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[git/jnareb-git.git] / string-list.c
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1 #include "cache.h"
2 #include "string-list.h"
4 /* if there is no exact match, point to the index where the entry could be
5 * inserted */
6 static int get_entry_index(const struct string_list *list, const char *string,
7 int *exact_match)
9 int left = -1, right = list->nr;
10 compare_strings_fn cmp = list->cmp ? list->cmp : strcmp;
12 while (left + 1 < right) {
13 int middle = (left + right) / 2;
14 int compare = cmp(string, list->items[middle].string);
15 if (compare < 0)
16 right = middle;
17 else if (compare > 0)
18 left = middle;
19 else {
20 *exact_match = 1;
21 return middle;
25 *exact_match = 0;
26 return right;
29 /* returns -1-index if already exists */
30 static int add_entry(int insert_at, struct string_list *list, const char *string)
32 int exact_match = 0;
33 int index = insert_at != -1 ? insert_at : get_entry_index(list, string, &exact_match);
35 if (exact_match)
36 return -1 - index;
38 if (list->nr + 1 >= list->alloc) {
39 list->alloc += 32;
40 list->items = xrealloc(list->items, list->alloc
41 * sizeof(struct string_list_item));
43 if (index < list->nr)
44 memmove(list->items + index + 1, list->items + index,
45 (list->nr - index)
46 * sizeof(struct string_list_item));
47 list->items[index].string = list->strdup_strings ?
48 xstrdup(string) : (char *)string;
49 list->items[index].util = NULL;
50 list->nr++;
52 return index;
55 struct string_list_item *string_list_insert(struct string_list *list, const char *string)
57 return string_list_insert_at_index(list, -1, string);
60 struct string_list_item *string_list_insert_at_index(struct string_list *list,
61 int insert_at, const char *string)
63 int index = add_entry(insert_at, list, string);
65 if (index < 0)
66 index = -1 - index;
68 return list->items + index;
71 int string_list_has_string(const struct string_list *list, const char *string)
73 int exact_match;
74 get_entry_index(list, string, &exact_match);
75 return exact_match;
78 int string_list_find_insert_index(const struct string_list *list, const char *string,
79 int negative_existing_index)
81 int exact_match;
82 int index = get_entry_index(list, string, &exact_match);
83 if (exact_match)
84 index = -1 - (negative_existing_index ? index : 0);
85 return index;
88 struct string_list_item *string_list_lookup(struct string_list *list, const char *string)
90 int exact_match, i = get_entry_index(list, string, &exact_match);
91 if (!exact_match)
92 return NULL;
93 return list->items + i;
96 void string_list_remove_duplicates(struct string_list *list, int free_util)
98 if (list->nr > 1) {
99 int src, dst;
100 compare_strings_fn cmp = list->cmp ? list->cmp : strcmp;
101 for (src = dst = 1; src < list->nr; src++) {
102 if (!cmp(list->items[dst - 1].string, list->items[src].string)) {
103 if (list->strdup_strings)
104 free(list->items[src].string);
105 if (free_util)
106 free(list->items[src].util);
107 } else
108 list->items[dst++] = list->items[src];
110 list->nr = dst;
114 int for_each_string_list(struct string_list *list,
115 string_list_each_func_t fn, void *cb_data)
117 int i, ret = 0;
118 for (i = 0; i < list->nr; i++)
119 if ((ret = fn(&list->items[i], cb_data)))
120 break;
121 return ret;
124 void filter_string_list(struct string_list *list, int free_util,
125 string_list_each_func_t want, void *cb_data)
127 int src, dst = 0;
128 for (src = 0; src < list->nr; src++) {
129 if (want(&list->items[src], cb_data)) {
130 list->items[dst++] = list->items[src];
131 } else {
132 if (list->strdup_strings)
133 free(list->items[src].string);
134 if (free_util)
135 free(list->items[src].util);
138 list->nr = dst;
141 static int item_is_not_empty(struct string_list_item *item, void *unused)
143 return *item->string != '\0';
146 void string_list_remove_empty_items(struct string_list *list, int free_util) {
147 filter_string_list(list, free_util, item_is_not_empty, NULL);
150 char *string_list_longest_prefix(const struct string_list *prefixes,
151 const char *string)
153 int i, max_len = -1;
154 char *retval = NULL;
156 for (i = 0; i < prefixes->nr; i++) {
157 char *prefix = prefixes->items[i].string;
158 if (!prefixcmp(string, prefix)) {
159 int len = strlen(prefix);
160 if (len > max_len) {
161 retval = prefix;
162 max_len = len;
167 return retval;
170 void string_list_clear(struct string_list *list, int free_util)
172 if (list->items) {
173 int i;
174 if (list->strdup_strings) {
175 for (i = 0; i < list->nr; i++)
176 free(list->items[i].string);
178 if (free_util) {
179 for (i = 0; i < list->nr; i++)
180 free(list->items[i].util);
182 free(list->items);
184 list->items = NULL;
185 list->nr = list->alloc = 0;
188 void string_list_clear_func(struct string_list *list, string_list_clear_func_t clearfunc)
190 if (list->items) {
191 int i;
192 if (clearfunc) {
193 for (i = 0; i < list->nr; i++)
194 clearfunc(list->items[i].util, list->items[i].string);
196 if (list->strdup_strings) {
197 for (i = 0; i < list->nr; i++)
198 free(list->items[i].string);
200 free(list->items);
202 list->items = NULL;
203 list->nr = list->alloc = 0;
207 void print_string_list(const struct string_list *p, const char *text)
209 int i;
210 if ( text )
211 printf("%s\n", text);
212 for (i = 0; i < p->nr; i++)
213 printf("%s:%p\n", p->items[i].string, p->items[i].util);
216 struct string_list_item *string_list_append_nodup(struct string_list *list,
217 char *string)
219 struct string_list_item *retval;
220 ALLOC_GROW(list->items, list->nr + 1, list->alloc);
221 retval = &list->items[list->nr++];
222 retval->string = string;
223 retval->util = NULL;
224 return retval;
227 struct string_list_item *string_list_append(struct string_list *list,
228 const char *string)
230 return string_list_append_nodup(
231 list,
232 list->strdup_strings ? xstrdup(string) : (char *)string);
235 /* Yuck */
236 static compare_strings_fn compare_for_qsort;
238 /* Only call this from inside sort_string_list! */
239 static int cmp_items(const void *a, const void *b)
241 const struct string_list_item *one = a;
242 const struct string_list_item *two = b;
243 return compare_for_qsort(one->string, two->string);
246 void sort_string_list(struct string_list *list)
248 compare_for_qsort = list->cmp ? list->cmp : strcmp;
249 qsort(list->items, list->nr, sizeof(*list->items), cmp_items);
252 struct string_list_item *unsorted_string_list_lookup(struct string_list *list,
253 const char *string)
255 int i;
256 compare_strings_fn cmp = list->cmp ? list->cmp : strcmp;
258 for (i = 0; i < list->nr; i++)
259 if (!cmp(string, list->items[i].string))
260 return list->items + i;
261 return NULL;
264 int unsorted_string_list_has_string(struct string_list *list,
265 const char *string)
267 return unsorted_string_list_lookup(list, string) != NULL;
270 void unsorted_string_list_delete_item(struct string_list *list, int i, int free_util)
272 if (list->strdup_strings)
273 free(list->items[i].string);
274 if (free_util)
275 free(list->items[i].util);
276 list->items[i] = list->items[list->nr-1];
277 list->nr--;
280 int string_list_split(struct string_list *list, const char *string,
281 int delim, int maxsplit)
283 int count = 0;
284 const char *p = string, *end;
286 if (!list->strdup_strings)
287 die("internal error in string_list_split(): "
288 "list->strdup_strings must be set");
289 for (;;) {
290 count++;
291 if (maxsplit >= 0 && count > maxsplit) {
292 string_list_append(list, p);
293 return count;
295 end = strchr(p, delim);
296 if (end) {
297 string_list_append_nodup(list, xmemdupz(p, end - p));
298 p = end + 1;
299 } else {
300 string_list_append(list, p);
301 return count;
306 int string_list_split_in_place(struct string_list *list, char *string,
307 int delim, int maxsplit)
309 int count = 0;
310 char *p = string, *end;
312 if (list->strdup_strings)
313 die("internal error in string_list_split_in_place(): "
314 "list->strdup_strings must not be set");
315 for (;;) {
316 count++;
317 if (maxsplit >= 0 && count > maxsplit) {
318 string_list_append(list, p);
319 return count;
321 end = strchr(p, delim);
322 if (end) {
323 *end = '\0';
324 string_list_append(list, p);
325 p = end + 1;
326 } else {
327 string_list_append(list, p);
328 return count;