CVE-2021-44141: s3: smbd: Inside check_reduced_name() ensure we return the correct...
[Samba.git] / source3 / smbd / vfs.c
bloba6022902c1dde0ca2762d8efac4c2ffdb0a2e574
1 /*
2 Unix SMB/Netbios implementation.
3 Version 1.9.
4 VFS initialisation and support functions
5 Copyright (C) Tim Potter 1999
6 Copyright (C) Alexander Bokovoy 2002
7 Copyright (C) James Peach 2006
8 Copyright (C) Volker Lendecke 2009
10 This program is free software; you can redistribute it and/or modify
11 it under the terms of the GNU General Public License as published by
12 the Free Software Foundation; either version 3 of the License, or
13 (at your option) any later version.
15 This program is distributed in the hope that it will be useful,
16 but WITHOUT ANY WARRANTY; without even the implied warranty of
17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 GNU General Public License for more details.
20 You should have received a copy of the GNU General Public License
21 along with this program. If not, see <http://www.gnu.org/licenses/>.
23 This work was sponsored by Optifacio Software Services, Inc.
26 #include "includes.h"
27 #include "system/filesys.h"
28 #include "smbd/smbd.h"
29 #include "smbd/globals.h"
30 #include "../lib/util/memcache.h"
31 #include "transfer_file.h"
32 #include "ntioctl.h"
33 #include "lib/util/tevent_unix.h"
34 #include "lib/util/tevent_ntstatus.h"
35 #include "lib/util/sys_rw.h"
37 #undef DBGC_CLASS
38 #define DBGC_CLASS DBGC_VFS
40 static_decl_vfs;
42 struct vfs_fsp_data {
43 struct vfs_fsp_data *next;
44 struct vfs_handle_struct *owner;
45 void (*destroy)(void *p_data);
46 void *_dummy_;
47 /* NOTE: This structure contains four pointers so that we can guarantee
48 * that the end of the structure is always both 4-byte and 8-byte aligned.
52 struct vfs_init_function_entry {
53 char *name;
54 struct vfs_init_function_entry *prev, *next;
55 const struct vfs_fn_pointers *fns;
58 /****************************************************************************
59 maintain the list of available backends
60 ****************************************************************************/
62 static struct vfs_init_function_entry *vfs_find_backend_entry(const char *name)
64 struct vfs_init_function_entry *entry = backends;
66 DEBUG(10, ("vfs_find_backend_entry called for %s\n", name));
68 while(entry) {
69 if (strcmp(entry->name, name)==0) return entry;
70 entry = entry->next;
73 return NULL;
76 NTSTATUS smb_register_vfs(int version, const char *name,
77 const struct vfs_fn_pointers *fns)
79 struct vfs_init_function_entry *entry = backends;
81 if ((version != SMB_VFS_INTERFACE_VERSION)) {
82 DEBUG(0, ("Failed to register vfs module.\n"
83 "The module was compiled against SMB_VFS_INTERFACE_VERSION %d,\n"
84 "current SMB_VFS_INTERFACE_VERSION is %d.\n"
85 "Please recompile against the current Samba Version!\n",
86 version, SMB_VFS_INTERFACE_VERSION));
87 return NT_STATUS_OBJECT_TYPE_MISMATCH;
90 if (!name || !name[0]) {
91 DEBUG(0,("smb_register_vfs() called with NULL pointer or empty name!\n"));
92 return NT_STATUS_INVALID_PARAMETER;
95 if (vfs_find_backend_entry(name)) {
96 DEBUG(0,("VFS module %s already loaded!\n", name));
97 return NT_STATUS_OBJECT_NAME_COLLISION;
100 entry = SMB_XMALLOC_P(struct vfs_init_function_entry);
101 entry->name = smb_xstrdup(name);
102 entry->fns = fns;
104 DLIST_ADD(backends, entry);
105 DEBUG(5, ("Successfully added vfs backend '%s'\n", name));
106 return NT_STATUS_OK;
109 /****************************************************************************
110 initialise default vfs hooks
111 ****************************************************************************/
113 static void vfs_init_default(connection_struct *conn)
115 DEBUG(3, ("Initialising default vfs hooks\n"));
116 vfs_init_custom(conn, DEFAULT_VFS_MODULE_NAME);
119 /****************************************************************************
120 initialise custom vfs hooks
121 ****************************************************************************/
123 bool vfs_init_custom(connection_struct *conn, const char *vfs_object)
125 char *module_path = NULL;
126 char *module_name = NULL;
127 char *module_param = NULL, *p;
128 vfs_handle_struct *handle;
129 const struct vfs_init_function_entry *entry;
131 if (!conn||!vfs_object||!vfs_object[0]) {
132 DEBUG(0, ("vfs_init_custom() called with NULL pointer or "
133 "empty vfs_object!\n"));
134 return False;
137 if(!backends) {
138 static_init_vfs(NULL);
141 DEBUG(3, ("Initialising custom vfs hooks from [%s]\n", vfs_object));
143 module_path = smb_xstrdup(vfs_object);
145 p = strchr_m(module_path, ':');
147 if (p) {
148 *p = 0;
149 module_param = p+1;
150 trim_char(module_param, ' ', ' ');
153 trim_char(module_path, ' ', ' ');
155 module_name = smb_xstrdup(module_path);
157 if ((module_name[0] == '/') &&
158 (strcmp(module_path, DEFAULT_VFS_MODULE_NAME) != 0)) {
161 * Extract the module name from the path. Just use the base
162 * name of the last path component.
165 SAFE_FREE(module_name);
166 module_name = smb_xstrdup(strrchr_m(module_path, '/')+1);
168 p = strchr_m(module_name, '.');
170 if (p != NULL) {
171 *p = '\0';
175 /* First, try to load the module with the new module system */
176 entry = vfs_find_backend_entry(module_name);
177 if (!entry) {
178 NTSTATUS status;
180 DEBUG(5, ("vfs module [%s] not loaded - trying to load...\n",
181 vfs_object));
183 status = smb_load_module("vfs", module_path);
184 if (!NT_STATUS_IS_OK(status)) {
185 DEBUG(0, ("error probing vfs module '%s': %s\n",
186 module_path, nt_errstr(status)));
187 goto fail;
190 entry = vfs_find_backend_entry(module_name);
191 if (!entry) {
192 DEBUG(0,("Can't find a vfs module [%s]\n",vfs_object));
193 goto fail;
197 DEBUGADD(5,("Successfully loaded vfs module [%s] with the new modules system\n", vfs_object));
199 handle = talloc_zero(conn, vfs_handle_struct);
200 if (!handle) {
201 DEBUG(0,("TALLOC_ZERO() failed!\n"));
202 goto fail;
204 handle->conn = conn;
205 handle->fns = entry->fns;
206 if (module_param) {
207 handle->param = talloc_strdup(conn, module_param);
209 DLIST_ADD(conn->vfs_handles, handle);
211 SAFE_FREE(module_path);
212 SAFE_FREE(module_name);
213 return True;
215 fail:
216 SAFE_FREE(module_path);
217 SAFE_FREE(module_name);
218 return False;
221 /*****************************************************************
222 Allow VFS modules to extend files_struct with VFS-specific state.
223 This will be ok for small numbers of extensions, but might need to
224 be refactored if it becomes more widely used.
225 ******************************************************************/
227 #define EXT_DATA_AREA(e) ((uint8_t *)(e) + sizeof(struct vfs_fsp_data))
229 void *vfs_add_fsp_extension_notype(vfs_handle_struct *handle,
230 files_struct *fsp, size_t ext_size,
231 void (*destroy_fn)(void *p_data))
233 struct vfs_fsp_data *ext;
234 void * ext_data;
236 /* Prevent VFS modules adding multiple extensions. */
237 if ((ext_data = vfs_fetch_fsp_extension(handle, fsp))) {
238 return ext_data;
241 ext = talloc_zero_size(
242 handle->conn, sizeof(struct vfs_fsp_data) + ext_size);
243 if (ext == NULL) {
244 return NULL;
247 ext->owner = handle;
248 ext->next = fsp->vfs_extension;
249 ext->destroy = destroy_fn;
250 fsp->vfs_extension = ext;
251 return EXT_DATA_AREA(ext);
254 void vfs_remove_fsp_extension(vfs_handle_struct *handle, files_struct *fsp)
256 struct vfs_fsp_data *curr;
257 struct vfs_fsp_data *prev;
259 for (curr = fsp->vfs_extension, prev = NULL;
260 curr;
261 prev = curr, curr = curr->next) {
262 if (curr->owner == handle) {
263 if (prev) {
264 prev->next = curr->next;
265 } else {
266 fsp->vfs_extension = curr->next;
268 if (curr->destroy) {
269 curr->destroy(EXT_DATA_AREA(curr));
271 TALLOC_FREE(curr);
272 return;
277 void vfs_remove_all_fsp_extensions(files_struct *fsp)
279 struct vfs_fsp_data *curr;
280 struct vfs_fsp_data *next;
282 for (curr = fsp->vfs_extension; curr; curr = next) {
284 next = curr->next;
285 fsp->vfs_extension = next;
287 if (curr->destroy) {
288 curr->destroy(EXT_DATA_AREA(curr));
290 TALLOC_FREE(curr);
294 void *vfs_memctx_fsp_extension(vfs_handle_struct *handle,
295 const struct files_struct *fsp)
297 struct vfs_fsp_data *head;
299 for (head = fsp->vfs_extension; head; head = head->next) {
300 if (head->owner == handle) {
301 return head;
305 return NULL;
308 void *vfs_fetch_fsp_extension(vfs_handle_struct *handle,
309 const struct files_struct *fsp)
311 struct vfs_fsp_data *head;
313 head = (struct vfs_fsp_data *)vfs_memctx_fsp_extension(handle, fsp);
314 if (head != NULL) {
315 return EXT_DATA_AREA(head);
318 return NULL;
321 #undef EXT_DATA_AREA
324 * Ensure this module catches all VFS functions.
326 #ifdef DEVELOPER
327 void smb_vfs_assert_all_fns(const struct vfs_fn_pointers* fns,
328 const char *module)
330 bool missing_fn = false;
331 unsigned int idx;
332 const uintptr_t *end = (const uintptr_t *)(fns + 1);
334 for (idx = 0; ((const uintptr_t *)fns + idx) < end; idx++) {
335 if (*((const uintptr_t *)fns + idx) == 0) {
336 DBG_ERR("VFS function at index %d not implemented "
337 "in module %s\n", idx, module);
338 missing_fn = true;
342 if (missing_fn) {
343 smb_panic("Required VFS function not implemented in module.\n");
346 #else
347 void smb_vfs_assert_all_fns(const struct vfs_fn_pointers* fns,
348 const char *module)
351 #endif
353 /*****************************************************************
354 Generic VFS init.
355 ******************************************************************/
357 bool smbd_vfs_init(connection_struct *conn)
359 const char **vfs_objects;
360 unsigned int i = 0;
361 int j = 0;
363 /* Normal share - initialise with disk access functions */
364 vfs_init_default(conn);
366 /* No need to load vfs modules for printer connections */
367 if (conn->printer) {
368 return True;
371 if (lp_widelinks(SNUM(conn))) {
373 * As the widelinks logic is now moving into a
374 * vfs_widelinks module, we need to custom load
375 * it after the default module is initialized.
376 * That way no changes to smb.conf files are
377 * needed.
379 bool ok = vfs_init_custom(conn, "widelinks");
380 if (!ok) {
381 DBG_ERR("widelinks enabled and vfs_init_custom "
382 "failed for vfs_widelinks module\n");
383 return false;
387 vfs_objects = lp_vfs_objects(SNUM(conn));
389 /* Override VFS functions if 'vfs object' was not specified*/
390 if (!vfs_objects || !vfs_objects[0])
391 return True;
393 for (i=0; vfs_objects[i] ;) {
394 i++;
397 for (j=i-1; j >= 0; j--) {
398 if (!vfs_init_custom(conn, vfs_objects[j])) {
399 DEBUG(0, ("smbd_vfs_init: vfs_init_custom failed for %s\n", vfs_objects[j]));
400 return False;
403 return True;
406 /*******************************************************************
407 Check if a file exists in the vfs.
408 ********************************************************************/
410 NTSTATUS vfs_file_exist(connection_struct *conn, struct smb_filename *smb_fname)
412 /* Only return OK if stat was successful and S_ISREG */
413 if ((SMB_VFS_STAT(conn, smb_fname) != -1) &&
414 S_ISREG(smb_fname->st.st_ex_mode)) {
415 return NT_STATUS_OK;
418 return NT_STATUS_OBJECT_NAME_NOT_FOUND;
421 bool vfs_valid_pread_range(off_t offset, size_t length)
423 return sys_valid_io_range(offset, length);
426 bool vfs_valid_pwrite_range(off_t offset, size_t length)
429 * See MAXFILESIZE in [MS-FSA] 2.1.5.3 Server Requests a Write
431 static const uint64_t maxfilesize = 0xfffffff0000;
432 uint64_t last_byte_ofs;
433 bool ok;
435 ok = sys_valid_io_range(offset, length);
436 if (!ok) {
437 return false;
440 if (length == 0) {
441 return true;
444 last_byte_ofs = offset + length;
445 if (last_byte_ofs > maxfilesize) {
446 return false;
449 return true;
452 ssize_t vfs_pwrite_data(struct smb_request *req,
453 files_struct *fsp,
454 const char *buffer,
455 size_t N,
456 off_t offset)
458 size_t total=0;
459 ssize_t ret;
460 bool ok;
462 ok = vfs_valid_pwrite_range(offset, N);
463 if (!ok) {
464 errno = EINVAL;
465 return -1;
468 if (req && req->unread_bytes) {
469 int sockfd = req->xconn->transport.sock;
470 SMB_ASSERT(req->unread_bytes == N);
471 /* VFS_RECVFILE must drain the socket
472 * before returning. */
473 req->unread_bytes = 0;
475 * Leave the socket non-blocking and
476 * use SMB_VFS_RECVFILE. If it returns
477 * EAGAIN || EWOULDBLOCK temporarily set
478 * the socket blocking and retry
479 * the RECVFILE.
481 while (total < N) {
482 ret = SMB_VFS_RECVFILE(sockfd,
483 fsp,
484 offset + total,
485 N - total);
486 if (ret == 0 || (ret == -1 &&
487 (errno == EAGAIN ||
488 errno == EWOULDBLOCK))) {
489 int old_flags;
490 /* Ensure the socket is blocking. */
491 old_flags = fcntl(sockfd, F_GETFL, 0);
492 if (set_blocking(sockfd, true) == -1) {
493 return (ssize_t)-1;
495 ret = SMB_VFS_RECVFILE(sockfd,
496 fsp,
497 offset + total,
498 N - total);
499 if (fcntl(sockfd, F_SETFL, old_flags) == -1) {
500 return (ssize_t)-1;
502 if (ret == -1) {
503 return (ssize_t)-1;
505 total += ret;
506 return (ssize_t)total;
508 /* Any other error case. */
509 if (ret == -1) {
510 return ret;
512 total += ret;
514 return (ssize_t)total;
517 while (total < N) {
518 ret = SMB_VFS_PWRITE(fsp, buffer + total, N - total,
519 offset + total);
521 if (ret == -1)
522 return -1;
523 if (ret == 0)
524 return total;
526 total += ret;
528 return (ssize_t)total;
530 /****************************************************************************
531 An allocate file space call using the vfs interface.
532 Allocates space for a file from a filedescriptor.
533 Returns 0 on success, -1 on failure.
534 ****************************************************************************/
536 int vfs_allocate_file_space(files_struct *fsp, uint64_t len)
538 int ret;
539 connection_struct *conn = fsp->conn;
540 uint64_t space_avail;
541 uint64_t bsize,dfree,dsize;
542 NTSTATUS status;
543 bool ok;
546 * Actually try and commit the space on disk....
549 DEBUG(10,("vfs_allocate_file_space: file %s, len %.0f\n",
550 fsp_str_dbg(fsp), (double)len));
552 ok = vfs_valid_pwrite_range((off_t)len, 0);
553 if (!ok) {
554 DEBUG(0,("vfs_allocate_file_space: %s negative/invalid len "
555 "requested.\n", fsp_str_dbg(fsp)));
556 errno = EINVAL;
557 return -1;
560 status = vfs_stat_fsp(fsp);
561 if (!NT_STATUS_IS_OK(status)) {
562 return -1;
565 if (len == (uint64_t)fsp->fsp_name->st.st_ex_size)
566 return 0;
568 if (len < (uint64_t)fsp->fsp_name->st.st_ex_size) {
569 /* Shrink - use ftruncate. */
571 DEBUG(10,("vfs_allocate_file_space: file %s, shrink. Current "
572 "size %.0f\n", fsp_str_dbg(fsp),
573 (double)fsp->fsp_name->st.st_ex_size));
575 contend_level2_oplocks_begin(fsp, LEVEL2_CONTEND_ALLOC_SHRINK);
577 ret = SMB_VFS_FTRUNCATE(fsp, (off_t)len);
579 contend_level2_oplocks_end(fsp, LEVEL2_CONTEND_ALLOC_SHRINK);
581 return ret;
584 /* Grow - we need to test if we have enough space. */
586 contend_level2_oplocks_begin(fsp, LEVEL2_CONTEND_ALLOC_GROW);
588 if (lp_strict_allocate(SNUM(fsp->conn))) {
589 /* See if we have a syscall that will allocate beyond
590 end-of-file without changing EOF. */
591 ret = SMB_VFS_FALLOCATE(fsp, VFS_FALLOCATE_FL_KEEP_SIZE,
592 0, len);
593 } else {
594 ret = 0;
597 contend_level2_oplocks_end(fsp, LEVEL2_CONTEND_ALLOC_GROW);
599 if (ret == 0) {
600 /* We changed the allocation size on disk, but not
601 EOF - exactly as required. We're done ! */
602 return 0;
605 if (ret == -1 && errno == ENOSPC) {
606 return -1;
609 len -= fsp->fsp_name->st.st_ex_size;
610 len /= 1024; /* Len is now number of 1k blocks needed. */
611 space_avail =
612 get_dfree_info(conn, fsp->fsp_name, &bsize, &dfree, &dsize);
613 if (space_avail == (uint64_t)-1) {
614 return -1;
617 DEBUG(10,("vfs_allocate_file_space: file %s, grow. Current size %.0f, "
618 "needed blocks = %.0f, space avail = %.0f\n",
619 fsp_str_dbg(fsp), (double)fsp->fsp_name->st.st_ex_size, (double)len,
620 (double)space_avail));
622 if (len > space_avail) {
623 errno = ENOSPC;
624 return -1;
627 return 0;
630 /****************************************************************************
631 A vfs set_filelen call.
632 set the length of a file from a filedescriptor.
633 Returns 0 on success, -1 on failure.
634 ****************************************************************************/
636 int vfs_set_filelen(files_struct *fsp, off_t len)
638 int ret;
639 bool ok;
641 ok = vfs_valid_pwrite_range(len, 0);
642 if (!ok) {
643 errno = EINVAL;
644 return -1;
647 contend_level2_oplocks_begin(fsp, LEVEL2_CONTEND_SET_FILE_LEN);
649 DEBUG(10,("vfs_set_filelen: ftruncate %s to len %.0f\n",
650 fsp_str_dbg(fsp), (double)len));
651 if ((ret = SMB_VFS_FTRUNCATE(fsp, len)) != -1) {
652 notify_fname(fsp->conn, NOTIFY_ACTION_MODIFIED,
653 FILE_NOTIFY_CHANGE_SIZE
654 | FILE_NOTIFY_CHANGE_ATTRIBUTES,
655 fsp->fsp_name->base_name);
658 contend_level2_oplocks_end(fsp, LEVEL2_CONTEND_SET_FILE_LEN);
660 return ret;
663 /****************************************************************************
664 A slow version of fallocate. Fallback code if SMB_VFS_FALLOCATE
665 fails. Needs to be outside of the default version of SMB_VFS_FALLOCATE
666 as this is also called from the default SMB_VFS_FTRUNCATE code.
667 Always extends the file size.
668 Returns 0 on success, -1 on failure.
669 ****************************************************************************/
671 #define SPARSE_BUF_WRITE_SIZE (32*1024)
673 int vfs_slow_fallocate(files_struct *fsp, off_t offset, off_t len)
675 ssize_t pwrite_ret;
676 size_t total = 0;
677 bool ok;
679 ok = vfs_valid_pwrite_range(offset, len);
680 if (!ok) {
681 errno = EINVAL;
682 return -1;
685 if (!sparse_buf) {
686 sparse_buf = SMB_CALLOC_ARRAY(char, SPARSE_BUF_WRITE_SIZE);
687 if (!sparse_buf) {
688 errno = ENOMEM;
689 return -1;
693 while (total < len) {
694 size_t curr_write_size = MIN(SPARSE_BUF_WRITE_SIZE, (len - total));
696 pwrite_ret = SMB_VFS_PWRITE(fsp, sparse_buf, curr_write_size, offset + total);
697 if (pwrite_ret == -1) {
698 int saved_errno = errno;
699 DEBUG(10,("vfs_slow_fallocate: SMB_VFS_PWRITE for file "
700 "%s failed with error %s\n",
701 fsp_str_dbg(fsp), strerror(saved_errno)));
702 errno = saved_errno;
703 return -1;
705 total += pwrite_ret;
708 return 0;
711 /****************************************************************************
712 A vfs fill sparse call.
713 Writes zeros from the end of file to len, if len is greater than EOF.
714 Used only by strict_sync.
715 Returns 0 on success, -1 on failure.
716 ****************************************************************************/
718 int vfs_fill_sparse(files_struct *fsp, off_t len)
720 int ret;
721 NTSTATUS status;
722 off_t offset;
723 size_t num_to_write;
724 bool ok;
726 ok = vfs_valid_pwrite_range(len, 0);
727 if (!ok) {
728 errno = EINVAL;
729 return -1;
732 status = vfs_stat_fsp(fsp);
733 if (!NT_STATUS_IS_OK(status)) {
734 return -1;
737 if (len <= fsp->fsp_name->st.st_ex_size) {
738 return 0;
741 #ifdef S_ISFIFO
742 if (S_ISFIFO(fsp->fsp_name->st.st_ex_mode)) {
743 return 0;
745 #endif
747 DEBUG(10,("vfs_fill_sparse: write zeros in file %s from len %.0f to "
748 "len %.0f (%.0f bytes)\n", fsp_str_dbg(fsp),
749 (double)fsp->fsp_name->st.st_ex_size, (double)len,
750 (double)(len - fsp->fsp_name->st.st_ex_size)));
752 contend_level2_oplocks_begin(fsp, LEVEL2_CONTEND_FILL_SPARSE);
754 offset = fsp->fsp_name->st.st_ex_size;
755 num_to_write = len - fsp->fsp_name->st.st_ex_size;
757 /* Only do this on non-stream file handles. */
758 if (fsp->base_fsp == NULL) {
759 /* for allocation try fallocate first. This can fail on some
760 * platforms e.g. when the filesystem doesn't support it and no
761 * emulation is being done by the libc (like on AIX with JFS1). In that
762 * case we do our own emulation. fallocate implementations can
763 * return ENOTSUP or EINVAL in cases like that. */
764 ret = SMB_VFS_FALLOCATE(fsp, 0, offset, num_to_write);
765 if (ret == -1 && errno == ENOSPC) {
766 goto out;
768 if (ret == 0) {
769 goto out;
771 DEBUG(10,("vfs_fill_sparse: SMB_VFS_FALLOCATE failed with "
772 "error %d. Falling back to slow manual allocation\n", ret));
775 ret = vfs_slow_fallocate(fsp, offset, num_to_write);
777 out:
779 contend_level2_oplocks_end(fsp, LEVEL2_CONTEND_FILL_SPARSE);
780 return ret;
783 /*******************************************************************************
784 Set a fd into blocking/nonblocking mode through VFS
785 *******************************************************************************/
787 int vfs_set_blocking(files_struct *fsp, bool set)
789 int val;
790 #ifdef O_NONBLOCK
791 #define FLAG_TO_SET O_NONBLOCK
792 #else
793 #ifdef SYSV
794 #define FLAG_TO_SET O_NDELAY
795 #else /* BSD */
796 #define FLAG_TO_SET FNDELAY
797 #endif
798 #endif
800 if (fsp->fsp_flags.is_pathref) {
801 return 0;
804 val = SMB_VFS_FCNTL(fsp, F_GETFL, 0);
805 if (val == -1) {
806 return -1;
809 if (set) {
810 val &= ~FLAG_TO_SET;
811 } else {
812 val |= FLAG_TO_SET;
815 return SMB_VFS_FCNTL(fsp, F_SETFL, val);
816 #undef FLAG_TO_SET
819 /****************************************************************************
820 Transfer some data (n bytes) between two file_struct's.
821 ****************************************************************************/
823 static ssize_t vfs_pread_fn(void *file, void *buf, size_t len, off_t offset)
825 struct files_struct *fsp = (struct files_struct *)file;
827 return SMB_VFS_PREAD(fsp, buf, len, offset);
830 static ssize_t vfs_pwrite_fn(void *file, const void *buf, size_t len, off_t offset)
832 struct files_struct *fsp = (struct files_struct *)file;
834 return SMB_VFS_PWRITE(fsp, buf, len, offset);
837 off_t vfs_transfer_file(files_struct *in, files_struct *out, off_t n)
839 return transfer_file_internal((void *)in, (void *)out, n,
840 vfs_pread_fn, vfs_pwrite_fn);
843 /*******************************************************************
844 A vfs_readdir wrapper which just returns the file name.
845 ********************************************************************/
847 const char *vfs_readdirname(connection_struct *conn,
848 struct files_struct *dirfsp,
849 void *p,
850 SMB_STRUCT_STAT *sbuf,
851 char **talloced)
853 struct dirent *ptr= NULL;
854 const char *dname;
855 char *translated;
856 NTSTATUS status;
858 if (!p)
859 return(NULL);
861 ptr = SMB_VFS_READDIR(conn, dirfsp, (DIR *)p, sbuf);
862 if (!ptr)
863 return(NULL);
865 dname = ptr->d_name;
867 status = SMB_VFS_TRANSLATE_NAME(conn, dname, vfs_translate_to_windows,
868 talloc_tos(), &translated);
869 if (NT_STATUS_EQUAL(status, NT_STATUS_NONE_MAPPED)) {
870 *talloced = NULL;
871 return dname;
873 *talloced = translated;
874 if (!NT_STATUS_IS_OK(status)) {
875 return NULL;
877 return translated;
880 /*******************************************************************
881 A wrapper for vfs_chdir().
882 ********************************************************************/
884 int vfs_ChDir(connection_struct *conn, const struct smb_filename *smb_fname)
886 int ret;
887 struct smb_filename *cwd = NULL;
889 if (!LastDir) {
890 LastDir = SMB_STRDUP("");
893 if (ISDOT(smb_fname->base_name)) {
895 * passing a '.' is a noop,
896 * and we only expect this after
897 * everything is initialized.
899 * So the first vfs_ChDir() on a given
900 * connection_struct must not be '.'.
902 * Note: conn_new() sets
903 * conn->cwd_fsp->fh->fd = -1
904 * and vfs_ChDir() leaves with
905 * conn->cwd_fsp->fh->fd = AT_FDCWD
906 * on success!
908 if (fsp_get_pathref_fd(conn->cwd_fsp) != AT_FDCWD) {
910 * This should never happen and
911 * we might change this to
912 * SMB_ASSERT() in future.
914 DBG_ERR("Called with '.' as first operation!\n");
915 log_stack_trace();
916 errno = EINVAL;
917 return -1;
919 return 0;
922 if (smb_fname->base_name[0] == '/' &&
923 strcsequal(LastDir,smb_fname->base_name))
926 * conn->cwd_fsp->fsp_name and the kernel
927 * are already correct, but conn->cwd_fsp->fh->fd
928 * might still be -1 as initialized in conn_new().
930 * This can happen when a client made a 2nd
931 * tree connect to a share with the same underlying
932 * path (may or may not the same share).
934 fsp_set_fd(conn->cwd_fsp, AT_FDCWD);
935 return 0;
938 DEBUG(4,("vfs_ChDir to %s\n", smb_fname->base_name));
940 ret = SMB_VFS_CHDIR(conn, smb_fname);
941 if (ret != 0) {
942 return -1;
946 * Always replace conn->cwd_fsp. We
947 * don't know if it's been modified by
948 * VFS modules in the stack.
950 fsp_set_fd(conn->cwd_fsp, AT_FDCWD);
952 /* conn cache. */
953 cwd = vfs_GetWd(conn, conn);
954 if (cwd == NULL) {
956 * vfs_GetWd() failed.
957 * We must be able to read cwd.
958 * Return to original directory
959 * and return -1.
961 int saved_errno = errno;
963 if (conn->cwd_fsp->fsp_name == NULL) {
965 * Failed on the very first chdir()+getwd()
966 * for this connection. We can't
967 * continue.
969 smb_panic("conn->cwd getwd failed\n");
970 /* NOTREACHED */
971 return -1;
974 /* Return to the previous $cwd. */
975 ret = SMB_VFS_CHDIR(conn, conn->cwd_fsp->fsp_name);
976 if (ret != 0) {
977 smb_panic("conn->cwd getwd failed\n");
978 /* NOTREACHED */
979 return -1;
981 errno = saved_errno;
982 /* And fail the chdir(). */
983 return -1;
986 /* vfs_GetWd() succeeded. */
987 /* Replace global cache. */
988 SAFE_FREE(LastDir);
989 LastDir = SMB_STRDUP(smb_fname->base_name);
992 * (Indirect) Callers of vfs_ChDir() may still hold references to the
993 * old conn->cwd_fsp->fsp_name. Move it to talloc_tos(), that way
994 * callers can use it for the lifetime of the SMB request.
996 talloc_move(talloc_tos(), &conn->cwd_fsp->fsp_name);
998 conn->cwd_fsp->fsp_name = talloc_move(conn->cwd_fsp, &cwd);
1000 DBG_INFO("vfs_ChDir got %s\n", fsp_str_dbg(conn->cwd_fsp));
1002 return ret;
1005 /*******************************************************************
1006 Return the absolute current directory path - given a UNIX pathname.
1007 Note that this path is returned in DOS format, not UNIX
1008 format. Note this can be called with conn == NULL.
1009 ********************************************************************/
1011 struct smb_filename *vfs_GetWd(TALLOC_CTX *ctx, connection_struct *conn)
1013 struct smb_filename *current_dir_fname = NULL;
1014 struct file_id key;
1015 struct smb_filename *smb_fname_dot = NULL;
1016 struct smb_filename *smb_fname_full = NULL;
1017 struct smb_filename *result = NULL;
1019 if (!lp_getwd_cache()) {
1020 goto nocache;
1023 smb_fname_dot = synthetic_smb_fname(ctx,
1024 ".",
1025 NULL,
1026 NULL,
1029 if (smb_fname_dot == NULL) {
1030 errno = ENOMEM;
1031 goto out;
1034 if (SMB_VFS_STAT(conn, smb_fname_dot) == -1) {
1036 * Known to fail for root: the directory may be NFS-mounted
1037 * and exported with root_squash (so has no root access).
1039 DEBUG(1,("vfs_GetWd: couldn't stat \".\" error %s "
1040 "(NFS problem ?)\n", strerror(errno) ));
1041 goto nocache;
1044 key = vfs_file_id_from_sbuf(conn, &smb_fname_dot->st);
1046 smb_fname_full = (struct smb_filename *)memcache_lookup_talloc(
1047 smbd_memcache(),
1048 GETWD_CACHE,
1049 data_blob_const(&key, sizeof(key)));
1051 if (smb_fname_full == NULL) {
1052 goto nocache;
1055 if ((SMB_VFS_STAT(conn, smb_fname_full) == 0) &&
1056 (smb_fname_dot->st.st_ex_dev == smb_fname_full->st.st_ex_dev) &&
1057 (smb_fname_dot->st.st_ex_ino == smb_fname_full->st.st_ex_ino) &&
1058 (S_ISDIR(smb_fname_dot->st.st_ex_mode))) {
1060 * Ok, we're done
1061 * Note: smb_fname_full is owned by smbd_memcache()
1062 * so we must make a copy to return.
1064 result = cp_smb_filename(ctx, smb_fname_full);
1065 if (result == NULL) {
1066 errno = ENOMEM;
1068 goto out;
1071 nocache:
1074 * We don't have the information to hand so rely on traditional
1075 * methods. The very slow getcwd, which spawns a process on some
1076 * systems, or the not quite so bad getwd.
1079 current_dir_fname = SMB_VFS_GETWD(conn, ctx);
1080 if (current_dir_fname == NULL) {
1081 DEBUG(0, ("vfs_GetWd: SMB_VFS_GETWD call failed: %s\n",
1082 strerror(errno)));
1083 goto out;
1086 if (lp_getwd_cache() && VALID_STAT(smb_fname_dot->st)) {
1087 key = vfs_file_id_from_sbuf(conn, &smb_fname_dot->st);
1090 * smbd_memcache() will own current_dir_fname after the
1091 * memcache_add_talloc call, so we must make
1092 * a copy on ctx to return.
1094 result = cp_smb_filename(ctx, current_dir_fname);
1095 if (result == NULL) {
1096 errno = ENOMEM;
1100 * Ensure the memory going into the cache
1101 * doesn't have a destructor so it can be
1102 * cleanly freed.
1104 talloc_set_destructor(current_dir_fname, NULL);
1106 memcache_add_talloc(smbd_memcache(),
1107 GETWD_CACHE,
1108 data_blob_const(&key, sizeof(key)),
1109 &current_dir_fname);
1110 /* current_dir_fname is now == NULL here. */
1111 } else {
1112 /* current_dir_fname is already allocated on ctx. */
1113 result = current_dir_fname;
1116 out:
1117 TALLOC_FREE(smb_fname_dot);
1119 * Don't free current_dir_fname here. It's either been moved
1120 * to the memcache or is being returned in result.
1122 return result;
1125 /*******************************************************************
1126 Reduce a file name, removing .. elements and checking that
1127 it is below dir in the hierarchy. This uses realpath.
1129 If cwd_name == NULL then fname is a client given path relative
1130 to the root path of the share.
1132 If cwd_name != NULL then fname is a client given path relative
1133 to cwd_name. cwd_name is relative to the root path of the share.
1134 ********************************************************************/
1136 NTSTATUS check_reduced_name(connection_struct *conn,
1137 const struct smb_filename *cwd_fname,
1138 const struct smb_filename *smb_fname)
1140 TALLOC_CTX *ctx = talloc_tos();
1141 const char *cwd_name = cwd_fname ? cwd_fname->base_name : NULL;
1142 const char *fname = smb_fname->base_name;
1143 struct smb_filename *resolved_fname;
1144 char *resolved_name = NULL;
1145 char *new_fname = NULL;
1146 bool allow_symlinks = true;
1147 const char *conn_rootdir;
1148 size_t rootdir_len;
1149 bool parent_dir_checked = false;
1151 DBG_DEBUG("check_reduced_name [%s] [%s]\n", fname, conn->connectpath);
1153 resolved_fname = SMB_VFS_REALPATH(conn, ctx, smb_fname);
1155 if (resolved_fname == NULL) {
1156 NTSTATUS status;
1157 struct smb_filename *dir_fname = NULL;
1158 struct smb_filename *last_component = NULL;
1160 if (errno == ENOTDIR) {
1161 DBG_NOTICE("Component not a directory in getting "
1162 "realpath for %s\n",
1163 fname);
1164 return NT_STATUS_OBJECT_PATH_NOT_FOUND;
1166 if (errno != ENOENT) {
1167 status = map_nt_error_from_unix(errno);
1168 DBG_NOTICE("couldn't get realpath for %s: %s\n",
1169 fname,
1170 strerror(errno));
1171 return status;
1174 /* errno == ENOENT */
1177 * Last component didn't exist. Remove it and try and
1178 * canonicalise the directory name.
1181 status = SMB_VFS_PARENT_PATHNAME(conn,
1182 ctx,
1183 smb_fname,
1184 &dir_fname,
1185 &last_component);
1186 if (!NT_STATUS_IS_OK(status)) {
1187 return status;
1190 resolved_fname = SMB_VFS_REALPATH(conn, ctx, dir_fname);
1191 if (resolved_fname == NULL) {
1192 status = map_nt_error_from_unix(errno);
1194 if (errno == ENOENT || errno == ENOTDIR) {
1195 status = NT_STATUS_OBJECT_PATH_NOT_FOUND;
1198 DBG_NOTICE("couldn't get realpath for "
1199 "%s (%s)\n",
1200 smb_fname_str_dbg(dir_fname),
1201 nt_errstr(status));
1202 return status;
1204 resolved_name = talloc_asprintf(ctx,
1205 "%s/%s",
1206 resolved_fname->base_name,
1207 last_component->base_name);
1208 if (resolved_name == NULL) {
1209 return NT_STATUS_NO_MEMORY;
1211 parent_dir_checked = true;
1212 } else {
1213 resolved_name = resolved_fname->base_name;
1216 DEBUG(10,("check_reduced_name realpath [%s] -> [%s]\n", fname,
1217 resolved_name));
1219 if (*resolved_name != '/') {
1220 DEBUG(0,("check_reduced_name: realpath doesn't return "
1221 "absolute paths !\n"));
1222 TALLOC_FREE(resolved_fname);
1223 return NT_STATUS_OBJECT_NAME_INVALID;
1226 /* Common widelinks and symlinks checks. */
1227 conn_rootdir = SMB_VFS_CONNECTPATH(conn, smb_fname);
1228 if (conn_rootdir == NULL) {
1229 DBG_NOTICE("Could not get conn_rootdir\n");
1230 TALLOC_FREE(resolved_fname);
1231 return NT_STATUS_ACCESS_DENIED;
1234 rootdir_len = strlen(conn_rootdir);
1237 * In the case of rootdir_len == 1, we know that
1238 * conn_rootdir is "/", and we also know that
1239 * resolved_name starts with a slash. So, in this
1240 * corner case, resolved_name is automatically a
1241 * sub-directory of the conn_rootdir. Thus we can skip
1242 * the string comparison and the next character checks
1243 * (which are even wrong in this case).
1245 if (rootdir_len != 1) {
1246 bool matched;
1248 matched = (strncmp(conn_rootdir, resolved_name,
1249 rootdir_len) == 0);
1250 if (!matched || (resolved_name[rootdir_len] != '/' &&
1251 resolved_name[rootdir_len] != '\0')) {
1252 DBG_NOTICE("Bad access attempt: %s is a symlink "
1253 "outside the "
1254 "share path\n"
1255 "conn_rootdir =%s\n"
1256 "resolved_name=%s\n",
1257 fname,
1258 conn_rootdir,
1259 resolved_name);
1260 TALLOC_FREE(resolved_fname);
1261 if (parent_dir_checked) {
1262 /* Part of a component path. */
1263 return NT_STATUS_OBJECT_PATH_NOT_FOUND;
1264 } else {
1265 /* End of a path. */
1266 return NT_STATUS_OBJECT_NAME_NOT_FOUND;
1271 /* Extra checks if all symlinks are disallowed. */
1272 allow_symlinks = lp_follow_symlinks(SNUM(conn));
1273 if (!allow_symlinks) {
1274 /* fname can't have changed in resolved_path. */
1275 const char *p = &resolved_name[rootdir_len];
1278 * UNIX filesystem semantics, names consisting
1279 * only of "." or ".." CANNOT be symlinks.
1281 if (ISDOT(fname) || ISDOTDOT(fname)) {
1282 goto out;
1285 if (*p != '/') {
1286 DBG_NOTICE("logic error (%c) "
1287 "in resolved_name: %s\n",
1289 fname);
1290 TALLOC_FREE(resolved_fname);
1291 return NT_STATUS_ACCESS_DENIED;
1294 p++;
1297 * If cwd_name is present and not ".",
1298 * then fname is relative to that, not
1299 * the root of the share. Make sure the
1300 * path we check is the one the client
1301 * sent (cwd_name+fname).
1303 if (cwd_name != NULL && !ISDOT(cwd_name)) {
1304 new_fname = talloc_asprintf(ctx,
1305 "%s/%s",
1306 cwd_name,
1307 fname);
1308 if (new_fname == NULL) {
1309 TALLOC_FREE(resolved_fname);
1310 return NT_STATUS_NO_MEMORY;
1312 fname = new_fname;
1315 if (strcmp(fname, p)!=0) {
1316 DBG_NOTICE("Bad access "
1317 "attempt: %s is a symlink to %s\n",
1318 fname,
1320 TALLOC_FREE(resolved_fname);
1321 TALLOC_FREE(new_fname);
1322 if (parent_dir_checked) {
1323 /* Part of a component path. */
1324 return NT_STATUS_OBJECT_PATH_NOT_FOUND;
1325 } else {
1326 /* End of a path. */
1327 return NT_STATUS_OBJECT_NAME_NOT_FOUND;
1332 out:
1334 DBG_INFO("%s reduced to %s\n", fname, resolved_name);
1335 TALLOC_FREE(resolved_fname);
1336 TALLOC_FREE(new_fname);
1337 return NT_STATUS_OK;
1341 * Ensure LSTAT is called for POSIX paths.
1343 int vfs_stat(struct connection_struct *conn,
1344 struct smb_filename *smb_fname)
1346 if (smb_fname->flags & SMB_FILENAME_POSIX_PATH) {
1347 return SMB_VFS_LSTAT(conn, smb_fname);
1349 return SMB_VFS_STAT(conn, smb_fname);
1353 * XXX: This is temporary and there should be no callers of this once
1354 * smb_filename is plumbed through all path based operations.
1356 * Called when we know stream name parsing has already been done.
1358 int vfs_stat_smb_basename(struct connection_struct *conn,
1359 const struct smb_filename *smb_fname_in,
1360 SMB_STRUCT_STAT *psbuf)
1362 struct smb_filename smb_fname = {
1363 .base_name = discard_const_p(char, smb_fname_in->base_name),
1364 .flags = smb_fname_in->flags,
1365 .twrp = smb_fname_in->twrp,
1367 int ret;
1369 if (smb_fname.flags & SMB_FILENAME_POSIX_PATH) {
1370 ret = SMB_VFS_LSTAT(conn, &smb_fname);
1371 } else {
1372 ret = SMB_VFS_STAT(conn, &smb_fname);
1375 if (ret != -1) {
1376 *psbuf = smb_fname.st;
1378 return ret;
1382 * Ensure LSTAT is called for POSIX paths.
1385 NTSTATUS vfs_stat_fsp(files_struct *fsp)
1387 int ret;
1388 struct stat_ex saved_stat = fsp->fsp_name->st;
1390 if (fsp_get_pathref_fd(fsp) == -1) {
1391 if (fsp->posix_flags & FSP_POSIX_FLAGS_OPEN) {
1392 ret = SMB_VFS_LSTAT(fsp->conn, fsp->fsp_name);
1393 } else {
1394 ret = SMB_VFS_STAT(fsp->conn, fsp->fsp_name);
1396 } else {
1397 ret = SMB_VFS_FSTAT(fsp, &fsp->fsp_name->st);
1399 if (ret == -1) {
1400 return map_nt_error_from_unix(errno);
1402 update_stat_ex_from_saved_stat(&fsp->fsp_name->st, &saved_stat);
1403 return NT_STATUS_OK;
1406 void init_smb_file_time(struct smb_file_time *ft)
1408 *ft = (struct smb_file_time) {
1409 .atime = make_omit_timespec(),
1410 .ctime = make_omit_timespec(),
1411 .mtime = make_omit_timespec(),
1412 .create_time = make_omit_timespec()
1417 * Initialize num_streams and streams, then call VFS op streaminfo
1420 NTSTATUS vfs_fstreaminfo(struct files_struct *fsp,
1421 TALLOC_CTX *mem_ctx,
1422 unsigned int *num_streams,
1423 struct stream_struct **streams)
1425 *num_streams = 0;
1426 *streams = NULL;
1428 if (fsp == NULL) {
1430 * Callers may pass fsp == NULL when passing smb_fname->fsp of a
1431 * symlink. This is ok, handle it here, by just return no
1432 * streams on a symlink.
1434 return NT_STATUS_OK;
1437 if (fsp_get_pathref_fd(fsp) == -1) {
1439 * No streams on non-real files/directories.
1441 return NT_STATUS_OK;
1444 return SMB_VFS_FSTREAMINFO(fsp,
1445 mem_ctx,
1446 num_streams,
1447 streams);
1450 int vfs_fake_fd(void)
1452 int pipe_fds[2];
1453 int ret;
1456 * Return a valid fd, but ensure any attempt to use
1457 * it returns an error (EPIPE).
1459 ret = pipe(pipe_fds);
1460 if (ret != 0) {
1461 return -1;
1464 close(pipe_fds[1]);
1465 return pipe_fds[0];
1469 * This is just a helper to make
1470 * users of vfs_fake_fd() more symetric
1472 int vfs_fake_fd_close(int fd)
1474 return close(fd);
1478 generate a file_id from a stat structure
1480 struct file_id vfs_file_id_from_sbuf(connection_struct *conn, const SMB_STRUCT_STAT *sbuf)
1482 return SMB_VFS_FILE_ID_CREATE(conn, sbuf);
1485 NTSTATUS vfs_at_fspcwd(TALLOC_CTX *mem_ctx,
1486 struct connection_struct *conn,
1487 struct files_struct **_fsp)
1489 struct files_struct *fsp = NULL;
1491 fsp = talloc_zero(mem_ctx, struct files_struct);
1492 if (fsp == NULL) {
1493 return NT_STATUS_NO_MEMORY;
1496 fsp->fsp_name = synthetic_smb_fname(fsp, ".", NULL, NULL, 0, 0);
1497 if (fsp->fsp_name == NULL) {
1498 TALLOC_FREE(fsp);
1499 return NT_STATUS_NO_MEMORY;
1502 fsp->fh = fd_handle_create(fsp);
1503 if (fsp->fh == NULL) {
1504 TALLOC_FREE(fsp);
1505 return NT_STATUS_NO_MEMORY;
1508 fsp_set_fd(fsp, AT_FDCWD);
1509 fsp->fnum = FNUM_FIELD_INVALID;
1510 fsp->conn = conn;
1512 *_fsp = fsp;
1513 return NT_STATUS_OK;
1516 int smb_vfs_call_connect(struct vfs_handle_struct *handle,
1517 const char *service, const char *user)
1519 VFS_FIND(connect);
1520 return handle->fns->connect_fn(handle, service, user);
1523 void smb_vfs_call_disconnect(struct vfs_handle_struct *handle)
1525 VFS_FIND(disconnect);
1526 handle->fns->disconnect_fn(handle);
1529 uint64_t smb_vfs_call_disk_free(struct vfs_handle_struct *handle,
1530 const struct smb_filename *smb_fname,
1531 uint64_t *bsize,
1532 uint64_t *dfree,
1533 uint64_t *dsize)
1535 VFS_FIND(disk_free);
1536 return handle->fns->disk_free_fn(handle, smb_fname,
1537 bsize, dfree, dsize);
1540 int smb_vfs_call_get_quota(struct vfs_handle_struct *handle,
1541 const struct smb_filename *smb_fname,
1542 enum SMB_QUOTA_TYPE qtype,
1543 unid_t id,
1544 SMB_DISK_QUOTA *qt)
1546 VFS_FIND(get_quota);
1547 return handle->fns->get_quota_fn(handle, smb_fname, qtype, id, qt);
1550 int smb_vfs_call_set_quota(struct vfs_handle_struct *handle,
1551 enum SMB_QUOTA_TYPE qtype, unid_t id,
1552 SMB_DISK_QUOTA *qt)
1554 VFS_FIND(set_quota);
1555 return handle->fns->set_quota_fn(handle, qtype, id, qt);
1558 int smb_vfs_call_get_shadow_copy_data(struct vfs_handle_struct *handle,
1559 struct files_struct *fsp,
1560 struct shadow_copy_data *shadow_copy_data,
1561 bool labels)
1563 VFS_FIND(get_shadow_copy_data);
1564 return handle->fns->get_shadow_copy_data_fn(handle, fsp,
1565 shadow_copy_data,
1566 labels);
1568 int smb_vfs_call_statvfs(struct vfs_handle_struct *handle,
1569 const struct smb_filename *smb_fname,
1570 struct vfs_statvfs_struct *statbuf)
1572 VFS_FIND(statvfs);
1573 return handle->fns->statvfs_fn(handle, smb_fname, statbuf);
1576 uint32_t smb_vfs_call_fs_capabilities(struct vfs_handle_struct *handle,
1577 enum timestamp_set_resolution *p_ts_res)
1579 VFS_FIND(fs_capabilities);
1580 return handle->fns->fs_capabilities_fn(handle, p_ts_res);
1583 NTSTATUS smb_vfs_call_get_dfs_referrals(struct vfs_handle_struct *handle,
1584 struct dfs_GetDFSReferral *r)
1586 VFS_FIND(get_dfs_referrals);
1587 return handle->fns->get_dfs_referrals_fn(handle, r);
1590 NTSTATUS smb_vfs_call_create_dfs_pathat(struct vfs_handle_struct *handle,
1591 struct files_struct *dirfsp,
1592 const struct smb_filename *smb_fname,
1593 const struct referral *reflist,
1594 size_t referral_count)
1596 VFS_FIND(create_dfs_pathat);
1597 return handle->fns->create_dfs_pathat_fn(handle,
1598 dirfsp,
1599 smb_fname,
1600 reflist,
1601 referral_count);
1604 NTSTATUS smb_vfs_call_read_dfs_pathat(struct vfs_handle_struct *handle,
1605 TALLOC_CTX *mem_ctx,
1606 struct files_struct *dirfsp,
1607 struct smb_filename *smb_fname,
1608 struct referral **ppreflist,
1609 size_t *preferral_count)
1611 VFS_FIND(read_dfs_pathat);
1612 return handle->fns->read_dfs_pathat_fn(handle,
1613 mem_ctx,
1614 dirfsp,
1615 smb_fname,
1616 ppreflist,
1617 preferral_count);
1620 DIR *smb_vfs_call_fdopendir(struct vfs_handle_struct *handle,
1621 struct files_struct *fsp,
1622 const char *mask,
1623 uint32_t attributes)
1625 VFS_FIND(fdopendir);
1626 return handle->fns->fdopendir_fn(handle, fsp, mask, attributes);
1629 struct dirent *smb_vfs_call_readdir(struct vfs_handle_struct *handle,
1630 struct files_struct *dirfsp,
1631 DIR *dirp,
1632 SMB_STRUCT_STAT *sbuf)
1634 VFS_FIND(readdir);
1635 return handle->fns->readdir_fn(handle, dirfsp, dirp, sbuf);
1638 void smb_vfs_call_seekdir(struct vfs_handle_struct *handle,
1639 DIR *dirp, long offset)
1641 VFS_FIND(seekdir);
1642 handle->fns->seekdir_fn(handle, dirp, offset);
1645 long smb_vfs_call_telldir(struct vfs_handle_struct *handle,
1646 DIR *dirp)
1648 VFS_FIND(telldir);
1649 return handle->fns->telldir_fn(handle, dirp);
1652 void smb_vfs_call_rewind_dir(struct vfs_handle_struct *handle,
1653 DIR *dirp)
1655 VFS_FIND(rewind_dir);
1656 handle->fns->rewind_dir_fn(handle, dirp);
1659 int smb_vfs_call_mkdirat(struct vfs_handle_struct *handle,
1660 struct files_struct *dirfsp,
1661 const struct smb_filename *smb_fname,
1662 mode_t mode)
1664 VFS_FIND(mkdirat);
1665 return handle->fns->mkdirat_fn(handle,
1666 dirfsp,
1667 smb_fname,
1668 mode);
1671 int smb_vfs_call_closedir(struct vfs_handle_struct *handle,
1672 DIR *dir)
1674 VFS_FIND(closedir);
1675 return handle->fns->closedir_fn(handle, dir);
1678 int smb_vfs_call_openat(struct vfs_handle_struct *handle,
1679 const struct files_struct *dirfsp,
1680 const struct smb_filename *smb_fname,
1681 struct files_struct *fsp,
1682 int flags,
1683 mode_t mode)
1685 VFS_FIND(openat);
1686 return handle->fns->openat_fn(handle,
1687 dirfsp,
1688 smb_fname,
1689 fsp,
1690 flags,
1691 mode);
1694 NTSTATUS smb_vfs_call_create_file(struct vfs_handle_struct *handle,
1695 struct smb_request *req,
1696 struct smb_filename *smb_fname,
1697 uint32_t access_mask,
1698 uint32_t share_access,
1699 uint32_t create_disposition,
1700 uint32_t create_options,
1701 uint32_t file_attributes,
1702 uint32_t oplock_request,
1703 const struct smb2_lease *lease,
1704 uint64_t allocation_size,
1705 uint32_t private_flags,
1706 struct security_descriptor *sd,
1707 struct ea_list *ea_list,
1708 files_struct **result,
1709 int *pinfo,
1710 const struct smb2_create_blobs *in_context_blobs,
1711 struct smb2_create_blobs *out_context_blobs)
1713 VFS_FIND(create_file);
1714 return handle->fns->create_file_fn(
1715 handle, req, smb_fname,
1716 access_mask, share_access, create_disposition, create_options,
1717 file_attributes, oplock_request, lease, allocation_size,
1718 private_flags, sd, ea_list,
1719 result, pinfo, in_context_blobs, out_context_blobs);
1722 int smb_vfs_call_close(struct vfs_handle_struct *handle,
1723 struct files_struct *fsp)
1725 VFS_FIND(close);
1726 return handle->fns->close_fn(handle, fsp);
1729 ssize_t smb_vfs_call_pread(struct vfs_handle_struct *handle,
1730 struct files_struct *fsp, void *data, size_t n,
1731 off_t offset)
1733 VFS_FIND(pread);
1734 return handle->fns->pread_fn(handle, fsp, data, n, offset);
1737 struct smb_vfs_call_pread_state {
1738 ssize_t (*recv_fn)(struct tevent_req *req, struct vfs_aio_state *vfs_aio_state);
1739 ssize_t retval;
1740 struct vfs_aio_state vfs_aio_state;
1743 static void smb_vfs_call_pread_done(struct tevent_req *subreq);
1745 struct tevent_req *smb_vfs_call_pread_send(struct vfs_handle_struct *handle,
1746 TALLOC_CTX *mem_ctx,
1747 struct tevent_context *ev,
1748 struct files_struct *fsp,
1749 void *data,
1750 size_t n, off_t offset)
1752 struct tevent_req *req, *subreq;
1753 struct smb_vfs_call_pread_state *state;
1755 req = tevent_req_create(mem_ctx, &state,
1756 struct smb_vfs_call_pread_state);
1757 if (req == NULL) {
1758 return NULL;
1760 VFS_FIND(pread_send);
1761 state->recv_fn = handle->fns->pread_recv_fn;
1763 subreq = handle->fns->pread_send_fn(handle, state, ev, fsp, data, n,
1764 offset);
1765 if (tevent_req_nomem(subreq, req)) {
1766 return tevent_req_post(req, ev);
1768 tevent_req_set_callback(subreq, smb_vfs_call_pread_done, req);
1769 return req;
1772 static void smb_vfs_call_pread_done(struct tevent_req *subreq)
1774 struct tevent_req *req = tevent_req_callback_data(
1775 subreq, struct tevent_req);
1776 struct smb_vfs_call_pread_state *state = tevent_req_data(
1777 req, struct smb_vfs_call_pread_state);
1779 state->retval = state->recv_fn(subreq, &state->vfs_aio_state);
1780 TALLOC_FREE(subreq);
1781 if (state->retval == -1) {
1782 tevent_req_error(req, state->vfs_aio_state.error);
1783 return;
1785 tevent_req_done(req);
1788 ssize_t SMB_VFS_PREAD_RECV(struct tevent_req *req,
1789 struct vfs_aio_state *vfs_aio_state)
1791 struct smb_vfs_call_pread_state *state = tevent_req_data(
1792 req, struct smb_vfs_call_pread_state);
1793 ssize_t retval;
1795 if (tevent_req_is_unix_error(req, &vfs_aio_state->error)) {
1796 tevent_req_received(req);
1797 return -1;
1799 *vfs_aio_state = state->vfs_aio_state;
1800 retval = state->retval;
1801 tevent_req_received(req);
1802 return retval;
1805 ssize_t smb_vfs_call_pwrite(struct vfs_handle_struct *handle,
1806 struct files_struct *fsp, const void *data,
1807 size_t n, off_t offset)
1809 VFS_FIND(pwrite);
1810 return handle->fns->pwrite_fn(handle, fsp, data, n, offset);
1813 struct smb_vfs_call_pwrite_state {
1814 ssize_t (*recv_fn)(struct tevent_req *req, struct vfs_aio_state *vfs_aio_state);
1815 ssize_t retval;
1816 struct vfs_aio_state vfs_aio_state;
1819 static void smb_vfs_call_pwrite_done(struct tevent_req *subreq);
1821 struct tevent_req *smb_vfs_call_pwrite_send(struct vfs_handle_struct *handle,
1822 TALLOC_CTX *mem_ctx,
1823 struct tevent_context *ev,
1824 struct files_struct *fsp,
1825 const void *data,
1826 size_t n, off_t offset)
1828 struct tevent_req *req, *subreq;
1829 struct smb_vfs_call_pwrite_state *state;
1831 req = tevent_req_create(mem_ctx, &state,
1832 struct smb_vfs_call_pwrite_state);
1833 if (req == NULL) {
1834 return NULL;
1836 VFS_FIND(pwrite_send);
1837 state->recv_fn = handle->fns->pwrite_recv_fn;
1839 subreq = handle->fns->pwrite_send_fn(handle, state, ev, fsp, data, n,
1840 offset);
1841 if (tevent_req_nomem(subreq, req)) {
1842 return tevent_req_post(req, ev);
1844 tevent_req_set_callback(subreq, smb_vfs_call_pwrite_done, req);
1845 return req;
1848 static void smb_vfs_call_pwrite_done(struct tevent_req *subreq)
1850 struct tevent_req *req = tevent_req_callback_data(
1851 subreq, struct tevent_req);
1852 struct smb_vfs_call_pwrite_state *state = tevent_req_data(
1853 req, struct smb_vfs_call_pwrite_state);
1855 state->retval = state->recv_fn(subreq, &state->vfs_aio_state);
1856 TALLOC_FREE(subreq);
1857 if (state->retval == -1) {
1858 tevent_req_error(req, state->vfs_aio_state.error);
1859 return;
1861 tevent_req_done(req);
1864 ssize_t SMB_VFS_PWRITE_RECV(struct tevent_req *req,
1865 struct vfs_aio_state *vfs_aio_state)
1867 struct smb_vfs_call_pwrite_state *state = tevent_req_data(
1868 req, struct smb_vfs_call_pwrite_state);
1869 ssize_t retval;
1871 if (tevent_req_is_unix_error(req, &vfs_aio_state->error)) {
1872 tevent_req_received(req);
1873 return -1;
1875 *vfs_aio_state = state->vfs_aio_state;
1876 retval = state->retval;
1877 tevent_req_received(req);
1878 return retval;
1881 off_t smb_vfs_call_lseek(struct vfs_handle_struct *handle,
1882 struct files_struct *fsp, off_t offset,
1883 int whence)
1885 VFS_FIND(lseek);
1886 return handle->fns->lseek_fn(handle, fsp, offset, whence);
1889 ssize_t smb_vfs_call_sendfile(struct vfs_handle_struct *handle, int tofd,
1890 files_struct *fromfsp, const DATA_BLOB *header,
1891 off_t offset, size_t count)
1893 VFS_FIND(sendfile);
1894 return handle->fns->sendfile_fn(handle, tofd, fromfsp, header, offset,
1895 count);
1898 ssize_t smb_vfs_call_recvfile(struct vfs_handle_struct *handle, int fromfd,
1899 files_struct *tofsp, off_t offset,
1900 size_t count)
1902 VFS_FIND(recvfile);
1903 return handle->fns->recvfile_fn(handle, fromfd, tofsp, offset, count);
1906 int smb_vfs_call_renameat(struct vfs_handle_struct *handle,
1907 files_struct *srcfsp,
1908 const struct smb_filename *smb_fname_src,
1909 files_struct *dstfsp,
1910 const struct smb_filename *smb_fname_dst)
1912 VFS_FIND(renameat);
1913 return handle->fns->renameat_fn(handle,
1914 srcfsp,
1915 smb_fname_src,
1916 dstfsp,
1917 smb_fname_dst);
1920 struct smb_vfs_call_fsync_state {
1921 int (*recv_fn)(struct tevent_req *req, struct vfs_aio_state *vfs_aio_state);
1922 int retval;
1923 struct vfs_aio_state vfs_aio_state;
1926 static void smb_vfs_call_fsync_done(struct tevent_req *subreq);
1928 struct tevent_req *smb_vfs_call_fsync_send(struct vfs_handle_struct *handle,
1929 TALLOC_CTX *mem_ctx,
1930 struct tevent_context *ev,
1931 struct files_struct *fsp)
1933 struct tevent_req *req, *subreq;
1934 struct smb_vfs_call_fsync_state *state;
1936 req = tevent_req_create(mem_ctx, &state,
1937 struct smb_vfs_call_fsync_state);
1938 if (req == NULL) {
1939 return NULL;
1941 VFS_FIND(fsync_send);
1942 state->recv_fn = handle->fns->fsync_recv_fn;
1944 subreq = handle->fns->fsync_send_fn(handle, state, ev, fsp);
1945 if (tevent_req_nomem(subreq, req)) {
1946 return tevent_req_post(req, ev);
1948 tevent_req_set_callback(subreq, smb_vfs_call_fsync_done, req);
1949 return req;
1952 static void smb_vfs_call_fsync_done(struct tevent_req *subreq)
1954 struct tevent_req *req = tevent_req_callback_data(
1955 subreq, struct tevent_req);
1956 struct smb_vfs_call_fsync_state *state = tevent_req_data(
1957 req, struct smb_vfs_call_fsync_state);
1959 state->retval = state->recv_fn(subreq, &state->vfs_aio_state);
1960 TALLOC_FREE(subreq);
1961 if (state->retval == -1) {
1962 tevent_req_error(req, state->vfs_aio_state.error);
1963 return;
1965 tevent_req_done(req);
1968 int SMB_VFS_FSYNC_RECV(struct tevent_req *req, struct vfs_aio_state *vfs_aio_state)
1970 struct smb_vfs_call_fsync_state *state = tevent_req_data(
1971 req, struct smb_vfs_call_fsync_state);
1972 ssize_t retval;
1974 if (tevent_req_is_unix_error(req, &vfs_aio_state->error)) {
1975 tevent_req_received(req);
1976 return -1;
1978 *vfs_aio_state = state->vfs_aio_state;
1979 retval = state->retval;
1980 tevent_req_received(req);
1981 return retval;
1985 * Synchronous version of fsync, built from backend
1986 * async VFS primitives. Uses a temporary sub-event
1987 * context (NOT NESTED).
1990 int smb_vfs_fsync_sync(files_struct *fsp)
1992 TALLOC_CTX *frame = talloc_stackframe();
1993 struct tevent_req *req = NULL;
1994 struct vfs_aio_state aio_state = { 0 };
1995 int ret = -1;
1996 bool ok;
1997 struct tevent_context *ev = samba_tevent_context_init(frame);
1999 if (ev == NULL) {
2000 goto out;
2003 req = SMB_VFS_FSYNC_SEND(talloc_tos(), ev, fsp);
2004 if (req == NULL) {
2005 goto out;
2008 ok = tevent_req_poll(req, ev);
2009 if (!ok) {
2010 goto out;
2013 ret = SMB_VFS_FSYNC_RECV(req, &aio_state);
2015 out:
2017 TALLOC_FREE(frame);
2018 if (aio_state.error != 0) {
2019 errno = aio_state.error;
2021 return ret;
2024 int smb_vfs_call_stat(struct vfs_handle_struct *handle,
2025 struct smb_filename *smb_fname)
2027 VFS_FIND(stat);
2028 return handle->fns->stat_fn(handle, smb_fname);
2031 int smb_vfs_call_fstat(struct vfs_handle_struct *handle,
2032 struct files_struct *fsp, SMB_STRUCT_STAT *sbuf)
2034 VFS_FIND(fstat);
2035 return handle->fns->fstat_fn(handle, fsp, sbuf);
2038 int smb_vfs_call_lstat(struct vfs_handle_struct *handle,
2039 struct smb_filename *smb_filename)
2041 VFS_FIND(lstat);
2042 return handle->fns->lstat_fn(handle, smb_filename);
2045 uint64_t smb_vfs_call_get_alloc_size(struct vfs_handle_struct *handle,
2046 struct files_struct *fsp,
2047 const SMB_STRUCT_STAT *sbuf)
2049 VFS_FIND(get_alloc_size);
2050 return handle->fns->get_alloc_size_fn(handle, fsp, sbuf);
2053 int smb_vfs_call_unlinkat(struct vfs_handle_struct *handle,
2054 struct files_struct *dirfsp,
2055 const struct smb_filename *smb_fname,
2056 int flags)
2058 VFS_FIND(unlinkat);
2059 return handle->fns->unlinkat_fn(handle,
2060 dirfsp,
2061 smb_fname,
2062 flags);
2065 int smb_vfs_call_fchmod(struct vfs_handle_struct *handle,
2066 struct files_struct *fsp, mode_t mode)
2068 VFS_FIND(fchmod);
2069 return handle->fns->fchmod_fn(handle, fsp, mode);
2072 int smb_vfs_call_fchown(struct vfs_handle_struct *handle,
2073 struct files_struct *fsp, uid_t uid, gid_t gid)
2075 VFS_FIND(fchown);
2076 return handle->fns->fchown_fn(handle, fsp, uid, gid);
2079 int smb_vfs_call_lchown(struct vfs_handle_struct *handle,
2080 const struct smb_filename *smb_fname,
2081 uid_t uid,
2082 gid_t gid)
2084 VFS_FIND(lchown);
2085 return handle->fns->lchown_fn(handle, smb_fname, uid, gid);
2088 int smb_vfs_call_chdir(struct vfs_handle_struct *handle,
2089 const struct smb_filename *smb_fname)
2091 VFS_FIND(chdir);
2092 return handle->fns->chdir_fn(handle, smb_fname);
2095 struct smb_filename *smb_vfs_call_getwd(struct vfs_handle_struct *handle,
2096 TALLOC_CTX *ctx)
2098 VFS_FIND(getwd);
2099 return handle->fns->getwd_fn(handle, ctx);
2102 int smb_vfs_call_fntimes(struct vfs_handle_struct *handle,
2103 struct files_struct *fsp,
2104 struct smb_file_time *ft)
2106 VFS_FIND(fntimes);
2107 return handle->fns->fntimes_fn(handle, fsp, ft);
2110 int smb_vfs_call_ftruncate(struct vfs_handle_struct *handle,
2111 struct files_struct *fsp, off_t offset)
2113 VFS_FIND(ftruncate);
2114 return handle->fns->ftruncate_fn(handle, fsp, offset);
2117 int smb_vfs_call_fallocate(struct vfs_handle_struct *handle,
2118 struct files_struct *fsp,
2119 uint32_t mode,
2120 off_t offset,
2121 off_t len)
2123 VFS_FIND(fallocate);
2124 return handle->fns->fallocate_fn(handle, fsp, mode, offset, len);
2127 int smb_vfs_call_kernel_flock(struct vfs_handle_struct *handle,
2128 struct files_struct *fsp, uint32_t share_mode,
2129 uint32_t access_mask)
2131 VFS_FIND(kernel_flock);
2132 return handle->fns->kernel_flock_fn(handle, fsp, share_mode,
2133 access_mask);
2136 int smb_vfs_call_fcntl(struct vfs_handle_struct *handle,
2137 struct files_struct *fsp, int cmd, ...)
2139 int result;
2140 va_list cmd_arg;
2142 VFS_FIND(fcntl);
2144 va_start(cmd_arg, cmd);
2145 result = handle->fns->fcntl_fn(handle, fsp, cmd, cmd_arg);
2146 va_end(cmd_arg);
2148 return result;
2151 int smb_vfs_call_linux_setlease(struct vfs_handle_struct *handle,
2152 struct files_struct *fsp, int leasetype)
2154 VFS_FIND(linux_setlease);
2155 return handle->fns->linux_setlease_fn(handle, fsp, leasetype);
2158 int smb_vfs_call_symlinkat(struct vfs_handle_struct *handle,
2159 const struct smb_filename *link_target,
2160 struct files_struct *dirfsp,
2161 const struct smb_filename *new_smb_fname)
2163 VFS_FIND(symlinkat);
2164 return handle->fns->symlinkat_fn(handle,
2165 link_target,
2166 dirfsp,
2167 new_smb_fname);
2170 int smb_vfs_call_readlinkat(struct vfs_handle_struct *handle,
2171 const struct files_struct *dirfsp,
2172 const struct smb_filename *smb_fname,
2173 char *buf,
2174 size_t bufsiz)
2176 VFS_FIND(readlinkat);
2177 return handle->fns->readlinkat_fn(handle,
2178 dirfsp,
2179 smb_fname,
2180 buf,
2181 bufsiz);
2184 int smb_vfs_call_linkat(struct vfs_handle_struct *handle,
2185 struct files_struct *srcfsp,
2186 const struct smb_filename *old_smb_fname,
2187 struct files_struct *dstfsp,
2188 const struct smb_filename *new_smb_fname,
2189 int flags)
2191 VFS_FIND(linkat);
2192 return handle->fns->linkat_fn(handle,
2193 srcfsp,
2194 old_smb_fname,
2195 dstfsp,
2196 new_smb_fname,
2197 flags);
2200 int smb_vfs_call_mknodat(struct vfs_handle_struct *handle,
2201 struct files_struct *dirfsp,
2202 const struct smb_filename *smb_fname,
2203 mode_t mode,
2204 SMB_DEV_T dev)
2206 VFS_FIND(mknodat);
2207 return handle->fns->mknodat_fn(handle,
2208 dirfsp,
2209 smb_fname,
2210 mode,
2211 dev);
2214 struct smb_filename *smb_vfs_call_realpath(struct vfs_handle_struct *handle,
2215 TALLOC_CTX *ctx,
2216 const struct smb_filename *smb_fname)
2218 VFS_FIND(realpath);
2219 return handle->fns->realpath_fn(handle, ctx, smb_fname);
2222 int smb_vfs_call_fchflags(struct vfs_handle_struct *handle,
2223 struct files_struct *fsp,
2224 unsigned int flags)
2226 VFS_FIND(fchflags);
2227 return handle->fns->fchflags_fn(handle, fsp, flags);
2230 struct file_id smb_vfs_call_file_id_create(struct vfs_handle_struct *handle,
2231 const SMB_STRUCT_STAT *sbuf)
2233 VFS_FIND(file_id_create);
2234 return handle->fns->file_id_create_fn(handle, sbuf);
2237 uint64_t smb_vfs_call_fs_file_id(struct vfs_handle_struct *handle,
2238 const SMB_STRUCT_STAT *sbuf)
2240 VFS_FIND(fs_file_id);
2241 return handle->fns->fs_file_id_fn(handle, sbuf);
2244 NTSTATUS smb_vfs_call_fstreaminfo(struct vfs_handle_struct *handle,
2245 struct files_struct *fsp,
2246 TALLOC_CTX *mem_ctx,
2247 unsigned int *num_streams,
2248 struct stream_struct **streams)
2250 VFS_FIND(fstreaminfo);
2251 return handle->fns->fstreaminfo_fn(handle, fsp, mem_ctx,
2252 num_streams, streams);
2255 int smb_vfs_call_get_real_filename(struct vfs_handle_struct *handle,
2256 const struct smb_filename *path,
2257 const char *name,
2258 TALLOC_CTX *mem_ctx,
2259 char **found_name)
2261 VFS_FIND(get_real_filename);
2262 return handle->fns->get_real_filename_fn(handle, path, name, mem_ctx,
2263 found_name);
2266 const char *smb_vfs_call_connectpath(struct vfs_handle_struct *handle,
2267 const struct smb_filename *smb_fname)
2269 VFS_FIND(connectpath);
2270 return handle->fns->connectpath_fn(handle, smb_fname);
2273 bool smb_vfs_call_strict_lock_check(struct vfs_handle_struct *handle,
2274 struct files_struct *fsp,
2275 struct lock_struct *plock)
2277 VFS_FIND(strict_lock_check);
2278 return handle->fns->strict_lock_check_fn(handle, fsp, plock);
2281 NTSTATUS smb_vfs_call_translate_name(struct vfs_handle_struct *handle,
2282 const char *name,
2283 enum vfs_translate_direction direction,
2284 TALLOC_CTX *mem_ctx,
2285 char **mapped_name)
2287 VFS_FIND(translate_name);
2288 return handle->fns->translate_name_fn(handle, name, direction, mem_ctx,
2289 mapped_name);
2292 NTSTATUS smb_vfs_call_parent_pathname(struct vfs_handle_struct *handle,
2293 TALLOC_CTX *mem_ctx,
2294 const struct smb_filename *smb_fname_in,
2295 struct smb_filename **parent_dir_out,
2296 struct smb_filename **atname_out)
2298 VFS_FIND(parent_pathname);
2299 return handle->fns->parent_pathname_fn(handle,
2300 mem_ctx,
2301 smb_fname_in,
2302 parent_dir_out,
2303 atname_out);
2306 NTSTATUS smb_vfs_call_fsctl(struct vfs_handle_struct *handle,
2307 struct files_struct *fsp,
2308 TALLOC_CTX *ctx,
2309 uint32_t function,
2310 uint16_t req_flags,
2311 const uint8_t *in_data,
2312 uint32_t in_len,
2313 uint8_t **out_data,
2314 uint32_t max_out_len,
2315 uint32_t *out_len)
2317 VFS_FIND(fsctl);
2318 return handle->fns->fsctl_fn(handle, fsp, ctx, function, req_flags,
2319 in_data, in_len, out_data, max_out_len,
2320 out_len);
2323 NTSTATUS smb_vfs_call_fget_dos_attributes(struct vfs_handle_struct *handle,
2324 struct files_struct *fsp,
2325 uint32_t *dosmode)
2327 VFS_FIND(fget_dos_attributes);
2328 return handle->fns->fget_dos_attributes_fn(handle, fsp, dosmode);
2331 NTSTATUS smb_vfs_call_fset_dos_attributes(struct vfs_handle_struct *handle,
2332 struct files_struct *fsp,
2333 uint32_t dosmode)
2335 VFS_FIND(fset_dos_attributes);
2336 return handle->fns->fset_dos_attributes_fn(handle, fsp, dosmode);
2339 struct tevent_req *smb_vfs_call_offload_read_send(TALLOC_CTX *mem_ctx,
2340 struct tevent_context *ev,
2341 struct vfs_handle_struct *handle,
2342 struct files_struct *fsp,
2343 uint32_t fsctl,
2344 uint32_t ttl,
2345 off_t offset,
2346 size_t to_copy)
2348 VFS_FIND(offload_read_send);
2349 return handle->fns->offload_read_send_fn(mem_ctx, ev, handle,
2350 fsp, fsctl,
2351 ttl, offset, to_copy);
2354 NTSTATUS smb_vfs_call_offload_read_recv(struct tevent_req *req,
2355 struct vfs_handle_struct *handle,
2356 TALLOC_CTX *mem_ctx,
2357 DATA_BLOB *token_blob)
2359 VFS_FIND(offload_read_recv);
2360 return handle->fns->offload_read_recv_fn(req, handle, mem_ctx, token_blob);
2363 struct tevent_req *smb_vfs_call_offload_write_send(struct vfs_handle_struct *handle,
2364 TALLOC_CTX *mem_ctx,
2365 struct tevent_context *ev,
2366 uint32_t fsctl,
2367 DATA_BLOB *token,
2368 off_t transfer_offset,
2369 struct files_struct *dest_fsp,
2370 off_t dest_off,
2371 off_t num)
2373 VFS_FIND(offload_write_send);
2374 return handle->fns->offload_write_send_fn(handle, mem_ctx, ev, fsctl,
2375 token, transfer_offset,
2376 dest_fsp, dest_off, num);
2379 NTSTATUS smb_vfs_call_offload_write_recv(struct vfs_handle_struct *handle,
2380 struct tevent_req *req,
2381 off_t *copied)
2383 VFS_FIND(offload_write_recv);
2384 return handle->fns->offload_write_recv_fn(handle, req, copied);
2387 struct smb_vfs_call_get_dos_attributes_state {
2388 files_struct *dir_fsp;
2389 NTSTATUS (*recv_fn)(struct tevent_req *req,
2390 struct vfs_aio_state *aio_state,
2391 uint32_t *dosmode);
2392 struct vfs_aio_state aio_state;
2393 uint32_t dos_attributes;
2396 static void smb_vfs_call_get_dos_attributes_done(struct tevent_req *subreq);
2398 struct tevent_req *smb_vfs_call_get_dos_attributes_send(
2399 TALLOC_CTX *mem_ctx,
2400 struct tevent_context *ev,
2401 struct vfs_handle_struct *handle,
2402 files_struct *dir_fsp,
2403 struct smb_filename *smb_fname)
2405 struct tevent_req *req = NULL;
2406 struct smb_vfs_call_get_dos_attributes_state *state = NULL;
2407 struct tevent_req *subreq = NULL;
2409 req = tevent_req_create(mem_ctx, &state,
2410 struct smb_vfs_call_get_dos_attributes_state);
2411 if (req == NULL) {
2412 return NULL;
2415 VFS_FIND(get_dos_attributes_send);
2417 *state = (struct smb_vfs_call_get_dos_attributes_state) {
2418 .dir_fsp = dir_fsp,
2419 .recv_fn = handle->fns->get_dos_attributes_recv_fn,
2422 subreq = handle->fns->get_dos_attributes_send_fn(mem_ctx,
2424 handle,
2425 dir_fsp,
2426 smb_fname);
2427 if (tevent_req_nomem(subreq, req)) {
2428 return tevent_req_post(req, ev);
2430 tevent_req_defer_callback(req, ev);
2432 tevent_req_set_callback(subreq,
2433 smb_vfs_call_get_dos_attributes_done,
2434 req);
2436 return req;
2439 static void smb_vfs_call_get_dos_attributes_done(struct tevent_req *subreq)
2441 struct tevent_req *req =
2442 tevent_req_callback_data(subreq,
2443 struct tevent_req);
2444 struct smb_vfs_call_get_dos_attributes_state *state =
2445 tevent_req_data(req,
2446 struct smb_vfs_call_get_dos_attributes_state);
2447 NTSTATUS status;
2448 bool ok;
2451 * Make sure we run as the user again
2453 ok = change_to_user_and_service_by_fsp(state->dir_fsp);
2454 SMB_ASSERT(ok);
2456 status = state->recv_fn(subreq,
2457 &state->aio_state,
2458 &state->dos_attributes);
2459 TALLOC_FREE(subreq);
2460 if (tevent_req_nterror(req, status)) {
2461 return;
2464 tevent_req_done(req);
2467 NTSTATUS smb_vfs_call_get_dos_attributes_recv(
2468 struct tevent_req *req,
2469 struct vfs_aio_state *aio_state,
2470 uint32_t *dos_attributes)
2472 struct smb_vfs_call_get_dos_attributes_state *state =
2473 tevent_req_data(req,
2474 struct smb_vfs_call_get_dos_attributes_state);
2475 NTSTATUS status;
2477 if (tevent_req_is_nterror(req, &status)) {
2478 tevent_req_received(req);
2479 return status;
2482 *aio_state = state->aio_state;
2483 *dos_attributes = state->dos_attributes;
2484 tevent_req_received(req);
2485 return NT_STATUS_OK;
2488 NTSTATUS smb_vfs_call_fget_compression(vfs_handle_struct *handle,
2489 TALLOC_CTX *mem_ctx,
2490 struct files_struct *fsp,
2491 uint16_t *_compression_fmt)
2493 VFS_FIND(fget_compression);
2494 return handle->fns->fget_compression_fn(handle, mem_ctx, fsp,
2495 _compression_fmt);
2498 NTSTATUS smb_vfs_call_set_compression(vfs_handle_struct *handle,
2499 TALLOC_CTX *mem_ctx,
2500 struct files_struct *fsp,
2501 uint16_t compression_fmt)
2503 VFS_FIND(set_compression);
2504 return handle->fns->set_compression_fn(handle, mem_ctx, fsp,
2505 compression_fmt);
2508 NTSTATUS smb_vfs_call_snap_check_path(vfs_handle_struct *handle,
2509 TALLOC_CTX *mem_ctx,
2510 const char *service_path,
2511 char **base_volume)
2513 VFS_FIND(snap_check_path);
2514 return handle->fns->snap_check_path_fn(handle, mem_ctx, service_path,
2515 base_volume);
2518 NTSTATUS smb_vfs_call_snap_create(struct vfs_handle_struct *handle,
2519 TALLOC_CTX *mem_ctx,
2520 const char *base_volume,
2521 time_t *tstamp,
2522 bool rw,
2523 char **base_path,
2524 char **snap_path)
2526 VFS_FIND(snap_create);
2527 return handle->fns->snap_create_fn(handle, mem_ctx, base_volume, tstamp,
2528 rw, base_path, snap_path);
2531 NTSTATUS smb_vfs_call_snap_delete(struct vfs_handle_struct *handle,
2532 TALLOC_CTX *mem_ctx,
2533 char *base_path,
2534 char *snap_path)
2536 VFS_FIND(snap_delete);
2537 return handle->fns->snap_delete_fn(handle, mem_ctx, base_path,
2538 snap_path);
2541 NTSTATUS smb_vfs_call_fget_nt_acl(struct vfs_handle_struct *handle,
2542 struct files_struct *fsp,
2543 uint32_t security_info,
2544 TALLOC_CTX *mem_ctx,
2545 struct security_descriptor **ppdesc)
2547 VFS_FIND(fget_nt_acl);
2548 return handle->fns->fget_nt_acl_fn(handle, fsp, security_info,
2549 mem_ctx, ppdesc);
2552 NTSTATUS smb_vfs_call_fset_nt_acl(struct vfs_handle_struct *handle,
2553 struct files_struct *fsp,
2554 uint32_t security_info_sent,
2555 const struct security_descriptor *psd)
2557 VFS_FIND(fset_nt_acl);
2558 return handle->fns->fset_nt_acl_fn(handle, fsp, security_info_sent,
2559 psd);
2562 NTSTATUS smb_vfs_call_audit_file(struct vfs_handle_struct *handle,
2563 struct smb_filename *file,
2564 struct security_acl *sacl,
2565 uint32_t access_requested,
2566 uint32_t access_denied)
2568 VFS_FIND(audit_file);
2569 return handle->fns->audit_file_fn(handle,
2570 file,
2571 sacl,
2572 access_requested,
2573 access_denied);
2576 SMB_ACL_T smb_vfs_call_sys_acl_get_fd(struct vfs_handle_struct *handle,
2577 struct files_struct *fsp,
2578 SMB_ACL_TYPE_T type,
2579 TALLOC_CTX *mem_ctx)
2581 VFS_FIND(sys_acl_get_fd);
2582 return handle->fns->sys_acl_get_fd_fn(handle, fsp, type, mem_ctx);
2585 int smb_vfs_call_sys_acl_blob_get_fd(struct vfs_handle_struct *handle,
2586 struct files_struct *fsp,
2587 TALLOC_CTX *mem_ctx,
2588 char **blob_description,
2589 DATA_BLOB *blob)
2591 VFS_FIND(sys_acl_blob_get_fd);
2592 return handle->fns->sys_acl_blob_get_fd_fn(handle, fsp, mem_ctx, blob_description, blob);
2595 int smb_vfs_call_sys_acl_set_fd(struct vfs_handle_struct *handle,
2596 struct files_struct *fsp,
2597 SMB_ACL_TYPE_T type,
2598 SMB_ACL_T theacl)
2600 VFS_FIND(sys_acl_set_fd);
2601 return handle->fns->sys_acl_set_fd_fn(handle, fsp, type, theacl);
2604 int smb_vfs_call_sys_acl_delete_def_fd(struct vfs_handle_struct *handle,
2605 struct files_struct *fsp)
2607 VFS_FIND(sys_acl_delete_def_fd);
2608 return handle->fns->sys_acl_delete_def_fd_fn(handle, fsp);
2611 struct smb_vfs_call_getxattrat_state {
2612 files_struct *dir_fsp;
2613 ssize_t (*recv_fn)(struct tevent_req *req,
2614 struct vfs_aio_state *aio_state,
2615 TALLOC_CTX *mem_ctx,
2616 uint8_t **xattr_value);
2617 ssize_t retval;
2618 uint8_t *xattr_value;
2619 struct vfs_aio_state aio_state;
2622 static void smb_vfs_call_getxattrat_done(struct tevent_req *subreq);
2624 struct tevent_req *smb_vfs_call_getxattrat_send(
2625 TALLOC_CTX *mem_ctx,
2626 struct tevent_context *ev,
2627 struct vfs_handle_struct *handle,
2628 files_struct *dir_fsp,
2629 const struct smb_filename *smb_fname,
2630 const char *xattr_name,
2631 size_t alloc_hint)
2633 struct tevent_req *req = NULL;
2634 struct smb_vfs_call_getxattrat_state *state = NULL;
2635 struct tevent_req *subreq = NULL;
2637 req = tevent_req_create(mem_ctx, &state,
2638 struct smb_vfs_call_getxattrat_state);
2639 if (req == NULL) {
2640 return NULL;
2643 VFS_FIND(getxattrat_send);
2645 *state = (struct smb_vfs_call_getxattrat_state) {
2646 .dir_fsp = dir_fsp,
2647 .recv_fn = handle->fns->getxattrat_recv_fn,
2650 subreq = handle->fns->getxattrat_send_fn(mem_ctx,
2652 handle,
2653 dir_fsp,
2654 smb_fname,
2655 xattr_name,
2656 alloc_hint);
2657 if (tevent_req_nomem(subreq, req)) {
2658 return tevent_req_post(req, ev);
2660 tevent_req_defer_callback(req, ev);
2662 tevent_req_set_callback(subreq, smb_vfs_call_getxattrat_done, req);
2663 return req;
2666 static void smb_vfs_call_getxattrat_done(struct tevent_req *subreq)
2668 struct tevent_req *req = tevent_req_callback_data(
2669 subreq, struct tevent_req);
2670 struct smb_vfs_call_getxattrat_state *state = tevent_req_data(
2671 req, struct smb_vfs_call_getxattrat_state);
2672 bool ok;
2675 * Make sure we run as the user again
2677 ok = change_to_user_and_service_by_fsp(state->dir_fsp);
2678 SMB_ASSERT(ok);
2680 state->retval = state->recv_fn(subreq,
2681 &state->aio_state,
2682 state,
2683 &state->xattr_value);
2684 TALLOC_FREE(subreq);
2685 if (state->retval == -1) {
2686 tevent_req_error(req, state->aio_state.error);
2687 return;
2690 tevent_req_done(req);
2693 ssize_t smb_vfs_call_getxattrat_recv(struct tevent_req *req,
2694 struct vfs_aio_state *aio_state,
2695 TALLOC_CTX *mem_ctx,
2696 uint8_t **xattr_value)
2698 struct smb_vfs_call_getxattrat_state *state = tevent_req_data(
2699 req, struct smb_vfs_call_getxattrat_state);
2700 size_t xattr_size;
2702 if (tevent_req_is_unix_error(req, &aio_state->error)) {
2703 tevent_req_received(req);
2704 return -1;
2707 *aio_state = state->aio_state;
2708 xattr_size = state->retval;
2709 if (xattr_value != NULL) {
2710 *xattr_value = talloc_move(mem_ctx, &state->xattr_value);
2713 tevent_req_received(req);
2714 return xattr_size;
2717 ssize_t smb_vfs_call_fgetxattr(struct vfs_handle_struct *handle,
2718 struct files_struct *fsp, const char *name,
2719 void *value, size_t size)
2721 VFS_FIND(fgetxattr);
2722 return handle->fns->fgetxattr_fn(handle, fsp, name, value, size);
2725 ssize_t smb_vfs_call_flistxattr(struct vfs_handle_struct *handle,
2726 struct files_struct *fsp, char *list,
2727 size_t size)
2729 VFS_FIND(flistxattr);
2730 return handle->fns->flistxattr_fn(handle, fsp, list, size);
2733 int smb_vfs_call_fremovexattr(struct vfs_handle_struct *handle,
2734 struct files_struct *fsp, const char *name)
2736 VFS_FIND(fremovexattr);
2737 return handle->fns->fremovexattr_fn(handle, fsp, name);
2740 int smb_vfs_call_fsetxattr(struct vfs_handle_struct *handle,
2741 struct files_struct *fsp, const char *name,
2742 const void *value, size_t size, int flags)
2744 VFS_FIND(fsetxattr);
2745 return handle->fns->fsetxattr_fn(handle, fsp, name, value, size, flags);
2748 bool smb_vfs_call_aio_force(struct vfs_handle_struct *handle,
2749 struct files_struct *fsp)
2751 VFS_FIND(aio_force);
2752 return handle->fns->aio_force_fn(handle, fsp);
2755 NTSTATUS smb_vfs_call_durable_cookie(struct vfs_handle_struct *handle,
2756 struct files_struct *fsp,
2757 TALLOC_CTX *mem_ctx,
2758 DATA_BLOB *cookie)
2760 VFS_FIND(durable_cookie);
2761 return handle->fns->durable_cookie_fn(handle, fsp, mem_ctx, cookie);
2764 NTSTATUS smb_vfs_call_durable_disconnect(struct vfs_handle_struct *handle,
2765 struct files_struct *fsp,
2766 const DATA_BLOB old_cookie,
2767 TALLOC_CTX *mem_ctx,
2768 DATA_BLOB *new_cookie)
2770 VFS_FIND(durable_disconnect);
2771 return handle->fns->durable_disconnect_fn(handle, fsp, old_cookie,
2772 mem_ctx, new_cookie);
2775 NTSTATUS smb_vfs_call_durable_reconnect(struct vfs_handle_struct *handle,
2776 struct smb_request *smb1req,
2777 struct smbXsrv_open *op,
2778 const DATA_BLOB old_cookie,
2779 TALLOC_CTX *mem_ctx,
2780 struct files_struct **fsp,
2781 DATA_BLOB *new_cookie)
2783 VFS_FIND(durable_reconnect);
2784 return handle->fns->durable_reconnect_fn(handle, smb1req, op,
2785 old_cookie, mem_ctx, fsp,
2786 new_cookie);
2789 NTSTATUS smb_vfs_call_freaddir_attr(struct vfs_handle_struct *handle,
2790 struct files_struct *fsp,
2791 TALLOC_CTX *mem_ctx,
2792 struct readdir_attr_data **attr_data)
2794 VFS_FIND(freaddir_attr);
2795 return handle->fns->freaddir_attr_fn(handle,
2796 fsp,
2797 mem_ctx,
2798 attr_data);