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ldo.c 21 KB

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  1. /*
  2. ** $Id: ldo.c,v 2.129 2014/10/08 12:20:26 roberto Exp roberto $
  3. ** Stack and Call structure of Lua
  4. ** See Copyright Notice in lua.h
  5. */
  6. #include <setjmp.h>
  7. #include <stdlib.h>
  8. #include <string.h>
  9. #define ldo_c
  10. #define LUA_CORE
  11. #include "lua.h"
  12. #include "lapi.h"
  13. #include "ldebug.h"
  14. #include "ldo.h"
  15. #include "lfunc.h"
  16. #include "lgc.h"
  17. #include "lmem.h"
  18. #include "lobject.h"
  19. #include "lopcodes.h"
  20. #include "lparser.h"
  21. #include "lstate.h"
  22. #include "lstring.h"
  23. #include "ltable.h"
  24. #include "ltm.h"
  25. #include "lundump.h"
  26. #include "lvm.h"
  27. #include "lzio.h"
  28. #define errorstatus(s) ((s) > LUA_YIELD)
  29. /*
  30. ** {======================================================
  31. ** Error-recovery functions
  32. ** =======================================================
  33. */
  34. /*
  35. ** LUAI_THROW/LUAI_TRY define how Lua does exception handling. By
  36. ** default, Lua handles errors with exceptions when compiling as
  37. ** C++ code, with _longjmp/_setjmp when asked to use them, and with
  38. ** longjmp/setjmp otherwise.
  39. */
  40. #if !defined(LUAI_THROW) /* { */
  41. #if defined(__cplusplus) && !defined(LUA_USE_LONGJMP) /* { */
  42. /* C++ exceptions */
  43. #define LUAI_THROW(L,c) throw(c)
  44. #define LUAI_TRY(L,c,a) \
  45. try { a } catch(...) { if ((c)->status == 0) (c)->status = -1; }
  46. #define luai_jmpbuf int /* dummy variable */
  47. #elif defined(LUA_USE_POSIX) /* }{ */
  48. /* in POSIX, try _longjmp/_setjmp (more efficient) */
  49. #define LUAI_THROW(L,c) _longjmp((c)->b, 1)
  50. #define LUAI_TRY(L,c,a) if (_setjmp((c)->b) == 0) { a }
  51. #define luai_jmpbuf jmp_buf
  52. #else /* }{ */
  53. /* ANSI handling with long jumps */
  54. #define LUAI_THROW(L,c) longjmp((c)->b, 1)
  55. #define LUAI_TRY(L,c,a) if (setjmp((c)->b) == 0) { a }
  56. #define luai_jmpbuf jmp_buf
  57. #endif /* } */
  58. #endif /* } */
  59. /* chain list of long jump buffers */
  60. struct lua_longjmp {
  61. struct lua_longjmp *previous;
  62. luai_jmpbuf b;
  63. volatile int status; /* error code */
  64. };
  65. static void seterrorobj (lua_State *L, int errcode, StkId oldtop) {
  66. switch (errcode) {
  67. case LUA_ERRMEM: { /* memory error? */
  68. setsvalue2s(L, oldtop, G(L)->memerrmsg); /* reuse preregistered msg. */
  69. break;
  70. }
  71. case LUA_ERRERR: {
  72. setsvalue2s(L, oldtop, luaS_newliteral(L, "error in error handling"));
  73. break;
  74. }
  75. default: {
  76. setobjs2s(L, oldtop, L->top - 1); /* error message on current top */
  77. break;
  78. }
  79. }
  80. L->top = oldtop + 1;
  81. }
  82. l_noret luaD_throw (lua_State *L, int errcode) {
  83. if (L->errorJmp) { /* thread has an error handler? */
  84. L->errorJmp->status = errcode; /* set status */
  85. LUAI_THROW(L, L->errorJmp); /* jump to it */
  86. }
  87. else { /* thread has no error handler */
  88. global_State *g = G(L);
  89. L->status = cast_byte(errcode); /* mark it as dead */
  90. if (g->mainthread->errorJmp) { /* main thread has a handler? */
  91. setobjs2s(L, g->mainthread->top++, L->top - 1); /* copy error obj. */
  92. luaD_throw(g->mainthread, errcode); /* re-throw in main thread */
  93. }
  94. else { /* no handler at all; abort */
  95. if (g->panic) { /* panic function? */
  96. lua_unlock(L);
  97. g->panic(L); /* call it (last chance to jump out) */
  98. }
  99. abort();
  100. }
  101. }
  102. }
  103. int luaD_rawrunprotected (lua_State *L, Pfunc f, void *ud) {
  104. unsigned short oldnCcalls = L->nCcalls;
  105. struct lua_longjmp lj;
  106. lj.status = LUA_OK;
  107. lj.previous = L->errorJmp; /* chain new error handler */
  108. L->errorJmp = &lj;
  109. LUAI_TRY(L, &lj,
  110. (*f)(L, ud);
  111. );
  112. L->errorJmp = lj.previous; /* restore old error handler */
  113. L->nCcalls = oldnCcalls;
  114. return lj.status;
  115. }
  116. /* }====================================================== */
  117. static void correctstack (lua_State *L, TValue *oldstack) {
  118. CallInfo *ci;
  119. UpVal *up;
  120. L->top = (L->top - oldstack) + L->stack;
  121. for (up = L->openupval; up != NULL; up = up->u.open.next)
  122. up->v = (up->v - oldstack) + L->stack;
  123. for (ci = L->ci; ci != NULL; ci = ci->previous) {
  124. ci->top = (ci->top - oldstack) + L->stack;
  125. ci->func = (ci->func - oldstack) + L->stack;
  126. if (isLua(ci))
  127. ci->u.l.base = (ci->u.l.base - oldstack) + L->stack;
  128. }
  129. }
  130. /* some space for error handling */
  131. #define ERRORSTACKSIZE (LUAI_MAXSTACK + 200)
  132. void luaD_reallocstack (lua_State *L, int newsize) {
  133. TValue *oldstack = L->stack;
  134. int lim = L->stacksize;
  135. lua_assert(newsize <= LUAI_MAXSTACK || newsize == ERRORSTACKSIZE);
  136. lua_assert(L->stack_last - L->stack == L->stacksize - EXTRA_STACK);
  137. luaM_reallocvector(L, L->stack, L->stacksize, newsize, TValue);
  138. for (; lim < newsize; lim++)
  139. setnilvalue(L->stack + lim); /* erase new segment */
  140. L->stacksize = newsize;
  141. L->stack_last = L->stack + newsize - EXTRA_STACK;
  142. correctstack(L, oldstack);
  143. }
  144. void luaD_growstack (lua_State *L, int n) {
  145. int size = L->stacksize;
  146. if (size > LUAI_MAXSTACK) /* error after extra size? */
  147. luaD_throw(L, LUA_ERRERR);
  148. else {
  149. int needed = cast_int(L->top - L->stack) + n + EXTRA_STACK;
  150. int newsize = 2 * size;
  151. if (newsize > LUAI_MAXSTACK) newsize = LUAI_MAXSTACK;
  152. if (newsize < needed) newsize = needed;
  153. if (newsize > LUAI_MAXSTACK) { /* stack overflow? */
  154. luaD_reallocstack(L, ERRORSTACKSIZE);
  155. luaG_runerror(L, "stack overflow");
  156. }
  157. else
  158. luaD_reallocstack(L, newsize);
  159. }
  160. }
  161. static int stackinuse (lua_State *L) {
  162. CallInfo *ci;
  163. StkId lim = L->top;
  164. for (ci = L->ci; ci != NULL; ci = ci->previous) {
  165. lua_assert(ci->top <= L->stack_last);
  166. if (lim < ci->top) lim = ci->top;
  167. }
  168. return cast_int(lim - L->stack) + 1; /* part of stack in use */
  169. }
  170. void luaD_shrinkstack (lua_State *L) {
  171. int inuse = stackinuse(L);
  172. int goodsize = inuse + (inuse / 8) + 2*EXTRA_STACK;
  173. if (goodsize > LUAI_MAXSTACK) goodsize = LUAI_MAXSTACK;
  174. if (L->stacksize > LUAI_MAXSTACK) /* was handling stack overflow? */
  175. luaE_freeCI(L); /* free all CIs (list grew because of an error) */
  176. else
  177. luaE_shrinkCI(L); /* shrink list */
  178. if (inuse > LUAI_MAXSTACK || /* still handling stack overflow? */
  179. goodsize >= L->stacksize) /* would grow instead of shrink? */
  180. condmovestack(L); /* don't change stack (change only for debugging) */
  181. else
  182. luaD_reallocstack(L, goodsize); /* shrink it */
  183. }
  184. void luaD_hook (lua_State *L, int event, int line) {
  185. lua_Hook hook = L->hook;
  186. if (hook && L->allowhook) {
  187. CallInfo *ci = L->ci;
  188. ptrdiff_t top = savestack(L, L->top);
  189. ptrdiff_t ci_top = savestack(L, ci->top);
  190. lua_Debug ar;
  191. ar.event = event;
  192. ar.currentline = line;
  193. ar.i_ci = ci;
  194. luaD_checkstack(L, LUA_MINSTACK); /* ensure minimum stack size */
  195. ci->top = L->top + LUA_MINSTACK;
  196. lua_assert(ci->top <= L->stack_last);
  197. L->allowhook = 0; /* cannot call hooks inside a hook */
  198. ci->callstatus |= CIST_HOOKED;
  199. lua_unlock(L);
  200. (*hook)(L, &ar);
  201. lua_lock(L);
  202. lua_assert(!L->allowhook);
  203. L->allowhook = 1;
  204. ci->top = restorestack(L, ci_top);
  205. L->top = restorestack(L, top);
  206. ci->callstatus &= ~CIST_HOOKED;
  207. }
  208. }
  209. static void callhook (lua_State *L, CallInfo *ci) {
  210. int hook = LUA_HOOKCALL;
  211. ci->u.l.savedpc++; /* hooks assume 'pc' is already incremented */
  212. if (isLua(ci->previous) &&
  213. GET_OPCODE(*(ci->previous->u.l.savedpc - 1)) == OP_TAILCALL) {
  214. ci->callstatus |= CIST_TAIL;
  215. hook = LUA_HOOKTAILCALL;
  216. }
  217. luaD_hook(L, hook, -1);
  218. ci->u.l.savedpc--; /* correct 'pc' */
  219. }
  220. static StkId adjust_varargs (lua_State *L, Proto *p, int actual) {
  221. int i;
  222. int nfixargs = p->numparams;
  223. StkId base, fixed;
  224. lua_assert(actual >= nfixargs);
  225. /* move fixed parameters to final position */
  226. luaD_checkstack(L, p->maxstacksize); /* check again for new 'base' */
  227. fixed = L->top - actual; /* first fixed argument */
  228. base = L->top; /* final position of first argument */
  229. for (i=0; i<nfixargs; i++) {
  230. setobjs2s(L, L->top++, fixed + i);
  231. setnilvalue(fixed + i);
  232. }
  233. return base;
  234. }
  235. static StkId tryfuncTM (lua_State *L, StkId func) {
  236. const TValue *tm = luaT_gettmbyobj(L, func, TM_CALL);
  237. StkId p;
  238. ptrdiff_t funcr = savestack(L, func);
  239. if (!ttisfunction(tm))
  240. luaG_typeerror(L, func, "call");
  241. /* Open a hole inside the stack at `func' */
  242. for (p = L->top; p > func; p--) setobjs2s(L, p, p-1);
  243. incr_top(L);
  244. func = restorestack(L, funcr); /* previous call may change stack */
  245. setobj2s(L, func, tm); /* tag method is the new function to be called */
  246. return func;
  247. }
  248. #define next_ci(L) (L->ci = (L->ci->next ? L->ci->next : luaE_extendCI(L)))
  249. /*
  250. ** returns true if function has been executed (C function)
  251. */
  252. int luaD_precall (lua_State *L, StkId func, int nresults) {
  253. lua_CFunction f;
  254. CallInfo *ci;
  255. int n; /* number of arguments (Lua) or returns (C) */
  256. ptrdiff_t funcr = savestack(L, func);
  257. switch (ttype(func)) {
  258. case LUA_TLCF: /* light C function */
  259. f = fvalue(func);
  260. goto Cfunc;
  261. case LUA_TCCL: { /* C closure */
  262. f = clCvalue(func)->f;
  263. Cfunc:
  264. luaD_checkstack(L, LUA_MINSTACK); /* ensure minimum stack size */
  265. ci = next_ci(L); /* now 'enter' new function */
  266. ci->nresults = nresults;
  267. ci->func = restorestack(L, funcr);
  268. ci->top = L->top + LUA_MINSTACK;
  269. lua_assert(ci->top <= L->stack_last);
  270. ci->callstatus = 0;
  271. luaC_checkGC(L); /* stack grow uses memory */
  272. if (L->hookmask & LUA_MASKCALL)
  273. luaD_hook(L, LUA_HOOKCALL, -1);
  274. lua_unlock(L);
  275. n = (*f)(L); /* do the actual call */
  276. lua_lock(L);
  277. api_checknelems(L, n);
  278. luaD_poscall(L, L->top - n);
  279. return 1;
  280. }
  281. case LUA_TLCL: { /* Lua function: prepare its call */
  282. StkId base;
  283. Proto *p = clLvalue(func)->p;
  284. n = cast_int(L->top - func) - 1; /* number of real arguments */
  285. luaD_checkstack(L, p->maxstacksize);
  286. for (; n < p->numparams; n++)
  287. setnilvalue(L->top++); /* complete missing arguments */
  288. if (!p->is_vararg) {
  289. func = restorestack(L, funcr);
  290. base = func + 1;
  291. }
  292. else {
  293. base = adjust_varargs(L, p, n);
  294. func = restorestack(L, funcr); /* previous call can change stack */
  295. }
  296. ci = next_ci(L); /* now 'enter' new function */
  297. ci->nresults = nresults;
  298. ci->func = func;
  299. ci->u.l.base = base;
  300. ci->top = base + p->maxstacksize;
  301. lua_assert(ci->top <= L->stack_last);
  302. ci->u.l.savedpc = p->code; /* starting point */
  303. ci->callstatus = CIST_LUA;
  304. L->top = ci->top;
  305. luaC_checkGC(L); /* stack grow uses memory */
  306. if (L->hookmask & LUA_MASKCALL)
  307. callhook(L, ci);
  308. return 0;
  309. }
  310. default: { /* not a function */
  311. func = tryfuncTM(L, func); /* retry with 'function' tag method */
  312. return luaD_precall(L, func, nresults); /* now it must be a function */
  313. }
  314. }
  315. }
  316. int luaD_poscall (lua_State *L, StkId firstResult) {
  317. StkId res;
  318. int wanted, i;
  319. CallInfo *ci = L->ci;
  320. if (L->hookmask & (LUA_MASKRET | LUA_MASKLINE)) {
  321. if (L->hookmask & LUA_MASKRET) {
  322. ptrdiff_t fr = savestack(L, firstResult); /* hook may change stack */
  323. luaD_hook(L, LUA_HOOKRET, -1);
  324. firstResult = restorestack(L, fr);
  325. }
  326. L->oldpc = ci->previous->u.l.savedpc; /* 'oldpc' for caller function */
  327. }
  328. res = ci->func; /* res == final position of 1st result */
  329. wanted = ci->nresults;
  330. L->ci = ci = ci->previous; /* back to caller */
  331. /* move results to correct place */
  332. for (i = wanted; i != 0 && firstResult < L->top; i--)
  333. setobjs2s(L, res++, firstResult++);
  334. while (i-- > 0)
  335. setnilvalue(res++);
  336. L->top = res;
  337. return (wanted - LUA_MULTRET); /* 0 iff wanted == LUA_MULTRET */
  338. }
  339. /*
  340. ** Call a function (C or Lua). The function to be called is at *func.
  341. ** The arguments are on the stack, right after the function.
  342. ** When returns, all the results are on the stack, starting at the original
  343. ** function position.
  344. */
  345. void luaD_call (lua_State *L, StkId func, int nResults, int allowyield) {
  346. if (++L->nCcalls >= LUAI_MAXCCALLS) {
  347. if (L->nCcalls == LUAI_MAXCCALLS)
  348. luaG_runerror(L, "C stack overflow");
  349. else if (L->nCcalls >= (LUAI_MAXCCALLS + (LUAI_MAXCCALLS>>3)))
  350. luaD_throw(L, LUA_ERRERR); /* error while handing stack error */
  351. }
  352. if (!allowyield) L->nny++;
  353. if (!luaD_precall(L, func, nResults)) /* is a Lua function? */
  354. luaV_execute(L); /* call it */
  355. if (!allowyield) L->nny--;
  356. L->nCcalls--;
  357. }
  358. /*
  359. ** Completes the execution of an interrupted C function, calling its
  360. ** continuation function.
  361. */
  362. static void finishCcall (lua_State *L, int status) {
  363. CallInfo *ci = L->ci;
  364. int n;
  365. /* must have a continuation and must be able to call it */
  366. lua_assert(ci->u.c.k != NULL && L->nny == 0);
  367. /* error status can only happen in a protected call */
  368. lua_assert((ci->callstatus & CIST_YPCALL) || status == LUA_YIELD);
  369. if (ci->callstatus & CIST_YPCALL) { /* was inside a pcall? */
  370. ci->callstatus &= ~CIST_YPCALL; /* finish 'lua_pcall' */
  371. L->errfunc = ci->u.c.old_errfunc;
  372. }
  373. /* finish 'lua_callk'/'lua_pcall'; CIST_YPCALL and 'errfunc' already
  374. handled */
  375. adjustresults(L, ci->nresults);
  376. /* call continuation function */
  377. lua_unlock(L);
  378. n = (*ci->u.c.k)(L, status, ci->u.c.ctx);
  379. lua_lock(L);
  380. api_checknelems(L, n);
  381. /* finish 'luaD_precall' */
  382. luaD_poscall(L, L->top - n);
  383. }
  384. /*
  385. ** Executes "full continuation" (everything in the stack) of a
  386. ** previously interrupted coroutine until the stack is empty (or another
  387. ** interruption long-jumps out of the loop). If the coroutine is
  388. ** recovering from an error, 'ud' points to the error status, which must
  389. ** be passed to the first continuation function (otherwise the default
  390. ** status is LUA_YIELD).
  391. */
  392. static void unroll (lua_State *L, void *ud) {
  393. if (ud != NULL) /* error status? */
  394. finishCcall(L, *(int *)ud); /* finish 'lua_pcallk' callee */
  395. while (L->ci != &L->base_ci) { /* something in the stack */
  396. if (!isLua(L->ci)) /* C function? */
  397. finishCcall(L, LUA_YIELD); /* complete its execution */
  398. else { /* Lua function */
  399. luaV_finishOp(L); /* finish interrupted instruction */
  400. luaV_execute(L); /* execute down to higher C 'boundary' */
  401. }
  402. }
  403. }
  404. /*
  405. ** Try to find a suspended protected call (a "recover point") for the
  406. ** given thread.
  407. */
  408. static CallInfo *findpcall (lua_State *L) {
  409. CallInfo *ci;
  410. for (ci = L->ci; ci != NULL; ci = ci->previous) { /* search for a pcall */
  411. if (ci->callstatus & CIST_YPCALL)
  412. return ci;
  413. }
  414. return NULL; /* no pending pcall */
  415. }
  416. /*
  417. ** Recovers from an error in a coroutine. Finds a recover point (if
  418. ** there is one) and completes the execution of the interrupted
  419. ** 'luaD_pcall'. If there is no recover point, returns zero.
  420. */
  421. static int recover (lua_State *L, int status) {
  422. StkId oldtop;
  423. CallInfo *ci = findpcall(L);
  424. if (ci == NULL) return 0; /* no recovery point */
  425. /* "finish" luaD_pcall */
  426. oldtop = restorestack(L, ci->extra);
  427. luaF_close(L, oldtop);
  428. seterrorobj(L, status, oldtop);
  429. L->ci = ci;
  430. L->allowhook = getoah(ci->callstatus); /* restore original 'allowhook' */
  431. L->nny = 0; /* should be zero to be yieldable */
  432. luaD_shrinkstack(L);
  433. L->errfunc = ci->u.c.old_errfunc;
  434. return 1; /* continue running the coroutine */
  435. }
  436. /*
  437. ** signal an error in the call to 'resume', not in the execution of the
  438. ** coroutine itself. (Such errors should not be handled by any coroutine
  439. ** error handler and should not kill the coroutine.)
  440. */
  441. static l_noret resume_error (lua_State *L, const char *msg, StkId firstArg) {
  442. L->top = firstArg; /* remove args from the stack */
  443. setsvalue2s(L, L->top, luaS_new(L, msg)); /* push error message */
  444. api_incr_top(L);
  445. luaD_throw(L, -1); /* jump back to 'lua_resume' */
  446. }
  447. /*
  448. ** Do the work for 'lua_resume' in protected mode. Most of the work
  449. ** depends on the status of the coroutine: initial state, suspended
  450. ** inside a hook, or regularly suspended (optionally with a continuation
  451. ** function), plus erroneous cases: non-suspended coroutine or dead
  452. ** coroutine.
  453. */
  454. static void resume (lua_State *L, void *ud) {
  455. int nCcalls = L->nCcalls;
  456. StkId firstArg = cast(StkId, ud);
  457. CallInfo *ci = L->ci;
  458. if (nCcalls >= LUAI_MAXCCALLS)
  459. resume_error(L, "C stack overflow", firstArg);
  460. if (L->status == LUA_OK) { /* may be starting a coroutine */
  461. if (ci != &L->base_ci) /* not in base level? */
  462. resume_error(L, "cannot resume non-suspended coroutine", firstArg);
  463. /* coroutine is in base level; start running it */
  464. if (!luaD_precall(L, firstArg - 1, LUA_MULTRET)) /* Lua function? */
  465. luaV_execute(L); /* call it */
  466. }
  467. else if (L->status != LUA_YIELD)
  468. resume_error(L, "cannot resume dead coroutine", firstArg);
  469. else { /* resuming from previous yield */
  470. L->status = LUA_OK; /* mark that it is running (again) */
  471. ci->func = restorestack(L, ci->extra);
  472. if (isLua(ci)) /* yielded inside a hook? */
  473. luaV_execute(L); /* just continue running Lua code */
  474. else { /* 'common' yield */
  475. if (ci->u.c.k != NULL) { /* does it have a continuation function? */
  476. int n;
  477. lua_unlock(L);
  478. n = (*ci->u.c.k)(L, LUA_YIELD, ci->u.c.ctx); /* call continuation */
  479. lua_lock(L);
  480. api_checknelems(L, n);
  481. firstArg = L->top - n; /* yield results come from continuation */
  482. }
  483. luaD_poscall(L, firstArg); /* finish 'luaD_precall' */
  484. }
  485. unroll(L, NULL); /* run continuation */
  486. }
  487. lua_assert(nCcalls == L->nCcalls);
  488. }
  489. LUA_API int lua_resume (lua_State *L, lua_State *from, int nargs) {
  490. int status;
  491. int oldnny = L->nny; /* save "number of non-yieldable" calls */
  492. lua_lock(L);
  493. luai_userstateresume(L, nargs);
  494. L->nCcalls = (from) ? from->nCcalls + 1 : 1;
  495. L->nny = 0; /* allow yields */
  496. api_checknelems(L, (L->status == LUA_OK) ? nargs + 1 : nargs);
  497. status = luaD_rawrunprotected(L, resume, L->top - nargs);
  498. if (status == -1) /* error calling 'lua_resume'? */
  499. status = LUA_ERRRUN;
  500. else { /* continue running after recoverable errors */
  501. while (errorstatus(status) && recover(L, status)) {
  502. /* unroll continuation */
  503. status = luaD_rawrunprotected(L, unroll, &status);
  504. }
  505. if (errorstatus(status)) { /* unrecoverable error? */
  506. L->status = cast_byte(status); /* mark thread as `dead' */
  507. seterrorobj(L, status, L->top); /* push error message */
  508. L->ci->top = L->top;
  509. }
  510. else lua_assert(status == L->status); /* normal end or yield */
  511. }
  512. L->nny = oldnny; /* restore 'nny' */
  513. L->nCcalls--;
  514. lua_assert(L->nCcalls == ((from) ? from->nCcalls : 0));
  515. lua_unlock(L);
  516. return status;
  517. }
  518. LUA_API int lua_isyieldable (lua_State *L) {
  519. return (L->nny == 0);
  520. }
  521. LUA_API int lua_yieldk (lua_State *L, int nresults, lua_KContext ctx,
  522. lua_KFunction k) {
  523. CallInfo *ci = L->ci;
  524. luai_userstateyield(L, nresults);
  525. lua_lock(L);
  526. api_checknelems(L, nresults);
  527. if (L->nny > 0) {
  528. if (L != G(L)->mainthread)
  529. luaG_runerror(L, "attempt to yield across a C-call boundary");
  530. else
  531. luaG_runerror(L, "attempt to yield from outside a coroutine");
  532. }
  533. L->status = LUA_YIELD;
  534. ci->extra = savestack(L, ci->func); /* save current 'func' */
  535. if (isLua(ci)) { /* inside a hook? */
  536. api_check(k == NULL, "hooks cannot continue after yielding");
  537. }
  538. else {
  539. if ((ci->u.c.k = k) != NULL) /* is there a continuation? */
  540. ci->u.c.ctx = ctx; /* save context */
  541. ci->func = L->top - nresults - 1; /* protect stack below results */
  542. luaD_throw(L, LUA_YIELD);
  543. }
  544. lua_assert(ci->callstatus & CIST_HOOKED); /* must be inside a hook */
  545. lua_unlock(L);
  546. return 0; /* return to 'luaD_hook' */
  547. }
  548. int luaD_pcall (lua_State *L, Pfunc func, void *u,
  549. ptrdiff_t old_top, ptrdiff_t ef) {
  550. int status;
  551. CallInfo *old_ci = L->ci;
  552. lu_byte old_allowhooks = L->allowhook;
  553. unsigned short old_nny = L->nny;
  554. ptrdiff_t old_errfunc = L->errfunc;
  555. L->errfunc = ef;
  556. status = luaD_rawrunprotected(L, func, u);
  557. if (status != LUA_OK) { /* an error occurred? */
  558. StkId oldtop = restorestack(L, old_top);
  559. luaF_close(L, oldtop); /* close possible pending closures */
  560. seterrorobj(L, status, oldtop);
  561. L->ci = old_ci;
  562. L->allowhook = old_allowhooks;
  563. L->nny = old_nny;
  564. luaD_shrinkstack(L);
  565. }
  566. L->errfunc = old_errfunc;
  567. return status;
  568. }
  569. /*
  570. ** Execute a protected parser.
  571. */
  572. struct SParser { /* data to `f_parser' */
  573. ZIO *z;
  574. Mbuffer buff; /* dynamic structure used by the scanner */
  575. Dyndata dyd; /* dynamic structures used by the parser */
  576. const char *mode;
  577. const char *name;
  578. };
  579. static void checkmode (lua_State *L, const char *mode, const char *x) {
  580. if (mode && strchr(mode, x[0]) == NULL) {
  581. luaO_pushfstring(L,
  582. "attempt to load a %s chunk (mode is '%s')", x, mode);
  583. luaD_throw(L, LUA_ERRSYNTAX);
  584. }
  585. }
  586. static void f_parser (lua_State *L, void *ud) {
  587. LClosure *cl;
  588. struct SParser *p = cast(struct SParser *, ud);
  589. int c = zgetc(p->z); /* read first character */
  590. if (c == LUA_SIGNATURE[0]) {
  591. checkmode(L, p->mode, "binary");
  592. cl = luaU_undump(L, p->z, &p->buff, p->name);
  593. }
  594. else {
  595. checkmode(L, p->mode, "text");
  596. cl = luaY_parser(L, p->z, &p->buff, &p->dyd, p->name, c);
  597. }
  598. lua_assert(cl->nupvalues == cl->p->sizeupvalues);
  599. luaF_initupvals(L, cl);
  600. }
  601. int luaD_protectedparser (lua_State *L, ZIO *z, const char *name,
  602. const char *mode) {
  603. struct SParser p;
  604. int status;
  605. L->nny++; /* cannot yield during parsing */
  606. p.z = z; p.name = name; p.mode = mode;
  607. p.dyd.actvar.arr = NULL; p.dyd.actvar.size = 0;
  608. p.dyd.gt.arr = NULL; p.dyd.gt.size = 0;
  609. p.dyd.label.arr = NULL; p.dyd.label.size = 0;
  610. luaZ_initbuffer(L, &p.buff);
  611. status = luaD_pcall(L, f_parser, &p, savestack(L, L->top), L->errfunc);
  612. luaZ_freebuffer(L, &p.buff);
  613. luaM_freearray(L, p.dyd.actvar.arr, p.dyd.actvar.size);
  614. luaM_freearray(L, p.dyd.gt.arr, p.dyd.gt.size);
  615. luaM_freearray(L, p.dyd.label.arr, p.dyd.label.size);
  616. L->nny--;
  617. return status;
  618. }