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1 // SPDX-License-Identifier: GPL-2.0
2 #include <linux/ceph/ceph_debug.h>
3 #include <linux/ceph/striper.h>
4 
5 #include <linux/module.h>
6 #include <linux/sched.h>
7 #include <linux/slab.h>
8 #include <linux/file.h>
9 #include <linux/mount.h>
10 #include <linux/namei.h>
11 #include <linux/writeback.h>
12 #include <linux/falloc.h>
13 #include <linux/iversion.h>
14 #include <linux/ktime.h>
15 
16 #include "super.h"
17 #include "mds_client.h"
18 #include "cache.h"
19 #include "io.h"
20 #include "metric.h"
21 
ceph_flags_sys2wire(u32 flags)22 static __le32 ceph_flags_sys2wire(u32 flags)
23 {
24 	u32 wire_flags = 0;
25 
26 	switch (flags & O_ACCMODE) {
27 	case O_RDONLY:
28 		wire_flags |= CEPH_O_RDONLY;
29 		break;
30 	case O_WRONLY:
31 		wire_flags |= CEPH_O_WRONLY;
32 		break;
33 	case O_RDWR:
34 		wire_flags |= CEPH_O_RDWR;
35 		break;
36 	}
37 
38 	flags &= ~O_ACCMODE;
39 
40 #define ceph_sys2wire(a) if (flags & a) { wire_flags |= CEPH_##a; flags &= ~a; }
41 
42 	ceph_sys2wire(O_CREAT);
43 	ceph_sys2wire(O_EXCL);
44 	ceph_sys2wire(O_TRUNC);
45 	ceph_sys2wire(O_DIRECTORY);
46 	ceph_sys2wire(O_NOFOLLOW);
47 
48 #undef ceph_sys2wire
49 
50 	if (flags)
51 		dout("unused open flags: %x\n", flags);
52 
53 	return cpu_to_le32(wire_flags);
54 }
55 
56 /*
57  * Ceph file operations
58  *
59  * Implement basic open/close functionality, and implement
60  * read/write.
61  *
62  * We implement three modes of file I/O:
63  *  - buffered uses the generic_file_aio_{read,write} helpers
64  *
65  *  - synchronous is used when there is multi-client read/write
66  *    sharing, avoids the page cache, and synchronously waits for an
67  *    ack from the OSD.
68  *
69  *  - direct io takes the variant of the sync path that references
70  *    user pages directly.
71  *
72  * fsync() flushes and waits on dirty pages, but just queues metadata
73  * for writeback: since the MDS can recover size and mtime there is no
74  * need to wait for MDS acknowledgement.
75  */
76 
77 /*
78  * How many pages to get in one call to iov_iter_get_pages().  This
79  * determines the size of the on-stack array used as a buffer.
80  */
81 #define ITER_GET_BVECS_PAGES	64
82 
__iter_get_bvecs(struct iov_iter * iter,size_t maxsize,struct bio_vec * bvecs)83 static ssize_t __iter_get_bvecs(struct iov_iter *iter, size_t maxsize,
84 				struct bio_vec *bvecs)
85 {
86 	size_t size = 0;
87 	int bvec_idx = 0;
88 
89 	if (maxsize > iov_iter_count(iter))
90 		maxsize = iov_iter_count(iter);
91 
92 	while (size < maxsize) {
93 		struct page *pages[ITER_GET_BVECS_PAGES];
94 		ssize_t bytes;
95 		size_t start;
96 		int idx = 0;
97 
98 		bytes = iov_iter_get_pages(iter, pages, maxsize - size,
99 					   ITER_GET_BVECS_PAGES, &start);
100 		if (bytes < 0)
101 			return size ?: bytes;
102 
103 		iov_iter_advance(iter, bytes);
104 		size += bytes;
105 
106 		for ( ; bytes; idx++, bvec_idx++) {
107 			struct bio_vec bv = {
108 				.bv_page = pages[idx],
109 				.bv_len = min_t(int, bytes, PAGE_SIZE - start),
110 				.bv_offset = start,
111 			};
112 
113 			bvecs[bvec_idx] = bv;
114 			bytes -= bv.bv_len;
115 			start = 0;
116 		}
117 	}
118 
119 	return size;
120 }
121 
122 /*
123  * iov_iter_get_pages() only considers one iov_iter segment, no matter
124  * what maxsize or maxpages are given.  For ITER_BVEC that is a single
125  * page.
126  *
127  * Attempt to get up to @maxsize bytes worth of pages from @iter.
128  * Return the number of bytes in the created bio_vec array, or an error.
129  */
iter_get_bvecs_alloc(struct iov_iter * iter,size_t maxsize,struct bio_vec ** bvecs,int * num_bvecs)130 static ssize_t iter_get_bvecs_alloc(struct iov_iter *iter, size_t maxsize,
131 				    struct bio_vec **bvecs, int *num_bvecs)
132 {
133 	struct bio_vec *bv;
134 	size_t orig_count = iov_iter_count(iter);
135 	ssize_t bytes;
136 	int npages;
137 
138 	iov_iter_truncate(iter, maxsize);
139 	npages = iov_iter_npages(iter, INT_MAX);
140 	iov_iter_reexpand(iter, orig_count);
141 
142 	/*
143 	 * __iter_get_bvecs() may populate only part of the array -- zero it
144 	 * out.
145 	 */
146 	bv = kvmalloc_array(npages, sizeof(*bv), GFP_KERNEL | __GFP_ZERO);
147 	if (!bv)
148 		return -ENOMEM;
149 
150 	bytes = __iter_get_bvecs(iter, maxsize, bv);
151 	if (bytes < 0) {
152 		/*
153 		 * No pages were pinned -- just free the array.
154 		 */
155 		kvfree(bv);
156 		return bytes;
157 	}
158 
159 	*bvecs = bv;
160 	*num_bvecs = npages;
161 	return bytes;
162 }
163 
put_bvecs(struct bio_vec * bvecs,int num_bvecs,bool should_dirty)164 static void put_bvecs(struct bio_vec *bvecs, int num_bvecs, bool should_dirty)
165 {
166 	int i;
167 
168 	for (i = 0; i < num_bvecs; i++) {
169 		if (bvecs[i].bv_page) {
170 			if (should_dirty)
171 				set_page_dirty_lock(bvecs[i].bv_page);
172 			put_page(bvecs[i].bv_page);
173 		}
174 	}
175 	kvfree(bvecs);
176 }
177 
178 /*
179  * Prepare an open request.  Preallocate ceph_cap to avoid an
180  * inopportune ENOMEM later.
181  */
182 static struct ceph_mds_request *
prepare_open_request(struct super_block * sb,int flags,int create_mode)183 prepare_open_request(struct super_block *sb, int flags, int create_mode)
184 {
185 	struct ceph_mds_client *mdsc = ceph_sb_to_mdsc(sb);
186 	struct ceph_mds_request *req;
187 	int want_auth = USE_ANY_MDS;
188 	int op = (flags & O_CREAT) ? CEPH_MDS_OP_CREATE : CEPH_MDS_OP_OPEN;
189 
190 	if (flags & (O_WRONLY|O_RDWR|O_CREAT|O_TRUNC))
191 		want_auth = USE_AUTH_MDS;
192 
193 	req = ceph_mdsc_create_request(mdsc, op, want_auth);
194 	if (IS_ERR(req))
195 		goto out;
196 	req->r_fmode = ceph_flags_to_mode(flags);
197 	req->r_args.open.flags = ceph_flags_sys2wire(flags);
198 	req->r_args.open.mode = cpu_to_le32(create_mode);
199 out:
200 	return req;
201 }
202 
ceph_init_file_info(struct inode * inode,struct file * file,int fmode,bool isdir)203 static int ceph_init_file_info(struct inode *inode, struct file *file,
204 					int fmode, bool isdir)
205 {
206 	struct ceph_inode_info *ci = ceph_inode(inode);
207 	struct ceph_file_info *fi;
208 
209 	dout("%s %p %p 0%o (%s)\n", __func__, inode, file,
210 			inode->i_mode, isdir ? "dir" : "regular");
211 	BUG_ON(inode->i_fop->release != ceph_release);
212 
213 	if (isdir) {
214 		struct ceph_dir_file_info *dfi =
215 			kmem_cache_zalloc(ceph_dir_file_cachep, GFP_KERNEL);
216 		if (!dfi)
217 			return -ENOMEM;
218 
219 		file->private_data = dfi;
220 		fi = &dfi->file_info;
221 		dfi->next_offset = 2;
222 		dfi->readdir_cache_idx = -1;
223 	} else {
224 		fi = kmem_cache_zalloc(ceph_file_cachep, GFP_KERNEL);
225 		if (!fi)
226 			return -ENOMEM;
227 
228 		file->private_data = fi;
229 	}
230 
231 	ceph_get_fmode(ci, fmode, 1);
232 	fi->fmode = fmode;
233 
234 	spin_lock_init(&fi->rw_contexts_lock);
235 	INIT_LIST_HEAD(&fi->rw_contexts);
236 	fi->filp_gen = READ_ONCE(ceph_inode_to_client(inode)->filp_gen);
237 
238 	return 0;
239 }
240 
241 /*
242  * initialize private struct file data.
243  * if we fail, clean up by dropping fmode reference on the ceph_inode
244  */
ceph_init_file(struct inode * inode,struct file * file,int fmode)245 static int ceph_init_file(struct inode *inode, struct file *file, int fmode)
246 {
247 	int ret = 0;
248 
249 	switch (inode->i_mode & S_IFMT) {
250 	case S_IFREG:
251 		ceph_fscache_register_inode_cookie(inode);
252 		ceph_fscache_file_set_cookie(inode, file);
253 		fallthrough;
254 	case S_IFDIR:
255 		ret = ceph_init_file_info(inode, file, fmode,
256 						S_ISDIR(inode->i_mode));
257 		break;
258 
259 	case S_IFLNK:
260 		dout("init_file %p %p 0%o (symlink)\n", inode, file,
261 		     inode->i_mode);
262 		break;
263 
264 	default:
265 		dout("init_file %p %p 0%o (special)\n", inode, file,
266 		     inode->i_mode);
267 		/*
268 		 * we need to drop the open ref now, since we don't
269 		 * have .release set to ceph_release.
270 		 */
271 		BUG_ON(inode->i_fop->release == ceph_release);
272 
273 		/* call the proper open fop */
274 		ret = inode->i_fop->open(inode, file);
275 	}
276 	return ret;
277 }
278 
279 /*
280  * try renew caps after session gets killed.
281  */
ceph_renew_caps(struct inode * inode,int fmode)282 int ceph_renew_caps(struct inode *inode, int fmode)
283 {
284 	struct ceph_mds_client *mdsc = ceph_sb_to_mdsc(inode->i_sb);
285 	struct ceph_inode_info *ci = ceph_inode(inode);
286 	struct ceph_mds_request *req;
287 	int err, flags, wanted;
288 
289 	spin_lock(&ci->i_ceph_lock);
290 	__ceph_touch_fmode(ci, mdsc, fmode);
291 	wanted = __ceph_caps_file_wanted(ci);
292 	if (__ceph_is_any_real_caps(ci) &&
293 	    (!(wanted & CEPH_CAP_ANY_WR) || ci->i_auth_cap)) {
294 		int issued = __ceph_caps_issued(ci, NULL);
295 		spin_unlock(&ci->i_ceph_lock);
296 		dout("renew caps %p want %s issued %s updating mds_wanted\n",
297 		     inode, ceph_cap_string(wanted), ceph_cap_string(issued));
298 		ceph_check_caps(ci, 0, NULL);
299 		return 0;
300 	}
301 	spin_unlock(&ci->i_ceph_lock);
302 
303 	flags = 0;
304 	if ((wanted & CEPH_CAP_FILE_RD) && (wanted & CEPH_CAP_FILE_WR))
305 		flags = O_RDWR;
306 	else if (wanted & CEPH_CAP_FILE_RD)
307 		flags = O_RDONLY;
308 	else if (wanted & CEPH_CAP_FILE_WR)
309 		flags = O_WRONLY;
310 #ifdef O_LAZY
311 	if (wanted & CEPH_CAP_FILE_LAZYIO)
312 		flags |= O_LAZY;
313 #endif
314 
315 	req = prepare_open_request(inode->i_sb, flags, 0);
316 	if (IS_ERR(req)) {
317 		err = PTR_ERR(req);
318 		goto out;
319 	}
320 
321 	req->r_inode = inode;
322 	ihold(inode);
323 	req->r_num_caps = 1;
324 
325 	err = ceph_mdsc_do_request(mdsc, NULL, req);
326 	ceph_mdsc_put_request(req);
327 out:
328 	dout("renew caps %p open result=%d\n", inode, err);
329 	return err < 0 ? err : 0;
330 }
331 
332 /*
333  * If we already have the requisite capabilities, we can satisfy
334  * the open request locally (no need to request new caps from the
335  * MDS).  We do, however, need to inform the MDS (asynchronously)
336  * if our wanted caps set expands.
337  */
ceph_open(struct inode * inode,struct file * file)338 int ceph_open(struct inode *inode, struct file *file)
339 {
340 	struct ceph_inode_info *ci = ceph_inode(inode);
341 	struct ceph_fs_client *fsc = ceph_sb_to_client(inode->i_sb);
342 	struct ceph_mds_client *mdsc = fsc->mdsc;
343 	struct ceph_mds_request *req;
344 	struct ceph_file_info *fi = file->private_data;
345 	int err;
346 	int flags, fmode, wanted;
347 
348 	if (fi) {
349 		dout("open file %p is already opened\n", file);
350 		return 0;
351 	}
352 
353 	/* filter out O_CREAT|O_EXCL; vfs did that already.  yuck. */
354 	flags = file->f_flags & ~(O_CREAT|O_EXCL);
355 	if (S_ISDIR(inode->i_mode))
356 		flags = O_DIRECTORY;  /* mds likes to know */
357 
358 	dout("open inode %p ino %llx.%llx file %p flags %d (%d)\n", inode,
359 	     ceph_vinop(inode), file, flags, file->f_flags);
360 	fmode = ceph_flags_to_mode(flags);
361 	wanted = ceph_caps_for_mode(fmode);
362 
363 	/* snapped files are read-only */
364 	if (ceph_snap(inode) != CEPH_NOSNAP && (file->f_mode & FMODE_WRITE))
365 		return -EROFS;
366 
367 	/* trivially open snapdir */
368 	if (ceph_snap(inode) == CEPH_SNAPDIR) {
369 		return ceph_init_file(inode, file, fmode);
370 	}
371 
372 	/*
373 	 * No need to block if we have caps on the auth MDS (for
374 	 * write) or any MDS (for read).  Update wanted set
375 	 * asynchronously.
376 	 */
377 	spin_lock(&ci->i_ceph_lock);
378 	if (__ceph_is_any_real_caps(ci) &&
379 	    (((fmode & CEPH_FILE_MODE_WR) == 0) || ci->i_auth_cap)) {
380 		int mds_wanted = __ceph_caps_mds_wanted(ci, true);
381 		int issued = __ceph_caps_issued(ci, NULL);
382 
383 		dout("open %p fmode %d want %s issued %s using existing\n",
384 		     inode, fmode, ceph_cap_string(wanted),
385 		     ceph_cap_string(issued));
386 		__ceph_touch_fmode(ci, mdsc, fmode);
387 		spin_unlock(&ci->i_ceph_lock);
388 
389 		/* adjust wanted? */
390 		if ((issued & wanted) != wanted &&
391 		    (mds_wanted & wanted) != wanted &&
392 		    ceph_snap(inode) != CEPH_SNAPDIR)
393 			ceph_check_caps(ci, 0, NULL);
394 
395 		return ceph_init_file(inode, file, fmode);
396 	} else if (ceph_snap(inode) != CEPH_NOSNAP &&
397 		   (ci->i_snap_caps & wanted) == wanted) {
398 		__ceph_touch_fmode(ci, mdsc, fmode);
399 		spin_unlock(&ci->i_ceph_lock);
400 		return ceph_init_file(inode, file, fmode);
401 	}
402 
403 	spin_unlock(&ci->i_ceph_lock);
404 
405 	dout("open fmode %d wants %s\n", fmode, ceph_cap_string(wanted));
406 	req = prepare_open_request(inode->i_sb, flags, 0);
407 	if (IS_ERR(req)) {
408 		err = PTR_ERR(req);
409 		goto out;
410 	}
411 	req->r_inode = inode;
412 	ihold(inode);
413 
414 	req->r_num_caps = 1;
415 	err = ceph_mdsc_do_request(mdsc, NULL, req);
416 	if (!err)
417 		err = ceph_init_file(inode, file, req->r_fmode);
418 	ceph_mdsc_put_request(req);
419 	dout("open result=%d on %llx.%llx\n", err, ceph_vinop(inode));
420 out:
421 	return err;
422 }
423 
424 /* Clone the layout from a synchronous create, if the dir now has Dc caps */
425 static void
cache_file_layout(struct inode * dst,struct inode * src)426 cache_file_layout(struct inode *dst, struct inode *src)
427 {
428 	struct ceph_inode_info *cdst = ceph_inode(dst);
429 	struct ceph_inode_info *csrc = ceph_inode(src);
430 
431 	spin_lock(&cdst->i_ceph_lock);
432 	if ((__ceph_caps_issued(cdst, NULL) & CEPH_CAP_DIR_CREATE) &&
433 	    !ceph_file_layout_is_valid(&cdst->i_cached_layout)) {
434 		memcpy(&cdst->i_cached_layout, &csrc->i_layout,
435 			sizeof(cdst->i_cached_layout));
436 		rcu_assign_pointer(cdst->i_cached_layout.pool_ns,
437 				   ceph_try_get_string(csrc->i_layout.pool_ns));
438 	}
439 	spin_unlock(&cdst->i_ceph_lock);
440 }
441 
442 /*
443  * Try to set up an async create. We need caps, a file layout, and inode number,
444  * and either a lease on the dentry or complete dir info. If any of those
445  * criteria are not satisfied, then return false and the caller can go
446  * synchronous.
447  */
try_prep_async_create(struct inode * dir,struct dentry * dentry,struct ceph_file_layout * lo,u64 * pino)448 static int try_prep_async_create(struct inode *dir, struct dentry *dentry,
449 				 struct ceph_file_layout *lo, u64 *pino)
450 {
451 	struct ceph_inode_info *ci = ceph_inode(dir);
452 	struct ceph_dentry_info *di = ceph_dentry(dentry);
453 	int got = 0, want = CEPH_CAP_FILE_EXCL | CEPH_CAP_DIR_CREATE;
454 	u64 ino;
455 
456 	spin_lock(&ci->i_ceph_lock);
457 	/* No auth cap means no chance for Dc caps */
458 	if (!ci->i_auth_cap)
459 		goto no_async;
460 
461 	/* Any delegated inos? */
462 	if (xa_empty(&ci->i_auth_cap->session->s_delegated_inos))
463 		goto no_async;
464 
465 	if (!ceph_file_layout_is_valid(&ci->i_cached_layout))
466 		goto no_async;
467 
468 	if ((__ceph_caps_issued(ci, NULL) & want) != want)
469 		goto no_async;
470 
471 	if (d_in_lookup(dentry)) {
472 		if (!__ceph_dir_is_complete(ci))
473 			goto no_async;
474 		spin_lock(&dentry->d_lock);
475 		di->lease_shared_gen = atomic_read(&ci->i_shared_gen);
476 		spin_unlock(&dentry->d_lock);
477 	} else if (atomic_read(&ci->i_shared_gen) !=
478 		   READ_ONCE(di->lease_shared_gen)) {
479 		goto no_async;
480 	}
481 
482 	ino = ceph_get_deleg_ino(ci->i_auth_cap->session);
483 	if (!ino)
484 		goto no_async;
485 
486 	*pino = ino;
487 	ceph_take_cap_refs(ci, want, false);
488 	memcpy(lo, &ci->i_cached_layout, sizeof(*lo));
489 	rcu_assign_pointer(lo->pool_ns,
490 			   ceph_try_get_string(ci->i_cached_layout.pool_ns));
491 	got = want;
492 no_async:
493 	spin_unlock(&ci->i_ceph_lock);
494 	return got;
495 }
496 
restore_deleg_ino(struct inode * dir,u64 ino)497 static void restore_deleg_ino(struct inode *dir, u64 ino)
498 {
499 	struct ceph_inode_info *ci = ceph_inode(dir);
500 	struct ceph_mds_session *s = NULL;
501 
502 	spin_lock(&ci->i_ceph_lock);
503 	if (ci->i_auth_cap)
504 		s = ceph_get_mds_session(ci->i_auth_cap->session);
505 	spin_unlock(&ci->i_ceph_lock);
506 	if (s) {
507 		int err = ceph_restore_deleg_ino(s, ino);
508 		if (err)
509 			pr_warn("ceph: unable to restore delegated ino 0x%llx to session: %d\n",
510 				ino, err);
511 		ceph_put_mds_session(s);
512 	}
513 }
514 
ceph_async_create_cb(struct ceph_mds_client * mdsc,struct ceph_mds_request * req)515 static void ceph_async_create_cb(struct ceph_mds_client *mdsc,
516                                  struct ceph_mds_request *req)
517 {
518 	int result = req->r_err ? req->r_err :
519 			le32_to_cpu(req->r_reply_info.head->result);
520 
521 	if (result == -EJUKEBOX)
522 		goto out;
523 
524 	mapping_set_error(req->r_parent->i_mapping, result);
525 
526 	if (result) {
527 		struct dentry *dentry = req->r_dentry;
528 		int pathlen = 0;
529 		u64 base = 0;
530 		char *path = ceph_mdsc_build_path(req->r_dentry, &pathlen,
531 						  &base, 0);
532 
533 		ceph_dir_clear_complete(req->r_parent);
534 		if (!d_unhashed(dentry))
535 			d_drop(dentry);
536 
537 		/* FIXME: start returning I/O errors on all accesses? */
538 		pr_warn("ceph: async create failure path=(%llx)%s result=%d!\n",
539 			base, IS_ERR(path) ? "<<bad>>" : path, result);
540 		ceph_mdsc_free_path(path, pathlen);
541 	}
542 
543 	if (req->r_target_inode) {
544 		struct ceph_inode_info *ci = ceph_inode(req->r_target_inode);
545 		u64 ino = ceph_vino(req->r_target_inode).ino;
546 
547 		if (req->r_deleg_ino != ino)
548 			pr_warn("%s: inode number mismatch! err=%d deleg_ino=0x%llx target=0x%llx\n",
549 				__func__, req->r_err, req->r_deleg_ino, ino);
550 		mapping_set_error(req->r_target_inode->i_mapping, result);
551 
552 		spin_lock(&ci->i_ceph_lock);
553 		if (ci->i_ceph_flags & CEPH_I_ASYNC_CREATE) {
554 			ci->i_ceph_flags &= ~CEPH_I_ASYNC_CREATE;
555 			wake_up_bit(&ci->i_ceph_flags, CEPH_ASYNC_CREATE_BIT);
556 		}
557 		ceph_kick_flushing_inode_caps(req->r_session, ci);
558 		spin_unlock(&ci->i_ceph_lock);
559 	} else {
560 		pr_warn("%s: no req->r_target_inode for 0x%llx\n", __func__,
561 			req->r_deleg_ino);
562 	}
563 out:
564 	ceph_mdsc_release_dir_caps(req);
565 }
566 
ceph_finish_async_create(struct inode * dir,struct dentry * dentry,struct file * file,umode_t mode,struct ceph_mds_request * req,struct ceph_acl_sec_ctx * as_ctx,struct ceph_file_layout * lo)567 static int ceph_finish_async_create(struct inode *dir, struct dentry *dentry,
568 				    struct file *file, umode_t mode,
569 				    struct ceph_mds_request *req,
570 				    struct ceph_acl_sec_ctx *as_ctx,
571 				    struct ceph_file_layout *lo)
572 {
573 	int ret;
574 	char xattr_buf[4];
575 	struct ceph_mds_reply_inode in = { };
576 	struct ceph_mds_reply_info_in iinfo = { .in = &in };
577 	struct ceph_inode_info *ci = ceph_inode(dir);
578 	struct inode *inode;
579 	struct timespec64 now;
580 	struct ceph_string *pool_ns;
581 	struct ceph_mds_client *mdsc = ceph_sb_to_mdsc(dir->i_sb);
582 	struct ceph_vino vino = { .ino = req->r_deleg_ino,
583 				  .snap = CEPH_NOSNAP };
584 
585 	ktime_get_real_ts64(&now);
586 
587 	inode = ceph_get_inode(dentry->d_sb, vino);
588 	if (IS_ERR(inode))
589 		return PTR_ERR(inode);
590 
591 	iinfo.inline_version = CEPH_INLINE_NONE;
592 	iinfo.change_attr = 1;
593 	ceph_encode_timespec64(&iinfo.btime, &now);
594 
595 	if (req->r_pagelist) {
596 		iinfo.xattr_len = req->r_pagelist->length;
597 		iinfo.xattr_data = req->r_pagelist->mapped_tail;
598 	} else {
599 		/* fake it */
600 		iinfo.xattr_len = ARRAY_SIZE(xattr_buf);
601 		iinfo.xattr_data = xattr_buf;
602 		memset(iinfo.xattr_data, 0, iinfo.xattr_len);
603 	}
604 
605 	in.ino = cpu_to_le64(vino.ino);
606 	in.snapid = cpu_to_le64(CEPH_NOSNAP);
607 	in.version = cpu_to_le64(1);	// ???
608 	in.cap.caps = in.cap.wanted = cpu_to_le32(CEPH_CAP_ALL_FILE);
609 	in.cap.cap_id = cpu_to_le64(1);
610 	in.cap.realm = cpu_to_le64(ci->i_snap_realm->ino);
611 	in.cap.flags = CEPH_CAP_FLAG_AUTH;
612 	in.ctime = in.mtime = in.atime = iinfo.btime;
613 	in.truncate_seq = cpu_to_le32(1);
614 	in.truncate_size = cpu_to_le64(-1ULL);
615 	in.xattr_version = cpu_to_le64(1);
616 	in.uid = cpu_to_le32(from_kuid(&init_user_ns, current_fsuid()));
617 	if (dir->i_mode & S_ISGID) {
618 		in.gid = cpu_to_le32(from_kgid(&init_user_ns, dir->i_gid));
619 
620 		/* Directories always inherit the setgid bit. */
621 		if (S_ISDIR(mode))
622 			mode |= S_ISGID;
623 		else if ((mode & (S_ISGID | S_IXGRP)) == (S_ISGID | S_IXGRP) &&
624 			 !in_group_p(dir->i_gid) &&
625 			 !capable_wrt_inode_uidgid(&init_user_ns, dir, CAP_FSETID))
626 			mode &= ~S_ISGID;
627 	} else {
628 		in.gid = cpu_to_le32(from_kgid(&init_user_ns, current_fsgid()));
629 	}
630 	in.mode = cpu_to_le32((u32)mode);
631 
632 	in.nlink = cpu_to_le32(1);
633 	in.max_size = cpu_to_le64(lo->stripe_unit);
634 
635 	ceph_file_layout_to_legacy(lo, &in.layout);
636 	/* lo is private, so pool_ns can't change */
637 	pool_ns = rcu_dereference_raw(lo->pool_ns);
638 	if (pool_ns) {
639 		iinfo.pool_ns_len = pool_ns->len;
640 		iinfo.pool_ns_data = pool_ns->str;
641 	}
642 
643 	down_read(&mdsc->snap_rwsem);
644 	ret = ceph_fill_inode(inode, NULL, &iinfo, NULL, req->r_session,
645 			      req->r_fmode, NULL);
646 	up_read(&mdsc->snap_rwsem);
647 	if (ret) {
648 		dout("%s failed to fill inode: %d\n", __func__, ret);
649 		ceph_dir_clear_complete(dir);
650 		if (!d_unhashed(dentry))
651 			d_drop(dentry);
652 		if (inode->i_state & I_NEW)
653 			discard_new_inode(inode);
654 	} else {
655 		struct dentry *dn;
656 
657 		dout("%s d_adding new inode 0x%llx to 0x%llx/%s\n", __func__,
658 			vino.ino, ceph_ino(dir), dentry->d_name.name);
659 		ceph_dir_clear_ordered(dir);
660 		ceph_init_inode_acls(inode, as_ctx);
661 		if (inode->i_state & I_NEW) {
662 			/*
663 			 * If it's not I_NEW, then someone created this before
664 			 * we got here. Assume the server is aware of it at
665 			 * that point and don't worry about setting
666 			 * CEPH_I_ASYNC_CREATE.
667 			 */
668 			ceph_inode(inode)->i_ceph_flags = CEPH_I_ASYNC_CREATE;
669 			unlock_new_inode(inode);
670 		}
671 		if (d_in_lookup(dentry) || d_really_is_negative(dentry)) {
672 			if (!d_unhashed(dentry))
673 				d_drop(dentry);
674 			dn = d_splice_alias(inode, dentry);
675 			WARN_ON_ONCE(dn && dn != dentry);
676 		}
677 		file->f_mode |= FMODE_CREATED;
678 		ret = finish_open(file, dentry, ceph_open);
679 	}
680 	return ret;
681 }
682 
683 /*
684  * Do a lookup + open with a single request.  If we get a non-existent
685  * file or symlink, return 1 so the VFS can retry.
686  */
ceph_atomic_open(struct inode * dir,struct dentry * dentry,struct file * file,unsigned flags,umode_t mode)687 int ceph_atomic_open(struct inode *dir, struct dentry *dentry,
688 		     struct file *file, unsigned flags, umode_t mode)
689 {
690 	struct ceph_fs_client *fsc = ceph_sb_to_client(dir->i_sb);
691 	struct ceph_mds_client *mdsc = fsc->mdsc;
692 	struct ceph_mds_request *req;
693 	struct dentry *dn;
694 	struct ceph_acl_sec_ctx as_ctx = {};
695 	bool try_async = ceph_test_mount_opt(fsc, ASYNC_DIROPS);
696 	int mask;
697 	int err;
698 
699 	dout("atomic_open %p dentry %p '%pd' %s flags %d mode 0%o\n",
700 	     dir, dentry, dentry,
701 	     d_unhashed(dentry) ? "unhashed" : "hashed", flags, mode);
702 
703 	if (dentry->d_name.len > NAME_MAX)
704 		return -ENAMETOOLONG;
705 
706 	/*
707 	 * Do not truncate the file, since atomic_open is called before the
708 	 * permission check. The caller will do the truncation afterward.
709 	 */
710 	flags &= ~O_TRUNC;
711 
712 	if (flags & O_CREAT) {
713 		if (ceph_quota_is_max_files_exceeded(dir))
714 			return -EDQUOT;
715 		err = ceph_pre_init_acls(dir, &mode, &as_ctx);
716 		if (err < 0)
717 			return err;
718 		err = ceph_security_init_secctx(dentry, mode, &as_ctx);
719 		if (err < 0)
720 			goto out_ctx;
721 		/* Async create can't handle more than a page of xattrs */
722 		if (as_ctx.pagelist &&
723 		    !list_is_singular(&as_ctx.pagelist->head))
724 			try_async = false;
725 	} else if (!d_in_lookup(dentry)) {
726 		/* If it's not being looked up, it's negative */
727 		return -ENOENT;
728 	}
729 retry:
730 	/* do the open */
731 	req = prepare_open_request(dir->i_sb, flags, mode);
732 	if (IS_ERR(req)) {
733 		err = PTR_ERR(req);
734 		goto out_ctx;
735 	}
736 	req->r_dentry = dget(dentry);
737 	req->r_num_caps = 2;
738 	mask = CEPH_STAT_CAP_INODE | CEPH_CAP_AUTH_SHARED;
739 	if (ceph_security_xattr_wanted(dir))
740 		mask |= CEPH_CAP_XATTR_SHARED;
741 	req->r_args.open.mask = cpu_to_le32(mask);
742 	req->r_parent = dir;
743 	ihold(dir);
744 
745 	if (flags & O_CREAT) {
746 		struct ceph_file_layout lo;
747 
748 		req->r_dentry_drop = CEPH_CAP_FILE_SHARED | CEPH_CAP_AUTH_EXCL;
749 		req->r_dentry_unless = CEPH_CAP_FILE_EXCL;
750 		if (as_ctx.pagelist) {
751 			req->r_pagelist = as_ctx.pagelist;
752 			as_ctx.pagelist = NULL;
753 		}
754 		if (try_async &&
755 		    (req->r_dir_caps =
756 		      try_prep_async_create(dir, dentry, &lo,
757 					    &req->r_deleg_ino))) {
758 			set_bit(CEPH_MDS_R_ASYNC, &req->r_req_flags);
759 			req->r_args.open.flags |= cpu_to_le32(CEPH_O_EXCL);
760 			req->r_callback = ceph_async_create_cb;
761 			err = ceph_mdsc_submit_request(mdsc, dir, req);
762 			if (!err) {
763 				err = ceph_finish_async_create(dir, dentry,
764 							file, mode, req,
765 							&as_ctx, &lo);
766 			} else if (err == -EJUKEBOX) {
767 				restore_deleg_ino(dir, req->r_deleg_ino);
768 				ceph_mdsc_put_request(req);
769 				try_async = false;
770 				ceph_put_string(rcu_dereference_raw(lo.pool_ns));
771 				goto retry;
772 			}
773 			ceph_put_string(rcu_dereference_raw(lo.pool_ns));
774 			goto out_req;
775 		}
776 	}
777 
778 	set_bit(CEPH_MDS_R_PARENT_LOCKED, &req->r_req_flags);
779 	err = ceph_mdsc_do_request(mdsc, (flags & O_CREAT) ? dir : NULL, req);
780 	if (err == -ENOENT) {
781 		dentry = ceph_handle_snapdir(req, dentry);
782 		if (IS_ERR(dentry)) {
783 			err = PTR_ERR(dentry);
784 			goto out_req;
785 		}
786 		err = 0;
787 	}
788 
789 	if (!err && (flags & O_CREAT) && !req->r_reply_info.head->is_dentry)
790 		err = ceph_handle_notrace_create(dir, dentry);
791 
792 	if (d_in_lookup(dentry)) {
793 		dn = ceph_finish_lookup(req, dentry, err);
794 		if (IS_ERR(dn))
795 			err = PTR_ERR(dn);
796 	} else {
797 		/* we were given a hashed negative dentry */
798 		dn = NULL;
799 	}
800 	if (err)
801 		goto out_req;
802 	if (dn || d_really_is_negative(dentry) || d_is_symlink(dentry)) {
803 		/* make vfs retry on splice, ENOENT, or symlink */
804 		dout("atomic_open finish_no_open on dn %p\n", dn);
805 		err = finish_no_open(file, dn);
806 	} else {
807 		dout("atomic_open finish_open on dn %p\n", dn);
808 		if (req->r_op == CEPH_MDS_OP_CREATE && req->r_reply_info.has_create_ino) {
809 			struct inode *newino = d_inode(dentry);
810 
811 			cache_file_layout(dir, newino);
812 			ceph_init_inode_acls(newino, &as_ctx);
813 			file->f_mode |= FMODE_CREATED;
814 		}
815 		err = finish_open(file, dentry, ceph_open);
816 	}
817 out_req:
818 	ceph_mdsc_put_request(req);
819 out_ctx:
820 	ceph_release_acl_sec_ctx(&as_ctx);
821 	dout("atomic_open result=%d\n", err);
822 	return err;
823 }
824 
ceph_release(struct inode * inode,struct file * file)825 int ceph_release(struct inode *inode, struct file *file)
826 {
827 	struct ceph_inode_info *ci = ceph_inode(inode);
828 
829 	if (S_ISDIR(inode->i_mode)) {
830 		struct ceph_dir_file_info *dfi = file->private_data;
831 		dout("release inode %p dir file %p\n", inode, file);
832 		WARN_ON(!list_empty(&dfi->file_info.rw_contexts));
833 
834 		ceph_put_fmode(ci, dfi->file_info.fmode, 1);
835 
836 		if (dfi->last_readdir)
837 			ceph_mdsc_put_request(dfi->last_readdir);
838 		kfree(dfi->last_name);
839 		kfree(dfi->dir_info);
840 		kmem_cache_free(ceph_dir_file_cachep, dfi);
841 	} else {
842 		struct ceph_file_info *fi = file->private_data;
843 		dout("release inode %p regular file %p\n", inode, file);
844 		WARN_ON(!list_empty(&fi->rw_contexts));
845 
846 		ceph_put_fmode(ci, fi->fmode, 1);
847 
848 		kmem_cache_free(ceph_file_cachep, fi);
849 	}
850 
851 	/* wake up anyone waiting for caps on this inode */
852 	wake_up_all(&ci->i_cap_wq);
853 	return 0;
854 }
855 
856 enum {
857 	HAVE_RETRIED = 1,
858 	CHECK_EOF =    2,
859 	READ_INLINE =  3,
860 };
861 
862 /*
863  * Completely synchronous read and write methods.  Direct from __user
864  * buffer to osd, or directly to user pages (if O_DIRECT).
865  *
866  * If the read spans object boundary, just do multiple reads.  (That's not
867  * atomic, but good enough for now.)
868  *
869  * If we get a short result from the OSD, check against i_size; we need to
870  * only return a short read to the caller if we hit EOF.
871  */
ceph_sync_read(struct kiocb * iocb,struct iov_iter * to,int * retry_op)872 static ssize_t ceph_sync_read(struct kiocb *iocb, struct iov_iter *to,
873 			      int *retry_op)
874 {
875 	struct file *file = iocb->ki_filp;
876 	struct inode *inode = file_inode(file);
877 	struct ceph_inode_info *ci = ceph_inode(inode);
878 	struct ceph_fs_client *fsc = ceph_inode_to_client(inode);
879 	struct ceph_osd_client *osdc = &fsc->client->osdc;
880 	ssize_t ret;
881 	u64 off = iocb->ki_pos;
882 	u64 len = iov_iter_count(to);
883 
884 	dout("sync_read on file %p %llu~%u %s\n", file, off, (unsigned)len,
885 	     (file->f_flags & O_DIRECT) ? "O_DIRECT" : "");
886 
887 	if (!len)
888 		return 0;
889 	/*
890 	 * flush any page cache pages in this range.  this
891 	 * will make concurrent normal and sync io slow,
892 	 * but it will at least behave sensibly when they are
893 	 * in sequence.
894 	 */
895 	ret = filemap_write_and_wait_range(inode->i_mapping,
896 					   off, off + len - 1);
897 	if (ret < 0)
898 		return ret;
899 
900 	ret = 0;
901 	while ((len = iov_iter_count(to)) > 0) {
902 		struct ceph_osd_request *req;
903 		struct page **pages;
904 		int num_pages;
905 		size_t page_off;
906 		u64 i_size;
907 		bool more;
908 		int idx;
909 		size_t left;
910 
911 		req = ceph_osdc_new_request(osdc, &ci->i_layout,
912 					ci->i_vino, off, &len, 0, 1,
913 					CEPH_OSD_OP_READ, CEPH_OSD_FLAG_READ,
914 					NULL, ci->i_truncate_seq,
915 					ci->i_truncate_size, false);
916 		if (IS_ERR(req)) {
917 			ret = PTR_ERR(req);
918 			break;
919 		}
920 
921 		more = len < iov_iter_count(to);
922 
923 		num_pages = calc_pages_for(off, len);
924 		page_off = off & ~PAGE_MASK;
925 		pages = ceph_alloc_page_vector(num_pages, GFP_KERNEL);
926 		if (IS_ERR(pages)) {
927 			ceph_osdc_put_request(req);
928 			ret = PTR_ERR(pages);
929 			break;
930 		}
931 
932 		osd_req_op_extent_osd_data_pages(req, 0, pages, len, page_off,
933 						 false, false);
934 		ret = ceph_osdc_start_request(osdc, req, false);
935 		if (!ret)
936 			ret = ceph_osdc_wait_request(osdc, req);
937 
938 		ceph_update_read_metrics(&fsc->mdsc->metric,
939 					 req->r_start_latency,
940 					 req->r_end_latency,
941 					 len, ret);
942 
943 		ceph_osdc_put_request(req);
944 
945 		i_size = i_size_read(inode);
946 		dout("sync_read %llu~%llu got %zd i_size %llu%s\n",
947 		     off, len, ret, i_size, (more ? " MORE" : ""));
948 
949 		if (ret == -ENOENT)
950 			ret = 0;
951 		if (ret >= 0 && ret < len && (off + ret < i_size)) {
952 			int zlen = min(len - ret, i_size - off - ret);
953 			int zoff = page_off + ret;
954 			dout("sync_read zero gap %llu~%llu\n",
955                              off + ret, off + ret + zlen);
956 			ceph_zero_page_vector_range(zoff, zlen, pages);
957 			ret += zlen;
958 		}
959 
960 		idx = 0;
961 		left = ret > 0 ? ret : 0;
962 		while (left > 0) {
963 			size_t len, copied;
964 			page_off = off & ~PAGE_MASK;
965 			len = min_t(size_t, left, PAGE_SIZE - page_off);
966 			SetPageUptodate(pages[idx]);
967 			copied = copy_page_to_iter(pages[idx++],
968 						   page_off, len, to);
969 			off += copied;
970 			left -= copied;
971 			if (copied < len) {
972 				ret = -EFAULT;
973 				break;
974 			}
975 		}
976 		ceph_release_page_vector(pages, num_pages);
977 
978 		if (ret < 0) {
979 			if (ret == -EBLOCKLISTED)
980 				fsc->blocklisted = true;
981 			break;
982 		}
983 
984 		if (off >= i_size || !more)
985 			break;
986 	}
987 
988 	if (off > iocb->ki_pos) {
989 		if (ret >= 0 &&
990 		    iov_iter_count(to) > 0 && off >= i_size_read(inode))
991 			*retry_op = CHECK_EOF;
992 		ret = off - iocb->ki_pos;
993 		iocb->ki_pos = off;
994 	}
995 
996 	dout("sync_read result %zd retry_op %d\n", ret, *retry_op);
997 	return ret;
998 }
999 
1000 struct ceph_aio_request {
1001 	struct kiocb *iocb;
1002 	size_t total_len;
1003 	bool write;
1004 	bool should_dirty;
1005 	int error;
1006 	struct list_head osd_reqs;
1007 	unsigned num_reqs;
1008 	atomic_t pending_reqs;
1009 	struct timespec64 mtime;
1010 	struct ceph_cap_flush *prealloc_cf;
1011 };
1012 
1013 struct ceph_aio_work {
1014 	struct work_struct work;
1015 	struct ceph_osd_request *req;
1016 };
1017 
1018 static void ceph_aio_retry_work(struct work_struct *work);
1019 
ceph_aio_complete(struct inode * inode,struct ceph_aio_request * aio_req)1020 static void ceph_aio_complete(struct inode *inode,
1021 			      struct ceph_aio_request *aio_req)
1022 {
1023 	struct ceph_inode_info *ci = ceph_inode(inode);
1024 	int ret;
1025 
1026 	if (!atomic_dec_and_test(&aio_req->pending_reqs))
1027 		return;
1028 
1029 	if (aio_req->iocb->ki_flags & IOCB_DIRECT)
1030 		inode_dio_end(inode);
1031 
1032 	ret = aio_req->error;
1033 	if (!ret)
1034 		ret = aio_req->total_len;
1035 
1036 	dout("ceph_aio_complete %p rc %d\n", inode, ret);
1037 
1038 	if (ret >= 0 && aio_req->write) {
1039 		int dirty;
1040 
1041 		loff_t endoff = aio_req->iocb->ki_pos + aio_req->total_len;
1042 		if (endoff > i_size_read(inode)) {
1043 			if (ceph_inode_set_size(inode, endoff))
1044 				ceph_check_caps(ci, CHECK_CAPS_AUTHONLY, NULL);
1045 		}
1046 
1047 		spin_lock(&ci->i_ceph_lock);
1048 		ci->i_inline_version = CEPH_INLINE_NONE;
1049 		dirty = __ceph_mark_dirty_caps(ci, CEPH_CAP_FILE_WR,
1050 					       &aio_req->prealloc_cf);
1051 		spin_unlock(&ci->i_ceph_lock);
1052 		if (dirty)
1053 			__mark_inode_dirty(inode, dirty);
1054 
1055 	}
1056 
1057 	ceph_put_cap_refs(ci, (aio_req->write ? CEPH_CAP_FILE_WR :
1058 						CEPH_CAP_FILE_RD));
1059 
1060 	aio_req->iocb->ki_complete(aio_req->iocb, ret, 0);
1061 
1062 	ceph_free_cap_flush(aio_req->prealloc_cf);
1063 	kfree(aio_req);
1064 }
1065 
ceph_aio_complete_req(struct ceph_osd_request * req)1066 static void ceph_aio_complete_req(struct ceph_osd_request *req)
1067 {
1068 	int rc = req->r_result;
1069 	struct inode *inode = req->r_inode;
1070 	struct ceph_aio_request *aio_req = req->r_priv;
1071 	struct ceph_osd_data *osd_data = osd_req_op_extent_osd_data(req, 0);
1072 	struct ceph_client_metric *metric = &ceph_sb_to_mdsc(inode->i_sb)->metric;
1073 	unsigned int len = osd_data->bvec_pos.iter.bi_size;
1074 
1075 	BUG_ON(osd_data->type != CEPH_OSD_DATA_TYPE_BVECS);
1076 	BUG_ON(!osd_data->num_bvecs);
1077 
1078 	dout("ceph_aio_complete_req %p rc %d bytes %u\n", inode, rc, len);
1079 
1080 	if (rc == -EOLDSNAPC) {
1081 		struct ceph_aio_work *aio_work;
1082 		BUG_ON(!aio_req->write);
1083 
1084 		aio_work = kmalloc(sizeof(*aio_work), GFP_NOFS);
1085 		if (aio_work) {
1086 			INIT_WORK(&aio_work->work, ceph_aio_retry_work);
1087 			aio_work->req = req;
1088 			queue_work(ceph_inode_to_client(inode)->inode_wq,
1089 				   &aio_work->work);
1090 			return;
1091 		}
1092 		rc = -ENOMEM;
1093 	} else if (!aio_req->write) {
1094 		if (rc == -ENOENT)
1095 			rc = 0;
1096 		if (rc >= 0 && len > rc) {
1097 			struct iov_iter i;
1098 			int zlen = len - rc;
1099 
1100 			/*
1101 			 * If read is satisfied by single OSD request,
1102 			 * it can pass EOF. Otherwise read is within
1103 			 * i_size.
1104 			 */
1105 			if (aio_req->num_reqs == 1) {
1106 				loff_t i_size = i_size_read(inode);
1107 				loff_t endoff = aio_req->iocb->ki_pos + rc;
1108 				if (endoff < i_size)
1109 					zlen = min_t(size_t, zlen,
1110 						     i_size - endoff);
1111 				aio_req->total_len = rc + zlen;
1112 			}
1113 
1114 			iov_iter_bvec(&i, READ, osd_data->bvec_pos.bvecs,
1115 				      osd_data->num_bvecs, len);
1116 			iov_iter_advance(&i, rc);
1117 			iov_iter_zero(zlen, &i);
1118 		}
1119 	}
1120 
1121 	/* r_start_latency == 0 means the request was not submitted */
1122 	if (req->r_start_latency) {
1123 		if (aio_req->write)
1124 			ceph_update_write_metrics(metric, req->r_start_latency,
1125 						  req->r_end_latency, len, rc);
1126 		else
1127 			ceph_update_read_metrics(metric, req->r_start_latency,
1128 						 req->r_end_latency, len, rc);
1129 	}
1130 
1131 	put_bvecs(osd_data->bvec_pos.bvecs, osd_data->num_bvecs,
1132 		  aio_req->should_dirty);
1133 	ceph_osdc_put_request(req);
1134 
1135 	if (rc < 0)
1136 		cmpxchg(&aio_req->error, 0, rc);
1137 
1138 	ceph_aio_complete(inode, aio_req);
1139 	return;
1140 }
1141 
ceph_aio_retry_work(struct work_struct * work)1142 static void ceph_aio_retry_work(struct work_struct *work)
1143 {
1144 	struct ceph_aio_work *aio_work =
1145 		container_of(work, struct ceph_aio_work, work);
1146 	struct ceph_osd_request *orig_req = aio_work->req;
1147 	struct ceph_aio_request *aio_req = orig_req->r_priv;
1148 	struct inode *inode = orig_req->r_inode;
1149 	struct ceph_inode_info *ci = ceph_inode(inode);
1150 	struct ceph_snap_context *snapc;
1151 	struct ceph_osd_request *req;
1152 	int ret;
1153 
1154 	spin_lock(&ci->i_ceph_lock);
1155 	if (__ceph_have_pending_cap_snap(ci)) {
1156 		struct ceph_cap_snap *capsnap =
1157 			list_last_entry(&ci->i_cap_snaps,
1158 					struct ceph_cap_snap,
1159 					ci_item);
1160 		snapc = ceph_get_snap_context(capsnap->context);
1161 	} else {
1162 		BUG_ON(!ci->i_head_snapc);
1163 		snapc = ceph_get_snap_context(ci->i_head_snapc);
1164 	}
1165 	spin_unlock(&ci->i_ceph_lock);
1166 
1167 	req = ceph_osdc_alloc_request(orig_req->r_osdc, snapc, 1,
1168 			false, GFP_NOFS);
1169 	if (!req) {
1170 		ret = -ENOMEM;
1171 		req = orig_req;
1172 		goto out;
1173 	}
1174 
1175 	req->r_flags = /* CEPH_OSD_FLAG_ORDERSNAP | */ CEPH_OSD_FLAG_WRITE;
1176 	ceph_oloc_copy(&req->r_base_oloc, &orig_req->r_base_oloc);
1177 	ceph_oid_copy(&req->r_base_oid, &orig_req->r_base_oid);
1178 
1179 	req->r_ops[0] = orig_req->r_ops[0];
1180 
1181 	req->r_mtime = aio_req->mtime;
1182 	req->r_data_offset = req->r_ops[0].extent.offset;
1183 
1184 	ret = ceph_osdc_alloc_messages(req, GFP_NOFS);
1185 	if (ret) {
1186 		ceph_osdc_put_request(req);
1187 		req = orig_req;
1188 		goto out;
1189 	}
1190 
1191 	ceph_osdc_put_request(orig_req);
1192 
1193 	req->r_callback = ceph_aio_complete_req;
1194 	req->r_inode = inode;
1195 	req->r_priv = aio_req;
1196 
1197 	ret = ceph_osdc_start_request(req->r_osdc, req, false);
1198 out:
1199 	if (ret < 0) {
1200 		req->r_result = ret;
1201 		ceph_aio_complete_req(req);
1202 	}
1203 
1204 	ceph_put_snap_context(snapc);
1205 	kfree(aio_work);
1206 }
1207 
1208 static ssize_t
ceph_direct_read_write(struct kiocb * iocb,struct iov_iter * iter,struct ceph_snap_context * snapc,struct ceph_cap_flush ** pcf)1209 ceph_direct_read_write(struct kiocb *iocb, struct iov_iter *iter,
1210 		       struct ceph_snap_context *snapc,
1211 		       struct ceph_cap_flush **pcf)
1212 {
1213 	struct file *file = iocb->ki_filp;
1214 	struct inode *inode = file_inode(file);
1215 	struct ceph_inode_info *ci = ceph_inode(inode);
1216 	struct ceph_fs_client *fsc = ceph_inode_to_client(inode);
1217 	struct ceph_client_metric *metric = &fsc->mdsc->metric;
1218 	struct ceph_vino vino;
1219 	struct ceph_osd_request *req;
1220 	struct bio_vec *bvecs;
1221 	struct ceph_aio_request *aio_req = NULL;
1222 	int num_pages = 0;
1223 	int flags;
1224 	int ret = 0;
1225 	struct timespec64 mtime = current_time(inode);
1226 	size_t count = iov_iter_count(iter);
1227 	loff_t pos = iocb->ki_pos;
1228 	bool write = iov_iter_rw(iter) == WRITE;
1229 	bool should_dirty = !write && iter_is_iovec(iter);
1230 
1231 	if (write && ceph_snap(file_inode(file)) != CEPH_NOSNAP)
1232 		return -EROFS;
1233 
1234 	dout("sync_direct_%s on file %p %lld~%u snapc %p seq %lld\n",
1235 	     (write ? "write" : "read"), file, pos, (unsigned)count,
1236 	     snapc, snapc ? snapc->seq : 0);
1237 
1238 	if (write) {
1239 		int ret2 = invalidate_inode_pages2_range(inode->i_mapping,
1240 					pos >> PAGE_SHIFT,
1241 					(pos + count - 1) >> PAGE_SHIFT);
1242 		if (ret2 < 0)
1243 			dout("invalidate_inode_pages2_range returned %d\n", ret2);
1244 
1245 		flags = /* CEPH_OSD_FLAG_ORDERSNAP | */ CEPH_OSD_FLAG_WRITE;
1246 	} else {
1247 		flags = CEPH_OSD_FLAG_READ;
1248 	}
1249 
1250 	while (iov_iter_count(iter) > 0) {
1251 		u64 size = iov_iter_count(iter);
1252 		ssize_t len;
1253 
1254 		if (write)
1255 			size = min_t(u64, size, fsc->mount_options->wsize);
1256 		else
1257 			size = min_t(u64, size, fsc->mount_options->rsize);
1258 
1259 		vino = ceph_vino(inode);
1260 		req = ceph_osdc_new_request(&fsc->client->osdc, &ci->i_layout,
1261 					    vino, pos, &size, 0,
1262 					    1,
1263 					    write ? CEPH_OSD_OP_WRITE :
1264 						    CEPH_OSD_OP_READ,
1265 					    flags, snapc,
1266 					    ci->i_truncate_seq,
1267 					    ci->i_truncate_size,
1268 					    false);
1269 		if (IS_ERR(req)) {
1270 			ret = PTR_ERR(req);
1271 			break;
1272 		}
1273 
1274 		len = iter_get_bvecs_alloc(iter, size, &bvecs, &num_pages);
1275 		if (len < 0) {
1276 			ceph_osdc_put_request(req);
1277 			ret = len;
1278 			break;
1279 		}
1280 		if (len != size)
1281 			osd_req_op_extent_update(req, 0, len);
1282 
1283 		/*
1284 		 * To simplify error handling, allow AIO when IO within i_size
1285 		 * or IO can be satisfied by single OSD request.
1286 		 */
1287 		if (pos == iocb->ki_pos && !is_sync_kiocb(iocb) &&
1288 		    (len == count || pos + count <= i_size_read(inode))) {
1289 			aio_req = kzalloc(sizeof(*aio_req), GFP_KERNEL);
1290 			if (aio_req) {
1291 				aio_req->iocb = iocb;
1292 				aio_req->write = write;
1293 				aio_req->should_dirty = should_dirty;
1294 				INIT_LIST_HEAD(&aio_req->osd_reqs);
1295 				if (write) {
1296 					aio_req->mtime = mtime;
1297 					swap(aio_req->prealloc_cf, *pcf);
1298 				}
1299 			}
1300 			/* ignore error */
1301 		}
1302 
1303 		if (write) {
1304 			/*
1305 			 * throw out any page cache pages in this range. this
1306 			 * may block.
1307 			 */
1308 			truncate_inode_pages_range(inode->i_mapping, pos,
1309 						   PAGE_ALIGN(pos + len) - 1);
1310 
1311 			req->r_mtime = mtime;
1312 		}
1313 
1314 		osd_req_op_extent_osd_data_bvecs(req, 0, bvecs, num_pages, len);
1315 
1316 		if (aio_req) {
1317 			aio_req->total_len += len;
1318 			aio_req->num_reqs++;
1319 			atomic_inc(&aio_req->pending_reqs);
1320 
1321 			req->r_callback = ceph_aio_complete_req;
1322 			req->r_inode = inode;
1323 			req->r_priv = aio_req;
1324 			list_add_tail(&req->r_private_item, &aio_req->osd_reqs);
1325 
1326 			pos += len;
1327 			continue;
1328 		}
1329 
1330 		ret = ceph_osdc_start_request(req->r_osdc, req, false);
1331 		if (!ret)
1332 			ret = ceph_osdc_wait_request(&fsc->client->osdc, req);
1333 
1334 		if (write)
1335 			ceph_update_write_metrics(metric, req->r_start_latency,
1336 						  req->r_end_latency, len, ret);
1337 		else
1338 			ceph_update_read_metrics(metric, req->r_start_latency,
1339 						 req->r_end_latency, len, ret);
1340 
1341 		size = i_size_read(inode);
1342 		if (!write) {
1343 			if (ret == -ENOENT)
1344 				ret = 0;
1345 			if (ret >= 0 && ret < len && pos + ret < size) {
1346 				struct iov_iter i;
1347 				int zlen = min_t(size_t, len - ret,
1348 						 size - pos - ret);
1349 
1350 				iov_iter_bvec(&i, READ, bvecs, num_pages, len);
1351 				iov_iter_advance(&i, ret);
1352 				iov_iter_zero(zlen, &i);
1353 				ret += zlen;
1354 			}
1355 			if (ret >= 0)
1356 				len = ret;
1357 		}
1358 
1359 		put_bvecs(bvecs, num_pages, should_dirty);
1360 		ceph_osdc_put_request(req);
1361 		if (ret < 0)
1362 			break;
1363 
1364 		pos += len;
1365 		if (!write && pos >= size)
1366 			break;
1367 
1368 		if (write && pos > size) {
1369 			if (ceph_inode_set_size(inode, pos))
1370 				ceph_check_caps(ceph_inode(inode),
1371 						CHECK_CAPS_AUTHONLY,
1372 						NULL);
1373 		}
1374 	}
1375 
1376 	if (aio_req) {
1377 		LIST_HEAD(osd_reqs);
1378 
1379 		if (aio_req->num_reqs == 0) {
1380 			kfree(aio_req);
1381 			return ret;
1382 		}
1383 
1384 		ceph_get_cap_refs(ci, write ? CEPH_CAP_FILE_WR :
1385 					      CEPH_CAP_FILE_RD);
1386 
1387 		list_splice(&aio_req->osd_reqs, &osd_reqs);
1388 		inode_dio_begin(inode);
1389 		while (!list_empty(&osd_reqs)) {
1390 			req = list_first_entry(&osd_reqs,
1391 					       struct ceph_osd_request,
1392 					       r_private_item);
1393 			list_del_init(&req->r_private_item);
1394 			if (ret >= 0)
1395 				ret = ceph_osdc_start_request(req->r_osdc,
1396 							      req, false);
1397 			if (ret < 0) {
1398 				req->r_result = ret;
1399 				ceph_aio_complete_req(req);
1400 			}
1401 		}
1402 		return -EIOCBQUEUED;
1403 	}
1404 
1405 	if (ret != -EOLDSNAPC && pos > iocb->ki_pos) {
1406 		ret = pos - iocb->ki_pos;
1407 		iocb->ki_pos = pos;
1408 	}
1409 	return ret;
1410 }
1411 
1412 /*
1413  * Synchronous write, straight from __user pointer or user pages.
1414  *
1415  * If write spans object boundary, just do multiple writes.  (For a
1416  * correct atomic write, we should e.g. take write locks on all
1417  * objects, rollback on failure, etc.)
1418  */
1419 static ssize_t
ceph_sync_write(struct kiocb * iocb,struct iov_iter * from,loff_t pos,struct ceph_snap_context * snapc)1420 ceph_sync_write(struct kiocb *iocb, struct iov_iter *from, loff_t pos,
1421 		struct ceph_snap_context *snapc)
1422 {
1423 	struct file *file = iocb->ki_filp;
1424 	struct inode *inode = file_inode(file);
1425 	struct ceph_inode_info *ci = ceph_inode(inode);
1426 	struct ceph_fs_client *fsc = ceph_inode_to_client(inode);
1427 	struct ceph_vino vino;
1428 	struct ceph_osd_request *req;
1429 	struct page **pages;
1430 	u64 len;
1431 	int num_pages;
1432 	int written = 0;
1433 	int flags;
1434 	int ret;
1435 	bool check_caps = false;
1436 	struct timespec64 mtime = current_time(inode);
1437 	size_t count = iov_iter_count(from);
1438 
1439 	if (ceph_snap(file_inode(file)) != CEPH_NOSNAP)
1440 		return -EROFS;
1441 
1442 	dout("sync_write on file %p %lld~%u snapc %p seq %lld\n",
1443 	     file, pos, (unsigned)count, snapc, snapc->seq);
1444 
1445 	ret = filemap_write_and_wait_range(inode->i_mapping,
1446 					   pos, pos + count - 1);
1447 	if (ret < 0)
1448 		return ret;
1449 
1450 	ret = invalidate_inode_pages2_range(inode->i_mapping,
1451 					    pos >> PAGE_SHIFT,
1452 					    (pos + count - 1) >> PAGE_SHIFT);
1453 	if (ret < 0)
1454 		dout("invalidate_inode_pages2_range returned %d\n", ret);
1455 
1456 	flags = /* CEPH_OSD_FLAG_ORDERSNAP | */ CEPH_OSD_FLAG_WRITE;
1457 
1458 	while ((len = iov_iter_count(from)) > 0) {
1459 		size_t left;
1460 		int n;
1461 
1462 		vino = ceph_vino(inode);
1463 		req = ceph_osdc_new_request(&fsc->client->osdc, &ci->i_layout,
1464 					    vino, pos, &len, 0, 1,
1465 					    CEPH_OSD_OP_WRITE, flags, snapc,
1466 					    ci->i_truncate_seq,
1467 					    ci->i_truncate_size,
1468 					    false);
1469 		if (IS_ERR(req)) {
1470 			ret = PTR_ERR(req);
1471 			break;
1472 		}
1473 
1474 		/*
1475 		 * write from beginning of first page,
1476 		 * regardless of io alignment
1477 		 */
1478 		num_pages = (len + PAGE_SIZE - 1) >> PAGE_SHIFT;
1479 
1480 		pages = ceph_alloc_page_vector(num_pages, GFP_KERNEL);
1481 		if (IS_ERR(pages)) {
1482 			ret = PTR_ERR(pages);
1483 			goto out;
1484 		}
1485 
1486 		left = len;
1487 		for (n = 0; n < num_pages; n++) {
1488 			size_t plen = min_t(size_t, left, PAGE_SIZE);
1489 			ret = copy_page_from_iter(pages[n], 0, plen, from);
1490 			if (ret != plen) {
1491 				ret = -EFAULT;
1492 				break;
1493 			}
1494 			left -= ret;
1495 		}
1496 
1497 		if (ret < 0) {
1498 			ceph_release_page_vector(pages, num_pages);
1499 			goto out;
1500 		}
1501 
1502 		req->r_inode = inode;
1503 
1504 		osd_req_op_extent_osd_data_pages(req, 0, pages, len, 0,
1505 						false, true);
1506 
1507 		req->r_mtime = mtime;
1508 		ret = ceph_osdc_start_request(&fsc->client->osdc, req, false);
1509 		if (!ret)
1510 			ret = ceph_osdc_wait_request(&fsc->client->osdc, req);
1511 
1512 		ceph_update_write_metrics(&fsc->mdsc->metric, req->r_start_latency,
1513 					  req->r_end_latency, len, ret);
1514 out:
1515 		ceph_osdc_put_request(req);
1516 		if (ret != 0) {
1517 			ceph_set_error_write(ci);
1518 			break;
1519 		}
1520 
1521 		ceph_clear_error_write(ci);
1522 		pos += len;
1523 		written += len;
1524 		if (pos > i_size_read(inode)) {
1525 			check_caps = ceph_inode_set_size(inode, pos);
1526 			if (check_caps)
1527 				ceph_check_caps(ceph_inode(inode),
1528 						CHECK_CAPS_AUTHONLY,
1529 						NULL);
1530 		}
1531 
1532 	}
1533 
1534 	if (ret != -EOLDSNAPC && written > 0) {
1535 		ret = written;
1536 		iocb->ki_pos = pos;
1537 	}
1538 	return ret;
1539 }
1540 
1541 /*
1542  * Wrap generic_file_aio_read with checks for cap bits on the inode.
1543  * Atomically grab references, so that those bits are not released
1544  * back to the MDS mid-read.
1545  *
1546  * Hmm, the sync read case isn't actually async... should it be?
1547  */
ceph_read_iter(struct kiocb * iocb,struct iov_iter * to)1548 static ssize_t ceph_read_iter(struct kiocb *iocb, struct iov_iter *to)
1549 {
1550 	struct file *filp = iocb->ki_filp;
1551 	struct ceph_file_info *fi = filp->private_data;
1552 	size_t len = iov_iter_count(to);
1553 	struct inode *inode = file_inode(filp);
1554 	struct ceph_inode_info *ci = ceph_inode(inode);
1555 	bool direct_lock = iocb->ki_flags & IOCB_DIRECT;
1556 	ssize_t ret;
1557 	int want, got = 0;
1558 	int retry_op = 0, read = 0;
1559 
1560 again:
1561 	dout("aio_read %p %llx.%llx %llu~%u trying to get caps on %p\n",
1562 	     inode, ceph_vinop(inode), iocb->ki_pos, (unsigned)len, inode);
1563 
1564 	if (direct_lock)
1565 		ceph_start_io_direct(inode);
1566 	else
1567 		ceph_start_io_read(inode);
1568 
1569 	if (fi->fmode & CEPH_FILE_MODE_LAZY)
1570 		want = CEPH_CAP_FILE_CACHE | CEPH_CAP_FILE_LAZYIO;
1571 	else
1572 		want = CEPH_CAP_FILE_CACHE;
1573 	ret = ceph_get_caps(filp, CEPH_CAP_FILE_RD, want, -1, &got);
1574 	if (ret < 0) {
1575 		if (iocb->ki_flags & IOCB_DIRECT)
1576 			ceph_end_io_direct(inode);
1577 		else
1578 			ceph_end_io_read(inode);
1579 		return ret;
1580 	}
1581 
1582 	if ((got & (CEPH_CAP_FILE_CACHE|CEPH_CAP_FILE_LAZYIO)) == 0 ||
1583 	    (iocb->ki_flags & IOCB_DIRECT) ||
1584 	    (fi->flags & CEPH_F_SYNC)) {
1585 
1586 		dout("aio_sync_read %p %llx.%llx %llu~%u got cap refs on %s\n",
1587 		     inode, ceph_vinop(inode), iocb->ki_pos, (unsigned)len,
1588 		     ceph_cap_string(got));
1589 
1590 		if (ci->i_inline_version == CEPH_INLINE_NONE) {
1591 			if (!retry_op && (iocb->ki_flags & IOCB_DIRECT)) {
1592 				ret = ceph_direct_read_write(iocb, to,
1593 							     NULL, NULL);
1594 				if (ret >= 0 && ret < len)
1595 					retry_op = CHECK_EOF;
1596 			} else {
1597 				ret = ceph_sync_read(iocb, to, &retry_op);
1598 			}
1599 		} else {
1600 			retry_op = READ_INLINE;
1601 		}
1602 	} else {
1603 		CEPH_DEFINE_RW_CONTEXT(rw_ctx, got);
1604 		dout("aio_read %p %llx.%llx %llu~%u got cap refs on %s\n",
1605 		     inode, ceph_vinop(inode), iocb->ki_pos, (unsigned)len,
1606 		     ceph_cap_string(got));
1607 		ceph_add_rw_context(fi, &rw_ctx);
1608 		ret = generic_file_read_iter(iocb, to);
1609 		ceph_del_rw_context(fi, &rw_ctx);
1610 	}
1611 
1612 	dout("aio_read %p %llx.%llx dropping cap refs on %s = %d\n",
1613 	     inode, ceph_vinop(inode), ceph_cap_string(got), (int)ret);
1614 	ceph_put_cap_refs(ci, got);
1615 
1616 	if (direct_lock)
1617 		ceph_end_io_direct(inode);
1618 	else
1619 		ceph_end_io_read(inode);
1620 
1621 	if (retry_op > HAVE_RETRIED && ret >= 0) {
1622 		int statret;
1623 		struct page *page = NULL;
1624 		loff_t i_size;
1625 		if (retry_op == READ_INLINE) {
1626 			page = __page_cache_alloc(GFP_KERNEL);
1627 			if (!page)
1628 				return -ENOMEM;
1629 		}
1630 
1631 		statret = __ceph_do_getattr(inode, page,
1632 					    CEPH_STAT_CAP_INLINE_DATA, !!page);
1633 		if (statret < 0) {
1634 			if (page)
1635 				__free_page(page);
1636 			if (statret == -ENODATA) {
1637 				BUG_ON(retry_op != READ_INLINE);
1638 				goto again;
1639 			}
1640 			return statret;
1641 		}
1642 
1643 		i_size = i_size_read(inode);
1644 		if (retry_op == READ_INLINE) {
1645 			BUG_ON(ret > 0 || read > 0);
1646 			if (iocb->ki_pos < i_size &&
1647 			    iocb->ki_pos < PAGE_SIZE) {
1648 				loff_t end = min_t(loff_t, i_size,
1649 						   iocb->ki_pos + len);
1650 				end = min_t(loff_t, end, PAGE_SIZE);
1651 				if (statret < end)
1652 					zero_user_segment(page, statret, end);
1653 				ret = copy_page_to_iter(page,
1654 						iocb->ki_pos & ~PAGE_MASK,
1655 						end - iocb->ki_pos, to);
1656 				iocb->ki_pos += ret;
1657 				read += ret;
1658 			}
1659 			if (iocb->ki_pos < i_size && read < len) {
1660 				size_t zlen = min_t(size_t, len - read,
1661 						    i_size - iocb->ki_pos);
1662 				ret = iov_iter_zero(zlen, to);
1663 				iocb->ki_pos += ret;
1664 				read += ret;
1665 			}
1666 			__free_pages(page, 0);
1667 			return read;
1668 		}
1669 
1670 		/* hit EOF or hole? */
1671 		if (retry_op == CHECK_EOF && iocb->ki_pos < i_size &&
1672 		    ret < len) {
1673 			dout("sync_read hit hole, ppos %lld < size %lld"
1674 			     ", reading more\n", iocb->ki_pos, i_size);
1675 
1676 			read += ret;
1677 			len -= ret;
1678 			retry_op = HAVE_RETRIED;
1679 			goto again;
1680 		}
1681 	}
1682 
1683 	if (ret >= 0)
1684 		ret += read;
1685 
1686 	return ret;
1687 }
1688 
1689 /*
1690  * Take cap references to avoid releasing caps to MDS mid-write.
1691  *
1692  * If we are synchronous, and write with an old snap context, the OSD
1693  * may return EOLDSNAPC.  In that case, retry the write.. _after_
1694  * dropping our cap refs and allowing the pending snap to logically
1695  * complete _before_ this write occurs.
1696  *
1697  * If we are near ENOSPC, write synchronously.
1698  */
ceph_write_iter(struct kiocb * iocb,struct iov_iter * from)1699 static ssize_t ceph_write_iter(struct kiocb *iocb, struct iov_iter *from)
1700 {
1701 	struct file *file = iocb->ki_filp;
1702 	struct ceph_file_info *fi = file->private_data;
1703 	struct inode *inode = file_inode(file);
1704 	struct ceph_inode_info *ci = ceph_inode(inode);
1705 	struct ceph_fs_client *fsc = ceph_inode_to_client(inode);
1706 	struct ceph_osd_client *osdc = &fsc->client->osdc;
1707 	struct ceph_cap_flush *prealloc_cf;
1708 	ssize_t count, written = 0;
1709 	int err, want, got;
1710 	bool direct_lock = false;
1711 	u32 map_flags;
1712 	u64 pool_flags;
1713 	loff_t pos;
1714 	loff_t limit = max(i_size_read(inode), fsc->max_file_size);
1715 
1716 	if (ceph_snap(inode) != CEPH_NOSNAP)
1717 		return -EROFS;
1718 
1719 	prealloc_cf = ceph_alloc_cap_flush();
1720 	if (!prealloc_cf)
1721 		return -ENOMEM;
1722 
1723 	if ((iocb->ki_flags & (IOCB_DIRECT | IOCB_APPEND)) == IOCB_DIRECT)
1724 		direct_lock = true;
1725 
1726 retry_snap:
1727 	if (direct_lock)
1728 		ceph_start_io_direct(inode);
1729 	else
1730 		ceph_start_io_write(inode);
1731 
1732 	/* We can write back this queue in page reclaim */
1733 	current->backing_dev_info = inode_to_bdi(inode);
1734 
1735 	if (iocb->ki_flags & IOCB_APPEND) {
1736 		err = ceph_do_getattr(inode, CEPH_STAT_CAP_SIZE, false);
1737 		if (err < 0)
1738 			goto out;
1739 	}
1740 
1741 	err = generic_write_checks(iocb, from);
1742 	if (err <= 0)
1743 		goto out;
1744 
1745 	pos = iocb->ki_pos;
1746 	if (unlikely(pos >= limit)) {
1747 		err = -EFBIG;
1748 		goto out;
1749 	} else {
1750 		iov_iter_truncate(from, limit - pos);
1751 	}
1752 
1753 	count = iov_iter_count(from);
1754 	if (ceph_quota_is_max_bytes_exceeded(inode, pos + count)) {
1755 		err = -EDQUOT;
1756 		goto out;
1757 	}
1758 
1759 	down_read(&osdc->lock);
1760 	map_flags = osdc->osdmap->flags;
1761 	pool_flags = ceph_pg_pool_flags(osdc->osdmap, ci->i_layout.pool_id);
1762 	up_read(&osdc->lock);
1763 	if ((map_flags & CEPH_OSDMAP_FULL) ||
1764 	    (pool_flags & CEPH_POOL_FLAG_FULL)) {
1765 		err = -ENOSPC;
1766 		goto out;
1767 	}
1768 
1769 	err = file_remove_privs(file);
1770 	if (err)
1771 		goto out;
1772 
1773 	if (ci->i_inline_version != CEPH_INLINE_NONE) {
1774 		err = ceph_uninline_data(file, NULL);
1775 		if (err < 0)
1776 			goto out;
1777 	}
1778 
1779 	dout("aio_write %p %llx.%llx %llu~%zd getting caps. i_size %llu\n",
1780 	     inode, ceph_vinop(inode), pos, count, i_size_read(inode));
1781 	if (fi->fmode & CEPH_FILE_MODE_LAZY)
1782 		want = CEPH_CAP_FILE_BUFFER | CEPH_CAP_FILE_LAZYIO;
1783 	else
1784 		want = CEPH_CAP_FILE_BUFFER;
1785 	got = 0;
1786 	err = ceph_get_caps(file, CEPH_CAP_FILE_WR, want, pos + count, &got);
1787 	if (err < 0)
1788 		goto out;
1789 
1790 	err = file_update_time(file);
1791 	if (err)
1792 		goto out_caps;
1793 
1794 	inode_inc_iversion_raw(inode);
1795 
1796 	dout("aio_write %p %llx.%llx %llu~%zd got cap refs on %s\n",
1797 	     inode, ceph_vinop(inode), pos, count, ceph_cap_string(got));
1798 
1799 	if ((got & (CEPH_CAP_FILE_BUFFER|CEPH_CAP_FILE_LAZYIO)) == 0 ||
1800 	    (iocb->ki_flags & IOCB_DIRECT) || (fi->flags & CEPH_F_SYNC) ||
1801 	    (ci->i_ceph_flags & CEPH_I_ERROR_WRITE)) {
1802 		struct ceph_snap_context *snapc;
1803 		struct iov_iter data;
1804 
1805 		spin_lock(&ci->i_ceph_lock);
1806 		if (__ceph_have_pending_cap_snap(ci)) {
1807 			struct ceph_cap_snap *capsnap =
1808 					list_last_entry(&ci->i_cap_snaps,
1809 							struct ceph_cap_snap,
1810 							ci_item);
1811 			snapc = ceph_get_snap_context(capsnap->context);
1812 		} else {
1813 			BUG_ON(!ci->i_head_snapc);
1814 			snapc = ceph_get_snap_context(ci->i_head_snapc);
1815 		}
1816 		spin_unlock(&ci->i_ceph_lock);
1817 
1818 		/* we might need to revert back to that point */
1819 		data = *from;
1820 		if (iocb->ki_flags & IOCB_DIRECT)
1821 			written = ceph_direct_read_write(iocb, &data, snapc,
1822 							 &prealloc_cf);
1823 		else
1824 			written = ceph_sync_write(iocb, &data, pos, snapc);
1825 		if (direct_lock)
1826 			ceph_end_io_direct(inode);
1827 		else
1828 			ceph_end_io_write(inode);
1829 		if (written > 0)
1830 			iov_iter_advance(from, written);
1831 		ceph_put_snap_context(snapc);
1832 	} else {
1833 		/*
1834 		 * No need to acquire the i_truncate_mutex. Because
1835 		 * the MDS revokes Fwb caps before sending truncate
1836 		 * message to us. We can't get Fwb cap while there
1837 		 * are pending vmtruncate. So write and vmtruncate
1838 		 * can not run at the same time
1839 		 */
1840 		written = generic_perform_write(file, from, pos);
1841 		if (likely(written >= 0))
1842 			iocb->ki_pos = pos + written;
1843 		ceph_end_io_write(inode);
1844 	}
1845 
1846 	if (written >= 0) {
1847 		int dirty;
1848 
1849 		spin_lock(&ci->i_ceph_lock);
1850 		ci->i_inline_version = CEPH_INLINE_NONE;
1851 		dirty = __ceph_mark_dirty_caps(ci, CEPH_CAP_FILE_WR,
1852 					       &prealloc_cf);
1853 		spin_unlock(&ci->i_ceph_lock);
1854 		if (dirty)
1855 			__mark_inode_dirty(inode, dirty);
1856 		if (ceph_quota_is_max_bytes_approaching(inode, iocb->ki_pos))
1857 			ceph_check_caps(ci, 0, NULL);
1858 	}
1859 
1860 	dout("aio_write %p %llx.%llx %llu~%u  dropping cap refs on %s\n",
1861 	     inode, ceph_vinop(inode), pos, (unsigned)count,
1862 	     ceph_cap_string(got));
1863 	ceph_put_cap_refs(ci, got);
1864 
1865 	if (written == -EOLDSNAPC) {
1866 		dout("aio_write %p %llx.%llx %llu~%u" "got EOLDSNAPC, retrying\n",
1867 		     inode, ceph_vinop(inode), pos, (unsigned)count);
1868 		goto retry_snap;
1869 	}
1870 
1871 	if (written >= 0) {
1872 		if ((map_flags & CEPH_OSDMAP_NEARFULL) ||
1873 		    (pool_flags & CEPH_POOL_FLAG_NEARFULL))
1874 			iocb->ki_flags |= IOCB_DSYNC;
1875 		written = generic_write_sync(iocb, written);
1876 	}
1877 
1878 	goto out_unlocked;
1879 out_caps:
1880 	ceph_put_cap_refs(ci, got);
1881 out:
1882 	if (direct_lock)
1883 		ceph_end_io_direct(inode);
1884 	else
1885 		ceph_end_io_write(inode);
1886 out_unlocked:
1887 	ceph_free_cap_flush(prealloc_cf);
1888 	current->backing_dev_info = NULL;
1889 	return written ? written : err;
1890 }
1891 
1892 /*
1893  * llseek.  be sure to verify file size on SEEK_END.
1894  */
ceph_llseek(struct file * file,loff_t offset,int whence)1895 static loff_t ceph_llseek(struct file *file, loff_t offset, int whence)
1896 {
1897 	struct inode *inode = file->f_mapping->host;
1898 	struct ceph_fs_client *fsc = ceph_inode_to_client(inode);
1899 	loff_t i_size;
1900 	loff_t ret;
1901 
1902 	inode_lock(inode);
1903 
1904 	if (whence == SEEK_END || whence == SEEK_DATA || whence == SEEK_HOLE) {
1905 		ret = ceph_do_getattr(inode, CEPH_STAT_CAP_SIZE, false);
1906 		if (ret < 0)
1907 			goto out;
1908 	}
1909 
1910 	i_size = i_size_read(inode);
1911 	switch (whence) {
1912 	case SEEK_END:
1913 		offset += i_size;
1914 		break;
1915 	case SEEK_CUR:
1916 		/*
1917 		 * Here we special-case the lseek(fd, 0, SEEK_CUR)
1918 		 * position-querying operation.  Avoid rewriting the "same"
1919 		 * f_pos value back to the file because a concurrent read(),
1920 		 * write() or lseek() might have altered it
1921 		 */
1922 		if (offset == 0) {
1923 			ret = file->f_pos;
1924 			goto out;
1925 		}
1926 		offset += file->f_pos;
1927 		break;
1928 	case SEEK_DATA:
1929 		if (offset < 0 || offset >= i_size) {
1930 			ret = -ENXIO;
1931 			goto out;
1932 		}
1933 		break;
1934 	case SEEK_HOLE:
1935 		if (offset < 0 || offset >= i_size) {
1936 			ret = -ENXIO;
1937 			goto out;
1938 		}
1939 		offset = i_size;
1940 		break;
1941 	}
1942 
1943 	ret = vfs_setpos(file, offset, max(i_size, fsc->max_file_size));
1944 
1945 out:
1946 	inode_unlock(inode);
1947 	return ret;
1948 }
1949 
ceph_zero_partial_page(struct inode * inode,loff_t offset,unsigned size)1950 static inline void ceph_zero_partial_page(
1951 	struct inode *inode, loff_t offset, unsigned size)
1952 {
1953 	struct page *page;
1954 	pgoff_t index = offset >> PAGE_SHIFT;
1955 
1956 	page = find_lock_page(inode->i_mapping, index);
1957 	if (page) {
1958 		wait_on_page_writeback(page);
1959 		zero_user(page, offset & (PAGE_SIZE - 1), size);
1960 		unlock_page(page);
1961 		put_page(page);
1962 	}
1963 }
1964 
ceph_zero_pagecache_range(struct inode * inode,loff_t offset,loff_t length)1965 static void ceph_zero_pagecache_range(struct inode *inode, loff_t offset,
1966 				      loff_t length)
1967 {
1968 	loff_t nearly = round_up(offset, PAGE_SIZE);
1969 	if (offset < nearly) {
1970 		loff_t size = nearly - offset;
1971 		if (length < size)
1972 			size = length;
1973 		ceph_zero_partial_page(inode, offset, size);
1974 		offset += size;
1975 		length -= size;
1976 	}
1977 	if (length >= PAGE_SIZE) {
1978 		loff_t size = round_down(length, PAGE_SIZE);
1979 		truncate_pagecache_range(inode, offset, offset + size - 1);
1980 		offset += size;
1981 		length -= size;
1982 	}
1983 	if (length)
1984 		ceph_zero_partial_page(inode, offset, length);
1985 }
1986 
ceph_zero_partial_object(struct inode * inode,loff_t offset,loff_t * length)1987 static int ceph_zero_partial_object(struct inode *inode,
1988 				    loff_t offset, loff_t *length)
1989 {
1990 	struct ceph_inode_info *ci = ceph_inode(inode);
1991 	struct ceph_fs_client *fsc = ceph_inode_to_client(inode);
1992 	struct ceph_osd_request *req;
1993 	int ret = 0;
1994 	loff_t zero = 0;
1995 	int op;
1996 
1997 	if (!length) {
1998 		op = offset ? CEPH_OSD_OP_DELETE : CEPH_OSD_OP_TRUNCATE;
1999 		length = &zero;
2000 	} else {
2001 		op = CEPH_OSD_OP_ZERO;
2002 	}
2003 
2004 	req = ceph_osdc_new_request(&fsc->client->osdc, &ci->i_layout,
2005 					ceph_vino(inode),
2006 					offset, length,
2007 					0, 1, op,
2008 					CEPH_OSD_FLAG_WRITE,
2009 					NULL, 0, 0, false);
2010 	if (IS_ERR(req)) {
2011 		ret = PTR_ERR(req);
2012 		goto out;
2013 	}
2014 
2015 	req->r_mtime = inode->i_mtime;
2016 	ret = ceph_osdc_start_request(&fsc->client->osdc, req, false);
2017 	if (!ret) {
2018 		ret = ceph_osdc_wait_request(&fsc->client->osdc, req);
2019 		if (ret == -ENOENT)
2020 			ret = 0;
2021 	}
2022 	ceph_osdc_put_request(req);
2023 
2024 out:
2025 	return ret;
2026 }
2027 
ceph_zero_objects(struct inode * inode,loff_t offset,loff_t length)2028 static int ceph_zero_objects(struct inode *inode, loff_t offset, loff_t length)
2029 {
2030 	int ret = 0;
2031 	struct ceph_inode_info *ci = ceph_inode(inode);
2032 	s32 stripe_unit = ci->i_layout.stripe_unit;
2033 	s32 stripe_count = ci->i_layout.stripe_count;
2034 	s32 object_size = ci->i_layout.object_size;
2035 	u64 object_set_size = object_size * stripe_count;
2036 	u64 nearly, t;
2037 
2038 	/* round offset up to next period boundary */
2039 	nearly = offset + object_set_size - 1;
2040 	t = nearly;
2041 	nearly -= do_div(t, object_set_size);
2042 
2043 	while (length && offset < nearly) {
2044 		loff_t size = length;
2045 		ret = ceph_zero_partial_object(inode, offset, &size);
2046 		if (ret < 0)
2047 			return ret;
2048 		offset += size;
2049 		length -= size;
2050 	}
2051 	while (length >= object_set_size) {
2052 		int i;
2053 		loff_t pos = offset;
2054 		for (i = 0; i < stripe_count; ++i) {
2055 			ret = ceph_zero_partial_object(inode, pos, NULL);
2056 			if (ret < 0)
2057 				return ret;
2058 			pos += stripe_unit;
2059 		}
2060 		offset += object_set_size;
2061 		length -= object_set_size;
2062 	}
2063 	while (length) {
2064 		loff_t size = length;
2065 		ret = ceph_zero_partial_object(inode, offset, &size);
2066 		if (ret < 0)
2067 			return ret;
2068 		offset += size;
2069 		length -= size;
2070 	}
2071 	return ret;
2072 }
2073 
ceph_fallocate(struct file * file,int mode,loff_t offset,loff_t length)2074 static long ceph_fallocate(struct file *file, int mode,
2075 				loff_t offset, loff_t length)
2076 {
2077 	struct ceph_file_info *fi = file->private_data;
2078 	struct inode *inode = file_inode(file);
2079 	struct ceph_inode_info *ci = ceph_inode(inode);
2080 	struct ceph_cap_flush *prealloc_cf;
2081 	int want, got = 0;
2082 	int dirty;
2083 	int ret = 0;
2084 	loff_t endoff = 0;
2085 	loff_t size;
2086 
2087 	dout("%s %p %llx.%llx mode %x, offset %llu length %llu\n", __func__,
2088 	     inode, ceph_vinop(inode), mode, offset, length);
2089 
2090 	if (mode != (FALLOC_FL_KEEP_SIZE | FALLOC_FL_PUNCH_HOLE))
2091 		return -EOPNOTSUPP;
2092 
2093 	if (!S_ISREG(inode->i_mode))
2094 		return -EOPNOTSUPP;
2095 
2096 	prealloc_cf = ceph_alloc_cap_flush();
2097 	if (!prealloc_cf)
2098 		return -ENOMEM;
2099 
2100 	inode_lock(inode);
2101 
2102 	if (ceph_snap(inode) != CEPH_NOSNAP) {
2103 		ret = -EROFS;
2104 		goto unlock;
2105 	}
2106 
2107 	if (ci->i_inline_version != CEPH_INLINE_NONE) {
2108 		ret = ceph_uninline_data(file, NULL);
2109 		if (ret < 0)
2110 			goto unlock;
2111 	}
2112 
2113 	size = i_size_read(inode);
2114 
2115 	/* Are we punching a hole beyond EOF? */
2116 	if (offset >= size)
2117 		goto unlock;
2118 	if ((offset + length) > size)
2119 		length = size - offset;
2120 
2121 	if (fi->fmode & CEPH_FILE_MODE_LAZY)
2122 		want = CEPH_CAP_FILE_BUFFER | CEPH_CAP_FILE_LAZYIO;
2123 	else
2124 		want = CEPH_CAP_FILE_BUFFER;
2125 
2126 	ret = ceph_get_caps(file, CEPH_CAP_FILE_WR, want, endoff, &got);
2127 	if (ret < 0)
2128 		goto unlock;
2129 
2130 	ret = file_modified(file);
2131 	if (ret)
2132 		goto put_caps;
2133 
2134 	filemap_invalidate_lock(inode->i_mapping);
2135 	ceph_zero_pagecache_range(inode, offset, length);
2136 	ret = ceph_zero_objects(inode, offset, length);
2137 
2138 	if (!ret) {
2139 		spin_lock(&ci->i_ceph_lock);
2140 		ci->i_inline_version = CEPH_INLINE_NONE;
2141 		dirty = __ceph_mark_dirty_caps(ci, CEPH_CAP_FILE_WR,
2142 					       &prealloc_cf);
2143 		spin_unlock(&ci->i_ceph_lock);
2144 		if (dirty)
2145 			__mark_inode_dirty(inode, dirty);
2146 	}
2147 	filemap_invalidate_unlock(inode->i_mapping);
2148 
2149 put_caps:
2150 	ceph_put_cap_refs(ci, got);
2151 unlock:
2152 	inode_unlock(inode);
2153 	ceph_free_cap_flush(prealloc_cf);
2154 	return ret;
2155 }
2156 
2157 /*
2158  * This function tries to get FILE_WR capabilities for dst_ci and FILE_RD for
2159  * src_ci.  Two attempts are made to obtain both caps, and an error is return if
2160  * this fails; zero is returned on success.
2161  */
get_rd_wr_caps(struct file * src_filp,int * src_got,struct file * dst_filp,loff_t dst_endoff,int * dst_got)2162 static int get_rd_wr_caps(struct file *src_filp, int *src_got,
2163 			  struct file *dst_filp,
2164 			  loff_t dst_endoff, int *dst_got)
2165 {
2166 	int ret = 0;
2167 	bool retrying = false;
2168 
2169 retry_caps:
2170 	ret = ceph_get_caps(dst_filp, CEPH_CAP_FILE_WR, CEPH_CAP_FILE_BUFFER,
2171 			    dst_endoff, dst_got);
2172 	if (ret < 0)
2173 		return ret;
2174 
2175 	/*
2176 	 * Since we're already holding the FILE_WR capability for the dst file,
2177 	 * we would risk a deadlock by using ceph_get_caps.  Thus, we'll do some
2178 	 * retry dance instead to try to get both capabilities.
2179 	 */
2180 	ret = ceph_try_get_caps(file_inode(src_filp),
2181 				CEPH_CAP_FILE_RD, CEPH_CAP_FILE_SHARED,
2182 				false, src_got);
2183 	if (ret <= 0) {
2184 		/* Start by dropping dst_ci caps and getting src_ci caps */
2185 		ceph_put_cap_refs(ceph_inode(file_inode(dst_filp)), *dst_got);
2186 		if (retrying) {
2187 			if (!ret)
2188 				/* ceph_try_get_caps masks EAGAIN */
2189 				ret = -EAGAIN;
2190 			return ret;
2191 		}
2192 		ret = ceph_get_caps(src_filp, CEPH_CAP_FILE_RD,
2193 				    CEPH_CAP_FILE_SHARED, -1, src_got);
2194 		if (ret < 0)
2195 			return ret;
2196 		/*... drop src_ci caps too, and retry */
2197 		ceph_put_cap_refs(ceph_inode(file_inode(src_filp)), *src_got);
2198 		retrying = true;
2199 		goto retry_caps;
2200 	}
2201 	return ret;
2202 }
2203 
put_rd_wr_caps(struct ceph_inode_info * src_ci,int src_got,struct ceph_inode_info * dst_ci,int dst_got)2204 static void put_rd_wr_caps(struct ceph_inode_info *src_ci, int src_got,
2205 			   struct ceph_inode_info *dst_ci, int dst_got)
2206 {
2207 	ceph_put_cap_refs(src_ci, src_got);
2208 	ceph_put_cap_refs(dst_ci, dst_got);
2209 }
2210 
2211 /*
2212  * This function does several size-related checks, returning an error if:
2213  *  - source file is smaller than off+len
2214  *  - destination file size is not OK (inode_newsize_ok())
2215  *  - max bytes quotas is exceeded
2216  */
is_file_size_ok(struct inode * src_inode,struct inode * dst_inode,loff_t src_off,loff_t dst_off,size_t len)2217 static int is_file_size_ok(struct inode *src_inode, struct inode *dst_inode,
2218 			   loff_t src_off, loff_t dst_off, size_t len)
2219 {
2220 	loff_t size, endoff;
2221 
2222 	size = i_size_read(src_inode);
2223 	/*
2224 	 * Don't copy beyond source file EOF.  Instead of simply setting length
2225 	 * to (size - src_off), just drop to VFS default implementation, as the
2226 	 * local i_size may be stale due to other clients writing to the source
2227 	 * inode.
2228 	 */
2229 	if (src_off + len > size) {
2230 		dout("Copy beyond EOF (%llu + %zu > %llu)\n",
2231 		     src_off, len, size);
2232 		return -EOPNOTSUPP;
2233 	}
2234 	size = i_size_read(dst_inode);
2235 
2236 	endoff = dst_off + len;
2237 	if (inode_newsize_ok(dst_inode, endoff))
2238 		return -EOPNOTSUPP;
2239 
2240 	if (ceph_quota_is_max_bytes_exceeded(dst_inode, endoff))
2241 		return -EDQUOT;
2242 
2243 	return 0;
2244 }
2245 
ceph_do_objects_copy(struct ceph_inode_info * src_ci,u64 * src_off,struct ceph_inode_info * dst_ci,u64 * dst_off,struct ceph_fs_client * fsc,size_t len,unsigned int flags)2246 static ssize_t ceph_do_objects_copy(struct ceph_inode_info *src_ci, u64 *src_off,
2247 				    struct ceph_inode_info *dst_ci, u64 *dst_off,
2248 				    struct ceph_fs_client *fsc,
2249 				    size_t len, unsigned int flags)
2250 {
2251 	struct ceph_object_locator src_oloc, dst_oloc;
2252 	struct ceph_object_id src_oid, dst_oid;
2253 	size_t bytes = 0;
2254 	u64 src_objnum, src_objoff, dst_objnum, dst_objoff;
2255 	u32 src_objlen, dst_objlen;
2256 	u32 object_size = src_ci->i_layout.object_size;
2257 	int ret;
2258 
2259 	src_oloc.pool = src_ci->i_layout.pool_id;
2260 	src_oloc.pool_ns = ceph_try_get_string(src_ci->i_layout.pool_ns);
2261 	dst_oloc.pool = dst_ci->i_layout.pool_id;
2262 	dst_oloc.pool_ns = ceph_try_get_string(dst_ci->i_layout.pool_ns);
2263 
2264 	while (len >= object_size) {
2265 		ceph_calc_file_object_mapping(&src_ci->i_layout, *src_off,
2266 					      object_size, &src_objnum,
2267 					      &src_objoff, &src_objlen);
2268 		ceph_calc_file_object_mapping(&dst_ci->i_layout, *dst_off,
2269 					      object_size, &dst_objnum,
2270 					      &dst_objoff, &dst_objlen);
2271 		ceph_oid_init(&src_oid);
2272 		ceph_oid_printf(&src_oid, "%llx.%08llx",
2273 				src_ci->i_vino.ino, src_objnum);
2274 		ceph_oid_init(&dst_oid);
2275 		ceph_oid_printf(&dst_oid, "%llx.%08llx",
2276 				dst_ci->i_vino.ino, dst_objnum);
2277 		/* Do an object remote copy */
2278 		ret = ceph_osdc_copy_from(&fsc->client->osdc,
2279 					  src_ci->i_vino.snap, 0,
2280 					  &src_oid, &src_oloc,
2281 					  CEPH_OSD_OP_FLAG_FADVISE_SEQUENTIAL |
2282 					  CEPH_OSD_OP_FLAG_FADVISE_NOCACHE,
2283 					  &dst_oid, &dst_oloc,
2284 					  CEPH_OSD_OP_FLAG_FADVISE_SEQUENTIAL |
2285 					  CEPH_OSD_OP_FLAG_FADVISE_DONTNEED,
2286 					  dst_ci->i_truncate_seq,
2287 					  dst_ci->i_truncate_size,
2288 					  CEPH_OSD_COPY_FROM_FLAG_TRUNCATE_SEQ);
2289 		if (ret) {
2290 			if (ret == -EOPNOTSUPP) {
2291 				fsc->have_copy_from2 = false;
2292 				pr_notice("OSDs don't support copy-from2; disabling copy offload\n");
2293 			}
2294 			dout("ceph_osdc_copy_from returned %d\n", ret);
2295 			if (!bytes)
2296 				bytes = ret;
2297 			goto out;
2298 		}
2299 		len -= object_size;
2300 		bytes += object_size;
2301 		*src_off += object_size;
2302 		*dst_off += object_size;
2303 	}
2304 
2305 out:
2306 	ceph_oloc_destroy(&src_oloc);
2307 	ceph_oloc_destroy(&dst_oloc);
2308 	return bytes;
2309 }
2310 
__ceph_copy_file_range(struct file * src_file,loff_t src_off,struct file * dst_file,loff_t dst_off,size_t len,unsigned int flags)2311 static ssize_t __ceph_copy_file_range(struct file *src_file, loff_t src_off,
2312 				      struct file *dst_file, loff_t dst_off,
2313 				      size_t len, unsigned int flags)
2314 {
2315 	struct inode *src_inode = file_inode(src_file);
2316 	struct inode *dst_inode = file_inode(dst_file);
2317 	struct ceph_inode_info *src_ci = ceph_inode(src_inode);
2318 	struct ceph_inode_info *dst_ci = ceph_inode(dst_inode);
2319 	struct ceph_cap_flush *prealloc_cf;
2320 	struct ceph_fs_client *src_fsc = ceph_inode_to_client(src_inode);
2321 	loff_t size;
2322 	ssize_t ret = -EIO, bytes;
2323 	u64 src_objnum, dst_objnum, src_objoff, dst_objoff;
2324 	u32 src_objlen, dst_objlen;
2325 	int src_got = 0, dst_got = 0, err, dirty;
2326 
2327 	if (src_inode->i_sb != dst_inode->i_sb) {
2328 		struct ceph_fs_client *dst_fsc = ceph_inode_to_client(dst_inode);
2329 
2330 		if (ceph_fsid_compare(&src_fsc->client->fsid,
2331 				      &dst_fsc->client->fsid)) {
2332 			dout("Copying files across clusters: src: %pU dst: %pU\n",
2333 			     &src_fsc->client->fsid, &dst_fsc->client->fsid);
2334 			return -EXDEV;
2335 		}
2336 	}
2337 	if (ceph_snap(dst_inode) != CEPH_NOSNAP)
2338 		return -EROFS;
2339 
2340 	/*
2341 	 * Some of the checks below will return -EOPNOTSUPP, which will force a
2342 	 * fallback to the default VFS copy_file_range implementation.  This is
2343 	 * desirable in several cases (for ex, the 'len' is smaller than the
2344 	 * size of the objects, or in cases where that would be more
2345 	 * efficient).
2346 	 */
2347 
2348 	if (ceph_test_mount_opt(src_fsc, NOCOPYFROM))
2349 		return -EOPNOTSUPP;
2350 
2351 	if (!src_fsc->have_copy_from2)
2352 		return -EOPNOTSUPP;
2353 
2354 	/*
2355 	 * Striped file layouts require that we copy partial objects, but the
2356 	 * OSD copy-from operation only supports full-object copies.  Limit
2357 	 * this to non-striped file layouts for now.
2358 	 */
2359 	if ((src_ci->i_layout.stripe_unit != dst_ci->i_layout.stripe_unit) ||
2360 	    (src_ci->i_layout.stripe_count != 1) ||
2361 	    (dst_ci->i_layout.stripe_count != 1) ||
2362 	    (src_ci->i_layout.object_size != dst_ci->i_layout.object_size)) {
2363 		dout("Invalid src/dst files layout\n");
2364 		return -EOPNOTSUPP;
2365 	}
2366 
2367 	if (len < src_ci->i_layout.object_size)
2368 		return -EOPNOTSUPP; /* no remote copy will be done */
2369 
2370 	prealloc_cf = ceph_alloc_cap_flush();
2371 	if (!prealloc_cf)
2372 		return -ENOMEM;
2373 
2374 	/* Start by sync'ing the source and destination files */
2375 	ret = file_write_and_wait_range(src_file, src_off, (src_off + len));
2376 	if (ret < 0) {
2377 		dout("failed to write src file (%zd)\n", ret);
2378 		goto out;
2379 	}
2380 	ret = file_write_and_wait_range(dst_file, dst_off, (dst_off + len));
2381 	if (ret < 0) {
2382 		dout("failed to write dst file (%zd)\n", ret);
2383 		goto out;
2384 	}
2385 
2386 	/*
2387 	 * We need FILE_WR caps for dst_ci and FILE_RD for src_ci as other
2388 	 * clients may have dirty data in their caches.  And OSDs know nothing
2389 	 * about caps, so they can't safely do the remote object copies.
2390 	 */
2391 	err = get_rd_wr_caps(src_file, &src_got,
2392 			     dst_file, (dst_off + len), &dst_got);
2393 	if (err < 0) {
2394 		dout("get_rd_wr_caps returned %d\n", err);
2395 		ret = -EOPNOTSUPP;
2396 		goto out;
2397 	}
2398 
2399 	ret = is_file_size_ok(src_inode, dst_inode, src_off, dst_off, len);
2400 	if (ret < 0)
2401 		goto out_caps;
2402 
2403 	/* Drop dst file cached pages */
2404 	ret = invalidate_inode_pages2_range(dst_inode->i_mapping,
2405 					    dst_off >> PAGE_SHIFT,
2406 					    (dst_off + len) >> PAGE_SHIFT);
2407 	if (ret < 0) {
2408 		dout("Failed to invalidate inode pages (%zd)\n", ret);
2409 		ret = 0; /* XXX */
2410 	}
2411 	ceph_calc_file_object_mapping(&src_ci->i_layout, src_off,
2412 				      src_ci->i_layout.object_size,
2413 				      &src_objnum, &src_objoff, &src_objlen);
2414 	ceph_calc_file_object_mapping(&dst_ci->i_layout, dst_off,
2415 				      dst_ci->i_layout.object_size,
2416 				      &dst_objnum, &dst_objoff, &dst_objlen);
2417 	/* object-level offsets need to the same */
2418 	if (src_objoff != dst_objoff) {
2419 		ret = -EOPNOTSUPP;
2420 		goto out_caps;
2421 	}
2422 
2423 	/*
2424 	 * Do a manual copy if the object offset isn't object aligned.
2425 	 * 'src_objlen' contains the bytes left until the end of the object,
2426 	 * starting at the src_off
2427 	 */
2428 	if (src_objoff) {
2429 		dout("Initial partial copy of %u bytes\n", src_objlen);
2430 
2431 		/*
2432 		 * we need to temporarily drop all caps as we'll be calling
2433 		 * {read,write}_iter, which will get caps again.
2434 		 */
2435 		put_rd_wr_caps(src_ci, src_got, dst_ci, dst_got);
2436 		ret = do_splice_direct(src_file, &src_off, dst_file,
2437 				       &dst_off, src_objlen, flags);
2438 		/* Abort on short copies or on error */
2439 		if (ret < (long)src_objlen) {
2440 			dout("Failed partial copy (%zd)\n", ret);
2441 			goto out;
2442 		}
2443 		len -= ret;
2444 		err = get_rd_wr_caps(src_file, &src_got,
2445 				     dst_file, (dst_off + len), &dst_got);
2446 		if (err < 0)
2447 			goto out;
2448 		err = is_file_size_ok(src_inode, dst_inode,
2449 				      src_off, dst_off, len);
2450 		if (err < 0)
2451 			goto out_caps;
2452 	}
2453 
2454 	size = i_size_read(dst_inode);
2455 	bytes = ceph_do_objects_copy(src_ci, &src_off, dst_ci, &dst_off,
2456 				     src_fsc, len, flags);
2457 	if (bytes <= 0) {
2458 		if (!ret)
2459 			ret = bytes;
2460 		goto out_caps;
2461 	}
2462 	dout("Copied %zu bytes out of %zu\n", bytes, len);
2463 	len -= bytes;
2464 	ret += bytes;
2465 
2466 	file_update_time(dst_file);
2467 	inode_inc_iversion_raw(dst_inode);
2468 
2469 	if (dst_off > size) {
2470 		/* Let the MDS know about dst file size change */
2471 		if (ceph_inode_set_size(dst_inode, dst_off) ||
2472 		    ceph_quota_is_max_bytes_approaching(dst_inode, dst_off))
2473 			ceph_check_caps(dst_ci, CHECK_CAPS_AUTHONLY, NULL);
2474 	}
2475 	/* Mark Fw dirty */
2476 	spin_lock(&dst_ci->i_ceph_lock);
2477 	dst_ci->i_inline_version = CEPH_INLINE_NONE;
2478 	dirty = __ceph_mark_dirty_caps(dst_ci, CEPH_CAP_FILE_WR, &prealloc_cf);
2479 	spin_unlock(&dst_ci->i_ceph_lock);
2480 	if (dirty)
2481 		__mark_inode_dirty(dst_inode, dirty);
2482 
2483 out_caps:
2484 	put_rd_wr_caps(src_ci, src_got, dst_ci, dst_got);
2485 
2486 	/*
2487 	 * Do the final manual copy if we still have some bytes left, unless
2488 	 * there were errors in remote object copies (len >= object_size).
2489 	 */
2490 	if (len && (len < src_ci->i_layout.object_size)) {
2491 		dout("Final partial copy of %zu bytes\n", len);
2492 		bytes = do_splice_direct(src_file, &src_off, dst_file,
2493 					 &dst_off, len, flags);
2494 		if (bytes > 0)
2495 			ret += bytes;
2496 		else
2497 			dout("Failed partial copy (%zd)\n", bytes);
2498 	}
2499 
2500 out:
2501 	ceph_free_cap_flush(prealloc_cf);
2502 
2503 	return ret;
2504 }
2505 
ceph_copy_file_range(struct file * src_file,loff_t src_off,struct file * dst_file,loff_t dst_off,size_t len,unsigned int flags)2506 static ssize_t ceph_copy_file_range(struct file *src_file, loff_t src_off,
2507 				    struct file *dst_file, loff_t dst_off,
2508 				    size_t len, unsigned int flags)
2509 {
2510 	ssize_t ret;
2511 
2512 	ret = __ceph_copy_file_range(src_file, src_off, dst_file, dst_off,
2513 				     len, flags);
2514 
2515 	if (ret == -EOPNOTSUPP || ret == -EXDEV)
2516 		ret = generic_copy_file_range(src_file, src_off, dst_file,
2517 					      dst_off, len, flags);
2518 	return ret;
2519 }
2520 
2521 const struct file_operations ceph_file_fops = {
2522 	.open = ceph_open,
2523 	.release = ceph_release,
2524 	.llseek = ceph_llseek,
2525 	.read_iter = ceph_read_iter,
2526 	.write_iter = ceph_write_iter,
2527 	.mmap = ceph_mmap,
2528 	.fsync = ceph_fsync,
2529 	.lock = ceph_lock,
2530 	.setlease = simple_nosetlease,
2531 	.flock = ceph_flock,
2532 	.splice_read = generic_file_splice_read,
2533 	.splice_write = iter_file_splice_write,
2534 	.unlocked_ioctl = ceph_ioctl,
2535 	.compat_ioctl = compat_ptr_ioctl,
2536 	.fallocate	= ceph_fallocate,
2537 	.copy_file_range = ceph_copy_file_range,
2538 };
2539