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Chris Masonbe0e5c02007-01-26 15:51:26 -05001#include <stdio.h>
2#include <stdlib.h>
3#include "kerncompat.h"
Chris Masoneb60cea2007-02-02 09:18:22 -05004#include "radix-tree.h"
5#include "ctree.h"
6#include "disk-io.h"
Chris Masonbe0e5c02007-01-26 15:51:26 -05007
Chris Mason5c680ed2007-02-22 11:39:13 -05008#define SEARCH_READ 0
9#define SEARCH_WRITE 1
10
Chris Masond97e63b2007-02-20 16:40:44 -050011static int refill_alloc_extent(struct ctree_root *root);
Chris Mason5c680ed2007-02-22 11:39:13 -050012int split_node(struct ctree_root *root, struct ctree_path *path, int level);
13int split_leaf(struct ctree_root *root, struct ctree_path *path, int data_size);
Chris Masond97e63b2007-02-20 16:40:44 -050014
Chris Masonbe0e5c02007-01-26 15:51:26 -050015static inline void init_path(struct ctree_path *p)
16{
17 memset(p, 0, sizeof(*p));
18}
19
Chris Masoneb60cea2007-02-02 09:18:22 -050020static void release_path(struct ctree_root *root, struct ctree_path *p)
21{
22 int i;
23 for (i = 0; i < MAX_LEVEL; i++) {
24 if (!p->nodes[i])
25 break;
26 tree_block_release(root, p->nodes[i]);
27 }
28}
29
Chris Mason74123bd2007-02-02 11:05:29 -050030/*
31 * The leaf data grows from end-to-front in the node.
32 * this returns the address of the start of the last item,
33 * which is the stop of the leaf data stack
34 */
Chris Masonbe0e5c02007-01-26 15:51:26 -050035static inline unsigned int leaf_data_end(struct leaf *leaf)
36{
37 unsigned int nr = leaf->header.nritems;
38 if (nr == 0)
Chris Masond97e63b2007-02-20 16:40:44 -050039 return sizeof(leaf->data);
Chris Masonbe0e5c02007-01-26 15:51:26 -050040 return leaf->items[nr-1].offset;
41}
42
Chris Mason74123bd2007-02-02 11:05:29 -050043/*
44 * The space between the end of the leaf items and
45 * the start of the leaf data. IOW, how much room
46 * the leaf has left for both items and data
47 */
Chris Masonbe0e5c02007-01-26 15:51:26 -050048static inline int leaf_free_space(struct leaf *leaf)
49{
50 int data_end = leaf_data_end(leaf);
51 int nritems = leaf->header.nritems;
52 char *items_end = (char *)(leaf->items + nritems + 1);
53 return (char *)(leaf->data + data_end) - (char *)items_end;
54}
55
Chris Mason74123bd2007-02-02 11:05:29 -050056/*
57 * compare two keys in a memcmp fashion
58 */
Chris Masonbe0e5c02007-01-26 15:51:26 -050059int comp_keys(struct key *k1, struct key *k2)
60{
61 if (k1->objectid > k2->objectid)
62 return 1;
63 if (k1->objectid < k2->objectid)
64 return -1;
65 if (k1->flags > k2->flags)
66 return 1;
67 if (k1->flags < k2->flags)
68 return -1;
69 if (k1->offset > k2->offset)
70 return 1;
71 if (k1->offset < k2->offset)
72 return -1;
73 return 0;
74}
Chris Mason74123bd2007-02-02 11:05:29 -050075
76/*
77 * search for key in the array p. items p are item_size apart
78 * and there are 'max' items in p
79 * the slot in the array is returned via slot, and it points to
80 * the place where you would insert key if it is not found in
81 * the array.
82 *
83 * slot may point to max if the key is bigger than all of the keys
84 */
Chris Masonbe0e5c02007-01-26 15:51:26 -050085int generic_bin_search(char *p, int item_size, struct key *key,
86 int max, int *slot)
87{
88 int low = 0;
89 int high = max;
90 int mid;
91 int ret;
92 struct key *tmp;
93
94 while(low < high) {
95 mid = (low + high) / 2;
96 tmp = (struct key *)(p + mid * item_size);
97 ret = comp_keys(tmp, key);
98
99 if (ret < 0)
100 low = mid + 1;
101 else if (ret > 0)
102 high = mid;
103 else {
104 *slot = mid;
105 return 0;
106 }
107 }
108 *slot = low;
109 return 1;
110}
111
112int bin_search(struct node *c, struct key *key, int *slot)
113{
114 if (is_leaf(c->header.flags)) {
115 struct leaf *l = (struct leaf *)c;
116 return generic_bin_search((void *)l->items, sizeof(struct item),
117 key, c->header.nritems, slot);
118 } else {
119 return generic_bin_search((void *)c->keys, sizeof(struct key),
120 key, c->header.nritems, slot);
121 }
122 return -1;
123}
124
Chris Mason74123bd2007-02-02 11:05:29 -0500125/*
126 * look for key in the tree. path is filled in with nodes along the way
127 * if key is found, we return zero and you can find the item in the leaf
128 * level of the path (level 0)
129 *
130 * If the key isn't found, the path points to the slot where it should
131 * be inserted.
132 */
Chris Mason5c680ed2007-02-22 11:39:13 -0500133int search_slot(struct ctree_root *root, struct key *key, struct ctree_path *p, int ins_len)
Chris Masonbe0e5c02007-01-26 15:51:26 -0500134{
Chris Masoneb60cea2007-02-02 09:18:22 -0500135 struct tree_buffer *b = root->node;
136 struct node *c;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500137 int slot;
138 int ret;
139 int level;
Chris Mason5c680ed2007-02-22 11:39:13 -0500140
Chris Masoneb60cea2007-02-02 09:18:22 -0500141 b->count++;
142 while (b) {
143 c = &b->node;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500144 level = node_level(c->header.flags);
Chris Masoneb60cea2007-02-02 09:18:22 -0500145 p->nodes[level] = b;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500146 ret = bin_search(c, key, &slot);
147 if (!is_leaf(c->header.flags)) {
148 if (ret && slot > 0)
149 slot -= 1;
150 p->slots[level] = slot;
Chris Mason5c680ed2007-02-22 11:39:13 -0500151 if (ins_len && c->header.nritems == NODEPTRS_PER_BLOCK) {
152 int sret = split_node(root, p, level);
153 BUG_ON(sret > 0);
154 if (sret)
155 return sret;
156 b = p->nodes[level];
157 c = &b->node;
158 slot = p->slots[level];
159 }
Chris Masoneb60cea2007-02-02 09:18:22 -0500160 b = read_tree_block(root, c->blockptrs[slot]);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500161 continue;
162 } else {
Chris Mason5c680ed2007-02-22 11:39:13 -0500163 struct leaf *l = (struct leaf *)c;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500164 p->slots[level] = slot;
Chris Mason5c680ed2007-02-22 11:39:13 -0500165 if (ins_len && leaf_free_space(l) < sizeof(struct item) + ins_len) {
166 int sret = split_leaf(root, p, ins_len);
167 BUG_ON(sret > 0);
168 if (sret)
169 return sret;
170 }
Chris Masonbe0e5c02007-01-26 15:51:26 -0500171 return ret;
172 }
173 }
174 return -1;
175}
176
Chris Mason74123bd2007-02-02 11:05:29 -0500177/*
178 * adjust the pointers going up the tree, starting at level
179 * making sure the right key of each node is points to 'key'.
180 * This is used after shifting pointers to the left, so it stops
181 * fixing up pointers when a given leaf/node is not in slot 0 of the
182 * higher levels
183 */
Chris Masoneb60cea2007-02-02 09:18:22 -0500184static void fixup_low_keys(struct ctree_root *root,
185 struct ctree_path *path, struct key *key,
186 int level)
Chris Masonbe0e5c02007-01-26 15:51:26 -0500187{
188 int i;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500189 for (i = level; i < MAX_LEVEL; i++) {
Chris Masoneb60cea2007-02-02 09:18:22 -0500190 struct node *t;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500191 int tslot = path->slots[i];
Chris Masoneb60cea2007-02-02 09:18:22 -0500192 if (!path->nodes[i])
Chris Masonbe0e5c02007-01-26 15:51:26 -0500193 break;
Chris Masoneb60cea2007-02-02 09:18:22 -0500194 t = &path->nodes[i]->node;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500195 memcpy(t->keys + tslot, key, sizeof(*key));
Chris Masoneb60cea2007-02-02 09:18:22 -0500196 write_tree_block(root, path->nodes[i]);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500197 if (tslot != 0)
198 break;
199 }
200}
201
Chris Mason74123bd2007-02-02 11:05:29 -0500202/*
203 * try to push data from one node into the next node left in the
204 * tree. The src node is found at specified level in the path.
205 * If some bytes were pushed, return 0, otherwise return 1.
206 *
207 * Lower nodes/leaves in the path are not touched, higher nodes may
208 * be modified to reflect the push.
209 *
210 * The path is altered to reflect the push.
211 */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500212int push_node_left(struct ctree_root *root, struct ctree_path *path, int level)
213{
214 int slot;
215 struct node *left;
216 struct node *right;
217 int push_items = 0;
218 int left_nritems;
219 int right_nritems;
Chris Masoneb60cea2007-02-02 09:18:22 -0500220 struct tree_buffer *t;
221 struct tree_buffer *right_buf;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500222
223 if (level == MAX_LEVEL - 1 || path->nodes[level + 1] == 0)
224 return 1;
225 slot = path->slots[level + 1];
226 if (slot == 0)
227 return 1;
228
Chris Masoneb60cea2007-02-02 09:18:22 -0500229 t = read_tree_block(root,
230 path->nodes[level + 1]->node.blockptrs[slot - 1]);
231 left = &t->node;
232 right_buf = path->nodes[level];
233 right = &right_buf->node;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500234 left_nritems = left->header.nritems;
235 right_nritems = right->header.nritems;
236 push_items = NODEPTRS_PER_BLOCK - (left_nritems + 1);
Chris Masoneb60cea2007-02-02 09:18:22 -0500237 if (push_items <= 0) {
238 tree_block_release(root, t);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500239 return 1;
Chris Masoneb60cea2007-02-02 09:18:22 -0500240 }
Chris Masonbe0e5c02007-01-26 15:51:26 -0500241
242 if (right_nritems < push_items)
243 push_items = right_nritems;
244 memcpy(left->keys + left_nritems, right->keys,
245 push_items * sizeof(struct key));
246 memcpy(left->blockptrs + left_nritems, right->blockptrs,
247 push_items * sizeof(u64));
248 memmove(right->keys, right->keys + push_items,
249 (right_nritems - push_items) * sizeof(struct key));
250 memmove(right->blockptrs, right->blockptrs + push_items,
251 (right_nritems - push_items) * sizeof(u64));
252 right->header.nritems -= push_items;
253 left->header.nritems += push_items;
254
255 /* adjust the pointers going up the tree */
Chris Masoneb60cea2007-02-02 09:18:22 -0500256 fixup_low_keys(root, path, right->keys, level + 1);
257
258 write_tree_block(root, t);
259 write_tree_block(root, right_buf);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500260
261 /* then fixup the leaf pointer in the path */
262 if (path->slots[level] < push_items) {
263 path->slots[level] += left_nritems;
Chris Masoneb60cea2007-02-02 09:18:22 -0500264 tree_block_release(root, path->nodes[level]);
265 path->nodes[level] = t;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500266 path->slots[level + 1] -= 1;
267 } else {
268 path->slots[level] -= push_items;
Chris Masoneb60cea2007-02-02 09:18:22 -0500269 tree_block_release(root, t);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500270 }
271 return 0;
272}
273
Chris Mason74123bd2007-02-02 11:05:29 -0500274/*
275 * try to push data from one node into the next node right in the
276 * tree. The src node is found at specified level in the path.
277 * If some bytes were pushed, return 0, otherwise return 1.
278 *
279 * Lower nodes/leaves in the path are not touched, higher nodes may
280 * be modified to reflect the push.
281 *
282 * The path is altered to reflect the push.
283 */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500284int push_node_right(struct ctree_root *root, struct ctree_path *path, int level)
285{
286 int slot;
Chris Masoneb60cea2007-02-02 09:18:22 -0500287 struct tree_buffer *t;
288 struct tree_buffer *src_buffer;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500289 struct node *dst;
290 struct node *src;
291 int push_items = 0;
292 int dst_nritems;
293 int src_nritems;
294
Chris Mason74123bd2007-02-02 11:05:29 -0500295 /* can't push from the root */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500296 if (level == MAX_LEVEL - 1 || path->nodes[level + 1] == 0)
297 return 1;
Chris Mason74123bd2007-02-02 11:05:29 -0500298
299 /* only try to push inside the node higher up */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500300 slot = path->slots[level + 1];
301 if (slot == NODEPTRS_PER_BLOCK - 1)
302 return 1;
303
Chris Masoneb60cea2007-02-02 09:18:22 -0500304 if (slot >= path->nodes[level + 1]->node.header.nritems -1)
Chris Masonbe0e5c02007-01-26 15:51:26 -0500305 return 1;
306
Chris Masoneb60cea2007-02-02 09:18:22 -0500307 t = read_tree_block(root,
308 path->nodes[level + 1]->node.blockptrs[slot + 1]);
309 dst = &t->node;
310 src_buffer = path->nodes[level];
311 src = &src_buffer->node;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500312 dst_nritems = dst->header.nritems;
313 src_nritems = src->header.nritems;
314 push_items = NODEPTRS_PER_BLOCK - (dst_nritems + 1);
Chris Masoneb60cea2007-02-02 09:18:22 -0500315 if (push_items <= 0) {
316 tree_block_release(root, t);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500317 return 1;
Chris Masoneb60cea2007-02-02 09:18:22 -0500318 }
Chris Masonbe0e5c02007-01-26 15:51:26 -0500319
320 if (src_nritems < push_items)
321 push_items = src_nritems;
322 memmove(dst->keys + push_items, dst->keys,
323 dst_nritems * sizeof(struct key));
324 memcpy(dst->keys, src->keys + src_nritems - push_items,
325 push_items * sizeof(struct key));
326
327 memmove(dst->blockptrs + push_items, dst->blockptrs,
328 dst_nritems * sizeof(u64));
329 memcpy(dst->blockptrs, src->blockptrs + src_nritems - push_items,
330 push_items * sizeof(u64));
331
332 src->header.nritems -= push_items;
333 dst->header.nritems += push_items;
334
335 /* adjust the pointers going up the tree */
Chris Masoneb60cea2007-02-02 09:18:22 -0500336 memcpy(path->nodes[level + 1]->node.keys + path->slots[level + 1] + 1,
Chris Masonbe0e5c02007-01-26 15:51:26 -0500337 dst->keys, sizeof(struct key));
Chris Masoneb60cea2007-02-02 09:18:22 -0500338
339 write_tree_block(root, path->nodes[level + 1]);
340 write_tree_block(root, t);
341 write_tree_block(root, src_buffer);
342
Chris Mason74123bd2007-02-02 11:05:29 -0500343 /* then fixup the pointers in the path */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500344 if (path->slots[level] >= src->header.nritems) {
345 path->slots[level] -= src->header.nritems;
Chris Masoneb60cea2007-02-02 09:18:22 -0500346 tree_block_release(root, path->nodes[level]);
347 path->nodes[level] = t;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500348 path->slots[level + 1] += 1;
Chris Masoneb60cea2007-02-02 09:18:22 -0500349 } else {
350 tree_block_release(root, t);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500351 }
352 return 0;
353}
354
Chris Mason5c680ed2007-02-22 11:39:13 -0500355static int insert_new_root(struct ctree_root *root, struct ctree_path *path, int level)
356{
357 struct tree_buffer *t;
358 struct node *lower;
359 struct node *c;
360 struct key *lower_key;
361
362 BUG_ON(path->nodes[level]);
363 BUG_ON(path->nodes[level-1] != root->node);
364
365 t = alloc_free_block(root);
366 c = &t->node;
367 memset(c, 0, sizeof(c));
368 c->header.nritems = 1;
369 c->header.flags = node_level(level);
370 c->header.blocknr = t->blocknr;
371 c->header.parentid = root->node->node.header.parentid;
372 lower = &path->nodes[level-1]->node;
373 if (is_leaf(lower->header.flags))
374 lower_key = &((struct leaf *)lower)->items[0].key;
375 else
376 lower_key = lower->keys;
377 memcpy(c->keys, lower_key, sizeof(struct key));
378 c->blockptrs[0] = path->nodes[level-1]->blocknr;
379 /* the super has an extra ref to root->node */
380 tree_block_release(root, root->node);
381 root->node = t;
382 t->count++;
383 write_tree_block(root, t);
384 path->nodes[level] = t;
385 path->slots[level] = 0;
386 return 0;
387}
388
Chris Mason74123bd2007-02-02 11:05:29 -0500389/*
390 * worker function to insert a single pointer in a node.
391 * the node should have enough room for the pointer already
392 * slot and level indicate where you want the key to go, and
393 * blocknr is the block the key points to.
394 */
Chris Mason5c680ed2007-02-22 11:39:13 -0500395int insert_ptr(struct ctree_root *root,
Chris Mason74123bd2007-02-02 11:05:29 -0500396 struct ctree_path *path, struct key *key,
397 u64 blocknr, int slot, int level)
398{
Chris Mason74123bd2007-02-02 11:05:29 -0500399 struct node *lower;
Chris Mason74123bd2007-02-02 11:05:29 -0500400 int nritems;
Chris Mason5c680ed2007-02-22 11:39:13 -0500401
402 BUG_ON(!path->nodes[level]);
Chris Mason74123bd2007-02-02 11:05:29 -0500403 lower = &path->nodes[level]->node;
404 nritems = lower->header.nritems;
405 if (slot > nritems)
406 BUG();
407 if (nritems == NODEPTRS_PER_BLOCK)
408 BUG();
409 if (slot != nritems) {
410 memmove(lower->keys + slot + 1, lower->keys + slot,
411 (nritems - slot) * sizeof(struct key));
412 memmove(lower->blockptrs + slot + 1, lower->blockptrs + slot,
413 (nritems - slot) * sizeof(u64));
414 }
415 memcpy(lower->keys + slot, key, sizeof(struct key));
416 lower->blockptrs[slot] = blocknr;
417 lower->header.nritems++;
418 if (lower->keys[1].objectid == 0)
419 BUG();
420 write_tree_block(root, path->nodes[level]);
421 return 0;
422}
423
Chris Mason5c680ed2007-02-22 11:39:13 -0500424int split_node(struct ctree_root *root, struct ctree_path *path, int level)
Chris Masonbe0e5c02007-01-26 15:51:26 -0500425{
Chris Mason5c680ed2007-02-22 11:39:13 -0500426 struct tree_buffer *t;
427 struct node *c;
428 struct tree_buffer *split_buffer;
429 struct node *split;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500430 int mid;
Chris Mason5c680ed2007-02-22 11:39:13 -0500431 int ret;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500432
Chris Mason5c680ed2007-02-22 11:39:13 -0500433 ret = push_node_left(root, path, level);
434 if (!ret)
435 return 0;
436 ret = push_node_right(root, path, level);
437 if (!ret)
438 return 0;
439 t = path->nodes[level];
440 c = &t->node;
441 if (t == root->node) {
442 /* trying to split the root, lets make a new one */
443 ret = insert_new_root(root, path, level + 1);
444 if (ret)
445 return ret;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500446 }
Chris Mason5c680ed2007-02-22 11:39:13 -0500447 split_buffer = alloc_free_block(root);
448 split = &split_buffer->node;
449 split->header.flags = c->header.flags;
450 split->header.blocknr = split_buffer->blocknr;
451 split->header.parentid = root->node->node.header.parentid;
452 mid = (c->header.nritems + 1) / 2;
453 memcpy(split->keys, c->keys + mid,
454 (c->header.nritems - mid) * sizeof(struct key));
455 memcpy(split->blockptrs, c->blockptrs + mid,
456 (c->header.nritems - mid) * sizeof(u64));
457 split->header.nritems = c->header.nritems - mid;
458 c->header.nritems = mid;
459 write_tree_block(root, t);
460 write_tree_block(root, split_buffer);
461 insert_ptr(root, path, split->keys, split_buffer->blocknr,
462 path->slots[level + 1] + 1, level + 1);
463 if (path->slots[level] > mid) {
464 path->slots[level] -= mid;
465 tree_block_release(root, t);
466 path->nodes[level] = split_buffer;
467 path->slots[level + 1] += 1;
468 } else {
469 tree_block_release(root, split_buffer);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500470 }
Chris Mason5c680ed2007-02-22 11:39:13 -0500471 return 0;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500472}
473
Chris Mason74123bd2007-02-02 11:05:29 -0500474/*
475 * how many bytes are required to store the items in a leaf. start
476 * and nr indicate which items in the leaf to check. This totals up the
477 * space used both by the item structs and the item data
478 */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500479int leaf_space_used(struct leaf *l, int start, int nr)
480{
481 int data_len;
482 int end = start + nr - 1;
483
484 if (!nr)
485 return 0;
486 data_len = l->items[start].offset + l->items[start].size;
487 data_len = data_len - l->items[end].offset;
488 data_len += sizeof(struct item) * nr;
489 return data_len;
490}
491
Chris Mason74123bd2007-02-02 11:05:29 -0500492/*
493 * push some data in the path leaf to the left, trying to free up at
494 * least data_size bytes. returns zero if the push worked, nonzero otherwise
495 */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500496int push_leaf_left(struct ctree_root *root, struct ctree_path *path,
497 int data_size)
498{
Chris Masoneb60cea2007-02-02 09:18:22 -0500499 struct tree_buffer *right_buf = path->nodes[0];
500 struct leaf *right = &right_buf->leaf;
501 struct tree_buffer *t;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500502 struct leaf *left;
503 int slot;
504 int i;
505 int free_space;
506 int push_space = 0;
507 int push_items = 0;
508 struct item *item;
509 int old_left_nritems;
510
511 slot = path->slots[1];
512 if (slot == 0) {
513 return 1;
514 }
515 if (!path->nodes[1]) {
516 return 1;
517 }
Chris Masoneb60cea2007-02-02 09:18:22 -0500518 t = read_tree_block(root, path->nodes[1]->node.blockptrs[slot - 1]);
519 left = &t->leaf;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500520 free_space = leaf_free_space(left);
521 if (free_space < data_size + sizeof(struct item)) {
Chris Masoneb60cea2007-02-02 09:18:22 -0500522 tree_block_release(root, t);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500523 return 1;
524 }
525 for (i = 0; i < right->header.nritems; i++) {
526 item = right->items + i;
527 if (path->slots[0] == i)
528 push_space += data_size + sizeof(*item);
529 if (item->size + sizeof(*item) + push_space > free_space)
530 break;
531 push_items++;
532 push_space += item->size + sizeof(*item);
533 }
534 if (push_items == 0) {
Chris Masoneb60cea2007-02-02 09:18:22 -0500535 tree_block_release(root, t);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500536 return 1;
537 }
538 /* push data from right to left */
539 memcpy(left->items + left->header.nritems,
540 right->items, push_items * sizeof(struct item));
541 push_space = LEAF_DATA_SIZE - right->items[push_items -1].offset;
542 memcpy(left->data + leaf_data_end(left) - push_space,
543 right->data + right->items[push_items - 1].offset,
544 push_space);
545 old_left_nritems = left->header.nritems;
Chris Masoneb60cea2007-02-02 09:18:22 -0500546 BUG_ON(old_left_nritems < 0);
547
Chris Masonbe0e5c02007-01-26 15:51:26 -0500548 for(i = old_left_nritems; i < old_left_nritems + push_items; i++) {
549 left->items[i].offset -= LEAF_DATA_SIZE -
550 left->items[old_left_nritems -1].offset;
551 }
552 left->header.nritems += push_items;
553
554 /* fixup right node */
555 push_space = right->items[push_items-1].offset - leaf_data_end(right);
556 memmove(right->data + LEAF_DATA_SIZE - push_space, right->data +
557 leaf_data_end(right), push_space);
558 memmove(right->items, right->items + push_items,
559 (right->header.nritems - push_items) * sizeof(struct item));
560 right->header.nritems -= push_items;
561 push_space = LEAF_DATA_SIZE;
Chris Masoneb60cea2007-02-02 09:18:22 -0500562
Chris Masonbe0e5c02007-01-26 15:51:26 -0500563 for (i = 0; i < right->header.nritems; i++) {
564 right->items[i].offset = push_space - right->items[i].size;
565 push_space = right->items[i].offset;
566 }
Chris Masoneb60cea2007-02-02 09:18:22 -0500567
568 write_tree_block(root, t);
569 write_tree_block(root, right_buf);
570
571 fixup_low_keys(root, path, &right->items[0].key, 1);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500572
573 /* then fixup the leaf pointer in the path */
574 if (path->slots[0] < push_items) {
575 path->slots[0] += old_left_nritems;
Chris Masoneb60cea2007-02-02 09:18:22 -0500576 tree_block_release(root, path->nodes[0]);
577 path->nodes[0] = t;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500578 path->slots[1] -= 1;
579 } else {
Chris Masoneb60cea2007-02-02 09:18:22 -0500580 tree_block_release(root, t);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500581 path->slots[0] -= push_items;
582 }
Chris Masoneb60cea2007-02-02 09:18:22 -0500583 BUG_ON(path->slots[0] < 0);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500584 return 0;
585}
586
Chris Mason74123bd2007-02-02 11:05:29 -0500587/*
588 * split the path's leaf in two, making sure there is at least data_size
589 * available for the resulting leaf level of the path.
590 */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500591int split_leaf(struct ctree_root *root, struct ctree_path *path, int data_size)
592{
Chris Masoneb60cea2007-02-02 09:18:22 -0500593 struct tree_buffer *l_buf = path->nodes[0];
594 struct leaf *l = &l_buf->leaf;
595 int nritems;
596 int mid;
597 int slot;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500598 struct leaf *right;
Chris Masoneb60cea2007-02-02 09:18:22 -0500599 struct tree_buffer *right_buffer;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500600 int space_needed = data_size + sizeof(struct item);
601 int data_copy_size;
602 int rt_data_off;
603 int i;
604 int ret;
605
606 if (push_leaf_left(root, path, data_size) == 0) {
Chris Masoneb60cea2007-02-02 09:18:22 -0500607 l_buf = path->nodes[0];
608 l = &l_buf->leaf;
609 if (leaf_free_space(l) >= sizeof(struct item) + data_size)
610 return 0;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500611 }
Chris Mason5c680ed2007-02-22 11:39:13 -0500612 if (!path->nodes[1]) {
613 ret = insert_new_root(root, path, 1);
614 if (ret)
615 return ret;
616 }
Chris Masoneb60cea2007-02-02 09:18:22 -0500617 slot = path->slots[0];
618 nritems = l->header.nritems;
619 mid = (nritems + 1)/ 2;
620
621 right_buffer = alloc_free_block(root);
622 BUG_ON(!right_buffer);
623 BUG_ON(mid == nritems);
624 right = &right_buffer->leaf;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500625 memset(right, 0, sizeof(*right));
626 if (mid <= slot) {
627 if (leaf_space_used(l, mid, nritems - mid) + space_needed >
628 LEAF_DATA_SIZE)
629 BUG();
630 } else {
631 if (leaf_space_used(l, 0, mid + 1) + space_needed >
632 LEAF_DATA_SIZE)
633 BUG();
634 }
635 right->header.nritems = nritems - mid;
Chris Masoneb60cea2007-02-02 09:18:22 -0500636 right->header.blocknr = right_buffer->blocknr;
637 right->header.flags = node_level(0);
Chris Masoncfaa7292007-02-21 17:04:57 -0500638 right->header.parentid = root->node->node.header.parentid;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500639 data_copy_size = l->items[mid].offset + l->items[mid].size -
640 leaf_data_end(l);
641 memcpy(right->items, l->items + mid,
642 (nritems - mid) * sizeof(struct item));
643 memcpy(right->data + LEAF_DATA_SIZE - data_copy_size,
644 l->data + leaf_data_end(l), data_copy_size);
645 rt_data_off = LEAF_DATA_SIZE -
646 (l->items[mid].offset + l->items[mid].size);
Chris Mason74123bd2007-02-02 11:05:29 -0500647
648 for (i = 0; i < right->header.nritems; i++)
Chris Masonbe0e5c02007-01-26 15:51:26 -0500649 right->items[i].offset += rt_data_off;
Chris Mason74123bd2007-02-02 11:05:29 -0500650
Chris Masonbe0e5c02007-01-26 15:51:26 -0500651 l->header.nritems = mid;
652 ret = insert_ptr(root, path, &right->items[0].key,
Chris Mason5c680ed2007-02-22 11:39:13 -0500653 right_buffer->blocknr, path->slots[1] + 1, 1);
Chris Masoneb60cea2007-02-02 09:18:22 -0500654 write_tree_block(root, right_buffer);
655 write_tree_block(root, l_buf);
656
657 BUG_ON(path->slots[0] != slot);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500658 if (mid <= slot) {
Chris Masoneb60cea2007-02-02 09:18:22 -0500659 tree_block_release(root, path->nodes[0]);
660 path->nodes[0] = right_buffer;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500661 path->slots[0] -= mid;
662 path->slots[1] += 1;
Chris Masoneb60cea2007-02-02 09:18:22 -0500663 } else
664 tree_block_release(root, right_buffer);
665 BUG_ON(path->slots[0] < 0);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500666 return ret;
667}
668
Chris Mason74123bd2007-02-02 11:05:29 -0500669/*
670 * Given a key and some data, insert an item into the tree.
671 * This does all the path init required, making room in the tree if needed.
672 */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500673int insert_item(struct ctree_root *root, struct key *key,
674 void *data, int data_size)
675{
676 int ret;
677 int slot;
Chris Masoneb60cea2007-02-02 09:18:22 -0500678 int slot_orig;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500679 struct leaf *leaf;
Chris Masoneb60cea2007-02-02 09:18:22 -0500680 struct tree_buffer *leaf_buf;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500681 unsigned int nritems;
682 unsigned int data_end;
683 struct ctree_path path;
684
Chris Masoncfaa7292007-02-21 17:04:57 -0500685 refill_alloc_extent(root);
686
Chris Mason74123bd2007-02-02 11:05:29 -0500687 /* create a root if there isn't one */
Chris Mason5c680ed2007-02-22 11:39:13 -0500688 if (!root->node)
Chris Masoncfaa7292007-02-21 17:04:57 -0500689 BUG();
Chris Masonbe0e5c02007-01-26 15:51:26 -0500690 init_path(&path);
Chris Mason5c680ed2007-02-22 11:39:13 -0500691 ret = search_slot(root, key, &path, data_size);
Chris Masoneb60cea2007-02-02 09:18:22 -0500692 if (ret == 0) {
693 release_path(root, &path);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500694 return -EEXIST;
Chris Masoneb60cea2007-02-02 09:18:22 -0500695 }
Chris Masonbe0e5c02007-01-26 15:51:26 -0500696
Chris Masoneb60cea2007-02-02 09:18:22 -0500697 slot_orig = path.slots[0];
698 leaf_buf = path.nodes[0];
699 leaf = &leaf_buf->leaf;
Chris Mason74123bd2007-02-02 11:05:29 -0500700
Chris Masonbe0e5c02007-01-26 15:51:26 -0500701 nritems = leaf->header.nritems;
702 data_end = leaf_data_end(leaf);
Chris Masoneb60cea2007-02-02 09:18:22 -0500703
Chris Masonbe0e5c02007-01-26 15:51:26 -0500704 if (leaf_free_space(leaf) < sizeof(struct item) + data_size)
705 BUG();
706
707 slot = path.slots[0];
Chris Masoneb60cea2007-02-02 09:18:22 -0500708 BUG_ON(slot < 0);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500709 if (slot == 0)
Chris Masoneb60cea2007-02-02 09:18:22 -0500710 fixup_low_keys(root, &path, key, 1);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500711 if (slot != nritems) {
712 int i;
713 unsigned int old_data = leaf->items[slot].offset +
714 leaf->items[slot].size;
715
716 /*
717 * item0..itemN ... dataN.offset..dataN.size .. data0.size
718 */
719 /* first correct the data pointers */
720 for (i = slot; i < nritems; i++)
721 leaf->items[i].offset -= data_size;
722
723 /* shift the items */
724 memmove(leaf->items + slot + 1, leaf->items + slot,
725 (nritems - slot) * sizeof(struct item));
726
727 /* shift the data */
728 memmove(leaf->data + data_end - data_size, leaf->data +
729 data_end, old_data - data_end);
730 data_end = old_data;
731 }
Chris Mason74123bd2007-02-02 11:05:29 -0500732 /* copy the new data in */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500733 memcpy(&leaf->items[slot].key, key, sizeof(struct key));
734 leaf->items[slot].offset = data_end - data_size;
735 leaf->items[slot].size = data_size;
736 memcpy(leaf->data + data_end - data_size, data, data_size);
737 leaf->header.nritems += 1;
Chris Masoneb60cea2007-02-02 09:18:22 -0500738 write_tree_block(root, leaf_buf);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500739 if (leaf_free_space(leaf) < 0)
740 BUG();
Chris Masoneb60cea2007-02-02 09:18:22 -0500741 release_path(root, &path);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500742 return 0;
743}
744
Chris Mason74123bd2007-02-02 11:05:29 -0500745/*
746 * delete the pointer from a given level in the path. The path is not
747 * fixed up, so after calling this it is not valid at that level.
748 *
749 * If the delete empties a node, the node is removed from the tree,
750 * continuing all the way the root if required. The root is converted into
751 * a leaf if all the nodes are emptied.
752 */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500753int del_ptr(struct ctree_root *root, struct ctree_path *path, int level)
754{
755 int slot;
Chris Masoneb60cea2007-02-02 09:18:22 -0500756 struct tree_buffer *t;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500757 struct node *node;
758 int nritems;
759
760 while(1) {
Chris Masoneb60cea2007-02-02 09:18:22 -0500761 t = path->nodes[level];
762 if (!t)
Chris Masonbe0e5c02007-01-26 15:51:26 -0500763 break;
Chris Masoneb60cea2007-02-02 09:18:22 -0500764 node = &t->node;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500765 slot = path->slots[level];
766 nritems = node->header.nritems;
767
768 if (slot != nritems -1) {
769 memmove(node->keys + slot, node->keys + slot + 1,
770 sizeof(struct key) * (nritems - slot - 1));
771 memmove(node->blockptrs + slot,
772 node->blockptrs + slot + 1,
773 sizeof(u64) * (nritems - slot - 1));
774 }
775 node->header.nritems--;
Chris Masoneb60cea2007-02-02 09:18:22 -0500776 write_tree_block(root, t);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500777 if (node->header.nritems != 0) {
778 int tslot;
779 if (slot == 0)
Chris Masoneb60cea2007-02-02 09:18:22 -0500780 fixup_low_keys(root, path, node->keys,
781 level + 1);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500782 tslot = path->slots[level+1];
Chris Masoneb60cea2007-02-02 09:18:22 -0500783 t->count++;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500784 push_node_left(root, path, level);
785 if (node->header.nritems) {
786 push_node_right(root, path, level);
787 }
Chris Masoneb60cea2007-02-02 09:18:22 -0500788 if (node->header.nritems) {
789 tree_block_release(root, t);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500790 break;
Chris Masoneb60cea2007-02-02 09:18:22 -0500791 }
792 tree_block_release(root, t);
Chris Mason4920c9a2007-01-26 16:38:42 -0500793 path->slots[level+1] = tslot;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500794 }
Chris Masoneb60cea2007-02-02 09:18:22 -0500795 if (t == root->node) {
796 /* just turn the root into a leaf and break */
797 root->node->node.header.flags = node_level(0);
798 write_tree_block(root, t);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500799 break;
800 }
801 level++;
802 if (!path->nodes[level])
803 BUG();
Chris Masonbe0e5c02007-01-26 15:51:26 -0500804 }
805 return 0;
806}
807
Chris Mason74123bd2007-02-02 11:05:29 -0500808/*
809 * delete the item at the leaf level in path. If that empties
810 * the leaf, remove it from the tree
811 */
Chris Mason4920c9a2007-01-26 16:38:42 -0500812int del_item(struct ctree_root *root, struct ctree_path *path)
Chris Masonbe0e5c02007-01-26 15:51:26 -0500813{
Chris Masonbe0e5c02007-01-26 15:51:26 -0500814 int slot;
815 struct leaf *leaf;
Chris Masoneb60cea2007-02-02 09:18:22 -0500816 struct tree_buffer *leaf_buf;
Chris Masonbe0e5c02007-01-26 15:51:26 -0500817 int doff;
818 int dsize;
819
Chris Masoneb60cea2007-02-02 09:18:22 -0500820 leaf_buf = path->nodes[0];
821 leaf = &leaf_buf->leaf;
Chris Mason4920c9a2007-01-26 16:38:42 -0500822 slot = path->slots[0];
Chris Masonbe0e5c02007-01-26 15:51:26 -0500823 doff = leaf->items[slot].offset;
824 dsize = leaf->items[slot].size;
825
826 if (slot != leaf->header.nritems - 1) {
827 int i;
828 int data_end = leaf_data_end(leaf);
829 memmove(leaf->data + data_end + dsize,
830 leaf->data + data_end,
831 doff - data_end);
832 for (i = slot + 1; i < leaf->header.nritems; i++)
833 leaf->items[i].offset += dsize;
834 memmove(leaf->items + slot, leaf->items + slot + 1,
835 sizeof(struct item) *
836 (leaf->header.nritems - slot - 1));
837 }
838 leaf->header.nritems -= 1;
Chris Mason74123bd2007-02-02 11:05:29 -0500839 /* delete the leaf if we've emptied it */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500840 if (leaf->header.nritems == 0) {
Chris Masoneb60cea2007-02-02 09:18:22 -0500841 if (leaf_buf == root->node) {
842 leaf->header.flags = node_level(0);
843 write_tree_block(root, leaf_buf);
844 } else
Chris Mason4920c9a2007-01-26 16:38:42 -0500845 del_ptr(root, path, 1);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500846 } else {
847 if (slot == 0)
Chris Masoneb60cea2007-02-02 09:18:22 -0500848 fixup_low_keys(root, path, &leaf->items[0].key, 1);
849 write_tree_block(root, leaf_buf);
Chris Mason74123bd2007-02-02 11:05:29 -0500850 /* delete the leaf if it is mostly empty */
Chris Masonbe0e5c02007-01-26 15:51:26 -0500851 if (leaf_space_used(leaf, 0, leaf->header.nritems) <
852 LEAF_DATA_SIZE / 4) {
853 /* push_leaf_left fixes the path.
854 * make sure the path still points to our leaf
855 * for possible call to del_ptr below
856 */
Chris Mason4920c9a2007-01-26 16:38:42 -0500857 slot = path->slots[1];
Chris Masoneb60cea2007-02-02 09:18:22 -0500858 leaf_buf->count++;
Chris Mason4920c9a2007-01-26 16:38:42 -0500859 push_leaf_left(root, path, 1);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500860 if (leaf->header.nritems == 0) {
Chris Mason4920c9a2007-01-26 16:38:42 -0500861 path->slots[1] = slot;
862 del_ptr(root, path, 1);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500863 }
Chris Masoneb60cea2007-02-02 09:18:22 -0500864 tree_block_release(root, leaf_buf);
Chris Masonbe0e5c02007-01-26 15:51:26 -0500865 }
866 }
867 return 0;
868}
869
Chris Masond97e63b2007-02-20 16:40:44 -0500870int next_leaf(struct ctree_root *root, struct ctree_path *path)
871{
872 int slot;
873 int level = 1;
874 u64 blocknr;
875 struct tree_buffer *c;
Chris Masoncfaa7292007-02-21 17:04:57 -0500876 struct tree_buffer *next = NULL;
Chris Masond97e63b2007-02-20 16:40:44 -0500877
878 while(level < MAX_LEVEL) {
879 if (!path->nodes[level])
880 return -1;
881 slot = path->slots[level] + 1;
882 c = path->nodes[level];
883 if (slot >= c->node.header.nritems) {
884 level++;
885 continue;
886 }
887 blocknr = c->node.blockptrs[slot];
Chris Masoncfaa7292007-02-21 17:04:57 -0500888 if (next)
889 tree_block_release(root, next);
Chris Masond97e63b2007-02-20 16:40:44 -0500890 next = read_tree_block(root, blocknr);
891 break;
892 }
893 path->slots[level] = slot;
894 while(1) {
895 level--;
896 c = path->nodes[level];
897 tree_block_release(root, c);
898 path->nodes[level] = next;
899 path->slots[level] = 0;
900 if (!level)
901 break;
902 next = read_tree_block(root, next->node.blockptrs[0]);
903 }
904 return 0;
905}
906
Chris Masoncfaa7292007-02-21 17:04:57 -0500907int alloc_extent(struct ctree_root *orig_root, u64 num_blocks, u64 search_start,
Chris Masond97e63b2007-02-20 16:40:44 -0500908 u64 search_end, u64 owner, struct key *ins)
909{
910 struct ctree_path path;
911 struct key *key;
912 int ret;
913 u64 hole_size = 0;
914 int slot = 0;
915 u64 last_block;
916 int start_found = 0;
917 struct leaf *l;
918 struct extent_item extent_item;
Chris Masoncfaa7292007-02-21 17:04:57 -0500919 struct ctree_root * root = orig_root->extent_root;
Chris Masond97e63b2007-02-20 16:40:44 -0500920
921 init_path(&path);
922 ins->objectid = search_start;
923 ins->offset = 0;
924 ins->flags = 0;
925
Chris Mason5c680ed2007-02-22 11:39:13 -0500926 ret = search_slot(root, ins, &path, sizeof(struct extent_item));
Chris Masond97e63b2007-02-20 16:40:44 -0500927 while (1) {
928 l = &path.nodes[0]->leaf;
929 slot = path.slots[0];
930 if (!l) {
931 // FIXME allocate root
932 }
933 if (slot >= l->header.nritems) {
934 ret = next_leaf(root, &path);
935 if (ret == 0)
936 continue;
937 if (!start_found) {
938 ins->objectid = search_start;
939 ins->offset = num_blocks;
940 hole_size = search_end - search_start;
941 goto insert;
942 }
943 ins->objectid = last_block;
944 ins->offset = num_blocks;
945 hole_size = search_end - last_block;
946 goto insert;
947 }
948 key = &l->items[slot].key;
949 if (start_found) {
950 hole_size = key->objectid - last_block;
951 if (hole_size > num_blocks) {
952 ins->objectid = last_block;
953 ins->offset = num_blocks;
954 goto insert;
955 }
956 } else
957 start_found = 1;
958 last_block = key->objectid + key->offset;
959 path.slots[0]++;
Chris Masond97e63b2007-02-20 16:40:44 -0500960 }
961 // FIXME -ENOSPC
962insert:
Chris Masoncfaa7292007-02-21 17:04:57 -0500963 release_path(root, &path);
Chris Masond97e63b2007-02-20 16:40:44 -0500964 extent_item.refs = 1;
965 extent_item.owner = owner;
Chris Masoncfaa7292007-02-21 17:04:57 -0500966 if (root == orig_root && root->reserve_extent->num_blocks == 0) {
967 root->reserve_extent->blocknr = ins->objectid;
968 root->reserve_extent->num_blocks = ins->offset;
969 root->reserve_extent->num_used = 0;
970 }
971 ret = insert_item(root->extent_root, ins, &extent_item, sizeof(extent_item));
Chris Masond97e63b2007-02-20 16:40:44 -0500972 return ret;
973}
974
975static int refill_alloc_extent(struct ctree_root *root)
976{
977 struct alloc_extent *ae = root->alloc_extent;
978 struct key key;
979 int ret;
980 int min_blocks = MAX_LEVEL * 2;
981
Chris Masond97e63b2007-02-20 16:40:44 -0500982 if (ae->num_blocks > ae->num_used && ae->num_blocks - ae->num_used >
983 min_blocks)
984 return 0;
985 ae = root->reserve_extent;
986 if (ae->num_blocks > ae->num_used) {
987 if (root->alloc_extent->num_blocks == 0) {
988 /* we should swap reserve/alloc_extent when alloc
989 * fills up
990 */
991 BUG();
992 }
993 if (ae->num_blocks - ae->num_used < min_blocks)
994 BUG();
995 return 0;
996 }
Chris Masoncfaa7292007-02-21 17:04:57 -0500997 ret = alloc_extent(root,
998 min_blocks * 2, 0, (unsigned long)-1,
999 root->node->node.header.parentid, &key);
Chris Masond97e63b2007-02-20 16:40:44 -05001000 ae->blocknr = key.objectid;
1001 ae->num_blocks = key.offset;
1002 ae->num_used = 0;
1003 return ret;
1004}
1005
Chris Masonbe0e5c02007-01-26 15:51:26 -05001006void print_leaf(struct leaf *l)
1007{
1008 int i;
1009 int nr = l->header.nritems;
1010 struct item *item;
Chris Masoncfaa7292007-02-21 17:04:57 -05001011 struct extent_item *ei;
Chris Masoneb60cea2007-02-02 09:18:22 -05001012 printf("leaf %lu total ptrs %d free space %d\n", l->header.blocknr, nr,
Chris Masonbe0e5c02007-01-26 15:51:26 -05001013 leaf_free_space(l));
1014 fflush(stdout);
1015 for (i = 0 ; i < nr ; i++) {
1016 item = l->items + i;
1017 printf("\titem %d key (%lu %u %lu) itemoff %d itemsize %d\n",
1018 i,
1019 item->key.objectid, item->key.flags, item->key.offset,
1020 item->offset, item->size);
1021 fflush(stdout);
1022 printf("\t\titem data %.*s\n", item->size, l->data+item->offset);
Chris Masoncfaa7292007-02-21 17:04:57 -05001023 ei = (struct extent_item *)(l->data + item->offset);
1024 printf("\t\textent data %u %lu\n", ei->refs, ei->owner);
Chris Masonbe0e5c02007-01-26 15:51:26 -05001025 fflush(stdout);
1026 }
1027}
Chris Masoneb60cea2007-02-02 09:18:22 -05001028void print_tree(struct ctree_root *root, struct tree_buffer *t)
Chris Masonbe0e5c02007-01-26 15:51:26 -05001029{
1030 int i;
1031 int nr;
Chris Masoneb60cea2007-02-02 09:18:22 -05001032 struct node *c;
Chris Masonbe0e5c02007-01-26 15:51:26 -05001033
Chris Masoneb60cea2007-02-02 09:18:22 -05001034 if (!t)
Chris Masonbe0e5c02007-01-26 15:51:26 -05001035 return;
Chris Masoneb60cea2007-02-02 09:18:22 -05001036 c = &t->node;
Chris Masonbe0e5c02007-01-26 15:51:26 -05001037 nr = c->header.nritems;
Chris Masoneb60cea2007-02-02 09:18:22 -05001038 if (c->header.blocknr != t->blocknr)
1039 BUG();
Chris Masonbe0e5c02007-01-26 15:51:26 -05001040 if (is_leaf(c->header.flags)) {
1041 print_leaf((struct leaf *)c);
1042 return;
1043 }
Chris Masoneb60cea2007-02-02 09:18:22 -05001044 printf("node %lu level %d total ptrs %d free spc %lu\n", t->blocknr,
Chris Masonbe0e5c02007-01-26 15:51:26 -05001045 node_level(c->header.flags), c->header.nritems,
1046 NODEPTRS_PER_BLOCK - c->header.nritems);
1047 fflush(stdout);
1048 for (i = 0; i < nr; i++) {
Chris Masoneb60cea2007-02-02 09:18:22 -05001049 printf("\tkey %d (%lu %u %lu) block %lu\n",
Chris Masonbe0e5c02007-01-26 15:51:26 -05001050 i,
1051 c->keys[i].objectid, c->keys[i].flags, c->keys[i].offset,
1052 c->blockptrs[i]);
1053 fflush(stdout);
1054 }
1055 for (i = 0; i < nr; i++) {
Chris Masoneb60cea2007-02-02 09:18:22 -05001056 struct tree_buffer *next_buf = read_tree_block(root,
1057 c->blockptrs[i]);
1058 struct node *next = &next_buf->node;
Chris Masonbe0e5c02007-01-26 15:51:26 -05001059 if (is_leaf(next->header.flags) &&
1060 node_level(c->header.flags) != 1)
1061 BUG();
1062 if (node_level(next->header.flags) !=
1063 node_level(c->header.flags) - 1)
1064 BUG();
Chris Masoneb60cea2007-02-02 09:18:22 -05001065 print_tree(root, next_buf);
1066 tree_block_release(root, next_buf);
Chris Masonbe0e5c02007-01-26 15:51:26 -05001067 }
1068
1069}
1070
1071/* for testing only */
1072int next_key(int i, int max_key) {
Chris Mason5c680ed2007-02-22 11:39:13 -05001073 // return rand() % max_key;
1074 return i;
Chris Masonbe0e5c02007-01-26 15:51:26 -05001075}
1076
1077int main() {
Chris Masoneb60cea2007-02-02 09:18:22 -05001078 struct ctree_root *root;
Chris Masonbe0e5c02007-01-26 15:51:26 -05001079 struct key ins;
Chris Mason4920c9a2007-01-26 16:38:42 -05001080 struct key last = { (u64)-1, 0, 0};
Chris Masonbe0e5c02007-01-26 15:51:26 -05001081 char *buf;
1082 int i;
1083 int num;
1084 int ret;
Chris Masoncfaa7292007-02-21 17:04:57 -05001085 int run_size = 10000;
Chris Masonbe0e5c02007-01-26 15:51:26 -05001086 int max_key = 100000000;
1087 int tree_size = 0;
1088 struct ctree_path path;
Chris Masoncfaa7292007-02-21 17:04:57 -05001089 struct ctree_super_block super;
Chris Masonbe0e5c02007-01-26 15:51:26 -05001090
Chris Masoneb60cea2007-02-02 09:18:22 -05001091 radix_tree_init();
1092
1093
Chris Masoncfaa7292007-02-21 17:04:57 -05001094 root = open_ctree("dbfile", &super);
1095 printf("root tree\n");
1096 print_tree(root, root->node);
1097 printf("map tree\n");
1098 print_tree(root->extent_root, root->extent_root->node);
Chris Masonbe0e5c02007-01-26 15:51:26 -05001099
1100 srand(55);
Chris Masonbe0e5c02007-01-26 15:51:26 -05001101 for (i = 0; i < run_size; i++) {
1102 buf = malloc(64);
1103 num = next_key(i, max_key);
1104 // num = i;
1105 sprintf(buf, "string-%d", num);
1106 // printf("insert %d\n", num);
1107 ins.objectid = num;
1108 ins.offset = 0;
1109 ins.flags = 0;
Chris Masoneb60cea2007-02-02 09:18:22 -05001110 ret = insert_item(root, &ins, buf, strlen(buf));
Chris Masonbe0e5c02007-01-26 15:51:26 -05001111 if (!ret)
1112 tree_size++;
1113 }
Chris Masond97e63b2007-02-20 16:40:44 -05001114 printf("root used: %lu\n", root->alloc_extent->num_used);
1115 printf("root tree\n");
Chris Masoncfaa7292007-02-21 17:04:57 -05001116 // print_tree(root, root->node);
Chris Masond97e63b2007-02-20 16:40:44 -05001117 printf("map tree\n");
1118 printf("map used: %lu\n", root->extent_root->alloc_extent->num_used);
Chris Masoncfaa7292007-02-21 17:04:57 -05001119 // print_tree(root->extent_root, root->extent_root->node);
1120 write_ctree_super(root, &super);
Chris Masoneb60cea2007-02-02 09:18:22 -05001121 close_ctree(root);
Chris Masoncfaa7292007-02-21 17:04:57 -05001122
1123 root = open_ctree("dbfile", &super);
Chris Masoneb60cea2007-02-02 09:18:22 -05001124 printf("starting search\n");
Chris Masonbe0e5c02007-01-26 15:51:26 -05001125 srand(55);
1126 for (i = 0; i < run_size; i++) {
1127 num = next_key(i, max_key);
1128 ins.objectid = num;
Chris Masonbe0e5c02007-01-26 15:51:26 -05001129 init_path(&path);
Chris Mason5c680ed2007-02-22 11:39:13 -05001130 ret = search_slot(root, &ins, &path, 0);
Chris Masonbe0e5c02007-01-26 15:51:26 -05001131 if (ret) {
Chris Masoneb60cea2007-02-02 09:18:22 -05001132 print_tree(root, root->node);
Chris Masonbe0e5c02007-01-26 15:51:26 -05001133 printf("unable to find %d\n", num);
1134 exit(1);
1135 }
Chris Masoneb60cea2007-02-02 09:18:22 -05001136 release_path(root, &path);
Chris Masonbe0e5c02007-01-26 15:51:26 -05001137 }
Chris Masoncfaa7292007-02-21 17:04:57 -05001138 write_ctree_super(root, &super);
Chris Masoneb60cea2007-02-02 09:18:22 -05001139 close_ctree(root);
Chris Masoncfaa7292007-02-21 17:04:57 -05001140 root = open_ctree("dbfile", &super);
Chris Masoneb60cea2007-02-02 09:18:22 -05001141 printf("node %p level %d total ptrs %d free spc %lu\n", root->node,
1142 node_level(root->node->node.header.flags),
1143 root->node->node.header.nritems,
1144 NODEPTRS_PER_BLOCK - root->node->node.header.nritems);
1145 printf("all searches good, deleting some items\n");
Chris Masonbe0e5c02007-01-26 15:51:26 -05001146 i = 0;
1147 srand(55);
Chris Mason4920c9a2007-01-26 16:38:42 -05001148 for (i = 0 ; i < run_size/4; i++) {
Chris Masonbe0e5c02007-01-26 15:51:26 -05001149 num = next_key(i, max_key);
1150 ins.objectid = num;
Chris Mason4920c9a2007-01-26 16:38:42 -05001151 init_path(&path);
Chris Mason5c680ed2007-02-22 11:39:13 -05001152 ret = search_slot(root, &ins, &path, 0);
Chris Mason4920c9a2007-01-26 16:38:42 -05001153 if (ret)
1154 continue;
Chris Masoneb60cea2007-02-02 09:18:22 -05001155 ret = del_item(root, &path);
Chris Mason4920c9a2007-01-26 16:38:42 -05001156 if (ret != 0)
1157 BUG();
Chris Masoneb60cea2007-02-02 09:18:22 -05001158 release_path(root, &path);
Chris Mason4920c9a2007-01-26 16:38:42 -05001159 tree_size--;
1160 }
1161 srand(128);
1162 for (i = 0; i < run_size; i++) {
1163 buf = malloc(64);
1164 num = next_key(i, max_key);
1165 sprintf(buf, "string-%d", num);
1166 ins.objectid = num;
Chris Masoneb60cea2007-02-02 09:18:22 -05001167 ret = insert_item(root, &ins, buf, strlen(buf));
Chris Mason4920c9a2007-01-26 16:38:42 -05001168 if (!ret)
1169 tree_size++;
1170 }
Chris Masoncfaa7292007-02-21 17:04:57 -05001171 write_ctree_super(root, &super);
Chris Masoneb60cea2007-02-02 09:18:22 -05001172 close_ctree(root);
Chris Masoncfaa7292007-02-21 17:04:57 -05001173 root = open_ctree("dbfile", &super);
Chris Masoneb60cea2007-02-02 09:18:22 -05001174 printf("starting search2\n");
1175 srand(128);
1176 for (i = 0; i < run_size; i++) {
1177 num = next_key(i, max_key);
1178 ins.objectid = num;
1179 init_path(&path);
Chris Mason5c680ed2007-02-22 11:39:13 -05001180 ret = search_slot(root, &ins, &path, 0);
Chris Masoneb60cea2007-02-02 09:18:22 -05001181 if (ret) {
1182 print_tree(root, root->node);
1183 printf("unable to find %d\n", num);
1184 exit(1);
1185 }
1186 release_path(root, &path);
1187 }
1188 printf("starting big long delete run\n");
1189 while(root->node && root->node->node.header.nritems > 0) {
Chris Mason4920c9a2007-01-26 16:38:42 -05001190 struct leaf *leaf;
1191 int slot;
1192 ins.objectid = (u64)-1;
1193 init_path(&path);
Chris Mason5c680ed2007-02-22 11:39:13 -05001194 ret = search_slot(root, &ins, &path, 0);
Chris Mason4920c9a2007-01-26 16:38:42 -05001195 if (ret == 0)
1196 BUG();
1197
Chris Masoneb60cea2007-02-02 09:18:22 -05001198 leaf = &path.nodes[0]->leaf;
Chris Mason4920c9a2007-01-26 16:38:42 -05001199 slot = path.slots[0];
1200 if (slot != leaf->header.nritems)
1201 BUG();
1202 while(path.slots[0] > 0) {
1203 path.slots[0] -= 1;
1204 slot = path.slots[0];
Chris Masoneb60cea2007-02-02 09:18:22 -05001205 leaf = &path.nodes[0]->leaf;
Chris Mason4920c9a2007-01-26 16:38:42 -05001206
1207 if (comp_keys(&last, &leaf->items[slot].key) <= 0)
1208 BUG();
1209 memcpy(&last, &leaf->items[slot].key, sizeof(last));
Chris Masoneb60cea2007-02-02 09:18:22 -05001210 ret = del_item(root, &path);
1211 if (ret != 0) {
1212 printf("del_item returned %d\n", ret);
Chris Mason4920c9a2007-01-26 16:38:42 -05001213 BUG();
Chris Masoneb60cea2007-02-02 09:18:22 -05001214 }
Chris Mason4920c9a2007-01-26 16:38:42 -05001215 tree_size--;
1216 }
Chris Masoneb60cea2007-02-02 09:18:22 -05001217 release_path(root, &path);
Chris Masonbe0e5c02007-01-26 15:51:26 -05001218 }
Chris Masoncfaa7292007-02-21 17:04:57 -05001219 write_ctree_super(root, &super);
Chris Masoneb60cea2007-02-02 09:18:22 -05001220 close_ctree(root);
Chris Mason4920c9a2007-01-26 16:38:42 -05001221 printf("tree size is now %d\n", tree_size);
Chris Masonbe0e5c02007-01-26 15:51:26 -05001222 return 0;
1223}