xref: /linux/fs/afs/dir.c (revision d3d90cc2891c9cf4ecba7b85c0af716ab755c7e5)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /* dir.c: AFS filesystem directory handling
3  *
4  * Copyright (C) 2002, 2018 Red Hat, Inc. All Rights Reserved.
5  * Written by David Howells (dhowells@redhat.com)
6  */
7 
8 #include <linux/kernel.h>
9 #include <linux/fs.h>
10 #include <linux/namei.h>
11 #include <linux/pagemap.h>
12 #include <linux/swap.h>
13 #include <linux/ctype.h>
14 #include <linux/sched.h>
15 #include <linux/iversion.h>
16 #include <linux/iov_iter.h>
17 #include <linux/task_io_accounting_ops.h>
18 #include "internal.h"
19 #include "afs_fs.h"
20 #include "xdr_fs.h"
21 
22 static struct dentry *afs_lookup(struct inode *dir, struct dentry *dentry,
23 				 unsigned int flags);
24 static int afs_dir_open(struct inode *inode, struct file *file);
25 static int afs_readdir(struct file *file, struct dir_context *ctx);
26 static int afs_d_revalidate(struct inode *dir, const struct qstr *name,
27 			    struct dentry *dentry, unsigned int flags);
28 static int afs_d_delete(const struct dentry *dentry);
29 static void afs_d_iput(struct dentry *dentry, struct inode *inode);
30 static bool afs_lookup_one_filldir(struct dir_context *ctx, const char *name, int nlen,
31 				  loff_t fpos, u64 ino, unsigned dtype);
32 static bool afs_lookup_filldir(struct dir_context *ctx, const char *name, int nlen,
33 			      loff_t fpos, u64 ino, unsigned dtype);
34 static int afs_create(struct mnt_idmap *idmap, struct inode *dir,
35 		      struct dentry *dentry, umode_t mode, bool excl);
36 static int afs_mkdir(struct mnt_idmap *idmap, struct inode *dir,
37 		     struct dentry *dentry, umode_t mode);
38 static int afs_rmdir(struct inode *dir, struct dentry *dentry);
39 static int afs_unlink(struct inode *dir, struct dentry *dentry);
40 static int afs_link(struct dentry *from, struct inode *dir,
41 		    struct dentry *dentry);
42 static int afs_symlink(struct mnt_idmap *idmap, struct inode *dir,
43 		       struct dentry *dentry, const char *content);
44 static int afs_rename(struct mnt_idmap *idmap, struct inode *old_dir,
45 		      struct dentry *old_dentry, struct inode *new_dir,
46 		      struct dentry *new_dentry, unsigned int flags);
47 
48 const struct file_operations afs_dir_file_operations = {
49 	.open		= afs_dir_open,
50 	.release	= afs_release,
51 	.iterate_shared	= afs_readdir,
52 	.lock		= afs_lock,
53 	.llseek		= generic_file_llseek,
54 };
55 
56 const struct inode_operations afs_dir_inode_operations = {
57 	.create		= afs_create,
58 	.lookup		= afs_lookup,
59 	.link		= afs_link,
60 	.unlink		= afs_unlink,
61 	.symlink	= afs_symlink,
62 	.mkdir		= afs_mkdir,
63 	.rmdir		= afs_rmdir,
64 	.rename		= afs_rename,
65 	.permission	= afs_permission,
66 	.getattr	= afs_getattr,
67 	.setattr	= afs_setattr,
68 };
69 
70 const struct address_space_operations afs_dir_aops = {
71 	.writepages	= afs_single_writepages,
72 };
73 
74 const struct dentry_operations afs_fs_dentry_operations = {
75 	.d_revalidate	= afs_d_revalidate,
76 	.d_delete	= afs_d_delete,
77 	.d_release	= afs_d_release,
78 	.d_automount	= afs_d_automount,
79 	.d_iput		= afs_d_iput,
80 };
81 
82 struct afs_lookup_one_cookie {
83 	struct dir_context	ctx;
84 	struct qstr		name;
85 	bool			found;
86 	struct afs_fid		fid;
87 };
88 
89 struct afs_lookup_cookie {
90 	struct dir_context	ctx;
91 	struct qstr		name;
92 	unsigned short		nr_fids;
93 	struct afs_fid		fids[50];
94 };
95 
afs_dir_unuse_cookie(struct afs_vnode * dvnode,int ret)96 static void afs_dir_unuse_cookie(struct afs_vnode *dvnode, int ret)
97 {
98 	if (ret == 0) {
99 		struct afs_vnode_cache_aux aux;
100 		loff_t i_size = i_size_read(&dvnode->netfs.inode);
101 
102 		afs_set_cache_aux(dvnode, &aux);
103 		fscache_unuse_cookie(afs_vnode_cache(dvnode), &aux, &i_size);
104 	} else {
105 		fscache_unuse_cookie(afs_vnode_cache(dvnode), NULL, NULL);
106 	}
107 }
108 
109 /*
110  * Iterate through a kmapped directory segment, dumping a summary of
111  * the contents.
112  */
afs_dir_dump_step(void * iter_base,size_t progress,size_t len,void * priv,void * priv2)113 static size_t afs_dir_dump_step(void *iter_base, size_t progress, size_t len,
114 				void *priv, void *priv2)
115 {
116 	do {
117 		union afs_xdr_dir_block *block = iter_base;
118 
119 		pr_warn("[%05zx] %32phN\n", progress, block);
120 		iter_base += AFS_DIR_BLOCK_SIZE;
121 		progress += AFS_DIR_BLOCK_SIZE;
122 		len -= AFS_DIR_BLOCK_SIZE;
123 	} while (len > 0);
124 
125 	return len;
126 }
127 
128 /*
129  * Dump the contents of a directory.
130  */
afs_dir_dump(struct afs_vnode * dvnode)131 static void afs_dir_dump(struct afs_vnode *dvnode)
132 {
133 	struct iov_iter iter;
134 	unsigned long long i_size = i_size_read(&dvnode->netfs.inode);
135 
136 	pr_warn("DIR %llx:%llx is=%llx\n",
137 		dvnode->fid.vid, dvnode->fid.vnode, i_size);
138 
139 	iov_iter_folio_queue(&iter, ITER_SOURCE, dvnode->directory, 0, 0, i_size);
140 	iterate_folioq(&iter, iov_iter_count(&iter), NULL, NULL,
141 		       afs_dir_dump_step);
142 }
143 
144 /*
145  * check that a directory folio is valid
146  */
afs_dir_check_block(struct afs_vnode * dvnode,size_t progress,union afs_xdr_dir_block * block)147 static bool afs_dir_check_block(struct afs_vnode *dvnode, size_t progress,
148 				union afs_xdr_dir_block *block)
149 {
150 	if (block->hdr.magic != AFS_DIR_MAGIC) {
151 		pr_warn("%s(%lx): [%zx] bad magic %04x\n",
152 		       __func__, dvnode->netfs.inode.i_ino,
153 		       progress, ntohs(block->hdr.magic));
154 		trace_afs_dir_check_failed(dvnode, progress);
155 		trace_afs_file_error(dvnode, -EIO, afs_file_error_dir_bad_magic);
156 		return false;
157 	}
158 
159 	/* Make sure each block is NUL terminated so we can reasonably
160 	 * use string functions on it.  The filenames in the folio
161 	 * *should* be NUL-terminated anyway.
162 	 */
163 	((u8 *)block)[AFS_DIR_BLOCK_SIZE - 1] = 0;
164 	afs_stat_v(dvnode, n_read_dir);
165 	return true;
166 }
167 
168 /*
169  * Iterate through a kmapped directory segment, checking the content.
170  */
afs_dir_check_step(void * iter_base,size_t progress,size_t len,void * priv,void * priv2)171 static size_t afs_dir_check_step(void *iter_base, size_t progress, size_t len,
172 				 void *priv, void *priv2)
173 {
174 	struct afs_vnode *dvnode = priv;
175 
176 	if (WARN_ON_ONCE(progress % AFS_DIR_BLOCK_SIZE ||
177 			 len % AFS_DIR_BLOCK_SIZE))
178 		return len;
179 
180 	do {
181 		if (!afs_dir_check_block(dvnode, progress, iter_base))
182 			break;
183 		iter_base += AFS_DIR_BLOCK_SIZE;
184 		len -= AFS_DIR_BLOCK_SIZE;
185 	} while (len > 0);
186 
187 	return len;
188 }
189 
190 /*
191  * Check all the blocks in a directory.
192  */
afs_dir_check(struct afs_vnode * dvnode)193 static int afs_dir_check(struct afs_vnode *dvnode)
194 {
195 	struct iov_iter iter;
196 	unsigned long long i_size = i_size_read(&dvnode->netfs.inode);
197 	size_t checked = 0;
198 
199 	if (unlikely(!i_size))
200 		return 0;
201 
202 	iov_iter_folio_queue(&iter, ITER_SOURCE, dvnode->directory, 0, 0, i_size);
203 	checked = iterate_folioq(&iter, iov_iter_count(&iter), dvnode, NULL,
204 				 afs_dir_check_step);
205 	if (checked != i_size) {
206 		afs_dir_dump(dvnode);
207 		return -EIO;
208 	}
209 	return 0;
210 }
211 
212 /*
213  * open an AFS directory file
214  */
afs_dir_open(struct inode * inode,struct file * file)215 static int afs_dir_open(struct inode *inode, struct file *file)
216 {
217 	_enter("{%lu}", inode->i_ino);
218 
219 	BUILD_BUG_ON(sizeof(union afs_xdr_dir_block) != 2048);
220 	BUILD_BUG_ON(sizeof(union afs_xdr_dirent) != 32);
221 
222 	if (test_bit(AFS_VNODE_DELETED, &AFS_FS_I(inode)->flags))
223 		return -ENOENT;
224 
225 	return afs_open(inode, file);
226 }
227 
228 /*
229  * Read a file in a single download.
230  */
afs_do_read_single(struct afs_vnode * dvnode,struct file * file)231 static ssize_t afs_do_read_single(struct afs_vnode *dvnode, struct file *file)
232 {
233 	struct iov_iter iter;
234 	ssize_t ret;
235 	loff_t i_size;
236 	bool is_dir = (S_ISDIR(dvnode->netfs.inode.i_mode) &&
237 		       !test_bit(AFS_VNODE_MOUNTPOINT, &dvnode->flags));
238 
239 	i_size = i_size_read(&dvnode->netfs.inode);
240 	if (is_dir) {
241 		if (i_size < AFS_DIR_BLOCK_SIZE)
242 			return afs_bad(dvnode, afs_file_error_dir_small);
243 		if (i_size > AFS_DIR_BLOCK_SIZE * 1024) {
244 			trace_afs_file_error(dvnode, -EFBIG, afs_file_error_dir_big);
245 			return -EFBIG;
246 		}
247 	} else {
248 		if (i_size > AFSPATHMAX) {
249 			trace_afs_file_error(dvnode, -EFBIG, afs_file_error_dir_big);
250 			return -EFBIG;
251 		}
252 	}
253 
254 	/* Expand the storage.  TODO: Shrink the storage too. */
255 	if (dvnode->directory_size < i_size) {
256 		size_t cur_size = dvnode->directory_size;
257 
258 		ret = netfs_alloc_folioq_buffer(NULL,
259 						&dvnode->directory, &cur_size, i_size,
260 						mapping_gfp_mask(dvnode->netfs.inode.i_mapping));
261 		dvnode->directory_size = cur_size;
262 		if (ret < 0)
263 			return ret;
264 	}
265 
266 	iov_iter_folio_queue(&iter, ITER_DEST, dvnode->directory, 0, 0, dvnode->directory_size);
267 
268 	/* AFS requires us to perform the read of a directory synchronously as
269 	 * a single unit to avoid issues with the directory contents being
270 	 * changed between reads.
271 	 */
272 	ret = netfs_read_single(&dvnode->netfs.inode, file, &iter);
273 	if (ret >= 0) {
274 		i_size = i_size_read(&dvnode->netfs.inode);
275 		if (i_size > ret) {
276 			/* The content has grown, so we need to expand the
277 			 * buffer.
278 			 */
279 			ret = -ESTALE;
280 		} else if (is_dir) {
281 			int ret2 = afs_dir_check(dvnode);
282 
283 			if (ret2 < 0)
284 				ret = ret2;
285 		} else if (i_size < folioq_folio_size(dvnode->directory, 0)) {
286 			/* NUL-terminate a symlink. */
287 			char *symlink = kmap_local_folio(folioq_folio(dvnode->directory, 0), 0);
288 
289 			symlink[i_size] = 0;
290 			kunmap_local(symlink);
291 		}
292 	}
293 
294 	return ret;
295 }
296 
afs_read_single(struct afs_vnode * dvnode,struct file * file)297 ssize_t afs_read_single(struct afs_vnode *dvnode, struct file *file)
298 {
299 	ssize_t ret;
300 
301 	fscache_use_cookie(afs_vnode_cache(dvnode), false);
302 	ret = afs_do_read_single(dvnode, file);
303 	fscache_unuse_cookie(afs_vnode_cache(dvnode), NULL, NULL);
304 	return ret;
305 }
306 
307 /*
308  * Read the directory into a folio_queue buffer in one go, scrubbing the
309  * previous contents.  We return -ESTALE if the caller needs to call us again.
310  */
afs_read_dir(struct afs_vnode * dvnode,struct file * file)311 ssize_t afs_read_dir(struct afs_vnode *dvnode, struct file *file)
312 	__acquires(&dvnode->validate_lock)
313 {
314 	ssize_t ret;
315 	loff_t i_size;
316 
317 	i_size = i_size_read(&dvnode->netfs.inode);
318 
319 	ret = -ERESTARTSYS;
320 	if (down_read_killable(&dvnode->validate_lock) < 0)
321 		goto error;
322 
323 	/* We only need to reread the data if it became invalid - or if we
324 	 * haven't read it yet.
325 	 */
326 	if (test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags) &&
327 	    test_bit(AFS_VNODE_DIR_READ, &dvnode->flags)) {
328 		ret = i_size;
329 		goto valid;
330 	}
331 
332 	up_read(&dvnode->validate_lock);
333 	if (down_write_killable(&dvnode->validate_lock) < 0)
334 		goto error;
335 
336 	if (!test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags))
337 		afs_invalidate_cache(dvnode, 0);
338 
339 	if (!test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags) ||
340 	    !test_bit(AFS_VNODE_DIR_READ, &dvnode->flags)) {
341 		trace_afs_reload_dir(dvnode);
342 		ret = afs_read_single(dvnode, file);
343 		if (ret < 0)
344 			goto error_unlock;
345 
346 		// TODO: Trim excess pages
347 
348 		set_bit(AFS_VNODE_DIR_VALID, &dvnode->flags);
349 		set_bit(AFS_VNODE_DIR_READ, &dvnode->flags);
350 	} else {
351 		ret = i_size;
352 	}
353 
354 	downgrade_write(&dvnode->validate_lock);
355 valid:
356 	return ret;
357 
358 error_unlock:
359 	up_write(&dvnode->validate_lock);
360 error:
361 	_leave(" = %zd", ret);
362 	return ret;
363 }
364 
365 /*
366  * deal with one block in an AFS directory
367  */
afs_dir_iterate_block(struct afs_vnode * dvnode,struct dir_context * ctx,union afs_xdr_dir_block * block)368 static int afs_dir_iterate_block(struct afs_vnode *dvnode,
369 				 struct dir_context *ctx,
370 				 union afs_xdr_dir_block *block)
371 {
372 	union afs_xdr_dirent *dire;
373 	unsigned int blknum, base, hdr, pos, next, nr_slots;
374 	size_t nlen;
375 	int tmp;
376 
377 	blknum	= ctx->pos / AFS_DIR_BLOCK_SIZE;
378 	base	= blknum * AFS_DIR_SLOTS_PER_BLOCK;
379 	hdr	= (blknum == 0 ? AFS_DIR_RESV_BLOCKS0 : AFS_DIR_RESV_BLOCKS);
380 	pos	= DIV_ROUND_UP(ctx->pos, AFS_DIR_DIRENT_SIZE) - base;
381 
382 	_enter("%llx,%x", ctx->pos, blknum);
383 
384 	/* walk through the block, an entry at a time */
385 	for (unsigned int slot = hdr; slot < AFS_DIR_SLOTS_PER_BLOCK; slot = next) {
386 		/* skip entries marked unused in the bitmap */
387 		if (!(block->hdr.bitmap[slot / 8] &
388 		      (1 << (slot % 8)))) {
389 			_debug("ENT[%x]: Unused", base + slot);
390 			next = slot + 1;
391 			if (next >= pos)
392 				ctx->pos = (base + next) * sizeof(union afs_xdr_dirent);
393 			continue;
394 		}
395 
396 		/* got a valid entry */
397 		dire = &block->dirents[slot];
398 		nlen = strnlen(dire->u.name,
399 			       (unsigned long)(block + 1) - (unsigned long)dire->u.name - 1);
400 		if (nlen > AFSNAMEMAX - 1) {
401 			_debug("ENT[%x]: Name too long (len %zx)",
402 			       base + slot, nlen);
403 			return afs_bad(dvnode, afs_file_error_dir_name_too_long);
404 		}
405 
406 		_debug("ENT[%x]: %s %zx \"%s\"",
407 		       base + slot, (slot < pos ? "skip" : "fill"),
408 		       nlen, dire->u.name);
409 
410 		nr_slots = afs_dir_calc_slots(nlen);
411 		next = slot + nr_slots;
412 		if (next > AFS_DIR_SLOTS_PER_BLOCK) {
413 			_debug("ENT[%x]: extends beyond end dir block (len %zx)",
414 			       base + slot, nlen);
415 			return afs_bad(dvnode, afs_file_error_dir_over_end);
416 		}
417 
418 		/* Check that the name-extension dirents are all allocated */
419 		for (tmp = 1; tmp < nr_slots; tmp++) {
420 			unsigned int xslot = slot + tmp;
421 
422 			if (!(block->hdr.bitmap[xslot / 8] & (1 << (xslot % 8)))) {
423 				_debug("ENT[%x]: Unmarked extension (%x/%x)",
424 				       base + slot, tmp, nr_slots);
425 				return afs_bad(dvnode, afs_file_error_dir_unmarked_ext);
426 			}
427 		}
428 
429 		/* skip if starts before the current position */
430 		if (slot < pos) {
431 			if (next > pos)
432 				ctx->pos = (base + next) * sizeof(union afs_xdr_dirent);
433 			continue;
434 		}
435 
436 		/* found the next entry */
437 		if (!dir_emit(ctx, dire->u.name, nlen,
438 			      ntohl(dire->u.vnode),
439 			      (ctx->actor == afs_lookup_filldir ||
440 			       ctx->actor == afs_lookup_one_filldir)?
441 			      ntohl(dire->u.unique) : DT_UNKNOWN)) {
442 			_leave(" = 0 [full]");
443 			return 0;
444 		}
445 
446 		ctx->pos = (base + next) * sizeof(union afs_xdr_dirent);
447 	}
448 
449 	_leave(" = 1 [more]");
450 	return 1;
451 }
452 
453 struct afs_dir_iteration_ctx {
454 	struct dir_context	*dir_ctx;
455 	int			error;
456 };
457 
458 /*
459  * Iterate through a kmapped directory segment.
460  */
afs_dir_iterate_step(void * iter_base,size_t progress,size_t len,void * priv,void * priv2)461 static size_t afs_dir_iterate_step(void *iter_base, size_t progress, size_t len,
462 				   void *priv, void *priv2)
463 {
464 	struct afs_dir_iteration_ctx *ctx = priv2;
465 	struct afs_vnode *dvnode = priv;
466 	int ret;
467 
468 	if (WARN_ON_ONCE(progress % AFS_DIR_BLOCK_SIZE ||
469 			 len % AFS_DIR_BLOCK_SIZE)) {
470 		pr_err("Mis-iteration prog=%zx len=%zx\n",
471 		       progress % AFS_DIR_BLOCK_SIZE,
472 		       len % AFS_DIR_BLOCK_SIZE);
473 		return len;
474 	}
475 
476 	do {
477 		ret = afs_dir_iterate_block(dvnode, ctx->dir_ctx, iter_base);
478 		if (ret != 1)
479 			break;
480 
481 		ctx->dir_ctx->pos = round_up(ctx->dir_ctx->pos, AFS_DIR_BLOCK_SIZE);
482 		iter_base += AFS_DIR_BLOCK_SIZE;
483 		len -= AFS_DIR_BLOCK_SIZE;
484 	} while (len > 0);
485 
486 	return len;
487 }
488 
489 /*
490  * Iterate through the directory folios.
491  */
afs_dir_iterate_contents(struct inode * dir,struct dir_context * dir_ctx)492 static int afs_dir_iterate_contents(struct inode *dir, struct dir_context *dir_ctx)
493 {
494 	struct afs_dir_iteration_ctx ctx = { .dir_ctx = dir_ctx };
495 	struct afs_vnode *dvnode = AFS_FS_I(dir);
496 	struct iov_iter iter;
497 	unsigned long long i_size = i_size_read(dir);
498 
499 	/* Round the file position up to the next entry boundary */
500 	dir_ctx->pos = round_up(dir_ctx->pos, sizeof(union afs_xdr_dirent));
501 
502 	if (i_size <= 0 || dir_ctx->pos >= i_size)
503 		return 0;
504 
505 	iov_iter_folio_queue(&iter, ITER_SOURCE, dvnode->directory, 0, 0, i_size);
506 	iov_iter_advance(&iter, round_down(dir_ctx->pos, AFS_DIR_BLOCK_SIZE));
507 
508 	iterate_folioq(&iter, iov_iter_count(&iter), dvnode, &ctx,
509 		       afs_dir_iterate_step);
510 
511 	if (ctx.error == -ESTALE)
512 		afs_invalidate_dir(dvnode, afs_dir_invalid_iter_stale);
513 	return ctx.error;
514 }
515 
516 /*
517  * iterate through the data blob that lists the contents of an AFS directory
518  */
afs_dir_iterate(struct inode * dir,struct dir_context * ctx,struct file * file,afs_dataversion_t * _dir_version)519 static int afs_dir_iterate(struct inode *dir, struct dir_context *ctx,
520 			   struct file *file, afs_dataversion_t *_dir_version)
521 {
522 	struct afs_vnode *dvnode = AFS_FS_I(dir);
523 	int retry_limit = 100;
524 	int ret;
525 
526 	_enter("{%lu},%llx,,", dir->i_ino, ctx->pos);
527 
528 	do {
529 		if (--retry_limit < 0) {
530 			pr_warn("afs_read_dir(): Too many retries\n");
531 			ret = -ESTALE;
532 			break;
533 		}
534 		ret = afs_read_dir(dvnode, file);
535 		if (ret < 0) {
536 			if (ret != -ESTALE)
537 				break;
538 			if (test_bit(AFS_VNODE_DELETED, &AFS_FS_I(dir)->flags)) {
539 				ret = -ESTALE;
540 				break;
541 			}
542 			continue;
543 		}
544 		*_dir_version = inode_peek_iversion_raw(dir);
545 
546 		ret = afs_dir_iterate_contents(dir, ctx);
547 		up_read(&dvnode->validate_lock);
548 	} while (ret == -ESTALE);
549 
550 	_leave(" = %d", ret);
551 	return ret;
552 }
553 
554 /*
555  * read an AFS directory
556  */
afs_readdir(struct file * file,struct dir_context * ctx)557 static int afs_readdir(struct file *file, struct dir_context *ctx)
558 {
559 	afs_dataversion_t dir_version;
560 
561 	return afs_dir_iterate(file_inode(file), ctx, file, &dir_version);
562 }
563 
564 /*
565  * Search the directory for a single name
566  * - if afs_dir_iterate_block() spots this function, it'll pass the FID
567  *   uniquifier through dtype
568  */
afs_lookup_one_filldir(struct dir_context * ctx,const char * name,int nlen,loff_t fpos,u64 ino,unsigned dtype)569 static bool afs_lookup_one_filldir(struct dir_context *ctx, const char *name,
570 				  int nlen, loff_t fpos, u64 ino, unsigned dtype)
571 {
572 	struct afs_lookup_one_cookie *cookie =
573 		container_of(ctx, struct afs_lookup_one_cookie, ctx);
574 
575 	_enter("{%s,%u},%s,%u,,%llu,%u",
576 	       cookie->name.name, cookie->name.len, name, nlen,
577 	       (unsigned long long) ino, dtype);
578 
579 	/* insanity checks first */
580 	BUILD_BUG_ON(sizeof(union afs_xdr_dir_block) != 2048);
581 	BUILD_BUG_ON(sizeof(union afs_xdr_dirent) != 32);
582 
583 	if (cookie->name.len != nlen ||
584 	    memcmp(cookie->name.name, name, nlen) != 0) {
585 		_leave(" = true [keep looking]");
586 		return true;
587 	}
588 
589 	cookie->fid.vnode = ino;
590 	cookie->fid.unique = dtype;
591 	cookie->found = 1;
592 
593 	_leave(" = false [found]");
594 	return false;
595 }
596 
597 /*
598  * Do a lookup of a single name in a directory
599  * - just returns the FID the dentry name maps to if found
600  */
afs_do_lookup_one(struct inode * dir,const struct qstr * name,struct afs_fid * fid,afs_dataversion_t * _dir_version)601 static int afs_do_lookup_one(struct inode *dir, const struct qstr *name,
602 			     struct afs_fid *fid,
603 			     afs_dataversion_t *_dir_version)
604 {
605 	struct afs_super_info *as = dir->i_sb->s_fs_info;
606 	struct afs_lookup_one_cookie cookie = {
607 		.ctx.actor = afs_lookup_one_filldir,
608 		.name = *name,
609 		.fid.vid = as->volume->vid
610 	};
611 	int ret;
612 
613 	_enter("{%lu},{%.*s},", dir->i_ino, name->len, name->name);
614 
615 	/* search the directory */
616 	ret = afs_dir_iterate(dir, &cookie.ctx, NULL, _dir_version);
617 	if (ret < 0) {
618 		_leave(" = %d [iter]", ret);
619 		return ret;
620 	}
621 
622 	if (!cookie.found) {
623 		_leave(" = -ENOENT [not found]");
624 		return -ENOENT;
625 	}
626 
627 	*fid = cookie.fid;
628 	_leave(" = 0 { vn=%llu u=%u }", fid->vnode, fid->unique);
629 	return 0;
630 }
631 
632 /*
633  * search the directory for a name
634  * - if afs_dir_iterate_block() spots this function, it'll pass the FID
635  *   uniquifier through dtype
636  */
afs_lookup_filldir(struct dir_context * ctx,const char * name,int nlen,loff_t fpos,u64 ino,unsigned dtype)637 static bool afs_lookup_filldir(struct dir_context *ctx, const char *name,
638 			      int nlen, loff_t fpos, u64 ino, unsigned dtype)
639 {
640 	struct afs_lookup_cookie *cookie =
641 		container_of(ctx, struct afs_lookup_cookie, ctx);
642 
643 	_enter("{%s,%u},%s,%u,,%llu,%u",
644 	       cookie->name.name, cookie->name.len, name, nlen,
645 	       (unsigned long long) ino, dtype);
646 
647 	/* insanity checks first */
648 	BUILD_BUG_ON(sizeof(union afs_xdr_dir_block) != 2048);
649 	BUILD_BUG_ON(sizeof(union afs_xdr_dirent) != 32);
650 
651 	if (cookie->nr_fids < 50) {
652 		cookie->fids[cookie->nr_fids].vnode	= ino;
653 		cookie->fids[cookie->nr_fids].unique	= dtype;
654 		cookie->nr_fids++;
655 	}
656 
657 	return cookie->nr_fids < 50;
658 }
659 
660 /*
661  * Deal with the result of a successful lookup operation.  Turn all the files
662  * into inodes and save the first one - which is the one we actually want.
663  */
afs_do_lookup_success(struct afs_operation * op)664 static void afs_do_lookup_success(struct afs_operation *op)
665 {
666 	struct afs_vnode_param *vp;
667 	struct afs_vnode *vnode;
668 	struct inode *inode;
669 	u32 abort_code;
670 	int i;
671 
672 	_enter("");
673 
674 	for (i = 0; i < op->nr_files; i++) {
675 		switch (i) {
676 		case 0:
677 			vp = &op->file[0];
678 			abort_code = vp->scb.status.abort_code;
679 			if (abort_code != 0) {
680 				op->call_abort_code = abort_code;
681 				afs_op_set_error(op, afs_abort_to_error(abort_code));
682 				op->cumul_error.abort_code = abort_code;
683 			}
684 			break;
685 
686 		case 1:
687 			vp = &op->file[1];
688 			break;
689 
690 		default:
691 			vp = &op->more_files[i - 2];
692 			break;
693 		}
694 
695 		if (vp->scb.status.abort_code)
696 			trace_afs_bulkstat_error(op, &vp->fid, i, vp->scb.status.abort_code);
697 		if (!vp->scb.have_status && !vp->scb.have_error)
698 			continue;
699 
700 		_debug("do [%u]", i);
701 		if (vp->vnode) {
702 			if (!test_bit(AFS_VNODE_UNSET, &vp->vnode->flags))
703 				afs_vnode_commit_status(op, vp);
704 		} else if (vp->scb.status.abort_code == 0) {
705 			inode = afs_iget(op, vp);
706 			if (!IS_ERR(inode)) {
707 				vnode = AFS_FS_I(inode);
708 				afs_cache_permit(vnode, op->key,
709 						 0 /* Assume vnode->cb_break is 0 */ +
710 						 op->cb_v_break,
711 						 &vp->scb);
712 				vp->vnode = vnode;
713 				vp->put_vnode = true;
714 			}
715 		} else {
716 			_debug("- abort %d %llx:%llx.%x",
717 			       vp->scb.status.abort_code,
718 			       vp->fid.vid, vp->fid.vnode, vp->fid.unique);
719 		}
720 	}
721 
722 	_leave("");
723 }
724 
725 static const struct afs_operation_ops afs_inline_bulk_status_operation = {
726 	.issue_afs_rpc	= afs_fs_inline_bulk_status,
727 	.issue_yfs_rpc	= yfs_fs_inline_bulk_status,
728 	.success	= afs_do_lookup_success,
729 };
730 
731 static const struct afs_operation_ops afs_lookup_fetch_status_operation = {
732 	.issue_afs_rpc	= afs_fs_fetch_status,
733 	.issue_yfs_rpc	= yfs_fs_fetch_status,
734 	.success	= afs_do_lookup_success,
735 	.aborted	= afs_check_for_remote_deletion,
736 };
737 
738 /*
739  * See if we know that the server we expect to use doesn't support
740  * FS.InlineBulkStatus.
741  */
afs_server_supports_ibulk(struct afs_vnode * dvnode)742 static bool afs_server_supports_ibulk(struct afs_vnode *dvnode)
743 {
744 	struct afs_server_list *slist;
745 	struct afs_volume *volume = dvnode->volume;
746 	struct afs_server *server;
747 	bool ret = true;
748 	int i;
749 
750 	if (!test_bit(AFS_VOLUME_MAYBE_NO_IBULK, &volume->flags))
751 		return true;
752 
753 	rcu_read_lock();
754 	slist = rcu_dereference(volume->servers);
755 
756 	for (i = 0; i < slist->nr_servers; i++) {
757 		server = slist->servers[i].server;
758 		if (server == dvnode->cb_server) {
759 			if (test_bit(AFS_SERVER_FL_NO_IBULK, &server->flags))
760 				ret = false;
761 			break;
762 		}
763 	}
764 
765 	rcu_read_unlock();
766 	return ret;
767 }
768 
769 /*
770  * Do a lookup in a directory.  We make use of bulk lookup to query a slew of
771  * files in one go and create inodes for them.  The inode of the file we were
772  * asked for is returned.
773  */
afs_do_lookup(struct inode * dir,struct dentry * dentry)774 static struct inode *afs_do_lookup(struct inode *dir, struct dentry *dentry)
775 {
776 	struct afs_lookup_cookie *cookie;
777 	struct afs_vnode_param *vp;
778 	struct afs_operation *op;
779 	struct afs_vnode *dvnode = AFS_FS_I(dir), *vnode;
780 	struct inode *inode = NULL, *ti;
781 	afs_dataversion_t data_version = READ_ONCE(dvnode->status.data_version);
782 	bool supports_ibulk;
783 	long ret;
784 	int i;
785 
786 	_enter("{%lu},%p{%pd},", dir->i_ino, dentry, dentry);
787 
788 	cookie = kzalloc(sizeof(struct afs_lookup_cookie), GFP_KERNEL);
789 	if (!cookie)
790 		return ERR_PTR(-ENOMEM);
791 
792 	for (i = 0; i < ARRAY_SIZE(cookie->fids); i++)
793 		cookie->fids[i].vid = dvnode->fid.vid;
794 	cookie->ctx.actor = afs_lookup_filldir;
795 	cookie->name = dentry->d_name;
796 	cookie->nr_fids = 2; /* slot 1 is saved for the fid we actually want
797 			      * and slot 0 for the directory */
798 
799 	/* Search the directory for the named entry using the hash table... */
800 	ret = afs_dir_search(dvnode, &dentry->d_name, &cookie->fids[1], &data_version);
801 	if (ret < 0)
802 		goto out;
803 
804 	supports_ibulk = afs_server_supports_ibulk(dvnode);
805 	if (supports_ibulk) {
806 		/* ...then scan linearly from that point for entries to lookup-ahead. */
807 		cookie->ctx.pos = (ret + 1) * AFS_DIR_DIRENT_SIZE;
808 		afs_dir_iterate(dir, &cookie->ctx, NULL, &data_version);
809 	}
810 
811 	dentry->d_fsdata = (void *)(unsigned long)data_version;
812 
813 	/* Check to see if we already have an inode for the primary fid. */
814 	inode = ilookup5(dir->i_sb, cookie->fids[1].vnode,
815 			 afs_ilookup5_test_by_fid, &cookie->fids[1]);
816 	if (inode)
817 		goto out; /* We do */
818 
819 	/* Okay, we didn't find it.  We need to query the server - and whilst
820 	 * we're doing that, we're going to attempt to look up a bunch of other
821 	 * vnodes also.
822 	 */
823 	op = afs_alloc_operation(NULL, dvnode->volume);
824 	if (IS_ERR(op)) {
825 		ret = PTR_ERR(op);
826 		goto out;
827 	}
828 
829 	afs_op_set_vnode(op, 0, dvnode);
830 	afs_op_set_fid(op, 1, &cookie->fids[1]);
831 
832 	op->nr_files = cookie->nr_fids;
833 	_debug("nr_files %u", op->nr_files);
834 
835 	/* Need space for examining all the selected files */
836 	if (op->nr_files > 2) {
837 		op->more_files = kvcalloc(op->nr_files - 2,
838 					  sizeof(struct afs_vnode_param),
839 					  GFP_KERNEL);
840 		if (!op->more_files) {
841 			afs_op_nomem(op);
842 			goto out_op;
843 		}
844 
845 		for (i = 2; i < op->nr_files; i++) {
846 			vp = &op->more_files[i - 2];
847 			vp->fid = cookie->fids[i];
848 
849 			/* Find any inodes that already exist and get their
850 			 * callback counters.
851 			 */
852 			ti = ilookup5_nowait(dir->i_sb, vp->fid.vnode,
853 					     afs_ilookup5_test_by_fid, &vp->fid);
854 			if (!IS_ERR_OR_NULL(ti)) {
855 				vnode = AFS_FS_I(ti);
856 				vp->dv_before = vnode->status.data_version;
857 				vp->cb_break_before = afs_calc_vnode_cb_break(vnode);
858 				vp->vnode = vnode;
859 				vp->put_vnode = true;
860 				vp->speculative = true; /* vnode not locked */
861 			}
862 		}
863 	}
864 
865 	/* Try FS.InlineBulkStatus first.  Abort codes for the individual
866 	 * lookups contained therein are stored in the reply without aborting
867 	 * the whole operation.
868 	 */
869 	afs_op_set_error(op, -ENOTSUPP);
870 	if (supports_ibulk) {
871 		op->ops = &afs_inline_bulk_status_operation;
872 		afs_begin_vnode_operation(op);
873 		afs_wait_for_operation(op);
874 	}
875 
876 	if (afs_op_error(op) == -ENOTSUPP) {
877 		/* We could try FS.BulkStatus next, but this aborts the entire
878 		 * op if any of the lookups fails - so, for the moment, revert
879 		 * to FS.FetchStatus for op->file[1].
880 		 */
881 		op->fetch_status.which = 1;
882 		op->ops = &afs_lookup_fetch_status_operation;
883 		afs_begin_vnode_operation(op);
884 		afs_wait_for_operation(op);
885 	}
886 
887 out_op:
888 	if (!afs_op_error(op)) {
889 		if (op->file[1].scb.status.abort_code) {
890 			afs_op_accumulate_error(op, -ECONNABORTED,
891 						op->file[1].scb.status.abort_code);
892 		} else {
893 			inode = &op->file[1].vnode->netfs.inode;
894 			op->file[1].vnode = NULL;
895 		}
896 	}
897 
898 	if (op->file[0].scb.have_status)
899 		dentry->d_fsdata = (void *)(unsigned long)op->file[0].scb.status.data_version;
900 	else
901 		dentry->d_fsdata = (void *)(unsigned long)op->file[0].dv_before;
902 	ret = afs_put_operation(op);
903 out:
904 	kfree(cookie);
905 	_leave("");
906 	return inode ?: ERR_PTR(ret);
907 }
908 
909 /*
910  * Look up an entry in a directory with @sys substitution.
911  */
afs_lookup_atsys(struct inode * dir,struct dentry * dentry)912 static struct dentry *afs_lookup_atsys(struct inode *dir, struct dentry *dentry)
913 {
914 	struct afs_sysnames *subs;
915 	struct afs_net *net = afs_i2net(dir);
916 	struct dentry *ret;
917 	char *buf, *p, *name;
918 	int len, i;
919 
920 	_enter("");
921 
922 	ret = ERR_PTR(-ENOMEM);
923 	p = buf = kmalloc(AFSNAMEMAX, GFP_KERNEL);
924 	if (!buf)
925 		goto out_p;
926 	if (dentry->d_name.len > 4) {
927 		memcpy(p, dentry->d_name.name, dentry->d_name.len - 4);
928 		p += dentry->d_name.len - 4;
929 	}
930 
931 	/* There is an ordered list of substitutes that we have to try. */
932 	read_lock(&net->sysnames_lock);
933 	subs = net->sysnames;
934 	refcount_inc(&subs->usage);
935 	read_unlock(&net->sysnames_lock);
936 
937 	for (i = 0; i < subs->nr; i++) {
938 		name = subs->subs[i];
939 		len = dentry->d_name.len - 4 + strlen(name);
940 		if (len >= AFSNAMEMAX) {
941 			ret = ERR_PTR(-ENAMETOOLONG);
942 			goto out_s;
943 		}
944 
945 		strcpy(p, name);
946 		ret = lookup_one_len(buf, dentry->d_parent, len);
947 		if (IS_ERR(ret) || d_is_positive(ret))
948 			goto out_s;
949 		dput(ret);
950 	}
951 
952 	/* We don't want to d_add() the @sys dentry here as we don't want to
953 	 * the cached dentry to hide changes to the sysnames list.
954 	 */
955 	ret = NULL;
956 out_s:
957 	afs_put_sysnames(subs);
958 	kfree(buf);
959 out_p:
960 	return ret;
961 }
962 
963 /*
964  * look up an entry in a directory
965  */
afs_lookup(struct inode * dir,struct dentry * dentry,unsigned int flags)966 static struct dentry *afs_lookup(struct inode *dir, struct dentry *dentry,
967 				 unsigned int flags)
968 {
969 	struct afs_vnode *dvnode = AFS_FS_I(dir);
970 	struct afs_fid fid = {};
971 	struct inode *inode;
972 	struct dentry *d;
973 	int ret;
974 
975 	_enter("{%llx:%llu},%p{%pd},",
976 	       dvnode->fid.vid, dvnode->fid.vnode, dentry, dentry);
977 
978 	ASSERTCMP(d_inode(dentry), ==, NULL);
979 
980 	if (dentry->d_name.len >= AFSNAMEMAX) {
981 		_leave(" = -ENAMETOOLONG");
982 		return ERR_PTR(-ENAMETOOLONG);
983 	}
984 
985 	if (test_bit(AFS_VNODE_DELETED, &dvnode->flags)) {
986 		_leave(" = -ESTALE");
987 		return ERR_PTR(-ESTALE);
988 	}
989 
990 	ret = afs_validate(dvnode, NULL);
991 	if (ret < 0) {
992 		afs_dir_unuse_cookie(dvnode, ret);
993 		_leave(" = %d [val]", ret);
994 		return ERR_PTR(ret);
995 	}
996 
997 	if (dentry->d_name.len >= 4 &&
998 	    dentry->d_name.name[dentry->d_name.len - 4] == '@' &&
999 	    dentry->d_name.name[dentry->d_name.len - 3] == 's' &&
1000 	    dentry->d_name.name[dentry->d_name.len - 2] == 'y' &&
1001 	    dentry->d_name.name[dentry->d_name.len - 1] == 's')
1002 		return afs_lookup_atsys(dir, dentry);
1003 
1004 	afs_stat_v(dvnode, n_lookup);
1005 	inode = afs_do_lookup(dir, dentry);
1006 	if (inode == ERR_PTR(-ENOENT))
1007 		inode = afs_try_auto_mntpt(dentry, dir);
1008 
1009 	if (!IS_ERR_OR_NULL(inode))
1010 		fid = AFS_FS_I(inode)->fid;
1011 
1012 	_debug("splice %p", dentry->d_inode);
1013 	d = d_splice_alias(inode, dentry);
1014 	if (!IS_ERR_OR_NULL(d)) {
1015 		d->d_fsdata = dentry->d_fsdata;
1016 		trace_afs_lookup(dvnode, &d->d_name, &fid);
1017 	} else {
1018 		trace_afs_lookup(dvnode, &dentry->d_name, &fid);
1019 	}
1020 	_leave("");
1021 	return d;
1022 }
1023 
1024 /*
1025  * Check the validity of a dentry under RCU conditions.
1026  */
afs_d_revalidate_rcu(struct afs_vnode * dvnode,struct dentry * dentry)1027 static int afs_d_revalidate_rcu(struct afs_vnode *dvnode, struct dentry *dentry)
1028 {
1029 	long dir_version, de_version;
1030 
1031 	_enter("%p", dentry);
1032 
1033 	if (test_bit(AFS_VNODE_DELETED, &dvnode->flags))
1034 		return -ECHILD;
1035 
1036 	if (!afs_check_validity(dvnode))
1037 		return -ECHILD;
1038 
1039 	/* We only need to invalidate a dentry if the server's copy changed
1040 	 * behind our back.  If we made the change, it's no problem.  Note that
1041 	 * on a 32-bit system, we only have 32 bits in the dentry to store the
1042 	 * version.
1043 	 */
1044 	dir_version = (long)READ_ONCE(dvnode->status.data_version);
1045 	de_version = (long)READ_ONCE(dentry->d_fsdata);
1046 	if (de_version != dir_version) {
1047 		dir_version = (long)READ_ONCE(dvnode->invalid_before);
1048 		if (de_version - dir_version < 0)
1049 			return -ECHILD;
1050 	}
1051 
1052 	return 1; /* Still valid */
1053 }
1054 
1055 /*
1056  * check that a dentry lookup hit has found a valid entry
1057  * - NOTE! the hit can be a negative hit too, so we can't assume we have an
1058  *   inode
1059  */
afs_d_revalidate(struct inode * parent_dir,const struct qstr * name,struct dentry * dentry,unsigned int flags)1060 static int afs_d_revalidate(struct inode *parent_dir, const struct qstr *name,
1061 			    struct dentry *dentry, unsigned int flags)
1062 {
1063 	struct afs_vnode *vnode, *dir = AFS_FS_I(parent_dir);
1064 	struct afs_fid fid;
1065 	struct inode *inode;
1066 	struct key *key;
1067 	afs_dataversion_t dir_version, invalid_before;
1068 	long de_version;
1069 	int ret;
1070 
1071 	if (flags & LOOKUP_RCU)
1072 		return afs_d_revalidate_rcu(dir, dentry);
1073 
1074 	if (d_really_is_positive(dentry)) {
1075 		vnode = AFS_FS_I(d_inode(dentry));
1076 		_enter("{v={%llx:%llu} n=%pd fl=%lx},",
1077 		       vnode->fid.vid, vnode->fid.vnode, dentry,
1078 		       vnode->flags);
1079 	} else {
1080 		_enter("{neg n=%pd}", dentry);
1081 	}
1082 
1083 	key = afs_request_key(AFS_FS_S(dentry->d_sb)->volume->cell);
1084 	if (IS_ERR(key))
1085 		key = NULL;
1086 
1087 	/* validate the parent directory */
1088 	ret = afs_validate(dir, key);
1089 	if (ret == -ERESTARTSYS) {
1090 		key_put(key);
1091 		return ret;
1092 	}
1093 
1094 	if (test_bit(AFS_VNODE_DELETED, &dir->flags)) {
1095 		_debug("%pd: parent dir deleted", dentry);
1096 		goto not_found;
1097 	}
1098 
1099 	/* We only need to invalidate a dentry if the server's copy changed
1100 	 * behind our back.  If we made the change, it's no problem.  Note that
1101 	 * on a 32-bit system, we only have 32 bits in the dentry to store the
1102 	 * version.
1103 	 */
1104 	dir_version = dir->status.data_version;
1105 	de_version = (long)dentry->d_fsdata;
1106 	if (de_version == (long)dir_version)
1107 		goto out_valid_noupdate;
1108 
1109 	invalid_before = dir->invalid_before;
1110 	if (de_version - (long)invalid_before >= 0)
1111 		goto out_valid;
1112 
1113 	_debug("dir modified");
1114 	afs_stat_v(dir, n_reval);
1115 
1116 	/* search the directory for this vnode */
1117 	ret = afs_do_lookup_one(&dir->netfs.inode, name, &fid, &dir_version);
1118 	switch (ret) {
1119 	case 0:
1120 		/* the filename maps to something */
1121 		if (d_really_is_negative(dentry))
1122 			goto not_found;
1123 		inode = d_inode(dentry);
1124 		if (is_bad_inode(inode)) {
1125 			printk("kAFS: afs_d_revalidate: %pd2 has bad inode\n",
1126 			       dentry);
1127 			goto not_found;
1128 		}
1129 
1130 		vnode = AFS_FS_I(inode);
1131 
1132 		/* if the vnode ID has changed, then the dirent points to a
1133 		 * different file */
1134 		if (fid.vnode != vnode->fid.vnode) {
1135 			_debug("%pd: dirent changed [%llu != %llu]",
1136 			       dentry, fid.vnode,
1137 			       vnode->fid.vnode);
1138 			goto not_found;
1139 		}
1140 
1141 		/* if the vnode ID uniqifier has changed, then the file has
1142 		 * been deleted and replaced, and the original vnode ID has
1143 		 * been reused */
1144 		if (fid.unique != vnode->fid.unique) {
1145 			_debug("%pd: file deleted (uq %u -> %u I:%u)",
1146 			       dentry, fid.unique,
1147 			       vnode->fid.unique,
1148 			       vnode->netfs.inode.i_generation);
1149 			goto not_found;
1150 		}
1151 		goto out_valid;
1152 
1153 	case -ENOENT:
1154 		/* the filename is unknown */
1155 		_debug("%pd: dirent not found", dentry);
1156 		if (d_really_is_positive(dentry))
1157 			goto not_found;
1158 		goto out_valid;
1159 
1160 	default:
1161 		_debug("failed to iterate parent %pd2: %d", dentry, ret);
1162 		goto not_found;
1163 	}
1164 
1165 out_valid:
1166 	dentry->d_fsdata = (void *)(unsigned long)dir_version;
1167 out_valid_noupdate:
1168 	key_put(key);
1169 	_leave(" = 1 [valid]");
1170 	return 1;
1171 
1172 not_found:
1173 	_debug("dropping dentry %pd2", dentry);
1174 	key_put(key);
1175 
1176 	_leave(" = 0 [bad]");
1177 	return 0;
1178 }
1179 
1180 /*
1181  * allow the VFS to enquire as to whether a dentry should be unhashed (mustn't
1182  * sleep)
1183  * - called from dput() when d_count is going to 0.
1184  * - return 1 to request dentry be unhashed, 0 otherwise
1185  */
afs_d_delete(const struct dentry * dentry)1186 static int afs_d_delete(const struct dentry *dentry)
1187 {
1188 	_enter("%pd", dentry);
1189 
1190 	if (dentry->d_flags & DCACHE_NFSFS_RENAMED)
1191 		goto zap;
1192 
1193 	if (d_really_is_positive(dentry) &&
1194 	    (test_bit(AFS_VNODE_DELETED,   &AFS_FS_I(d_inode(dentry))->flags) ||
1195 	     test_bit(AFS_VNODE_PSEUDODIR, &AFS_FS_I(d_inode(dentry))->flags)))
1196 		goto zap;
1197 
1198 	_leave(" = 0 [keep]");
1199 	return 0;
1200 
1201 zap:
1202 	_leave(" = 1 [zap]");
1203 	return 1;
1204 }
1205 
1206 /*
1207  * Clean up sillyrename files on dentry removal.
1208  */
afs_d_iput(struct dentry * dentry,struct inode * inode)1209 static void afs_d_iput(struct dentry *dentry, struct inode *inode)
1210 {
1211 	if (dentry->d_flags & DCACHE_NFSFS_RENAMED)
1212 		afs_silly_iput(dentry, inode);
1213 	iput(inode);
1214 }
1215 
1216 /*
1217  * handle dentry release
1218  */
afs_d_release(struct dentry * dentry)1219 void afs_d_release(struct dentry *dentry)
1220 {
1221 	_enter("%pd", dentry);
1222 }
1223 
afs_check_for_remote_deletion(struct afs_operation * op)1224 void afs_check_for_remote_deletion(struct afs_operation *op)
1225 {
1226 	struct afs_vnode *vnode = op->file[0].vnode;
1227 
1228 	switch (afs_op_abort_code(op)) {
1229 	case VNOVNODE:
1230 		set_bit(AFS_VNODE_DELETED, &vnode->flags);
1231 		clear_nlink(&vnode->netfs.inode);
1232 		afs_break_callback(vnode, afs_cb_break_for_deleted);
1233 	}
1234 }
1235 
1236 /*
1237  * Create a new inode for create/mkdir/symlink
1238  */
afs_vnode_new_inode(struct afs_operation * op)1239 static void afs_vnode_new_inode(struct afs_operation *op)
1240 {
1241 	struct afs_vnode_param *dvp = &op->file[0];
1242 	struct afs_vnode_param *vp = &op->file[1];
1243 	struct afs_vnode *vnode;
1244 	struct inode *inode;
1245 
1246 	_enter("");
1247 
1248 	ASSERTCMP(afs_op_error(op), ==, 0);
1249 
1250 	inode = afs_iget(op, vp);
1251 	if (IS_ERR(inode)) {
1252 		/* ENOMEM or EINTR at a really inconvenient time - just abandon
1253 		 * the new directory on the server.
1254 		 */
1255 		afs_op_accumulate_error(op, PTR_ERR(inode), 0);
1256 		return;
1257 	}
1258 
1259 	vnode = AFS_FS_I(inode);
1260 	set_bit(AFS_VNODE_NEW_CONTENT, &vnode->flags);
1261 	if (S_ISDIR(inode->i_mode))
1262 		afs_mkdir_init_dir(vnode, dvp->vnode);
1263 	else if (S_ISLNK(inode->i_mode))
1264 		afs_init_new_symlink(vnode, op);
1265 	if (!afs_op_error(op))
1266 		afs_cache_permit(vnode, op->key, vnode->cb_break, &vp->scb);
1267 	d_instantiate(op->dentry, inode);
1268 }
1269 
afs_create_success(struct afs_operation * op)1270 static void afs_create_success(struct afs_operation *op)
1271 {
1272 	_enter("op=%08x", op->debug_id);
1273 	op->ctime = op->file[0].scb.status.mtime_client;
1274 	afs_vnode_commit_status(op, &op->file[0]);
1275 	afs_update_dentry_version(op, &op->file[0], op->dentry);
1276 	afs_vnode_new_inode(op);
1277 }
1278 
afs_create_edit_dir(struct afs_operation * op)1279 static void afs_create_edit_dir(struct afs_operation *op)
1280 {
1281 	struct netfs_cache_resources cres = {};
1282 	struct afs_vnode_param *dvp = &op->file[0];
1283 	struct afs_vnode_param *vp = &op->file[1];
1284 	struct afs_vnode *dvnode = dvp->vnode;
1285 
1286 	_enter("op=%08x", op->debug_id);
1287 
1288 	fscache_begin_write_operation(&cres, afs_vnode_cache(dvnode));
1289 	down_write(&dvnode->validate_lock);
1290 	if (test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags) &&
1291 	    dvnode->status.data_version == dvp->dv_before + dvp->dv_delta)
1292 		afs_edit_dir_add(dvnode, &op->dentry->d_name, &vp->fid,
1293 				 op->create.reason);
1294 	up_write(&dvnode->validate_lock);
1295 	fscache_end_operation(&cres);
1296 }
1297 
afs_create_put(struct afs_operation * op)1298 static void afs_create_put(struct afs_operation *op)
1299 {
1300 	_enter("op=%08x", op->debug_id);
1301 
1302 	if (afs_op_error(op))
1303 		d_drop(op->dentry);
1304 }
1305 
1306 static const struct afs_operation_ops afs_mkdir_operation = {
1307 	.issue_afs_rpc	= afs_fs_make_dir,
1308 	.issue_yfs_rpc	= yfs_fs_make_dir,
1309 	.success	= afs_create_success,
1310 	.aborted	= afs_check_for_remote_deletion,
1311 	.edit_dir	= afs_create_edit_dir,
1312 	.put		= afs_create_put,
1313 };
1314 
1315 /*
1316  * create a directory on an AFS filesystem
1317  */
afs_mkdir(struct mnt_idmap * idmap,struct inode * dir,struct dentry * dentry,umode_t mode)1318 static int afs_mkdir(struct mnt_idmap *idmap, struct inode *dir,
1319 		     struct dentry *dentry, umode_t mode)
1320 {
1321 	struct afs_operation *op;
1322 	struct afs_vnode *dvnode = AFS_FS_I(dir);
1323 	int ret;
1324 
1325 	_enter("{%llx:%llu},{%pd},%ho",
1326 	       dvnode->fid.vid, dvnode->fid.vnode, dentry, mode);
1327 
1328 	op = afs_alloc_operation(NULL, dvnode->volume);
1329 	if (IS_ERR(op)) {
1330 		d_drop(dentry);
1331 		return PTR_ERR(op);
1332 	}
1333 
1334 	fscache_use_cookie(afs_vnode_cache(dvnode), true);
1335 
1336 	afs_op_set_vnode(op, 0, dvnode);
1337 	op->file[0].dv_delta = 1;
1338 	op->file[0].modification = true;
1339 	op->file[0].update_ctime = true;
1340 	op->dentry	= dentry;
1341 	op->create.mode	= S_IFDIR | mode;
1342 	op->create.reason = afs_edit_dir_for_mkdir;
1343 	op->mtime	= current_time(dir);
1344 	op->ops		= &afs_mkdir_operation;
1345 	ret = afs_do_sync_operation(op);
1346 	afs_dir_unuse_cookie(dvnode, ret);
1347 	return ret;
1348 }
1349 
1350 /*
1351  * Remove a subdir from a directory.
1352  */
afs_dir_remove_subdir(struct dentry * dentry)1353 static void afs_dir_remove_subdir(struct dentry *dentry)
1354 {
1355 	if (d_really_is_positive(dentry)) {
1356 		struct afs_vnode *vnode = AFS_FS_I(d_inode(dentry));
1357 
1358 		clear_nlink(&vnode->netfs.inode);
1359 		set_bit(AFS_VNODE_DELETED, &vnode->flags);
1360 		afs_clear_cb_promise(vnode, afs_cb_promise_clear_rmdir);
1361 		afs_invalidate_dir(vnode, afs_dir_invalid_subdir_removed);
1362 	}
1363 }
1364 
afs_rmdir_success(struct afs_operation * op)1365 static void afs_rmdir_success(struct afs_operation *op)
1366 {
1367 	_enter("op=%08x", op->debug_id);
1368 	op->ctime = op->file[0].scb.status.mtime_client;
1369 	afs_vnode_commit_status(op, &op->file[0]);
1370 	afs_update_dentry_version(op, &op->file[0], op->dentry);
1371 }
1372 
afs_rmdir_edit_dir(struct afs_operation * op)1373 static void afs_rmdir_edit_dir(struct afs_operation *op)
1374 {
1375 	struct netfs_cache_resources cres = {};
1376 	struct afs_vnode_param *dvp = &op->file[0];
1377 	struct afs_vnode *dvnode = dvp->vnode;
1378 
1379 	_enter("op=%08x", op->debug_id);
1380 	afs_dir_remove_subdir(op->dentry);
1381 
1382 	fscache_begin_write_operation(&cres, afs_vnode_cache(dvnode));
1383 	down_write(&dvnode->validate_lock);
1384 	if (test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags) &&
1385 	    dvnode->status.data_version == dvp->dv_before + dvp->dv_delta)
1386 		afs_edit_dir_remove(dvnode, &op->dentry->d_name,
1387 				    afs_edit_dir_for_rmdir);
1388 	up_write(&dvnode->validate_lock);
1389 	fscache_end_operation(&cres);
1390 }
1391 
afs_rmdir_put(struct afs_operation * op)1392 static void afs_rmdir_put(struct afs_operation *op)
1393 {
1394 	_enter("op=%08x", op->debug_id);
1395 	if (op->file[1].vnode)
1396 		up_write(&op->file[1].vnode->rmdir_lock);
1397 }
1398 
1399 static const struct afs_operation_ops afs_rmdir_operation = {
1400 	.issue_afs_rpc	= afs_fs_remove_dir,
1401 	.issue_yfs_rpc	= yfs_fs_remove_dir,
1402 	.success	= afs_rmdir_success,
1403 	.aborted	= afs_check_for_remote_deletion,
1404 	.edit_dir	= afs_rmdir_edit_dir,
1405 	.put		= afs_rmdir_put,
1406 };
1407 
1408 /*
1409  * remove a directory from an AFS filesystem
1410  */
afs_rmdir(struct inode * dir,struct dentry * dentry)1411 static int afs_rmdir(struct inode *dir, struct dentry *dentry)
1412 {
1413 	struct afs_operation *op;
1414 	struct afs_vnode *dvnode = AFS_FS_I(dir), *vnode = NULL;
1415 	int ret;
1416 
1417 	_enter("{%llx:%llu},{%pd}",
1418 	       dvnode->fid.vid, dvnode->fid.vnode, dentry);
1419 
1420 	op = afs_alloc_operation(NULL, dvnode->volume);
1421 	if (IS_ERR(op))
1422 		return PTR_ERR(op);
1423 
1424 	fscache_use_cookie(afs_vnode_cache(dvnode), true);
1425 
1426 	afs_op_set_vnode(op, 0, dvnode);
1427 	op->file[0].dv_delta = 1;
1428 	op->file[0].modification = true;
1429 	op->file[0].update_ctime = true;
1430 
1431 	op->dentry	= dentry;
1432 	op->ops		= &afs_rmdir_operation;
1433 
1434 	/* Try to make sure we have a callback promise on the victim. */
1435 	if (d_really_is_positive(dentry)) {
1436 		vnode = AFS_FS_I(d_inode(dentry));
1437 		ret = afs_validate(vnode, op->key);
1438 		if (ret < 0)
1439 			goto error;
1440 	}
1441 
1442 	if (vnode) {
1443 		ret = down_write_killable(&vnode->rmdir_lock);
1444 		if (ret < 0)
1445 			goto error;
1446 		op->file[1].vnode = vnode;
1447 	}
1448 
1449 	ret = afs_do_sync_operation(op);
1450 
1451 	/* Not all systems that can host afs servers have ENOTEMPTY. */
1452 	if (ret == -EEXIST)
1453 		ret = -ENOTEMPTY;
1454 out:
1455 	afs_dir_unuse_cookie(dvnode, ret);
1456 	return ret;
1457 
1458 error:
1459 	ret = afs_put_operation(op);
1460 	goto out;
1461 }
1462 
1463 /*
1464  * Remove a link to a file or symlink from a directory.
1465  *
1466  * If the file was not deleted due to excess hard links, the fileserver will
1467  * break the callback promise on the file - if it had one - before it returns
1468  * to us, and if it was deleted, it won't
1469  *
1470  * However, if we didn't have a callback promise outstanding, or it was
1471  * outstanding on a different server, then it won't break it either...
1472  */
afs_dir_remove_link(struct afs_operation * op)1473 static void afs_dir_remove_link(struct afs_operation *op)
1474 {
1475 	struct afs_vnode *dvnode = op->file[0].vnode;
1476 	struct afs_vnode *vnode = op->file[1].vnode;
1477 	struct dentry *dentry = op->dentry;
1478 	int ret;
1479 
1480 	if (afs_op_error(op) ||
1481 	    (op->file[1].scb.have_status && op->file[1].scb.have_error))
1482 		return;
1483 	if (d_really_is_positive(dentry))
1484 		return;
1485 
1486 	if (test_bit(AFS_VNODE_DELETED, &vnode->flags)) {
1487 		/* Already done */
1488 	} else if (test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags)) {
1489 		write_seqlock(&vnode->cb_lock);
1490 		drop_nlink(&vnode->netfs.inode);
1491 		if (vnode->netfs.inode.i_nlink == 0) {
1492 			set_bit(AFS_VNODE_DELETED, &vnode->flags);
1493 			__afs_break_callback(vnode, afs_cb_break_for_unlink);
1494 		}
1495 		write_sequnlock(&vnode->cb_lock);
1496 	} else {
1497 		afs_break_callback(vnode, afs_cb_break_for_unlink);
1498 
1499 		if (test_bit(AFS_VNODE_DELETED, &vnode->flags))
1500 			_debug("AFS_VNODE_DELETED");
1501 
1502 		ret = afs_validate(vnode, op->key);
1503 		if (ret != -ESTALE)
1504 			afs_op_set_error(op, ret);
1505 	}
1506 
1507 	_debug("nlink %d [val %d]", vnode->netfs.inode.i_nlink, afs_op_error(op));
1508 }
1509 
afs_unlink_success(struct afs_operation * op)1510 static void afs_unlink_success(struct afs_operation *op)
1511 {
1512 	_enter("op=%08x", op->debug_id);
1513 	op->ctime = op->file[0].scb.status.mtime_client;
1514 	afs_check_dir_conflict(op, &op->file[0]);
1515 	afs_vnode_commit_status(op, &op->file[0]);
1516 	afs_vnode_commit_status(op, &op->file[1]);
1517 	afs_update_dentry_version(op, &op->file[0], op->dentry);
1518 	afs_dir_remove_link(op);
1519 }
1520 
afs_unlink_edit_dir(struct afs_operation * op)1521 static void afs_unlink_edit_dir(struct afs_operation *op)
1522 {
1523 	struct netfs_cache_resources cres = {};
1524 	struct afs_vnode_param *dvp = &op->file[0];
1525 	struct afs_vnode *dvnode = dvp->vnode;
1526 
1527 	_enter("op=%08x", op->debug_id);
1528 	fscache_begin_write_operation(&cres, afs_vnode_cache(dvnode));
1529 	down_write(&dvnode->validate_lock);
1530 	if (test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags) &&
1531 	    dvnode->status.data_version == dvp->dv_before + dvp->dv_delta)
1532 		afs_edit_dir_remove(dvnode, &op->dentry->d_name,
1533 				    afs_edit_dir_for_unlink);
1534 	up_write(&dvnode->validate_lock);
1535 	fscache_end_operation(&cres);
1536 }
1537 
afs_unlink_put(struct afs_operation * op)1538 static void afs_unlink_put(struct afs_operation *op)
1539 {
1540 	_enter("op=%08x", op->debug_id);
1541 	if (op->unlink.need_rehash && afs_op_error(op) < 0 && afs_op_error(op) != -ENOENT)
1542 		d_rehash(op->dentry);
1543 }
1544 
1545 static const struct afs_operation_ops afs_unlink_operation = {
1546 	.issue_afs_rpc	= afs_fs_remove_file,
1547 	.issue_yfs_rpc	= yfs_fs_remove_file,
1548 	.success	= afs_unlink_success,
1549 	.aborted	= afs_check_for_remote_deletion,
1550 	.edit_dir	= afs_unlink_edit_dir,
1551 	.put		= afs_unlink_put,
1552 };
1553 
1554 /*
1555  * Remove a file or symlink from an AFS filesystem.
1556  */
afs_unlink(struct inode * dir,struct dentry * dentry)1557 static int afs_unlink(struct inode *dir, struct dentry *dentry)
1558 {
1559 	struct afs_operation *op;
1560 	struct afs_vnode *dvnode = AFS_FS_I(dir);
1561 	struct afs_vnode *vnode = AFS_FS_I(d_inode(dentry));
1562 	int ret;
1563 
1564 	_enter("{%llx:%llu},{%pd}",
1565 	       dvnode->fid.vid, dvnode->fid.vnode, dentry);
1566 
1567 	if (dentry->d_name.len >= AFSNAMEMAX)
1568 		return -ENAMETOOLONG;
1569 
1570 	op = afs_alloc_operation(NULL, dvnode->volume);
1571 	if (IS_ERR(op))
1572 		return PTR_ERR(op);
1573 
1574 	fscache_use_cookie(afs_vnode_cache(dvnode), true);
1575 
1576 	afs_op_set_vnode(op, 0, dvnode);
1577 	op->file[0].dv_delta = 1;
1578 	op->file[0].modification = true;
1579 	op->file[0].update_ctime = true;
1580 
1581 	/* Try to make sure we have a callback promise on the victim. */
1582 	ret = afs_validate(vnode, op->key);
1583 	if (ret < 0) {
1584 		afs_op_set_error(op, ret);
1585 		goto error;
1586 	}
1587 
1588 	spin_lock(&dentry->d_lock);
1589 	if (d_count(dentry) > 1) {
1590 		spin_unlock(&dentry->d_lock);
1591 		/* Start asynchronous writeout of the inode */
1592 		write_inode_now(d_inode(dentry), 0);
1593 		afs_op_set_error(op, afs_sillyrename(dvnode, vnode, dentry, op->key));
1594 		goto error;
1595 	}
1596 	if (!d_unhashed(dentry)) {
1597 		/* Prevent a race with RCU lookup. */
1598 		__d_drop(dentry);
1599 		op->unlink.need_rehash = true;
1600 	}
1601 	spin_unlock(&dentry->d_lock);
1602 
1603 	op->file[1].vnode = vnode;
1604 	op->file[1].update_ctime = true;
1605 	op->file[1].op_unlinked = true;
1606 	op->dentry	= dentry;
1607 	op->ops		= &afs_unlink_operation;
1608 	afs_begin_vnode_operation(op);
1609 	afs_wait_for_operation(op);
1610 
1611 	/* If there was a conflict with a third party, check the status of the
1612 	 * unlinked vnode.
1613 	 */
1614 	if (afs_op_error(op) == 0 && (op->flags & AFS_OPERATION_DIR_CONFLICT)) {
1615 		op->file[1].update_ctime = false;
1616 		op->fetch_status.which = 1;
1617 		op->ops = &afs_fetch_status_operation;
1618 		afs_begin_vnode_operation(op);
1619 		afs_wait_for_operation(op);
1620 	}
1621 
1622 error:
1623 	ret = afs_put_operation(op);
1624 	afs_dir_unuse_cookie(dvnode, ret);
1625 	return ret;
1626 }
1627 
1628 static const struct afs_operation_ops afs_create_operation = {
1629 	.issue_afs_rpc	= afs_fs_create_file,
1630 	.issue_yfs_rpc	= yfs_fs_create_file,
1631 	.success	= afs_create_success,
1632 	.aborted	= afs_check_for_remote_deletion,
1633 	.edit_dir	= afs_create_edit_dir,
1634 	.put		= afs_create_put,
1635 };
1636 
1637 /*
1638  * create a regular file on an AFS filesystem
1639  */
afs_create(struct mnt_idmap * idmap,struct inode * dir,struct dentry * dentry,umode_t mode,bool excl)1640 static int afs_create(struct mnt_idmap *idmap, struct inode *dir,
1641 		      struct dentry *dentry, umode_t mode, bool excl)
1642 {
1643 	struct afs_operation *op;
1644 	struct afs_vnode *dvnode = AFS_FS_I(dir);
1645 	int ret = -ENAMETOOLONG;
1646 
1647 	_enter("{%llx:%llu},{%pd},%ho",
1648 	       dvnode->fid.vid, dvnode->fid.vnode, dentry, mode);
1649 
1650 	if (dentry->d_name.len >= AFSNAMEMAX)
1651 		goto error;
1652 
1653 	op = afs_alloc_operation(NULL, dvnode->volume);
1654 	if (IS_ERR(op)) {
1655 		ret = PTR_ERR(op);
1656 		goto error;
1657 	}
1658 
1659 	fscache_use_cookie(afs_vnode_cache(dvnode), true);
1660 
1661 	afs_op_set_vnode(op, 0, dvnode);
1662 	op->file[0].dv_delta = 1;
1663 	op->file[0].modification = true;
1664 	op->file[0].update_ctime = true;
1665 
1666 	op->dentry	= dentry;
1667 	op->create.mode	= S_IFREG | mode;
1668 	op->create.reason = afs_edit_dir_for_create;
1669 	op->mtime	= current_time(dir);
1670 	op->ops		= &afs_create_operation;
1671 	ret = afs_do_sync_operation(op);
1672 	afs_dir_unuse_cookie(dvnode, ret);
1673 	return ret;
1674 
1675 error:
1676 	d_drop(dentry);
1677 	_leave(" = %d", ret);
1678 	return ret;
1679 }
1680 
afs_link_success(struct afs_operation * op)1681 static void afs_link_success(struct afs_operation *op)
1682 {
1683 	struct afs_vnode_param *dvp = &op->file[0];
1684 	struct afs_vnode_param *vp = &op->file[1];
1685 
1686 	_enter("op=%08x", op->debug_id);
1687 	op->ctime = dvp->scb.status.mtime_client;
1688 	afs_vnode_commit_status(op, dvp);
1689 	afs_vnode_commit_status(op, vp);
1690 	afs_update_dentry_version(op, dvp, op->dentry);
1691 	if (op->dentry_2->d_parent == op->dentry->d_parent)
1692 		afs_update_dentry_version(op, dvp, op->dentry_2);
1693 	ihold(&vp->vnode->netfs.inode);
1694 	d_instantiate(op->dentry, &vp->vnode->netfs.inode);
1695 }
1696 
afs_link_put(struct afs_operation * op)1697 static void afs_link_put(struct afs_operation *op)
1698 {
1699 	_enter("op=%08x", op->debug_id);
1700 	if (afs_op_error(op))
1701 		d_drop(op->dentry);
1702 }
1703 
1704 static const struct afs_operation_ops afs_link_operation = {
1705 	.issue_afs_rpc	= afs_fs_link,
1706 	.issue_yfs_rpc	= yfs_fs_link,
1707 	.success	= afs_link_success,
1708 	.aborted	= afs_check_for_remote_deletion,
1709 	.edit_dir	= afs_create_edit_dir,
1710 	.put		= afs_link_put,
1711 };
1712 
1713 /*
1714  * create a hard link between files in an AFS filesystem
1715  */
afs_link(struct dentry * from,struct inode * dir,struct dentry * dentry)1716 static int afs_link(struct dentry *from, struct inode *dir,
1717 		    struct dentry *dentry)
1718 {
1719 	struct afs_operation *op;
1720 	struct afs_vnode *dvnode = AFS_FS_I(dir);
1721 	struct afs_vnode *vnode = AFS_FS_I(d_inode(from));
1722 	int ret = -ENAMETOOLONG;
1723 
1724 	_enter("{%llx:%llu},{%llx:%llu},{%pd}",
1725 	       vnode->fid.vid, vnode->fid.vnode,
1726 	       dvnode->fid.vid, dvnode->fid.vnode,
1727 	       dentry);
1728 
1729 	if (dentry->d_name.len >= AFSNAMEMAX)
1730 		goto error;
1731 
1732 	op = afs_alloc_operation(NULL, dvnode->volume);
1733 	if (IS_ERR(op)) {
1734 		ret = PTR_ERR(op);
1735 		goto error;
1736 	}
1737 
1738 	fscache_use_cookie(afs_vnode_cache(dvnode), true);
1739 
1740 	ret = afs_validate(vnode, op->key);
1741 	if (ret < 0)
1742 		goto error_op;
1743 
1744 	afs_op_set_vnode(op, 0, dvnode);
1745 	afs_op_set_vnode(op, 1, vnode);
1746 	op->file[0].dv_delta = 1;
1747 	op->file[0].modification = true;
1748 	op->file[0].update_ctime = true;
1749 	op->file[1].update_ctime = true;
1750 
1751 	op->dentry		= dentry;
1752 	op->dentry_2		= from;
1753 	op->ops			= &afs_link_operation;
1754 	op->create.reason	= afs_edit_dir_for_link;
1755 	ret = afs_do_sync_operation(op);
1756 	afs_dir_unuse_cookie(dvnode, ret);
1757 	return ret;
1758 
1759 error_op:
1760 	afs_put_operation(op);
1761 	afs_dir_unuse_cookie(dvnode, ret);
1762 error:
1763 	d_drop(dentry);
1764 	_leave(" = %d", ret);
1765 	return ret;
1766 }
1767 
1768 static const struct afs_operation_ops afs_symlink_operation = {
1769 	.issue_afs_rpc	= afs_fs_symlink,
1770 	.issue_yfs_rpc	= yfs_fs_symlink,
1771 	.success	= afs_create_success,
1772 	.aborted	= afs_check_for_remote_deletion,
1773 	.edit_dir	= afs_create_edit_dir,
1774 	.put		= afs_create_put,
1775 };
1776 
1777 /*
1778  * create a symlink in an AFS filesystem
1779  */
afs_symlink(struct mnt_idmap * idmap,struct inode * dir,struct dentry * dentry,const char * content)1780 static int afs_symlink(struct mnt_idmap *idmap, struct inode *dir,
1781 		       struct dentry *dentry, const char *content)
1782 {
1783 	struct afs_operation *op;
1784 	struct afs_vnode *dvnode = AFS_FS_I(dir);
1785 	int ret;
1786 
1787 	_enter("{%llx:%llu},{%pd},%s",
1788 	       dvnode->fid.vid, dvnode->fid.vnode, dentry,
1789 	       content);
1790 
1791 	ret = -ENAMETOOLONG;
1792 	if (dentry->d_name.len >= AFSNAMEMAX)
1793 		goto error;
1794 
1795 	ret = -EINVAL;
1796 	if (strlen(content) >= AFSPATHMAX)
1797 		goto error;
1798 
1799 	op = afs_alloc_operation(NULL, dvnode->volume);
1800 	if (IS_ERR(op)) {
1801 		ret = PTR_ERR(op);
1802 		goto error;
1803 	}
1804 
1805 	fscache_use_cookie(afs_vnode_cache(dvnode), true);
1806 
1807 	afs_op_set_vnode(op, 0, dvnode);
1808 	op->file[0].dv_delta = 1;
1809 
1810 	op->dentry		= dentry;
1811 	op->ops			= &afs_symlink_operation;
1812 	op->create.reason	= afs_edit_dir_for_symlink;
1813 	op->create.symlink	= content;
1814 	op->mtime		= current_time(dir);
1815 	ret = afs_do_sync_operation(op);
1816 	afs_dir_unuse_cookie(dvnode, ret);
1817 	return ret;
1818 
1819 error:
1820 	d_drop(dentry);
1821 	_leave(" = %d", ret);
1822 	return ret;
1823 }
1824 
afs_rename_success(struct afs_operation * op)1825 static void afs_rename_success(struct afs_operation *op)
1826 {
1827 	struct afs_vnode *vnode = AFS_FS_I(d_inode(op->dentry));
1828 
1829 	_enter("op=%08x", op->debug_id);
1830 
1831 	op->ctime = op->file[0].scb.status.mtime_client;
1832 	afs_check_dir_conflict(op, &op->file[1]);
1833 	afs_vnode_commit_status(op, &op->file[0]);
1834 	if (op->file[1].vnode != op->file[0].vnode) {
1835 		op->ctime = op->file[1].scb.status.mtime_client;
1836 		afs_vnode_commit_status(op, &op->file[1]);
1837 	}
1838 
1839 	/* If we're moving a subdir between dirs, we need to update
1840 	 * its DV counter too as the ".." will be altered.
1841 	 */
1842 	if (S_ISDIR(vnode->netfs.inode.i_mode) &&
1843 	    op->file[0].vnode != op->file[1].vnode) {
1844 		u64 new_dv;
1845 
1846 		write_seqlock(&vnode->cb_lock);
1847 
1848 		new_dv = vnode->status.data_version + 1;
1849 		trace_afs_set_dv(vnode, new_dv);
1850 		vnode->status.data_version = new_dv;
1851 		inode_set_iversion_raw(&vnode->netfs.inode, new_dv);
1852 
1853 		write_sequnlock(&vnode->cb_lock);
1854 	}
1855 }
1856 
afs_rename_edit_dir(struct afs_operation * op)1857 static void afs_rename_edit_dir(struct afs_operation *op)
1858 {
1859 	struct netfs_cache_resources orig_cres = {}, new_cres = {};
1860 	struct afs_vnode_param *orig_dvp = &op->file[0];
1861 	struct afs_vnode_param *new_dvp = &op->file[1];
1862 	struct afs_vnode *orig_dvnode = orig_dvp->vnode;
1863 	struct afs_vnode *new_dvnode = new_dvp->vnode;
1864 	struct afs_vnode *vnode = AFS_FS_I(d_inode(op->dentry));
1865 	struct dentry *old_dentry = op->dentry;
1866 	struct dentry *new_dentry = op->dentry_2;
1867 	struct inode *new_inode;
1868 
1869 	_enter("op=%08x", op->debug_id);
1870 
1871 	if (op->rename.rehash) {
1872 		d_rehash(op->rename.rehash);
1873 		op->rename.rehash = NULL;
1874 	}
1875 
1876 	fscache_begin_write_operation(&orig_cres, afs_vnode_cache(orig_dvnode));
1877 	if (new_dvnode != orig_dvnode)
1878 		fscache_begin_write_operation(&new_cres, afs_vnode_cache(new_dvnode));
1879 
1880 	down_write(&orig_dvnode->validate_lock);
1881 	if (test_bit(AFS_VNODE_DIR_VALID, &orig_dvnode->flags) &&
1882 	    orig_dvnode->status.data_version == orig_dvp->dv_before + orig_dvp->dv_delta)
1883 		afs_edit_dir_remove(orig_dvnode, &old_dentry->d_name,
1884 				    afs_edit_dir_for_rename_0);
1885 
1886 	if (new_dvnode != orig_dvnode) {
1887 		up_write(&orig_dvnode->validate_lock);
1888 		down_write(&new_dvnode->validate_lock);
1889 	}
1890 
1891 	if (test_bit(AFS_VNODE_DIR_VALID, &new_dvnode->flags) &&
1892 	    new_dvnode->status.data_version == new_dvp->dv_before + new_dvp->dv_delta) {
1893 		if (!op->rename.new_negative)
1894 			afs_edit_dir_remove(new_dvnode, &new_dentry->d_name,
1895 					    afs_edit_dir_for_rename_1);
1896 
1897 		afs_edit_dir_add(new_dvnode, &new_dentry->d_name,
1898 				 &vnode->fid, afs_edit_dir_for_rename_2);
1899 	}
1900 
1901 	if (S_ISDIR(vnode->netfs.inode.i_mode) &&
1902 	    new_dvnode != orig_dvnode &&
1903 	    test_bit(AFS_VNODE_DIR_VALID, &vnode->flags))
1904 		afs_edit_dir_update_dotdot(vnode, new_dvnode,
1905 					   afs_edit_dir_for_rename_sub);
1906 
1907 	new_inode = d_inode(new_dentry);
1908 	if (new_inode) {
1909 		spin_lock(&new_inode->i_lock);
1910 		if (S_ISDIR(new_inode->i_mode))
1911 			clear_nlink(new_inode);
1912 		else if (new_inode->i_nlink > 0)
1913 			drop_nlink(new_inode);
1914 		spin_unlock(&new_inode->i_lock);
1915 	}
1916 
1917 	/* Now we can update d_fsdata on the dentries to reflect their
1918 	 * new parent's data_version.
1919 	 *
1920 	 * Note that if we ever implement RENAME_EXCHANGE, we'll have
1921 	 * to update both dentries with opposing dir versions.
1922 	 */
1923 	afs_update_dentry_version(op, new_dvp, op->dentry);
1924 	afs_update_dentry_version(op, new_dvp, op->dentry_2);
1925 
1926 	d_move(old_dentry, new_dentry);
1927 
1928 	up_write(&new_dvnode->validate_lock);
1929 	fscache_end_operation(&orig_cres);
1930 	if (new_dvnode != orig_dvnode)
1931 		fscache_end_operation(&new_cres);
1932 }
1933 
afs_rename_put(struct afs_operation * op)1934 static void afs_rename_put(struct afs_operation *op)
1935 {
1936 	_enter("op=%08x", op->debug_id);
1937 	if (op->rename.rehash)
1938 		d_rehash(op->rename.rehash);
1939 	dput(op->rename.tmp);
1940 	if (afs_op_error(op))
1941 		d_rehash(op->dentry);
1942 }
1943 
1944 static const struct afs_operation_ops afs_rename_operation = {
1945 	.issue_afs_rpc	= afs_fs_rename,
1946 	.issue_yfs_rpc	= yfs_fs_rename,
1947 	.success	= afs_rename_success,
1948 	.edit_dir	= afs_rename_edit_dir,
1949 	.put		= afs_rename_put,
1950 };
1951 
1952 /*
1953  * rename a file in an AFS filesystem and/or move it between directories
1954  */
afs_rename(struct mnt_idmap * idmap,struct inode * old_dir,struct dentry * old_dentry,struct inode * new_dir,struct dentry * new_dentry,unsigned int flags)1955 static int afs_rename(struct mnt_idmap *idmap, struct inode *old_dir,
1956 		      struct dentry *old_dentry, struct inode *new_dir,
1957 		      struct dentry *new_dentry, unsigned int flags)
1958 {
1959 	struct afs_operation *op;
1960 	struct afs_vnode *orig_dvnode, *new_dvnode, *vnode;
1961 	int ret;
1962 
1963 	if (flags)
1964 		return -EINVAL;
1965 
1966 	/* Don't allow silly-rename files be moved around. */
1967 	if (old_dentry->d_flags & DCACHE_NFSFS_RENAMED)
1968 		return -EINVAL;
1969 
1970 	vnode = AFS_FS_I(d_inode(old_dentry));
1971 	orig_dvnode = AFS_FS_I(old_dir);
1972 	new_dvnode = AFS_FS_I(new_dir);
1973 
1974 	_enter("{%llx:%llu},{%llx:%llu},{%llx:%llu},{%pd}",
1975 	       orig_dvnode->fid.vid, orig_dvnode->fid.vnode,
1976 	       vnode->fid.vid, vnode->fid.vnode,
1977 	       new_dvnode->fid.vid, new_dvnode->fid.vnode,
1978 	       new_dentry);
1979 
1980 	op = afs_alloc_operation(NULL, orig_dvnode->volume);
1981 	if (IS_ERR(op))
1982 		return PTR_ERR(op);
1983 
1984 	fscache_use_cookie(afs_vnode_cache(orig_dvnode), true);
1985 	if (new_dvnode != orig_dvnode)
1986 		fscache_use_cookie(afs_vnode_cache(new_dvnode), true);
1987 
1988 	ret = afs_validate(vnode, op->key);
1989 	afs_op_set_error(op, ret);
1990 	if (ret < 0)
1991 		goto error;
1992 
1993 	afs_op_set_vnode(op, 0, orig_dvnode);
1994 	afs_op_set_vnode(op, 1, new_dvnode); /* May be same as orig_dvnode */
1995 	op->file[0].dv_delta = 1;
1996 	op->file[1].dv_delta = 1;
1997 	op->file[0].modification = true;
1998 	op->file[1].modification = true;
1999 	op->file[0].update_ctime = true;
2000 	op->file[1].update_ctime = true;
2001 
2002 	op->dentry		= old_dentry;
2003 	op->dentry_2		= new_dentry;
2004 	op->rename.new_negative	= d_is_negative(new_dentry);
2005 	op->ops			= &afs_rename_operation;
2006 
2007 	/* For non-directories, check whether the target is busy and if so,
2008 	 * make a copy of the dentry and then do a silly-rename.  If the
2009 	 * silly-rename succeeds, the copied dentry is hashed and becomes the
2010 	 * new target.
2011 	 */
2012 	if (d_is_positive(new_dentry) && !d_is_dir(new_dentry)) {
2013 		/* To prevent any new references to the target during the
2014 		 * rename, we unhash the dentry in advance.
2015 		 */
2016 		if (!d_unhashed(new_dentry)) {
2017 			d_drop(new_dentry);
2018 			op->rename.rehash = new_dentry;
2019 		}
2020 
2021 		if (d_count(new_dentry) > 2) {
2022 			/* copy the target dentry's name */
2023 			op->rename.tmp = d_alloc(new_dentry->d_parent,
2024 						 &new_dentry->d_name);
2025 			if (!op->rename.tmp) {
2026 				afs_op_nomem(op);
2027 				goto error;
2028 			}
2029 
2030 			ret = afs_sillyrename(new_dvnode,
2031 					      AFS_FS_I(d_inode(new_dentry)),
2032 					      new_dentry, op->key);
2033 			if (ret) {
2034 				afs_op_set_error(op, ret);
2035 				goto error;
2036 			}
2037 
2038 			op->dentry_2 = op->rename.tmp;
2039 			op->rename.rehash = NULL;
2040 			op->rename.new_negative = true;
2041 		}
2042 	}
2043 
2044 	/* This bit is potentially nasty as there's a potential race with
2045 	 * afs_d_revalidate{,_rcu}().  We have to change d_fsdata on the dentry
2046 	 * to reflect it's new parent's new data_version after the op, but
2047 	 * d_revalidate may see old_dentry between the op having taken place
2048 	 * and the version being updated.
2049 	 *
2050 	 * So drop the old_dentry for now to make other threads go through
2051 	 * lookup instead - which we hold a lock against.
2052 	 */
2053 	d_drop(old_dentry);
2054 
2055 	ret = afs_do_sync_operation(op);
2056 out:
2057 	afs_dir_unuse_cookie(orig_dvnode, ret);
2058 	if (new_dvnode != orig_dvnode)
2059 		afs_dir_unuse_cookie(new_dvnode, ret);
2060 	return ret;
2061 
2062 error:
2063 	ret = afs_put_operation(op);
2064 	goto out;
2065 }
2066 
2067 /*
2068  * Write the file contents to the cache as a single blob.
2069  */
afs_single_writepages(struct address_space * mapping,struct writeback_control * wbc)2070 int afs_single_writepages(struct address_space *mapping,
2071 			  struct writeback_control *wbc)
2072 {
2073 	struct afs_vnode *dvnode = AFS_FS_I(mapping->host);
2074 	struct iov_iter iter;
2075 	bool is_dir = (S_ISDIR(dvnode->netfs.inode.i_mode) &&
2076 		       !test_bit(AFS_VNODE_MOUNTPOINT, &dvnode->flags));
2077 	int ret = 0;
2078 
2079 	/* Need to lock to prevent the folio queue and folios from being thrown
2080 	 * away.
2081 	 */
2082 	down_read(&dvnode->validate_lock);
2083 
2084 	if (is_dir ?
2085 	    test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags) :
2086 	    atomic64_read(&dvnode->cb_expires_at) != AFS_NO_CB_PROMISE) {
2087 		iov_iter_folio_queue(&iter, ITER_SOURCE, dvnode->directory, 0, 0,
2088 				     i_size_read(&dvnode->netfs.inode));
2089 		ret = netfs_writeback_single(mapping, wbc, &iter);
2090 	}
2091 
2092 	up_read(&dvnode->validate_lock);
2093 	return ret;
2094 }
2095