b45f8ba3a0
GitOrigin-RevId: b7985efd4257bc9bb2b2672f94c5f5671e19dd0f
388 lines
8.7 KiB
C++
388 lines
8.7 KiB
C++
//
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// Copyright Aliaksei Levin (levlam@telegram.org), Arseny Smirnov (arseny30@gmail.com) 2014-2020
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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/buffer.h"
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#include "td/utils/common.h"
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#include "td/utils/Status.h"
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#include <limits>
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namespace td {
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class ByteFlowInterface {
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public:
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virtual void close_input(Status status) = 0;
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virtual void wakeup() = 0;
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virtual void set_parent(ByteFlowInterface &other) = 0;
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virtual void set_input(ChainBufferReader *input) = 0;
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virtual size_t get_need_size() = 0;
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virtual size_t get_read_size() = 0;
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virtual size_t get_write_size() = 0;
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virtual void reset_need_size() {
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}
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ByteFlowInterface() = default;
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ByteFlowInterface(const ByteFlowInterface &) = delete;
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ByteFlowInterface &operator=(const ByteFlowInterface &) = delete;
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ByteFlowInterface(ByteFlowInterface &&) = default;
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ByteFlowInterface &operator=(ByteFlowInterface &&) = default;
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virtual ~ByteFlowInterface() = default;
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};
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class ByteFlowBaseCommon : public ByteFlowInterface {
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public:
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ByteFlowBaseCommon() = default;
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void close_input(Status status) final {
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if (status.is_error()) {
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finish(std::move(status));
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} else {
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is_input_active_ = false;
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wakeup();
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}
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}
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void wakeup() final {
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if (stop_flag_ || !input_) {
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return;
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}
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input_->sync_with_writer();
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if (waiting_flag_) {
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if (!is_input_active_) {
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finish(Status::OK());
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}
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return;
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}
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while (true) {
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if (stop_flag_) {
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break;
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}
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// update can_read
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if (is_input_active_) {
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auto read_size = get_read_size();
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if (read_size < min(need_size_, options_.read_watermark.low)) {
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can_read = false;
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}
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if (read_size >= max(need_size_, options_.read_watermark.high)) {
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can_read = true;
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}
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} else {
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// always can read when input is closed
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can_read = true;
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}
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// update can_write
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{
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auto write_size = get_write_size();
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if (write_size > options_.write_watermark.high) {
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can_write = false;
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}
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if (write_size <= options_.write_watermark.low) {
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can_write = true;
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}
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}
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if (!can_read || !can_write) {
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break;
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}
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need_size_ = 0;
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if (!loop()) {
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if (need_size_ <= get_read_size()) {
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need_size_ = get_read_size() + 1;
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}
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}
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}
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on_output_updated();
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}
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size_t get_need_size() final {
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return need_size_;
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}
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void reset_need_size() override {
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need_size_ = 0;
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}
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size_t get_read_size() override {
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input_->sync_with_writer();
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return input_->size();
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}
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size_t get_write_size() override {
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CHECK(parent_);
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return parent_->get_read_size();
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}
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struct Watermark {
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size_t low{std::numeric_limits<size_t>::max()};
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size_t high{0};
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};
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struct Options {
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Watermark write_watermark;
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Watermark read_watermark;
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};
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void set_options(Options options) {
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options_ = options;
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}
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virtual bool loop() = 0;
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protected:
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bool waiting_flag_ = false;
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ChainBufferReader *input_ = nullptr;
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bool is_input_active_ = true;
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size_t need_size_ = 0;
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bool can_read{true};
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bool can_write{true};
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Options options_;
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void finish(Status status) {
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stop_flag_ = true;
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need_size_ = 0;
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if (parent_) {
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parent_->close_input(std::move(status));
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parent_ = nullptr;
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}
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}
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void set_need_size(size_t need_size) {
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need_size_ = need_size;
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}
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void on_output_updated() {
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if (parent_) {
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parent_->wakeup();
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}
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}
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void consume_input() {
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waiting_flag_ = true;
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if (!is_input_active_) {
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finish(Status::OK());
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}
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}
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private:
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ByteFlowInterface *parent_ = nullptr;
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bool stop_flag_ = false;
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friend class ByteFlowBase;
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friend class ByteFlowInplaceBase;
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};
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class ByteFlowBase : public ByteFlowBaseCommon {
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public:
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ByteFlowBase() = default;
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void set_input(ChainBufferReader *input) final {
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input_ = input;
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}
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void set_parent(ByteFlowInterface &other) final {
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parent_ = &other;
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parent_->set_input(&output_reader_);
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}
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bool loop() override = 0;
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// ChainBufferWriter &get_output() {
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// return output_;
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//}
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protected:
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ChainBufferWriter output_;
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ChainBufferReader output_reader_ = output_.extract_reader();
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};
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class ByteFlowInplaceBase : public ByteFlowBaseCommon {
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public:
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ByteFlowInplaceBase() = default;
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void set_input(ChainBufferReader *input) final {
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input_ = input;
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output_ = ChainBufferReader(input_->begin().clone(), input_->begin().clone(), false);
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}
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void set_parent(ByteFlowInterface &other) final {
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parent_ = &other;
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parent_->set_input(&output_);
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}
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bool loop() override = 0;
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ChainBufferReader &get_output() {
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return output_;
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}
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protected:
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ChainBufferReader output_;
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};
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inline ByteFlowInterface &operator>>(ByteFlowInterface &from, ByteFlowInterface &to) {
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from.set_parent(to);
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return to;
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}
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class ByteFlowSource : public ByteFlowInterface {
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public:
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ByteFlowSource() = default;
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explicit ByteFlowSource(ChainBufferReader *buffer) : buffer_(buffer) {
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}
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ByteFlowSource(ByteFlowSource &&other) : buffer_(other.buffer_), parent_(other.parent_) {
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other.buffer_ = nullptr;
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other.parent_ = nullptr;
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}
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ByteFlowSource &operator=(ByteFlowSource &&other) {
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buffer_ = other.buffer_;
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parent_ = other.parent_;
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other.buffer_ = nullptr;
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other.parent_ = nullptr;
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return *this;
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}
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ByteFlowSource(const ByteFlowSource &) = delete;
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ByteFlowSource &operator=(const ByteFlowSource &) = delete;
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~ByteFlowSource() override = default;
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void set_input(ChainBufferReader *) final {
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UNREACHABLE();
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}
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void set_parent(ByteFlowInterface &parent) final {
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CHECK(parent_ == nullptr);
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parent_ = &parent;
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parent_->set_input(buffer_);
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}
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void close_input(Status status) final {
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CHECK(parent_);
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parent_->close_input(std::move(status));
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parent_ = nullptr;
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}
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void wakeup() final {
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if (!parent_) {
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return;
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}
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parent_->wakeup();
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}
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size_t get_need_size() final {
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if (parent_ == nullptr) {
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return 0;
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}
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return parent_->get_need_size();
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}
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size_t get_read_size() final {
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UNREACHABLE();
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return 0;
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}
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size_t get_write_size() final {
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CHECK(parent_);
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return parent_->get_read_size();
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}
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private:
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ChainBufferReader *buffer_ = nullptr;
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ByteFlowInterface *parent_ = nullptr;
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};
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class ByteFlowSink : public ByteFlowInterface {
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public:
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void set_input(ChainBufferReader *input) final {
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CHECK(buffer_ == nullptr);
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buffer_ = input;
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}
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void set_parent(ByteFlowInterface & /*parent*/) final {
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UNREACHABLE();
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}
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void close_input(Status status) final {
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CHECK(active_);
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active_ = false;
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status_ = std::move(status);
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buffer_->sync_with_writer();
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}
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void wakeup() final {
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buffer_->sync_with_writer();
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}
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size_t get_need_size() final {
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UNREACHABLE();
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return 0;
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}
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size_t get_read_size() final {
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buffer_->sync_with_writer();
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return buffer_->size();
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}
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size_t get_write_size() final {
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UNREACHABLE();
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return 0;
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}
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bool is_ready() {
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return !active_;
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}
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Status &status() {
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return status_;
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}
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ChainBufferReader *result() {
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CHECK(is_ready() && status().is_ok());
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return buffer_;
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}
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ChainBufferReader *get_output() {
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return buffer_;
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}
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private:
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bool active_ = true;
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Status status_;
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ChainBufferReader *buffer_ = nullptr;
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};
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class ByteFlowMoveSink : public ByteFlowInterface {
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public:
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ByteFlowMoveSink() = default;
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explicit ByteFlowMoveSink(ChainBufferWriter *output) {
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set_output(output);
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}
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void set_input(ChainBufferReader *input) final {
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CHECK(!input_);
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input_ = input;
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}
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void set_parent(ByteFlowInterface & /*parent*/) final {
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UNREACHABLE();
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}
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void close_input(Status status) final {
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CHECK(active_);
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active_ = false;
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status_ = std::move(status);
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wakeup();
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}
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void wakeup() final {
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input_->sync_with_writer();
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output_->append(*input_);
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}
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size_t get_need_size() final {
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UNREACHABLE();
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return 0;
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}
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size_t get_read_size() final {
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input_->sync_with_writer();
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//TODO: must be input_->size() + output_->size()
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return input_->size();
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}
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size_t get_write_size() final {
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UNREACHABLE();
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return 0;
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}
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void set_output(ChainBufferWriter *output) {
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CHECK(!output_);
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output_ = output;
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}
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bool is_ready() {
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return !active_;
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}
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Status &status() {
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return status_;
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}
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private:
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bool active_ = true;
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Status status_;
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ChainBufferReader *input_ = nullptr;
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ChainBufferWriter *output_ = nullptr;
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};
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} // namespace td
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