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Sean Callananee5dfd42010-02-01 08:49:35 +00001//===-EDDisassembler.cpp - LLVM Enhanced Disassembler ---------------------===//
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//===----------------------------------------------------------------------===//
9//
10// This file implements the Enhanced Disassembly library's disassembler class.
11// The disassembler is responsible for vending individual instructions according
12// to a given architecture and disassembly syntax.
13//
14//===----------------------------------------------------------------------===//
15
16#include "llvm/ADT/OwningPtr.h"
17#include "llvm/ADT/SmallVector.h"
18#include "llvm/MC/MCAsmInfo.h"
19#include "llvm/MC/MCContext.h"
20#include "llvm/MC/MCDisassembler.h"
21#include "llvm/MC/MCExpr.h"
22#include "llvm/MC/MCInst.h"
23#include "llvm/MC/MCInstPrinter.h"
24#include "llvm/MC/MCStreamer.h"
25#include "llvm/MC/MCParser/AsmLexer.h"
26#include "llvm/MC/MCParser/AsmParser.h"
27#include "llvm/MC/MCParser/MCAsmParser.h"
28#include "llvm/MC/MCParser/MCParsedAsmOperand.h"
29#include "llvm/Support/MemoryBuffer.h"
30#include "llvm/Support/MemoryObject.h"
31#include "llvm/Support/SourceMgr.h"
32#include "llvm/Target/TargetAsmLexer.h"
33#include "llvm/Target/TargetAsmParser.h"
34#include "llvm/Target/TargetRegistry.h"
35#include "llvm/Target/TargetMachine.h"
36#include "llvm/Target/TargetRegisterInfo.h"
37#include "llvm/Target/TargetSelect.h"
38
39#include "EDDisassembler.h"
40#include "EDInst.h"
41
42#include "../../lib/Target/X86/X86GenEDInfo.inc"
43
44using namespace llvm;
45
46bool EDDisassembler::sInitialized = false;
47EDDisassembler::DisassemblerMap_t EDDisassembler::sDisassemblers;
48
49struct InfoMap {
50 Triple::ArchType Arch;
51 const char *String;
52 const InstInfo *Info;
53};
54
55static struct InfoMap infomap[] = {
56 { Triple::x86, "i386-unknown-unknown", instInfoX86 },
57 { Triple::x86_64, "x86_64-unknown-unknown", instInfoX86 },
58 { Triple::InvalidArch, NULL, NULL }
59};
60
61/// infoFromArch - Returns the InfoMap corresponding to a given architecture,
62/// or NULL if there is an error
63///
64/// @arg arch - The Triple::ArchType for the desired architecture
65static const InfoMap *infoFromArch(Triple::ArchType arch) {
66 unsigned int infoIndex;
67
68 for (infoIndex = 0; infomap[infoIndex].String != NULL; ++infoIndex) {
69 if(arch == infomap[infoIndex].Arch)
70 return &infomap[infoIndex];
71 }
72
73 return NULL;
74}
75
76/// getLLVMSyntaxVariant - gets the constant to use to get an assembly printer
77/// for the desired assembly syntax, suitable for passing to
78/// Target::createMCInstPrinter()
79///
80/// @arg arch - The target architecture
81/// @arg syntax - The assembly syntax in sd form
82static int getLLVMSyntaxVariant(Triple::ArchType arch,
83 EDAssemblySyntax_t syntax) {
84 switch (syntax) {
85 default:
86 return -1;
87 // Mappings below from X86AsmPrinter.cpp
88 case kEDAssemblySyntaxX86ATT:
89 if (arch == Triple::x86 || arch == Triple::x86_64)
90 return 0;
91 else
92 return -1;
93 case kEDAssemblySyntaxX86Intel:
94 if (arch == Triple::x86 || arch == Triple::x86_64)
95 return 1;
96 else
97 return -1;
98 }
99}
100
101#define BRINGUP_TARGET(tgt) \
102 LLVMInitialize##tgt##TargetInfo(); \
103 LLVMInitialize##tgt##Target(); \
104 LLVMInitialize##tgt##AsmPrinter(); \
105 LLVMInitialize##tgt##AsmParser(); \
106 LLVMInitialize##tgt##Disassembler();
107
108void EDDisassembler::initialize() {
109 if (sInitialized)
110 return;
111
112 sInitialized = true;
113
114 BRINGUP_TARGET(X86)
115}
116
117#undef BRINGUP_TARGET
118
119EDDisassembler *EDDisassembler::getDisassembler(Triple::ArchType arch,
120 EDAssemblySyntax_t syntax) {
121 CPUKey key;
122 key.Arch = arch;
123 key.Syntax = syntax;
124
125 EDDisassembler::DisassemblerMap_t::iterator i = sDisassemblers.find(key);
126
127 if (i != sDisassemblers.end()) {
128 return i->second;
129 }
130 else {
131 EDDisassembler* sdd = new EDDisassembler(key);
132 if(!sdd->valid()) {
133 delete sdd;
134 return NULL;
135 }
136
137 sDisassemblers[key] = sdd;
138
139 return sdd;
140 }
141
142 return NULL;
143}
144
145EDDisassembler *EDDisassembler::getDisassembler(StringRef str,
146 EDAssemblySyntax_t syntax) {
147 Triple triple(str);
148
149 return getDisassembler(triple.getArch(), syntax);
150}
151
Sean Callananee5dfd42010-02-01 08:49:35 +0000152EDDisassembler::EDDisassembler(CPUKey &key) :
153 Valid(false), ErrorString(), ErrorStream(ErrorString), Key(key) {
154 const InfoMap *infoMap = infoFromArch(key.Arch);
155
156 if (!infoMap)
157 return;
158
159 const char *triple = infoMap->String;
160
161 int syntaxVariant = getLLVMSyntaxVariant(key.Arch, key.Syntax);
162
163 if (syntaxVariant < 0)
164 return;
165
166 std::string tripleString(triple);
167 std::string errorString;
168
169 Tgt = TargetRegistry::lookupTarget(tripleString,
170 errorString);
171
172 if (!Tgt)
173 return;
174
175 std::string featureString;
176
177 OwningPtr<const TargetMachine>
178 targetMachine(Tgt->createTargetMachine(tripleString,
179 featureString));
180
181 const TargetRegisterInfo *registerInfo = targetMachine->getRegisterInfo();
182
183 if (!registerInfo)
184 return;
185
186 AsmInfo.reset(Tgt->createAsmInfo(tripleString));
187
188 if (!AsmInfo)
189 return;
190
191 Disassembler.reset(Tgt->createMCDisassembler());
192
193 if (!Disassembler)
194 return;
195
196 InstString.reset(new std::string);
197 InstStream.reset(new raw_string_ostream(*InstString));
Chris Lattnerd3740872010-04-04 05:04:31 +0000198 InstPrinter.reset(Tgt->createMCInstPrinter(syntaxVariant, *AsmInfo));
Sean Callananee5dfd42010-02-01 08:49:35 +0000199
200 if (!InstPrinter)
201 return;
202
203 GenericAsmLexer.reset(new AsmLexer(*AsmInfo));
204 SpecificAsmLexer.reset(Tgt->createAsmLexer(*AsmInfo));
205 SpecificAsmLexer->InstallLexer(*GenericAsmLexer);
206
207 InstInfos = infoMap->Info;
Sean Callanand74667e2010-02-02 02:18:20 +0000208
209 initMaps(*targetMachine->getRegisterInfo());
Sean Callananee5dfd42010-02-01 08:49:35 +0000210
211 Valid = true;
212}
213
214EDDisassembler::~EDDisassembler() {
215 if(!valid())
216 return;
217}
218
219namespace {
220 /// EDMemoryObject - a subclass of MemoryObject that allows use of a callback
221 /// as provided by the sd interface. See MemoryObject.
222 class EDMemoryObject : public llvm::MemoryObject {
223 private:
224 EDByteReaderCallback Callback;
225 void *Arg;
226 public:
227 EDMemoryObject(EDByteReaderCallback callback,
228 void *arg) : Callback(callback), Arg(arg) { }
229 ~EDMemoryObject() { }
230 uint64_t getBase() const { return 0x0; }
231 uint64_t getExtent() const { return (uint64_t)-1; }
232 int readByte(uint64_t address, uint8_t *ptr) const {
233 if(!Callback)
234 return -1;
235
236 if(Callback(ptr, address, Arg))
237 return -1;
238
239 return 0;
240 }
241 };
242}
243
244EDInst *EDDisassembler::createInst(EDByteReaderCallback byteReader,
245 uint64_t address,
246 void *arg) {
247 EDMemoryObject memoryObject(byteReader, arg);
248
249 MCInst* inst = new MCInst;
250 uint64_t byteSize;
251
252 if (!Disassembler->getInstruction(*inst,
253 byteSize,
254 memoryObject,
255 address,
256 ErrorStream)) {
257 delete inst;
258 return NULL;
259 }
260 else {
261 const InstInfo *thisInstInfo = &InstInfos[inst->getOpcode()];
262
263 EDInst* sdInst = new EDInst(inst, byteSize, *this, thisInstInfo);
264 return sdInst;
265 }
266}
267
268void EDDisassembler::initMaps(const TargetRegisterInfo &registerInfo) {
269 unsigned numRegisters = registerInfo.getNumRegs();
270 unsigned registerIndex;
271
272 for (registerIndex = 0; registerIndex < numRegisters; ++registerIndex) {
273 const char* registerName = registerInfo.get(registerIndex).Name;
274
275 RegVec.push_back(registerName);
276 RegRMap[registerName] = registerIndex;
277 }
278
279 if (Key.Arch == Triple::x86 ||
280 Key.Arch == Triple::x86_64) {
281 stackPointers.insert(registerIDWithName("SP"));
282 stackPointers.insert(registerIDWithName("ESP"));
283 stackPointers.insert(registerIDWithName("RSP"));
284
285 programCounters.insert(registerIDWithName("IP"));
286 programCounters.insert(registerIDWithName("EIP"));
287 programCounters.insert(registerIDWithName("RIP"));
288 }
289}
290
291const char *EDDisassembler::nameWithRegisterID(unsigned registerID) const {
292 if (registerID >= RegVec.size())
293 return NULL;
294 else
295 return RegVec[registerID].c_str();
296}
297
298unsigned EDDisassembler::registerIDWithName(const char *name) const {
299 regrmap_t::const_iterator iter = RegRMap.find(std::string(name));
300 if (iter == RegRMap.end())
301 return 0;
302 else
303 return (*iter).second;
304}
305
306bool EDDisassembler::registerIsStackPointer(unsigned registerID) {
307 return (stackPointers.find(registerID) != stackPointers.end());
308}
309
310bool EDDisassembler::registerIsProgramCounter(unsigned registerID) {
311 return (programCounters.find(registerID) != programCounters.end());
312}
313
Chris Lattnerd3740872010-04-04 05:04:31 +0000314int EDDisassembler::printInst(std::string &str, MCInst &inst) {
Sean Callananee5dfd42010-02-01 08:49:35 +0000315 PrinterMutex.acquire();
316
Chris Lattnerd3740872010-04-04 05:04:31 +0000317 InstPrinter->printInst(&inst, *InstStream);
Sean Callananee5dfd42010-02-01 08:49:35 +0000318 InstStream->flush();
319 str = *InstString;
320 InstString->clear();
321
322 PrinterMutex.release();
323
324 return 0;
325}
326
327int EDDisassembler::parseInst(SmallVectorImpl<MCParsedAsmOperand*> &operands,
328 SmallVectorImpl<AsmToken> &tokens,
329 const std::string &str) {
330 int ret = 0;
331
332 const char *cStr = str.c_str();
333 MemoryBuffer *buf = MemoryBuffer::getMemBuffer(cStr, cStr + strlen(cStr));
334
335 StringRef instName;
336 SMLoc instLoc;
337
338 SourceMgr sourceMgr;
339 sourceMgr.AddNewSourceBuffer(buf, SMLoc()); // ownership of buf handed over
Chris Lattnerc18409a2010-03-11 22:53:35 +0000340 MCContext context(*AsmInfo);
341 OwningPtr<MCStreamer> streamer(createNullStreamer(context));
Sean Callananee5dfd42010-02-01 08:49:35 +0000342 AsmParser genericParser(sourceMgr, context, *streamer, *AsmInfo);
Chris Lattnerc18409a2010-03-11 22:53:35 +0000343 OwningPtr<TargetAsmParser> TargetParser(Tgt->createAsmParser(genericParser));
Sean Callananee5dfd42010-02-01 08:49:35 +0000344
345 AsmToken OpcodeToken = genericParser.Lex();
346
347 if(OpcodeToken.is(AsmToken::Identifier)) {
348 instName = OpcodeToken.getString();
349 instLoc = OpcodeToken.getLoc();
Chris Lattnerc18409a2010-03-11 22:53:35 +0000350 if (TargetParser->ParseInstruction(instName, instLoc, operands))
Sean Callananee5dfd42010-02-01 08:49:35 +0000351 ret = -1;
352 }
353 else {
354 ret = -1;
355 }
356
Sean Callananee5dfd42010-02-01 08:49:35 +0000357 ParserMutex.acquire();
358
359 if (!ret) {
360 GenericAsmLexer->setBuffer(buf);
361
362 while (SpecificAsmLexer->Lex(),
363 SpecificAsmLexer->isNot(AsmToken::Eof) &&
364 SpecificAsmLexer->isNot(AsmToken::EndOfStatement)) {
365 if (SpecificAsmLexer->is(AsmToken::Error)) {
366 ret = -1;
367 break;
368 }
369 tokens.push_back(SpecificAsmLexer->getTok());
370 }
371 }
372
373 ParserMutex.release();
374
375 return ret;
376}
377
378int EDDisassembler::llvmSyntaxVariant() const {
379 return LLVMSyntaxVariant;
380}