mirror of https://github.com/axmolengine/axmol.git
272 lines
8.0 KiB
C
272 lines
8.0 KiB
C
/*
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** $Id: ltm.c $
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** Tag methods
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** See Copyright Notice in lua.h
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*/
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#define ltm_c
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#define LUA_CORE
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#include "lprefix.h"
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#include <string.h>
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#include "lua.h"
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#include "ldebug.h"
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#include "ldo.h"
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#include "lgc.h"
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#include "lobject.h"
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#include "lstate.h"
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#include "lstring.h"
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#include "ltable.h"
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#include "ltm.h"
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#include "lvm.h"
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static const char udatatypename[] = "userdata";
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LUAI_DDEF const char *const luaT_typenames_[LUA_TOTALTYPES] = {
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"no value",
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"nil", "boolean", udatatypename, "number",
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"string", "table", "function", udatatypename, "thread",
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"upvalue", "proto" /* these last cases are used for tests only */
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};
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void luaT_init (lua_State *L) {
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static const char *const luaT_eventname[] = { /* ORDER TM */
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"__index", "__newindex",
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"__gc", "__mode", "__len", "__eq",
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"__add", "__sub", "__mul", "__mod", "__pow",
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"__div", "__idiv",
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"__band", "__bor", "__bxor", "__shl", "__shr",
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"__unm", "__bnot", "__lt", "__le",
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"__concat", "__call", "__close"
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};
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int i;
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for (i=0; i<TM_N; i++) {
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G(L)->tmname[i] = luaS_new(L, luaT_eventname[i]);
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luaC_fix(L, obj2gco(G(L)->tmname[i])); /* never collect these names */
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}
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}
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/*
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** function to be used with macro "fasttm": optimized for absence of
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** tag methods
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*/
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const TValue *luaT_gettm (Table *events, TMS event, TString *ename) {
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const TValue *tm = luaH_getshortstr(events, ename);
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lua_assert(event <= TM_EQ);
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if (notm(tm)) { /* no tag method? */
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events->flags |= cast_byte(1u<<event); /* cache this fact */
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return NULL;
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}
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else return tm;
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}
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const TValue *luaT_gettmbyobj (lua_State *L, const TValue *o, TMS event) {
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Table *mt;
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switch (ttype(o)) {
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case LUA_TTABLE:
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mt = hvalue(o)->metatable;
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break;
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case LUA_TUSERDATA:
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mt = uvalue(o)->metatable;
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break;
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default:
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mt = G(L)->mt[ttype(o)];
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}
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return (mt ? luaH_getshortstr(mt, G(L)->tmname[event]) : &G(L)->nilvalue);
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}
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/*
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** Return the name of the type of an object. For tables and userdata
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** with metatable, use their '__name' metafield, if present.
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*/
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const char *luaT_objtypename (lua_State *L, const TValue *o) {
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Table *mt;
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if ((ttistable(o) && (mt = hvalue(o)->metatable) != NULL) ||
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(ttisfulluserdata(o) && (mt = uvalue(o)->metatable) != NULL)) {
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const TValue *name = luaH_getshortstr(mt, luaS_new(L, "__name"));
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if (ttisstring(name)) /* is '__name' a string? */
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return getstr(tsvalue(name)); /* use it as type name */
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}
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return ttypename(ttype(o)); /* else use standard type name */
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}
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void luaT_callTM (lua_State *L, const TValue *f, const TValue *p1,
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const TValue *p2, const TValue *p3) {
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StkId func = L->top;
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setobj2s(L, func, f); /* push function (assume EXTRA_STACK) */
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setobj2s(L, func + 1, p1); /* 1st argument */
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setobj2s(L, func + 2, p2); /* 2nd argument */
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setobj2s(L, func + 3, p3); /* 3rd argument */
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L->top = func + 4;
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/* metamethod may yield only when called from Lua code */
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if (isLuacode(L->ci))
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luaD_call(L, func, 0);
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else
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luaD_callnoyield(L, func, 0);
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}
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void luaT_callTMres (lua_State *L, const TValue *f, const TValue *p1,
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const TValue *p2, StkId res) {
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ptrdiff_t result = savestack(L, res);
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StkId func = L->top;
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setobj2s(L, func, f); /* push function (assume EXTRA_STACK) */
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setobj2s(L, func + 1, p1); /* 1st argument */
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setobj2s(L, func + 2, p2); /* 2nd argument */
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L->top += 3;
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/* metamethod may yield only when called from Lua code */
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if (isLuacode(L->ci))
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luaD_call(L, func, 1);
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else
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luaD_callnoyield(L, func, 1);
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res = restorestack(L, result);
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setobjs2s(L, res, --L->top); /* move result to its place */
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}
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static int callbinTM (lua_State *L, const TValue *p1, const TValue *p2,
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StkId res, TMS event) {
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const TValue *tm = luaT_gettmbyobj(L, p1, event); /* try first operand */
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if (notm(tm))
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tm = luaT_gettmbyobj(L, p2, event); /* try second operand */
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if (notm(tm)) return 0;
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luaT_callTMres(L, tm, p1, p2, res);
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return 1;
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}
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void luaT_trybinTM (lua_State *L, const TValue *p1, const TValue *p2,
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StkId res, TMS event) {
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if (l_unlikely(!callbinTM(L, p1, p2, res, event))) {
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switch (event) {
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case TM_BAND: case TM_BOR: case TM_BXOR:
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case TM_SHL: case TM_SHR: case TM_BNOT: {
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if (ttisnumber(p1) && ttisnumber(p2))
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luaG_tointerror(L, p1, p2);
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else
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luaG_opinterror(L, p1, p2, "perform bitwise operation on");
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}
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/* calls never return, but to avoid warnings: *//* FALLTHROUGH */
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default:
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luaG_opinterror(L, p1, p2, "perform arithmetic on");
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}
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}
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}
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void luaT_tryconcatTM (lua_State *L) {
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StkId top = L->top;
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if (l_unlikely(!callbinTM(L, s2v(top - 2), s2v(top - 1), top - 2,
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TM_CONCAT)))
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luaG_concaterror(L, s2v(top - 2), s2v(top - 1));
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}
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void luaT_trybinassocTM (lua_State *L, const TValue *p1, const TValue *p2,
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int flip, StkId res, TMS event) {
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if (flip)
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luaT_trybinTM(L, p2, p1, res, event);
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else
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luaT_trybinTM(L, p1, p2, res, event);
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}
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void luaT_trybiniTM (lua_State *L, const TValue *p1, lua_Integer i2,
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int flip, StkId res, TMS event) {
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TValue aux;
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setivalue(&aux, i2);
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luaT_trybinassocTM(L, p1, &aux, flip, res, event);
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}
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/*
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** Calls an order tag method.
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** For lessequal, LUA_COMPAT_LT_LE keeps compatibility with old
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** behavior: if there is no '__le', try '__lt', based on l <= r iff
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** !(r < l) (assuming a total order). If the metamethod yields during
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** this substitution, the continuation has to know about it (to negate
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** the result of r<l); bit CIST_LEQ in the call status keeps that
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** information.
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*/
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int luaT_callorderTM (lua_State *L, const TValue *p1, const TValue *p2,
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TMS event) {
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if (callbinTM(L, p1, p2, L->top, event)) /* try original event */
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return !l_isfalse(s2v(L->top));
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#if defined(LUA_COMPAT_LT_LE)
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else if (event == TM_LE) {
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/* try '!(p2 < p1)' for '(p1 <= p2)' */
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L->ci->callstatus |= CIST_LEQ; /* mark it is doing 'lt' for 'le' */
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if (callbinTM(L, p2, p1, L->top, TM_LT)) {
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L->ci->callstatus ^= CIST_LEQ; /* clear mark */
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return l_isfalse(s2v(L->top));
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}
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/* else error will remove this 'ci'; no need to clear mark */
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}
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#endif
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luaG_ordererror(L, p1, p2); /* no metamethod found */
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return 0; /* to avoid warnings */
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}
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int luaT_callorderiTM (lua_State *L, const TValue *p1, int v2,
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int flip, int isfloat, TMS event) {
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TValue aux; const TValue *p2;
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if (isfloat) {
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setfltvalue(&aux, cast_num(v2));
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}
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else
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setivalue(&aux, v2);
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if (flip) { /* arguments were exchanged? */
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p2 = p1; p1 = &aux; /* correct them */
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}
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else
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p2 = &aux;
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return luaT_callorderTM(L, p1, p2, event);
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}
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void luaT_adjustvarargs (lua_State *L, int nfixparams, CallInfo *ci,
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const Proto *p) {
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int i;
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int actual = cast_int(L->top - ci->func) - 1; /* number of arguments */
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int nextra = actual - nfixparams; /* number of extra arguments */
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ci->u.l.nextraargs = nextra;
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luaD_checkstack(L, p->maxstacksize + 1);
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/* copy function to the top of the stack */
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setobjs2s(L, L->top++, ci->func);
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/* move fixed parameters to the top of the stack */
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for (i = 1; i <= nfixparams; i++) {
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setobjs2s(L, L->top++, ci->func + i);
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setnilvalue(s2v(ci->func + i)); /* erase original parameter (for GC) */
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}
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ci->func += actual + 1;
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ci->top += actual + 1;
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lua_assert(L->top <= ci->top && ci->top <= L->stack_last);
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}
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void luaT_getvarargs (lua_State *L, CallInfo *ci, StkId where, int wanted) {
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int i;
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int nextra = ci->u.l.nextraargs;
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if (wanted < 0) {
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wanted = nextra; /* get all extra arguments available */
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checkstackGCp(L, nextra, where); /* ensure stack space */
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L->top = where + nextra; /* next instruction will need top */
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}
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for (i = 0; i < wanted && i < nextra; i++)
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setobjs2s(L, where + i, ci->func - nextra + i);
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for (; i < wanted; i++) /* complete required results with nil */
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setnilvalue(s2v(where + i));
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}
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