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 
fscache_print_cookie(struct fscache_cookie * cookie,char prefix)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 
fscache_free_cookie(struct fscache_cookie * cookie)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 
__fscache_queue_cookie(struct fscache_cookie * cookie)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 
fscache_queue_cookie(struct fscache_cookie * cookie,enum fscache_cookie_trace where)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  */
fscache_init_access_gate(struct fscache_cookie * cookie)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  */
fscache_end_cookie_access(struct fscache_cookie * cookie,enum fscache_access_trace why)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  */
__fscache_begin_cookie_access(struct fscache_cookie * cookie,enum fscache_access_trace why)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  */
fscache_begin_cookie_access(struct fscache_cookie * cookie,enum fscache_access_trace why)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 
wake_up_cookie_state(struct fscache_cookie * cookie)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  */
__fscache_set_cookie_state(struct fscache_cookie * cookie,enum fscache_cookie_state state)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 
fscache_set_cookie_state(struct fscache_cookie * cookie,enum fscache_cookie_state state)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  */
fscache_cookie_lookup_negative(struct fscache_cookie * cookie)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  */
fscache_resume_after_invalidation(struct fscache_cookie * cookie)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  */
fscache_caching_failed(struct fscache_cookie * cookie)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  */
fscache_set_key(struct fscache_cookie * cookie,const void * index_key,size_t index_key_len)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 
fscache_cookie_same(const struct fscache_cookie * a,const struct fscache_cookie * b)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  */
fscache_alloc_cookie(struct fscache_volume * volume,u8 advice,const void * index_key,size_t index_key_len,const void * aux_data,size_t aux_data_len,loff_t object_size)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 
fscache_cookie_is_dropped(struct fscache_cookie * cookie)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 
fscache_wait_on_collision(struct fscache_cookie * candidate,struct fscache_cookie * wait_for)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  */
fscache_hash_cookie(struct fscache_cookie * candidate)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  */
__fscache_acquire_cookie(struct fscache_volume * volume,u8 advice,const void * index_key,size_t index_key_len,const void * aux_data,size_t aux_data_len,loff_t object_size)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  */
fscache_prepare_to_write(struct fscache_cookie * cookie)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  */
fscache_perform_lookup(struct fscache_cookie * cookie)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  */
fscache_begin_lookup(struct fscache_cookie * cookie,bool will_modify)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  */
__fscache_use_cookie(struct fscache_cookie * cookie,bool will_modify)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 
fscache_unuse_cookie_locked(struct fscache_cookie * cookie)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  */
__fscache_unuse_cookie(struct fscache_cookie * cookie,const void * aux_data,const loff_t * object_size)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  */
fscache_cookie_state_machine(struct fscache_cookie * cookie)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 (test_and_clear_bit(FSCACHE_COOKIE_DO_INVALIDATE, &cookie->flags))
743 			fscache_end_cookie_access(cookie, fscache_access_invalidate_cookie_end);
744 
745 		if (atomic_read(&cookie->n_accesses) != 0)
746 			break;
747 		if (test_bit(FSCACHE_COOKIE_DO_RELINQUISH, &cookie->flags)) {
748 			__fscache_set_cookie_state(cookie,
749 						   FSCACHE_COOKIE_STATE_RELINQUISHING);
750 			wake = true;
751 			goto again_locked;
752 		}
753 		if (test_bit(FSCACHE_COOKIE_DO_WITHDRAW, &cookie->flags)) {
754 			__fscache_set_cookie_state(cookie,
755 						   FSCACHE_COOKIE_STATE_WITHDRAWING);
756 			wake = true;
757 			goto again_locked;
758 		}
759 		break;
760 
761 	case FSCACHE_COOKIE_STATE_LRU_DISCARDING:
762 	case FSCACHE_COOKIE_STATE_RELINQUISHING:
763 	case FSCACHE_COOKIE_STATE_WITHDRAWING:
764 		if (cookie->cache_priv) {
765 			spin_unlock(&cookie->lock);
766 			cookie->volume->cache->ops->withdraw_cookie(cookie);
767 			spin_lock(&cookie->lock);
768 		}
769 
770 		if (test_and_clear_bit(FSCACHE_COOKIE_DO_INVALIDATE, &cookie->flags))
771 			fscache_end_cookie_access(cookie, fscache_access_invalidate_cookie_end);
772 
773 		switch (state) {
774 		case FSCACHE_COOKIE_STATE_RELINQUISHING:
775 			fscache_see_cookie(cookie, fscache_cookie_see_relinquish);
776 			fscache_unhash_cookie(cookie);
777 			__fscache_set_cookie_state(cookie,
778 						   FSCACHE_COOKIE_STATE_DROPPED);
779 			wake = true;
780 			goto out;
781 		case FSCACHE_COOKIE_STATE_LRU_DISCARDING:
782 			fscache_see_cookie(cookie, fscache_cookie_see_lru_discard);
783 			break;
784 		case FSCACHE_COOKIE_STATE_WITHDRAWING:
785 			fscache_see_cookie(cookie, fscache_cookie_see_withdraw);
786 			break;
787 		default:
788 			BUG();
789 		}
790 
791 		clear_bit(FSCACHE_COOKIE_NEEDS_UPDATE, &cookie->flags);
792 		clear_bit(FSCACHE_COOKIE_DO_WITHDRAW, &cookie->flags);
793 		clear_bit(FSCACHE_COOKIE_DO_LRU_DISCARD, &cookie->flags);
794 		clear_bit(FSCACHE_COOKIE_DO_PREP_TO_WRITE, &cookie->flags);
795 		set_bit(FSCACHE_COOKIE_NO_DATA_TO_READ, &cookie->flags);
796 		__fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_QUIESCENT);
797 		wake = true;
798 		goto again_locked;
799 
800 	case FSCACHE_COOKIE_STATE_DROPPED:
801 		break;
802 
803 	default:
804 		WARN_ONCE(1, "Cookie %x in unexpected state %u\n",
805 			  cookie->debug_id, state);
806 		break;
807 	}
808 
809 out:
810 	spin_unlock(&cookie->lock);
811 	if (wake)
812 		wake_up_cookie_state(cookie);
813 	_leave("");
814 }
815 
fscache_cookie_worker(struct work_struct * work)816 static void fscache_cookie_worker(struct work_struct *work)
817 {
818 	struct fscache_cookie *cookie = container_of(work, struct fscache_cookie, work);
819 
820 	fscache_see_cookie(cookie, fscache_cookie_see_work);
821 	fscache_cookie_state_machine(cookie);
822 	fscache_put_cookie(cookie, fscache_cookie_put_work);
823 }
824 
825 /*
826  * Wait for the object to become inactive.  The cookie's work item will be
827  * scheduled when someone transitions n_accesses to 0 - but if someone's
828  * already done that, schedule it anyway.
829  */
__fscache_withdraw_cookie(struct fscache_cookie * cookie)830 static void __fscache_withdraw_cookie(struct fscache_cookie *cookie)
831 {
832 	int n_accesses;
833 	bool unpinned;
834 
835 	unpinned = test_and_clear_bit(FSCACHE_COOKIE_NO_ACCESS_WAKE, &cookie->flags);
836 
837 	/* Need to read the access count after unpinning */
838 	n_accesses = atomic_read(&cookie->n_accesses);
839 	if (unpinned)
840 		trace_fscache_access(cookie->debug_id, refcount_read(&cookie->ref),
841 				     n_accesses, fscache_access_cache_unpin);
842 	if (n_accesses == 0)
843 		fscache_queue_cookie(cookie, fscache_cookie_get_end_access);
844 }
845 
fscache_cookie_lru_do_one(struct fscache_cookie * cookie)846 static void fscache_cookie_lru_do_one(struct fscache_cookie *cookie)
847 {
848 	fscache_see_cookie(cookie, fscache_cookie_see_lru_do_one);
849 
850 	spin_lock(&cookie->lock);
851 	if (cookie->state != FSCACHE_COOKIE_STATE_ACTIVE ||
852 	    time_before(jiffies, cookie->unused_at + fscache_lru_cookie_timeout) ||
853 	    atomic_read(&cookie->n_active) > 0) {
854 		spin_unlock(&cookie->lock);
855 		fscache_stat(&fscache_n_cookies_lru_removed);
856 	} else {
857 		set_bit(FSCACHE_COOKIE_DO_LRU_DISCARD, &cookie->flags);
858 		spin_unlock(&cookie->lock);
859 		fscache_stat(&fscache_n_cookies_lru_expired);
860 		_debug("lru c=%x", cookie->debug_id);
861 		__fscache_withdraw_cookie(cookie);
862 	}
863 
864 	fscache_put_cookie(cookie, fscache_cookie_put_lru);
865 }
866 
fscache_cookie_lru_worker(struct work_struct * work)867 static void fscache_cookie_lru_worker(struct work_struct *work)
868 {
869 	struct fscache_cookie *cookie;
870 	unsigned long unused_at;
871 
872 	spin_lock(&fscache_cookie_lru_lock);
873 
874 	while (!list_empty(&fscache_cookie_lru)) {
875 		cookie = list_first_entry(&fscache_cookie_lru,
876 					  struct fscache_cookie, commit_link);
877 		unused_at = cookie->unused_at + fscache_lru_cookie_timeout;
878 		if (time_before(jiffies, unused_at)) {
879 			timer_reduce(&fscache_cookie_lru_timer, unused_at);
880 			break;
881 		}
882 
883 		list_del_init(&cookie->commit_link);
884 		fscache_stat_d(&fscache_n_cookies_lru);
885 		spin_unlock(&fscache_cookie_lru_lock);
886 		fscache_cookie_lru_do_one(cookie);
887 		spin_lock(&fscache_cookie_lru_lock);
888 	}
889 
890 	spin_unlock(&fscache_cookie_lru_lock);
891 }
892 
fscache_cookie_lru_timed_out(struct timer_list * timer)893 static void fscache_cookie_lru_timed_out(struct timer_list *timer)
894 {
895 	queue_work(fscache_wq, &fscache_cookie_lru_work);
896 }
897 
fscache_cookie_drop_from_lru(struct fscache_cookie * cookie)898 static void fscache_cookie_drop_from_lru(struct fscache_cookie *cookie)
899 {
900 	bool need_put = false;
901 
902 	if (!list_empty(&cookie->commit_link)) {
903 		spin_lock(&fscache_cookie_lru_lock);
904 		if (!list_empty(&cookie->commit_link)) {
905 			list_del_init(&cookie->commit_link);
906 			fscache_stat_d(&fscache_n_cookies_lru);
907 			fscache_stat(&fscache_n_cookies_lru_dropped);
908 			need_put = true;
909 		}
910 		spin_unlock(&fscache_cookie_lru_lock);
911 		if (need_put)
912 			fscache_put_cookie(cookie, fscache_cookie_put_lru);
913 	}
914 }
915 
916 /*
917  * Remove a cookie from the hash table.
918  */
fscache_unhash_cookie(struct fscache_cookie * cookie)919 static void fscache_unhash_cookie(struct fscache_cookie *cookie)
920 {
921 	struct hlist_bl_head *h;
922 	unsigned int bucket;
923 
924 	bucket = cookie->key_hash & (ARRAY_SIZE(fscache_cookie_hash) - 1);
925 	h = &fscache_cookie_hash[bucket];
926 
927 	hlist_bl_lock(h);
928 	hlist_bl_del(&cookie->hash_link);
929 	clear_bit(FSCACHE_COOKIE_IS_HASHED, &cookie->flags);
930 	hlist_bl_unlock(h);
931 	fscache_stat(&fscache_n_relinquishes_dropped);
932 }
933 
fscache_drop_withdraw_cookie(struct fscache_cookie * cookie)934 static void fscache_drop_withdraw_cookie(struct fscache_cookie *cookie)
935 {
936 	fscache_cookie_drop_from_lru(cookie);
937 	__fscache_withdraw_cookie(cookie);
938 }
939 
940 /**
941  * fscache_withdraw_cookie - Mark a cookie for withdrawal
942  * @cookie: The cookie to be withdrawn.
943  *
944  * Allow the cache backend to withdraw the backing for a cookie for its own
945  * reasons, even if that cookie is in active use.
946  */
fscache_withdraw_cookie(struct fscache_cookie * cookie)947 void fscache_withdraw_cookie(struct fscache_cookie *cookie)
948 {
949 	set_bit(FSCACHE_COOKIE_DO_WITHDRAW, &cookie->flags);
950 	fscache_drop_withdraw_cookie(cookie);
951 }
952 EXPORT_SYMBOL(fscache_withdraw_cookie);
953 
954 /*
955  * Allow the netfs to release a cookie back to the cache.
956  * - the object will be marked as recyclable on disk if retire is true
957  */
__fscache_relinquish_cookie(struct fscache_cookie * cookie,bool retire)958 void __fscache_relinquish_cookie(struct fscache_cookie *cookie, bool retire)
959 {
960 	fscache_stat(&fscache_n_relinquishes);
961 	if (retire)
962 		fscache_stat(&fscache_n_relinquishes_retire);
963 
964 	_enter("c=%08x{%d},%d",
965 	       cookie->debug_id, atomic_read(&cookie->n_active), retire);
966 
967 	if (WARN(test_and_set_bit(FSCACHE_COOKIE_RELINQUISHED, &cookie->flags),
968 		 "Cookie c=%x already relinquished\n", cookie->debug_id))
969 		return;
970 
971 	if (retire)
972 		set_bit(FSCACHE_COOKIE_RETIRED, &cookie->flags);
973 	trace_fscache_relinquish(cookie, retire);
974 
975 	ASSERTCMP(atomic_read(&cookie->n_active), ==, 0);
976 	ASSERTCMP(atomic_read(&cookie->volume->n_cookies), >, 0);
977 	atomic_dec(&cookie->volume->n_cookies);
978 
979 	if (test_bit(FSCACHE_COOKIE_HAS_BEEN_CACHED, &cookie->flags)) {
980 		set_bit(FSCACHE_COOKIE_DO_RELINQUISH, &cookie->flags);
981 		fscache_drop_withdraw_cookie(cookie);
982 	} else {
983 		fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_DROPPED);
984 		fscache_unhash_cookie(cookie);
985 	}
986 	fscache_put_cookie(cookie, fscache_cookie_put_relinquish);
987 }
988 EXPORT_SYMBOL(__fscache_relinquish_cookie);
989 
990 /*
991  * Drop a reference to a cookie.
992  */
fscache_put_cookie(struct fscache_cookie * cookie,enum fscache_cookie_trace where)993 void fscache_put_cookie(struct fscache_cookie *cookie,
994 			enum fscache_cookie_trace where)
995 {
996 	struct fscache_volume *volume = cookie->volume;
997 	unsigned int cookie_debug_id = cookie->debug_id;
998 	bool zero;
999 	int ref;
1000 
1001 	zero = __refcount_dec_and_test(&cookie->ref, &ref);
1002 	trace_fscache_cookie(cookie_debug_id, ref - 1, where);
1003 	if (zero) {
1004 		fscache_free_cookie(cookie);
1005 		fscache_put_volume(volume, fscache_volume_put_cookie);
1006 	}
1007 }
1008 EXPORT_SYMBOL(fscache_put_cookie);
1009 
1010 /*
1011  * Get a reference to a cookie.
1012  */
fscache_get_cookie(struct fscache_cookie * cookie,enum fscache_cookie_trace where)1013 struct fscache_cookie *fscache_get_cookie(struct fscache_cookie *cookie,
1014 					  enum fscache_cookie_trace where)
1015 {
1016 	int ref;
1017 
1018 	__refcount_inc(&cookie->ref, &ref);
1019 	trace_fscache_cookie(cookie->debug_id, ref + 1, where);
1020 	return cookie;
1021 }
1022 EXPORT_SYMBOL(fscache_get_cookie);
1023 
1024 /*
1025  * Ask the cache to effect invalidation of a cookie.
1026  */
fscache_perform_invalidation(struct fscache_cookie * cookie)1027 static void fscache_perform_invalidation(struct fscache_cookie *cookie)
1028 {
1029 	if (!cookie->volume->cache->ops->invalidate_cookie(cookie))
1030 		fscache_caching_failed(cookie);
1031 	fscache_end_cookie_access(cookie, fscache_access_invalidate_cookie_end);
1032 }
1033 
1034 /*
1035  * Invalidate an object.
1036  */
__fscache_invalidate(struct fscache_cookie * cookie,const void * aux_data,loff_t new_size,unsigned int flags)1037 void __fscache_invalidate(struct fscache_cookie *cookie,
1038 			  const void *aux_data, loff_t new_size,
1039 			  unsigned int flags)
1040 {
1041 	bool is_caching;
1042 
1043 	_enter("c=%x", cookie->debug_id);
1044 
1045 	fscache_stat(&fscache_n_invalidates);
1046 
1047 	if (WARN(test_bit(FSCACHE_COOKIE_RELINQUISHED, &cookie->flags),
1048 		 "Trying to invalidate relinquished cookie\n"))
1049 		return;
1050 
1051 	if ((flags & FSCACHE_INVAL_DIO_WRITE) &&
1052 	    test_and_set_bit(FSCACHE_COOKIE_DISABLED, &cookie->flags))
1053 		return;
1054 
1055 	spin_lock(&cookie->lock);
1056 	set_bit(FSCACHE_COOKIE_NO_DATA_TO_READ, &cookie->flags);
1057 	fscache_update_aux(cookie, aux_data, &new_size);
1058 	cookie->inval_counter++;
1059 	trace_fscache_invalidate(cookie, new_size);
1060 
1061 	switch (cookie->state) {
1062 	case FSCACHE_COOKIE_STATE_INVALIDATING: /* is_still_valid will catch it */
1063 	default:
1064 		spin_unlock(&cookie->lock);
1065 		_leave(" [no %u]", cookie->state);
1066 		return;
1067 
1068 	case FSCACHE_COOKIE_STATE_LOOKING_UP:
1069 		if (!test_and_set_bit(FSCACHE_COOKIE_DO_INVALIDATE, &cookie->flags))
1070 			__fscache_begin_cookie_access(cookie, fscache_access_invalidate_cookie);
1071 		fallthrough;
1072 	case FSCACHE_COOKIE_STATE_CREATING:
1073 		spin_unlock(&cookie->lock);
1074 		_leave(" [look %x]", cookie->inval_counter);
1075 		return;
1076 
1077 	case FSCACHE_COOKIE_STATE_ACTIVE:
1078 		is_caching = fscache_begin_cookie_access(
1079 			cookie, fscache_access_invalidate_cookie);
1080 		if (is_caching)
1081 			__fscache_set_cookie_state(cookie, FSCACHE_COOKIE_STATE_INVALIDATING);
1082 		spin_unlock(&cookie->lock);
1083 		wake_up_cookie_state(cookie);
1084 
1085 		if (is_caching)
1086 			fscache_queue_cookie(cookie, fscache_cookie_get_inval_work);
1087 		_leave(" [inv]");
1088 		return;
1089 	}
1090 }
1091 EXPORT_SYMBOL(__fscache_invalidate);
1092 
1093 #ifdef CONFIG_PROC_FS
1094 /*
1095  * Generate a list of extant cookies in /proc/fs/fscache/cookies
1096  */
fscache_cookies_seq_show(struct seq_file * m,void * v)1097 static int fscache_cookies_seq_show(struct seq_file *m, void *v)
1098 {
1099 	struct fscache_cookie *cookie;
1100 	unsigned int keylen = 0, auxlen = 0;
1101 	u8 *p;
1102 
1103 	if (v == &fscache_cookies) {
1104 		seq_puts(m,
1105 			 "COOKIE   VOLUME   REF ACT ACC S FL DEF             \n"
1106 			 "======== ======== === === === = == ================\n"
1107 			 );
1108 		return 0;
1109 	}
1110 
1111 	cookie = list_entry(v, struct fscache_cookie, proc_link);
1112 
1113 	seq_printf(m,
1114 		   "%08x %08x %3d %3d %3d %c %02lx",
1115 		   cookie->debug_id,
1116 		   cookie->volume->debug_id,
1117 		   refcount_read(&cookie->ref),
1118 		   atomic_read(&cookie->n_active),
1119 		   atomic_read(&cookie->n_accesses),
1120 		   fscache_cookie_states[cookie->state],
1121 		   cookie->flags);
1122 
1123 	keylen = cookie->key_len;
1124 	auxlen = cookie->aux_len;
1125 
1126 	if (keylen > 0 || auxlen > 0) {
1127 		seq_puts(m, " ");
1128 		p = keylen <= sizeof(cookie->inline_key) ?
1129 			cookie->inline_key : cookie->key;
1130 		for (; keylen > 0; keylen--)
1131 			seq_printf(m, "%02x", *p++);
1132 		if (auxlen > 0) {
1133 			seq_puts(m, ", ");
1134 			p = auxlen <= sizeof(cookie->inline_aux) ?
1135 				cookie->inline_aux : cookie->aux;
1136 			for (; auxlen > 0; auxlen--)
1137 				seq_printf(m, "%02x", *p++);
1138 		}
1139 	}
1140 
1141 	seq_puts(m, "\n");
1142 	return 0;
1143 }
1144 
fscache_cookies_seq_start(struct seq_file * m,loff_t * _pos)1145 static void *fscache_cookies_seq_start(struct seq_file *m, loff_t *_pos)
1146 	__acquires(fscache_cookies_lock)
1147 {
1148 	read_lock(&fscache_cookies_lock);
1149 	return seq_list_start_head(&fscache_cookies, *_pos);
1150 }
1151 
fscache_cookies_seq_next(struct seq_file * m,void * v,loff_t * _pos)1152 static void *fscache_cookies_seq_next(struct seq_file *m, void *v, loff_t *_pos)
1153 {
1154 	return seq_list_next(v, &fscache_cookies, _pos);
1155 }
1156 
fscache_cookies_seq_stop(struct seq_file * m,void * v)1157 static void fscache_cookies_seq_stop(struct seq_file *m, void *v)
1158 	__releases(rcu)
1159 {
1160 	read_unlock(&fscache_cookies_lock);
1161 }
1162 
1163 
1164 const struct seq_operations fscache_cookies_seq_ops = {
1165 	.start  = fscache_cookies_seq_start,
1166 	.next   = fscache_cookies_seq_next,
1167 	.stop   = fscache_cookies_seq_stop,
1168 	.show   = fscache_cookies_seq_show,
1169 };
1170 #endif
1171