blob: 9e2c998e3f159a75cdd511fe0f5d5c4bfedefd29 [file] [log] [blame]
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//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
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
15#include "X86TargetMachine.h"
Chris Lattnere72e4452004-11-20 23:55:15 +000016#include "X86Relocations.h"
Chris Lattnerea1ddab2002-12-03 06:34:06 +000017#include "X86.h"
Chris Lattner40ead952002-12-02 21:24:12 +000018#include "llvm/PassManager.h"
19#include "llvm/CodeGen/MachineCodeEmitter.h"
Chris Lattner5ae99fe2002-12-28 20:24:48 +000020#include "llvm/CodeGen/MachineFunctionPass.h"
Chris Lattner76041ce2002-12-02 21:44:34 +000021#include "llvm/CodeGen/MachineInstr.h"
Chris Lattner655239c2003-12-20 10:20:19 +000022#include "llvm/CodeGen/Passes.h"
Chris Lattnerc01d1232003-10-20 03:42:58 +000023#include "llvm/Function.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000024#include "llvm/ADT/Statistic.h"
Evan Cheng5e8b5552006-02-18 00:57:10 +000025#include "llvm/Target/TargetOptions.h"
Chris Lattner2c2c6c62006-01-22 23:41:00 +000026#include <iostream>
Chris Lattner65b05ce2003-12-12 07:11:18 +000027using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000028
Chris Lattner40ead952002-12-02 21:24:12 +000029namespace {
Chris Lattner302de592003-06-06 04:00:05 +000030 Statistic<>
31 NumEmitted("x86-emitter", "Number of machine instructions emitted");
Chris Lattner04b0b302003-06-01 23:23:50 +000032}
33
Chris Lattner04b0b302003-06-01 23:23:50 +000034namespace {
Chris Lattner5ae99fe2002-12-28 20:24:48 +000035 class Emitter : public MachineFunctionPass {
36 const X86InstrInfo *II;
Chris Lattner8f04b092002-12-02 21:56:18 +000037 MachineCodeEmitter &MCE;
Chris Lattneraf1563f2006-05-03 00:32:55 +000038 std::vector<uint64_t> BasicBlockAddrs;
Nate Begeman37efe672006-04-22 18:53:45 +000039 std::vector<std::pair<MachineBasicBlock *, unsigned> > BBRefs;
Chris Lattnerea1ddab2002-12-03 06:34:06 +000040 public:
Alkis Evlogimenos39c20052004-03-09 03:34:53 +000041 explicit Emitter(MachineCodeEmitter &mce) : II(0), MCE(mce) {}
42 Emitter(MachineCodeEmitter &mce, const X86InstrInfo& ii)
43 : II(&ii), MCE(mce) {}
Chris Lattner40ead952002-12-02 21:24:12 +000044
Chris Lattner5ae99fe2002-12-28 20:24:48 +000045 bool runOnMachineFunction(MachineFunction &MF);
Chris Lattner76041ce2002-12-02 21:44:34 +000046
Chris Lattnerf0eb7be2002-12-15 21:13:40 +000047 virtual const char *getPassName() const {
48 return "X86 Machine Code Emitter";
49 }
50
Alkis Evlogimenos39c20052004-03-09 03:34:53 +000051 void emitInstruction(const MachineInstr &MI);
52
Chris Lattnerea1ddab2002-12-03 06:34:06 +000053 private:
Nate Begeman37efe672006-04-22 18:53:45 +000054 void emitBasicBlock(MachineBasicBlock &MBB);
55 void emitPCRelativeBlockAddress(MachineBasicBlock *MBB);
Chris Lattner16fe6f52004-11-16 04:21:18 +000056 void emitPCRelativeValue(unsigned Address);
Chris Lattner16cb6f82005-05-19 05:54:33 +000057 void emitGlobalAddressForCall(GlobalValue *GV, bool isTailCall);
Chris Lattner8cce7cd2004-10-15 04:53:13 +000058 void emitGlobalAddressForPtr(GlobalValue *GV, int Disp = 0);
Chris Lattner16cb6f82005-05-19 05:54:33 +000059 void emitExternalSymbolAddress(const char *ES, bool isPCRelative,
60 bool isTailCall);
Chris Lattner04b0b302003-06-01 23:23:50 +000061
Chris Lattnerea1ddab2002-12-03 06:34:06 +000062 void emitRegModRMByte(unsigned ModRMReg, unsigned RegOpcodeField);
63 void emitSIBByte(unsigned SS, unsigned Index, unsigned Base);
64 void emitConstant(unsigned Val, unsigned Size);
65
66 void emitMemModRMByte(const MachineInstr &MI,
67 unsigned Op, unsigned RegOpcodeField);
68
Chris Lattner40ead952002-12-02 21:24:12 +000069 };
70}
71
Chris Lattner81b6ed72005-07-11 05:17:48 +000072/// createX86CodeEmitterPass - Return a pass that emits the collected X86 code
73/// to the specified MCE object.
74FunctionPass *llvm::createX86CodeEmitterPass(MachineCodeEmitter &MCE) {
75 return new Emitter(MCE);
Chris Lattner40ead952002-12-02 21:24:12 +000076}
Chris Lattner76041ce2002-12-02 21:44:34 +000077
Chris Lattner5ae99fe2002-12-28 20:24:48 +000078bool Emitter::runOnMachineFunction(MachineFunction &MF) {
Evan Cheng4c1aa862006-02-22 20:19:42 +000079 assert((MF.getTarget().getRelocationModel() != Reloc::Default ||
80 MF.getTarget().getRelocationModel() != Reloc::Static) &&
81 "JIT relocation model must be set to static or default!");
Chris Lattnerd029cd22004-06-02 05:55:25 +000082 II = ((X86TargetMachine&)MF.getTarget()).getInstrInfo();
Chris Lattner76041ce2002-12-02 21:44:34 +000083
Chris Lattner43b429b2006-05-02 18:27:26 +000084 do {
85 BBRefs.clear();
86 BasicBlockAddrs.clear();
87
88 MCE.startFunction(MF);
Chris Lattner43b429b2006-05-02 18:27:26 +000089 for (MachineFunction::iterator I = MF.begin(), E = MF.end(); I != E; ++I)
90 emitBasicBlock(*I);
91 MCE.emitJumpTableInfo(MF.getJumpTableInfo(), BasicBlockAddrs);
92 } while (MCE.finishFunction(MF));
Chris Lattner04b0b302003-06-01 23:23:50 +000093
Chris Lattner608c1892006-05-02 17:16:20 +000094 // Resolve all forward branches now.
Chris Lattner04b0b302003-06-01 23:23:50 +000095 for (unsigned i = 0, e = BBRefs.size(); i != e; ++i) {
Chris Lattneraf1563f2006-05-03 00:32:55 +000096 unsigned Location = BasicBlockAddrs[BBRefs[i].first->getNumber()];
Chris Lattner04b0b302003-06-01 23:23:50 +000097 unsigned Ref = BBRefs[i].second;
Chris Lattner608c1892006-05-02 17:16:20 +000098 *((unsigned*)(intptr_t)Ref) = Location-Ref-4;
Chris Lattner04b0b302003-06-01 23:23:50 +000099 }
100 BBRefs.clear();
101 BasicBlockAddrs.clear();
Chris Lattner76041ce2002-12-02 21:44:34 +0000102 return false;
103}
104
Nate Begeman37efe672006-04-22 18:53:45 +0000105void Emitter::emitBasicBlock(MachineBasicBlock &MBB) {
Chris Lattneraf1563f2006-05-03 00:32:55 +0000106 if (BasicBlockAddrs.size() <= (unsigned)MBB.getNumber())
107 BasicBlockAddrs.resize((MBB.getNumber()+1)*2);
108 BasicBlockAddrs[MBB.getNumber()] = MCE.getCurrentPCValue();
Chris Lattner04b0b302003-06-01 23:23:50 +0000109
Chris Lattner16fe6f52004-11-16 04:21:18 +0000110 for (MachineBasicBlock::const_iterator I = MBB.begin(), E = MBB.end();
111 I != E; ++I)
Alkis Evlogimenosc0b9dc52004-02-12 02:27:10 +0000112 emitInstruction(*I);
Chris Lattner76041ce2002-12-02 21:44:34 +0000113}
114
Chris Lattnere72e4452004-11-20 23:55:15 +0000115/// emitPCRelativeValue - Emit a 32-bit PC relative address.
116///
117void Emitter::emitPCRelativeValue(unsigned Address) {
Chris Lattnerd3f0aef2006-05-02 19:14:47 +0000118 MCE.emitWordLE(Address-MCE.getCurrentPCValue()-4);
Chris Lattnere72e4452004-11-20 23:55:15 +0000119}
120
Chris Lattner04b0b302003-06-01 23:23:50 +0000121/// emitPCRelativeBlockAddress - This method emits the PC relative address of
122/// the specified basic block, or if the basic block hasn't been emitted yet
123/// (because this is a forward branch), it keeps track of the information
124/// necessary to resolve this address later (and emits a dummy value).
125///
Nate Begeman37efe672006-04-22 18:53:45 +0000126void Emitter::emitPCRelativeBlockAddress(MachineBasicBlock *MBB) {
Chris Lattnerf2d552e2004-11-16 04:30:51 +0000127 // If this is a backwards branch, we already know the address of the target,
128 // so just emit the value.
Chris Lattneraf1563f2006-05-03 00:32:55 +0000129 unsigned MBBNo = MBB->getNumber();
130 if (MBBNo < BasicBlockAddrs.size() && BasicBlockAddrs[MBBNo]) {
131 emitPCRelativeValue(BasicBlockAddrs[MBBNo]);
Chris Lattnerf2d552e2004-11-16 04:30:51 +0000132 } else {
133 // Otherwise, remember where this reference was and where it is to so we can
134 // deal with it later.
135 BBRefs.push_back(std::make_pair(MBB, MCE.getCurrentPCValue()));
Chris Lattnerd3f0aef2006-05-02 19:14:47 +0000136 MCE.emitWordLE(0);
Chris Lattnerf2d552e2004-11-16 04:30:51 +0000137 }
Chris Lattner04b0b302003-06-01 23:23:50 +0000138}
139
Chris Lattner04b0b302003-06-01 23:23:50 +0000140/// emitGlobalAddressForCall - Emit the specified address to the code stream
141/// assuming this is part of a function call, which is PC relative.
142///
Chris Lattner16cb6f82005-05-19 05:54:33 +0000143void Emitter::emitGlobalAddressForCall(GlobalValue *GV, bool isTailCall) {
Chris Lattnere72e4452004-11-20 23:55:15 +0000144 MCE.addRelocation(MachineRelocation(MCE.getCurrentPCOffset(),
Chris Lattner16cb6f82005-05-19 05:54:33 +0000145 X86::reloc_pcrel_word, GV, 0,
146 !isTailCall /*Doesn'tNeedStub*/));
Chris Lattnerd3f0aef2006-05-02 19:14:47 +0000147 MCE.emitWordLE(0);
Chris Lattner04b0b302003-06-01 23:23:50 +0000148}
149
150/// emitGlobalAddress - Emit the specified address to the code stream assuming
151/// this is part of a "take the address of a global" instruction, which is not
152/// PC relative.
153///
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000154void Emitter::emitGlobalAddressForPtr(GlobalValue *GV, int Disp /* = 0 */) {
Chris Lattnere72e4452004-11-20 23:55:15 +0000155 MCE.addRelocation(MachineRelocation(MCE.getCurrentPCOffset(),
156 X86::reloc_absolute_word, GV));
Chris Lattnerd3f0aef2006-05-02 19:14:47 +0000157 MCE.emitWordLE(Disp); // The relocated value will be added to the displacement
Chris Lattner04b0b302003-06-01 23:23:50 +0000158}
159
Chris Lattnere72e4452004-11-20 23:55:15 +0000160/// emitExternalSymbolAddress - Arrange for the address of an external symbol to
161/// be emitted to the current location in the function, and allow it to be PC
162/// relative.
Chris Lattner16cb6f82005-05-19 05:54:33 +0000163void Emitter::emitExternalSymbolAddress(const char *ES, bool isPCRelative,
164 bool isTailCall) {
Chris Lattnere72e4452004-11-20 23:55:15 +0000165 MCE.addRelocation(MachineRelocation(MCE.getCurrentPCOffset(),
166 isPCRelative ? X86::reloc_pcrel_word : X86::reloc_absolute_word, ES));
Chris Lattnerd3f0aef2006-05-02 19:14:47 +0000167 MCE.emitWordLE(0);
Chris Lattnere72e4452004-11-20 23:55:15 +0000168}
Chris Lattner04b0b302003-06-01 23:23:50 +0000169
Chris Lattnerff3261a2003-06-03 15:31:23 +0000170/// N86 namespace - Native X86 Register numbers... used by X86 backend.
171///
172namespace N86 {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000173 enum {
174 EAX = 0, ECX = 1, EDX = 2, EBX = 3, ESP = 4, EBP = 5, ESI = 6, EDI = 7
175 };
176}
177
178
179// getX86RegNum - This function maps LLVM register identifiers to their X86
180// specific numbering, which is used in various places encoding instructions.
181//
182static unsigned getX86RegNum(unsigned RegNo) {
183 switch(RegNo) {
184 case X86::EAX: case X86::AX: case X86::AL: return N86::EAX;
185 case X86::ECX: case X86::CX: case X86::CL: return N86::ECX;
186 case X86::EDX: case X86::DX: case X86::DL: return N86::EDX;
187 case X86::EBX: case X86::BX: case X86::BL: return N86::EBX;
188 case X86::ESP: case X86::SP: case X86::AH: return N86::ESP;
189 case X86::EBP: case X86::BP: case X86::CH: return N86::EBP;
190 case X86::ESI: case X86::SI: case X86::DH: return N86::ESI;
191 case X86::EDI: case X86::DI: case X86::BH: return N86::EDI;
Chris Lattnere831b6b2003-01-13 00:33:59 +0000192
193 case X86::ST0: case X86::ST1: case X86::ST2: case X86::ST3:
194 case X86::ST4: case X86::ST5: case X86::ST6: case X86::ST7:
195 return RegNo-X86::ST0;
Evan Cheng576c1412006-02-14 21:45:24 +0000196
197 case X86::XMM0: case X86::XMM1: case X86::XMM2: case X86::XMM3:
198 case X86::XMM4: case X86::XMM5: case X86::XMM6: case X86::XMM7:
199 return RegNo-X86::XMM0;
200
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000201 default:
Alkis Evlogimenos859a18b2004-02-15 21:37:17 +0000202 assert(MRegisterInfo::isVirtualRegister(RegNo) &&
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000203 "Unknown physical register!");
204 assert(0 && "Register allocator hasn't allocated reg correctly yet!");
205 return 0;
206 }
207}
208
209inline static unsigned char ModRMByte(unsigned Mod, unsigned RegOpcode,
210 unsigned RM) {
211 assert(Mod < 4 && RegOpcode < 8 && RM < 8 && "ModRM Fields out of range!");
212 return RM | (RegOpcode << 3) | (Mod << 6);
213}
214
215void Emitter::emitRegModRMByte(unsigned ModRMReg, unsigned RegOpcodeFld){
216 MCE.emitByte(ModRMByte(3, RegOpcodeFld, getX86RegNum(ModRMReg)));
217}
218
219void Emitter::emitSIBByte(unsigned SS, unsigned Index, unsigned Base) {
220 // SIB byte is in the same format as the ModRMByte...
221 MCE.emitByte(ModRMByte(SS, Index, Base));
222}
223
224void Emitter::emitConstant(unsigned Val, unsigned Size) {
225 // Output the constant in little endian byte order...
226 for (unsigned i = 0; i != Size; ++i) {
227 MCE.emitByte(Val & 255);
228 Val >>= 8;
229 }
230}
231
232static bool isDisp8(int Value) {
233 return Value == (signed char)Value;
234}
235
236void Emitter::emitMemModRMByte(const MachineInstr &MI,
237 unsigned Op, unsigned RegOpcodeField) {
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000238 const MachineOperand &Op3 = MI.getOperand(Op+3);
239 GlobalValue *GV = 0;
240 int DispVal = 0;
241
242 if (Op3.isGlobalAddress()) {
243 GV = Op3.getGlobal();
244 DispVal = Op3.getOffset();
Evan Cheng140a4c42006-02-26 09:12:34 +0000245 } else if (Op3.isConstantPoolIndex()) {
246 DispVal += MCE.getConstantPoolEntryAddress(Op3.getConstantPoolIndex());
247 DispVal += Op3.getOffset();
Nate Begeman37efe672006-04-22 18:53:45 +0000248 } else if (Op3.isJumpTableIndex()) {
249 DispVal += MCE.getJumpTableEntryAddress(Op3.getJumpTableIndex());
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000250 } else {
251 DispVal = Op3.getImmedValue();
252 }
253
Chris Lattner07306de2004-10-17 07:49:45 +0000254 const MachineOperand &Base = MI.getOperand(Op);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000255 const MachineOperand &Scale = MI.getOperand(Op+1);
256 const MachineOperand &IndexReg = MI.getOperand(Op+2);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000257
Evan Cheng140a4c42006-02-26 09:12:34 +0000258 unsigned BaseReg = Base.getReg();
Chris Lattner07306de2004-10-17 07:49:45 +0000259
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000260 // Is a SIB byte needed?
Chris Lattner07306de2004-10-17 07:49:45 +0000261 if (IndexReg.getReg() == 0 && BaseReg != X86::ESP) {
262 if (BaseReg == 0) { // Just a displacement?
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000263 // Emit special case [disp32] encoding
264 MCE.emitByte(ModRMByte(0, RegOpcodeField, 5));
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000265 if (GV)
266 emitGlobalAddressForPtr(GV, DispVal);
267 else
268 emitConstant(DispVal, 4);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000269 } else {
Chris Lattner07306de2004-10-17 07:49:45 +0000270 unsigned BaseRegNo = getX86RegNum(BaseReg);
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000271 if (GV) {
272 // Emit the most general non-SIB encoding: [REG+disp32]
273 MCE.emitByte(ModRMByte(2, RegOpcodeField, BaseRegNo));
274 emitGlobalAddressForPtr(GV, DispVal);
275 } else if (DispVal == 0 && BaseRegNo != N86::EBP) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000276 // Emit simple indirect register encoding... [EAX] f.e.
277 MCE.emitByte(ModRMByte(0, RegOpcodeField, BaseRegNo));
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000278 } else if (isDisp8(DispVal)) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000279 // Emit the disp8 encoding... [REG+disp8]
280 MCE.emitByte(ModRMByte(1, RegOpcodeField, BaseRegNo));
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000281 emitConstant(DispVal, 1);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000282 } else {
283 // Emit the most general non-SIB encoding: [REG+disp32]
Chris Lattner20671842002-12-13 05:05:05 +0000284 MCE.emitByte(ModRMByte(2, RegOpcodeField, BaseRegNo));
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000285 emitConstant(DispVal, 4);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000286 }
287 }
288
289 } else { // We need a SIB byte, so start by outputting the ModR/M byte first
290 assert(IndexReg.getReg() != X86::ESP && "Cannot use ESP as index reg!");
291
292 bool ForceDisp32 = false;
Brian Gaeke95780cc2002-12-13 07:56:18 +0000293 bool ForceDisp8 = false;
Chris Lattner07306de2004-10-17 07:49:45 +0000294 if (BaseReg == 0) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000295 // If there is no base register, we emit the special case SIB byte with
296 // MOD=0, BASE=5, to JUST get the index, scale, and displacement.
297 MCE.emitByte(ModRMByte(0, RegOpcodeField, 4));
298 ForceDisp32 = true;
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000299 } else if (GV) {
300 // Emit the normal disp32 encoding...
301 MCE.emitByte(ModRMByte(2, RegOpcodeField, 4));
302 ForceDisp32 = true;
Chris Lattner07306de2004-10-17 07:49:45 +0000303 } else if (DispVal == 0 && BaseReg != X86::EBP) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000304 // Emit no displacement ModR/M byte
305 MCE.emitByte(ModRMByte(0, RegOpcodeField, 4));
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000306 } else if (isDisp8(DispVal)) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000307 // Emit the disp8 encoding...
308 MCE.emitByte(ModRMByte(1, RegOpcodeField, 4));
Brian Gaeke95780cc2002-12-13 07:56:18 +0000309 ForceDisp8 = true; // Make sure to force 8 bit disp if Base=EBP
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000310 } else {
311 // Emit the normal disp32 encoding...
312 MCE.emitByte(ModRMByte(2, RegOpcodeField, 4));
313 }
314
315 // Calculate what the SS field value should be...
316 static const unsigned SSTable[] = { ~0, 0, 1, ~0, 2, ~0, ~0, ~0, 3 };
317 unsigned SS = SSTable[Scale.getImmedValue()];
318
Chris Lattner07306de2004-10-17 07:49:45 +0000319 if (BaseReg == 0) {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000320 // Handle the SIB byte for the case where there is no base. The
321 // displacement has already been output.
322 assert(IndexReg.getReg() && "Index register must be specified!");
323 emitSIBByte(SS, getX86RegNum(IndexReg.getReg()), 5);
324 } else {
Chris Lattner07306de2004-10-17 07:49:45 +0000325 unsigned BaseRegNo = getX86RegNum(BaseReg);
Chris Lattner5ae99fe2002-12-28 20:24:48 +0000326 unsigned IndexRegNo;
327 if (IndexReg.getReg())
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000328 IndexRegNo = getX86RegNum(IndexReg.getReg());
Chris Lattner5ae99fe2002-12-28 20:24:48 +0000329 else
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000330 IndexRegNo = 4; // For example [ESP+1*<noreg>+4]
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000331 emitSIBByte(SS, IndexRegNo, BaseRegNo);
332 }
333
334 // Do we need to output a displacement?
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000335 if (DispVal != 0 || ForceDisp32 || ForceDisp8) {
336 if (!ForceDisp32 && isDisp8(DispVal))
337 emitConstant(DispVal, 1);
338 else if (GV)
339 emitGlobalAddressForPtr(GV, DispVal);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000340 else
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000341 emitConstant(DispVal, 4);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000342 }
343 }
344}
345
Alkis Evlogimenos5ab29b52004-02-28 22:02:05 +0000346static unsigned sizeOfImm(const TargetInstrDescriptor &Desc) {
347 switch (Desc.TSFlags & X86II::ImmMask) {
348 case X86II::Imm8: return 1;
349 case X86II::Imm16: return 2;
350 case X86II::Imm32: return 4;
351 default: assert(0 && "Immediate size not set!");
352 return 0;
353 }
354}
355
Alkis Evlogimenosf6e81562004-03-09 03:30:12 +0000356void Emitter::emitInstruction(const MachineInstr &MI) {
Chris Lattner302de592003-06-06 04:00:05 +0000357 NumEmitted++; // Keep track of the # of mi's emitted
358
Chris Lattner76041ce2002-12-02 21:44:34 +0000359 unsigned Opcode = MI.getOpcode();
Chris Lattner3501fea2003-01-14 22:00:31 +0000360 const TargetInstrDescriptor &Desc = II->get(Opcode);
Chris Lattner76041ce2002-12-02 21:44:34 +0000361
Chris Lattner915e5e52004-02-12 17:53:22 +0000362 // Emit the repeat opcode prefix as needed.
363 if ((Desc.TSFlags & X86II::Op0Mask) == X86II::REP) MCE.emitByte(0xF3);
364
Nate Begemanf63be7d2005-07-06 18:59:04 +0000365 // Emit the operand size opcode prefix as needed.
366 if (Desc.TSFlags & X86II::OpSize) MCE.emitByte(0x66);
367
Chris Lattner5ada8df2002-12-25 05:09:21 +0000368 switch (Desc.TSFlags & X86II::Op0Mask) {
369 case X86II::TB:
370 MCE.emitByte(0x0F); // Two-byte opcode prefix
371 break;
Evan Chengee50a1a2006-02-14 21:52:51 +0000372 case X86II::REP: break; // already handled.
373 case X86II::XS: // F3 0F
374 MCE.emitByte(0xF3);
375 MCE.emitByte(0x0F);
376 break;
377 case X86II::XD: // F2 0F
378 MCE.emitByte(0xF2);
379 MCE.emitByte(0x0F);
380 break;
Chris Lattner5ada8df2002-12-25 05:09:21 +0000381 case X86II::D8: case X86II::D9: case X86II::DA: case X86II::DB:
382 case X86II::DC: case X86II::DD: case X86II::DE: case X86II::DF:
Chris Lattnere831b6b2003-01-13 00:33:59 +0000383 MCE.emitByte(0xD8+
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000384 (((Desc.TSFlags & X86II::Op0Mask)-X86II::D8)
385 >> X86II::Op0Shift));
Chris Lattner5ada8df2002-12-25 05:09:21 +0000386 break; // Two-byte opcode prefix
Chris Lattnere831b6b2003-01-13 00:33:59 +0000387 default: assert(0 && "Invalid prefix!");
388 case 0: break; // No prefix!
Chris Lattner5ada8df2002-12-25 05:09:21 +0000389 }
Chris Lattner76041ce2002-12-02 21:44:34 +0000390
Chris Lattner5ae99fe2002-12-28 20:24:48 +0000391 unsigned char BaseOpcode = II->getBaseOpcodeFor(Opcode);
Chris Lattner76041ce2002-12-02 21:44:34 +0000392 switch (Desc.TSFlags & X86II::FormMask) {
Chris Lattnere831b6b2003-01-13 00:33:59 +0000393 default: assert(0 && "Unknown FormMask value in X86 MachineCodeEmitter!");
Chris Lattner5ada8df2002-12-25 05:09:21 +0000394 case X86II::Pseudo:
Chris Lattnerdabbc982006-01-28 18:19:37 +0000395#ifndef NDEBUG
396 switch (Opcode) {
397 default:
398 assert(0 && "psuedo instructions should be removed before code emission");
399 case X86::IMPLICIT_USE:
400 case X86::IMPLICIT_DEF:
401 case X86::IMPLICIT_DEF_R8:
402 case X86::IMPLICIT_DEF_R16:
403 case X86::IMPLICIT_DEF_R32:
404 case X86::IMPLICIT_DEF_FR32:
405 case X86::IMPLICIT_DEF_FR64:
Evan Chenga9f2a712006-03-22 02:52:03 +0000406 case X86::IMPLICIT_DEF_VR64:
407 case X86::IMPLICIT_DEF_VR128:
Chris Lattnerdabbc982006-01-28 18:19:37 +0000408 case X86::FP_REG_KILL:
409 break;
410 }
411#endif
Chris Lattner5ada8df2002-12-25 05:09:21 +0000412 break;
Chris Lattnere831b6b2003-01-13 00:33:59 +0000413
Chris Lattner76041ce2002-12-02 21:44:34 +0000414 case X86II::RawFrm:
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000415 MCE.emitByte(BaseOpcode);
Chris Lattner8f04b092002-12-02 21:56:18 +0000416 if (MI.getNumOperands() == 1) {
Alkis Evlogimenosf6e81562004-03-09 03:30:12 +0000417 const MachineOperand &MO = MI.getOperand(0);
Brian Gaeke09015d92004-05-14 06:54:58 +0000418 if (MO.isMachineBasicBlock()) {
419 emitPCRelativeBlockAddress(MO.getMachineBasicBlock());
Chris Lattnere831b6b2003-01-13 00:33:59 +0000420 } else if (MO.isGlobalAddress()) {
Chris Lattner16cb6f82005-05-19 05:54:33 +0000421 bool isTailCall = Opcode == X86::TAILJMPd ||
422 Opcode == X86::TAILJMPr || Opcode == X86::TAILJMPm;
423 emitGlobalAddressForCall(MO.getGlobal(), isTailCall);
Chris Lattnere831b6b2003-01-13 00:33:59 +0000424 } else if (MO.isExternalSymbol()) {
Chris Lattner16cb6f82005-05-19 05:54:33 +0000425 bool isTailCall = Opcode == X86::TAILJMPd ||
426 Opcode == X86::TAILJMPr || Opcode == X86::TAILJMPm;
427 emitExternalSymbolAddress(MO.getSymbolName(), true, isTailCall);
Chris Lattnere47f4ff2004-04-13 17:18:51 +0000428 } else if (MO.isImmediate()) {
Misha Brukman0e0a7a452005-04-21 23:38:14 +0000429 emitConstant(MO.getImmedValue(), sizeOfImm(Desc));
Chris Lattnerdbf30f72002-12-04 06:45:19 +0000430 } else {
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000431 assert(0 && "Unknown RawFrm operand!");
Chris Lattnerdbf30f72002-12-04 06:45:19 +0000432 }
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000433 }
434 break;
Chris Lattnere831b6b2003-01-13 00:33:59 +0000435
436 case X86II::AddRegFrm:
437 MCE.emitByte(BaseOpcode + getX86RegNum(MI.getOperand(0).getReg()));
438 if (MI.getNumOperands() == 2) {
Alkis Evlogimenosf6e81562004-03-09 03:30:12 +0000439 const MachineOperand &MO1 = MI.getOperand(1);
Alkis Evlogimenos5ab29b52004-02-28 22:02:05 +0000440 if (Value *V = MO1.getVRegValueOrNull()) {
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000441 assert(sizeOfImm(Desc) == 4 &&
442 "Don't know how to emit non-pointer values!");
Alkis Evlogimenos5ab29b52004-02-28 22:02:05 +0000443 emitGlobalAddressForPtr(cast<GlobalValue>(V));
444 } else if (MO1.isGlobalAddress()) {
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000445 assert(sizeOfImm(Desc) == 4 &&
446 "Don't know how to emit non-pointer values!");
Alkis Evlogimenos5ab29b52004-02-28 22:02:05 +0000447 assert(!MO1.isPCRelative() && "Function pointer ref is PC relative?");
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000448 emitGlobalAddressForPtr(MO1.getGlobal(), MO1.getOffset());
Alkis Evlogimenos5ab29b52004-02-28 22:02:05 +0000449 } else if (MO1.isExternalSymbol()) {
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000450 assert(sizeOfImm(Desc) == 4 &&
451 "Don't know how to emit non-pointer values!");
Chris Lattner16cb6f82005-05-19 05:54:33 +0000452 emitExternalSymbolAddress(MO1.getSymbolName(), false, false);
Nate Begeman37efe672006-04-22 18:53:45 +0000453 } else if (MO1.isJumpTableIndex()) {
454 assert(sizeOfImm(Desc) == 4 &&
455 "Don't know how to emit non-pointer values!");
456 emitConstant(MCE.getJumpTableEntryAddress(MO1.getJumpTableIndex()), 4);
Alkis Evlogimenos5ab29b52004-02-28 22:02:05 +0000457 } else {
458 emitConstant(MO1.getImmedValue(), sizeOfImm(Desc));
Chris Lattnere831b6b2003-01-13 00:33:59 +0000459 }
460 }
461 break;
462
463 case X86II::MRMDestReg: {
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000464 MCE.emitByte(BaseOpcode);
Alkis Evlogimenos14be6402004-02-04 22:17:40 +0000465 emitRegModRMByte(MI.getOperand(0).getReg(),
466 getX86RegNum(MI.getOperand(1).getReg()));
467 if (MI.getNumOperands() == 3)
Alkis Evlogimenos5ab29b52004-02-28 22:02:05 +0000468 emitConstant(MI.getOperand(2).getImmedValue(), sizeOfImm(Desc));
Chris Lattner9dedbcc2003-05-06 21:31:47 +0000469 break;
Chris Lattnere831b6b2003-01-13 00:33:59 +0000470 }
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000471 case X86II::MRMDestMem:
472 MCE.emitByte(BaseOpcode);
473 emitMemModRMByte(MI, 0, getX86RegNum(MI.getOperand(4).getReg()));
Chris Lattner42df4612004-07-17 20:26:14 +0000474 if (MI.getNumOperands() == 6)
475 emitConstant(MI.getOperand(5).getImmedValue(), sizeOfImm(Desc));
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000476 break;
Chris Lattnere831b6b2003-01-13 00:33:59 +0000477
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000478 case X86II::MRMSrcReg:
479 MCE.emitByte(BaseOpcode);
Alkis Evlogimenos14be6402004-02-04 22:17:40 +0000480 emitRegModRMByte(MI.getOperand(1).getReg(),
481 getX86RegNum(MI.getOperand(0).getReg()));
482 if (MI.getNumOperands() == 3)
Alkis Evlogimenos5ab29b52004-02-28 22:02:05 +0000483 emitConstant(MI.getOperand(2).getImmedValue(), sizeOfImm(Desc));
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000484 break;
Chris Lattnere831b6b2003-01-13 00:33:59 +0000485
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000486 case X86II::MRMSrcMem:
487 MCE.emitByte(BaseOpcode);
Chris Lattner5b672522004-02-17 07:40:44 +0000488 emitMemModRMByte(MI, 1, getX86RegNum(MI.getOperand(0).getReg()));
489 if (MI.getNumOperands() == 2+4)
Alkis Evlogimenos5ab29b52004-02-28 22:02:05 +0000490 emitConstant(MI.getOperand(5).getImmedValue(), sizeOfImm(Desc));
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000491 break;
492
Alkis Evlogimenos169584e2004-02-27 18:55:12 +0000493 case X86II::MRM0r: case X86II::MRM1r:
494 case X86II::MRM2r: case X86II::MRM3r:
495 case X86II::MRM4r: case X86II::MRM5r:
496 case X86II::MRM6r: case X86II::MRM7r:
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000497 MCE.emitByte(BaseOpcode);
498 emitRegModRMByte(MI.getOperand(0).getReg(),
Alkis Evlogimenos169584e2004-02-27 18:55:12 +0000499 (Desc.TSFlags & X86II::FormMask)-X86II::MRM0r);
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000500
Chris Lattnerd9096832002-12-15 08:01:39 +0000501 if (MI.getOperand(MI.getNumOperands()-1).isImmediate()) {
Chris Lattner39a83dc2004-11-16 18:40:52 +0000502 emitConstant(MI.getOperand(MI.getNumOperands()-1).getImmedValue(),
503 sizeOfImm(Desc));
Chris Lattnerea1ddab2002-12-03 06:34:06 +0000504 }
505 break;
Chris Lattnere831b6b2003-01-13 00:33:59 +0000506
Alkis Evlogimenos169584e2004-02-27 18:55:12 +0000507 case X86II::MRM0m: case X86II::MRM1m:
508 case X86II::MRM2m: case X86II::MRM3m:
509 case X86II::MRM4m: case X86II::MRM5m:
Misha Brukman0e0a7a452005-04-21 23:38:14 +0000510 case X86II::MRM6m: case X86II::MRM7m:
Chris Lattnere831b6b2003-01-13 00:33:59 +0000511 MCE.emitByte(BaseOpcode);
Alkis Evlogimenos169584e2004-02-27 18:55:12 +0000512 emitMemModRMByte(MI, 0, (Desc.TSFlags & X86II::FormMask)-X86II::MRM0m);
Chris Lattnere831b6b2003-01-13 00:33:59 +0000513
514 if (MI.getNumOperands() == 5) {
Chris Lattnercc0d2f52004-02-17 18:23:55 +0000515 if (MI.getOperand(4).isImmediate())
Alkis Evlogimenos5ab29b52004-02-28 22:02:05 +0000516 emitConstant(MI.getOperand(4).getImmedValue(), sizeOfImm(Desc));
Chris Lattnercc0d2f52004-02-17 18:23:55 +0000517 else if (MI.getOperand(4).isGlobalAddress())
Chris Lattner8cce7cd2004-10-15 04:53:13 +0000518 emitGlobalAddressForPtr(MI.getOperand(4).getGlobal(),
519 MI.getOperand(4).getOffset());
Nate Begeman67977ad2006-05-03 04:52:47 +0000520 else if (MI.getOperand(4).isJumpTableIndex())
521 emitConstant(MCE.getJumpTableEntryAddress(MI.getOperand(4)
522 .getJumpTableIndex()), 4);
Chris Lattnercc0d2f52004-02-17 18:23:55 +0000523 else
524 assert(0 && "Unknown operand!");
Chris Lattnere831b6b2003-01-13 00:33:59 +0000525 }
526 break;
Evan Cheng3c55c542006-02-01 06:13:50 +0000527
528 case X86II::MRMInitReg:
529 MCE.emitByte(BaseOpcode);
530 emitRegModRMByte(MI.getOperand(0).getReg(),
531 getX86RegNum(MI.getOperand(0).getReg()));
532 break;
Chris Lattner76041ce2002-12-02 21:44:34 +0000533 }
534}