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Kevin Enderby93f79362011-03-28 18:25:07 +00001//===-- lib/MC/Disassembler.cpp - Disassembler Public C Interface -*- C -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
Chris Lattner97ff42d2011-05-22 04:52:24 +00009
Kevin Enderby93f79362011-03-28 18:25:07 +000010#include "Disassembler.h"
Kevin Enderby93f79362011-03-28 18:25:07 +000011#include "llvm-c/Disassembler.h"
12
Kevin Enderby93f79362011-03-28 18:25:07 +000013#include "llvm/MC/MCAsmInfo.h"
14#include "llvm/MC/MCDisassembler.h"
15#include "llvm/MC/MCInst.h"
16#include "llvm/MC/MCInstPrinter.h"
17#include "llvm/MC/MCContext.h"
18#include "llvm/Target/TargetRegistry.h"
19#include "llvm/Target/TargetAsmInfo.h" // FIXME.
20#include "llvm/Target/TargetMachine.h" // FIXME.
21#include "llvm/Target/TargetSelect.h"
22#include "llvm/Support/MemoryObject.h"
23
24namespace llvm {
25class Target;
26} // namespace llvm
27using namespace llvm;
28
Kevin Enderby93f79362011-03-28 18:25:07 +000029// LLVMCreateDisasm() creates a disassembler for the TripleName. Symbolic
30// disassembly is supported by passing a block of information in the DisInfo
Chris Lattner97ff42d2011-05-22 04:52:24 +000031// parameter and specifying the TagType and callback functions as described in
Kevin Enderby93f79362011-03-28 18:25:07 +000032// the header llvm-c/Disassembler.h . The pointer to the block and the
Chris Lattner97ff42d2011-05-22 04:52:24 +000033// functions can all be passed as NULL. If successful, this returns a
34// disassembler context. If not, it returns NULL.
Kevin Enderby93f79362011-03-28 18:25:07 +000035//
36LLVMDisasmContextRef LLVMCreateDisasm(const char *TripleName, void *DisInfo,
37 int TagType, LLVMOpInfoCallback GetOpInfo,
38 LLVMSymbolLookupCallback SymbolLookUp) {
39 // Initialize targets and assembly printers/parsers.
40 llvm::InitializeAllTargetInfos();
41 // FIXME: We shouldn't need to initialize the Target(Machine)s.
42 llvm::InitializeAllTargets();
43 llvm::InitializeAllAsmPrinters();
44 llvm::InitializeAllAsmParsers();
45 llvm::InitializeAllDisassemblers();
46
47 // Get the target.
48 std::string Error;
49 const Target *TheTarget = TargetRegistry::lookupTarget(TripleName, Error);
50 assert(TheTarget && "Unable to create target!");
51
52 // Get the assembler info needed to setup the MCContext.
53 const MCAsmInfo *MAI = TheTarget->createAsmInfo(TripleName);
54 assert(MAI && "Unable to create target asm info!");
55
56 // Package up features to be passed to target/subtarget
57 std::string FeaturesStr;
Evan Cheng276365d2011-06-30 01:53:36 +000058 std::string CPU;
Kevin Enderby93f79362011-03-28 18:25:07 +000059
60 // FIXME: We shouldn't need to do this (and link in codegen).
61 // When we split this out, we should do it in a way that makes
62 // it straightforward to switch subtargets on the fly.
Evan Cheng276365d2011-06-30 01:53:36 +000063 TargetMachine *TM = TheTarget->createTargetMachine(TripleName, CPU,
64 FeaturesStr);
Kevin Enderby93f79362011-03-28 18:25:07 +000065 assert(TM && "Unable to create target machine!");
66
67 // Get the target assembler info needed to setup the context.
68 const TargetAsmInfo *tai = new TargetAsmInfo(*TM);
69 assert(tai && "Unable to create target assembler!");
70
71 // Set up the MCContext for creating symbols and MCExpr's.
72 MCContext *Ctx = new MCContext(*MAI, tai);
73 assert(Ctx && "Unable to create MCContext!");
74
75 // Set up disassembler.
Kevin Enderbybd332762011-04-11 18:08:50 +000076 MCDisassembler *DisAsm = TheTarget->createMCDisassembler();
Kevin Enderby93f79362011-03-28 18:25:07 +000077 assert(DisAsm && "Unable to create disassembler!");
Kevin Enderbybd332762011-04-11 18:08:50 +000078 DisAsm->setupForSymbolicDisassembly(GetOpInfo, DisInfo, Ctx);
Kevin Enderby93f79362011-03-28 18:25:07 +000079
80 // Set up the instruction printer.
81 int AsmPrinterVariant = MAI->getAssemblerDialect();
82 MCInstPrinter *IP = TheTarget->createMCInstPrinter(*TM, AsmPrinterVariant,
83 *MAI);
84 assert(IP && "Unable to create instruction printer!");
85
86 LLVMDisasmContext *DC = new LLVMDisasmContext(TripleName, DisInfo, TagType,
87 GetOpInfo, SymbolLookUp,
88 TheTarget, MAI, TM, tai, Ctx,
89 DisAsm, IP);
90 assert(DC && "Allocation failure!");
91 return DC;
92}
93
94//
95// LLVMDisasmDispose() disposes of the disassembler specified by the context.
96//
97void LLVMDisasmDispose(LLVMDisasmContextRef DCR){
98 LLVMDisasmContext *DC = (LLVMDisasmContext *)DCR;
99 delete DC;
100}
101
102namespace {
103//
104// The memory object created by LLVMDisasmInstruction().
105//
106class DisasmMemoryObject : public MemoryObject {
Kevin Enderby93f79362011-03-28 18:25:07 +0000107 uint8_t *Bytes;
108 uint64_t Size;
109 uint64_t BasePC;
110public:
111 DisasmMemoryObject(uint8_t *bytes, uint64_t size, uint64_t basePC) :
112 Bytes(bytes), Size(size), BasePC(basePC) {}
113
114 uint64_t getBase() const { return BasePC; }
115 uint64_t getExtent() const { return Size; }
116
117 int readByte(uint64_t Addr, uint8_t *Byte) const {
118 if (Addr - BasePC >= Size)
119 return -1;
120 *Byte = Bytes[Addr - BasePC];
121 return 0;
122 }
123};
Chris Lattner97ff42d2011-05-22 04:52:24 +0000124} // end anonymous namespace
Kevin Enderby93f79362011-03-28 18:25:07 +0000125
126//
Benjamin Kramer5731ff62011-04-09 14:06:12 +0000127// LLVMDisasmInstruction() disassembles a single instruction using the
Kevin Enderby93f79362011-03-28 18:25:07 +0000128// disassembler context specified in the parameter DC. The bytes of the
Benjamin Kramer5731ff62011-04-09 14:06:12 +0000129// instruction are specified in the parameter Bytes, and contains at least
Kevin Enderby93f79362011-03-28 18:25:07 +0000130// BytesSize number of bytes. The instruction is at the address specified by
131// the PC parameter. If a valid instruction can be disassembled its string is
132// returned indirectly in OutString which whos size is specified in the
133// parameter OutStringSize. This function returns the number of bytes in the
134// instruction or zero if there was no valid instruction. If this function
135// returns zero the caller will have to pick how many bytes they want to step
136// over by printing a .byte, .long etc. to continue.
137//
138size_t LLVMDisasmInstruction(LLVMDisasmContextRef DCR, uint8_t *Bytes,
139 uint64_t BytesSize, uint64_t PC, char *OutString,
140 size_t OutStringSize){
141 LLVMDisasmContext *DC = (LLVMDisasmContext *)DCR;
142 // Wrap the pointer to the Bytes, BytesSize and PC in a MemoryObject.
143 DisasmMemoryObject MemoryObject(Bytes, BytesSize, PC);
144
145 uint64_t Size;
146 MCInst Inst;
147 const MCDisassembler *DisAsm = DC->getDisAsm();
148 MCInstPrinter *IP = DC->getIP();
149 if (!DisAsm->getInstruction(Inst, Size, MemoryObject, PC, /*REMOVE*/ nulls()))
150 return 0;
151
Chris Lattner9063b552011-05-22 04:53:24 +0000152 SmallVector<char, 64> InsnStr;
153 raw_svector_ostream OS(InsnStr);
Benjamin Kramer5731ff62011-04-09 14:06:12 +0000154 IP->printInst(&Inst, OS);
155 OS.flush();
Kevin Enderby93f79362011-03-28 18:25:07 +0000156
Chris Lattner97ff42d2011-05-22 04:52:24 +0000157 assert(OutStringSize != 0 && "Output buffer cannot be zero size");
Benjamin Kramer5731ff62011-04-09 14:06:12 +0000158 size_t OutputSize = std::min(OutStringSize-1, InsnStr.size());
159 std::memcpy(OutString, InsnStr.data(), OutputSize);
160 OutString[OutputSize] = '\0'; // Terminate string.
161
Kevin Enderby93f79362011-03-28 18:25:07 +0000162 return Size;
163}