lparser.c 34 KB

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  1. /*
  2. ** $Id: lparser.c,v 1.8 1999/01/15 11:38:33 roberto Exp roberto $
  3. ** LL(1) Parser and code generator for Lua
  4. ** See Copyright Notice in lua.h
  5. */
  6. #include <stdio.h>
  7. #include <string.h>
  8. #include "lauxlib.h"
  9. #include "ldo.h"
  10. #include "lfunc.h"
  11. #include "llex.h"
  12. #include "lmem.h"
  13. #include "lopcodes.h"
  14. #include "lparser.h"
  15. #include "lstate.h"
  16. #include "lstring.h"
  17. #include "lua.h"
  18. #include "luadebug.h"
  19. #include "lzio.h"
  20. /* for limit numbers in error messages */
  21. #define MES_LIM(x) "(limit=" x ")"
  22. /* size of a "normal" jump instruction: OpCode + 1 byte */
  23. #define JMPSIZE 2
  24. /* maximum number of local variables */
  25. #define MAXLOCALS 32
  26. #define SMAXLOCALS "32"
  27. /* maximum number of upvalues */
  28. #define MAXUPVALUES 16
  29. #define SMAXUPVALUES "16"
  30. /*
  31. ** Variable descriptor:
  32. ** must include a "exp" option because LL(1) cannot distinguish
  33. ** between variables, upvalues and function calls on first sight.
  34. ** VGLOBAL: info is constant index of global name
  35. ** VLOCAL: info is stack index
  36. ** VDOT: info is constant index of index name
  37. ** VEXP: info is pc index of "nparam" of function call (or 0 if exp is closed)
  38. */
  39. typedef enum {VGLOBAL, VLOCAL, VDOT, VINDEXED, VEXP} varkind;
  40. typedef struct {
  41. varkind k;
  42. int info;
  43. } vardesc;
  44. /*
  45. ** Expression List descriptor:
  46. ** tells number of expressions in the list,
  47. ** and, if last expression is open (a function call),
  48. ** where is its pc index of "nparam"
  49. */
  50. typedef struct {
  51. int n;
  52. int pc; /* 0 if last expression is closed */
  53. } listdesc;
  54. /*
  55. ** Constructors descriptor:
  56. ** "n" indicates number of elements, and "k" signals whether
  57. ** it is a list constructor (k = 0) or a record constructor (k = 1)
  58. ** or empty (k = ';' or '}')
  59. */
  60. typedef struct {
  61. int n;
  62. int k;
  63. } constdesc;
  64. /* state needed to generate code for a given function */
  65. typedef struct FuncState {
  66. TProtoFunc *f; /* current function header */
  67. struct FuncState *prev; /* enclosuring function */
  68. int pc; /* next position to code */
  69. int stacksize; /* number of values on activation register */
  70. int maxstacksize; /* maximum number of values on activation register */
  71. int nlocalvar; /* number of active local variables */
  72. int nupvalues; /* number of upvalues */
  73. int nvars; /* number of entries in f->locvars */
  74. int maxcode; /* size of f->code */
  75. int maxvars; /* size of f->locvars (-1 if no debug information) */
  76. int maxconsts; /* size of f->consts */
  77. int lastsetline; /* line where last SETLINE was issued */
  78. vardesc upvalues[MAXUPVALUES]; /* upvalues */
  79. TaggedString *localvar[MAXLOCALS]; /* store local variable names */
  80. } FuncState;
  81. static int assignment (LexState *ls, vardesc *v, int nvars);
  82. static int cond (LexState *ls);
  83. static int funcname (LexState *ls, vardesc *v);
  84. static int funcparams (LexState *ls, int slf);
  85. static int listfields (LexState *ls);
  86. static int localnamelist (LexState *ls);
  87. static int optional (LexState *ls, int c);
  88. static int recfields (LexState *ls);
  89. static int stat (LexState *ls);
  90. static void block (LexState *ls);
  91. static void body (LexState *ls, int needself, int line);
  92. static void chunk (LexState *ls);
  93. static void constructor (LexState *ls);
  94. static void decinit (LexState *ls, listdesc *d);
  95. static void exp0 (LexState *ls, vardesc *v);
  96. static void exp1 (LexState *ls);
  97. static void exp2 (LexState *ls, vardesc *v);
  98. static void explist (LexState *ls, listdesc *e);
  99. static void explist1 (LexState *ls, listdesc *e);
  100. static void ifpart (LexState *ls);
  101. static void parlist (LexState *ls);
  102. static void part (LexState *ls, constdesc *cd);
  103. static void recfield (LexState *ls);
  104. static void ret (LexState *ls);
  105. static void simpleexp (LexState *ls, vardesc *v);
  106. static void statlist (LexState *ls);
  107. static void var_or_func (LexState *ls, vardesc *v);
  108. static void var_or_func_tail (LexState *ls, vardesc *v);
  109. static void check_pc (FuncState *fs, int n) {
  110. if (fs->pc+n > fs->maxcode)
  111. fs->maxcode = luaM_growvector(&fs->f->code, fs->maxcode,
  112. Byte, codeEM, MAX_INT);
  113. }
  114. static void code_byte (FuncState *fs, Byte c) {
  115. check_pc(fs, 1);
  116. fs->f->code[fs->pc++] = c;
  117. }
  118. static void deltastack (LexState *ls, int delta) {
  119. FuncState *fs = ls->fs;
  120. fs->stacksize += delta;
  121. if (fs->stacksize > fs->maxstacksize) {
  122. if (fs->stacksize > 255)
  123. luaX_error(ls, "function/expression too complex");
  124. fs->maxstacksize = fs->stacksize;
  125. }
  126. }
  127. static int code_oparg_at (LexState *ls, int pc, OpCode op, int builtin,
  128. int arg, int delta) {
  129. Byte *code = ls->fs->f->code;
  130. deltastack(ls, delta);
  131. if (arg < builtin) {
  132. code[pc] = (Byte)(op+1+arg);
  133. return 1;
  134. }
  135. else if (arg <= 255) {
  136. code[pc] = (Byte)op;
  137. code[pc+1] = (Byte)arg;
  138. return 2;
  139. }
  140. else if (arg <= MAX_WORD) {
  141. code[pc] = (Byte)(op+1+builtin);
  142. code[pc+1] = (Byte)(arg>>8);
  143. code[pc+2] = (Byte)(arg&0xFF);
  144. return 3;
  145. }
  146. else luaX_error(ls, "code too long " MES_LIM("64K")
  147. " (try turning off debug mode)");
  148. return 0; /* to avoid warnings */
  149. }
  150. static int fix_opcode (LexState *ls, int pc, OpCode op, int builtin, int arg) {
  151. FuncState *fs = ls->fs;
  152. TProtoFunc *f = fs->f;
  153. if (arg < builtin) { /* close space */
  154. luaO_memdown(f->code+pc+1, f->code+pc+2, fs->pc-(pc+2));
  155. fs->pc--;
  156. }
  157. else if (arg > 255) { /* open space */
  158. check_pc(fs, 1);
  159. luaO_memup(f->code+pc+1, f->code+pc, fs->pc-pc);
  160. fs->pc++;
  161. }
  162. return code_oparg_at(ls, pc, op, builtin, arg, 0) - 2;
  163. }
  164. static void code_oparg (LexState *ls, OpCode op, int builtin, int arg,
  165. int delta) {
  166. check_pc(ls->fs, 3); /* maximum code size */
  167. ls->fs->pc += code_oparg_at(ls, ls->fs->pc, op, builtin, arg, delta);
  168. }
  169. static void code_opcode (LexState *ls, OpCode op, int delta) {
  170. deltastack(ls, delta);
  171. code_byte(ls->fs, (Byte)op);
  172. }
  173. static void code_constant (LexState *ls, int c) {
  174. code_oparg(ls, PUSHCONSTANT, 8, c, 1);
  175. }
  176. static int next_constant (FuncState *fs) {
  177. TProtoFunc *f = fs->f;
  178. if (f->nconsts >= fs->maxconsts) {
  179. fs->maxconsts = luaM_growvector(&f->consts, fs->maxconsts, TObject,
  180. constantEM, MAX_WORD);
  181. }
  182. return f->nconsts++;
  183. }
  184. static int string_constant (FuncState *fs, TaggedString *s) {
  185. TProtoFunc *f = fs->f;
  186. int c = s->constindex;
  187. if (!(c < f->nconsts &&
  188. ttype(&f->consts[c]) == LUA_T_STRING && tsvalue(&f->consts[c]) == s)) {
  189. c = next_constant(fs);
  190. ttype(&f->consts[c]) = LUA_T_STRING;
  191. tsvalue(&f->consts[c]) = s;
  192. s->constindex = c; /* hint for next time */
  193. }
  194. return c;
  195. }
  196. static void code_string (LexState *ls, TaggedString *s) {
  197. code_constant(ls, string_constant(ls->fs, s));
  198. }
  199. #define LIM 20
  200. static int real_constant (FuncState *fs, real r) {
  201. /* check whether 'r' has appeared within the last LIM entries */
  202. TObject *cnt = fs->f->consts;
  203. int c = fs->f->nconsts;
  204. int lim = c < LIM ? 0 : c-LIM;
  205. while (--c >= lim) {
  206. if (ttype(&cnt[c]) == LUA_T_NUMBER && nvalue(&cnt[c]) == r)
  207. return c;
  208. }
  209. /* not found; create a luaM_new entry */
  210. c = next_constant(fs);
  211. cnt = fs->f->consts; /* 'next_constant' may reallocate this vector */
  212. ttype(&cnt[c]) = LUA_T_NUMBER;
  213. nvalue(&cnt[c]) = r;
  214. return c;
  215. }
  216. static void code_number (LexState *ls, real f) {
  217. int i;
  218. if (f >= 0 && f <= (real)MAX_WORD && (real)(i=(int)f) == f)
  219. code_oparg(ls, PUSHNUMBER, 3, i, 1); /* f has a short integer value */
  220. else
  221. code_constant(ls, real_constant(ls->fs, f));
  222. }
  223. static void flush_record (LexState *ls, int n) {
  224. if (n > 0)
  225. code_oparg(ls, SETMAP, 1, n-1, -2*n);
  226. }
  227. static void flush_list (LexState *ls, int m, int n) {
  228. if (n == 0) return;
  229. code_oparg(ls, SETLIST, 1, m, -n);
  230. code_byte(ls->fs, (Byte)n);
  231. }
  232. static void luaI_registerlocalvar (FuncState *fs, TaggedString *varname,
  233. int line) {
  234. if (fs->maxvars != -1) { /* debug information? */
  235. TProtoFunc *f = fs->f;
  236. if (fs->nvars+2 > fs->maxvars)
  237. fs->maxvars = luaM_growvector(&f->locvars, fs->maxvars+2,
  238. LocVar, "", MAX_WORD);
  239. f->locvars[fs->nvars].varname = varname;
  240. f->locvars[fs->nvars].line = line;
  241. fs->nvars++;
  242. f->locvars[fs->nvars].line = -1; /* flag end of vector */
  243. }
  244. }
  245. static void luaI_unregisterlocalvar (FuncState *fs, int line) {
  246. luaI_registerlocalvar(fs, NULL, line);
  247. }
  248. static void store_localvar (LexState *ls, TaggedString *name, int n) {
  249. FuncState *fs = ls->fs;
  250. if (fs->nlocalvar+n < MAXLOCALS)
  251. fs->localvar[fs->nlocalvar+n] = name;
  252. else
  253. luaX_error(ls, "too many local variables " MES_LIM(SMAXLOCALS));
  254. luaI_registerlocalvar(fs, name, ls->linenumber);
  255. }
  256. static void add_localvar (LexState *ls, TaggedString *name) {
  257. store_localvar(ls, name, 0);
  258. ls->fs->nlocalvar++;
  259. }
  260. static int aux_localname (FuncState *fs, TaggedString *n) {
  261. int i;
  262. for (i=fs->nlocalvar-1; i >= 0; i--)
  263. if (n == fs->localvar[i]) return i; /* local var index */
  264. return -1; /* not found */
  265. }
  266. static void singlevar (LexState *ls, TaggedString *n, vardesc *var, int prev) {
  267. FuncState *fs = prev ? ls->fs->prev : ls->fs;
  268. int i = aux_localname(fs, n);
  269. if (i >= 0) { /* local value */
  270. var->k = VLOCAL;
  271. var->info = i;
  272. }
  273. else { /* check shadowing */
  274. FuncState *level = fs;
  275. while ((level = level->prev) != NULL)
  276. if (aux_localname(level, n) >= 0)
  277. luaX_syntaxerror(ls, "cannot access a variable in outer scope", n->str);
  278. var->k = VGLOBAL;
  279. var->info = string_constant(fs, n);
  280. }
  281. }
  282. static int indexupvalue (LexState *ls, TaggedString *n) {
  283. FuncState *fs = ls->fs;
  284. vardesc v;
  285. int i;
  286. singlevar(ls, n, &v, 1);
  287. for (i=0; i<fs->nupvalues; i++) {
  288. if (fs->upvalues[i].k == v.k && fs->upvalues[i].info == v.info)
  289. return i;
  290. }
  291. /* new one */
  292. if (++(fs->nupvalues) > MAXUPVALUES)
  293. luaX_error(ls, "too many upvalues in a single function "
  294. MES_LIM(SMAXUPVALUES));
  295. fs->upvalues[i] = v; /* i = fs->nupvalues - 1 */
  296. return i;
  297. }
  298. static void pushupvalue (LexState *ls, TaggedString *n) {
  299. int i;
  300. if (ls->fs->prev == NULL)
  301. luaX_syntaxerror(ls, "cannot access upvalue in main", n->str);
  302. if (aux_localname(ls->fs, n) >= 0)
  303. luaX_syntaxerror(ls, "cannot access an upvalue in current scope", n->str);
  304. i = indexupvalue(ls, n);
  305. code_oparg(ls, PUSHUPVALUE, 2, i, 1);
  306. }
  307. static void check_debugline (LexState *ls) {
  308. if (lua_debug && ls->linenumber != ls->fs->lastsetline) {
  309. code_oparg(ls, SETLINE, 0, ls->linenumber, 0);
  310. ls->fs->lastsetline = ls->linenumber;
  311. }
  312. }
  313. static void adjuststack (LexState *ls, int n) {
  314. if (n > 0)
  315. code_oparg(ls, POP, 2, n-1, -n);
  316. else if (n < 0)
  317. code_oparg(ls, PUSHNIL, 1, (-n)-1, -n);
  318. }
  319. static void close_exp (LexState *ls, int pc, int nresults) {
  320. if (pc > 0) { /* expression is an open function call */
  321. Byte *code = ls->fs->f->code;
  322. Byte nparams = code[pc]; /* save nparams */
  323. pc += fix_opcode(ls, pc-2, CALLFUNC, 2, nresults);
  324. code[pc] = nparams; /* restore nparams */
  325. if (nresults != MULT_RET)
  326. deltastack(ls, nresults); /* "push" results */
  327. deltastack(ls, -(nparams+1)); /* "pop" params and function */
  328. }
  329. }
  330. static void adjust_mult_assign (LexState *ls, int nvars, listdesc *d) {
  331. int diff = d->n - nvars;
  332. if (d->pc == 0) { /* list is closed */
  333. /* push or pop eventual difference between list lengths */
  334. adjuststack(ls, diff);
  335. }
  336. else { /* must correct function call */
  337. diff--; /* do not count function call itself */
  338. if (diff < 0) { /* more variables than values */
  339. /* function call must provide extra values */
  340. close_exp(ls, d->pc, -diff);
  341. }
  342. else { /* more values than variables */
  343. close_exp(ls, d->pc, 0); /* call should provide no value */
  344. adjuststack(ls, diff); /* pop eventual extra values */
  345. }
  346. }
  347. }
  348. static void code_args (LexState *ls, int nparams, int dots) {
  349. FuncState *fs = ls->fs;
  350. fs->nlocalvar += nparams; /* "self" may already be there */
  351. nparams = fs->nlocalvar;
  352. if (!dots) {
  353. fs->f->code[1] = (Byte)nparams; /* fill-in arg information */
  354. deltastack(ls, nparams);
  355. }
  356. else {
  357. fs->f->code[1] = (Byte)(nparams+ZEROVARARG);
  358. deltastack(ls, nparams+1);
  359. add_localvar(ls, luaS_new("arg"));
  360. }
  361. }
  362. static void lua_pushvar (LexState *ls, vardesc *var) {
  363. switch (var->k) {
  364. case VLOCAL:
  365. code_oparg(ls, PUSHLOCAL, 8, var->info, 1);
  366. break;
  367. case VGLOBAL:
  368. code_oparg(ls, GETGLOBAL, 8, var->info, 1);
  369. break;
  370. case VDOT:
  371. code_oparg(ls, GETDOTTED, 8, var->info, 0);
  372. break;
  373. case VINDEXED:
  374. code_opcode(ls, GETTABLE, -1);
  375. break;
  376. case VEXP:
  377. close_exp(ls, var->info, 1); /* function must return 1 value */
  378. break;
  379. }
  380. var->k = VEXP;
  381. var->info = 0; /* now this is a closed expression */
  382. }
  383. static void storevar (LexState *ls, vardesc *var) {
  384. switch (var->k) {
  385. case VLOCAL:
  386. code_oparg(ls, SETLOCAL, 8, var->info, -1);
  387. break;
  388. case VGLOBAL:
  389. code_oparg(ls, SETGLOBAL, 8, var->info, -1);
  390. break;
  391. case VINDEXED:
  392. code_opcode(ls, SETTABLE0, -3);
  393. break;
  394. default:
  395. LUA_INTERNALERROR("invalid var kind to store");
  396. }
  397. }
  398. static int fix_jump (LexState *ls, int pc, OpCode op, int n) {
  399. /* jump is relative to position following jump instruction */
  400. return fix_opcode(ls, pc, op, 0, n-(pc+JMPSIZE));
  401. }
  402. static void fix_upjmp (LexState *ls, OpCode op, int pos) {
  403. int delta = ls->fs->pc+JMPSIZE - pos; /* jump is relative */
  404. if (delta > 255) delta++;
  405. code_oparg(ls, op, 0, delta, 0);
  406. }
  407. static void codeIf (LexState *ls, int thenAdd, int elseAdd) {
  408. FuncState *fs = ls->fs;
  409. int elseinit = elseAdd+JMPSIZE;
  410. if (fs->pc == elseinit) { /* no else part */
  411. fs->pc -= JMPSIZE;
  412. elseinit = fs->pc;
  413. }
  414. else
  415. elseinit += fix_jump(ls, elseAdd, JMP, fs->pc);
  416. fix_jump(ls, thenAdd, IFFJMP, elseinit);
  417. }
  418. static void func_onstack (LexState *ls, FuncState *func) {
  419. FuncState *fs = ls->fs;
  420. int i;
  421. int c = next_constant(fs);
  422. ttype(&fs->f->consts[c]) = LUA_T_PROTO;
  423. fs->f->consts[c].value.tf = func->f;
  424. if (func->nupvalues == 0)
  425. code_constant(ls, c);
  426. else {
  427. for (i=0; i<func->nupvalues; i++)
  428. lua_pushvar(ls, &func->upvalues[i]);
  429. code_oparg(ls, CLOSURE, 0, c, -func->nupvalues+1);
  430. code_byte(fs, (Byte)func->nupvalues);
  431. }
  432. }
  433. static void init_state (LexState *ls, FuncState *fs, TaggedString *filename) {
  434. TProtoFunc *f = luaF_newproto();
  435. fs->prev = ls->fs; /* linked list of funcstates */
  436. ls->fs = fs;
  437. fs->stacksize = 0;
  438. fs->maxstacksize = 0;
  439. fs->nlocalvar = 0;
  440. fs->nupvalues = 0;
  441. fs->lastsetline = 0;
  442. fs->f = f;
  443. f->fileName = filename;
  444. fs->pc = 0;
  445. fs->maxcode = 0;
  446. f->code = NULL;
  447. fs->maxconsts = 0;
  448. if (lua_debug)
  449. fs->nvars = fs->maxvars = 0;
  450. else
  451. fs->maxvars = -1; /* flag no debug information */
  452. code_byte(fs, 0); /* to be filled with stacksize */
  453. code_byte(fs, 0); /* to be filled with arg information */
  454. /* push function (to avoid GC) */
  455. tfvalue(L->stack.top) = f; ttype(L->stack.top) = LUA_T_PROTO;
  456. incr_top;
  457. }
  458. static void close_func (LexState *ls) {
  459. FuncState *fs = ls->fs;
  460. TProtoFunc *f = fs->f;
  461. code_opcode(ls, ENDCODE, 0);
  462. f->code[0] = (Byte)fs->maxstacksize;
  463. f->code = luaM_reallocvector(f->code, fs->pc, Byte);
  464. f->consts = luaM_reallocvector(f->consts, f->nconsts, TObject);
  465. if (fs->maxvars != -1) { /* debug information? */
  466. luaI_registerlocalvar(fs, NULL, -1); /* flag end of vector */
  467. f->locvars = luaM_reallocvector(f->locvars, fs->nvars, LocVar);
  468. }
  469. ls->fs = fs->prev;
  470. L->stack.top--; /* pop function */
  471. }
  472. static int expfollow [] = {ELSE, ELSEIF, THEN, IF, WHILE, REPEAT, DO, NAME,
  473. LOCAL, FUNCTION, END, UNTIL, RETURN, ')', ']', '}', ';', EOS, ',', 0};
  474. static int is_in (int tok, int *toks) {
  475. int *t = toks;
  476. while (*t) {
  477. if (*t == tok)
  478. return t-toks;
  479. t++;
  480. }
  481. return -1;
  482. }
  483. static void next (LexState *ls) {
  484. ls->token = luaX_lex(ls);
  485. }
  486. static void error_expected (LexState *ls, int token) {
  487. char buff[100], t[TOKEN_LEN];
  488. luaX_token2str(token, t);
  489. sprintf(buff, "`%s' expected", t);
  490. luaX_error(ls, buff);
  491. }
  492. static void error_unexpected (LexState *ls) {
  493. luaX_error(ls, "unexpected token");
  494. }
  495. static void error_unmatched (LexState *ls, int what, int who, int where) {
  496. if (where == ls->linenumber)
  497. error_expected(ls, what);
  498. else {
  499. char buff[100];
  500. char t_what[TOKEN_LEN], t_who[TOKEN_LEN];
  501. luaX_token2str(what, t_what);
  502. luaX_token2str(who, t_who);
  503. sprintf(buff, "`%s' expected (to close `%s' at line %d)",
  504. t_what, t_who, where);
  505. luaX_error(ls, buff);
  506. }
  507. }
  508. static void check (LexState *ls, int c) {
  509. if (ls->token != c)
  510. error_expected(ls, c);
  511. next(ls);
  512. }
  513. static void check_match (LexState *ls, int what, int who, int where) {
  514. if (ls->token != what)
  515. error_unmatched(ls, what, who, where);
  516. check_debugline(ls); /* to 'mark' the 'what' */
  517. next(ls);
  518. }
  519. static int checkname (LexState *ls) {
  520. int sc;
  521. if (ls->token != NAME)
  522. luaX_error(ls, "`NAME' expected");
  523. sc = string_constant(ls->fs, ls->seminfo.ts);
  524. next(ls);
  525. return sc;
  526. }
  527. static TaggedString *str_checkname (LexState *ls) {
  528. /* call "checkname" to put string at constant table (to avoid GC) */
  529. int i = checkname(ls);
  530. return tsvalue(&ls->fs->f->consts[i]);
  531. }
  532. static int optional (LexState *ls, int c) {
  533. if (ls->token == c) {
  534. next(ls);
  535. return 1;
  536. }
  537. else return 0;
  538. }
  539. TProtoFunc *luaY_parser (ZIO *z) {
  540. struct LexState lexstate;
  541. struct FuncState funcstate;
  542. luaX_setinput(&lexstate, z);
  543. init_state(&lexstate, &funcstate, luaS_new(zname(z)));
  544. next(&lexstate); /* read first token */
  545. chunk(&lexstate);
  546. if (lexstate.token != EOS)
  547. luaX_error(&lexstate, "<eof> expected");
  548. close_func(&lexstate);
  549. return funcstate.f;
  550. }
  551. /*============================================================*/
  552. /* GRAMAR RULES */
  553. /*============================================================*/
  554. static void chunk (LexState *ls) {
  555. /* chunk -> statlist ret */
  556. statlist(ls);
  557. ret(ls);
  558. }
  559. static void statlist (LexState *ls) {
  560. /* statlist -> { stat [;] } */
  561. while (stat(ls)) {
  562. LUA_ASSERT(ls->fs->stacksize == ls->fs->nlocalvar,
  563. "stack size != # local vars");
  564. optional(ls, ';');
  565. }
  566. }
  567. static int stat (LexState *ls) {
  568. int line = ls->linenumber; /* may be needed for error messages */
  569. FuncState *fs = ls->fs;
  570. switch (ls->token) {
  571. case IF: { /* stat -> IF ifpart END */
  572. next(ls);
  573. ifpart(ls);
  574. check_match(ls, END, IF, line);
  575. return 1;
  576. }
  577. case WHILE: { /* stat -> WHILE cond DO block END */
  578. TProtoFunc *f = fs->f;
  579. int while_init = fs->pc;
  580. int cond_end, cond_size;
  581. next(ls);
  582. cond_end = cond(ls);
  583. check(ls, DO);
  584. block(ls);
  585. check_match(ls, END, WHILE, line);
  586. cond_size = cond_end-while_init;
  587. check_pc(fs, cond_size);
  588. memcpy(f->code+fs->pc, f->code+while_init, cond_size);
  589. luaO_memdown(f->code+while_init, f->code+cond_end, fs->pc-while_init);
  590. while_init += JMPSIZE + fix_jump(ls, while_init, JMP, fs->pc-cond_size);
  591. fix_upjmp(ls, IFTUPJMP, while_init);
  592. return 1;
  593. }
  594. case DO: { /* stat -> DO block END */
  595. next(ls);
  596. block(ls);
  597. check_match(ls, END, DO, line);
  598. return 1;
  599. }
  600. case REPEAT: { /* stat -> REPEAT block UNTIL exp1 */
  601. int repeat_init = fs->pc;
  602. next(ls);
  603. block(ls);
  604. check_match(ls, UNTIL, REPEAT, line);
  605. exp1(ls);
  606. fix_upjmp(ls, IFFUPJMP, repeat_init);
  607. deltastack(ls, -1); /* pops condition */
  608. return 1;
  609. }
  610. case FUNCTION: { /* stat -> FUNCTION funcname body */
  611. int needself;
  612. vardesc v;
  613. if (ls->fs->prev) /* inside other function? */
  614. return 0;
  615. check_debugline(ls);
  616. next(ls);
  617. needself = funcname(ls, &v);
  618. body(ls, needself, line);
  619. storevar(ls, &v);
  620. return 1;
  621. }
  622. case LOCAL: { /* stat -> LOCAL localnamelist decinit */
  623. listdesc d;
  624. int nvars;
  625. check_debugline(ls);
  626. next(ls);
  627. nvars = localnamelist(ls);
  628. decinit(ls, &d);
  629. ls->fs->nlocalvar += nvars;
  630. adjust_mult_assign(ls, nvars, &d);
  631. return 1;
  632. }
  633. case NAME: case '%': { /* stat -> func | ['%'] NAME assignment */
  634. vardesc v;
  635. check_debugline(ls);
  636. var_or_func(ls, &v);
  637. if (v.k == VEXP) { /* stat -> func */
  638. if (v.info == 0) /* is just an upper value? */
  639. luaX_error(ls, "syntax error");
  640. close_exp(ls, v.info, 0);
  641. }
  642. else {
  643. int left = assignment(ls, &v, 1); /* stat -> ['%'] NAME assignment */
  644. adjuststack(ls, left); /* remove eventual 'garbage' left on stack */
  645. }
  646. return 1;
  647. }
  648. case RETURN: case ';': case ELSE: case ELSEIF:
  649. case END: case UNTIL: case EOS: /* 'stat' follow */
  650. return 0;
  651. default:
  652. error_unexpected(ls);
  653. return 0; /* to avoid warnings */
  654. }
  655. }
  656. static int SaveWord (LexState *ls) {
  657. int res = ls->fs->pc;
  658. check_pc(ls->fs, JMPSIZE);
  659. ls->fs->pc += JMPSIZE; /* open space */
  660. return res;
  661. }
  662. static int SaveWordPop (LexState *ls) {
  663. deltastack(ls, -1); /* pop condition */
  664. return SaveWord(ls);
  665. }
  666. static int cond (LexState *ls) {
  667. /* cond -> exp1 */
  668. exp1(ls);
  669. return SaveWordPop(ls);
  670. }
  671. static void block (LexState *ls) {
  672. /* block -> chunk */
  673. FuncState *fs = ls->fs;
  674. int nlocalvar = fs->nlocalvar;
  675. chunk(ls);
  676. adjuststack(ls, fs->nlocalvar - nlocalvar);
  677. for (; fs->nlocalvar > nlocalvar; fs->nlocalvar--)
  678. luaI_unregisterlocalvar(fs, ls->linenumber);
  679. }
  680. static int funcname (LexState *ls, vardesc *v) {
  681. /* funcname -> NAME [':' NAME | '.' NAME] */
  682. int needself = 0;
  683. singlevar(ls, str_checkname(ls), v, 0);
  684. if (ls->token == ':' || ls->token == '.') {
  685. needself = (ls->token == ':');
  686. next(ls);
  687. lua_pushvar(ls, v);
  688. code_constant(ls, checkname(ls));
  689. v->k = VINDEXED;
  690. }
  691. return needself;
  692. }
  693. static void body (LexState *ls, int needself, int line) {
  694. /* body -> '(' parlist ')' chunk END */
  695. FuncState newfs;
  696. init_state(ls, &newfs, ls->fs->f->fileName);
  697. newfs.f->lineDefined = line;
  698. check(ls, '(');
  699. if (needself)
  700. add_localvar(ls, luaS_new("self"));
  701. parlist(ls);
  702. check(ls, ')');
  703. chunk(ls);
  704. check_match(ls, END, FUNCTION, line);
  705. close_func(ls);
  706. func_onstack(ls, &newfs);
  707. }
  708. static void ifpart (LexState *ls) {
  709. /* ifpart -> cond THEN block [ELSE block | ELSEIF ifpart] */
  710. int c = cond(ls);
  711. int e;
  712. check(ls, THEN);
  713. block(ls);
  714. e = SaveWord(ls);
  715. switch (ls->token) {
  716. case ELSE:
  717. next(ls);
  718. block(ls);
  719. break;
  720. case ELSEIF:
  721. next(ls);
  722. ifpart(ls);
  723. break;
  724. }
  725. codeIf(ls, c, e);
  726. }
  727. static void ret (LexState *ls) {
  728. /* ret -> [RETURN explist sc] */
  729. if (ls->token == RETURN) {
  730. listdesc e;
  731. check_debugline(ls);
  732. next(ls);
  733. explist(ls, &e);
  734. close_exp(ls, e.pc, MULT_RET);
  735. code_oparg(ls, RETCODE, 0, ls->fs->nlocalvar, 0);
  736. ls->fs->stacksize = ls->fs->nlocalvar; /* removes all temp values */
  737. optional(ls, ';');
  738. }
  739. }
  740. /*
  741. ** For parsing expressions, we use a classic stack with priorities.
  742. ** Each binary operator is represented by its index in "binop" + FIRSTBIN
  743. ** (EQ=2, NE=3, ... '^'=13). The unary NOT is 0 and UNMINUS is 1.
  744. */
  745. /* code of first binary operator */
  746. #define FIRSTBIN 2
  747. /* code for power operator (last operator)
  748. ** '^' needs special treatment because it is right associative
  749. */
  750. #define POW 13
  751. static int binop [] = {EQ, NE, '>', '<', LE, GE, CONC,
  752. '+', '-', '*', '/', '^', 0};
  753. static int priority [POW+1] = {5, 5, 1, 1, 1, 1, 1, 1, 2, 3, 3, 4, 4, 6};
  754. static OpCode opcodes [POW+1] = {NOTOP, MINUSOP, EQOP, NEQOP, GTOP, LTOP,
  755. LEOP, GEOP, CONCOP, ADDOP, SUBOP, MULTOP, DIVOP, POWOP};
  756. #define MAXOPS 20
  757. typedef struct {
  758. int ops[MAXOPS];
  759. int top;
  760. } stack_op;
  761. static void exp1 (LexState *ls) {
  762. vardesc v;
  763. exp0(ls, &v);
  764. lua_pushvar(ls, &v);
  765. if (is_in(ls->token, expfollow) < 0)
  766. luaX_error(ls, "ill formed expression");
  767. }
  768. static void exp0 (LexState *ls, vardesc *v) {
  769. exp2(ls, v);
  770. while (ls->token == AND || ls->token == OR) {
  771. int is_and = (ls->token == AND);
  772. int pc;
  773. lua_pushvar(ls, v);
  774. next(ls);
  775. pc = SaveWordPop(ls);
  776. exp2(ls, v);
  777. lua_pushvar(ls, v);
  778. fix_jump(ls, pc, (is_and?ONFJMP:ONTJMP), ls->fs->pc);
  779. }
  780. }
  781. static void push (LexState *ls, stack_op *s, int op) {
  782. if (s->top == MAXOPS)
  783. luaX_error(ls, "expression too complex");
  784. s->ops[s->top++] = op;
  785. }
  786. static void prefix (LexState *ls, stack_op *s) {
  787. while (ls->token == NOT || ls->token == '-') {
  788. push(ls, s, ls->token==NOT?0:1);
  789. next(ls);
  790. }
  791. }
  792. static void pop_to (LexState *ls, stack_op *s, int prio) {
  793. int op;
  794. while (s->top > 0 && priority[(op=s->ops[s->top-1])] >= prio) {
  795. code_opcode(ls, opcodes[op], op<FIRSTBIN?0:-1);
  796. s->top--;
  797. }
  798. }
  799. static void exp2 (LexState *ls, vardesc *v) {
  800. stack_op s;
  801. int op;
  802. s.top = 0;
  803. prefix(ls, &s);
  804. simpleexp(ls, v);
  805. while ((op = is_in(ls->token, binop)) >= 0) {
  806. op += FIRSTBIN;
  807. lua_pushvar(ls, v);
  808. /* '^' is right associative, so must 'simulate' a higher priority */
  809. pop_to(ls, &s, (op == POW)?priority[op]+1:priority[op]);
  810. push(ls, &s, op);
  811. next(ls);
  812. prefix(ls, &s);
  813. simpleexp(ls, v);
  814. lua_pushvar(ls, v);
  815. }
  816. if (s.top > 0) {
  817. lua_pushvar(ls, v);
  818. pop_to(ls, &s, 0);
  819. }
  820. }
  821. static void simpleexp (LexState *ls, vardesc *v) {
  822. check_debugline(ls);
  823. switch (ls->token) {
  824. case '(': /* simpleexp -> '(' exp0 ')' */
  825. next(ls);
  826. exp0(ls, v);
  827. check(ls, ')');
  828. break;
  829. case NUMBER: /* simpleexp -> NUMBER */
  830. code_number(ls, ls->seminfo.r);
  831. next(ls);
  832. v->k = VEXP; v->info = 0;
  833. break;
  834. case STRING: /* simpleexp -> STRING */
  835. code_string(ls, ls->seminfo.ts); /* must use before "next" */
  836. next(ls);
  837. v->k = VEXP; v->info = 0;
  838. break;
  839. case NIL: /* simpleexp -> NIL */
  840. adjuststack(ls, -1);
  841. next(ls);
  842. v->k = VEXP; v->info = 0;
  843. break;
  844. case '{': /* simpleexp -> constructor */
  845. constructor(ls);
  846. v->k = VEXP; v->info = 0;
  847. break;
  848. case FUNCTION: { /* simpleexp -> FUNCTION body */
  849. int line = ls->linenumber;
  850. next(ls);
  851. body(ls, 0, line);
  852. v->k = VEXP; v->info = 0;
  853. break;
  854. }
  855. case NAME: case '%':
  856. var_or_func(ls, v);
  857. break;
  858. default:
  859. luaX_error(ls, "<expression> expected");
  860. break;
  861. }
  862. }
  863. static void var_or_func (LexState *ls, vardesc *v) {
  864. /* var_or_func -> ['%'] NAME var_or_func_tail */
  865. if (optional(ls, '%')) { /* upvalue? */
  866. pushupvalue(ls, str_checkname(ls));
  867. v->k = VEXP;
  868. v->info = 0; /* closed expression */
  869. }
  870. else /* variable name */
  871. singlevar(ls, str_checkname(ls), v, 0);
  872. var_or_func_tail(ls, v);
  873. }
  874. static void var_or_func_tail (LexState *ls, vardesc *v) {
  875. for (;;) {
  876. switch (ls->token) {
  877. case '.': /* var_or_func_tail -> '.' NAME */
  878. next(ls);
  879. lua_pushvar(ls, v); /* 'v' must be on stack */
  880. v->k = VDOT;
  881. v->info = checkname(ls);
  882. break;
  883. case '[': /* var_or_func_tail -> '[' exp1 ']' */
  884. next(ls);
  885. lua_pushvar(ls, v); /* 'v' must be on stack */
  886. exp1(ls);
  887. check(ls, ']');
  888. v->k = VINDEXED;
  889. break;
  890. case ':': /* var_or_func_tail -> ':' NAME funcparams */
  891. next(ls);
  892. lua_pushvar(ls, v); /* 'v' must be on stack */
  893. code_oparg(ls, PUSHSELF, 8, checkname(ls), 1);
  894. v->k = VEXP;
  895. v->info = funcparams(ls, 1);
  896. break;
  897. case '(': case STRING: case '{': /* var_or_func_tail -> funcparams */
  898. lua_pushvar(ls, v); /* 'v' must be on stack */
  899. v->k = VEXP;
  900. v->info = funcparams(ls, 0);
  901. break;
  902. default: return; /* should be follow... */
  903. }
  904. }
  905. }
  906. static int funcparams (LexState *ls, int slf) {
  907. FuncState *fs = ls->fs;
  908. int nparams = 1; /* default value */
  909. switch (ls->token) {
  910. case '(': { /* funcparams -> '(' explist ')' */
  911. listdesc e;
  912. next(ls);
  913. explist(ls, &e);
  914. check(ls, ')');
  915. close_exp(ls, e.pc, 1);
  916. nparams = e.n;
  917. break;
  918. }
  919. case '{': /* funcparams -> constructor */
  920. constructor(ls);
  921. break;
  922. case STRING: /* funcparams -> STRING */
  923. code_string(ls, ls->seminfo.ts); /* must use before "next" */
  924. next(ls);
  925. break;
  926. default:
  927. luaX_error(ls, "function arguments expected");
  928. break;
  929. }
  930. code_byte(fs, 0); /* save space for opcode */
  931. code_byte(fs, 0); /* and nresult */
  932. code_byte(fs, (Byte)(nparams+slf));
  933. return fs->pc-1;
  934. }
  935. static void explist (LexState *ls, listdesc *d) {
  936. switch (ls->token) {
  937. case ELSE: case ELSEIF: case END: case UNTIL:
  938. case EOS: case ';': case ')':
  939. d->pc = 0;
  940. d->n = 0;
  941. break;
  942. default:
  943. explist1(ls, d);
  944. }
  945. }
  946. static void explist1 (LexState *ls, listdesc *d) {
  947. vardesc v;
  948. exp0(ls, &v);
  949. d->n = 1;
  950. while (ls->token == ',') {
  951. d->n++;
  952. lua_pushvar(ls, &v);
  953. next(ls);
  954. exp0(ls, &v);
  955. }
  956. if (v.k == VEXP)
  957. d->pc = v.info;
  958. else {
  959. lua_pushvar(ls, &v);
  960. d->pc = 0;
  961. }
  962. }
  963. static void parlist (LexState *ls) {
  964. int nparams = 0;
  965. int dots = 0;
  966. switch (ls->token) {
  967. case DOTS: /* parlist -> DOTS */
  968. next(ls);
  969. dots = 1;
  970. break;
  971. case NAME: /* parlist, tailparlist -> NAME [',' tailparlist] */
  972. init:
  973. store_localvar(ls, str_checkname(ls), nparams++);
  974. if (ls->token == ',') {
  975. next(ls);
  976. switch (ls->token) {
  977. case DOTS: /* tailparlist -> DOTS */
  978. next(ls);
  979. dots = 1;
  980. break;
  981. case NAME: /* tailparlist -> NAME [',' tailparlist] */
  982. goto init;
  983. default: luaX_error(ls, "NAME or `...' expected");
  984. }
  985. }
  986. break;
  987. case ')': break; /* parlist -> empty */
  988. default: luaX_error(ls, "NAME or `...' expected");
  989. }
  990. code_args(ls, nparams, dots);
  991. }
  992. static int localnamelist (LexState *ls) {
  993. /* localnamelist -> NAME {',' NAME} */
  994. int i = 1;
  995. store_localvar(ls, str_checkname(ls), 0);
  996. while (ls->token == ',') {
  997. next(ls);
  998. store_localvar(ls, str_checkname(ls), i++);
  999. }
  1000. return i;
  1001. }
  1002. static void decinit (LexState *ls, listdesc *d) {
  1003. /* decinit -> ['=' explist1] */
  1004. if (ls->token == '=') {
  1005. next(ls);
  1006. explist1(ls, d);
  1007. }
  1008. else {
  1009. d->n = 0;
  1010. d->pc = 0;
  1011. }
  1012. }
  1013. static int assignment (LexState *ls, vardesc *v, int nvars) {
  1014. int left = 0;
  1015. /* dotted variables <a.x> must be stored like regular indexed vars <a["x"]> */
  1016. if (v->k == VDOT) {
  1017. code_constant(ls, v->info);
  1018. v->k = VINDEXED;
  1019. }
  1020. if (ls->token == ',') { /* assignment -> ',' NAME assignment */
  1021. vardesc nv;
  1022. next(ls);
  1023. var_or_func(ls, &nv);
  1024. if (nv.k == VEXP)
  1025. luaX_error(ls, "syntax error");
  1026. left = assignment(ls, &nv, nvars+1);
  1027. }
  1028. else { /* assignment -> '=' explist1 */
  1029. listdesc d;
  1030. check(ls, '=');
  1031. explist1(ls, &d);
  1032. adjust_mult_assign(ls, nvars, &d);
  1033. }
  1034. if (v->k != VINDEXED || left+(nvars-1) == 0) {
  1035. /* global/local var or indexed var without values in between */
  1036. storevar(ls, v);
  1037. }
  1038. else { /* indexed var with values in between*/
  1039. code_oparg(ls, SETTABLE, 0, left+(nvars-1), -1);
  1040. left += 2; /* table/index are not popped, because they aren't on top */
  1041. }
  1042. return left;
  1043. }
  1044. static void constructor (LexState *ls) {
  1045. /* constructor -> '{' part [';' part] '}' */
  1046. int line = ls->linenumber;
  1047. int pc = SaveWord(ls);
  1048. int nelems;
  1049. constdesc cd;
  1050. deltastack(ls, 1);
  1051. check(ls, '{');
  1052. part(ls, &cd);
  1053. nelems = cd.n;
  1054. if (ls->token == ';') {
  1055. constdesc other_cd;
  1056. next(ls);
  1057. part(ls, &other_cd);
  1058. if (cd.k == other_cd.k) /* repeated parts? */
  1059. luaX_error(ls, "invalid constructor syntax");
  1060. nelems += other_cd.n;
  1061. }
  1062. check_match(ls, '}', '{', line);
  1063. fix_opcode(ls, pc, CREATEARRAY, 2, nelems);
  1064. }
  1065. static void part (LexState *ls, constdesc *cd) {
  1066. switch (ls->token) {
  1067. case ';': case '}': /* part -> empty */
  1068. cd->n = 0;
  1069. cd->k = ls->token;
  1070. return;
  1071. case NAME: {
  1072. vardesc v;
  1073. exp0(ls, &v);
  1074. if (ls->token == '=') {
  1075. switch (v.k) {
  1076. case VGLOBAL:
  1077. code_constant(ls, v.info);
  1078. break;
  1079. case VLOCAL:
  1080. code_string(ls, ls->fs->localvar[v.info]);
  1081. break;
  1082. default:
  1083. error_unexpected(ls);
  1084. }
  1085. next(ls);
  1086. exp1(ls);
  1087. cd->n = recfields(ls);
  1088. cd->k = 1; /* record */
  1089. }
  1090. else {
  1091. lua_pushvar(ls, &v);
  1092. cd->n = listfields(ls);
  1093. cd->k = 0; /* list */
  1094. }
  1095. break;
  1096. }
  1097. case '[': /* part -> recfield recfields */
  1098. recfield(ls);
  1099. cd->n = recfields(ls);
  1100. cd->k = 1; /* record */
  1101. break;
  1102. default: /* part -> exp1 listfields */
  1103. exp1(ls);
  1104. cd->n = listfields(ls);
  1105. cd->k = 0; /* list */
  1106. break;
  1107. }
  1108. }
  1109. static int recfields (LexState *ls) {
  1110. /* recfields -> { ',' recfield } [','] */
  1111. int n = 1; /* one has been read before */
  1112. while (ls->token == ',') {
  1113. next(ls);
  1114. if (ls->token == ';' || ls->token == '}')
  1115. break;
  1116. recfield(ls);
  1117. n++;
  1118. if (n%RFIELDS_PER_FLUSH == 0)
  1119. flush_record(ls, RFIELDS_PER_FLUSH);
  1120. }
  1121. flush_record(ls, n%RFIELDS_PER_FLUSH);
  1122. return n;
  1123. }
  1124. static int listfields (LexState *ls) {
  1125. /* listfields -> { ',' exp1 } [','] */
  1126. int n = 1; /* one has been read before */
  1127. while (ls->token == ',') {
  1128. next(ls);
  1129. if (ls->token == ';' || ls->token == '}')
  1130. break;
  1131. exp1(ls);
  1132. n++;
  1133. if (n%LFIELDS_PER_FLUSH == 0)
  1134. flush_list(ls, n/LFIELDS_PER_FLUSH - 1, LFIELDS_PER_FLUSH);
  1135. }
  1136. flush_list(ls, n/LFIELDS_PER_FLUSH, n%LFIELDS_PER_FLUSH);
  1137. return n;
  1138. }
  1139. static void recfield (LexState *ls) {
  1140. /* recfield -> (NAME | '['exp1']') = exp1 */
  1141. switch (ls->token) {
  1142. case NAME:
  1143. code_constant(ls, checkname(ls));
  1144. break;
  1145. case '[':
  1146. next(ls);
  1147. exp1(ls);
  1148. check(ls, ']');
  1149. break;
  1150. default: luaX_error(ls, "NAME or `[' expected");
  1151. }
  1152. check(ls, '=');
  1153. exp1(ls);
  1154. }