 if (nfs_lookuppath_async(nfs, new_path, cb, private_data, nfs_creat_continue_internal, new_path, free, mode) != 0) {
2162 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
2163 return -1;
2164 }
2165
2166 return 0;
2167 }
2168
2169
2170
2171
2172 /*
2173 * Async unlink()
2174 */
2175 static void nfs_unlink_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
2176 {
2177 REMOVE3res *res;
2178 struct nfs_cb_data *data = private_data;
2179 struct nfs_context *nfs = data->nfs;
2180 char *str = data->continue_data;
2181
2182 assert(rpc->magic == RPC_CONTEXT_MAGIC);
2183
2184 str = &str[strlen(str) + 1];
2185
2186 if (status == RPC_STATUS_ERROR) {
2187 data->cb(-EFAULT, nfs, command_data, data->private_data);
2188 free_nfs_cb_data(data);
2189 return;
2190 }
2191 if (status == RPC_STATUS_CANCEL) {
2192 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
2193 free_nfs_cb_data(data);
2194 return;
2195 }
2196
2197 res = command_data;
2198 if (res->status != NFS3_OK) {
2199 rpc_set_error(nfs->rpc, "NFS: REMOVE of %s/%s failed with %s(%d)", data->saved_path, str, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
2200 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
2201 free_nfs_cb_data(data);
2202 return;
2203 }
2204
2205 data->cb(0, nfs, NULL, data->private_data);
2206 free_nfs_cb_data(data);
2207 }
2208
2209 static int nfs_unlink_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
2210 {
2211 char *str = data->continue_data;
2212 struct REMOVE3args args;
2213
2214 str = &str[strlen(str) + 1];
2215
2216 args.object.dir = data->fh;
2217 args.object.name = str;
2218 if (rpc_nfs3_remove_async(nfs->rpc, nfs_unlink_cb, &args, data) != 0) {
2219 rpc_set_error(nfs->rpc, "RPC error: Failed to send REMOVE call for %s", data->path);
2220 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2221 free_nfs_cb_data(data);
2222 return -1;
2223 }
2224 return 0;
2225 }
2226
2227 int nfs_unlink_async(struct nfs_context *nfs, const char *path, nfs_cb cb, void *private_data)
2228 {
2229 char *new_path;
2230 char *ptr;
2231
2232 new_path = strdup(path);
2233 if (new_path == NULL) {
2234 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate mode buffer for path");
2235 return -1;
2236 }
2237
2238 ptr = strrchr(new_path, '/');
2239 if (ptr == NULL) {
2240 rpc_set_error(nfs->rpc, "Invalid path %s", path);
2241 return -1;
2242 }
2243 *ptr = 0;
2244
2245 /* new_path now points to the parent directory, and beyond the nul terminateor is the new directory to create */
2246 if (nfs_lookuppath_async(nfs, new_path, cb, private_data, nfs_unlink_continue_internal, new_path, free, 0) != 0) {
2247 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
2248 return -1;
2249 }
2250
2251 return 0;
2252 }
2253
2254
2255 /*
2256 * Async mknod()
2257 */
2258 struct mknod_cb_data {
2259 char *path;
2260 int mode;
2261 int major;
2262 int minor;
2263 };
2264
2265 static void free_mknod_cb_data(void *ptr)
2266 {
2267 struct mknod_cb_data *data = ptr;
2268
2269 free(data->path);
2270 free(data);
2271 }
2272
2273 static void nfs_mknod_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
2274 {
2275 MKNOD3res *res;
2276 struct nfs_cb_data *data = private_data;
2277 struct nfs_context *nfs = data->nfs;
2278 char *str = data->continue_data;
2279
2280 assert(rpc->magic == RPC_CONTEXT_MAGIC);
2281
2282 str = &str[strlen(str) + 1];
2283
2284 if (status == RPC_STATUS_ERROR) {
2285 data->cb(-EFAULT, nfs, command_data, data->private_data);
2286 free_nfs_cb_data(data);
2287 return;
2288 }
2289 if (status == RPC_STATUS_CANCEL) {
2290 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
2291 free_nfs_cb_data(data);
2292 return;
2293 }
2294
2295 res = command_data;
2296 if (res->status != NFS3_OK) {
2297 rpc_set_error(nfs->rpc, "NFS: MKNOD of %s/%s failed with %s(%d)", data->saved_path, str, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
2298 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
2299 free_nfs_cb_data(data);
2300 return;
2301 }
2302
2303 data->cb(0, nfs, NULL, data->private_data);
2304 free_nfs_cb_data(data);
2305 }
2306
2307 static int nfs_mknod_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
2308 {
2309 struct mknod_cb_data *cb_data = data->continue_data;
2310 char *str = cb_data->path;
2311 MKNOD3args args;
2312
2313 str = &str[strlen(str) + 1];
2314
2315 args.where.dir = data->fh;
2316 args.where.name = str;
2317 switch (cb_data->mode & S_IFMT) {
2318 case S_IFCHR:
2319 args.what.type = NF3CHR;
2320 args.what.mknoddata3_u.chr_device.dev_attributes.mode.set_it = 1;
2321 args.what.mknoddata3_u.chr_device.dev_attributes.mode.set_mode3_u.mode = cb_data->mode & (S_IRUSR|S_IWUSR|S_IXUSR|S_IRGRP|S_IWGRP|S_IXGRP|S_IROTH|S_IWOTH|S_IXOTH);
2322 args.what.mknoddata3_u.chr_device.spec.specdata1 = cb_data->major;
2323 args.what.mknoddata3_u.chr_device.spec.specdata2 = cb_data->minor;
2324 break;
2325 case S_IFBLK:
2326 args.what.type = NF3BLK;
2327 args.what.mknoddata3_u.blk_device.dev_attributes.mode.set_it = 1;
2328 args.what.mknoddata3_u.blk_device.dev_attributes.mode.set_mode3_u.mode = cb_data->mode & (S_IRUSR|S_IWUSR|S_IXUSR|S_IRGRP|S_IWGRP|S_IXGRP|S_IROTH|S_IWOTH|S_IXOTH);
2329 args.what.mknoddata3_u.blk_device.spec.specdata1 = cb_data->major;
2330 args.what.mknoddata3_u.blk_device.spec.specdata2 = cb_data->minor;
2331 case S_IFSOCK:
2332 args.what.type = NF3SOCK;
2333 args.what.mknoddata3_u.sock_attributes.mode.set_it = 1;
2334 args.what.mknoddata3_u.sock_attributes.mode.set_mode3_u.mode = cb_data->mode & (S_IRUSR|S_IWUSR|S_IXUSR|S_IRGRP|S_IWGRP|S_IXGRP|S_IROTH|S_IWOTH|S_IXOTH);
2335 break;
2336 case S_IFIFO:
2337 args.what.type = NF3FIFO;
2338 args.what.mknoddata3_u.pipe_attributes.mode.set_it = 1;
2339 args.what.mknoddata3_u.pipe_attributes.mode.set_mode3_u.mode = cb_data->mode & (S_IRUSR|S_IWUSR|S_IXUSR|S_IRGRP|S_IWGRP|S_IXGRP|S_IROTH|S_IWOTH|S_IXOTH);
2340 break;
2341 default:
2342 rpc_set_error(nfs->rpc, "Invalid file type for NFS3/MKNOD call");
2343 data->cb(-EINVAL, nfs, rpc_get_error(nfs->rpc), data->private_data);
2344 free_nfs_cb_data(data);
2345 return -1;
2346 }
2347
2348 if (rpc_nfs3_mknod_async(nfs->rpc, nfs_mknod_cb, &args, data) != 0) {
2349 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2350 free_nfs_cb_data(data);
2351 return -1;
2352 }
2353 return 0;
2354 }
2355
2356 int nfs_mknod_async(struct nfs_context *nfs, const char *path, int mode, int dev, nfs_cb cb, void *private_data)
2357 {
2358 char *ptr;
2359 struct mknod_cb_data *cb_data;
2360
2361 cb_data = malloc(sizeof(struct mknod_cb_data));
2362 if (cb_data == NULL) {
2363 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate mode buffer for cb data");
2364 return -1;
2365 }
2366
2367 cb_data->path = strdup(path);
2368 if (cb_data->path == NULL) {
2369 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate mode buffer for path");
2370 free(cb_data);
2371 return -1;
2372 }
2373
2374 ptr = strrchr(cb_data->path, '/');
2375 if (ptr == NULL) {
2376 rpc_set_error(nfs->rpc, "Invalid path %s", path);
2377 return -1;
2378 }
2379 *ptr = 0;
2380
2381 cb_data->mode = mode;
2382 cb_data->major = major(dev);
2383 cb_data->minor = minor(dev);
2384
2385 /* data->path now points to the parent directory, and beyond the nul terminateor is the new directory to create */
2386 if (nfs_lookuppath_async(nfs, cb_data->path, cb, private_data, nfs_mknod_continue_internal, cb_data, free_mknod_cb_data, 0) != 0) {
2387 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
2388 free_mknod_cb_data(cb_data);
2389 return -1;
2390 }
2391
2392 return 0;
2393 }
2394
2395 /*
2396 * Async opendir()
2397 */
2398
2399 /* ReadDirPlus Emulation Callback data */
2400 struct rdpe_cb_data {
2401 int getattrcount;
2402 int status;
2403 struct nfs_cb_data *data;
2404 };
2405
2406 /* ReadDirPlus Emulation LOOKUP Callback data */
2407 struct rdpe_lookup_cb_data {
2408 struct rdpe_cb_data *rdpe_cb_data;
2409 struct nfsdirent *nfsdirent;
2410 };
2411
2412 /* Workaround for servers lacking READDIRPLUS, use READDIR instead and a GETATTR-loop */
2413 static void nfs_opendir3_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
2414 {
2415 LOOKUP3res *res = command_data;
2416 struct rdpe_lookup_cb_data *rdpe_lookup_cb_data = private_data;
2417 struct rdpe_cb_data *rdpe_cb_data = rdpe_lookup_cb_data->rdpe_cb_data;
2418 struct nfs_cb_data *data = rdpe_cb_data->data;
2419 struct nfsdir *nfsdir = data->continue_data;
2420 struct nfs_context *nfs = data->nfs;
2421 struct nfsdirent *nfsdirent = rdpe_lookup_cb_data->nfsdirent;
2422
2423 assert(rpc->magic == RPC_CONTEXT_MAGIC);
2424
2425 free(rdpe_lookup_cb_data);
2426
2427 rdpe_cb_data->getattrcount--;
2428
2429 if (status == RPC_STATUS_ERROR) {
2430 rdpe_cb_data->status = RPC_STATUS_ERROR;
2431 }
2432 if (status == RPC_STATUS_CANCEL) {
2433 rdpe_cb_data->status = RPC_STATUS_CANCEL;
2434 }
2435 if (status == RPC_STATUS_SUCCESS && res->status != NFS3_OK) {
2436 rdpe_cb_data->status = RPC_STATUS_ERROR;
2437 }
2438 if (status == RPC_STATUS_SUCCESS && res->status == NFS3_OK) {
2439 if (res->LOOKUP3res_u.resok.obj_attributes.attributes_follow) {
2440 fattr3 *attributes = &res->LOOKUP3res_u.resok.obj_attributes.post_op_attr_u.attributes;
2441
2442 nfsdirent->type = attributes->type;
2443 nfsdirent->mode = attributes->mode;
2444 nfsdirent->size = attributes->size;
2445
2446 nfsdirent->atime.tv_sec = attributes->atime.seconds;
2447 nfsdirent->atime.tv_usec = attributes->atime.nseconds/1000;
2448 nfsdirent->mtime.tv_sec = attributes->mtime.seconds;
2449 nfsdirent->mtime.tv_usec = attributes->mtime.nseconds/1000;
2450 nfsdirent->ctime.tv_sec = attributes->ctime.seconds;
2451 nfsdirent->ctime.tv_usec = attributes->ctime.nseconds/1000;
2452 }
2453 }
2454
2455 if (rdpe_cb_data->getattrcount == 0) {
2456 if (rdpe_cb_data->status != RPC_STATUS_SUCCESS) {
2457 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2458 nfs_free_nfsdir(nfsdir);
2459 } else {
2460 data->cb(0, nfs, nfsdir, data->private_data);
2461 }
2462 free(rdpe_cb_data);
2463
2464 data->continue_data = NULL;
2465 free_nfs_cb_data(data);
2466 }
2467 }
2468
2469 static void nfs_opendir2_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
2470 {
2471 READDIR3res *res = command_data;
2472 struct nfs_cb_data *data = private_data;
2473 struct nfs_context *nfs = data->nfs;
2474 struct nfsdir *nfsdir = data->continue_data;
2475 struct nfsdirent *nfsdirent;
2476 struct entry3 *entry;
2477 uint64_t cookie;
2478 struct rdpe_cb_data *rdpe_cb_data;
2479
2480 assert(rpc->magic == RPC_CONTEXT_MAGIC);
2481
2482 if (status == RPC_STATUS_ERROR) {
2483 data->cb(-EFAULT, nfs, command_data, data->private_data);
2484 nfs_free_nfsdir(nfsdir);
2485 data->continue_data = NULL;
2486 free_nfs_cb_data(data);
2487 return;
2488 }
2489
2490 if (status == RPC_STATUS_CANCEL) {
2491 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
2492 nfs_free_nfsdir(nfsdir);
2493 data->continue_data = NULL;
2494 free_nfs_cb_data(data);
2495 return;
2496 }
2497
2498 if (res->status != NFS3_OK) {
2499 rpc_set_error(nfs->rpc, "NFS: READDIR of %s failed with %s(%d)", data->saved_path, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
2500 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
2501 nfs_free_nfsdir(nfsdir);
2502 data->continue_data = NULL;
2503 free_nfs_cb_data(data);
2504 return;
2505 }
2506
2507 entry =res->READDIR3res_u.resok.reply.entries;
2508 while (entry != NULL) {
2509 nfsdirent = malloc(sizeof(struct nfsdirent));
2510 if (nfsdirent == NULL) {
2511 data->cb(-ENOMEM, nfs, "Failed to allocate dirent", data->private_data);
2512 nfs_free_nfsdir(nfsdir);
2513 data->continue_data = NULL;
2514 free_nfs_cb_data(data);
2515 return;
2516 }
2517 memset(nfsdirent, 0, sizeof(struct nfsdirent));
2518 nfsdirent->name = strdup(entry->name);
2519 if (nfsdirent->name == NULL) {
2520 data->cb(-ENOMEM, nfs, "Failed to allocate dirent->name", data->private_data);
2521 nfs_free_nfsdir(nfsdir);
2522 data->continue_data = NULL;
2523 free_nfs_cb_data(data);
2524 return;
2525 }
2526 nfsdirent->inode = entry->fileid;
2527
2528 nfsdirent->next = nfsdir->entries;
2529 nfsdir->entries = nfsdirent;
2530
2531 cookie = entry->cookie;
2532 entry = entry->nextentry;
2533 }
2534
2535 if (res->READDIR3res_u.resok.reply.eof == 0) {
2536 if (rpc_nfs_readdir_async(nfs->rpc, nfs_opendir2_cb, &data->fh, cookie, res->READDIR3res_u.resok.cookieverf, 8192, data) != 0) {
2537 rpc_set_error(nfs->rpc, "RPC error: Failed to send READDIR call for %s", data->path);
2538 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2539 nfs_free_nfsdir(nfsdir);
2540 data->continue_data = NULL;
2541 free_nfs_cb_data(data);
2542 return;
2543 }
2544 return;
2545 }
2546
2547 /* steal the dirhandle */
2548 nfsdir->current = nfsdir->entries;
2549
2550 rdpe_cb_data = malloc(sizeof(struct rdpe_cb_data));
2551 rdpe_cb_data->getattrcount = 0;
2552 rdpe_cb_data->status = RPC_STATUS_SUCCESS;
2553 rdpe_cb_data->data = data;
2554 for (nfsdirent = nfsdir->entries; nfsdirent; nfsdirent = nfsdirent->next) {
2555 struct rdpe_lookup_cb_data *rdpe_lookup_cb_data;
2556 LOOKUP3args args;
2557
2558 rdpe_lookup_cb_data = malloc(sizeof(struct rdpe_lookup_cb_data));
2559 rdpe_lookup_cb_data->rdpe_cb_data = rdpe_cb_data;
2560 rdpe_lookup_cb_data->nfsdirent = nfsdirent;
2561
2562 memset(&args, 0, sizeof(LOOKUP3args));
2563 args.what.dir.data.data_len = data->fh.data.data_len;
2564 args.what.dir.data.data_val = data->fh.data.data_val;
2565 args.what.name = nfsdirent->name;
2566
2567 if (rpc_nfs3_lookup_async(nfs->rpc, nfs_opendir3_cb, &args, rdpe_lookup_cb_data) != 0) {
2568 rpc_set_error(nfs->rpc, "RPC error: Failed to send READDIR LOOKUP call");
2569
2570 /* if we have already commands in flight, we cant just stop, we have to wait for the
2571 * commands in flight to complete
2572 */
2573 if (rdpe_cb_data->getattrcount > 0) {
2574 rdpe_cb_data->status = RPC_STATUS_ERROR;
2575 free(rdpe_lookup_cb_data);
2576 return;
2577 }
2578
2579 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2580 nfs_free_nfsdir(nfsdir);
2581 data->continue_data = NULL;
2582 free_nfs_cb_data(data);
2583 free(rdpe_lookup_cb_data);
2584 free(rdpe_cb_data);
2585 return;
2586 }
2587 rdpe_cb_data->getattrcount++;
2588 }
2589 }
2590
2591
2592 static void nfs_opendir_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
2593 {
2594 READDIRPLUS3res *res = command_data;
2595 struct nfs_cb_data *data = private_data;
2596 struct nfs_context *nfs = data->nfs;
2597 struct nfsdir *nfsdir = data->continue_data;
2598 struct entryplus3 *entry;
2599 uint64_t cookie;
2600
2601 assert(rpc->magic == RPC_CONTEXT_MAGIC);
2602
2603 if (status == RPC_STATUS_ERROR || (status == RPC_STATUS_SUCCESS && res->status == NFS3ERR_NOTSUPP) ){
2604 cookieverf3 cv;
2605
2606 if (rpc_nfs_readdir_async(nfs->rpc, nfs_opendir2_cb, &data->fh, 0, (char *)&cv, 8192, data) != 0) {
2607 rpc_set_error(nfs->rpc, "RPC error: Failed to send READDIR call for %s", data->path);
2608 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2609 nfs_free_nfsdir(nfsdir);
2610 data->continue_data = NULL;
2611 free_nfs_cb_data(data);
2612 return;
2613 }
2614 return;
2615 }
2616
2617 if (status == RPC_STATUS_CANCEL) {
2618 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
2619 nfs_free_nfsdir(nfsdir);
2620 data->continue_data = NULL;
2621 free_nfs_cb_data(data);
2622 return;
2623 }
2624
2625 if (res->status != NFS3_OK) {
2626 rpc_set_error(nfs->rpc, "NFS: READDIRPLUS of %s failed with %s(%d)", data->saved_path, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
2627 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
2628 nfs_free_nfsdir(nfsdir);
2629 data->continue_data = NULL;
2630 free_nfs_cb_data(data);
2631 return;
2632 }
2633
2634 entry =res->READDIRPLUS3res_u.resok.reply.entries;
2635 while (entry != NULL) {
2636 struct nfsdirent *nfsdirent;
2637
2638 nfsdirent = malloc(sizeof(struct nfsdirent));
2639 if (nfsdirent == NULL) {
2640 data->cb(-ENOMEM, nfs, "Failed to allocate dirent", data->private_data);
2641 nfs_free_nfsdir(nfsdir);
2642 data->continue_data = NULL;
2643 free_nfs_cb_data(data);
2644 return;
2645 }
2646 memset(nfsdirent, 0, sizeof(struct nfsdirent));
2647 nfsdirent->name = strdup(entry->name);
2648 if (nfsdirent->name == NULL) {
2649 data->cb(-ENOMEM, nfs, "Failed to allocate dirent->name", data->private_data);
2650 nfs_free_nfsdir(nfsdir);
2651 data->continue_data = NULL;
2652 free_nfs_cb_data(data);
2653 return;
2654 }
2655 nfsdirent->inode = entry->fileid;
2656 if (entry->name_attributes.attributes_follow) {
2657 nfsdirent->type = entry->name_attributes.post_op_attr_u.attributes.type;
2658 nfsdirent->mode = entry->name_attributes.post_op_attr_u.attributes.mode;
2659 nfsdirent->size = entry->name_attributes.post_op_attr_u.attributes.size;
2660
2661 nfsdirent->atime.tv_sec = entry->name_attributes.post_op_attr_u.attributes.atime.seconds;
2662 nfsdirent->atime.tv_usec = entry->name_attributes.post_op_attr_u.attributes.atime.nseconds/1000;
2663 nfsdirent->mtime.tv_sec = entry->name_attributes.post_op_attr_u.attributes.mtime.seconds;
2664 nfsdirent->mtime.tv_usec = entry->name_attributes.post_op_attr_u.attributes.mtime.nseconds/1000;
2665 nfsdirent->ctime.tv_sec = entry->name_attributes.post_op_attr_u.attributes.ctime.seconds;
2666 nfsdirent->ctime.tv_usec = entry->name_attributes.post_op_attr_u.attributes.ctime.nseconds/1000;
2667 }
2668
2669 nfsdirent->next = nfsdir->entries;
2670 nfsdir->entries = nfsdirent;
2671
2672 cookie = entry->cookie;
2673 entry = entry->nextentry;
2674 }
2675
2676 if (res->READDIRPLUS3res_u.resok.reply.eof == 0) {
2677 if (rpc_nfs_readdirplus_async(nfs->rpc, nfs_opendir_cb, &data->fh, cookie, res->READDIRPLUS3res_u.resok.cookieverf, 8192, data) != 0) {
2678 rpc_set_error(nfs->rpc, "RPC error: Failed to send READDIRPLUS call for %s", data->path);
2679 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2680 nfs_free_nfsdir(nfsdir);
2681 data->continue_data = NULL;
2682 free_nfs_cb_data(data);
2683 return;
2684 }
2685 return;
2686 }
2687
2688 /* steal the dirhandle */
2689 data->continue_data = NULL;
2690 nfsdir->current = nfsdir->entries;
2691
2692 data->cb(0, nfs, nfsdir, data->private_data);
2693 free_nfs_cb_data(data);
2694 }
2695
2696 static int nfs_opendir_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
2697 {
2698 cookieverf3 cv;
2699
2700 memset(cv, 0, sizeof(cookieverf3));
2701 if (rpc_nfs_readdirplus_async(nfs->rpc, nfs_opendir_cb, &data->fh, 0, (char *)&cv, 8192, data) != 0) {
2702 rpc_set_error(nfs->rpc, "RPC error: Failed to send READDIRPLUS call for %s", data->path);
2703 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2704 free_nfs_cb_data(data);
2705 return -1;
2706 }
2707 return 0;
2708 }
2709
2710 int nfs_opendir_async(struct nfs_context *nfs, const char *path, nfs_cb cb, void *private_data)
2711 {
2712 struct nfsdir *nfsdir;
2713
2714 nfsdir = malloc(sizeof(struct nfsdir));
2715 if (nfsdir == NULL) {
2716 rpc_set_error(nfs->rpc, "failed to allocate buffer for nfsdir");
2717 return -1;
2718 }
2719 memset(nfsdir, 0, sizeof(struct nfsdir));
2720
2721 if (nfs_lookuppath_async(nfs, path, cb, private_data, nfs_opendir_continue_internal, nfsdir, free, 0) != 0) {
2722 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
2723 return -1;
2724 }
2725
2726 return 0;
2727 }
2728
2729
2730 struct nfsdirent *nfs_readdir(struct nfs_context *nfs _U_, struct nfsdir *nfsdir)
2731 {
2732 struct nfsdirent *nfsdirent = nfsdir->current;
2733
2734 if (nfsdir->current != NULL) {
2735 nfsdir->current = nfsdir->current->next;
2736 }
2737 return nfsdirent;
2738 }
2739
2740
2741 void nfs_closedir(struct nfs_context *nfs _U_, struct nfsdir *nfsdir)
2742 {
2743 nfs_free_nfsdir(nfsdir);
2744 }
2745
2746
2747
2748
2749
2750
2751
2752 /*
2753 * Async lseek()
2754 */
2755 struct lseek_cb_data {
2756 struct nfs_context *nfs;
2757 struct nfsfh *nfsfh;
2758 uint64_t offset;
2759 nfs_cb cb;
2760 void *private_data;
2761 };
2762
2763 static void nfs_lseek_1_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
2764 {
2765 GETATTR3res *res;
2766 struct lseek_cb_data *data = private_data;
2767 struct nfs_context *nfs = data->nfs;
2768
2769 assert(rpc->magic == RPC_CONTEXT_MAGIC);
2770
2771 if (status == RPC_STATUS_ERROR) {
2772 data->cb(-EFAULT, nfs, command_data, data->private_data);
2773 free(data);
2774 return;
2775 }
2776 if (status == RPC_STATUS_CANCEL) {
2777 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
2778 free(data);
2779 return;
2780 }
2781
2782 res = command_data;
2783 if (res->status != NFS3_OK) {
2784 rpc_set_error(nfs->rpc, "NFS: GETATTR failed with %s(%d)", nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
2785 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
2786 free(data);
2787 return;
2788 }
2789
2790 data->nfsfh->offset = data->offset + res->GETATTR3res_u.resok.obj_attributes.size;
2791 data->cb(0, nfs, &data->nfsfh->offset, data->private_data);
2792 free(data);
2793 }
2794
2795 int nfs_lseek_async(struct nfs_context *nfs, struct nfsfh *nfsfh, uint64_t offset, int whence, nfs_cb cb, void *private_data)
2796 {
2797 struct lseek_cb_data *data;
2798 struct GETATTR3args args;
2799
2800 if (whence == SEEK_SET) {
2801 nfsfh->offset = offset;
2802 cb(0, nfs, &nfsfh->offset, private_data);
2803 return 0;
2804 }
2805 if (whence == SEEK_CUR) {
2806 nfsfh->offset += offset;
2807 cb(0, nfs, &nfsfh->offset, private_data);
2808 return 0;
2809 }
2810
2811 data = malloc(sizeof(struct lseek_cb_data));
2812 if (data == NULL) {
2813 rpc_set_error(nfs->rpc, "Out Of Memory: Failed to malloc lseek cb data");
2814 return -1;
2815 }
2816
2817 data->nfs = nfs;
2818 data->nfsfh = nfsfh;
2819 data->offset = offset;
2820 data->cb = cb;
2821 data->private_data = private_data;
2822
2823 memset(&args, 0, sizeof(GETATTR3args));
2824 args.object = nfsfh->fh;
2825
2826 if (rpc_nfs3_getattr_async(nfs->rpc, nfs_lseek_1_cb, &args, data) != 0) {
2827 rpc_set_error(nfs->rpc, "RPC error: Failed to send LSEEK GETATTR call");
2828 free(data);
2829 return -1;
2830 }
2831 return 0;
2832 }
2833
2834
2835
2836
2837 /*
2838 * Async statvfs()
2839 */
2840 static void nfs_statvfs_1_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
2841 {
2842 FSSTAT3res *res;
2843 struct nfs_cb_data *data = private_data;
2844 struct nfs_context *nfs = data->nfs;
2845 struct statvfs svfs;
2846
2847 assert(rpc->magic == RPC_CONTEXT_MAGIC);
2848
2849 if (status == RPC_STATUS_ERROR) {
2850 data->cb(-EFAULT, nfs, command_data, data->private_data);
2851 free_nfs_cb_data(data);
2852 return;
2853 }
2854 if (status == RPC_STATUS_CANCEL) {
2855 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
2856 free_nfs_cb_data(data);
2857 return;
2858 }
2859
2860 res = command_data;
2861 if (res->status != NFS3_OK) {
2862 rpc_set_error(nfs->rpc, "NFS: FSSTAT of %s failed with %s(%d)", data->saved_path, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
2863 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
2864 free_nfs_cb_data(data);
2865 return;
2866 }
2867
2868 svfs.f_bsize = 4096;
2869 svfs.f_frsize = 4096;
2870 svfs.f_blocks = res->FSSTAT3res_u.resok.tbytes/4096;
2871 svfs.f_bfree = res->FSSTAT3res_u.resok.fbytes/4096;
2872 svfs.f_bavail = res->FSSTAT3res_u.resok.abytes/4096;
2873 svfs.f_files = res->FSSTAT3res_u.resok.tfiles;
2874 svfs.f_ffree = res->FSSTAT3res_u.resok.ffiles;
2875 #if !defined(ANDROID)
2876 svfs.f_favail = res->FSSTAT3res_u.resok.afiles;
2877 svfs.f_fsid = 0;
2878 svfs.f_flag = 0;
2879 svfs.f_namemax = 256;
2880 #endif
2881
2882 data->cb(0, nfs, &svfs, data->private_data);
2883 free_nfs_cb_data(data);
2884 }
2885
2886 static int nfs_statvfs_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
2887 {
2888 FSSTAT3args args;
2889
2890 args.fsroot = data->fh;
2891 if (rpc_nfs3_fsstat_async(nfs->rpc, nfs_statvfs_1_cb, &args, data) != 0) {
2892 rpc_set_error(nfs->rpc, "RPC error: Failed to send FSSTAT call for %s", data->path);
2893 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2894 free_nfs_cb_data(data);
2895 return -1;
2896 }
2897 return 0;
2898 }
2899
2900 int nfs_statvfs_async(struct nfs_context *nfs, const char *path, nfs_cb cb, void *private_data)
2901 {
2902 if (nfs_lookuppath_async(nfs, path, cb, private_data, nfs_statvfs_continue_internal, NULL, NULL, 0) != 0) {
2903 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
2904 return -1;
2905 }
2906
2907 return 0;
2908 }
2909
2910
2911
2912
2913 /*
2914 * Async readlink()
2915 */
2916 static void nfs_readlink_1_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
2917 {
2918 READLINK3res *res;
2919 struct nfs_cb_data *data = private_data;
2920 struct nfs_context *nfs = data->nfs;
2921
2922 assert(rpc->magic == RPC_CONTEXT_MAGIC);
2923
2924 if (status == RPC_STATUS_ERROR) {
2925 data->cb(-EFAULT, nfs, command_data, data->private_data);
2926 free_nfs_cb_data(data);
2927 return;
2928 }
2929 if (status == RPC_STATUS_CANCEL) {
2930 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
2931 free_nfs_cb_data(data);
2932 return;
2933 }
2934
2935 res = command_data;
2936 if (res->status != NFS3_OK) {
2937 rpc_set_error(nfs->rpc, "NFS: READLINK of %s failed with %s(%d)", data->saved_path, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
2938 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
2939 free_nfs_cb_data(data);
2940 return;
2941 }
2942
2943
2944 data->cb(0, nfs, res->READLINK3res_u.resok.data, data->private_data);
2945 free_nfs_cb_data(data);
2946 }
2947
2948 static int nfs_readlink_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
2949 {
2950 READLINK3args args;
2951
2952 args.symlink.data.data_len = data->fh.data.data_len;
2953 args.symlink.data.data_val = data->fh.data.data_val;
2954
2955 if (rpc_nfs_readlink_async(nfs->rpc, nfs_readlink_1_cb, &args, data) != 0) {
2956 rpc_set_error(nfs->rpc, "RPC error: Failed to send READLINK call for %s", data->path);
2957 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
2958 free_nfs_cb_data(data);
2959 return -1;
2960 }
2961 return 0;
2962 }
2963
2964 int nfs_readlink_async(struct nfs_context *nfs, const char *path, nfs_cb cb, void *private_data)
2965 {
2966 if (nfs_lookuppath_async(nfs, path, cb, private_data, nfs_readlink_continue_internal, NULL, NULL, 0) != 0) {
2967 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
2968 return -1;
2969 }
2970
2971 return 0;
2972 }
2973
2974
2975
2976
2977 /*
2978 * Async chmod()
2979 */
2980 static void nfs_chmod_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
2981 {
2982 struct nfs_cb_data *data = private_data;
2983 struct nfs_context *nfs = data->nfs;
2984 SETATTR3res *res;
2985
2986 assert(rpc->magic == RPC_CONTEXT_MAGIC);
2987
2988 if (status == RPC_STATUS_ERROR) {
2989 data->cb(-EFAULT, nfs, command_data, data->private_data);
2990 free_nfs_cb_data(data);
2991 return;
2992 }
2993 if (status == RPC_STATUS_CANCEL) {
2994 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
2995 free_nfs_cb_data(data);
2996 return;
2997 }
2998
2999 res = command_data;
3000 if (res->status != NFS3_OK) {
3001 rpc_set_error(nfs->rpc, "NFS: SETATTR failed with %s(%d)", nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
3002 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
3003 free_nfs_cb_data(data);
3004 return;
3005 }
3006
3007 data->cb(0, nfs, NULL, data->private_data);
3008 free_nfs_cb_data(data);
3009 }
3010
3011 static int nfs_chmod_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
3012 {
3013 SETATTR3args args;
3014
3015 memset(&args, 0, sizeof(SETATTR3args));
3016 args.object.data.data_len = data->fh.data.data_len;
3017 args.object.data.data_val = data->fh.data.data_val;
3018 args.new_attributes.mode.set_it = 1;
3019 args.new_attributes.mode.set_mode3_u.mode = data->continue_int;
3020
3021 if (rpc_nfs3_setattr_async(nfs->rpc, nfs_chmod_cb, &args, data) != 0) {
3022 rpc_set_error(nfs->rpc, "RPC error: Failed to send SETATTR call for %s", data->path);
3023 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
3024 free_nfs_cb_data(data);
3025 return -1;
3026 }
3027 return 0;
3028 }
3029
3030
3031 int nfs_chmod_async(struct nfs_context *nfs, const char *path, int mode, nfs_cb cb, void *private_data)
3032 {
3033 if (nfs_lookuppath_async(nfs, path, cb, private_data, nfs_chmod_continue_internal, NULL, NULL, mode) != 0) {
3034 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
3035 return -1;
3036 }
3037
3038 return 0;
3039 }
3040
3041 /*
3042 * Async fchmod()
3043 */
3044 int nfs_fchmod_async(struct nfs_context *nfs, struct nfsfh *nfsfh, int mode, nfs_cb cb, void *private_data)
3045 {
3046 struct nfs_cb_data *data;
3047
3048 data = malloc(sizeof(struct nfs_cb_data));
3049 if (data == NULL) {
3050 rpc_set_error(nfs->rpc, "out of memory. failed to allocate memory for nfs mount data");
3051 return -1;
3052 }
3053 memset(data, 0, sizeof(struct nfs_cb_data));
3054 data->nfs = nfs;
3055 data->cb = cb;
3056 data->private_data = private_data;
3057 data->continue_int = mode;
3058 data->fh.data.data_len = nfsfh->fh.data.data_len;
3059 data->fh.data.data_val = malloc(data->fh.data.data_len);
3060 if (data->fh.data.data_val == NULL) {
3061 rpc_set_error(nfs->rpc, "Out of memory: Failed to allocate fh");
3062 free_nfs_cb_data(data);
3063 return -1;
3064 }
3065 memcpy(data->fh.data.data_val, nfsfh->fh.data.data_val, data->fh.data.data_len);
3066
3067 if (nfs_chmod_continue_internal(nfs, data) != 0) {
3068 free_nfs_cb_data(data);
3069 return -1;
3070 }
3071
3072 return 0;
3073 }
3074
3075
3076
3077 /*
3078 * Async chown()
3079 */
3080 static void nfs_chown_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
3081 {
3082 struct nfs_cb_data *data = private_data;
3083 struct nfs_context *nfs = data->nfs;
3084 SETATTR3res *res;
3085
3086 assert(rpc->magic == RPC_CONTEXT_MAGIC);
3087
3088 if (status == RPC_STATUS_ERROR) {
3089 data->cb(-EFAULT, nfs, command_data, data->private_data);
3090 free_nfs_cb_data(data);
3091 return;
3092 }
3093 if (status == RPC_STATUS_CANCEL) {
3094 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
3095 free_nfs_cb_data(data);
3096 return;
3097 }
3098
3099 res = command_data;
3100 if (res->status != NFS3_OK) {
3101 rpc_set_error(nfs->rpc, "NFS: SETATTR failed with %s(%d)", nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
3102 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
3103 free_nfs_cb_data(data);
3104 return;
3105 }
3106
3107 data->cb(0, nfs, NULL, data->private_data);
3108 free_nfs_cb_data(data);
3109 }
3110
3111 struct nfs_chown_data {
3112 uid_t uid;
3113 gid_t gid;
3114 };
3115
3116 static int nfs_chown_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
3117 {
3118 SETATTR3args args;
3119 struct nfs_chown_data *chown_data = data->continue_data;
3120
3121 memset(&args, 0, sizeof(SETATTR3args));
3122 args.object.data.data_len = data->fh.data.data_len;
3123 args.object.data.data_val = data->fh.data.data_val;
3124 if (chown_data->uid != (uid_t)-1) {
3125 args.new_attributes.uid.set_it = 1;
3126 args.new_attributes.uid.set_uid3_u.uid = chown_data->uid;
3127 }
3128 if (chown_data->gid != (gid_t)-1) {
3129 args.new_attributes.gid.set_it = 1;
3130 args.new_attributes.gid.set_gid3_u.gid = chown_data->gid;
3131 }
3132
3133 if (rpc_nfs3_setattr_async(nfs->rpc, nfs_chown_cb, &args, data) != 0) {
3134 rpc_set_error(nfs->rpc, "RPC error: Failed to send SETATTR call for %s", data->path);
3135 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
3136 free_nfs_cb_data(data);
3137 return -1;
3138 }
3139 return 0;
3140 }
3141
3142
3143 int nfs_chown_async(struct nfs_context *nfs, const char *path, int uid, int gid, nfs_cb cb, void *private_data)
3144 {
3145 struct nfs_chown_data *chown_data;
3146
3147 chown_data = malloc(sizeof(struct nfs_chown_data));
3148 if (chown_data == NULL) {
3149 rpc_set_error(nfs->rpc, "Failed to allocate memory for chown data structure");
3150 return -1;
3151 }
3152
3153 chown_data->uid = uid;
3154 chown_data->gid = gid;
3155
3156 if (nfs_lookuppath_async(nfs, path, cb, private_data, nfs_chown_continue_internal, chown_data, free, 0) != 0) {
3157 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
3158 return -1;
3159 }
3160
3161 return 0;
3162 }
3163
3164
3165 /*
3166 * Async fchown()
3167 */
3168 int nfs_fchown_async(struct nfs_context *nfs, struct nfsfh *nfsfh, int uid, int gid, nfs_cb cb, void *private_data)
3169 {
3170 struct nfs_cb_data *data;
3171 struct nfs_chown_data *chown_data;
3172
3173 chown_data = malloc(sizeof(struct nfs_chown_data));
3174 if (chown_data == NULL) {
3175 rpc_set_error(nfs->rpc, "Failed to allocate memory for chown data structure");
3176 return -1;
3177 }
3178
3179 chown_data->uid = uid;
3180 chown_data->gid = gid;
3181
3182
3183 data = malloc(sizeof(struct nfs_cb_data));
3184 if (data == NULL) {
3185 rpc_set_error(nfs->rpc, "out of memory. failed to allocate memory for fchown data");
3186 return -1;
3187 }
3188 memset(data, 0, sizeof(struct nfs_cb_data));
3189 data->nfs = nfs;
3190 data->cb = cb;
3191 data->private_data = private_data;
3192 data->continue_data = chown_data;
3193 data->fh.data.data_len = nfsfh->fh.data.data_len;
3194 data->fh.data.data_val = malloc(data->fh.data.data_len);
3195 if (data->fh.data.data_val == NULL) {
3196 rpc_set_error(nfs->rpc, "Out of memory: Failed to allocate fh");
3197 free_nfs_cb_data(data);
3198 return -1;
3199 }
3200 memcpy(data->fh.data.data_val, nfsfh->fh.data.data_val, data->fh.data.data_len);
3201
3202
3203 if (nfs_chown_continue_internal(nfs, data) != 0) {
3204 free_nfs_cb_data(data);
3205 return -1;
3206 }
3207
3208 return 0;
3209 }
3210
3211
3212
3213
3214
3215 /*
3216 * Async utimes()
3217 */
3218 static void nfs_utimes_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
3219 {
3220 struct nfs_cb_data *data = private_data;
3221 struct nfs_context *nfs = data->nfs;
3222 SETATTR3res *res;
3223
3224 assert(rpc->magic == RPC_CONTEXT_MAGIC);
3225
3226 if (status == RPC_STATUS_ERROR) {
3227 data->cb(-EFAULT, nfs, command_data, data->private_data);
3228 free_nfs_cb_data(data);
3229 return;
3230 }
3231 if (status == RPC_STATUS_CANCEL) {
3232 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
3233 free_nfs_cb_data(data);
3234 return;
3235 }
3236
3237 res = command_data;
3238 if (res->status != NFS3_OK) {
3239 rpc_set_error(nfs->rpc, "NFS: SETATTR failed with %s(%d)", nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
3240 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
3241 free_nfs_cb_data(data);
3242 return;
3243 }
3244
3245 data->cb(0, nfs, NULL, data->private_data);
3246 free_nfs_cb_data(data);
3247 }
3248
3249 static int nfs_utimes_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
3250 {
3251 SETATTR3args args;
3252 struct timeval *utimes_data = data->continue_data;
3253
3254 memset(&args, 0, sizeof(SETATTR3args));
3255 args.object.data.data_len = data->fh.data.data_len;
3256 args.object.data.data_val = data->fh.data.data_val;
3257 if (utimes_data != NULL) {
3258 args.new_attributes.atime.set_it = SET_TO_CLIENT_TIME;
3259 args.new_attributes.atime.set_atime_u.atime.seconds = utimes_data[0].tv_sec;
3260 args.new_attributes.atime.set_atime_u.atime.nseconds = utimes_data[0].tv_usec * 1000;
3261 args.new_attributes.mtime.set_it = SET_TO_CLIENT_TIME;
3262 args.new_attributes.mtime.set_mtime_u.mtime.seconds = utimes_data[1].tv_sec;
3263 args.new_attributes.mtime.set_mtime_u.mtime.nseconds = utimes_data[1].tv_usec * 1000;
3264 } else {
3265 args.new_attributes.atime.set_it = SET_TO_SERVER_TIME;
3266 args.new_attributes.mtime.set_it = SET_TO_SERVER_TIME;
3267 }
3268
3269 if (rpc_nfs3_setattr_async(nfs->rpc, nfs_utimes_cb, &args, data) != 0) {
3270 rpc_set_error(nfs->rpc, "RPC error: Failed to send SETATTR call for %s", data->path);
3271 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
3272 free_nfs_cb_data(data);
3273 return -1;
3274 }
3275 return 0;
3276 }
3277
3278
3279 int nfs_utimes_async(struct nfs_context *nfs, const char *path, struct timeval *times, nfs_cb cb, void *private_data)
3280 {
3281 struct timeval *new_times = NULL;
3282
3283 if (times != NULL) {
3284 new_times = malloc(sizeof(struct timeval)*2);
3285 if (new_times == NULL) {
3286 rpc_set_error(nfs->rpc, "Failed to allocate memory for timeval structure");
3287 return -1;
3288 }
3289
3290 memcpy(new_times, times, sizeof(struct timeval)*2);
3291 }
3292
3293 if (nfs_lookuppath_async(nfs, path, cb, private_data, nfs_utimes_continue_internal, new_times, free, 0) != 0) {
3294 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
3295 return -1;
3296 }
3297
3298 return 0;
3299 }
3300
3301 /*
3302 * Async utime()
3303 */
3304 int nfs_utime_async(struct nfs_context *nfs, const char *path, struct utimbuf *times, nfs_cb cb, void *private_data)
3305 {
3306 struct timeval *new_times = NULL;
3307
3308 if (times != NULL) {
3309 new_times = malloc(sizeof(struct timeval)*2);
3310 if (new_times == NULL) {
3311 rpc_set_error(nfs->rpc, "Failed to allocate memory for timeval structure");
3312 return -1;
3313 }
3314
3315 new_times[0].tv_sec = times->actime;
3316 new_times[0].tv_usec = 0;
3317 new_times[1].tv_sec = times->modtime;
3318 new_times[1].tv_usec = 0;
3319 }
3320
3321 if (nfs_lookuppath_async(nfs, path, cb, private_data, nfs_utimes_continue_internal, new_times, free, 0) != 0) {
3322 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
3323 return -1;
3324 }
3325
3326 return 0;
3327 }
3328
3329
3330 /*
3331 * Async access()
3332 */
3333 static void nfs_access_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
3334 {
3335 ACCESS3res *res;
3336 struct nfs_cb_data *data = private_data;
3337 struct nfs_context *nfs = data->nfs;
3338 unsigned int nfsmode = 0;
3339
3340 assert(rpc->magic == RPC_CONTEXT_MAGIC);
3341
3342 if (status == RPC_STATUS_ERROR) {
3343 data->cb(-EFAULT, nfs, command_data, data->private_data);
3344 free_nfs_cb_data(data);
3345 return;
3346 }
3347 if (status == RPC_STATUS_CANCEL) {
3348 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
3349 free_nfs_cb_data(data);
3350 return;
3351 }
3352
3353 res = command_data;
3354 if (res->status != NFS3_OK) {
3355 rpc_set_error(nfs->rpc, "NFS: ACCESS of %s failed with %s(%d)", data->saved_path, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
3356 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
3357 free_nfs_cb_data(data);
3358 return;
3359 }
3360
3361 if (data->continue_int & R_OK) {
3362 nfsmode |= ACCESS3_READ;
3363 }
3364 if (data->continue_int & W_OK) {
3365 nfsmode |= ACCESS3_MODIFY;
3366 }
3367 if (data->continue_int & X_OK) {
3368 nfsmode |= ACCESS3_EXECUTE;
3369 }
3370
3371 if (res->ACCESS3res_u.resok.access != nfsmode) {
3372 rpc_set_error(nfs->rpc, "NFS: ACCESS denied. Required access %c%c%c. Allowed access %c%c%c",
3373 nfsmode&ACCESS3_READ?'r':'-',
3374 nfsmode&ACCESS3_MODIFY?'w':'-',
3375 nfsmode&ACCESS3_EXECUTE?'x':'-',
3376 res->ACCESS3res_u.resok.access&ACCESS3_READ?'r':'-',
3377 res->ACCESS3res_u.resok.access&ACCESS3_MODIFY?'w':'-',
3378 res->ACCESS3res_u.resok.access&ACCESS3_EXECUTE?'x':'-');
3379 data->cb(-EACCES, nfs, rpc_get_error(nfs->rpc), data->private_data);
3380 free_nfs_cb_data(data);
3381 return;
3382 }
3383
3384 data->cb(0, nfs, NULL, data->private_data);
3385 free_nfs_cb_data(data);
3386 }
3387
3388 static int nfs_access_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
3389 {
3390 int nfsmode = 0;
3391 ACCESS3args args;
3392
3393 if (data->continue_int & R_OK) {
3394 nfsmode |= ACCESS3_READ;
3395 }
3396 if (data->continue_int & W_OK) {
3397 nfsmode |= ACCESS3_MODIFY;
3398 }
3399 if (data->continue_int & X_OK) {
3400 nfsmode |= ACCESS3_EXECUTE;
3401 }
3402
3403 memset(&args, 0, sizeof(ACCESS3args));
3404 args.object.data.data_len = data->fh.data.data_len;
3405 args.object.data.data_val = data->fh.data.data_val;
3406 args.access = nfsmode;
3407
3408 if (rpc_nfs3_access_async(nfs->rpc, nfs_access_cb, &args, data) != 0) {
3409 rpc_set_error(nfs->rpc, "RPC error: Failed to send OPEN ACCESS call for %s", data->path);
3410 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
3411 free_nfs_cb_data(data);
3412 return -1;
3413 }
3414 return 0;
3415 }
3416
3417 int nfs_access_async(struct nfs_context *nfs, const char *path, int mode, nfs_cb cb, void *private_data)
3418 {
3419 if (nfs_lookuppath_async(nfs, path, cb, private_data, nfs_access_continue_internal, NULL, NULL, mode) != 0) {
3420 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
3421 return -1;
3422 }
3423
3424 return 0;
3425 }
3426
3427
3428
3429 /*
3430 * Async symlink()
3431 */
3432 struct nfs_symlink_data {
3433 char *oldpath;
3434 char *newpathparent;
3435 char *newpathobject;
3436 };
3437
3438 static void free_nfs_symlink_data(void *mem)
3439 {
3440 struct nfs_symlink_data *data = mem;
3441
3442 if (data->oldpath != NULL) {
3443 free(data->oldpath);
3444 }
3445 if (data->newpathparent != NULL) {
3446 free(data->newpathparent);
3447 }
3448 if (data->newpathobject != NULL) {
3449 free(data->newpathobject);
3450 }
3451 free(data);
3452 }
3453
3454 static void nfs_symlink_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
3455 {
3456 SYMLINK3res *res;
3457 struct nfs_cb_data *data = private_data;
3458 struct nfs_context *nfs = data->nfs;
3459 struct nfs_symlink_data *symlink_data = data->continue_data;
3460
3461 assert(rpc->magic == RPC_CONTEXT_MAGIC);
3462
3463 if (status == RPC_STATUS_ERROR) {
3464 data->cb(-EFAULT, nfs, command_data, data->private_data);
3465 free_nfs_cb_data(data);
3466 return;
3467 }
3468 if (status == RPC_STATUS_CANCEL) {
3469 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
3470 free_nfs_cb_data(data);
3471 return;
3472 }
3473
3474 res = command_data;
3475 if (res->status != NFS3_OK) {
3476 rpc_set_error(nfs->rpc, "NFS: SYMLINK %s/%s -> %s failed with %s(%d)", symlink_data->newpathparent, symlink_data->newpathobject, symlink_data->oldpath, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
3477 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
3478 free_nfs_cb_data(data);
3479 return;
3480 }
3481
3482 data->cb(0, nfs, NULL, data->private_data);
3483 free_nfs_cb_data(data);
3484 }
3485
3486 static int nfs_symlink_continue_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
3487 {
3488 struct nfs_symlink_data *symlink_data = data->continue_data;
3489 SYMLINK3args sa;
3490
3491 memset(&sa, 0, sizeof(SYMLINK3args));
3492 sa.where.dir.data.data_len = data->fh.data.data_len;
3493 sa.where.dir.data.data_val = data->fh.data.data_val;
3494 sa.where.name = symlink_data->newpathobject;
3495 sa.symlink.symlink_attributes.mode.set_it = 1;
3496 sa.symlink.symlink_attributes.mode.set_mode3_u.mode = S_IRUSR|S_IWUSR|S_IXUSR|S_IRGRP|S_IWGRP|S_IXGRP|S_IROTH|S_IWOTH|S_IXOTH;
3497 sa.symlink.symlink_data = symlink_data->oldpath;
3498
3499 if (rpc_nfs_symlink_async(nfs->rpc, nfs_symlink_cb, &sa, data) != 0) {
3500 rpc_set_error(nfs->rpc, "RPC error: Failed to send SYMLINK call for %s", data->path);
3501 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
3502 free_nfs_cb_data(data);
3503 return -1;
3504 }
3505 return 0;
3506 }
3507
3508 int nfs_symlink_async(struct nfs_context *nfs, const char *oldpath, const char *newpath, nfs_cb cb, void *private_data)
3509 {
3510 char *ptr;
3511 struct nfs_symlink_data *symlink_data;
3512
3513 symlink_data = malloc(sizeof(struct nfs_symlink_data));
3514 if (symlink_data == NULL) {
3515 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate buffer for symlink data");
3516 return -1;
3517 }
3518 memset(symlink_data, 0, sizeof(struct nfs_symlink_data));
3519
3520 symlink_data->oldpath = strdup(oldpath);
3521 if (symlink_data->oldpath == NULL) {
3522 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate buffer for oldpath");
3523 free_nfs_symlink_data(symlink_data);
3524 return -1;
3525 }
3526
3527 symlink_data->newpathparent = strdup(newpath);
3528 if (symlink_data->newpathparent == NULL) {
3529 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate mode buffer for new path");
3530 free_nfs_symlink_data(symlink_data);
3531 return -1;
3532 }
3533
3534 ptr = strrchr(symlink_data->newpathparent, '/');
3535 if (ptr == NULL) {
3536 rpc_set_error(nfs->rpc, "Invalid path %s", oldpath);
3537 free_nfs_symlink_data(symlink_data);
3538 return -1;
3539 }
3540 *ptr = 0;
3541 ptr++;
3542
3543 symlink_data->newpathobject = strdup(ptr);
3544 if (symlink_data->newpathobject == NULL) {
3545 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate mode buffer for new path");
3546 free_nfs_symlink_data(symlink_data);
3547 return -1;
3548 }
3549
3550 if (nfs_lookuppath_async(nfs, symlink_data->newpathparent, cb, private_data, nfs_symlink_continue_internal, symlink_data, free_nfs_symlink_data, 0) != 0) {
3551 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
3552 return -1;
3553 }
3554
3555 return 0;
3556 }
3557
3558
3559
3560 /*
3561 * Async rename()
3562 */
3563 struct nfs_rename_data {
3564 char *oldpath;
3565 char *oldobject;
3566 struct nfs_fh3 olddir;
3567 char *newpath;
3568 char *newobject;
3569 struct nfs_fh3 newdir;
3570 };
3571
3572 static void free_nfs_rename_data(void *mem)
3573 {
3574 struct nfs_rename_data *data = mem;
3575
3576 if (data->oldpath != NULL) {
3577 free(data->oldpath);
3578 }
3579 if (data->olddir.data.data_val != NULL) {
3580 free(data->olddir.data.data_val);
3581 }
3582 if (data->newpath != NULL) {
3583 free(data->newpath);
3584 }
3585 if (data->newdir.data.data_val != NULL) {
3586 free(data->newdir.data.data_val);
3587 }
3588 free(data);
3589 }
3590
3591 static void nfs_rename_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
3592 {
3593 RENAME3res *res;
3594 struct nfs_cb_data *data = private_data;
3595 struct nfs_context *nfs = data->nfs;
3596 struct nfs_rename_data *rename_data = data->continue_data;
3597
3598 assert(rpc->magic == RPC_CONTEXT_MAGIC);
3599
3600 if (status == RPC_STATUS_ERROR) {
3601 data->cb(-EFAULT, nfs, command_data, data->private_data);
3602 free_nfs_cb_data(data);
3603 return;
3604 }
3605 if (status == RPC_STATUS_CANCEL) {
3606 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
3607 free_nfs_cb_data(data);
3608 return;
3609 }
3610
3611 res = command_data;
3612 if (res->status != NFS3_OK) {
3613 rpc_set_error(nfs->rpc, "NFS: RENAME %s/%s -> %s/%s failed with %s(%d)", rename_data->oldpath, rename_data->oldobject, rename_data->newpath, rename_data->newobject, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
3614 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
3615 free_nfs_cb_data(data);
3616 return;
3617 }
3618
3619 data->cb(0, nfs, NULL, data->private_data);
3620 free_nfs_cb_data(data);
3621 }
3622
3623 static int nfs_rename_continue_2_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
3624 {
3625 struct nfs_rename_data *rename_data = data->continue_data;
3626 RENAME3args args;
3627
3628 /* steal the filehandle */
3629 rename_data->newdir.data.data_len = data->fh.data.data_len;
3630 rename_data->newdir.data.data_val = data->fh.data.data_val;
3631 data->fh.data.data_val = NULL;
3632
3633 args.from.dir = rename_data->olddir;
3634 args.from.name = rename_data->oldobject;
3635 args.to.dir = rename_data->newdir;
3636 args.to.name = rename_data->newobject;
3637 if (rpc_nfs3_rename_async(nfs->rpc, nfs_rename_cb, &args, data) != 0) {
3638 rpc_set_error(nfs->rpc, "RPC error: Failed to send RENAME call for %s", data->path);
3639 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
3640 free_nfs_cb_data(data);
3641 return -1;
3642 }
3643 return 0;
3644 }
3645
3646
3647 static int nfs_rename_continue_1_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
3648 {
3649 struct nfs_rename_data *rename_data = data->continue_data;
3650
3651 /* steal the filehandle */
3652 rename_data->olddir.data.data_len = data->fh.data.data_len;
3653 rename_data->olddir.data.data_val = data->fh.data.data_val;
3654 data->fh.data.data_val = NULL;
3655
3656 if (nfs_lookuppath_async(nfs, rename_data->newpath, data->cb, data->private_data, nfs_rename_continue_2_internal, rename_data, free_nfs_rename_data, 0) != 0) {
3657 rpc_set_error(nfs->rpc, "RPC error: Failed to send LOOKUP call for %s", rename_data->newpath);
3658 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
3659 free_nfs_cb_data(data);
3660 return -1;
3661 }
3662 data->continue_data = NULL;
3663 free_nfs_cb_data(data);
3664
3665 return 0;
3666 }
3667
3668
3669 int nfs_rename_async(struct nfs_context *nfs, const char *oldpath, const char *newpath, nfs_cb cb, void *private_data)
3670 {
3671 char *ptr;
3672 struct nfs_rename_data *rename_data;
3673
3674 rename_data = malloc(sizeof(struct nfs_rename_data));
3675 if (rename_data == NULL) {
3676 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate buffer for rename data");
3677 return -1;
3678 }
3679 memset(rename_data, 0, sizeof(struct nfs_rename_data));
3680
3681 rename_data->oldpath = strdup(oldpath);
3682 if (rename_data->oldpath == NULL) {
3683 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate buffer for oldpath");
3684 free_nfs_rename_data(rename_data);
3685 return -1;
3686 }
3687 ptr = strrchr(rename_data->oldpath, '/');
3688 if (ptr == NULL) {
3689 rpc_set_error(nfs->rpc, "Invalid path %s", oldpath);
3690 free_nfs_rename_data(rename_data);
3691 return -1;
3692 }
3693 *ptr = 0;
3694 ptr++;
3695 rename_data->oldobject = ptr;
3696
3697
3698 rename_data->newpath = strdup(newpath);
3699 if (rename_data->newpath == NULL) {
3700 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate buffer for newpath");
3701 free_nfs_rename_data(rename_data);
3702 return -1;
3703 }
3704 ptr = strrchr(rename_data->newpath, '/');
3705 if (ptr == NULL) {
3706 rpc_set_error(nfs->rpc, "Invalid path %s", newpath);
3707 free_nfs_rename_data(rename_data);
3708 return -1;
3709 }
3710 *ptr = 0;
3711 ptr++;
3712 rename_data->newobject = ptr;
3713
3714
3715 if (nfs_lookuppath_async(nfs, rename_data->oldpath, cb, private_data, nfs_rename_continue_1_internal, rename_data, free_nfs_rename_data, 0) != 0) {
3716 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
3717 return -1;
3718 }
3719
3720 return 0;
3721 }
3722
3723
3724 /*
3725 * Async link()
3726 */
3727 struct nfs_link_data {
3728 char *oldpath;
3729 struct nfs_fh3 oldfh;
3730 char *newpath;
3731 char *newobject;
3732 struct nfs_fh3 newdir;
3733 };
3734
3735 static void free_nfs_link_data(void *mem)
3736 {
3737 struct nfs_link_data *data = mem;
3738
3739 if (data->oldpath != NULL) {
3740 free(data->oldpath);
3741 }
3742 if (data->oldfh.data.data_val != NULL) {
3743 free(data->oldfh.data.data_val);
3744 }
3745 if (data->newpath != NULL) {
3746 free(data->newpath);
3747 }
3748 if (data->newdir.data.data_val != NULL) {
3749 free(data->newdir.data.data_val);
3750 }
3751 free(data);
3752 }
3753
3754 static void nfs_link_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
3755 {
3756 LINK3res *res;
3757 struct nfs_cb_data *data = private_data;
3758 struct nfs_context *nfs = data->nfs;
3759 struct nfs_link_data *link_data = data->continue_data;
3760
3761 assert(rpc->magic == RPC_CONTEXT_MAGIC);
3762
3763 if (status == RPC_STATUS_ERROR) {
3764 data->cb(-EFAULT, nfs, command_data, data->private_data);
3765 free_nfs_cb_data(data);
3766 return;
3767 }
3768 if (status == RPC_STATUS_CANCEL) {
3769 data->cb(-EINTR, nfs, "Command was cancelled", data->private_data);
3770 free_nfs_cb_data(data);
3771 return;
3772 }
3773
3774 res = command_data;
3775 if (res->status != NFS3_OK) {
3776 rpc_set_error(nfs->rpc, "NFS: LINK %s -> %s/%s failed with %s(%d)", link_data->oldpath, link_data->newpath, link_data->newobject, nfsstat3_to_str(res->status), nfsstat3_to_errno(res->status));
3777 data->cb(nfsstat3_to_errno(res->status), nfs, rpc_get_error(nfs->rpc), data->private_data);
3778 free_nfs_cb_data(data);
3779 return;
3780 }
3781
3782 data->cb(0, nfs, NULL, data->private_data);
3783 free_nfs_cb_data(data);
3784 }
3785
3786 static int nfs_link_continue_2_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
3787 {
3788 struct nfs_link_data *link_data = data->continue_data;
3789
3790 /* steal the filehandle */
3791 link_data->newdir.data.data_len = data->fh.data.data_len;
3792 link_data->newdir.data.data_val = data->fh.data.data_val;
3793 data->fh.data.data_val = NULL;
3794
3795 if (rpc_nfs_link_async(nfs->rpc, nfs_link_cb, &link_data->oldfh, &link_data->newdir, link_data->newobject, data) != 0) {
3796 rpc_set_error(nfs->rpc, "RPC error: Failed to send LINK call for %s", data->path);
3797 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
3798 free_nfs_cb_data(data);
3799 return -1;
3800 }
3801 return 0;
3802 }
3803
3804
3805 static int nfs_link_continue_1_internal(struct nfs_context *nfs, struct nfs_cb_data *data)
3806 {
3807 struct nfs_link_data *link_data = data->continue_data;
3808
3809 /* steal the filehandle */
3810 link_data->oldfh.data.data_len = data->fh.data.data_len;
3811 link_data->oldfh.data.data_val = data->fh.data.data_val;
3812 data->fh.data.data_val = NULL;
3813
3814 if (nfs_lookuppath_async(nfs, link_data->newpath, data->cb, data->private_data, nfs_link_continue_2_internal, link_data, free_nfs_link_data, 0) != 0) {
3815 rpc_set_error(nfs->rpc, "RPC error: Failed to send LOOKUP call for %s", link_data->newpath);
3816 data->cb(-ENOMEM, nfs, rpc_get_error(nfs->rpc), data->private_data);
3817 free_nfs_cb_data(data);
3818 return -1;
3819 }
3820 data->continue_data = NULL;
3821 free_nfs_cb_data(data);
3822
3823 return 0;
3824 }
3825
3826
3827 int nfs_link_async(struct nfs_context *nfs, const char *oldpath, const char *newpath, nfs_cb cb, void *private_data)
3828 {
3829 char *ptr;
3830 struct nfs_link_data *link_data;
3831
3832 link_data = malloc(sizeof(struct nfs_link_data));
3833 if (link_data == NULL) {
3834 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate buffer for link data");
3835 return -1;
3836 }
3837 memset(link_data, 0, sizeof(struct nfs_link_data));
3838
3839 link_data->oldpath = strdup(oldpath);
3840 if (link_data->oldpath == NULL) {
3841 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate buffer for oldpath");
3842 free_nfs_link_data(link_data);
3843 return -1;
3844 }
3845
3846 link_data->newpath = strdup(newpath);
3847 if (link_data->newpath == NULL) {
3848 rpc_set_error(nfs->rpc, "Out of memory, failed to allocate buffer for newpath");
3849 free_nfs_link_data(link_data);
3850 return -1;
3851 }
3852 ptr = strrchr(link_data->newpath, '/');
3853 if (ptr == NULL) {
3854 rpc_set_error(nfs->rpc, "Invalid path %s", newpath);
3855 free_nfs_link_data(link_data);
3856 return -1;
3857 }
3858 *ptr = 0;
3859 ptr++;
3860 link_data->newobject = ptr;
3861
3862
3863 if (nfs_lookuppath_async(nfs, link_data->oldpath, cb, private_data, nfs_link_continue_1_internal, link_data, free_nfs_link_data, 0) != 0) {
3864 rpc_set_error(nfs->rpc, "Out of memory: failed to start parsing the path components");
3865 return -1;
3866 }
3867
3868 return 0;
3869 }
3870
3871
3872 //qqq replace later with lseek()
3873 uint64_t nfs_get_current_offset(struct nfsfh *nfsfh)
3874 {
3875 return nfsfh->offset;
3876 }
3877
3878
3879
3880 /*
3881 * Get the maximum supported READ3 size by the server
3882 */
3883 uint64_t nfs_get_readmax(struct nfs_context *nfs)
3884 {
3885 return nfs->readmax;
3886 }
3887
3888 /*
3889 * Get the maximum supported WRITE3 size by the server
3890 */
3891 uint64_t nfs_get_writemax(struct nfs_context *nfs)
3892 {
3893 return nfs->writemax;
3894 }
3895
3896 void nfs_set_error(struct nfs_context *nfs, char *error_string, ...)
3897 {
3898 va_list ap;
3899 char *str = NULL;
3900
3901 va_start(ap, error_string);
3902 str = malloc(1024);
3903 vsnprintf(str, 1024, error_string, ap);
3904 if (nfs->rpc->error_string != NULL) {
3905 free(nfs->rpc->error_string);
3906 }
3907 nfs->rpc->error_string = str;
3908 va_end(ap);
3909 }
3910
3911
3912
3913 struct mount_cb_data {
3914 rpc_cb cb;
3915 void *private_data;
3916 char *server;
3917 };
3918
3919 static void free_mount_cb_data(struct mount_cb_data *data)
3920 {
3921 if (data->server != NULL) {
3922 free(data->server);
3923 data->server = NULL;
3924 }
3925
3926 free(data);
3927 }
3928
3929 static void mount_export_5_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
3930 {
3931 struct mount_cb_data *data = private_data;
3932
3933 assert(rpc->magic == RPC_CONTEXT_MAGIC);
3934
3935 if (status == RPC_STATUS_ERROR) {
3936 data->cb(rpc, -EFAULT, command_data, data->private_data);
3937 free_mount_cb_data(data);
3938 return;
3939 }
3940 if (status == RPC_STATUS_CANCEL) {
3941 data->cb(rpc, -EINTR, "Command was cancelled", data->private_data);
3942 free_mount_cb_data(data);
3943 return;
3944 }
3945
3946 data->cb(rpc, 0, command_data, data->private_data);
3947 if (rpc_disconnect(rpc, "normal disconnect") != 0) {
3948 rpc_set_error(rpc, "Failed to disconnect\n");
3949 }
3950 free_mount_cb_data(data);
3951 }
3952
3953 static void mount_export_4_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
3954 {
3955 struct mount_cb_data *data = private_data;
3956
3957 assert(rpc->magic == RPC_CONTEXT_MAGIC);
3958
3959 /* Dont want any more callbacks even if the socket is closed */
3960 rpc->connect_cb = NULL;
3961
3962 if (status == RPC_STATUS_ERROR) {
3963 data->cb(rpc, -EFAULT, command_data, data->private_data);
3964 free_mount_cb_data(data);
3965 return;
3966 }
3967 if (status == RPC_STATUS_CANCEL) {
3968 data->cb(rpc, -EINTR, "Command was cancelled", data->private_data);
3969 free_mount_cb_data(data);
3970 return;
3971 }
3972
3973 if (rpc_mount3_export_async(rpc, mount_export_5_cb, data) != 0) {
3974 data->cb(rpc, -ENOMEM, command_data, data->private_data);
3975 free_mount_cb_data(data);
3976 return;
3977 }
3978 }
3979
3980 static void mount_export_3_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
3981 {
3982 struct mount_cb_data *data = private_data;
3983 uint32_t mount_port;
3984
3985 assert(rpc->magic == RPC_CONTEXT_MAGIC);
3986
3987 if (status == RPC_STATUS_ERROR) {
3988 data->cb(rpc, -EFAULT, command_data, data->private_data);
3989 free_mount_cb_data(data);
3990 return;
3991 }
3992 if (status == RPC_STATUS_CANCEL) {
3993 data->cb(rpc, -EINTR, "Command was cancelled", data->private_data);
3994 free_mount_cb_data(data);
3995 return;
3996 }
3997
3998 mount_port = *(uint32_t *)command_data;
3999 if (mount_port == 0) {
4000 rpc_set_error(rpc, "RPC error. Mount program is not available");
4001 data->cb(rpc, -ENOENT, command_data, data->private_data);
4002 free_mount_cb_data(data);
4003 return;
4004 }
4005
4006 rpc_disconnect(rpc, "normal disconnect");
4007 if (rpc_connect_async(rpc, data->server, mount_port, mount_export_4_cb, data) != 0) {
4008 data->cb(rpc, -ENOMEM, command_data, data->private_data);
4009 free_mount_cb_data(data);
4010 return;
4011 }
4012 }
4013
4014 static void mount_export_2_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
4015 {
4016 struct mount_cb_data *data = private_data;
4017
4018 assert(rpc->magic == RPC_CONTEXT_MAGIC);
4019
4020 if (status == RPC_STATUS_ERROR) {
4021 data->cb(rpc, -EFAULT, command_data, data->private_data);
4022 free_mount_cb_data(data);
4023 return;
4024 }
4025 if (status == RPC_STATUS_CANCEL) {
4026 data->cb(rpc, -EINTR, "Command was cancelled", data->private_data);
4027 free_mount_cb_data(data);
4028 return;
4029 }
4030
4031 if (rpc_pmap_getport_async(rpc, MOUNT_PROGRAM, MOUNT_V3, IPPROTO_TCP, mount_export_3_cb, private_data) != 0) {
4032 data->cb(rpc, -ENOMEM, command_data, data->private_data);
4033 free_mount_cb_data(data);
4034 return;
4035 }
4036 }
4037
4038 static void mount_export_1_cb(struct rpc_context *rpc, int status, void *command_data, void *private_data)
4039 {
4040 struct mount_cb_data *data = private_data;
4041
4042 assert(rpc->magic == RPC_CONTEXT_MAGIC);
4043
4044 /* Dont want any more callbacks even if the socket is closed */
4045 rpc->connect_cb = NULL;
4046
4047 if (status == RPC_STATUS_ERROR) {
4048 data->cb(rpc, -EFAULT, command_data, data->private_data);
4049 free_mount_cb_data(data);
4050 return;
4051 }
4052 if (status == RPC_STATUS_CANCEL) {
4053 data->cb(rpc, -EINTR, "Command was cancelled", data->private_data);
4054 free_mount_cb_data(data);
4055 return;
4056 }
4057
4058 if (rpc_pmap_null_async(rpc, mount_export_2_cb, data) != 0) {
4059 data->cb(rpc, -ENOMEM, command_data, data->private_data);
4060 free_mount_cb_data(data);
4061 return;
4062 }
4063 }
4064
4065 int mount_getexports_async(struct rpc_context *rpc, const char *server, rpc_cb cb, void *private_data)
4066 {
4067 struct mount_cb_data *data;
4068
4069 assert(rpc->magic == RPC_CONTEXT_MAGIC);
4070
4071 data = malloc(sizeof(struct mount_cb_data));
4072 if (data == NULL) {
4073 return -1;
4074 }
4075 memset(data, 0, sizeof(struct mount_cb_data));
4076 data->cb = cb;
4077 data->private_data = private_data;
4078 data->server = strdup(server);
4079 if (data->server == NULL) {
4080 free_mount_cb_data(data);
4081 return -1;
4082 }
4083 if (rpc_connect_async(rpc, data->server, 111, mount_export_1_cb, data) != 0) {
4084 free_mount_cb_data(data);
4085 return -1;
4086 }
4087
4088 return 0;
4089 }
4090
4091 struct rpc_context *nfs_get_rpc_context(struct nfs_context *nfs)
4092 {
4093 assert(nfs->rpc->magic == RPC_CONTEXT_MAGIC);
4094 return nfs->rpc;
4095 }
4096
4097 const char *nfs_get_server(struct nfs_context *nfs) {
4098 return nfs->server;
4099 }
4100
4101 const char *nfs_get_export(struct nfs_context *nfs) {
4102 return nfs->export;
4103 }
4104
4105 const struct nfs_fh3 *nfs_get_rootfh(struct nfs_context *nfs) {
4106 return &nfs->rootfh;
4107 }
4108
4109 struct nfs_fh3 *nfs_get_fh(struct nfsfh *nfsfh) {
4110 return &nfsfh->fh;
4111 }