mirror of
https://github.com/klzgrad/naiveproxy.git
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151 lines
4.7 KiB
C++
151 lines
4.7 KiB
C++
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// 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_deflater.h"
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#include <string.h>
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#include <algorithm>
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#include <vector>
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#include "base/containers/circular_deque.h"
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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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WebSocketDeflater::WebSocketDeflater(ContextTakeOverMode mode)
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: mode_(mode), are_bytes_added_(false) {}
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WebSocketDeflater::~WebSocketDeflater() {
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if (stream_) {
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deflateEnd(stream_.get());
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stream_.reset(NULL);
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}
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}
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bool WebSocketDeflater::Initialize(int window_bits) {
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DCHECK(!stream_);
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stream_.reset(new z_stream);
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DCHECK_LE(8, window_bits);
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DCHECK_GE(15, window_bits);
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// Use a negative value to compress a raw deflate stream.
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//
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// Upgrade window_bits = 8 to 9 because zlib is unable to compress at
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// window_bits = 8. Historically, zlib has silently increased the window size
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// during compression in this case, although this is no longer done for raw
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// deflate streams since zlib 1.2.9.
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//
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// Because of a zlib deflate quirk, back-references will not use the entire
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// range of 1 << window_bits, but will instead use a restricted range of (1 <<
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// window_bits) - 262. With an increased window_bits = 9, back-references will
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// be within a range of 250. These can still be decompressed with window_bits
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// = 8 and the 256-byte window used there.
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//
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// Both the requirement to do this upgrade and the ability to compress with
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// window_bits = 9 while expecting a decompressor to function with window_bits
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// = 8 are quite specific to zlib's particular deflate implementation, but not
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// specific to any particular inflate implementation.
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//
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// See https://crbug.com/691074
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window_bits = -std::max(window_bits, 9);
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memset(stream_.get(), 0, sizeof(*stream_));
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int result = deflateInit2(stream_.get(),
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Z_DEFAULT_COMPRESSION,
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Z_DEFLATED,
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window_bits,
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8, // default mem level
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Z_DEFAULT_STRATEGY);
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if (result != Z_OK) {
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deflateEnd(stream_.get());
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stream_.reset();
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return false;
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}
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const size_t kFixedBufferSize = 4096;
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fixed_buffer_.resize(kFixedBufferSize);
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return true;
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}
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bool WebSocketDeflater::AddBytes(const char* data, size_t size) {
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if (!size)
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return true;
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are_bytes_added_ = true;
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stream_->next_in = reinterpret_cast<Bytef*>(const_cast<char*>(data));
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stream_->avail_in = size;
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int result = Deflate(Z_NO_FLUSH);
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DCHECK(result != Z_BUF_ERROR || !stream_->avail_in);
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return result == Z_BUF_ERROR;
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}
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bool WebSocketDeflater::Finish() {
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if (!are_bytes_added_) {
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// Since consecutive calls of deflate with Z_SYNC_FLUSH and no input
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// lead to an error, we create and return the output for the empty input
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// manually.
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buffer_.push_back('\x00');
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ResetContext();
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return true;
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}
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stream_->next_in = NULL;
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stream_->avail_in = 0;
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int result = Deflate(Z_SYNC_FLUSH);
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// Deflate returning Z_BUF_ERROR means that it's successfully flushed and
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// blocked for input data.
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if (result != Z_BUF_ERROR) {
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ResetContext();
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return false;
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}
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// Remove 4 octets from the tail as the specification requires.
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if (CurrentOutputSize() < 4) {
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ResetContext();
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return false;
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}
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buffer_.resize(buffer_.size() - 4);
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ResetContext();
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return true;
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}
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void WebSocketDeflater::PushSyncMark() {
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DCHECK(!are_bytes_added_);
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const char data[] = {'\x00', '\x00', '\xff', '\xff'};
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buffer_.insert(buffer_.end(), &data[0], &data[sizeof(data)]);
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}
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scoped_refptr<IOBufferWithSize> WebSocketDeflater::GetOutput(size_t size) {
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size_t length_to_copy = std::min(size, buffer_.size());
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base::circular_deque<char>::iterator begin = buffer_.begin();
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base::circular_deque<char>::iterator end = begin + length_to_copy;
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scoped_refptr<IOBufferWithSize> result = new IOBufferWithSize(length_to_copy);
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std::copy(begin, end, result->data());
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buffer_.erase(begin, end);
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return result;
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}
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void WebSocketDeflater::ResetContext() {
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if (mode_ == DO_NOT_TAKE_OVER_CONTEXT)
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deflateReset(stream_.get());
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are_bytes_added_ = false;
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}
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int WebSocketDeflater::Deflate(int flush) {
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int result = Z_OK;
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do {
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stream_->next_out = reinterpret_cast<Bytef*>(&fixed_buffer_[0]);
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stream_->avail_out = fixed_buffer_.size();
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result = deflate(stream_.get(), flush);
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size_t size = fixed_buffer_.size() - stream_->avail_out;
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buffer_.insert(buffer_.end(), &fixed_buffer_[0], &fixed_buffer_[0] + size);
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} while (result == Z_OK);
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return result;
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}
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} // namespace net
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