It's a fairly common issue that the generating code incorrectly marks instructions as narrow or wide; check that the instruction lengths add up to the expected value, and error out if it doesn't. This allows catching code generation bugs. Also check that prologs and epilogs are properly terminated, to catch other code generation issues. Differential Revision: https://reviews.llvm.org/D125647
279 lines
9.1 KiB
C++
279 lines
9.1 KiB
C++
//===-- ARMWinCOFFStreamer.cpp - ARM Target WinCOFF Streamer ----*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "ARMMCTargetDesc.h"
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#include "Utils/ARMBaseInfo.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/MCCodeEmitter.h"
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#include "llvm/MC/MCContext.h"
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#include "llvm/MC/MCObjectWriter.h"
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#include "llvm/MC/MCWin64EH.h"
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#include "llvm/MC/MCWinCOFFStreamer.h"
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using namespace llvm;
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namespace {
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class ARMWinCOFFStreamer : public MCWinCOFFStreamer {
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Win64EH::ARMUnwindEmitter EHStreamer;
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public:
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ARMWinCOFFStreamer(MCContext &C, std::unique_ptr<MCAsmBackend> AB,
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std::unique_ptr<MCCodeEmitter> CE,
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std::unique_ptr<MCObjectWriter> OW)
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: MCWinCOFFStreamer(C, std::move(AB), std::move(CE), std::move(OW)) {}
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void emitWinEHHandlerData(SMLoc Loc) override;
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void emitWindowsUnwindTables() override;
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void emitWindowsUnwindTables(WinEH::FrameInfo *Frame) override;
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void emitThumbFunc(MCSymbol *Symbol) override;
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void finishImpl() override;
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};
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void ARMWinCOFFStreamer::emitWinEHHandlerData(SMLoc Loc) {
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MCStreamer::emitWinEHHandlerData(Loc);
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// We have to emit the unwind info now, because this directive
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// actually switches to the .xdata section!
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EHStreamer.EmitUnwindInfo(*this, getCurrentWinFrameInfo(),
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/* HandlerData = */ true);
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}
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void ARMWinCOFFStreamer::emitWindowsUnwindTables(WinEH::FrameInfo *Frame) {
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EHStreamer.EmitUnwindInfo(*this, Frame, /* HandlerData = */ false);
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}
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void ARMWinCOFFStreamer::emitWindowsUnwindTables() {
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if (!getNumWinFrameInfos())
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return;
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EHStreamer.Emit(*this);
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}
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void ARMWinCOFFStreamer::emitThumbFunc(MCSymbol *Symbol) {
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getAssembler().setIsThumbFunc(Symbol);
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}
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void ARMWinCOFFStreamer::finishImpl() {
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emitFrames(nullptr);
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emitWindowsUnwindTables();
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MCWinCOFFStreamer::finishImpl();
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}
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}
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MCStreamer *llvm::createARMWinCOFFStreamer(
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MCContext &Context, std::unique_ptr<MCAsmBackend> &&MAB,
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std::unique_ptr<MCObjectWriter> &&OW,
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std::unique_ptr<MCCodeEmitter> &&Emitter, bool RelaxAll,
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bool IncrementalLinkerCompatible) {
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auto *S = new ARMWinCOFFStreamer(Context, std::move(MAB), std::move(Emitter),
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std::move(OW));
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S->getAssembler().setIncrementalLinkerCompatible(IncrementalLinkerCompatible);
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return S;
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}
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namespace {
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class ARMTargetWinCOFFStreamer : public llvm::ARMTargetStreamer {
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private:
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// True if we are processing SEH directives in an epilogue.
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bool InEpilogCFI = false;
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// Symbol of the current epilog for which we are processing SEH directives.
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MCSymbol *CurrentEpilog = nullptr;
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public:
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ARMTargetWinCOFFStreamer(llvm::MCStreamer &S) : ARMTargetStreamer(S) {}
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// The unwind codes on ARM Windows are documented at
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// https://docs.microsoft.com/en-us/cpp/build/arm-exception-handling
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void emitARMWinCFIAllocStack(unsigned Size, bool Wide) override;
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void emitARMWinCFISaveRegMask(unsigned Mask, bool Wide) override;
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void emitARMWinCFISaveSP(unsigned Reg) override;
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void emitARMWinCFISaveFRegs(unsigned First, unsigned Last) override;
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void emitARMWinCFISaveLR(unsigned Offset) override;
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void emitARMWinCFIPrologEnd(bool Fragment) override;
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void emitARMWinCFINop(bool Wide) override;
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void emitARMWinCFIEpilogStart(unsigned Condition) override;
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void emitARMWinCFIEpilogEnd() override;
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void emitARMWinCFICustom(unsigned Opcode) override;
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private:
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void emitARMWinUnwindCode(unsigned UnwindCode, int Reg, int Offset);
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};
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// Helper function to common out unwind code setup for those codes that can
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// belong to both prolog and epilog.
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void ARMTargetWinCOFFStreamer::emitARMWinUnwindCode(unsigned UnwindCode,
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int Reg, int Offset) {
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auto &S = getStreamer();
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WinEH::FrameInfo *CurFrame = S.EnsureValidWinFrameInfo(SMLoc());
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if (!CurFrame)
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return;
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MCSymbol *Label = S.emitCFILabel();
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auto Inst = WinEH::Instruction(UnwindCode, Label, Reg, Offset);
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if (InEpilogCFI)
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CurFrame->EpilogMap[CurrentEpilog].Instructions.push_back(Inst);
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else
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CurFrame->Instructions.push_back(Inst);
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}
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void ARMTargetWinCOFFStreamer::emitARMWinCFIAllocStack(unsigned Size,
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bool Wide) {
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unsigned Op = Win64EH::UOP_AllocSmall;
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if (!Wide) {
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if (Size / 4 > 0xffff)
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Op = Win64EH::UOP_AllocHuge;
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else if (Size / 4 > 0x7f)
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Op = Win64EH::UOP_AllocLarge;
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} else {
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Op = Win64EH::UOP_WideAllocMedium;
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if (Size / 4 > 0xffff)
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Op = Win64EH::UOP_WideAllocHuge;
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else if (Size / 4 > 0x3ff)
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Op = Win64EH::UOP_WideAllocLarge;
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}
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emitARMWinUnwindCode(Op, -1, Size);
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}
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void ARMTargetWinCOFFStreamer::emitARMWinCFISaveRegMask(unsigned Mask,
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bool Wide) {
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assert(Mask != 0);
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int Lr = (Mask & 0x4000) ? 1 : 0;
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Mask &= ~0x4000;
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if (Wide)
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assert((Mask & ~0x1fff) == 0);
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else
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assert((Mask & ~0x00ff) == 0);
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if (Mask && ((Mask + (1 << 4)) & Mask) == 0) {
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if (Wide && (Mask & 0x1000) == 0 && (Mask & 0xff) == 0xf0) {
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// One continuous range from r4 to r8-r11
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for (int I = 11; I >= 8; I--) {
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if (Mask & (1 << I)) {
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emitARMWinUnwindCode(Win64EH::UOP_WideSaveRegsR4R11LR, I, Lr);
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return;
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}
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}
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// If it actually was from r4 to r4-r7, continue below.
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} else if (!Wide) {
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// One continuous range from r4 to r4-r7
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for (int I = 7; I >= 4; I--) {
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if (Mask & (1 << I)) {
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emitARMWinUnwindCode(Win64EH::UOP_SaveRegsR4R7LR, I, Lr);
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return;
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}
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}
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llvm_unreachable("logic error");
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}
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}
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Mask |= Lr << 14;
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if (Wide)
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emitARMWinUnwindCode(Win64EH::UOP_WideSaveRegMask, Mask, 0);
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else
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emitARMWinUnwindCode(Win64EH::UOP_SaveRegMask, Mask, 0);
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}
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void ARMTargetWinCOFFStreamer::emitARMWinCFISaveSP(unsigned Reg) {
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emitARMWinUnwindCode(Win64EH::UOP_SaveSP, Reg, 0);
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}
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void ARMTargetWinCOFFStreamer::emitARMWinCFISaveFRegs(unsigned First,
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unsigned Last) {
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assert(First <= Last);
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assert(First >= 16 || Last < 16);
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assert(First <= 31 && Last <= 31);
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if (First == 8)
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emitARMWinUnwindCode(Win64EH::UOP_SaveFRegD8D15, Last, 0);
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else if (First <= 15)
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emitARMWinUnwindCode(Win64EH::UOP_SaveFRegD0D15, First, Last);
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else
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emitARMWinUnwindCode(Win64EH::UOP_SaveFRegD16D31, First, Last);
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}
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void ARMTargetWinCOFFStreamer::emitARMWinCFISaveLR(unsigned Offset) {
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emitARMWinUnwindCode(Win64EH::UOP_SaveLR, 0, Offset);
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}
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void ARMTargetWinCOFFStreamer::emitARMWinCFINop(bool Wide) {
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if (Wide)
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emitARMWinUnwindCode(Win64EH::UOP_WideNop, -1, 0);
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else
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emitARMWinUnwindCode(Win64EH::UOP_Nop, -1, 0);
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}
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void ARMTargetWinCOFFStreamer::emitARMWinCFIPrologEnd(bool Fragment) {
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auto &S = getStreamer();
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WinEH::FrameInfo *CurFrame = S.EnsureValidWinFrameInfo(SMLoc());
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if (!CurFrame)
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return;
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MCSymbol *Label = S.emitCFILabel();
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CurFrame->PrologEnd = Label;
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WinEH::Instruction Inst =
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WinEH::Instruction(Win64EH::UOP_End, /*Label=*/nullptr, -1, 0);
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auto it = CurFrame->Instructions.begin();
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CurFrame->Instructions.insert(it, Inst);
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CurFrame->Fragment = Fragment;
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}
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void ARMTargetWinCOFFStreamer::emitARMWinCFIEpilogStart(unsigned Condition) {
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auto &S = getStreamer();
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WinEH::FrameInfo *CurFrame = S.EnsureValidWinFrameInfo(SMLoc());
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if (!CurFrame)
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return;
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InEpilogCFI = true;
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CurrentEpilog = S.emitCFILabel();
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CurFrame->EpilogMap[CurrentEpilog].Condition = Condition;
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}
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void ARMTargetWinCOFFStreamer::emitARMWinCFIEpilogEnd() {
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auto &S = getStreamer();
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WinEH::FrameInfo *CurFrame = S.EnsureValidWinFrameInfo(SMLoc());
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if (!CurFrame)
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return;
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if (!CurrentEpilog) {
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S.getContext().reportError(SMLoc(), "Stray .seh_endepilogue in " +
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CurFrame->Function->getName());
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return;
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}
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std::vector<WinEH::Instruction> &Epilog =
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CurFrame->EpilogMap[CurrentEpilog].Instructions;
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unsigned UnwindCode = Win64EH::UOP_End;
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if (!Epilog.empty()) {
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WinEH::Instruction EndInstr = Epilog.back();
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if (EndInstr.Operation == Win64EH::UOP_Nop) {
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UnwindCode = Win64EH::UOP_EndNop;
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Epilog.pop_back();
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} else if (EndInstr.Operation == Win64EH::UOP_WideNop) {
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UnwindCode = Win64EH::UOP_WideEndNop;
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Epilog.pop_back();
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}
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}
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InEpilogCFI = false;
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WinEH::Instruction Inst = WinEH::Instruction(UnwindCode, nullptr, -1, 0);
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CurFrame->EpilogMap[CurrentEpilog].Instructions.push_back(Inst);
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MCSymbol *Label = S.emitCFILabel();
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CurFrame->EpilogMap[CurrentEpilog].End = Label;
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CurrentEpilog = nullptr;
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}
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void ARMTargetWinCOFFStreamer::emitARMWinCFICustom(unsigned Opcode) {
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emitARMWinUnwindCode(Win64EH::UOP_Custom, 0, Opcode);
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}
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} // end anonymous namespace
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MCTargetStreamer *llvm::createARMObjectTargetWinCOFFStreamer(MCStreamer &S) {
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return new ARMTargetWinCOFFStreamer(S);
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}
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