lua/lfunc.c

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/*
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** $Id: lfunc.c,v 1.45 2001/06/28 14:57:17 roberto Exp $
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** Auxiliary functions to manipulate prototypes and closures
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** See Copyright Notice in lua.h
*/
#include <stdlib.h>
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#define LUA_PRIVATE
#include "lua.h"
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#include "lfunc.h"
#include "lmem.h"
#include "lobject.h"
#include "lstate.h"
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#define sizeCclosure(n) (cast(int, sizeof(Closure)) + \
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cast(int, sizeof(TObject)*((n)-1)))
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#define sizeLclosure(n) (cast(int, sizeof(Closure)) + \
cast(int, sizeof(TObject *)*((n)-1)))
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Closure *luaF_newCclosure (lua_State *L, int nelems) {
Closure *c = cast(Closure *, luaM_malloc(L, sizeCclosure(nelems)));
c->isC = 1;
c->next = G(L)->rootcl;
G(L)->rootcl = c;
c->mark = c;
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c->nupvalues = nelems;
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return c;
}
Closure *luaF_newLclosure (lua_State *L, int nelems) {
Closure *c = cast(Closure *, luaM_malloc(L, sizeLclosure(nelems)));
c->isC = 0;
c->mark = c;
c->u.l.isopen = 0;
c->nupvalues = nelems;
return c;
}
/*
** returns the open pointer in a closure that points higher into the stack
*/
static StkId uppoint (Closure *cl) {
StkId lp = NULL;
int i;
lua_assert(cl->u.l.isopen);
for (i=0; i<cl->nupvalues; i++) {
if (!luaF_isclosed(cl, i))
if (lp == NULL || cl->u.l.upvals[i] > lp)
lp = cl->u.l.upvals[i];
}
lua_assert(lp != NULL);
return lp;
}
void luaF_LConlist (lua_State *L, Closure *cl) {
lua_assert(!cl->isC);
if (cl->u.l.isopen == 0) { /* no more open entries? */
cl->next = G(L)->rootcl; /* insert in final list */
G(L)->rootcl = cl;
}
else { /* insert in list of open closures, ordered by decreasing uppoints */
StkId cli = uppoint(cl);
Closure **p = &L->opencl;
while (*p != NULL && uppoint(*p) > cli) p = &(*p)->next;
cl->next = *p;
*p = cl;
}
}
static int closeCl (lua_State *L, Closure *cl, StkId level) {
int got = 0; /* flag: 1 if some pointer in the closure was corrected */
int i;
for (i=0; i<cl->nupvalues; i++) {
StkId var;
if (!luaF_isclosed(cl, i) && (var=cl->u.l.upvals[i]) >= level) {
if (ttype(var) != LUA_TUPVAL) {
UpVal *v = luaM_new(L, UpVal);
v->val = *var;
v->marked = 0;
v->next = G(L)->rootupval;
G(L)->rootupval = v;
setupvalue(var, v);
}
cl->u.l.upvals[i] = cast(TObject *, vvalue(var));
luaF_closeentry(cl, i);
got = 1;
}
}
return got;
}
void luaF_close (lua_State *L, StkId level) {
Closure *affected = NULL; /* closures with open pointers >= level */
Closure *cl;
while ((cl=L->opencl) != NULL) {
if (!closeCl(L, cl, level)) break;
/* some pointer in `cl' changed; will re-insert it in original list */
L->opencl = cl->next; /* remove from original list */
cl->next = affected;
affected = cl; /* insert in affected list */
}
/* re-insert all affected closures in original list */
while ((cl=affected) != NULL) {
affected = cl->next;
luaF_LConlist(L, cl);
}
}
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Proto *luaF_newproto (lua_State *L) {
Proto *f = luaM_new(L, Proto);
f->k = NULL;
f->sizek = 0;
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f->p = NULL;
f->sizep = 0;
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f->code = NULL;
f->sizecode = 0;
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f->nupvalues = 0;
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f->numparams = 0;
f->is_vararg = 0;
f->maxstacksize = 0;
f->marked = 0;
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f->lineinfo = NULL;
f->sizelocvars = 0;
f->sizelineinfo = 0;
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f->locvars = NULL;
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f->lineDefined = 0;
f->source = NULL;
f->next = G(L)->rootproto; /* chain in list of protos */
G(L)->rootproto = f;
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return f;
}
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void luaF_freeproto (lua_State *L, Proto *f) {
luaM_freearray(L, f->code, f->sizecode, Instruction);
luaM_freearray(L, f->locvars, f->sizelocvars, struct LocVar);
luaM_freearray(L, f->k, f->sizek, TObject);
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luaM_freearray(L, f->p, f->sizep, Proto *);
luaM_freearray(L, f->lineinfo, f->sizelineinfo, int);
luaM_freelem(L, f);
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}
void luaF_freeclosure (lua_State *L, Closure *c) {
int size = (c->isC) ? sizeCclosure(c->nupvalues) : sizeLclosure(c->nupvalues);
luaM_free(L, c, size);
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}
/*
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** Look for n-th local variable at line `line' in function `func'.
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** Returns NULL if not found.
*/
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const l_char *luaF_getlocalname (const Proto *f, int local_number, int pc) {
int i;
for (i = 0; i<f->sizelocvars && f->locvars[i].startpc <= pc; i++) {
if (pc < f->locvars[i].endpc) { /* is variable active? */
local_number--;
if (local_number == 0)
return getstr(f->locvars[i].varname);
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}
}
return NULL; /* not found */
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}