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disable session nonce checks
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commit
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1 changed files with 34 additions and 73 deletions
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@ -18,39 +18,37 @@ import (
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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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mutex sync.Mutex // Protects all of the below, use it any time you read/chance the contents of a session
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core *Core //
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reconfigure chan chan error //
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theirAddr address.Address //
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theirSubnet address.Subnet //
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theirPermPub crypto.BoxPubKey //
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theirSesPub crypto.BoxPubKey //
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mySesPub crypto.BoxPubKey //
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mySesPriv crypto.BoxPrivKey //
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sharedSesKey crypto.BoxSharedKey // derived from session keys
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theirHandle crypto.Handle //
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myHandle crypto.Handle //
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theirNonce crypto.BoxNonce //
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theirNonceMask uint64 //
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myNonce crypto.BoxNonce //
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theirMTU uint16 //
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myMTU uint16 //
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wasMTUFixed bool // Was the MTU fixed by a receive error?
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timeOpened time.Time // Time the sessino was opened
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time time.Time // Time we last received a packet
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mtuTime time.Time // time myMTU was last changed
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pingTime time.Time // time the first ping was sent since the last received packet
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pingSend time.Time // time the last ping was sent
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coords []byte // coords of destination
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reset bool // reset if coords change
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tstamp int64 // ATOMIC - tstamp from their last session ping, replay attack mitigation
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bytesSent uint64 // Bytes of real traffic sent in this session
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bytesRecvd uint64 // Bytes of real traffic received in this session
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init chan struct{} // Closed when the first session pong arrives, used to signal that the session is ready for initial use
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cancel util.Cancellation // Used to terminate workers
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fromRouter chan wire_trafficPacket // Received packets go here, to be decrypted by the session
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recv chan []byte // Decrypted packets go here, picked up by the associated Conn
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send chan FlowKeyMessage // Packets with optional flow key go here, to be encrypted and sent
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mutex sync.Mutex // Protects all of the below, use it any time you read/chance the contents of a session
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core *Core //
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reconfigure chan chan error //
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theirAddr address.Address //
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theirSubnet address.Subnet //
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theirPermPub crypto.BoxPubKey //
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theirSesPub crypto.BoxPubKey //
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mySesPub crypto.BoxPubKey //
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mySesPriv crypto.BoxPrivKey //
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sharedSesKey crypto.BoxSharedKey // derived from session keys
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theirHandle crypto.Handle //
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myHandle crypto.Handle //
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myNonce crypto.BoxNonce //
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theirMTU uint16 //
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myMTU uint16 //
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wasMTUFixed bool // Was the MTU fixed by a receive error?
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timeOpened time.Time // Time the sessino was opened
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time time.Time // Time we last received a packet
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mtuTime time.Time // time myMTU was last changed
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pingTime time.Time // time the first ping was sent since the last received packet
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pingSend time.Time // time the last ping was sent
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coords []byte // coords of destination
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reset bool // reset if coords change
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tstamp int64 // ATOMIC - tstamp from their last session ping, replay attack mitigation
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bytesSent uint64 // Bytes of real traffic sent in this session
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bytesRecvd uint64 // Bytes of real traffic received in this session
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init chan struct{} // Closed when the first session pong arrives, used to signal that the session is ready for initial use
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cancel util.Cancellation // Used to terminate workers
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fromRouter chan wire_trafficPacket // Received packets go here, to be decrypted by the session
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recv chan []byte // Decrypted packets go here, picked up by the associated Conn
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send chan FlowKeyMessage // Packets with optional flow key go here, to be encrypted and sent
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}
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func (sinfo *sessionInfo) doFunc(f func()) {
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@ -86,8 +84,6 @@ func (s *sessionInfo) update(p *sessionPing) bool {
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s.theirSesPub = p.SendSesPub
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s.theirHandle = p.Handle
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s.sharedSesKey = *crypto.GetSharedKey(&s.mySesPriv, &s.theirSesPub)
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s.theirNonce = crypto.BoxNonce{}
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s.theirNonceMask = 0
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}
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if p.MTU >= 1280 || p.MTU == 0 {
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s.theirMTU = p.MTU
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@ -397,32 +393,6 @@ func (sinfo *sessionInfo) getMTU() uint16 {
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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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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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diff := theirNonce.Minus(&sinfo.theirNonce)
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if diff > 0 {
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return true
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}
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return ^sinfo.theirNonceMask&(0x01<<uint64(-diff)) != 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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func (sinfo *sessionInfo) updateNonce(theirNonce *crypto.BoxNonce) {
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// Shift nonce mask if needed
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// Set bit
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diff := theirNonce.Minus(&sinfo.theirNonce)
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if diff > 0 {
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// This nonce is newer, so shift the window before setting the bit, and update theirNonce in the session info.
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sinfo.theirNonceMask <<= uint64(diff)
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sinfo.theirNonceMask &= 0x01
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sinfo.theirNonce = *theirNonce
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} else {
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// This nonce is older, so set the bit but do not shift the window.
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sinfo.theirNonceMask &= 0x01 << uint64(-diff)
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}
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}
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// Resets all sessions to an uninitialized state.
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// Called after coord changes, so attemtps to use a session will trigger a new ping and notify the remote end of the coord change.
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func (ss *sessions) reset() {
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@ -448,27 +418,18 @@ type FlowKeyMessage struct {
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}
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func (sinfo *sessionInfo) recvWorker() {
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// TODO move theirNonce etc into a struct that gets stored here, passed in over a channel
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// TODO move used fields into a struct that gets stored here, passed in over a channel
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// Since there's no reason for anywhere else in the session code to need to *read* it...
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// Only needs to be updated from the outside if a ping resets it...
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// That would get rid of the need to take a mutex for the sessionFunc
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var callbacks []chan func()
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doRecv := func(p wire_trafficPacket) {
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var bs []byte
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var err error
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var k crypto.BoxSharedKey
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sessionFunc := func() {
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if !sinfo.nonceIsOK(&p.Nonce) {
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err = ConnError{errors.New("packet dropped due to invalid nonce"), false, true, false, 0}
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return
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}
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k = sinfo.sharedSesKey
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}
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sinfo.doFunc(sessionFunc)
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if err != nil {
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util.PutBytes(p.Payload)
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return
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}
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var isOK bool
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ch := make(chan func(), 1)
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poolFunc := func() {
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@ -479,13 +440,13 @@ func (sinfo *sessionInfo) recvWorker() {
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util.PutBytes(bs)
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return
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}
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var err error
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sessionFunc = func() {
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if k != sinfo.sharedSesKey || !sinfo.nonceIsOK(&p.Nonce) {
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if k != sinfo.sharedSesKey {
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// The session updated in the mean time, so return an error
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err = ConnError{errors.New("session updated during crypto operation"), false, true, false, 0}
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return
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}
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sinfo.updateNonce(&p.Nonce)
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sinfo.time = time.Now()
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sinfo.bytesRecvd += uint64(len(bs))
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}
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