forked from OSchip/llvm-project
				
			
		
			
				
	
	
		
			370 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			370 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			C++
		
	
	
	
//===--- SemaStmtAttr.cpp - Statement Attribute Handling ------------------===//
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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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//  This file implements stmt-related attribute processing.
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//
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//===----------------------------------------------------------------------===//
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#include "clang/Sema/SemaInternal.h"
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#include "clang/AST/ASTContext.h"
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#include "clang/Basic/SourceManager.h"
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#include "clang/Sema/DelayedDiagnostic.h"
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#include "clang/Sema/Lookup.h"
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#include "clang/Sema/ScopeInfo.h"
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#include "llvm/ADT/StringExtras.h"
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using namespace clang;
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using namespace sema;
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static Attr *handleFallThroughAttr(Sema &S, Stmt *St, const ParsedAttr &A,
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                                   SourceRange Range) {
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  FallThroughAttr Attr(A.getRange(), S.Context,
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                       A.getAttributeSpellingListIndex());
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  if (!isa<NullStmt>(St)) {
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    S.Diag(A.getRange().getBegin(), diag::err_fallthrough_attr_wrong_target)
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        << Attr.getSpelling() << St->getBeginLoc();
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    if (isa<SwitchCase>(St)) {
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      SourceLocation L = S.getLocForEndOfToken(Range.getEnd());
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      S.Diag(L, diag::note_fallthrough_insert_semi_fixit)
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          << FixItHint::CreateInsertion(L, ";");
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    }
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    return nullptr;
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  }
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  auto *FnScope = S.getCurFunction();
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  if (FnScope->SwitchStack.empty()) {
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    S.Diag(A.getRange().getBegin(), diag::err_fallthrough_attr_outside_switch);
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    return nullptr;
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  }
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  // If this is spelled as the standard C++17 attribute, but not in C++17, warn
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  // about using it as an extension.
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  if (!S.getLangOpts().CPlusPlus17 && A.isCXX11Attribute() &&
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      !A.getScopeName())
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    S.Diag(A.getLoc(), diag::ext_cxx17_attr) << A.getName();
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  FnScope->setHasFallthroughStmt();
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  return ::new (S.Context) auto(Attr);
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}
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static Attr *handleSuppressAttr(Sema &S, Stmt *St, const ParsedAttr &A,
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                                SourceRange Range) {
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  if (A.getNumArgs() < 1) {
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    S.Diag(A.getLoc(), diag::err_attribute_too_few_arguments) << A << 1;
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    return nullptr;
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  }
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  std::vector<StringRef> DiagnosticIdentifiers;
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  for (unsigned I = 0, E = A.getNumArgs(); I != E; ++I) {
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    StringRef RuleName;
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    if (!S.checkStringLiteralArgumentAttr(A, I, RuleName, nullptr))
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      return nullptr;
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    // FIXME: Warn if the rule name is unknown. This is tricky because only
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    // clang-tidy knows about available rules.
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    DiagnosticIdentifiers.push_back(RuleName);
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  }
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  return ::new (S.Context) SuppressAttr(
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      A.getRange(), S.Context, DiagnosticIdentifiers.data(),
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      DiagnosticIdentifiers.size(), A.getAttributeSpellingListIndex());
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}
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static Attr *handleLoopHintAttr(Sema &S, Stmt *St, const ParsedAttr &A,
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                                SourceRange) {
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  IdentifierLoc *PragmaNameLoc = A.getArgAsIdent(0);
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  IdentifierLoc *OptionLoc = A.getArgAsIdent(1);
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  IdentifierLoc *StateLoc = A.getArgAsIdent(2);
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  Expr *ValueExpr = A.getArgAsExpr(3);
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  bool PragmaUnroll = PragmaNameLoc->Ident->getName() == "unroll";
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  bool PragmaNoUnroll = PragmaNameLoc->Ident->getName() == "nounroll";
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  bool PragmaUnrollAndJam = PragmaNameLoc->Ident->getName() == "unroll_and_jam";
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  bool PragmaNoUnrollAndJam =
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      PragmaNameLoc->Ident->getName() == "nounroll_and_jam";
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  if (St->getStmtClass() != Stmt::DoStmtClass &&
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      St->getStmtClass() != Stmt::ForStmtClass &&
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      St->getStmtClass() != Stmt::CXXForRangeStmtClass &&
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      St->getStmtClass() != Stmt::WhileStmtClass) {
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    const char *Pragma =
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        llvm::StringSwitch<const char *>(PragmaNameLoc->Ident->getName())
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            .Case("unroll", "#pragma unroll")
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            .Case("nounroll", "#pragma nounroll")
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            .Case("unroll_and_jam", "#pragma unroll_and_jam")
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            .Case("nounroll_and_jam", "#pragma nounroll_and_jam")
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            .Default("#pragma clang loop");
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    S.Diag(St->getBeginLoc(), diag::err_pragma_loop_precedes_nonloop) << Pragma;
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    return nullptr;
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  }
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  LoopHintAttr::Spelling Spelling =
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      LoopHintAttr::Spelling(A.getAttributeSpellingListIndex());
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  LoopHintAttr::OptionType Option;
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  LoopHintAttr::LoopHintState State;
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  if (PragmaNoUnroll) {
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    // #pragma nounroll
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    Option = LoopHintAttr::Unroll;
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    State = LoopHintAttr::Disable;
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  } else if (PragmaUnroll) {
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    if (ValueExpr) {
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      // #pragma unroll N
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      Option = LoopHintAttr::UnrollCount;
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      State = LoopHintAttr::Numeric;
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    } else {
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      // #pragma unroll
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      Option = LoopHintAttr::Unroll;
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      State = LoopHintAttr::Enable;
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    }
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  } else if (PragmaNoUnrollAndJam) {
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    // #pragma nounroll_and_jam
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    Option = LoopHintAttr::UnrollAndJam;
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    State = LoopHintAttr::Disable;
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  } else if (PragmaUnrollAndJam) {
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    if (ValueExpr) {
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      // #pragma unroll_and_jam N
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      Option = LoopHintAttr::UnrollAndJamCount;
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      State = LoopHintAttr::Numeric;
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    } else {
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      // #pragma unroll_and_jam
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      Option = LoopHintAttr::UnrollAndJam;
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      State = LoopHintAttr::Enable;
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    }
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  } else {
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    // #pragma clang loop ...
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    assert(OptionLoc && OptionLoc->Ident &&
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           "Attribute must have valid option info.");
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    Option = llvm::StringSwitch<LoopHintAttr::OptionType>(
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                 OptionLoc->Ident->getName())
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                 .Case("vectorize", LoopHintAttr::Vectorize)
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                 .Case("vectorize_width", LoopHintAttr::VectorizeWidth)
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                 .Case("interleave", LoopHintAttr::Interleave)
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                 .Case("interleave_count", LoopHintAttr::InterleaveCount)
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                 .Case("unroll", LoopHintAttr::Unroll)
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                 .Case("unroll_count", LoopHintAttr::UnrollCount)
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                 .Case("pipeline", LoopHintAttr::PipelineDisabled)
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                 .Case("pipeline_initiation_interval",
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                       LoopHintAttr::PipelineInitiationInterval)
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                 .Case("distribute", LoopHintAttr::Distribute)
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                 .Default(LoopHintAttr::Vectorize);
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    if (Option == LoopHintAttr::VectorizeWidth ||
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        Option == LoopHintAttr::InterleaveCount ||
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        Option == LoopHintAttr::UnrollCount ||
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        Option == LoopHintAttr::PipelineInitiationInterval) {
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      assert(ValueExpr && "Attribute must have a valid value expression.");
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      if (S.CheckLoopHintExpr(ValueExpr, St->getBeginLoc()))
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        return nullptr;
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      State = LoopHintAttr::Numeric;
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    } else if (Option == LoopHintAttr::Vectorize ||
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               Option == LoopHintAttr::Interleave ||
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               Option == LoopHintAttr::Unroll ||
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               Option == LoopHintAttr::Distribute ||
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               Option == LoopHintAttr::PipelineDisabled) {
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      assert(StateLoc && StateLoc->Ident && "Loop hint must have an argument");
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      if (StateLoc->Ident->isStr("disable"))
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        State = LoopHintAttr::Disable;
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      else if (StateLoc->Ident->isStr("assume_safety"))
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        State = LoopHintAttr::AssumeSafety;
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      else if (StateLoc->Ident->isStr("full"))
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        State = LoopHintAttr::Full;
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      else if (StateLoc->Ident->isStr("enable"))
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        State = LoopHintAttr::Enable;
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      else
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        llvm_unreachable("bad loop hint argument");
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    } else
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      llvm_unreachable("bad loop hint");
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  }
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  return LoopHintAttr::CreateImplicit(S.Context, Spelling, Option, State,
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                                      ValueExpr, A.getRange());
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}
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static void
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CheckForIncompatibleAttributes(Sema &S,
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                               const SmallVectorImpl<const Attr *> &Attrs) {
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  // There are 6 categories of loop hints attributes: vectorize, interleave,
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  // unroll, unroll_and_jam, pipeline and distribute. Except for distribute they
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  // come in two variants: a state form and a numeric form.  The state form
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  // selectively defaults/enables/disables the transformation for the loop
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  // (for unroll, default indicates full unrolling rather than enabling the
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  // transformation). The numeric form form provides an integer hint (for
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  // example, unroll count) to the transformer. The following array accumulates
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  // the hints encountered while iterating through the attributes to check for
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  // compatibility.
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  struct {
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    const LoopHintAttr *StateAttr;
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    const LoopHintAttr *NumericAttr;
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  } HintAttrs[] = {{nullptr, nullptr}, {nullptr, nullptr}, {nullptr, nullptr},
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                   {nullptr, nullptr}, {nullptr, nullptr}, {nullptr, nullptr}};
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  for (const auto *I : Attrs) {
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    const LoopHintAttr *LH = dyn_cast<LoopHintAttr>(I);
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    // Skip non loop hint attributes
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    if (!LH)
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      continue;
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    LoopHintAttr::OptionType Option = LH->getOption();
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    enum {
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      Vectorize,
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      Interleave,
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      Unroll,
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      UnrollAndJam,
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      Distribute,
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      Pipeline
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    } Category;
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    switch (Option) {
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    case LoopHintAttr::Vectorize:
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    case LoopHintAttr::VectorizeWidth:
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      Category = Vectorize;
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      break;
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    case LoopHintAttr::Interleave:
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    case LoopHintAttr::InterleaveCount:
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      Category = Interleave;
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      break;
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    case LoopHintAttr::Unroll:
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    case LoopHintAttr::UnrollCount:
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      Category = Unroll;
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      break;
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    case LoopHintAttr::UnrollAndJam:
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    case LoopHintAttr::UnrollAndJamCount:
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      Category = UnrollAndJam;
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      break;
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    case LoopHintAttr::Distribute:
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      // Perform the check for duplicated 'distribute' hints.
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      Category = Distribute;
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      break;
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    case LoopHintAttr::PipelineDisabled:
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    case LoopHintAttr::PipelineInitiationInterval:
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      Category = Pipeline;
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      break;
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    };
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    assert(Category < sizeof(HintAttrs) / sizeof(HintAttrs[0]));
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    auto &CategoryState = HintAttrs[Category];
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    const LoopHintAttr *PrevAttr;
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    if (Option == LoopHintAttr::Vectorize ||
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        Option == LoopHintAttr::Interleave || Option == LoopHintAttr::Unroll ||
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        Option == LoopHintAttr::UnrollAndJam ||
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        Option == LoopHintAttr::PipelineDisabled ||
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        Option == LoopHintAttr::Distribute) {
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      // Enable|Disable|AssumeSafety hint.  For example, vectorize(enable).
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      PrevAttr = CategoryState.StateAttr;
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      CategoryState.StateAttr = LH;
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    } else {
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      // Numeric hint.  For example, vectorize_width(8).
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      PrevAttr = CategoryState.NumericAttr;
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      CategoryState.NumericAttr = LH;
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    }
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    PrintingPolicy Policy(S.Context.getLangOpts());
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    SourceLocation OptionLoc = LH->getRange().getBegin();
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    if (PrevAttr)
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      // Cannot specify same type of attribute twice.
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      S.Diag(OptionLoc, diag::err_pragma_loop_compatibility)
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          << /*Duplicate=*/true << PrevAttr->getDiagnosticName(Policy)
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          << LH->getDiagnosticName(Policy);
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    if (CategoryState.StateAttr && CategoryState.NumericAttr &&
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        (Category == Unroll || Category == UnrollAndJam ||
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         CategoryState.StateAttr->getState() == LoopHintAttr::Disable)) {
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      // Disable hints are not compatible with numeric hints of the same
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      // category.  As a special case, numeric unroll hints are also not
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      // compatible with enable or full form of the unroll pragma because these
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      // directives indicate full unrolling.
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      S.Diag(OptionLoc, diag::err_pragma_loop_compatibility)
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          << /*Duplicate=*/false
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          << CategoryState.StateAttr->getDiagnosticName(Policy)
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          << CategoryState.NumericAttr->getDiagnosticName(Policy);
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    }
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  }
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}
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static Attr *handleOpenCLUnrollHint(Sema &S, Stmt *St, const ParsedAttr &A,
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                                    SourceRange Range) {
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  // Although the feature was introduced only in OpenCL C v2.0 s6.11.5, it's
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  // useful for OpenCL 1.x too and doesn't require HW support.
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  // opencl_unroll_hint can have 0 arguments (compiler
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  // determines unrolling factor) or 1 argument (the unroll factor provided
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  // by the user).
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  unsigned NumArgs = A.getNumArgs();
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  if (NumArgs > 1) {
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    S.Diag(A.getLoc(), diag::err_attribute_too_many_arguments) << A << 1;
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    return nullptr;
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  }
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  unsigned UnrollFactor = 0;
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  if (NumArgs == 1) {
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    Expr *E = A.getArgAsExpr(0);
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    llvm::APSInt ArgVal(32);
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    if (!E->isIntegerConstantExpr(ArgVal, S.Context)) {
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      S.Diag(A.getLoc(), diag::err_attribute_argument_type)
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          << A << AANT_ArgumentIntegerConstant << E->getSourceRange();
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      return nullptr;
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    }
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    int Val = ArgVal.getSExtValue();
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    if (Val <= 0) {
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      S.Diag(A.getRange().getBegin(),
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             diag::err_attribute_requires_positive_integer)
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          << A << /* positive */ 0;
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      return nullptr;
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    }
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    UnrollFactor = Val;
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  }
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  return OpenCLUnrollHintAttr::CreateImplicit(S.Context, UnrollFactor);
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}
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static Attr *ProcessStmtAttribute(Sema &S, Stmt *St, const ParsedAttr &A,
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                                  SourceRange Range) {
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  switch (A.getKind()) {
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  case ParsedAttr::UnknownAttribute:
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    S.Diag(A.getLoc(), A.isDeclspecAttribute()
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                           ? (unsigned)diag::warn_unhandled_ms_attribute_ignored
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                           : (unsigned)diag::warn_unknown_attribute_ignored)
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        << A.getName();
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    return nullptr;
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  case ParsedAttr::AT_FallThrough:
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    return handleFallThroughAttr(S, St, A, Range);
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  case ParsedAttr::AT_LoopHint:
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    return handleLoopHintAttr(S, St, A, Range);
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  case ParsedAttr::AT_OpenCLUnrollHint:
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    return handleOpenCLUnrollHint(S, St, A, Range);
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  case ParsedAttr::AT_Suppress:
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    return handleSuppressAttr(S, St, A, Range);
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  default:
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    // if we're here, then we parsed a known attribute, but didn't recognize
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    // it as a statement attribute => it is declaration attribute
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    S.Diag(A.getRange().getBegin(), diag::err_decl_attribute_invalid_on_stmt)
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        << A.getName() << St->getBeginLoc();
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    return nullptr;
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  }
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}
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StmtResult Sema::ProcessStmtAttributes(Stmt *S,
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                                       const ParsedAttributesView &AttrList,
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                                       SourceRange Range) {
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  SmallVector<const Attr*, 8> Attrs;
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  for (const ParsedAttr &AL : AttrList) {
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    if (Attr *a = ProcessStmtAttribute(*this, S, AL, Range))
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      Attrs.push_back(a);
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  }
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  CheckForIncompatibleAttributes(*this, Attrs);
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  if (Attrs.empty())
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    return S;
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  return ActOnAttributedStmt(Range.getBegin(), Attrs, S);
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}
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