`Predicates` and `Features` fields serve the same purpose. They should be kept in sync, but not all predicates are based on features. This resulted in introducing dummy features for that only reason. This patch removes `Features` field and changes TableGen emitters to use `Predicates` instead. Historically, predicates were written with the assumption that the checking code will be used in `SelectionDAGISel` subclasses, meaning they will have access to the subclass variables, such as `Subtarget`. There are no such variables in the generated `GenSubtargetInfo::getHwModeSet()`, so we need to provide them. This can be achieved by subclassing `HwModePredicateProlog`, see an example in `Hexagon.td`.
221 lines
7.3 KiB
C++
221 lines
7.3 KiB
C++
//===- SubtargetFeatureInfo.cpp - Helpers for subtarget features ----------===//
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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 "SubtargetFeatureInfo.h"
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#include "Types.h"
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#include "llvm/Config/llvm-config.h"
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#include "llvm/TableGen/Error.h"
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#include "llvm/TableGen/Record.h"
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using namespace llvm;
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#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
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LLVM_DUMP_METHOD void SubtargetFeatureInfo::dump() const {
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errs() << getEnumName() << " " << Index << "\n" << *TheDef;
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}
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#endif
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SubtargetFeaturesInfoVec
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SubtargetFeatureInfo::getAll(const RecordKeeper &Records) {
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SubtargetFeaturesInfoVec SubtargetFeatures;
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for (const Record *Pred : Records.getAllDerivedDefinitions("Predicate")) {
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// Ignore predicates that are not intended for the assembler.
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//
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// The "AssemblerMatcherPredicate" string should be promoted to an argument
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// if we re-use the machinery for non-assembler purposes in future.
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if (!Pred->getValueAsBit("AssemblerMatcherPredicate"))
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continue;
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if (Pred->getName().empty())
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PrintFatalError(Pred->getLoc(), "Predicate has no name!");
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// Ignore always true predicates.
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if (Pred->getValueAsString("CondString").empty())
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continue;
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SubtargetFeatures.emplace_back(
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Pred, SubtargetFeatureInfo(Pred, SubtargetFeatures.size()));
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}
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return SubtargetFeatures;
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}
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void SubtargetFeatureInfo::emitSubtargetFeatureBitEnumeration(
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const SubtargetFeatureInfoMap &SubtargetFeatures, raw_ostream &OS,
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const std::map<std::string, unsigned> *HwModes) {
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OS << "// Bits for subtarget features that participate in "
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<< "instruction matching.\n";
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unsigned Size = SubtargetFeatures.size();
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if (HwModes)
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Size += HwModes->size();
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OS << "enum SubtargetFeatureBits : " << getMinimalTypeForRange(Size)
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<< " {\n";
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for (const auto &SF : SubtargetFeatures) {
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const SubtargetFeatureInfo &SFI = SF.second;
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OS << " " << SFI.getEnumBitName() << " = " << SFI.Index << ",\n";
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}
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if (HwModes) {
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unsigned Offset = SubtargetFeatures.size();
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for (const auto &M : *HwModes) {
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OS << " Feature_HwMode" << M.second << "Bit = " << (M.second + Offset)
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<< ",\n";
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}
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}
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OS << "};\n\n";
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}
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void SubtargetFeatureInfo::emitNameTable(
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SubtargetFeatureInfoMap &SubtargetFeatures, raw_ostream &OS) {
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// Need to sort the name table so that lookup by the log of the enum value
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// gives the proper name. More specifically, for a feature of value 1<<n,
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// SubtargetFeatureNames[n] should be the name of the feature.
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uint64_t IndexUB = 0;
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for (const auto &SF : SubtargetFeatures)
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if (IndexUB <= SF.second.Index)
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IndexUB = SF.second.Index + 1;
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std::vector<std::string> Names;
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if (IndexUB > 0)
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Names.resize(IndexUB);
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for (const auto &SF : SubtargetFeatures)
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Names[SF.second.Index] = SF.second.getEnumName();
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OS << "static const char *SubtargetFeatureNames[] = {\n";
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for (uint64_t I = 0; I < IndexUB; ++I)
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OS << " \"" << Names[I] << "\",\n";
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// A small number of targets have no predicates. Null terminate the array to
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// avoid a zero-length array.
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OS << " nullptr\n"
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<< "};\n\n";
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}
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void SubtargetFeatureInfo::emitComputeAvailableFeatures(
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StringRef TargetName, StringRef ClassName, StringRef FuncName,
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const SubtargetFeatureInfoMap &SubtargetFeatures, raw_ostream &OS,
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StringRef ExtraParams, const std::map<std::string, unsigned> *HwModes) {
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OS << "PredicateBitset " << ClassName << "::\n"
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<< FuncName << "(const " << TargetName << "Subtarget *Subtarget";
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if (!ExtraParams.empty())
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OS << ", " << ExtraParams;
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OS << ") const {\n";
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OS << " PredicateBitset Features{};\n";
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for (const auto &SF : SubtargetFeatures) {
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const SubtargetFeatureInfo &SFI = SF.second;
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StringRef CondStr = SFI.TheDef->getValueAsString("CondString");
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assert(!CondStr.empty() && "true predicate should have been filtered");
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OS << " if (" << CondStr << ")\n";
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OS << " Features.set(" << SFI.getEnumBitName() << ");\n";
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}
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if (HwModes) {
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for (const auto &M : *HwModes) {
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OS << " if (" << M.first << ")\n";
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OS << " Features.set(Feature_HwMode" << M.second << "Bit);\n";
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}
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}
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OS << " return Features;\n";
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OS << "}\n\n";
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}
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// If ParenIfBinOp is true, print a surrounding () if Val uses && or ||.
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static bool emitFeaturesAux(StringRef TargetName, const Init &Val,
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bool ParenIfBinOp, raw_ostream &OS) {
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if (auto *D = dyn_cast<DefInit>(&Val)) {
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if (!D->getDef()->isSubClassOf("SubtargetFeature"))
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return true;
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OS << "FB[" << TargetName << "::" << D->getAsString() << "]";
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return false;
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}
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if (auto *D = dyn_cast<DagInit>(&Val)) {
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auto *Op = dyn_cast<DefInit>(D->getOperator());
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if (!Op)
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return true;
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StringRef OpName = Op->getDef()->getName();
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if (OpName == "not" && D->getNumArgs() == 1) {
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OS << '!';
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return emitFeaturesAux(TargetName, *D->getArg(0), true, OS);
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}
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if ((OpName == "any_of" || OpName == "all_of") && D->getNumArgs() > 0) {
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bool Paren = D->getNumArgs() > 1 && std::exchange(ParenIfBinOp, true);
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if (Paren)
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OS << '(';
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ListSeparator LS(OpName == "any_of" ? " || " : " && ");
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for (auto *Arg : D->getArgs()) {
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OS << LS;
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if (emitFeaturesAux(TargetName, *Arg, ParenIfBinOp, OS))
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return true;
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}
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if (Paren)
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OS << ')';
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return false;
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}
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}
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return true;
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}
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void SubtargetFeatureInfo::emitPredicateCheck(
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raw_ostream &OS, ArrayRef<const Record *> Predicates) {
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ListSeparator LS(" && ");
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for (const Record *R : Predicates) {
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StringRef CondString = R->getValueAsString("CondString");
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if (CondString.empty())
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continue;
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OS << LS << '(' << CondString << ')';
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}
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}
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void SubtargetFeatureInfo::emitMCPredicateCheck(
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raw_ostream &OS, StringRef TargetName,
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ArrayRef<const Record *> Predicates) {
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auto MCPredicates = make_filter_range(Predicates, [](const Record *R) {
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return R->getValueAsBit("AssemblerMatcherPredicate");
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});
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if (MCPredicates.empty()) {
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OS << "false";
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return;
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}
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ListSeparator LS(" && ");
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bool ParenIfBinOp = range_size(MCPredicates) > 1;
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for (const Record *R : MCPredicates) {
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OS << LS;
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emitFeaturesAux(TargetName, *R->getValueAsDag("AssemblerCondDag"),
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ParenIfBinOp, OS);
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}
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}
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void SubtargetFeatureInfo::emitComputeAssemblerAvailableFeatures(
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StringRef TargetName, StringRef ClassName, StringRef FuncName,
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SubtargetFeatureInfoMap &SubtargetFeatures, raw_ostream &OS) {
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OS << "FeatureBitset ";
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if (!ClassName.empty())
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OS << TargetName << ClassName << "::\n";
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OS << FuncName << "(const FeatureBitset &FB) ";
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if (!ClassName.empty())
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OS << "const ";
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OS << "{\n";
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OS << " FeatureBitset Features;\n";
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for (const auto &SF : SubtargetFeatures) {
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const SubtargetFeatureInfo &SFI = SF.second;
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OS << " if (";
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emitFeaturesAux(TargetName, *SFI.TheDef->getValueAsDag("AssemblerCondDag"),
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/*ParenIfBinOp=*/false, OS);
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OS << ")\n";
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OS << " Features.set(" << SFI.getEnumBitName() << ");\n";
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}
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OS << " return Features;\n";
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OS << "}\n\n";
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}
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