1 #ifndef OBJECT_H
2 #define OBJECT_H
3
4 #include "hash.h"
5
6 struct buffer_slab;
7 struct repository;
8
9 struct parsed_object_pool {
10 struct repository *repo;
11 struct object **obj_hash;
12 int nr_objs, obj_hash_size;
13
14 /* TODO: migrate alloc_states to mem-pool? */
15 struct alloc_state *blob_state;
16 struct alloc_state *tree_state;
17 struct alloc_state *commit_state;
18 struct alloc_state *tag_state;
19 struct alloc_state *object_state;
20
21 /* parent substitutions from .git/info/grafts and .git/shallow */
22 struct commit_graft **grafts;
23 int grafts_alloc, grafts_nr;
24
25 int is_shallow;
26 struct stat_validity *shallow_stat;
27 char *alternate_shallow_file;
28
29 int commit_graft_prepared;
30 int substituted_parent;
31
32 struct buffer_slab *buffer_slab;
33 };
34
35 struct parsed_object_pool *parsed_object_pool_new(struct repository *repo);
36 void parsed_object_pool_clear(struct parsed_object_pool *o);
37 void parsed_object_pool_reset_commit_grafts(struct parsed_object_pool *o);
38
39 struct object_list {
40 struct object *item;
41 struct object_list *next;
42 };
43
44 struct object_array {
45 unsigned int nr;
46 unsigned int alloc;
47 struct object_array_entry {
48 struct object *item;
49 /*
50 * name or NULL. If non-NULL, the memory pointed to
51 * is owned by this object *except* if it points at
52 * object_array_slopbuf, which is a static copy of the
53 * empty string.
54 */
55 char *name;
56 char *path;
57 unsigned mode;
58 } *objects;
59 };
60
61 #define OBJECT_ARRAY_INIT { 0 }
62
63 void object_array_init(struct object_array *array);
64
65 /*
66 * object flag allocation:
67 * revision.h: 0---------10 15 23--------28
68 * fetch-pack.c: 01 67
69 * negotiator/default.c: 2--5
70 * negotiator/skipping.c: 2--5
71 * walker.c: 0-2
72 * upload-pack.c: 4 11-----14 16-----19
73 * builtin/blame.c: 12-13
74 * bisect.c: 16
75 * bundle.c: 16
76 * http-push.c: 11-----14
77 * commit-graph.c: 15
78 * commit-reach.c: 16-------20
79 * builtin/last-modified.c: 1617
80 * object-name.c: 20
81 * list-objects-filter.c: 21
82 * bloom.c: 2122
83 * builtin/fsck.c: 0--3
84 * builtin/index-pack.c: 2021
85 * reflog.c: 10--12
86 * builtin/show-branch.c: 0-----------------------------------------------28
87 * builtin/unpack-objects.c: 2021
88 * pack-bitmap.h: 2122
89 */
90 #define FLAG_BITS 29
91
92 #define TYPE_BITS 3
93
94 /*
95 * Values in this enum (except those outside the 3 bit range) are part
96 * of pack file format. See gitformat-pack(5) for more information.
97 */
98 enum object_type {
99 OBJ_BAD = -1,
100 OBJ_NONE = 0,
101 OBJ_COMMIT = 1,
102 OBJ_TREE = 2,
103 OBJ_BLOB = 3,
104 OBJ_TAG = 4,
105 /* 5 for future expansion */
106 OBJ_OFS_DELTA = 6,
107 OBJ_REF_DELTA = 7,
108 OBJ_ANY,
109 OBJ_MAX
110 };
111
112 /* unknown mode (impossible combination S_IFIFO|S_IFCHR) */
113 #define S_IFINVALID 0030000
114
115 /*
116 * A "directory link" is a link to another git directory.
117 *
118 * The value 0160000 is not normally a valid mode, and
119 * also just happens to be S_IFDIR + S_IFLNK
120 */
121 #define S_IFGITLINK 0160000
122 #define S_ISGITLINK(m) (((m) & S_IFMT) == S_IFGITLINK)
123
124 #define S_ISSPARSEDIR(m) ((m) == S_IFDIR)
125
126 static inline enum object_type object_type(unsigned int mode)
127 {
128 return S_ISDIR(mode) ? OBJ_TREE :
129 S_ISGITLINK(mode) ? OBJ_COMMIT :
130 OBJ_BLOB;
131 }
132
133 #define ce_permissions(mode) (((mode) & 0100) ? 0755 : 0644)
134 static inline unsigned int create_ce_mode(unsigned int mode)
135 {
136 if (S_ISLNK(mode))
137 return S_IFLNK;
138 if (S_ISSPARSEDIR(mode))
139 return S_IFDIR;
140 if (S_ISDIR(mode) || S_ISGITLINK(mode))
141 return S_IFGITLINK;
142 return S_IFREG | ce_permissions(mode);
143 }
144
145 static inline unsigned int canon_mode(unsigned int mode)
146 {
147 if (S_ISREG(mode))
148 return S_IFREG | ce_permissions(mode);
149 if (S_ISLNK(mode))
150 return S_IFLNK;
151 if (S_ISDIR(mode))
152 return S_IFDIR;
153 return S_IFGITLINK;
154 }
155
156 /*
157 * The object type is stored in 3 bits.
158 */
159 struct object {
160 unsigned parsed : 1;
161 unsigned type : TYPE_BITS;
162 unsigned flags : FLAG_BITS;
163 struct object_id oid;
164 };
165
166 const char *type_name(unsigned int type);
167 int type_from_string_gently(const char *str, ssize_t, int gentle);
168 #define type_from_string(str) type_from_string_gently(str, -1, 0)
169
170 /*
171 * Return the current number of buckets in the object hashmap.
172 */
173 unsigned int get_max_object_index(const struct repository *repo);
174
175 /*
176 * Return the object from the specified bucket in the object hashmap.
177 */
178 struct object *get_indexed_object(const struct repository *repo,
179 unsigned int);
180
181 /*
182 * This can be used to see if we have heard of the object before, but
183 * it can return "yes we have, and here is a half-initialised object"
184 * for an object that we haven't loaded/parsed yet.
185 *
186 * When parsing a commit to create an in-core commit object, its
187 * parents list holds commit objects that represent its parents, but
188 * they are expected to be lazily initialized and do not know what
189 * their trees or parents are yet. When this function returns such a
190 * half-initialised objects, the caller is expected to initialize them
191 * by calling parse_object() on them.
192 */
193 struct object *lookup_object(struct repository *r, const struct object_id *oid);
194
195 void *create_object(struct repository *r, const struct object_id *oid, void *obj);
196
197 void *object_as_type(struct object *obj, enum object_type type, int quiet);
198
199
200 static inline const char *parse_mode(const char *str, uint16_t *modep)
201 {
202 unsigned char c;
203 unsigned int mode = 0;
204
205 if (*str == ' ')
206 return NULL;
207
208 while ((c = *str++) != ' ') {
209 if (c < '0' || c > '7')
210 return NULL;
211 mode = (mode << 3) + (c - '0');
212 }
213 *modep = mode;
214 return str;
215 }
216
217 /*
218 * Returns the object, having parsed it to find out what it is.
219 *
220 * Returns NULL if the object is missing or corrupt.
221 */
222 enum parse_object_flags {
223 PARSE_OBJECT_SKIP_HASH_CHECK = 1 << 0,
224 PARSE_OBJECT_DISCARD_TREE = 1 << 1,
225 };
226 struct object *parse_object(struct repository *r, const struct object_id *oid);
227 struct object *parse_object_with_flags(struct repository *r,
228 const struct object_id *oid,
229 enum parse_object_flags flags);
230
231 /*
232 * Like parse_object, but will die() instead of returning NULL. If the
233 * "name" parameter is not NULL, it is included in the error message
234 * (otherwise, the hex object ID is given).
235 */
236 struct object *parse_object_or_die(struct repository *repo, const struct object_id *oid,
237 const char *name);
238
239 /* Given the result of read_sha1_file(), returns the object after
240 * parsing it. eaten_p indicates if the object has a borrowed copy
241 * of buffer and the caller should not free() it.
242 */
243 struct object *parse_object_buffer(struct repository *r, const struct object_id *oid, enum object_type type, unsigned long size, void *buffer, int *eaten_p);
244
245 /*
246 * Allocate and return an object struct, even if you do not know the type of
247 * the object. The returned object may have its "type" field set to a real type
248 * (if somebody previously called lookup_blob(), etc), or it may be set to
249 * OBJ_NONE. In the latter case, subsequent calls to lookup_blob(), etc, will
250 * set the type field as appropriate.
251 *
252 * Use this when you do not know the expected type of an object and want to
253 * avoid parsing it for efficiency reasons. Try to avoid it otherwise; it
254 * may allocate excess memory, since the returned object must be as large as
255 * the maximum struct of any type.
256 */
257 struct object *lookup_unknown_object(struct repository *r, const struct object_id *oid);
258
259 /*
260 * Dispatch to the appropriate lookup_blob(), lookup_commit(), etc, based on
261 * "type".
262 */
263 struct object *lookup_object_by_type(struct repository *r, const struct object_id *oid,
264 enum object_type type);
265
266 enum peel_status {
267 /* object was peeled successfully: */
268 PEEL_PEELED = 0,
269
270 /*
271 * object cannot be peeled because the named object (or an
272 * object referred to by a tag in the peel chain), does not
273 * exist.
274 */
275 PEEL_INVALID = -1,
276
277 /* object cannot be peeled because it is not a tag: */
278 PEEL_NON_TAG = -2,
279
280 /* ref_entry contains no peeled value because it is a symref: */
281 PEEL_IS_SYMREF = -3,
282
283 /*
284 * ref_entry cannot be peeled because it is broken (i.e., the
285 * symbolic reference cannot even be resolved to an object
286 * name):
287 */
288 PEEL_BROKEN = -4
289 };
290
291 enum peel_object_flags {
292 /*
293 * Always verify the object type of the tagged object, even in the case
294 * where the looked-up object already has an object type. This can be
295 * useful when the tagged object type may be invalid. One such case is
296 * when looking up objects via tags, where we blindly trust the object
297 * type declared by the tag.
298 */
299 PEEL_OBJECT_VERIFY_TAGGED_OBJECT_TYPE = (1 << 0),
300 };
301
302 /*
303 * Peel the named object; i.e., if the object is a tag, resolve the
304 * tag recursively until a non-tag is found. If successful, store the
305 * result to oid and return PEEL_PEELED. If the object is not a tag
306 * or is not valid, return PEEL_NON_TAG or PEEL_INVALID, respectively,
307 * and leave oid unchanged.
308 */
309 enum peel_status peel_object(struct repository *r,
310 const struct object_id *name,
311 struct object_id *oid,
312 unsigned flags);
313 enum peel_status peel_object_ext(struct repository *r,
314 const struct object_id *name,
315 struct object_id *oid,
316 unsigned flags,
317 enum object_type *typep);
318
319 struct object_list *object_list_insert(struct object *item,
320 struct object_list **list_p);
321
322 int object_list_contains(struct object_list *list, struct object *obj);
323
324 void object_list_free(struct object_list **list);
325
326 /* Object array handling .. */
327 void add_object_array(struct object *obj, const char *name, struct object_array *array);
328 void add_object_array_with_path(struct object *obj, const char *name, struct object_array *array, unsigned mode, const char *path);
329
330 /*
331 * Returns NULL if the array is empty. Otherwise, returns the last object
332 * after removing its entry from the array. Other resources associated
333 * with that object are left in an unspecified state and should not be
334 * examined.
335 */
336 struct object *object_array_pop(struct object_array *array);
337
338 typedef int (*object_array_each_func_t)(struct object_array_entry *, void *);
339
340 /*
341 * Apply want to each entry in array, retaining only the entries for
342 * which the function returns true. Preserve the order of the entries
343 * that are retained.
344 */
345 void object_array_filter(struct object_array *array,
346 object_array_each_func_t want, void *cb_data);
347
348 /*
349 * Remove any objects from the array, freeing all used memory; afterwards
350 * the array is ready to store more objects with add_object_array().
351 */
352 void object_array_clear(struct object_array *array);
353
354 void clear_object_flags(struct repository *repo, unsigned flags);
355
356 /*
357 * Clear the specified object flags from all in-core commit objects from
358 * the specified repository.
359 */
360 void repo_clear_commit_marks(struct repository *r, unsigned int flags);
361
362 #endif /* OBJECT_H */