rlm@1
|
1 /*
|
rlm@1
|
2 ** $Id: lundump.c,v 2.7.1.4 2008/04/04 19:51:41 roberto Exp $
|
rlm@1
|
3 ** load precompiled Lua chunks
|
rlm@1
|
4 ** See Copyright Notice in lua.h
|
rlm@1
|
5 */
|
rlm@1
|
6
|
rlm@1
|
7 #include <string.h>
|
rlm@1
|
8
|
rlm@1
|
9 #define lundump_c
|
rlm@1
|
10 #define LUA_CORE
|
rlm@1
|
11
|
rlm@1
|
12 #include "lua.h"
|
rlm@1
|
13
|
rlm@1
|
14 #include "ldebug.h"
|
rlm@1
|
15 #include "ldo.h"
|
rlm@1
|
16 #include "lfunc.h"
|
rlm@1
|
17 #include "lmem.h"
|
rlm@1
|
18 #include "lobject.h"
|
rlm@1
|
19 #include "lstring.h"
|
rlm@1
|
20 #include "lundump.h"
|
rlm@1
|
21 #include "lzio.h"
|
rlm@1
|
22
|
rlm@1
|
23 typedef struct {
|
rlm@1
|
24 lua_State* L;
|
rlm@1
|
25 ZIO* Z;
|
rlm@1
|
26 Mbuffer* b;
|
rlm@1
|
27 const char* name;
|
rlm@1
|
28 } LoadState;
|
rlm@1
|
29
|
rlm@1
|
30 #ifdef LUAC_TRUST_BINARIES
|
rlm@1
|
31 #define IF(c,s)
|
rlm@1
|
32 #define error(S,s)
|
rlm@1
|
33 #else
|
rlm@1
|
34 #define IF(c,s) if (c) error(S,s)
|
rlm@1
|
35
|
rlm@1
|
36 static void error(LoadState* S, const char* why)
|
rlm@1
|
37 {
|
rlm@1
|
38 luaO_pushfstring(S->L,"%s: %s in precompiled chunk",S->name,why);
|
rlm@1
|
39 luaD_throw(S->L,LUA_ERRSYNTAX);
|
rlm@1
|
40 }
|
rlm@1
|
41 #endif
|
rlm@1
|
42
|
rlm@1
|
43 #define LoadMem(S,b,n,size) LoadBlock(S,b,(n)*(size))
|
rlm@1
|
44 #define LoadByte(S) (lu_byte)LoadChar(S)
|
rlm@1
|
45 #define LoadVar(S,x) LoadMem(S,&x,1,sizeof(x))
|
rlm@1
|
46 #define LoadVector(S,b,n,size) LoadMem(S,b,n,size)
|
rlm@1
|
47
|
rlm@1
|
48 static void LoadBlock(LoadState* S, void* b, size_t size)
|
rlm@1
|
49 {
|
rlm@1
|
50 size_t r=luaZ_read(S->Z,b,size);
|
rlm@1
|
51 IF (r!=0, "unexpected end");
|
rlm@1
|
52 }
|
rlm@1
|
53
|
rlm@1
|
54 static int LoadChar(LoadState* S)
|
rlm@1
|
55 {
|
rlm@1
|
56 char x;
|
rlm@1
|
57 LoadVar(S,x);
|
rlm@1
|
58 return x;
|
rlm@1
|
59 }
|
rlm@1
|
60
|
rlm@1
|
61 static int LoadInt(LoadState* S)
|
rlm@1
|
62 {
|
rlm@1
|
63 int x;
|
rlm@1
|
64 LoadVar(S,x);
|
rlm@1
|
65 IF (x<0, "bad integer");
|
rlm@1
|
66 return x;
|
rlm@1
|
67 }
|
rlm@1
|
68
|
rlm@1
|
69 static lua_Number LoadNumber(LoadState* S)
|
rlm@1
|
70 {
|
rlm@1
|
71 lua_Number x;
|
rlm@1
|
72 LoadVar(S,x);
|
rlm@1
|
73 return x;
|
rlm@1
|
74 }
|
rlm@1
|
75
|
rlm@1
|
76 static TString* LoadString(LoadState* S)
|
rlm@1
|
77 {
|
rlm@1
|
78 size_t size;
|
rlm@1
|
79 LoadVar(S,size);
|
rlm@1
|
80 if (size==0)
|
rlm@1
|
81 return NULL;
|
rlm@1
|
82 else
|
rlm@1
|
83 {
|
rlm@1
|
84 char* s=luaZ_openspace(S->L,S->b,size);
|
rlm@1
|
85 LoadBlock(S,s,size);
|
rlm@1
|
86 return luaS_newlstr(S->L,s,size-1); /* remove trailing '\0' */
|
rlm@1
|
87 }
|
rlm@1
|
88 }
|
rlm@1
|
89
|
rlm@1
|
90 static void LoadCode(LoadState* S, Proto* f)
|
rlm@1
|
91 {
|
rlm@1
|
92 int n=LoadInt(S);
|
rlm@1
|
93 f->code=luaM_newvector(S->L,n,Instruction);
|
rlm@1
|
94 f->sizecode=n;
|
rlm@1
|
95 LoadVector(S,f->code,n,sizeof(Instruction));
|
rlm@1
|
96 }
|
rlm@1
|
97
|
rlm@1
|
98 static Proto* LoadFunction(LoadState* S, TString* p);
|
rlm@1
|
99
|
rlm@1
|
100 static void LoadConstants(LoadState* S, Proto* f)
|
rlm@1
|
101 {
|
rlm@1
|
102 int i,n;
|
rlm@1
|
103 n=LoadInt(S);
|
rlm@1
|
104 f->k=luaM_newvector(S->L,n,TValue);
|
rlm@1
|
105 f->sizek=n;
|
rlm@1
|
106 for (i=0; i<n; i++) setnilvalue(&f->k[i]);
|
rlm@1
|
107 for (i=0; i<n; i++)
|
rlm@1
|
108 {
|
rlm@1
|
109 TValue* o=&f->k[i];
|
rlm@1
|
110 int t=LoadChar(S);
|
rlm@1
|
111 switch (t)
|
rlm@1
|
112 {
|
rlm@1
|
113 case LUA_TNIL:
|
rlm@1
|
114 setnilvalue(o);
|
rlm@1
|
115 break;
|
rlm@1
|
116 case LUA_TBOOLEAN:
|
rlm@1
|
117 setbvalue(o,LoadChar(S)!=0);
|
rlm@1
|
118 break;
|
rlm@1
|
119 case LUA_TNUMBER:
|
rlm@1
|
120 setnvalue(o,LoadNumber(S));
|
rlm@1
|
121 break;
|
rlm@1
|
122 case LUA_TSTRING:
|
rlm@1
|
123 setsvalue2n(S->L,o,LoadString(S));
|
rlm@1
|
124 break;
|
rlm@1
|
125 default:
|
rlm@1
|
126 error(S,"bad constant");
|
rlm@1
|
127 break;
|
rlm@1
|
128 }
|
rlm@1
|
129 }
|
rlm@1
|
130 n=LoadInt(S);
|
rlm@1
|
131 f->p=luaM_newvector(S->L,n,Proto*);
|
rlm@1
|
132 f->sizep=n;
|
rlm@1
|
133 for (i=0; i<n; i++) f->p[i]=NULL;
|
rlm@1
|
134 for (i=0; i<n; i++) f->p[i]=LoadFunction(S,f->source);
|
rlm@1
|
135 }
|
rlm@1
|
136
|
rlm@1
|
137 static void LoadDebug(LoadState* S, Proto* f)
|
rlm@1
|
138 {
|
rlm@1
|
139 int i,n;
|
rlm@1
|
140 n=LoadInt(S);
|
rlm@1
|
141 f->lineinfo=luaM_newvector(S->L,n,int);
|
rlm@1
|
142 f->sizelineinfo=n;
|
rlm@1
|
143 LoadVector(S,f->lineinfo,n,sizeof(int));
|
rlm@1
|
144 n=LoadInt(S);
|
rlm@1
|
145 f->locvars=luaM_newvector(S->L,n,LocVar);
|
rlm@1
|
146 f->sizelocvars=n;
|
rlm@1
|
147 for (i=0; i<n; i++) f->locvars[i].varname=NULL;
|
rlm@1
|
148 for (i=0; i<n; i++)
|
rlm@1
|
149 {
|
rlm@1
|
150 f->locvars[i].varname=LoadString(S);
|
rlm@1
|
151 f->locvars[i].startpc=LoadInt(S);
|
rlm@1
|
152 f->locvars[i].endpc=LoadInt(S);
|
rlm@1
|
153 }
|
rlm@1
|
154 n=LoadInt(S);
|
rlm@1
|
155 f->upvalues=luaM_newvector(S->L,n,TString*);
|
rlm@1
|
156 f->sizeupvalues=n;
|
rlm@1
|
157 for (i=0; i<n; i++) f->upvalues[i]=NULL;
|
rlm@1
|
158 for (i=0; i<n; i++) f->upvalues[i]=LoadString(S);
|
rlm@1
|
159 }
|
rlm@1
|
160
|
rlm@1
|
161 static Proto* LoadFunction(LoadState* S, TString* p)
|
rlm@1
|
162 {
|
rlm@1
|
163 Proto* f;
|
rlm@1
|
164 if (++S->L->nCcalls > LUAI_MAXCCALLS) error(S,"code too deep");
|
rlm@1
|
165 f=luaF_newproto(S->L);
|
rlm@1
|
166 setptvalue2s(S->L,S->L->top,f); incr_top(S->L);
|
rlm@1
|
167 f->source=LoadString(S); if (f->source==NULL) f->source=p;
|
rlm@1
|
168 f->linedefined=LoadInt(S);
|
rlm@1
|
169 f->lastlinedefined=LoadInt(S);
|
rlm@1
|
170 f->nups=LoadByte(S);
|
rlm@1
|
171 f->numparams=LoadByte(S);
|
rlm@1
|
172 f->is_vararg=LoadByte(S);
|
rlm@1
|
173 f->maxstacksize=LoadByte(S);
|
rlm@1
|
174 LoadCode(S,f);
|
rlm@1
|
175 LoadConstants(S,f);
|
rlm@1
|
176 LoadDebug(S,f);
|
rlm@1
|
177 IF (!luaG_checkcode(f), "bad code");
|
rlm@1
|
178 S->L->top--;
|
rlm@1
|
179 S->L->nCcalls--;
|
rlm@1
|
180 return f;
|
rlm@1
|
181 }
|
rlm@1
|
182
|
rlm@1
|
183 static void LoadHeader(LoadState* S)
|
rlm@1
|
184 {
|
rlm@1
|
185 char h[LUAC_HEADERSIZE];
|
rlm@1
|
186 char s[LUAC_HEADERSIZE];
|
rlm@1
|
187 luaU_header(h);
|
rlm@1
|
188 LoadBlock(S,s,LUAC_HEADERSIZE);
|
rlm@1
|
189 IF (memcmp(h,s,LUAC_HEADERSIZE)!=0, "bad header");
|
rlm@1
|
190 }
|
rlm@1
|
191
|
rlm@1
|
192 /*
|
rlm@1
|
193 ** load precompiled chunk
|
rlm@1
|
194 */
|
rlm@1
|
195 Proto* luaU_undump (lua_State* L, ZIO* Z, Mbuffer* buff, const char* name)
|
rlm@1
|
196 {
|
rlm@1
|
197 LoadState S;
|
rlm@1
|
198 if (*name=='@' || *name=='=')
|
rlm@1
|
199 S.name=name+1;
|
rlm@1
|
200 else if (*name==LUA_SIGNATURE[0])
|
rlm@1
|
201 S.name="binary string";
|
rlm@1
|
202 else
|
rlm@1
|
203 S.name=name;
|
rlm@1
|
204 S.L=L;
|
rlm@1
|
205 S.Z=Z;
|
rlm@1
|
206 S.b=buff;
|
rlm@1
|
207 LoadHeader(&S);
|
rlm@1
|
208 return LoadFunction(&S,luaS_newliteral(L,"=?"));
|
rlm@1
|
209 }
|
rlm@1
|
210
|
rlm@1
|
211 /*
|
rlm@1
|
212 * make header
|
rlm@1
|
213 */
|
rlm@1
|
214 void luaU_header (char* h)
|
rlm@1
|
215 {
|
rlm@1
|
216 int x=1;
|
rlm@1
|
217 memcpy(h,LUA_SIGNATURE,sizeof(LUA_SIGNATURE)-1);
|
rlm@1
|
218 h+=sizeof(LUA_SIGNATURE)-1;
|
rlm@1
|
219 *h++=(char)LUAC_VERSION;
|
rlm@1
|
220 *h++=(char)LUAC_FORMAT;
|
rlm@1
|
221 *h++=(char)*(char*)&x; /* endianness */
|
rlm@1
|
222 *h++=(char)sizeof(int);
|
rlm@1
|
223 *h++=(char)sizeof(size_t);
|
rlm@1
|
224 *h++=(char)sizeof(Instruction);
|
rlm@1
|
225 *h++=(char)sizeof(lua_Number);
|
rlm@1
|
226 *h++=(char)(((lua_Number)0.5)==0); /* is lua_Number integral? */
|
rlm@1
|
227 }
|