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package torrent
import (
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"bufio"
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"bytes"
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"context"
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"crypto/rand"
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"encoding/binary"
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"errors"
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"fmt"
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"io"
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"net"
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"strconv"
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"strings"
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"time"
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"github.com/anacrolix/dht"
"github.com/anacrolix/dht/krpc"
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"github.com/anacrolix/log"
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"github.com/anacrolix/missinggo"
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"github.com/anacrolix/missinggo/pproffd"
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"github.com/anacrolix/missinggo/pubsub"
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"github.com/anacrolix/missinggo/slices"
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"github.com/anacrolix/sync"
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"github.com/dustin/go-humanize"
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"github.com/google/btree"
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"golang.org/x/time/rate"
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"github.com/anacrolix/torrent/bencode"
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"github.com/anacrolix/torrent/iplist"
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"github.com/anacrolix/torrent/metainfo"
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"github.com/anacrolix/torrent/mse"
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pp "github.com/anacrolix/torrent/peer_protocol"
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"github.com/anacrolix/torrent/storage"
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)
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// Clients contain zero or more Torrents. A Client manages a blocklist, the
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// TCP/UDP protocol ports, and DHT as desired.
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type Client struct {
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mu sync . RWMutex
event sync . Cond
closed missinggo . Event
config Config
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logger * log . Logger
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halfOpenLimit int
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peerID PeerID
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defaultStorage * storage . Client
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onClose [ ] func ( )
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conns [ ] socket
dhtServers [ ] * dht . Server
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ipBlockList iplist . Ranger
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// Our BitTorrent protocol extension bytes, sent in our BT handshakes.
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extensionBytes peerExtensionBytes
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uploadLimit * rate . Limiter
downloadLimit * rate . Limiter
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// Set of addresses that have our client ID. This intentionally will
// include ourselves if we end up trying to connect to our own address
// through legitimate channels.
dopplegangerAddrs map [ string ] struct { }
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badPeerIPs map [ string ] struct { }
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torrents map [ metainfo . Hash ] * Torrent
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}
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func ( cl * Client ) BadPeerIPs ( ) [ ] string {
cl . mu . RLock ( )
defer cl . mu . RUnlock ( )
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return cl . badPeerIPsLocked ( )
}
func ( cl * Client ) badPeerIPsLocked ( ) [ ] string {
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return slices . FromMapKeys ( cl . badPeerIPs ) . ( [ ] string )
}
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func ( cl * Client ) PeerID ( ) PeerID {
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return cl . peerID
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}
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type torrentAddr string
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func ( torrentAddr ) Network ( ) string { return "" }
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func ( me torrentAddr ) String ( ) string { return string ( me ) }
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func ( cl * Client ) LocalPort ( ) ( port int ) {
cl . eachListener ( func ( l socket ) bool {
_port := missinggo . AddrPort ( l . Addr ( ) )
if _port == 0 {
panic ( l )
}
if port == 0 {
port = _port
} else if port != _port {
panic ( "mismatched ports" )
}
return true
} )
return
}
func writeDhtServerStatus ( w io . Writer , s * dht . Server ) {
dhtStats := s . Stats ( )
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fmt . Fprintf ( w , "\t# Nodes: %d (%d good, %d banned)\n" , dhtStats . Nodes , dhtStats . GoodNodes , dhtStats . BadNodes )
fmt . Fprintf ( w , "\tServer ID: %x\n" , s . ID ( ) )
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fmt . Fprintf ( w , "\tAnnounces: %d\n" , dhtStats . SuccessfulOutboundAnnouncePeerQueries )
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fmt . Fprintf ( w , "\tOutstanding transactions: %d\n" , dhtStats . OutstandingTransactions )
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}
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// Writes out a human readable status of the client, such as for writing to a
// HTTP status page.
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func ( cl * Client ) WriteStatus ( _w io . Writer ) {
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cl . mu . Lock ( )
defer cl . mu . Unlock ( )
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w := bufio . NewWriter ( _w )
defer w . Flush ( )
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fmt . Fprintf ( w , "Listen port: %d\n" , cl . LocalPort ( ) )
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fmt . Fprintf ( w , "Peer ID: %+q\n" , cl . PeerID ( ) )
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fmt . Fprintf ( w , "Announce key: %x\n" , cl . announceKey ( ) )
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fmt . Fprintf ( w , "Banned IPs: %d\n" , len ( cl . badPeerIPsLocked ( ) ) )
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cl . eachDhtServer ( func ( s * dht . Server ) {
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fmt . Fprintf ( w , "%s DHT server at %s:\n" , s . Addr ( ) . Network ( ) , s . Addr ( ) . String ( ) )
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writeDhtServerStatus ( w , s )
} )
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fmt . Fprintf ( w , "# Torrents: %d\n" , len ( cl . torrentsAsSlice ( ) ) )
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fmt . Fprintln ( w )
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for _ , t := range slices . Sort ( cl . torrentsAsSlice ( ) , func ( l , r * Torrent ) bool {
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return l . InfoHash ( ) . AsString ( ) < r . InfoHash ( ) . AsString ( )
} ) . ( [ ] * Torrent ) {
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if t . name ( ) == "" {
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fmt . Fprint ( w , "<unknown name>" )
} else {
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fmt . Fprint ( w , t . name ( ) )
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}
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fmt . Fprint ( w , "\n" )
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if t . info != nil {
fmt . Fprintf ( w , "%f%% of %d bytes (%s)" , 100 * ( 1 - float64 ( t . bytesMissingLocked ( ) ) / float64 ( t . info . TotalLength ( ) ) ) , t . length , humanize . Bytes ( uint64 ( t . info . TotalLength ( ) ) ) )
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} else {
w . WriteString ( "<missing metainfo>" )
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}
fmt . Fprint ( w , "\n" )
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t . writeStatus ( w )
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fmt . Fprintln ( w )
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}
}
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const debugLogValue = "debug"
func ( cl * Client ) debugLogFilter ( m * log . Msg ) bool {
if ! cl . config . Debug {
_ , ok := m . Values ( ) [ debugLogValue ]
return ! ok
}
return true
}
func ( cl * Client ) initLogger ( ) {
cl . logger = log . Default . Clone ( ) . AddValue ( cl ) . AddFilter ( log . NewFilter ( cl . debugLogFilter ) )
}
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func ( cl * Client ) announceKey ( ) int32 {
return int32 ( binary . BigEndian . Uint32 ( cl . peerID [ 16 : 20 ] ) )
}
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func NewClient ( cfg * Config ) ( cl * Client , err error ) {
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if cfg == nil {
cfg = & Config { }
}
cfg . setDefaults ( )
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defer func ( ) {
if err != nil {
cl = nil
}
} ( )
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cl = & Client {
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halfOpenLimit : cfg . HalfOpenConnsPerTorrent ,
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config : * cfg ,
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dopplegangerAddrs : make ( map [ string ] struct { } ) ,
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torrents : make ( map [ metainfo . Hash ] * Torrent ) ,
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}
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cl . initLogger ( )
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defer func ( ) {
if err == nil {
return
}
cl . Close ( )
} ( )
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if cfg . UploadRateLimiter == nil {
cl . uploadLimit = rate . NewLimiter ( rate . Inf , 0 )
} else {
cl . uploadLimit = cfg . UploadRateLimiter
}
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if cfg . DownloadRateLimiter == nil {
cl . downloadLimit = rate . NewLimiter ( rate . Inf , 0 )
} else {
cl . downloadLimit = cfg . DownloadRateLimiter
}
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cl . extensionBytes = defaultPeerExtensionBytes ( )
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cl . event . L = & cl . mu
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storageImpl := cfg . DefaultStorage
if storageImpl == nil {
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// We'd use mmap but HFS+ doesn't support sparse files.
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storageImpl = storage . NewFile ( cfg . DataDir )
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cl . onClose = append ( cl . onClose , func ( ) {
if err := storageImpl . Close ( ) ; err != nil {
log . Printf ( "error closing default storage: %s" , err )
}
} )
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}
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cl . defaultStorage = storage . NewClient ( storageImpl )
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if cfg . IPBlocklist != nil {
cl . ipBlockList = cfg . IPBlocklist
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}
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if cfg . PeerID != "" {
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missinggo . CopyExact ( & cl . peerID , cfg . PeerID )
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} else {
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o := copy ( cl . peerID [ : ] , cfg . Bep20 )
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_ , err = rand . Read ( cl . peerID [ o : ] )
if err != nil {
panic ( "error generating peer id" )
}
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}
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cl . conns , err = listenAll ( cl . enabledPeerNetworks ( ) , cl . config . ListenHost , cl . config . ListenPort , cl . config . ProxyURL )
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if err != nil {
return
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}
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// Check for panics.
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cl . LocalPort ( )
for _ , s := range cl . conns {
if peerNetworkEnabled ( s . Addr ( ) . Network ( ) , cl . config ) {
go cl . acceptConnections ( s )
}
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}
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go cl . forwardPort ( )
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if ! cfg . NoDHT {
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for _ , s := range cl . conns {
if pc , ok := s . ( net . PacketConn ) ; ok {
ds , err := cl . newDhtServer ( pc )
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if err != nil {
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panic ( err )
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}
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cl . dhtServers = append ( cl . dhtServers , ds )
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}
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}
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}
return
}
func ( cl * Client ) enabledPeerNetworks ( ) ( ns [ ] string ) {
for _ , n := range allPeerNetworks {
if peerNetworkEnabled ( n , cl . config ) {
ns = append ( ns , n )
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}
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}
return
}
func ( cl * Client ) newDhtServer ( conn net . PacketConn ) ( s * dht . Server , err error ) {
cfg := dht . ServerConfig {
IPBlocklist : cl . ipBlockList ,
Conn : conn ,
OnAnnouncePeer : cl . onDHTAnnouncePeer ,
PublicIP : func ( ) net . IP {
if connIsIpv6 ( conn ) && cl . config . PublicIp6 != nil {
return cl . config . PublicIp6
}
return cl . config . PublicIp4
} ( ) ,
StartingNodes : cl . config . DhtStartingNodes ,
}
s , err = dht . NewServer ( & cfg )
if err == nil {
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go func ( ) {
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if _ , err := s . Bootstrap ( ) ; err != nil {
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log . Printf ( "error bootstrapping dht: %s" , err )
}
} ( )
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}
return
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}
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func firstNonEmptyString ( ss ... string ) string {
for _ , s := range ss {
if s != "" {
return s
}
}
return ""
}
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func ( cl * Client ) Closed ( ) <- chan struct { } {
cl . mu . Lock ( )
defer cl . mu . Unlock ( )
return cl . closed . C ( )
}
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func ( cl * Client ) eachDhtServer ( f func ( * dht . Server ) ) {
for _ , ds := range cl . dhtServers {
f ( ds )
}
}
func ( cl * Client ) closeSockets ( ) {
cl . eachListener ( func ( l socket ) bool {
l . Close ( )
return true
} )
cl . conns = nil
}
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// Stops the client. All connections to peers are closed and all activity will
// come to a halt.
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func ( cl * Client ) Close ( ) {
cl . mu . Lock ( )
defer cl . mu . Unlock ( )
cl . closed . Set ( )
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cl . eachDhtServer ( func ( s * dht . Server ) { s . Close ( ) } )
cl . closeSockets ( )
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for _ , t := range cl . torrents {
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t . close ( )
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}
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for _ , f := range cl . onClose {
f ( )
}
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cl . event . Broadcast ( )
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}
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func ( cl * Client ) ipBlockRange ( ip net . IP ) ( r iplist . Range , blocked bool ) {
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if cl . ipBlockList == nil {
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return
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}
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return cl . ipBlockList . Lookup ( ip )
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}
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func ( cl * Client ) ipIsBlocked ( ip net . IP ) bool {
_ , blocked := cl . ipBlockRange ( ip )
return blocked
}
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func ( cl * Client ) waitAccept ( ) {
for {
for _ , t := range cl . torrents {
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if t . wantConns ( ) {
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return
}
}
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if cl . closed . IsSet ( ) {
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return
}
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cl . event . Wait ( )
}
}
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func ( cl * Client ) rejectAccepted ( conn net . Conn ) bool {
ra := conn . RemoteAddr ( )
rip := missinggo . AddrIP ( ra )
if cl . config . DisableIPv4Peers && rip . To4 ( ) != nil {
return true
}
if cl . config . DisableIPv4 && len ( rip ) == net . IPv4len {
return true
}
if cl . config . DisableIPv6 && len ( rip ) == net . IPv6len && rip . To4 ( ) == nil {
return true
}
return cl . badPeerIPPort ( rip , missinggo . AddrPort ( ra ) )
}
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func ( cl * Client ) acceptConnections ( l net . Listener ) {
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cl . mu . Lock ( )
defer cl . mu . Unlock ( )
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for {
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cl . waitAccept ( )
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cl . mu . Unlock ( )
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conn , err := l . Accept ( )
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conn = pproffd . WrapNetConn ( conn )
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cl . mu . Lock ( )
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if cl . closed . IsSet ( ) {
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if conn != nil {
conn . Close ( )
}
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return
}
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if err != nil {
log . Print ( err )
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// I think something harsher should happen here? Our accept
// routine just fucked off.
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return
}
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log . Fmsg ( "accepted %s connection from %s" , conn . RemoteAddr ( ) . Network ( ) , conn . RemoteAddr ( ) ) . AddValue ( debugLogValue ) . Log ( cl . logger )
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go torrent . Add ( fmt . Sprintf ( "accepted conn remote IP len=%d" , len ( missinggo . AddrIP ( conn . RemoteAddr ( ) ) ) ) , 1 )
go torrent . Add ( fmt . Sprintf ( "accepted conn network=%s" , conn . RemoteAddr ( ) . Network ( ) ) , 1 )
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go torrent . Add ( fmt . Sprintf ( "accepted on %s listener" , l . Addr ( ) . Network ( ) ) , 1 )
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if cl . rejectAccepted ( conn ) {
go torrent . Add ( "rejected accepted connections" , 1 )
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conn . Close ( )
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} else {
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go cl . incomingConnection ( conn )
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}
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}
}
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func ( cl * Client ) incomingConnection ( nc net . Conn ) {
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defer nc . Close ( )
if tc , ok := nc . ( * net . TCPConn ) ; ok {
tc . SetLinger ( 0 )
}
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c := cl . newConnection ( nc )
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c . Discovery = peerSourceIncoming
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cl . runReceivedConn ( c )
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}
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// Returns a handle to the given torrent, if it's present in the client.
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func ( cl * Client ) Torrent ( ih metainfo . Hash ) ( t * Torrent , ok bool ) {
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cl . mu . Lock ( )
defer cl . mu . Unlock ( )
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t , ok = cl . torrents [ ih ]
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return
}
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func ( cl * Client ) torrent ( ih metainfo . Hash ) * Torrent {
return cl . torrents [ ih ]
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}
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type dialResult struct {
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Conn net . Conn
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}
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func countDialResult ( err error ) {
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if err == nil {
successfulDials . Add ( 1 )
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} else {
unsuccessfulDials . Add ( 1 )
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}
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}
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func reducedDialTimeout ( minDialTimeout , max time . Duration , halfOpenLimit int , pendingPeers int ) ( ret time . Duration ) {
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ret = max / time . Duration ( ( pendingPeers + halfOpenLimit ) / halfOpenLimit )
if ret < minDialTimeout {
ret = minDialTimeout
}
return
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}
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// Returns whether an address is known to connect to a client with our own ID.
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func ( cl * Client ) dopplegangerAddr ( addr string ) bool {
_ , ok := cl . dopplegangerAddrs [ addr ]
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return ok
}
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func ( cl * Client ) dialTCP ( ctx context . Context , addr string ) ( c net . Conn , err error ) {
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d := net . Dialer {
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// Can't bind to the listen address, even though we intend to create an
// endpoint pair that is distinct. Oh well.
2018-02-16 07:46:11 +08:00
2018-06-08 18:52:36 +08:00
// LocalAddr: cl.tcpListener.Addr(),
2017-08-16 13:48:30 +08:00
}
2018-02-16 07:46:11 +08:00
c , err = d . DialContext ( ctx , "tcp" + ipNetworkSuffix ( ! cl . config . DisableIPv4 && ! cl . config . DisableIPv4Peers , ! cl . config . DisableIPv6 ) , addr )
2017-08-16 15:05:05 +08:00
countDialResult ( err )
2015-03-18 15:28:13 +08:00
if err == nil {
c . ( * net . TCPConn ) . SetLinger ( 0 )
}
2016-06-20 15:51:40 +08:00
c = pproffd . WrapNetConn ( c )
2015-03-18 15:28:13 +08:00
return
}
2018-02-16 07:46:11 +08:00
func ipNetworkSuffix ( allowIpv4 , allowIpv6 bool ) string {
switch {
case allowIpv4 && allowIpv6 :
return ""
case allowIpv4 && ! allowIpv6 :
return "4"
case ! allowIpv4 && allowIpv6 :
return "6"
default :
panic ( "unhandled ip network combination" )
}
}
2018-04-12 09:41:07 +08:00
func dialUTP ( ctx context . Context , addr string , sock utpSocket ) ( c net . Conn , err error ) {
return sock . DialContext ( ctx , "" , addr )
2015-03-18 15:28:13 +08:00
}
2018-04-12 09:41:07 +08:00
var allPeerNetworks = [ ] string { "tcp4" , "tcp6" , "udp4" , "udp6" }
func peerNetworkEnabled ( network string , cfg Config ) bool {
c := func ( s string ) bool {
return strings . Contains ( network , s )
}
if cfg . DisableUTP {
if c ( "udp" ) || c ( "utp" ) {
return false
}
}
if cfg . DisableTCP && c ( "tcp" ) {
return false
}
2018-05-02 17:24:46 +08:00
if cfg . DisableIPv6 && c ( "6" ) {
return false
}
2018-04-12 09:41:07 +08:00
return true
}
2017-09-15 10:56:15 +08:00
2015-08-02 02:04:42 +08:00
// Returns a connection over UTP or TCP, whichever is first to connect.
2018-04-12 09:41:07 +08:00
func ( cl * Client ) dialFirst ( ctx context . Context , addr string ) net . Conn {
2017-08-16 15:05:05 +08:00
ctx , cancel := context . WithCancel ( ctx )
// As soon as we return one connection, cancel the others.
defer cancel ( )
2015-03-18 15:28:13 +08:00
left := 0
resCh := make ( chan dialResult , left )
2018-04-12 09:41:07 +08:00
dial := func ( f func ( _ context . Context , addr string ) ( net . Conn , error ) ) {
2017-08-16 08:32:25 +08:00
left ++
2017-08-16 15:05:05 +08:00
go func ( ) {
2018-04-12 09:41:07 +08:00
c , err := f ( ctx , addr )
countDialResult ( err )
resCh <- dialResult { c }
2017-08-16 15:05:05 +08:00
} ( )
2015-03-18 15:28:13 +08:00
}
2018-04-12 09:41:07 +08:00
func ( ) {
cl . mu . Lock ( )
defer cl . mu . Unlock ( )
cl . eachListener ( func ( s socket ) bool {
if peerNetworkEnabled ( s . Addr ( ) . Network ( ) , cl . config ) {
dial ( s . dial )
}
return true
} )
} ( )
2015-03-18 15:28:13 +08:00
var res dialResult
// Wait for a successful connection.
for ; left > 0 && res . Conn == nil ; left -- {
res = <- resCh
}
2018-04-12 09:41:07 +08:00
// There are still incompleted dials.
go func ( ) {
for ; left > 0 ; left -- {
conn := ( <- resCh ) . Conn
if conn != nil {
conn . Close ( )
2014-04-03 20:16:59 +08:00
}
2017-09-15 10:56:15 +08:00
}
2018-04-12 09:41:07 +08:00
} ( )
if res . Conn != nil {
go torrent . Add ( fmt . Sprintf ( "network dialed first: %s" , res . Conn . RemoteAddr ( ) . Network ( ) ) , 1 )
2017-09-15 10:56:15 +08:00
}
2018-04-12 09:41:07 +08:00
return res . Conn
2015-03-18 15:28:13 +08:00
}
2016-04-19 12:11:11 +08:00
func ( cl * Client ) noLongerHalfOpen ( t * Torrent , addr string ) {
2016-04-03 14:50:53 +08:00
if _ , ok := t . halfOpen [ addr ] ; ! ok {
2015-03-18 15:28:13 +08:00
panic ( "invariant broken" )
}
2016-04-03 14:50:53 +08:00
delete ( t . halfOpen , addr )
2018-02-04 09:59:23 +08:00
t . openNewConns ( )
2015-03-18 15:28:13 +08:00
}
2016-03-02 20:27:46 +08:00
// Performs initiator handshakes and returns a connection. Returns nil
// *connection if no connection for valid reasons.
2018-04-12 09:41:07 +08:00
func ( cl * Client ) handshakesConnection ( ctx context . Context , nc net . Conn , t * Torrent , encryptHeader bool ) ( c * connection , err error ) {
2016-10-10 13:55:56 +08:00
c = cl . newConnection ( nc )
2017-09-13 16:20:20 +08:00
c . headerEncrypted = encryptHeader
2017-11-08 02:14:13 +08:00
ctx , cancel := context . WithTimeout ( ctx , cl . config . HandshakesTimeout )
2017-08-16 15:05:05 +08:00
defer cancel ( )
dl , ok := ctx . Deadline ( )
if ! ok {
panic ( ctx )
}
err = nc . SetDeadline ( dl )
2015-08-02 02:04:42 +08:00
if err != nil {
2017-08-16 15:05:05 +08:00
panic ( err )
2015-08-02 02:04:42 +08:00
}
2017-08-16 15:05:05 +08:00
ok , err = cl . initiateHandshakes ( c , t )
2015-08-02 02:04:42 +08:00
if ! ok {
c = nil
}
return
}
2018-04-12 09:41:07 +08:00
// Returns nil connection and nil error if no connection could be established
// for valid reasons.
func ( cl * Client ) establishOutgoingConnEx ( t * Torrent , addr string , ctx context . Context , obfuscatedHeader bool ) ( c * connection , err error ) {
nc := cl . dialFirst ( ctx , addr )
if nc == nil {
return
}
defer func ( ) {
if c == nil || err != nil {
nc . Close ( )
}
} ( )
return cl . handshakesConnection ( ctx , nc , t , obfuscatedHeader )
}
2017-09-15 10:56:15 +08:00
2015-03-18 15:28:13 +08:00
// Returns nil connection and nil error if no connection could be established
// for valid reasons.
2016-04-19 12:11:11 +08:00
func ( cl * Client ) establishOutgoingConn ( t * Torrent , addr string ) ( c * connection , err error ) {
2017-08-16 15:05:05 +08:00
ctx , cancel := context . WithTimeout ( context . Background ( ) , time . Minute )
defer cancel ( )
2017-09-13 16:20:20 +08:00
obfuscatedHeaderFirst := ! cl . config . DisableEncryption && ! cl . config . PreferNoEncryption
2018-04-12 09:41:07 +08:00
c , err = cl . establishOutgoingConnEx ( t , addr , ctx , obfuscatedHeaderFirst )
2015-03-18 15:28:13 +08:00
if err != nil {
return
2018-04-12 09:41:07 +08:00
}
if c != nil {
go torrent . Add ( "initiated conn with preferred header obfuscation" , 1 )
2015-03-18 15:28:13 +08:00
return
}
2017-09-13 16:20:20 +08:00
if cl . config . ForceEncryption {
// We should have just tried with an obfuscated header. A plaintext
// header can't result in an encrypted connection, so we're done.
if ! obfuscatedHeaderFirst {
panic ( cl . config . EncryptionPolicy )
}
2015-06-08 16:16:01 +08:00
return
}
2018-04-12 09:41:07 +08:00
// Try again with encryption if we didn't earlier, or without if we did.
c , err = cl . establishOutgoingConnEx ( t , addr , ctx , ! obfuscatedHeaderFirst )
if c != nil {
go torrent . Add ( "initiated conn with fallback header obfuscation" , 1 )
2017-09-15 10:56:15 +08:00
}
2015-03-18 15:28:13 +08:00
return
}
2014-11-17 13:27:01 +08:00
2015-03-18 15:28:13 +08:00
// Called to dial out and run a connection. The addr we're given is already
// considered half-open.
2016-04-19 12:11:11 +08:00
func ( cl * Client ) outgoingConnection ( t * Torrent , addr string , ps peerSource ) {
c , err := cl . establishOutgoingConn ( t , addr )
cl . mu . Lock ( )
defer cl . mu . Unlock ( )
2015-03-18 15:28:13 +08:00
// Don't release lock between here and addConnection, unless it's for
// failure.
2016-04-19 12:11:11 +08:00
cl . noLongerHalfOpen ( t , addr )
2015-03-18 15:28:13 +08:00
if err != nil {
2016-04-19 12:11:11 +08:00
if cl . config . Debug {
2016-03-22 10:10:18 +08:00
log . Printf ( "error establishing outgoing connection: %s" , err )
}
2015-03-18 15:28:13 +08:00
return
}
if c == nil {
return
}
defer c . Close ( )
c . Discovery = ps
2018-02-02 16:07:20 +08:00
cl . runHandshookConn ( c , t , true )
2013-09-29 06:11:24 +08:00
}
2014-11-17 03:16:26 +08:00
// The port number for incoming peer connections. 0 if the client isn't
// listening.
2014-06-29 16:57:49 +08:00
func ( cl * Client ) incomingPeerPort ( ) int {
2018-04-12 09:41:07 +08:00
return cl . LocalPort ( )
2014-06-29 16:57:49 +08:00
}
2016-04-19 12:11:11 +08:00
func ( cl * Client ) initiateHandshakes ( c * connection , t * Torrent ) ( ok bool , err error ) {
2017-09-13 16:20:20 +08:00
if c . headerEncrypted {
2016-10-10 13:30:51 +08:00
var rw io . ReadWriter
2018-02-16 07:59:56 +08:00
rw , c . cryptoMethod , err = mse . InitiateHandshake (
2017-09-13 16:20:20 +08:00
struct {
io . Reader
io . Writer
} { c . r , c . w } ,
t . infoHash [ : ] ,
nil ,
2018-02-16 07:36:29 +08:00
func ( ) mse . CryptoMethod {
2017-09-13 16:20:20 +08:00
switch {
case cl . config . ForceEncryption :
return mse . CryptoMethodRC4
case cl . config . DisableEncryption :
return mse . CryptoMethodPlaintext
default :
return mse . AllSupportedCrypto
}
} ( ) ,
)
2016-10-10 13:30:51 +08:00
c . setRW ( rw )
2015-03-18 15:28:13 +08:00
if err != nil {
return
2014-09-14 01:45:38 +08:00
}
}
2016-04-19 12:11:11 +08:00
ih , ok , err := cl . connBTHandshake ( c , & t . infoHash )
2016-04-03 16:40:43 +08:00
if ih != t . infoHash {
2015-03-18 15:28:13 +08:00
ok = false
}
2014-08-28 07:45:20 +08:00
return
}
2017-04-04 16:41:08 +08:00
// Calls f with any secret keys.
func ( cl * Client ) forSkeys ( f func ( [ ] byte ) bool ) {
cl . mu . Lock ( )
defer cl . mu . Unlock ( )
for ih := range cl . torrents {
if ! f ( ih [ : ] ) {
break
}
}
}
2015-03-27 12:37:58 +08:00
// Do encryption and bittorrent handshakes as receiver.
2016-04-03 16:40:43 +08:00
func ( cl * Client ) receiveHandshakes ( c * connection ) ( t * Torrent , err error ) {
2017-09-13 16:20:20 +08:00
var rw io . ReadWriter
rw , c . headerEncrypted , c . cryptoMethod , err = handleEncryption ( c . rw ( ) , cl . forSkeys , cl . config . EncryptionPolicy )
c . setRW ( rw )
if err != nil {
if err == mse . ErrNoSecretKeyMatch {
err = nil
2015-03-18 15:28:13 +08:00
}
2017-09-13 16:20:20 +08:00
return
2014-08-28 08:06:57 +08:00
}
2017-09-13 16:20:20 +08:00
if cl . config . ForceEncryption && ! c . headerEncrypted {
2016-09-16 10:42:41 +08:00
err = errors . New ( "connection not encrypted" )
return
}
2015-03-18 15:28:13 +08:00
ih , ok , err := cl . connBTHandshake ( c , nil )
2015-02-09 21:17:59 +08:00
if err != nil {
2015-06-28 14:39:04 +08:00
err = fmt . Errorf ( "error during bt handshake: %s" , err )
2015-02-09 21:17:59 +08:00
return
}
2015-03-18 15:28:13 +08:00
if ! ok {
return
2015-03-13 03:21:13 +08:00
}
2015-03-18 15:28:13 +08:00
cl . mu . Lock ( )
t = cl . torrents [ ih ]
cl . mu . Unlock ( )
return
}
// Returns !ok if handshake failed for valid reasons.
2016-04-04 11:01:31 +08:00
func ( cl * Client ) connBTHandshake ( c * connection , ih * metainfo . Hash ) ( ret metainfo . Hash , ok bool , err error ) {
2016-10-10 13:30:51 +08:00
res , ok , err := handshake ( c . rw ( ) , ih , cl . peerID , cl . extensionBytes )
2015-03-18 15:28:13 +08:00
if err != nil || ! ok {
2015-03-13 03:21:13 +08:00
return
}
2016-04-04 11:01:31 +08:00
ret = res . Hash
2015-03-18 15:28:13 +08:00
c . PeerExtensionBytes = res . peerExtensionBytes
2018-01-06 12:50:45 +08:00
c . PeerID = res . PeerID
2015-03-18 15:28:13 +08:00
c . completedHandshake = time . Now ( )
return
}
2016-05-16 17:50:10 +08:00
func ( cl * Client ) runReceivedConn ( c * connection ) {
2017-11-08 02:14:13 +08:00
err := c . conn . SetDeadline ( time . Now ( ) . Add ( cl . config . HandshakesTimeout ) )
2014-08-21 16:12:49 +08:00
if err != nil {
2016-05-16 17:50:10 +08:00
panic ( err )
2014-08-21 16:12:49 +08:00
}
2015-03-18 15:28:13 +08:00
t , err := cl . receiveHandshakes ( c )
if err != nil {
2016-05-16 17:50:10 +08:00
if cl . config . Debug {
log . Printf ( "error receiving handshakes: %s" , err )
}
2014-08-21 16:12:49 +08:00
return
2013-09-29 14:45:17 +08:00
}
2015-03-18 15:28:13 +08:00
if t == nil {
2014-11-17 03:54:00 +08:00
return
}
2015-03-18 15:28:13 +08:00
cl . mu . Lock ( )
defer cl . mu . Unlock ( )
2017-05-10 11:04:31 +08:00
cl . runHandshookConn ( c , t , false )
2015-03-18 15:28:13 +08:00
}
2017-05-10 11:04:31 +08:00
func ( cl * Client ) runHandshookConn ( c * connection , t * Torrent , outgoing bool ) {
2018-02-02 16:07:20 +08:00
t . reconcileHandshakeStats ( c )
if c . PeerID == cl . peerID {
if outgoing {
connsToSelf . Add ( 1 )
addr := c . conn . RemoteAddr ( ) . String ( )
cl . dopplegangerAddrs [ addr ] = struct { } { }
} else {
// Because the remote address is not necessarily the same as its
// client's torrent listen address, we won't record the remote address
// as a doppleganger. Instead, the initiator can record *us* as the
// doppleganger.
}
return
}
2015-03-18 15:28:13 +08:00
c . conn . SetWriteDeadline ( time . Time { } )
2016-10-10 13:30:51 +08:00
c . r = deadlineReader { c . conn , c . r }
2015-08-02 02:06:22 +08:00
completedHandshakeConnectionFlags . Add ( c . connectionFlags ( ) , 1 )
2018-02-12 21:48:21 +08:00
if connIsIpv6 ( c . conn ) {
torrent . Add ( "completed handshake over ipv6" , 1 )
}
2017-05-10 11:04:31 +08:00
if ! t . addConnection ( c , outgoing ) {
2014-03-16 23:30:10 +08:00
return
}
2016-05-11 19:44:55 +08:00
defer t . dropConnection ( c )
2016-05-07 16:56:44 +08:00
go c . writer ( time . Minute )
2015-03-18 15:28:13 +08:00
cl . sendInitialMessages ( c , t )
2016-09-11 12:32:56 +08:00
err := c . mainReadLoop ( )
2016-05-16 17:50:10 +08:00
if err != nil && cl . config . Debug {
2018-01-25 10:10:52 +08:00
log . Printf ( "error during connection main read loop: %s" , err )
2015-03-18 15:28:13 +08:00
}
}
2016-04-19 12:11:11 +08:00
func ( cl * Client ) sendInitialMessages ( conn * connection , torrent * Torrent ) {
2018-02-05 14:41:53 +08:00
func ( ) {
if conn . fastEnabled ( ) {
if torrent . haveAllPieces ( ) {
conn . Post ( pp . Message { Type : pp . HaveAll } )
conn . sentHaves . AddRange ( 0 , conn . t . NumPieces ( ) )
return
} else if ! torrent . haveAnyPieces ( ) {
conn . Post ( pp . Message { Type : pp . HaveNone } )
conn . sentHaves . Clear ( )
return
}
}
conn . PostBitfield ( )
} ( )
2016-04-19 12:11:11 +08:00
if conn . PeerExtensionBytes . SupportsExtended ( ) && cl . extensionBytes . SupportsExtended ( ) {
2014-06-26 22:57:07 +08:00
conn . Post ( pp . Message {
Type : pp . Extended ,
ExtendedID : pp . HandshakeExtendedID ,
ExtendedPayload : func ( ) [ ] byte {
2014-06-28 17:38:31 +08:00
d := map [ string ] interface { } {
2015-03-25 12:49:27 +08:00
"m" : func ( ) ( ret map [ string ] int ) {
ret = make ( map [ string ] int , 2 )
ret [ "ut_metadata" ] = metadataExtendedId
2016-04-19 12:11:11 +08:00
if ! cl . config . DisablePEX {
2015-03-25 12:49:27 +08:00
ret [ "ut_pex" ] = pexExtendedId
}
return
} ( ) ,
2017-11-08 02:14:13 +08:00
"v" : cl . config . ExtendedHandshakeClientVersion ,
2014-08-25 20:12:50 +08:00
// No upload queue is implemented yet.
2015-05-15 06:39:53 +08:00
"reqq" : 64 ,
2015-04-20 15:30:22 +08:00
}
2016-04-19 12:11:11 +08:00
if ! cl . config . DisableEncryption {
2015-04-20 15:30:22 +08:00
d [ "e" ] = 1
2014-06-28 17:38:31 +08:00
}
if torrent . metadataSizeKnown ( ) {
d [ "metadata_size" ] = torrent . metadataSize ( )
}
2016-04-19 12:11:11 +08:00
if p := cl . incomingPeerPort ( ) ; p != 0 {
2014-06-29 16:57:49 +08:00
d [ "p" ] = p
}
2015-03-13 03:21:13 +08:00
yourip , err := addrCompactIP ( conn . remoteAddr ( ) )
2014-07-22 19:45:12 +08:00
if err != nil {
log . Printf ( "error calculating yourip field value in extension handshake: %s" , err )
} else {
d [ "yourip" ] = yourip
}
2014-07-24 11:43:45 +08:00
// log.Printf("sending %v", d)
2014-06-28 17:38:31 +08:00
b , err := bencode . Marshal ( d )
2014-06-26 22:57:07 +08:00
if err != nil {
panic ( err )
}
return b
} ( ) ,
} )
}
2018-04-12 09:41:07 +08:00
if conn . PeerExtensionBytes . SupportsDHT ( ) && cl . extensionBytes . SupportsDHT ( ) && cl . haveDhtServer ( ) {
2014-08-25 20:12:16 +08:00
conn . Post ( pp . Message {
Type : pp . Port ,
2018-04-12 09:41:07 +08:00
Port : cl . dhtPort ( ) ,
2014-08-25 20:12:16 +08:00
} )
}
2013-09-30 19:51:08 +08:00
}
2018-04-12 09:41:07 +08:00
func ( cl * Client ) dhtPort ( ) ( ret uint16 ) {
cl . eachDhtServer ( func ( s * dht . Server ) {
ret = uint16 ( missinggo . AddrPort ( s . Addr ( ) ) )
} )
return
}
func ( cl * Client ) haveDhtServer ( ) ( ret bool ) {
cl . eachDhtServer ( func ( _ * dht . Server ) {
ret = true
} )
return
}
2014-08-21 16:12:49 +08:00
// Process incoming ut_metadata message.
2016-07-23 22:34:40 +08:00
func ( cl * Client ) gotMetadataExtensionMsg ( payload [ ] byte , t * Torrent , c * connection ) error {
2014-06-28 17:38:31 +08:00
var d map [ string ] int
2016-07-23 22:34:40 +08:00
err := bencode . Unmarshal ( payload , & d )
2018-02-12 21:21:28 +08:00
if _ , ok := err . ( bencode . ErrUnusedTrailingBytes ) ; ok {
} else if err != nil {
return fmt . Errorf ( "error unmarshalling bencode: %s" , err )
2014-06-28 17:38:31 +08:00
}
msgType , ok := d [ "msg_type" ]
if ! ok {
2016-07-23 22:34:40 +08:00
return errors . New ( "missing msg_type field" )
2014-06-28 17:38:31 +08:00
}
piece := d [ "piece" ]
switch msgType {
case pp . DataMetadataExtensionMsgType :
2016-05-03 12:59:54 +08:00
if ! c . requestedMetadataPiece ( piece ) {
2016-07-23 22:34:40 +08:00
return fmt . Errorf ( "got unexpected piece %d" , piece )
2014-06-28 17:38:31 +08:00
}
2016-05-03 12:59:54 +08:00
c . metadataRequests [ piece ] = false
2014-11-19 11:57:27 +08:00
begin := len ( payload ) - metadataPieceSize ( d [ "total_size" ] , piece )
if begin < 0 || begin >= len ( payload ) {
2016-07-23 22:34:40 +08:00
return fmt . Errorf ( "data has bad offset in payload: %d" , begin )
2015-03-27 12:36:59 +08:00
}
2015-03-20 07:52:01 +08:00
t . saveMetadataPiece ( piece , payload [ begin : ] )
2018-02-02 16:04:56 +08:00
c . stats . ChunksReadUseful ++
2018-02-03 08:53:11 +08:00
c . t . stats . ChunksReadUseful ++
2014-12-01 17:32:17 +08:00
c . lastUsefulChunkReceived = time . Now ( )
2016-07-23 22:34:40 +08:00
return t . maybeCompleteMetadata ( )
2014-06-28 17:38:31 +08:00
case pp . RequestMetadataExtensionMsgType :
2015-02-25 12:42:47 +08:00
if ! t . haveMetadataPiece ( piece ) {
c . Post ( t . newMetadataExtensionMessage ( c , pp . RejectMetadataExtensionMsgType , d [ "piece" ] , nil ) )
2016-07-23 22:34:40 +08:00
return nil
2014-06-28 17:38:31 +08:00
}
2014-08-21 16:12:49 +08:00
start := ( 1 << 14 ) * piece
2016-04-03 14:50:53 +08:00
c . Post ( t . newMetadataExtensionMessage ( c , pp . DataMetadataExtensionMsgType , piece , t . metadataBytes [ start : start + t . metadataPieceSize ( piece ) ] ) )
2016-07-23 22:34:40 +08:00
return nil
2014-06-28 17:38:31 +08:00
case pp . RejectMetadataExtensionMsgType :
2016-07-23 22:34:40 +08:00
return nil
2014-06-28 17:38:31 +08:00
default :
2016-07-23 22:34:40 +08:00
return errors . New ( "unknown msg_type value" )
2014-06-28 17:38:31 +08:00
}
}
2016-05-24 00:09:47 +08:00
func ( cl * Client ) badPeerIPPort ( ip net . IP , port int ) bool {
if port == 0 {
return true
}
if cl . dopplegangerAddr ( net . JoinHostPort ( ip . String ( ) , strconv . FormatInt ( int64 ( port ) , 10 ) ) ) {
return true
}
if _ , ok := cl . ipBlockRange ( ip ) ; ok {
return true
}
if _ , ok := cl . badPeerIPs [ ip . String ( ) ] ; ok {
return true
}
return false
2013-09-29 06:11:24 +08:00
}
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// Return a Torrent ready for insertion into a Client.
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func ( cl * Client ) newTorrent ( ih metainfo . Hash , specStorage storage . ClientImpl ) ( t * Torrent ) {
// use provided storage, if provided
storageClient := cl . defaultStorage
if specStorage != nil {
storageClient = storage . NewClient ( specStorage )
}
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t = & Torrent {
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cl : cl ,
infoHash : ih ,
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peers : prioritizedPeers {
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om : btree . New ( 32 ) ,
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getPrio : func ( p Peer ) peerPriority {
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return bep40PriorityIgnoreError ( cl . publicAddr ( p . IP ) , p . addr ( ) )
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} ,
} ,
conns : make ( map [ * connection ] struct { } , 2 * cl . config . EstablishedConnsPerTorrent ) ,
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halfOpen : make ( map [ string ] Peer ) ,
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pieceStateChanges : pubsub . NewPubSub ( ) ,
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storageOpener : storageClient ,
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maxEstablishedConns : cl . config . EstablishedConnsPerTorrent ,
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networkingEnabled : true ,
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requestStrategy : 2 ,
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metadataChanged : sync . Cond {
L : & cl . mu ,
} ,
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}
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t . logger = cl . logger . Clone ( ) . AddValue ( t )
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t . setChunkSize ( defaultChunkSize )
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return
}
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// A file-like handle to some torrent data resource.
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type Handle interface {
io . Reader
io . Seeker
io . Closer
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io . ReaderAt
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}
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func ( cl * Client ) AddTorrentInfoHash ( infoHash metainfo . Hash ) ( t * Torrent , new bool ) {
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return cl . AddTorrentInfoHashWithStorage ( infoHash , nil )
}
// Adds a torrent by InfoHash with a custom Storage implementation.
// If the torrent already exists then this Storage is ignored and the
// existing torrent returned with `new` set to `false`
func ( cl * Client ) AddTorrentInfoHashWithStorage ( infoHash metainfo . Hash , specStorage storage . ClientImpl ) ( t * Torrent , new bool ) {
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cl . mu . Lock ( )
defer cl . mu . Unlock ( )
t , ok := cl . torrents [ infoHash ]
if ok {
return
}
new = true
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t = cl . newTorrent ( infoHash , specStorage )
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cl . eachDhtServer ( func ( s * dht . Server ) {
go t . dhtAnnouncer ( s )
} )
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cl . torrents [ infoHash ] = t
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t . updateWantPeersEvent ( )
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// Tickle Client.waitAccept, new torrent may want conns.
cl . event . Broadcast ( )
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return
}
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// Add or merge a torrent spec. If the torrent is already present, the
// trackers will be merged with the existing ones. If the Info isn't yet
// known, it will be set. The display name is replaced if the new spec
// provides one. Returns new if the torrent wasn't already in the client.
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// Note that any `Storage` defined on the spec will be ignored if the
// torrent is already present (i.e. `new` return value is `true`)
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func ( cl * Client ) AddTorrentSpec ( spec * TorrentSpec ) ( t * Torrent , new bool , err error ) {
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t , new = cl . AddTorrentInfoHashWithStorage ( spec . InfoHash , spec . Storage )
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if spec . DisplayName != "" {
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t . SetDisplayName ( spec . DisplayName )
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}
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if spec . InfoBytes != nil {
err = t . SetInfoBytes ( spec . InfoBytes )
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if err != nil {
return
}
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}
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cl . mu . Lock ( )
defer cl . mu . Unlock ( )
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if spec . ChunkSize != 0 {
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t . setChunkSize ( pp . Integer ( spec . ChunkSize ) )
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}
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t . addTrackers ( spec . Trackers )
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t . maybeNewConns ( )
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return
}
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func ( cl * Client ) dropTorrent ( infoHash metainfo . Hash ) ( err error ) {
t , ok := cl . torrents [ infoHash ]
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if ! ok {
err = fmt . Errorf ( "no such torrent" )
return
}
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err = t . close ( )
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if err != nil {
panic ( err )
}
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delete ( cl . torrents , infoHash )
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return
}
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func ( cl * Client ) allTorrentsCompleted ( ) bool {
for _ , t := range cl . torrents {
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if ! t . haveInfo ( ) {
return false
}
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if ! t . haveAllPieces ( ) {
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return false
}
}
return true
}
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// Returns true when all torrents are completely downloaded and false if the
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// client is stopped before that.
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func ( cl * Client ) WaitAll ( ) bool {
cl . mu . Lock ( )
defer cl . mu . Unlock ( )
for ! cl . allTorrentsCompleted ( ) {
if cl . closed . IsSet ( ) {
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return false
}
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cl . event . Wait ( )
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}
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return true
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}
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// Returns handles to all the torrents loaded in the Client.
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func ( cl * Client ) Torrents ( ) [ ] * Torrent {
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cl . mu . Lock ( )
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defer cl . mu . Unlock ( )
return cl . torrentsAsSlice ( )
}
func ( cl * Client ) torrentsAsSlice ( ) ( ret [ ] * Torrent ) {
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for _ , t := range cl . torrents {
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ret = append ( ret , t )
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}
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return
}
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func ( cl * Client ) AddMagnet ( uri string ) ( T * Torrent , err error ) {
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spec , err := TorrentSpecFromMagnetURI ( uri )
if err != nil {
return
}
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T , _ , err = cl . AddTorrentSpec ( spec )
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return
}
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func ( cl * Client ) AddTorrent ( mi * metainfo . MetaInfo ) ( T * Torrent , err error ) {
T , _ , err = cl . AddTorrentSpec ( TorrentSpecFromMetaInfo ( mi ) )
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var ss [ ] string
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slices . MakeInto ( & ss , mi . Nodes )
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cl . AddDHTNodes ( ss )
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return
}
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func ( cl * Client ) AddTorrentFromFile ( filename string ) ( T * Torrent , err error ) {
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mi , err := metainfo . LoadFromFile ( filename )
if err != nil {
return
}
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return cl . AddTorrent ( mi )
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}
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func ( cl * Client ) DhtServers ( ) [ ] * dht . Server {
return cl . dhtServers
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}
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func ( cl * Client ) AddDHTNodes ( nodes [ ] string ) {
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for _ , n := range nodes {
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hmp := missinggo . SplitHostMaybePort ( n )
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ip := net . ParseIP ( hmp . Host )
if ip == nil {
log . Printf ( "won't add DHT node with bad IP: %q" , hmp . Host )
continue
}
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ni := krpc . NodeInfo {
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Addr : krpc . NodeAddr {
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IP : ip ,
Port : hmp . Port ,
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} ,
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}
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cl . eachDhtServer ( func ( s * dht . Server ) {
s . AddNode ( ni )
} )
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}
}
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func ( cl * Client ) banPeerIP ( ip net . IP ) {
if cl . badPeerIPs == nil {
cl . badPeerIPs = make ( map [ string ] struct { } )
}
cl . badPeerIPs [ ip . String ( ) ] = struct { } { }
}
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func ( cl * Client ) newConnection ( nc net . Conn ) ( c * connection ) {
c = & connection {
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conn : nc ,
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Choked : true ,
PeerChoked : true ,
PeerMaxRequests : 250 ,
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writeBuffer : new ( bytes . Buffer ) ,
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}
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c . writerCond . L = & cl . mu
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c . setRW ( connStatsReadWriter { nc , & cl . mu , c } )
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c . r = & rateLimitedReader {
l : cl . downloadLimit ,
r : c . r ,
}
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return
}
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func ( cl * Client ) onDHTAnnouncePeer ( ih metainfo . Hash , p dht . Peer ) {
cl . mu . Lock ( )
defer cl . mu . Unlock ( )
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t := cl . torrent ( ih )
if t == nil {
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return
}
t . addPeers ( [ ] Peer { {
IP : p . IP ,
Port : p . Port ,
Source : peerSourceDHTAnnouncePeer ,
} } )
}
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func firstNotNil ( ips ... net . IP ) net . IP {
for _ , ip := range ips {
if ip != nil {
return ip
}
}
return nil
}
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func ( cl * Client ) eachListener ( f func ( socket ) bool ) {
for _ , s := range cl . conns {
if ! f ( s ) {
break
}
}
}
func ( cl * Client ) findListener ( f func ( net . Listener ) bool ) ( ret net . Listener ) {
cl . eachListener ( func ( l socket ) bool {
ret = l
return ! f ( l )
} )
return
}
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func ( cl * Client ) publicIp ( peer net . IP ) net . IP {
// TODO: Use BEP 10 to determine how peers are seeing us.
if peer . To4 ( ) != nil {
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return firstNotNil (
cl . config . PublicIp4 ,
cl . findListenerIp ( func ( ip net . IP ) bool { return ip . To4 ( ) != nil } ) ,
)
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} else {
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return firstNotNil (
cl . config . PublicIp6 ,
cl . findListenerIp ( func ( ip net . IP ) bool { return ip . To4 ( ) == nil } ) ,
)
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}
}
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func ( cl * Client ) findListenerIp ( f func ( net . IP ) bool ) net . IP {
return missinggo . AddrIP ( cl . findListener ( func ( l net . Listener ) bool {
return f ( missinggo . AddrIP ( l . Addr ( ) ) )
} ) . Addr ( ) )
}
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// Our IP as a peer should see it.
func ( cl * Client ) publicAddr ( peer net . IP ) ipPort {
return ipPort { cl . publicIp ( peer ) , uint16 ( cl . incomingPeerPort ( ) ) }
}
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func ( cl * Client ) ListenAddrs ( ) ( ret [ ] net . Addr ) {
cl . eachListener ( func ( l socket ) bool {
ret = append ( ret , l . Addr ( ) )
return true
} )
return
}