Replace tabs with spaces (to pass style check)

This commit is contained in:
Jason Rhinelander 2016-08-28 13:46:25 -04:00
parent ac4278970c
commit 540ae61d3c
2 changed files with 87 additions and 87 deletions

View File

@ -13,32 +13,32 @@ public:
/// Copy constructor /// Copy constructor
Object(const Object &) : m_refCount(0) { print_copy_created(this); } Object(const Object &) : m_refCount(0) { print_copy_created(this); }
/// Return the current reference count /// Return the current reference count
int getRefCount() const { return m_refCount; }; int getRefCount() const { return m_refCount; };
/// Increase the object's reference count by one /// Increase the object's reference count by one
void incRef() const { ++m_refCount; } void incRef() const { ++m_refCount; }
/** \brief Decrease the reference count of /** \brief Decrease the reference count of
* the object and possibly deallocate it. * the object and possibly deallocate it.
* *
* The object will automatically be deallocated once * The object will automatically be deallocated once
* the reference count reaches zero. * the reference count reaches zero.
*/ */
void decRef(bool dealloc = true) const { void decRef(bool dealloc = true) const {
--m_refCount; --m_refCount;
if (m_refCount == 0 && dealloc) if (m_refCount == 0 && dealloc)
delete this; delete this;
else if (m_refCount < 0) else if (m_refCount < 0)
throw std::runtime_error("Internal error: reference count < 0!"); throw std::runtime_error("Internal error: reference count < 0!");
} }
virtual std::string toString() const = 0; virtual std::string toString() const = 0;
protected: protected:
/** \brief Virtual protected deconstructor. /** \brief Virtual protected deconstructor.
* (Will only be called by \ref ref) * (Will only be called by \ref ref)
*/ */
virtual ~Object() { print_destroyed(this); } virtual ~Object() { print_destroyed(this); }
private: private:
mutable std::atomic<int> m_refCount { 0 }; mutable std::atomic<int> m_refCount { 0 };
}; };
@ -61,18 +61,18 @@ class ref_tag {};
*/ */
template <typename T> class ref { template <typename T> class ref {
public: public:
/// Create a nullptr reference /// Create a nullptr reference
ref() : m_ptr(nullptr) { print_default_created(this); track_default_created((ref_tag*) this); } ref() : m_ptr(nullptr) { print_default_created(this); track_default_created((ref_tag*) this); }
/// Construct a reference from a pointer /// Construct a reference from a pointer
ref(T *ptr) : m_ptr(ptr) { ref(T *ptr) : m_ptr(ptr) {
if (m_ptr) ((Object *) m_ptr)->incRef(); if (m_ptr) ((Object *) m_ptr)->incRef();
print_created(this, "from pointer", m_ptr); track_created((ref_tag*) this, "from pointer"); print_created(this, "from pointer", m_ptr); track_created((ref_tag*) this, "from pointer");
} }
/// Copy constructor /// Copy constructor
ref(const ref &r) : m_ptr(r.m_ptr) { ref(const ref &r) : m_ptr(r.m_ptr) {
if (m_ptr) if (m_ptr)
((Object *) m_ptr)->incRef(); ((Object *) m_ptr)->incRef();
@ -96,80 +96,80 @@ public:
} }
/// Move another reference into the current one /// Move another reference into the current one
ref& operator=(ref&& r) { ref& operator=(ref&& r) {
print_move_assigned(this, "pointer", r.m_ptr); track_move_assigned((ref_tag*) this); print_move_assigned(this, "pointer", r.m_ptr); track_move_assigned((ref_tag*) this);
if (*this == r) if (*this == r)
return *this; return *this;
if (m_ptr) if (m_ptr)
((Object *) m_ptr)->decRef(); ((Object *) m_ptr)->decRef();
m_ptr = r.m_ptr; m_ptr = r.m_ptr;
r.m_ptr = nullptr; r.m_ptr = nullptr;
return *this; return *this;
} }
/// Overwrite this reference with another reference /// Overwrite this reference with another reference
ref& operator=(const ref& r) { ref& operator=(const ref& r) {
print_copy_assigned(this, "pointer", r.m_ptr); track_copy_assigned((ref_tag*) this); print_copy_assigned(this, "pointer", r.m_ptr); track_copy_assigned((ref_tag*) this);
if (m_ptr == r.m_ptr) if (m_ptr == r.m_ptr)
return *this; return *this;
if (m_ptr) if (m_ptr)
((Object *) m_ptr)->decRef(); ((Object *) m_ptr)->decRef();
m_ptr = r.m_ptr; m_ptr = r.m_ptr;
if (m_ptr) if (m_ptr)
((Object *) m_ptr)->incRef(); ((Object *) m_ptr)->incRef();
return *this; return *this;
} }
/// Overwrite this reference with a pointer to another object /// Overwrite this reference with a pointer to another object
ref& operator=(T *ptr) { ref& operator=(T *ptr) {
print_values(this, "assigned pointer"); track_values((ref_tag*) this, "assigned pointer"); print_values(this, "assigned pointer"); track_values((ref_tag*) this, "assigned pointer");
if (m_ptr == ptr) if (m_ptr == ptr)
return *this; return *this;
if (m_ptr) if (m_ptr)
((Object *) m_ptr)->decRef(); ((Object *) m_ptr)->decRef();
m_ptr = ptr; m_ptr = ptr;
if (m_ptr) if (m_ptr)
((Object *) m_ptr)->incRef(); ((Object *) m_ptr)->incRef();
return *this; return *this;
} }
/// Compare this reference with another reference /// Compare this reference with another reference
bool operator==(const ref &r) const { return m_ptr == r.m_ptr; } bool operator==(const ref &r) const { return m_ptr == r.m_ptr; }
/// Compare this reference with another reference /// Compare this reference with another reference
bool operator!=(const ref &r) const { return m_ptr != r.m_ptr; } bool operator!=(const ref &r) const { return m_ptr != r.m_ptr; }
/// Compare this reference with a pointer /// Compare this reference with a pointer
bool operator==(const T* ptr) const { return m_ptr == ptr; } bool operator==(const T* ptr) const { return m_ptr == ptr; }
/// Compare this reference with a pointer /// Compare this reference with a pointer
bool operator!=(const T* ptr) const { return m_ptr != ptr; } bool operator!=(const T* ptr) const { return m_ptr != ptr; }
/// Access the object referenced by this reference /// Access the object referenced by this reference
T* operator->() { return m_ptr; } T* operator->() { return m_ptr; }
/// Access the object referenced by this reference /// Access the object referenced by this reference
const T* operator->() const { return m_ptr; } const T* operator->() const { return m_ptr; }
/// Return a C++ reference to the referenced object /// Return a C++ reference to the referenced object
T& operator*() { return *m_ptr; } T& operator*() { return *m_ptr; }
/// Return a const C++ reference to the referenced object /// Return a const C++ reference to the referenced object
const T& operator*() const { return *m_ptr; } const T& operator*() const { return *m_ptr; }
/// Return a pointer to the referenced object /// Return a pointer to the referenced object
operator T* () { return m_ptr; } operator T* () { return m_ptr; }
/// Return a const pointer to the referenced object /// Return a const pointer to the referenced object
T* get() { return m_ptr; } T* get() { return m_ptr; }
/// Return a pointer to the referenced object /// Return a pointer to the referenced object
const T* get() const { return m_ptr; } const T* get() const { return m_ptr; }
private: private:
T *m_ptr; T *m_ptr;
}; };
#endif /* __OBJECT_H */ #endif /* __OBJECT_H */

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@ -13,25 +13,25 @@
class El { class El {
public: public:
El() = delete; El() = delete;
El(int v) : a(v) { } El(int v) : a(v) { }
int a; int a;
}; };
std::ostream & operator<<(std::ostream &s, El const&v) { std::ostream & operator<<(std::ostream &s, El const&v) {
s << "El{" << v.a << '}'; s << "El{" << v.a << '}';
return s; return s;
} }
void init_ex_stl_binder_vector(py::module &m) { void init_ex_stl_binder_vector(py::module &m) {
py::class_<El>(m, "El") py::class_<El>(m, "El")
.def(py::init<int>()); .def(py::init<int>());
py::bind_vector<unsigned int>(m, "VectorInt"); py::bind_vector<unsigned int>(m, "VectorInt");
py::bind_vector<bool>(m, "VectorBool"); py::bind_vector<bool>(m, "VectorBool");
py::bind_vector<El>(m, "VectorEl"); py::bind_vector<El>(m, "VectorEl");
py::bind_vector<std::vector<El>>(m, "VectorVectorEl"); py::bind_vector<std::vector<El>>(m, "VectorVectorEl");
} }