cache-tree.c 16.8 KB
Newer Older
J
Junio C Hamano 已提交
1 2
#include "cache.h"
#include "tree.h"
3
#include "tree-walk.h"
J
Junio C Hamano 已提交
4 5
#include "cache-tree.h"

6
#ifndef DEBUG
J
Junio C Hamano 已提交
7
#define DEBUG 0
8
#endif
J
Junio C Hamano 已提交
9 10 11 12 13 14 15 16

struct cache_tree *cache_tree(void)
{
	struct cache_tree *it = xcalloc(1, sizeof(struct cache_tree));
	it->entry_count = -1;
	return it;
}

17
void cache_tree_free(struct cache_tree **it_p)
J
Junio C Hamano 已提交
18 19
{
	int i;
20
	struct cache_tree *it = *it_p;
J
Junio C Hamano 已提交
21 22 23 24

	if (!it)
		return;
	for (i = 0; i < it->subtree_nr; i++)
25
		if (it->down[i]) {
26
			cache_tree_free(&it->down[i]->cache_tree);
27 28
			free(it->down[i]);
		}
J
Junio C Hamano 已提交
29 30
	free(it->down);
	free(it);
31
	*it_p = NULL;
J
Junio C Hamano 已提交
32 33
}

34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64
static int subtree_name_cmp(const char *one, int onelen,
			    const char *two, int twolen)
{
	if (onelen < twolen)
		return -1;
	if (twolen < onelen)
		return 1;
	return memcmp(one, two, onelen);
}

static int subtree_pos(struct cache_tree *it, const char *path, int pathlen)
{
	struct cache_tree_sub **down = it->down;
	int lo, hi;
	lo = 0;
	hi = it->subtree_nr;
	while (lo < hi) {
		int mi = (lo + hi) / 2;
		struct cache_tree_sub *mdl = down[mi];
		int cmp = subtree_name_cmp(path, pathlen,
					   mdl->name, mdl->namelen);
		if (!cmp)
			return mi;
		if (cmp < 0)
			hi = mi;
		else
			lo = mi + 1;
	}
	return -lo-1;
}

J
Junio C Hamano 已提交
65 66 67 68 69 70
static struct cache_tree_sub *find_subtree(struct cache_tree *it,
					   const char *path,
					   int pathlen,
					   int create)
{
	struct cache_tree_sub *down;
71 72 73
	int pos = subtree_pos(it, path, pathlen);
	if (0 <= pos)
		return it->down[pos];
J
Junio C Hamano 已提交
74 75
	if (!create)
		return NULL;
76 77

	pos = -pos-1;
78
	ALLOC_GROW(it->down, it->subtree_nr + 1, it->subtree_alloc);
79 80
	it->subtree_nr++;

J
Junio C Hamano 已提交
81
	down = xmalloc(sizeof(*down) + pathlen + 1);
82
	down->cache_tree = NULL;
J
Junio C Hamano 已提交
83 84
	down->namelen = pathlen;
	memcpy(down->name, path, pathlen);
85 86 87 88 89 90 91
	down->name[pathlen] = 0;

	if (pos < it->subtree_nr)
		memmove(it->down + pos + 1,
			it->down + pos,
			sizeof(down) * (it->subtree_nr - pos - 1));
	it->down[pos] = down;
J
Junio C Hamano 已提交
92 93 94
	return down;
}

95 96 97 98 99 100
struct cache_tree_sub *cache_tree_sub(struct cache_tree *it, const char *path)
{
	int pathlen = strlen(path);
	return find_subtree(it, path, pathlen, 1);
}

101
static int do_invalidate_path(struct cache_tree *it, const char *path)
J
Junio C Hamano 已提交
102 103 104 105 106 107 108 109 110 111 112 113
{
	/* a/b/c
	 * ==> invalidate self
	 * ==> find "a", have it invalidate "b/c"
	 * a
	 * ==> invalidate self
	 * ==> if "a" exists as a subtree, remove it.
	 */
	const char *slash;
	int namelen;
	struct cache_tree_sub *down;

114 115 116 117
#if DEBUG
	fprintf(stderr, "cache-tree invalidate <%s>\n", path);
#endif

J
Junio C Hamano 已提交
118
	if (!it)
119
		return 0;
120 121
	slash = strchrnul(path, '/');
	namelen = slash - path;
J
Junio C Hamano 已提交
122
	it->entry_count = -1;
123
	if (!*slash) {
124 125 126 127 128
		int pos;
		pos = subtree_pos(it, path, namelen);
		if (0 <= pos) {
			cache_tree_free(&it->down[pos]->cache_tree);
			free(it->down[pos]);
J
Junio C Hamano 已提交
129 130
			/* 0 1 2 3 4 5
			 *       ^     ^subtree_nr = 6
131
			 *       pos
J
Junio C Hamano 已提交
132
			 * move 4 and 5 up one place (2 entries)
133
			 * 2 = 6 - 3 - 1 = subtree_nr - pos - 1
J
Junio C Hamano 已提交
134
			 */
135
			memmove(it->down+pos, it->down+pos+1,
J
Junio C Hamano 已提交
136
				sizeof(struct cache_tree_sub *) *
137
				(it->subtree_nr - pos - 1));
J
Junio C Hamano 已提交
138 139
			it->subtree_nr--;
		}
140
		return 1;
J
Junio C Hamano 已提交
141 142 143
	}
	down = find_subtree(it, path, namelen, 0);
	if (down)
144 145 146 147 148 149 150 151
		do_invalidate_path(down->cache_tree, slash + 1);
	return 1;
}

void cache_tree_invalidate_path(struct index_state *istate, const char *path)
{
	if (do_invalidate_path(istate->cache_tree, path))
		istate->cache_changed |= CACHE_TREE_CHANGED;
J
Junio C Hamano 已提交
152 153
}

154
static int verify_cache(struct cache_entry **cache,
155
			int entries, int flags)
J
Junio C Hamano 已提交
156 157
{
	int i, funny;
158
	int silent = flags & WRITE_TREE_SILENT;
J
Junio C Hamano 已提交
159 160 161 162

	/* Verify that the tree is merged */
	funny = 0;
	for (i = 0; i < entries; i++) {
163
		const struct cache_entry *ce = cache[i];
164
		if (ce_stage(ce)) {
165 166
			if (silent)
				return -1;
J
Junio C Hamano 已提交
167 168 169 170
			if (10 < ++funny) {
				fprintf(stderr, "...\n");
				break;
			}
171 172
			fprintf(stderr, "%s: unmerged (%s)\n",
				ce->name, sha1_to_hex(ce->sha1));
J
Junio C Hamano 已提交
173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216
		}
	}
	if (funny)
		return -1;

	/* Also verify that the cache does not have path and path/file
	 * at the same time.  At this point we know the cache has only
	 * stage 0 entries.
	 */
	funny = 0;
	for (i = 0; i < entries - 1; i++) {
		/* path/file always comes after path because of the way
		 * the cache is sorted.  Also path can appear only once,
		 * which means conflicting one would immediately follow.
		 */
		const char *this_name = cache[i]->name;
		const char *next_name = cache[i+1]->name;
		int this_len = strlen(this_name);
		if (this_len < strlen(next_name) &&
		    strncmp(this_name, next_name, this_len) == 0 &&
		    next_name[this_len] == '/') {
			if (10 < ++funny) {
				fprintf(stderr, "...\n");
				break;
			}
			fprintf(stderr, "You have both %s and %s\n",
				this_name, next_name);
		}
	}
	if (funny)
		return -1;
	return 0;
}

static void discard_unused_subtrees(struct cache_tree *it)
{
	struct cache_tree_sub **down = it->down;
	int nr = it->subtree_nr;
	int dst, src;
	for (dst = src = 0; src < nr; src++) {
		struct cache_tree_sub *s = down[src];
		if (s->used)
			down[dst++] = s;
		else {
217
			cache_tree_free(&s->cache_tree);
J
Junio C Hamano 已提交
218 219 220 221 222 223
			free(s);
			it->subtree_nr--;
		}
	}
}

224 225 226 227 228 229 230 231 232 233 234 235 236 237
int cache_tree_fully_valid(struct cache_tree *it)
{
	int i;
	if (!it)
		return 0;
	if (it->entry_count < 0 || !has_sha1_file(it->sha1))
		return 0;
	for (i = 0; i < it->subtree_nr; i++) {
		if (!cache_tree_fully_valid(it->down[i]->cache_tree))
			return 0;
	}
	return 1;
}

J
Junio C Hamano 已提交
238
static int update_one(struct cache_tree *it,
239
		      struct cache_entry **cache,
J
Junio C Hamano 已提交
240 241 242
		      int entries,
		      const char *base,
		      int baselen,
243
		      int *skip_count,
244
		      int flags)
J
Junio C Hamano 已提交
245
{
P
Pierre Habouzit 已提交
246
	struct strbuf buffer;
247 248
	int missing_ok = flags & WRITE_TREE_MISSING_OK;
	int dryrun = flags & WRITE_TREE_DRY_RUN;
249
	int repair = flags & WRITE_TREE_REPAIR;
250
	int to_invalidate = 0;
J
Junio C Hamano 已提交
251 252
	int i;

253 254
	assert(!(dryrun && repair));

255 256
	*skip_count = 0;

257
	if (0 <= it->entry_count && has_sha1_file(it->sha1))
J
Junio C Hamano 已提交
258 259 260 261 262 263 264 265 266 267 268 269 270
		return it->entry_count;

	/*
	 * We first scan for subtrees and update them; we start by
	 * marking existing subtrees -- the ones that are unmarked
	 * should not be in the result.
	 */
	for (i = 0; i < it->subtree_nr; i++)
		it->down[i]->used = 0;

	/*
	 * Find the subtrees and update them.
	 */
271 272
	i = 0;
	while (i < entries) {
273
		const struct cache_entry *ce = cache[i];
J
Junio C Hamano 已提交
274 275
		struct cache_tree_sub *sub;
		const char *path, *slash;
276
		int pathlen, sublen, subcnt, subskip;
J
Junio C Hamano 已提交
277 278 279 280 281 282 283

		path = ce->name;
		pathlen = ce_namelen(ce);
		if (pathlen <= baselen || memcmp(base, path, baselen))
			break; /* at the end of this level */

		slash = strchr(path + baselen, '/');
284 285
		if (!slash) {
			i++;
J
Junio C Hamano 已提交
286
			continue;
287
		}
J
Junio C Hamano 已提交
288 289 290 291 292 293 294 295 296 297 298 299 300
		/*
		 * a/bbb/c (base = a/, slash = /c)
		 * ==>
		 * path+baselen = bbb/c, sublen = 3
		 */
		sublen = slash - (path + baselen);
		sub = find_subtree(it, path + baselen, sublen, 1);
		if (!sub->cache_tree)
			sub->cache_tree = cache_tree();
		subcnt = update_one(sub->cache_tree,
				    cache + i, entries - i,
				    path,
				    baselen + sublen + 1,
301
				    &subskip,
302
				    flags);
303 304
		if (subcnt < 0)
			return subcnt;
305
		i += subcnt;
306 307
		sub->count = subcnt; /* to be used in the next loop */
		*skip_count += subskip;
J
Junio C Hamano 已提交
308 309 310 311 312 313 314 315
		sub->used = 1;
	}

	discard_unused_subtrees(it);

	/*
	 * Then write out the tree object for this level.
	 */
316
	strbuf_init(&buffer, 8192);
J
Junio C Hamano 已提交
317

318 319
	i = 0;
	while (i < entries) {
320
		const struct cache_entry *ce = cache[i];
J
Junio C Hamano 已提交
321 322 323 324 325
		struct cache_tree_sub *sub;
		const char *path, *slash;
		int pathlen, entlen;
		const unsigned char *sha1;
		unsigned mode;
326
		int expected_missing = 0;
J
Junio C Hamano 已提交
327 328 329 330 331 332 333 334 335 336 337 338 339

		path = ce->name;
		pathlen = ce_namelen(ce);
		if (pathlen <= baselen || memcmp(base, path, baselen))
			break; /* at the end of this level */

		slash = strchr(path + baselen, '/');
		if (slash) {
			entlen = slash - (path + baselen);
			sub = find_subtree(it, path + baselen, entlen, 0);
			if (!sub)
				die("cache-tree.c: '%.*s' in '%s' not found",
				    entlen, path + baselen, path);
340
			i += sub->count;
J
Junio C Hamano 已提交
341 342
			sha1 = sub->cache_tree->sha1;
			mode = S_IFDIR;
343
			if (sub->cache_tree->entry_count < 0) {
344
				to_invalidate = 1;
345 346
				expected_missing = 1;
			}
J
Junio C Hamano 已提交
347 348 349
		}
		else {
			sha1 = ce->sha1;
350
			mode = ce->ce_mode;
J
Junio C Hamano 已提交
351
			entlen = pathlen - baselen;
352
			i++;
J
Junio C Hamano 已提交
353
		}
354 355
		if (mode != S_IFGITLINK && !missing_ok && !has_sha1_file(sha1)) {
			strbuf_release(&buffer);
356 357
			if (expected_missing)
				return -1;
358 359
			return error("invalid object %06o %s for '%.*s'",
				mode, sha1_to_hex(sha1), entlen+baselen, path);
360
		}
J
Junio C Hamano 已提交
361

362 363 364 365 366 367 368 369 370 371
		/*
		 * CE_REMOVE entries are removed before the index is
		 * written to disk. Skip them to remain consistent
		 * with the future on-disk index.
		 */
		if (ce->ce_flags & CE_REMOVE) {
			*skip_count = *skip_count + 1;
			continue;
		}

372 373 374 375 376 377 378
		/*
		 * CE_INTENT_TO_ADD entries exist on on-disk index but
		 * they are not part of generated trees. Invalidate up
		 * to root to force cache-tree users to read elsewhere.
		 */
		if (ce->ce_flags & CE_INTENT_TO_ADD) {
			to_invalidate = 1;
379
			continue;
380
		}
J
Junio C Hamano 已提交
381

P
Pierre Habouzit 已提交
382 383 384
		strbuf_grow(&buffer, entlen + 100);
		strbuf_addf(&buffer, "%o %.*s%c", mode, entlen, path + baselen, '\0');
		strbuf_add(&buffer, sha1, 20);
J
Junio C Hamano 已提交
385 386

#if DEBUG
387
		fprintf(stderr, "cache-tree update-one %o %.*s\n",
J
Junio C Hamano 已提交
388 389 390 391
			mode, entlen, path + baselen);
#endif
	}

392 393 394 395 396 397 398 399
	if (repair) {
		unsigned char sha1[20];
		hash_sha1_file(buffer.buf, buffer.len, tree_type, sha1);
		if (has_sha1_file(sha1))
			hashcpy(it->sha1, sha1);
		else
			to_invalidate = 1;
	} else if (dryrun)
P
Pierre Habouzit 已提交
400
		hash_sha1_file(buffer.buf, buffer.len, tree_type, it->sha1);
401 402 403 404 405
	else if (write_sha1_file(buffer.buf, buffer.len, tree_type, it->sha1)) {
		strbuf_release(&buffer);
		return -1;
	}

P
Pierre Habouzit 已提交
406
	strbuf_release(&buffer);
407
	it->entry_count = to_invalidate ? -1 : i - *skip_count;
J
Junio C Hamano 已提交
408
#if DEBUG
409
	fprintf(stderr, "cache-tree update-one (%d ent, %d subtree) %s\n",
J
Junio C Hamano 已提交
410 411 412 413 414 415
		it->entry_count, it->subtree_nr,
		sha1_to_hex(it->sha1));
#endif
	return i;
}

416
int cache_tree_update(struct index_state *istate, int flags)
J
Junio C Hamano 已提交
417
{
418 419 420 421 422
	struct cache_tree *it = istate->cache_tree;
	struct cache_entry **cache = istate->cache;
	int entries = istate->cache_nr;
	int skip, i = verify_cache(cache, entries, flags);

J
Junio C Hamano 已提交
423 424
	if (i)
		return i;
425
	i = update_one(it, cache, entries, "", 0, &skip, flags);
J
Junio C Hamano 已提交
426 427
	if (i < 0)
		return i;
428
	istate->cache_changed |= CACHE_TREE_CHANGED;
J
Junio C Hamano 已提交
429 430 431
	return 0;
}

432 433
static void write_one(struct strbuf *buffer, struct cache_tree *it,
                      const char *path, int pathlen)
J
Junio C Hamano 已提交
434 435 436 437 438 439 440 441 442
{
	int i;

	/* One "cache-tree" entry consists of the following:
	 * path (NUL terminated)
	 * entry_count, subtree_nr ("%d %d\n")
	 * tree-sha1 (missing if invalid)
	 * subtree_nr "cache-tree" entries for subtrees.
	 */
P
Pierre Habouzit 已提交
443 444 445
	strbuf_grow(buffer, pathlen + 100);
	strbuf_add(buffer, path, pathlen);
	strbuf_addf(buffer, "%c%d %d\n", 0, it->entry_count, it->subtree_nr);
J
Junio C Hamano 已提交
446 447 448 449 450 451 452 453 454 455 456 457

#if DEBUG
	if (0 <= it->entry_count)
		fprintf(stderr, "cache-tree <%.*s> (%d ent, %d subtree) %s\n",
			pathlen, path, it->entry_count, it->subtree_nr,
			sha1_to_hex(it->sha1));
	else
		fprintf(stderr, "cache-tree <%.*s> (%d subtree) invalid\n",
			pathlen, path, it->subtree_nr);
#endif

	if (0 <= it->entry_count) {
P
Pierre Habouzit 已提交
458
		strbuf_add(buffer, it->sha1, 20);
J
Junio C Hamano 已提交
459 460 461
	}
	for (i = 0; i < it->subtree_nr; i++) {
		struct cache_tree_sub *down = it->down[i];
462 463 464 465 466 467
		if (i) {
			struct cache_tree_sub *prev = it->down[i-1];
			if (subtree_name_cmp(down->name, down->namelen,
					     prev->name, prev->namelen) <= 0)
				die("fatal - unsorted cache subtree");
		}
468
		write_one(buffer, down->cache_tree, down->name, down->namelen);
J
Junio C Hamano 已提交
469 470 471
	}
}

472
void cache_tree_write(struct strbuf *sb, struct cache_tree *root)
J
Junio C Hamano 已提交
473
{
474
	write_one(sb, root, "", 0);
J
Junio C Hamano 已提交
475 476 477 478 479 480
}

static struct cache_tree *read_one(const char **buffer, unsigned long *size_p)
{
	const char *buf = *buffer;
	unsigned long size = *size_p;
481 482
	const char *cp;
	char *ep;
J
Junio C Hamano 已提交
483 484 485 486 487 488 489 490 491 492 493 494 495
	struct cache_tree *it;
	int i, subtree_nr;

	it = NULL;
	/* skip name, but make sure name exists */
	while (size && *buf) {
		size--;
		buf++;
	}
	if (!size)
		goto free_return;
	buf++; size--;
	it = cache_tree();
496 497 498 499 500 501 502 503

	cp = buf;
	it->entry_count = strtol(cp, &ep, 10);
	if (cp == ep)
		goto free_return;
	cp = ep;
	subtree_nr = strtol(cp, &ep, 10);
	if (cp == ep)
J
Junio C Hamano 已提交
504 505 506 507 508 509 510 511 512 513 514
		goto free_return;
	while (size && *buf && *buf != '\n') {
		size--;
		buf++;
	}
	if (!size)
		goto free_return;
	buf++; size--;
	if (0 <= it->entry_count) {
		if (size < 20)
			goto free_return;
J
Junio C Hamano 已提交
515
		hashcpy(it->sha1, (const unsigned char*)buf);
J
Junio C Hamano 已提交
516 517 518 519 520 521 522 523 524 525 526 527 528 529 530 531 532 533 534 535 536 537 538 539
		buf += 20;
		size -= 20;
	}

#if DEBUG
	if (0 <= it->entry_count)
		fprintf(stderr, "cache-tree <%s> (%d ent, %d subtree) %s\n",
			*buffer, it->entry_count, subtree_nr,
			sha1_to_hex(it->sha1));
	else
		fprintf(stderr, "cache-tree <%s> (%d subtrees) invalid\n",
			*buffer, subtree_nr);
#endif

	/*
	 * Just a heuristic -- we do not add directories that often but
	 * we do not want to have to extend it immediately when we do,
	 * hence +2.
	 */
	it->subtree_alloc = subtree_nr + 2;
	it->down = xcalloc(it->subtree_alloc, sizeof(struct cache_tree_sub *));
	for (i = 0; i < subtree_nr; i++) {
		/* read each subtree */
		struct cache_tree *sub;
540
		struct cache_tree_sub *subtree;
J
Junio C Hamano 已提交
541
		const char *name = buf;
542

J
Junio C Hamano 已提交
543 544 545
		sub = read_one(&buf, &size);
		if (!sub)
			goto free_return;
546
		subtree = cache_tree_sub(it, name);
547
		subtree->cache_tree = sub;
J
Junio C Hamano 已提交
548 549 550 551 552 553 554 555
	}
	if (subtree_nr != it->subtree_nr)
		die("cache-tree: internal error");
	*buffer = buf;
	*size_p = size;
	return it;

 free_return:
556
	cache_tree_free(&it);
J
Junio C Hamano 已提交
557 558 559
	return NULL;
}

560
struct cache_tree *cache_tree_read(const char *buffer, unsigned long size)
J
Junio C Hamano 已提交
561
{
562
	if (buffer[0])
J
Junio C Hamano 已提交
563 564 565
		return NULL; /* not the whole tree */
	return read_one(&buffer, &size);
}
J
Junio C Hamano 已提交
566

567
static struct cache_tree *cache_tree_find(struct cache_tree *it, const char *path)
J
Junio C Hamano 已提交
568
{
569 570
	if (!it)
		return NULL;
J
Junio C Hamano 已提交
571 572 573 574
	while (*path) {
		const char *slash;
		struct cache_tree_sub *sub;

575
		slash = strchrnul(path, '/');
576 577 578
		/*
		 * Between path and slash is the name of the subtree
		 * to look for.
J
Junio C Hamano 已提交
579 580 581 582 583
		 */
		sub = find_subtree(it, path, slash - path, 0);
		if (!sub)
			return NULL;
		it = sub->cache_tree;
584

J
Junio C Hamano 已提交
585
		path = slash;
586 587
		while (*path == '/')
			path++;
J
Junio C Hamano 已提交
588 589 590
	}
	return it;
}
591

J
Junio C Hamano 已提交
592
int write_cache_as_tree(unsigned char *sha1, int flags, const char *prefix)
593 594
{
	int entries, was_valid, newfd;
J
Junio C Hamano 已提交
595
	struct lock_file *lock_file;
596 597 598 599 600

	/*
	 * We can't free this memory, it becomes part of a linked list
	 * parsed atexit()
	 */
J
Junio C Hamano 已提交
601
	lock_file = xcalloc(1, sizeof(struct lock_file));
602 603 604 605 606 607

	newfd = hold_locked_index(lock_file, 1);

	entries = read_cache();
	if (entries < 0)
		return WRITE_TREE_UNREADABLE_INDEX;
J
Junio C Hamano 已提交
608 609
	if (flags & WRITE_TREE_IGNORE_CACHE_TREE)
		cache_tree_free(&(active_cache_tree));
610 611 612 613 614 615

	if (!active_cache_tree)
		active_cache_tree = cache_tree();

	was_valid = cache_tree_fully_valid(active_cache_tree);
	if (!was_valid) {
616
		if (cache_tree_update(&the_index, flags) < 0)
617 618
			return WRITE_TREE_UNMERGED_INDEX;
		if (0 <= newfd) {
619
			if (!write_locked_index(&the_index, lock_file, COMMIT_LOCK))
620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644
				newfd = -1;
		}
		/* Not being able to write is fine -- we are only interested
		 * in updating the cache-tree part, and if the next caller
		 * ends up using the old index with unupdated cache-tree part
		 * it misses the work we did here, but that is just a
		 * performance penalty and not a big deal.
		 */
	}

	if (prefix) {
		struct cache_tree *subtree =
			cache_tree_find(active_cache_tree, prefix);
		if (!subtree)
			return WRITE_TREE_PREFIX_ERROR;
		hashcpy(sha1, subtree->sha1);
	}
	else
		hashcpy(sha1, active_cache_tree->sha1);

	if (0 <= newfd)
		rollback_lock_file(lock_file);

	return 0;
}
645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671

static void prime_cache_tree_rec(struct cache_tree *it, struct tree *tree)
{
	struct tree_desc desc;
	struct name_entry entry;
	int cnt;

	hashcpy(it->sha1, tree->object.sha1);
	init_tree_desc(&desc, tree->buffer, tree->size);
	cnt = 0;
	while (tree_entry(&desc, &entry)) {
		if (!S_ISDIR(entry.mode))
			cnt++;
		else {
			struct cache_tree_sub *sub;
			struct tree *subtree = lookup_tree(entry.sha1);
			if (!subtree->object.parsed)
				parse_tree(subtree);
			sub = cache_tree_sub(it, entry.path);
			sub->cache_tree = cache_tree();
			prime_cache_tree_rec(sub->cache_tree, subtree);
			cnt += sub->cache_tree->entry_count;
		}
	}
	it->entry_count = cnt;
}

672
void prime_cache_tree(struct index_state *istate, struct tree *tree)
673
{
674 675 676 677
	cache_tree_free(&istate->cache_tree);
	istate->cache_tree = cache_tree();
	prime_cache_tree_rec(istate->cache_tree, tree);
	istate->cache_changed |= CACHE_TREE_CHANGED;
678
}
679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710

/*
 * find the cache_tree that corresponds to the current level without
 * exploding the full path into textual form.  The root of the
 * cache tree is given as "root", and our current level is "info".
 * (1) When at root level, info->prev is NULL, so it is "root" itself.
 * (2) Otherwise, find the cache_tree that corresponds to one level
 *     above us, and find ourselves in there.
 */
static struct cache_tree *find_cache_tree_from_traversal(struct cache_tree *root,
							 struct traverse_info *info)
{
	struct cache_tree *our_parent;

	if (!info->prev)
		return root;
	our_parent = find_cache_tree_from_traversal(root, info->prev);
	return cache_tree_find(our_parent, info->name.path);
}

int cache_tree_matches_traversal(struct cache_tree *root,
				 struct name_entry *ent,
				 struct traverse_info *info)
{
	struct cache_tree *it;

	it = find_cache_tree_from_traversal(root, info);
	it = cache_tree_find(it, ent->path);
	if (it && it->entry_count > 0 && !hashcmp(ent->sha1, it->sha1))
		return it->entry_count;
	return 0;
}
711

712
int update_main_cache_tree(int flags)
713 714 715
{
	if (!the_index.cache_tree)
		the_index.cache_tree = cache_tree();
716
	return cache_tree_update(&the_index, flags);
717
}