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Weak pointers are like smartpointers, except that references from weak pointers do not prevent garbage collection, and weak pointers must have their validity checked before they are used.

In our project (Linderdaum Engine http://www.linderdaum.com) we use intrusive pointers. To avoid circular references and islands of isolation we have implemented weak intrusive pointers the following way:

namespace LPtr
    clPtr<iObject> GetObjectsGraphPtrWrapper( sEnvironment* Env, iObject* Obj, size_t Generation );

/// Intrusive weak smart pointer
template <class T> class clWeakPtr
    /// default constructor
    clWeakPtr(): Env( NULL ), FObject( NULL ), FGeneration( 0 ) {}
    explicit clWeakPtr( T* Ptr )
     : Env( Ptr ? Ptr->Env : NULL )
     , FObject( Ptr )
     , FGeneration( Ptr ? Ptr->FGeneration : 0 ) {}
    explicit clWeakPtr( const clPtr<T>& Ptr )
     : Env( Ptr ? Ptr->Env : NULL )
     , FObject( Ptr.GetInternalPtr() )
     , FGeneration( Ptr ? Ptr->FGeneration : 0 ) {}
    clPtr<T> Lock() const
        clPtr<iObject> P = LPtr::GetObjectsGraphPtrWrapper( Env, FObject, FGeneration );

        return P.DynamicCast<T>();
    sEnvironment* Env;
    T*            FObject;
    size_t        FGeneration;

GetObjectsGraphPtrWrapper is here just for the sake of forward declarations and does roughly this:

LMutex Lock( &FObjectsGraphMutex );

clObjectsGraph::const_iterator i = std::find( Env->ObjectsGraph.begin(), Env->ObjectsGraph.end(), Obj );

if ( i == Env->ObjectsGraph.end() ) return clPtr<iObject>();

bool IsSame  = Obj->FGeneration == Generation;
bool IsAlive = Obj->GetReferenceCounter() > 0;

return  ( IsSame && IsAlive ) ? clPtr<iObject>( Obj ) : clPtr<iObject>();

Generation is global in the scope of sEnvironment and is atomic-incremented every time a new object is instantiated.

My questions are:

1) Is it safe to implement weak-references like this?

2) Are there any ways to optimize the clWeakPtr::Lock()?

share|improve this question
up vote 4 down vote accepted

1) It seems safe indeed, but any modification of the graph will have some contention with LPtr::GetObjectsGraphPtrWrapper

2) a read-write lock could help, at least you'll be able to call several Lock() in parallel

The problem with your solution is that it defeats the locality that non-intrusive weak pointers bring. Depending on the concurrency level, it might become a problem as each call to Lock() will prevent any object creation and as well any other Lock() call without a read-write lock.

share|improve this answer
How can a read-write lock possibly look for this case? – Sergey K. Nov 13 '12 at 20:48
if you have access to boost, you could use a boost::shared_mutex (as in stackoverflow.com/questions/244316/reader-writer-locks-in-c, there are also responses for Windows there), for pthreads (stackoverflow.com/questions/8635963/…), your LPtr::GetObjectsGraphPtrWrapper would be a reader, and the function actually modifying the graph would be a writer. Note that it would protect only the graph and objects existence, not the objects content (unless your write-lock before modifying the objects, depends on your needs) – armel Nov 13 '12 at 21:38

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