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Merge pull request #22 from Arceliar/udp_mtu_fix
Mostly working PMTU discovery when going over UDP links
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commit
33c9f74f48
@ -91,6 +91,7 @@ const boxPubKeyLen = 32
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const boxPrivKeyLen = 32
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const boxSharedKeyLen = 32
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const boxNonceLen = 24
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const boxOverhead = box.Overhead
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type boxPubKey [boxPubKeyLen]byte
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type boxPrivKey [boxPrivKeyLen]byte
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@ -28,7 +28,8 @@ type sessionInfo struct {
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send chan []byte
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recv chan *wire_trafficPacket
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nonceMask uint64
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tstamp int64 // tstamp from their last session ping, replay attack mitigation
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tstamp int64 // tstamp from their last session ping, replay attack mitigation
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mtuTime time.Time // time myMTU was last changed
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}
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type sessionPing struct {
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@ -152,15 +153,7 @@ func (ss *sessions) createSession(theirPermKey *boxPubKey) *sessionInfo {
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sinfo.myNonce = *newBoxNonce()
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sinfo.theirMTU = 1280
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sinfo.myMTU = uint16(ss.core.tun.mtu)
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if sinfo.myMTU > 2048 {
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// FIXME this is a temporary workaround to an issue with UDP peers
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// UDP links need to fragment packets (within ygg) to get them over the wire
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// For some reason, TCP streams over UDP peers can get stuck in a bad state
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// When this happens, TCP throttles back, and each TCP retransmission loses fragments
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// On my wifi network, it seems to happen around the 22nd-23rd fragment of a large packet
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// By setting the path MTU to something small, this should (hopefully) mitigate the issue
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sinfo.myMTU = 2048
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}
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sinfo.mtuTime = time.Now()
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higher := false
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for idx := range ss.core.boxPub {
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if ss.core.boxPub[idx] > sinfo.theirPermPub[idx] {
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@ -387,14 +380,42 @@ func (sinfo *sessionInfo) doSend(bs []byte) {
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func (sinfo *sessionInfo) doRecv(p *wire_trafficPacket) {
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defer util_putBytes(p.payload)
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payloadSize := uint16(len(p.payload))
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if !sinfo.nonceIsOK(&p.nonce) {
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return
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}
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bs, isOK := boxOpen(&sinfo.sharedSesKey, p.payload, &p.nonce)
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if !isOK {
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// We're going to guess that the session MTU is too large
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// Set myMTU to the largest value we think we can receive
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fixSessionMTU := func() {
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// This clamps down to 1280 almost immediately over ipv4
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// Over link-local ipv6, it seems to approach link MTU
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// So maybe it's doing the right thing?...
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//sinfo.core.log.Println("DEBUG got bad packet:", payloadSize)
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newMTU := payloadSize - boxOverhead
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if newMTU < 1280 {
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newMTU = 1280
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}
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if newMTU < sinfo.myMTU {
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sinfo.myMTU = newMTU
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//sinfo.core.log.Println("DEBUG set MTU to:", sinfo.myMTU)
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sinfo.core.sessions.sendPingPong(sinfo, false)
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sinfo.mtuTime = time.Now()
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}
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}
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go func() { sinfo.core.router.admin <- fixSessionMTU }()
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util_putBytes(bs)
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return
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}
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fixSessionMTU := func() {
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if time.Since(sinfo.mtuTime) > time.Minute {
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sinfo.myMTU = uint16(sinfo.core.tun.mtu)
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sinfo.mtuTime = time.Now()
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//sinfo.core.log.Println("DEBUG: Reset MTU to:", sinfo.myMTU)
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}
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}
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go func() { sinfo.core.router.admin <- fixSessionMTU }()
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sinfo.updateNonce(&p.nonce)
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sinfo.time = time.Now()
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sinfo.core.router.recvPacket(bs, &sinfo.theirAddr, &sinfo.theirSubnet)
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@ -182,6 +182,13 @@ func (iface *udpInterface) handleKeys(msg []byte, addr connAddr) {
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//defer util_putBytes(bs)
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chunks, chunk, count, payload := udp_decode(bs)
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if count != conn.countIn {
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if len(inBuf) > 0 {
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// Something went wrong
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// Forward whatever we have
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// Maybe the destination can do something about it
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msg := append(util_getBytes(), inBuf...)
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conn.peer.handlePacket(msg, conn.linkIn)
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}
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inChunks = 0
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inBuf = inBuf[:0]
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conn.countIn = count
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@ -194,6 +201,7 @@ func (iface *udpInterface) handleKeys(msg []byte, addr connAddr) {
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}
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msg := append(util_getBytes(), inBuf...)
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conn.peer.handlePacket(msg, conn.linkIn)
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inBuf = inBuf[:0]
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}
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}
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conn.peer.out = func(msg []byte) {
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