1 /*
2 * 9p synthetic file system support
3 *
4 * Copyright IBM, Corp. 2011
5 *
6 * Authors:
7 * Malahal Naineni <malahal@us.ibm.com>
8 * Aneesh Kumar K.V <aneesh.kumar@linux.vnet.ibm.com>
9 *
10 * This work is licensed under the terms of the GNU GPL, version 2. See
11 * the COPYING file in the top-level directory.
12 *
13 */
14
15 /*
16 * Not so fast! You might want to read the 9p developer docs first:
17 * https://wiki.qemu.org/Documentation/9p
18 */
19
20 #include "qemu/osdep.h"
21 #include "9p.h"
22 #include "fsdev/qemu-fsdev.h"
23 #include "9p-synth.h"
24 #include "qemu/rcu.h"
25 #include "qemu/rcu_queue.h"
26 #include "qemu/cutils.h"
27 #include "system/qtest.h"
28
29 /* Root node for synth file system */
30 static V9fsSynthNode synth_root = {
31 .name = "/",
32 .actual_attr = {
33 .mode = 0555 | S_IFDIR,
34 .nlink = 1,
35 },
36 .attr = &synth_root.actual_attr,
37 };
38
39 static QemuMutex synth_mutex;
40 static int synth_node_count;
41 /* set to 1 when the synth fs is ready */
42 static int synth_fs;
43
v9fs_add_dir_node(V9fsSynthNode * parent,int mode,const char * name,V9fsSynthNodeAttr * attr,int inode)44 static V9fsSynthNode *v9fs_add_dir_node(V9fsSynthNode *parent, int mode,
45 const char *name,
46 V9fsSynthNodeAttr *attr, int inode)
47 {
48 V9fsSynthNode *node;
49
50 /* Add directory type and remove write bits */
51 mode = ((mode & 0777) | S_IFDIR) & ~(S_IWUSR | S_IWGRP | S_IWOTH);
52 node = g_new0(V9fsSynthNode, 1);
53 if (attr) {
54 /* We are adding .. or . entries */
55 node->attr = attr;
56 node->attr->nlink++;
57 } else {
58 node->attr = &node->actual_attr;
59 node->attr->inode = inode;
60 node->attr->nlink = 1;
61 /* We don't allow write to directories */
62 node->attr->mode = mode;
63 node->attr->write = NULL;
64 node->attr->read = NULL;
65 }
66 node->private = node;
67 pstrcpy(node->name, sizeof(node->name), name);
68 QLIST_INSERT_HEAD_RCU(&parent->child, node, sibling);
69 return node;
70 }
71
qemu_v9fs_synth_mkdir(V9fsSynthNode * parent,int mode,const char * name,V9fsSynthNode ** result)72 int qemu_v9fs_synth_mkdir(V9fsSynthNode *parent, int mode,
73 const char *name, V9fsSynthNode **result)
74 {
75 V9fsSynthNode *node, *tmp;
76
77 if (!synth_fs) {
78 return -EAGAIN;
79 }
80 if (!name || (strlen(name) >= NAME_MAX)) {
81 return -EINVAL;
82 }
83 if (!parent) {
84 parent = &synth_root;
85 }
86 QEMU_LOCK_GUARD(&synth_mutex);
87 QLIST_FOREACH(tmp, &parent->child, sibling) {
88 if (!strcmp(tmp->name, name)) {
89 return -EEXIST;
90 }
91 }
92 /* Add the name */
93 node = v9fs_add_dir_node(parent, mode, name, NULL, ++synth_node_count);
94 v9fs_add_dir_node(node, parent->attr->mode, "..",
95 parent->attr, parent->attr->inode);
96 v9fs_add_dir_node(node, node->attr->mode, ".",
97 node->attr, node->attr->inode);
98 *result = node;
99 return 0;
100 }
101
qemu_v9fs_synth_add_file(V9fsSynthNode * parent,int mode,const char * name,v9fs_synth_read read,v9fs_synth_write write,void * arg)102 int qemu_v9fs_synth_add_file(V9fsSynthNode *parent, int mode,
103 const char *name, v9fs_synth_read read,
104 v9fs_synth_write write, void *arg)
105 {
106 V9fsSynthNode *node, *tmp;
107
108 if (!synth_fs) {
109 return -EAGAIN;
110 }
111 if (!name || (strlen(name) >= NAME_MAX)) {
112 return -EINVAL;
113 }
114 if (!parent) {
115 parent = &synth_root;
116 }
117
118 QEMU_LOCK_GUARD(&synth_mutex);
119 QLIST_FOREACH(tmp, &parent->child, sibling) {
120 if (!strcmp(tmp->name, name)) {
121 return -EEXIST;
122 }
123 }
124 /* Add file type and remove write bits */
125 mode = ((mode & 0777) | S_IFREG);
126 node = g_new0(V9fsSynthNode, 1);
127 node->attr = &node->actual_attr;
128 node->attr->inode = ++synth_node_count;
129 node->attr->nlink = 1;
130 node->attr->read = read;
131 node->attr->write = write;
132 node->attr->mode = mode;
133 node->private = arg;
134 pstrcpy(node->name, sizeof(node->name), name);
135 QLIST_INSERT_HEAD_RCU(&parent->child, node, sibling);
136 return 0;
137 }
138
synth_fill_statbuf(V9fsSynthNode * node,struct stat * stbuf)139 static void synth_fill_statbuf(V9fsSynthNode *node, struct stat *stbuf)
140 {
141 stbuf->st_dev = 0;
142 stbuf->st_ino = node->attr->inode;
143 stbuf->st_mode = node->attr->mode;
144 stbuf->st_nlink = node->attr->nlink;
145 stbuf->st_uid = 0;
146 stbuf->st_gid = 0;
147 stbuf->st_rdev = 0;
148 stbuf->st_size = 0;
149 stbuf->st_blksize = 0;
150 stbuf->st_blocks = 0;
151 stbuf->st_atime = 0;
152 stbuf->st_mtime = 0;
153 stbuf->st_ctime = 0;
154 }
155
synth_lstat(FsContext * fs_ctx,V9fsPath * fs_path,struct stat * stbuf)156 static int synth_lstat(FsContext *fs_ctx,
157 V9fsPath *fs_path, struct stat *stbuf)
158 {
159 V9fsSynthNode *node = *(V9fsSynthNode **)fs_path->data;
160
161 synth_fill_statbuf(node, stbuf);
162 return 0;
163 }
164
synth_fstat(FsContext * fs_ctx,int fid_type,V9fsFidOpenState * fs,struct stat * stbuf)165 static int synth_fstat(FsContext *fs_ctx, int fid_type,
166 V9fsFidOpenState *fs, struct stat *stbuf)
167 {
168 V9fsSynthOpenState *synth_open = fs->private;
169 synth_fill_statbuf(synth_open->node, stbuf);
170 return 0;
171 }
172
synth_opendir(FsContext * ctx,V9fsPath * fs_path,V9fsFidOpenState * fs)173 static int synth_opendir(FsContext *ctx,
174 V9fsPath *fs_path, V9fsFidOpenState *fs)
175 {
176 V9fsSynthOpenState *synth_open;
177 V9fsSynthNode *node = *(V9fsSynthNode **)fs_path->data;
178
179 /*
180 * V9fsSynthOpenState contains 'struct dirent' which have OS-specific
181 * properties, thus it's zero cleared on allocation here and below
182 * in synth_open.
183 */
184 synth_open = g_new0(V9fsSynthOpenState, 1);
185 synth_open->node = node;
186 node->open_count++;
187 fs->private = synth_open;
188 return 0;
189 }
190
synth_closedir(FsContext * ctx,V9fsFidOpenState * fs)191 static int synth_closedir(FsContext *ctx, V9fsFidOpenState *fs)
192 {
193 V9fsSynthOpenState *synth_open = fs->private;
194 V9fsSynthNode *node = synth_open->node;
195
196 node->open_count--;
197 g_free(synth_open);
198 fs->private = NULL;
199 return 0;
200 }
201
synth_telldir(FsContext * ctx,V9fsFidOpenState * fs)202 static off_t synth_telldir(FsContext *ctx, V9fsFidOpenState *fs)
203 {
204 V9fsSynthOpenState *synth_open = fs->private;
205 return synth_open->offset;
206 }
207
synth_seekdir(FsContext * ctx,V9fsFidOpenState * fs,off_t off)208 static void synth_seekdir(FsContext *ctx, V9fsFidOpenState *fs, off_t off)
209 {
210 V9fsSynthOpenState *synth_open = fs->private;
211 synth_open->offset = off;
212 }
213
synth_rewinddir(FsContext * ctx,V9fsFidOpenState * fs)214 static void synth_rewinddir(FsContext *ctx, V9fsFidOpenState *fs)
215 {
216 synth_seekdir(ctx, fs, 0);
217 }
218
synth_direntry(V9fsSynthNode * node,struct dirent * entry,off_t off)219 static void synth_direntry(V9fsSynthNode *node,
220 struct dirent *entry, off_t off)
221 {
222 size_t sz = strlen(node->name) + 1;
223 /*
224 * 'entry' is always inside of V9fsSynthOpenState which have NAME_MAX
225 * back padding. Ensure we do not overflow it.
226 */
227 g_assert(sizeof(struct dirent) + NAME_MAX >=
228 offsetof(struct dirent, d_name) + sz);
229 memcpy(entry->d_name, node->name, sz);
230 entry->d_ino = node->attr->inode;
231 #ifdef CONFIG_DARWIN
232 entry->d_seekoff = off + 1;
233 #else
234 entry->d_off = off + 1;
235 #endif
236 }
237
synth_get_dentry(V9fsSynthNode * dir,struct dirent * entry,off_t off)238 static struct dirent *synth_get_dentry(V9fsSynthNode *dir,
239 struct dirent *entry, off_t off)
240 {
241 int i = 0;
242 V9fsSynthNode *node;
243
244 rcu_read_lock();
245 QLIST_FOREACH(node, &dir->child, sibling) {
246 /* This is the off child of the directory */
247 if (i == off) {
248 break;
249 }
250 i++;
251 }
252 rcu_read_unlock();
253 if (!node) {
254 /* end of directory */
255 return NULL;
256 }
257 synth_direntry(node, entry, off);
258 return entry;
259 }
260
synth_readdir(FsContext * ctx,V9fsFidOpenState * fs)261 static struct dirent *synth_readdir(FsContext *ctx, V9fsFidOpenState *fs)
262 {
263 struct dirent *entry;
264 V9fsSynthOpenState *synth_open = fs->private;
265 V9fsSynthNode *node = synth_open->node;
266 entry = synth_get_dentry(node, &synth_open->dent, synth_open->offset);
267 if (entry) {
268 synth_open->offset++;
269 }
270 return entry;
271 }
272
synth_open(FsContext * ctx,V9fsPath * fs_path,int flags,V9fsFidOpenState * fs)273 static int synth_open(FsContext *ctx, V9fsPath *fs_path,
274 int flags, V9fsFidOpenState *fs)
275 {
276 V9fsSynthOpenState *synth_open;
277 V9fsSynthNode *node = *(V9fsSynthNode **)fs_path->data;
278
279 synth_open = g_new0(V9fsSynthOpenState, 1);
280 synth_open->node = node;
281 node->open_count++;
282 fs->private = synth_open;
283 return 0;
284 }
285
synth_open2(FsContext * fs_ctx,V9fsPath * dir_path,const char * name,int flags,FsCred * credp,V9fsFidOpenState * fs)286 static int synth_open2(FsContext *fs_ctx, V9fsPath *dir_path,
287 const char *name, int flags,
288 FsCred *credp, V9fsFidOpenState *fs)
289 {
290 errno = ENOSYS;
291 return -1;
292 }
293
synth_close(FsContext * ctx,V9fsFidOpenState * fs)294 static int synth_close(FsContext *ctx, V9fsFidOpenState *fs)
295 {
296 V9fsSynthOpenState *synth_open = fs->private;
297 V9fsSynthNode *node = synth_open->node;
298
299 node->open_count--;
300 g_free(synth_open);
301 fs->private = NULL;
302 return 0;
303 }
304
synth_pwritev(FsContext * ctx,V9fsFidOpenState * fs,const struct iovec * iov,int iovcnt,off_t offset)305 static ssize_t synth_pwritev(FsContext *ctx, V9fsFidOpenState *fs,
306 const struct iovec *iov,
307 int iovcnt, off_t offset)
308 {
309 int i, count = 0, wcount;
310 V9fsSynthOpenState *synth_open = fs->private;
311 V9fsSynthNode *node = synth_open->node;
312 if (!node->attr->write) {
313 errno = EPERM;
314 return -1;
315 }
316 for (i = 0; i < iovcnt; i++) {
317 wcount = node->attr->write(iov[i].iov_base, iov[i].iov_len,
318 offset, node->private);
319 offset += wcount;
320 count += wcount;
321 /* If we wrote less than requested. we are done */
322 if (wcount < iov[i].iov_len) {
323 break;
324 }
325 }
326 return count;
327 }
328
synth_preadv(FsContext * ctx,V9fsFidOpenState * fs,const struct iovec * iov,int iovcnt,off_t offset)329 static ssize_t synth_preadv(FsContext *ctx, V9fsFidOpenState *fs,
330 const struct iovec *iov,
331 int iovcnt, off_t offset)
332 {
333 int i, count = 0, rcount;
334 V9fsSynthOpenState *synth_open = fs->private;
335 V9fsSynthNode *node = synth_open->node;
336 if (!node->attr->read) {
337 errno = EPERM;
338 return -1;
339 }
340 for (i = 0; i < iovcnt; i++) {
341 rcount = node->attr->read(iov[i].iov_base, iov[i].iov_len,
342 offset, node->private);
343 offset += rcount;
344 count += rcount;
345 /* If we read less than requested. we are done */
346 if (rcount < iov[i].iov_len) {
347 break;
348 }
349 }
350 return count;
351 }
352
synth_truncate(FsContext * ctx,V9fsPath * path,off_t offset)353 static int synth_truncate(FsContext *ctx, V9fsPath *path, off_t offset)
354 {
355 errno = ENOSYS;
356 return -1;
357 }
358
synth_ftruncate(FsContext * ctx,int fid_type,V9fsFidOpenState * fs,off_t size)359 static int synth_ftruncate(FsContext *ctx, int fid_type, V9fsFidOpenState *fs,
360 off_t size)
361 {
362 errno = ENOSYS;
363 return -1;
364 }
365
synth_chmod(FsContext * fs_ctx,V9fsPath * path,FsCred * credp)366 static int synth_chmod(FsContext *fs_ctx, V9fsPath *path, FsCred *credp)
367 {
368 errno = EPERM;
369 return -1;
370 }
371
synth_mknod(FsContext * fs_ctx,V9fsPath * path,const char * buf,FsCred * credp)372 static int synth_mknod(FsContext *fs_ctx, V9fsPath *path,
373 const char *buf, FsCred *credp)
374 {
375 errno = EPERM;
376 return -1;
377 }
378
synth_mkdir(FsContext * fs_ctx,V9fsPath * path,const char * buf,FsCred * credp)379 static int synth_mkdir(FsContext *fs_ctx, V9fsPath *path,
380 const char *buf, FsCred *credp)
381 {
382 errno = EPERM;
383 return -1;
384 }
385
synth_readlink(FsContext * fs_ctx,V9fsPath * path,char * buf,size_t bufsz)386 static ssize_t synth_readlink(FsContext *fs_ctx, V9fsPath *path,
387 char *buf, size_t bufsz)
388 {
389 errno = ENOSYS;
390 return -1;
391 }
392
synth_symlink(FsContext * fs_ctx,const char * oldpath,V9fsPath * newpath,const char * buf,FsCred * credp)393 static int synth_symlink(FsContext *fs_ctx, const char *oldpath,
394 V9fsPath *newpath, const char *buf, FsCred *credp)
395 {
396 errno = EPERM;
397 return -1;
398 }
399
synth_link(FsContext * fs_ctx,V9fsPath * oldpath,V9fsPath * newpath,const char * buf)400 static int synth_link(FsContext *fs_ctx, V9fsPath *oldpath,
401 V9fsPath *newpath, const char *buf)
402 {
403 errno = EPERM;
404 return -1;
405 }
406
synth_rename(FsContext * ctx,const char * oldpath,const char * newpath)407 static int synth_rename(FsContext *ctx, const char *oldpath,
408 const char *newpath)
409 {
410 errno = EPERM;
411 return -1;
412 }
413
synth_chown(FsContext * fs_ctx,V9fsPath * path,FsCred * credp)414 static int synth_chown(FsContext *fs_ctx, V9fsPath *path, FsCred *credp)
415 {
416 errno = EPERM;
417 return -1;
418 }
419
synth_utimensat(FsContext * fs_ctx,V9fsPath * path,const struct timespec * buf)420 static int synth_utimensat(FsContext *fs_ctx, V9fsPath *path,
421 const struct timespec *buf)
422 {
423 errno = EPERM;
424 return 0;
425 }
426
synth_futimens(FsContext * fs_ctx,int fid_type,V9fsFidOpenState * fs,const struct timespec * buf)427 static int synth_futimens(FsContext *fs_ctx, int fid_type, V9fsFidOpenState *fs,
428 const struct timespec *buf)
429 {
430 errno = ENOSYS;
431 return -1;
432 }
433
synth_remove(FsContext * ctx,const char * path)434 static int synth_remove(FsContext *ctx, const char *path)
435 {
436 errno = EPERM;
437 return -1;
438 }
439
synth_fsync(FsContext * ctx,int fid_type,V9fsFidOpenState * fs,int datasync)440 static int synth_fsync(FsContext *ctx, int fid_type,
441 V9fsFidOpenState *fs, int datasync)
442 {
443 errno = ENOSYS;
444 return 0;
445 }
446
synth_statfs(FsContext * s,V9fsPath * fs_path,struct statfs * stbuf)447 static int synth_statfs(FsContext *s, V9fsPath *fs_path,
448 struct statfs *stbuf)
449 {
450 stbuf->f_type = 0xABCD;
451 stbuf->f_bsize = 512;
452 stbuf->f_blocks = 0;
453 stbuf->f_files = synth_node_count;
454 #ifndef CONFIG_DARWIN
455 stbuf->f_namelen = NAME_MAX;
456 #endif
457 return 0;
458 }
459
synth_lgetxattr(FsContext * ctx,V9fsPath * path,const char * name,void * value,size_t size)460 static ssize_t synth_lgetxattr(FsContext *ctx, V9fsPath *path,
461 const char *name, void *value, size_t size)
462 {
463 errno = ENOTSUP;
464 return -1;
465 }
466
synth_llistxattr(FsContext * ctx,V9fsPath * path,void * value,size_t size)467 static ssize_t synth_llistxattr(FsContext *ctx, V9fsPath *path,
468 void *value, size_t size)
469 {
470 errno = ENOTSUP;
471 return -1;
472 }
473
synth_lsetxattr(FsContext * ctx,V9fsPath * path,const char * name,void * value,size_t size,int flags)474 static int synth_lsetxattr(FsContext *ctx, V9fsPath *path,
475 const char *name, void *value,
476 size_t size, int flags)
477 {
478 errno = ENOTSUP;
479 return -1;
480 }
481
synth_lremovexattr(FsContext * ctx,V9fsPath * path,const char * name)482 static int synth_lremovexattr(FsContext *ctx,
483 V9fsPath *path, const char *name)
484 {
485 errno = ENOTSUP;
486 return -1;
487 }
488
synth_name_to_path(FsContext * ctx,V9fsPath * dir_path,const char * name,V9fsPath * target)489 static int synth_name_to_path(FsContext *ctx, V9fsPath *dir_path,
490 const char *name, V9fsPath *target)
491 {
492 V9fsSynthNode *node;
493 V9fsSynthNode *dir_node;
494
495 /* "." and ".." are not allowed */
496 if (!strcmp(name, ".") || !strcmp(name, "..")) {
497 errno = EINVAL;
498 return -1;
499
500 }
501 if (!dir_path) {
502 dir_node = &synth_root;
503 } else {
504 dir_node = *(V9fsSynthNode **)dir_path->data;
505 }
506 if (!strcmp(name, "/")) {
507 node = dir_node;
508 goto out;
509 }
510 /* search for the name in the children */
511 rcu_read_lock();
512 QLIST_FOREACH(node, &dir_node->child, sibling) {
513 if (!strcmp(node->name, name)) {
514 break;
515 }
516 }
517 rcu_read_unlock();
518
519 if (!node) {
520 errno = ENOENT;
521 return -1;
522 }
523 out:
524 /* Copy the node pointer to fid */
525 g_free(target->data);
526 target->data = g_memdup(&node, sizeof(void *));
527 target->size = sizeof(void *);
528 return 0;
529 }
530
synth_renameat(FsContext * ctx,V9fsPath * olddir,const char * old_name,V9fsPath * newdir,const char * new_name)531 static int synth_renameat(FsContext *ctx, V9fsPath *olddir,
532 const char *old_name, V9fsPath *newdir,
533 const char *new_name)
534 {
535 errno = EPERM;
536 return -1;
537 }
538
synth_unlinkat(FsContext * ctx,V9fsPath * dir,const char * name,int flags)539 static int synth_unlinkat(FsContext *ctx, V9fsPath *dir,
540 const char *name, int flags)
541 {
542 errno = EPERM;
543 return -1;
544 }
545
v9fs_synth_qtest_write(void * buf,int len,off_t offset,void * arg)546 static ssize_t v9fs_synth_qtest_write(void *buf, int len, off_t offset,
547 void *arg)
548 {
549 return 1;
550 }
551
v9fs_synth_qtest_flush_write(void * buf,int len,off_t offset,void * arg)552 static ssize_t v9fs_synth_qtest_flush_write(void *buf, int len, off_t offset,
553 void *arg)
554 {
555 bool should_block = !!*(uint8_t *)buf;
556
557 if (should_block) {
558 /* This will cause the server to call us again until we're cancelled */
559 errno = EINTR;
560 return -1;
561 }
562
563 return 1;
564 }
565
synth_init(FsContext * ctx,Error ** errp)566 static int synth_init(FsContext *ctx, Error **errp)
567 {
568 QLIST_INIT(&synth_root.child);
569 qemu_mutex_init(&synth_mutex);
570
571 /* Add "." and ".." entries for root */
572 v9fs_add_dir_node(&synth_root, synth_root.attr->mode,
573 "..", synth_root.attr, synth_root.attr->inode);
574 v9fs_add_dir_node(&synth_root, synth_root.attr->mode,
575 ".", synth_root.attr, synth_root.attr->inode);
576
577 /* Mark the subsystem is ready for use */
578 synth_fs = 1;
579
580 if (qtest_enabled()) {
581 V9fsSynthNode *node = NULL;
582 int i, ret;
583
584 /* Directory hierarchy for WALK test */
585 for (i = 0; i < P9_MAXWELEM; i++) {
586 char *name = g_strdup_printf(QTEST_V9FS_SYNTH_WALK_FILE, i);
587
588 ret = qemu_v9fs_synth_mkdir(node, 0700, name, &node);
589 assert(!ret);
590 g_free(name);
591 }
592
593 /* File for LOPEN test */
594 ret = qemu_v9fs_synth_add_file(NULL, 0, QTEST_V9FS_SYNTH_LOPEN_FILE,
595 NULL, NULL, ctx);
596 assert(!ret);
597
598 /* File for WRITE test */
599 ret = qemu_v9fs_synth_add_file(NULL, 0, QTEST_V9FS_SYNTH_WRITE_FILE,
600 NULL, v9fs_synth_qtest_write, ctx);
601 assert(!ret);
602
603 /* File for FLUSH test */
604 ret = qemu_v9fs_synth_add_file(NULL, 0, QTEST_V9FS_SYNTH_FLUSH_FILE,
605 NULL, v9fs_synth_qtest_flush_write,
606 ctx);
607 assert(!ret);
608
609 /* Directory for READDIR test */
610 {
611 V9fsSynthNode *dir = NULL;
612 ret = qemu_v9fs_synth_mkdir(
613 NULL, 0700, QTEST_V9FS_SYNTH_READDIR_DIR, &dir
614 );
615 assert(!ret);
616 for (i = 0; i < QTEST_V9FS_SYNTH_READDIR_NFILES; ++i) {
617 char *name = g_strdup_printf(
618 QTEST_V9FS_SYNTH_READDIR_FILE, i
619 );
620 ret = qemu_v9fs_synth_add_file(
621 dir, 0, name, NULL, NULL, ctx
622 );
623 assert(!ret);
624 g_free(name);
625 }
626 }
627 }
628
629 return 0;
630 }
631
synth_has_valid_file_handle(int fid_type,V9fsFidOpenState * fs)632 static bool synth_has_valid_file_handle(int fid_type, V9fsFidOpenState *fs)
633 {
634 return false;
635 }
636
637 FileOperations synth_ops = {
638 .init = synth_init,
639 .lstat = synth_lstat,
640 .readlink = synth_readlink,
641 .close = synth_close,
642 .closedir = synth_closedir,
643 .open = synth_open,
644 .opendir = synth_opendir,
645 .rewinddir = synth_rewinddir,
646 .telldir = synth_telldir,
647 .readdir = synth_readdir,
648 .seekdir = synth_seekdir,
649 .preadv = synth_preadv,
650 .pwritev = synth_pwritev,
651 .chmod = synth_chmod,
652 .mknod = synth_mknod,
653 .mkdir = synth_mkdir,
654 .fstat = synth_fstat,
655 .open2 = synth_open2,
656 .symlink = synth_symlink,
657 .link = synth_link,
658 .truncate = synth_truncate,
659 .rename = synth_rename,
660 .chown = synth_chown,
661 .utimensat = synth_utimensat,
662 .remove = synth_remove,
663 .fsync = synth_fsync,
664 .statfs = synth_statfs,
665 .lgetxattr = synth_lgetxattr,
666 .llistxattr = synth_llistxattr,
667 .lsetxattr = synth_lsetxattr,
668 .lremovexattr = synth_lremovexattr,
669 .name_to_path = synth_name_to_path,
670 .renameat = synth_renameat,
671 .unlinkat = synth_unlinkat,
672 .has_valid_file_handle = synth_has_valid_file_handle,
673 .ftruncate = synth_ftruncate,
674 .futimens = synth_futimens,
675 };
676