1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * Copyright (C) Sistina Software, Inc. 1997-2003 All rights reserved. 4 * Copyright (C) 2004-2007 Red Hat, Inc. All rights reserved. 5 */ 6 7 #include <linux/sched.h> 8 #include <linux/slab.h> 9 #include <linux/spinlock.h> 10 #include <linux/completion.h> 11 #include <linux/buffer_head.h> 12 #include <linux/gfs2_ondisk.h> 13 #include <linux/crc32.h> 14 #include <linux/crc32c.h> 15 #include <linux/delay.h> 16 #include <linux/kthread.h> 17 #include <linux/freezer.h> 18 #include <linux/bio.h> 19 #include <linux/blkdev.h> 20 #include <linux/writeback.h> 21 #include <linux/list_sort.h> 22 23 #include "gfs2.h" 24 #include "incore.h" 25 #include "bmap.h" 26 #include "glock.h" 27 #include "log.h" 28 #include "lops.h" 29 #include "meta_io.h" 30 #include "util.h" 31 #include "dir.h" 32 #include "trace_gfs2.h" 33 #include "trans.h" 34 #include "aops.h" 35 36 static void gfs2_log_shutdown(struct gfs2_sbd *sdp); 37 38 /** 39 * gfs2_struct2blk - compute stuff 40 * @sdp: the filesystem 41 * @nstruct: the number of structures 42 * 43 * Compute the number of log descriptor blocks needed to hold a certain number 44 * of structures of a certain size. 45 * 46 * Returns: the number of blocks needed (minimum is always 1) 47 */ 48 49 unsigned int gfs2_struct2blk(struct gfs2_sbd *sdp, unsigned int nstruct) 50 { 51 unsigned int blks; 52 unsigned int first, second; 53 54 /* The initial struct gfs2_log_descriptor block */ 55 blks = 1; 56 first = sdp->sd_ldptrs; 57 58 if (nstruct > first) { 59 /* Subsequent struct gfs2_meta_header blocks */ 60 second = sdp->sd_inptrs; 61 blks += DIV_ROUND_UP(nstruct - first, second); 62 } 63 64 return blks; 65 } 66 67 /** 68 * gfs2_remove_from_ail - Remove an entry from the ail lists, updating counters 69 * @bd: The gfs2_bufdata to remove 70 * 71 * The ail lock _must_ be held when calling this function 72 * 73 */ 74 75 static void gfs2_remove_from_ail(struct gfs2_bufdata *bd) 76 { 77 bd->bd_tr = NULL; 78 list_del_init(&bd->bd_ail_st_list); 79 list_del_init(&bd->bd_ail_gl_list); 80 atomic_dec(&bd->bd_gl->gl_ail_count); 81 brelse(bd->bd_bh); 82 } 83 84 /** 85 * gfs2_ail1_start_one - Start I/O on a transaction 86 * @sdp: The superblock 87 * @wbc: The writeback control structure 88 * @tr: The transaction to start I/O on 89 * @plug: The block plug currently active 90 */ 91 92 static int gfs2_ail1_start_one(struct gfs2_sbd *sdp, 93 struct writeback_control *wbc, 94 struct gfs2_trans *tr, struct blk_plug *plug) 95 __releases(&sdp->sd_ail_lock) 96 __acquires(&sdp->sd_ail_lock) 97 { 98 struct gfs2_glock *gl = NULL; 99 struct address_space *mapping; 100 struct gfs2_bufdata *bd, *s; 101 struct buffer_head *bh; 102 int ret = 0; 103 104 list_for_each_entry_safe_reverse(bd, s, &tr->tr_ail1_list, bd_ail_st_list) { 105 bh = bd->bd_bh; 106 107 gfs2_assert(sdp, bd->bd_tr == tr); 108 109 if (!buffer_busy(bh)) { 110 if (buffer_uptodate(bh)) { 111 list_move(&bd->bd_ail_st_list, 112 &tr->tr_ail2_list); 113 continue; 114 } 115 if (!cmpxchg(&sdp->sd_log_error, 0, -EIO)) 116 gfs2_io_error_bh(sdp, bh); 117 } 118 119 if (gfs2_withdrawn(sdp)) { 120 gfs2_remove_from_ail(bd); 121 continue; 122 } 123 if (!buffer_dirty(bh)) 124 continue; 125 if (gl == bd->bd_gl) 126 continue; 127 gl = bd->bd_gl; 128 list_move(&bd->bd_ail_st_list, &tr->tr_ail1_list); 129 mapping = bh->b_folio->mapping; 130 if (!mapping) 131 continue; 132 spin_unlock(&sdp->sd_ail_lock); 133 BUG_ON(GFS2_SB(mapping->host) != sdp); 134 if (gfs2_is_jdata(GFS2_I(mapping->host))) 135 ret = gfs2_jdata_writeback(mapping, wbc); 136 else 137 ret = mapping->a_ops->writepages(mapping, wbc); 138 if (need_resched()) { 139 blk_finish_plug(plug); 140 cond_resched(); 141 blk_start_plug(plug); 142 } 143 spin_lock(&sdp->sd_ail_lock); 144 if (ret == -ENODATA) /* if a jdata write into a new hole */ 145 ret = 0; /* ignore it */ 146 mapping_set_error(mapping, ret); 147 if (ret || wbc->nr_to_write <= 0) 148 break; 149 return -EBUSY; 150 } 151 152 return ret; 153 } 154 155 static void dump_ail_list(struct gfs2_sbd *sdp) 156 { 157 struct gfs2_trans *tr; 158 struct gfs2_bufdata *bd; 159 struct buffer_head *bh; 160 161 list_for_each_entry_reverse(tr, &sdp->sd_ail1_list, tr_list) { 162 list_for_each_entry_reverse(bd, &tr->tr_ail1_list, 163 bd_ail_st_list) { 164 bh = bd->bd_bh; 165 fs_err(sdp, "bd %p: blk:0x%llx bh=%p ", bd, 166 (unsigned long long)bd->bd_blkno, bh); 167 if (!bh) { 168 fs_err(sdp, "\n"); 169 continue; 170 } 171 fs_err(sdp, "0x%llx up2:%d dirt:%d lkd:%d req:%d " 172 "map:%d new:%d ar:%d aw:%d delay:%d " 173 "io err:%d unwritten:%d dfr:%d pin:%d esc:%d\n", 174 (unsigned long long)bh->b_blocknr, 175 buffer_uptodate(bh), buffer_dirty(bh), 176 buffer_locked(bh), buffer_req(bh), 177 buffer_mapped(bh), buffer_new(bh), 178 buffer_async_read(bh), buffer_async_write(bh), 179 buffer_delay(bh), buffer_write_io_error(bh), 180 buffer_unwritten(bh), 181 buffer_defer_completion(bh), 182 buffer_pinned(bh), buffer_escaped(bh)); 183 } 184 } 185 } 186 187 /** 188 * gfs2_ail1_flush - start writeback of some ail1 entries 189 * @sdp: The super block 190 * @wbc: The writeback control structure 191 * 192 * Writes back some ail1 entries, according to the limits in the 193 * writeback control structure 194 */ 195 196 void gfs2_ail1_flush(struct gfs2_sbd *sdp, struct writeback_control *wbc) 197 { 198 struct list_head *head = &sdp->sd_ail1_list; 199 struct gfs2_trans *tr; 200 struct blk_plug plug; 201 int ret; 202 unsigned long flush_start = jiffies; 203 204 trace_gfs2_ail_flush(sdp, wbc, 1); 205 blk_start_plug(&plug); 206 spin_lock(&sdp->sd_ail_lock); 207 restart: 208 ret = 0; 209 if (time_after(jiffies, flush_start + (HZ * 600))) { 210 fs_err(sdp, "Error: In %s for ten minutes! t=%d\n", 211 __func__, current->journal_info ? 1 : 0); 212 dump_ail_list(sdp); 213 goto out; 214 } 215 list_for_each_entry_reverse(tr, head, tr_list) { 216 if (wbc->nr_to_write <= 0) 217 break; 218 ret = gfs2_ail1_start_one(sdp, wbc, tr, &plug); 219 if (ret) { 220 if (ret == -EBUSY) 221 goto restart; 222 break; 223 } 224 } 225 out: 226 spin_unlock(&sdp->sd_ail_lock); 227 blk_finish_plug(&plug); 228 if (ret) { 229 gfs2_lm(sdp, "gfs2_ail1_start_one returned: %d\n", ret); 230 gfs2_withdraw(sdp); 231 } 232 trace_gfs2_ail_flush(sdp, wbc, 0); 233 } 234 235 /** 236 * gfs2_ail1_start - start writeback of all ail1 entries 237 * @sdp: The superblock 238 */ 239 240 static void gfs2_ail1_start(struct gfs2_sbd *sdp) 241 { 242 struct writeback_control wbc = { 243 .sync_mode = WB_SYNC_NONE, 244 .nr_to_write = LONG_MAX, 245 .range_start = 0, 246 .range_end = LLONG_MAX, 247 }; 248 249 return gfs2_ail1_flush(sdp, &wbc); 250 } 251 252 static void gfs2_log_update_flush_tail(struct gfs2_sbd *sdp) 253 { 254 unsigned int new_flush_tail = sdp->sd_log_head; 255 struct gfs2_trans *tr; 256 257 if (!list_empty(&sdp->sd_ail1_list)) { 258 tr = list_last_entry(&sdp->sd_ail1_list, 259 struct gfs2_trans, tr_list); 260 new_flush_tail = tr->tr_first; 261 } 262 sdp->sd_log_flush_tail = new_flush_tail; 263 } 264 265 static void gfs2_log_update_head(struct gfs2_sbd *sdp) 266 { 267 unsigned int new_head = sdp->sd_log_flush_head; 268 269 if (sdp->sd_log_flush_tail == sdp->sd_log_head) 270 sdp->sd_log_flush_tail = new_head; 271 sdp->sd_log_head = new_head; 272 } 273 274 /* 275 * gfs2_ail_empty_tr - empty one of the ail lists of a transaction 276 */ 277 278 static void gfs2_ail_empty_tr(struct gfs2_sbd *sdp, struct gfs2_trans *tr, 279 struct list_head *head) 280 { 281 struct gfs2_bufdata *bd; 282 283 while (!list_empty(head)) { 284 bd = list_first_entry(head, struct gfs2_bufdata, 285 bd_ail_st_list); 286 gfs2_assert(sdp, bd->bd_tr == tr); 287 gfs2_remove_from_ail(bd); 288 } 289 } 290 291 /** 292 * gfs2_ail1_empty_one - Check whether or not a trans in the AIL has been synced 293 * @sdp: the filesystem 294 * @tr: the transaction 295 * @max_revokes: If nonzero, issue revokes for the bd items for written buffers 296 * 297 * returns: the transaction's count of remaining active items 298 */ 299 300 static int gfs2_ail1_empty_one(struct gfs2_sbd *sdp, struct gfs2_trans *tr, 301 int *max_revokes) 302 { 303 struct gfs2_bufdata *bd, *s; 304 struct buffer_head *bh; 305 int active_count = 0; 306 307 list_for_each_entry_safe_reverse(bd, s, &tr->tr_ail1_list, 308 bd_ail_st_list) { 309 bh = bd->bd_bh; 310 gfs2_assert(sdp, bd->bd_tr == tr); 311 /* 312 * If another process flagged an io error, e.g. writing to the 313 * journal, error all other bhs and move them off the ail1 to 314 * prevent a tight loop when unmount tries to flush ail1, 315 * regardless of whether they're still busy. If no outside 316 * errors were found and the buffer is busy, move to the next. 317 * If the ail buffer is not busy and caught an error, flag it 318 * for others. 319 */ 320 if (!sdp->sd_log_error && buffer_busy(bh)) { 321 active_count++; 322 continue; 323 } 324 if (!buffer_uptodate(bh) && 325 !cmpxchg(&sdp->sd_log_error, 0, -EIO)) 326 gfs2_io_error_bh(sdp, bh); 327 /* 328 * If we have space for revokes and the bd is no longer on any 329 * buf list, we can just add a revoke for it immediately and 330 * avoid having to put it on the ail2 list, where it would need 331 * to be revoked later. 332 */ 333 if (*max_revokes && list_empty(&bd->bd_list)) { 334 gfs2_add_revoke(sdp, bd); 335 (*max_revokes)--; 336 continue; 337 } 338 list_move(&bd->bd_ail_st_list, &tr->tr_ail2_list); 339 } 340 return active_count; 341 } 342 343 /** 344 * gfs2_ail1_empty - Try to empty the ail1 lists 345 * @sdp: The superblock 346 * @max_revokes: If non-zero, add revokes where appropriate 347 * 348 * Tries to empty the ail1 lists, starting with the oldest first. 349 * Returns %true if the ail1 list is now empty. 350 */ 351 352 static bool gfs2_ail1_empty(struct gfs2_sbd *sdp, int max_revokes) 353 { 354 struct gfs2_trans *tr, *s; 355 int oldest_tr = 1; 356 bool empty; 357 358 spin_lock(&sdp->sd_ail_lock); 359 list_for_each_entry_safe_reverse(tr, s, &sdp->sd_ail1_list, tr_list) { 360 if (!gfs2_ail1_empty_one(sdp, tr, &max_revokes) && oldest_tr) 361 list_move(&tr->tr_list, &sdp->sd_ail2_list); 362 else 363 oldest_tr = 0; 364 } 365 gfs2_log_update_flush_tail(sdp); 366 empty = list_empty(&sdp->sd_ail1_list); 367 spin_unlock(&sdp->sd_ail_lock); 368 369 return empty; 370 } 371 372 static void gfs2_ail1_wait(struct gfs2_sbd *sdp) 373 { 374 struct gfs2_trans *tr; 375 struct gfs2_bufdata *bd; 376 struct buffer_head *bh; 377 378 spin_lock(&sdp->sd_ail_lock); 379 list_for_each_entry_reverse(tr, &sdp->sd_ail1_list, tr_list) { 380 list_for_each_entry(bd, &tr->tr_ail1_list, bd_ail_st_list) { 381 bh = bd->bd_bh; 382 if (!buffer_locked(bh)) 383 continue; 384 get_bh(bh); 385 spin_unlock(&sdp->sd_ail_lock); 386 wait_on_buffer(bh); 387 brelse(bh); 388 return; 389 } 390 } 391 spin_unlock(&sdp->sd_ail_lock); 392 } 393 394 static void __ail2_empty(struct gfs2_sbd *sdp, struct gfs2_trans *tr) 395 { 396 gfs2_ail_empty_tr(sdp, tr, &tr->tr_ail2_list); 397 list_del(&tr->tr_list); 398 gfs2_assert_warn(sdp, list_empty(&tr->tr_ail1_list)); 399 gfs2_assert_warn(sdp, list_empty(&tr->tr_ail2_list)); 400 gfs2_trans_free(sdp, tr); 401 } 402 403 static void ail2_empty(struct gfs2_sbd *sdp, unsigned int new_tail) 404 { 405 struct list_head *ail2_list = &sdp->sd_ail2_list; 406 unsigned int old_tail = sdp->sd_log_tail; 407 struct gfs2_trans *tr, *safe; 408 409 spin_lock(&sdp->sd_ail_lock); 410 if (old_tail <= new_tail) { 411 list_for_each_entry_safe(tr, safe, ail2_list, tr_list) { 412 if (old_tail <= tr->tr_first && tr->tr_first < new_tail) 413 __ail2_empty(sdp, tr); 414 } 415 } else { 416 list_for_each_entry_safe(tr, safe, ail2_list, tr_list) { 417 if (old_tail <= tr->tr_first || tr->tr_first < new_tail) 418 __ail2_empty(sdp, tr); 419 } 420 } 421 spin_unlock(&sdp->sd_ail_lock); 422 } 423 424 /** 425 * gfs2_log_is_empty - Check if the log is empty 426 * @sdp: The GFS2 superblock 427 */ 428 429 bool gfs2_log_is_empty(struct gfs2_sbd *sdp) { 430 return atomic_read(&sdp->sd_log_blks_free) == sdp->sd_jdesc->jd_blocks; 431 } 432 433 static bool __gfs2_log_try_reserve_revokes(struct gfs2_sbd *sdp, unsigned int revokes) 434 { 435 unsigned int available; 436 437 available = atomic_read(&sdp->sd_log_revokes_available); 438 while (available >= revokes) { 439 if (atomic_try_cmpxchg(&sdp->sd_log_revokes_available, 440 &available, available - revokes)) 441 return true; 442 } 443 return false; 444 } 445 446 /** 447 * gfs2_log_release_revokes - Release a given number of revokes 448 * @sdp: The GFS2 superblock 449 * @revokes: The number of revokes to release 450 * 451 * sdp->sd_log_flush_lock must be held. 452 */ 453 void gfs2_log_release_revokes(struct gfs2_sbd *sdp, unsigned int revokes) 454 { 455 if (revokes) 456 atomic_add(revokes, &sdp->sd_log_revokes_available); 457 } 458 459 /** 460 * gfs2_log_release - Release a given number of log blocks 461 * @sdp: The GFS2 superblock 462 * @blks: The number of blocks 463 * 464 */ 465 466 void gfs2_log_release(struct gfs2_sbd *sdp, unsigned int blks) 467 { 468 atomic_add(blks, &sdp->sd_log_blks_free); 469 trace_gfs2_log_blocks(sdp, blks); 470 gfs2_assert_withdraw(sdp, !sdp->sd_jdesc || 471 atomic_read(&sdp->sd_log_blks_free) <= 472 sdp->sd_jdesc->jd_blocks); 473 if (atomic_read(&sdp->sd_log_blks_needed)) 474 wake_up(&sdp->sd_log_waitq); 475 } 476 477 /** 478 * __gfs2_log_try_reserve - Try to make a log reservation 479 * @sdp: The GFS2 superblock 480 * @blks: The number of blocks to reserve 481 * @taboo_blks: The number of blocks to leave free 482 * 483 * Try to do the same as __gfs2_log_reserve(), but fail if no more log 484 * space is immediately available. 485 */ 486 static bool __gfs2_log_try_reserve(struct gfs2_sbd *sdp, unsigned int blks, 487 unsigned int taboo_blks) 488 { 489 unsigned wanted = blks + taboo_blks; 490 unsigned int free_blocks; 491 492 free_blocks = atomic_read(&sdp->sd_log_blks_free); 493 while (free_blocks >= wanted) { 494 if (atomic_try_cmpxchg(&sdp->sd_log_blks_free, &free_blocks, 495 free_blocks - blks)) { 496 trace_gfs2_log_blocks(sdp, -blks); 497 return true; 498 } 499 } 500 return false; 501 } 502 503 /** 504 * __gfs2_log_reserve - Make a log reservation 505 * @sdp: The GFS2 superblock 506 * @blks: The number of blocks to reserve 507 * @taboo_blks: The number of blocks to leave free 508 * 509 * @taboo_blks is set to 0 for logd, and to GFS2_LOG_FLUSH_MIN_BLOCKS 510 * for all other processes. This ensures that when the log is almost full, 511 * logd will still be able to call gfs2_log_flush one more time without 512 * blocking, which will advance the tail and make some more log space 513 * available. 514 * 515 * We no longer flush the log here, instead we wake up logd to do that 516 * for us. To avoid the thundering herd and to ensure that we deal fairly 517 * with queued waiters, we use an exclusive wait. This means that when we 518 * get woken with enough journal space to get our reservation, we need to 519 * wake the next waiter on the list. 520 */ 521 522 static void __gfs2_log_reserve(struct gfs2_sbd *sdp, unsigned int blks, 523 unsigned int taboo_blks) 524 { 525 unsigned wanted = blks + taboo_blks; 526 unsigned int free_blocks; 527 528 atomic_add(blks, &sdp->sd_log_blks_needed); 529 for (;;) { 530 if (current != sdp->sd_logd_process) 531 wake_up(&sdp->sd_logd_waitq); 532 io_wait_event(sdp->sd_log_waitq, 533 (free_blocks = atomic_read(&sdp->sd_log_blks_free), 534 free_blocks >= wanted)); 535 do { 536 if (atomic_try_cmpxchg(&sdp->sd_log_blks_free, 537 &free_blocks, 538 free_blocks - blks)) 539 goto reserved; 540 } while (free_blocks >= wanted); 541 } 542 543 reserved: 544 trace_gfs2_log_blocks(sdp, -blks); 545 if (atomic_sub_return(blks, &sdp->sd_log_blks_needed)) 546 wake_up(&sdp->sd_log_waitq); 547 } 548 549 /** 550 * gfs2_log_try_reserve - Try to make a log reservation 551 * @sdp: The GFS2 superblock 552 * @tr: The transaction 553 * @extra_revokes: The number of additional revokes reserved (output) 554 * 555 * This is similar to gfs2_log_reserve, but sdp->sd_log_flush_lock must be 556 * held for correct revoke accounting. 557 */ 558 559 bool gfs2_log_try_reserve(struct gfs2_sbd *sdp, struct gfs2_trans *tr, 560 unsigned int *extra_revokes) 561 { 562 unsigned int blks = tr->tr_reserved; 563 unsigned int revokes = tr->tr_revokes; 564 unsigned int revoke_blks = 0; 565 566 *extra_revokes = 0; 567 if (revokes && !__gfs2_log_try_reserve_revokes(sdp, revokes)) { 568 revoke_blks = DIV_ROUND_UP(revokes, sdp->sd_inptrs); 569 *extra_revokes = revoke_blks * sdp->sd_inptrs - revokes; 570 blks += revoke_blks; 571 } 572 if (!blks) 573 return true; 574 if (__gfs2_log_try_reserve(sdp, blks, GFS2_LOG_FLUSH_MIN_BLOCKS)) 575 return true; 576 if (!revoke_blks) 577 gfs2_log_release_revokes(sdp, revokes); 578 return false; 579 } 580 581 /** 582 * gfs2_log_reserve - Make a log reservation 583 * @sdp: The GFS2 superblock 584 * @tr: The transaction 585 * @extra_revokes: The number of additional revokes reserved (output) 586 * 587 * sdp->sd_log_flush_lock must not be held. 588 */ 589 590 void gfs2_log_reserve(struct gfs2_sbd *sdp, struct gfs2_trans *tr, 591 unsigned int *extra_revokes) 592 { 593 unsigned int blks = tr->tr_reserved; 594 unsigned int revokes = tr->tr_revokes; 595 unsigned int revoke_blks; 596 597 *extra_revokes = 0; 598 if (revokes) { 599 revoke_blks = DIV_ROUND_UP(revokes, sdp->sd_inptrs); 600 *extra_revokes = revoke_blks * sdp->sd_inptrs - revokes; 601 blks += revoke_blks; 602 } 603 __gfs2_log_reserve(sdp, blks, GFS2_LOG_FLUSH_MIN_BLOCKS); 604 } 605 606 /** 607 * log_distance - Compute distance between two journal blocks 608 * @sdp: The GFS2 superblock 609 * @newer: The most recent journal block of the pair 610 * @older: The older journal block of the pair 611 * 612 * Compute the distance (in the journal direction) between two 613 * blocks in the journal 614 * 615 * Returns: the distance in blocks 616 */ 617 618 static inline unsigned int log_distance(struct gfs2_sbd *sdp, unsigned int newer, 619 unsigned int older) 620 { 621 int dist; 622 623 dist = newer - older; 624 if (dist < 0) 625 dist += sdp->sd_jdesc->jd_blocks; 626 627 return dist; 628 } 629 630 /** 631 * calc_reserved - Calculate the number of blocks to keep reserved 632 * @sdp: The GFS2 superblock 633 * 634 * This is complex. We need to reserve room for all our currently used 635 * metadata blocks (e.g. normal file I/O rewriting file time stamps) and 636 * all our journaled data blocks for journaled files (e.g. files in the 637 * meta_fs like rindex, or files for which chattr +j was done.) 638 * If we don't reserve enough space, corruption will follow. 639 * 640 * We can have metadata blocks and jdata blocks in the same journal. Each 641 * type gets its own log descriptor, for which we need to reserve a block. 642 * In fact, each type has the potential for needing more than one log descriptor 643 * in cases where we have more blocks than will fit in a log descriptor. 644 * Metadata journal entries take up half the space of journaled buffer entries. 645 * 646 * Also, we need to reserve blocks for revoke journal entries and one for an 647 * overall header for the lot. 648 * 649 * Returns: the number of blocks reserved 650 */ 651 static unsigned int calc_reserved(struct gfs2_sbd *sdp) 652 { 653 unsigned int reserved = GFS2_LOG_FLUSH_MIN_BLOCKS; 654 unsigned int blocks; 655 struct gfs2_trans *tr = sdp->sd_log_tr; 656 657 if (tr) { 658 blocks = tr->tr_num_buf_new - tr->tr_num_buf_rm; 659 reserved += blocks + DIV_ROUND_UP(blocks, buf_limit(sdp)); 660 blocks = tr->tr_num_databuf_new - tr->tr_num_databuf_rm; 661 reserved += blocks + DIV_ROUND_UP(blocks, databuf_limit(sdp)); 662 } 663 return reserved; 664 } 665 666 static void log_pull_tail(struct gfs2_sbd *sdp) 667 { 668 unsigned int new_tail = sdp->sd_log_flush_tail; 669 unsigned int dist; 670 671 if (new_tail == sdp->sd_log_tail) 672 return; 673 dist = log_distance(sdp, new_tail, sdp->sd_log_tail); 674 ail2_empty(sdp, new_tail); 675 gfs2_log_release(sdp, dist); 676 sdp->sd_log_tail = new_tail; 677 } 678 679 680 void log_flush_wait(struct gfs2_sbd *sdp) 681 { 682 DEFINE_WAIT(wait); 683 684 if (atomic_read(&sdp->sd_log_in_flight)) { 685 do { 686 prepare_to_wait(&sdp->sd_log_flush_wait, &wait, 687 TASK_UNINTERRUPTIBLE); 688 if (atomic_read(&sdp->sd_log_in_flight)) 689 io_schedule(); 690 } while(atomic_read(&sdp->sd_log_in_flight)); 691 finish_wait(&sdp->sd_log_flush_wait, &wait); 692 } 693 } 694 695 static int ip_cmp(void *priv, const struct list_head *a, const struct list_head *b) 696 { 697 struct gfs2_inode *ipa, *ipb; 698 699 ipa = list_entry(a, struct gfs2_inode, i_ordered); 700 ipb = list_entry(b, struct gfs2_inode, i_ordered); 701 702 if (ipa->i_no_addr < ipb->i_no_addr) 703 return -1; 704 if (ipa->i_no_addr > ipb->i_no_addr) 705 return 1; 706 return 0; 707 } 708 709 static void __ordered_del_inode(struct gfs2_inode *ip) 710 { 711 if (!list_empty(&ip->i_ordered)) 712 list_del_init(&ip->i_ordered); 713 } 714 715 static void gfs2_ordered_write(struct gfs2_sbd *sdp) 716 { 717 struct gfs2_inode *ip; 718 LIST_HEAD(written); 719 720 spin_lock(&sdp->sd_ordered_lock); 721 list_sort(NULL, &sdp->sd_log_ordered, &ip_cmp); 722 while (!list_empty(&sdp->sd_log_ordered)) { 723 ip = list_first_entry(&sdp->sd_log_ordered, struct gfs2_inode, i_ordered); 724 if (ip->i_inode.i_mapping->nrpages == 0) { 725 __ordered_del_inode(ip); 726 continue; 727 } 728 list_move(&ip->i_ordered, &written); 729 spin_unlock(&sdp->sd_ordered_lock); 730 filemap_fdatawrite(ip->i_inode.i_mapping); 731 spin_lock(&sdp->sd_ordered_lock); 732 } 733 list_splice(&written, &sdp->sd_log_ordered); 734 spin_unlock(&sdp->sd_ordered_lock); 735 } 736 737 static void gfs2_ordered_wait(struct gfs2_sbd *sdp) 738 { 739 struct gfs2_inode *ip; 740 741 spin_lock(&sdp->sd_ordered_lock); 742 while (!list_empty(&sdp->sd_log_ordered)) { 743 ip = list_first_entry(&sdp->sd_log_ordered, struct gfs2_inode, i_ordered); 744 __ordered_del_inode(ip); 745 if (ip->i_inode.i_mapping->nrpages == 0) 746 continue; 747 spin_unlock(&sdp->sd_ordered_lock); 748 filemap_fdatawait(ip->i_inode.i_mapping); 749 spin_lock(&sdp->sd_ordered_lock); 750 } 751 spin_unlock(&sdp->sd_ordered_lock); 752 } 753 754 void gfs2_ordered_del_inode(struct gfs2_inode *ip) 755 { 756 struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode); 757 758 spin_lock(&sdp->sd_ordered_lock); 759 __ordered_del_inode(ip); 760 spin_unlock(&sdp->sd_ordered_lock); 761 } 762 763 void gfs2_add_revoke(struct gfs2_sbd *sdp, struct gfs2_bufdata *bd) 764 { 765 struct buffer_head *bh = bd->bd_bh; 766 struct gfs2_glock *gl = bd->bd_gl; 767 768 sdp->sd_log_num_revoke++; 769 if (atomic_inc_return(&gl->gl_revokes) == 1) 770 gfs2_glock_hold(gl); 771 bh->b_private = NULL; 772 bd->bd_blkno = bh->b_blocknr; 773 gfs2_remove_from_ail(bd); /* drops ref on bh */ 774 bd->bd_bh = NULL; 775 set_bit(GLF_LFLUSH, &gl->gl_flags); 776 list_add(&bd->bd_list, &sdp->sd_log_revokes); 777 } 778 779 void gfs2_glock_remove_revoke(struct gfs2_glock *gl) 780 { 781 if (atomic_dec_return(&gl->gl_revokes) == 0) { 782 clear_bit(GLF_LFLUSH, &gl->gl_flags); 783 gfs2_glock_put_async(gl); 784 } 785 } 786 787 /** 788 * gfs2_flush_revokes - Add as many revokes to the system transaction as we can 789 * @sdp: The GFS2 superblock 790 * 791 * Our usual strategy is to defer writing revokes as much as we can in the hope 792 * that we'll eventually overwrite the journal, which will make those revokes 793 * go away. This changes when we flush the log: at that point, there will 794 * likely be some left-over space in the last revoke block of that transaction. 795 * We can fill that space with additional revokes for blocks that have already 796 * been written back. This will basically come at no cost now, and will save 797 * us from having to keep track of those blocks on the AIL2 list later. 798 */ 799 void gfs2_flush_revokes(struct gfs2_sbd *sdp) 800 { 801 /* number of revokes we still have room for */ 802 unsigned int max_revokes = atomic_read(&sdp->sd_log_revokes_available); 803 804 spin_lock(&sdp->sd_log_lock); 805 gfs2_ail1_empty(sdp, max_revokes); 806 spin_unlock(&sdp->sd_log_lock); 807 } 808 809 /** 810 * gfs2_write_log_header - Write a journal log header buffer at lblock 811 * @sdp: The GFS2 superblock 812 * @jd: journal descriptor of the journal to which we are writing 813 * @seq: sequence number 814 * @tail: tail of the log 815 * @lblock: value for lh_blkno (block number relative to start of journal) 816 * @flags: log header flags GFS2_LOG_HEAD_* 817 * @op_flags: flags to pass to the bio 818 * 819 * Returns: the initialized log buffer descriptor 820 */ 821 822 void gfs2_write_log_header(struct gfs2_sbd *sdp, struct gfs2_jdesc *jd, 823 u64 seq, u32 tail, u32 lblock, u32 flags, 824 blk_opf_t op_flags) 825 { 826 struct gfs2_log_header *lh; 827 u32 hash, crc; 828 struct page *page; 829 struct gfs2_statfs_change_host *l_sc = &sdp->sd_statfs_local; 830 struct timespec64 tv; 831 struct super_block *sb = sdp->sd_vfs; 832 u64 dblock; 833 834 if (gfs2_withdrawn(sdp)) 835 return; 836 837 page = mempool_alloc(gfs2_page_pool, GFP_NOIO); 838 lh = page_address(page); 839 clear_page(lh); 840 841 lh->lh_header.mh_magic = cpu_to_be32(GFS2_MAGIC); 842 lh->lh_header.mh_type = cpu_to_be32(GFS2_METATYPE_LH); 843 lh->lh_header.__pad0 = cpu_to_be64(0); 844 lh->lh_header.mh_format = cpu_to_be32(GFS2_FORMAT_LH); 845 lh->lh_header.mh_jid = cpu_to_be32(sdp->sd_jdesc->jd_jid); 846 lh->lh_sequence = cpu_to_be64(seq); 847 lh->lh_flags = cpu_to_be32(flags); 848 lh->lh_tail = cpu_to_be32(tail); 849 lh->lh_blkno = cpu_to_be32(lblock); 850 hash = ~crc32(~0, lh, LH_V1_SIZE); 851 lh->lh_hash = cpu_to_be32(hash); 852 853 ktime_get_coarse_real_ts64(&tv); 854 lh->lh_nsec = cpu_to_be32(tv.tv_nsec); 855 lh->lh_sec = cpu_to_be64(tv.tv_sec); 856 if (!list_empty(&jd->extent_list)) 857 dblock = gfs2_log_bmap(jd, lblock); 858 else { 859 unsigned int extlen; 860 int ret; 861 862 extlen = 1; 863 ret = gfs2_get_extent(jd->jd_inode, lblock, &dblock, &extlen); 864 if (gfs2_assert_withdraw(sdp, ret == 0)) 865 return; 866 } 867 lh->lh_addr = cpu_to_be64(dblock); 868 lh->lh_jinode = cpu_to_be64(GFS2_I(jd->jd_inode)->i_no_addr); 869 870 /* We may only write local statfs, quota, etc., when writing to our 871 own journal. The values are left 0 when recovering a journal 872 different from our own. */ 873 if (!(flags & GFS2_LOG_HEAD_RECOVERY)) { 874 lh->lh_statfs_addr = 875 cpu_to_be64(GFS2_I(sdp->sd_sc_inode)->i_no_addr); 876 lh->lh_quota_addr = 877 cpu_to_be64(GFS2_I(sdp->sd_qc_inode)->i_no_addr); 878 879 spin_lock(&sdp->sd_statfs_spin); 880 lh->lh_local_total = cpu_to_be64(l_sc->sc_total); 881 lh->lh_local_free = cpu_to_be64(l_sc->sc_free); 882 lh->lh_local_dinodes = cpu_to_be64(l_sc->sc_dinodes); 883 spin_unlock(&sdp->sd_statfs_spin); 884 } 885 886 BUILD_BUG_ON(offsetof(struct gfs2_log_header, lh_crc) != LH_V1_SIZE); 887 888 crc = crc32c(~0, (void *)lh + LH_V1_SIZE + 4, 889 sb->s_blocksize - LH_V1_SIZE - 4); 890 lh->lh_crc = cpu_to_be32(crc); 891 892 gfs2_log_write(sdp, jd, page, sb->s_blocksize, 0, dblock, 893 REQ_OP_WRITE | op_flags); 894 gfs2_log_submit_write(&jd->jd_log_bio); 895 } 896 897 /** 898 * log_write_header - Get and initialize a journal header buffer 899 * @sdp: The GFS2 superblock 900 * @flags: The log header flags, including log header origin 901 * 902 * Returns: the initialized log buffer descriptor 903 */ 904 905 static void log_write_header(struct gfs2_sbd *sdp, u32 flags) 906 { 907 blk_opf_t op_flags = REQ_PREFLUSH | REQ_FUA | REQ_META | REQ_SYNC; 908 struct super_block *sb = sdp->sd_vfs; 909 910 gfs2_assert_withdraw(sdp, sb->s_writers.frozen != SB_FREEZE_COMPLETE); 911 912 if (test_bit(SDF_NOBARRIERS, &sdp->sd_flags)) { 913 gfs2_ordered_wait(sdp); 914 log_flush_wait(sdp); 915 op_flags = REQ_SYNC | REQ_META | REQ_PRIO; 916 } 917 sdp->sd_log_idle = (sdp->sd_log_flush_tail == sdp->sd_log_flush_head); 918 gfs2_write_log_header(sdp, sdp->sd_jdesc, sdp->sd_log_sequence++, 919 sdp->sd_log_flush_tail, sdp->sd_log_flush_head, 920 flags, op_flags); 921 gfs2_log_incr_head(sdp); 922 log_flush_wait(sdp); 923 log_pull_tail(sdp); 924 gfs2_log_update_head(sdp); 925 } 926 927 /** 928 * gfs2_ail_drain - drain the ail lists after a withdraw 929 * @sdp: Pointer to GFS2 superblock 930 */ 931 void gfs2_ail_drain(struct gfs2_sbd *sdp) 932 { 933 struct gfs2_trans *tr; 934 935 spin_lock(&sdp->sd_ail_lock); 936 /* 937 * For transactions on the sd_ail1_list we need to drain both the 938 * ail1 and ail2 lists. That's because function gfs2_ail1_start_one 939 * (temporarily) moves items from its tr_ail1 list to tr_ail2 list 940 * before revokes are sent for that block. Items on the sd_ail2_list 941 * should have already gotten beyond that point, so no need. 942 */ 943 while (!list_empty(&sdp->sd_ail1_list)) { 944 tr = list_first_entry(&sdp->sd_ail1_list, struct gfs2_trans, 945 tr_list); 946 gfs2_ail_empty_tr(sdp, tr, &tr->tr_ail1_list); 947 gfs2_ail_empty_tr(sdp, tr, &tr->tr_ail2_list); 948 list_del(&tr->tr_list); 949 gfs2_trans_free(sdp, tr); 950 } 951 while (!list_empty(&sdp->sd_ail2_list)) { 952 tr = list_first_entry(&sdp->sd_ail2_list, struct gfs2_trans, 953 tr_list); 954 gfs2_ail_empty_tr(sdp, tr, &tr->tr_ail2_list); 955 list_del(&tr->tr_list); 956 gfs2_trans_free(sdp, tr); 957 } 958 gfs2_drain_revokes(sdp); 959 spin_unlock(&sdp->sd_ail_lock); 960 } 961 962 /** 963 * empty_ail1_list - try to start IO and empty the ail1 list 964 * @sdp: Pointer to GFS2 superblock 965 */ 966 static void empty_ail1_list(struct gfs2_sbd *sdp) 967 { 968 unsigned long start = jiffies; 969 bool empty = false; 970 971 while (!empty) { 972 if (time_after(jiffies, start + (HZ * 600))) { 973 fs_err(sdp, "Error: In %s for 10 minutes! t=%d\n", 974 __func__, current->journal_info ? 1 : 0); 975 dump_ail_list(sdp); 976 return; 977 } 978 gfs2_ail1_start(sdp); 979 gfs2_ail1_wait(sdp); 980 empty = gfs2_ail1_empty(sdp, 0); 981 982 if (gfs2_withdrawn(sdp)) 983 break; 984 } 985 } 986 987 static void gfs2_trans_drain_list(struct gfs2_sbd *sdp, struct list_head *list) 988 { 989 struct gfs2_bufdata *bd; 990 991 while (!list_empty(list)) { 992 bd = list_first_entry(list, struct gfs2_bufdata, bd_list); 993 struct buffer_head *bh = bd->bd_bh; 994 995 WARN_ON_ONCE(!buffer_pinned(bh)); 996 clear_buffer_pinned(bh); 997 trace_gfs2_pin(bd, 0); 998 atomic_dec(&sdp->sd_log_pinned); 999 list_del_init(&bd->bd_list); 1000 brelse(bh); 1001 } 1002 } 1003 1004 /** 1005 * gfs2_trans_drain - drain the buf and databuf queue for a failed transaction 1006 * @sdp: the filesystem 1007 * @tr: the transaction to drain 1008 * 1009 * When this is called, we're taking an error exit for a log write that failed 1010 * but since we bypassed the after_commit functions, we need to remove the 1011 * items from the buf and databuf queue. 1012 */ 1013 static void gfs2_trans_drain(struct gfs2_sbd *sdp, struct gfs2_trans *tr) 1014 { 1015 if (!tr) 1016 return; 1017 gfs2_trans_drain_list(sdp, &tr->tr_buf); 1018 gfs2_trans_drain_list(sdp, &tr->tr_databuf); 1019 } 1020 1021 void gfs2_remove_from_journal(struct buffer_head *bh, int meta) 1022 { 1023 struct address_space *mapping = bh->b_folio->mapping; 1024 struct gfs2_sbd *sdp = gfs2_mapping2sbd(mapping); 1025 struct gfs2_bufdata *bd = bh->b_private; 1026 struct gfs2_trans *tr = current->journal_info; 1027 int was_pinned = 0; 1028 1029 if (test_clear_buffer_pinned(bh)) { 1030 trace_gfs2_pin(bd, 0); 1031 atomic_dec(&sdp->sd_log_pinned); 1032 list_del_init(&bd->bd_list); 1033 if (tr) { 1034 if (meta == REMOVE_META) 1035 tr->tr_num_buf_rm++; 1036 else 1037 tr->tr_num_databuf_rm++; 1038 set_bit(TR_TOUCHED, &tr->tr_flags); 1039 } 1040 was_pinned = 1; 1041 brelse(bh); 1042 } 1043 if (bd) { 1044 if (bd->bd_tr) { 1045 if (tr) 1046 gfs2_trans_add_revoke(sdp, bd); 1047 else 1048 gfs2_remove_from_ail(bd); 1049 } else if (was_pinned) { 1050 bh->b_private = NULL; 1051 kmem_cache_free(gfs2_bufdata_cachep, bd); 1052 } else if (!list_empty(&bd->bd_ail_st_list) && 1053 !list_empty(&bd->bd_ail_gl_list)) { 1054 gfs2_remove_from_ail(bd); 1055 } 1056 } 1057 clear_buffer_dirty(bh); 1058 clear_buffer_uptodate(bh); 1059 } 1060 1061 /** 1062 * __gfs2_log_flush - flush incore transaction(s) 1063 * @sdp: The filesystem 1064 * @gl: The glock structure to flush. If NULL, flush the whole incore log 1065 * @flags: The log header flags: GFS2_LOG_HEAD_FLUSH_* and debug flags 1066 * 1067 */ 1068 1069 static void __gfs2_log_flush(struct gfs2_sbd *sdp, struct gfs2_glock *gl, 1070 u32 flags) 1071 { 1072 struct gfs2_trans *tr = NULL; 1073 unsigned int reserved_blocks = 0, used_blocks = 0; 1074 bool frozen = test_bit(SDF_FROZEN, &sdp->sd_flags); 1075 unsigned int first_log_head; 1076 unsigned int reserved_revokes = 0; 1077 1078 trace_gfs2_log_flush(sdp, 1, flags); 1079 1080 repeat: 1081 /* 1082 * Do this check while holding the log_flush_lock to prevent new 1083 * buffers from being added to the ail via gfs2_pin() 1084 */ 1085 if (gfs2_withdrawn(sdp) || 1086 !test_bit(SDF_JOURNAL_LIVE, &sdp->sd_flags)) 1087 goto out; 1088 1089 /* Log might have been flushed while we waited for the flush lock */ 1090 if (gl && !test_bit(GLF_LFLUSH, &gl->gl_flags)) 1091 goto out; 1092 1093 first_log_head = sdp->sd_log_head; 1094 sdp->sd_log_flush_head = first_log_head; 1095 1096 tr = sdp->sd_log_tr; 1097 if (tr || sdp->sd_log_num_revoke) { 1098 if (reserved_blocks) 1099 gfs2_log_release(sdp, reserved_blocks); 1100 reserved_blocks = sdp->sd_log_blks_reserved; 1101 reserved_revokes = sdp->sd_log_num_revoke; 1102 if (tr) { 1103 sdp->sd_log_tr = NULL; 1104 tr->tr_first = first_log_head; 1105 if (unlikely(frozen)) { 1106 if (gfs2_assert_withdraw(sdp, 1107 !tr->tr_num_buf_new && !tr->tr_num_databuf_new)) 1108 goto out_withdraw; 1109 } 1110 } 1111 } else if (!reserved_blocks) { 1112 unsigned int taboo_blocks = GFS2_LOG_FLUSH_MIN_BLOCKS; 1113 1114 reserved_blocks = GFS2_LOG_FLUSH_MIN_BLOCKS; 1115 if (current == sdp->sd_logd_process) 1116 taboo_blocks = 0; 1117 1118 if (!__gfs2_log_try_reserve(sdp, reserved_blocks, taboo_blocks)) { 1119 up_write(&sdp->sd_log_flush_lock); 1120 __gfs2_log_reserve(sdp, reserved_blocks, taboo_blocks); 1121 down_write(&sdp->sd_log_flush_lock); 1122 goto repeat; 1123 } 1124 BUG_ON(sdp->sd_log_num_revoke); 1125 } 1126 1127 if (flags & GFS2_LOG_HEAD_FLUSH_SHUTDOWN) 1128 clear_bit(SDF_JOURNAL_LIVE, &sdp->sd_flags); 1129 1130 if (unlikely(frozen)) 1131 if (gfs2_assert_withdraw(sdp, !reserved_revokes)) 1132 goto out_withdraw; 1133 1134 gfs2_ordered_write(sdp); 1135 if (gfs2_withdrawn(sdp)) 1136 goto out_withdraw; 1137 lops_before_commit(sdp, tr); 1138 if (gfs2_withdrawn(sdp)) 1139 goto out_withdraw; 1140 if (sdp->sd_jdesc) 1141 gfs2_log_submit_write(&sdp->sd_jdesc->jd_log_bio); 1142 if (gfs2_withdrawn(sdp)) 1143 goto out_withdraw; 1144 1145 if (sdp->sd_log_head != sdp->sd_log_flush_head) { 1146 log_write_header(sdp, flags); 1147 } else if (sdp->sd_log_tail != sdp->sd_log_flush_tail && !sdp->sd_log_idle) { 1148 log_write_header(sdp, flags); 1149 } 1150 if (gfs2_withdrawn(sdp)) 1151 goto out_withdraw; 1152 lops_after_commit(sdp, tr); 1153 1154 spin_lock(&sdp->sd_log_lock); 1155 sdp->sd_log_blks_reserved = 0; 1156 1157 spin_lock(&sdp->sd_ail_lock); 1158 if (tr && !list_empty(&tr->tr_ail1_list)) { 1159 list_add(&tr->tr_list, &sdp->sd_ail1_list); 1160 tr = NULL; 1161 } 1162 spin_unlock(&sdp->sd_ail_lock); 1163 spin_unlock(&sdp->sd_log_lock); 1164 1165 if (!(flags & GFS2_LOG_HEAD_FLUSH_NORMAL)) { 1166 if (!sdp->sd_log_idle) { 1167 empty_ail1_list(sdp); 1168 if (gfs2_withdrawn(sdp)) 1169 goto out_withdraw; 1170 log_write_header(sdp, flags); 1171 } 1172 if (flags & (GFS2_LOG_HEAD_FLUSH_SHUTDOWN | 1173 GFS2_LOG_HEAD_FLUSH_FREEZE)) 1174 gfs2_log_shutdown(sdp); 1175 } 1176 1177 out_end: 1178 used_blocks = log_distance(sdp, sdp->sd_log_flush_head, first_log_head); 1179 reserved_revokes += atomic_read(&sdp->sd_log_revokes_available); 1180 atomic_set(&sdp->sd_log_revokes_available, sdp->sd_ldptrs); 1181 gfs2_assert_withdraw(sdp, reserved_revokes % sdp->sd_inptrs == sdp->sd_ldptrs); 1182 if (reserved_revokes > sdp->sd_ldptrs) 1183 reserved_blocks += (reserved_revokes - sdp->sd_ldptrs) / sdp->sd_inptrs; 1184 out: 1185 if (used_blocks != reserved_blocks) { 1186 gfs2_assert_withdraw(sdp, used_blocks < reserved_blocks); 1187 gfs2_log_release(sdp, reserved_blocks - used_blocks); 1188 } 1189 gfs2_trans_free(sdp, tr); 1190 trace_gfs2_log_flush(sdp, 0, flags); 1191 return; 1192 1193 out_withdraw: 1194 if (sdp->sd_jdesc->jd_log_bio) { 1195 bio_io_error(sdp->sd_jdesc->jd_log_bio); 1196 sdp->sd_jdesc->jd_log_bio = NULL; 1197 } 1198 gfs2_trans_drain(sdp, tr); 1199 /** 1200 * If the tr_list is empty, we're withdrawing during a log 1201 * flush that targets a transaction, but the transaction was 1202 * never queued onto any of the ail lists. Here we add it to 1203 * ail1 just so that ail_drain() will find and free it. 1204 */ 1205 spin_lock(&sdp->sd_ail_lock); 1206 if (tr && list_empty(&tr->tr_list)) 1207 list_add(&tr->tr_list, &sdp->sd_ail1_list); 1208 spin_unlock(&sdp->sd_ail_lock); 1209 tr = NULL; 1210 goto out_end; 1211 } 1212 1213 void gfs2_log_flush(struct gfs2_sbd *sdp, struct gfs2_glock *gl, u32 flags) 1214 { 1215 down_write(&sdp->sd_log_flush_lock); 1216 __gfs2_log_flush(sdp, gl, flags); 1217 up_write(&sdp->sd_log_flush_lock); 1218 } 1219 1220 /** 1221 * gfs2_merge_trans - Merge a new transaction into a cached transaction 1222 * @sdp: the filesystem 1223 * @new: New transaction to be merged 1224 */ 1225 1226 static void gfs2_merge_trans(struct gfs2_sbd *sdp, struct gfs2_trans *new) 1227 { 1228 struct gfs2_trans *old = sdp->sd_log_tr; 1229 1230 WARN_ON_ONCE(!test_bit(TR_ATTACHED, &old->tr_flags)); 1231 1232 old->tr_num_buf_new += new->tr_num_buf_new; 1233 old->tr_num_databuf_new += new->tr_num_databuf_new; 1234 old->tr_num_buf_rm += new->tr_num_buf_rm; 1235 old->tr_num_databuf_rm += new->tr_num_databuf_rm; 1236 old->tr_revokes += new->tr_revokes; 1237 old->tr_num_revoke += new->tr_num_revoke; 1238 1239 list_splice_tail_init(&new->tr_databuf, &old->tr_databuf); 1240 list_splice_tail_init(&new->tr_buf, &old->tr_buf); 1241 1242 spin_lock(&sdp->sd_ail_lock); 1243 list_splice_tail_init(&new->tr_ail1_list, &old->tr_ail1_list); 1244 list_splice_tail_init(&new->tr_ail2_list, &old->tr_ail2_list); 1245 spin_unlock(&sdp->sd_ail_lock); 1246 } 1247 1248 static void log_refund(struct gfs2_sbd *sdp, struct gfs2_trans *tr) 1249 { 1250 unsigned int reserved; 1251 unsigned int unused; 1252 unsigned int maxres; 1253 1254 spin_lock(&sdp->sd_log_lock); 1255 1256 if (sdp->sd_log_tr) { 1257 gfs2_merge_trans(sdp, tr); 1258 } else if (tr->tr_num_buf_new || tr->tr_num_databuf_new) { 1259 gfs2_assert_withdraw(sdp, !test_bit(TR_ONSTACK, &tr->tr_flags)); 1260 sdp->sd_log_tr = tr; 1261 set_bit(TR_ATTACHED, &tr->tr_flags); 1262 } 1263 1264 reserved = calc_reserved(sdp); 1265 maxres = sdp->sd_log_blks_reserved + tr->tr_reserved; 1266 gfs2_assert_withdraw(sdp, maxres >= reserved); 1267 unused = maxres - reserved; 1268 if (unused) 1269 gfs2_log_release(sdp, unused); 1270 sdp->sd_log_blks_reserved = reserved; 1271 1272 spin_unlock(&sdp->sd_log_lock); 1273 } 1274 1275 static inline int gfs2_jrnl_flush_reqd(struct gfs2_sbd *sdp) 1276 { 1277 return atomic_read(&sdp->sd_log_pinned) + 1278 atomic_read(&sdp->sd_log_blks_needed) >= 1279 atomic_read(&sdp->sd_log_thresh1); 1280 } 1281 1282 static inline int gfs2_ail_flush_reqd(struct gfs2_sbd *sdp) 1283 { 1284 return sdp->sd_jdesc->jd_blocks - 1285 atomic_read(&sdp->sd_log_blks_free) + 1286 atomic_read(&sdp->sd_log_blks_needed) >= 1287 atomic_read(&sdp->sd_log_thresh2); 1288 } 1289 1290 /** 1291 * gfs2_log_commit - Commit a transaction to the log 1292 * @sdp: the filesystem 1293 * @tr: the transaction 1294 * 1295 * We wake up gfs2_logd if the number of pinned blocks exceed thresh1 1296 * or the total number of used blocks (pinned blocks plus AIL blocks) 1297 * is greater than thresh2. 1298 * 1299 * At mount time thresh1 is 2/5ths of journal size, thresh2 is 4/5ths of 1300 * journal size. 1301 * 1302 * Returns: errno 1303 */ 1304 1305 void gfs2_log_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr) 1306 { 1307 log_refund(sdp, tr); 1308 1309 if (gfs2_ail_flush_reqd(sdp) || gfs2_jrnl_flush_reqd(sdp)) 1310 wake_up(&sdp->sd_logd_waitq); 1311 } 1312 1313 /** 1314 * gfs2_log_shutdown - write a shutdown header into a journal 1315 * @sdp: the filesystem 1316 * 1317 */ 1318 1319 static void gfs2_log_shutdown(struct gfs2_sbd *sdp) 1320 { 1321 gfs2_assert_withdraw(sdp, !sdp->sd_log_blks_reserved); 1322 gfs2_assert_withdraw(sdp, !sdp->sd_log_num_revoke); 1323 gfs2_assert_withdraw(sdp, list_empty(&sdp->sd_ail1_list)); 1324 1325 log_write_header(sdp, GFS2_LOG_HEAD_UNMOUNT | GFS2_LFC_SHUTDOWN); 1326 log_pull_tail(sdp); 1327 1328 gfs2_assert_warn(sdp, sdp->sd_log_head == sdp->sd_log_tail); 1329 gfs2_assert_warn(sdp, list_empty(&sdp->sd_ail2_list)); 1330 } 1331 1332 /** 1333 * gfs2_logd - Update log tail as Active Items get flushed to in-place blocks 1334 * @data: Pointer to GFS2 superblock 1335 * 1336 * Also, periodically check to make sure that we're using the most recent 1337 * journal index. 1338 */ 1339 1340 int gfs2_logd(void *data) 1341 { 1342 struct gfs2_sbd *sdp = data; 1343 unsigned long t = 1; 1344 1345 set_freezable(); 1346 while (!kthread_should_stop()) { 1347 if (gfs2_withdrawn(sdp)) 1348 break; 1349 1350 if (gfs2_jrnl_flush_reqd(sdp) || t == 0) { 1351 down_write(&sdp->sd_log_flush_lock); 1352 gfs2_ail1_empty(sdp, 0); 1353 __gfs2_log_flush(sdp, NULL, 1354 GFS2_LOG_HEAD_FLUSH_NORMAL | 1355 GFS2_LFC_LOGD_JFLUSH_REQD); 1356 up_write(&sdp->sd_log_flush_lock); 1357 } 1358 1359 if (test_bit(SDF_FORCE_AIL_FLUSH, &sdp->sd_flags) || 1360 gfs2_ail_flush_reqd(sdp)) { 1361 clear_bit(SDF_FORCE_AIL_FLUSH, &sdp->sd_flags); 1362 down_write(&sdp->sd_log_flush_lock); 1363 gfs2_ail1_start(sdp); 1364 gfs2_ail1_wait(sdp); 1365 gfs2_ail1_empty(sdp, 0); 1366 __gfs2_log_flush(sdp, NULL, 1367 GFS2_LOG_HEAD_FLUSH_NORMAL | 1368 GFS2_LFC_LOGD_AIL_FLUSH_REQD); 1369 up_write(&sdp->sd_log_flush_lock); 1370 } 1371 1372 t = gfs2_tune_get(sdp, gt_logd_secs) * HZ; 1373 1374 t = wait_event_freezable_timeout(sdp->sd_logd_waitq, 1375 test_bit(SDF_FORCE_AIL_FLUSH, &sdp->sd_flags) || 1376 gfs2_ail_flush_reqd(sdp) || 1377 gfs2_jrnl_flush_reqd(sdp) || 1378 gfs2_withdrawn(sdp) || 1379 kthread_should_stop(), 1380 t); 1381 } 1382 1383 return 0; 1384 } 1385 1386