Fix some of the memcheck errors found in the JIT unittests.

git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@95856 91177308-0d34-0410-b5e6-96231b3b80d8
This commit is contained in:
Jeffrey Yasskin 2010-02-11 06:41:30 +00:00
parent 8c5ad3a5da
commit 9233b15d01
5 changed files with 20 additions and 31 deletions

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@ -496,6 +496,7 @@ public:
/// OpaqueType - Class to represent abstract types
///
class OpaqueType : public DerivedType {
friend class LLVMContextImpl;
OpaqueType(const OpaqueType &); // DO NOT IMPLEMENT
const OpaqueType &operator=(const OpaqueType &); // DO NOT IMPLEMENT
OpaqueType(LLVMContext &C);

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@ -132,7 +132,7 @@ class SMDiagnostic {
unsigned ShowLine : 1;
public:
SMDiagnostic() : LineNo(0), ColumnNo(0) {}
SMDiagnostic() : LineNo(0), ColumnNo(0), ShowLine(0) {}
SMDiagnostic(const std::string &FN, int Line, int Col,
const std::string &Msg, const std::string &LineStr,
bool showline = true)

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@ -164,7 +164,10 @@ public:
// Opaque types are not structurally uniqued, so don't use TypeMap.
typedef SmallPtrSet<const OpaqueType*, 8> OpaqueTypesTy;
OpaqueTypesTy OpaqueTypes;
/// Used as an abstract type that will never be resolved.
OpaqueType *const AlwaysOpaqueTy;
/// ValueHandles - This map keeps track of all of the value handles that are
/// watching a Value*. The Value::HasValueHandle bit is used to know
@ -196,7 +199,12 @@ public:
Int8Ty(C, 8),
Int16Ty(C, 16),
Int32Ty(C, 32),
Int64Ty(C, 64) { }
Int64Ty(C, 64),
AlwaysOpaqueTy(new OpaqueType(C)) {
// Make sure the AlwaysOpaqueTy stays alive as long as the Context.
AlwaysOpaqueTy->addRef();
OpaqueTypes.insert(AlwaysOpaqueTy);
}
~LLVMContextImpl() {
ExprConstants.freeConstants();
@ -217,6 +225,7 @@ public:
delete I->second;
}
MDNodeSet.clear();
AlwaysOpaqueTy->dropRef();
for (OpaqueTypesTy::iterator I = OpaqueTypes.begin(), E = OpaqueTypes.end();
I != E; ++I) {
(*I)->AbstractTypeUsers.clear();

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@ -507,30 +507,7 @@ void DerivedType::dropAllTypeUses() {
if (NumContainedTys != 0) {
// The type must stay abstract. To do this, we insert a pointer to a type
// that will never get resolved, thus will always be abstract.
static Type *AlwaysOpaqueTy = 0;
static PATypeHolder* Holder = 0;
Type *tmp = AlwaysOpaqueTy;
if (llvm_is_multithreaded()) {
sys::MemoryFence();
if (!tmp) {
llvm_acquire_global_lock();
tmp = AlwaysOpaqueTy;
if (!tmp) {
tmp = OpaqueType::get(getContext());
PATypeHolder* tmp2 = new PATypeHolder(tmp);
sys::MemoryFence();
AlwaysOpaqueTy = tmp;
Holder = tmp2;
}
llvm_release_global_lock();
}
} else if (!AlwaysOpaqueTy) {
AlwaysOpaqueTy = OpaqueType::get(getContext());
Holder = new PATypeHolder(AlwaysOpaqueTy);
}
ContainedTys[0] = AlwaysOpaqueTy;
ContainedTys[0] = getContext().pImpl->AlwaysOpaqueTy;
// Change the rest of the types to be Int32Ty's. It doesn't matter what we
// pick so long as it doesn't point back to this type. We choose something

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@ -18,14 +18,16 @@ namespace {
TEST(OpaqueTypeTest, RegisterWithContext) {
LLVMContext C;
LLVMContextImpl *pImpl = C.pImpl;
LLVMContextImpl *pImpl = C.pImpl;
EXPECT_EQ(0u, pImpl->OpaqueTypes.size());
// 1 refers to the AlwaysOpaqueTy allocated in the Context's constructor and
// destroyed in the destructor.
EXPECT_EQ(1u, pImpl->OpaqueTypes.size());
{
PATypeHolder Type = OpaqueType::get(C);
EXPECT_EQ(1u, pImpl->OpaqueTypes.size());
EXPECT_EQ(2u, pImpl->OpaqueTypes.size());
}
EXPECT_EQ(0u, pImpl->OpaqueTypes.size());
EXPECT_EQ(1u, pImpl->OpaqueTypes.size());
}
} // namespace