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package yggdrasil
// This sends packets to peers using TCP as a transport
// It's generally better tested than the UDP implementation
// Using it regularly is insane, but I find TCP easier to test/debug with it
// Updating and optimizing the UDP version is a higher priority
// TODO:
// Something needs to make sure we're getting *valid* packets
// Could be used to DoS (connect, give someone else's keys, spew garbage)
// I guess the "peer" part should watch for link packets, disconnect?
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// TCP connections start with a metadata exchange.
// It involves exchanging version numbers and crypto keys
// See version.go for version metadata format
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import (
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"context"
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"fmt"
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"math/rand"
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"net"
"sync"
"time"
"golang.org/x/net/proxy"
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"github.com/yggdrasil-network/yggdrasil-go/src/crypto"
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"github.com/yggdrasil-network/yggdrasil-go/src/util"
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)
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const default_timeout = 6 * time . Second
const tcp_ping_interval = ( default_timeout * 2 / 3 )
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// The TCP listener and information about active TCP connections, to avoid duplication.
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type tcp struct {
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link * link
reconfigure chan chan error
mutex sync . Mutex // Protecting the below
listeners map [ string ] net . Listener
listenerstops map [ string ] chan bool
calls map [ string ] struct { }
conns map [ tcpInfo ] ( chan struct { } )
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}
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// This is used as the key to a map that tracks existing connections, to prevent multiple connections to the same keys and local/remote address pair from occuring.
// Different address combinations are allowed, so multi-homing is still technically possible (but not necessarily advisable).
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type tcpInfo struct {
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box crypto . BoxPubKey
sig crypto . SigPubKey
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localAddr string
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remoteAddr string
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}
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// Wrapper function to set additional options for specific connection types.
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func ( t * tcp ) setExtraOptions ( c net . Conn ) {
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switch sock := c . ( type ) {
case * net . TCPConn :
sock . SetNoDelay ( true )
// TODO something for socks5
default :
}
}
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// Returns the address of the listener.
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func ( t * tcp ) getAddr ( ) * net . TCPAddr {
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// TODO: Fix this, because this will currently only give a single address
// to multicast.go, which obviously is not great, but right now multicast.go
// doesn't have the ability to send more than one address in a packet either
t . mutex . Lock ( )
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for _ , listener := range t . listeners {
return listener . Addr ( ) . ( * net . TCPAddr )
}
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t . mutex . Unlock ( )
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return nil
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}
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// Attempts to initiate a connection to the provided address.
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func ( t * tcp ) connect ( addr string , intf string ) {
t . call ( addr , nil , intf )
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}
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// Attempst to initiate a connection to the provided address, viathe provided socks proxy address.
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func ( t * tcp ) connectSOCKS ( socksaddr , peeraddr string ) {
t . call ( peeraddr , & socksaddr , "" )
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}
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// Initializes the struct.
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func ( t * tcp ) init ( l * link ) error {
t . link = l
t . reconfigure = make ( chan chan error , 1 )
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t . mutex . Lock ( )
t . calls = make ( map [ string ] struct { } )
t . conns = make ( map [ tcpInfo ] ( chan struct { } ) )
t . listeners = make ( map [ string ] net . Listener )
t . listenerstops = make ( map [ string ] chan bool )
t . mutex . Unlock ( )
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go func ( ) {
for {
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e := <- t . reconfigure
t . link . core . configMutex . RLock ( )
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added := util . Difference ( t . link . core . config . Listen , t . link . core . configOld . Listen )
deleted := util . Difference ( t . link . core . configOld . Listen , t . link . core . config . Listen )
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t . link . core . configMutex . RUnlock ( )
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if len ( added ) > 0 || len ( deleted ) > 0 {
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for _ , add := range added {
if add [ : 6 ] != "tcp://" {
continue
}
if err := t . listen ( add [ 6 : ] ) ; err != nil {
e <- err
continue
}
}
for _ , delete := range deleted {
t . link . core . log . Warnln ( "Removing listener" , delete , "not currently implemented" )
/ * t . mutex . Lock ( )
if listener , ok := t . listeners [ delete ] ; ok {
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listener . Close ( )
}
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if listener , ok := t . listenerstops [ delete ] ; ok {
listener <- true
}
t . mutex . Unlock ( ) * /
}
e <- nil
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} else {
e <- nil
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}
}
} ( )
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t . link . core . configMutex . RLock ( )
defer t . link . core . configMutex . RUnlock ( )
for _ , listenaddr := range t . link . core . config . Listen {
if listenaddr [ : 6 ] != "tcp://" {
continue
}
if err := t . listen ( listenaddr [ 6 : ] ) ; err != nil {
return err
}
}
return nil
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}
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func ( t * tcp ) listen ( listenaddr string ) error {
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var err error
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ctx := context . Background ( )
lc := net . ListenConfig {
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Control : t . tcpContext ,
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}
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listener , err := lc . Listen ( ctx , "tcp" , listenaddr )
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if err == nil {
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t . mutex . Lock ( )
t . listeners [ listenaddr ] = listener
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t . listenerstops [ listenaddr ] = make ( chan bool , 1 )
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t . mutex . Unlock ( )
go t . listener ( listenaddr )
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return nil
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}
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return err
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}
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// Runs the listener, which spawns off goroutines for incoming connections.
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func ( t * tcp ) listener ( listenaddr string ) {
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t . mutex . Lock ( )
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listener , ok := t . listeners [ listenaddr ]
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listenerstop , ok2 := t . listenerstops [ listenaddr ]
t . mutex . Unlock ( )
if ! ok || ! ok2 {
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t . link . core . log . Errorln ( "Tried to start TCP listener for" , listenaddr , "which doesn't exist" )
return
}
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reallistenaddr := listener . Addr ( ) . String ( )
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defer listener . Close ( )
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t . link . core . log . Infoln ( "Listening for TCP on:" , reallistenaddr )
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for {
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var sock net . Conn
var err error
accepted := make ( chan bool )
go func ( ) {
sock , err = listener . Accept ( )
accepted <- true
} ( )
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select {
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case <- accepted :
if err != nil {
t . link . core . log . Errorln ( "Failed to accept connection:" , err )
return
}
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case <- listenerstop :
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t . link . core . log . Errorln ( "Stopping TCP listener on:" , reallistenaddr )
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return
default :
if err != nil {
panic ( err )
}
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go t . handler ( sock , true )
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}
}
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}
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// Checks if we already have a connection to this node
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func ( t * tcp ) isAlreadyConnected ( info tcpInfo ) bool {
t . mutex . Lock ( )
defer t . mutex . Unlock ( )
_ , isIn := t . conns [ info ]
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return isIn
}
// Checks if we already are calling this address
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func ( t * tcp ) isAlreadyCalling ( saddr string ) bool {
t . mutex . Lock ( )
defer t . mutex . Unlock ( )
_ , isIn := t . calls [ saddr ]
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return isIn
}
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// Checks if a connection already exists.
// If not, it adds it to the list of active outgoing calls (to block future attempts) and dials the address.
// If the dial is successful, it launches the handler.
// When finished, it removes the outgoing call, so reconnection attempts can be made later.
// This all happens in a separate goroutine that it spawns.
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func ( t * tcp ) call ( saddr string , socksaddr * string , sintf string ) {
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go func ( ) {
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callname := saddr
if sintf != "" {
callname = fmt . Sprintf ( "%s/%s" , saddr , sintf )
}
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if t . isAlreadyCalling ( callname ) {
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return
}
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t . mutex . Lock ( )
t . calls [ callname ] = struct { } { }
t . mutex . Unlock ( )
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defer func ( ) {
// Block new calls for a little while, to mitigate livelock scenarios
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time . Sleep ( default_timeout )
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time . Sleep ( time . Duration ( rand . Intn ( 1000 ) ) * time . Millisecond )
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t . mutex . Lock ( )
delete ( t . calls , callname )
t . mutex . Unlock ( )
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} ( )
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var conn net . Conn
var err error
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if socksaddr != nil {
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if sintf != "" {
return
}
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var dialer proxy . Dialer
dialer , err = proxy . SOCKS5 ( "tcp" , * socksaddr , nil , proxy . Direct )
if err != nil {
return
}
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conn , err = dialer . Dial ( "tcp" , saddr )
if err != nil {
return
}
conn = & wrappedConn {
c : conn ,
raddr : & wrappedAddr {
network : "tcp" ,
addr : saddr ,
} ,
}
} else {
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dialer := net . Dialer {
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Control : t . tcpContext ,
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}
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if sintf != "" {
ief , err := net . InterfaceByName ( sintf )
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if err != nil {
return
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}
if ief . Flags & net . FlagUp == 0 {
return
}
addrs , err := ief . Addrs ( )
if err == nil {
dst , err := net . ResolveTCPAddr ( "tcp" , saddr )
if err != nil {
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return
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}
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for addrindex , addr := range addrs {
src , _ , err := net . ParseCIDR ( addr . String ( ) )
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if err != nil {
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continue
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}
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if src . Equal ( dst . IP ) {
continue
}
if ! src . IsGlobalUnicast ( ) && ! src . IsLinkLocalUnicast ( ) {
continue
}
bothglobal := src . IsGlobalUnicast ( ) == dst . IP . IsGlobalUnicast ( )
bothlinklocal := src . IsLinkLocalUnicast ( ) == dst . IP . IsLinkLocalUnicast ( )
if ! bothglobal && ! bothlinklocal {
continue
}
if ( src . To4 ( ) != nil ) != ( dst . IP . To4 ( ) != nil ) {
continue
}
if bothglobal || bothlinklocal || addrindex == len ( addrs ) - 1 {
dialer . LocalAddr = & net . TCPAddr {
IP : src ,
Port : 0 ,
Zone : sintf ,
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}
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break
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}
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}
if dialer . LocalAddr == nil {
return
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}
}
}
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conn , err = dialer . Dial ( "tcp" , saddr )
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if err != nil {
return
}
}
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t . handler ( conn , false )
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} ( )
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}
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func ( t * tcp ) handler ( sock net . Conn , incoming bool ) {
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defer sock . Close ( )
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t . setExtraOptions ( sock )
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stream := stream { }
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stream . init ( sock )
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local , _ , _ := net . SplitHostPort ( sock . LocalAddr ( ) . String ( ) )
remote , _ , _ := net . SplitHostPort ( sock . RemoteAddr ( ) . String ( ) )
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remotelinklocal := net . ParseIP ( remote ) . IsLinkLocalUnicast ( )
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name := "tcp://" + sock . RemoteAddr ( ) . String ( )
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link , err := t . link . core . link . create ( & stream , name , "tcp" , local , remote , incoming , remotelinklocal )
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if err != nil {
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t . link . core . log . Println ( err )
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panic ( err )
}
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t . link . core . log . Debugln ( "DEBUG: starting handler for" , name )
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err = link . handler ( )
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t . link . core . log . Debugln ( "DEBUG: stopped handler for" , name , err )
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}