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295 lines
10 KiB
C++
295 lines
10 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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#ifndef NET_HTTP_HTTP_STREAM_PARSER_H_
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#define NET_HTTP_HTTP_STREAM_PARSER_H_
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#include <stddef.h>
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#include <stdint.h>
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#include <memory>
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#include <string>
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#include "base/macros.h"
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#include "base/memory/ref_counted.h"
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#include "base/memory/weak_ptr.h"
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#include "base/strings/string_piece.h"
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#include "crypto/ec_private_key.h"
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#include "net/base/completion_callback.h"
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#include "net/base/net_errors.h"
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#include "net/base/net_export.h"
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#include "net/log/net_log_with_source.h"
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#include "net/ssl/token_binding.h"
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namespace net {
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class ClientSocketHandle;
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class DrainableIOBuffer;
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class GrowableIOBuffer;
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class HttpChunkedDecoder;
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struct HttpRequestInfo;
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class HttpRequestHeaders;
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class HttpResponseInfo;
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class IOBuffer;
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class SSLCertRequestInfo;
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class SSLInfo;
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class UploadDataStream;
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class NET_EXPORT_PRIVATE HttpStreamParser {
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public:
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// Any data in |read_buffer| will be used before reading from the socket
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// and any data left over after parsing the stream will be put into
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// |read_buffer|. The left over data will start at offset 0 and the
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// buffer's offset will be set to the first free byte. |read_buffer| may
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// have its capacity changed.
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HttpStreamParser(ClientSocketHandle* connection,
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const HttpRequestInfo* request,
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GrowableIOBuffer* read_buffer,
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const NetLogWithSource& net_log);
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virtual ~HttpStreamParser();
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// Sets whether or not HTTP/0.9 is only allowed on default ports. It's not
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// allowed, by default.
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void set_http_09_on_non_default_ports_enabled(
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bool http_09_on_non_default_ports_enabled) {
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http_09_on_non_default_ports_enabled_ =
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http_09_on_non_default_ports_enabled;
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}
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// These functions implement the interface described in HttpStream with
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// some additional functionality
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int SendRequest(const std::string& request_line,
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const HttpRequestHeaders& headers,
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HttpResponseInfo* response,
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const CompletionCallback& callback);
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int ReadResponseHeaders(const CompletionCallback& callback);
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int ReadResponseBody(IOBuffer* buf, int buf_len,
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const CompletionCallback& callback);
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void Close(bool not_reusable);
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bool IsResponseBodyComplete() const;
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bool CanFindEndOfResponse() const;
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bool IsMoreDataBuffered() const;
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bool IsConnectionReused() const;
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void SetConnectionReused();
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// Returns true if the underlying connection can be reused.
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// The connection can be reused if:
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// * It's still connected.
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// * The response headers indicate the connection can be kept alive.
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// * The end of the response can be found, though it may not have yet been
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// received.
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//
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// Note that if response headers have yet to be received, this will return
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// false.
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bool CanReuseConnection() const;
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int64_t received_bytes() const { return received_bytes_; }
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int64_t sent_bytes() const { return sent_bytes_; }
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void GetSSLInfo(SSLInfo* ssl_info);
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void GetSSLCertRequestInfo(SSLCertRequestInfo* cert_request_info);
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Error GetTokenBindingSignature(crypto::ECPrivateKey* key,
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TokenBindingType tb_type,
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std::vector<uint8_t>* out);
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// Encodes the given |payload| in the chunked format to |output|.
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// Returns the number of bytes written to |output|. |output_size| should
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// be large enough to store the encoded chunk, which is payload.size() +
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// kChunkHeaderFooterSize. Returns ERR_INVALID_ARGUMENT if |output_size|
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// is not large enough.
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//
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// The output will look like: "HEX\r\n[payload]\r\n"
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// where HEX is a length in hexdecimal (without the "0x" prefix).
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static int EncodeChunk(const base::StringPiece& payload,
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char* output,
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size_t output_size);
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// Returns true if request headers and body should be merged (i.e. the
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// sum is small enough and the body is in memory, and not chunked).
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static bool ShouldMergeRequestHeadersAndBody(
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const std::string& request_headers,
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const UploadDataStream* request_body);
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// The number of extra bytes required to encode a chunk.
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static const size_t kChunkHeaderFooterSize;
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private:
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class SeekableIOBuffer;
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// FOO_COMPLETE states implement the second half of potentially asynchronous
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// operations and don't necessarily mean that FOO is complete.
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enum State {
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// STATE_NONE indicates that this is waiting on an external call before
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// continuing.
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STATE_NONE,
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STATE_SEND_HEADERS,
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STATE_SEND_HEADERS_COMPLETE,
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STATE_SEND_BODY,
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STATE_SEND_BODY_COMPLETE,
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STATE_SEND_REQUEST_READ_BODY_COMPLETE,
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STATE_SEND_REQUEST_COMPLETE,
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STATE_READ_HEADERS,
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STATE_READ_HEADERS_COMPLETE,
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STATE_READ_BODY,
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STATE_READ_BODY_COMPLETE,
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STATE_DONE
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};
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// The number of bytes by which the header buffer is grown when it reaches
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// capacity.
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static const int kHeaderBufInitialSize = 4 * 1024; // 4K
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// |kMaxHeaderBufSize| is the number of bytes that the response headers can
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// grow to. If the body start is not found within this range of the
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// response, the transaction will fail with ERR_RESPONSE_HEADERS_TOO_BIG.
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// Note: |kMaxHeaderBufSize| should be a multiple of |kHeaderBufInitialSize|.
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static const int kMaxHeaderBufSize = kHeaderBufInitialSize * 64; // 256K
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// The maximum sane buffer size.
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static const int kMaxBufSize = 2 * 1024 * 1024; // 2M
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// Handle callbacks.
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void OnIOComplete(int result);
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// Try to make progress sending/receiving the request/response.
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int DoLoop(int result);
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// The implementations of each state of the state machine.
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int DoSendHeaders();
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int DoSendHeadersComplete(int result);
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int DoSendBody();
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int DoSendBodyComplete(int result);
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int DoSendRequestReadBodyComplete(int result);
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int DoSendRequestComplete(int result);
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int DoReadHeaders();
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int DoReadHeadersComplete(int result);
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int DoReadBody();
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int DoReadBodyComplete(int result);
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// This handles most of the logic for DoReadHeadersComplete.
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int HandleReadHeaderResult(int result);
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// Examines |read_buf_| to find the start and end of the headers. If they are
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// found, parse them with DoParseResponseHeaders(). Return the offset for
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// the end of the headers, or -1 if the complete headers were not found, or
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// with a net::Error if we encountered an error during parsing.
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int FindAndParseResponseHeaders();
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// Parse the headers into response_. Returns OK on success or a net::Error on
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// failure.
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int ParseResponseHeaders(int end_of_header_offset);
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// Examine the parsed headers to try to determine the response body size.
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void CalculateResponseBodySize();
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// Check if buffers used to send the request are empty.
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bool SendRequestBuffersEmpty();
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// Next state of the request, when the current one completes.
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State io_state_;
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// Null when read state machine is invoked.
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const HttpRequestInfo* request_;
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// The request header data. May include a merged request body.
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scoped_refptr<DrainableIOBuffer> request_headers_;
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// Size of just the request headers. May be less than the length of
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// |request_headers_| if the body was merged with the headers.
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int request_headers_length_;
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// True if HTTP/0.9 should be permitted on non-default ports.
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bool http_09_on_non_default_ports_enabled_;
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// Temporary buffer for reading.
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scoped_refptr<GrowableIOBuffer> read_buf_;
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// Offset of the first unused byte in |read_buf_|. May be nonzero due to
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// body data in the same packet as header data but is zero when reading
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// headers.
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int read_buf_unused_offset_;
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// The amount beyond |read_buf_unused_offset_| where the status line starts;
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// -1 if not found yet.
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int response_header_start_offset_;
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// The amount of received data. If connection is reused then intermediate
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// value may be bigger than final.
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int64_t received_bytes_;
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// The amount of sent data.
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int64_t sent_bytes_;
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// The parsed response headers. Owned by the caller of SendRequest. This
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// cannot be safely accessed after reading the final set of headers, as the
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// caller of SendRequest may have been destroyed - this happens in the case an
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// HttpResponseBodyDrainer is used.
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HttpResponseInfo* response_;
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// Indicates the content length. If this value is less than zero
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// (and chunked_decoder_ is null), then we must read until the server
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// closes the connection.
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int64_t response_body_length_;
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// True if reading a keep-alive response. False if not, or if don't yet know.
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bool response_is_keep_alive_;
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// Keep track of the number of response body bytes read so far.
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int64_t response_body_read_;
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// Helper if the data is chunked.
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std::unique_ptr<HttpChunkedDecoder> chunked_decoder_;
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// Where the caller wants the body data.
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scoped_refptr<IOBuffer> user_read_buf_;
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int user_read_buf_len_;
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// The callback to notify a user that their request or response is
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// complete or there was an error
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CompletionCallback callback_;
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// In the client callback, the client can do anything, including
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// destroying this class, so any pending callback must be issued
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// after everything else is done. When it is time to issue the client
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// callback, move it from |callback_| to |scheduled_callback_|.
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CompletionCallback scheduled_callback_;
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// The underlying socket.
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ClientSocketHandle* const connection_;
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NetLogWithSource net_log_;
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// Callback to be used when doing IO.
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CompletionCallback io_callback_;
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// Buffer used to read the request body from UploadDataStream.
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scoped_refptr<SeekableIOBuffer> request_body_read_buf_;
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// Buffer used to send the request body. This points the same buffer as
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// |request_body_read_buf_| unless the data is chunked.
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scoped_refptr<SeekableIOBuffer> request_body_send_buf_;
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bool sent_last_chunk_;
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// Error received when uploading the body, if any.
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int upload_error_;
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base::WeakPtrFactory<HttpStreamParser> weak_ptr_factory_;
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DISALLOW_COPY_AND_ASSIGN(HttpStreamParser);
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};
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} // namespace net
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#endif // NET_HTTP_HTTP_STREAM_PARSER_H_
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