1 //===- AArch64AsmPrinter.cpp - AArch64 LLVM assembly writer ---------------===// 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 a printer that converts from our internal representation 11 // of machine-dependent LLVM code to the AArch64 assembly language. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #include "AArch64.h" 16 #include "AArch64MCInstLower.h" 17 #include "AArch64MachineFunctionInfo.h" 18 #include "AArch64RegisterInfo.h" 19 #include "AArch64Subtarget.h" 20 #include "AArch64TargetObjectFile.h" 21 #include "InstPrinter/AArch64InstPrinter.h" 22 #include "MCTargetDesc/AArch64AddressingModes.h" 23 #include "MCTargetDesc/AArch64MCTargetDesc.h" 24 #include "MCTargetDesc/AArch64TargetStreamer.h" 25 #include "Utils/AArch64BaseInfo.h" 26 #include "llvm/ADT/SmallString.h" 27 #include "llvm/ADT/SmallVector.h" 28 #include "llvm/ADT/StringRef.h" 29 #include "llvm/ADT/Triple.h" 30 #include "llvm/ADT/Twine.h" 31 #include "llvm/BinaryFormat/COFF.h" 32 #include "llvm/CodeGen/AsmPrinter.h" 33 #include "llvm/CodeGen/MachineBasicBlock.h" 34 #include "llvm/CodeGen/MachineFunction.h" 35 #include "llvm/CodeGen/MachineInstr.h" 36 #include "llvm/CodeGen/MachineJumpTableInfo.h" 37 #include "llvm/CodeGen/MachineModuleInfoImpls.h" 38 #include "llvm/CodeGen/MachineOperand.h" 39 #include "llvm/CodeGen/StackMaps.h" 40 #include "llvm/CodeGen/TargetRegisterInfo.h" 41 #include "llvm/IR/DataLayout.h" 42 #include "llvm/IR/DebugInfoMetadata.h" 43 #include "llvm/MC/MCAsmInfo.h" 44 #include "llvm/MC/MCContext.h" 45 #include "llvm/MC/MCInst.h" 46 #include "llvm/MC/MCInstBuilder.h" 47 #include "llvm/MC/MCStreamer.h" 48 #include "llvm/MC/MCSymbol.h" 49 #include "llvm/Support/Casting.h" 50 #include "llvm/Support/ErrorHandling.h" 51 #include "llvm/Support/TargetRegistry.h" 52 #include "llvm/Support/raw_ostream.h" 53 #include "llvm/Target/TargetMachine.h" 54 #include <algorithm> 55 #include <cassert> 56 #include <cstdint> 57 #include <map> 58 #include <memory> 59 60 using namespace llvm; 61 62 #define DEBUG_TYPE "asm-printer" 63 64 namespace { 65 66 class AArch64AsmPrinter : public AsmPrinter { 67 AArch64MCInstLower MCInstLowering; 68 StackMaps SM; 69 const AArch64Subtarget *STI; 70 71 public: 72 AArch64AsmPrinter(TargetMachine &TM, std::unique_ptr<MCStreamer> Streamer) 73 : AsmPrinter(TM, std::move(Streamer)), MCInstLowering(OutContext, *this), 74 SM(*this) {} 75 76 StringRef getPassName() const override { return "AArch64 Assembly Printer"; } 77 78 /// Wrapper for MCInstLowering.lowerOperand() for the 79 /// tblgen'erated pseudo lowering. 80 bool lowerOperand(const MachineOperand &MO, MCOperand &MCOp) const { 81 return MCInstLowering.lowerOperand(MO, MCOp); 82 } 83 84 void EmitJumpTableInfo() override; 85 void emitJumpTableEntry(const MachineJumpTableInfo *MJTI, 86 const MachineBasicBlock *MBB, unsigned JTI); 87 88 void LowerJumpTableDestSmall(MCStreamer &OutStreamer, const MachineInstr &MI); 89 90 void LowerSTACKMAP(MCStreamer &OutStreamer, StackMaps &SM, 91 const MachineInstr &MI); 92 void LowerPATCHPOINT(MCStreamer &OutStreamer, StackMaps &SM, 93 const MachineInstr &MI); 94 95 void LowerPATCHABLE_FUNCTION_ENTER(const MachineInstr &MI); 96 void LowerPATCHABLE_FUNCTION_EXIT(const MachineInstr &MI); 97 void LowerPATCHABLE_TAIL_CALL(const MachineInstr &MI); 98 99 void EmitSled(const MachineInstr &MI, SledKind Kind); 100 101 /// tblgen'erated driver function for lowering simple MI->MC 102 /// pseudo instructions. 103 bool emitPseudoExpansionLowering(MCStreamer &OutStreamer, 104 const MachineInstr *MI); 105 106 void EmitInstruction(const MachineInstr *MI) override; 107 108 void getAnalysisUsage(AnalysisUsage &AU) const override { 109 AsmPrinter::getAnalysisUsage(AU); 110 AU.setPreservesAll(); 111 } 112 113 bool runOnMachineFunction(MachineFunction &MF) override { 114 AArch64FI = MF.getInfo<AArch64FunctionInfo>(); 115 STI = static_cast<const AArch64Subtarget*>(&MF.getSubtarget()); 116 117 SetupMachineFunction(MF); 118 119 if (STI->isTargetCOFF()) { 120 bool Internal = MF.getFunction().hasInternalLinkage(); 121 COFF::SymbolStorageClass Scl = Internal ? COFF::IMAGE_SYM_CLASS_STATIC 122 : COFF::IMAGE_SYM_CLASS_EXTERNAL; 123 int Type = 124 COFF::IMAGE_SYM_DTYPE_FUNCTION << COFF::SCT_COMPLEX_TYPE_SHIFT; 125 126 OutStreamer->BeginCOFFSymbolDef(CurrentFnSym); 127 OutStreamer->EmitCOFFSymbolStorageClass(Scl); 128 OutStreamer->EmitCOFFSymbolType(Type); 129 OutStreamer->EndCOFFSymbolDef(); 130 } 131 132 // Emit the rest of the function body. 133 EmitFunctionBody(); 134 135 // Emit the XRay table for this function. 136 emitXRayTable(); 137 138 // We didn't modify anything. 139 return false; 140 } 141 142 private: 143 void printOperand(const MachineInstr *MI, unsigned OpNum, raw_ostream &O); 144 bool printAsmMRegister(const MachineOperand &MO, char Mode, raw_ostream &O); 145 bool printAsmRegInClass(const MachineOperand &MO, 146 const TargetRegisterClass *RC, bool isVector, 147 raw_ostream &O); 148 149 bool PrintAsmOperand(const MachineInstr *MI, unsigned OpNum, 150 unsigned AsmVariant, const char *ExtraCode, 151 raw_ostream &O) override; 152 bool PrintAsmMemoryOperand(const MachineInstr *MI, unsigned OpNum, 153 unsigned AsmVariant, const char *ExtraCode, 154 raw_ostream &O) override; 155 156 void PrintDebugValueComment(const MachineInstr *MI, raw_ostream &OS); 157 158 void EmitFunctionBodyEnd() override; 159 160 MCSymbol *GetCPISymbol(unsigned CPID) const override; 161 void EmitEndOfAsmFile(Module &M) override; 162 163 AArch64FunctionInfo *AArch64FI = nullptr; 164 165 /// Emit the LOHs contained in AArch64FI. 166 void EmitLOHs(); 167 168 /// Emit instruction to set float register to zero. 169 void EmitFMov0(const MachineInstr &MI); 170 171 using MInstToMCSymbol = std::map<const MachineInstr *, MCSymbol *>; 172 173 MInstToMCSymbol LOHInstToLabel; 174 }; 175 176 } // end anonymous namespace 177 178 void AArch64AsmPrinter::LowerPATCHABLE_FUNCTION_ENTER(const MachineInstr &MI) 179 { 180 EmitSled(MI, SledKind::FUNCTION_ENTER); 181 } 182 183 void AArch64AsmPrinter::LowerPATCHABLE_FUNCTION_EXIT(const MachineInstr &MI) 184 { 185 EmitSled(MI, SledKind::FUNCTION_EXIT); 186 } 187 188 void AArch64AsmPrinter::LowerPATCHABLE_TAIL_CALL(const MachineInstr &MI) 189 { 190 EmitSled(MI, SledKind::TAIL_CALL); 191 } 192 193 void AArch64AsmPrinter::EmitSled(const MachineInstr &MI, SledKind Kind) 194 { 195 static const int8_t NoopsInSledCount = 7; 196 // We want to emit the following pattern: 197 // 198 // .Lxray_sled_N: 199 // ALIGN 200 // B #32 201 // ; 7 NOP instructions (28 bytes) 202 // .tmpN 203 // 204 // We need the 28 bytes (7 instructions) because at runtime, we'd be patching 205 // over the full 32 bytes (8 instructions) with the following pattern: 206 // 207 // STP X0, X30, [SP, #-16]! ; push X0 and the link register to the stack 208 // LDR W0, #12 ; W0 := function ID 209 // LDR X16,#12 ; X16 := addr of __xray_FunctionEntry or __xray_FunctionExit 210 // BLR X16 ; call the tracing trampoline 211 // ;DATA: 32 bits of function ID 212 // ;DATA: lower 32 bits of the address of the trampoline 213 // ;DATA: higher 32 bits of the address of the trampoline 214 // LDP X0, X30, [SP], #16 ; pop X0 and the link register from the stack 215 // 216 OutStreamer->EmitCodeAlignment(4); 217 auto CurSled = OutContext.createTempSymbol("xray_sled_", true); 218 OutStreamer->EmitLabel(CurSled); 219 auto Target = OutContext.createTempSymbol(); 220 221 // Emit "B #32" instruction, which jumps over the next 28 bytes. 222 // The operand has to be the number of 4-byte instructions to jump over, 223 // including the current instruction. 224 EmitToStreamer(*OutStreamer, MCInstBuilder(AArch64::B).addImm(8)); 225 226 for (int8_t I = 0; I < NoopsInSledCount; I++) 227 EmitToStreamer(*OutStreamer, MCInstBuilder(AArch64::HINT).addImm(0)); 228 229 OutStreamer->EmitLabel(Target); 230 recordSled(CurSled, MI, Kind); 231 } 232 233 void AArch64AsmPrinter::EmitEndOfAsmFile(Module &M) { 234 const Triple &TT = TM.getTargetTriple(); 235 if (TT.isOSBinFormatMachO()) { 236 // Funny Darwin hack: This flag tells the linker that no global symbols 237 // contain code that falls through to other global symbols (e.g. the obvious 238 // implementation of multiple entry points). If this doesn't occur, the 239 // linker can safely perform dead code stripping. Since LLVM never 240 // generates code that does this, it is always safe to set. 241 OutStreamer->EmitAssemblerFlag(MCAF_SubsectionsViaSymbols); 242 emitStackMaps(SM); 243 } 244 } 245 246 void AArch64AsmPrinter::EmitLOHs() { 247 SmallVector<MCSymbol *, 3> MCArgs; 248 249 for (const auto &D : AArch64FI->getLOHContainer()) { 250 for (const MachineInstr *MI : D.getArgs()) { 251 MInstToMCSymbol::iterator LabelIt = LOHInstToLabel.find(MI); 252 assert(LabelIt != LOHInstToLabel.end() && 253 "Label hasn't been inserted for LOH related instruction"); 254 MCArgs.push_back(LabelIt->second); 255 } 256 OutStreamer->EmitLOHDirective(D.getKind(), MCArgs); 257 MCArgs.clear(); 258 } 259 } 260 261 void AArch64AsmPrinter::EmitFunctionBodyEnd() { 262 if (!AArch64FI->getLOHRelated().empty()) 263 EmitLOHs(); 264 } 265 266 /// GetCPISymbol - Return the symbol for the specified constant pool entry. 267 MCSymbol *AArch64AsmPrinter::GetCPISymbol(unsigned CPID) const { 268 // Darwin uses a linker-private symbol name for constant-pools (to 269 // avoid addends on the relocation?), ELF has no such concept and 270 // uses a normal private symbol. 271 if (!getDataLayout().getLinkerPrivateGlobalPrefix().empty()) 272 return OutContext.getOrCreateSymbol( 273 Twine(getDataLayout().getLinkerPrivateGlobalPrefix()) + "CPI" + 274 Twine(getFunctionNumber()) + "_" + Twine(CPID)); 275 276 return AsmPrinter::GetCPISymbol(CPID); 277 } 278 279 void AArch64AsmPrinter::printOperand(const MachineInstr *MI, unsigned OpNum, 280 raw_ostream &O) { 281 const MachineOperand &MO = MI->getOperand(OpNum); 282 switch (MO.getType()) { 283 default: 284 llvm_unreachable("<unknown operand type>"); 285 case MachineOperand::MO_Register: { 286 unsigned Reg = MO.getReg(); 287 assert(TargetRegisterInfo::isPhysicalRegister(Reg)); 288 assert(!MO.getSubReg() && "Subregs should be eliminated!"); 289 O << AArch64InstPrinter::getRegisterName(Reg); 290 break; 291 } 292 case MachineOperand::MO_Immediate: { 293 int64_t Imm = MO.getImm(); 294 O << '#' << Imm; 295 break; 296 } 297 case MachineOperand::MO_GlobalAddress: { 298 const GlobalValue *GV = MO.getGlobal(); 299 MCSymbol *Sym = getSymbol(GV); 300 301 // FIXME: Can we get anything other than a plain symbol here? 302 assert(!MO.getTargetFlags() && "Unknown operand target flag!"); 303 304 Sym->print(O, MAI); 305 printOffset(MO.getOffset(), O); 306 break; 307 } 308 case MachineOperand::MO_BlockAddress: { 309 MCSymbol *Sym = GetBlockAddressSymbol(MO.getBlockAddress()); 310 Sym->print(O, MAI); 311 break; 312 } 313 } 314 } 315 316 bool AArch64AsmPrinter::printAsmMRegister(const MachineOperand &MO, char Mode, 317 raw_ostream &O) { 318 unsigned Reg = MO.getReg(); 319 switch (Mode) { 320 default: 321 return true; // Unknown mode. 322 case 'w': 323 Reg = getWRegFromXReg(Reg); 324 break; 325 case 'x': 326 Reg = getXRegFromWReg(Reg); 327 break; 328 } 329 330 O << AArch64InstPrinter::getRegisterName(Reg); 331 return false; 332 } 333 334 // Prints the register in MO using class RC using the offset in the 335 // new register class. This should not be used for cross class 336 // printing. 337 bool AArch64AsmPrinter::printAsmRegInClass(const MachineOperand &MO, 338 const TargetRegisterClass *RC, 339 bool isVector, raw_ostream &O) { 340 assert(MO.isReg() && "Should only get here with a register!"); 341 const TargetRegisterInfo *RI = STI->getRegisterInfo(); 342 unsigned Reg = MO.getReg(); 343 unsigned RegToPrint = RC->getRegister(RI->getEncodingValue(Reg)); 344 assert(RI->regsOverlap(RegToPrint, Reg)); 345 O << AArch64InstPrinter::getRegisterName( 346 RegToPrint, isVector ? AArch64::vreg : AArch64::NoRegAltName); 347 return false; 348 } 349 350 bool AArch64AsmPrinter::PrintAsmOperand(const MachineInstr *MI, unsigned OpNum, 351 unsigned AsmVariant, 352 const char *ExtraCode, raw_ostream &O) { 353 const MachineOperand &MO = MI->getOperand(OpNum); 354 355 // First try the generic code, which knows about modifiers like 'c' and 'n'. 356 if (!AsmPrinter::PrintAsmOperand(MI, OpNum, AsmVariant, ExtraCode, O)) 357 return false; 358 359 // Does this asm operand have a single letter operand modifier? 360 if (ExtraCode && ExtraCode[0]) { 361 if (ExtraCode[1] != 0) 362 return true; // Unknown modifier. 363 364 switch (ExtraCode[0]) { 365 default: 366 return true; // Unknown modifier. 367 case 'a': // Print 'a' modifier 368 PrintAsmMemoryOperand(MI, OpNum, AsmVariant, ExtraCode, O); 369 return false; 370 case 'w': // Print W register 371 case 'x': // Print X register 372 if (MO.isReg()) 373 return printAsmMRegister(MO, ExtraCode[0], O); 374 if (MO.isImm() && MO.getImm() == 0) { 375 unsigned Reg = ExtraCode[0] == 'w' ? AArch64::WZR : AArch64::XZR; 376 O << AArch64InstPrinter::getRegisterName(Reg); 377 return false; 378 } 379 printOperand(MI, OpNum, O); 380 return false; 381 case 'b': // Print B register. 382 case 'h': // Print H register. 383 case 's': // Print S register. 384 case 'd': // Print D register. 385 case 'q': // Print Q register. 386 if (MO.isReg()) { 387 const TargetRegisterClass *RC; 388 switch (ExtraCode[0]) { 389 case 'b': 390 RC = &AArch64::FPR8RegClass; 391 break; 392 case 'h': 393 RC = &AArch64::FPR16RegClass; 394 break; 395 case 's': 396 RC = &AArch64::FPR32RegClass; 397 break; 398 case 'd': 399 RC = &AArch64::FPR64RegClass; 400 break; 401 case 'q': 402 RC = &AArch64::FPR128RegClass; 403 break; 404 default: 405 return true; 406 } 407 return printAsmRegInClass(MO, RC, false /* vector */, O); 408 } 409 printOperand(MI, OpNum, O); 410 return false; 411 } 412 } 413 414 // According to ARM, we should emit x and v registers unless we have a 415 // modifier. 416 if (MO.isReg()) { 417 unsigned Reg = MO.getReg(); 418 419 // If this is a w or x register, print an x register. 420 if (AArch64::GPR32allRegClass.contains(Reg) || 421 AArch64::GPR64allRegClass.contains(Reg)) 422 return printAsmMRegister(MO, 'x', O); 423 424 // If this is a b, h, s, d, or q register, print it as a v register. 425 return printAsmRegInClass(MO, &AArch64::FPR128RegClass, true /* vector */, 426 O); 427 } 428 429 printOperand(MI, OpNum, O); 430 return false; 431 } 432 433 bool AArch64AsmPrinter::PrintAsmMemoryOperand(const MachineInstr *MI, 434 unsigned OpNum, 435 unsigned AsmVariant, 436 const char *ExtraCode, 437 raw_ostream &O) { 438 if (ExtraCode && ExtraCode[0] && ExtraCode[0] != 'a') 439 return true; // Unknown modifier. 440 441 const MachineOperand &MO = MI->getOperand(OpNum); 442 assert(MO.isReg() && "unexpected inline asm memory operand"); 443 O << "[" << AArch64InstPrinter::getRegisterName(MO.getReg()) << "]"; 444 return false; 445 } 446 447 void AArch64AsmPrinter::PrintDebugValueComment(const MachineInstr *MI, 448 raw_ostream &OS) { 449 unsigned NOps = MI->getNumOperands(); 450 assert(NOps == 4); 451 OS << '\t' << MAI->getCommentString() << "DEBUG_VALUE: "; 452 // cast away const; DIetc do not take const operands for some reason. 453 OS << cast<DILocalVariable>(MI->getOperand(NOps - 2).getMetadata()) 454 ->getName(); 455 OS << " <- "; 456 // Frame address. Currently handles register +- offset only. 457 assert(MI->getOperand(0).isReg() && MI->getOperand(1).isImm()); 458 OS << '['; 459 printOperand(MI, 0, OS); 460 OS << '+'; 461 printOperand(MI, 1, OS); 462 OS << ']'; 463 OS << "+"; 464 printOperand(MI, NOps - 2, OS); 465 } 466 467 void AArch64AsmPrinter::EmitJumpTableInfo() { 468 const MachineJumpTableInfo *MJTI = MF->getJumpTableInfo(); 469 if (!MJTI) return; 470 471 const std::vector<MachineJumpTableEntry> &JT = MJTI->getJumpTables(); 472 if (JT.empty()) return; 473 474 const TargetLoweringObjectFile &TLOF = getObjFileLowering(); 475 MCSection *ReadOnlySec = TLOF.getSectionForJumpTable(MF->getFunction(), TM); 476 OutStreamer->SwitchSection(ReadOnlySec); 477 478 auto AFI = MF->getInfo<AArch64FunctionInfo>(); 479 for (unsigned JTI = 0, e = JT.size(); JTI != e; ++JTI) { 480 const std::vector<MachineBasicBlock*> &JTBBs = JT[JTI].MBBs; 481 482 // If this jump table was deleted, ignore it. 483 if (JTBBs.empty()) continue; 484 485 unsigned Size = AFI->getJumpTableEntrySize(JTI); 486 EmitAlignment(Log2_32(Size)); 487 OutStreamer->EmitLabel(GetJTISymbol(JTI)); 488 489 for (auto *JTBB : JTBBs) 490 emitJumpTableEntry(MJTI, JTBB, JTI); 491 } 492 } 493 494 void AArch64AsmPrinter::emitJumpTableEntry(const MachineJumpTableInfo *MJTI, 495 const MachineBasicBlock *MBB, 496 unsigned JTI) { 497 const MCExpr *Value = MCSymbolRefExpr::create(MBB->getSymbol(), OutContext); 498 auto AFI = MF->getInfo<AArch64FunctionInfo>(); 499 unsigned Size = AFI->getJumpTableEntrySize(JTI); 500 501 if (Size == 4) { 502 // .word LBB - LJTI 503 const TargetLowering *TLI = MF->getSubtarget().getTargetLowering(); 504 const MCExpr *Base = TLI->getPICJumpTableRelocBaseExpr(MF, JTI, OutContext); 505 Value = MCBinaryExpr::createSub(Value, Base, OutContext); 506 } else { 507 // .byte (LBB - LBB) >> 2 (or .hword) 508 const MCSymbol *BaseSym = AFI->getJumpTableEntryPCRelSymbol(JTI); 509 const MCExpr *Base = MCSymbolRefExpr::create(BaseSym, OutContext); 510 Value = MCBinaryExpr::createSub(Value, Base, OutContext); 511 Value = MCBinaryExpr::createLShr( 512 Value, MCConstantExpr::create(2, OutContext), OutContext); 513 } 514 515 OutStreamer->EmitValue(Value, Size); 516 } 517 518 /// Small jump tables contain an unsigned byte or half, representing the offset 519 /// from the lowest-addressed possible destination to the desired basic 520 /// block. Since all instructions are 4-byte aligned, this is further compressed 521 /// by counting in instructions rather than bytes (i.e. divided by 4). So, to 522 /// materialize the correct destination we need: 523 /// 524 /// adr xDest, .LBB0_0 525 /// ldrb wScratch, [xTable, xEntry] (with "lsl #1" for ldrh). 526 /// add xDest, xDest, xScratch, lsl #2 527 void AArch64AsmPrinter::LowerJumpTableDestSmall(llvm::MCStreamer &OutStreamer, 528 const llvm::MachineInstr &MI) { 529 unsigned DestReg = MI.getOperand(0).getReg(); 530 unsigned ScratchReg = MI.getOperand(1).getReg(); 531 unsigned ScratchRegW = 532 STI->getRegisterInfo()->getSubReg(ScratchReg, AArch64::sub_32); 533 unsigned TableReg = MI.getOperand(2).getReg(); 534 unsigned EntryReg = MI.getOperand(3).getReg(); 535 int JTIdx = MI.getOperand(4).getIndex(); 536 bool IsByteEntry = MI.getOpcode() == AArch64::JumpTableDest8; 537 538 // This has to be first because the compression pass based its reachability 539 // calculations on the start of the JumpTableDest instruction. 540 auto Label = 541 MF->getInfo<AArch64FunctionInfo>()->getJumpTableEntryPCRelSymbol(JTIdx); 542 EmitToStreamer(OutStreamer, MCInstBuilder(AArch64::ADR) 543 .addReg(DestReg) 544 .addExpr(MCSymbolRefExpr::create( 545 Label, MF->getContext()))); 546 547 // Load the number of instruction-steps to offset from the label. 548 unsigned LdrOpcode = IsByteEntry ? AArch64::LDRBBroX : AArch64::LDRHHroX; 549 EmitToStreamer(OutStreamer, MCInstBuilder(LdrOpcode) 550 .addReg(ScratchRegW) 551 .addReg(TableReg) 552 .addReg(EntryReg) 553 .addImm(0) 554 .addImm(IsByteEntry ? 0 : 1)); 555 556 // Multiply the steps by 4 and add to the already materialized base label 557 // address. 558 EmitToStreamer(OutStreamer, MCInstBuilder(AArch64::ADDXrs) 559 .addReg(DestReg) 560 .addReg(DestReg) 561 .addReg(ScratchReg) 562 .addImm(2)); 563 } 564 565 void AArch64AsmPrinter::LowerSTACKMAP(MCStreamer &OutStreamer, StackMaps &SM, 566 const MachineInstr &MI) { 567 unsigned NumNOPBytes = StackMapOpers(&MI).getNumPatchBytes(); 568 569 SM.recordStackMap(MI); 570 assert(NumNOPBytes % 4 == 0 && "Invalid number of NOP bytes requested!"); 571 572 // Scan ahead to trim the shadow. 573 const MachineBasicBlock &MBB = *MI.getParent(); 574 MachineBasicBlock::const_iterator MII(MI); 575 ++MII; 576 while (NumNOPBytes > 0) { 577 if (MII == MBB.end() || MII->isCall() || 578 MII->getOpcode() == AArch64::DBG_VALUE || 579 MII->getOpcode() == TargetOpcode::PATCHPOINT || 580 MII->getOpcode() == TargetOpcode::STACKMAP) 581 break; 582 ++MII; 583 NumNOPBytes -= 4; 584 } 585 586 // Emit nops. 587 for (unsigned i = 0; i < NumNOPBytes; i += 4) 588 EmitToStreamer(OutStreamer, MCInstBuilder(AArch64::HINT).addImm(0)); 589 } 590 591 // Lower a patchpoint of the form: 592 // [<def>], <id>, <numBytes>, <target>, <numArgs> 593 void AArch64AsmPrinter::LowerPATCHPOINT(MCStreamer &OutStreamer, StackMaps &SM, 594 const MachineInstr &MI) { 595 SM.recordPatchPoint(MI); 596 597 PatchPointOpers Opers(&MI); 598 599 int64_t CallTarget = Opers.getCallTarget().getImm(); 600 unsigned EncodedBytes = 0; 601 if (CallTarget) { 602 assert((CallTarget & 0xFFFFFFFFFFFF) == CallTarget && 603 "High 16 bits of call target should be zero."); 604 unsigned ScratchReg = MI.getOperand(Opers.getNextScratchIdx()).getReg(); 605 EncodedBytes = 16; 606 // Materialize the jump address: 607 EmitToStreamer(OutStreamer, MCInstBuilder(AArch64::MOVZXi) 608 .addReg(ScratchReg) 609 .addImm((CallTarget >> 32) & 0xFFFF) 610 .addImm(32)); 611 EmitToStreamer(OutStreamer, MCInstBuilder(AArch64::MOVKXi) 612 .addReg(ScratchReg) 613 .addReg(ScratchReg) 614 .addImm((CallTarget >> 16) & 0xFFFF) 615 .addImm(16)); 616 EmitToStreamer(OutStreamer, MCInstBuilder(AArch64::MOVKXi) 617 .addReg(ScratchReg) 618 .addReg(ScratchReg) 619 .addImm(CallTarget & 0xFFFF) 620 .addImm(0)); 621 EmitToStreamer(OutStreamer, MCInstBuilder(AArch64::BLR).addReg(ScratchReg)); 622 } 623 // Emit padding. 624 unsigned NumBytes = Opers.getNumPatchBytes(); 625 assert(NumBytes >= EncodedBytes && 626 "Patchpoint can't request size less than the length of a call."); 627 assert((NumBytes - EncodedBytes) % 4 == 0 && 628 "Invalid number of NOP bytes requested!"); 629 for (unsigned i = EncodedBytes; i < NumBytes; i += 4) 630 EmitToStreamer(OutStreamer, MCInstBuilder(AArch64::HINT).addImm(0)); 631 } 632 633 void AArch64AsmPrinter::EmitFMov0(const MachineInstr &MI) { 634 unsigned DestReg = MI.getOperand(0).getReg(); 635 if (STI->hasZeroCycleZeroingFP() && !STI->hasZeroCycleZeroingFPWorkaround()) { 636 // Convert H/S/D register to corresponding Q register 637 if (AArch64::H0 <= DestReg && DestReg <= AArch64::H31) 638 DestReg = AArch64::Q0 + (DestReg - AArch64::H0); 639 else if (AArch64::S0 <= DestReg && DestReg <= AArch64::S31) 640 DestReg = AArch64::Q0 + (DestReg - AArch64::S0); 641 else { 642 assert(AArch64::D0 <= DestReg && DestReg <= AArch64::D31); 643 DestReg = AArch64::Q0 + (DestReg - AArch64::D0); 644 } 645 MCInst MOVI; 646 MOVI.setOpcode(AArch64::MOVIv2d_ns); 647 MOVI.addOperand(MCOperand::createReg(DestReg)); 648 MOVI.addOperand(MCOperand::createImm(0)); 649 EmitToStreamer(*OutStreamer, MOVI); 650 } else { 651 MCInst FMov; 652 switch (MI.getOpcode()) { 653 default: llvm_unreachable("Unexpected opcode"); 654 case AArch64::FMOVH0: 655 FMov.setOpcode(AArch64::FMOVWHr); 656 FMov.addOperand(MCOperand::createReg(DestReg)); 657 FMov.addOperand(MCOperand::createReg(AArch64::WZR)); 658 break; 659 case AArch64::FMOVS0: 660 FMov.setOpcode(AArch64::FMOVWSr); 661 FMov.addOperand(MCOperand::createReg(DestReg)); 662 FMov.addOperand(MCOperand::createReg(AArch64::WZR)); 663 break; 664 case AArch64::FMOVD0: 665 FMov.setOpcode(AArch64::FMOVXDr); 666 FMov.addOperand(MCOperand::createReg(DestReg)); 667 FMov.addOperand(MCOperand::createReg(AArch64::XZR)); 668 break; 669 } 670 EmitToStreamer(*OutStreamer, FMov); 671 } 672 } 673 674 // Simple pseudo-instructions have their lowering (with expansion to real 675 // instructions) auto-generated. 676 #include "AArch64GenMCPseudoLowering.inc" 677 678 void AArch64AsmPrinter::EmitInstruction(const MachineInstr *MI) { 679 // Do any auto-generated pseudo lowerings. 680 if (emitPseudoExpansionLowering(*OutStreamer, MI)) 681 return; 682 683 if (AArch64FI->getLOHRelated().count(MI)) { 684 // Generate a label for LOH related instruction 685 MCSymbol *LOHLabel = createTempSymbol("loh"); 686 // Associate the instruction with the label 687 LOHInstToLabel[MI] = LOHLabel; 688 OutStreamer->EmitLabel(LOHLabel); 689 } 690 691 AArch64TargetStreamer *TS = 692 static_cast<AArch64TargetStreamer *>(OutStreamer->getTargetStreamer()); 693 // Do any manual lowerings. 694 switch (MI->getOpcode()) { 695 default: 696 break; 697 case AArch64::MOVIv2d_ns: 698 // If the target has <rdar://problem/16473581>, lower this 699 // instruction to movi.16b instead. 700 if (STI->hasZeroCycleZeroingFPWorkaround() && 701 MI->getOperand(1).getImm() == 0) { 702 MCInst TmpInst; 703 TmpInst.setOpcode(AArch64::MOVIv16b_ns); 704 TmpInst.addOperand(MCOperand::createReg(MI->getOperand(0).getReg())); 705 TmpInst.addOperand(MCOperand::createImm(MI->getOperand(1).getImm())); 706 EmitToStreamer(*OutStreamer, TmpInst); 707 return; 708 } 709 break; 710 711 case AArch64::DBG_VALUE: { 712 if (isVerbose() && OutStreamer->hasRawTextSupport()) { 713 SmallString<128> TmpStr; 714 raw_svector_ostream OS(TmpStr); 715 PrintDebugValueComment(MI, OS); 716 OutStreamer->EmitRawText(StringRef(OS.str())); 717 } 718 return; 719 720 case AArch64::EMITBKEY: { 721 ExceptionHandling ExceptionHandlingType = MAI->getExceptionHandlingType(); 722 if (ExceptionHandlingType != ExceptionHandling::DwarfCFI && 723 ExceptionHandlingType != ExceptionHandling::ARM) 724 return; 725 726 if (needsCFIMoves() == CFI_M_None) 727 return; 728 729 OutStreamer->EmitCFIBKeyFrame(); 730 return; 731 } 732 } 733 734 // Tail calls use pseudo instructions so they have the proper code-gen 735 // attributes (isCall, isReturn, etc.). We lower them to the real 736 // instruction here. 737 case AArch64::TCRETURNri: 738 case AArch64::TCRETURNriBTI: 739 case AArch64::TCRETURNriALL: { 740 MCInst TmpInst; 741 TmpInst.setOpcode(AArch64::BR); 742 TmpInst.addOperand(MCOperand::createReg(MI->getOperand(0).getReg())); 743 EmitToStreamer(*OutStreamer, TmpInst); 744 return; 745 } 746 case AArch64::TCRETURNdi: { 747 MCOperand Dest; 748 MCInstLowering.lowerOperand(MI->getOperand(0), Dest); 749 MCInst TmpInst; 750 TmpInst.setOpcode(AArch64::B); 751 TmpInst.addOperand(Dest); 752 EmitToStreamer(*OutStreamer, TmpInst); 753 return; 754 } 755 case AArch64::TLSDESC_CALLSEQ: { 756 /// lower this to: 757 /// adrp x0, :tlsdesc:var 758 /// ldr x1, [x0, #:tlsdesc_lo12:var] 759 /// add x0, x0, #:tlsdesc_lo12:var 760 /// .tlsdesccall var 761 /// blr x1 762 /// (TPIDR_EL0 offset now in x0) 763 const MachineOperand &MO_Sym = MI->getOperand(0); 764 MachineOperand MO_TLSDESC_LO12(MO_Sym), MO_TLSDESC(MO_Sym); 765 MCOperand Sym, SymTLSDescLo12, SymTLSDesc; 766 MO_TLSDESC_LO12.setTargetFlags(AArch64II::MO_TLS | AArch64II::MO_PAGEOFF); 767 MO_TLSDESC.setTargetFlags(AArch64II::MO_TLS | AArch64II::MO_PAGE); 768 MCInstLowering.lowerOperand(MO_Sym, Sym); 769 MCInstLowering.lowerOperand(MO_TLSDESC_LO12, SymTLSDescLo12); 770 MCInstLowering.lowerOperand(MO_TLSDESC, SymTLSDesc); 771 772 MCInst Adrp; 773 Adrp.setOpcode(AArch64::ADRP); 774 Adrp.addOperand(MCOperand::createReg(AArch64::X0)); 775 Adrp.addOperand(SymTLSDesc); 776 EmitToStreamer(*OutStreamer, Adrp); 777 778 MCInst Ldr; 779 Ldr.setOpcode(AArch64::LDRXui); 780 Ldr.addOperand(MCOperand::createReg(AArch64::X1)); 781 Ldr.addOperand(MCOperand::createReg(AArch64::X0)); 782 Ldr.addOperand(SymTLSDescLo12); 783 Ldr.addOperand(MCOperand::createImm(0)); 784 EmitToStreamer(*OutStreamer, Ldr); 785 786 MCInst Add; 787 Add.setOpcode(AArch64::ADDXri); 788 Add.addOperand(MCOperand::createReg(AArch64::X0)); 789 Add.addOperand(MCOperand::createReg(AArch64::X0)); 790 Add.addOperand(SymTLSDescLo12); 791 Add.addOperand(MCOperand::createImm(AArch64_AM::getShiftValue(0))); 792 EmitToStreamer(*OutStreamer, Add); 793 794 // Emit a relocation-annotation. This expands to no code, but requests 795 // the following instruction gets an R_AARCH64_TLSDESC_CALL. 796 MCInst TLSDescCall; 797 TLSDescCall.setOpcode(AArch64::TLSDESCCALL); 798 TLSDescCall.addOperand(Sym); 799 EmitToStreamer(*OutStreamer, TLSDescCall); 800 801 MCInst Blr; 802 Blr.setOpcode(AArch64::BLR); 803 Blr.addOperand(MCOperand::createReg(AArch64::X1)); 804 EmitToStreamer(*OutStreamer, Blr); 805 806 return; 807 } 808 809 case AArch64::JumpTableDest32: { 810 // We want: 811 // ldrsw xScratch, [xTable, xEntry, lsl #2] 812 // add xDest, xTable, xScratch 813 unsigned DestReg = MI->getOperand(0).getReg(), 814 ScratchReg = MI->getOperand(1).getReg(), 815 TableReg = MI->getOperand(2).getReg(), 816 EntryReg = MI->getOperand(3).getReg(); 817 EmitToStreamer(*OutStreamer, MCInstBuilder(AArch64::LDRSWroX) 818 .addReg(ScratchReg) 819 .addReg(TableReg) 820 .addReg(EntryReg) 821 .addImm(0) 822 .addImm(1)); 823 EmitToStreamer(*OutStreamer, MCInstBuilder(AArch64::ADDXrs) 824 .addReg(DestReg) 825 .addReg(TableReg) 826 .addReg(ScratchReg) 827 .addImm(0)); 828 return; 829 } 830 case AArch64::JumpTableDest16: 831 case AArch64::JumpTableDest8: 832 LowerJumpTableDestSmall(*OutStreamer, *MI); 833 return; 834 835 case AArch64::FMOVH0: 836 case AArch64::FMOVS0: 837 case AArch64::FMOVD0: 838 EmitFMov0(*MI); 839 return; 840 841 case TargetOpcode::STACKMAP: 842 return LowerSTACKMAP(*OutStreamer, SM, *MI); 843 844 case TargetOpcode::PATCHPOINT: 845 return LowerPATCHPOINT(*OutStreamer, SM, *MI); 846 847 case TargetOpcode::PATCHABLE_FUNCTION_ENTER: 848 LowerPATCHABLE_FUNCTION_ENTER(*MI); 849 return; 850 851 case TargetOpcode::PATCHABLE_FUNCTION_EXIT: 852 LowerPATCHABLE_FUNCTION_EXIT(*MI); 853 return; 854 855 case TargetOpcode::PATCHABLE_TAIL_CALL: 856 LowerPATCHABLE_TAIL_CALL(*MI); 857 return; 858 859 case AArch64::SEH_StackAlloc: 860 TS->EmitARM64WinCFIAllocStack(MI->getOperand(0).getImm()); 861 return; 862 863 case AArch64::SEH_SaveFPLR: 864 TS->EmitARM64WinCFISaveFPLR(MI->getOperand(0).getImm()); 865 return; 866 867 case AArch64::SEH_SaveFPLR_X: 868 assert(MI->getOperand(0).getImm() < 0 && 869 "Pre increment SEH opcode must have a negative offset"); 870 TS->EmitARM64WinCFISaveFPLRX(-MI->getOperand(0).getImm()); 871 return; 872 873 case AArch64::SEH_SaveReg: 874 TS->EmitARM64WinCFISaveReg(MI->getOperand(0).getImm(), 875 MI->getOperand(1).getImm()); 876 return; 877 878 case AArch64::SEH_SaveReg_X: 879 assert(MI->getOperand(1).getImm() < 0 && 880 "Pre increment SEH opcode must have a negative offset"); 881 TS->EmitARM64WinCFISaveRegX(MI->getOperand(0).getImm(), 882 -MI->getOperand(1).getImm()); 883 return; 884 885 case AArch64::SEH_SaveRegP: 886 assert((MI->getOperand(1).getImm() - MI->getOperand(0).getImm() == 1) && 887 "Non-consecutive registers not allowed for save_regp"); 888 TS->EmitARM64WinCFISaveRegP(MI->getOperand(0).getImm(), 889 MI->getOperand(2).getImm()); 890 return; 891 892 case AArch64::SEH_SaveRegP_X: 893 assert((MI->getOperand(1).getImm() - MI->getOperand(0).getImm() == 1) && 894 "Non-consecutive registers not allowed for save_regp_x"); 895 assert(MI->getOperand(2).getImm() < 0 && 896 "Pre increment SEH opcode must have a negative offset"); 897 TS->EmitARM64WinCFISaveRegPX(MI->getOperand(0).getImm(), 898 -MI->getOperand(2).getImm()); 899 return; 900 901 case AArch64::SEH_SaveFReg: 902 TS->EmitARM64WinCFISaveFReg(MI->getOperand(0).getImm(), 903 MI->getOperand(1).getImm()); 904 return; 905 906 case AArch64::SEH_SaveFReg_X: 907 assert(MI->getOperand(1).getImm() < 0 && 908 "Pre increment SEH opcode must have a negative offset"); 909 TS->EmitARM64WinCFISaveFRegX(MI->getOperand(0).getImm(), 910 -MI->getOperand(1).getImm()); 911 return; 912 913 case AArch64::SEH_SaveFRegP: 914 assert((MI->getOperand(1).getImm() - MI->getOperand(0).getImm() == 1) && 915 "Non-consecutive registers not allowed for save_regp"); 916 TS->EmitARM64WinCFISaveFRegP(MI->getOperand(0).getImm(), 917 MI->getOperand(2).getImm()); 918 return; 919 920 case AArch64::SEH_SaveFRegP_X: 921 assert((MI->getOperand(1).getImm() - MI->getOperand(0).getImm() == 1) && 922 "Non-consecutive registers not allowed for save_regp_x"); 923 assert(MI->getOperand(2).getImm() < 0 && 924 "Pre increment SEH opcode must have a negative offset"); 925 TS->EmitARM64WinCFISaveFRegPX(MI->getOperand(0).getImm(), 926 -MI->getOperand(2).getImm()); 927 return; 928 929 case AArch64::SEH_SetFP: 930 TS->EmitARM64WinCFISetFP(); 931 return; 932 933 case AArch64::SEH_AddFP: 934 TS->EmitARM64WinCFIAddFP(MI->getOperand(0).getImm()); 935 return; 936 937 case AArch64::SEH_Nop: 938 TS->EmitARM64WinCFINop(); 939 return; 940 941 case AArch64::SEH_PrologEnd: 942 TS->EmitARM64WinCFIPrologEnd(); 943 return; 944 945 case AArch64::SEH_EpilogStart: 946 TS->EmitARM64WinCFIEpilogStart(); 947 return; 948 949 case AArch64::SEH_EpilogEnd: 950 TS->EmitARM64WinCFIEpilogEnd(); 951 return; 952 } 953 954 // Finally, do the automated lowerings for everything else. 955 MCInst TmpInst; 956 MCInstLowering.Lower(MI, TmpInst); 957 EmitToStreamer(*OutStreamer, TmpInst); 958 } 959 960 // Force static initialization. 961 extern "C" void LLVMInitializeAArch64AsmPrinter() { 962 RegisterAsmPrinter<AArch64AsmPrinter> X(getTheAArch64leTarget()); 963 RegisterAsmPrinter<AArch64AsmPrinter> Y(getTheAArch64beTarget()); 964 RegisterAsmPrinter<AArch64AsmPrinter> Z(getTheARM64Target()); 965 } 966