mirror of
https://github.com/klzgrad/naiveproxy.git
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167 lines
4.9 KiB
C++
167 lines
4.9 KiB
C++
// Copyright (c) 2012 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/server/http_connection.h"
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#include <utility>
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#include "base/logging.h"
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#include "net/server/web_socket.h"
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#include "net/socket/stream_socket.h"
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namespace net {
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HttpConnection::ReadIOBuffer::ReadIOBuffer()
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: base_(new GrowableIOBuffer()),
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max_buffer_size_(kDefaultMaxBufferSize) {
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SetCapacity(kInitialBufSize);
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}
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HttpConnection::ReadIOBuffer::~ReadIOBuffer() {
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data_ = NULL; // base_ owns data_.
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}
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int HttpConnection::ReadIOBuffer::GetCapacity() const {
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return base_->capacity();
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}
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void HttpConnection::ReadIOBuffer::SetCapacity(int capacity) {
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DCHECK_LE(GetSize(), capacity);
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base_->SetCapacity(capacity);
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data_ = base_->data();
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}
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bool HttpConnection::ReadIOBuffer::IncreaseCapacity() {
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if (GetCapacity() >= max_buffer_size_) {
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LOG(ERROR) << "Too large read data is pending: capacity=" << GetCapacity()
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<< ", max_buffer_size=" << max_buffer_size_
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<< ", read=" << GetSize();
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return false;
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}
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int new_capacity = GetCapacity() * kCapacityIncreaseFactor;
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if (new_capacity > max_buffer_size_)
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new_capacity = max_buffer_size_;
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SetCapacity(new_capacity);
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return true;
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}
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char* HttpConnection::ReadIOBuffer::StartOfBuffer() const {
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return base_->StartOfBuffer();
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}
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int HttpConnection::ReadIOBuffer::GetSize() const {
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return base_->offset();
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}
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void HttpConnection::ReadIOBuffer::DidRead(int bytes) {
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DCHECK_GE(RemainingCapacity(), bytes);
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base_->set_offset(base_->offset() + bytes);
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data_ = base_->data();
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}
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int HttpConnection::ReadIOBuffer::RemainingCapacity() const {
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return base_->RemainingCapacity();
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}
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void HttpConnection::ReadIOBuffer::DidConsume(int bytes) {
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int previous_size = GetSize();
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int unconsumed_size = previous_size - bytes;
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DCHECK_LE(0, unconsumed_size);
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if (unconsumed_size > 0) {
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// Move unconsumed data to the start of buffer.
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memmove(StartOfBuffer(), StartOfBuffer() + bytes, unconsumed_size);
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}
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base_->set_offset(unconsumed_size);
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data_ = base_->data();
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// If capacity is too big, reduce it.
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if (GetCapacity() > kMinimumBufSize &&
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GetCapacity() > previous_size * kCapacityIncreaseFactor) {
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int new_capacity = GetCapacity() / kCapacityIncreaseFactor;
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if (new_capacity < kMinimumBufSize)
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new_capacity = kMinimumBufSize;
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// realloc() within GrowableIOBuffer::SetCapacity() could move data even
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// when size is reduced. If unconsumed_size == 0, i.e. no data exists in
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// the buffer, free internal buffer first to guarantee no data move.
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if (!unconsumed_size)
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base_->SetCapacity(0);
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SetCapacity(new_capacity);
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}
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}
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HttpConnection::QueuedWriteIOBuffer::QueuedWriteIOBuffer()
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: total_size_(0),
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max_buffer_size_(kDefaultMaxBufferSize) {
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}
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HttpConnection::QueuedWriteIOBuffer::~QueuedWriteIOBuffer() {
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data_ = NULL; // pending_data_ owns data_.
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}
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bool HttpConnection::QueuedWriteIOBuffer::IsEmpty() const {
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return pending_data_.empty();
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}
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bool HttpConnection::QueuedWriteIOBuffer::Append(const std::string& data) {
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if (data.empty())
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return true;
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if (total_size_ + static_cast<int>(data.size()) > max_buffer_size_) {
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LOG(ERROR) << "Too large write data is pending: size="
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<< total_size_ + data.size()
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<< ", max_buffer_size=" << max_buffer_size_;
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return false;
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}
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pending_data_.push(std::make_unique<std::string>(data));
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total_size_ += data.size();
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// If new data is the first pending data, updates data_.
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if (pending_data_.size() == 1)
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data_ = const_cast<char*>(pending_data_.front()->data());
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return true;
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}
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void HttpConnection::QueuedWriteIOBuffer::DidConsume(int size) {
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DCHECK_GE(total_size_, size);
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DCHECK_GE(GetSizeToWrite(), size);
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if (size == 0)
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return;
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if (size < GetSizeToWrite()) {
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data_ += size;
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} else { // size == GetSizeToWrite(). Updates data_ to next pending data.
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pending_data_.pop();
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data_ = IsEmpty() ? NULL : const_cast<char*>(pending_data_.front()->data());
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}
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total_size_ -= size;
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}
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int HttpConnection::QueuedWriteIOBuffer::GetSizeToWrite() const {
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if (IsEmpty()) {
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DCHECK_EQ(0, total_size_);
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return 0;
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}
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DCHECK_GE(data_, pending_data_.front()->data());
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int consumed = static_cast<int>(data_ - pending_data_.front()->data());
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DCHECK_GT(static_cast<int>(pending_data_.front()->size()), consumed);
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return pending_data_.front()->size() - consumed;
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}
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HttpConnection::HttpConnection(int id, std::unique_ptr<StreamSocket> socket)
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: id_(id),
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socket_(std::move(socket)),
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read_buf_(new ReadIOBuffer()),
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write_buf_(new QueuedWriteIOBuffer()) {}
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HttpConnection::~HttpConnection() = default;
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void HttpConnection::SetWebSocket(std::unique_ptr<WebSocket> web_socket) {
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DCHECK(!web_socket_);
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web_socket_ = std::move(web_socket);
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}
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} // namespace net
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