sqstdstring.cpp 14 KB

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  1. /* see copyright notice in squirrel.h */
  2. #include <squirrel.h>
  3. #include <sqstdstring.h>
  4. #include <string.h>
  5. #include <stdlib.h>
  6. #include <stdio.h>
  7. #include <ctype.h>
  8. #include <assert.h>
  9. #define MAX_FORMAT_LEN 20
  10. #define MAX_WFORMAT_LEN 3
  11. #define ADDITIONAL_FORMAT_SPACE (100*sizeof(SQChar))
  12. static SQBool isfmtchr(SQChar ch)
  13. {
  14. switch(ch) {
  15. case '-': case '+': case ' ': case '#': case '0': return SQTrue;
  16. }
  17. return SQFalse;
  18. }
  19. static SQInteger validate_format(HSQUIRRELVM v, SQChar *fmt, const SQChar *src, SQInteger n,SQInteger &width)
  20. {
  21. SQChar *dummy;
  22. SQChar swidth[MAX_WFORMAT_LEN];
  23. SQInteger wc = 0;
  24. SQInteger start = n;
  25. fmt[0] = '%';
  26. while (isfmtchr(src[n])) n++;
  27. while (scisdigit(src[n])) {
  28. swidth[wc] = src[n];
  29. n++;
  30. wc++;
  31. if(wc>=MAX_WFORMAT_LEN)
  32. return sq_throwerror(v,_SC("width format too long"));
  33. }
  34. swidth[wc] = '\0';
  35. if(wc > 0) {
  36. width = scstrtol(swidth,&dummy,10);
  37. }
  38. else
  39. width = 0;
  40. if (src[n] == '.') {
  41. n++;
  42. wc = 0;
  43. while (scisdigit(src[n])) {
  44. swidth[wc] = src[n];
  45. n++;
  46. wc++;
  47. if(wc>=MAX_WFORMAT_LEN)
  48. return sq_throwerror(v,_SC("precision format too long"));
  49. }
  50. swidth[wc] = '\0';
  51. if(wc > 0) {
  52. width += scstrtol(swidth,&dummy,10);
  53. }
  54. }
  55. if (n-start > MAX_FORMAT_LEN )
  56. return sq_throwerror(v,_SC("format too long"));
  57. memcpy(&fmt[1],&src[start],((n-start)+1)*sizeof(SQChar));
  58. fmt[(n-start)+2] = '\0';
  59. return n;
  60. }
  61. SQRESULT sqstd_format(HSQUIRRELVM v,SQInteger nformatstringidx,SQInteger *outlen,SQChar **output)
  62. {
  63. const SQChar *format;
  64. SQChar *dest;
  65. SQChar fmt[MAX_FORMAT_LEN];
  66. sq_getstring(v,nformatstringidx,&format);
  67. SQInteger format_size = sq_getsize(v,nformatstringidx);
  68. SQInteger allocated = (format_size+2)*sizeof(SQChar);
  69. dest = sq_getscratchpad(v,allocated);
  70. SQInteger n = 0,i = 0, nparam = nformatstringidx+1, w = 0;
  71. //while(format[n] != '\0')
  72. while(n < format_size)
  73. {
  74. if(format[n] != '%') {
  75. assert(i < allocated);
  76. dest[i++] = format[n];
  77. n++;
  78. }
  79. else if(format[n+1] == '%') { //handles %%
  80. dest[i++] = '%';
  81. n += 2;
  82. }
  83. else {
  84. n++;
  85. if( nparam > sq_gettop(v) )
  86. return sq_throwerror(v,_SC("not enough parameters for the given format string"));
  87. n = validate_format(v,fmt,format,n,w);
  88. if(n < 0) return -1;
  89. SQInteger addlen = 0;
  90. SQInteger valtype = 0;
  91. const SQChar *ts = NULL;
  92. SQInteger ti = 0;
  93. SQFloat tf = 0;
  94. switch(format[n]) {
  95. case 's':
  96. if(SQ_FAILED(sq_getstring(v,nparam,&ts)))
  97. return sq_throwerror(v,_SC("string expected for the specified format"));
  98. addlen = (sq_getsize(v,nparam)*sizeof(SQChar))+((w+1)*sizeof(SQChar));
  99. valtype = 's';
  100. break;
  101. case 'i': case 'd': case 'o': case 'u': case 'x': case 'X':
  102. #ifdef _SQ64
  103. {
  104. size_t flen = scstrlen(fmt);
  105. SQInteger fpos = flen - 1;
  106. SQChar f = fmt[fpos];
  107. const SQChar *prec = (const SQChar *)_PRINT_INT_PREC;
  108. while(*prec != _SC('\0')) {
  109. fmt[fpos++] = *prec++;
  110. }
  111. fmt[fpos++] = f;
  112. fmt[fpos++] = _SC('\0');
  113. }
  114. #endif
  115. case 'c':
  116. if(SQ_FAILED(sq_getinteger(v,nparam,&ti)))
  117. return sq_throwerror(v,_SC("integer expected for the specified format"));
  118. addlen = (ADDITIONAL_FORMAT_SPACE)+((w+1)*sizeof(SQChar));
  119. valtype = 'i';
  120. break;
  121. case 'f': case 'g': case 'G': case 'e': case 'E':
  122. if(SQ_FAILED(sq_getfloat(v,nparam,&tf)))
  123. return sq_throwerror(v,_SC("float expected for the specified format"));
  124. addlen = (ADDITIONAL_FORMAT_SPACE)+((w+1)*sizeof(SQChar));
  125. valtype = 'f';
  126. break;
  127. default:
  128. return sq_throwerror(v,_SC("invalid format"));
  129. }
  130. n++;
  131. allocated += addlen + sizeof(SQChar);
  132. dest = sq_getscratchpad(v,allocated);
  133. switch(valtype) {
  134. case 's': i += scsprintf(&dest[i],allocated,fmt,ts); break;
  135. case 'i': i += scsprintf(&dest[i],allocated,fmt,ti); break;
  136. case 'f': i += scsprintf(&dest[i],allocated,fmt,tf); break;
  137. };
  138. nparam ++;
  139. }
  140. }
  141. *outlen = i;
  142. dest[i] = '\0';
  143. *output = dest;
  144. return SQ_OK;
  145. }
  146. static SQInteger _string_printf(HSQUIRRELVM v)
  147. {
  148. SQChar *dest = NULL;
  149. SQInteger length = 0;
  150. if(SQ_FAILED(sqstd_format(v,2,&length,&dest)))
  151. return -1;
  152. SQPRINTFUNCTION printfunc = sq_getprintfunc(v);
  153. if(printfunc) printfunc(v,dest);
  154. return 0;
  155. }
  156. static SQInteger _string_format(HSQUIRRELVM v)
  157. {
  158. SQChar *dest = NULL;
  159. SQInteger length = 0;
  160. if(SQ_FAILED(sqstd_format(v,2,&length,&dest)))
  161. return -1;
  162. sq_pushstring(v,dest,length);
  163. return 1;
  164. }
  165. static void __strip_l(const SQChar *str,const SQChar **start)
  166. {
  167. const SQChar *t = str;
  168. while(((*t) != '\0') && scisspace(*t)){ t++; }
  169. *start = t;
  170. }
  171. static void __strip_r(const SQChar *str,SQInteger len,const SQChar **end)
  172. {
  173. if(len == 0) {
  174. *end = str;
  175. return;
  176. }
  177. const SQChar *t = &str[len-1];
  178. while(t >= str && scisspace(*t)) { t--; }
  179. *end = t + 1;
  180. }
  181. static SQInteger _string_strip(HSQUIRRELVM v)
  182. {
  183. const SQChar *str,*start,*end;
  184. sq_getstring(v,2,&str);
  185. SQInteger len = sq_getsize(v,2);
  186. __strip_l(str,&start);
  187. __strip_r(str,len,&end);
  188. sq_pushstring(v,start,end - start);
  189. return 1;
  190. }
  191. static SQInteger _string_lstrip(HSQUIRRELVM v)
  192. {
  193. const SQChar *str,*start;
  194. sq_getstring(v,2,&str);
  195. __strip_l(str,&start);
  196. sq_pushstring(v,start,-1);
  197. return 1;
  198. }
  199. static SQInteger _string_rstrip(HSQUIRRELVM v)
  200. {
  201. const SQChar *str,*end;
  202. sq_getstring(v,2,&str);
  203. SQInteger len = sq_getsize(v,2);
  204. __strip_r(str,len,&end);
  205. sq_pushstring(v,str,end - str);
  206. return 1;
  207. }
  208. static SQInteger _string_split(HSQUIRRELVM v)
  209. {
  210. const SQChar *str,*seps;
  211. SQChar *stemp;
  212. sq_getstring(v,2,&str);
  213. sq_getstring(v,3,&seps);
  214. SQInteger sepsize = sq_getsize(v,3);
  215. if(sepsize == 0) return sq_throwerror(v,_SC("empty separators string"));
  216. SQInteger memsize = (sq_getsize(v,2)+1)*sizeof(SQChar);
  217. stemp = sq_getscratchpad(v,memsize);
  218. memcpy(stemp,str,memsize);
  219. SQChar *start = stemp;
  220. SQChar *end = stemp;
  221. sq_newarray(v,0);
  222. while(*end != '\0')
  223. {
  224. SQChar cur = *end;
  225. for(SQInteger i = 0; i < sepsize; i++)
  226. {
  227. if(cur == seps[i])
  228. {
  229. *end = 0;
  230. sq_pushstring(v,start,-1);
  231. sq_arrayappend(v,-2);
  232. start = end + 1;
  233. break;
  234. }
  235. }
  236. end++;
  237. }
  238. if(end != start)
  239. {
  240. sq_pushstring(v,start,-1);
  241. sq_arrayappend(v,-2);
  242. }
  243. return 1;
  244. }
  245. static SQInteger _string_escape(HSQUIRRELVM v)
  246. {
  247. const SQChar *str;
  248. SQChar *dest,*resstr;
  249. SQInteger size;
  250. sq_getstring(v,2,&str);
  251. size = sq_getsize(v,2);
  252. if(size == 0) {
  253. sq_push(v,2);
  254. return 1;
  255. }
  256. #ifdef SQUNICODE
  257. #if WCHAR_SIZE == 2
  258. const SQChar *escpat = _SC("\\x%04x");
  259. const SQInteger maxescsize = 6;
  260. #else //WCHAR_SIZE == 4
  261. const SQChar *escpat = _SC("\\x%08x");
  262. const SQInteger maxescsize = 10;
  263. #endif
  264. #else
  265. const SQChar *escpat = _SC("\\x%02x");
  266. const SQInteger maxescsize = 4;
  267. #endif
  268. SQInteger destcharsize = (size * maxescsize); //assumes every char could be escaped
  269. resstr = dest = (SQChar *)sq_getscratchpad(v,destcharsize * sizeof(SQChar));
  270. SQChar c;
  271. SQChar escch;
  272. SQInteger escaped = 0;
  273. for(int n = 0; n < size; n++){
  274. c = *str++;
  275. escch = 0;
  276. if(scisprint(c) || c == 0) {
  277. switch(c) {
  278. case '\a': escch = 'a'; break;
  279. case '\b': escch = 'b'; break;
  280. case '\t': escch = 't'; break;
  281. case '\n': escch = 'n'; break;
  282. case '\v': escch = 'v'; break;
  283. case '\f': escch = 'f'; break;
  284. case '\r': escch = 'r'; break;
  285. case '\\': escch = '\\'; break;
  286. case '\"': escch = '\"'; break;
  287. case '\'': escch = '\''; break;
  288. case 0: escch = '0'; break;
  289. }
  290. if(escch) {
  291. *dest++ = '\\';
  292. *dest++ = escch;
  293. escaped++;
  294. }
  295. else {
  296. *dest++ = c;
  297. }
  298. }
  299. else {
  300. dest += scsprintf(dest, destcharsize, escpat, c);
  301. escaped++;
  302. }
  303. }
  304. if(escaped) {
  305. sq_pushstring(v,resstr,dest - resstr);
  306. }
  307. else {
  308. sq_push(v,2); //nothing escaped
  309. }
  310. return 1;
  311. }
  312. static SQInteger _string_startswith(HSQUIRRELVM v)
  313. {
  314. const SQChar *str,*cmp;
  315. sq_getstring(v,2,&str);
  316. sq_getstring(v,3,&cmp);
  317. SQInteger len = sq_getsize(v,2);
  318. SQInteger cmplen = sq_getsize(v,3);
  319. SQBool ret = SQFalse;
  320. if(cmplen <= len) {
  321. ret = memcmp(str,cmp,sq_rsl(cmplen)) == 0 ? SQTrue : SQFalse;
  322. }
  323. sq_pushbool(v,ret);
  324. return 1;
  325. }
  326. static SQInteger _string_endswith(HSQUIRRELVM v)
  327. {
  328. const SQChar *str,*cmp;
  329. sq_getstring(v,2,&str);
  330. sq_getstring(v,3,&cmp);
  331. SQInteger len = sq_getsize(v,2);
  332. SQInteger cmplen = sq_getsize(v,3);
  333. SQBool ret = SQFalse;
  334. if(cmplen <= len) {
  335. ret = memcmp(&str[len - cmplen],cmp,sq_rsl(cmplen)) == 0 ? SQTrue : SQFalse;
  336. }
  337. sq_pushbool(v,ret);
  338. return 1;
  339. }
  340. #define SETUP_REX(v) \
  341. SQRex *self = NULL; \
  342. sq_getinstanceup(v,1,(SQUserPointer *)&self,0);
  343. static SQInteger _rexobj_releasehook(SQUserPointer p, SQInteger SQ_UNUSED_ARG(size))
  344. {
  345. SQRex *self = ((SQRex *)p);
  346. sqstd_rex_free(self);
  347. return 1;
  348. }
  349. static SQInteger _regexp_match(HSQUIRRELVM v)
  350. {
  351. SETUP_REX(v);
  352. const SQChar *str;
  353. sq_getstring(v,2,&str);
  354. if(sqstd_rex_match(self,str) == SQTrue)
  355. {
  356. sq_pushbool(v,SQTrue);
  357. return 1;
  358. }
  359. sq_pushbool(v,SQFalse);
  360. return 1;
  361. }
  362. static void _addrexmatch(HSQUIRRELVM v,const SQChar *str,const SQChar *begin,const SQChar *end)
  363. {
  364. sq_newtable(v);
  365. sq_pushstring(v,_SC("begin"),-1);
  366. sq_pushinteger(v,begin - str);
  367. sq_rawset(v,-3);
  368. sq_pushstring(v,_SC("end"),-1);
  369. sq_pushinteger(v,end - str);
  370. sq_rawset(v,-3);
  371. }
  372. static SQInteger _regexp_search(HSQUIRRELVM v)
  373. {
  374. SETUP_REX(v);
  375. const SQChar *str,*begin,*end;
  376. SQInteger start = 0;
  377. sq_getstring(v,2,&str);
  378. if(sq_gettop(v) > 2) sq_getinteger(v,3,&start);
  379. if(sqstd_rex_search(self,str+start,&begin,&end) == SQTrue) {
  380. _addrexmatch(v,str,begin,end);
  381. return 1;
  382. }
  383. return 0;
  384. }
  385. static SQInteger _regexp_capture(HSQUIRRELVM v)
  386. {
  387. SETUP_REX(v);
  388. const SQChar *str,*begin,*end;
  389. SQInteger start = 0;
  390. sq_getstring(v,2,&str);
  391. if(sq_gettop(v) > 2) sq_getinteger(v,3,&start);
  392. if(sqstd_rex_search(self,str+start,&begin,&end) == SQTrue) {
  393. SQInteger n = sqstd_rex_getsubexpcount(self);
  394. SQRexMatch match;
  395. sq_newarray(v,0);
  396. for(SQInteger i = 0;i < n; i++) {
  397. sqstd_rex_getsubexp(self,i,&match);
  398. if(match.len > 0)
  399. _addrexmatch(v,str,match.begin,match.begin+match.len);
  400. else
  401. _addrexmatch(v,str,str,str); //empty match
  402. sq_arrayappend(v,-2);
  403. }
  404. return 1;
  405. }
  406. return 0;
  407. }
  408. static SQInteger _regexp_subexpcount(HSQUIRRELVM v)
  409. {
  410. SETUP_REX(v);
  411. sq_pushinteger(v,sqstd_rex_getsubexpcount(self));
  412. return 1;
  413. }
  414. static SQInteger _regexp_constructor(HSQUIRRELVM v)
  415. {
  416. const SQChar *error,*pattern;
  417. sq_getstring(v,2,&pattern);
  418. SQRex *rex = sqstd_rex_compile(pattern,&error);
  419. if(!rex) return sq_throwerror(v,error);
  420. sq_setinstanceup(v,1,rex);
  421. sq_setreleasehook(v,1,_rexobj_releasehook);
  422. return 0;
  423. }
  424. static SQInteger _regexp__typeof(HSQUIRRELVM v)
  425. {
  426. sq_pushstring(v,_SC("regexp"),-1);
  427. return 1;
  428. }
  429. #define _DECL_REX_FUNC(name,nparams,pmask) {_SC(#name),_regexp_##name,nparams,pmask}
  430. static const SQRegFunction rexobj_funcs[]={
  431. _DECL_REX_FUNC(constructor,2,_SC(".s")),
  432. _DECL_REX_FUNC(search,-2,_SC("xsn")),
  433. _DECL_REX_FUNC(match,2,_SC("xs")),
  434. _DECL_REX_FUNC(capture,-2,_SC("xsn")),
  435. _DECL_REX_FUNC(subexpcount,1,_SC("x")),
  436. _DECL_REX_FUNC(_typeof,1,_SC("x")),
  437. {NULL,(SQFUNCTION)0,0,NULL}
  438. };
  439. #undef _DECL_REX_FUNC
  440. #define _DECL_FUNC(name,nparams,pmask) {_SC(#name),_string_##name,nparams,pmask}
  441. static const SQRegFunction stringlib_funcs[]={
  442. _DECL_FUNC(format,-2,_SC(".s")),
  443. _DECL_FUNC(printf,-2,_SC(".s")),
  444. _DECL_FUNC(strip,2,_SC(".s")),
  445. _DECL_FUNC(lstrip,2,_SC(".s")),
  446. _DECL_FUNC(rstrip,2,_SC(".s")),
  447. _DECL_FUNC(split,3,_SC(".ss")),
  448. _DECL_FUNC(escape,2,_SC(".s")),
  449. _DECL_FUNC(startswith,3,_SC(".ss")),
  450. _DECL_FUNC(endswith,3,_SC(".ss")),
  451. {NULL,(SQFUNCTION)0,0,NULL}
  452. };
  453. #undef _DECL_FUNC
  454. SQInteger sqstd_register_stringlib(HSQUIRRELVM v)
  455. {
  456. sq_pushstring(v,_SC("regexp"),-1);
  457. sq_newclass(v,SQFalse);
  458. SQInteger i = 0;
  459. while(rexobj_funcs[i].name != 0) {
  460. const SQRegFunction &f = rexobj_funcs[i];
  461. sq_pushstring(v,f.name,-1);
  462. sq_newclosure(v,f.f,0);
  463. sq_setparamscheck(v,f.nparamscheck,f.typemask);
  464. sq_setnativeclosurename(v,-1,f.name);
  465. sq_newslot(v,-3,SQFalse);
  466. i++;
  467. }
  468. sq_newslot(v,-3,SQFalse);
  469. i = 0;
  470. while(stringlib_funcs[i].name!=0)
  471. {
  472. sq_pushstring(v,stringlib_funcs[i].name,-1);
  473. sq_newclosure(v,stringlib_funcs[i].f,0);
  474. sq_setparamscheck(v,stringlib_funcs[i].nparamscheck,stringlib_funcs[i].typemask);
  475. sq_setnativeclosurename(v,-1,stringlib_funcs[i].name);
  476. sq_newslot(v,-3,SQFalse);
  477. i++;
  478. }
  479. return 1;
  480. }