bounded_threadsafe_queue: Add producer cv to avoid busy waiting
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407dc917f1
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@ -45,12 +45,12 @@ public:
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}
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}
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void PopWait(T& t, std::stop_token stop_token) {
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void PopWait(T& t, std::stop_token stop_token) {
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Wait(stop_token);
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ConsumerWait(stop_token);
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Pop(t);
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Pop(t);
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}
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}
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T PopWait(std::stop_token stop_token) {
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T PopWait(std::stop_token stop_token) {
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Wait(stop_token);
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ConsumerWait(stop_token);
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T t;
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T t;
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Pop(t);
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Pop(t);
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return t;
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return t;
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@ -88,9 +88,10 @@ private:
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}
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}
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} else if constexpr (Mode == PushMode::Wait) {
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} else if constexpr (Mode == PushMode::Wait) {
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// Wait until we have free slots to write to.
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// Wait until we have free slots to write to.
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while ((write_index - m_read_index.load()) == Capacity) {
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std::unique_lock lock{producer_cv_mutex};
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std::this_thread::yield();
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producer_cv.wait(lock, [this, write_index] {
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}
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return (write_index - m_read_index.load()) < Capacity;
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});
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} else {
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} else {
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static_assert(Mode < PushMode::Count, "Invalid PushMode.");
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static_assert(Mode < PushMode::Count, "Invalid PushMode.");
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}
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}
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@ -105,8 +106,8 @@ private:
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++m_write_index;
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++m_write_index;
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// Notify the consumer that we have pushed into the queue.
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// Notify the consumer that we have pushed into the queue.
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std::scoped_lock lock{cv_mutex};
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std::scoped_lock lock{consumer_cv_mutex};
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cv.notify_one();
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consumer_cv.notify_one();
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return true;
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return true;
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}
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}
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@ -122,9 +123,10 @@ private:
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}
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}
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} else if constexpr (Mode == PushMode::Wait) {
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} else if constexpr (Mode == PushMode::Wait) {
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// Wait until we have free slots to write to.
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// Wait until we have free slots to write to.
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while ((write_index - m_read_index.load()) == Capacity) {
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std::unique_lock lock{producer_cv_mutex};
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std::this_thread::yield();
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producer_cv.wait(lock, [this, write_index] {
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}
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return (write_index - m_read_index.load()) < Capacity;
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});
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} else {
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} else {
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static_assert(Mode < PushMode::Count, "Invalid PushMode.");
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static_assert(Mode < PushMode::Count, "Invalid PushMode.");
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}
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}
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@ -139,8 +141,8 @@ private:
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++m_write_index;
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++m_write_index;
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// Notify the consumer that we have pushed into the queue.
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// Notify the consumer that we have pushed into the queue.
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std::scoped_lock lock{cv_mutex};
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std::scoped_lock lock{consumer_cv_mutex};
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cv.notify_one();
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consumer_cv.notify_one();
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return true;
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return true;
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}
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}
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@ -161,6 +163,10 @@ private:
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// Increment the read index.
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// Increment the read index.
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++m_read_index;
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++m_read_index;
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// Notify the producer that we have popped off the queue.
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std::unique_lock lock{producer_cv_mutex};
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producer_cv.notify_one();
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}
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}
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bool Pop(T& t) {
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bool Pop(T& t) {
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@ -180,12 +186,16 @@ private:
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// Increment the read index.
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// Increment the read index.
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++m_read_index;
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++m_read_index;
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// Notify the producer that we have popped off the queue.
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std::scoped_lock lock{producer_cv_mutex};
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producer_cv.notify_one();
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return true;
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return true;
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}
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}
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void Wait(std::stop_token stop_token) {
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void ConsumerWait(std::stop_token stop_token) {
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std::unique_lock lock{cv_mutex};
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std::unique_lock lock{consumer_cv_mutex};
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Common::CondvarWait(cv, lock, stop_token, [this] { return !Empty(); });
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Common::CondvarWait(consumer_cv, lock, stop_token, [this] { return !Empty(); });
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}
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}
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alignas(128) std::atomic_size_t m_read_index{0};
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alignas(128) std::atomic_size_t m_read_index{0};
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@ -193,8 +203,10 @@ private:
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std::array<T, Capacity> m_data;
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std::array<T, Capacity> m_data;
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std::condition_variable_any cv;
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std::condition_variable_any producer_cv;
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std::mutex cv_mutex;
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std::mutex producer_cv_mutex;
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std::condition_variable_any consumer_cv;
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std::mutex consumer_cv_mutex;
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};
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};
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template <typename T, size_t Capacity = detail::DefaultCapacity>
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template <typename T, size_t Capacity = detail::DefaultCapacity>
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