1 #include "git-compat-util.h"
6 static int threaded_check_leading_path(struct cache_def
*cache
, const char *name
,
7 int len
, int warn_on_lstat_err
);
8 static int threaded_has_dirs_only_path(struct cache_def
*cache
, const char *name
, int len
, int prefix_len
);
11 * Returns the length (on a path component basis) of the longest
12 * common prefix match of 'name_a' and 'name_b'.
14 static int longest_path_match(const char *name_a
, int len_a
,
15 const char *name_b
, int len_b
,
18 int max_len
, match_len
= 0, match_len_prev
= 0, i
= 0;
20 max_len
= len_a
< len_b
? len_a
: len_b
;
21 while (i
< max_len
&& name_a
[i
] == name_b
[i
]) {
22 if (name_a
[i
] == '/') {
23 match_len_prev
= match_len
;
29 * Is 'name_b' a substring of 'name_a', the other way around,
30 * or is 'name_a' and 'name_b' the exact same string?
32 if (i
>= max_len
&& ((len_a
> len_b
&& name_a
[len_b
] == '/') ||
33 (len_a
< len_b
&& name_b
[len_a
] == '/') ||
35 match_len_prev
= match_len
;
38 *previous_slash
= match_len_prev
;
42 static struct cache_def default_cache
= CACHE_DEF_INIT
;
44 static inline void reset_lstat_cache(struct cache_def
*cache
)
46 strbuf_reset(&cache
->path
);
49 * The track_flags and prefix_len_stat_func members is only
50 * set by the safeguard rule inside lstat_cache()
54 #define FL_DIR (1 << 0)
55 #define FL_NOENT (1 << 1)
56 #define FL_SYMLINK (1 << 2)
57 #define FL_LSTATERR (1 << 3)
58 #define FL_ERR (1 << 4)
59 #define FL_FULLPATH (1 << 5)
62 * Check if name 'name' of length 'len' has a symlink leading
63 * component, or if the directory exists and is real, or not.
65 * To speed up the check, some information is allowed to be cached.
66 * This can be indicated by the 'track_flags' argument, which also can
67 * be used to indicate that we should check the full path.
69 * The 'prefix_len_stat_func' parameter can be used to set the length
70 * of the prefix, where the cache should use the stat() function
71 * instead of the lstat() function to test each path component.
73 static int lstat_cache_matchlen(struct cache_def
*cache
,
74 const char *name
, int len
,
75 int *ret_flags
, int track_flags
,
76 int prefix_len_stat_func
)
78 int match_len
, last_slash
, last_slash_dir
, previous_slash
;
79 int save_flags
, ret
, saved_errno
= 0;
82 if (cache
->track_flags
!= track_flags
||
83 cache
->prefix_len_stat_func
!= prefix_len_stat_func
) {
85 * As a safeguard rule we clear the cache if the
86 * values of track_flags and/or prefix_len_stat_func
87 * does not match with the last supplied values.
89 reset_lstat_cache(cache
);
90 cache
->track_flags
= track_flags
;
91 cache
->prefix_len_stat_func
= prefix_len_stat_func
;
92 match_len
= last_slash
= 0;
95 * Check to see if we have a match from the cache for
96 * the 2 "excluding" path types.
98 match_len
= last_slash
=
99 longest_path_match(name
, len
, cache
->path
.buf
,
100 cache
->path
.len
, &previous_slash
);
101 *ret_flags
= cache
->flags
& track_flags
& (FL_NOENT
|FL_SYMLINK
);
103 if (!(track_flags
& FL_FULLPATH
) && match_len
== len
)
104 match_len
= last_slash
= previous_slash
;
106 if (*ret_flags
&& match_len
== cache
->path
.len
)
109 * If we now have match_len > 0, we would know that
110 * the matched part will always be a directory.
112 * Also, if we are tracking directories and 'name' is
113 * a substring of the cache on a path component basis,
114 * we can return immediately.
116 *ret_flags
= track_flags
& FL_DIR
;
117 if (*ret_flags
&& len
== match_len
)
122 * Okay, no match from the cache so far, so now we have to
123 * check the rest of the path components.
126 last_slash_dir
= last_slash
;
127 if (len
> cache
->path
.len
)
128 strbuf_grow(&cache
->path
, len
- cache
->path
.len
);
129 while (match_len
< len
) {
131 cache
->path
.buf
[match_len
] = name
[match_len
];
133 } while (match_len
< len
&& name
[match_len
] != '/');
134 if (match_len
>= len
&& !(track_flags
& FL_FULLPATH
))
136 last_slash
= match_len
;
137 cache
->path
.buf
[last_slash
] = '\0';
139 if (last_slash
<= prefix_len_stat_func
)
140 ret
= stat(cache
->path
.buf
, &st
);
142 ret
= lstat(cache
->path
.buf
, &st
);
145 *ret_flags
= FL_LSTATERR
;
148 *ret_flags
|= FL_NOENT
;
149 } else if (S_ISDIR(st
.st_mode
)) {
150 last_slash_dir
= last_slash
;
152 } else if (S_ISLNK(st
.st_mode
)) {
153 *ret_flags
= FL_SYMLINK
;
161 * At the end update the cache. Note that max 3 different
162 * path types, FL_NOENT, FL_SYMLINK and FL_DIR, can be cached
165 save_flags
= *ret_flags
& track_flags
& (FL_NOENT
|FL_SYMLINK
);
166 if (save_flags
&& last_slash
> 0) {
167 cache
->path
.buf
[last_slash
] = '\0';
168 cache
->path
.len
= last_slash
;
169 cache
->flags
= save_flags
;
170 } else if ((track_flags
& FL_DIR
) && last_slash_dir
> 0) {
172 * We have a separate test for the directory case,
173 * since it could be that we have found a symlink or a
174 * non-existing directory and the track_flags says
175 * that we cannot cache this fact, so the cache would
176 * then have been left empty in this case.
178 * But if we are allowed to track real directories, we
179 * can still cache the path components before the last
180 * one (the found symlink or non-existing component).
182 cache
->path
.buf
[last_slash_dir
] = '\0';
183 cache
->path
.len
= last_slash_dir
;
184 cache
->flags
= FL_DIR
;
186 reset_lstat_cache(cache
);
193 static int lstat_cache(struct cache_def
*cache
, const char *name
, int len
,
194 int track_flags
, int prefix_len_stat_func
)
197 (void)lstat_cache_matchlen(cache
, name
, len
, &flags
, track_flags
,
198 prefix_len_stat_func
);
202 #define USE_ONLY_LSTAT 0
205 * Return non-zero if path 'name' has a leading symlink component
207 int threaded_has_symlink_leading_path(struct cache_def
*cache
, const char *name
, int len
)
209 return lstat_cache(cache
, name
, len
, FL_SYMLINK
|FL_DIR
, USE_ONLY_LSTAT
) & FL_SYMLINK
;
212 int has_symlink_leading_path(const char *name
, int len
)
214 return threaded_has_symlink_leading_path(&default_cache
, name
, len
);
217 int check_leading_path(const char *name
, int len
, int warn_on_lstat_err
)
219 return threaded_check_leading_path(&default_cache
, name
, len
,
224 * Return zero if some leading path component of 'name' does not exist.
226 * Return -1 if leading path exists and is a directory.
228 * Return the length of a leading component if it either exists but it's not a
229 * directory, or if we were unable to lstat() it. If warn_on_lstat_err is true,
230 * also emit a warning for this error.
232 static int threaded_check_leading_path(struct cache_def
*cache
, const char *name
,
233 int len
, int warn_on_lstat_err
)
236 int match_len
= lstat_cache_matchlen(cache
, name
, len
, &flags
,
237 FL_SYMLINK
|FL_NOENT
|FL_DIR
, USE_ONLY_LSTAT
);
238 int saved_errno
= errno
;
240 if (flags
& FL_NOENT
)
242 else if (flags
& FL_DIR
)
244 if (warn_on_lstat_err
&& (flags
& FL_LSTATERR
)) {
245 char *path
= xmemdupz(name
, match_len
);
247 warning_errno(_("failed to lstat '%s'"), path
);
253 int has_dirs_only_path(const char *name
, int len
, int prefix_len
)
255 return threaded_has_dirs_only_path(&default_cache
, name
, len
, prefix_len
);
259 * Return non-zero if all path components of 'name' exists as a
260 * directory. If prefix_len > 0, we will test with the stat()
261 * function instead of the lstat() function for a prefix length of
262 * 'prefix_len', thus we then allow for symlinks in the prefix part as
263 * long as those points to real existing directories.
265 static int threaded_has_dirs_only_path(struct cache_def
*cache
, const char *name
, int len
, int prefix_len
)
268 * Note: this function is used by the checkout machinery, which also
269 * takes care to properly reset the cache when it performs an operation
270 * that would leave the cache outdated. If this function starts caching
271 * anything else besides FL_DIR, remember to also invalidate the cache
272 * when creating or deleting paths that might be in the cache.
274 return lstat_cache(cache
, name
, len
,
275 FL_DIR
|FL_FULLPATH
, prefix_len
) &
279 static struct strbuf removal
= STRBUF_INIT
;
281 static void do_remove_scheduled_dirs(int new_len
)
283 while (removal
.len
> new_len
) {
284 removal
.buf
[removal
.len
] = '\0';
285 if ((startup_info
->original_cwd
&&
286 !strcmp(removal
.buf
, startup_info
->original_cwd
)) ||
291 } while (removal
.len
> new_len
&&
292 removal
.buf
[removal
.len
] != '/');
294 removal
.len
= new_len
;
297 void schedule_dir_for_removal(const char *name
, int len
)
299 int match_len
, last_slash
, i
, previous_slash
;
301 if (startup_info
->original_cwd
&&
302 !strcmp(name
, startup_info
->original_cwd
))
303 return; /* Do not remove the current working directory */
305 match_len
= last_slash
= i
=
306 longest_path_match(name
, len
, removal
.buf
, removal
.len
,
308 /* Find last slash inside 'name' */
316 * If we are about to go down the directory tree, we check if
317 * we must first go upwards the tree, such that we then can
318 * remove possible empty directories as we go upwards.
320 if (match_len
< last_slash
&& match_len
< removal
.len
)
321 do_remove_scheduled_dirs(match_len
);
323 * If we go deeper down the directory tree, we only need to
324 * save the new path components as we go down.
326 if (match_len
< last_slash
)
327 strbuf_add(&removal
, &name
[match_len
], last_slash
- match_len
);
330 void remove_scheduled_dirs(void)
332 do_remove_scheduled_dirs(0);
335 void invalidate_lstat_cache(void)
337 reset_lstat_cache(&default_cache
);
341 int lstat_cache_aware_rmdir(const char *path
)
343 /* Any change in this function must be made also in `mingw_rmdir()` */
344 int ret
= rmdir(path
);
347 invalidate_lstat_cache();