mirror of
https://github.com/lua/lua
synced 2024-11-22 21:01:26 +03:00
424 lines
10 KiB
C
424 lines
10 KiB
C
/*
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** $Id: lobject.h,v 2.42 2010/07/26 15:53:23 roberto Exp roberto $
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** Type definitions for Lua objects
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** See Copyright Notice in lua.h
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*/
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#ifndef lobject_h
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#define lobject_h
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#include <stdarg.h>
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#include "llimits.h"
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#include "lua.h"
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/*
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** Extra tags for non-values
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*/
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#define LUA_TPROTO LUA_NUMTAGS
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#define LUA_TUPVAL (LUA_NUMTAGS+1)
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#define LUA_TDEADKEY (LUA_NUMTAGS+2)
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/*
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** Variant tag for light C functions (negative to be considered
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** non collectable by 'iscollectable')
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*/
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#define LUA_TLCF (~0x0F | LUA_TFUNCTION)
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/*
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** Union of all collectable objects
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*/
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typedef union GCObject GCObject;
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/*
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** Common Header for all collectable objects (in macro form, to be
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** included in other objects)
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*/
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#define CommonHeader GCObject *next; lu_byte tt; lu_byte marked
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/*
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** Common header in struct form
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*/
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typedef struct GCheader {
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CommonHeader;
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} GCheader;
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/*
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** Union of all Lua values
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*/
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typedef union {
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GCObject *gc; /* collectable objects */
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void *p; /* light userdata */
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lua_Number n; /* numbers */
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int b; /* booleans */
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lua_CFunction f; /* light C functions */
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} Value;
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/*
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** Tagged Values. This is the basic representation of values in Lua,
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** an actual value plus a tag with its type.
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*/
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#define TValuefields Value value_; int tt_
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typedef struct lua_TValue {
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TValuefields;
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} TValue;
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/* macro defining a nil value */
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#define NILCONSTANT {NULL}, LUA_TNIL
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/*
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** type tag of a TValue
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*/
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#define ttype(o) ((o)->tt_)
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/*
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** type tag of a TValue with no variants
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*/
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#define ttypenv(o) (ttype(o) & 0x0F)
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/* Macros to test type */
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#define ttisnil(o) (ttype(o) == LUA_TNIL)
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#define ttisnumber(o) (ttype(o) == LUA_TNUMBER)
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#define ttisstring(o) (ttype(o) == LUA_TSTRING)
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#define ttistable(o) (ttype(o) == LUA_TTABLE)
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#define ttisfunction(o) (ttypenv(o) == LUA_TFUNCTION)
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#define ttisclosure(o) (ttype(o) == LUA_TFUNCTION)
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#define ttislcf(o) (ttype(o) == LUA_TLCF)
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#define ttisboolean(o) (ttype(o) == LUA_TBOOLEAN)
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#define ttisuserdata(o) (ttype(o) == LUA_TUSERDATA)
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#define ttisthread(o) (ttype(o) == LUA_TTHREAD)
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#define ttislightuserdata(o) (ttype(o) == LUA_TLIGHTUSERDATA)
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#define ttisdeadkey(o) (ttype(o) == LUA_TDEADKEY)
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/* Macros to access values */
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#define gcvalue(o) check_exp(iscollectable(o), (o)->value_.gc)
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#define pvalue(o) check_exp(ttislightuserdata(o), (o)->value_.p)
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#define nvalue(o) check_exp(ttisnumber(o), (o)->value_.n)
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#define rawtsvalue(o) check_exp(ttisstring(o), &(o)->value_.gc->ts)
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#define tsvalue(o) (&rawtsvalue(o)->tsv)
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#define rawuvalue(o) check_exp(ttisuserdata(o), &(o)->value_.gc->u)
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#define uvalue(o) (&rawuvalue(o)->uv)
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#define clvalue(o) check_exp(ttisclosure(o), &(o)->value_.gc->cl)
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#define fvalue(o) check_exp(ttislcf(o), (o)->value_.f)
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#define hvalue(o) check_exp(ttistable(o), &(o)->value_.gc->h)
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#define bvalue(o) check_exp(ttisboolean(o), (o)->value_.b)
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#define thvalue(o) check_exp(ttisthread(o), &(o)->value_.gc->th)
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#define l_isfalse(o) (ttisnil(o) || (ttisboolean(o) && bvalue(o) == 0))
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#define iscollectable(o) (ttype(o) >= LUA_TSTRING)
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/* Macros for internal tests */
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#define righttt(obj) (ttype(obj) == gcvalue(obj)->gch.tt)
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#define checkconsistency(obj) lua_assert(!iscollectable(obj) || righttt(obj))
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#define checkliveness(g,obj) \
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lua_assert(!iscollectable(obj) || (righttt(obj) && !isdead(g,gcvalue(obj))))
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/* Macros to set values */
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#define setnilvalue(obj) ((obj)->tt_=LUA_TNIL)
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#define setnvalue(obj,x) \
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{ TValue *i_o=(obj); i_o->value_.n=(x); i_o->tt_=LUA_TNUMBER; }
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#define setfvalue(obj,x) \
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{ TValue *i_o=(obj); i_o->value_.f=(x); i_o->tt_=LUA_TLCF; }
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#define changenvalue(o,x) check_exp((o)->tt_==LUA_TNUMBER, (o)->value_.n=(x))
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#define setpvalue(obj,x) \
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{ TValue *i_o=(obj); i_o->value_.p=(x); i_o->tt_=LUA_TLIGHTUSERDATA; }
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#define setbvalue(obj,x) \
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{ TValue *i_o=(obj); i_o->value_.b=(x); i_o->tt_=LUA_TBOOLEAN; }
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#define setgcovalue(L,obj,x) \
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{ TValue *i_o=(obj); GCObject *i_g=(x); \
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i_o->value_.gc=i_g; i_o->tt_=gch(i_g)->tt; }
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#define setsvalue(L,obj,x) \
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{ TValue *i_o=(obj); \
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i_o->value_.gc=cast(GCObject *, (x)); i_o->tt_=LUA_TSTRING; \
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checkliveness(G(L),i_o); }
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#define setuvalue(L,obj,x) \
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{ TValue *i_o=(obj); \
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i_o->value_.gc=cast(GCObject *, (x)); i_o->tt_=LUA_TUSERDATA; \
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checkliveness(G(L),i_o); }
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#define setthvalue(L,obj,x) \
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{ TValue *i_o=(obj); \
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i_o->value_.gc=cast(GCObject *, (x)); i_o->tt_=LUA_TTHREAD; \
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checkliveness(G(L),i_o); }
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#define setclvalue(L,obj,x) \
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{ TValue *i_o=(obj); \
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i_o->value_.gc=cast(GCObject *, (x)); i_o->tt_=LUA_TFUNCTION; \
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checkliveness(G(L),i_o); }
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#define sethvalue(L,obj,x) \
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{ TValue *i_o=(obj); \
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i_o->value_.gc=cast(GCObject *, (x)); i_o->tt_=LUA_TTABLE; \
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checkliveness(G(L),i_o); }
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#define setptvalue(L,obj,x) \
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{ TValue *i_o=(obj); \
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i_o->value_.gc=cast(GCObject *, (x)); i_o->tt_=LUA_TPROTO; \
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checkliveness(G(L),i_o); }
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#define setdeadvalue(obj) ((obj)->tt_=LUA_TDEADKEY)
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#define setobj(L,obj1,obj2) \
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{ const TValue *o2=(obj2); TValue *o1=(obj1); \
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o1->value_ = o2->value_; o1->tt_=o2->tt_; \
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checkliveness(G(L),o1); }
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/*
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** different types of assignments, according to destination
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*/
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/* from stack to (same) stack */
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#define setobjs2s setobj
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/* to stack (not from same stack) */
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#define setobj2s setobj
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#define setsvalue2s setsvalue
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#define sethvalue2s sethvalue
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#define setptvalue2s setptvalue
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/* from table to same table */
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#define setobjt2t setobj
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/* to table */
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#define setobj2t setobj
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/* to new object */
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#define setobj2n setobj
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#define setsvalue2n setsvalue
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typedef TValue *StkId; /* index to stack elements */
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/*
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** Header for string value; string bytes follow the end of this structure
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*/
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typedef union TString {
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L_Umaxalign dummy; /* ensures maximum alignment for strings */
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struct {
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CommonHeader;
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lu_byte reserved;
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unsigned int hash;
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size_t len;
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} tsv;
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} TString;
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/* get the actual string (array of bytes) from a TString */
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#define getstr(ts) cast(const char *, (ts) + 1)
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/* get the actual string (array of bytes) from a Lua value */
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#define svalue(o) getstr(rawtsvalue(o))
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/*
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** Header for userdata; memory area follows the end of this structure
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*/
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typedef union Udata {
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L_Umaxalign dummy; /* ensures maximum alignment for `local' udata */
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struct {
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CommonHeader;
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struct Table *metatable;
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struct Table *env;
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size_t len;
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} uv;
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} Udata;
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/*
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** Description of an upvalue for function prototypes
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*/
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typedef struct Upvaldesc {
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TString *name; /* upvalue name (for debug information) */
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lu_byte instack; /* whether it is in stack */
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lu_byte idx; /* index of upvalue (in stack or in outer function's list) */
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} Upvaldesc;
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/*
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** Description of a local variable for function prototypes
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** (used for debug information)
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*/
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typedef struct LocVar {
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TString *varname;
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int startpc; /* first point where variable is active */
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int endpc; /* first point where variable is dead */
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} LocVar;
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/*
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** Function Prototypes
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*/
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typedef struct Proto {
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CommonHeader;
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TValue *k; /* constants used by the function */
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Instruction *code;
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struct Proto **p; /* functions defined inside the function */
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int *lineinfo; /* map from opcodes to source lines */
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LocVar *locvars; /* information about local variables */
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Upvaldesc *upvalues; /* upvalue information */
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union Closure *cache; /* last created closure with this prototype */
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TString *source;
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int sizeupvalues; /* size of 'upvalues' */
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int sizek; /* size of `k' */
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int sizecode;
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int sizelineinfo;
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int sizep; /* size of `p' */
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int sizelocvars;
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int linedefined;
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int lastlinedefined;
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GCObject *gclist;
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lu_byte numparams; /* number of fixed parameters */
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lu_byte is_vararg;
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lu_byte maxstacksize; /* maximum stack used by this function */
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} Proto;
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/*
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** Lua Upvalues
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*/
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typedef struct UpVal {
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CommonHeader;
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TValue *v; /* points to stack or to its own value */
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union {
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TValue value; /* the value (when closed) */
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struct { /* double linked list (when open) */
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struct UpVal *prev;
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struct UpVal *next;
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} l;
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} u;
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} UpVal;
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/*
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** Closures
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*/
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#define ClosureHeader \
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CommonHeader; lu_byte isC; lu_byte nupvalues; GCObject *gclist
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typedef struct CClosure {
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ClosureHeader;
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lua_CFunction f;
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TValue upvalue[1]; /* list of upvalues */
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} CClosure;
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typedef struct LClosure {
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ClosureHeader;
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struct Proto *p;
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UpVal *upvals[1]; /* list of upvalues */
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} LClosure;
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typedef union Closure {
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CClosure c;
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LClosure l;
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} Closure;
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#define isLfunction(o) (ttisclosure(o) && !clvalue(o)->c.isC)
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#define getproto(o) (clvalue(o)->l.p)
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/*
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** Tables
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*/
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typedef union TKey {
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struct {
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TValuefields;
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struct Node *next; /* for chaining */
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} nk;
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TValue tvk;
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} TKey;
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typedef struct Node {
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TValue i_val;
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TKey i_key;
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} Node;
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typedef struct Table {
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CommonHeader;
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lu_byte flags; /* 1<<p means tagmethod(p) is not present */
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lu_byte lsizenode; /* log2 of size of `node' array */
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struct Table *metatable;
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TValue *array; /* array part */
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Node *node;
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Node *lastfree; /* any free position is before this position */
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GCObject *gclist;
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int sizearray; /* size of `array' array */
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} Table;
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/*
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** `module' operation for hashing (size is always a power of 2)
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*/
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#define lmod(s,size) \
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(check_exp((size&(size-1))==0, (cast(int, (s) & ((size)-1)))))
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#define twoto(x) (1<<(x))
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#define sizenode(t) (twoto((t)->lsizenode))
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/*
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** (address of) a fixed nil value
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*/
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#define luaO_nilobject (&luaO_nilobject_)
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LUAI_DDEC const TValue luaO_nilobject_;
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LUAI_FUNC int luaO_int2fb (unsigned int x);
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LUAI_FUNC int luaO_fb2int (int x);
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LUAI_FUNC int luaO_ceillog2 (lu_int32 x);
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LUAI_FUNC lua_Number luaO_arith (int op, lua_Number v1, lua_Number v2);
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LUAI_FUNC int luaO_rawequalObj (const TValue *t1, const TValue *t2);
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LUAI_FUNC int luaO_str2d (const char *s, lua_Number *result);
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LUAI_FUNC const char *luaO_pushvfstring (lua_State *L, const char *fmt,
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va_list argp);
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LUAI_FUNC const char *luaO_pushfstring (lua_State *L, const char *fmt, ...);
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LUAI_FUNC void luaO_chunkid (char *out, const char *source, size_t len);
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#endif
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