2018-12-31 20:04:05 +01:00
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//
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2018-01-02 14:42:31 +01:00
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// Copyright Aliaksei Levin (levlam@telegram.org), Arseny Smirnov (arseny30@gmail.com) 2014-2018
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2018-12-31 20:04:05 +01:00
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//
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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//
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#pragma once
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#include "td/utils/common.h"
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#include "td/utils/logging.h"
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#include "td/utils/MpscLinkQueue.h"
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#include <atomic>
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#include <memory>
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#include <new>
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#include <utility>
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namespace td {
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namespace detail {
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class AtomicRefCnt {
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public:
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explicit AtomicRefCnt(uint64 cnt) : cnt_(cnt) {
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}
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void inc() {
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cnt_.fetch_add(1, std::memory_order_relaxed);
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}
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bool dec() {
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return cnt_.fetch_sub(1, std::memory_order_acq_rel) == 1;
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}
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uint64 value() const {
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return cnt_.load(std::memory_order_relaxed);
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}
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private:
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std::atomic<uint64> cnt_;
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};
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template <class DataT, class DeleterT>
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class SharedPtrRaw
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: public DeleterT
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, private MpscLinkQueueImpl::Node {
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public:
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explicit SharedPtrRaw(DeleterT deleter) : DeleterT(std::move(deleter)), ref_cnt_{0}, option_magic_(Magic) {
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}
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~SharedPtrRaw() {
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CHECK(use_cnt() == 0);
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CHECK(option_magic_ == Magic);
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}
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template <class... ArgsT>
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void init_data(ArgsT &&... args) {
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new (&option_data_) DataT(std::forward<ArgsT>(args)...);
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}
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void destroy_data() {
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option_data_.~DataT();
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option_magic_ = Magic;
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}
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uint64 use_cnt() const {
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return ref_cnt_.value();
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}
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void inc() {
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ref_cnt_.inc();
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}
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bool dec() {
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return ref_cnt_.dec();
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}
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DataT &data() {
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return option_data_;
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}
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static SharedPtrRaw *from_mpsc_link_queue_node(MpscLinkQueueImpl::Node *node) {
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return static_cast<SharedPtrRaw<DataT, DeleterT> *>(node);
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}
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MpscLinkQueueImpl::Node *to_mpsc_link_queue_node() {
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return static_cast<MpscLinkQueueImpl::Node *>(this);
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}
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private:
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AtomicRefCnt ref_cnt_;
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enum { Magic = 0x732817a2 };
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union {
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DataT option_data_;
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uint32 option_magic_;
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};
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};
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template <class T, class DeleterT = std::default_delete<T>>
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class SharedPtr {
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public:
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using Raw = detail::SharedPtrRaw<T, DeleterT>;
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SharedPtr() = default;
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~SharedPtr() {
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if (!raw_) {
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return;
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}
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reset();
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}
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explicit SharedPtr(Raw *raw) : raw_(raw) {
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raw_->inc();
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}
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SharedPtr(const SharedPtr &other) : SharedPtr(other.raw_) {
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}
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SharedPtr &operator=(const SharedPtr &other) {
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other.raw_->inc();
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reset(other.raw_);
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return *this;
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}
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SharedPtr(SharedPtr &&other) : raw_(other.raw_) {
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other.raw_ = nullptr;
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}
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SharedPtr &operator=(SharedPtr &&other) {
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reset(other.raw_);
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other.raw_ = nullptr;
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return *this;
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}
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bool empty() const {
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return raw_ == nullptr;
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}
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explicit operator bool() const {
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return !empty();
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}
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uint64 use_cnt() const {
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if (!raw_) {
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return 0;
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}
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return raw_->use_cnt();
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}
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T &operator*() const {
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return raw_->data();
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}
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T *operator->() const {
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return &raw_->data();
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}
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Raw *release() {
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auto res = raw_;
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raw_ = nullptr;
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return res;
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}
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void reset(Raw *new_raw = nullptr) {
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if (raw_ && raw_->dec()) {
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raw_->destroy_data();
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auto deleter = std::move(static_cast<DeleterT &>(*raw_));
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deleter(raw_);
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}
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raw_ = new_raw;
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}
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template <class... ArgsT>
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static SharedPtr<T, DeleterT> create(ArgsT &&... args) {
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auto raw = std::make_unique<Raw>(DeleterT());
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raw->init_data(std::forward<ArgsT>(args)...);
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return SharedPtr<T, DeleterT>(raw.release());
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}
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template <class D, class... ArgsT>
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static SharedPtr<T, DeleterT> create_with_deleter(D &&d, ArgsT &&... args) {
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auto raw = std::make_unique<Raw>(std::forward<D>(d));
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raw->init_data(std::forward<ArgsT>(args)...);
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return SharedPtr<T, DeleterT>(raw.release());
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}
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private:
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Raw *raw_{nullptr};
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};
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} // namespace detail
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template <class DataT>
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class SharedObjectPool {
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class Deleter;
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public:
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using Ptr = detail::SharedPtr<DataT, Deleter>;
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SharedObjectPool() = default;
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SharedObjectPool(const SharedObjectPool &other) = delete;
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SharedObjectPool &operator=(const SharedObjectPool &other) = delete;
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SharedObjectPool(SharedObjectPool &&other) = delete;
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SharedObjectPool &operator=(SharedObjectPool &&other) = delete;
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~SharedObjectPool() {
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free_queue_.pop_all(free_queue_reader_);
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size_t free_cnt = 0;
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while (free_queue_reader_.read()) {
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free_cnt++;
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}
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CHECK(free_cnt == allocated_.size()) << free_cnt << " " << allocated_.size();
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}
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template <class... ArgsT>
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Ptr alloc(ArgsT &&... args) {
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auto *raw = alloc_raw();
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raw->init_data(std::forward<ArgsT>(args)...);
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return Ptr(raw);
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}
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size_t total_size() const {
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return allocated_.size();
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}
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uint64 calc_free_size() {
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free_queue_.pop_all(free_queue_reader_);
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return free_queue_reader_.calc_size();
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}
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//non thread safe
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template <class F>
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void for_each(F &&f) {
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for (auto &raw : allocated_) {
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if (raw->use_cnt() > 0) {
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f(raw->data());
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}
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}
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}
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private:
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using Raw = typename Ptr::Raw;
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Raw *alloc_raw() {
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free_queue_.pop_all(free_queue_reader_);
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auto *raw = free_queue_reader_.read().get();
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if (raw) {
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return raw;
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}
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allocated_.push_back(std::make_unique<Raw>(deleter()));
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return allocated_.back().get();
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}
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void free_raw(Raw *raw) {
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free_queue_.push(Node{raw});
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}
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class Node {
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public:
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Node() = default;
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explicit Node(Raw *raw) : raw_(raw) {
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}
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MpscLinkQueueImpl::Node *to_mpsc_link_queue_node() {
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return raw_->to_mpsc_link_queue_node();
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}
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static Node from_mpsc_link_queue_node(MpscLinkQueueImpl::Node *node) {
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return Node{Raw::from_mpsc_link_queue_node(node)};
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}
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Raw *get() const {
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return raw_;
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}
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explicit operator bool() const {
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return raw_ != nullptr;
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}
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private:
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Raw *raw_{nullptr};
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};
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class Deleter {
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public:
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explicit Deleter(SharedObjectPool<DataT> *pool) : pool_(pool) {
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}
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void operator()(Raw *raw) {
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pool_->free_raw(raw);
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};
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private:
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SharedObjectPool<DataT> *pool_;
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};
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friend class Deleter;
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auto deleter() {
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return Deleter(this);
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}
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std::vector<std::unique_ptr<Raw>> allocated_;
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MpscLinkQueue<Node> free_queue_;
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typename MpscLinkQueue<Node>::Reader free_queue_reader_;
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};
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} // namespace td
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