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Misha Brukmancd603132003-06-02 03:28:00 +00001//===-- X86/X86CodeEmitter.cpp - Convert X86 code to machine code ---------===//
Misha Brukman0e0a7a452005-04-21 23:38:14 +00002//
John Criswellb576c942003-10-20 19:43:21 +00003// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Misha Brukman0e0a7a452005-04-21 23:38:14 +00007//
John Criswellb576c942003-10-20 19:43:21 +00008//===----------------------------------------------------------------------===//
Chris Lattner40ead952002-12-02 21:24:12 +00009//
10// This file contains the pass that transforms the X86 machine instructions into
Chris Lattnere72e4452004-11-20 23:55:15 +000011// relocatable machine code.
Chris Lattner40ead952002-12-02 21:24:12 +000012//
13//===----------------------------------------------------------------------===//
14
Chris Lattner95b2c7d2006-12-19 22:59:26 +000015#define DEBUG_TYPE "x86-emitter"
Evan Cheng25ab6902006-09-08 06:48:29 +000016#include "X86InstrInfo.h"
Evan Cheng2a3e08b2008-01-05 02:26:58 +000017#include "X86JITInfo.h"
Evan Cheng25ab6902006-09-08 06:48:29 +000018#include "X86Subtarget.h"
Chris Lattner40ead952002-12-02 21:24:12 +000019#include "X86TargetMachine.h"
Chris Lattnere72e4452004-11-20 23:55:15 +000020#include "X86Relocations.h"
Chris Lattnerea1ddab2002-12-03 06:34:06 +000021#include "X86.h"
Chris Lattner19950512009-10-27 17:01:03 +000022#include "llvm/LLVMContext.h"
Chris Lattner40ead952002-12-02 21:24:12 +000023#include "llvm/PassManager.h"
24#include "llvm/CodeGen/MachineCodeEmitter.h"
Bruno Cardoso Lopesa3f99f92009-05-30 20:51:52 +000025#include "llvm/CodeGen/JITCodeEmitter.h"
Bruno Cardoso Lopesac57e6e2009-07-06 05:09:34 +000026#include "llvm/CodeGen/ObjectCodeEmitter.h"
Chris Lattner5ae99fe2002-12-28 20:24:48 +000027#include "llvm/CodeGen/MachineFunctionPass.h"
Chris Lattner76041ce2002-12-02 21:44:34 +000028#include "llvm/CodeGen/MachineInstr.h"
Nicolas Geoffrayafe6c2b2008-02-13 18:39:37 +000029#include "llvm/CodeGen/MachineModuleInfo.h"
Chris Lattner655239c2003-12-20 10:20:19 +000030#include "llvm/CodeGen/Passes.h"
Chris Lattnerc01d1232003-10-20 03:42:58 +000031#include "llvm/Function.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000032#include "llvm/ADT/Statistic.h"
Daniel Dunbar7168a7d2009-08-27 08:12:55 +000033#include "llvm/MC/MCCodeEmitter.h"
Daniel Dunbar8c2eebe2009-08-31 08:08:38 +000034#include "llvm/MC/MCExpr.h"
Daniel Dunbar7168a7d2009-08-27 08:12:55 +000035#include "llvm/MC/MCInst.h"
Evan Cheng17ed8fa2008-03-14 07:13:42 +000036#include "llvm/Support/Debug.h"
Torok Edwinab7c09b2009-07-08 18:01:40 +000037#include "llvm/Support/ErrorHandling.h"
Daniel Dunbarce63ffb2009-07-25 00:23:56 +000038#include "llvm/Support/raw_ostream.h"
Evan Cheng5e8b5552006-02-18 00:57:10 +000039#include "llvm/Target/TargetOptions.h"
Chris Lattner65b05ce2003-12-12 07:11:18 +000040using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000041
Chris Lattner95b2c7d2006-12-19 22:59:26 +000042STATISTIC(NumEmitted, "Number of machine instructions emitted");
Chris Lattner04b0b302003-06-01 23:23:50 +000043
Chris Lattner04b0b302003-06-01 23:23:50 +000044namespace {
Chris Lattnerf5af5562009-08-16 02:45:18 +000045 template<class CodeEmitter>
Nick Lewycky6726b6d2009-10-25 06:33:48 +000046 class Emitter : public MachineFunctionPass {
Chris Lattner5ae99fe2002-12-28 20:24:48 +000047 const X86InstrInfo *II;
Evan Cheng25ab6902006-09-08 06:48:29 +000048 const TargetData *TD;
Dan Gohmanc9f5f3f2008-05-14 01:58:56 +000049 X86TargetMachine &TM;
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +000050 CodeEmitter &MCE;
Evan Cheng2a3e08b2008-01-05 02:26:58 +000051 intptr_t PICBaseOffset;
Evan Cheng25ab6902006-09-08 06:48:29 +000052 bool Is64BitMode;
Evan Chengaabe38b2007-12-22 09:40:20 +000053 bool IsPIC;
Chris Lattnerea1ddab2002-12-03 06:34:06 +000054 public:
Devang Patel19974732007-05-03 01:11:54 +000055 static char ID;
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +000056 explicit Emitter(X86TargetMachine &tm, CodeEmitter &mce)
Dan Gohmanae73dc12008-09-04 17:05:41 +000057 : MachineFunctionPass(&ID), II(0), TD(0), TM(tm),
Evan Cheng2a3e08b2008-01-05 02:26:58 +000058 MCE(mce), PICBaseOffset(0), Is64BitMode(false),
Evan Chengbe8c03f2008-01-04 10:46:51 +000059 IsPIC(TM.getRelocationModel() == Reloc::PIC_) {}
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +000060 Emitter(X86TargetMachine &tm, CodeEmitter &mce,
Evan Cheng25ab6902006-09-08 06:48:29 +000061 const X86InstrInfo &ii, const TargetData &td, bool is64)
Dan Gohmanae73dc12008-09-04 17:05:41 +000062 : MachineFunctionPass(&ID), II(&ii), TD(&td), TM(tm),
Evan Cheng2a3e08b2008-01-05 02:26:58 +000063 MCE(mce), PICBaseOffset(0), Is64BitMode(is64),
Evan Chengbe8c03f2008-01-04 10:46:51 +000064 IsPIC(TM.getRelocationModel() == Reloc::PIC_) {}
Chris Lattner40ead952002-12-02 21:24:12 +000065
Chris Lattner5ae99fe2002-12-28 20:24:48 +000066 bool runOnMachineFunction(MachineFunction &MF);
Chris Lattner76041ce2002-12-02 21:44:34 +000067
Chris Lattnerf0eb7be2002-12-15 21:13:40 +000068 virtual const char *getPassName() const {
69 return "X86 Machine Code Emitter";
70 }
71
Evan Cheng0475ab52008-01-05 00:41:47 +000072 void emitInstruction(const MachineInstr &MI,
Chris Lattner749c6f62008-01-07 07:27:27 +000073 const TargetInstrDesc *Desc);
Nicolas Geoffrayafe6c2b2008-02-13 18:39:37 +000074
75 void getAnalysisUsage(AnalysisUsage &AU) const {
Dan Gohman675fb652009-07-31 23:44:16 +000076 AU.setPreservesAll();
Nicolas Geoffrayafe6c2b2008-02-13 18:39:37 +000077 AU.addRequired<MachineModuleInfo>();
78 MachineFunctionPass::getAnalysisUsage(AU);
79 }
Alkis Evlogimenos39c20052004-03-09 03:34:53 +000080
Chris Lattnerea1ddab2002-12-03 06:34:06 +000081 private:
Nate Begeman37efe672006-04-22 18:53:45 +000082 void emitPCRelativeBlockAddress(MachineBasicBlock *MBB);
Evan Chengaabe38b2007-12-22 09:40:20 +000083 void emitGlobalAddress(GlobalValue *GV, unsigned Reloc,
Dan Gohmanc9f3cc32008-10-24 01:57:54 +000084 intptr_t Disp = 0, intptr_t PCAdj = 0,
Jeffrey Yasskind1ba06b2009-11-16 22:41:33 +000085 bool Indirect = false);
Evan Cheng02aabbf2008-01-03 02:56:28 +000086 void emitExternalSymbolAddress(const char *ES, unsigned Reloc);
Dan Gohmanc9f3cc32008-10-24 01:57:54 +000087 void emitConstPoolAddress(unsigned CPI, unsigned Reloc, intptr_t Disp = 0,
Evan Cheng02aabbf2008-01-03 02:56:28 +000088 intptr_t PCAdj = 0);
Evan Chengaabe38b2007-12-22 09:40:20 +000089 void emitJumpTableAddress(unsigned JTI, unsigned Reloc,
Evan Cheng02aabbf2008-01-03 02:56:28 +000090 intptr_t PCAdj = 0);
Chris Lattner04b0b302003-06-01 23:23:50 +000091
Evan Cheng25ab6902006-09-08 06:48:29 +000092 void emitDisplacementField(const MachineOperand *RelocOp, int DispVal,
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +000093 intptr_t Adj = 0, bool IsPCRel = true);
Chris Lattner0e576292006-05-04 00:42:08 +000094
Chris Lattnerea1ddab2002-12-03 06:34:06 +000095 void emitRegModRMByte(unsigned ModRMReg, unsigned RegOpcodeField);
Evan Cheng4b299d42008-10-17 17:14:20 +000096 void emitRegModRMByte(unsigned RegOpcodeField);
Chris Lattnerea1ddab2002-12-03 06:34:06 +000097 void emitSIBByte(unsigned SS, unsigned Index, unsigned Base);
Evan Cheng25ab6902006-09-08 06:48:29 +000098 void emitConstant(uint64_t Val, unsigned Size);
Chris Lattnerea1ddab2002-12-03 06:34:06 +000099
100 void emitMemModRMByte(const MachineInstr &MI,
Evan Cheng25ab6902006-09-08 06:48:29 +0000101 unsigned Op, unsigned RegOpcodeField,
Evan Chengaabe38b2007-12-22 09:40:20 +0000102 intptr_t PCAdj = 0);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000103
Dan Gohman60783302008-02-08 03:29:40 +0000104 unsigned getX86RegNum(unsigned RegNo) const;
Chris Lattner40ead952002-12-02 21:24:12 +0000105 };
Bruno Cardoso Lopesa3f99f92009-05-30 20:51:52 +0000106
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000107template<class CodeEmitter>
108 char Emitter<CodeEmitter>::ID = 0;
Chris Lattnerf5af5562009-08-16 02:45:18 +0000109} // end anonymous namespace.
Chris Lattner40ead952002-12-02 21:24:12 +0000110
Chris Lattner81b6ed72005-07-11 05:17:48 +0000111/// createX86CodeEmitterPass - Return a pass that emits the collected X86 code
Bruno Cardoso Lopesa3f99f92009-05-30 20:51:52 +0000112/// to the specified templated MachineCodeEmitter object.
113
Bruno Cardoso Lopesac57e6e2009-07-06 05:09:34 +0000114FunctionPass *llvm::createX86CodeEmitterPass(X86TargetMachine &TM,
115 MachineCodeEmitter &MCE) {
Bruno Cardoso Lopesa3f99f92009-05-30 20:51:52 +0000116 return new Emitter<MachineCodeEmitter>(TM, MCE);
117}
Bruno Cardoso Lopesac57e6e2009-07-06 05:09:34 +0000118FunctionPass *llvm::createX86JITCodeEmitterPass(X86TargetMachine &TM,
119 JITCodeEmitter &JCE) {
Bruno Cardoso Lopesa3f99f92009-05-30 20:51:52 +0000120 return new Emitter<JITCodeEmitter>(TM, JCE);
Chris Lattner40ead952002-12-02 21:24:12 +0000121}
Bruno Cardoso Lopesac57e6e2009-07-06 05:09:34 +0000122FunctionPass *llvm::createX86ObjectCodeEmitterPass(X86TargetMachine &TM,
123 ObjectCodeEmitter &OCE) {
124 return new Emitter<ObjectCodeEmitter>(TM, OCE);
125}
Bruno Cardoso Lopesa3f99f92009-05-30 20:51:52 +0000126
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000127template<class CodeEmitter>
128bool Emitter<CodeEmitter>::runOnMachineFunction(MachineFunction &MF) {
Dale Johannesen50dd1d02008-08-11 23:46:25 +0000129
Nicolas Geoffrayafe6c2b2008-02-13 18:39:37 +0000130 MCE.setModuleInfo(&getAnalysis<MachineModuleInfo>());
131
Dan Gohmanc9f5f3f2008-05-14 01:58:56 +0000132 II = TM.getInstrInfo();
133 TD = TM.getTargetData();
Evan Chengbe8c03f2008-01-04 10:46:51 +0000134 Is64BitMode = TM.getSubtarget<X86Subtarget>().is64Bit();
Evan Chenga125e622008-05-20 01:56:59 +0000135 IsPIC = TM.getRelocationModel() == Reloc::PIC_;
Nicolas Geoffrayafe6c2b2008-02-13 18:39:37 +0000136
Chris Lattner43b429b2006-05-02 18:27:26 +0000137 do {
Daniel Dunbarce63ffb2009-07-25 00:23:56 +0000138 DEBUG(errs() << "JITTing function '"
139 << MF.getFunction()->getName() << "'\n");
Chris Lattner43b429b2006-05-02 18:27:26 +0000140 MCE.startFunction(MF);
Chris Lattner93e5c282006-05-03 17:21:32 +0000141 for (MachineFunction::iterator MBB = MF.begin(), E = MF.end();
142 MBB != E; ++MBB) {
143 MCE.StartMachineBasicBlock(MBB);
144 for (MachineBasicBlock::const_iterator I = MBB->begin(), E = MBB->end();
Evan Cheng0475ab52008-01-05 00:41:47 +0000145 I != E; ++I) {
Chris Lattner749c6f62008-01-07 07:27:27 +0000146 const TargetInstrDesc &Desc = I->getDesc();
147 emitInstruction(*I, &Desc);
Evan Cheng0475ab52008-01-05 00:41:47 +0000148 // MOVPC32r is basically a call plus a pop instruction.
Chris Lattner749c6f62008-01-07 07:27:27 +0000149 if (Desc.getOpcode() == X86::MOVPC32r)
Evan Cheng0475ab52008-01-05 00:41:47 +0000150 emitInstruction(*I, &II->get(X86::POP32r));
151 NumEmitted++; // Keep track of the # of mi's emitted
152 }
Chris Lattner93e5c282006-05-03 17:21:32 +0000153 }
Chris Lattner43b429b2006-05-02 18:27:26 +0000154 } while (MCE.finishFunction(MF));
Chris Lattner04b0b302003-06-01 23:23:50 +0000155
Chris Lattner76041ce2002-12-02 21:44:34 +0000156 return false;
157}
158
Chris Lattnerb4432f32006-05-03 17:10:41 +0000159/// emitPCRelativeBlockAddress - This method keeps track of the information
160/// necessary to resolve the address of this block later and emits a dummy
161/// value.
Chris Lattner04b0b302003-06-01 23:23:50 +0000162///
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000163template<class CodeEmitter>
164void Emitter<CodeEmitter>::emitPCRelativeBlockAddress(MachineBasicBlock *MBB) {
Chris Lattnerb4432f32006-05-03 17:10:41 +0000165 // Remember where this reference was and where it is to so we can
166 // deal with it later.
Evan Chengf141cc42006-07-27 18:21:10 +0000167 MCE.addRelocation(MachineRelocation::getBB(MCE.getCurrentPCOffset(),
168 X86::reloc_pcrel_word, MBB));
Chris Lattnerb4432f32006-05-03 17:10:41 +0000169 MCE.emitWordLE(0);
Chris Lattner04b0b302003-06-01 23:23:50 +0000170}
171
Chris Lattner04b0b302003-06-01 23:23:50 +0000172/// emitGlobalAddress - Emit the specified address to the code stream assuming
Evan Cheng25ab6902006-09-08 06:48:29 +0000173/// this is part of a "take the address of a global" instruction.
Chris Lattner04b0b302003-06-01 23:23:50 +0000174///
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000175template<class CodeEmitter>
176void Emitter<CodeEmitter>::emitGlobalAddress(GlobalValue *GV, unsigned Reloc,
Dan Gohmanc9f3cc32008-10-24 01:57:54 +0000177 intptr_t Disp /* = 0 */,
178 intptr_t PCAdj /* = 0 */,
Evan Cheng9ed2f802008-11-10 01:08:07 +0000179 bool Indirect /* = false */) {
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000180 intptr_t RelocCST = Disp;
Evan Cheng02aabbf2008-01-03 02:56:28 +0000181 if (Reloc == X86::reloc_picrel_word)
Evan Cheng2a3e08b2008-01-05 02:26:58 +0000182 RelocCST = PICBaseOffset;
Evan Chengbe8c03f2008-01-04 10:46:51 +0000183 else if (Reloc == X86::reloc_pcrel_word)
184 RelocCST = PCAdj;
Evan Cheng9ed2f802008-11-10 01:08:07 +0000185 MachineRelocation MR = Indirect
186 ? MachineRelocation::getIndirectSymbol(MCE.getCurrentPCOffset(), Reloc,
Jeffrey Yasskind1ba06b2009-11-16 22:41:33 +0000187 GV, RelocCST, false)
Evan Chengbe8c03f2008-01-04 10:46:51 +0000188 : MachineRelocation::getGV(MCE.getCurrentPCOffset(), Reloc,
Jeffrey Yasskind1ba06b2009-11-16 22:41:33 +0000189 GV, RelocCST, false);
Evan Chengbe8c03f2008-01-04 10:46:51 +0000190 MCE.addRelocation(MR);
Dan Gohmanc9f3cc32008-10-24 01:57:54 +0000191 // The relocated value will be added to the displacement
Evan Cheng19f2ffc2006-12-05 04:01:03 +0000192 if (Reloc == X86::reloc_absolute_dword)
Dan Gohmanc9f3cc32008-10-24 01:57:54 +0000193 MCE.emitDWordLE(Disp);
194 else
195 MCE.emitWordLE((int32_t)Disp);
Chris Lattner04b0b302003-06-01 23:23:50 +0000196}
197
Chris Lattnere72e4452004-11-20 23:55:15 +0000198/// emitExternalSymbolAddress - Arrange for the address of an external symbol to
199/// be emitted to the current location in the function, and allow it to be PC
200/// relative.
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000201template<class CodeEmitter>
202void Emitter<CodeEmitter>::emitExternalSymbolAddress(const char *ES,
203 unsigned Reloc) {
Evan Cheng2a3e08b2008-01-05 02:26:58 +0000204 intptr_t RelocCST = (Reloc == X86::reloc_picrel_word) ? PICBaseOffset : 0;
Chris Lattner5a032de2006-05-03 20:30:20 +0000205 MCE.addRelocation(MachineRelocation::getExtSym(MCE.getCurrentPCOffset(),
Evan Chengbe8c03f2008-01-04 10:46:51 +0000206 Reloc, ES, RelocCST));
Evan Cheng19f2ffc2006-12-05 04:01:03 +0000207 if (Reloc == X86::reloc_absolute_dword)
Dan Gohmanc9f3cc32008-10-24 01:57:54 +0000208 MCE.emitDWordLE(0);
209 else
Evan Cheng19f2ffc2006-12-05 04:01:03 +0000210 MCE.emitWordLE(0);
Chris Lattnere72e4452004-11-20 23:55:15 +0000211}
Chris Lattner04b0b302003-06-01 23:23:50 +0000212
Evan Cheng19f2ffc2006-12-05 04:01:03 +0000213/// emitConstPoolAddress - Arrange for the address of an constant pool
Evan Cheng25ab6902006-09-08 06:48:29 +0000214/// to be emitted to the current location in the function, and allow it to be PC
215/// relative.
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000216template<class CodeEmitter>
217void Emitter<CodeEmitter>::emitConstPoolAddress(unsigned CPI, unsigned Reloc,
Dan Gohmanc9f3cc32008-10-24 01:57:54 +0000218 intptr_t Disp /* = 0 */,
Evan Cheng02aabbf2008-01-03 02:56:28 +0000219 intptr_t PCAdj /* = 0 */) {
Evan Chengbe8c03f2008-01-04 10:46:51 +0000220 intptr_t RelocCST = 0;
Evan Cheng02aabbf2008-01-03 02:56:28 +0000221 if (Reloc == X86::reloc_picrel_word)
Evan Cheng2a3e08b2008-01-05 02:26:58 +0000222 RelocCST = PICBaseOffset;
Evan Chengbe8c03f2008-01-04 10:46:51 +0000223 else if (Reloc == X86::reloc_pcrel_word)
224 RelocCST = PCAdj;
Evan Cheng25ab6902006-09-08 06:48:29 +0000225 MCE.addRelocation(MachineRelocation::getConstPool(MCE.getCurrentPCOffset(),
Evan Chengbe8c03f2008-01-04 10:46:51 +0000226 Reloc, CPI, RelocCST));
Dan Gohmanc9f3cc32008-10-24 01:57:54 +0000227 // The relocated value will be added to the displacement
Evan Chengfd00deb2006-12-05 07:29:55 +0000228 if (Reloc == X86::reloc_absolute_dword)
Dan Gohmanc9f3cc32008-10-24 01:57:54 +0000229 MCE.emitDWordLE(Disp);
230 else
231 MCE.emitWordLE((int32_t)Disp);
Evan Cheng25ab6902006-09-08 06:48:29 +0000232}
233
Evan Cheng19f2ffc2006-12-05 04:01:03 +0000234/// emitJumpTableAddress - Arrange for the address of a jump table to
Evan Cheng25ab6902006-09-08 06:48:29 +0000235/// be emitted to the current location in the function, and allow it to be PC
236/// relative.
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000237template<class CodeEmitter>
238void Emitter<CodeEmitter>::emitJumpTableAddress(unsigned JTI, unsigned Reloc,
Evan Cheng02aabbf2008-01-03 02:56:28 +0000239 intptr_t PCAdj /* = 0 */) {
Evan Chengbe8c03f2008-01-04 10:46:51 +0000240 intptr_t RelocCST = 0;
Evan Cheng02aabbf2008-01-03 02:56:28 +0000241 if (Reloc == X86::reloc_picrel_word)
Evan Cheng2a3e08b2008-01-05 02:26:58 +0000242 RelocCST = PICBaseOffset;
Evan Chengbe8c03f2008-01-04 10:46:51 +0000243 else if (Reloc == X86::reloc_pcrel_word)
244 RelocCST = PCAdj;
Evan Cheng25ab6902006-09-08 06:48:29 +0000245 MCE.addRelocation(MachineRelocation::getJumpTable(MCE.getCurrentPCOffset(),
Evan Chengbe8c03f2008-01-04 10:46:51 +0000246 Reloc, JTI, RelocCST));
Dan Gohmanc9f3cc32008-10-24 01:57:54 +0000247 // The relocated value will be added to the displacement
Evan Chengfd00deb2006-12-05 07:29:55 +0000248 if (Reloc == X86::reloc_absolute_dword)
Dan Gohmanc9f3cc32008-10-24 01:57:54 +0000249 MCE.emitDWordLE(0);
250 else
Evan Chengfd00deb2006-12-05 07:29:55 +0000251 MCE.emitWordLE(0);
Evan Cheng25ab6902006-09-08 06:48:29 +0000252}
253
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000254template<class CodeEmitter>
255unsigned Emitter<CodeEmitter>::getX86RegNum(unsigned RegNo) const {
Dan Gohmanc9f5f3f2008-05-14 01:58:56 +0000256 return II->getRegisterInfo().getX86RegNum(RegNo);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000257}
258
259inline static unsigned char ModRMByte(unsigned Mod, unsigned RegOpcode,
260 unsigned RM) {
261 assert(Mod < 4 && RegOpcode < 8 && RM < 8 && "ModRM Fields out of range!");
262 return RM | (RegOpcode << 3) | (Mod << 6);
263}
264
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000265template<class CodeEmitter>
266void Emitter<CodeEmitter>::emitRegModRMByte(unsigned ModRMReg,
267 unsigned RegOpcodeFld){
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000268 MCE.emitByte(ModRMByte(3, RegOpcodeFld, getX86RegNum(ModRMReg)));
269}
270
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000271template<class CodeEmitter>
272void Emitter<CodeEmitter>::emitRegModRMByte(unsigned RegOpcodeFld) {
Evan Cheng4b299d42008-10-17 17:14:20 +0000273 MCE.emitByte(ModRMByte(3, RegOpcodeFld, 0));
274}
275
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000276template<class CodeEmitter>
277void Emitter<CodeEmitter>::emitSIBByte(unsigned SS,
278 unsigned Index,
279 unsigned Base) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000280 // SIB byte is in the same format as the ModRMByte...
281 MCE.emitByte(ModRMByte(SS, Index, Base));
282}
283
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000284template<class CodeEmitter>
285void Emitter<CodeEmitter>::emitConstant(uint64_t Val, unsigned Size) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000286 // Output the constant in little endian byte order...
287 for (unsigned i = 0; i != Size; ++i) {
288 MCE.emitByte(Val & 255);
289 Val >>= 8;
290 }
291}
292
Chris Lattner0e576292006-05-04 00:42:08 +0000293/// isDisp8 - Return true if this signed displacement fits in a 8-bit
294/// sign-extended field.
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000295static bool isDisp8(int Value) {
296 return Value == (signed char)Value;
297}
298
Chris Lattner8a537122009-07-10 05:27:43 +0000299static bool gvNeedsNonLazyPtr(const MachineOperand &GVOp,
300 const TargetMachine &TM) {
Chris Lattner8a537122009-07-10 05:27:43 +0000301 // For Darwin-64, simulate the linktime GOT by using the same non-lazy-pointer
Dale Johannesenec867a22008-08-12 18:23:48 +0000302 // mechanism as 32-bit mode.
Chris Lattner8a537122009-07-10 05:27:43 +0000303 if (TM.getSubtarget<X86Subtarget>().is64Bit() &&
304 !TM.getSubtarget<X86Subtarget>().isTargetDarwin())
305 return false;
306
Chris Lattner07406342009-07-10 06:07:08 +0000307 // Return true if this is a reference to a stub containing the address of the
308 // global, not the global itself.
Chris Lattner3b6b36d2009-07-10 06:29:59 +0000309 return isGlobalStubReference(GVOp.getTargetFlags());
Evan Chengbe8c03f2008-01-04 10:46:51 +0000310}
311
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000312template<class CodeEmitter>
313void Emitter<CodeEmitter>::emitDisplacementField(const MachineOperand *RelocOp,
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000314 int DispVal,
315 intptr_t Adj /* = 0 */,
316 bool IsPCRel /* = true */) {
Chris Lattner0e576292006-05-04 00:42:08 +0000317 // If this is a simple integer displacement that doesn't require a relocation,
318 // emit it now.
319 if (!RelocOp) {
320 emitConstant(DispVal, 4);
321 return;
322 }
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000323
Chris Lattner0e576292006-05-04 00:42:08 +0000324 // Otherwise, this is something that requires a relocation. Emit it as such
325 // now.
Daniel Dunbar0378b722009-09-01 22:07:06 +0000326 unsigned RelocType = Is64BitMode ?
327 (IsPCRel ? X86::reloc_pcrel_word : X86::reloc_absolute_word_sext)
328 : (IsPIC ? X86::reloc_picrel_word : X86::reloc_absolute_word);
Dan Gohmand735b802008-10-03 15:45:36 +0000329 if (RelocOp->isGlobal()) {
Evan Cheng25ab6902006-09-08 06:48:29 +0000330 // In 64-bit static small code model, we could potentially emit absolute.
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000331 // But it's probably not beneficial. If the MCE supports using RIP directly
332 // do it, otherwise fallback to absolute (this is determined by IsPCRel).
Bill Wendling85db3a92008-02-26 10:57:23 +0000333 // 89 05 00 00 00 00 mov %eax,0(%rip) # PC-relative
334 // 89 04 25 00 00 00 00 mov %eax,0x0 # Absolute
Chris Lattner8a537122009-07-10 05:27:43 +0000335 bool Indirect = gvNeedsNonLazyPtr(*RelocOp, TM);
Daniel Dunbar0378b722009-09-01 22:07:06 +0000336 emitGlobalAddress(RelocOp->getGlobal(), RelocType, RelocOp->getOffset(),
Jeffrey Yasskind1ba06b2009-11-16 22:41:33 +0000337 Adj, Indirect);
Daniel Dunbar4e8d5fe2009-09-01 22:06:53 +0000338 } else if (RelocOp->isSymbol()) {
Daniel Dunbar0378b722009-09-01 22:07:06 +0000339 emitExternalSymbolAddress(RelocOp->getSymbolName(), RelocType);
Dan Gohmand735b802008-10-03 15:45:36 +0000340 } else if (RelocOp->isCPI()) {
Daniel Dunbar0378b722009-09-01 22:07:06 +0000341 emitConstPoolAddress(RelocOp->getIndex(), RelocType,
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000342 RelocOp->getOffset(), Adj);
Chris Lattner0e576292006-05-04 00:42:08 +0000343 } else {
Daniel Dunbar0378b722009-09-01 22:07:06 +0000344 assert(RelocOp->isJTI() && "Unexpected machine operand!");
345 emitJumpTableAddress(RelocOp->getIndex(), RelocType, Adj);
Chris Lattner0e576292006-05-04 00:42:08 +0000346 }
347}
348
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000349template<class CodeEmitter>
350void Emitter<CodeEmitter>::emitMemModRMByte(const MachineInstr &MI,
Chris Lattnerf5af5562009-08-16 02:45:18 +0000351 unsigned Op,unsigned RegOpcodeField,
352 intptr_t PCAdj) {
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000353 const MachineOperand &Op3 = MI.getOperand(Op+3);
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000354 int DispVal = 0;
Chris Lattner0e576292006-05-04 00:42:08 +0000355 const MachineOperand *DispForReloc = 0;
356
357 // Figure out what sort of displacement we have to handle here.
Dan Gohmand735b802008-10-03 15:45:36 +0000358 if (Op3.isGlobal()) {
Chris Lattner0e576292006-05-04 00:42:08 +0000359 DispForReloc = &Op3;
Daniel Dunbar4e8d5fe2009-09-01 22:06:53 +0000360 } else if (Op3.isSymbol()) {
361 DispForReloc = &Op3;
Dan Gohmand735b802008-10-03 15:45:36 +0000362 } else if (Op3.isCPI()) {
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000363 if (!MCE.earlyResolveAddresses() || Is64BitMode || IsPIC) {
Evan Cheng25ab6902006-09-08 06:48:29 +0000364 DispForReloc = &Op3;
365 } else {
Chris Lattner8aa797a2007-12-30 23:10:15 +0000366 DispVal += MCE.getConstantPoolEntryAddress(Op3.getIndex());
Evan Cheng25ab6902006-09-08 06:48:29 +0000367 DispVal += Op3.getOffset();
368 }
Dan Gohmand735b802008-10-03 15:45:36 +0000369 } else if (Op3.isJTI()) {
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000370 if (!MCE.earlyResolveAddresses() || Is64BitMode || IsPIC) {
Evan Cheng25ab6902006-09-08 06:48:29 +0000371 DispForReloc = &Op3;
372 } else {
Chris Lattner8aa797a2007-12-30 23:10:15 +0000373 DispVal += MCE.getJumpTableEntryAddress(Op3.getIndex());
Evan Cheng25ab6902006-09-08 06:48:29 +0000374 }
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000375 } else {
Chris Lattner0e42d812006-09-05 02:52:35 +0000376 DispVal = Op3.getImm();
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000377 }
378
Chris Lattner07306de2004-10-17 07:49:45 +0000379 const MachineOperand &Base = MI.getOperand(Op);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000380 const MachineOperand &Scale = MI.getOperand(Op+1);
381 const MachineOperand &IndexReg = MI.getOperand(Op+2);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000382
Evan Cheng140a4c42006-02-26 09:12:34 +0000383 unsigned BaseReg = Base.getReg();
Chris Lattner07306de2004-10-17 07:49:45 +0000384
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000385 // Indicate that the displacement will use an pcrel or absolute reference
386 // by default. MCEs able to resolve addresses on-the-fly use pcrel by default
387 // while others, unless explicit asked to use RIP, use absolute references.
388 bool IsPCRel = MCE.earlyResolveAddresses() ? true : false;
389
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000390 // Is a SIB byte needed?
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000391 // If no BaseReg, issue a RIP relative instruction only if the MCE can
392 // resolve addresses on-the-fly, otherwise use SIB (Intel Manual 2A, table
393 // 2-7) and absolute references.
Evan Cheng6ed34912009-05-12 00:07:35 +0000394 if ((!Is64BitMode || DispForReloc || BaseReg != 0) &&
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000395 IndexReg.getReg() == 0 &&
396 ((BaseReg == 0 && MCE.earlyResolveAddresses()) || BaseReg == X86::RIP ||
397 (BaseReg != 0 && getX86RegNum(BaseReg) != N86::ESP))) {
398 if (BaseReg == 0 || BaseReg == X86::RIP) { // Just a displacement?
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000399 // Emit special case [disp32] encoding
400 MCE.emitByte(ModRMByte(0, RegOpcodeField, 5));
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000401 emitDisplacementField(DispForReloc, DispVal, PCAdj, true);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000402 } else {
Chris Lattner07306de2004-10-17 07:49:45 +0000403 unsigned BaseRegNo = getX86RegNum(BaseReg);
Chris Lattner0e576292006-05-04 00:42:08 +0000404 if (!DispForReloc && DispVal == 0 && BaseRegNo != N86::EBP) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000405 // Emit simple indirect register encoding... [EAX] f.e.
406 MCE.emitByte(ModRMByte(0, RegOpcodeField, BaseRegNo));
Chris Lattner0e576292006-05-04 00:42:08 +0000407 } else if (!DispForReloc && isDisp8(DispVal)) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000408 // Emit the disp8 encoding... [REG+disp8]
409 MCE.emitByte(ModRMByte(1, RegOpcodeField, BaseRegNo));
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000410 emitConstant(DispVal, 1);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000411 } else {
412 // Emit the most general non-SIB encoding: [REG+disp32]
Chris Lattner20671842002-12-13 05:05:05 +0000413 MCE.emitByte(ModRMByte(2, RegOpcodeField, BaseRegNo));
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000414 emitDisplacementField(DispForReloc, DispVal, PCAdj, IsPCRel);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000415 }
416 }
417
418 } else { // We need a SIB byte, so start by outputting the ModR/M byte first
Evan Cheng25ab6902006-09-08 06:48:29 +0000419 assert(IndexReg.getReg() != X86::ESP &&
420 IndexReg.getReg() != X86::RSP && "Cannot use ESP as index reg!");
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000421
422 bool ForceDisp32 = false;
Brian Gaeke95780cc2002-12-13 07:56:18 +0000423 bool ForceDisp8 = false;
Chris Lattner07306de2004-10-17 07:49:45 +0000424 if (BaseReg == 0) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000425 // If there is no base register, we emit the special case SIB byte with
426 // MOD=0, BASE=5, to JUST get the index, scale, and displacement.
427 MCE.emitByte(ModRMByte(0, RegOpcodeField, 4));
428 ForceDisp32 = true;
Chris Lattner0e576292006-05-04 00:42:08 +0000429 } else if (DispForReloc) {
430 // Emit the normal disp32 encoding.
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000431 MCE.emitByte(ModRMByte(2, RegOpcodeField, 4));
432 ForceDisp32 = true;
Evan Cheng25ab6902006-09-08 06:48:29 +0000433 } else if (DispVal == 0 && getX86RegNum(BaseReg) != N86::EBP) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000434 // Emit no displacement ModR/M byte
435 MCE.emitByte(ModRMByte(0, RegOpcodeField, 4));
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000436 } else if (isDisp8(DispVal)) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000437 // Emit the disp8 encoding...
438 MCE.emitByte(ModRMByte(1, RegOpcodeField, 4));
Brian Gaeke95780cc2002-12-13 07:56:18 +0000439 ForceDisp8 = true; // Make sure to force 8 bit disp if Base=EBP
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000440 } else {
441 // Emit the normal disp32 encoding...
442 MCE.emitByte(ModRMByte(2, RegOpcodeField, 4));
443 }
444
445 // Calculate what the SS field value should be...
446 static const unsigned SSTable[] = { ~0, 0, 1, ~0, 2, ~0, ~0, ~0, 3 };
Chris Lattner0e42d812006-09-05 02:52:35 +0000447 unsigned SS = SSTable[Scale.getImm()];
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000448
Chris Lattner07306de2004-10-17 07:49:45 +0000449 if (BaseReg == 0) {
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000450 // Handle the SIB byte for the case where there is no base, see Intel
451 // Manual 2A, table 2-7. The displacement has already been output.
Mon P Wangfd532d72008-10-31 19:13:42 +0000452 unsigned IndexRegNo;
453 if (IndexReg.getReg())
454 IndexRegNo = getX86RegNum(IndexReg.getReg());
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000455 else // Examples: [ESP+1*<noreg>+4] or [scaled idx]+disp32 (MOD=0,BASE=5)
456 IndexRegNo = 4;
Mon P Wangfd532d72008-10-31 19:13:42 +0000457 emitSIBByte(SS, IndexRegNo, 5);
Dan Gohmanf4b24e22008-11-10 22:09:58 +0000458 } else {
Chris Lattner07306de2004-10-17 07:49:45 +0000459 unsigned BaseRegNo = getX86RegNum(BaseReg);
Chris Lattner5ae99fe2002-12-28 20:24:48 +0000460 unsigned IndexRegNo;
461 if (IndexReg.getReg())
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000462 IndexRegNo = getX86RegNum(IndexReg.getReg());
Chris Lattner5ae99fe2002-12-28 20:24:48 +0000463 else
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000464 IndexRegNo = 4; // For example [ESP+1*<noreg>+4]
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000465 emitSIBByte(SS, IndexRegNo, BaseRegNo);
466 }
467
468 // Do we need to output a displacement?
Chris Lattner0e576292006-05-04 00:42:08 +0000469 if (ForceDisp8) {
470 emitConstant(DispVal, 1);
471 } else if (DispVal != 0 || ForceDisp32) {
Bruno Cardoso Lopese55fef32009-08-05 00:11:21 +0000472 emitDisplacementField(DispForReloc, DispVal, PCAdj, IsPCRel);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000473 }
474 }
475}
476
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000477template<class CodeEmitter>
Chris Lattnerf5af5562009-08-16 02:45:18 +0000478void Emitter<CodeEmitter>::emitInstruction(const MachineInstr &MI,
479 const TargetInstrDesc *Desc) {
Bill Wendling0ea8bf32009-08-03 00:11:34 +0000480 DEBUG(errs() << MI);
Evan Cheng17ed8fa2008-03-14 07:13:42 +0000481
Devang Patelaf0e2722009-10-06 02:19:11 +0000482 MCE.processDebugLoc(MI.getDebugLoc(), true);
Jeffrey Yasskin32360a72009-07-16 21:07:26 +0000483
Evan Cheng19f2ffc2006-12-05 04:01:03 +0000484 unsigned Opcode = Desc->Opcode;
Chris Lattner76041ce2002-12-02 21:44:34 +0000485
Andrew Lenharthea7da502008-03-01 13:37:02 +0000486 // Emit the lock opcode prefix as needed.
Chris Lattnerf5af5562009-08-16 02:45:18 +0000487 if (Desc->TSFlags & X86II::LOCK)
488 MCE.emitByte(0xF0);
Andrew Lenharthea7da502008-03-01 13:37:02 +0000489
Duncan Sandsa4bb48a2008-10-11 19:34:24 +0000490 // Emit segment override opcode prefix as needed.
Anton Korobeynikovef93cec2008-10-11 19:09:15 +0000491 switch (Desc->TSFlags & X86II::SegOvrMask) {
492 case X86II::FS:
493 MCE.emitByte(0x64);
494 break;
495 case X86II::GS:
496 MCE.emitByte(0x65);
497 break;
Torok Edwinc23197a2009-07-14 16:55:14 +0000498 default: llvm_unreachable("Invalid segment!");
Anton Korobeynikovd21a6302008-10-12 10:30:11 +0000499 case 0: break; // No segment override!
Anton Korobeynikovef93cec2008-10-11 19:09:15 +0000500 }
501
Chris Lattner915e5e52004-02-12 17:53:22 +0000502 // Emit the repeat opcode prefix as needed.
Chris Lattnerf5af5562009-08-16 02:45:18 +0000503 if ((Desc->TSFlags & X86II::Op0Mask) == X86II::REP)
504 MCE.emitByte(0xF3);
Chris Lattner915e5e52004-02-12 17:53:22 +0000505
Nate Begemanf63be7d2005-07-06 18:59:04 +0000506 // Emit the operand size opcode prefix as needed.
Chris Lattnerf5af5562009-08-16 02:45:18 +0000507 if (Desc->TSFlags & X86II::OpSize)
508 MCE.emitByte(0x66);
Nate Begemanf63be7d2005-07-06 18:59:04 +0000509
Evan Cheng25ab6902006-09-08 06:48:29 +0000510 // Emit the address size opcode prefix as needed.
Chris Lattnerf5af5562009-08-16 02:45:18 +0000511 if (Desc->TSFlags & X86II::AdSize)
512 MCE.emitByte(0x67);
Evan Cheng25ab6902006-09-08 06:48:29 +0000513
514 bool Need0FPrefix = false;
Evan Cheng19f2ffc2006-12-05 04:01:03 +0000515 switch (Desc->TSFlags & X86II::Op0Mask) {
Evan Chengab394bd2008-04-03 08:53:17 +0000516 case X86II::TB: // Two-byte opcode prefix
517 case X86II::T8: // 0F 38
518 case X86II::TA: // 0F 3A
519 Need0FPrefix = true;
Bill Wendlingbb1ee052007-04-10 22:10:25 +0000520 break;
Eric Christopherb4dc13c2009-08-08 21:55:08 +0000521 case X86II::TF: // F2 0F 38
522 MCE.emitByte(0xF2);
523 Need0FPrefix = true;
524 break;
Evan Chengee50a1a2006-02-14 21:52:51 +0000525 case X86II::REP: break; // already handled.
526 case X86II::XS: // F3 0F
527 MCE.emitByte(0xF3);
Evan Cheng25ab6902006-09-08 06:48:29 +0000528 Need0FPrefix = true;
Evan Chengee50a1a2006-02-14 21:52:51 +0000529 break;
530 case X86II::XD: // F2 0F
531 MCE.emitByte(0xF2);
Evan Cheng25ab6902006-09-08 06:48:29 +0000532 Need0FPrefix = true;
Evan Chengee50a1a2006-02-14 21:52:51 +0000533 break;
Chris Lattner5ada8df2002-12-25 05:09:21 +0000534 case X86II::D8: case X86II::D9: case X86II::DA: case X86II::DB:
535 case X86II::DC: case X86II::DD: case X86II::DE: case X86II::DF:
Chris Lattnere831b6b2003-01-13 00:33:59 +0000536 MCE.emitByte(0xD8+
Evan Cheng19f2ffc2006-12-05 04:01:03 +0000537 (((Desc->TSFlags & X86II::Op0Mask)-X86II::D8)
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000538 >> X86II::Op0Shift));
Chris Lattner5ada8df2002-12-25 05:09:21 +0000539 break; // Two-byte opcode prefix
Torok Edwinc23197a2009-07-14 16:55:14 +0000540 default: llvm_unreachable("Invalid prefix!");
Chris Lattnere831b6b2003-01-13 00:33:59 +0000541 case 0: break; // No prefix!
Chris Lattner5ada8df2002-12-25 05:09:21 +0000542 }
Chris Lattner76041ce2002-12-02 21:44:34 +0000543
Chris Lattnerf5af5562009-08-16 02:45:18 +0000544 // Handle REX prefix.
Evan Cheng25ab6902006-09-08 06:48:29 +0000545 if (Is64BitMode) {
Chris Lattnerf5af5562009-08-16 02:45:18 +0000546 if (unsigned REX = X86InstrInfo::determineREX(MI))
Evan Cheng25ab6902006-09-08 06:48:29 +0000547 MCE.emitByte(0x40 | REX);
548 }
549
550 // 0x0F escape code must be emitted just before the opcode.
551 if (Need0FPrefix)
552 MCE.emitByte(0x0F);
553
Evan Chengab394bd2008-04-03 08:53:17 +0000554 switch (Desc->TSFlags & X86II::Op0Mask) {
Chris Lattnerf5af5562009-08-16 02:45:18 +0000555 case X86II::TF: // F2 0F 38
556 case X86II::T8: // 0F 38
Evan Chengab394bd2008-04-03 08:53:17 +0000557 MCE.emitByte(0x38);
558 break;
559 case X86II::TA: // 0F 3A
560 MCE.emitByte(0x3A);
561 break;
562 }
563
Chris Lattner0e42d812006-09-05 02:52:35 +0000564 // If this is a two-address instruction, skip one of the register operands.
Chris Lattner349c4952008-01-07 03:13:06 +0000565 unsigned NumOps = Desc->getNumOperands();
Chris Lattner0e42d812006-09-05 02:52:35 +0000566 unsigned CurOp = 0;
Evan Cheng19f2ffc2006-12-05 04:01:03 +0000567 if (NumOps > 1 && Desc->getOperandConstraint(1, TOI::TIED_TO) != -1)
Evan Cheng7e032802008-04-18 20:55:36 +0000568 ++CurOp;
569 else if (NumOps > 2 && Desc->getOperandConstraint(NumOps-1, TOI::TIED_TO)== 0)
570 // Skip the last source operand that is tied_to the dest reg. e.g. LXADD32
571 --NumOps;
Evan Chengfd00deb2006-12-05 07:29:55 +0000572
Evan Cheng19f2ffc2006-12-05 04:01:03 +0000573 unsigned char BaseOpcode = II->getBaseOpcodeFor(Desc);
574 switch (Desc->TSFlags & X86II::FormMask) {
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000575 default:
576 llvm_unreachable("Unknown FormMask value in X86 MachineCodeEmitter!");
Chris Lattner5ada8df2002-12-25 05:09:21 +0000577 case X86II::Pseudo:
Evan Cheng0475ab52008-01-05 00:41:47 +0000578 // Remember the current PC offset, this is the PIC relocation
579 // base address.
Chris Lattnerdabbc982006-01-28 18:19:37 +0000580 switch (Opcode) {
581 default:
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000582 llvm_unreachable("psuedo instructions should be removed before code"
583 " emission");
Evan Chengb7664c62008-03-05 02:34:36 +0000584 break;
Chris Lattnerf5af5562009-08-16 02:45:18 +0000585 case TargetInstrInfo::INLINEASM:
Evan Chengeda60a82008-11-19 23:21:11 +0000586 // We allow inline assembler nodes with empty bodies - they can
587 // implicitly define registers, which is ok for JIT.
Chris Lattnerf5e16132009-10-12 04:22:44 +0000588 if (MI.getOperand(0).getSymbolName()[0])
589 llvm_report_error("JIT does not support inline asm!");
Evan Chengb7664c62008-03-05 02:34:36 +0000590 break;
Dan Gohman44066042008-07-01 00:05:16 +0000591 case TargetInstrInfo::DBG_LABEL:
592 case TargetInstrInfo::EH_LABEL:
Nicolas Geoffrayde782a22009-09-08 07:36:18 +0000593 case TargetInstrInfo::GC_LABEL:
Nicolas Geoffrayafe6c2b2008-02-13 18:39:37 +0000594 MCE.emitLabel(MI.getOperand(0).getImm());
595 break;
Evan Chengd1833072008-03-17 06:56:52 +0000596 case TargetInstrInfo::IMPLICIT_DEF:
Jakob Stoklund Olesen26207e52009-09-28 20:32:26 +0000597 case TargetInstrInfo::KILL:
Evan Chengb7664c62008-03-05 02:34:36 +0000598 case X86::DWARF_LOC:
Chris Lattnerdabbc982006-01-28 18:19:37 +0000599 case X86::FP_REG_KILL:
600 break;
Evan Cheng2a3e08b2008-01-05 02:26:58 +0000601 case X86::MOVPC32r: {
Evan Cheng0475ab52008-01-05 00:41:47 +0000602 // This emits the "call" portion of this pseudo instruction.
603 MCE.emitByte(BaseOpcode);
Nicolas Geoffray52e724a2008-04-16 20:10:13 +0000604 emitConstant(0, X86InstrInfo::sizeOfImm(Desc));
Evan Cheng2a3e08b2008-01-05 02:26:58 +0000605 // Remember PIC base.
Evan Cheng5788d1a2008-12-10 02:32:19 +0000606 PICBaseOffset = (intptr_t) MCE.getCurrentPCOffset();
Dan Gohmanc9f5f3f2008-05-14 01:58:56 +0000607 X86JITInfo *JTI = TM.getJITInfo();
Evan Cheng2a3e08b2008-01-05 02:26:58 +0000608 JTI->setPICBase(MCE.getCurrentPCValue());
Evan Cheng0475ab52008-01-05 00:41:47 +0000609 break;
610 }
Evan Cheng2a3e08b2008-01-05 02:26:58 +0000611 }
Evan Cheng171d09e2006-11-10 01:28:43 +0000612 CurOp = NumOps;
Chris Lattner5ada8df2002-12-25 05:09:21 +0000613 break;
Chris Lattnerf5af5562009-08-16 02:45:18 +0000614 case X86II::RawFrm: {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000615 MCE.emitByte(BaseOpcode);
Evan Cheng0475ab52008-01-05 00:41:47 +0000616
Chris Lattnerf5af5562009-08-16 02:45:18 +0000617 if (CurOp == NumOps)
618 break;
619
620 const MachineOperand &MO = MI.getOperand(CurOp++);
Bill Wendling3b32a232008-08-21 08:38:54 +0000621
Chris Lattnerf5af5562009-08-16 02:45:18 +0000622 DEBUG(errs() << "RawFrm CurOp " << CurOp << "\n");
623 DEBUG(errs() << "isMBB " << MO.isMBB() << "\n");
624 DEBUG(errs() << "isGlobal " << MO.isGlobal() << "\n");
625 DEBUG(errs() << "isSymbol " << MO.isSymbol() << "\n");
626 DEBUG(errs() << "isImm " << MO.isImm() << "\n");
Bill Wendling3b32a232008-08-21 08:38:54 +0000627
Chris Lattnerf5af5562009-08-16 02:45:18 +0000628 if (MO.isMBB()) {
629 emitPCRelativeBlockAddress(MO.getMBB());
630 break;
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000631 }
Chris Lattnerf5af5562009-08-16 02:45:18 +0000632
633 if (MO.isGlobal()) {
Chris Lattnerf5af5562009-08-16 02:45:18 +0000634 emitGlobalAddress(MO.getGlobal(), X86::reloc_pcrel_word,
Jeffrey Yasskind1ba06b2009-11-16 22:41:33 +0000635 MO.getOffset(), 0);
Chris Lattnerf5af5562009-08-16 02:45:18 +0000636 break;
637 }
638
639 if (MO.isSymbol()) {
640 emitExternalSymbolAddress(MO.getSymbolName(), X86::reloc_pcrel_word);
641 break;
642 }
643
644 assert(MO.isImm() && "Unknown RawFrm operand!");
645 if (Opcode == X86::CALLpcrel32 || Opcode == X86::CALL64pcrel32) {
646 // Fix up immediate operand for pc relative calls.
647 intptr_t Imm = (intptr_t)MO.getImm();
648 Imm = Imm - MCE.getCurrentPCValue() - 4;
649 emitConstant(Imm, X86InstrInfo::sizeOfImm(Desc));
650 } else
651 emitConstant(MO.getImm(), X86InstrInfo::sizeOfImm(Desc));
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000652 break;
Chris Lattnerf5af5562009-08-16 02:45:18 +0000653 }
654
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000655 case X86II::AddRegFrm: {
Chris Lattner0e42d812006-09-05 02:52:35 +0000656 MCE.emitByte(BaseOpcode + getX86RegNum(MI.getOperand(CurOp++).getReg()));
657
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000658 if (CurOp == NumOps)
659 break;
660
661 const MachineOperand &MO1 = MI.getOperand(CurOp++);
662 unsigned Size = X86InstrInfo::sizeOfImm(Desc);
663 if (MO1.isImm()) {
664 emitConstant(MO1.getImm(), Size);
665 break;
Chris Lattnere831b6b2003-01-13 00:33:59 +0000666 }
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000667
668 unsigned rt = Is64BitMode ? X86::reloc_pcrel_word
669 : (IsPIC ? X86::reloc_picrel_word : X86::reloc_absolute_word);
670 if (Opcode == X86::MOV64ri64i32)
671 rt = X86::reloc_absolute_word; // FIXME: add X86II flag?
672 // This should not occur on Darwin for relocatable objects.
673 if (Opcode == X86::MOV64ri)
674 rt = X86::reloc_absolute_dword; // FIXME: add X86II flag?
675 if (MO1.isGlobal()) {
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000676 bool Indirect = gvNeedsNonLazyPtr(MO1, TM);
677 emitGlobalAddress(MO1.getGlobal(), rt, MO1.getOffset(), 0,
Jeffrey Yasskind1ba06b2009-11-16 22:41:33 +0000678 Indirect);
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000679 } else if (MO1.isSymbol())
680 emitExternalSymbolAddress(MO1.getSymbolName(), rt);
681 else if (MO1.isCPI())
682 emitConstPoolAddress(MO1.getIndex(), rt);
683 else if (MO1.isJTI())
684 emitJumpTableAddress(MO1.getIndex(), rt);
Chris Lattnere831b6b2003-01-13 00:33:59 +0000685 break;
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000686 }
Chris Lattnere831b6b2003-01-13 00:33:59 +0000687
688 case X86II::MRMDestReg: {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000689 MCE.emitByte(BaseOpcode);
Chris Lattner0e42d812006-09-05 02:52:35 +0000690 emitRegModRMByte(MI.getOperand(CurOp).getReg(),
691 getX86RegNum(MI.getOperand(CurOp+1).getReg()));
692 CurOp += 2;
Evan Cheng171d09e2006-11-10 01:28:43 +0000693 if (CurOp != NumOps)
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000694 emitConstant(MI.getOperand(CurOp++).getImm(),
695 X86InstrInfo::sizeOfImm(Desc));
Chris Lattner9dedbcc2003-05-06 21:31:47 +0000696 break;
Chris Lattnere831b6b2003-01-13 00:33:59 +0000697 }
Evan Cheng25ab6902006-09-08 06:48:29 +0000698 case X86II::MRMDestMem: {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000699 MCE.emitByte(BaseOpcode);
Rafael Espindolab449a682009-03-28 17:03:24 +0000700 emitMemModRMByte(MI, CurOp,
701 getX86RegNum(MI.getOperand(CurOp + X86AddrNumOperands)
702 .getReg()));
703 CurOp += X86AddrNumOperands + 1;
Evan Cheng171d09e2006-11-10 01:28:43 +0000704 if (CurOp != NumOps)
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000705 emitConstant(MI.getOperand(CurOp++).getImm(),
706 X86InstrInfo::sizeOfImm(Desc));
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000707 break;
Evan Cheng25ab6902006-09-08 06:48:29 +0000708 }
Chris Lattnere831b6b2003-01-13 00:33:59 +0000709
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000710 case X86II::MRMSrcReg:
711 MCE.emitByte(BaseOpcode);
Chris Lattner0e42d812006-09-05 02:52:35 +0000712 emitRegModRMByte(MI.getOperand(CurOp+1).getReg(),
713 getX86RegNum(MI.getOperand(CurOp).getReg()));
714 CurOp += 2;
Evan Cheng171d09e2006-11-10 01:28:43 +0000715 if (CurOp != NumOps)
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000716 emitConstant(MI.getOperand(CurOp++).getImm(),
717 X86InstrInfo::sizeOfImm(Desc));
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000718 break;
Chris Lattnere831b6b2003-01-13 00:33:59 +0000719
Evan Cheng25ab6902006-09-08 06:48:29 +0000720 case X86II::MRMSrcMem: {
Rafael Espindola094fad32009-04-08 21:14:34 +0000721 // FIXME: Maybe lea should have its own form?
722 int AddrOperands;
723 if (Opcode == X86::LEA64r || Opcode == X86::LEA64_32r ||
724 Opcode == X86::LEA16r || Opcode == X86::LEA32r)
725 AddrOperands = X86AddrNumOperands - 1; // No segment register
726 else
727 AddrOperands = X86AddrNumOperands;
728
729 intptr_t PCAdj = (CurOp + AddrOperands + 1 != NumOps) ?
Rafael Espindolab449a682009-03-28 17:03:24 +0000730 X86InstrInfo::sizeOfImm(Desc) : 0;
Evan Cheng25ab6902006-09-08 06:48:29 +0000731
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000732 MCE.emitByte(BaseOpcode);
Evan Cheng25ab6902006-09-08 06:48:29 +0000733 emitMemModRMByte(MI, CurOp+1, getX86RegNum(MI.getOperand(CurOp).getReg()),
734 PCAdj);
Rafael Espindola094fad32009-04-08 21:14:34 +0000735 CurOp += AddrOperands + 1;
Evan Cheng171d09e2006-11-10 01:28:43 +0000736 if (CurOp != NumOps)
Bruno Cardoso Lopes434dd4f2009-06-01 19:57:37 +0000737 emitConstant(MI.getOperand(CurOp++).getImm(),
738 X86InstrInfo::sizeOfImm(Desc));
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000739 break;
Evan Cheng25ab6902006-09-08 06:48:29 +0000740 }
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000741
Alkis Evlogimenos169584e2004-02-27 18:55:12 +0000742 case X86II::MRM0r: case X86II::MRM1r:
743 case X86II::MRM2r: case X86II::MRM3r:
744 case X86II::MRM4r: case X86II::MRM5r:
Evan Cheng4b299d42008-10-17 17:14:20 +0000745 case X86II::MRM6r: case X86II::MRM7r: {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000746 MCE.emitByte(BaseOpcode);
Evan Cheng4b299d42008-10-17 17:14:20 +0000747
Bill Wendling2265ba02009-05-28 23:40:46 +0000748 // Special handling of lfence, mfence, monitor, and mwait.
Evan Cheng4b299d42008-10-17 17:14:20 +0000749 if (Desc->getOpcode() == X86::LFENCE ||
Bill Wendling2265ba02009-05-28 23:40:46 +0000750 Desc->getOpcode() == X86::MFENCE ||
751 Desc->getOpcode() == X86::MONITOR ||
752 Desc->getOpcode() == X86::MWAIT) {
Evan Cheng4b299d42008-10-17 17:14:20 +0000753 emitRegModRMByte((Desc->TSFlags & X86II::FormMask)-X86II::MRM0r);
Bill Wendling2265ba02009-05-28 23:40:46 +0000754
755 switch (Desc->getOpcode()) {
756 default: break;
757 case X86::MONITOR:
758 MCE.emitByte(0xC8);
759 break;
760 case X86::MWAIT:
761 MCE.emitByte(0xC9);
762 break;
763 }
764 } else {
Evan Cheng4b299d42008-10-17 17:14:20 +0000765 emitRegModRMByte(MI.getOperand(CurOp++).getReg(),
766 (Desc->TSFlags & X86II::FormMask)-X86II::MRM0r);
Bill Wendling2265ba02009-05-28 23:40:46 +0000767 }
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000768
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000769 if (CurOp == NumOps)
770 break;
771
772 const MachineOperand &MO1 = MI.getOperand(CurOp++);
773 unsigned Size = X86InstrInfo::sizeOfImm(Desc);
774 if (MO1.isImm()) {
775 emitConstant(MO1.getImm(), Size);
776 break;
Evan Cheng19f2ffc2006-12-05 04:01:03 +0000777 }
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000778
779 unsigned rt = Is64BitMode ? X86::reloc_pcrel_word
780 : (IsPIC ? X86::reloc_picrel_word : X86::reloc_absolute_word);
781 if (Opcode == X86::MOV64ri32)
782 rt = X86::reloc_absolute_word_sext; // FIXME: add X86II flag?
783 if (MO1.isGlobal()) {
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000784 bool Indirect = gvNeedsNonLazyPtr(MO1, TM);
785 emitGlobalAddress(MO1.getGlobal(), rt, MO1.getOffset(), 0,
Jeffrey Yasskind1ba06b2009-11-16 22:41:33 +0000786 Indirect);
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000787 } else if (MO1.isSymbol())
788 emitExternalSymbolAddress(MO1.getSymbolName(), rt);
789 else if (MO1.isCPI())
790 emitConstPoolAddress(MO1.getIndex(), rt);
791 else if (MO1.isJTI())
792 emitJumpTableAddress(MO1.getIndex(), rt);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000793 break;
Evan Cheng4b299d42008-10-17 17:14:20 +0000794 }
Chris Lattnere831b6b2003-01-13 00:33:59 +0000795
Alkis Evlogimenos169584e2004-02-27 18:55:12 +0000796 case X86II::MRM0m: case X86II::MRM1m:
797 case X86II::MRM2m: case X86II::MRM3m:
798 case X86II::MRM4m: case X86II::MRM5m:
Evan Cheng25ab6902006-09-08 06:48:29 +0000799 case X86II::MRM6m: case X86II::MRM7m: {
Rafael Espindolab449a682009-03-28 17:03:24 +0000800 intptr_t PCAdj = (CurOp + X86AddrNumOperands != NumOps) ?
Dale Johannesen43e91b92009-05-06 19:04:30 +0000801 (MI.getOperand(CurOp+X86AddrNumOperands).isImm() ?
802 X86InstrInfo::sizeOfImm(Desc) : 4) : 0;
Evan Cheng25ab6902006-09-08 06:48:29 +0000803
Chris Lattnere831b6b2003-01-13 00:33:59 +0000804 MCE.emitByte(BaseOpcode);
Evan Cheng19f2ffc2006-12-05 04:01:03 +0000805 emitMemModRMByte(MI, CurOp, (Desc->TSFlags & X86II::FormMask)-X86II::MRM0m,
Evan Cheng25ab6902006-09-08 06:48:29 +0000806 PCAdj);
Rafael Espindolab449a682009-03-28 17:03:24 +0000807 CurOp += X86AddrNumOperands;
Chris Lattnere831b6b2003-01-13 00:33:59 +0000808
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000809 if (CurOp == NumOps)
810 break;
811
812 const MachineOperand &MO = MI.getOperand(CurOp++);
813 unsigned Size = X86InstrInfo::sizeOfImm(Desc);
814 if (MO.isImm()) {
815 emitConstant(MO.getImm(), Size);
816 break;
Chris Lattnere831b6b2003-01-13 00:33:59 +0000817 }
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000818
819 unsigned rt = Is64BitMode ? X86::reloc_pcrel_word
820 : (IsPIC ? X86::reloc_picrel_word : X86::reloc_absolute_word);
821 if (Opcode == X86::MOV64mi32)
822 rt = X86::reloc_absolute_word_sext; // FIXME: add X86II flag?
823 if (MO.isGlobal()) {
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000824 bool Indirect = gvNeedsNonLazyPtr(MO, TM);
825 emitGlobalAddress(MO.getGlobal(), rt, MO.getOffset(), 0,
Jeffrey Yasskind1ba06b2009-11-16 22:41:33 +0000826 Indirect);
Chris Lattnerd8638ba2009-08-16 02:36:40 +0000827 } else if (MO.isSymbol())
828 emitExternalSymbolAddress(MO.getSymbolName(), rt);
829 else if (MO.isCPI())
830 emitConstPoolAddress(MO.getIndex(), rt);
831 else if (MO.isJTI())
832 emitJumpTableAddress(MO.getIndex(), rt);
Chris Lattnere831b6b2003-01-13 00:33:59 +0000833 break;
Evan Cheng25ab6902006-09-08 06:48:29 +0000834 }
Evan Cheng3c55c542006-02-01 06:13:50 +0000835
836 case X86II::MRMInitReg:
837 MCE.emitByte(BaseOpcode);
Chris Lattner0e42d812006-09-05 02:52:35 +0000838 // Duplicate register, used by things like MOV8r0 (aka xor reg,reg).
839 emitRegModRMByte(MI.getOperand(CurOp).getReg(),
840 getX86RegNum(MI.getOperand(CurOp).getReg()));
841 ++CurOp;
Evan Cheng3c55c542006-02-01 06:13:50 +0000842 break;
Chris Lattner76041ce2002-12-02 21:44:34 +0000843 }
Evan Cheng3530baf2006-09-06 20:24:14 +0000844
Evan Cheng0b213902008-03-05 02:08:03 +0000845 if (!Desc->isVariadic() && CurOp != NumOps) {
Torok Edwindac237e2009-07-08 20:53:28 +0000846#ifndef NDEBUG
Chris Lattnerf5af5562009-08-16 02:45:18 +0000847 errs() << "Cannot encode all operands of: " << MI << "\n";
Torok Edwindac237e2009-07-08 20:53:28 +0000848#endif
Torok Edwinc23197a2009-07-14 16:55:14 +0000849 llvm_unreachable(0);
Evan Cheng0b213902008-03-05 02:08:03 +0000850 }
Devang Patelaf0e2722009-10-06 02:19:11 +0000851
852 MCE.processDebugLoc(MI.getDebugLoc(), false);
Chris Lattner76041ce2002-12-02 21:44:34 +0000853}
Daniel Dunbar7168a7d2009-08-27 08:12:55 +0000854
855// Adapt the Emitter / CodeEmitter interfaces to MCCodeEmitter.
856//
857// FIXME: This is a total hack designed to allow work on llvm-mc to proceed
858// without being blocked on various cleanups needed to support a clean interface
859// to instruction encoding.
860//
861// Look away!
862
863#include "llvm/DerivedTypes.h"
864
865namespace {
866class MCSingleInstructionCodeEmitter : public MachineCodeEmitter {
867 uint8_t Data[256];
868
869public:
870 MCSingleInstructionCodeEmitter() { reset(); }
871
872 void reset() {
873 BufferBegin = Data;
874 BufferEnd = array_endof(Data);
875 CurBufferPtr = Data;
876 }
877
878 StringRef str() {
879 return StringRef(reinterpret_cast<char*>(BufferBegin),
880 CurBufferPtr - BufferBegin);
881 }
882
883 virtual void startFunction(MachineFunction &F) {}
884 virtual bool finishFunction(MachineFunction &F) { return false; }
885 virtual void emitLabel(uint64_t LabelID) {}
886 virtual void StartMachineBasicBlock(MachineBasicBlock *MBB) {}
887 virtual bool earlyResolveAddresses() const { return false; }
888 virtual void addRelocation(const MachineRelocation &MR) { }
889 virtual uintptr_t getConstantPoolEntryAddress(unsigned Index) const {
890 return 0;
891 }
892 virtual uintptr_t getJumpTableEntryAddress(unsigned Index) const {
893 return 0;
894 }
895 virtual uintptr_t getMachineBasicBlockAddress(MachineBasicBlock *MBB) const {
896 return 0;
897 }
898 virtual uintptr_t getLabelAddress(uint64_t LabelID) const {
899 return 0;
900 }
901 virtual void setModuleInfo(MachineModuleInfo* Info) {}
902};
903
904class X86MCCodeEmitter : public MCCodeEmitter {
905 X86MCCodeEmitter(const X86MCCodeEmitter &); // DO NOT IMPLEMENT
906 void operator=(const X86MCCodeEmitter &); // DO NOT IMPLEMENT
907
908private:
909 X86TargetMachine &TM;
910 llvm::Function *DummyF;
911 TargetData *DummyTD;
912 mutable llvm::MachineFunction *DummyMF;
913 llvm::MachineBasicBlock *DummyMBB;
914
915 MCSingleInstructionCodeEmitter *InstrEmitter;
916 Emitter<MachineCodeEmitter> *Emit;
917
918public:
919 X86MCCodeEmitter(X86TargetMachine &_TM) : TM(_TM) {
920 // Verily, thou shouldst avert thine eyes.
921 const llvm::FunctionType *FTy =
922 FunctionType::get(llvm::Type::getVoidTy(getGlobalContext()), false);
923 DummyF = Function::Create(FTy, GlobalValue::InternalLinkage);
924 DummyTD = new TargetData("");
925 DummyMF = new MachineFunction(DummyF, TM);
926 DummyMBB = DummyMF->CreateMachineBasicBlock();
927
928 InstrEmitter = new MCSingleInstructionCodeEmitter();
929 Emit = new Emitter<MachineCodeEmitter>(TM, *InstrEmitter,
930 *TM.getInstrInfo(),
931 *DummyTD, false);
932 }
933 ~X86MCCodeEmitter() {
934 delete Emit;
935 delete InstrEmitter;
936 delete DummyMF;
937 delete DummyF;
938 }
939
940 bool AddRegToInstr(const MCInst &MI, MachineInstr *Instr,
941 unsigned Start) const {
942 if (Start + 1 > MI.getNumOperands())
943 return false;
944
945 const MCOperand &Op = MI.getOperand(Start);
946 if (!Op.isReg()) return false;
947
948 Instr->addOperand(MachineOperand::CreateReg(Op.getReg(), false));
949 return true;
950 }
951
952 bool AddImmToInstr(const MCInst &MI, MachineInstr *Instr,
953 unsigned Start) const {
954 if (Start + 1 > MI.getNumOperands())
955 return false;
956
957 const MCOperand &Op = MI.getOperand(Start);
958 if (Op.isImm()) {
959 Instr->addOperand(MachineOperand::CreateImm(Op.getImm()));
960 return true;
961 }
Daniel Dunbar8c2eebe2009-08-31 08:08:38 +0000962 if (!Op.isExpr())
Daniel Dunbar7168a7d2009-08-27 08:12:55 +0000963 return false;
964
Daniel Dunbar8c2eebe2009-08-31 08:08:38 +0000965 const MCExpr *Expr = Op.getExpr();
966 if (const MCConstantExpr *CE = dyn_cast<MCConstantExpr>(Expr)) {
967 Instr->addOperand(MachineOperand::CreateImm(CE->getValue()));
Daniel Dunbardf65eaf2009-08-30 06:17:49 +0000968 return true;
969 }
970
Daniel Dunbar7168a7d2009-08-27 08:12:55 +0000971 // FIXME: Relocation / fixup.
972 Instr->addOperand(MachineOperand::CreateImm(0));
973 return true;
974 }
975
976 bool AddLMemToInstr(const MCInst &MI, MachineInstr *Instr,
977 unsigned Start) const {
978 return (AddRegToInstr(MI, Instr, Start + 0) &&
979 AddImmToInstr(MI, Instr, Start + 1) &&
980 AddRegToInstr(MI, Instr, Start + 2) &&
981 AddImmToInstr(MI, Instr, Start + 3));
982 }
983
984 bool AddMemToInstr(const MCInst &MI, MachineInstr *Instr,
985 unsigned Start) const {
986 return (AddRegToInstr(MI, Instr, Start + 0) &&
987 AddImmToInstr(MI, Instr, Start + 1) &&
988 AddRegToInstr(MI, Instr, Start + 2) &&
989 AddImmToInstr(MI, Instr, Start + 3) &&
990 AddRegToInstr(MI, Instr, Start + 4));
991 }
992
993 void EncodeInstruction(const MCInst &MI, raw_ostream &OS) const {
994 // Don't look yet!
995
996 // Convert the MCInst to a MachineInstr so we can (ab)use the regular
997 // emitter.
998 const X86InstrInfo &II = *TM.getInstrInfo();
999 const TargetInstrDesc &Desc = II.get(MI.getOpcode());
1000 MachineInstr *Instr = DummyMF->CreateMachineInstr(Desc, DebugLoc());
1001 DummyMBB->push_back(Instr);
1002
1003 unsigned Opcode = MI.getOpcode();
1004 unsigned NumOps = MI.getNumOperands();
1005 unsigned CurOp = 0;
1006 if (NumOps > 1 && Desc.getOperandConstraint(1, TOI::TIED_TO) != -1) {
1007 Instr->addOperand(MachineOperand::CreateReg(0, false));
1008 ++CurOp;
1009 } else if (NumOps > 2 &&
1010 Desc.getOperandConstraint(NumOps-1, TOI::TIED_TO)== 0)
1011 // Skip the last source operand that is tied_to the dest reg. e.g. LXADD32
1012 --NumOps;
1013
1014 bool OK = true;
1015 switch (Desc.TSFlags & X86II::FormMask) {
1016 case X86II::MRMDestReg:
1017 case X86II::MRMSrcReg:
1018 // Matching doesn't fill this in completely, we have to choose operand 0
1019 // for a tied register.
1020 OK &= AddRegToInstr(MI, Instr, 0); CurOp++;
1021 OK &= AddRegToInstr(MI, Instr, CurOp++);
1022 if (CurOp < NumOps)
1023 OK &= AddImmToInstr(MI, Instr, CurOp);
1024 break;
1025
1026 case X86II::RawFrm:
1027 if (CurOp < NumOps) {
1028 // Hack to make branches work.
1029 if (!(Desc.TSFlags & X86II::ImmMask) &&
Daniel Dunbar8c2eebe2009-08-31 08:08:38 +00001030 MI.getOperand(0).isExpr() &&
1031 isa<MCSymbolRefExpr>(MI.getOperand(0).getExpr()))
Daniel Dunbar7168a7d2009-08-27 08:12:55 +00001032 Instr->addOperand(MachineOperand::CreateMBB(DummyMBB));
1033 else
1034 OK &= AddImmToInstr(MI, Instr, CurOp);
1035 }
1036 break;
1037
1038 case X86II::AddRegFrm:
1039 OK &= AddRegToInstr(MI, Instr, CurOp++);
1040 if (CurOp < NumOps)
1041 OK &= AddImmToInstr(MI, Instr, CurOp);
1042 break;
1043
1044 case X86II::MRM0r: case X86II::MRM1r:
1045 case X86II::MRM2r: case X86II::MRM3r:
1046 case X86II::MRM4r: case X86II::MRM5r:
1047 case X86II::MRM6r: case X86II::MRM7r:
1048 // Matching doesn't fill this in completely, we have to choose operand 0
1049 // for a tied register.
1050 OK &= AddRegToInstr(MI, Instr, 0); CurOp++;
1051 if (CurOp < NumOps)
1052 OK &= AddImmToInstr(MI, Instr, CurOp);
1053 break;
1054
1055 case X86II::MRM0m: case X86II::MRM1m:
1056 case X86II::MRM2m: case X86II::MRM3m:
1057 case X86II::MRM4m: case X86II::MRM5m:
1058 case X86II::MRM6m: case X86II::MRM7m:
1059 OK &= AddMemToInstr(MI, Instr, CurOp); CurOp += 5;
1060 if (CurOp < NumOps)
1061 OK &= AddImmToInstr(MI, Instr, CurOp);
1062 break;
1063
1064 case X86II::MRMSrcMem:
1065 OK &= AddRegToInstr(MI, Instr, CurOp++);
1066 if (Opcode == X86::LEA64r || Opcode == X86::LEA64_32r ||
1067 Opcode == X86::LEA16r || Opcode == X86::LEA32r)
1068 OK &= AddLMemToInstr(MI, Instr, CurOp);
1069 else
1070 OK &= AddMemToInstr(MI, Instr, CurOp);
1071 break;
1072
1073 case X86II::MRMDestMem:
1074 OK &= AddMemToInstr(MI, Instr, CurOp); CurOp += 5;
1075 OK &= AddRegToInstr(MI, Instr, CurOp);
1076 break;
1077
1078 default:
1079 case X86II::MRMInitReg:
1080 case X86II::Pseudo:
1081 OK = false;
1082 break;
1083 }
1084
1085 if (!OK) {
1086 errs() << "couldn't convert inst '";
Chris Lattner5c5ce5c2009-09-03 05:39:09 +00001087 MI.dump();
Daniel Dunbar7168a7d2009-08-27 08:12:55 +00001088 errs() << "' to machine instr:\n";
1089 Instr->dump();
1090 }
1091
1092 InstrEmitter->reset();
1093 if (OK)
1094 Emit->emitInstruction(*Instr, &Desc);
1095 OS << InstrEmitter->str();
1096
1097 Instr->eraseFromParent();
1098 }
1099};
1100}
1101
1102// Ok, now you can look.
1103MCCodeEmitter *llvm::createX86MCCodeEmitter(const Target &,
1104 TargetMachine &TM) {
1105 return new X86MCCodeEmitter(static_cast<X86TargetMachine&>(TM));
1106}