lua/ldo.c

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/*
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** $Id: ldo.c,v 1.84 2000/08/09 19:16:57 roberto Exp roberto $
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** Stack and Call structure of Lua
** See Copyright Notice in lua.h
*/
#include <setjmp.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
#include "lua.h"
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#include "lauxlib.h"
#include "ldebug.h"
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#include "ldo.h"
#include "lgc.h"
#include "lmem.h"
#include "lobject.h"
#include "lparser.h"
#include "lstate.h"
#include "lstring.h"
#include "ltable.h"
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#include "ltm.h"
#include "lundump.h"
#include "lvm.h"
#include "lzio.h"
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#define EXTRA_STACK 32 /* space to handle stack overflow errors */
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/*
** typical numer of stack slots used by a (big) function
** (this constant is used only for choosing error messages)
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*/
#define SLOTS_PER_F 20
void luaD_init (lua_State *L, int stacksize) {
L->stack = luaM_newvector(L, stacksize+EXTRA_STACK, TObject);
L->stack_last = L->stack+(stacksize-1);
L->stacksize = stacksize;
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L->Cstack.base = L->Cstack.lua2C = L->top = L->stack;
L->Cstack.num = 0;
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}
void luaD_checkstack (lua_State *L, int n) {
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if (L->stack_last-L->top <= n) { /* stack overflow? */
if (L->stack_last-L->stack > (L->stacksize-1)) {
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/* overflow while handling overflow: do what?? */
L->top -= EXTRA_STACK;
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lua_error(L, "BAD STACK OVERFLOW! DATA CORRUPTED!");
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}
else {
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lua_Debug dummy;
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L->stack_last += EXTRA_STACK; /* to be used by error message */
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if (lua_getstack(L, L->stacksize/SLOTS_PER_F, &dummy) == 0) {
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/* too few funcs on stack: doesn't look like a recursion loop */
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lua_error(L, "Lua2C - C2Lua overflow");
}
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else
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lua_error(L, "stack overflow; possible recursion loop");
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}
}
}
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static void restore_stack_limit (lua_State *L) {
if (L->top-L->stack < L->stacksize-1)
L->stack_last = L->stack+(L->stacksize-1);
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}
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/*
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** Adjust stack. Set top to base+extra, pushing NILs if needed.
** (we cannot add base+extra unless we are sure it fits in the stack;
** otherwise the result of such operation on pointers is undefined)
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*/
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void luaD_adjusttop (lua_State *L, StkId base, int extra) {
int diff = extra-(L->top-base);
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if (diff <= 0)
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L->top = base+extra;
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else {
luaD_checkstack(L, diff);
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while (diff--)
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ttype(L->top++) = TAG_NIL;
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}
}
/*
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** Open a hole inside the stack at `pos'
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*/
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void luaD_openstack (lua_State *L, StkId pos) {
int i = L->top-pos;
while (i--) pos[i+1] = pos[i];
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incr_top;
}
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void luaD_lineHook (lua_State *L, StkId func, int line, lua_Hook linehook) {
if (L->allowhooks) {
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lua_Debug ar;
struct C_Lua_Stack oldCLS = L->Cstack;
StkId old_top = L->Cstack.lua2C = L->Cstack.base = L->top;
L->Cstack.num = 0;
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ar._func = func;
ar.event = "line";
ar.currentline = line;
L->allowhooks = 0; /* cannot call hooks inside a hook */
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(*linehook)(L, &ar);
L->allowhooks = 1;
L->top = old_top;
L->Cstack = oldCLS;
}
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}
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static void luaD_callHook (lua_State *L, StkId func, lua_Hook callhook,
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const char *event) {
if (L->allowhooks) {
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lua_Debug ar;
struct C_Lua_Stack oldCLS = L->Cstack;
StkId old_top = L->Cstack.lua2C = L->Cstack.base = L->top;
L->Cstack.num = 0;
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ar._func = func;
ar.event = event;
L->allowhooks = 0; /* cannot call hooks inside a hook */
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callhook(L, &ar);
L->allowhooks = 1;
L->top = old_top;
L->Cstack = oldCLS;
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}
}
static StkId callCclosure (lua_State *L, const struct Closure *cl, StkId base) {
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int nup = cl->nupvalues; /* number of upvalues */
int numarg = L->top-base;
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struct C_Lua_Stack oldCLS = L->Cstack;
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StkId firstResult;
if (nup > 0) {
int n = numarg;
luaD_checkstack(L, nup);
/* open space for upvalues as extra arguments */
while (n--) *(base+nup+n) = *(base+n);
L->top += nup;
numarg += nup;
/* copy upvalues into stack */
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while (nup--) *(base+nup) = cl->upvalue[nup];
}
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L->Cstack.num = numarg;
L->Cstack.lua2C = base;
L->Cstack.base = L->top;
(*cl->f.c)(L); /* do the actual call */
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firstResult = L->Cstack.base;
L->Cstack = oldCLS;
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return firstResult;
}
void luaD_callTM (lua_State *L, const TObject *f, int nParams, int nResults) {
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StkId base = L->top - nParams;
luaD_openstack(L, base);
*base = *f;
luaD_call(L, base, nResults);
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}
/*
** Call a function (C or Lua). The function to be called is at *func.
** The arguments are on the stack, right after the function.
** When returns, the results are on the stack, starting at the original
** function position.
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** The number of results is nResults, unless nResults=MULT_RET.
*/
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void luaD_call (lua_State *L, StkId func, int nResults) {
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StkId firstResult;
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lua_Hook callhook = L->callhook;
retry: /* for `function' tag method */
switch (ttype(func)) {
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case TAG_LCLOSURE: {
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CallInfo ci;
ci.func = clvalue(func);
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ci.line = 0;
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ttype(func) = TAG_LMARK;
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infovalue(func) = &ci;
if (callhook)
luaD_callHook(L, func, callhook, "call");
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firstResult = luaV_execute(L, ci.func, func+1);
break;
}
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case TAG_CCLOSURE: {
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ttype(func) = TAG_CMARK;
if (callhook)
luaD_callHook(L, func, callhook, "call");
firstResult = callCclosure(L, clvalue(func), func+1);
break;
}
default: { /* `func' is not a function; check the `function' tag method */
const TObject *im = luaT_getimbyObj(L, func, IM_FUNCTION);
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if (ttype(im) == TAG_NIL)
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luaG_typeerror(L, func, "call");
luaD_openstack(L, func);
*func = *im; /* tag method is the new function to be called */
goto retry; /* retry the call */
}
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}
if (callhook) /* same hook that was active at entry */
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luaD_callHook(L, func, callhook, "return");
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/* adjust the number of results */
if (nResults == MULT_RET)
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nResults = L->top - firstResult;
else
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luaD_adjusttop(L, firstResult, nResults);
/* move results to `func' (to erase parameters and function) */
while (nResults) {
*func++ = *(L->top - nResults);
nResults--;
}
L->top = func;
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}
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static void message (lua_State *L, const char *s) {
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const TObject *em = luaH_getglobal(L, LUA_ERRORMESSAGE);
if (*luaO_typename(em) == 'f') {
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*L->top = *em;
incr_top;
lua_pushstring(L, s);
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luaD_call(L, L->top-2, 0);
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}
}
void luaD_breakrun (lua_State *L, int errcode) {
if (L->errorJmp) {
L->errorJmp->status = errcode;
longjmp(L->errorJmp->b, 1);
}
else {
if (errcode != LUA_ERRMEM)
message(L, "unable to recover; exiting\n");
exit(1);
}
}
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/*
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** Reports an error, and jumps up to the available recovery label
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*/
void lua_error (lua_State *L, const char *s) {
if (s) message(L, s);
luaD_breakrun(L, LUA_ERRRUN);
}
static void chain_longjmp (lua_State *L, struct lua_longjmp *lj) {
lj->base = L->Cstack.base;
lj->numCblocks = L->numCblocks;
lj->previous = L->errorJmp;
L->errorJmp = lj;
}
static void restore_longjmp (lua_State *L, struct lua_longjmp *lj) {
L->Cstack.num = 0; /* no results */
L->top = L->Cstack.base = L->Cstack.lua2C = lj->base;
L->numCblocks = lj->numCblocks;
L->errorJmp = lj->previous;
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}
/*
** Execute a protected call. Assumes that function is at Cstack.base and
** parameters are on top of it.
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*/
int luaD_protectedrun (lua_State *L) {
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struct lua_longjmp myErrorJmp;
chain_longjmp(L, &myErrorJmp);
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if (setjmp(myErrorJmp.b) == 0) {
StkId base = L->Cstack.base;
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luaD_call(L, base, MULT_RET);
L->Cstack.lua2C = base; /* position of the new results */
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L->Cstack.num = L->top - base;
L->Cstack.base = base + L->Cstack.num; /* incorporate results on stack */
L->errorJmp = myErrorJmp.previous;
return 0;
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}
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else { /* an error occurred: restore the stack */
restore_longjmp(L, &myErrorJmp);
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restore_stack_limit(L);
return myErrorJmp.status;
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}
}
/*
** returns 0 = chunk loaded; >0 : error; -1 = no more chunks to load
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*/
static int protectedparser (lua_State *L, ZIO *z, int bin) {
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struct lua_longjmp myErrorJmp;
chain_longjmp(L, &myErrorJmp);
L->top = L->Cstack.base; /* clear C2Lua */
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if (setjmp(myErrorJmp.b) == 0) {
Proto *tf = bin ? luaU_undump1(L, z) : luaY_parser(L, z);
L->errorJmp = myErrorJmp.previous;
if (tf == NULL) return -1; /* `natural' end */
luaV_Lclosure(L, tf, 0);
return 0;
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}
else { /* an error occurred */
restore_longjmp(L, &myErrorJmp);
if (myErrorJmp.status == LUA_ERRRUN)
myErrorJmp.status = LUA_ERRSYNTAX;
return myErrorJmp.status; /* error code */
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}
}
static int do_main (lua_State *L, ZIO *z, int bin) {
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int status;
do {
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unsigned long old_blocks;
luaC_checkGC(L);
old_blocks = L->nblocks;
status = protectedparser(L, z, bin);
if (status > 0) return status; /* error */
else if (status < 0) return 0; /* `natural' end */
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else {
unsigned long newelems2 = 2*(L->nblocks-old_blocks);
L->GCthreshold += newelems2;
status = luaD_protectedrun(L);
L->GCthreshold -= newelems2;
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}
} while (bin && status == 0);
return status;
}
int lua_dofile (lua_State *L, const char *filename) {
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ZIO z;
int status;
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int bin; /* flag for file mode */
int c; /* look ahead char */
char source[MAXFILENAME];
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FILE *f = (filename == NULL) ? stdin : fopen(filename, "r");
if (f == NULL) return 2; /* unable to open file */
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luaL_filesource(source, filename, sizeof(source));
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c = fgetc(f);
ungetc(c, f);
bin = (c == ID_CHUNK);
if (bin && f != stdin) {
f = freopen(filename, "rb", f); /* set binary mode */
if (f == NULL) return 2; /* unable to reopen file */
}
luaZ_Fopen(&z, f, source);
status = do_main(L, &z, bin);
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if (f != stdin)
fclose(f);
return status;
}
int lua_dostring (lua_State *L, const char *str) {
return lua_dobuffer(L, str, strlen(str), str);
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}
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int lua_dobuffer (lua_State *L, const char *buff, size_t size,
const char *name) {
ZIO z;
if (!name) name = "?";
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luaZ_mopen(&z, buff, size, name);
return do_main(L, &z, buff[0]==ID_CHUNK);
}
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