sqstdrex.cpp 19 KB

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  1. /* see copyright notice in squirrel.h */
  2. #include <squirrel.h>
  3. #include <string.h>
  4. #include <ctype.h>
  5. #include <setjmp.h>
  6. #include <sqstdstring.h>
  7. #ifdef _UINCODE
  8. #define scisprint iswprint
  9. #else
  10. #define scisprint isprint
  11. #endif
  12. #ifdef _DEBUG
  13. #include <stdio.h>
  14. static const SQChar *g_nnames[] =
  15. {
  16. _SC("NONE"),_SC("OP_GREEDY"), _SC("OP_OR"),
  17. _SC("OP_EXPR"),_SC("OP_NOCAPEXPR"),_SC("OP_DOT"), _SC("OP_CLASS"),
  18. _SC("OP_CCLASS"),_SC("OP_NCLASS"),_SC("OP_RANGE"),_SC("OP_CHAR"),
  19. _SC("OP_EOL"),_SC("OP_BOL"),_SC("OP_WB"),_SC("OP_MB")
  20. };
  21. #endif
  22. #define OP_GREEDY (MAX_CHAR+1) // * + ? {n}
  23. #define OP_OR (MAX_CHAR+2)
  24. #define OP_EXPR (MAX_CHAR+3) //parentesis ()
  25. #define OP_NOCAPEXPR (MAX_CHAR+4) //parentesis (?:)
  26. #define OP_DOT (MAX_CHAR+5)
  27. #define OP_CLASS (MAX_CHAR+6)
  28. #define OP_CCLASS (MAX_CHAR+7)
  29. #define OP_NCLASS (MAX_CHAR+8) //negates class the [^
  30. #define OP_RANGE (MAX_CHAR+9)
  31. #define OP_CHAR (MAX_CHAR+10)
  32. #define OP_EOL (MAX_CHAR+11)
  33. #define OP_BOL (MAX_CHAR+12)
  34. #define OP_WB (MAX_CHAR+13)
  35. #define OP_MB (MAX_CHAR+14) //match balanced
  36. #define OP_EMPTY (MAX_CHAR+15) //match position
  37. #define SQREX_SYMBOL_ANY_CHAR ('.')
  38. #define SQREX_SYMBOL_GREEDY_ONE_OR_MORE ('+')
  39. #define SQREX_SYMBOL_GREEDY_ZERO_OR_MORE ('*')
  40. #define SQREX_SYMBOL_GREEDY_ZERO_OR_ONE ('?')
  41. #define SQREX_SYMBOL_BRANCH ('|')
  42. #define SQREX_SYMBOL_END_OF_STRING ('$')
  43. #define SQREX_SYMBOL_BEGINNING_OF_STRING ('^')
  44. #define SQREX_SYMBOL_ESCAPE_CHAR ('\\')
  45. typedef int SQRexNodeType;
  46. typedef struct tagSQRexNode{
  47. SQRexNodeType type;
  48. SQInteger left;
  49. SQInteger right;
  50. SQInteger next;
  51. }SQRexNode;
  52. struct SQRex{
  53. const SQChar *_eol;
  54. const SQChar *_bol;
  55. const SQChar *_p;
  56. SQInteger _first;
  57. SQInteger _op;
  58. SQRexNode *_nodes;
  59. SQInteger _nallocated;
  60. SQInteger _nsize;
  61. SQInteger _nsubexpr;
  62. SQRexMatch *_matches;
  63. SQInteger _currsubexp;
  64. void *_jmpbuf;
  65. const SQChar **_error;
  66. };
  67. static SQInteger sqstd_rex_list(SQRex *exp);
  68. static SQInteger sqstd_rex_newnode(SQRex *exp, SQRexNodeType type)
  69. {
  70. SQRexNode n;
  71. n.type = type;
  72. n.next = n.right = n.left = -1;
  73. if((type == OP_EXPR) || (type == OP_EMPTY))
  74. n.right = exp->_nsubexpr++;
  75. if(exp->_nallocated < (exp->_nsize + 1)) {
  76. SQInteger oldsize = exp->_nallocated;
  77. exp->_nallocated *= 2;
  78. exp->_nodes = (SQRexNode *)sq_realloc(exp->_nodes, oldsize * sizeof(SQRexNode) ,exp->_nallocated * sizeof(SQRexNode));
  79. }
  80. exp->_nodes[exp->_nsize++] = n;
  81. SQInteger newid = exp->_nsize - 1;
  82. return (SQInteger)newid;
  83. }
  84. static void sqstd_rex_error(SQRex *exp,const SQChar *error)
  85. {
  86. if(exp->_error) *exp->_error = error;
  87. longjmp(*((jmp_buf*)exp->_jmpbuf),-1);
  88. }
  89. static void sqstd_rex_expect(SQRex *exp, SQInteger n){
  90. if((*exp->_p) != n)
  91. sqstd_rex_error(exp, _SC("expected paren"));
  92. exp->_p++;
  93. }
  94. static SQChar sqstd_rex_escapechar(SQRex *exp)
  95. {
  96. if(*exp->_p == SQREX_SYMBOL_ESCAPE_CHAR){
  97. exp->_p++;
  98. switch(*exp->_p) {
  99. case 'v': exp->_p++; return '\v';
  100. case 'n': exp->_p++; return '\n';
  101. case 't': exp->_p++; return '\t';
  102. case 'r': exp->_p++; return '\r';
  103. case 'f': exp->_p++; return '\f';
  104. default: return (*exp->_p++);
  105. }
  106. } else if(!scisprint(*exp->_p)) sqstd_rex_error(exp,_SC("letter expected"));
  107. return (*exp->_p++);
  108. }
  109. static SQInteger sqstd_rex_charclass(SQRex *exp,SQInteger classid)
  110. {
  111. SQInteger n = sqstd_rex_newnode(exp,OP_CCLASS);
  112. exp->_nodes[n].left = classid;
  113. return n;
  114. }
  115. static SQInteger sqstd_rex_charnode(SQRex *exp,SQBool isclass)
  116. {
  117. SQChar t;
  118. if(*exp->_p == SQREX_SYMBOL_ESCAPE_CHAR) {
  119. exp->_p++;
  120. switch(*exp->_p) {
  121. case 'n': exp->_p++; return sqstd_rex_newnode(exp,'\n');
  122. case 't': exp->_p++; return sqstd_rex_newnode(exp,'\t');
  123. case 'r': exp->_p++; return sqstd_rex_newnode(exp,'\r');
  124. case 'f': exp->_p++; return sqstd_rex_newnode(exp,'\f');
  125. case 'v': exp->_p++; return sqstd_rex_newnode(exp,'\v');
  126. case 'a': case 'A': case 'w': case 'W': case 's': case 'S':
  127. case 'd': case 'D': case 'x': case 'X': case 'c': case 'C':
  128. case 'p': case 'P': case 'l': case 'u':
  129. {
  130. t = *exp->_p; exp->_p++;
  131. return sqstd_rex_charclass(exp,t);
  132. }
  133. case 'm':
  134. {
  135. SQChar cb, ce; //cb = character begin match ce = character end match
  136. cb = *++exp->_p; //skip 'm'
  137. ce = *++exp->_p;
  138. exp->_p++; //points to the next char to be parsed
  139. if ((!cb) || (!ce)) sqstd_rex_error(exp,_SC("balanced chars expected"));
  140. if ( cb == ce ) sqstd_rex_error(exp,_SC("open/close char can't be the same"));
  141. SQInteger node = sqstd_rex_newnode(exp,OP_MB);
  142. exp->_nodes[node].left = cb;
  143. exp->_nodes[node].right = ce;
  144. return node;
  145. }
  146. case 'b':
  147. case 'B':
  148. if(!isclass) {
  149. SQInteger node = sqstd_rex_newnode(exp,OP_WB);
  150. exp->_nodes[node].left = *exp->_p;
  151. exp->_p++;
  152. return node;
  153. } //else default
  154. default:
  155. t = *exp->_p; exp->_p++;
  156. return sqstd_rex_newnode(exp,t);
  157. }
  158. }
  159. //else if(!scisprint(*exp->_p)) {
  160. else if(((SQUChar)*exp->_p) < ' ') {
  161. sqstd_rex_error(exp,_SC("letter expected"));
  162. }
  163. t = *exp->_p; exp->_p++;
  164. return sqstd_rex_newnode(exp,t);
  165. }
  166. static SQInteger sqstd_rex_class(SQRex *exp)
  167. {
  168. SQInteger ret = -1;
  169. SQInteger first = -1,chain;
  170. if(*exp->_p == SQREX_SYMBOL_BEGINNING_OF_STRING){
  171. ret = sqstd_rex_newnode(exp,OP_NCLASS);
  172. exp->_p++;
  173. }else ret = sqstd_rex_newnode(exp,OP_CLASS);
  174. if(*exp->_p == ']') sqstd_rex_error(exp,_SC("empty class"));
  175. chain = ret;
  176. while(*exp->_p != ']' && exp->_p != exp->_eol) {
  177. if(*exp->_p == '-' && first != -1){
  178. SQInteger r;
  179. if(*exp->_p++ == ']') sqstd_rex_error(exp,_SC("unfinished range"));
  180. r = sqstd_rex_newnode(exp,OP_RANGE);
  181. if(exp->_nodes[first].type>*exp->_p) sqstd_rex_error(exp,_SC("invalid range"));
  182. if(exp->_nodes[first].type == OP_CCLASS) sqstd_rex_error(exp,_SC("cannot use character classes in ranges"));
  183. exp->_nodes[r].left = exp->_nodes[first].type;
  184. SQInteger t = sqstd_rex_escapechar(exp);
  185. exp->_nodes[r].right = t;
  186. exp->_nodes[chain].next = r;
  187. chain = r;
  188. first = -1;
  189. }
  190. else{
  191. if(first!=-1){
  192. SQInteger c = first;
  193. exp->_nodes[chain].next = c;
  194. chain = c;
  195. first = sqstd_rex_charnode(exp,SQTrue);
  196. }
  197. else{
  198. first = sqstd_rex_charnode(exp,SQTrue);
  199. }
  200. }
  201. }
  202. if(first!=-1){
  203. SQInteger c = first;
  204. exp->_nodes[chain].next = c;
  205. }
  206. /* hack? */
  207. exp->_nodes[ret].left = exp->_nodes[ret].next;
  208. exp->_nodes[ret].next = -1;
  209. return ret;
  210. }
  211. static SQInteger sqstd_rex_parsenumber(SQRex *exp)
  212. {
  213. SQInteger ret = *exp->_p-'0';
  214. SQInteger positions = 10;
  215. exp->_p++;
  216. while(isdigit(*exp->_p)) {
  217. ret = ret*10+(*exp->_p++-'0');
  218. if(positions==1000000000) sqstd_rex_error(exp,_SC("overflow in numeric constant"));
  219. positions *= 10;
  220. };
  221. return ret;
  222. }
  223. static SQInteger sqstd_rex_element(SQRex *exp)
  224. {
  225. SQInteger ret = -1;
  226. switch(*exp->_p)
  227. {
  228. case '(': {
  229. SQInteger expr;
  230. exp->_p++;
  231. if(*exp->_p =='?') {
  232. exp->_p++;
  233. sqstd_rex_expect(exp,':');
  234. expr = sqstd_rex_newnode(exp,OP_NOCAPEXPR);
  235. }
  236. else if(*exp->_p ==')')
  237. {
  238. exp->_p++;
  239. expr = sqstd_rex_newnode(exp,OP_EMPTY);
  240. if(*exp->_p !='\0')
  241. {
  242. SQInteger newn = sqstd_rex_list(exp);
  243. exp->_nodes[expr].next = newn;
  244. }
  245. ret = expr;
  246. break;
  247. }
  248. else
  249. expr = sqstd_rex_newnode(exp,OP_EXPR);
  250. SQInteger newn = sqstd_rex_list(exp);
  251. exp->_nodes[expr].left = newn;
  252. ret = expr;
  253. sqstd_rex_expect(exp,')');
  254. }
  255. break;
  256. case '[':
  257. exp->_p++;
  258. ret = sqstd_rex_class(exp);
  259. sqstd_rex_expect(exp,']');
  260. break;
  261. case SQREX_SYMBOL_END_OF_STRING: exp->_p++; ret = sqstd_rex_newnode(exp,OP_EOL);break;
  262. case SQREX_SYMBOL_ANY_CHAR: exp->_p++; ret = sqstd_rex_newnode(exp,OP_DOT);break;
  263. default:
  264. ret = sqstd_rex_charnode(exp,SQFalse);
  265. break;
  266. }
  267. SQBool isgreedy = SQFalse;
  268. unsigned short p0 = 0, p1 = 0;
  269. switch(*exp->_p){
  270. case SQREX_SYMBOL_GREEDY_ZERO_OR_MORE: p0 = 0; p1 = 0xFFFF; exp->_p++; isgreedy = SQTrue; break;
  271. case SQREX_SYMBOL_GREEDY_ONE_OR_MORE: p0 = 1; p1 = 0xFFFF; exp->_p++; isgreedy = SQTrue; break;
  272. case SQREX_SYMBOL_GREEDY_ZERO_OR_ONE: p0 = 0; p1 = 1; exp->_p++; isgreedy = SQTrue; break;
  273. case '{':
  274. exp->_p++;
  275. if(!isdigit(*exp->_p)) sqstd_rex_error(exp,_SC("number expected"));
  276. p0 = (unsigned short)sqstd_rex_parsenumber(exp);
  277. /*******************************/
  278. switch(*exp->_p) {
  279. case '}':
  280. p1 = p0; exp->_p++;
  281. break;
  282. case ',':
  283. exp->_p++;
  284. p1 = 0xFFFF;
  285. if(isdigit(*exp->_p)){
  286. p1 = (unsigned short)sqstd_rex_parsenumber(exp);
  287. }
  288. sqstd_rex_expect(exp,'}');
  289. break;
  290. default:
  291. sqstd_rex_error(exp,_SC(", or } expected"));
  292. }
  293. /*******************************/
  294. isgreedy = SQTrue;
  295. break;
  296. }
  297. if(isgreedy) {
  298. SQInteger nnode = sqstd_rex_newnode(exp,OP_GREEDY);
  299. exp->_nodes[nnode].left = ret;
  300. exp->_nodes[nnode].right = ((p0)<<16)|p1;
  301. ret = nnode;
  302. }
  303. if((*exp->_p != SQREX_SYMBOL_BRANCH) && (*exp->_p != ')') && (*exp->_p != SQREX_SYMBOL_GREEDY_ZERO_OR_MORE) && (*exp->_p != SQREX_SYMBOL_GREEDY_ONE_OR_MORE) && (*exp->_p != '\0')) {
  304. SQInteger nnode = sqstd_rex_element(exp);
  305. exp->_nodes[ret].next = nnode;
  306. }
  307. return ret;
  308. }
  309. static SQInteger sqstd_rex_list(SQRex *exp)
  310. {
  311. SQInteger ret=-1,e;
  312. if(*exp->_p == SQREX_SYMBOL_BEGINNING_OF_STRING) {
  313. exp->_p++;
  314. ret = sqstd_rex_newnode(exp,OP_BOL);
  315. }
  316. e = sqstd_rex_element(exp);
  317. if(ret != -1) {
  318. exp->_nodes[ret].next = e;
  319. }
  320. else ret = e;
  321. if(*exp->_p == SQREX_SYMBOL_BRANCH) {
  322. SQInteger temp,tright;
  323. exp->_p++;
  324. temp = sqstd_rex_newnode(exp,OP_OR);
  325. exp->_nodes[temp].left = ret;
  326. tright = sqstd_rex_list(exp);
  327. exp->_nodes[temp].right = tright;
  328. ret = temp;
  329. }
  330. return ret;
  331. }
  332. static SQBool sqstd_rex_matchcclass(SQInteger cclass,SQChar c)
  333. {
  334. switch(cclass) {
  335. case 'a': return isalpha(c)?SQTrue:SQFalse;
  336. case 'A': return !isalpha(c)?SQTrue:SQFalse;
  337. case 'w': return (isalnum(c) || c == '_')?SQTrue:SQFalse;
  338. case 'W': return (!isalnum(c) && c != '_')?SQTrue:SQFalse;
  339. case 's': return isspace(c)?SQTrue:SQFalse;
  340. case 'S': return !isspace(c)?SQTrue:SQFalse;
  341. case 'd': return isdigit(c)?SQTrue:SQFalse;
  342. case 'D': return !isdigit(c)?SQTrue:SQFalse;
  343. case 'x': return isxdigit(c)?SQTrue:SQFalse;
  344. case 'X': return !isxdigit(c)?SQTrue:SQFalse;
  345. case 'c': return iscntrl(c)?SQTrue:SQFalse;
  346. case 'C': return !iscntrl(c)?SQTrue:SQFalse;
  347. case 'p': return ispunct(c)?SQTrue:SQFalse;
  348. case 'P': return !ispunct(c)?SQTrue:SQFalse;
  349. case 'l': return islower(c)?SQTrue:SQFalse;
  350. case 'u': return isupper(c)?SQTrue:SQFalse;
  351. }
  352. return SQFalse; /*cannot happen*/
  353. }
  354. static SQBool sqstd_rex_matchclass(SQRex* exp,SQRexNode *node,SQChar c)
  355. {
  356. do {
  357. switch(node->type) {
  358. case OP_RANGE:
  359. if(c >= node->left && c <= node->right) return SQTrue;
  360. break;
  361. case OP_CCLASS:
  362. if(sqstd_rex_matchcclass(node->left,c)) return SQTrue;
  363. break;
  364. default:
  365. if(c == node->type)return SQTrue;
  366. }
  367. } while((node->next != -1) && (node = &exp->_nodes[node->next]));
  368. return SQFalse;
  369. }
  370. static const SQChar *sqstd_rex_matchnode(SQRex* exp,SQRexNode *node,const SQChar *str,SQRexNode *next)
  371. {
  372. SQRexNodeType type = node->type;
  373. switch(type) {
  374. case OP_GREEDY: {
  375. //SQRexNode *greedystop = (node->next != -1) ? &exp->_nodes[node->next] : NULL;
  376. SQRexNode *greedystop = NULL;
  377. SQInteger p0 = (node->right >> 16)&0x0000FFFF, p1 = node->right&0x0000FFFF, nmatches = 0;
  378. const SQChar *s=str, *good = str;
  379. if(node->next != -1) {
  380. greedystop = &exp->_nodes[node->next];
  381. }
  382. else {
  383. greedystop = next;
  384. }
  385. while((nmatches == 0xFFFF || nmatches < p1)) {
  386. const SQChar *stop, *last_match = s;
  387. SQInteger while_nmatches = 0;
  388. while((last_match = sqstd_rex_matchnode(exp,&exp->_nodes[node->left],s,greedystop)))
  389. {
  390. while_nmatches++;
  391. s = last_match;
  392. }
  393. if(!while_nmatches) break;
  394. nmatches += while_nmatches;
  395. good=s;
  396. if(greedystop && !sqstd_rex_matchclass(exp,&exp->_nodes[node->left],*s)) {
  397. //checks that 0 matches satisfy the expression(if so skips)
  398. //if not would always stop(for instance if is a '?')
  399. if(greedystop->type != OP_GREEDY ||
  400. (greedystop->type == OP_GREEDY && ((greedystop->right >> 16)&0x0000FFFF) != 0))
  401. {
  402. SQRexNode *gnext = NULL;
  403. if(greedystop->next != -1) {
  404. gnext = &exp->_nodes[greedystop->next];
  405. }else if(next && next->next != -1){
  406. gnext = &exp->_nodes[next->next];
  407. }
  408. stop = sqstd_rex_matchnode(exp,greedystop,s,gnext);
  409. if(stop) {
  410. //if satisfied stop it
  411. if(p0 == p1 && p0 == nmatches) break;
  412. else if(nmatches >= p0 && p1 == 0xFFFF) break;
  413. else if(nmatches >= p0 && nmatches <= p1) break;
  414. }
  415. }
  416. }
  417. if(s >= exp->_eol)
  418. break;
  419. }
  420. if(p0 == p1 && p0 == nmatches) return good;
  421. else if(nmatches >= p0 && p1 == 0xFFFF) return good;
  422. else if(nmatches >= p0 && nmatches <= p1) return good;
  423. return NULL;
  424. }
  425. case OP_OR: {
  426. const SQChar *asd = str;
  427. SQRexNode *temp=&exp->_nodes[node->left];
  428. while( (asd = sqstd_rex_matchnode(exp,temp,asd,NULL)) ) {
  429. if(temp->next != -1)
  430. temp = &exp->_nodes[temp->next];
  431. else
  432. return asd;
  433. }
  434. asd = str;
  435. temp = &exp->_nodes[node->right];
  436. while( (asd = sqstd_rex_matchnode(exp,temp,asd,NULL)) ) {
  437. if(temp->next != -1)
  438. temp = &exp->_nodes[temp->next];
  439. else
  440. return asd;
  441. }
  442. return NULL;
  443. break;
  444. }
  445. case OP_EMPTY: //zero length capture
  446. case OP_EXPR:
  447. case OP_NOCAPEXPR:{
  448. SQRexNode *n = &exp->_nodes[node->left];
  449. const SQChar *cur = str;
  450. SQInteger capture = -1;
  451. if(node->type != OP_NOCAPEXPR && node->right == exp->_currsubexp) {
  452. capture = exp->_currsubexp;
  453. exp->_matches[capture].begin = cur;
  454. exp->_currsubexp++;
  455. if(type == OP_EMPTY)
  456. {
  457. exp->_matches[capture].len = -1;
  458. return cur;
  459. }
  460. }
  461. SQInteger tempcap = exp->_currsubexp;
  462. do {
  463. SQRexNode *subnext = NULL;
  464. if(n->next != -1) {
  465. subnext = &exp->_nodes[n->next];
  466. }else {
  467. subnext = next;
  468. }
  469. if(!(cur = sqstd_rex_matchnode(exp,n,cur,subnext))) {
  470. if(capture != -1){
  471. exp->_matches[capture].begin = 0;
  472. exp->_matches[capture].len = 0;
  473. }
  474. return NULL;
  475. }
  476. } while((n->next != -1) && (n = &exp->_nodes[n->next]));
  477. exp->_currsubexp = tempcap;
  478. if(capture != -1)
  479. exp->_matches[capture].len = cur - exp->_matches[capture].begin;
  480. return cur;
  481. }
  482. case OP_WB:
  483. if((str == exp->_bol && !isspace(*str))
  484. || (str == exp->_eol && !isspace(*(str-1)))
  485. || (!isspace(*str) && isspace(*(str+1)))
  486. || (isspace(*str) && !isspace(*(str+1))) ) {
  487. return (node->left == 'b')?str:NULL;
  488. }
  489. return (node->left == 'b')?NULL:str;
  490. case OP_BOL:
  491. if(str == exp->_bol) return str;
  492. return NULL;
  493. case OP_EOL:
  494. if(str == exp->_eol) return str;
  495. return NULL;
  496. case OP_DOT:{
  497. if (str == exp->_eol) return NULL;
  498. str++;
  499. }
  500. return str;
  501. case OP_NCLASS:
  502. case OP_CLASS:
  503. if (str == exp->_eol) return NULL;
  504. if(sqstd_rex_matchclass(exp,&exp->_nodes[node->left],*str)?(type == OP_CLASS?SQTrue:SQFalse):(type == OP_NCLASS?SQTrue:SQFalse)) {
  505. str++;
  506. return str;
  507. }
  508. return NULL;
  509. case OP_CCLASS:
  510. if (str == exp->_eol) return NULL;
  511. if(sqstd_rex_matchcclass(node->left,*str)) {
  512. str++;
  513. return str;
  514. }
  515. return NULL;
  516. case OP_MB:
  517. {
  518. SQInteger cb = node->left; //char that opens a balanced expression
  519. if(*str != cb) return NULL; // string doesnt start with open char
  520. SQInteger ce = node->right; //char that closes a balanced expression
  521. SQInteger cont = 1;
  522. const SQChar *streol = exp->_eol;
  523. while (++str < streol) {
  524. if (*str == ce) {
  525. if (--cont == 0) {
  526. return ++str;
  527. }
  528. }
  529. else if (*str == cb) cont++;
  530. }
  531. }
  532. return NULL; // string ends out of balance
  533. default: /* char */
  534. if (str == exp->_eol) return NULL;
  535. if(*str != node->type) return NULL;
  536. str++;
  537. return str;
  538. }
  539. return NULL;
  540. }
  541. /* public api */
  542. SQRex *sqstd_rex_compile(const SQChar *pattern,const SQChar **error)
  543. {
  544. SQRex * volatile exp = (SQRex *)sq_malloc(sizeof(SQRex)); // "volatile" is needed for setjmp()
  545. exp->_eol = exp->_bol = NULL;
  546. exp->_p = pattern;
  547. exp->_nallocated = (SQInteger)scstrlen(pattern) * sizeof(SQChar);
  548. exp->_nodes = (SQRexNode *)sq_malloc(exp->_nallocated * sizeof(SQRexNode));
  549. exp->_nsize = 0;
  550. exp->_matches = 0;
  551. exp->_nsubexpr = 0;
  552. exp->_first = sqstd_rex_newnode(exp,OP_EXPR);
  553. exp->_error = error;
  554. exp->_jmpbuf = sq_malloc(sizeof(jmp_buf));
  555. if(setjmp(*((jmp_buf*)exp->_jmpbuf)) == 0) {
  556. SQInteger res = sqstd_rex_list(exp);
  557. exp->_nodes[exp->_first].left = res;
  558. if(*exp->_p!='\0')
  559. sqstd_rex_error(exp,_SC("unexpected character"));
  560. #ifdef _DEBUG
  561. {
  562. SQInteger nsize,i;
  563. SQRexNode *t;
  564. nsize = exp->_nsize;
  565. t = &exp->_nodes[0];
  566. scprintf(_SC("\n"));
  567. for(i = 0;i < nsize; i++) {
  568. if(exp->_nodes[i].type>MAX_CHAR)
  569. scprintf(_SC("[%02d] %10s "),(SQInt32)i,g_nnames[exp->_nodes[i].type-MAX_CHAR]);
  570. else
  571. scprintf(_SC("[%02d] %10c "),(SQInt32)i,exp->_nodes[i].type);
  572. scprintf(_SC("left %02d right %02d next %02d\n"), (SQInt32)exp->_nodes[i].left, (SQInt32)exp->_nodes[i].right, (SQInt32)exp->_nodes[i].next);
  573. }
  574. scprintf(_SC("\n"));
  575. }
  576. #endif
  577. exp->_matches = (SQRexMatch *) sq_malloc(exp->_nsubexpr * sizeof(SQRexMatch));
  578. memset(exp->_matches,0,exp->_nsubexpr * sizeof(SQRexMatch));
  579. }
  580. else{
  581. sqstd_rex_free(exp);
  582. return NULL;
  583. }
  584. return exp;
  585. }
  586. void sqstd_rex_free(SQRex *exp)
  587. {
  588. if(exp) {
  589. if(exp->_nodes) sq_free(exp->_nodes,exp->_nallocated * sizeof(SQRexNode));
  590. if(exp->_jmpbuf) sq_free(exp->_jmpbuf,sizeof(jmp_buf));
  591. if(exp->_matches) sq_free(exp->_matches,exp->_nsubexpr * sizeof(SQRexMatch));
  592. sq_free(exp,sizeof(SQRex));
  593. }
  594. }
  595. SQBool sqstd_rex_match(SQRex* exp,const SQChar* text, SQInteger text_size)
  596. {
  597. const SQChar* res = NULL;
  598. exp->_bol = text;
  599. exp->_eol = text + ((text_size < 0) ? scstrlen(text) : text_size);
  600. exp->_currsubexp = 0;
  601. res = sqstd_rex_matchnode(exp,exp->_nodes,text,NULL);
  602. if(res == NULL || res != exp->_eol)
  603. return SQFalse;
  604. return SQTrue;
  605. }
  606. SQBool sqstd_rex_searchrange(SQRex* exp,const SQChar* text_begin,const SQChar* text_end,const SQChar** out_begin, const SQChar** out_end)
  607. {
  608. const SQChar *cur = NULL;
  609. SQInteger node = exp->_first;
  610. if(text_begin >= text_end) return SQFalse;
  611. exp->_bol = text_begin;
  612. exp->_eol = text_end;
  613. do {
  614. cur = text_begin;
  615. while(node != -1) {
  616. exp->_currsubexp = 0;
  617. cur = sqstd_rex_matchnode(exp,&exp->_nodes[node],cur,NULL);
  618. if(!cur)
  619. break;
  620. node = exp->_nodes[node].next;
  621. }
  622. text_begin++;
  623. } while(cur == NULL && text_begin != text_end);
  624. if(cur == NULL)
  625. return SQFalse;
  626. --text_begin;
  627. if(out_begin) *out_begin = text_begin;
  628. if(out_end) *out_end = cur;
  629. return SQTrue;
  630. }
  631. SQBool sqstd_rex_search(SQRex* exp,const SQChar* text, const SQChar** out_begin, const SQChar** out_end)
  632. {
  633. return sqstd_rex_searchrange(exp,text,text + scstrlen(text),out_begin,out_end);
  634. }
  635. SQInteger sqstd_rex_getsubexpcount(SQRex* exp)
  636. {
  637. return exp->_nsubexpr;
  638. }
  639. SQBool sqstd_rex_getsubexp(SQRex* exp, SQInteger n, SQRexMatch *subexp)
  640. {
  641. if( n<0 || n >= exp->_nsubexpr) return SQFalse;
  642. *subexp = exp->_matches[n];
  643. return SQTrue;
  644. }