}
// ---------------------------------------------------------------------------
-class ReferenceMover;
-class ReferenceConverterBase {
+
+class ReferenceRenamer {
+protected:
+ // destructor is purposedly not virtual so we avoid code overhead from
+ // subclasses; we have to make it protected to guarantee that it
+ // cannot be called from this base class (and to make strict compilers
+ // happy).
+ ~ReferenceRenamer() { }
public:
- virtual size_t getReferenceTypeSize() const = 0;
- virtual void* getReferenceBase(void const*) const = 0;
- inline virtual ~ReferenceConverterBase() { }
+ virtual void operator()(size_t i) const = 0;
};
// ---------------------------------------------------------------------------
virtual void onLastWeakRef(const void* id);
private:
- friend class ReferenceMover;
- static void moveReferences(void* d, void const* s, size_t n,
- const ReferenceConverterBase& caster);
-
-private:
friend class weakref_type;
class weakref_impl;
RefBase(const RefBase& o);
RefBase& operator=(const RefBase& o);
+private:
+ friend class ReferenceMover;
+
+ static void renameRefs(size_t n, const ReferenceRenamer& renamer);
+
+ static void renameRefId(weakref_type* ref,
+ const void* old_id, const void* new_id);
+
+ static void renameRefId(RefBase* ref,
+ const void* old_id, const void* new_id);
+
weakref_impl* const mRefs;
};
private:
friend class ReferenceMover;
- inline static void moveReferences(void* d, void const* s, size_t n,
- const ReferenceConverterBase& caster) { }
+ inline static void renameRefs(size_t n, const ReferenceRenamer& renamer) { }
+ inline static void renameRefId(T* ref,
+ const void* old_id, const void* new_id) { }
private:
mutable volatile int32_t mCount;
// this class just serves as a namespace so TYPE::moveReferences can stay
// private.
-
class ReferenceMover {
- // StrongReferenceCast and WeakReferenceCast do the impedance matching
- // between the generic (void*) implementation in Refbase and the strongly typed
- // template specializations below.
-
- template <typename TYPE>
- struct StrongReferenceCast : public ReferenceConverterBase {
- virtual size_t getReferenceTypeSize() const { return sizeof( sp<TYPE> ); }
- virtual void* getReferenceBase(void const* p) const {
- sp<TYPE> const* sptr(reinterpret_cast<sp<TYPE> const*>(p));
- return static_cast<typename TYPE::basetype *>(sptr->get());
- }
- };
-
- template <typename TYPE>
- struct WeakReferenceCast : public ReferenceConverterBase {
- virtual size_t getReferenceTypeSize() const { return sizeof( wp<TYPE> ); }
- virtual void* getReferenceBase(void const* p) const {
- wp<TYPE> const* sptr(reinterpret_cast<wp<TYPE> const*>(p));
- return static_cast<typename TYPE::basetype *>(sptr->unsafe_get());
- }
- };
-
public:
+ // it would be nice if we could make sure no extra code is generated
+ // for sp<TYPE> or wp<TYPE> when TYPE is a descendant of RefBase:
+ // Using a sp<RefBase> override doesn't work; it's a bit like we wanted
+ // a template<typename TYPE inherits RefBase> template...
+
template<typename TYPE> static inline
void move_references(sp<TYPE>* d, sp<TYPE> const* s, size_t n) {
+
+ class Renamer : public ReferenceRenamer {
+ sp<TYPE>* d;
+ sp<TYPE> const* s;
+ virtual void operator()(size_t i) const {
+ // The id are known to be the sp<>'s this pointer
+ TYPE::renameRefId(d[i].get(), &s[i], &d[i]);
+ }
+ public:
+ Renamer(sp<TYPE>* d, sp<TYPE> const* s) : s(s), d(d) { }
+ };
+
memmove(d, s, n*sizeof(sp<TYPE>));
- StrongReferenceCast<TYPE> caster;
- TYPE::moveReferences(d, s, n, caster);
+ TYPE::renameRefs(n, Renamer(d, s));
}
+
+
template<typename TYPE> static inline
void move_references(wp<TYPE>* d, wp<TYPE> const* s, size_t n) {
+
+ class Renamer : public ReferenceRenamer {
+ wp<TYPE>* d;
+ wp<TYPE> const* s;
+ virtual void operator()(size_t i) const {
+ // The id are known to be the wp<>'s this pointer
+ TYPE::renameRefId(d[i].get_refs(), &s[i], &d[i]);
+ }
+ public:
+ Renamer(wp<TYPE>* d, wp<TYPE> const* s) : s(s), d(d) { }
+ };
+
memmove(d, s, n*sizeof(wp<TYPE>));
- WeakReferenceCast<TYPE> caster;
- TYPE::moveReferences(d, s, n, caster);
+ TYPE::renameRefs(n, Renamer(d, s));
}
};
// ---------------------------------------------------------------------------
-void RefBase::moveReferences(void* dst, void const* src, size_t n,
- const ReferenceConverterBase& caster)
-{
+void RefBase::renameRefs(size_t n, const ReferenceRenamer& renamer) {
#if DEBUG_REFS
- const size_t itemSize = caster.getReferenceTypeSize();
for (size_t i=0 ; i<n ; i++) {
- void* d = reinterpret_cast<void *>(intptr_t(dst) + i*itemSize);
- void const* s = reinterpret_cast<void const*>(intptr_t(src) + i*itemSize);
- RefBase* ref(reinterpret_cast<RefBase*>(caster.getReferenceBase(d)));
- ref->mRefs->renameStrongRefId(s, d);
- ref->mRefs->renameWeakRefId(s, d);
+ renamer(i);
}
#endif
}
+void RefBase::renameRefId(weakref_type* ref,
+ const void* old_id, const void* new_id) {
+ weakref_impl* const impl = static_cast<weakref_impl*>(ref);
+ impl->renameStrongRefId(old_id, new_id);
+ impl->renameWeakRefId(old_id, new_id);
+}
+
+void RefBase::renameRefId(RefBase* ref,
+ const void* old_id, const void* new_id) {
+ ref->mRefs->renameStrongRefId(old_id, new_id);
+ ref->mRefs->renameWeakRefId(old_id, new_id);
+}
+
// ---------------------------------------------------------------------------
TextOutput& printStrongPointer(TextOutput& to, const void* val)