1ccd979bdSMark Fasheh /* -*- mode: c; c-basic-offset: 8; -*- 2ccd979bdSMark Fasheh * vim: noexpandtab sw=8 ts=8 sts=0: 3ccd979bdSMark Fasheh * 4ccd979bdSMark Fasheh * alloc.c 5ccd979bdSMark Fasheh * 6ccd979bdSMark Fasheh * Extent allocs and frees 7ccd979bdSMark Fasheh * 8ccd979bdSMark Fasheh * Copyright (C) 2002, 2004 Oracle. All rights reserved. 9ccd979bdSMark Fasheh * 10ccd979bdSMark Fasheh * This program is free software; you can redistribute it and/or 11ccd979bdSMark Fasheh * modify it under the terms of the GNU General Public 12ccd979bdSMark Fasheh * License as published by the Free Software Foundation; either 13ccd979bdSMark Fasheh * version 2 of the License, or (at your option) any later version. 14ccd979bdSMark Fasheh * 15ccd979bdSMark Fasheh * This program is distributed in the hope that it will be useful, 16ccd979bdSMark Fasheh * but WITHOUT ANY WARRANTY; without even the implied warranty of 17ccd979bdSMark Fasheh * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 18ccd979bdSMark Fasheh * General Public License for more details. 19ccd979bdSMark Fasheh * 20ccd979bdSMark Fasheh * You should have received a copy of the GNU General Public 21ccd979bdSMark Fasheh * License along with this program; if not, write to the 22ccd979bdSMark Fasheh * Free Software Foundation, Inc., 59 Temple Place - Suite 330, 23ccd979bdSMark Fasheh * Boston, MA 021110-1307, USA. 24ccd979bdSMark Fasheh */ 25ccd979bdSMark Fasheh 26ccd979bdSMark Fasheh #include <linux/fs.h> 27ccd979bdSMark Fasheh #include <linux/types.h> 28ccd979bdSMark Fasheh #include <linux/slab.h> 29ccd979bdSMark Fasheh #include <linux/highmem.h> 3060b11392SMark Fasheh #include <linux/swap.h> 31ccd979bdSMark Fasheh 32ccd979bdSMark Fasheh #define MLOG_MASK_PREFIX ML_DISK_ALLOC 33ccd979bdSMark Fasheh #include <cluster/masklog.h> 34ccd979bdSMark Fasheh 35ccd979bdSMark Fasheh #include "ocfs2.h" 36ccd979bdSMark Fasheh 37ccd979bdSMark Fasheh #include "alloc.h" 3860b11392SMark Fasheh #include "aops.h" 39ccd979bdSMark Fasheh #include "dlmglue.h" 40ccd979bdSMark Fasheh #include "extent_map.h" 41ccd979bdSMark Fasheh #include "inode.h" 42ccd979bdSMark Fasheh #include "journal.h" 43ccd979bdSMark Fasheh #include "localalloc.h" 44ccd979bdSMark Fasheh #include "suballoc.h" 45ccd979bdSMark Fasheh #include "sysfile.h" 46ccd979bdSMark Fasheh #include "file.h" 47ccd979bdSMark Fasheh #include "super.h" 48ccd979bdSMark Fasheh #include "uptodate.h" 49ccd979bdSMark Fasheh 50ccd979bdSMark Fasheh #include "buffer_head_io.h" 51ccd979bdSMark Fasheh 52ccd979bdSMark Fasheh static void ocfs2_free_truncate_context(struct ocfs2_truncate_context *tc); 5359a5e416SMark Fasheh static int ocfs2_cache_extent_block_free(struct ocfs2_cached_dealloc_ctxt *ctxt, 5459a5e416SMark Fasheh struct ocfs2_extent_block *eb); 55ccd979bdSMark Fasheh 56dcd0538fSMark Fasheh /* 57dcd0538fSMark Fasheh * Structures which describe a path through a btree, and functions to 58dcd0538fSMark Fasheh * manipulate them. 59dcd0538fSMark Fasheh * 60dcd0538fSMark Fasheh * The idea here is to be as generic as possible with the tree 61dcd0538fSMark Fasheh * manipulation code. 62dcd0538fSMark Fasheh */ 63dcd0538fSMark Fasheh struct ocfs2_path_item { 64dcd0538fSMark Fasheh struct buffer_head *bh; 65dcd0538fSMark Fasheh struct ocfs2_extent_list *el; 66dcd0538fSMark Fasheh }; 67dcd0538fSMark Fasheh 68dcd0538fSMark Fasheh #define OCFS2_MAX_PATH_DEPTH 5 69dcd0538fSMark Fasheh 70dcd0538fSMark Fasheh struct ocfs2_path { 71dcd0538fSMark Fasheh int p_tree_depth; 72dcd0538fSMark Fasheh struct ocfs2_path_item p_node[OCFS2_MAX_PATH_DEPTH]; 73dcd0538fSMark Fasheh }; 74dcd0538fSMark Fasheh 75dcd0538fSMark Fasheh #define path_root_bh(_path) ((_path)->p_node[0].bh) 76dcd0538fSMark Fasheh #define path_root_el(_path) ((_path)->p_node[0].el) 77dcd0538fSMark Fasheh #define path_leaf_bh(_path) ((_path)->p_node[(_path)->p_tree_depth].bh) 78dcd0538fSMark Fasheh #define path_leaf_el(_path) ((_path)->p_node[(_path)->p_tree_depth].el) 79dcd0538fSMark Fasheh #define path_num_items(_path) ((_path)->p_tree_depth + 1) 80dcd0538fSMark Fasheh 81dcd0538fSMark Fasheh /* 82dcd0538fSMark Fasheh * Reset the actual path elements so that we can re-use the structure 83dcd0538fSMark Fasheh * to build another path. Generally, this involves freeing the buffer 84dcd0538fSMark Fasheh * heads. 85dcd0538fSMark Fasheh */ 86dcd0538fSMark Fasheh static void ocfs2_reinit_path(struct ocfs2_path *path, int keep_root) 87dcd0538fSMark Fasheh { 88dcd0538fSMark Fasheh int i, start = 0, depth = 0; 89dcd0538fSMark Fasheh struct ocfs2_path_item *node; 90dcd0538fSMark Fasheh 91dcd0538fSMark Fasheh if (keep_root) 92dcd0538fSMark Fasheh start = 1; 93dcd0538fSMark Fasheh 94dcd0538fSMark Fasheh for(i = start; i < path_num_items(path); i++) { 95dcd0538fSMark Fasheh node = &path->p_node[i]; 96dcd0538fSMark Fasheh 97dcd0538fSMark Fasheh brelse(node->bh); 98dcd0538fSMark Fasheh node->bh = NULL; 99dcd0538fSMark Fasheh node->el = NULL; 100dcd0538fSMark Fasheh } 101dcd0538fSMark Fasheh 102dcd0538fSMark Fasheh /* 103dcd0538fSMark Fasheh * Tree depth may change during truncate, or insert. If we're 104dcd0538fSMark Fasheh * keeping the root extent list, then make sure that our path 105dcd0538fSMark Fasheh * structure reflects the proper depth. 106dcd0538fSMark Fasheh */ 107dcd0538fSMark Fasheh if (keep_root) 108dcd0538fSMark Fasheh depth = le16_to_cpu(path_root_el(path)->l_tree_depth); 109dcd0538fSMark Fasheh 110dcd0538fSMark Fasheh path->p_tree_depth = depth; 111dcd0538fSMark Fasheh } 112dcd0538fSMark Fasheh 113dcd0538fSMark Fasheh static void ocfs2_free_path(struct ocfs2_path *path) 114dcd0538fSMark Fasheh { 115dcd0538fSMark Fasheh if (path) { 116dcd0538fSMark Fasheh ocfs2_reinit_path(path, 0); 117dcd0538fSMark Fasheh kfree(path); 118dcd0538fSMark Fasheh } 119dcd0538fSMark Fasheh } 120dcd0538fSMark Fasheh 121dcd0538fSMark Fasheh /* 122328d5752SMark Fasheh * All the elements of src into dest. After this call, src could be freed 123328d5752SMark Fasheh * without affecting dest. 124328d5752SMark Fasheh * 125328d5752SMark Fasheh * Both paths should have the same root. Any non-root elements of dest 126328d5752SMark Fasheh * will be freed. 127328d5752SMark Fasheh */ 128328d5752SMark Fasheh static void ocfs2_cp_path(struct ocfs2_path *dest, struct ocfs2_path *src) 129328d5752SMark Fasheh { 130328d5752SMark Fasheh int i; 131328d5752SMark Fasheh 132328d5752SMark Fasheh BUG_ON(path_root_bh(dest) != path_root_bh(src)); 133328d5752SMark Fasheh BUG_ON(path_root_el(dest) != path_root_el(src)); 134328d5752SMark Fasheh 135328d5752SMark Fasheh ocfs2_reinit_path(dest, 1); 136328d5752SMark Fasheh 137328d5752SMark Fasheh for(i = 1; i < OCFS2_MAX_PATH_DEPTH; i++) { 138328d5752SMark Fasheh dest->p_node[i].bh = src->p_node[i].bh; 139328d5752SMark Fasheh dest->p_node[i].el = src->p_node[i].el; 140328d5752SMark Fasheh 141328d5752SMark Fasheh if (dest->p_node[i].bh) 142328d5752SMark Fasheh get_bh(dest->p_node[i].bh); 143328d5752SMark Fasheh } 144328d5752SMark Fasheh } 145328d5752SMark Fasheh 146328d5752SMark Fasheh /* 147dcd0538fSMark Fasheh * Make the *dest path the same as src and re-initialize src path to 148dcd0538fSMark Fasheh * have a root only. 149dcd0538fSMark Fasheh */ 150dcd0538fSMark Fasheh static void ocfs2_mv_path(struct ocfs2_path *dest, struct ocfs2_path *src) 151dcd0538fSMark Fasheh { 152dcd0538fSMark Fasheh int i; 153dcd0538fSMark Fasheh 154dcd0538fSMark Fasheh BUG_ON(path_root_bh(dest) != path_root_bh(src)); 155dcd0538fSMark Fasheh 156dcd0538fSMark Fasheh for(i = 1; i < OCFS2_MAX_PATH_DEPTH; i++) { 157dcd0538fSMark Fasheh brelse(dest->p_node[i].bh); 158dcd0538fSMark Fasheh 159dcd0538fSMark Fasheh dest->p_node[i].bh = src->p_node[i].bh; 160dcd0538fSMark Fasheh dest->p_node[i].el = src->p_node[i].el; 161dcd0538fSMark Fasheh 162dcd0538fSMark Fasheh src->p_node[i].bh = NULL; 163dcd0538fSMark Fasheh src->p_node[i].el = NULL; 164dcd0538fSMark Fasheh } 165dcd0538fSMark Fasheh } 166dcd0538fSMark Fasheh 167dcd0538fSMark Fasheh /* 168dcd0538fSMark Fasheh * Insert an extent block at given index. 169dcd0538fSMark Fasheh * 170dcd0538fSMark Fasheh * This will not take an additional reference on eb_bh. 171dcd0538fSMark Fasheh */ 172dcd0538fSMark Fasheh static inline void ocfs2_path_insert_eb(struct ocfs2_path *path, int index, 173dcd0538fSMark Fasheh struct buffer_head *eb_bh) 174dcd0538fSMark Fasheh { 175dcd0538fSMark Fasheh struct ocfs2_extent_block *eb = (struct ocfs2_extent_block *)eb_bh->b_data; 176dcd0538fSMark Fasheh 177dcd0538fSMark Fasheh /* 178dcd0538fSMark Fasheh * Right now, no root bh is an extent block, so this helps 179dcd0538fSMark Fasheh * catch code errors with dinode trees. The assertion can be 180dcd0538fSMark Fasheh * safely removed if we ever need to insert extent block 181dcd0538fSMark Fasheh * structures at the root. 182dcd0538fSMark Fasheh */ 183dcd0538fSMark Fasheh BUG_ON(index == 0); 184dcd0538fSMark Fasheh 185dcd0538fSMark Fasheh path->p_node[index].bh = eb_bh; 186dcd0538fSMark Fasheh path->p_node[index].el = &eb->h_list; 187dcd0538fSMark Fasheh } 188dcd0538fSMark Fasheh 189dcd0538fSMark Fasheh static struct ocfs2_path *ocfs2_new_path(struct buffer_head *root_bh, 190dcd0538fSMark Fasheh struct ocfs2_extent_list *root_el) 191dcd0538fSMark Fasheh { 192dcd0538fSMark Fasheh struct ocfs2_path *path; 193dcd0538fSMark Fasheh 194dcd0538fSMark Fasheh BUG_ON(le16_to_cpu(root_el->l_tree_depth) >= OCFS2_MAX_PATH_DEPTH); 195dcd0538fSMark Fasheh 196dcd0538fSMark Fasheh path = kzalloc(sizeof(*path), GFP_NOFS); 197dcd0538fSMark Fasheh if (path) { 198dcd0538fSMark Fasheh path->p_tree_depth = le16_to_cpu(root_el->l_tree_depth); 199dcd0538fSMark Fasheh get_bh(root_bh); 200dcd0538fSMark Fasheh path_root_bh(path) = root_bh; 201dcd0538fSMark Fasheh path_root_el(path) = root_el; 202dcd0538fSMark Fasheh } 203dcd0538fSMark Fasheh 204dcd0538fSMark Fasheh return path; 205dcd0538fSMark Fasheh } 206dcd0538fSMark Fasheh 207dcd0538fSMark Fasheh /* 208dcd0538fSMark Fasheh * Allocate and initialize a new path based on a disk inode tree. 209dcd0538fSMark Fasheh */ 210dcd0538fSMark Fasheh static struct ocfs2_path *ocfs2_new_inode_path(struct buffer_head *di_bh) 211dcd0538fSMark Fasheh { 212dcd0538fSMark Fasheh struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data; 213dcd0538fSMark Fasheh struct ocfs2_extent_list *el = &di->id2.i_list; 214dcd0538fSMark Fasheh 215dcd0538fSMark Fasheh return ocfs2_new_path(di_bh, el); 216dcd0538fSMark Fasheh } 217dcd0538fSMark Fasheh 218dcd0538fSMark Fasheh /* 219dcd0538fSMark Fasheh * Convenience function to journal all components in a path. 220dcd0538fSMark Fasheh */ 221dcd0538fSMark Fasheh static int ocfs2_journal_access_path(struct inode *inode, handle_t *handle, 222dcd0538fSMark Fasheh struct ocfs2_path *path) 223dcd0538fSMark Fasheh { 224dcd0538fSMark Fasheh int i, ret = 0; 225dcd0538fSMark Fasheh 226dcd0538fSMark Fasheh if (!path) 227dcd0538fSMark Fasheh goto out; 228dcd0538fSMark Fasheh 229dcd0538fSMark Fasheh for(i = 0; i < path_num_items(path); i++) { 230dcd0538fSMark Fasheh ret = ocfs2_journal_access(handle, inode, path->p_node[i].bh, 231dcd0538fSMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 232dcd0538fSMark Fasheh if (ret < 0) { 233dcd0538fSMark Fasheh mlog_errno(ret); 234dcd0538fSMark Fasheh goto out; 235dcd0538fSMark Fasheh } 236dcd0538fSMark Fasheh } 237dcd0538fSMark Fasheh 238dcd0538fSMark Fasheh out: 239dcd0538fSMark Fasheh return ret; 240dcd0538fSMark Fasheh } 241dcd0538fSMark Fasheh 242328d5752SMark Fasheh /* 243328d5752SMark Fasheh * Return the index of the extent record which contains cluster #v_cluster. 244328d5752SMark Fasheh * -1 is returned if it was not found. 245328d5752SMark Fasheh * 246328d5752SMark Fasheh * Should work fine on interior and exterior nodes. 247328d5752SMark Fasheh */ 248328d5752SMark Fasheh int ocfs2_search_extent_list(struct ocfs2_extent_list *el, u32 v_cluster) 249328d5752SMark Fasheh { 250328d5752SMark Fasheh int ret = -1; 251328d5752SMark Fasheh int i; 252328d5752SMark Fasheh struct ocfs2_extent_rec *rec; 253328d5752SMark Fasheh u32 rec_end, rec_start, clusters; 254328d5752SMark Fasheh 255328d5752SMark Fasheh for(i = 0; i < le16_to_cpu(el->l_next_free_rec); i++) { 256328d5752SMark Fasheh rec = &el->l_recs[i]; 257328d5752SMark Fasheh 258328d5752SMark Fasheh rec_start = le32_to_cpu(rec->e_cpos); 259328d5752SMark Fasheh clusters = ocfs2_rec_clusters(el, rec); 260328d5752SMark Fasheh 261328d5752SMark Fasheh rec_end = rec_start + clusters; 262328d5752SMark Fasheh 263328d5752SMark Fasheh if (v_cluster >= rec_start && v_cluster < rec_end) { 264328d5752SMark Fasheh ret = i; 265328d5752SMark Fasheh break; 266328d5752SMark Fasheh } 267328d5752SMark Fasheh } 268328d5752SMark Fasheh 269328d5752SMark Fasheh return ret; 270328d5752SMark Fasheh } 271328d5752SMark Fasheh 272dcd0538fSMark Fasheh enum ocfs2_contig_type { 273dcd0538fSMark Fasheh CONTIG_NONE = 0, 274dcd0538fSMark Fasheh CONTIG_LEFT, 275328d5752SMark Fasheh CONTIG_RIGHT, 276328d5752SMark Fasheh CONTIG_LEFTRIGHT, 277dcd0538fSMark Fasheh }; 278dcd0538fSMark Fasheh 279e48edee2SMark Fasheh 280e48edee2SMark Fasheh /* 281e48edee2SMark Fasheh * NOTE: ocfs2_block_extent_contig(), ocfs2_extents_adjacent() and 282e48edee2SMark Fasheh * ocfs2_extent_contig only work properly against leaf nodes! 283e48edee2SMark Fasheh */ 284dcd0538fSMark Fasheh static int ocfs2_block_extent_contig(struct super_block *sb, 285ccd979bdSMark Fasheh struct ocfs2_extent_rec *ext, 286ccd979bdSMark Fasheh u64 blkno) 287ccd979bdSMark Fasheh { 288e48edee2SMark Fasheh u64 blk_end = le64_to_cpu(ext->e_blkno); 289e48edee2SMark Fasheh 290e48edee2SMark Fasheh blk_end += ocfs2_clusters_to_blocks(sb, 291e48edee2SMark Fasheh le16_to_cpu(ext->e_leaf_clusters)); 292e48edee2SMark Fasheh 293e48edee2SMark Fasheh return blkno == blk_end; 294ccd979bdSMark Fasheh } 295ccd979bdSMark Fasheh 296dcd0538fSMark Fasheh static int ocfs2_extents_adjacent(struct ocfs2_extent_rec *left, 297dcd0538fSMark Fasheh struct ocfs2_extent_rec *right) 298dcd0538fSMark Fasheh { 299e48edee2SMark Fasheh u32 left_range; 300e48edee2SMark Fasheh 301e48edee2SMark Fasheh left_range = le32_to_cpu(left->e_cpos) + 302e48edee2SMark Fasheh le16_to_cpu(left->e_leaf_clusters); 303e48edee2SMark Fasheh 304e48edee2SMark Fasheh return (left_range == le32_to_cpu(right->e_cpos)); 305dcd0538fSMark Fasheh } 306dcd0538fSMark Fasheh 307dcd0538fSMark Fasheh static enum ocfs2_contig_type 308dcd0538fSMark Fasheh ocfs2_extent_contig(struct inode *inode, 309dcd0538fSMark Fasheh struct ocfs2_extent_rec *ext, 310dcd0538fSMark Fasheh struct ocfs2_extent_rec *insert_rec) 311dcd0538fSMark Fasheh { 312dcd0538fSMark Fasheh u64 blkno = le64_to_cpu(insert_rec->e_blkno); 313dcd0538fSMark Fasheh 314328d5752SMark Fasheh /* 315328d5752SMark Fasheh * Refuse to coalesce extent records with different flag 316328d5752SMark Fasheh * fields - we don't want to mix unwritten extents with user 317328d5752SMark Fasheh * data. 318328d5752SMark Fasheh */ 319328d5752SMark Fasheh if (ext->e_flags != insert_rec->e_flags) 320328d5752SMark Fasheh return CONTIG_NONE; 321328d5752SMark Fasheh 322dcd0538fSMark Fasheh if (ocfs2_extents_adjacent(ext, insert_rec) && 323dcd0538fSMark Fasheh ocfs2_block_extent_contig(inode->i_sb, ext, blkno)) 324dcd0538fSMark Fasheh return CONTIG_RIGHT; 325dcd0538fSMark Fasheh 326dcd0538fSMark Fasheh blkno = le64_to_cpu(ext->e_blkno); 327dcd0538fSMark Fasheh if (ocfs2_extents_adjacent(insert_rec, ext) && 328dcd0538fSMark Fasheh ocfs2_block_extent_contig(inode->i_sb, insert_rec, blkno)) 329dcd0538fSMark Fasheh return CONTIG_LEFT; 330dcd0538fSMark Fasheh 331dcd0538fSMark Fasheh return CONTIG_NONE; 332dcd0538fSMark Fasheh } 333dcd0538fSMark Fasheh 334dcd0538fSMark Fasheh /* 335dcd0538fSMark Fasheh * NOTE: We can have pretty much any combination of contiguousness and 336dcd0538fSMark Fasheh * appending. 337dcd0538fSMark Fasheh * 338dcd0538fSMark Fasheh * The usefulness of APPEND_TAIL is more in that it lets us know that 339dcd0538fSMark Fasheh * we'll have to update the path to that leaf. 340dcd0538fSMark Fasheh */ 341dcd0538fSMark Fasheh enum ocfs2_append_type { 342dcd0538fSMark Fasheh APPEND_NONE = 0, 343dcd0538fSMark Fasheh APPEND_TAIL, 344dcd0538fSMark Fasheh }; 345dcd0538fSMark Fasheh 346328d5752SMark Fasheh enum ocfs2_split_type { 347328d5752SMark Fasheh SPLIT_NONE = 0, 348328d5752SMark Fasheh SPLIT_LEFT, 349328d5752SMark Fasheh SPLIT_RIGHT, 350328d5752SMark Fasheh }; 351328d5752SMark Fasheh 352dcd0538fSMark Fasheh struct ocfs2_insert_type { 353328d5752SMark Fasheh enum ocfs2_split_type ins_split; 354dcd0538fSMark Fasheh enum ocfs2_append_type ins_appending; 355dcd0538fSMark Fasheh enum ocfs2_contig_type ins_contig; 356dcd0538fSMark Fasheh int ins_contig_index; 357dcd0538fSMark Fasheh int ins_tree_depth; 358dcd0538fSMark Fasheh }; 359dcd0538fSMark Fasheh 360328d5752SMark Fasheh struct ocfs2_merge_ctxt { 361328d5752SMark Fasheh enum ocfs2_contig_type c_contig_type; 362328d5752SMark Fasheh int c_has_empty_extent; 363328d5752SMark Fasheh int c_split_covers_rec; 364328d5752SMark Fasheh int c_used_tail_recs; 365328d5752SMark Fasheh }; 366328d5752SMark Fasheh 367ccd979bdSMark Fasheh /* 368ccd979bdSMark Fasheh * How many free extents have we got before we need more meta data? 369ccd979bdSMark Fasheh */ 370ccd979bdSMark Fasheh int ocfs2_num_free_extents(struct ocfs2_super *osb, 371ccd979bdSMark Fasheh struct inode *inode, 372ccd979bdSMark Fasheh struct ocfs2_dinode *fe) 373ccd979bdSMark Fasheh { 374ccd979bdSMark Fasheh int retval; 375ccd979bdSMark Fasheh struct ocfs2_extent_list *el; 376ccd979bdSMark Fasheh struct ocfs2_extent_block *eb; 377ccd979bdSMark Fasheh struct buffer_head *eb_bh = NULL; 378ccd979bdSMark Fasheh 379ccd979bdSMark Fasheh mlog_entry_void(); 380ccd979bdSMark Fasheh 381ccd979bdSMark Fasheh if (!OCFS2_IS_VALID_DINODE(fe)) { 382ccd979bdSMark Fasheh OCFS2_RO_ON_INVALID_DINODE(inode->i_sb, fe); 383ccd979bdSMark Fasheh retval = -EIO; 384ccd979bdSMark Fasheh goto bail; 385ccd979bdSMark Fasheh } 386ccd979bdSMark Fasheh 387ccd979bdSMark Fasheh if (fe->i_last_eb_blk) { 388ccd979bdSMark Fasheh retval = ocfs2_read_block(osb, le64_to_cpu(fe->i_last_eb_blk), 389ccd979bdSMark Fasheh &eb_bh, OCFS2_BH_CACHED, inode); 390ccd979bdSMark Fasheh if (retval < 0) { 391ccd979bdSMark Fasheh mlog_errno(retval); 392ccd979bdSMark Fasheh goto bail; 393ccd979bdSMark Fasheh } 394ccd979bdSMark Fasheh eb = (struct ocfs2_extent_block *) eb_bh->b_data; 395ccd979bdSMark Fasheh el = &eb->h_list; 396ccd979bdSMark Fasheh } else 397ccd979bdSMark Fasheh el = &fe->id2.i_list; 398ccd979bdSMark Fasheh 399ccd979bdSMark Fasheh BUG_ON(el->l_tree_depth != 0); 400ccd979bdSMark Fasheh 401ccd979bdSMark Fasheh retval = le16_to_cpu(el->l_count) - le16_to_cpu(el->l_next_free_rec); 402ccd979bdSMark Fasheh bail: 403ccd979bdSMark Fasheh if (eb_bh) 404ccd979bdSMark Fasheh brelse(eb_bh); 405ccd979bdSMark Fasheh 406ccd979bdSMark Fasheh mlog_exit(retval); 407ccd979bdSMark Fasheh return retval; 408ccd979bdSMark Fasheh } 409ccd979bdSMark Fasheh 410ccd979bdSMark Fasheh /* expects array to already be allocated 411ccd979bdSMark Fasheh * 412ccd979bdSMark Fasheh * sets h_signature, h_blkno, h_suballoc_bit, h_suballoc_slot, and 413ccd979bdSMark Fasheh * l_count for you 414ccd979bdSMark Fasheh */ 415ccd979bdSMark Fasheh static int ocfs2_create_new_meta_bhs(struct ocfs2_super *osb, 4161fabe148SMark Fasheh handle_t *handle, 417ccd979bdSMark Fasheh struct inode *inode, 418ccd979bdSMark Fasheh int wanted, 419ccd979bdSMark Fasheh struct ocfs2_alloc_context *meta_ac, 420ccd979bdSMark Fasheh struct buffer_head *bhs[]) 421ccd979bdSMark Fasheh { 422ccd979bdSMark Fasheh int count, status, i; 423ccd979bdSMark Fasheh u16 suballoc_bit_start; 424ccd979bdSMark Fasheh u32 num_got; 425ccd979bdSMark Fasheh u64 first_blkno; 426ccd979bdSMark Fasheh struct ocfs2_extent_block *eb; 427ccd979bdSMark Fasheh 428ccd979bdSMark Fasheh mlog_entry_void(); 429ccd979bdSMark Fasheh 430ccd979bdSMark Fasheh count = 0; 431ccd979bdSMark Fasheh while (count < wanted) { 432ccd979bdSMark Fasheh status = ocfs2_claim_metadata(osb, 433ccd979bdSMark Fasheh handle, 434ccd979bdSMark Fasheh meta_ac, 435ccd979bdSMark Fasheh wanted - count, 436ccd979bdSMark Fasheh &suballoc_bit_start, 437ccd979bdSMark Fasheh &num_got, 438ccd979bdSMark Fasheh &first_blkno); 439ccd979bdSMark Fasheh if (status < 0) { 440ccd979bdSMark Fasheh mlog_errno(status); 441ccd979bdSMark Fasheh goto bail; 442ccd979bdSMark Fasheh } 443ccd979bdSMark Fasheh 444ccd979bdSMark Fasheh for(i = count; i < (num_got + count); i++) { 445ccd979bdSMark Fasheh bhs[i] = sb_getblk(osb->sb, first_blkno); 446ccd979bdSMark Fasheh if (bhs[i] == NULL) { 447ccd979bdSMark Fasheh status = -EIO; 448ccd979bdSMark Fasheh mlog_errno(status); 449ccd979bdSMark Fasheh goto bail; 450ccd979bdSMark Fasheh } 451ccd979bdSMark Fasheh ocfs2_set_new_buffer_uptodate(inode, bhs[i]); 452ccd979bdSMark Fasheh 453ccd979bdSMark Fasheh status = ocfs2_journal_access(handle, inode, bhs[i], 454ccd979bdSMark Fasheh OCFS2_JOURNAL_ACCESS_CREATE); 455ccd979bdSMark Fasheh if (status < 0) { 456ccd979bdSMark Fasheh mlog_errno(status); 457ccd979bdSMark Fasheh goto bail; 458ccd979bdSMark Fasheh } 459ccd979bdSMark Fasheh 460ccd979bdSMark Fasheh memset(bhs[i]->b_data, 0, osb->sb->s_blocksize); 461ccd979bdSMark Fasheh eb = (struct ocfs2_extent_block *) bhs[i]->b_data; 462ccd979bdSMark Fasheh /* Ok, setup the minimal stuff here. */ 463ccd979bdSMark Fasheh strcpy(eb->h_signature, OCFS2_EXTENT_BLOCK_SIGNATURE); 464ccd979bdSMark Fasheh eb->h_blkno = cpu_to_le64(first_blkno); 465ccd979bdSMark Fasheh eb->h_fs_generation = cpu_to_le32(osb->fs_generation); 466ccd979bdSMark Fasheh eb->h_suballoc_slot = cpu_to_le16(osb->slot_num); 467ccd979bdSMark Fasheh eb->h_suballoc_bit = cpu_to_le16(suballoc_bit_start); 468ccd979bdSMark Fasheh eb->h_list.l_count = 469ccd979bdSMark Fasheh cpu_to_le16(ocfs2_extent_recs_per_eb(osb->sb)); 470ccd979bdSMark Fasheh 471ccd979bdSMark Fasheh suballoc_bit_start++; 472ccd979bdSMark Fasheh first_blkno++; 473ccd979bdSMark Fasheh 474ccd979bdSMark Fasheh /* We'll also be dirtied by the caller, so 475ccd979bdSMark Fasheh * this isn't absolutely necessary. */ 476ccd979bdSMark Fasheh status = ocfs2_journal_dirty(handle, bhs[i]); 477ccd979bdSMark Fasheh if (status < 0) { 478ccd979bdSMark Fasheh mlog_errno(status); 479ccd979bdSMark Fasheh goto bail; 480ccd979bdSMark Fasheh } 481ccd979bdSMark Fasheh } 482ccd979bdSMark Fasheh 483ccd979bdSMark Fasheh count += num_got; 484ccd979bdSMark Fasheh } 485ccd979bdSMark Fasheh 486ccd979bdSMark Fasheh status = 0; 487ccd979bdSMark Fasheh bail: 488ccd979bdSMark Fasheh if (status < 0) { 489ccd979bdSMark Fasheh for(i = 0; i < wanted; i++) { 490ccd979bdSMark Fasheh if (bhs[i]) 491ccd979bdSMark Fasheh brelse(bhs[i]); 492ccd979bdSMark Fasheh bhs[i] = NULL; 493ccd979bdSMark Fasheh } 494ccd979bdSMark Fasheh } 495ccd979bdSMark Fasheh mlog_exit(status); 496ccd979bdSMark Fasheh return status; 497ccd979bdSMark Fasheh } 498ccd979bdSMark Fasheh 499ccd979bdSMark Fasheh /* 500dcd0538fSMark Fasheh * Helper function for ocfs2_add_branch() and ocfs2_shift_tree_depth(). 501dcd0538fSMark Fasheh * 502dcd0538fSMark Fasheh * Returns the sum of the rightmost extent rec logical offset and 503dcd0538fSMark Fasheh * cluster count. 504dcd0538fSMark Fasheh * 505dcd0538fSMark Fasheh * ocfs2_add_branch() uses this to determine what logical cluster 506dcd0538fSMark Fasheh * value should be populated into the leftmost new branch records. 507dcd0538fSMark Fasheh * 508dcd0538fSMark Fasheh * ocfs2_shift_tree_depth() uses this to determine the # clusters 509dcd0538fSMark Fasheh * value for the new topmost tree record. 510dcd0538fSMark Fasheh */ 511dcd0538fSMark Fasheh static inline u32 ocfs2_sum_rightmost_rec(struct ocfs2_extent_list *el) 512dcd0538fSMark Fasheh { 513dcd0538fSMark Fasheh int i; 514dcd0538fSMark Fasheh 515dcd0538fSMark Fasheh i = le16_to_cpu(el->l_next_free_rec) - 1; 516dcd0538fSMark Fasheh 517dcd0538fSMark Fasheh return le32_to_cpu(el->l_recs[i].e_cpos) + 518e48edee2SMark Fasheh ocfs2_rec_clusters(el, &el->l_recs[i]); 519dcd0538fSMark Fasheh } 520dcd0538fSMark Fasheh 521dcd0538fSMark Fasheh /* 522ccd979bdSMark Fasheh * Add an entire tree branch to our inode. eb_bh is the extent block 523ccd979bdSMark Fasheh * to start at, if we don't want to start the branch at the dinode 524ccd979bdSMark Fasheh * structure. 525ccd979bdSMark Fasheh * 526ccd979bdSMark Fasheh * last_eb_bh is required as we have to update it's next_leaf pointer 527ccd979bdSMark Fasheh * for the new last extent block. 528ccd979bdSMark Fasheh * 529ccd979bdSMark Fasheh * the new branch will be 'empty' in the sense that every block will 530e48edee2SMark Fasheh * contain a single record with cluster count == 0. 531ccd979bdSMark Fasheh */ 532ccd979bdSMark Fasheh static int ocfs2_add_branch(struct ocfs2_super *osb, 5331fabe148SMark Fasheh handle_t *handle, 534ccd979bdSMark Fasheh struct inode *inode, 535ccd979bdSMark Fasheh struct buffer_head *fe_bh, 536ccd979bdSMark Fasheh struct buffer_head *eb_bh, 537328d5752SMark Fasheh struct buffer_head **last_eb_bh, 538ccd979bdSMark Fasheh struct ocfs2_alloc_context *meta_ac) 539ccd979bdSMark Fasheh { 540ccd979bdSMark Fasheh int status, new_blocks, i; 541ccd979bdSMark Fasheh u64 next_blkno, new_last_eb_blk; 542ccd979bdSMark Fasheh struct buffer_head *bh; 543ccd979bdSMark Fasheh struct buffer_head **new_eb_bhs = NULL; 544ccd979bdSMark Fasheh struct ocfs2_dinode *fe; 545ccd979bdSMark Fasheh struct ocfs2_extent_block *eb; 546ccd979bdSMark Fasheh struct ocfs2_extent_list *eb_el; 547ccd979bdSMark Fasheh struct ocfs2_extent_list *el; 548dcd0538fSMark Fasheh u32 new_cpos; 549ccd979bdSMark Fasheh 550ccd979bdSMark Fasheh mlog_entry_void(); 551ccd979bdSMark Fasheh 552328d5752SMark Fasheh BUG_ON(!last_eb_bh || !*last_eb_bh); 553ccd979bdSMark Fasheh 554ccd979bdSMark Fasheh fe = (struct ocfs2_dinode *) fe_bh->b_data; 555ccd979bdSMark Fasheh 556ccd979bdSMark Fasheh if (eb_bh) { 557ccd979bdSMark Fasheh eb = (struct ocfs2_extent_block *) eb_bh->b_data; 558ccd979bdSMark Fasheh el = &eb->h_list; 559ccd979bdSMark Fasheh } else 560ccd979bdSMark Fasheh el = &fe->id2.i_list; 561ccd979bdSMark Fasheh 562ccd979bdSMark Fasheh /* we never add a branch to a leaf. */ 563ccd979bdSMark Fasheh BUG_ON(!el->l_tree_depth); 564ccd979bdSMark Fasheh 565ccd979bdSMark Fasheh new_blocks = le16_to_cpu(el->l_tree_depth); 566ccd979bdSMark Fasheh 567ccd979bdSMark Fasheh /* allocate the number of new eb blocks we need */ 568ccd979bdSMark Fasheh new_eb_bhs = kcalloc(new_blocks, sizeof(struct buffer_head *), 569ccd979bdSMark Fasheh GFP_KERNEL); 570ccd979bdSMark Fasheh if (!new_eb_bhs) { 571ccd979bdSMark Fasheh status = -ENOMEM; 572ccd979bdSMark Fasheh mlog_errno(status); 573ccd979bdSMark Fasheh goto bail; 574ccd979bdSMark Fasheh } 575ccd979bdSMark Fasheh 576ccd979bdSMark Fasheh status = ocfs2_create_new_meta_bhs(osb, handle, inode, new_blocks, 577ccd979bdSMark Fasheh meta_ac, new_eb_bhs); 578ccd979bdSMark Fasheh if (status < 0) { 579ccd979bdSMark Fasheh mlog_errno(status); 580ccd979bdSMark Fasheh goto bail; 581ccd979bdSMark Fasheh } 582ccd979bdSMark Fasheh 583328d5752SMark Fasheh eb = (struct ocfs2_extent_block *)(*last_eb_bh)->b_data; 584dcd0538fSMark Fasheh new_cpos = ocfs2_sum_rightmost_rec(&eb->h_list); 585dcd0538fSMark Fasheh 586ccd979bdSMark Fasheh /* Note: new_eb_bhs[new_blocks - 1] is the guy which will be 587ccd979bdSMark Fasheh * linked with the rest of the tree. 588ccd979bdSMark Fasheh * conversly, new_eb_bhs[0] is the new bottommost leaf. 589ccd979bdSMark Fasheh * 590ccd979bdSMark Fasheh * when we leave the loop, new_last_eb_blk will point to the 591ccd979bdSMark Fasheh * newest leaf, and next_blkno will point to the topmost extent 592ccd979bdSMark Fasheh * block. */ 593ccd979bdSMark Fasheh next_blkno = new_last_eb_blk = 0; 594ccd979bdSMark Fasheh for(i = 0; i < new_blocks; i++) { 595ccd979bdSMark Fasheh bh = new_eb_bhs[i]; 596ccd979bdSMark Fasheh eb = (struct ocfs2_extent_block *) bh->b_data; 597ccd979bdSMark Fasheh if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) { 598ccd979bdSMark Fasheh OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb); 599ccd979bdSMark Fasheh status = -EIO; 600ccd979bdSMark Fasheh goto bail; 601ccd979bdSMark Fasheh } 602ccd979bdSMark Fasheh eb_el = &eb->h_list; 603ccd979bdSMark Fasheh 604ccd979bdSMark Fasheh status = ocfs2_journal_access(handle, inode, bh, 605ccd979bdSMark Fasheh OCFS2_JOURNAL_ACCESS_CREATE); 606ccd979bdSMark Fasheh if (status < 0) { 607ccd979bdSMark Fasheh mlog_errno(status); 608ccd979bdSMark Fasheh goto bail; 609ccd979bdSMark Fasheh } 610ccd979bdSMark Fasheh 611ccd979bdSMark Fasheh eb->h_next_leaf_blk = 0; 612ccd979bdSMark Fasheh eb_el->l_tree_depth = cpu_to_le16(i); 613ccd979bdSMark Fasheh eb_el->l_next_free_rec = cpu_to_le16(1); 614dcd0538fSMark Fasheh /* 615dcd0538fSMark Fasheh * This actually counts as an empty extent as 616dcd0538fSMark Fasheh * c_clusters == 0 617dcd0538fSMark Fasheh */ 618dcd0538fSMark Fasheh eb_el->l_recs[0].e_cpos = cpu_to_le32(new_cpos); 619ccd979bdSMark Fasheh eb_el->l_recs[0].e_blkno = cpu_to_le64(next_blkno); 620e48edee2SMark Fasheh /* 621e48edee2SMark Fasheh * eb_el isn't always an interior node, but even leaf 622e48edee2SMark Fasheh * nodes want a zero'd flags and reserved field so 623e48edee2SMark Fasheh * this gets the whole 32 bits regardless of use. 624e48edee2SMark Fasheh */ 625e48edee2SMark Fasheh eb_el->l_recs[0].e_int_clusters = cpu_to_le32(0); 626ccd979bdSMark Fasheh if (!eb_el->l_tree_depth) 627ccd979bdSMark Fasheh new_last_eb_blk = le64_to_cpu(eb->h_blkno); 628ccd979bdSMark Fasheh 629ccd979bdSMark Fasheh status = ocfs2_journal_dirty(handle, bh); 630ccd979bdSMark Fasheh if (status < 0) { 631ccd979bdSMark Fasheh mlog_errno(status); 632ccd979bdSMark Fasheh goto bail; 633ccd979bdSMark Fasheh } 634ccd979bdSMark Fasheh 635ccd979bdSMark Fasheh next_blkno = le64_to_cpu(eb->h_blkno); 636ccd979bdSMark Fasheh } 637ccd979bdSMark Fasheh 638ccd979bdSMark Fasheh /* This is a bit hairy. We want to update up to three blocks 639ccd979bdSMark Fasheh * here without leaving any of them in an inconsistent state 640ccd979bdSMark Fasheh * in case of error. We don't have to worry about 641ccd979bdSMark Fasheh * journal_dirty erroring as it won't unless we've aborted the 642ccd979bdSMark Fasheh * handle (in which case we would never be here) so reserving 643ccd979bdSMark Fasheh * the write with journal_access is all we need to do. */ 644328d5752SMark Fasheh status = ocfs2_journal_access(handle, inode, *last_eb_bh, 645ccd979bdSMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 646ccd979bdSMark Fasheh if (status < 0) { 647ccd979bdSMark Fasheh mlog_errno(status); 648ccd979bdSMark Fasheh goto bail; 649ccd979bdSMark Fasheh } 650ccd979bdSMark Fasheh status = ocfs2_journal_access(handle, inode, fe_bh, 651ccd979bdSMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 652ccd979bdSMark Fasheh if (status < 0) { 653ccd979bdSMark Fasheh mlog_errno(status); 654ccd979bdSMark Fasheh goto bail; 655ccd979bdSMark Fasheh } 656ccd979bdSMark Fasheh if (eb_bh) { 657ccd979bdSMark Fasheh status = ocfs2_journal_access(handle, inode, eb_bh, 658ccd979bdSMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 659ccd979bdSMark Fasheh if (status < 0) { 660ccd979bdSMark Fasheh mlog_errno(status); 661ccd979bdSMark Fasheh goto bail; 662ccd979bdSMark Fasheh } 663ccd979bdSMark Fasheh } 664ccd979bdSMark Fasheh 665ccd979bdSMark Fasheh /* Link the new branch into the rest of the tree (el will 666ccd979bdSMark Fasheh * either be on the fe, or the extent block passed in. */ 667ccd979bdSMark Fasheh i = le16_to_cpu(el->l_next_free_rec); 668ccd979bdSMark Fasheh el->l_recs[i].e_blkno = cpu_to_le64(next_blkno); 669dcd0538fSMark Fasheh el->l_recs[i].e_cpos = cpu_to_le32(new_cpos); 670e48edee2SMark Fasheh el->l_recs[i].e_int_clusters = 0; 671ccd979bdSMark Fasheh le16_add_cpu(&el->l_next_free_rec, 1); 672ccd979bdSMark Fasheh 673ccd979bdSMark Fasheh /* fe needs a new last extent block pointer, as does the 674ccd979bdSMark Fasheh * next_leaf on the previously last-extent-block. */ 675ccd979bdSMark Fasheh fe->i_last_eb_blk = cpu_to_le64(new_last_eb_blk); 676ccd979bdSMark Fasheh 677328d5752SMark Fasheh eb = (struct ocfs2_extent_block *) (*last_eb_bh)->b_data; 678ccd979bdSMark Fasheh eb->h_next_leaf_blk = cpu_to_le64(new_last_eb_blk); 679ccd979bdSMark Fasheh 680328d5752SMark Fasheh status = ocfs2_journal_dirty(handle, *last_eb_bh); 681ccd979bdSMark Fasheh if (status < 0) 682ccd979bdSMark Fasheh mlog_errno(status); 683ccd979bdSMark Fasheh status = ocfs2_journal_dirty(handle, fe_bh); 684ccd979bdSMark Fasheh if (status < 0) 685ccd979bdSMark Fasheh mlog_errno(status); 686ccd979bdSMark Fasheh if (eb_bh) { 687ccd979bdSMark Fasheh status = ocfs2_journal_dirty(handle, eb_bh); 688ccd979bdSMark Fasheh if (status < 0) 689ccd979bdSMark Fasheh mlog_errno(status); 690ccd979bdSMark Fasheh } 691ccd979bdSMark Fasheh 692328d5752SMark Fasheh /* 693328d5752SMark Fasheh * Some callers want to track the rightmost leaf so pass it 694328d5752SMark Fasheh * back here. 695328d5752SMark Fasheh */ 696328d5752SMark Fasheh brelse(*last_eb_bh); 697328d5752SMark Fasheh get_bh(new_eb_bhs[0]); 698328d5752SMark Fasheh *last_eb_bh = new_eb_bhs[0]; 699328d5752SMark Fasheh 700ccd979bdSMark Fasheh status = 0; 701ccd979bdSMark Fasheh bail: 702ccd979bdSMark Fasheh if (new_eb_bhs) { 703ccd979bdSMark Fasheh for (i = 0; i < new_blocks; i++) 704ccd979bdSMark Fasheh if (new_eb_bhs[i]) 705ccd979bdSMark Fasheh brelse(new_eb_bhs[i]); 706ccd979bdSMark Fasheh kfree(new_eb_bhs); 707ccd979bdSMark Fasheh } 708ccd979bdSMark Fasheh 709ccd979bdSMark Fasheh mlog_exit(status); 710ccd979bdSMark Fasheh return status; 711ccd979bdSMark Fasheh } 712ccd979bdSMark Fasheh 713ccd979bdSMark Fasheh /* 714ccd979bdSMark Fasheh * adds another level to the allocation tree. 715ccd979bdSMark Fasheh * returns back the new extent block so you can add a branch to it 716ccd979bdSMark Fasheh * after this call. 717ccd979bdSMark Fasheh */ 718ccd979bdSMark Fasheh static int ocfs2_shift_tree_depth(struct ocfs2_super *osb, 7191fabe148SMark Fasheh handle_t *handle, 720ccd979bdSMark Fasheh struct inode *inode, 721ccd979bdSMark Fasheh struct buffer_head *fe_bh, 722ccd979bdSMark Fasheh struct ocfs2_alloc_context *meta_ac, 723ccd979bdSMark Fasheh struct buffer_head **ret_new_eb_bh) 724ccd979bdSMark Fasheh { 725ccd979bdSMark Fasheh int status, i; 726dcd0538fSMark Fasheh u32 new_clusters; 727ccd979bdSMark Fasheh struct buffer_head *new_eb_bh = NULL; 728ccd979bdSMark Fasheh struct ocfs2_dinode *fe; 729ccd979bdSMark Fasheh struct ocfs2_extent_block *eb; 730ccd979bdSMark Fasheh struct ocfs2_extent_list *fe_el; 731ccd979bdSMark Fasheh struct ocfs2_extent_list *eb_el; 732ccd979bdSMark Fasheh 733ccd979bdSMark Fasheh mlog_entry_void(); 734ccd979bdSMark Fasheh 735ccd979bdSMark Fasheh status = ocfs2_create_new_meta_bhs(osb, handle, inode, 1, meta_ac, 736ccd979bdSMark Fasheh &new_eb_bh); 737ccd979bdSMark Fasheh if (status < 0) { 738ccd979bdSMark Fasheh mlog_errno(status); 739ccd979bdSMark Fasheh goto bail; 740ccd979bdSMark Fasheh } 741ccd979bdSMark Fasheh 742ccd979bdSMark Fasheh eb = (struct ocfs2_extent_block *) new_eb_bh->b_data; 743ccd979bdSMark Fasheh if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) { 744ccd979bdSMark Fasheh OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb); 745ccd979bdSMark Fasheh status = -EIO; 746ccd979bdSMark Fasheh goto bail; 747ccd979bdSMark Fasheh } 748ccd979bdSMark Fasheh 749ccd979bdSMark Fasheh eb_el = &eb->h_list; 750ccd979bdSMark Fasheh fe = (struct ocfs2_dinode *) fe_bh->b_data; 751ccd979bdSMark Fasheh fe_el = &fe->id2.i_list; 752ccd979bdSMark Fasheh 753ccd979bdSMark Fasheh status = ocfs2_journal_access(handle, inode, new_eb_bh, 754ccd979bdSMark Fasheh OCFS2_JOURNAL_ACCESS_CREATE); 755ccd979bdSMark Fasheh if (status < 0) { 756ccd979bdSMark Fasheh mlog_errno(status); 757ccd979bdSMark Fasheh goto bail; 758ccd979bdSMark Fasheh } 759ccd979bdSMark Fasheh 760ccd979bdSMark Fasheh /* copy the fe data into the new extent block */ 761ccd979bdSMark Fasheh eb_el->l_tree_depth = fe_el->l_tree_depth; 762ccd979bdSMark Fasheh eb_el->l_next_free_rec = fe_el->l_next_free_rec; 763e48edee2SMark Fasheh for(i = 0; i < le16_to_cpu(fe_el->l_next_free_rec); i++) 764e48edee2SMark Fasheh eb_el->l_recs[i] = fe_el->l_recs[i]; 765ccd979bdSMark Fasheh 766ccd979bdSMark Fasheh status = ocfs2_journal_dirty(handle, new_eb_bh); 767ccd979bdSMark Fasheh if (status < 0) { 768ccd979bdSMark Fasheh mlog_errno(status); 769ccd979bdSMark Fasheh goto bail; 770ccd979bdSMark Fasheh } 771ccd979bdSMark Fasheh 772ccd979bdSMark Fasheh status = ocfs2_journal_access(handle, inode, fe_bh, 773ccd979bdSMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 774ccd979bdSMark Fasheh if (status < 0) { 775ccd979bdSMark Fasheh mlog_errno(status); 776ccd979bdSMark Fasheh goto bail; 777ccd979bdSMark Fasheh } 778ccd979bdSMark Fasheh 779dcd0538fSMark Fasheh new_clusters = ocfs2_sum_rightmost_rec(eb_el); 780dcd0538fSMark Fasheh 781ccd979bdSMark Fasheh /* update fe now */ 782ccd979bdSMark Fasheh le16_add_cpu(&fe_el->l_tree_depth, 1); 783ccd979bdSMark Fasheh fe_el->l_recs[0].e_cpos = 0; 784ccd979bdSMark Fasheh fe_el->l_recs[0].e_blkno = eb->h_blkno; 785e48edee2SMark Fasheh fe_el->l_recs[0].e_int_clusters = cpu_to_le32(new_clusters); 786e48edee2SMark Fasheh for(i = 1; i < le16_to_cpu(fe_el->l_next_free_rec); i++) 787e48edee2SMark Fasheh memset(&fe_el->l_recs[i], 0, sizeof(struct ocfs2_extent_rec)); 788ccd979bdSMark Fasheh fe_el->l_next_free_rec = cpu_to_le16(1); 789ccd979bdSMark Fasheh 790ccd979bdSMark Fasheh /* If this is our 1st tree depth shift, then last_eb_blk 791ccd979bdSMark Fasheh * becomes the allocated extent block */ 792ccd979bdSMark Fasheh if (fe_el->l_tree_depth == cpu_to_le16(1)) 793ccd979bdSMark Fasheh fe->i_last_eb_blk = eb->h_blkno; 794ccd979bdSMark Fasheh 795ccd979bdSMark Fasheh status = ocfs2_journal_dirty(handle, fe_bh); 796ccd979bdSMark Fasheh if (status < 0) { 797ccd979bdSMark Fasheh mlog_errno(status); 798ccd979bdSMark Fasheh goto bail; 799ccd979bdSMark Fasheh } 800ccd979bdSMark Fasheh 801ccd979bdSMark Fasheh *ret_new_eb_bh = new_eb_bh; 802ccd979bdSMark Fasheh new_eb_bh = NULL; 803ccd979bdSMark Fasheh status = 0; 804ccd979bdSMark Fasheh bail: 805ccd979bdSMark Fasheh if (new_eb_bh) 806ccd979bdSMark Fasheh brelse(new_eb_bh); 807ccd979bdSMark Fasheh 808ccd979bdSMark Fasheh mlog_exit(status); 809ccd979bdSMark Fasheh return status; 810ccd979bdSMark Fasheh } 811ccd979bdSMark Fasheh 812ccd979bdSMark Fasheh /* 813ccd979bdSMark Fasheh * Should only be called when there is no space left in any of the 814ccd979bdSMark Fasheh * leaf nodes. What we want to do is find the lowest tree depth 815ccd979bdSMark Fasheh * non-leaf extent block with room for new records. There are three 816ccd979bdSMark Fasheh * valid results of this search: 817ccd979bdSMark Fasheh * 818ccd979bdSMark Fasheh * 1) a lowest extent block is found, then we pass it back in 819ccd979bdSMark Fasheh * *lowest_eb_bh and return '0' 820ccd979bdSMark Fasheh * 821ccd979bdSMark Fasheh * 2) the search fails to find anything, but the dinode has room. We 822ccd979bdSMark Fasheh * pass NULL back in *lowest_eb_bh, but still return '0' 823ccd979bdSMark Fasheh * 824ccd979bdSMark Fasheh * 3) the search fails to find anything AND the dinode is full, in 825ccd979bdSMark Fasheh * which case we return > 0 826ccd979bdSMark Fasheh * 827ccd979bdSMark Fasheh * return status < 0 indicates an error. 828ccd979bdSMark Fasheh */ 829ccd979bdSMark Fasheh static int ocfs2_find_branch_target(struct ocfs2_super *osb, 830ccd979bdSMark Fasheh struct inode *inode, 831ccd979bdSMark Fasheh struct buffer_head *fe_bh, 832ccd979bdSMark Fasheh struct buffer_head **target_bh) 833ccd979bdSMark Fasheh { 834ccd979bdSMark Fasheh int status = 0, i; 835ccd979bdSMark Fasheh u64 blkno; 836ccd979bdSMark Fasheh struct ocfs2_dinode *fe; 837ccd979bdSMark Fasheh struct ocfs2_extent_block *eb; 838ccd979bdSMark Fasheh struct ocfs2_extent_list *el; 839ccd979bdSMark Fasheh struct buffer_head *bh = NULL; 840ccd979bdSMark Fasheh struct buffer_head *lowest_bh = NULL; 841ccd979bdSMark Fasheh 842ccd979bdSMark Fasheh mlog_entry_void(); 843ccd979bdSMark Fasheh 844ccd979bdSMark Fasheh *target_bh = NULL; 845ccd979bdSMark Fasheh 846ccd979bdSMark Fasheh fe = (struct ocfs2_dinode *) fe_bh->b_data; 847ccd979bdSMark Fasheh el = &fe->id2.i_list; 848ccd979bdSMark Fasheh 849ccd979bdSMark Fasheh while(le16_to_cpu(el->l_tree_depth) > 1) { 850ccd979bdSMark Fasheh if (le16_to_cpu(el->l_next_free_rec) == 0) { 851b0697053SMark Fasheh ocfs2_error(inode->i_sb, "Dinode %llu has empty " 852ccd979bdSMark Fasheh "extent list (next_free_rec == 0)", 853b0697053SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno); 854ccd979bdSMark Fasheh status = -EIO; 855ccd979bdSMark Fasheh goto bail; 856ccd979bdSMark Fasheh } 857ccd979bdSMark Fasheh i = le16_to_cpu(el->l_next_free_rec) - 1; 858ccd979bdSMark Fasheh blkno = le64_to_cpu(el->l_recs[i].e_blkno); 859ccd979bdSMark Fasheh if (!blkno) { 860b0697053SMark Fasheh ocfs2_error(inode->i_sb, "Dinode %llu has extent " 861ccd979bdSMark Fasheh "list where extent # %d has no physical " 862ccd979bdSMark Fasheh "block start", 863b0697053SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno, i); 864ccd979bdSMark Fasheh status = -EIO; 865ccd979bdSMark Fasheh goto bail; 866ccd979bdSMark Fasheh } 867ccd979bdSMark Fasheh 868ccd979bdSMark Fasheh if (bh) { 869ccd979bdSMark Fasheh brelse(bh); 870ccd979bdSMark Fasheh bh = NULL; 871ccd979bdSMark Fasheh } 872ccd979bdSMark Fasheh 873ccd979bdSMark Fasheh status = ocfs2_read_block(osb, blkno, &bh, OCFS2_BH_CACHED, 874ccd979bdSMark Fasheh inode); 875ccd979bdSMark Fasheh if (status < 0) { 876ccd979bdSMark Fasheh mlog_errno(status); 877ccd979bdSMark Fasheh goto bail; 878ccd979bdSMark Fasheh } 879ccd979bdSMark Fasheh 880ccd979bdSMark Fasheh eb = (struct ocfs2_extent_block *) bh->b_data; 881ccd979bdSMark Fasheh if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) { 882ccd979bdSMark Fasheh OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb); 883ccd979bdSMark Fasheh status = -EIO; 884ccd979bdSMark Fasheh goto bail; 885ccd979bdSMark Fasheh } 886ccd979bdSMark Fasheh el = &eb->h_list; 887ccd979bdSMark Fasheh 888ccd979bdSMark Fasheh if (le16_to_cpu(el->l_next_free_rec) < 889ccd979bdSMark Fasheh le16_to_cpu(el->l_count)) { 890ccd979bdSMark Fasheh if (lowest_bh) 891ccd979bdSMark Fasheh brelse(lowest_bh); 892ccd979bdSMark Fasheh lowest_bh = bh; 893ccd979bdSMark Fasheh get_bh(lowest_bh); 894ccd979bdSMark Fasheh } 895ccd979bdSMark Fasheh } 896ccd979bdSMark Fasheh 897ccd979bdSMark Fasheh /* If we didn't find one and the fe doesn't have any room, 898ccd979bdSMark Fasheh * then return '1' */ 899ccd979bdSMark Fasheh if (!lowest_bh 900ccd979bdSMark Fasheh && (fe->id2.i_list.l_next_free_rec == fe->id2.i_list.l_count)) 901ccd979bdSMark Fasheh status = 1; 902ccd979bdSMark Fasheh 903ccd979bdSMark Fasheh *target_bh = lowest_bh; 904ccd979bdSMark Fasheh bail: 905ccd979bdSMark Fasheh if (bh) 906ccd979bdSMark Fasheh brelse(bh); 907ccd979bdSMark Fasheh 908ccd979bdSMark Fasheh mlog_exit(status); 909ccd979bdSMark Fasheh return status; 910ccd979bdSMark Fasheh } 911ccd979bdSMark Fasheh 912e48edee2SMark Fasheh /* 913c3afcbb3SMark Fasheh * Grow a b-tree so that it has more records. 914c3afcbb3SMark Fasheh * 915c3afcbb3SMark Fasheh * We might shift the tree depth in which case existing paths should 916c3afcbb3SMark Fasheh * be considered invalid. 917c3afcbb3SMark Fasheh * 918c3afcbb3SMark Fasheh * Tree depth after the grow is returned via *final_depth. 919328d5752SMark Fasheh * 920328d5752SMark Fasheh * *last_eb_bh will be updated by ocfs2_add_branch(). 921c3afcbb3SMark Fasheh */ 922c3afcbb3SMark Fasheh static int ocfs2_grow_tree(struct inode *inode, handle_t *handle, 923c3afcbb3SMark Fasheh struct buffer_head *di_bh, int *final_depth, 924328d5752SMark Fasheh struct buffer_head **last_eb_bh, 925c3afcbb3SMark Fasheh struct ocfs2_alloc_context *meta_ac) 926c3afcbb3SMark Fasheh { 927c3afcbb3SMark Fasheh int ret, shift; 928c3afcbb3SMark Fasheh struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data; 929c3afcbb3SMark Fasheh int depth = le16_to_cpu(di->id2.i_list.l_tree_depth); 930c3afcbb3SMark Fasheh struct ocfs2_super *osb = OCFS2_SB(inode->i_sb); 931c3afcbb3SMark Fasheh struct buffer_head *bh = NULL; 932c3afcbb3SMark Fasheh 933c3afcbb3SMark Fasheh BUG_ON(meta_ac == NULL); 934c3afcbb3SMark Fasheh 935c3afcbb3SMark Fasheh shift = ocfs2_find_branch_target(osb, inode, di_bh, &bh); 936c3afcbb3SMark Fasheh if (shift < 0) { 937c3afcbb3SMark Fasheh ret = shift; 938c3afcbb3SMark Fasheh mlog_errno(ret); 939c3afcbb3SMark Fasheh goto out; 940c3afcbb3SMark Fasheh } 941c3afcbb3SMark Fasheh 942c3afcbb3SMark Fasheh /* We traveled all the way to the bottom of the allocation tree 943c3afcbb3SMark Fasheh * and didn't find room for any more extents - we need to add 944c3afcbb3SMark Fasheh * another tree level */ 945c3afcbb3SMark Fasheh if (shift) { 946c3afcbb3SMark Fasheh BUG_ON(bh); 947c3afcbb3SMark Fasheh mlog(0, "need to shift tree depth (current = %d)\n", depth); 948c3afcbb3SMark Fasheh 949c3afcbb3SMark Fasheh /* ocfs2_shift_tree_depth will return us a buffer with 950c3afcbb3SMark Fasheh * the new extent block (so we can pass that to 951c3afcbb3SMark Fasheh * ocfs2_add_branch). */ 952c3afcbb3SMark Fasheh ret = ocfs2_shift_tree_depth(osb, handle, inode, di_bh, 953c3afcbb3SMark Fasheh meta_ac, &bh); 954c3afcbb3SMark Fasheh if (ret < 0) { 955c3afcbb3SMark Fasheh mlog_errno(ret); 956c3afcbb3SMark Fasheh goto out; 957c3afcbb3SMark Fasheh } 958c3afcbb3SMark Fasheh depth++; 959328d5752SMark Fasheh if (depth == 1) { 960328d5752SMark Fasheh /* 961328d5752SMark Fasheh * Special case: we have room now if we shifted from 962328d5752SMark Fasheh * tree_depth 0, so no more work needs to be done. 963328d5752SMark Fasheh * 964328d5752SMark Fasheh * We won't be calling add_branch, so pass 965328d5752SMark Fasheh * back *last_eb_bh as the new leaf. At depth 966328d5752SMark Fasheh * zero, it should always be null so there's 967328d5752SMark Fasheh * no reason to brelse. 968328d5752SMark Fasheh */ 969328d5752SMark Fasheh BUG_ON(*last_eb_bh); 970328d5752SMark Fasheh get_bh(bh); 971328d5752SMark Fasheh *last_eb_bh = bh; 972c3afcbb3SMark Fasheh goto out; 973c3afcbb3SMark Fasheh } 974328d5752SMark Fasheh } 975c3afcbb3SMark Fasheh 976c3afcbb3SMark Fasheh /* call ocfs2_add_branch to add the final part of the tree with 977c3afcbb3SMark Fasheh * the new data. */ 978c3afcbb3SMark Fasheh mlog(0, "add branch. bh = %p\n", bh); 979c3afcbb3SMark Fasheh ret = ocfs2_add_branch(osb, handle, inode, di_bh, bh, last_eb_bh, 980c3afcbb3SMark Fasheh meta_ac); 981c3afcbb3SMark Fasheh if (ret < 0) { 982c3afcbb3SMark Fasheh mlog_errno(ret); 983c3afcbb3SMark Fasheh goto out; 984c3afcbb3SMark Fasheh } 985c3afcbb3SMark Fasheh 986c3afcbb3SMark Fasheh out: 987c3afcbb3SMark Fasheh if (final_depth) 988c3afcbb3SMark Fasheh *final_depth = depth; 989c3afcbb3SMark Fasheh brelse(bh); 990c3afcbb3SMark Fasheh return ret; 991c3afcbb3SMark Fasheh } 992c3afcbb3SMark Fasheh 993c3afcbb3SMark Fasheh /* 994e48edee2SMark Fasheh * This is only valid for leaf nodes, which are the only ones that can 995e48edee2SMark Fasheh * have empty extents anyway. 996e48edee2SMark Fasheh */ 997dcd0538fSMark Fasheh static inline int ocfs2_is_empty_extent(struct ocfs2_extent_rec *rec) 998dcd0538fSMark Fasheh { 999e48edee2SMark Fasheh return !rec->e_leaf_clusters; 1000dcd0538fSMark Fasheh } 1001dcd0538fSMark Fasheh 1002dcd0538fSMark Fasheh /* 1003dcd0538fSMark Fasheh * This function will discard the rightmost extent record. 1004dcd0538fSMark Fasheh */ 1005dcd0538fSMark Fasheh static void ocfs2_shift_records_right(struct ocfs2_extent_list *el) 1006dcd0538fSMark Fasheh { 1007dcd0538fSMark Fasheh int next_free = le16_to_cpu(el->l_next_free_rec); 1008dcd0538fSMark Fasheh int count = le16_to_cpu(el->l_count); 1009dcd0538fSMark Fasheh unsigned int num_bytes; 1010dcd0538fSMark Fasheh 1011dcd0538fSMark Fasheh BUG_ON(!next_free); 1012dcd0538fSMark Fasheh /* This will cause us to go off the end of our extent list. */ 1013dcd0538fSMark Fasheh BUG_ON(next_free >= count); 1014dcd0538fSMark Fasheh 1015dcd0538fSMark Fasheh num_bytes = sizeof(struct ocfs2_extent_rec) * next_free; 1016dcd0538fSMark Fasheh 1017dcd0538fSMark Fasheh memmove(&el->l_recs[1], &el->l_recs[0], num_bytes); 1018dcd0538fSMark Fasheh } 1019dcd0538fSMark Fasheh 1020dcd0538fSMark Fasheh static void ocfs2_rotate_leaf(struct ocfs2_extent_list *el, 1021dcd0538fSMark Fasheh struct ocfs2_extent_rec *insert_rec) 1022dcd0538fSMark Fasheh { 1023dcd0538fSMark Fasheh int i, insert_index, next_free, has_empty, num_bytes; 1024dcd0538fSMark Fasheh u32 insert_cpos = le32_to_cpu(insert_rec->e_cpos); 1025dcd0538fSMark Fasheh struct ocfs2_extent_rec *rec; 1026dcd0538fSMark Fasheh 1027dcd0538fSMark Fasheh next_free = le16_to_cpu(el->l_next_free_rec); 1028dcd0538fSMark Fasheh has_empty = ocfs2_is_empty_extent(&el->l_recs[0]); 1029dcd0538fSMark Fasheh 1030dcd0538fSMark Fasheh BUG_ON(!next_free); 1031dcd0538fSMark Fasheh 1032dcd0538fSMark Fasheh /* The tree code before us didn't allow enough room in the leaf. */ 1033dcd0538fSMark Fasheh if (el->l_next_free_rec == el->l_count && !has_empty) 1034dcd0538fSMark Fasheh BUG(); 1035dcd0538fSMark Fasheh 1036dcd0538fSMark Fasheh /* 1037dcd0538fSMark Fasheh * The easiest way to approach this is to just remove the 1038dcd0538fSMark Fasheh * empty extent and temporarily decrement next_free. 1039dcd0538fSMark Fasheh */ 1040dcd0538fSMark Fasheh if (has_empty) { 1041dcd0538fSMark Fasheh /* 1042dcd0538fSMark Fasheh * If next_free was 1 (only an empty extent), this 1043dcd0538fSMark Fasheh * loop won't execute, which is fine. We still want 1044dcd0538fSMark Fasheh * the decrement above to happen. 1045dcd0538fSMark Fasheh */ 1046dcd0538fSMark Fasheh for(i = 0; i < (next_free - 1); i++) 1047dcd0538fSMark Fasheh el->l_recs[i] = el->l_recs[i+1]; 1048dcd0538fSMark Fasheh 1049dcd0538fSMark Fasheh next_free--; 1050dcd0538fSMark Fasheh } 1051dcd0538fSMark Fasheh 1052dcd0538fSMark Fasheh /* 1053dcd0538fSMark Fasheh * Figure out what the new record index should be. 1054dcd0538fSMark Fasheh */ 1055dcd0538fSMark Fasheh for(i = 0; i < next_free; i++) { 1056dcd0538fSMark Fasheh rec = &el->l_recs[i]; 1057dcd0538fSMark Fasheh 1058dcd0538fSMark Fasheh if (insert_cpos < le32_to_cpu(rec->e_cpos)) 1059dcd0538fSMark Fasheh break; 1060dcd0538fSMark Fasheh } 1061dcd0538fSMark Fasheh insert_index = i; 1062dcd0538fSMark Fasheh 1063dcd0538fSMark Fasheh mlog(0, "ins %u: index %d, has_empty %d, next_free %d, count %d\n", 1064dcd0538fSMark Fasheh insert_cpos, insert_index, has_empty, next_free, le16_to_cpu(el->l_count)); 1065dcd0538fSMark Fasheh 1066dcd0538fSMark Fasheh BUG_ON(insert_index < 0); 1067dcd0538fSMark Fasheh BUG_ON(insert_index >= le16_to_cpu(el->l_count)); 1068dcd0538fSMark Fasheh BUG_ON(insert_index > next_free); 1069dcd0538fSMark Fasheh 1070dcd0538fSMark Fasheh /* 1071dcd0538fSMark Fasheh * No need to memmove if we're just adding to the tail. 1072dcd0538fSMark Fasheh */ 1073dcd0538fSMark Fasheh if (insert_index != next_free) { 1074dcd0538fSMark Fasheh BUG_ON(next_free >= le16_to_cpu(el->l_count)); 1075dcd0538fSMark Fasheh 1076dcd0538fSMark Fasheh num_bytes = next_free - insert_index; 1077dcd0538fSMark Fasheh num_bytes *= sizeof(struct ocfs2_extent_rec); 1078dcd0538fSMark Fasheh memmove(&el->l_recs[insert_index + 1], 1079dcd0538fSMark Fasheh &el->l_recs[insert_index], 1080dcd0538fSMark Fasheh num_bytes); 1081dcd0538fSMark Fasheh } 1082dcd0538fSMark Fasheh 1083dcd0538fSMark Fasheh /* 1084dcd0538fSMark Fasheh * Either we had an empty extent, and need to re-increment or 1085dcd0538fSMark Fasheh * there was no empty extent on a non full rightmost leaf node, 1086dcd0538fSMark Fasheh * in which case we still need to increment. 1087dcd0538fSMark Fasheh */ 1088dcd0538fSMark Fasheh next_free++; 1089dcd0538fSMark Fasheh el->l_next_free_rec = cpu_to_le16(next_free); 1090dcd0538fSMark Fasheh /* 1091dcd0538fSMark Fasheh * Make sure none of the math above just messed up our tree. 1092dcd0538fSMark Fasheh */ 1093dcd0538fSMark Fasheh BUG_ON(le16_to_cpu(el->l_next_free_rec) > le16_to_cpu(el->l_count)); 1094dcd0538fSMark Fasheh 1095dcd0538fSMark Fasheh el->l_recs[insert_index] = *insert_rec; 1096dcd0538fSMark Fasheh 1097dcd0538fSMark Fasheh } 1098dcd0538fSMark Fasheh 1099328d5752SMark Fasheh static void ocfs2_remove_empty_extent(struct ocfs2_extent_list *el) 1100328d5752SMark Fasheh { 1101328d5752SMark Fasheh int size, num_recs = le16_to_cpu(el->l_next_free_rec); 1102328d5752SMark Fasheh 1103328d5752SMark Fasheh BUG_ON(num_recs == 0); 1104328d5752SMark Fasheh 1105328d5752SMark Fasheh if (ocfs2_is_empty_extent(&el->l_recs[0])) { 1106328d5752SMark Fasheh num_recs--; 1107328d5752SMark Fasheh size = num_recs * sizeof(struct ocfs2_extent_rec); 1108328d5752SMark Fasheh memmove(&el->l_recs[0], &el->l_recs[1], size); 1109328d5752SMark Fasheh memset(&el->l_recs[num_recs], 0, 1110328d5752SMark Fasheh sizeof(struct ocfs2_extent_rec)); 1111328d5752SMark Fasheh el->l_next_free_rec = cpu_to_le16(num_recs); 1112328d5752SMark Fasheh } 1113328d5752SMark Fasheh } 1114328d5752SMark Fasheh 1115dcd0538fSMark Fasheh /* 1116dcd0538fSMark Fasheh * Create an empty extent record . 1117dcd0538fSMark Fasheh * 1118dcd0538fSMark Fasheh * l_next_free_rec may be updated. 1119dcd0538fSMark Fasheh * 1120dcd0538fSMark Fasheh * If an empty extent already exists do nothing. 1121dcd0538fSMark Fasheh */ 1122dcd0538fSMark Fasheh static void ocfs2_create_empty_extent(struct ocfs2_extent_list *el) 1123dcd0538fSMark Fasheh { 1124dcd0538fSMark Fasheh int next_free = le16_to_cpu(el->l_next_free_rec); 1125dcd0538fSMark Fasheh 1126e48edee2SMark Fasheh BUG_ON(le16_to_cpu(el->l_tree_depth) != 0); 1127e48edee2SMark Fasheh 1128dcd0538fSMark Fasheh if (next_free == 0) 1129dcd0538fSMark Fasheh goto set_and_inc; 1130dcd0538fSMark Fasheh 1131dcd0538fSMark Fasheh if (ocfs2_is_empty_extent(&el->l_recs[0])) 1132dcd0538fSMark Fasheh return; 1133dcd0538fSMark Fasheh 1134dcd0538fSMark Fasheh mlog_bug_on_msg(el->l_count == el->l_next_free_rec, 1135dcd0538fSMark Fasheh "Asked to create an empty extent in a full list:\n" 1136dcd0538fSMark Fasheh "count = %u, tree depth = %u", 1137dcd0538fSMark Fasheh le16_to_cpu(el->l_count), 1138dcd0538fSMark Fasheh le16_to_cpu(el->l_tree_depth)); 1139dcd0538fSMark Fasheh 1140dcd0538fSMark Fasheh ocfs2_shift_records_right(el); 1141dcd0538fSMark Fasheh 1142dcd0538fSMark Fasheh set_and_inc: 1143dcd0538fSMark Fasheh le16_add_cpu(&el->l_next_free_rec, 1); 1144dcd0538fSMark Fasheh memset(&el->l_recs[0], 0, sizeof(struct ocfs2_extent_rec)); 1145dcd0538fSMark Fasheh } 1146dcd0538fSMark Fasheh 1147dcd0538fSMark Fasheh /* 1148dcd0538fSMark Fasheh * For a rotation which involves two leaf nodes, the "root node" is 1149dcd0538fSMark Fasheh * the lowest level tree node which contains a path to both leafs. This 1150dcd0538fSMark Fasheh * resulting set of information can be used to form a complete "subtree" 1151dcd0538fSMark Fasheh * 1152dcd0538fSMark Fasheh * This function is passed two full paths from the dinode down to a 1153dcd0538fSMark Fasheh * pair of adjacent leaves. It's task is to figure out which path 1154dcd0538fSMark Fasheh * index contains the subtree root - this can be the root index itself 1155dcd0538fSMark Fasheh * in a worst-case rotation. 1156dcd0538fSMark Fasheh * 1157dcd0538fSMark Fasheh * The array index of the subtree root is passed back. 1158dcd0538fSMark Fasheh */ 1159dcd0538fSMark Fasheh static int ocfs2_find_subtree_root(struct inode *inode, 1160dcd0538fSMark Fasheh struct ocfs2_path *left, 1161dcd0538fSMark Fasheh struct ocfs2_path *right) 1162dcd0538fSMark Fasheh { 1163dcd0538fSMark Fasheh int i = 0; 1164dcd0538fSMark Fasheh 1165dcd0538fSMark Fasheh /* 1166dcd0538fSMark Fasheh * Check that the caller passed in two paths from the same tree. 1167dcd0538fSMark Fasheh */ 1168dcd0538fSMark Fasheh BUG_ON(path_root_bh(left) != path_root_bh(right)); 1169dcd0538fSMark Fasheh 1170dcd0538fSMark Fasheh do { 1171dcd0538fSMark Fasheh i++; 1172dcd0538fSMark Fasheh 1173dcd0538fSMark Fasheh /* 1174dcd0538fSMark Fasheh * The caller didn't pass two adjacent paths. 1175dcd0538fSMark Fasheh */ 1176dcd0538fSMark Fasheh mlog_bug_on_msg(i > left->p_tree_depth, 1177dcd0538fSMark Fasheh "Inode %lu, left depth %u, right depth %u\n" 1178dcd0538fSMark Fasheh "left leaf blk %llu, right leaf blk %llu\n", 1179dcd0538fSMark Fasheh inode->i_ino, left->p_tree_depth, 1180dcd0538fSMark Fasheh right->p_tree_depth, 1181dcd0538fSMark Fasheh (unsigned long long)path_leaf_bh(left)->b_blocknr, 1182dcd0538fSMark Fasheh (unsigned long long)path_leaf_bh(right)->b_blocknr); 1183dcd0538fSMark Fasheh } while (left->p_node[i].bh->b_blocknr == 1184dcd0538fSMark Fasheh right->p_node[i].bh->b_blocknr); 1185dcd0538fSMark Fasheh 1186dcd0538fSMark Fasheh return i - 1; 1187dcd0538fSMark Fasheh } 1188dcd0538fSMark Fasheh 1189dcd0538fSMark Fasheh typedef void (path_insert_t)(void *, struct buffer_head *); 1190dcd0538fSMark Fasheh 1191dcd0538fSMark Fasheh /* 1192dcd0538fSMark Fasheh * Traverse a btree path in search of cpos, starting at root_el. 1193dcd0538fSMark Fasheh * 1194dcd0538fSMark Fasheh * This code can be called with a cpos larger than the tree, in which 1195dcd0538fSMark Fasheh * case it will return the rightmost path. 1196dcd0538fSMark Fasheh */ 1197dcd0538fSMark Fasheh static int __ocfs2_find_path(struct inode *inode, 1198dcd0538fSMark Fasheh struct ocfs2_extent_list *root_el, u32 cpos, 1199dcd0538fSMark Fasheh path_insert_t *func, void *data) 1200dcd0538fSMark Fasheh { 1201dcd0538fSMark Fasheh int i, ret = 0; 1202dcd0538fSMark Fasheh u32 range; 1203dcd0538fSMark Fasheh u64 blkno; 1204dcd0538fSMark Fasheh struct buffer_head *bh = NULL; 1205dcd0538fSMark Fasheh struct ocfs2_extent_block *eb; 1206dcd0538fSMark Fasheh struct ocfs2_extent_list *el; 1207dcd0538fSMark Fasheh struct ocfs2_extent_rec *rec; 1208dcd0538fSMark Fasheh struct ocfs2_inode_info *oi = OCFS2_I(inode); 1209dcd0538fSMark Fasheh 1210dcd0538fSMark Fasheh el = root_el; 1211dcd0538fSMark Fasheh while (el->l_tree_depth) { 1212dcd0538fSMark Fasheh if (le16_to_cpu(el->l_next_free_rec) == 0) { 1213dcd0538fSMark Fasheh ocfs2_error(inode->i_sb, 1214dcd0538fSMark Fasheh "Inode %llu has empty extent list at " 1215dcd0538fSMark Fasheh "depth %u\n", 1216dcd0538fSMark Fasheh (unsigned long long)oi->ip_blkno, 1217dcd0538fSMark Fasheh le16_to_cpu(el->l_tree_depth)); 1218dcd0538fSMark Fasheh ret = -EROFS; 1219dcd0538fSMark Fasheh goto out; 1220dcd0538fSMark Fasheh 1221dcd0538fSMark Fasheh } 1222dcd0538fSMark Fasheh 1223dcd0538fSMark Fasheh for(i = 0; i < le16_to_cpu(el->l_next_free_rec) - 1; i++) { 1224dcd0538fSMark Fasheh rec = &el->l_recs[i]; 1225dcd0538fSMark Fasheh 1226dcd0538fSMark Fasheh /* 1227dcd0538fSMark Fasheh * In the case that cpos is off the allocation 1228dcd0538fSMark Fasheh * tree, this should just wind up returning the 1229dcd0538fSMark Fasheh * rightmost record. 1230dcd0538fSMark Fasheh */ 1231dcd0538fSMark Fasheh range = le32_to_cpu(rec->e_cpos) + 1232e48edee2SMark Fasheh ocfs2_rec_clusters(el, rec); 1233dcd0538fSMark Fasheh if (cpos >= le32_to_cpu(rec->e_cpos) && cpos < range) 1234dcd0538fSMark Fasheh break; 1235dcd0538fSMark Fasheh } 1236dcd0538fSMark Fasheh 1237dcd0538fSMark Fasheh blkno = le64_to_cpu(el->l_recs[i].e_blkno); 1238dcd0538fSMark Fasheh if (blkno == 0) { 1239dcd0538fSMark Fasheh ocfs2_error(inode->i_sb, 1240dcd0538fSMark Fasheh "Inode %llu has bad blkno in extent list " 1241dcd0538fSMark Fasheh "at depth %u (index %d)\n", 1242dcd0538fSMark Fasheh (unsigned long long)oi->ip_blkno, 1243dcd0538fSMark Fasheh le16_to_cpu(el->l_tree_depth), i); 1244dcd0538fSMark Fasheh ret = -EROFS; 1245dcd0538fSMark Fasheh goto out; 1246dcd0538fSMark Fasheh } 1247dcd0538fSMark Fasheh 1248dcd0538fSMark Fasheh brelse(bh); 1249dcd0538fSMark Fasheh bh = NULL; 1250dcd0538fSMark Fasheh ret = ocfs2_read_block(OCFS2_SB(inode->i_sb), blkno, 1251dcd0538fSMark Fasheh &bh, OCFS2_BH_CACHED, inode); 1252dcd0538fSMark Fasheh if (ret) { 1253dcd0538fSMark Fasheh mlog_errno(ret); 1254dcd0538fSMark Fasheh goto out; 1255dcd0538fSMark Fasheh } 1256dcd0538fSMark Fasheh 1257dcd0538fSMark Fasheh eb = (struct ocfs2_extent_block *) bh->b_data; 1258dcd0538fSMark Fasheh el = &eb->h_list; 1259dcd0538fSMark Fasheh if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) { 1260dcd0538fSMark Fasheh OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb); 1261dcd0538fSMark Fasheh ret = -EIO; 1262dcd0538fSMark Fasheh goto out; 1263dcd0538fSMark Fasheh } 1264dcd0538fSMark Fasheh 1265dcd0538fSMark Fasheh if (le16_to_cpu(el->l_next_free_rec) > 1266dcd0538fSMark Fasheh le16_to_cpu(el->l_count)) { 1267dcd0538fSMark Fasheh ocfs2_error(inode->i_sb, 1268dcd0538fSMark Fasheh "Inode %llu has bad count in extent list " 1269dcd0538fSMark Fasheh "at block %llu (next free=%u, count=%u)\n", 1270dcd0538fSMark Fasheh (unsigned long long)oi->ip_blkno, 1271dcd0538fSMark Fasheh (unsigned long long)bh->b_blocknr, 1272dcd0538fSMark Fasheh le16_to_cpu(el->l_next_free_rec), 1273dcd0538fSMark Fasheh le16_to_cpu(el->l_count)); 1274dcd0538fSMark Fasheh ret = -EROFS; 1275dcd0538fSMark Fasheh goto out; 1276dcd0538fSMark Fasheh } 1277dcd0538fSMark Fasheh 1278dcd0538fSMark Fasheh if (func) 1279dcd0538fSMark Fasheh func(data, bh); 1280dcd0538fSMark Fasheh } 1281dcd0538fSMark Fasheh 1282dcd0538fSMark Fasheh out: 1283dcd0538fSMark Fasheh /* 1284dcd0538fSMark Fasheh * Catch any trailing bh that the loop didn't handle. 1285dcd0538fSMark Fasheh */ 1286dcd0538fSMark Fasheh brelse(bh); 1287dcd0538fSMark Fasheh 1288dcd0538fSMark Fasheh return ret; 1289dcd0538fSMark Fasheh } 1290dcd0538fSMark Fasheh 1291dcd0538fSMark Fasheh /* 1292dcd0538fSMark Fasheh * Given an initialized path (that is, it has a valid root extent 1293dcd0538fSMark Fasheh * list), this function will traverse the btree in search of the path 1294dcd0538fSMark Fasheh * which would contain cpos. 1295dcd0538fSMark Fasheh * 1296dcd0538fSMark Fasheh * The path traveled is recorded in the path structure. 1297dcd0538fSMark Fasheh * 1298dcd0538fSMark Fasheh * Note that this will not do any comparisons on leaf node extent 1299dcd0538fSMark Fasheh * records, so it will work fine in the case that we just added a tree 1300dcd0538fSMark Fasheh * branch. 1301dcd0538fSMark Fasheh */ 1302dcd0538fSMark Fasheh struct find_path_data { 1303dcd0538fSMark Fasheh int index; 1304dcd0538fSMark Fasheh struct ocfs2_path *path; 1305dcd0538fSMark Fasheh }; 1306dcd0538fSMark Fasheh static void find_path_ins(void *data, struct buffer_head *bh) 1307dcd0538fSMark Fasheh { 1308dcd0538fSMark Fasheh struct find_path_data *fp = data; 1309dcd0538fSMark Fasheh 1310dcd0538fSMark Fasheh get_bh(bh); 1311dcd0538fSMark Fasheh ocfs2_path_insert_eb(fp->path, fp->index, bh); 1312dcd0538fSMark Fasheh fp->index++; 1313dcd0538fSMark Fasheh } 1314dcd0538fSMark Fasheh static int ocfs2_find_path(struct inode *inode, struct ocfs2_path *path, 1315dcd0538fSMark Fasheh u32 cpos) 1316dcd0538fSMark Fasheh { 1317dcd0538fSMark Fasheh struct find_path_data data; 1318dcd0538fSMark Fasheh 1319dcd0538fSMark Fasheh data.index = 1; 1320dcd0538fSMark Fasheh data.path = path; 1321dcd0538fSMark Fasheh return __ocfs2_find_path(inode, path_root_el(path), cpos, 1322dcd0538fSMark Fasheh find_path_ins, &data); 1323dcd0538fSMark Fasheh } 1324dcd0538fSMark Fasheh 1325dcd0538fSMark Fasheh static void find_leaf_ins(void *data, struct buffer_head *bh) 1326dcd0538fSMark Fasheh { 1327dcd0538fSMark Fasheh struct ocfs2_extent_block *eb =(struct ocfs2_extent_block *)bh->b_data; 1328dcd0538fSMark Fasheh struct ocfs2_extent_list *el = &eb->h_list; 1329dcd0538fSMark Fasheh struct buffer_head **ret = data; 1330dcd0538fSMark Fasheh 1331dcd0538fSMark Fasheh /* We want to retain only the leaf block. */ 1332dcd0538fSMark Fasheh if (le16_to_cpu(el->l_tree_depth) == 0) { 1333dcd0538fSMark Fasheh get_bh(bh); 1334dcd0538fSMark Fasheh *ret = bh; 1335dcd0538fSMark Fasheh } 1336dcd0538fSMark Fasheh } 1337dcd0538fSMark Fasheh /* 1338dcd0538fSMark Fasheh * Find the leaf block in the tree which would contain cpos. No 1339dcd0538fSMark Fasheh * checking of the actual leaf is done. 1340dcd0538fSMark Fasheh * 1341dcd0538fSMark Fasheh * Some paths want to call this instead of allocating a path structure 1342dcd0538fSMark Fasheh * and calling ocfs2_find_path(). 1343dcd0538fSMark Fasheh * 1344dcd0538fSMark Fasheh * This function doesn't handle non btree extent lists. 1345dcd0538fSMark Fasheh */ 1346363041a5SMark Fasheh int ocfs2_find_leaf(struct inode *inode, struct ocfs2_extent_list *root_el, 1347363041a5SMark Fasheh u32 cpos, struct buffer_head **leaf_bh) 1348dcd0538fSMark Fasheh { 1349dcd0538fSMark Fasheh int ret; 1350dcd0538fSMark Fasheh struct buffer_head *bh = NULL; 1351dcd0538fSMark Fasheh 1352dcd0538fSMark Fasheh ret = __ocfs2_find_path(inode, root_el, cpos, find_leaf_ins, &bh); 1353dcd0538fSMark Fasheh if (ret) { 1354dcd0538fSMark Fasheh mlog_errno(ret); 1355dcd0538fSMark Fasheh goto out; 1356dcd0538fSMark Fasheh } 1357dcd0538fSMark Fasheh 1358dcd0538fSMark Fasheh *leaf_bh = bh; 1359dcd0538fSMark Fasheh out: 1360dcd0538fSMark Fasheh return ret; 1361dcd0538fSMark Fasheh } 1362dcd0538fSMark Fasheh 1363dcd0538fSMark Fasheh /* 1364dcd0538fSMark Fasheh * Adjust the adjacent records (left_rec, right_rec) involved in a rotation. 1365dcd0538fSMark Fasheh * 1366dcd0538fSMark Fasheh * Basically, we've moved stuff around at the bottom of the tree and 1367dcd0538fSMark Fasheh * we need to fix up the extent records above the changes to reflect 1368dcd0538fSMark Fasheh * the new changes. 1369dcd0538fSMark Fasheh * 1370dcd0538fSMark Fasheh * left_rec: the record on the left. 1371dcd0538fSMark Fasheh * left_child_el: is the child list pointed to by left_rec 1372dcd0538fSMark Fasheh * right_rec: the record to the right of left_rec 1373dcd0538fSMark Fasheh * right_child_el: is the child list pointed to by right_rec 1374dcd0538fSMark Fasheh * 1375dcd0538fSMark Fasheh * By definition, this only works on interior nodes. 1376dcd0538fSMark Fasheh */ 1377dcd0538fSMark Fasheh static void ocfs2_adjust_adjacent_records(struct ocfs2_extent_rec *left_rec, 1378dcd0538fSMark Fasheh struct ocfs2_extent_list *left_child_el, 1379dcd0538fSMark Fasheh struct ocfs2_extent_rec *right_rec, 1380dcd0538fSMark Fasheh struct ocfs2_extent_list *right_child_el) 1381dcd0538fSMark Fasheh { 1382dcd0538fSMark Fasheh u32 left_clusters, right_end; 1383dcd0538fSMark Fasheh 1384dcd0538fSMark Fasheh /* 1385dcd0538fSMark Fasheh * Interior nodes never have holes. Their cpos is the cpos of 1386dcd0538fSMark Fasheh * the leftmost record in their child list. Their cluster 1387dcd0538fSMark Fasheh * count covers the full theoretical range of their child list 1388dcd0538fSMark Fasheh * - the range between their cpos and the cpos of the record 1389dcd0538fSMark Fasheh * immediately to their right. 1390dcd0538fSMark Fasheh */ 1391dcd0538fSMark Fasheh left_clusters = le32_to_cpu(right_child_el->l_recs[0].e_cpos); 1392328d5752SMark Fasheh if (ocfs2_is_empty_extent(&right_child_el->l_recs[0])) { 1393328d5752SMark Fasheh BUG_ON(le16_to_cpu(right_child_el->l_next_free_rec) <= 1); 1394328d5752SMark Fasheh left_clusters = le32_to_cpu(right_child_el->l_recs[1].e_cpos); 1395328d5752SMark Fasheh } 1396dcd0538fSMark Fasheh left_clusters -= le32_to_cpu(left_rec->e_cpos); 1397e48edee2SMark Fasheh left_rec->e_int_clusters = cpu_to_le32(left_clusters); 1398dcd0538fSMark Fasheh 1399dcd0538fSMark Fasheh /* 1400dcd0538fSMark Fasheh * Calculate the rightmost cluster count boundary before 1401e48edee2SMark Fasheh * moving cpos - we will need to adjust clusters after 1402dcd0538fSMark Fasheh * updating e_cpos to keep the same highest cluster count. 1403dcd0538fSMark Fasheh */ 1404dcd0538fSMark Fasheh right_end = le32_to_cpu(right_rec->e_cpos); 1405e48edee2SMark Fasheh right_end += le32_to_cpu(right_rec->e_int_clusters); 1406dcd0538fSMark Fasheh 1407dcd0538fSMark Fasheh right_rec->e_cpos = left_rec->e_cpos; 1408dcd0538fSMark Fasheh le32_add_cpu(&right_rec->e_cpos, left_clusters); 1409dcd0538fSMark Fasheh 1410dcd0538fSMark Fasheh right_end -= le32_to_cpu(right_rec->e_cpos); 1411e48edee2SMark Fasheh right_rec->e_int_clusters = cpu_to_le32(right_end); 1412dcd0538fSMark Fasheh } 1413dcd0538fSMark Fasheh 1414dcd0538fSMark Fasheh /* 1415dcd0538fSMark Fasheh * Adjust the adjacent root node records involved in a 1416dcd0538fSMark Fasheh * rotation. left_el_blkno is passed in as a key so that we can easily 1417dcd0538fSMark Fasheh * find it's index in the root list. 1418dcd0538fSMark Fasheh */ 1419dcd0538fSMark Fasheh static void ocfs2_adjust_root_records(struct ocfs2_extent_list *root_el, 1420dcd0538fSMark Fasheh struct ocfs2_extent_list *left_el, 1421dcd0538fSMark Fasheh struct ocfs2_extent_list *right_el, 1422dcd0538fSMark Fasheh u64 left_el_blkno) 1423dcd0538fSMark Fasheh { 1424dcd0538fSMark Fasheh int i; 1425dcd0538fSMark Fasheh 1426dcd0538fSMark Fasheh BUG_ON(le16_to_cpu(root_el->l_tree_depth) <= 1427dcd0538fSMark Fasheh le16_to_cpu(left_el->l_tree_depth)); 1428dcd0538fSMark Fasheh 1429dcd0538fSMark Fasheh for(i = 0; i < le16_to_cpu(root_el->l_next_free_rec) - 1; i++) { 1430dcd0538fSMark Fasheh if (le64_to_cpu(root_el->l_recs[i].e_blkno) == left_el_blkno) 1431dcd0538fSMark Fasheh break; 1432dcd0538fSMark Fasheh } 1433dcd0538fSMark Fasheh 1434dcd0538fSMark Fasheh /* 1435dcd0538fSMark Fasheh * The path walking code should have never returned a root and 1436dcd0538fSMark Fasheh * two paths which are not adjacent. 1437dcd0538fSMark Fasheh */ 1438dcd0538fSMark Fasheh BUG_ON(i >= (le16_to_cpu(root_el->l_next_free_rec) - 1)); 1439dcd0538fSMark Fasheh 1440dcd0538fSMark Fasheh ocfs2_adjust_adjacent_records(&root_el->l_recs[i], left_el, 1441dcd0538fSMark Fasheh &root_el->l_recs[i + 1], right_el); 1442dcd0538fSMark Fasheh } 1443dcd0538fSMark Fasheh 1444dcd0538fSMark Fasheh /* 1445dcd0538fSMark Fasheh * We've changed a leaf block (in right_path) and need to reflect that 1446dcd0538fSMark Fasheh * change back up the subtree. 1447dcd0538fSMark Fasheh * 1448dcd0538fSMark Fasheh * This happens in multiple places: 1449dcd0538fSMark Fasheh * - When we've moved an extent record from the left path leaf to the right 1450dcd0538fSMark Fasheh * path leaf to make room for an empty extent in the left path leaf. 1451dcd0538fSMark Fasheh * - When our insert into the right path leaf is at the leftmost edge 1452dcd0538fSMark Fasheh * and requires an update of the path immediately to it's left. This 1453dcd0538fSMark Fasheh * can occur at the end of some types of rotation and appending inserts. 1454dcd0538fSMark Fasheh */ 1455dcd0538fSMark Fasheh static void ocfs2_complete_edge_insert(struct inode *inode, handle_t *handle, 1456dcd0538fSMark Fasheh struct ocfs2_path *left_path, 1457dcd0538fSMark Fasheh struct ocfs2_path *right_path, 1458dcd0538fSMark Fasheh int subtree_index) 1459dcd0538fSMark Fasheh { 1460dcd0538fSMark Fasheh int ret, i, idx; 1461dcd0538fSMark Fasheh struct ocfs2_extent_list *el, *left_el, *right_el; 1462dcd0538fSMark Fasheh struct ocfs2_extent_rec *left_rec, *right_rec; 1463dcd0538fSMark Fasheh struct buffer_head *root_bh = left_path->p_node[subtree_index].bh; 1464dcd0538fSMark Fasheh 1465dcd0538fSMark Fasheh /* 1466dcd0538fSMark Fasheh * Update the counts and position values within all the 1467dcd0538fSMark Fasheh * interior nodes to reflect the leaf rotation we just did. 1468dcd0538fSMark Fasheh * 1469dcd0538fSMark Fasheh * The root node is handled below the loop. 1470dcd0538fSMark Fasheh * 1471dcd0538fSMark Fasheh * We begin the loop with right_el and left_el pointing to the 1472dcd0538fSMark Fasheh * leaf lists and work our way up. 1473dcd0538fSMark Fasheh * 1474dcd0538fSMark Fasheh * NOTE: within this loop, left_el and right_el always refer 1475dcd0538fSMark Fasheh * to the *child* lists. 1476dcd0538fSMark Fasheh */ 1477dcd0538fSMark Fasheh left_el = path_leaf_el(left_path); 1478dcd0538fSMark Fasheh right_el = path_leaf_el(right_path); 1479dcd0538fSMark Fasheh for(i = left_path->p_tree_depth - 1; i > subtree_index; i--) { 1480dcd0538fSMark Fasheh mlog(0, "Adjust records at index %u\n", i); 1481dcd0538fSMark Fasheh 1482dcd0538fSMark Fasheh /* 1483dcd0538fSMark Fasheh * One nice property of knowing that all of these 1484dcd0538fSMark Fasheh * nodes are below the root is that we only deal with 1485dcd0538fSMark Fasheh * the leftmost right node record and the rightmost 1486dcd0538fSMark Fasheh * left node record. 1487dcd0538fSMark Fasheh */ 1488dcd0538fSMark Fasheh el = left_path->p_node[i].el; 1489dcd0538fSMark Fasheh idx = le16_to_cpu(left_el->l_next_free_rec) - 1; 1490dcd0538fSMark Fasheh left_rec = &el->l_recs[idx]; 1491dcd0538fSMark Fasheh 1492dcd0538fSMark Fasheh el = right_path->p_node[i].el; 1493dcd0538fSMark Fasheh right_rec = &el->l_recs[0]; 1494dcd0538fSMark Fasheh 1495dcd0538fSMark Fasheh ocfs2_adjust_adjacent_records(left_rec, left_el, right_rec, 1496dcd0538fSMark Fasheh right_el); 1497dcd0538fSMark Fasheh 1498dcd0538fSMark Fasheh ret = ocfs2_journal_dirty(handle, left_path->p_node[i].bh); 1499dcd0538fSMark Fasheh if (ret) 1500dcd0538fSMark Fasheh mlog_errno(ret); 1501dcd0538fSMark Fasheh 1502dcd0538fSMark Fasheh ret = ocfs2_journal_dirty(handle, right_path->p_node[i].bh); 1503dcd0538fSMark Fasheh if (ret) 1504dcd0538fSMark Fasheh mlog_errno(ret); 1505dcd0538fSMark Fasheh 1506dcd0538fSMark Fasheh /* 1507dcd0538fSMark Fasheh * Setup our list pointers now so that the current 1508dcd0538fSMark Fasheh * parents become children in the next iteration. 1509dcd0538fSMark Fasheh */ 1510dcd0538fSMark Fasheh left_el = left_path->p_node[i].el; 1511dcd0538fSMark Fasheh right_el = right_path->p_node[i].el; 1512dcd0538fSMark Fasheh } 1513dcd0538fSMark Fasheh 1514dcd0538fSMark Fasheh /* 1515dcd0538fSMark Fasheh * At the root node, adjust the two adjacent records which 1516dcd0538fSMark Fasheh * begin our path to the leaves. 1517dcd0538fSMark Fasheh */ 1518dcd0538fSMark Fasheh 1519dcd0538fSMark Fasheh el = left_path->p_node[subtree_index].el; 1520dcd0538fSMark Fasheh left_el = left_path->p_node[subtree_index + 1].el; 1521dcd0538fSMark Fasheh right_el = right_path->p_node[subtree_index + 1].el; 1522dcd0538fSMark Fasheh 1523dcd0538fSMark Fasheh ocfs2_adjust_root_records(el, left_el, right_el, 1524dcd0538fSMark Fasheh left_path->p_node[subtree_index + 1].bh->b_blocknr); 1525dcd0538fSMark Fasheh 1526dcd0538fSMark Fasheh root_bh = left_path->p_node[subtree_index].bh; 1527dcd0538fSMark Fasheh 1528dcd0538fSMark Fasheh ret = ocfs2_journal_dirty(handle, root_bh); 1529dcd0538fSMark Fasheh if (ret) 1530dcd0538fSMark Fasheh mlog_errno(ret); 1531dcd0538fSMark Fasheh } 1532dcd0538fSMark Fasheh 1533dcd0538fSMark Fasheh static int ocfs2_rotate_subtree_right(struct inode *inode, 1534dcd0538fSMark Fasheh handle_t *handle, 1535dcd0538fSMark Fasheh struct ocfs2_path *left_path, 1536dcd0538fSMark Fasheh struct ocfs2_path *right_path, 1537dcd0538fSMark Fasheh int subtree_index) 1538dcd0538fSMark Fasheh { 1539dcd0538fSMark Fasheh int ret, i; 1540dcd0538fSMark Fasheh struct buffer_head *right_leaf_bh; 1541dcd0538fSMark Fasheh struct buffer_head *left_leaf_bh = NULL; 1542dcd0538fSMark Fasheh struct buffer_head *root_bh; 1543dcd0538fSMark Fasheh struct ocfs2_extent_list *right_el, *left_el; 1544dcd0538fSMark Fasheh struct ocfs2_extent_rec move_rec; 1545dcd0538fSMark Fasheh 1546dcd0538fSMark Fasheh left_leaf_bh = path_leaf_bh(left_path); 1547dcd0538fSMark Fasheh left_el = path_leaf_el(left_path); 1548dcd0538fSMark Fasheh 1549dcd0538fSMark Fasheh if (left_el->l_next_free_rec != left_el->l_count) { 1550dcd0538fSMark Fasheh ocfs2_error(inode->i_sb, 1551dcd0538fSMark Fasheh "Inode %llu has non-full interior leaf node %llu" 1552dcd0538fSMark Fasheh "(next free = %u)", 1553dcd0538fSMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno, 1554dcd0538fSMark Fasheh (unsigned long long)left_leaf_bh->b_blocknr, 1555dcd0538fSMark Fasheh le16_to_cpu(left_el->l_next_free_rec)); 1556dcd0538fSMark Fasheh return -EROFS; 1557dcd0538fSMark Fasheh } 1558dcd0538fSMark Fasheh 1559dcd0538fSMark Fasheh /* 1560dcd0538fSMark Fasheh * This extent block may already have an empty record, so we 1561dcd0538fSMark Fasheh * return early if so. 1562dcd0538fSMark Fasheh */ 1563dcd0538fSMark Fasheh if (ocfs2_is_empty_extent(&left_el->l_recs[0])) 1564dcd0538fSMark Fasheh return 0; 1565dcd0538fSMark Fasheh 1566dcd0538fSMark Fasheh root_bh = left_path->p_node[subtree_index].bh; 1567dcd0538fSMark Fasheh BUG_ON(root_bh != right_path->p_node[subtree_index].bh); 1568dcd0538fSMark Fasheh 1569dcd0538fSMark Fasheh ret = ocfs2_journal_access(handle, inode, root_bh, 1570dcd0538fSMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 1571dcd0538fSMark Fasheh if (ret) { 1572dcd0538fSMark Fasheh mlog_errno(ret); 1573dcd0538fSMark Fasheh goto out; 1574dcd0538fSMark Fasheh } 1575dcd0538fSMark Fasheh 1576dcd0538fSMark Fasheh for(i = subtree_index + 1; i < path_num_items(right_path); i++) { 1577dcd0538fSMark Fasheh ret = ocfs2_journal_access(handle, inode, 1578dcd0538fSMark Fasheh right_path->p_node[i].bh, 1579dcd0538fSMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 1580dcd0538fSMark Fasheh if (ret) { 1581dcd0538fSMark Fasheh mlog_errno(ret); 1582dcd0538fSMark Fasheh goto out; 1583dcd0538fSMark Fasheh } 1584dcd0538fSMark Fasheh 1585dcd0538fSMark Fasheh ret = ocfs2_journal_access(handle, inode, 1586dcd0538fSMark Fasheh left_path->p_node[i].bh, 1587dcd0538fSMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 1588dcd0538fSMark Fasheh if (ret) { 1589dcd0538fSMark Fasheh mlog_errno(ret); 1590dcd0538fSMark Fasheh goto out; 1591dcd0538fSMark Fasheh } 1592dcd0538fSMark Fasheh } 1593dcd0538fSMark Fasheh 1594dcd0538fSMark Fasheh right_leaf_bh = path_leaf_bh(right_path); 1595dcd0538fSMark Fasheh right_el = path_leaf_el(right_path); 1596dcd0538fSMark Fasheh 1597dcd0538fSMark Fasheh /* This is a code error, not a disk corruption. */ 1598dcd0538fSMark Fasheh mlog_bug_on_msg(!right_el->l_next_free_rec, "Inode %llu: Rotate fails " 1599dcd0538fSMark Fasheh "because rightmost leaf block %llu is empty\n", 1600dcd0538fSMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno, 1601dcd0538fSMark Fasheh (unsigned long long)right_leaf_bh->b_blocknr); 1602dcd0538fSMark Fasheh 1603dcd0538fSMark Fasheh ocfs2_create_empty_extent(right_el); 1604dcd0538fSMark Fasheh 1605dcd0538fSMark Fasheh ret = ocfs2_journal_dirty(handle, right_leaf_bh); 1606dcd0538fSMark Fasheh if (ret) { 1607dcd0538fSMark Fasheh mlog_errno(ret); 1608dcd0538fSMark Fasheh goto out; 1609dcd0538fSMark Fasheh } 1610dcd0538fSMark Fasheh 1611dcd0538fSMark Fasheh /* Do the copy now. */ 1612dcd0538fSMark Fasheh i = le16_to_cpu(left_el->l_next_free_rec) - 1; 1613dcd0538fSMark Fasheh move_rec = left_el->l_recs[i]; 1614dcd0538fSMark Fasheh right_el->l_recs[0] = move_rec; 1615dcd0538fSMark Fasheh 1616dcd0538fSMark Fasheh /* 1617dcd0538fSMark Fasheh * Clear out the record we just copied and shift everything 1618dcd0538fSMark Fasheh * over, leaving an empty extent in the left leaf. 1619dcd0538fSMark Fasheh * 1620dcd0538fSMark Fasheh * We temporarily subtract from next_free_rec so that the 1621dcd0538fSMark Fasheh * shift will lose the tail record (which is now defunct). 1622dcd0538fSMark Fasheh */ 1623dcd0538fSMark Fasheh le16_add_cpu(&left_el->l_next_free_rec, -1); 1624dcd0538fSMark Fasheh ocfs2_shift_records_right(left_el); 1625dcd0538fSMark Fasheh memset(&left_el->l_recs[0], 0, sizeof(struct ocfs2_extent_rec)); 1626dcd0538fSMark Fasheh le16_add_cpu(&left_el->l_next_free_rec, 1); 1627dcd0538fSMark Fasheh 1628dcd0538fSMark Fasheh ret = ocfs2_journal_dirty(handle, left_leaf_bh); 1629dcd0538fSMark Fasheh if (ret) { 1630dcd0538fSMark Fasheh mlog_errno(ret); 1631dcd0538fSMark Fasheh goto out; 1632dcd0538fSMark Fasheh } 1633dcd0538fSMark Fasheh 1634dcd0538fSMark Fasheh ocfs2_complete_edge_insert(inode, handle, left_path, right_path, 1635dcd0538fSMark Fasheh subtree_index); 1636dcd0538fSMark Fasheh 1637dcd0538fSMark Fasheh out: 1638dcd0538fSMark Fasheh return ret; 1639dcd0538fSMark Fasheh } 1640dcd0538fSMark Fasheh 1641dcd0538fSMark Fasheh /* 1642dcd0538fSMark Fasheh * Given a full path, determine what cpos value would return us a path 1643dcd0538fSMark Fasheh * containing the leaf immediately to the left of the current one. 1644dcd0538fSMark Fasheh * 1645dcd0538fSMark Fasheh * Will return zero if the path passed in is already the leftmost path. 1646dcd0538fSMark Fasheh */ 1647dcd0538fSMark Fasheh static int ocfs2_find_cpos_for_left_leaf(struct super_block *sb, 1648dcd0538fSMark Fasheh struct ocfs2_path *path, u32 *cpos) 1649dcd0538fSMark Fasheh { 1650dcd0538fSMark Fasheh int i, j, ret = 0; 1651dcd0538fSMark Fasheh u64 blkno; 1652dcd0538fSMark Fasheh struct ocfs2_extent_list *el; 1653dcd0538fSMark Fasheh 1654e48edee2SMark Fasheh BUG_ON(path->p_tree_depth == 0); 1655e48edee2SMark Fasheh 1656dcd0538fSMark Fasheh *cpos = 0; 1657dcd0538fSMark Fasheh 1658dcd0538fSMark Fasheh blkno = path_leaf_bh(path)->b_blocknr; 1659dcd0538fSMark Fasheh 1660dcd0538fSMark Fasheh /* Start at the tree node just above the leaf and work our way up. */ 1661dcd0538fSMark Fasheh i = path->p_tree_depth - 1; 1662dcd0538fSMark Fasheh while (i >= 0) { 1663dcd0538fSMark Fasheh el = path->p_node[i].el; 1664dcd0538fSMark Fasheh 1665dcd0538fSMark Fasheh /* 1666dcd0538fSMark Fasheh * Find the extent record just before the one in our 1667dcd0538fSMark Fasheh * path. 1668dcd0538fSMark Fasheh */ 1669dcd0538fSMark Fasheh for(j = 0; j < le16_to_cpu(el->l_next_free_rec); j++) { 1670dcd0538fSMark Fasheh if (le64_to_cpu(el->l_recs[j].e_blkno) == blkno) { 1671dcd0538fSMark Fasheh if (j == 0) { 1672dcd0538fSMark Fasheh if (i == 0) { 1673dcd0538fSMark Fasheh /* 1674dcd0538fSMark Fasheh * We've determined that the 1675dcd0538fSMark Fasheh * path specified is already 1676dcd0538fSMark Fasheh * the leftmost one - return a 1677dcd0538fSMark Fasheh * cpos of zero. 1678dcd0538fSMark Fasheh */ 1679dcd0538fSMark Fasheh goto out; 1680dcd0538fSMark Fasheh } 1681dcd0538fSMark Fasheh /* 1682dcd0538fSMark Fasheh * The leftmost record points to our 1683dcd0538fSMark Fasheh * leaf - we need to travel up the 1684dcd0538fSMark Fasheh * tree one level. 1685dcd0538fSMark Fasheh */ 1686dcd0538fSMark Fasheh goto next_node; 1687dcd0538fSMark Fasheh } 1688dcd0538fSMark Fasheh 1689dcd0538fSMark Fasheh *cpos = le32_to_cpu(el->l_recs[j - 1].e_cpos); 1690e48edee2SMark Fasheh *cpos = *cpos + ocfs2_rec_clusters(el, 1691e48edee2SMark Fasheh &el->l_recs[j - 1]); 1692e48edee2SMark Fasheh *cpos = *cpos - 1; 1693dcd0538fSMark Fasheh goto out; 1694dcd0538fSMark Fasheh } 1695dcd0538fSMark Fasheh } 1696dcd0538fSMark Fasheh 1697dcd0538fSMark Fasheh /* 1698dcd0538fSMark Fasheh * If we got here, we never found a valid node where 1699dcd0538fSMark Fasheh * the tree indicated one should be. 1700dcd0538fSMark Fasheh */ 1701dcd0538fSMark Fasheh ocfs2_error(sb, 1702dcd0538fSMark Fasheh "Invalid extent tree at extent block %llu\n", 1703dcd0538fSMark Fasheh (unsigned long long)blkno); 1704dcd0538fSMark Fasheh ret = -EROFS; 1705dcd0538fSMark Fasheh goto out; 1706dcd0538fSMark Fasheh 1707dcd0538fSMark Fasheh next_node: 1708dcd0538fSMark Fasheh blkno = path->p_node[i].bh->b_blocknr; 1709dcd0538fSMark Fasheh i--; 1710dcd0538fSMark Fasheh } 1711dcd0538fSMark Fasheh 1712dcd0538fSMark Fasheh out: 1713dcd0538fSMark Fasheh return ret; 1714dcd0538fSMark Fasheh } 1715dcd0538fSMark Fasheh 1716328d5752SMark Fasheh /* 1717328d5752SMark Fasheh * Extend the transaction by enough credits to complete the rotation, 1718328d5752SMark Fasheh * and still leave at least the original number of credits allocated 1719328d5752SMark Fasheh * to this transaction. 1720328d5752SMark Fasheh */ 1721dcd0538fSMark Fasheh static int ocfs2_extend_rotate_transaction(handle_t *handle, int subtree_depth, 1722328d5752SMark Fasheh int op_credits, 1723dcd0538fSMark Fasheh struct ocfs2_path *path) 1724dcd0538fSMark Fasheh { 1725328d5752SMark Fasheh int credits = (path->p_tree_depth - subtree_depth) * 2 + 1 + op_credits; 1726dcd0538fSMark Fasheh 1727dcd0538fSMark Fasheh if (handle->h_buffer_credits < credits) 1728dcd0538fSMark Fasheh return ocfs2_extend_trans(handle, credits); 1729dcd0538fSMark Fasheh 1730dcd0538fSMark Fasheh return 0; 1731dcd0538fSMark Fasheh } 1732dcd0538fSMark Fasheh 1733dcd0538fSMark Fasheh /* 1734dcd0538fSMark Fasheh * Trap the case where we're inserting into the theoretical range past 1735dcd0538fSMark Fasheh * the _actual_ left leaf range. Otherwise, we'll rotate a record 1736dcd0538fSMark Fasheh * whose cpos is less than ours into the right leaf. 1737dcd0538fSMark Fasheh * 1738dcd0538fSMark Fasheh * It's only necessary to look at the rightmost record of the left 1739dcd0538fSMark Fasheh * leaf because the logic that calls us should ensure that the 1740dcd0538fSMark Fasheh * theoretical ranges in the path components above the leaves are 1741dcd0538fSMark Fasheh * correct. 1742dcd0538fSMark Fasheh */ 1743dcd0538fSMark Fasheh static int ocfs2_rotate_requires_path_adjustment(struct ocfs2_path *left_path, 1744dcd0538fSMark Fasheh u32 insert_cpos) 1745dcd0538fSMark Fasheh { 1746dcd0538fSMark Fasheh struct ocfs2_extent_list *left_el; 1747dcd0538fSMark Fasheh struct ocfs2_extent_rec *rec; 1748dcd0538fSMark Fasheh int next_free; 1749dcd0538fSMark Fasheh 1750dcd0538fSMark Fasheh left_el = path_leaf_el(left_path); 1751dcd0538fSMark Fasheh next_free = le16_to_cpu(left_el->l_next_free_rec); 1752dcd0538fSMark Fasheh rec = &left_el->l_recs[next_free - 1]; 1753dcd0538fSMark Fasheh 1754dcd0538fSMark Fasheh if (insert_cpos > le32_to_cpu(rec->e_cpos)) 1755dcd0538fSMark Fasheh return 1; 1756dcd0538fSMark Fasheh return 0; 1757dcd0538fSMark Fasheh } 1758dcd0538fSMark Fasheh 1759328d5752SMark Fasheh static int ocfs2_leftmost_rec_contains(struct ocfs2_extent_list *el, u32 cpos) 1760328d5752SMark Fasheh { 1761328d5752SMark Fasheh int next_free = le16_to_cpu(el->l_next_free_rec); 1762328d5752SMark Fasheh unsigned int range; 1763328d5752SMark Fasheh struct ocfs2_extent_rec *rec; 1764328d5752SMark Fasheh 1765328d5752SMark Fasheh if (next_free == 0) 1766328d5752SMark Fasheh return 0; 1767328d5752SMark Fasheh 1768328d5752SMark Fasheh rec = &el->l_recs[0]; 1769328d5752SMark Fasheh if (ocfs2_is_empty_extent(rec)) { 1770328d5752SMark Fasheh /* Empty list. */ 1771328d5752SMark Fasheh if (next_free == 1) 1772328d5752SMark Fasheh return 0; 1773328d5752SMark Fasheh rec = &el->l_recs[1]; 1774328d5752SMark Fasheh } 1775328d5752SMark Fasheh 1776328d5752SMark Fasheh range = le32_to_cpu(rec->e_cpos) + ocfs2_rec_clusters(el, rec); 1777328d5752SMark Fasheh if (cpos >= le32_to_cpu(rec->e_cpos) && cpos < range) 1778328d5752SMark Fasheh return 1; 1779328d5752SMark Fasheh return 0; 1780328d5752SMark Fasheh } 1781328d5752SMark Fasheh 1782dcd0538fSMark Fasheh /* 1783dcd0538fSMark Fasheh * Rotate all the records in a btree right one record, starting at insert_cpos. 1784dcd0538fSMark Fasheh * 1785dcd0538fSMark Fasheh * The path to the rightmost leaf should be passed in. 1786dcd0538fSMark Fasheh * 1787dcd0538fSMark Fasheh * The array is assumed to be large enough to hold an entire path (tree depth). 1788dcd0538fSMark Fasheh * 1789dcd0538fSMark Fasheh * Upon succesful return from this function: 1790dcd0538fSMark Fasheh * 1791dcd0538fSMark Fasheh * - The 'right_path' array will contain a path to the leaf block 1792dcd0538fSMark Fasheh * whose range contains e_cpos. 1793dcd0538fSMark Fasheh * - That leaf block will have a single empty extent in list index 0. 1794dcd0538fSMark Fasheh * - In the case that the rotation requires a post-insert update, 1795dcd0538fSMark Fasheh * *ret_left_path will contain a valid path which can be passed to 1796dcd0538fSMark Fasheh * ocfs2_insert_path(). 1797dcd0538fSMark Fasheh */ 1798dcd0538fSMark Fasheh static int ocfs2_rotate_tree_right(struct inode *inode, 1799dcd0538fSMark Fasheh handle_t *handle, 1800328d5752SMark Fasheh enum ocfs2_split_type split, 1801dcd0538fSMark Fasheh u32 insert_cpos, 1802dcd0538fSMark Fasheh struct ocfs2_path *right_path, 1803dcd0538fSMark Fasheh struct ocfs2_path **ret_left_path) 1804dcd0538fSMark Fasheh { 1805328d5752SMark Fasheh int ret, start, orig_credits = handle->h_buffer_credits; 1806dcd0538fSMark Fasheh u32 cpos; 1807dcd0538fSMark Fasheh struct ocfs2_path *left_path = NULL; 1808dcd0538fSMark Fasheh 1809dcd0538fSMark Fasheh *ret_left_path = NULL; 1810dcd0538fSMark Fasheh 1811dcd0538fSMark Fasheh left_path = ocfs2_new_path(path_root_bh(right_path), 1812dcd0538fSMark Fasheh path_root_el(right_path)); 1813dcd0538fSMark Fasheh if (!left_path) { 1814dcd0538fSMark Fasheh ret = -ENOMEM; 1815dcd0538fSMark Fasheh mlog_errno(ret); 1816dcd0538fSMark Fasheh goto out; 1817dcd0538fSMark Fasheh } 1818dcd0538fSMark Fasheh 1819dcd0538fSMark Fasheh ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb, right_path, &cpos); 1820dcd0538fSMark Fasheh if (ret) { 1821dcd0538fSMark Fasheh mlog_errno(ret); 1822dcd0538fSMark Fasheh goto out; 1823dcd0538fSMark Fasheh } 1824dcd0538fSMark Fasheh 1825dcd0538fSMark Fasheh mlog(0, "Insert: %u, first left path cpos: %u\n", insert_cpos, cpos); 1826dcd0538fSMark Fasheh 1827dcd0538fSMark Fasheh /* 1828dcd0538fSMark Fasheh * What we want to do here is: 1829dcd0538fSMark Fasheh * 1830dcd0538fSMark Fasheh * 1) Start with the rightmost path. 1831dcd0538fSMark Fasheh * 1832dcd0538fSMark Fasheh * 2) Determine a path to the leaf block directly to the left 1833dcd0538fSMark Fasheh * of that leaf. 1834dcd0538fSMark Fasheh * 1835dcd0538fSMark Fasheh * 3) Determine the 'subtree root' - the lowest level tree node 1836dcd0538fSMark Fasheh * which contains a path to both leaves. 1837dcd0538fSMark Fasheh * 1838dcd0538fSMark Fasheh * 4) Rotate the subtree. 1839dcd0538fSMark Fasheh * 1840dcd0538fSMark Fasheh * 5) Find the next subtree by considering the left path to be 1841dcd0538fSMark Fasheh * the new right path. 1842dcd0538fSMark Fasheh * 1843dcd0538fSMark Fasheh * The check at the top of this while loop also accepts 1844dcd0538fSMark Fasheh * insert_cpos == cpos because cpos is only a _theoretical_ 1845dcd0538fSMark Fasheh * value to get us the left path - insert_cpos might very well 1846dcd0538fSMark Fasheh * be filling that hole. 1847dcd0538fSMark Fasheh * 1848dcd0538fSMark Fasheh * Stop at a cpos of '0' because we either started at the 1849dcd0538fSMark Fasheh * leftmost branch (i.e., a tree with one branch and a 1850dcd0538fSMark Fasheh * rotation inside of it), or we've gone as far as we can in 1851dcd0538fSMark Fasheh * rotating subtrees. 1852dcd0538fSMark Fasheh */ 1853dcd0538fSMark Fasheh while (cpos && insert_cpos <= cpos) { 1854dcd0538fSMark Fasheh mlog(0, "Rotating a tree: ins. cpos: %u, left path cpos: %u\n", 1855dcd0538fSMark Fasheh insert_cpos, cpos); 1856dcd0538fSMark Fasheh 1857dcd0538fSMark Fasheh ret = ocfs2_find_path(inode, left_path, cpos); 1858dcd0538fSMark Fasheh if (ret) { 1859dcd0538fSMark Fasheh mlog_errno(ret); 1860dcd0538fSMark Fasheh goto out; 1861dcd0538fSMark Fasheh } 1862dcd0538fSMark Fasheh 1863dcd0538fSMark Fasheh mlog_bug_on_msg(path_leaf_bh(left_path) == 1864dcd0538fSMark Fasheh path_leaf_bh(right_path), 1865dcd0538fSMark Fasheh "Inode %lu: error during insert of %u " 1866dcd0538fSMark Fasheh "(left path cpos %u) results in two identical " 1867dcd0538fSMark Fasheh "paths ending at %llu\n", 1868dcd0538fSMark Fasheh inode->i_ino, insert_cpos, cpos, 1869dcd0538fSMark Fasheh (unsigned long long) 1870dcd0538fSMark Fasheh path_leaf_bh(left_path)->b_blocknr); 1871dcd0538fSMark Fasheh 1872328d5752SMark Fasheh if (split == SPLIT_NONE && 1873328d5752SMark Fasheh ocfs2_rotate_requires_path_adjustment(left_path, 1874dcd0538fSMark Fasheh insert_cpos)) { 1875dcd0538fSMark Fasheh 1876dcd0538fSMark Fasheh /* 1877dcd0538fSMark Fasheh * We've rotated the tree as much as we 1878dcd0538fSMark Fasheh * should. The rest is up to 1879dcd0538fSMark Fasheh * ocfs2_insert_path() to complete, after the 1880dcd0538fSMark Fasheh * record insertion. We indicate this 1881dcd0538fSMark Fasheh * situation by returning the left path. 1882dcd0538fSMark Fasheh * 1883dcd0538fSMark Fasheh * The reason we don't adjust the records here 1884dcd0538fSMark Fasheh * before the record insert is that an error 1885dcd0538fSMark Fasheh * later might break the rule where a parent 1886dcd0538fSMark Fasheh * record e_cpos will reflect the actual 1887dcd0538fSMark Fasheh * e_cpos of the 1st nonempty record of the 1888dcd0538fSMark Fasheh * child list. 1889dcd0538fSMark Fasheh */ 1890dcd0538fSMark Fasheh *ret_left_path = left_path; 1891dcd0538fSMark Fasheh goto out_ret_path; 1892dcd0538fSMark Fasheh } 1893dcd0538fSMark Fasheh 1894dcd0538fSMark Fasheh start = ocfs2_find_subtree_root(inode, left_path, right_path); 1895dcd0538fSMark Fasheh 1896dcd0538fSMark Fasheh mlog(0, "Subtree root at index %d (blk %llu, depth %d)\n", 1897dcd0538fSMark Fasheh start, 1898dcd0538fSMark Fasheh (unsigned long long) right_path->p_node[start].bh->b_blocknr, 1899dcd0538fSMark Fasheh right_path->p_tree_depth); 1900dcd0538fSMark Fasheh 1901dcd0538fSMark Fasheh ret = ocfs2_extend_rotate_transaction(handle, start, 1902328d5752SMark Fasheh orig_credits, right_path); 1903dcd0538fSMark Fasheh if (ret) { 1904dcd0538fSMark Fasheh mlog_errno(ret); 1905dcd0538fSMark Fasheh goto out; 1906dcd0538fSMark Fasheh } 1907dcd0538fSMark Fasheh 1908dcd0538fSMark Fasheh ret = ocfs2_rotate_subtree_right(inode, handle, left_path, 1909dcd0538fSMark Fasheh right_path, start); 1910dcd0538fSMark Fasheh if (ret) { 1911dcd0538fSMark Fasheh mlog_errno(ret); 1912dcd0538fSMark Fasheh goto out; 1913dcd0538fSMark Fasheh } 1914dcd0538fSMark Fasheh 1915328d5752SMark Fasheh if (split != SPLIT_NONE && 1916328d5752SMark Fasheh ocfs2_leftmost_rec_contains(path_leaf_el(right_path), 1917328d5752SMark Fasheh insert_cpos)) { 1918328d5752SMark Fasheh /* 1919328d5752SMark Fasheh * A rotate moves the rightmost left leaf 1920328d5752SMark Fasheh * record over to the leftmost right leaf 1921328d5752SMark Fasheh * slot. If we're doing an extent split 1922328d5752SMark Fasheh * instead of a real insert, then we have to 1923328d5752SMark Fasheh * check that the extent to be split wasn't 1924328d5752SMark Fasheh * just moved over. If it was, then we can 1925328d5752SMark Fasheh * exit here, passing left_path back - 1926328d5752SMark Fasheh * ocfs2_split_extent() is smart enough to 1927328d5752SMark Fasheh * search both leaves. 1928328d5752SMark Fasheh */ 1929328d5752SMark Fasheh *ret_left_path = left_path; 1930328d5752SMark Fasheh goto out_ret_path; 1931328d5752SMark Fasheh } 1932328d5752SMark Fasheh 1933dcd0538fSMark Fasheh /* 1934dcd0538fSMark Fasheh * There is no need to re-read the next right path 1935dcd0538fSMark Fasheh * as we know that it'll be our current left 1936dcd0538fSMark Fasheh * path. Optimize by copying values instead. 1937dcd0538fSMark Fasheh */ 1938dcd0538fSMark Fasheh ocfs2_mv_path(right_path, left_path); 1939dcd0538fSMark Fasheh 1940dcd0538fSMark Fasheh ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb, right_path, 1941dcd0538fSMark Fasheh &cpos); 1942dcd0538fSMark Fasheh if (ret) { 1943dcd0538fSMark Fasheh mlog_errno(ret); 1944dcd0538fSMark Fasheh goto out; 1945dcd0538fSMark Fasheh } 1946dcd0538fSMark Fasheh } 1947dcd0538fSMark Fasheh 1948dcd0538fSMark Fasheh out: 1949dcd0538fSMark Fasheh ocfs2_free_path(left_path); 1950dcd0538fSMark Fasheh 1951dcd0538fSMark Fasheh out_ret_path: 1952dcd0538fSMark Fasheh return ret; 1953dcd0538fSMark Fasheh } 1954dcd0538fSMark Fasheh 1955328d5752SMark Fasheh static void ocfs2_update_edge_lengths(struct inode *inode, handle_t *handle, 1956328d5752SMark Fasheh struct ocfs2_path *path) 1957328d5752SMark Fasheh { 1958328d5752SMark Fasheh int i, idx; 1959328d5752SMark Fasheh struct ocfs2_extent_rec *rec; 1960328d5752SMark Fasheh struct ocfs2_extent_list *el; 1961328d5752SMark Fasheh struct ocfs2_extent_block *eb; 1962328d5752SMark Fasheh u32 range; 1963328d5752SMark Fasheh 1964328d5752SMark Fasheh /* Path should always be rightmost. */ 1965328d5752SMark Fasheh eb = (struct ocfs2_extent_block *)path_leaf_bh(path)->b_data; 1966328d5752SMark Fasheh BUG_ON(eb->h_next_leaf_blk != 0ULL); 1967328d5752SMark Fasheh 1968328d5752SMark Fasheh el = &eb->h_list; 1969328d5752SMark Fasheh BUG_ON(le16_to_cpu(el->l_next_free_rec) == 0); 1970328d5752SMark Fasheh idx = le16_to_cpu(el->l_next_free_rec) - 1; 1971328d5752SMark Fasheh rec = &el->l_recs[idx]; 1972328d5752SMark Fasheh range = le32_to_cpu(rec->e_cpos) + ocfs2_rec_clusters(el, rec); 1973328d5752SMark Fasheh 1974328d5752SMark Fasheh for (i = 0; i < path->p_tree_depth; i++) { 1975328d5752SMark Fasheh el = path->p_node[i].el; 1976328d5752SMark Fasheh idx = le16_to_cpu(el->l_next_free_rec) - 1; 1977328d5752SMark Fasheh rec = &el->l_recs[idx]; 1978328d5752SMark Fasheh 1979328d5752SMark Fasheh rec->e_int_clusters = cpu_to_le32(range); 1980328d5752SMark Fasheh le32_add_cpu(&rec->e_int_clusters, -le32_to_cpu(rec->e_cpos)); 1981328d5752SMark Fasheh 1982328d5752SMark Fasheh ocfs2_journal_dirty(handle, path->p_node[i].bh); 1983328d5752SMark Fasheh } 1984328d5752SMark Fasheh } 1985328d5752SMark Fasheh 1986328d5752SMark Fasheh static void ocfs2_unlink_path(struct inode *inode, handle_t *handle, 1987328d5752SMark Fasheh struct ocfs2_cached_dealloc_ctxt *dealloc, 1988328d5752SMark Fasheh struct ocfs2_path *path, int unlink_start) 1989328d5752SMark Fasheh { 1990328d5752SMark Fasheh int ret, i; 1991328d5752SMark Fasheh struct ocfs2_extent_block *eb; 1992328d5752SMark Fasheh struct ocfs2_extent_list *el; 1993328d5752SMark Fasheh struct buffer_head *bh; 1994328d5752SMark Fasheh 1995328d5752SMark Fasheh for(i = unlink_start; i < path_num_items(path); i++) { 1996328d5752SMark Fasheh bh = path->p_node[i].bh; 1997328d5752SMark Fasheh 1998328d5752SMark Fasheh eb = (struct ocfs2_extent_block *)bh->b_data; 1999328d5752SMark Fasheh /* 2000328d5752SMark Fasheh * Not all nodes might have had their final count 2001328d5752SMark Fasheh * decremented by the caller - handle this here. 2002328d5752SMark Fasheh */ 2003328d5752SMark Fasheh el = &eb->h_list; 2004328d5752SMark Fasheh if (le16_to_cpu(el->l_next_free_rec) > 1) { 2005328d5752SMark Fasheh mlog(ML_ERROR, 2006328d5752SMark Fasheh "Inode %llu, attempted to remove extent block " 2007328d5752SMark Fasheh "%llu with %u records\n", 2008328d5752SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno, 2009328d5752SMark Fasheh (unsigned long long)le64_to_cpu(eb->h_blkno), 2010328d5752SMark Fasheh le16_to_cpu(el->l_next_free_rec)); 2011328d5752SMark Fasheh 2012328d5752SMark Fasheh ocfs2_journal_dirty(handle, bh); 2013328d5752SMark Fasheh ocfs2_remove_from_cache(inode, bh); 2014328d5752SMark Fasheh continue; 2015328d5752SMark Fasheh } 2016328d5752SMark Fasheh 2017328d5752SMark Fasheh el->l_next_free_rec = 0; 2018328d5752SMark Fasheh memset(&el->l_recs[0], 0, sizeof(struct ocfs2_extent_rec)); 2019328d5752SMark Fasheh 2020328d5752SMark Fasheh ocfs2_journal_dirty(handle, bh); 2021328d5752SMark Fasheh 2022328d5752SMark Fasheh ret = ocfs2_cache_extent_block_free(dealloc, eb); 2023328d5752SMark Fasheh if (ret) 2024328d5752SMark Fasheh mlog_errno(ret); 2025328d5752SMark Fasheh 2026328d5752SMark Fasheh ocfs2_remove_from_cache(inode, bh); 2027328d5752SMark Fasheh } 2028328d5752SMark Fasheh } 2029328d5752SMark Fasheh 2030328d5752SMark Fasheh static void ocfs2_unlink_subtree(struct inode *inode, handle_t *handle, 2031328d5752SMark Fasheh struct ocfs2_path *left_path, 2032328d5752SMark Fasheh struct ocfs2_path *right_path, 2033328d5752SMark Fasheh int subtree_index, 2034328d5752SMark Fasheh struct ocfs2_cached_dealloc_ctxt *dealloc) 2035328d5752SMark Fasheh { 2036328d5752SMark Fasheh int i; 2037328d5752SMark Fasheh struct buffer_head *root_bh = left_path->p_node[subtree_index].bh; 2038328d5752SMark Fasheh struct ocfs2_extent_list *root_el = left_path->p_node[subtree_index].el; 2039328d5752SMark Fasheh struct ocfs2_extent_list *el; 2040328d5752SMark Fasheh struct ocfs2_extent_block *eb; 2041328d5752SMark Fasheh 2042328d5752SMark Fasheh el = path_leaf_el(left_path); 2043328d5752SMark Fasheh 2044328d5752SMark Fasheh eb = (struct ocfs2_extent_block *)right_path->p_node[subtree_index + 1].bh->b_data; 2045328d5752SMark Fasheh 2046328d5752SMark Fasheh for(i = 1; i < le16_to_cpu(root_el->l_next_free_rec); i++) 2047328d5752SMark Fasheh if (root_el->l_recs[i].e_blkno == eb->h_blkno) 2048328d5752SMark Fasheh break; 2049328d5752SMark Fasheh 2050328d5752SMark Fasheh BUG_ON(i >= le16_to_cpu(root_el->l_next_free_rec)); 2051328d5752SMark Fasheh 2052328d5752SMark Fasheh memset(&root_el->l_recs[i], 0, sizeof(struct ocfs2_extent_rec)); 2053328d5752SMark Fasheh le16_add_cpu(&root_el->l_next_free_rec, -1); 2054328d5752SMark Fasheh 2055328d5752SMark Fasheh eb = (struct ocfs2_extent_block *)path_leaf_bh(left_path)->b_data; 2056328d5752SMark Fasheh eb->h_next_leaf_blk = 0; 2057328d5752SMark Fasheh 2058328d5752SMark Fasheh ocfs2_journal_dirty(handle, root_bh); 2059328d5752SMark Fasheh ocfs2_journal_dirty(handle, path_leaf_bh(left_path)); 2060328d5752SMark Fasheh 2061328d5752SMark Fasheh ocfs2_unlink_path(inode, handle, dealloc, right_path, 2062328d5752SMark Fasheh subtree_index + 1); 2063328d5752SMark Fasheh } 2064328d5752SMark Fasheh 2065328d5752SMark Fasheh static int ocfs2_rotate_subtree_left(struct inode *inode, handle_t *handle, 2066328d5752SMark Fasheh struct ocfs2_path *left_path, 2067328d5752SMark Fasheh struct ocfs2_path *right_path, 2068328d5752SMark Fasheh int subtree_index, 2069328d5752SMark Fasheh struct ocfs2_cached_dealloc_ctxt *dealloc, 2070328d5752SMark Fasheh int *deleted) 2071328d5752SMark Fasheh { 2072328d5752SMark Fasheh int ret, i, del_right_subtree = 0, right_has_empty = 0; 2073328d5752SMark Fasheh struct buffer_head *root_bh, *di_bh = path_root_bh(right_path); 2074328d5752SMark Fasheh struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data; 2075328d5752SMark Fasheh struct ocfs2_extent_list *right_leaf_el, *left_leaf_el; 2076328d5752SMark Fasheh struct ocfs2_extent_block *eb; 2077328d5752SMark Fasheh 2078328d5752SMark Fasheh *deleted = 0; 2079328d5752SMark Fasheh 2080328d5752SMark Fasheh right_leaf_el = path_leaf_el(right_path); 2081328d5752SMark Fasheh left_leaf_el = path_leaf_el(left_path); 2082328d5752SMark Fasheh root_bh = left_path->p_node[subtree_index].bh; 2083328d5752SMark Fasheh BUG_ON(root_bh != right_path->p_node[subtree_index].bh); 2084328d5752SMark Fasheh 2085328d5752SMark Fasheh if (!ocfs2_is_empty_extent(&left_leaf_el->l_recs[0])) 2086328d5752SMark Fasheh return 0; 2087328d5752SMark Fasheh 2088328d5752SMark Fasheh eb = (struct ocfs2_extent_block *)path_leaf_bh(right_path)->b_data; 2089328d5752SMark Fasheh if (ocfs2_is_empty_extent(&right_leaf_el->l_recs[0])) { 2090328d5752SMark Fasheh /* 2091328d5752SMark Fasheh * It's legal for us to proceed if the right leaf is 2092328d5752SMark Fasheh * the rightmost one and it has an empty extent. There 2093328d5752SMark Fasheh * are two cases to handle - whether the leaf will be 2094328d5752SMark Fasheh * empty after removal or not. If the leaf isn't empty 2095328d5752SMark Fasheh * then just remove the empty extent up front. The 2096328d5752SMark Fasheh * next block will handle empty leaves by flagging 2097328d5752SMark Fasheh * them for unlink. 2098328d5752SMark Fasheh * 2099328d5752SMark Fasheh * Non rightmost leaves will throw -EAGAIN and the 2100328d5752SMark Fasheh * caller can manually move the subtree and retry. 2101328d5752SMark Fasheh */ 2102328d5752SMark Fasheh 2103328d5752SMark Fasheh if (eb->h_next_leaf_blk != 0ULL) 2104328d5752SMark Fasheh return -EAGAIN; 2105328d5752SMark Fasheh 2106328d5752SMark Fasheh if (le16_to_cpu(right_leaf_el->l_next_free_rec) > 1) { 2107328d5752SMark Fasheh ret = ocfs2_journal_access(handle, inode, 2108328d5752SMark Fasheh path_leaf_bh(right_path), 2109328d5752SMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 2110328d5752SMark Fasheh if (ret) { 2111328d5752SMark Fasheh mlog_errno(ret); 2112328d5752SMark Fasheh goto out; 2113328d5752SMark Fasheh } 2114328d5752SMark Fasheh 2115328d5752SMark Fasheh ocfs2_remove_empty_extent(right_leaf_el); 2116328d5752SMark Fasheh } else 2117328d5752SMark Fasheh right_has_empty = 1; 2118328d5752SMark Fasheh } 2119328d5752SMark Fasheh 2120328d5752SMark Fasheh if (eb->h_next_leaf_blk == 0ULL && 2121328d5752SMark Fasheh le16_to_cpu(right_leaf_el->l_next_free_rec) == 1) { 2122328d5752SMark Fasheh /* 2123328d5752SMark Fasheh * We have to update i_last_eb_blk during the meta 2124328d5752SMark Fasheh * data delete. 2125328d5752SMark Fasheh */ 2126328d5752SMark Fasheh ret = ocfs2_journal_access(handle, inode, di_bh, 2127328d5752SMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 2128328d5752SMark Fasheh if (ret) { 2129328d5752SMark Fasheh mlog_errno(ret); 2130328d5752SMark Fasheh goto out; 2131328d5752SMark Fasheh } 2132328d5752SMark Fasheh 2133328d5752SMark Fasheh del_right_subtree = 1; 2134328d5752SMark Fasheh } 2135328d5752SMark Fasheh 2136328d5752SMark Fasheh /* 2137328d5752SMark Fasheh * Getting here with an empty extent in the right path implies 2138328d5752SMark Fasheh * that it's the rightmost path and will be deleted. 2139328d5752SMark Fasheh */ 2140328d5752SMark Fasheh BUG_ON(right_has_empty && !del_right_subtree); 2141328d5752SMark Fasheh 2142328d5752SMark Fasheh ret = ocfs2_journal_access(handle, inode, root_bh, 2143328d5752SMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 2144328d5752SMark Fasheh if (ret) { 2145328d5752SMark Fasheh mlog_errno(ret); 2146328d5752SMark Fasheh goto out; 2147328d5752SMark Fasheh } 2148328d5752SMark Fasheh 2149328d5752SMark Fasheh for(i = subtree_index + 1; i < path_num_items(right_path); i++) { 2150328d5752SMark Fasheh ret = ocfs2_journal_access(handle, inode, 2151328d5752SMark Fasheh right_path->p_node[i].bh, 2152328d5752SMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 2153328d5752SMark Fasheh if (ret) { 2154328d5752SMark Fasheh mlog_errno(ret); 2155328d5752SMark Fasheh goto out; 2156328d5752SMark Fasheh } 2157328d5752SMark Fasheh 2158328d5752SMark Fasheh ret = ocfs2_journal_access(handle, inode, 2159328d5752SMark Fasheh left_path->p_node[i].bh, 2160328d5752SMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 2161328d5752SMark Fasheh if (ret) { 2162328d5752SMark Fasheh mlog_errno(ret); 2163328d5752SMark Fasheh goto out; 2164328d5752SMark Fasheh } 2165328d5752SMark Fasheh } 2166328d5752SMark Fasheh 2167328d5752SMark Fasheh if (!right_has_empty) { 2168328d5752SMark Fasheh /* 2169328d5752SMark Fasheh * Only do this if we're moving a real 2170328d5752SMark Fasheh * record. Otherwise, the action is delayed until 2171328d5752SMark Fasheh * after removal of the right path in which case we 2172328d5752SMark Fasheh * can do a simple shift to remove the empty extent. 2173328d5752SMark Fasheh */ 2174328d5752SMark Fasheh ocfs2_rotate_leaf(left_leaf_el, &right_leaf_el->l_recs[0]); 2175328d5752SMark Fasheh memset(&right_leaf_el->l_recs[0], 0, 2176328d5752SMark Fasheh sizeof(struct ocfs2_extent_rec)); 2177328d5752SMark Fasheh } 2178328d5752SMark Fasheh if (eb->h_next_leaf_blk == 0ULL) { 2179328d5752SMark Fasheh /* 2180328d5752SMark Fasheh * Move recs over to get rid of empty extent, decrease 2181328d5752SMark Fasheh * next_free. This is allowed to remove the last 2182328d5752SMark Fasheh * extent in our leaf (setting l_next_free_rec to 2183328d5752SMark Fasheh * zero) - the delete code below won't care. 2184328d5752SMark Fasheh */ 2185328d5752SMark Fasheh ocfs2_remove_empty_extent(right_leaf_el); 2186328d5752SMark Fasheh } 2187328d5752SMark Fasheh 2188328d5752SMark Fasheh ret = ocfs2_journal_dirty(handle, path_leaf_bh(left_path)); 2189328d5752SMark Fasheh if (ret) 2190328d5752SMark Fasheh mlog_errno(ret); 2191328d5752SMark Fasheh ret = ocfs2_journal_dirty(handle, path_leaf_bh(right_path)); 2192328d5752SMark Fasheh if (ret) 2193328d5752SMark Fasheh mlog_errno(ret); 2194328d5752SMark Fasheh 2195328d5752SMark Fasheh if (del_right_subtree) { 2196328d5752SMark Fasheh ocfs2_unlink_subtree(inode, handle, left_path, right_path, 2197328d5752SMark Fasheh subtree_index, dealloc); 2198328d5752SMark Fasheh ocfs2_update_edge_lengths(inode, handle, left_path); 2199328d5752SMark Fasheh 2200328d5752SMark Fasheh eb = (struct ocfs2_extent_block *)path_leaf_bh(left_path)->b_data; 2201328d5752SMark Fasheh di->i_last_eb_blk = eb->h_blkno; 2202328d5752SMark Fasheh 2203328d5752SMark Fasheh /* 2204328d5752SMark Fasheh * Removal of the extent in the left leaf was skipped 2205328d5752SMark Fasheh * above so we could delete the right path 2206328d5752SMark Fasheh * 1st. 2207328d5752SMark Fasheh */ 2208328d5752SMark Fasheh if (right_has_empty) 2209328d5752SMark Fasheh ocfs2_remove_empty_extent(left_leaf_el); 2210328d5752SMark Fasheh 2211328d5752SMark Fasheh ret = ocfs2_journal_dirty(handle, di_bh); 2212328d5752SMark Fasheh if (ret) 2213328d5752SMark Fasheh mlog_errno(ret); 2214328d5752SMark Fasheh 2215328d5752SMark Fasheh *deleted = 1; 2216328d5752SMark Fasheh } else 2217328d5752SMark Fasheh ocfs2_complete_edge_insert(inode, handle, left_path, right_path, 2218328d5752SMark Fasheh subtree_index); 2219328d5752SMark Fasheh 2220328d5752SMark Fasheh out: 2221328d5752SMark Fasheh return ret; 2222328d5752SMark Fasheh } 2223328d5752SMark Fasheh 2224328d5752SMark Fasheh /* 2225328d5752SMark Fasheh * Given a full path, determine what cpos value would return us a path 2226328d5752SMark Fasheh * containing the leaf immediately to the right of the current one. 2227328d5752SMark Fasheh * 2228328d5752SMark Fasheh * Will return zero if the path passed in is already the rightmost path. 2229328d5752SMark Fasheh * 2230328d5752SMark Fasheh * This looks similar, but is subtly different to 2231328d5752SMark Fasheh * ocfs2_find_cpos_for_left_leaf(). 2232328d5752SMark Fasheh */ 2233328d5752SMark Fasheh static int ocfs2_find_cpos_for_right_leaf(struct super_block *sb, 2234328d5752SMark Fasheh struct ocfs2_path *path, u32 *cpos) 2235328d5752SMark Fasheh { 2236328d5752SMark Fasheh int i, j, ret = 0; 2237328d5752SMark Fasheh u64 blkno; 2238328d5752SMark Fasheh struct ocfs2_extent_list *el; 2239328d5752SMark Fasheh 2240328d5752SMark Fasheh *cpos = 0; 2241328d5752SMark Fasheh 2242328d5752SMark Fasheh if (path->p_tree_depth == 0) 2243328d5752SMark Fasheh return 0; 2244328d5752SMark Fasheh 2245328d5752SMark Fasheh blkno = path_leaf_bh(path)->b_blocknr; 2246328d5752SMark Fasheh 2247328d5752SMark Fasheh /* Start at the tree node just above the leaf and work our way up. */ 2248328d5752SMark Fasheh i = path->p_tree_depth - 1; 2249328d5752SMark Fasheh while (i >= 0) { 2250328d5752SMark Fasheh int next_free; 2251328d5752SMark Fasheh 2252328d5752SMark Fasheh el = path->p_node[i].el; 2253328d5752SMark Fasheh 2254328d5752SMark Fasheh /* 2255328d5752SMark Fasheh * Find the extent record just after the one in our 2256328d5752SMark Fasheh * path. 2257328d5752SMark Fasheh */ 2258328d5752SMark Fasheh next_free = le16_to_cpu(el->l_next_free_rec); 2259328d5752SMark Fasheh for(j = 0; j < le16_to_cpu(el->l_next_free_rec); j++) { 2260328d5752SMark Fasheh if (le64_to_cpu(el->l_recs[j].e_blkno) == blkno) { 2261328d5752SMark Fasheh if (j == (next_free - 1)) { 2262328d5752SMark Fasheh if (i == 0) { 2263328d5752SMark Fasheh /* 2264328d5752SMark Fasheh * We've determined that the 2265328d5752SMark Fasheh * path specified is already 2266328d5752SMark Fasheh * the rightmost one - return a 2267328d5752SMark Fasheh * cpos of zero. 2268328d5752SMark Fasheh */ 2269328d5752SMark Fasheh goto out; 2270328d5752SMark Fasheh } 2271328d5752SMark Fasheh /* 2272328d5752SMark Fasheh * The rightmost record points to our 2273328d5752SMark Fasheh * leaf - we need to travel up the 2274328d5752SMark Fasheh * tree one level. 2275328d5752SMark Fasheh */ 2276328d5752SMark Fasheh goto next_node; 2277328d5752SMark Fasheh } 2278328d5752SMark Fasheh 2279328d5752SMark Fasheh *cpos = le32_to_cpu(el->l_recs[j + 1].e_cpos); 2280328d5752SMark Fasheh goto out; 2281328d5752SMark Fasheh } 2282328d5752SMark Fasheh } 2283328d5752SMark Fasheh 2284328d5752SMark Fasheh /* 2285328d5752SMark Fasheh * If we got here, we never found a valid node where 2286328d5752SMark Fasheh * the tree indicated one should be. 2287328d5752SMark Fasheh */ 2288328d5752SMark Fasheh ocfs2_error(sb, 2289328d5752SMark Fasheh "Invalid extent tree at extent block %llu\n", 2290328d5752SMark Fasheh (unsigned long long)blkno); 2291328d5752SMark Fasheh ret = -EROFS; 2292328d5752SMark Fasheh goto out; 2293328d5752SMark Fasheh 2294328d5752SMark Fasheh next_node: 2295328d5752SMark Fasheh blkno = path->p_node[i].bh->b_blocknr; 2296328d5752SMark Fasheh i--; 2297328d5752SMark Fasheh } 2298328d5752SMark Fasheh 2299328d5752SMark Fasheh out: 2300328d5752SMark Fasheh return ret; 2301328d5752SMark Fasheh } 2302328d5752SMark Fasheh 2303328d5752SMark Fasheh static int ocfs2_rotate_rightmost_leaf_left(struct inode *inode, 2304328d5752SMark Fasheh handle_t *handle, 2305328d5752SMark Fasheh struct buffer_head *bh, 2306328d5752SMark Fasheh struct ocfs2_extent_list *el) 2307328d5752SMark Fasheh { 2308328d5752SMark Fasheh int ret; 2309328d5752SMark Fasheh 2310328d5752SMark Fasheh if (!ocfs2_is_empty_extent(&el->l_recs[0])) 2311328d5752SMark Fasheh return 0; 2312328d5752SMark Fasheh 2313328d5752SMark Fasheh ret = ocfs2_journal_access(handle, inode, bh, 2314328d5752SMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 2315328d5752SMark Fasheh if (ret) { 2316328d5752SMark Fasheh mlog_errno(ret); 2317328d5752SMark Fasheh goto out; 2318328d5752SMark Fasheh } 2319328d5752SMark Fasheh 2320328d5752SMark Fasheh ocfs2_remove_empty_extent(el); 2321328d5752SMark Fasheh 2322328d5752SMark Fasheh ret = ocfs2_journal_dirty(handle, bh); 2323328d5752SMark Fasheh if (ret) 2324328d5752SMark Fasheh mlog_errno(ret); 2325328d5752SMark Fasheh 2326328d5752SMark Fasheh out: 2327328d5752SMark Fasheh return ret; 2328328d5752SMark Fasheh } 2329328d5752SMark Fasheh 2330328d5752SMark Fasheh static int __ocfs2_rotate_tree_left(struct inode *inode, 2331328d5752SMark Fasheh handle_t *handle, int orig_credits, 2332328d5752SMark Fasheh struct ocfs2_path *path, 2333328d5752SMark Fasheh struct ocfs2_cached_dealloc_ctxt *dealloc, 2334328d5752SMark Fasheh struct ocfs2_path **empty_extent_path) 2335328d5752SMark Fasheh { 2336328d5752SMark Fasheh int ret, subtree_root, deleted; 2337328d5752SMark Fasheh u32 right_cpos; 2338328d5752SMark Fasheh struct ocfs2_path *left_path = NULL; 2339328d5752SMark Fasheh struct ocfs2_path *right_path = NULL; 2340328d5752SMark Fasheh 2341328d5752SMark Fasheh BUG_ON(!ocfs2_is_empty_extent(&(path_leaf_el(path)->l_recs[0]))); 2342328d5752SMark Fasheh 2343328d5752SMark Fasheh *empty_extent_path = NULL; 2344328d5752SMark Fasheh 2345328d5752SMark Fasheh ret = ocfs2_find_cpos_for_right_leaf(inode->i_sb, path, 2346328d5752SMark Fasheh &right_cpos); 2347328d5752SMark Fasheh if (ret) { 2348328d5752SMark Fasheh mlog_errno(ret); 2349328d5752SMark Fasheh goto out; 2350328d5752SMark Fasheh } 2351328d5752SMark Fasheh 2352328d5752SMark Fasheh left_path = ocfs2_new_path(path_root_bh(path), 2353328d5752SMark Fasheh path_root_el(path)); 2354328d5752SMark Fasheh if (!left_path) { 2355328d5752SMark Fasheh ret = -ENOMEM; 2356328d5752SMark Fasheh mlog_errno(ret); 2357328d5752SMark Fasheh goto out; 2358328d5752SMark Fasheh } 2359328d5752SMark Fasheh 2360328d5752SMark Fasheh ocfs2_cp_path(left_path, path); 2361328d5752SMark Fasheh 2362328d5752SMark Fasheh right_path = ocfs2_new_path(path_root_bh(path), 2363328d5752SMark Fasheh path_root_el(path)); 2364328d5752SMark Fasheh if (!right_path) { 2365328d5752SMark Fasheh ret = -ENOMEM; 2366328d5752SMark Fasheh mlog_errno(ret); 2367328d5752SMark Fasheh goto out; 2368328d5752SMark Fasheh } 2369328d5752SMark Fasheh 2370328d5752SMark Fasheh while (right_cpos) { 2371328d5752SMark Fasheh ret = ocfs2_find_path(inode, right_path, right_cpos); 2372328d5752SMark Fasheh if (ret) { 2373328d5752SMark Fasheh mlog_errno(ret); 2374328d5752SMark Fasheh goto out; 2375328d5752SMark Fasheh } 2376328d5752SMark Fasheh 2377328d5752SMark Fasheh subtree_root = ocfs2_find_subtree_root(inode, left_path, 2378328d5752SMark Fasheh right_path); 2379328d5752SMark Fasheh 2380328d5752SMark Fasheh mlog(0, "Subtree root at index %d (blk %llu, depth %d)\n", 2381328d5752SMark Fasheh subtree_root, 2382328d5752SMark Fasheh (unsigned long long) 2383328d5752SMark Fasheh right_path->p_node[subtree_root].bh->b_blocknr, 2384328d5752SMark Fasheh right_path->p_tree_depth); 2385328d5752SMark Fasheh 2386328d5752SMark Fasheh ret = ocfs2_extend_rotate_transaction(handle, subtree_root, 2387328d5752SMark Fasheh orig_credits, left_path); 2388328d5752SMark Fasheh if (ret) { 2389328d5752SMark Fasheh mlog_errno(ret); 2390328d5752SMark Fasheh goto out; 2391328d5752SMark Fasheh } 2392328d5752SMark Fasheh 2393328d5752SMark Fasheh ret = ocfs2_rotate_subtree_left(inode, handle, left_path, 2394328d5752SMark Fasheh right_path, subtree_root, 2395328d5752SMark Fasheh dealloc, &deleted); 2396328d5752SMark Fasheh if (ret == -EAGAIN) { 2397328d5752SMark Fasheh /* 2398328d5752SMark Fasheh * The rotation has to temporarily stop due to 2399328d5752SMark Fasheh * the right subtree having an empty 2400328d5752SMark Fasheh * extent. Pass it back to the caller for a 2401328d5752SMark Fasheh * fixup. 2402328d5752SMark Fasheh */ 2403328d5752SMark Fasheh *empty_extent_path = right_path; 2404328d5752SMark Fasheh right_path = NULL; 2405328d5752SMark Fasheh goto out; 2406328d5752SMark Fasheh } 2407328d5752SMark Fasheh if (ret) { 2408328d5752SMark Fasheh mlog_errno(ret); 2409328d5752SMark Fasheh goto out; 2410328d5752SMark Fasheh } 2411328d5752SMark Fasheh 2412328d5752SMark Fasheh /* 2413328d5752SMark Fasheh * The subtree rotate might have removed records on 2414328d5752SMark Fasheh * the rightmost edge. If so, then rotation is 2415328d5752SMark Fasheh * complete. 2416328d5752SMark Fasheh */ 2417328d5752SMark Fasheh if (deleted) 2418328d5752SMark Fasheh break; 2419328d5752SMark Fasheh 2420328d5752SMark Fasheh ocfs2_mv_path(left_path, right_path); 2421328d5752SMark Fasheh 2422328d5752SMark Fasheh ret = ocfs2_find_cpos_for_right_leaf(inode->i_sb, left_path, 2423328d5752SMark Fasheh &right_cpos); 2424328d5752SMark Fasheh if (ret) { 2425328d5752SMark Fasheh mlog_errno(ret); 2426328d5752SMark Fasheh goto out; 2427328d5752SMark Fasheh } 2428328d5752SMark Fasheh } 2429328d5752SMark Fasheh 2430328d5752SMark Fasheh out: 2431328d5752SMark Fasheh ocfs2_free_path(right_path); 2432328d5752SMark Fasheh ocfs2_free_path(left_path); 2433328d5752SMark Fasheh 2434328d5752SMark Fasheh return ret; 2435328d5752SMark Fasheh } 2436328d5752SMark Fasheh 2437328d5752SMark Fasheh static int ocfs2_remove_rightmost_path(struct inode *inode, handle_t *handle, 2438328d5752SMark Fasheh struct ocfs2_path *path, 2439328d5752SMark Fasheh struct ocfs2_cached_dealloc_ctxt *dealloc) 2440328d5752SMark Fasheh { 2441328d5752SMark Fasheh int ret, subtree_index; 2442328d5752SMark Fasheh u32 cpos; 2443328d5752SMark Fasheh struct ocfs2_path *left_path = NULL; 2444328d5752SMark Fasheh struct ocfs2_dinode *di; 2445328d5752SMark Fasheh struct ocfs2_extent_block *eb; 2446328d5752SMark Fasheh struct ocfs2_extent_list *el; 2447328d5752SMark Fasheh 2448328d5752SMark Fasheh /* 2449328d5752SMark Fasheh * XXX: This code assumes that the root is an inode, which is 2450328d5752SMark Fasheh * true for now but may change as tree code gets generic. 2451328d5752SMark Fasheh */ 2452328d5752SMark Fasheh di = (struct ocfs2_dinode *)path_root_bh(path)->b_data; 2453328d5752SMark Fasheh if (!OCFS2_IS_VALID_DINODE(di)) { 2454328d5752SMark Fasheh ret = -EIO; 2455328d5752SMark Fasheh ocfs2_error(inode->i_sb, 2456328d5752SMark Fasheh "Inode %llu has invalid path root", 2457328d5752SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno); 2458328d5752SMark Fasheh goto out; 2459328d5752SMark Fasheh } 2460328d5752SMark Fasheh 2461328d5752SMark Fasheh /* 2462328d5752SMark Fasheh * There's two ways we handle this depending on 2463328d5752SMark Fasheh * whether path is the only existing one. 2464328d5752SMark Fasheh */ 2465328d5752SMark Fasheh ret = ocfs2_extend_rotate_transaction(handle, 0, 2466328d5752SMark Fasheh handle->h_buffer_credits, 2467328d5752SMark Fasheh path); 2468328d5752SMark Fasheh if (ret) { 2469328d5752SMark Fasheh mlog_errno(ret); 2470328d5752SMark Fasheh goto out; 2471328d5752SMark Fasheh } 2472328d5752SMark Fasheh 2473328d5752SMark Fasheh ret = ocfs2_journal_access_path(inode, handle, path); 2474328d5752SMark Fasheh if (ret) { 2475328d5752SMark Fasheh mlog_errno(ret); 2476328d5752SMark Fasheh goto out; 2477328d5752SMark Fasheh } 2478328d5752SMark Fasheh 2479328d5752SMark Fasheh ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb, path, &cpos); 2480328d5752SMark Fasheh if (ret) { 2481328d5752SMark Fasheh mlog_errno(ret); 2482328d5752SMark Fasheh goto out; 2483328d5752SMark Fasheh } 2484328d5752SMark Fasheh 2485328d5752SMark Fasheh if (cpos) { 2486328d5752SMark Fasheh /* 2487328d5752SMark Fasheh * We have a path to the left of this one - it needs 2488328d5752SMark Fasheh * an update too. 2489328d5752SMark Fasheh */ 2490328d5752SMark Fasheh left_path = ocfs2_new_path(path_root_bh(path), 2491328d5752SMark Fasheh path_root_el(path)); 2492328d5752SMark Fasheh if (!left_path) { 2493328d5752SMark Fasheh ret = -ENOMEM; 2494328d5752SMark Fasheh mlog_errno(ret); 2495328d5752SMark Fasheh goto out; 2496328d5752SMark Fasheh } 2497328d5752SMark Fasheh 2498328d5752SMark Fasheh ret = ocfs2_find_path(inode, left_path, cpos); 2499328d5752SMark Fasheh if (ret) { 2500328d5752SMark Fasheh mlog_errno(ret); 2501328d5752SMark Fasheh goto out; 2502328d5752SMark Fasheh } 2503328d5752SMark Fasheh 2504328d5752SMark Fasheh ret = ocfs2_journal_access_path(inode, handle, left_path); 2505328d5752SMark Fasheh if (ret) { 2506328d5752SMark Fasheh mlog_errno(ret); 2507328d5752SMark Fasheh goto out; 2508328d5752SMark Fasheh } 2509328d5752SMark Fasheh 2510328d5752SMark Fasheh subtree_index = ocfs2_find_subtree_root(inode, left_path, path); 2511328d5752SMark Fasheh 2512328d5752SMark Fasheh ocfs2_unlink_subtree(inode, handle, left_path, path, 2513328d5752SMark Fasheh subtree_index, dealloc); 2514328d5752SMark Fasheh ocfs2_update_edge_lengths(inode, handle, left_path); 2515328d5752SMark Fasheh 2516328d5752SMark Fasheh eb = (struct ocfs2_extent_block *)path_leaf_bh(left_path)->b_data; 2517328d5752SMark Fasheh di->i_last_eb_blk = eb->h_blkno; 2518328d5752SMark Fasheh } else { 2519328d5752SMark Fasheh /* 2520328d5752SMark Fasheh * 'path' is also the leftmost path which 2521328d5752SMark Fasheh * means it must be the only one. This gets 2522328d5752SMark Fasheh * handled differently because we want to 2523328d5752SMark Fasheh * revert the inode back to having extents 2524328d5752SMark Fasheh * in-line. 2525328d5752SMark Fasheh */ 2526328d5752SMark Fasheh ocfs2_unlink_path(inode, handle, dealloc, path, 1); 2527328d5752SMark Fasheh 2528328d5752SMark Fasheh el = &di->id2.i_list; 2529328d5752SMark Fasheh el->l_tree_depth = 0; 2530328d5752SMark Fasheh el->l_next_free_rec = 0; 2531328d5752SMark Fasheh memset(&el->l_recs[0], 0, sizeof(struct ocfs2_extent_rec)); 2532328d5752SMark Fasheh 2533328d5752SMark Fasheh di->i_last_eb_blk = 0; 2534328d5752SMark Fasheh } 2535328d5752SMark Fasheh 2536328d5752SMark Fasheh ocfs2_journal_dirty(handle, path_root_bh(path)); 2537328d5752SMark Fasheh 2538328d5752SMark Fasheh out: 2539328d5752SMark Fasheh ocfs2_free_path(left_path); 2540328d5752SMark Fasheh return ret; 2541328d5752SMark Fasheh } 2542328d5752SMark Fasheh 2543328d5752SMark Fasheh /* 2544328d5752SMark Fasheh * Left rotation of btree records. 2545328d5752SMark Fasheh * 2546328d5752SMark Fasheh * In many ways, this is (unsurprisingly) the opposite of right 2547328d5752SMark Fasheh * rotation. We start at some non-rightmost path containing an empty 2548328d5752SMark Fasheh * extent in the leaf block. The code works its way to the rightmost 2549328d5752SMark Fasheh * path by rotating records to the left in every subtree. 2550328d5752SMark Fasheh * 2551328d5752SMark Fasheh * This is used by any code which reduces the number of extent records 2552328d5752SMark Fasheh * in a leaf. After removal, an empty record should be placed in the 2553328d5752SMark Fasheh * leftmost list position. 2554328d5752SMark Fasheh * 2555328d5752SMark Fasheh * This won't handle a length update of the rightmost path records if 2556328d5752SMark Fasheh * the rightmost tree leaf record is removed so the caller is 2557328d5752SMark Fasheh * responsible for detecting and correcting that. 2558328d5752SMark Fasheh */ 2559328d5752SMark Fasheh static int ocfs2_rotate_tree_left(struct inode *inode, handle_t *handle, 2560328d5752SMark Fasheh struct ocfs2_path *path, 2561328d5752SMark Fasheh struct ocfs2_cached_dealloc_ctxt *dealloc) 2562328d5752SMark Fasheh { 2563328d5752SMark Fasheh int ret, orig_credits = handle->h_buffer_credits; 2564328d5752SMark Fasheh struct ocfs2_path *tmp_path = NULL, *restart_path = NULL; 2565328d5752SMark Fasheh struct ocfs2_extent_block *eb; 2566328d5752SMark Fasheh struct ocfs2_extent_list *el; 2567328d5752SMark Fasheh 2568328d5752SMark Fasheh el = path_leaf_el(path); 2569328d5752SMark Fasheh if (!ocfs2_is_empty_extent(&el->l_recs[0])) 2570328d5752SMark Fasheh return 0; 2571328d5752SMark Fasheh 2572328d5752SMark Fasheh if (path->p_tree_depth == 0) { 2573328d5752SMark Fasheh rightmost_no_delete: 2574328d5752SMark Fasheh /* 2575328d5752SMark Fasheh * In-inode extents. This is trivially handled, so do 2576328d5752SMark Fasheh * it up front. 2577328d5752SMark Fasheh */ 2578328d5752SMark Fasheh ret = ocfs2_rotate_rightmost_leaf_left(inode, handle, 2579328d5752SMark Fasheh path_leaf_bh(path), 2580328d5752SMark Fasheh path_leaf_el(path)); 2581328d5752SMark Fasheh if (ret) 2582328d5752SMark Fasheh mlog_errno(ret); 2583328d5752SMark Fasheh goto out; 2584328d5752SMark Fasheh } 2585328d5752SMark Fasheh 2586328d5752SMark Fasheh /* 2587328d5752SMark Fasheh * Handle rightmost branch now. There's several cases: 2588328d5752SMark Fasheh * 1) simple rotation leaving records in there. That's trivial. 2589328d5752SMark Fasheh * 2) rotation requiring a branch delete - there's no more 2590328d5752SMark Fasheh * records left. Two cases of this: 2591328d5752SMark Fasheh * a) There are branches to the left. 2592328d5752SMark Fasheh * b) This is also the leftmost (the only) branch. 2593328d5752SMark Fasheh * 2594328d5752SMark Fasheh * 1) is handled via ocfs2_rotate_rightmost_leaf_left() 2595328d5752SMark Fasheh * 2a) we need the left branch so that we can update it with the unlink 2596328d5752SMark Fasheh * 2b) we need to bring the inode back to inline extents. 2597328d5752SMark Fasheh */ 2598328d5752SMark Fasheh 2599328d5752SMark Fasheh eb = (struct ocfs2_extent_block *)path_leaf_bh(path)->b_data; 2600328d5752SMark Fasheh el = &eb->h_list; 2601328d5752SMark Fasheh if (eb->h_next_leaf_blk == 0) { 2602328d5752SMark Fasheh /* 2603328d5752SMark Fasheh * This gets a bit tricky if we're going to delete the 2604328d5752SMark Fasheh * rightmost path. Get the other cases out of the way 2605328d5752SMark Fasheh * 1st. 2606328d5752SMark Fasheh */ 2607328d5752SMark Fasheh if (le16_to_cpu(el->l_next_free_rec) > 1) 2608328d5752SMark Fasheh goto rightmost_no_delete; 2609328d5752SMark Fasheh 2610328d5752SMark Fasheh if (le16_to_cpu(el->l_next_free_rec) == 0) { 2611328d5752SMark Fasheh ret = -EIO; 2612328d5752SMark Fasheh ocfs2_error(inode->i_sb, 2613328d5752SMark Fasheh "Inode %llu has empty extent block at %llu", 2614328d5752SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno, 2615328d5752SMark Fasheh (unsigned long long)le64_to_cpu(eb->h_blkno)); 2616328d5752SMark Fasheh goto out; 2617328d5752SMark Fasheh } 2618328d5752SMark Fasheh 2619328d5752SMark Fasheh /* 2620328d5752SMark Fasheh * XXX: The caller can not trust "path" any more after 2621328d5752SMark Fasheh * this as it will have been deleted. What do we do? 2622328d5752SMark Fasheh * 2623328d5752SMark Fasheh * In theory the rotate-for-merge code will never get 2624328d5752SMark Fasheh * here because it'll always ask for a rotate in a 2625328d5752SMark Fasheh * nonempty list. 2626328d5752SMark Fasheh */ 2627328d5752SMark Fasheh 2628328d5752SMark Fasheh ret = ocfs2_remove_rightmost_path(inode, handle, path, 2629328d5752SMark Fasheh dealloc); 2630328d5752SMark Fasheh if (ret) 2631328d5752SMark Fasheh mlog_errno(ret); 2632328d5752SMark Fasheh goto out; 2633328d5752SMark Fasheh } 2634328d5752SMark Fasheh 2635328d5752SMark Fasheh /* 2636328d5752SMark Fasheh * Now we can loop, remembering the path we get from -EAGAIN 2637328d5752SMark Fasheh * and restarting from there. 2638328d5752SMark Fasheh */ 2639328d5752SMark Fasheh try_rotate: 2640328d5752SMark Fasheh ret = __ocfs2_rotate_tree_left(inode, handle, orig_credits, path, 2641328d5752SMark Fasheh dealloc, &restart_path); 2642328d5752SMark Fasheh if (ret && ret != -EAGAIN) { 2643328d5752SMark Fasheh mlog_errno(ret); 2644328d5752SMark Fasheh goto out; 2645328d5752SMark Fasheh } 2646328d5752SMark Fasheh 2647328d5752SMark Fasheh while (ret == -EAGAIN) { 2648328d5752SMark Fasheh tmp_path = restart_path; 2649328d5752SMark Fasheh restart_path = NULL; 2650328d5752SMark Fasheh 2651328d5752SMark Fasheh ret = __ocfs2_rotate_tree_left(inode, handle, orig_credits, 2652328d5752SMark Fasheh tmp_path, dealloc, 2653328d5752SMark Fasheh &restart_path); 2654328d5752SMark Fasheh if (ret && ret != -EAGAIN) { 2655328d5752SMark Fasheh mlog_errno(ret); 2656328d5752SMark Fasheh goto out; 2657328d5752SMark Fasheh } 2658328d5752SMark Fasheh 2659328d5752SMark Fasheh ocfs2_free_path(tmp_path); 2660328d5752SMark Fasheh tmp_path = NULL; 2661328d5752SMark Fasheh 2662328d5752SMark Fasheh if (ret == 0) 2663328d5752SMark Fasheh goto try_rotate; 2664328d5752SMark Fasheh } 2665328d5752SMark Fasheh 2666328d5752SMark Fasheh out: 2667328d5752SMark Fasheh ocfs2_free_path(tmp_path); 2668328d5752SMark Fasheh ocfs2_free_path(restart_path); 2669328d5752SMark Fasheh return ret; 2670328d5752SMark Fasheh } 2671328d5752SMark Fasheh 2672328d5752SMark Fasheh static void ocfs2_cleanup_merge(struct ocfs2_extent_list *el, 2673328d5752SMark Fasheh int index) 2674328d5752SMark Fasheh { 2675328d5752SMark Fasheh struct ocfs2_extent_rec *rec = &el->l_recs[index]; 2676328d5752SMark Fasheh unsigned int size; 2677328d5752SMark Fasheh 2678328d5752SMark Fasheh if (rec->e_leaf_clusters == 0) { 2679328d5752SMark Fasheh /* 2680328d5752SMark Fasheh * We consumed all of the merged-from record. An empty 2681328d5752SMark Fasheh * extent cannot exist anywhere but the 1st array 2682328d5752SMark Fasheh * position, so move things over if the merged-from 2683328d5752SMark Fasheh * record doesn't occupy that position. 2684328d5752SMark Fasheh * 2685328d5752SMark Fasheh * This creates a new empty extent so the caller 2686328d5752SMark Fasheh * should be smart enough to have removed any existing 2687328d5752SMark Fasheh * ones. 2688328d5752SMark Fasheh */ 2689328d5752SMark Fasheh if (index > 0) { 2690328d5752SMark Fasheh BUG_ON(ocfs2_is_empty_extent(&el->l_recs[0])); 2691328d5752SMark Fasheh size = index * sizeof(struct ocfs2_extent_rec); 2692328d5752SMark Fasheh memmove(&el->l_recs[1], &el->l_recs[0], size); 2693328d5752SMark Fasheh } 2694328d5752SMark Fasheh 2695328d5752SMark Fasheh /* 2696328d5752SMark Fasheh * Always memset - the caller doesn't check whether it 2697328d5752SMark Fasheh * created an empty extent, so there could be junk in 2698328d5752SMark Fasheh * the other fields. 2699328d5752SMark Fasheh */ 2700328d5752SMark Fasheh memset(&el->l_recs[0], 0, sizeof(struct ocfs2_extent_rec)); 2701328d5752SMark Fasheh } 2702328d5752SMark Fasheh } 2703328d5752SMark Fasheh 2704328d5752SMark Fasheh /* 2705328d5752SMark Fasheh * Remove split_rec clusters from the record at index and merge them 2706328d5752SMark Fasheh * onto the beginning of the record at index + 1. 2707328d5752SMark Fasheh */ 2708328d5752SMark Fasheh static int ocfs2_merge_rec_right(struct inode *inode, struct buffer_head *bh, 2709328d5752SMark Fasheh handle_t *handle, 2710328d5752SMark Fasheh struct ocfs2_extent_rec *split_rec, 2711328d5752SMark Fasheh struct ocfs2_extent_list *el, int index) 2712328d5752SMark Fasheh { 2713328d5752SMark Fasheh int ret; 2714328d5752SMark Fasheh unsigned int split_clusters = le16_to_cpu(split_rec->e_leaf_clusters); 2715328d5752SMark Fasheh struct ocfs2_extent_rec *left_rec; 2716328d5752SMark Fasheh struct ocfs2_extent_rec *right_rec; 2717328d5752SMark Fasheh 2718328d5752SMark Fasheh BUG_ON(index >= le16_to_cpu(el->l_next_free_rec)); 2719328d5752SMark Fasheh 2720328d5752SMark Fasheh left_rec = &el->l_recs[index]; 2721328d5752SMark Fasheh right_rec = &el->l_recs[index + 1]; 2722328d5752SMark Fasheh 2723328d5752SMark Fasheh ret = ocfs2_journal_access(handle, inode, bh, 2724328d5752SMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 2725328d5752SMark Fasheh if (ret) { 2726328d5752SMark Fasheh mlog_errno(ret); 2727328d5752SMark Fasheh goto out; 2728328d5752SMark Fasheh } 2729328d5752SMark Fasheh 2730328d5752SMark Fasheh le16_add_cpu(&left_rec->e_leaf_clusters, -split_clusters); 2731328d5752SMark Fasheh 2732328d5752SMark Fasheh le32_add_cpu(&right_rec->e_cpos, -split_clusters); 2733328d5752SMark Fasheh le64_add_cpu(&right_rec->e_blkno, 2734328d5752SMark Fasheh -ocfs2_clusters_to_blocks(inode->i_sb, split_clusters)); 2735328d5752SMark Fasheh le16_add_cpu(&right_rec->e_leaf_clusters, split_clusters); 2736328d5752SMark Fasheh 2737328d5752SMark Fasheh ocfs2_cleanup_merge(el, index); 2738328d5752SMark Fasheh 2739328d5752SMark Fasheh ret = ocfs2_journal_dirty(handle, bh); 2740328d5752SMark Fasheh if (ret) 2741328d5752SMark Fasheh mlog_errno(ret); 2742328d5752SMark Fasheh 2743328d5752SMark Fasheh out: 2744328d5752SMark Fasheh return ret; 2745328d5752SMark Fasheh } 2746328d5752SMark Fasheh 2747328d5752SMark Fasheh /* 2748328d5752SMark Fasheh * Remove split_rec clusters from the record at index and merge them 2749328d5752SMark Fasheh * onto the tail of the record at index - 1. 2750328d5752SMark Fasheh */ 2751328d5752SMark Fasheh static int ocfs2_merge_rec_left(struct inode *inode, struct buffer_head *bh, 2752328d5752SMark Fasheh handle_t *handle, 2753328d5752SMark Fasheh struct ocfs2_extent_rec *split_rec, 2754328d5752SMark Fasheh struct ocfs2_extent_list *el, int index) 2755328d5752SMark Fasheh { 2756328d5752SMark Fasheh int ret, has_empty_extent = 0; 2757328d5752SMark Fasheh unsigned int split_clusters = le16_to_cpu(split_rec->e_leaf_clusters); 2758328d5752SMark Fasheh struct ocfs2_extent_rec *left_rec; 2759328d5752SMark Fasheh struct ocfs2_extent_rec *right_rec; 2760328d5752SMark Fasheh 2761328d5752SMark Fasheh BUG_ON(index <= 0); 2762328d5752SMark Fasheh 2763328d5752SMark Fasheh left_rec = &el->l_recs[index - 1]; 2764328d5752SMark Fasheh right_rec = &el->l_recs[index]; 2765328d5752SMark Fasheh if (ocfs2_is_empty_extent(&el->l_recs[0])) 2766328d5752SMark Fasheh has_empty_extent = 1; 2767328d5752SMark Fasheh 2768328d5752SMark Fasheh ret = ocfs2_journal_access(handle, inode, bh, 2769328d5752SMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 2770328d5752SMark Fasheh if (ret) { 2771328d5752SMark Fasheh mlog_errno(ret); 2772328d5752SMark Fasheh goto out; 2773328d5752SMark Fasheh } 2774328d5752SMark Fasheh 2775328d5752SMark Fasheh if (has_empty_extent && index == 1) { 2776328d5752SMark Fasheh /* 2777328d5752SMark Fasheh * The easy case - we can just plop the record right in. 2778328d5752SMark Fasheh */ 2779328d5752SMark Fasheh *left_rec = *split_rec; 2780328d5752SMark Fasheh 2781328d5752SMark Fasheh has_empty_extent = 0; 2782328d5752SMark Fasheh } else { 2783328d5752SMark Fasheh le16_add_cpu(&left_rec->e_leaf_clusters, split_clusters); 2784328d5752SMark Fasheh } 2785328d5752SMark Fasheh 2786328d5752SMark Fasheh le32_add_cpu(&right_rec->e_cpos, split_clusters); 2787328d5752SMark Fasheh le64_add_cpu(&right_rec->e_blkno, 2788328d5752SMark Fasheh ocfs2_clusters_to_blocks(inode->i_sb, split_clusters)); 2789328d5752SMark Fasheh le16_add_cpu(&right_rec->e_leaf_clusters, -split_clusters); 2790328d5752SMark Fasheh 2791328d5752SMark Fasheh ocfs2_cleanup_merge(el, index); 2792328d5752SMark Fasheh 2793328d5752SMark Fasheh ret = ocfs2_journal_dirty(handle, bh); 2794328d5752SMark Fasheh if (ret) 2795328d5752SMark Fasheh mlog_errno(ret); 2796328d5752SMark Fasheh 2797328d5752SMark Fasheh out: 2798328d5752SMark Fasheh return ret; 2799328d5752SMark Fasheh } 2800328d5752SMark Fasheh 2801328d5752SMark Fasheh static int ocfs2_try_to_merge_extent(struct inode *inode, 2802328d5752SMark Fasheh handle_t *handle, 2803328d5752SMark Fasheh struct ocfs2_path *left_path, 2804328d5752SMark Fasheh int split_index, 2805328d5752SMark Fasheh struct ocfs2_extent_rec *split_rec, 2806328d5752SMark Fasheh struct ocfs2_cached_dealloc_ctxt *dealloc, 2807328d5752SMark Fasheh struct ocfs2_merge_ctxt *ctxt) 2808328d5752SMark Fasheh 2809328d5752SMark Fasheh { 2810328d5752SMark Fasheh int ret = 0, delete_tail_recs = 0; 2811328d5752SMark Fasheh struct ocfs2_extent_list *el = path_leaf_el(left_path); 2812328d5752SMark Fasheh struct ocfs2_extent_rec *rec = &el->l_recs[split_index]; 2813328d5752SMark Fasheh 2814328d5752SMark Fasheh BUG_ON(ctxt->c_contig_type == CONTIG_NONE); 2815328d5752SMark Fasheh 2816328d5752SMark Fasheh if (ctxt->c_split_covers_rec) { 2817328d5752SMark Fasheh delete_tail_recs++; 2818328d5752SMark Fasheh 2819328d5752SMark Fasheh if (ctxt->c_contig_type == CONTIG_LEFTRIGHT || 2820328d5752SMark Fasheh ctxt->c_has_empty_extent) 2821328d5752SMark Fasheh delete_tail_recs++; 2822328d5752SMark Fasheh 2823328d5752SMark Fasheh if (ctxt->c_has_empty_extent) { 2824328d5752SMark Fasheh /* 2825328d5752SMark Fasheh * The merge code will need to create an empty 2826328d5752SMark Fasheh * extent to take the place of the newly 2827328d5752SMark Fasheh * emptied slot. Remove any pre-existing empty 2828328d5752SMark Fasheh * extents - having more than one in a leaf is 2829328d5752SMark Fasheh * illegal. 2830328d5752SMark Fasheh */ 2831328d5752SMark Fasheh ret = ocfs2_rotate_tree_left(inode, handle, left_path, 2832328d5752SMark Fasheh dealloc); 2833328d5752SMark Fasheh if (ret) { 2834328d5752SMark Fasheh mlog_errno(ret); 2835328d5752SMark Fasheh goto out; 2836328d5752SMark Fasheh } 2837328d5752SMark Fasheh split_index--; 2838328d5752SMark Fasheh rec = &el->l_recs[split_index]; 2839328d5752SMark Fasheh } 2840328d5752SMark Fasheh } 2841328d5752SMark Fasheh 2842328d5752SMark Fasheh if (ctxt->c_contig_type == CONTIG_LEFTRIGHT) { 2843328d5752SMark Fasheh /* 2844328d5752SMark Fasheh * Left-right contig implies this. 2845328d5752SMark Fasheh */ 2846328d5752SMark Fasheh BUG_ON(!ctxt->c_split_covers_rec); 2847328d5752SMark Fasheh BUG_ON(split_index == 0); 2848328d5752SMark Fasheh 2849328d5752SMark Fasheh /* 2850328d5752SMark Fasheh * Since the leftright insert always covers the entire 2851328d5752SMark Fasheh * extent, this call will delete the insert record 2852328d5752SMark Fasheh * entirely, resulting in an empty extent record added to 2853328d5752SMark Fasheh * the extent block. 2854328d5752SMark Fasheh * 2855328d5752SMark Fasheh * Since the adding of an empty extent shifts 2856328d5752SMark Fasheh * everything back to the right, there's no need to 2857328d5752SMark Fasheh * update split_index here. 2858328d5752SMark Fasheh */ 2859328d5752SMark Fasheh ret = ocfs2_merge_rec_left(inode, path_leaf_bh(left_path), 2860328d5752SMark Fasheh handle, split_rec, el, split_index); 2861328d5752SMark Fasheh if (ret) { 2862328d5752SMark Fasheh mlog_errno(ret); 2863328d5752SMark Fasheh goto out; 2864328d5752SMark Fasheh } 2865328d5752SMark Fasheh 2866328d5752SMark Fasheh /* 2867328d5752SMark Fasheh * We can only get this from logic error above. 2868328d5752SMark Fasheh */ 2869328d5752SMark Fasheh BUG_ON(!ocfs2_is_empty_extent(&el->l_recs[0])); 2870328d5752SMark Fasheh 2871328d5752SMark Fasheh /* 2872328d5752SMark Fasheh * The left merge left us with an empty extent, remove 2873328d5752SMark Fasheh * it. 2874328d5752SMark Fasheh */ 2875328d5752SMark Fasheh ret = ocfs2_rotate_tree_left(inode, handle, left_path, dealloc); 2876328d5752SMark Fasheh if (ret) { 2877328d5752SMark Fasheh mlog_errno(ret); 2878328d5752SMark Fasheh goto out; 2879328d5752SMark Fasheh } 2880328d5752SMark Fasheh split_index--; 2881328d5752SMark Fasheh rec = &el->l_recs[split_index]; 2882328d5752SMark Fasheh 2883328d5752SMark Fasheh /* 2884328d5752SMark Fasheh * Note that we don't pass split_rec here on purpose - 2885328d5752SMark Fasheh * we've merged it into the left side. 2886328d5752SMark Fasheh */ 2887328d5752SMark Fasheh ret = ocfs2_merge_rec_right(inode, path_leaf_bh(left_path), 2888328d5752SMark Fasheh handle, rec, el, split_index); 2889328d5752SMark Fasheh if (ret) { 2890328d5752SMark Fasheh mlog_errno(ret); 2891328d5752SMark Fasheh goto out; 2892328d5752SMark Fasheh } 2893328d5752SMark Fasheh 2894328d5752SMark Fasheh BUG_ON(!ocfs2_is_empty_extent(&el->l_recs[0])); 2895328d5752SMark Fasheh 2896328d5752SMark Fasheh ret = ocfs2_rotate_tree_left(inode, handle, left_path, 2897328d5752SMark Fasheh dealloc); 2898328d5752SMark Fasheh /* 2899328d5752SMark Fasheh * Error from this last rotate is not critical, so 2900328d5752SMark Fasheh * print but don't bubble it up. 2901328d5752SMark Fasheh */ 2902328d5752SMark Fasheh if (ret) 2903328d5752SMark Fasheh mlog_errno(ret); 2904328d5752SMark Fasheh ret = 0; 2905328d5752SMark Fasheh } else { 2906328d5752SMark Fasheh /* 2907328d5752SMark Fasheh * Merge a record to the left or right. 2908328d5752SMark Fasheh * 2909328d5752SMark Fasheh * 'contig_type' is relative to the existing record, 2910328d5752SMark Fasheh * so for example, if we're "right contig", it's to 2911328d5752SMark Fasheh * the record on the left (hence the left merge). 2912328d5752SMark Fasheh */ 2913328d5752SMark Fasheh if (ctxt->c_contig_type == CONTIG_RIGHT) { 2914328d5752SMark Fasheh ret = ocfs2_merge_rec_left(inode, 2915328d5752SMark Fasheh path_leaf_bh(left_path), 2916328d5752SMark Fasheh handle, split_rec, el, 2917328d5752SMark Fasheh split_index); 2918328d5752SMark Fasheh if (ret) { 2919328d5752SMark Fasheh mlog_errno(ret); 2920328d5752SMark Fasheh goto out; 2921328d5752SMark Fasheh } 2922328d5752SMark Fasheh } else { 2923328d5752SMark Fasheh ret = ocfs2_merge_rec_right(inode, 2924328d5752SMark Fasheh path_leaf_bh(left_path), 2925328d5752SMark Fasheh handle, split_rec, el, 2926328d5752SMark Fasheh split_index); 2927328d5752SMark Fasheh if (ret) { 2928328d5752SMark Fasheh mlog_errno(ret); 2929328d5752SMark Fasheh goto out; 2930328d5752SMark Fasheh } 2931328d5752SMark Fasheh } 2932328d5752SMark Fasheh 2933328d5752SMark Fasheh if (ctxt->c_split_covers_rec) { 2934328d5752SMark Fasheh /* 2935328d5752SMark Fasheh * The merge may have left an empty extent in 2936328d5752SMark Fasheh * our leaf. Try to rotate it away. 2937328d5752SMark Fasheh */ 2938328d5752SMark Fasheh ret = ocfs2_rotate_tree_left(inode, handle, left_path, 2939328d5752SMark Fasheh dealloc); 2940328d5752SMark Fasheh if (ret) 2941328d5752SMark Fasheh mlog_errno(ret); 2942328d5752SMark Fasheh ret = 0; 2943328d5752SMark Fasheh } 2944328d5752SMark Fasheh } 2945328d5752SMark Fasheh 2946328d5752SMark Fasheh out: 2947328d5752SMark Fasheh return ret; 2948328d5752SMark Fasheh } 2949328d5752SMark Fasheh 2950328d5752SMark Fasheh static void ocfs2_subtract_from_rec(struct super_block *sb, 2951328d5752SMark Fasheh enum ocfs2_split_type split, 2952328d5752SMark Fasheh struct ocfs2_extent_rec *rec, 2953328d5752SMark Fasheh struct ocfs2_extent_rec *split_rec) 2954328d5752SMark Fasheh { 2955328d5752SMark Fasheh u64 len_blocks; 2956328d5752SMark Fasheh 2957328d5752SMark Fasheh len_blocks = ocfs2_clusters_to_blocks(sb, 2958328d5752SMark Fasheh le16_to_cpu(split_rec->e_leaf_clusters)); 2959328d5752SMark Fasheh 2960328d5752SMark Fasheh if (split == SPLIT_LEFT) { 2961328d5752SMark Fasheh /* 2962328d5752SMark Fasheh * Region is on the left edge of the existing 2963328d5752SMark Fasheh * record. 2964328d5752SMark Fasheh */ 2965328d5752SMark Fasheh le32_add_cpu(&rec->e_cpos, 2966328d5752SMark Fasheh le16_to_cpu(split_rec->e_leaf_clusters)); 2967328d5752SMark Fasheh le64_add_cpu(&rec->e_blkno, len_blocks); 2968328d5752SMark Fasheh le16_add_cpu(&rec->e_leaf_clusters, 2969328d5752SMark Fasheh -le16_to_cpu(split_rec->e_leaf_clusters)); 2970328d5752SMark Fasheh } else { 2971328d5752SMark Fasheh /* 2972328d5752SMark Fasheh * Region is on the right edge of the existing 2973328d5752SMark Fasheh * record. 2974328d5752SMark Fasheh */ 2975328d5752SMark Fasheh le16_add_cpu(&rec->e_leaf_clusters, 2976328d5752SMark Fasheh -le16_to_cpu(split_rec->e_leaf_clusters)); 2977328d5752SMark Fasheh } 2978328d5752SMark Fasheh } 2979328d5752SMark Fasheh 2980dcd0538fSMark Fasheh /* 2981dcd0538fSMark Fasheh * Do the final bits of extent record insertion at the target leaf 2982dcd0538fSMark Fasheh * list. If this leaf is part of an allocation tree, it is assumed 2983dcd0538fSMark Fasheh * that the tree above has been prepared. 2984dcd0538fSMark Fasheh */ 2985dcd0538fSMark Fasheh static void ocfs2_insert_at_leaf(struct ocfs2_extent_rec *insert_rec, 2986dcd0538fSMark Fasheh struct ocfs2_extent_list *el, 2987dcd0538fSMark Fasheh struct ocfs2_insert_type *insert, 2988dcd0538fSMark Fasheh struct inode *inode) 2989dcd0538fSMark Fasheh { 2990dcd0538fSMark Fasheh int i = insert->ins_contig_index; 2991dcd0538fSMark Fasheh unsigned int range; 2992dcd0538fSMark Fasheh struct ocfs2_extent_rec *rec; 2993dcd0538fSMark Fasheh 2994e48edee2SMark Fasheh BUG_ON(le16_to_cpu(el->l_tree_depth) != 0); 2995dcd0538fSMark Fasheh 2996328d5752SMark Fasheh if (insert->ins_split != SPLIT_NONE) { 2997328d5752SMark Fasheh i = ocfs2_search_extent_list(el, le32_to_cpu(insert_rec->e_cpos)); 2998328d5752SMark Fasheh BUG_ON(i == -1); 2999328d5752SMark Fasheh rec = &el->l_recs[i]; 3000328d5752SMark Fasheh ocfs2_subtract_from_rec(inode->i_sb, insert->ins_split, rec, 3001328d5752SMark Fasheh insert_rec); 3002328d5752SMark Fasheh goto rotate; 3003328d5752SMark Fasheh } 3004328d5752SMark Fasheh 3005dcd0538fSMark Fasheh /* 3006dcd0538fSMark Fasheh * Contiguous insert - either left or right. 3007dcd0538fSMark Fasheh */ 3008dcd0538fSMark Fasheh if (insert->ins_contig != CONTIG_NONE) { 3009dcd0538fSMark Fasheh rec = &el->l_recs[i]; 3010dcd0538fSMark Fasheh if (insert->ins_contig == CONTIG_LEFT) { 3011dcd0538fSMark Fasheh rec->e_blkno = insert_rec->e_blkno; 3012dcd0538fSMark Fasheh rec->e_cpos = insert_rec->e_cpos; 3013dcd0538fSMark Fasheh } 3014e48edee2SMark Fasheh le16_add_cpu(&rec->e_leaf_clusters, 3015e48edee2SMark Fasheh le16_to_cpu(insert_rec->e_leaf_clusters)); 3016dcd0538fSMark Fasheh return; 3017dcd0538fSMark Fasheh } 3018dcd0538fSMark Fasheh 3019dcd0538fSMark Fasheh /* 3020dcd0538fSMark Fasheh * Handle insert into an empty leaf. 3021dcd0538fSMark Fasheh */ 3022dcd0538fSMark Fasheh if (le16_to_cpu(el->l_next_free_rec) == 0 || 3023dcd0538fSMark Fasheh ((le16_to_cpu(el->l_next_free_rec) == 1) && 3024dcd0538fSMark Fasheh ocfs2_is_empty_extent(&el->l_recs[0]))) { 3025dcd0538fSMark Fasheh el->l_recs[0] = *insert_rec; 3026dcd0538fSMark Fasheh el->l_next_free_rec = cpu_to_le16(1); 3027dcd0538fSMark Fasheh return; 3028dcd0538fSMark Fasheh } 3029dcd0538fSMark Fasheh 3030dcd0538fSMark Fasheh /* 3031dcd0538fSMark Fasheh * Appending insert. 3032dcd0538fSMark Fasheh */ 3033dcd0538fSMark Fasheh if (insert->ins_appending == APPEND_TAIL) { 3034dcd0538fSMark Fasheh i = le16_to_cpu(el->l_next_free_rec) - 1; 3035dcd0538fSMark Fasheh rec = &el->l_recs[i]; 3036e48edee2SMark Fasheh range = le32_to_cpu(rec->e_cpos) 3037e48edee2SMark Fasheh + le16_to_cpu(rec->e_leaf_clusters); 3038dcd0538fSMark Fasheh BUG_ON(le32_to_cpu(insert_rec->e_cpos) < range); 3039dcd0538fSMark Fasheh 3040dcd0538fSMark Fasheh mlog_bug_on_msg(le16_to_cpu(el->l_next_free_rec) >= 3041dcd0538fSMark Fasheh le16_to_cpu(el->l_count), 3042dcd0538fSMark Fasheh "inode %lu, depth %u, count %u, next free %u, " 3043dcd0538fSMark Fasheh "rec.cpos %u, rec.clusters %u, " 3044dcd0538fSMark Fasheh "insert.cpos %u, insert.clusters %u\n", 3045dcd0538fSMark Fasheh inode->i_ino, 3046dcd0538fSMark Fasheh le16_to_cpu(el->l_tree_depth), 3047dcd0538fSMark Fasheh le16_to_cpu(el->l_count), 3048dcd0538fSMark Fasheh le16_to_cpu(el->l_next_free_rec), 3049dcd0538fSMark Fasheh le32_to_cpu(el->l_recs[i].e_cpos), 3050e48edee2SMark Fasheh le16_to_cpu(el->l_recs[i].e_leaf_clusters), 3051dcd0538fSMark Fasheh le32_to_cpu(insert_rec->e_cpos), 3052e48edee2SMark Fasheh le16_to_cpu(insert_rec->e_leaf_clusters)); 3053dcd0538fSMark Fasheh i++; 3054dcd0538fSMark Fasheh el->l_recs[i] = *insert_rec; 3055dcd0538fSMark Fasheh le16_add_cpu(&el->l_next_free_rec, 1); 3056dcd0538fSMark Fasheh return; 3057dcd0538fSMark Fasheh } 3058dcd0538fSMark Fasheh 3059328d5752SMark Fasheh rotate: 3060dcd0538fSMark Fasheh /* 3061dcd0538fSMark Fasheh * Ok, we have to rotate. 3062dcd0538fSMark Fasheh * 3063dcd0538fSMark Fasheh * At this point, it is safe to assume that inserting into an 3064dcd0538fSMark Fasheh * empty leaf and appending to a leaf have both been handled 3065dcd0538fSMark Fasheh * above. 3066dcd0538fSMark Fasheh * 3067dcd0538fSMark Fasheh * This leaf needs to have space, either by the empty 1st 3068dcd0538fSMark Fasheh * extent record, or by virtue of an l_next_rec < l_count. 3069dcd0538fSMark Fasheh */ 3070dcd0538fSMark Fasheh ocfs2_rotate_leaf(el, insert_rec); 3071dcd0538fSMark Fasheh } 3072dcd0538fSMark Fasheh 3073dcd0538fSMark Fasheh static inline void ocfs2_update_dinode_clusters(struct inode *inode, 3074dcd0538fSMark Fasheh struct ocfs2_dinode *di, 3075dcd0538fSMark Fasheh u32 clusters) 3076dcd0538fSMark Fasheh { 3077dcd0538fSMark Fasheh le32_add_cpu(&di->i_clusters, clusters); 3078dcd0538fSMark Fasheh spin_lock(&OCFS2_I(inode)->ip_lock); 3079dcd0538fSMark Fasheh OCFS2_I(inode)->ip_clusters = le32_to_cpu(di->i_clusters); 3080dcd0538fSMark Fasheh spin_unlock(&OCFS2_I(inode)->ip_lock); 3081dcd0538fSMark Fasheh } 3082dcd0538fSMark Fasheh 3083328d5752SMark Fasheh static void ocfs2_adjust_rightmost_records(struct inode *inode, 3084328d5752SMark Fasheh handle_t *handle, 3085328d5752SMark Fasheh struct ocfs2_path *path, 3086328d5752SMark Fasheh struct ocfs2_extent_rec *insert_rec) 3087328d5752SMark Fasheh { 3088328d5752SMark Fasheh int ret, i, next_free; 3089328d5752SMark Fasheh struct buffer_head *bh; 3090328d5752SMark Fasheh struct ocfs2_extent_list *el; 3091328d5752SMark Fasheh struct ocfs2_extent_rec *rec; 3092328d5752SMark Fasheh 3093328d5752SMark Fasheh /* 3094328d5752SMark Fasheh * Update everything except the leaf block. 3095328d5752SMark Fasheh */ 3096328d5752SMark Fasheh for (i = 0; i < path->p_tree_depth; i++) { 3097328d5752SMark Fasheh bh = path->p_node[i].bh; 3098328d5752SMark Fasheh el = path->p_node[i].el; 3099328d5752SMark Fasheh 3100328d5752SMark Fasheh next_free = le16_to_cpu(el->l_next_free_rec); 3101328d5752SMark Fasheh if (next_free == 0) { 3102328d5752SMark Fasheh ocfs2_error(inode->i_sb, 3103328d5752SMark Fasheh "Dinode %llu has a bad extent list", 3104328d5752SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno); 3105328d5752SMark Fasheh ret = -EIO; 3106328d5752SMark Fasheh return; 3107328d5752SMark Fasheh } 3108328d5752SMark Fasheh 3109328d5752SMark Fasheh rec = &el->l_recs[next_free - 1]; 3110328d5752SMark Fasheh 3111328d5752SMark Fasheh rec->e_int_clusters = insert_rec->e_cpos; 3112328d5752SMark Fasheh le32_add_cpu(&rec->e_int_clusters, 3113328d5752SMark Fasheh le16_to_cpu(insert_rec->e_leaf_clusters)); 3114328d5752SMark Fasheh le32_add_cpu(&rec->e_int_clusters, 3115328d5752SMark Fasheh -le32_to_cpu(rec->e_cpos)); 3116328d5752SMark Fasheh 3117328d5752SMark Fasheh ret = ocfs2_journal_dirty(handle, bh); 3118328d5752SMark Fasheh if (ret) 3119328d5752SMark Fasheh mlog_errno(ret); 3120328d5752SMark Fasheh 3121328d5752SMark Fasheh } 3122328d5752SMark Fasheh } 3123328d5752SMark Fasheh 3124dcd0538fSMark Fasheh static int ocfs2_append_rec_to_path(struct inode *inode, handle_t *handle, 3125dcd0538fSMark Fasheh struct ocfs2_extent_rec *insert_rec, 3126dcd0538fSMark Fasheh struct ocfs2_path *right_path, 3127dcd0538fSMark Fasheh struct ocfs2_path **ret_left_path) 3128dcd0538fSMark Fasheh { 3129328d5752SMark Fasheh int ret, next_free; 3130dcd0538fSMark Fasheh struct ocfs2_extent_list *el; 3131dcd0538fSMark Fasheh struct ocfs2_path *left_path = NULL; 3132dcd0538fSMark Fasheh 3133dcd0538fSMark Fasheh *ret_left_path = NULL; 3134dcd0538fSMark Fasheh 3135dcd0538fSMark Fasheh /* 3136e48edee2SMark Fasheh * This shouldn't happen for non-trees. The extent rec cluster 3137e48edee2SMark Fasheh * count manipulation below only works for interior nodes. 3138e48edee2SMark Fasheh */ 3139e48edee2SMark Fasheh BUG_ON(right_path->p_tree_depth == 0); 3140e48edee2SMark Fasheh 3141e48edee2SMark Fasheh /* 3142dcd0538fSMark Fasheh * If our appending insert is at the leftmost edge of a leaf, 3143dcd0538fSMark Fasheh * then we might need to update the rightmost records of the 3144dcd0538fSMark Fasheh * neighboring path. 3145dcd0538fSMark Fasheh */ 3146dcd0538fSMark Fasheh el = path_leaf_el(right_path); 3147dcd0538fSMark Fasheh next_free = le16_to_cpu(el->l_next_free_rec); 3148dcd0538fSMark Fasheh if (next_free == 0 || 3149dcd0538fSMark Fasheh (next_free == 1 && ocfs2_is_empty_extent(&el->l_recs[0]))) { 3150dcd0538fSMark Fasheh u32 left_cpos; 3151dcd0538fSMark Fasheh 3152dcd0538fSMark Fasheh ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb, right_path, 3153dcd0538fSMark Fasheh &left_cpos); 3154dcd0538fSMark Fasheh if (ret) { 3155dcd0538fSMark Fasheh mlog_errno(ret); 3156dcd0538fSMark Fasheh goto out; 3157dcd0538fSMark Fasheh } 3158dcd0538fSMark Fasheh 3159dcd0538fSMark Fasheh mlog(0, "Append may need a left path update. cpos: %u, " 3160dcd0538fSMark Fasheh "left_cpos: %u\n", le32_to_cpu(insert_rec->e_cpos), 3161dcd0538fSMark Fasheh left_cpos); 3162dcd0538fSMark Fasheh 3163dcd0538fSMark Fasheh /* 3164dcd0538fSMark Fasheh * No need to worry if the append is already in the 3165dcd0538fSMark Fasheh * leftmost leaf. 3166dcd0538fSMark Fasheh */ 3167dcd0538fSMark Fasheh if (left_cpos) { 3168dcd0538fSMark Fasheh left_path = ocfs2_new_path(path_root_bh(right_path), 3169dcd0538fSMark Fasheh path_root_el(right_path)); 3170dcd0538fSMark Fasheh if (!left_path) { 3171dcd0538fSMark Fasheh ret = -ENOMEM; 3172dcd0538fSMark Fasheh mlog_errno(ret); 3173dcd0538fSMark Fasheh goto out; 3174dcd0538fSMark Fasheh } 3175dcd0538fSMark Fasheh 3176dcd0538fSMark Fasheh ret = ocfs2_find_path(inode, left_path, left_cpos); 3177dcd0538fSMark Fasheh if (ret) { 3178dcd0538fSMark Fasheh mlog_errno(ret); 3179dcd0538fSMark Fasheh goto out; 3180dcd0538fSMark Fasheh } 3181dcd0538fSMark Fasheh 3182dcd0538fSMark Fasheh /* 3183dcd0538fSMark Fasheh * ocfs2_insert_path() will pass the left_path to the 3184dcd0538fSMark Fasheh * journal for us. 3185dcd0538fSMark Fasheh */ 3186dcd0538fSMark Fasheh } 3187dcd0538fSMark Fasheh } 3188dcd0538fSMark Fasheh 3189dcd0538fSMark Fasheh ret = ocfs2_journal_access_path(inode, handle, right_path); 3190dcd0538fSMark Fasheh if (ret) { 3191dcd0538fSMark Fasheh mlog_errno(ret); 3192dcd0538fSMark Fasheh goto out; 3193dcd0538fSMark Fasheh } 3194dcd0538fSMark Fasheh 3195328d5752SMark Fasheh ocfs2_adjust_rightmost_records(inode, handle, right_path, insert_rec); 3196dcd0538fSMark Fasheh 3197dcd0538fSMark Fasheh *ret_left_path = left_path; 3198dcd0538fSMark Fasheh ret = 0; 3199dcd0538fSMark Fasheh out: 3200dcd0538fSMark Fasheh if (ret != 0) 3201dcd0538fSMark Fasheh ocfs2_free_path(left_path); 3202dcd0538fSMark Fasheh 3203dcd0538fSMark Fasheh return ret; 3204dcd0538fSMark Fasheh } 3205dcd0538fSMark Fasheh 3206328d5752SMark Fasheh static void ocfs2_split_record(struct inode *inode, 3207328d5752SMark Fasheh struct ocfs2_path *left_path, 3208328d5752SMark Fasheh struct ocfs2_path *right_path, 3209328d5752SMark Fasheh struct ocfs2_extent_rec *split_rec, 3210328d5752SMark Fasheh enum ocfs2_split_type split) 3211328d5752SMark Fasheh { 3212328d5752SMark Fasheh int index; 3213328d5752SMark Fasheh u32 cpos = le32_to_cpu(split_rec->e_cpos); 3214328d5752SMark Fasheh struct ocfs2_extent_list *left_el = NULL, *right_el, *insert_el, *el; 3215328d5752SMark Fasheh struct ocfs2_extent_rec *rec, *tmprec; 3216328d5752SMark Fasheh 3217328d5752SMark Fasheh right_el = path_leaf_el(right_path);; 3218328d5752SMark Fasheh if (left_path) 3219328d5752SMark Fasheh left_el = path_leaf_el(left_path); 3220328d5752SMark Fasheh 3221328d5752SMark Fasheh el = right_el; 3222328d5752SMark Fasheh insert_el = right_el; 3223328d5752SMark Fasheh index = ocfs2_search_extent_list(el, cpos); 3224328d5752SMark Fasheh if (index != -1) { 3225328d5752SMark Fasheh if (index == 0 && left_path) { 3226328d5752SMark Fasheh BUG_ON(ocfs2_is_empty_extent(&el->l_recs[0])); 3227328d5752SMark Fasheh 3228328d5752SMark Fasheh /* 3229328d5752SMark Fasheh * This typically means that the record 3230328d5752SMark Fasheh * started in the left path but moved to the 3231328d5752SMark Fasheh * right as a result of rotation. We either 3232328d5752SMark Fasheh * move the existing record to the left, or we 3233328d5752SMark Fasheh * do the later insert there. 3234328d5752SMark Fasheh * 3235328d5752SMark Fasheh * In this case, the left path should always 3236328d5752SMark Fasheh * exist as the rotate code will have passed 3237328d5752SMark Fasheh * it back for a post-insert update. 3238328d5752SMark Fasheh */ 3239328d5752SMark Fasheh 3240328d5752SMark Fasheh if (split == SPLIT_LEFT) { 3241328d5752SMark Fasheh /* 3242328d5752SMark Fasheh * It's a left split. Since we know 3243328d5752SMark Fasheh * that the rotate code gave us an 3244328d5752SMark Fasheh * empty extent in the left path, we 3245328d5752SMark Fasheh * can just do the insert there. 3246328d5752SMark Fasheh */ 3247328d5752SMark Fasheh insert_el = left_el; 3248328d5752SMark Fasheh } else { 3249328d5752SMark Fasheh /* 3250328d5752SMark Fasheh * Right split - we have to move the 3251328d5752SMark Fasheh * existing record over to the left 3252328d5752SMark Fasheh * leaf. The insert will be into the 3253328d5752SMark Fasheh * newly created empty extent in the 3254328d5752SMark Fasheh * right leaf. 3255328d5752SMark Fasheh */ 3256328d5752SMark Fasheh tmprec = &right_el->l_recs[index]; 3257328d5752SMark Fasheh ocfs2_rotate_leaf(left_el, tmprec); 3258328d5752SMark Fasheh el = left_el; 3259328d5752SMark Fasheh 3260328d5752SMark Fasheh memset(tmprec, 0, sizeof(*tmprec)); 3261328d5752SMark Fasheh index = ocfs2_search_extent_list(left_el, cpos); 3262328d5752SMark Fasheh BUG_ON(index == -1); 3263328d5752SMark Fasheh } 3264328d5752SMark Fasheh } 3265328d5752SMark Fasheh } else { 3266328d5752SMark Fasheh BUG_ON(!left_path); 3267328d5752SMark Fasheh BUG_ON(!ocfs2_is_empty_extent(&left_el->l_recs[0])); 3268328d5752SMark Fasheh /* 3269328d5752SMark Fasheh * Left path is easy - we can just allow the insert to 3270328d5752SMark Fasheh * happen. 3271328d5752SMark Fasheh */ 3272328d5752SMark Fasheh el = left_el; 3273328d5752SMark Fasheh insert_el = left_el; 3274328d5752SMark Fasheh index = ocfs2_search_extent_list(el, cpos); 3275328d5752SMark Fasheh BUG_ON(index == -1); 3276328d5752SMark Fasheh } 3277328d5752SMark Fasheh 3278328d5752SMark Fasheh rec = &el->l_recs[index]; 3279328d5752SMark Fasheh ocfs2_subtract_from_rec(inode->i_sb, split, rec, split_rec); 3280328d5752SMark Fasheh ocfs2_rotate_leaf(insert_el, split_rec); 3281328d5752SMark Fasheh } 3282328d5752SMark Fasheh 3283dcd0538fSMark Fasheh /* 3284dcd0538fSMark Fasheh * This function only does inserts on an allocation b-tree. For dinode 3285dcd0538fSMark Fasheh * lists, ocfs2_insert_at_leaf() is called directly. 3286dcd0538fSMark Fasheh * 3287dcd0538fSMark Fasheh * right_path is the path we want to do the actual insert 3288dcd0538fSMark Fasheh * in. left_path should only be passed in if we need to update that 3289dcd0538fSMark Fasheh * portion of the tree after an edge insert. 3290dcd0538fSMark Fasheh */ 3291dcd0538fSMark Fasheh static int ocfs2_insert_path(struct inode *inode, 3292dcd0538fSMark Fasheh handle_t *handle, 3293dcd0538fSMark Fasheh struct ocfs2_path *left_path, 3294dcd0538fSMark Fasheh struct ocfs2_path *right_path, 3295dcd0538fSMark Fasheh struct ocfs2_extent_rec *insert_rec, 3296dcd0538fSMark Fasheh struct ocfs2_insert_type *insert) 3297dcd0538fSMark Fasheh { 3298dcd0538fSMark Fasheh int ret, subtree_index; 3299dcd0538fSMark Fasheh struct buffer_head *leaf_bh = path_leaf_bh(right_path); 3300dcd0538fSMark Fasheh 3301dcd0538fSMark Fasheh /* 3302dcd0538fSMark Fasheh * Pass both paths to the journal. The majority of inserts 3303dcd0538fSMark Fasheh * will be touching all components anyway. 3304dcd0538fSMark Fasheh */ 3305dcd0538fSMark Fasheh ret = ocfs2_journal_access_path(inode, handle, right_path); 3306dcd0538fSMark Fasheh if (ret < 0) { 3307dcd0538fSMark Fasheh mlog_errno(ret); 3308dcd0538fSMark Fasheh goto out; 3309dcd0538fSMark Fasheh } 3310dcd0538fSMark Fasheh 3311dcd0538fSMark Fasheh if (left_path) { 3312dcd0538fSMark Fasheh int credits = handle->h_buffer_credits; 3313dcd0538fSMark Fasheh 3314dcd0538fSMark Fasheh /* 3315dcd0538fSMark Fasheh * There's a chance that left_path got passed back to 3316dcd0538fSMark Fasheh * us without being accounted for in the 3317dcd0538fSMark Fasheh * journal. Extend our transaction here to be sure we 3318dcd0538fSMark Fasheh * can change those blocks. 3319dcd0538fSMark Fasheh */ 3320dcd0538fSMark Fasheh credits += left_path->p_tree_depth; 3321dcd0538fSMark Fasheh 3322dcd0538fSMark Fasheh ret = ocfs2_extend_trans(handle, credits); 3323dcd0538fSMark Fasheh if (ret < 0) { 3324dcd0538fSMark Fasheh mlog_errno(ret); 3325dcd0538fSMark Fasheh goto out; 3326dcd0538fSMark Fasheh } 3327dcd0538fSMark Fasheh 3328dcd0538fSMark Fasheh ret = ocfs2_journal_access_path(inode, handle, left_path); 3329dcd0538fSMark Fasheh if (ret < 0) { 3330dcd0538fSMark Fasheh mlog_errno(ret); 3331dcd0538fSMark Fasheh goto out; 3332dcd0538fSMark Fasheh } 3333dcd0538fSMark Fasheh } 3334dcd0538fSMark Fasheh 3335328d5752SMark Fasheh if (insert->ins_split != SPLIT_NONE) { 3336328d5752SMark Fasheh /* 3337328d5752SMark Fasheh * We could call ocfs2_insert_at_leaf() for some types 3338328d5752SMark Fasheh * of splits, but it's easier to just let one seperate 3339328d5752SMark Fasheh * function sort it all out. 3340328d5752SMark Fasheh */ 3341328d5752SMark Fasheh ocfs2_split_record(inode, left_path, right_path, 3342328d5752SMark Fasheh insert_rec, insert->ins_split); 3343328d5752SMark Fasheh } else 3344328d5752SMark Fasheh ocfs2_insert_at_leaf(insert_rec, path_leaf_el(right_path), 3345328d5752SMark Fasheh insert, inode); 3346dcd0538fSMark Fasheh 3347dcd0538fSMark Fasheh ret = ocfs2_journal_dirty(handle, leaf_bh); 3348dcd0538fSMark Fasheh if (ret) 3349dcd0538fSMark Fasheh mlog_errno(ret); 3350dcd0538fSMark Fasheh 3351dcd0538fSMark Fasheh if (left_path) { 3352dcd0538fSMark Fasheh /* 3353dcd0538fSMark Fasheh * The rotate code has indicated that we need to fix 3354dcd0538fSMark Fasheh * up portions of the tree after the insert. 3355dcd0538fSMark Fasheh * 3356dcd0538fSMark Fasheh * XXX: Should we extend the transaction here? 3357dcd0538fSMark Fasheh */ 3358dcd0538fSMark Fasheh subtree_index = ocfs2_find_subtree_root(inode, left_path, 3359dcd0538fSMark Fasheh right_path); 3360dcd0538fSMark Fasheh ocfs2_complete_edge_insert(inode, handle, left_path, 3361dcd0538fSMark Fasheh right_path, subtree_index); 3362dcd0538fSMark Fasheh } 3363dcd0538fSMark Fasheh 3364dcd0538fSMark Fasheh ret = 0; 3365dcd0538fSMark Fasheh out: 3366dcd0538fSMark Fasheh return ret; 3367dcd0538fSMark Fasheh } 3368dcd0538fSMark Fasheh 3369dcd0538fSMark Fasheh static int ocfs2_do_insert_extent(struct inode *inode, 3370dcd0538fSMark Fasheh handle_t *handle, 3371dcd0538fSMark Fasheh struct buffer_head *di_bh, 3372dcd0538fSMark Fasheh struct ocfs2_extent_rec *insert_rec, 3373dcd0538fSMark Fasheh struct ocfs2_insert_type *type) 3374dcd0538fSMark Fasheh { 3375dcd0538fSMark Fasheh int ret, rotate = 0; 3376dcd0538fSMark Fasheh u32 cpos; 3377dcd0538fSMark Fasheh struct ocfs2_path *right_path = NULL; 3378dcd0538fSMark Fasheh struct ocfs2_path *left_path = NULL; 3379dcd0538fSMark Fasheh struct ocfs2_dinode *di; 3380dcd0538fSMark Fasheh struct ocfs2_extent_list *el; 3381dcd0538fSMark Fasheh 3382dcd0538fSMark Fasheh di = (struct ocfs2_dinode *) di_bh->b_data; 3383dcd0538fSMark Fasheh el = &di->id2.i_list; 3384dcd0538fSMark Fasheh 3385dcd0538fSMark Fasheh ret = ocfs2_journal_access(handle, inode, di_bh, 3386dcd0538fSMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 3387dcd0538fSMark Fasheh if (ret) { 3388dcd0538fSMark Fasheh mlog_errno(ret); 3389dcd0538fSMark Fasheh goto out; 3390dcd0538fSMark Fasheh } 3391dcd0538fSMark Fasheh 3392dcd0538fSMark Fasheh if (le16_to_cpu(el->l_tree_depth) == 0) { 3393dcd0538fSMark Fasheh ocfs2_insert_at_leaf(insert_rec, el, type, inode); 3394dcd0538fSMark Fasheh goto out_update_clusters; 3395dcd0538fSMark Fasheh } 3396dcd0538fSMark Fasheh 3397dcd0538fSMark Fasheh right_path = ocfs2_new_inode_path(di_bh); 3398dcd0538fSMark Fasheh if (!right_path) { 3399dcd0538fSMark Fasheh ret = -ENOMEM; 3400dcd0538fSMark Fasheh mlog_errno(ret); 3401dcd0538fSMark Fasheh goto out; 3402dcd0538fSMark Fasheh } 3403dcd0538fSMark Fasheh 3404dcd0538fSMark Fasheh /* 3405dcd0538fSMark Fasheh * Determine the path to start with. Rotations need the 3406dcd0538fSMark Fasheh * rightmost path, everything else can go directly to the 3407dcd0538fSMark Fasheh * target leaf. 3408dcd0538fSMark Fasheh */ 3409dcd0538fSMark Fasheh cpos = le32_to_cpu(insert_rec->e_cpos); 3410dcd0538fSMark Fasheh if (type->ins_appending == APPEND_NONE && 3411dcd0538fSMark Fasheh type->ins_contig == CONTIG_NONE) { 3412dcd0538fSMark Fasheh rotate = 1; 3413dcd0538fSMark Fasheh cpos = UINT_MAX; 3414dcd0538fSMark Fasheh } 3415dcd0538fSMark Fasheh 3416dcd0538fSMark Fasheh ret = ocfs2_find_path(inode, right_path, cpos); 3417dcd0538fSMark Fasheh if (ret) { 3418dcd0538fSMark Fasheh mlog_errno(ret); 3419dcd0538fSMark Fasheh goto out; 3420dcd0538fSMark Fasheh } 3421dcd0538fSMark Fasheh 3422dcd0538fSMark Fasheh /* 3423dcd0538fSMark Fasheh * Rotations and appends need special treatment - they modify 3424dcd0538fSMark Fasheh * parts of the tree's above them. 3425dcd0538fSMark Fasheh * 3426dcd0538fSMark Fasheh * Both might pass back a path immediate to the left of the 3427dcd0538fSMark Fasheh * one being inserted to. This will be cause 3428dcd0538fSMark Fasheh * ocfs2_insert_path() to modify the rightmost records of 3429dcd0538fSMark Fasheh * left_path to account for an edge insert. 3430dcd0538fSMark Fasheh * 3431dcd0538fSMark Fasheh * XXX: When modifying this code, keep in mind that an insert 3432dcd0538fSMark Fasheh * can wind up skipping both of these two special cases... 3433dcd0538fSMark Fasheh */ 3434dcd0538fSMark Fasheh if (rotate) { 3435328d5752SMark Fasheh ret = ocfs2_rotate_tree_right(inode, handle, type->ins_split, 3436dcd0538fSMark Fasheh le32_to_cpu(insert_rec->e_cpos), 3437dcd0538fSMark Fasheh right_path, &left_path); 3438dcd0538fSMark Fasheh if (ret) { 3439dcd0538fSMark Fasheh mlog_errno(ret); 3440dcd0538fSMark Fasheh goto out; 3441dcd0538fSMark Fasheh } 3442dcd0538fSMark Fasheh } else if (type->ins_appending == APPEND_TAIL 3443dcd0538fSMark Fasheh && type->ins_contig != CONTIG_LEFT) { 3444dcd0538fSMark Fasheh ret = ocfs2_append_rec_to_path(inode, handle, insert_rec, 3445dcd0538fSMark Fasheh right_path, &left_path); 3446dcd0538fSMark Fasheh if (ret) { 3447dcd0538fSMark Fasheh mlog_errno(ret); 3448dcd0538fSMark Fasheh goto out; 3449dcd0538fSMark Fasheh } 3450dcd0538fSMark Fasheh } 3451dcd0538fSMark Fasheh 3452dcd0538fSMark Fasheh ret = ocfs2_insert_path(inode, handle, left_path, right_path, 3453dcd0538fSMark Fasheh insert_rec, type); 3454dcd0538fSMark Fasheh if (ret) { 3455dcd0538fSMark Fasheh mlog_errno(ret); 3456dcd0538fSMark Fasheh goto out; 3457dcd0538fSMark Fasheh } 3458dcd0538fSMark Fasheh 3459dcd0538fSMark Fasheh out_update_clusters: 3460328d5752SMark Fasheh if (type->ins_split == SPLIT_NONE) 3461dcd0538fSMark Fasheh ocfs2_update_dinode_clusters(inode, di, 3462e48edee2SMark Fasheh le16_to_cpu(insert_rec->e_leaf_clusters)); 3463dcd0538fSMark Fasheh 3464dcd0538fSMark Fasheh ret = ocfs2_journal_dirty(handle, di_bh); 3465dcd0538fSMark Fasheh if (ret) 3466dcd0538fSMark Fasheh mlog_errno(ret); 3467dcd0538fSMark Fasheh 3468dcd0538fSMark Fasheh out: 3469dcd0538fSMark Fasheh ocfs2_free_path(left_path); 3470dcd0538fSMark Fasheh ocfs2_free_path(right_path); 3471dcd0538fSMark Fasheh 3472dcd0538fSMark Fasheh return ret; 3473dcd0538fSMark Fasheh } 3474dcd0538fSMark Fasheh 3475328d5752SMark Fasheh static enum ocfs2_contig_type 3476328d5752SMark Fasheh ocfs2_figure_merge_contig_type(struct inode *inode, 3477328d5752SMark Fasheh struct ocfs2_extent_list *el, int index, 3478328d5752SMark Fasheh struct ocfs2_extent_rec *split_rec) 3479328d5752SMark Fasheh { 3480328d5752SMark Fasheh struct ocfs2_extent_rec *rec; 3481328d5752SMark Fasheh enum ocfs2_contig_type ret = CONTIG_NONE; 3482328d5752SMark Fasheh 3483328d5752SMark Fasheh /* 3484328d5752SMark Fasheh * We're careful to check for an empty extent record here - 3485328d5752SMark Fasheh * the merge code will know what to do if it sees one. 3486328d5752SMark Fasheh */ 3487328d5752SMark Fasheh 3488328d5752SMark Fasheh if (index > 0) { 3489328d5752SMark Fasheh rec = &el->l_recs[index - 1]; 3490328d5752SMark Fasheh if (index == 1 && ocfs2_is_empty_extent(rec)) { 3491328d5752SMark Fasheh if (split_rec->e_cpos == el->l_recs[index].e_cpos) 3492328d5752SMark Fasheh ret = CONTIG_RIGHT; 3493328d5752SMark Fasheh } else { 3494328d5752SMark Fasheh ret = ocfs2_extent_contig(inode, rec, split_rec); 3495328d5752SMark Fasheh } 3496328d5752SMark Fasheh } 3497328d5752SMark Fasheh 3498328d5752SMark Fasheh if (index < (le16_to_cpu(el->l_next_free_rec) - 1)) { 3499328d5752SMark Fasheh enum ocfs2_contig_type contig_type; 3500328d5752SMark Fasheh 3501328d5752SMark Fasheh rec = &el->l_recs[index + 1]; 3502328d5752SMark Fasheh contig_type = ocfs2_extent_contig(inode, rec, split_rec); 3503328d5752SMark Fasheh 3504328d5752SMark Fasheh if (contig_type == CONTIG_LEFT && ret == CONTIG_RIGHT) 3505328d5752SMark Fasheh ret = CONTIG_LEFTRIGHT; 3506328d5752SMark Fasheh else if (ret == CONTIG_NONE) 3507328d5752SMark Fasheh ret = contig_type; 3508328d5752SMark Fasheh } 3509328d5752SMark Fasheh 3510328d5752SMark Fasheh return ret; 3511328d5752SMark Fasheh } 3512328d5752SMark Fasheh 3513dcd0538fSMark Fasheh static void ocfs2_figure_contig_type(struct inode *inode, 3514dcd0538fSMark Fasheh struct ocfs2_insert_type *insert, 3515dcd0538fSMark Fasheh struct ocfs2_extent_list *el, 3516dcd0538fSMark Fasheh struct ocfs2_extent_rec *insert_rec) 3517dcd0538fSMark Fasheh { 3518dcd0538fSMark Fasheh int i; 3519dcd0538fSMark Fasheh enum ocfs2_contig_type contig_type = CONTIG_NONE; 3520dcd0538fSMark Fasheh 3521e48edee2SMark Fasheh BUG_ON(le16_to_cpu(el->l_tree_depth) != 0); 3522e48edee2SMark Fasheh 3523dcd0538fSMark Fasheh for(i = 0; i < le16_to_cpu(el->l_next_free_rec); i++) { 3524dcd0538fSMark Fasheh contig_type = ocfs2_extent_contig(inode, &el->l_recs[i], 3525dcd0538fSMark Fasheh insert_rec); 3526dcd0538fSMark Fasheh if (contig_type != CONTIG_NONE) { 3527dcd0538fSMark Fasheh insert->ins_contig_index = i; 3528dcd0538fSMark Fasheh break; 3529dcd0538fSMark Fasheh } 3530dcd0538fSMark Fasheh } 3531dcd0538fSMark Fasheh insert->ins_contig = contig_type; 3532dcd0538fSMark Fasheh } 3533dcd0538fSMark Fasheh 3534dcd0538fSMark Fasheh /* 3535dcd0538fSMark Fasheh * This should only be called against the righmost leaf extent list. 3536dcd0538fSMark Fasheh * 3537dcd0538fSMark Fasheh * ocfs2_figure_appending_type() will figure out whether we'll have to 3538dcd0538fSMark Fasheh * insert at the tail of the rightmost leaf. 3539dcd0538fSMark Fasheh * 3540dcd0538fSMark Fasheh * This should also work against the dinode list for tree's with 0 3541dcd0538fSMark Fasheh * depth. If we consider the dinode list to be the rightmost leaf node 3542dcd0538fSMark Fasheh * then the logic here makes sense. 3543dcd0538fSMark Fasheh */ 3544dcd0538fSMark Fasheh static void ocfs2_figure_appending_type(struct ocfs2_insert_type *insert, 3545dcd0538fSMark Fasheh struct ocfs2_extent_list *el, 3546dcd0538fSMark Fasheh struct ocfs2_extent_rec *insert_rec) 3547dcd0538fSMark Fasheh { 3548dcd0538fSMark Fasheh int i; 3549dcd0538fSMark Fasheh u32 cpos = le32_to_cpu(insert_rec->e_cpos); 3550dcd0538fSMark Fasheh struct ocfs2_extent_rec *rec; 3551dcd0538fSMark Fasheh 3552dcd0538fSMark Fasheh insert->ins_appending = APPEND_NONE; 3553dcd0538fSMark Fasheh 3554e48edee2SMark Fasheh BUG_ON(le16_to_cpu(el->l_tree_depth) != 0); 3555dcd0538fSMark Fasheh 3556dcd0538fSMark Fasheh if (!el->l_next_free_rec) 3557dcd0538fSMark Fasheh goto set_tail_append; 3558dcd0538fSMark Fasheh 3559dcd0538fSMark Fasheh if (ocfs2_is_empty_extent(&el->l_recs[0])) { 3560dcd0538fSMark Fasheh /* Were all records empty? */ 3561dcd0538fSMark Fasheh if (le16_to_cpu(el->l_next_free_rec) == 1) 3562dcd0538fSMark Fasheh goto set_tail_append; 3563dcd0538fSMark Fasheh } 3564dcd0538fSMark Fasheh 3565dcd0538fSMark Fasheh i = le16_to_cpu(el->l_next_free_rec) - 1; 3566dcd0538fSMark Fasheh rec = &el->l_recs[i]; 3567dcd0538fSMark Fasheh 3568e48edee2SMark Fasheh if (cpos >= 3569e48edee2SMark Fasheh (le32_to_cpu(rec->e_cpos) + le16_to_cpu(rec->e_leaf_clusters))) 3570dcd0538fSMark Fasheh goto set_tail_append; 3571dcd0538fSMark Fasheh 3572dcd0538fSMark Fasheh return; 3573dcd0538fSMark Fasheh 3574dcd0538fSMark Fasheh set_tail_append: 3575dcd0538fSMark Fasheh insert->ins_appending = APPEND_TAIL; 3576dcd0538fSMark Fasheh } 3577dcd0538fSMark Fasheh 3578dcd0538fSMark Fasheh /* 3579dcd0538fSMark Fasheh * Helper function called at the begining of an insert. 3580dcd0538fSMark Fasheh * 3581dcd0538fSMark Fasheh * This computes a few things that are commonly used in the process of 3582dcd0538fSMark Fasheh * inserting into the btree: 3583dcd0538fSMark Fasheh * - Whether the new extent is contiguous with an existing one. 3584dcd0538fSMark Fasheh * - The current tree depth. 3585dcd0538fSMark Fasheh * - Whether the insert is an appending one. 3586dcd0538fSMark Fasheh * - The total # of free records in the tree. 3587dcd0538fSMark Fasheh * 3588dcd0538fSMark Fasheh * All of the information is stored on the ocfs2_insert_type 3589dcd0538fSMark Fasheh * structure. 3590dcd0538fSMark Fasheh */ 3591dcd0538fSMark Fasheh static int ocfs2_figure_insert_type(struct inode *inode, 3592dcd0538fSMark Fasheh struct buffer_head *di_bh, 3593dcd0538fSMark Fasheh struct buffer_head **last_eb_bh, 3594dcd0538fSMark Fasheh struct ocfs2_extent_rec *insert_rec, 3595*c77534f6STao Mao int *free_records, 3596dcd0538fSMark Fasheh struct ocfs2_insert_type *insert) 3597dcd0538fSMark Fasheh { 3598dcd0538fSMark Fasheh int ret; 3599dcd0538fSMark Fasheh struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data; 3600dcd0538fSMark Fasheh struct ocfs2_extent_block *eb; 3601dcd0538fSMark Fasheh struct ocfs2_extent_list *el; 3602dcd0538fSMark Fasheh struct ocfs2_path *path = NULL; 3603dcd0538fSMark Fasheh struct buffer_head *bh = NULL; 3604dcd0538fSMark Fasheh 3605328d5752SMark Fasheh insert->ins_split = SPLIT_NONE; 3606328d5752SMark Fasheh 3607dcd0538fSMark Fasheh el = &di->id2.i_list; 3608dcd0538fSMark Fasheh insert->ins_tree_depth = le16_to_cpu(el->l_tree_depth); 3609dcd0538fSMark Fasheh 3610dcd0538fSMark Fasheh if (el->l_tree_depth) { 3611dcd0538fSMark Fasheh /* 3612dcd0538fSMark Fasheh * If we have tree depth, we read in the 3613dcd0538fSMark Fasheh * rightmost extent block ahead of time as 3614dcd0538fSMark Fasheh * ocfs2_figure_insert_type() and ocfs2_add_branch() 3615dcd0538fSMark Fasheh * may want it later. 3616dcd0538fSMark Fasheh */ 3617dcd0538fSMark Fasheh ret = ocfs2_read_block(OCFS2_SB(inode->i_sb), 3618dcd0538fSMark Fasheh le64_to_cpu(di->i_last_eb_blk), &bh, 3619dcd0538fSMark Fasheh OCFS2_BH_CACHED, inode); 3620dcd0538fSMark Fasheh if (ret) { 3621dcd0538fSMark Fasheh mlog_exit(ret); 3622dcd0538fSMark Fasheh goto out; 3623dcd0538fSMark Fasheh } 3624dcd0538fSMark Fasheh eb = (struct ocfs2_extent_block *) bh->b_data; 3625dcd0538fSMark Fasheh el = &eb->h_list; 3626dcd0538fSMark Fasheh } 3627dcd0538fSMark Fasheh 3628dcd0538fSMark Fasheh /* 3629dcd0538fSMark Fasheh * Unless we have a contiguous insert, we'll need to know if 3630dcd0538fSMark Fasheh * there is room left in our allocation tree for another 3631dcd0538fSMark Fasheh * extent record. 3632dcd0538fSMark Fasheh * 3633dcd0538fSMark Fasheh * XXX: This test is simplistic, we can search for empty 3634dcd0538fSMark Fasheh * extent records too. 3635dcd0538fSMark Fasheh */ 3636*c77534f6STao Mao *free_records = le16_to_cpu(el->l_count) - 3637dcd0538fSMark Fasheh le16_to_cpu(el->l_next_free_rec); 3638dcd0538fSMark Fasheh 3639dcd0538fSMark Fasheh if (!insert->ins_tree_depth) { 3640dcd0538fSMark Fasheh ocfs2_figure_contig_type(inode, insert, el, insert_rec); 3641dcd0538fSMark Fasheh ocfs2_figure_appending_type(insert, el, insert_rec); 3642dcd0538fSMark Fasheh return 0; 3643dcd0538fSMark Fasheh } 3644dcd0538fSMark Fasheh 3645dcd0538fSMark Fasheh path = ocfs2_new_inode_path(di_bh); 3646dcd0538fSMark Fasheh if (!path) { 3647dcd0538fSMark Fasheh ret = -ENOMEM; 3648dcd0538fSMark Fasheh mlog_errno(ret); 3649dcd0538fSMark Fasheh goto out; 3650dcd0538fSMark Fasheh } 3651dcd0538fSMark Fasheh 3652dcd0538fSMark Fasheh /* 3653dcd0538fSMark Fasheh * In the case that we're inserting past what the tree 3654dcd0538fSMark Fasheh * currently accounts for, ocfs2_find_path() will return for 3655dcd0538fSMark Fasheh * us the rightmost tree path. This is accounted for below in 3656dcd0538fSMark Fasheh * the appending code. 3657dcd0538fSMark Fasheh */ 3658dcd0538fSMark Fasheh ret = ocfs2_find_path(inode, path, le32_to_cpu(insert_rec->e_cpos)); 3659dcd0538fSMark Fasheh if (ret) { 3660dcd0538fSMark Fasheh mlog_errno(ret); 3661dcd0538fSMark Fasheh goto out; 3662dcd0538fSMark Fasheh } 3663dcd0538fSMark Fasheh 3664dcd0538fSMark Fasheh el = path_leaf_el(path); 3665dcd0538fSMark Fasheh 3666dcd0538fSMark Fasheh /* 3667dcd0538fSMark Fasheh * Now that we have the path, there's two things we want to determine: 3668dcd0538fSMark Fasheh * 1) Contiguousness (also set contig_index if this is so) 3669dcd0538fSMark Fasheh * 3670dcd0538fSMark Fasheh * 2) Are we doing an append? We can trivially break this up 3671dcd0538fSMark Fasheh * into two types of appends: simple record append, or a 3672dcd0538fSMark Fasheh * rotate inside the tail leaf. 3673dcd0538fSMark Fasheh */ 3674dcd0538fSMark Fasheh ocfs2_figure_contig_type(inode, insert, el, insert_rec); 3675dcd0538fSMark Fasheh 3676dcd0538fSMark Fasheh /* 3677dcd0538fSMark Fasheh * The insert code isn't quite ready to deal with all cases of 3678dcd0538fSMark Fasheh * left contiguousness. Specifically, if it's an insert into 3679dcd0538fSMark Fasheh * the 1st record in a leaf, it will require the adjustment of 3680e48edee2SMark Fasheh * cluster count on the last record of the path directly to it's 3681dcd0538fSMark Fasheh * left. For now, just catch that case and fool the layers 3682dcd0538fSMark Fasheh * above us. This works just fine for tree_depth == 0, which 3683dcd0538fSMark Fasheh * is why we allow that above. 3684dcd0538fSMark Fasheh */ 3685dcd0538fSMark Fasheh if (insert->ins_contig == CONTIG_LEFT && 3686dcd0538fSMark Fasheh insert->ins_contig_index == 0) 3687dcd0538fSMark Fasheh insert->ins_contig = CONTIG_NONE; 3688dcd0538fSMark Fasheh 3689dcd0538fSMark Fasheh /* 3690dcd0538fSMark Fasheh * Ok, so we can simply compare against last_eb to figure out 3691dcd0538fSMark Fasheh * whether the path doesn't exist. This will only happen in 3692dcd0538fSMark Fasheh * the case that we're doing a tail append, so maybe we can 3693dcd0538fSMark Fasheh * take advantage of that information somehow. 3694dcd0538fSMark Fasheh */ 3695dcd0538fSMark Fasheh if (le64_to_cpu(di->i_last_eb_blk) == path_leaf_bh(path)->b_blocknr) { 3696dcd0538fSMark Fasheh /* 3697dcd0538fSMark Fasheh * Ok, ocfs2_find_path() returned us the rightmost 3698dcd0538fSMark Fasheh * tree path. This might be an appending insert. There are 3699dcd0538fSMark Fasheh * two cases: 3700dcd0538fSMark Fasheh * 1) We're doing a true append at the tail: 3701dcd0538fSMark Fasheh * -This might even be off the end of the leaf 3702dcd0538fSMark Fasheh * 2) We're "appending" by rotating in the tail 3703dcd0538fSMark Fasheh */ 3704dcd0538fSMark Fasheh ocfs2_figure_appending_type(insert, el, insert_rec); 3705dcd0538fSMark Fasheh } 3706dcd0538fSMark Fasheh 3707dcd0538fSMark Fasheh out: 3708dcd0538fSMark Fasheh ocfs2_free_path(path); 3709dcd0538fSMark Fasheh 3710dcd0538fSMark Fasheh if (ret == 0) 3711dcd0538fSMark Fasheh *last_eb_bh = bh; 3712dcd0538fSMark Fasheh else 3713dcd0538fSMark Fasheh brelse(bh); 3714dcd0538fSMark Fasheh return ret; 3715dcd0538fSMark Fasheh } 3716dcd0538fSMark Fasheh 3717dcd0538fSMark Fasheh /* 3718dcd0538fSMark Fasheh * Insert an extent into an inode btree. 3719dcd0538fSMark Fasheh * 3720dcd0538fSMark Fasheh * The caller needs to update fe->i_clusters 3721dcd0538fSMark Fasheh */ 3722ccd979bdSMark Fasheh int ocfs2_insert_extent(struct ocfs2_super *osb, 37231fabe148SMark Fasheh handle_t *handle, 3724ccd979bdSMark Fasheh struct inode *inode, 3725ccd979bdSMark Fasheh struct buffer_head *fe_bh, 3726dcd0538fSMark Fasheh u32 cpos, 3727ccd979bdSMark Fasheh u64 start_blk, 3728ccd979bdSMark Fasheh u32 new_clusters, 37292ae99a60SMark Fasheh u8 flags, 3730ccd979bdSMark Fasheh struct ocfs2_alloc_context *meta_ac) 3731ccd979bdSMark Fasheh { 3732c3afcbb3SMark Fasheh int status; 3733*c77534f6STao Mao int uninitialized_var(free_records); 3734ccd979bdSMark Fasheh struct buffer_head *last_eb_bh = NULL; 3735dcd0538fSMark Fasheh struct ocfs2_insert_type insert = {0, }; 3736dcd0538fSMark Fasheh struct ocfs2_extent_rec rec; 3737ccd979bdSMark Fasheh 3738dcd0538fSMark Fasheh mlog(0, "add %u clusters at position %u to inode %llu\n", 3739dcd0538fSMark Fasheh new_clusters, cpos, (unsigned long long)OCFS2_I(inode)->ip_blkno); 3740ccd979bdSMark Fasheh 3741dcd0538fSMark Fasheh mlog_bug_on_msg(!ocfs2_sparse_alloc(osb) && 3742dcd0538fSMark Fasheh (OCFS2_I(inode)->ip_clusters != cpos), 3743dcd0538fSMark Fasheh "Device %s, asking for sparse allocation: inode %llu, " 3744dcd0538fSMark Fasheh "cpos %u, clusters %u\n", 3745dcd0538fSMark Fasheh osb->dev_str, 3746dcd0538fSMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno, cpos, 3747dcd0538fSMark Fasheh OCFS2_I(inode)->ip_clusters); 3748ccd979bdSMark Fasheh 3749e48edee2SMark Fasheh memset(&rec, 0, sizeof(rec)); 3750dcd0538fSMark Fasheh rec.e_cpos = cpu_to_le32(cpos); 3751dcd0538fSMark Fasheh rec.e_blkno = cpu_to_le64(start_blk); 3752e48edee2SMark Fasheh rec.e_leaf_clusters = cpu_to_le16(new_clusters); 37532ae99a60SMark Fasheh rec.e_flags = flags; 3754ccd979bdSMark Fasheh 3755dcd0538fSMark Fasheh status = ocfs2_figure_insert_type(inode, fe_bh, &last_eb_bh, &rec, 3756*c77534f6STao Mao &free_records, &insert); 3757ccd979bdSMark Fasheh if (status < 0) { 3758dcd0538fSMark Fasheh mlog_errno(status); 3759ccd979bdSMark Fasheh goto bail; 3760ccd979bdSMark Fasheh } 3761ccd979bdSMark Fasheh 3762dcd0538fSMark Fasheh mlog(0, "Insert.appending: %u, Insert.Contig: %u, " 3763dcd0538fSMark Fasheh "Insert.contig_index: %d, Insert.free_records: %d, " 3764dcd0538fSMark Fasheh "Insert.tree_depth: %d\n", 3765dcd0538fSMark Fasheh insert.ins_appending, insert.ins_contig, insert.ins_contig_index, 3766*c77534f6STao Mao free_records, insert.ins_tree_depth); 3767dcd0538fSMark Fasheh 3768*c77534f6STao Mao if (insert.ins_contig == CONTIG_NONE && free_records == 0) { 3769c3afcbb3SMark Fasheh status = ocfs2_grow_tree(inode, handle, fe_bh, 3770328d5752SMark Fasheh &insert.ins_tree_depth, &last_eb_bh, 3771ccd979bdSMark Fasheh meta_ac); 3772c3afcbb3SMark Fasheh if (status) { 3773ccd979bdSMark Fasheh mlog_errno(status); 3774ccd979bdSMark Fasheh goto bail; 3775ccd979bdSMark Fasheh } 3776c3afcbb3SMark Fasheh } 3777ccd979bdSMark Fasheh 3778dcd0538fSMark Fasheh /* Finally, we can add clusters. This might rotate the tree for us. */ 3779dcd0538fSMark Fasheh status = ocfs2_do_insert_extent(inode, handle, fe_bh, &rec, &insert); 3780ccd979bdSMark Fasheh if (status < 0) 3781ccd979bdSMark Fasheh mlog_errno(status); 378283418978SMark Fasheh else 378383418978SMark Fasheh ocfs2_extent_map_insert_rec(inode, &rec); 3784ccd979bdSMark Fasheh 3785ccd979bdSMark Fasheh bail: 3786ccd979bdSMark Fasheh if (last_eb_bh) 3787ccd979bdSMark Fasheh brelse(last_eb_bh); 3788ccd979bdSMark Fasheh 3789ccd979bdSMark Fasheh mlog_exit(status); 3790ccd979bdSMark Fasheh return status; 3791ccd979bdSMark Fasheh } 3792ccd979bdSMark Fasheh 3793328d5752SMark Fasheh static void ocfs2_make_right_split_rec(struct super_block *sb, 3794328d5752SMark Fasheh struct ocfs2_extent_rec *split_rec, 3795328d5752SMark Fasheh u32 cpos, 3796328d5752SMark Fasheh struct ocfs2_extent_rec *rec) 3797328d5752SMark Fasheh { 3798328d5752SMark Fasheh u32 rec_cpos = le32_to_cpu(rec->e_cpos); 3799328d5752SMark Fasheh u32 rec_range = rec_cpos + le16_to_cpu(rec->e_leaf_clusters); 3800328d5752SMark Fasheh 3801328d5752SMark Fasheh memset(split_rec, 0, sizeof(struct ocfs2_extent_rec)); 3802328d5752SMark Fasheh 3803328d5752SMark Fasheh split_rec->e_cpos = cpu_to_le32(cpos); 3804328d5752SMark Fasheh split_rec->e_leaf_clusters = cpu_to_le16(rec_range - cpos); 3805328d5752SMark Fasheh 3806328d5752SMark Fasheh split_rec->e_blkno = rec->e_blkno; 3807328d5752SMark Fasheh le64_add_cpu(&split_rec->e_blkno, 3808328d5752SMark Fasheh ocfs2_clusters_to_blocks(sb, cpos - rec_cpos)); 3809328d5752SMark Fasheh 3810328d5752SMark Fasheh split_rec->e_flags = rec->e_flags; 3811328d5752SMark Fasheh } 3812328d5752SMark Fasheh 3813328d5752SMark Fasheh static int ocfs2_split_and_insert(struct inode *inode, 3814328d5752SMark Fasheh handle_t *handle, 3815328d5752SMark Fasheh struct ocfs2_path *path, 3816328d5752SMark Fasheh struct buffer_head *di_bh, 3817328d5752SMark Fasheh struct buffer_head **last_eb_bh, 3818328d5752SMark Fasheh int split_index, 3819328d5752SMark Fasheh struct ocfs2_extent_rec *orig_split_rec, 3820328d5752SMark Fasheh struct ocfs2_alloc_context *meta_ac) 3821328d5752SMark Fasheh { 3822328d5752SMark Fasheh int ret = 0, depth; 3823328d5752SMark Fasheh unsigned int insert_range, rec_range, do_leftright = 0; 3824328d5752SMark Fasheh struct ocfs2_extent_rec tmprec; 3825328d5752SMark Fasheh struct ocfs2_extent_list *rightmost_el; 3826328d5752SMark Fasheh struct ocfs2_extent_rec rec; 3827328d5752SMark Fasheh struct ocfs2_extent_rec split_rec = *orig_split_rec; 3828328d5752SMark Fasheh struct ocfs2_insert_type insert; 3829328d5752SMark Fasheh struct ocfs2_extent_block *eb; 3830328d5752SMark Fasheh struct ocfs2_dinode *di; 3831328d5752SMark Fasheh 3832328d5752SMark Fasheh leftright: 3833328d5752SMark Fasheh /* 3834328d5752SMark Fasheh * Store a copy of the record on the stack - it might move 3835328d5752SMark Fasheh * around as the tree is manipulated below. 3836328d5752SMark Fasheh */ 3837328d5752SMark Fasheh rec = path_leaf_el(path)->l_recs[split_index]; 3838328d5752SMark Fasheh 3839328d5752SMark Fasheh di = (struct ocfs2_dinode *)di_bh->b_data; 3840328d5752SMark Fasheh rightmost_el = &di->id2.i_list; 3841328d5752SMark Fasheh 3842328d5752SMark Fasheh depth = le16_to_cpu(rightmost_el->l_tree_depth); 3843328d5752SMark Fasheh if (depth) { 3844328d5752SMark Fasheh BUG_ON(!(*last_eb_bh)); 3845328d5752SMark Fasheh eb = (struct ocfs2_extent_block *) (*last_eb_bh)->b_data; 3846328d5752SMark Fasheh rightmost_el = &eb->h_list; 3847328d5752SMark Fasheh } 3848328d5752SMark Fasheh 3849328d5752SMark Fasheh if (le16_to_cpu(rightmost_el->l_next_free_rec) == 3850328d5752SMark Fasheh le16_to_cpu(rightmost_el->l_count)) { 3851328d5752SMark Fasheh ret = ocfs2_grow_tree(inode, handle, di_bh, &depth, last_eb_bh, 3852328d5752SMark Fasheh meta_ac); 3853328d5752SMark Fasheh if (ret) { 3854328d5752SMark Fasheh mlog_errno(ret); 3855328d5752SMark Fasheh goto out; 3856328d5752SMark Fasheh } 3857328d5752SMark Fasheh } 3858328d5752SMark Fasheh 3859328d5752SMark Fasheh memset(&insert, 0, sizeof(struct ocfs2_insert_type)); 3860328d5752SMark Fasheh insert.ins_appending = APPEND_NONE; 3861328d5752SMark Fasheh insert.ins_contig = CONTIG_NONE; 3862328d5752SMark Fasheh insert.ins_tree_depth = depth; 3863328d5752SMark Fasheh 3864328d5752SMark Fasheh insert_range = le32_to_cpu(split_rec.e_cpos) + 3865328d5752SMark Fasheh le16_to_cpu(split_rec.e_leaf_clusters); 3866328d5752SMark Fasheh rec_range = le32_to_cpu(rec.e_cpos) + 3867328d5752SMark Fasheh le16_to_cpu(rec.e_leaf_clusters); 3868328d5752SMark Fasheh 3869328d5752SMark Fasheh if (split_rec.e_cpos == rec.e_cpos) { 3870328d5752SMark Fasheh insert.ins_split = SPLIT_LEFT; 3871328d5752SMark Fasheh } else if (insert_range == rec_range) { 3872328d5752SMark Fasheh insert.ins_split = SPLIT_RIGHT; 3873328d5752SMark Fasheh } else { 3874328d5752SMark Fasheh /* 3875328d5752SMark Fasheh * Left/right split. We fake this as a right split 3876328d5752SMark Fasheh * first and then make a second pass as a left split. 3877328d5752SMark Fasheh */ 3878328d5752SMark Fasheh insert.ins_split = SPLIT_RIGHT; 3879328d5752SMark Fasheh 3880328d5752SMark Fasheh ocfs2_make_right_split_rec(inode->i_sb, &tmprec, insert_range, 3881328d5752SMark Fasheh &rec); 3882328d5752SMark Fasheh 3883328d5752SMark Fasheh split_rec = tmprec; 3884328d5752SMark Fasheh 3885328d5752SMark Fasheh BUG_ON(do_leftright); 3886328d5752SMark Fasheh do_leftright = 1; 3887328d5752SMark Fasheh } 3888328d5752SMark Fasheh 3889328d5752SMark Fasheh ret = ocfs2_do_insert_extent(inode, handle, di_bh, &split_rec, 3890328d5752SMark Fasheh &insert); 3891328d5752SMark Fasheh if (ret) { 3892328d5752SMark Fasheh mlog_errno(ret); 3893328d5752SMark Fasheh goto out; 3894328d5752SMark Fasheh } 3895328d5752SMark Fasheh 3896328d5752SMark Fasheh if (do_leftright == 1) { 3897328d5752SMark Fasheh u32 cpos; 3898328d5752SMark Fasheh struct ocfs2_extent_list *el; 3899328d5752SMark Fasheh 3900328d5752SMark Fasheh do_leftright++; 3901328d5752SMark Fasheh split_rec = *orig_split_rec; 3902328d5752SMark Fasheh 3903328d5752SMark Fasheh ocfs2_reinit_path(path, 1); 3904328d5752SMark Fasheh 3905328d5752SMark Fasheh cpos = le32_to_cpu(split_rec.e_cpos); 3906328d5752SMark Fasheh ret = ocfs2_find_path(inode, path, cpos); 3907328d5752SMark Fasheh if (ret) { 3908328d5752SMark Fasheh mlog_errno(ret); 3909328d5752SMark Fasheh goto out; 3910328d5752SMark Fasheh } 3911328d5752SMark Fasheh 3912328d5752SMark Fasheh el = path_leaf_el(path); 3913328d5752SMark Fasheh split_index = ocfs2_search_extent_list(el, cpos); 3914328d5752SMark Fasheh goto leftright; 3915328d5752SMark Fasheh } 3916328d5752SMark Fasheh out: 3917328d5752SMark Fasheh 3918328d5752SMark Fasheh return ret; 3919328d5752SMark Fasheh } 3920328d5752SMark Fasheh 3921328d5752SMark Fasheh /* 3922328d5752SMark Fasheh * Mark part or all of the extent record at split_index in the leaf 3923328d5752SMark Fasheh * pointed to by path as written. This removes the unwritten 3924328d5752SMark Fasheh * extent flag. 3925328d5752SMark Fasheh * 3926328d5752SMark Fasheh * Care is taken to handle contiguousness so as to not grow the tree. 3927328d5752SMark Fasheh * 3928328d5752SMark Fasheh * meta_ac is not strictly necessary - we only truly need it if growth 3929328d5752SMark Fasheh * of the tree is required. All other cases will degrade into a less 3930328d5752SMark Fasheh * optimal tree layout. 3931328d5752SMark Fasheh * 3932328d5752SMark Fasheh * last_eb_bh should be the rightmost leaf block for any inode with a 3933328d5752SMark Fasheh * btree. Since a split may grow the tree or a merge might shrink it, the caller cannot trust the contents of that buffer after this call. 3934328d5752SMark Fasheh * 3935328d5752SMark Fasheh * This code is optimized for readability - several passes might be 3936328d5752SMark Fasheh * made over certain portions of the tree. All of those blocks will 3937328d5752SMark Fasheh * have been brought into cache (and pinned via the journal), so the 3938328d5752SMark Fasheh * extra overhead is not expressed in terms of disk reads. 3939328d5752SMark Fasheh */ 3940328d5752SMark Fasheh static int __ocfs2_mark_extent_written(struct inode *inode, 3941328d5752SMark Fasheh struct buffer_head *di_bh, 3942328d5752SMark Fasheh handle_t *handle, 3943328d5752SMark Fasheh struct ocfs2_path *path, 3944328d5752SMark Fasheh int split_index, 3945328d5752SMark Fasheh struct ocfs2_extent_rec *split_rec, 3946328d5752SMark Fasheh struct ocfs2_alloc_context *meta_ac, 3947328d5752SMark Fasheh struct ocfs2_cached_dealloc_ctxt *dealloc) 3948328d5752SMark Fasheh { 3949328d5752SMark Fasheh int ret = 0; 3950328d5752SMark Fasheh struct ocfs2_extent_list *el = path_leaf_el(path); 3951328d5752SMark Fasheh struct buffer_head *eb_bh, *last_eb_bh = NULL; 3952328d5752SMark Fasheh struct ocfs2_extent_rec *rec = &el->l_recs[split_index]; 3953328d5752SMark Fasheh struct ocfs2_merge_ctxt ctxt; 3954328d5752SMark Fasheh struct ocfs2_extent_list *rightmost_el; 3955328d5752SMark Fasheh 3956328d5752SMark Fasheh if (!rec->e_flags & OCFS2_EXT_UNWRITTEN) { 3957328d5752SMark Fasheh ret = -EIO; 3958328d5752SMark Fasheh mlog_errno(ret); 3959328d5752SMark Fasheh goto out; 3960328d5752SMark Fasheh } 3961328d5752SMark Fasheh 3962328d5752SMark Fasheh if (le32_to_cpu(rec->e_cpos) > le32_to_cpu(split_rec->e_cpos) || 3963328d5752SMark Fasheh ((le32_to_cpu(rec->e_cpos) + le16_to_cpu(rec->e_leaf_clusters)) < 3964328d5752SMark Fasheh (le32_to_cpu(split_rec->e_cpos) + le16_to_cpu(split_rec->e_leaf_clusters)))) { 3965328d5752SMark Fasheh ret = -EIO; 3966328d5752SMark Fasheh mlog_errno(ret); 3967328d5752SMark Fasheh goto out; 3968328d5752SMark Fasheh } 3969328d5752SMark Fasheh 3970328d5752SMark Fasheh eb_bh = path_leaf_bh(path); 3971328d5752SMark Fasheh ret = ocfs2_journal_access(handle, inode, eb_bh, 3972328d5752SMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 3973328d5752SMark Fasheh if (ret) { 3974328d5752SMark Fasheh mlog_errno(ret); 3975328d5752SMark Fasheh goto out; 3976328d5752SMark Fasheh } 3977328d5752SMark Fasheh 3978328d5752SMark Fasheh ctxt.c_contig_type = ocfs2_figure_merge_contig_type(inode, el, 3979328d5752SMark Fasheh split_index, 3980328d5752SMark Fasheh split_rec); 3981328d5752SMark Fasheh 3982328d5752SMark Fasheh /* 3983328d5752SMark Fasheh * The core merge / split code wants to know how much room is 3984328d5752SMark Fasheh * left in this inodes allocation tree, so we pass the 3985328d5752SMark Fasheh * rightmost extent list. 3986328d5752SMark Fasheh */ 3987328d5752SMark Fasheh if (path->p_tree_depth) { 3988328d5752SMark Fasheh struct ocfs2_extent_block *eb; 3989328d5752SMark Fasheh struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data; 3990328d5752SMark Fasheh 3991328d5752SMark Fasheh ret = ocfs2_read_block(OCFS2_SB(inode->i_sb), 3992328d5752SMark Fasheh le64_to_cpu(di->i_last_eb_blk), 3993328d5752SMark Fasheh &last_eb_bh, OCFS2_BH_CACHED, inode); 3994328d5752SMark Fasheh if (ret) { 3995328d5752SMark Fasheh mlog_exit(ret); 3996328d5752SMark Fasheh goto out; 3997328d5752SMark Fasheh } 3998328d5752SMark Fasheh 3999328d5752SMark Fasheh eb = (struct ocfs2_extent_block *) last_eb_bh->b_data; 4000328d5752SMark Fasheh if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) { 4001328d5752SMark Fasheh OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb); 4002328d5752SMark Fasheh ret = -EROFS; 4003328d5752SMark Fasheh goto out; 4004328d5752SMark Fasheh } 4005328d5752SMark Fasheh 4006328d5752SMark Fasheh rightmost_el = &eb->h_list; 4007328d5752SMark Fasheh } else 4008328d5752SMark Fasheh rightmost_el = path_root_el(path); 4009328d5752SMark Fasheh 4010328d5752SMark Fasheh ctxt.c_used_tail_recs = le16_to_cpu(rightmost_el->l_next_free_rec); 4011328d5752SMark Fasheh if (ctxt.c_used_tail_recs > 0 && 4012328d5752SMark Fasheh ocfs2_is_empty_extent(&rightmost_el->l_recs[0])) 4013328d5752SMark Fasheh ctxt.c_used_tail_recs--; 4014328d5752SMark Fasheh 4015328d5752SMark Fasheh if (rec->e_cpos == split_rec->e_cpos && 4016328d5752SMark Fasheh rec->e_leaf_clusters == split_rec->e_leaf_clusters) 4017328d5752SMark Fasheh ctxt.c_split_covers_rec = 1; 4018328d5752SMark Fasheh else 4019328d5752SMark Fasheh ctxt.c_split_covers_rec = 0; 4020328d5752SMark Fasheh 4021328d5752SMark Fasheh ctxt.c_has_empty_extent = ocfs2_is_empty_extent(&el->l_recs[0]); 4022328d5752SMark Fasheh 4023328d5752SMark Fasheh mlog(0, "index: %d, contig: %u, used_tail_recs: %u, " 4024328d5752SMark Fasheh "has_empty: %u, split_covers: %u\n", split_index, 4025328d5752SMark Fasheh ctxt.c_contig_type, ctxt.c_used_tail_recs, 4026328d5752SMark Fasheh ctxt.c_has_empty_extent, ctxt.c_split_covers_rec); 4027328d5752SMark Fasheh 4028328d5752SMark Fasheh if (ctxt.c_contig_type == CONTIG_NONE) { 4029328d5752SMark Fasheh if (ctxt.c_split_covers_rec) 4030328d5752SMark Fasheh el->l_recs[split_index] = *split_rec; 4031328d5752SMark Fasheh else 4032328d5752SMark Fasheh ret = ocfs2_split_and_insert(inode, handle, path, di_bh, 4033328d5752SMark Fasheh &last_eb_bh, split_index, 4034328d5752SMark Fasheh split_rec, meta_ac); 4035328d5752SMark Fasheh if (ret) 4036328d5752SMark Fasheh mlog_errno(ret); 4037328d5752SMark Fasheh } else { 4038328d5752SMark Fasheh ret = ocfs2_try_to_merge_extent(inode, handle, path, 4039328d5752SMark Fasheh split_index, split_rec, 4040328d5752SMark Fasheh dealloc, &ctxt); 4041328d5752SMark Fasheh if (ret) 4042328d5752SMark Fasheh mlog_errno(ret); 4043328d5752SMark Fasheh } 4044328d5752SMark Fasheh 4045328d5752SMark Fasheh ocfs2_journal_dirty(handle, eb_bh); 4046328d5752SMark Fasheh 4047328d5752SMark Fasheh out: 4048328d5752SMark Fasheh brelse(last_eb_bh); 4049328d5752SMark Fasheh return ret; 4050328d5752SMark Fasheh } 4051328d5752SMark Fasheh 4052328d5752SMark Fasheh /* 4053328d5752SMark Fasheh * Mark the already-existing extent at cpos as written for len clusters. 4054328d5752SMark Fasheh * 4055328d5752SMark Fasheh * If the existing extent is larger than the request, initiate a 4056328d5752SMark Fasheh * split. An attempt will be made at merging with adjacent extents. 4057328d5752SMark Fasheh * 4058328d5752SMark Fasheh * The caller is responsible for passing down meta_ac if we'll need it. 4059328d5752SMark Fasheh */ 4060328d5752SMark Fasheh int ocfs2_mark_extent_written(struct inode *inode, struct buffer_head *di_bh, 4061328d5752SMark Fasheh handle_t *handle, u32 cpos, u32 len, u32 phys, 4062328d5752SMark Fasheh struct ocfs2_alloc_context *meta_ac, 4063328d5752SMark Fasheh struct ocfs2_cached_dealloc_ctxt *dealloc) 4064328d5752SMark Fasheh { 4065328d5752SMark Fasheh int ret, index; 4066328d5752SMark Fasheh u64 start_blkno = ocfs2_clusters_to_blocks(inode->i_sb, phys); 4067328d5752SMark Fasheh struct ocfs2_extent_rec split_rec; 4068328d5752SMark Fasheh struct ocfs2_path *left_path = NULL; 4069328d5752SMark Fasheh struct ocfs2_extent_list *el; 4070328d5752SMark Fasheh 4071328d5752SMark Fasheh mlog(0, "Inode %lu cpos %u, len %u, phys %u (%llu)\n", 4072328d5752SMark Fasheh inode->i_ino, cpos, len, phys, (unsigned long long)start_blkno); 4073328d5752SMark Fasheh 4074328d5752SMark Fasheh if (!ocfs2_writes_unwritten_extents(OCFS2_SB(inode->i_sb))) { 4075328d5752SMark Fasheh ocfs2_error(inode->i_sb, "Inode %llu has unwritten extents " 4076328d5752SMark Fasheh "that are being written to, but the feature bit " 4077328d5752SMark Fasheh "is not set in the super block.", 4078328d5752SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno); 4079328d5752SMark Fasheh ret = -EROFS; 4080328d5752SMark Fasheh goto out; 4081328d5752SMark Fasheh } 4082328d5752SMark Fasheh 4083328d5752SMark Fasheh /* 4084328d5752SMark Fasheh * XXX: This should be fixed up so that we just re-insert the 4085328d5752SMark Fasheh * next extent records. 4086328d5752SMark Fasheh */ 4087328d5752SMark Fasheh ocfs2_extent_map_trunc(inode, 0); 4088328d5752SMark Fasheh 4089328d5752SMark Fasheh left_path = ocfs2_new_inode_path(di_bh); 4090328d5752SMark Fasheh if (!left_path) { 4091328d5752SMark Fasheh ret = -ENOMEM; 4092328d5752SMark Fasheh mlog_errno(ret); 4093328d5752SMark Fasheh goto out; 4094328d5752SMark Fasheh } 4095328d5752SMark Fasheh 4096328d5752SMark Fasheh ret = ocfs2_find_path(inode, left_path, cpos); 4097328d5752SMark Fasheh if (ret) { 4098328d5752SMark Fasheh mlog_errno(ret); 4099328d5752SMark Fasheh goto out; 4100328d5752SMark Fasheh } 4101328d5752SMark Fasheh el = path_leaf_el(left_path); 4102328d5752SMark Fasheh 4103328d5752SMark Fasheh index = ocfs2_search_extent_list(el, cpos); 4104328d5752SMark Fasheh if (index == -1 || index >= le16_to_cpu(el->l_next_free_rec)) { 4105328d5752SMark Fasheh ocfs2_error(inode->i_sb, 4106328d5752SMark Fasheh "Inode %llu has an extent at cpos %u which can no " 4107328d5752SMark Fasheh "longer be found.\n", 4108328d5752SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno, cpos); 4109328d5752SMark Fasheh ret = -EROFS; 4110328d5752SMark Fasheh goto out; 4111328d5752SMark Fasheh } 4112328d5752SMark Fasheh 4113328d5752SMark Fasheh memset(&split_rec, 0, sizeof(struct ocfs2_extent_rec)); 4114328d5752SMark Fasheh split_rec.e_cpos = cpu_to_le32(cpos); 4115328d5752SMark Fasheh split_rec.e_leaf_clusters = cpu_to_le16(len); 4116328d5752SMark Fasheh split_rec.e_blkno = cpu_to_le64(start_blkno); 4117328d5752SMark Fasheh split_rec.e_flags = path_leaf_el(left_path)->l_recs[index].e_flags; 4118328d5752SMark Fasheh split_rec.e_flags &= ~OCFS2_EXT_UNWRITTEN; 4119328d5752SMark Fasheh 4120328d5752SMark Fasheh ret = __ocfs2_mark_extent_written(inode, di_bh, handle, left_path, 4121328d5752SMark Fasheh index, &split_rec, meta_ac, dealloc); 4122328d5752SMark Fasheh if (ret) 4123328d5752SMark Fasheh mlog_errno(ret); 4124328d5752SMark Fasheh 4125328d5752SMark Fasheh out: 4126328d5752SMark Fasheh ocfs2_free_path(left_path); 4127328d5752SMark Fasheh return ret; 4128328d5752SMark Fasheh } 4129328d5752SMark Fasheh 4130d0c7d708SMark Fasheh static int ocfs2_split_tree(struct inode *inode, struct buffer_head *di_bh, 4131d0c7d708SMark Fasheh handle_t *handle, struct ocfs2_path *path, 4132d0c7d708SMark Fasheh int index, u32 new_range, 4133d0c7d708SMark Fasheh struct ocfs2_alloc_context *meta_ac) 4134d0c7d708SMark Fasheh { 4135d0c7d708SMark Fasheh int ret, depth, credits = handle->h_buffer_credits; 4136d0c7d708SMark Fasheh struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data; 4137d0c7d708SMark Fasheh struct buffer_head *last_eb_bh = NULL; 4138d0c7d708SMark Fasheh struct ocfs2_extent_block *eb; 4139d0c7d708SMark Fasheh struct ocfs2_extent_list *rightmost_el, *el; 4140d0c7d708SMark Fasheh struct ocfs2_extent_rec split_rec; 4141d0c7d708SMark Fasheh struct ocfs2_extent_rec *rec; 4142d0c7d708SMark Fasheh struct ocfs2_insert_type insert; 4143d0c7d708SMark Fasheh 4144d0c7d708SMark Fasheh /* 4145d0c7d708SMark Fasheh * Setup the record to split before we grow the tree. 4146d0c7d708SMark Fasheh */ 4147d0c7d708SMark Fasheh el = path_leaf_el(path); 4148d0c7d708SMark Fasheh rec = &el->l_recs[index]; 4149d0c7d708SMark Fasheh ocfs2_make_right_split_rec(inode->i_sb, &split_rec, new_range, rec); 4150d0c7d708SMark Fasheh 4151d0c7d708SMark Fasheh depth = path->p_tree_depth; 4152d0c7d708SMark Fasheh if (depth > 0) { 4153d0c7d708SMark Fasheh ret = ocfs2_read_block(OCFS2_SB(inode->i_sb), 4154d0c7d708SMark Fasheh le64_to_cpu(di->i_last_eb_blk), 4155d0c7d708SMark Fasheh &last_eb_bh, OCFS2_BH_CACHED, inode); 4156d0c7d708SMark Fasheh if (ret < 0) { 4157d0c7d708SMark Fasheh mlog_errno(ret); 4158d0c7d708SMark Fasheh goto out; 4159d0c7d708SMark Fasheh } 4160d0c7d708SMark Fasheh 4161d0c7d708SMark Fasheh eb = (struct ocfs2_extent_block *) last_eb_bh->b_data; 4162d0c7d708SMark Fasheh rightmost_el = &eb->h_list; 4163d0c7d708SMark Fasheh } else 4164d0c7d708SMark Fasheh rightmost_el = path_leaf_el(path); 4165d0c7d708SMark Fasheh 4166d0c7d708SMark Fasheh credits += path->p_tree_depth + ocfs2_extend_meta_needed(di); 4167d0c7d708SMark Fasheh ret = ocfs2_extend_trans(handle, credits); 4168d0c7d708SMark Fasheh if (ret) { 4169d0c7d708SMark Fasheh mlog_errno(ret); 4170d0c7d708SMark Fasheh goto out; 4171d0c7d708SMark Fasheh } 4172d0c7d708SMark Fasheh 4173d0c7d708SMark Fasheh if (le16_to_cpu(rightmost_el->l_next_free_rec) == 4174d0c7d708SMark Fasheh le16_to_cpu(rightmost_el->l_count)) { 4175d0c7d708SMark Fasheh ret = ocfs2_grow_tree(inode, handle, di_bh, &depth, &last_eb_bh, 4176d0c7d708SMark Fasheh meta_ac); 4177d0c7d708SMark Fasheh if (ret) { 4178d0c7d708SMark Fasheh mlog_errno(ret); 4179d0c7d708SMark Fasheh goto out; 4180d0c7d708SMark Fasheh } 4181d0c7d708SMark Fasheh } 4182d0c7d708SMark Fasheh 4183d0c7d708SMark Fasheh memset(&insert, 0, sizeof(struct ocfs2_insert_type)); 4184d0c7d708SMark Fasheh insert.ins_appending = APPEND_NONE; 4185d0c7d708SMark Fasheh insert.ins_contig = CONTIG_NONE; 4186d0c7d708SMark Fasheh insert.ins_split = SPLIT_RIGHT; 4187d0c7d708SMark Fasheh insert.ins_tree_depth = depth; 4188d0c7d708SMark Fasheh 4189d0c7d708SMark Fasheh ret = ocfs2_do_insert_extent(inode, handle, di_bh, &split_rec, &insert); 4190d0c7d708SMark Fasheh if (ret) 4191d0c7d708SMark Fasheh mlog_errno(ret); 4192d0c7d708SMark Fasheh 4193d0c7d708SMark Fasheh out: 4194d0c7d708SMark Fasheh brelse(last_eb_bh); 4195d0c7d708SMark Fasheh return ret; 4196d0c7d708SMark Fasheh } 4197d0c7d708SMark Fasheh 4198d0c7d708SMark Fasheh static int ocfs2_truncate_rec(struct inode *inode, handle_t *handle, 4199d0c7d708SMark Fasheh struct ocfs2_path *path, int index, 4200d0c7d708SMark Fasheh struct ocfs2_cached_dealloc_ctxt *dealloc, 4201d0c7d708SMark Fasheh u32 cpos, u32 len) 4202d0c7d708SMark Fasheh { 4203d0c7d708SMark Fasheh int ret; 4204d0c7d708SMark Fasheh u32 left_cpos, rec_range, trunc_range; 4205d0c7d708SMark Fasheh int wants_rotate = 0, is_rightmost_tree_rec = 0; 4206d0c7d708SMark Fasheh struct super_block *sb = inode->i_sb; 4207d0c7d708SMark Fasheh struct ocfs2_path *left_path = NULL; 4208d0c7d708SMark Fasheh struct ocfs2_extent_list *el = path_leaf_el(path); 4209d0c7d708SMark Fasheh struct ocfs2_extent_rec *rec; 4210d0c7d708SMark Fasheh struct ocfs2_extent_block *eb; 4211d0c7d708SMark Fasheh 4212d0c7d708SMark Fasheh if (ocfs2_is_empty_extent(&el->l_recs[0]) && index > 0) { 4213d0c7d708SMark Fasheh ret = ocfs2_rotate_tree_left(inode, handle, path, dealloc); 4214d0c7d708SMark Fasheh if (ret) { 4215d0c7d708SMark Fasheh mlog_errno(ret); 4216d0c7d708SMark Fasheh goto out; 4217d0c7d708SMark Fasheh } 4218d0c7d708SMark Fasheh 4219d0c7d708SMark Fasheh index--; 4220d0c7d708SMark Fasheh } 4221d0c7d708SMark Fasheh 4222d0c7d708SMark Fasheh if (index == (le16_to_cpu(el->l_next_free_rec) - 1) && 4223d0c7d708SMark Fasheh path->p_tree_depth) { 4224d0c7d708SMark Fasheh /* 4225d0c7d708SMark Fasheh * Check whether this is the rightmost tree record. If 4226d0c7d708SMark Fasheh * we remove all of this record or part of its right 4227d0c7d708SMark Fasheh * edge then an update of the record lengths above it 4228d0c7d708SMark Fasheh * will be required. 4229d0c7d708SMark Fasheh */ 4230d0c7d708SMark Fasheh eb = (struct ocfs2_extent_block *)path_leaf_bh(path)->b_data; 4231d0c7d708SMark Fasheh if (eb->h_next_leaf_blk == 0) 4232d0c7d708SMark Fasheh is_rightmost_tree_rec = 1; 4233d0c7d708SMark Fasheh } 4234d0c7d708SMark Fasheh 4235d0c7d708SMark Fasheh rec = &el->l_recs[index]; 4236d0c7d708SMark Fasheh if (index == 0 && path->p_tree_depth && 4237d0c7d708SMark Fasheh le32_to_cpu(rec->e_cpos) == cpos) { 4238d0c7d708SMark Fasheh /* 4239d0c7d708SMark Fasheh * Changing the leftmost offset (via partial or whole 4240d0c7d708SMark Fasheh * record truncate) of an interior (or rightmost) path 4241d0c7d708SMark Fasheh * means we have to update the subtree that is formed 4242d0c7d708SMark Fasheh * by this leaf and the one to it's left. 4243d0c7d708SMark Fasheh * 4244d0c7d708SMark Fasheh * There are two cases we can skip: 4245d0c7d708SMark Fasheh * 1) Path is the leftmost one in our inode tree. 4246d0c7d708SMark Fasheh * 2) The leaf is rightmost and will be empty after 4247d0c7d708SMark Fasheh * we remove the extent record - the rotate code 4248d0c7d708SMark Fasheh * knows how to update the newly formed edge. 4249d0c7d708SMark Fasheh */ 4250d0c7d708SMark Fasheh 4251d0c7d708SMark Fasheh ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb, path, 4252d0c7d708SMark Fasheh &left_cpos); 4253d0c7d708SMark Fasheh if (ret) { 4254d0c7d708SMark Fasheh mlog_errno(ret); 4255d0c7d708SMark Fasheh goto out; 4256d0c7d708SMark Fasheh } 4257d0c7d708SMark Fasheh 4258d0c7d708SMark Fasheh if (left_cpos && le16_to_cpu(el->l_next_free_rec) > 1) { 4259d0c7d708SMark Fasheh left_path = ocfs2_new_path(path_root_bh(path), 4260d0c7d708SMark Fasheh path_root_el(path)); 4261d0c7d708SMark Fasheh if (!left_path) { 4262d0c7d708SMark Fasheh ret = -ENOMEM; 4263d0c7d708SMark Fasheh mlog_errno(ret); 4264d0c7d708SMark Fasheh goto out; 4265d0c7d708SMark Fasheh } 4266d0c7d708SMark Fasheh 4267d0c7d708SMark Fasheh ret = ocfs2_find_path(inode, left_path, left_cpos); 4268d0c7d708SMark Fasheh if (ret) { 4269d0c7d708SMark Fasheh mlog_errno(ret); 4270d0c7d708SMark Fasheh goto out; 4271d0c7d708SMark Fasheh } 4272d0c7d708SMark Fasheh } 4273d0c7d708SMark Fasheh } 4274d0c7d708SMark Fasheh 4275d0c7d708SMark Fasheh ret = ocfs2_extend_rotate_transaction(handle, 0, 4276d0c7d708SMark Fasheh handle->h_buffer_credits, 4277d0c7d708SMark Fasheh path); 4278d0c7d708SMark Fasheh if (ret) { 4279d0c7d708SMark Fasheh mlog_errno(ret); 4280d0c7d708SMark Fasheh goto out; 4281d0c7d708SMark Fasheh } 4282d0c7d708SMark Fasheh 4283d0c7d708SMark Fasheh ret = ocfs2_journal_access_path(inode, handle, path); 4284d0c7d708SMark Fasheh if (ret) { 4285d0c7d708SMark Fasheh mlog_errno(ret); 4286d0c7d708SMark Fasheh goto out; 4287d0c7d708SMark Fasheh } 4288d0c7d708SMark Fasheh 4289d0c7d708SMark Fasheh ret = ocfs2_journal_access_path(inode, handle, left_path); 4290d0c7d708SMark Fasheh if (ret) { 4291d0c7d708SMark Fasheh mlog_errno(ret); 4292d0c7d708SMark Fasheh goto out; 4293d0c7d708SMark Fasheh } 4294d0c7d708SMark Fasheh 4295d0c7d708SMark Fasheh rec_range = le32_to_cpu(rec->e_cpos) + ocfs2_rec_clusters(el, rec); 4296d0c7d708SMark Fasheh trunc_range = cpos + len; 4297d0c7d708SMark Fasheh 4298d0c7d708SMark Fasheh if (le32_to_cpu(rec->e_cpos) == cpos && rec_range == trunc_range) { 4299d0c7d708SMark Fasheh int next_free; 4300d0c7d708SMark Fasheh 4301d0c7d708SMark Fasheh memset(rec, 0, sizeof(*rec)); 4302d0c7d708SMark Fasheh ocfs2_cleanup_merge(el, index); 4303d0c7d708SMark Fasheh wants_rotate = 1; 4304d0c7d708SMark Fasheh 4305d0c7d708SMark Fasheh next_free = le16_to_cpu(el->l_next_free_rec); 4306d0c7d708SMark Fasheh if (is_rightmost_tree_rec && next_free > 1) { 4307d0c7d708SMark Fasheh /* 4308d0c7d708SMark Fasheh * We skip the edge update if this path will 4309d0c7d708SMark Fasheh * be deleted by the rotate code. 4310d0c7d708SMark Fasheh */ 4311d0c7d708SMark Fasheh rec = &el->l_recs[next_free - 1]; 4312d0c7d708SMark Fasheh ocfs2_adjust_rightmost_records(inode, handle, path, 4313d0c7d708SMark Fasheh rec); 4314d0c7d708SMark Fasheh } 4315d0c7d708SMark Fasheh } else if (le32_to_cpu(rec->e_cpos) == cpos) { 4316d0c7d708SMark Fasheh /* Remove leftmost portion of the record. */ 4317d0c7d708SMark Fasheh le32_add_cpu(&rec->e_cpos, len); 4318d0c7d708SMark Fasheh le64_add_cpu(&rec->e_blkno, ocfs2_clusters_to_blocks(sb, len)); 4319d0c7d708SMark Fasheh le16_add_cpu(&rec->e_leaf_clusters, -len); 4320d0c7d708SMark Fasheh } else if (rec_range == trunc_range) { 4321d0c7d708SMark Fasheh /* Remove rightmost portion of the record */ 4322d0c7d708SMark Fasheh le16_add_cpu(&rec->e_leaf_clusters, -len); 4323d0c7d708SMark Fasheh if (is_rightmost_tree_rec) 4324d0c7d708SMark Fasheh ocfs2_adjust_rightmost_records(inode, handle, path, rec); 4325d0c7d708SMark Fasheh } else { 4326d0c7d708SMark Fasheh /* Caller should have trapped this. */ 4327d0c7d708SMark Fasheh mlog(ML_ERROR, "Inode %llu: Invalid record truncate: (%u, %u) " 4328d0c7d708SMark Fasheh "(%u, %u)\n", (unsigned long long)OCFS2_I(inode)->ip_blkno, 4329d0c7d708SMark Fasheh le32_to_cpu(rec->e_cpos), 4330d0c7d708SMark Fasheh le16_to_cpu(rec->e_leaf_clusters), cpos, len); 4331d0c7d708SMark Fasheh BUG(); 4332d0c7d708SMark Fasheh } 4333d0c7d708SMark Fasheh 4334d0c7d708SMark Fasheh if (left_path) { 4335d0c7d708SMark Fasheh int subtree_index; 4336d0c7d708SMark Fasheh 4337d0c7d708SMark Fasheh subtree_index = ocfs2_find_subtree_root(inode, left_path, path); 4338d0c7d708SMark Fasheh ocfs2_complete_edge_insert(inode, handle, left_path, path, 4339d0c7d708SMark Fasheh subtree_index); 4340d0c7d708SMark Fasheh } 4341d0c7d708SMark Fasheh 4342d0c7d708SMark Fasheh ocfs2_journal_dirty(handle, path_leaf_bh(path)); 4343d0c7d708SMark Fasheh 4344d0c7d708SMark Fasheh ret = ocfs2_rotate_tree_left(inode, handle, path, dealloc); 4345d0c7d708SMark Fasheh if (ret) { 4346d0c7d708SMark Fasheh mlog_errno(ret); 4347d0c7d708SMark Fasheh goto out; 4348d0c7d708SMark Fasheh } 4349d0c7d708SMark Fasheh 4350d0c7d708SMark Fasheh out: 4351d0c7d708SMark Fasheh ocfs2_free_path(left_path); 4352d0c7d708SMark Fasheh return ret; 4353d0c7d708SMark Fasheh } 4354d0c7d708SMark Fasheh 4355063c4561SMark Fasheh int ocfs2_remove_extent(struct inode *inode, struct buffer_head *di_bh, 4356d0c7d708SMark Fasheh u32 cpos, u32 len, handle_t *handle, 4357d0c7d708SMark Fasheh struct ocfs2_alloc_context *meta_ac, 4358d0c7d708SMark Fasheh struct ocfs2_cached_dealloc_ctxt *dealloc) 4359d0c7d708SMark Fasheh { 4360d0c7d708SMark Fasheh int ret, index; 4361d0c7d708SMark Fasheh u32 rec_range, trunc_range; 4362d0c7d708SMark Fasheh struct ocfs2_extent_rec *rec; 4363d0c7d708SMark Fasheh struct ocfs2_extent_list *el; 4364d0c7d708SMark Fasheh struct ocfs2_path *path; 4365d0c7d708SMark Fasheh 4366d0c7d708SMark Fasheh ocfs2_extent_map_trunc(inode, 0); 4367d0c7d708SMark Fasheh 4368d0c7d708SMark Fasheh path = ocfs2_new_inode_path(di_bh); 4369d0c7d708SMark Fasheh if (!path) { 4370d0c7d708SMark Fasheh ret = -ENOMEM; 4371d0c7d708SMark Fasheh mlog_errno(ret); 4372d0c7d708SMark Fasheh goto out; 4373d0c7d708SMark Fasheh } 4374d0c7d708SMark Fasheh 4375d0c7d708SMark Fasheh ret = ocfs2_find_path(inode, path, cpos); 4376d0c7d708SMark Fasheh if (ret) { 4377d0c7d708SMark Fasheh mlog_errno(ret); 4378d0c7d708SMark Fasheh goto out; 4379d0c7d708SMark Fasheh } 4380d0c7d708SMark Fasheh 4381d0c7d708SMark Fasheh el = path_leaf_el(path); 4382d0c7d708SMark Fasheh index = ocfs2_search_extent_list(el, cpos); 4383d0c7d708SMark Fasheh if (index == -1 || index >= le16_to_cpu(el->l_next_free_rec)) { 4384d0c7d708SMark Fasheh ocfs2_error(inode->i_sb, 4385d0c7d708SMark Fasheh "Inode %llu has an extent at cpos %u which can no " 4386d0c7d708SMark Fasheh "longer be found.\n", 4387d0c7d708SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno, cpos); 4388d0c7d708SMark Fasheh ret = -EROFS; 4389d0c7d708SMark Fasheh goto out; 4390d0c7d708SMark Fasheh } 4391d0c7d708SMark Fasheh 4392d0c7d708SMark Fasheh /* 4393d0c7d708SMark Fasheh * We have 3 cases of extent removal: 4394d0c7d708SMark Fasheh * 1) Range covers the entire extent rec 4395d0c7d708SMark Fasheh * 2) Range begins or ends on one edge of the extent rec 4396d0c7d708SMark Fasheh * 3) Range is in the middle of the extent rec (no shared edges) 4397d0c7d708SMark Fasheh * 4398d0c7d708SMark Fasheh * For case 1 we remove the extent rec and left rotate to 4399d0c7d708SMark Fasheh * fill the hole. 4400d0c7d708SMark Fasheh * 4401d0c7d708SMark Fasheh * For case 2 we just shrink the existing extent rec, with a 4402d0c7d708SMark Fasheh * tree update if the shrinking edge is also the edge of an 4403d0c7d708SMark Fasheh * extent block. 4404d0c7d708SMark Fasheh * 4405d0c7d708SMark Fasheh * For case 3 we do a right split to turn the extent rec into 4406d0c7d708SMark Fasheh * something case 2 can handle. 4407d0c7d708SMark Fasheh */ 4408d0c7d708SMark Fasheh rec = &el->l_recs[index]; 4409d0c7d708SMark Fasheh rec_range = le32_to_cpu(rec->e_cpos) + ocfs2_rec_clusters(el, rec); 4410d0c7d708SMark Fasheh trunc_range = cpos + len; 4411d0c7d708SMark Fasheh 4412d0c7d708SMark Fasheh BUG_ON(cpos < le32_to_cpu(rec->e_cpos) || trunc_range > rec_range); 4413d0c7d708SMark Fasheh 4414d0c7d708SMark Fasheh mlog(0, "Inode %llu, remove (cpos %u, len %u). Existing index %d " 4415d0c7d708SMark Fasheh "(cpos %u, len %u)\n", 4416d0c7d708SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno, cpos, len, index, 4417d0c7d708SMark Fasheh le32_to_cpu(rec->e_cpos), ocfs2_rec_clusters(el, rec)); 4418d0c7d708SMark Fasheh 4419d0c7d708SMark Fasheh if (le32_to_cpu(rec->e_cpos) == cpos || rec_range == trunc_range) { 4420d0c7d708SMark Fasheh ret = ocfs2_truncate_rec(inode, handle, path, index, dealloc, 4421d0c7d708SMark Fasheh cpos, len); 4422d0c7d708SMark Fasheh if (ret) { 4423d0c7d708SMark Fasheh mlog_errno(ret); 4424d0c7d708SMark Fasheh goto out; 4425d0c7d708SMark Fasheh } 4426d0c7d708SMark Fasheh } else { 4427d0c7d708SMark Fasheh ret = ocfs2_split_tree(inode, di_bh, handle, path, index, 4428d0c7d708SMark Fasheh trunc_range, meta_ac); 4429d0c7d708SMark Fasheh if (ret) { 4430d0c7d708SMark Fasheh mlog_errno(ret); 4431d0c7d708SMark Fasheh goto out; 4432d0c7d708SMark Fasheh } 4433d0c7d708SMark Fasheh 4434d0c7d708SMark Fasheh /* 4435d0c7d708SMark Fasheh * The split could have manipulated the tree enough to 4436d0c7d708SMark Fasheh * move the record location, so we have to look for it again. 4437d0c7d708SMark Fasheh */ 4438d0c7d708SMark Fasheh ocfs2_reinit_path(path, 1); 4439d0c7d708SMark Fasheh 4440d0c7d708SMark Fasheh ret = ocfs2_find_path(inode, path, cpos); 4441d0c7d708SMark Fasheh if (ret) { 4442d0c7d708SMark Fasheh mlog_errno(ret); 4443d0c7d708SMark Fasheh goto out; 4444d0c7d708SMark Fasheh } 4445d0c7d708SMark Fasheh 4446d0c7d708SMark Fasheh el = path_leaf_el(path); 4447d0c7d708SMark Fasheh index = ocfs2_search_extent_list(el, cpos); 4448d0c7d708SMark Fasheh if (index == -1 || index >= le16_to_cpu(el->l_next_free_rec)) { 4449d0c7d708SMark Fasheh ocfs2_error(inode->i_sb, 4450d0c7d708SMark Fasheh "Inode %llu: split at cpos %u lost record.", 4451d0c7d708SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno, 4452d0c7d708SMark Fasheh cpos); 4453d0c7d708SMark Fasheh ret = -EROFS; 4454d0c7d708SMark Fasheh goto out; 4455d0c7d708SMark Fasheh } 4456d0c7d708SMark Fasheh 4457d0c7d708SMark Fasheh /* 4458d0c7d708SMark Fasheh * Double check our values here. If anything is fishy, 4459d0c7d708SMark Fasheh * it's easier to catch it at the top level. 4460d0c7d708SMark Fasheh */ 4461d0c7d708SMark Fasheh rec = &el->l_recs[index]; 4462d0c7d708SMark Fasheh rec_range = le32_to_cpu(rec->e_cpos) + 4463d0c7d708SMark Fasheh ocfs2_rec_clusters(el, rec); 4464d0c7d708SMark Fasheh if (rec_range != trunc_range) { 4465d0c7d708SMark Fasheh ocfs2_error(inode->i_sb, 4466d0c7d708SMark Fasheh "Inode %llu: error after split at cpos %u" 4467d0c7d708SMark Fasheh "trunc len %u, existing record is (%u,%u)", 4468d0c7d708SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno, 4469d0c7d708SMark Fasheh cpos, len, le32_to_cpu(rec->e_cpos), 4470d0c7d708SMark Fasheh ocfs2_rec_clusters(el, rec)); 4471d0c7d708SMark Fasheh ret = -EROFS; 4472d0c7d708SMark Fasheh goto out; 4473d0c7d708SMark Fasheh } 4474d0c7d708SMark Fasheh 4475d0c7d708SMark Fasheh ret = ocfs2_truncate_rec(inode, handle, path, index, dealloc, 4476d0c7d708SMark Fasheh cpos, len); 4477d0c7d708SMark Fasheh if (ret) { 4478d0c7d708SMark Fasheh mlog_errno(ret); 4479d0c7d708SMark Fasheh goto out; 4480d0c7d708SMark Fasheh } 4481d0c7d708SMark Fasheh } 4482d0c7d708SMark Fasheh 4483d0c7d708SMark Fasheh out: 4484d0c7d708SMark Fasheh ocfs2_free_path(path); 4485d0c7d708SMark Fasheh return ret; 4486d0c7d708SMark Fasheh } 4487d0c7d708SMark Fasheh 4488063c4561SMark Fasheh int ocfs2_truncate_log_needs_flush(struct ocfs2_super *osb) 4489ccd979bdSMark Fasheh { 4490ccd979bdSMark Fasheh struct buffer_head *tl_bh = osb->osb_tl_bh; 4491ccd979bdSMark Fasheh struct ocfs2_dinode *di; 4492ccd979bdSMark Fasheh struct ocfs2_truncate_log *tl; 4493ccd979bdSMark Fasheh 4494ccd979bdSMark Fasheh di = (struct ocfs2_dinode *) tl_bh->b_data; 4495ccd979bdSMark Fasheh tl = &di->id2.i_dealloc; 4496ccd979bdSMark Fasheh 4497ccd979bdSMark Fasheh mlog_bug_on_msg(le16_to_cpu(tl->tl_used) > le16_to_cpu(tl->tl_count), 4498ccd979bdSMark Fasheh "slot %d, invalid truncate log parameters: used = " 4499ccd979bdSMark Fasheh "%u, count = %u\n", osb->slot_num, 4500ccd979bdSMark Fasheh le16_to_cpu(tl->tl_used), le16_to_cpu(tl->tl_count)); 4501ccd979bdSMark Fasheh return le16_to_cpu(tl->tl_used) == le16_to_cpu(tl->tl_count); 4502ccd979bdSMark Fasheh } 4503ccd979bdSMark Fasheh 4504ccd979bdSMark Fasheh static int ocfs2_truncate_log_can_coalesce(struct ocfs2_truncate_log *tl, 4505ccd979bdSMark Fasheh unsigned int new_start) 4506ccd979bdSMark Fasheh { 4507ccd979bdSMark Fasheh unsigned int tail_index; 4508ccd979bdSMark Fasheh unsigned int current_tail; 4509ccd979bdSMark Fasheh 4510ccd979bdSMark Fasheh /* No records, nothing to coalesce */ 4511ccd979bdSMark Fasheh if (!le16_to_cpu(tl->tl_used)) 4512ccd979bdSMark Fasheh return 0; 4513ccd979bdSMark Fasheh 4514ccd979bdSMark Fasheh tail_index = le16_to_cpu(tl->tl_used) - 1; 4515ccd979bdSMark Fasheh current_tail = le32_to_cpu(tl->tl_recs[tail_index].t_start); 4516ccd979bdSMark Fasheh current_tail += le32_to_cpu(tl->tl_recs[tail_index].t_clusters); 4517ccd979bdSMark Fasheh 4518ccd979bdSMark Fasheh return current_tail == new_start; 4519ccd979bdSMark Fasheh } 4520ccd979bdSMark Fasheh 4521063c4561SMark Fasheh int ocfs2_truncate_log_append(struct ocfs2_super *osb, 45221fabe148SMark Fasheh handle_t *handle, 4523ccd979bdSMark Fasheh u64 start_blk, 4524ccd979bdSMark Fasheh unsigned int num_clusters) 4525ccd979bdSMark Fasheh { 4526ccd979bdSMark Fasheh int status, index; 4527ccd979bdSMark Fasheh unsigned int start_cluster, tl_count; 4528ccd979bdSMark Fasheh struct inode *tl_inode = osb->osb_tl_inode; 4529ccd979bdSMark Fasheh struct buffer_head *tl_bh = osb->osb_tl_bh; 4530ccd979bdSMark Fasheh struct ocfs2_dinode *di; 4531ccd979bdSMark Fasheh struct ocfs2_truncate_log *tl; 4532ccd979bdSMark Fasheh 4533b0697053SMark Fasheh mlog_entry("start_blk = %llu, num_clusters = %u\n", 4534b0697053SMark Fasheh (unsigned long long)start_blk, num_clusters); 4535ccd979bdSMark Fasheh 45361b1dcc1bSJes Sorensen BUG_ON(mutex_trylock(&tl_inode->i_mutex)); 4537ccd979bdSMark Fasheh 4538ccd979bdSMark Fasheh start_cluster = ocfs2_blocks_to_clusters(osb->sb, start_blk); 4539ccd979bdSMark Fasheh 4540ccd979bdSMark Fasheh di = (struct ocfs2_dinode *) tl_bh->b_data; 4541ccd979bdSMark Fasheh tl = &di->id2.i_dealloc; 4542ccd979bdSMark Fasheh if (!OCFS2_IS_VALID_DINODE(di)) { 4543ccd979bdSMark Fasheh OCFS2_RO_ON_INVALID_DINODE(osb->sb, di); 4544ccd979bdSMark Fasheh status = -EIO; 4545ccd979bdSMark Fasheh goto bail; 4546ccd979bdSMark Fasheh } 4547ccd979bdSMark Fasheh 4548ccd979bdSMark Fasheh tl_count = le16_to_cpu(tl->tl_count); 4549ccd979bdSMark Fasheh mlog_bug_on_msg(tl_count > ocfs2_truncate_recs_per_inode(osb->sb) || 4550ccd979bdSMark Fasheh tl_count == 0, 4551b0697053SMark Fasheh "Truncate record count on #%llu invalid " 4552b0697053SMark Fasheh "wanted %u, actual %u\n", 4553b0697053SMark Fasheh (unsigned long long)OCFS2_I(tl_inode)->ip_blkno, 4554ccd979bdSMark Fasheh ocfs2_truncate_recs_per_inode(osb->sb), 4555ccd979bdSMark Fasheh le16_to_cpu(tl->tl_count)); 4556ccd979bdSMark Fasheh 4557ccd979bdSMark Fasheh /* Caller should have known to flush before calling us. */ 4558ccd979bdSMark Fasheh index = le16_to_cpu(tl->tl_used); 4559ccd979bdSMark Fasheh if (index >= tl_count) { 4560ccd979bdSMark Fasheh status = -ENOSPC; 4561ccd979bdSMark Fasheh mlog_errno(status); 4562ccd979bdSMark Fasheh goto bail; 4563ccd979bdSMark Fasheh } 4564ccd979bdSMark Fasheh 4565ccd979bdSMark Fasheh status = ocfs2_journal_access(handle, tl_inode, tl_bh, 4566ccd979bdSMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 4567ccd979bdSMark Fasheh if (status < 0) { 4568ccd979bdSMark Fasheh mlog_errno(status); 4569ccd979bdSMark Fasheh goto bail; 4570ccd979bdSMark Fasheh } 4571ccd979bdSMark Fasheh 4572ccd979bdSMark Fasheh mlog(0, "Log truncate of %u clusters starting at cluster %u to " 4573b0697053SMark Fasheh "%llu (index = %d)\n", num_clusters, start_cluster, 4574b0697053SMark Fasheh (unsigned long long)OCFS2_I(tl_inode)->ip_blkno, index); 4575ccd979bdSMark Fasheh 4576ccd979bdSMark Fasheh if (ocfs2_truncate_log_can_coalesce(tl, start_cluster)) { 4577ccd979bdSMark Fasheh /* 4578ccd979bdSMark Fasheh * Move index back to the record we are coalescing with. 4579ccd979bdSMark Fasheh * ocfs2_truncate_log_can_coalesce() guarantees nonzero 4580ccd979bdSMark Fasheh */ 4581ccd979bdSMark Fasheh index--; 4582ccd979bdSMark Fasheh 4583ccd979bdSMark Fasheh num_clusters += le32_to_cpu(tl->tl_recs[index].t_clusters); 4584ccd979bdSMark Fasheh mlog(0, "Coalesce with index %u (start = %u, clusters = %u)\n", 4585ccd979bdSMark Fasheh index, le32_to_cpu(tl->tl_recs[index].t_start), 4586ccd979bdSMark Fasheh num_clusters); 4587ccd979bdSMark Fasheh } else { 4588ccd979bdSMark Fasheh tl->tl_recs[index].t_start = cpu_to_le32(start_cluster); 4589ccd979bdSMark Fasheh tl->tl_used = cpu_to_le16(index + 1); 4590ccd979bdSMark Fasheh } 4591ccd979bdSMark Fasheh tl->tl_recs[index].t_clusters = cpu_to_le32(num_clusters); 4592ccd979bdSMark Fasheh 4593ccd979bdSMark Fasheh status = ocfs2_journal_dirty(handle, tl_bh); 4594ccd979bdSMark Fasheh if (status < 0) { 4595ccd979bdSMark Fasheh mlog_errno(status); 4596ccd979bdSMark Fasheh goto bail; 4597ccd979bdSMark Fasheh } 4598ccd979bdSMark Fasheh 4599ccd979bdSMark Fasheh bail: 4600ccd979bdSMark Fasheh mlog_exit(status); 4601ccd979bdSMark Fasheh return status; 4602ccd979bdSMark Fasheh } 4603ccd979bdSMark Fasheh 4604ccd979bdSMark Fasheh static int ocfs2_replay_truncate_records(struct ocfs2_super *osb, 46051fabe148SMark Fasheh handle_t *handle, 4606ccd979bdSMark Fasheh struct inode *data_alloc_inode, 4607ccd979bdSMark Fasheh struct buffer_head *data_alloc_bh) 4608ccd979bdSMark Fasheh { 4609ccd979bdSMark Fasheh int status = 0; 4610ccd979bdSMark Fasheh int i; 4611ccd979bdSMark Fasheh unsigned int num_clusters; 4612ccd979bdSMark Fasheh u64 start_blk; 4613ccd979bdSMark Fasheh struct ocfs2_truncate_rec rec; 4614ccd979bdSMark Fasheh struct ocfs2_dinode *di; 4615ccd979bdSMark Fasheh struct ocfs2_truncate_log *tl; 4616ccd979bdSMark Fasheh struct inode *tl_inode = osb->osb_tl_inode; 4617ccd979bdSMark Fasheh struct buffer_head *tl_bh = osb->osb_tl_bh; 4618ccd979bdSMark Fasheh 4619ccd979bdSMark Fasheh mlog_entry_void(); 4620ccd979bdSMark Fasheh 4621ccd979bdSMark Fasheh di = (struct ocfs2_dinode *) tl_bh->b_data; 4622ccd979bdSMark Fasheh tl = &di->id2.i_dealloc; 4623ccd979bdSMark Fasheh i = le16_to_cpu(tl->tl_used) - 1; 4624ccd979bdSMark Fasheh while (i >= 0) { 4625ccd979bdSMark Fasheh /* Caller has given us at least enough credits to 4626ccd979bdSMark Fasheh * update the truncate log dinode */ 4627ccd979bdSMark Fasheh status = ocfs2_journal_access(handle, tl_inode, tl_bh, 4628ccd979bdSMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 4629ccd979bdSMark Fasheh if (status < 0) { 4630ccd979bdSMark Fasheh mlog_errno(status); 4631ccd979bdSMark Fasheh goto bail; 4632ccd979bdSMark Fasheh } 4633ccd979bdSMark Fasheh 4634ccd979bdSMark Fasheh tl->tl_used = cpu_to_le16(i); 4635ccd979bdSMark Fasheh 4636ccd979bdSMark Fasheh status = ocfs2_journal_dirty(handle, tl_bh); 4637ccd979bdSMark Fasheh if (status < 0) { 4638ccd979bdSMark Fasheh mlog_errno(status); 4639ccd979bdSMark Fasheh goto bail; 4640ccd979bdSMark Fasheh } 4641ccd979bdSMark Fasheh 4642ccd979bdSMark Fasheh /* TODO: Perhaps we can calculate the bulk of the 4643ccd979bdSMark Fasheh * credits up front rather than extending like 4644ccd979bdSMark Fasheh * this. */ 4645ccd979bdSMark Fasheh status = ocfs2_extend_trans(handle, 4646ccd979bdSMark Fasheh OCFS2_TRUNCATE_LOG_FLUSH_ONE_REC); 4647ccd979bdSMark Fasheh if (status < 0) { 4648ccd979bdSMark Fasheh mlog_errno(status); 4649ccd979bdSMark Fasheh goto bail; 4650ccd979bdSMark Fasheh } 4651ccd979bdSMark Fasheh 4652ccd979bdSMark Fasheh rec = tl->tl_recs[i]; 4653ccd979bdSMark Fasheh start_blk = ocfs2_clusters_to_blocks(data_alloc_inode->i_sb, 4654ccd979bdSMark Fasheh le32_to_cpu(rec.t_start)); 4655ccd979bdSMark Fasheh num_clusters = le32_to_cpu(rec.t_clusters); 4656ccd979bdSMark Fasheh 4657ccd979bdSMark Fasheh /* if start_blk is not set, we ignore the record as 4658ccd979bdSMark Fasheh * invalid. */ 4659ccd979bdSMark Fasheh if (start_blk) { 4660ccd979bdSMark Fasheh mlog(0, "free record %d, start = %u, clusters = %u\n", 4661ccd979bdSMark Fasheh i, le32_to_cpu(rec.t_start), num_clusters); 4662ccd979bdSMark Fasheh 4663ccd979bdSMark Fasheh status = ocfs2_free_clusters(handle, data_alloc_inode, 4664ccd979bdSMark Fasheh data_alloc_bh, start_blk, 4665ccd979bdSMark Fasheh num_clusters); 4666ccd979bdSMark Fasheh if (status < 0) { 4667ccd979bdSMark Fasheh mlog_errno(status); 4668ccd979bdSMark Fasheh goto bail; 4669ccd979bdSMark Fasheh } 4670ccd979bdSMark Fasheh } 4671ccd979bdSMark Fasheh i--; 4672ccd979bdSMark Fasheh } 4673ccd979bdSMark Fasheh 4674ccd979bdSMark Fasheh bail: 4675ccd979bdSMark Fasheh mlog_exit(status); 4676ccd979bdSMark Fasheh return status; 4677ccd979bdSMark Fasheh } 4678ccd979bdSMark Fasheh 46791b1dcc1bSJes Sorensen /* Expects you to already be holding tl_inode->i_mutex */ 4680063c4561SMark Fasheh int __ocfs2_flush_truncate_log(struct ocfs2_super *osb) 4681ccd979bdSMark Fasheh { 4682ccd979bdSMark Fasheh int status; 4683ccd979bdSMark Fasheh unsigned int num_to_flush; 46841fabe148SMark Fasheh handle_t *handle; 4685ccd979bdSMark Fasheh struct inode *tl_inode = osb->osb_tl_inode; 4686ccd979bdSMark Fasheh struct inode *data_alloc_inode = NULL; 4687ccd979bdSMark Fasheh struct buffer_head *tl_bh = osb->osb_tl_bh; 4688ccd979bdSMark Fasheh struct buffer_head *data_alloc_bh = NULL; 4689ccd979bdSMark Fasheh struct ocfs2_dinode *di; 4690ccd979bdSMark Fasheh struct ocfs2_truncate_log *tl; 4691ccd979bdSMark Fasheh 4692ccd979bdSMark Fasheh mlog_entry_void(); 4693ccd979bdSMark Fasheh 46941b1dcc1bSJes Sorensen BUG_ON(mutex_trylock(&tl_inode->i_mutex)); 4695ccd979bdSMark Fasheh 4696ccd979bdSMark Fasheh di = (struct ocfs2_dinode *) tl_bh->b_data; 4697ccd979bdSMark Fasheh tl = &di->id2.i_dealloc; 4698ccd979bdSMark Fasheh if (!OCFS2_IS_VALID_DINODE(di)) { 4699ccd979bdSMark Fasheh OCFS2_RO_ON_INVALID_DINODE(osb->sb, di); 4700ccd979bdSMark Fasheh status = -EIO; 4701e08dc8b9SMark Fasheh goto out; 4702ccd979bdSMark Fasheh } 4703ccd979bdSMark Fasheh 4704ccd979bdSMark Fasheh num_to_flush = le16_to_cpu(tl->tl_used); 4705b0697053SMark Fasheh mlog(0, "Flush %u records from truncate log #%llu\n", 4706b0697053SMark Fasheh num_to_flush, (unsigned long long)OCFS2_I(tl_inode)->ip_blkno); 4707ccd979bdSMark Fasheh if (!num_to_flush) { 4708ccd979bdSMark Fasheh status = 0; 4709e08dc8b9SMark Fasheh goto out; 4710ccd979bdSMark Fasheh } 4711ccd979bdSMark Fasheh 4712ccd979bdSMark Fasheh data_alloc_inode = ocfs2_get_system_file_inode(osb, 4713ccd979bdSMark Fasheh GLOBAL_BITMAP_SYSTEM_INODE, 4714ccd979bdSMark Fasheh OCFS2_INVALID_SLOT); 4715ccd979bdSMark Fasheh if (!data_alloc_inode) { 4716ccd979bdSMark Fasheh status = -EINVAL; 4717ccd979bdSMark Fasheh mlog(ML_ERROR, "Could not get bitmap inode!\n"); 4718e08dc8b9SMark Fasheh goto out; 4719ccd979bdSMark Fasheh } 4720ccd979bdSMark Fasheh 4721e08dc8b9SMark Fasheh mutex_lock(&data_alloc_inode->i_mutex); 4722e08dc8b9SMark Fasheh 47234bcec184SMark Fasheh status = ocfs2_meta_lock(data_alloc_inode, &data_alloc_bh, 1); 4724ccd979bdSMark Fasheh if (status < 0) { 4725ccd979bdSMark Fasheh mlog_errno(status); 4726e08dc8b9SMark Fasheh goto out_mutex; 4727ccd979bdSMark Fasheh } 4728ccd979bdSMark Fasheh 472965eff9ccSMark Fasheh handle = ocfs2_start_trans(osb, OCFS2_TRUNCATE_LOG_UPDATE); 4730ccd979bdSMark Fasheh if (IS_ERR(handle)) { 4731ccd979bdSMark Fasheh status = PTR_ERR(handle); 4732ccd979bdSMark Fasheh mlog_errno(status); 4733e08dc8b9SMark Fasheh goto out_unlock; 4734ccd979bdSMark Fasheh } 4735ccd979bdSMark Fasheh 4736ccd979bdSMark Fasheh status = ocfs2_replay_truncate_records(osb, handle, data_alloc_inode, 4737ccd979bdSMark Fasheh data_alloc_bh); 4738e08dc8b9SMark Fasheh if (status < 0) 4739ccd979bdSMark Fasheh mlog_errno(status); 4740ccd979bdSMark Fasheh 474102dc1af4SMark Fasheh ocfs2_commit_trans(osb, handle); 4742ccd979bdSMark Fasheh 4743e08dc8b9SMark Fasheh out_unlock: 4744e08dc8b9SMark Fasheh brelse(data_alloc_bh); 4745e08dc8b9SMark Fasheh ocfs2_meta_unlock(data_alloc_inode, 1); 4746e08dc8b9SMark Fasheh 4747e08dc8b9SMark Fasheh out_mutex: 4748e08dc8b9SMark Fasheh mutex_unlock(&data_alloc_inode->i_mutex); 4749ccd979bdSMark Fasheh iput(data_alloc_inode); 4750ccd979bdSMark Fasheh 4751e08dc8b9SMark Fasheh out: 4752ccd979bdSMark Fasheh mlog_exit(status); 4753ccd979bdSMark Fasheh return status; 4754ccd979bdSMark Fasheh } 4755ccd979bdSMark Fasheh 4756ccd979bdSMark Fasheh int ocfs2_flush_truncate_log(struct ocfs2_super *osb) 4757ccd979bdSMark Fasheh { 4758ccd979bdSMark Fasheh int status; 4759ccd979bdSMark Fasheh struct inode *tl_inode = osb->osb_tl_inode; 4760ccd979bdSMark Fasheh 47611b1dcc1bSJes Sorensen mutex_lock(&tl_inode->i_mutex); 4762ccd979bdSMark Fasheh status = __ocfs2_flush_truncate_log(osb); 47631b1dcc1bSJes Sorensen mutex_unlock(&tl_inode->i_mutex); 4764ccd979bdSMark Fasheh 4765ccd979bdSMark Fasheh return status; 4766ccd979bdSMark Fasheh } 4767ccd979bdSMark Fasheh 4768c4028958SDavid Howells static void ocfs2_truncate_log_worker(struct work_struct *work) 4769ccd979bdSMark Fasheh { 4770ccd979bdSMark Fasheh int status; 4771c4028958SDavid Howells struct ocfs2_super *osb = 4772c4028958SDavid Howells container_of(work, struct ocfs2_super, 4773c4028958SDavid Howells osb_truncate_log_wq.work); 4774ccd979bdSMark Fasheh 4775ccd979bdSMark Fasheh mlog_entry_void(); 4776ccd979bdSMark Fasheh 4777ccd979bdSMark Fasheh status = ocfs2_flush_truncate_log(osb); 4778ccd979bdSMark Fasheh if (status < 0) 4779ccd979bdSMark Fasheh mlog_errno(status); 4780ccd979bdSMark Fasheh 4781ccd979bdSMark Fasheh mlog_exit(status); 4782ccd979bdSMark Fasheh } 4783ccd979bdSMark Fasheh 4784ccd979bdSMark Fasheh #define OCFS2_TRUNCATE_LOG_FLUSH_INTERVAL (2 * HZ) 4785ccd979bdSMark Fasheh void ocfs2_schedule_truncate_log_flush(struct ocfs2_super *osb, 4786ccd979bdSMark Fasheh int cancel) 4787ccd979bdSMark Fasheh { 4788ccd979bdSMark Fasheh if (osb->osb_tl_inode) { 4789ccd979bdSMark Fasheh /* We want to push off log flushes while truncates are 4790ccd979bdSMark Fasheh * still running. */ 4791ccd979bdSMark Fasheh if (cancel) 4792ccd979bdSMark Fasheh cancel_delayed_work(&osb->osb_truncate_log_wq); 4793ccd979bdSMark Fasheh 4794ccd979bdSMark Fasheh queue_delayed_work(ocfs2_wq, &osb->osb_truncate_log_wq, 4795ccd979bdSMark Fasheh OCFS2_TRUNCATE_LOG_FLUSH_INTERVAL); 4796ccd979bdSMark Fasheh } 4797ccd979bdSMark Fasheh } 4798ccd979bdSMark Fasheh 4799ccd979bdSMark Fasheh static int ocfs2_get_truncate_log_info(struct ocfs2_super *osb, 4800ccd979bdSMark Fasheh int slot_num, 4801ccd979bdSMark Fasheh struct inode **tl_inode, 4802ccd979bdSMark Fasheh struct buffer_head **tl_bh) 4803ccd979bdSMark Fasheh { 4804ccd979bdSMark Fasheh int status; 4805ccd979bdSMark Fasheh struct inode *inode = NULL; 4806ccd979bdSMark Fasheh struct buffer_head *bh = NULL; 4807ccd979bdSMark Fasheh 4808ccd979bdSMark Fasheh inode = ocfs2_get_system_file_inode(osb, 4809ccd979bdSMark Fasheh TRUNCATE_LOG_SYSTEM_INODE, 4810ccd979bdSMark Fasheh slot_num); 4811ccd979bdSMark Fasheh if (!inode) { 4812ccd979bdSMark Fasheh status = -EINVAL; 4813ccd979bdSMark Fasheh mlog(ML_ERROR, "Could not get load truncate log inode!\n"); 4814ccd979bdSMark Fasheh goto bail; 4815ccd979bdSMark Fasheh } 4816ccd979bdSMark Fasheh 4817ccd979bdSMark Fasheh status = ocfs2_read_block(osb, OCFS2_I(inode)->ip_blkno, &bh, 4818ccd979bdSMark Fasheh OCFS2_BH_CACHED, inode); 4819ccd979bdSMark Fasheh if (status < 0) { 4820ccd979bdSMark Fasheh iput(inode); 4821ccd979bdSMark Fasheh mlog_errno(status); 4822ccd979bdSMark Fasheh goto bail; 4823ccd979bdSMark Fasheh } 4824ccd979bdSMark Fasheh 4825ccd979bdSMark Fasheh *tl_inode = inode; 4826ccd979bdSMark Fasheh *tl_bh = bh; 4827ccd979bdSMark Fasheh bail: 4828ccd979bdSMark Fasheh mlog_exit(status); 4829ccd979bdSMark Fasheh return status; 4830ccd979bdSMark Fasheh } 4831ccd979bdSMark Fasheh 4832ccd979bdSMark Fasheh /* called during the 1st stage of node recovery. we stamp a clean 4833ccd979bdSMark Fasheh * truncate log and pass back a copy for processing later. if the 4834ccd979bdSMark Fasheh * truncate log does not require processing, a *tl_copy is set to 4835ccd979bdSMark Fasheh * NULL. */ 4836ccd979bdSMark Fasheh int ocfs2_begin_truncate_log_recovery(struct ocfs2_super *osb, 4837ccd979bdSMark Fasheh int slot_num, 4838ccd979bdSMark Fasheh struct ocfs2_dinode **tl_copy) 4839ccd979bdSMark Fasheh { 4840ccd979bdSMark Fasheh int status; 4841ccd979bdSMark Fasheh struct inode *tl_inode = NULL; 4842ccd979bdSMark Fasheh struct buffer_head *tl_bh = NULL; 4843ccd979bdSMark Fasheh struct ocfs2_dinode *di; 4844ccd979bdSMark Fasheh struct ocfs2_truncate_log *tl; 4845ccd979bdSMark Fasheh 4846ccd979bdSMark Fasheh *tl_copy = NULL; 4847ccd979bdSMark Fasheh 4848ccd979bdSMark Fasheh mlog(0, "recover truncate log from slot %d\n", slot_num); 4849ccd979bdSMark Fasheh 4850ccd979bdSMark Fasheh status = ocfs2_get_truncate_log_info(osb, slot_num, &tl_inode, &tl_bh); 4851ccd979bdSMark Fasheh if (status < 0) { 4852ccd979bdSMark Fasheh mlog_errno(status); 4853ccd979bdSMark Fasheh goto bail; 4854ccd979bdSMark Fasheh } 4855ccd979bdSMark Fasheh 4856ccd979bdSMark Fasheh di = (struct ocfs2_dinode *) tl_bh->b_data; 4857ccd979bdSMark Fasheh tl = &di->id2.i_dealloc; 4858ccd979bdSMark Fasheh if (!OCFS2_IS_VALID_DINODE(di)) { 4859ccd979bdSMark Fasheh OCFS2_RO_ON_INVALID_DINODE(tl_inode->i_sb, di); 4860ccd979bdSMark Fasheh status = -EIO; 4861ccd979bdSMark Fasheh goto bail; 4862ccd979bdSMark Fasheh } 4863ccd979bdSMark Fasheh 4864ccd979bdSMark Fasheh if (le16_to_cpu(tl->tl_used)) { 4865ccd979bdSMark Fasheh mlog(0, "We'll have %u logs to recover\n", 4866ccd979bdSMark Fasheh le16_to_cpu(tl->tl_used)); 4867ccd979bdSMark Fasheh 4868ccd979bdSMark Fasheh *tl_copy = kmalloc(tl_bh->b_size, GFP_KERNEL); 4869ccd979bdSMark Fasheh if (!(*tl_copy)) { 4870ccd979bdSMark Fasheh status = -ENOMEM; 4871ccd979bdSMark Fasheh mlog_errno(status); 4872ccd979bdSMark Fasheh goto bail; 4873ccd979bdSMark Fasheh } 4874ccd979bdSMark Fasheh 4875ccd979bdSMark Fasheh /* Assuming the write-out below goes well, this copy 4876ccd979bdSMark Fasheh * will be passed back to recovery for processing. */ 4877ccd979bdSMark Fasheh memcpy(*tl_copy, tl_bh->b_data, tl_bh->b_size); 4878ccd979bdSMark Fasheh 4879ccd979bdSMark Fasheh /* All we need to do to clear the truncate log is set 4880ccd979bdSMark Fasheh * tl_used. */ 4881ccd979bdSMark Fasheh tl->tl_used = 0; 4882ccd979bdSMark Fasheh 4883ccd979bdSMark Fasheh status = ocfs2_write_block(osb, tl_bh, tl_inode); 4884ccd979bdSMark Fasheh if (status < 0) { 4885ccd979bdSMark Fasheh mlog_errno(status); 4886ccd979bdSMark Fasheh goto bail; 4887ccd979bdSMark Fasheh } 4888ccd979bdSMark Fasheh } 4889ccd979bdSMark Fasheh 4890ccd979bdSMark Fasheh bail: 4891ccd979bdSMark Fasheh if (tl_inode) 4892ccd979bdSMark Fasheh iput(tl_inode); 4893ccd979bdSMark Fasheh if (tl_bh) 4894ccd979bdSMark Fasheh brelse(tl_bh); 4895ccd979bdSMark Fasheh 4896ccd979bdSMark Fasheh if (status < 0 && (*tl_copy)) { 4897ccd979bdSMark Fasheh kfree(*tl_copy); 4898ccd979bdSMark Fasheh *tl_copy = NULL; 4899ccd979bdSMark Fasheh } 4900ccd979bdSMark Fasheh 4901ccd979bdSMark Fasheh mlog_exit(status); 4902ccd979bdSMark Fasheh return status; 4903ccd979bdSMark Fasheh } 4904ccd979bdSMark Fasheh 4905ccd979bdSMark Fasheh int ocfs2_complete_truncate_log_recovery(struct ocfs2_super *osb, 4906ccd979bdSMark Fasheh struct ocfs2_dinode *tl_copy) 4907ccd979bdSMark Fasheh { 4908ccd979bdSMark Fasheh int status = 0; 4909ccd979bdSMark Fasheh int i; 4910ccd979bdSMark Fasheh unsigned int clusters, num_recs, start_cluster; 4911ccd979bdSMark Fasheh u64 start_blk; 49121fabe148SMark Fasheh handle_t *handle; 4913ccd979bdSMark Fasheh struct inode *tl_inode = osb->osb_tl_inode; 4914ccd979bdSMark Fasheh struct ocfs2_truncate_log *tl; 4915ccd979bdSMark Fasheh 4916ccd979bdSMark Fasheh mlog_entry_void(); 4917ccd979bdSMark Fasheh 4918ccd979bdSMark Fasheh if (OCFS2_I(tl_inode)->ip_blkno == le64_to_cpu(tl_copy->i_blkno)) { 4919ccd979bdSMark Fasheh mlog(ML_ERROR, "Asked to recover my own truncate log!\n"); 4920ccd979bdSMark Fasheh return -EINVAL; 4921ccd979bdSMark Fasheh } 4922ccd979bdSMark Fasheh 4923ccd979bdSMark Fasheh tl = &tl_copy->id2.i_dealloc; 4924ccd979bdSMark Fasheh num_recs = le16_to_cpu(tl->tl_used); 4925b0697053SMark Fasheh mlog(0, "cleanup %u records from %llu\n", num_recs, 49261ca1a111SMark Fasheh (unsigned long long)le64_to_cpu(tl_copy->i_blkno)); 4927ccd979bdSMark Fasheh 49281b1dcc1bSJes Sorensen mutex_lock(&tl_inode->i_mutex); 4929ccd979bdSMark Fasheh for(i = 0; i < num_recs; i++) { 4930ccd979bdSMark Fasheh if (ocfs2_truncate_log_needs_flush(osb)) { 4931ccd979bdSMark Fasheh status = __ocfs2_flush_truncate_log(osb); 4932ccd979bdSMark Fasheh if (status < 0) { 4933ccd979bdSMark Fasheh mlog_errno(status); 4934ccd979bdSMark Fasheh goto bail_up; 4935ccd979bdSMark Fasheh } 4936ccd979bdSMark Fasheh } 4937ccd979bdSMark Fasheh 493865eff9ccSMark Fasheh handle = ocfs2_start_trans(osb, OCFS2_TRUNCATE_LOG_UPDATE); 4939ccd979bdSMark Fasheh if (IS_ERR(handle)) { 4940ccd979bdSMark Fasheh status = PTR_ERR(handle); 4941ccd979bdSMark Fasheh mlog_errno(status); 4942ccd979bdSMark Fasheh goto bail_up; 4943ccd979bdSMark Fasheh } 4944ccd979bdSMark Fasheh 4945ccd979bdSMark Fasheh clusters = le32_to_cpu(tl->tl_recs[i].t_clusters); 4946ccd979bdSMark Fasheh start_cluster = le32_to_cpu(tl->tl_recs[i].t_start); 4947ccd979bdSMark Fasheh start_blk = ocfs2_clusters_to_blocks(osb->sb, start_cluster); 4948ccd979bdSMark Fasheh 4949ccd979bdSMark Fasheh status = ocfs2_truncate_log_append(osb, handle, 4950ccd979bdSMark Fasheh start_blk, clusters); 495102dc1af4SMark Fasheh ocfs2_commit_trans(osb, handle); 4952ccd979bdSMark Fasheh if (status < 0) { 4953ccd979bdSMark Fasheh mlog_errno(status); 4954ccd979bdSMark Fasheh goto bail_up; 4955ccd979bdSMark Fasheh } 4956ccd979bdSMark Fasheh } 4957ccd979bdSMark Fasheh 4958ccd979bdSMark Fasheh bail_up: 49591b1dcc1bSJes Sorensen mutex_unlock(&tl_inode->i_mutex); 4960ccd979bdSMark Fasheh 4961ccd979bdSMark Fasheh mlog_exit(status); 4962ccd979bdSMark Fasheh return status; 4963ccd979bdSMark Fasheh } 4964ccd979bdSMark Fasheh 4965ccd979bdSMark Fasheh void ocfs2_truncate_log_shutdown(struct ocfs2_super *osb) 4966ccd979bdSMark Fasheh { 4967ccd979bdSMark Fasheh int status; 4968ccd979bdSMark Fasheh struct inode *tl_inode = osb->osb_tl_inode; 4969ccd979bdSMark Fasheh 4970ccd979bdSMark Fasheh mlog_entry_void(); 4971ccd979bdSMark Fasheh 4972ccd979bdSMark Fasheh if (tl_inode) { 4973ccd979bdSMark Fasheh cancel_delayed_work(&osb->osb_truncate_log_wq); 4974ccd979bdSMark Fasheh flush_workqueue(ocfs2_wq); 4975ccd979bdSMark Fasheh 4976ccd979bdSMark Fasheh status = ocfs2_flush_truncate_log(osb); 4977ccd979bdSMark Fasheh if (status < 0) 4978ccd979bdSMark Fasheh mlog_errno(status); 4979ccd979bdSMark Fasheh 4980ccd979bdSMark Fasheh brelse(osb->osb_tl_bh); 4981ccd979bdSMark Fasheh iput(osb->osb_tl_inode); 4982ccd979bdSMark Fasheh } 4983ccd979bdSMark Fasheh 4984ccd979bdSMark Fasheh mlog_exit_void(); 4985ccd979bdSMark Fasheh } 4986ccd979bdSMark Fasheh 4987ccd979bdSMark Fasheh int ocfs2_truncate_log_init(struct ocfs2_super *osb) 4988ccd979bdSMark Fasheh { 4989ccd979bdSMark Fasheh int status; 4990ccd979bdSMark Fasheh struct inode *tl_inode = NULL; 4991ccd979bdSMark Fasheh struct buffer_head *tl_bh = NULL; 4992ccd979bdSMark Fasheh 4993ccd979bdSMark Fasheh mlog_entry_void(); 4994ccd979bdSMark Fasheh 4995ccd979bdSMark Fasheh status = ocfs2_get_truncate_log_info(osb, 4996ccd979bdSMark Fasheh osb->slot_num, 4997ccd979bdSMark Fasheh &tl_inode, 4998ccd979bdSMark Fasheh &tl_bh); 4999ccd979bdSMark Fasheh if (status < 0) 5000ccd979bdSMark Fasheh mlog_errno(status); 5001ccd979bdSMark Fasheh 5002ccd979bdSMark Fasheh /* ocfs2_truncate_log_shutdown keys on the existence of 5003ccd979bdSMark Fasheh * osb->osb_tl_inode so we don't set any of the osb variables 5004ccd979bdSMark Fasheh * until we're sure all is well. */ 5005c4028958SDavid Howells INIT_DELAYED_WORK(&osb->osb_truncate_log_wq, 5006c4028958SDavid Howells ocfs2_truncate_log_worker); 5007ccd979bdSMark Fasheh osb->osb_tl_bh = tl_bh; 5008ccd979bdSMark Fasheh osb->osb_tl_inode = tl_inode; 5009ccd979bdSMark Fasheh 5010ccd979bdSMark Fasheh mlog_exit(status); 5011ccd979bdSMark Fasheh return status; 5012ccd979bdSMark Fasheh } 5013ccd979bdSMark Fasheh 50142b604351SMark Fasheh /* 50152b604351SMark Fasheh * Delayed de-allocation of suballocator blocks. 50162b604351SMark Fasheh * 50172b604351SMark Fasheh * Some sets of block de-allocations might involve multiple suballocator inodes. 50182b604351SMark Fasheh * 50192b604351SMark Fasheh * The locking for this can get extremely complicated, especially when 50202b604351SMark Fasheh * the suballocator inodes to delete from aren't known until deep 50212b604351SMark Fasheh * within an unrelated codepath. 50222b604351SMark Fasheh * 50232b604351SMark Fasheh * ocfs2_extent_block structures are a good example of this - an inode 50242b604351SMark Fasheh * btree could have been grown by any number of nodes each allocating 50252b604351SMark Fasheh * out of their own suballoc inode. 50262b604351SMark Fasheh * 50272b604351SMark Fasheh * These structures allow the delay of block de-allocation until a 50282b604351SMark Fasheh * later time, when locking of multiple cluster inodes won't cause 50292b604351SMark Fasheh * deadlock. 50302b604351SMark Fasheh */ 50312b604351SMark Fasheh 50322b604351SMark Fasheh /* 50332b604351SMark Fasheh * Describes a single block free from a suballocator 50342b604351SMark Fasheh */ 50352b604351SMark Fasheh struct ocfs2_cached_block_free { 50362b604351SMark Fasheh struct ocfs2_cached_block_free *free_next; 50372b604351SMark Fasheh u64 free_blk; 50382b604351SMark Fasheh unsigned int free_bit; 50392b604351SMark Fasheh }; 50402b604351SMark Fasheh 50412b604351SMark Fasheh struct ocfs2_per_slot_free_list { 50422b604351SMark Fasheh struct ocfs2_per_slot_free_list *f_next_suballocator; 50432b604351SMark Fasheh int f_inode_type; 50442b604351SMark Fasheh int f_slot; 50452b604351SMark Fasheh struct ocfs2_cached_block_free *f_first; 50462b604351SMark Fasheh }; 50472b604351SMark Fasheh 50482b604351SMark Fasheh static int ocfs2_free_cached_items(struct ocfs2_super *osb, 50492b604351SMark Fasheh int sysfile_type, 50502b604351SMark Fasheh int slot, 50512b604351SMark Fasheh struct ocfs2_cached_block_free *head) 50522b604351SMark Fasheh { 50532b604351SMark Fasheh int ret; 50542b604351SMark Fasheh u64 bg_blkno; 50552b604351SMark Fasheh handle_t *handle; 50562b604351SMark Fasheh struct inode *inode; 50572b604351SMark Fasheh struct buffer_head *di_bh = NULL; 50582b604351SMark Fasheh struct ocfs2_cached_block_free *tmp; 50592b604351SMark Fasheh 50602b604351SMark Fasheh inode = ocfs2_get_system_file_inode(osb, sysfile_type, slot); 50612b604351SMark Fasheh if (!inode) { 50622b604351SMark Fasheh ret = -EINVAL; 50632b604351SMark Fasheh mlog_errno(ret); 50642b604351SMark Fasheh goto out; 50652b604351SMark Fasheh } 50662b604351SMark Fasheh 50672b604351SMark Fasheh mutex_lock(&inode->i_mutex); 50682b604351SMark Fasheh 50692b604351SMark Fasheh ret = ocfs2_meta_lock(inode, &di_bh, 1); 50702b604351SMark Fasheh if (ret) { 50712b604351SMark Fasheh mlog_errno(ret); 50722b604351SMark Fasheh goto out_mutex; 50732b604351SMark Fasheh } 50742b604351SMark Fasheh 50752b604351SMark Fasheh handle = ocfs2_start_trans(osb, OCFS2_SUBALLOC_FREE); 50762b604351SMark Fasheh if (IS_ERR(handle)) { 50772b604351SMark Fasheh ret = PTR_ERR(handle); 50782b604351SMark Fasheh mlog_errno(ret); 50792b604351SMark Fasheh goto out_unlock; 50802b604351SMark Fasheh } 50812b604351SMark Fasheh 50822b604351SMark Fasheh while (head) { 50832b604351SMark Fasheh bg_blkno = ocfs2_which_suballoc_group(head->free_blk, 50842b604351SMark Fasheh head->free_bit); 50852b604351SMark Fasheh mlog(0, "Free bit: (bit %u, blkno %llu)\n", 50862b604351SMark Fasheh head->free_bit, (unsigned long long)head->free_blk); 50872b604351SMark Fasheh 50882b604351SMark Fasheh ret = ocfs2_free_suballoc_bits(handle, inode, di_bh, 50892b604351SMark Fasheh head->free_bit, bg_blkno, 1); 50902b604351SMark Fasheh if (ret) { 50912b604351SMark Fasheh mlog_errno(ret); 50922b604351SMark Fasheh goto out_journal; 50932b604351SMark Fasheh } 50942b604351SMark Fasheh 50952b604351SMark Fasheh ret = ocfs2_extend_trans(handle, OCFS2_SUBALLOC_FREE); 50962b604351SMark Fasheh if (ret) { 50972b604351SMark Fasheh mlog_errno(ret); 50982b604351SMark Fasheh goto out_journal; 50992b604351SMark Fasheh } 51002b604351SMark Fasheh 51012b604351SMark Fasheh tmp = head; 51022b604351SMark Fasheh head = head->free_next; 51032b604351SMark Fasheh kfree(tmp); 51042b604351SMark Fasheh } 51052b604351SMark Fasheh 51062b604351SMark Fasheh out_journal: 51072b604351SMark Fasheh ocfs2_commit_trans(osb, handle); 51082b604351SMark Fasheh 51092b604351SMark Fasheh out_unlock: 51102b604351SMark Fasheh ocfs2_meta_unlock(inode, 1); 51112b604351SMark Fasheh brelse(di_bh); 51122b604351SMark Fasheh out_mutex: 51132b604351SMark Fasheh mutex_unlock(&inode->i_mutex); 51142b604351SMark Fasheh iput(inode); 51152b604351SMark Fasheh out: 51162b604351SMark Fasheh while(head) { 51172b604351SMark Fasheh /* Premature exit may have left some dangling items. */ 51182b604351SMark Fasheh tmp = head; 51192b604351SMark Fasheh head = head->free_next; 51202b604351SMark Fasheh kfree(tmp); 51212b604351SMark Fasheh } 51222b604351SMark Fasheh 51232b604351SMark Fasheh return ret; 51242b604351SMark Fasheh } 51252b604351SMark Fasheh 51262b604351SMark Fasheh int ocfs2_run_deallocs(struct ocfs2_super *osb, 51272b604351SMark Fasheh struct ocfs2_cached_dealloc_ctxt *ctxt) 51282b604351SMark Fasheh { 51292b604351SMark Fasheh int ret = 0, ret2; 51302b604351SMark Fasheh struct ocfs2_per_slot_free_list *fl; 51312b604351SMark Fasheh 51322b604351SMark Fasheh if (!ctxt) 51332b604351SMark Fasheh return 0; 51342b604351SMark Fasheh 51352b604351SMark Fasheh while (ctxt->c_first_suballocator) { 51362b604351SMark Fasheh fl = ctxt->c_first_suballocator; 51372b604351SMark Fasheh 51382b604351SMark Fasheh if (fl->f_first) { 51392b604351SMark Fasheh mlog(0, "Free items: (type %u, slot %d)\n", 51402b604351SMark Fasheh fl->f_inode_type, fl->f_slot); 51412b604351SMark Fasheh ret2 = ocfs2_free_cached_items(osb, fl->f_inode_type, 51422b604351SMark Fasheh fl->f_slot, fl->f_first); 51432b604351SMark Fasheh if (ret2) 51442b604351SMark Fasheh mlog_errno(ret2); 51452b604351SMark Fasheh if (!ret) 51462b604351SMark Fasheh ret = ret2; 51472b604351SMark Fasheh } 51482b604351SMark Fasheh 51492b604351SMark Fasheh ctxt->c_first_suballocator = fl->f_next_suballocator; 51502b604351SMark Fasheh kfree(fl); 51512b604351SMark Fasheh } 51522b604351SMark Fasheh 51532b604351SMark Fasheh return ret; 51542b604351SMark Fasheh } 51552b604351SMark Fasheh 51562b604351SMark Fasheh static struct ocfs2_per_slot_free_list * 51572b604351SMark Fasheh ocfs2_find_per_slot_free_list(int type, 51582b604351SMark Fasheh int slot, 51592b604351SMark Fasheh struct ocfs2_cached_dealloc_ctxt *ctxt) 51602b604351SMark Fasheh { 51612b604351SMark Fasheh struct ocfs2_per_slot_free_list *fl = ctxt->c_first_suballocator; 51622b604351SMark Fasheh 51632b604351SMark Fasheh while (fl) { 51642b604351SMark Fasheh if (fl->f_inode_type == type && fl->f_slot == slot) 51652b604351SMark Fasheh return fl; 51662b604351SMark Fasheh 51672b604351SMark Fasheh fl = fl->f_next_suballocator; 51682b604351SMark Fasheh } 51692b604351SMark Fasheh 51702b604351SMark Fasheh fl = kmalloc(sizeof(*fl), GFP_NOFS); 51712b604351SMark Fasheh if (fl) { 51722b604351SMark Fasheh fl->f_inode_type = type; 51732b604351SMark Fasheh fl->f_slot = slot; 51742b604351SMark Fasheh fl->f_first = NULL; 51752b604351SMark Fasheh fl->f_next_suballocator = ctxt->c_first_suballocator; 51762b604351SMark Fasheh 51772b604351SMark Fasheh ctxt->c_first_suballocator = fl; 51782b604351SMark Fasheh } 51792b604351SMark Fasheh return fl; 51802b604351SMark Fasheh } 51812b604351SMark Fasheh 51822b604351SMark Fasheh static int ocfs2_cache_block_dealloc(struct ocfs2_cached_dealloc_ctxt *ctxt, 51832b604351SMark Fasheh int type, int slot, u64 blkno, 51842b604351SMark Fasheh unsigned int bit) 51852b604351SMark Fasheh { 51862b604351SMark Fasheh int ret; 51872b604351SMark Fasheh struct ocfs2_per_slot_free_list *fl; 51882b604351SMark Fasheh struct ocfs2_cached_block_free *item; 51892b604351SMark Fasheh 51902b604351SMark Fasheh fl = ocfs2_find_per_slot_free_list(type, slot, ctxt); 51912b604351SMark Fasheh if (fl == NULL) { 51922b604351SMark Fasheh ret = -ENOMEM; 51932b604351SMark Fasheh mlog_errno(ret); 51942b604351SMark Fasheh goto out; 51952b604351SMark Fasheh } 51962b604351SMark Fasheh 51972b604351SMark Fasheh item = kmalloc(sizeof(*item), GFP_NOFS); 51982b604351SMark Fasheh if (item == NULL) { 51992b604351SMark Fasheh ret = -ENOMEM; 52002b604351SMark Fasheh mlog_errno(ret); 52012b604351SMark Fasheh goto out; 52022b604351SMark Fasheh } 52032b604351SMark Fasheh 52042b604351SMark Fasheh mlog(0, "Insert: (type %d, slot %u, bit %u, blk %llu)\n", 52052b604351SMark Fasheh type, slot, bit, (unsigned long long)blkno); 52062b604351SMark Fasheh 52072b604351SMark Fasheh item->free_blk = blkno; 52082b604351SMark Fasheh item->free_bit = bit; 52092b604351SMark Fasheh item->free_next = fl->f_first; 52102b604351SMark Fasheh 52112b604351SMark Fasheh fl->f_first = item; 52122b604351SMark Fasheh 52132b604351SMark Fasheh ret = 0; 52142b604351SMark Fasheh out: 52152b604351SMark Fasheh return ret; 52162b604351SMark Fasheh } 52172b604351SMark Fasheh 521859a5e416SMark Fasheh static int ocfs2_cache_extent_block_free(struct ocfs2_cached_dealloc_ctxt *ctxt, 521959a5e416SMark Fasheh struct ocfs2_extent_block *eb) 522059a5e416SMark Fasheh { 522159a5e416SMark Fasheh return ocfs2_cache_block_dealloc(ctxt, EXTENT_ALLOC_SYSTEM_INODE, 522259a5e416SMark Fasheh le16_to_cpu(eb->h_suballoc_slot), 522359a5e416SMark Fasheh le64_to_cpu(eb->h_blkno), 522459a5e416SMark Fasheh le16_to_cpu(eb->h_suballoc_bit)); 522559a5e416SMark Fasheh } 522659a5e416SMark Fasheh 5227ccd979bdSMark Fasheh /* This function will figure out whether the currently last extent 5228ccd979bdSMark Fasheh * block will be deleted, and if it will, what the new last extent 5229ccd979bdSMark Fasheh * block will be so we can update his h_next_leaf_blk field, as well 5230ccd979bdSMark Fasheh * as the dinodes i_last_eb_blk */ 5231dcd0538fSMark Fasheh static int ocfs2_find_new_last_ext_blk(struct inode *inode, 52323a0782d0SMark Fasheh unsigned int clusters_to_del, 5233dcd0538fSMark Fasheh struct ocfs2_path *path, 5234ccd979bdSMark Fasheh struct buffer_head **new_last_eb) 5235ccd979bdSMark Fasheh { 52363a0782d0SMark Fasheh int next_free, ret = 0; 5237dcd0538fSMark Fasheh u32 cpos; 52383a0782d0SMark Fasheh struct ocfs2_extent_rec *rec; 5239ccd979bdSMark Fasheh struct ocfs2_extent_block *eb; 5240ccd979bdSMark Fasheh struct ocfs2_extent_list *el; 5241ccd979bdSMark Fasheh struct buffer_head *bh = NULL; 5242ccd979bdSMark Fasheh 5243ccd979bdSMark Fasheh *new_last_eb = NULL; 5244ccd979bdSMark Fasheh 5245ccd979bdSMark Fasheh /* we have no tree, so of course, no last_eb. */ 5246dcd0538fSMark Fasheh if (!path->p_tree_depth) 5247dcd0538fSMark Fasheh goto out; 5248ccd979bdSMark Fasheh 5249ccd979bdSMark Fasheh /* trunc to zero special case - this makes tree_depth = 0 5250ccd979bdSMark Fasheh * regardless of what it is. */ 52513a0782d0SMark Fasheh if (OCFS2_I(inode)->ip_clusters == clusters_to_del) 5252dcd0538fSMark Fasheh goto out; 5253ccd979bdSMark Fasheh 5254dcd0538fSMark Fasheh el = path_leaf_el(path); 5255ccd979bdSMark Fasheh BUG_ON(!el->l_next_free_rec); 5256ccd979bdSMark Fasheh 52573a0782d0SMark Fasheh /* 52583a0782d0SMark Fasheh * Make sure that this extent list will actually be empty 52593a0782d0SMark Fasheh * after we clear away the data. We can shortcut out if 52603a0782d0SMark Fasheh * there's more than one non-empty extent in the 52613a0782d0SMark Fasheh * list. Otherwise, a check of the remaining extent is 52623a0782d0SMark Fasheh * necessary. 52633a0782d0SMark Fasheh */ 52643a0782d0SMark Fasheh next_free = le16_to_cpu(el->l_next_free_rec); 52653a0782d0SMark Fasheh rec = NULL; 5266dcd0538fSMark Fasheh if (ocfs2_is_empty_extent(&el->l_recs[0])) { 52673a0782d0SMark Fasheh if (next_free > 2) 5268dcd0538fSMark Fasheh goto out; 52693a0782d0SMark Fasheh 52703a0782d0SMark Fasheh /* We may have a valid extent in index 1, check it. */ 52713a0782d0SMark Fasheh if (next_free == 2) 52723a0782d0SMark Fasheh rec = &el->l_recs[1]; 52733a0782d0SMark Fasheh 52743a0782d0SMark Fasheh /* 52753a0782d0SMark Fasheh * Fall through - no more nonempty extents, so we want 52763a0782d0SMark Fasheh * to delete this leaf. 52773a0782d0SMark Fasheh */ 52783a0782d0SMark Fasheh } else { 52793a0782d0SMark Fasheh if (next_free > 1) 5280dcd0538fSMark Fasheh goto out; 5281ccd979bdSMark Fasheh 52823a0782d0SMark Fasheh rec = &el->l_recs[0]; 52833a0782d0SMark Fasheh } 52843a0782d0SMark Fasheh 52853a0782d0SMark Fasheh if (rec) { 52863a0782d0SMark Fasheh /* 52873a0782d0SMark Fasheh * Check it we'll only be trimming off the end of this 52883a0782d0SMark Fasheh * cluster. 52893a0782d0SMark Fasheh */ 5290e48edee2SMark Fasheh if (le16_to_cpu(rec->e_leaf_clusters) > clusters_to_del) 52913a0782d0SMark Fasheh goto out; 52923a0782d0SMark Fasheh } 52933a0782d0SMark Fasheh 5294dcd0538fSMark Fasheh ret = ocfs2_find_cpos_for_left_leaf(inode->i_sb, path, &cpos); 5295dcd0538fSMark Fasheh if (ret) { 5296dcd0538fSMark Fasheh mlog_errno(ret); 5297dcd0538fSMark Fasheh goto out; 5298ccd979bdSMark Fasheh } 5299ccd979bdSMark Fasheh 5300dcd0538fSMark Fasheh ret = ocfs2_find_leaf(inode, path_root_el(path), cpos, &bh); 5301dcd0538fSMark Fasheh if (ret) { 5302dcd0538fSMark Fasheh mlog_errno(ret); 5303dcd0538fSMark Fasheh goto out; 5304ccd979bdSMark Fasheh } 5305dcd0538fSMark Fasheh 5306ccd979bdSMark Fasheh eb = (struct ocfs2_extent_block *) bh->b_data; 5307ccd979bdSMark Fasheh el = &eb->h_list; 5308ccd979bdSMark Fasheh if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) { 5309ccd979bdSMark Fasheh OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb); 5310dcd0538fSMark Fasheh ret = -EROFS; 5311dcd0538fSMark Fasheh goto out; 5312ccd979bdSMark Fasheh } 5313ccd979bdSMark Fasheh 5314ccd979bdSMark Fasheh *new_last_eb = bh; 5315ccd979bdSMark Fasheh get_bh(*new_last_eb); 5316dcd0538fSMark Fasheh mlog(0, "returning block %llu, (cpos: %u)\n", 5317dcd0538fSMark Fasheh (unsigned long long)le64_to_cpu(eb->h_blkno), cpos); 5318dcd0538fSMark Fasheh out: 5319ccd979bdSMark Fasheh brelse(bh); 5320ccd979bdSMark Fasheh 5321dcd0538fSMark Fasheh return ret; 5322ccd979bdSMark Fasheh } 5323ccd979bdSMark Fasheh 53243a0782d0SMark Fasheh /* 53253a0782d0SMark Fasheh * Trim some clusters off the rightmost edge of a tree. Only called 53263a0782d0SMark Fasheh * during truncate. 53273a0782d0SMark Fasheh * 53283a0782d0SMark Fasheh * The caller needs to: 53293a0782d0SMark Fasheh * - start journaling of each path component. 53303a0782d0SMark Fasheh * - compute and fully set up any new last ext block 53313a0782d0SMark Fasheh */ 53323a0782d0SMark Fasheh static int ocfs2_trim_tree(struct inode *inode, struct ocfs2_path *path, 53333a0782d0SMark Fasheh handle_t *handle, struct ocfs2_truncate_context *tc, 53343a0782d0SMark Fasheh u32 clusters_to_del, u64 *delete_start) 53353a0782d0SMark Fasheh { 53363a0782d0SMark Fasheh int ret, i, index = path->p_tree_depth; 53373a0782d0SMark Fasheh u32 new_edge = 0; 53383a0782d0SMark Fasheh u64 deleted_eb = 0; 53393a0782d0SMark Fasheh struct buffer_head *bh; 53403a0782d0SMark Fasheh struct ocfs2_extent_list *el; 53413a0782d0SMark Fasheh struct ocfs2_extent_rec *rec; 53423a0782d0SMark Fasheh 53433a0782d0SMark Fasheh *delete_start = 0; 53443a0782d0SMark Fasheh 53453a0782d0SMark Fasheh while (index >= 0) { 53463a0782d0SMark Fasheh bh = path->p_node[index].bh; 53473a0782d0SMark Fasheh el = path->p_node[index].el; 53483a0782d0SMark Fasheh 53493a0782d0SMark Fasheh mlog(0, "traveling tree (index = %d, block = %llu)\n", 53503a0782d0SMark Fasheh index, (unsigned long long)bh->b_blocknr); 53513a0782d0SMark Fasheh 53523a0782d0SMark Fasheh BUG_ON(le16_to_cpu(el->l_next_free_rec) == 0); 53533a0782d0SMark Fasheh 53543a0782d0SMark Fasheh if (index != 53553a0782d0SMark Fasheh (path->p_tree_depth - le16_to_cpu(el->l_tree_depth))) { 53563a0782d0SMark Fasheh ocfs2_error(inode->i_sb, 53573a0782d0SMark Fasheh "Inode %lu has invalid ext. block %llu", 53583a0782d0SMark Fasheh inode->i_ino, 53593a0782d0SMark Fasheh (unsigned long long)bh->b_blocknr); 53603a0782d0SMark Fasheh ret = -EROFS; 53613a0782d0SMark Fasheh goto out; 53623a0782d0SMark Fasheh } 53633a0782d0SMark Fasheh 53643a0782d0SMark Fasheh find_tail_record: 53653a0782d0SMark Fasheh i = le16_to_cpu(el->l_next_free_rec) - 1; 53663a0782d0SMark Fasheh rec = &el->l_recs[i]; 53673a0782d0SMark Fasheh 53683a0782d0SMark Fasheh mlog(0, "Extent list before: record %d: (%u, %u, %llu), " 53693a0782d0SMark Fasheh "next = %u\n", i, le32_to_cpu(rec->e_cpos), 5370e48edee2SMark Fasheh ocfs2_rec_clusters(el, rec), 53713a0782d0SMark Fasheh (unsigned long long)le64_to_cpu(rec->e_blkno), 53723a0782d0SMark Fasheh le16_to_cpu(el->l_next_free_rec)); 53733a0782d0SMark Fasheh 5374e48edee2SMark Fasheh BUG_ON(ocfs2_rec_clusters(el, rec) < clusters_to_del); 53753a0782d0SMark Fasheh 53763a0782d0SMark Fasheh if (le16_to_cpu(el->l_tree_depth) == 0) { 53773a0782d0SMark Fasheh /* 53783a0782d0SMark Fasheh * If the leaf block contains a single empty 53793a0782d0SMark Fasheh * extent and no records, we can just remove 53803a0782d0SMark Fasheh * the block. 53813a0782d0SMark Fasheh */ 53823a0782d0SMark Fasheh if (i == 0 && ocfs2_is_empty_extent(rec)) { 53833a0782d0SMark Fasheh memset(rec, 0, 53843a0782d0SMark Fasheh sizeof(struct ocfs2_extent_rec)); 53853a0782d0SMark Fasheh el->l_next_free_rec = cpu_to_le16(0); 53863a0782d0SMark Fasheh 53873a0782d0SMark Fasheh goto delete; 53883a0782d0SMark Fasheh } 53893a0782d0SMark Fasheh 53903a0782d0SMark Fasheh /* 53913a0782d0SMark Fasheh * Remove any empty extents by shifting things 53923a0782d0SMark Fasheh * left. That should make life much easier on 53933a0782d0SMark Fasheh * the code below. This condition is rare 53943a0782d0SMark Fasheh * enough that we shouldn't see a performance 53953a0782d0SMark Fasheh * hit. 53963a0782d0SMark Fasheh */ 53973a0782d0SMark Fasheh if (ocfs2_is_empty_extent(&el->l_recs[0])) { 53983a0782d0SMark Fasheh le16_add_cpu(&el->l_next_free_rec, -1); 53993a0782d0SMark Fasheh 54003a0782d0SMark Fasheh for(i = 0; 54013a0782d0SMark Fasheh i < le16_to_cpu(el->l_next_free_rec); i++) 54023a0782d0SMark Fasheh el->l_recs[i] = el->l_recs[i + 1]; 54033a0782d0SMark Fasheh 54043a0782d0SMark Fasheh memset(&el->l_recs[i], 0, 54053a0782d0SMark Fasheh sizeof(struct ocfs2_extent_rec)); 54063a0782d0SMark Fasheh 54073a0782d0SMark Fasheh /* 54083a0782d0SMark Fasheh * We've modified our extent list. The 54093a0782d0SMark Fasheh * simplest way to handle this change 54103a0782d0SMark Fasheh * is to being the search from the 54113a0782d0SMark Fasheh * start again. 54123a0782d0SMark Fasheh */ 54133a0782d0SMark Fasheh goto find_tail_record; 54143a0782d0SMark Fasheh } 54153a0782d0SMark Fasheh 5416e48edee2SMark Fasheh le16_add_cpu(&rec->e_leaf_clusters, -clusters_to_del); 54173a0782d0SMark Fasheh 54183a0782d0SMark Fasheh /* 54193a0782d0SMark Fasheh * We'll use "new_edge" on our way back up the 54203a0782d0SMark Fasheh * tree to know what our rightmost cpos is. 54213a0782d0SMark Fasheh */ 5422e48edee2SMark Fasheh new_edge = le16_to_cpu(rec->e_leaf_clusters); 54233a0782d0SMark Fasheh new_edge += le32_to_cpu(rec->e_cpos); 54243a0782d0SMark Fasheh 54253a0782d0SMark Fasheh /* 54263a0782d0SMark Fasheh * The caller will use this to delete data blocks. 54273a0782d0SMark Fasheh */ 54283a0782d0SMark Fasheh *delete_start = le64_to_cpu(rec->e_blkno) 54293a0782d0SMark Fasheh + ocfs2_clusters_to_blocks(inode->i_sb, 5430e48edee2SMark Fasheh le16_to_cpu(rec->e_leaf_clusters)); 54313a0782d0SMark Fasheh 54323a0782d0SMark Fasheh /* 54333a0782d0SMark Fasheh * If it's now empty, remove this record. 54343a0782d0SMark Fasheh */ 5435e48edee2SMark Fasheh if (le16_to_cpu(rec->e_leaf_clusters) == 0) { 54363a0782d0SMark Fasheh memset(rec, 0, 54373a0782d0SMark Fasheh sizeof(struct ocfs2_extent_rec)); 54383a0782d0SMark Fasheh le16_add_cpu(&el->l_next_free_rec, -1); 54393a0782d0SMark Fasheh } 54403a0782d0SMark Fasheh } else { 54413a0782d0SMark Fasheh if (le64_to_cpu(rec->e_blkno) == deleted_eb) { 54423a0782d0SMark Fasheh memset(rec, 0, 54433a0782d0SMark Fasheh sizeof(struct ocfs2_extent_rec)); 54443a0782d0SMark Fasheh le16_add_cpu(&el->l_next_free_rec, -1); 54453a0782d0SMark Fasheh 54463a0782d0SMark Fasheh goto delete; 54473a0782d0SMark Fasheh } 54483a0782d0SMark Fasheh 54493a0782d0SMark Fasheh /* Can this actually happen? */ 54503a0782d0SMark Fasheh if (le16_to_cpu(el->l_next_free_rec) == 0) 54513a0782d0SMark Fasheh goto delete; 54523a0782d0SMark Fasheh 54533a0782d0SMark Fasheh /* 54543a0782d0SMark Fasheh * We never actually deleted any clusters 54553a0782d0SMark Fasheh * because our leaf was empty. There's no 54563a0782d0SMark Fasheh * reason to adjust the rightmost edge then. 54573a0782d0SMark Fasheh */ 54583a0782d0SMark Fasheh if (new_edge == 0) 54593a0782d0SMark Fasheh goto delete; 54603a0782d0SMark Fasheh 5461e48edee2SMark Fasheh rec->e_int_clusters = cpu_to_le32(new_edge); 5462e48edee2SMark Fasheh le32_add_cpu(&rec->e_int_clusters, 54633a0782d0SMark Fasheh -le32_to_cpu(rec->e_cpos)); 54643a0782d0SMark Fasheh 54653a0782d0SMark Fasheh /* 54663a0782d0SMark Fasheh * A deleted child record should have been 54673a0782d0SMark Fasheh * caught above. 54683a0782d0SMark Fasheh */ 5469e48edee2SMark Fasheh BUG_ON(le32_to_cpu(rec->e_int_clusters) == 0); 54703a0782d0SMark Fasheh } 54713a0782d0SMark Fasheh 54723a0782d0SMark Fasheh delete: 54733a0782d0SMark Fasheh ret = ocfs2_journal_dirty(handle, bh); 54743a0782d0SMark Fasheh if (ret) { 54753a0782d0SMark Fasheh mlog_errno(ret); 54763a0782d0SMark Fasheh goto out; 54773a0782d0SMark Fasheh } 54783a0782d0SMark Fasheh 54793a0782d0SMark Fasheh mlog(0, "extent list container %llu, after: record %d: " 54803a0782d0SMark Fasheh "(%u, %u, %llu), next = %u.\n", 54813a0782d0SMark Fasheh (unsigned long long)bh->b_blocknr, i, 5482e48edee2SMark Fasheh le32_to_cpu(rec->e_cpos), ocfs2_rec_clusters(el, rec), 54833a0782d0SMark Fasheh (unsigned long long)le64_to_cpu(rec->e_blkno), 54843a0782d0SMark Fasheh le16_to_cpu(el->l_next_free_rec)); 54853a0782d0SMark Fasheh 54863a0782d0SMark Fasheh /* 54873a0782d0SMark Fasheh * We must be careful to only attempt delete of an 54883a0782d0SMark Fasheh * extent block (and not the root inode block). 54893a0782d0SMark Fasheh */ 54903a0782d0SMark Fasheh if (index > 0 && le16_to_cpu(el->l_next_free_rec) == 0) { 54913a0782d0SMark Fasheh struct ocfs2_extent_block *eb = 54923a0782d0SMark Fasheh (struct ocfs2_extent_block *)bh->b_data; 54933a0782d0SMark Fasheh 54943a0782d0SMark Fasheh /* 54953a0782d0SMark Fasheh * Save this for use when processing the 54963a0782d0SMark Fasheh * parent block. 54973a0782d0SMark Fasheh */ 54983a0782d0SMark Fasheh deleted_eb = le64_to_cpu(eb->h_blkno); 54993a0782d0SMark Fasheh 55003a0782d0SMark Fasheh mlog(0, "deleting this extent block.\n"); 55013a0782d0SMark Fasheh 55023a0782d0SMark Fasheh ocfs2_remove_from_cache(inode, bh); 55033a0782d0SMark Fasheh 5504e48edee2SMark Fasheh BUG_ON(ocfs2_rec_clusters(el, &el->l_recs[0])); 55053a0782d0SMark Fasheh BUG_ON(le32_to_cpu(el->l_recs[0].e_cpos)); 55063a0782d0SMark Fasheh BUG_ON(le64_to_cpu(el->l_recs[0].e_blkno)); 55073a0782d0SMark Fasheh 550859a5e416SMark Fasheh ret = ocfs2_cache_extent_block_free(&tc->tc_dealloc, eb); 55093a0782d0SMark Fasheh /* An error here is not fatal. */ 55103a0782d0SMark Fasheh if (ret < 0) 55113a0782d0SMark Fasheh mlog_errno(ret); 55123a0782d0SMark Fasheh } else { 55133a0782d0SMark Fasheh deleted_eb = 0; 55143a0782d0SMark Fasheh } 55153a0782d0SMark Fasheh 55163a0782d0SMark Fasheh index--; 55173a0782d0SMark Fasheh } 55183a0782d0SMark Fasheh 55193a0782d0SMark Fasheh ret = 0; 55203a0782d0SMark Fasheh out: 55213a0782d0SMark Fasheh return ret; 55223a0782d0SMark Fasheh } 55233a0782d0SMark Fasheh 5524ccd979bdSMark Fasheh static int ocfs2_do_truncate(struct ocfs2_super *osb, 5525ccd979bdSMark Fasheh unsigned int clusters_to_del, 5526ccd979bdSMark Fasheh struct inode *inode, 5527ccd979bdSMark Fasheh struct buffer_head *fe_bh, 55281fabe148SMark Fasheh handle_t *handle, 5529dcd0538fSMark Fasheh struct ocfs2_truncate_context *tc, 5530dcd0538fSMark Fasheh struct ocfs2_path *path) 5531ccd979bdSMark Fasheh { 55323a0782d0SMark Fasheh int status; 5533ccd979bdSMark Fasheh struct ocfs2_dinode *fe; 5534ccd979bdSMark Fasheh struct ocfs2_extent_block *last_eb = NULL; 5535ccd979bdSMark Fasheh struct ocfs2_extent_list *el; 5536ccd979bdSMark Fasheh struct buffer_head *last_eb_bh = NULL; 5537ccd979bdSMark Fasheh u64 delete_blk = 0; 5538ccd979bdSMark Fasheh 5539ccd979bdSMark Fasheh fe = (struct ocfs2_dinode *) fe_bh->b_data; 5540ccd979bdSMark Fasheh 55413a0782d0SMark Fasheh status = ocfs2_find_new_last_ext_blk(inode, clusters_to_del, 5542dcd0538fSMark Fasheh path, &last_eb_bh); 5543ccd979bdSMark Fasheh if (status < 0) { 5544ccd979bdSMark Fasheh mlog_errno(status); 5545ccd979bdSMark Fasheh goto bail; 5546ccd979bdSMark Fasheh } 5547ccd979bdSMark Fasheh 5548dcd0538fSMark Fasheh /* 5549dcd0538fSMark Fasheh * Each component will be touched, so we might as well journal 5550dcd0538fSMark Fasheh * here to avoid having to handle errors later. 5551dcd0538fSMark Fasheh */ 55523a0782d0SMark Fasheh status = ocfs2_journal_access_path(inode, handle, path); 5553ccd979bdSMark Fasheh if (status < 0) { 5554ccd979bdSMark Fasheh mlog_errno(status); 5555ccd979bdSMark Fasheh goto bail; 5556ccd979bdSMark Fasheh } 5557dcd0538fSMark Fasheh 5558dcd0538fSMark Fasheh if (last_eb_bh) { 5559dcd0538fSMark Fasheh status = ocfs2_journal_access(handle, inode, last_eb_bh, 5560dcd0538fSMark Fasheh OCFS2_JOURNAL_ACCESS_WRITE); 5561dcd0538fSMark Fasheh if (status < 0) { 5562dcd0538fSMark Fasheh mlog_errno(status); 5563dcd0538fSMark Fasheh goto bail; 5564dcd0538fSMark Fasheh } 5565dcd0538fSMark Fasheh 5566dcd0538fSMark Fasheh last_eb = (struct ocfs2_extent_block *) last_eb_bh->b_data; 5567dcd0538fSMark Fasheh } 5568dcd0538fSMark Fasheh 5569ccd979bdSMark Fasheh el = &(fe->id2.i_list); 5570ccd979bdSMark Fasheh 5571dcd0538fSMark Fasheh /* 5572dcd0538fSMark Fasheh * Lower levels depend on this never happening, but it's best 5573dcd0538fSMark Fasheh * to check it up here before changing the tree. 5574dcd0538fSMark Fasheh */ 5575e48edee2SMark Fasheh if (el->l_tree_depth && el->l_recs[0].e_int_clusters == 0) { 5576dcd0538fSMark Fasheh ocfs2_error(inode->i_sb, 5577dcd0538fSMark Fasheh "Inode %lu has an empty extent record, depth %u\n", 5578dcd0538fSMark Fasheh inode->i_ino, le16_to_cpu(el->l_tree_depth)); 55793a0782d0SMark Fasheh status = -EROFS; 5580dcd0538fSMark Fasheh goto bail; 5581dcd0538fSMark Fasheh } 5582dcd0538fSMark Fasheh 5583ccd979bdSMark Fasheh spin_lock(&OCFS2_I(inode)->ip_lock); 5584ccd979bdSMark Fasheh OCFS2_I(inode)->ip_clusters = le32_to_cpu(fe->i_clusters) - 5585ccd979bdSMark Fasheh clusters_to_del; 5586ccd979bdSMark Fasheh spin_unlock(&OCFS2_I(inode)->ip_lock); 5587ccd979bdSMark Fasheh le32_add_cpu(&fe->i_clusters, -clusters_to_del); 5588e535e2efSMark Fasheh inode->i_blocks = ocfs2_inode_sector_count(inode); 5589ccd979bdSMark Fasheh 55903a0782d0SMark Fasheh status = ocfs2_trim_tree(inode, path, handle, tc, 55913a0782d0SMark Fasheh clusters_to_del, &delete_blk); 55923a0782d0SMark Fasheh if (status) { 55933a0782d0SMark Fasheh mlog_errno(status); 55943a0782d0SMark Fasheh goto bail; 5595ccd979bdSMark Fasheh } 5596ccd979bdSMark Fasheh 5597dcd0538fSMark Fasheh if (le32_to_cpu(fe->i_clusters) == 0) { 5598ccd979bdSMark Fasheh /* trunc to zero is a special case. */ 5599ccd979bdSMark Fasheh el->l_tree_depth = 0; 5600ccd979bdSMark Fasheh fe->i_last_eb_blk = 0; 5601ccd979bdSMark Fasheh } else if (last_eb) 5602ccd979bdSMark Fasheh fe->i_last_eb_blk = last_eb->h_blkno; 5603ccd979bdSMark Fasheh 5604ccd979bdSMark Fasheh status = ocfs2_journal_dirty(handle, fe_bh); 5605ccd979bdSMark Fasheh if (status < 0) { 5606ccd979bdSMark Fasheh mlog_errno(status); 5607ccd979bdSMark Fasheh goto bail; 5608ccd979bdSMark Fasheh } 5609ccd979bdSMark Fasheh 5610ccd979bdSMark Fasheh if (last_eb) { 5611ccd979bdSMark Fasheh /* If there will be a new last extent block, then by 5612ccd979bdSMark Fasheh * definition, there cannot be any leaves to the right of 5613ccd979bdSMark Fasheh * him. */ 5614ccd979bdSMark Fasheh last_eb->h_next_leaf_blk = 0; 5615ccd979bdSMark Fasheh status = ocfs2_journal_dirty(handle, last_eb_bh); 5616ccd979bdSMark Fasheh if (status < 0) { 5617ccd979bdSMark Fasheh mlog_errno(status); 5618ccd979bdSMark Fasheh goto bail; 5619ccd979bdSMark Fasheh } 5620ccd979bdSMark Fasheh } 5621ccd979bdSMark Fasheh 56223a0782d0SMark Fasheh if (delete_blk) { 5623ccd979bdSMark Fasheh status = ocfs2_truncate_log_append(osb, handle, delete_blk, 5624ccd979bdSMark Fasheh clusters_to_del); 5625ccd979bdSMark Fasheh if (status < 0) { 5626ccd979bdSMark Fasheh mlog_errno(status); 5627ccd979bdSMark Fasheh goto bail; 5628ccd979bdSMark Fasheh } 56293a0782d0SMark Fasheh } 5630ccd979bdSMark Fasheh status = 0; 5631ccd979bdSMark Fasheh bail: 5632dcd0538fSMark Fasheh 5633ccd979bdSMark Fasheh mlog_exit(status); 5634ccd979bdSMark Fasheh return status; 5635ccd979bdSMark Fasheh } 5636ccd979bdSMark Fasheh 563760b11392SMark Fasheh static int ocfs2_writeback_zero_func(handle_t *handle, struct buffer_head *bh) 563860b11392SMark Fasheh { 563960b11392SMark Fasheh set_buffer_uptodate(bh); 564060b11392SMark Fasheh mark_buffer_dirty(bh); 564160b11392SMark Fasheh return 0; 564260b11392SMark Fasheh } 564360b11392SMark Fasheh 564460b11392SMark Fasheh static int ocfs2_ordered_zero_func(handle_t *handle, struct buffer_head *bh) 564560b11392SMark Fasheh { 564660b11392SMark Fasheh set_buffer_uptodate(bh); 564760b11392SMark Fasheh mark_buffer_dirty(bh); 564860b11392SMark Fasheh return ocfs2_journal_dirty_data(handle, bh); 564960b11392SMark Fasheh } 565060b11392SMark Fasheh 565135edec1dSMark Fasheh static void ocfs2_zero_cluster_pages(struct inode *inode, loff_t start, 565235edec1dSMark Fasheh loff_t end, struct page **pages, 565335edec1dSMark Fasheh int numpages, u64 phys, handle_t *handle) 565460b11392SMark Fasheh { 565560b11392SMark Fasheh int i, ret, partial = 0; 565660b11392SMark Fasheh void *kaddr; 565760b11392SMark Fasheh struct page *page; 565860b11392SMark Fasheh unsigned int from, to = PAGE_CACHE_SIZE; 565960b11392SMark Fasheh struct super_block *sb = inode->i_sb; 566060b11392SMark Fasheh 566160b11392SMark Fasheh BUG_ON(!ocfs2_sparse_alloc(OCFS2_SB(sb))); 566260b11392SMark Fasheh 566360b11392SMark Fasheh if (numpages == 0) 566460b11392SMark Fasheh goto out; 566560b11392SMark Fasheh 566635edec1dSMark Fasheh to = PAGE_CACHE_SIZE; 566760b11392SMark Fasheh for(i = 0; i < numpages; i++) { 566860b11392SMark Fasheh page = pages[i]; 566960b11392SMark Fasheh 567035edec1dSMark Fasheh from = start & (PAGE_CACHE_SIZE - 1); 567135edec1dSMark Fasheh if ((end >> PAGE_CACHE_SHIFT) == page->index) 567235edec1dSMark Fasheh to = end & (PAGE_CACHE_SIZE - 1); 567335edec1dSMark Fasheh 567460b11392SMark Fasheh BUG_ON(from > PAGE_CACHE_SIZE); 567560b11392SMark Fasheh BUG_ON(to > PAGE_CACHE_SIZE); 567660b11392SMark Fasheh 567760b11392SMark Fasheh ret = ocfs2_map_page_blocks(page, &phys, inode, from, to, 0); 567860b11392SMark Fasheh if (ret) 567960b11392SMark Fasheh mlog_errno(ret); 568060b11392SMark Fasheh 568160b11392SMark Fasheh kaddr = kmap_atomic(page, KM_USER0); 568260b11392SMark Fasheh memset(kaddr + from, 0, to - from); 568360b11392SMark Fasheh kunmap_atomic(kaddr, KM_USER0); 568460b11392SMark Fasheh 568560b11392SMark Fasheh /* 568660b11392SMark Fasheh * Need to set the buffers we zero'd into uptodate 568760b11392SMark Fasheh * here if they aren't - ocfs2_map_page_blocks() 568860b11392SMark Fasheh * might've skipped some 568960b11392SMark Fasheh */ 569060b11392SMark Fasheh if (ocfs2_should_order_data(inode)) { 569160b11392SMark Fasheh ret = walk_page_buffers(handle, 569260b11392SMark Fasheh page_buffers(page), 569360b11392SMark Fasheh from, to, &partial, 569460b11392SMark Fasheh ocfs2_ordered_zero_func); 569560b11392SMark Fasheh if (ret < 0) 569660b11392SMark Fasheh mlog_errno(ret); 569760b11392SMark Fasheh } else { 569860b11392SMark Fasheh ret = walk_page_buffers(handle, page_buffers(page), 569960b11392SMark Fasheh from, to, &partial, 570060b11392SMark Fasheh ocfs2_writeback_zero_func); 570160b11392SMark Fasheh if (ret < 0) 570260b11392SMark Fasheh mlog_errno(ret); 570360b11392SMark Fasheh } 570460b11392SMark Fasheh 570560b11392SMark Fasheh if (!partial) 570660b11392SMark Fasheh SetPageUptodate(page); 570760b11392SMark Fasheh 570860b11392SMark Fasheh flush_dcache_page(page); 570960b11392SMark Fasheh 571035edec1dSMark Fasheh start = (page->index + 1) << PAGE_CACHE_SHIFT; 571160b11392SMark Fasheh } 571260b11392SMark Fasheh out: 571360b11392SMark Fasheh if (pages) { 571460b11392SMark Fasheh for (i = 0; i < numpages; i++) { 571560b11392SMark Fasheh page = pages[i]; 571660b11392SMark Fasheh unlock_page(page); 571760b11392SMark Fasheh mark_page_accessed(page); 571860b11392SMark Fasheh page_cache_release(page); 571960b11392SMark Fasheh } 572060b11392SMark Fasheh } 572160b11392SMark Fasheh } 572260b11392SMark Fasheh 572335edec1dSMark Fasheh static int ocfs2_grab_eof_pages(struct inode *inode, loff_t start, loff_t end, 572435edec1dSMark Fasheh struct page **pages, int *num, u64 *phys) 572560b11392SMark Fasheh { 572660b11392SMark Fasheh int i, numpages = 0, ret = 0; 572749cb8d2dSMark Fasheh unsigned int ext_flags; 572860b11392SMark Fasheh struct super_block *sb = inode->i_sb; 572960b11392SMark Fasheh struct address_space *mapping = inode->i_mapping; 573060b11392SMark Fasheh unsigned long index; 573135edec1dSMark Fasheh loff_t last_page_bytes; 573260b11392SMark Fasheh 573360b11392SMark Fasheh BUG_ON(!ocfs2_sparse_alloc(OCFS2_SB(sb))); 573435edec1dSMark Fasheh BUG_ON(start > end); 573560b11392SMark Fasheh 573635edec1dSMark Fasheh if (start == end) 573760b11392SMark Fasheh goto out; 573860b11392SMark Fasheh 573935edec1dSMark Fasheh BUG_ON(start >> OCFS2_SB(sb)->s_clustersize_bits != 574035edec1dSMark Fasheh (end - 1) >> OCFS2_SB(sb)->s_clustersize_bits); 574135edec1dSMark Fasheh 574235edec1dSMark Fasheh ret = ocfs2_extent_map_get_blocks(inode, start >> sb->s_blocksize_bits, 574349cb8d2dSMark Fasheh phys, NULL, &ext_flags); 574460b11392SMark Fasheh if (ret) { 574560b11392SMark Fasheh mlog_errno(ret); 574660b11392SMark Fasheh goto out; 574760b11392SMark Fasheh } 574860b11392SMark Fasheh 574960b11392SMark Fasheh /* Tail is a hole. */ 575060b11392SMark Fasheh if (*phys == 0) 575160b11392SMark Fasheh goto out; 575260b11392SMark Fasheh 575349cb8d2dSMark Fasheh /* Tail is marked as unwritten, we can count on write to zero 575449cb8d2dSMark Fasheh * in that case. */ 575549cb8d2dSMark Fasheh if (ext_flags & OCFS2_EXT_UNWRITTEN) 575649cb8d2dSMark Fasheh goto out; 575749cb8d2dSMark Fasheh 575835edec1dSMark Fasheh last_page_bytes = PAGE_ALIGN(end); 575935edec1dSMark Fasheh index = start >> PAGE_CACHE_SHIFT; 576060b11392SMark Fasheh do { 576160b11392SMark Fasheh pages[numpages] = grab_cache_page(mapping, index); 576260b11392SMark Fasheh if (!pages[numpages]) { 576360b11392SMark Fasheh ret = -ENOMEM; 576460b11392SMark Fasheh mlog_errno(ret); 576560b11392SMark Fasheh goto out; 576660b11392SMark Fasheh } 576760b11392SMark Fasheh 576860b11392SMark Fasheh numpages++; 576960b11392SMark Fasheh index++; 577035edec1dSMark Fasheh } while (index < (last_page_bytes >> PAGE_CACHE_SHIFT)); 577160b11392SMark Fasheh 577260b11392SMark Fasheh out: 577360b11392SMark Fasheh if (ret != 0) { 577460b11392SMark Fasheh if (pages) { 577560b11392SMark Fasheh for (i = 0; i < numpages; i++) { 577660b11392SMark Fasheh if (pages[i]) { 577760b11392SMark Fasheh unlock_page(pages[i]); 577860b11392SMark Fasheh page_cache_release(pages[i]); 577960b11392SMark Fasheh } 578060b11392SMark Fasheh } 578160b11392SMark Fasheh } 578260b11392SMark Fasheh numpages = 0; 578360b11392SMark Fasheh } 578460b11392SMark Fasheh 578560b11392SMark Fasheh *num = numpages; 578660b11392SMark Fasheh 578760b11392SMark Fasheh return ret; 578860b11392SMark Fasheh } 578960b11392SMark Fasheh 579060b11392SMark Fasheh /* 579160b11392SMark Fasheh * Zero the area past i_size but still within an allocated 579260b11392SMark Fasheh * cluster. This avoids exposing nonzero data on subsequent file 579360b11392SMark Fasheh * extends. 579460b11392SMark Fasheh * 579560b11392SMark Fasheh * We need to call this before i_size is updated on the inode because 579660b11392SMark Fasheh * otherwise block_write_full_page() will skip writeout of pages past 579760b11392SMark Fasheh * i_size. The new_i_size parameter is passed for this reason. 579860b11392SMark Fasheh */ 579935edec1dSMark Fasheh int ocfs2_zero_range_for_truncate(struct inode *inode, handle_t *handle, 580035edec1dSMark Fasheh u64 range_start, u64 range_end) 580160b11392SMark Fasheh { 580260b11392SMark Fasheh int ret, numpages; 580360b11392SMark Fasheh struct page **pages = NULL; 580460b11392SMark Fasheh u64 phys; 580560b11392SMark Fasheh 580660b11392SMark Fasheh /* 580760b11392SMark Fasheh * File systems which don't support sparse files zero on every 580860b11392SMark Fasheh * extend. 580960b11392SMark Fasheh */ 581060b11392SMark Fasheh if (!ocfs2_sparse_alloc(OCFS2_SB(inode->i_sb))) 581160b11392SMark Fasheh return 0; 581260b11392SMark Fasheh 581360b11392SMark Fasheh pages = kcalloc(ocfs2_pages_per_cluster(inode->i_sb), 581460b11392SMark Fasheh sizeof(struct page *), GFP_NOFS); 581560b11392SMark Fasheh if (pages == NULL) { 581660b11392SMark Fasheh ret = -ENOMEM; 581760b11392SMark Fasheh mlog_errno(ret); 581860b11392SMark Fasheh goto out; 581960b11392SMark Fasheh } 582060b11392SMark Fasheh 582135edec1dSMark Fasheh ret = ocfs2_grab_eof_pages(inode, range_start, range_end, pages, 582235edec1dSMark Fasheh &numpages, &phys); 582360b11392SMark Fasheh if (ret) { 582460b11392SMark Fasheh mlog_errno(ret); 582560b11392SMark Fasheh goto out; 582660b11392SMark Fasheh } 582760b11392SMark Fasheh 582860b11392SMark Fasheh if (numpages == 0) 582960b11392SMark Fasheh goto out; 583060b11392SMark Fasheh 583135edec1dSMark Fasheh ocfs2_zero_cluster_pages(inode, range_start, range_end, pages, 583235edec1dSMark Fasheh numpages, phys, handle); 583360b11392SMark Fasheh 583460b11392SMark Fasheh /* 583560b11392SMark Fasheh * Initiate writeout of the pages we zero'd here. We don't 583660b11392SMark Fasheh * wait on them - the truncate_inode_pages() call later will 583760b11392SMark Fasheh * do that for us. 583860b11392SMark Fasheh */ 583935edec1dSMark Fasheh ret = do_sync_mapping_range(inode->i_mapping, range_start, 584035edec1dSMark Fasheh range_end - 1, SYNC_FILE_RANGE_WRITE); 584160b11392SMark Fasheh if (ret) 584260b11392SMark Fasheh mlog_errno(ret); 584360b11392SMark Fasheh 584460b11392SMark Fasheh out: 584560b11392SMark Fasheh if (pages) 584660b11392SMark Fasheh kfree(pages); 584760b11392SMark Fasheh 584860b11392SMark Fasheh return ret; 584960b11392SMark Fasheh } 585060b11392SMark Fasheh 5851ccd979bdSMark Fasheh /* 5852ccd979bdSMark Fasheh * It is expected, that by the time you call this function, 5853ccd979bdSMark Fasheh * inode->i_size and fe->i_size have been adjusted. 5854ccd979bdSMark Fasheh * 5855ccd979bdSMark Fasheh * WARNING: This will kfree the truncate context 5856ccd979bdSMark Fasheh */ 5857ccd979bdSMark Fasheh int ocfs2_commit_truncate(struct ocfs2_super *osb, 5858ccd979bdSMark Fasheh struct inode *inode, 5859ccd979bdSMark Fasheh struct buffer_head *fe_bh, 5860ccd979bdSMark Fasheh struct ocfs2_truncate_context *tc) 5861ccd979bdSMark Fasheh { 5862ccd979bdSMark Fasheh int status, i, credits, tl_sem = 0; 5863dcd0538fSMark Fasheh u32 clusters_to_del, new_highest_cpos, range; 5864ccd979bdSMark Fasheh struct ocfs2_extent_list *el; 58651fabe148SMark Fasheh handle_t *handle = NULL; 5866ccd979bdSMark Fasheh struct inode *tl_inode = osb->osb_tl_inode; 5867dcd0538fSMark Fasheh struct ocfs2_path *path = NULL; 5868ccd979bdSMark Fasheh 5869ccd979bdSMark Fasheh mlog_entry_void(); 5870ccd979bdSMark Fasheh 5871dcd0538fSMark Fasheh new_highest_cpos = ocfs2_clusters_for_bytes(osb->sb, 5872ccd979bdSMark Fasheh i_size_read(inode)); 5873ccd979bdSMark Fasheh 5874dcd0538fSMark Fasheh path = ocfs2_new_inode_path(fe_bh); 5875dcd0538fSMark Fasheh if (!path) { 5876dcd0538fSMark Fasheh status = -ENOMEM; 5877ccd979bdSMark Fasheh mlog_errno(status); 5878ccd979bdSMark Fasheh goto bail; 5879ccd979bdSMark Fasheh } 588083418978SMark Fasheh 588183418978SMark Fasheh ocfs2_extent_map_trunc(inode, new_highest_cpos); 588283418978SMark Fasheh 5883dcd0538fSMark Fasheh start: 5884dcd0538fSMark Fasheh /* 58853a0782d0SMark Fasheh * Check that we still have allocation to delete. 58863a0782d0SMark Fasheh */ 58873a0782d0SMark Fasheh if (OCFS2_I(inode)->ip_clusters == 0) { 58883a0782d0SMark Fasheh status = 0; 58893a0782d0SMark Fasheh goto bail; 58903a0782d0SMark Fasheh } 58913a0782d0SMark Fasheh 58923a0782d0SMark Fasheh /* 5893dcd0538fSMark Fasheh * Truncate always works against the rightmost tree branch. 5894dcd0538fSMark Fasheh */ 5895dcd0538fSMark Fasheh status = ocfs2_find_path(inode, path, UINT_MAX); 5896dcd0538fSMark Fasheh if (status) { 5897dcd0538fSMark Fasheh mlog_errno(status); 5898ccd979bdSMark Fasheh goto bail; 5899ccd979bdSMark Fasheh } 5900ccd979bdSMark Fasheh 5901dcd0538fSMark Fasheh mlog(0, "inode->ip_clusters = %u, tree_depth = %u\n", 5902dcd0538fSMark Fasheh OCFS2_I(inode)->ip_clusters, path->p_tree_depth); 5903dcd0538fSMark Fasheh 5904dcd0538fSMark Fasheh /* 5905dcd0538fSMark Fasheh * By now, el will point to the extent list on the bottom most 5906dcd0538fSMark Fasheh * portion of this tree. Only the tail record is considered in 5907dcd0538fSMark Fasheh * each pass. 5908dcd0538fSMark Fasheh * 5909dcd0538fSMark Fasheh * We handle the following cases, in order: 5910dcd0538fSMark Fasheh * - empty extent: delete the remaining branch 5911dcd0538fSMark Fasheh * - remove the entire record 5912dcd0538fSMark Fasheh * - remove a partial record 5913dcd0538fSMark Fasheh * - no record needs to be removed (truncate has completed) 5914dcd0538fSMark Fasheh */ 5915dcd0538fSMark Fasheh el = path_leaf_el(path); 59163a0782d0SMark Fasheh if (le16_to_cpu(el->l_next_free_rec) == 0) { 59173a0782d0SMark Fasheh ocfs2_error(inode->i_sb, 59183a0782d0SMark Fasheh "Inode %llu has empty extent block at %llu\n", 59193a0782d0SMark Fasheh (unsigned long long)OCFS2_I(inode)->ip_blkno, 59203a0782d0SMark Fasheh (unsigned long long)path_leaf_bh(path)->b_blocknr); 59213a0782d0SMark Fasheh status = -EROFS; 59223a0782d0SMark Fasheh goto bail; 59233a0782d0SMark Fasheh } 59243a0782d0SMark Fasheh 5925ccd979bdSMark Fasheh i = le16_to_cpu(el->l_next_free_rec) - 1; 5926dcd0538fSMark Fasheh range = le32_to_cpu(el->l_recs[i].e_cpos) + 5927e48edee2SMark Fasheh ocfs2_rec_clusters(el, &el->l_recs[i]); 5928dcd0538fSMark Fasheh if (i == 0 && ocfs2_is_empty_extent(&el->l_recs[i])) { 5929dcd0538fSMark Fasheh clusters_to_del = 0; 5930dcd0538fSMark Fasheh } else if (le32_to_cpu(el->l_recs[i].e_cpos) >= new_highest_cpos) { 5931e48edee2SMark Fasheh clusters_to_del = ocfs2_rec_clusters(el, &el->l_recs[i]); 5932dcd0538fSMark Fasheh } else if (range > new_highest_cpos) { 5933e48edee2SMark Fasheh clusters_to_del = (ocfs2_rec_clusters(el, &el->l_recs[i]) + 5934ccd979bdSMark Fasheh le32_to_cpu(el->l_recs[i].e_cpos)) - 5935dcd0538fSMark Fasheh new_highest_cpos; 5936dcd0538fSMark Fasheh } else { 5937dcd0538fSMark Fasheh status = 0; 5938dcd0538fSMark Fasheh goto bail; 5939dcd0538fSMark Fasheh } 5940ccd979bdSMark Fasheh 5941dcd0538fSMark Fasheh mlog(0, "clusters_to_del = %u in this pass, tail blk=%llu\n", 5942dcd0538fSMark Fasheh clusters_to_del, (unsigned long long)path_leaf_bh(path)->b_blocknr); 5943dcd0538fSMark Fasheh 5944dcd0538fSMark Fasheh BUG_ON(clusters_to_del == 0); 5945ccd979bdSMark Fasheh 59461b1dcc1bSJes Sorensen mutex_lock(&tl_inode->i_mutex); 5947ccd979bdSMark Fasheh tl_sem = 1; 5948ccd979bdSMark Fasheh /* ocfs2_truncate_log_needs_flush guarantees us at least one 5949ccd979bdSMark Fasheh * record is free for use. If there isn't any, we flush to get 5950ccd979bdSMark Fasheh * an empty truncate log. */ 5951ccd979bdSMark Fasheh if (ocfs2_truncate_log_needs_flush(osb)) { 5952ccd979bdSMark Fasheh status = __ocfs2_flush_truncate_log(osb); 5953ccd979bdSMark Fasheh if (status < 0) { 5954ccd979bdSMark Fasheh mlog_errno(status); 5955ccd979bdSMark Fasheh goto bail; 5956ccd979bdSMark Fasheh } 5957ccd979bdSMark Fasheh } 5958ccd979bdSMark Fasheh 5959ccd979bdSMark Fasheh credits = ocfs2_calc_tree_trunc_credits(osb->sb, clusters_to_del, 5960dcd0538fSMark Fasheh (struct ocfs2_dinode *)fe_bh->b_data, 5961dcd0538fSMark Fasheh el); 596265eff9ccSMark Fasheh handle = ocfs2_start_trans(osb, credits); 5963ccd979bdSMark Fasheh if (IS_ERR(handle)) { 5964ccd979bdSMark Fasheh status = PTR_ERR(handle); 5965ccd979bdSMark Fasheh handle = NULL; 5966ccd979bdSMark Fasheh mlog_errno(status); 5967ccd979bdSMark Fasheh goto bail; 5968ccd979bdSMark Fasheh } 5969ccd979bdSMark Fasheh 5970dcd0538fSMark Fasheh status = ocfs2_do_truncate(osb, clusters_to_del, inode, fe_bh, handle, 5971dcd0538fSMark Fasheh tc, path); 5972ccd979bdSMark Fasheh if (status < 0) { 5973ccd979bdSMark Fasheh mlog_errno(status); 5974ccd979bdSMark Fasheh goto bail; 5975ccd979bdSMark Fasheh } 5976ccd979bdSMark Fasheh 59771b1dcc1bSJes Sorensen mutex_unlock(&tl_inode->i_mutex); 5978ccd979bdSMark Fasheh tl_sem = 0; 5979ccd979bdSMark Fasheh 598002dc1af4SMark Fasheh ocfs2_commit_trans(osb, handle); 5981ccd979bdSMark Fasheh handle = NULL; 5982ccd979bdSMark Fasheh 5983dcd0538fSMark Fasheh ocfs2_reinit_path(path, 1); 5984dcd0538fSMark Fasheh 5985dcd0538fSMark Fasheh /* 59863a0782d0SMark Fasheh * The check above will catch the case where we've truncated 59873a0782d0SMark Fasheh * away all allocation. 5988dcd0538fSMark Fasheh */ 5989ccd979bdSMark Fasheh goto start; 59903a0782d0SMark Fasheh 5991ccd979bdSMark Fasheh bail: 5992ccd979bdSMark Fasheh 5993ccd979bdSMark Fasheh ocfs2_schedule_truncate_log_flush(osb, 1); 5994ccd979bdSMark Fasheh 5995ccd979bdSMark Fasheh if (tl_sem) 59961b1dcc1bSJes Sorensen mutex_unlock(&tl_inode->i_mutex); 5997ccd979bdSMark Fasheh 5998ccd979bdSMark Fasheh if (handle) 599902dc1af4SMark Fasheh ocfs2_commit_trans(osb, handle); 6000ccd979bdSMark Fasheh 600159a5e416SMark Fasheh ocfs2_run_deallocs(osb, &tc->tc_dealloc); 600259a5e416SMark Fasheh 6003dcd0538fSMark Fasheh ocfs2_free_path(path); 6004ccd979bdSMark Fasheh 6005ccd979bdSMark Fasheh /* This will drop the ext_alloc cluster lock for us */ 6006ccd979bdSMark Fasheh ocfs2_free_truncate_context(tc); 6007ccd979bdSMark Fasheh 6008ccd979bdSMark Fasheh mlog_exit(status); 6009ccd979bdSMark Fasheh return status; 6010ccd979bdSMark Fasheh } 6011ccd979bdSMark Fasheh 6012ccd979bdSMark Fasheh /* 601359a5e416SMark Fasheh * Expects the inode to already be locked. 6014ccd979bdSMark Fasheh */ 6015ccd979bdSMark Fasheh int ocfs2_prepare_truncate(struct ocfs2_super *osb, 6016ccd979bdSMark Fasheh struct inode *inode, 6017ccd979bdSMark Fasheh struct buffer_head *fe_bh, 6018ccd979bdSMark Fasheh struct ocfs2_truncate_context **tc) 6019ccd979bdSMark Fasheh { 602059a5e416SMark Fasheh int status; 6021ccd979bdSMark Fasheh unsigned int new_i_clusters; 6022ccd979bdSMark Fasheh struct ocfs2_dinode *fe; 6023ccd979bdSMark Fasheh struct ocfs2_extent_block *eb; 6024ccd979bdSMark Fasheh struct buffer_head *last_eb_bh = NULL; 6025ccd979bdSMark Fasheh 6026ccd979bdSMark Fasheh mlog_entry_void(); 6027ccd979bdSMark Fasheh 6028ccd979bdSMark Fasheh *tc = NULL; 6029ccd979bdSMark Fasheh 6030ccd979bdSMark Fasheh new_i_clusters = ocfs2_clusters_for_bytes(osb->sb, 6031ccd979bdSMark Fasheh i_size_read(inode)); 6032ccd979bdSMark Fasheh fe = (struct ocfs2_dinode *) fe_bh->b_data; 6033ccd979bdSMark Fasheh 6034ccd979bdSMark Fasheh mlog(0, "fe->i_clusters = %u, new_i_clusters = %u, fe->i_size =" 60351ca1a111SMark Fasheh "%llu\n", le32_to_cpu(fe->i_clusters), new_i_clusters, 60361ca1a111SMark Fasheh (unsigned long long)le64_to_cpu(fe->i_size)); 6037ccd979bdSMark Fasheh 6038cd861280SRobert P. J. Day *tc = kzalloc(sizeof(struct ocfs2_truncate_context), GFP_KERNEL); 6039ccd979bdSMark Fasheh if (!(*tc)) { 6040ccd979bdSMark Fasheh status = -ENOMEM; 6041ccd979bdSMark Fasheh mlog_errno(status); 6042ccd979bdSMark Fasheh goto bail; 6043ccd979bdSMark Fasheh } 604459a5e416SMark Fasheh ocfs2_init_dealloc_ctxt(&(*tc)->tc_dealloc); 6045ccd979bdSMark Fasheh 6046ccd979bdSMark Fasheh if (fe->id2.i_list.l_tree_depth) { 6047ccd979bdSMark Fasheh status = ocfs2_read_block(osb, le64_to_cpu(fe->i_last_eb_blk), 6048ccd979bdSMark Fasheh &last_eb_bh, OCFS2_BH_CACHED, inode); 6049ccd979bdSMark Fasheh if (status < 0) { 6050ccd979bdSMark Fasheh mlog_errno(status); 6051ccd979bdSMark Fasheh goto bail; 6052ccd979bdSMark Fasheh } 6053ccd979bdSMark Fasheh eb = (struct ocfs2_extent_block *) last_eb_bh->b_data; 6054ccd979bdSMark Fasheh if (!OCFS2_IS_VALID_EXTENT_BLOCK(eb)) { 6055ccd979bdSMark Fasheh OCFS2_RO_ON_INVALID_EXTENT_BLOCK(inode->i_sb, eb); 6056ccd979bdSMark Fasheh 6057ccd979bdSMark Fasheh brelse(last_eb_bh); 6058ccd979bdSMark Fasheh status = -EIO; 6059ccd979bdSMark Fasheh goto bail; 6060ccd979bdSMark Fasheh } 6061ccd979bdSMark Fasheh } 6062ccd979bdSMark Fasheh 6063ccd979bdSMark Fasheh (*tc)->tc_last_eb_bh = last_eb_bh; 6064ccd979bdSMark Fasheh 6065ccd979bdSMark Fasheh status = 0; 6066ccd979bdSMark Fasheh bail: 6067ccd979bdSMark Fasheh if (status < 0) { 6068ccd979bdSMark Fasheh if (*tc) 6069ccd979bdSMark Fasheh ocfs2_free_truncate_context(*tc); 6070ccd979bdSMark Fasheh *tc = NULL; 6071ccd979bdSMark Fasheh } 6072ccd979bdSMark Fasheh mlog_exit_void(); 6073ccd979bdSMark Fasheh return status; 6074ccd979bdSMark Fasheh } 6075ccd979bdSMark Fasheh 6076ccd979bdSMark Fasheh static void ocfs2_free_truncate_context(struct ocfs2_truncate_context *tc) 6077ccd979bdSMark Fasheh { 607859a5e416SMark Fasheh /* 607959a5e416SMark Fasheh * The caller is responsible for completing deallocation 608059a5e416SMark Fasheh * before freeing the context. 608159a5e416SMark Fasheh */ 608259a5e416SMark Fasheh if (tc->tc_dealloc.c_first_suballocator != NULL) 608359a5e416SMark Fasheh mlog(ML_NOTICE, 608459a5e416SMark Fasheh "Truncate completion has non-empty dealloc context\n"); 6085ccd979bdSMark Fasheh 6086ccd979bdSMark Fasheh if (tc->tc_last_eb_bh) 6087ccd979bdSMark Fasheh brelse(tc->tc_last_eb_bh); 6088ccd979bdSMark Fasheh 6089ccd979bdSMark Fasheh kfree(tc); 6090ccd979bdSMark Fasheh } 6091