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Chris Lattnerd9113c72003-10-13 04:22:07 +00001//===-- ReaderInternals.h - Definitions internal to the reader --*- C++ -*-===//
John Criswell856ba762003-10-21 15:17:13 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
Chris Lattner00950542001-06-06 20:29:01 +00009//
10// This header file defines various stuff that is used by the bytecode reader.
11//
12//===----------------------------------------------------------------------===//
13
14#ifndef READER_INTERNALS_H
15#define READER_INTERNALS_H
16
Chris Lattner3446ae82004-01-10 19:00:15 +000017#include "ReaderPrimitives.h"
Chris Lattner8dc6ba92003-11-14 06:38:46 +000018#include "llvm/Constants.h"
Chris Lattner7061dc52001-12-03 18:02:31 +000019#include "llvm/DerivedTypes.h"
Chris Lattner74734132002-08-17 22:01:27 +000020#include "llvm/Function.h"
Misha Brukman12c29d12003-09-22 23:38:23 +000021#include "llvm/ModuleProvider.h"
Chris Lattner00950542001-06-06 20:29:01 +000022#include <utility>
Chris Lattner74734132002-08-17 22:01:27 +000023#include <map>
Chris Lattner00950542001-06-06 20:29:01 +000024
Brian Gaeked0fde302003-11-11 22:41:34 +000025namespace llvm {
26
Chris Lattner1d670cc2001-09-07 16:37:43 +000027// Enable to trace to figure out what the heck is going on when parsing fails
Chris Lattnerd256ed82003-09-04 23:47:07 +000028//#define TRACE_LEVEL 10
Alkis Evlogimenos60048b82003-10-30 18:33:58 +000029//#define DEBUG_OUTPUT
Chris Lattner1d670cc2001-09-07 16:37:43 +000030
Misha Brukman12c29d12003-09-22 23:38:23 +000031#if TRACE_LEVEL // ByteCodeReading_TRACEr
Chris Lattner52e20b02003-03-19 20:54:26 +000032#define BCR_TRACE(n, X) \
33 if (n < TRACE_LEVEL) std::cerr << std::string(n*2, ' ') << X
Chris Lattner1d670cc2001-09-07 16:37:43 +000034#else
35#define BCR_TRACE(n, X)
36#endif
37
Misha Brukman12c29d12003-09-22 23:38:23 +000038struct LazyFunctionInfo {
39 const unsigned char *Buf, *EndBuf;
Chris Lattner29b789b2003-11-19 17:27:18 +000040 LazyFunctionInfo(const unsigned char *B = 0, const unsigned char *EB = 0)
41 : Buf(B), EndBuf(EB) {}
Misha Brukman12c29d12003-09-22 23:38:23 +000042};
43
Chris Lattner00413e32003-10-04 20:14:59 +000044class BytecodeParser : public ModuleProvider {
Chris Lattner74734132002-08-17 22:01:27 +000045 BytecodeParser(const BytecodeParser &); // DO NOT IMPLEMENT
46 void operator=(const BytecodeParser &); // DO NOT IMPLEMENT
Chris Lattner00950542001-06-06 20:29:01 +000047public:
Chris Lattner89e02532004-01-18 21:08:15 +000048 BytecodeParser() {}
Misha Brukman12c29d12003-09-22 23:38:23 +000049
Chris Lattner52e20b02003-03-19 20:54:26 +000050 ~BytecodeParser() {
Chris Lattnera2602f32003-05-22 18:26:48 +000051 freeState();
52 }
53 void freeState() {
Chris Lattner52e20b02003-03-19 20:54:26 +000054 freeTable(Values);
Chris Lattner52e20b02003-03-19 20:54:26 +000055 freeTable(ModuleValues);
56 }
Chris Lattner00950542001-06-06 20:29:01 +000057
Misha Brukmanafca90e2004-01-21 22:55:34 +000058 Module* materializeModule() {
59 while (! LazyFunctionLoadMap.empty()) {
60 std::map<Function*, LazyFunctionInfo>::iterator i =
61 LazyFunctionLoadMap.begin();
62 materializeFunction((*i).first);
63 }
64
65 return TheModule;
66 }
67
Misha Brukman12c29d12003-09-22 23:38:23 +000068 Module* releaseModule() {
69 // Since we're losing control of this Module, we must hand it back complete
Chris Lattner927b1852003-10-09 20:22:47 +000070 Module *M = ModuleProvider::releaseModule();
Misha Brukman12c29d12003-09-22 23:38:23 +000071 freeState();
Chris Lattner927b1852003-10-09 20:22:47 +000072 return M;
Misha Brukman12c29d12003-09-22 23:38:23 +000073 }
Chris Lattnerd6b65252001-10-24 01:15:12 +000074
Misha Brukman12c29d12003-09-22 23:38:23 +000075 void ParseBytecode(const unsigned char *Buf, unsigned Length,
76 const std::string &ModuleID);
Chris Lattnerd6b65252001-10-24 01:15:12 +000077
Chris Lattnerb3afb1f2002-04-04 19:24:11 +000078 void dump() const {
Anand Shuklaeea60fc2002-06-25 20:44:04 +000079 std::cerr << "BytecodeParser instance!\n";
Chris Lattnerb3afb1f2002-04-04 19:24:11 +000080 }
81
Chris Lattner6e448022003-10-08 21:51:46 +000082private:
Chris Lattner52e20b02003-03-19 20:54:26 +000083 struct ValueList : public User {
Chris Lattner6e448022003-10-08 21:51:46 +000084 ValueList() : User(Type::TypeTy, Value::TypeVal) {}
Chris Lattner52e20b02003-03-19 20:54:26 +000085
86 // vector compatibility methods
87 unsigned size() const { return getNumOperands(); }
88 void push_back(Value *V) { Operands.push_back(Use(V, this)); }
89 Value *back() const { return Operands.back(); }
90 void pop_back() { Operands.pop_back(); }
91 bool empty() const { return Operands.empty(); }
92
93 virtual void print(std::ostream& OS) const {
94 OS << "Bytecode Reader UseHandle!";
95 }
96 };
97
Chris Lattner036b8aa2003-03-06 17:55:45 +000098 // Information about the module, extracted from the bytecode revision number.
99 unsigned char RevisionNum; // The rev # itself
Chris Lattner036b8aa2003-03-06 17:55:45 +0000100
Chris Lattner80b97342004-01-17 23:25:43 +0000101 // Flags to distinguish LLVM 1.0 & 1.1 bytecode formats (revision #0)
102
103 // Revision #0 had an explicit alignment of data only for the ModuleGlobalInfo
104 // block. This was fixed to be like all other blocks in 1.2
Chris Lattner44d0eeb2004-01-15 17:55:01 +0000105 bool hasInconsistentModuleGlobalInfo;
106
Chris Lattner80b97342004-01-17 23:25:43 +0000107 // Revision #0 also explicitly encoded zero values for primitive types like
108 // int/sbyte/etc.
109 bool hasExplicitPrimitiveZeros;
110
Chris Lattner52e20b02003-03-19 20:54:26 +0000111 typedef std::vector<ValueList*> ValueTable;
Chris Lattner8eb10ce2003-10-09 06:05:40 +0000112 ValueTable Values;
Chris Lattner52e20b02003-03-19 20:54:26 +0000113 ValueTable ModuleValues;
Chris Lattner8eb10ce2003-10-09 06:05:40 +0000114 std::map<std::pair<unsigned,unsigned>, Value*> ForwardReferences;
Chris Lattner1d670cc2001-09-07 16:37:43 +0000115
Chris Lattner89e02532004-01-18 21:08:15 +0000116 /// CompactionTable - If a compaction table is active in the current function,
117 /// this is the mapping that it contains.
118 std::vector<std::vector<Value*> > CompactionTable;
119
Chris Lattner4ee8ef22003-10-08 22:52:54 +0000120 std::vector<BasicBlock*> ParsedBasicBlocks;
121
Chris Lattner29b789b2003-11-19 17:27:18 +0000122 // ConstantFwdRefs - This maintains a mapping between <Type, Slot #>'s and
123 // forward references to constants. Such values may be referenced before they
124 // are defined, and if so, the temporary object that they represent is held
125 // here.
Chris Lattner74734132002-08-17 22:01:27 +0000126 //
Chris Lattner29b789b2003-11-19 17:27:18 +0000127 typedef std::map<std::pair<const Type*,unsigned>, Constant*> ConstantRefsType;
128 ConstantRefsType ConstantFwdRefs;
Chris Lattner05950c32001-10-13 06:47:01 +0000129
Chris Lattner1d670cc2001-09-07 16:37:43 +0000130 // TypesLoaded - This vector mirrors the Values[TypeTyID] plane. It is used
131 // to deal with forward references to types.
132 //
Chris Lattnerc7b6f032003-10-02 20:26:18 +0000133 typedef std::vector<PATypeHolder> TypeValuesListTy;
Chris Lattner1d670cc2001-09-07 16:37:43 +0000134 TypeValuesListTy ModuleTypeValues;
Chris Lattner6e5a0e42003-03-06 17:18:14 +0000135 TypeValuesListTy FunctionTypeValues;
Chris Lattner00950542001-06-06 20:29:01 +0000136
Chris Lattner52e20b02003-03-19 20:54:26 +0000137 // When the ModuleGlobalInfo section is read, we create a function object for
138 // each function in the module. When the function is loaded, this function is
139 // filled in.
Chris Lattner00950542001-06-06 20:29:01 +0000140 //
Chris Lattner29b789b2003-11-19 17:27:18 +0000141 std::vector<Function*> FunctionSignatureList;
Chris Lattner52e20b02003-03-19 20:54:26 +0000142
143 // Constant values are read in after global variables. Because of this, we
144 // must defer setting the initializers on global variables until after module
145 // level constants have been read. In the mean time, this list keeps track of
146 // what we must do.
147 //
148 std::vector<std::pair<GlobalVariable*, unsigned> > GlobalInits;
Chris Lattner00950542001-06-06 20:29:01 +0000149
Misha Brukman12c29d12003-09-22 23:38:23 +0000150 // For lazy reading-in of functions, we need to save away several pieces of
151 // information about each function: its begin and end pointer in the buffer
152 // and its FunctionSlot.
153 //
Chris Lattner29b789b2003-11-19 17:27:18 +0000154 std::map<Function*, LazyFunctionInfo> LazyFunctionLoadMap;
Misha Brukman12c29d12003-09-22 23:38:23 +0000155
Chris Lattner00950542001-06-06 20:29:01 +0000156private:
Chris Lattner52e20b02003-03-19 20:54:26 +0000157 void freeTable(ValueTable &Tab) {
158 while (!Tab.empty()) {
159 delete Tab.back();
160 Tab.pop_back();
161 }
162 }
163
Chris Lattner89e02532004-01-18 21:08:15 +0000164 /// getGlobalTableType - This is just like getType, but when a compaction
165 /// table is in use, it is ignored. Also, no forward references or other
166 /// fancy features are supported.
167 const Type *getGlobalTableType(unsigned Slot) {
168 if (Slot < Type::FirstDerivedTyID) {
169 const Type *Ty = Type::getPrimitiveType((Type::PrimitiveID)Slot);
170 assert(Ty && "Not a primitive type ID?");
171 return Ty;
172 }
173 Slot -= Type::FirstDerivedTyID;
174 if (Slot >= ModuleTypeValues.size())
175 throw std::string("Illegal compaction table type reference!");
176 return ModuleTypeValues[Slot];
177 }
178
179 unsigned getGlobalTableTypeSlot(const Type *Ty) {
180 if (Ty->isPrimitiveType())
181 return Ty->getPrimitiveID();
182 TypeValuesListTy::iterator I = find(ModuleTypeValues.begin(),
183 ModuleTypeValues.end(), Ty);
184 if (I == ModuleTypeValues.end())
185 throw std::string("Didn't find type in ModuleTypeValues.");
186 return Type::FirstDerivedTyID + (&*I - &ModuleTypeValues[0]);
187 }
188
189 /// getGlobalTableValue - This is just like getValue, but when a compaction
190 /// table is in use, it is ignored. Also, no forward references or other
191 /// fancy features are supported.
192 Value *getGlobalTableValue(const Type *Ty, unsigned SlotNo) {
193 // FIXME: getTypeSlot is inefficient!
194 unsigned TyID = getGlobalTableTypeSlot(Ty);
195
196 if (TyID != Type::LabelTyID) {
197 if (SlotNo == 0)
198 return Constant::getNullValue(Ty);
199 --SlotNo;
200 }
201
202 if (TyID >= ModuleValues.size() || ModuleValues[TyID] == 0 ||
203 SlotNo >= ModuleValues[TyID]->getNumOperands()) {
204 std::cerr << TyID << ", " << SlotNo << ": " << ModuleValues.size() << ", "
205 << (void*)ModuleValues[TyID] << ", "
206 << ModuleValues[TyID]->getNumOperands() << "\n";
207 throw std::string("Corrupt compaction table entry!");
208 }
209 return ModuleValues[TyID]->getOperand(SlotNo);
210 }
211
Misha Brukman12c29d12003-09-22 23:38:23 +0000212public:
213 void ParseModule(const unsigned char * Buf, const unsigned char *End);
214 void materializeFunction(Function *F);
215
216private:
217 void ParseVersionInfo (const unsigned char *&Buf, const unsigned char *End);
218 void ParseModuleGlobalInfo(const unsigned char *&Buf, const unsigned char *E);
219 void ParseSymbolTable(const unsigned char *&Buf, const unsigned char *End,
Chris Lattner4ee8ef22003-10-08 22:52:54 +0000220 SymbolTable *, Function *CurrentFunction);
Misha Brukman12c29d12003-09-22 23:38:23 +0000221 void ParseFunction(const unsigned char *&Buf, const unsigned char *End);
Chris Lattner89e02532004-01-18 21:08:15 +0000222 void ParseCompactionTable(const unsigned char *&Buf,const unsigned char *End);
Misha Brukman12c29d12003-09-22 23:38:23 +0000223 void ParseGlobalTypes(const unsigned char *&Buf, const unsigned char *EndBuf);
224
Chris Lattner4ee8ef22003-10-08 22:52:54 +0000225 BasicBlock *ParseBasicBlock(const unsigned char *&Buf,
226 const unsigned char *End,
227 unsigned BlockNo);
Chris Lattner8d1dbd22003-12-01 07:05:31 +0000228 unsigned ParseInstructionList(Function *F, const unsigned char *&Buf,
229 const unsigned char *EndBuf);
230
Chris Lattnercb7e2e22003-10-18 05:54:18 +0000231 void ParseInstruction(const unsigned char *&Buf, const unsigned char *End,
232 std::vector<unsigned> &Args, BasicBlock *BB);
Chris Lattner00950542001-06-06 20:29:01 +0000233
Misha Brukman12c29d12003-09-22 23:38:23 +0000234 void ParseConstantPool(const unsigned char *&Buf, const unsigned char *EndBuf,
235 ValueTable &Tab, TypeValuesListTy &TypeTab);
Chris Lattner9e460f22003-10-04 20:00:03 +0000236 Constant *parseConstantValue(const unsigned char *&Buf,
237 const unsigned char *End,
Chris Lattner29b789b2003-11-19 17:27:18 +0000238 unsigned TypeID);
Misha Brukman12c29d12003-09-22 23:38:23 +0000239 void parseTypeConstants(const unsigned char *&Buf,
Chris Lattner12e64652003-05-22 18:08:30 +0000240 const unsigned char *EndBuf,
Misha Brukman12c29d12003-09-22 23:38:23 +0000241 TypeValuesListTy &Tab, unsigned NumEntries);
Chris Lattner12e64652003-05-22 18:08:30 +0000242 const Type *parseTypeConstant(const unsigned char *&Buf,
243 const unsigned char *EndBuf);
Chris Lattner9e893e82004-01-14 23:35:21 +0000244 void parseStringConstants(const unsigned char *&Buf,
245 const unsigned char *EndBuf,
246 unsigned NumEntries, ValueTable &Tab);
Chris Lattner00950542001-06-06 20:29:01 +0000247
Chris Lattner36392bc2003-10-08 21:18:57 +0000248 Value *getValue(unsigned TypeID, unsigned num, bool Create = true);
Chris Lattner00950542001-06-06 20:29:01 +0000249 const Type *getType(unsigned ID);
Chris Lattner4ee8ef22003-10-08 22:52:54 +0000250 BasicBlock *getBasicBlock(unsigned ID);
Chris Lattner1c3673b2003-11-19 06:01:12 +0000251 Constant *getConstantValue(unsigned TypeID, unsigned num);
252 Constant *getConstantValue(const Type *Ty, unsigned num) {
253 return getConstantValue(getTypeSlot(Ty), num);
254 }
Chris Lattner00950542001-06-06 20:29:01 +0000255
Chris Lattnerf0d92732003-10-13 14:34:59 +0000256 unsigned insertValue(Value *V, unsigned Type, ValueTable &Table);
Chris Lattner00950542001-06-06 20:29:01 +0000257
Chris Lattner9e460f22003-10-04 20:00:03 +0000258 unsigned getTypeSlot(const Type *Ty);
Chris Lattner1d670cc2001-09-07 16:37:43 +0000259
Chris Lattner29b789b2003-11-19 17:27:18 +0000260 // resolve all references to the placeholder (if any) for the given constant
261 void ResolveReferencesToConstant(Constant *C, unsigned Slot);
Chris Lattner00950542001-06-06 20:29:01 +0000262};
263
264template<class SuperType>
265class PlaceholderDef : public SuperType {
266 unsigned ID;
Chris Lattner74734132002-08-17 22:01:27 +0000267 PlaceholderDef(); // DO NOT IMPLEMENT
268 void operator=(const PlaceholderDef &); // DO NOT IMPLEMENT
Chris Lattner00950542001-06-06 20:29:01 +0000269public:
270 PlaceholderDef(const Type *Ty, unsigned id) : SuperType(Ty), ID(id) {}
271 unsigned getID() { return ID; }
272};
273
Chris Lattner8dc6ba92003-11-14 06:38:46 +0000274struct ConstantPlaceHolderHelper : public ConstantExpr {
Chris Lattnerdb9546e2003-11-14 16:34:25 +0000275 ConstantPlaceHolderHelper(const Type *Ty)
276 : ConstantExpr(Instruction::UserOp1, Constant::getNullValue(Ty), Ty) {}
Vikram S. Advec668b7c2002-07-14 23:05:09 +0000277};
278
Vikram S. Advec668b7c2002-07-14 23:05:09 +0000279typedef PlaceholderDef<ConstantPlaceHolderHelper> ConstPHolder;
280
Misha Brukman12c29d12003-09-22 23:38:23 +0000281static inline void readBlock(const unsigned char *&Buf,
Chris Lattner12e64652003-05-22 18:08:30 +0000282 const unsigned char *EndBuf,
Misha Brukman12c29d12003-09-22 23:38:23 +0000283 unsigned &Type, unsigned &Size) {
Chris Lattner7969dc22004-01-15 06:13:09 +0000284 Type = read(Buf, EndBuf);
285 Size = read(Buf, EndBuf);
Chris Lattner00950542001-06-06 20:29:01 +0000286}
287
Brian Gaeked0fde302003-11-11 22:41:34 +0000288} // End llvm namespace
289
Chris Lattner00950542001-06-06 20:29:01 +0000290#endif