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2de121f0 1/*
7387863d
DDAG
2 * FUSE: Filesystem in Userspace
3 * Copyright (C) 2001-2007 Miklos Szeredi <miklos@szeredi.hu>
4 *
5 * Implementation of (most of) the low-level FUSE API. The session loop
6 * functions are implemented in separate files.
7 *
8 * This program can be distributed under the terms of the GNU LGPLv2.
9 * See the file COPYING.LIB
10 */
2de121f0 11
09863ebc 12#include "qemu/osdep.h"
2de121f0 13#include "fuse_i.h"
09863ebc 14#include "standard-headers/linux/fuse.h"
2de121f0 15#include "fuse_misc.h"
7387863d 16#include "fuse_opt.h"
2de121f0 17
7387863d
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18#include <assert.h>
19#include <errno.h>
20#include <limits.h>
21#include <stddef.h>
2de121f0
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22#include <stdio.h>
23#include <stdlib.h>
2de121f0 24#include <string.h>
2de121f0 25#include <sys/file.h>
7387863d 26#include <unistd.h>
2de121f0
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27
28
29#define PARAM(inarg) (((char *)(inarg)) + sizeof(*(inarg)))
30#define OFFSET_MAX 0x7fffffffffffffffLL
31
2de121f0 32struct fuse_pollhandle {
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33 uint64_t kh;
34 struct fuse_session *se;
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DDAG
35};
36
37static size_t pagesize;
38
39static __attribute__((constructor)) void fuse_ll_init_pagesize(void)
40{
7387863d 41 pagesize = getpagesize();
2de121f0
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42}
43
44static void convert_stat(const struct stat *stbuf, struct fuse_attr *attr)
45{
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46 attr->ino = stbuf->st_ino;
47 attr->mode = stbuf->st_mode;
48 attr->nlink = stbuf->st_nlink;
49 attr->uid = stbuf->st_uid;
50 attr->gid = stbuf->st_gid;
51 attr->rdev = stbuf->st_rdev;
52 attr->size = stbuf->st_size;
53 attr->blksize = stbuf->st_blksize;
54 attr->blocks = stbuf->st_blocks;
55 attr->atime = stbuf->st_atime;
56 attr->mtime = stbuf->st_mtime;
57 attr->ctime = stbuf->st_ctime;
58 attr->atimensec = ST_ATIM_NSEC(stbuf);
59 attr->mtimensec = ST_MTIM_NSEC(stbuf);
60 attr->ctimensec = ST_CTIM_NSEC(stbuf);
2de121f0
DDAG
61}
62
63static void convert_attr(const struct fuse_setattr_in *attr, struct stat *stbuf)
64{
7387863d
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65 stbuf->st_mode = attr->mode;
66 stbuf->st_uid = attr->uid;
67 stbuf->st_gid = attr->gid;
68 stbuf->st_size = attr->size;
69 stbuf->st_atime = attr->atime;
70 stbuf->st_mtime = attr->mtime;
71 stbuf->st_ctime = attr->ctime;
72 ST_ATIM_NSEC_SET(stbuf, attr->atimensec);
73 ST_MTIM_NSEC_SET(stbuf, attr->mtimensec);
74 ST_CTIM_NSEC_SET(stbuf, attr->ctimensec);
2de121f0
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75}
76
7387863d 77static size_t iov_length(const struct iovec *iov, size_t count)
2de121f0 78{
7387863d
DDAG
79 size_t seg;
80 size_t ret = 0;
2de121f0 81
7387863d
DDAG
82 for (seg = 0; seg < count; seg++) {
83 ret += iov[seg].iov_len;
84 }
85 return ret;
2de121f0
DDAG
86}
87
88static void list_init_req(struct fuse_req *req)
89{
7387863d
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90 req->next = req;
91 req->prev = req;
2de121f0
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92}
93
94static void list_del_req(struct fuse_req *req)
95{
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96 struct fuse_req *prev = req->prev;
97 struct fuse_req *next = req->next;
98 prev->next = next;
99 next->prev = prev;
2de121f0
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100}
101
102static void list_add_req(struct fuse_req *req, struct fuse_req *next)
103{
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104 struct fuse_req *prev = next->prev;
105 req->next = next;
106 req->prev = prev;
107 prev->next = req;
108 next->prev = req;
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109}
110
111static void destroy_req(fuse_req_t req)
112{
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113 pthread_mutex_destroy(&req->lock);
114 free(req);
2de121f0
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115}
116
117void fuse_free_req(fuse_req_t req)
118{
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119 int ctr;
120 struct fuse_session *se = req->se;
2de121f0 121
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122 pthread_mutex_lock(&se->lock);
123 req->u.ni.func = NULL;
124 req->u.ni.data = NULL;
125 list_del_req(req);
126 ctr = --req->ctr;
127 req->ch = NULL;
128 pthread_mutex_unlock(&se->lock);
129 if (!ctr) {
130 destroy_req(req);
131 }
2de121f0
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132}
133
134static struct fuse_req *fuse_ll_alloc_req(struct fuse_session *se)
135{
7387863d 136 struct fuse_req *req;
2de121f0 137
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138 req = (struct fuse_req *)calloc(1, sizeof(struct fuse_req));
139 if (req == NULL) {
140 fuse_log(FUSE_LOG_ERR, "fuse: failed to allocate request\n");
141 } else {
142 req->se = se;
143 req->ctr = 1;
144 list_init_req(req);
145 fuse_mutex_init(&req->lock);
146 }
2de121f0 147
7387863d 148 return req;
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149}
150
151/* Send data. If *ch* is NULL, send via session master fd */
152static int fuse_send_msg(struct fuse_session *se, struct fuse_chan *ch,
7387863d 153 struct iovec *iov, int count)
2de121f0 154{
7387863d 155 struct fuse_out_header *out = iov[0].iov_base;
2de121f0 156
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157 out->len = iov_length(iov, count);
158 if (se->debug) {
159 if (out->unique == 0) {
160 fuse_log(FUSE_LOG_DEBUG, "NOTIFY: code=%d length=%u\n", out->error,
161 out->len);
162 } else if (out->error) {
163 fuse_log(FUSE_LOG_DEBUG,
164 " unique: %llu, error: %i (%s), outsize: %i\n",
165 (unsigned long long)out->unique, out->error,
166 strerror(-out->error), out->len);
167 } else {
168 fuse_log(FUSE_LOG_DEBUG, " unique: %llu, success, outsize: %i\n",
169 (unsigned long long)out->unique, out->len);
170 }
171 }
2de121f0 172
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173 abort(); /* virtio should have taken it before here */
174 return 0;
2de121f0
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175}
176
177
178int fuse_send_reply_iov_nofree(fuse_req_t req, int error, struct iovec *iov,
7387863d 179 int count)
2de121f0 180{
7387863d 181 struct fuse_out_header out;
2de121f0 182
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183 if (error <= -1000 || error > 0) {
184 fuse_log(FUSE_LOG_ERR, "fuse: bad error value: %i\n", error);
185 error = -ERANGE;
186 }
2de121f0 187
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188 out.unique = req->unique;
189 out.error = error;
2de121f0 190
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191 iov[0].iov_base = &out;
192 iov[0].iov_len = sizeof(struct fuse_out_header);
2de121f0 193
7387863d 194 return fuse_send_msg(req->se, req->ch, iov, count);
2de121f0
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195}
196
197static int send_reply_iov(fuse_req_t req, int error, struct iovec *iov,
7387863d 198 int count)
2de121f0 199{
7387863d 200 int res;
2de121f0 201
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202 res = fuse_send_reply_iov_nofree(req, error, iov, count);
203 fuse_free_req(req);
204 return res;
2de121f0
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205}
206
207static int send_reply(fuse_req_t req, int error, const void *arg,
7387863d 208 size_t argsize)
2de121f0 209{
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210 struct iovec iov[2];
211 int count = 1;
212 if (argsize) {
213 iov[1].iov_base = (void *)arg;
214 iov[1].iov_len = argsize;
215 count++;
216 }
217 return send_reply_iov(req, error, iov, count);
2de121f0
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218}
219
220int fuse_reply_iov(fuse_req_t req, const struct iovec *iov, int count)
221{
7387863d
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222 int res;
223 struct iovec *padded_iov;
2de121f0 224
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225 padded_iov = malloc((count + 1) * sizeof(struct iovec));
226 if (padded_iov == NULL) {
227 return fuse_reply_err(req, ENOMEM);
228 }
2de121f0 229
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230 memcpy(padded_iov + 1, iov, count * sizeof(struct iovec));
231 count++;
2de121f0 232
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233 res = send_reply_iov(req, 0, padded_iov, count);
234 free(padded_iov);
2de121f0 235
7387863d 236 return res;
2de121f0
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237}
238
239
7387863d
DDAG
240/*
241 * 'buf` is allowed to be empty so that the proper size may be
242 * allocated by the caller
243 */
2de121f0 244size_t fuse_add_direntry(fuse_req_t req, char *buf, size_t bufsize,
7387863d 245 const char *name, const struct stat *stbuf, off_t off)
2de121f0 246{
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247 (void)req;
248 size_t namelen;
249 size_t entlen;
250 size_t entlen_padded;
251 struct fuse_dirent *dirent;
2de121f0 252
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DDAG
253 namelen = strlen(name);
254 entlen = FUSE_NAME_OFFSET + namelen;
255 entlen_padded = FUSE_DIRENT_ALIGN(entlen);
2de121f0 256
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DDAG
257 if ((buf == NULL) || (entlen_padded > bufsize)) {
258 return entlen_padded;
259 }
2de121f0 260
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261 dirent = (struct fuse_dirent *)buf;
262 dirent->ino = stbuf->st_ino;
263 dirent->off = off;
264 dirent->namelen = namelen;
265 dirent->type = (stbuf->st_mode & S_IFMT) >> 12;
266 memcpy(dirent->name, name, namelen);
267 memset(dirent->name + namelen, 0, entlen_padded - entlen);
2de121f0 268
7387863d 269 return entlen_padded;
2de121f0
DDAG
270}
271
272static void convert_statfs(const struct statvfs *stbuf,
7387863d 273 struct fuse_kstatfs *kstatfs)
2de121f0 274{
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DDAG
275 kstatfs->bsize = stbuf->f_bsize;
276 kstatfs->frsize = stbuf->f_frsize;
277 kstatfs->blocks = stbuf->f_blocks;
278 kstatfs->bfree = stbuf->f_bfree;
279 kstatfs->bavail = stbuf->f_bavail;
280 kstatfs->files = stbuf->f_files;
281 kstatfs->ffree = stbuf->f_ffree;
282 kstatfs->namelen = stbuf->f_namemax;
2de121f0
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283}
284
285static int send_reply_ok(fuse_req_t req, const void *arg, size_t argsize)
286{
7387863d 287 return send_reply(req, 0, arg, argsize);
2de121f0
DDAG
288}
289
290int fuse_reply_err(fuse_req_t req, int err)
291{
7387863d 292 return send_reply(req, -err, NULL, 0);
2de121f0
DDAG
293}
294
295void fuse_reply_none(fuse_req_t req)
296{
7387863d 297 fuse_free_req(req);
2de121f0
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298}
299
300static unsigned long calc_timeout_sec(double t)
301{
7387863d
DDAG
302 if (t > (double)ULONG_MAX) {
303 return ULONG_MAX;
304 } else if (t < 0.0) {
305 return 0;
306 } else {
307 return (unsigned long)t;
308 }
2de121f0
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309}
310
311static unsigned int calc_timeout_nsec(double t)
312{
7387863d
DDAG
313 double f = t - (double)calc_timeout_sec(t);
314 if (f < 0.0) {
315 return 0;
316 } else if (f >= 0.999999999) {
317 return 999999999;
318 } else {
319 return (unsigned int)(f * 1.0e9);
320 }
2de121f0
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321}
322
323static void fill_entry(struct fuse_entry_out *arg,
7387863d 324 const struct fuse_entry_param *e)
2de121f0 325{
7387863d
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326 arg->nodeid = e->ino;
327 arg->generation = e->generation;
328 arg->entry_valid = calc_timeout_sec(e->entry_timeout);
329 arg->entry_valid_nsec = calc_timeout_nsec(e->entry_timeout);
330 arg->attr_valid = calc_timeout_sec(e->attr_timeout);
331 arg->attr_valid_nsec = calc_timeout_nsec(e->attr_timeout);
332 convert_stat(&e->attr, &arg->attr);
2de121f0
DDAG
333}
334
7387863d
DDAG
335/*
336 * `buf` is allowed to be empty so that the proper size may be
337 * allocated by the caller
338 */
2de121f0 339size_t fuse_add_direntry_plus(fuse_req_t req, char *buf, size_t bufsize,
7387863d
DDAG
340 const char *name,
341 const struct fuse_entry_param *e, off_t off)
342{
343 (void)req;
344 size_t namelen;
345 size_t entlen;
346 size_t entlen_padded;
347
348 namelen = strlen(name);
349 entlen = FUSE_NAME_OFFSET_DIRENTPLUS + namelen;
350 entlen_padded = FUSE_DIRENT_ALIGN(entlen);
351 if ((buf == NULL) || (entlen_padded > bufsize)) {
352 return entlen_padded;
353 }
354
355 struct fuse_direntplus *dp = (struct fuse_direntplus *)buf;
356 memset(&dp->entry_out, 0, sizeof(dp->entry_out));
357 fill_entry(&dp->entry_out, e);
358
359 struct fuse_dirent *dirent = &dp->dirent;
360 dirent->ino = e->attr.st_ino;
361 dirent->off = off;
362 dirent->namelen = namelen;
363 dirent->type = (e->attr.st_mode & S_IFMT) >> 12;
364 memcpy(dirent->name, name, namelen);
365 memset(dirent->name + namelen, 0, entlen_padded - entlen);
366
367 return entlen_padded;
368}
369
370static void fill_open(struct fuse_open_out *arg, const struct fuse_file_info *f)
371{
372 arg->fh = f->fh;
373 if (f->direct_io) {
374 arg->open_flags |= FOPEN_DIRECT_IO;
375 }
376 if (f->keep_cache) {
377 arg->open_flags |= FOPEN_KEEP_CACHE;
378 }
379 if (f->cache_readdir) {
380 arg->open_flags |= FOPEN_CACHE_DIR;
381 }
382 if (f->nonseekable) {
383 arg->open_flags |= FOPEN_NONSEEKABLE;
384 }
2de121f0
DDAG
385}
386
387int fuse_reply_entry(fuse_req_t req, const struct fuse_entry_param *e)
388{
7387863d 389 struct fuse_entry_out arg;
72c42e2d 390 size_t size = sizeof(arg);
2de121f0 391
7387863d
DDAG
392 memset(&arg, 0, sizeof(arg));
393 fill_entry(&arg, e);
394 return send_reply_ok(req, &arg, size);
2de121f0
DDAG
395}
396
397int fuse_reply_create(fuse_req_t req, const struct fuse_entry_param *e,
7387863d 398 const struct fuse_file_info *f)
2de121f0 399{
7387863d 400 char buf[sizeof(struct fuse_entry_out) + sizeof(struct fuse_open_out)];
72c42e2d 401 size_t entrysize = sizeof(struct fuse_entry_out);
7387863d
DDAG
402 struct fuse_entry_out *earg = (struct fuse_entry_out *)buf;
403 struct fuse_open_out *oarg = (struct fuse_open_out *)(buf + entrysize);
2de121f0 404
7387863d
DDAG
405 memset(buf, 0, sizeof(buf));
406 fill_entry(earg, e);
407 fill_open(oarg, f);
408 return send_reply_ok(req, buf, entrysize + sizeof(struct fuse_open_out));
2de121f0
DDAG
409}
410
411int fuse_reply_attr(fuse_req_t req, const struct stat *attr,
7387863d 412 double attr_timeout)
2de121f0 413{
7387863d 414 struct fuse_attr_out arg;
72c42e2d 415 size_t size = sizeof(arg);
2de121f0 416
7387863d
DDAG
417 memset(&arg, 0, sizeof(arg));
418 arg.attr_valid = calc_timeout_sec(attr_timeout);
419 arg.attr_valid_nsec = calc_timeout_nsec(attr_timeout);
420 convert_stat(attr, &arg.attr);
2de121f0 421
7387863d 422 return send_reply_ok(req, &arg, size);
2de121f0
DDAG
423}
424
425int fuse_reply_readlink(fuse_req_t req, const char *linkname)
426{
7387863d 427 return send_reply_ok(req, linkname, strlen(linkname));
2de121f0
DDAG
428}
429
430int fuse_reply_open(fuse_req_t req, const struct fuse_file_info *f)
431{
7387863d 432 struct fuse_open_out arg;
2de121f0 433
7387863d
DDAG
434 memset(&arg, 0, sizeof(arg));
435 fill_open(&arg, f);
436 return send_reply_ok(req, &arg, sizeof(arg));
2de121f0
DDAG
437}
438
439int fuse_reply_write(fuse_req_t req, size_t count)
440{
7387863d 441 struct fuse_write_out arg;
2de121f0 442
7387863d
DDAG
443 memset(&arg, 0, sizeof(arg));
444 arg.size = count;
2de121f0 445
7387863d 446 return send_reply_ok(req, &arg, sizeof(arg));
2de121f0
DDAG
447}
448
449int fuse_reply_buf(fuse_req_t req, const char *buf, size_t size)
450{
7387863d 451 return send_reply_ok(req, buf, size);
2de121f0
DDAG
452}
453
454static int fuse_send_data_iov_fallback(struct fuse_session *se,
7387863d
DDAG
455 struct fuse_chan *ch, struct iovec *iov,
456 int iov_count, struct fuse_bufvec *buf,
457 size_t len)
2de121f0 458{
7387863d
DDAG
459 /* Optimize common case */
460 if (buf->count == 1 && buf->idx == 0 && buf->off == 0 &&
461 !(buf->buf[0].flags & FUSE_BUF_IS_FD)) {
462 /*
463 * FIXME: also avoid memory copy if there are multiple buffers
464 * but none of them contain an fd
465 */
2de121f0 466
7387863d
DDAG
467 iov[iov_count].iov_base = buf->buf[0].mem;
468 iov[iov_count].iov_len = len;
469 iov_count++;
470 return fuse_send_msg(se, ch, iov, iov_count);
471 }
2de121f0 472
7387863d
DDAG
473 abort(); /* Will have taken vhost path */
474 return 0;
2de121f0
DDAG
475}
476
2de121f0 477static int fuse_send_data_iov(struct fuse_session *se, struct fuse_chan *ch,
7387863d 478 struct iovec *iov, int iov_count,
8c3fe75e 479 struct fuse_bufvec *buf)
2de121f0 480{
7387863d 481 size_t len = fuse_buf_size(buf);
2de121f0 482
7387863d 483 return fuse_send_data_iov_fallback(se, ch, iov, iov_count, buf, len);
2de121f0 484}
2de121f0 485
8c3fe75e 486int fuse_reply_data(fuse_req_t req, struct fuse_bufvec *bufv)
2de121f0 487{
7387863d
DDAG
488 struct iovec iov[2];
489 struct fuse_out_header out;
490 int res;
2de121f0 491
7387863d
DDAG
492 iov[0].iov_base = &out;
493 iov[0].iov_len = sizeof(struct fuse_out_header);
2de121f0 494
7387863d
DDAG
495 out.unique = req->unique;
496 out.error = 0;
2de121f0 497
8c3fe75e 498 res = fuse_send_data_iov(req->se, req->ch, iov, 1, bufv);
7387863d
DDAG
499 if (res <= 0) {
500 fuse_free_req(req);
501 return res;
502 } else {
503 return fuse_reply_err(req, res);
504 }
2de121f0
DDAG
505}
506
507int fuse_reply_statfs(fuse_req_t req, const struct statvfs *stbuf)
508{
7387863d 509 struct fuse_statfs_out arg;
72c42e2d 510 size_t size = sizeof(arg);
2de121f0 511
7387863d
DDAG
512 memset(&arg, 0, sizeof(arg));
513 convert_statfs(stbuf, &arg.st);
2de121f0 514
7387863d 515 return send_reply_ok(req, &arg, size);
2de121f0
DDAG
516}
517
518int fuse_reply_xattr(fuse_req_t req, size_t count)
519{
7387863d 520 struct fuse_getxattr_out arg;
2de121f0 521
7387863d
DDAG
522 memset(&arg, 0, sizeof(arg));
523 arg.size = count;
2de121f0 524
7387863d 525 return send_reply_ok(req, &arg, sizeof(arg));
2de121f0
DDAG
526}
527
528int fuse_reply_lock(fuse_req_t req, const struct flock *lock)
529{
7387863d 530 struct fuse_lk_out arg;
2de121f0 531
7387863d
DDAG
532 memset(&arg, 0, sizeof(arg));
533 arg.lk.type = lock->l_type;
534 if (lock->l_type != F_UNLCK) {
535 arg.lk.start = lock->l_start;
536 if (lock->l_len == 0) {
537 arg.lk.end = OFFSET_MAX;
538 } else {
539 arg.lk.end = lock->l_start + lock->l_len - 1;
540 }
541 }
542 arg.lk.pid = lock->l_pid;
543 return send_reply_ok(req, &arg, sizeof(arg));
2de121f0
DDAG
544}
545
546int fuse_reply_bmap(fuse_req_t req, uint64_t idx)
547{
7387863d 548 struct fuse_bmap_out arg;
2de121f0 549
7387863d
DDAG
550 memset(&arg, 0, sizeof(arg));
551 arg.block = idx;
2de121f0 552
7387863d 553 return send_reply_ok(req, &arg, sizeof(arg));
2de121f0
DDAG
554}
555
556static struct fuse_ioctl_iovec *fuse_ioctl_iovec_copy(const struct iovec *iov,
7387863d
DDAG
557 size_t count)
558{
559 struct fuse_ioctl_iovec *fiov;
560 size_t i;
561
562 fiov = malloc(sizeof(fiov[0]) * count);
563 if (!fiov) {
564 return NULL;
565 }
566
567 for (i = 0; i < count; i++) {
568 fiov[i].base = (uintptr_t)iov[i].iov_base;
569 fiov[i].len = iov[i].iov_len;
570 }
571
572 return fiov;
573}
574
575int fuse_reply_ioctl_retry(fuse_req_t req, const struct iovec *in_iov,
576 size_t in_count, const struct iovec *out_iov,
577 size_t out_count)
578{
579 struct fuse_ioctl_out arg;
580 struct fuse_ioctl_iovec *in_fiov = NULL;
581 struct fuse_ioctl_iovec *out_fiov = NULL;
582 struct iovec iov[4];
583 size_t count = 1;
584 int res;
585
586 memset(&arg, 0, sizeof(arg));
587 arg.flags |= FUSE_IOCTL_RETRY;
588 arg.in_iovs = in_count;
589 arg.out_iovs = out_count;
590 iov[count].iov_base = &arg;
591 iov[count].iov_len = sizeof(arg);
592 count++;
593
72c42e2d
DDAG
594 /* Can't handle non-compat 64bit ioctls on 32bit */
595 if (sizeof(void *) == 4 && req->ioctl_64bit) {
596 res = fuse_reply_err(req, EINVAL);
597 goto out;
598 }
7387863d 599
72c42e2d
DDAG
600 if (in_count) {
601 in_fiov = fuse_ioctl_iovec_copy(in_iov, in_count);
602 if (!in_fiov) {
603 goto enomem;
7387863d 604 }
7387863d 605
72c42e2d
DDAG
606 iov[count].iov_base = (void *)in_fiov;
607 iov[count].iov_len = sizeof(in_fiov[0]) * in_count;
608 count++;
609 }
610 if (out_count) {
611 out_fiov = fuse_ioctl_iovec_copy(out_iov, out_count);
612 if (!out_fiov) {
613 goto enomem;
7387863d 614 }
7387863d 615
72c42e2d
DDAG
616 iov[count].iov_base = (void *)out_fiov;
617 iov[count].iov_len = sizeof(out_fiov[0]) * out_count;
618 count++;
7387863d
DDAG
619 }
620
621 res = send_reply_iov(req, 0, iov, count);
2de121f0 622out:
7387863d
DDAG
623 free(in_fiov);
624 free(out_fiov);
2de121f0 625
7387863d 626 return res;
2de121f0
DDAG
627
628enomem:
7387863d
DDAG
629 res = fuse_reply_err(req, ENOMEM);
630 goto out;
2de121f0
DDAG
631}
632
633int fuse_reply_ioctl(fuse_req_t req, int result, const void *buf, size_t size)
634{
7387863d
DDAG
635 struct fuse_ioctl_out arg;
636 struct iovec iov[3];
637 size_t count = 1;
2de121f0 638
7387863d
DDAG
639 memset(&arg, 0, sizeof(arg));
640 arg.result = result;
641 iov[count].iov_base = &arg;
642 iov[count].iov_len = sizeof(arg);
643 count++;
2de121f0 644
7387863d
DDAG
645 if (size) {
646 iov[count].iov_base = (char *)buf;
647 iov[count].iov_len = size;
648 count++;
649 }
2de121f0 650
7387863d 651 return send_reply_iov(req, 0, iov, count);
2de121f0
DDAG
652}
653
654int fuse_reply_ioctl_iov(fuse_req_t req, int result, const struct iovec *iov,
7387863d 655 int count)
2de121f0 656{
7387863d
DDAG
657 struct iovec *padded_iov;
658 struct fuse_ioctl_out arg;
659 int res;
2de121f0 660
7387863d
DDAG
661 padded_iov = malloc((count + 2) * sizeof(struct iovec));
662 if (padded_iov == NULL) {
663 return fuse_reply_err(req, ENOMEM);
664 }
2de121f0 665
7387863d
DDAG
666 memset(&arg, 0, sizeof(arg));
667 arg.result = result;
668 padded_iov[1].iov_base = &arg;
669 padded_iov[1].iov_len = sizeof(arg);
2de121f0 670
7387863d 671 memcpy(&padded_iov[2], iov, count * sizeof(struct iovec));
2de121f0 672
7387863d
DDAG
673 res = send_reply_iov(req, 0, padded_iov, count + 2);
674 free(padded_iov);
2de121f0 675
7387863d 676 return res;
2de121f0
DDAG
677}
678
679int fuse_reply_poll(fuse_req_t req, unsigned revents)
680{
7387863d 681 struct fuse_poll_out arg;
2de121f0 682
7387863d
DDAG
683 memset(&arg, 0, sizeof(arg));
684 arg.revents = revents;
2de121f0 685
7387863d 686 return send_reply_ok(req, &arg, sizeof(arg));
2de121f0
DDAG
687}
688
689int fuse_reply_lseek(fuse_req_t req, off_t off)
690{
7387863d 691 struct fuse_lseek_out arg;
2de121f0 692
7387863d
DDAG
693 memset(&arg, 0, sizeof(arg));
694 arg.offset = off;
2de121f0 695
7387863d 696 return send_reply_ok(req, &arg, sizeof(arg));
2de121f0
DDAG
697}
698
699static void do_lookup(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
700{
7387863d 701 char *name = (char *)inarg;
2de121f0 702
7387863d
DDAG
703 if (req->se->op.lookup) {
704 req->se->op.lookup(req, nodeid, name);
705 } else {
706 fuse_reply_err(req, ENOSYS);
707 }
2de121f0
DDAG
708}
709
710static void do_forget(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
711{
7387863d 712 struct fuse_forget_in *arg = (struct fuse_forget_in *)inarg;
2de121f0 713
7387863d
DDAG
714 if (req->se->op.forget) {
715 req->se->op.forget(req, nodeid, arg->nlookup);
716 } else {
717 fuse_reply_none(req);
718 }
2de121f0
DDAG
719}
720
721static void do_batch_forget(fuse_req_t req, fuse_ino_t nodeid,
7387863d 722 const void *inarg)
2de121f0 723{
7387863d
DDAG
724 struct fuse_batch_forget_in *arg = (void *)inarg;
725 struct fuse_forget_one *param = (void *)PARAM(arg);
726 unsigned int i;
2de121f0 727
7387863d 728 (void)nodeid;
2de121f0 729
7387863d
DDAG
730 if (req->se->op.forget_multi) {
731 req->se->op.forget_multi(req, arg->count,
732 (struct fuse_forget_data *)param);
733 } else if (req->se->op.forget) {
734 for (i = 0; i < arg->count; i++) {
735 struct fuse_forget_one *forget = &param[i];
736 struct fuse_req *dummy_req;
2de121f0 737
7387863d
DDAG
738 dummy_req = fuse_ll_alloc_req(req->se);
739 if (dummy_req == NULL) {
740 break;
741 }
2de121f0 742
7387863d
DDAG
743 dummy_req->unique = req->unique;
744 dummy_req->ctx = req->ctx;
745 dummy_req->ch = NULL;
2de121f0 746
7387863d
DDAG
747 req->se->op.forget(dummy_req, forget->nodeid, forget->nlookup);
748 }
749 fuse_reply_none(req);
750 } else {
751 fuse_reply_none(req);
752 }
2de121f0
DDAG
753}
754
755static void do_getattr(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
756{
7387863d
DDAG
757 struct fuse_file_info *fip = NULL;
758 struct fuse_file_info fi;
2de121f0 759
72c42e2d 760 struct fuse_getattr_in *arg = (struct fuse_getattr_in *)inarg;
2de121f0 761
72c42e2d
DDAG
762 if (arg->getattr_flags & FUSE_GETATTR_FH) {
763 memset(&fi, 0, sizeof(fi));
764 fi.fh = arg->fh;
765 fip = &fi;
7387863d 766 }
2de121f0 767
7387863d
DDAG
768 if (req->se->op.getattr) {
769 req->se->op.getattr(req, nodeid, fip);
770 } else {
771 fuse_reply_err(req, ENOSYS);
772 }
2de121f0
DDAG
773}
774
775static void do_setattr(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
776{
7387863d
DDAG
777 struct fuse_setattr_in *arg = (struct fuse_setattr_in *)inarg;
778
779 if (req->se->op.setattr) {
780 struct fuse_file_info *fi = NULL;
781 struct fuse_file_info fi_store;
782 struct stat stbuf;
783 memset(&stbuf, 0, sizeof(stbuf));
784 convert_attr(arg, &stbuf);
785 if (arg->valid & FATTR_FH) {
786 arg->valid &= ~FATTR_FH;
787 memset(&fi_store, 0, sizeof(fi_store));
788 fi = &fi_store;
789 fi->fh = arg->fh;
790 }
791 arg->valid &= FUSE_SET_ATTR_MODE | FUSE_SET_ATTR_UID |
792 FUSE_SET_ATTR_GID | FUSE_SET_ATTR_SIZE |
793 FUSE_SET_ATTR_ATIME | FUSE_SET_ATTR_MTIME |
794 FUSE_SET_ATTR_ATIME_NOW | FUSE_SET_ATTR_MTIME_NOW |
795 FUSE_SET_ATTR_CTIME;
796
797 req->se->op.setattr(req, nodeid, &stbuf, arg->valid, fi);
798 } else {
799 fuse_reply_err(req, ENOSYS);
800 }
2de121f0
DDAG
801}
802
803static void do_access(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
804{
7387863d 805 struct fuse_access_in *arg = (struct fuse_access_in *)inarg;
2de121f0 806
7387863d
DDAG
807 if (req->se->op.access) {
808 req->se->op.access(req, nodeid, arg->mask);
809 } else {
810 fuse_reply_err(req, ENOSYS);
811 }
2de121f0
DDAG
812}
813
814static void do_readlink(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
815{
7387863d 816 (void)inarg;
2de121f0 817
7387863d
DDAG
818 if (req->se->op.readlink) {
819 req->se->op.readlink(req, nodeid);
820 } else {
821 fuse_reply_err(req, ENOSYS);
822 }
2de121f0
DDAG
823}
824
825static void do_mknod(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
826{
7387863d
DDAG
827 struct fuse_mknod_in *arg = (struct fuse_mknod_in *)inarg;
828 char *name = PARAM(arg);
2de121f0 829
72c42e2d 830 req->ctx.umask = arg->umask;
2de121f0 831
7387863d
DDAG
832 if (req->se->op.mknod) {
833 req->se->op.mknod(req, nodeid, name, arg->mode, arg->rdev);
834 } else {
835 fuse_reply_err(req, ENOSYS);
836 }
2de121f0
DDAG
837}
838
839static void do_mkdir(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
840{
7387863d 841 struct fuse_mkdir_in *arg = (struct fuse_mkdir_in *)inarg;
2de121f0 842
72c42e2d 843 req->ctx.umask = arg->umask;
2de121f0 844
7387863d
DDAG
845 if (req->se->op.mkdir) {
846 req->se->op.mkdir(req, nodeid, PARAM(arg), arg->mode);
847 } else {
848 fuse_reply_err(req, ENOSYS);
849 }
2de121f0
DDAG
850}
851
852static void do_unlink(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
853{
7387863d 854 char *name = (char *)inarg;
2de121f0 855
7387863d
DDAG
856 if (req->se->op.unlink) {
857 req->se->op.unlink(req, nodeid, name);
858 } else {
859 fuse_reply_err(req, ENOSYS);
860 }
2de121f0
DDAG
861}
862
863static void do_rmdir(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
864{
7387863d 865 char *name = (char *)inarg;
2de121f0 866
7387863d
DDAG
867 if (req->se->op.rmdir) {
868 req->se->op.rmdir(req, nodeid, name);
869 } else {
870 fuse_reply_err(req, ENOSYS);
871 }
2de121f0
DDAG
872}
873
874static void do_symlink(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
875{
7387863d
DDAG
876 char *name = (char *)inarg;
877 char *linkname = ((char *)inarg) + strlen((char *)inarg) + 1;
2de121f0 878
7387863d
DDAG
879 if (req->se->op.symlink) {
880 req->se->op.symlink(req, linkname, nodeid, name);
881 } else {
882 fuse_reply_err(req, ENOSYS);
883 }
2de121f0
DDAG
884}
885
886static void do_rename(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
887{
7387863d
DDAG
888 struct fuse_rename_in *arg = (struct fuse_rename_in *)inarg;
889 char *oldname = PARAM(arg);
890 char *newname = oldname + strlen(oldname) + 1;
2de121f0 891
7387863d
DDAG
892 if (req->se->op.rename) {
893 req->se->op.rename(req, nodeid, oldname, arg->newdir, newname, 0);
894 } else {
895 fuse_reply_err(req, ENOSYS);
896 }
2de121f0
DDAG
897}
898
899static void do_rename2(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
900{
7387863d
DDAG
901 struct fuse_rename2_in *arg = (struct fuse_rename2_in *)inarg;
902 char *oldname = PARAM(arg);
903 char *newname = oldname + strlen(oldname) + 1;
2de121f0 904
7387863d
DDAG
905 if (req->se->op.rename) {
906 req->se->op.rename(req, nodeid, oldname, arg->newdir, newname,
907 arg->flags);
908 } else {
909 fuse_reply_err(req, ENOSYS);
910 }
2de121f0
DDAG
911}
912
913static void do_link(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
914{
7387863d 915 struct fuse_link_in *arg = (struct fuse_link_in *)inarg;
2de121f0 916
7387863d
DDAG
917 if (req->se->op.link) {
918 req->se->op.link(req, arg->oldnodeid, nodeid, PARAM(arg));
919 } else {
920 fuse_reply_err(req, ENOSYS);
921 }
2de121f0
DDAG
922}
923
924static void do_create(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
925{
7387863d 926 struct fuse_create_in *arg = (struct fuse_create_in *)inarg;
2de121f0 927
7387863d
DDAG
928 if (req->se->op.create) {
929 struct fuse_file_info fi;
930 char *name = PARAM(arg);
2de121f0 931
7387863d
DDAG
932 memset(&fi, 0, sizeof(fi));
933 fi.flags = arg->flags;
2de121f0 934
72c42e2d 935 req->ctx.umask = arg->umask;
2de121f0 936
7387863d
DDAG
937 req->se->op.create(req, nodeid, name, arg->mode, &fi);
938 } else {
939 fuse_reply_err(req, ENOSYS);
940 }
2de121f0
DDAG
941}
942
943static void do_open(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
944{
7387863d
DDAG
945 struct fuse_open_in *arg = (struct fuse_open_in *)inarg;
946 struct fuse_file_info fi;
2de121f0 947
7387863d
DDAG
948 memset(&fi, 0, sizeof(fi));
949 fi.flags = arg->flags;
2de121f0 950
7387863d
DDAG
951 if (req->se->op.open) {
952 req->se->op.open(req, nodeid, &fi);
953 } else {
954 fuse_reply_open(req, &fi);
955 }
2de121f0
DDAG
956}
957
958static void do_read(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
959{
7387863d 960 struct fuse_read_in *arg = (struct fuse_read_in *)inarg;
2de121f0 961
7387863d
DDAG
962 if (req->se->op.read) {
963 struct fuse_file_info fi;
2de121f0 964
7387863d
DDAG
965 memset(&fi, 0, sizeof(fi));
966 fi.fh = arg->fh;
72c42e2d
DDAG
967 fi.lock_owner = arg->lock_owner;
968 fi.flags = arg->flags;
7387863d
DDAG
969 req->se->op.read(req, nodeid, arg->size, arg->offset, &fi);
970 } else {
971 fuse_reply_err(req, ENOSYS);
972 }
2de121f0
DDAG
973}
974
975static void do_write(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
976{
7387863d
DDAG
977 struct fuse_write_in *arg = (struct fuse_write_in *)inarg;
978 struct fuse_file_info fi;
979 char *param;
2de121f0 980
7387863d
DDAG
981 memset(&fi, 0, sizeof(fi));
982 fi.fh = arg->fh;
983 fi.writepage = (arg->write_flags & FUSE_WRITE_CACHE) != 0;
2de121f0 984
72c42e2d
DDAG
985 fi.lock_owner = arg->lock_owner;
986 fi.flags = arg->flags;
987 param = PARAM(arg);
2de121f0 988
7387863d
DDAG
989 if (req->se->op.write) {
990 req->se->op.write(req, nodeid, param, arg->size, arg->offset, &fi);
991 } else {
992 fuse_reply_err(req, ENOSYS);
993 }
2de121f0
DDAG
994}
995
996static void do_write_buf(fuse_req_t req, fuse_ino_t nodeid, const void *inarg,
7387863d
DDAG
997 const struct fuse_buf *ibuf)
998{
999 struct fuse_session *se = req->se;
1000 struct fuse_bufvec bufv = {
1001 .buf[0] = *ibuf,
1002 .count = 1,
1003 };
1004 struct fuse_write_in *arg = (struct fuse_write_in *)inarg;
1005 struct fuse_file_info fi;
1006
1007 memset(&fi, 0, sizeof(fi));
1008 fi.fh = arg->fh;
1009 fi.writepage = arg->write_flags & FUSE_WRITE_CACHE;
1010
72c42e2d
DDAG
1011 fi.lock_owner = arg->lock_owner;
1012 fi.flags = arg->flags;
1013 if (!(bufv.buf[0].flags & FUSE_BUF_IS_FD)) {
1014 bufv.buf[0].mem = PARAM(arg);
7387863d 1015 }
72c42e2d
DDAG
1016
1017 bufv.buf[0].size -=
1018 sizeof(struct fuse_in_header) + sizeof(struct fuse_write_in);
7387863d
DDAG
1019 if (bufv.buf[0].size < arg->size) {
1020 fuse_log(FUSE_LOG_ERR, "fuse: do_write_buf: buffer size too small\n");
1021 fuse_reply_err(req, EIO);
1022 return;
1023 }
1024 bufv.buf[0].size = arg->size;
1025
1026 se->op.write_buf(req, nodeid, &bufv, arg->offset, &fi);
2de121f0
DDAG
1027}
1028
1029static void do_flush(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1030{
7387863d
DDAG
1031 struct fuse_flush_in *arg = (struct fuse_flush_in *)inarg;
1032 struct fuse_file_info fi;
2de121f0 1033
7387863d
DDAG
1034 memset(&fi, 0, sizeof(fi));
1035 fi.fh = arg->fh;
1036 fi.flush = 1;
72c42e2d 1037 fi.lock_owner = arg->lock_owner;
2de121f0 1038
7387863d
DDAG
1039 if (req->se->op.flush) {
1040 req->se->op.flush(req, nodeid, &fi);
1041 } else {
1042 fuse_reply_err(req, ENOSYS);
1043 }
2de121f0
DDAG
1044}
1045
1046static void do_release(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1047{
7387863d
DDAG
1048 struct fuse_release_in *arg = (struct fuse_release_in *)inarg;
1049 struct fuse_file_info fi;
2de121f0 1050
7387863d
DDAG
1051 memset(&fi, 0, sizeof(fi));
1052 fi.flags = arg->flags;
1053 fi.fh = arg->fh;
72c42e2d
DDAG
1054 fi.flush = (arg->release_flags & FUSE_RELEASE_FLUSH) ? 1 : 0;
1055 fi.lock_owner = arg->lock_owner;
7387863d
DDAG
1056 if (arg->release_flags & FUSE_RELEASE_FLOCK_UNLOCK) {
1057 fi.flock_release = 1;
1058 fi.lock_owner = arg->lock_owner;
1059 }
2de121f0 1060
7387863d
DDAG
1061 if (req->se->op.release) {
1062 req->se->op.release(req, nodeid, &fi);
1063 } else {
1064 fuse_reply_err(req, 0);
1065 }
2de121f0
DDAG
1066}
1067
1068static void do_fsync(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1069{
7387863d
DDAG
1070 struct fuse_fsync_in *arg = (struct fuse_fsync_in *)inarg;
1071 struct fuse_file_info fi;
1072 int datasync = arg->fsync_flags & 1;
2de121f0 1073
7387863d
DDAG
1074 memset(&fi, 0, sizeof(fi));
1075 fi.fh = arg->fh;
2de121f0 1076
7387863d 1077 if (req->se->op.fsync) {
1b209805
VG
1078 if (fi.fh == (uint64_t)-1) {
1079 req->se->op.fsync(req, nodeid, datasync, NULL);
1080 } else {
1081 req->se->op.fsync(req, nodeid, datasync, &fi);
1082 }
7387863d
DDAG
1083 } else {
1084 fuse_reply_err(req, ENOSYS);
1085 }
2de121f0
DDAG
1086}
1087
1088static void do_opendir(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1089{
7387863d
DDAG
1090 struct fuse_open_in *arg = (struct fuse_open_in *)inarg;
1091 struct fuse_file_info fi;
2de121f0 1092
7387863d
DDAG
1093 memset(&fi, 0, sizeof(fi));
1094 fi.flags = arg->flags;
2de121f0 1095
7387863d
DDAG
1096 if (req->se->op.opendir) {
1097 req->se->op.opendir(req, nodeid, &fi);
1098 } else {
1099 fuse_reply_open(req, &fi);
1100 }
2de121f0
DDAG
1101}
1102
1103static void do_readdir(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1104{
7387863d
DDAG
1105 struct fuse_read_in *arg = (struct fuse_read_in *)inarg;
1106 struct fuse_file_info fi;
2de121f0 1107
7387863d
DDAG
1108 memset(&fi, 0, sizeof(fi));
1109 fi.fh = arg->fh;
2de121f0 1110
7387863d
DDAG
1111 if (req->se->op.readdir) {
1112 req->se->op.readdir(req, nodeid, arg->size, arg->offset, &fi);
1113 } else {
1114 fuse_reply_err(req, ENOSYS);
1115 }
2de121f0
DDAG
1116}
1117
1118static void do_readdirplus(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1119{
7387863d
DDAG
1120 struct fuse_read_in *arg = (struct fuse_read_in *)inarg;
1121 struct fuse_file_info fi;
2de121f0 1122
7387863d
DDAG
1123 memset(&fi, 0, sizeof(fi));
1124 fi.fh = arg->fh;
2de121f0 1125
7387863d
DDAG
1126 if (req->se->op.readdirplus) {
1127 req->se->op.readdirplus(req, nodeid, arg->size, arg->offset, &fi);
1128 } else {
1129 fuse_reply_err(req, ENOSYS);
1130 }
2de121f0
DDAG
1131}
1132
1133static void do_releasedir(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1134{
7387863d
DDAG
1135 struct fuse_release_in *arg = (struct fuse_release_in *)inarg;
1136 struct fuse_file_info fi;
2de121f0 1137
7387863d
DDAG
1138 memset(&fi, 0, sizeof(fi));
1139 fi.flags = arg->flags;
1140 fi.fh = arg->fh;
2de121f0 1141
7387863d
DDAG
1142 if (req->se->op.releasedir) {
1143 req->se->op.releasedir(req, nodeid, &fi);
1144 } else {
1145 fuse_reply_err(req, 0);
1146 }
2de121f0
DDAG
1147}
1148
1149static void do_fsyncdir(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1150{
7387863d
DDAG
1151 struct fuse_fsync_in *arg = (struct fuse_fsync_in *)inarg;
1152 struct fuse_file_info fi;
1153 int datasync = arg->fsync_flags & 1;
2de121f0 1154
7387863d
DDAG
1155 memset(&fi, 0, sizeof(fi));
1156 fi.fh = arg->fh;
2de121f0 1157
7387863d
DDAG
1158 if (req->se->op.fsyncdir) {
1159 req->se->op.fsyncdir(req, nodeid, datasync, &fi);
1160 } else {
1161 fuse_reply_err(req, ENOSYS);
1162 }
2de121f0
DDAG
1163}
1164
1165static void do_statfs(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1166{
7387863d
DDAG
1167 (void)nodeid;
1168 (void)inarg;
2de121f0 1169
7387863d
DDAG
1170 if (req->se->op.statfs) {
1171 req->se->op.statfs(req, nodeid);
1172 } else {
1173 struct statvfs buf = {
1174 .f_namemax = 255,
1175 .f_bsize = 512,
1176 };
1177 fuse_reply_statfs(req, &buf);
1178 }
2de121f0
DDAG
1179}
1180
1181static void do_setxattr(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1182{
7387863d
DDAG
1183 struct fuse_setxattr_in *arg = (struct fuse_setxattr_in *)inarg;
1184 char *name = PARAM(arg);
1185 char *value = name + strlen(name) + 1;
2de121f0 1186
7387863d
DDAG
1187 if (req->se->op.setxattr) {
1188 req->se->op.setxattr(req, nodeid, name, value, arg->size, arg->flags);
1189 } else {
1190 fuse_reply_err(req, ENOSYS);
1191 }
2de121f0
DDAG
1192}
1193
1194static void do_getxattr(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1195{
7387863d 1196 struct fuse_getxattr_in *arg = (struct fuse_getxattr_in *)inarg;
2de121f0 1197
7387863d
DDAG
1198 if (req->se->op.getxattr) {
1199 req->se->op.getxattr(req, nodeid, PARAM(arg), arg->size);
1200 } else {
1201 fuse_reply_err(req, ENOSYS);
1202 }
2de121f0
DDAG
1203}
1204
1205static void do_listxattr(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1206{
7387863d 1207 struct fuse_getxattr_in *arg = (struct fuse_getxattr_in *)inarg;
2de121f0 1208
7387863d
DDAG
1209 if (req->se->op.listxattr) {
1210 req->se->op.listxattr(req, nodeid, arg->size);
1211 } else {
1212 fuse_reply_err(req, ENOSYS);
1213 }
2de121f0
DDAG
1214}
1215
1216static void do_removexattr(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1217{
7387863d 1218 char *name = (char *)inarg;
2de121f0 1219
7387863d
DDAG
1220 if (req->se->op.removexattr) {
1221 req->se->op.removexattr(req, nodeid, name);
1222 } else {
1223 fuse_reply_err(req, ENOSYS);
1224 }
2de121f0
DDAG
1225}
1226
1227static void convert_fuse_file_lock(struct fuse_file_lock *fl,
7387863d 1228 struct flock *flock)
2de121f0 1229{
7387863d
DDAG
1230 memset(flock, 0, sizeof(struct flock));
1231 flock->l_type = fl->type;
1232 flock->l_whence = SEEK_SET;
1233 flock->l_start = fl->start;
1234 if (fl->end == OFFSET_MAX) {
1235 flock->l_len = 0;
1236 } else {
1237 flock->l_len = fl->end - fl->start + 1;
1238 }
1239 flock->l_pid = fl->pid;
2de121f0
DDAG
1240}
1241
1242static void do_getlk(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1243{
7387863d
DDAG
1244 struct fuse_lk_in *arg = (struct fuse_lk_in *)inarg;
1245 struct fuse_file_info fi;
1246 struct flock flock;
2de121f0 1247
7387863d
DDAG
1248 memset(&fi, 0, sizeof(fi));
1249 fi.fh = arg->fh;
1250 fi.lock_owner = arg->owner;
2de121f0 1251
7387863d
DDAG
1252 convert_fuse_file_lock(&arg->lk, &flock);
1253 if (req->se->op.getlk) {
1254 req->se->op.getlk(req, nodeid, &fi, &flock);
1255 } else {
1256 fuse_reply_err(req, ENOSYS);
1257 }
2de121f0
DDAG
1258}
1259
1260static void do_setlk_common(fuse_req_t req, fuse_ino_t nodeid,
7387863d
DDAG
1261 const void *inarg, int sleep)
1262{
1263 struct fuse_lk_in *arg = (struct fuse_lk_in *)inarg;
1264 struct fuse_file_info fi;
1265 struct flock flock;
1266
1267 memset(&fi, 0, sizeof(fi));
1268 fi.fh = arg->fh;
1269 fi.lock_owner = arg->owner;
1270
1271 if (arg->lk_flags & FUSE_LK_FLOCK) {
1272 int op = 0;
1273
1274 switch (arg->lk.type) {
1275 case F_RDLCK:
1276 op = LOCK_SH;
1277 break;
1278 case F_WRLCK:
1279 op = LOCK_EX;
1280 break;
1281 case F_UNLCK:
1282 op = LOCK_UN;
1283 break;
1284 }
1285 if (!sleep) {
1286 op |= LOCK_NB;
1287 }
1288
1289 if (req->se->op.flock) {
1290 req->se->op.flock(req, nodeid, &fi, op);
1291 } else {
1292 fuse_reply_err(req, ENOSYS);
1293 }
1294 } else {
1295 convert_fuse_file_lock(&arg->lk, &flock);
1296 if (req->se->op.setlk) {
1297 req->se->op.setlk(req, nodeid, &fi, &flock, sleep);
1298 } else {
1299 fuse_reply_err(req, ENOSYS);
1300 }
1301 }
2de121f0
DDAG
1302}
1303
1304static void do_setlk(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1305{
7387863d 1306 do_setlk_common(req, nodeid, inarg, 0);
2de121f0
DDAG
1307}
1308
1309static void do_setlkw(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1310{
7387863d 1311 do_setlk_common(req, nodeid, inarg, 1);
2de121f0
DDAG
1312}
1313
1314static int find_interrupted(struct fuse_session *se, struct fuse_req *req)
1315{
7387863d
DDAG
1316 struct fuse_req *curr;
1317
1318 for (curr = se->list.next; curr != &se->list; curr = curr->next) {
1319 if (curr->unique == req->u.i.unique) {
1320 fuse_interrupt_func_t func;
1321 void *data;
1322
1323 curr->ctr++;
1324 pthread_mutex_unlock(&se->lock);
1325
1326 /* Ugh, ugly locking */
1327 pthread_mutex_lock(&curr->lock);
1328 pthread_mutex_lock(&se->lock);
1329 curr->interrupted = 1;
1330 func = curr->u.ni.func;
1331 data = curr->u.ni.data;
1332 pthread_mutex_unlock(&se->lock);
1333 if (func) {
1334 func(curr, data);
1335 }
1336 pthread_mutex_unlock(&curr->lock);
1337
1338 pthread_mutex_lock(&se->lock);
1339 curr->ctr--;
1340 if (!curr->ctr) {
1341 destroy_req(curr);
1342 }
1343
1344 return 1;
1345 }
1346 }
1347 for (curr = se->interrupts.next; curr != &se->interrupts;
1348 curr = curr->next) {
1349 if (curr->u.i.unique == req->u.i.unique) {
1350 return 1;
1351 }
1352 }
1353 return 0;
2de121f0
DDAG
1354}
1355
1356static void do_interrupt(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1357{
7387863d
DDAG
1358 struct fuse_interrupt_in *arg = (struct fuse_interrupt_in *)inarg;
1359 struct fuse_session *se = req->se;
2de121f0 1360
7387863d
DDAG
1361 (void)nodeid;
1362 if (se->debug) {
1363 fuse_log(FUSE_LOG_DEBUG, "INTERRUPT: %llu\n",
1364 (unsigned long long)arg->unique);
1365 }
2de121f0 1366
7387863d 1367 req->u.i.unique = arg->unique;
2de121f0 1368
7387863d
DDAG
1369 pthread_mutex_lock(&se->lock);
1370 if (find_interrupted(se, req)) {
1371 destroy_req(req);
1372 } else {
1373 list_add_req(req, &se->interrupts);
1374 }
1375 pthread_mutex_unlock(&se->lock);
2de121f0
DDAG
1376}
1377
1378static struct fuse_req *check_interrupt(struct fuse_session *se,
7387863d
DDAG
1379 struct fuse_req *req)
1380{
1381 struct fuse_req *curr;
1382
1383 for (curr = se->interrupts.next; curr != &se->interrupts;
1384 curr = curr->next) {
1385 if (curr->u.i.unique == req->unique) {
1386 req->interrupted = 1;
1387 list_del_req(curr);
1388 free(curr);
1389 return NULL;
1390 }
1391 }
1392 curr = se->interrupts.next;
1393 if (curr != &se->interrupts) {
1394 list_del_req(curr);
1395 list_init_req(curr);
1396 return curr;
1397 } else {
1398 return NULL;
1399 }
2de121f0
DDAG
1400}
1401
1402static void do_bmap(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1403{
7387863d 1404 struct fuse_bmap_in *arg = (struct fuse_bmap_in *)inarg;
2de121f0 1405
7387863d
DDAG
1406 if (req->se->op.bmap) {
1407 req->se->op.bmap(req, nodeid, arg->blocksize, arg->block);
1408 } else {
1409 fuse_reply_err(req, ENOSYS);
1410 }
2de121f0
DDAG
1411}
1412
1413static void do_ioctl(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1414{
7387863d
DDAG
1415 struct fuse_ioctl_in *arg = (struct fuse_ioctl_in *)inarg;
1416 unsigned int flags = arg->flags;
1417 void *in_buf = arg->in_size ? PARAM(arg) : NULL;
1418 struct fuse_file_info fi;
2de121f0 1419
7387863d
DDAG
1420 if (flags & FUSE_IOCTL_DIR && !(req->se->conn.want & FUSE_CAP_IOCTL_DIR)) {
1421 fuse_reply_err(req, ENOTTY);
1422 return;
1423 }
2de121f0 1424
7387863d
DDAG
1425 memset(&fi, 0, sizeof(fi));
1426 fi.fh = arg->fh;
2de121f0 1427
72c42e2d 1428 if (sizeof(void *) == 4 && !(flags & FUSE_IOCTL_32BIT)) {
7387863d
DDAG
1429 req->ioctl_64bit = 1;
1430 }
2de121f0 1431
7387863d
DDAG
1432 if (req->se->op.ioctl) {
1433 req->se->op.ioctl(req, nodeid, arg->cmd, (void *)(uintptr_t)arg->arg,
1434 &fi, flags, in_buf, arg->in_size, arg->out_size);
1435 } else {
1436 fuse_reply_err(req, ENOSYS);
1437 }
2de121f0
DDAG
1438}
1439
1440void fuse_pollhandle_destroy(struct fuse_pollhandle *ph)
1441{
7387863d 1442 free(ph);
2de121f0
DDAG
1443}
1444
1445static void do_poll(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1446{
7387863d
DDAG
1447 struct fuse_poll_in *arg = (struct fuse_poll_in *)inarg;
1448 struct fuse_file_info fi;
2de121f0 1449
7387863d
DDAG
1450 memset(&fi, 0, sizeof(fi));
1451 fi.fh = arg->fh;
1452 fi.poll_events = arg->events;
2de121f0 1453
7387863d
DDAG
1454 if (req->se->op.poll) {
1455 struct fuse_pollhandle *ph = NULL;
2de121f0 1456
7387863d
DDAG
1457 if (arg->flags & FUSE_POLL_SCHEDULE_NOTIFY) {
1458 ph = malloc(sizeof(struct fuse_pollhandle));
1459 if (ph == NULL) {
1460 fuse_reply_err(req, ENOMEM);
1461 return;
1462 }
1463 ph->kh = arg->kh;
1464 ph->se = req->se;
1465 }
2de121f0 1466
7387863d
DDAG
1467 req->se->op.poll(req, nodeid, &fi, ph);
1468 } else {
1469 fuse_reply_err(req, ENOSYS);
1470 }
2de121f0
DDAG
1471}
1472
1473static void do_fallocate(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1474{
7387863d
DDAG
1475 struct fuse_fallocate_in *arg = (struct fuse_fallocate_in *)inarg;
1476 struct fuse_file_info fi;
2de121f0 1477
7387863d
DDAG
1478 memset(&fi, 0, sizeof(fi));
1479 fi.fh = arg->fh;
2de121f0 1480
7387863d
DDAG
1481 if (req->se->op.fallocate) {
1482 req->se->op.fallocate(req, nodeid, arg->mode, arg->offset, arg->length,
1483 &fi);
1484 } else {
1485 fuse_reply_err(req, ENOSYS);
1486 }
2de121f0
DDAG
1487}
1488
7387863d
DDAG
1489static void do_copy_file_range(fuse_req_t req, fuse_ino_t nodeid_in,
1490 const void *inarg)
2de121f0 1491{
7387863d
DDAG
1492 struct fuse_copy_file_range_in *arg =
1493 (struct fuse_copy_file_range_in *)inarg;
1494 struct fuse_file_info fi_in, fi_out;
2de121f0 1495
7387863d
DDAG
1496 memset(&fi_in, 0, sizeof(fi_in));
1497 fi_in.fh = arg->fh_in;
2de121f0 1498
7387863d
DDAG
1499 memset(&fi_out, 0, sizeof(fi_out));
1500 fi_out.fh = arg->fh_out;
2de121f0
DDAG
1501
1502
7387863d
DDAG
1503 if (req->se->op.copy_file_range) {
1504 req->se->op.copy_file_range(req, nodeid_in, arg->off_in, &fi_in,
1505 arg->nodeid_out, arg->off_out, &fi_out,
1506 arg->len, arg->flags);
1507 } else {
1508 fuse_reply_err(req, ENOSYS);
1509 }
2de121f0
DDAG
1510}
1511
1512static void do_lseek(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1513{
7387863d
DDAG
1514 struct fuse_lseek_in *arg = (struct fuse_lseek_in *)inarg;
1515 struct fuse_file_info fi;
2de121f0 1516
7387863d
DDAG
1517 memset(&fi, 0, sizeof(fi));
1518 fi.fh = arg->fh;
2de121f0 1519
7387863d
DDAG
1520 if (req->se->op.lseek) {
1521 req->se->op.lseek(req, nodeid, arg->offset, arg->whence, &fi);
1522 } else {
1523 fuse_reply_err(req, ENOSYS);
1524 }
2de121f0
DDAG
1525}
1526
1527static void do_init(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1528{
7387863d
DDAG
1529 struct fuse_init_in *arg = (struct fuse_init_in *)inarg;
1530 struct fuse_init_out outarg;
1531 struct fuse_session *se = req->se;
1532 size_t bufsize = se->bufsize;
1533 size_t outargsize = sizeof(outarg);
1534
1535 (void)nodeid;
1536 if (se->debug) {
1537 fuse_log(FUSE_LOG_DEBUG, "INIT: %u.%u\n", arg->major, arg->minor);
1538 if (arg->major == 7 && arg->minor >= 6) {
1539 fuse_log(FUSE_LOG_DEBUG, "flags=0x%08x\n", arg->flags);
1540 fuse_log(FUSE_LOG_DEBUG, "max_readahead=0x%08x\n",
1541 arg->max_readahead);
1542 }
1543 }
1544 se->conn.proto_major = arg->major;
1545 se->conn.proto_minor = arg->minor;
1546 se->conn.capable = 0;
1547 se->conn.want = 0;
1548
1549 memset(&outarg, 0, sizeof(outarg));
1550 outarg.major = FUSE_KERNEL_VERSION;
1551 outarg.minor = FUSE_KERNEL_MINOR_VERSION;
1552
72c42e2d 1553 if (arg->major < 7 || (arg->major == 7 && arg->minor < 31)) {
7387863d
DDAG
1554 fuse_log(FUSE_LOG_ERR, "fuse: unsupported protocol version: %u.%u\n",
1555 arg->major, arg->minor);
1556 fuse_reply_err(req, EPROTO);
1557 return;
1558 }
1559
1560 if (arg->major > 7) {
1561 /* Wait for a second INIT request with a 7.X version */
1562 send_reply_ok(req, &outarg, sizeof(outarg));
1563 return;
1564 }
1565
72c42e2d
DDAG
1566 if (arg->max_readahead < se->conn.max_readahead) {
1567 se->conn.max_readahead = arg->max_readahead;
1568 }
1569 if (arg->flags & FUSE_ASYNC_READ) {
1570 se->conn.capable |= FUSE_CAP_ASYNC_READ;
1571 }
1572 if (arg->flags & FUSE_POSIX_LOCKS) {
1573 se->conn.capable |= FUSE_CAP_POSIX_LOCKS;
1574 }
1575 if (arg->flags & FUSE_ATOMIC_O_TRUNC) {
1576 se->conn.capable |= FUSE_CAP_ATOMIC_O_TRUNC;
1577 }
1578 if (arg->flags & FUSE_EXPORT_SUPPORT) {
1579 se->conn.capable |= FUSE_CAP_EXPORT_SUPPORT;
1580 }
1581 if (arg->flags & FUSE_DONT_MASK) {
1582 se->conn.capable |= FUSE_CAP_DONT_MASK;
1583 }
1584 if (arg->flags & FUSE_FLOCK_LOCKS) {
1585 se->conn.capable |= FUSE_CAP_FLOCK_LOCKS;
1586 }
1587 if (arg->flags & FUSE_AUTO_INVAL_DATA) {
1588 se->conn.capable |= FUSE_CAP_AUTO_INVAL_DATA;
1589 }
1590 if (arg->flags & FUSE_DO_READDIRPLUS) {
1591 se->conn.capable |= FUSE_CAP_READDIRPLUS;
1592 }
1593 if (arg->flags & FUSE_READDIRPLUS_AUTO) {
1594 se->conn.capable |= FUSE_CAP_READDIRPLUS_AUTO;
1595 }
1596 if (arg->flags & FUSE_ASYNC_DIO) {
1597 se->conn.capable |= FUSE_CAP_ASYNC_DIO;
1598 }
1599 if (arg->flags & FUSE_WRITEBACK_CACHE) {
1600 se->conn.capable |= FUSE_CAP_WRITEBACK_CACHE;
1601 }
1602 if (arg->flags & FUSE_NO_OPEN_SUPPORT) {
1603 se->conn.capable |= FUSE_CAP_NO_OPEN_SUPPORT;
1604 }
1605 if (arg->flags & FUSE_PARALLEL_DIROPS) {
1606 se->conn.capable |= FUSE_CAP_PARALLEL_DIROPS;
1607 }
1608 if (arg->flags & FUSE_POSIX_ACL) {
1609 se->conn.capable |= FUSE_CAP_POSIX_ACL;
1610 }
1611 if (arg->flags & FUSE_HANDLE_KILLPRIV) {
1612 se->conn.capable |= FUSE_CAP_HANDLE_KILLPRIV;
1613 }
1614 if (arg->flags & FUSE_NO_OPENDIR_SUPPORT) {
1615 se->conn.capable |= FUSE_CAP_NO_OPENDIR_SUPPORT;
1616 }
1617 if (!(arg->flags & FUSE_MAX_PAGES)) {
1618 size_t max_bufsize = FUSE_DEFAULT_MAX_PAGES_PER_REQ * getpagesize() +
1619 FUSE_BUFFER_HEADER_SIZE;
1620 if (bufsize > max_bufsize) {
1621 bufsize = max_bufsize;
7387863d 1622 }
7387863d 1623 }
2de121f0
DDAG
1624#ifdef HAVE_SPLICE
1625#ifdef HAVE_VMSPLICE
72c42e2d 1626 se->conn.capable |= FUSE_CAP_SPLICE_WRITE | FUSE_CAP_SPLICE_MOVE;
2de121f0 1627#endif
72c42e2d 1628 se->conn.capable |= FUSE_CAP_SPLICE_READ;
2de121f0 1629#endif
72c42e2d 1630 se->conn.capable |= FUSE_CAP_IOCTL_DIR;
7387863d
DDAG
1631
1632 /*
1633 * Default settings for modern filesystems.
1634 *
1635 * Most of these capabilities were disabled by default in
1636 * libfuse2 for backwards compatibility reasons. In libfuse3,
1637 * we can finally enable them by default (as long as they're
1638 * supported by the kernel).
1639 */
1640#define LL_SET_DEFAULT(cond, cap) \
1641 if ((cond) && (se->conn.capable & (cap))) \
1642 se->conn.want |= (cap)
1643 LL_SET_DEFAULT(1, FUSE_CAP_ASYNC_READ);
1644 LL_SET_DEFAULT(1, FUSE_CAP_PARALLEL_DIROPS);
1645 LL_SET_DEFAULT(1, FUSE_CAP_AUTO_INVAL_DATA);
1646 LL_SET_DEFAULT(1, FUSE_CAP_HANDLE_KILLPRIV);
1647 LL_SET_DEFAULT(1, FUSE_CAP_ASYNC_DIO);
1648 LL_SET_DEFAULT(1, FUSE_CAP_IOCTL_DIR);
1649 LL_SET_DEFAULT(1, FUSE_CAP_ATOMIC_O_TRUNC);
1650 LL_SET_DEFAULT(se->op.write_buf, FUSE_CAP_SPLICE_READ);
1651 LL_SET_DEFAULT(se->op.getlk && se->op.setlk, FUSE_CAP_POSIX_LOCKS);
1652 LL_SET_DEFAULT(se->op.flock, FUSE_CAP_FLOCK_LOCKS);
1653 LL_SET_DEFAULT(se->op.readdirplus, FUSE_CAP_READDIRPLUS);
1654 LL_SET_DEFAULT(se->op.readdirplus && se->op.readdir,
1655 FUSE_CAP_READDIRPLUS_AUTO);
1656 se->conn.time_gran = 1;
1657
1658 if (bufsize < FUSE_MIN_READ_BUFFER) {
1659 fuse_log(FUSE_LOG_ERR, "fuse: warning: buffer size too small: %zu\n",
1660 bufsize);
1661 bufsize = FUSE_MIN_READ_BUFFER;
1662 }
1663 se->bufsize = bufsize;
1664
1665 if (se->conn.max_write > bufsize - FUSE_BUFFER_HEADER_SIZE) {
1666 se->conn.max_write = bufsize - FUSE_BUFFER_HEADER_SIZE;
1667 }
1668
1669 se->got_init = 1;
1670 if (se->op.init) {
1671 se->op.init(se->userdata, &se->conn);
1672 }
1673
1674 if (se->conn.want & (~se->conn.capable)) {
1675 fuse_log(FUSE_LOG_ERR,
1676 "fuse: error: filesystem requested capabilities "
1677 "0x%x that are not supported by kernel, aborting.\n",
1678 se->conn.want & (~se->conn.capable));
1679 fuse_reply_err(req, EPROTO);
1680 se->error = -EPROTO;
1681 fuse_session_exit(se);
1682 return;
1683 }
1684
1685 if (se->conn.max_write < bufsize - FUSE_BUFFER_HEADER_SIZE) {
1686 se->bufsize = se->conn.max_write + FUSE_BUFFER_HEADER_SIZE;
1687 }
1688 if (arg->flags & FUSE_MAX_PAGES) {
1689 outarg.flags |= FUSE_MAX_PAGES;
1690 outarg.max_pages = (se->conn.max_write - 1) / getpagesize() + 1;
1691 }
1692
1693 /*
1694 * Always enable big writes, this is superseded
1695 * by the max_write option
1696 */
1697 outarg.flags |= FUSE_BIG_WRITES;
1698
1699 if (se->conn.want & FUSE_CAP_ASYNC_READ) {
1700 outarg.flags |= FUSE_ASYNC_READ;
1701 }
1702 if (se->conn.want & FUSE_CAP_POSIX_LOCKS) {
1703 outarg.flags |= FUSE_POSIX_LOCKS;
1704 }
1705 if (se->conn.want & FUSE_CAP_ATOMIC_O_TRUNC) {
1706 outarg.flags |= FUSE_ATOMIC_O_TRUNC;
1707 }
1708 if (se->conn.want & FUSE_CAP_EXPORT_SUPPORT) {
1709 outarg.flags |= FUSE_EXPORT_SUPPORT;
1710 }
1711 if (se->conn.want & FUSE_CAP_DONT_MASK) {
1712 outarg.flags |= FUSE_DONT_MASK;
1713 }
1714 if (se->conn.want & FUSE_CAP_FLOCK_LOCKS) {
1715 outarg.flags |= FUSE_FLOCK_LOCKS;
1716 }
1717 if (se->conn.want & FUSE_CAP_AUTO_INVAL_DATA) {
1718 outarg.flags |= FUSE_AUTO_INVAL_DATA;
1719 }
1720 if (se->conn.want & FUSE_CAP_READDIRPLUS) {
1721 outarg.flags |= FUSE_DO_READDIRPLUS;
1722 }
1723 if (se->conn.want & FUSE_CAP_READDIRPLUS_AUTO) {
1724 outarg.flags |= FUSE_READDIRPLUS_AUTO;
1725 }
1726 if (se->conn.want & FUSE_CAP_ASYNC_DIO) {
1727 outarg.flags |= FUSE_ASYNC_DIO;
1728 }
1729 if (se->conn.want & FUSE_CAP_WRITEBACK_CACHE) {
1730 outarg.flags |= FUSE_WRITEBACK_CACHE;
1731 }
1732 if (se->conn.want & FUSE_CAP_POSIX_ACL) {
1733 outarg.flags |= FUSE_POSIX_ACL;
1734 }
1735 outarg.max_readahead = se->conn.max_readahead;
1736 outarg.max_write = se->conn.max_write;
72c42e2d
DDAG
1737 if (se->conn.max_background >= (1 << 16)) {
1738 se->conn.max_background = (1 << 16) - 1;
1739 }
1740 if (se->conn.congestion_threshold > se->conn.max_background) {
1741 se->conn.congestion_threshold = se->conn.max_background;
7387863d 1742 }
72c42e2d
DDAG
1743 if (!se->conn.congestion_threshold) {
1744 se->conn.congestion_threshold = se->conn.max_background * 3 / 4;
7387863d
DDAG
1745 }
1746
72c42e2d
DDAG
1747 outarg.max_background = se->conn.max_background;
1748 outarg.congestion_threshold = se->conn.congestion_threshold;
1749 outarg.time_gran = se->conn.time_gran;
1750
7387863d
DDAG
1751 if (se->debug) {
1752 fuse_log(FUSE_LOG_DEBUG, " INIT: %u.%u\n", outarg.major,
1753 outarg.minor);
1754 fuse_log(FUSE_LOG_DEBUG, " flags=0x%08x\n", outarg.flags);
1755 fuse_log(FUSE_LOG_DEBUG, " max_readahead=0x%08x\n",
1756 outarg.max_readahead);
1757 fuse_log(FUSE_LOG_DEBUG, " max_write=0x%08x\n", outarg.max_write);
1758 fuse_log(FUSE_LOG_DEBUG, " max_background=%i\n",
1759 outarg.max_background);
1760 fuse_log(FUSE_LOG_DEBUG, " congestion_threshold=%i\n",
1761 outarg.congestion_threshold);
1762 fuse_log(FUSE_LOG_DEBUG, " time_gran=%u\n", outarg.time_gran);
1763 }
7387863d
DDAG
1764
1765 send_reply_ok(req, &outarg, outargsize);
2de121f0
DDAG
1766}
1767
1768static void do_destroy(fuse_req_t req, fuse_ino_t nodeid, const void *inarg)
1769{
7387863d 1770 struct fuse_session *se = req->se;
2de121f0 1771
7387863d
DDAG
1772 (void)nodeid;
1773 (void)inarg;
2de121f0 1774
7387863d
DDAG
1775 se->got_destroy = 1;
1776 if (se->op.destroy) {
1777 se->op.destroy(se->userdata);
1778 }
2de121f0 1779
7387863d 1780 send_reply_ok(req, NULL, 0);
2de121f0
DDAG
1781}
1782
2de121f0 1783static int send_notify_iov(struct fuse_session *se, int notify_code,
7387863d 1784 struct iovec *iov, int count)
2de121f0 1785{
7387863d 1786 struct fuse_out_header out;
2de121f0 1787
7387863d
DDAG
1788 if (!se->got_init) {
1789 return -ENOTCONN;
1790 }
2de121f0 1791
7387863d
DDAG
1792 out.unique = 0;
1793 out.error = notify_code;
1794 iov[0].iov_base = &out;
1795 iov[0].iov_len = sizeof(struct fuse_out_header);
2de121f0 1796
7387863d 1797 return fuse_send_msg(se, NULL, iov, count);
2de121f0
DDAG
1798}
1799
1800int fuse_lowlevel_notify_poll(struct fuse_pollhandle *ph)
1801{
7387863d
DDAG
1802 if (ph != NULL) {
1803 struct fuse_notify_poll_wakeup_out outarg;
1804 struct iovec iov[2];
2de121f0 1805
7387863d 1806 outarg.kh = ph->kh;
2de121f0 1807
7387863d
DDAG
1808 iov[1].iov_base = &outarg;
1809 iov[1].iov_len = sizeof(outarg);
2de121f0 1810
7387863d
DDAG
1811 return send_notify_iov(ph->se, FUSE_NOTIFY_POLL, iov, 2);
1812 } else {
1813 return 0;
1814 }
2de121f0
DDAG
1815}
1816
1817int fuse_lowlevel_notify_inval_inode(struct fuse_session *se, fuse_ino_t ino,
7387863d 1818 off_t off, off_t len)
2de121f0 1819{
7387863d
DDAG
1820 struct fuse_notify_inval_inode_out outarg;
1821 struct iovec iov[2];
1822
1823 if (!se) {
1824 return -EINVAL;
1825 }
2de121f0 1826
7387863d
DDAG
1827 outarg.ino = ino;
1828 outarg.off = off;
1829 outarg.len = len;
2de121f0 1830
7387863d
DDAG
1831 iov[1].iov_base = &outarg;
1832 iov[1].iov_len = sizeof(outarg);
2de121f0 1833
7387863d 1834 return send_notify_iov(se, FUSE_NOTIFY_INVAL_INODE, iov, 2);
2de121f0
DDAG
1835}
1836
1837int fuse_lowlevel_notify_inval_entry(struct fuse_session *se, fuse_ino_t parent,
7387863d 1838 const char *name, size_t namelen)
2de121f0 1839{
7387863d
DDAG
1840 struct fuse_notify_inval_entry_out outarg;
1841 struct iovec iov[3];
1842
1843 if (!se) {
1844 return -EINVAL;
1845 }
2de121f0 1846
7387863d
DDAG
1847 outarg.parent = parent;
1848 outarg.namelen = namelen;
1849 outarg.padding = 0;
2de121f0 1850
7387863d
DDAG
1851 iov[1].iov_base = &outarg;
1852 iov[1].iov_len = sizeof(outarg);
1853 iov[2].iov_base = (void *)name;
1854 iov[2].iov_len = namelen + 1;
2de121f0 1855
7387863d 1856 return send_notify_iov(se, FUSE_NOTIFY_INVAL_ENTRY, iov, 3);
2de121f0
DDAG
1857}
1858
7387863d
DDAG
1859int fuse_lowlevel_notify_delete(struct fuse_session *se, fuse_ino_t parent,
1860 fuse_ino_t child, const char *name,
1861 size_t namelen)
2de121f0 1862{
7387863d
DDAG
1863 struct fuse_notify_delete_out outarg;
1864 struct iovec iov[3];
2de121f0 1865
7387863d
DDAG
1866 if (!se) {
1867 return -EINVAL;
1868 }
2de121f0 1869
7387863d
DDAG
1870 outarg.parent = parent;
1871 outarg.child = child;
1872 outarg.namelen = namelen;
1873 outarg.padding = 0;
2de121f0 1874
7387863d
DDAG
1875 iov[1].iov_base = &outarg;
1876 iov[1].iov_len = sizeof(outarg);
1877 iov[2].iov_base = (void *)name;
1878 iov[2].iov_len = namelen + 1;
2de121f0 1879
7387863d 1880 return send_notify_iov(se, FUSE_NOTIFY_DELETE, iov, 3);
2de121f0
DDAG
1881}
1882
1883int fuse_lowlevel_notify_store(struct fuse_session *se, fuse_ino_t ino,
8c3fe75e 1884 off_t offset, struct fuse_bufvec *bufv)
2de121f0 1885{
7387863d
DDAG
1886 struct fuse_out_header out;
1887 struct fuse_notify_store_out outarg;
1888 struct iovec iov[3];
1889 size_t size = fuse_buf_size(bufv);
1890 int res;
2de121f0 1891
7387863d
DDAG
1892 if (!se) {
1893 return -EINVAL;
1894 }
2de121f0 1895
7387863d
DDAG
1896 out.unique = 0;
1897 out.error = FUSE_NOTIFY_STORE;
2de121f0 1898
7387863d
DDAG
1899 outarg.nodeid = ino;
1900 outarg.offset = offset;
1901 outarg.size = size;
1902 outarg.padding = 0;
2de121f0 1903
7387863d
DDAG
1904 iov[0].iov_base = &out;
1905 iov[0].iov_len = sizeof(out);
1906 iov[1].iov_base = &outarg;
1907 iov[1].iov_len = sizeof(outarg);
2de121f0 1908
8c3fe75e 1909 res = fuse_send_data_iov(se, NULL, iov, 2, bufv);
7387863d
DDAG
1910 if (res > 0) {
1911 res = -res;
1912 }
2de121f0 1913
7387863d 1914 return res;
2de121f0
DDAG
1915}
1916
2de121f0
DDAG
1917void *fuse_req_userdata(fuse_req_t req)
1918{
7387863d 1919 return req->se->userdata;
2de121f0
DDAG
1920}
1921
1922const struct fuse_ctx *fuse_req_ctx(fuse_req_t req)
1923{
7387863d 1924 return &req->ctx;
2de121f0
DDAG
1925}
1926
1927void fuse_req_interrupt_func(fuse_req_t req, fuse_interrupt_func_t func,
7387863d 1928 void *data)
2de121f0 1929{
7387863d
DDAG
1930 pthread_mutex_lock(&req->lock);
1931 pthread_mutex_lock(&req->se->lock);
1932 req->u.ni.func = func;
1933 req->u.ni.data = data;
1934 pthread_mutex_unlock(&req->se->lock);
1935 if (req->interrupted && func) {
1936 func(req, data);
1937 }
1938 pthread_mutex_unlock(&req->lock);
2de121f0
DDAG
1939}
1940
1941int fuse_req_interrupted(fuse_req_t req)
1942{
7387863d 1943 int interrupted;
2de121f0 1944
7387863d
DDAG
1945 pthread_mutex_lock(&req->se->lock);
1946 interrupted = req->interrupted;
1947 pthread_mutex_unlock(&req->se->lock);
2de121f0 1948
7387863d 1949 return interrupted;
2de121f0
DDAG
1950}
1951
1952static struct {
7387863d
DDAG
1953 void (*func)(fuse_req_t, fuse_ino_t, const void *);
1954 const char *name;
2de121f0 1955} fuse_ll_ops[] = {
7387863d
DDAG
1956 [FUSE_LOOKUP] = { do_lookup, "LOOKUP" },
1957 [FUSE_FORGET] = { do_forget, "FORGET" },
1958 [FUSE_GETATTR] = { do_getattr, "GETATTR" },
1959 [FUSE_SETATTR] = { do_setattr, "SETATTR" },
1960 [FUSE_READLINK] = { do_readlink, "READLINK" },
1961 [FUSE_SYMLINK] = { do_symlink, "SYMLINK" },
1962 [FUSE_MKNOD] = { do_mknod, "MKNOD" },
1963 [FUSE_MKDIR] = { do_mkdir, "MKDIR" },
1964 [FUSE_UNLINK] = { do_unlink, "UNLINK" },
1965 [FUSE_RMDIR] = { do_rmdir, "RMDIR" },
1966 [FUSE_RENAME] = { do_rename, "RENAME" },
1967 [FUSE_LINK] = { do_link, "LINK" },
1968 [FUSE_OPEN] = { do_open, "OPEN" },
1969 [FUSE_READ] = { do_read, "READ" },
1970 [FUSE_WRITE] = { do_write, "WRITE" },
1971 [FUSE_STATFS] = { do_statfs, "STATFS" },
1972 [FUSE_RELEASE] = { do_release, "RELEASE" },
1973 [FUSE_FSYNC] = { do_fsync, "FSYNC" },
1974 [FUSE_SETXATTR] = { do_setxattr, "SETXATTR" },
1975 [FUSE_GETXATTR] = { do_getxattr, "GETXATTR" },
1976 [FUSE_LISTXATTR] = { do_listxattr, "LISTXATTR" },
1977 [FUSE_REMOVEXATTR] = { do_removexattr, "REMOVEXATTR" },
1978 [FUSE_FLUSH] = { do_flush, "FLUSH" },
1979 [FUSE_INIT] = { do_init, "INIT" },
1980 [FUSE_OPENDIR] = { do_opendir, "OPENDIR" },
1981 [FUSE_READDIR] = { do_readdir, "READDIR" },
1982 [FUSE_RELEASEDIR] = { do_releasedir, "RELEASEDIR" },
1983 [FUSE_FSYNCDIR] = { do_fsyncdir, "FSYNCDIR" },
1984 [FUSE_GETLK] = { do_getlk, "GETLK" },
1985 [FUSE_SETLK] = { do_setlk, "SETLK" },
1986 [FUSE_SETLKW] = { do_setlkw, "SETLKW" },
1987 [FUSE_ACCESS] = { do_access, "ACCESS" },
1988 [FUSE_CREATE] = { do_create, "CREATE" },
1989 [FUSE_INTERRUPT] = { do_interrupt, "INTERRUPT" },
1990 [FUSE_BMAP] = { do_bmap, "BMAP" },
1991 [FUSE_IOCTL] = { do_ioctl, "IOCTL" },
1992 [FUSE_POLL] = { do_poll, "POLL" },
1993 [FUSE_FALLOCATE] = { do_fallocate, "FALLOCATE" },
1994 [FUSE_DESTROY] = { do_destroy, "DESTROY" },
64c6f408 1995 [FUSE_NOTIFY_REPLY] = { NULL, "NOTIFY_REPLY" },
7387863d
DDAG
1996 [FUSE_BATCH_FORGET] = { do_batch_forget, "BATCH_FORGET" },
1997 [FUSE_READDIRPLUS] = { do_readdirplus, "READDIRPLUS" },
1998 [FUSE_RENAME2] = { do_rename2, "RENAME2" },
1999 [FUSE_COPY_FILE_RANGE] = { do_copy_file_range, "COPY_FILE_RANGE" },
2000 [FUSE_LSEEK] = { do_lseek, "LSEEK" },
2de121f0
DDAG
2001};
2002
2003#define FUSE_MAXOP (sizeof(fuse_ll_ops) / sizeof(fuse_ll_ops[0]))
2004
2005static const char *opname(enum fuse_opcode opcode)
2006{
7387863d
DDAG
2007 if (opcode >= FUSE_MAXOP || !fuse_ll_ops[opcode].name) {
2008 return "???";
2009 } else {
2010 return fuse_ll_ops[opcode].name;
2011 }
2de121f0
DDAG
2012}
2013
2de121f0 2014void fuse_session_process_buf(struct fuse_session *se,
7387863d 2015 const struct fuse_buf *buf)
2de121f0 2016{
7387863d 2017 fuse_session_process_buf_int(se, buf, NULL);
2de121f0
DDAG
2018}
2019
2020void fuse_session_process_buf_int(struct fuse_session *se,
7387863d
DDAG
2021 const struct fuse_buf *buf,
2022 struct fuse_chan *ch)
2023{
2024 struct fuse_in_header *in;
2025 const void *inarg;
2026 struct fuse_req *req;
2027 int err;
2028
2029 in = buf->mem;
2030
2031 if (se->debug) {
2032 fuse_log(FUSE_LOG_DEBUG,
2033 "unique: %llu, opcode: %s (%i), nodeid: %llu, insize: %zu, "
2034 "pid: %u\n",
2035 (unsigned long long)in->unique,
2036 opname((enum fuse_opcode)in->opcode), in->opcode,
2037 (unsigned long long)in->nodeid, buf->size, in->pid);
2038 }
2039
2040 req = fuse_ll_alloc_req(se);
2041 if (req == NULL) {
2042 struct fuse_out_header out = {
2043 .unique = in->unique,
2044 .error = -ENOMEM,
2045 };
2046 struct iovec iov = {
2047 .iov_base = &out,
2048 .iov_len = sizeof(struct fuse_out_header),
2049 };
2050
2051 fuse_send_msg(se, ch, &iov, 1);
2052 return;
2053 }
2054
2055 req->unique = in->unique;
2056 req->ctx.uid = in->uid;
2057 req->ctx.gid = in->gid;
2058 req->ctx.pid = in->pid;
2059 req->ch = ch;
2060
2061 err = EIO;
2062 if (!se->got_init) {
2063 enum fuse_opcode expected;
2064
2065 expected = se->cuse_data ? CUSE_INIT : FUSE_INIT;
2066 if (in->opcode != expected) {
2067 goto reply_err;
2068 }
2069 } else if (in->opcode == FUSE_INIT || in->opcode == CUSE_INIT) {
2070 goto reply_err;
2071 }
2072
2073 err = EACCES;
2074 /* Implement -o allow_root */
2075 if (se->deny_others && in->uid != se->owner && in->uid != 0 &&
2076 in->opcode != FUSE_INIT && in->opcode != FUSE_READ &&
2077 in->opcode != FUSE_WRITE && in->opcode != FUSE_FSYNC &&
2078 in->opcode != FUSE_RELEASE && in->opcode != FUSE_READDIR &&
2079 in->opcode != FUSE_FSYNCDIR && in->opcode != FUSE_RELEASEDIR &&
2080 in->opcode != FUSE_NOTIFY_REPLY && in->opcode != FUSE_READDIRPLUS) {
2081 goto reply_err;
2082 }
2083
2084 err = ENOSYS;
2085 if (in->opcode >= FUSE_MAXOP || !fuse_ll_ops[in->opcode].func) {
2086 goto reply_err;
2087 }
2088 if (in->opcode != FUSE_INTERRUPT) {
2089 struct fuse_req *intr;
2090 pthread_mutex_lock(&se->lock);
2091 intr = check_interrupt(se, req);
2092 list_add_req(req, &se->list);
2093 pthread_mutex_unlock(&se->lock);
2094 if (intr) {
2095 fuse_reply_err(intr, EAGAIN);
2096 }
2097 }
2098
2099 inarg = (void *)&in[1];
2100 if (in->opcode == FUSE_WRITE && se->op.write_buf) {
2101 do_write_buf(req, in->nodeid, inarg, buf);
7387863d
DDAG
2102 } else {
2103 fuse_ll_ops[in->opcode].func(req, in->nodeid, inarg);
2104 }
2105
2106 return;
2de121f0
DDAG
2107
2108reply_err:
7387863d 2109 fuse_reply_err(req, err);
2de121f0
DDAG
2110}
2111
7387863d
DDAG
2112#define LL_OPTION(n, o, v) \
2113 { \
2114 n, offsetof(struct fuse_session, o), v \
2115 }
2de121f0
DDAG
2116
2117static const struct fuse_opt fuse_ll_opts[] = {
205de006
DDAG
2118 LL_OPTION("debug", debug, 1),
2119 LL_OPTION("-d", debug, 1),
2120 LL_OPTION("--debug", debug, 1),
2121 LL_OPTION("allow_root", deny_others, 1),
2122 LL_OPTION("--socket-path=%s", vu_socket_path, 0),
7387863d 2123 FUSE_OPT_END
2de121f0
DDAG
2124};
2125
2126void fuse_lowlevel_version(void)
2127{
7387863d
DDAG
2128 printf("using FUSE kernel interface version %i.%i\n", FUSE_KERNEL_VERSION,
2129 FUSE_KERNEL_MINOR_VERSION);
2de121f0
DDAG
2130}
2131
2132void fuse_lowlevel_help(void)
2133{
7387863d
DDAG
2134 /*
2135 * These are not all options, but the ones that are
2136 * potentially of interest to an end-user
2137 */
205de006
DDAG
2138 printf(
2139 " -o allow_root allow access by root\n"
2140 " --socket-path=PATH path for the vhost-user socket\n");
2de121f0
DDAG
2141}
2142
2143void fuse_session_destroy(struct fuse_session *se)
2144{
7387863d
DDAG
2145 if (se->got_init && !se->got_destroy) {
2146 if (se->op.destroy) {
2147 se->op.destroy(se->userdata);
2148 }
2149 }
2150 pthread_mutex_destroy(&se->lock);
2151 free(se->cuse_data);
2152 if (se->fd != -1) {
2153 close(se->fd);
2154 }
2155 free(se);
2de121f0
DDAG
2156}
2157
2158
2de121f0 2159struct fuse_session *fuse_session_new(struct fuse_args *args,
7387863d
DDAG
2160 const struct fuse_lowlevel_ops *op,
2161 size_t op_size, void *userdata)
2162{
2163 struct fuse_session *se;
2164
2165 if (sizeof(struct fuse_lowlevel_ops) < op_size) {
2166 fuse_log(
2167 FUSE_LOG_ERR,
2168 "fuse: warning: library too old, some operations may not work\n");
2169 op_size = sizeof(struct fuse_lowlevel_ops);
2170 }
2171
2172 if (args->argc == 0) {
2173 fuse_log(FUSE_LOG_ERR,
2174 "fuse: empty argv passed to fuse_session_new().\n");
2175 return NULL;
2176 }
2177
2178 se = (struct fuse_session *)calloc(1, sizeof(struct fuse_session));
2179 if (se == NULL) {
2180 fuse_log(FUSE_LOG_ERR, "fuse: failed to allocate fuse object\n");
2181 goto out1;
2182 }
2183 se->fd = -1;
2184 se->conn.max_write = UINT_MAX;
2185 se->conn.max_readahead = UINT_MAX;
2186
2187 /* Parse options */
2188 if (fuse_opt_parse(args, se, fuse_ll_opts, NULL) == -1) {
2189 goto out2;
2190 }
2191 if (args->argc == 1 && args->argv[0][0] == '-') {
2192 fuse_log(FUSE_LOG_ERR,
2193 "fuse: warning: argv[0] looks like an option, but "
2194 "will be ignored\n");
2195 } else if (args->argc != 1) {
2196 int i;
2197 fuse_log(FUSE_LOG_ERR, "fuse: unknown option(s): `");
2198 for (i = 1; i < args->argc - 1; i++) {
2199 fuse_log(FUSE_LOG_ERR, "%s ", args->argv[i]);
2200 }
2201 fuse_log(FUSE_LOG_ERR, "%s'\n", args->argv[i]);
2202 goto out4;
2203 }
2204
2205 se->bufsize = FUSE_MAX_MAX_PAGES * getpagesize() + FUSE_BUFFER_HEADER_SIZE;
2206
2207 list_init_req(&se->list);
2208 list_init_req(&se->interrupts);
7387863d
DDAG
2209 fuse_mutex_init(&se->lock);
2210
2211 memcpy(&se->op, op, op_size);
2212 se->owner = getuid();
2213 se->userdata = userdata;
2214
2215 return se;
2de121f0 2216
2de121f0 2217out4:
7387863d 2218 fuse_opt_free_args(args);
2de121f0 2219out2:
7387863d 2220 free(se);
2de121f0 2221out1:
7387863d 2222 return NULL;
2de121f0
DDAG
2223}
2224
67aab022 2225int fuse_session_mount(struct fuse_session *se)
2de121f0 2226{
7387863d
DDAG
2227 int fd;
2228
2229 /*
2230 * Make sure file descriptors 0, 1 and 2 are open, otherwise chaos
2231 * would ensue.
2232 */
2233 do {
2234 fd = open("/dev/null", O_RDWR);
2235 if (fd > 2) {
2236 close(fd);
2237 }
2238 } while (fd >= 0 && fd <= 2);
2239
2240 /*
2241 * To allow FUSE daemons to run without privileges, the caller may open
2242 * /dev/fuse before launching the file system and pass on the file
2243 * descriptor by specifying /dev/fd/N as the mount point. Note that the
2244 * parent process takes care of performing the mount in this case.
2245 */
2246 fd = fuse_mnt_parse_fuse_fd(mountpoint);
2247 if (fd != -1) {
2248 if (fcntl(fd, F_GETFD) == -1) {
2249 fuse_log(FUSE_LOG_ERR, "fuse: Invalid file descriptor /dev/fd/%u\n",
2250 fd);
2251 return -1;
2252 }
2253 se->fd = fd;
2254 return 0;
2255 }
2256
2257 /* Open channel */
2258 fd = fuse_kern_mount(mountpoint, se->mo);
2259 if (fd == -1) {
2260 return -1;
2261 }
2262 se->fd = fd;
2263
2264 /* Save mountpoint */
2265 se->mountpoint = strdup(mountpoint);
2266 if (se->mountpoint == NULL) {
2267 goto error_out;
2268 }
2269
2270 return 0;
2de121f0
DDAG
2271
2272error_out:
7387863d
DDAG
2273 fuse_kern_unmount(mountpoint, fd);
2274 return -1;
2de121f0
DDAG
2275}
2276
2277int fuse_session_fd(struct fuse_session *se)
2278{
7387863d 2279 return se->fd;
2de121f0
DDAG
2280}
2281
2282void fuse_session_unmount(struct fuse_session *se)
2283{
2de121f0
DDAG
2284}
2285
2286#ifdef linux
2287int fuse_req_getgroups(fuse_req_t req, int size, gid_t list[])
2288{
7387863d
DDAG
2289 char *buf;
2290 size_t bufsize = 1024;
2291 char path[128];
2292 int ret;
2293 int fd;
2294 unsigned long pid = req->ctx.pid;
2295 char *s;
2de121f0 2296
7387863d 2297 sprintf(path, "/proc/%lu/task/%lu/status", pid, pid);
2de121f0
DDAG
2298
2299retry:
7387863d
DDAG
2300 buf = malloc(bufsize);
2301 if (buf == NULL) {
2302 return -ENOMEM;
2303 }
2304
2305 ret = -EIO;
2306 fd = open(path, O_RDONLY);
2307 if (fd == -1) {
2308 goto out_free;
2309 }
2310
2311 ret = read(fd, buf, bufsize);
2312 close(fd);
2313 if (ret < 0) {
2314 ret = -EIO;
2315 goto out_free;
2316 }
2317
2318 if ((size_t)ret == bufsize) {
2319 free(buf);
2320 bufsize *= 4;
2321 goto retry;
2322 }
2323
2324 ret = -EIO;
2325 s = strstr(buf, "\nGroups:");
2326 if (s == NULL) {
2327 goto out_free;
2328 }
2329
2330 s += 8;
2331 ret = 0;
2332 while (1) {
2333 char *end;
2334 unsigned long val = strtoul(s, &end, 0);
2335 if (end == s) {
2336 break;
2337 }
2338
2339 s = end;
2340 if (ret < size) {
2341 list[ret] = val;
2342 }
2343 ret++;
2344 }
2de121f0
DDAG
2345
2346out_free:
7387863d
DDAG
2347 free(buf);
2348 return ret;
2de121f0
DDAG
2349}
2350#else /* linux */
2351/*
2352 * This is currently not implemented on other than Linux...
2353 */
2354int fuse_req_getgroups(fuse_req_t req, int size, gid_t list[])
2355{
7387863d
DDAG
2356 (void)req;
2357 (void)size;
2358 (void)list;
2359 return -ENOSYS;
2de121f0
DDAG
2360}
2361#endif
2362
2363void fuse_session_exit(struct fuse_session *se)
2364{
7387863d 2365 se->exited = 1;
2de121f0
DDAG
2366}
2367
2368void fuse_session_reset(struct fuse_session *se)
2369{
7387863d
DDAG
2370 se->exited = 0;
2371 se->error = 0;
2de121f0
DDAG
2372}
2373
2374int fuse_session_exited(struct fuse_session *se)
2375{
7387863d 2376 return se->exited;
2de121f0 2377}