Files
Seele/src/Engine/MinimalEngine.h
T
2022-04-15 23:45:44 +02:00

364 lines
8.3 KiB
C++

#pragma once
#include "Containers/Map.h"
#include "EngineTypes.h"
#include "Math/Math.h"
#include <map>
#define DEFINE_REF(x) \
typedef RefPtr<x> P##x; \
typedef UniquePtr<x> UP##x; \
typedef WeakPtr<x> W##x;
#define DECLARE_REF(x) \
class x; \
typedef RefPtr<x> P##x; \
typedef UniquePtr<x> UP##x; \
typedef WeakPtr<x> W##x;
#define DECLARE_NAME_REF(nmsp, x) \
namespace nmsp \
{ \
class x; \
typedef RefPtr<x> P##x; \
typedef UniquePtr<x> UP##x; \
typedef WeakPtr<x> W##x; \
}
extern std::map<void *, void *> registeredObjects;
extern std::mutex registeredObjectsLock;
namespace Seele
{
template <typename T, typename Deleter>
class RefPtr;
template <typename T, typename Deleter>
class RefObject
{
public:
RefObject(T *ptr, Deleter&& deleter)
: handle(ptr)
, deleter(std::move(deleter))
, refCount(1)
{
}
RefObject(const RefObject &rhs) = delete;
RefObject(RefObject &&rhs)
: handle(std::move(rhs.handle)), refCount(std::move(rhs.refCount))
{
}
~RefObject()
{
{
std::scoped_lock lock(registeredObjectsLock);
registeredObjects.erase(handle);
}
// #pragma warning( disable: 4150)
deleter(handle);
handle = nullptr;
// #pragma warning( default: 4150)
}
RefObject &operator=(const RefObject &rhs) = delete;
RefObject &operator=(RefObject &&rhs)
{
if (*this != rhs)
{
handle = std::move(rhs.handle);
refCount = std::move(rhs.refCount);
rhs.handle = nullptr;
rhs.refCount = 0;
}
return *this;
}
bool operator==(const RefObject &rhs) const
{
return handle == rhs.handle;
}
auto operator<=>(const RefObject& rhs) const
{
return handle <=> rhs.handle;
}
void addRef()
{
refCount++;
}
void removeRef()
{
refCount--;
if (refCount == 0)
{
delete this;
}
}
T *getHandle() const
{
return handle;
}
private:
T *handle;
Deleter deleter;
std::atomic_uint64_t refCount;
friend class RefPtr<T, Deleter>;
};
template <typename T, typename Deleter = std::default_delete<T>>
class RefPtr
{
public:
constexpr RefPtr() noexcept
{
object = nullptr;
}
constexpr RefPtr(nullptr_t) noexcept
{
object = nullptr;
}
constexpr RefPtr(T *ptr, Deleter deleter = Deleter())
{
std::scoped_lock l(registeredObjectsLock);
auto registeredObj = registeredObjects.find(ptr);
// get here for thread safetly
auto registeredEnd = registeredObjects.end();
if (registeredObj == registeredEnd)
{
object = new RefObject<T, Deleter>(ptr, std::move(deleter));
registeredObjects[ptr] = object;
}
else
{
object = (RefObject<T, Deleter> *)registeredObj->second;
object->addRef();
}
}
constexpr explicit RefPtr(RefObject<T, Deleter> *other) noexcept
: object(other)
{
if(object != nullptr)
{
object->addRef();
}
}
constexpr RefPtr(const RefPtr &other) noexcept
: object(other.object)
{
if (object != nullptr)
{
object->addRef();
}
}
constexpr RefPtr(RefPtr &&rhs) noexcept
: object(std::move(rhs.object))
{
rhs.object = nullptr;
//Dont change references, they stay the same
}
template <typename F>
constexpr RefPtr(const RefPtr<F> &other)
{
if(other == nullptr)
{
return;
}
F *f = other.getObject()->getHandle();
assert(static_cast<T *>(f));
object = (RefObject<T, Deleter> *)other.getObject();
object->addRef();
}
template <typename F, typename DeleterF = std::default_delete<F>>
constexpr RefPtr<F, DeleterF> cast()
{
T *t = object->getHandle();
F *f = dynamic_cast<F *>(t);
if (f == nullptr)
{
return nullptr;
}
RefObject<F, DeleterF> *newObject = (RefObject<F, DeleterF> *)object;
return RefPtr<F, DeleterF>(newObject);
}
template <typename F, typename DeleterF = std::default_delete<F>>
constexpr const RefPtr<F, DeleterF> cast() const
{
T *t = object->getHandle();
F *f = dynamic_cast<F *>(t);
if (f == nullptr)
{
return nullptr;
}
RefObject<F, DeleterF> *newObject = (RefObject<F, DeleterF> *)object;
return RefPtr<F, DeleterF>(newObject);
}
constexpr RefPtr &operator=(const RefPtr &other)
{
if (this != &other)
{
if (object != nullptr)
{
object->removeRef();
}
object = other.object;
if (object != nullptr)
{
object->addRef();
}
}
return *this;
}
constexpr RefPtr &operator=(RefPtr &&rhs)
{
if (this != &rhs)
{
if (object != nullptr)
{
object->removeRef();
}
object = std::move(rhs.object);
rhs.object = nullptr;
}
return *this;
}
constexpr ~RefPtr()
{
if (object != nullptr)
{
object->removeRef();
}
}
constexpr bool operator==(const RefPtr& rhs) const noexcept
{
return object == rhs.object;
}
constexpr auto operator<=>(const RefPtr &rhs) const noexcept
{
return object <=> rhs.object;
}
constexpr T *operator->()
{
assert(object != nullptr);
return object->handle;
}
constexpr const T *operator->() const
{
assert(object != nullptr);
return object->handle;
}
constexpr RefObject<T, Deleter> *getObject() const noexcept
{
return object;
}
constexpr T *getHandle()
{
return object->getHandle();
}
constexpr const T *getHandle() const
{
return object->getHandle();
}
constexpr RefPtr<T, Deleter> clone()
{
return RefPtr<T, Deleter>(new T(*getHandle()));
}
private:
RefObject<T, Deleter> *object;
friend class boost::serialization::access;
template<class Archive>
void serialize(Archive& ar, const unsigned int)
{
ar & *object->getHandle();
}
};
template <typename T>
class UniquePtr
{
public:
UniquePtr()
: handle(nullptr)
{
}
UniquePtr(nullptr_t)
: handle(nullptr)
{
}
UniquePtr(T *ptr)
: handle(ptr)
{
}
UniquePtr(const UniquePtr &rhs) = delete;
UniquePtr(UniquePtr &&rhs) noexcept
: handle(rhs.handle)
{
rhs.handle = nullptr;
}
UniquePtr &operator=(const UniquePtr &rhs) = delete;
UniquePtr &operator=(UniquePtr &&rhs)
{
handle = rhs.handle;
rhs.handle = nullptr;
return *this;
}
~UniquePtr()
{
delete handle;
}
inline bool operator==(const UniquePtr &other) const
{
return handle == other.handle;
}
inline bool operator!=(const UniquePtr &other) const
{
return handle != other.handle;
}
inline T *operator->()
{
return handle;
}
inline T* getHandle()
{
return handle;
}
bool isValid()
{
return handle != nullptr;
}
private:
T *handle;
friend class boost::serialization::access;
template<class Archive>
void serialize(Archive& ar, const unsigned int version)
{
ar & *handle;
}
};
//A weak pointer has no ownership over an object and thus cant delete it
template <typename T>
class WeakPtr
{
public:
WeakPtr()
: pointer(nullptr)
{
}
WeakPtr(RefPtr<T> &sharedPtr)
: pointer(sharedPtr)
{
}
WeakPtr &operator=(WeakPtr<T> &weakPtr)
{
pointer = weakPtr.pointer;
return *this;
}
WeakPtr &operator=(RefPtr<T> &sharedPtr)
{
pointer = sharedPtr;
return *this;
}
private:
RefPtr<T> pointer;
};
} // namespace Seele