256 lines
9.2 KiB
C++
256 lines
9.2 KiB
C++
//===-- MachineFunctionSplitter.cpp - Split machine functions //-----------===//
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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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//
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// \file
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// Uses profile information to split out cold blocks.
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//
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// This pass splits out cold machine basic blocks from the parent function. This
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// implementation leverages the basic block section framework. Blocks marked
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// cold by this pass are grouped together in a separate section prefixed with
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// ".text.unlikely.*". The linker can then group these together as a cold
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// section. The split part of the function is a contiguous region identified by
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// the symbol "foo.cold". Grouping all cold blocks across functions together
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// decreases fragmentation and improves icache and itlb utilization. Note that
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// the overall changes to the binary size are negligible; only a small number of
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// additional jump instructions may be introduced.
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//
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// For the original RFC of this pass please see
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// https://groups.google.com/d/msg/llvm-dev/RUegaMg-iqc/wFAVxa6fCgAJ
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//===----------------------------------------------------------------------===//
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#include "llvm/ADT/SmallVector.h"
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#include "llvm/Analysis/ProfileSummaryInfo.h"
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#include "llvm/CodeGen/BasicBlockSectionUtils.h"
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#include "llvm/CodeGen/MachineBasicBlock.h"
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#include "llvm/CodeGen/MachineBlockFrequencyInfo.h"
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#include "llvm/CodeGen/MachineFunction.h"
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#include "llvm/CodeGen/MachineFunctionPass.h"
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#include "llvm/CodeGen/MachineModuleInfo.h"
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#include "llvm/CodeGen/Passes.h"
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#include "llvm/IR/Function.h"
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#include "llvm/InitializePasses.h"
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#include "llvm/Support/CommandLine.h"
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using namespace llvm;
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// FIXME: This cutoff value is CPU dependent and should be moved to
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// TargetTransformInfo once we consider enabling this on other platforms.
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// The value is expressed as a ProfileSummaryInfo integer percentile cutoff.
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// Defaults to 999950, i.e. all blocks colder than 99.995 percentile are split.
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// The default was empirically determined to be optimal when considering cutoff
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// values between 99%-ile to 100%-ile with respect to iTLB and icache metrics on
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// Intel CPUs.
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static cl::opt<unsigned>
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PercentileCutoff("mfs-psi-cutoff",
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cl::desc("Percentile profile summary cutoff used to "
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"determine cold blocks. Unused if set to zero."),
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cl::init(999950), cl::Hidden);
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static cl::opt<unsigned> ColdCountThreshold(
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"mfs-count-threshold",
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cl::desc(
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"Minimum number of times a block must be executed to be retained."),
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cl::init(1), cl::Hidden);
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static cl::opt<bool> SplitAllEHCode(
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"mfs-split-ehcode",
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cl::desc("Splits all EH code and it's descendants by default."),
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cl::init(false), cl::Hidden);
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namespace {
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class MachineFunctionSplitter : public MachineFunctionPass {
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public:
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static char ID;
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MachineFunctionSplitter() : MachineFunctionPass(ID) {
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initializeMachineFunctionSplitterPass(*PassRegistry::getPassRegistry());
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}
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StringRef getPassName() const override {
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return "Machine Function Splitter Transformation";
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}
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void getAnalysisUsage(AnalysisUsage &AU) const override;
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bool runOnMachineFunction(MachineFunction &F) override;
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};
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} // end anonymous namespace
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/// setDescendantEHBlocksCold - This splits all EH pads and blocks reachable
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/// only by EH pad as cold. This will help mark EH pads statically cold instead
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/// of relying on profile data.
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static void
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setDescendantEHBlocksCold(SmallVectorImpl<MachineBasicBlock *> &EHBlocks,
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MachineFunction &MF) {
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MachineBasicBlock *StartBlock = &MF.front();
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// A block can be unknown if its not reachable from anywhere
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// EH if its only reachable from start blocks via some path through EH pads
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// NonEH if it's reachable from Non EH blocks as well.
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enum Status { Unknown = 0, EH = 1, NonEH = 2 };
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DenseSet<MachineBasicBlock *> WorkList;
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DenseMap<MachineBasicBlock *, Status> Statuses;
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auto getStatus = [&](MachineBasicBlock *MBB) {
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if (Statuses.find(MBB) != Statuses.end())
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return Statuses[MBB];
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else
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return Unknown;
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};
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auto checkPredecessors = [&](MachineBasicBlock *MBB, Status Stat) {
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for (auto *PredMBB : MBB->predecessors()) {
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Status PredStatus = getStatus(PredMBB);
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// If status of predecessor block has gone above current block
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// we update current blocks status.
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if (PredStatus > Stat)
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Stat = PredStatus;
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}
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return Stat;
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};
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auto addSuccesors = [&](MachineBasicBlock *MBB) {
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for (auto *SuccMBB : MBB->successors()) {
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if (!SuccMBB->isEHPad())
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WorkList.insert(SuccMBB);
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}
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};
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// Insert the successors of start block
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// and landing pads successor.
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Statuses[StartBlock] = NonEH;
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addSuccesors(StartBlock);
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for (auto *LP : EHBlocks) {
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addSuccesors(LP);
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Statuses[LP] = EH;
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}
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// Worklist iterative algorithm.
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while (!WorkList.empty()) {
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auto *MBB = *WorkList.begin();
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WorkList.erase(MBB);
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Status OldStatus = getStatus(MBB);
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// Check on predecessors and check for
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// Status update.
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Status NewStatus = checkPredecessors(MBB, OldStatus);
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// Did the block status change?
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bool changed = OldStatus != NewStatus;
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if (changed) {
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addSuccesors(MBB);
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Statuses[MBB] = NewStatus;
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}
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}
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for (auto Entry : Statuses) {
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if (Entry.second == EH)
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Entry.first->setSectionID(MBBSectionID::ColdSectionID);
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}
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}
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static bool isColdBlock(const MachineBasicBlock &MBB,
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const MachineBlockFrequencyInfo *MBFI,
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ProfileSummaryInfo *PSI) {
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Optional<uint64_t> Count = MBFI->getBlockProfileCount(&MBB);
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if (!Count)
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return true;
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if (PercentileCutoff > 0) {
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return PSI->isColdCountNthPercentile(PercentileCutoff, *Count);
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}
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return (*Count < ColdCountThreshold);
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}
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bool MachineFunctionSplitter::runOnMachineFunction(MachineFunction &MF) {
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// We target functions with profile data. Static information in the form
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// of exception handling code may be split to cold if user passes the
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// mfs-split-ehcode flag.
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bool UseProfileData = MF.getFunction().hasProfileData();
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if (!UseProfileData && !SplitAllEHCode)
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return false;
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// TODO: We don't split functions where a section attribute has been set
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// since the split part may not be placed in a contiguous region. It may also
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// be more beneficial to augment the linker to ensure contiguous layout of
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// split functions within the same section as specified by the attribute.
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if (MF.getFunction().hasSection() ||
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MF.getFunction().hasFnAttribute("implicit-section-name"))
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return false;
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// We don't want to proceed further for cold functions
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// or functions of unknown hotness. Lukewarm functions have no prefix.
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Optional<StringRef> SectionPrefix = MF.getFunction().getSectionPrefix();
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if (SectionPrefix && (SectionPrefix.value().equals("unlikely") ||
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SectionPrefix.value().equals("unknown"))) {
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return false;
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}
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// Renumbering blocks here preserves the order of the blocks as
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// sortBasicBlocksAndUpdateBranches uses the numeric identifier to sort
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// blocks. Preserving the order of blocks is essential to retaining decisions
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// made by prior passes such as MachineBlockPlacement.
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MF.RenumberBlocks();
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MF.setBBSectionsType(BasicBlockSection::Preset);
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MachineBlockFrequencyInfo *MBFI = nullptr;
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ProfileSummaryInfo *PSI = nullptr;
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if (UseProfileData) {
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MBFI = &getAnalysis<MachineBlockFrequencyInfo>();
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PSI = &getAnalysis<ProfileSummaryInfoWrapperPass>().getPSI();
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}
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SmallVector<MachineBasicBlock *, 2> LandingPads;
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for (auto &MBB : MF) {
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if (MBB.isEntryBlock())
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continue;
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if (MBB.isEHPad())
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LandingPads.push_back(&MBB);
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else if (UseProfileData && isColdBlock(MBB, MBFI, PSI) && !SplitAllEHCode)
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MBB.setSectionID(MBBSectionID::ColdSectionID);
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}
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// Split all EH code and it's descendant statically by default.
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if (SplitAllEHCode)
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setDescendantEHBlocksCold(LandingPads, MF);
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// We only split out eh pads if all of them are cold.
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else {
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bool HasHotLandingPads = false;
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for (const MachineBasicBlock *LP : LandingPads) {
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if (!isColdBlock(*LP, MBFI, PSI))
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HasHotLandingPads = true;
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}
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if (!HasHotLandingPads) {
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for (MachineBasicBlock *LP : LandingPads)
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LP->setSectionID(MBBSectionID::ColdSectionID);
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}
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}
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auto Comparator = [](const MachineBasicBlock &X, const MachineBasicBlock &Y) {
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return X.getSectionID().Type < Y.getSectionID().Type;
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};
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llvm::sortBasicBlocksAndUpdateBranches(MF, Comparator);
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llvm::avoidZeroOffsetLandingPad(MF);
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return true;
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}
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void MachineFunctionSplitter::getAnalysisUsage(AnalysisUsage &AU) const {
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AU.addRequired<MachineModuleInfoWrapperPass>();
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AU.addRequired<MachineBlockFrequencyInfo>();
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AU.addRequired<ProfileSummaryInfoWrapperPass>();
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}
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char MachineFunctionSplitter::ID = 0;
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INITIALIZE_PASS(MachineFunctionSplitter, "machine-function-splitter",
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"Split machine functions using profile information", false,
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false)
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MachineFunctionPass *llvm::createMachineFunctionSplitterPass() {
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return new MachineFunctionSplitter();
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}
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