1 /*- 2 * SPDX-License-Identifier: BSD-3-Clause 3 * 4 * Copyright (c) 2007-2009 Google Inc. and Amit Singh 5 * All rights reserved. 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions are 9 * met: 10 * 11 * * Redistributions of source code must retain the above copyright 12 * notice, this list of conditions and the following disclaimer. 13 * * Redistributions in binary form must reproduce the above 14 * copyright notice, this list of conditions and the following disclaimer 15 * in the documentation and/or other materials provided with the 16 * distribution. 17 * * Neither the name of Google Inc. nor the names of its 18 * contributors may be used to endorse or promote products derived from 19 * this software without specific prior written permission. 20 * 21 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 22 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 23 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 24 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 25 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 26 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 27 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 28 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 29 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 30 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 31 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 32 * 33 * Copyright (C) 2005 Csaba Henk. 34 * All rights reserved. 35 * 36 * Copyright (c) 2019 The FreeBSD Foundation 37 * 38 * Portions of this software were developed by BFF Storage Systems, LLC under 39 * sponsorship from the FreeBSD Foundation. 40 * 41 * Redistribution and use in source and binary forms, with or without 42 * modification, are permitted provided that the following conditions 43 * are met: 44 * 1. Redistributions of source code must retain the above copyright 45 * notice, this list of conditions and the following disclaimer. 46 * 2. Redistributions in binary form must reproduce the above copyright 47 * notice, this list of conditions and the following disclaimer in the 48 * documentation and/or other materials provided with the distribution. 49 * 50 * THIS SOFTWARE IS PROVIDED BY AUTHOR AND CONTRIBUTORS ``AS IS'' AND 51 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 52 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 53 * ARE DISCLAIMED. IN NO EVENT SHALL AUTHOR OR CONTRIBUTORS BE LIABLE 54 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 55 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 56 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 57 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 58 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 59 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 60 * SUCH DAMAGE. 61 */ 62 63 #include <sys/cdefs.h> 64 __FBSDID("$FreeBSD$"); 65 66 #include <sys/param.h> 67 #include <sys/module.h> 68 #include <sys/systm.h> 69 #include <sys/counter.h> 70 #include <sys/errno.h> 71 #include <sys/kernel.h> 72 #include <sys/conf.h> 73 #include <sys/uio.h> 74 #include <sys/malloc.h> 75 #include <sys/queue.h> 76 #include <sys/lock.h> 77 #include <sys/sx.h> 78 #include <sys/mutex.h> 79 #include <sys/proc.h> 80 #include <sys/mount.h> 81 #include <sys/sdt.h> 82 #include <sys/vnode.h> 83 #include <sys/signalvar.h> 84 #include <sys/syscallsubr.h> 85 #include <sys/sysctl.h> 86 #include <vm/uma.h> 87 88 #include "fuse.h" 89 #include "fuse_node.h" 90 #include "fuse_ipc.h" 91 #include "fuse_internal.h" 92 93 SDT_PROVIDER_DECLARE(fusefs); 94 /* 95 * Fuse trace probe: 96 * arg0: verbosity. Higher numbers give more verbose messages 97 * arg1: Textual message 98 */ 99 SDT_PROBE_DEFINE2(fusefs, , ipc, trace, "int", "char*"); 100 101 static void fdisp_make_pid(struct fuse_dispatcher *fdip, enum fuse_opcode op, 102 struct fuse_data *data, uint64_t nid, pid_t pid, struct ucred *cred); 103 static void fuse_interrupt_send(struct fuse_ticket *otick, int err); 104 static struct fuse_ticket *fticket_alloc(struct fuse_data *data); 105 static void fticket_refresh(struct fuse_ticket *ftick); 106 static void fticket_destroy(struct fuse_ticket *ftick); 107 static int fticket_wait_answer(struct fuse_ticket *ftick); 108 static inline int 109 fticket_aw_pull_uio(struct fuse_ticket *ftick, 110 struct uio *uio); 111 112 static int fuse_body_audit(struct fuse_ticket *ftick, size_t blen); 113 114 static fuse_handler_t fuse_standard_handler; 115 116 static counter_u64_t fuse_ticket_count; 117 SYSCTL_COUNTER_U64(_vfs_fusefs_stats, OID_AUTO, ticket_count, CTLFLAG_RD, 118 &fuse_ticket_count, "Number of allocated tickets"); 119 120 static long fuse_iov_permanent_bufsize = 1 << 19; 121 122 SYSCTL_LONG(_vfs_fusefs, OID_AUTO, iov_permanent_bufsize, CTLFLAG_RW, 123 &fuse_iov_permanent_bufsize, 0, 124 "limit for permanently stored buffer size for fuse_iovs"); 125 static int fuse_iov_credit = 16; 126 127 SYSCTL_INT(_vfs_fusefs, OID_AUTO, iov_credit, CTLFLAG_RW, 128 &fuse_iov_credit, 0, 129 "how many times is an oversized fuse_iov tolerated"); 130 131 MALLOC_DEFINE(M_FUSEMSG, "fuse_msgbuf", "fuse message buffer"); 132 static uma_zone_t ticket_zone; 133 134 /* 135 * TODO: figure out how to timeout INTERRUPT requests, because the daemon may 136 * leagally never respond 137 */ 138 static int 139 fuse_interrupt_callback(struct fuse_ticket *tick, struct uio *uio) 140 { 141 struct fuse_ticket *otick, *x_tick; 142 struct fuse_interrupt_in *fii; 143 struct fuse_data *data = tick->tk_data; 144 bool found = false; 145 146 fii = (struct fuse_interrupt_in*)((char*)tick->tk_ms_fiov.base + 147 sizeof(struct fuse_in_header)); 148 149 fuse_lck_mtx_lock(data->aw_mtx); 150 TAILQ_FOREACH_SAFE(otick, &data->aw_head, tk_aw_link, x_tick) { 151 if (otick->tk_unique == fii->unique) { 152 found = true; 153 break; 154 } 155 } 156 fuse_lck_mtx_unlock(data->aw_mtx); 157 158 if (!found) { 159 /* Original is already complete. Just return */ 160 return 0; 161 } 162 163 /* Clear the original ticket's interrupt association */ 164 otick->irq_unique = 0; 165 166 if (tick->tk_aw_ohead.error == ENOSYS) { 167 fsess_set_notimpl(data->mp, FUSE_INTERRUPT); 168 return 0; 169 } else if (tick->tk_aw_ohead.error == EAGAIN) { 170 /* 171 * There are two reasons we might get this: 172 * 1) the daemon received the INTERRUPT request before the 173 * original, or 174 * 2) the daemon received the INTERRUPT request after it 175 * completed the original request. 176 * In the first case we should re-send the INTERRUPT. In the 177 * second, we should ignore it. 178 */ 179 /* Resend */ 180 fuse_interrupt_send(otick, EINTR); 181 return 0; 182 } else { 183 /* Illegal FUSE_INTERRUPT response */ 184 return EINVAL; 185 } 186 } 187 188 /* Interrupt the operation otick. Return err as its error code */ 189 void 190 fuse_interrupt_send(struct fuse_ticket *otick, int err) 191 { 192 struct fuse_dispatcher fdi; 193 struct fuse_interrupt_in *fii; 194 struct fuse_in_header *ftick_hdr; 195 struct fuse_data *data = otick->tk_data; 196 struct fuse_ticket *tick, *xtick; 197 struct ucred reused_creds; 198 gid_t reused_groups[1]; 199 200 if (otick->irq_unique == 0) { 201 /* 202 * If the daemon hasn't yet received otick, then we can answer 203 * it ourselves and return. 204 */ 205 fuse_lck_mtx_lock(data->ms_mtx); 206 STAILQ_FOREACH_SAFE(tick, &otick->tk_data->ms_head, tk_ms_link, 207 xtick) { 208 if (tick == otick) { 209 STAILQ_REMOVE(&otick->tk_data->ms_head, tick, 210 fuse_ticket, tk_ms_link); 211 otick->tk_data->ms_count--; 212 otick->tk_ms_link.stqe_next = NULL; 213 fuse_lck_mtx_unlock(data->ms_mtx); 214 215 fuse_lck_mtx_lock(otick->tk_aw_mtx); 216 if (!fticket_answered(otick)) { 217 fticket_set_answered(otick); 218 otick->tk_aw_errno = err; 219 wakeup(otick); 220 } 221 fuse_lck_mtx_unlock(otick->tk_aw_mtx); 222 223 fuse_ticket_drop(tick); 224 return; 225 } 226 } 227 fuse_lck_mtx_unlock(data->ms_mtx); 228 229 /* 230 * If the fuse daemon doesn't support interrupts, then there's 231 * nothing more that we can do 232 */ 233 if (!fsess_isimpl(data->mp, FUSE_INTERRUPT)) 234 return; 235 236 /* 237 * If the fuse daemon has already received otick, then we must 238 * send FUSE_INTERRUPT. 239 */ 240 ftick_hdr = fticket_in_header(otick); 241 reused_creds.cr_uid = ftick_hdr->uid; 242 reused_groups[0] = ftick_hdr->gid; 243 reused_creds.cr_groups = reused_groups; 244 fdisp_init(&fdi, sizeof(*fii)); 245 fdisp_make_pid(&fdi, FUSE_INTERRUPT, data, ftick_hdr->nodeid, 246 ftick_hdr->pid, &reused_creds); 247 248 fii = fdi.indata; 249 fii->unique = otick->tk_unique; 250 fuse_insert_callback(fdi.tick, fuse_interrupt_callback); 251 252 otick->irq_unique = fdi.tick->tk_unique; 253 /* Interrupt ops should be delivered ASAP */ 254 fuse_insert_message(fdi.tick, true); 255 fdisp_destroy(&fdi); 256 } else { 257 /* This ticket has already been interrupted */ 258 } 259 } 260 261 void 262 fiov_init(struct fuse_iov *fiov, size_t size) 263 { 264 uint32_t msize = FU_AT_LEAST(size); 265 266 fiov->len = 0; 267 268 fiov->base = malloc(msize, M_FUSEMSG, M_WAITOK | M_ZERO); 269 270 fiov->allocated_size = msize; 271 fiov->credit = fuse_iov_credit; 272 } 273 274 void 275 fiov_teardown(struct fuse_iov *fiov) 276 { 277 MPASS(fiov->base != NULL); 278 free(fiov->base, M_FUSEMSG); 279 } 280 281 void 282 fiov_adjust(struct fuse_iov *fiov, size_t size) 283 { 284 if (fiov->allocated_size < size || 285 (fuse_iov_permanent_bufsize >= 0 && 286 fiov->allocated_size - size > fuse_iov_permanent_bufsize && 287 --fiov->credit < 0)) { 288 fiov->base = realloc(fiov->base, FU_AT_LEAST(size), M_FUSEMSG, 289 M_WAITOK | M_ZERO); 290 if (!fiov->base) { 291 panic("FUSE: realloc failed"); 292 } 293 fiov->allocated_size = FU_AT_LEAST(size); 294 fiov->credit = fuse_iov_credit; 295 /* Clear data buffer after reallocation */ 296 bzero(fiov->base, size); 297 } else if (size > fiov->len) { 298 /* Clear newly extended portion of data buffer */ 299 bzero((char*)fiov->base + fiov->len, size - fiov->len); 300 } 301 fiov->len = size; 302 } 303 304 /* Resize the fiov if needed, and clear it's buffer */ 305 void 306 fiov_refresh(struct fuse_iov *fiov) 307 { 308 fiov_adjust(fiov, 0); 309 } 310 311 static int 312 fticket_ctor(void *mem, int size, void *arg, int flags) 313 { 314 struct fuse_ticket *ftick = mem; 315 struct fuse_data *data = arg; 316 317 FUSE_ASSERT_MS_DONE(ftick); 318 FUSE_ASSERT_AW_DONE(ftick); 319 320 ftick->tk_data = data; 321 322 if (ftick->tk_unique != 0) 323 fticket_refresh(ftick); 324 325 /* May be truncated to 32 bits */ 326 ftick->tk_unique = atomic_fetchadd_long(&data->ticketer, 1); 327 if (ftick->tk_unique == 0) 328 ftick->tk_unique = atomic_fetchadd_long(&data->ticketer, 1); 329 330 ftick->irq_unique = 0; 331 332 refcount_init(&ftick->tk_refcount, 1); 333 counter_u64_add(fuse_ticket_count, 1); 334 335 return 0; 336 } 337 338 static void 339 fticket_dtor(void *mem, int size, void *arg) 340 { 341 #ifdef INVARIANTS 342 struct fuse_ticket *ftick = mem; 343 #endif 344 345 FUSE_ASSERT_MS_DONE(ftick); 346 FUSE_ASSERT_AW_DONE(ftick); 347 348 counter_u64_add(fuse_ticket_count, -1); 349 } 350 351 static int 352 fticket_init(void *mem, int size, int flags) 353 { 354 struct fuse_ticket *ftick = mem; 355 356 bzero(ftick, sizeof(struct fuse_ticket)); 357 358 fiov_init(&ftick->tk_ms_fiov, sizeof(struct fuse_in_header)); 359 ftick->tk_ms_type = FT_M_FIOV; 360 361 mtx_init(&ftick->tk_aw_mtx, "fuse answer delivery mutex", NULL, MTX_DEF); 362 fiov_init(&ftick->tk_aw_fiov, 0); 363 ftick->tk_aw_type = FT_A_FIOV; 364 365 return 0; 366 } 367 368 static void 369 fticket_fini(void *mem, int size) 370 { 371 struct fuse_ticket *ftick = mem; 372 373 fiov_teardown(&ftick->tk_ms_fiov); 374 fiov_teardown(&ftick->tk_aw_fiov); 375 mtx_destroy(&ftick->tk_aw_mtx); 376 } 377 378 static inline struct fuse_ticket * 379 fticket_alloc(struct fuse_data *data) 380 { 381 return uma_zalloc_arg(ticket_zone, data, M_WAITOK); 382 } 383 384 static inline void 385 fticket_destroy(struct fuse_ticket *ftick) 386 { 387 return uma_zfree(ticket_zone, ftick); 388 } 389 390 static inline 391 void 392 fticket_refresh(struct fuse_ticket *ftick) 393 { 394 FUSE_ASSERT_MS_DONE(ftick); 395 FUSE_ASSERT_AW_DONE(ftick); 396 397 fiov_refresh(&ftick->tk_ms_fiov); 398 ftick->tk_ms_bufdata = NULL; 399 ftick->tk_ms_bufsize = 0; 400 ftick->tk_ms_type = FT_M_FIOV; 401 402 bzero(&ftick->tk_aw_ohead, sizeof(struct fuse_out_header)); 403 404 fiov_refresh(&ftick->tk_aw_fiov); 405 ftick->tk_aw_errno = 0; 406 ftick->tk_aw_bufdata = NULL; 407 ftick->tk_aw_bufsize = 0; 408 ftick->tk_aw_type = FT_A_FIOV; 409 410 ftick->tk_flag = 0; 411 } 412 413 /* Prepar the ticket to be reused, but don't clear its data buffers */ 414 static inline void 415 fticket_reset(struct fuse_ticket *ftick) 416 { 417 FUSE_ASSERT_MS_DONE(ftick); 418 FUSE_ASSERT_AW_DONE(ftick); 419 420 ftick->tk_ms_bufdata = NULL; 421 ftick->tk_ms_bufsize = 0; 422 ftick->tk_ms_type = FT_M_FIOV; 423 424 bzero(&ftick->tk_aw_ohead, sizeof(struct fuse_out_header)); 425 426 ftick->tk_aw_errno = 0; 427 ftick->tk_aw_bufdata = NULL; 428 ftick->tk_aw_bufsize = 0; 429 ftick->tk_aw_type = FT_A_FIOV; 430 431 ftick->tk_flag = 0; 432 } 433 434 static int 435 fticket_wait_answer(struct fuse_ticket *ftick) 436 { 437 struct thread *td = curthread; 438 sigset_t blockedset, oldset; 439 int err = 0, stops_deferred; 440 struct fuse_data *data = ftick->tk_data; 441 bool interrupted = false; 442 443 if (fsess_isimpl(ftick->tk_data->mp, FUSE_INTERRUPT) && 444 data->dataflags & FSESS_INTR) { 445 SIGEMPTYSET(blockedset); 446 } else { 447 /* Block all signals except (implicitly) SIGKILL */ 448 SIGFILLSET(blockedset); 449 } 450 stops_deferred = sigdeferstop(SIGDEFERSTOP_SILENT); 451 kern_sigprocmask(td, SIG_BLOCK, NULL, &oldset, 0); 452 453 fuse_lck_mtx_lock(ftick->tk_aw_mtx); 454 455 retry: 456 if (fticket_answered(ftick)) { 457 goto out; 458 } 459 460 if (fdata_get_dead(data)) { 461 err = ENOTCONN; 462 fticket_set_answered(ftick); 463 goto out; 464 } 465 kern_sigprocmask(td, SIG_BLOCK, &blockedset, NULL, 0); 466 err = msleep(ftick, &ftick->tk_aw_mtx, PCATCH, "fu_ans", 467 data->daemon_timeout * hz); 468 kern_sigprocmask(td, SIG_SETMASK, &oldset, NULL, 0); 469 if (err == EWOULDBLOCK) { 470 SDT_PROBE2(fusefs, , ipc, trace, 3, 471 "fticket_wait_answer: EWOULDBLOCK"); 472 #ifdef XXXIP /* die conditionally */ 473 if (!fdata_get_dead(data)) { 474 fdata_set_dead(data); 475 } 476 #endif 477 err = ETIMEDOUT; 478 fticket_set_answered(ftick); 479 } else if ((err == EINTR || err == ERESTART)) { 480 /* 481 * Whether we get EINTR or ERESTART depends on whether 482 * SA_RESTART was set by sigaction(2). 483 * 484 * Try to interrupt the operation and wait for an EINTR response 485 * to the original operation. If the file system does not 486 * support FUSE_INTERRUPT, then we'll just wait for it to 487 * complete like normal. If it does support FUSE_INTERRUPT, 488 * then it will either respond EINTR to the original operation, 489 * or EAGAIN to the interrupt. 490 */ 491 sigset_t tmpset; 492 493 SDT_PROBE2(fusefs, , ipc, trace, 4, 494 "fticket_wait_answer: interrupt"); 495 fuse_lck_mtx_unlock(ftick->tk_aw_mtx); 496 fuse_interrupt_send(ftick, err); 497 498 PROC_LOCK(td->td_proc); 499 mtx_lock(&td->td_proc->p_sigacts->ps_mtx); 500 tmpset = td->td_proc->p_siglist; 501 SIGSETOR(tmpset, td->td_siglist); 502 mtx_unlock(&td->td_proc->p_sigacts->ps_mtx); 503 PROC_UNLOCK(td->td_proc); 504 505 fuse_lck_mtx_lock(ftick->tk_aw_mtx); 506 if (!interrupted && !SIGISMEMBER(tmpset, SIGKILL)) { 507 /* 508 * Block all signals while we wait for an interrupt 509 * response. The protocol doesn't discriminate between 510 * different signals. 511 */ 512 SIGFILLSET(blockedset); 513 interrupted = true; 514 goto retry; 515 } else { 516 /* 517 * Return immediately for fatal signals, or if this is 518 * the second interruption. We should only be 519 * interrupted twice if the thread is stopped, for 520 * example during sigexit. 521 */ 522 } 523 } else if (err) { 524 SDT_PROBE2(fusefs, , ipc, trace, 6, 525 "fticket_wait_answer: other error"); 526 } else { 527 SDT_PROBE2(fusefs, , ipc, trace, 7, "fticket_wait_answer: OK"); 528 } 529 out: 530 if (!(err || fticket_answered(ftick))) { 531 SDT_PROBE2(fusefs, , ipc, trace, 1, 532 "FUSE: requester was woken up but still no answer"); 533 err = ENXIO; 534 } 535 fuse_lck_mtx_unlock(ftick->tk_aw_mtx); 536 sigallowstop(stops_deferred); 537 538 return err; 539 } 540 541 static inline 542 int 543 fticket_aw_pull_uio(struct fuse_ticket *ftick, struct uio *uio) 544 { 545 int err = 0; 546 size_t len = uio_resid(uio); 547 548 if (len) { 549 switch (ftick->tk_aw_type) { 550 case FT_A_FIOV: 551 fiov_adjust(fticket_resp(ftick), len); 552 err = uiomove(fticket_resp(ftick)->base, len, uio); 553 break; 554 555 case FT_A_BUF: 556 ftick->tk_aw_bufsize = len; 557 err = uiomove(ftick->tk_aw_bufdata, len, uio); 558 break; 559 560 default: 561 panic("FUSE: unknown answer type for ticket %p", ftick); 562 } 563 } 564 return err; 565 } 566 567 int 568 fticket_pull(struct fuse_ticket *ftick, struct uio *uio) 569 { 570 int err = 0; 571 572 if (ftick->tk_aw_ohead.error) { 573 return 0; 574 } 575 err = fuse_body_audit(ftick, uio_resid(uio)); 576 if (!err) { 577 err = fticket_aw_pull_uio(ftick, uio); 578 } 579 return err; 580 } 581 582 struct fuse_data * 583 fdata_alloc(struct cdev *fdev, struct ucred *cred) 584 { 585 struct fuse_data *data; 586 587 data = malloc(sizeof(struct fuse_data), M_FUSEMSG, M_WAITOK | M_ZERO); 588 589 data->fdev = fdev; 590 mtx_init(&data->ms_mtx, "fuse message list mutex", NULL, MTX_DEF); 591 STAILQ_INIT(&data->ms_head); 592 data->ms_count = 0; 593 knlist_init_mtx(&data->ks_rsel.si_note, &data->ms_mtx); 594 mtx_init(&data->aw_mtx, "fuse answer list mutex", NULL, MTX_DEF); 595 TAILQ_INIT(&data->aw_head); 596 data->daemoncred = crhold(cred); 597 data->daemon_timeout = FUSE_DEFAULT_DAEMON_TIMEOUT; 598 sx_init(&data->rename_lock, "fuse rename lock"); 599 data->ref = 1; 600 601 return data; 602 } 603 604 void 605 fdata_trydestroy(struct fuse_data *data) 606 { 607 data->ref--; 608 MPASS(data->ref >= 0); 609 if (data->ref != 0) 610 return; 611 612 /* Driving off stage all that stuff thrown at device... */ 613 sx_destroy(&data->rename_lock); 614 crfree(data->daemoncred); 615 mtx_destroy(&data->aw_mtx); 616 knlist_delete(&data->ks_rsel.si_note, curthread, 0); 617 knlist_destroy(&data->ks_rsel.si_note); 618 mtx_destroy(&data->ms_mtx); 619 620 free(data, M_FUSEMSG); 621 } 622 623 void 624 fdata_set_dead(struct fuse_data *data) 625 { 626 FUSE_LOCK(); 627 if (fdata_get_dead(data)) { 628 FUSE_UNLOCK(); 629 return; 630 } 631 fuse_lck_mtx_lock(data->ms_mtx); 632 data->dataflags |= FSESS_DEAD; 633 wakeup_one(data); 634 selwakeuppri(&data->ks_rsel, PZERO + 1); 635 wakeup(&data->ticketer); 636 fuse_lck_mtx_unlock(data->ms_mtx); 637 FUSE_UNLOCK(); 638 } 639 640 struct fuse_ticket * 641 fuse_ticket_fetch(struct fuse_data *data) 642 { 643 int err = 0; 644 struct fuse_ticket *ftick; 645 646 ftick = fticket_alloc(data); 647 648 if (!(data->dataflags & FSESS_INITED)) { 649 /* Sleep until get answer for INIT messsage */ 650 FUSE_LOCK(); 651 if (!(data->dataflags & FSESS_INITED) && data->ticketer > 2) { 652 err = msleep(&data->ticketer, &fuse_mtx, PCATCH | PDROP, 653 "fu_ini", 0); 654 if (err) 655 fdata_set_dead(data); 656 } else 657 FUSE_UNLOCK(); 658 } 659 return ftick; 660 } 661 662 int 663 fuse_ticket_drop(struct fuse_ticket *ftick) 664 { 665 int die; 666 667 die = refcount_release(&ftick->tk_refcount); 668 if (die) 669 fticket_destroy(ftick); 670 671 return die; 672 } 673 674 void 675 fuse_insert_callback(struct fuse_ticket *ftick, fuse_handler_t * handler) 676 { 677 if (fdata_get_dead(ftick->tk_data)) { 678 return; 679 } 680 ftick->tk_aw_handler = handler; 681 682 fuse_lck_mtx_lock(ftick->tk_data->aw_mtx); 683 fuse_aw_push(ftick); 684 fuse_lck_mtx_unlock(ftick->tk_data->aw_mtx); 685 } 686 687 /* 688 * Insert a new upgoing ticket into the message queue 689 * 690 * If urgent is true, insert at the front of the queue. Otherwise, insert in 691 * FIFO order. 692 */ 693 void 694 fuse_insert_message(struct fuse_ticket *ftick, bool urgent) 695 { 696 if (ftick->tk_flag & FT_DIRTY) { 697 panic("FUSE: ticket reused without being refreshed"); 698 } 699 ftick->tk_flag |= FT_DIRTY; 700 701 if (fdata_get_dead(ftick->tk_data)) { 702 return; 703 } 704 fuse_lck_mtx_lock(ftick->tk_data->ms_mtx); 705 if (urgent) 706 fuse_ms_push_head(ftick); 707 else 708 fuse_ms_push(ftick); 709 wakeup_one(ftick->tk_data); 710 selwakeuppri(&ftick->tk_data->ks_rsel, PZERO + 1); 711 KNOTE_LOCKED(&ftick->tk_data->ks_rsel.si_note, 0); 712 fuse_lck_mtx_unlock(ftick->tk_data->ms_mtx); 713 } 714 715 static int 716 fuse_body_audit(struct fuse_ticket *ftick, size_t blen) 717 { 718 int err = 0; 719 enum fuse_opcode opcode; 720 721 opcode = fticket_opcode(ftick); 722 723 switch (opcode) { 724 case FUSE_BMAP: 725 err = (blen == sizeof(struct fuse_bmap_out)) ? 0 : EINVAL; 726 break; 727 728 case FUSE_LINK: 729 case FUSE_LOOKUP: 730 case FUSE_MKDIR: 731 case FUSE_MKNOD: 732 case FUSE_SYMLINK: 733 if (fuse_libabi_geq(ftick->tk_data, 7, 9)) { 734 err = (blen == sizeof(struct fuse_entry_out)) ? 735 0 : EINVAL; 736 } else { 737 err = (blen == FUSE_COMPAT_ENTRY_OUT_SIZE) ? 0 : EINVAL; 738 } 739 break; 740 741 case FUSE_FORGET: 742 panic("FUSE: a handler has been intalled for FUSE_FORGET"); 743 break; 744 745 case FUSE_GETATTR: 746 case FUSE_SETATTR: 747 if (fuse_libabi_geq(ftick->tk_data, 7, 9)) { 748 err = (blen == sizeof(struct fuse_attr_out)) ? 749 0 : EINVAL; 750 } else { 751 err = (blen == FUSE_COMPAT_ATTR_OUT_SIZE) ? 0 : EINVAL; 752 } 753 break; 754 755 case FUSE_READLINK: 756 err = (PAGE_SIZE >= blen) ? 0 : EINVAL; 757 break; 758 759 case FUSE_UNLINK: 760 err = (blen == 0) ? 0 : EINVAL; 761 break; 762 763 case FUSE_RMDIR: 764 err = (blen == 0) ? 0 : EINVAL; 765 break; 766 767 case FUSE_RENAME: 768 err = (blen == 0) ? 0 : EINVAL; 769 break; 770 771 case FUSE_OPEN: 772 err = (blen == sizeof(struct fuse_open_out)) ? 0 : EINVAL; 773 break; 774 775 case FUSE_READ: 776 err = (((struct fuse_read_in *)( 777 (char *)ftick->tk_ms_fiov.base + 778 sizeof(struct fuse_in_header) 779 ))->size >= blen) ? 0 : EINVAL; 780 break; 781 782 case FUSE_WRITE: 783 err = (blen == sizeof(struct fuse_write_out)) ? 0 : EINVAL; 784 break; 785 786 case FUSE_STATFS: 787 if (fuse_libabi_geq(ftick->tk_data, 7, 4)) { 788 err = (blen == sizeof(struct fuse_statfs_out)) ? 789 0 : EINVAL; 790 } else { 791 err = (blen == FUSE_COMPAT_STATFS_SIZE) ? 0 : EINVAL; 792 } 793 break; 794 795 case FUSE_RELEASE: 796 err = (blen == 0) ? 0 : EINVAL; 797 break; 798 799 case FUSE_FSYNC: 800 err = (blen == 0) ? 0 : EINVAL; 801 break; 802 803 case FUSE_SETXATTR: 804 err = (blen == 0) ? 0 : EINVAL; 805 break; 806 807 case FUSE_GETXATTR: 808 case FUSE_LISTXATTR: 809 /* 810 * These can have varying response lengths, and 0 length 811 * isn't necessarily invalid. 812 */ 813 err = 0; 814 break; 815 816 case FUSE_REMOVEXATTR: 817 err = (blen == 0) ? 0 : EINVAL; 818 break; 819 820 case FUSE_FLUSH: 821 err = (blen == 0) ? 0 : EINVAL; 822 break; 823 824 case FUSE_INIT: 825 if (blen == sizeof(struct fuse_init_out) || 826 blen == FUSE_COMPAT_INIT_OUT_SIZE || 827 blen == FUSE_COMPAT_22_INIT_OUT_SIZE) { 828 err = 0; 829 } else { 830 err = EINVAL; 831 } 832 break; 833 834 case FUSE_OPENDIR: 835 err = (blen == sizeof(struct fuse_open_out)) ? 0 : EINVAL; 836 break; 837 838 case FUSE_READDIR: 839 err = (((struct fuse_read_in *)( 840 (char *)ftick->tk_ms_fiov.base + 841 sizeof(struct fuse_in_header) 842 ))->size >= blen) ? 0 : EINVAL; 843 break; 844 845 case FUSE_RELEASEDIR: 846 err = (blen == 0) ? 0 : EINVAL; 847 break; 848 849 case FUSE_FSYNCDIR: 850 err = (blen == 0) ? 0 : EINVAL; 851 break; 852 853 case FUSE_GETLK: 854 err = (blen == sizeof(struct fuse_lk_out)) ? 0 : EINVAL; 855 break; 856 857 case FUSE_SETLK: 858 err = (blen == 0) ? 0 : EINVAL; 859 break; 860 861 case FUSE_SETLKW: 862 err = (blen == 0) ? 0 : EINVAL; 863 break; 864 865 case FUSE_ACCESS: 866 err = (blen == 0) ? 0 : EINVAL; 867 break; 868 869 case FUSE_CREATE: 870 if (fuse_libabi_geq(ftick->tk_data, 7, 9)) { 871 err = (blen == sizeof(struct fuse_entry_out) + 872 sizeof(struct fuse_open_out)) ? 0 : EINVAL; 873 } else { 874 err = (blen == FUSE_COMPAT_ENTRY_OUT_SIZE + 875 sizeof(struct fuse_open_out)) ? 0 : EINVAL; 876 } 877 break; 878 879 case FUSE_DESTROY: 880 err = (blen == 0) ? 0 : EINVAL; 881 break; 882 883 default: 884 panic("FUSE: opcodes out of sync (%d)\n", opcode); 885 } 886 887 return err; 888 } 889 890 static inline void 891 fuse_setup_ihead(struct fuse_in_header *ihead, struct fuse_ticket *ftick, 892 uint64_t nid, enum fuse_opcode op, size_t blen, pid_t pid, 893 struct ucred *cred) 894 { 895 ihead->len = sizeof(*ihead) + blen; 896 ihead->unique = ftick->tk_unique; 897 ihead->nodeid = nid; 898 ihead->opcode = op; 899 900 ihead->pid = pid; 901 ihead->uid = cred->cr_uid; 902 ihead->gid = cred->cr_groups[0]; 903 } 904 905 /* 906 * fuse_standard_handler just pulls indata and wakes up pretender. 907 * Doesn't try to interpret data, that's left for the pretender. 908 * Though might do a basic size verification before the pull-in takes place 909 */ 910 911 static int 912 fuse_standard_handler(struct fuse_ticket *ftick, struct uio *uio) 913 { 914 int err = 0; 915 916 err = fticket_pull(ftick, uio); 917 918 fuse_lck_mtx_lock(ftick->tk_aw_mtx); 919 920 if (!fticket_answered(ftick)) { 921 fticket_set_answered(ftick); 922 ftick->tk_aw_errno = err; 923 wakeup(ftick); 924 } 925 fuse_lck_mtx_unlock(ftick->tk_aw_mtx); 926 927 return err; 928 } 929 930 /* 931 * Reinitialize a dispatcher from a pid and node id, without resizing or 932 * clearing its data buffers 933 */ 934 static void 935 fdisp_refresh_pid(struct fuse_dispatcher *fdip, enum fuse_opcode op, 936 struct mount *mp, uint64_t nid, pid_t pid, struct ucred *cred) 937 { 938 MPASS(fdip->tick); 939 MPASS2(sizeof(fdip->finh) + fdip->iosize <= fdip->tick->tk_ms_fiov.len, 940 "Must use fdisp_make_pid to increase the size of the fiov"); 941 fticket_reset(fdip->tick); 942 943 FUSE_DIMALLOC(&fdip->tick->tk_ms_fiov, fdip->finh, 944 fdip->indata, fdip->iosize); 945 946 fuse_setup_ihead(fdip->finh, fdip->tick, nid, op, fdip->iosize, pid, 947 cred); 948 } 949 950 /* Initialize a dispatcher from a pid and node id */ 951 static void 952 fdisp_make_pid(struct fuse_dispatcher *fdip, enum fuse_opcode op, 953 struct fuse_data *data, uint64_t nid, pid_t pid, struct ucred *cred) 954 { 955 if (fdip->tick) { 956 fticket_refresh(fdip->tick); 957 } else { 958 fdip->tick = fuse_ticket_fetch(data); 959 } 960 961 /* FUSE_DIMALLOC will bzero the fiovs when it enlarges them */ 962 FUSE_DIMALLOC(&fdip->tick->tk_ms_fiov, fdip->finh, 963 fdip->indata, fdip->iosize); 964 965 fuse_setup_ihead(fdip->finh, fdip->tick, nid, op, fdip->iosize, pid, cred); 966 } 967 968 void 969 fdisp_make(struct fuse_dispatcher *fdip, enum fuse_opcode op, struct mount *mp, 970 uint64_t nid, struct thread *td, struct ucred *cred) 971 { 972 struct fuse_data *data = fuse_get_mpdata(mp); 973 RECTIFY_TDCR(td, cred); 974 975 return fdisp_make_pid(fdip, op, data, nid, td->td_proc->p_pid, cred); 976 } 977 978 void 979 fdisp_make_vp(struct fuse_dispatcher *fdip, enum fuse_opcode op, 980 struct vnode *vp, struct thread *td, struct ucred *cred) 981 { 982 struct mount *mp = vnode_mount(vp); 983 struct fuse_data *data = fuse_get_mpdata(mp); 984 985 RECTIFY_TDCR(td, cred); 986 return fdisp_make_pid(fdip, op, data, VTOI(vp), 987 td->td_proc->p_pid, cred); 988 } 989 990 /* Refresh a fuse_dispatcher so it can be reused, but don't zero its data */ 991 void 992 fdisp_refresh_vp(struct fuse_dispatcher *fdip, enum fuse_opcode op, 993 struct vnode *vp, struct thread *td, struct ucred *cred) 994 { 995 RECTIFY_TDCR(td, cred); 996 return fdisp_refresh_pid(fdip, op, vnode_mount(vp), VTOI(vp), 997 td->td_proc->p_pid, cred); 998 } 999 1000 void 1001 fdisp_refresh(struct fuse_dispatcher *fdip) 1002 { 1003 fticket_refresh(fdip->tick); 1004 } 1005 1006 SDT_PROBE_DEFINE2(fusefs, , ipc, fdisp_wait_answ_error, "char*", "int"); 1007 1008 int 1009 fdisp_wait_answ(struct fuse_dispatcher *fdip) 1010 { 1011 int err = 0; 1012 1013 fdip->answ_stat = 0; 1014 fuse_insert_callback(fdip->tick, fuse_standard_handler); 1015 fuse_insert_message(fdip->tick, false); 1016 1017 if ((err = fticket_wait_answer(fdip->tick))) { 1018 fuse_lck_mtx_lock(fdip->tick->tk_aw_mtx); 1019 1020 if (fticket_answered(fdip->tick)) { 1021 /* 1022 * Just between noticing the interrupt and getting here, 1023 * the standard handler has completed his job. 1024 * So we drop the ticket and exit as usual. 1025 */ 1026 SDT_PROBE2(fusefs, , ipc, fdisp_wait_answ_error, 1027 "IPC: interrupted, already answered", err); 1028 fuse_lck_mtx_unlock(fdip->tick->tk_aw_mtx); 1029 goto out; 1030 } else { 1031 /* 1032 * So we were faster than the standard handler. 1033 * Then by setting the answered flag we get *him* 1034 * to drop the ticket. 1035 */ 1036 SDT_PROBE2(fusefs, , ipc, fdisp_wait_answ_error, 1037 "IPC: interrupted, setting to answered", err); 1038 fticket_set_answered(fdip->tick); 1039 fuse_lck_mtx_unlock(fdip->tick->tk_aw_mtx); 1040 return err; 1041 } 1042 } 1043 1044 if (fdip->tick->tk_aw_errno == ENOTCONN) { 1045 /* The daemon died while we were waiting for a response */ 1046 err = ENOTCONN; 1047 goto out; 1048 } else if (fdip->tick->tk_aw_errno) { 1049 /* 1050 * There was some sort of communication error with the daemon 1051 * that the client wouldn't understand. 1052 */ 1053 SDT_PROBE2(fusefs, , ipc, fdisp_wait_answ_error, 1054 "IPC: explicit EIO-ing", fdip->tick->tk_aw_errno); 1055 err = EIO; 1056 goto out; 1057 } 1058 if ((err = fdip->tick->tk_aw_ohead.error)) { 1059 SDT_PROBE2(fusefs, , ipc, fdisp_wait_answ_error, 1060 "IPC: setting status", fdip->tick->tk_aw_ohead.error); 1061 /* 1062 * This means a "proper" fuse syscall error. 1063 * We record this value so the caller will 1064 * be able to know it's not a boring messaging 1065 * failure, if she wishes so (and if not, she can 1066 * just simply propagate the return value of this routine). 1067 * [XXX Maybe a bitflag would do the job too, 1068 * if other flags needed, this will be converted thusly.] 1069 */ 1070 fdip->answ_stat = err; 1071 goto out; 1072 } 1073 fdip->answ = fticket_resp(fdip->tick)->base; 1074 fdip->iosize = fticket_resp(fdip->tick)->len; 1075 1076 return 0; 1077 1078 out: 1079 return err; 1080 } 1081 1082 void 1083 fuse_ipc_init(void) 1084 { 1085 ticket_zone = uma_zcreate("fuse_ticket", sizeof(struct fuse_ticket), 1086 fticket_ctor, fticket_dtor, fticket_init, fticket_fini, 1087 UMA_ALIGN_PTR, 0); 1088 fuse_ticket_count = counter_u64_alloc(M_WAITOK); 1089 } 1090 1091 void 1092 fuse_ipc_destroy(void) 1093 { 1094 counter_u64_free(fuse_ticket_count); 1095 uma_zdestroy(ticket_zone); 1096 } 1097