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https://github.com/yggdrasil-network/yggdrasil-go.git
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Add SetSessionGatekeeper
This allows you to define a function which determines whether a session connection (either incoming or outgoing) is allowed based on the public key.
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@ -395,6 +395,18 @@ func (c *Core) GetNodeInfo(keyString, coordString string, nocache bool) (NodeInf
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return NodeInfoPayload{}, errors.New(fmt.Sprintf("getNodeInfo timeout: %s", keyString))
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}
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// SetSessionGatekeeper allows you to configure a handler function for deciding
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// whether a session should be allowed or not. The default session firewall is
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// implemented in this way. The function receives the public key of the remote
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// side, and a boolean which is true if we initiated the session or false if we
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// received an incoming session request.
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func (c *Core) SetSessionGatekeeper(f func(pubkey *crypto.BoxPubKey, initiator bool) bool) {
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c.sessions.isAllowedMutex.Lock()
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defer c.sessions.isAllowedMutex.Unlock()
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c.sessions.isAllowedHandler = f
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}
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// SetLogger sets the output logger of the Yggdrasil node after startup. This
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// may be useful if you want to redirect the output later.
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func (c *Core) SetLogger(log *log.Logger) {
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@ -6,7 +6,6 @@ package yggdrasil
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import (
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"bytes"
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"encoding/hex"
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"sync"
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"time"
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@ -111,18 +110,20 @@ func (s *sessionInfo) update(p *sessionPing) bool {
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// Sessions are indexed by handle.
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// Additionally, stores maps of address/subnet onto keys, and keys onto handles.
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type sessions struct {
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core *Core
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listener *Listener
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listenerMutex sync.Mutex
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reconfigure chan chan error
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lastCleanup time.Time
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permShared map[crypto.BoxPubKey]*crypto.BoxSharedKey // Maps known permanent keys to their shared key, used by DHT a lot
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sinfos map[crypto.Handle]*sessionInfo // Maps (secret) handle onto session info
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conns map[crypto.Handle]*Conn // Maps (secret) handle onto connections
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byMySes map[crypto.BoxPubKey]*crypto.Handle // Maps mySesPub onto handle
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byTheirPerm map[crypto.BoxPubKey]*crypto.Handle // Maps theirPermPub onto handle
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addrToPerm map[address.Address]*crypto.BoxPubKey
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subnetToPerm map[address.Subnet]*crypto.BoxPubKey
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core *Core
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listener *Listener
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listenerMutex sync.Mutex
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reconfigure chan chan error
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lastCleanup time.Time
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isAllowedHandler func(pubkey *crypto.BoxPubKey, initiator bool) bool // Returns true or false if session setup is allowed
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isAllowedMutex sync.RWMutex // Protects the above
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permShared map[crypto.BoxPubKey]*crypto.BoxSharedKey // Maps known permanent keys to their shared key, used by DHT a lot
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sinfos map[crypto.Handle]*sessionInfo // Maps (secret) handle onto session info
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conns map[crypto.Handle]*Conn // Maps (secret) handle onto connections
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byMySes map[crypto.BoxPubKey]*crypto.Handle // Maps mySesPub onto handle
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byTheirPerm map[crypto.BoxPubKey]*crypto.Handle // Maps theirPermPub onto handle
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addrToPerm map[address.Address]*crypto.BoxPubKey
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subnetToPerm map[address.Subnet]*crypto.BoxPubKey
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}
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// Initializes the session struct.
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@ -155,70 +156,17 @@ func (ss *sessions) init(core *Core) {
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ss.lastCleanup = time.Now()
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}
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// Determines whether the session firewall is enabled.
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func (ss *sessions) isSessionFirewallEnabled() bool {
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ss.core.config.Mutex.RLock()
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defer ss.core.config.Mutex.RUnlock()
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return ss.core.config.Current.SessionFirewall.Enable
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}
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// Determines whether the session with a given publickey is allowed based on
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// session firewall rules.
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func (ss *sessions) isSessionAllowed(pubkey *crypto.BoxPubKey, initiator bool) bool {
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ss.core.config.Mutex.RLock()
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defer ss.core.config.Mutex.RUnlock()
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ss.isAllowedMutex.RLock()
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defer ss.isAllowedMutex.RUnlock()
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// Allow by default if the session firewall is disabled
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if !ss.isSessionFirewallEnabled() {
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if ss.isAllowedHandler == nil {
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return true
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}
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// Prepare for checking whitelist/blacklist
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var box crypto.BoxPubKey
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// Reject blacklisted nodes
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for _, b := range ss.core.config.Current.SessionFirewall.BlacklistEncryptionPublicKeys {
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key, err := hex.DecodeString(b)
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if err == nil {
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copy(box[:crypto.BoxPubKeyLen], key)
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if box == *pubkey {
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return false
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}
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}
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}
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// Allow whitelisted nodes
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for _, b := range ss.core.config.Current.SessionFirewall.WhitelistEncryptionPublicKeys {
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key, err := hex.DecodeString(b)
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if err == nil {
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copy(box[:crypto.BoxPubKeyLen], key)
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if box == *pubkey {
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return true
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}
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}
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}
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// Allow outbound sessions if appropriate
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if ss.core.config.Current.SessionFirewall.AlwaysAllowOutbound {
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if initiator {
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return true
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}
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}
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// Look and see if the pubkey is that of a direct peer
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var isDirectPeer bool
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for _, peer := range ss.core.peers.ports.Load().(map[switchPort]*peer) {
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if peer.box == *pubkey {
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isDirectPeer = true
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break
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}
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}
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// Allow direct peers if appropriate
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if ss.core.config.Current.SessionFirewall.AllowFromDirect && isDirectPeer {
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return true
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}
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// Allow remote nodes if appropriate
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if ss.core.config.Current.SessionFirewall.AllowFromRemote && !isDirectPeer {
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return true
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}
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// Finally, default-deny if not matching any of the above rules
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return false
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return ss.isAllowedHandler(pubkey, initiator)
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}
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// Gets the session corresponding to a given handle.
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@ -444,12 +392,11 @@ func (ss *sessions) sendPingPong(sinfo *sessionInfo, isPong bool) {
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func (ss *sessions) handlePing(ping *sessionPing) {
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// Get the corresponding session (or create a new session)
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sinfo, isIn := ss.getByTheirPerm(&ping.SendPermPub)
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// Check the session firewall
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if !isIn && ss.isSessionFirewallEnabled() {
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if !ss.isSessionAllowed(&ping.SendPermPub, false) {
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return
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}
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// Check if the session is allowed
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if !isIn && !ss.isSessionAllowed(&ping.SendPermPub, false) {
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return
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}
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// Create the session if it doesn't already exist
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if !isIn {
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ss.createSession(&ping.SendPermPub)
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sinfo, isIn = ss.getByTheirPerm(&ping.SendPermPub)
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