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https://github.com/cwinfo/yggdrasil-go.git
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fix bug in switch actor's cleanRoot, strict nonce handling at the session level, and add separate queues per stream to the packetqueue code
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parent
03a19997b8
commit
09efdfef9a
@ -1,38 +1,125 @@
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package yggdrasil
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import "github.com/yggdrasil-network/yggdrasil-go/src/util"
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import (
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"time"
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"github.com/yggdrasil-network/yggdrasil-go/src/util"
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)
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// TODO take max size from config
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const MAX_PACKET_QUEUE_SIZE = 1048576 // 1 MB
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const MAX_PACKET_QUEUE_SIZE = 4 * 1048576 // 4 MB
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type pqStreamID string
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type pqPacketInfo struct {
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packet []byte
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time time.Time
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}
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type pqStream struct {
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infos []pqPacketInfo
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size uint64
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}
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// TODO separate queues per e.g. traffic flow
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type packetQueue struct {
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packets [][]byte
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size uint32
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streams map[pqStreamID]pqStream
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size uint64
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}
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func (q *packetQueue) cleanup() {
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for q.size > MAX_PACKET_QUEUE_SIZE {
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if packet, success := q.pop(); success {
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util.PutBytes(packet)
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// TODO? drop from a random stream
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// odds proportional to size? bandwidth?
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// always using the worst is exploitable -> flood 1 packet per random stream
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// find the stream that's using the most bandwidth
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now := time.Now()
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var worst pqStreamID
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for id := range q.streams {
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worst = id
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break // get a random ID to start
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}
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worstStream := q.streams[worst]
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worstSize := float64(worstStream.size)
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worstAge := now.Sub(worstStream.infos[0].time).Seconds()
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for id, stream := range q.streams {
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thisSize := float64(stream.size)
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thisAge := now.Sub(stream.infos[0].time).Seconds()
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// cross multiply to avoid division by zero issues
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if worstSize*thisAge < thisSize*worstAge {
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// worstSize/worstAge < thisSize/thisAge -> this uses more bandwidth
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worst = id
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worstStream = stream
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worstSize = thisSize
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worstAge = thisAge
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}
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}
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// Drop the oldest packet from the worst stream
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packet := worstStream.infos[0].packet
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worstStream.infos = worstStream.infos[1:]
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worstStream.size -= uint64(len(packet))
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q.size -= uint64(len(packet))
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util.PutBytes(packet)
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// save the modified stream to queues
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if len(worstStream.infos) > 0 {
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q.streams[worst] = worstStream
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} else {
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panic("attempted to drop packet from empty queue")
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break
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delete(q.streams, worst)
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}
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}
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}
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func (q *packetQueue) push(packet []byte) {
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q.packets = append(q.packets, packet)
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q.size += uint32(len(packet))
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if q.streams == nil {
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q.streams = make(map[pqStreamID]pqStream)
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}
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// get stream
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id := pqStreamID(peer_getPacketCoords(packet)) // just coords for now
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stream := q.streams[id]
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// update stream
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stream.infos = append(stream.infos, pqPacketInfo{packet, time.Now()})
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stream.size += uint64(len(packet))
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// save update to queues
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q.streams[id] = stream
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q.size += uint64(len(packet))
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q.cleanup()
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}
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func (q *packetQueue) pop() ([]byte, bool) {
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if len(q.packets) > 0 {
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packet := q.packets[0]
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q.packets = q.packets[1:]
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q.size -= uint32(len(packet))
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if len(q.streams) > 0 {
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// get the stream that uses the least bandwidth
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now := time.Now()
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var best pqStreamID
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for id := range q.streams {
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best = id
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break // get a random ID to start
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}
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bestStream := q.streams[best]
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bestSize := float64(bestStream.size)
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bestAge := now.Sub(bestStream.infos[0].time).Seconds()
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for id, stream := range q.streams {
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thisSize := float64(stream.size)
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thisAge := now.Sub(stream.infos[0].time).Seconds()
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// cross multiply to avoid division by zero issues
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if bestSize*thisAge > thisSize*bestAge {
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// bestSize/bestAge > thisSize/thisAge -> this uses less bandwidth
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best = id
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bestStream = stream
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bestSize = thisSize
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bestAge = thisAge
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}
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}
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// get the oldest packet from the best stream
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packet := bestStream.infos[0].packet
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bestStream.infos = bestStream.infos[1:]
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bestStream.size -= uint64(len(packet))
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q.size -= uint64(len(packet))
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// save the modified stream to queues
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if len(bestStream.infos) > 0 {
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q.streams[best] = bestStream
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} else {
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delete(q.streams, best)
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}
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return packet, true
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}
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return nil, false
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@ -16,9 +16,6 @@ import (
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"github.com/Arceliar/phony"
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)
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// Duration that we keep track of old nonces per session, to allow some out-of-order packet delivery
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const nonceWindow = time.Second
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// All the information we know about an active session.
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// This includes coords, permanent and ephemeral keys, handles and nonces, various sorts of timing information for timeout and maintenance, and some metadata for the admin API.
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type sessionInfo struct {
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@ -394,14 +391,9 @@ func (sinfo *sessionInfo) _getMTU() MTU {
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return sinfo.myMTU
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}
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// Checks if a packet's nonce is recent enough to fall within the window of allowed packets, and not already received.
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// Checks if a packet's nonce is newer than any previously received
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func (sinfo *sessionInfo) _nonceIsOK(theirNonce *crypto.BoxNonce) bool {
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// The bitmask is to allow for some non-duplicate out-of-order packets
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if theirNonce.Minus(&sinfo.theirNonce) > 0 {
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// This is newer than the newest nonce we've seen
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return true
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}
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return time.Since(sinfo.time) < nonceWindow
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return theirNonce.Minus(&sinfo.theirNonce) > 0
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}
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// Updates the nonce mask by (possibly) shifting the bitmask and setting the bit corresponding to this nonce to 1, and then updating the most recent nonce
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@ -227,10 +227,10 @@ func (t *switchTable) _cleanRoot() {
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t.time = now
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if t.data.locator.root != t.key {
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t.data.seq++
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defer t._updateTable()
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t.core.router.reset(nil)
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defer t.core.router.reset(nil)
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}
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t.data.locator = switchLocator{root: t.key, tstamp: now.Unix()}
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t._updateTable() // updates base copy of switch msg in lookupTable
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t.core.peers.sendSwitchMsgs(t)
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}
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}
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