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Daniel Dunbar5f9b9ef2009-11-25 06:53:08 +00001//===- X86Disassembler.cpp - Disassembler for x86 and x86_64 ----*- 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//===----------------------------------------------------------------------===//
Sean Callanan8ed9f512009-12-19 02:59:52 +00009//
10// This file is part of the X86 Disassembler.
11// It contains code to translate the data produced by the decoder into
12// MCInsts.
13// Documentation for the disassembler can be found in X86Disassembler.h.
14//
15//===----------------------------------------------------------------------===//
16
17#include "X86Disassembler.h"
18#include "X86DisassemblerDecoder.h"
Daniel Dunbar5f9b9ef2009-11-25 06:53:08 +000019
Sean Callanan9899f702010-04-13 21:21:57 +000020#include "llvm/MC/EDInstInfo.h"
Daniel Dunbar5f9b9ef2009-11-25 06:53:08 +000021#include "llvm/MC/MCDisassembler.h"
Sean Callanan8ed9f512009-12-19 02:59:52 +000022#include "llvm/MC/MCDisassembler.h"
23#include "llvm/MC/MCInst.h"
Daniel Dunbar5f9b9ef2009-11-25 06:53:08 +000024#include "llvm/Target/TargetRegistry.h"
Sean Callanana144c3f2010-04-02 21:23:51 +000025#include "llvm/Support/Debug.h"
Sean Callanan8ed9f512009-12-19 02:59:52 +000026#include "llvm/Support/MemoryObject.h"
Sean Callanan8ed9f512009-12-19 02:59:52 +000027#include "llvm/Support/raw_ostream.h"
Sean Callanan0122c902009-12-22 01:11:26 +000028
Douglas Gregor3dac3b72009-12-22 17:25:11 +000029#include "X86GenRegisterNames.inc"
Sean Callanan9899f702010-04-13 21:21:57 +000030#include "X86GenEDInfo.inc"
Sean Callanan0122c902009-12-22 01:11:26 +000031
Daniel Dunbar5f9b9ef2009-11-25 06:53:08 +000032using namespace llvm;
Sean Callanan8ed9f512009-12-19 02:59:52 +000033using namespace llvm::X86Disassembler;
34
Sean Callanana144c3f2010-04-02 21:23:51 +000035void x86DisassemblerDebug(const char *file,
36 unsigned line,
37 const char *s) {
38 dbgs() << file << ":" << line << ": " << s;
39}
40
41#define debug(s) DEBUG(x86DisassemblerDebug(__FILE__, __LINE__, s));
42
Sean Callanan8ed9f512009-12-19 02:59:52 +000043namespace llvm {
44
45// Fill-ins to make the compiler happy. These constants are never actually
46// assigned; they are just filler to make an automatically-generated switch
47// statement work.
48namespace X86 {
49 enum {
50 BX_SI = 500,
51 BX_DI = 501,
52 BP_SI = 502,
53 BP_DI = 503,
54 sib = 504,
55 sib64 = 505
56 };
57}
58
Sean Callanan0122c902009-12-22 01:11:26 +000059extern Target TheX86_32Target, TheX86_64Target;
60
Sean Callanan8ed9f512009-12-19 02:59:52 +000061}
62
Sean Callanana144c3f2010-04-02 21:23:51 +000063static bool translateInstruction(MCInst &target,
64 InternalInstruction &source);
Sean Callanan8ed9f512009-12-19 02:59:52 +000065
66X86GenericDisassembler::X86GenericDisassembler(DisassemblerMode mode) :
67 MCDisassembler(),
68 fMode(mode) {
69}
70
71X86GenericDisassembler::~X86GenericDisassembler() {
72}
73
Sean Callanan9899f702010-04-13 21:21:57 +000074EDInstInfo *X86GenericDisassembler::getEDInfo() const {
75 return instInfoX86;
76}
77
Sean Callanan8ed9f512009-12-19 02:59:52 +000078/// regionReader - a callback function that wraps the readByte method from
79/// MemoryObject.
80///
81/// @param arg - The generic callback parameter. In this case, this should
82/// be a pointer to a MemoryObject.
83/// @param byte - A pointer to the byte to be read.
84/// @param address - The address to be read.
85static int regionReader(void* arg, uint8_t* byte, uint64_t address) {
86 MemoryObject* region = static_cast<MemoryObject*>(arg);
87 return region->readByte(address, byte);
88}
89
90/// logger - a callback function that wraps the operator<< method from
91/// raw_ostream.
92///
93/// @param arg - The generic callback parameter. This should be a pointe
94/// to a raw_ostream.
95/// @param log - A string to be logged. logger() adds a newline.
96static void logger(void* arg, const char* log) {
97 if (!arg)
98 return;
99
100 raw_ostream &vStream = *(static_cast<raw_ostream*>(arg));
101 vStream << log << "\n";
102}
103
104//
105// Public interface for the disassembler
106//
107
108bool X86GenericDisassembler::getInstruction(MCInst &instr,
109 uint64_t &size,
110 const MemoryObject &region,
111 uint64_t address,
112 raw_ostream &vStream) const {
113 InternalInstruction internalInstr;
114
115 int ret = decodeInstruction(&internalInstr,
116 regionReader,
117 (void*)&region,
118 logger,
119 (void*)&vStream,
120 address,
121 fMode);
122
Sean Callanana144c3f2010-04-02 21:23:51 +0000123 if (ret) {
Sean Callanan8ed9f512009-12-19 02:59:52 +0000124 size = internalInstr.readerCursor - address;
125 return false;
126 }
127 else {
128 size = internalInstr.length;
Sean Callanana144c3f2010-04-02 21:23:51 +0000129 return !translateInstruction(instr, internalInstr);
Sean Callanan8ed9f512009-12-19 02:59:52 +0000130 }
131}
132
133//
134// Private code that translates from struct InternalInstructions to MCInsts.
135//
136
137/// translateRegister - Translates an internal register to the appropriate LLVM
138/// register, and appends it as an operand to an MCInst.
139///
140/// @param mcInst - The MCInst to append to.
141/// @param reg - The Reg to append.
142static void translateRegister(MCInst &mcInst, Reg reg) {
143#define ENTRY(x) X86::x,
144 uint8_t llvmRegnums[] = {
145 ALL_REGS
146 0
147 };
148#undef ENTRY
149
150 uint8_t llvmRegnum = llvmRegnums[reg];
151 mcInst.addOperand(MCOperand::CreateReg(llvmRegnum));
152}
153
154/// translateImmediate - Appends an immediate operand to an MCInst.
155///
156/// @param mcInst - The MCInst to append to.
157/// @param immediate - The immediate value to append.
Sean Callananbe192dd2010-05-05 22:47:27 +0000158/// @param operand - The operand, as stored in the descriptor table.
159/// @param insn - The internal instruction.
160static void translateImmediate(MCInst &mcInst,
161 uint64_t immediate,
162 OperandSpecifier &operand,
163 InternalInstruction &insn) {
164 // Sign-extend the immediate if necessary.
165
166 OperandType type = operand.type;
167
168 if (type == TYPE_RELv) {
169 switch (insn.displacementSize) {
170 default:
171 break;
172 case 8:
173 type = TYPE_MOFFS8;
174 break;
175 case 16:
176 type = TYPE_MOFFS16;
177 break;
178 case 32:
179 type = TYPE_MOFFS32;
180 break;
181 case 64:
182 type = TYPE_MOFFS64;
183 break;
184 }
185 }
186
187 switch (type) {
188 case TYPE_MOFFS8:
189 case TYPE_REL8:
190 if(immediate & 0x80)
191 immediate |= ~(0xffull);
192 break;
193 case TYPE_MOFFS16:
194 if(immediate & 0x8000)
195 immediate |= ~(0xffffull);
196 break;
197 case TYPE_MOFFS32:
198 case TYPE_REL32:
199 case TYPE_REL64:
200 if(immediate & 0x80000000)
201 immediate |= ~(0xffffffffull);
202 break;
203 case TYPE_MOFFS64:
204 default:
205 // operand is 64 bits wide. Do nothing.
206 break;
207 }
208
Sean Callanan8ed9f512009-12-19 02:59:52 +0000209 mcInst.addOperand(MCOperand::CreateImm(immediate));
210}
211
212/// translateRMRegister - Translates a register stored in the R/M field of the
213/// ModR/M byte to its LLVM equivalent and appends it to an MCInst.
214/// @param mcInst - The MCInst to append to.
215/// @param insn - The internal instruction to extract the R/M field
216/// from.
Sean Callanana144c3f2010-04-02 21:23:51 +0000217/// @return - 0 on success; -1 otherwise
218static bool translateRMRegister(MCInst &mcInst,
Sean Callanan8ed9f512009-12-19 02:59:52 +0000219 InternalInstruction &insn) {
Sean Callanana144c3f2010-04-02 21:23:51 +0000220 if (insn.eaBase == EA_BASE_sib || insn.eaBase == EA_BASE_sib64) {
221 debug("A R/M register operand may not have a SIB byte");
222 return true;
223 }
Sean Callanan8ed9f512009-12-19 02:59:52 +0000224
225 switch (insn.eaBase) {
Sean Callanana144c3f2010-04-02 21:23:51 +0000226 default:
227 debug("Unexpected EA base register");
228 return true;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000229 case EA_BASE_NONE:
Sean Callanana144c3f2010-04-02 21:23:51 +0000230 debug("EA_BASE_NONE for ModR/M base");
231 return true;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000232#define ENTRY(x) case EA_BASE_##x:
233 ALL_EA_BASES
234#undef ENTRY
Sean Callanana144c3f2010-04-02 21:23:51 +0000235 debug("A R/M register operand may not have a base; "
236 "the operand must be a register.");
237 return true;
238#define ENTRY(x) \
Sean Callanan8ed9f512009-12-19 02:59:52 +0000239 case EA_REG_##x: \
240 mcInst.addOperand(MCOperand::CreateReg(X86::x)); break;
241 ALL_REGS
242#undef ENTRY
Sean Callanan8ed9f512009-12-19 02:59:52 +0000243 }
Sean Callanana144c3f2010-04-02 21:23:51 +0000244
245 return false;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000246}
247
248/// translateRMMemory - Translates a memory operand stored in the Mod and R/M
249/// fields of an internal instruction (and possibly its SIB byte) to a memory
250/// operand in LLVM's format, and appends it to an MCInst.
251///
252/// @param mcInst - The MCInst to append to.
253/// @param insn - The instruction to extract Mod, R/M, and SIB fields
254/// from.
Sean Callanana144c3f2010-04-02 21:23:51 +0000255/// @return - 0 on success; nonzero otherwise
Chris Lattner37a746b2010-07-13 04:23:55 +0000256static bool translateRMMemory(MCInst &mcInst, InternalInstruction &insn) {
Sean Callanan8ed9f512009-12-19 02:59:52 +0000257 // Addresses in an MCInst are represented as five operands:
258 // 1. basereg (register) The R/M base, or (if there is a SIB) the
259 // SIB base
260 // 2. scaleamount (immediate) 1, or (if there is a SIB) the specified
261 // scale amount
262 // 3. indexreg (register) x86_registerNONE, or (if there is a SIB)
263 // the index (which is multiplied by the
264 // scale amount)
265 // 4. displacement (immediate) 0, or the displacement if there is one
266 // 5. segmentreg (register) x86_registerNONE for now, but could be set
267 // if we have segment overrides
268
269 MCOperand baseReg;
270 MCOperand scaleAmount;
271 MCOperand indexReg;
272 MCOperand displacement;
273 MCOperand segmentReg;
274
275 if (insn.eaBase == EA_BASE_sib || insn.eaBase == EA_BASE_sib64) {
276 if (insn.sibBase != SIB_BASE_NONE) {
277 switch (insn.sibBase) {
278 default:
Sean Callanana144c3f2010-04-02 21:23:51 +0000279 debug("Unexpected sibBase");
280 return true;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000281#define ENTRY(x) \
Sean Callanan7fb35a22009-12-22 21:12:55 +0000282 case SIB_BASE_##x: \
Sean Callanan8ed9f512009-12-19 02:59:52 +0000283 baseReg = MCOperand::CreateReg(X86::x); break;
284 ALL_SIB_BASES
285#undef ENTRY
286 }
287 } else {
288 baseReg = MCOperand::CreateReg(0);
289 }
290
291 if (insn.sibIndex != SIB_INDEX_NONE) {
292 switch (insn.sibIndex) {
293 default:
Sean Callanana144c3f2010-04-02 21:23:51 +0000294 debug("Unexpected sibIndex");
295 return true;
Sean Callanan7fb35a22009-12-22 21:12:55 +0000296#define ENTRY(x) \
Sean Callanan8ed9f512009-12-19 02:59:52 +0000297 case SIB_INDEX_##x: \
298 indexReg = MCOperand::CreateReg(X86::x); break;
299 EA_BASES_32BIT
300 EA_BASES_64BIT
301#undef ENTRY
302 }
303 } else {
304 indexReg = MCOperand::CreateReg(0);
305 }
306
307 scaleAmount = MCOperand::CreateImm(insn.sibScale);
308 } else {
309 switch (insn.eaBase) {
310 case EA_BASE_NONE:
Sean Callanana144c3f2010-04-02 21:23:51 +0000311 if (insn.eaDisplacement == EA_DISP_NONE) {
312 debug("EA_BASE_NONE and EA_DISP_NONE for ModR/M base");
313 return true;
314 }
Sean Callanan8ed9f512009-12-19 02:59:52 +0000315 if (insn.mode == MODE_64BIT)
316 baseReg = MCOperand::CreateReg(X86::RIP); // Section 2.2.1.6
317 else
318 baseReg = MCOperand::CreateReg(0);
319
320 indexReg = MCOperand::CreateReg(0);
321 break;
322 case EA_BASE_BX_SI:
323 baseReg = MCOperand::CreateReg(X86::BX);
324 indexReg = MCOperand::CreateReg(X86::SI);
325 break;
326 case EA_BASE_BX_DI:
327 baseReg = MCOperand::CreateReg(X86::BX);
328 indexReg = MCOperand::CreateReg(X86::DI);
329 break;
330 case EA_BASE_BP_SI:
331 baseReg = MCOperand::CreateReg(X86::BP);
332 indexReg = MCOperand::CreateReg(X86::SI);
333 break;
334 case EA_BASE_BP_DI:
335 baseReg = MCOperand::CreateReg(X86::BP);
336 indexReg = MCOperand::CreateReg(X86::DI);
337 break;
338 default:
339 indexReg = MCOperand::CreateReg(0);
340 switch (insn.eaBase) {
341 default:
Sean Callanana144c3f2010-04-02 21:23:51 +0000342 debug("Unexpected eaBase");
343 return true;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000344 // Here, we will use the fill-ins defined above. However,
345 // BX_SI, BX_DI, BP_SI, and BP_DI are all handled above and
346 // sib and sib64 were handled in the top-level if, so they're only
347 // placeholders to keep the compiler happy.
348#define ENTRY(x) \
349 case EA_BASE_##x: \
350 baseReg = MCOperand::CreateReg(X86::x); break;
351 ALL_EA_BASES
352#undef ENTRY
353#define ENTRY(x) case EA_REG_##x:
354 ALL_REGS
355#undef ENTRY
Sean Callanana144c3f2010-04-02 21:23:51 +0000356 debug("A R/M memory operand may not be a register; "
357 "the base field must be a base.");
358 return true;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000359 }
360 }
Sean Callanan7fb35a22009-12-22 21:12:55 +0000361
362 scaleAmount = MCOperand::CreateImm(1);
Sean Callanan8ed9f512009-12-19 02:59:52 +0000363 }
364
365 displacement = MCOperand::CreateImm(insn.displacement);
366
367 static const uint8_t segmentRegnums[SEG_OVERRIDE_max] = {
368 0, // SEG_OVERRIDE_NONE
369 X86::CS,
370 X86::SS,
371 X86::DS,
372 X86::ES,
373 X86::FS,
374 X86::GS
375 };
376
377 segmentReg = MCOperand::CreateReg(segmentRegnums[insn.segmentOverride]);
378
379 mcInst.addOperand(baseReg);
380 mcInst.addOperand(scaleAmount);
381 mcInst.addOperand(indexReg);
382 mcInst.addOperand(displacement);
Chris Lattner37a746b2010-07-13 04:23:55 +0000383 mcInst.addOperand(segmentReg);
Sean Callanana144c3f2010-04-02 21:23:51 +0000384 return false;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000385}
386
387/// translateRM - Translates an operand stored in the R/M (and possibly SIB)
388/// byte of an instruction to LLVM form, and appends it to an MCInst.
389///
390/// @param mcInst - The MCInst to append to.
391/// @param operand - The operand, as stored in the descriptor table.
392/// @param insn - The instruction to extract Mod, R/M, and SIB fields
393/// from.
Sean Callanana144c3f2010-04-02 21:23:51 +0000394/// @return - 0 on success; nonzero otherwise
395static bool translateRM(MCInst &mcInst,
396 OperandSpecifier &operand,
397 InternalInstruction &insn) {
Sean Callanan8ed9f512009-12-19 02:59:52 +0000398 switch (operand.type) {
399 default:
Sean Callanana144c3f2010-04-02 21:23:51 +0000400 debug("Unexpected type for a R/M operand");
401 return true;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000402 case TYPE_R8:
403 case TYPE_R16:
404 case TYPE_R32:
405 case TYPE_R64:
406 case TYPE_Rv:
407 case TYPE_MM:
408 case TYPE_MM32:
409 case TYPE_MM64:
410 case TYPE_XMM:
411 case TYPE_XMM32:
412 case TYPE_XMM64:
413 case TYPE_XMM128:
414 case TYPE_DEBUGREG:
Sean Callanan1a8b7892010-05-06 20:59:00 +0000415 case TYPE_CONTROLREG:
Sean Callanana144c3f2010-04-02 21:23:51 +0000416 return translateRMRegister(mcInst, insn);
Sean Callanan8ed9f512009-12-19 02:59:52 +0000417 case TYPE_M:
418 case TYPE_M8:
419 case TYPE_M16:
420 case TYPE_M32:
421 case TYPE_M64:
422 case TYPE_M128:
423 case TYPE_M512:
424 case TYPE_Mv:
425 case TYPE_M32FP:
426 case TYPE_M64FP:
427 case TYPE_M80FP:
428 case TYPE_M16INT:
429 case TYPE_M32INT:
430 case TYPE_M64INT:
431 case TYPE_M1616:
432 case TYPE_M1632:
433 case TYPE_M1664:
Sean Callanan7fb35a22009-12-22 21:12:55 +0000434 case TYPE_LEA:
Chris Lattner37a746b2010-07-13 04:23:55 +0000435 return translateRMMemory(mcInst, insn);
Sean Callanan8ed9f512009-12-19 02:59:52 +0000436 }
437}
438
439/// translateFPRegister - Translates a stack position on the FPU stack to its
440/// LLVM form, and appends it to an MCInst.
441///
442/// @param mcInst - The MCInst to append to.
443/// @param stackPos - The stack position to translate.
Sean Callanana144c3f2010-04-02 21:23:51 +0000444/// @return - 0 on success; nonzero otherwise.
445static bool translateFPRegister(MCInst &mcInst,
446 uint8_t stackPos) {
447 if (stackPos >= 8) {
448 debug("Invalid FP stack position");
449 return true;
450 }
Sean Callanan8ed9f512009-12-19 02:59:52 +0000451
452 mcInst.addOperand(MCOperand::CreateReg(X86::ST0 + stackPos));
Sean Callanana144c3f2010-04-02 21:23:51 +0000453
454 return false;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000455}
456
457/// translateOperand - Translates an operand stored in an internal instruction
458/// to LLVM's format and appends it to an MCInst.
459///
460/// @param mcInst - The MCInst to append to.
461/// @param operand - The operand, as stored in the descriptor table.
462/// @param insn - The internal instruction.
Sean Callanana144c3f2010-04-02 21:23:51 +0000463/// @return - false on success; true otherwise.
464static bool translateOperand(MCInst &mcInst,
465 OperandSpecifier &operand,
466 InternalInstruction &insn) {
Sean Callanan8ed9f512009-12-19 02:59:52 +0000467 switch (operand.encoding) {
468 default:
Sean Callanana144c3f2010-04-02 21:23:51 +0000469 debug("Unhandled operand encoding during translation");
470 return true;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000471 case ENCODING_REG:
472 translateRegister(mcInst, insn.reg);
Sean Callanana144c3f2010-04-02 21:23:51 +0000473 return false;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000474 case ENCODING_RM:
Sean Callanana144c3f2010-04-02 21:23:51 +0000475 return translateRM(mcInst, operand, insn);
Sean Callanan8ed9f512009-12-19 02:59:52 +0000476 case ENCODING_CB:
477 case ENCODING_CW:
478 case ENCODING_CD:
479 case ENCODING_CP:
480 case ENCODING_CO:
481 case ENCODING_CT:
Sean Callanana144c3f2010-04-02 21:23:51 +0000482 debug("Translation of code offsets isn't supported.");
483 return true;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000484 case ENCODING_IB:
485 case ENCODING_IW:
486 case ENCODING_ID:
487 case ENCODING_IO:
488 case ENCODING_Iv:
489 case ENCODING_Ia:
Sean Callananbe192dd2010-05-05 22:47:27 +0000490 translateImmediate(mcInst,
491 insn.immediates[insn.numImmediatesTranslated++],
492 operand,
493 insn);
Sean Callanana144c3f2010-04-02 21:23:51 +0000494 return false;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000495 case ENCODING_RB:
496 case ENCODING_RW:
497 case ENCODING_RD:
498 case ENCODING_RO:
499 translateRegister(mcInst, insn.opcodeRegister);
Sean Callanana144c3f2010-04-02 21:23:51 +0000500 return false;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000501 case ENCODING_I:
Sean Callanana144c3f2010-04-02 21:23:51 +0000502 return translateFPRegister(mcInst, insn.opcodeModifier);
Sean Callanan8ed9f512009-12-19 02:59:52 +0000503 case ENCODING_Rv:
504 translateRegister(mcInst, insn.opcodeRegister);
Sean Callanana144c3f2010-04-02 21:23:51 +0000505 return false;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000506 case ENCODING_DUP:
Sean Callanana144c3f2010-04-02 21:23:51 +0000507 return translateOperand(mcInst,
508 insn.spec->operands[operand.type - TYPE_DUP0],
509 insn);
Sean Callanan8ed9f512009-12-19 02:59:52 +0000510 }
511}
512
513/// translateInstruction - Translates an internal instruction and all its
514/// operands to an MCInst.
515///
516/// @param mcInst - The MCInst to populate with the instruction's data.
517/// @param insn - The internal instruction.
Sean Callanana144c3f2010-04-02 21:23:51 +0000518/// @return - false on success; true otherwise.
519static bool translateInstruction(MCInst &mcInst,
520 InternalInstruction &insn) {
521 if (!insn.spec) {
522 debug("Instruction has no specification");
523 return true;
524 }
Sean Callanan8ed9f512009-12-19 02:59:52 +0000525
526 mcInst.setOpcode(insn.instructionID);
527
528 int index;
529
530 insn.numImmediatesTranslated = 0;
531
532 for (index = 0; index < X86_MAX_OPERANDS; ++index) {
Sean Callanana144c3f2010-04-02 21:23:51 +0000533 if (insn.spec->operands[index].encoding != ENCODING_NONE) {
534 if (translateOperand(mcInst, insn.spec->operands[index], insn)) {
535 return true;
536 }
537 }
Sean Callanan8ed9f512009-12-19 02:59:52 +0000538 }
Sean Callanana144c3f2010-04-02 21:23:51 +0000539
540 return false;
Sean Callanan8ed9f512009-12-19 02:59:52 +0000541}
Daniel Dunbar5f9b9ef2009-11-25 06:53:08 +0000542
Daniel Dunbar5d067fe2010-03-20 22:36:22 +0000543static MCDisassembler *createX86_32Disassembler(const Target &T) {
Sean Callanan8ed9f512009-12-19 02:59:52 +0000544 return new X86Disassembler::X86_32Disassembler;
Daniel Dunbar5f9b9ef2009-11-25 06:53:08 +0000545}
546
Daniel Dunbar5d067fe2010-03-20 22:36:22 +0000547static MCDisassembler *createX86_64Disassembler(const Target &T) {
Sean Callanan8ed9f512009-12-19 02:59:52 +0000548 return new X86Disassembler::X86_64Disassembler;
Daniel Dunbar5f9b9ef2009-11-25 06:53:08 +0000549}
550
551extern "C" void LLVMInitializeX86Disassembler() {
552 // Register the disassembler.
553 TargetRegistry::RegisterMCDisassembler(TheX86_32Target,
554 createX86_32Disassembler);
555 TargetRegistry::RegisterMCDisassembler(TheX86_64Target,
556 createX86_64Disassembler);
557}