yggdrasil-go/yggdrasil.go

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package main
import "encoding/json"
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import "encoding/hex"
import "flag"
import "fmt"
import "io/ioutil"
import "net"
import "os"
import "os/signal"
import "syscall"
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import "time"
import "regexp"
import "math/rand"
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import _ "net/http/pprof"
import "net/http"
import "log"
import "runtime"
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import "yggdrasil"
import "yggdrasil/config"
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import "github.com/kardianos/minwinsvc"
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import "github.com/neilalexander/hjson-go"
import "github.com/mitchellh/mapstructure"
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type nodeConfig = config.NodeConfig
type Core = yggdrasil.Core
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type node struct {
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core Core
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}
func (n *node) init(cfg *nodeConfig, logger *log.Logger) {
boxPub, err := hex.DecodeString(cfg.EncryptionPublicKey)
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if err != nil {
panic(err)
}
boxPriv, err := hex.DecodeString(cfg.EncryptionPrivateKey)
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if err != nil {
panic(err)
}
sigPub, err := hex.DecodeString(cfg.SigningPublicKey)
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if err != nil {
panic(err)
}
sigPriv, err := hex.DecodeString(cfg.SigningPrivateKey)
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if err != nil {
panic(err)
}
n.core.DEBUG_init(boxPub, boxPriv, sigPub, sigPriv)
n.core.DEBUG_setLogger(logger)
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logger.Println("Starting interface...")
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n.core.DEBUG_setupAndStartGlobalTCPInterface(cfg.Listen) // Listen for peers on TCP
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n.core.DEBUG_setupAndStartGlobalUDPInterface(cfg.Listen) // Also listen on UDP, TODO allow separate configuration for ip/port to listen on each of these
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logger.Println("Started interface")
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logger.Println("Starting admin socket...")
n.core.DEBUG_setupAndStartAdminInterface(cfg.AdminListen)
logger.Println("Started admin socket")
for _, pBoxStr := range cfg.AllowedEncryptionPublicKeys {
n.core.DEBUG_addAllowedEncryptionPublicKey(pBoxStr)
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}
for _, ll := range cfg.MulticastInterfaces {
ifceExpr, err := regexp.Compile(ll)
if err != nil {
panic(err)
}
n.core.DEBUG_setIfceExpr(ifceExpr)
}
n.core.DEBUG_setupAndStartMulticastInterface()
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go func() {
if len(cfg.Peers) == 0 {
return
}
for {
for _, p := range cfg.Peers {
n.core.DEBUG_addPeer(p)
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time.Sleep(time.Second)
}
time.Sleep(time.Minute)
}
}()
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}
func generateConfig(isAutoconf bool) *nodeConfig {
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core := Core{}
bpub, bpriv := core.DEBUG_newBoxKeys()
spub, spriv := core.DEBUG_newSigKeys()
cfg := nodeConfig{}
if isAutoconf {
cfg.Listen = "[::]:0"
} else {
r1 := rand.New(rand.NewSource(time.Now().UnixNano()))
cfg.Listen = fmt.Sprintf("[::]:%d", r1.Intn(65534-32768)+32768)
}
cfg.AdminListen = "[::1]:9001"
cfg.EncryptionPublicKey = hex.EncodeToString(bpub[:])
cfg.EncryptionPrivateKey = hex.EncodeToString(bpriv[:])
cfg.SigningPublicKey = hex.EncodeToString(spub[:])
cfg.SigningPrivateKey = hex.EncodeToString(spriv[:])
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cfg.Peers = []string{}
cfg.AllowedEncryptionPublicKeys = []string{}
cfg.MulticastInterfaces = []string{".*"}
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cfg.IfName = core.DEBUG_GetTUNDefaultIfName()
cfg.IfMTU = core.DEBUG_GetTUNDefaultIfMTU()
cfg.IfTAPMode = core.DEBUG_GetTUNDefaultIfTAPMode()
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return &cfg
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}
func doGenconf() string {
cfg := generateConfig(false)
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bs, err := hjson.Marshal(cfg)
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if err != nil {
panic(err)
}
return string(bs)
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}
var pprof = flag.Bool("pprof", false, "Run pprof, see http://localhost:6060/debug/pprof/")
var genconf = flag.Bool("genconf", false, "print a new config to stdout")
var useconf = flag.Bool("useconf", false, "read config from stdin")
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var useconffile = flag.String("useconffile", "", "read config from specified file path")
var normaliseconf = flag.Bool("normaliseconf", false, "use in combination with either -useconf or -useconffile, outputs your configuration normalised")
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var autoconf = flag.Bool("autoconf", false, "automatic mode (dynamic IP, peer with IPv6 neighbors)")
func main() {
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flag.Parse()
var cfg *nodeConfig
switch {
case *autoconf:
cfg = generateConfig(true)
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case *useconffile != "" || *useconf:
var config []byte
var err error
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if *useconffile != "" {
config, err = ioutil.ReadFile(*useconffile)
} else {
config, err = ioutil.ReadAll(os.Stdin)
}
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if err != nil {
panic(err)
}
cfg = generateConfig(false)
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var dat map[string]interface{}
if err := hjson.Unmarshal(config, &dat); err != nil {
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panic(err)
}
confJson, err := json.Marshal(dat)
if err != nil {
panic(err)
}
json.Unmarshal(confJson, &cfg)
// For now we will do a little bit to help the user adjust their
// configuration to match the new configuration format
changes := map[string]string{
"Multicast": "",
"LinkLocal": "MulticastInterfaces",
"BoxPub": "EncryptionPublicKey",
"BoxPriv": "EncryptionPrivateKey",
"SigPub": "SigningPublicKey",
"SigPriv": "SigningPrivateKey",
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"AllowedBoxPubs": "AllowedEncryptionPublicKeys",
}
for from, to := range changes {
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if _, ok := dat[from]; ok {
if to == "" {
if !*normaliseconf {
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log.Println("Warning: Deprecated config option", from, "- please remove")
}
} else {
if !*normaliseconf {
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log.Println("Warning: Deprecated config option", from, "- please rename to", to)
}
if _, ok := dat[to]; !ok {
dat[to] = dat[from]
}
}
}
}
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if err = mapstructure.Decode(dat, &cfg); err != nil {
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panic(err)
}
if *normaliseconf {
bs, err := hjson.Marshal(cfg)
if err != nil {
panic(err)
}
fmt.Println(string(bs))
return
}
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case *genconf:
fmt.Println(doGenconf())
default:
flag.PrintDefaults()
}
if cfg == nil {
return
}
logger := log.New(os.Stdout, "", log.Flags())
if *pprof {
runtime.SetBlockProfileRate(1)
go func() { log.Println(http.ListenAndServe("localhost:6060", nil)) }()
}
// Setup
logger.Println("Initializing...")
n := node{}
n.init(cfg, logger)
if cfg.IfName != "none" {
logger.Println("Starting TUN/TAP...")
} else {
logger.Println("Not starting TUN/TAP")
}
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//n.core.DEBUG_startTun(cfg.IfName) // 1280, the smallest supported MTU
n.core.DEBUG_startTunWithMTU(cfg.IfName, cfg.IfTAPMode, cfg.IfMTU) // Largest supported MTU
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defer func() {
logger.Println("Closing...")
n.core.DEBUG_stopTun()
}()
logger.Println("Started...")
address := (*n.core.GetAddress())[:]
subnet := (*n.core.GetSubnet())[:]
subnet = append(subnet, 0, 0, 0, 0, 0, 0, 0, 0)
logger.Printf("Your IPv6 address is %s", net.IP(address).String())
logger.Printf("Your IPv6 subnet is %s/64", net.IP(subnet).String())
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// Catch interrupt to exit gracefully
c := make(chan os.Signal, 1)
signal.Notify(c, os.Interrupt, syscall.SIGTERM)
// Create a function to capture the service being stopped on Windows
winTerminate := func() {
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c <- os.Interrupt
}
minwinsvc.SetOnExit(winTerminate)
// Wait for the terminate/interrupt signal
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<-c
logger.Println("Stopping...")
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}