1 /* 2 * Copyright (C) Sistina Software, Inc. 1997-2003 All rights reserved. 3 * Copyright (C) 2004-2006 Red Hat, Inc. All rights reserved. 4 * 5 * This copyrighted material is made available to anyone wishing to use, 6 * modify, copy, or redistribute it subject to the terms and conditions 7 * of the GNU General Public License version 2. 8 */ 9 10 #include <linux/sched.h> 11 #include <linux/slab.h> 12 #include <linux/spinlock.h> 13 #include <linux/completion.h> 14 #include <linux/buffer_head.h> 15 #include <linux/mempool.h> 16 #include <linux/gfs2_ondisk.h> 17 #include <linux/bio.h> 18 #include <linux/fs.h> 19 #include <linux/list_sort.h> 20 21 #include "gfs2.h" 22 #include "incore.h" 23 #include "inode.h" 24 #include "glock.h" 25 #include "log.h" 26 #include "lops.h" 27 #include "meta_io.h" 28 #include "recovery.h" 29 #include "rgrp.h" 30 #include "trans.h" 31 #include "util.h" 32 #include "trace_gfs2.h" 33 34 /** 35 * gfs2_pin - Pin a buffer in memory 36 * @sdp: The superblock 37 * @bh: The buffer to be pinned 38 * 39 * The log lock must be held when calling this function 40 */ 41 void gfs2_pin(struct gfs2_sbd *sdp, struct buffer_head *bh) 42 { 43 struct gfs2_bufdata *bd; 44 45 BUG_ON(!current->journal_info); 46 47 clear_buffer_dirty(bh); 48 if (test_set_buffer_pinned(bh)) 49 gfs2_assert_withdraw(sdp, 0); 50 if (!buffer_uptodate(bh)) 51 gfs2_io_error_bh(sdp, bh); 52 bd = bh->b_private; 53 /* If this buffer is in the AIL and it has already been written 54 * to in-place disk block, remove it from the AIL. 55 */ 56 spin_lock(&sdp->sd_ail_lock); 57 if (bd->bd_tr) 58 list_move(&bd->bd_ail_st_list, &bd->bd_tr->tr_ail2_list); 59 spin_unlock(&sdp->sd_ail_lock); 60 get_bh(bh); 61 atomic_inc(&sdp->sd_log_pinned); 62 trace_gfs2_pin(bd, 1); 63 } 64 65 static bool buffer_is_rgrp(const struct gfs2_bufdata *bd) 66 { 67 return bd->bd_gl->gl_name.ln_type == LM_TYPE_RGRP; 68 } 69 70 static void maybe_release_space(struct gfs2_bufdata *bd) 71 { 72 struct gfs2_glock *gl = bd->bd_gl; 73 struct gfs2_sbd *sdp = gl->gl_name.ln_sbd; 74 struct gfs2_rgrpd *rgd = gfs2_glock2rgrp(gl); 75 unsigned int index = bd->bd_bh->b_blocknr - gl->gl_name.ln_number; 76 struct gfs2_bitmap *bi = rgd->rd_bits + index; 77 78 if (bi->bi_clone == NULL) 79 return; 80 if (sdp->sd_args.ar_discard) 81 gfs2_rgrp_send_discards(sdp, rgd->rd_data0, bd->bd_bh, bi, 1, NULL); 82 memcpy(bi->bi_clone + bi->bi_offset, 83 bd->bd_bh->b_data + bi->bi_offset, bi->bi_len); 84 clear_bit(GBF_FULL, &bi->bi_flags); 85 rgd->rd_free_clone = rgd->rd_free; 86 rgd->rd_extfail_pt = rgd->rd_free; 87 } 88 89 /** 90 * gfs2_unpin - Unpin a buffer 91 * @sdp: the filesystem the buffer belongs to 92 * @bh: The buffer to unpin 93 * @ai: 94 * @flags: The inode dirty flags 95 * 96 */ 97 98 static void gfs2_unpin(struct gfs2_sbd *sdp, struct buffer_head *bh, 99 struct gfs2_trans *tr) 100 { 101 struct gfs2_bufdata *bd = bh->b_private; 102 103 BUG_ON(!buffer_uptodate(bh)); 104 BUG_ON(!buffer_pinned(bh)); 105 106 lock_buffer(bh); 107 mark_buffer_dirty(bh); 108 clear_buffer_pinned(bh); 109 110 if (buffer_is_rgrp(bd)) 111 maybe_release_space(bd); 112 113 spin_lock(&sdp->sd_ail_lock); 114 if (bd->bd_tr) { 115 list_del(&bd->bd_ail_st_list); 116 brelse(bh); 117 } else { 118 struct gfs2_glock *gl = bd->bd_gl; 119 list_add(&bd->bd_ail_gl_list, &gl->gl_ail_list); 120 atomic_inc(&gl->gl_ail_count); 121 } 122 bd->bd_tr = tr; 123 list_add(&bd->bd_ail_st_list, &tr->tr_ail1_list); 124 spin_unlock(&sdp->sd_ail_lock); 125 126 clear_bit(GLF_LFLUSH, &bd->bd_gl->gl_flags); 127 trace_gfs2_pin(bd, 0); 128 unlock_buffer(bh); 129 atomic_dec(&sdp->sd_log_pinned); 130 } 131 132 static void gfs2_log_incr_head(struct gfs2_sbd *sdp) 133 { 134 BUG_ON((sdp->sd_log_flush_head == sdp->sd_log_tail) && 135 (sdp->sd_log_flush_head != sdp->sd_log_head)); 136 137 if (++sdp->sd_log_flush_head == sdp->sd_jdesc->jd_blocks) 138 sdp->sd_log_flush_head = 0; 139 } 140 141 static u64 gfs2_log_bmap(struct gfs2_sbd *sdp) 142 { 143 unsigned int lbn = sdp->sd_log_flush_head; 144 struct gfs2_journal_extent *je; 145 u64 block; 146 147 list_for_each_entry(je, &sdp->sd_jdesc->extent_list, list) { 148 if ((lbn >= je->lblock) && (lbn < (je->lblock + je->blocks))) { 149 block = je->dblock + lbn - je->lblock; 150 gfs2_log_incr_head(sdp); 151 return block; 152 } 153 } 154 155 return -1; 156 } 157 158 /** 159 * gfs2_end_log_write_bh - end log write of pagecache data with buffers 160 * @sdp: The superblock 161 * @bvec: The bio_vec 162 * @error: The i/o status 163 * 164 * This finds the relavent buffers and unlocks then and sets the 165 * error flag according to the status of the i/o request. This is 166 * used when the log is writing data which has an in-place version 167 * that is pinned in the pagecache. 168 */ 169 170 static void gfs2_end_log_write_bh(struct gfs2_sbd *sdp, struct bio_vec *bvec, 171 blk_status_t error) 172 { 173 struct buffer_head *bh, *next; 174 struct page *page = bvec->bv_page; 175 unsigned size; 176 177 bh = page_buffers(page); 178 size = bvec->bv_len; 179 while (bh_offset(bh) < bvec->bv_offset) 180 bh = bh->b_this_page; 181 do { 182 if (error) 183 mark_buffer_write_io_error(bh); 184 unlock_buffer(bh); 185 next = bh->b_this_page; 186 size -= bh->b_size; 187 brelse(bh); 188 bh = next; 189 } while(bh && size); 190 } 191 192 /** 193 * gfs2_end_log_write - end of i/o to the log 194 * @bio: The bio 195 * @error: Status of i/o request 196 * 197 * Each bio_vec contains either data from the pagecache or data 198 * relating to the log itself. Here we iterate over the bio_vec 199 * array, processing both kinds of data. 200 * 201 */ 202 203 static void gfs2_end_log_write(struct bio *bio) 204 { 205 struct gfs2_sbd *sdp = bio->bi_private; 206 struct bio_vec *bvec; 207 struct page *page; 208 int i; 209 210 if (bio->bi_status) { 211 fs_err(sdp, "Error %d writing to journal, jid=%u\n", 212 bio->bi_status, sdp->sd_jdesc->jd_jid); 213 wake_up(&sdp->sd_logd_waitq); 214 } 215 216 bio_for_each_segment_all(bvec, bio, i) { 217 page = bvec->bv_page; 218 if (page_has_buffers(page)) 219 gfs2_end_log_write_bh(sdp, bvec, bio->bi_status); 220 else 221 mempool_free(page, gfs2_page_pool); 222 } 223 224 bio_put(bio); 225 if (atomic_dec_and_test(&sdp->sd_log_in_flight)) 226 wake_up(&sdp->sd_log_flush_wait); 227 } 228 229 /** 230 * gfs2_log_flush_bio - Submit any pending log bio 231 * @sdp: The superblock 232 * @op: REQ_OP 233 * @op_flags: req_flag_bits 234 * 235 * Submit any pending part-built or full bio to the block device. If 236 * there is no pending bio, then this is a no-op. 237 */ 238 239 void gfs2_log_flush_bio(struct gfs2_sbd *sdp, int op, int op_flags) 240 { 241 if (sdp->sd_log_bio) { 242 atomic_inc(&sdp->sd_log_in_flight); 243 bio_set_op_attrs(sdp->sd_log_bio, op, op_flags); 244 submit_bio(sdp->sd_log_bio); 245 sdp->sd_log_bio = NULL; 246 } 247 } 248 249 /** 250 * gfs2_log_alloc_bio - Allocate a new bio for log writing 251 * @sdp: The superblock 252 * @blkno: The next device block number we want to write to 253 * 254 * This should never be called when there is a cached bio in the 255 * super block. When it returns, there will be a cached bio in the 256 * super block which will have as many bio_vecs as the device is 257 * happy to handle. 258 * 259 * Returns: Newly allocated bio 260 */ 261 262 static struct bio *gfs2_log_alloc_bio(struct gfs2_sbd *sdp, u64 blkno) 263 { 264 struct super_block *sb = sdp->sd_vfs; 265 struct bio *bio; 266 267 BUG_ON(sdp->sd_log_bio); 268 269 bio = bio_alloc(GFP_NOIO, BIO_MAX_PAGES); 270 bio->bi_iter.bi_sector = blkno * (sb->s_blocksize >> 9); 271 bio_set_dev(bio, sb->s_bdev); 272 bio->bi_end_io = gfs2_end_log_write; 273 bio->bi_private = sdp; 274 275 sdp->sd_log_bio = bio; 276 277 return bio; 278 } 279 280 /** 281 * gfs2_log_get_bio - Get cached log bio, or allocate a new one 282 * @sdp: The superblock 283 * @blkno: The device block number we want to write to 284 * 285 * If there is a cached bio, then if the next block number is sequential 286 * with the previous one, return it, otherwise flush the bio to the 287 * device. If there is not a cached bio, or we just flushed it, then 288 * allocate a new one. 289 * 290 * Returns: The bio to use for log writes 291 */ 292 293 static struct bio *gfs2_log_get_bio(struct gfs2_sbd *sdp, u64 blkno) 294 { 295 struct bio *bio = sdp->sd_log_bio; 296 u64 nblk; 297 298 if (bio) { 299 nblk = bio_end_sector(bio); 300 nblk >>= sdp->sd_fsb2bb_shift; 301 if (blkno == nblk) 302 return bio; 303 gfs2_log_flush_bio(sdp, REQ_OP_WRITE, 0); 304 } 305 306 return gfs2_log_alloc_bio(sdp, blkno); 307 } 308 309 310 /** 311 * gfs2_log_write - write to log 312 * @sdp: the filesystem 313 * @page: the page to write 314 * @size: the size of the data to write 315 * @offset: the offset within the page 316 * 317 * Try and add the page segment to the current bio. If that fails, 318 * submit the current bio to the device and create a new one, and 319 * then add the page segment to that. 320 */ 321 322 static void gfs2_log_write(struct gfs2_sbd *sdp, struct page *page, 323 unsigned size, unsigned offset) 324 { 325 u64 blkno = gfs2_log_bmap(sdp); 326 struct bio *bio; 327 int ret; 328 329 bio = gfs2_log_get_bio(sdp, blkno); 330 ret = bio_add_page(bio, page, size, offset); 331 if (ret == 0) { 332 gfs2_log_flush_bio(sdp, REQ_OP_WRITE, 0); 333 bio = gfs2_log_alloc_bio(sdp, blkno); 334 ret = bio_add_page(bio, page, size, offset); 335 WARN_ON(ret == 0); 336 } 337 } 338 339 /** 340 * gfs2_log_write_bh - write a buffer's content to the log 341 * @sdp: The super block 342 * @bh: The buffer pointing to the in-place location 343 * 344 * This writes the content of the buffer to the next available location 345 * in the log. The buffer will be unlocked once the i/o to the log has 346 * completed. 347 */ 348 349 static void gfs2_log_write_bh(struct gfs2_sbd *sdp, struct buffer_head *bh) 350 { 351 gfs2_log_write(sdp, bh->b_page, bh->b_size, bh_offset(bh)); 352 } 353 354 /** 355 * gfs2_log_write_page - write one block stored in a page, into the log 356 * @sdp: The superblock 357 * @page: The struct page 358 * 359 * This writes the first block-sized part of the page into the log. Note 360 * that the page must have been allocated from the gfs2_page_pool mempool 361 * and that after this has been called, ownership has been transferred and 362 * the page may be freed at any time. 363 */ 364 365 void gfs2_log_write_page(struct gfs2_sbd *sdp, struct page *page) 366 { 367 struct super_block *sb = sdp->sd_vfs; 368 gfs2_log_write(sdp, page, sb->s_blocksize, 0); 369 } 370 371 static struct page *gfs2_get_log_desc(struct gfs2_sbd *sdp, u32 ld_type, 372 u32 ld_length, u32 ld_data1) 373 { 374 struct page *page = mempool_alloc(gfs2_page_pool, GFP_NOIO); 375 struct gfs2_log_descriptor *ld = page_address(page); 376 clear_page(ld); 377 ld->ld_header.mh_magic = cpu_to_be32(GFS2_MAGIC); 378 ld->ld_header.mh_type = cpu_to_be32(GFS2_METATYPE_LD); 379 ld->ld_header.mh_format = cpu_to_be32(GFS2_FORMAT_LD); 380 ld->ld_type = cpu_to_be32(ld_type); 381 ld->ld_length = cpu_to_be32(ld_length); 382 ld->ld_data1 = cpu_to_be32(ld_data1); 383 ld->ld_data2 = 0; 384 return page; 385 } 386 387 static void gfs2_check_magic(struct buffer_head *bh) 388 { 389 void *kaddr; 390 __be32 *ptr; 391 392 clear_buffer_escaped(bh); 393 kaddr = kmap_atomic(bh->b_page); 394 ptr = kaddr + bh_offset(bh); 395 if (*ptr == cpu_to_be32(GFS2_MAGIC)) 396 set_buffer_escaped(bh); 397 kunmap_atomic(kaddr); 398 } 399 400 static int blocknr_cmp(void *priv, struct list_head *a, struct list_head *b) 401 { 402 struct gfs2_bufdata *bda, *bdb; 403 404 bda = list_entry(a, struct gfs2_bufdata, bd_list); 405 bdb = list_entry(b, struct gfs2_bufdata, bd_list); 406 407 if (bda->bd_bh->b_blocknr < bdb->bd_bh->b_blocknr) 408 return -1; 409 if (bda->bd_bh->b_blocknr > bdb->bd_bh->b_blocknr) 410 return 1; 411 return 0; 412 } 413 414 static void gfs2_before_commit(struct gfs2_sbd *sdp, unsigned int limit, 415 unsigned int total, struct list_head *blist, 416 bool is_databuf) 417 { 418 struct gfs2_log_descriptor *ld; 419 struct gfs2_bufdata *bd1 = NULL, *bd2; 420 struct page *page; 421 unsigned int num; 422 unsigned n; 423 __be64 *ptr; 424 425 gfs2_log_lock(sdp); 426 list_sort(NULL, blist, blocknr_cmp); 427 bd1 = bd2 = list_prepare_entry(bd1, blist, bd_list); 428 while(total) { 429 num = total; 430 if (total > limit) 431 num = limit; 432 gfs2_log_unlock(sdp); 433 page = gfs2_get_log_desc(sdp, 434 is_databuf ? GFS2_LOG_DESC_JDATA : 435 GFS2_LOG_DESC_METADATA, num + 1, num); 436 ld = page_address(page); 437 gfs2_log_lock(sdp); 438 ptr = (__be64 *)(ld + 1); 439 440 n = 0; 441 list_for_each_entry_continue(bd1, blist, bd_list) { 442 *ptr++ = cpu_to_be64(bd1->bd_bh->b_blocknr); 443 if (is_databuf) { 444 gfs2_check_magic(bd1->bd_bh); 445 *ptr++ = cpu_to_be64(buffer_escaped(bd1->bd_bh) ? 1 : 0); 446 } 447 if (++n >= num) 448 break; 449 } 450 451 gfs2_log_unlock(sdp); 452 gfs2_log_write_page(sdp, page); 453 gfs2_log_lock(sdp); 454 455 n = 0; 456 list_for_each_entry_continue(bd2, blist, bd_list) { 457 get_bh(bd2->bd_bh); 458 gfs2_log_unlock(sdp); 459 lock_buffer(bd2->bd_bh); 460 461 if (buffer_escaped(bd2->bd_bh)) { 462 void *kaddr; 463 page = mempool_alloc(gfs2_page_pool, GFP_NOIO); 464 ptr = page_address(page); 465 kaddr = kmap_atomic(bd2->bd_bh->b_page); 466 memcpy(ptr, kaddr + bh_offset(bd2->bd_bh), 467 bd2->bd_bh->b_size); 468 kunmap_atomic(kaddr); 469 *(__be32 *)ptr = 0; 470 clear_buffer_escaped(bd2->bd_bh); 471 unlock_buffer(bd2->bd_bh); 472 brelse(bd2->bd_bh); 473 gfs2_log_write_page(sdp, page); 474 } else { 475 gfs2_log_write_bh(sdp, bd2->bd_bh); 476 } 477 gfs2_log_lock(sdp); 478 if (++n >= num) 479 break; 480 } 481 482 BUG_ON(total < num); 483 total -= num; 484 } 485 gfs2_log_unlock(sdp); 486 } 487 488 static void buf_lo_before_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr) 489 { 490 unsigned int limit = buf_limit(sdp); /* 503 for 4k blocks */ 491 unsigned int nbuf; 492 if (tr == NULL) 493 return; 494 nbuf = tr->tr_num_buf_new - tr->tr_num_buf_rm; 495 gfs2_before_commit(sdp, limit, nbuf, &tr->tr_buf, 0); 496 } 497 498 static void buf_lo_after_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr) 499 { 500 struct list_head *head; 501 struct gfs2_bufdata *bd; 502 503 if (tr == NULL) 504 return; 505 506 head = &tr->tr_buf; 507 while (!list_empty(head)) { 508 bd = list_entry(head->next, struct gfs2_bufdata, bd_list); 509 list_del_init(&bd->bd_list); 510 gfs2_unpin(sdp, bd->bd_bh, tr); 511 } 512 } 513 514 static void buf_lo_before_scan(struct gfs2_jdesc *jd, 515 struct gfs2_log_header_host *head, int pass) 516 { 517 if (pass != 0) 518 return; 519 520 jd->jd_found_blocks = 0; 521 jd->jd_replayed_blocks = 0; 522 } 523 524 static int buf_lo_scan_elements(struct gfs2_jdesc *jd, unsigned int start, 525 struct gfs2_log_descriptor *ld, __be64 *ptr, 526 int pass) 527 { 528 struct gfs2_inode *ip = GFS2_I(jd->jd_inode); 529 struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode); 530 struct gfs2_glock *gl = ip->i_gl; 531 unsigned int blks = be32_to_cpu(ld->ld_data1); 532 struct buffer_head *bh_log, *bh_ip; 533 u64 blkno; 534 int error = 0; 535 536 if (pass != 1 || be32_to_cpu(ld->ld_type) != GFS2_LOG_DESC_METADATA) 537 return 0; 538 539 gfs2_replay_incr_blk(jd, &start); 540 541 for (; blks; gfs2_replay_incr_blk(jd, &start), blks--) { 542 blkno = be64_to_cpu(*ptr++); 543 544 jd->jd_found_blocks++; 545 546 if (gfs2_revoke_check(jd, blkno, start)) 547 continue; 548 549 error = gfs2_replay_read_block(jd, start, &bh_log); 550 if (error) 551 return error; 552 553 bh_ip = gfs2_meta_new(gl, blkno); 554 memcpy(bh_ip->b_data, bh_log->b_data, bh_log->b_size); 555 556 if (gfs2_meta_check(sdp, bh_ip)) 557 error = -EIO; 558 else 559 mark_buffer_dirty(bh_ip); 560 561 brelse(bh_log); 562 brelse(bh_ip); 563 564 if (error) 565 break; 566 567 jd->jd_replayed_blocks++; 568 } 569 570 return error; 571 } 572 573 /** 574 * gfs2_meta_sync - Sync all buffers associated with a glock 575 * @gl: The glock 576 * 577 */ 578 579 static void gfs2_meta_sync(struct gfs2_glock *gl) 580 { 581 struct address_space *mapping = gfs2_glock2aspace(gl); 582 struct gfs2_sbd *sdp = gl->gl_name.ln_sbd; 583 int error; 584 585 if (mapping == NULL) 586 mapping = &sdp->sd_aspace; 587 588 filemap_fdatawrite(mapping); 589 error = filemap_fdatawait(mapping); 590 591 if (error) 592 gfs2_io_error(gl->gl_name.ln_sbd); 593 } 594 595 static void buf_lo_after_scan(struct gfs2_jdesc *jd, int error, int pass) 596 { 597 struct gfs2_inode *ip = GFS2_I(jd->jd_inode); 598 struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode); 599 600 if (error) { 601 gfs2_meta_sync(ip->i_gl); 602 return; 603 } 604 if (pass != 1) 605 return; 606 607 gfs2_meta_sync(ip->i_gl); 608 609 fs_info(sdp, "jid=%u: Replayed %u of %u blocks\n", 610 jd->jd_jid, jd->jd_replayed_blocks, jd->jd_found_blocks); 611 } 612 613 static void revoke_lo_before_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr) 614 { 615 struct gfs2_meta_header *mh; 616 unsigned int offset; 617 struct list_head *head = &sdp->sd_log_le_revoke; 618 struct gfs2_bufdata *bd; 619 struct page *page; 620 unsigned int length; 621 622 gfs2_write_revokes(sdp); 623 if (!sdp->sd_log_num_revoke) 624 return; 625 626 length = gfs2_struct2blk(sdp, sdp->sd_log_num_revoke, sizeof(u64)); 627 page = gfs2_get_log_desc(sdp, GFS2_LOG_DESC_REVOKE, length, sdp->sd_log_num_revoke); 628 offset = sizeof(struct gfs2_log_descriptor); 629 630 list_for_each_entry(bd, head, bd_list) { 631 sdp->sd_log_num_revoke--; 632 633 if (offset + sizeof(u64) > sdp->sd_sb.sb_bsize) { 634 635 gfs2_log_write_page(sdp, page); 636 page = mempool_alloc(gfs2_page_pool, GFP_NOIO); 637 mh = page_address(page); 638 clear_page(mh); 639 mh->mh_magic = cpu_to_be32(GFS2_MAGIC); 640 mh->mh_type = cpu_to_be32(GFS2_METATYPE_LB); 641 mh->mh_format = cpu_to_be32(GFS2_FORMAT_LB); 642 offset = sizeof(struct gfs2_meta_header); 643 } 644 645 *(__be64 *)(page_address(page) + offset) = cpu_to_be64(bd->bd_blkno); 646 offset += sizeof(u64); 647 } 648 gfs2_assert_withdraw(sdp, !sdp->sd_log_num_revoke); 649 650 gfs2_log_write_page(sdp, page); 651 } 652 653 static void revoke_lo_after_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr) 654 { 655 struct list_head *head = &sdp->sd_log_le_revoke; 656 struct gfs2_bufdata *bd; 657 struct gfs2_glock *gl; 658 659 while (!list_empty(head)) { 660 bd = list_entry(head->next, struct gfs2_bufdata, bd_list); 661 list_del_init(&bd->bd_list); 662 gl = bd->bd_gl; 663 atomic_dec(&gl->gl_revokes); 664 clear_bit(GLF_LFLUSH, &gl->gl_flags); 665 kmem_cache_free(gfs2_bufdata_cachep, bd); 666 } 667 } 668 669 static void revoke_lo_before_scan(struct gfs2_jdesc *jd, 670 struct gfs2_log_header_host *head, int pass) 671 { 672 if (pass != 0) 673 return; 674 675 jd->jd_found_revokes = 0; 676 jd->jd_replay_tail = head->lh_tail; 677 } 678 679 static int revoke_lo_scan_elements(struct gfs2_jdesc *jd, unsigned int start, 680 struct gfs2_log_descriptor *ld, __be64 *ptr, 681 int pass) 682 { 683 struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode); 684 unsigned int blks = be32_to_cpu(ld->ld_length); 685 unsigned int revokes = be32_to_cpu(ld->ld_data1); 686 struct buffer_head *bh; 687 unsigned int offset; 688 u64 blkno; 689 int first = 1; 690 int error; 691 692 if (pass != 0 || be32_to_cpu(ld->ld_type) != GFS2_LOG_DESC_REVOKE) 693 return 0; 694 695 offset = sizeof(struct gfs2_log_descriptor); 696 697 for (; blks; gfs2_replay_incr_blk(jd, &start), blks--) { 698 error = gfs2_replay_read_block(jd, start, &bh); 699 if (error) 700 return error; 701 702 if (!first) 703 gfs2_metatype_check(sdp, bh, GFS2_METATYPE_LB); 704 705 while (offset + sizeof(u64) <= sdp->sd_sb.sb_bsize) { 706 blkno = be64_to_cpu(*(__be64 *)(bh->b_data + offset)); 707 708 error = gfs2_revoke_add(jd, blkno, start); 709 if (error < 0) { 710 brelse(bh); 711 return error; 712 } 713 else if (error) 714 jd->jd_found_revokes++; 715 716 if (!--revokes) 717 break; 718 offset += sizeof(u64); 719 } 720 721 brelse(bh); 722 offset = sizeof(struct gfs2_meta_header); 723 first = 0; 724 } 725 726 return 0; 727 } 728 729 static void revoke_lo_after_scan(struct gfs2_jdesc *jd, int error, int pass) 730 { 731 struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode); 732 733 if (error) { 734 gfs2_revoke_clean(jd); 735 return; 736 } 737 if (pass != 1) 738 return; 739 740 fs_info(sdp, "jid=%u: Found %u revoke tags\n", 741 jd->jd_jid, jd->jd_found_revokes); 742 743 gfs2_revoke_clean(jd); 744 } 745 746 /** 747 * databuf_lo_before_commit - Scan the data buffers, writing as we go 748 * 749 */ 750 751 static void databuf_lo_before_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr) 752 { 753 unsigned int limit = databuf_limit(sdp); 754 unsigned int nbuf; 755 if (tr == NULL) 756 return; 757 nbuf = tr->tr_num_databuf_new - tr->tr_num_databuf_rm; 758 gfs2_before_commit(sdp, limit, nbuf, &tr->tr_databuf, 1); 759 } 760 761 static int databuf_lo_scan_elements(struct gfs2_jdesc *jd, unsigned int start, 762 struct gfs2_log_descriptor *ld, 763 __be64 *ptr, int pass) 764 { 765 struct gfs2_inode *ip = GFS2_I(jd->jd_inode); 766 struct gfs2_glock *gl = ip->i_gl; 767 unsigned int blks = be32_to_cpu(ld->ld_data1); 768 struct buffer_head *bh_log, *bh_ip; 769 u64 blkno; 770 u64 esc; 771 int error = 0; 772 773 if (pass != 1 || be32_to_cpu(ld->ld_type) != GFS2_LOG_DESC_JDATA) 774 return 0; 775 776 gfs2_replay_incr_blk(jd, &start); 777 for (; blks; gfs2_replay_incr_blk(jd, &start), blks--) { 778 blkno = be64_to_cpu(*ptr++); 779 esc = be64_to_cpu(*ptr++); 780 781 jd->jd_found_blocks++; 782 783 if (gfs2_revoke_check(jd, blkno, start)) 784 continue; 785 786 error = gfs2_replay_read_block(jd, start, &bh_log); 787 if (error) 788 return error; 789 790 bh_ip = gfs2_meta_new(gl, blkno); 791 memcpy(bh_ip->b_data, bh_log->b_data, bh_log->b_size); 792 793 /* Unescape */ 794 if (esc) { 795 __be32 *eptr = (__be32 *)bh_ip->b_data; 796 *eptr = cpu_to_be32(GFS2_MAGIC); 797 } 798 mark_buffer_dirty(bh_ip); 799 800 brelse(bh_log); 801 brelse(bh_ip); 802 803 jd->jd_replayed_blocks++; 804 } 805 806 return error; 807 } 808 809 /* FIXME: sort out accounting for log blocks etc. */ 810 811 static void databuf_lo_after_scan(struct gfs2_jdesc *jd, int error, int pass) 812 { 813 struct gfs2_inode *ip = GFS2_I(jd->jd_inode); 814 struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode); 815 816 if (error) { 817 gfs2_meta_sync(ip->i_gl); 818 return; 819 } 820 if (pass != 1) 821 return; 822 823 /* data sync? */ 824 gfs2_meta_sync(ip->i_gl); 825 826 fs_info(sdp, "jid=%u: Replayed %u of %u data blocks\n", 827 jd->jd_jid, jd->jd_replayed_blocks, jd->jd_found_blocks); 828 } 829 830 static void databuf_lo_after_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr) 831 { 832 struct list_head *head; 833 struct gfs2_bufdata *bd; 834 835 if (tr == NULL) 836 return; 837 838 head = &tr->tr_databuf; 839 while (!list_empty(head)) { 840 bd = list_entry(head->next, struct gfs2_bufdata, bd_list); 841 list_del_init(&bd->bd_list); 842 gfs2_unpin(sdp, bd->bd_bh, tr); 843 } 844 } 845 846 847 const struct gfs2_log_operations gfs2_buf_lops = { 848 .lo_before_commit = buf_lo_before_commit, 849 .lo_after_commit = buf_lo_after_commit, 850 .lo_before_scan = buf_lo_before_scan, 851 .lo_scan_elements = buf_lo_scan_elements, 852 .lo_after_scan = buf_lo_after_scan, 853 .lo_name = "buf", 854 }; 855 856 const struct gfs2_log_operations gfs2_revoke_lops = { 857 .lo_before_commit = revoke_lo_before_commit, 858 .lo_after_commit = revoke_lo_after_commit, 859 .lo_before_scan = revoke_lo_before_scan, 860 .lo_scan_elements = revoke_lo_scan_elements, 861 .lo_after_scan = revoke_lo_after_scan, 862 .lo_name = "revoke", 863 }; 864 865 const struct gfs2_log_operations gfs2_databuf_lops = { 866 .lo_before_commit = databuf_lo_before_commit, 867 .lo_after_commit = databuf_lo_after_commit, 868 .lo_scan_elements = databuf_lo_scan_elements, 869 .lo_after_scan = databuf_lo_after_scan, 870 .lo_name = "databuf", 871 }; 872 873 const struct gfs2_log_operations *gfs2_log_ops[] = { 874 &gfs2_databuf_lops, 875 &gfs2_buf_lops, 876 &gfs2_revoke_lops, 877 NULL, 878 }; 879 880