lparser.c 36 KB

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  1. /*
  2. ** $Id: lparser.c,v 2.43 2006/06/22 16:12:59 roberto Exp roberto $
  3. ** Lua Parser
  4. ** See Copyright Notice in lua.h
  5. */
  6. #include <string.h>
  7. #define lparser_c
  8. #define LUA_CORE
  9. #include "lua.h"
  10. #include "lcode.h"
  11. #include "ldebug.h"
  12. #include "ldo.h"
  13. #include "lfunc.h"
  14. #include "llex.h"
  15. #include "lmem.h"
  16. #include "lobject.h"
  17. #include "lopcodes.h"
  18. #include "lparser.h"
  19. #include "lstate.h"
  20. #include "lstring.h"
  21. #include "ltable.h"
  22. #define hasmultret(k) ((k) == VCALL || (k) == VVARARG)
  23. #define getlocvar(fs, i) ((fs)->f->locvars[(fs)->actvar[i]])
  24. #define luaY_checklimit(fs,v,l,m) if ((v)>(l)) errorlimit(fs,l,m)
  25. /*
  26. ** nodes for block list (list of active blocks)
  27. */
  28. typedef struct BlockCnt {
  29. struct BlockCnt *previous; /* chain */
  30. int breaklist; /* list of jumps out of this loop */
  31. lu_byte nactvar; /* # active locals outside the breakable structure */
  32. lu_byte upval; /* true if some variable in the block is an upvalue */
  33. lu_byte isbreakable; /* true if `block' is a loop */
  34. } BlockCnt;
  35. /*
  36. ** prototypes for recursive non-terminal functions
  37. */
  38. static void chunk (LexState *ls);
  39. static void expr (LexState *ls, expdesc *v);
  40. static void anchor_token (LexState *ls) {
  41. if (ls->t.token == TK_NAME || ls->t.token == TK_STRING) {
  42. TString *ts = ls->t.seminfo.ts;
  43. luaX_newstring(ls, getstr(ts), ts->tsv.len);
  44. }
  45. }
  46. static void error_expected (LexState *ls, int token) {
  47. luaX_syntaxerror(ls,
  48. luaO_pushfstring(ls->L, LUA_QS " expected", luaX_token2str(ls, token)));
  49. }
  50. static void errorlimit (FuncState *fs, int limit, const char *what) {
  51. const char *msg = (fs->f->linedefined == 0) ?
  52. luaO_pushfstring(fs->L, "main function has more than %d %s", limit, what) :
  53. luaO_pushfstring(fs->L, "function at line %d has more than %d %s",
  54. fs->f->linedefined, limit, what);
  55. luaX_lexerror(fs->ls, msg, 0);
  56. }
  57. static int testnext (LexState *ls, int c) {
  58. if (ls->t.token == c) {
  59. luaX_next(ls);
  60. return 1;
  61. }
  62. else return 0;
  63. }
  64. static void check (LexState *ls, int c) {
  65. if (ls->t.token != c)
  66. error_expected(ls, c);
  67. }
  68. static void checknext (LexState *ls, int c) {
  69. check(ls, c);
  70. luaX_next(ls);
  71. }
  72. #define check_condition(ls,c,msg) { if (!(c)) luaX_syntaxerror(ls, msg); }
  73. static void check_match (LexState *ls, int what, int who, int where) {
  74. if (!testnext(ls, what)) {
  75. if (where == ls->linenumber)
  76. error_expected(ls, what);
  77. else {
  78. luaX_syntaxerror(ls, luaO_pushfstring(ls->L,
  79. LUA_QS " expected (to close " LUA_QS " at line %d)",
  80. luaX_token2str(ls, what), luaX_token2str(ls, who), where));
  81. }
  82. }
  83. }
  84. static TString *str_checkname (LexState *ls) {
  85. TString *ts;
  86. check(ls, TK_NAME);
  87. ts = ls->t.seminfo.ts;
  88. luaX_next(ls);
  89. return ts;
  90. }
  91. static void init_exp (expdesc *e, expkind k, int i) {
  92. e->f = e->t = NO_JUMP;
  93. e->k = k;
  94. e->u.s.info = i;
  95. }
  96. static void codestring (LexState *ls, expdesc *e, TString *s) {
  97. init_exp(e, VK, luaK_stringK(ls->fs, s));
  98. }
  99. static void checkname(LexState *ls, expdesc *e) {
  100. codestring(ls, e, str_checkname(ls));
  101. }
  102. static int registerlocalvar (LexState *ls, TString *varname) {
  103. FuncState *fs = ls->fs;
  104. Proto *f = fs->f;
  105. int oldsize = f->sizelocvars;
  106. luaM_growvector(ls->L, f->locvars, fs->nlocvars, f->sizelocvars,
  107. LocVar, SHRT_MAX, "too many local variables");
  108. while (oldsize < f->sizelocvars) f->locvars[oldsize++].varname = NULL;
  109. f->locvars[fs->nlocvars].varname = varname;
  110. luaC_objbarrier(ls->L, f, varname);
  111. return fs->nlocvars++;
  112. }
  113. #define new_localvarliteral(ls,v,n) \
  114. new_localvar(ls, luaX_newstring(ls, "" v, (sizeof(v)/sizeof(char))-1), n)
  115. static void new_localvar (LexState *ls, TString *name, int n) {
  116. FuncState *fs = ls->fs;
  117. luaY_checklimit(fs, fs->nactvar+n+1, LUAI_MAXVARS, "local variables");
  118. fs->actvar[fs->nactvar+n] = cast(unsigned short, registerlocalvar(ls, name));
  119. }
  120. static void adjustlocalvars (LexState *ls, int nvars) {
  121. FuncState *fs = ls->fs;
  122. fs->nactvar = cast_byte(fs->nactvar + nvars);
  123. for (; nvars; nvars--) {
  124. getlocvar(fs, fs->nactvar - nvars).startpc = fs->pc;
  125. }
  126. }
  127. static void removevars (LexState *ls, int tolevel) {
  128. FuncState *fs = ls->fs;
  129. while (fs->nactvar > tolevel)
  130. getlocvar(fs, --fs->nactvar).endpc = fs->pc;
  131. }
  132. static int indexupvalue (FuncState *fs, TString *name, expdesc *v) {
  133. int i;
  134. Proto *f = fs->f;
  135. int oldsize = f->sizeupvalues;
  136. for (i=0; i<f->nups; i++) {
  137. if (fs->upvalues[i].k == v->k && fs->upvalues[i].info == v->u.s.info) {
  138. lua_assert(f->upvalues[i] == name);
  139. return i;
  140. }
  141. }
  142. /* new one */
  143. luaY_checklimit(fs, f->nups + 1, LUAI_MAXUPVALUES, "upvalues");
  144. luaM_growvector(fs->L, f->upvalues, f->nups, f->sizeupvalues,
  145. TString *, MAX_INT, "");
  146. while (oldsize < f->sizeupvalues) f->upvalues[oldsize++] = NULL;
  147. f->upvalues[f->nups] = name;
  148. luaC_objbarrier(fs->L, f, name);
  149. lua_assert(v->k == VLOCAL || v->k == VUPVAL);
  150. fs->upvalues[f->nups].k = cast_byte(v->k);
  151. fs->upvalues[f->nups].info = cast_byte(v->u.s.info);
  152. return f->nups++;
  153. }
  154. static int searchvar (FuncState *fs, TString *n) {
  155. int i;
  156. for (i=fs->nactvar-1; i >= 0; i--) {
  157. if (n == getlocvar(fs, i).varname)
  158. return i;
  159. }
  160. return -1; /* not found */
  161. }
  162. static void markupval (FuncState *fs, int level) {
  163. BlockCnt *bl = fs->bl;
  164. while (bl && bl->nactvar > level) bl = bl->previous;
  165. if (bl) bl->upval = 1;
  166. }
  167. static int singlevaraux (FuncState *fs, TString *n, expdesc *var, int base) {
  168. if (fs == NULL) { /* no more levels? */
  169. init_exp(var, VGLOBAL, NO_REG); /* default is global variable */
  170. return VGLOBAL;
  171. }
  172. else {
  173. int v = searchvar(fs, n); /* look up at current level */
  174. if (v >= 0) {
  175. init_exp(var, VLOCAL, v);
  176. if (!base)
  177. markupval(fs, v); /* local will be used as an upval */
  178. return VLOCAL;
  179. }
  180. else { /* not found at current level; try upper one */
  181. if (singlevaraux(fs->prev, n, var, 0) == VGLOBAL)
  182. return VGLOBAL;
  183. var->u.s.info = indexupvalue(fs, n, var); /* else was LOCAL or UPVAL */
  184. var->k = VUPVAL; /* upvalue in this level */
  185. return VUPVAL;
  186. }
  187. }
  188. }
  189. static void singlevar (LexState *ls, expdesc *var) {
  190. TString *varname = str_checkname(ls);
  191. FuncState *fs = ls->fs;
  192. if (singlevaraux(fs, varname, var, 1) == VGLOBAL)
  193. var->u.s.info = luaK_stringK(fs, varname); /* info points to global name */
  194. }
  195. static void adjust_assign (LexState *ls, int nvars, int nexps, expdesc *e) {
  196. FuncState *fs = ls->fs;
  197. int extra = nvars - nexps;
  198. if (hasmultret(e->k)) {
  199. extra++; /* includes call itself */
  200. if (extra < 0) extra = 0;
  201. luaK_setreturns(fs, e, extra); /* last exp. provides the difference */
  202. if (extra > 1) luaK_reserveregs(fs, extra-1);
  203. }
  204. else {
  205. if (e->k != VVOID) luaK_exp2nextreg(fs, e); /* close last expression */
  206. if (extra > 0) {
  207. int reg = fs->freereg;
  208. luaK_reserveregs(fs, extra);
  209. luaK_nil(fs, reg, extra);
  210. }
  211. }
  212. }
  213. static void enterlevel (LexState *ls) {
  214. ++ls->L->nCcalls;
  215. luaY_checklimit(ls->fs, ls->L->nCcalls, LUAI_MAXCCALLS, "syntax levels");
  216. }
  217. #define leavelevel(ls) ((ls)->L->nCcalls--)
  218. static void enterblock (FuncState *fs, BlockCnt *bl, lu_byte isbreakable) {
  219. bl->breaklist = NO_JUMP;
  220. bl->isbreakable = isbreakable;
  221. bl->nactvar = fs->nactvar;
  222. bl->upval = 0;
  223. bl->previous = fs->bl;
  224. fs->bl = bl;
  225. lua_assert(fs->freereg == fs->nactvar);
  226. }
  227. static void leaveblock (FuncState *fs) {
  228. BlockCnt *bl = fs->bl;
  229. fs->bl = bl->previous;
  230. removevars(fs->ls, bl->nactvar);
  231. if (bl->upval)
  232. luaK_codeABC(fs, OP_CLOSE, bl->nactvar, 0, 0);
  233. /* a block either controls scope or breaks (never both) */
  234. lua_assert(!bl->isbreakable || !bl->upval);
  235. lua_assert(bl->nactvar == fs->nactvar);
  236. fs->freereg = fs->nactvar; /* free registers */
  237. luaK_patchtohere(fs, bl->breaklist);
  238. }
  239. static void pushclosure (LexState *ls, FuncState *func, expdesc *v) {
  240. FuncState *fs = ls->fs->prev;
  241. Proto *f = fs->f;
  242. int oldsize = f->sizep;
  243. int i;
  244. luaM_growvector(ls->L, f->p, fs->np, f->sizep, Proto *,
  245. MAXARG_Bx, "constant table overflow");
  246. while (oldsize < f->sizep) f->p[oldsize++] = NULL;
  247. f->p[fs->np++] = func->f;
  248. luaC_objbarrier(ls->L, f, func->f);
  249. init_exp(v, VRELOCABLE, luaK_codeABx(fs, OP_CLOSURE, 0, fs->np-1));
  250. for (i=0; i<func->f->nups; i++) {
  251. OpCode o = (func->upvalues[i].k == VLOCAL) ? OP_MOVE : OP_GETUPVAL;
  252. luaK_codeABC(fs, o, 0, func->upvalues[i].info, 0);
  253. }
  254. }
  255. static void open_func (LexState *ls, FuncState *fs) {
  256. lua_State *L = ls->L;
  257. Proto *f;
  258. fs->prev = ls->fs; /* linked list of funcstates */
  259. fs->ls = ls;
  260. fs->L = L;
  261. ls->fs = fs;
  262. fs->pc = 0;
  263. fs->lasttarget = -1;
  264. fs->jpc = NO_JUMP;
  265. fs->freereg = 0;
  266. fs->nk = 0;
  267. fs->np = 0;
  268. fs->nlocvars = 0;
  269. fs->nactvar = 0;
  270. fs->bl = NULL;
  271. fs->h = luaH_new(L);
  272. /* anchor table of constants (to avoid being collected) */
  273. sethvalue2s(L, L->top, fs->h);
  274. incr_top(L);
  275. f = luaF_newproto(L);
  276. fs->f = f;
  277. f->source = ls->source;
  278. f->maxstacksize = 2; /* registers 0/1 are always valid */
  279. /* anchor prototype (to avoid being collected) */
  280. setptvalue2s(L, L->top, f);
  281. incr_top(L);
  282. }
  283. static void close_func (LexState *ls) {
  284. lua_State *L = ls->L;
  285. FuncState *fs = ls->fs;
  286. Proto *f = fs->f;
  287. removevars(ls, 0);
  288. luaK_ret(fs, 0, 0); /* final return */
  289. luaM_reallocvector(L, f->code, f->sizecode, fs->pc, Instruction);
  290. f->sizecode = fs->pc;
  291. luaM_reallocvector(L, f->lineinfo, f->sizelineinfo, fs->pc, int);
  292. f->sizelineinfo = fs->pc;
  293. luaM_reallocvector(L, f->k, f->sizek, fs->nk, TValue);
  294. f->sizek = fs->nk;
  295. luaM_reallocvector(L, f->p, f->sizep, fs->np, Proto *);
  296. f->sizep = fs->np;
  297. luaM_reallocvector(L, f->locvars, f->sizelocvars, fs->nlocvars, LocVar);
  298. f->sizelocvars = fs->nlocvars;
  299. luaM_reallocvector(L, f->upvalues, f->sizeupvalues, f->nups, TString *);
  300. f->sizeupvalues = f->nups;
  301. lua_assert(luaG_checkcode(f));
  302. lua_assert(fs->bl == NULL);
  303. ls->fs = fs->prev;
  304. L->top -= 2; /* remove table and prototype from the stack */
  305. /* last token read was anchored in defunct function; must reanchor it */
  306. if (fs) anchor_token(ls);
  307. }
  308. Proto *luaY_parser (lua_State *L, ZIO *z, Mbuffer *buff, const char *name) {
  309. struct LexState lexstate;
  310. struct FuncState funcstate;
  311. TString *tname = luaS_new(L, name);
  312. setsvalue2s(L, L->top, tname); /* protect name */
  313. incr_top(L);
  314. lexstate.buff = buff;
  315. luaX_setinput(L, &lexstate, z, tname);
  316. open_func(&lexstate, &funcstate);
  317. funcstate.f->is_vararg = VARARG_ISVARARG; /* main func. is always vararg */
  318. luaX_next(&lexstate); /* read first token */
  319. chunk(&lexstate);
  320. check(&lexstate, TK_EOS);
  321. close_func(&lexstate);
  322. L->top--;
  323. lua_assert(funcstate.prev == NULL);
  324. lua_assert(funcstate.f->nups == 0);
  325. lua_assert(lexstate.fs == NULL);
  326. return funcstate.f;
  327. }
  328. /*============================================================*/
  329. /* GRAMMAR RULES */
  330. /*============================================================*/
  331. static void field (LexState *ls, expdesc *v) {
  332. /* field -> ['.' | ':'] NAME */
  333. FuncState *fs = ls->fs;
  334. expdesc key;
  335. luaK_exp2anyreg(fs, v);
  336. luaX_next(ls); /* skip the dot or colon */
  337. checkname(ls, &key);
  338. luaK_indexed(fs, v, &key);
  339. }
  340. static void yindex (LexState *ls, expdesc *v) {
  341. /* index -> '[' expr ']' */
  342. luaX_next(ls); /* skip the '[' */
  343. expr(ls, v);
  344. luaK_exp2val(ls->fs, v);
  345. checknext(ls, ']');
  346. }
  347. /*
  348. ** {======================================================================
  349. ** Rules for Constructors
  350. ** =======================================================================
  351. */
  352. struct ConsControl {
  353. expdesc v; /* last list item read */
  354. expdesc *t; /* table descriptor */
  355. int nh; /* total number of `record' elements */
  356. int na; /* total number of array elements */
  357. int tostore; /* number of array elements pending to be stored */
  358. };
  359. static void recfield (LexState *ls, struct ConsControl *cc) {
  360. /* recfield -> (NAME | `['exp1`]') = exp1 */
  361. FuncState *fs = ls->fs;
  362. int reg = ls->fs->freereg;
  363. expdesc key, val;
  364. int rkkey;
  365. if (ls->t.token == TK_NAME) {
  366. luaY_checklimit(fs, cc->nh, MAX_INT, "items in a constructor");
  367. checkname(ls, &key);
  368. }
  369. else /* ls->t.token == '[' */
  370. yindex(ls, &key);
  371. cc->nh++;
  372. checknext(ls, '=');
  373. rkkey = luaK_exp2RK(fs, &key);
  374. expr(ls, &val);
  375. luaK_codeABC(fs, OP_SETTABLE, cc->t->u.s.info, rkkey, luaK_exp2RK(fs, &val));
  376. fs->freereg = reg; /* free registers */
  377. }
  378. static void closelistfield (FuncState *fs, struct ConsControl *cc) {
  379. if (cc->v.k == VVOID) return; /* there is no list item */
  380. luaK_exp2nextreg(fs, &cc->v);
  381. cc->v.k = VVOID;
  382. if (cc->tostore == LFIELDS_PER_FLUSH) {
  383. luaK_setlist(fs, cc->t->u.s.info, cc->na, cc->tostore); /* flush */
  384. cc->tostore = 0; /* no more items pending */
  385. }
  386. }
  387. static void lastlistfield (FuncState *fs, struct ConsControl *cc) {
  388. if (cc->tostore == 0) return;
  389. if (hasmultret(cc->v.k)) {
  390. luaK_setmultret(fs, &cc->v);
  391. luaK_setlist(fs, cc->t->u.s.info, cc->na, LUA_MULTRET);
  392. cc->na--; /* do not count last expression (unknown number of elements) */
  393. }
  394. else {
  395. if (cc->v.k != VVOID)
  396. luaK_exp2nextreg(fs, &cc->v);
  397. luaK_setlist(fs, cc->t->u.s.info, cc->na, cc->tostore);
  398. }
  399. }
  400. static void listfield (LexState *ls, struct ConsControl *cc) {
  401. expr(ls, &cc->v);
  402. luaY_checklimit(ls->fs, cc->na, MAXARG_Bx, "items in a constructor");
  403. cc->na++;
  404. cc->tostore++;
  405. }
  406. static void constructor (LexState *ls, expdesc *t) {
  407. /* constructor -> ?? */
  408. FuncState *fs = ls->fs;
  409. int line = ls->linenumber;
  410. int pc = luaK_codeABC(fs, OP_NEWTABLE, 0, 0, 0);
  411. struct ConsControl cc;
  412. cc.na = cc.nh = cc.tostore = 0;
  413. cc.t = t;
  414. init_exp(t, VRELOCABLE, pc);
  415. init_exp(&cc.v, VVOID, 0); /* no value (yet) */
  416. luaK_exp2nextreg(ls->fs, t); /* fix it at stack top (for gc) */
  417. checknext(ls, '{');
  418. do {
  419. lua_assert(cc.v.k == VVOID || cc.tostore > 0);
  420. if (ls->t.token == '}') break;
  421. closelistfield(fs, &cc);
  422. switch(ls->t.token) {
  423. case TK_NAME: { /* may be listfields or recfields */
  424. luaX_lookahead(ls);
  425. if (ls->lookahead.token != '=') /* expression? */
  426. listfield(ls, &cc);
  427. else
  428. recfield(ls, &cc);
  429. break;
  430. }
  431. case '[': { /* constructor_item -> recfield */
  432. recfield(ls, &cc);
  433. break;
  434. }
  435. default: { /* constructor_part -> listfield */
  436. listfield(ls, &cc);
  437. break;
  438. }
  439. }
  440. } while (testnext(ls, ',') || testnext(ls, ';'));
  441. check_match(ls, '}', '{', line);
  442. lastlistfield(fs, &cc);
  443. SETARG_B(fs->f->code[pc], luaO_int2fb(cc.na)); /* set initial array size */
  444. SETARG_C(fs->f->code[pc], luaO_int2fb(cc.nh)); /* set initial table size */
  445. }
  446. /* }====================================================================== */
  447. static void parlist (LexState *ls) {
  448. /* parlist -> [ param { `,' param } ] */
  449. FuncState *fs = ls->fs;
  450. Proto *f = fs->f;
  451. int nparams = 0;
  452. f->is_vararg = 0;
  453. if (ls->t.token != ')') { /* is `parlist' not empty? */
  454. do {
  455. switch (ls->t.token) {
  456. case TK_NAME: { /* param -> NAME */
  457. new_localvar(ls, str_checkname(ls), nparams++);
  458. break;
  459. }
  460. case TK_DOTS: { /* param -> `...' */
  461. luaX_next(ls);
  462. #if defined(LUA_COMPAT_VARARG)
  463. /* use `arg' as default name */
  464. new_localvarliteral(ls, "arg", nparams++);
  465. f->is_vararg = VARARG_HASARG | VARARG_NEEDSARG;
  466. #endif
  467. f->is_vararg |= VARARG_ISVARARG;
  468. break;
  469. }
  470. default: luaX_syntaxerror(ls, "<name> or " LUA_QL("...") " expected");
  471. }
  472. } while (!f->is_vararg && testnext(ls, ','));
  473. }
  474. adjustlocalvars(ls, nparams);
  475. f->numparams = cast_byte(fs->nactvar - (f->is_vararg & VARARG_HASARG));
  476. luaK_reserveregs(fs, fs->nactvar); /* reserve register for parameters */
  477. }
  478. static void body (LexState *ls, expdesc *e, int needself, int line) {
  479. /* body -> `(' parlist `)' chunk END */
  480. FuncState new_fs;
  481. open_func(ls, &new_fs);
  482. new_fs.f->linedefined = line;
  483. checknext(ls, '(');
  484. if (needself) {
  485. new_localvarliteral(ls, "self", 0);
  486. adjustlocalvars(ls, 1);
  487. }
  488. parlist(ls);
  489. checknext(ls, ')');
  490. chunk(ls);
  491. new_fs.f->lastlinedefined = ls->linenumber;
  492. check_match(ls, TK_END, TK_FUNCTION, line);
  493. pushclosure(ls, &new_fs, e);
  494. close_func(ls);
  495. }
  496. static int explist1 (LexState *ls, expdesc *v) {
  497. /* explist1 -> expr { `,' expr } */
  498. int n = 1; /* at least one expression */
  499. expr(ls, v);
  500. while (testnext(ls, ',')) {
  501. luaK_exp2nextreg(ls->fs, v);
  502. expr(ls, v);
  503. n++;
  504. }
  505. return n;
  506. }
  507. static void funcargs (LexState *ls, expdesc *f) {
  508. FuncState *fs = ls->fs;
  509. expdesc args;
  510. int base, nparams;
  511. int line = ls->linenumber;
  512. switch (ls->t.token) {
  513. case '(': { /* funcargs -> `(' [ explist1 ] `)' */
  514. if (line != ls->lastline)
  515. luaX_syntaxerror(ls,"ambiguous syntax (function call x new statement)");
  516. luaX_next(ls);
  517. if (ls->t.token == ')') /* arg list is empty? */
  518. args.k = VVOID;
  519. else {
  520. explist1(ls, &args);
  521. luaK_setmultret(fs, &args);
  522. }
  523. check_match(ls, ')', '(', line);
  524. break;
  525. }
  526. case '{': { /* funcargs -> constructor */
  527. constructor(ls, &args);
  528. break;
  529. }
  530. case TK_STRING: { /* funcargs -> STRING */
  531. codestring(ls, &args, ls->t.seminfo.ts);
  532. luaX_next(ls); /* must use `seminfo' before `next' */
  533. break;
  534. }
  535. default: {
  536. luaX_syntaxerror(ls, "function arguments expected");
  537. return;
  538. }
  539. }
  540. lua_assert(f->k == VNONRELOC);
  541. base = f->u.s.info; /* base register for call */
  542. if (hasmultret(args.k))
  543. nparams = LUA_MULTRET; /* open call */
  544. else {
  545. if (args.k != VVOID)
  546. luaK_exp2nextreg(fs, &args); /* close last argument */
  547. nparams = fs->freereg - (base+1);
  548. }
  549. init_exp(f, VCALL, luaK_codeABC(fs, OP_CALL, base, nparams+1, 2));
  550. luaK_fixline(fs, line);
  551. fs->freereg = base+1; /* call remove function and arguments and leaves
  552. (unless changed) one result */
  553. }
  554. /*
  555. ** {======================================================================
  556. ** Expression parsing
  557. ** =======================================================================
  558. */
  559. static void prefixexp (LexState *ls, expdesc *v) {
  560. /* prefixexp -> NAME | '(' expr ')' */
  561. switch (ls->t.token) {
  562. case '(': {
  563. int line = ls->linenumber;
  564. luaX_next(ls);
  565. expr(ls, v);
  566. check_match(ls, ')', '(', line);
  567. luaK_dischargevars(ls->fs, v);
  568. return;
  569. }
  570. case TK_NAME: {
  571. singlevar(ls, v);
  572. return;
  573. }
  574. default: {
  575. luaX_syntaxerror(ls, "unexpected symbol");
  576. return;
  577. }
  578. }
  579. }
  580. static void primaryexp (LexState *ls, expdesc *v) {
  581. /* primaryexp ->
  582. prefixexp { `.' NAME | `[' exp `]' | `:' NAME funcargs | funcargs } */
  583. FuncState *fs = ls->fs;
  584. prefixexp(ls, v);
  585. for (;;) {
  586. switch (ls->t.token) {
  587. case '.': { /* field */
  588. field(ls, v);
  589. break;
  590. }
  591. case '[': { /* `[' exp1 `]' */
  592. expdesc key;
  593. luaK_exp2anyreg(fs, v);
  594. yindex(ls, &key);
  595. luaK_indexed(fs, v, &key);
  596. break;
  597. }
  598. case ':': { /* `:' NAME funcargs */
  599. expdesc key;
  600. luaX_next(ls);
  601. checkname(ls, &key);
  602. luaK_self(fs, v, &key);
  603. funcargs(ls, v);
  604. break;
  605. }
  606. case '(': case TK_STRING: case '{': { /* funcargs */
  607. luaK_exp2nextreg(fs, v);
  608. funcargs(ls, v);
  609. break;
  610. }
  611. default: return;
  612. }
  613. }
  614. }
  615. static void simpleexp (LexState *ls, expdesc *v) {
  616. /* simpleexp -> NUMBER | STRING | NIL | true | false | ... |
  617. constructor | FUNCTION body | primaryexp */
  618. switch (ls->t.token) {
  619. case TK_NUMBER: {
  620. init_exp(v, VKNUM, 0);
  621. v->u.nval = ls->t.seminfo.r;
  622. break;
  623. }
  624. case TK_STRING: {
  625. codestring(ls, v, ls->t.seminfo.ts);
  626. break;
  627. }
  628. case TK_NIL: {
  629. init_exp(v, VNIL, 0);
  630. break;
  631. }
  632. case TK_TRUE: {
  633. init_exp(v, VTRUE, 0);
  634. break;
  635. }
  636. case TK_FALSE: {
  637. init_exp(v, VFALSE, 0);
  638. break;
  639. }
  640. case TK_DOTS: { /* vararg */
  641. FuncState *fs = ls->fs;
  642. check_condition(ls, fs->f->is_vararg,
  643. "cannot use " LUA_QL("...") " outside a vararg function");
  644. fs->f->is_vararg &= ~VARARG_NEEDSARG; /* don't need 'arg' */
  645. init_exp(v, VVARARG, luaK_codeABC(fs, OP_VARARG, 0, 1, 0));
  646. break;
  647. }
  648. case '{': { /* constructor */
  649. constructor(ls, v);
  650. return;
  651. }
  652. case TK_FUNCTION: {
  653. luaX_next(ls);
  654. body(ls, v, 0, ls->linenumber);
  655. return;
  656. }
  657. default: {
  658. primaryexp(ls, v);
  659. return;
  660. }
  661. }
  662. luaX_next(ls);
  663. }
  664. static UnOpr getunopr (int op) {
  665. switch (op) {
  666. case TK_NOT: return OPR_NOT;
  667. case '-': return OPR_MINUS;
  668. case '#': return OPR_LEN;
  669. default: return OPR_NOUNOPR;
  670. }
  671. }
  672. static BinOpr getbinopr (int op) {
  673. switch (op) {
  674. case '+': return OPR_ADD;
  675. case '-': return OPR_SUB;
  676. case '*': return OPR_MUL;
  677. case '/': return OPR_DIV;
  678. case '%': return OPR_MOD;
  679. case '^': return OPR_POW;
  680. case TK_CONCAT: return OPR_CONCAT;
  681. case TK_NE: return OPR_NE;
  682. case TK_EQ: return OPR_EQ;
  683. case '<': return OPR_LT;
  684. case TK_LE: return OPR_LE;
  685. case '>': return OPR_GT;
  686. case TK_GE: return OPR_GE;
  687. case TK_AND: return OPR_AND;
  688. case TK_OR: return OPR_OR;
  689. default: return OPR_NOBINOPR;
  690. }
  691. }
  692. static const struct {
  693. lu_byte left; /* left priority for each binary operator */
  694. lu_byte right; /* right priority */
  695. } priority[] = { /* ORDER OPR */
  696. {6, 6}, {6, 6}, {7, 7}, {7, 7}, {7, 7}, /* `+' `-' `/' `%' */
  697. {10, 9}, {5, 4}, /* power and concat (right associative) */
  698. {3, 3}, {3, 3}, /* equality and inequality */
  699. {3, 3}, {3, 3}, {3, 3}, {3, 3}, /* order */
  700. {2, 2}, {1, 1} /* logical (and/or) */
  701. };
  702. #define UNARY_PRIORITY 8 /* priority for unary operators */
  703. /*
  704. ** subexpr -> (simpleexp | unop subexpr) { binop subexpr }
  705. ** where `binop' is any binary operator with a priority higher than `limit'
  706. */
  707. static BinOpr subexpr (LexState *ls, expdesc *v, unsigned int limit) {
  708. BinOpr op;
  709. UnOpr uop;
  710. enterlevel(ls);
  711. uop = getunopr(ls->t.token);
  712. if (uop != OPR_NOUNOPR) {
  713. luaX_next(ls);
  714. subexpr(ls, v, UNARY_PRIORITY);
  715. luaK_prefix(ls->fs, uop, v);
  716. }
  717. else simpleexp(ls, v);
  718. /* expand while operators have priorities higher than `limit' */
  719. op = getbinopr(ls->t.token);
  720. while (op != OPR_NOBINOPR && priority[op].left > limit) {
  721. expdesc v2;
  722. BinOpr nextop;
  723. luaX_next(ls);
  724. luaK_infix(ls->fs, op, v);
  725. /* read sub-expression with higher priority */
  726. nextop = subexpr(ls, &v2, priority[op].right);
  727. luaK_posfix(ls->fs, op, v, &v2);
  728. op = nextop;
  729. }
  730. leavelevel(ls);
  731. return op; /* return first untreated operator */
  732. }
  733. static void expr (LexState *ls, expdesc *v) {
  734. subexpr(ls, v, 0);
  735. }
  736. /* }==================================================================== */
  737. /*
  738. ** {======================================================================
  739. ** Rules for Statements
  740. ** =======================================================================
  741. */
  742. static int block_follow (int token) {
  743. switch (token) {
  744. case TK_ELSE: case TK_ELSEIF: case TK_END:
  745. case TK_UNTIL: case TK_EOS:
  746. return 1;
  747. default: return 0;
  748. }
  749. }
  750. static void block (LexState *ls) {
  751. /* block -> chunk */
  752. FuncState *fs = ls->fs;
  753. BlockCnt bl;
  754. enterblock(fs, &bl, 0);
  755. chunk(ls);
  756. lua_assert(bl.breaklist == NO_JUMP);
  757. leaveblock(fs);
  758. }
  759. /*
  760. ** structure to chain all variables in the left-hand side of an
  761. ** assignment
  762. */
  763. struct LHS_assign {
  764. struct LHS_assign *prev;
  765. expdesc v; /* variable (global, local, upvalue, or indexed) */
  766. };
  767. /*
  768. ** check whether, in an assignment to a local variable, the local variable
  769. ** is needed in a previous assignment (to a table). If so, save original
  770. ** local value in a safe place and use this safe copy in the previous
  771. ** assignment.
  772. */
  773. static void check_conflict (LexState *ls, struct LHS_assign *lh, expdesc *v) {
  774. FuncState *fs = ls->fs;
  775. int extra = fs->freereg; /* eventual position to save local variable */
  776. int conflict = 0;
  777. for (; lh; lh = lh->prev) {
  778. if (lh->v.k == VINDEXED) {
  779. if (lh->v.u.s.info == v->u.s.info) { /* conflict? */
  780. conflict = 1;
  781. lh->v.u.s.info = extra; /* previous assignment will use safe copy */
  782. }
  783. if (lh->v.u.s.aux == v->u.s.info) { /* conflict? */
  784. conflict = 1;
  785. lh->v.u.s.aux = extra; /* previous assignment will use safe copy */
  786. }
  787. }
  788. }
  789. if (conflict) {
  790. luaK_codeABC(fs, OP_MOVE, fs->freereg, v->u.s.info, 0); /* make copy */
  791. luaK_reserveregs(fs, 1);
  792. }
  793. }
  794. static void assignment (LexState *ls, struct LHS_assign *lh, int nvars) {
  795. expdesc e;
  796. check_condition(ls, VLOCAL <= lh->v.k && lh->v.k <= VINDEXED,
  797. "syntax error");
  798. if (testnext(ls, ',')) { /* assignment -> `,' primaryexp assignment */
  799. struct LHS_assign nv;
  800. nv.prev = lh;
  801. primaryexp(ls, &nv.v);
  802. if (nv.v.k == VLOCAL)
  803. check_conflict(ls, lh, &nv.v);
  804. assignment(ls, &nv, nvars+1);
  805. }
  806. else { /* assignment -> `=' explist1 */
  807. int nexps;
  808. checknext(ls, '=');
  809. nexps = explist1(ls, &e);
  810. if (nexps != nvars) {
  811. adjust_assign(ls, nvars, nexps, &e);
  812. if (nexps > nvars)
  813. ls->fs->freereg -= nexps - nvars; /* remove extra values */
  814. }
  815. else {
  816. luaK_setoneret(ls->fs, &e); /* close last expression */
  817. luaK_storevar(ls->fs, &lh->v, &e);
  818. return; /* avoid default */
  819. }
  820. }
  821. init_exp(&e, VNONRELOC, ls->fs->freereg-1); /* default assignment */
  822. luaK_storevar(ls->fs, &lh->v, &e);
  823. }
  824. static int cond (LexState *ls) {
  825. /* cond -> exp */
  826. expdesc v;
  827. expr(ls, &v); /* read condition */
  828. if (v.k == VNIL) v.k = VFALSE; /* `falses' are all equal here */
  829. luaK_goiftrue(ls->fs, &v);
  830. return v.f;
  831. }
  832. static void breakstat (LexState *ls) {
  833. FuncState *fs = ls->fs;
  834. BlockCnt *bl = fs->bl;
  835. int upval = 0;
  836. while (bl && !bl->isbreakable) {
  837. upval |= bl->upval;
  838. bl = bl->previous;
  839. }
  840. if (!bl)
  841. luaX_syntaxerror(ls, "no loop to break");
  842. if (upval)
  843. luaK_codeABC(fs, OP_CLOSE, bl->nactvar, 0, 0);
  844. luaK_concat(fs, &bl->breaklist, luaK_jump(fs));
  845. }
  846. static void whilestat (LexState *ls, int line) {
  847. /* whilestat -> WHILE cond DO block END */
  848. FuncState *fs = ls->fs;
  849. int whileinit;
  850. int condexit;
  851. BlockCnt bl;
  852. luaX_next(ls); /* skip WHILE */
  853. whileinit = luaK_getlabel(fs);
  854. condexit = cond(ls);
  855. enterblock(fs, &bl, 1);
  856. checknext(ls, TK_DO);
  857. block(ls);
  858. luaK_patchlist(fs, luaK_jump(fs), whileinit);
  859. check_match(ls, TK_END, TK_WHILE, line);
  860. leaveblock(fs);
  861. luaK_patchtohere(fs, condexit); /* false conditions finish the loop */
  862. }
  863. static void repeatstat (LexState *ls, int line) {
  864. /* repeatstat -> REPEAT block UNTIL cond */
  865. int condexit;
  866. FuncState *fs = ls->fs;
  867. int repeat_init = luaK_getlabel(fs);
  868. BlockCnt bl1, bl2;
  869. enterblock(fs, &bl1, 1); /* loop block */
  870. enterblock(fs, &bl2, 0); /* scope block */
  871. luaX_next(ls); /* skip REPEAT */
  872. chunk(ls);
  873. check_match(ls, TK_UNTIL, TK_REPEAT, line);
  874. condexit = cond(ls); /* read condition (inside scope block) */
  875. if (!bl2.upval) { /* no upvalues? */
  876. leaveblock(fs); /* finish scope */
  877. luaK_patchlist(ls->fs, condexit, repeat_init); /* close the loop */
  878. }
  879. else { /* complete semantics when there are upvalues */
  880. breakstat(ls); /* if condition then break */
  881. luaK_patchtohere(ls->fs, condexit); /* else... */
  882. leaveblock(fs); /* finish scope... */
  883. luaK_patchlist(ls->fs, luaK_jump(fs), repeat_init); /* and repeat */
  884. }
  885. leaveblock(fs); /* finish loop */
  886. }
  887. static int exp1 (LexState *ls) {
  888. expdesc e;
  889. int k;
  890. expr(ls, &e);
  891. k = e.k;
  892. luaK_exp2nextreg(ls->fs, &e);
  893. return k;
  894. }
  895. static void forbody (LexState *ls, int base, int line, int nvars, int isnum) {
  896. /* forbody -> DO block */
  897. BlockCnt bl;
  898. FuncState *fs = ls->fs;
  899. int prep, endfor;
  900. adjustlocalvars(ls, 3); /* control variables */
  901. checknext(ls, TK_DO);
  902. prep = isnum ? luaK_codeAsBx(fs, OP_FORPREP, base, NO_JUMP) : luaK_jump(fs);
  903. enterblock(fs, &bl, 0); /* scope for declared variables */
  904. adjustlocalvars(ls, nvars);
  905. luaK_reserveregs(fs, nvars);
  906. block(ls);
  907. leaveblock(fs); /* end of scope for declared variables */
  908. luaK_patchtohere(fs, prep);
  909. endfor = (isnum) ? luaK_codeAsBx(fs, OP_FORLOOP, base, NO_JUMP) :
  910. luaK_codeABC(fs, OP_TFORLOOP, base, 0, nvars);
  911. luaK_fixline(fs, line); /* pretend that `OP_FOR' starts the loop */
  912. luaK_patchlist(fs, (isnum ? endfor : luaK_jump(fs)), prep + 1);
  913. }
  914. static void fornum (LexState *ls, TString *varname, int line) {
  915. /* fornum -> NAME = exp1,exp1[,exp1] forbody */
  916. FuncState *fs = ls->fs;
  917. int base = fs->freereg;
  918. new_localvarliteral(ls, "(for index)", 0);
  919. new_localvarliteral(ls, "(for limit)", 1);
  920. new_localvarliteral(ls, "(for step)", 2);
  921. new_localvar(ls, varname, 3);
  922. checknext(ls, '=');
  923. exp1(ls); /* initial value */
  924. checknext(ls, ',');
  925. exp1(ls); /* limit */
  926. if (testnext(ls, ','))
  927. exp1(ls); /* optional step */
  928. else { /* default step = 1 */
  929. luaK_codeABx(fs, OP_LOADK, fs->freereg, luaK_numberK(fs, 1));
  930. luaK_reserveregs(fs, 1);
  931. }
  932. forbody(ls, base, line, 1, 1);
  933. }
  934. static void forlist (LexState *ls, TString *indexname) {
  935. /* forlist -> NAME {,NAME} IN explist1 forbody */
  936. FuncState *fs = ls->fs;
  937. expdesc e;
  938. int nvars = 0;
  939. int line;
  940. int base = fs->freereg;
  941. /* create control variables */
  942. new_localvarliteral(ls, "(for generator)", nvars++);
  943. new_localvarliteral(ls, "(for state)", nvars++);
  944. new_localvarliteral(ls, "(for control)", nvars++);
  945. /* create declared variables */
  946. new_localvar(ls, indexname, nvars++);
  947. while (testnext(ls, ','))
  948. new_localvar(ls, str_checkname(ls), nvars++);
  949. checknext(ls, TK_IN);
  950. line = ls->linenumber;
  951. adjust_assign(ls, 3, explist1(ls, &e), &e);
  952. luaK_checkstack(fs, 3); /* extra space to call generator */
  953. forbody(ls, base, line, nvars - 3, 0);
  954. }
  955. static void forstat (LexState *ls, int line) {
  956. /* forstat -> FOR (fornum | forlist) END */
  957. FuncState *fs = ls->fs;
  958. TString *varname;
  959. BlockCnt bl;
  960. enterblock(fs, &bl, 1); /* scope for loop and control variables */
  961. luaX_next(ls); /* skip `for' */
  962. varname = str_checkname(ls); /* first variable name */
  963. switch (ls->t.token) {
  964. case '=': fornum(ls, varname, line); break;
  965. case ',': case TK_IN: forlist(ls, varname); break;
  966. default: luaX_syntaxerror(ls, LUA_QL("=") " or " LUA_QL("in") " expected");
  967. }
  968. check_match(ls, TK_END, TK_FOR, line);
  969. leaveblock(fs); /* loop scope (`break' jumps to this point) */
  970. }
  971. static int test_then_block (LexState *ls) {
  972. /* test_then_block -> [IF | ELSEIF] cond THEN block */
  973. int condexit;
  974. luaX_next(ls); /* skip IF or ELSEIF */
  975. condexit = cond(ls);
  976. checknext(ls, TK_THEN);
  977. block(ls); /* `then' part */
  978. return condexit;
  979. }
  980. static void ifstat (LexState *ls, int line) {
  981. /* ifstat -> IF cond THEN block {ELSEIF cond THEN block} [ELSE block] END */
  982. FuncState *fs = ls->fs;
  983. int flist;
  984. int escapelist = NO_JUMP;
  985. flist = test_then_block(ls); /* IF cond THEN block */
  986. while (ls->t.token == TK_ELSEIF) {
  987. luaK_concat(fs, &escapelist, luaK_jump(fs));
  988. luaK_patchtohere(fs, flist);
  989. flist = test_then_block(ls); /* ELSEIF cond THEN block */
  990. }
  991. if (ls->t.token == TK_ELSE) {
  992. luaK_concat(fs, &escapelist, luaK_jump(fs));
  993. luaK_patchtohere(fs, flist);
  994. luaX_next(ls); /* skip ELSE (after patch, for correct line info) */
  995. block(ls); /* `else' part */
  996. }
  997. else
  998. luaK_concat(fs, &escapelist, flist);
  999. luaK_patchtohere(fs, escapelist);
  1000. check_match(ls, TK_END, TK_IF, line);
  1001. }
  1002. static void localfunc (LexState *ls) {
  1003. expdesc v, b;
  1004. FuncState *fs = ls->fs;
  1005. new_localvar(ls, str_checkname(ls), 0);
  1006. init_exp(&v, VLOCAL, fs->freereg);
  1007. luaK_reserveregs(fs, 1);
  1008. adjustlocalvars(ls, 1);
  1009. body(ls, &b, 0, ls->linenumber);
  1010. luaK_storevar(fs, &v, &b);
  1011. /* debug information will only see the variable after this point! */
  1012. getlocvar(fs, fs->nactvar - 1).startpc = fs->pc;
  1013. }
  1014. static void localstat (LexState *ls) {
  1015. /* stat -> LOCAL NAME {`,' NAME} [`=' explist1] */
  1016. int nvars = 0;
  1017. int nexps;
  1018. expdesc e;
  1019. do {
  1020. new_localvar(ls, str_checkname(ls), nvars++);
  1021. } while (testnext(ls, ','));
  1022. if (testnext(ls, '='))
  1023. nexps = explist1(ls, &e);
  1024. else {
  1025. e.k = VVOID;
  1026. nexps = 0;
  1027. }
  1028. adjust_assign(ls, nvars, nexps, &e);
  1029. adjustlocalvars(ls, nvars);
  1030. }
  1031. static int funcname (LexState *ls, expdesc *v) {
  1032. /* funcname -> NAME {field} [`:' NAME] */
  1033. int needself = 0;
  1034. singlevar(ls, v);
  1035. while (ls->t.token == '.')
  1036. field(ls, v);
  1037. if (ls->t.token == ':') {
  1038. needself = 1;
  1039. field(ls, v);
  1040. }
  1041. return needself;
  1042. }
  1043. static void funcstat (LexState *ls, int line) {
  1044. /* funcstat -> FUNCTION funcname body */
  1045. int needself;
  1046. expdesc v, b;
  1047. luaX_next(ls); /* skip FUNCTION */
  1048. needself = funcname(ls, &v);
  1049. body(ls, &b, needself, line);
  1050. luaK_storevar(ls->fs, &v, &b);
  1051. luaK_fixline(ls->fs, line); /* definition `happens' in the first line */
  1052. }
  1053. static void exprstat (LexState *ls) {
  1054. /* stat -> func | assignment */
  1055. FuncState *fs = ls->fs;
  1056. struct LHS_assign v;
  1057. primaryexp(ls, &v.v);
  1058. if (v.v.k == VCALL) /* stat -> func */
  1059. SETARG_C(getcode(fs, &v.v), 1); /* call statement uses no results */
  1060. else { /* stat -> assignment */
  1061. v.prev = NULL;
  1062. assignment(ls, &v, 1);
  1063. }
  1064. }
  1065. static void retstat (LexState *ls) {
  1066. /* stat -> RETURN explist */
  1067. FuncState *fs = ls->fs;
  1068. expdesc e;
  1069. int first, nret; /* registers with returned values */
  1070. luaX_next(ls); /* skip RETURN */
  1071. if (block_follow(ls->t.token) || ls->t.token == ';')
  1072. first = nret = 0; /* return no values */
  1073. else {
  1074. nret = explist1(ls, &e); /* optional return values */
  1075. if (hasmultret(e.k)) {
  1076. luaK_setmultret(fs, &e);
  1077. if (e.k == VCALL && nret == 1) { /* tail call? */
  1078. SET_OPCODE(getcode(fs,&e), OP_TAILCALL);
  1079. lua_assert(GETARG_A(getcode(fs,&e)) == fs->nactvar);
  1080. }
  1081. first = fs->nactvar;
  1082. nret = LUA_MULTRET; /* return all values */
  1083. }
  1084. else {
  1085. if (nret == 1) /* only one single value? */
  1086. first = luaK_exp2anyreg(fs, &e);
  1087. else {
  1088. luaK_exp2nextreg(fs, &e); /* values must go to the `stack' */
  1089. first = fs->nactvar; /* return all `active' values */
  1090. lua_assert(nret == fs->freereg - first);
  1091. }
  1092. }
  1093. }
  1094. luaK_ret(fs, first, nret);
  1095. }
  1096. static int statement (LexState *ls) {
  1097. int line = ls->linenumber; /* may be needed for error messages */
  1098. switch (ls->t.token) {
  1099. case TK_IF: { /* stat -> ifstat */
  1100. ifstat(ls, line);
  1101. return 0;
  1102. }
  1103. case TK_WHILE: { /* stat -> whilestat */
  1104. whilestat(ls, line);
  1105. return 0;
  1106. }
  1107. case TK_DO: { /* stat -> DO block END */
  1108. luaX_next(ls); /* skip DO */
  1109. block(ls);
  1110. check_match(ls, TK_END, TK_DO, line);
  1111. return 0;
  1112. }
  1113. case TK_FOR: { /* stat -> forstat */
  1114. forstat(ls, line);
  1115. return 0;
  1116. }
  1117. case TK_REPEAT: { /* stat -> repeatstat */
  1118. repeatstat(ls, line);
  1119. return 0;
  1120. }
  1121. case TK_FUNCTION: {
  1122. funcstat(ls, line); /* stat -> funcstat */
  1123. return 0;
  1124. }
  1125. case TK_LOCAL: { /* stat -> localstat */
  1126. luaX_next(ls); /* skip LOCAL */
  1127. if (testnext(ls, TK_FUNCTION)) /* local function? */
  1128. localfunc(ls);
  1129. else
  1130. localstat(ls);
  1131. return 0;
  1132. }
  1133. case TK_RETURN: { /* stat -> retstat */
  1134. retstat(ls);
  1135. return 1; /* must be last statement */
  1136. }
  1137. case TK_BREAK: { /* stat -> breakstat */
  1138. luaX_next(ls); /* skip BREAK */
  1139. breakstat(ls);
  1140. return 1; /* must be last statement */
  1141. }
  1142. default: {
  1143. exprstat(ls);
  1144. return 0; /* to avoid warnings */
  1145. }
  1146. }
  1147. }
  1148. static void chunk (LexState *ls) {
  1149. /* chunk -> { stat [`;'] } */
  1150. int islast = 0;
  1151. enterlevel(ls);
  1152. while (!islast && !block_follow(ls->t.token)) {
  1153. islast = statement(ls);
  1154. testnext(ls, ';');
  1155. lua_assert(ls->fs->f->maxstacksize >= ls->fs->freereg &&
  1156. ls->fs->freereg >= ls->fs->nactvar);
  1157. ls->fs->freereg = ls->fs->nactvar; /* free registers */
  1158. }
  1159. leavelevel(ls);
  1160. }
  1161. /* }====================================================================== */