HAMMER commit - MFC ref count related panics when a HAMMER mount fails, etc.
[dragonfly.git] / sys / vfs / hammer / hammer_vfsops.c
blob8f9d4650b04e08c76b12053765ab8bce3ac62a6b
1 /*
2 * Copyright (c) 2007-2008 The DragonFly Project. All rights reserved.
3 *
4 * This code is derived from software contributed to The DragonFly Project
5 * by Matthew Dillon <dillon@backplane.com>
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
11 * 1. Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in
15 * the documentation and/or other materials provided with the
16 * distribution.
17 * 3. Neither the name of The DragonFly Project nor the names of its
18 * contributors may be used to endorse or promote products derived
19 * from this software without specific, prior written permission.
21 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
22 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
23 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
24 * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
25 * COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
26 * INCIDENTAL, SPECIAL, EXEMPLARY OR CONSEQUENTIAL DAMAGES (INCLUDING,
27 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
28 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
29 * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
30 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
31 * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 * SUCH DAMAGE.
34 * $DragonFly: src/sys/vfs/hammer/hammer_vfsops.c,v 1.63.2.4 2008/07/26 05:37:20 dillon Exp $
37 #include <sys/param.h>
38 #include <sys/systm.h>
39 #include <sys/kernel.h>
40 #include <sys/vnode.h>
41 #include <sys/mount.h>
42 #include <sys/malloc.h>
43 #include <sys/nlookup.h>
44 #include <sys/fcntl.h>
45 #include <sys/sysctl.h>
46 #include <sys/buf.h>
47 #include <sys/buf2.h>
48 #include "hammer.h"
50 int hammer_debug_io;
51 int hammer_debug_general;
52 int hammer_debug_debug = 1; /* medium-error panics */
53 int hammer_debug_inode;
54 int hammer_debug_locks;
55 int hammer_debug_btree;
56 int hammer_debug_tid;
57 int hammer_debug_recover; /* -1 will disable, +1 will force */
58 int hammer_debug_recover_faults;
59 int hammer_cluster_enable = 1; /* enable read clustering by default */
60 int hammer_count_fsyncs;
61 int hammer_count_inodes;
62 int hammer_count_iqueued;
63 int hammer_count_reclaiming;
64 int hammer_count_records;
65 int hammer_count_record_datas;
66 int hammer_count_volumes;
67 int hammer_count_buffers;
68 int hammer_count_nodes;
69 int64_t hammer_count_extra_space_used;
70 int64_t hammer_stats_btree_lookups;
71 int64_t hammer_stats_btree_searches;
72 int64_t hammer_stats_btree_inserts;
73 int64_t hammer_stats_btree_deletes;
74 int64_t hammer_stats_btree_elements;
75 int64_t hammer_stats_btree_splits;
76 int64_t hammer_stats_btree_iterations;
77 int64_t hammer_stats_record_iterations;
79 int64_t hammer_stats_file_read;
80 int64_t hammer_stats_file_write;
81 int64_t hammer_stats_file_iopsr;
82 int64_t hammer_stats_file_iopsw;
83 int64_t hammer_stats_disk_read;
84 int64_t hammer_stats_disk_write;
85 int64_t hammer_stats_inode_flushes;
86 int64_t hammer_stats_commits;
88 int hammer_count_dirtybufspace; /* global */
89 int hammer_count_refedbufs; /* global */
90 int hammer_count_reservations;
91 int hammer_count_io_running_read;
92 int hammer_count_io_running_write;
93 int hammer_count_io_locked;
94 int hammer_limit_dirtybufspace; /* per-mount */
95 int hammer_limit_recs; /* as a whole XXX */
96 int hammer_limit_iqueued; /* per-mount */
97 int hammer_bio_count;
98 int hammer_verify_zone;
99 int hammer_verify_data = 1;
100 int hammer_write_mode;
101 int64_t hammer_contention_count;
102 int64_t hammer_zone_limit;
104 SYSCTL_NODE(_vfs, OID_AUTO, hammer, CTLFLAG_RW, 0, "HAMMER filesystem");
105 SYSCTL_INT(_vfs_hammer, OID_AUTO, debug_general, CTLFLAG_RW,
106 &hammer_debug_general, 0, "");
107 SYSCTL_INT(_vfs_hammer, OID_AUTO, debug_io, CTLFLAG_RW,
108 &hammer_debug_io, 0, "");
109 SYSCTL_INT(_vfs_hammer, OID_AUTO, debug_debug, CTLFLAG_RW,
110 &hammer_debug_debug, 0, "");
111 SYSCTL_INT(_vfs_hammer, OID_AUTO, debug_inode, CTLFLAG_RW,
112 &hammer_debug_inode, 0, "");
113 SYSCTL_INT(_vfs_hammer, OID_AUTO, debug_locks, CTLFLAG_RW,
114 &hammer_debug_locks, 0, "");
115 SYSCTL_INT(_vfs_hammer, OID_AUTO, debug_btree, CTLFLAG_RW,
116 &hammer_debug_btree, 0, "");
117 SYSCTL_INT(_vfs_hammer, OID_AUTO, debug_tid, CTLFLAG_RW,
118 &hammer_debug_tid, 0, "");
119 SYSCTL_INT(_vfs_hammer, OID_AUTO, debug_recover, CTLFLAG_RW,
120 &hammer_debug_recover, 0, "");
121 SYSCTL_INT(_vfs_hammer, OID_AUTO, debug_recover_faults, CTLFLAG_RW,
122 &hammer_debug_recover_faults, 0, "");
123 SYSCTL_INT(_vfs_hammer, OID_AUTO, cluster_enable, CTLFLAG_RW,
124 &hammer_cluster_enable, 0, "");
126 SYSCTL_INT(_vfs_hammer, OID_AUTO, limit_dirtybufspace, CTLFLAG_RW,
127 &hammer_limit_dirtybufspace, 0, "");
128 SYSCTL_INT(_vfs_hammer, OID_AUTO, limit_recs, CTLFLAG_RW,
129 &hammer_limit_recs, 0, "");
130 SYSCTL_INT(_vfs_hammer, OID_AUTO, limit_iqueued, CTLFLAG_RW,
131 &hammer_limit_iqueued, 0, "");
133 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_fsyncs, CTLFLAG_RD,
134 &hammer_count_fsyncs, 0, "");
135 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_inodes, CTLFLAG_RD,
136 &hammer_count_inodes, 0, "");
137 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_iqueued, CTLFLAG_RD,
138 &hammer_count_iqueued, 0, "");
139 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_reclaiming, CTLFLAG_RD,
140 &hammer_count_reclaiming, 0, "");
141 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_records, CTLFLAG_RD,
142 &hammer_count_records, 0, "");
143 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_record_datas, CTLFLAG_RD,
144 &hammer_count_record_datas, 0, "");
145 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_volumes, CTLFLAG_RD,
146 &hammer_count_volumes, 0, "");
147 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_buffers, CTLFLAG_RD,
148 &hammer_count_buffers, 0, "");
149 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_nodes, CTLFLAG_RD,
150 &hammer_count_nodes, 0, "");
151 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, count_extra_space_used, CTLFLAG_RD,
152 &hammer_count_extra_space_used, 0, "");
154 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_btree_searches, CTLFLAG_RD,
155 &hammer_stats_btree_searches, 0, "");
156 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_btree_lookups, CTLFLAG_RD,
157 &hammer_stats_btree_lookups, 0, "");
158 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_btree_inserts, CTLFLAG_RD,
159 &hammer_stats_btree_inserts, 0, "");
160 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_btree_deletes, CTLFLAG_RD,
161 &hammer_stats_btree_deletes, 0, "");
162 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_btree_elements, CTLFLAG_RD,
163 &hammer_stats_btree_elements, 0, "");
164 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_btree_splits, CTLFLAG_RD,
165 &hammer_stats_btree_splits, 0, "");
166 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_btree_iterations, CTLFLAG_RD,
167 &hammer_stats_btree_iterations, 0, "");
168 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_record_iterations, CTLFLAG_RD,
169 &hammer_stats_record_iterations, 0, "");
171 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_file_read, CTLFLAG_RD,
172 &hammer_stats_file_read, 0, "");
173 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_file_write, CTLFLAG_RD,
174 &hammer_stats_file_write, 0, "");
175 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_file_iopsr, CTLFLAG_RD,
176 &hammer_stats_file_iopsr, 0, "");
177 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_file_iopsw, CTLFLAG_RD,
178 &hammer_stats_file_iopsw, 0, "");
179 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_disk_read, CTLFLAG_RD,
180 &hammer_stats_disk_read, 0, "");
181 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_disk_write, CTLFLAG_RD,
182 &hammer_stats_disk_write, 0, "");
183 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_inode_flushes, CTLFLAG_RD,
184 &hammer_stats_inode_flushes, 0, "");
185 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, stats_commits, CTLFLAG_RD,
186 &hammer_stats_commits, 0, "");
188 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_dirtybufspace, CTLFLAG_RD,
189 &hammer_count_dirtybufspace, 0, "");
190 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_refedbufs, CTLFLAG_RD,
191 &hammer_count_refedbufs, 0, "");
192 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_reservations, CTLFLAG_RD,
193 &hammer_count_reservations, 0, "");
194 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_io_running_read, CTLFLAG_RD,
195 &hammer_count_io_running_read, 0, "");
196 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_io_locked, CTLFLAG_RD,
197 &hammer_count_io_locked, 0, "");
198 SYSCTL_INT(_vfs_hammer, OID_AUTO, count_io_running_write, CTLFLAG_RD,
199 &hammer_count_io_running_write, 0, "");
200 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, zone_limit, CTLFLAG_RW,
201 &hammer_zone_limit, 0, "");
202 SYSCTL_QUAD(_vfs_hammer, OID_AUTO, contention_count, CTLFLAG_RW,
203 &hammer_contention_count, 0, "");
204 SYSCTL_INT(_vfs_hammer, OID_AUTO, verify_zone, CTLFLAG_RW,
205 &hammer_verify_zone, 0, "");
206 SYSCTL_INT(_vfs_hammer, OID_AUTO, verify_data, CTLFLAG_RW,
207 &hammer_verify_data, 0, "");
208 SYSCTL_INT(_vfs_hammer, OID_AUTO, write_mode, CTLFLAG_RW,
209 &hammer_write_mode, 0, "");
211 KTR_INFO_MASTER(hammer);
214 * VFS ABI
216 static void hammer_free_hmp(struct mount *mp);
218 static int hammer_vfs_mount(struct mount *mp, char *path, caddr_t data,
219 struct ucred *cred);
220 static int hammer_vfs_unmount(struct mount *mp, int mntflags);
221 static int hammer_vfs_root(struct mount *mp, struct vnode **vpp);
222 static int hammer_vfs_statfs(struct mount *mp, struct statfs *sbp,
223 struct ucred *cred);
224 static int hammer_vfs_statvfs(struct mount *mp, struct statvfs *sbp,
225 struct ucred *cred);
226 static int hammer_vfs_sync(struct mount *mp, int waitfor);
227 static int hammer_vfs_vget(struct mount *mp, ino_t ino,
228 struct vnode **vpp);
229 static int hammer_vfs_init(struct vfsconf *conf);
230 static int hammer_vfs_fhtovp(struct mount *mp, struct fid *fhp,
231 struct vnode **vpp);
232 static int hammer_vfs_vptofh(struct vnode *vp, struct fid *fhp);
233 static int hammer_vfs_checkexp(struct mount *mp, struct sockaddr *nam,
234 int *exflagsp, struct ucred **credanonp);
237 static struct vfsops hammer_vfsops = {
238 .vfs_mount = hammer_vfs_mount,
239 .vfs_unmount = hammer_vfs_unmount,
240 .vfs_root = hammer_vfs_root,
241 .vfs_statfs = hammer_vfs_statfs,
242 .vfs_statvfs = hammer_vfs_statvfs,
243 .vfs_sync = hammer_vfs_sync,
244 .vfs_vget = hammer_vfs_vget,
245 .vfs_init = hammer_vfs_init,
246 .vfs_vptofh = hammer_vfs_vptofh,
247 .vfs_fhtovp = hammer_vfs_fhtovp,
248 .vfs_checkexp = hammer_vfs_checkexp
251 MALLOC_DEFINE(M_HAMMER, "hammer-mount", "hammer mount");
253 VFS_SET(hammer_vfsops, hammer, 0);
254 MODULE_VERSION(hammer, 1);
256 static int
257 hammer_vfs_init(struct vfsconf *conf)
259 int n;
261 if (hammer_limit_recs == 0) {
262 hammer_limit_recs = nbuf * 25;
263 n = kmalloc_limit(M_HAMMER) / 512;
264 if (hammer_limit_recs > n)
265 hammer_limit_recs = n;
267 if (hammer_limit_dirtybufspace == 0) {
268 hammer_limit_dirtybufspace = hidirtybufspace / 2;
269 if (hammer_limit_dirtybufspace < 100)
270 hammer_limit_dirtybufspace = 100;
272 if (hammer_limit_iqueued == 0)
273 hammer_limit_iqueued = desiredvnodes / 5;
274 return(0);
277 static int
278 hammer_vfs_mount(struct mount *mp, char *mntpt, caddr_t data,
279 struct ucred *cred)
281 struct hammer_mount_info info;
282 hammer_mount_t hmp;
283 hammer_volume_t rootvol;
284 struct vnode *rootvp;
285 const char *upath; /* volume name in userspace */
286 char *path; /* volume name in system space */
287 int error;
288 int i;
289 int master_id;
291 if ((error = copyin(data, &info, sizeof(info))) != 0)
292 return (error);
295 * updating or new mount
297 if (mp->mnt_flag & MNT_UPDATE) {
298 hmp = (void *)mp->mnt_data;
299 KKASSERT(hmp != NULL);
300 } else {
301 if (info.nvolumes <= 0 || info.nvolumes >= 32768)
302 return (EINVAL);
303 hmp = NULL;
307 * master-id validation. The master id may not be changed by a
308 * mount update.
310 if (info.hflags & HMNT_MASTERID) {
311 if (hmp && hmp->master_id != info.master_id) {
312 kprintf("hammer: cannot change master id "
313 "with mount update\n");
314 return(EINVAL);
316 master_id = info.master_id;
317 if (master_id < -1 || master_id >= HAMMER_MAX_MASTERS)
318 return (EINVAL);
319 } else {
320 if (hmp)
321 master_id = hmp->master_id;
322 else
323 master_id = 0;
327 * Interal mount data structure
329 if (hmp == NULL) {
330 hmp = kmalloc(sizeof(*hmp), M_HAMMER, M_WAITOK | M_ZERO);
331 mp->mnt_data = (qaddr_t)hmp;
332 hmp->mp = mp;
333 hmp->namekey_iterator = mycpu->gd_time_seconds;
334 /*TAILQ_INIT(&hmp->recycle_list);*/
336 hmp->root_btree_beg.localization = 0x00000000U;
337 hmp->root_btree_beg.obj_id = -0x8000000000000000LL;
338 hmp->root_btree_beg.key = -0x8000000000000000LL;
339 hmp->root_btree_beg.create_tid = 1;
340 hmp->root_btree_beg.delete_tid = 1;
341 hmp->root_btree_beg.rec_type = 0;
342 hmp->root_btree_beg.obj_type = 0;
344 hmp->root_btree_end.localization = 0xFFFFFFFFU;
345 hmp->root_btree_end.obj_id = 0x7FFFFFFFFFFFFFFFLL;
346 hmp->root_btree_end.key = 0x7FFFFFFFFFFFFFFFLL;
347 hmp->root_btree_end.create_tid = 0xFFFFFFFFFFFFFFFFULL;
348 hmp->root_btree_end.delete_tid = 0; /* special case */
349 hmp->root_btree_end.rec_type = 0xFFFFU;
350 hmp->root_btree_end.obj_type = 0;
352 hmp->krate.freq = 1; /* maximum reporting rate (hz) */
353 hmp->krate.count = -16; /* initial burst */
355 hmp->sync_lock.refs = 1;
356 hmp->free_lock.refs = 1;
357 hmp->undo_lock.refs = 1;
358 hmp->blkmap_lock.refs = 1;
360 TAILQ_INIT(&hmp->delay_list);
361 TAILQ_INIT(&hmp->flush_group_list);
362 TAILQ_INIT(&hmp->objid_cache_list);
363 TAILQ_INIT(&hmp->undo_lru_list);
364 TAILQ_INIT(&hmp->reclaim_list);
366 hmp->hflags &= ~HMNT_USERFLAGS;
367 hmp->hflags |= info.hflags & HMNT_USERFLAGS;
369 hmp->master_id = master_id;
371 if (info.asof) {
372 mp->mnt_flag |= MNT_RDONLY;
373 hmp->asof = info.asof;
374 } else {
375 hmp->asof = HAMMER_MAX_TID;
379 * Re-open read-write if originally read-only, or vise-versa.
381 if (mp->mnt_flag & MNT_UPDATE) {
382 error = 0;
383 if (hmp->ronly && (mp->mnt_kern_flag & MNTK_WANTRDWR)) {
384 kprintf("HAMMER read-only -> read-write\n");
385 hmp->ronly = 0;
386 RB_SCAN(hammer_vol_rb_tree, &hmp->rb_vols_root, NULL,
387 hammer_adjust_volume_mode, NULL);
388 rootvol = hammer_get_root_volume(hmp, &error);
389 if (rootvol) {
390 hammer_recover_flush_buffers(hmp, rootvol, 1);
391 bcopy(rootvol->ondisk->vol0_blockmap,
392 hmp->blockmap,
393 sizeof(hmp->blockmap));
394 hammer_rel_volume(rootvol, 0);
396 RB_SCAN(hammer_ino_rb_tree, &hmp->rb_inos_root, NULL,
397 hammer_reload_inode, NULL);
398 /* kernel clears MNT_RDONLY */
399 } else if (hmp->ronly == 0 && (mp->mnt_flag & MNT_RDONLY)) {
400 kprintf("HAMMER read-write -> read-only\n");
401 hmp->ronly = 1; /* messy */
402 RB_SCAN(hammer_ino_rb_tree, &hmp->rb_inos_root, NULL,
403 hammer_reload_inode, NULL);
404 hmp->ronly = 0;
405 hammer_flusher_sync(hmp);
406 hammer_flusher_sync(hmp);
407 hammer_flusher_sync(hmp);
408 hmp->ronly = 1;
409 RB_SCAN(hammer_vol_rb_tree, &hmp->rb_vols_root, NULL,
410 hammer_adjust_volume_mode, NULL);
412 return(error);
415 RB_INIT(&hmp->rb_vols_root);
416 RB_INIT(&hmp->rb_inos_root);
417 RB_INIT(&hmp->rb_nods_root);
418 RB_INIT(&hmp->rb_undo_root);
419 RB_INIT(&hmp->rb_resv_root);
420 RB_INIT(&hmp->rb_bufs_root);
421 RB_INIT(&hmp->rb_pfsm_root);
423 hmp->ronly = ((mp->mnt_flag & MNT_RDONLY) != 0);
425 TAILQ_INIT(&hmp->volu_list);
426 TAILQ_INIT(&hmp->undo_list);
427 TAILQ_INIT(&hmp->data_list);
428 TAILQ_INIT(&hmp->meta_list);
429 TAILQ_INIT(&hmp->lose_list);
432 * Load volumes
434 path = objcache_get(namei_oc, M_WAITOK);
435 hmp->nvolumes = -1;
436 for (i = 0; i < info.nvolumes; ++i) {
437 error = copyin(&info.volumes[i], &upath, sizeof(char *));
438 if (error == 0)
439 error = copyinstr(upath, path, MAXPATHLEN, NULL);
440 if (error == 0)
441 error = hammer_install_volume(hmp, path);
442 if (error)
443 break;
445 objcache_put(namei_oc, path);
448 * Make sure we found a root volume
450 if (error == 0 && hmp->rootvol == NULL) {
451 kprintf("hammer_mount: No root volume found!\n");
452 error = EINVAL;
456 * Check that all required volumes are available
458 if (error == 0 && hammer_mountcheck_volumes(hmp)) {
459 kprintf("hammer_mount: Missing volumes, cannot mount!\n");
460 error = EINVAL;
463 if (error) {
464 hammer_free_hmp(mp);
465 return (error);
469 * No errors, setup enough of the mount point so we can lookup the
470 * root vnode.
472 mp->mnt_iosize_max = MAXPHYS;
473 mp->mnt_kern_flag |= MNTK_FSMID;
476 * note: f_iosize is used by vnode_pager_haspage() when constructing
477 * its VOP_BMAP call.
479 mp->mnt_stat.f_iosize = HAMMER_BUFSIZE;
480 mp->mnt_stat.f_bsize = HAMMER_BUFSIZE;
482 mp->mnt_vstat.f_frsize = HAMMER_BUFSIZE;
483 mp->mnt_vstat.f_bsize = HAMMER_BUFSIZE;
485 mp->mnt_maxsymlinklen = 255;
486 mp->mnt_flag |= MNT_LOCAL;
488 vfs_add_vnodeops(mp, &hammer_vnode_vops, &mp->mnt_vn_norm_ops);
489 vfs_add_vnodeops(mp, &hammer_spec_vops, &mp->mnt_vn_spec_ops);
490 vfs_add_vnodeops(mp, &hammer_fifo_vops, &mp->mnt_vn_fifo_ops);
493 * The root volume's ondisk pointer is only valid if we hold a
494 * reference to it.
496 rootvol = hammer_get_root_volume(hmp, &error);
497 if (error)
498 goto failed;
501 * Perform any necessary UNDO operations. The recovery code does
502 * call hammer_undo_lookup() so we have to pre-cache the blockmap,
503 * and then re-copy it again after recovery is complete.
505 * If this is a read-only mount the UNDO information is retained
506 * in memory in the form of dirty buffer cache buffers, and not
507 * written back to the media.
509 bcopy(rootvol->ondisk->vol0_blockmap, hmp->blockmap,
510 sizeof(hmp->blockmap));
513 * The undo_rec_limit limits the size of flush groups to avoid
514 * blowing out the UNDO FIFO. This calculation is typically in
515 * the tens of thousands and is designed primarily when small
516 * HAMMER filesystems are created.
518 hmp->undo_rec_limit = hammer_undo_max(hmp) / 8192 + 100;
519 if (hammer_debug_general & 0x0001)
520 kprintf("HAMMER: undo_rec_limit %d\n", hmp->undo_rec_limit);
522 error = hammer_recover(hmp, rootvol);
523 if (error) {
524 kprintf("Failed to recover HAMMER filesystem on mount\n");
525 goto done;
529 * Finish setup now that we have a good root volume.
531 * The top 16 bits of fsid.val[1] is a pfs id.
533 ksnprintf(mp->mnt_stat.f_mntfromname,
534 sizeof(mp->mnt_stat.f_mntfromname), "%s",
535 rootvol->ondisk->vol_name);
536 mp->mnt_stat.f_fsid.val[0] =
537 crc32((char *)&rootvol->ondisk->vol_fsid + 0, 8);
538 mp->mnt_stat.f_fsid.val[1] =
539 crc32((char *)&rootvol->ondisk->vol_fsid + 8, 8);
540 mp->mnt_stat.f_fsid.val[1] &= 0x0000FFFF;
542 mp->mnt_vstat.f_fsid_uuid = rootvol->ondisk->vol_fsid;
543 mp->mnt_vstat.f_fsid = crc32(&mp->mnt_vstat.f_fsid_uuid,
544 sizeof(mp->mnt_vstat.f_fsid_uuid));
547 * Certain often-modified fields in the root volume are cached in
548 * the hammer_mount structure so we do not have to generate lots
549 * of little UNDO structures for them.
551 * Recopy after recovery. This also has the side effect of
552 * setting our cached undo FIFO's first_offset, which serves to
553 * placemark the FIFO start for the NEXT flush cycle while the
554 * on-disk first_offset represents the LAST flush cycle.
556 hmp->next_tid = rootvol->ondisk->vol0_next_tid;
557 bcopy(rootvol->ondisk->vol0_blockmap, hmp->blockmap,
558 sizeof(hmp->blockmap));
559 hmp->copy_stat_freebigblocks = rootvol->ondisk->vol0_stat_freebigblocks;
561 hammer_flusher_create(hmp);
564 * Locate the root directory using the root cluster's B-Tree as a
565 * starting point. The root directory uses an obj_id of 1.
567 * FUTURE: Leave the root directory cached referenced but unlocked
568 * in hmp->rootvp (need to flush it on unmount).
570 error = hammer_vfs_vget(mp, 1, &rootvp);
571 if (error)
572 goto done;
573 vput(rootvp);
574 /*vn_unlock(hmp->rootvp);*/
576 done:
577 hammer_rel_volume(rootvol, 0);
578 failed:
580 * Cleanup and return.
582 if (error)
583 hammer_free_hmp(mp);
584 return (error);
587 static int
588 hammer_vfs_unmount(struct mount *mp, int mntflags)
590 #if 0
591 struct hammer_mount *hmp = (void *)mp->mnt_data;
592 #endif
593 int flags;
594 int error;
597 * Clean out the vnodes
599 flags = 0;
600 if (mntflags & MNT_FORCE)
601 flags |= FORCECLOSE;
602 if ((error = vflush(mp, 0, flags)) != 0)
603 return (error);
606 * Clean up the internal mount structure and related entities. This
607 * may issue I/O.
609 hammer_free_hmp(mp);
610 return(0);
614 * Clean up the internal mount structure and disassociate it from the mount.
615 * This may issue I/O.
617 static void
618 hammer_free_hmp(struct mount *mp)
620 struct hammer_mount *hmp = (void *)mp->mnt_data;
621 hammer_flush_group_t flg;
622 int count;
625 * Flush anything dirty. This won't even run if the
626 * filesystem errored-out.
628 count = 0;
629 while (hammer_flusher_haswork(hmp)) {
630 hammer_flusher_sync(hmp);
631 ++count;
632 if (count >= 5) {
633 if (count == 5)
634 kprintf("HAMMER: umount flushing.");
635 else
636 kprintf(".");
637 tsleep(hmp, 0, "hmrufl", hz);
639 if (count == 30) {
640 kprintf("giving up\n");
641 break;
644 if (count >= 5 && count < 30)
645 kprintf("\n");
648 * If the mount had a critical error we have to destroy any
649 * remaining inodes before we can finish cleaning up the flusher.
651 if (hmp->flags & HAMMER_MOUNT_CRITICAL_ERROR) {
652 RB_SCAN(hammer_ino_rb_tree, &hmp->rb_inos_root, NULL,
653 hammer_destroy_inode_callback, NULL);
657 * There shouldn't be any inodes left now and any left over
658 * flush groups should now be empty.
660 KKASSERT(RB_EMPTY(&hmp->rb_inos_root));
661 while ((flg = TAILQ_FIRST(&hmp->flush_group_list)) != NULL) {
662 TAILQ_REMOVE(&hmp->flush_group_list, flg, flush_entry);
663 KKASSERT(TAILQ_EMPTY(&flg->flush_list));
664 if (flg->refs) {
665 kprintf("HAMMER: Warning, flush_group %p was "
666 "not empty on umount!\n", flg);
668 kfree(flg, M_HAMMER);
672 * We can finally destroy the flusher
674 hammer_flusher_destroy(hmp);
677 * We may have held recovered buffers due to a read-only mount.
678 * These must be discarded.
680 if (hmp->ronly)
681 hammer_recover_flush_buffers(hmp, NULL, -1);
684 * Unload buffers and then volumes
686 RB_SCAN(hammer_buf_rb_tree, &hmp->rb_bufs_root, NULL,
687 hammer_unload_buffer, NULL);
688 RB_SCAN(hammer_vol_rb_tree, &hmp->rb_vols_root, NULL,
689 hammer_unload_volume, NULL);
691 mp->mnt_data = NULL;
692 mp->mnt_flag &= ~MNT_LOCAL;
693 hmp->mp = NULL;
694 hammer_destroy_objid_cache(hmp);
695 kfree(hmp, M_HAMMER);
699 * Report critical errors. ip may be NULL.
701 void
702 hammer_critical_error(hammer_mount_t hmp, hammer_inode_t ip,
703 int error, const char *msg)
705 hmp->flags |= HAMMER_MOUNT_CRITICAL_ERROR;
706 krateprintf(&hmp->krate,
707 "HAMMER(%s): Critical error inode=%lld %s\n",
708 hmp->mp->mnt_stat.f_mntfromname,
709 (ip ? ip->obj_id : -1), msg);
710 if (hmp->ronly == 0) {
711 hmp->ronly = 2; /* special errored read-only mode */
712 hmp->mp->mnt_flag |= MNT_RDONLY;
713 kprintf("HAMMER(%s): Forcing read-only mode\n",
714 hmp->mp->mnt_stat.f_mntfromname);
716 hmp->error = error;
721 * Obtain a vnode for the specified inode number. An exclusively locked
722 * vnode is returned.
725 hammer_vfs_vget(struct mount *mp, ino_t ino, struct vnode **vpp)
727 struct hammer_transaction trans;
728 struct hammer_mount *hmp = (void *)mp->mnt_data;
729 struct hammer_inode *ip;
730 int error;
732 hammer_simple_transaction(&trans, hmp);
735 * Lookup the requested HAMMER inode. The structure must be
736 * left unlocked while we manipulate the related vnode to avoid
737 * a deadlock.
739 ip = hammer_get_inode(&trans, NULL, ino,
740 hmp->asof, HAMMER_DEF_LOCALIZATION,
741 0, &error);
742 if (ip == NULL) {
743 *vpp = NULL;
744 hammer_done_transaction(&trans);
745 return(error);
747 error = hammer_get_vnode(ip, vpp);
748 hammer_rel_inode(ip, 0);
749 hammer_done_transaction(&trans);
750 return (error);
754 * Return the root vnode for the filesystem.
756 * HAMMER stores the root vnode in the hammer_mount structure so
757 * getting it is easy.
759 static int
760 hammer_vfs_root(struct mount *mp, struct vnode **vpp)
762 #if 0
763 struct hammer_mount *hmp = (void *)mp->mnt_data;
764 #endif
765 int error;
767 error = hammer_vfs_vget(mp, 1, vpp);
768 return (error);
771 static int
772 hammer_vfs_statfs(struct mount *mp, struct statfs *sbp, struct ucred *cred)
774 struct hammer_mount *hmp = (void *)mp->mnt_data;
775 hammer_volume_t volume;
776 hammer_volume_ondisk_t ondisk;
777 int error;
778 int64_t bfree;
780 volume = hammer_get_root_volume(hmp, &error);
781 if (error)
782 return(error);
783 ondisk = volume->ondisk;
786 * Basic stats
788 mp->mnt_stat.f_files = ondisk->vol0_stat_inodes;
789 bfree = ondisk->vol0_stat_freebigblocks * HAMMER_LARGEBLOCK_SIZE;
790 hammer_rel_volume(volume, 0);
792 mp->mnt_stat.f_bfree = bfree / HAMMER_BUFSIZE;
793 mp->mnt_stat.f_bavail = mp->mnt_stat.f_bfree;
794 if (mp->mnt_stat.f_files < 0)
795 mp->mnt_stat.f_files = 0;
797 *sbp = mp->mnt_stat;
798 return(0);
801 static int
802 hammer_vfs_statvfs(struct mount *mp, struct statvfs *sbp, struct ucred *cred)
804 struct hammer_mount *hmp = (void *)mp->mnt_data;
805 hammer_volume_t volume;
806 hammer_volume_ondisk_t ondisk;
807 int error;
808 int64_t bfree;
810 volume = hammer_get_root_volume(hmp, &error);
811 if (error)
812 return(error);
813 ondisk = volume->ondisk;
816 * Basic stats
818 mp->mnt_vstat.f_files = ondisk->vol0_stat_inodes;
819 bfree = ondisk->vol0_stat_freebigblocks * HAMMER_LARGEBLOCK_SIZE;
820 hammer_rel_volume(volume, 0);
822 mp->mnt_vstat.f_bfree = bfree / HAMMER_BUFSIZE;
823 mp->mnt_vstat.f_bavail = mp->mnt_stat.f_bfree;
824 if (mp->mnt_vstat.f_files < 0)
825 mp->mnt_vstat.f_files = 0;
826 *sbp = mp->mnt_vstat;
827 return(0);
831 * Sync the filesystem. Currently we have to run it twice, the second
832 * one will advance the undo start index to the end index, so if a crash
833 * occurs no undos will be run on mount.
835 * We do not sync the filesystem if we are called from a panic. If we did
836 * we might end up blowing up a sync that was already in progress.
838 static int
839 hammer_vfs_sync(struct mount *mp, int waitfor)
841 struct hammer_mount *hmp = (void *)mp->mnt_data;
842 int error;
844 if (panicstr == NULL) {
845 error = hammer_sync_hmp(hmp, waitfor);
846 if (error == 0)
847 error = hammer_sync_hmp(hmp, waitfor);
848 } else {
849 error = EIO;
851 return (error);
855 * Convert a vnode to a file handle.
857 static int
858 hammer_vfs_vptofh(struct vnode *vp, struct fid *fhp)
860 hammer_inode_t ip;
862 KKASSERT(MAXFIDSZ >= 16);
863 ip = VTOI(vp);
864 fhp->fid_len = offsetof(struct fid, fid_data[16]);
865 fhp->fid_ext = ip->obj_localization >> 16;
866 bcopy(&ip->obj_id, fhp->fid_data + 0, sizeof(ip->obj_id));
867 bcopy(&ip->obj_asof, fhp->fid_data + 8, sizeof(ip->obj_asof));
868 return(0);
873 * Convert a file handle back to a vnode.
875 static int
876 hammer_vfs_fhtovp(struct mount *mp, struct fid *fhp, struct vnode **vpp)
878 struct hammer_transaction trans;
879 struct hammer_inode *ip;
880 struct hammer_inode_info info;
881 int error;
882 u_int32_t localization;
884 bcopy(fhp->fid_data + 0, &info.obj_id, sizeof(info.obj_id));
885 bcopy(fhp->fid_data + 8, &info.obj_asof, sizeof(info.obj_asof));
886 localization = (u_int32_t)fhp->fid_ext << 16;
888 hammer_simple_transaction(&trans, (void *)mp->mnt_data);
891 * Get/allocate the hammer_inode structure. The structure must be
892 * unlocked while we manipulate the related vnode to avoid a
893 * deadlock.
895 ip = hammer_get_inode(&trans, NULL, info.obj_id,
896 info.obj_asof, localization, 0, &error);
897 if (ip == NULL) {
898 *vpp = NULL;
899 return(error);
901 error = hammer_get_vnode(ip, vpp);
902 hammer_rel_inode(ip, 0);
903 hammer_done_transaction(&trans);
904 return (error);
907 static int
908 hammer_vfs_checkexp(struct mount *mp, struct sockaddr *nam,
909 int *exflagsp, struct ucred **credanonp)
911 hammer_mount_t hmp = (void *)mp->mnt_data;
912 struct netcred *np;
913 int error;
915 np = vfs_export_lookup(mp, &hmp->export, nam);
916 if (np) {
917 *exflagsp = np->netc_exflags;
918 *credanonp = &np->netc_anon;
919 error = 0;
920 } else {
921 error = EACCES;
923 return (error);
928 hammer_vfs_export(struct mount *mp, int op, const struct export_args *export)
930 hammer_mount_t hmp = (void *)mp->mnt_data;
931 int error;
933 switch(op) {
934 case MOUNTCTL_SET_EXPORT:
935 error = vfs_export(mp, &hmp->export, export);
936 break;
937 default:
938 error = EOPNOTSUPP;
939 break;
941 return(error);