CodeGenTypes.cpp revision de2e22d33afec98324a66a358dfe0951b3c7259a
15f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer//===--- CodeGenTypes.cpp - Type translation for LLVM CodeGen -------------===//
25f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer//
35f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer//                     The LLVM Compiler Infrastructure
45f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer//
50bc735ffcfb223c0186419547abaa5c84482663eChris Lattner// This file is distributed under the University of Illinois Open Source
60bc735ffcfb223c0186419547abaa5c84482663eChris Lattner// License. See LICENSE.TXT for details.
75f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer//
85f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer//===----------------------------------------------------------------------===//
95f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer//
105f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer// This is the code that handles AST -> LLVM type lowering.
115f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer//
125f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer//===----------------------------------------------------------------------===//
135f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer
145f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer#include "CodeGenTypes.h"
15de7fb8413b13651fd85b7125d08b3c9ac2816d9dDaniel Dunbar#include "clang/AST/ASTContext.h"
16c4a1dea2dc56bd1357ec91b829a0b9e68229a13eDaniel Dunbar#include "clang/AST/DeclObjC.h"
17de7fb8413b13651fd85b7125d08b3c9ac2816d9dDaniel Dunbar#include "clang/AST/Expr.h"
183d598a5ab3c8aabce0a03a2f5dea65eee643e5acAnders Carlsson#include "clang/AST/ASTRecordLayout.h"
195f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer#include "llvm/DerivedTypes.h"
204e533287e6a9adac78c9ac370612581aad9b8c5eAnders Carlsson#include "llvm/Module.h"
21d9e9ede6b1703849da739629904dad197306e527Devang Patel#include "llvm/Target/TargetData.h"
225f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer
2345c25ba11cbf8c9a461def5b03f6ee9481e06769Daniel Dunbar#include "CGCall.h"
2445c25ba11cbf8c9a461def5b03f6ee9481e06769Daniel Dunbar
255f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencerusing namespace clang;
265f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencerusing namespace CodeGen;
275f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer
28057afddf0fab91d979d6a750667d56a345225c96Devang Patelnamespace {
2988a981b47c7face1b1fdaa9074256245107b9ca9Devang Patel  /// RecordOrganizer - This helper class, used by CGRecordLayout, layouts
30057afddf0fab91d979d6a750667d56a345225c96Devang Patel  /// structs and unions. It manages transient information used during layout.
314c4635c6cd8114bfa3ee20628fa1f03e67ac1e55Devang Patel  /// FIXME : Handle field aligments. Handle packed structs.
32057afddf0fab91d979d6a750667d56a345225c96Devang Patel  class RecordOrganizer {
33057afddf0fab91d979d6a750667d56a345225c96Devang Patel  public:
34cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    explicit RecordOrganizer(CodeGenTypes &Types, const RecordDecl& Record) :
35cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman      CGT(Types), RD(Record), STy(NULL) {}
360bd41f2cea0639395e8ab7ef8fd6df2c1999b6aeDevang Patel
3786522b9e84d0c39f09b54e888538ad64e89788c4Devang Patel    /// layoutStructFields - Do the actual work and lay out all fields. Create
38057afddf0fab91d979d6a750667d56a345225c96Devang Patel    /// corresponding llvm struct type.  This should be invoked only after
39057afddf0fab91d979d6a750667d56a345225c96Devang Patel    /// all fields are added.
4088a981b47c7face1b1fdaa9074256245107b9ca9Devang Patel    void layoutStructFields(const ASTRecordLayout &RL);
4186522b9e84d0c39f09b54e888538ad64e89788c4Devang Patel
4286522b9e84d0c39f09b54e888538ad64e89788c4Devang Patel    /// layoutUnionFields - Do the actual work and lay out all fields. Create
4386522b9e84d0c39f09b54e888538ad64e89788c4Devang Patel    /// corresponding llvm struct type.  This should be invoked only after
4486522b9e84d0c39f09b54e888538ad64e89788c4Devang Patel    /// all fields are added.
45cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    void layoutUnionFields(const ASTRecordLayout &RL);
46057afddf0fab91d979d6a750667d56a345225c96Devang Patel
47057afddf0fab91d979d6a750667d56a345225c96Devang Patel    /// getLLVMType - Return associated llvm struct type. This may be NULL
48057afddf0fab91d979d6a750667d56a345225c96Devang Patel    /// if fields are not laid out.
49057afddf0fab91d979d6a750667d56a345225c96Devang Patel    llvm::Type *getLLVMType() const {
50057afddf0fab91d979d6a750667d56a345225c96Devang Patel      return STy;
51057afddf0fab91d979d6a750667d56a345225c96Devang Patel    }
52057afddf0fab91d979d6a750667d56a345225c96Devang Patel
53eae1560d4fb99b9df814bc12c0419825996156cdDevang Patel    llvm::SmallSet<unsigned, 8> &getPaddingFields() {
545bfc1a7ecb853cf87d10e720a07b9fbcd2a223eeDevang Patel      return PaddingFields;
555bfc1a7ecb853cf87d10e720a07b9fbcd2a223eeDevang Patel    }
565bfc1a7ecb853cf87d10e720a07b9fbcd2a223eeDevang Patel
57057afddf0fab91d979d6a750667d56a345225c96Devang Patel  private:
58f9fef925644a6c40b344a43ab9ebdb08a707de53Devang Patel    CodeGenTypes &CGT;
59cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    const RecordDecl& RD;
60057afddf0fab91d979d6a750667d56a345225c96Devang Patel    llvm::Type *STy;
61eae1560d4fb99b9df814bc12c0419825996156cdDevang Patel    llvm::SmallSet<unsigned, 8> PaddingFields;
62057afddf0fab91d979d6a750667d56a345225c96Devang Patel  };
63057afddf0fab91d979d6a750667d56a345225c96Devang Patel}
64057afddf0fab91d979d6a750667d56a345225c96Devang Patel
657a4718e813e5e99d478567a482217c7eef8572c5Devang PatelCodeGenTypes::CodeGenTypes(ASTContext &Ctx, llvm::Module& M,
667a4718e813e5e99d478567a482217c7eef8572c5Devang Patel                           const llvm::TargetData &TD)
676b1da0ea19c12346192f5ea4d70872c13bfcc82aDaniel Dunbar  : Context(Ctx), Target(Ctx.Target), TheModule(M), TheTargetData(TD),
686b1da0ea19c12346192f5ea4d70872c13bfcc82aDaniel Dunbar    TheABIInfo(0) {
69d2d2a11a91d7ddf468bfb70f66362d24806ed601Chris Lattner}
705f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer
71b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang PatelCodeGenTypes::~CodeGenTypes() {
72efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar  for(llvm::DenseMap<const Type *, CGRecordLayout *>::iterator
7388a981b47c7face1b1fdaa9074256245107b9ca9Devang Patel        I = CGRecordLayouts.begin(), E = CGRecordLayouts.end();
74b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel      I != E; ++I)
75b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel    delete I->second;
7688a981b47c7face1b1fdaa9074256245107b9ca9Devang Patel  CGRecordLayouts.clear();
77b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel}
78b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel
795f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer/// ConvertType - Convert the specified type to its LLVM form.
805f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencerconst llvm::Type *CodeGenTypes::ConvertType(QualType T) {
81fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner  llvm::PATypeHolder Result = ConvertTypeRecursive(T);
82fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner
83fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner  // Any pointers that were converted defered evaluation of their pointee type,
84fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner  // creating an opaque type instead.  This is in order to avoid problems with
85fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner  // circular types.  Loop through all these defered pointees, if any, and
86fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner  // resolve them now.
87fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner  while (!PointersToResolve.empty()) {
886aeae7fa9cfaacba3a4077d62c01c2531d88a63eDaniel Dunbar    std::pair<QualType, llvm::OpaqueType*> P =
89fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner      PointersToResolve.back();
90fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner    PointersToResolve.pop_back();
91fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner    // We can handle bare pointers here because we know that the only pointers
92fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner    // to the Opaque type are P.second and from other types.  Refining the
93fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner    // opqaue type away will invalidate P.second, but we don't mind :).
9457a84fb51de4f3de50debcf12dd194af8c6aaa58Eli Friedman    const llvm::Type *NT = ConvertTypeForMemRecursive(P.first);
95fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner    P.second->refineAbstractTypeTo(NT);
96fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner  }
97fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner
98fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner  return Result;
99fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner}
100fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner
101fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattnerconst llvm::Type *CodeGenTypes::ConvertTypeRecursive(QualType T) {
10209dc6660487fc2f4a4bb2032e30123d3e0da7230Chris Lattner  T = Context.getCanonicalType(T);
1039619662a1d42e2008b865d3459c0677e149dad1bChris Lattner
10430ec9972be5a5af1f7a2277360dfa3aa1540b4faDevang Patel  // See if type is already cached.
1050ffe89ab1e4890899e0e11a6f68223567a69b38aDevang Patel  llvm::DenseMap<Type *, llvm::PATypeHolder>::iterator
1069619662a1d42e2008b865d3459c0677e149dad1bChris Lattner    I = TypeCache.find(T.getTypePtr());
1073c40085b373d8e6e4523812e06f73a0cb9d5142cDevang Patel  // If type is found in map and this is not a definition for a opaque
108fae6e2994a51d8ec1e61b6eb68765247c83b1ccfChris Lattner  // place holder type then use it. Otherwise, convert type T.
1094581fff8af09a156a9dcc4de62587385c5da9574Chris Lattner  if (I != TypeCache.end())
11047c87b4b160d45285b24b1b7f4e3cbaaed3dc464Devang Patel    return I->second.get();
11130ec9972be5a5af1f7a2277360dfa3aa1540b4faDevang Patel
11230ec9972be5a5af1f7a2277360dfa3aa1540b4faDevang Patel  const llvm::Type *ResultType = ConvertNewType(T);
1139619662a1d42e2008b865d3459c0677e149dad1bChris Lattner  TypeCache.insert(std::make_pair(T.getTypePtr(),
1144581fff8af09a156a9dcc4de62587385c5da9574Chris Lattner                                  llvm::PATypeHolder(ResultType)));
11530ec9972be5a5af1f7a2277360dfa3aa1540b4faDevang Patel  return ResultType;
11630ec9972be5a5af1f7a2277360dfa3aa1540b4faDevang Patel}
11730ec9972be5a5af1f7a2277360dfa3aa1540b4faDevang Patel
11857a84fb51de4f3de50debcf12dd194af8c6aaa58Eli Friedmanconst llvm::Type *CodeGenTypes::ConvertTypeForMemRecursive(QualType T) {
11957a84fb51de4f3de50debcf12dd194af8c6aaa58Eli Friedman  const llvm::Type *ResultType = ConvertTypeRecursive(T);
12057a84fb51de4f3de50debcf12dd194af8c6aaa58Eli Friedman  if (ResultType == llvm::Type::Int1Ty)
12157a84fb51de4f3de50debcf12dd194af8c6aaa58Eli Friedman    return llvm::IntegerType::get((unsigned)Context.getTypeSize(T));
12257a84fb51de4f3de50debcf12dd194af8c6aaa58Eli Friedman  return ResultType;
12357a84fb51de4f3de50debcf12dd194af8c6aaa58Eli Friedman}
12457a84fb51de4f3de50debcf12dd194af8c6aaa58Eli Friedman
1254581fff8af09a156a9dcc4de62587385c5da9574Chris Lattner/// ConvertTypeForMem - Convert type T into a llvm::Type.  This differs from
1264581fff8af09a156a9dcc4de62587385c5da9574Chris Lattner/// ConvertType in that it is used to convert to the memory representation for
1274581fff8af09a156a9dcc4de62587385c5da9574Chris Lattner/// a type.  For example, the scalar representation for _Bool is i1, but the
1284581fff8af09a156a9dcc4de62587385c5da9574Chris Lattner/// memory representation is usually i8 or i32, depending on the target.
12919009e6fe7e0f51d2e49f4c94928a048c11c5281Chris Lattnerconst llvm::Type *CodeGenTypes::ConvertTypeForMem(QualType T) {
13019009e6fe7e0f51d2e49f4c94928a048c11c5281Chris Lattner  const llvm::Type *R = ConvertType(T);
13119009e6fe7e0f51d2e49f4c94928a048c11c5281Chris Lattner
13219009e6fe7e0f51d2e49f4c94928a048c11c5281Chris Lattner  // If this is a non-bool type, don't map it.
13319009e6fe7e0f51d2e49f4c94928a048c11c5281Chris Lattner  if (R != llvm::Type::Int1Ty)
13419009e6fe7e0f51d2e49f4c94928a048c11c5281Chris Lattner    return R;
13519009e6fe7e0f51d2e49f4c94928a048c11c5281Chris Lattner
13619009e6fe7e0f51d2e49f4c94928a048c11c5281Chris Lattner  // Otherwise, return an integer of the target-specified size.
13798be4943e8dc4f3905629a7102668960873cf863Chris Lattner  return llvm::IntegerType::get((unsigned)Context.getTypeSize(T));
13819009e6fe7e0f51d2e49f4c94928a048c11c5281Chris Lattner
13919009e6fe7e0f51d2e49f4c94928a048c11c5281Chris Lattner}
14019009e6fe7e0f51d2e49f4c94928a048c11c5281Chris Lattner
141b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman// Code to verify a given function type is complete, i.e. the return type
142b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman// and all of the argument types are complete.
143b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedmanstatic const TagType *VerifyFuncTypeComplete(const Type* T) {
144b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman  const FunctionType *FT = cast<FunctionType>(T);
145b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman  if (const TagType* TT = FT->getResultType()->getAsTagType())
146b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman    if (!TT->getDecl()->isDefinition())
147b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      return TT;
148b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman  if (const FunctionProtoType *FPT = dyn_cast<FunctionProtoType>(T))
149b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman    for (unsigned i = 0; i < FPT->getNumArgs(); i++)
150b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      if (const TagType* TT = FPT->getArgType(i)->getAsTagType())
151b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman        if (!TT->getDecl()->isDefinition())
152b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman          return TT;
153b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman  return 0;
154b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman}
155b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman
156c5b8806cda286cf41866176ef98011fdaa68da01Chris Lattner/// UpdateCompletedType - When we find the full definition for a TagDecl,
157c5b8806cda286cf41866176ef98011fdaa68da01Chris Lattner/// replace the 'opaque' type we previously made for it if applicable.
158c5b8806cda286cf41866176ef98011fdaa68da01Chris Lattnervoid CodeGenTypes::UpdateCompletedType(const TagDecl *TD) {
159efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar  const Type *Key =
160efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar    Context.getTagDeclType(const_cast<TagDecl*>(TD)).getTypePtr();
161efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar  llvm::DenseMap<const Type*, llvm::PATypeHolder>::iterator TDTI =
162efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar    TagDeclTypes.find(Key);
1636ef58e36bbbfa232fe8b50309361e841985abfc6Chris Lattner  if (TDTI == TagDeclTypes.end()) return;
1646ef58e36bbbfa232fe8b50309361e841985abfc6Chris Lattner
1656ef58e36bbbfa232fe8b50309361e841985abfc6Chris Lattner  // Remember the opaque LLVM type for this tagdecl.
166d86e6bc7ab4388a578daf46e7c76be9122a25072Chris Lattner  llvm::PATypeHolder OpaqueHolder = TDTI->second;
167d86e6bc7ab4388a578daf46e7c76be9122a25072Chris Lattner  assert(isa<llvm::OpaqueType>(OpaqueHolder.get()) &&
1686ef58e36bbbfa232fe8b50309361e841985abfc6Chris Lattner         "Updating compilation of an already non-opaque type?");
169d86e6bc7ab4388a578daf46e7c76be9122a25072Chris Lattner
170d86e6bc7ab4388a578daf46e7c76be9122a25072Chris Lattner  // Remove it from TagDeclTypes so that it will be regenerated.
171d86e6bc7ab4388a578daf46e7c76be9122a25072Chris Lattner  TagDeclTypes.erase(TDTI);
172d86e6bc7ab4388a578daf46e7c76be9122a25072Chris Lattner
1738fb1dd005f4cb530bca11d622362d39727294420Chris Lattner  // Generate the new type.
1748fb1dd005f4cb530bca11d622362d39727294420Chris Lattner  const llvm::Type *NT = ConvertTagDeclType(TD);
175d86e6bc7ab4388a578daf46e7c76be9122a25072Chris Lattner
1768fb1dd005f4cb530bca11d622362d39727294420Chris Lattner  // Refine the old opaque type to its new definition.
1778fb1dd005f4cb530bca11d622362d39727294420Chris Lattner  cast<llvm::OpaqueType>(OpaqueHolder.get())->refineAbstractTypeTo(NT);
178b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman
179b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman  // Since we just completed a tag type, check to see if any function types
180b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman  // were completed along with the tag type.
181b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman  // FIXME: This is very inefficient; if we track which function types depend
182b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman  // on which tag types, though, it should be reasonably efficient.
183b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman  llvm::DenseMap<const Type*, llvm::PATypeHolder>::iterator i;
184b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman  for (i = FunctionTypes.begin(); i != FunctionTypes.end(); ++i) {
185b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman    if (const TagType* TT = VerifyFuncTypeComplete(i->first)) {
186b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      // This function type still depends on an incomplete tag type; make sure
187b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      // that tag type has an associated opaque type.
188b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      ConvertTagDeclType(TT->getDecl());
189b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman    } else {
190b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      // This function no longer depends on an incomplete tag type; create the
191b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      // function type, and refine the opaque type to the new function type.
192b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      llvm::PATypeHolder OpaqueHolder = i->second;
193b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      const llvm::Type *NFT = ConvertNewType(QualType(i->first, 0));
194b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      cast<llvm::OpaqueType>(OpaqueHolder.get())->refineAbstractTypeTo(NFT);
195b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      FunctionTypes.erase(i);
196b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman    }
197b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman  }
198d86e6bc7ab4388a578daf46e7c76be9122a25072Chris Lattner}
199d86e6bc7ab4388a578daf46e7c76be9122a25072Chris Lattner
200b7cfe88e88cb4f46308de89cf3f0c81bfe624128Chris Lattnerstatic const llvm::Type* getTypeForFormat(const llvm::fltSemantics &format) {
201b7cfe88e88cb4f46308de89cf3f0c81bfe624128Chris Lattner  if (&format == &llvm::APFloat::IEEEsingle)
202f6a943e047f541619a2202f9e43b20b3d7c0a96dEli Friedman    return llvm::Type::FloatTy;
203b7cfe88e88cb4f46308de89cf3f0c81bfe624128Chris Lattner  if (&format == &llvm::APFloat::IEEEdouble)
204f6a943e047f541619a2202f9e43b20b3d7c0a96dEli Friedman    return llvm::Type::DoubleTy;
205b7cfe88e88cb4f46308de89cf3f0c81bfe624128Chris Lattner  if (&format == &llvm::APFloat::IEEEquad)
206f6a943e047f541619a2202f9e43b20b3d7c0a96dEli Friedman    return llvm::Type::FP128Ty;
207b7cfe88e88cb4f46308de89cf3f0c81bfe624128Chris Lattner  if (&format == &llvm::APFloat::PPCDoubleDouble)
208f6a943e047f541619a2202f9e43b20b3d7c0a96dEli Friedman    return llvm::Type::PPC_FP128Ty;
209b7cfe88e88cb4f46308de89cf3f0c81bfe624128Chris Lattner  if (&format == &llvm::APFloat::x87DoubleExtended)
210f6a943e047f541619a2202f9e43b20b3d7c0a96dEli Friedman    return llvm::Type::X86_FP80Ty;
211b7cfe88e88cb4f46308de89cf3f0c81bfe624128Chris Lattner  assert(0 && "Unknown float format!");
212f6a943e047f541619a2202f9e43b20b3d7c0a96dEli Friedman  return 0;
213f6a943e047f541619a2202f9e43b20b3d7c0a96dEli Friedman}
214f6a943e047f541619a2202f9e43b20b3d7c0a96dEli Friedman
21530ec9972be5a5af1f7a2277360dfa3aa1540b4faDevang Patelconst llvm::Type *CodeGenTypes::ConvertNewType(QualType T) {
2169619662a1d42e2008b865d3459c0677e149dad1bChris Lattner  const clang::Type &Ty = *Context.getCanonicalType(T);
2175f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer
2185f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  switch (Ty.getTypeClass()) {
21972564e73277e29f6db3305d1f27ba408abb7ed88Douglas Gregor#define TYPE(Class, Base)
22072564e73277e29f6db3305d1f27ba408abb7ed88Douglas Gregor#define ABSTRACT_TYPE(Class, Base)
22172564e73277e29f6db3305d1f27ba408abb7ed88Douglas Gregor#define NON_CANONICAL_TYPE(Class, Base) case Type::Class:
22272564e73277e29f6db3305d1f27ba408abb7ed88Douglas Gregor#define DEPENDENT_TYPE(Class, Base) case Type::Class:
22372564e73277e29f6db3305d1f27ba408abb7ed88Douglas Gregor#include "clang/AST/TypeNodes.def"
22472564e73277e29f6db3305d1f27ba408abb7ed88Douglas Gregor    assert(false && "Non-canonical or dependent types aren't possible.");
22572564e73277e29f6db3305d1f27ba408abb7ed88Douglas Gregor    break;
22672564e73277e29f6db3305d1f27ba408abb7ed88Douglas Gregor
2275f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  case Type::Builtin: {
2285f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    switch (cast<BuiltinType>(Ty).getKind()) {
229afef76e43a30380b3c612a674738f2f574c8f166Argyrios Kyrtzidis    default: assert(0 && "Unknown builtin type!");
2305f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    case BuiltinType::Void:
231de2e22d33afec98324a66a358dfe0951b3c7259aSteve Naroff    case BuiltinType::ObjCId:
232de2e22d33afec98324a66a358dfe0951b3c7259aSteve Naroff    case BuiltinType::ObjCClass:
2335f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer      // LLVM void type can only be used as the result of a function call.  Just
2345f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer      // map to the same as char.
235d2d2a11a91d7ddf468bfb70f66362d24806ed601Chris Lattner      return llvm::IntegerType::get(8);
2365f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer
2375f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    case BuiltinType::Bool:
23819009e6fe7e0f51d2e49f4c94928a048c11c5281Chris Lattner      // Note that we always return bool as i1 for use as a scalar type.
2395f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer      return llvm::Type::Int1Ty;
2405f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer
241d2d2a11a91d7ddf468bfb70f66362d24806ed601Chris Lattner    case BuiltinType::Char_S:
242d2d2a11a91d7ddf468bfb70f66362d24806ed601Chris Lattner    case BuiltinType::Char_U:
243d2d2a11a91d7ddf468bfb70f66362d24806ed601Chris Lattner    case BuiltinType::SChar:
244d2d2a11a91d7ddf468bfb70f66362d24806ed601Chris Lattner    case BuiltinType::UChar:
2455f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    case BuiltinType::Short:
2465f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    case BuiltinType::UShort:
2475f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    case BuiltinType::Int:
2485f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    case BuiltinType::UInt:
2495f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    case BuiltinType::Long:
2505f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    case BuiltinType::ULong:
2515f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    case BuiltinType::LongLong:
2525f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    case BuiltinType::ULongLong:
253afef76e43a30380b3c612a674738f2f574c8f166Argyrios Kyrtzidis    case BuiltinType::WChar:
254f5c209d23b20ada4a9b6235db50317239cbf6ae1Alisdair Meredith    case BuiltinType::Char16:
255f5c209d23b20ada4a9b6235db50317239cbf6ae1Alisdair Meredith    case BuiltinType::Char32:
25647f7dbf7c0b25505ad093a317983a9b39efe0610Chris Lattner      return llvm::IntegerType::get(
25798be4943e8dc4f3905629a7102668960873cf863Chris Lattner        static_cast<unsigned>(Context.getTypeSize(T)));
2585f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer
259f6a943e047f541619a2202f9e43b20b3d7c0a96dEli Friedman    case BuiltinType::Float:
260c8b1227fa8c17d9881815e40c04e19334be536f8Nate Begeman    case BuiltinType::Double:
2615f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    case BuiltinType::LongDouble:
262b7cfe88e88cb4f46308de89cf3f0c81bfe624128Chris Lattner      return getTypeForFormat(Context.getFloatTypeSemantics(T));
2632df9ced9fd1e8c7d7b38443db07e0e811de22571Chris Lattner
2642df9ced9fd1e8c7d7b38443db07e0e811de22571Chris Lattner    case BuiltinType::UInt128:
2652df9ced9fd1e8c7d7b38443db07e0e811de22571Chris Lattner    case BuiltinType::Int128:
2662df9ced9fd1e8c7d7b38443db07e0e811de22571Chris Lattner      return llvm::IntegerType::get(128);
2675f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    }
2685f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    break;
2695f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  }
270f98aba35e6c3da5aae61843fc01334939e4e12ecEli Friedman  case Type::FixedWidthInt:
271f98aba35e6c3da5aae61843fc01334939e4e12ecEli Friedman    return llvm::IntegerType::get(cast<FixedWidthIntType>(T)->getWidth());
2725f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  case Type::Complex: {
273572cf09ae8a78af1c56d40b016ec4cf1837163acChris Lattner    const llvm::Type *EltTy =
274fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner      ConvertTypeRecursive(cast<ComplexType>(Ty).getElementType());
275572cf09ae8a78af1c56d40b016ec4cf1837163acChris Lattner    return llvm::StructType::get(EltTy, EltTy, NULL);
2765f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  }
2777c80bd64032e610c0dbd74fc0ef6ea334447f2fdSebastian Redl  case Type::LValueReference:
2787c80bd64032e610c0dbd74fc0ef6ea334447f2fdSebastian Redl  case Type::RValueReference: {
2796aeae7fa9cfaacba3a4077d62c01c2531d88a63eDaniel Dunbar    const ReferenceType &RTy = cast<ReferenceType>(Ty);
2806aeae7fa9cfaacba3a4077d62c01c2531d88a63eDaniel Dunbar    QualType ETy = RTy.getPointeeType();
2816aeae7fa9cfaacba3a4077d62c01c2531d88a63eDaniel Dunbar    llvm::OpaqueType *PointeeType = llvm::OpaqueType::get();
2826aeae7fa9cfaacba3a4077d62c01c2531d88a63eDaniel Dunbar    PointersToResolve.push_back(std::make_pair(ETy, PointeeType));
2836aeae7fa9cfaacba3a4077d62c01c2531d88a63eDaniel Dunbar    return llvm::PointerType::get(PointeeType, ETy.getAddressSpace());
2846aeae7fa9cfaacba3a4077d62c01c2531d88a63eDaniel Dunbar  }
2855f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  case Type::Pointer: {
2866aeae7fa9cfaacba3a4077d62c01c2531d88a63eDaniel Dunbar    const PointerType &PTy = cast<PointerType>(Ty);
287fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner    QualType ETy = PTy.getPointeeType();
288fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner    llvm::OpaqueType *PointeeType = llvm::OpaqueType::get();
2896aeae7fa9cfaacba3a4077d62c01c2531d88a63eDaniel Dunbar    PointersToResolve.push_back(std::make_pair(ETy, PointeeType));
290fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner    return llvm::PointerType::get(PointeeType, ETy.getAddressSpace());
2915f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  }
2925f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer
293fb22d96692c5240fb8d611290dbf7eeed3759c73Steve Naroff  case Type::VariableArray: {
294fb22d96692c5240fb8d611290dbf7eeed3759c73Steve Naroff    const VariableArrayType &A = cast<VariableArrayType>(Ty);
295c5773c4b8ce1ed6ed5c7112c9020c954a47dce96Eli Friedman    assert(A.getIndexTypeQualifier() == 0 &&
2965f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer           "FIXME: We only handle trivial array types so far!");
297c5773c4b8ce1ed6ed5c7112c9020c954a47dce96Eli Friedman    // VLAs resolve to the innermost element type; this matches
298c5773c4b8ce1ed6ed5c7112c9020c954a47dce96Eli Friedman    // the return of alloca, and there isn't any obviously better choice.
29957a84fb51de4f3de50debcf12dd194af8c6aaa58Eli Friedman    return ConvertTypeForMemRecursive(A.getElementType());
300c5773c4b8ce1ed6ed5c7112c9020c954a47dce96Eli Friedman  }
301c5773c4b8ce1ed6ed5c7112c9020c954a47dce96Eli Friedman  case Type::IncompleteArray: {
302c5773c4b8ce1ed6ed5c7112c9020c954a47dce96Eli Friedman    const IncompleteArrayType &A = cast<IncompleteArrayType>(Ty);
303c5773c4b8ce1ed6ed5c7112c9020c954a47dce96Eli Friedman    assert(A.getIndexTypeQualifier() == 0 &&
304c5773c4b8ce1ed6ed5c7112c9020c954a47dce96Eli Friedman           "FIXME: We only handle trivial array types so far!");
305c5773c4b8ce1ed6ed5c7112c9020c954a47dce96Eli Friedman    // int X[] -> [0 x int]
30657a84fb51de4f3de50debcf12dd194af8c6aaa58Eli Friedman    return llvm::ArrayType::get(ConvertTypeForMemRecursive(A.getElementType()), 0);
3075f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  }
308fb22d96692c5240fb8d611290dbf7eeed3759c73Steve Naroff  case Type::ConstantArray: {
309fb22d96692c5240fb8d611290dbf7eeed3759c73Steve Naroff    const ConstantArrayType &A = cast<ConstantArrayType>(Ty);
31057a84fb51de4f3de50debcf12dd194af8c6aaa58Eli Friedman    const llvm::Type *EltTy = ConvertTypeForMemRecursive(A.getElementType());
311fb22d96692c5240fb8d611290dbf7eeed3759c73Steve Naroff    return llvm::ArrayType::get(EltTy, A.getSize().getZExtValue());
312fb22d96692c5240fb8d611290dbf7eeed3759c73Steve Naroff  }
313213541a68a3e137d11d2cefb612c6cdb410d7e8eNate Begeman  case Type::ExtVector:
3145f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  case Type::Vector: {
3155f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer    const VectorType &VT = cast<VectorType>(Ty);
316fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner    return llvm::VectorType::get(ConvertTypeRecursive(VT.getElementType()),
3175f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer                                 VT.getNumElements());
3185f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  }
3195f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  case Type::FunctionNoProto:
320bb36d331f439f49859efcfb4435c61762fbba6f9Daniel Dunbar  case Type::FunctionProto: {
321b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman    // First, check whether we can build the full function type.
322b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman    if (const TagType* TT = VerifyFuncTypeComplete(&Ty)) {
323b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      // This function's type depends on an incomplete tag type; make sure
324b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      // we have an opaque type corresponding to the tag type.
325b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      ConvertTagDeclType(TT->getDecl());
326b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      // Create an opaque type for this function type, save it, and return it.
327b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      llvm::Type *ResultType = llvm::OpaqueType::get();
328b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      FunctionTypes.insert(std::make_pair(&Ty, ResultType));
329b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      return ResultType;
330b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman    }
331b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman    // The function type can be built; call the appropriate routines to
332b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman    // build it.
3339a1a9c41cf7e2735f059bb0c1d85f3207f637b22Chris Lattner    if (const FunctionProtoType *FPT = dyn_cast<FunctionProtoType>(&Ty))
334b3b6b9b27ab8bdb2a435a5a92ce62e74e3399377Eli Friedman      return GetFunctionType(getFunctionInfo(FPT), FPT->isVariadic());
3359a1a9c41cf7e2735f059bb0c1d85f3207f637b22Chris Lattner
3369a1a9c41cf7e2735f059bb0c1d85f3207f637b22Chris Lattner    const FunctionNoProtoType *FNPT = cast<FunctionNoProtoType>(&Ty);
3379a1a9c41cf7e2735f059bb0c1d85f3207f637b22Chris Lattner    return GetFunctionType(getFunctionInfo(FNPT), true);
338bb36d331f439f49859efcfb4435c61762fbba6f9Daniel Dunbar  }
339ebb97e98c03f8d7034bd3748a10e35f39a95c289Christopher Lamb
340f11284ac87daa613bc7b30db9f54bd716d123222Fariborz Jahanian  case Type::ExtQual:
341fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner    return
342f11284ac87daa613bc7b30db9f54bd716d123222Fariborz Jahanian      ConvertTypeRecursive(QualType(cast<ExtQualType>(Ty).getBaseType(), 0));
343b1776cb8d35dfa80bfd8606e58b8ade30dcd2438Chris Lattner
344636efb6ee4382e6fc16724014e9cf70dbeb37c31Chris Lattner  case Type::ObjCQualifiedInterface: {
345636efb6ee4382e6fc16724014e9cf70dbeb37c31Chris Lattner    // Lower foo<P1,P2> just like foo.
346636efb6ee4382e6fc16724014e9cf70dbeb37c31Chris Lattner    ObjCInterfaceDecl *ID = cast<ObjCQualifiedInterfaceType>(Ty).getDecl();
347636efb6ee4382e6fc16724014e9cf70dbeb37c31Chris Lattner    return ConvertTypeRecursive(Context.getObjCInterfaceType(ID));
348636efb6ee4382e6fc16724014e9cf70dbeb37c31Chris Lattner  }
349636efb6ee4382e6fc16724014e9cf70dbeb37c31Chris Lattner
350391d77a26382dddf25da73e29fc1fa5aaaea4c6fChris Lattner  case Type::ObjCInterface: {
351412f59b23fc502b199b9ca96c72ef5d5ad21d62bDaniel Dunbar    // Objective-C interfaces are always opaque (outside of the
352412f59b23fc502b199b9ca96c72ef5d5ad21d62bDaniel Dunbar    // runtime, which can do whatever it likes); we never refine
353412f59b23fc502b199b9ca96c72ef5d5ad21d62bDaniel Dunbar    // these.
354412f59b23fc502b199b9ca96c72ef5d5ad21d62bDaniel Dunbar    const llvm::Type *&T = InterfaceTypes[cast<ObjCInterfaceType>(&Ty)];
355412f59b23fc502b199b9ca96c72ef5d5ad21d62bDaniel Dunbar    if (!T)
356412f59b23fc502b199b9ca96c72ef5d5ad21d62bDaniel Dunbar        T = llvm::OpaqueType::get();
357412f59b23fc502b199b9ca96c72ef5d5ad21d62bDaniel Dunbar    return T;
358391d77a26382dddf25da73e29fc1fa5aaaea4c6fChris Lattner  }
359e37882ad335896dedf345102bb425383e6221c37Fariborz Jahanian
36014108da7f7fc059772711e4ffee1322a27b152a7Steve Naroff  case Type::ObjCObjectPointer: {
36128e478010eb4d789da85c6378dbfa9d66b95830bDaniel Dunbar    // Protocol qualifications do not influence the LLVM type, we just return a
36228e478010eb4d789da85c6378dbfa9d66b95830bDaniel Dunbar    // pointer to the underlying interface type. We don't need to worry about
36328e478010eb4d789da85c6378dbfa9d66b95830bDaniel Dunbar    // recursive conversion.
36428e478010eb4d789da85c6378dbfa9d66b95830bDaniel Dunbar    const llvm::Type *T =
36528e478010eb4d789da85c6378dbfa9d66b95830bDaniel Dunbar      ConvertTypeRecursive(cast<ObjCObjectPointerType>(Ty).getPointeeType());
36628e478010eb4d789da85c6378dbfa9d66b95830bDaniel Dunbar    return llvm::PointerType::getUnqual(T);
36714108da7f7fc059772711e4ffee1322a27b152a7Steve Naroff  }
36828e478010eb4d789da85c6378dbfa9d66b95830bDaniel Dunbar
36972564e73277e29f6db3305d1f27ba408abb7ed88Douglas Gregor  case Type::Record:
37072564e73277e29f6db3305d1f27ba408abb7ed88Douglas Gregor  case Type::Enum: {
371de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner    const TagDecl *TD = cast<TagType>(Ty).getDecl();
3728fb1dd005f4cb530bca11d622362d39727294420Chris Lattner    const llvm::Type *Res = ConvertTagDeclType(TD);
373de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner
374de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner    std::string TypeName(TD->getKindName());
375de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner    TypeName += '.';
376de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner
377de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner    // Name the codegen type after the typedef name
378de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner    // if there is no tag type name available
379de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner    if (TD->getIdentifier())
380d9d22dd9c94618490dbffb0e2caf222530ca39d3Chris Lattner      TypeName += TD->getNameAsString();
381de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner    else if (const TypedefType *TdT = dyn_cast<TypedefType>(T))
382d9d22dd9c94618490dbffb0e2caf222530ca39d3Chris Lattner      TypeName += TdT->getDecl()->getNameAsString();
383de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner    else
384de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner      TypeName += "anon";
385de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner
386de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner    TheModule.addTypeName(TypeName, Res);
387de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner    return Res;
388de0efb3b6eac36bdeae0e60f753a974cc4118a31Chris Lattner  }
3899048891ff983d0681c116c6e8f1073aa31bdd6e8Daniel Dunbar
3909048891ff983d0681c116c6e8f1073aa31bdd6e8Daniel Dunbar  case Type::BlockPointer: {
3914e174f1b1e95faacc21da2eac70f7853807f3ea3Daniel Dunbar    const QualType FTy = cast<BlockPointerType>(Ty).getPointeeType();
392209bb438042ef7652b2b046e43d4ffb5a00d9725Fariborz Jahanian    llvm::OpaqueType *PointeeType = llvm::OpaqueType::get();
393209bb438042ef7652b2b046e43d4ffb5a00d9725Fariborz Jahanian    PointersToResolve.push_back(std::make_pair(FTy, PointeeType));
394209bb438042ef7652b2b046e43d4ffb5a00d9725Fariborz Jahanian    return llvm::PointerType::get(PointeeType, FTy.getAddressSpace());
3959048891ff983d0681c116c6e8f1073aa31bdd6e8Daniel Dunbar  }
396424c51d3d4bea87291919b75e73ca59386702ad5Sebastian Redl
3970e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson  case Type::MemberPointer: {
3980e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson    // FIXME: This is ABI dependent. We use the Itanium C++ ABI.
3990e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson    // http://www.codesourcery.com/public/cxx-abi/abi.html#member-pointers
4000e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson    // If we ever want to support other ABIs this needs to be abstracted.
4010e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson
4020e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson    QualType ETy = cast<MemberPointerType>(Ty).getPointeeType();
4030e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson    if (ETy->isFunctionType()) {
4040e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson      return llvm::StructType::get(ConvertType(Context.getPointerDiffType()),
4050e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson                                   ConvertType(Context.getPointerDiffType()),
4060e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson                                   NULL);
4070e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson    } else
4080e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson      return ConvertType(Context.getPointerDiffType());
4090e650017acdbbeb0c590e77bbea88c200ea1caefAnders Carlsson  }
4107532dc66648cfe7432c9fe66dec5225f0ab301c6Douglas Gregor
4117532dc66648cfe7432c9fe66dec5225f0ab301c6Douglas Gregor  case Type::TemplateSpecialization:
4127532dc66648cfe7432c9fe66dec5225f0ab301c6Douglas Gregor    assert(false && "Dependent types can't get here");
4135f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  }
4145f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer
4155f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  // FIXME: implement.
4165f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer  return llvm::OpaqueType::get();
4175f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer}
4185f016e2cb5d11daeb237544de1c5d59f20fe1a6eReid Spencer
419fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner/// ConvertTagDeclType - Lay out a tagged decl type like struct or union or
420fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner/// enum.
4218fb1dd005f4cb530bca11d622362d39727294420Chris Lattnerconst llvm::Type *CodeGenTypes::ConvertTagDeclType(const TagDecl *TD) {
422efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar  // TagDecl's are not necessarily unique, instead use the (clang)
423efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar  // type connected to the decl.
424efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar  const Type *Key =
425efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar    Context.getTagDeclType(const_cast<TagDecl*>(TD)).getTypePtr();
426efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar  llvm::DenseMap<const Type*, llvm::PATypeHolder>::iterator TDTI =
427efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar    TagDeclTypes.find(Key);
428fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner
4295de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  // If we've already compiled this tag type, use the previous definition.
4305de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  if (TDTI != TagDeclTypes.end())
431fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner    return TDTI->second;
432fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner
4335de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  // If this is still a forward definition, just define an opaque type to use
4345de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  // for this tagged decl.
435fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner  if (!TD->isDefinition()) {
4365de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner    llvm::Type *ResultType = llvm::OpaqueType::get();
437efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar    TagDeclTypes.insert(std::make_pair(Key, ResultType));
4385de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner    return ResultType;
4395de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  }
4405de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner
4415de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  // Okay, this is a definition of a type.  Compile the implementation now.
4425de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner
44339ba4aeca296b1c9f04bde7d9d3cbbf129f1abd3Argyrios Kyrtzidis  if (TD->isEnum()) {
444fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner    // Don't bother storing enums in TagDeclTypes.
445fce71b8ea53b6eb9c1630da24659289bc848f837Chris Lattner    return ConvertTypeRecursive(cast<EnumDecl>(TD)->getIntegerType());
4465de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  }
4475de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner
4485de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  // This decl could well be recursive.  In this case, insert an opaque
4495de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  // definition of this type, which the recursive uses will get.  We will then
4505de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  // refine this opaque version later.
4515de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner
4525de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  // Create new OpaqueType now for later use in case this is a recursive
4535de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  // type.  This will later be refined to the actual type.
4545de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  llvm::PATypeHolder ResultHolder = llvm::OpaqueType::get();
455efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar  TagDeclTypes.insert(std::make_pair(Key, ResultHolder));
4565de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner
4575de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  const llvm::Type *ResultType;
4585de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  const RecordDecl *RD = cast<const RecordDecl>(TD);
459ae287239879386b9abf6da50a67bbb7fe81897f1Daniel Dunbar
460ae287239879386b9abf6da50a67bbb7fe81897f1Daniel Dunbar  // There isn't any extra information for empty structures/unions.
46117945a0f64fe03ff6ec0c2146005a87636e3ac12Argyrios Kyrtzidis  if (RD->field_empty()) {
462ae287239879386b9abf6da50a67bbb7fe81897f1Daniel Dunbar    ResultType = llvm::StructType::get(std::vector<const llvm::Type*>());
463ae287239879386b9abf6da50a67bbb7fe81897f1Daniel Dunbar  } else {
464fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner    // Layout fields.
465cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    RecordOrganizer RO(*this, *RD);
466fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner
467ae287239879386b9abf6da50a67bbb7fe81897f1Daniel Dunbar    if (TD->isStruct() || TD->isClass())
468ae287239879386b9abf6da50a67bbb7fe81897f1Daniel Dunbar      RO.layoutStructFields(Context.getASTRecordLayout(RD));
469ae287239879386b9abf6da50a67bbb7fe81897f1Daniel Dunbar    else {
470ae287239879386b9abf6da50a67bbb7fe81897f1Daniel Dunbar      assert(TD->isUnion() && "unknown tag decl kind!");
471ae287239879386b9abf6da50a67bbb7fe81897f1Daniel Dunbar      RO.layoutUnionFields(Context.getASTRecordLayout(RD));
472ae287239879386b9abf6da50a67bbb7fe81897f1Daniel Dunbar    }
473fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner
4745de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner    // Get llvm::StructType.
475efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar    const Type *Key =
476efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar      Context.getTagDeclType(const_cast<TagDecl*>(TD)).getTypePtr();
477efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar    CGRecordLayouts[Key] = new CGRecordLayout(RO.getLLVMType(),
478efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar                                              RO.getPaddingFields());
4795de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner    ResultType = RO.getLLVMType();
480fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner  }
481fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner
4825de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  // Refine our Opaque type to ResultType.  This can invalidate ResultType, so
4835de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  // make sure to read the result out of the holder.
4845de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  cast<llvm::OpaqueType>(ResultHolder.get())
4855de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner    ->refineAbstractTypeTo(ResultType);
4865de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner
4875de00fcf7c923a14bb79bdbaabb2faeb5633d85aChris Lattner  return ResultHolder.get();
488fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner}
489fc3b8e9c1381d5e6ec361591d649c56a870ff971Chris Lattner
490b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel/// getLLVMFieldNo - Return llvm::StructType element number
491b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel/// that corresponds to the field FD.
492b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patelunsigned CodeGenTypes::getLLVMFieldNo(const FieldDecl *FD) {
493ce5605ecf76d8cde6372138f830bb144d174ced9Chris Lattner  llvm::DenseMap<const FieldDecl*, unsigned>::iterator I = FieldInfo.find(FD);
49421fdf416723e8c475812a0324a1f9fafc949c25fHartmut Kaiser  assert (I != FieldInfo.end()  && "Unable to find field info");
495391d77a26382dddf25da73e29fc1fa5aaaea4c6fChris Lattner  return I->second;
496391d77a26382dddf25da73e29fc1fa5aaaea4c6fChris Lattner}
497391d77a26382dddf25da73e29fc1fa5aaaea4c6fChris Lattner
498c4c429a1a5947ba9be64d3070741d98362872265Devang Patel/// addFieldInfo - Assign field number to field FD.
4992c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venanciovoid CodeGenTypes::addFieldInfo(const FieldDecl *FD, unsigned No) {
5002c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio  FieldInfo[FD] = No;
5012c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio}
5022c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio
5032c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio/// getBitFieldInfo - Return the BitFieldInfo  that corresponds to the field FD.
5042c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos VenancioCodeGenTypes::BitFieldInfo CodeGenTypes::getBitFieldInfo(const FieldDecl *FD) {
5052c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio  llvm::DenseMap<const FieldDecl *, BitFieldInfo>::iterator
5062c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio    I = BitFields.find(FD);
5072c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio  assert (I != BitFields.end()  && "Unable to find bitfield info");
5082c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio  return I->second;
5092c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio}
5102c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio
5112c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio/// addBitFieldInfo - Assign a start bit and a size to field FD.
5122c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venanciovoid CodeGenTypes::addBitFieldInfo(const FieldDecl *FD, unsigned Begin,
5131abc7f654df795549d4f6f3a018ddb3a8fff013aNate Begeman                                   unsigned Size) {
5142c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio  BitFields.insert(std::make_pair(FD, BitFieldInfo(Begin, Size)));
515b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel}
516b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel
51788a981b47c7face1b1fdaa9074256245107b9ca9Devang Patel/// getCGRecordLayout - Return record layout info for the given llvm::Type.
51888a981b47c7face1b1fdaa9074256245107b9ca9Devang Patelconst CGRecordLayout *
519af31913e48c96fddb45a0fd33f25617546502cbbChris LattnerCodeGenTypes::getCGRecordLayout(const TagDecl *TD) const {
520efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar  const Type *Key =
521efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar    Context.getTagDeclType(const_cast<TagDecl*>(TD)).getTypePtr();
522efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar  llvm::DenseMap<const Type*, CGRecordLayout *>::iterator I
523efb6d0dc3eafbcf4f8cd053138bd1abed1dda8d4Daniel Dunbar    = CGRecordLayouts.find(Key);
52488a981b47c7face1b1fdaa9074256245107b9ca9Devang Patel  assert (I != CGRecordLayouts.end()
525b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel          && "Unable to find record layout information for type");
526b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel  return I->second;
527b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel}
528b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel
52986522b9e84d0c39f09b54e888538ad64e89788c4Devang Patel/// layoutStructFields - Do the actual work and lay out all fields. Create
530cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman/// corresponding llvm struct type.
531cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman/// Note that this doesn't actually try to do struct layout; it depends on
532cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman/// the layout built by the AST.  (We have to do struct layout to do Sema,
533cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman/// and there's no point to duplicating the work.)
53488a981b47c7face1b1fdaa9074256245107b9ca9Devang Patelvoid RecordOrganizer::layoutStructFields(const ASTRecordLayout &RL) {
535e36a3c8b5c7db4916342e4381caa2fdc93eb5745Eli Friedman  // FIXME: This code currently always generates packed structures.
536e36a3c8b5c7db4916342e4381caa2fdc93eb5745Eli Friedman  // Unpacked structures are more readable, and sometimes more efficient!
537e36a3c8b5c7db4916342e4381caa2fdc93eb5745Eli Friedman  // (But note that any changes here are likely to impact CGExprConstant,
538e36a3c8b5c7db4916342e4381caa2fdc93eb5745Eli Friedman  // which makes some messy assumptions.)
539cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman  uint64_t llvmSize = 0;
540e36a3c8b5c7db4916342e4381caa2fdc93eb5745Eli Friedman  // FIXME: Make this a SmallVector
541cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman  std::vector<const llvm::Type*> LLVMFields;
542cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman
54344b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor  unsigned curField = 0;
54417945a0f64fe03ff6ec0c2146005a87636e3ac12Argyrios Kyrtzidis  for (RecordDecl::field_iterator Field = RD.field_begin(),
54517945a0f64fe03ff6ec0c2146005a87636e3ac12Argyrios Kyrtzidis                               FieldEnd = RD.field_end();
54644b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor       Field != FieldEnd; ++Field) {
547cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    uint64_t offset = RL.getFieldOffset(curField);
54857a84fb51de4f3de50debcf12dd194af8c6aaa58Eli Friedman    const llvm::Type *Ty = CGT.ConvertTypeForMemRecursive(Field->getType());
5499408c45009b417e758749b3d95cdfb87dcb68ea9Duncan Sands    uint64_t size = CGT.getTargetData().getTypeAllocSizeInBits(Ty);
550cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman
55144b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor    if (Field->isBitField()) {
552070eff4df45a810f0fb3a50e932f6d95713875d4Eli Friedman      uint64_t BitFieldSize =
553070eff4df45a810f0fb3a50e932f6d95713875d4Eli Friedman          Field->getBitWidth()->EvaluateAsInt(CGT.getContext()).getZExtValue();
554cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman
555cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman      // Bitfield field info is different from other field info;
556cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman      // it actually ignores the underlying LLVM struct because
557cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman      // there isn't any convenient mapping.
55844b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor      CGT.addFieldInfo(*Field, offset / size);
55944b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor      CGT.addBitFieldInfo(*Field, offset % size, BitFieldSize);
560cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    } else {
561cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman      // Put the element into the struct. This would be simpler
562cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman      // if we didn't bother, but it seems a bit too strange to
563cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman      // allocate all structs as i8 arrays.
564cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman      while (llvmSize < offset) {
565cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman        LLVMFields.push_back(llvm::Type::Int8Ty);
566cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman        llvmSize += 8;
567d8ecd3c8f7716124e1efb278a46b6747c697668dDevang Patel      }
5686e8df736939325bc2355eeb1e138ecf8b2605616Devang Patel
569cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman      llvmSize += size;
57044b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor      CGT.addFieldInfo(*Field, LLVMFields.size());
571cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman      LLVMFields.push_back(Ty);
572cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    }
57344b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor    ++curField;
574cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman  }
575f9fef925644a6c40b344a43ab9ebdb08a707de53Devang Patel
576cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman  while (llvmSize < RL.getSize()) {
577cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    LLVMFields.push_back(llvm::Type::Int8Ty);
578cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    llvmSize += 8;
5792c46ce8de96787aa8e040690a80896f1148c29b0Lauro Ramos Venancio  }
580159e3300f938ae05c0bf249508714e621cc89de5Devang Patel
5810408f6805c164f317937e97d7bc222781164bfebEli Friedman  STy = llvm::StructType::get(LLVMFields, true);
5829408c45009b417e758749b3d95cdfb87dcb68ea9Duncan Sands  assert(CGT.getTargetData().getTypeAllocSizeInBits(STy) == RL.getSize());
583b84a06e68ffd71da22e3c75b6e4bbdba37816413Devang Patel}
584c4c429a1a5947ba9be64d3070741d98362872265Devang Patel
58586522b9e84d0c39f09b54e888538ad64e89788c4Devang Patel/// layoutUnionFields - Do the actual work and lay out all fields. Create
58686522b9e84d0c39f09b54e888538ad64e89788c4Devang Patel/// corresponding llvm struct type.  This should be invoked only after
58786522b9e84d0c39f09b54e888538ad64e89788c4Devang Patel/// all fields are added.
588cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedmanvoid RecordOrganizer::layoutUnionFields(const ASTRecordLayout &RL) {
58944b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor  unsigned curField = 0;
59017945a0f64fe03ff6ec0c2146005a87636e3ac12Argyrios Kyrtzidis  for (RecordDecl::field_iterator Field = RD.field_begin(),
59117945a0f64fe03ff6ec0c2146005a87636e3ac12Argyrios Kyrtzidis                               FieldEnd = RD.field_end();
59244b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor       Field != FieldEnd; ++Field) {
593cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    // The offset should usually be zero, but bitfields could be strange
594cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    uint64_t offset = RL.getFieldOffset(curField);
59534e7946831a63f96d3ba3478c74ca8e25ee52d7eDouglas Gregor    CGT.ConvertTypeRecursive(Field->getType());
596cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman
59744b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor    if (Field->isBitField()) {
59844b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor      Expr *BitWidth = Field->getBitWidth();
59932442bbc98bafa512fa42d46fedf60ed7d79f574Daniel Dunbar      uint64_t BitFieldSize =
6009a901bb63990574ff0bcc12ff851d7a71cff8ddbEli Friedman        BitWidth->EvaluateAsInt(CGT.getContext()).getZExtValue();
60186522b9e84d0c39f09b54e888538ad64e89788c4Devang Patel
60244b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor      CGT.addFieldInfo(*Field, 0);
60344b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor      CGT.addBitFieldInfo(*Field, offset, BitFieldSize);
604cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    } else {
60544b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor      CGT.addFieldInfo(*Field, 0);
606cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman    }
60744b4321feab46299d3f5cfd404680884752a0fcfDouglas Gregor    ++curField;
60886522b9e84d0c39f09b54e888538ad64e89788c4Devang Patel  }
60986522b9e84d0c39f09b54e888538ad64e89788c4Devang Patel
610cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman  // This looks stupid, but it is correct in the sense that
611cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman  // it works no matter how complicated the sizes and alignments
612cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman  // of the union elements are. The natural alignment
613cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman  // of the result doesn't matter because anyone allocating
614cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman  // structures should be aligning them appropriately anyway.
615cbadaf6ced6d664015ee409f62ab1bc20ae0bf73Eli Friedman  // FIXME: We can be a bit more intuitive in a lot of cases.
616fd6f08525f9292255249b2434af4c6b2bc02ee93Eli Friedman  // FIXME: Make this a struct type to work around PR2399; the
617fd6f08525f9292255249b2434af4c6b2bc02ee93Eli Friedman  // C backend doesn't like structs using array types.
618fd6f08525f9292255249b2434af4c6b2bc02ee93Eli Friedman  std::vector<const llvm::Type*> LLVMFields;
619fd6f08525f9292255249b2434af4c6b2bc02ee93Eli Friedman  LLVMFields.push_back(llvm::ArrayType::get(llvm::Type::Int8Ty,
620fd6f08525f9292255249b2434af4c6b2bc02ee93Eli Friedman                                            RL.getSize() / 8));
621fd6f08525f9292255249b2434af4c6b2bc02ee93Eli Friedman  STy = llvm::StructType::get(LLVMFields, true);
6229408c45009b417e758749b3d95cdfb87dcb68ea9Duncan Sands  assert(CGT.getTargetData().getTypeAllocSizeInBits(STy) == RL.getSize());
623382c64365247fa01e2711da27ef4bef0653afca4Devang Patel}
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