1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* netfs cookie management 3 * 4 * Copyright (C) 2021 Red Hat, Inc. All Rights Reserved. 5 * Written by David Howells (dhowells@redhat.com) 6 * 7 * See Documentation/filesystems/caching/netfs-api.rst for more information on 8 * the netfs API. 9 */ 10 11 #define FSCACHE_DEBUG_LEVEL COOKIE 12 #include <linux/module.h> 13 #include <linux/slab.h> 14 #include "internal.h" 15 16 struct kmem_cache *fscache_cookie_jar; 17 18 static void fscache_cookie_lru_timed_out(struct timer_list *timer); 19 static void fscache_cookie_lru_worker(struct work_struct *work); 20 static void fscache_cookie_worker(struct work_struct *work); 21 static void fscache_unhash_cookie(struct fscache_cookie *cookie); 22 static void fscache_perform_invalidation(struct fscache_cookie *cookie); 23 24 #define fscache_cookie_hash_shift 15 25 static struct hlist_bl_head fscache_cookie_hash[1 << fscache_cookie_hash_shift]; 26 static LIST_HEAD(fscache_cookies); 27 static DEFINE_RWLOCK(fscache_cookies_lock); 28 static LIST_HEAD(fscache_cookie_lru); 29 static DEFINE_SPINLOCK(fscache_cookie_lru_lock); 30 DEFINE_TIMER(fscache_cookie_lru_timer, fscache_cookie_lru_timed_out); 31 static DECLARE_WORK(fscache_cookie_lru_work, fscache_cookie_lru_worker); 32 static const char fscache_cookie_states[FSCACHE_COOKIE_STATE__NR] = "-LCAIFUWRD"; 33 static unsigned int fscache_lru_cookie_timeout = 10 * HZ; 34 35 void fscache_print_cookie(struct fscache_cookie *cookie, char prefix) 36 { 37 const u8 *k; 38 39 pr_err("%c-cookie c=%08x [fl=%lx na=%u nA=%u s=%c]\n", 40 prefix, 41 cookie->debug_id, 42 cookie->flags, 43 atomic_read(&cookie->n_active), 44 atomic_read(&cookie->n_accesses), 45 fscache_cookie_states[cookie->state]); 46 pr_err("%c-cookie V=%08x [%s]\n", 47 prefix, 48 cookie->volume->debug_id, 49 cookie->volume->key); 50 51 k = (cookie->key_len <= sizeof(cookie->inline_key)) ? 52 cookie->inline_key : cookie->key; 53 pr_err("%c-key=[%u] '%*phN'\n", prefix, cookie->key_len, cookie->key_len, k); 54 } 55 56 static void fscache_free_cookie(struct fscache_cookie *cookie) 57 { 58 if (WARN_ON_ONCE(!list_empty(&cookie->commit_link))) { 59 spin_lock(&fscache_cookie_lru_lock); 60 list_del_init(&cookie->commit_link); 61 spin_unlock(&fscache_cookie_lru_lock); 62 fscache_stat_d(&fscache_n_cookies_lru); 63 fscache_stat(&fscache_n_cookies_lru_removed); 64 } 65 66 if (WARN_ON_ONCE(test_bit(FSCACHE_COOKIE_IS_HASHED, &cookie->flags))) { 67 fscache_print_cookie(cookie, 'F'); 68 return; 69 } 70 71 write_lock(&fscache_cookies_lock); 72 list_del(&cookie->proc_link); 73 write_unlock(&fscache_cookies_lock); 74 if (cookie->aux_len > sizeof(cookie->inline_aux)) 75 kfree(cookie->aux); 76 if (cookie->key_len > sizeof(cookie->inline_key)) 77 kfree(cookie->key); 78 fscache_stat_d(&fscache_n_cookies); 79 kmem_cache_free(fscache_cookie_jar, cookie); 80 } 81 82 static void __fscache_queue_cookie(struct fscache_cookie *cookie) 83 { 84 if (!queue_work(fscache_wq, &cookie->work)) 85 fscache_put_cookie(cookie, fscache_cookie_put_over_queued); 86 } 87 88 static void fscache_queue_cookie(struct fscache_cookie *cookie, 89 enum fscache_cookie_trace where) 90 { 91 fscache_get_cookie(cookie, where); 92 __fscache_queue_cookie(cookie); 93 } 94 95 /* 96 * Initialise the access gate on a cookie by setting a flag to prevent the 97 * state machine from being queued when the access counter transitions to 0. 98 * We're only interested in this when we withdraw caching services from the 99 * cookie. 100 */ 101 static void fscache_init_access_gate(struct fscache_cookie *cookie) 102 { 103 int n_accesses; 104 105 n_accesses = atomic_read(&cookie->n_accesses); 106 trace_fscache_access(cookie->debug_id, refcount_read(&cookie->ref), 107 n_accesses, fscache_access_cache_pin); 108 set_bit(FSCACHE_COOKIE_NO_ACCESS_WAKE, &cookie->flags); 109 } 110 111 /** 112 * fscache_end_cookie_access - Unpin a cache at the end of an access. 113 * @cookie: A data file cookie 114 * @why: An indication of the circumstances of the access for tracing 115 * 116 * Unpin a cache cookie after we've accessed it and bring a deferred 117 * relinquishment or withdrawal state into effect. 118 * 119 * The @why indicator is provided for tracing purposes. 120 */ 121 void fscache_end_cookie_access(struct fscache_cookie *cookie, 122 enum fscache_access_trace why) 123 { 124 int n_accesses; 125 126 smp_mb__before_atomic(); 127 n_accesses = atomic_dec_return(&cookie->n_accesses); 128 trace_fscache_access(cookie->debug_id, refcount_read(&cookie->ref), 129 n_accesses, why); 130 if (n_accesses == 0 && 131 !test_bit(FSCACHE_COOKIE_NO_ACCESS_WAKE, &cookie->flags)) 132 fscache_queue_cookie(cookie, fscache_cookie_get_end_access); 133 } 134 EXPORT_SYMBOL(fscache_end_cookie_access); 135 136 /* 137 * Pin the cache behind a cookie so that we can access it. 138 */ 139 static void __fscache_begin_cookie_access(struct fscache_cookie *cookie, 140 enum fscache_access_trace why) 141 { 142 int n_accesses; 143 144 n_accesses = atomic_inc_return(&cookie->n_accesses); 145 smp_mb__after_atomic(); /* (Future) read state after is-caching. 146 * Reread n_accesses after is-caching 147 */ 148 trace_fscache_access(cookie->debug_id, refcount_read(&cookie->ref), 149 n_accesses, why); 150 } 151 152 /** 153 * fscache_begin_cookie_access - Pin a cache so data can be accessed 154 * @cookie: A data file cookie 155 * @why: An indication of the circumstances of the access for tracing 156 * 157 * Attempt to pin the cache to prevent it from going away whilst we're 158 * accessing data and returns true if successful. This works as follows: 159 * 160 * (1) If the cookie is not being cached (ie. FSCACHE_COOKIE_IS_CACHING is not 161 * set), we return false to indicate access was not permitted. 162 * 163 * (2) If the cookie is being cached, we increment its n_accesses count and 164 * then recheck the IS_CACHING flag, ending the access if it got cleared. 165 * 166 * (3) When we end the access, we decrement the cookie's n_accesses and wake 167 * up the any waiters if it reaches 0. 168 * 169 * (4) Whilst the cookie is actively being cached, its n_accesses is kept 170 * artificially incremented to prevent wakeups from happening. 171 * 172 * (5) When the cache is taken offline or if the cookie is culled, the flag is 173 * cleared to prevent new accesses, the cookie's n_accesses is decremented 174 * and we wait for it to become 0. 175 * 176 * The @why indicator are merely provided for tracing purposes. 177 */ 178 bool fscache_begin_cookie_access(struct fscache_cookie *cookie, 179 enum fscache_access_trace why) 180 { 181 if (!test_bit(FSCACHE_COOKIE_IS_CACHING, &cookie->flags)) 182 return false; 183 __fscache_begin_cookie_access(cookie, why); 184 if (!test_bit(FSCACHE_COOKIE_IS_CACHING, &cookie->flags) || 185 !fscache_cache_is_live(cookie->volume->cache)) { 186 fscache_end_cookie_access(cookie, fscache_access_unlive); 187 return false; 188 } 189 return true; 190 } 191 192 static inline void wake_up_cookie_state(struct fscache_cookie *cookie) 193 { 194 /* Use a barrier to ensure that waiters see the state variable 195 * change, as spin_unlock doesn't guarantee a barrier. 196 * 197 * See comments over wake_up_bit() and waitqueue_active(). 198 */ 199 smp_mb(); 200 wake_up_var(&cookie->state); 201 } 202 203 /* 204 * Change the state a cookie is at and wake up anyone waiting for that. Impose 205 * an ordering between the stuff stored in the cookie and the state member. 206 * Paired with fscache_cookie_state(). 207 */ 208 static void __fscache_set_cookie_state(struct fscache_cookie *cookie, 209 enum fscache_cookie_state state) 210 { 211 smp_store_release(&cookie->state, state); 212 } 213 214 static void fscache_set_cookie_state(struct fscache_cookie *cookie, 215 enum fscache_cookie_state state) 216 { 217 spin_lock(&cookie->lock); 218 __fscache_set_cookie_state(cookie, state); 219 spin_unlock(&cookie->lock); 220 wake_up_cookie_state(cookie); 221 } 222 223 /** 224 * fscache_cookie_lookup_negative - Note negative lookup 225 * @cookie: The cookie that was being looked up 226 * 227 * Note that some part of the metadata path in the cache doesn't exist and so 228 * we can release any waiting readers in the certain knowledge that there's 229 * nothing for them to actually read. 230 * 231 * This function uses no locking and must only be called from the state machine. 232 */ 233 void fscache_cookie_lookup_negative(struct fscache_cookie *cookie) 234 { 235 set_bit(FSCACHE_COOKIE_NO_DATA_TO_READ, &cookie->flags); 236 fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_CREATING); 237 } 238 EXPORT_SYMBOL(fscache_cookie_lookup_negative); 239 240 /** 241 * fscache_resume_after_invalidation - Allow I/O to resume after invalidation 242 * @cookie: The cookie that was invalidated 243 * 244 * Tell fscache that invalidation is sufficiently complete that I/O can be 245 * allowed again. 246 */ 247 void fscache_resume_after_invalidation(struct fscache_cookie *cookie) 248 { 249 fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_ACTIVE); 250 } 251 EXPORT_SYMBOL(fscache_resume_after_invalidation); 252 253 /** 254 * fscache_caching_failed - Report that a failure stopped caching on a cookie 255 * @cookie: The cookie that was affected 256 * 257 * Tell fscache that caching on a cookie needs to be stopped due to some sort 258 * of failure. 259 * 260 * This function uses no locking and must only be called from the state machine. 261 */ 262 void fscache_caching_failed(struct fscache_cookie *cookie) 263 { 264 clear_bit(FSCACHE_COOKIE_IS_CACHING, &cookie->flags); 265 fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_FAILED); 266 } 267 EXPORT_SYMBOL(fscache_caching_failed); 268 269 /* 270 * Set the index key in a cookie. The cookie struct has space for a 16-byte 271 * key plus length and hash, but if that's not big enough, it's instead a 272 * pointer to a buffer containing 3 bytes of hash, 1 byte of length and then 273 * the key data. 274 */ 275 static int fscache_set_key(struct fscache_cookie *cookie, 276 const void *index_key, size_t index_key_len) 277 { 278 void *buf; 279 size_t buf_size; 280 281 buf_size = round_up(index_key_len, sizeof(__le32)); 282 283 if (index_key_len > sizeof(cookie->inline_key)) { 284 buf = kzalloc(buf_size, GFP_KERNEL); 285 if (!buf) 286 return -ENOMEM; 287 cookie->key = buf; 288 } else { 289 buf = cookie->inline_key; 290 } 291 292 memcpy(buf, index_key, index_key_len); 293 cookie->key_hash = fscache_hash(cookie->volume->key_hash, 294 buf, buf_size); 295 return 0; 296 } 297 298 static bool fscache_cookie_same(const struct fscache_cookie *a, 299 const struct fscache_cookie *b) 300 { 301 const void *ka, *kb; 302 303 if (a->key_hash != b->key_hash || 304 a->volume != b->volume || 305 a->key_len != b->key_len) 306 return false; 307 308 if (a->key_len <= sizeof(a->inline_key)) { 309 ka = &a->inline_key; 310 kb = &b->inline_key; 311 } else { 312 ka = a->key; 313 kb = b->key; 314 } 315 return memcmp(ka, kb, a->key_len) == 0; 316 } 317 318 static atomic_t fscache_cookie_debug_id = ATOMIC_INIT(1); 319 320 /* 321 * Allocate a cookie. 322 */ 323 static struct fscache_cookie *fscache_alloc_cookie( 324 struct fscache_volume *volume, 325 u8 advice, 326 const void *index_key, size_t index_key_len, 327 const void *aux_data, size_t aux_data_len, 328 loff_t object_size) 329 { 330 struct fscache_cookie *cookie; 331 332 /* allocate and initialise a cookie */ 333 cookie = kmem_cache_zalloc(fscache_cookie_jar, GFP_KERNEL); 334 if (!cookie) 335 return NULL; 336 fscache_stat(&fscache_n_cookies); 337 338 cookie->volume = volume; 339 cookie->advice = advice; 340 cookie->key_len = index_key_len; 341 cookie->aux_len = aux_data_len; 342 cookie->object_size = object_size; 343 if (object_size == 0) 344 __set_bit(FSCACHE_COOKIE_NO_DATA_TO_READ, &cookie->flags); 345 346 if (fscache_set_key(cookie, index_key, index_key_len) < 0) 347 goto nomem; 348 349 if (cookie->aux_len <= sizeof(cookie->inline_aux)) { 350 memcpy(cookie->inline_aux, aux_data, cookie->aux_len); 351 } else { 352 cookie->aux = kmemdup(aux_data, cookie->aux_len, GFP_KERNEL); 353 if (!cookie->aux) 354 goto nomem; 355 } 356 357 refcount_set(&cookie->ref, 1); 358 cookie->debug_id = atomic_inc_return(&fscache_cookie_debug_id); 359 spin_lock_init(&cookie->lock); 360 INIT_LIST_HEAD(&cookie->commit_link); 361 INIT_WORK(&cookie->work, fscache_cookie_worker); 362 __fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_QUIESCENT); 363 364 write_lock(&fscache_cookies_lock); 365 list_add_tail(&cookie->proc_link, &fscache_cookies); 366 write_unlock(&fscache_cookies_lock); 367 fscache_see_cookie(cookie, fscache_cookie_new_acquire); 368 return cookie; 369 370 nomem: 371 fscache_free_cookie(cookie); 372 return NULL; 373 } 374 375 static inline bool fscache_cookie_is_dropped(struct fscache_cookie *cookie) 376 { 377 return READ_ONCE(cookie->state) == FSCACHE_COOKIE_STATE_DROPPED; 378 } 379 380 static void fscache_wait_on_collision(struct fscache_cookie *candidate, 381 struct fscache_cookie *wait_for) 382 { 383 enum fscache_cookie_state *statep = &wait_for->state; 384 385 wait_var_event_timeout(statep, fscache_cookie_is_dropped(wait_for), 386 20 * HZ); 387 if (!fscache_cookie_is_dropped(wait_for)) { 388 pr_notice("Potential collision c=%08x old: c=%08x", 389 candidate->debug_id, wait_for->debug_id); 390 wait_var_event(statep, fscache_cookie_is_dropped(wait_for)); 391 } 392 } 393 394 /* 395 * Attempt to insert the new cookie into the hash. If there's a collision, we 396 * wait for the old cookie to complete if it's being relinquished and an error 397 * otherwise. 398 */ 399 static bool fscache_hash_cookie(struct fscache_cookie *candidate) 400 { 401 struct fscache_cookie *cursor, *wait_for = NULL; 402 struct hlist_bl_head *h; 403 struct hlist_bl_node *p; 404 unsigned int bucket; 405 406 bucket = candidate->key_hash & (ARRAY_SIZE(fscache_cookie_hash) - 1); 407 h = &fscache_cookie_hash[bucket]; 408 409 hlist_bl_lock(h); 410 hlist_bl_for_each_entry(cursor, p, h, hash_link) { 411 if (fscache_cookie_same(candidate, cursor)) { 412 if (!test_bit(FSCACHE_COOKIE_RELINQUISHED, &cursor->flags)) 413 goto collision; 414 wait_for = fscache_get_cookie(cursor, 415 fscache_cookie_get_hash_collision); 416 break; 417 } 418 } 419 420 fscache_get_volume(candidate->volume, fscache_volume_get_cookie); 421 atomic_inc(&candidate->volume->n_cookies); 422 hlist_bl_add_head(&candidate->hash_link, h); 423 set_bit(FSCACHE_COOKIE_IS_HASHED, &candidate->flags); 424 hlist_bl_unlock(h); 425 426 if (wait_for) { 427 fscache_wait_on_collision(candidate, wait_for); 428 fscache_put_cookie(wait_for, fscache_cookie_put_hash_collision); 429 } 430 return true; 431 432 collision: 433 trace_fscache_cookie(cursor->debug_id, refcount_read(&cursor->ref), 434 fscache_cookie_collision); 435 pr_err("Duplicate cookie detected\n"); 436 fscache_print_cookie(cursor, 'O'); 437 fscache_print_cookie(candidate, 'N'); 438 hlist_bl_unlock(h); 439 return false; 440 } 441 442 /* 443 * Request a cookie to represent a data storage object within a volume. 444 * 445 * We never let on to the netfs about errors. We may set a negative cookie 446 * pointer, but that's okay 447 */ 448 struct fscache_cookie *__fscache_acquire_cookie( 449 struct fscache_volume *volume, 450 u8 advice, 451 const void *index_key, size_t index_key_len, 452 const void *aux_data, size_t aux_data_len, 453 loff_t object_size) 454 { 455 struct fscache_cookie *cookie; 456 457 _enter("V=%x", volume->debug_id); 458 459 if (!index_key || !index_key_len || index_key_len > 255 || aux_data_len > 255) 460 return NULL; 461 if (!aux_data || !aux_data_len) { 462 aux_data = NULL; 463 aux_data_len = 0; 464 } 465 466 fscache_stat(&fscache_n_acquires); 467 468 cookie = fscache_alloc_cookie(volume, advice, 469 index_key, index_key_len, 470 aux_data, aux_data_len, 471 object_size); 472 if (!cookie) { 473 fscache_stat(&fscache_n_acquires_oom); 474 return NULL; 475 } 476 477 if (!fscache_hash_cookie(cookie)) { 478 fscache_see_cookie(cookie, fscache_cookie_discard); 479 fscache_free_cookie(cookie); 480 return NULL; 481 } 482 483 trace_fscache_acquire(cookie); 484 fscache_stat(&fscache_n_acquires_ok); 485 _leave(" = c=%08x", cookie->debug_id); 486 return cookie; 487 } 488 EXPORT_SYMBOL(__fscache_acquire_cookie); 489 490 /* 491 * Prepare a cache object to be written to. 492 */ 493 static void fscache_prepare_to_write(struct fscache_cookie *cookie) 494 { 495 cookie->volume->cache->ops->prepare_to_write(cookie); 496 } 497 498 /* 499 * Look up a cookie in the cache. 500 */ 501 static void fscache_perform_lookup(struct fscache_cookie *cookie) 502 { 503 enum fscache_access_trace trace = fscache_access_lookup_cookie_end_failed; 504 bool need_withdraw = false; 505 506 _enter(""); 507 508 if (!cookie->volume->cache_priv) { 509 fscache_create_volume(cookie->volume, true); 510 if (!cookie->volume->cache_priv) { 511 fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_QUIESCENT); 512 goto out; 513 } 514 } 515 516 if (!cookie->volume->cache->ops->lookup_cookie(cookie)) { 517 if (cookie->state != FSCACHE_COOKIE_STATE_FAILED) 518 fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_QUIESCENT); 519 need_withdraw = true; 520 _leave(" [fail]"); 521 goto out; 522 } 523 524 fscache_see_cookie(cookie, fscache_cookie_see_active); 525 spin_lock(&cookie->lock); 526 if (test_and_clear_bit(FSCACHE_COOKIE_DO_INVALIDATE, &cookie->flags)) 527 __fscache_set_cookie_state(cookie, 528 FSCACHE_COOKIE_STATE_INVALIDATING); 529 else 530 __fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_ACTIVE); 531 spin_unlock(&cookie->lock); 532 wake_up_cookie_state(cookie); 533 trace = fscache_access_lookup_cookie_end; 534 535 out: 536 fscache_end_cookie_access(cookie, trace); 537 if (need_withdraw) 538 fscache_withdraw_cookie(cookie); 539 fscache_end_volume_access(cookie->volume, cookie, trace); 540 } 541 542 /* 543 * Begin the process of looking up a cookie. We offload the actual process to 544 * a worker thread. 545 */ 546 static bool fscache_begin_lookup(struct fscache_cookie *cookie, bool will_modify) 547 { 548 if (will_modify) { 549 set_bit(FSCACHE_COOKIE_LOCAL_WRITE, &cookie->flags); 550 set_bit(FSCACHE_COOKIE_DO_PREP_TO_WRITE, &cookie->flags); 551 } 552 if (!fscache_begin_volume_access(cookie->volume, cookie, 553 fscache_access_lookup_cookie)) 554 return false; 555 556 __fscache_begin_cookie_access(cookie, fscache_access_lookup_cookie); 557 __fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_LOOKING_UP); 558 set_bit(FSCACHE_COOKIE_IS_CACHING, &cookie->flags); 559 set_bit(FSCACHE_COOKIE_HAS_BEEN_CACHED, &cookie->flags); 560 return true; 561 } 562 563 /* 564 * Start using the cookie for I/O. This prevents the backing object from being 565 * reaped by VM pressure. 566 */ 567 void __fscache_use_cookie(struct fscache_cookie *cookie, bool will_modify) 568 { 569 enum fscache_cookie_state state; 570 bool queue = false; 571 int n_active; 572 573 _enter("c=%08x", cookie->debug_id); 574 575 if (WARN(test_bit(FSCACHE_COOKIE_RELINQUISHED, &cookie->flags), 576 "Trying to use relinquished cookie\n")) 577 return; 578 579 spin_lock(&cookie->lock); 580 581 n_active = atomic_inc_return(&cookie->n_active); 582 trace_fscache_active(cookie->debug_id, refcount_read(&cookie->ref), 583 n_active, atomic_read(&cookie->n_accesses), 584 will_modify ? 585 fscache_active_use_modify : fscache_active_use); 586 587 again: 588 state = fscache_cookie_state(cookie); 589 switch (state) { 590 case FSCACHE_COOKIE_STATE_QUIESCENT: 591 queue = fscache_begin_lookup(cookie, will_modify); 592 break; 593 594 case FSCACHE_COOKIE_STATE_LOOKING_UP: 595 case FSCACHE_COOKIE_STATE_CREATING: 596 if (will_modify) 597 set_bit(FSCACHE_COOKIE_LOCAL_WRITE, &cookie->flags); 598 break; 599 case FSCACHE_COOKIE_STATE_ACTIVE: 600 case FSCACHE_COOKIE_STATE_INVALIDATING: 601 if (will_modify && 602 !test_and_set_bit(FSCACHE_COOKIE_LOCAL_WRITE, &cookie->flags)) { 603 set_bit(FSCACHE_COOKIE_DO_PREP_TO_WRITE, &cookie->flags); 604 queue = true; 605 } 606 break; 607 608 case FSCACHE_COOKIE_STATE_FAILED: 609 case FSCACHE_COOKIE_STATE_WITHDRAWING: 610 break; 611 612 case FSCACHE_COOKIE_STATE_LRU_DISCARDING: 613 spin_unlock(&cookie->lock); 614 wait_var_event(&cookie->state, 615 fscache_cookie_state(cookie) != 616 FSCACHE_COOKIE_STATE_LRU_DISCARDING); 617 spin_lock(&cookie->lock); 618 goto again; 619 620 case FSCACHE_COOKIE_STATE_DROPPED: 621 case FSCACHE_COOKIE_STATE_RELINQUISHING: 622 WARN(1, "Can't use cookie in state %u\n", state); 623 break; 624 } 625 626 spin_unlock(&cookie->lock); 627 if (queue) 628 fscache_queue_cookie(cookie, fscache_cookie_get_use_work); 629 _leave(""); 630 } 631 EXPORT_SYMBOL(__fscache_use_cookie); 632 633 static void fscache_unuse_cookie_locked(struct fscache_cookie *cookie) 634 { 635 clear_bit(FSCACHE_COOKIE_DISABLED, &cookie->flags); 636 if (!test_bit(FSCACHE_COOKIE_IS_CACHING, &cookie->flags)) 637 return; 638 639 cookie->unused_at = jiffies; 640 spin_lock(&fscache_cookie_lru_lock); 641 if (list_empty(&cookie->commit_link)) { 642 fscache_get_cookie(cookie, fscache_cookie_get_lru); 643 fscache_stat(&fscache_n_cookies_lru); 644 } 645 list_move_tail(&cookie->commit_link, &fscache_cookie_lru); 646 647 spin_unlock(&fscache_cookie_lru_lock); 648 timer_reduce(&fscache_cookie_lru_timer, 649 jiffies + fscache_lru_cookie_timeout); 650 } 651 652 /* 653 * Stop using the cookie for I/O. 654 */ 655 void __fscache_unuse_cookie(struct fscache_cookie *cookie, 656 const void *aux_data, const loff_t *object_size) 657 { 658 unsigned int debug_id = cookie->debug_id; 659 unsigned int r = refcount_read(&cookie->ref); 660 unsigned int a = atomic_read(&cookie->n_accesses); 661 unsigned int c; 662 663 if (aux_data || object_size) 664 __fscache_update_cookie(cookie, aux_data, object_size); 665 666 /* Subtract 1 from counter unless that drops it to 0 (ie. it was 1) */ 667 c = atomic_fetch_add_unless(&cookie->n_active, -1, 1); 668 if (c != 1) { 669 trace_fscache_active(debug_id, r, c - 1, a, fscache_active_unuse); 670 return; 671 } 672 673 spin_lock(&cookie->lock); 674 r = refcount_read(&cookie->ref); 675 a = atomic_read(&cookie->n_accesses); 676 c = atomic_dec_return(&cookie->n_active); 677 trace_fscache_active(debug_id, r, c, a, fscache_active_unuse); 678 if (c == 0) 679 fscache_unuse_cookie_locked(cookie); 680 spin_unlock(&cookie->lock); 681 } 682 EXPORT_SYMBOL(__fscache_unuse_cookie); 683 684 /* 685 * Perform work upon the cookie, such as committing its cache state, 686 * relinquishing it or withdrawing the backing cache. We're protected from the 687 * cache going away under us as object withdrawal must come through this 688 * non-reentrant work item. 689 */ 690 static void fscache_cookie_state_machine(struct fscache_cookie *cookie) 691 { 692 enum fscache_cookie_state state; 693 bool wake = false; 694 695 _enter("c=%x", cookie->debug_id); 696 697 again: 698 spin_lock(&cookie->lock); 699 again_locked: 700 state = cookie->state; 701 switch (state) { 702 case FSCACHE_COOKIE_STATE_QUIESCENT: 703 /* The QUIESCENT state is jumped to the LOOKING_UP state by 704 * fscache_use_cookie(). 705 */ 706 707 if (atomic_read(&cookie->n_accesses) == 0 && 708 test_bit(FSCACHE_COOKIE_DO_RELINQUISH, &cookie->flags)) { 709 __fscache_set_cookie_state(cookie, 710 FSCACHE_COOKIE_STATE_RELINQUISHING); 711 wake = true; 712 goto again_locked; 713 } 714 break; 715 716 case FSCACHE_COOKIE_STATE_LOOKING_UP: 717 spin_unlock(&cookie->lock); 718 fscache_init_access_gate(cookie); 719 fscache_perform_lookup(cookie); 720 goto again; 721 722 case FSCACHE_COOKIE_STATE_INVALIDATING: 723 spin_unlock(&cookie->lock); 724 fscache_perform_invalidation(cookie); 725 goto again; 726 727 case FSCACHE_COOKIE_STATE_ACTIVE: 728 if (test_and_clear_bit(FSCACHE_COOKIE_DO_PREP_TO_WRITE, &cookie->flags)) { 729 spin_unlock(&cookie->lock); 730 fscache_prepare_to_write(cookie); 731 spin_lock(&cookie->lock); 732 } 733 if (test_bit(FSCACHE_COOKIE_DO_LRU_DISCARD, &cookie->flags)) { 734 __fscache_set_cookie_state(cookie, 735 FSCACHE_COOKIE_STATE_LRU_DISCARDING); 736 wake = true; 737 goto again_locked; 738 } 739 fallthrough; 740 741 case FSCACHE_COOKIE_STATE_FAILED: 742 if (atomic_read(&cookie->n_accesses) != 0) 743 break; 744 if (test_bit(FSCACHE_COOKIE_DO_RELINQUISH, &cookie->flags)) { 745 __fscache_set_cookie_state(cookie, 746 FSCACHE_COOKIE_STATE_RELINQUISHING); 747 wake = true; 748 goto again_locked; 749 } 750 if (test_bit(FSCACHE_COOKIE_DO_WITHDRAW, &cookie->flags)) { 751 __fscache_set_cookie_state(cookie, 752 FSCACHE_COOKIE_STATE_WITHDRAWING); 753 wake = true; 754 goto again_locked; 755 } 756 break; 757 758 case FSCACHE_COOKIE_STATE_LRU_DISCARDING: 759 case FSCACHE_COOKIE_STATE_RELINQUISHING: 760 case FSCACHE_COOKIE_STATE_WITHDRAWING: 761 if (cookie->cache_priv) { 762 spin_unlock(&cookie->lock); 763 cookie->volume->cache->ops->withdraw_cookie(cookie); 764 spin_lock(&cookie->lock); 765 } 766 767 if (test_and_clear_bit(FSCACHE_COOKIE_DO_INVALIDATE, &cookie->flags)) 768 fscache_end_cookie_access(cookie, fscache_access_invalidate_cookie_end); 769 770 switch (state) { 771 case FSCACHE_COOKIE_STATE_RELINQUISHING: 772 fscache_see_cookie(cookie, fscache_cookie_see_relinquish); 773 fscache_unhash_cookie(cookie); 774 __fscache_set_cookie_state(cookie, 775 FSCACHE_COOKIE_STATE_DROPPED); 776 wake = true; 777 goto out; 778 case FSCACHE_COOKIE_STATE_LRU_DISCARDING: 779 fscache_see_cookie(cookie, fscache_cookie_see_lru_discard); 780 break; 781 case FSCACHE_COOKIE_STATE_WITHDRAWING: 782 fscache_see_cookie(cookie, fscache_cookie_see_withdraw); 783 break; 784 default: 785 BUG(); 786 } 787 788 clear_bit(FSCACHE_COOKIE_NEEDS_UPDATE, &cookie->flags); 789 clear_bit(FSCACHE_COOKIE_DO_WITHDRAW, &cookie->flags); 790 clear_bit(FSCACHE_COOKIE_DO_LRU_DISCARD, &cookie->flags); 791 clear_bit(FSCACHE_COOKIE_DO_PREP_TO_WRITE, &cookie->flags); 792 set_bit(FSCACHE_COOKIE_NO_DATA_TO_READ, &cookie->flags); 793 __fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_QUIESCENT); 794 wake = true; 795 goto again_locked; 796 797 case FSCACHE_COOKIE_STATE_DROPPED: 798 break; 799 800 default: 801 WARN_ONCE(1, "Cookie %x in unexpected state %u\n", 802 cookie->debug_id, state); 803 break; 804 } 805 806 out: 807 spin_unlock(&cookie->lock); 808 if (wake) 809 wake_up_cookie_state(cookie); 810 _leave(""); 811 } 812 813 static void fscache_cookie_worker(struct work_struct *work) 814 { 815 struct fscache_cookie *cookie = container_of(work, struct fscache_cookie, work); 816 817 fscache_see_cookie(cookie, fscache_cookie_see_work); 818 fscache_cookie_state_machine(cookie); 819 fscache_put_cookie(cookie, fscache_cookie_put_work); 820 } 821 822 /* 823 * Wait for the object to become inactive. The cookie's work item will be 824 * scheduled when someone transitions n_accesses to 0 - but if someone's 825 * already done that, schedule it anyway. 826 */ 827 static void __fscache_withdraw_cookie(struct fscache_cookie *cookie) 828 { 829 int n_accesses; 830 bool unpinned; 831 832 unpinned = test_and_clear_bit(FSCACHE_COOKIE_NO_ACCESS_WAKE, &cookie->flags); 833 834 /* Need to read the access count after unpinning */ 835 n_accesses = atomic_read(&cookie->n_accesses); 836 if (unpinned) 837 trace_fscache_access(cookie->debug_id, refcount_read(&cookie->ref), 838 n_accesses, fscache_access_cache_unpin); 839 if (n_accesses == 0) 840 fscache_queue_cookie(cookie, fscache_cookie_get_end_access); 841 } 842 843 static void fscache_cookie_lru_do_one(struct fscache_cookie *cookie) 844 { 845 fscache_see_cookie(cookie, fscache_cookie_see_lru_do_one); 846 847 spin_lock(&cookie->lock); 848 if (cookie->state != FSCACHE_COOKIE_STATE_ACTIVE || 849 time_before(jiffies, cookie->unused_at + fscache_lru_cookie_timeout) || 850 atomic_read(&cookie->n_active) > 0) { 851 spin_unlock(&cookie->lock); 852 fscache_stat(&fscache_n_cookies_lru_removed); 853 } else { 854 set_bit(FSCACHE_COOKIE_DO_LRU_DISCARD, &cookie->flags); 855 spin_unlock(&cookie->lock); 856 fscache_stat(&fscache_n_cookies_lru_expired); 857 _debug("lru c=%x", cookie->debug_id); 858 __fscache_withdraw_cookie(cookie); 859 } 860 861 fscache_put_cookie(cookie, fscache_cookie_put_lru); 862 } 863 864 static void fscache_cookie_lru_worker(struct work_struct *work) 865 { 866 struct fscache_cookie *cookie; 867 unsigned long unused_at; 868 869 spin_lock(&fscache_cookie_lru_lock); 870 871 while (!list_empty(&fscache_cookie_lru)) { 872 cookie = list_first_entry(&fscache_cookie_lru, 873 struct fscache_cookie, commit_link); 874 unused_at = cookie->unused_at + fscache_lru_cookie_timeout; 875 if (time_before(jiffies, unused_at)) { 876 timer_reduce(&fscache_cookie_lru_timer, unused_at); 877 break; 878 } 879 880 list_del_init(&cookie->commit_link); 881 fscache_stat_d(&fscache_n_cookies_lru); 882 spin_unlock(&fscache_cookie_lru_lock); 883 fscache_cookie_lru_do_one(cookie); 884 spin_lock(&fscache_cookie_lru_lock); 885 } 886 887 spin_unlock(&fscache_cookie_lru_lock); 888 } 889 890 static void fscache_cookie_lru_timed_out(struct timer_list *timer) 891 { 892 queue_work(fscache_wq, &fscache_cookie_lru_work); 893 } 894 895 static void fscache_cookie_drop_from_lru(struct fscache_cookie *cookie) 896 { 897 bool need_put = false; 898 899 if (!list_empty(&cookie->commit_link)) { 900 spin_lock(&fscache_cookie_lru_lock); 901 if (!list_empty(&cookie->commit_link)) { 902 list_del_init(&cookie->commit_link); 903 fscache_stat_d(&fscache_n_cookies_lru); 904 fscache_stat(&fscache_n_cookies_lru_dropped); 905 need_put = true; 906 } 907 spin_unlock(&fscache_cookie_lru_lock); 908 if (need_put) 909 fscache_put_cookie(cookie, fscache_cookie_put_lru); 910 } 911 } 912 913 /* 914 * Remove a cookie from the hash table. 915 */ 916 static void fscache_unhash_cookie(struct fscache_cookie *cookie) 917 { 918 struct hlist_bl_head *h; 919 unsigned int bucket; 920 921 bucket = cookie->key_hash & (ARRAY_SIZE(fscache_cookie_hash) - 1); 922 h = &fscache_cookie_hash[bucket]; 923 924 hlist_bl_lock(h); 925 hlist_bl_del(&cookie->hash_link); 926 clear_bit(FSCACHE_COOKIE_IS_HASHED, &cookie->flags); 927 hlist_bl_unlock(h); 928 fscache_stat(&fscache_n_relinquishes_dropped); 929 } 930 931 static void fscache_drop_withdraw_cookie(struct fscache_cookie *cookie) 932 { 933 fscache_cookie_drop_from_lru(cookie); 934 __fscache_withdraw_cookie(cookie); 935 } 936 937 /** 938 * fscache_withdraw_cookie - Mark a cookie for withdrawal 939 * @cookie: The cookie to be withdrawn. 940 * 941 * Allow the cache backend to withdraw the backing for a cookie for its own 942 * reasons, even if that cookie is in active use. 943 */ 944 void fscache_withdraw_cookie(struct fscache_cookie *cookie) 945 { 946 set_bit(FSCACHE_COOKIE_DO_WITHDRAW, &cookie->flags); 947 fscache_drop_withdraw_cookie(cookie); 948 } 949 EXPORT_SYMBOL(fscache_withdraw_cookie); 950 951 /* 952 * Allow the netfs to release a cookie back to the cache. 953 * - the object will be marked as recyclable on disk if retire is true 954 */ 955 void __fscache_relinquish_cookie(struct fscache_cookie *cookie, bool retire) 956 { 957 fscache_stat(&fscache_n_relinquishes); 958 if (retire) 959 fscache_stat(&fscache_n_relinquishes_retire); 960 961 _enter("c=%08x{%d},%d", 962 cookie->debug_id, atomic_read(&cookie->n_active), retire); 963 964 if (WARN(test_and_set_bit(FSCACHE_COOKIE_RELINQUISHED, &cookie->flags), 965 "Cookie c=%x already relinquished\n", cookie->debug_id)) 966 return; 967 968 if (retire) 969 set_bit(FSCACHE_COOKIE_RETIRED, &cookie->flags); 970 trace_fscache_relinquish(cookie, retire); 971 972 ASSERTCMP(atomic_read(&cookie->n_active), ==, 0); 973 ASSERTCMP(atomic_read(&cookie->volume->n_cookies), >, 0); 974 atomic_dec(&cookie->volume->n_cookies); 975 976 if (test_bit(FSCACHE_COOKIE_HAS_BEEN_CACHED, &cookie->flags)) { 977 set_bit(FSCACHE_COOKIE_DO_RELINQUISH, &cookie->flags); 978 fscache_drop_withdraw_cookie(cookie); 979 } else { 980 fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_DROPPED); 981 fscache_unhash_cookie(cookie); 982 } 983 fscache_put_cookie(cookie, fscache_cookie_put_relinquish); 984 } 985 EXPORT_SYMBOL(__fscache_relinquish_cookie); 986 987 /* 988 * Drop a reference to a cookie. 989 */ 990 void fscache_put_cookie(struct fscache_cookie *cookie, 991 enum fscache_cookie_trace where) 992 { 993 struct fscache_volume *volume = cookie->volume; 994 unsigned int cookie_debug_id = cookie->debug_id; 995 bool zero; 996 int ref; 997 998 zero = __refcount_dec_and_test(&cookie->ref, &ref); 999 trace_fscache_cookie(cookie_debug_id, ref - 1, where); 1000 if (zero) { 1001 fscache_free_cookie(cookie); 1002 fscache_put_volume(volume, fscache_volume_put_cookie); 1003 } 1004 } 1005 EXPORT_SYMBOL(fscache_put_cookie); 1006 1007 /* 1008 * Get a reference to a cookie. 1009 */ 1010 struct fscache_cookie *fscache_get_cookie(struct fscache_cookie *cookie, 1011 enum fscache_cookie_trace where) 1012 { 1013 int ref; 1014 1015 __refcount_inc(&cookie->ref, &ref); 1016 trace_fscache_cookie(cookie->debug_id, ref + 1, where); 1017 return cookie; 1018 } 1019 EXPORT_SYMBOL(fscache_get_cookie); 1020 1021 /* 1022 * Ask the cache to effect invalidation of a cookie. 1023 */ 1024 static void fscache_perform_invalidation(struct fscache_cookie *cookie) 1025 { 1026 if (!cookie->volume->cache->ops->invalidate_cookie(cookie)) 1027 fscache_caching_failed(cookie); 1028 fscache_end_cookie_access(cookie, fscache_access_invalidate_cookie_end); 1029 } 1030 1031 /* 1032 * Invalidate an object. 1033 */ 1034 void __fscache_invalidate(struct fscache_cookie *cookie, 1035 const void *aux_data, loff_t new_size, 1036 unsigned int flags) 1037 { 1038 bool is_caching; 1039 1040 _enter("c=%x", cookie->debug_id); 1041 1042 fscache_stat(&fscache_n_invalidates); 1043 1044 if (WARN(test_bit(FSCACHE_COOKIE_RELINQUISHED, &cookie->flags), 1045 "Trying to invalidate relinquished cookie\n")) 1046 return; 1047 1048 if ((flags & FSCACHE_INVAL_DIO_WRITE) && 1049 test_and_set_bit(FSCACHE_COOKIE_DISABLED, &cookie->flags)) 1050 return; 1051 1052 spin_lock(&cookie->lock); 1053 set_bit(FSCACHE_COOKIE_NO_DATA_TO_READ, &cookie->flags); 1054 fscache_update_aux(cookie, aux_data, &new_size); 1055 cookie->inval_counter++; 1056 trace_fscache_invalidate(cookie, new_size); 1057 1058 switch (cookie->state) { 1059 case FSCACHE_COOKIE_STATE_INVALIDATING: /* is_still_valid will catch it */ 1060 default: 1061 spin_unlock(&cookie->lock); 1062 _leave(" [no %u]", cookie->state); 1063 return; 1064 1065 case FSCACHE_COOKIE_STATE_LOOKING_UP: 1066 __fscache_begin_cookie_access(cookie, fscache_access_invalidate_cookie); 1067 set_bit(FSCACHE_COOKIE_DO_INVALIDATE, &cookie->flags); 1068 fallthrough; 1069 case FSCACHE_COOKIE_STATE_CREATING: 1070 spin_unlock(&cookie->lock); 1071 _leave(" [look %x]", cookie->inval_counter); 1072 return; 1073 1074 case FSCACHE_COOKIE_STATE_ACTIVE: 1075 is_caching = fscache_begin_cookie_access( 1076 cookie, fscache_access_invalidate_cookie); 1077 if (is_caching) 1078 __fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_INVALIDATING); 1079 spin_unlock(&cookie->lock); 1080 wake_up_cookie_state(cookie); 1081 1082 if (is_caching) 1083 fscache_queue_cookie(cookie, fscache_cookie_get_inval_work); 1084 _leave(" [inv]"); 1085 return; 1086 } 1087 } 1088 EXPORT_SYMBOL(__fscache_invalidate); 1089 1090 #ifdef CONFIG_PROC_FS 1091 /* 1092 * Generate a list of extant cookies in /proc/fs/fscache/cookies 1093 */ 1094 static int fscache_cookies_seq_show(struct seq_file *m, void *v) 1095 { 1096 struct fscache_cookie *cookie; 1097 unsigned int keylen = 0, auxlen = 0; 1098 u8 *p; 1099 1100 if (v == &fscache_cookies) { 1101 seq_puts(m, 1102 "COOKIE VOLUME REF ACT ACC S FL DEF \n" 1103 "======== ======== === === === = == ================\n" 1104 ); 1105 return 0; 1106 } 1107 1108 cookie = list_entry(v, struct fscache_cookie, proc_link); 1109 1110 seq_printf(m, 1111 "%08x %08x %3d %3d %3d %c %02lx", 1112 cookie->debug_id, 1113 cookie->volume->debug_id, 1114 refcount_read(&cookie->ref), 1115 atomic_read(&cookie->n_active), 1116 atomic_read(&cookie->n_accesses), 1117 fscache_cookie_states[cookie->state], 1118 cookie->flags); 1119 1120 keylen = cookie->key_len; 1121 auxlen = cookie->aux_len; 1122 1123 if (keylen > 0 || auxlen > 0) { 1124 seq_puts(m, " "); 1125 p = keylen <= sizeof(cookie->inline_key) ? 1126 cookie->inline_key : cookie->key; 1127 for (; keylen > 0; keylen--) 1128 seq_printf(m, "%02x", *p++); 1129 if (auxlen > 0) { 1130 seq_puts(m, ", "); 1131 p = auxlen <= sizeof(cookie->inline_aux) ? 1132 cookie->inline_aux : cookie->aux; 1133 for (; auxlen > 0; auxlen--) 1134 seq_printf(m, "%02x", *p++); 1135 } 1136 } 1137 1138 seq_puts(m, "\n"); 1139 return 0; 1140 } 1141 1142 static void *fscache_cookies_seq_start(struct seq_file *m, loff_t *_pos) 1143 __acquires(fscache_cookies_lock) 1144 { 1145 read_lock(&fscache_cookies_lock); 1146 return seq_list_start_head(&fscache_cookies, *_pos); 1147 } 1148 1149 static void *fscache_cookies_seq_next(struct seq_file *m, void *v, loff_t *_pos) 1150 { 1151 return seq_list_next(v, &fscache_cookies, _pos); 1152 } 1153 1154 static void fscache_cookies_seq_stop(struct seq_file *m, void *v) 1155 __releases(rcu) 1156 { 1157 read_unlock(&fscache_cookies_lock); 1158 } 1159 1160 1161 const struct seq_operations fscache_cookies_seq_ops = { 1162 .start = fscache_cookies_seq_start, 1163 .next = fscache_cookies_seq_next, 1164 .stop = fscache_cookies_seq_stop, 1165 .show = fscache_cookies_seq_show, 1166 }; 1167 #endif 1168