1 /* -*- mode: c; c-basic-offset: 8; indent-tabs-mode: nil; -*-
2 * vim:expandtab:shiftwidth=8:tabstop=8:
6 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 only,
10 * as published by the Free Software Foundation.
12 * This program is distributed in the hope that it will be useful, but
13 * WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * General Public License version 2 for more details (a copy is included
16 * in the LICENSE file that accompanied this code).
18 * You should have received a copy of the GNU General Public License
19 * version 2 along with this program; If not, see
20 * http://www.sun.com/software/products/lustre/docs/GPLv2.pdf
22 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
23 * CA 95054 USA or visit www.sun.com if you need additional information or
29 * Copyright 2008 Sun Microsystems, Inc. All rights reserved
30 * Use is subject to license terms.
33 * This file is part of Lustre, http://www.lustre.org/
34 * Lustre is a trademark of Sun Microsystems, Inc.
36 * lustre/quota/quota_context.c
38 * Lustre Quota Context
40 * Author: Niu YaWei <niu@clusterfs.com>
44 # define EXPORT_SYMTAB
47 #define DEBUG_SUBSYSTEM S_LQUOTA
49 #include <linux/version.h>
51 #include <asm/unistd.h>
52 #include <linux/slab.h>
53 #include <linux/quotaops.h>
54 #include <linux/module.h>
55 #include <linux/init.h>
57 #include <obd_class.h>
58 #include <lustre_quota.h>
59 #include <lustre_fsfilt.h>
60 #include <lprocfs_status.h>
61 #include "quota_internal.h"
63 #ifdef HAVE_QUOTA_SUPPORT
65 static cfs_hash_ops_t lqs_hash_ops;
67 unsigned long default_bunit_sz = 128 * 1024 * 1024; /* 128M bytes */
68 unsigned long default_btune_ratio = 50; /* 50 percentage */
69 unsigned long default_iunit_sz = 5120; /* 5120 inodes */
70 unsigned long default_itune_ratio = 50; /* 50 percentage */
72 cfs_mem_cache_t *qunit_cachep = NULL;
73 struct list_head qunit_hash[NR_DQHASH];
74 spinlock_t qunit_hash_lock = SPIN_LOCK_UNLOCKED;
76 /* please sync qunit_state with qunit_state_names */
83 * a qunit is added into qunit hash, that means
84 * a quota req will be sent or is flying
88 * a qunit is removed from qunit hash, that
89 * means a quota req is handled and comes back
91 QUNIT_RM_FROM_HASH = 2,
93 * qunit can wake up all threads waiting for it
98 static const char *qunit_state_names[] = {
99 [QUNIT_CREATED] = "CREATED",
100 [QUNIT_IN_HASH] = "IN_HASH",
101 [QUNIT_RM_FROM_HASH] = "RM_FROM_HASH",
102 [QUNIT_FINISHED] = "FINISHED",
105 struct lustre_qunit {
106 struct list_head lq_hash; /** Hash list in memory */
107 atomic_t lq_refcnt; /** Use count */
108 struct lustre_quota_ctxt *lq_ctxt; /** Quota context this applies to */
109 struct qunit_data lq_data; /** See qunit_data */
110 unsigned int lq_opc; /** QUOTA_DQACQ, QUOTA_DQREL */
111 cfs_waitq_t lq_waitq; /** Threads waiting for this qunit */
112 spinlock_t lq_lock; /** Protect the whole structure */
113 enum qunit_state lq_state; /** Present the status of qunit */
114 int lq_rc; /** The rc of lq_data */
118 #define QUNIT_SET_STATE(qunit, state) \
120 spin_lock(&qunit->lq_lock); \
121 QDATA_DEBUG((&qunit->lq_data), "qunit(%p) lq_state(%s->%s), " \
122 "lq_rc(%d), lq_owner(%d)\n", \
123 qunit, qunit_state_names[qunit->lq_state], \
124 qunit_state_names[state], qunit->lq_rc, \
126 qunit->lq_state = state; \
127 spin_unlock(&qunit->lq_lock); \
130 #define QUNIT_SET_STATE_AND_RC(qunit, state, rc) \
132 spin_lock(&qunit->lq_lock); \
134 QDATA_DEBUG((&qunit->lq_data), "qunit(%p) lq_state(%s->%s), " \
135 "lq_rc(%d), lq_owner(%d)\n", \
136 qunit, qunit_state_names[qunit->lq_state], \
137 qunit_state_names[state], qunit->lq_rc, \
139 qunit->lq_state = state; \
140 spin_unlock(&qunit->lq_lock); \
143 int should_translate_quota (struct obd_import *imp)
148 if (imp->imp_connect_data.ocd_connect_flags & OBD_CONNECT_QUOTA64)
154 void qunit_cache_cleanup(void)
159 spin_lock(&qunit_hash_lock);
160 for (i = 0; i < NR_DQHASH; i++)
161 LASSERT(list_empty(qunit_hash + i));
162 spin_unlock(&qunit_hash_lock);
166 rc = cfs_mem_cache_destroy(qunit_cachep);
167 LASSERTF(rc == 0, "couldn't destroy qunit_cache slab\n");
173 int qunit_cache_init(void)
178 LASSERT(qunit_cachep == NULL);
179 qunit_cachep = cfs_mem_cache_create("ll_qunit_cache",
180 sizeof(struct lustre_qunit),
185 spin_lock(&qunit_hash_lock);
186 for (i = 0; i < NR_DQHASH; i++)
187 CFS_INIT_LIST_HEAD(qunit_hash + i);
188 spin_unlock(&qunit_hash_lock);
193 qunit_hashfn(struct lustre_quota_ctxt *qctxt, struct qunit_data *qdata)
194 __attribute__((__const__));
197 qunit_hashfn(struct lustre_quota_ctxt *qctxt, struct qunit_data *qdata)
199 unsigned int id = qdata->qd_id;
200 unsigned int type = QDATA_IS_GRP(qdata);
202 unsigned long tmp = ((unsigned long)qctxt >> L1_CACHE_SHIFT) ^ id;
203 tmp = (tmp * (MAXQUOTAS - type)) % NR_DQHASH;
207 /* caller must hold qunit_hash_lock */
208 static inline struct lustre_qunit *find_qunit(unsigned int hashent,
209 struct lustre_quota_ctxt *qctxt,
210 struct qunit_data *qdata)
212 struct lustre_qunit *qunit = NULL;
213 struct qunit_data *tmp;
215 LASSERT_SPIN_LOCKED(&qunit_hash_lock);
216 list_for_each_entry(qunit, qunit_hash + hashent, lq_hash) {
217 tmp = &qunit->lq_data;
218 if (qunit->lq_ctxt == qctxt &&
219 qdata->qd_id == tmp->qd_id &&
220 (qdata->qd_flags & LQUOTA_QUNIT_FLAGS) ==
221 (tmp->qd_flags & LQUOTA_QUNIT_FLAGS))
227 /* check_cur_qunit - check the current usage of qunit.
228 * @qctxt: quota context
229 * @qdata: the type of quota unit to be checked
231 * return: 1 - need acquire qunit;
232 * 2 - need release qunit;
233 * 0 - need do nothing.
237 check_cur_qunit(struct obd_device *obd,
238 struct lustre_quota_ctxt *qctxt, struct qunit_data *qdata)
240 struct super_block *sb = qctxt->lqc_sb;
241 unsigned long qunit_sz, tune_sz;
242 __u64 usage, limit, limit_org, pending_write = 0;
243 long long record = 0;
244 struct obd_quotactl *qctl;
245 struct lustre_qunit_size *lqs = NULL;
249 if (!ll_sb_any_quota_active(sb))
252 spin_lock(&qctxt->lqc_lock);
253 if (!qctxt->lqc_valid){
254 spin_unlock(&qctxt->lqc_lock);
257 spin_unlock(&qctxt->lqc_lock);
263 /* get fs quota usage & limit */
264 qctl->qc_cmd = Q_GETQUOTA;
265 qctl->qc_id = qdata->qd_id;
266 qctl->qc_type = QDATA_IS_GRP(qdata);
267 ret = fsfilt_quotactl(obd, sb, qctl);
269 if (ret == -ESRCH) /* no limit */
272 CERROR("can't get fs quota usage! (rc:%d)\n", ret);
276 if (QDATA_IS_BLK(qdata)) {
277 usage = qctl->qc_dqblk.dqb_curspace;
278 limit = qctl->qc_dqblk.dqb_bhardlimit << QUOTABLOCK_BITS;
280 usage = qctl->qc_dqblk.dqb_curinodes;
281 limit = qctl->qc_dqblk.dqb_ihardlimit;
284 /* ignore the no quota limit case; and it can avoid creating
285 * unnecessary lqs for uid/gid */
289 lqs = quota_search_lqs(LQS_KEY(QDATA_IS_GRP(qdata), qdata->qd_id),
291 if (IS_ERR(lqs) || lqs == NULL) {
292 CDEBUG(D_ERROR, "fail to find a lqs(%s id: %u)!\n",
293 QDATA_IS_GRP(qdata) ? "group" : "user", qdata->qd_id);
296 spin_lock(&lqs->lqs_lock);
298 if (QDATA_IS_BLK(qdata)) {
299 qunit_sz = lqs->lqs_bunit_sz;
300 tune_sz = lqs->lqs_btune_sz;
301 pending_write = lqs->lqs_bwrite_pending;
302 record = lqs->lqs_blk_rec;
303 LASSERT(!(qunit_sz % QUOTABLOCK_SIZE));
305 /* we didn't need change inode qunit size now */
306 qunit_sz = lqs->lqs_iunit_sz;
307 tune_sz = lqs->lqs_itune_sz;
308 pending_write = lqs->lqs_iwrite_pending;
309 record = lqs->lqs_ino_rec;
312 /* we don't count the MIN_QLIMIT */
313 if ((limit == MIN_QLIMIT && !QDATA_IS_BLK(qdata)) ||
314 (toqb(limit) == MIN_QLIMIT && QDATA_IS_BLK(qdata)))
317 usage += pending_write;
319 /* when a releasing quota req is sent, before it returned
320 limit is assigned a small value. limit will overflow */
321 if (limit + record < 0)
326 LASSERT(qdata->qd_count == 0);
327 if (limit <= usage + tune_sz) {
328 while (qdata->qd_count + limit <=
330 qdata->qd_count += qunit_sz;
332 } else if (limit > usage + qunit_sz + tune_sz &&
333 limit_org > qdata->qd_count + qunit_sz) {
334 while (limit - qdata->qd_count > usage + qunit_sz + tune_sz &&
335 limit_org > qdata->qd_count + qunit_sz)
336 qdata->qd_count += qunit_sz;
338 /* if there are other pending writes for this uid/gid, releasing
339 * quota is put off until the last pending write b=16645 */
340 if (ret == 2 && pending_write) {
341 CDEBUG(D_QUOTA, "delay quota release\n");
345 CDEBUG(D_QUOTA, "type: %c, limit: "LPU64", usage: "LPU64
346 ", pending_write: "LPU64", record: "LPD64
347 ", qunit_sz: %lu, tune_sz: %lu, ret: %d.\n",
348 QDATA_IS_BLK(qdata) ? 'b' : 'i', limit, usage, pending_write,
349 record, qunit_sz, tune_sz, ret);
350 LASSERT(ret == 0 || qdata->qd_count);
352 spin_unlock(&lqs->lqs_lock);
362 * Compute the remaining quota for certain gid or uid b=11693
364 int compute_remquota(struct obd_device *obd, struct lustre_quota_ctxt *qctxt,
365 struct qunit_data *qdata, int isblk)
367 struct super_block *sb = qctxt->lqc_sb;
369 struct obd_quotactl *qctl;
370 int ret = QUOTA_RET_OK;
373 if (!ll_sb_any_quota_active(sb))
374 RETURN(QUOTA_RET_NOQUOTA);
376 /* ignore root user */
377 if (qdata->qd_id == 0 && QDATA_IS_GRP(qdata) == USRQUOTA)
378 RETURN(QUOTA_RET_NOLIMIT);
384 /* get fs quota usage & limit */
385 qctl->qc_cmd = Q_GETQUOTA;
386 qctl->qc_id = qdata->qd_id;
387 qctl->qc_type = QDATA_IS_GRP(qdata);
388 ret = fsfilt_quotactl(obd, sb, qctl);
390 if (ret == -ESRCH) /* no limit */
391 ret = QUOTA_RET_NOLIMIT;
393 CDEBUG(D_QUOTA, "can't get fs quota usage! (rc:%d)",
398 usage = isblk ? qctl->qc_dqblk.dqb_curspace :
399 qctl->qc_dqblk.dqb_curinodes;
400 limit = isblk ? qctl->qc_dqblk.dqb_bhardlimit << QUOTABLOCK_BITS :
401 qctl->qc_dqblk.dqb_ihardlimit;
402 if (!limit){ /* no limit */
403 ret = QUOTA_RET_NOLIMIT;
408 qdata->qd_count = limit - usage;
417 static struct lustre_qunit *alloc_qunit(struct lustre_quota_ctxt *qctxt,
418 struct qunit_data *qdata, int opc)
420 struct lustre_qunit *qunit = NULL;
423 OBD_SLAB_ALLOC_PTR_GFP(qunit, qunit_cachep, CFS_ALLOC_IO);
427 CFS_INIT_LIST_HEAD(&qunit->lq_hash);
428 init_waitqueue_head(&qunit->lq_waitq);
429 atomic_set(&qunit->lq_refcnt, 1);
430 qunit->lq_ctxt = qctxt;
431 memcpy(&qunit->lq_data, qdata, sizeof(*qdata));
433 qunit->lq_lock = SPIN_LOCK_UNLOCKED;
434 QUNIT_SET_STATE_AND_RC(qunit, QUNIT_CREATED, 0);
435 qunit->lq_owner = cfs_curproc_pid();
439 static inline void free_qunit(struct lustre_qunit *qunit)
441 OBD_SLAB_FREE(qunit, qunit_cachep, sizeof(*qunit));
444 static inline void qunit_get(struct lustre_qunit *qunit)
446 atomic_inc(&qunit->lq_refcnt);
449 static void qunit_put(struct lustre_qunit *qunit)
451 LASSERT(atomic_read(&qunit->lq_refcnt));
452 if (atomic_dec_and_test(&qunit->lq_refcnt))
456 /* caller must hold qunit_hash_lock and release ref of qunit after using it */
457 static struct lustre_qunit *dqacq_in_flight(struct lustre_quota_ctxt *qctxt,
458 struct qunit_data *qdata)
460 unsigned int hashent = qunit_hashfn(qctxt, qdata);
461 struct lustre_qunit *qunit;
464 LASSERT_SPIN_LOCKED(&qunit_hash_lock);
465 qunit = find_qunit(hashent, qctxt, qdata);
472 insert_qunit_nolock(struct lustre_quota_ctxt *qctxt, struct lustre_qunit *qunit)
474 struct list_head *head;
476 LASSERT(list_empty(&qunit->lq_hash));
478 head = qunit_hash + qunit_hashfn(qctxt, &qunit->lq_data);
479 list_add(&qunit->lq_hash, head);
480 QUNIT_SET_STATE(qunit, QUNIT_IN_HASH);
483 static void compute_lqs_after_removing_qunit(struct lustre_qunit *qunit)
485 struct lustre_qunit_size *lqs;
487 lqs = quota_search_lqs(LQS_KEY(QDATA_IS_GRP(&qunit->lq_data),
488 qunit->lq_data.qd_id),
490 if (lqs && !IS_ERR(lqs)) {
491 spin_lock(&lqs->lqs_lock);
492 if (qunit->lq_opc == QUOTA_DQACQ)
493 quota_compute_lqs(&qunit->lq_data, lqs, 0, 1);
494 if (qunit->lq_opc == QUOTA_DQREL)
495 quota_compute_lqs(&qunit->lq_data, lqs, 0, 0);
496 spin_unlock(&lqs->lqs_lock);
497 /* this is for quota_search_lqs */
499 /* this is for schedule_dqacq */
504 static void remove_qunit_nolock(struct lustre_qunit *qunit)
506 LASSERT(!list_empty(&qunit->lq_hash));
507 LASSERT_SPIN_LOCKED(&qunit_hash_lock);
509 list_del_init(&qunit->lq_hash);
510 QUNIT_SET_STATE(qunit, QUNIT_RM_FROM_HASH);
514 void* quota_barrier(struct lustre_quota_ctxt *qctxt,
515 struct obd_quotactl *oqctl, int isblk)
517 struct lustre_qunit *qunit, *find_qunit;
520 OBD_SLAB_ALLOC(qunit, qunit_cachep, CFS_ALLOC_IO, sizeof(*qunit));
522 CERROR("locating qunit failed.(id=%u isblk=%d %s)\n",
523 oqctl->qc_id, isblk, oqctl->qc_type ? "grp" : "usr");
524 qctxt_wait_pending_dqacq(qctxt, oqctl->qc_id,
525 oqctl->qc_type, isblk);
529 INIT_LIST_HEAD(&qunit->lq_hash);
530 qunit->lq_lock = SPIN_LOCK_UNLOCKED;
531 init_waitqueue_head(&qunit->lq_waitq);
532 atomic_set(&qunit->lq_refcnt, 1);
533 qunit->lq_ctxt = qctxt;
534 qunit->lq_data.qd_id = oqctl->qc_id;
535 qunit->lq_data.qd_flags = oqctl->qc_type;
537 QDATA_SET_BLK(&qunit->lq_data);
538 QUNIT_SET_STATE_AND_RC(qunit, QUNIT_CREATED, 0);
539 /* it means it is only an invalid qunit for barrier */
540 qunit->lq_opc = QUOTA_LAST_OPC;
543 spin_lock(&qunit_hash_lock);
544 find_qunit = dqacq_in_flight(qctxt, &qunit->lq_data);
546 spin_unlock(&qunit_hash_lock);
547 qunit_put(find_qunit);
548 qctxt_wait_pending_dqacq(qctxt, oqctl->qc_id,
549 oqctl->qc_type, isblk);
550 CDEBUG(D_QUOTA, "cycle=%d\n", cycle++);
555 insert_qunit_nolock(qctxt, qunit);
556 spin_unlock(&qunit_hash_lock);
560 void quota_unbarrier(void *handle)
562 struct lustre_qunit *qunit = (struct lustre_qunit *)handle;
565 CERROR("handle is NULL\n");
569 LASSERT(qunit->lq_opc == QUOTA_LAST_OPC);
570 spin_lock(&qunit_hash_lock);
571 remove_qunit_nolock(qunit);
572 spin_unlock(&qunit_hash_lock);
573 QUNIT_SET_STATE_AND_RC(qunit, QUNIT_FINISHED, QUOTA_REQ_RETURNED);
574 wake_up(&qunit->lq_waitq);
578 #define INC_QLIMIT(limit, count) (limit == MIN_QLIMIT) ? \
579 (limit = count) : (limit += count)
582 static inline int is_master(struct lustre_quota_ctxt *qctxt)
584 return qctxt->lqc_handler ? 1 : 0;
588 schedule_dqacq(struct obd_device *obd, struct lustre_quota_ctxt *qctxt,
589 struct qunit_data *qdata, int opc, int wait,
590 struct obd_trans_info *oti);
592 static inline void qdata_to_oqaq(struct qunit_data *qdata,
593 struct quota_adjust_qunit *oqaq)
598 oqaq->qaq_flags = qdata->qd_flags;
599 oqaq->qaq_id = qdata->qd_id;
600 if (QDATA_IS_ADJBLK(qdata))
601 oqaq->qaq_bunit_sz = qdata->qd_qunit;
602 if (QDATA_IS_ADJINO(qdata))
603 oqaq->qaq_iunit_sz = qdata->qd_qunit;
607 dqacq_completion(struct obd_device *obd, struct lustre_quota_ctxt *qctxt,
608 struct qunit_data *qdata, int rc, int opc)
610 struct lustre_qunit *qunit = NULL;
611 struct super_block *sb = qctxt->lqc_sb;
613 struct quota_adjust_qunit *oqaq = NULL;
618 QDATA_DEBUG(qdata, "obd(%s): complete %s quota req\n",
619 obd->obd_name, (opc == QUOTA_DQACQ) ? "acq" : "rel");
621 /* do it only when a releasing quota req more than 5MB b=18491 */
622 if (opc == QUOTA_DQREL && qdata->qd_count >= 5242880)
623 OBD_FAIL_TIMEOUT(OBD_FAIL_QUOTA_DELAY_REL, 5);
625 /* update local operational quota file */
627 __u64 count = QUSG(qdata->qd_count, QDATA_IS_BLK(qdata));
628 struct obd_quotactl *qctl;
633 GOTO(out, err = -ENOMEM);
635 /* acq/rel qunit for specified uid/gid is serialized,
636 * so there is no race between get fs quota limit and
637 * set fs quota limit */
638 qctl->qc_cmd = Q_GETQUOTA;
639 qctl->qc_id = qdata->qd_id;
640 qctl->qc_type = QDATA_IS_GRP(qdata);
641 err = fsfilt_quotactl(obd, sb, qctl);
643 CERROR("error get quota fs limit! (rc:%d)\n", err);
647 if (QDATA_IS_BLK(qdata)) {
648 qctl->qc_dqblk.dqb_valid = QIF_BLIMITS;
649 hardlimit = &qctl->qc_dqblk.dqb_bhardlimit;
651 qctl->qc_dqblk.dqb_valid = QIF_ILIMITS;
652 hardlimit = &qctl->qc_dqblk.dqb_ihardlimit;
655 CDEBUG(D_QUOTA, "hardlimt: "LPU64"\n", *hardlimit);
662 INC_QLIMIT(*hardlimit, count);
665 LASSERTF(count < *hardlimit,
666 "id(%u) flag(%u) type(%c) isblk(%c) "
667 "count("LPU64") qd_qunit("LPU64") "
668 "hardlimit("LPU64").\n",
669 qdata->qd_id, qdata->qd_flags,
670 QDATA_IS_GRP(qdata) ? 'g' : 'u',
671 QDATA_IS_BLK(qdata) ? 'b': 'i',
672 qdata->qd_count, qdata->qd_qunit, *hardlimit);
679 /* clear quota limit */
683 qctl->qc_cmd = Q_SETQUOTA;
684 err = fsfilt_quotactl(obd, sb, qctl);
686 CERROR("error set quota fs limit! (rc:%d)\n", err);
688 QDATA_DEBUG(qdata, "%s completion\n",
689 opc == QUOTA_DQACQ ? "DQACQ" : "DQREL");
692 } else if (rc == -EDQUOT) {
693 QDATA_DEBUG(qdata, "acquire qunit got EDQUOT.\n");
694 } else if (rc == -EBUSY) {
695 QDATA_DEBUG(qdata, "it's is recovering, got EBUSY.\n");
697 CERROR("acquire qunit got error! (rc:%d)\n", rc);
700 /* remove the qunit from hash */
701 spin_lock(&qunit_hash_lock);
703 qunit = dqacq_in_flight(qctxt, qdata);
704 /* this qunit has been removed by qctxt_cleanup() */
706 spin_unlock(&qunit_hash_lock);
707 QDATA_DEBUG(qdata, "%s is discarded because qunit isn't found\n",
708 opc == QUOTA_DQACQ ? "DQACQ" : "DQREL");
712 LASSERT(opc == qunit->lq_opc);
713 /* remove this qunit from lq_hash so that new processes cannot be added
714 * to qunit->lq_waiters */
715 remove_qunit_nolock(qunit);
716 spin_unlock(&qunit_hash_lock);
718 compute_lqs_after_removing_qunit(qunit);
721 rc = QUOTA_REQ_RETURNED;
722 QUNIT_SET_STATE_AND_RC(qunit, QUNIT_FINISHED, rc);
723 /* wake up all waiters */
724 wake_up_all(&qunit->lq_waitq);
726 /* this is for dqacq_in_flight() */
728 /* this is for alloc_qunit() */
730 if (rc < 0 && rc != -EDQUOT)
733 /* don't reschedule in such cases:
734 * - acq/rel failure and qunit isn't changed,
735 * but not for quota recovery.
736 * - local dqacq/dqrel.
737 * - local disk io failure.
742 qdata_to_oqaq(qdata, oqaq);
743 /* adjust the qunit size in slaves */
744 rc1 = quota_adjust_slave_lqs(oqaq, qctxt);
747 CERROR("adjust slave's qunit size failed!(rc:%d)\n", rc1);
750 if (err || (rc < 0 && rc != -EBUSY && rc1 == 0) || is_master(qctxt))
753 if (opc == QUOTA_DQREL && qdata->qd_count >= 5242880 &&
754 OBD_FAIL_CHECK(OBD_FAIL_QUOTA_DELAY_REL))
757 /* reschedule another dqacq/dqrel if needed */
759 qdata->qd_flags &= LQUOTA_QUNIT_FLAGS;
760 rc1 = check_cur_qunit(obd, qctxt, qdata);
763 opc = rc1 == 1 ? QUOTA_DQACQ : QUOTA_DQREL;
764 rc1 = schedule_dqacq(obd, qctxt, qdata, opc, 0, NULL);
765 QDATA_DEBUG(qdata, "reschedudle opc(%d) rc(%d)\n", opc, rc1);
770 struct dqacq_async_args {
771 struct lustre_quota_ctxt *aa_ctxt;
772 struct lustre_qunit *aa_qunit;
775 static int dqacq_interpret(const struct lu_env *env,
776 struct ptlrpc_request *req, void *data, int rc)
778 struct dqacq_async_args *aa = (struct dqacq_async_args *)data;
779 struct lustre_quota_ctxt *qctxt = aa->aa_ctxt;
780 struct obd_device_target *obt = qctxt->lqc_obt;
781 struct lustre_qunit *qunit = aa->aa_qunit;
782 struct obd_device *obd = req->rq_import->imp_obd;
783 struct qunit_data *qdata = NULL;
787 LASSERT(req->rq_import);
789 down_read(&obt->obt_rwsem);
790 /* if a quota req timeouts or is dropped, we should update quota
791 * statistics which will be handled in dqacq_completion. And in
792 * this situation we should get qdata from request instead of
794 qdata = quota_get_qdata(req, (rc != 0) ? QUOTA_REQUEST : QUOTA_REPLY,
798 DEBUG_REQ(D_ERROR, req,
799 "error unpacking qunit_data(rc: %ld)\n",
801 RETURN(PTR_ERR(qdata));
804 QDATA_DEBUG(qdata, "qdata: interpret rc(%d).\n", rc);
805 QDATA_DEBUG((&qunit->lq_data), "lq_data: \n");
807 if (qdata->qd_id != qunit->lq_data.qd_id ||
808 OBD_FAIL_CHECK(OBD_FAIL_QUOTA_RET_QDATA)) {
809 CDEBUG(D_ERROR, "the returned qd_id isn't expected!"
810 "(qdata: %u, lq_data: %u)\n", qdata->qd_id,
811 qunit->lq_data.qd_id);
812 qdata->qd_id = qunit->lq_data.qd_id;
815 if (QDATA_IS_GRP(qdata) != QDATA_IS_GRP(&qunit->lq_data)) {
816 CDEBUG(D_ERROR, "the returned grp/usr isn't expected!"
817 "(qdata: %u, lq_data: %u)\n", qdata->qd_flags,
818 qunit->lq_data.qd_flags);
819 if (QDATA_IS_GRP(&qunit->lq_data))
820 QDATA_SET_GRP(qdata);
822 QDATA_CLR_GRP(qdata);
825 if (qdata->qd_count > qunit->lq_data.qd_count) {
826 CDEBUG(D_ERROR, "the returned qd_count isn't expected!"
827 "(qdata: "LPU64", lq_data: "LPU64")\n", qdata->qd_count,
828 qunit->lq_data.qd_count);
832 if (unlikely(rc == -ESRCH))
833 CERROR("quota for %s has been enabled by master, but disabled "
834 "by slave.\n", QDATA_IS_GRP(qdata) ? "group" : "user");
836 rc = dqacq_completion(obd, qctxt, qdata, rc,
837 lustre_msg_get_opc(req->rq_reqmsg));
839 up_read(&obt->obt_rwsem);
844 * check if quota master is online
846 int check_qm(struct lustre_quota_ctxt *qctxt)
851 spin_lock(&qctxt->lqc_lock);
852 /* quit waiting when mds is back or qctxt is cleaned up */
853 rc = qctxt->lqc_import || !qctxt->lqc_valid;
854 spin_unlock(&qctxt->lqc_lock);
859 /* wake up all waiting threads when lqc_import is NULL */
860 void dqacq_interrupt(struct lustre_quota_ctxt *qctxt)
862 struct lustre_qunit *qunit, *tmp;
866 spin_lock(&qunit_hash_lock);
867 for (i = 0; i < NR_DQHASH; i++) {
868 list_for_each_entry_safe(qunit, tmp, &qunit_hash[i], lq_hash) {
869 if (qunit->lq_ctxt != qctxt)
872 /* Wake up all waiters. Do not change lq_state.
873 * The waiters will check lq_rc which is kept as 0
874 * if no others change it, then the waiters will return
875 * -EAGAIN to caller who can perform related quota
876 * acq/rel if necessary. */
877 wake_up_all(&qunit->lq_waitq);
880 spin_unlock(&qunit_hash_lock);
884 static int got_qunit(struct lustre_qunit *qunit, int is_master)
886 struct lustre_quota_ctxt *qctxt = qunit->lq_ctxt;
890 spin_lock(&qunit->lq_lock);
891 switch (qunit->lq_state) {
893 case QUNIT_RM_FROM_HASH:
899 CERROR("invalid qunit state %d\n", qunit->lq_state);
901 spin_unlock(&qunit->lq_lock);
904 spin_lock(&qctxt->lqc_lock);
905 rc = !qctxt->lqc_valid;
907 rc |= !qctxt->lqc_import;
908 spin_unlock(&qctxt->lqc_lock);
915 schedule_dqacq(struct obd_device *obd, struct lustre_quota_ctxt *qctxt,
916 struct qunit_data *qdata, int opc, int wait,
917 struct obd_trans_info *oti)
919 struct lustre_qunit *qunit, *empty;
920 struct l_wait_info lwi = { 0 };
921 struct ptlrpc_request *req;
922 struct dqacq_async_args *aa;
923 struct obd_import *imp = NULL;
924 struct lustre_qunit_size *lqs = NULL;
925 struct timeval work_start;
926 struct timeval work_end;
931 LASSERT(opc == QUOTA_DQACQ || opc == QUOTA_DQREL);
932 do_gettimeofday(&work_start);
933 if ((empty = alloc_qunit(qctxt, qdata, opc)) == NULL)
936 spin_lock(&qunit_hash_lock);
937 qunit = dqacq_in_flight(qctxt, qdata);
939 spin_unlock(&qunit_hash_lock);
942 goto wait_completion;
946 insert_qunit_nolock(qctxt, qunit);
947 spin_unlock(&qunit_hash_lock);
949 lqs = quota_search_lqs(LQS_KEY(QDATA_IS_GRP(qdata), qdata->qd_id),
951 if (lqs && !IS_ERR(lqs)) {
952 spin_lock(&lqs->lqs_lock);
953 quota_compute_lqs(qdata, lqs, 1, (opc == QUOTA_DQACQ) ? 1 : 0);
954 /* when this qdata returned from mds, it will call lqs_putref */
956 spin_unlock(&lqs->lqs_lock);
957 /* this is for quota_search_lqs */
960 CDEBUG(D_ERROR, "Can't find the lustre qunit size!\n");
963 QDATA_DEBUG(qdata, "obd(%s): send %s quota req\n",
964 obd->obd_name, (opc == QUOTA_DQACQ) ? "acq" : "rel");
965 /* master is going to dqacq/dqrel from itself */
966 if (is_master(qctxt)) {
968 QDATA_DEBUG(qdata, "local %s.\n",
969 opc == QUOTA_DQACQ ? "DQACQ" : "DQREL");
970 QDATA_SET_CHANGE_QS(qdata);
971 rc = qctxt->lqc_handler(obd, qdata, opc);
972 rc2 = dqacq_completion(obd, qctxt, qdata, rc, opc);
973 /* this is for qunit_get() */
976 do_gettimeofday(&work_end);
977 timediff = cfs_timeval_sub(&work_end, &work_start, NULL);
978 if (opc == QUOTA_DQACQ)
979 lprocfs_counter_add(qctxt->lqc_stats,
980 wait ? LQUOTA_SYNC_ACQ : LQUOTA_ASYNC_ACQ,
983 lprocfs_counter_add(qctxt->lqc_stats,
984 wait ? LQUOTA_SYNC_REL : LQUOTA_ASYNC_REL,
986 RETURN(rc ? rc : rc2);
989 spin_lock(&qctxt->lqc_lock);
990 if (!qctxt->lqc_import) {
991 spin_unlock(&qctxt->lqc_lock);
992 QDATA_DEBUG(qdata, "lqc_import is invalid.\n");
994 spin_lock(&qunit_hash_lock);
995 remove_qunit_nolock(qunit);
996 spin_unlock(&qunit_hash_lock);
998 compute_lqs_after_removing_qunit(qunit);
1000 QUNIT_SET_STATE_AND_RC(qunit, QUNIT_FINISHED, -EAGAIN);
1001 wake_up_all(&qunit->lq_waitq);
1003 /* this is for qunit_get() */
1005 /* this for alloc_qunit() */
1007 spin_lock(&qctxt->lqc_lock);
1008 if (wait && !qctxt->lqc_import) {
1009 spin_unlock(&qctxt->lqc_lock);
1011 LASSERT(oti && oti->oti_thread &&
1012 oti->oti_thread->t_watchdog);
1014 lc_watchdog_disable(oti->oti_thread->t_watchdog);
1015 CDEBUG(D_QUOTA, "sleep for quota master\n");
1016 l_wait_event(qctxt->lqc_wait_for_qmaster,
1017 check_qm(qctxt), &lwi);
1018 CDEBUG(D_QUOTA, "wake up when quota master is back\n");
1019 lc_watchdog_touch(oti->oti_thread->t_watchdog,
1020 GET_TIMEOUT(oti->oti_thread->t_svc));
1022 spin_unlock(&qctxt->lqc_lock);
1027 imp = class_import_get(qctxt->lqc_import);
1028 spin_unlock(&qctxt->lqc_lock);
1030 /* build dqacq/dqrel request */
1033 req = ptlrpc_request_alloc_pack(imp, &RQF_MDS_QUOTA_DQACQ,
1034 LUSTRE_MDS_VERSION, opc);
1035 class_import_put(imp);
1037 CDEBUG(D_ERROR, "Can't alloc request\n");
1038 dqacq_completion(obd, qctxt, qdata, -ENOMEM, opc);
1039 /* this is for qunit_get() */
1044 ptlrpc_request_set_replen(req);
1045 req->rq_no_resend = req->rq_no_delay = 1;
1046 rc = quota_copy_qdata(req, qdata, QUOTA_REQUEST, QUOTA_IMPORT);
1048 CDEBUG(D_ERROR, "Can't pack qunit_data(rc: %d)\n", rc);
1049 ptlrpc_req_finished(req);
1050 dqacq_completion(obd, qctxt, qdata, -EPROTO, opc);
1051 /* this is for qunit_get() */
1056 CLASSERT(sizeof(*aa) <= sizeof(req->rq_async_args));
1057 aa = ptlrpc_req_async_args(req);
1058 aa->aa_ctxt = qctxt;
1059 aa->aa_qunit = qunit;
1061 req->rq_interpret_reply = dqacq_interpret;
1062 ptlrpcd_add_req(req, PSCOPE_OTHER);
1064 QDATA_DEBUG(qdata, "%s scheduled.\n",
1065 opc == QUOTA_DQACQ ? "DQACQ" : "DQREL");
1067 if (wait && qunit) {
1068 struct qunit_data *p = &qunit->lq_data;
1070 QDATA_DEBUG(p, "qunit(%p) is waiting for dqacq.\n", qunit);
1071 l_wait_event(qunit->lq_waitq, got_qunit(qunit, is_master(qctxt)),
1073 /* rc = -EAGAIN, it means the quota master isn't ready yet
1074 * rc = QUOTA_REQ_RETURNED, it means a quota req is finished;
1075 * rc = -EDQUOT, it means out of quota
1076 * rc = -EBUSY, it means recovery is happening
1077 * other rc < 0, it means real errors, functions who call
1078 * schedule_dqacq should take care of this */
1079 spin_lock(&qunit->lq_lock);
1081 spin_unlock(&qunit->lq_lock);
1082 CDEBUG(D_QUOTA, "qunit(%p) finishes waiting: id(%u) flag(%u) "
1083 "rc(%d) owner(%d)\n", qunit, qunit->lq_data.qd_id,
1084 qunit->lq_data.qd_flags, rc, qunit->lq_owner);
1088 do_gettimeofday(&work_end);
1089 timediff = cfs_timeval_sub(&work_end, &work_start, NULL);
1090 if (opc == QUOTA_DQACQ)
1091 lprocfs_counter_add(qctxt->lqc_stats,
1092 wait ? LQUOTA_SYNC_ACQ : LQUOTA_ASYNC_ACQ,
1095 lprocfs_counter_add(qctxt->lqc_stats,
1096 wait ? LQUOTA_SYNC_REL : LQUOTA_ASYNC_REL,
1103 qctxt_adjust_qunit(struct obd_device *obd, struct lustre_quota_ctxt *qctxt,
1104 const unsigned int id[], __u32 isblk, int wait,
1105 struct obd_trans_info *oti)
1107 int rc = 0, i = USRQUOTA;
1108 struct qunit_data qdata[MAXQUOTAS];
1111 if (quota_is_set(obd, id, isblk ? QB_SET : QI_SET) == 0)
1114 for (i = 0; i < MAXQUOTAS; i++) {
1115 qdata[i].qd_id = id[i];
1116 qdata[i].qd_flags = i;
1118 QDATA_SET_BLK(&qdata[i]);
1119 qdata[i].qd_count = 0;
1121 rc = check_cur_qunit(obd, qctxt, &qdata[i]);
1124 /* need acquire or release */
1125 opc = rc == 1 ? QUOTA_DQACQ : QUOTA_DQREL;
1126 rc = schedule_dqacq(obd, qctxt, &qdata[i], opc,
1130 } else if (wait == 1) {
1131 /* when wait equates 1, that means mds_quota_acquire
1132 * or filter_quota_acquire is calling it. */
1133 rc = qctxt_wait_pending_dqacq(qctxt, id[i], i, isblk);
1143 qctxt_wait_pending_dqacq(struct lustre_quota_ctxt *qctxt, unsigned int id,
1144 unsigned short type, int isblk)
1146 struct lustre_qunit *qunit = NULL;
1147 struct qunit_data qdata;
1148 struct timeval work_start;
1149 struct timeval work_end;
1151 struct l_wait_info lwi = { 0 };
1155 do_gettimeofday(&work_start);
1157 qdata.qd_flags = type;
1159 QDATA_SET_BLK(&qdata);
1162 spin_lock(&qunit_hash_lock);
1163 qunit = dqacq_in_flight(qctxt, &qdata);
1164 spin_unlock(&qunit_hash_lock);
1167 struct qunit_data *p = &qunit->lq_data;
1169 QDATA_DEBUG(p, "qunit(%p) is waiting for dqacq.\n", qunit);
1170 l_wait_event(qunit->lq_waitq, got_qunit(qunit, is_master(qctxt)),
1172 CDEBUG(D_QUOTA, "qunit(%p) finishes waiting: rc(%d) "
1173 "owner(%d)\n", qunit, qunit->lq_rc, qunit->lq_owner);
1174 /* keep same as schedule_dqacq() b=17030 */
1175 spin_lock(&qunit->lq_lock);
1177 spin_unlock(&qunit->lq_lock);
1178 /* this is for dqacq_in_flight() */
1180 do_gettimeofday(&work_end);
1181 timediff = cfs_timeval_sub(&work_end, &work_start, NULL);
1182 lprocfs_counter_add(qctxt->lqc_stats,
1183 isblk ? LQUOTA_WAIT_PENDING_BLK_QUOTA :
1184 LQUOTA_WAIT_PENDING_INO_QUOTA,
1187 do_gettimeofday(&work_end);
1188 timediff = cfs_timeval_sub(&work_end, &work_start, NULL);
1189 lprocfs_counter_add(qctxt->lqc_stats,
1190 isblk ? LQUOTA_NOWAIT_PENDING_BLK_QUOTA :
1191 LQUOTA_NOWAIT_PENDING_INO_QUOTA,
1199 qctxt_init(struct obd_device *obd, dqacq_handler_t handler)
1201 struct lustre_quota_ctxt *qctxt = &obd->u.obt.obt_qctxt;
1202 struct obd_device_target *obt = &obd->u.obt;
1203 struct super_block *sb = obt->obt_sb;
1209 rc = ptlrpcd_addref();
1213 cfs_waitq_init(&qctxt->lqc_wait_for_qmaster);
1214 cfs_waitq_init(&qctxt->lqc_lqs_waitq);
1215 atomic_set(&qctxt->lqc_lqs, 0);
1216 spin_lock_init(&qctxt->lqc_lock);
1217 spin_lock(&qctxt->lqc_lock);
1218 qctxt->lqc_handler = handler;
1220 qctxt->lqc_obt = obt;
1221 qctxt->lqc_import = NULL;
1222 qctxt->lqc_recovery = 0;
1223 qctxt->lqc_switch_qs = 1; /* Change qunit size in default setting */
1224 qctxt->lqc_valid = 1;
1225 qctxt->lqc_cqs_boundary_factor = 4;
1226 qctxt->lqc_cqs_least_bunit = PTLRPC_MAX_BRW_SIZE;
1227 qctxt->lqc_cqs_least_iunit = 2;
1228 qctxt->lqc_cqs_qs_factor = 2;
1229 qctxt->lqc_flags = 0;
1230 QUOTA_MASTER_UNREADY(qctxt);
1231 qctxt->lqc_bunit_sz = default_bunit_sz;
1232 qctxt->lqc_btune_sz = default_bunit_sz / 100 * default_btune_ratio;
1233 qctxt->lqc_iunit_sz = default_iunit_sz;
1234 qctxt->lqc_itune_sz = default_iunit_sz * default_itune_ratio / 100;
1235 qctxt->lqc_switch_seconds = 300; /* enlarging will wait 5 minutes
1236 * after the last shrinking */
1237 qctxt->lqc_sync_blk = 0;
1238 spin_unlock(&qctxt->lqc_lock);
1240 qctxt->lqc_lqs_hash = cfs_hash_create("LQS_HASH",
1243 &lqs_hash_ops, CFS_HASH_REHASH);
1244 if (!qctxt->lqc_lqs_hash) {
1245 CERROR("initialize hash lqs for %s error!\n", obd->obd_name);
1250 rc = lquota_proc_setup(obd, is_master(qctxt));
1252 CERROR("initialize proc for %s error!\n", obd->obd_name);
1258 static int check_lqs(struct lustre_quota_ctxt *qctxt)
1263 rc = !atomic_read(&qctxt->lqc_lqs);
1269 void hash_put_lqs(void *obj, void *data)
1271 lqs_putref((struct lustre_qunit_size *)obj);
1274 void qctxt_cleanup(struct lustre_quota_ctxt *qctxt, int force)
1276 struct lustre_qunit *qunit, *tmp;
1277 struct list_head tmp_list;
1278 struct l_wait_info lwi = { 0 };
1279 struct obd_device_target *obt = qctxt->lqc_obt;
1283 CFS_INIT_LIST_HEAD(&tmp_list);
1285 spin_lock(&qctxt->lqc_lock);
1286 qctxt->lqc_valid = 0;
1287 spin_unlock(&qctxt->lqc_lock);
1289 spin_lock(&qunit_hash_lock);
1290 for (i = 0; i < NR_DQHASH; i++) {
1291 list_for_each_entry_safe(qunit, tmp, &qunit_hash[i], lq_hash) {
1292 if (qunit->lq_ctxt != qctxt)
1294 remove_qunit_nolock(qunit);
1295 list_add(&qunit->lq_hash, &tmp_list);
1298 spin_unlock(&qunit_hash_lock);
1300 list_for_each_entry_safe(qunit, tmp, &tmp_list, lq_hash) {
1301 list_del_init(&qunit->lq_hash);
1302 compute_lqs_after_removing_qunit(qunit);
1304 /* wake up all waiters */
1305 QUNIT_SET_STATE_AND_RC(qunit, QUNIT_FINISHED, 0);
1306 wake_up_all(&qunit->lq_waitq);
1310 /* after qctxt_cleanup, qctxt might be freed, then check_qm() is
1311 * unpredicted. So we must wait until lqc_wait_for_qmaster is empty */
1312 while (cfs_waitq_active(&qctxt->lqc_wait_for_qmaster)) {
1313 cfs_waitq_signal(&qctxt->lqc_wait_for_qmaster);
1314 cfs_schedule_timeout(CFS_TASK_INTERRUPTIBLE,
1315 cfs_time_seconds(1));
1318 cfs_hash_for_each_safe(qctxt->lqc_lqs_hash, hash_put_lqs, NULL);
1319 l_wait_event(qctxt->lqc_lqs_waitq, check_lqs(qctxt), &lwi);
1320 down_write(&obt->obt_rwsem);
1321 cfs_hash_destroy(qctxt->lqc_lqs_hash);
1322 qctxt->lqc_lqs_hash = NULL;
1323 up_write(&obt->obt_rwsem);
1328 if (lquota_proc_cleanup(qctxt))
1329 CERROR("cleanup proc error!\n");
1335 struct qslave_recov_thread_data {
1336 struct obd_device *obd;
1337 struct lustre_quota_ctxt *qctxt;
1338 struct completion comp;
1341 /* FIXME only recovery block quota by now */
1342 static int qslave_recovery_main(void *arg)
1344 struct qslave_recov_thread_data *data = arg;
1345 struct obd_device *obd = data->obd;
1346 struct lustre_quota_ctxt *qctxt = data->qctxt;
1351 cfs_daemonize_ctxt("qslave_recovd");
1354 class_incref(obd, "qslave_recovd_filter", obd);
1356 complete(&data->comp);
1358 spin_lock(&qctxt->lqc_lock);
1359 if (qctxt->lqc_recovery) {
1360 spin_unlock(&qctxt->lqc_lock);
1361 class_decref(obd, "qslave_recovd_filter", obd);
1364 qctxt->lqc_recovery = 1;
1365 spin_unlock(&qctxt->lqc_lock);
1368 for (type = USRQUOTA; type < MAXQUOTAS; type++) {
1369 struct qunit_data qdata;
1370 struct quota_info *dqopt = sb_dqopt(qctxt->lqc_sb);
1371 struct list_head id_list;
1372 struct dquot_id *dqid, *tmp;
1375 LOCK_DQONOFF_MUTEX(dqopt);
1376 if (!ll_sb_has_quota_active(qctxt->lqc_sb, type)) {
1377 UNLOCK_DQONOFF_MUTEX(dqopt);
1381 LASSERT(dqopt->files[type] != NULL);
1382 CFS_INIT_LIST_HEAD(&id_list);
1383 #ifndef KERNEL_SUPPORTS_QUOTA_READ
1384 rc = fsfilt_qids(obd, dqopt->files[type], NULL, type, &id_list);
1386 rc = fsfilt_qids(obd, NULL, dqopt->files[type], type, &id_list);
1388 UNLOCK_DQONOFF_MUTEX(dqopt);
1390 CERROR("Get ids from quota file failed. (rc:%d)\n", rc);
1392 list_for_each_entry_safe(dqid, tmp, &id_list, di_link) {
1393 list_del_init(&dqid->di_link);
1394 /* skip slave recovery on itself */
1395 if (is_master(qctxt))
1397 if (rc && rc != -EBUSY)
1400 qdata.qd_id = dqid->di_id;
1401 qdata.qd_flags = type;
1402 QDATA_SET_BLK(&qdata);
1405 ret = check_cur_qunit(obd, qctxt, &qdata);
1408 opc = ret == 1 ? QUOTA_DQACQ : QUOTA_DQREL;
1409 rc = schedule_dqacq(obd, qctxt, &qdata, opc,
1418 CDEBUG(rc == -EBUSY ? D_QUOTA : D_ERROR,
1419 "qslave recovery failed! (id:%d type:%d "
1420 " rc:%d)\n", dqid->di_id, type, rc);
1426 spin_lock(&qctxt->lqc_lock);
1427 qctxt->lqc_recovery = 0;
1428 spin_unlock(&qctxt->lqc_lock);
1429 class_decref(obd, "qslave_recovd_filter", obd);
1434 qslave_start_recovery(struct obd_device *obd, struct lustre_quota_ctxt *qctxt)
1436 struct qslave_recov_thread_data data;
1440 if (!ll_sb_any_quota_active(qctxt->lqc_sb))
1445 init_completion(&data.comp);
1447 rc = kernel_thread(qslave_recovery_main, &data, CLONE_VM|CLONE_FILES);
1449 CERROR("Cannot start quota recovery thread: rc %d\n", rc);
1452 wait_for_completion(&data.comp);
1457 int quota_is_on(struct lustre_quota_ctxt *qctxt, struct obd_quotactl *oqctl)
1461 for (type = USRQUOTA; type < MAXQUOTAS; type++) {
1462 if (!Q_TYPESET(oqctl, type))
1464 if (!(qctxt->lqc_flags & UGQUOTA2LQC(oqctl->qc_type)))
1470 int quota_is_off(struct lustre_quota_ctxt *qctxt, struct obd_quotactl *oqctl)
1474 for (type = USRQUOTA; type < MAXQUOTAS; type++) {
1475 if (!Q_TYPESET(oqctl, type))
1477 if (qctxt->lqc_flags & UGQUOTA2LQC(oqctl->qc_type))
1484 * When quotaon, build a lqs for every uid/gid who has been set limitation
1485 * for quota. After quota_search_lqs, it will hold one ref for the lqs.
1486 * It will be released when qctxt_cleanup() is executed b=18574
1488 * Should be called with obt->obt_quotachecking held. b=20152
1490 void build_lqs(struct obd_device *obd)
1492 struct obd_device_target *obt = &obd->u.obt;
1493 struct lustre_quota_ctxt *qctxt = &obt->obt_qctxt;
1494 struct list_head id_list;
1497 LASSERT_SEM_LOCKED(&obt->obt_quotachecking);
1498 INIT_LIST_HEAD(&id_list);
1499 for (i = 0; i < MAXQUOTAS; i++) {
1500 struct dquot_id *dqid, *tmp;
1502 if (sb_dqopt(qctxt->lqc_sb)->files[i] == NULL)
1505 #ifndef KERNEL_SUPPORTS_QUOTA_READ
1506 rc = fsfilt_qids(obd, sb_dqopt(qctxt->lqc_sb)->files[i], NULL,
1509 rc = fsfilt_qids(obd, NULL, sb_dqopt(qctxt->lqc_sb)->files[i],
1513 CDEBUG(D_ERROR, "fail to get %s qids!\n",
1514 i ? "group" : "user");
1518 list_for_each_entry_safe(dqid, tmp, &id_list,
1520 struct lustre_qunit_size *lqs;
1522 list_del_init(&dqid->di_link);
1523 lqs = quota_search_lqs(LQS_KEY(i, dqid->di_id),
1525 if (lqs && !IS_ERR(lqs)) {
1526 lqs->lqs_flags |= dqid->di_flag;
1529 CDEBUG(D_ERROR, "fail to create a lqs"
1530 "(%s id: %u)!\n", i ? "group" : "user",
1540 * lqs<->qctxt hash operations
1544 * string hashing using djb2 hash algorithm
1547 lqs_hash(cfs_hash_t *hs, void *key, unsigned mask)
1549 struct quota_adjust_qunit *lqs_key;
1554 lqs_key = (struct quota_adjust_qunit *)key;
1555 hash = (QAQ_IS_GRP(lqs_key) ? 5381 : 5387) * lqs_key->qaq_id;
1557 RETURN(hash & mask);
1561 lqs_compare(void *key, struct hlist_node *hnode)
1563 struct lustre_qunit_size *q;
1568 q = hlist_entry(hnode, struct lustre_qunit_size, lqs_hash);
1570 spin_lock(&q->lqs_lock);
1571 rc = (q->lqs_key == *((unsigned long long *)key));
1572 spin_unlock(&q->lqs_lock);
1578 lqs_get(struct hlist_node *hnode)
1580 struct lustre_qunit_size *q =
1581 hlist_entry(hnode, struct lustre_qunit_size, lqs_hash);
1590 lqs_put(struct hlist_node *hnode)
1592 struct lustre_qunit_size *q =
1593 hlist_entry(hnode, struct lustre_qunit_size, lqs_hash);
1602 lqs_exit(struct hlist_node *hnode)
1604 struct lustre_qunit_size *q =
1605 hlist_entry(hnode, struct lustre_qunit_size, lqs_hash);
1609 * Nothing should be left. User of lqs put it and
1610 * lqs also was deleted from table by this time
1611 * so we should have 0 refs.
1613 LASSERTF(atomic_read(&q->lqs_refcount) == 0,
1614 "Busy lqs %p with %d refs\n", q,
1615 atomic_read(&q->lqs_refcount));
1620 static cfs_hash_ops_t lqs_hash_ops = {
1621 .hs_hash = lqs_hash,
1622 .hs_compare = lqs_compare,
1627 #endif /* HAVE_QUOTA_SUPPORT */