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			397 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			397 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C++
		
	
	
	
//===--- SemaAttr.cpp - Semantic Analysis for Attributes ------------------===//
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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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//
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// This file implements semantic analysis for non-trivial attributes and
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// pragmas.
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//
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//===----------------------------------------------------------------------===//
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#include "clang/Sema/SemaInternal.h"
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#include "clang/Sema/Lookup.h"
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#include "clang/AST/Attr.h"
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#include "clang/AST/Expr.h"
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#include "clang/Basic/TargetInfo.h"
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#include "clang/Lex/Preprocessor.h"
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using namespace clang;
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//===----------------------------------------------------------------------===//
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// Pragma 'pack' and 'options align'
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//===----------------------------------------------------------------------===//
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namespace {
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  struct PackStackEntry {
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    // We just use a sentinel to represent when the stack is set to mac68k
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    // alignment.
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    static const unsigned kMac68kAlignmentSentinel = ~0U;
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    unsigned Alignment;
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    IdentifierInfo *Name;
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  };
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  /// PragmaPackStack - Simple class to wrap the stack used by #pragma
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  /// pack.
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  class PragmaPackStack {
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    typedef std::vector<PackStackEntry> stack_ty;
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    /// Alignment - The current user specified alignment.
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    unsigned Alignment;
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    /// Stack - Entries in the #pragma pack stack, consisting of saved
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    /// alignments and optional names.
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    stack_ty Stack;
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  public:
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    PragmaPackStack() : Alignment(0) {}
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    void setAlignment(unsigned A) { Alignment = A; }
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    unsigned getAlignment() { return Alignment; }
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    /// push - Push the current alignment onto the stack, optionally
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    /// using the given \arg Name for the record, if non-zero.
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    void push(IdentifierInfo *Name) {
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      PackStackEntry PSE = { Alignment, Name };
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      Stack.push_back(PSE);
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    }
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    /// pop - Pop a record from the stack and restore the current
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    /// alignment to the previous value. If \arg Name is non-zero then
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    /// the first such named record is popped, otherwise the top record
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    /// is popped. Returns true if the pop succeeded.
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    bool pop(IdentifierInfo *Name, bool IsReset);
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  };
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}  // end anonymous namespace.
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bool PragmaPackStack::pop(IdentifierInfo *Name, bool IsReset) {
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  // If name is empty just pop top.
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  if (!Name) {
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    // An empty stack is a special case...
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    if (Stack.empty()) {
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      // If this isn't a reset, it is always an error.
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      if (!IsReset)
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        return false;
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      // Otherwise, it is an error only if some alignment has been set.
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      if (!Alignment)
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        return false;
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      // Otherwise, reset to the default alignment.
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      Alignment = 0;
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    } else {
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      Alignment = Stack.back().Alignment;
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      Stack.pop_back();
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    }
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    return true;
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  }
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  // Otherwise, find the named record.
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  for (unsigned i = Stack.size(); i != 0; ) {
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    --i;
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    if (Stack[i].Name == Name) {
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      // Found it, pop up to and including this record.
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      Alignment = Stack[i].Alignment;
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      Stack.erase(Stack.begin() + i, Stack.end());
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      return true;
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    }
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  }
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  return false;
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}
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/// FreePackedContext - Deallocate and null out PackContext.
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void Sema::FreePackedContext() {
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  delete static_cast<PragmaPackStack*>(PackContext);
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  PackContext = 0;
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}
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void Sema::AddAlignmentAttributesForRecord(RecordDecl *RD) {
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  // If there is no pack context, we don't need any attributes.
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  if (!PackContext)
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    return;
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  PragmaPackStack *Stack = static_cast<PragmaPackStack*>(PackContext);
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  // Otherwise, check to see if we need a max field alignment attribute.
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  if (unsigned Alignment = Stack->getAlignment()) {
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    if (Alignment == PackStackEntry::kMac68kAlignmentSentinel)
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      RD->addAttr(::new (Context) AlignMac68kAttr(SourceLocation(), Context));
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    else
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      RD->addAttr(::new (Context) MaxFieldAlignmentAttr(SourceLocation(),
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                                                        Context,
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                                                        Alignment * 8));
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  }
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}
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void Sema::AddMsStructLayoutForRecord(RecordDecl *RD) {
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  if (!MSStructPragmaOn)
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    return;
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  RD->addAttr(::new (Context) MsStructAttr(SourceLocation(), Context));
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}
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void Sema::ActOnPragmaOptionsAlign(PragmaOptionsAlignKind Kind,
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                                   SourceLocation PragmaLoc,
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                                   SourceLocation KindLoc) {
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  if (PackContext == 0)
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    PackContext = new PragmaPackStack();
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  PragmaPackStack *Context = static_cast<PragmaPackStack*>(PackContext);
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  // Reset just pops the top of the stack, or resets the current alignment to
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  // default.
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  if (Kind == Sema::POAK_Reset) {
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    if (!Context->pop(0, /*IsReset=*/true)) {
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      Diag(PragmaLoc, diag::warn_pragma_options_align_reset_failed)
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        << "stack empty";
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    }
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    return;
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  }
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  switch (Kind) {
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    // For all targets we support native and natural are the same.
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    //
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    // FIXME: This is not true on Darwin/PPC.
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  case POAK_Native:
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  case POAK_Power:
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  case POAK_Natural:
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    Context->push(0);
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    Context->setAlignment(0);
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    break;
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    // Note that '#pragma options align=packed' is not equivalent to attribute
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    // packed, it has a different precedence relative to attribute aligned.
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  case POAK_Packed:
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    Context->push(0);
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    Context->setAlignment(1);
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    break;
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  case POAK_Mac68k:
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    // Check if the target supports this.
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    if (!PP.getTargetInfo().hasAlignMac68kSupport()) {
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      Diag(PragmaLoc, diag::err_pragma_options_align_mac68k_target_unsupported);
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      return;
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    }
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    Context->push(0);
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    Context->setAlignment(PackStackEntry::kMac68kAlignmentSentinel);
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    break;
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  default:
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    Diag(PragmaLoc, diag::warn_pragma_options_align_unsupported_option)
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      << KindLoc;
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    break;
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  }
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}
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void Sema::ActOnPragmaPack(PragmaPackKind Kind, IdentifierInfo *Name,
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                           ExprTy *alignment, SourceLocation PragmaLoc,
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                           SourceLocation LParenLoc, SourceLocation RParenLoc) {
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  Expr *Alignment = static_cast<Expr *>(alignment);
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  // If specified then alignment must be a "small" power of two.
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  unsigned AlignmentVal = 0;
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  if (Alignment) {
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    llvm::APSInt Val;
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    // pack(0) is like pack(), which just works out since that is what
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    // we use 0 for in PackAttr.
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    if (Alignment->isTypeDependent() ||
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        Alignment->isValueDependent() ||
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        !Alignment->isIntegerConstantExpr(Val, Context) ||
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        !(Val == 0 || Val.isPowerOf2()) ||
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        Val.getZExtValue() > 16) {
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      Diag(PragmaLoc, diag::warn_pragma_pack_invalid_alignment);
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      return; // Ignore
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    }
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    AlignmentVal = (unsigned) Val.getZExtValue();
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  }
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  if (PackContext == 0)
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    PackContext = new PragmaPackStack();
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  PragmaPackStack *Context = static_cast<PragmaPackStack*>(PackContext);
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  switch (Kind) {
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  case Sema::PPK_Default: // pack([n])
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    Context->setAlignment(AlignmentVal);
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    break;
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  case Sema::PPK_Show: // pack(show)
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    // Show the current alignment, making sure to show the right value
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    // for the default.
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    AlignmentVal = Context->getAlignment();
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    // FIXME: This should come from the target.
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    if (AlignmentVal == 0)
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      AlignmentVal = 8;
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    if (AlignmentVal == PackStackEntry::kMac68kAlignmentSentinel)
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      Diag(PragmaLoc, diag::warn_pragma_pack_show) << "mac68k";
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    else
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      Diag(PragmaLoc, diag::warn_pragma_pack_show) << AlignmentVal;
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    break;
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  case Sema::PPK_Push: // pack(push [, id] [, [n])
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    Context->push(Name);
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    // Set the new alignment if specified.
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    if (Alignment)
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      Context->setAlignment(AlignmentVal);
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    break;
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  case Sema::PPK_Pop: // pack(pop [, id] [,  n])
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    // MSDN, C/C++ Preprocessor Reference > Pragma Directives > pack:
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    // "#pragma pack(pop, identifier, n) is undefined"
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    if (Alignment && Name)
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      Diag(PragmaLoc, diag::warn_pragma_pack_pop_identifer_and_alignment);
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    // Do the pop.
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    if (!Context->pop(Name, /*IsReset=*/false)) {
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      // If a name was specified then failure indicates the name
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      // wasn't found. Otherwise failure indicates the stack was
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      // empty.
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      Diag(PragmaLoc, diag::warn_pragma_pack_pop_failed)
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        << (Name ? "no record matching name" : "stack empty");
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      // FIXME: Warn about popping named records as MSVC does.
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    } else {
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      // Pop succeeded, set the new alignment if specified.
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      if (Alignment)
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        Context->setAlignment(AlignmentVal);
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    }
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    break;
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  default:
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    assert(0 && "Invalid #pragma pack kind.");
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  }
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}
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void Sema::ActOnPragmaMSStruct(PragmaMSStructKind Kind) { 
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  MSStructPragmaOn = (Kind == PMSST_ON);
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}
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void Sema::ActOnPragmaUnused(const Token &IdTok, Scope *curScope,
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                             SourceLocation PragmaLoc) {
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  IdentifierInfo *Name = IdTok.getIdentifierInfo();
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  LookupResult Lookup(*this, Name, IdTok.getLocation(), LookupOrdinaryName);
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  LookupParsedName(Lookup, curScope, NULL, true);
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  if (Lookup.empty()) {
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    Diag(PragmaLoc, diag::warn_pragma_unused_undeclared_var)
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      << Name << SourceRange(IdTok.getLocation());
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    return;
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  }
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  VarDecl *VD = Lookup.getAsSingle<VarDecl>();
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  if (!VD) {
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    Diag(PragmaLoc, diag::warn_pragma_unused_expected_var_arg)
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      << Name << SourceRange(IdTok.getLocation());
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    return;
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  }
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  // Warn if this was used before being marked unused.
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  if (VD->isUsed())
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    Diag(PragmaLoc, diag::warn_used_but_marked_unused) << Name;
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  VD->addAttr(::new (Context) UnusedAttr(IdTok.getLocation(), Context));
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}
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typedef std::vector<std::pair<unsigned, SourceLocation> > VisStack;
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enum { NoVisibility = (unsigned) -1 };
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void Sema::AddPushedVisibilityAttribute(Decl *D) {
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  if (!VisContext)
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    return;
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  if (isa<NamedDecl>(D) && cast<NamedDecl>(D)->getExplicitVisibility())
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    return;
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  VisStack *Stack = static_cast<VisStack*>(VisContext);
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  unsigned rawType = Stack->back().first;
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  if (rawType == NoVisibility) return;
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  VisibilityAttr::VisibilityType type
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    = (VisibilityAttr::VisibilityType) rawType;
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  SourceLocation loc = Stack->back().second;
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  D->addAttr(::new (Context) VisibilityAttr(loc, Context, type));
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}
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/// FreeVisContext - Deallocate and null out VisContext.
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void Sema::FreeVisContext() {
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  delete static_cast<VisStack*>(VisContext);
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  VisContext = 0;
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}
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static void PushPragmaVisibility(Sema &S, unsigned type, SourceLocation loc) {
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  // Put visibility on stack.
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  if (!S.VisContext)
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    S.VisContext = new VisStack;
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  VisStack *Stack = static_cast<VisStack*>(S.VisContext);
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  Stack->push_back(std::make_pair(type, loc));
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}
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void Sema::ActOnPragmaVisibility(bool IsPush, const IdentifierInfo* VisType,
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                                 SourceLocation PragmaLoc) {
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  if (IsPush) {
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    // Compute visibility to use.
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    VisibilityAttr::VisibilityType type;
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    if (VisType->isStr("default"))
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      type = VisibilityAttr::Default;
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    else if (VisType->isStr("hidden"))
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      type = VisibilityAttr::Hidden;
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    else if (VisType->isStr("internal"))
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      type = VisibilityAttr::Hidden; // FIXME
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    else if (VisType->isStr("protected"))
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      type = VisibilityAttr::Protected;
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    else {
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      Diag(PragmaLoc, diag::warn_attribute_unknown_visibility) <<
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        VisType->getName();
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      return;
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    }
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    PushPragmaVisibility(*this, type, PragmaLoc);
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  } else {
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    PopPragmaVisibility();
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  }
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}
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void Sema::ActOnPragmaFPContract(tok::OnOffSwitch OOS) {
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  switch (OOS) {
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  case tok::OOS_ON:
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    FPFeatures.fp_contract = 1;
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    break;
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  case tok::OOS_OFF:
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    FPFeatures.fp_contract = 0; 
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    break;
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  case tok::OOS_DEFAULT:
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    FPFeatures.fp_contract = getLangOptions().DefaultFPContract;
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    break;
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  }
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}
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void Sema::PushNamespaceVisibilityAttr(const VisibilityAttr *Attr) {
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  // Visibility calculations will consider the namespace's visibility.
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  // Here we just want to note that we're in a visibility context
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  // which overrides any enclosing #pragma context, but doesn't itself
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  // contribute visibility.
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  PushPragmaVisibility(*this, NoVisibility, SourceLocation());
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}
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void Sema::PopPragmaVisibility() {
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  // Pop visibility from stack, if there is one on the stack.
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  if (VisContext) {
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    VisStack *Stack = static_cast<VisStack*>(VisContext);
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    Stack->pop_back();
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    // To simplify the implementation, never keep around an empty stack.
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    if (Stack->empty())
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      FreeVisContext();
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  }
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  // FIXME: Add diag for pop without push.
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}
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