2017-12-29 04:16:20 +00:00
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package yggdrasil
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2018-06-12 22:50:08 +00:00
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import (
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"encoding/hex"
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"fmt"
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"io/ioutil"
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"log"
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"net"
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"regexp"
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"yggdrasil/config"
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2018-07-07 11:08:52 +00:00
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"yggdrasil/defaults"
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2018-06-12 22:50:08 +00:00
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)
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2017-12-29 04:16:20 +00:00
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2018-05-27 21:13:37 +00:00
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// The Core object represents the Yggdrasil node. You should create a Core
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// object for each Yggdrasil node you plan to run.
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2017-12-29 04:16:20 +00:00
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type Core struct {
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2018-01-04 22:37:51 +00:00
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// This is the main data structure that holds everything else for a node
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boxPub boxPubKey
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boxPriv boxPrivKey
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sigPub sigPubKey
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sigPriv sigPrivKey
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switchTable switchTable
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peers peers
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sigs sigManager
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sessions sessions
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router router
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dht dht
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tun tunDevice
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2018-01-21 00:17:15 +00:00
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admin admin
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2018-01-04 22:37:51 +00:00
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searches searches
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2018-05-23 10:13:53 +00:00
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multicast multicast
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2018-05-27 18:22:21 +00:00
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tcp tcpInterface
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2018-01-04 22:37:51 +00:00
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log *log.Logger
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2018-05-23 10:13:53 +00:00
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ifceExpr []*regexp.Regexp // the zone of link-local IPv6 peers must match this
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2017-12-29 04:16:20 +00:00
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}
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func (c *Core) init(bpub *boxPubKey,
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2018-01-04 22:37:51 +00:00
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bpriv *boxPrivKey,
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spub *sigPubKey,
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spriv *sigPrivKey) {
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// TODO separate init and start functions
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// Init sets up structs
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// Start launches goroutines that depend on structs being set up
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2018-01-26 23:30:51 +00:00
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// This is pretty much required to completely avoid race conditions
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2018-01-04 22:37:51 +00:00
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util_initByteStore()
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2018-05-27 21:13:37 +00:00
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if c.log == nil {
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c.log = log.New(ioutil.Discard, "", 0)
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}
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2018-01-04 22:37:51 +00:00
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c.boxPub, c.boxPriv = *bpub, *bpriv
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c.sigPub, c.sigPriv = *spub, *spriv
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2018-05-07 00:48:26 +00:00
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c.admin.core = c
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2018-01-04 22:37:51 +00:00
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c.sigs.init()
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c.searches.init(c)
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c.dht.init(c)
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c.sessions.init(c)
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2018-05-23 10:13:53 +00:00
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c.multicast.init(c)
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2018-01-04 22:37:51 +00:00
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c.peers.init(c)
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c.router.init(c)
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c.switchTable.init(c, c.sigPub) // TODO move before peers? before router?
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c.tun.init(c)
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2017-12-29 04:16:20 +00:00
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}
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2018-05-27 21:13:37 +00:00
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// Starts up Yggdrasil using the provided NodeConfig, and outputs debug logging
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// through the provided log.Logger. The started stack will include TCP and UDP
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// sockets, a multicast discovery socket, an admin socket, router, switch and
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// DHT node.
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func (c *Core) Start(nc *config.NodeConfig, log *log.Logger) error {
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c.log = log
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c.log.Println("Starting up...")
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var boxPub boxPubKey
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var boxPriv boxPrivKey
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var sigPub sigPubKey
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var sigPriv sigPrivKey
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boxPubHex, err := hex.DecodeString(nc.EncryptionPublicKey)
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if err != nil {
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return err
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}
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boxPrivHex, err := hex.DecodeString(nc.EncryptionPrivateKey)
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if err != nil {
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return err
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}
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sigPubHex, err := hex.DecodeString(nc.SigningPublicKey)
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if err != nil {
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return err
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}
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sigPrivHex, err := hex.DecodeString(nc.SigningPrivateKey)
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if err != nil {
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return err
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}
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copy(boxPub[:], boxPubHex)
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copy(boxPriv[:], boxPrivHex)
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copy(sigPub[:], sigPubHex)
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copy(sigPriv[:], sigPrivHex)
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c.init(&boxPub, &boxPriv, &sigPub, &sigPriv)
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c.admin.init(c, nc.AdminListen)
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if err := c.tcp.init(c, nc.Listen); err != nil {
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c.log.Println("Failed to start TCP interface")
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return err
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}
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2018-06-24 00:08:32 +00:00
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if err := c.switchTable.start(); err != nil {
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c.log.Println("Failed to start switch")
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return err
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}
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2018-05-27 21:13:37 +00:00
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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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return err
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}
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if err := c.admin.start(); err != nil {
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c.log.Println("Failed to start admin socket")
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return err
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}
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if err := c.multicast.start(); err != nil {
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c.log.Println("Failed to start multicast interface")
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return err
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}
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2018-05-27 21:35:30 +00:00
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ip := net.IP(c.router.addr[:]).String()
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2018-06-14 12:58:07 +00:00
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if err := c.tun.start(nc.IfName, nc.IfTAPMode, fmt.Sprintf("%s/%d", ip, 8*len(address_prefix)-1), nc.IfMTU); err != nil {
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2018-05-27 21:35:30 +00:00
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c.log.Println("Failed to start TUN/TAP")
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return err
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}
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2018-05-27 21:13:37 +00:00
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c.log.Println("Startup complete")
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return nil
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}
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// Stops the Yggdrasil node.
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func (c *Core) Stop() {
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c.log.Println("Stopping...")
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c.tun.close()
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}
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// Generates a new encryption keypair. The encryption keys are used to
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// encrypt traffic and to derive the IPv6 address/subnet of the node.
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func (c *Core) NewEncryptionKeys() (*boxPubKey, *boxPrivKey) {
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return newBoxKeys()
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}
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// Generates a new signing keypair. The signing keys are used to derive the
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// structure of the spanning tree.
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func (c *Core) NewSigningKeys() (*sigPubKey, *sigPrivKey) {
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return newSigKeys()
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}
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// Gets the node ID.
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func (c *Core) GetNodeID() *NodeID {
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2018-01-04 22:37:51 +00:00
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return getNodeID(&c.boxPub)
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2017-12-29 04:16:20 +00:00
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}
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2018-05-27 21:13:37 +00:00
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// Gets the tree ID.
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2017-12-29 04:16:20 +00:00
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func (c *Core) GetTreeID() *TreeID {
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2018-01-04 22:37:51 +00:00
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return getTreeID(&c.sigPub)
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2017-12-29 04:16:20 +00:00
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}
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2018-05-21 15:15:31 +00:00
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2018-05-27 21:13:37 +00:00
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// Gets the IPv6 address of the Yggdrasil node. This is always a /128.
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func (c *Core) GetAddress() *net.IP {
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address := net.IP(address_addrForNodeID(c.GetNodeID())[:])
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return &address
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}
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// Gets the routed IPv6 subnet of the Yggdrasil node. This is always a /64.
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func (c *Core) GetSubnet() *net.IPNet {
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subnet := address_subnetForNodeID(c.GetNodeID())[:]
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subnet = append(subnet, 0, 0, 0, 0, 0, 0, 0, 0)
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2018-06-02 20:21:05 +00:00
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return &net.IPNet{IP: subnet, Mask: net.CIDRMask(64, 128)}
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2018-05-27 21:13:37 +00:00
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}
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// Sets the output logger of the Yggdrasil node after startup. This may be
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// useful if you want to redirect the output later.
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func (c *Core) SetLogger(log *log.Logger) {
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c.log = log
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}
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// Adds a peer. This should be specified in the peer URI format, i.e.
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// tcp://a.b.c.d:e, udp://a.b.c.d:e, socks://a.b.c.d:e/f.g.h.i:j
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func (c *Core) AddPeer(addr string) error {
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return c.admin.addPeer(addr)
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}
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// Adds an expression to select multicast interfaces for peer discovery. This
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// should be done before calling Start. This function can be called multiple
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// times to add multiple search expressions.
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func (c *Core) AddMulticastInterfaceExpr(expr *regexp.Regexp) {
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c.ifceExpr = append(c.ifceExpr, expr)
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}
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// Adds an allowed public key. This allow peerings to be restricted only to
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// keys that you have selected.
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func (c *Core) AddAllowedEncryptionPublicKey(boxStr string) error {
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return c.admin.addAllowedEncryptionPublicKey(boxStr)
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}
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2018-07-07 11:08:52 +00:00
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// Gets the default admin listen address for your platform.
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func (c *Core) GetAdminDefaultListen() string {
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return defaults.GetDefaults().DefaultAdminListen
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}
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2018-05-27 21:13:37 +00:00
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// Gets the default TUN/TAP interface name for your platform.
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func (c *Core) GetTUNDefaultIfName() string {
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2018-07-07 11:08:52 +00:00
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return defaults.GetDefaults().DefaultIfName
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2018-05-27 21:13:37 +00:00
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}
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// Gets the default TUN/TAP interface MTU for your platform. This can be as high
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// as 65535, depending on platform, but is never lower than 1280.
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func (c *Core) GetTUNDefaultIfMTU() int {
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2018-07-07 11:08:52 +00:00
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return defaults.GetDefaults().DefaultIfMTU
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2018-05-27 21:13:37 +00:00
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}
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// Gets the maximum supported TUN/TAP interface MTU for your platform. This
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// can be as high as 65535, depending on platform, but is never lower than 1280.
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func (c *Core) GetTUNMaximumIfMTU() int {
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2018-07-07 11:08:52 +00:00
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return defaults.GetDefaults().MaximumIfMTU
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2018-05-27 21:13:37 +00:00
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}
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// Gets the default TUN/TAP interface mode for your platform.
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func (c *Core) GetTUNDefaultIfTAPMode() bool {
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2018-07-07 11:08:52 +00:00
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return defaults.GetDefaults().DefaultIfTAPMode
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2018-05-27 21:13:37 +00:00
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}
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// Gets the current TUN/TAP interface name.
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func (c *Core) GetTUNIfName() string {
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return c.tun.iface.Name()
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2018-05-21 15:15:31 +00:00
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}
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2018-05-27 21:13:37 +00:00
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// Gets the current TUN/TAP interface MTU.
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func (c *Core) GetTUNIfMTU() int {
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return c.tun.mtu
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2018-05-21 15:15:31 +00:00
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}
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