s3: VFS: gpfs: Add gpfsacl_sys_acl_delete_def_fd().
[samba.git] / source3 / modules / vfs_gpfs.c
1 /*
2  *  Unix SMB/CIFS implementation.
3  *  Samba VFS module for GPFS filesystem
4  *  Copyright (C) Christian Ambach <cambach1@de.ibm.com> 2006
5  *  Copyright (C) Christof Schmitt 2015
6  *  Major code contributions by Chetan Shringarpure <chetan.sh@in.ibm.com>
7  *                           and Gomati Mohanan <gomati.mohanan@in.ibm.com>
8  *
9  *  This program is free software; you can redistribute it and/or modify
10  *  it under the terms of the GNU General Public License as published by
11  *  the Free Software Foundation; either version 3 of the License, or
12  *  (at your option) any later version.
13  *
14  *  This program is distributed in the hope that it will be useful,
15  *  but WITHOUT ANY WARRANTY; without even the implied warranty of
16  *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17  *  GNU General Public License for more details.
18  *
19  *  You should have received a copy of the GNU General Public License
20  *  along with this program; if not, see <http://www.gnu.org/licenses/>.
21  */
22
23 #include "includes.h"
24 #include "smbd/smbd.h"
25 #include "include/smbprofile.h"
26 #include "modules/non_posix_acls.h"
27 #include "libcli/security/security.h"
28 #include "nfs4_acls.h"
29 #include "system/filesys.h"
30 #include "auth.h"
31 #include "lib/util/tevent_unix.h"
32 #include "lib/util/gpfswrap.h"
33
34 #include <gnutls/gnutls.h>
35 #include <gnutls/crypto.h>
36 #include "lib/crypto/gnutls_helpers.h"
37
38 #undef DBGC_CLASS
39 #define DBGC_CLASS DBGC_VFS
40
41 #ifndef GPFS_GETACL_NATIVE
42 #define GPFS_GETACL_NATIVE 0x00000004
43 #endif
44
45 struct gpfs_config_data {
46         struct smbacl4_vfs_params nfs4_params;
47         bool sharemodes;
48         bool leases;
49         bool hsm;
50         bool syncio;
51         bool winattr;
52         bool ftruncate;
53         bool getrealfilename;
54         bool dfreequota;
55         bool acl;
56         bool settimes;
57         bool recalls;
58 };
59
60 struct gpfs_fsp_extension {
61         bool offline;
62 };
63
64 static inline unsigned int gpfs_acl_flags(gpfs_acl_t *gacl)
65 {
66         if (gacl->acl_level == GPFS_ACL_LEVEL_V4FLAGS) {
67                 return gacl->v4Level1.acl_flags;
68         }
69         return 0;
70 }
71
72 static inline gpfs_ace_v4_t *gpfs_ace_ptr(gpfs_acl_t *gacl, unsigned int i)
73 {
74         if (gacl->acl_level == GPFS_ACL_LEVEL_V4FLAGS) {
75                 return &gacl->v4Level1.ace_v4[i];
76         }
77         return &gacl->ace_v4[i];
78 }
79
80 static unsigned int vfs_gpfs_access_mask_to_allow(uint32_t access_mask)
81 {
82         unsigned int allow = GPFS_SHARE_NONE;
83
84         if (access_mask & (FILE_WRITE_DATA|FILE_APPEND_DATA)) {
85                 allow |= GPFS_SHARE_WRITE;
86         }
87         if (access_mask & (FILE_READ_DATA|FILE_EXECUTE)) {
88                 allow |= GPFS_SHARE_READ;
89         }
90
91         return allow;
92 }
93
94 static unsigned int vfs_gpfs_share_access_to_deny(uint32_t share_access)
95 {
96         unsigned int deny = GPFS_DENY_NONE;
97
98         if (!(share_access & FILE_SHARE_WRITE)) {
99                 deny |= GPFS_DENY_WRITE;
100         }
101         if (!(share_access & FILE_SHARE_READ)) {
102                 deny |= GPFS_DENY_READ;
103         }
104
105         /*
106          * GPFS_DENY_DELETE can only be set together with either
107          * GPFS_DENY_WRITE or GPFS_DENY_READ.
108          */
109         if ((deny & (GPFS_DENY_WRITE|GPFS_DENY_READ)) &&
110             !(share_access & FILE_SHARE_DELETE)) {
111                 deny |= GPFS_DENY_DELETE;
112         }
113
114         return deny;
115 }
116
117 static int set_gpfs_sharemode(files_struct *fsp, uint32_t access_mask,
118                               uint32_t share_access)
119 {
120         unsigned int allow = GPFS_SHARE_NONE;
121         unsigned int deny = GPFS_DENY_NONE;
122         int result;
123
124         if (access_mask == 0) {
125                 DBG_DEBUG("Clearing file system share mode.\n");
126         } else {
127                 allow = vfs_gpfs_access_mask_to_allow(access_mask);
128                 deny = vfs_gpfs_share_access_to_deny(share_access);
129         }
130         DBG_DEBUG("access_mask=0x%x, allow=0x%x, share_access=0x%x, "
131                   "deny=0x%x\n", access_mask, allow, share_access, deny);
132
133         result = gpfswrap_set_share(fsp_get_io_fd(fsp), allow, deny);
134         if (result == 0) {
135                 return 0;
136         }
137
138         if (errno == EACCES) {
139                 DBG_NOTICE("GPFS share mode denied for %s/%s.\n",
140                            fsp->conn->connectpath,
141                            fsp->fsp_name->base_name);
142         } else if (errno == EPERM) {
143                 DBG_ERR("Samba requested GPFS sharemode for %s/%s, but the "
144                         "GPFS file system is not configured accordingly. "
145                         "Configure file system with mmchfs -D nfs4 or "
146                         "set gpfs:sharemodes=no in Samba.\n",
147                         fsp->conn->connectpath,
148                         fsp->fsp_name->base_name);
149         } else {
150                 DBG_ERR("gpfs_set_share failed: %s\n", strerror(errno));
151         }
152
153         return result;
154 }
155
156 static int vfs_gpfs_kernel_flock(vfs_handle_struct *handle, files_struct *fsp,
157                                  uint32_t share_access, uint32_t access_mask)
158 {
159
160         struct gpfs_config_data *config;
161         int ret = 0;
162
163         START_PROFILE(syscall_kernel_flock);
164
165         SMB_VFS_HANDLE_GET_DATA(handle, config,
166                                 struct gpfs_config_data,
167                                 return -1);
168
169         if(!config->sharemodes) {
170                 return 0;
171         }
172
173         /*
174          * A named stream fsp will have the basefile open in the fsp
175          * fd, so lacking a distinct fd for the stream we have to skip
176          * kernel_flock and set_gpfs_sharemode for stream.
177          */
178         if (is_named_stream(fsp->fsp_name)) {
179                 DBG_NOTICE("Not requesting GPFS sharemode on stream: %s/%s\n",
180                            fsp->conn->connectpath,
181                            fsp_str_dbg(fsp));
182                 return 0;
183         }
184
185         kernel_flock(fsp_get_io_fd(fsp), share_access, access_mask);
186
187         ret = set_gpfs_sharemode(fsp, access_mask, share_access);
188
189         END_PROFILE(syscall_kernel_flock);
190
191         return ret;
192 }
193
194 static int vfs_gpfs_close(vfs_handle_struct *handle, files_struct *fsp)
195 {
196
197         struct gpfs_config_data *config;
198
199         SMB_VFS_HANDLE_GET_DATA(handle, config,
200                                 struct gpfs_config_data,
201                                 return -1);
202
203         if (config->sharemodes &&
204             (fsp->fsp_flags.kernel_share_modes_taken))
205         {
206                 /*
207                  * Always clear GPFS sharemode in case the actual
208                  * close gets deferred due to outstanding POSIX locks
209                  * (see fd_close_posix)
210                  */
211                 int ret = gpfswrap_set_share(fsp_get_io_fd(fsp), 0, 0);
212                 if (ret != 0) {
213                         DBG_ERR("Clearing GPFS sharemode on close failed for "
214                                 " %s/%s: %s\n",
215                                 fsp->conn->connectpath,
216                                 fsp->fsp_name->base_name,
217                                 strerror(errno));
218                 }
219         }
220
221         return SMB_VFS_NEXT_CLOSE(handle, fsp);
222 }
223
224 static int lease_type_to_gpfs(int leasetype)
225 {
226         if (leasetype == F_RDLCK) {
227                 return GPFS_LEASE_READ;
228         }
229
230         if (leasetype == F_WRLCK) {
231                 return GPFS_LEASE_WRITE;
232         }
233
234         return GPFS_LEASE_NONE;
235 }
236
237 static int vfs_gpfs_setlease(vfs_handle_struct *handle,
238                              files_struct *fsp,
239                              int leasetype)
240 {
241         struct gpfs_config_data *config;
242         int ret=0;
243
244         START_PROFILE(syscall_linux_setlease);
245
246         SMB_VFS_HANDLE_GET_DATA(handle, config,
247                                 struct gpfs_config_data,
248                                 return -1);
249
250         ret = linux_set_lease_sighandler(fsp_get_io_fd(fsp));
251         if (ret == -1) {
252                 goto failure;
253         }
254
255         if (config->leases) {
256                 int gpfs_lease_type = lease_type_to_gpfs(leasetype);
257                 int saved_errno = 0;
258
259                 /*
260                  * Ensure the lease owner is root to allow
261                  * correct delivery of lease-break signals.
262                  */
263                 become_root();
264                 ret = gpfswrap_set_lease(fsp_get_io_fd(fsp), gpfs_lease_type);
265                 if (ret < 0) {
266                         saved_errno = errno;
267                 }
268                 unbecome_root();
269
270                 if (saved_errno != 0) {
271                         errno = saved_errno;
272                 }
273         }
274
275 failure:
276         END_PROFILE(syscall_linux_setlease);
277
278         return ret;
279 }
280
281 static int vfs_gpfs_get_real_filename(struct vfs_handle_struct *handle,
282                                       const struct smb_filename *path,
283                                       const char *name,
284                                       TALLOC_CTX *mem_ctx,
285                                       char **found_name)
286 {
287         int result;
288         char *full_path = NULL;
289         char *to_free = NULL;
290         char real_pathname[PATH_MAX+1], tmpbuf[PATH_MAX];
291         size_t full_path_len;
292         int buflen;
293         bool mangled;
294         struct gpfs_config_data *config;
295
296         SMB_VFS_HANDLE_GET_DATA(handle, config,
297                                 struct gpfs_config_data,
298                                 return -1);
299
300         if (!config->getrealfilename) {
301                 return SMB_VFS_NEXT_GET_REAL_FILENAME(handle, path, name,
302                                                       mem_ctx, found_name);
303         }
304
305         mangled = mangle_is_mangled(name, handle->conn->params);
306         if (mangled) {
307                 return SMB_VFS_NEXT_GET_REAL_FILENAME(handle, path, name,
308                                                       mem_ctx, found_name);
309         }
310
311         full_path_len = full_path_tos(path->base_name, name,
312                                       tmpbuf, sizeof(tmpbuf),
313                                       &full_path, &to_free);
314         if (full_path_len == -1) {
315                 errno = ENOMEM;
316                 return -1;
317         }
318
319         buflen = sizeof(real_pathname) - 1;
320
321         result = gpfswrap_get_realfilename_path(full_path, real_pathname,
322                                                 &buflen);
323
324         TALLOC_FREE(to_free);
325
326         if ((result == -1) && (errno == ENOSYS)) {
327                 return SMB_VFS_NEXT_GET_REAL_FILENAME(
328                         handle, path, name, mem_ctx, found_name);
329         }
330
331         if (result == -1) {
332                 DEBUG(10, ("smbd_gpfs_get_realfilename_path returned %s\n",
333                            strerror(errno)));
334                 return -1;
335         }
336
337         /*
338          * GPFS does not necessarily null-terminate the returned path
339          * but instead returns the buffer length in buflen.
340          */
341
342         if (buflen < sizeof(real_pathname)) {
343                 real_pathname[buflen] = '\0';
344         } else {
345                 real_pathname[sizeof(real_pathname)-1] = '\0';
346         }
347
348         DEBUG(10, ("smbd_gpfs_get_realfilename_path: %s/%s -> %s\n",
349                    path->base_name, name, real_pathname));
350
351         name = strrchr_m(real_pathname, '/');
352         if (name == NULL) {
353                 errno = ENOENT;
354                 return -1;
355         }
356
357         *found_name = talloc_strdup(mem_ctx, name+1);
358         if (*found_name == NULL) {
359                 errno = ENOMEM;
360                 return -1;
361         }
362
363         return 0;
364 }
365
366 static void sd2gpfs_control(uint16_t control, struct gpfs_acl *gacl)
367 {
368         unsigned int gpfs_aclflags = 0;
369         control &= SEC_DESC_DACL_PROTECTED | SEC_DESC_SACL_PROTECTED |
370                 SEC_DESC_DACL_AUTO_INHERITED | SEC_DESC_SACL_AUTO_INHERITED |
371                 SEC_DESC_DACL_DEFAULTED | SEC_DESC_SACL_DEFAULTED |
372                 SEC_DESC_DACL_PRESENT | SEC_DESC_SACL_PRESENT;
373         gpfs_aclflags = control << 8;
374         if (!(control & SEC_DESC_DACL_PRESENT))
375                 gpfs_aclflags |= ACL4_FLAG_NULL_DACL;
376         if (!(control & SEC_DESC_SACL_PRESENT))
377                 gpfs_aclflags |= ACL4_FLAG_NULL_SACL;
378         gacl->acl_level = GPFS_ACL_LEVEL_V4FLAGS;
379         gacl->v4Level1.acl_flags = gpfs_aclflags;
380 }
381
382 static uint16_t gpfs2sd_control(unsigned int gpfs_aclflags)
383 {
384         uint16_t control = gpfs_aclflags >> 8;
385         control &= SEC_DESC_DACL_PROTECTED | SEC_DESC_SACL_PROTECTED |
386                 SEC_DESC_DACL_AUTO_INHERITED | SEC_DESC_SACL_AUTO_INHERITED |
387                 SEC_DESC_DACL_DEFAULTED | SEC_DESC_SACL_DEFAULTED |
388                 SEC_DESC_DACL_PRESENT | SEC_DESC_SACL_PRESENT;
389         control |= SEC_DESC_SELF_RELATIVE;
390         return control;
391 }
392
393 static void gpfs_dumpacl(int level, struct gpfs_acl *gacl)
394 {
395         gpfs_aclCount_t i;
396         if (gacl==NULL)
397         {
398                 DEBUG(0, ("gpfs acl is NULL\n"));
399                 return;
400         }
401
402         DEBUG(level, ("len: %d, level: %d, version: %d, nace: %d, "
403                       "control: %x\n",
404                       gacl->acl_len, gacl->acl_level, gacl->acl_version,
405                       gacl->acl_nace, gpfs_acl_flags(gacl)));
406
407         for(i=0; i<gacl->acl_nace; i++)
408         {
409                 struct gpfs_ace_v4 *gace = gpfs_ace_ptr(gacl, i);
410                 DEBUG(level, ("\tace[%d]: type:%d, flags:0x%x, mask:0x%x, "
411                               "iflags:0x%x, who:%u\n",
412                               i, gace->aceType, gace->aceFlags, gace->aceMask,
413                               gace->aceIFlags, gace->aceWho));
414         }
415 }
416
417 static int gpfs_getacl_with_capability(const char *fname, int flags, void *buf)
418 {
419         int ret, saved_errno;
420
421         set_effective_capability(DAC_OVERRIDE_CAPABILITY);
422
423         ret = gpfswrap_getacl(fname, flags, buf);
424         saved_errno = errno;
425
426         drop_effective_capability(DAC_OVERRIDE_CAPABILITY);
427
428         errno = saved_errno;
429         return ret;
430 }
431
432 /*
433  * get the ACL from GPFS, allocated on the specified mem_ctx
434  * internally retries when initial buffer was too small
435  *
436  * caller needs to cast result to either
437  * raw = yes: struct gpfs_opaque_acl
438  * raw = no: struct gpfs_acl
439  *
440  */
441 static void *vfs_gpfs_getacl(TALLOC_CTX *mem_ctx,
442                          const char *fname,
443                          const bool raw,
444                          const gpfs_aclType_t type)
445 {
446
447         void *aclbuf;
448         size_t size = 512;
449         int ret, flags;
450         unsigned int *len;
451         size_t struct_size;
452         bool use_capability = false;
453
454 again:
455
456         aclbuf = talloc_zero_size(mem_ctx, size);
457         if (aclbuf == NULL) {
458                 errno = ENOMEM;
459                 return NULL;
460         }
461
462         if (raw) {
463                 struct gpfs_opaque_acl *buf = (struct gpfs_opaque_acl *) aclbuf;
464                 buf->acl_type = type;
465                 flags = GPFS_GETACL_NATIVE;
466                 len = (unsigned int *) &(buf->acl_buffer_len);
467                 struct_size = sizeof(struct gpfs_opaque_acl);
468         } else {
469                 struct gpfs_acl *buf = (struct gpfs_acl *) aclbuf;
470                 buf->acl_type = type;
471                 buf->acl_level = GPFS_ACL_LEVEL_V4FLAGS;
472                 flags = GPFS_GETACL_STRUCT;
473                 len = &(buf->acl_len);
474                 /* reserve space for control flags in gpfs 3.5 and beyond */
475                 struct_size = sizeof(struct gpfs_acl) + sizeof(unsigned int);
476         }
477
478         /* set the length of the buffer as input value */
479         *len = size;
480
481         if (use_capability) {
482                 ret = gpfs_getacl_with_capability(fname, flags, aclbuf);
483         } else {
484                 ret = gpfswrap_getacl(fname, flags, aclbuf);
485                 if ((ret != 0) && (errno == EACCES)) {
486                         DBG_DEBUG("Retry with DAC capability for %s\n", fname);
487                         use_capability = true;
488                         ret = gpfs_getacl_with_capability(fname, flags, aclbuf);
489                 }
490         }
491
492         if ((ret != 0) && (errno == ENOSPC)) {
493                 /*
494                  * get the size needed to accommodate the complete buffer
495                  *
496                  * the value returned only applies to the ACL blob in the
497                  * struct so make sure to also have headroom for the first
498                  * struct members by adding room for the complete struct
499                  * (might be a few bytes too much then)
500                  */
501                 size = *len + struct_size;
502                 talloc_free(aclbuf);
503                 DEBUG(10, ("Increasing ACL buffer size to %zu\n", size));
504                 goto again;
505         }
506
507         if (ret != 0) {
508                 DEBUG(5, ("smbd_gpfs_getacl failed with %s\n",
509                           strerror(errno)));
510                 talloc_free(aclbuf);
511                 return NULL;
512         }
513
514         return aclbuf;
515 }
516
517 /* Tries to get nfs4 acls and returns SMB ACL allocated.
518  * On failure returns 1 if it got non-NFSv4 ACL to prompt 
519  * retry with POSIX ACL checks.
520  * On failure returns -1 if there is system (GPFS) error, check errno.
521  * Returns 0 on success
522  */
523 static int gpfs_get_nfs4_acl(TALLOC_CTX *mem_ctx, const char *fname,
524                              struct SMB4ACL_T **ppacl)
525 {
526         gpfs_aclCount_t i;
527         struct gpfs_acl *gacl = NULL;
528         DEBUG(10, ("gpfs_get_nfs4_acl invoked for %s\n", fname));
529
530         /* Get the ACL */
531         gacl = (struct gpfs_acl*) vfs_gpfs_getacl(talloc_tos(), fname,
532                                                   false, 0);
533         if (gacl == NULL) {
534                 DEBUG(9, ("gpfs_getacl failed for %s with %s\n",
535                            fname, strerror(errno)));
536                 if (errno == ENODATA) {
537                         /*
538                          * GPFS returns ENODATA for snapshot
539                          * directories. Retry with POSIX ACLs check.
540                          */
541                         return 1;
542                 }
543
544                 return -1;
545         }
546
547         if (gacl->acl_type != GPFS_ACL_TYPE_NFS4) {
548                 DEBUG(10, ("Got non-nfsv4 acl\n"));
549                 /* Retry with POSIX ACLs check */
550                 talloc_free(gacl);
551                 return 1;
552         }
553
554         *ppacl = smb_create_smb4acl(mem_ctx);
555
556         if (gacl->acl_level == GPFS_ACL_LEVEL_V4FLAGS) {
557                 uint16_t control = gpfs2sd_control(gpfs_acl_flags(gacl));
558                 smbacl4_set_controlflags(*ppacl, control);
559         }
560
561         DEBUG(10, ("len: %d, level: %d, version: %d, nace: %d, control: %x\n",
562                    gacl->acl_len, gacl->acl_level, gacl->acl_version,
563                    gacl->acl_nace, gpfs_acl_flags(gacl)));
564
565         for (i=0; i<gacl->acl_nace; i++) {
566                 struct gpfs_ace_v4 *gace = gpfs_ace_ptr(gacl, i);
567                 SMB_ACE4PROP_T smbace = { 0 };
568                 DEBUG(10, ("type: %d, iflags: %x, flags: %x, mask: %x, "
569                            "who: %d\n", gace->aceType, gace->aceIFlags,
570                            gace->aceFlags, gace->aceMask, gace->aceWho));
571
572                 if (gace->aceIFlags & ACE4_IFLAG_SPECIAL_ID) {
573                         smbace.flags |= SMB_ACE4_ID_SPECIAL;
574                         switch (gace->aceWho) {
575                         case ACE4_SPECIAL_OWNER:
576                                 smbace.who.special_id = SMB_ACE4_WHO_OWNER;
577                                 break;
578                         case ACE4_SPECIAL_GROUP:
579                                 smbace.who.special_id = SMB_ACE4_WHO_GROUP;
580                                 break;
581                         case ACE4_SPECIAL_EVERYONE:
582                                 smbace.who.special_id = SMB_ACE4_WHO_EVERYONE;
583                                 break;
584                         default:
585                                 DEBUG(8, ("invalid special gpfs id %d "
586                                           "ignored\n", gace->aceWho));
587                                 continue; /* don't add it */
588                         }
589                 } else {
590                         if (gace->aceFlags & ACE4_FLAG_GROUP_ID)
591                                 smbace.who.gid = gace->aceWho;
592                         else
593                                 smbace.who.uid = gace->aceWho;
594                 }
595
596                 /* remove redundant deny entries */
597                 if (i > 0 && gace->aceType == SMB_ACE4_ACCESS_DENIED_ACE_TYPE) {
598                         struct gpfs_ace_v4 *prev = gpfs_ace_ptr(gacl, i - 1);
599                         if (prev->aceType == SMB_ACE4_ACCESS_ALLOWED_ACE_TYPE &&
600                             prev->aceFlags == gace->aceFlags &&
601                             prev->aceIFlags == gace->aceIFlags &&
602                             (gace->aceMask & prev->aceMask) == 0 &&
603                             gace->aceWho == prev->aceWho) {
604                                 /* it's redundant - skip it */
605                                 continue;
606                         }
607                 }
608
609                 smbace.aceType = gace->aceType;
610                 smbace.aceFlags = gace->aceFlags;
611                 smbace.aceMask = gace->aceMask;
612                 smb_add_ace4(*ppacl, &smbace);
613         }
614
615         talloc_free(gacl);
616
617         return 0;
618 }
619
620 static NTSTATUS gpfsacl_fget_nt_acl(vfs_handle_struct *handle,
621         files_struct *fsp, uint32_t security_info,
622         TALLOC_CTX *mem_ctx,
623         struct security_descriptor **ppdesc)
624 {
625         struct SMB4ACL_T *pacl = NULL;
626         int     result;
627         struct gpfs_config_data *config;
628         TALLOC_CTX *frame = talloc_stackframe();
629         NTSTATUS status;
630
631         *ppdesc = NULL;
632
633         SMB_VFS_HANDLE_GET_DATA(handle, config,
634                                 struct gpfs_config_data,
635                                 return NT_STATUS_INTERNAL_ERROR);
636
637         if (!config->acl) {
638                 status = SMB_VFS_NEXT_FGET_NT_ACL(handle, fsp, security_info,
639                                                   mem_ctx, ppdesc);
640                 TALLOC_FREE(frame);
641                 return status;
642         }
643
644         result = gpfs_get_nfs4_acl(frame, fsp->fsp_name->base_name, &pacl);
645
646         if (result == 0) {
647                 status = smb_fget_nt_acl_nfs4(fsp, &config->nfs4_params,
648                                               security_info,
649                                               mem_ctx, ppdesc, pacl);
650                 TALLOC_FREE(frame);
651                 return status;
652         }
653
654         if (result > 0) {
655                 DEBUG(10, ("retrying with posix acl...\n"));
656                 status = posix_fget_nt_acl(fsp, security_info,
657                                            mem_ctx, ppdesc);
658                 TALLOC_FREE(frame);
659                 return status;
660         }
661
662         TALLOC_FREE(frame);
663
664         /* GPFS ACL was not read, something wrong happened, error code is set in errno */
665         return map_nt_error_from_unix(errno);
666 }
667
668 static NTSTATUS gpfsacl_get_nt_acl_at(vfs_handle_struct *handle,
669                                 struct files_struct *dirfsp,
670                                 const struct smb_filename *smb_fname,
671                                 uint32_t security_info,
672                                 TALLOC_CTX *mem_ctx,
673                                 struct security_descriptor **ppdesc)
674 {
675         struct SMB4ACL_T *pacl = NULL;
676         int     result;
677         struct gpfs_config_data *config;
678         TALLOC_CTX *frame = talloc_stackframe();
679         NTSTATUS status;
680
681         SMB_ASSERT(dirfsp == handle->conn->cwd_fsp);
682
683         *ppdesc = NULL;
684
685         SMB_VFS_HANDLE_GET_DATA(handle, config,
686                                 struct gpfs_config_data,
687                                 return NT_STATUS_INTERNAL_ERROR);
688
689         if (!config->acl) {
690                 status = SMB_VFS_NEXT_GET_NT_ACL_AT(handle,
691                                                 dirfsp,
692                                                 smb_fname,
693                                                 security_info,
694                                                 mem_ctx, ppdesc);
695                 TALLOC_FREE(frame);
696                 return status;
697         }
698
699         result = gpfs_get_nfs4_acl(frame, smb_fname->base_name, &pacl);
700
701         if (result == 0) {
702                 status = smb_get_nt_acl_nfs4(handle->conn, smb_fname,
703                                              &config->nfs4_params,
704                                              security_info, mem_ctx, ppdesc,
705                                              pacl);
706                 TALLOC_FREE(frame);
707                 return status;
708         }
709
710         if (result > 0) {
711                 DEBUG(10, ("retrying with posix acl...\n"));
712                 status = posix_get_nt_acl(handle->conn, smb_fname,
713                                           security_info, mem_ctx, ppdesc);
714                 TALLOC_FREE(frame);
715                 return status;
716         }
717
718         /* GPFS ACL was not read, something wrong happened, error code is set in errno */
719         TALLOC_FREE(frame);
720         return map_nt_error_from_unix(errno);
721 }
722
723 static bool vfs_gpfs_nfs4_ace_to_gpfs_ace(SMB_ACE4PROP_T *nfs4_ace,
724                                           struct gpfs_ace_v4 *gace,
725                                           uid_t owner_uid)
726 {
727         gace->aceType = nfs4_ace->aceType;
728         gace->aceFlags = nfs4_ace->aceFlags;
729         gace->aceMask = nfs4_ace->aceMask;
730
731         if (nfs4_ace->flags & SMB_ACE4_ID_SPECIAL) {
732                 switch(nfs4_ace->who.special_id) {
733                 case SMB_ACE4_WHO_EVERYONE:
734                         gace->aceIFlags = ACE4_IFLAG_SPECIAL_ID;
735                         gace->aceWho = ACE4_SPECIAL_EVERYONE;
736                         break;
737                 case SMB_ACE4_WHO_OWNER:
738                         /*
739                          * With GPFS it is not possible to deny ACL or
740                          * attribute access to the owner. Setting an
741                          * ACL with such an entry is not possible.
742                          * Denying ACL or attribute access for the
743                          * owner through a named ACL entry can be
744                          * stored in an ACL, it is just not effective.
745                          *
746                          * Map this case to a named entry to allow at
747                          * least setting this ACL, which will be
748                          * enforced by the smbd permission check. Do
749                          * not do this for an inheriting OWNER entry,
750                          * as this represents a CREATOR OWNER ACE. The
751                          * remaining limitation is that CREATOR OWNER
752                          * cannot deny ACL or attribute access.
753                          */
754                         if (!nfs_ace_is_inherit(nfs4_ace) &&
755                             nfs4_ace->aceType ==
756                                         SMB_ACE4_ACCESS_DENIED_ACE_TYPE &&
757                             nfs4_ace->aceMask & (SMB_ACE4_READ_ATTRIBUTES|
758                                                  SMB_ACE4_WRITE_ATTRIBUTES|
759                                                  SMB_ACE4_READ_ACL|
760                                                  SMB_ACE4_WRITE_ACL)) {
761                                 gace->aceIFlags = 0;
762                                 gace->aceWho = owner_uid;
763                         } else {
764                                 gace->aceIFlags = ACE4_IFLAG_SPECIAL_ID;
765                                 gace->aceWho = ACE4_SPECIAL_OWNER;
766                         }
767                         break;
768                 case SMB_ACE4_WHO_GROUP:
769                         gace->aceIFlags = ACE4_IFLAG_SPECIAL_ID;
770                         gace->aceWho = ACE4_SPECIAL_GROUP;
771                         break;
772                 default:
773                         DBG_WARNING("Unsupported special_id %d\n",
774                                     nfs4_ace->who.special_id);
775                         return false;
776                 }
777
778                 return true;
779         }
780
781         gace->aceIFlags = 0;
782         gace->aceWho = (nfs4_ace->aceFlags & SMB_ACE4_IDENTIFIER_GROUP) ?
783                 nfs4_ace->who.gid : nfs4_ace->who.uid;
784
785         return true;
786 }
787
788 static struct gpfs_acl *vfs_gpfs_smbacl2gpfsacl(TALLOC_CTX *mem_ctx,
789                                                 files_struct *fsp,
790                                                 struct SMB4ACL_T *smbacl,
791                                                 bool controlflags)
792 {
793         struct gpfs_acl *gacl;
794         gpfs_aclLen_t gacl_len;
795         struct SMB4ACE_T *smbace;
796
797         gacl_len = offsetof(gpfs_acl_t, ace_v4) + sizeof(unsigned int)
798                 + smb_get_naces(smbacl) * sizeof(gpfs_ace_v4_t);
799
800         gacl = (struct gpfs_acl *)TALLOC_SIZE(mem_ctx, gacl_len);
801         if (gacl == NULL) {
802                 DEBUG(0, ("talloc failed\n"));
803                 errno = ENOMEM;
804                 return NULL;
805         }
806
807         gacl->acl_level = GPFS_ACL_LEVEL_BASE;
808         gacl->acl_version = GPFS_ACL_VERSION_NFS4;
809         gacl->acl_type = GPFS_ACL_TYPE_NFS4;
810         gacl->acl_nace = 0; /* change later... */
811
812         if (controlflags) {
813                 gacl->acl_level = GPFS_ACL_LEVEL_V4FLAGS;
814                 sd2gpfs_control(smbacl4_get_controlflags(smbacl), gacl);
815         }
816
817         for (smbace=smb_first_ace4(smbacl); smbace!=NULL; smbace = smb_next_ace4(smbace)) {
818                 struct gpfs_ace_v4 *gace = gpfs_ace_ptr(gacl, gacl->acl_nace);
819                 SMB_ACE4PROP_T  *aceprop = smb_get_ace4(smbace);
820                 bool add_ace;
821
822                 add_ace = vfs_gpfs_nfs4_ace_to_gpfs_ace(aceprop, gace,
823                                                         fsp->fsp_name->st.st_ex_uid);
824                 if (!add_ace) {
825                         continue;
826                 }
827
828                 gacl->acl_nace++;
829         }
830         gacl->acl_len = (char *)gpfs_ace_ptr(gacl, gacl->acl_nace)
831                 - (char *)gacl;
832         return gacl;
833 }
834
835 static bool gpfsacl_process_smbacl(vfs_handle_struct *handle,
836                                    files_struct *fsp,
837                                    struct SMB4ACL_T *smbacl)
838 {
839         int ret;
840         struct gpfs_acl *gacl;
841         TALLOC_CTX *mem_ctx = talloc_tos();
842
843         gacl = vfs_gpfs_smbacl2gpfsacl(mem_ctx, fsp, smbacl, true);
844         if (gacl == NULL) { /* out of memory */
845                 return False;
846         }
847         ret = gpfswrap_putacl(fsp->fsp_name->base_name,
848                               GPFS_PUTACL_STRUCT | GPFS_ACL_SAMBA, gacl);
849
850         if ((ret != 0) && (errno == EINVAL)) {
851                 DEBUG(10, ("Retry without nfs41 control flags\n"));
852                 talloc_free(gacl);
853                 gacl = vfs_gpfs_smbacl2gpfsacl(mem_ctx, fsp, smbacl, false);
854                 if (gacl == NULL) { /* out of memory */
855                         return False;
856                 }
857                 ret = gpfswrap_putacl(fsp->fsp_name->base_name,
858                                       GPFS_PUTACL_STRUCT | GPFS_ACL_SAMBA,
859                                       gacl);
860         }
861
862         if (ret != 0) {
863                 DEBUG(8, ("gpfs_putacl failed with %s\n", strerror(errno)));
864                 gpfs_dumpacl(8, gacl);
865                 return False;
866         }
867
868         DEBUG(10, ("gpfs_putacl succeeded\n"));
869         return True;
870 }
871
872 static NTSTATUS gpfsacl_set_nt_acl_internal(vfs_handle_struct *handle, files_struct *fsp, uint32_t security_info_sent, const struct security_descriptor *psd)
873 {
874         struct gpfs_acl *acl;
875         NTSTATUS result = NT_STATUS_ACCESS_DENIED;
876
877         acl = (struct gpfs_acl*) vfs_gpfs_getacl(talloc_tos(),
878                                                  fsp->fsp_name->base_name,
879                                                  false, 0);
880         if (acl == NULL) {
881                 return map_nt_error_from_unix(errno);
882         }
883
884         if (acl->acl_version == GPFS_ACL_VERSION_NFS4) {
885                 struct gpfs_config_data *config;
886
887                 if (lp_parm_bool(fsp->conn->params->service, "gpfs",
888                                  "refuse_dacl_protected", false)
889                     && (psd->type&SEC_DESC_DACL_PROTECTED)) {
890                         DEBUG(2, ("Rejecting unsupported ACL with DACL_PROTECTED bit set\n"));
891                         talloc_free(acl);
892                         return NT_STATUS_NOT_SUPPORTED;
893                 }
894
895                 SMB_VFS_HANDLE_GET_DATA(handle, config,
896                                         struct gpfs_config_data,
897                                         return NT_STATUS_INTERNAL_ERROR);
898
899                 result = smb_set_nt_acl_nfs4(handle,
900                         fsp, &config->nfs4_params, security_info_sent, psd,
901                         gpfsacl_process_smbacl);
902         } else { /* assume POSIX ACL - by default... */
903                 result = set_nt_acl(fsp, security_info_sent, psd);
904         }
905
906         talloc_free(acl);
907         return result;
908 }
909
910 static NTSTATUS gpfsacl_fset_nt_acl(vfs_handle_struct *handle, files_struct *fsp, uint32_t security_info_sent, const struct security_descriptor *psd)
911 {
912         struct gpfs_config_data *config;
913
914         SMB_VFS_HANDLE_GET_DATA(handle, config,
915                                 struct gpfs_config_data,
916                                 return NT_STATUS_INTERNAL_ERROR);
917
918         if (!config->acl) {
919                 return SMB_VFS_NEXT_FSET_NT_ACL(handle, fsp, security_info_sent, psd);
920         }
921
922         return gpfsacl_set_nt_acl_internal(handle, fsp, security_info_sent, psd);
923 }
924
925 static SMB_ACL_T gpfs2smb_acl(const struct gpfs_acl *pacl, TALLOC_CTX *mem_ctx)
926 {
927         SMB_ACL_T result;
928         gpfs_aclCount_t i;
929
930         result = sys_acl_init(mem_ctx);
931         if (result == NULL) {
932                 errno = ENOMEM;
933                 return NULL;
934         }
935
936         result->count = pacl->acl_nace;
937         result->acl = talloc_realloc(result, result->acl, struct smb_acl_entry,
938                                      result->count);
939         if (result->acl == NULL) {
940                 TALLOC_FREE(result);
941                 errno = ENOMEM;
942                 return NULL;
943         }
944
945         for (i=0; i<pacl->acl_nace; i++) {
946                 struct smb_acl_entry *ace = &result->acl[i];
947                 const struct gpfs_ace_v1 *g_ace = &pacl->ace_v1[i];
948
949                 DEBUG(10, ("Converting type %d id %lu perm %x\n",
950                            (int)g_ace->ace_type, (unsigned long)g_ace->ace_who,
951                            (int)g_ace->ace_perm));
952
953                 switch (g_ace->ace_type) {
954                 case GPFS_ACL_USER:
955                         ace->a_type = SMB_ACL_USER;
956                         ace->info.user.uid = (uid_t)g_ace->ace_who;
957                         break;
958                 case GPFS_ACL_USER_OBJ:
959                         ace->a_type = SMB_ACL_USER_OBJ;
960                         break;
961                 case GPFS_ACL_GROUP:
962                         ace->a_type = SMB_ACL_GROUP;
963                         ace->info.group.gid = (gid_t)g_ace->ace_who;
964                         break;
965                 case GPFS_ACL_GROUP_OBJ:
966                         ace->a_type = SMB_ACL_GROUP_OBJ;
967                         break;
968                 case GPFS_ACL_OTHER:
969                         ace->a_type = SMB_ACL_OTHER;
970                         break;
971                 case GPFS_ACL_MASK:
972                         ace->a_type = SMB_ACL_MASK;
973                         break;
974                 default:
975                         DEBUG(10, ("Got invalid ace_type: %d\n",
976                                    g_ace->ace_type));
977                         TALLOC_FREE(result);
978                         errno = EINVAL;
979                         return NULL;
980                 }
981
982                 ace->a_perm = 0;
983                 ace->a_perm |= (g_ace->ace_perm & ACL_PERM_READ) ?
984                         SMB_ACL_READ : 0;
985                 ace->a_perm |= (g_ace->ace_perm & ACL_PERM_WRITE) ?
986                         SMB_ACL_WRITE : 0;
987                 ace->a_perm |= (g_ace->ace_perm & ACL_PERM_EXECUTE) ?
988                         SMB_ACL_EXECUTE : 0;
989
990                 DEBUGADD(10, ("Converted to %d perm %x\n",
991                               ace->a_type, ace->a_perm));
992         }
993
994         return result;
995 }
996
997 static SMB_ACL_T gpfsacl_get_posix_acl(const char *path, gpfs_aclType_t type,
998                                        TALLOC_CTX *mem_ctx)
999 {
1000         struct gpfs_acl *pacl;
1001         SMB_ACL_T result = NULL;
1002
1003         pacl = vfs_gpfs_getacl(talloc_tos(), path, false, type);
1004
1005         if (pacl == NULL) {
1006                 DEBUG(10, ("vfs_gpfs_getacl failed for %s with %s\n",
1007                            path, strerror(errno)));
1008                 if (errno == 0) {
1009                         errno = EINVAL;
1010                 }
1011                 goto done;
1012         }
1013
1014         if (pacl->acl_version != GPFS_ACL_VERSION_POSIX) {
1015                 DEBUG(10, ("Got acl version %d, expected %d\n",
1016                            pacl->acl_version, GPFS_ACL_VERSION_POSIX));
1017                 errno = EINVAL;
1018                 goto done;
1019         }
1020
1021         DEBUG(10, ("len: %d, level: %d, version: %d, nace: %d\n",
1022                    pacl->acl_len, pacl->acl_level, pacl->acl_version,
1023                    pacl->acl_nace));
1024
1025         result = gpfs2smb_acl(pacl, mem_ctx);
1026         if (result != NULL) {
1027                 errno = 0;
1028         }
1029
1030  done:
1031
1032         if (pacl != NULL) {
1033                 talloc_free(pacl);
1034         }
1035         if (errno != 0) {
1036                 TALLOC_FREE(result);
1037         }
1038         return result;
1039 }
1040
1041 static SMB_ACL_T gpfsacl_sys_acl_get_file(vfs_handle_struct *handle,
1042                                           const struct smb_filename *smb_fname,
1043                                           SMB_ACL_TYPE_T type,
1044                                           TALLOC_CTX *mem_ctx)
1045 {
1046         gpfs_aclType_t gpfs_type;
1047         struct gpfs_config_data *config;
1048
1049         SMB_VFS_HANDLE_GET_DATA(handle, config,
1050                                 struct gpfs_config_data,
1051                                 return NULL);
1052
1053         if (!config->acl) {
1054                 return SMB_VFS_NEXT_SYS_ACL_GET_FILE(handle, smb_fname,
1055                                                      type, mem_ctx);
1056         }
1057
1058         switch(type) {
1059         case SMB_ACL_TYPE_ACCESS:
1060                 gpfs_type = GPFS_ACL_TYPE_ACCESS;
1061                 break;
1062         case SMB_ACL_TYPE_DEFAULT:
1063                 gpfs_type = GPFS_ACL_TYPE_DEFAULT;
1064                 break;
1065         default:
1066                 DEBUG(0, ("Got invalid type: %d\n", type));
1067                 smb_panic("exiting");
1068         }
1069
1070         return gpfsacl_get_posix_acl(smb_fname->base_name, gpfs_type, mem_ctx);
1071 }
1072
1073 static SMB_ACL_T gpfsacl_sys_acl_get_fd(vfs_handle_struct *handle,
1074                                         files_struct *fsp,
1075                                         TALLOC_CTX *mem_ctx)
1076 {
1077         struct gpfs_config_data *config;
1078
1079         SMB_VFS_HANDLE_GET_DATA(handle, config,
1080                                 struct gpfs_config_data,
1081                                 return NULL);
1082
1083         if (!config->acl) {
1084                 return SMB_VFS_NEXT_SYS_ACL_GET_FD(handle, fsp, mem_ctx);
1085         }
1086
1087         return gpfsacl_get_posix_acl(fsp->fsp_name->base_name,
1088                                      GPFS_ACL_TYPE_ACCESS, mem_ctx);
1089 }
1090
1091 static int gpfsacl_sys_acl_blob_get_file(vfs_handle_struct *handle,
1092                                       const struct smb_filename *smb_fname,
1093                                       TALLOC_CTX *mem_ctx,
1094                                       char **blob_description,
1095                                       DATA_BLOB *blob)
1096 {
1097         struct gpfs_config_data *config;
1098         struct gpfs_opaque_acl *acl = NULL;
1099         DATA_BLOB aclblob;
1100         int result;
1101         const char *path_p = smb_fname->base_name;
1102
1103         SMB_VFS_HANDLE_GET_DATA(handle, config,
1104                                 struct gpfs_config_data,
1105                                 return -1);
1106
1107         if (!config->acl) {
1108                 return SMB_VFS_NEXT_SYS_ACL_BLOB_GET_FILE(handle, smb_fname,
1109                                                           mem_ctx,
1110                                                           blob_description,
1111                                                           blob);
1112         }
1113
1114         errno = 0;
1115         acl = (struct gpfs_opaque_acl *)
1116                         vfs_gpfs_getacl(mem_ctx,
1117                                         path_p,
1118                                         true,
1119                                         GPFS_ACL_TYPE_NFS4);
1120
1121         if (errno) {
1122                 DEBUG(5, ("vfs_gpfs_getacl finished with errno %d: %s\n",
1123                                         errno, strerror(errno)));
1124
1125                 /* EINVAL means POSIX ACL, bail out on other cases */
1126                 if (errno != EINVAL) {
1127                         return -1;
1128                 }
1129         }
1130
1131         if (acl != NULL) {
1132                 /*
1133                  * file has NFSv4 ACL
1134                  *
1135                  * we only need the actual ACL blob here
1136                  * acl_version will always be NFS4 because we asked
1137                  * for NFS4
1138                  * acl_type is only used for POSIX ACLs
1139                  */
1140                 aclblob.data = (uint8_t*) acl->acl_var_data;
1141                 aclblob.length = acl->acl_buffer_len;
1142
1143                 *blob_description = talloc_strdup(mem_ctx, "gpfs_nfs4_acl");
1144                 if (!*blob_description) {
1145                         talloc_free(acl);
1146                         errno = ENOMEM;
1147                         return -1;
1148                 }
1149
1150                 result = non_posix_sys_acl_blob_get_file_helper(handle, smb_fname,
1151                                                                 aclblob,
1152                                                                 mem_ctx, blob);
1153
1154                 talloc_free(acl);
1155                 return result;
1156         }
1157
1158         /* fall back to POSIX ACL */
1159         return posix_sys_acl_blob_get_file(handle, smb_fname, mem_ctx,
1160                                            blob_description, blob);
1161 }
1162
1163 static int gpfsacl_sys_acl_blob_get_fd(vfs_handle_struct *handle,
1164                                       files_struct *fsp,
1165                                       TALLOC_CTX *mem_ctx,
1166                                       char **blob_description,
1167                                       DATA_BLOB *blob)
1168 {
1169         struct gpfs_config_data *config;
1170         struct gpfs_opaque_acl *acl = NULL;
1171         DATA_BLOB aclblob;
1172         int result;
1173
1174         SMB_VFS_HANDLE_GET_DATA(handle, config,
1175                                 struct gpfs_config_data,
1176                                 return -1);
1177
1178         if (!config->acl) {
1179                 return SMB_VFS_NEXT_SYS_ACL_BLOB_GET_FD(handle, fsp, mem_ctx,
1180                                                         blob_description, blob);
1181         }
1182
1183         errno = 0;
1184         acl = (struct gpfs_opaque_acl *) vfs_gpfs_getacl(mem_ctx,
1185                                                 fsp->fsp_name->base_name,
1186                                                 true,
1187                                                 GPFS_ACL_TYPE_NFS4);
1188
1189         if (errno) {
1190                 DEBUG(5, ("vfs_gpfs_getacl finished with errno %d: %s\n",
1191                                         errno, strerror(errno)));
1192
1193                 /* EINVAL means POSIX ACL, bail out on other cases */
1194                 if (errno != EINVAL) {
1195                         return -1;
1196                 }
1197         }
1198
1199         if (acl != NULL) {
1200                 /*
1201                  * file has NFSv4 ACL
1202                  *
1203                  * we only need the actual ACL blob here
1204                  * acl_version will always be NFS4 because we asked
1205                  * for NFS4
1206                  * acl_type is only used for POSIX ACLs
1207                  */
1208                 aclblob.data = (uint8_t*) acl->acl_var_data;
1209                 aclblob.length = acl->acl_buffer_len;
1210
1211                 *blob_description = talloc_strdup(mem_ctx, "gpfs_nfs4_acl");
1212                 if (!*blob_description) {
1213                         talloc_free(acl);
1214                         errno = ENOMEM;
1215                         return -1;
1216                 }
1217
1218                 result = non_posix_sys_acl_blob_get_fd_helper(handle, fsp,
1219                                                               aclblob, mem_ctx,
1220                                                               blob);
1221
1222                 talloc_free(acl);
1223                 return result;
1224         }
1225
1226         /* fall back to POSIX ACL */
1227         return posix_sys_acl_blob_get_fd(handle, fsp, mem_ctx,
1228                                          blob_description, blob);
1229 }
1230
1231 static struct gpfs_acl *smb2gpfs_acl(const SMB_ACL_T pacl,
1232                                      SMB_ACL_TYPE_T type)
1233 {
1234         gpfs_aclLen_t len;
1235         struct gpfs_acl *result;
1236         int i;
1237
1238         DEBUG(10, ("smb2gpfs_acl: Got ACL with %d entries\n", pacl->count));
1239
1240         len = offsetof(gpfs_acl_t, ace_v1) + (pacl->count) *
1241                 sizeof(gpfs_ace_v1_t);
1242
1243         result = (struct gpfs_acl *)SMB_MALLOC(len);
1244         if (result == NULL) {
1245                 errno = ENOMEM;
1246                 return result;
1247         }
1248
1249         result->acl_len = len;
1250         result->acl_level = 0;
1251         result->acl_version = GPFS_ACL_VERSION_POSIX;
1252         result->acl_type = (type == SMB_ACL_TYPE_DEFAULT) ?
1253                 GPFS_ACL_TYPE_DEFAULT : GPFS_ACL_TYPE_ACCESS;
1254         result->acl_nace = pacl->count;
1255
1256         for (i=0; i<pacl->count; i++) {
1257                 const struct smb_acl_entry *ace = &pacl->acl[i];
1258                 struct gpfs_ace_v1 *g_ace = &result->ace_v1[i];
1259
1260                 DEBUG(10, ("Converting type %d perm %x\n",
1261                            (int)ace->a_type, (int)ace->a_perm));
1262
1263                 g_ace->ace_perm = 0;
1264
1265                 switch(ace->a_type) {
1266                 case SMB_ACL_USER:
1267                         g_ace->ace_type = GPFS_ACL_USER;
1268                         g_ace->ace_who = (gpfs_uid_t)ace->info.user.uid;
1269                         break;
1270                 case SMB_ACL_USER_OBJ:
1271                         g_ace->ace_type = GPFS_ACL_USER_OBJ;
1272                         g_ace->ace_perm |= ACL_PERM_CONTROL;
1273                         g_ace->ace_who = 0;
1274                         break;
1275                 case SMB_ACL_GROUP:
1276                         g_ace->ace_type = GPFS_ACL_GROUP;
1277                         g_ace->ace_who = (gpfs_uid_t)ace->info.group.gid;
1278                         break;
1279                 case SMB_ACL_GROUP_OBJ:
1280                         g_ace->ace_type = GPFS_ACL_GROUP_OBJ;
1281                         g_ace->ace_who = 0;
1282                         break;
1283                 case SMB_ACL_MASK:
1284                         g_ace->ace_type = GPFS_ACL_MASK;
1285                         g_ace->ace_perm = 0x8f;
1286                         g_ace->ace_who = 0;
1287                         break;
1288                 case SMB_ACL_OTHER:
1289                         g_ace->ace_type = GPFS_ACL_OTHER;
1290                         g_ace->ace_who = 0;
1291                         break;
1292                 default:
1293                         DEBUG(10, ("Got invalid ace_type: %d\n", ace->a_type));
1294                         errno = EINVAL;
1295                         SAFE_FREE(result);
1296                         return NULL;
1297                 }
1298
1299                 g_ace->ace_perm |= (ace->a_perm & SMB_ACL_READ) ?
1300                         ACL_PERM_READ : 0;
1301                 g_ace->ace_perm |= (ace->a_perm & SMB_ACL_WRITE) ?
1302                         ACL_PERM_WRITE : 0;
1303                 g_ace->ace_perm |= (ace->a_perm & SMB_ACL_EXECUTE) ?
1304                         ACL_PERM_EXECUTE : 0;
1305
1306                 DEBUGADD(10, ("Converted to %d id %d perm %x\n",
1307                               g_ace->ace_type, g_ace->ace_who, g_ace->ace_perm));
1308         }
1309
1310         return result;
1311 }
1312
1313 static int gpfsacl_sys_acl_set_fd(vfs_handle_struct *handle,
1314                                   files_struct *fsp,
1315                                   SMB_ACL_TYPE_T type,
1316                                   SMB_ACL_T theacl)
1317 {
1318         struct gpfs_config_data *config;
1319         struct gpfs_acl *gpfs_acl = NULL;
1320         int result;
1321
1322         SMB_VFS_HANDLE_GET_DATA(handle, config,
1323                                 struct gpfs_config_data,
1324                                 return -1);
1325
1326         if (!config->acl) {
1327                 return SMB_VFS_NEXT_SYS_ACL_SET_FD(handle, fsp, type, theacl);
1328         }
1329
1330         gpfs_acl = smb2gpfs_acl(theacl, type);
1331         if (gpfs_acl == NULL) {
1332                 return -1;
1333         }
1334
1335         /*
1336          * This is no longer a handle based call.
1337          */
1338         result = gpfswrap_putacl(fsp->fsp_name->base_name,
1339                                  GPFS_PUTACL_STRUCT|GPFS_ACL_SAMBA,
1340                                  gpfs_acl);
1341         SAFE_FREE(gpfs_acl);
1342         return result;
1343 }
1344
1345 static int gpfsacl_sys_acl_delete_def_file(vfs_handle_struct *handle,
1346                                 const struct smb_filename *smb_fname)
1347 {
1348         struct gpfs_config_data *config;
1349
1350         SMB_VFS_HANDLE_GET_DATA(handle, config,
1351                                 struct gpfs_config_data,
1352                                 return -1);
1353
1354         if (!config->acl) {
1355                 return SMB_VFS_NEXT_SYS_ACL_DELETE_DEF_FILE(handle, smb_fname);
1356         }
1357
1358         errno = ENOTSUP;
1359         return -1;
1360 }
1361
1362 static int gpfsacl_sys_acl_delete_def_fd(vfs_handle_struct *handle,
1363                                 files_struct *fsp)
1364 {
1365         struct gpfs_config_data *config;
1366
1367         SMB_VFS_HANDLE_GET_DATA(handle, config,
1368                                 struct gpfs_config_data,
1369                                 return -1);
1370
1371         if (!config->acl) {
1372                 return SMB_VFS_NEXT_SYS_ACL_DELETE_DEF_FD(handle, fsp);
1373         }
1374
1375         errno = ENOTSUP;
1376         return -1;
1377 }
1378
1379
1380 /*
1381  * Assumed: mode bits are shiftable and standard
1382  * Output: the new aceMask field for an smb nfs4 ace
1383  */
1384 static uint32_t gpfsacl_mask_filter(uint32_t aceType, uint32_t aceMask, uint32_t rwx)
1385 {
1386         const uint32_t posix_nfs4map[3] = {
1387                 SMB_ACE4_EXECUTE, /* execute */
1388                 SMB_ACE4_WRITE_DATA | SMB_ACE4_APPEND_DATA, /* write; GPFS specific */
1389                 SMB_ACE4_READ_DATA /* read */
1390         };
1391         int     i;
1392         uint32_t        posix_mask = 0x01;
1393         uint32_t        posix_bit;
1394         uint32_t        nfs4_bits;
1395
1396         for(i=0; i<3; i++) {
1397                 nfs4_bits = posix_nfs4map[i];
1398                 posix_bit = rwx & posix_mask;
1399
1400                 if (aceType==SMB_ACE4_ACCESS_ALLOWED_ACE_TYPE) {
1401                         if (posix_bit)
1402                                 aceMask |= nfs4_bits;
1403                         else
1404                                 aceMask &= ~nfs4_bits;
1405                 } else {
1406                         /* add deny bits when suitable */
1407                         if (!posix_bit)
1408                                 aceMask |= nfs4_bits;
1409                         else
1410                                 aceMask &= ~nfs4_bits;
1411                 } /* other ace types are unexpected */
1412
1413                 posix_mask <<= 1;
1414         }
1415
1416         return aceMask;
1417 }
1418
1419 static int gpfsacl_emu_chmod(vfs_handle_struct *handle,
1420                              const struct smb_filename *fname, mode_t mode)
1421 {
1422         char *path = fname->base_name;
1423         struct SMB4ACL_T *pacl = NULL;
1424         int     result;
1425         bool    haveAllowEntry[SMB_ACE4_WHO_EVERYONE + 1] = {False, False, False, False};
1426         int     i;
1427         files_struct fake_fsp = { 0 }; /* TODO: rationalize parametrization */
1428         struct SMB4ACE_T *smbace;
1429         TALLOC_CTX *frame = talloc_stackframe();
1430
1431         DEBUG(10, ("gpfsacl_emu_chmod invoked for %s mode %o\n", path, mode));
1432
1433         result = gpfs_get_nfs4_acl(frame, path, &pacl);
1434         if (result) {
1435                 TALLOC_FREE(frame);
1436                 return result;
1437         }
1438
1439         if (mode & ~(S_IRWXU | S_IRWXG | S_IRWXO)) {
1440                 DEBUG(2, ("WARNING: cutting extra mode bits %o on %s\n", mode, path));
1441         }
1442
1443         for (smbace=smb_first_ace4(pacl); smbace!=NULL; smbace = smb_next_ace4(smbace)) {
1444                 SMB_ACE4PROP_T  *ace = smb_get_ace4(smbace);
1445                 uint32_t        specid = ace->who.special_id;
1446
1447                 if (ace->flags&SMB_ACE4_ID_SPECIAL &&
1448                     ace->aceType<=SMB_ACE4_ACCESS_DENIED_ACE_TYPE &&
1449                     specid <= SMB_ACE4_WHO_EVERYONE) {
1450
1451                         uint32_t newMask;
1452
1453                         if (ace->aceType==SMB_ACE4_ACCESS_ALLOWED_ACE_TYPE)
1454                                 haveAllowEntry[specid] = True;
1455
1456                         /* mode >> 6 for @owner, mode >> 3 for @group,
1457                          * mode >> 0 for @everyone */
1458                         newMask = gpfsacl_mask_filter(ace->aceType, ace->aceMask,
1459                                                       mode >> ((SMB_ACE4_WHO_EVERYONE - specid) * 3));
1460                         if (ace->aceMask!=newMask) {
1461                                 DEBUG(10, ("ace changed for %s (%o -> %o) id=%d\n",
1462                                            path, ace->aceMask, newMask, specid));
1463                         }
1464                         ace->aceMask = newMask;
1465                 }
1466         }
1467
1468         /* make sure we have at least ALLOW entries
1469          * for all the 3 special ids (@EVERYONE, @OWNER, @GROUP)
1470          * - if necessary
1471          */
1472         for(i = SMB_ACE4_WHO_OWNER; i<=SMB_ACE4_WHO_EVERYONE; i++) {
1473                 SMB_ACE4PROP_T ace = { 0 };
1474
1475                 if (haveAllowEntry[i]==True)
1476                         continue;
1477
1478                 ace.aceType = SMB_ACE4_ACCESS_ALLOWED_ACE_TYPE;
1479                 ace.flags |= SMB_ACE4_ID_SPECIAL;
1480                 ace.who.special_id = i;
1481
1482                 if (i==SMB_ACE4_WHO_GROUP) /* not sure it's necessary... */
1483                         ace.aceFlags |= SMB_ACE4_IDENTIFIER_GROUP;
1484
1485                 ace.aceMask = gpfsacl_mask_filter(ace.aceType, ace.aceMask,
1486                                                   mode >> ((SMB_ACE4_WHO_EVERYONE - i) * 3));
1487
1488                 /* don't add unnecessary aces */
1489                 if (!ace.aceMask)
1490                         continue;
1491
1492                 /* we add it to the END - as windows expects allow aces */
1493                 smb_add_ace4(pacl, &ace);
1494                 DEBUG(10, ("Added ALLOW ace for %s, mode=%o, id=%d, aceMask=%x\n",
1495                            path, mode, i, ace.aceMask));
1496         }
1497
1498         /* don't add complementary DENY ACEs here */
1499         fake_fsp.fsp_name = synthetic_smb_fname(frame,
1500                                                 path,
1501                                                 NULL,
1502                                                 NULL,
1503                                                 fname->twrp,
1504                                                 0);
1505         if (fake_fsp.fsp_name == NULL) {
1506                 errno = ENOMEM;
1507                 TALLOC_FREE(frame);
1508                 return -1;
1509         }
1510         /* put the acl */
1511         if (gpfsacl_process_smbacl(handle, &fake_fsp, pacl) == False) {
1512                 TALLOC_FREE(frame);
1513                 return -1;
1514         }
1515
1516         TALLOC_FREE(frame);
1517         return 0; /* ok for [f]chmod */
1518 }
1519
1520 static int vfs_gpfs_fchmod(vfs_handle_struct *handle, files_struct *fsp, mode_t mode)
1521 {
1522                  SMB_STRUCT_STAT st;
1523                  int rc;
1524
1525                  if (SMB_VFS_NEXT_FSTAT(handle, fsp, &st) != 0) {
1526                          return -1;
1527                  }
1528
1529                  /* avoid chmod() if possible, to preserve acls */
1530                  if ((st.st_ex_mode & ~S_IFMT) == mode) {
1531                          return 0;
1532                  }
1533
1534                  rc = gpfsacl_emu_chmod(handle, fsp->fsp_name,
1535                                         mode);
1536                  if (rc == 1)
1537                          return SMB_VFS_NEXT_FCHMOD(handle, fsp, mode);
1538                  return rc;
1539 }
1540
1541 static uint32_t vfs_gpfs_winattrs_to_dosmode(unsigned int winattrs)
1542 {
1543         uint32_t dosmode = 0;
1544
1545         if (winattrs & GPFS_WINATTR_ARCHIVE){
1546                 dosmode |= FILE_ATTRIBUTE_ARCHIVE;
1547         }
1548         if (winattrs & GPFS_WINATTR_HIDDEN){
1549                 dosmode |= FILE_ATTRIBUTE_HIDDEN;
1550         }
1551         if (winattrs & GPFS_WINATTR_SYSTEM){
1552                 dosmode |= FILE_ATTRIBUTE_SYSTEM;
1553         }
1554         if (winattrs & GPFS_WINATTR_READONLY){
1555                 dosmode |= FILE_ATTRIBUTE_READONLY;
1556         }
1557         if (winattrs & GPFS_WINATTR_SPARSE_FILE) {
1558                 dosmode |= FILE_ATTRIBUTE_SPARSE;
1559         }
1560         if (winattrs & GPFS_WINATTR_OFFLINE) {
1561                 dosmode |= FILE_ATTRIBUTE_OFFLINE;
1562         }
1563
1564         return dosmode;
1565 }
1566
1567 static unsigned int vfs_gpfs_dosmode_to_winattrs(uint32_t dosmode)
1568 {
1569         unsigned int winattrs = 0;
1570
1571         if (dosmode & FILE_ATTRIBUTE_ARCHIVE){
1572                 winattrs |= GPFS_WINATTR_ARCHIVE;
1573         }
1574         if (dosmode & FILE_ATTRIBUTE_HIDDEN){
1575                 winattrs |= GPFS_WINATTR_HIDDEN;
1576         }
1577         if (dosmode & FILE_ATTRIBUTE_SYSTEM){
1578                 winattrs |= GPFS_WINATTR_SYSTEM;
1579         }
1580         if (dosmode & FILE_ATTRIBUTE_READONLY){
1581                 winattrs |= GPFS_WINATTR_READONLY;
1582         }
1583         if (dosmode & FILE_ATTRIBUTE_SPARSE) {
1584                 winattrs |= GPFS_WINATTR_SPARSE_FILE;
1585         }
1586         if (dosmode & FILE_ATTRIBUTE_OFFLINE) {
1587                 winattrs |= GPFS_WINATTR_OFFLINE;
1588         }
1589
1590         return winattrs;
1591 }
1592
1593 static NTSTATUS vfs_gpfs_get_file_id(struct gpfs_iattr64 *iattr,
1594                                      uint64_t *fileid)
1595 {
1596         uint8_t input[sizeof(gpfs_ino64_t) +
1597                       sizeof(gpfs_gen64_t) +
1598                       sizeof(gpfs_snapid64_t)];
1599         uint8_t digest[gnutls_hash_get_len(GNUTLS_DIG_SHA1)];
1600         int rc;
1601
1602         DBG_DEBUG("ia_inode 0x%llx, ia_gen 0x%llx, ia_modsnapid 0x%llx\n",
1603                   iattr->ia_inode, iattr->ia_gen, iattr->ia_modsnapid);
1604
1605         SBVAL(input,
1606               0, iattr->ia_inode);
1607         SBVAL(input,
1608               sizeof(gpfs_ino64_t), iattr->ia_gen);
1609         SBVAL(input,
1610               sizeof(gpfs_ino64_t) + sizeof(gpfs_gen64_t), iattr->ia_modsnapid);
1611
1612         GNUTLS_FIPS140_SET_LAX_MODE();
1613         rc = gnutls_hash_fast(GNUTLS_DIG_SHA1, input, sizeof(input), &digest);
1614         GNUTLS_FIPS140_SET_STRICT_MODE();
1615
1616         if (rc != 0) {
1617                 return gnutls_error_to_ntstatus(rc,
1618                                                 NT_STATUS_HASH_NOT_SUPPORTED);
1619         }
1620
1621         memcpy(fileid, &digest, sizeof(*fileid));
1622         DBG_DEBUG("file_id 0x%" PRIx64 "\n", *fileid);
1623
1624         return NT_STATUS_OK;
1625 }
1626
1627 static struct timespec gpfs_timestruc64_to_timespec(struct gpfs_timestruc64 g)
1628 {
1629         return (struct timespec) { .tv_sec = g.tv_sec, .tv_nsec = g.tv_nsec };
1630 }
1631
1632 static NTSTATUS vfs_gpfs_fget_dos_attributes(struct vfs_handle_struct *handle,
1633                                              struct files_struct *fsp,
1634                                              uint32_t *dosmode)
1635 {
1636         struct gpfs_config_data *config;
1637         struct gpfs_iattr64 iattr = { };
1638         unsigned int litemask;
1639         struct timespec ts;
1640         uint64_t file_id;
1641         NTSTATUS status;
1642         int ret;
1643
1644         SMB_VFS_HANDLE_GET_DATA(handle, config,
1645                                 struct gpfs_config_data,
1646                                 return NT_STATUS_INTERNAL_ERROR);
1647
1648         if (!config->winattr) {
1649                 return SMB_VFS_NEXT_FGET_DOS_ATTRIBUTES(handle, fsp, dosmode);
1650         }
1651
1652         ret = gpfswrap_fstat_x(fsp_get_pathref_fd(fsp), &litemask, &iattr, sizeof(iattr));
1653         if (ret == -1 && errno == ENOSYS) {
1654                 return SMB_VFS_NEXT_FGET_DOS_ATTRIBUTES(handle, fsp, dosmode);
1655         }
1656
1657         if (ret == -1 && errno == EACCES) {
1658                 int saved_errno = 0;
1659
1660                 /*
1661                  * According to MS-FSA 2.1.5.1.2.1 "Algorithm to Check Access to
1662                  * an Existing File" FILE_LIST_DIRECTORY on a directory implies
1663                  * FILE_READ_ATTRIBUTES for directory entries. Being able to
1664                  * open a file implies FILE_LIST_DIRECTORY.
1665                  */
1666
1667                 set_effective_capability(DAC_OVERRIDE_CAPABILITY);
1668
1669                 ret = gpfswrap_fstat_x(fsp_get_pathref_fd(fsp), &litemask,
1670                                        &iattr, sizeof(iattr));
1671                 if (ret == -1) {
1672                         saved_errno = errno;
1673                 }
1674
1675                 drop_effective_capability(DAC_OVERRIDE_CAPABILITY);
1676
1677                 if (saved_errno != 0) {
1678                         errno = saved_errno;
1679                 }
1680         }
1681
1682         if (ret == -1) {
1683                 DBG_WARNING("Getting winattrs failed for %s: %s\n",
1684                             fsp->fsp_name->base_name, strerror(errno));
1685                 return map_nt_error_from_unix(errno);
1686         }
1687
1688         ZERO_STRUCT(file_id);
1689         status = vfs_gpfs_get_file_id(&iattr, &file_id);
1690         if (!NT_STATUS_IS_OK(status)) {
1691                 return status;
1692         }
1693
1694         ts = gpfs_timestruc64_to_timespec(iattr.ia_createtime);
1695
1696         *dosmode |= vfs_gpfs_winattrs_to_dosmode(iattr.ia_winflags);
1697         update_stat_ex_create_time(&fsp->fsp_name->st, ts);
1698         update_stat_ex_file_id(&fsp->fsp_name->st, file_id);
1699
1700         return NT_STATUS_OK;
1701 }
1702
1703 static NTSTATUS vfs_gpfs_fset_dos_attributes(struct vfs_handle_struct *handle,
1704                                              struct files_struct *fsp,
1705                                              uint32_t dosmode)
1706 {
1707         struct gpfs_config_data *config;
1708         struct gpfs_winattr attrs = { };
1709         int ret;
1710
1711         SMB_VFS_HANDLE_GET_DATA(handle, config,
1712                                 struct gpfs_config_data,
1713                                 return NT_STATUS_INTERNAL_ERROR);
1714
1715         if (!config->winattr) {
1716                 return SMB_VFS_NEXT_FSET_DOS_ATTRIBUTES(handle, fsp, dosmode);
1717         }
1718
1719         attrs.winAttrs = vfs_gpfs_dosmode_to_winattrs(dosmode);
1720         ret = gpfswrap_set_winattrs(fsp_get_io_fd(fsp),
1721                                     GPFS_WINATTR_SET_ATTRS, &attrs);
1722
1723         if (ret == -1 && errno == ENOSYS) {
1724                 return SMB_VFS_NEXT_FSET_DOS_ATTRIBUTES(handle, fsp, dosmode);
1725         }
1726
1727         if (ret == -1) {
1728                 DBG_WARNING("Setting winattrs failed for %s: %s\n",
1729                             fsp->fsp_name->base_name, strerror(errno));
1730                 return map_nt_error_from_unix(errno);
1731         }
1732
1733         return NT_STATUS_OK;
1734 }
1735
1736 static int stat_with_capability(struct vfs_handle_struct *handle,
1737                                 struct smb_filename *smb_fname, int flag)
1738 {
1739 #if defined(HAVE_FSTATAT)
1740         int fd = -1;
1741         bool ok;
1742         struct smb_filename *dir_name = NULL;
1743         struct smb_filename *rel_name = NULL;
1744         struct stat st;
1745         int ret = -1;
1746
1747         ok = parent_smb_fname(talloc_tos(),
1748                               smb_fname,
1749                               &dir_name,
1750                               &rel_name);
1751         if (!ok) {
1752                 errno = ENOMEM;
1753                 return -1;
1754         }
1755
1756         fd = open(dir_name->base_name, O_RDONLY, 0);
1757         if (fd == -1) {
1758                 TALLOC_FREE(dir_name);
1759                 return -1;
1760         }
1761
1762         set_effective_capability(DAC_OVERRIDE_CAPABILITY);
1763         ret = fstatat(fd, rel_name->base_name, &st, flag);
1764         drop_effective_capability(DAC_OVERRIDE_CAPABILITY);
1765
1766         TALLOC_FREE(dir_name);
1767         close(fd);
1768
1769         if (ret == 0) {
1770                 init_stat_ex_from_stat(
1771                         &smb_fname->st, &st,
1772                         lp_fake_directory_create_times(SNUM(handle->conn)));
1773         }
1774
1775         return ret;
1776 #else
1777         return -1;
1778 #endif
1779 }
1780
1781 static int vfs_gpfs_stat(struct vfs_handle_struct *handle,
1782                          struct smb_filename *smb_fname)
1783 {
1784         int ret;
1785         struct gpfs_config_data *config;
1786
1787         SMB_VFS_HANDLE_GET_DATA(handle, config,
1788                                 struct gpfs_config_data,
1789                                 return -1);
1790
1791         ret = SMB_VFS_NEXT_STAT(handle, smb_fname);
1792         if (ret == -1 && errno == EACCES) {
1793                 DEBUG(10, ("Trying stat with capability for %s\n",
1794                            smb_fname->base_name));
1795                 ret = stat_with_capability(handle, smb_fname, 0);
1796         }
1797         return ret;
1798 }
1799
1800 static int vfs_gpfs_lstat(struct vfs_handle_struct *handle,
1801                           struct smb_filename *smb_fname)
1802 {
1803         int ret;
1804         struct gpfs_config_data *config;
1805
1806         SMB_VFS_HANDLE_GET_DATA(handle, config,
1807                                 struct gpfs_config_data,
1808                                 return -1);
1809
1810         ret = SMB_VFS_NEXT_LSTAT(handle, smb_fname);
1811         if (ret == -1 && errno == EACCES) {
1812                 DEBUG(10, ("Trying lstat with capability for %s\n",
1813                            smb_fname->base_name));
1814                 ret = stat_with_capability(handle, smb_fname,
1815                                            AT_SYMLINK_NOFOLLOW);
1816         }
1817         return ret;
1818 }
1819
1820 static void timespec_to_gpfs_time(struct timespec ts, gpfs_timestruc_t *gt,
1821                                   int idx, int *flags)
1822 {
1823         if (!is_omit_timespec(&ts)) {
1824                 *flags |= 1 << idx;
1825                 gt[idx].tv_sec = ts.tv_sec;
1826                 gt[idx].tv_nsec = ts.tv_nsec;
1827                 DEBUG(10, ("Setting GPFS time %d, flags 0x%x\n", idx, *flags));
1828         }
1829 }
1830
1831 static int smbd_gpfs_set_times(int fd, char *path, struct smb_file_time *ft)
1832 {
1833         gpfs_timestruc_t gpfs_times[4];
1834         int flags = 0;
1835         int rc;
1836
1837         ZERO_ARRAY(gpfs_times);
1838         timespec_to_gpfs_time(ft->atime, gpfs_times, 0, &flags);
1839         timespec_to_gpfs_time(ft->mtime, gpfs_times, 1, &flags);
1840         /* No good mapping from LastChangeTime to ctime, not storing */
1841         timespec_to_gpfs_time(ft->create_time, gpfs_times, 3, &flags);
1842
1843         if (!flags) {
1844                 DBG_DEBUG("nothing to do, return to avoid EINVAL\n");
1845                 return 0;
1846         }
1847
1848         rc = gpfswrap_set_times(fd, flags, gpfs_times);
1849
1850         if (rc != 0 && errno != ENOSYS) {
1851                 DBG_WARNING("gpfs_set_times() returned with error %s for %s\n",
1852                             strerror(errno),
1853                             path);
1854         }
1855
1856         return rc;
1857 }
1858
1859 static int vfs_gpfs_fntimes(struct vfs_handle_struct *handle,
1860                 files_struct *fsp,
1861                 struct smb_file_time *ft)
1862 {
1863
1864         struct gpfs_winattr attrs;
1865         int ret;
1866         struct gpfs_config_data *config;
1867
1868         SMB_VFS_HANDLE_GET_DATA(handle,
1869                                 config,
1870                                 struct gpfs_config_data,
1871                                 return -1);
1872
1873         /* Try to use gpfs_set_times if it is enabled and available */
1874         if (config->settimes) {
1875                 ret = smbd_gpfs_set_times(fsp_get_io_fd(fsp),
1876                                           fsp->fsp_name->base_name,
1877                                           ft);
1878                 if (ret == 0 || (ret == -1 && errno != ENOSYS)) {
1879                         return ret;
1880                 }
1881         }
1882
1883         DBG_DEBUG("gpfs_set_times() not available or disabled, "
1884                   "use ntimes and winattr\n");
1885
1886         ret = SMB_VFS_NEXT_FNTIMES(handle, fsp, ft);
1887         if (ret == -1) {
1888                 /* don't complain if access was denied */
1889                 if (errno != EPERM && errno != EACCES) {
1890                         DBG_WARNING("SMB_VFS_NEXT_FNTIMES failed: %s",
1891                                     strerror(errno));
1892                 }
1893                 return -1;
1894         }
1895
1896         if (is_omit_timespec(&ft->create_time)) {
1897                 DBG_DEBUG("Create Time is NULL\n");
1898                 return 0;
1899         }
1900
1901         if (!config->winattr) {
1902                 return 0;
1903         }
1904
1905         attrs.winAttrs = 0;
1906         attrs.creationTime.tv_sec = ft->create_time.tv_sec;
1907         attrs.creationTime.tv_nsec = ft->create_time.tv_nsec;
1908
1909         ret = gpfswrap_set_winattrs(fsp_get_io_fd(fsp),
1910                                     GPFS_WINATTR_SET_CREATION_TIME,
1911                                     &attrs);
1912         if (ret == -1 && errno != ENOSYS) {
1913                 DBG_WARNING("Set GPFS ntimes failed %d\n", ret);
1914                 return -1;
1915         }
1916
1917         return 0;
1918 }
1919
1920 static int vfs_gpfs_fallocate(struct vfs_handle_struct *handle,
1921                               struct files_struct *fsp, uint32_t mode,
1922                               off_t offset, off_t len)
1923 {
1924         if (mode == (VFS_FALLOCATE_FL_PUNCH_HOLE|VFS_FALLOCATE_FL_KEEP_SIZE) &&
1925             !fsp->fsp_flags.is_sparse &&
1926             lp_strict_allocate(SNUM(fsp->conn))) {
1927                 /*
1928                  * This is from a ZERO_DATA request on a non-sparse
1929                  * file. GPFS does not support FL_KEEP_SIZE and thus
1930                  * cannot fill the whole again in the subsequent
1931                  * fallocate(FL_KEEP_SIZE). Deny this FL_PUNCH_HOLE
1932                  * call to not end up with a hole in a non-sparse
1933                  * file.
1934                  */
1935                 errno = ENOTSUP;
1936                 return -1;
1937         }
1938
1939         return SMB_VFS_NEXT_FALLOCATE(handle, fsp, mode, offset, len);
1940 }
1941
1942 static int vfs_gpfs_ftruncate(vfs_handle_struct *handle, files_struct *fsp,
1943                                 off_t len)
1944 {
1945         int result;
1946         struct gpfs_config_data *config;
1947
1948         SMB_VFS_HANDLE_GET_DATA(handle, config,
1949                                 struct gpfs_config_data,
1950                                 return -1);
1951
1952         if (!config->ftruncate) {
1953                 return SMB_VFS_NEXT_FTRUNCATE(handle, fsp, len);
1954         }
1955
1956         result = gpfswrap_ftruncate(fsp_get_io_fd(fsp), len);
1957         if ((result == -1) && (errno == ENOSYS)) {
1958                 return SMB_VFS_NEXT_FTRUNCATE(handle, fsp, len);
1959         }
1960         return result;
1961 }
1962
1963 static bool vfs_gpfs_is_offline(struct vfs_handle_struct *handle,
1964                                 const struct smb_filename *fname,
1965                                 SMB_STRUCT_STAT *sbuf)
1966 {
1967         struct gpfs_winattr attrs;
1968         struct gpfs_config_data *config;
1969         int ret;
1970
1971         SMB_VFS_HANDLE_GET_DATA(handle, config,
1972                                 struct gpfs_config_data,
1973                                 return false);
1974
1975         if (!config->winattr) {
1976                 return false;
1977         }
1978
1979         ret = gpfswrap_get_winattrs_path(fname->base_name, &attrs);
1980         if (ret == -1) {
1981                 return false;
1982         }
1983
1984         if ((attrs.winAttrs & GPFS_WINATTR_OFFLINE) != 0) {
1985                 DBG_DEBUG("%s is offline\n", fname->base_name);
1986                 return true;
1987         }
1988
1989         DBG_DEBUG("%s is online\n", fname->base_name);
1990         return false;
1991 }
1992
1993 static bool vfs_gpfs_fsp_is_offline(struct vfs_handle_struct *handle,
1994                                     struct files_struct *fsp)
1995 {
1996         struct gpfs_fsp_extension *ext;
1997
1998         ext = VFS_FETCH_FSP_EXTENSION(handle, fsp);
1999         if (ext == NULL) {
2000                 /*
2001                  * Something bad happened, always ask.
2002                  */
2003                 return vfs_gpfs_is_offline(handle, fsp->fsp_name,
2004                                            &fsp->fsp_name->st);
2005         }
2006
2007         if (ext->offline) {
2008                 /*
2009                  * As long as it's offline, ask.
2010                  */
2011                 ext->offline = vfs_gpfs_is_offline(handle, fsp->fsp_name,
2012                                                    &fsp->fsp_name->st);
2013         }
2014
2015         return ext->offline;
2016 }
2017
2018 static bool vfs_gpfs_aio_force(struct vfs_handle_struct *handle,
2019                                struct files_struct *fsp)
2020 {
2021         return vfs_gpfs_fsp_is_offline(handle, fsp);
2022 }
2023
2024 static ssize_t vfs_gpfs_sendfile(vfs_handle_struct *handle, int tofd,
2025                                  files_struct *fsp, const DATA_BLOB *hdr,
2026                                  off_t offset, size_t n)
2027 {
2028         if (vfs_gpfs_fsp_is_offline(handle, fsp)) {
2029                 errno = ENOSYS;
2030                 return -1;
2031         }
2032         return SMB_VFS_NEXT_SENDFILE(handle, tofd, fsp, hdr, offset, n);
2033 }
2034
2035 static int vfs_gpfs_connect(struct vfs_handle_struct *handle,
2036                             const char *service, const char *user)
2037 {
2038         struct gpfs_config_data *config;
2039         int ret;
2040         bool check_fstype;
2041
2042         gpfswrap_lib_init(0);
2043
2044         config = talloc_zero(handle->conn, struct gpfs_config_data);
2045         if (!config) {
2046                 DEBUG(0, ("talloc_zero() failed\n"));
2047                 errno = ENOMEM;
2048                 return -1;
2049         }
2050
2051         ret = SMB_VFS_NEXT_CONNECT(handle, service, user);
2052         if (ret < 0) {
2053                 TALLOC_FREE(config);
2054                 return ret;
2055         }
2056
2057         check_fstype = lp_parm_bool(SNUM(handle->conn), "gpfs",
2058                                     "check_fstype", true);
2059
2060         if (check_fstype && !IS_IPC(handle->conn)) {
2061                 const char *connectpath = handle->conn->connectpath;
2062                 struct statfs buf = { 0 };
2063
2064                 ret = statfs(connectpath, &buf);
2065                 if (ret != 0) {
2066                         DBG_ERR("statfs failed for share %s at path %s: %s\n",
2067                                 service, connectpath, strerror(errno));
2068                         TALLOC_FREE(config);
2069                         return ret;
2070                 }
2071
2072                 if (buf.f_type != GPFS_SUPER_MAGIC) {
2073                         DBG_ERR("SMB share %s, path %s not in GPFS file system."
2074                                 " statfs magic: 0x%jx\n",
2075                                 service,
2076                                 connectpath,
2077                                 (uintmax_t)buf.f_type);
2078                         errno = EINVAL;
2079                         TALLOC_FREE(config);
2080                         return -1;
2081                 }
2082         }
2083
2084         ret = smbacl4_get_vfs_params(handle->conn, &config->nfs4_params);
2085         if (ret < 0) {
2086                 TALLOC_FREE(config);
2087                 return ret;
2088         }
2089
2090         config->sharemodes = lp_parm_bool(SNUM(handle->conn), "gpfs",
2091                                         "sharemodes", true);
2092
2093         config->leases = lp_parm_bool(SNUM(handle->conn), "gpfs",
2094                                         "leases", true);
2095
2096         config->hsm = lp_parm_bool(SNUM(handle->conn), "gpfs",
2097                                    "hsm", false);
2098
2099         config->syncio = lp_parm_bool(SNUM(handle->conn), "gpfs",
2100                                       "syncio", false);
2101
2102         config->winattr = lp_parm_bool(SNUM(handle->conn), "gpfs",
2103                                        "winattr", false);
2104
2105         config->ftruncate = lp_parm_bool(SNUM(handle->conn), "gpfs",
2106                                          "ftruncate", true);
2107
2108         config->getrealfilename = lp_parm_bool(SNUM(handle->conn), "gpfs",
2109                                                "getrealfilename", true);
2110
2111         config->dfreequota = lp_parm_bool(SNUM(handle->conn), "gpfs",
2112                                           "dfreequota", false);
2113
2114         config->acl = lp_parm_bool(SNUM(handle->conn), "gpfs", "acl", true);
2115
2116         config->settimes = lp_parm_bool(SNUM(handle->conn), "gpfs",
2117                                         "settimes", true);
2118         config->recalls = lp_parm_bool(SNUM(handle->conn), "gpfs",
2119                                        "recalls", true);
2120
2121         SMB_VFS_HANDLE_SET_DATA(handle, config,
2122                                 NULL, struct gpfs_config_data,
2123                                 return -1);
2124
2125         if (config->leases) {
2126                 /*
2127                  * GPFS lease code is based on kernel oplock code
2128                  * so make sure it is turned on
2129                  */
2130                 if (!lp_kernel_oplocks(SNUM(handle->conn))) {
2131                         DEBUG(5, ("Enabling kernel oplocks for "
2132                                   "gpfs:leases to work\n"));
2133                         lp_do_parameter(SNUM(handle->conn), "kernel oplocks",
2134                                         "true");
2135                 }
2136
2137                 /*
2138                  * as the kernel does not properly support Level II oplocks
2139                  * and GPFS leases code is based on kernel infrastructure, we
2140                  * need to turn off Level II oplocks if gpfs:leases is enabled
2141                  */
2142                 if (lp_level2_oplocks(SNUM(handle->conn))) {
2143                         DEBUG(5, ("gpfs:leases are enabled, disabling "
2144                                   "Level II oplocks\n"));
2145                         lp_do_parameter(SNUM(handle->conn), "level2 oplocks",
2146                                         "false");
2147                 }
2148         }
2149
2150         /*
2151          * Unless we have an async implementation of get_dos_attributes turn
2152          * this off.
2153          */
2154         lp_do_parameter(SNUM(handle->conn), "smbd async dosmode", "false");
2155
2156         return 0;
2157 }
2158
2159 static int get_gpfs_quota(const char *pathname, int type, int id,
2160                           struct gpfs_quotaInfo *qi)
2161 {
2162         int ret;
2163
2164         ret = gpfswrap_quotactl(pathname, GPFS_QCMD(Q_GETQUOTA, type), id, qi);
2165
2166         if (ret) {
2167                 if (errno == GPFS_E_NO_QUOTA_INST) {
2168                         DEBUG(10, ("Quotas disabled on GPFS filesystem.\n"));
2169                 } else if (errno != ENOSYS) {
2170                         DEBUG(0, ("Get quota failed, type %d, id, %d, "
2171                                   "errno %d.\n", type, id, errno));
2172                 }
2173
2174                 return ret;
2175         }
2176
2177         DEBUG(10, ("quota type %d, id %d, blk u:%lld h:%lld s:%lld gt:%u\n",
2178                    type, id, qi->blockUsage, qi->blockHardLimit,
2179                    qi->blockSoftLimit, qi->blockGraceTime));
2180
2181         return ret;
2182 }
2183
2184 static void vfs_gpfs_disk_free_quota(struct gpfs_quotaInfo qi, time_t cur_time,
2185                                      uint64_t *dfree, uint64_t *dsize)
2186 {
2187         uint64_t usage, limit;
2188
2189         /*
2190          * The quota reporting is done in units of 1024 byte blocks, but
2191          * sys_fsusage uses units of 512 byte blocks, adjust the block number
2192          * accordingly. Also filter possibly negative usage counts from gpfs.
2193          */
2194         usage = qi.blockUsage < 0 ? 0 : (uint64_t)qi.blockUsage * 2;
2195         limit = (uint64_t)qi.blockHardLimit * 2;
2196
2197         /*
2198          * When the grace time for the exceeded soft block quota has been
2199          * exceeded, the soft block quota becomes an additional hard limit.
2200          */
2201         if (qi.blockSoftLimit &&
2202             qi.blockGraceTime && cur_time > qi.blockGraceTime) {
2203                 /* report disk as full */
2204                 *dfree = 0;
2205                 *dsize = MIN(*dsize, usage);
2206         }
2207
2208         if (!qi.blockHardLimit)
2209                 return;
2210
2211         if (usage >= limit) {
2212                 /* report disk as full */
2213                 *dfree = 0;
2214                 *dsize = MIN(*dsize, usage);
2215
2216         } else {
2217                 /* limit has not been reached, determine "free space" */
2218                 *dfree = MIN(*dfree, limit - usage);
2219                 *dsize = MIN(*dsize, limit);
2220         }
2221 }
2222
2223 static uint64_t vfs_gpfs_disk_free(vfs_handle_struct *handle,
2224                                 const struct smb_filename *smb_fname,
2225                                 uint64_t *bsize,
2226                                 uint64_t *dfree,
2227                                 uint64_t *dsize)
2228 {
2229         struct security_unix_token *utok;
2230         struct gpfs_quotaInfo qi_user = { 0 }, qi_group = { 0 };
2231         struct gpfs_config_data *config;
2232         int err;
2233         time_t cur_time;
2234
2235         SMB_VFS_HANDLE_GET_DATA(handle, config, struct gpfs_config_data,
2236                                 return (uint64_t)-1);
2237         if (!config->dfreequota) {
2238                 return SMB_VFS_NEXT_DISK_FREE(handle, smb_fname,
2239                                               bsize, dfree, dsize);
2240         }
2241
2242         err = sys_fsusage(smb_fname->base_name, dfree, dsize);
2243         if (err) {
2244                 DEBUG (0, ("Could not get fs usage, errno %d\n", errno));
2245                 return SMB_VFS_NEXT_DISK_FREE(handle, smb_fname,
2246                                               bsize, dfree, dsize);
2247         }
2248
2249         /* sys_fsusage returns units of 512 bytes */
2250         *bsize = 512;
2251
2252         DEBUG(10, ("fs dfree %llu, dsize %llu\n",
2253                    (unsigned long long)*dfree, (unsigned long long)*dsize));
2254
2255         utok = handle->conn->session_info->unix_token;
2256
2257         err = get_gpfs_quota(smb_fname->base_name,
2258                         GPFS_USRQUOTA, utok->uid, &qi_user);
2259         if (err) {
2260                 return SMB_VFS_NEXT_DISK_FREE(handle, smb_fname,
2261                                               bsize, dfree, dsize);
2262         }
2263
2264         /*
2265          * If new files created under this folder get this folder's
2266          * GID, then available space is governed by the quota of the
2267          * folder's GID, not the primary group of the creating user.
2268          */
2269         if (VALID_STAT(smb_fname->st) &&
2270             S_ISDIR(smb_fname->st.st_ex_mode) &&
2271             smb_fname->st.st_ex_mode & S_ISGID) {
2272                 become_root();
2273                 err = get_gpfs_quota(smb_fname->base_name, GPFS_GRPQUOTA,
2274                                      smb_fname->st.st_ex_gid, &qi_group);
2275                 unbecome_root();
2276
2277         } else {
2278                 err = get_gpfs_quota(smb_fname->base_name, GPFS_GRPQUOTA,
2279                                      utok->gid, &qi_group);
2280         }
2281
2282         if (err) {
2283                 return SMB_VFS_NEXT_DISK_FREE(handle, smb_fname,
2284                                               bsize, dfree, dsize);
2285         }
2286
2287         cur_time = time(NULL);
2288
2289         /* Adjust free space and size according to quota limits. */
2290         vfs_gpfs_disk_free_quota(qi_user, cur_time, dfree, dsize);
2291         vfs_gpfs_disk_free_quota(qi_group, cur_time, dfree, dsize);
2292
2293         return *dfree / 2;
2294 }
2295
2296 static int vfs_gpfs_get_quota(vfs_handle_struct *handle,
2297                                 const struct smb_filename *smb_fname,
2298                                 enum SMB_QUOTA_TYPE qtype,
2299                                 unid_t id,
2300                                 SMB_DISK_QUOTA *dq)
2301 {
2302         switch(qtype) {
2303                 /*
2304                  * User/group quota are being used for disk-free
2305                  * determination, which in this module is done directly
2306                  * by the disk-free function. It's important that this
2307                  * module does not return wrong quota values by mistake,
2308                  * which would modify the correct values set by disk-free.
2309                  * User/group quota are also being used for processing
2310                  * NT_TRANSACT_GET_USER_QUOTA in smb1 protocol, which is
2311                  * currently not supported by this module.
2312                  */
2313                 case SMB_USER_QUOTA_TYPE:
2314                 case SMB_GROUP_QUOTA_TYPE:
2315                         errno = ENOSYS;
2316                         return -1;
2317                 default:
2318                         return SMB_VFS_NEXT_GET_QUOTA(handle, smb_fname,
2319                                         qtype, id, dq);
2320         }
2321 }
2322
2323 static uint32_t vfs_gpfs_capabilities(struct vfs_handle_struct *handle,
2324                                       enum timestamp_set_resolution *p_ts_res)
2325 {
2326         struct gpfs_config_data *config;
2327         uint32_t next;
2328
2329         next = SMB_VFS_NEXT_FS_CAPABILITIES(handle, p_ts_res);
2330
2331         SMB_VFS_HANDLE_GET_DATA(handle, config,
2332                                 struct gpfs_config_data,
2333                                 return next);
2334
2335         if (config->hsm) {
2336                 next |= FILE_SUPPORTS_REMOTE_STORAGE;
2337         }
2338         return next;
2339 }
2340
2341 static int vfs_gpfs_openat(struct vfs_handle_struct *handle,
2342                            const struct files_struct *dirfsp,
2343                            const struct smb_filename *smb_fname,
2344                            files_struct *fsp,
2345                            int flags,
2346                            mode_t mode)
2347 {
2348         struct gpfs_config_data *config = NULL;
2349         struct gpfs_fsp_extension *ext = NULL;
2350         int ret;
2351
2352         SMB_VFS_HANDLE_GET_DATA(handle, config,
2353                                 struct gpfs_config_data,
2354                                 return -1);
2355
2356         if (config->hsm && !config->recalls &&
2357             vfs_gpfs_fsp_is_offline(handle, fsp))
2358         {
2359                 DBG_DEBUG("Refusing access to offline file %s\n",
2360                           fsp_str_dbg(fsp));
2361                 errno = EACCES;
2362                 return -1;
2363         }
2364
2365         if (config->syncio) {
2366                 flags |= O_SYNC;
2367         }
2368
2369         ext = VFS_ADD_FSP_EXTENSION(handle, fsp, struct gpfs_fsp_extension,
2370                                     NULL);
2371         if (ext == NULL) {
2372                 errno = ENOMEM;
2373                 return -1;
2374         }
2375
2376         /*
2377          * Assume the file is offline until gpfs tells us it's online.
2378          */
2379         *ext = (struct gpfs_fsp_extension) { .offline = true };
2380
2381         ret = SMB_VFS_NEXT_OPENAT(handle, dirfsp, smb_fname, fsp, flags, mode);
2382         if (ret == -1) {
2383                 VFS_REMOVE_FSP_EXTENSION(handle, fsp);
2384         }
2385         return ret;
2386 }
2387
2388 static ssize_t vfs_gpfs_pread(vfs_handle_struct *handle, files_struct *fsp,
2389                               void *data, size_t n, off_t offset)
2390 {
2391         ssize_t ret;
2392         bool was_offline;
2393
2394         was_offline = vfs_gpfs_fsp_is_offline(handle, fsp);
2395
2396         ret = SMB_VFS_NEXT_PREAD(handle, fsp, data, n, offset);
2397
2398         if ((ret != -1) && was_offline) {
2399                 notify_fname(handle->conn, NOTIFY_ACTION_MODIFIED,
2400                              FILE_NOTIFY_CHANGE_ATTRIBUTES,
2401                              fsp->fsp_name->base_name);
2402         }
2403
2404         return ret;
2405 }
2406
2407 struct vfs_gpfs_pread_state {
2408         struct files_struct *fsp;
2409         ssize_t ret;
2410         bool was_offline;
2411         struct vfs_aio_state vfs_aio_state;
2412 };
2413
2414 static void vfs_gpfs_pread_done(struct tevent_req *subreq);
2415
2416 static struct tevent_req *vfs_gpfs_pread_send(struct vfs_handle_struct *handle,
2417                                               TALLOC_CTX *mem_ctx,
2418                                               struct tevent_context *ev,
2419                                               struct files_struct *fsp,
2420                                               void *data, size_t n,
2421                                               off_t offset)
2422 {
2423         struct tevent_req *req, *subreq;
2424         struct vfs_gpfs_pread_state *state;
2425
2426         req = tevent_req_create(mem_ctx, &state, struct vfs_gpfs_pread_state);
2427         if (req == NULL) {
2428                 return NULL;
2429         }
2430         state->was_offline = vfs_gpfs_fsp_is_offline(handle, fsp);
2431         state->fsp = fsp;
2432         subreq = SMB_VFS_NEXT_PREAD_SEND(state, ev, handle, fsp, data,
2433                                          n, offset);
2434         if (tevent_req_nomem(subreq, req)) {
2435                 return tevent_req_post(req, ev);
2436         }
2437         tevent_req_set_callback(subreq, vfs_gpfs_pread_done, req);
2438         return req;
2439 }
2440
2441 static void vfs_gpfs_pread_done(struct tevent_req *subreq)
2442 {
2443         struct tevent_req *req = tevent_req_callback_data(
2444                 subreq, struct tevent_req);
2445         struct vfs_gpfs_pread_state *state = tevent_req_data(
2446                 req, struct vfs_gpfs_pread_state);
2447
2448         state->ret = SMB_VFS_PREAD_RECV(subreq, &state->vfs_aio_state);
2449         TALLOC_FREE(subreq);
2450         tevent_req_done(req);
2451 }
2452
2453 static ssize_t vfs_gpfs_pread_recv(struct tevent_req *req,
2454                                    struct vfs_aio_state *vfs_aio_state)
2455 {
2456         struct vfs_gpfs_pread_state *state = tevent_req_data(
2457                 req, struct vfs_gpfs_pread_state);
2458         struct files_struct *fsp = state->fsp;
2459
2460         if (tevent_req_is_unix_error(req, &vfs_aio_state->error)) {
2461                 return -1;
2462         }
2463         *vfs_aio_state = state->vfs_aio_state;
2464
2465         if ((state->ret != -1) && state->was_offline) {
2466                 DEBUG(10, ("sending notify\n"));
2467                 notify_fname(fsp->conn, NOTIFY_ACTION_MODIFIED,
2468                              FILE_NOTIFY_CHANGE_ATTRIBUTES,
2469                              fsp->fsp_name->base_name);
2470         }
2471
2472         return state->ret;
2473 }
2474
2475 static ssize_t vfs_gpfs_pwrite(vfs_handle_struct *handle, files_struct *fsp,
2476                                const void *data, size_t n, off_t offset)
2477 {
2478         ssize_t ret;
2479         bool was_offline;
2480
2481         was_offline = vfs_gpfs_fsp_is_offline(handle, fsp);
2482
2483         ret = SMB_VFS_NEXT_PWRITE(handle, fsp, data, n, offset);
2484
2485         if ((ret != -1) && was_offline) {
2486                 notify_fname(handle->conn, NOTIFY_ACTION_MODIFIED,
2487                              FILE_NOTIFY_CHANGE_ATTRIBUTES,
2488                              fsp->fsp_name->base_name);
2489         }
2490
2491         return ret;
2492 }
2493
2494 struct vfs_gpfs_pwrite_state {
2495         struct files_struct *fsp;
2496         ssize_t ret;
2497         bool was_offline;
2498         struct vfs_aio_state vfs_aio_state;
2499 };
2500
2501 static void vfs_gpfs_pwrite_done(struct tevent_req *subreq);
2502
2503 static struct tevent_req *vfs_gpfs_pwrite_send(
2504         struct vfs_handle_struct *handle,
2505         TALLOC_CTX *mem_ctx,
2506         struct tevent_context *ev,
2507         struct files_struct *fsp,
2508         const void *data, size_t n,
2509         off_t offset)
2510 {
2511         struct tevent_req *req, *subreq;
2512         struct vfs_gpfs_pwrite_state *state;
2513
2514         req = tevent_req_create(mem_ctx, &state, struct vfs_gpfs_pwrite_state);
2515         if (req == NULL) {
2516                 return NULL;
2517         }
2518         state->was_offline = vfs_gpfs_fsp_is_offline(handle, fsp);
2519         state->fsp = fsp;
2520         subreq = SMB_VFS_NEXT_PWRITE_SEND(state, ev, handle, fsp, data,
2521                                          n, offset);
2522         if (tevent_req_nomem(subreq, req)) {
2523                 return tevent_req_post(req, ev);
2524         }
2525         tevent_req_set_callback(subreq, vfs_gpfs_pwrite_done, req);
2526         return req;
2527 }
2528
2529 static void vfs_gpfs_pwrite_done(struct tevent_req *subreq)
2530 {
2531         struct tevent_req *req = tevent_req_callback_data(
2532                 subreq, struct tevent_req);
2533         struct vfs_gpfs_pwrite_state *state = tevent_req_data(
2534                 req, struct vfs_gpfs_pwrite_state);
2535
2536         state->ret = SMB_VFS_PWRITE_RECV(subreq, &state->vfs_aio_state);
2537         TALLOC_FREE(subreq);
2538         tevent_req_done(req);
2539 }
2540
2541 static ssize_t vfs_gpfs_pwrite_recv(struct tevent_req *req,
2542                                     struct vfs_aio_state *vfs_aio_state)
2543 {
2544         struct vfs_gpfs_pwrite_state *state = tevent_req_data(
2545                 req, struct vfs_gpfs_pwrite_state);
2546         struct files_struct *fsp = state->fsp;
2547
2548         if (tevent_req_is_unix_error(req, &vfs_aio_state->error)) {
2549                 return -1;
2550         }
2551         *vfs_aio_state = state->vfs_aio_state;
2552
2553         if ((state->ret != -1) && state->was_offline) {
2554                 DEBUG(10, ("sending notify\n"));
2555                 notify_fname(fsp->conn, NOTIFY_ACTION_MODIFIED,
2556                              FILE_NOTIFY_CHANGE_ATTRIBUTES,
2557                              fsp->fsp_name->base_name);
2558         }
2559
2560         return state->ret;
2561 }
2562
2563
2564 static struct vfs_fn_pointers vfs_gpfs_fns = {
2565         .connect_fn = vfs_gpfs_connect,
2566         .disk_free_fn = vfs_gpfs_disk_free,
2567         .get_quota_fn = vfs_gpfs_get_quota,
2568         .fs_capabilities_fn = vfs_gpfs_capabilities,
2569         .kernel_flock_fn = vfs_gpfs_kernel_flock,
2570         .linux_setlease_fn = vfs_gpfs_setlease,
2571         .get_real_filename_fn = vfs_gpfs_get_real_filename,
2572         .get_dos_attributes_send_fn = vfs_not_implemented_get_dos_attributes_send,
2573         .get_dos_attributes_recv_fn = vfs_not_implemented_get_dos_attributes_recv,
2574         .fget_dos_attributes_fn = vfs_gpfs_fget_dos_attributes,
2575         .fset_dos_attributes_fn = vfs_gpfs_fset_dos_attributes,
2576         .fget_nt_acl_fn = gpfsacl_fget_nt_acl,
2577         .get_nt_acl_at_fn = gpfsacl_get_nt_acl_at,
2578         .fset_nt_acl_fn = gpfsacl_fset_nt_acl,
2579         .sys_acl_get_file_fn = gpfsacl_sys_acl_get_file,
2580         .sys_acl_get_fd_fn = gpfsacl_sys_acl_get_fd,
2581         .sys_acl_blob_get_file_fn = gpfsacl_sys_acl_blob_get_file,
2582         .sys_acl_blob_get_fd_fn = gpfsacl_sys_acl_blob_get_fd,
2583         .sys_acl_set_fd_fn = gpfsacl_sys_acl_set_fd,
2584         .sys_acl_delete_def_file_fn = gpfsacl_sys_acl_delete_def_file,
2585         .sys_acl_delete_def_fd_fn = gpfsacl_sys_acl_delete_def_fd,
2586         .fchmod_fn = vfs_gpfs_fchmod,
2587         .close_fn = vfs_gpfs_close,
2588         .stat_fn = vfs_gpfs_stat,
2589         .lstat_fn = vfs_gpfs_lstat,
2590         .fntimes_fn = vfs_gpfs_fntimes,
2591         .aio_force_fn = vfs_gpfs_aio_force,
2592         .sendfile_fn = vfs_gpfs_sendfile,
2593         .fallocate_fn = vfs_gpfs_fallocate,
2594         .openat_fn = vfs_gpfs_openat,
2595         .pread_fn = vfs_gpfs_pread,
2596         .pread_send_fn = vfs_gpfs_pread_send,
2597         .pread_recv_fn = vfs_gpfs_pread_recv,
2598         .pwrite_fn = vfs_gpfs_pwrite,
2599         .pwrite_send_fn = vfs_gpfs_pwrite_send,
2600         .pwrite_recv_fn = vfs_gpfs_pwrite_recv,
2601         .ftruncate_fn = vfs_gpfs_ftruncate
2602 };
2603
2604 static_decl_vfs;
2605 NTSTATUS vfs_gpfs_init(TALLOC_CTX *ctx)
2606 {
2607         int ret;
2608
2609         ret = gpfswrap_init();
2610         if (ret != 0) {
2611                 DEBUG(1, ("Could not initialize GPFS library wrapper\n"));
2612         }
2613
2614         return smb_register_vfs(SMB_VFS_INTERFACE_VERSION, "gpfs",
2615                                 &vfs_gpfs_fns);
2616 }