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https://github.com/c64scene-ar/llvm-6502.git
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536a88ad5b
store this and use it to not emit long nops when the CPU is geode which doesnt support them. Fixes PR11212. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@164132 91177308-0d34-0410-b5e6-96231b3b80d8
271 lines
9.3 KiB
C++
271 lines
9.3 KiB
C++
//===-- MipsASMBackend.cpp - Mips Asm Backend ----------------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file implements the MipsAsmBackend and MipsELFObjectWriter classes.
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//
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//===----------------------------------------------------------------------===//
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//
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#include "MipsFixupKinds.h"
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#include "MCTargetDesc/MipsMCTargetDesc.h"
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#include "llvm/MC/MCAsmBackend.h"
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#include "llvm/MC/MCAssembler.h"
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#include "llvm/MC/MCDirectives.h"
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#include "llvm/MC/MCELFObjectWriter.h"
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#include "llvm/MC/MCFixupKindInfo.h"
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#include "llvm/MC/MCObjectWriter.h"
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#include "llvm/MC/MCSubtargetInfo.h"
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#include "llvm/Support/ErrorHandling.h"
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#include "llvm/Support/raw_ostream.h"
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using namespace llvm;
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// Prepare value for the target space for it
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static unsigned adjustFixupValue(unsigned Kind, uint64_t Value) {
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// Add/subtract and shift
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switch (Kind) {
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default:
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return 0;
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case FK_GPRel_4:
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case FK_Data_4:
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case FK_Data_8:
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case Mips::fixup_Mips_LO16:
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case Mips::fixup_Mips_GPOFF_HI:
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case Mips::fixup_Mips_GPOFF_LO:
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case Mips::fixup_Mips_GOT_PAGE:
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case Mips::fixup_Mips_GOT_OFST:
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case Mips::fixup_Mips_GOT_DISP:
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break;
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case Mips::fixup_Mips_PC16:
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// So far we are only using this type for branches.
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// For branches we start 1 instruction after the branch
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// so the displacement will be one instruction size less.
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Value -= 4;
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// The displacement is then divided by 4 to give us an 18 bit
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// address range.
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Value >>= 2;
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break;
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case Mips::fixup_Mips_26:
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// So far we are only using this type for jumps.
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// The displacement is then divided by 4 to give us an 28 bit
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// address range.
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Value >>= 2;
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break;
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case Mips::fixup_Mips_HI16:
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case Mips::fixup_Mips_GOT_Local:
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// Get the 2nd 16-bits. Also add 1 if bit 15 is 1.
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Value = ((Value + 0x8000) >> 16) & 0xffff;
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break;
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case Mips::fixup_Mips_HIGHER:
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// Get the 3rd 16-bits.
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Value = ((Value + 0x80008000LL) >> 32) & 0xffff;
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break;
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case Mips::fixup_Mips_HIGHEST:
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// Get the 4th 16-bits.
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Value = ((Value + 0x800080008000LL) >> 48) & 0xffff;
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break;
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}
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return Value;
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}
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namespace {
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class MipsAsmBackend : public MCAsmBackend {
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Triple::OSType OSType;
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bool IsLittle; // Big or little endian
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bool Is64Bit; // 32 or 64 bit words
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public:
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MipsAsmBackend(const Target &T, Triple::OSType _OSType,
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bool _isLittle, bool _is64Bit)
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:MCAsmBackend(), OSType(_OSType), IsLittle(_isLittle), Is64Bit(_is64Bit) {}
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MCObjectWriter *createObjectWriter(raw_ostream &OS) const {
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return createMipsELFObjectWriter(OS,
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MCELFObjectTargetWriter::getOSABI(OSType), IsLittle, Is64Bit);
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}
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/// ApplyFixup - Apply the \p Value for given \p Fixup into the provided
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/// data fragment, at the offset specified by the fixup and following the
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/// fixup kind as appropriate.
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void applyFixup(const MCFixup &Fixup, char *Data, unsigned DataSize,
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uint64_t Value) const {
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MCFixupKind Kind = Fixup.getKind();
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Value = adjustFixupValue((unsigned)Kind, Value);
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if (!Value)
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return; // Doesn't change encoding.
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// Where do we start in the object
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unsigned Offset = Fixup.getOffset();
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// Number of bytes we need to fixup
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unsigned NumBytes = (getFixupKindInfo(Kind).TargetSize + 7) / 8;
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// Used to point to big endian bytes
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unsigned FullSize;
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switch ((unsigned)Kind) {
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case Mips::fixup_Mips_16:
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FullSize = 2;
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break;
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case Mips::fixup_Mips_64:
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FullSize = 8;
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break;
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default:
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FullSize = 4;
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break;
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}
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// Grab current value, if any, from bits.
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uint64_t CurVal = 0;
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for (unsigned i = 0; i != NumBytes; ++i) {
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unsigned Idx = IsLittle ? i : (FullSize - 1 - i);
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CurVal |= (uint64_t)((uint8_t)Data[Offset + Idx]) << (i*8);
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}
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uint64_t Mask = ((uint64_t)(-1) >>
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(64 - getFixupKindInfo(Kind).TargetSize));
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CurVal |= Value & Mask;
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// Write out the fixed up bytes back to the code/data bits.
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for (unsigned i = 0; i != NumBytes; ++i) {
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unsigned Idx = IsLittle ? i : (FullSize - 1 - i);
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Data[Offset + Idx] = (uint8_t)((CurVal >> (i*8)) & 0xff);
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}
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}
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unsigned getNumFixupKinds() const { return Mips::NumTargetFixupKinds; }
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const MCFixupKindInfo &getFixupKindInfo(MCFixupKind Kind) const {
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const static MCFixupKindInfo Infos[Mips::NumTargetFixupKinds] = {
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// This table *must* be in same the order of fixup_* kinds in
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// MipsFixupKinds.h.
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//
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// name offset bits flags
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{ "fixup_Mips_16", 0, 16, 0 },
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{ "fixup_Mips_32", 0, 32, 0 },
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{ "fixup_Mips_REL32", 0, 32, 0 },
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{ "fixup_Mips_26", 0, 26, 0 },
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{ "fixup_Mips_HI16", 0, 16, 0 },
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{ "fixup_Mips_LO16", 0, 16, 0 },
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{ "fixup_Mips_GPREL16", 0, 16, 0 },
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{ "fixup_Mips_LITERAL", 0, 16, 0 },
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{ "fixup_Mips_GOT_Global", 0, 16, 0 },
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{ "fixup_Mips_GOT_Local", 0, 16, 0 },
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{ "fixup_Mips_PC16", 0, 16, MCFixupKindInfo::FKF_IsPCRel },
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{ "fixup_Mips_CALL16", 0, 16, 0 },
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{ "fixup_Mips_GPREL32", 0, 32, 0 },
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{ "fixup_Mips_SHIFT5", 6, 5, 0 },
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{ "fixup_Mips_SHIFT6", 6, 5, 0 },
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{ "fixup_Mips_64", 0, 64, 0 },
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{ "fixup_Mips_TLSGD", 0, 16, 0 },
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{ "fixup_Mips_GOTTPREL", 0, 16, 0 },
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{ "fixup_Mips_TPREL_HI", 0, 16, 0 },
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{ "fixup_Mips_TPREL_LO", 0, 16, 0 },
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{ "fixup_Mips_TLSLDM", 0, 16, 0 },
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{ "fixup_Mips_DTPREL_HI", 0, 16, 0 },
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{ "fixup_Mips_DTPREL_LO", 0, 16, 0 },
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{ "fixup_Mips_Branch_PCRel", 0, 16, MCFixupKindInfo::FKF_IsPCRel },
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{ "fixup_Mips_GPOFF_HI", 0, 16, 0 },
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{ "fixup_Mips_GPOFF_LO", 0, 16, 0 },
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{ "fixup_Mips_GOT_PAGE", 0, 16, 0 },
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{ "fixup_Mips_GOT_OFST", 0, 16, 0 },
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{ "fixup_Mips_GOT_DISP", 0, 16, 0 },
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{ "fixup_Mips_HIGHER", 0, 16, 0 },
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{ "fixup_Mips_HIGHEST", 0, 16, 0 }
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};
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if (Kind < FirstTargetFixupKind)
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return MCAsmBackend::getFixupKindInfo(Kind);
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assert(unsigned(Kind - FirstTargetFixupKind) < getNumFixupKinds() &&
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"Invalid kind!");
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return Infos[Kind - FirstTargetFixupKind];
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}
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/// @name Target Relaxation Interfaces
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/// @{
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/// MayNeedRelaxation - Check whether the given instruction may need
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/// relaxation.
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///
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/// \param Inst - The instruction to test.
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bool mayNeedRelaxation(const MCInst &Inst) const {
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return false;
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}
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/// fixupNeedsRelaxation - Target specific predicate for whether a given
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/// fixup requires the associated instruction to be relaxed.
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bool fixupNeedsRelaxation(const MCFixup &Fixup,
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uint64_t Value,
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const MCInstFragment *DF,
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const MCAsmLayout &Layout) const {
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// FIXME.
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assert(0 && "RelaxInstruction() unimplemented");
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return false;
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}
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/// RelaxInstruction - Relax the instruction in the given fragment
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/// to the next wider instruction.
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///
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/// \param Inst - The instruction to relax, which may be the same
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/// as the output.
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/// \param [out] Res On return, the relaxed instruction.
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void relaxInstruction(const MCInst &Inst, MCInst &Res) const {
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}
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/// @}
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/// WriteNopData - Write an (optimal) nop sequence of Count bytes
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/// to the given output. If the target cannot generate such a sequence,
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/// it should return an error.
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///
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/// \return - True on success.
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bool writeNopData(uint64_t Count, MCObjectWriter *OW) const {
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// Check for a less than instruction size number of bytes
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// FIXME: 16 bit instructions are not handled yet here.
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// We shouldn't be using a hard coded number for instruction size.
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if (Count % 4) return false;
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uint64_t NumNops = Count / 4;
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for (uint64_t i = 0; i != NumNops; ++i)
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OW->Write32(0);
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return true;
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}
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}; // class MipsAsmBackend
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} // namespace
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// MCAsmBackend
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MCAsmBackend *llvm::createMipsAsmBackendEL32(const Target &T, StringRef TT,
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StringRef CPU) {
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return new MipsAsmBackend(T, Triple(TT).getOS(),
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/*IsLittle*/true, /*Is64Bit*/false);
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}
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MCAsmBackend *llvm::createMipsAsmBackendEB32(const Target &T, StringRef TT,
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StringRef CPU) {
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return new MipsAsmBackend(T, Triple(TT).getOS(),
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/*IsLittle*/false, /*Is64Bit*/false);
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}
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MCAsmBackend *llvm::createMipsAsmBackendEL64(const Target &T, StringRef TT,
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StringRef CPU) {
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return new MipsAsmBackend(T, Triple(TT).getOS(),
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/*IsLittle*/true, /*Is64Bit*/true);
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}
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MCAsmBackend *llvm::createMipsAsmBackendEB64(const Target &T, StringRef TT,
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StringRef CPU) {
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return new MipsAsmBackend(T, Triple(TT).getOS(),
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/*IsLittle*/false, /*Is64Bit*/true);
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}
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