blob: d731da04c88f5ffaa6881aed80f72e228553b630 [file] [log] [blame]
// Copyright 2017 The Fuchsia Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#ifndef SRC_LIB_FXL_OBSERVER_LIST_H_
#define SRC_LIB_FXL_OBSERVER_LIST_H_
// Derived from chromium/src/base/observer_list.h
#include <lib/syslog/cpp/macros.h>
#include <stddef.h>
#include <algorithm>
#include <limits>
#include <vector>
#include "src/lib/fxl/macros.h"
#include "src/lib/fxl/memory/weak_ptr.h"
///////////////////////////////////////////////////////////////////////////////
//
// OVERVIEW:
//
// A container for a list of observers. Unlike a normal STL vector or list,
// this container can be modified during iteration without invalidating the
// iterator. So, it safely handles the case of an observer removing itself
// or other observers from the list while observers are being notified.
//
//
// THREAD-SAFETY:
//
// ObserverList is not thread-safe. ObserverList objects must be created,
// modified, accessed, and destroyed on the same thread.
//
//
// TYPICAL USAGE:
//
// class MyWidget {
// public:
// ...
//
// class Observer {
// public:
// virtual void OnFoo(MyWidget* w) = 0;
// virtual void OnBar(MyWidget* w, int x, int y) = 0;
// };
//
// void AddObserver(Observer* obs) {
// observer_list_.AddObserver(obs);
// }
//
// void RemoveObserver(Observer* obs) {
// observer_list_.RemoveObserver(obs);
// }
//
// void NotifyFoo() {
// for (auto& observer : observer_list_)
// observer.OnFoo(this);
// }
//
// void NotifyBar(int x, int y) {
// for (FooList::iterator i = observer_list.begin(),
// e = observer_list.end(); i != e; ++i)
// i->OnBar(this, x, y);
// }
//
// private:
// fxl::ObserverList<Observer> observer_list_;
// };
//
//
///////////////////////////////////////////////////////////////////////////////
namespace fxl {
template <class ObserverType>
class ObserverListBase {
public:
// Enumeration of which observers are notified.
enum class NotifyWhat {
// Specifies that any observers added during notification are notified.
// This is the default type if non type is provided to the constructor.
kAll,
// Specifies that observers added while sending out notification are not
// notified.
kExistingOnly
};
// An iterator class that can be used to access the list of observers.
template <class ContainerType>
class Iter {
public:
Iter();
explicit Iter(ContainerType* list);
~Iter();
bool operator==(const Iter& other) const;
bool operator!=(const Iter& other) const;
Iter& operator++();
ObserverType* operator->() const;
ObserverType& operator*() const;
// Methods for accessing the underlying container and current element. DO
// NOT call these methods directly: these are public for testing only.
const fxl::WeakPtr<ObserverListBase<ObserverType>>& GetContainer() { return list_; }
ObserverType* GetCurrent() const;
private:
void EnsureValidIndex();
size_t clamped_max_index() const { return std::min(max_index_, list_->observers_.size()); }
bool is_end() const { return !list_ || index_ == clamped_max_index(); }
fxl::WeakPtr<ObserverListBase<ObserverType>> list_;
// When initially constructed and each time the iterator is incremented,
// |index_| is guaranteed to point to a non-null index if the iterator
// has not reached the end of the ObserverList.
size_t index_;
size_t max_index_;
};
using Iterator = Iter<ObserverListBase<ObserverType>>;
using iterator = Iter<ObserverListBase<ObserverType>>;
iterator begin() { return observers_.empty() ? iterator() : iterator(this); }
iterator end() { return iterator(); }
using const_iterator = Iter<const ObserverListBase<ObserverType>>;
const_iterator begin() const {
return observers_.empty() ? const_iterator() : const_iterator(this);
}
const_iterator end() const { return const_iterator(); }
ObserverListBase() : notify_depth_(0), what_(NotifyWhat::kAll), weak_ptr_factory_(this) {}
explicit ObserverListBase(NotifyWhat what)
: notify_depth_(0), what_(what), weak_ptr_factory_(this) {}
// Add an observer to the list. An observer should not be added to
// the same list more than once.
void AddObserver(ObserverType* obs);
// Remove an observer from the list if it is in the list.
void RemoveObserver(ObserverType* obs);
// Determine whether a particular observer is in the list.
bool HasObserver(const ObserverType* observer) const;
void Clear();
protected:
size_t size() const { return observers_.size(); }
void Compact();
private:
using ListType = std::vector<ObserverType*>;
fxl::WeakPtr<ObserverListBase> AsWeakPtr() { return weak_ptr_factory_.GetWeakPtr(); }
ListType observers_;
int notify_depth_;
NotifyWhat what_;
template <class ContainerType>
friend class Iter;
fxl::WeakPtrFactory<ObserverListBase> weak_ptr_factory_;
FXL_DISALLOW_COPY_AND_ASSIGN(ObserverListBase);
};
template <class ObserverType>
template <class ContainerType>
ObserverListBase<ObserverType>::Iter<ContainerType>::Iter() : index_(0), max_index_(0) {}
template <class ObserverType>
template <class ContainerType>
ObserverListBase<ObserverType>::Iter<ContainerType>::Iter(ContainerType* list)
: list_(const_cast<ObserverListBase<ObserverType>*>(list)->AsWeakPtr()),
index_(0),
max_index_(list->what_ == NotifyWhat::kAll ? std::numeric_limits<size_t>::max()
: list->observers_.size()) {
EnsureValidIndex();
FX_DCHECK(list_);
++list_->notify_depth_;
}
template <class ObserverType>
template <class ContainerType>
ObserverListBase<ObserverType>::Iter<ContainerType>::~Iter() {
if (list_ && --list_->notify_depth_ == 0)
list_->Compact();
}
template <class ObserverType>
template <class ContainerType>
bool ObserverListBase<ObserverType>::Iter<ContainerType>::operator==(const Iter& other) const {
if (is_end() && other.is_end())
return true;
return list_.get() == other.list_.get() && index_ == other.index_;
}
template <class ObserverType>
template <class ContainerType>
bool ObserverListBase<ObserverType>::Iter<ContainerType>::operator!=(const Iter& other) const {
return !operator==(other);
}
template <class ObserverType>
template <class ContainerType>
typename ObserverListBase<ObserverType>::template Iter<ContainerType>&
ObserverListBase<ObserverType>::Iter<ContainerType>::operator++() {
if (list_) {
++index_;
EnsureValidIndex();
}
return *this;
}
template <class ObserverType>
template <class ContainerType>
ObserverType* ObserverListBase<ObserverType>::Iter<ContainerType>::operator->() const {
ObserverType* current = GetCurrent();
FX_DCHECK(current);
return current;
}
template <class ObserverType>
template <class ContainerType>
ObserverType& ObserverListBase<ObserverType>::Iter<ContainerType>::operator*() const {
ObserverType* current = GetCurrent();
FX_DCHECK(current);
return *current;
}
template <class ObserverType>
template <class ContainerType>
ObserverType* ObserverListBase<ObserverType>::Iter<ContainerType>::GetCurrent() const {
if (!list_)
return nullptr;
return index_ < clamped_max_index() ? list_->observers_[index_] : nullptr;
}
template <class ObserverType>
template <class ContainerType>
void ObserverListBase<ObserverType>::Iter<ContainerType>::EnsureValidIndex() {
if (!list_)
return;
size_t max_index = clamped_max_index();
while (index_ < max_index && !list_->observers_[index_])
++index_;
}
template <class ObserverType>
void ObserverListBase<ObserverType>::AddObserver(ObserverType* obs) {
FX_DCHECK(obs);
if (std::find(observers_.begin(), observers_.end(), obs) != observers_.end()) {
FX_NOTREACHED() << "Observers can only be added once!";
return;
}
observers_.push_back(obs);
}
template <class ObserverType>
void ObserverListBase<ObserverType>::RemoveObserver(ObserverType* obs) {
FX_DCHECK(obs);
typename ListType::iterator it = std::find(observers_.begin(), observers_.end(), obs);
if (it != observers_.end()) {
if (notify_depth_) {
*it = nullptr;
} else {
observers_.erase(it);
}
}
}
template <class ObserverType>
bool ObserverListBase<ObserverType>::HasObserver(const ObserverType* observer) const {
for (size_t i = 0; i < observers_.size(); ++i) {
if (observers_[i] == observer)
return true;
}
return false;
}
template <class ObserverType>
void ObserverListBase<ObserverType>::Clear() {
if (notify_depth_) {
for (typename ListType::iterator it = observers_.begin(); it != observers_.end(); ++it) {
*it = nullptr;
}
} else {
observers_.clear();
}
}
template <class ObserverType>
void ObserverListBase<ObserverType>::Compact() {
observers_.erase(std::remove(observers_.begin(), observers_.end(), nullptr), observers_.end());
}
template <class ObserverType, bool check_empty = false>
class ObserverList : public ObserverListBase<ObserverType> {
public:
using NotifyWhat = typename ObserverListBase<ObserverType>::NotifyWhat;
ObserverList() {}
explicit ObserverList(NotifyWhat what) : ObserverListBase<ObserverType>(what) {}
~ObserverList() {
// When check_empty is true, assert that the list is empty on destruction.
if (check_empty) {
ObserverListBase<ObserverType>::Compact();
FX_DCHECK(!might_have_observers());
}
}
bool might_have_observers() const { return ObserverListBase<ObserverType>::size() != 0; }
};
} // namespace fxl
#endif // SRC_LIB_FXL_OBSERVER_LIST_H_