sqlexer.cpp 17 KB

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  1. /*
  2. see copyright notice in squirrel.h
  3. */
  4. #include "sqpcheader.h"
  5. #include <ctype.h>
  6. #include <stdlib.h>
  7. #include "sqtable.h"
  8. #include "sqstring.h"
  9. #include "sqcompiler.h"
  10. #include "sqlexer.h"
  11. #define CUR_CHAR (_currdata)
  12. #define RETURN_TOKEN(t) { _prevtoken = _curtoken; _curtoken = t; return t;}
  13. #define IS_EOB() (CUR_CHAR <= SQUIRREL_EOB)
  14. #define NEXT() {Next();_currentcolumn++;}
  15. #define INIT_TEMP_STRING() { _longstr.resize(0);}
  16. #define APPEND_CHAR(c) { _longstr.push_back(c);}
  17. #define TERMINATE_BUFFER() {_longstr.push_back(_SC('\0'));}
  18. #define ADD_KEYWORD(key,id) _keywords->NewSlot( SQString::Create(ss, _SC(#key)) ,SQInteger(id))
  19. SQLexer::SQLexer(){}
  20. SQLexer::~SQLexer()
  21. {
  22. _keywords->Release();
  23. }
  24. void SQLexer::Init(SQSharedState *ss, SQLEXREADFUNC rg, SQUserPointer up,CompilerErrorFunc efunc,void *ed)
  25. {
  26. _errfunc = efunc;
  27. _errtarget = ed;
  28. _sharedstate = ss;
  29. _keywords = SQTable::Create(ss, 37);
  30. ADD_KEYWORD(while, TK_WHILE);
  31. ADD_KEYWORD(do, TK_DO);
  32. ADD_KEYWORD(if, TK_IF);
  33. ADD_KEYWORD(else, TK_ELSE);
  34. ADD_KEYWORD(break, TK_BREAK);
  35. ADD_KEYWORD(continue, TK_CONTINUE);
  36. ADD_KEYWORD(return, TK_RETURN);
  37. ADD_KEYWORD(null, TK_NULL);
  38. ADD_KEYWORD(function, TK_FUNCTION);
  39. ADD_KEYWORD(local, TK_LOCAL);
  40. ADD_KEYWORD(for, TK_FOR);
  41. ADD_KEYWORD(foreach, TK_FOREACH);
  42. ADD_KEYWORD(in, TK_IN);
  43. ADD_KEYWORD(typeof, TK_TYPEOF);
  44. ADD_KEYWORD(base, TK_BASE);
  45. ADD_KEYWORD(delete, TK_DELETE);
  46. ADD_KEYWORD(try, TK_TRY);
  47. ADD_KEYWORD(catch, TK_CATCH);
  48. ADD_KEYWORD(throw, TK_THROW);
  49. ADD_KEYWORD(clone, TK_CLONE);
  50. ADD_KEYWORD(yield, TK_YIELD);
  51. ADD_KEYWORD(resume, TK_RESUME);
  52. ADD_KEYWORD(switch, TK_SWITCH);
  53. ADD_KEYWORD(case, TK_CASE);
  54. ADD_KEYWORD(default, TK_DEFAULT);
  55. ADD_KEYWORD(this, TK_THIS);
  56. ADD_KEYWORD(class,TK_CLASS);
  57. ADD_KEYWORD(extends,TK_EXTENDS);
  58. ADD_KEYWORD(constructor,TK_CONSTRUCTOR);
  59. ADD_KEYWORD(instanceof,TK_INSTANCEOF);
  60. ADD_KEYWORD(true,TK_TRUE);
  61. ADD_KEYWORD(false,TK_FALSE);
  62. ADD_KEYWORD(static,TK_STATIC);
  63. ADD_KEYWORD(enum,TK_ENUM);
  64. ADD_KEYWORD(const,TK_CONST);
  65. ADD_KEYWORD(__LINE__,TK___LINE__);
  66. ADD_KEYWORD(__FILE__,TK___FILE__);
  67. ADD_KEYWORD(rawcall, TK_RAWCALL);
  68. _readf = rg;
  69. _up = up;
  70. _lasttokenline = _currentline = 1;
  71. _currentcolumn = 0;
  72. _prevtoken = -1;
  73. _reached_eof = SQFalse;
  74. Next();
  75. }
  76. void SQLexer::Error(const SQChar *err)
  77. {
  78. _errfunc(_errtarget,err);
  79. }
  80. void SQLexer::Next()
  81. {
  82. SQInteger t = _readf(_up);
  83. if(t > MAX_CHAR) Error(_SC("Invalid character"));
  84. if(t != 0) {
  85. _currdata = (LexChar)t;
  86. return;
  87. }
  88. _currdata = SQUIRREL_EOB;
  89. _reached_eof = SQTrue;
  90. }
  91. const SQChar *SQLexer::Tok2Str(SQInteger tok)
  92. {
  93. SQObjectPtr itr, key, val;
  94. SQInteger nitr;
  95. while((nitr = _keywords->Next(false,itr, key, val)) != -1) {
  96. itr = (SQInteger)nitr;
  97. if(((SQInteger)_integer(val)) == tok)
  98. return _stringval(key);
  99. }
  100. return NULL;
  101. }
  102. void SQLexer::LexBlockComment()
  103. {
  104. bool done = false;
  105. while(!done) {
  106. switch(CUR_CHAR) {
  107. case _SC('*'): { NEXT(); if(CUR_CHAR == _SC('/')) { done = true; NEXT(); }}; continue;
  108. case _SC('\n'): _currentline++; NEXT(); continue;
  109. case SQUIRREL_EOB: Error(_SC("missing \"*/\" in comment"));
  110. default: NEXT();
  111. }
  112. }
  113. }
  114. void SQLexer::LexLineComment()
  115. {
  116. do { NEXT(); } while (CUR_CHAR != _SC('\n') && (!IS_EOB()));
  117. }
  118. SQInteger SQLexer::Lex()
  119. {
  120. _lasttokenline = _currentline;
  121. while(CUR_CHAR != SQUIRREL_EOB) {
  122. switch(CUR_CHAR){
  123. case _SC('\t'): case _SC('\r'): case _SC(' '): NEXT(); continue;
  124. case _SC('\n'):
  125. _currentline++;
  126. _prevtoken=_curtoken;
  127. _curtoken=_SC('\n');
  128. NEXT();
  129. _currentcolumn=1;
  130. continue;
  131. case _SC('#'): LexLineComment(); continue;
  132. case _SC('/'):
  133. NEXT();
  134. switch(CUR_CHAR){
  135. case _SC('*'):
  136. NEXT();
  137. LexBlockComment();
  138. continue;
  139. case _SC('/'):
  140. LexLineComment();
  141. continue;
  142. case _SC('='):
  143. NEXT();
  144. RETURN_TOKEN(TK_DIVEQ);
  145. continue;
  146. case _SC('>'):
  147. NEXT();
  148. RETURN_TOKEN(TK_ATTR_CLOSE);
  149. continue;
  150. default:
  151. RETURN_TOKEN('/');
  152. }
  153. case _SC('='):
  154. NEXT();
  155. if (CUR_CHAR != _SC('=')){ RETURN_TOKEN('=') }
  156. else { NEXT(); RETURN_TOKEN(TK_EQ); }
  157. case _SC('<'):
  158. NEXT();
  159. switch(CUR_CHAR) {
  160. case _SC('='):
  161. NEXT();
  162. if(CUR_CHAR == _SC('>')) {
  163. NEXT();
  164. RETURN_TOKEN(TK_3WAYSCMP);
  165. }
  166. RETURN_TOKEN(TK_LE)
  167. break;
  168. case _SC('-'): NEXT(); RETURN_TOKEN(TK_NEWSLOT); break;
  169. case _SC('<'): NEXT(); RETURN_TOKEN(TK_SHIFTL); break;
  170. case _SC('/'): NEXT(); RETURN_TOKEN(TK_ATTR_OPEN); break;
  171. }
  172. RETURN_TOKEN('<');
  173. case _SC('>'):
  174. NEXT();
  175. if (CUR_CHAR == _SC('=')){ NEXT(); RETURN_TOKEN(TK_GE);}
  176. else if(CUR_CHAR == _SC('>')){
  177. NEXT();
  178. if(CUR_CHAR == _SC('>')){
  179. NEXT();
  180. RETURN_TOKEN(TK_USHIFTR);
  181. }
  182. RETURN_TOKEN(TK_SHIFTR);
  183. }
  184. else { RETURN_TOKEN('>') }
  185. case _SC('!'):
  186. NEXT();
  187. if (CUR_CHAR != _SC('=')){ RETURN_TOKEN('!')}
  188. else { NEXT(); RETURN_TOKEN(TK_NE); }
  189. case _SC('@'): {
  190. SQInteger stype;
  191. NEXT();
  192. if(CUR_CHAR != _SC('"')) {
  193. RETURN_TOKEN('@');
  194. }
  195. if((stype=ReadString('"',true))!=-1) {
  196. RETURN_TOKEN(stype);
  197. }
  198. Error(_SC("error parsing the string"));
  199. }
  200. case _SC('"'):
  201. case _SC('\''): {
  202. SQInteger stype;
  203. if((stype=ReadString(CUR_CHAR,false))!=-1){
  204. RETURN_TOKEN(stype);
  205. }
  206. Error(_SC("error parsing the string"));
  207. }
  208. case _SC('{'): case _SC('}'): case _SC('('): case _SC(')'): case _SC('['): case _SC(']'):
  209. case _SC(';'): case _SC(','): case _SC('?'): case _SC('^'): case _SC('~'):
  210. {SQInteger ret = CUR_CHAR;
  211. NEXT(); RETURN_TOKEN(ret); }
  212. case _SC('.'):
  213. NEXT();
  214. if (CUR_CHAR != _SC('.')){ RETURN_TOKEN('.') }
  215. NEXT();
  216. if (CUR_CHAR != _SC('.')){ Error(_SC("invalid token '..'")); }
  217. NEXT();
  218. RETURN_TOKEN(TK_VARPARAMS);
  219. case _SC('&'):
  220. NEXT();
  221. if (CUR_CHAR != _SC('&')){ RETURN_TOKEN('&') }
  222. else { NEXT(); RETURN_TOKEN(TK_AND); }
  223. case _SC('|'):
  224. NEXT();
  225. if (CUR_CHAR != _SC('|')){ RETURN_TOKEN('|') }
  226. else { NEXT(); RETURN_TOKEN(TK_OR); }
  227. case _SC(':'):
  228. NEXT();
  229. if (CUR_CHAR != _SC(':')){ RETURN_TOKEN(':') }
  230. else { NEXT(); RETURN_TOKEN(TK_DOUBLE_COLON); }
  231. case _SC('*'):
  232. NEXT();
  233. if (CUR_CHAR == _SC('=')){ NEXT(); RETURN_TOKEN(TK_MULEQ);}
  234. else RETURN_TOKEN('*');
  235. case _SC('%'):
  236. NEXT();
  237. if (CUR_CHAR == _SC('=')){ NEXT(); RETURN_TOKEN(TK_MODEQ);}
  238. else RETURN_TOKEN('%');
  239. case _SC('-'):
  240. NEXT();
  241. if (CUR_CHAR == _SC('=')){ NEXT(); RETURN_TOKEN(TK_MINUSEQ);}
  242. else if (CUR_CHAR == _SC('-')){ NEXT(); RETURN_TOKEN(TK_MINUSMINUS);}
  243. else RETURN_TOKEN('-');
  244. case _SC('+'):
  245. NEXT();
  246. if (CUR_CHAR == _SC('=')){ NEXT(); RETURN_TOKEN(TK_PLUSEQ);}
  247. else if (CUR_CHAR == _SC('+')){ NEXT(); RETURN_TOKEN(TK_PLUSPLUS);}
  248. else RETURN_TOKEN('+');
  249. case SQUIRREL_EOB:
  250. return 0;
  251. default:{
  252. if (scisdigit(CUR_CHAR)) {
  253. SQInteger ret = ReadNumber();
  254. RETURN_TOKEN(ret);
  255. }
  256. else if (scisalpha(CUR_CHAR) || CUR_CHAR == _SC('_')) {
  257. SQInteger t = ReadID();
  258. RETURN_TOKEN(t);
  259. }
  260. else {
  261. SQInteger c = CUR_CHAR;
  262. if (sciscntrl((int)c)) Error(_SC("unexpected character(control)"));
  263. NEXT();
  264. RETURN_TOKEN(c);
  265. }
  266. RETURN_TOKEN(0);
  267. }
  268. }
  269. }
  270. return 0;
  271. }
  272. SQInteger SQLexer::GetIDType(const SQChar *s,SQInteger len)
  273. {
  274. SQObjectPtr t;
  275. if(_keywords->GetStr(s,len, t)) {
  276. return SQInteger(_integer(t));
  277. }
  278. return TK_IDENTIFIER;
  279. }
  280. #ifdef SQUNICODE
  281. #if WCHAR_SIZE == 2
  282. SQInteger SQLexer::AddUTF16(SQUnsignedInteger ch)
  283. {
  284. if (ch >= 0x10000)
  285. {
  286. SQUnsignedInteger code = (ch - 0x10000);
  287. APPEND_CHAR((SQChar)(0xD800 | (code >> 10)));
  288. APPEND_CHAR((SQChar)(0xDC00 | (code & 0x3FF)));
  289. return 2;
  290. }
  291. else {
  292. APPEND_CHAR((SQChar)ch);
  293. return 1;
  294. }
  295. }
  296. #endif
  297. #else
  298. SQInteger SQLexer::AddUTF8(SQUnsignedInteger ch)
  299. {
  300. if (ch < 0x80) {
  301. APPEND_CHAR((char)ch);
  302. return 1;
  303. }
  304. if (ch < 0x800) {
  305. APPEND_CHAR((SQChar)((ch >> 6) | 0xC0));
  306. APPEND_CHAR((SQChar)((ch & 0x3F) | 0x80));
  307. return 2;
  308. }
  309. if (ch < 0x10000) {
  310. APPEND_CHAR((SQChar)((ch >> 12) | 0xE0));
  311. APPEND_CHAR((SQChar)(((ch >> 6) & 0x3F) | 0x80));
  312. APPEND_CHAR((SQChar)((ch & 0x3F) | 0x80));
  313. return 3;
  314. }
  315. if (ch < 0x110000) {
  316. APPEND_CHAR((SQChar)((ch >> 18) | 0xF0));
  317. APPEND_CHAR((SQChar)(((ch >> 12) & 0x3F) | 0x80));
  318. APPEND_CHAR((SQChar)(((ch >> 6) & 0x3F) | 0x80));
  319. APPEND_CHAR((SQChar)((ch & 0x3F) | 0x80));
  320. return 4;
  321. }
  322. return 0;
  323. }
  324. #endif
  325. SQInteger SQLexer::ProcessStringHexEscape(SQChar *dest, SQInteger maxdigits)
  326. {
  327. NEXT();
  328. if (!isxdigit(CUR_CHAR)) Error(_SC("hexadecimal number expected"));
  329. SQInteger n = 0;
  330. while (isxdigit(CUR_CHAR) && n < maxdigits) {
  331. dest[n] = CUR_CHAR;
  332. n++;
  333. NEXT();
  334. }
  335. dest[n] = 0;
  336. return n;
  337. }
  338. SQInteger SQLexer::ReadString(SQInteger ndelim,bool verbatim)
  339. {
  340. INIT_TEMP_STRING();
  341. NEXT();
  342. if(IS_EOB()) return -1;
  343. for(;;) {
  344. while(CUR_CHAR != ndelim) {
  345. SQInteger x = CUR_CHAR;
  346. switch (x) {
  347. case SQUIRREL_EOB:
  348. Error(_SC("unfinished string"));
  349. return -1;
  350. case _SC('\n'):
  351. if(!verbatim) Error(_SC("newline in a constant"));
  352. APPEND_CHAR(CUR_CHAR); NEXT();
  353. _currentline++;
  354. break;
  355. case _SC('\\'):
  356. if(verbatim) {
  357. APPEND_CHAR('\\'); NEXT();
  358. }
  359. else {
  360. NEXT();
  361. switch(CUR_CHAR) {
  362. case _SC('x'): {
  363. const SQInteger maxdigits = sizeof(SQChar) * 2;
  364. SQChar temp[maxdigits + 1];
  365. ProcessStringHexEscape(temp, maxdigits);
  366. SQChar *stemp;
  367. APPEND_CHAR((SQChar)scstrtoul(temp, &stemp, 16));
  368. }
  369. break;
  370. case _SC('U'):
  371. case _SC('u'): {
  372. const SQInteger maxdigits = x == 'u' ? 4 : 8;
  373. SQChar temp[8 + 1];
  374. ProcessStringHexEscape(temp, maxdigits);
  375. SQChar *stemp;
  376. #ifdef SQUNICODE
  377. #if WCHAR_SIZE == 2
  378. AddUTF16(scstrtoul(temp, &stemp, 16));
  379. #else
  380. APPEND_CHAR((SQChar)scstrtoul(temp, &stemp, 16));
  381. #endif
  382. #else
  383. AddUTF8(scstrtoul(temp, &stemp, 16));
  384. #endif
  385. }
  386. break;
  387. case _SC('t'): APPEND_CHAR(_SC('\t')); NEXT(); break;
  388. case _SC('a'): APPEND_CHAR(_SC('\a')); NEXT(); break;
  389. case _SC('b'): APPEND_CHAR(_SC('\b')); NEXT(); break;
  390. case _SC('n'): APPEND_CHAR(_SC('\n')); NEXT(); break;
  391. case _SC('r'): APPEND_CHAR(_SC('\r')); NEXT(); break;
  392. case _SC('v'): APPEND_CHAR(_SC('\v')); NEXT(); break;
  393. case _SC('f'): APPEND_CHAR(_SC('\f')); NEXT(); break;
  394. case _SC('0'): APPEND_CHAR(_SC('\0')); NEXT(); break;
  395. case _SC('\\'): APPEND_CHAR(_SC('\\')); NEXT(); break;
  396. case _SC('"'): APPEND_CHAR(_SC('"')); NEXT(); break;
  397. case _SC('\''): APPEND_CHAR(_SC('\'')); NEXT(); break;
  398. default:
  399. Error(_SC("unrecognised escaper char"));
  400. break;
  401. }
  402. }
  403. break;
  404. default:
  405. APPEND_CHAR(CUR_CHAR);
  406. NEXT();
  407. }
  408. }
  409. NEXT();
  410. if(verbatim && CUR_CHAR == '"') { //double quotation
  411. APPEND_CHAR(CUR_CHAR);
  412. NEXT();
  413. }
  414. else {
  415. break;
  416. }
  417. }
  418. TERMINATE_BUFFER();
  419. SQInteger len = _longstr.size()-1;
  420. if(ndelim == _SC('\'')) {
  421. if(len == 0) Error(_SC("empty constant"));
  422. if(len > 1) Error(_SC("constant too long"));
  423. _nvalue = _longstr[0];
  424. return TK_INTEGER;
  425. }
  426. _svalue = &_longstr[0];
  427. return TK_STRING_LITERAL;
  428. }
  429. void LexHexadecimal(const SQChar *s,SQUnsignedInteger *res)
  430. {
  431. *res = 0;
  432. while(*s != 0)
  433. {
  434. if(scisdigit(*s)) *res = (*res)*16+((*s++)-'0');
  435. else if(scisxdigit(*s)) *res = (*res)*16+(toupper(*s++)-'A'+10);
  436. else { assert(0); }
  437. }
  438. }
  439. void LexInteger(const SQChar *s,SQUnsignedInteger *res)
  440. {
  441. *res = 0;
  442. while(*s != 0)
  443. {
  444. *res = (*res)*10+((*s++)-'0');
  445. }
  446. }
  447. SQInteger scisodigit(SQInteger c) { return c >= _SC('0') && c <= _SC('7'); }
  448. void LexOctal(const SQChar *s,SQUnsignedInteger *res)
  449. {
  450. *res = 0;
  451. while(*s != 0)
  452. {
  453. if(scisodigit(*s)) *res = (*res)*8+((*s++)-'0');
  454. else { assert(0); }
  455. }
  456. }
  457. SQInteger isexponent(SQInteger c) { return c == 'e' || c=='E'; }
  458. #define MAX_HEX_DIGITS (sizeof(SQInteger)*2)
  459. SQInteger SQLexer::ReadNumber()
  460. {
  461. #define TINT 1
  462. #define TFLOAT 2
  463. #define THEX 3
  464. #define TSCIENTIFIC 4
  465. #define TOCTAL 5
  466. SQInteger type = TINT, firstchar = CUR_CHAR;
  467. SQChar *sTemp;
  468. INIT_TEMP_STRING();
  469. NEXT();
  470. if(firstchar == _SC('0') && (toupper(CUR_CHAR) == _SC('X') || scisodigit(CUR_CHAR)) ) {
  471. if(scisodigit(CUR_CHAR)) {
  472. type = TOCTAL;
  473. while(scisodigit(CUR_CHAR)) {
  474. APPEND_CHAR(CUR_CHAR);
  475. NEXT();
  476. }
  477. if(scisdigit(CUR_CHAR)) Error(_SC("invalid octal number"));
  478. }
  479. else {
  480. NEXT();
  481. type = THEX;
  482. while(isxdigit(CUR_CHAR)) {
  483. APPEND_CHAR(CUR_CHAR);
  484. NEXT();
  485. }
  486. if(_longstr.size() > MAX_HEX_DIGITS) Error(_SC("too many digits for an Hex number"));
  487. }
  488. }
  489. else {
  490. APPEND_CHAR((int)firstchar);
  491. while (CUR_CHAR == _SC('.') || scisdigit(CUR_CHAR) || isexponent(CUR_CHAR)) {
  492. if(CUR_CHAR == _SC('.') || isexponent(CUR_CHAR)) type = TFLOAT;
  493. if(isexponent(CUR_CHAR)) {
  494. if(type != TFLOAT) Error(_SC("invalid numeric format"));
  495. type = TSCIENTIFIC;
  496. APPEND_CHAR(CUR_CHAR);
  497. NEXT();
  498. if(CUR_CHAR == '+' || CUR_CHAR == '-'){
  499. APPEND_CHAR(CUR_CHAR);
  500. NEXT();
  501. }
  502. if(!scisdigit(CUR_CHAR)) Error(_SC("exponent expected"));
  503. }
  504. APPEND_CHAR(CUR_CHAR);
  505. NEXT();
  506. }
  507. }
  508. TERMINATE_BUFFER();
  509. switch(type) {
  510. case TSCIENTIFIC:
  511. case TFLOAT:
  512. _fvalue = (SQFloat)scstrtod(&_longstr[0],&sTemp);
  513. return TK_FLOAT;
  514. case TINT:
  515. LexInteger(&_longstr[0],(SQUnsignedInteger *)&_nvalue);
  516. return TK_INTEGER;
  517. case THEX:
  518. LexHexadecimal(&_longstr[0],(SQUnsignedInteger *)&_nvalue);
  519. return TK_INTEGER;
  520. case TOCTAL:
  521. LexOctal(&_longstr[0],(SQUnsignedInteger *)&_nvalue);
  522. return TK_INTEGER;
  523. }
  524. return 0;
  525. }
  526. SQInteger SQLexer::ReadID()
  527. {
  528. SQInteger res;
  529. INIT_TEMP_STRING();
  530. do {
  531. APPEND_CHAR(CUR_CHAR);
  532. NEXT();
  533. } while(scisalnum(CUR_CHAR) || CUR_CHAR == _SC('_'));
  534. TERMINATE_BUFFER();
  535. res = GetIDType(&_longstr[0],_longstr.size() - 1);
  536. if(res == TK_IDENTIFIER || res == TK_CONSTRUCTOR) {
  537. _svalue = &_longstr[0];
  538. }
  539. return res;
  540. }