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d714fcf5c8
Previously, subtarget features were a bitfield with the underlying type being uint64_t. Since several targets (X86 and ARM, in particular) have hit or were very close to hitting this bound, switching the features to use a bitset. No functional change. The first several times this was committed (e.g. r229831, r233055), it caused several buildbot failures. Apparently the reason for most failures was both clang and gcc's inability to deal with large numbers (> 10K) of bitset constructor calls in tablegen-generated initializers of instruction info tables. This should now be fixed. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@238192 91177308-0d34-0410-b5e6-96231b3b80d8
122 lines
4.1 KiB
C++
122 lines
4.1 KiB
C++
//===-- MCSubtargetInfo.cpp - Subtarget Information -----------------------===//
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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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#include "llvm/MC/MCSubtargetInfo.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/ADT/Triple.h"
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#include "llvm/MC/MCInstrItineraries.h"
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#include "llvm/MC/SubtargetFeature.h"
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#include "llvm/Support/raw_ostream.h"
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#include <algorithm>
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using namespace llvm;
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/// InitMCProcessorInfo - Set or change the CPU (optionally supplemented
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/// with feature string). Recompute feature bits and scheduling model.
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void
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MCSubtargetInfo::InitMCProcessorInfo(StringRef CPU, StringRef FS) {
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SubtargetFeatures Features(FS);
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FeatureBits = Features.getFeatureBits(CPU, ProcDesc, ProcFeatures);
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InitCPUSchedModel(CPU);
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}
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void
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MCSubtargetInfo::InitCPUSchedModel(StringRef CPU) {
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if (!CPU.empty())
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CPUSchedModel = getSchedModelForCPU(CPU);
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else
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CPUSchedModel = MCSchedModel::GetDefaultSchedModel();
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}
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void
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MCSubtargetInfo::InitMCSubtargetInfo(StringRef TT, StringRef C, StringRef FS,
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ArrayRef<SubtargetFeatureKV> PF,
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ArrayRef<SubtargetFeatureKV> PD,
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const SubtargetInfoKV *ProcSched,
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const MCWriteProcResEntry *WPR,
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const MCWriteLatencyEntry *WL,
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const MCReadAdvanceEntry *RA,
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const InstrStage *IS,
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const unsigned *OC,
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const unsigned *FP) {
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TargetTriple = TT;
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CPU = C;
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ProcFeatures = PF;
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ProcDesc = PD;
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ProcSchedModels = ProcSched;
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WriteProcResTable = WPR;
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WriteLatencyTable = WL;
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ReadAdvanceTable = RA;
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Stages = IS;
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OperandCycles = OC;
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ForwardingPaths = FP;
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InitMCProcessorInfo(CPU, FS);
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}
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/// ToggleFeature - Toggle a feature and returns the re-computed feature
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/// bits. This version does not change the implied bits.
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FeatureBitset MCSubtargetInfo::ToggleFeature(uint64_t FB) {
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FeatureBits.flip(FB);
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return FeatureBits;
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}
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FeatureBitset MCSubtargetInfo::ToggleFeature(const FeatureBitset &FB) {
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FeatureBits ^= FB;
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return FeatureBits;
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}
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/// ToggleFeature - Toggle a feature and returns the re-computed feature
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/// bits. This version will also change all implied bits.
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FeatureBitset MCSubtargetInfo::ToggleFeature(StringRef FS) {
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SubtargetFeatures Features;
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FeatureBits = Features.ToggleFeature(FeatureBits, FS, ProcFeatures);
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return FeatureBits;
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}
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MCSchedModel
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MCSubtargetInfo::getSchedModelForCPU(StringRef CPU) const {
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assert(ProcSchedModels && "Processor machine model not available!");
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unsigned NumProcs = ProcDesc.size();
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#ifndef NDEBUG
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for (size_t i = 1; i < NumProcs; i++) {
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assert(strcmp(ProcSchedModels[i - 1].Key, ProcSchedModels[i].Key) < 0 &&
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"Processor machine model table is not sorted");
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}
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#endif
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// Find entry
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const SubtargetInfoKV *Found =
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std::lower_bound(ProcSchedModels, ProcSchedModels+NumProcs, CPU);
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if (Found == ProcSchedModels+NumProcs || StringRef(Found->Key) != CPU) {
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if (CPU != "help") // Don't error if the user asked for help.
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errs() << "'" << CPU
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<< "' is not a recognized processor for this target"
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<< " (ignoring processor)\n";
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return MCSchedModel::GetDefaultSchedModel();
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}
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assert(Found->Value && "Missing processor SchedModel value");
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return *(const MCSchedModel *)Found->Value;
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}
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InstrItineraryData
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MCSubtargetInfo::getInstrItineraryForCPU(StringRef CPU) const {
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const MCSchedModel SchedModel = getSchedModelForCPU(CPU);
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return InstrItineraryData(SchedModel, Stages, OperandCycles, ForwardingPaths);
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}
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/// Initialize an InstrItineraryData instance.
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void MCSubtargetInfo::initInstrItins(InstrItineraryData &InstrItins) const {
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InstrItins =
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InstrItineraryData(CPUSchedModel, Stages, OperandCycles, ForwardingPaths);
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}
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