forked from OSchip/llvm-project
132 lines
4.8 KiB
C++
132 lines
4.8 KiB
C++
//===--- UseTransparentFunctorsCheck.cpp - clang-tidy----------------------===//
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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 "UseTransparentFunctorsCheck.h"
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#include "clang/AST/ASTContext.h"
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#include "clang/ASTMatchers/ASTMatchFinder.h"
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using namespace clang::ast_matchers;
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namespace clang {
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namespace tidy {
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namespace modernize {
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UseTransparentFunctorsCheck::UseTransparentFunctorsCheck(
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StringRef Name, ClangTidyContext *Context)
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: ClangTidyCheck(Name, Context), SafeMode(Options.get("SafeMode", 0)) {}
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void UseTransparentFunctorsCheck::storeOptions(
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ClangTidyOptions::OptionMap &Opts) {
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Options.store(Opts, "SafeMode", SafeMode ? 1 : 0);
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}
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void UseTransparentFunctorsCheck::registerMatchers(MatchFinder *Finder) {
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if (!getLangOpts().CPlusPlus14)
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return;
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const auto TransparentFunctors =
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classTemplateSpecializationDecl(
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unless(hasAnyTemplateArgument(refersToType(voidType()))),
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hasAnyName("::std::plus", "::std::minus", "::std::multiplies",
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"::std::divides", "::std::modulus", "::std::negate",
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"::std::equal_to", "::std::not_equal_to", "::std::greater",
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"::std::less", "::std::greater_equal", "::std::less_equal",
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"::std::logical_and", "::std::logical_or",
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"::std::logical_not", "::std::bit_and", "::std::bit_or",
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"::std::bit_xor", "::std::bit_not"))
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.bind("FunctorClass");
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// Non-transparent functor mentioned as a template parameter. FIXIT.
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Finder->addMatcher(
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loc(qualType(
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unless(elaboratedType()),
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hasDeclaration(classTemplateSpecializationDecl(
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unless(hasAnyTemplateArgument(templateArgument(refersToType(
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qualType(pointsTo(qualType(isAnyCharacter()))))))),
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hasAnyTemplateArgument(
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templateArgument(refersToType(qualType(hasDeclaration(
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TransparentFunctors))))
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.bind("Functor"))))))
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.bind("FunctorParentLoc"),
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this);
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if (SafeMode)
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return;
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// Non-transparent functor constructed. No FIXIT. There is no easy way
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// to rule out the problematic char* vs string case.
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Finder->addMatcher(cxxConstructExpr(hasDeclaration(cxxMethodDecl(
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ofClass(TransparentFunctors))),
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unless(isInTemplateInstantiation()))
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.bind("FuncInst"),
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this);
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}
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static const StringRef Message = "prefer transparent functors '%0'";
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template <typename T> static T getInnerTypeLocAs(TypeLoc Loc) {
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T Result;
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while (Result.isNull() && !Loc.isNull()) {
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Result = Loc.getAs<T>();
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Loc = Loc.getNextTypeLoc();
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}
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return Result;
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}
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void UseTransparentFunctorsCheck::check(
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const MatchFinder::MatchResult &Result) {
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const auto *FuncClass =
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Result.Nodes.getNodeAs<ClassTemplateSpecializationDecl>("FunctorClass");
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if (const auto *FuncInst =
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Result.Nodes.getNodeAs<CXXConstructExpr>("FuncInst")) {
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diag(FuncInst->getLocStart(), Message)
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<< (FuncClass->getName() + "<>").str();
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return;
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}
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const auto *Functor = Result.Nodes.getNodeAs<TemplateArgument>("Functor");
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const auto FunctorParentLoc =
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Result.Nodes.getNodeAs<TypeLoc>("FunctorParentLoc")
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->getAs<TemplateSpecializationTypeLoc>();
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if (!FunctorParentLoc)
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return;
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unsigned ArgNum = 0;
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const auto *FunctorParentType =
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FunctorParentLoc.getType()->castAs<TemplateSpecializationType>();
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for (; ArgNum < FunctorParentType->getNumArgs(); ++ArgNum) {
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const TemplateArgument &Arg = FunctorParentType->getArg(ArgNum);
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if (Arg.getKind() != TemplateArgument::Type)
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continue;
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QualType ParentArgType = Arg.getAsType();
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if (ParentArgType->isRecordType() &&
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ParentArgType->getAsCXXRecordDecl() ==
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Functor->getAsType()->getAsCXXRecordDecl())
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break;
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}
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// Functor is a default template argument.
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if (ArgNum == FunctorParentType->getNumArgs())
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return;
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TemplateArgumentLoc FunctorLoc = FunctorParentLoc.getArgLoc(ArgNum);
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auto FunctorTypeLoc = getInnerTypeLocAs<TemplateSpecializationTypeLoc>(
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FunctorLoc.getTypeSourceInfo()->getTypeLoc());
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if (FunctorTypeLoc.isNull())
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return;
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SourceLocation ReportLoc = FunctorLoc.getLocation();
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diag(ReportLoc, Message) << (FuncClass->getName() + "<>").str()
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<< FixItHint::CreateRemoval(
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FunctorTypeLoc.getArgLoc(0).getSourceRange());
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}
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} // namespace modernize
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} // namespace tidy
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} // namespace clang
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