211 lines
7.4 KiB
C++
211 lines
7.4 KiB
C++
// Copyright 2012 The Chromium Authors
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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_frame_parser.h"
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#include <algorithm>
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#include <limits>
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#include <utility>
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#include <vector>
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#include "base/big_endian.h"
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#include "base/logging.h"
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#include "base/memory/scoped_refptr.h"
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#include "net/base/io_buffer.h"
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#include "net/websockets/websocket_frame.h"
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namespace {
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const uint8_t kFinalBit = 0x80;
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const uint8_t kReserved1Bit = 0x40;
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const uint8_t kReserved2Bit = 0x20;
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const uint8_t kReserved3Bit = 0x10;
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const uint8_t kOpCodeMask = 0xF;
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const uint8_t kMaskBit = 0x80;
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const uint8_t kPayloadLengthMask = 0x7F;
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const uint64_t kMaxPayloadLengthWithoutExtendedLengthField = 125;
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const uint64_t kPayloadLengthWithTwoByteExtendedLengthField = 126;
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const uint64_t kPayloadLengthWithEightByteExtendedLengthField = 127;
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const size_t kMaximumFrameHeaderSize =
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net::WebSocketFrameHeader::kBaseHeaderSize +
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net::WebSocketFrameHeader::kMaximumExtendedLengthSize +
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net::WebSocketFrameHeader::kMaskingKeyLength;
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} // namespace.
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namespace net {
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WebSocketFrameParser::WebSocketFrameParser() = default;
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WebSocketFrameParser::~WebSocketFrameParser() = default;
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bool WebSocketFrameParser::Decode(
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const char* data,
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size_t length,
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std::vector<std::unique_ptr<WebSocketFrameChunk>>* frame_chunks) {
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if (websocket_error_ != kWebSocketNormalClosure)
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return false;
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if (!length)
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return true;
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base::span<const char> data_span = base::make_span(data, length);
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// If we have incomplete frame header, try to decode a header combining with
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// |data|.
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bool first_chunk = false;
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if (incomplete_header_buffer_.size() > 0) {
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DCHECK(!current_frame_header_.get());
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const size_t original_size = incomplete_header_buffer_.size();
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DCHECK_LE(original_size, kMaximumFrameHeaderSize);
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incomplete_header_buffer_.insert(
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incomplete_header_buffer_.end(), data,
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data + std::min(length, kMaximumFrameHeaderSize - original_size));
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const size_t consumed = DecodeFrameHeader(incomplete_header_buffer_);
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if (websocket_error_ != kWebSocketNormalClosure)
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return false;
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if (!current_frame_header_.get())
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return true;
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DCHECK_GE(consumed, original_size);
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data_span = data_span.subspan(consumed - original_size);
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incomplete_header_buffer_.clear();
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first_chunk = true;
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}
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DCHECK(incomplete_header_buffer_.empty());
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while (data_span.size() > 0 || first_chunk) {
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if (!current_frame_header_.get()) {
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const size_t consumed = DecodeFrameHeader(data_span);
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if (websocket_error_ != kWebSocketNormalClosure)
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return false;
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// If frame header is incomplete, then carry over the remaining
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// data to the next round of Decode().
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if (!current_frame_header_.get()) {
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DCHECK(!consumed);
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incomplete_header_buffer_.insert(incomplete_header_buffer_.end(),
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data_span.data(),
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data_span.data() + data_span.size());
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// Sanity check: the size of carried-over data should not exceed
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// the maximum possible length of a frame header.
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DCHECK_LT(incomplete_header_buffer_.size(), kMaximumFrameHeaderSize);
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return true;
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}
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DCHECK_GE(data_span.size(), consumed);
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data_span = data_span.subspan(consumed);
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first_chunk = true;
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}
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DCHECK(incomplete_header_buffer_.empty());
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std::unique_ptr<WebSocketFrameChunk> frame_chunk =
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DecodeFramePayload(first_chunk, &data_span);
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first_chunk = false;
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DCHECK(frame_chunk.get());
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frame_chunks->push_back(std::move(frame_chunk));
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}
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return true;
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}
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size_t WebSocketFrameParser::DecodeFrameHeader(base::span<const char> data) {
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DVLOG(3) << "DecodeFrameHeader buffer size:"
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<< ", data size:" << data.size();
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typedef WebSocketFrameHeader::OpCode OpCode;
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DCHECK(!current_frame_header_.get());
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// Header needs 2 bytes at minimum.
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if (data.size() < 2)
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return 0;
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size_t current = 0;
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const uint8_t first_byte = data[current++];
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const uint8_t second_byte = data[current++];
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const bool final = (first_byte & kFinalBit) != 0;
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const bool reserved1 = (first_byte & kReserved1Bit) != 0;
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const bool reserved2 = (first_byte & kReserved2Bit) != 0;
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const bool reserved3 = (first_byte & kReserved3Bit) != 0;
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const OpCode opcode = first_byte & kOpCodeMask;
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uint64_t payload_length = second_byte & kPayloadLengthMask;
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if (payload_length == kPayloadLengthWithTwoByteExtendedLengthField) {
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if (data.size() < current + 2)
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return 0;
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uint16_t payload_length_16;
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base::ReadBigEndian(reinterpret_cast<const uint8_t*>(&data[current]),
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&payload_length_16);
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current += 2;
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payload_length = payload_length_16;
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if (payload_length <= kMaxPayloadLengthWithoutExtendedLengthField) {
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websocket_error_ = kWebSocketErrorProtocolError;
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return 0;
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}
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} else if (payload_length == kPayloadLengthWithEightByteExtendedLengthField) {
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if (data.size() < current + 8)
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return 0;
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base::ReadBigEndian(reinterpret_cast<const uint8_t*>(&data[current]),
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&payload_length);
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current += 8;
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if (payload_length <= UINT16_MAX ||
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payload_length > static_cast<uint64_t>(INT64_MAX)) {
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websocket_error_ = kWebSocketErrorProtocolError;
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return 0;
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}
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if (payload_length > static_cast<uint64_t>(INT32_MAX)) {
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websocket_error_ = kWebSocketErrorMessageTooBig;
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return 0;
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}
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}
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DCHECK_EQ(websocket_error_, kWebSocketNormalClosure);
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WebSocketMaskingKey masking_key = {};
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const bool masked = (second_byte & kMaskBit) != 0;
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static const int kMaskingKeyLength = WebSocketFrameHeader::kMaskingKeyLength;
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if (masked) {
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if (data.size() < current + kMaskingKeyLength)
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return 0;
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std::copy(&data[current], &data[current] + kMaskingKeyLength,
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masking_key.key);
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current += kMaskingKeyLength;
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}
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current_frame_header_ = std::make_unique<WebSocketFrameHeader>(opcode);
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current_frame_header_->final = final;
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current_frame_header_->reserved1 = reserved1;
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current_frame_header_->reserved2 = reserved2;
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current_frame_header_->reserved3 = reserved3;
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current_frame_header_->masked = masked;
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current_frame_header_->masking_key = masking_key;
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current_frame_header_->payload_length = payload_length;
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DCHECK_EQ(0u, frame_offset_);
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return current;
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}
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std::unique_ptr<WebSocketFrameChunk> WebSocketFrameParser::DecodeFramePayload(
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bool first_chunk,
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base::span<const char>* data) {
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// The cast here is safe because |payload_length| is already checked to be
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// less than std::numeric_limits<int>::max() when the header is parsed.
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const int chunk_data_size = static_cast<int>(
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std::min(static_cast<uint64_t>(data->size()),
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current_frame_header_->payload_length - frame_offset_));
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auto frame_chunk = std::make_unique<WebSocketFrameChunk>();
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if (first_chunk) {
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frame_chunk->header = current_frame_header_->Clone();
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}
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frame_chunk->final_chunk = false;
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if (chunk_data_size > 0) {
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frame_chunk->payload = data->subspan(0, chunk_data_size);
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*data = data->subspan(chunk_data_size);
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frame_offset_ += chunk_data_size;
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}
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DCHECK_LE(frame_offset_, current_frame_header_->payload_length);
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if (frame_offset_ == current_frame_header_->payload_length) {
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frame_chunk->final_chunk = true;
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current_frame_header_.reset();
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frame_offset_ = 0;
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}
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return frame_chunk;
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}
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} // namespace net
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