1d88c1a5aSDimitry Andric //===-- SIMCCodeEmitter.cpp - SI Code Emitter -----------------------------===// 28f0fd8f6SDimitry Andric // 38f0fd8f6SDimitry Andric // The LLVM Compiler Infrastructure 48f0fd8f6SDimitry Andric // 58f0fd8f6SDimitry Andric // This file is distributed under the University of Illinois Open Source 68f0fd8f6SDimitry Andric // License. See LICENSE.TXT for details. 78f0fd8f6SDimitry Andric // 88f0fd8f6SDimitry Andric //===----------------------------------------------------------------------===// 98f0fd8f6SDimitry Andric // 108f0fd8f6SDimitry Andric /// \file 118f0fd8f6SDimitry Andric /// \brief The SI code emitter produces machine code that can be executed 128f0fd8f6SDimitry Andric /// directly on the GPU device. 138f0fd8f6SDimitry Andric // 148f0fd8f6SDimitry Andric //===----------------------------------------------------------------------===// 158f0fd8f6SDimitry Andric 168f0fd8f6SDimitry Andric #include "AMDGPU.h" 178f0fd8f6SDimitry Andric #include "MCTargetDesc/AMDGPUFixupKinds.h" 188f0fd8f6SDimitry Andric #include "MCTargetDesc/AMDGPUMCCodeEmitter.h" 198f0fd8f6SDimitry Andric #include "MCTargetDesc/AMDGPUMCTargetDesc.h" 20d88c1a5aSDimitry Andric #include "Utils/AMDGPUBaseInfo.h" 218f0fd8f6SDimitry Andric #include "llvm/MC/MCCodeEmitter.h" 228f0fd8f6SDimitry Andric #include "llvm/MC/MCContext.h" 23d88c1a5aSDimitry Andric #include "llvm/MC/MCExpr.h" 248f0fd8f6SDimitry Andric #include "llvm/MC/MCFixup.h" 258f0fd8f6SDimitry Andric #include "llvm/MC/MCInst.h" 26d88c1a5aSDimitry Andric #include "llvm/MC/MCInstrDesc.h" 278f0fd8f6SDimitry Andric #include "llvm/MC/MCInstrInfo.h" 288f0fd8f6SDimitry Andric #include "llvm/MC/MCRegisterInfo.h" 298f0fd8f6SDimitry Andric #include "llvm/MC/MCSubtargetInfo.h" 30d88c1a5aSDimitry Andric #include "llvm/MC/MCSymbol.h" 31d88c1a5aSDimitry Andric #include "llvm/Support/Casting.h" 32d88c1a5aSDimitry Andric #include "llvm/Support/ErrorHandling.h" 33d88c1a5aSDimitry Andric #include "llvm/Support/MathExtras.h" 348f0fd8f6SDimitry Andric #include "llvm/Support/raw_ostream.h" 35d88c1a5aSDimitry Andric #include <cassert> 36d88c1a5aSDimitry Andric #include <cstdint> 37d88c1a5aSDimitry Andric #include <cstdlib> 388f0fd8f6SDimitry Andric 398f0fd8f6SDimitry Andric using namespace llvm; 408f0fd8f6SDimitry Andric 418f0fd8f6SDimitry Andric namespace { 428f0fd8f6SDimitry Andric 438f0fd8f6SDimitry Andric class SIMCCodeEmitter : public AMDGPUMCCodeEmitter { 448f0fd8f6SDimitry Andric const MCRegisterInfo &MRI; 458f0fd8f6SDimitry Andric 468f0fd8f6SDimitry Andric /// \brief Encode an fp or int literal 47d88c1a5aSDimitry Andric uint32_t getLitEncoding(const MCOperand &MO, const MCOperandInfo &OpInfo, 48d88c1a5aSDimitry Andric const MCSubtargetInfo &STI) const; 498f0fd8f6SDimitry Andric 508f0fd8f6SDimitry Andric public: 518f0fd8f6SDimitry Andric SIMCCodeEmitter(const MCInstrInfo &mcii, const MCRegisterInfo &mri, 528f0fd8f6SDimitry Andric MCContext &ctx) 53d88c1a5aSDimitry Andric : AMDGPUMCCodeEmitter(mcii), MRI(mri) {} 54d88c1a5aSDimitry Andric SIMCCodeEmitter(const SIMCCodeEmitter &) = delete; 55d88c1a5aSDimitry Andric SIMCCodeEmitter &operator=(const SIMCCodeEmitter &) = delete; 568f0fd8f6SDimitry Andric 578f0fd8f6SDimitry Andric /// \brief Encode the instruction and write it to the OS. 588f0fd8f6SDimitry Andric void encodeInstruction(const MCInst &MI, raw_ostream &OS, 598f0fd8f6SDimitry Andric SmallVectorImpl<MCFixup> &Fixups, 608f0fd8f6SDimitry Andric const MCSubtargetInfo &STI) const override; 618f0fd8f6SDimitry Andric 628f0fd8f6SDimitry Andric /// \returns the encoding for an MCOperand. 638f0fd8f6SDimitry Andric uint64_t getMachineOpValue(const MCInst &MI, const MCOperand &MO, 648f0fd8f6SDimitry Andric SmallVectorImpl<MCFixup> &Fixups, 658f0fd8f6SDimitry Andric const MCSubtargetInfo &STI) const override; 668f0fd8f6SDimitry Andric 678f0fd8f6SDimitry Andric /// \brief Use a fixup to encode the simm16 field for SOPP branch 688f0fd8f6SDimitry Andric /// instructions. 698f0fd8f6SDimitry Andric unsigned getSOPPBrEncoding(const MCInst &MI, unsigned OpNo, 708f0fd8f6SDimitry Andric SmallVectorImpl<MCFixup> &Fixups, 718f0fd8f6SDimitry Andric const MCSubtargetInfo &STI) const override; 72302affcbSDimitry Andric 73302affcbSDimitry Andric unsigned getSDWA9SrcEncoding(const MCInst &MI, unsigned OpNo, 74302affcbSDimitry Andric SmallVectorImpl<MCFixup> &Fixups, 75302affcbSDimitry Andric const MCSubtargetInfo &STI) const override; 76302affcbSDimitry Andric 77302affcbSDimitry Andric unsigned getSDWA9VopcDstEncoding(const MCInst &MI, unsigned OpNo, 78302affcbSDimitry Andric SmallVectorImpl<MCFixup> &Fixups, 79302affcbSDimitry Andric const MCSubtargetInfo &STI) const override; 808f0fd8f6SDimitry Andric }; 818f0fd8f6SDimitry Andric 82d88c1a5aSDimitry Andric } // end anonymous namespace 838f0fd8f6SDimitry Andric 848f0fd8f6SDimitry Andric MCCodeEmitter *llvm::createSIMCCodeEmitter(const MCInstrInfo &MCII, 858f0fd8f6SDimitry Andric const MCRegisterInfo &MRI, 868f0fd8f6SDimitry Andric MCContext &Ctx) { 878f0fd8f6SDimitry Andric return new SIMCCodeEmitter(MCII, MRI, Ctx); 888f0fd8f6SDimitry Andric } 898f0fd8f6SDimitry Andric 908f0fd8f6SDimitry Andric // Returns the encoding value to use if the given integer is an integer inline 918f0fd8f6SDimitry Andric // immediate value, or 0 if it is not. 928f0fd8f6SDimitry Andric template <typename IntTy> 938f0fd8f6SDimitry Andric static uint32_t getIntInlineImmEncoding(IntTy Imm) { 948f0fd8f6SDimitry Andric if (Imm >= 0 && Imm <= 64) 958f0fd8f6SDimitry Andric return 128 + Imm; 968f0fd8f6SDimitry Andric 978f0fd8f6SDimitry Andric if (Imm >= -16 && Imm <= -1) 988f0fd8f6SDimitry Andric return 192 + std::abs(Imm); 998f0fd8f6SDimitry Andric 1008f0fd8f6SDimitry Andric return 0; 1018f0fd8f6SDimitry Andric } 1028f0fd8f6SDimitry Andric 103d88c1a5aSDimitry Andric static uint32_t getLit16Encoding(uint16_t Val, const MCSubtargetInfo &STI) { 104d88c1a5aSDimitry Andric uint16_t IntImm = getIntInlineImmEncoding(static_cast<int16_t>(Val)); 105d88c1a5aSDimitry Andric if (IntImm != 0) 106d88c1a5aSDimitry Andric return IntImm; 107d88c1a5aSDimitry Andric 108d88c1a5aSDimitry Andric if (Val == 0x3800) // 0.5 109d88c1a5aSDimitry Andric return 240; 110d88c1a5aSDimitry Andric 111d88c1a5aSDimitry Andric if (Val == 0xB800) // -0.5 112d88c1a5aSDimitry Andric return 241; 113d88c1a5aSDimitry Andric 114d88c1a5aSDimitry Andric if (Val == 0x3C00) // 1.0 115d88c1a5aSDimitry Andric return 242; 116d88c1a5aSDimitry Andric 117d88c1a5aSDimitry Andric if (Val == 0xBC00) // -1.0 118d88c1a5aSDimitry Andric return 243; 119d88c1a5aSDimitry Andric 120d88c1a5aSDimitry Andric if (Val == 0x4000) // 2.0 121d88c1a5aSDimitry Andric return 244; 122d88c1a5aSDimitry Andric 123d88c1a5aSDimitry Andric if (Val == 0xC000) // -2.0 124d88c1a5aSDimitry Andric return 245; 125d88c1a5aSDimitry Andric 126d88c1a5aSDimitry Andric if (Val == 0x4400) // 4.0 127d88c1a5aSDimitry Andric return 246; 128d88c1a5aSDimitry Andric 129d88c1a5aSDimitry Andric if (Val == 0xC400) // -4.0 130d88c1a5aSDimitry Andric return 247; 131d88c1a5aSDimitry Andric 132d88c1a5aSDimitry Andric if (Val == 0x3118 && // 1.0 / (2.0 * pi) 133d88c1a5aSDimitry Andric STI.getFeatureBits()[AMDGPU::FeatureInv2PiInlineImm]) 134d88c1a5aSDimitry Andric return 248; 135d88c1a5aSDimitry Andric 136d88c1a5aSDimitry Andric return 255; 137d88c1a5aSDimitry Andric } 138d88c1a5aSDimitry Andric 139d88c1a5aSDimitry Andric static uint32_t getLit32Encoding(uint32_t Val, const MCSubtargetInfo &STI) { 1408f0fd8f6SDimitry Andric uint32_t IntImm = getIntInlineImmEncoding(static_cast<int32_t>(Val)); 1418f0fd8f6SDimitry Andric if (IntImm != 0) 1428f0fd8f6SDimitry Andric return IntImm; 1438f0fd8f6SDimitry Andric 1448f0fd8f6SDimitry Andric if (Val == FloatToBits(0.5f)) 1458f0fd8f6SDimitry Andric return 240; 1468f0fd8f6SDimitry Andric 1478f0fd8f6SDimitry Andric if (Val == FloatToBits(-0.5f)) 1488f0fd8f6SDimitry Andric return 241; 1498f0fd8f6SDimitry Andric 1508f0fd8f6SDimitry Andric if (Val == FloatToBits(1.0f)) 1518f0fd8f6SDimitry Andric return 242; 1528f0fd8f6SDimitry Andric 1538f0fd8f6SDimitry Andric if (Val == FloatToBits(-1.0f)) 1548f0fd8f6SDimitry Andric return 243; 1558f0fd8f6SDimitry Andric 1568f0fd8f6SDimitry Andric if (Val == FloatToBits(2.0f)) 1578f0fd8f6SDimitry Andric return 244; 1588f0fd8f6SDimitry Andric 1598f0fd8f6SDimitry Andric if (Val == FloatToBits(-2.0f)) 1608f0fd8f6SDimitry Andric return 245; 1618f0fd8f6SDimitry Andric 1628f0fd8f6SDimitry Andric if (Val == FloatToBits(4.0f)) 1638f0fd8f6SDimitry Andric return 246; 1648f0fd8f6SDimitry Andric 1658f0fd8f6SDimitry Andric if (Val == FloatToBits(-4.0f)) 1668f0fd8f6SDimitry Andric return 247; 1678f0fd8f6SDimitry Andric 168d88c1a5aSDimitry Andric if (Val == 0x3e22f983 && // 1.0 / (2.0 * pi) 169d88c1a5aSDimitry Andric STI.getFeatureBits()[AMDGPU::FeatureInv2PiInlineImm]) 170d88c1a5aSDimitry Andric return 248; 171d88c1a5aSDimitry Andric 1728f0fd8f6SDimitry Andric return 255; 1738f0fd8f6SDimitry Andric } 1748f0fd8f6SDimitry Andric 175d88c1a5aSDimitry Andric static uint32_t getLit64Encoding(uint64_t Val, const MCSubtargetInfo &STI) { 1768f0fd8f6SDimitry Andric uint32_t IntImm = getIntInlineImmEncoding(static_cast<int64_t>(Val)); 1778f0fd8f6SDimitry Andric if (IntImm != 0) 1788f0fd8f6SDimitry Andric return IntImm; 1798f0fd8f6SDimitry Andric 1808f0fd8f6SDimitry Andric if (Val == DoubleToBits(0.5)) 1818f0fd8f6SDimitry Andric return 240; 1828f0fd8f6SDimitry Andric 1838f0fd8f6SDimitry Andric if (Val == DoubleToBits(-0.5)) 1848f0fd8f6SDimitry Andric return 241; 1858f0fd8f6SDimitry Andric 1868f0fd8f6SDimitry Andric if (Val == DoubleToBits(1.0)) 1878f0fd8f6SDimitry Andric return 242; 1888f0fd8f6SDimitry Andric 1898f0fd8f6SDimitry Andric if (Val == DoubleToBits(-1.0)) 1908f0fd8f6SDimitry Andric return 243; 1918f0fd8f6SDimitry Andric 1928f0fd8f6SDimitry Andric if (Val == DoubleToBits(2.0)) 1938f0fd8f6SDimitry Andric return 244; 1948f0fd8f6SDimitry Andric 1958f0fd8f6SDimitry Andric if (Val == DoubleToBits(-2.0)) 1968f0fd8f6SDimitry Andric return 245; 1978f0fd8f6SDimitry Andric 1988f0fd8f6SDimitry Andric if (Val == DoubleToBits(4.0)) 1998f0fd8f6SDimitry Andric return 246; 2008f0fd8f6SDimitry Andric 2018f0fd8f6SDimitry Andric if (Val == DoubleToBits(-4.0)) 2028f0fd8f6SDimitry Andric return 247; 2038f0fd8f6SDimitry Andric 204d88c1a5aSDimitry Andric if (Val == 0x3fc45f306dc9c882 && // 1.0 / (2.0 * pi) 205d88c1a5aSDimitry Andric STI.getFeatureBits()[AMDGPU::FeatureInv2PiInlineImm]) 206d88c1a5aSDimitry Andric return 248; 207d88c1a5aSDimitry Andric 2088f0fd8f6SDimitry Andric return 255; 2098f0fd8f6SDimitry Andric } 2108f0fd8f6SDimitry Andric 2118f0fd8f6SDimitry Andric uint32_t SIMCCodeEmitter::getLitEncoding(const MCOperand &MO, 212d88c1a5aSDimitry Andric const MCOperandInfo &OpInfo, 213d88c1a5aSDimitry Andric const MCSubtargetInfo &STI) const { 2143ca95b02SDimitry Andric int64_t Imm; 2153ca95b02SDimitry Andric if (MO.isExpr()) { 216d88c1a5aSDimitry Andric const auto *C = dyn_cast<MCConstantExpr>(MO.getExpr()); 2173ca95b02SDimitry Andric if (!C) 2188f0fd8f6SDimitry Andric return 255; 2198f0fd8f6SDimitry Andric 2203ca95b02SDimitry Andric Imm = C->getValue(); 2213ca95b02SDimitry Andric } else { 2223ca95b02SDimitry Andric 2238f0fd8f6SDimitry Andric assert(!MO.isFPImm()); 2248f0fd8f6SDimitry Andric 2258f0fd8f6SDimitry Andric if (!MO.isImm()) 2268f0fd8f6SDimitry Andric return ~0; 2278f0fd8f6SDimitry Andric 2283ca95b02SDimitry Andric Imm = MO.getImm(); 2293ca95b02SDimitry Andric } 2303ca95b02SDimitry Andric 2317a7e6055SDimitry Andric switch (OpInfo.OperandType) { 2327a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_IMM_INT32: 2337a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_IMM_FP32: 2347a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_INLINE_C_INT32: 2357a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_INLINE_C_FP32: 236d88c1a5aSDimitry Andric return getLit32Encoding(static_cast<uint32_t>(Imm), STI); 2377a7e6055SDimitry Andric 2387a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_IMM_INT64: 2397a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_IMM_FP64: 2407a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_INLINE_C_INT64: 2417a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_INLINE_C_FP64: 242d88c1a5aSDimitry Andric return getLit64Encoding(static_cast<uint64_t>(Imm), STI); 2437a7e6055SDimitry Andric 2447a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_IMM_INT16: 2457a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_IMM_FP16: 2467a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_INLINE_C_INT16: 2477a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_INLINE_C_FP16: 2487a7e6055SDimitry Andric // FIXME Is this correct? What do inline immediates do on SI for f16 src 2497a7e6055SDimitry Andric // which does not have f16 support? 250d88c1a5aSDimitry Andric return getLit16Encoding(static_cast<uint16_t>(Imm), STI); 2517a7e6055SDimitry Andric 2527a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_INLINE_C_V2INT16: 2537a7e6055SDimitry Andric case AMDGPU::OPERAND_REG_INLINE_C_V2FP16: { 2547a7e6055SDimitry Andric uint16_t Lo16 = static_cast<uint16_t>(Imm); 2557a7e6055SDimitry Andric assert(Lo16 == static_cast<uint16_t>(Imm >> 16)); 2567a7e6055SDimitry Andric uint32_t Encoding = getLit16Encoding(Lo16, STI); 2577a7e6055SDimitry Andric assert(Encoding != 255 && "packed constants can only be inline immediates"); 2587a7e6055SDimitry Andric return Encoding; 2597a7e6055SDimitry Andric } 260d88c1a5aSDimitry Andric default: 261d88c1a5aSDimitry Andric llvm_unreachable("invalid operand size"); 262d88c1a5aSDimitry Andric } 2638f0fd8f6SDimitry Andric } 2648f0fd8f6SDimitry Andric 2658f0fd8f6SDimitry Andric void SIMCCodeEmitter::encodeInstruction(const MCInst &MI, raw_ostream &OS, 2668f0fd8f6SDimitry Andric SmallVectorImpl<MCFixup> &Fixups, 2678f0fd8f6SDimitry Andric const MCSubtargetInfo &STI) const { 268d88c1a5aSDimitry Andric verifyInstructionPredicates(MI, 269d88c1a5aSDimitry Andric computeAvailableFeatures(STI.getFeatureBits())); 2708f0fd8f6SDimitry Andric 2718f0fd8f6SDimitry Andric uint64_t Encoding = getBinaryCodeForInstr(MI, Fixups, STI); 2728f0fd8f6SDimitry Andric const MCInstrDesc &Desc = MCII.get(MI.getOpcode()); 2738f0fd8f6SDimitry Andric unsigned bytes = Desc.getSize(); 2748f0fd8f6SDimitry Andric 2758f0fd8f6SDimitry Andric for (unsigned i = 0; i < bytes; i++) { 2768f0fd8f6SDimitry Andric OS.write((uint8_t) ((Encoding >> (8 * i)) & 0xff)); 2778f0fd8f6SDimitry Andric } 2788f0fd8f6SDimitry Andric 2798f0fd8f6SDimitry Andric if (bytes > 4) 2808f0fd8f6SDimitry Andric return; 2818f0fd8f6SDimitry Andric 2828f0fd8f6SDimitry Andric // Check for additional literals in SRC0/1/2 (Op 1/2/3) 2838f0fd8f6SDimitry Andric for (unsigned i = 0, e = MI.getNumOperands(); i < e; ++i) { 2848f0fd8f6SDimitry Andric 2858f0fd8f6SDimitry Andric // Check if this operand should be encoded as [SV]Src 286d88c1a5aSDimitry Andric if (!AMDGPU::isSISrcOperand(Desc, i)) 2878f0fd8f6SDimitry Andric continue; 2888f0fd8f6SDimitry Andric 2898f0fd8f6SDimitry Andric // Is this operand a literal immediate? 2908f0fd8f6SDimitry Andric const MCOperand &Op = MI.getOperand(i); 291d88c1a5aSDimitry Andric if (getLitEncoding(Op, Desc.OpInfo[i], STI) != 255) 2928f0fd8f6SDimitry Andric continue; 2938f0fd8f6SDimitry Andric 2948f0fd8f6SDimitry Andric // Yes! Encode it 2958f0fd8f6SDimitry Andric int64_t Imm = 0; 2968f0fd8f6SDimitry Andric 2978f0fd8f6SDimitry Andric if (Op.isImm()) 2988f0fd8f6SDimitry Andric Imm = Op.getImm(); 2993ca95b02SDimitry Andric else if (Op.isExpr()) { 300d88c1a5aSDimitry Andric if (const auto *C = dyn_cast<MCConstantExpr>(Op.getExpr())) 3013ca95b02SDimitry Andric Imm = C->getValue(); 3023ca95b02SDimitry Andric 3033ca95b02SDimitry Andric } else if (!Op.isExpr()) // Exprs will be replaced with a fixup value. 3048f0fd8f6SDimitry Andric llvm_unreachable("Must be immediate or expr"); 3058f0fd8f6SDimitry Andric 3068f0fd8f6SDimitry Andric for (unsigned j = 0; j < 4; j++) { 3078f0fd8f6SDimitry Andric OS.write((uint8_t) ((Imm >> (8 * j)) & 0xff)); 3088f0fd8f6SDimitry Andric } 3098f0fd8f6SDimitry Andric 3108f0fd8f6SDimitry Andric // Only one literal value allowed 3118f0fd8f6SDimitry Andric break; 3128f0fd8f6SDimitry Andric } 3138f0fd8f6SDimitry Andric } 3148f0fd8f6SDimitry Andric 3158f0fd8f6SDimitry Andric unsigned SIMCCodeEmitter::getSOPPBrEncoding(const MCInst &MI, unsigned OpNo, 3168f0fd8f6SDimitry Andric SmallVectorImpl<MCFixup> &Fixups, 3178f0fd8f6SDimitry Andric const MCSubtargetInfo &STI) const { 3188f0fd8f6SDimitry Andric const MCOperand &MO = MI.getOperand(OpNo); 3198f0fd8f6SDimitry Andric 3208f0fd8f6SDimitry Andric if (MO.isExpr()) { 3218f0fd8f6SDimitry Andric const MCExpr *Expr = MO.getExpr(); 3228f0fd8f6SDimitry Andric MCFixupKind Kind = (MCFixupKind)AMDGPU::fixup_si_sopp_br; 3238f0fd8f6SDimitry Andric Fixups.push_back(MCFixup::create(0, Expr, Kind, MI.getLoc())); 3248f0fd8f6SDimitry Andric return 0; 3258f0fd8f6SDimitry Andric } 3268f0fd8f6SDimitry Andric 3278f0fd8f6SDimitry Andric return getMachineOpValue(MI, MO, Fixups, STI); 3288f0fd8f6SDimitry Andric } 3298f0fd8f6SDimitry Andric 330302affcbSDimitry Andric unsigned 331302affcbSDimitry Andric SIMCCodeEmitter::getSDWA9SrcEncoding(const MCInst &MI, unsigned OpNo, 332302affcbSDimitry Andric SmallVectorImpl<MCFixup> &Fixups, 333302affcbSDimitry Andric const MCSubtargetInfo &STI) const { 334302affcbSDimitry Andric using namespace AMDGPU::SDWA; 335302affcbSDimitry Andric 336302affcbSDimitry Andric uint64_t RegEnc = 0; 337302affcbSDimitry Andric 338302affcbSDimitry Andric const MCOperand &MO = MI.getOperand(OpNo); 339302affcbSDimitry Andric 340302affcbSDimitry Andric unsigned Reg = MO.getReg(); 341302affcbSDimitry Andric RegEnc |= MRI.getEncodingValue(Reg); 342302affcbSDimitry Andric RegEnc &= SDWA9EncValues::SRC_VGPR_MASK; 343302affcbSDimitry Andric if (AMDGPU::isSGPR(AMDGPU::mc2PseudoReg(Reg), &MRI)) { 344302affcbSDimitry Andric RegEnc |= SDWA9EncValues::SRC_SGPR_MASK; 345302affcbSDimitry Andric } 346302affcbSDimitry Andric return RegEnc; 347302affcbSDimitry Andric } 348302affcbSDimitry Andric 349302affcbSDimitry Andric unsigned 350302affcbSDimitry Andric SIMCCodeEmitter::getSDWA9VopcDstEncoding(const MCInst &MI, unsigned OpNo, 351302affcbSDimitry Andric SmallVectorImpl<MCFixup> &Fixups, 352302affcbSDimitry Andric const MCSubtargetInfo &STI) const { 353302affcbSDimitry Andric using namespace AMDGPU::SDWA; 354302affcbSDimitry Andric 355302affcbSDimitry Andric uint64_t RegEnc = 0; 356302affcbSDimitry Andric 357302affcbSDimitry Andric const MCOperand &MO = MI.getOperand(OpNo); 358302affcbSDimitry Andric 359302affcbSDimitry Andric unsigned Reg = MO.getReg(); 360302affcbSDimitry Andric if (Reg != AMDGPU::VCC) { 361302affcbSDimitry Andric RegEnc |= MRI.getEncodingValue(Reg); 362302affcbSDimitry Andric RegEnc &= SDWA9EncValues::VOPC_DST_SGPR_MASK; 363302affcbSDimitry Andric RegEnc |= SDWA9EncValues::VOPC_DST_VCC_MASK; 364302affcbSDimitry Andric } 365302affcbSDimitry Andric return RegEnc; 366302affcbSDimitry Andric } 367302affcbSDimitry Andric 3688f0fd8f6SDimitry Andric uint64_t SIMCCodeEmitter::getMachineOpValue(const MCInst &MI, 3698f0fd8f6SDimitry Andric const MCOperand &MO, 3708f0fd8f6SDimitry Andric SmallVectorImpl<MCFixup> &Fixups, 3718f0fd8f6SDimitry Andric const MCSubtargetInfo &STI) const { 3728f0fd8f6SDimitry Andric if (MO.isReg()) 3738f0fd8f6SDimitry Andric return MRI.getEncodingValue(MO.getReg()); 3748f0fd8f6SDimitry Andric 3753ca95b02SDimitry Andric if (MO.isExpr() && MO.getExpr()->getKind() != MCExpr::Constant) { 376d88c1a5aSDimitry Andric const auto *Expr = dyn_cast<MCSymbolRefExpr>(MO.getExpr()); 3773ca95b02SDimitry Andric MCFixupKind Kind; 3783ca95b02SDimitry Andric if (Expr && Expr->getSymbol().isExternal()) 3793ca95b02SDimitry Andric Kind = FK_Data_4; 3803ca95b02SDimitry Andric else 3813ca95b02SDimitry Andric Kind = FK_PCRel_4; 3823ca95b02SDimitry Andric Fixups.push_back(MCFixup::create(4, MO.getExpr(), Kind, MI.getLoc())); 3838f0fd8f6SDimitry Andric } 3848f0fd8f6SDimitry Andric 3858f0fd8f6SDimitry Andric // Figure out the operand number, needed for isSrcOperand check 3868f0fd8f6SDimitry Andric unsigned OpNo = 0; 3878f0fd8f6SDimitry Andric for (unsigned e = MI.getNumOperands(); OpNo < e; ++OpNo) { 3888f0fd8f6SDimitry Andric if (&MO == &MI.getOperand(OpNo)) 3898f0fd8f6SDimitry Andric break; 3908f0fd8f6SDimitry Andric } 3918f0fd8f6SDimitry Andric 3928f0fd8f6SDimitry Andric const MCInstrDesc &Desc = MCII.get(MI.getOpcode()); 393d88c1a5aSDimitry Andric if (AMDGPU::isSISrcOperand(Desc, OpNo)) { 394d88c1a5aSDimitry Andric uint32_t Enc = getLitEncoding(MO, Desc.OpInfo[OpNo], STI); 3958f0fd8f6SDimitry Andric if (Enc != ~0U && (Enc != 255 || Desc.getSize() == 4)) 3968f0fd8f6SDimitry Andric return Enc; 3978f0fd8f6SDimitry Andric 3988f0fd8f6SDimitry Andric } else if (MO.isImm()) 3998f0fd8f6SDimitry Andric return MO.getImm(); 4008f0fd8f6SDimitry Andric 4018f0fd8f6SDimitry Andric llvm_unreachable("Encoding of this operand type is not supported yet."); 4028f0fd8f6SDimitry Andric return 0; 4038f0fd8f6SDimitry Andric } 404