xs.h 16 KB

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  1. /* copyright (c) 2022 grunfink - MIT license */
  2. #ifndef _XS_H
  3. #define _XS_H
  4. #include <stdio.h>
  5. #include <string.h>
  6. #include <stdlib.h>
  7. #include <ctype.h>
  8. #include <unistd.h>
  9. #include <stdarg.h>
  10. #include <signal.h>
  11. #include <errno.h>
  12. typedef enum {
  13. XSTYPE_NULL = 0x18,
  14. XSTYPE_TRUE = 0x06,
  15. XSTYPE_FALSE = 0x15,
  16. XSTYPE_LIST = 0x11,
  17. XSTYPE_LITEM = 0x1f,
  18. XSTYPE_EOL = 0x12,
  19. XSTYPE_DICT = 0x13,
  20. XSTYPE_DITEM = 0x1e,
  21. XSTYPE_EOD = 0x14,
  22. XSTYPE_NUMBER = 0x17,
  23. XSTYPE_STRING = 0x02
  24. } xstype;
  25. /* dynamic strings */
  26. typedef char d_char;
  27. /* auto-destroyable strings */
  28. #define xs __attribute__ ((__cleanup__ (_xs_destroy))) d_char
  29. void *xs_free(void *ptr);
  30. void *_xs_realloc(void *ptr, size_t size, const char *file, int line, const char *func);
  31. #define xs_realloc(ptr, size) _xs_realloc(ptr, size, __FILE__, __LINE__, __FUNCTION__)
  32. int _xs_blk_size(int sz);
  33. void _xs_destroy(char **var);
  34. #define xs_debug() raise(SIGTRAP)
  35. xstype xs_type(const char *data);
  36. int xs_size(const char *data);
  37. int xs_is_null(const char *data);
  38. d_char *xs_dup(const char *data);
  39. d_char *xs_expand(d_char *data, int offset, int size);
  40. d_char *xs_collapse(d_char *data, int offset, int size);
  41. d_char *xs_insert_m(d_char *data, int offset, const char *mem, int size);
  42. #define xs_insert(data, offset, data2) xs_insert_m(data, offset, data2, xs_size(data2))
  43. #define xs_append_m(data, mem, size) xs_insert_m(data, xs_size(data) - 1, mem, size)
  44. d_char *xs_str_new(const char *str);
  45. #define xs_str_cat(str1, str2) xs_insert(str1, xs_size(str1) - 1, str2)
  46. d_char *xs_replace_i(d_char *str, const char *sfrom, const char *sto);
  47. #define xs_replace(str, sfrom, sto) xs_replace_i(xs_dup(str), sfrom, sto)
  48. d_char *xs_fmt(const char *fmt, ...);
  49. int xs_str_in(const char *haystack, const char *needle);
  50. int xs_startswith(const char *str, const char *prefix);
  51. int xs_endswith(const char *str, const char *postfix);
  52. d_char *xs_crop(d_char *str, int start, int end);
  53. d_char *xs_strip(d_char *str);
  54. d_char *xs_tolower(d_char *str);
  55. d_char *xs_list_new(void);
  56. d_char *xs_list_append_m(d_char *list, const char *mem, int dsz);
  57. #define xs_list_append(list, data) xs_list_append_m(list, data, xs_size(data))
  58. int xs_list_iter(char **list, char **value);
  59. int xs_list_len(char *list);
  60. char *xs_list_get(char *list, int num);
  61. int xs_list_in(char *list, const char *val);
  62. d_char *xs_join(char *list, const char *sep);
  63. d_char *xs_split_n(const char *str, const char *sep, int times);
  64. #define xs_split(str, sep) xs_split_n(str, sep, 0xfffffff)
  65. d_char *xs_dict_new(void);
  66. d_char *xs_dict_append_m(d_char *dict, const char *key, const char *mem, int dsz);
  67. #define xs_dict_append(dict, key, data) xs_dict_append_m(dict, key, data, xs_size(data))
  68. int xs_dict_iter(char **dict, char **key, char **value);
  69. char *xs_dict_get(char *dict, const char *key);
  70. d_char *xs_dict_del(d_char *dict, const char *key);
  71. d_char *xs_dict_set(d_char *dict, const char *key, const char *data);
  72. d_char *xs_val_new(xstype t);
  73. d_char *xs_number_new(double f);
  74. double xs_number_get(const char *v);
  75. const char *xs_number_str(const char *v);
  76. #ifdef XS_IMPLEMENTATION
  77. void *_xs_realloc(void *ptr, size_t size, const char *file, int line, const char *func)
  78. {
  79. d_char *ndata = realloc(ptr, size);
  80. if (ndata == NULL) {
  81. fprintf(stderr, "**OUT OF MEMORY**\n");
  82. abort();
  83. }
  84. #ifdef XS_DEBUG
  85. if (ndata != ptr) {
  86. int n;
  87. FILE *f = fopen("xs_memory.out", "a");
  88. if (ptr != NULL)
  89. fprintf(f, "%p r\n", ptr);
  90. fprintf(f, "%p a %ld %s:%d: %s", ndata, size, file, line, func);
  91. if (ptr != NULL) {
  92. fprintf(f, " [");
  93. for (n = 0; n < 32 && ndata[n]; n++) {
  94. if (ndata[n] >= 32 && ndata[n] <= 127)
  95. fprintf(f, "%c", ndata[n]);
  96. else
  97. fprintf(f, "\\%02x", (unsigned char)ndata[n]);
  98. }
  99. fprintf(f, "]");
  100. }
  101. fprintf(f, "\n");
  102. fclose(f);
  103. }
  104. #endif
  105. return ndata;
  106. }
  107. void *xs_free(void *ptr)
  108. {
  109. #ifdef XS_DEBUG
  110. if (ptr != NULL) {
  111. FILE *f = fopen("xs_memory.out", "a");
  112. fprintf(f, "%p b\n", ptr);
  113. fclose(f);
  114. }
  115. #endif
  116. free(ptr);
  117. return NULL;
  118. }
  119. void _xs_destroy(char **var)
  120. {
  121. /*
  122. if (_xs_debug)
  123. printf("_xs_destroy %p\n", var);
  124. */
  125. xs_free(*var);
  126. }
  127. int _xs_blk_size(int sz)
  128. /* calculates the block size */
  129. {
  130. int blk_size = 4096;
  131. if (sz < 256)
  132. blk_size = 32;
  133. else
  134. if (sz < 4096)
  135. blk_size = 256;
  136. return ((((sz) + blk_size) / blk_size) * blk_size);
  137. }
  138. xstype xs_type(const char *data)
  139. /* return the type of data */
  140. {
  141. xstype t;
  142. switch (data[0]) {
  143. case XSTYPE_NULL:
  144. case XSTYPE_TRUE:
  145. case XSTYPE_FALSE:
  146. case XSTYPE_LIST:
  147. case XSTYPE_EOL:
  148. case XSTYPE_DICT:
  149. case XSTYPE_EOD:
  150. case XSTYPE_LITEM:
  151. case XSTYPE_DITEM:
  152. case XSTYPE_NUMBER:
  153. t = data[0];
  154. break;
  155. default:
  156. t = XSTYPE_STRING;
  157. break;
  158. }
  159. return t;
  160. }
  161. int xs_size(const char *data)
  162. /* returns the size of data in bytes */
  163. {
  164. int len = 0;
  165. int c = 0;
  166. const char *p;
  167. if (data == NULL)
  168. return 0;
  169. switch (xs_type(data)) {
  170. case XSTYPE_STRING:
  171. len = strlen(data) + 1;
  172. break;
  173. case XSTYPE_LIST:
  174. /* look for a balanced EOL */
  175. do {
  176. c += data[len] == XSTYPE_LIST ? 1 : data[len] == XSTYPE_EOL ? -1 : 0;
  177. len++;
  178. } while (c);
  179. break;
  180. case XSTYPE_DICT:
  181. /* look for a balanced EOD */
  182. do {
  183. c += data[len] == XSTYPE_DICT ? 1 : data[len] == XSTYPE_EOD ? -1 : 0;
  184. len++;
  185. } while (c);
  186. break;
  187. case XSTYPE_DITEM:
  188. /* calculate the size of the key and the value */
  189. p = data + 1;
  190. p += xs_size(p);
  191. p += xs_size(p);
  192. len = p - data;
  193. break;
  194. case XSTYPE_LITEM:
  195. /* it's the size of the item + 1 */
  196. p = data + 1;
  197. p += xs_size(p);
  198. len = p - data;
  199. break;
  200. case XSTYPE_NUMBER:
  201. len = 1 + xs_size(data + 1);
  202. break;
  203. default:
  204. len = 1;
  205. }
  206. return len;
  207. }
  208. int xs_is_null(const char *data)
  209. /* checks for null */
  210. {
  211. return !!(data == NULL || xs_type(data) == XSTYPE_NULL);
  212. }
  213. d_char *xs_dup(const char *data)
  214. /* creates a duplicate of data */
  215. {
  216. int sz = xs_size(data);
  217. d_char *s = xs_realloc(NULL, _xs_blk_size(sz));
  218. memcpy(s, data, sz);
  219. return s;
  220. }
  221. d_char *xs_expand(d_char *data, int offset, int size)
  222. /* opens a hole in data */
  223. {
  224. int sz = xs_size(data);
  225. /* open room */
  226. if (sz == 0 || _xs_blk_size(sz) != _xs_blk_size(sz + size))
  227. data = xs_realloc(data, _xs_blk_size(sz + size));
  228. /* move up the rest of the data */
  229. if (data != NULL)
  230. memmove(data + offset + size, data + offset, sz - offset);
  231. return data;
  232. }
  233. d_char *xs_collapse(d_char *data, int offset, int size)
  234. /* shrinks data */
  235. {
  236. int sz = xs_size(data);
  237. int n;
  238. /* don't try to delete beyond the limit */
  239. if (offset + size > sz)
  240. size = sz - offset;
  241. /* shrink total size */
  242. sz -= size;
  243. for (n = offset; n < sz; n++)
  244. data[n] = data[n + size];
  245. return xs_realloc(data, _xs_blk_size(sz));
  246. }
  247. d_char *xs_insert_m(d_char *data, int offset, const char *mem, int size)
  248. /* inserts a memory block */
  249. {
  250. data = xs_expand(data, offset, size);
  251. memcpy(data + offset, mem, size);
  252. return data;
  253. }
  254. /** strings **/
  255. d_char *xs_str_new(const char *str)
  256. /* creates a new string */
  257. {
  258. return xs_insert(NULL, 0, str ? str : "");
  259. }
  260. d_char *xs_replace_i(d_char *str, const char *sfrom, const char *sto)
  261. /* replaces inline all sfrom with sto */
  262. {
  263. int sfsz = strlen(sfrom);
  264. int stsz = strlen(sto);
  265. char *ss;
  266. int offset = 0;
  267. while ((ss = strstr(str + offset, sfrom)) != NULL) {
  268. int n_offset = ss - str;
  269. str = xs_collapse(str, n_offset, sfsz);
  270. str = xs_expand(str, n_offset, stsz);
  271. memcpy(str + n_offset, sto, stsz);
  272. offset = n_offset + stsz;
  273. }
  274. return str;
  275. }
  276. d_char *xs_fmt(const char *fmt, ...)
  277. /* formats a string with printf()-like marks */
  278. {
  279. int n;
  280. d_char *s = NULL;
  281. va_list ap;
  282. va_start(ap, fmt);
  283. n = vsnprintf(s, 0, fmt, ap);
  284. va_end(ap);
  285. if (n > 0) {
  286. s = xs_realloc(NULL, _xs_blk_size(n + 1));
  287. va_start(ap, fmt);
  288. vsnprintf(s, n + 1, fmt, ap);
  289. va_end(ap);
  290. }
  291. return s;
  292. }
  293. int xs_str_in(const char *haystack, const char *needle)
  294. /* finds needle in haystack and returns the offset or -1 */
  295. {
  296. char *s;
  297. int r = -1;
  298. if ((s = strstr(haystack, needle)) != NULL)
  299. r = s - haystack;
  300. return r;
  301. }
  302. int xs_startswith(const char *str, const char *prefix)
  303. /* returns true if str starts with prefix */
  304. {
  305. return !!(xs_str_in(str, prefix) == 0);
  306. }
  307. int xs_endswith(const char *str, const char *postfix)
  308. /* returns true if str ends with postfix */
  309. {
  310. int ssz = strlen(str);
  311. int psz = strlen(postfix);
  312. return !!(ssz >= psz && memcmp(postfix, str + ssz - psz, psz) == 0);
  313. }
  314. d_char *xs_crop(d_char *str, int start, int end)
  315. /* crops the d_char to be only from start to end */
  316. {
  317. int sz = strlen(str);
  318. if (end <= 0)
  319. end = sz + end;
  320. /* crop from the top */
  321. str[end] = '\0';
  322. /* crop from the bottom */
  323. str = xs_collapse(str, 0, start);
  324. return str;
  325. }
  326. d_char *xs_strip(d_char *str)
  327. /* strips the string of blanks from the start and the end */
  328. {
  329. int s, e;
  330. for (s = 0; isspace(str[s]); s++);
  331. for (e = strlen(str); e > 0 && isspace(str[e - 1]); e--);
  332. return xs_crop(str, s, e);
  333. }
  334. d_char *xs_tolower(d_char *str)
  335. /* convert to lowercase */
  336. {
  337. int n;
  338. for (n = 0; str[n]; n++)
  339. str[n] = tolower(str[n]);
  340. return str;
  341. }
  342. /** lists **/
  343. d_char *xs_list_new(void)
  344. /* creates a new list */
  345. {
  346. d_char *list;
  347. list = xs_realloc(NULL, _xs_blk_size(2));
  348. list[0] = XSTYPE_LIST;
  349. list[1] = XSTYPE_EOL;
  350. return list;
  351. }
  352. d_char *xs_list_append_m(d_char *list, const char *mem, int dsz)
  353. /* adds a memory block to the list */
  354. {
  355. char c = XSTYPE_LITEM;
  356. int lsz = xs_size(list);
  357. list = xs_insert_m(list, lsz - 1, &c, 1);
  358. list = xs_insert_m(list, lsz, mem, dsz);
  359. return list;
  360. }
  361. int xs_list_iter(char **list, char **value)
  362. /* iterates a list value */
  363. {
  364. int goon = 1;
  365. char *p;
  366. if (list == NULL || *list == NULL)
  367. return 0;
  368. p = *list;
  369. /* skip a possible start of the list */
  370. if (*p == XSTYPE_LIST)
  371. p++;
  372. /* an element? */
  373. if (*p == XSTYPE_LITEM) {
  374. p++;
  375. *value = p;
  376. p += xs_size(*value);
  377. }
  378. else {
  379. /* end of list */
  380. p++;
  381. goon = 0;
  382. }
  383. /* store back the pointer */
  384. *list = p;
  385. return goon;
  386. }
  387. int xs_list_len(char *list)
  388. /* returns the number of elements in the list */
  389. {
  390. int c = 0;
  391. char *v;
  392. while (xs_list_iter(&list, &v))
  393. c++;
  394. return c;
  395. }
  396. char *xs_list_get(char *list, int num)
  397. /* returns the element #num */
  398. {
  399. char *v;
  400. int c = 0;
  401. if (num < 0)
  402. num = xs_list_len(list) + num;
  403. while (xs_list_iter(&list, &v)) {
  404. if (c == num)
  405. return v;
  406. c++;
  407. }
  408. return NULL;
  409. }
  410. int xs_list_in(char *list, const char *val)
  411. /* returns the position of val in list or -1 */
  412. {
  413. int n = 0;
  414. char *v;
  415. int sz = xs_size(val);
  416. while (xs_list_iter(&list, &v)) {
  417. if (sz == xs_size(v) && memcmp(val, v, sz) == 0)
  418. return n;
  419. n++;
  420. }
  421. return -1;
  422. }
  423. d_char *xs_join(char *list, const char *sep)
  424. /* joins a list into a string */
  425. {
  426. d_char *s;
  427. char *v;
  428. int c = 0;
  429. s = xs_str_new(NULL);
  430. while (xs_list_iter(&list, &v)) {
  431. /* refuse to join non-string values */
  432. if (xs_type(v) == XSTYPE_STRING) {
  433. /* add the separator */
  434. if (c != 0)
  435. s = xs_str_cat(s, sep);
  436. /* add the element */
  437. s = xs_str_cat(s, v);
  438. c++;
  439. }
  440. }
  441. return s;
  442. }
  443. d_char *xs_split_n(const char *str, const char *sep, int times)
  444. /* splits a string into a list upto n times */
  445. {
  446. int sz = strlen(sep);
  447. char *ss;
  448. d_char *list;
  449. list = xs_list_new();
  450. while (times > 0 && (ss = strstr(str, sep)) != NULL) {
  451. /* add the first part (without the asciiz) */
  452. list = xs_list_append_m(list, str, ss - str);
  453. /* add the asciiz */
  454. list = xs_str_cat(list, "");
  455. /* skip past the separator */
  456. str = ss + sz;
  457. times--;
  458. }
  459. /* add the rest of the string */
  460. list = xs_list_append(list, str);
  461. return list;
  462. }
  463. /** dicts **/
  464. d_char *xs_dict_new(void)
  465. /* creates a new dict */
  466. {
  467. d_char *dict;
  468. dict = xs_realloc(NULL, _xs_blk_size(2));
  469. dict[0] = XSTYPE_DICT;
  470. dict[1] = XSTYPE_EOD;
  471. return dict;
  472. }
  473. d_char *xs_dict_append_m(d_char *dict, const char *key, const char *mem, int dsz)
  474. /* adds a memory block to the dict */
  475. {
  476. char c = XSTYPE_DITEM;
  477. int sz = xs_size(dict);
  478. int ksz = xs_size(key);
  479. dict = xs_insert_m(dict, sz - 1, &c, 1);
  480. dict = xs_insert_m(dict, sz, key, ksz);
  481. dict = xs_insert_m(dict, sz + ksz, mem, dsz);
  482. return dict;
  483. }
  484. int xs_dict_iter(char **dict, char **key, char **value)
  485. /* iterates a dict value */
  486. {
  487. int goon = 1;
  488. char *p;
  489. if (dict == NULL || *dict == NULL)
  490. return 0;
  491. p = *dict;
  492. /* skip a possible start of the list */
  493. if (*p == XSTYPE_DICT)
  494. p++;
  495. /* an element? */
  496. if (*p == XSTYPE_DITEM) {
  497. p++;
  498. *key = p;
  499. p += xs_size(*key);
  500. *value = p;
  501. p += xs_size(*value);
  502. }
  503. else {
  504. /* end of list */
  505. p++;
  506. goon = 0;
  507. }
  508. /* store back the pointer */
  509. *dict = p;
  510. return goon;
  511. }
  512. char *xs_dict_get(char *dict, const char *key)
  513. /* returns the value directed by key */
  514. {
  515. char *k, *v;
  516. while (xs_dict_iter(&dict, &k, &v)) {
  517. if (strcmp(k, key) == 0)
  518. return v;
  519. }
  520. return NULL;
  521. }
  522. d_char *xs_dict_del(d_char *dict, const char *key)
  523. /* deletes a key */
  524. {
  525. char *k, *v;
  526. char *p = dict;
  527. while (xs_dict_iter(&p, &k, &v)) {
  528. if (strcmp(k, key) == 0) {
  529. /* the address of the item is just behind the key */
  530. char *i = k - 1;
  531. dict = xs_collapse(dict, i - dict, xs_size(i));
  532. break;
  533. }
  534. }
  535. return dict;
  536. }
  537. d_char *xs_dict_set(d_char *dict, const char *key, const char *data)
  538. /* sets (replaces) a key */
  539. {
  540. /* delete the possibly existing key */
  541. dict = xs_dict_del(dict, key);
  542. /* append the data */
  543. dict = xs_dict_append(dict, key, data);
  544. return dict;
  545. }
  546. /** other values **/
  547. d_char *xs_val_new(xstype t)
  548. /* adds a new special value */
  549. {
  550. d_char *v = xs_realloc(NULL, _xs_blk_size(1));
  551. v[0] = t;
  552. return v;
  553. }
  554. /** numbers */
  555. d_char *xs_number_new(double f)
  556. /* adds a new number value */
  557. {
  558. d_char *v;
  559. char tmp[64];
  560. snprintf(tmp, sizeof(tmp), "%.15lf", f);
  561. /* strip useless zeros */
  562. if (strchr(tmp, '.') != NULL) {
  563. char *ptr;
  564. for (ptr = tmp + strlen(tmp) - 1; *ptr == '0'; ptr--);
  565. if (*ptr != '.')
  566. ptr++;
  567. *ptr = '\0';
  568. }
  569. /* alloc for the marker and the full string */
  570. v = xs_realloc(NULL, _xs_blk_size(1 + xs_size(tmp)));
  571. v[0] = XSTYPE_NUMBER;
  572. memcpy(&v[1], tmp, xs_size(tmp));
  573. return v;
  574. }
  575. double xs_number_get(const char *v)
  576. /* gets the number as a double */
  577. {
  578. double f = 0.0;
  579. if (v != NULL && v[0] == XSTYPE_NUMBER)
  580. f = atof(&v[1]);
  581. return f;
  582. }
  583. const char *xs_number_str(const char *v)
  584. /* gets the number as a string */
  585. {
  586. const char *p = NULL;
  587. if (v != NULL && v[0] == XSTYPE_NUMBER)
  588. p = &v[1];
  589. return p;
  590. }
  591. #endif /* XS_IMPLEMENTATION */
  592. #endif /* _XS_H */