diffcore-rename: complete find_basename_matches()
[git] / diffcore-rename.c
1 /*
2  *
3  * Copyright (C) 2005 Junio C Hamano
4  */
5 #include "cache.h"
6 #include "diff.h"
7 #include "diffcore.h"
8 #include "object-store.h"
9 #include "hashmap.h"
10 #include "progress.h"
11 #include "promisor-remote.h"
12 #include "strmap.h"
13
14 /* Table of rename/copy destinations */
15
16 static struct diff_rename_dst {
17         struct diff_filepair *p;
18         struct diff_filespec *filespec_to_free;
19         int is_rename; /* false -> just a create; true -> rename or copy */
20 } *rename_dst;
21 static int rename_dst_nr, rename_dst_alloc;
22 /* Mapping from break source pathname to break destination index */
23 static struct strintmap *break_idx = NULL;
24
25 static struct diff_rename_dst *locate_rename_dst(struct diff_filepair *p)
26 {
27         /* Lookup by p->ONE->path */
28         int idx = break_idx ? strintmap_get(break_idx, p->one->path) : -1;
29         return (idx == -1) ? NULL : &rename_dst[idx];
30 }
31
32 /*
33  * Returns 0 on success, -1 if we found a duplicate.
34  */
35 static int add_rename_dst(struct diff_filepair *p)
36 {
37         ALLOC_GROW(rename_dst, rename_dst_nr + 1, rename_dst_alloc);
38         rename_dst[rename_dst_nr].p = p;
39         rename_dst[rename_dst_nr].filespec_to_free = NULL;
40         rename_dst[rename_dst_nr].is_rename = 0;
41         rename_dst_nr++;
42         return 0;
43 }
44
45 /* Table of rename/copy src files */
46 static struct diff_rename_src {
47         struct diff_filepair *p;
48         unsigned short score; /* to remember the break score */
49 } *rename_src;
50 static int rename_src_nr, rename_src_alloc;
51
52 static void register_rename_src(struct diff_filepair *p)
53 {
54         if (p->broken_pair) {
55                 if (!break_idx) {
56                         break_idx = xmalloc(sizeof(*break_idx));
57                         strintmap_init(break_idx, -1);
58                 }
59                 strintmap_set(break_idx, p->one->path, rename_dst_nr);
60         }
61
62         ALLOC_GROW(rename_src, rename_src_nr + 1, rename_src_alloc);
63         rename_src[rename_src_nr].p = p;
64         rename_src[rename_src_nr].score = p->score;
65         rename_src_nr++;
66 }
67
68 static int basename_same(struct diff_filespec *src, struct diff_filespec *dst)
69 {
70         int src_len = strlen(src->path), dst_len = strlen(dst->path);
71         while (src_len && dst_len) {
72                 char c1 = src->path[--src_len];
73                 char c2 = dst->path[--dst_len];
74                 if (c1 != c2)
75                         return 0;
76                 if (c1 == '/')
77                         return 1;
78         }
79         return (!src_len || src->path[src_len - 1] == '/') &&
80                 (!dst_len || dst->path[dst_len - 1] == '/');
81 }
82
83 struct diff_score {
84         int src; /* index in rename_src */
85         int dst; /* index in rename_dst */
86         unsigned short score;
87         short name_score;
88 };
89
90 struct prefetch_options {
91         struct repository *repo;
92         int skip_unmodified;
93 };
94 static void prefetch(void *prefetch_options)
95 {
96         struct prefetch_options *options = prefetch_options;
97         int i;
98         struct oid_array to_fetch = OID_ARRAY_INIT;
99
100         for (i = 0; i < rename_dst_nr; i++) {
101                 if (rename_dst[i].p->renamed_pair)
102                         /*
103                          * The loop in diffcore_rename() will not need these
104                          * blobs, so skip prefetching.
105                          */
106                         continue; /* already found exact match */
107                 diff_add_if_missing(options->repo, &to_fetch,
108                                     rename_dst[i].p->two);
109         }
110         for (i = 0; i < rename_src_nr; i++) {
111                 if (options->skip_unmodified &&
112                     diff_unmodified_pair(rename_src[i].p))
113                         /*
114                          * The loop in diffcore_rename() will not need these
115                          * blobs, so skip prefetching.
116                          */
117                         continue;
118                 diff_add_if_missing(options->repo, &to_fetch,
119                                     rename_src[i].p->one);
120         }
121         promisor_remote_get_direct(options->repo, to_fetch.oid, to_fetch.nr);
122         oid_array_clear(&to_fetch);
123 }
124
125 static int estimate_similarity(struct repository *r,
126                                struct diff_filespec *src,
127                                struct diff_filespec *dst,
128                                int minimum_score,
129                                int skip_unmodified)
130 {
131         /* src points at a file that existed in the original tree (or
132          * optionally a file in the destination tree) and dst points
133          * at a newly created file.  They may be quite similar, in which
134          * case we want to say src is renamed to dst or src is copied into
135          * dst, and then some edit has been applied to dst.
136          *
137          * Compare them and return how similar they are, representing
138          * the score as an integer between 0 and MAX_SCORE.
139          *
140          * When there is an exact match, it is considered a better
141          * match than anything else; the destination does not even
142          * call into this function in that case.
143          */
144         unsigned long max_size, delta_size, base_size, src_copied, literal_added;
145         int score;
146         struct diff_populate_filespec_options dpf_options = {
147                 .check_size_only = 1
148         };
149         struct prefetch_options prefetch_options = {r, skip_unmodified};
150
151         if (r == the_repository && has_promisor_remote()) {
152                 dpf_options.missing_object_cb = prefetch;
153                 dpf_options.missing_object_data = &prefetch_options;
154         }
155
156         /* We deal only with regular files.  Symlink renames are handled
157          * only when they are exact matches --- in other words, no edits
158          * after renaming.
159          */
160         if (!S_ISREG(src->mode) || !S_ISREG(dst->mode))
161                 return 0;
162
163         /*
164          * Need to check that source and destination sizes are
165          * filled in before comparing them.
166          *
167          * If we already have "cnt_data" filled in, we know it's
168          * all good (avoid checking the size for zero, as that
169          * is a possible size - we really should have a flag to
170          * say whether the size is valid or not!)
171          */
172         if (!src->cnt_data &&
173             diff_populate_filespec(r, src, &dpf_options))
174                 return 0;
175         if (!dst->cnt_data &&
176             diff_populate_filespec(r, dst, &dpf_options))
177                 return 0;
178
179         max_size = ((src->size > dst->size) ? src->size : dst->size);
180         base_size = ((src->size < dst->size) ? src->size : dst->size);
181         delta_size = max_size - base_size;
182
183         /* We would not consider edits that change the file size so
184          * drastically.  delta_size must be smaller than
185          * (MAX_SCORE-minimum_score)/MAX_SCORE * min(src->size, dst->size).
186          *
187          * Note that base_size == 0 case is handled here already
188          * and the final score computation below would not have a
189          * divide-by-zero issue.
190          */
191         if (max_size * (MAX_SCORE-minimum_score) < delta_size * MAX_SCORE)
192                 return 0;
193
194         dpf_options.check_size_only = 0;
195
196         if (!src->cnt_data && diff_populate_filespec(r, src, &dpf_options))
197                 return 0;
198         if (!dst->cnt_data && diff_populate_filespec(r, dst, &dpf_options))
199                 return 0;
200
201         if (diffcore_count_changes(r, src, dst,
202                                    &src->cnt_data, &dst->cnt_data,
203                                    &src_copied, &literal_added))
204                 return 0;
205
206         /* How similar are they?
207          * what percentage of material in dst are from source?
208          */
209         if (!dst->size)
210                 score = 0; /* should not happen */
211         else
212                 score = (int)(src_copied * MAX_SCORE / max_size);
213         return score;
214 }
215
216 static void record_rename_pair(int dst_index, int src_index, int score)
217 {
218         struct diff_filepair *src = rename_src[src_index].p;
219         struct diff_filepair *dst = rename_dst[dst_index].p;
220
221         if (dst->renamed_pair)
222                 die("internal error: dst already matched.");
223
224         src->one->rename_used++;
225         src->one->count++;
226
227         rename_dst[dst_index].filespec_to_free = dst->one;
228         rename_dst[dst_index].is_rename = 1;
229
230         dst->one = src->one;
231         dst->renamed_pair = 1;
232         if (!strcmp(dst->one->path, dst->two->path))
233                 dst->score = rename_src[src_index].score;
234         else
235                 dst->score = score;
236 }
237
238 /*
239  * We sort the rename similarity matrix with the score, in descending
240  * order (the most similar first).
241  */
242 static int score_compare(const void *a_, const void *b_)
243 {
244         const struct diff_score *a = a_, *b = b_;
245
246         /* sink the unused ones to the bottom */
247         if (a->dst < 0)
248                 return (0 <= b->dst);
249         else if (b->dst < 0)
250                 return -1;
251
252         if (a->score == b->score)
253                 return b->name_score - a->name_score;
254
255         return b->score - a->score;
256 }
257
258 struct file_similarity {
259         struct hashmap_entry entry;
260         int index;
261         struct diff_filespec *filespec;
262 };
263
264 static unsigned int hash_filespec(struct repository *r,
265                                   struct diff_filespec *filespec)
266 {
267         if (!filespec->oid_valid) {
268                 if (diff_populate_filespec(r, filespec, NULL))
269                         return 0;
270                 hash_object_file(r->hash_algo, filespec->data, filespec->size,
271                                  "blob", &filespec->oid);
272         }
273         return oidhash(&filespec->oid);
274 }
275
276 static int find_identical_files(struct hashmap *srcs,
277                                 int dst_index,
278                                 struct diff_options *options)
279 {
280         int renames = 0;
281         struct diff_filespec *target = rename_dst[dst_index].p->two;
282         struct file_similarity *p, *best = NULL;
283         int i = 100, best_score = -1;
284         unsigned int hash = hash_filespec(options->repo, target);
285
286         /*
287          * Find the best source match for specified destination.
288          */
289         p = hashmap_get_entry_from_hash(srcs, hash, NULL,
290                                         struct file_similarity, entry);
291         hashmap_for_each_entry_from(srcs, p, entry) {
292                 int score;
293                 struct diff_filespec *source = p->filespec;
294
295                 /* False hash collision? */
296                 if (!oideq(&source->oid, &target->oid))
297                         continue;
298                 /* Non-regular files? If so, the modes must match! */
299                 if (!S_ISREG(source->mode) || !S_ISREG(target->mode)) {
300                         if (source->mode != target->mode)
301                                 continue;
302                 }
303                 /* Give higher scores to sources that haven't been used already */
304                 score = !source->rename_used;
305                 if (source->rename_used && options->detect_rename != DIFF_DETECT_COPY)
306                         continue;
307                 score += basename_same(source, target);
308                 if (score > best_score) {
309                         best = p;
310                         best_score = score;
311                         if (score == 2)
312                                 break;
313                 }
314
315                 /* Too many identical alternatives? Pick one */
316                 if (!--i)
317                         break;
318         }
319         if (best) {
320                 record_rename_pair(dst_index, best->index, MAX_SCORE);
321                 renames++;
322         }
323         return renames;
324 }
325
326 static void insert_file_table(struct repository *r,
327                               struct hashmap *table, int index,
328                               struct diff_filespec *filespec)
329 {
330         struct file_similarity *entry = xmalloc(sizeof(*entry));
331
332         entry->index = index;
333         entry->filespec = filespec;
334
335         hashmap_entry_init(&entry->entry, hash_filespec(r, filespec));
336         hashmap_add(table, &entry->entry);
337 }
338
339 /*
340  * Find exact renames first.
341  *
342  * The first round matches up the up-to-date entries,
343  * and then during the second round we try to match
344  * cache-dirty entries as well.
345  */
346 static int find_exact_renames(struct diff_options *options)
347 {
348         int i, renames = 0;
349         struct hashmap file_table;
350
351         /* Add all sources to the hash table in reverse order, because
352          * later on they will be retrieved in LIFO order.
353          */
354         hashmap_init(&file_table, NULL, NULL, rename_src_nr);
355         for (i = rename_src_nr-1; i >= 0; i--)
356                 insert_file_table(options->repo,
357                                   &file_table, i,
358                                   rename_src[i].p->one);
359
360         /* Walk the destinations and find best source match */
361         for (i = 0; i < rename_dst_nr; i++)
362                 renames += find_identical_files(&file_table, i, options);
363
364         /* Free the hash data structure and entries */
365         hashmap_clear_and_free(&file_table, struct file_similarity, entry);
366
367         return renames;
368 }
369
370 static const char *get_basename(const char *filename)
371 {
372         /*
373          * gitbasename() has to worry about special drives, multiple
374          * directory separator characters, trailing slashes, NULL or
375          * empty strings, etc.  We only work on filenames as stored in
376          * git, and thus get to ignore all those complications.
377          */
378         const char *base = strrchr(filename, '/');
379         return base ? base + 1 : filename;
380 }
381
382 MAYBE_UNUSED
383 static int find_basename_matches(struct diff_options *options,
384                                  int minimum_score)
385 {
386         /*
387          * When I checked in early 2020, over 76% of file renames in linux
388          * just moved files to a different directory but kept the same
389          * basename.  gcc did that with over 64% of renames, gecko did it
390          * with over 79%, and WebKit did it with over 89%.
391          *
392          * Therefore we can bypass the normal exhaustive NxM matrix
393          * comparison of similarities between all potential rename sources
394          * and destinations by instead using file basename as a hint (i.e.
395          * the portion of the filename after the last '/'), checking for
396          * similarity between files with the same basename, and if we find
397          * a pair that are sufficiently similar, record the rename pair and
398          * exclude those two from the NxM matrix.
399          *
400          * This *might* cause us to find a less than optimal pairing (if
401          * there is another file that we are even more similar to but has a
402          * different basename).  Given the huge performance advantage
403          * basename matching provides, and given the frequency with which
404          * people use the same basename in real world projects, that's a
405          * trade-off we are willing to accept when doing just rename
406          * detection.
407          *
408          * If someone wants copy detection that implies they are willing to
409          * spend more cycles to find similarities between files, so it may
410          * be less likely that this heuristic is wanted.  If someone is
411          * doing break detection, that means they do not want filename
412          * similarity to imply any form of content similiarity, and thus
413          * this heuristic would definitely be incompatible.
414          */
415
416         int i, renames = 0;
417         struct strintmap sources;
418         struct strintmap dests;
419         struct hashmap_iter iter;
420         struct strmap_entry *entry;
421
422         /*
423          * The prefeteching stuff wants to know if it can skip prefetching
424          * blobs that are unmodified...and will then do a little extra work
425          * to verify that the oids are indeed different before prefetching.
426          * Unmodified blobs are only relevant when doing copy detection;
427          * when limiting to rename detection, diffcore_rename[_extended]()
428          * will never be called with unmodified source paths fed to us, so
429          * the extra work necessary to check if rename_src entries are
430          * unmodified would be a small waste.
431          */
432         int skip_unmodified = 0;
433
434         /*
435          * Create maps of basename -> fullname(s) for remaining sources and
436          * dests.
437          */
438         strintmap_init_with_options(&sources, -1, NULL, 0);
439         strintmap_init_with_options(&dests, -1, NULL, 0);
440         for (i = 0; i < rename_src_nr; ++i) {
441                 char *filename = rename_src[i].p->one->path;
442                 const char *base;
443
444                 /* exact renames removed in remove_unneeded_paths_from_src() */
445                 assert(!rename_src[i].p->one->rename_used);
446
447                 /* Record index within rename_src (i) if basename is unique */
448                 base = get_basename(filename);
449                 if (strintmap_contains(&sources, base))
450                         strintmap_set(&sources, base, -1);
451                 else
452                         strintmap_set(&sources, base, i);
453         }
454         for (i = 0; i < rename_dst_nr; ++i) {
455                 char *filename = rename_dst[i].p->two->path;
456                 const char *base;
457
458                 if (rename_dst[i].is_rename)
459                         continue; /* involved in exact match already. */
460
461                 /* Record index within rename_dst (i) if basename is unique */
462                 base = get_basename(filename);
463                 if (strintmap_contains(&dests, base))
464                         strintmap_set(&dests, base, -1);
465                 else
466                         strintmap_set(&dests, base, i);
467         }
468
469         /* Now look for basename matchups and do similarity estimation */
470         strintmap_for_each_entry(&sources, &iter, entry) {
471                 const char *base = entry->key;
472                 intptr_t src_index = (intptr_t)entry->value;
473                 intptr_t dst_index;
474                 if (src_index == -1)
475                         continue;
476
477                 if (0 <= (dst_index = strintmap_get(&dests, base))) {
478                         struct diff_filespec *one, *two;
479                         int score;
480
481                         /* Estimate the similarity */
482                         one = rename_src[src_index].p->one;
483                         two = rename_dst[dst_index].p->two;
484                         score = estimate_similarity(options->repo, one, two,
485                                                     minimum_score, skip_unmodified);
486
487                         /* If sufficiently similar, record as rename pair */
488                         if (score < minimum_score)
489                                 continue;
490                         record_rename_pair(dst_index, src_index, score);
491                         renames++;
492
493                         /*
494                          * Found a rename so don't need text anymore; if we
495                          * didn't find a rename, the filespec_blob would get
496                          * re-used when doing the matrix of comparisons.
497                          */
498                         diff_free_filespec_blob(one);
499                         diff_free_filespec_blob(two);
500                 }
501         }
502
503         strintmap_clear(&sources);
504         strintmap_clear(&dests);
505
506         return renames;
507 }
508
509 #define NUM_CANDIDATE_PER_DST 4
510 static void record_if_better(struct diff_score m[], struct diff_score *o)
511 {
512         int i, worst;
513
514         /* find the worst one */
515         worst = 0;
516         for (i = 1; i < NUM_CANDIDATE_PER_DST; i++)
517                 if (score_compare(&m[i], &m[worst]) > 0)
518                         worst = i;
519
520         /* is it better than the worst one? */
521         if (score_compare(&m[worst], o) > 0)
522                 m[worst] = *o;
523 }
524
525 /*
526  * Returns:
527  * 0 if we are under the limit;
528  * 1 if we need to disable inexact rename detection;
529  * 2 if we would be under the limit if we were given -C instead of -C -C.
530  */
531 static int too_many_rename_candidates(int num_destinations, int num_sources,
532                                       struct diff_options *options)
533 {
534         int rename_limit = options->rename_limit;
535         int i, limited_sources;
536
537         options->needed_rename_limit = 0;
538
539         /*
540          * This basically does a test for the rename matrix not
541          * growing larger than a "rename_limit" square matrix, ie:
542          *
543          *    num_destinations * num_sources > rename_limit * rename_limit
544          *
545          * We use st_mult() to check overflow conditions; in the
546          * exceptional circumstance that size_t isn't large enough to hold
547          * the multiplication, the system won't be able to allocate enough
548          * memory for the matrix anyway.
549          */
550         if (rename_limit <= 0)
551                 rename_limit = 32767;
552         if (st_mult(num_destinations, num_sources)
553             <= st_mult(rename_limit, rename_limit))
554                 return 0;
555
556         options->needed_rename_limit =
557                 num_sources > num_destinations ? num_sources : num_destinations;
558
559         /* Are we running under -C -C? */
560         if (!options->flags.find_copies_harder)
561                 return 1;
562
563         /* Would we bust the limit if we were running under -C? */
564         for (limited_sources = i = 0; i < num_sources; i++) {
565                 if (diff_unmodified_pair(rename_src[i].p))
566                         continue;
567                 limited_sources++;
568         }
569         if (st_mult(num_destinations, limited_sources)
570             <= st_mult(rename_limit, rename_limit))
571                 return 2;
572         return 1;
573 }
574
575 static int find_renames(struct diff_score *mx, int dst_cnt, int minimum_score, int copies)
576 {
577         int count = 0, i;
578
579         for (i = 0; i < dst_cnt * NUM_CANDIDATE_PER_DST; i++) {
580                 struct diff_rename_dst *dst;
581
582                 if ((mx[i].dst < 0) ||
583                     (mx[i].score < minimum_score))
584                         break; /* there is no more usable pair. */
585                 dst = &rename_dst[mx[i].dst];
586                 if (dst->is_rename)
587                         continue; /* already done, either exact or fuzzy. */
588                 if (!copies && rename_src[mx[i].src].p->one->rename_used)
589                         continue;
590                 record_rename_pair(mx[i].dst, mx[i].src, mx[i].score);
591                 count++;
592         }
593         return count;
594 }
595
596 static void remove_unneeded_paths_from_src(int detecting_copies)
597 {
598         int i, new_num_src;
599
600         if (detecting_copies)
601                 return; /* nothing to remove */
602         if (break_idx)
603                 return; /* culling incompatible with break detection */
604
605         /*
606          * Note on reasons why we cull unneeded sources but not destinations:
607          *   1) Pairings are stored in rename_dst (not rename_src), which we
608          *      need to keep around.  So, we just can't cull rename_dst even
609          *      if we wanted to.  But doing so wouldn't help because...
610          *
611          *   2) There is a matrix pairwise comparison that follows the
612          *      "Performing inexact rename detection" progress message.
613          *      Iterating over the destinations is done in the outer loop,
614          *      hence we only iterate over each of those once and we can
615          *      easily skip the outer loop early if the destination isn't
616          *      relevant.  That's only one check per destination path to
617          *      skip.
618          *
619          *      By contrast, the sources are iterated in the inner loop; if
620          *      we check whether a source can be skipped, then we'll be
621          *      checking it N separate times, once for each destination.
622          *      We don't want to have to iterate over known-not-needed
623          *      sources N times each, so avoid that by removing the sources
624          *      from rename_src here.
625          */
626         for (i = 0, new_num_src = 0; i < rename_src_nr; i++) {
627                 /*
628                  * renames are stored in rename_dst, so if a rename has
629                  * already been detected using this source, we can just
630                  * remove the source knowing rename_dst has its info.
631                  */
632                 if (rename_src[i].p->one->rename_used)
633                         continue;
634
635                 if (new_num_src < i)
636                         memcpy(&rename_src[new_num_src], &rename_src[i],
637                                sizeof(struct diff_rename_src));
638                 new_num_src++;
639         }
640
641         rename_src_nr = new_num_src;
642 }
643
644 void diffcore_rename(struct diff_options *options)
645 {
646         int detect_rename = options->detect_rename;
647         int minimum_score = options->rename_score;
648         struct diff_queue_struct *q = &diff_queued_diff;
649         struct diff_queue_struct outq;
650         struct diff_score *mx;
651         int i, j, rename_count, skip_unmodified = 0;
652         int num_destinations, dst_cnt;
653         int num_sources, want_copies;
654         struct progress *progress = NULL;
655
656         trace2_region_enter("diff", "setup", options->repo);
657         want_copies = (detect_rename == DIFF_DETECT_COPY);
658         if (!minimum_score)
659                 minimum_score = DEFAULT_RENAME_SCORE;
660
661         for (i = 0; i < q->nr; i++) {
662                 struct diff_filepair *p = q->queue[i];
663                 if (!DIFF_FILE_VALID(p->one)) {
664                         if (!DIFF_FILE_VALID(p->two))
665                                 continue; /* unmerged */
666                         else if (options->single_follow &&
667                                  strcmp(options->single_follow, p->two->path))
668                                 continue; /* not interested */
669                         else if (!options->flags.rename_empty &&
670                                  is_empty_blob_oid(&p->two->oid))
671                                 continue;
672                         else if (add_rename_dst(p) < 0) {
673                                 warning("skipping rename detection, detected"
674                                         " duplicate destination '%s'",
675                                         p->two->path);
676                                 goto cleanup;
677                         }
678                 }
679                 else if (!options->flags.rename_empty &&
680                          is_empty_blob_oid(&p->one->oid))
681                         continue;
682                 else if (!DIFF_PAIR_UNMERGED(p) && !DIFF_FILE_VALID(p->two)) {
683                         /*
684                          * If the source is a broken "delete", and
685                          * they did not really want to get broken,
686                          * that means the source actually stays.
687                          * So we increment the "rename_used" score
688                          * by one, to indicate ourselves as a user
689                          */
690                         if (p->broken_pair && !p->score)
691                                 p->one->rename_used++;
692                         register_rename_src(p);
693                 }
694                 else if (want_copies) {
695                         /*
696                          * Increment the "rename_used" score by
697                          * one, to indicate ourselves as a user.
698                          */
699                         p->one->rename_used++;
700                         register_rename_src(p);
701                 }
702         }
703         trace2_region_leave("diff", "setup", options->repo);
704         if (rename_dst_nr == 0 || rename_src_nr == 0)
705                 goto cleanup; /* nothing to do */
706
707         trace2_region_enter("diff", "exact renames", options->repo);
708         /*
709          * We really want to cull the candidates list early
710          * with cheap tests in order to avoid doing deltas.
711          */
712         rename_count = find_exact_renames(options);
713         trace2_region_leave("diff", "exact renames", options->repo);
714
715         /* Did we only want exact renames? */
716         if (minimum_score == MAX_SCORE)
717                 goto cleanup;
718
719         /* Calculate how many renames are left */
720         num_destinations = (rename_dst_nr - rename_count);
721         remove_unneeded_paths_from_src(want_copies);
722         num_sources = rename_src_nr;
723
724         /* All done? */
725         if (!num_destinations || !num_sources)
726                 goto cleanup;
727
728         switch (too_many_rename_candidates(num_destinations, num_sources,
729                                            options)) {
730         case 1:
731                 goto cleanup;
732         case 2:
733                 options->degraded_cc_to_c = 1;
734                 skip_unmodified = 1;
735                 break;
736         default:
737                 break;
738         }
739
740         trace2_region_enter("diff", "inexact renames", options->repo);
741         if (options->show_rename_progress) {
742                 progress = start_delayed_progress(
743                                 _("Performing inexact rename detection"),
744                                 (uint64_t)num_destinations * (uint64_t)num_sources);
745         }
746
747         mx = xcalloc(st_mult(NUM_CANDIDATE_PER_DST, num_destinations),
748                      sizeof(*mx));
749         for (dst_cnt = i = 0; i < rename_dst_nr; i++) {
750                 struct diff_filespec *two = rename_dst[i].p->two;
751                 struct diff_score *m;
752
753                 if (rename_dst[i].is_rename)
754                         continue; /* dealt with exact match already. */
755
756                 m = &mx[dst_cnt * NUM_CANDIDATE_PER_DST];
757                 for (j = 0; j < NUM_CANDIDATE_PER_DST; j++)
758                         m[j].dst = -1;
759
760                 for (j = 0; j < rename_src_nr; j++) {
761                         struct diff_filespec *one = rename_src[j].p->one;
762                         struct diff_score this_src;
763
764                         assert(!one->rename_used || want_copies || break_idx);
765
766                         if (skip_unmodified &&
767                             diff_unmodified_pair(rename_src[j].p))
768                                 continue;
769
770                         this_src.score = estimate_similarity(options->repo,
771                                                              one, two,
772                                                              minimum_score,
773                                                              skip_unmodified);
774                         this_src.name_score = basename_same(one, two);
775                         this_src.dst = i;
776                         this_src.src = j;
777                         record_if_better(m, &this_src);
778                         /*
779                          * Once we run estimate_similarity,
780                          * We do not need the text anymore.
781                          */
782                         diff_free_filespec_blob(one);
783                         diff_free_filespec_blob(two);
784                 }
785                 dst_cnt++;
786                 display_progress(progress,
787                                  (uint64_t)dst_cnt * (uint64_t)num_sources);
788         }
789         stop_progress(&progress);
790
791         /* cost matrix sorted by most to least similar pair */
792         STABLE_QSORT(mx, dst_cnt * NUM_CANDIDATE_PER_DST, score_compare);
793
794         rename_count += find_renames(mx, dst_cnt, minimum_score, 0);
795         if (want_copies)
796                 rename_count += find_renames(mx, dst_cnt, minimum_score, 1);
797         free(mx);
798         trace2_region_leave("diff", "inexact renames", options->repo);
799
800  cleanup:
801         /* At this point, we have found some renames and copies and they
802          * are recorded in rename_dst.  The original list is still in *q.
803          */
804         trace2_region_enter("diff", "write back to queue", options->repo);
805         DIFF_QUEUE_CLEAR(&outq);
806         for (i = 0; i < q->nr; i++) {
807                 struct diff_filepair *p = q->queue[i];
808                 struct diff_filepair *pair_to_free = NULL;
809
810                 if (DIFF_PAIR_UNMERGED(p)) {
811                         diff_q(&outq, p);
812                 }
813                 else if (!DIFF_FILE_VALID(p->one) && DIFF_FILE_VALID(p->two)) {
814                         /* Creation */
815                         diff_q(&outq, p);
816                 }
817                 else if (DIFF_FILE_VALID(p->one) && !DIFF_FILE_VALID(p->two)) {
818                         /*
819                          * Deletion
820                          *
821                          * We would output this delete record if:
822                          *
823                          * (1) this is a broken delete and the counterpart
824                          *     broken create remains in the output; or
825                          * (2) this is not a broken delete, and rename_dst
826                          *     does not have a rename/copy to move p->one->path
827                          *     out of existence.
828                          *
829                          * Otherwise, the counterpart broken create
830                          * has been turned into a rename-edit; or
831                          * delete did not have a matching create to
832                          * begin with.
833                          */
834                         if (DIFF_PAIR_BROKEN(p)) {
835                                 /* broken delete */
836                                 struct diff_rename_dst *dst = locate_rename_dst(p);
837                                 if (!dst)
838                                         BUG("tracking failed somehow; failed to find associated dst for broken pair");
839                                 if (dst->is_rename)
840                                         /* counterpart is now rename/copy */
841                                         pair_to_free = p;
842                         }
843                         else {
844                                 if (p->one->rename_used)
845                                         /* this path remains */
846                                         pair_to_free = p;
847                         }
848
849                         if (!pair_to_free)
850                                 diff_q(&outq, p);
851                 }
852                 else if (!diff_unmodified_pair(p))
853                         /* all the usual ones need to be kept */
854                         diff_q(&outq, p);
855                 else
856                         /* no need to keep unmodified pairs; FIXME: remove earlier? */
857                         pair_to_free = p;
858
859                 if (pair_to_free)
860                         diff_free_filepair(pair_to_free);
861         }
862         diff_debug_queue("done copying original", &outq);
863
864         free(q->queue);
865         *q = outq;
866         diff_debug_queue("done collapsing", q);
867
868         for (i = 0; i < rename_dst_nr; i++)
869                 if (rename_dst[i].filespec_to_free)
870                         free_filespec(rename_dst[i].filespec_to_free);
871
872         FREE_AND_NULL(rename_dst);
873         rename_dst_nr = rename_dst_alloc = 0;
874         FREE_AND_NULL(rename_src);
875         rename_src_nr = rename_src_alloc = 0;
876         if (break_idx) {
877                 strintmap_clear(break_idx);
878                 FREE_AND_NULL(break_idx);
879         }
880         trace2_region_leave("diff", "write back to queue", options->repo);
881         return;
882 }