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match-trees: compute buffer offset correctly when splicing
[thirdparty/git.git] / match-trees.c
CommitLineData
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1#include "cache.h"
2#include "tree.h"
3#include "tree-walk.h"
cbd53a21 4#include "object-store.h"
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5
6static int score_missing(unsigned mode, const char *path)
7{
8 int score;
9
10 if (S_ISDIR(mode))
11 score = -1000;
12 else if (S_ISLNK(mode))
13 score = -500;
14 else
15 score = -50;
16 return score;
17}
18
19static int score_differs(unsigned mode1, unsigned mode2, const char *path)
20{
21 int score;
22
23 if (S_ISDIR(mode1) != S_ISDIR(mode2))
24 score = -100;
25 else if (S_ISLNK(mode1) != S_ISLNK(mode2))
26 score = -50;
27 else
28 score = -5;
29 return score;
30}
31
32static int score_matches(unsigned mode1, unsigned mode2, const char *path)
33{
34 int score;
35
36 /* Heh, we found SHA-1 collisions between different kind of objects */
37 if (S_ISDIR(mode1) != S_ISDIR(mode2))
38 score = -100;
39 else if (S_ISLNK(mode1) != S_ISLNK(mode2))
40 score = -50;
41
42 else if (S_ISDIR(mode1))
43 score = 1000;
44 else if (S_ISLNK(mode1))
45 score = 500;
46 else
47 score = 250;
48 return score;
49}
50
10a3fb00 51static void *fill_tree_desc_strict(struct tree_desc *desc,
b6aec868 52 const struct object_id *hash)
10a3fb00
RS
53{
54 void *buffer;
55 enum object_type type;
56 unsigned long size;
57
b4f5aca4 58 buffer = read_object_file(hash, &type, &size);
10a3fb00 59 if (!buffer)
b6aec868 60 die("unable to read tree (%s)", oid_to_hex(hash));
10a3fb00 61 if (type != OBJ_TREE)
b6aec868 62 die("%s is not a tree", oid_to_hex(hash));
10a3fb00
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63 init_tree_desc(desc, buffer, size);
64 return buffer;
65}
66
d8febde3
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67static int base_name_entries_compare(const struct name_entry *a,
68 const struct name_entry *b)
69{
70 return base_name_compare(a->path, tree_entry_len(a), a->mode,
71 b->path, tree_entry_len(b), b->mode);
72}
73
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74/*
75 * Inspect two trees, and give a score that tells how similar they are.
76 */
b6aec868 77static int score_trees(const struct object_id *hash1, const struct object_id *hash2)
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78{
79 struct tree_desc one;
80 struct tree_desc two;
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81 void *one_buf = fill_tree_desc_strict(&one, hash1);
82 void *two_buf = fill_tree_desc_strict(&two, hash2);
68faf689 83 int score = 0;
68faf689 84
d8febde3 85 for (;;) {
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86 int cmp;
87
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88 if (one.size && two.size)
89 cmp = base_name_entries_compare(&one.entry, &two.entry);
90 else if (one.size)
68faf689 91 /* two lacks this entry */
d8febde3 92 cmp = -1;
2ec41507 93 else if (two.size)
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94 /* two has more entries */
95 cmp = 1;
96 else
97 break;
98
2ec41507 99 if (cmp < 0) {
68faf689 100 /* path1 does not appear in two */
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101 score += score_missing(one.entry.mode, one.entry.path);
102 update_tree_entry(&one);
103 } else if (cmp > 0) {
68faf689 104 /* path2 does not appear in one */
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105 score += score_missing(two.entry.mode, two.entry.path);
106 update_tree_entry(&two);
107 } else {
108 /* path appears in both */
9001dc2a 109 if (!oideq(one.entry.oid, two.entry.oid)) {
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110 /* they are different */
111 score += score_differs(one.entry.mode,
112 two.entry.mode,
113 one.entry.path);
114 } else {
115 /* same subtree or blob */
116 score += score_matches(one.entry.mode,
117 two.entry.mode,
118 one.entry.path);
119 }
120 update_tree_entry(&one);
121 update_tree_entry(&two);
122 }
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123 }
124 free(one_buf);
125 free(two_buf);
126 return score;
127}
128
129/*
130 * Match one itself and its subtrees with two and pick the best match.
131 */
b6aec868 132static void match_trees(const struct object_id *hash1,
133 const struct object_id *hash2,
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134 int *best_score,
135 char **best_match,
538dfe73 136 const char *base,
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137 int recurse_limit)
138{
139 struct tree_desc one;
10a3fb00 140 void *one_buf = fill_tree_desc_strict(&one, hash1);
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141
142 while (one.size) {
143 const char *path;
ce6663a9 144 const struct object_id *elem;
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145 unsigned mode;
146 int score;
147
148 elem = tree_entry_extract(&one, &path, &mode);
149 if (!S_ISDIR(mode))
150 goto next;
b6aec868 151 score = score_trees(elem, hash2);
68faf689 152 if (*best_score < score) {
68faf689 153 free(*best_match);
28310186 154 *best_match = xstrfmt("%s%s", base, path);
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155 *best_score = score;
156 }
157 if (recurse_limit) {
28310186 158 char *newbase = xstrfmt("%s%s/", base, path);
b6aec868 159 match_trees(elem, hash2, best_score, best_match,
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160 newbase, recurse_limit - 1);
161 free(newbase);
162 }
163
164 next:
165 update_tree_entry(&one);
166 }
167 free(one_buf);
168}
169
170/*
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171 * A tree "oid1" has a subdirectory at "prefix". Come up with a tree object by
172 * replacing it with another tree "oid2".
68faf689 173 */
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174static int splice_tree(const struct object_id *oid1, const char *prefix,
175 const struct object_id *oid2, struct object_id *result)
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176{
177 char *subpath;
178 int toplen;
179 char *buf;
180 unsigned long sz;
181 struct tree_desc desc;
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182 struct object_id *rewrite_here;
183 const struct object_id *rewrite_with;
184 struct object_id subtree;
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185 enum object_type type;
186 int status;
187
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188 subpath = strchrnul(prefix, '/');
189 toplen = subpath - prefix;
190 if (*subpath)
68faf689 191 subpath++;
68faf689 192
b4f5aca4 193 buf = read_object_file(oid1, &type, &sz);
68faf689 194 if (!buf)
3b34934d 195 die("cannot read tree %s", oid_to_hex(oid1));
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196 init_tree_desc(&desc, buf, sz);
197
198 rewrite_here = NULL;
199 while (desc.size) {
200 const char *name;
201 unsigned mode;
68faf689 202
36775ab5 203 tree_entry_extract(&desc, &name, &mode);
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204 if (strlen(name) == toplen &&
205 !memcmp(name, prefix, toplen)) {
206 if (!S_ISDIR(mode))
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207 die("entry %s in tree %s is not a tree", name,
208 oid_to_hex(oid1));
36775ab5 209 rewrite_here = (struct object_id *)(desc.entry.path +
210 strlen(desc.entry.path) +
211 1);
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212 break;
213 }
214 update_tree_entry(&desc);
215 }
216 if (!rewrite_here)
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217 die("entry %.*s not found in tree %s", toplen, prefix,
218 oid_to_hex(oid1));
2c5495f7 219 if (*subpath) {
3b34934d 220 status = splice_tree(rewrite_here, subpath, oid2, &subtree);
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221 if (status)
222 return status;
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223 rewrite_with = &subtree;
224 } else {
225 rewrite_with = oid2;
68faf689 226 }
3b34934d 227 oidcpy(rewrite_here, rewrite_with);
a09c985e 228 status = write_object_file(buf, sz, tree_type, result);
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229 free(buf);
230 return status;
231}
232
233/*
234 * We are trying to come up with a merge between one and two that
235 * results in a tree shape similar to one. The tree two might
236 * correspond to a subtree of one, in which case it needs to be
237 * shifted down by prefixing otherwise empty directories. On the
238 * other hand, it could cover tree one and we might need to pick a
239 * subtree of it.
240 */
82db3d44 241void shift_tree(const struct object_id *hash1,
242 const struct object_id *hash2,
243 struct object_id *shifted,
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244 int depth_limit)
245{
246 char *add_prefix;
247 char *del_prefix;
248 int add_score, del_score;
249
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250 /*
251 * NEEDSWORK: this limits the recursion depth to hardcoded
252 * value '2' to avoid excessive overhead.
253 */
254 if (!depth_limit)
255 depth_limit = 2;
256
b6aec868 257 add_score = del_score = score_trees(hash1, hash2);
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258 add_prefix = xcalloc(1, 1);
259 del_prefix = xcalloc(1, 1);
260
261 /*
262 * See if one's subtree resembles two; if so we need to prefix
263 * two with a few fake trees to match the prefix.
264 */
b6aec868 265 match_trees(hash1, hash2, &add_score, &add_prefix, "", depth_limit);
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266
267 /*
268 * See if two's subtree resembles one; if so we need to
269 * pick only subtree of two.
270 */
b6aec868 271 match_trees(hash2, hash1, &del_score, &del_prefix, "", depth_limit);
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272
273 /* Assume we do not have to do any shifting */
82db3d44 274 oidcpy(shifted, hash2);
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275
276 if (add_score < del_score) {
277 /* We need to pick a subtree of two */
278 unsigned mode;
279
280 if (!*del_prefix)
281 return;
282
916bc35b 283 if (get_tree_entry(hash2, del_prefix, shifted, &mode))
68faf689 284 die("cannot find path %s in tree %s",
82db3d44 285 del_prefix, oid_to_hex(hash2));
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286 return;
287 }
288
289 if (!*add_prefix)
290 return;
291
3b34934d 292 splice_tree(hash1, add_prefix, hash2, shifted);
68faf689 293}
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294
295/*
296 * The user says the trees will be shifted by this much.
297 * Unfortunately we cannot fundamentally tell which one to
298 * be prefixed, as recursive merge can work in either direction.
299 */
82db3d44 300void shift_tree_by(const struct object_id *hash1,
301 const struct object_id *hash2,
302 struct object_id *shifted,
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303 const char *shift_prefix)
304{
82db3d44 305 struct object_id sub1, sub2;
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306 unsigned mode1, mode2;
307 unsigned candidate = 0;
308
309 /* Can hash2 be a tree at shift_prefix in tree hash1? */
916bc35b 310 if (!get_tree_entry(hash1, shift_prefix, &sub1, &mode1) &&
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311 S_ISDIR(mode1))
312 candidate |= 1;
313
314 /* Can hash1 be a tree at shift_prefix in tree hash2? */
916bc35b 315 if (!get_tree_entry(hash2, shift_prefix, &sub2, &mode2) &&
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316 S_ISDIR(mode2))
317 candidate |= 2;
318
319 if (candidate == 3) {
320 /* Both are plausible -- we need to evaluate the score */
b6aec868 321 int best_score = score_trees(hash1, hash2);
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322 int score;
323
324 candidate = 0;
b6aec868 325 score = score_trees(&sub1, hash2);
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326 if (score > best_score) {
327 candidate = 1;
328 best_score = score;
329 }
b6aec868 330 score = score_trees(&sub2, hash1);
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331 if (score > best_score)
332 candidate = 2;
333 }
334
335 if (!candidate) {
336 /* Neither is plausible -- do not shift */
82db3d44 337 oidcpy(shifted, hash2);
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338 return;
339 }
340
341 if (candidate == 1)
342 /*
343 * shift tree2 down by adding shift_prefix above it
344 * to match tree1.
345 */
3b34934d 346 splice_tree(hash1, shift_prefix, hash2, shifted);
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347 else
348 /*
349 * shift tree2 up by removing shift_prefix from it
350 * to match tree1.
351 */
82db3d44 352 oidcpy(shifted, &sub2);
85e51b78 353}