mirror of
https://github.com/yggdrasil-network/yggdrasil-go.git
synced 2024-11-30 13:35:19 +00:00
fix some crashes with races during peer setup
This commit is contained in:
parent
402cfc0f00
commit
20ef591013
@ -9,6 +9,7 @@ import (
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)
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)
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func doListen(recvNode *simNode) {
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func doListen(recvNode *simNode) {
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// TODO be able to stop the listeners somehow so they don't leak across different tests
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for {
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for {
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c, err := recvNode.listener.Accept()
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c, err := recvNode.listener.Accept()
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if err != nil {
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if err != nil {
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@ -1,12 +1,5 @@
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package main
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package main
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import (
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//"github.com/yggdrasil-network/yggdrasil-go/src/address"
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//"github.com/yggdrasil-network/yggdrasil-go/src/config"
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//"github.com/yggdrasil-network/yggdrasil-go/src/crypto"
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//"github.com/yggdrasil-network/yggdrasil-go/src/yggdrasil"
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)
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func main() {
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func main() {
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store := makeStoreSquareGrid(4)
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store := makeStoreSquareGrid(4)
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dialStore(store)
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dialStore(store)
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@ -217,9 +217,23 @@ func (intf *linkInterface) handler() error {
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intf.link.mutex.Unlock()
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intf.link.mutex.Unlock()
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// Create peer
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// Create peer
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shared := crypto.GetSharedKey(myLinkPriv, &meta.link)
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shared := crypto.GetSharedKey(myLinkPriv, &meta.link)
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out := func(msgs [][]byte) {
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// nil to prevent it from blocking if the link is somehow frozen
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// this is safe because another packet won't be sent until the link notifies
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// the peer that it's ready for one
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intf.writer.sendFrom(nil, msgs, false)
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}
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linkOut := func(bs []byte) {
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// nil to prevent it from blocking if the link is somehow frozen
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// FIXME this is hypothetically not safe, the peer shouldn't be sending
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// additional packets until this one finishes, otherwise this could leak
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// memory if writing happens slower than link packets are generated...
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// that seems unlikely, so it's a lesser evil than deadlocking for now
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intf.writer.sendFrom(nil, [][]byte{bs}, true)
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}
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phony.Block(&intf.link.core.peers, func() {
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phony.Block(&intf.link.core.peers, func() {
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// FIXME don't use phony.Block, it's bad practice, even if it's safe here
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// FIXME don't use phony.Block, it's bad practice, even if it's safe here
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intf.peer = intf.link.core.peers._newPeer(&meta.box, &meta.sig, shared, intf, func() { intf.msgIO.close() })
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intf.peer = intf.link.core.peers._newPeer(&meta.box, &meta.sig, shared, intf, func() { intf.msgIO.close() }, out, linkOut)
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})
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})
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if intf.peer == nil {
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if intf.peer == nil {
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return errors.New("failed to create peer")
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return errors.New("failed to create peer")
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@ -228,20 +242,6 @@ func (intf *linkInterface) handler() error {
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// More cleanup can go here
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// More cleanup can go here
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intf.peer.Act(nil, intf.peer._removeSelf)
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intf.peer.Act(nil, intf.peer._removeSelf)
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}()
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}()
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intf.peer.out = func(msgs [][]byte) {
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// nil to prevent it from blocking if the link is somehow frozen
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// this is safe because another packet won't be sent until the link notifies
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// the peer that it's ready for one
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intf.writer.sendFrom(nil, msgs, false)
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}
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intf.peer.linkOut = func(bs []byte) {
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// nil to prevent it from blocking if the link is somehow frozen
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// FIXME this is hypothetically not safe, the peer shouldn't be sending
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// additional packets until this one finishes, otherwise this could leak
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// memory if writing happens slower than link packets are generated...
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// that seems unlikely, so it's a lesser evil than deadlocking for now
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intf.writer.sendFrom(nil, [][]byte{bs}, true)
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}
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themAddr := address.AddrForNodeID(crypto.GetNodeID(&intf.info.box))
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themAddr := address.AddrForNodeID(crypto.GetNodeID(&intf.info.box))
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themAddrString := net.IP(themAddr[:]).String()
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themAddrString := net.IP(themAddr[:]).String()
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themString := fmt.Sprintf("%s@%s", themAddrString, intf.info.remote)
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themString := fmt.Sprintf("%s@%s", themAddrString, intf.info.remote)
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@ -123,7 +123,7 @@ func (ps *peers) _updatePeers() {
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}
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}
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// Creates a new peer with the specified box, sig, and linkShared keys, using the lowest unoccupied port number.
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// Creates a new peer with the specified box, sig, and linkShared keys, using the lowest unoccupied port number.
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func (ps *peers) _newPeer(box *crypto.BoxPubKey, sig *crypto.SigPubKey, linkShared *crypto.BoxSharedKey, intf *linkInterface, closer func()) *peer {
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func (ps *peers) _newPeer(box *crypto.BoxPubKey, sig *crypto.SigPubKey, linkShared *crypto.BoxSharedKey, intf *linkInterface, closer func(), out func([][]byte), linkOut func([]byte)) *peer {
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now := time.Now()
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now := time.Now()
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p := peer{box: *box,
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p := peer{box: *box,
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sig: *sig,
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sig: *sig,
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@ -134,6 +134,8 @@ func (ps *peers) _newPeer(box *crypto.BoxPubKey, sig *crypto.SigPubKey, linkShar
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close: closer,
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close: closer,
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core: ps.core,
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core: ps.core,
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intf: intf,
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intf: intf,
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out: out,
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linkOut: linkOut,
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}
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}
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oldPorts := ps.ports
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oldPorts := ps.ports
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newPorts := make(map[switchPort]*peer)
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newPorts := make(map[switchPort]*peer)
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@ -62,17 +62,17 @@ func (r *router) init(core *Core) {
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},
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},
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}
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}
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var p *peer
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var p *peer
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phony.Block(&r.core.peers, func() {
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peerOut := func(packets [][]byte) {
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// FIXME don't block here!
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p = r.core.peers._newPeer(&r.core.boxPub, &r.core.sigPub, &crypto.BoxSharedKey{}, &self, nil)
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})
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p.out = func(packets [][]byte) {
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r.handlePackets(p, packets)
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r.handlePackets(p, packets)
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r.Act(p, func() {
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r.Act(p, func() {
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// after the router handle the packets, notify the peer that it's ready for more
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// after the router handle the packets, notify the peer that it's ready for more
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p.Act(r, p._handleIdle)
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p.Act(r, p._handleIdle)
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})
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})
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}
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}
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phony.Block(&r.core.peers, func() {
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// FIXME don't block here!
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p = r.core.peers._newPeer(&r.core.boxPub, &r.core.sigPub, &crypto.BoxSharedKey{}, &self, nil, peerOut, nil)
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})
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p.Act(r, p._handleIdle)
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p.Act(r, p._handleIdle)
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r.out = func(bs []byte) { p.handlePacketFrom(r, bs) }
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r.out = func(bs []byte) { p.handlePacketFrom(r, bs) }
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r.nodeinfo.init(r.core)
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r.nodeinfo.init(r.core)
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@ -57,7 +57,11 @@ func (s *Simlink) writeMsgs(msgs [][]byte) (int, error) {
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func (c *Core) NewSimlink() *Simlink {
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func (c *Core) NewSimlink() *Simlink {
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s := &Simlink{rch: make(chan []byte, 1)}
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s := &Simlink{rch: make(chan []byte, 1)}
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n := "Simlink"
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n := "Simlink"
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s.link, _ = c.link.create(s, n, n, n, n, false, true)
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var err error
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s.link, err = c.link.create(s, n, n, n, n, false, true)
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if err != nil {
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panic(err)
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}
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return s
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return s
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}
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}
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