1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /* kiocb-using read/write
3 *
4 * Copyright (C) 2021 Red Hat, Inc. All Rights Reserved.
5 * Written by David Howells (dhowells@redhat.com)
6 */
7
8 #include <linux/mount.h>
9 #include <linux/slab.h>
10 #include <linux/file.h>
11 #include <linux/uio.h>
12 #include <linux/bio.h>
13 #include <linux/falloc.h>
14 #include <linux/sched/mm.h>
15 #include <trace/events/fscache.h>
16 #include "internal.h"
17
18 struct cachefiles_kiocb {
19 struct kiocb iocb;
20 refcount_t ki_refcnt;
21 loff_t start;
22 union {
23 size_t skipped;
24 size_t len;
25 };
26 struct cachefiles_object *object;
27 netfs_io_terminated_t term_func;
28 void *term_func_priv;
29 bool was_async;
30 unsigned int inval_counter; /* Copy of cookie->inval_counter */
31 u64 b_writing;
32 };
33
cachefiles_put_kiocb(struct cachefiles_kiocb * ki)34 static inline void cachefiles_put_kiocb(struct cachefiles_kiocb *ki)
35 {
36 if (refcount_dec_and_test(&ki->ki_refcnt)) {
37 cachefiles_put_object(ki->object, cachefiles_obj_put_ioreq);
38 fput(ki->iocb.ki_filp);
39 kfree(ki);
40 }
41 }
42
43 /*
44 * Handle completion of a read from the cache.
45 */
cachefiles_read_complete(struct kiocb * iocb,long ret)46 static void cachefiles_read_complete(struct kiocb *iocb, long ret)
47 {
48 struct cachefiles_kiocb *ki = container_of(iocb, struct cachefiles_kiocb, iocb);
49 struct inode *inode = file_inode(ki->iocb.ki_filp);
50
51 _enter("%ld", ret);
52
53 if (ret < 0)
54 trace_cachefiles_io_error(ki->object, inode, ret,
55 cachefiles_trace_read_error);
56
57 if (ki->term_func) {
58 if (ret >= 0) {
59 if (ki->object->cookie->inval_counter == ki->inval_counter)
60 ki->skipped += ret;
61 else
62 ret = -ESTALE;
63 }
64
65 ki->term_func(ki->term_func_priv, ret, ki->was_async);
66 }
67
68 cachefiles_put_kiocb(ki);
69 }
70
71 /*
72 * Initiate a read from the cache.
73 */
cachefiles_read(struct netfs_cache_resources * cres,loff_t start_pos,struct iov_iter * iter,enum netfs_read_from_hole read_hole,netfs_io_terminated_t term_func,void * term_func_priv)74 static int cachefiles_read(struct netfs_cache_resources *cres,
75 loff_t start_pos,
76 struct iov_iter *iter,
77 enum netfs_read_from_hole read_hole,
78 netfs_io_terminated_t term_func,
79 void *term_func_priv)
80 {
81 struct cachefiles_object *object;
82 struct cachefiles_kiocb *ki;
83 struct file *file;
84 unsigned int old_nofs;
85 ssize_t ret = -ENOBUFS;
86 size_t len = iov_iter_count(iter), skipped = 0;
87
88 if (!fscache_wait_for_operation(cres, FSCACHE_WANT_READ))
89 goto presubmission_error;
90
91 fscache_count_read();
92 object = cachefiles_cres_object(cres);
93 file = cachefiles_cres_file(cres);
94
95 _enter("%pD,%li,%llx,%zx/%llx",
96 file, file_inode(file)->i_ino, start_pos, len,
97 i_size_read(file_inode(file)));
98
99 /* If the caller asked us to seek for data before doing the read, then
100 * we should do that now. If we find a gap, we fill it with zeros.
101 */
102 if (read_hole != NETFS_READ_HOLE_IGNORE) {
103 loff_t off = start_pos, off2;
104
105 off2 = cachefiles_inject_read_error();
106 if (off2 == 0)
107 off2 = vfs_llseek(file, off, SEEK_DATA);
108 if (off2 < 0 && off2 >= (loff_t)-MAX_ERRNO && off2 != -ENXIO) {
109 skipped = 0;
110 ret = off2;
111 goto presubmission_error;
112 }
113
114 if (off2 == -ENXIO || off2 >= start_pos + len) {
115 /* The region is beyond the EOF or there's no more data
116 * in the region, so clear the rest of the buffer and
117 * return success.
118 */
119 ret = -ENODATA;
120 if (read_hole == NETFS_READ_HOLE_FAIL)
121 goto presubmission_error;
122
123 iov_iter_zero(len, iter);
124 skipped = len;
125 ret = 0;
126 goto presubmission_error;
127 }
128
129 skipped = off2 - off;
130 iov_iter_zero(skipped, iter);
131 }
132
133 ret = -ENOMEM;
134 ki = kzalloc(sizeof(struct cachefiles_kiocb), GFP_KERNEL);
135 if (!ki)
136 goto presubmission_error;
137
138 refcount_set(&ki->ki_refcnt, 2);
139 ki->iocb.ki_filp = file;
140 ki->iocb.ki_pos = start_pos + skipped;
141 ki->iocb.ki_flags = IOCB_DIRECT;
142 ki->iocb.ki_ioprio = get_current_ioprio();
143 ki->skipped = skipped;
144 ki->object = object;
145 ki->inval_counter = cres->inval_counter;
146 ki->term_func = term_func;
147 ki->term_func_priv = term_func_priv;
148 ki->was_async = true;
149
150 if (ki->term_func)
151 ki->iocb.ki_complete = cachefiles_read_complete;
152
153 get_file(ki->iocb.ki_filp);
154 cachefiles_grab_object(object, cachefiles_obj_get_ioreq);
155
156 trace_cachefiles_read(object, file_inode(file), ki->iocb.ki_pos, len - skipped);
157 old_nofs = memalloc_nofs_save();
158 ret = cachefiles_inject_read_error();
159 if (ret == 0)
160 ret = vfs_iocb_iter_read(file, &ki->iocb, iter);
161 memalloc_nofs_restore(old_nofs);
162 switch (ret) {
163 case -EIOCBQUEUED:
164 goto in_progress;
165
166 case -ERESTARTSYS:
167 case -ERESTARTNOINTR:
168 case -ERESTARTNOHAND:
169 case -ERESTART_RESTARTBLOCK:
170 /* There's no easy way to restart the syscall since other AIO's
171 * may be already running. Just fail this IO with EINTR.
172 */
173 ret = -EINTR;
174 fallthrough;
175 default:
176 ki->was_async = false;
177 cachefiles_read_complete(&ki->iocb, ret);
178 if (ret > 0)
179 ret = 0;
180 break;
181 }
182
183 in_progress:
184 cachefiles_put_kiocb(ki);
185 _leave(" = %zd", ret);
186 return ret;
187
188 presubmission_error:
189 if (term_func)
190 term_func(term_func_priv, ret < 0 ? ret : skipped, false);
191 return ret;
192 }
193
194 /*
195 * Query the occupancy of the cache in a region, returning where the next chunk
196 * of data starts and how long it is.
197 */
cachefiles_query_occupancy(struct netfs_cache_resources * cres,loff_t start,size_t len,size_t granularity,loff_t * _data_start,size_t * _data_len)198 static int cachefiles_query_occupancy(struct netfs_cache_resources *cres,
199 loff_t start, size_t len, size_t granularity,
200 loff_t *_data_start, size_t *_data_len)
201 {
202 struct cachefiles_object *object;
203 struct file *file;
204 loff_t off, off2;
205
206 *_data_start = -1;
207 *_data_len = 0;
208
209 if (!fscache_wait_for_operation(cres, FSCACHE_WANT_READ))
210 return -ENOBUFS;
211
212 object = cachefiles_cres_object(cres);
213 file = cachefiles_cres_file(cres);
214 granularity = max_t(size_t, object->volume->cache->bsize, granularity);
215
216 _enter("%pD,%li,%llx,%zx/%llx",
217 file, file_inode(file)->i_ino, start, len,
218 i_size_read(file_inode(file)));
219
220 off = cachefiles_inject_read_error();
221 if (off == 0)
222 off = vfs_llseek(file, start, SEEK_DATA);
223 if (off == -ENXIO)
224 return -ENODATA; /* Beyond EOF */
225 if (off < 0 && off >= (loff_t)-MAX_ERRNO)
226 return -ENOBUFS; /* Error. */
227 if (round_up(off, granularity) >= start + len)
228 return -ENODATA; /* No data in range */
229
230 off2 = cachefiles_inject_read_error();
231 if (off2 == 0)
232 off2 = vfs_llseek(file, off, SEEK_HOLE);
233 if (off2 == -ENXIO)
234 return -ENODATA; /* Beyond EOF */
235 if (off2 < 0 && off2 >= (loff_t)-MAX_ERRNO)
236 return -ENOBUFS; /* Error. */
237
238 /* Round away partial blocks */
239 off = round_up(off, granularity);
240 off2 = round_down(off2, granularity);
241 if (off2 <= off)
242 return -ENODATA;
243
244 *_data_start = off;
245 if (off2 > start + len)
246 *_data_len = len;
247 else
248 *_data_len = off2 - off;
249 return 0;
250 }
251
252 /*
253 * Handle completion of a write to the cache.
254 */
cachefiles_write_complete(struct kiocb * iocb,long ret)255 static void cachefiles_write_complete(struct kiocb *iocb, long ret)
256 {
257 struct cachefiles_kiocb *ki = container_of(iocb, struct cachefiles_kiocb, iocb);
258 struct cachefiles_object *object = ki->object;
259 struct inode *inode = file_inode(ki->iocb.ki_filp);
260
261 _enter("%ld", ret);
262
263 if (ki->was_async)
264 kiocb_end_write(iocb);
265
266 if (ret < 0)
267 trace_cachefiles_io_error(object, inode, ret,
268 cachefiles_trace_write_error);
269
270 atomic_long_sub(ki->b_writing, &object->volume->cache->b_writing);
271 set_bit(FSCACHE_COOKIE_HAVE_DATA, &object->cookie->flags);
272 if (ki->term_func)
273 ki->term_func(ki->term_func_priv, ret, ki->was_async);
274 cachefiles_put_kiocb(ki);
275 }
276
277 /*
278 * Initiate a write to the cache.
279 */
__cachefiles_write(struct cachefiles_object * object,struct file * file,loff_t start_pos,struct iov_iter * iter,netfs_io_terminated_t term_func,void * term_func_priv)280 int __cachefiles_write(struct cachefiles_object *object,
281 struct file *file,
282 loff_t start_pos,
283 struct iov_iter *iter,
284 netfs_io_terminated_t term_func,
285 void *term_func_priv)
286 {
287 struct cachefiles_cache *cache;
288 struct cachefiles_kiocb *ki;
289 unsigned int old_nofs;
290 ssize_t ret;
291 size_t len = iov_iter_count(iter);
292
293 fscache_count_write();
294 cache = object->volume->cache;
295
296 _enter("%pD,%li,%llx,%zx/%llx",
297 file, file_inode(file)->i_ino, start_pos, len,
298 i_size_read(file_inode(file)));
299
300 ki = kzalloc(sizeof(struct cachefiles_kiocb), GFP_KERNEL);
301 if (!ki) {
302 if (term_func)
303 term_func(term_func_priv, -ENOMEM, false);
304 return -ENOMEM;
305 }
306
307 refcount_set(&ki->ki_refcnt, 2);
308 ki->iocb.ki_filp = file;
309 ki->iocb.ki_pos = start_pos;
310 ki->iocb.ki_flags = IOCB_DIRECT | IOCB_WRITE;
311 ki->iocb.ki_ioprio = get_current_ioprio();
312 ki->object = object;
313 ki->start = start_pos;
314 ki->len = len;
315 ki->term_func = term_func;
316 ki->term_func_priv = term_func_priv;
317 ki->was_async = true;
318 ki->b_writing = (len + (1 << cache->bshift) - 1) >> cache->bshift;
319
320 if (ki->term_func)
321 ki->iocb.ki_complete = cachefiles_write_complete;
322 atomic_long_add(ki->b_writing, &cache->b_writing);
323
324 get_file(ki->iocb.ki_filp);
325 cachefiles_grab_object(object, cachefiles_obj_get_ioreq);
326
327 trace_cachefiles_write(object, file_inode(file), ki->iocb.ki_pos, len);
328 old_nofs = memalloc_nofs_save();
329 ret = cachefiles_inject_write_error();
330 if (ret == 0)
331 ret = vfs_iocb_iter_write(file, &ki->iocb, iter);
332 memalloc_nofs_restore(old_nofs);
333 switch (ret) {
334 case -EIOCBQUEUED:
335 goto in_progress;
336
337 case -ERESTARTSYS:
338 case -ERESTARTNOINTR:
339 case -ERESTARTNOHAND:
340 case -ERESTART_RESTARTBLOCK:
341 /* There's no easy way to restart the syscall since other AIO's
342 * may be already running. Just fail this IO with EINTR.
343 */
344 ret = -EINTR;
345 fallthrough;
346 default:
347 ki->was_async = false;
348 cachefiles_write_complete(&ki->iocb, ret);
349 break;
350 }
351
352 in_progress:
353 cachefiles_put_kiocb(ki);
354 _leave(" = %zd", ret);
355 return ret;
356 }
357
cachefiles_write(struct netfs_cache_resources * cres,loff_t start_pos,struct iov_iter * iter,netfs_io_terminated_t term_func,void * term_func_priv)358 static int cachefiles_write(struct netfs_cache_resources *cres,
359 loff_t start_pos,
360 struct iov_iter *iter,
361 netfs_io_terminated_t term_func,
362 void *term_func_priv)
363 {
364 if (!fscache_wait_for_operation(cres, FSCACHE_WANT_WRITE)) {
365 if (term_func)
366 term_func(term_func_priv, -ENOBUFS, false);
367 return -ENOBUFS;
368 }
369
370 return __cachefiles_write(cachefiles_cres_object(cres),
371 cachefiles_cres_file(cres),
372 start_pos, iter,
373 term_func, term_func_priv);
374 }
375
376 static inline enum netfs_io_source
cachefiles_do_prepare_read(struct netfs_cache_resources * cres,loff_t start,size_t * _len,loff_t i_size,unsigned long * _flags,ino_t netfs_ino)377 cachefiles_do_prepare_read(struct netfs_cache_resources *cres,
378 loff_t start, size_t *_len, loff_t i_size,
379 unsigned long *_flags, ino_t netfs_ino)
380 {
381 enum cachefiles_prepare_read_trace why;
382 struct cachefiles_object *object = NULL;
383 struct cachefiles_cache *cache;
384 struct fscache_cookie *cookie = fscache_cres_cookie(cres);
385 const struct cred *saved_cred;
386 struct file *file = cachefiles_cres_file(cres);
387 enum netfs_io_source ret = NETFS_DOWNLOAD_FROM_SERVER;
388 size_t len = *_len;
389 loff_t off, to;
390 ino_t ino = file ? file_inode(file)->i_ino : 0;
391 int rc;
392
393 _enter("%zx @%llx/%llx", len, start, i_size);
394
395 if (start >= i_size) {
396 ret = NETFS_FILL_WITH_ZEROES;
397 why = cachefiles_trace_read_after_eof;
398 goto out_no_object;
399 }
400
401 if (test_bit(FSCACHE_COOKIE_NO_DATA_TO_READ, &cookie->flags)) {
402 __set_bit(NETFS_SREQ_COPY_TO_CACHE, _flags);
403 why = cachefiles_trace_read_no_data;
404 if (!test_bit(NETFS_SREQ_ONDEMAND, _flags))
405 goto out_no_object;
406 }
407
408 /* The object and the file may be being created in the background. */
409 if (!file) {
410 why = cachefiles_trace_read_no_file;
411 if (!fscache_wait_for_operation(cres, FSCACHE_WANT_READ))
412 goto out_no_object;
413 file = cachefiles_cres_file(cres);
414 if (!file)
415 goto out_no_object;
416 ino = file_inode(file)->i_ino;
417 }
418
419 object = cachefiles_cres_object(cres);
420 cache = object->volume->cache;
421 cachefiles_begin_secure(cache, &saved_cred);
422 retry:
423 off = cachefiles_inject_read_error();
424 if (off == 0)
425 off = vfs_llseek(file, start, SEEK_DATA);
426 if (off < 0 && off >= (loff_t)-MAX_ERRNO) {
427 if (off == (loff_t)-ENXIO) {
428 why = cachefiles_trace_read_seek_nxio;
429 goto download_and_store;
430 }
431 trace_cachefiles_io_error(object, file_inode(file), off,
432 cachefiles_trace_seek_error);
433 why = cachefiles_trace_read_seek_error;
434 goto out;
435 }
436
437 if (off >= start + len) {
438 why = cachefiles_trace_read_found_hole;
439 goto download_and_store;
440 }
441
442 if (off > start) {
443 off = round_up(off, cache->bsize);
444 len = off - start;
445 *_len = len;
446 why = cachefiles_trace_read_found_part;
447 goto download_and_store;
448 }
449
450 to = cachefiles_inject_read_error();
451 if (to == 0)
452 to = vfs_llseek(file, start, SEEK_HOLE);
453 if (to < 0 && to >= (loff_t)-MAX_ERRNO) {
454 trace_cachefiles_io_error(object, file_inode(file), to,
455 cachefiles_trace_seek_error);
456 why = cachefiles_trace_read_seek_error;
457 goto out;
458 }
459
460 if (to < start + len) {
461 if (start + len >= i_size)
462 to = round_up(to, cache->bsize);
463 else
464 to = round_down(to, cache->bsize);
465 len = to - start;
466 *_len = len;
467 }
468
469 why = cachefiles_trace_read_have_data;
470 ret = NETFS_READ_FROM_CACHE;
471 goto out;
472
473 download_and_store:
474 __set_bit(NETFS_SREQ_COPY_TO_CACHE, _flags);
475 if (test_bit(NETFS_SREQ_ONDEMAND, _flags)) {
476 rc = cachefiles_ondemand_read(object, start, len);
477 if (!rc) {
478 __clear_bit(NETFS_SREQ_ONDEMAND, _flags);
479 goto retry;
480 }
481 ret = NETFS_INVALID_READ;
482 }
483 out:
484 cachefiles_end_secure(cache, saved_cred);
485 out_no_object:
486 trace_cachefiles_prep_read(object, start, len, *_flags, ret, why, ino, netfs_ino);
487 return ret;
488 }
489
490 /*
491 * Prepare a read operation, shortening it to a cached/uncached
492 * boundary as appropriate.
493 */
cachefiles_prepare_read(struct netfs_io_subrequest * subreq,unsigned long long i_size)494 static enum netfs_io_source cachefiles_prepare_read(struct netfs_io_subrequest *subreq,
495 unsigned long long i_size)
496 {
497 return cachefiles_do_prepare_read(&subreq->rreq->cache_resources,
498 subreq->start, &subreq->len, i_size,
499 &subreq->flags, subreq->rreq->inode->i_ino);
500 }
501
502 /*
503 * Prepare an on-demand read operation, shortening it to a cached/uncached
504 * boundary as appropriate.
505 */
506 static enum netfs_io_source
cachefiles_prepare_ondemand_read(struct netfs_cache_resources * cres,loff_t start,size_t * _len,loff_t i_size,unsigned long * _flags,ino_t ino)507 cachefiles_prepare_ondemand_read(struct netfs_cache_resources *cres,
508 loff_t start, size_t *_len, loff_t i_size,
509 unsigned long *_flags, ino_t ino)
510 {
511 return cachefiles_do_prepare_read(cres, start, _len, i_size, _flags, ino);
512 }
513
514 /*
515 * Prepare for a write to occur.
516 */
__cachefiles_prepare_write(struct cachefiles_object * object,struct file * file,loff_t * _start,size_t * _len,size_t upper_len,bool no_space_allocated_yet)517 int __cachefiles_prepare_write(struct cachefiles_object *object,
518 struct file *file,
519 loff_t *_start, size_t *_len, size_t upper_len,
520 bool no_space_allocated_yet)
521 {
522 struct cachefiles_cache *cache = object->volume->cache;
523 loff_t start = *_start, pos;
524 size_t len = *_len;
525 int ret;
526
527 /* Round to DIO size */
528 start = round_down(*_start, PAGE_SIZE);
529 if (start != *_start || *_len > upper_len) {
530 /* Probably asked to cache a streaming write written into the
531 * pagecache when the cookie was temporarily out of service to
532 * culling.
533 */
534 fscache_count_dio_misfit();
535 return -ENOBUFS;
536 }
537
538 *_len = round_up(len, PAGE_SIZE);
539
540 /* We need to work out whether there's sufficient disk space to perform
541 * the write - but we can skip that check if we have space already
542 * allocated.
543 */
544 if (no_space_allocated_yet)
545 goto check_space;
546
547 pos = cachefiles_inject_read_error();
548 if (pos == 0)
549 pos = vfs_llseek(file, start, SEEK_DATA);
550 if (pos < 0 && pos >= (loff_t)-MAX_ERRNO) {
551 if (pos == -ENXIO)
552 goto check_space; /* Unallocated tail */
553 trace_cachefiles_io_error(object, file_inode(file), pos,
554 cachefiles_trace_seek_error);
555 return pos;
556 }
557 if ((u64)pos >= (u64)start + *_len)
558 goto check_space; /* Unallocated region */
559
560 /* We have a block that's at least partially filled - if we're low on
561 * space, we need to see if it's fully allocated. If it's not, we may
562 * want to cull it.
563 */
564 if (cachefiles_has_space(cache, 0, *_len / PAGE_SIZE,
565 cachefiles_has_space_check) == 0)
566 return 0; /* Enough space to simply overwrite the whole block */
567
568 pos = cachefiles_inject_read_error();
569 if (pos == 0)
570 pos = vfs_llseek(file, start, SEEK_HOLE);
571 if (pos < 0 && pos >= (loff_t)-MAX_ERRNO) {
572 trace_cachefiles_io_error(object, file_inode(file), pos,
573 cachefiles_trace_seek_error);
574 return pos;
575 }
576 if ((u64)pos >= (u64)start + *_len)
577 return 0; /* Fully allocated */
578
579 /* Partially allocated, but insufficient space: cull. */
580 fscache_count_no_write_space();
581 ret = cachefiles_inject_remove_error();
582 if (ret == 0)
583 ret = vfs_fallocate(file, FALLOC_FL_PUNCH_HOLE | FALLOC_FL_KEEP_SIZE,
584 start, *_len);
585 if (ret < 0) {
586 trace_cachefiles_io_error(object, file_inode(file), ret,
587 cachefiles_trace_fallocate_error);
588 cachefiles_io_error_obj(object,
589 "CacheFiles: fallocate failed (%d)\n", ret);
590 ret = -EIO;
591 }
592
593 return ret;
594
595 check_space:
596 return cachefiles_has_space(cache, 0, *_len / PAGE_SIZE,
597 cachefiles_has_space_for_write);
598 }
599
cachefiles_prepare_write(struct netfs_cache_resources * cres,loff_t * _start,size_t * _len,size_t upper_len,loff_t i_size,bool no_space_allocated_yet)600 static int cachefiles_prepare_write(struct netfs_cache_resources *cres,
601 loff_t *_start, size_t *_len, size_t upper_len,
602 loff_t i_size, bool no_space_allocated_yet)
603 {
604 struct cachefiles_object *object = cachefiles_cres_object(cres);
605 struct cachefiles_cache *cache = object->volume->cache;
606 const struct cred *saved_cred;
607 int ret;
608
609 if (!cachefiles_cres_file(cres)) {
610 if (!fscache_wait_for_operation(cres, FSCACHE_WANT_WRITE))
611 return -ENOBUFS;
612 if (!cachefiles_cres_file(cres))
613 return -ENOBUFS;
614 }
615
616 cachefiles_begin_secure(cache, &saved_cred);
617 ret = __cachefiles_prepare_write(object, cachefiles_cres_file(cres),
618 _start, _len, upper_len,
619 no_space_allocated_yet);
620 cachefiles_end_secure(cache, saved_cred);
621 return ret;
622 }
623
cachefiles_prepare_write_subreq(struct netfs_io_subrequest * subreq)624 static void cachefiles_prepare_write_subreq(struct netfs_io_subrequest *subreq)
625 {
626 struct netfs_io_request *wreq = subreq->rreq;
627 struct netfs_cache_resources *cres = &wreq->cache_resources;
628 struct netfs_io_stream *stream = &wreq->io_streams[subreq->stream_nr];
629
630 _enter("W=%x[%x] %llx", wreq->debug_id, subreq->debug_index, subreq->start);
631
632 stream->sreq_max_len = MAX_RW_COUNT;
633 stream->sreq_max_segs = BIO_MAX_VECS;
634
635 if (!cachefiles_cres_file(cres)) {
636 if (!fscache_wait_for_operation(cres, FSCACHE_WANT_WRITE))
637 return netfs_prepare_write_failed(subreq);
638 if (!cachefiles_cres_file(cres))
639 return netfs_prepare_write_failed(subreq);
640 }
641 }
642
cachefiles_issue_write(struct netfs_io_subrequest * subreq)643 static void cachefiles_issue_write(struct netfs_io_subrequest *subreq)
644 {
645 struct netfs_io_request *wreq = subreq->rreq;
646 struct netfs_cache_resources *cres = &wreq->cache_resources;
647 struct cachefiles_object *object = cachefiles_cres_object(cres);
648 struct cachefiles_cache *cache = object->volume->cache;
649 struct netfs_io_stream *stream = &wreq->io_streams[subreq->stream_nr];
650 const struct cred *saved_cred;
651 size_t off, pre, post, len = subreq->len;
652 loff_t start = subreq->start;
653 int ret;
654
655 _enter("W=%x[%x] %llx-%llx",
656 wreq->debug_id, subreq->debug_index, start, start + len - 1);
657
658 /* We need to start on the cache granularity boundary */
659 off = start & (CACHEFILES_DIO_BLOCK_SIZE - 1);
660 if (off) {
661 pre = CACHEFILES_DIO_BLOCK_SIZE - off;
662 if (pre >= len) {
663 fscache_count_dio_misfit();
664 netfs_write_subrequest_terminated(subreq, len, false);
665 return;
666 }
667 subreq->transferred += pre;
668 start += pre;
669 len -= pre;
670 iov_iter_advance(&subreq->io_iter, pre);
671 }
672
673 /* We also need to end on the cache granularity boundary */
674 if (start + len == wreq->i_size) {
675 size_t part = len % CACHEFILES_DIO_BLOCK_SIZE;
676 size_t need = CACHEFILES_DIO_BLOCK_SIZE - part;
677
678 if (part && stream->submit_extendable_to >= need) {
679 len += need;
680 subreq->len += need;
681 subreq->io_iter.count += need;
682 }
683 }
684
685 post = len & (CACHEFILES_DIO_BLOCK_SIZE - 1);
686 if (post) {
687 len -= post;
688 if (len == 0) {
689 fscache_count_dio_misfit();
690 netfs_write_subrequest_terminated(subreq, post, false);
691 return;
692 }
693 iov_iter_truncate(&subreq->io_iter, len);
694 }
695
696 cachefiles_begin_secure(cache, &saved_cred);
697 ret = __cachefiles_prepare_write(object, cachefiles_cres_file(cres),
698 &start, &len, len, true);
699 cachefiles_end_secure(cache, saved_cred);
700 if (ret < 0) {
701 netfs_write_subrequest_terminated(subreq, ret, false);
702 return;
703 }
704
705 cachefiles_write(&subreq->rreq->cache_resources,
706 subreq->start, &subreq->io_iter,
707 netfs_write_subrequest_terminated, subreq);
708 }
709
710 /*
711 * Clean up an operation.
712 */
cachefiles_end_operation(struct netfs_cache_resources * cres)713 static void cachefiles_end_operation(struct netfs_cache_resources *cres)
714 {
715 struct file *file = cachefiles_cres_file(cres);
716
717 if (file)
718 fput(file);
719 fscache_end_cookie_access(fscache_cres_cookie(cres), fscache_access_io_end);
720 }
721
722 static const struct netfs_cache_ops cachefiles_netfs_cache_ops = {
723 .end_operation = cachefiles_end_operation,
724 .read = cachefiles_read,
725 .write = cachefiles_write,
726 .issue_write = cachefiles_issue_write,
727 .prepare_read = cachefiles_prepare_read,
728 .prepare_write = cachefiles_prepare_write,
729 .prepare_write_subreq = cachefiles_prepare_write_subreq,
730 .prepare_ondemand_read = cachefiles_prepare_ondemand_read,
731 .query_occupancy = cachefiles_query_occupancy,
732 };
733
734 /*
735 * Open the cache file when beginning a cache operation.
736 */
cachefiles_begin_operation(struct netfs_cache_resources * cres,enum fscache_want_state want_state)737 bool cachefiles_begin_operation(struct netfs_cache_resources *cres,
738 enum fscache_want_state want_state)
739 {
740 struct cachefiles_object *object = cachefiles_cres_object(cres);
741
742 if (!cachefiles_cres_file(cres)) {
743 cres->ops = &cachefiles_netfs_cache_ops;
744 if (object->file) {
745 spin_lock(&object->lock);
746 if (!cres->cache_priv2 && object->file)
747 cres->cache_priv2 = get_file(object->file);
748 spin_unlock(&object->lock);
749 }
750 }
751
752 if (!cachefiles_cres_file(cres) && want_state != FSCACHE_WANT_PARAMS) {
753 pr_err("failed to get cres->file\n");
754 return false;
755 }
756
757 return true;
758 }
759