3 #include "xdiff-interface.h"
7 static const char merge_tree_usage
[] = "git merge-tree <base-tree> <branch1> <branch2>";
8 static int resolve_directories
= 1;
11 struct merge_list
*next
;
12 struct merge_list
*link
; /* other stages for this object */
14 unsigned int stage
: 2,
21 static struct merge_list
*merge_result
, **merge_result_end
= &merge_result
;
23 static void add_merge_entry(struct merge_list
*entry
)
25 *merge_result_end
= entry
;
26 merge_result_end
= &entry
->next
;
29 static void merge_trees(struct tree_desc t
[3], const char *base
);
31 static const char *explanation(struct merge_list
*entry
)
33 switch (entry
->stage
) {
37 return "added in remote";
40 return "added in both";
41 return "added in local";
47 return "removed in both";
50 return "changed in both";
52 if (entry
->stage
== 3)
53 return "removed in local";
54 return "removed in remote";
57 extern void *merge_file(const char *, struct blob
*, struct blob
*, struct blob
*, unsigned long *);
59 static void *result(struct merge_list
*entry
, unsigned long *size
)
61 enum object_type type
;
62 struct blob
*base
, *our
, *their
;
63 const char *path
= entry
->path
;
66 return read_sha1_file(entry
->blob
->object
.sha1
, &type
, size
);
68 if (entry
->stage
== 1) {
73 if (entry
&& entry
->stage
== 2) {
80 return merge_file(path
, base
, our
, their
, size
);
83 static void *origin(struct merge_list
*entry
, unsigned long *size
)
85 enum object_type type
;
87 if (entry
->stage
== 2)
88 return read_sha1_file(entry
->blob
->object
.sha1
, &type
, size
);
94 static int show_outf(void *priv_
, mmbuffer_t
*mb
, int nbuf
)
97 for (i
= 0; i
< nbuf
; i
++)
98 printf("%.*s", (int) mb
[i
].size
, mb
[i
].ptr
);
102 static void show_diff(struct merge_list
*entry
)
111 memset(&xecfg
, 0, sizeof(xecfg
));
113 ecb
.outf
= show_outf
;
116 src
.ptr
= origin(entry
, &size
);
120 dst
.ptr
= result(entry
, &size
);
124 xdi_diff(&src
, &dst
, &xpp
, &xecfg
, &ecb
);
129 static void show_result_list(struct merge_list
*entry
)
131 printf("%s\n", explanation(entry
));
133 struct merge_list
*link
= entry
->link
;
134 static const char *desc
[4] = { "result", "base", "our", "their" };
135 printf(" %-6s %o %s %s\n", desc
[entry
->stage
], entry
->mode
, sha1_to_hex(entry
->blob
->object
.sha1
), entry
->path
);
140 static void show_result(void)
142 struct merge_list
*walk
;
146 show_result_list(walk
);
152 /* An empty entry never compares same, not even to another empty entry */
153 static int same_entry(struct name_entry
*a
, struct name_entry
*b
)
157 !hashcmp(a
->sha1
, b
->sha1
) &&
161 static struct merge_list
*create_entry(unsigned stage
, unsigned mode
, const unsigned char *sha1
, const char *path
)
163 struct merge_list
*res
= xcalloc(1, sizeof(*res
));
168 res
->blob
= lookup_blob(sha1
);
172 static char *traverse_path(const struct traverse_info
*info
, const struct name_entry
*n
)
174 char *path
= xmalloc(traverse_path_len(info
, n
) + 1);
175 return make_traverse_path(path
, info
, n
);
178 static void resolve(const struct traverse_info
*info
, struct name_entry
*branch1
, struct name_entry
*result
)
180 struct merge_list
*orig
, *final
;
183 /* If it's already branch1, don't bother showing it */
187 path
= traverse_path(info
, result
);
188 orig
= create_entry(2, branch1
->mode
, branch1
->sha1
, path
);
189 final
= create_entry(0, result
->mode
, result
->sha1
, path
);
193 add_merge_entry(final
);
196 static int unresolved_directory(const struct traverse_info
*info
, struct name_entry n
[3])
199 struct name_entry
*p
;
200 struct tree_desc t
[3];
201 void *buf0
, *buf1
, *buf2
;
203 if (!resolve_directories
)
211 if (!S_ISDIR(p
->mode
))
213 newbase
= traverse_path(info
, p
);
214 buf0
= fill_tree_descriptor(t
+0, n
[0].sha1
);
215 buf1
= fill_tree_descriptor(t
+1, n
[1].sha1
);
216 buf2
= fill_tree_descriptor(t
+2, n
[2].sha1
);
217 merge_trees(t
, newbase
);
227 static struct merge_list
*link_entry(unsigned stage
, const struct traverse_info
*info
, struct name_entry
*n
, struct merge_list
*entry
)
230 struct merge_list
*link
;
237 path
= traverse_path(info
, n
);
238 link
= create_entry(stage
, n
->mode
, n
->sha1
, path
);
243 static void unresolved(const struct traverse_info
*info
, struct name_entry n
[3])
245 struct merge_list
*entry
= NULL
;
247 if (unresolved_directory(info
, n
))
251 * Do them in reverse order so that the resulting link
252 * list has the stages in order - link_entry adds new
253 * links at the front.
255 entry
= link_entry(3, info
, n
+ 2, entry
);
256 entry
= link_entry(2, info
, n
+ 1, entry
);
257 entry
= link_entry(1, info
, n
+ 0, entry
);
259 add_merge_entry(entry
);
263 * Merge two trees together (t[1] and t[2]), using a common base (t[0])
266 * This walks the (sorted) trees in lock-step, checking every possible
267 * name. Note that directories automatically sort differently from other
268 * files (see "base_name_compare"), so you'll never see file/directory
269 * conflicts, because they won't ever compare the same.
271 * IOW, if a directory changes to a filename, it will automatically be
272 * seen as the directory going away, and the filename being created.
274 * Think of this as a three-way diff.
276 * The output will be either:
278 * "0 mode sha1 filename"
279 * NOTE NOTE NOTE! FIXME! We really really need to walk the index
280 * in parallel with this too!
283 * "1 mode sha1 filename"
284 * "2 mode sha1 filename"
285 * "3 mode sha1 filename"
286 * where not all of the 1/2/3 lines may exist, of course.
288 * The successful merge rules are the same as for the three-way merge
291 static int threeway_callback(int n
, unsigned long mask
, unsigned long dirmask
, struct name_entry
*entry
, struct traverse_info
*info
)
294 if (same_entry(entry
+1, entry
+2)) {
296 resolve(info
, NULL
, entry
+1);
301 if (same_entry(entry
+0, entry
+1)) {
302 if (entry
[2].sha1
&& !S_ISDIR(entry
[2].mode
)) {
303 resolve(info
, entry
+1, entry
+2);
308 if (same_entry(entry
+0, entry
+2)) {
309 if (entry
[1].sha1
&& !S_ISDIR(entry
[1].mode
)) {
310 resolve(info
, NULL
, entry
+1);
315 unresolved(info
, entry
);
319 static void merge_trees(struct tree_desc t
[3], const char *base
)
321 struct traverse_info info
;
323 setup_traverse_info(&info
, base
);
324 info
.fn
= threeway_callback
;
325 traverse_trees(3, t
, &info
);
328 static void *get_tree_descriptor(struct tree_desc
*desc
, const char *rev
)
330 unsigned char sha1
[20];
333 if (get_sha1(rev
, sha1
))
334 die("unknown rev %s", rev
);
335 buf
= fill_tree_descriptor(desc
, sha1
);
337 die("%s is not a tree", rev
);
341 int cmd_merge_tree(int argc
, const char **argv
, const char *prefix
)
343 struct tree_desc t
[3];
344 void *buf1
, *buf2
, *buf3
;
347 usage(merge_tree_usage
);
349 buf1
= get_tree_descriptor(t
+0, argv
[1]);
350 buf2
= get_tree_descriptor(t
+1, argv
[2]);
351 buf3
= get_tree_descriptor(t
+2, argv
[3]);