forked from premiere/premiere-libtorrent
445 lines
16 KiB
C++
445 lines
16 KiB
C++
/*
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Copyright (c) 2003-2018, Arvid Norberg
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All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions
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are met:
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* Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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* Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in
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the documentation and/or other materials provided with the distribution.
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* Neither the name of the author nor the names of its
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contributors may be used to endorse or promote products derived
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from this software without specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
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LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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POSSIBILITY OF SUCH DAMAGE.
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*/
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#ifndef TORRENT_PEER_INFO_HPP_INCLUDED
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#define TORRENT_PEER_INFO_HPP_INCLUDED
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#include "libtorrent/socket.hpp"
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#include "libtorrent/deadline_timer.hpp"
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#include "libtorrent/peer_id.hpp"
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#include "libtorrent/config.hpp"
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#include "libtorrent/bitfield.hpp"
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#include "libtorrent/time.hpp"
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#include "libtorrent/units.hpp"
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#include "libtorrent/flags.hpp"
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namespace libtorrent {
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// flags for the peer_info::flags field. Indicates various states
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// the peer may be in. These flags are not mutually exclusive, but
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// not every combination of them makes sense either.
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using peer_flags_t = flags::bitfield_flag<std::uint32_t, struct peer_flags_tag>;
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// the flags indicating which sources a peer can
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// have come from. A peer may have been seen from
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// multiple sources
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using peer_source_flags_t = flags::bitfield_flag<std::uint8_t, struct peer_source_flags_tag>;
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// flags indicating what is blocking network transfers in up- and down
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// direction
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using bandwidth_state_flags_t = flags::bitfield_flag<std::uint8_t, struct bandwidth_state_flags_tag>;
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TORRENT_VERSION_NAMESPACE_2
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// holds information and statistics about one peer
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// that libtorrent is connected to
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struct TORRENT_EXPORT peer_info
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{
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// a string describing the software at the other end of the connection.
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// In some cases this information is not available, then it will contain
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// a string that may give away something about which software is running
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// in the other end. In the case of a web seed, the server type and
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// version will be a part of this string.
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std::string client;
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// a bitfield, with one bit per piece in the torrent. Each bit tells you
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// if the peer has that piece (if it's set to 1) or if the peer miss that
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// piece (set to 0).
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typed_bitfield<piece_index_t> pieces;
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// the total number of bytes downloaded from and uploaded to this peer.
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// These numbers do not include the protocol chatter, but only the
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// payload data.
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std::int64_t total_download;
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std::int64_t total_upload;
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// the time since we last sent a request to this peer and since any
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// transfer occurred with this peer
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time_duration last_request;
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time_duration last_active;
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// the time until all blocks in the request queue will be downloaded
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time_duration download_queue_time;
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// **we** are interested in pieces from this peer.
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static constexpr peer_flags_t interesting = 0_bit;
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// **we** have choked this peer.
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static constexpr peer_flags_t choked = 1_bit;
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// the peer is interested in **us**
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static constexpr peer_flags_t remote_interested = 2_bit;
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// the peer has choked **us**.
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static constexpr peer_flags_t remote_choked = 3_bit;
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// means that this peer supports the
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// `extension protocol`__.
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//
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// __ extension_protocol.html
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static constexpr peer_flags_t supports_extensions = 4_bit;
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// The connection was initiated by us, the peer has a
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// listen port open, and that port is the same as in the
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// address of this peer. If this flag is not set, this
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// peer connection was opened by this peer connecting to
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// us.
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static constexpr peer_flags_t local_connection = 5_bit;
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// The connection is opened, and waiting for the
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// handshake. Until the handshake is done, the peer
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// cannot be identified.
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static constexpr peer_flags_t handshake = 6_bit;
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// The connection is in a half-open state (i.e. it is
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// being connected).
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static constexpr peer_flags_t connecting = 7_bit;
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#if TORRENT_ABI_VERSION == 1
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// The connection is currently queued for a connection
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// attempt. This may happen if there is a limit set on
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// the number of half-open TCP connections.
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static constexpr peer_flags_t queued = 8_bit;
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#endif
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// The peer has participated in a piece that failed the
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// hash check, and is now "on parole", which means we're
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// only requesting whole pieces from this peer until
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// it either fails that piece or proves that it doesn't
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// send bad data.
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static constexpr peer_flags_t on_parole = 9_bit;
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// This peer is a seed (it has all the pieces).
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static constexpr peer_flags_t seed = 10_bit;
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// This peer is subject to an optimistic unchoke. It has
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// been unchoked for a while to see if it might unchoke
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// us in return an earn an upload/unchoke slot. If it
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// doesn't within some period of time, it will be choked
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// and another peer will be optimistically unchoked.
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static constexpr peer_flags_t optimistic_unchoke = 11_bit;
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// This peer has recently failed to send a block within
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// the request timeout from when the request was sent.
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// We're currently picking one block at a time from this
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// peer.
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static constexpr peer_flags_t snubbed = 12_bit;
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// This peer has either explicitly (with an extension)
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// or implicitly (by becoming a seed) told us that it
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// will not downloading anything more, regardless of
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// which pieces we have.
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static constexpr peer_flags_t upload_only = 13_bit;
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// This means the last time this peer picket a piece,
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// it could not pick as many as it wanted because there
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// were not enough free ones. i.e. all pieces this peer
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// has were already requested from other peers.
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static constexpr peer_flags_t endgame_mode = 14_bit;
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// This flag is set if the peer was in holepunch mode
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// when the connection succeeded. This typically only
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// happens if both peers are behind a NAT and the peers
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// connect via the NAT holepunch mechanism.
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static constexpr peer_flags_t holepunched = 15_bit;
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// indicates that this socket is running on top of the
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// I2P transport.
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static constexpr peer_flags_t i2p_socket = 16_bit;
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// indicates that this socket is a uTP socket
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static constexpr peer_flags_t utp_socket = 17_bit;
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// indicates that this socket is running on top of an SSL
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// (TLS) channel
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static constexpr peer_flags_t ssl_socket = 18_bit;
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// this connection is obfuscated with RC4
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static constexpr peer_flags_t rc4_encrypted = 19_bit;
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// the handshake of this connection was obfuscated
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// with a Diffie-Hellman exchange
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static constexpr peer_flags_t plaintext_encrypted = 20_bit;
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// tells you in which state the peer is in. It is set to
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// any combination of the peer_flags_t flags above.
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peer_flags_t flags;
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// The peer was received from the tracker.
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static constexpr peer_source_flags_t tracker = 0_bit;
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// The peer was received from the kademlia DHT.
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static constexpr peer_source_flags_t dht = 1_bit;
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// The peer was received from the peer exchange
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// extension.
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static constexpr peer_source_flags_t pex = 2_bit;
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// The peer was received from the local service
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// discovery (The peer is on the local network).
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static constexpr peer_source_flags_t lsd = 3_bit;
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// The peer was added from the fast resume data.
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static constexpr peer_source_flags_t resume_data = 4_bit;
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// we received an incoming connection from this peer
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static constexpr peer_source_flags_t incoming = 5_bit;
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// a combination of flags describing from which sources this peer
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// was received. A combination of the peer_source_flags_t above.
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peer_source_flags_t source;
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// the current upload and download speed we have to and from this peer
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// (including any protocol messages). updated about once per second
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int up_speed;
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int down_speed;
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// The transfer rates of payload data only updated about once per second
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int payload_up_speed;
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int payload_down_speed;
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// the peer's id as used in the bit torrent protocol. This id can be used
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// to extract 'fingerprints' from the peer. Sometimes it can tell you
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// which client the peer is using. See identify_client()_
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peer_id pid;
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int queue_bytes;
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// the number of seconds until the current front piece request will time
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// out. This timeout can be adjusted through
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// ``settings_pack::request_timeout``.
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// -1 means that there is not outstanding request.
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int request_timeout;
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// the number of bytes allocated
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// and used for the peer's send buffer, respectively.
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int send_buffer_size;
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int used_send_buffer;
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// the number of bytes
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// allocated and used as receive buffer, respectively.
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int receive_buffer_size;
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int used_receive_buffer;
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int receive_buffer_watermark;
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// the number of pieces this peer has participated in sending us that
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// turned out to fail the hash check.
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int num_hashfails;
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// this is the number of requests we have sent to this peer that we
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// haven't got a response for yet
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int download_queue_length;
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// the number of block requests that have timed out, and are still in the
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// download queue
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int timed_out_requests;
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// the number of busy requests in the download queue. A busy request is a
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// request for a block we've also requested from a different peer
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int busy_requests;
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// the number of requests messages that are currently in the send buffer
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// waiting to be sent.
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int requests_in_buffer;
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// the number of requests that is tried to be maintained (this is
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// typically a function of download speed)
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int target_dl_queue_length;
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// the number of piece-requests we have received from this peer
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// that we haven't answered with a piece yet.
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int upload_queue_length;
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// the number of times this peer has "failed". i.e. failed to connect or
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// disconnected us. The failcount is decremented when we see this peer in
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// a tracker response or peer exchange message.
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int failcount;
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// You can know which piece, and which part of that piece, that is
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// currently being downloaded from a specific peer by looking at these
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// four members. ``downloading_piece_index`` is the index of the piece
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// that is currently being downloaded. This may be set to -1 if there's
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// currently no piece downloading from this peer. If it is >= 0, the
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// other three members are valid. ``downloading_block_index`` is the
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// index of the block (or sub-piece) that is being downloaded.
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// ``downloading_progress`` is the number of bytes of this block we have
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// received from the peer, and ``downloading_total`` is the total number
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// of bytes in this block.
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piece_index_t downloading_piece_index;
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int downloading_block_index;
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int downloading_progress;
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int downloading_total;
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// the kind of connection this is. Used for the connection_type field.
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enum connection_type_t
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{
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// Regular bittorrent connection
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standard_bittorrent = 0,
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// HTTP connection using the `BEP 19`_ protocol
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web_seed = 1,
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// HTTP connection using the `BEP 17`_ protocol
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http_seed = 2
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};
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// the kind of connection this peer uses. See connection_type_t.
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int connection_type;
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#if TORRENT_ABI_VERSION == 1
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// an estimate of the rate this peer is downloading at, in
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// bytes per second.
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int remote_dl_rate;
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#endif
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// the number of bytes this peer has pending in the disk-io thread.
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// Downloaded and waiting to be written to disk. This is what is capped
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// by ``settings_pack::max_queued_disk_bytes``.
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int pending_disk_bytes;
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// number of outstanding bytes to read
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// from disk
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int pending_disk_read_bytes;
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// the number of bytes this peer has been assigned to be allowed to send
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// and receive until it has to request more quota from the bandwidth
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// manager.
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int send_quota;
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int receive_quota;
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// an estimated round trip time to this peer, in milliseconds. It is
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// estimated by timing the TCP ``connect()``. It may be 0 for
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// incoming connections.
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int rtt;
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// the number of pieces this peer has.
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int num_pieces;
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// the highest download and upload rates seen on this connection. They
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// are given in bytes per second. This number is reset to 0 on reconnect.
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int download_rate_peak;
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int upload_rate_peak;
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// the progress of the peer in the range [0, 1]. This is always 0 when
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// floating point operations are disabled, instead use ``progress_ppm``.
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float progress; // [0, 1]
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// indicates the download progress of the peer in the range [0, 1000000]
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// (parts per million).
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int progress_ppm;
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// this is an estimation of the upload rate, to this peer, where it will
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// unchoke us. This is a coarse estimation based on the rate at which
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// we sent right before we were choked. This is primarily used for the
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// bittyrant choking algorithm.
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int estimated_reciprocation_rate;
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// the IP-address to this peer. The type is an asio endpoint. For
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// more info, see the asio_ documentation.
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//
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// .. _asio: http://asio.sourceforge.net/asio-0.3.8/doc/asio/reference.html
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tcp::endpoint ip;
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// the IP and port pair the socket is bound to locally. i.e. the IP
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// address of the interface it's going out over. This may be useful for
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// multi-homed clients with multiple interfaces to the internet.
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tcp::endpoint local_endpoint;
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// The peer is not waiting for any external events to
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// send or receive data.
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static constexpr bandwidth_state_flags_t bw_idle = 0_bit;
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// The peer is waiting for the rate limiter.
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static constexpr bandwidth_state_flags_t bw_limit = 1_bit;
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// The peer has quota and is currently waiting for a
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// network read or write operation to complete. This is
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// the state all peers are in if there are no bandwidth
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// limits.
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static constexpr bandwidth_state_flags_t bw_network = 2_bit;
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// The peer is waiting for the disk I/O thread to catch
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// up writing buffers to disk before downloading more.
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static constexpr bandwidth_state_flags_t bw_disk = 4_bit;
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// bitmasks indicating what state this peer
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// is in with regards to sending and receiving data. The states are declared in the
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// bw_state enum.
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bandwidth_state_flags_t read_state;
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bandwidth_state_flags_t write_state;
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#if TORRENT_ABI_VERSION == 1
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static constexpr bandwidth_state_flags_t bw_torrent = bw_limit;
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static constexpr bandwidth_state_flags_t bw_global = bw_limit;
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// the number of bytes per second we are allowed to send to or receive
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// from this peer. It may be -1 if there's no local limit on the peer.
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// The global limit and the torrent limit may also be enforced.
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int upload_limit;
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int download_limit;
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// a measurement of the balancing of free download (that we get) and free
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// upload that we give. Every peer gets a certain amount of free upload,
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// but this member says how much *extra* free upload this peer has got.
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// If it is a negative number it means that this was a peer from which we
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// have got this amount of free download.
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std::int64_t load_balancing;
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#endif
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};
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TORRENT_VERSION_NAMESPACE_2_END
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#if TORRENT_ABI_VERSION == 1
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// internal
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struct TORRENT_EXTRA_EXPORT peer_list_entry
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{
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// internal
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enum flags_t
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{
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banned = 1
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};
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// internal
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tcp::endpoint ip;
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// internal
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int flags;
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// internal
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std::uint8_t failcount;
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// internal
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std::uint8_t source;
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};
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#endif
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}
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#endif // TORRENT_PEER_INFO_HPP_INCLUDED
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