mirror of
https://github.com/yggdrasil-network/yggdrasil-go.git
synced 2024-12-23 16:37:31 +00:00
Tweak link state locking, add comments, listener priority, other fixes
This commit is contained in:
parent
2565cbf11b
commit
333561f4e1
@ -9,7 +9,6 @@ import (
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"time"
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"github.com/Arceliar/ironwood/network"
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"github.com/Arceliar/phony"
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"github.com/yggdrasil-network/yggdrasil-go/src/address"
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)
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@ -76,19 +75,19 @@ func (c *Core) GetPeers() []PeerInfo {
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for info, state := range c.links._links {
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var peerinfo PeerInfo
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var conn net.Conn
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phony.Block(state, func() {
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peerinfo.URI = info.uri
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peerinfo.LastError = state._err
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peerinfo.LastErrorTime = state._errtime
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if c := state._conn; c != nil {
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conn = c
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peerinfo.Up = true
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peerinfo.Inbound = info.linkType == linkTypeIncoming
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peerinfo.RXBytes = c.rx
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peerinfo.TXBytes = c.tx
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peerinfo.Uptime = time.Since(c.up)
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}
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})
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state.RLock()
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peerinfo.URI = info.uri
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peerinfo.LastError = state._err
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peerinfo.LastErrorTime = state._errtime
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if c := state._conn; c != nil {
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conn = c
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peerinfo.Up = true
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peerinfo.Inbound = state.linkType == linkTypeIncoming
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peerinfo.RXBytes = c.rx
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peerinfo.TXBytes = c.tx
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peerinfo.Uptime = time.Since(c.up)
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}
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state.RUnlock()
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if p, ok := conns[conn]; ok {
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peerinfo.Key = p.Key
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peerinfo.Root = p.Root
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173
src/core/link.go
173
src/core/link.go
@ -46,23 +46,19 @@ type linkProtocol interface {
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// linkInfo is used as a map key
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type linkInfo struct {
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uri string // Peering URI in complete form
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sintf string // Peering source interface (i.e. from InterfacePeers)
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linkType linkType // Type of link, i.e. outbound/inbound, persistent/ephemeral
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uri string // Peering URI in complete form
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sintf string // Peering source interface (i.e. from InterfacePeers)
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}
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// link tracks the state of a connection, either persistent or non-persistent
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type link struct {
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phony.Inbox
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ctx context.Context //
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cancel context.CancelFunc //
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kick chan struct{} // Attempt to reconnect now, if backing off
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info linkInfo //
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linkProto string // Protocol carrier of link, e.g. TCP, AWDL
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_conn *linkConn // Connected link, if any, nil if not connected
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_err error // Last error on the connection, if any
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_errtime time.Time // Last time an error occured
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kick chan struct{} // Attempt to reconnect now, if backing off
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linkType linkType // Type of link, i.e. outbound/inbound, persistent/ephemeral
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linkProto string // Protocol carrier of link, e.g. TCP, AWDL
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sync.RWMutex // Protects the below
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_conn *linkConn // Connected link, if any, nil if not connected
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_err error // Last error on the connection, if any
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_errtime time.Time // Last time an error occured
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}
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type linkOptions struct {
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@ -149,10 +145,14 @@ func (l *links) add(u *url.URL, sintf string, linkType linkType) error {
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// have an open peering to this peer.
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lu := urlForLinkInfo(*u)
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info := linkInfo{
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uri: lu.String(),
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sintf: sintf,
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linkType: linkType,
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uri: lu.String(),
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sintf: sintf,
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}
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// If we think we're already connected to this peer, load up
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// the existing peer state. Try to kick the peer if possible,
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// which will cause an immediate connection attempt if it is
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// backing off for some reason.
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l.RLock()
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state, ok := l._links[info]
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l.RUnlock()
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@ -167,12 +167,10 @@ func (l *links) add(u *url.URL, sintf string, linkType linkType) error {
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// Create the link entry. This will contain the connection
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// in progress (if any), any error details and a context that
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// lets the link be cancelled later.
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ctx, cancel := context.WithCancel(l.core.ctx)
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state = &link{
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info: info,
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linkType: linkType,
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linkProto: strings.ToUpper(u.Scheme),
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ctx: ctx,
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cancel: cancel,
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kick: make(chan struct{}),
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}
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// Collect together the link options, these are global options
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@ -198,8 +196,7 @@ func (l *links) add(u *url.URL, sintf string, linkType linkType) error {
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options.priority = uint8(pi)
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}
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// Store the state of the link, try to connect and then run
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// the handler.
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// Store the state of the link so that it can be queried later.
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l.Lock()
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l._links[info] = state
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l.Unlock()
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@ -223,7 +220,7 @@ func (l *links) add(u *url.URL, sintf string, linkType linkType) error {
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return true
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case <-state.kick:
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return true
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case <-ctx.Done():
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case <-l.core.ctx.Done():
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return false
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}
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}
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@ -238,44 +235,75 @@ func (l *links) add(u *url.URL, sintf string, linkType linkType) error {
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defer l.Unlock()
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delete(l._links, info)
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}()
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// This loop will run each and every time we want to attempt
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// a connection to this peer.
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for {
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conn, err := l.connect(u, info, options)
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if err != nil {
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if linkType == linkTypePersistent {
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phony.Block(state, func() {
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state._err = err
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state._errtime = time.Now()
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})
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// If the link is a persistent configured peering,
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// store information about the connection error so
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// that we can report it through the admin socket.
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state.Lock()
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state._conn = nil
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state._err = err
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state._errtime = time.Now()
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state.Unlock()
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// Back off for a bit. If true is returned here, we
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// can continue onto the next loop iteration to try
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// the next connection.
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if backoffNow() {
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continue
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} else {
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return
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}
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} else {
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// Ephemeral and incoming connections don't remain
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// after a connection failure, so exit out of the
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// loop and clean up the link entry.
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break
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}
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}
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// The linkConn wrapper allows us to track the number of
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// bytes written to and read from this connection without
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// the help of ironwood.
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lc := &linkConn{
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Conn: conn,
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up: time.Now(),
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}
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phony.Block(state, func() {
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state._conn = lc
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state._err = nil
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state._errtime = time.Time{}
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})
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if err = l.handler(&info, options, lc); err != nil && err != io.EOF {
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// Update the link state with our newly wrapped connection.
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// Clear the error state.
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state.Lock()
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state._conn = lc
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state._err = nil
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state._errtime = time.Time{}
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state.Unlock()
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// Give the connection to the handler. The handler will block
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// for the lifetime of the connection.
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if err = l.handler(linkType, options, lc); err != nil && err != io.EOF {
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l.core.log.Debugf("Link %s error: %s\n", info.uri, err)
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} else {
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backoff = 0
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}
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_ = conn.Close()
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phony.Block(state, func() {
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state._conn = nil
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if state._err = err; state._err != nil {
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state._errtime = time.Now()
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}
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})
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// The handler has stopped running so the connection is dead,
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// try to close the underlying socket just in case and then
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// update the link state.
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_ = lc.Close()
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state.Lock()
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state._conn = nil
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if state._err = err; state._err != nil {
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state._errtime = time.Now()
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}
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state.Unlock()
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// If the link is persistently configured, back off if needed
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// and then try reconnecting. Otherwise, exit out.
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if linkType == linkTypePersistent {
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if backoffNow() {
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continue
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@ -314,6 +342,16 @@ func (l *links) listen(u *url.URL, sintf string) (*Listener, error) {
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ctx: ctx,
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Cancel: cancel,
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}
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var options linkOptions
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if p := u.Query().Get("priority"); p != "" {
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pi, err := strconv.ParseUint(p, 10, 8)
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if err != nil {
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return nil, ErrLinkPriorityInvalid
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}
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options.priority = uint8(pi)
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}
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go func() {
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l.core.log.Printf("%s listener started on %s", strings.ToUpper(u.Scheme), listener.Addr())
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defer l.core.log.Printf("%s listener stopped on %s", strings.ToUpper(u.Scheme), listener.Addr())
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@ -324,41 +362,68 @@ func (l *links) listen(u *url.URL, sintf string) (*Listener, error) {
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}
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go func(conn net.Conn) {
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defer conn.Close()
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// In order to populate a somewhat sane looking connection
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// URI in the admin socket, we need to replace the host in
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// the listener URL with the remote address.
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pu := *u
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pu.Host = conn.RemoteAddr().String()
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lu := urlForLinkInfo(pu)
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info := linkInfo{
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uri: lu.String(),
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sintf: sintf,
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linkType: linkTypeEphemeral, // TODO: should be incoming
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uri: lu.String(),
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sintf: sintf,
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}
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// If this node is already connected to us, just drop the
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// connection. This prevents duplicate peerings.
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if l.isConnectedTo(info) {
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return
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}
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// If there's an existing link state for this link, get it.
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// Otherwise just create a new one.
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l.RLock()
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state, ok := l._links[info]
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l.RUnlock()
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if !ok || state == nil {
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state = &link{
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info: info,
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linkType: linkTypeIncoming,
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linkProto: strings.ToUpper(u.Scheme),
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kick: make(chan struct{}),
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}
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}
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// The linkConn wrapper allows us to track the number of
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// bytes written to and read from this connection without
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// the help of ironwood.
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lc := &linkConn{
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Conn: conn,
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up: time.Now(),
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}
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var options linkOptions
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phony.Block(state, func() {
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state._conn = lc
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state._err = nil
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state.linkProto = strings.ToUpper(u.Scheme)
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})
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// Update the link state with our newly wrapped connection.
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// Clear the error state.
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state.Lock()
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state._conn = lc
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state._err = nil
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state._errtime = time.Time{}
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state.Unlock()
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// Store the state of the link so that it can be queried later.
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l.Lock()
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l._links[info] = state
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l.Unlock()
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if err = l.handler(&info, options, lc); err != nil && err != io.EOF {
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// Give the connection to the handler. The handler will block
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// for the lifetime of the connection.
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if err = l.handler(linkTypeIncoming, options, lc); err != nil && err != io.EOF {
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l.core.log.Debugf("Link %s error: %s\n", u.Host, err)
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}
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// The handler has stopped running so the connection is dead,
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// try to close the underlying socket just in case and then
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// drop the link state.
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_ = lc.Close()
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l.Lock()
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delete(l._links, info)
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l.Unlock()
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@ -401,7 +466,7 @@ func (l *links) connect(u *url.URL, info linkInfo, options linkOptions) (net.Con
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return dialer.dial(u, info, options)
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}
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func (l *links) handler(info *linkInfo, options linkOptions, conn net.Conn) error {
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func (l *links) handler(linkType linkType, options linkOptions, conn net.Conn) error {
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meta := version_getBaseMetadata()
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meta.publicKey = l.core.public
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metaBytes := meta.encode()
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@ -453,12 +518,12 @@ func (l *links) handler(info *linkInfo, options linkOptions, conn net.Conn) erro
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break
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}
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}
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if info.linkType == linkTypeIncoming && !isallowed {
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if linkType == linkTypeIncoming && !isallowed {
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return fmt.Errorf("node public key %q is not in AllowedPublicKeys", hex.EncodeToString(meta.publicKey))
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}
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dir := "outbound"
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if info.linkType == linkTypeIncoming {
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if linkType == linkTypeIncoming {
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dir = "inbound"
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}
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remoteAddr := net.IP(address.AddrForKey(meta.publicKey)[:]).String()
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