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Chris Lattner74f4ca72009-09-02 17:35:12 +00001//===-- X86MCInstLower.cpp - Convert X86 MachineInstr to an MCInst --------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file contains code to lower X86 MachineInstrs to their corresponding
11// MCInst records.
12//
13//===----------------------------------------------------------------------===//
14
Chris Lattner5159bbaf2009-09-20 07:41:30 +000015#include "X86AsmPrinter.h"
NAKAMURA Takumi1db59952014-06-25 12:41:52 +000016#include "X86RegisterInfo.h"
Craig Topper69653af2015-12-31 22:40:45 +000017#include "X86ShuffleDecodeConstantPool.h"
Craig Topperb25fda92012-03-17 18:46:09 +000018#include "InstPrinter/X86ATTInstPrinter.h"
Craig Topperc6d4efa2014-03-19 06:53:25 +000019#include "MCTargetDesc/X86BaseInfo.h"
Chandler Carruth185cc182014-07-25 23:47:11 +000020#include "Utils/X86ShuffleDecode.h"
Sanjoy Das2d869b22015-06-15 18:44:01 +000021#include "llvm/ADT/Optional.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000022#include "llvm/ADT/SmallString.h"
Sanjoy Dasc0441c22016-04-19 05:24:47 +000023#include "llvm/ADT/iterator_range.h"
Craig Topperc6d4efa2014-03-19 06:53:25 +000024#include "llvm/CodeGen/MachineFunction.h"
Chandler Carruth185cc182014-07-25 23:47:11 +000025#include "llvm/CodeGen/MachineConstantPool.h"
26#include "llvm/CodeGen/MachineOperand.h"
Chris Lattner05f40392009-09-16 06:25:03 +000027#include "llvm/CodeGen/MachineModuleInfoImpls.h"
Andrew Trick153ebe62013-10-31 22:11:56 +000028#include "llvm/CodeGen/StackMaps.h"
Craig Topperc6d4efa2014-03-19 06:53:25 +000029#include "llvm/IR/DataLayout.h"
30#include "llvm/IR/GlobalValue.h"
Rafael Espindola894843c2014-01-07 21:19:40 +000031#include "llvm/IR/Mangler.h"
Evan Cheng1705ab02011-07-14 23:50:31 +000032#include "llvm/MC/MCAsmInfo.h"
Lang Hamesf49bc3f2014-07-24 20:40:55 +000033#include "llvm/MC/MCCodeEmitter.h"
Chris Lattner74f4ca72009-09-02 17:35:12 +000034#include "llvm/MC/MCContext.h"
35#include "llvm/MC/MCExpr.h"
Pete Cooper81902a32015-05-15 22:19:42 +000036#include "llvm/MC/MCFixup.h"
Chris Lattner74f4ca72009-09-02 17:35:12 +000037#include "llvm/MC/MCInst.h"
Benjamin Kramer4e629f72012-11-26 13:34:22 +000038#include "llvm/MC/MCInstBuilder.h"
Dean Michael Berris52735fc2016-07-14 04:06:33 +000039#include "llvm/MC/MCSection.h"
Chris Lattner74f4ca72009-09-02 17:35:12 +000040#include "llvm/MC/MCStreamer.h"
Chris Lattnere397df72010-03-12 19:42:40 +000041#include "llvm/MC/MCSymbol.h"
Dean Michael Berris52735fc2016-07-14 04:06:33 +000042#include "llvm/MC/MCSymbolELF.h"
43#include "llvm/MC/MCSectionELF.h"
Lang Hamesf49bc3f2014-07-24 20:40:55 +000044#include "llvm/Support/TargetRegistry.h"
Dean Michael Berris52735fc2016-07-14 04:06:33 +000045#include "llvm/Support/ELF.h"
46#include "llvm/Target/TargetLoweringObjectFile.h"
47
Chris Lattner74f4ca72009-09-02 17:35:12 +000048using namespace llvm;
49
Craig Topper2a3f7752012-10-16 06:01:50 +000050namespace {
51
52/// X86MCInstLower - This class is used to lower an MachineInstr into an MCInst.
53class X86MCInstLower {
54 MCContext &Ctx;
Craig Topper2a3f7752012-10-16 06:01:50 +000055 const MachineFunction &MF;
56 const TargetMachine &TM;
57 const MCAsmInfo &MAI;
58 X86AsmPrinter &AsmPrinter;
59public:
Rafael Espindola38c2e652013-10-29 16:11:22 +000060 X86MCInstLower(const MachineFunction &MF, X86AsmPrinter &asmprinter);
Craig Topper2a3f7752012-10-16 06:01:50 +000061
Sanjoy Das2d869b22015-06-15 18:44:01 +000062 Optional<MCOperand> LowerMachineOperand(const MachineInstr *MI,
63 const MachineOperand &MO) const;
Craig Topper2a3f7752012-10-16 06:01:50 +000064 void Lower(const MachineInstr *MI, MCInst &OutMI) const;
65
66 MCSymbol *GetSymbolFromOperand(const MachineOperand &MO) const;
67 MCOperand LowerSymbolOperand(const MachineOperand &MO, MCSymbol *Sym) const;
68
69private:
70 MachineModuleInfoMachO &getMachOMMI() const;
Rafael Espindola38c2e652013-10-29 16:11:22 +000071 Mangler *getMang() const {
72 return AsmPrinter.Mang;
73 }
Craig Topper2a3f7752012-10-16 06:01:50 +000074};
75
76} // end anonymous namespace
77
Lang Hamesf49bc3f2014-07-24 20:40:55 +000078// Emit a minimal sequence of nops spanning NumBytes bytes.
79static void EmitNops(MCStreamer &OS, unsigned NumBytes, bool Is64Bit,
Sanjoy Das6ecfae62016-04-19 18:48:13 +000080 const MCSubtargetInfo &STI);
Lang Hamesf49bc3f2014-07-24 20:40:55 +000081
Sanjoy Das2effffd2016-04-19 18:48:16 +000082void X86AsmPrinter::StackMapShadowTracker::count(MCInst &Inst,
83 const MCSubtargetInfo &STI,
84 MCCodeEmitter *CodeEmitter) {
85 if (InShadow) {
86 SmallString<256> Code;
87 SmallVector<MCFixup, 4> Fixups;
88 raw_svector_ostream VecOS(Code);
89 CodeEmitter->encodeInstruction(Inst, VecOS, Fixups, STI);
90 CurrentShadowSize += Code.size();
91 if (CurrentShadowSize >= RequiredShadowSize)
92 InShadow = false; // The shadow is big enough. Stop counting.
Lang Hamesf49bc3f2014-07-24 20:40:55 +000093 }
Sanjoy Das2effffd2016-04-19 18:48:16 +000094}
Lang Hamesf49bc3f2014-07-24 20:40:55 +000095
Sanjoy Das2effffd2016-04-19 18:48:16 +000096void X86AsmPrinter::StackMapShadowTracker::emitShadowPadding(
Lang Hamesf49bc3f2014-07-24 20:40:55 +000097 MCStreamer &OutStreamer, const MCSubtargetInfo &STI) {
Sanjoy Das2effffd2016-04-19 18:48:16 +000098 if (InShadow && CurrentShadowSize < RequiredShadowSize) {
99 InShadow = false;
100 EmitNops(OutStreamer, RequiredShadowSize - CurrentShadowSize,
101 MF->getSubtarget<X86Subtarget>().is64Bit(), STI);
Lang Hamesf49bc3f2014-07-24 20:40:55 +0000102 }
Sanjoy Das2effffd2016-04-19 18:48:16 +0000103}
Lang Hamesf49bc3f2014-07-24 20:40:55 +0000104
Sanjoy Das2effffd2016-04-19 18:48:16 +0000105void X86AsmPrinter::EmitAndCountInstruction(MCInst &Inst) {
106 OutStreamer->EmitInstruction(Inst, getSubtargetInfo());
107 SMShadowTracker.count(Inst, getSubtargetInfo(), CodeEmitter.get());
108}
Lang Hamesf49bc3f2014-07-24 20:40:55 +0000109
Rafael Espindola38c2e652013-10-29 16:11:22 +0000110X86MCInstLower::X86MCInstLower(const MachineFunction &mf,
Chris Lattnerb3f608b2010-07-22 21:10:04 +0000111 X86AsmPrinter &asmprinter)
Eric Christopher05b81972015-02-02 17:38:43 +0000112 : Ctx(mf.getContext()), MF(mf), TM(mf.getTarget()), MAI(*TM.getMCAsmInfo()),
113 AsmPrinter(asmprinter) {}
Chris Lattner31722082009-09-12 20:34:57 +0000114
Chris Lattner05f40392009-09-16 06:25:03 +0000115MachineModuleInfoMachO &X86MCInstLower::getMachOMMI() const {
Chris Lattner7fbdd7c2010-07-20 22:26:07 +0000116 return MF.getMMI().getObjFileInfo<MachineModuleInfoMachO>();
Chris Lattner05f40392009-09-16 06:25:03 +0000117}
118
Chris Lattner31722082009-09-12 20:34:57 +0000119
Chris Lattnerd9d71862010-02-08 23:03:41 +0000120/// GetSymbolFromOperand - Lower an MO_GlobalAddress or MO_ExternalSymbol
121/// operand to an MCSymbol.
Chris Lattner31722082009-09-12 20:34:57 +0000122MCSymbol *X86MCInstLower::
Chris Lattnerd9d71862010-02-08 23:03:41 +0000123GetSymbolFromOperand(const MachineOperand &MO) const {
Mehdi Aminibd7287e2015-07-16 06:11:10 +0000124 const DataLayout &DL = MF.getDataLayout();
Michael Liao6f720612012-10-17 02:22:27 +0000125 assert((MO.isGlobal() || MO.isSymbol() || MO.isMBB()) && "Isn't a symbol reference");
Chris Lattnerd9d71862010-02-08 23:03:41 +0000126
Rafael Espindola9aa3ab32015-06-03 00:02:40 +0000127 MCSymbol *Sym = nullptr;
Chris Lattner35ed98a2009-09-11 05:58:44 +0000128 SmallString<128> Name;
Rafael Espindolad5bd5a42013-11-28 20:12:44 +0000129 StringRef Suffix;
130
131 switch (MO.getTargetFlags()) {
Reid Klecknerc35e7f52015-06-11 01:31:48 +0000132 case X86II::MO_DLLIMPORT:
133 // Handle dllimport linkage.
134 Name += "__imp_";
135 break;
Rafael Espindolad5bd5a42013-11-28 20:12:44 +0000136 case X86II::MO_DARWIN_NONLAZY:
137 case X86II::MO_DARWIN_NONLAZY_PIC_BASE:
Rafael Espindolad5bd5a42013-11-28 20:12:44 +0000138 Suffix = "$non_lazy_ptr";
139 break;
140 }
Chad Rosier24c19d22012-08-01 18:39:17 +0000141
Rafael Espindola01d19d022013-12-05 05:19:12 +0000142 if (!Suffix.empty())
Mehdi Aminibd7287e2015-07-16 06:11:10 +0000143 Name += DL.getPrivateGlobalPrefix();
Rafael Espindola01d19d022013-12-05 05:19:12 +0000144
Michael Liao6f720612012-10-17 02:22:27 +0000145 if (MO.isGlobal()) {
Chris Lattnere397df72010-03-12 19:42:40 +0000146 const GlobalValue *GV = MO.getGlobal();
Rafael Espindoladaeafb42014-02-19 17:23:20 +0000147 AsmPrinter.getNameWithPrefix(Name, GV);
Michael Liao6f720612012-10-17 02:22:27 +0000148 } else if (MO.isSymbol()) {
Mehdi Aminibd7287e2015-07-16 06:11:10 +0000149 Mangler::getNameWithPrefix(Name, MO.getSymbolName(), DL);
Michael Liao6f720612012-10-17 02:22:27 +0000150 } else if (MO.isMBB()) {
Rafael Espindola9aa3ab32015-06-03 00:02:40 +0000151 assert(Suffix.empty());
152 Sym = MO.getMBB()->getSymbol();
Chris Lattner17ec6b12009-09-20 06:45:52 +0000153 }
Chris Lattnerd9d71862010-02-08 23:03:41 +0000154
Rafael Espindolad5bd5a42013-11-28 20:12:44 +0000155 Name += Suffix;
Rafael Espindola9aa3ab32015-06-03 00:02:40 +0000156 if (!Sym)
157 Sym = Ctx.getOrCreateSymbol(Name);
Rafael Espindola01d19d022013-12-05 05:19:12 +0000158
Chris Lattnerd9d71862010-02-08 23:03:41 +0000159 // If the target flags on the operand changes the name of the symbol, do that
160 // before we return the symbol.
Chris Lattner74f4ca72009-09-02 17:35:12 +0000161 switch (MO.getTargetFlags()) {
Chris Lattnerd9d71862010-02-08 23:03:41 +0000162 default: break;
Chris Lattner954b9cd2009-09-03 05:06:07 +0000163 case X86II::MO_DARWIN_NONLAZY:
Chris Lattner446d5892009-09-11 06:59:18 +0000164 case X86II::MO_DARWIN_NONLAZY_PIC_BASE: {
Bill Wendlinga810bdf2010-03-10 22:34:10 +0000165 MachineModuleInfoImpl::StubValueTy &StubSym =
166 getMachOMMI().getGVStubEntry(Sym);
Craig Topper062a2ba2014-04-25 05:30:21 +0000167 if (!StubSym.getPointer()) {
Chris Lattnerd9d71862010-02-08 23:03:41 +0000168 assert(MO.isGlobal() && "Extern symbol not handled yet");
Bill Wendlinga810bdf2010-03-10 22:34:10 +0000169 StubSym =
170 MachineModuleInfoImpl::
Rafael Espindola79858aa2013-10-29 17:07:16 +0000171 StubValueTy(AsmPrinter.getSymbol(MO.getGlobal()),
Bill Wendlinga810bdf2010-03-10 22:34:10 +0000172 !MO.getGlobal()->hasInternalLinkage());
Chris Lattnerd9d71862010-02-08 23:03:41 +0000173 }
Rafael Espindolad5bd5a42013-11-28 20:12:44 +0000174 break;
Chris Lattner446d5892009-09-11 06:59:18 +0000175 }
Chris Lattnerc5a95c52009-09-09 00:10:14 +0000176 }
Chris Lattnerd9d71862010-02-08 23:03:41 +0000177
Rafael Espindolad5bd5a42013-11-28 20:12:44 +0000178 return Sym;
Chris Lattner74f4ca72009-09-02 17:35:12 +0000179}
180
Chris Lattner31722082009-09-12 20:34:57 +0000181MCOperand X86MCInstLower::LowerSymbolOperand(const MachineOperand &MO,
182 MCSymbol *Sym) const {
Chris Lattnerc7b00732009-09-03 07:30:56 +0000183 // FIXME: We would like an efficient form for this, so we don't have to do a
184 // lot of extra uniquing.
Craig Topper062a2ba2014-04-25 05:30:21 +0000185 const MCExpr *Expr = nullptr;
Daniel Dunbar55992562010-03-15 23:51:06 +0000186 MCSymbolRefExpr::VariantKind RefKind = MCSymbolRefExpr::VK_None;
Chad Rosier24c19d22012-08-01 18:39:17 +0000187
Chris Lattner6370d562009-09-03 04:56:20 +0000188 switch (MO.getTargetFlags()) {
Chris Lattner954b9cd2009-09-03 05:06:07 +0000189 default: llvm_unreachable("Unknown target flag on GV operand");
190 case X86II::MO_NO_FLAG: // No flag.
Chris Lattner954b9cd2009-09-03 05:06:07 +0000191 // These affect the name of the symbol, not any suffix.
192 case X86II::MO_DARWIN_NONLAZY:
Chris Lattner954b9cd2009-09-03 05:06:07 +0000193 case X86II::MO_DLLIMPORT:
Chris Lattner954b9cd2009-09-03 05:06:07 +0000194 break;
Chad Rosier24c19d22012-08-01 18:39:17 +0000195
Eric Christopherb0e1a452010-06-03 04:07:48 +0000196 case X86II::MO_TLVP: RefKind = MCSymbolRefExpr::VK_TLVP; break;
197 case X86II::MO_TLVP_PIC_BASE:
Jim Grosbach13760bd2015-05-30 01:25:56 +0000198 Expr = MCSymbolRefExpr::create(Sym, MCSymbolRefExpr::VK_TLVP, Ctx);
Chris Lattner769aedd2010-07-14 23:04:59 +0000199 // Subtract the pic base.
Jim Grosbach13760bd2015-05-30 01:25:56 +0000200 Expr = MCBinaryExpr::createSub(Expr,
201 MCSymbolRefExpr::create(MF.getPICBaseSymbol(),
Chris Lattner769aedd2010-07-14 23:04:59 +0000202 Ctx),
203 Ctx);
204 break;
Anton Korobeynikovc6b40172012-02-11 17:26:53 +0000205 case X86II::MO_SECREL: RefKind = MCSymbolRefExpr::VK_SECREL; break;
Daniel Dunbar55992562010-03-15 23:51:06 +0000206 case X86II::MO_TLSGD: RefKind = MCSymbolRefExpr::VK_TLSGD; break;
Hans Wennborg789acfb2012-06-01 16:27:21 +0000207 case X86II::MO_TLSLD: RefKind = MCSymbolRefExpr::VK_TLSLD; break;
208 case X86II::MO_TLSLDM: RefKind = MCSymbolRefExpr::VK_TLSLDM; break;
Daniel Dunbar55992562010-03-15 23:51:06 +0000209 case X86II::MO_GOTTPOFF: RefKind = MCSymbolRefExpr::VK_GOTTPOFF; break;
210 case X86II::MO_INDNTPOFF: RefKind = MCSymbolRefExpr::VK_INDNTPOFF; break;
211 case X86II::MO_TPOFF: RefKind = MCSymbolRefExpr::VK_TPOFF; break;
Hans Wennborg789acfb2012-06-01 16:27:21 +0000212 case X86II::MO_DTPOFF: RefKind = MCSymbolRefExpr::VK_DTPOFF; break;
Daniel Dunbar55992562010-03-15 23:51:06 +0000213 case X86II::MO_NTPOFF: RefKind = MCSymbolRefExpr::VK_NTPOFF; break;
Hans Wennborgf9d0e442012-05-11 10:11:01 +0000214 case X86II::MO_GOTNTPOFF: RefKind = MCSymbolRefExpr::VK_GOTNTPOFF; break;
Daniel Dunbar55992562010-03-15 23:51:06 +0000215 case X86II::MO_GOTPCREL: RefKind = MCSymbolRefExpr::VK_GOTPCREL; break;
216 case X86II::MO_GOT: RefKind = MCSymbolRefExpr::VK_GOT; break;
217 case X86II::MO_GOTOFF: RefKind = MCSymbolRefExpr::VK_GOTOFF; break;
218 case X86II::MO_PLT: RefKind = MCSymbolRefExpr::VK_PLT; break;
Chris Lattner954b9cd2009-09-03 05:06:07 +0000219 case X86II::MO_PIC_BASE_OFFSET:
220 case X86II::MO_DARWIN_NONLAZY_PIC_BASE:
Jim Grosbach13760bd2015-05-30 01:25:56 +0000221 Expr = MCSymbolRefExpr::create(Sym, Ctx);
Chris Lattner954b9cd2009-09-03 05:06:07 +0000222 // Subtract the pic base.
Jim Grosbach13760bd2015-05-30 01:25:56 +0000223 Expr = MCBinaryExpr::createSub(Expr,
224 MCSymbolRefExpr::create(MF.getPICBaseSymbol(), Ctx),
Chris Lattner31722082009-09-12 20:34:57 +0000225 Ctx);
Rafael Espindolac606bfe2014-10-21 01:17:30 +0000226 if (MO.isJTI()) {
Joerg Sonnenberger22982032016-06-18 23:25:37 +0000227 assert(MAI.doesSetDirectiveSuppressReloc());
Evan Chengd0d8e332010-04-12 23:07:17 +0000228 // If .set directive is supported, use it to reduce the number of
229 // relocations the assembler will generate for differences between
230 // local labels. This is only safe when the symbols are in the same
231 // section so we are restricting it to jumptable references.
Jim Grosbach6f482002015-05-18 18:43:14 +0000232 MCSymbol *Label = Ctx.createTempSymbol();
Lang Hames9ff69c82015-04-24 19:11:51 +0000233 AsmPrinter.OutStreamer->EmitAssignment(Label, Expr);
Jim Grosbach13760bd2015-05-30 01:25:56 +0000234 Expr = MCSymbolRefExpr::create(Label, Ctx);
Evan Chengd0d8e332010-04-12 23:07:17 +0000235 }
Chris Lattner954b9cd2009-09-03 05:06:07 +0000236 break;
Chris Lattnerc7b00732009-09-03 07:30:56 +0000237 }
Chad Rosier24c19d22012-08-01 18:39:17 +0000238
Craig Topper062a2ba2014-04-25 05:30:21 +0000239 if (!Expr)
Jim Grosbach13760bd2015-05-30 01:25:56 +0000240 Expr = MCSymbolRefExpr::create(Sym, RefKind, Ctx);
Chad Rosier24c19d22012-08-01 18:39:17 +0000241
Michael Liao6f720612012-10-17 02:22:27 +0000242 if (!MO.isJTI() && !MO.isMBB() && MO.getOffset())
Jim Grosbach13760bd2015-05-30 01:25:56 +0000243 Expr = MCBinaryExpr::createAdd(Expr,
244 MCConstantExpr::create(MO.getOffset(), Ctx),
Chris Lattner31722082009-09-12 20:34:57 +0000245 Ctx);
Jim Grosbache9119e42015-05-13 18:37:00 +0000246 return MCOperand::createExpr(Expr);
Chris Lattner5daf6192009-09-03 04:44:53 +0000247}
248
Chris Lattner482c5df2009-09-11 04:28:13 +0000249
Daniel Dunbara4820fc2010-05-18 17:22:24 +0000250/// \brief Simplify FOO $imm, %{al,ax,eax,rax} to FOO $imm, for instruction with
251/// a short fixed-register form.
252static void SimplifyShortImmForm(MCInst &Inst, unsigned Opcode) {
253 unsigned ImmOp = Inst.getNumOperands() - 1;
Anton Korobeynikovc6b40172012-02-11 17:26:53 +0000254 assert(Inst.getOperand(0).isReg() &&
255 (Inst.getOperand(ImmOp).isImm() || Inst.getOperand(ImmOp).isExpr()) &&
Daniel Dunbara4820fc2010-05-18 17:22:24 +0000256 ((Inst.getNumOperands() == 3 && Inst.getOperand(1).isReg() &&
257 Inst.getOperand(0).getReg() == Inst.getOperand(1).getReg()) ||
258 Inst.getNumOperands() == 2) && "Unexpected instruction!");
259
260 // Check whether the destination register can be fixed.
261 unsigned Reg = Inst.getOperand(0).getReg();
262 if (Reg != X86::AL && Reg != X86::AX && Reg != X86::EAX && Reg != X86::RAX)
263 return;
264
265 // If so, rewrite the instruction.
Daniel Dunbar4f6c7c62010-05-19 06:20:44 +0000266 MCOperand Saved = Inst.getOperand(ImmOp);
267 Inst = MCInst();
268 Inst.setOpcode(Opcode);
269 Inst.addOperand(Saved);
270}
271
Benjamin Kramer068a2252013-07-12 18:06:44 +0000272/// \brief If a movsx instruction has a shorter encoding for the used register
273/// simplify the instruction to use it instead.
274static void SimplifyMOVSX(MCInst &Inst) {
275 unsigned NewOpcode = 0;
276 unsigned Op0 = Inst.getOperand(0).getReg(), Op1 = Inst.getOperand(1).getReg();
277 switch (Inst.getOpcode()) {
278 default:
279 llvm_unreachable("Unexpected instruction!");
280 case X86::MOVSX16rr8: // movsbw %al, %ax --> cbtw
281 if (Op0 == X86::AX && Op1 == X86::AL)
282 NewOpcode = X86::CBW;
283 break;
284 case X86::MOVSX32rr16: // movswl %ax, %eax --> cwtl
285 if (Op0 == X86::EAX && Op1 == X86::AX)
286 NewOpcode = X86::CWDE;
287 break;
288 case X86::MOVSX64rr32: // movslq %eax, %rax --> cltq
289 if (Op0 == X86::RAX && Op1 == X86::EAX)
290 NewOpcode = X86::CDQE;
291 break;
292 }
293
294 if (NewOpcode != 0) {
295 Inst = MCInst();
296 Inst.setOpcode(NewOpcode);
297 }
298}
299
Daniel Dunbar4f6c7c62010-05-19 06:20:44 +0000300/// \brief Simplify things like MOV32rm to MOV32o32a.
Eli Friedman51ec7452010-08-16 21:03:32 +0000301static void SimplifyShortMoveForm(X86AsmPrinter &Printer, MCInst &Inst,
302 unsigned Opcode) {
303 // Don't make these simplifications in 64-bit mode; other assemblers don't
304 // perform them because they make the code larger.
305 if (Printer.getSubtarget().is64Bit())
306 return;
307
Daniel Dunbar4f6c7c62010-05-19 06:20:44 +0000308 bool IsStore = Inst.getOperand(0).isReg() && Inst.getOperand(1).isReg();
309 unsigned AddrBase = IsStore;
310 unsigned RegOp = IsStore ? 0 : 5;
311 unsigned AddrOp = AddrBase + 3;
312 assert(Inst.getNumOperands() == 6 && Inst.getOperand(RegOp).isReg() &&
Manuel Jacobdcb78db2014-03-18 16:14:11 +0000313 Inst.getOperand(AddrBase + X86::AddrBaseReg).isReg() &&
314 Inst.getOperand(AddrBase + X86::AddrScaleAmt).isImm() &&
315 Inst.getOperand(AddrBase + X86::AddrIndexReg).isReg() &&
316 Inst.getOperand(AddrBase + X86::AddrSegmentReg).isReg() &&
317 (Inst.getOperand(AddrOp).isExpr() ||
318 Inst.getOperand(AddrOp).isImm()) &&
Daniel Dunbar4f6c7c62010-05-19 06:20:44 +0000319 "Unexpected instruction!");
320
321 // Check whether the destination register can be fixed.
322 unsigned Reg = Inst.getOperand(RegOp).getReg();
323 if (Reg != X86::AL && Reg != X86::AX && Reg != X86::EAX && Reg != X86::RAX)
324 return;
325
326 // Check whether this is an absolute address.
Chad Rosier24c19d22012-08-01 18:39:17 +0000327 // FIXME: We know TLVP symbol refs aren't, but there should be a better way
Eric Christopher29b58af2010-06-17 00:51:48 +0000328 // to do this here.
329 bool Absolute = true;
330 if (Inst.getOperand(AddrOp).isExpr()) {
331 const MCExpr *MCE = Inst.getOperand(AddrOp).getExpr();
332 if (const MCSymbolRefExpr *SRE = dyn_cast<MCSymbolRefExpr>(MCE))
333 if (SRE->getKind() == MCSymbolRefExpr::VK_TLVP)
334 Absolute = false;
335 }
Chad Rosier24c19d22012-08-01 18:39:17 +0000336
Eric Christopher29b58af2010-06-17 00:51:48 +0000337 if (Absolute &&
Manuel Jacobdcb78db2014-03-18 16:14:11 +0000338 (Inst.getOperand(AddrBase + X86::AddrBaseReg).getReg() != 0 ||
339 Inst.getOperand(AddrBase + X86::AddrScaleAmt).getImm() != 1 ||
340 Inst.getOperand(AddrBase + X86::AddrIndexReg).getReg() != 0))
Daniel Dunbar4f6c7c62010-05-19 06:20:44 +0000341 return;
342
343 // If so, rewrite the instruction.
344 MCOperand Saved = Inst.getOperand(AddrOp);
Manuel Jacobdcb78db2014-03-18 16:14:11 +0000345 MCOperand Seg = Inst.getOperand(AddrBase + X86::AddrSegmentReg);
Daniel Dunbar4f6c7c62010-05-19 06:20:44 +0000346 Inst = MCInst();
347 Inst.setOpcode(Opcode);
348 Inst.addOperand(Saved);
Craig Toppera9d2c672014-01-16 07:57:45 +0000349 Inst.addOperand(Seg);
Daniel Dunbara4820fc2010-05-18 17:22:24 +0000350}
Chris Lattner31722082009-09-12 20:34:57 +0000351
Michael Liao5bf95782014-12-04 05:20:33 +0000352static unsigned getRetOpcode(const X86Subtarget &Subtarget) {
353 return Subtarget.is64Bit() ? X86::RETQ : X86::RETL;
David Woodhouse79dd5052014-01-08 12:58:07 +0000354}
355
Sanjoy Das2d869b22015-06-15 18:44:01 +0000356Optional<MCOperand>
357X86MCInstLower::LowerMachineOperand(const MachineInstr *MI,
358 const MachineOperand &MO) const {
359 switch (MO.getType()) {
360 default:
361 MI->dump();
362 llvm_unreachable("unknown operand type");
363 case MachineOperand::MO_Register:
364 // Ignore all implicit register operands.
365 if (MO.isImplicit())
366 return None;
367 return MCOperand::createReg(MO.getReg());
368 case MachineOperand::MO_Immediate:
369 return MCOperand::createImm(MO.getImm());
370 case MachineOperand::MO_MachineBasicBlock:
371 case MachineOperand::MO_GlobalAddress:
372 case MachineOperand::MO_ExternalSymbol:
373 return LowerSymbolOperand(MO, GetSymbolFromOperand(MO));
Rafael Espindola36b718f2015-06-22 17:46:53 +0000374 case MachineOperand::MO_MCSymbol:
375 return LowerSymbolOperand(MO, MO.getMCSymbol());
Sanjoy Das2d869b22015-06-15 18:44:01 +0000376 case MachineOperand::MO_JumpTableIndex:
377 return LowerSymbolOperand(MO, AsmPrinter.GetJTISymbol(MO.getIndex()));
378 case MachineOperand::MO_ConstantPoolIndex:
379 return LowerSymbolOperand(MO, AsmPrinter.GetCPISymbol(MO.getIndex()));
380 case MachineOperand::MO_BlockAddress:
381 return LowerSymbolOperand(
382 MO, AsmPrinter.GetBlockAddressSymbol(MO.getBlockAddress()));
383 case MachineOperand::MO_RegisterMask:
384 // Ignore call clobbers.
385 return None;
386 }
387}
388
Chris Lattner31722082009-09-12 20:34:57 +0000389void X86MCInstLower::Lower(const MachineInstr *MI, MCInst &OutMI) const {
390 OutMI.setOpcode(MI->getOpcode());
Chad Rosier24c19d22012-08-01 18:39:17 +0000391
Sanjoy Das2d869b22015-06-15 18:44:01 +0000392 for (const MachineOperand &MO : MI->operands())
393 if (auto MaybeMCOp = LowerMachineOperand(MI, MO))
394 OutMI.addOperand(MaybeMCOp.getValue());
Chad Rosier24c19d22012-08-01 18:39:17 +0000395
Chris Lattner31722082009-09-12 20:34:57 +0000396 // Handle a few special cases to eliminate operand modifiers.
Chris Lattner626656a2010-10-08 03:54:52 +0000397ReSimplify:
Chris Lattner31722082009-09-12 20:34:57 +0000398 switch (OutMI.getOpcode()) {
Tim Northover6833e3f2013-06-10 20:43:49 +0000399 case X86::LEA64_32r:
Chris Lattnerf4693072010-07-08 23:46:44 +0000400 case X86::LEA64r:
401 case X86::LEA16r:
402 case X86::LEA32r:
403 // LEA should have a segment register, but it must be empty.
404 assert(OutMI.getNumOperands() == 1+X86::AddrNumOperands &&
405 "Unexpected # of LEA operands");
406 assert(OutMI.getOperand(1+X86::AddrSegmentReg).getReg() == 0 &&
407 "LEA has segment specified!");
Chris Lattner31722082009-09-12 20:34:57 +0000408 break;
Chris Lattnere96d5342010-02-05 21:30:49 +0000409
Craig Toppera66d81d2013-03-14 07:09:57 +0000410 // Commute operands to get a smaller encoding by using VEX.R instead of VEX.B
411 // if one of the registers is extended, but other isn't.
Craig Topperd6b661d2015-10-12 04:57:59 +0000412 case X86::VMOVZPQILo2PQIrr:
Craig Toppera66d81d2013-03-14 07:09:57 +0000413 case X86::VMOVAPDrr:
414 case X86::VMOVAPDYrr:
415 case X86::VMOVAPSrr:
416 case X86::VMOVAPSYrr:
417 case X86::VMOVDQArr:
418 case X86::VMOVDQAYrr:
419 case X86::VMOVDQUrr:
420 case X86::VMOVDQUYrr:
Craig Toppera66d81d2013-03-14 07:09:57 +0000421 case X86::VMOVUPDrr:
422 case X86::VMOVUPDYrr:
423 case X86::VMOVUPSrr:
424 case X86::VMOVUPSYrr: {
Craig Topper612f7bf2013-03-16 03:44:31 +0000425 if (!X86II::isX86_64ExtendedReg(OutMI.getOperand(0).getReg()) &&
426 X86II::isX86_64ExtendedReg(OutMI.getOperand(1).getReg())) {
427 unsigned NewOpc;
428 switch (OutMI.getOpcode()) {
429 default: llvm_unreachable("Invalid opcode");
Craig Topperd6b661d2015-10-12 04:57:59 +0000430 case X86::VMOVZPQILo2PQIrr: NewOpc = X86::VMOVPQI2QIrr; break;
431 case X86::VMOVAPDrr: NewOpc = X86::VMOVAPDrr_REV; break;
432 case X86::VMOVAPDYrr: NewOpc = X86::VMOVAPDYrr_REV; break;
433 case X86::VMOVAPSrr: NewOpc = X86::VMOVAPSrr_REV; break;
434 case X86::VMOVAPSYrr: NewOpc = X86::VMOVAPSYrr_REV; break;
435 case X86::VMOVDQArr: NewOpc = X86::VMOVDQArr_REV; break;
436 case X86::VMOVDQAYrr: NewOpc = X86::VMOVDQAYrr_REV; break;
437 case X86::VMOVDQUrr: NewOpc = X86::VMOVDQUrr_REV; break;
438 case X86::VMOVDQUYrr: NewOpc = X86::VMOVDQUYrr_REV; break;
439 case X86::VMOVUPDrr: NewOpc = X86::VMOVUPDrr_REV; break;
440 case X86::VMOVUPDYrr: NewOpc = X86::VMOVUPDYrr_REV; break;
441 case X86::VMOVUPSrr: NewOpc = X86::VMOVUPSrr_REV; break;
442 case X86::VMOVUPSYrr: NewOpc = X86::VMOVUPSYrr_REV; break;
Craig Topper612f7bf2013-03-16 03:44:31 +0000443 }
444 OutMI.setOpcode(NewOpc);
Craig Toppera66d81d2013-03-14 07:09:57 +0000445 }
Craig Topper612f7bf2013-03-16 03:44:31 +0000446 break;
447 }
448 case X86::VMOVSDrr:
449 case X86::VMOVSSrr: {
450 if (!X86II::isX86_64ExtendedReg(OutMI.getOperand(0).getReg()) &&
451 X86II::isX86_64ExtendedReg(OutMI.getOperand(2).getReg())) {
452 unsigned NewOpc;
453 switch (OutMI.getOpcode()) {
454 default: llvm_unreachable("Invalid opcode");
455 case X86::VMOVSDrr: NewOpc = X86::VMOVSDrr_REV; break;
456 case X86::VMOVSSrr: NewOpc = X86::VMOVSSrr_REV; break;
457 }
458 OutMI.setOpcode(NewOpc);
459 }
Craig Toppera66d81d2013-03-14 07:09:57 +0000460 break;
461 }
462
Jakob Stoklund Olesen97e31152012-02-16 17:56:02 +0000463 // TAILJMPr64, CALL64r, CALL64pcrel32 - These instructions have register
464 // inputs modeled as normal uses instead of implicit uses. As such, truncate
465 // off all but the first operand (the callee). FIXME: Change isel.
Daniel Dunbarb243dfb2010-05-19 08:07:12 +0000466 case X86::TAILJMPr64:
Reid Klecknera580b6e2015-01-30 21:03:31 +0000467 case X86::TAILJMPr64_REX:
Daniel Dunbar45ace402010-05-19 04:31:36 +0000468 case X86::CALL64r:
Jakob Stoklund Olesen97e31152012-02-16 17:56:02 +0000469 case X86::CALL64pcrel32: {
Daniel Dunbar45ace402010-05-19 04:31:36 +0000470 unsigned Opcode = OutMI.getOpcode();
Chris Lattner9f465392010-05-18 21:40:18 +0000471 MCOperand Saved = OutMI.getOperand(0);
472 OutMI = MCInst();
Daniel Dunbar45ace402010-05-19 04:31:36 +0000473 OutMI.setOpcode(Opcode);
Chris Lattner9f465392010-05-18 21:40:18 +0000474 OutMI.addOperand(Saved);
475 break;
476 }
Daniel Dunbar45ace402010-05-19 04:31:36 +0000477
Rafael Espindolad94f3b42010-10-26 18:09:55 +0000478 case X86::EH_RETURN:
479 case X86::EH_RETURN64: {
480 OutMI = MCInst();
David Woodhouse79dd5052014-01-08 12:58:07 +0000481 OutMI.setOpcode(getRetOpcode(AsmPrinter.getSubtarget()));
Rafael Espindolad94f3b42010-10-26 18:09:55 +0000482 break;
483 }
484
David Majnemerf828a0c2015-10-01 18:44:59 +0000485 case X86::CLEANUPRET: {
486 // Replace CATCHRET with the appropriate RET.
487 OutMI = MCInst();
488 OutMI.setOpcode(getRetOpcode(AsmPrinter.getSubtarget()));
489 break;
490 }
491
492 case X86::CATCHRET: {
493 // Replace CATCHRET with the appropriate RET.
494 const X86Subtarget &Subtarget = AsmPrinter.getSubtarget();
495 unsigned ReturnReg = Subtarget.is64Bit() ? X86::RAX : X86::EAX;
496 OutMI = MCInst();
497 OutMI.setOpcode(getRetOpcode(Subtarget));
498 OutMI.addOperand(MCOperand::createReg(ReturnReg));
499 break;
500 }
501
Daniel Dunbard2f78e72010-05-19 15:26:43 +0000502 // TAILJMPd, TAILJMPd64 - Lower to the correct jump instructions.
Chris Lattner88c18562010-07-09 00:49:41 +0000503 case X86::TAILJMPr:
Daniel Dunbard2f78e72010-05-19 15:26:43 +0000504 case X86::TAILJMPd:
505 case X86::TAILJMPd64: {
Chris Lattner88c18562010-07-09 00:49:41 +0000506 unsigned Opcode;
507 switch (OutMI.getOpcode()) {
Craig Topper4ed72782012-02-05 05:38:58 +0000508 default: llvm_unreachable("Invalid opcode");
Chris Lattner88c18562010-07-09 00:49:41 +0000509 case X86::TAILJMPr: Opcode = X86::JMP32r; break;
510 case X86::TAILJMPd:
511 case X86::TAILJMPd64: Opcode = X86::JMP_1; break;
512 }
Chad Rosier24c19d22012-08-01 18:39:17 +0000513
Daniel Dunbard2f78e72010-05-19 15:26:43 +0000514 MCOperand Saved = OutMI.getOperand(0);
515 OutMI = MCInst();
Chris Lattner88c18562010-07-09 00:49:41 +0000516 OutMI.setOpcode(Opcode);
Daniel Dunbard2f78e72010-05-19 15:26:43 +0000517 OutMI.addOperand(Saved);
518 break;
519 }
520
Craig Topperddbf51f2015-01-06 07:35:50 +0000521 case X86::DEC16r:
522 case X86::DEC32r:
523 case X86::INC16r:
524 case X86::INC32r:
525 // If we aren't in 64-bit mode we can use the 1-byte inc/dec instructions.
526 if (!AsmPrinter.getSubtarget().is64Bit()) {
527 unsigned Opcode;
528 switch (OutMI.getOpcode()) {
529 default: llvm_unreachable("Invalid opcode");
530 case X86::DEC16r: Opcode = X86::DEC16r_alt; break;
531 case X86::DEC32r: Opcode = X86::DEC32r_alt; break;
532 case X86::INC16r: Opcode = X86::INC16r_alt; break;
533 case X86::INC32r: Opcode = X86::INC32r_alt; break;
534 }
535 OutMI.setOpcode(Opcode);
536 }
537 break;
538
Chris Lattner626656a2010-10-08 03:54:52 +0000539 // These are pseudo-ops for OR to help with the OR->ADD transformation. We do
540 // this with an ugly goto in case the resultant OR uses EAX and needs the
541 // short form.
Chris Lattnerdd774772010-10-08 03:57:25 +0000542 case X86::ADD16rr_DB: OutMI.setOpcode(X86::OR16rr); goto ReSimplify;
543 case X86::ADD32rr_DB: OutMI.setOpcode(X86::OR32rr); goto ReSimplify;
544 case X86::ADD64rr_DB: OutMI.setOpcode(X86::OR64rr); goto ReSimplify;
545 case X86::ADD16ri_DB: OutMI.setOpcode(X86::OR16ri); goto ReSimplify;
546 case X86::ADD32ri_DB: OutMI.setOpcode(X86::OR32ri); goto ReSimplify;
547 case X86::ADD64ri32_DB: OutMI.setOpcode(X86::OR64ri32); goto ReSimplify;
548 case X86::ADD16ri8_DB: OutMI.setOpcode(X86::OR16ri8); goto ReSimplify;
549 case X86::ADD32ri8_DB: OutMI.setOpcode(X86::OR32ri8); goto ReSimplify;
550 case X86::ADD64ri8_DB: OutMI.setOpcode(X86::OR64ri8); goto ReSimplify;
Chad Rosier24c19d22012-08-01 18:39:17 +0000551
Eli Friedman02f2f892011-09-07 18:48:32 +0000552 // Atomic load and store require a separate pseudo-inst because Acquire
553 // implies mayStore and Release implies mayLoad; fix these to regular MOV
554 // instructions here
Robin Morissetdf205862014-09-02 22:16:29 +0000555 case X86::ACQUIRE_MOV8rm: OutMI.setOpcode(X86::MOV8rm); goto ReSimplify;
556 case X86::ACQUIRE_MOV16rm: OutMI.setOpcode(X86::MOV16rm); goto ReSimplify;
557 case X86::ACQUIRE_MOV32rm: OutMI.setOpcode(X86::MOV32rm); goto ReSimplify;
558 case X86::ACQUIRE_MOV64rm: OutMI.setOpcode(X86::MOV64rm); goto ReSimplify;
559 case X86::RELEASE_MOV8mr: OutMI.setOpcode(X86::MOV8mr); goto ReSimplify;
560 case X86::RELEASE_MOV16mr: OutMI.setOpcode(X86::MOV16mr); goto ReSimplify;
561 case X86::RELEASE_MOV32mr: OutMI.setOpcode(X86::MOV32mr); goto ReSimplify;
562 case X86::RELEASE_MOV64mr: OutMI.setOpcode(X86::MOV64mr); goto ReSimplify;
563 case X86::RELEASE_MOV8mi: OutMI.setOpcode(X86::MOV8mi); goto ReSimplify;
564 case X86::RELEASE_MOV16mi: OutMI.setOpcode(X86::MOV16mi); goto ReSimplify;
565 case X86::RELEASE_MOV32mi: OutMI.setOpcode(X86::MOV32mi); goto ReSimplify;
566 case X86::RELEASE_MOV64mi32: OutMI.setOpcode(X86::MOV64mi32); goto ReSimplify;
567 case X86::RELEASE_ADD8mi: OutMI.setOpcode(X86::ADD8mi); goto ReSimplify;
JF Bastien86620832015-08-05 21:04:59 +0000568 case X86::RELEASE_ADD8mr: OutMI.setOpcode(X86::ADD8mr); goto ReSimplify;
Robin Morissetdf205862014-09-02 22:16:29 +0000569 case X86::RELEASE_ADD32mi: OutMI.setOpcode(X86::ADD32mi); goto ReSimplify;
JF Bastien86620832015-08-05 21:04:59 +0000570 case X86::RELEASE_ADD32mr: OutMI.setOpcode(X86::ADD32mr); goto ReSimplify;
Robin Morissetdf205862014-09-02 22:16:29 +0000571 case X86::RELEASE_ADD64mi32: OutMI.setOpcode(X86::ADD64mi32); goto ReSimplify;
JF Bastien86620832015-08-05 21:04:59 +0000572 case X86::RELEASE_ADD64mr: OutMI.setOpcode(X86::ADD64mr); goto ReSimplify;
Robin Morissetdf205862014-09-02 22:16:29 +0000573 case X86::RELEASE_AND8mi: OutMI.setOpcode(X86::AND8mi); goto ReSimplify;
JF Bastien86620832015-08-05 21:04:59 +0000574 case X86::RELEASE_AND8mr: OutMI.setOpcode(X86::AND8mr); goto ReSimplify;
Robin Morissetdf205862014-09-02 22:16:29 +0000575 case X86::RELEASE_AND32mi: OutMI.setOpcode(X86::AND32mi); goto ReSimplify;
JF Bastien86620832015-08-05 21:04:59 +0000576 case X86::RELEASE_AND32mr: OutMI.setOpcode(X86::AND32mr); goto ReSimplify;
Robin Morissetdf205862014-09-02 22:16:29 +0000577 case X86::RELEASE_AND64mi32: OutMI.setOpcode(X86::AND64mi32); goto ReSimplify;
JF Bastien86620832015-08-05 21:04:59 +0000578 case X86::RELEASE_AND64mr: OutMI.setOpcode(X86::AND64mr); goto ReSimplify;
Robin Morissetdf205862014-09-02 22:16:29 +0000579 case X86::RELEASE_OR8mi: OutMI.setOpcode(X86::OR8mi); goto ReSimplify;
JF Bastien86620832015-08-05 21:04:59 +0000580 case X86::RELEASE_OR8mr: OutMI.setOpcode(X86::OR8mr); goto ReSimplify;
Robin Morissetdf205862014-09-02 22:16:29 +0000581 case X86::RELEASE_OR32mi: OutMI.setOpcode(X86::OR32mi); goto ReSimplify;
JF Bastien86620832015-08-05 21:04:59 +0000582 case X86::RELEASE_OR32mr: OutMI.setOpcode(X86::OR32mr); goto ReSimplify;
Robin Morissetdf205862014-09-02 22:16:29 +0000583 case X86::RELEASE_OR64mi32: OutMI.setOpcode(X86::OR64mi32); goto ReSimplify;
JF Bastien86620832015-08-05 21:04:59 +0000584 case X86::RELEASE_OR64mr: OutMI.setOpcode(X86::OR64mr); goto ReSimplify;
Robin Morissetdf205862014-09-02 22:16:29 +0000585 case X86::RELEASE_XOR8mi: OutMI.setOpcode(X86::XOR8mi); goto ReSimplify;
JF Bastien86620832015-08-05 21:04:59 +0000586 case X86::RELEASE_XOR8mr: OutMI.setOpcode(X86::XOR8mr); goto ReSimplify;
Robin Morissetdf205862014-09-02 22:16:29 +0000587 case X86::RELEASE_XOR32mi: OutMI.setOpcode(X86::XOR32mi); goto ReSimplify;
JF Bastien86620832015-08-05 21:04:59 +0000588 case X86::RELEASE_XOR32mr: OutMI.setOpcode(X86::XOR32mr); goto ReSimplify;
Robin Morissetdf205862014-09-02 22:16:29 +0000589 case X86::RELEASE_XOR64mi32: OutMI.setOpcode(X86::XOR64mi32); goto ReSimplify;
JF Bastien86620832015-08-05 21:04:59 +0000590 case X86::RELEASE_XOR64mr: OutMI.setOpcode(X86::XOR64mr); goto ReSimplify;
Robin Morissetdf205862014-09-02 22:16:29 +0000591 case X86::RELEASE_INC8m: OutMI.setOpcode(X86::INC8m); goto ReSimplify;
592 case X86::RELEASE_INC16m: OutMI.setOpcode(X86::INC16m); goto ReSimplify;
593 case X86::RELEASE_INC32m: OutMI.setOpcode(X86::INC32m); goto ReSimplify;
594 case X86::RELEASE_INC64m: OutMI.setOpcode(X86::INC64m); goto ReSimplify;
595 case X86::RELEASE_DEC8m: OutMI.setOpcode(X86::DEC8m); goto ReSimplify;
596 case X86::RELEASE_DEC16m: OutMI.setOpcode(X86::DEC16m); goto ReSimplify;
597 case X86::RELEASE_DEC32m: OutMI.setOpcode(X86::DEC32m); goto ReSimplify;
598 case X86::RELEASE_DEC64m: OutMI.setOpcode(X86::DEC64m); goto ReSimplify;
Eli Friedman02f2f892011-09-07 18:48:32 +0000599
Daniel Dunbara4820fc2010-05-18 17:22:24 +0000600 // We don't currently select the correct instruction form for instructions
601 // which have a short %eax, etc. form. Handle this by custom lowering, for
602 // now.
603 //
604 // Note, we are currently not handling the following instructions:
Daniel Dunbar4f6c7c62010-05-19 06:20:44 +0000605 // MOV64ao8, MOV64o8a
Daniel Dunbara4820fc2010-05-18 17:22:24 +0000606 // XCHG16ar, XCHG32ar, XCHG64ar
Daniel Dunbar4f6c7c62010-05-19 06:20:44 +0000607 case X86::MOV8mr_NOREX:
Craig Topper184310d2016-04-29 00:51:30 +0000608 case X86::MOV8mr:
Daniel Dunbar4f6c7c62010-05-19 06:20:44 +0000609 case X86::MOV8rm_NOREX:
Craig Topper184310d2016-04-29 00:51:30 +0000610 case X86::MOV8rm:
611 case X86::MOV16mr:
612 case X86::MOV16rm:
613 case X86::MOV32mr:
614 case X86::MOV32rm: {
615 unsigned NewOpc;
616 switch (OutMI.getOpcode()) {
617 default: llvm_unreachable("Invalid opcode");
618 case X86::MOV8mr_NOREX:
619 case X86::MOV8mr: NewOpc = X86::MOV8o32a; break;
620 case X86::MOV8rm_NOREX:
621 case X86::MOV8rm: NewOpc = X86::MOV8ao32; break;
622 case X86::MOV16mr: NewOpc = X86::MOV16o32a; break;
623 case X86::MOV16rm: NewOpc = X86::MOV16ao32; break;
624 case X86::MOV32mr: NewOpc = X86::MOV32o32a; break;
625 case X86::MOV32rm: NewOpc = X86::MOV32ao32; break;
626 }
627 SimplifyShortMoveForm(AsmPrinter, OutMI, NewOpc);
628 break;
629 }
Daniel Dunbar4f6c7c62010-05-19 06:20:44 +0000630
Craig Topper184310d2016-04-29 00:51:30 +0000631 case X86::ADC8ri: case X86::ADC16ri: case X86::ADC32ri: case X86::ADC64ri32:
632 case X86::ADD8ri: case X86::ADD16ri: case X86::ADD32ri: case X86::ADD64ri32:
633 case X86::AND8ri: case X86::AND16ri: case X86::AND32ri: case X86::AND64ri32:
634 case X86::CMP8ri: case X86::CMP16ri: case X86::CMP32ri: case X86::CMP64ri32:
635 case X86::OR8ri: case X86::OR16ri: case X86::OR32ri: case X86::OR64ri32:
636 case X86::SBB8ri: case X86::SBB16ri: case X86::SBB32ri: case X86::SBB64ri32:
637 case X86::SUB8ri: case X86::SUB16ri: case X86::SUB32ri: case X86::SUB64ri32:
638 case X86::TEST8ri:case X86::TEST16ri:case X86::TEST32ri:case X86::TEST64ri32:
639 case X86::XOR8ri: case X86::XOR16ri: case X86::XOR32ri: case X86::XOR64ri32: {
640 unsigned NewOpc;
641 switch (OutMI.getOpcode()) {
642 default: llvm_unreachable("Invalid opcode");
643 case X86::ADC8ri: NewOpc = X86::ADC8i8; break;
644 case X86::ADC16ri: NewOpc = X86::ADC16i16; break;
645 case X86::ADC32ri: NewOpc = X86::ADC32i32; break;
646 case X86::ADC64ri32: NewOpc = X86::ADC64i32; break;
647 case X86::ADD8ri: NewOpc = X86::ADD8i8; break;
648 case X86::ADD16ri: NewOpc = X86::ADD16i16; break;
649 case X86::ADD32ri: NewOpc = X86::ADD32i32; break;
650 case X86::ADD64ri32: NewOpc = X86::ADD64i32; break;
651 case X86::AND8ri: NewOpc = X86::AND8i8; break;
652 case X86::AND16ri: NewOpc = X86::AND16i16; break;
653 case X86::AND32ri: NewOpc = X86::AND32i32; break;
654 case X86::AND64ri32: NewOpc = X86::AND64i32; break;
655 case X86::CMP8ri: NewOpc = X86::CMP8i8; break;
656 case X86::CMP16ri: NewOpc = X86::CMP16i16; break;
657 case X86::CMP32ri: NewOpc = X86::CMP32i32; break;
658 case X86::CMP64ri32: NewOpc = X86::CMP64i32; break;
659 case X86::OR8ri: NewOpc = X86::OR8i8; break;
660 case X86::OR16ri: NewOpc = X86::OR16i16; break;
661 case X86::OR32ri: NewOpc = X86::OR32i32; break;
662 case X86::OR64ri32: NewOpc = X86::OR64i32; break;
663 case X86::SBB8ri: NewOpc = X86::SBB8i8; break;
664 case X86::SBB16ri: NewOpc = X86::SBB16i16; break;
665 case X86::SBB32ri: NewOpc = X86::SBB32i32; break;
666 case X86::SBB64ri32: NewOpc = X86::SBB64i32; break;
667 case X86::SUB8ri: NewOpc = X86::SUB8i8; break;
668 case X86::SUB16ri: NewOpc = X86::SUB16i16; break;
669 case X86::SUB32ri: NewOpc = X86::SUB32i32; break;
670 case X86::SUB64ri32: NewOpc = X86::SUB64i32; break;
671 case X86::TEST8ri: NewOpc = X86::TEST8i8; break;
672 case X86::TEST16ri: NewOpc = X86::TEST16i16; break;
673 case X86::TEST32ri: NewOpc = X86::TEST32i32; break;
674 case X86::TEST64ri32: NewOpc = X86::TEST64i32; break;
675 case X86::XOR8ri: NewOpc = X86::XOR8i8; break;
676 case X86::XOR16ri: NewOpc = X86::XOR16i16; break;
677 case X86::XOR32ri: NewOpc = X86::XOR32i32; break;
678 case X86::XOR64ri32: NewOpc = X86::XOR64i32; break;
679 }
680 SimplifyShortImmForm(OutMI, NewOpc);
681 break;
682 }
Rafael Espindola66393c12011-10-26 21:12:27 +0000683
Benjamin Kramer068a2252013-07-12 18:06:44 +0000684 // Try to shrink some forms of movsx.
685 case X86::MOVSX16rr8:
686 case X86::MOVSX32rr16:
687 case X86::MOVSX64rr32:
688 SimplifyMOVSX(OutMI);
689 break;
Rafael Espindola66393c12011-10-26 21:12:27 +0000690 }
Chris Lattner31722082009-09-12 20:34:57 +0000691}
692
Lang Hamesf49bc3f2014-07-24 20:40:55 +0000693void X86AsmPrinter::LowerTlsAddr(X86MCInstLower &MCInstLowering,
694 const MachineInstr &MI) {
Hans Wennborg789acfb2012-06-01 16:27:21 +0000695
696 bool is64Bits = MI.getOpcode() == X86::TLS_addr64 ||
697 MI.getOpcode() == X86::TLS_base_addr64;
698
699 bool needsPadding = MI.getOpcode() == X86::TLS_addr64;
700
Lang Hames9ff69c82015-04-24 19:11:51 +0000701 MCContext &context = OutStreamer->getContext();
Rafael Espindolac4774792010-11-28 21:16:39 +0000702
Benjamin Kramer4e629f72012-11-26 13:34:22 +0000703 if (needsPadding)
Lang Hamesf49bc3f2014-07-24 20:40:55 +0000704 EmitAndCountInstruction(MCInstBuilder(X86::DATA16_PREFIX));
Hans Wennborg789acfb2012-06-01 16:27:21 +0000705
706 MCSymbolRefExpr::VariantKind SRVK;
707 switch (MI.getOpcode()) {
708 case X86::TLS_addr32:
709 case X86::TLS_addr64:
710 SRVK = MCSymbolRefExpr::VK_TLSGD;
711 break;
712 case X86::TLS_base_addr32:
713 SRVK = MCSymbolRefExpr::VK_TLSLDM;
714 break;
715 case X86::TLS_base_addr64:
716 SRVK = MCSymbolRefExpr::VK_TLSLD;
717 break;
718 default:
719 llvm_unreachable("unexpected opcode");
720 }
721
Rafael Espindolac4774792010-11-28 21:16:39 +0000722 MCSymbol *sym = MCInstLowering.GetSymbolFromOperand(MI.getOperand(3));
Jim Grosbach13760bd2015-05-30 01:25:56 +0000723 const MCSymbolRefExpr *symRef = MCSymbolRefExpr::create(sym, SRVK, context);
Rafael Espindolac4774792010-11-28 21:16:39 +0000724
725 MCInst LEA;
726 if (is64Bits) {
727 LEA.setOpcode(X86::LEA64r);
Jim Grosbache9119e42015-05-13 18:37:00 +0000728 LEA.addOperand(MCOperand::createReg(X86::RDI)); // dest
729 LEA.addOperand(MCOperand::createReg(X86::RIP)); // base
730 LEA.addOperand(MCOperand::createImm(1)); // scale
731 LEA.addOperand(MCOperand::createReg(0)); // index
732 LEA.addOperand(MCOperand::createExpr(symRef)); // disp
733 LEA.addOperand(MCOperand::createReg(0)); // seg
Rafael Espindola55d11452012-06-07 18:39:19 +0000734 } else if (SRVK == MCSymbolRefExpr::VK_TLSLDM) {
735 LEA.setOpcode(X86::LEA32r);
Jim Grosbache9119e42015-05-13 18:37:00 +0000736 LEA.addOperand(MCOperand::createReg(X86::EAX)); // dest
737 LEA.addOperand(MCOperand::createReg(X86::EBX)); // base
738 LEA.addOperand(MCOperand::createImm(1)); // scale
739 LEA.addOperand(MCOperand::createReg(0)); // index
740 LEA.addOperand(MCOperand::createExpr(symRef)); // disp
741 LEA.addOperand(MCOperand::createReg(0)); // seg
Rafael Espindolac4774792010-11-28 21:16:39 +0000742 } else {
743 LEA.setOpcode(X86::LEA32r);
Jim Grosbache9119e42015-05-13 18:37:00 +0000744 LEA.addOperand(MCOperand::createReg(X86::EAX)); // dest
745 LEA.addOperand(MCOperand::createReg(0)); // base
746 LEA.addOperand(MCOperand::createImm(1)); // scale
747 LEA.addOperand(MCOperand::createReg(X86::EBX)); // index
748 LEA.addOperand(MCOperand::createExpr(symRef)); // disp
749 LEA.addOperand(MCOperand::createReg(0)); // seg
Rafael Espindolac4774792010-11-28 21:16:39 +0000750 }
Lang Hamesf49bc3f2014-07-24 20:40:55 +0000751 EmitAndCountInstruction(LEA);
Rafael Espindolac4774792010-11-28 21:16:39 +0000752
Hans Wennborg789acfb2012-06-01 16:27:21 +0000753 if (needsPadding) {
Lang Hamesf49bc3f2014-07-24 20:40:55 +0000754 EmitAndCountInstruction(MCInstBuilder(X86::DATA16_PREFIX));
755 EmitAndCountInstruction(MCInstBuilder(X86::DATA16_PREFIX));
756 EmitAndCountInstruction(MCInstBuilder(X86::REX64_PREFIX));
Rafael Espindolac4774792010-11-28 21:16:39 +0000757 }
758
Rafael Espindolac4774792010-11-28 21:16:39 +0000759 StringRef name = is64Bits ? "__tls_get_addr" : "___tls_get_addr";
Jim Grosbach6f482002015-05-18 18:43:14 +0000760 MCSymbol *tlsGetAddr = context.getOrCreateSymbol(name);
Rafael Espindolac4774792010-11-28 21:16:39 +0000761 const MCSymbolRefExpr *tlsRef =
Jim Grosbach13760bd2015-05-30 01:25:56 +0000762 MCSymbolRefExpr::create(tlsGetAddr,
Rafael Espindolac4774792010-11-28 21:16:39 +0000763 MCSymbolRefExpr::VK_PLT,
764 context);
765
Lang Hamesf49bc3f2014-07-24 20:40:55 +0000766 EmitAndCountInstruction(MCInstBuilder(is64Bits ? X86::CALL64pcrel32
767 : X86::CALLpcrel32)
768 .addExpr(tlsRef));
Rafael Espindolac4774792010-11-28 21:16:39 +0000769}
Devang Patel50c94312010-04-28 01:39:28 +0000770
Sanjoy Das6ecfae62016-04-19 18:48:13 +0000771/// \brief Emit the largest nop instruction smaller than or equal to \p NumBytes
772/// bytes. Return the size of nop emitted.
773static unsigned EmitNop(MCStreamer &OS, unsigned NumBytes, bool Is64Bit,
774 const MCSubtargetInfo &STI) {
Juergen Ributzka17e0d9e2013-12-04 00:39:08 +0000775 // This works only for 64bit. For 32bit we have to do additional checking if
776 // the CPU supports multi-byte nops.
777 assert(Is64Bit && "EmitNops only supports X86-64");
Sanjoy Das6ecfae62016-04-19 18:48:13 +0000778
779 unsigned NopSize;
780 unsigned Opc, BaseReg, ScaleVal, IndexReg, Displacement, SegmentReg;
781 Opc = IndexReg = Displacement = SegmentReg = 0;
782 BaseReg = X86::RAX;
783 ScaleVal = 1;
784 switch (NumBytes) {
785 case 0: llvm_unreachable("Zero nops?"); break;
786 case 1: NopSize = 1; Opc = X86::NOOP; break;
787 case 2: NopSize = 2; Opc = X86::XCHG16ar; break;
788 case 3: NopSize = 3; Opc = X86::NOOPL; break;
789 case 4: NopSize = 4; Opc = X86::NOOPL; Displacement = 8; break;
790 case 5: NopSize = 5; Opc = X86::NOOPL; Displacement = 8;
791 IndexReg = X86::RAX; break;
792 case 6: NopSize = 6; Opc = X86::NOOPW; Displacement = 8;
793 IndexReg = X86::RAX; break;
794 case 7: NopSize = 7; Opc = X86::NOOPL; Displacement = 512; break;
795 case 8: NopSize = 8; Opc = X86::NOOPL; Displacement = 512;
796 IndexReg = X86::RAX; break;
797 case 9: NopSize = 9; Opc = X86::NOOPW; Displacement = 512;
798 IndexReg = X86::RAX; break;
799 default: NopSize = 10; Opc = X86::NOOPW; Displacement = 512;
800 IndexReg = X86::RAX; SegmentReg = X86::CS; break;
801 }
802
803 unsigned NumPrefixes = std::min(NumBytes - NopSize, 5U);
804 NopSize += NumPrefixes;
805 for (unsigned i = 0; i != NumPrefixes; ++i)
806 OS.EmitBytes("\x66");
807
808 switch (Opc) {
809 default:
810 llvm_unreachable("Unexpected opcode");
811 break;
812 case X86::NOOP:
813 OS.EmitInstruction(MCInstBuilder(Opc), STI);
814 break;
815 case X86::XCHG16ar:
816 OS.EmitInstruction(MCInstBuilder(Opc).addReg(X86::AX), STI);
817 break;
818 case X86::NOOPL:
819 case X86::NOOPW:
820 OS.EmitInstruction(MCInstBuilder(Opc)
821 .addReg(BaseReg)
822 .addImm(ScaleVal)
823 .addReg(IndexReg)
824 .addImm(Displacement)
825 .addReg(SegmentReg),
826 STI);
827 break;
828 }
829 assert(NopSize <= NumBytes && "We overemitted?");
830 return NopSize;
831}
832
833/// \brief Emit the optimal amount of multi-byte nops on X86.
834static void EmitNops(MCStreamer &OS, unsigned NumBytes, bool Is64Bit,
835 const MCSubtargetInfo &STI) {
Davide Italiano8a8f24b2016-04-20 17:53:21 +0000836 unsigned NopsToEmit = NumBytes;
Davide Italianobf4df852016-04-20 18:45:31 +0000837 (void)NopsToEmit;
Juergen Ributzka17e0d9e2013-12-04 00:39:08 +0000838 while (NumBytes) {
Sanjoy Das6ecfae62016-04-19 18:48:13 +0000839 NumBytes -= EmitNop(OS, NumBytes, Is64Bit, STI);
Davide Italiano8a8f24b2016-04-20 17:53:21 +0000840 assert(NopsToEmit >= NumBytes && "Emitted more than I asked for!");
Sanjoy Das6ecfae62016-04-19 18:48:13 +0000841 }
Juergen Ributzka17e0d9e2013-12-04 00:39:08 +0000842}
843
Sanjoy Das2e0d29f2015-05-06 23:53:26 +0000844void X86AsmPrinter::LowerSTATEPOINT(const MachineInstr &MI,
845 X86MCInstLower &MCIL) {
846 assert(Subtarget->is64Bit() && "Statepoint currently only supports X86-64");
Philip Reames0365f1a2014-12-01 22:52:56 +0000847
Sanjoy Dasa1d39ba2015-05-12 23:52:24 +0000848 StatepointOpers SOpers(&MI);
Sanjoy Dasa1d39ba2015-05-12 23:52:24 +0000849 if (unsigned PatchBytes = SOpers.getNumPatchBytes()) {
850 EmitNops(*OutStreamer, PatchBytes, Subtarget->is64Bit(),
851 getSubtargetInfo());
852 } else {
853 // Lower call target and choose correct opcode
854 const MachineOperand &CallTarget = SOpers.getCallTarget();
855 MCOperand CallTargetMCOp;
856 unsigned CallOpcode;
857 switch (CallTarget.getType()) {
858 case MachineOperand::MO_GlobalAddress:
859 case MachineOperand::MO_ExternalSymbol:
860 CallTargetMCOp = MCIL.LowerSymbolOperand(
861 CallTarget, MCIL.GetSymbolFromOperand(CallTarget));
862 CallOpcode = X86::CALL64pcrel32;
863 // Currently, we only support relative addressing with statepoints.
864 // Otherwise, we'll need a scratch register to hold the target
865 // address. You'll fail asserts during load & relocation if this
866 // symbol is to far away. (TODO: support non-relative addressing)
867 break;
868 case MachineOperand::MO_Immediate:
Jim Grosbache9119e42015-05-13 18:37:00 +0000869 CallTargetMCOp = MCOperand::createImm(CallTarget.getImm());
Sanjoy Dasa1d39ba2015-05-12 23:52:24 +0000870 CallOpcode = X86::CALL64pcrel32;
871 // Currently, we only support relative addressing with statepoints.
872 // Otherwise, we'll need a scratch register to hold the target
873 // immediate. You'll fail asserts during load & relocation if this
874 // address is to far away. (TODO: support non-relative addressing)
875 break;
876 case MachineOperand::MO_Register:
Jim Grosbache9119e42015-05-13 18:37:00 +0000877 CallTargetMCOp = MCOperand::createReg(CallTarget.getReg());
Sanjoy Dasa1d39ba2015-05-12 23:52:24 +0000878 CallOpcode = X86::CALL64r;
879 break;
880 default:
881 llvm_unreachable("Unsupported operand type in statepoint call target");
882 break;
883 }
884
885 // Emit call
886 MCInst CallInst;
887 CallInst.setOpcode(CallOpcode);
888 CallInst.addOperand(CallTargetMCOp);
889 OutStreamer->EmitInstruction(CallInst, getSubtargetInfo());
890 }
Philip Reames0365f1a2014-12-01 22:52:56 +0000891
892 // Record our statepoint node in the same section used by STACKMAP
893 // and PATCHPOINT
Michael Liao5bf95782014-12-04 05:20:33 +0000894 SM.recordStatepoint(MI);
Philip Reames0365f1a2014-12-01 22:52:56 +0000895}
896
Sanjoy Dasc63244d2015-06-15 18:44:08 +0000897void X86AsmPrinter::LowerFAULTING_LOAD_OP(const MachineInstr &MI,
898 X86MCInstLower &MCIL) {
Quentin Colombet4e1d3892016-05-02 22:58:54 +0000899 // FAULTING_LOAD_OP <def>, <MBB handler>, <load opcode>, <load operands>
Sanjoy Dasc63244d2015-06-15 18:44:08 +0000900
901 unsigned LoadDefRegister = MI.getOperand(0).getReg();
Quentin Colombet4e1d3892016-05-02 22:58:54 +0000902 MCSymbol *HandlerLabel = MI.getOperand(1).getMBB()->getSymbol();
Sanjoy Dasc63244d2015-06-15 18:44:08 +0000903 unsigned LoadOpcode = MI.getOperand(2).getImm();
904 unsigned LoadOperandsBeginIdx = 3;
905
906 FM.recordFaultingOp(FaultMaps::FaultingLoad, HandlerLabel);
907
908 MCInst LoadMI;
909 LoadMI.setOpcode(LoadOpcode);
Sanjoy Das93d608c2015-07-20 20:31:39 +0000910
911 if (LoadDefRegister != X86::NoRegister)
912 LoadMI.addOperand(MCOperand::createReg(LoadDefRegister));
913
Sanjoy Dasc63244d2015-06-15 18:44:08 +0000914 for (auto I = MI.operands_begin() + LoadOperandsBeginIdx,
915 E = MI.operands_end();
916 I != E; ++I)
917 if (auto MaybeOperand = MCIL.LowerMachineOperand(&MI, *I))
918 LoadMI.addOperand(MaybeOperand.getValue());
919
920 OutStreamer->EmitInstruction(LoadMI, getSubtargetInfo());
921}
Philip Reames0365f1a2014-12-01 22:52:56 +0000922
Sanjoy Dasc0441c22016-04-19 05:24:47 +0000923void X86AsmPrinter::LowerPATCHABLE_OP(const MachineInstr &MI,
924 X86MCInstLower &MCIL) {
925 // PATCHABLE_OP minsize, opcode, operands
926
927 unsigned MinSize = MI.getOperand(0).getImm();
928 unsigned Opcode = MI.getOperand(1).getImm();
929
930 MCInst MCI;
931 MCI.setOpcode(Opcode);
932 for (auto &MO : make_range(MI.operands_begin() + 2, MI.operands_end()))
933 if (auto MaybeOperand = MCIL.LowerMachineOperand(&MI, MO))
934 MCI.addOperand(MaybeOperand.getValue());
935
936 SmallString<256> Code;
937 SmallVector<MCFixup, 4> Fixups;
938 raw_svector_ostream VecOS(Code);
939 CodeEmitter->encodeInstruction(MCI, VecOS, Fixups, getSubtargetInfo());
940
941 if (Code.size() < MinSize) {
942 if (MinSize == 2 && Opcode == X86::PUSH64r) {
943 // This is an optimization that lets us get away without emitting a nop in
944 // many cases.
945 //
946 // NB! In some cases the encoding for PUSH64r (e.g. PUSH64r %R9) takes two
947 // bytes too, so the check on MinSize is important.
948 MCI.setOpcode(X86::PUSH64rmr);
949 } else {
Sanjoy Das6ecfae62016-04-19 18:48:13 +0000950 unsigned NopSize = EmitNop(*OutStreamer, MinSize, Subtarget->is64Bit(),
951 getSubtargetInfo());
952 assert(NopSize == MinSize && "Could not implement MinSize!");
953 (void) NopSize;
Sanjoy Dasc0441c22016-04-19 05:24:47 +0000954 }
955 }
956
957 OutStreamer->EmitInstruction(MCI, getSubtargetInfo());
958}
959
Andrew Trickd4e3dc62013-11-19 03:29:56 +0000960// Lower a stackmap of the form:
961// <id>, <shadowBytes>, ...
Lang Hamesf49bc3f2014-07-24 20:40:55 +0000962void X86AsmPrinter::LowerSTACKMAP(const MachineInstr &MI) {
Lang Hames9ff69c82015-04-24 19:11:51 +0000963 SMShadowTracker.emitShadowPadding(*OutStreamer, getSubtargetInfo());
Andrew Trickd4e3dc62013-11-19 03:29:56 +0000964 SM.recordStackMap(MI);
Lang Hamesf49bc3f2014-07-24 20:40:55 +0000965 unsigned NumShadowBytes = MI.getOperand(1).getImm();
966 SMShadowTracker.reset(NumShadowBytes);
Andrew Trick153ebe62013-10-31 22:11:56 +0000967}
968
Andrew Trick561f2212013-11-14 06:54:10 +0000969// Lower a patchpoint of the form:
Andrew Trickd4e3dc62013-11-19 03:29:56 +0000970// [<def>], <id>, <numBytes>, <target>, <numArgs>, <cc>, ...
Lang Hames65613a62015-04-22 06:02:31 +0000971void X86AsmPrinter::LowerPATCHPOINT(const MachineInstr &MI,
972 X86MCInstLower &MCIL) {
Lang Hamesf49bc3f2014-07-24 20:40:55 +0000973 assert(Subtarget->is64Bit() && "Patchpoint currently only supports X86-64");
974
Lang Hames9ff69c82015-04-24 19:11:51 +0000975 SMShadowTracker.emitShadowPadding(*OutStreamer, getSubtargetInfo());
Lang Hamesf49bc3f2014-07-24 20:40:55 +0000976
Andrew Trickd4e3dc62013-11-19 03:29:56 +0000977 SM.recordPatchPoint(MI);
Juergen Ributzka9969d3e2013-11-08 23:28:16 +0000978
Andrew Trickd4e3dc62013-11-19 03:29:56 +0000979 PatchPointOpers opers(&MI);
980 unsigned ScratchIdx = opers.getNextScratchIdx();
Andrew Trick561f2212013-11-14 06:54:10 +0000981 unsigned EncodedBytes = 0;
Lang Hames65613a62015-04-22 06:02:31 +0000982 const MachineOperand &CalleeMO =
983 opers.getMetaOper(PatchPointOpers::TargetPos);
984
985 // Check for null target. If target is non-null (i.e. is non-zero or is
986 // symbolic) then emit a call.
987 if (!(CalleeMO.isImm() && !CalleeMO.getImm())) {
988 MCOperand CalleeMCOp;
989 switch (CalleeMO.getType()) {
990 default:
991 /// FIXME: Add a verifier check for bad callee types.
992 llvm_unreachable("Unrecognized callee operand type.");
993 case MachineOperand::MO_Immediate:
994 if (CalleeMO.getImm())
Jim Grosbache9119e42015-05-13 18:37:00 +0000995 CalleeMCOp = MCOperand::createImm(CalleeMO.getImm());
Lang Hames65613a62015-04-22 06:02:31 +0000996 break;
997 case MachineOperand::MO_ExternalSymbol:
998 case MachineOperand::MO_GlobalAddress:
999 CalleeMCOp =
1000 MCIL.LowerSymbolOperand(CalleeMO,
1001 MCIL.GetSymbolFromOperand(CalleeMO));
1002 break;
1003 }
1004
Andrew Trick561f2212013-11-14 06:54:10 +00001005 // Emit MOV to materialize the target address and the CALL to target.
1006 // This is encoded with 12-13 bytes, depending on which register is used.
Juergen Ributzka17e0d9e2013-12-04 00:39:08 +00001007 unsigned ScratchReg = MI.getOperand(ScratchIdx).getReg();
1008 if (X86II::isX86_64ExtendedReg(ScratchReg))
1009 EncodedBytes = 13;
1010 else
1011 EncodedBytes = 12;
Lang Hames65613a62015-04-22 06:02:31 +00001012
1013 EmitAndCountInstruction(
1014 MCInstBuilder(X86::MOV64ri).addReg(ScratchReg).addOperand(CalleeMCOp));
Lang Hamesf49bc3f2014-07-24 20:40:55 +00001015 EmitAndCountInstruction(MCInstBuilder(X86::CALL64r).addReg(ScratchReg));
Andrew Trick561f2212013-11-14 06:54:10 +00001016 }
Lang Hames65613a62015-04-22 06:02:31 +00001017
Andrew Trick153ebe62013-10-31 22:11:56 +00001018 // Emit padding.
Andrew Trickd4e3dc62013-11-19 03:29:56 +00001019 unsigned NumBytes = opers.getMetaOper(PatchPointOpers::NBytesPos).getImm();
1020 assert(NumBytes >= EncodedBytes &&
Andrew Trick153ebe62013-10-31 22:11:56 +00001021 "Patchpoint can't request size less than the length of a call.");
1022
Lang Hames9ff69c82015-04-24 19:11:51 +00001023 EmitNops(*OutStreamer, NumBytes - EncodedBytes, Subtarget->is64Bit(),
Lang Hamesf49bc3f2014-07-24 20:40:55 +00001024 getSubtargetInfo());
Andrew Trick153ebe62013-10-31 22:11:56 +00001025}
1026
Dean Michael Berris52735fc2016-07-14 04:06:33 +00001027void X86AsmPrinter::recordSled(MCSymbol *Sled, const MachineInstr &MI,
1028 SledKind Kind) {
1029 auto Fn = MI.getParent()->getParent()->getFunction();
1030 auto Attr = Fn->getFnAttribute("function-instrument");
1031 bool AlwaysInstrument =
1032 Attr.isStringAttribute() && Attr.getValueAsString() == "xray-always";
1033 Sleds.emplace_back(
1034 XRayFunctionEntry{Sled, CurrentFnSym, Kind, AlwaysInstrument, Fn});
1035}
1036
1037void X86AsmPrinter::LowerPATCHABLE_FUNCTION_ENTER(const MachineInstr &MI,
1038 X86MCInstLower &MCIL) {
1039 // We want to emit the following pattern:
1040 //
Dean Michael Berris7e9abea2016-08-04 07:37:28 +00001041 // .p2align 1, ...
Dean Michael Berris52735fc2016-07-14 04:06:33 +00001042 // .Lxray_sled_N:
Dean Michael Berris52735fc2016-07-14 04:06:33 +00001043 // jmp .tmpN
1044 // # 9 bytes worth of noops
1045 // .tmpN
1046 //
1047 // We need the 9 bytes because at runtime, we'd be patching over the full 11
1048 // bytes with the following pattern:
1049 //
1050 // mov %r10, <function id, 32-bit> // 6 bytes
1051 // call <relative offset, 32-bits> // 5 bytes
1052 //
1053 auto CurSled = OutContext.createTempSymbol("xray_sled_", true);
Dean Michael Berris7e9abea2016-08-04 07:37:28 +00001054 OutStreamer->EmitCodeAlignment(2);
Dean Michael Berris52735fc2016-07-14 04:06:33 +00001055 OutStreamer->EmitLabel(CurSled);
Dean Michael Berris52735fc2016-07-14 04:06:33 +00001056 auto Target = OutContext.createTempSymbol();
1057
1058 // Use a two-byte `jmp`. This version of JMP takes an 8-bit relative offset as
1059 // an operand (computed as an offset from the jmp instruction).
1060 // FIXME: Find another less hacky way do force the relative jump.
1061 OutStreamer->EmitBytes("\xeb\x09");
1062 EmitNops(*OutStreamer, 9, Subtarget->is64Bit(), getSubtargetInfo());
1063 OutStreamer->EmitLabel(Target);
1064 recordSled(CurSled, MI, SledKind::FUNCTION_ENTER);
1065}
1066
1067void X86AsmPrinter::LowerPATCHABLE_RET(const MachineInstr &MI,
1068 X86MCInstLower &MCIL) {
1069 // Since PATCHABLE_RET takes the opcode of the return statement as an
1070 // argument, we use that to emit the correct form of the RET that we want.
1071 // i.e. when we see this:
1072 //
1073 // PATCHABLE_RET X86::RET ...
1074 //
1075 // We should emit the RET followed by sleds.
1076 //
Dean Michael Berris7e9abea2016-08-04 07:37:28 +00001077 // .p2align 1, ...
Dean Michael Berris52735fc2016-07-14 04:06:33 +00001078 // .Lxray_sled_N:
1079 // ret # or equivalent instruction
1080 // # 10 bytes worth of noops
1081 //
1082 // This just makes sure that the alignment for the next instruction is 2.
1083 auto CurSled = OutContext.createTempSymbol("xray_sled_", true);
Dean Michael Berris7e9abea2016-08-04 07:37:28 +00001084 OutStreamer->EmitCodeAlignment(2);
Dean Michael Berris52735fc2016-07-14 04:06:33 +00001085 OutStreamer->EmitLabel(CurSled);
1086 unsigned OpCode = MI.getOperand(0).getImm();
1087 MCInst Ret;
1088 Ret.setOpcode(OpCode);
1089 for (auto &MO : make_range(MI.operands_begin() + 1, MI.operands_end()))
1090 if (auto MaybeOperand = MCIL.LowerMachineOperand(&MI, MO))
1091 Ret.addOperand(MaybeOperand.getValue());
1092 OutStreamer->EmitInstruction(Ret, getSubtargetInfo());
1093 EmitNops(*OutStreamer, 10, Subtarget->is64Bit(), getSubtargetInfo());
1094 recordSled(CurSled, MI, SledKind::FUNCTION_EXIT);
1095}
1096
1097void X86AsmPrinter::EmitXRayTable() {
1098 if (Sleds.empty())
1099 return;
1100 if (Subtarget->isTargetELF()) {
Dean Michael Berris52735fc2016-07-14 04:06:33 +00001101 auto PrevSection = OutStreamer->getCurrentSectionOnly();
Dean Michael Berris0b8f6c82016-08-03 07:21:55 +00001102 auto Fn = MF->getFunction();
1103 MCSection *Section = nullptr;
1104 if (Fn->hasComdat()) {
1105 Section = OutContext.getELFSection("xray_instr_map", ELF::SHT_PROGBITS,
1106 ELF::SHF_ALLOC | ELF::SHF_GROUP, 0,
1107 Fn->getComdat()->getName());
Dean Michael Berris0b8f6c82016-08-03 07:21:55 +00001108 } else {
1109 Section = OutContext.getELFSection("xray_instr_map", ELF::SHT_PROGBITS,
1110 ELF::SHF_ALLOC);
1111 }
Dean Michael Berris1dd1ca92016-08-19 04:44:30 +00001112
1113 // Before we switch over, we force a reference to a label inside the
1114 // xray_instr_map section. Since EmitXRayTable() is always called just
1115 // before the function's end, we assume that this is happening after the
1116 // last return instruction.
1117 //
1118 // We then align the reference to 16 byte boundaries, which we determined
1119 // experimentally to be beneficial to avoid causing decoder stalls.
1120 MCSymbol *Tmp = OutContext.createTempSymbol("xray_synthetic_", true);
1121 OutStreamer->EmitCodeAlignment(16);
1122 OutStreamer->EmitSymbolValue(Tmp, 8, false);
Dean Michael Berris52735fc2016-07-14 04:06:33 +00001123 OutStreamer->SwitchSection(Section);
Dean Michael Berris1dd1ca92016-08-19 04:44:30 +00001124 OutStreamer->EmitLabel(Tmp);
Dean Michael Berris52735fc2016-07-14 04:06:33 +00001125 for (const auto &Sled : Sleds) {
1126 OutStreamer->EmitSymbolValue(Sled.Sled, 8);
1127 OutStreamer->EmitSymbolValue(CurrentFnSym, 8);
1128 auto Kind = static_cast<uint8_t>(Sled.Kind);
1129 OutStreamer->EmitBytes(
1130 StringRef(reinterpret_cast<const char *>(&Kind), 1));
1131 OutStreamer->EmitBytes(
1132 StringRef(reinterpret_cast<const char *>(&Sled.AlwaysInstrument), 1));
1133 OutStreamer->EmitZeros(14);
1134 }
1135 OutStreamer->SwitchSection(PrevSection);
1136 }
1137 Sleds.clear();
1138}
1139
Reid Klecknere7040102014-08-04 21:05:27 +00001140// Returns instruction preceding MBBI in MachineFunction.
1141// If MBBI is the first instruction of the first basic block, returns null.
1142static MachineBasicBlock::const_iterator
1143PrevCrossBBInst(MachineBasicBlock::const_iterator MBBI) {
1144 const MachineBasicBlock *MBB = MBBI->getParent();
1145 while (MBBI == MBB->begin()) {
Duncan P. N. Exon Smithe9bc5792016-02-21 20:39:50 +00001146 if (MBB == &MBB->getParent()->front())
Duncan P. N. Exon Smith7b4c18e2016-07-12 03:18:50 +00001147 return MachineBasicBlock::const_iterator();
Reid Klecknere7040102014-08-04 21:05:27 +00001148 MBB = MBB->getPrevNode();
1149 MBBI = MBB->end();
1150 }
1151 return --MBBI;
1152}
1153
Chandler Carruthe7e9c042014-09-24 09:39:41 +00001154static const Constant *getConstantFromPool(const MachineInstr &MI,
1155 const MachineOperand &Op) {
1156 if (!Op.isCPI())
Chandler Carruth7b688c62014-09-24 03:06:37 +00001157 return nullptr;
Chandler Carruth0b682d42014-09-24 02:16:12 +00001158
Chandler Carruth7b688c62014-09-24 03:06:37 +00001159 ArrayRef<MachineConstantPoolEntry> Constants =
1160 MI.getParent()->getParent()->getConstantPool()->getConstants();
Chandler Carruthe7e9c042014-09-24 09:39:41 +00001161 const MachineConstantPoolEntry &ConstantEntry =
1162 Constants[Op.getIndex()];
Chandler Carruth0b682d42014-09-24 02:16:12 +00001163
1164 // Bail if this is a machine constant pool entry, we won't be able to dig out
1165 // anything useful.
Chandler Carruthe7e9c042014-09-24 09:39:41 +00001166 if (ConstantEntry.isMachineConstantPoolEntry())
Chandler Carruth7b688c62014-09-24 03:06:37 +00001167 return nullptr;
Chandler Carruth0b682d42014-09-24 02:16:12 +00001168
Chandler Carruthe7e9c042014-09-24 09:39:41 +00001169 auto *C = dyn_cast<Constant>(ConstantEntry.Val.ConstVal);
1170 assert((!C || ConstantEntry.getType() == C->getType()) &&
Chandler Carruth0b682d42014-09-24 02:16:12 +00001171 "Expected a constant of the same type!");
Chandler Carruth7b688c62014-09-24 03:06:37 +00001172 return C;
1173}
Chandler Carruth0b682d42014-09-24 02:16:12 +00001174
Chandler Carruth7b688c62014-09-24 03:06:37 +00001175static std::string getShuffleComment(const MachineOperand &DstOp,
Simon Pilgrim1cc57122016-04-09 14:51:26 +00001176 const MachineOperand &SrcOp1,
1177 const MachineOperand &SrcOp2,
Chandler Carruth7b688c62014-09-24 03:06:37 +00001178 ArrayRef<int> Mask) {
1179 std::string Comment;
Chandler Carruth0b682d42014-09-24 02:16:12 +00001180
1181 // Compute the name for a register. This is really goofy because we have
1182 // multiple instruction printers that could (in theory) use different
1183 // names. Fortunately most people use the ATT style (outside of Windows)
1184 // and they actually agree on register naming here. Ultimately, this is
1185 // a comment, and so its OK if it isn't perfect.
1186 auto GetRegisterName = [](unsigned RegNum) -> StringRef {
1187 return X86ATTInstPrinter::getRegisterName(RegNum);
1188 };
1189
Simon Pilgrimaf742d52016-05-09 13:30:16 +00001190 // TODO: Add support for specifying an AVX512 style mask register in the comment.
Chandler Carruth0b682d42014-09-24 02:16:12 +00001191 StringRef DstName = DstOp.isReg() ? GetRegisterName(DstOp.getReg()) : "mem";
Simon Pilgrim1cc57122016-04-09 14:51:26 +00001192 StringRef Src1Name =
1193 SrcOp1.isReg() ? GetRegisterName(SrcOp1.getReg()) : "mem";
1194 StringRef Src2Name =
1195 SrcOp2.isReg() ? GetRegisterName(SrcOp2.getReg()) : "mem";
1196
1197 // One source operand, fix the mask to print all elements in one span.
1198 SmallVector<int, 8> ShuffleMask(Mask.begin(), Mask.end());
1199 if (Src1Name == Src2Name)
1200 for (int i = 0, e = ShuffleMask.size(); i != e; ++i)
1201 if (ShuffleMask[i] >= e)
1202 ShuffleMask[i] -= e;
Chandler Carruth0b682d42014-09-24 02:16:12 +00001203
1204 raw_string_ostream CS(Comment);
1205 CS << DstName << " = ";
Simon Pilgrim1cc57122016-04-09 14:51:26 +00001206 for (int i = 0, e = ShuffleMask.size(); i != e; ++i) {
1207 if (i != 0)
Chandler Carruth0b682d42014-09-24 02:16:12 +00001208 CS << ",";
Simon Pilgrim1cc57122016-04-09 14:51:26 +00001209 if (ShuffleMask[i] == SM_SentinelZero) {
Chandler Carruth0b682d42014-09-24 02:16:12 +00001210 CS << "zero";
Simon Pilgrim1cc57122016-04-09 14:51:26 +00001211 continue;
1212 }
1213
1214 // Otherwise, it must come from src1 or src2. Print the span of elements
1215 // that comes from this src.
1216 bool isSrc1 = ShuffleMask[i] < (int)e;
1217 CS << (isSrc1 ? Src1Name : Src2Name) << '[';
1218
1219 bool IsFirst = true;
1220 while (i != e && ShuffleMask[i] != SM_SentinelZero &&
1221 (ShuffleMask[i] < (int)e) == isSrc1) {
1222 if (!IsFirst)
1223 CS << ',';
1224 else
1225 IsFirst = false;
1226 if (ShuffleMask[i] == SM_SentinelUndef)
Chandler Carruth0b682d42014-09-24 02:16:12 +00001227 CS << "u";
1228 else
Simon Pilgrim1cc57122016-04-09 14:51:26 +00001229 CS << ShuffleMask[i] % (int)e;
1230 ++i;
Chandler Carruth0b682d42014-09-24 02:16:12 +00001231 }
Simon Pilgrim1cc57122016-04-09 14:51:26 +00001232 CS << ']';
1233 --i; // For loop increments element #.
Chandler Carruth0b682d42014-09-24 02:16:12 +00001234 }
Chandler Carruth0b682d42014-09-24 02:16:12 +00001235 CS.flush();
1236
1237 return Comment;
1238}
1239
Chris Lattner94a946c2010-01-28 01:02:27 +00001240void X86AsmPrinter::EmitInstruction(const MachineInstr *MI) {
Rafael Espindola38c2e652013-10-29 16:11:22 +00001241 X86MCInstLower MCInstLowering(*MF, *this);
Eric Christopher05b81972015-02-02 17:38:43 +00001242 const X86RegisterInfo *RI = MF->getSubtarget<X86Subtarget>().getRegisterInfo();
NAKAMURA Takumi1db59952014-06-25 12:41:52 +00001243
Chris Lattner74f4ca72009-09-02 17:35:12 +00001244 switch (MI->getOpcode()) {
Dale Johannesenb36c7092010-04-06 22:45:26 +00001245 case TargetOpcode::DBG_VALUE:
David Blaikieb735b4d2013-06-16 20:34:27 +00001246 llvm_unreachable("Should be handled target independently");
Dale Johannesen5d7f0a02010-04-07 01:15:14 +00001247
Eric Christopher4abffad2010-08-05 18:34:30 +00001248 // Emit nothing here but a comment if we can.
1249 case X86::Int_MemBarrier:
Lang Hames9ff69c82015-04-24 19:11:51 +00001250 OutStreamer->emitRawComment("MEMBARRIER");
Eric Christopher4abffad2010-08-05 18:34:30 +00001251 return;
Owen Anderson0ca562e2011-10-04 23:26:17 +00001252
Rafael Espindolad94f3b42010-10-26 18:09:55 +00001253
1254 case X86::EH_RETURN:
1255 case X86::EH_RETURN64: {
1256 // Lower these as normal, but add some comments.
1257 unsigned Reg = MI->getOperand(0).getReg();
Lang Hames9ff69c82015-04-24 19:11:51 +00001258 OutStreamer->AddComment(StringRef("eh_return, addr: %") +
1259 X86ATTInstPrinter::getRegisterName(Reg));
Rafael Espindolad94f3b42010-10-26 18:09:55 +00001260 break;
1261 }
David Majnemerf828a0c2015-10-01 18:44:59 +00001262 case X86::CLEANUPRET: {
1263 // Lower these as normal, but add some comments.
1264 OutStreamer->AddComment("CLEANUPRET");
1265 break;
1266 }
1267
1268 case X86::CATCHRET: {
1269 // Lower these as normal, but add some comments.
1270 OutStreamer->AddComment("CATCHRET");
1271 break;
1272 }
1273
Chris Lattner88c18562010-07-09 00:49:41 +00001274 case X86::TAILJMPr:
Reid Klecknera580b6e2015-01-30 21:03:31 +00001275 case X86::TAILJMPm:
Chris Lattner88c18562010-07-09 00:49:41 +00001276 case X86::TAILJMPd:
Reid Klecknera580b6e2015-01-30 21:03:31 +00001277 case X86::TAILJMPr64:
1278 case X86::TAILJMPm64:
Chris Lattner88c18562010-07-09 00:49:41 +00001279 case X86::TAILJMPd64:
Reid Klecknera580b6e2015-01-30 21:03:31 +00001280 case X86::TAILJMPr64_REX:
1281 case X86::TAILJMPm64_REX:
1282 case X86::TAILJMPd64_REX:
Chris Lattner88c18562010-07-09 00:49:41 +00001283 // Lower these as normal, but add some comments.
Lang Hames9ff69c82015-04-24 19:11:51 +00001284 OutStreamer->AddComment("TAILCALL");
Chris Lattner88c18562010-07-09 00:49:41 +00001285 break;
Rafael Espindolac4774792010-11-28 21:16:39 +00001286
1287 case X86::TLS_addr32:
1288 case X86::TLS_addr64:
Hans Wennborg789acfb2012-06-01 16:27:21 +00001289 case X86::TLS_base_addr32:
1290 case X86::TLS_base_addr64:
Lang Hamesf49bc3f2014-07-24 20:40:55 +00001291 return LowerTlsAddr(MCInstLowering, *MI);
Rafael Espindolac4774792010-11-28 21:16:39 +00001292
Chris Lattner74f4ca72009-09-02 17:35:12 +00001293 case X86::MOVPC32r: {
1294 // This is a pseudo op for a two instruction sequence with a label, which
1295 // looks like:
1296 // call "L1$pb"
1297 // "L1$pb":
1298 // popl %esi
Chad Rosier24c19d22012-08-01 18:39:17 +00001299
Chris Lattner74f4ca72009-09-02 17:35:12 +00001300 // Emit the call.
Chris Lattner7077efe2010-11-14 22:48:15 +00001301 MCSymbol *PICBase = MF->getPICBaseSymbol();
Chris Lattner74f4ca72009-09-02 17:35:12 +00001302 // FIXME: We would like an efficient form for this, so we don't have to do a
1303 // lot of extra uniquing.
Lang Hamesf49bc3f2014-07-24 20:40:55 +00001304 EmitAndCountInstruction(MCInstBuilder(X86::CALLpcrel32)
Jim Grosbach13760bd2015-05-30 01:25:56 +00001305 .addExpr(MCSymbolRefExpr::create(PICBase, OutContext)));
Chad Rosier24c19d22012-08-01 18:39:17 +00001306
Petar Jovanovic99fba3c2015-11-05 17:19:59 +00001307 const X86FrameLowering* FrameLowering =
1308 MF->getSubtarget<X86Subtarget>().getFrameLowering();
1309 bool hasFP = FrameLowering->hasFP(*MF);
Michael Kuperstein77ce9d32015-12-06 13:06:20 +00001310
1311 // TODO: This is needed only if we require precise CFA.
Michael Kuperstein53946bf2015-12-15 18:50:32 +00001312 bool HasActiveDwarfFrame = OutStreamer->getNumFrameInfos() &&
1313 !OutStreamer->getDwarfFrameInfos().back().End;
1314
Petar Jovanovic99fba3c2015-11-05 17:19:59 +00001315 int stackGrowth = -RI->getSlotSize();
1316
Michael Kuperstein53946bf2015-12-15 18:50:32 +00001317 if (HasActiveDwarfFrame && !hasFP) {
Petar Jovanovic99fba3c2015-11-05 17:19:59 +00001318 OutStreamer->EmitCFIAdjustCfaOffset(-stackGrowth);
1319 }
1320
Chris Lattner74f4ca72009-09-02 17:35:12 +00001321 // Emit the label.
Lang Hames9ff69c82015-04-24 19:11:51 +00001322 OutStreamer->EmitLabel(PICBase);
Chad Rosier24c19d22012-08-01 18:39:17 +00001323
Chris Lattner74f4ca72009-09-02 17:35:12 +00001324 // popl $reg
Lang Hamesf49bc3f2014-07-24 20:40:55 +00001325 EmitAndCountInstruction(MCInstBuilder(X86::POP32r)
1326 .addReg(MI->getOperand(0).getReg()));
Petar Jovanovic99fba3c2015-11-05 17:19:59 +00001327
Michael Kuperstein53946bf2015-12-15 18:50:32 +00001328 if (HasActiveDwarfFrame && !hasFP) {
Petar Jovanovic99fba3c2015-11-05 17:19:59 +00001329 OutStreamer->EmitCFIAdjustCfaOffset(stackGrowth);
1330 }
Chris Lattner74f4ca72009-09-02 17:35:12 +00001331 return;
Chris Lattner6ccf7ed2009-09-12 21:01:20 +00001332 }
Chad Rosier24c19d22012-08-01 18:39:17 +00001333
Chris Lattner6ccf7ed2009-09-12 21:01:20 +00001334 case X86::ADD32ri: {
1335 // Lower the MO_GOT_ABSOLUTE_ADDRESS form of ADD32ri.
1336 if (MI->getOperand(2).getTargetFlags() != X86II::MO_GOT_ABSOLUTE_ADDRESS)
1337 break;
Chad Rosier24c19d22012-08-01 18:39:17 +00001338
Chris Lattner6ccf7ed2009-09-12 21:01:20 +00001339 // Okay, we have something like:
1340 // EAX = ADD32ri EAX, MO_GOT_ABSOLUTE_ADDRESS(@MYGLOBAL)
Chad Rosier24c19d22012-08-01 18:39:17 +00001341
Chris Lattner6ccf7ed2009-09-12 21:01:20 +00001342 // For this, we want to print something like:
1343 // MYGLOBAL + (. - PICBASE)
1344 // However, we can't generate a ".", so just emit a new label here and refer
Chris Lattnerd7581392010-03-12 18:47:50 +00001345 // to it.
Jim Grosbach6f482002015-05-18 18:43:14 +00001346 MCSymbol *DotSym = OutContext.createTempSymbol();
Lang Hames9ff69c82015-04-24 19:11:51 +00001347 OutStreamer->EmitLabel(DotSym);
Chad Rosier24c19d22012-08-01 18:39:17 +00001348
Chris Lattner6ccf7ed2009-09-12 21:01:20 +00001349 // Now that we have emitted the label, lower the complex operand expression.
Chris Lattnerd9d71862010-02-08 23:03:41 +00001350 MCSymbol *OpSym = MCInstLowering.GetSymbolFromOperand(MI->getOperand(2));
Chad Rosier24c19d22012-08-01 18:39:17 +00001351
Jim Grosbach13760bd2015-05-30 01:25:56 +00001352 const MCExpr *DotExpr = MCSymbolRefExpr::create(DotSym, OutContext);
Chris Lattner6ccf7ed2009-09-12 21:01:20 +00001353 const MCExpr *PICBase =
Jim Grosbach13760bd2015-05-30 01:25:56 +00001354 MCSymbolRefExpr::create(MF->getPICBaseSymbol(), OutContext);
1355 DotExpr = MCBinaryExpr::createSub(DotExpr, PICBase, OutContext);
Chad Rosier24c19d22012-08-01 18:39:17 +00001356
Jim Grosbach13760bd2015-05-30 01:25:56 +00001357 DotExpr = MCBinaryExpr::createAdd(MCSymbolRefExpr::create(OpSym,OutContext),
Chris Lattner6ccf7ed2009-09-12 21:01:20 +00001358 DotExpr, OutContext);
Chad Rosier24c19d22012-08-01 18:39:17 +00001359
Lang Hamesf49bc3f2014-07-24 20:40:55 +00001360 EmitAndCountInstruction(MCInstBuilder(X86::ADD32ri)
Benjamin Kramer4e629f72012-11-26 13:34:22 +00001361 .addReg(MI->getOperand(0).getReg())
1362 .addReg(MI->getOperand(1).getReg())
Benjamin Kramerebf576d2012-11-26 18:05:52 +00001363 .addExpr(DotExpr));
Chris Lattner6ccf7ed2009-09-12 21:01:20 +00001364 return;
1365 }
Philip Reames0365f1a2014-12-01 22:52:56 +00001366 case TargetOpcode::STATEPOINT:
Sanjoy Das2e0d29f2015-05-06 23:53:26 +00001367 return LowerSTATEPOINT(*MI, MCInstLowering);
Michael Liao5bf95782014-12-04 05:20:33 +00001368
Sanjoy Dasc63244d2015-06-15 18:44:08 +00001369 case TargetOpcode::FAULTING_LOAD_OP:
1370 return LowerFAULTING_LOAD_OP(*MI, MCInstLowering);
1371
Sanjoy Dasc0441c22016-04-19 05:24:47 +00001372 case TargetOpcode::PATCHABLE_OP:
1373 return LowerPATCHABLE_OP(*MI, MCInstLowering);
1374
Andrew Trick153ebe62013-10-31 22:11:56 +00001375 case TargetOpcode::STACKMAP:
Lang Hamesf49bc3f2014-07-24 20:40:55 +00001376 return LowerSTACKMAP(*MI);
Andrew Trick153ebe62013-10-31 22:11:56 +00001377
1378 case TargetOpcode::PATCHPOINT:
Lang Hames65613a62015-04-22 06:02:31 +00001379 return LowerPATCHPOINT(*MI, MCInstLowering);
Lang Hamesc2b77232013-11-11 23:00:41 +00001380
Dean Michael Berris52735fc2016-07-14 04:06:33 +00001381 case TargetOpcode::PATCHABLE_FUNCTION_ENTER:
1382 return LowerPATCHABLE_FUNCTION_ENTER(*MI, MCInstLowering);
1383
1384 case TargetOpcode::PATCHABLE_RET:
1385 return LowerPATCHABLE_RET(*MI, MCInstLowering);
1386
Lang Hamesc2b77232013-11-11 23:00:41 +00001387 case X86::MORESTACK_RET:
Lang Hamesf49bc3f2014-07-24 20:40:55 +00001388 EmitAndCountInstruction(MCInstBuilder(getRetOpcode(*Subtarget)));
Lang Hamesc2b77232013-11-11 23:00:41 +00001389 return;
1390
1391 case X86::MORESTACK_RET_RESTORE_R10:
1392 // Return, then restore R10.
Lang Hamesf49bc3f2014-07-24 20:40:55 +00001393 EmitAndCountInstruction(MCInstBuilder(getRetOpcode(*Subtarget)));
1394 EmitAndCountInstruction(MCInstBuilder(X86::MOV64rr)
1395 .addReg(X86::R10)
1396 .addReg(X86::RAX));
Lang Hamesc2b77232013-11-11 23:00:41 +00001397 return;
NAKAMURA Takumi1db59952014-06-25 12:41:52 +00001398
1399 case X86::SEH_PushReg:
Lang Hames9ff69c82015-04-24 19:11:51 +00001400 OutStreamer->EmitWinCFIPushReg(RI->getSEHRegNum(MI->getOperand(0).getImm()));
NAKAMURA Takumi1db59952014-06-25 12:41:52 +00001401 return;
1402
1403 case X86::SEH_SaveReg:
Lang Hames9ff69c82015-04-24 19:11:51 +00001404 OutStreamer->EmitWinCFISaveReg(RI->getSEHRegNum(MI->getOperand(0).getImm()),
Saleem Abdulrasool7206a522014-06-29 01:52:01 +00001405 MI->getOperand(1).getImm());
NAKAMURA Takumi1db59952014-06-25 12:41:52 +00001406 return;
1407
Lang Hames9ff69c82015-04-24 19:11:51 +00001408 case X86::SEH_SaveXMM:
1409 OutStreamer->EmitWinCFISaveXMM(RI->getSEHRegNum(MI->getOperand(0).getImm()),
1410 MI->getOperand(1).getImm());
1411 return;
1412
1413 case X86::SEH_StackAlloc:
1414 OutStreamer->EmitWinCFIAllocStack(MI->getOperand(0).getImm());
1415 return;
1416
1417 case X86::SEH_SetFrame:
1418 OutStreamer->EmitWinCFISetFrame(RI->getSEHRegNum(MI->getOperand(0).getImm()),
1419 MI->getOperand(1).getImm());
1420 return;
1421
NAKAMURA Takumi1db59952014-06-25 12:41:52 +00001422 case X86::SEH_PushFrame:
Lang Hames9ff69c82015-04-24 19:11:51 +00001423 OutStreamer->EmitWinCFIPushFrame(MI->getOperand(0).getImm());
NAKAMURA Takumi1db59952014-06-25 12:41:52 +00001424 return;
1425
1426 case X86::SEH_EndPrologue:
Lang Hames9ff69c82015-04-24 19:11:51 +00001427 OutStreamer->EmitWinCFIEndProlog();
NAKAMURA Takumi1db59952014-06-25 12:41:52 +00001428 return;
Chandler Carruth185cc182014-07-25 23:47:11 +00001429
Reid Klecknere7040102014-08-04 21:05:27 +00001430 case X86::SEH_Epilogue: {
1431 MachineBasicBlock::const_iterator MBBI(MI);
1432 // Check if preceded by a call and emit nop if so.
Duncan P. N. Exon Smith7b4c18e2016-07-12 03:18:50 +00001433 for (MBBI = PrevCrossBBInst(MBBI);
1434 MBBI != MachineBasicBlock::const_iterator();
1435 MBBI = PrevCrossBBInst(MBBI)) {
Reid Klecknere7040102014-08-04 21:05:27 +00001436 // Conservatively assume that pseudo instructions don't emit code and keep
1437 // looking for a call. We may emit an unnecessary nop in some cases.
1438 if (!MBBI->isPseudo()) {
1439 if (MBBI->isCall())
1440 EmitAndCountInstruction(MCInstBuilder(X86::NOOP));
1441 break;
1442 }
1443 }
1444 return;
1445 }
1446
Craig Topper7e3ba152015-12-26 19:48:43 +00001447 // Lower PSHUFB and VPERMILP normally but add a comment if we can find
1448 // a constant shuffle mask. We won't be able to do this at the MC layer
1449 // because the mask isn't an immediate.
Chandler Carruth185cc182014-07-25 23:47:11 +00001450 case X86::PSHUFBrm:
Chandler Carruth98443d82014-09-25 00:24:19 +00001451 case X86::VPSHUFBrm:
Craig Topper7e3ba152015-12-26 19:48:43 +00001452 case X86::VPSHUFBYrm:
1453 case X86::VPSHUFBZ128rm:
1454 case X86::VPSHUFBZ128rmk:
1455 case X86::VPSHUFBZ128rmkz:
1456 case X86::VPSHUFBZ256rm:
1457 case X86::VPSHUFBZ256rmk:
1458 case X86::VPSHUFBZ256rmkz:
1459 case X86::VPSHUFBZrm:
1460 case X86::VPSHUFBZrmk:
1461 case X86::VPSHUFBZrmkz: {
Lang Hames9ff69c82015-04-24 19:11:51 +00001462 if (!OutStreamer->isVerboseAsm())
Chandler Carruthedf50212014-09-24 03:06:34 +00001463 break;
Craig Topper7e3ba152015-12-26 19:48:43 +00001464 unsigned SrcIdx, MaskIdx;
1465 switch (MI->getOpcode()) {
1466 default: llvm_unreachable("Invalid opcode");
1467 case X86::PSHUFBrm:
1468 case X86::VPSHUFBrm:
1469 case X86::VPSHUFBYrm:
1470 case X86::VPSHUFBZ128rm:
1471 case X86::VPSHUFBZ256rm:
1472 case X86::VPSHUFBZrm:
1473 SrcIdx = 1; MaskIdx = 5; break;
1474 case X86::VPSHUFBZ128rmkz:
1475 case X86::VPSHUFBZ256rmkz:
1476 case X86::VPSHUFBZrmkz:
1477 SrcIdx = 2; MaskIdx = 6; break;
1478 case X86::VPSHUFBZ128rmk:
1479 case X86::VPSHUFBZ256rmk:
1480 case X86::VPSHUFBZrmk:
1481 SrcIdx = 3; MaskIdx = 7; break;
1482 }
1483
1484 assert(MI->getNumOperands() >= 6 &&
1485 "We should always have at least 6 operands!");
Chandler Carruthab8b37a2014-09-24 02:24:41 +00001486 const MachineOperand &DstOp = MI->getOperand(0);
Craig Topper7e3ba152015-12-26 19:48:43 +00001487 const MachineOperand &SrcOp = MI->getOperand(SrcIdx);
1488 const MachineOperand &MaskOp = MI->getOperand(MaskIdx);
Chandler Carruthab8b37a2014-09-24 02:24:41 +00001489
Chandler Carruthe7e9c042014-09-24 09:39:41 +00001490 if (auto *C = getConstantFromPool(*MI, MaskOp)) {
Chandler Carruth7b688c62014-09-24 03:06:37 +00001491 SmallVector<int, 16> Mask;
David Majnemer14141f92015-01-11 07:29:51 +00001492 DecodePSHUFBMask(C, Mask);
Chandler Carruth7b688c62014-09-24 03:06:37 +00001493 if (!Mask.empty())
Simon Pilgrim1cc57122016-04-09 14:51:26 +00001494 OutStreamer->AddComment(getShuffleComment(DstOp, SrcOp, SrcOp, Mask));
Chandler Carruth7b688c62014-09-24 03:06:37 +00001495 }
1496 break;
1497 }
Simon Pilgrima99368f2016-07-13 15:45:36 +00001498
Chandler Carruth7b688c62014-09-24 03:06:37 +00001499 case X86::VPERMILPDrm:
Simon Pilgrima99368f2016-07-13 15:45:36 +00001500 case X86::VPERMILPDYrm:
1501 case X86::VPERMILPDZ128rm:
1502 case X86::VPERMILPDZ256rm:
1503 case X86::VPERMILPDZrm: {
Lang Hames9ff69c82015-04-24 19:11:51 +00001504 if (!OutStreamer->isVerboseAsm())
Chandler Carruth7b688c62014-09-24 03:06:37 +00001505 break;
1506 assert(MI->getNumOperands() > 5 &&
1507 "We should always have at least 5 operands!");
1508 const MachineOperand &DstOp = MI->getOperand(0);
1509 const MachineOperand &SrcOp = MI->getOperand(1);
1510 const MachineOperand &MaskOp = MI->getOperand(5);
1511
Simon Pilgrima99368f2016-07-13 15:45:36 +00001512 if (auto *C = getConstantFromPool(*MI, MaskOp)) {
1513 SmallVector<int, 8> Mask;
1514 DecodeVPERMILPMask(C, 64, Mask);
1515 if (!Mask.empty())
1516 OutStreamer->AddComment(getShuffleComment(DstOp, SrcOp, SrcOp, Mask));
Craig Topperd4000192015-12-26 04:50:07 +00001517 }
Simon Pilgrima99368f2016-07-13 15:45:36 +00001518 break;
1519 }
1520
1521 case X86::VPERMILPSrm:
1522 case X86::VPERMILPSYrm:
1523 case X86::VPERMILPSZ128rm:
1524 case X86::VPERMILPSZ256rm:
1525 case X86::VPERMILPSZrm: {
1526 if (!OutStreamer->isVerboseAsm())
1527 break;
1528 assert(MI->getNumOperands() > 5 &&
1529 "We should always have at least 5 operands!");
1530 const MachineOperand &DstOp = MI->getOperand(0);
1531 const MachineOperand &SrcOp = MI->getOperand(1);
1532 const MachineOperand &MaskOp = MI->getOperand(5);
Craig Topperd4000192015-12-26 04:50:07 +00001533
Chandler Carruthe7e9c042014-09-24 09:39:41 +00001534 if (auto *C = getConstantFromPool(*MI, MaskOp)) {
Chandler Carruth7b688c62014-09-24 03:06:37 +00001535 SmallVector<int, 16> Mask;
Simon Pilgrima99368f2016-07-13 15:45:36 +00001536 DecodeVPERMILPMask(C, 32, Mask);
Chandler Carruth7b688c62014-09-24 03:06:37 +00001537 if (!Mask.empty())
Simon Pilgrim1cc57122016-04-09 14:51:26 +00001538 OutStreamer->AddComment(getShuffleComment(DstOp, SrcOp, SrcOp, Mask));
1539 }
1540 break;
1541 }
Simon Pilgrim2ead8612016-06-04 21:44:28 +00001542
1543 case X86::VPERMIL2PDrm:
1544 case X86::VPERMIL2PSrm:
1545 case X86::VPERMIL2PDrmY:
1546 case X86::VPERMIL2PSrmY: {
1547 if (!OutStreamer->isVerboseAsm())
1548 break;
1549 assert(MI->getNumOperands() > 7 &&
1550 "We should always have at least 7 operands!");
1551 const MachineOperand &DstOp = MI->getOperand(0);
1552 const MachineOperand &SrcOp1 = MI->getOperand(1);
1553 const MachineOperand &SrcOp2 = MI->getOperand(2);
1554 const MachineOperand &MaskOp = MI->getOperand(6);
1555 const MachineOperand &CtrlOp = MI->getOperand(MI->getNumOperands() - 1);
1556
1557 if (!CtrlOp.isImm())
1558 break;
1559
1560 unsigned ElSize;
1561 switch (MI->getOpcode()) {
1562 default: llvm_unreachable("Invalid opcode");
1563 case X86::VPERMIL2PSrm: case X86::VPERMIL2PSrmY: ElSize = 32; break;
1564 case X86::VPERMIL2PDrm: case X86::VPERMIL2PDrmY: ElSize = 64; break;
1565 }
1566
1567 if (auto *C = getConstantFromPool(*MI, MaskOp)) {
1568 SmallVector<int, 16> Mask;
1569 DecodeVPERMIL2PMask(C, (unsigned)CtrlOp.getImm(), ElSize, Mask);
1570 if (!Mask.empty())
1571 OutStreamer->AddComment(getShuffleComment(DstOp, SrcOp1, SrcOp2, Mask));
1572 }
1573 break;
1574 }
1575
Simon Pilgrim1cc57122016-04-09 14:51:26 +00001576 case X86::VPPERMrrm: {
1577 if (!OutStreamer->isVerboseAsm())
1578 break;
1579 assert(MI->getNumOperands() > 6 &&
1580 "We should always have at least 6 operands!");
1581 const MachineOperand &DstOp = MI->getOperand(0);
1582 const MachineOperand &SrcOp1 = MI->getOperand(1);
1583 const MachineOperand &SrcOp2 = MI->getOperand(2);
1584 const MachineOperand &MaskOp = MI->getOperand(6);
1585
1586 if (auto *C = getConstantFromPool(*MI, MaskOp)) {
1587 SmallVector<int, 16> Mask;
1588 DecodeVPPERMMask(C, Mask);
1589 if (!Mask.empty())
1590 OutStreamer->AddComment(getShuffleComment(DstOp, SrcOp1, SrcOp2, Mask));
Chandler Carruth7b688c62014-09-24 03:06:37 +00001591 }
Chandler Carruth185cc182014-07-25 23:47:11 +00001592 break;
Chris Lattner74f4ca72009-09-02 17:35:12 +00001593 }
Chandler Carruthe7e9c042014-09-24 09:39:41 +00001594
Elena Demikhovskye88038f2015-09-08 06:38:21 +00001595#define MOV_CASE(Prefix, Suffix) \
1596 case X86::Prefix##MOVAPD##Suffix##rm: \
1597 case X86::Prefix##MOVAPS##Suffix##rm: \
1598 case X86::Prefix##MOVUPD##Suffix##rm: \
1599 case X86::Prefix##MOVUPS##Suffix##rm: \
1600 case X86::Prefix##MOVDQA##Suffix##rm: \
1601 case X86::Prefix##MOVDQU##Suffix##rm:
1602
1603#define MOV_AVX512_CASE(Suffix) \
1604 case X86::VMOVDQA64##Suffix##rm: \
1605 case X86::VMOVDQA32##Suffix##rm: \
1606 case X86::VMOVDQU64##Suffix##rm: \
1607 case X86::VMOVDQU32##Suffix##rm: \
1608 case X86::VMOVDQU16##Suffix##rm: \
1609 case X86::VMOVDQU8##Suffix##rm: \
1610 case X86::VMOVAPS##Suffix##rm: \
1611 case X86::VMOVAPD##Suffix##rm: \
1612 case X86::VMOVUPS##Suffix##rm: \
1613 case X86::VMOVUPD##Suffix##rm:
1614
1615#define CASE_ALL_MOV_RM() \
1616 MOV_CASE(, ) /* SSE */ \
1617 MOV_CASE(V, ) /* AVX-128 */ \
1618 MOV_CASE(V, Y) /* AVX-256 */ \
1619 MOV_AVX512_CASE(Z) \
1620 MOV_AVX512_CASE(Z256) \
1621 MOV_AVX512_CASE(Z128)
1622
1623 // For loads from a constant pool to a vector register, print the constant
1624 // loaded.
1625 CASE_ALL_MOV_RM()
Lang Hames9ff69c82015-04-24 19:11:51 +00001626 if (!OutStreamer->isVerboseAsm())
Chandler Carruthe7e9c042014-09-24 09:39:41 +00001627 break;
1628 if (MI->getNumOperands() > 4)
1629 if (auto *C = getConstantFromPool(*MI, MI->getOperand(4))) {
1630 std::string Comment;
1631 raw_string_ostream CS(Comment);
1632 const MachineOperand &DstOp = MI->getOperand(0);
1633 CS << X86ATTInstPrinter::getRegisterName(DstOp.getReg()) << " = ";
1634 if (auto *CDS = dyn_cast<ConstantDataSequential>(C)) {
1635 CS << "[";
1636 for (int i = 0, NumElements = CDS->getNumElements(); i < NumElements; ++i) {
1637 if (i != 0)
1638 CS << ",";
1639 if (CDS->getElementType()->isIntegerTy())
1640 CS << CDS->getElementAsInteger(i);
1641 else if (CDS->getElementType()->isFloatTy())
1642 CS << CDS->getElementAsFloat(i);
1643 else if (CDS->getElementType()->isDoubleTy())
1644 CS << CDS->getElementAsDouble(i);
1645 else
1646 CS << "?";
1647 }
1648 CS << "]";
Lang Hames9ff69c82015-04-24 19:11:51 +00001649 OutStreamer->AddComment(CS.str());
Chandler Carruthe7e9c042014-09-24 09:39:41 +00001650 } else if (auto *CV = dyn_cast<ConstantVector>(C)) {
1651 CS << "<";
1652 for (int i = 0, NumOperands = CV->getNumOperands(); i < NumOperands; ++i) {
1653 if (i != 0)
1654 CS << ",";
1655 Constant *COp = CV->getOperand(i);
1656 if (isa<UndefValue>(COp)) {
1657 CS << "u";
1658 } else if (auto *CI = dyn_cast<ConstantInt>(COp)) {
Chih-Hung Hsiehed7d81e2015-12-03 22:02:40 +00001659 if (CI->getBitWidth() <= 64) {
1660 CS << CI->getZExtValue();
1661 } else {
1662 // print multi-word constant as (w0,w1)
Benjamin Kramer46e38f32016-06-08 10:01:20 +00001663 const auto &Val = CI->getValue();
Chih-Hung Hsiehed7d81e2015-12-03 22:02:40 +00001664 CS << "(";
1665 for (int i = 0, N = Val.getNumWords(); i < N; ++i) {
1666 if (i > 0)
1667 CS << ",";
1668 CS << Val.getRawData()[i];
1669 }
1670 CS << ")";
1671 }
Chandler Carruthe7e9c042014-09-24 09:39:41 +00001672 } else if (auto *CF = dyn_cast<ConstantFP>(COp)) {
1673 SmallString<32> Str;
1674 CF->getValueAPF().toString(Str);
1675 CS << Str;
1676 } else {
1677 CS << "?";
1678 }
1679 }
1680 CS << ">";
Lang Hames9ff69c82015-04-24 19:11:51 +00001681 OutStreamer->AddComment(CS.str());
Chandler Carruthe7e9c042014-09-24 09:39:41 +00001682 }
1683 }
1684 break;
Chandler Carruth0b682d42014-09-24 02:16:12 +00001685 }
Chad Rosier24c19d22012-08-01 18:39:17 +00001686
Chris Lattner31722082009-09-12 20:34:57 +00001687 MCInst TmpInst;
1688 MCInstLowering.Lower(MI, TmpInst);
Pete Cooper3c0af3522014-10-27 19:40:35 +00001689
1690 // Stackmap shadows cannot include branch targets, so we can count the bytes
Pete Cooper7c801dc2014-10-27 22:38:45 +00001691 // in a call towards the shadow, but must ensure that the no thread returns
1692 // in to the stackmap shadow. The only way to achieve this is if the call
1693 // is at the end of the shadow.
1694 if (MI->isCall()) {
1695 // Count then size of the call towards the shadow
Sanjoy Dasc0441c22016-04-19 05:24:47 +00001696 SMShadowTracker.count(TmpInst, getSubtargetInfo(), CodeEmitter.get());
Pete Cooper7c801dc2014-10-27 22:38:45 +00001697 // Then flush the shadow so that we fill with nops before the call, not
1698 // after it.
Lang Hames9ff69c82015-04-24 19:11:51 +00001699 SMShadowTracker.emitShadowPadding(*OutStreamer, getSubtargetInfo());
Pete Cooper7c801dc2014-10-27 22:38:45 +00001700 // Then emit the call
Lang Hames9ff69c82015-04-24 19:11:51 +00001701 OutStreamer->EmitInstruction(TmpInst, getSubtargetInfo());
Pete Cooper7c801dc2014-10-27 22:38:45 +00001702 return;
1703 }
1704
1705 EmitAndCountInstruction(TmpInst);
Chris Lattner74f4ca72009-09-02 17:35:12 +00001706}