Linux Audio

Check our new training course

Loading...
v4.17
  1/*
  2 * Copyright (c) 2000-2002,2005 Silicon Graphics, Inc.
  3 * Copyright (c) 2010 David Chinner.
  4 * Copyright (c) 2011 Christoph Hellwig.
  5 * All Rights Reserved.
  6 *
  7 * This program is free software; you can redistribute it and/or
  8 * modify it under the terms of the GNU General Public License as
  9 * published by the Free Software Foundation.
 10 *
 11 * This program is distributed in the hope that it would be useful,
 12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 14 * GNU General Public License for more details.
 15 *
 16 * You should have received a copy of the GNU General Public License
 17 * along with this program; if not, write the Free Software Foundation,
 18 * Inc.,  51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
 19 */
 20#include "xfs.h"
 21#include "xfs_fs.h"
 22#include "xfs_format.h"
 23#include "xfs_log_format.h"
 24#include "xfs_shared.h"
 25#include "xfs_trans_resv.h"
 26#include "xfs_sb.h"
 27#include "xfs_mount.h"
 28#include "xfs_alloc.h"
 29#include "xfs_extent_busy.h"
 30#include "xfs_trace.h"
 31#include "xfs_trans.h"
 32#include "xfs_log.h"
 33
 34void
 35xfs_extent_busy_insert(
 36	struct xfs_trans	*tp,
 37	xfs_agnumber_t		agno,
 38	xfs_agblock_t		bno,
 39	xfs_extlen_t		len,
 40	unsigned int		flags)
 41{
 42	struct xfs_extent_busy	*new;
 43	struct xfs_extent_busy	*busyp;
 44	struct xfs_perag	*pag;
 45	struct rb_node		**rbp;
 46	struct rb_node		*parent = NULL;
 47
 48	new = kmem_zalloc(sizeof(struct xfs_extent_busy), KM_SLEEP);
 
 
 
 
 
 
 
 
 
 
 
 49	new->agno = agno;
 50	new->bno = bno;
 51	new->length = len;
 52	INIT_LIST_HEAD(&new->list);
 53	new->flags = flags;
 54
 55	/* trace before insert to be able to see failed inserts */
 56	trace_xfs_extent_busy(tp->t_mountp, agno, bno, len);
 57
 58	pag = xfs_perag_get(tp->t_mountp, new->agno);
 59	spin_lock(&pag->pagb_lock);
 60	rbp = &pag->pagb_tree.rb_node;
 61	while (*rbp) {
 62		parent = *rbp;
 63		busyp = rb_entry(parent, struct xfs_extent_busy, rb_node);
 64
 65		if (new->bno < busyp->bno) {
 66			rbp = &(*rbp)->rb_left;
 67			ASSERT(new->bno + new->length <= busyp->bno);
 68		} else if (new->bno > busyp->bno) {
 69			rbp = &(*rbp)->rb_right;
 70			ASSERT(bno >= busyp->bno + busyp->length);
 71		} else {
 72			ASSERT(0);
 73		}
 74	}
 75
 76	rb_link_node(&new->rb_node, parent, rbp);
 77	rb_insert_color(&new->rb_node, &pag->pagb_tree);
 78
 79	list_add(&new->list, &tp->t_busy);
 80	spin_unlock(&pag->pagb_lock);
 81	xfs_perag_put(pag);
 82}
 83
 84/*
 85 * Search for a busy extent within the range of the extent we are about to
 86 * allocate.  You need to be holding the busy extent tree lock when calling
 87 * xfs_extent_busy_search(). This function returns 0 for no overlapping busy
 88 * extent, -1 for an overlapping but not exact busy extent, and 1 for an exact
 89 * match. This is done so that a non-zero return indicates an overlap that
 90 * will require a synchronous transaction, but it can still be
 91 * used to distinguish between a partial or exact match.
 92 */
 93int
 94xfs_extent_busy_search(
 95	struct xfs_mount	*mp,
 96	xfs_agnumber_t		agno,
 97	xfs_agblock_t		bno,
 98	xfs_extlen_t		len)
 99{
100	struct xfs_perag	*pag;
101	struct rb_node		*rbp;
102	struct xfs_extent_busy	*busyp;
103	int			match = 0;
104
105	pag = xfs_perag_get(mp, agno);
106	spin_lock(&pag->pagb_lock);
107
108	rbp = pag->pagb_tree.rb_node;
109
110	/* find closest start bno overlap */
111	while (rbp) {
112		busyp = rb_entry(rbp, struct xfs_extent_busy, rb_node);
113		if (bno < busyp->bno) {
114			/* may overlap, but exact start block is lower */
115			if (bno + len > busyp->bno)
116				match = -1;
117			rbp = rbp->rb_left;
118		} else if (bno > busyp->bno) {
119			/* may overlap, but exact start block is higher */
120			if (bno < busyp->bno + busyp->length)
121				match = -1;
122			rbp = rbp->rb_right;
123		} else {
124			/* bno matches busyp, length determines exact match */
125			match = (busyp->length == len) ? 1 : -1;
126			break;
127		}
128	}
129	spin_unlock(&pag->pagb_lock);
130	xfs_perag_put(pag);
131	return match;
132}
133
134/*
135 * The found free extent [fbno, fend] overlaps part or all of the given busy
136 * extent.  If the overlap covers the beginning, the end, or all of the busy
137 * extent, the overlapping portion can be made unbusy and used for the
138 * allocation.  We can't split a busy extent because we can't modify a
139 * transaction/CIL context busy list, but we can update an entry's block
140 * number or length.
141 *
142 * Returns true if the extent can safely be reused, or false if the search
143 * needs to be restarted.
144 */
145STATIC bool
146xfs_extent_busy_update_extent(
147	struct xfs_mount	*mp,
148	struct xfs_perag	*pag,
149	struct xfs_extent_busy	*busyp,
150	xfs_agblock_t		fbno,
151	xfs_extlen_t		flen,
152	bool			userdata) __releases(&pag->pagb_lock)
153					  __acquires(&pag->pagb_lock)
154{
155	xfs_agblock_t		fend = fbno + flen;
156	xfs_agblock_t		bbno = busyp->bno;
157	xfs_agblock_t		bend = bbno + busyp->length;
158
159	/*
160	 * This extent is currently being discarded.  Give the thread
161	 * performing the discard a chance to mark the extent unbusy
162	 * and retry.
163	 */
164	if (busyp->flags & XFS_EXTENT_BUSY_DISCARDED) {
165		spin_unlock(&pag->pagb_lock);
166		delay(1);
167		spin_lock(&pag->pagb_lock);
168		return false;
169	}
170
171	/*
172	 * If there is a busy extent overlapping a user allocation, we have
173	 * no choice but to force the log and retry the search.
174	 *
175	 * Fortunately this does not happen during normal operation, but
176	 * only if the filesystem is very low on space and has to dip into
177	 * the AGFL for normal allocations.
178	 */
179	if (userdata)
180		goto out_force_log;
181
182	if (bbno < fbno && bend > fend) {
183		/*
184		 * Case 1:
185		 *    bbno           bend
186		 *    +BBBBBBBBBBBBBBBBB+
187		 *        +---------+
188		 *        fbno   fend
189		 */
190
191		/*
192		 * We would have to split the busy extent to be able to track
193		 * it correct, which we cannot do because we would have to
194		 * modify the list of busy extents attached to the transaction
195		 * or CIL context, which is immutable.
196		 *
197		 * Force out the log to clear the busy extent and retry the
198		 * search.
199		 */
200		goto out_force_log;
201	} else if (bbno >= fbno && bend <= fend) {
202		/*
203		 * Case 2:
204		 *    bbno           bend
205		 *    +BBBBBBBBBBBBBBBBB+
206		 *    +-----------------+
207		 *    fbno           fend
208		 *
209		 * Case 3:
210		 *    bbno           bend
211		 *    +BBBBBBBBBBBBBBBBB+
212		 *    +--------------------------+
213		 *    fbno                    fend
214		 *
215		 * Case 4:
216		 *             bbno           bend
217		 *             +BBBBBBBBBBBBBBBBB+
218		 *    +--------------------------+
219		 *    fbno                    fend
220		 *
221		 * Case 5:
222		 *             bbno           bend
223		 *             +BBBBBBBBBBBBBBBBB+
224		 *    +-----------------------------------+
225		 *    fbno                             fend
226		 *
227		 */
228
229		/*
230		 * The busy extent is fully covered by the extent we are
231		 * allocating, and can simply be removed from the rbtree.
232		 * However we cannot remove it from the immutable list
233		 * tracking busy extents in the transaction or CIL context,
234		 * so set the length to zero to mark it invalid.
235		 *
236		 * We also need to restart the busy extent search from the
237		 * tree root, because erasing the node can rearrange the
238		 * tree topology.
239		 */
240		rb_erase(&busyp->rb_node, &pag->pagb_tree);
241		busyp->length = 0;
242		return false;
243	} else if (fend < bend) {
244		/*
245		 * Case 6:
246		 *              bbno           bend
247		 *             +BBBBBBBBBBBBBBBBB+
248		 *             +---------+
249		 *             fbno   fend
250		 *
251		 * Case 7:
252		 *             bbno           bend
253		 *             +BBBBBBBBBBBBBBBBB+
254		 *    +------------------+
255		 *    fbno            fend
256		 *
257		 */
258		busyp->bno = fend;
259	} else if (bbno < fbno) {
260		/*
261		 * Case 8:
262		 *    bbno           bend
263		 *    +BBBBBBBBBBBBBBBBB+
264		 *        +-------------+
265		 *        fbno       fend
266		 *
267		 * Case 9:
268		 *    bbno           bend
269		 *    +BBBBBBBBBBBBBBBBB+
270		 *        +----------------------+
271		 *        fbno                fend
272		 */
273		busyp->length = fbno - busyp->bno;
274	} else {
275		ASSERT(0);
276	}
277
278	trace_xfs_extent_busy_reuse(mp, pag->pag_agno, fbno, flen);
279	return true;
280
281out_force_log:
282	spin_unlock(&pag->pagb_lock);
283	xfs_log_force(mp, XFS_LOG_SYNC);
284	trace_xfs_extent_busy_force(mp, pag->pag_agno, fbno, flen);
285	spin_lock(&pag->pagb_lock);
286	return false;
287}
288
289
290/*
291 * For a given extent [fbno, flen], make sure we can reuse it safely.
292 */
293void
294xfs_extent_busy_reuse(
295	struct xfs_mount	*mp,
296	xfs_agnumber_t		agno,
297	xfs_agblock_t		fbno,
298	xfs_extlen_t		flen,
299	bool			userdata)
300{
301	struct xfs_perag	*pag;
302	struct rb_node		*rbp;
303
304	ASSERT(flen > 0);
305
306	pag = xfs_perag_get(mp, agno);
307	spin_lock(&pag->pagb_lock);
308restart:
309	rbp = pag->pagb_tree.rb_node;
310	while (rbp) {
311		struct xfs_extent_busy *busyp =
312			rb_entry(rbp, struct xfs_extent_busy, rb_node);
313		xfs_agblock_t	bbno = busyp->bno;
314		xfs_agblock_t	bend = bbno + busyp->length;
315
316		if (fbno + flen <= bbno) {
317			rbp = rbp->rb_left;
318			continue;
319		} else if (fbno >= bend) {
320			rbp = rbp->rb_right;
321			continue;
322		}
323
324		if (!xfs_extent_busy_update_extent(mp, pag, busyp, fbno, flen,
325						  userdata))
326			goto restart;
327	}
328	spin_unlock(&pag->pagb_lock);
329	xfs_perag_put(pag);
330}
331
332/*
333 * For a given extent [fbno, flen], search the busy extent list to find a
334 * subset of the extent that is not busy.  If *rlen is smaller than
335 * args->minlen no suitable extent could be found, and the higher level
336 * code needs to force out the log and retry the allocation.
337 *
338 * Return the current busy generation for the AG if the extent is busy. This
339 * value can be used to wait for at least one of the currently busy extents
340 * to be cleared. Note that the busy list is not guaranteed to be empty after
341 * the gen is woken. The state of a specific extent must always be confirmed
342 * with another call to xfs_extent_busy_trim() before it can be used.
343 */
344bool
345xfs_extent_busy_trim(
346	struct xfs_alloc_arg	*args,
347	xfs_agblock_t		*bno,
348	xfs_extlen_t		*len,
349	unsigned		*busy_gen)
 
350{
351	xfs_agblock_t		fbno;
352	xfs_extlen_t		flen;
353	struct rb_node		*rbp;
354	bool			ret = false;
355
356	ASSERT(*len > 0);
357
358	spin_lock(&args->pag->pagb_lock);
359restart:
360	fbno = *bno;
361	flen = *len;
362	rbp = args->pag->pagb_tree.rb_node;
363	while (rbp && flen >= args->minlen) {
364		struct xfs_extent_busy *busyp =
365			rb_entry(rbp, struct xfs_extent_busy, rb_node);
366		xfs_agblock_t	fend = fbno + flen;
367		xfs_agblock_t	bbno = busyp->bno;
368		xfs_agblock_t	bend = bbno + busyp->length;
369
370		if (fend <= bbno) {
371			rbp = rbp->rb_left;
372			continue;
373		} else if (fbno >= bend) {
374			rbp = rbp->rb_right;
375			continue;
376		}
377
378		/*
379		 * If this is a metadata allocation, try to reuse the busy
380		 * extent instead of trimming the allocation.
381		 */
382		if (!xfs_alloc_is_userdata(args->datatype) &&
383		    !(busyp->flags & XFS_EXTENT_BUSY_DISCARDED)) {
384			if (!xfs_extent_busy_update_extent(args->mp, args->pag,
385							  busyp, fbno, flen,
386							  false))
387				goto restart;
388			continue;
389		}
390
391		if (bbno <= fbno) {
392			/* start overlap */
393
394			/*
395			 * Case 1:
396			 *    bbno           bend
397			 *    +BBBBBBBBBBBBBBBBB+
398			 *        +---------+
399			 *        fbno   fend
400			 *
401			 * Case 2:
402			 *    bbno           bend
403			 *    +BBBBBBBBBBBBBBBBB+
404			 *    +-------------+
405			 *    fbno       fend
406			 *
407			 * Case 3:
408			 *    bbno           bend
409			 *    +BBBBBBBBBBBBBBBBB+
410			 *        +-------------+
411			 *        fbno       fend
412			 *
413			 * Case 4:
414			 *    bbno           bend
415			 *    +BBBBBBBBBBBBBBBBB+
416			 *    +-----------------+
417			 *    fbno           fend
418			 *
419			 * No unbusy region in extent, return failure.
420			 */
421			if (fend <= bend)
422				goto fail;
423
424			/*
425			 * Case 5:
426			 *    bbno           bend
427			 *    +BBBBBBBBBBBBBBBBB+
428			 *        +----------------------+
429			 *        fbno                fend
430			 *
431			 * Case 6:
432			 *    bbno           bend
433			 *    +BBBBBBBBBBBBBBBBB+
434			 *    +--------------------------+
435			 *    fbno                    fend
436			 *
437			 * Needs to be trimmed to:
438			 *                       +-------+
439			 *                       fbno fend
440			 */
441			fbno = bend;
442		} else if (bend >= fend) {
443			/* end overlap */
444
445			/*
446			 * Case 7:
447			 *             bbno           bend
448			 *             +BBBBBBBBBBBBBBBBB+
449			 *    +------------------+
450			 *    fbno            fend
451			 *
452			 * Case 8:
453			 *             bbno           bend
454			 *             +BBBBBBBBBBBBBBBBB+
455			 *    +--------------------------+
456			 *    fbno                    fend
457			 *
458			 * Needs to be trimmed to:
459			 *    +-------+
460			 *    fbno fend
461			 */
462			fend = bbno;
463		} else {
464			/* middle overlap */
465
466			/*
467			 * Case 9:
468			 *             bbno           bend
469			 *             +BBBBBBBBBBBBBBBBB+
470			 *    +-----------------------------------+
471			 *    fbno                             fend
472			 *
473			 * Can be trimmed to:
474			 *    +-------+        OR         +-------+
475			 *    fbno fend                   fbno fend
476			 *
477			 * Backward allocation leads to significant
478			 * fragmentation of directories, which degrades
479			 * directory performance, therefore we always want to
480			 * choose the option that produces forward allocation
481			 * patterns.
482			 * Preferring the lower bno extent will make the next
483			 * request use "fend" as the start of the next
484			 * allocation;  if the segment is no longer busy at
485			 * that point, we'll get a contiguous allocation, but
486			 * even if it is still busy, we will get a forward
487			 * allocation.
488			 * We try to avoid choosing the segment at "bend",
489			 * because that can lead to the next allocation
490			 * taking the segment at "fbno", which would be a
491			 * backward allocation.  We only use the segment at
492			 * "fbno" if it is much larger than the current
493			 * requested size, because in that case there's a
494			 * good chance subsequent allocations will be
495			 * contiguous.
496			 */
497			if (bbno - fbno >= args->maxlen) {
498				/* left candidate fits perfect */
499				fend = bbno;
500			} else if (fend - bend >= args->maxlen * 4) {
501				/* right candidate has enough free space */
502				fbno = bend;
503			} else if (bbno - fbno >= args->minlen) {
504				/* left candidate fits minimum requirement */
505				fend = bbno;
506			} else {
507				goto fail;
508			}
509		}
510
511		flen = fend - fbno;
512	}
513out:
514
515	if (fbno != *bno || flen != *len) {
516		trace_xfs_extent_busy_trim(args->mp, args->agno, *bno, *len,
517					  fbno, flen);
518		*bno = fbno;
519		*len = flen;
520		*busy_gen = args->pag->pagb_gen;
521		ret = true;
522	}
523	spin_unlock(&args->pag->pagb_lock);
524	return ret;
 
525fail:
526	/*
527	 * Return a zero extent length as failure indications.  All callers
528	 * re-check if the trimmed extent satisfies the minlen requirement.
529	 */
530	flen = 0;
531	goto out;
 
 
532}
533
534STATIC void
535xfs_extent_busy_clear_one(
536	struct xfs_mount	*mp,
537	struct xfs_perag	*pag,
538	struct xfs_extent_busy	*busyp)
539{
540	if (busyp->length) {
541		trace_xfs_extent_busy_clear(mp, busyp->agno, busyp->bno,
542						busyp->length);
543		rb_erase(&busyp->rb_node, &pag->pagb_tree);
544	}
545
546	list_del_init(&busyp->list);
547	kmem_free(busyp);
548}
549
550static void
551xfs_extent_busy_put_pag(
552	struct xfs_perag	*pag,
553	bool			wakeup)
554		__releases(pag->pagb_lock)
555{
556	if (wakeup) {
557		pag->pagb_gen++;
558		wake_up_all(&pag->pagb_wait);
559	}
560
561	spin_unlock(&pag->pagb_lock);
562	xfs_perag_put(pag);
563}
564
565/*
566 * Remove all extents on the passed in list from the busy extents tree.
567 * If do_discard is set skip extents that need to be discarded, and mark
568 * these as undergoing a discard operation instead.
569 */
570void
571xfs_extent_busy_clear(
572	struct xfs_mount	*mp,
573	struct list_head	*list,
574	bool			do_discard)
575{
576	struct xfs_extent_busy	*busyp, *n;
577	struct xfs_perag	*pag = NULL;
578	xfs_agnumber_t		agno = NULLAGNUMBER;
579	bool			wakeup = false;
580
581	list_for_each_entry_safe(busyp, n, list, list) {
582		if (busyp->agno != agno) {
583			if (pag)
584				xfs_extent_busy_put_pag(pag, wakeup);
585			agno = busyp->agno;
586			pag = xfs_perag_get(mp, agno);
 
587			spin_lock(&pag->pagb_lock);
588			wakeup = false;
589		}
590
591		if (do_discard && busyp->length &&
592		    !(busyp->flags & XFS_EXTENT_BUSY_SKIP_DISCARD)) {
593			busyp->flags = XFS_EXTENT_BUSY_DISCARDED;
594		} else {
595			xfs_extent_busy_clear_one(mp, pag, busyp);
596			wakeup = true;
597		}
598	}
599
600	if (pag)
601		xfs_extent_busy_put_pag(pag, wakeup);
602}
603
604/*
605 * Flush out all busy extents for this AG.
606 */
607void
608xfs_extent_busy_flush(
609	struct xfs_mount	*mp,
610	struct xfs_perag	*pag,
611	unsigned		busy_gen)
612{
613	DEFINE_WAIT		(wait);
614	int			error;
615
616	error = xfs_log_force(mp, XFS_LOG_SYNC);
617	if (error)
618		return;
619
620	do {
621		prepare_to_wait(&pag->pagb_wait, &wait, TASK_KILLABLE);
622		if  (busy_gen != READ_ONCE(pag->pagb_gen))
623			break;
624		schedule();
625	} while (1);
626
627	finish_wait(&pag->pagb_wait, &wait);
628}
629
630void
631xfs_extent_busy_wait_all(
632	struct xfs_mount	*mp)
633{
634	DEFINE_WAIT		(wait);
635	xfs_agnumber_t		agno;
636
637	for (agno = 0; agno < mp->m_sb.sb_agcount; agno++) {
638		struct xfs_perag *pag = xfs_perag_get(mp, agno);
639
640		do {
641			prepare_to_wait(&pag->pagb_wait, &wait, TASK_KILLABLE);
642			if  (RB_EMPTY_ROOT(&pag->pagb_tree))
643				break;
644			schedule();
645		} while (1);
646		finish_wait(&pag->pagb_wait, &wait);
647
648		xfs_perag_put(pag);
649	}
650}
651
652/*
653 * Callback for list_sort to sort busy extents by the AG they reside in.
654 */
655int
656xfs_extent_busy_ag_cmp(
657	void			*priv,
658	struct list_head	*l1,
659	struct list_head	*l2)
660{
661	struct xfs_extent_busy	*b1 =
662		container_of(l1, struct xfs_extent_busy, list);
663	struct xfs_extent_busy	*b2 =
664		container_of(l2, struct xfs_extent_busy, list);
665	s32 diff;
666
667	diff = b1->agno - b2->agno;
668	if (!diff)
669		diff = b1->bno - b2->bno;
670	return diff;
671}
v4.6
  1/*
  2 * Copyright (c) 2000-2002,2005 Silicon Graphics, Inc.
  3 * Copyright (c) 2010 David Chinner.
  4 * Copyright (c) 2011 Christoph Hellwig.
  5 * All Rights Reserved.
  6 *
  7 * This program is free software; you can redistribute it and/or
  8 * modify it under the terms of the GNU General Public License as
  9 * published by the Free Software Foundation.
 10 *
 11 * This program is distributed in the hope that it would be useful,
 12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 14 * GNU General Public License for more details.
 15 *
 16 * You should have received a copy of the GNU General Public License
 17 * along with this program; if not, write the Free Software Foundation,
 18 * Inc.,  51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
 19 */
 20#include "xfs.h"
 21#include "xfs_fs.h"
 22#include "xfs_format.h"
 23#include "xfs_log_format.h"
 24#include "xfs_shared.h"
 25#include "xfs_trans_resv.h"
 26#include "xfs_sb.h"
 27#include "xfs_mount.h"
 28#include "xfs_alloc.h"
 29#include "xfs_extent_busy.h"
 30#include "xfs_trace.h"
 31#include "xfs_trans.h"
 32#include "xfs_log.h"
 33
 34void
 35xfs_extent_busy_insert(
 36	struct xfs_trans	*tp,
 37	xfs_agnumber_t		agno,
 38	xfs_agblock_t		bno,
 39	xfs_extlen_t		len,
 40	unsigned int		flags)
 41{
 42	struct xfs_extent_busy	*new;
 43	struct xfs_extent_busy	*busyp;
 44	struct xfs_perag	*pag;
 45	struct rb_node		**rbp;
 46	struct rb_node		*parent = NULL;
 47
 48	new = kmem_zalloc(sizeof(struct xfs_extent_busy), KM_MAYFAIL);
 49	if (!new) {
 50		/*
 51		 * No Memory!  Since it is now not possible to track the free
 52		 * block, make this a synchronous transaction to insure that
 53		 * the block is not reused before this transaction commits.
 54		 */
 55		trace_xfs_extent_busy_enomem(tp->t_mountp, agno, bno, len);
 56		xfs_trans_set_sync(tp);
 57		return;
 58	}
 59
 60	new->agno = agno;
 61	new->bno = bno;
 62	new->length = len;
 63	INIT_LIST_HEAD(&new->list);
 64	new->flags = flags;
 65
 66	/* trace before insert to be able to see failed inserts */
 67	trace_xfs_extent_busy(tp->t_mountp, agno, bno, len);
 68
 69	pag = xfs_perag_get(tp->t_mountp, new->agno);
 70	spin_lock(&pag->pagb_lock);
 71	rbp = &pag->pagb_tree.rb_node;
 72	while (*rbp) {
 73		parent = *rbp;
 74		busyp = rb_entry(parent, struct xfs_extent_busy, rb_node);
 75
 76		if (new->bno < busyp->bno) {
 77			rbp = &(*rbp)->rb_left;
 78			ASSERT(new->bno + new->length <= busyp->bno);
 79		} else if (new->bno > busyp->bno) {
 80			rbp = &(*rbp)->rb_right;
 81			ASSERT(bno >= busyp->bno + busyp->length);
 82		} else {
 83			ASSERT(0);
 84		}
 85	}
 86
 87	rb_link_node(&new->rb_node, parent, rbp);
 88	rb_insert_color(&new->rb_node, &pag->pagb_tree);
 89
 90	list_add(&new->list, &tp->t_busy);
 91	spin_unlock(&pag->pagb_lock);
 92	xfs_perag_put(pag);
 93}
 94
 95/*
 96 * Search for a busy extent within the range of the extent we are about to
 97 * allocate.  You need to be holding the busy extent tree lock when calling
 98 * xfs_extent_busy_search(). This function returns 0 for no overlapping busy
 99 * extent, -1 for an overlapping but not exact busy extent, and 1 for an exact
100 * match. This is done so that a non-zero return indicates an overlap that
101 * will require a synchronous transaction, but it can still be
102 * used to distinguish between a partial or exact match.
103 */
104int
105xfs_extent_busy_search(
106	struct xfs_mount	*mp,
107	xfs_agnumber_t		agno,
108	xfs_agblock_t		bno,
109	xfs_extlen_t		len)
110{
111	struct xfs_perag	*pag;
112	struct rb_node		*rbp;
113	struct xfs_extent_busy	*busyp;
114	int			match = 0;
115
116	pag = xfs_perag_get(mp, agno);
117	spin_lock(&pag->pagb_lock);
118
119	rbp = pag->pagb_tree.rb_node;
120
121	/* find closest start bno overlap */
122	while (rbp) {
123		busyp = rb_entry(rbp, struct xfs_extent_busy, rb_node);
124		if (bno < busyp->bno) {
125			/* may overlap, but exact start block is lower */
126			if (bno + len > busyp->bno)
127				match = -1;
128			rbp = rbp->rb_left;
129		} else if (bno > busyp->bno) {
130			/* may overlap, but exact start block is higher */
131			if (bno < busyp->bno + busyp->length)
132				match = -1;
133			rbp = rbp->rb_right;
134		} else {
135			/* bno matches busyp, length determines exact match */
136			match = (busyp->length == len) ? 1 : -1;
137			break;
138		}
139	}
140	spin_unlock(&pag->pagb_lock);
141	xfs_perag_put(pag);
142	return match;
143}
144
145/*
146 * The found free extent [fbno, fend] overlaps part or all of the given busy
147 * extent.  If the overlap covers the beginning, the end, or all of the busy
148 * extent, the overlapping portion can be made unbusy and used for the
149 * allocation.  We can't split a busy extent because we can't modify a
150 * transaction/CIL context busy list, but we can update an entry's block
151 * number or length.
152 *
153 * Returns true if the extent can safely be reused, or false if the search
154 * needs to be restarted.
155 */
156STATIC bool
157xfs_extent_busy_update_extent(
158	struct xfs_mount	*mp,
159	struct xfs_perag	*pag,
160	struct xfs_extent_busy	*busyp,
161	xfs_agblock_t		fbno,
162	xfs_extlen_t		flen,
163	bool			userdata) __releases(&pag->pagb_lock)
164					  __acquires(&pag->pagb_lock)
165{
166	xfs_agblock_t		fend = fbno + flen;
167	xfs_agblock_t		bbno = busyp->bno;
168	xfs_agblock_t		bend = bbno + busyp->length;
169
170	/*
171	 * This extent is currently being discarded.  Give the thread
172	 * performing the discard a chance to mark the extent unbusy
173	 * and retry.
174	 */
175	if (busyp->flags & XFS_EXTENT_BUSY_DISCARDED) {
176		spin_unlock(&pag->pagb_lock);
177		delay(1);
178		spin_lock(&pag->pagb_lock);
179		return false;
180	}
181
182	/*
183	 * If there is a busy extent overlapping a user allocation, we have
184	 * no choice but to force the log and retry the search.
185	 *
186	 * Fortunately this does not happen during normal operation, but
187	 * only if the filesystem is very low on space and has to dip into
188	 * the AGFL for normal allocations.
189	 */
190	if (userdata)
191		goto out_force_log;
192
193	if (bbno < fbno && bend > fend) {
194		/*
195		 * Case 1:
196		 *    bbno           bend
197		 *    +BBBBBBBBBBBBBBBBB+
198		 *        +---------+
199		 *        fbno   fend
200		 */
201
202		/*
203		 * We would have to split the busy extent to be able to track
204		 * it correct, which we cannot do because we would have to
205		 * modify the list of busy extents attached to the transaction
206		 * or CIL context, which is immutable.
207		 *
208		 * Force out the log to clear the busy extent and retry the
209		 * search.
210		 */
211		goto out_force_log;
212	} else if (bbno >= fbno && bend <= fend) {
213		/*
214		 * Case 2:
215		 *    bbno           bend
216		 *    +BBBBBBBBBBBBBBBBB+
217		 *    +-----------------+
218		 *    fbno           fend
219		 *
220		 * Case 3:
221		 *    bbno           bend
222		 *    +BBBBBBBBBBBBBBBBB+
223		 *    +--------------------------+
224		 *    fbno                    fend
225		 *
226		 * Case 4:
227		 *             bbno           bend
228		 *             +BBBBBBBBBBBBBBBBB+
229		 *    +--------------------------+
230		 *    fbno                    fend
231		 *
232		 * Case 5:
233		 *             bbno           bend
234		 *             +BBBBBBBBBBBBBBBBB+
235		 *    +-----------------------------------+
236		 *    fbno                             fend
237		 *
238		 */
239
240		/*
241		 * The busy extent is fully covered by the extent we are
242		 * allocating, and can simply be removed from the rbtree.
243		 * However we cannot remove it from the immutable list
244		 * tracking busy extents in the transaction or CIL context,
245		 * so set the length to zero to mark it invalid.
246		 *
247		 * We also need to restart the busy extent search from the
248		 * tree root, because erasing the node can rearrange the
249		 * tree topology.
250		 */
251		rb_erase(&busyp->rb_node, &pag->pagb_tree);
252		busyp->length = 0;
253		return false;
254	} else if (fend < bend) {
255		/*
256		 * Case 6:
257		 *              bbno           bend
258		 *             +BBBBBBBBBBBBBBBBB+
259		 *             +---------+
260		 *             fbno   fend
261		 *
262		 * Case 7:
263		 *             bbno           bend
264		 *             +BBBBBBBBBBBBBBBBB+
265		 *    +------------------+
266		 *    fbno            fend
267		 *
268		 */
269		busyp->bno = fend;
270	} else if (bbno < fbno) {
271		/*
272		 * Case 8:
273		 *    bbno           bend
274		 *    +BBBBBBBBBBBBBBBBB+
275		 *        +-------------+
276		 *        fbno       fend
277		 *
278		 * Case 9:
279		 *    bbno           bend
280		 *    +BBBBBBBBBBBBBBBBB+
281		 *        +----------------------+
282		 *        fbno                fend
283		 */
284		busyp->length = fbno - busyp->bno;
285	} else {
286		ASSERT(0);
287	}
288
289	trace_xfs_extent_busy_reuse(mp, pag->pag_agno, fbno, flen);
290	return true;
291
292out_force_log:
293	spin_unlock(&pag->pagb_lock);
294	xfs_log_force(mp, XFS_LOG_SYNC);
295	trace_xfs_extent_busy_force(mp, pag->pag_agno, fbno, flen);
296	spin_lock(&pag->pagb_lock);
297	return false;
298}
299
300
301/*
302 * For a given extent [fbno, flen], make sure we can reuse it safely.
303 */
304void
305xfs_extent_busy_reuse(
306	struct xfs_mount	*mp,
307	xfs_agnumber_t		agno,
308	xfs_agblock_t		fbno,
309	xfs_extlen_t		flen,
310	bool			userdata)
311{
312	struct xfs_perag	*pag;
313	struct rb_node		*rbp;
314
315	ASSERT(flen > 0);
316
317	pag = xfs_perag_get(mp, agno);
318	spin_lock(&pag->pagb_lock);
319restart:
320	rbp = pag->pagb_tree.rb_node;
321	while (rbp) {
322		struct xfs_extent_busy *busyp =
323			rb_entry(rbp, struct xfs_extent_busy, rb_node);
324		xfs_agblock_t	bbno = busyp->bno;
325		xfs_agblock_t	bend = bbno + busyp->length;
326
327		if (fbno + flen <= bbno) {
328			rbp = rbp->rb_left;
329			continue;
330		} else if (fbno >= bend) {
331			rbp = rbp->rb_right;
332			continue;
333		}
334
335		if (!xfs_extent_busy_update_extent(mp, pag, busyp, fbno, flen,
336						  userdata))
337			goto restart;
338	}
339	spin_unlock(&pag->pagb_lock);
340	xfs_perag_put(pag);
341}
342
343/*
344 * For a given extent [fbno, flen], search the busy extent list to find a
345 * subset of the extent that is not busy.  If *rlen is smaller than
346 * args->minlen no suitable extent could be found, and the higher level
347 * code needs to force out the log and retry the allocation.
 
 
 
 
 
 
348 */
349void
350xfs_extent_busy_trim(
351	struct xfs_alloc_arg	*args,
352	xfs_agblock_t		bno,
353	xfs_extlen_t		len,
354	xfs_agblock_t		*rbno,
355	xfs_extlen_t		*rlen)
356{
357	xfs_agblock_t		fbno;
358	xfs_extlen_t		flen;
359	struct rb_node		*rbp;
 
360
361	ASSERT(len > 0);
362
363	spin_lock(&args->pag->pagb_lock);
364restart:
365	fbno = bno;
366	flen = len;
367	rbp = args->pag->pagb_tree.rb_node;
368	while (rbp && flen >= args->minlen) {
369		struct xfs_extent_busy *busyp =
370			rb_entry(rbp, struct xfs_extent_busy, rb_node);
371		xfs_agblock_t	fend = fbno + flen;
372		xfs_agblock_t	bbno = busyp->bno;
373		xfs_agblock_t	bend = bbno + busyp->length;
374
375		if (fend <= bbno) {
376			rbp = rbp->rb_left;
377			continue;
378		} else if (fbno >= bend) {
379			rbp = rbp->rb_right;
380			continue;
381		}
382
383		/*
384		 * If this is a metadata allocation, try to reuse the busy
385		 * extent instead of trimming the allocation.
386		 */
387		if (!args->userdata &&
388		    !(busyp->flags & XFS_EXTENT_BUSY_DISCARDED)) {
389			if (!xfs_extent_busy_update_extent(args->mp, args->pag,
390							  busyp, fbno, flen,
391							  false))
392				goto restart;
393			continue;
394		}
395
396		if (bbno <= fbno) {
397			/* start overlap */
398
399			/*
400			 * Case 1:
401			 *    bbno           bend
402			 *    +BBBBBBBBBBBBBBBBB+
403			 *        +---------+
404			 *        fbno   fend
405			 *
406			 * Case 2:
407			 *    bbno           bend
408			 *    +BBBBBBBBBBBBBBBBB+
409			 *    +-------------+
410			 *    fbno       fend
411			 *
412			 * Case 3:
413			 *    bbno           bend
414			 *    +BBBBBBBBBBBBBBBBB+
415			 *        +-------------+
416			 *        fbno       fend
417			 *
418			 * Case 4:
419			 *    bbno           bend
420			 *    +BBBBBBBBBBBBBBBBB+
421			 *    +-----------------+
422			 *    fbno           fend
423			 *
424			 * No unbusy region in extent, return failure.
425			 */
426			if (fend <= bend)
427				goto fail;
428
429			/*
430			 * Case 5:
431			 *    bbno           bend
432			 *    +BBBBBBBBBBBBBBBBB+
433			 *        +----------------------+
434			 *        fbno                fend
435			 *
436			 * Case 6:
437			 *    bbno           bend
438			 *    +BBBBBBBBBBBBBBBBB+
439			 *    +--------------------------+
440			 *    fbno                    fend
441			 *
442			 * Needs to be trimmed to:
443			 *                       +-------+
444			 *                       fbno fend
445			 */
446			fbno = bend;
447		} else if (bend >= fend) {
448			/* end overlap */
449
450			/*
451			 * Case 7:
452			 *             bbno           bend
453			 *             +BBBBBBBBBBBBBBBBB+
454			 *    +------------------+
455			 *    fbno            fend
456			 *
457			 * Case 8:
458			 *             bbno           bend
459			 *             +BBBBBBBBBBBBBBBBB+
460			 *    +--------------------------+
461			 *    fbno                    fend
462			 *
463			 * Needs to be trimmed to:
464			 *    +-------+
465			 *    fbno fend
466			 */
467			fend = bbno;
468		} else {
469			/* middle overlap */
470
471			/*
472			 * Case 9:
473			 *             bbno           bend
474			 *             +BBBBBBBBBBBBBBBBB+
475			 *    +-----------------------------------+
476			 *    fbno                             fend
477			 *
478			 * Can be trimmed to:
479			 *    +-------+        OR         +-------+
480			 *    fbno fend                   fbno fend
481			 *
482			 * Backward allocation leads to significant
483			 * fragmentation of directories, which degrades
484			 * directory performance, therefore we always want to
485			 * choose the option that produces forward allocation
486			 * patterns.
487			 * Preferring the lower bno extent will make the next
488			 * request use "fend" as the start of the next
489			 * allocation;  if the segment is no longer busy at
490			 * that point, we'll get a contiguous allocation, but
491			 * even if it is still busy, we will get a forward
492			 * allocation.
493			 * We try to avoid choosing the segment at "bend",
494			 * because that can lead to the next allocation
495			 * taking the segment at "fbno", which would be a
496			 * backward allocation.  We only use the segment at
497			 * "fbno" if it is much larger than the current
498			 * requested size, because in that case there's a
499			 * good chance subsequent allocations will be
500			 * contiguous.
501			 */
502			if (bbno - fbno >= args->maxlen) {
503				/* left candidate fits perfect */
504				fend = bbno;
505			} else if (fend - bend >= args->maxlen * 4) {
506				/* right candidate has enough free space */
507				fbno = bend;
508			} else if (bbno - fbno >= args->minlen) {
509				/* left candidate fits minimum requirement */
510				fend = bbno;
511			} else {
512				goto fail;
513			}
514		}
515
516		flen = fend - fbno;
517	}
518	spin_unlock(&args->pag->pagb_lock);
519
520	if (fbno != bno || flen != len) {
521		trace_xfs_extent_busy_trim(args->mp, args->agno, bno, len,
522					  fbno, flen);
 
 
 
 
523	}
524	*rbno = fbno;
525	*rlen = flen;
526	return;
527fail:
528	/*
529	 * Return a zero extent length as failure indications.  All callers
530	 * re-check if the trimmed extent satisfies the minlen requirement.
531	 */
532	spin_unlock(&args->pag->pagb_lock);
533	trace_xfs_extent_busy_trim(args->mp, args->agno, bno, len, fbno, 0);
534	*rbno = fbno;
535	*rlen = 0;
536}
537
538STATIC void
539xfs_extent_busy_clear_one(
540	struct xfs_mount	*mp,
541	struct xfs_perag	*pag,
542	struct xfs_extent_busy	*busyp)
543{
544	if (busyp->length) {
545		trace_xfs_extent_busy_clear(mp, busyp->agno, busyp->bno,
546						busyp->length);
547		rb_erase(&busyp->rb_node, &pag->pagb_tree);
548	}
549
550	list_del_init(&busyp->list);
551	kmem_free(busyp);
552}
553
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
554/*
555 * Remove all extents on the passed in list from the busy extents tree.
556 * If do_discard is set skip extents that need to be discarded, and mark
557 * these as undergoing a discard operation instead.
558 */
559void
560xfs_extent_busy_clear(
561	struct xfs_mount	*mp,
562	struct list_head	*list,
563	bool			do_discard)
564{
565	struct xfs_extent_busy	*busyp, *n;
566	struct xfs_perag	*pag = NULL;
567	xfs_agnumber_t		agno = NULLAGNUMBER;
 
568
569	list_for_each_entry_safe(busyp, n, list, list) {
570		if (busyp->agno != agno) {
571			if (pag) {
572				spin_unlock(&pag->pagb_lock);
573				xfs_perag_put(pag);
574			}
575			pag = xfs_perag_get(mp, busyp->agno);
576			spin_lock(&pag->pagb_lock);
577			agno = busyp->agno;
578		}
579
580		if (do_discard && busyp->length &&
581		    !(busyp->flags & XFS_EXTENT_BUSY_SKIP_DISCARD))
582			busyp->flags = XFS_EXTENT_BUSY_DISCARDED;
583		else
584			xfs_extent_busy_clear_one(mp, pag, busyp);
 
 
585	}
586
587	if (pag) {
588		spin_unlock(&pag->pagb_lock);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
589		xfs_perag_put(pag);
590	}
591}
592
593/*
594 * Callback for list_sort to sort busy extents by the AG they reside in.
595 */
596int
597xfs_extent_busy_ag_cmp(
598	void			*priv,
599	struct list_head	*a,
600	struct list_head	*b)
601{
602	return container_of(a, struct xfs_extent_busy, list)->agno -
603		container_of(b, struct xfs_extent_busy, list)->agno;
 
 
 
 
 
 
 
 
604}