1a52d9a80SChris Mason #include <linux/bitops.h> 2a52d9a80SChris Mason #include <linux/slab.h> 3a52d9a80SChris Mason #include <linux/bio.h> 4a52d9a80SChris Mason #include <linux/mm.h> 5a52d9a80SChris Mason #include <linux/gfp.h> 6a52d9a80SChris Mason #include <linux/pagemap.h> 7a52d9a80SChris Mason #include <linux/page-flags.h> 8a52d9a80SChris Mason #include <linux/module.h> 9a52d9a80SChris Mason #include <linux/spinlock.h> 10a52d9a80SChris Mason #include <linux/blkdev.h> 11a52d9a80SChris Mason #include "extent_map.h" 12a52d9a80SChris Mason 13a52d9a80SChris Mason static struct kmem_cache *extent_map_cache; 14a52d9a80SChris Mason static struct kmem_cache *extent_state_cache; 15a52d9a80SChris Mason 16a52d9a80SChris Mason struct tree_entry { 17a52d9a80SChris Mason u64 start; 18a52d9a80SChris Mason u64 end; 19a52d9a80SChris Mason int in_tree; 20a52d9a80SChris Mason struct rb_node rb_node; 21a52d9a80SChris Mason }; 22a52d9a80SChris Mason 23a52d9a80SChris Mason /* bits for the extent state */ 24a52d9a80SChris Mason #define EXTENT_DIRTY 1 25a52d9a80SChris Mason #define EXTENT_WRITEBACK (1 << 1) 26a52d9a80SChris Mason #define EXTENT_UPTODATE (1 << 2) 27a52d9a80SChris Mason #define EXTENT_LOCKED (1 << 3) 28a52d9a80SChris Mason #define EXTENT_NEW (1 << 4) 29a52d9a80SChris Mason #define EXTENT_DELALLOC (1 << 5) 30a52d9a80SChris Mason 31a52d9a80SChris Mason #define EXTENT_IOBITS (EXTENT_LOCKED | EXTENT_WRITEBACK) 32a52d9a80SChris Mason 33a52d9a80SChris Mason void __init extent_map_init(void) 34a52d9a80SChris Mason { 35a52d9a80SChris Mason extent_map_cache = kmem_cache_create("extent_map", 36a52d9a80SChris Mason sizeof(struct extent_map), 0, 37a52d9a80SChris Mason SLAB_RECLAIM_ACCOUNT | 38a52d9a80SChris Mason SLAB_DESTROY_BY_RCU, 39a52d9a80SChris Mason NULL); 40a52d9a80SChris Mason extent_state_cache = kmem_cache_create("extent_state", 41a52d9a80SChris Mason sizeof(struct extent_state), 0, 42a52d9a80SChris Mason SLAB_RECLAIM_ACCOUNT | 43a52d9a80SChris Mason SLAB_DESTROY_BY_RCU, 44a52d9a80SChris Mason NULL); 45a52d9a80SChris Mason } 46a52d9a80SChris Mason 47a52d9a80SChris Mason void __exit extent_map_exit(void) 48a52d9a80SChris Mason { 49a52d9a80SChris Mason if (extent_map_cache) 50a52d9a80SChris Mason kmem_cache_destroy(extent_map_cache); 51a52d9a80SChris Mason if (extent_state_cache) 52a52d9a80SChris Mason kmem_cache_destroy(extent_state_cache); 53a52d9a80SChris Mason } 54a52d9a80SChris Mason 55a52d9a80SChris Mason void extent_map_tree_init(struct extent_map_tree *tree, 56a52d9a80SChris Mason struct address_space *mapping, gfp_t mask) 57a52d9a80SChris Mason { 58a52d9a80SChris Mason tree->map.rb_node = NULL; 59a52d9a80SChris Mason tree->state.rb_node = NULL; 60*07157aacSChris Mason tree->ops = NULL; 61a52d9a80SChris Mason rwlock_init(&tree->lock); 62a52d9a80SChris Mason tree->mapping = mapping; 63a52d9a80SChris Mason } 64a52d9a80SChris Mason EXPORT_SYMBOL(extent_map_tree_init); 65a52d9a80SChris Mason 66a52d9a80SChris Mason struct extent_map *alloc_extent_map(gfp_t mask) 67a52d9a80SChris Mason { 68a52d9a80SChris Mason struct extent_map *em; 69a52d9a80SChris Mason em = kmem_cache_alloc(extent_map_cache, mask); 70a52d9a80SChris Mason if (!em || IS_ERR(em)) 71a52d9a80SChris Mason return em; 72a52d9a80SChris Mason em->in_tree = 0; 73a52d9a80SChris Mason atomic_set(&em->refs, 1); 74a52d9a80SChris Mason return em; 75a52d9a80SChris Mason } 76a52d9a80SChris Mason EXPORT_SYMBOL(alloc_extent_map); 77a52d9a80SChris Mason 78a52d9a80SChris Mason void free_extent_map(struct extent_map *em) 79a52d9a80SChris Mason { 80a52d9a80SChris Mason if (atomic_dec_and_test(&em->refs)) { 81a52d9a80SChris Mason WARN_ON(em->in_tree); 82a52d9a80SChris Mason kmem_cache_free(extent_map_cache, em); 83a52d9a80SChris Mason } 84a52d9a80SChris Mason } 85a52d9a80SChris Mason EXPORT_SYMBOL(free_extent_map); 86a52d9a80SChris Mason 87a52d9a80SChris Mason 88a52d9a80SChris Mason struct extent_state *alloc_extent_state(gfp_t mask) 89a52d9a80SChris Mason { 90a52d9a80SChris Mason struct extent_state *state; 91a52d9a80SChris Mason state = kmem_cache_alloc(extent_state_cache, mask); 92a52d9a80SChris Mason if (!state || IS_ERR(state)) 93a52d9a80SChris Mason return state; 94a52d9a80SChris Mason state->state = 0; 95a52d9a80SChris Mason state->in_tree = 0; 96*07157aacSChris Mason state->private = 0; 97a52d9a80SChris Mason atomic_set(&state->refs, 1); 98a52d9a80SChris Mason init_waitqueue_head(&state->wq); 99a52d9a80SChris Mason return state; 100a52d9a80SChris Mason } 101a52d9a80SChris Mason EXPORT_SYMBOL(alloc_extent_state); 102a52d9a80SChris Mason 103a52d9a80SChris Mason void free_extent_state(struct extent_state *state) 104a52d9a80SChris Mason { 105a52d9a80SChris Mason if (atomic_dec_and_test(&state->refs)) { 106a52d9a80SChris Mason WARN_ON(state->in_tree); 107a52d9a80SChris Mason kmem_cache_free(extent_state_cache, state); 108a52d9a80SChris Mason } 109a52d9a80SChris Mason } 110a52d9a80SChris Mason EXPORT_SYMBOL(free_extent_state); 111a52d9a80SChris Mason 112a52d9a80SChris Mason static struct rb_node *tree_insert(struct rb_root *root, u64 offset, 113a52d9a80SChris Mason struct rb_node *node) 114a52d9a80SChris Mason { 115a52d9a80SChris Mason struct rb_node ** p = &root->rb_node; 116a52d9a80SChris Mason struct rb_node * parent = NULL; 117a52d9a80SChris Mason struct tree_entry *entry; 118a52d9a80SChris Mason 119a52d9a80SChris Mason while(*p) { 120a52d9a80SChris Mason parent = *p; 121a52d9a80SChris Mason entry = rb_entry(parent, struct tree_entry, rb_node); 122a52d9a80SChris Mason 123a52d9a80SChris Mason if (offset < entry->start) 124a52d9a80SChris Mason p = &(*p)->rb_left; 125a52d9a80SChris Mason else if (offset > entry->end) 126a52d9a80SChris Mason p = &(*p)->rb_right; 127a52d9a80SChris Mason else 128a52d9a80SChris Mason return parent; 129a52d9a80SChris Mason } 130a52d9a80SChris Mason 131a52d9a80SChris Mason entry = rb_entry(node, struct tree_entry, rb_node); 132a52d9a80SChris Mason entry->in_tree = 1; 133a52d9a80SChris Mason rb_link_node(node, parent, p); 134a52d9a80SChris Mason rb_insert_color(node, root); 135a52d9a80SChris Mason return NULL; 136a52d9a80SChris Mason } 137a52d9a80SChris Mason 138a52d9a80SChris Mason static struct rb_node *__tree_search(struct rb_root *root, u64 offset, 139a52d9a80SChris Mason struct rb_node **prev_ret) 140a52d9a80SChris Mason { 141a52d9a80SChris Mason struct rb_node * n = root->rb_node; 142a52d9a80SChris Mason struct rb_node *prev = NULL; 143a52d9a80SChris Mason struct tree_entry *entry; 144a52d9a80SChris Mason struct tree_entry *prev_entry = NULL; 145a52d9a80SChris Mason 146a52d9a80SChris Mason while(n) { 147a52d9a80SChris Mason entry = rb_entry(n, struct tree_entry, rb_node); 148a52d9a80SChris Mason prev = n; 149a52d9a80SChris Mason prev_entry = entry; 150a52d9a80SChris Mason 151a52d9a80SChris Mason if (offset < entry->start) 152a52d9a80SChris Mason n = n->rb_left; 153a52d9a80SChris Mason else if (offset > entry->end) 154a52d9a80SChris Mason n = n->rb_right; 155a52d9a80SChris Mason else 156a52d9a80SChris Mason return n; 157a52d9a80SChris Mason } 158a52d9a80SChris Mason if (!prev_ret) 159a52d9a80SChris Mason return NULL; 160a52d9a80SChris Mason while(prev && offset > prev_entry->end) { 161a52d9a80SChris Mason prev = rb_next(prev); 162a52d9a80SChris Mason prev_entry = rb_entry(prev, struct tree_entry, rb_node); 163a52d9a80SChris Mason } 164a52d9a80SChris Mason *prev_ret = prev; 165a52d9a80SChris Mason return NULL; 166a52d9a80SChris Mason } 167a52d9a80SChris Mason 168a52d9a80SChris Mason static inline struct rb_node *tree_search(struct rb_root *root, u64 offset) 169a52d9a80SChris Mason { 170a52d9a80SChris Mason struct rb_node *prev; 171a52d9a80SChris Mason struct rb_node *ret; 172a52d9a80SChris Mason ret = __tree_search(root, offset, &prev); 173a52d9a80SChris Mason if (!ret) 174a52d9a80SChris Mason return prev; 175a52d9a80SChris Mason return ret; 176a52d9a80SChris Mason } 177a52d9a80SChris Mason 178a52d9a80SChris Mason static int tree_delete(struct rb_root *root, u64 offset) 179a52d9a80SChris Mason { 180a52d9a80SChris Mason struct rb_node *node; 181a52d9a80SChris Mason struct tree_entry *entry; 182a52d9a80SChris Mason 183a52d9a80SChris Mason node = __tree_search(root, offset, NULL); 184a52d9a80SChris Mason if (!node) 185a52d9a80SChris Mason return -ENOENT; 186a52d9a80SChris Mason entry = rb_entry(node, struct tree_entry, rb_node); 187a52d9a80SChris Mason entry->in_tree = 0; 188a52d9a80SChris Mason rb_erase(node, root); 189a52d9a80SChris Mason return 0; 190a52d9a80SChris Mason } 191a52d9a80SChris Mason 192a52d9a80SChris Mason /* 193a52d9a80SChris Mason * add_extent_mapping tries a simple backward merge with existing 194a52d9a80SChris Mason * mappings. The extent_map struct passed in will be inserted into 195a52d9a80SChris Mason * the tree directly (no copies made, just a reference taken). 196a52d9a80SChris Mason */ 197a52d9a80SChris Mason int add_extent_mapping(struct extent_map_tree *tree, 198a52d9a80SChris Mason struct extent_map *em) 199a52d9a80SChris Mason { 200a52d9a80SChris Mason int ret = 0; 201a52d9a80SChris Mason struct extent_map *prev = NULL; 202a52d9a80SChris Mason struct rb_node *rb; 203a52d9a80SChris Mason 204a52d9a80SChris Mason write_lock_irq(&tree->lock); 205a52d9a80SChris Mason rb = tree_insert(&tree->map, em->end, &em->rb_node); 206a52d9a80SChris Mason if (rb) { 207a52d9a80SChris Mason prev = rb_entry(rb, struct extent_map, rb_node); 208a52d9a80SChris Mason printk("found extent map %Lu %Lu on insert of %Lu %Lu\n", prev->start, prev->end, em->start, em->end); 209a52d9a80SChris Mason ret = -EEXIST; 210a52d9a80SChris Mason goto out; 211a52d9a80SChris Mason } 212a52d9a80SChris Mason atomic_inc(&em->refs); 213a52d9a80SChris Mason if (em->start != 0) { 214a52d9a80SChris Mason rb = rb_prev(&em->rb_node); 215a52d9a80SChris Mason if (rb) 216a52d9a80SChris Mason prev = rb_entry(rb, struct extent_map, rb_node); 217a52d9a80SChris Mason if (prev && prev->end + 1 == em->start && 218a52d9a80SChris Mason ((em->block_start == 0 && prev->block_start == 0) || 219a52d9a80SChris Mason (em->block_start == prev->block_end + 1))) { 220a52d9a80SChris Mason em->start = prev->start; 221a52d9a80SChris Mason em->block_start = prev->block_start; 222a52d9a80SChris Mason rb_erase(&prev->rb_node, &tree->map); 223a52d9a80SChris Mason prev->in_tree = 0; 224a52d9a80SChris Mason free_extent_map(prev); 225a52d9a80SChris Mason } 226a52d9a80SChris Mason } 227a52d9a80SChris Mason out: 228a52d9a80SChris Mason write_unlock_irq(&tree->lock); 229a52d9a80SChris Mason return ret; 230a52d9a80SChris Mason } 231a52d9a80SChris Mason EXPORT_SYMBOL(add_extent_mapping); 232a52d9a80SChris Mason 233a52d9a80SChris Mason /* 234a52d9a80SChris Mason * lookup_extent_mapping returns the first extent_map struct in the 235a52d9a80SChris Mason * tree that intersects the [start, end] (inclusive) range. There may 236a52d9a80SChris Mason * be additional objects in the tree that intersect, so check the object 237a52d9a80SChris Mason * returned carefully to make sure you don't need additional lookups. 238a52d9a80SChris Mason */ 239a52d9a80SChris Mason struct extent_map *lookup_extent_mapping(struct extent_map_tree *tree, 240a52d9a80SChris Mason u64 start, u64 end) 241a52d9a80SChris Mason { 242a52d9a80SChris Mason struct extent_map *em; 243a52d9a80SChris Mason struct rb_node *rb_node; 244a52d9a80SChris Mason 245a52d9a80SChris Mason read_lock_irq(&tree->lock); 246a52d9a80SChris Mason rb_node = tree_search(&tree->map, start); 247a52d9a80SChris Mason if (!rb_node) { 248a52d9a80SChris Mason em = NULL; 249a52d9a80SChris Mason goto out; 250a52d9a80SChris Mason } 251a52d9a80SChris Mason if (IS_ERR(rb_node)) { 252a52d9a80SChris Mason em = ERR_PTR(PTR_ERR(rb_node)); 253a52d9a80SChris Mason goto out; 254a52d9a80SChris Mason } 255a52d9a80SChris Mason em = rb_entry(rb_node, struct extent_map, rb_node); 256a52d9a80SChris Mason if (em->end < start || em->start > end) { 257a52d9a80SChris Mason em = NULL; 258a52d9a80SChris Mason goto out; 259a52d9a80SChris Mason } 260a52d9a80SChris Mason atomic_inc(&em->refs); 261a52d9a80SChris Mason out: 262a52d9a80SChris Mason read_unlock_irq(&tree->lock); 263a52d9a80SChris Mason return em; 264a52d9a80SChris Mason } 265a52d9a80SChris Mason EXPORT_SYMBOL(lookup_extent_mapping); 266a52d9a80SChris Mason 267a52d9a80SChris Mason /* 268a52d9a80SChris Mason * removes an extent_map struct from the tree. No reference counts are 269a52d9a80SChris Mason * dropped, and no checks are done to see if the range is in use 270a52d9a80SChris Mason */ 271a52d9a80SChris Mason int remove_extent_mapping(struct extent_map_tree *tree, struct extent_map *em) 272a52d9a80SChris Mason { 273a52d9a80SChris Mason int ret; 274a52d9a80SChris Mason 275a52d9a80SChris Mason write_lock_irq(&tree->lock); 276a52d9a80SChris Mason ret = tree_delete(&tree->map, em->end); 277a52d9a80SChris Mason write_unlock_irq(&tree->lock); 278a52d9a80SChris Mason return ret; 279a52d9a80SChris Mason } 280a52d9a80SChris Mason EXPORT_SYMBOL(remove_extent_mapping); 281a52d9a80SChris Mason 282a52d9a80SChris Mason /* 283a52d9a80SChris Mason * utility function to look for merge candidates inside a given range. 284a52d9a80SChris Mason * Any extents with matching state are merged together into a single 285a52d9a80SChris Mason * extent in the tree. Extents with EXTENT_IO in their state field 286a52d9a80SChris Mason * are not merged because the end_io handlers need to be able to do 287a52d9a80SChris Mason * operations on them without sleeping (or doing allocations/splits). 288a52d9a80SChris Mason * 289a52d9a80SChris Mason * This should be called with the tree lock held. 290a52d9a80SChris Mason */ 291a52d9a80SChris Mason static int merge_state(struct extent_map_tree *tree, 292a52d9a80SChris Mason struct extent_state *state) 293a52d9a80SChris Mason { 294a52d9a80SChris Mason struct extent_state *other; 295a52d9a80SChris Mason struct rb_node *other_node; 296a52d9a80SChris Mason 297a52d9a80SChris Mason if (state->state & EXTENT_IOBITS) 298a52d9a80SChris Mason return 0; 299a52d9a80SChris Mason 300a52d9a80SChris Mason other_node = rb_prev(&state->rb_node); 301a52d9a80SChris Mason if (other_node) { 302a52d9a80SChris Mason other = rb_entry(other_node, struct extent_state, rb_node); 303a52d9a80SChris Mason if (other->end == state->start - 1 && 304a52d9a80SChris Mason other->state == state->state) { 305a52d9a80SChris Mason state->start = other->start; 306a52d9a80SChris Mason other->in_tree = 0; 307a52d9a80SChris Mason rb_erase(&other->rb_node, &tree->state); 308a52d9a80SChris Mason free_extent_state(other); 309a52d9a80SChris Mason } 310a52d9a80SChris Mason } 311a52d9a80SChris Mason other_node = rb_next(&state->rb_node); 312a52d9a80SChris Mason if (other_node) { 313a52d9a80SChris Mason other = rb_entry(other_node, struct extent_state, rb_node); 314a52d9a80SChris Mason if (other->start == state->end + 1 && 315a52d9a80SChris Mason other->state == state->state) { 316a52d9a80SChris Mason other->start = state->start; 317a52d9a80SChris Mason state->in_tree = 0; 318a52d9a80SChris Mason rb_erase(&state->rb_node, &tree->state); 319a52d9a80SChris Mason free_extent_state(state); 320a52d9a80SChris Mason } 321a52d9a80SChris Mason } 322a52d9a80SChris Mason return 0; 323a52d9a80SChris Mason } 324a52d9a80SChris Mason 325a52d9a80SChris Mason /* 326a52d9a80SChris Mason * insert an extent_state struct into the tree. 'bits' are set on the 327a52d9a80SChris Mason * struct before it is inserted. 328a52d9a80SChris Mason * 329a52d9a80SChris Mason * This may return -EEXIST if the extent is already there, in which case the 330a52d9a80SChris Mason * state struct is freed. 331a52d9a80SChris Mason * 332a52d9a80SChris Mason * The tree lock is not taken internally. This is a utility function and 333a52d9a80SChris Mason * probably isn't what you want to call (see set/clear_extent_bit). 334a52d9a80SChris Mason */ 335a52d9a80SChris Mason static int insert_state(struct extent_map_tree *tree, 336a52d9a80SChris Mason struct extent_state *state, u64 start, u64 end, 337a52d9a80SChris Mason int bits) 338a52d9a80SChris Mason { 339a52d9a80SChris Mason struct rb_node *node; 340a52d9a80SChris Mason 341a52d9a80SChris Mason if (end < start) { 342a52d9a80SChris Mason printk("end < start %Lu %Lu\n", end, start); 343a52d9a80SChris Mason WARN_ON(1); 344a52d9a80SChris Mason } 345a52d9a80SChris Mason state->state |= bits; 346a52d9a80SChris Mason state->start = start; 347a52d9a80SChris Mason state->end = end; 348a52d9a80SChris Mason if ((end & 4095) == 0) { 349a52d9a80SChris Mason printk("insert state %Lu %Lu strange end\n", start, end); 350a52d9a80SChris Mason WARN_ON(1); 351a52d9a80SChris Mason } 352a52d9a80SChris Mason node = tree_insert(&tree->state, end, &state->rb_node); 353a52d9a80SChris Mason if (node) { 354a52d9a80SChris Mason struct extent_state *found; 355a52d9a80SChris Mason found = rb_entry(node, struct extent_state, rb_node); 356a52d9a80SChris Mason printk("found node %Lu %Lu on insert of %Lu %Lu\n", found->start, found->end, start, end); 357a52d9a80SChris Mason free_extent_state(state); 358a52d9a80SChris Mason return -EEXIST; 359a52d9a80SChris Mason } 360a52d9a80SChris Mason merge_state(tree, state); 361a52d9a80SChris Mason return 0; 362a52d9a80SChris Mason } 363a52d9a80SChris Mason 364a52d9a80SChris Mason /* 365a52d9a80SChris Mason * split a given extent state struct in two, inserting the preallocated 366a52d9a80SChris Mason * struct 'prealloc' as the newly created second half. 'split' indicates an 367a52d9a80SChris Mason * offset inside 'orig' where it should be split. 368a52d9a80SChris Mason * 369a52d9a80SChris Mason * Before calling, 370a52d9a80SChris Mason * the tree has 'orig' at [orig->start, orig->end]. After calling, there 371a52d9a80SChris Mason * are two extent state structs in the tree: 372a52d9a80SChris Mason * prealloc: [orig->start, split - 1] 373a52d9a80SChris Mason * orig: [ split, orig->end ] 374a52d9a80SChris Mason * 375a52d9a80SChris Mason * The tree locks are not taken by this function. They need to be held 376a52d9a80SChris Mason * by the caller. 377a52d9a80SChris Mason */ 378a52d9a80SChris Mason static int split_state(struct extent_map_tree *tree, struct extent_state *orig, 379a52d9a80SChris Mason struct extent_state *prealloc, u64 split) 380a52d9a80SChris Mason { 381a52d9a80SChris Mason struct rb_node *node; 382a52d9a80SChris Mason prealloc->start = orig->start; 383a52d9a80SChris Mason prealloc->end = split - 1; 384a52d9a80SChris Mason prealloc->state = orig->state; 385a52d9a80SChris Mason orig->start = split; 386a52d9a80SChris Mason if ((prealloc->end & 4095) == 0) { 387a52d9a80SChris Mason printk("insert state %Lu %Lu strange end\n", prealloc->start, 388a52d9a80SChris Mason prealloc->end); 389a52d9a80SChris Mason WARN_ON(1); 390a52d9a80SChris Mason } 391a52d9a80SChris Mason node = tree_insert(&tree->state, prealloc->end, &prealloc->rb_node); 392a52d9a80SChris Mason if (node) { 393a52d9a80SChris Mason struct extent_state *found; 394a52d9a80SChris Mason found = rb_entry(node, struct extent_state, rb_node); 395a52d9a80SChris Mason printk("found node %Lu %Lu on insert of %Lu %Lu\n", found->start, found->end, prealloc->start, prealloc->end); 396a52d9a80SChris Mason free_extent_state(prealloc); 397a52d9a80SChris Mason return -EEXIST; 398a52d9a80SChris Mason } 399a52d9a80SChris Mason return 0; 400a52d9a80SChris Mason } 401a52d9a80SChris Mason 402a52d9a80SChris Mason /* 403a52d9a80SChris Mason * utility function to clear some bits in an extent state struct. 404a52d9a80SChris Mason * it will optionally wake up any one waiting on this state (wake == 1), or 405a52d9a80SChris Mason * forcibly remove the state from the tree (delete == 1). 406a52d9a80SChris Mason * 407a52d9a80SChris Mason * If no bits are set on the state struct after clearing things, the 408a52d9a80SChris Mason * struct is freed and removed from the tree 409a52d9a80SChris Mason */ 410a52d9a80SChris Mason static int clear_state_bit(struct extent_map_tree *tree, 411a52d9a80SChris Mason struct extent_state *state, int bits, int wake, 412a52d9a80SChris Mason int delete) 413a52d9a80SChris Mason { 414a52d9a80SChris Mason int ret = state->state & bits; 415a52d9a80SChris Mason state->state &= ~bits; 416a52d9a80SChris Mason if (wake) 417a52d9a80SChris Mason wake_up(&state->wq); 418a52d9a80SChris Mason if (delete || state->state == 0) { 419a52d9a80SChris Mason if (state->in_tree) { 420a52d9a80SChris Mason rb_erase(&state->rb_node, &tree->state); 421a52d9a80SChris Mason state->in_tree = 0; 422a52d9a80SChris Mason free_extent_state(state); 423a52d9a80SChris Mason } else { 424a52d9a80SChris Mason WARN_ON(1); 425a52d9a80SChris Mason } 426a52d9a80SChris Mason } else { 427a52d9a80SChris Mason merge_state(tree, state); 428a52d9a80SChris Mason } 429a52d9a80SChris Mason return ret; 430a52d9a80SChris Mason } 431a52d9a80SChris Mason 432a52d9a80SChris Mason /* 433a52d9a80SChris Mason * clear some bits on a range in the tree. This may require splitting 434a52d9a80SChris Mason * or inserting elements in the tree, so the gfp mask is used to 435a52d9a80SChris Mason * indicate which allocations or sleeping are allowed. 436a52d9a80SChris Mason * 437a52d9a80SChris Mason * pass 'wake' == 1 to kick any sleepers, and 'delete' == 1 to remove 438a52d9a80SChris Mason * the given range from the tree regardless of state (ie for truncate). 439a52d9a80SChris Mason * 440a52d9a80SChris Mason * the range [start, end] is inclusive. 441a52d9a80SChris Mason * 442a52d9a80SChris Mason * This takes the tree lock, and returns < 0 on error, > 0 if any of the 443a52d9a80SChris Mason * bits were already set, or zero if none of the bits were already set. 444a52d9a80SChris Mason */ 445a52d9a80SChris Mason int clear_extent_bit(struct extent_map_tree *tree, u64 start, u64 end, 446a52d9a80SChris Mason int bits, int wake, int delete, gfp_t mask) 447a52d9a80SChris Mason { 448a52d9a80SChris Mason struct extent_state *state; 449a52d9a80SChris Mason struct extent_state *prealloc = NULL; 450a52d9a80SChris Mason struct rb_node *node; 451a52d9a80SChris Mason int err; 452a52d9a80SChris Mason int set = 0; 453a52d9a80SChris Mason 454a52d9a80SChris Mason again: 455a52d9a80SChris Mason if (!prealloc && (mask & __GFP_WAIT)) { 456a52d9a80SChris Mason prealloc = alloc_extent_state(mask); 457a52d9a80SChris Mason if (!prealloc) 458a52d9a80SChris Mason return -ENOMEM; 459a52d9a80SChris Mason } 460a52d9a80SChris Mason 461a52d9a80SChris Mason write_lock_irq(&tree->lock); 462a52d9a80SChris Mason /* 463a52d9a80SChris Mason * this search will find the extents that end after 464a52d9a80SChris Mason * our range starts 465a52d9a80SChris Mason */ 466a52d9a80SChris Mason node = tree_search(&tree->state, start); 467a52d9a80SChris Mason if (!node) 468a52d9a80SChris Mason goto out; 469a52d9a80SChris Mason state = rb_entry(node, struct extent_state, rb_node); 470a52d9a80SChris Mason if (state->start > end) 471a52d9a80SChris Mason goto out; 472a52d9a80SChris Mason WARN_ON(state->end < start); 473a52d9a80SChris Mason 474a52d9a80SChris Mason /* 475a52d9a80SChris Mason * | ---- desired range ---- | 476a52d9a80SChris Mason * | state | or 477a52d9a80SChris Mason * | ------------- state -------------- | 478a52d9a80SChris Mason * 479a52d9a80SChris Mason * We need to split the extent we found, and may flip 480a52d9a80SChris Mason * bits on second half. 481a52d9a80SChris Mason * 482a52d9a80SChris Mason * If the extent we found extends past our range, we 483a52d9a80SChris Mason * just split and search again. It'll get split again 484a52d9a80SChris Mason * the next time though. 485a52d9a80SChris Mason * 486a52d9a80SChris Mason * If the extent we found is inside our range, we clear 487a52d9a80SChris Mason * the desired bit on it. 488a52d9a80SChris Mason */ 489a52d9a80SChris Mason 490a52d9a80SChris Mason if (state->start < start) { 491a52d9a80SChris Mason err = split_state(tree, state, prealloc, start); 492a52d9a80SChris Mason BUG_ON(err == -EEXIST); 493a52d9a80SChris Mason prealloc = NULL; 494a52d9a80SChris Mason if (err) 495a52d9a80SChris Mason goto out; 496a52d9a80SChris Mason if (state->end <= end) { 497a52d9a80SChris Mason start = state->end + 1; 498a52d9a80SChris Mason set |= clear_state_bit(tree, state, bits, 499a52d9a80SChris Mason wake, delete); 500a52d9a80SChris Mason } else { 501a52d9a80SChris Mason start = state->start; 502a52d9a80SChris Mason } 503a52d9a80SChris Mason goto search_again; 504a52d9a80SChris Mason } 505a52d9a80SChris Mason /* 506a52d9a80SChris Mason * | ---- desired range ---- | 507a52d9a80SChris Mason * | state | 508a52d9a80SChris Mason * We need to split the extent, and clear the bit 509a52d9a80SChris Mason * on the first half 510a52d9a80SChris Mason */ 511a52d9a80SChris Mason if (state->start <= end && state->end > end) { 512a52d9a80SChris Mason err = split_state(tree, state, prealloc, end + 1); 513a52d9a80SChris Mason BUG_ON(err == -EEXIST); 514a52d9a80SChris Mason 515a52d9a80SChris Mason if (wake) 516a52d9a80SChris Mason wake_up(&state->wq); 517a52d9a80SChris Mason set |= clear_state_bit(tree, prealloc, bits, 518a52d9a80SChris Mason wake, delete); 519a52d9a80SChris Mason prealloc = NULL; 520a52d9a80SChris Mason goto out; 521a52d9a80SChris Mason } 522a52d9a80SChris Mason 523a52d9a80SChris Mason start = state->end + 1; 524a52d9a80SChris Mason set |= clear_state_bit(tree, state, bits, wake, delete); 525a52d9a80SChris Mason goto search_again; 526a52d9a80SChris Mason 527a52d9a80SChris Mason out: 528a52d9a80SChris Mason write_unlock_irq(&tree->lock); 529a52d9a80SChris Mason if (prealloc) 530a52d9a80SChris Mason free_extent_state(prealloc); 531a52d9a80SChris Mason 532a52d9a80SChris Mason return set; 533a52d9a80SChris Mason 534a52d9a80SChris Mason search_again: 535a52d9a80SChris Mason if (start >= end) 536a52d9a80SChris Mason goto out; 537a52d9a80SChris Mason write_unlock_irq(&tree->lock); 538a52d9a80SChris Mason if (mask & __GFP_WAIT) 539a52d9a80SChris Mason cond_resched(); 540a52d9a80SChris Mason goto again; 541a52d9a80SChris Mason } 542a52d9a80SChris Mason EXPORT_SYMBOL(clear_extent_bit); 543a52d9a80SChris Mason 544a52d9a80SChris Mason static int wait_on_state(struct extent_map_tree *tree, 545a52d9a80SChris Mason struct extent_state *state) 546a52d9a80SChris Mason { 547a52d9a80SChris Mason DEFINE_WAIT(wait); 548a52d9a80SChris Mason prepare_to_wait(&state->wq, &wait, TASK_UNINTERRUPTIBLE); 549a52d9a80SChris Mason read_unlock_irq(&tree->lock); 550a52d9a80SChris Mason schedule(); 551a52d9a80SChris Mason read_lock_irq(&tree->lock); 552a52d9a80SChris Mason finish_wait(&state->wq, &wait); 553a52d9a80SChris Mason return 0; 554a52d9a80SChris Mason } 555a52d9a80SChris Mason 556a52d9a80SChris Mason /* 557a52d9a80SChris Mason * waits for one or more bits to clear on a range in the state tree. 558a52d9a80SChris Mason * The range [start, end] is inclusive. 559a52d9a80SChris Mason * The tree lock is taken by this function 560a52d9a80SChris Mason */ 561a52d9a80SChris Mason int wait_extent_bit(struct extent_map_tree *tree, u64 start, u64 end, int bits) 562a52d9a80SChris Mason { 563a52d9a80SChris Mason struct extent_state *state; 564a52d9a80SChris Mason struct rb_node *node; 565a52d9a80SChris Mason 566a52d9a80SChris Mason read_lock_irq(&tree->lock); 567a52d9a80SChris Mason again: 568a52d9a80SChris Mason while (1) { 569a52d9a80SChris Mason /* 570a52d9a80SChris Mason * this search will find all the extents that end after 571a52d9a80SChris Mason * our range starts 572a52d9a80SChris Mason */ 573a52d9a80SChris Mason node = tree_search(&tree->state, start); 574a52d9a80SChris Mason if (!node) 575a52d9a80SChris Mason break; 576a52d9a80SChris Mason 577a52d9a80SChris Mason state = rb_entry(node, struct extent_state, rb_node); 578a52d9a80SChris Mason 579a52d9a80SChris Mason if (state->start > end) 580a52d9a80SChris Mason goto out; 581a52d9a80SChris Mason 582a52d9a80SChris Mason if (state->state & bits) { 583a52d9a80SChris Mason start = state->start; 584a52d9a80SChris Mason atomic_inc(&state->refs); 585a52d9a80SChris Mason wait_on_state(tree, state); 586a52d9a80SChris Mason free_extent_state(state); 587a52d9a80SChris Mason goto again; 588a52d9a80SChris Mason } 589a52d9a80SChris Mason start = state->end + 1; 590a52d9a80SChris Mason 591a52d9a80SChris Mason if (start > end) 592a52d9a80SChris Mason break; 593a52d9a80SChris Mason 594a52d9a80SChris Mason if (need_resched()) { 595a52d9a80SChris Mason read_unlock_irq(&tree->lock); 596a52d9a80SChris Mason cond_resched(); 597a52d9a80SChris Mason read_lock_irq(&tree->lock); 598a52d9a80SChris Mason } 599a52d9a80SChris Mason } 600a52d9a80SChris Mason out: 601a52d9a80SChris Mason read_unlock_irq(&tree->lock); 602a52d9a80SChris Mason return 0; 603a52d9a80SChris Mason } 604a52d9a80SChris Mason EXPORT_SYMBOL(wait_extent_bit); 605a52d9a80SChris Mason 606a52d9a80SChris Mason /* 607a52d9a80SChris Mason * set some bits on a range in the tree. This may require allocations 608a52d9a80SChris Mason * or sleeping, so the gfp mask is used to indicate what is allowed. 609a52d9a80SChris Mason * 610a52d9a80SChris Mason * If 'exclusive' == 1, this will fail with -EEXIST if some part of the 611a52d9a80SChris Mason * range already has the desired bits set. The start of the existing 612a52d9a80SChris Mason * range is returned in failed_start in this case. 613a52d9a80SChris Mason * 614a52d9a80SChris Mason * [start, end] is inclusive 615a52d9a80SChris Mason * This takes the tree lock. 616a52d9a80SChris Mason */ 617a52d9a80SChris Mason int set_extent_bit(struct extent_map_tree *tree, u64 start, u64 end, int bits, 618a52d9a80SChris Mason int exclusive, u64 *failed_start, gfp_t mask) 619a52d9a80SChris Mason { 620a52d9a80SChris Mason struct extent_state *state; 621a52d9a80SChris Mason struct extent_state *prealloc = NULL; 622a52d9a80SChris Mason struct rb_node *node; 623a52d9a80SChris Mason int err = 0; 624a52d9a80SChris Mason int set; 625a52d9a80SChris Mason u64 last_start; 626a52d9a80SChris Mason u64 last_end; 627a52d9a80SChris Mason again: 628a52d9a80SChris Mason if (!prealloc && (mask & __GFP_WAIT)) { 629a52d9a80SChris Mason prealloc = alloc_extent_state(mask); 630a52d9a80SChris Mason if (!prealloc) 631a52d9a80SChris Mason return -ENOMEM; 632a52d9a80SChris Mason } 633a52d9a80SChris Mason 634a52d9a80SChris Mason write_lock_irq(&tree->lock); 635a52d9a80SChris Mason /* 636a52d9a80SChris Mason * this search will find all the extents that end after 637a52d9a80SChris Mason * our range starts. 638a52d9a80SChris Mason */ 639a52d9a80SChris Mason node = tree_search(&tree->state, start); 640a52d9a80SChris Mason if (!node) { 641a52d9a80SChris Mason err = insert_state(tree, prealloc, start, end, bits); 642a52d9a80SChris Mason prealloc = NULL; 643a52d9a80SChris Mason BUG_ON(err == -EEXIST); 644a52d9a80SChris Mason goto out; 645a52d9a80SChris Mason } 646a52d9a80SChris Mason 647a52d9a80SChris Mason state = rb_entry(node, struct extent_state, rb_node); 648a52d9a80SChris Mason last_start = state->start; 649a52d9a80SChris Mason last_end = state->end; 650a52d9a80SChris Mason 651a52d9a80SChris Mason /* 652a52d9a80SChris Mason * | ---- desired range ---- | 653a52d9a80SChris Mason * | state | 654a52d9a80SChris Mason * 655a52d9a80SChris Mason * Just lock what we found and keep going 656a52d9a80SChris Mason */ 657a52d9a80SChris Mason if (state->start == start && state->end <= end) { 658a52d9a80SChris Mason set = state->state & bits; 659a52d9a80SChris Mason if (set && exclusive) { 660a52d9a80SChris Mason *failed_start = state->start; 661a52d9a80SChris Mason err = -EEXIST; 662a52d9a80SChris Mason goto out; 663a52d9a80SChris Mason } 664a52d9a80SChris Mason state->state |= bits; 665a52d9a80SChris Mason start = state->end + 1; 666a52d9a80SChris Mason merge_state(tree, state); 667a52d9a80SChris Mason goto search_again; 668a52d9a80SChris Mason } 669a52d9a80SChris Mason 670a52d9a80SChris Mason /* 671a52d9a80SChris Mason * | ---- desired range ---- | 672a52d9a80SChris Mason * | state | 673a52d9a80SChris Mason * or 674a52d9a80SChris Mason * | ------------- state -------------- | 675a52d9a80SChris Mason * 676a52d9a80SChris Mason * We need to split the extent we found, and may flip bits on 677a52d9a80SChris Mason * second half. 678a52d9a80SChris Mason * 679a52d9a80SChris Mason * If the extent we found extends past our 680a52d9a80SChris Mason * range, we just split and search again. It'll get split 681a52d9a80SChris Mason * again the next time though. 682a52d9a80SChris Mason * 683a52d9a80SChris Mason * If the extent we found is inside our range, we set the 684a52d9a80SChris Mason * desired bit on it. 685a52d9a80SChris Mason */ 686a52d9a80SChris Mason if (state->start < start) { 687a52d9a80SChris Mason set = state->state & bits; 688a52d9a80SChris Mason if (exclusive && set) { 689a52d9a80SChris Mason *failed_start = start; 690a52d9a80SChris Mason err = -EEXIST; 691a52d9a80SChris Mason goto out; 692a52d9a80SChris Mason } 693a52d9a80SChris Mason err = split_state(tree, state, prealloc, start); 694a52d9a80SChris Mason BUG_ON(err == -EEXIST); 695a52d9a80SChris Mason prealloc = NULL; 696a52d9a80SChris Mason if (err) 697a52d9a80SChris Mason goto out; 698a52d9a80SChris Mason if (state->end <= end) { 699a52d9a80SChris Mason state->state |= bits; 700a52d9a80SChris Mason start = state->end + 1; 701a52d9a80SChris Mason merge_state(tree, state); 702a52d9a80SChris Mason } else { 703a52d9a80SChris Mason start = state->start; 704a52d9a80SChris Mason } 705a52d9a80SChris Mason goto search_again; 706a52d9a80SChris Mason } 707a52d9a80SChris Mason /* 708a52d9a80SChris Mason * | ---- desired range ---- | 709a52d9a80SChris Mason * | state | 710a52d9a80SChris Mason * We need to split the extent, and set the bit 711a52d9a80SChris Mason * on the first half 712a52d9a80SChris Mason */ 713a52d9a80SChris Mason if (state->start <= end && state->end > end) { 714a52d9a80SChris Mason set = state->state & bits; 715a52d9a80SChris Mason if (exclusive && set) { 716a52d9a80SChris Mason *failed_start = start; 717a52d9a80SChris Mason err = -EEXIST; 718a52d9a80SChris Mason goto out; 719a52d9a80SChris Mason } 720a52d9a80SChris Mason err = split_state(tree, state, prealloc, end + 1); 721a52d9a80SChris Mason BUG_ON(err == -EEXIST); 722a52d9a80SChris Mason 723a52d9a80SChris Mason prealloc->state |= bits; 724a52d9a80SChris Mason merge_state(tree, prealloc); 725a52d9a80SChris Mason prealloc = NULL; 726a52d9a80SChris Mason goto out; 727a52d9a80SChris Mason } 728a52d9a80SChris Mason 729a52d9a80SChris Mason /* 730a52d9a80SChris Mason * | ---- desired range ---- | 731a52d9a80SChris Mason * | state | or | state | 732a52d9a80SChris Mason * 733a52d9a80SChris Mason * There's a hole, we need to insert something in it and 734a52d9a80SChris Mason * ignore the extent we found. 735a52d9a80SChris Mason */ 736a52d9a80SChris Mason if (state->start > start) { 737a52d9a80SChris Mason u64 this_end; 738a52d9a80SChris Mason if (end < last_start) 739a52d9a80SChris Mason this_end = end; 740a52d9a80SChris Mason else 741a52d9a80SChris Mason this_end = last_start -1; 742a52d9a80SChris Mason err = insert_state(tree, prealloc, start, this_end, 743a52d9a80SChris Mason bits); 744a52d9a80SChris Mason prealloc = NULL; 745a52d9a80SChris Mason BUG_ON(err == -EEXIST); 746a52d9a80SChris Mason if (err) 747a52d9a80SChris Mason goto out; 748a52d9a80SChris Mason start = this_end + 1; 749a52d9a80SChris Mason goto search_again; 750a52d9a80SChris Mason } 751a52d9a80SChris Mason goto search_again; 752a52d9a80SChris Mason 753a52d9a80SChris Mason out: 754a52d9a80SChris Mason write_unlock_irq(&tree->lock); 755a52d9a80SChris Mason if (prealloc) 756a52d9a80SChris Mason free_extent_state(prealloc); 757a52d9a80SChris Mason 758a52d9a80SChris Mason return err; 759a52d9a80SChris Mason 760a52d9a80SChris Mason search_again: 761a52d9a80SChris Mason if (start > end) 762a52d9a80SChris Mason goto out; 763a52d9a80SChris Mason write_unlock_irq(&tree->lock); 764a52d9a80SChris Mason if (mask & __GFP_WAIT) 765a52d9a80SChris Mason cond_resched(); 766a52d9a80SChris Mason goto again; 767a52d9a80SChris Mason } 768a52d9a80SChris Mason EXPORT_SYMBOL(set_extent_bit); 769a52d9a80SChris Mason 770a52d9a80SChris Mason /* wrappers around set/clear extent bit */ 771a52d9a80SChris Mason int set_extent_dirty(struct extent_map_tree *tree, u64 start, u64 end, 772a52d9a80SChris Mason gfp_t mask) 773a52d9a80SChris Mason { 774a52d9a80SChris Mason return set_extent_bit(tree, start, end, EXTENT_DIRTY, 0, NULL, 775a52d9a80SChris Mason mask); 776a52d9a80SChris Mason } 777a52d9a80SChris Mason EXPORT_SYMBOL(set_extent_dirty); 778a52d9a80SChris Mason 779b888db2bSChris Mason int set_extent_delalloc(struct extent_map_tree *tree, u64 start, u64 end, 780b888db2bSChris Mason gfp_t mask) 781b888db2bSChris Mason { 782b888db2bSChris Mason return set_extent_bit(tree, start, end, 783b888db2bSChris Mason EXTENT_DELALLOC | EXTENT_DIRTY, 0, NULL, 784b888db2bSChris Mason mask); 785b888db2bSChris Mason } 786b888db2bSChris Mason EXPORT_SYMBOL(set_extent_delalloc); 787b888db2bSChris Mason 788a52d9a80SChris Mason int clear_extent_dirty(struct extent_map_tree *tree, u64 start, u64 end, 789a52d9a80SChris Mason gfp_t mask) 790a52d9a80SChris Mason { 791b888db2bSChris Mason return clear_extent_bit(tree, start, end, 792b888db2bSChris Mason EXTENT_DIRTY | EXTENT_DELALLOC, 0, 0, mask); 793a52d9a80SChris Mason } 794a52d9a80SChris Mason EXPORT_SYMBOL(clear_extent_dirty); 795a52d9a80SChris Mason 796a52d9a80SChris Mason int set_extent_new(struct extent_map_tree *tree, u64 start, u64 end, 797a52d9a80SChris Mason gfp_t mask) 798a52d9a80SChris Mason { 799a52d9a80SChris Mason return set_extent_bit(tree, start, end, EXTENT_NEW, 0, NULL, 800a52d9a80SChris Mason mask); 801a52d9a80SChris Mason } 802a52d9a80SChris Mason EXPORT_SYMBOL(set_extent_new); 803a52d9a80SChris Mason 804a52d9a80SChris Mason int clear_extent_new(struct extent_map_tree *tree, u64 start, u64 end, 805a52d9a80SChris Mason gfp_t mask) 806a52d9a80SChris Mason { 807a52d9a80SChris Mason return clear_extent_bit(tree, start, end, EXTENT_NEW, 0, 0, mask); 808a52d9a80SChris Mason } 809a52d9a80SChris Mason EXPORT_SYMBOL(clear_extent_new); 810a52d9a80SChris Mason 811a52d9a80SChris Mason int set_extent_uptodate(struct extent_map_tree *tree, u64 start, u64 end, 812a52d9a80SChris Mason gfp_t mask) 813a52d9a80SChris Mason { 814a52d9a80SChris Mason return set_extent_bit(tree, start, end, EXTENT_UPTODATE, 0, NULL, 815a52d9a80SChris Mason mask); 816a52d9a80SChris Mason } 817a52d9a80SChris Mason EXPORT_SYMBOL(set_extent_uptodate); 818a52d9a80SChris Mason 819a52d9a80SChris Mason int clear_extent_uptodate(struct extent_map_tree *tree, u64 start, u64 end, 820a52d9a80SChris Mason gfp_t mask) 821a52d9a80SChris Mason { 822a52d9a80SChris Mason return clear_extent_bit(tree, start, end, EXTENT_UPTODATE, 0, 0, mask); 823a52d9a80SChris Mason } 824a52d9a80SChris Mason EXPORT_SYMBOL(clear_extent_uptodate); 825a52d9a80SChris Mason 826a52d9a80SChris Mason int set_extent_writeback(struct extent_map_tree *tree, u64 start, u64 end, 827a52d9a80SChris Mason gfp_t mask) 828a52d9a80SChris Mason { 829a52d9a80SChris Mason return set_extent_bit(tree, start, end, EXTENT_WRITEBACK, 830a52d9a80SChris Mason 0, NULL, mask); 831a52d9a80SChris Mason } 832a52d9a80SChris Mason EXPORT_SYMBOL(set_extent_writeback); 833a52d9a80SChris Mason 834a52d9a80SChris Mason int clear_extent_writeback(struct extent_map_tree *tree, u64 start, u64 end, 835a52d9a80SChris Mason gfp_t mask) 836a52d9a80SChris Mason { 837a52d9a80SChris Mason return clear_extent_bit(tree, start, end, EXTENT_WRITEBACK, 1, 0, mask); 838a52d9a80SChris Mason } 839a52d9a80SChris Mason EXPORT_SYMBOL(clear_extent_writeback); 840a52d9a80SChris Mason 841a52d9a80SChris Mason int wait_on_extent_writeback(struct extent_map_tree *tree, u64 start, u64 end) 842a52d9a80SChris Mason { 843a52d9a80SChris Mason return wait_extent_bit(tree, start, end, EXTENT_WRITEBACK); 844a52d9a80SChris Mason } 845a52d9a80SChris Mason EXPORT_SYMBOL(wait_on_extent_writeback); 846a52d9a80SChris Mason 847a52d9a80SChris Mason /* 848a52d9a80SChris Mason * locks a range in ascending order, waiting for any locked regions 849a52d9a80SChris Mason * it hits on the way. [start,end] are inclusive, and this will sleep. 850a52d9a80SChris Mason */ 851a52d9a80SChris Mason int lock_extent(struct extent_map_tree *tree, u64 start, u64 end, gfp_t mask) 852a52d9a80SChris Mason { 853a52d9a80SChris Mason int err; 854a52d9a80SChris Mason u64 failed_start; 855a52d9a80SChris Mason while (1) { 856a52d9a80SChris Mason err = set_extent_bit(tree, start, end, EXTENT_LOCKED, 1, 857a52d9a80SChris Mason &failed_start, mask); 858a52d9a80SChris Mason if (err == -EEXIST && (mask & __GFP_WAIT)) { 859a52d9a80SChris Mason wait_extent_bit(tree, failed_start, end, EXTENT_LOCKED); 860a52d9a80SChris Mason start = failed_start; 861a52d9a80SChris Mason } else { 862a52d9a80SChris Mason break; 863a52d9a80SChris Mason } 864a52d9a80SChris Mason WARN_ON(start > end); 865a52d9a80SChris Mason } 866a52d9a80SChris Mason return err; 867a52d9a80SChris Mason } 868a52d9a80SChris Mason EXPORT_SYMBOL(lock_extent); 869a52d9a80SChris Mason 870a52d9a80SChris Mason int unlock_extent(struct extent_map_tree *tree, u64 start, u64 end, 871a52d9a80SChris Mason gfp_t mask) 872a52d9a80SChris Mason { 873a52d9a80SChris Mason return clear_extent_bit(tree, start, end, EXTENT_LOCKED, 1, 0, mask); 874a52d9a80SChris Mason } 875a52d9a80SChris Mason EXPORT_SYMBOL(unlock_extent); 876a52d9a80SChris Mason 877a52d9a80SChris Mason /* 878a52d9a80SChris Mason * helper function to set pages and extents in the tree dirty 879a52d9a80SChris Mason */ 880a52d9a80SChris Mason int set_range_dirty(struct extent_map_tree *tree, u64 start, u64 end) 881a52d9a80SChris Mason { 882a52d9a80SChris Mason unsigned long index = start >> PAGE_CACHE_SHIFT; 883a52d9a80SChris Mason unsigned long end_index = end >> PAGE_CACHE_SHIFT; 884a52d9a80SChris Mason struct page *page; 885a52d9a80SChris Mason 886a52d9a80SChris Mason while (index <= end_index) { 887a52d9a80SChris Mason page = find_get_page(tree->mapping, index); 888a52d9a80SChris Mason BUG_ON(!page); 889a52d9a80SChris Mason __set_page_dirty_nobuffers(page); 890a52d9a80SChris Mason page_cache_release(page); 891a52d9a80SChris Mason index++; 892a52d9a80SChris Mason } 893a52d9a80SChris Mason set_extent_dirty(tree, start, end, GFP_NOFS); 894a52d9a80SChris Mason return 0; 895a52d9a80SChris Mason } 896a52d9a80SChris Mason EXPORT_SYMBOL(set_range_dirty); 897a52d9a80SChris Mason 898a52d9a80SChris Mason /* 899a52d9a80SChris Mason * helper function to set both pages and extents in the tree writeback 900a52d9a80SChris Mason */ 901a52d9a80SChris Mason int set_range_writeback(struct extent_map_tree *tree, u64 start, u64 end) 902a52d9a80SChris Mason { 903a52d9a80SChris Mason unsigned long index = start >> PAGE_CACHE_SHIFT; 904a52d9a80SChris Mason unsigned long end_index = end >> PAGE_CACHE_SHIFT; 905a52d9a80SChris Mason struct page *page; 906a52d9a80SChris Mason 907a52d9a80SChris Mason while (index <= end_index) { 908a52d9a80SChris Mason page = find_get_page(tree->mapping, index); 909a52d9a80SChris Mason BUG_ON(!page); 910a52d9a80SChris Mason set_page_writeback(page); 911a52d9a80SChris Mason page_cache_release(page); 912a52d9a80SChris Mason index++; 913a52d9a80SChris Mason } 914a52d9a80SChris Mason set_extent_writeback(tree, start, end, GFP_NOFS); 915a52d9a80SChris Mason return 0; 916a52d9a80SChris Mason } 917a52d9a80SChris Mason EXPORT_SYMBOL(set_range_writeback); 918a52d9a80SChris Mason 919b888db2bSChris Mason u64 find_lock_delalloc_range(struct extent_map_tree *tree, 920b888db2bSChris Mason u64 start, u64 lock_start, u64 *end, u64 max_bytes) 921b888db2bSChris Mason { 922b888db2bSChris Mason struct rb_node *node; 923b888db2bSChris Mason struct extent_state *state; 924b888db2bSChris Mason u64 cur_start = start; 925b888db2bSChris Mason u64 found = 0; 926b888db2bSChris Mason u64 total_bytes = 0; 927b888db2bSChris Mason 928b888db2bSChris Mason write_lock_irq(&tree->lock); 929b888db2bSChris Mason /* 930b888db2bSChris Mason * this search will find all the extents that end after 931b888db2bSChris Mason * our range starts. 932b888db2bSChris Mason */ 933b888db2bSChris Mason search_again: 934b888db2bSChris Mason node = tree_search(&tree->state, cur_start); 935b888db2bSChris Mason if (!node || IS_ERR(node)) { 936b888db2bSChris Mason goto out; 937b888db2bSChris Mason } 938b888db2bSChris Mason 939b888db2bSChris Mason while(1) { 940b888db2bSChris Mason state = rb_entry(node, struct extent_state, rb_node); 941b888db2bSChris Mason if (state->start != cur_start) { 942b888db2bSChris Mason goto out; 943b888db2bSChris Mason } 944b888db2bSChris Mason if (!(state->state & EXTENT_DELALLOC)) { 945b888db2bSChris Mason goto out; 946b888db2bSChris Mason } 947b888db2bSChris Mason if (state->start >= lock_start) { 948b888db2bSChris Mason if (state->state & EXTENT_LOCKED) { 949b888db2bSChris Mason DEFINE_WAIT(wait); 950b888db2bSChris Mason atomic_inc(&state->refs); 951b888db2bSChris Mason write_unlock_irq(&tree->lock); 952b888db2bSChris Mason schedule(); 953b888db2bSChris Mason write_lock_irq(&tree->lock); 954b888db2bSChris Mason finish_wait(&state->wq, &wait); 955b888db2bSChris Mason free_extent_state(state); 956b888db2bSChris Mason goto search_again; 957b888db2bSChris Mason } 958b888db2bSChris Mason state->state |= EXTENT_LOCKED; 959b888db2bSChris Mason } 960b888db2bSChris Mason found++; 961b888db2bSChris Mason *end = state->end; 962b888db2bSChris Mason cur_start = state->end + 1; 963b888db2bSChris Mason node = rb_next(node); 964b888db2bSChris Mason if (!node) 965b888db2bSChris Mason break; 966b888db2bSChris Mason total_bytes = state->end - state->start + 1; 967b888db2bSChris Mason if (total_bytes >= max_bytes) 968b888db2bSChris Mason break; 969b888db2bSChris Mason } 970b888db2bSChris Mason out: 971b888db2bSChris Mason write_unlock_irq(&tree->lock); 972b888db2bSChris Mason return found; 973b888db2bSChris Mason } 974b888db2bSChris Mason 975a52d9a80SChris Mason /* 976a52d9a80SChris Mason * helper function to lock both pages and extents in the tree. 977a52d9a80SChris Mason * pages must be locked first. 978a52d9a80SChris Mason */ 979a52d9a80SChris Mason int lock_range(struct extent_map_tree *tree, u64 start, u64 end) 980a52d9a80SChris Mason { 981a52d9a80SChris Mason unsigned long index = start >> PAGE_CACHE_SHIFT; 982a52d9a80SChris Mason unsigned long end_index = end >> PAGE_CACHE_SHIFT; 983a52d9a80SChris Mason struct page *page; 984a52d9a80SChris Mason int err; 985a52d9a80SChris Mason 986a52d9a80SChris Mason while (index <= end_index) { 987a52d9a80SChris Mason page = grab_cache_page(tree->mapping, index); 988a52d9a80SChris Mason if (!page) { 989a52d9a80SChris Mason err = -ENOMEM; 990a52d9a80SChris Mason goto failed; 991a52d9a80SChris Mason } 992a52d9a80SChris Mason if (IS_ERR(page)) { 993a52d9a80SChris Mason err = PTR_ERR(page); 994a52d9a80SChris Mason goto failed; 995a52d9a80SChris Mason } 996a52d9a80SChris Mason index++; 997a52d9a80SChris Mason } 998a52d9a80SChris Mason lock_extent(tree, start, end, GFP_NOFS); 999a52d9a80SChris Mason return 0; 1000a52d9a80SChris Mason 1001a52d9a80SChris Mason failed: 1002a52d9a80SChris Mason /* 1003a52d9a80SChris Mason * we failed above in getting the page at 'index', so we undo here 1004a52d9a80SChris Mason * up to but not including the page at 'index' 1005a52d9a80SChris Mason */ 1006a52d9a80SChris Mason end_index = index; 1007a52d9a80SChris Mason index = start >> PAGE_CACHE_SHIFT; 1008a52d9a80SChris Mason while (index < end_index) { 1009a52d9a80SChris Mason page = find_get_page(tree->mapping, index); 1010a52d9a80SChris Mason unlock_page(page); 1011a52d9a80SChris Mason page_cache_release(page); 1012a52d9a80SChris Mason index++; 1013a52d9a80SChris Mason } 1014a52d9a80SChris Mason return err; 1015a52d9a80SChris Mason } 1016a52d9a80SChris Mason EXPORT_SYMBOL(lock_range); 1017a52d9a80SChris Mason 1018a52d9a80SChris Mason /* 1019a52d9a80SChris Mason * helper function to unlock both pages and extents in the tree. 1020a52d9a80SChris Mason */ 1021a52d9a80SChris Mason int unlock_range(struct extent_map_tree *tree, u64 start, u64 end) 1022a52d9a80SChris Mason { 1023a52d9a80SChris Mason unsigned long index = start >> PAGE_CACHE_SHIFT; 1024a52d9a80SChris Mason unsigned long end_index = end >> PAGE_CACHE_SHIFT; 1025a52d9a80SChris Mason struct page *page; 1026a52d9a80SChris Mason 1027a52d9a80SChris Mason while (index <= end_index) { 1028a52d9a80SChris Mason page = find_get_page(tree->mapping, index); 1029a52d9a80SChris Mason unlock_page(page); 1030a52d9a80SChris Mason page_cache_release(page); 1031a52d9a80SChris Mason index++; 1032a52d9a80SChris Mason } 1033a52d9a80SChris Mason unlock_extent(tree, start, end, GFP_NOFS); 1034a52d9a80SChris Mason return 0; 1035a52d9a80SChris Mason } 1036a52d9a80SChris Mason EXPORT_SYMBOL(unlock_range); 1037a52d9a80SChris Mason 1038*07157aacSChris Mason int set_state_private(struct extent_map_tree *tree, u64 start, u64 private) 1039*07157aacSChris Mason { 1040*07157aacSChris Mason struct rb_node *node; 1041*07157aacSChris Mason struct extent_state *state; 1042*07157aacSChris Mason int ret = 0; 1043*07157aacSChris Mason 1044*07157aacSChris Mason write_lock_irq(&tree->lock); 1045*07157aacSChris Mason /* 1046*07157aacSChris Mason * this search will find all the extents that end after 1047*07157aacSChris Mason * our range starts. 1048*07157aacSChris Mason */ 1049*07157aacSChris Mason node = tree_search(&tree->state, start); 1050*07157aacSChris Mason if (!node || IS_ERR(node)) { 1051*07157aacSChris Mason ret = -ENOENT; 1052*07157aacSChris Mason goto out; 1053*07157aacSChris Mason } 1054*07157aacSChris Mason state = rb_entry(node, struct extent_state, rb_node); 1055*07157aacSChris Mason if (state->start != start) { 1056*07157aacSChris Mason ret = -ENOENT; 1057*07157aacSChris Mason goto out; 1058*07157aacSChris Mason } 1059*07157aacSChris Mason state->private = private; 1060*07157aacSChris Mason out: 1061*07157aacSChris Mason write_unlock_irq(&tree->lock); 1062*07157aacSChris Mason return ret; 1063*07157aacSChris Mason 1064*07157aacSChris Mason } 1065*07157aacSChris Mason 1066*07157aacSChris Mason int get_state_private(struct extent_map_tree *tree, u64 start, u64 *private) 1067*07157aacSChris Mason { 1068*07157aacSChris Mason struct rb_node *node; 1069*07157aacSChris Mason struct extent_state *state; 1070*07157aacSChris Mason int ret = 0; 1071*07157aacSChris Mason 1072*07157aacSChris Mason read_lock_irq(&tree->lock); 1073*07157aacSChris Mason /* 1074*07157aacSChris Mason * this search will find all the extents that end after 1075*07157aacSChris Mason * our range starts. 1076*07157aacSChris Mason */ 1077*07157aacSChris Mason node = tree_search(&tree->state, start); 1078*07157aacSChris Mason if (!node || IS_ERR(node)) { 1079*07157aacSChris Mason ret = -ENOENT; 1080*07157aacSChris Mason goto out; 1081*07157aacSChris Mason } 1082*07157aacSChris Mason state = rb_entry(node, struct extent_state, rb_node); 1083*07157aacSChris Mason if (state->start != start) { 1084*07157aacSChris Mason ret = -ENOENT; 1085*07157aacSChris Mason goto out; 1086*07157aacSChris Mason } 1087*07157aacSChris Mason *private = state->private; 1088*07157aacSChris Mason out: 1089*07157aacSChris Mason read_unlock_irq(&tree->lock); 1090*07157aacSChris Mason return ret; 1091*07157aacSChris Mason } 1092*07157aacSChris Mason 1093a52d9a80SChris Mason /* 1094a52d9a80SChris Mason * searches a range in the state tree for a given mask. 1095a52d9a80SChris Mason * If 'filled' == 1, this returns 1 only if ever extent in the tree 1096a52d9a80SChris Mason * has the bits set. Otherwise, 1 is returned if any bit in the 1097a52d9a80SChris Mason * range is found set. 1098a52d9a80SChris Mason */ 1099a52d9a80SChris Mason static int test_range_bit(struct extent_map_tree *tree, u64 start, u64 end, 1100a52d9a80SChris Mason int bits, int filled) 1101a52d9a80SChris Mason { 1102a52d9a80SChris Mason struct extent_state *state = NULL; 1103a52d9a80SChris Mason struct rb_node *node; 1104a52d9a80SChris Mason int bitset = 0; 1105a52d9a80SChris Mason 1106a52d9a80SChris Mason read_lock_irq(&tree->lock); 1107a52d9a80SChris Mason node = tree_search(&tree->state, start); 1108a52d9a80SChris Mason while (node && start <= end) { 1109a52d9a80SChris Mason state = rb_entry(node, struct extent_state, rb_node); 1110a52d9a80SChris Mason if (state->start > end) 1111a52d9a80SChris Mason break; 1112a52d9a80SChris Mason 1113a52d9a80SChris Mason if (filled && state->start > start) { 1114a52d9a80SChris Mason bitset = 0; 1115a52d9a80SChris Mason break; 1116a52d9a80SChris Mason } 1117a52d9a80SChris Mason if (state->state & bits) { 1118a52d9a80SChris Mason bitset = 1; 1119a52d9a80SChris Mason if (!filled) 1120a52d9a80SChris Mason break; 1121a52d9a80SChris Mason } else if (filled) { 1122a52d9a80SChris Mason bitset = 0; 1123a52d9a80SChris Mason break; 1124a52d9a80SChris Mason } 1125a52d9a80SChris Mason start = state->end + 1; 1126a52d9a80SChris Mason if (start > end) 1127a52d9a80SChris Mason break; 1128a52d9a80SChris Mason node = rb_next(node); 1129a52d9a80SChris Mason } 1130a52d9a80SChris Mason read_unlock_irq(&tree->lock); 1131a52d9a80SChris Mason return bitset; 1132a52d9a80SChris Mason } 1133a52d9a80SChris Mason 1134a52d9a80SChris Mason /* 1135a52d9a80SChris Mason * helper function to set a given page up to date if all the 1136a52d9a80SChris Mason * extents in the tree for that page are up to date 1137a52d9a80SChris Mason */ 1138a52d9a80SChris Mason static int check_page_uptodate(struct extent_map_tree *tree, 1139a52d9a80SChris Mason struct page *page) 1140a52d9a80SChris Mason { 1141a52d9a80SChris Mason u64 start = page->index << PAGE_CACHE_SHIFT; 1142a52d9a80SChris Mason u64 end = start + PAGE_CACHE_SIZE - 1; 1143a52d9a80SChris Mason if (test_range_bit(tree, start, end, EXTENT_UPTODATE, 1)) 1144a52d9a80SChris Mason SetPageUptodate(page); 1145a52d9a80SChris Mason return 0; 1146a52d9a80SChris Mason } 1147a52d9a80SChris Mason 1148a52d9a80SChris Mason /* 1149a52d9a80SChris Mason * helper function to unlock a page if all the extents in the tree 1150a52d9a80SChris Mason * for that page are unlocked 1151a52d9a80SChris Mason */ 1152a52d9a80SChris Mason static int check_page_locked(struct extent_map_tree *tree, 1153a52d9a80SChris Mason struct page *page) 1154a52d9a80SChris Mason { 1155a52d9a80SChris Mason u64 start = page->index << PAGE_CACHE_SHIFT; 1156a52d9a80SChris Mason u64 end = start + PAGE_CACHE_SIZE - 1; 1157a52d9a80SChris Mason if (!test_range_bit(tree, start, end, EXTENT_LOCKED, 0)) 1158a52d9a80SChris Mason unlock_page(page); 1159a52d9a80SChris Mason return 0; 1160a52d9a80SChris Mason } 1161a52d9a80SChris Mason 1162a52d9a80SChris Mason /* 1163a52d9a80SChris Mason * helper function to end page writeback if all the extents 1164a52d9a80SChris Mason * in the tree for that page are done with writeback 1165a52d9a80SChris Mason */ 1166a52d9a80SChris Mason static int check_page_writeback(struct extent_map_tree *tree, 1167a52d9a80SChris Mason struct page *page) 1168a52d9a80SChris Mason { 1169a52d9a80SChris Mason u64 start = page->index << PAGE_CACHE_SHIFT; 1170a52d9a80SChris Mason u64 end = start + PAGE_CACHE_SIZE - 1; 1171a52d9a80SChris Mason if (!test_range_bit(tree, start, end, EXTENT_WRITEBACK, 0)) 1172a52d9a80SChris Mason end_page_writeback(page); 1173a52d9a80SChris Mason return 0; 1174a52d9a80SChris Mason } 1175a52d9a80SChris Mason 1176a52d9a80SChris Mason /* lots and lots of room for performance fixes in the end_bio funcs */ 1177a52d9a80SChris Mason 1178a52d9a80SChris Mason /* 1179a52d9a80SChris Mason * after a writepage IO is done, we need to: 1180a52d9a80SChris Mason * clear the uptodate bits on error 1181a52d9a80SChris Mason * clear the writeback bits in the extent tree for this IO 1182a52d9a80SChris Mason * end_page_writeback if the page has no more pending IO 1183a52d9a80SChris Mason * 1184a52d9a80SChris Mason * Scheduling is not allowed, so the extent state tree is expected 1185a52d9a80SChris Mason * to have one and only one object corresponding to this IO. 1186a52d9a80SChris Mason */ 1187a52d9a80SChris Mason static int end_bio_extent_writepage(struct bio *bio, 1188a52d9a80SChris Mason unsigned int bytes_done, int err) 1189a52d9a80SChris Mason { 1190a52d9a80SChris Mason const int uptodate = test_bit(BIO_UPTODATE, &bio->bi_flags); 1191a52d9a80SChris Mason struct bio_vec *bvec = bio->bi_io_vec + bio->bi_vcnt - 1; 1192a52d9a80SChris Mason struct extent_map_tree *tree = bio->bi_private; 1193a52d9a80SChris Mason u64 start; 1194a52d9a80SChris Mason u64 end; 1195a52d9a80SChris Mason int whole_page; 1196a52d9a80SChris Mason 1197a52d9a80SChris Mason if (bio->bi_size) 1198a52d9a80SChris Mason return 1; 1199a52d9a80SChris Mason 1200a52d9a80SChris Mason do { 1201a52d9a80SChris Mason struct page *page = bvec->bv_page; 1202a52d9a80SChris Mason start = (page->index << PAGE_CACHE_SHIFT) + bvec->bv_offset; 1203a52d9a80SChris Mason end = start + bvec->bv_len - 1; 1204a52d9a80SChris Mason 1205a52d9a80SChris Mason if (bvec->bv_offset == 0 && bvec->bv_len == PAGE_CACHE_SIZE) 1206a52d9a80SChris Mason whole_page = 1; 1207a52d9a80SChris Mason else 1208a52d9a80SChris Mason whole_page = 0; 1209a52d9a80SChris Mason 1210a52d9a80SChris Mason if (--bvec >= bio->bi_io_vec) 1211a52d9a80SChris Mason prefetchw(&bvec->bv_page->flags); 1212a52d9a80SChris Mason 1213a52d9a80SChris Mason if (!uptodate) { 1214a52d9a80SChris Mason clear_extent_uptodate(tree, start, end, GFP_ATOMIC); 1215a52d9a80SChris Mason ClearPageUptodate(page); 1216a52d9a80SChris Mason SetPageError(page); 1217a52d9a80SChris Mason } 1218a52d9a80SChris Mason clear_extent_writeback(tree, start, end, GFP_ATOMIC); 1219a52d9a80SChris Mason 1220a52d9a80SChris Mason if (whole_page) 1221a52d9a80SChris Mason end_page_writeback(page); 1222a52d9a80SChris Mason else 1223a52d9a80SChris Mason check_page_writeback(tree, page); 1224a52d9a80SChris Mason } while (bvec >= bio->bi_io_vec); 1225a52d9a80SChris Mason 1226a52d9a80SChris Mason bio_put(bio); 1227a52d9a80SChris Mason return 0; 1228a52d9a80SChris Mason } 1229a52d9a80SChris Mason 1230a52d9a80SChris Mason /* 1231a52d9a80SChris Mason * after a readpage IO is done, we need to: 1232a52d9a80SChris Mason * clear the uptodate bits on error 1233a52d9a80SChris Mason * set the uptodate bits if things worked 1234a52d9a80SChris Mason * set the page up to date if all extents in the tree are uptodate 1235a52d9a80SChris Mason * clear the lock bit in the extent tree 1236a52d9a80SChris Mason * unlock the page if there are no other extents locked for it 1237a52d9a80SChris Mason * 1238a52d9a80SChris Mason * Scheduling is not allowed, so the extent state tree is expected 1239a52d9a80SChris Mason * to have one and only one object corresponding to this IO. 1240a52d9a80SChris Mason */ 1241a52d9a80SChris Mason static int end_bio_extent_readpage(struct bio *bio, 1242a52d9a80SChris Mason unsigned int bytes_done, int err) 1243a52d9a80SChris Mason { 1244*07157aacSChris Mason int uptodate = test_bit(BIO_UPTODATE, &bio->bi_flags); 1245a52d9a80SChris Mason struct bio_vec *bvec = bio->bi_io_vec + bio->bi_vcnt - 1; 1246a52d9a80SChris Mason struct extent_map_tree *tree = bio->bi_private; 1247a52d9a80SChris Mason u64 start; 1248a52d9a80SChris Mason u64 end; 1249a52d9a80SChris Mason int whole_page; 1250*07157aacSChris Mason int ret; 1251a52d9a80SChris Mason 1252a52d9a80SChris Mason if (bio->bi_size) 1253a52d9a80SChris Mason return 1; 1254a52d9a80SChris Mason 1255a52d9a80SChris Mason do { 1256a52d9a80SChris Mason struct page *page = bvec->bv_page; 1257a52d9a80SChris Mason start = (page->index << PAGE_CACHE_SHIFT) + bvec->bv_offset; 1258a52d9a80SChris Mason end = start + bvec->bv_len - 1; 1259a52d9a80SChris Mason 1260a52d9a80SChris Mason if (bvec->bv_offset == 0 && bvec->bv_len == PAGE_CACHE_SIZE) 1261a52d9a80SChris Mason whole_page = 1; 1262a52d9a80SChris Mason else 1263a52d9a80SChris Mason whole_page = 0; 1264a52d9a80SChris Mason 1265a52d9a80SChris Mason if (--bvec >= bio->bi_io_vec) 1266a52d9a80SChris Mason prefetchw(&bvec->bv_page->flags); 1267a52d9a80SChris Mason 1268*07157aacSChris Mason if (uptodate && tree->ops && tree->ops->readpage_end_io_hook) { 1269*07157aacSChris Mason ret = tree->ops->readpage_end_io_hook(page, start, end); 1270*07157aacSChris Mason if (ret) 1271*07157aacSChris Mason uptodate = 0; 1272*07157aacSChris Mason } 1273a52d9a80SChris Mason if (uptodate) { 1274a52d9a80SChris Mason set_extent_uptodate(tree, start, end, GFP_ATOMIC); 1275a52d9a80SChris Mason if (whole_page) 1276a52d9a80SChris Mason SetPageUptodate(page); 1277a52d9a80SChris Mason else 1278a52d9a80SChris Mason check_page_uptodate(tree, page); 1279a52d9a80SChris Mason } else { 1280a52d9a80SChris Mason ClearPageUptodate(page); 1281a52d9a80SChris Mason SetPageError(page); 1282a52d9a80SChris Mason } 1283a52d9a80SChris Mason 1284a52d9a80SChris Mason unlock_extent(tree, start, end, GFP_ATOMIC); 1285a52d9a80SChris Mason 1286a52d9a80SChris Mason if (whole_page) 1287a52d9a80SChris Mason unlock_page(page); 1288a52d9a80SChris Mason else 1289a52d9a80SChris Mason check_page_locked(tree, page); 1290a52d9a80SChris Mason } while (bvec >= bio->bi_io_vec); 1291a52d9a80SChris Mason 1292a52d9a80SChris Mason bio_put(bio); 1293a52d9a80SChris Mason return 0; 1294a52d9a80SChris Mason } 1295a52d9a80SChris Mason 1296a52d9a80SChris Mason /* 1297a52d9a80SChris Mason * IO done from prepare_write is pretty simple, we just unlock 1298a52d9a80SChris Mason * the structs in the extent tree when done, and set the uptodate bits 1299a52d9a80SChris Mason * as appropriate. 1300a52d9a80SChris Mason */ 1301a52d9a80SChris Mason static int end_bio_extent_preparewrite(struct bio *bio, 1302a52d9a80SChris Mason unsigned int bytes_done, int err) 1303a52d9a80SChris Mason { 1304a52d9a80SChris Mason const int uptodate = test_bit(BIO_UPTODATE, &bio->bi_flags); 1305a52d9a80SChris Mason struct bio_vec *bvec = bio->bi_io_vec + bio->bi_vcnt - 1; 1306a52d9a80SChris Mason struct extent_map_tree *tree = bio->bi_private; 1307a52d9a80SChris Mason u64 start; 1308a52d9a80SChris Mason u64 end; 1309a52d9a80SChris Mason 1310a52d9a80SChris Mason if (bio->bi_size) 1311a52d9a80SChris Mason return 1; 1312a52d9a80SChris Mason 1313a52d9a80SChris Mason do { 1314a52d9a80SChris Mason struct page *page = bvec->bv_page; 1315a52d9a80SChris Mason start = (page->index << PAGE_CACHE_SHIFT) + bvec->bv_offset; 1316a52d9a80SChris Mason end = start + bvec->bv_len - 1; 1317a52d9a80SChris Mason 1318a52d9a80SChris Mason if (--bvec >= bio->bi_io_vec) 1319a52d9a80SChris Mason prefetchw(&bvec->bv_page->flags); 1320a52d9a80SChris Mason 1321a52d9a80SChris Mason if (uptodate) { 1322a52d9a80SChris Mason set_extent_uptodate(tree, start, end, GFP_ATOMIC); 1323a52d9a80SChris Mason } else { 1324a52d9a80SChris Mason ClearPageUptodate(page); 1325a52d9a80SChris Mason SetPageError(page); 1326a52d9a80SChris Mason } 1327a52d9a80SChris Mason 1328a52d9a80SChris Mason unlock_extent(tree, start, end, GFP_ATOMIC); 1329a52d9a80SChris Mason 1330a52d9a80SChris Mason } while (bvec >= bio->bi_io_vec); 1331a52d9a80SChris Mason 1332a52d9a80SChris Mason bio_put(bio); 1333a52d9a80SChris Mason return 0; 1334a52d9a80SChris Mason } 1335a52d9a80SChris Mason 1336a52d9a80SChris Mason static int submit_extent_page(int rw, struct extent_map_tree *tree, 1337a52d9a80SChris Mason struct page *page, sector_t sector, 1338a52d9a80SChris Mason size_t size, unsigned long offset, 1339a52d9a80SChris Mason struct block_device *bdev, 1340a52d9a80SChris Mason bio_end_io_t end_io_func) 1341a52d9a80SChris Mason { 1342a52d9a80SChris Mason struct bio *bio; 1343a52d9a80SChris Mason int ret = 0; 1344a52d9a80SChris Mason 1345a52d9a80SChris Mason bio = bio_alloc(GFP_NOIO, 1); 1346a52d9a80SChris Mason 1347a52d9a80SChris Mason bio->bi_sector = sector; 1348a52d9a80SChris Mason bio->bi_bdev = bdev; 1349a52d9a80SChris Mason bio->bi_io_vec[0].bv_page = page; 1350a52d9a80SChris Mason bio->bi_io_vec[0].bv_len = size; 1351a52d9a80SChris Mason bio->bi_io_vec[0].bv_offset = offset; 1352a52d9a80SChris Mason 1353a52d9a80SChris Mason bio->bi_vcnt = 1; 1354a52d9a80SChris Mason bio->bi_idx = 0; 1355a52d9a80SChris Mason bio->bi_size = size; 1356a52d9a80SChris Mason 1357a52d9a80SChris Mason bio->bi_end_io = end_io_func; 1358a52d9a80SChris Mason bio->bi_private = tree; 1359a52d9a80SChris Mason 1360a52d9a80SChris Mason bio_get(bio); 1361a52d9a80SChris Mason submit_bio(rw, bio); 1362a52d9a80SChris Mason 1363a52d9a80SChris Mason if (bio_flagged(bio, BIO_EOPNOTSUPP)) 1364a52d9a80SChris Mason ret = -EOPNOTSUPP; 1365a52d9a80SChris Mason 1366a52d9a80SChris Mason bio_put(bio); 1367a52d9a80SChris Mason return ret; 1368a52d9a80SChris Mason } 1369a52d9a80SChris Mason 1370a52d9a80SChris Mason /* 1371a52d9a80SChris Mason * basic readpage implementation. Locked extent state structs are inserted 1372a52d9a80SChris Mason * into the tree that are removed when the IO is done (by the end_io 1373a52d9a80SChris Mason * handlers) 1374a52d9a80SChris Mason */ 1375a52d9a80SChris Mason int extent_read_full_page(struct extent_map_tree *tree, struct page *page, 1376a52d9a80SChris Mason get_extent_t *get_extent) 1377a52d9a80SChris Mason { 1378a52d9a80SChris Mason struct inode *inode = page->mapping->host; 1379a52d9a80SChris Mason u64 start = page->index << PAGE_CACHE_SHIFT; 1380a52d9a80SChris Mason u64 page_end = start + PAGE_CACHE_SIZE - 1; 1381a52d9a80SChris Mason u64 end; 1382a52d9a80SChris Mason u64 cur = start; 1383a52d9a80SChris Mason u64 extent_offset; 1384a52d9a80SChris Mason u64 last_byte = i_size_read(inode); 1385a52d9a80SChris Mason u64 block_start; 1386a52d9a80SChris Mason u64 cur_end; 1387a52d9a80SChris Mason sector_t sector; 1388a52d9a80SChris Mason struct extent_map *em; 1389a52d9a80SChris Mason struct block_device *bdev; 1390a52d9a80SChris Mason int ret; 1391a52d9a80SChris Mason int nr = 0; 1392a52d9a80SChris Mason size_t page_offset = 0; 1393a52d9a80SChris Mason size_t iosize; 1394a52d9a80SChris Mason size_t blocksize = inode->i_sb->s_blocksize; 1395a52d9a80SChris Mason 1396a52d9a80SChris Mason if (!PagePrivate(page)) { 1397a52d9a80SChris Mason SetPagePrivate(page); 1398a52d9a80SChris Mason set_page_private(page, 1); 1399b888db2bSChris Mason WARN_ON(!page->mapping->a_ops->invalidatepage); 1400a52d9a80SChris Mason page_cache_get(page); 1401a52d9a80SChris Mason } 1402a52d9a80SChris Mason 1403a52d9a80SChris Mason end = page_end; 1404a52d9a80SChris Mason lock_extent(tree, start, end, GFP_NOFS); 1405a52d9a80SChris Mason 1406a52d9a80SChris Mason while (cur <= end) { 1407a52d9a80SChris Mason if (cur >= last_byte) { 1408a52d9a80SChris Mason iosize = PAGE_CACHE_SIZE - page_offset; 1409a52d9a80SChris Mason zero_user_page(page, page_offset, iosize, KM_USER0); 1410a52d9a80SChris Mason set_extent_uptodate(tree, cur, cur + iosize - 1, 1411a52d9a80SChris Mason GFP_NOFS); 1412a52d9a80SChris Mason unlock_extent(tree, cur, cur + iosize - 1, GFP_NOFS); 1413a52d9a80SChris Mason break; 1414a52d9a80SChris Mason } 1415a52d9a80SChris Mason em = get_extent(inode, page, page_offset, cur, end, 0); 1416a52d9a80SChris Mason if (IS_ERR(em) || !em) { 1417a52d9a80SChris Mason SetPageError(page); 1418a52d9a80SChris Mason unlock_extent(tree, cur, end, GFP_NOFS); 1419a52d9a80SChris Mason break; 1420a52d9a80SChris Mason } 1421a52d9a80SChris Mason 1422a52d9a80SChris Mason extent_offset = cur - em->start; 1423a52d9a80SChris Mason BUG_ON(em->end < cur); 1424a52d9a80SChris Mason BUG_ON(end < cur); 1425a52d9a80SChris Mason 1426a52d9a80SChris Mason iosize = min(em->end - cur, end - cur) + 1; 1427a52d9a80SChris Mason cur_end = min(em->end, end); 1428a52d9a80SChris Mason iosize = (iosize + blocksize - 1) & ~((u64)blocksize - 1); 1429a52d9a80SChris Mason sector = (em->block_start + extent_offset) >> 9; 1430a52d9a80SChris Mason bdev = em->bdev; 1431a52d9a80SChris Mason block_start = em->block_start; 1432a52d9a80SChris Mason free_extent_map(em); 1433a52d9a80SChris Mason em = NULL; 1434a52d9a80SChris Mason 1435a52d9a80SChris Mason /* we've found a hole, just zero and go on */ 1436a52d9a80SChris Mason if (block_start == 0) { 1437a52d9a80SChris Mason zero_user_page(page, page_offset, iosize, KM_USER0); 1438a52d9a80SChris Mason set_extent_uptodate(tree, cur, cur + iosize - 1, 1439a52d9a80SChris Mason GFP_NOFS); 1440a52d9a80SChris Mason unlock_extent(tree, cur, cur + iosize - 1, GFP_NOFS); 1441a52d9a80SChris Mason cur = cur + iosize; 1442a52d9a80SChris Mason page_offset += iosize; 1443a52d9a80SChris Mason continue; 1444a52d9a80SChris Mason } 1445a52d9a80SChris Mason /* the get_extent function already copied into the page */ 1446a52d9a80SChris Mason if (test_range_bit(tree, cur, cur_end, EXTENT_UPTODATE, 1)) { 1447a52d9a80SChris Mason unlock_extent(tree, cur, cur + iosize - 1, GFP_NOFS); 1448a52d9a80SChris Mason cur = cur + iosize; 1449a52d9a80SChris Mason page_offset += iosize; 1450a52d9a80SChris Mason continue; 1451a52d9a80SChris Mason } 1452a52d9a80SChris Mason 1453*07157aacSChris Mason ret = 0; 1454*07157aacSChris Mason if (tree->ops && tree->ops->readpage_io_hook) { 1455*07157aacSChris Mason ret = tree->ops->readpage_io_hook(page, cur, 1456*07157aacSChris Mason cur + iosize - 1); 1457*07157aacSChris Mason } 1458*07157aacSChris Mason if (!ret) { 1459a52d9a80SChris Mason ret = submit_extent_page(READ, tree, page, 1460*07157aacSChris Mason sector, iosize, page_offset, 1461*07157aacSChris Mason bdev, end_bio_extent_readpage); 1462*07157aacSChris Mason } 1463a52d9a80SChris Mason if (ret) 1464a52d9a80SChris Mason SetPageError(page); 1465a52d9a80SChris Mason cur = cur + iosize; 1466a52d9a80SChris Mason page_offset += iosize; 1467a52d9a80SChris Mason nr++; 1468a52d9a80SChris Mason } 1469a52d9a80SChris Mason if (!nr) { 1470a52d9a80SChris Mason if (!PageError(page)) 1471a52d9a80SChris Mason SetPageUptodate(page); 1472a52d9a80SChris Mason unlock_page(page); 1473a52d9a80SChris Mason } 1474a52d9a80SChris Mason return 0; 1475a52d9a80SChris Mason } 1476a52d9a80SChris Mason EXPORT_SYMBOL(extent_read_full_page); 1477a52d9a80SChris Mason 1478a52d9a80SChris Mason /* 1479a52d9a80SChris Mason * the writepage semantics are similar to regular writepage. extent 1480a52d9a80SChris Mason * records are inserted to lock ranges in the tree, and as dirty areas 1481a52d9a80SChris Mason * are found, they are marked writeback. Then the lock bits are removed 1482a52d9a80SChris Mason * and the end_io handler clears the writeback ranges 1483a52d9a80SChris Mason */ 1484a52d9a80SChris Mason int extent_write_full_page(struct extent_map_tree *tree, struct page *page, 1485a52d9a80SChris Mason get_extent_t *get_extent, 1486a52d9a80SChris Mason struct writeback_control *wbc) 1487a52d9a80SChris Mason { 1488a52d9a80SChris Mason struct inode *inode = page->mapping->host; 1489a52d9a80SChris Mason u64 start = page->index << PAGE_CACHE_SHIFT; 1490a52d9a80SChris Mason u64 page_end = start + PAGE_CACHE_SIZE - 1; 1491a52d9a80SChris Mason u64 end; 1492a52d9a80SChris Mason u64 cur = start; 1493a52d9a80SChris Mason u64 extent_offset; 1494a52d9a80SChris Mason u64 last_byte = i_size_read(inode); 1495a52d9a80SChris Mason u64 block_start; 1496a52d9a80SChris Mason sector_t sector; 1497a52d9a80SChris Mason struct extent_map *em; 1498a52d9a80SChris Mason struct block_device *bdev; 1499a52d9a80SChris Mason int ret; 1500a52d9a80SChris Mason int nr = 0; 1501a52d9a80SChris Mason size_t page_offset = 0; 1502a52d9a80SChris Mason size_t iosize; 1503a52d9a80SChris Mason size_t blocksize; 1504a52d9a80SChris Mason loff_t i_size = i_size_read(inode); 1505a52d9a80SChris Mason unsigned long end_index = i_size >> PAGE_CACHE_SHIFT; 1506b888db2bSChris Mason u64 nr_delalloc; 1507b888db2bSChris Mason u64 delalloc_end; 1508a52d9a80SChris Mason 1509b888db2bSChris Mason WARN_ON(!PageLocked(page)); 1510a52d9a80SChris Mason if (page->index > end_index) { 1511a52d9a80SChris Mason clear_extent_dirty(tree, start, page_end, GFP_NOFS); 1512a52d9a80SChris Mason unlock_page(page); 1513a52d9a80SChris Mason return 0; 1514a52d9a80SChris Mason } 1515a52d9a80SChris Mason 1516a52d9a80SChris Mason if (page->index == end_index) { 1517a52d9a80SChris Mason size_t offset = i_size & (PAGE_CACHE_SIZE - 1); 1518a52d9a80SChris Mason zero_user_page(page, offset, 1519a52d9a80SChris Mason PAGE_CACHE_SIZE - offset, KM_USER0); 1520a52d9a80SChris Mason } 1521a52d9a80SChris Mason 1522a52d9a80SChris Mason if (!PagePrivate(page)) { 1523a52d9a80SChris Mason SetPagePrivate(page); 1524a52d9a80SChris Mason set_page_private(page, 1); 1525b888db2bSChris Mason WARN_ON(!page->mapping->a_ops->invalidatepage); 1526a52d9a80SChris Mason page_cache_get(page); 1527a52d9a80SChris Mason } 1528a52d9a80SChris Mason 1529a52d9a80SChris Mason lock_extent(tree, start, page_end, GFP_NOFS); 1530b888db2bSChris Mason nr_delalloc = find_lock_delalloc_range(tree, start, page_end + 1, 1531b888db2bSChris Mason &delalloc_end, 1532b888db2bSChris Mason 128 * 1024 * 1024); 1533b888db2bSChris Mason if (nr_delalloc) { 1534*07157aacSChris Mason tree->ops->fill_delalloc(inode, start, delalloc_end); 1535b888db2bSChris Mason if (delalloc_end >= page_end + 1) { 1536b888db2bSChris Mason clear_extent_bit(tree, page_end + 1, delalloc_end, 1537b888db2bSChris Mason EXTENT_LOCKED | EXTENT_DELALLOC, 1538b888db2bSChris Mason 1, 0, GFP_NOFS); 1539b888db2bSChris Mason } 1540b888db2bSChris Mason clear_extent_bit(tree, start, page_end, EXTENT_DELALLOC, 1541b888db2bSChris Mason 0, 0, GFP_NOFS); 1542b888db2bSChris Mason if (test_range_bit(tree, start, page_end, EXTENT_DELALLOC, 0)) { 1543b888db2bSChris Mason printk("found delalloc bits after clear extent_bit\n"); 1544b888db2bSChris Mason } 1545b888db2bSChris Mason } else if (test_range_bit(tree, start, page_end, EXTENT_DELALLOC, 0)) { 1546b888db2bSChris Mason printk("found delalloc bits after find_delalloc_range returns 0\n"); 1547b888db2bSChris Mason } 1548b888db2bSChris Mason 1549b888db2bSChris Mason end = page_end; 1550b888db2bSChris Mason if (test_range_bit(tree, start, page_end, EXTENT_DELALLOC, 0)) { 1551b888db2bSChris Mason printk("found delalloc bits after lock_extent\n"); 1552b888db2bSChris Mason } 1553a52d9a80SChris Mason 1554a52d9a80SChris Mason if (last_byte <= start) { 1555a52d9a80SChris Mason clear_extent_dirty(tree, start, page_end, GFP_NOFS); 1556a52d9a80SChris Mason goto done; 1557a52d9a80SChris Mason } 1558a52d9a80SChris Mason 1559a52d9a80SChris Mason set_extent_uptodate(tree, start, page_end, GFP_NOFS); 1560a52d9a80SChris Mason blocksize = inode->i_sb->s_blocksize; 1561a52d9a80SChris Mason 1562a52d9a80SChris Mason while (cur <= end) { 1563a52d9a80SChris Mason if (cur >= last_byte) { 1564a52d9a80SChris Mason clear_extent_dirty(tree, cur, page_end, GFP_NOFS); 1565a52d9a80SChris Mason break; 1566a52d9a80SChris Mason } 1567b888db2bSChris Mason em = get_extent(inode, page, page_offset, cur, end, 0); 1568a52d9a80SChris Mason if (IS_ERR(em) || !em) { 1569a52d9a80SChris Mason SetPageError(page); 1570a52d9a80SChris Mason break; 1571a52d9a80SChris Mason } 1572a52d9a80SChris Mason 1573a52d9a80SChris Mason extent_offset = cur - em->start; 1574a52d9a80SChris Mason BUG_ON(em->end < cur); 1575a52d9a80SChris Mason BUG_ON(end < cur); 1576a52d9a80SChris Mason iosize = min(em->end - cur, end - cur) + 1; 1577a52d9a80SChris Mason iosize = (iosize + blocksize - 1) & ~((u64)blocksize - 1); 1578a52d9a80SChris Mason sector = (em->block_start + extent_offset) >> 9; 1579a52d9a80SChris Mason bdev = em->bdev; 1580a52d9a80SChris Mason block_start = em->block_start; 1581a52d9a80SChris Mason free_extent_map(em); 1582a52d9a80SChris Mason em = NULL; 1583a52d9a80SChris Mason 1584a52d9a80SChris Mason if (block_start == 0 || block_start == EXTENT_MAP_INLINE) { 1585a52d9a80SChris Mason clear_extent_dirty(tree, cur, 1586a52d9a80SChris Mason cur + iosize - 1, GFP_NOFS); 1587a52d9a80SChris Mason cur = cur + iosize; 1588a52d9a80SChris Mason page_offset += iosize; 1589a52d9a80SChris Mason continue; 1590a52d9a80SChris Mason } 1591a52d9a80SChris Mason 1592a52d9a80SChris Mason /* leave this out until we have a page_mkwrite call */ 1593a52d9a80SChris Mason if (0 && !test_range_bit(tree, cur, cur + iosize - 1, 1594a52d9a80SChris Mason EXTENT_DIRTY, 0)) { 1595a52d9a80SChris Mason cur = cur + iosize; 1596a52d9a80SChris Mason page_offset += iosize; 1597a52d9a80SChris Mason continue; 1598a52d9a80SChris Mason } 1599a52d9a80SChris Mason clear_extent_dirty(tree, cur, cur + iosize - 1, GFP_NOFS); 1600*07157aacSChris Mason ret = tree->ops->writepage_io_hook(page, cur, cur + iosize - 1); 1601*07157aacSChris Mason if (ret) 1602*07157aacSChris Mason SetPageError(page); 1603*07157aacSChris Mason else { 1604a52d9a80SChris Mason set_range_writeback(tree, cur, cur + iosize - 1); 1605*07157aacSChris Mason ret = submit_extent_page(WRITE, tree, page, sector, 1606*07157aacSChris Mason iosize, page_offset, bdev, 1607a52d9a80SChris Mason end_bio_extent_writepage); 1608a52d9a80SChris Mason if (ret) 1609a52d9a80SChris Mason SetPageError(page); 1610*07157aacSChris Mason } 1611a52d9a80SChris Mason cur = cur + iosize; 1612a52d9a80SChris Mason page_offset += iosize; 1613a52d9a80SChris Mason nr++; 1614a52d9a80SChris Mason } 1615a52d9a80SChris Mason done: 1616a52d9a80SChris Mason WARN_ON(test_range_bit(tree, start, page_end, EXTENT_DIRTY, 0)); 1617a52d9a80SChris Mason unlock_extent(tree, start, page_end, GFP_NOFS); 1618a52d9a80SChris Mason unlock_page(page); 1619a52d9a80SChris Mason return 0; 1620a52d9a80SChris Mason } 1621a52d9a80SChris Mason EXPORT_SYMBOL(extent_write_full_page); 1622a52d9a80SChris Mason 1623a52d9a80SChris Mason /* 1624a52d9a80SChris Mason * basic invalidatepage code, this waits on any locked or writeback 1625a52d9a80SChris Mason * ranges corresponding to the page, and then deletes any extent state 1626a52d9a80SChris Mason * records from the tree 1627a52d9a80SChris Mason */ 1628a52d9a80SChris Mason int extent_invalidatepage(struct extent_map_tree *tree, 1629a52d9a80SChris Mason struct page *page, unsigned long offset) 1630a52d9a80SChris Mason { 1631a52d9a80SChris Mason u64 start = (page->index << PAGE_CACHE_SHIFT); 1632a52d9a80SChris Mason u64 end = start + PAGE_CACHE_SIZE - 1; 1633a52d9a80SChris Mason size_t blocksize = page->mapping->host->i_sb->s_blocksize; 1634a52d9a80SChris Mason 1635a52d9a80SChris Mason start += (offset + blocksize -1) & ~(blocksize - 1); 1636a52d9a80SChris Mason if (start > end) 1637a52d9a80SChris Mason return 0; 1638a52d9a80SChris Mason 1639a52d9a80SChris Mason lock_extent(tree, start, end, GFP_NOFS); 1640a52d9a80SChris Mason wait_on_extent_writeback(tree, start, end); 1641a52d9a80SChris Mason clear_extent_bit(tree, start, end, EXTENT_LOCKED | EXTENT_DIRTY, 1642a52d9a80SChris Mason 1, 1, GFP_NOFS); 1643a52d9a80SChris Mason return 0; 1644a52d9a80SChris Mason } 1645a52d9a80SChris Mason EXPORT_SYMBOL(extent_invalidatepage); 1646a52d9a80SChris Mason 1647a52d9a80SChris Mason /* 1648a52d9a80SChris Mason * simple commit_write call, set_range_dirty is used to mark both 1649a52d9a80SChris Mason * the pages and the extent records as dirty 1650a52d9a80SChris Mason */ 1651a52d9a80SChris Mason int extent_commit_write(struct extent_map_tree *tree, 1652a52d9a80SChris Mason struct inode *inode, struct page *page, 1653a52d9a80SChris Mason unsigned from, unsigned to) 1654a52d9a80SChris Mason { 1655a52d9a80SChris Mason loff_t pos = ((loff_t)page->index << PAGE_CACHE_SHIFT) + to; 1656a52d9a80SChris Mason 1657a52d9a80SChris Mason if (!PagePrivate(page)) { 1658a52d9a80SChris Mason SetPagePrivate(page); 1659a52d9a80SChris Mason set_page_private(page, 1); 1660b888db2bSChris Mason WARN_ON(!page->mapping->a_ops->invalidatepage); 1661a52d9a80SChris Mason page_cache_get(page); 1662a52d9a80SChris Mason } 1663a52d9a80SChris Mason 1664a52d9a80SChris Mason set_page_dirty(page); 1665a52d9a80SChris Mason 1666a52d9a80SChris Mason if (pos > inode->i_size) { 1667a52d9a80SChris Mason i_size_write(inode, pos); 1668a52d9a80SChris Mason mark_inode_dirty(inode); 1669a52d9a80SChris Mason } 1670a52d9a80SChris Mason return 0; 1671a52d9a80SChris Mason } 1672a52d9a80SChris Mason EXPORT_SYMBOL(extent_commit_write); 1673a52d9a80SChris Mason 1674a52d9a80SChris Mason int extent_prepare_write(struct extent_map_tree *tree, 1675a52d9a80SChris Mason struct inode *inode, struct page *page, 1676a52d9a80SChris Mason unsigned from, unsigned to, get_extent_t *get_extent) 1677a52d9a80SChris Mason { 1678a52d9a80SChris Mason u64 page_start = page->index << PAGE_CACHE_SHIFT; 1679a52d9a80SChris Mason u64 page_end = page_start + PAGE_CACHE_SIZE - 1; 1680a52d9a80SChris Mason u64 block_start; 1681a52d9a80SChris Mason u64 orig_block_start; 1682a52d9a80SChris Mason u64 block_end; 1683a52d9a80SChris Mason u64 cur_end; 1684a52d9a80SChris Mason struct extent_map *em; 1685a52d9a80SChris Mason unsigned blocksize = 1 << inode->i_blkbits; 1686a52d9a80SChris Mason size_t page_offset = 0; 1687a52d9a80SChris Mason size_t block_off_start; 1688a52d9a80SChris Mason size_t block_off_end; 1689a52d9a80SChris Mason int err = 0; 1690a52d9a80SChris Mason int iocount = 0; 1691a52d9a80SChris Mason int ret = 0; 1692a52d9a80SChris Mason int isnew; 1693a52d9a80SChris Mason 1694a52d9a80SChris Mason if (!PagePrivate(page)) { 1695a52d9a80SChris Mason SetPagePrivate(page); 1696a52d9a80SChris Mason set_page_private(page, 1); 1697b888db2bSChris Mason WARN_ON(!page->mapping->a_ops->invalidatepage); 1698a52d9a80SChris Mason page_cache_get(page); 1699a52d9a80SChris Mason } 1700a52d9a80SChris Mason block_start = (page_start + from) & ~((u64)blocksize - 1); 1701a52d9a80SChris Mason block_end = (page_start + to - 1) | (blocksize - 1); 1702a52d9a80SChris Mason orig_block_start = block_start; 1703a52d9a80SChris Mason 1704a52d9a80SChris Mason lock_extent(tree, page_start, page_end, GFP_NOFS); 1705a52d9a80SChris Mason while(block_start <= block_end) { 1706a52d9a80SChris Mason em = get_extent(inode, page, page_offset, block_start, 1707a52d9a80SChris Mason block_end, 1); 1708a52d9a80SChris Mason if (IS_ERR(em) || !em) { 1709a52d9a80SChris Mason goto err; 1710a52d9a80SChris Mason } 1711a52d9a80SChris Mason cur_end = min(block_end, em->end); 1712a52d9a80SChris Mason block_off_start = block_start & (PAGE_CACHE_SIZE - 1); 1713a52d9a80SChris Mason block_off_end = block_off_start + blocksize; 1714a52d9a80SChris Mason isnew = clear_extent_new(tree, block_start, cur_end, GFP_NOFS); 1715a52d9a80SChris Mason 1716a52d9a80SChris Mason if (!PageUptodate(page) && isnew && 1717a52d9a80SChris Mason (block_off_end > to || block_off_start < from)) { 1718a52d9a80SChris Mason void *kaddr; 1719a52d9a80SChris Mason 1720a52d9a80SChris Mason kaddr = kmap_atomic(page, KM_USER0); 1721a52d9a80SChris Mason if (block_off_end > to) 1722a52d9a80SChris Mason memset(kaddr + to, 0, block_off_end - to); 1723a52d9a80SChris Mason if (block_off_start < from) 1724a52d9a80SChris Mason memset(kaddr + block_off_start, 0, 1725a52d9a80SChris Mason from - block_off_start); 1726a52d9a80SChris Mason flush_dcache_page(page); 1727a52d9a80SChris Mason kunmap_atomic(kaddr, KM_USER0); 1728a52d9a80SChris Mason } 1729a52d9a80SChris Mason if (!isnew && !PageUptodate(page) && 1730a52d9a80SChris Mason (block_off_end > to || block_off_start < from) && 1731a52d9a80SChris Mason !test_range_bit(tree, block_start, cur_end, 1732a52d9a80SChris Mason EXTENT_UPTODATE, 1)) { 1733a52d9a80SChris Mason u64 sector; 1734a52d9a80SChris Mason u64 extent_offset = block_start - em->start; 1735a52d9a80SChris Mason size_t iosize; 1736a52d9a80SChris Mason sector = (em->block_start + extent_offset) >> 9; 1737a52d9a80SChris Mason iosize = (cur_end - block_start + blocksize - 1) & 1738a52d9a80SChris Mason ~((u64)blocksize - 1); 1739a52d9a80SChris Mason /* 1740a52d9a80SChris Mason * we've already got the extent locked, but we 1741a52d9a80SChris Mason * need to split the state such that our end_bio 1742a52d9a80SChris Mason * handler can clear the lock. 1743a52d9a80SChris Mason */ 1744a52d9a80SChris Mason set_extent_bit(tree, block_start, 1745a52d9a80SChris Mason block_start + iosize - 1, 1746a52d9a80SChris Mason EXTENT_LOCKED, 0, NULL, GFP_NOFS); 1747a52d9a80SChris Mason ret = submit_extent_page(READ, tree, page, 1748a52d9a80SChris Mason sector, iosize, page_offset, em->bdev, 1749a52d9a80SChris Mason end_bio_extent_preparewrite); 1750a52d9a80SChris Mason iocount++; 1751a52d9a80SChris Mason block_start = block_start + iosize; 1752a52d9a80SChris Mason } else { 1753a52d9a80SChris Mason set_extent_uptodate(tree, block_start, cur_end, 1754a52d9a80SChris Mason GFP_NOFS); 1755a52d9a80SChris Mason unlock_extent(tree, block_start, cur_end, GFP_NOFS); 1756a52d9a80SChris Mason block_start = cur_end + 1; 1757a52d9a80SChris Mason } 1758a52d9a80SChris Mason page_offset = block_start & (PAGE_CACHE_SIZE - 1); 1759a52d9a80SChris Mason free_extent_map(em); 1760a52d9a80SChris Mason } 1761a52d9a80SChris Mason if (iocount) { 1762a52d9a80SChris Mason wait_extent_bit(tree, orig_block_start, 1763a52d9a80SChris Mason block_end, EXTENT_LOCKED); 1764a52d9a80SChris Mason } 1765a52d9a80SChris Mason check_page_uptodate(tree, page); 1766a52d9a80SChris Mason err: 1767a52d9a80SChris Mason /* FIXME, zero out newly allocated blocks on error */ 1768a52d9a80SChris Mason return err; 1769a52d9a80SChris Mason } 1770a52d9a80SChris Mason EXPORT_SYMBOL(extent_prepare_write); 1771a52d9a80SChris Mason 1772a52d9a80SChris Mason /* 1773a52d9a80SChris Mason * a helper for releasepage. As long as there are no locked extents 1774a52d9a80SChris Mason * in the range corresponding to the page, both state records and extent 1775a52d9a80SChris Mason * map records are removed 1776a52d9a80SChris Mason */ 1777a52d9a80SChris Mason int try_release_extent_mapping(struct extent_map_tree *tree, struct page *page) 1778a52d9a80SChris Mason { 1779a52d9a80SChris Mason struct extent_map *em; 1780a52d9a80SChris Mason u64 start = page->index << PAGE_CACHE_SHIFT; 1781a52d9a80SChris Mason u64 end = start + PAGE_CACHE_SIZE - 1; 1782a52d9a80SChris Mason u64 orig_start = start; 1783b888db2bSChris Mason int ret = 1; 1784a52d9a80SChris Mason 1785a52d9a80SChris Mason while (start <= end) { 1786a52d9a80SChris Mason em = lookup_extent_mapping(tree, start, end); 1787a52d9a80SChris Mason if (!em || IS_ERR(em)) 1788a52d9a80SChris Mason break; 1789b888db2bSChris Mason if (!test_range_bit(tree, em->start, em->end, 1790a52d9a80SChris Mason EXTENT_LOCKED, 0)) { 1791a52d9a80SChris Mason remove_extent_mapping(tree, em); 1792a52d9a80SChris Mason /* once for the rb tree */ 1793a52d9a80SChris Mason free_extent_map(em); 1794b888db2bSChris Mason } 1795b888db2bSChris Mason start = em->end + 1; 1796a52d9a80SChris Mason /* once for us */ 1797a52d9a80SChris Mason free_extent_map(em); 1798a52d9a80SChris Mason } 1799b888db2bSChris Mason if (test_range_bit(tree, orig_start, end, EXTENT_LOCKED, 0)) 1800b888db2bSChris Mason ret = 0; 1801b888db2bSChris Mason else 1802a52d9a80SChris Mason clear_extent_bit(tree, orig_start, end, EXTENT_UPTODATE, 1803a52d9a80SChris Mason 1, 1, GFP_NOFS); 1804b888db2bSChris Mason return ret; 1805a52d9a80SChris Mason } 1806a52d9a80SChris Mason EXPORT_SYMBOL(try_release_extent_mapping); 1807a52d9a80SChris Mason 1808