xref: /openbmc/linux/fs/ceph/addr.c (revision e5975c7c)
1 #include <linux/ceph/ceph_debug.h>
2 
3 #include <linux/backing-dev.h>
4 #include <linux/fs.h>
5 #include <linux/mm.h>
6 #include <linux/pagemap.h>
7 #include <linux/writeback.h>	/* generic_writepages */
8 #include <linux/slab.h>
9 #include <linux/pagevec.h>
10 #include <linux/task_io_accounting_ops.h>
11 
12 #include "super.h"
13 #include "mds_client.h"
14 #include <linux/ceph/osd_client.h>
15 
16 /*
17  * Ceph address space ops.
18  *
19  * There are a few funny things going on here.
20  *
21  * The page->private field is used to reference a struct
22  * ceph_snap_context for _every_ dirty page.  This indicates which
23  * snapshot the page was logically dirtied in, and thus which snap
24  * context needs to be associated with the osd write during writeback.
25  *
26  * Similarly, struct ceph_inode_info maintains a set of counters to
27  * count dirty pages on the inode.  In the absence of snapshots,
28  * i_wrbuffer_ref == i_wrbuffer_ref_head == the dirty page count.
29  *
30  * When a snapshot is taken (that is, when the client receives
31  * notification that a snapshot was taken), each inode with caps and
32  * with dirty pages (dirty pages implies there is a cap) gets a new
33  * ceph_cap_snap in the i_cap_snaps list (which is sorted in ascending
34  * order, new snaps go to the tail).  The i_wrbuffer_ref_head count is
35  * moved to capsnap->dirty. (Unless a sync write is currently in
36  * progress.  In that case, the capsnap is said to be "pending", new
37  * writes cannot start, and the capsnap isn't "finalized" until the
38  * write completes (or fails) and a final size/mtime for the inode for
39  * that snap can be settled upon.)  i_wrbuffer_ref_head is reset to 0.
40  *
41  * On writeback, we must submit writes to the osd IN SNAP ORDER.  So,
42  * we look for the first capsnap in i_cap_snaps and write out pages in
43  * that snap context _only_.  Then we move on to the next capsnap,
44  * eventually reaching the "live" or "head" context (i.e., pages that
45  * are not yet snapped) and are writing the most recently dirtied
46  * pages.
47  *
48  * Invalidate and so forth must take care to ensure the dirty page
49  * accounting is preserved.
50  */
51 
52 #define CONGESTION_ON_THRESH(congestion_kb) (congestion_kb >> (PAGE_SHIFT-10))
53 #define CONGESTION_OFF_THRESH(congestion_kb)				\
54 	(CONGESTION_ON_THRESH(congestion_kb) -				\
55 	 (CONGESTION_ON_THRESH(congestion_kb) >> 2))
56 
57 static inline struct ceph_snap_context *page_snap_context(struct page *page)
58 {
59 	if (PagePrivate(page))
60 		return (void *)page->private;
61 	return NULL;
62 }
63 
64 /*
65  * Dirty a page.  Optimistically adjust accounting, on the assumption
66  * that we won't race with invalidate.  If we do, readjust.
67  */
68 static int ceph_set_page_dirty(struct page *page)
69 {
70 	struct address_space *mapping = page->mapping;
71 	struct inode *inode;
72 	struct ceph_inode_info *ci;
73 	int undo = 0;
74 	struct ceph_snap_context *snapc;
75 
76 	if (unlikely(!mapping))
77 		return !TestSetPageDirty(page);
78 
79 	if (TestSetPageDirty(page)) {
80 		dout("%p set_page_dirty %p idx %lu -- already dirty\n",
81 		     mapping->host, page, page->index);
82 		return 0;
83 	}
84 
85 	inode = mapping->host;
86 	ci = ceph_inode(inode);
87 
88 	/*
89 	 * Note that we're grabbing a snapc ref here without holding
90 	 * any locks!
91 	 */
92 	snapc = ceph_get_snap_context(ci->i_snap_realm->cached_context);
93 
94 	/* dirty the head */
95 	spin_lock(&ci->i_ceph_lock);
96 	if (ci->i_head_snapc == NULL)
97 		ci->i_head_snapc = ceph_get_snap_context(snapc);
98 	++ci->i_wrbuffer_ref_head;
99 	if (ci->i_wrbuffer_ref == 0)
100 		ihold(inode);
101 	++ci->i_wrbuffer_ref;
102 	dout("%p set_page_dirty %p idx %lu head %d/%d -> %d/%d "
103 	     "snapc %p seq %lld (%d snaps)\n",
104 	     mapping->host, page, page->index,
105 	     ci->i_wrbuffer_ref-1, ci->i_wrbuffer_ref_head-1,
106 	     ci->i_wrbuffer_ref, ci->i_wrbuffer_ref_head,
107 	     snapc, snapc->seq, snapc->num_snaps);
108 	spin_unlock(&ci->i_ceph_lock);
109 
110 	/* now adjust page */
111 	spin_lock_irq(&mapping->tree_lock);
112 	if (page->mapping) {	/* Race with truncate? */
113 		WARN_ON_ONCE(!PageUptodate(page));
114 		account_page_dirtied(page, page->mapping);
115 		radix_tree_tag_set(&mapping->page_tree,
116 				page_index(page), PAGECACHE_TAG_DIRTY);
117 
118 		/*
119 		 * Reference snap context in page->private.  Also set
120 		 * PagePrivate so that we get invalidatepage callback.
121 		 */
122 		page->private = (unsigned long)snapc;
123 		SetPagePrivate(page);
124 	} else {
125 		dout("ANON set_page_dirty %p (raced truncate?)\n", page);
126 		undo = 1;
127 	}
128 
129 	spin_unlock_irq(&mapping->tree_lock);
130 
131 	if (undo)
132 		/* whoops, we failed to dirty the page */
133 		ceph_put_wrbuffer_cap_refs(ci, 1, snapc);
134 
135 	__mark_inode_dirty(mapping->host, I_DIRTY_PAGES);
136 
137 	BUG_ON(!PageDirty(page));
138 	return 1;
139 }
140 
141 /*
142  * If we are truncating the full page (i.e. offset == 0), adjust the
143  * dirty page counters appropriately.  Only called if there is private
144  * data on the page.
145  */
146 static void ceph_invalidatepage(struct page *page, unsigned long offset)
147 {
148 	struct inode *inode;
149 	struct ceph_inode_info *ci;
150 	struct ceph_snap_context *snapc = page_snap_context(page);
151 
152 	BUG_ON(!PageLocked(page));
153 	BUG_ON(!PagePrivate(page));
154 	BUG_ON(!page->mapping);
155 
156 	inode = page->mapping->host;
157 
158 	/*
159 	 * We can get non-dirty pages here due to races between
160 	 * set_page_dirty and truncate_complete_page; just spit out a
161 	 * warning, in case we end up with accounting problems later.
162 	 */
163 	if (!PageDirty(page))
164 		pr_err("%p invalidatepage %p page not dirty\n", inode, page);
165 
166 	if (offset == 0)
167 		ClearPageChecked(page);
168 
169 	ci = ceph_inode(inode);
170 	if (offset == 0) {
171 		dout("%p invalidatepage %p idx %lu full dirty page %lu\n",
172 		     inode, page, page->index, offset);
173 		ceph_put_wrbuffer_cap_refs(ci, 1, snapc);
174 		ceph_put_snap_context(snapc);
175 		page->private = 0;
176 		ClearPagePrivate(page);
177 	} else {
178 		dout("%p invalidatepage %p idx %lu partial dirty page\n",
179 		     inode, page, page->index);
180 	}
181 }
182 
183 /* just a sanity check */
184 static int ceph_releasepage(struct page *page, gfp_t g)
185 {
186 	struct inode *inode = page->mapping ? page->mapping->host : NULL;
187 	dout("%p releasepage %p idx %lu\n", inode, page, page->index);
188 	WARN_ON(PageDirty(page));
189 	WARN_ON(PagePrivate(page));
190 	return 0;
191 }
192 
193 /*
194  * read a single page, without unlocking it.
195  */
196 static int readpage_nounlock(struct file *filp, struct page *page)
197 {
198 	struct inode *inode = file_inode(filp);
199 	struct ceph_inode_info *ci = ceph_inode(inode);
200 	struct ceph_osd_client *osdc =
201 		&ceph_inode_to_client(inode)->client->osdc;
202 	int err = 0;
203 	u64 len = PAGE_CACHE_SIZE;
204 
205 	dout("readpage inode %p file %p page %p index %lu\n",
206 	     inode, filp, page, page->index);
207 	err = ceph_osdc_readpages(osdc, ceph_vino(inode), &ci->i_layout,
208 				  (u64) page_offset(page), &len,
209 				  ci->i_truncate_seq, ci->i_truncate_size,
210 				  &page, 1, 0);
211 	if (err == -ENOENT)
212 		err = 0;
213 	if (err < 0) {
214 		SetPageError(page);
215 		goto out;
216 	} else if (err < PAGE_CACHE_SIZE) {
217 		/* zero fill remainder of page */
218 		zero_user_segment(page, err, PAGE_CACHE_SIZE);
219 	}
220 	SetPageUptodate(page);
221 
222 out:
223 	return err < 0 ? err : 0;
224 }
225 
226 static int ceph_readpage(struct file *filp, struct page *page)
227 {
228 	int r = readpage_nounlock(filp, page);
229 	unlock_page(page);
230 	return r;
231 }
232 
233 /*
234  * Finish an async read(ahead) op.
235  */
236 static void finish_read(struct ceph_osd_request *req, struct ceph_msg *msg)
237 {
238 	struct inode *inode = req->r_inode;
239 	int rc = req->r_result;
240 	int bytes = le32_to_cpu(msg->hdr.data_len);
241 	int num_pages;
242 	int i;
243 
244 	dout("finish_read %p req %p rc %d bytes %d\n", inode, req, rc, bytes);
245 
246 	/* unlock all pages, zeroing any data we didn't read */
247 	BUG_ON(req->r_data_in.type != CEPH_OSD_DATA_TYPE_PAGES);
248 	num_pages = calc_pages_for((u64)req->r_data_in.alignment,
249 					(u64)req->r_data_in.length);
250 	for (i = 0; i < num_pages; i++) {
251 		struct page *page = req->r_data_in.pages[i];
252 
253 		if (bytes < (int)PAGE_CACHE_SIZE) {
254 			/* zero (remainder of) page */
255 			int s = bytes < 0 ? 0 : bytes;
256 			zero_user_segment(page, s, PAGE_CACHE_SIZE);
257 		}
258  		dout("finish_read %p uptodate %p idx %lu\n", inode, page,
259 		     page->index);
260 		flush_dcache_page(page);
261 		SetPageUptodate(page);
262 		unlock_page(page);
263 		page_cache_release(page);
264 		bytes -= PAGE_CACHE_SIZE;
265 	}
266 	kfree(req->r_data_in.pages);
267 }
268 
269 static void ceph_unlock_page_vector(struct page **pages, int num_pages)
270 {
271 	int i;
272 
273 	for (i = 0; i < num_pages; i++)
274 		unlock_page(pages[i]);
275 }
276 
277 /*
278  * start an async read(ahead) operation.  return nr_pages we submitted
279  * a read for on success, or negative error code.
280  */
281 static int start_read(struct inode *inode, struct list_head *page_list, int max)
282 {
283 	struct ceph_osd_client *osdc =
284 		&ceph_inode_to_client(inode)->client->osdc;
285 	struct ceph_inode_info *ci = ceph_inode(inode);
286 	struct page *page = list_entry(page_list->prev, struct page, lru);
287 	struct ceph_vino vino;
288 	struct ceph_osd_request *req;
289 	struct ceph_osd_req_op op;
290 	u64 off;
291 	u64 len;
292 	int i;
293 	struct page **pages;
294 	pgoff_t next_index;
295 	int nr_pages = 0;
296 	int ret;
297 
298 	off = (u64) page_offset(page);
299 
300 	/* count pages */
301 	next_index = page->index;
302 	list_for_each_entry_reverse(page, page_list, lru) {
303 		if (page->index != next_index)
304 			break;
305 		nr_pages++;
306 		next_index++;
307 		if (max && nr_pages == max)
308 			break;
309 	}
310 	len = nr_pages << PAGE_CACHE_SHIFT;
311 	dout("start_read %p nr_pages %d is %lld~%lld\n", inode, nr_pages,
312 	     off, len);
313 	vino = ceph_vino(inode);
314 	req = ceph_osdc_new_request(osdc, &ci->i_layout, vino, off, &len,
315 				    1, &op, CEPH_OSD_OP_READ,
316 				    CEPH_OSD_FLAG_READ, NULL,
317 				    ci->i_truncate_seq, ci->i_truncate_size,
318 				    false);
319 	if (IS_ERR(req))
320 		return PTR_ERR(req);
321 
322 	/* build page vector */
323 	nr_pages = calc_pages_for(0, len);
324 	pages = kmalloc(sizeof(*pages) * nr_pages, GFP_NOFS);
325 	ret = -ENOMEM;
326 	if (!pages)
327 		goto out;
328 	for (i = 0; i < nr_pages; ++i) {
329 		page = list_entry(page_list->prev, struct page, lru);
330 		BUG_ON(PageLocked(page));
331 		list_del(&page->lru);
332 
333  		dout("start_read %p adding %p idx %lu\n", inode, page,
334 		     page->index);
335 		if (add_to_page_cache_lru(page, &inode->i_data, page->index,
336 					  GFP_NOFS)) {
337 			page_cache_release(page);
338 			dout("start_read %p add_to_page_cache failed %p\n",
339 			     inode, page);
340 			nr_pages = i;
341 			goto out_pages;
342 		}
343 		pages[i] = page;
344 	}
345 	req->r_data_in.type = CEPH_OSD_DATA_TYPE_PAGES;
346 	req->r_data_in.pages = pages;
347 	req->r_data_in.length = len;
348 	req->r_data_in.alignment = 0;
349 	req->r_callback = finish_read;
350 	req->r_inode = inode;
351 
352 	ceph_osdc_build_request(req, off, 1, &op, NULL, vino.snap, NULL);
353 
354 	dout("start_read %p starting %p %lld~%lld\n", inode, req, off, len);
355 	ret = ceph_osdc_start_request(osdc, req, false);
356 	if (ret < 0)
357 		goto out_pages;
358 	ceph_osdc_put_request(req);
359 	return nr_pages;
360 
361 out_pages:
362 	ceph_unlock_page_vector(pages, nr_pages);
363 	ceph_release_page_vector(pages, nr_pages);
364 out:
365 	ceph_osdc_put_request(req);
366 	return ret;
367 }
368 
369 
370 /*
371  * Read multiple pages.  Leave pages we don't read + unlock in page_list;
372  * the caller (VM) cleans them up.
373  */
374 static int ceph_readpages(struct file *file, struct address_space *mapping,
375 			  struct list_head *page_list, unsigned nr_pages)
376 {
377 	struct inode *inode = file_inode(file);
378 	struct ceph_fs_client *fsc = ceph_inode_to_client(inode);
379 	int rc = 0;
380 	int max = 0;
381 
382 	if (fsc->mount_options->rsize >= PAGE_CACHE_SIZE)
383 		max = (fsc->mount_options->rsize + PAGE_CACHE_SIZE - 1)
384 			>> PAGE_SHIFT;
385 
386 	dout("readpages %p file %p nr_pages %d max %d\n", inode,
387 		file, nr_pages,
388 	     max);
389 	while (!list_empty(page_list)) {
390 		rc = start_read(inode, page_list, max);
391 		if (rc < 0)
392 			goto out;
393 		BUG_ON(rc == 0);
394 	}
395 out:
396 	dout("readpages %p file %p ret %d\n", inode, file, rc);
397 	return rc;
398 }
399 
400 /*
401  * Get ref for the oldest snapc for an inode with dirty data... that is, the
402  * only snap context we are allowed to write back.
403  */
404 static struct ceph_snap_context *get_oldest_context(struct inode *inode,
405 						    u64 *snap_size)
406 {
407 	struct ceph_inode_info *ci = ceph_inode(inode);
408 	struct ceph_snap_context *snapc = NULL;
409 	struct ceph_cap_snap *capsnap = NULL;
410 
411 	spin_lock(&ci->i_ceph_lock);
412 	list_for_each_entry(capsnap, &ci->i_cap_snaps, ci_item) {
413 		dout(" cap_snap %p snapc %p has %d dirty pages\n", capsnap,
414 		     capsnap->context, capsnap->dirty_pages);
415 		if (capsnap->dirty_pages) {
416 			snapc = ceph_get_snap_context(capsnap->context);
417 			if (snap_size)
418 				*snap_size = capsnap->size;
419 			break;
420 		}
421 	}
422 	if (!snapc && ci->i_wrbuffer_ref_head) {
423 		snapc = ceph_get_snap_context(ci->i_head_snapc);
424 		dout(" head snapc %p has %d dirty pages\n",
425 		     snapc, ci->i_wrbuffer_ref_head);
426 	}
427 	spin_unlock(&ci->i_ceph_lock);
428 	return snapc;
429 }
430 
431 /*
432  * Write a single page, but leave the page locked.
433  *
434  * If we get a write error, set the page error bit, but still adjust the
435  * dirty page accounting (i.e., page is no longer dirty).
436  */
437 static int writepage_nounlock(struct page *page, struct writeback_control *wbc)
438 {
439 	struct inode *inode;
440 	struct ceph_inode_info *ci;
441 	struct ceph_fs_client *fsc;
442 	struct ceph_osd_client *osdc;
443 	loff_t page_off = page_offset(page);
444 	int len = PAGE_CACHE_SIZE;
445 	loff_t i_size;
446 	int err = 0;
447 	struct ceph_snap_context *snapc, *oldest;
448 	u64 snap_size = 0;
449 	long writeback_stat;
450 
451 	dout("writepage %p idx %lu\n", page, page->index);
452 
453 	if (!page->mapping || !page->mapping->host) {
454 		dout("writepage %p - no mapping\n", page);
455 		return -EFAULT;
456 	}
457 	inode = page->mapping->host;
458 	ci = ceph_inode(inode);
459 	fsc = ceph_inode_to_client(inode);
460 	osdc = &fsc->client->osdc;
461 
462 	/* verify this is a writeable snap context */
463 	snapc = page_snap_context(page);
464 	if (snapc == NULL) {
465 		dout("writepage %p page %p not dirty?\n", inode, page);
466 		goto out;
467 	}
468 	oldest = get_oldest_context(inode, &snap_size);
469 	if (snapc->seq > oldest->seq) {
470 		dout("writepage %p page %p snapc %p not writeable - noop\n",
471 		     inode, page, snapc);
472 		/* we should only noop if called by kswapd */
473 		WARN_ON((current->flags & PF_MEMALLOC) == 0);
474 		ceph_put_snap_context(oldest);
475 		goto out;
476 	}
477 	ceph_put_snap_context(oldest);
478 
479 	/* is this a partial page at end of file? */
480 	if (snap_size)
481 		i_size = snap_size;
482 	else
483 		i_size = i_size_read(inode);
484 	if (i_size < page_off + len)
485 		len = i_size - page_off;
486 
487 	dout("writepage %p page %p index %lu on %llu~%u snapc %p\n",
488 	     inode, page, page->index, page_off, len, snapc);
489 
490 	writeback_stat = atomic_long_inc_return(&fsc->writeback_count);
491 	if (writeback_stat >
492 	    CONGESTION_ON_THRESH(fsc->mount_options->congestion_kb))
493 		set_bdi_congested(&fsc->backing_dev_info, BLK_RW_ASYNC);
494 
495 	set_page_writeback(page);
496 	err = ceph_osdc_writepages(osdc, ceph_vino(inode),
497 				   &ci->i_layout, snapc,
498 				   page_off, len,
499 				   ci->i_truncate_seq, ci->i_truncate_size,
500 				   &inode->i_mtime, &page, 1);
501 	if (err < 0) {
502 		dout("writepage setting page/mapping error %d %p\n", err, page);
503 		SetPageError(page);
504 		mapping_set_error(&inode->i_data, err);
505 		if (wbc)
506 			wbc->pages_skipped++;
507 	} else {
508 		dout("writepage cleaned page %p\n", page);
509 		err = 0;  /* vfs expects us to return 0 */
510 	}
511 	page->private = 0;
512 	ClearPagePrivate(page);
513 	end_page_writeback(page);
514 	ceph_put_wrbuffer_cap_refs(ci, 1, snapc);
515 	ceph_put_snap_context(snapc);  /* page's reference */
516 out:
517 	return err;
518 }
519 
520 static int ceph_writepage(struct page *page, struct writeback_control *wbc)
521 {
522 	int err;
523 	struct inode *inode = page->mapping->host;
524 	BUG_ON(!inode);
525 	ihold(inode);
526 	err = writepage_nounlock(page, wbc);
527 	unlock_page(page);
528 	iput(inode);
529 	return err;
530 }
531 
532 
533 /*
534  * lame release_pages helper.  release_pages() isn't exported to
535  * modules.
536  */
537 static void ceph_release_pages(struct page **pages, int num)
538 {
539 	struct pagevec pvec;
540 	int i;
541 
542 	pagevec_init(&pvec, 0);
543 	for (i = 0; i < num; i++) {
544 		if (pagevec_add(&pvec, pages[i]) == 0)
545 			pagevec_release(&pvec);
546 	}
547 	pagevec_release(&pvec);
548 }
549 
550 
551 /*
552  * async writeback completion handler.
553  *
554  * If we get an error, set the mapping error bit, but not the individual
555  * page error bits.
556  */
557 static void writepages_finish(struct ceph_osd_request *req,
558 			      struct ceph_msg *msg)
559 {
560 	struct inode *inode = req->r_inode;
561 	struct ceph_inode_info *ci = ceph_inode(inode);
562 	unsigned wrote;
563 	struct page *page;
564 	int num_pages;
565 	int i;
566 	struct ceph_snap_context *snapc = req->r_snapc;
567 	struct address_space *mapping = inode->i_mapping;
568 	int rc = req->r_result;
569 	u64 bytes = le64_to_cpu(req->r_request_ops[0].extent.length);
570 	struct ceph_fs_client *fsc = ceph_inode_to_client(inode);
571 	long writeback_stat;
572 	unsigned issued = ceph_caps_issued(ci);
573 
574 	BUG_ON(req->r_data_out.type != CEPH_OSD_DATA_TYPE_PAGES);
575 	num_pages = calc_pages_for((u64)req->r_data_out.alignment,
576 					(u64)req->r_data_out.length);
577 	if (rc >= 0) {
578 		/*
579 		 * Assume we wrote the pages we originally sent.  The
580 		 * osd might reply with fewer pages if our writeback
581 		 * raced with a truncation and was adjusted at the osd,
582 		 * so don't believe the reply.
583 		 */
584 		wrote = num_pages;
585 	} else {
586 		wrote = 0;
587 		mapping_set_error(mapping, rc);
588 	}
589 	dout("writepages_finish %p rc %d bytes %llu wrote %d (pages)\n",
590 	     inode, rc, bytes, wrote);
591 
592 	/* clean all pages */
593 	for (i = 0; i < num_pages; i++) {
594 		page = req->r_data_out.pages[i];
595 		BUG_ON(!page);
596 		WARN_ON(!PageUptodate(page));
597 
598 		writeback_stat =
599 			atomic_long_dec_return(&fsc->writeback_count);
600 		if (writeback_stat <
601 		    CONGESTION_OFF_THRESH(fsc->mount_options->congestion_kb))
602 			clear_bdi_congested(&fsc->backing_dev_info,
603 					    BLK_RW_ASYNC);
604 
605 		ceph_put_snap_context(page_snap_context(page));
606 		page->private = 0;
607 		ClearPagePrivate(page);
608 		dout("unlocking %d %p\n", i, page);
609 		end_page_writeback(page);
610 
611 		/*
612 		 * We lost the cache cap, need to truncate the page before
613 		 * it is unlocked, otherwise we'd truncate it later in the
614 		 * page truncation thread, possibly losing some data that
615 		 * raced its way in
616 		 */
617 		if ((issued & (CEPH_CAP_FILE_CACHE|CEPH_CAP_FILE_LAZYIO)) == 0)
618 			generic_error_remove_page(inode->i_mapping, page);
619 
620 		unlock_page(page);
621 	}
622 	dout("%p wrote+cleaned %d pages\n", inode, wrote);
623 	ceph_put_wrbuffer_cap_refs(ci, num_pages, snapc);
624 
625 	ceph_release_pages(req->r_data_out.pages, num_pages);
626 	if (req->r_data_out.pages_from_pool)
627 		mempool_free(req->r_data_out.pages,
628 			     ceph_sb_to_client(inode->i_sb)->wb_pagevec_pool);
629 	else
630 		kfree(req->r_data_out.pages);
631 	ceph_osdc_put_request(req);
632 }
633 
634 static struct ceph_osd_request *
635 ceph_writepages_osd_request(struct inode *inode, u64 offset, u64 *len,
636 				struct ceph_snap_context *snapc,
637 				int num_ops, struct ceph_osd_req_op *ops)
638 {
639 	struct ceph_fs_client *fsc;
640 	struct ceph_inode_info *ci;
641 	struct ceph_vino vino;
642 
643 	fsc = ceph_inode_to_client(inode);
644 	ci = ceph_inode(inode);
645 	vino = ceph_vino(inode);
646 	/* BUG_ON(vino.snap != CEPH_NOSNAP); */
647 
648 	return ceph_osdc_new_request(&fsc->client->osdc, &ci->i_layout,
649 			vino, offset, len, num_ops, ops, CEPH_OSD_OP_WRITE,
650 			CEPH_OSD_FLAG_WRITE|CEPH_OSD_FLAG_ONDISK,
651 			snapc, ci->i_truncate_seq, ci->i_truncate_size, true);
652 }
653 
654 /*
655  * initiate async writeback
656  */
657 static int ceph_writepages_start(struct address_space *mapping,
658 				 struct writeback_control *wbc)
659 {
660 	struct inode *inode = mapping->host;
661 	struct ceph_inode_info *ci = ceph_inode(inode);
662 	struct ceph_fs_client *fsc;
663 	pgoff_t index, start, end;
664 	int range_whole = 0;
665 	int should_loop = 1;
666 	pgoff_t max_pages = 0, max_pages_ever = 0;
667 	struct ceph_snap_context *snapc = NULL, *last_snapc = NULL, *pgsnapc;
668 	struct pagevec pvec;
669 	int done = 0;
670 	int rc = 0;
671 	unsigned wsize = 1 << inode->i_blkbits;
672 	struct ceph_osd_request *req = NULL;
673 	int do_sync;
674 	u64 snap_size = 0;
675 
676 	/*
677 	 * Include a 'sync' in the OSD request if this is a data
678 	 * integrity write (e.g., O_SYNC write or fsync()), or if our
679 	 * cap is being revoked.
680 	 */
681 	do_sync = wbc->sync_mode == WB_SYNC_ALL;
682 	if (ceph_caps_revoking(ci, CEPH_CAP_FILE_BUFFER))
683 		do_sync = 1;
684 	dout("writepages_start %p dosync=%d (mode=%s)\n",
685 	     inode, do_sync,
686 	     wbc->sync_mode == WB_SYNC_NONE ? "NONE" :
687 	     (wbc->sync_mode == WB_SYNC_ALL ? "ALL" : "HOLD"));
688 
689 	fsc = ceph_inode_to_client(inode);
690 	if (fsc->mount_state == CEPH_MOUNT_SHUTDOWN) {
691 		pr_warning("writepage_start %p on forced umount\n", inode);
692 		return -EIO; /* we're in a forced umount, don't write! */
693 	}
694 	if (fsc->mount_options->wsize && fsc->mount_options->wsize < wsize)
695 		wsize = fsc->mount_options->wsize;
696 	if (wsize < PAGE_CACHE_SIZE)
697 		wsize = PAGE_CACHE_SIZE;
698 	max_pages_ever = wsize >> PAGE_CACHE_SHIFT;
699 
700 	pagevec_init(&pvec, 0);
701 
702 	/* where to start/end? */
703 	if (wbc->range_cyclic) {
704 		start = mapping->writeback_index; /* Start from prev offset */
705 		end = -1;
706 		dout(" cyclic, start at %lu\n", start);
707 	} else {
708 		start = wbc->range_start >> PAGE_CACHE_SHIFT;
709 		end = wbc->range_end >> PAGE_CACHE_SHIFT;
710 		if (wbc->range_start == 0 && wbc->range_end == LLONG_MAX)
711 			range_whole = 1;
712 		should_loop = 0;
713 		dout(" not cyclic, %lu to %lu\n", start, end);
714 	}
715 	index = start;
716 
717 retry:
718 	/* find oldest snap context with dirty data */
719 	ceph_put_snap_context(snapc);
720 	snapc = get_oldest_context(inode, &snap_size);
721 	if (!snapc) {
722 		/* hmm, why does writepages get called when there
723 		   is no dirty data? */
724 		dout(" no snap context with dirty data?\n");
725 		goto out;
726 	}
727 	dout(" oldest snapc is %p seq %lld (%d snaps)\n",
728 	     snapc, snapc->seq, snapc->num_snaps);
729 	if (last_snapc && snapc != last_snapc) {
730 		/* if we switched to a newer snapc, restart our scan at the
731 		 * start of the original file range. */
732 		dout("  snapc differs from last pass, restarting at %lu\n",
733 		     index);
734 		index = start;
735 	}
736 	last_snapc = snapc;
737 
738 	while (!done && index <= end) {
739 		struct ceph_osd_req_op ops[2];
740 		int num_ops = do_sync ? 2 : 1;
741 		struct ceph_vino vino;
742 		unsigned i;
743 		int first;
744 		pgoff_t next;
745 		int pvec_pages, locked_pages;
746 		struct page **pages = NULL;
747 		mempool_t *pool = NULL;	/* Becomes non-null if mempool used */
748 		struct page *page;
749 		int want;
750 		u64 offset, len;
751 		long writeback_stat;
752 
753 		next = 0;
754 		locked_pages = 0;
755 		max_pages = max_pages_ever;
756 
757 get_more_pages:
758 		first = -1;
759 		want = min(end - index,
760 			   min((pgoff_t)PAGEVEC_SIZE,
761 			       max_pages - (pgoff_t)locked_pages) - 1)
762 			+ 1;
763 		pvec_pages = pagevec_lookup_tag(&pvec, mapping, &index,
764 						PAGECACHE_TAG_DIRTY,
765 						want);
766 		dout("pagevec_lookup_tag got %d\n", pvec_pages);
767 		if (!pvec_pages && !locked_pages)
768 			break;
769 		for (i = 0; i < pvec_pages && locked_pages < max_pages; i++) {
770 			page = pvec.pages[i];
771 			dout("? %p idx %lu\n", page, page->index);
772 			if (locked_pages == 0)
773 				lock_page(page);  /* first page */
774 			else if (!trylock_page(page))
775 				break;
776 
777 			/* only dirty pages, or our accounting breaks */
778 			if (unlikely(!PageDirty(page)) ||
779 			    unlikely(page->mapping != mapping)) {
780 				dout("!dirty or !mapping %p\n", page);
781 				unlock_page(page);
782 				break;
783 			}
784 			if (!wbc->range_cyclic && page->index > end) {
785 				dout("end of range %p\n", page);
786 				done = 1;
787 				unlock_page(page);
788 				break;
789 			}
790 			if (next && (page->index != next)) {
791 				dout("not consecutive %p\n", page);
792 				unlock_page(page);
793 				break;
794 			}
795 			if (wbc->sync_mode != WB_SYNC_NONE) {
796 				dout("waiting on writeback %p\n", page);
797 				wait_on_page_writeback(page);
798 			}
799 			if ((snap_size && page_offset(page) > snap_size) ||
800 			    (!snap_size &&
801 			     page_offset(page) > i_size_read(inode))) {
802 				dout("%p page eof %llu\n", page, snap_size ?
803 				     snap_size : i_size_read(inode));
804 				done = 1;
805 				unlock_page(page);
806 				break;
807 			}
808 			if (PageWriteback(page)) {
809 				dout("%p under writeback\n", page);
810 				unlock_page(page);
811 				break;
812 			}
813 
814 			/* only if matching snap context */
815 			pgsnapc = page_snap_context(page);
816 			if (pgsnapc->seq > snapc->seq) {
817 				dout("page snapc %p %lld > oldest %p %lld\n",
818 				     pgsnapc, pgsnapc->seq, snapc, snapc->seq);
819 				unlock_page(page);
820 				if (!locked_pages)
821 					continue; /* keep looking for snap */
822 				break;
823 			}
824 
825 			if (!clear_page_dirty_for_io(page)) {
826 				dout("%p !clear_page_dirty_for_io\n", page);
827 				unlock_page(page);
828 				break;
829 			}
830 
831 			/*
832 			 * We have something to write.  If this is
833 			 * the first locked page this time through,
834 			 * allocate an osd request and a page array
835 			 * that it will use.
836 			 */
837 			if (locked_pages == 0) {
838 				size_t size;
839 
840 				BUG_ON(pages);
841 
842 				/* prepare async write request */
843 				offset = (u64)page_offset(page);
844 				len = wsize;
845 				req = ceph_writepages_osd_request(inode,
846 							offset, &len, snapc,
847 							num_ops, ops);
848 
849 				if (IS_ERR(req)) {
850 					rc = PTR_ERR(req);
851 					unlock_page(page);
852 					break;
853 				}
854 
855 				req->r_callback = writepages_finish;
856 				req->r_inode = inode;
857 
858 				max_pages = calc_pages_for(0, (u64)len);
859 				size = max_pages * sizeof (*pages);
860 				pages = kmalloc(size, GFP_NOFS);
861 				if (!pages) {
862 					pool = fsc->wb_pagevec_pool;
863 					pages = mempool_alloc(pool, GFP_NOFS);
864 					BUG_ON(!pages);
865 				}
866 			}
867 
868 			/* note position of first page in pvec */
869 			if (first < 0)
870 				first = i;
871 			dout("%p will write page %p idx %lu\n",
872 			     inode, page, page->index);
873 
874 			writeback_stat =
875 			       atomic_long_inc_return(&fsc->writeback_count);
876 			if (writeback_stat > CONGESTION_ON_THRESH(
877 				    fsc->mount_options->congestion_kb)) {
878 				set_bdi_congested(&fsc->backing_dev_info,
879 						  BLK_RW_ASYNC);
880 			}
881 
882 			set_page_writeback(page);
883 			pages[locked_pages] = page;
884 			locked_pages++;
885 			next = page->index + 1;
886 		}
887 
888 		/* did we get anything? */
889 		if (!locked_pages)
890 			goto release_pvec_pages;
891 		if (i) {
892 			int j;
893 			BUG_ON(!locked_pages || first < 0);
894 
895 			if (pvec_pages && i == pvec_pages &&
896 			    locked_pages < max_pages) {
897 				dout("reached end pvec, trying for more\n");
898 				pagevec_reinit(&pvec);
899 				goto get_more_pages;
900 			}
901 
902 			/* shift unused pages over in the pvec...  we
903 			 * will need to release them below. */
904 			for (j = i; j < pvec_pages; j++) {
905 				dout(" pvec leftover page %p\n",
906 				     pvec.pages[j]);
907 				pvec.pages[j-i+first] = pvec.pages[j];
908 			}
909 			pvec.nr -= i-first;
910 		}
911 
912 		/* Format the osd request message and submit the write */
913 
914 		offset = page_offset(pages[0]);
915 		len = min((snap_size ? snap_size : i_size_read(inode)) - offset,
916 			  (u64)locked_pages << PAGE_CACHE_SHIFT);
917 		dout("writepages got %d pages at %llu~%llu\n",
918 		     locked_pages, offset, len);
919 
920 		req->r_data_out.type = CEPH_OSD_DATA_TYPE_PAGES;
921 		req->r_data_out.pages = pages;
922 		req->r_data_out.length = len;
923 		req->r_data_out.alignment = 0;
924 		req->r_data_out.pages_from_pool = !!pool;
925 
926 		pages = NULL;	/* request message now owns the pages array */
927 		pool = NULL;
928 
929 		/* Update the write op length in case we changed it */
930 
931 		osd_req_op_extent_update(&ops[0], len);
932 
933 		vino = ceph_vino(inode);
934 		ceph_osdc_build_request(req, offset, num_ops, ops,
935 					snapc, vino.snap, &inode->i_mtime);
936 
937 		rc = ceph_osdc_start_request(&fsc->client->osdc, req, true);
938 		BUG_ON(rc);
939 		req = NULL;
940 
941 		/* continue? */
942 		index = next;
943 		wbc->nr_to_write -= locked_pages;
944 		if (wbc->nr_to_write <= 0)
945 			done = 1;
946 
947 release_pvec_pages:
948 		dout("pagevec_release on %d pages (%p)\n", (int)pvec.nr,
949 		     pvec.nr ? pvec.pages[0] : NULL);
950 		pagevec_release(&pvec);
951 
952 		if (locked_pages && !done)
953 			goto retry;
954 	}
955 
956 	if (should_loop && !done) {
957 		/* more to do; loop back to beginning of file */
958 		dout("writepages looping back to beginning of file\n");
959 		should_loop = 0;
960 		index = 0;
961 		goto retry;
962 	}
963 
964 	if (wbc->range_cyclic || (range_whole && wbc->nr_to_write > 0))
965 		mapping->writeback_index = index;
966 
967 out:
968 	if (req)
969 		ceph_osdc_put_request(req);
970 	ceph_put_snap_context(snapc);
971 	dout("writepages done, rc = %d\n", rc);
972 	return rc;
973 }
974 
975 
976 
977 /*
978  * See if a given @snapc is either writeable, or already written.
979  */
980 static int context_is_writeable_or_written(struct inode *inode,
981 					   struct ceph_snap_context *snapc)
982 {
983 	struct ceph_snap_context *oldest = get_oldest_context(inode, NULL);
984 	int ret = !oldest || snapc->seq <= oldest->seq;
985 
986 	ceph_put_snap_context(oldest);
987 	return ret;
988 }
989 
990 /*
991  * We are only allowed to write into/dirty the page if the page is
992  * clean, or already dirty within the same snap context.
993  *
994  * called with page locked.
995  * return success with page locked,
996  * or any failure (incl -EAGAIN) with page unlocked.
997  */
998 static int ceph_update_writeable_page(struct file *file,
999 			    loff_t pos, unsigned len,
1000 			    struct page *page)
1001 {
1002 	struct inode *inode = file_inode(file);
1003 	struct ceph_inode_info *ci = ceph_inode(inode);
1004 	struct ceph_mds_client *mdsc = ceph_inode_to_client(inode)->mdsc;
1005 	loff_t page_off = pos & PAGE_CACHE_MASK;
1006 	int pos_in_page = pos & ~PAGE_CACHE_MASK;
1007 	int end_in_page = pos_in_page + len;
1008 	loff_t i_size;
1009 	int r;
1010 	struct ceph_snap_context *snapc, *oldest;
1011 
1012 retry_locked:
1013 	/* writepages currently holds page lock, but if we change that later, */
1014 	wait_on_page_writeback(page);
1015 
1016 	/* check snap context */
1017 	BUG_ON(!ci->i_snap_realm);
1018 	down_read(&mdsc->snap_rwsem);
1019 	BUG_ON(!ci->i_snap_realm->cached_context);
1020 	snapc = page_snap_context(page);
1021 	if (snapc && snapc != ci->i_head_snapc) {
1022 		/*
1023 		 * this page is already dirty in another (older) snap
1024 		 * context!  is it writeable now?
1025 		 */
1026 		oldest = get_oldest_context(inode, NULL);
1027 		up_read(&mdsc->snap_rwsem);
1028 
1029 		if (snapc->seq > oldest->seq) {
1030 			ceph_put_snap_context(oldest);
1031 			dout(" page %p snapc %p not current or oldest\n",
1032 			     page, snapc);
1033 			/*
1034 			 * queue for writeback, and wait for snapc to
1035 			 * be writeable or written
1036 			 */
1037 			snapc = ceph_get_snap_context(snapc);
1038 			unlock_page(page);
1039 			ceph_queue_writeback(inode);
1040 			r = wait_event_interruptible(ci->i_cap_wq,
1041 			       context_is_writeable_or_written(inode, snapc));
1042 			ceph_put_snap_context(snapc);
1043 			if (r == -ERESTARTSYS)
1044 				return r;
1045 			return -EAGAIN;
1046 		}
1047 		ceph_put_snap_context(oldest);
1048 
1049 		/* yay, writeable, do it now (without dropping page lock) */
1050 		dout(" page %p snapc %p not current, but oldest\n",
1051 		     page, snapc);
1052 		if (!clear_page_dirty_for_io(page))
1053 			goto retry_locked;
1054 		r = writepage_nounlock(page, NULL);
1055 		if (r < 0)
1056 			goto fail_nosnap;
1057 		goto retry_locked;
1058 	}
1059 
1060 	if (PageUptodate(page)) {
1061 		dout(" page %p already uptodate\n", page);
1062 		return 0;
1063 	}
1064 
1065 	/* full page? */
1066 	if (pos_in_page == 0 && len == PAGE_CACHE_SIZE)
1067 		return 0;
1068 
1069 	/* past end of file? */
1070 	i_size = inode->i_size;   /* caller holds i_mutex */
1071 
1072 	if (i_size + len > inode->i_sb->s_maxbytes) {
1073 		/* file is too big */
1074 		r = -EINVAL;
1075 		goto fail;
1076 	}
1077 
1078 	if (page_off >= i_size ||
1079 	    (pos_in_page == 0 && (pos+len) >= i_size &&
1080 	     end_in_page - pos_in_page != PAGE_CACHE_SIZE)) {
1081 		dout(" zeroing %p 0 - %d and %d - %d\n",
1082 		     page, pos_in_page, end_in_page, (int)PAGE_CACHE_SIZE);
1083 		zero_user_segments(page,
1084 				   0, pos_in_page,
1085 				   end_in_page, PAGE_CACHE_SIZE);
1086 		return 0;
1087 	}
1088 
1089 	/* we need to read it. */
1090 	up_read(&mdsc->snap_rwsem);
1091 	r = readpage_nounlock(file, page);
1092 	if (r < 0)
1093 		goto fail_nosnap;
1094 	goto retry_locked;
1095 
1096 fail:
1097 	up_read(&mdsc->snap_rwsem);
1098 fail_nosnap:
1099 	unlock_page(page);
1100 	return r;
1101 }
1102 
1103 /*
1104  * We are only allowed to write into/dirty the page if the page is
1105  * clean, or already dirty within the same snap context.
1106  */
1107 static int ceph_write_begin(struct file *file, struct address_space *mapping,
1108 			    loff_t pos, unsigned len, unsigned flags,
1109 			    struct page **pagep, void **fsdata)
1110 {
1111 	struct inode *inode = file_inode(file);
1112 	struct page *page;
1113 	pgoff_t index = pos >> PAGE_CACHE_SHIFT;
1114 	int r;
1115 
1116 	do {
1117 		/* get a page */
1118 		page = grab_cache_page_write_begin(mapping, index, 0);
1119 		if (!page)
1120 			return -ENOMEM;
1121 		*pagep = page;
1122 
1123 		dout("write_begin file %p inode %p page %p %d~%d\n", file,
1124 		     inode, page, (int)pos, (int)len);
1125 
1126 		r = ceph_update_writeable_page(file, pos, len, page);
1127 	} while (r == -EAGAIN);
1128 
1129 	return r;
1130 }
1131 
1132 /*
1133  * we don't do anything in here that simple_write_end doesn't do
1134  * except adjust dirty page accounting and drop read lock on
1135  * mdsc->snap_rwsem.
1136  */
1137 static int ceph_write_end(struct file *file, struct address_space *mapping,
1138 			  loff_t pos, unsigned len, unsigned copied,
1139 			  struct page *page, void *fsdata)
1140 {
1141 	struct inode *inode = file_inode(file);
1142 	struct ceph_fs_client *fsc = ceph_inode_to_client(inode);
1143 	struct ceph_mds_client *mdsc = fsc->mdsc;
1144 	unsigned from = pos & (PAGE_CACHE_SIZE - 1);
1145 	int check_cap = 0;
1146 
1147 	dout("write_end file %p inode %p page %p %d~%d (%d)\n", file,
1148 	     inode, page, (int)pos, (int)copied, (int)len);
1149 
1150 	/* zero the stale part of the page if we did a short copy */
1151 	if (copied < len)
1152 		zero_user_segment(page, from+copied, len);
1153 
1154 	/* did file size increase? */
1155 	/* (no need for i_size_read(); we caller holds i_mutex */
1156 	if (pos+copied > inode->i_size)
1157 		check_cap = ceph_inode_set_size(inode, pos+copied);
1158 
1159 	if (!PageUptodate(page))
1160 		SetPageUptodate(page);
1161 
1162 	set_page_dirty(page);
1163 
1164 	unlock_page(page);
1165 	up_read(&mdsc->snap_rwsem);
1166 	page_cache_release(page);
1167 
1168 	if (check_cap)
1169 		ceph_check_caps(ceph_inode(inode), CHECK_CAPS_AUTHONLY, NULL);
1170 
1171 	return copied;
1172 }
1173 
1174 /*
1175  * we set .direct_IO to indicate direct io is supported, but since we
1176  * intercept O_DIRECT reads and writes early, this function should
1177  * never get called.
1178  */
1179 static ssize_t ceph_direct_io(int rw, struct kiocb *iocb,
1180 			      const struct iovec *iov,
1181 			      loff_t pos, unsigned long nr_segs)
1182 {
1183 	WARN_ON(1);
1184 	return -EINVAL;
1185 }
1186 
1187 const struct address_space_operations ceph_aops = {
1188 	.readpage = ceph_readpage,
1189 	.readpages = ceph_readpages,
1190 	.writepage = ceph_writepage,
1191 	.writepages = ceph_writepages_start,
1192 	.write_begin = ceph_write_begin,
1193 	.write_end = ceph_write_end,
1194 	.set_page_dirty = ceph_set_page_dirty,
1195 	.invalidatepage = ceph_invalidatepage,
1196 	.releasepage = ceph_releasepage,
1197 	.direct_IO = ceph_direct_io,
1198 };
1199 
1200 
1201 /*
1202  * vm ops
1203  */
1204 
1205 /*
1206  * Reuse write_begin here for simplicity.
1207  */
1208 static int ceph_page_mkwrite(struct vm_area_struct *vma, struct vm_fault *vmf)
1209 {
1210 	struct inode *inode = file_inode(vma->vm_file);
1211 	struct page *page = vmf->page;
1212 	struct ceph_mds_client *mdsc = ceph_inode_to_client(inode)->mdsc;
1213 	loff_t off = page_offset(page);
1214 	loff_t size, len;
1215 	int ret;
1216 
1217 	/* Update time before taking page lock */
1218 	file_update_time(vma->vm_file);
1219 
1220 	size = i_size_read(inode);
1221 	if (off + PAGE_CACHE_SIZE <= size)
1222 		len = PAGE_CACHE_SIZE;
1223 	else
1224 		len = size & ~PAGE_CACHE_MASK;
1225 
1226 	dout("page_mkwrite %p %llu~%llu page %p idx %lu\n", inode,
1227 	     off, len, page, page->index);
1228 
1229 	lock_page(page);
1230 
1231 	ret = VM_FAULT_NOPAGE;
1232 	if ((off > size) ||
1233 	    (page->mapping != inode->i_mapping))
1234 		goto out;
1235 
1236 	ret = ceph_update_writeable_page(vma->vm_file, off, len, page);
1237 	if (ret == 0) {
1238 		/* success.  we'll keep the page locked. */
1239 		set_page_dirty(page);
1240 		up_read(&mdsc->snap_rwsem);
1241 		ret = VM_FAULT_LOCKED;
1242 	} else {
1243 		if (ret == -ENOMEM)
1244 			ret = VM_FAULT_OOM;
1245 		else
1246 			ret = VM_FAULT_SIGBUS;
1247 	}
1248 out:
1249 	dout("page_mkwrite %p %llu~%llu = %d\n", inode, off, len, ret);
1250 	if (ret != VM_FAULT_LOCKED)
1251 		unlock_page(page);
1252 	return ret;
1253 }
1254 
1255 static struct vm_operations_struct ceph_vmops = {
1256 	.fault		= filemap_fault,
1257 	.page_mkwrite	= ceph_page_mkwrite,
1258 	.remap_pages	= generic_file_remap_pages,
1259 };
1260 
1261 int ceph_mmap(struct file *file, struct vm_area_struct *vma)
1262 {
1263 	struct address_space *mapping = file->f_mapping;
1264 
1265 	if (!mapping->a_ops->readpage)
1266 		return -ENOEXEC;
1267 	file_accessed(file);
1268 	vma->vm_ops = &ceph_vmops;
1269 	return 0;
1270 }
1271