mirror of
https://github.com/klzgrad/naiveproxy.git
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282 lines
8.3 KiB
C++
282 lines
8.3 KiB
C++
// Copyright 2013 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "net/websockets/websocket_inflater.h"
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#include <algorithm>
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#include <vector>
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#include "base/logging.h"
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#include "net/base/io_buffer.h"
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#include "third_party/zlib/zlib.h"
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namespace net {
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namespace {
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class ShrinkableIOBufferWithSize : public IOBufferWithSize {
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public:
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explicit ShrinkableIOBufferWithSize(size_t size) : IOBufferWithSize(size) {}
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void Shrink(int new_size) {
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CHECK_GE(new_size, 0);
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CHECK_LE(new_size, size_);
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size_ = new_size;
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}
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private:
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~ShrinkableIOBufferWithSize() override = default;
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};
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} // namespace
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WebSocketInflater::WebSocketInflater()
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: input_queue_(kDefaultInputIOBufferCapacity),
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output_buffer_(kDefaultBufferCapacity) {}
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WebSocketInflater::WebSocketInflater(size_t input_queue_capacity,
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size_t output_buffer_capacity)
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: input_queue_(input_queue_capacity),
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output_buffer_(output_buffer_capacity) {
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DCHECK_GT(input_queue_capacity, 0u);
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DCHECK_GT(output_buffer_capacity, 0u);
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}
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bool WebSocketInflater::Initialize(int window_bits) {
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DCHECK_LE(8, window_bits);
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DCHECK_GE(15, window_bits);
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stream_ = std::make_unique<z_stream>();
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memset(stream_.get(), 0, sizeof(*stream_));
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int result = inflateInit2(stream_.get(), -window_bits);
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if (result != Z_OK) {
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inflateEnd(stream_.get());
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stream_.reset();
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return false;
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}
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return true;
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}
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WebSocketInflater::~WebSocketInflater() {
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if (stream_) {
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inflateEnd(stream_.get());
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stream_.reset();
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}
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}
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bool WebSocketInflater::AddBytes(const char* data, size_t size) {
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if (!size)
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return true;
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if (!input_queue_.IsEmpty()) {
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// choked
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input_queue_.Push(data, size);
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return true;
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}
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int result = InflateWithFlush(data, size);
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if (stream_->avail_in > 0)
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input_queue_.Push(&data[size - stream_->avail_in], stream_->avail_in);
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return result == Z_OK || result == Z_BUF_ERROR;
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}
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bool WebSocketInflater::Finish() {
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return AddBytes("\x00\x00\xff\xff", 4);
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}
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scoped_refptr<IOBufferWithSize> WebSocketInflater::GetOutput(size_t size) {
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auto buffer = base::MakeRefCounted<ShrinkableIOBufferWithSize>(size);
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size_t num_bytes_copied = 0;
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while (num_bytes_copied < size && output_buffer_.Size() > 0) {
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size_t num_bytes_to_copy =
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std::min(output_buffer_.Size(), size - num_bytes_copied);
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output_buffer_.Read(&buffer->data()[num_bytes_copied], num_bytes_to_copy);
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num_bytes_copied += num_bytes_to_copy;
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int result = InflateChokedInput();
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if (result != Z_OK && result != Z_BUF_ERROR)
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return NULL;
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}
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buffer->Shrink(num_bytes_copied);
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return buffer;
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}
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int WebSocketInflater::InflateWithFlush(const char* next_in, size_t avail_in) {
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int result = Inflate(next_in, avail_in, Z_NO_FLUSH);
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if (result != Z_OK && result != Z_BUF_ERROR)
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return result;
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if (CurrentOutputSize() > 0)
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return result;
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// CurrentOutputSize() == 0 means there is no data to be output,
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// so we should make sure it by using Z_SYNC_FLUSH.
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return Inflate(reinterpret_cast<const char*>(stream_->next_in),
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stream_->avail_in,
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Z_SYNC_FLUSH);
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}
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int WebSocketInflater::Inflate(const char* next_in,
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size_t avail_in,
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int flush) {
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stream_->next_in = reinterpret_cast<Bytef*>(const_cast<char*>(next_in));
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stream_->avail_in = avail_in;
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int result = Z_BUF_ERROR;
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do {
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std::pair<char*, size_t> tail = output_buffer_.GetTail();
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if (!tail.second)
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break;
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stream_->next_out = reinterpret_cast<Bytef*>(tail.first);
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stream_->avail_out = tail.second;
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result = inflate(stream_.get(), flush);
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output_buffer_.AdvanceTail(tail.second - stream_->avail_out);
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if (result == Z_STREAM_END) {
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// Received a block with BFINAL set to 1. Reset the decompression state.
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result = inflateReset(stream_.get());
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} else if (tail.second == stream_->avail_out) {
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break;
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}
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} while (result == Z_OK || result == Z_BUF_ERROR);
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return result;
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}
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int WebSocketInflater::InflateChokedInput() {
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if (input_queue_.IsEmpty())
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return InflateWithFlush(NULL, 0);
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int result = Z_BUF_ERROR;
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while (!input_queue_.IsEmpty()) {
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std::pair<char*, size_t> top = input_queue_.Top();
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result = InflateWithFlush(top.first, top.second);
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input_queue_.Consume(top.second - stream_->avail_in);
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if (result != Z_OK && result != Z_BUF_ERROR)
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return result;
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if (stream_->avail_in > 0) {
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// There are some data which are not consumed.
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break;
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}
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}
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return result;
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}
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WebSocketInflater::OutputBuffer::OutputBuffer(size_t capacity)
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: capacity_(capacity),
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buffer_(capacity_ + 1), // 1 for sentinel
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head_(0),
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tail_(0) {}
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WebSocketInflater::OutputBuffer::~OutputBuffer() = default;
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size_t WebSocketInflater::OutputBuffer::Size() const {
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return (tail_ + buffer_.size() - head_) % buffer_.size();
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}
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std::pair<char*, size_t> WebSocketInflater::OutputBuffer::GetTail() {
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DCHECK_LT(tail_, buffer_.size());
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return std::make_pair(&buffer_[tail_],
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std::min(capacity_ - Size(), buffer_.size() - tail_));
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}
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void WebSocketInflater::OutputBuffer::Read(char* dest, size_t size) {
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DCHECK_LE(size, Size());
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size_t num_bytes_copied = 0;
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if (tail_ < head_) {
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size_t num_bytes_to_copy = std::min(size, buffer_.size() - head_);
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DCHECK_LT(head_, buffer_.size());
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memcpy(&dest[num_bytes_copied], &buffer_[head_], num_bytes_to_copy);
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AdvanceHead(num_bytes_to_copy);
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num_bytes_copied += num_bytes_to_copy;
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}
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if (num_bytes_copied == size)
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return;
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DCHECK_LE(head_, tail_);
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size_t num_bytes_to_copy = size - num_bytes_copied;
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DCHECK_LE(num_bytes_to_copy, tail_ - head_);
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DCHECK_LT(head_, buffer_.size());
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memcpy(&dest[num_bytes_copied], &buffer_[head_], num_bytes_to_copy);
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AdvanceHead(num_bytes_to_copy);
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num_bytes_copied += num_bytes_to_copy;
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DCHECK_EQ(size, num_bytes_copied);
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return;
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}
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void WebSocketInflater::OutputBuffer::AdvanceHead(size_t advance) {
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DCHECK_LE(advance, Size());
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head_ = (head_ + advance) % buffer_.size();
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}
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void WebSocketInflater::OutputBuffer::AdvanceTail(size_t advance) {
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DCHECK_LE(advance + Size(), capacity_);
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tail_ = (tail_ + advance) % buffer_.size();
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}
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WebSocketInflater::InputQueue::InputQueue(size_t capacity)
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: capacity_(capacity), head_of_first_buffer_(0), tail_of_last_buffer_(0) {}
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WebSocketInflater::InputQueue::~InputQueue() = default;
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std::pair<char*, size_t> WebSocketInflater::InputQueue::Top() {
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DCHECK(!IsEmpty());
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if (buffers_.size() == 1) {
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return std::make_pair(&buffers_.front()->data()[head_of_first_buffer_],
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tail_of_last_buffer_ - head_of_first_buffer_);
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}
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return std::make_pair(&buffers_.front()->data()[head_of_first_buffer_],
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capacity_ - head_of_first_buffer_);
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}
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void WebSocketInflater::InputQueue::Push(const char* data, size_t size) {
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if (!size)
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return;
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size_t num_copied_bytes = 0;
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if (!IsEmpty())
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num_copied_bytes += PushToLastBuffer(data, size);
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while (num_copied_bytes < size) {
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DCHECK(IsEmpty() || tail_of_last_buffer_ == capacity_);
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buffers_.push_back(base::MakeRefCounted<IOBufferWithSize>(capacity_));
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tail_of_last_buffer_ = 0;
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num_copied_bytes +=
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PushToLastBuffer(&data[num_copied_bytes], size - num_copied_bytes);
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}
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}
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void WebSocketInflater::InputQueue::Consume(size_t size) {
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DCHECK(!IsEmpty());
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DCHECK_LE(size + head_of_first_buffer_, capacity_);
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head_of_first_buffer_ += size;
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if (head_of_first_buffer_ == capacity_) {
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buffers_.pop_front();
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head_of_first_buffer_ = 0;
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}
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if (buffers_.size() == 1 && head_of_first_buffer_ == tail_of_last_buffer_) {
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buffers_.pop_front();
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head_of_first_buffer_ = 0;
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tail_of_last_buffer_ = 0;
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}
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}
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size_t WebSocketInflater::InputQueue::PushToLastBuffer(const char* data,
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size_t size) {
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DCHECK(!IsEmpty());
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size_t num_bytes_to_copy = std::min(size, capacity_ - tail_of_last_buffer_);
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if (!num_bytes_to_copy)
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return 0;
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IOBufferWithSize* buffer = buffers_.back().get();
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memcpy(&buffer->data()[tail_of_last_buffer_], data, num_bytes_to_copy);
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tail_of_last_buffer_ += num_bytes_to_copy;
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return num_bytes_to_copy;
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}
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} // namespace net
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