mirror of
https://github.com/yggdrasil-network/yggdrasil-go.git
synced 2024-11-24 02:25:21 +00:00
Merge pull request #312 from neilalexander/nodeconfig
Further nodeconfig changes
This commit is contained in:
commit
2219d96df1
@ -227,11 +227,6 @@ func main() {
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logger.Println("An error occurred during startup")
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logger.Println("An error occurred during startup")
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panic(err)
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panic(err)
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}
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}
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// Check to see if any allowed encryption keys were provided in the config.
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// If they were then set them now.
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for _, pBoxStr := range cfg.AllowedEncryptionPublicKeys {
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n.core.AddAllowedEncryptionPublicKey(pBoxStr)
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}
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// The Stop function ensures that the TUN/TAP adapter is correctly shut down
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// The Stop function ensures that the TUN/TAP adapter is correctly shut down
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// before the program exits.
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// before the program exits.
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defer func() {
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defer func() {
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@ -765,35 +765,20 @@ func (a *admin) getData_getSessions() []admin_nodeInfo {
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// getAllowedEncryptionPublicKeys returns the public keys permitted for incoming peer connections.
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// getAllowedEncryptionPublicKeys returns the public keys permitted for incoming peer connections.
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func (a *admin) getAllowedEncryptionPublicKeys() []string {
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func (a *admin) getAllowedEncryptionPublicKeys() []string {
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pubs := a.core.peers.getAllowedEncryptionPublicKeys()
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return a.core.peers.getAllowedEncryptionPublicKeys()
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var out []string
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for _, pub := range pubs {
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out = append(out, hex.EncodeToString(pub[:]))
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}
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return out
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}
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}
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// addAllowedEncryptionPublicKey whitelists a key for incoming peer connections.
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// addAllowedEncryptionPublicKey whitelists a key for incoming peer connections.
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func (a *admin) addAllowedEncryptionPublicKey(bstr string) (err error) {
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func (a *admin) addAllowedEncryptionPublicKey(bstr string) (err error) {
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boxBytes, err := hex.DecodeString(bstr)
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a.core.peers.addAllowedEncryptionPublicKey(bstr)
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if err == nil {
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return nil
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var box crypto.BoxPubKey
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copy(box[:], boxBytes)
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a.core.peers.addAllowedEncryptionPublicKey(&box)
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}
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return
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}
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}
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// removeAllowedEncryptionPublicKey removes a key from the whitelist for incoming peer connections.
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// removeAllowedEncryptionPublicKey removes a key from the whitelist for incoming peer connections.
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// If none are set, an empty list permits all incoming connections.
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// If none are set, an empty list permits all incoming connections.
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func (a *admin) removeAllowedEncryptionPublicKey(bstr string) (err error) {
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func (a *admin) removeAllowedEncryptionPublicKey(bstr string) (err error) {
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boxBytes, err := hex.DecodeString(bstr)
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a.core.peers.removeAllowedEncryptionPublicKey(bstr)
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if err == nil {
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return nil
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var box crypto.BoxPubKey
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copy(box[:], boxBytes)
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a.core.peers.removeAllowedEncryptionPublicKey(&box)
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}
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return
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}
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}
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// Send a DHT ping to the node with the provided key and coords, optionally looking up the specified target NodeID.
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// Send a DHT ping to the node with the provided key and coords, optionally looking up the specified target NodeID.
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@ -212,15 +212,6 @@ func (c *Core) Start(nc *config.NodeConfig, log *log.Logger) error {
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return err
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return err
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}
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}
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c.sessions.setSessionFirewallState(nc.SessionFirewall.Enable)
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c.sessions.setSessionFirewallDefaults(
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nc.SessionFirewall.AllowFromDirect,
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nc.SessionFirewall.AllowFromRemote,
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nc.SessionFirewall.AlwaysAllowOutbound,
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)
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c.sessions.setSessionFirewallWhitelist(nc.SessionFirewall.WhitelistEncryptionPublicKeys)
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c.sessions.setSessionFirewallBlacklist(nc.SessionFirewall.BlacklistEncryptionPublicKeys)
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if err := c.router.start(); err != nil {
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if err := c.router.start(); err != nil {
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c.log.Println("Failed to start router")
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c.log.Println("Failed to start router")
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return err
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return err
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@ -5,6 +5,7 @@ package yggdrasil
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// Live code should be better commented
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// Live code should be better commented
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import (
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import (
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"encoding/hex"
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"sync"
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"sync"
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"sync/atomic"
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"sync/atomic"
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"time"
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"time"
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@ -18,12 +19,10 @@ import (
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// In most cases, this involves passing the packet to the handler for outgoing traffic to another peer.
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// In most cases, this involves passing the packet to the handler for outgoing traffic to another peer.
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// In other cases, it's link protocol traffic used to build the spanning tree, in which case this checks signatures and passes the message along to the switch.
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// In other cases, it's link protocol traffic used to build the spanning tree, in which case this checks signatures and passes the message along to the switch.
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type peers struct {
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type peers struct {
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core *Core
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core *Core
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reconfigure chan chan error
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reconfigure chan chan error
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mutex sync.Mutex // Synchronize writes to atomic
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mutex sync.Mutex // Synchronize writes to atomic
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ports atomic.Value //map[switchPort]*peer, use CoW semantics
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ports atomic.Value //map[switchPort]*peer, use CoW semantics
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authMutex sync.RWMutex
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allowedEncryptionPublicKeys map[crypto.BoxPubKey]struct{}
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}
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}
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// Initializes the peers struct.
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// Initializes the peers struct.
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@ -39,40 +38,48 @@ func (ps *peers) init(c *Core) {
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e <- nil
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e <- nil
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}
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}
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}()
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}()
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ps.allowedEncryptionPublicKeys = make(map[crypto.BoxPubKey]struct{})
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}
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}
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// Returns true if an incoming peer connection to a key is allowed, either because the key is in the whitelist or because the whitelist is empty.
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// Returns true if an incoming peer connection to a key is allowed, either
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// because the key is in the whitelist or because the whitelist is empty.
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func (ps *peers) isAllowedEncryptionPublicKey(box *crypto.BoxPubKey) bool {
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func (ps *peers) isAllowedEncryptionPublicKey(box *crypto.BoxPubKey) bool {
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ps.authMutex.RLock()
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boxstr := hex.EncodeToString(box[:])
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defer ps.authMutex.RUnlock()
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ps.core.configMutex.RLock()
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_, isIn := ps.allowedEncryptionPublicKeys[*box]
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defer ps.core.configMutex.RUnlock()
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return isIn || len(ps.allowedEncryptionPublicKeys) == 0
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for _, v := range ps.core.config.AllowedEncryptionPublicKeys {
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if v == boxstr {
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return true
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}
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}
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return len(ps.core.config.AllowedEncryptionPublicKeys) == 0
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}
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}
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// Adds a key to the whitelist.
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// Adds a key to the whitelist.
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func (ps *peers) addAllowedEncryptionPublicKey(box *crypto.BoxPubKey) {
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func (ps *peers) addAllowedEncryptionPublicKey(box string) {
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ps.authMutex.Lock()
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ps.core.configMutex.RLock()
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defer ps.authMutex.Unlock()
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defer ps.core.configMutex.RUnlock()
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ps.allowedEncryptionPublicKeys[*box] = struct{}{}
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ps.core.config.AllowedEncryptionPublicKeys =
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append(ps.core.config.AllowedEncryptionPublicKeys, box)
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}
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}
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// Removes a key from the whitelist.
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// Removes a key from the whitelist.
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func (ps *peers) removeAllowedEncryptionPublicKey(box *crypto.BoxPubKey) {
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func (ps *peers) removeAllowedEncryptionPublicKey(box string) {
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ps.authMutex.Lock()
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ps.core.configMutex.RLock()
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defer ps.authMutex.Unlock()
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defer ps.core.configMutex.RUnlock()
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delete(ps.allowedEncryptionPublicKeys, *box)
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for k, v := range ps.core.config.AllowedEncryptionPublicKeys {
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if v == box {
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ps.core.config.AllowedEncryptionPublicKeys =
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append(ps.core.config.AllowedEncryptionPublicKeys[:k],
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ps.core.config.AllowedEncryptionPublicKeys[k+1:]...)
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}
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}
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}
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}
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// Gets the whitelist of allowed keys for incoming connections.
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// Gets the whitelist of allowed keys for incoming connections.
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func (ps *peers) getAllowedEncryptionPublicKeys() []crypto.BoxPubKey {
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func (ps *peers) getAllowedEncryptionPublicKeys() []string {
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ps.authMutex.RLock()
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ps.core.configMutex.RLock()
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defer ps.authMutex.RUnlock()
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defer ps.core.configMutex.RUnlock()
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keys := make([]crypto.BoxPubKey, 0, len(ps.allowedEncryptionPublicKeys))
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return ps.core.config.AllowedEncryptionPublicKeys
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for key := range ps.allowedEncryptionPublicKeys {
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keys = append(keys, key)
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}
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return keys
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}
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}
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// Atomically gets a map[switchPort]*peer of known peers.
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// Atomically gets a map[switchPort]*peer of known peers.
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@ -7,7 +7,6 @@ package yggdrasil
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import (
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import (
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"bytes"
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"bytes"
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"encoding/hex"
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"encoding/hex"
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"sync"
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"time"
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"time"
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"github.com/yggdrasil-network/yggdrasil-go/src/address"
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"github.com/yggdrasil-network/yggdrasil-go/src/address"
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@ -115,14 +114,6 @@ type sessions struct {
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byTheirPerm map[crypto.BoxPubKey]*crypto.Handle
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byTheirPerm map[crypto.BoxPubKey]*crypto.Handle
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addrToPerm map[address.Address]*crypto.BoxPubKey
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addrToPerm map[address.Address]*crypto.BoxPubKey
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subnetToPerm map[address.Subnet]*crypto.BoxPubKey
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subnetToPerm map[address.Subnet]*crypto.BoxPubKey
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// Options from the session firewall
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sessionFirewallMutex sync.RWMutex
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sessionFirewallEnabled bool
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sessionFirewallAllowsDirect bool
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sessionFirewallAllowsRemote bool
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sessionFirewallAlwaysAllowsOutbound bool
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sessionFirewallWhitelist []string
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sessionFirewallBlacklist []string
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}
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}
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// Initializes the session struct.
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// Initializes the session struct.
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@ -155,51 +146,28 @@ func (ss *sessions) init(core *Core) {
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ss.lastCleanup = time.Now()
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ss.lastCleanup = time.Now()
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}
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}
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// Enable or disable the session firewall
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// Determines whether the session firewall is enabled.
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func (ss *sessions) setSessionFirewallState(enabled bool) {
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func (ss *sessions) isSessionFirewallEnabled() bool {
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ss.sessionFirewallMutex.Lock()
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ss.core.configMutex.RLock()
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defer ss.sessionFirewallMutex.Unlock()
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defer ss.core.configMutex.RUnlock()
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ss.sessionFirewallEnabled = enabled
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}
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// Set the session firewall defaults (first parameter is whether to allow
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return ss.core.config.SessionFirewall.Enable
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// sessions from direct peers, second is whether to allow from remote nodes).
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func (ss *sessions) setSessionFirewallDefaults(allowsDirect bool, allowsRemote bool, alwaysAllowsOutbound bool) {
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ss.sessionFirewallMutex.Lock()
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defer ss.sessionFirewallMutex.Unlock()
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ss.sessionFirewallAllowsDirect = allowsDirect
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ss.sessionFirewallAllowsRemote = allowsRemote
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ss.sessionFirewallAlwaysAllowsOutbound = alwaysAllowsOutbound
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}
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// Set the session firewall whitelist - nodes always allowed to open sessions.
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func (ss *sessions) setSessionFirewallWhitelist(whitelist []string) {
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ss.sessionFirewallMutex.Lock()
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defer ss.sessionFirewallMutex.Unlock()
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ss.sessionFirewallWhitelist = whitelist
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}
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// Set the session firewall blacklist - nodes never allowed to open sessions.
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func (ss *sessions) setSessionFirewallBlacklist(blacklist []string) {
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ss.sessionFirewallMutex.Lock()
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defer ss.sessionFirewallMutex.Unlock()
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ss.sessionFirewallBlacklist = blacklist
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}
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}
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// Determines whether the session with a given publickey is allowed based on
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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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// session firewall rules.
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func (ss *sessions) isSessionAllowed(pubkey *crypto.BoxPubKey, initiator bool) bool {
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func (ss *sessions) isSessionAllowed(pubkey *crypto.BoxPubKey, initiator bool) bool {
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ss.sessionFirewallMutex.RLock()
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ss.core.configMutex.RLock()
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defer ss.sessionFirewallMutex.RUnlock()
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defer ss.core.configMutex.RUnlock()
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// Allow by default if the session firewall is disabled
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// Allow by default if the session firewall is disabled
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if !ss.sessionFirewallEnabled {
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if !ss.isSessionFirewallEnabled() {
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return true
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return true
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}
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}
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// Prepare for checking whitelist/blacklist
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// Prepare for checking whitelist/blacklist
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var box crypto.BoxPubKey
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var box crypto.BoxPubKey
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// Reject blacklisted nodes
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// Reject blacklisted nodes
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for _, b := range ss.sessionFirewallBlacklist {
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for _, b := range ss.core.config.SessionFirewall.BlacklistEncryptionPublicKeys {
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key, err := hex.DecodeString(b)
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key, err := hex.DecodeString(b)
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if err == nil {
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if err == nil {
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copy(box[:crypto.BoxPubKeyLen], key)
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copy(box[:crypto.BoxPubKeyLen], key)
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@ -209,7 +177,7 @@ func (ss *sessions) isSessionAllowed(pubkey *crypto.BoxPubKey, initiator bool) b
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}
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}
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}
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}
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// Allow whitelisted nodes
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// Allow whitelisted nodes
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for _, b := range ss.sessionFirewallWhitelist {
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for _, b := range ss.core.config.SessionFirewall.WhitelistEncryptionPublicKeys {
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key, err := hex.DecodeString(b)
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key, err := hex.DecodeString(b)
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if err == nil {
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if err == nil {
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copy(box[:crypto.BoxPubKeyLen], key)
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copy(box[:crypto.BoxPubKeyLen], key)
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@ -219,7 +187,7 @@ func (ss *sessions) isSessionAllowed(pubkey *crypto.BoxPubKey, initiator bool) b
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}
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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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// Allow outbound sessions if appropriate
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if ss.sessionFirewallAlwaysAllowsOutbound {
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if ss.core.config.SessionFirewall.AlwaysAllowOutbound {
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if initiator {
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if initiator {
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return true
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return true
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}
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}
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@ -233,11 +201,11 @@ func (ss *sessions) isSessionAllowed(pubkey *crypto.BoxPubKey, initiator bool) b
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}
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}
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}
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}
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// Allow direct peers if appropriate
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// Allow direct peers if appropriate
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if ss.sessionFirewallAllowsDirect && isDirectPeer {
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if ss.core.config.SessionFirewall.AllowFromDirect && isDirectPeer {
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return true
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return true
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}
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}
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// Allow remote nodes if appropriate
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// Allow remote nodes if appropriate
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if ss.sessionFirewallAllowsRemote && !isDirectPeer {
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if ss.core.config.SessionFirewall.AllowFromRemote && !isDirectPeer {
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return true
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return true
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}
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}
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// Finally, default-deny if not matching any of the above rules
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// Finally, default-deny if not matching any of the above rules
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@ -474,14 +442,11 @@ func (ss *sessions) handlePing(ping *sessionPing) {
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// Get the corresponding session (or create a new session)
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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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sinfo, isIn := ss.getByTheirPerm(&ping.SendPermPub)
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// Check the session firewall
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// Check the session firewall
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ss.sessionFirewallMutex.RLock()
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if !isIn && ss.isSessionFirewallEnabled() {
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if !isIn && ss.sessionFirewallEnabled {
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if !ss.isSessionAllowed(&ping.SendPermPub, false) {
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if !ss.isSessionAllowed(&ping.SendPermPub, false) {
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ss.sessionFirewallMutex.RUnlock()
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return
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return
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}
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}
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}
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}
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ss.sessionFirewallMutex.RUnlock()
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if !isIn || sinfo.timedout() {
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if !isIn || sinfo.timedout() {
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if isIn {
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if isIn {
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sinfo.close()
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sinfo.close()
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