mirror of
https://github.com/yggdrasil-network/yggdrasil-go.git
synced 2024-11-27 12:05:23 +00:00
Reimplement get/setTunnelRouting, add/removeSourceSubnet, add/removeRoute, getRoutes, getSourceSubnets, make CKR threadsafe
This commit is contained in:
parent
5b8d8a9341
commit
70774fc3de
@ -1,6 +1,13 @@
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package tuntap
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import "github.com/yggdrasil-network/yggdrasil-go/src/admin"
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import (
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"encoding/hex"
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"errors"
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"fmt"
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"net"
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"github.com/yggdrasil-network/yggdrasil-go/src/admin"
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)
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func (t *TunAdapter) SetupAdminHandlers(a *admin.AdminSocket) {
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a.AddHandler("getTunTap", []string{}, func(in admin.Info) (r admin.Info, e error) {
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@ -19,6 +26,8 @@ func (t *TunAdapter) SetupAdminHandlers(a *admin.AdminSocket) {
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}, nil
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})
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/*
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// TODO: rewrite this as I'm fairly sure it doesn't work right on many
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// platforms anyway, but it may require changes to Water
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a.AddHandler("setTunTap", []string{"name", "[tap_mode]", "[mtu]"}, func(in Info) (Info, error) {
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// Set sane defaults
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iftapmode := defaults.GetDefaults().DefaultIfTAPMode
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@ -45,92 +54,66 @@ func (t *TunAdapter) SetupAdminHandlers(a *admin.AdminSocket) {
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}, nil
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}
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})
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a.AddHandler("getTunnelRouting", []string{}, func(in Info) (Info, error) {
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enabled := false
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a.core.router.doAdmin(func() {
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enabled = a.core.router.cryptokey.isEnabled()
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*/
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a.AddHandler("getTunnelRouting", []string{}, func(in admin.Info) (admin.Info, error) {
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return admin.Info{"enabled": t.ckr.isEnabled()}, nil
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})
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return Info{"enabled": enabled}, nil
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})
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a.AddHandler("setTunnelRouting", []string{"enabled"}, func(in Info) (Info, error) {
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a.AddHandler("setTunnelRouting", []string{"enabled"}, func(in admin.Info) (admin.Info, error) {
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enabled := false
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if e, ok := in["enabled"].(bool); ok {
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enabled = e
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}
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a.core.router.doAdmin(func() {
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a.core.router.cryptokey.setEnabled(enabled)
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t.ckr.setEnabled(enabled)
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return admin.Info{"enabled": enabled}, nil
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})
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return Info{"enabled": enabled}, nil
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})
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a.AddHandler("addSourceSubnet", []string{"subnet"}, func(in Info) (Info, error) {
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var err error
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a.core.router.doAdmin(func() {
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err = a.core.router.cryptokey.addSourceSubnet(in["subnet"].(string))
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})
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if err == nil {
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return Info{"added": []string{in["subnet"].(string)}}, nil
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a.AddHandler("addSourceSubnet", []string{"subnet"}, func(in admin.Info) (admin.Info, error) {
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if err := t.ckr.addSourceSubnet(in["subnet"].(string)); err == nil {
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return admin.Info{"added": []string{in["subnet"].(string)}}, nil
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} else {
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return Info{"not_added": []string{in["subnet"].(string)}}, errors.New("Failed to add source subnet")
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return admin.Info{"not_added": []string{in["subnet"].(string)}}, errors.New("Failed to add source subnet")
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}
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})
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a.AddHandler("addRoute", []string{"subnet", "box_pub_key"}, func(in Info) (Info, error) {
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var err error
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a.core.router.doAdmin(func() {
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err = a.core.router.cryptokey.addRoute(in["subnet"].(string), in["box_pub_key"].(string))
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})
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if err == nil {
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return Info{"added": []string{fmt.Sprintf("%s via %s", in["subnet"].(string), in["box_pub_key"].(string))}}, nil
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a.AddHandler("addRoute", []string{"subnet", "box_pub_key"}, func(in admin.Info) (admin.Info, error) {
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if err := t.ckr.addRoute(in["subnet"].(string), in["box_pub_key"].(string)); err == nil {
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return admin.Info{"added": []string{fmt.Sprintf("%s via %s", in["subnet"].(string), in["box_pub_key"].(string))}}, nil
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} else {
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return Info{"not_added": []string{fmt.Sprintf("%s via %s", in["subnet"].(string), in["box_pub_key"].(string))}}, errors.New("Failed to add route")
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return admin.Info{"not_added": []string{fmt.Sprintf("%s via %s", in["subnet"].(string), in["box_pub_key"].(string))}}, errors.New("Failed to add route")
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}
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})
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a.AddHandler("getSourceSubnets", []string{}, func(in Info) (Info, error) {
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a.AddHandler("getSourceSubnets", []string{}, func(in admin.Info) (admin.Info, error) {
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var subnets []string
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a.core.router.doAdmin(func() {
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getSourceSubnets := func(snets []net.IPNet) {
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for _, subnet := range snets {
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subnets = append(subnets, subnet.String())
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}
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}
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getSourceSubnets(a.core.router.cryptokey.ipv4sources)
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getSourceSubnets(a.core.router.cryptokey.ipv6sources)
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getSourceSubnets(t.ckr.ipv4sources)
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getSourceSubnets(t.ckr.ipv6sources)
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return admin.Info{"source_subnets": subnets}, nil
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})
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return Info{"source_subnets": subnets}, nil
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})
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a.AddHandler("getRoutes", []string{}, func(in Info) (Info, error) {
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routes := make(Info)
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a.core.router.doAdmin(func() {
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a.AddHandler("getRoutes", []string{}, func(in admin.Info) (admin.Info, error) {
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routes := make(admin.Info)
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getRoutes := func(ckrs []cryptokey_route) {
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for _, ckr := range ckrs {
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routes[ckr.subnet.String()] = hex.EncodeToString(ckr.destination[:])
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}
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}
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getRoutes(a.core.router.cryptokey.ipv4routes)
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getRoutes(a.core.router.cryptokey.ipv6routes)
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getRoutes(t.ckr.ipv4routes)
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getRoutes(t.ckr.ipv6routes)
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return admin.Info{"routes": routes}, nil
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})
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return Info{"routes": routes}, nil
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})
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a.AddHandler("removeSourceSubnet", []string{"subnet"}, func(in Info) (Info, error) {
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var err error
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a.core.router.doAdmin(func() {
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err = a.core.router.cryptokey.removeSourceSubnet(in["subnet"].(string))
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})
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if err == nil {
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return Info{"removed": []string{in["subnet"].(string)}}, nil
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a.AddHandler("removeSourceSubnet", []string{"subnet"}, func(in admin.Info) (admin.Info, error) {
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if err := t.ckr.removeSourceSubnet(in["subnet"].(string)); err == nil {
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return admin.Info{"removed": []string{in["subnet"].(string)}}, nil
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} else {
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return Info{"not_removed": []string{in["subnet"].(string)}}, errors.New("Failed to remove source subnet")
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return admin.Info{"not_removed": []string{in["subnet"].(string)}}, errors.New("Failed to remove source subnet")
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}
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})
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a.AddHandler("removeRoute", []string{"subnet", "box_pub_key"}, func(in Info) (Info, error) {
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var err error
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a.core.router.doAdmin(func() {
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err = a.core.router.cryptokey.removeRoute(in["subnet"].(string), in["box_pub_key"].(string))
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})
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if err == nil {
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return Info{"removed": []string{fmt.Sprintf("%s via %s", in["subnet"].(string), in["box_pub_key"].(string))}}, nil
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a.AddHandler("removeRoute", []string{"subnet", "box_pub_key"}, func(in admin.Info) (admin.Info, error) {
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if err := t.ckr.removeRoute(in["subnet"].(string), in["box_pub_key"].(string)); err == nil {
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return admin.Info{"removed": []string{fmt.Sprintf("%s via %s", in["subnet"].(string), in["box_pub_key"].(string))}}, nil
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} else {
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return Info{"not_removed": []string{fmt.Sprintf("%s via %s", in["subnet"].(string), in["box_pub_key"].(string))}}, errors.New("Failed to remove route")
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return admin.Info{"not_removed": []string{fmt.Sprintf("%s via %s", in["subnet"].(string), in["box_pub_key"].(string))}}, errors.New("Failed to remove route")
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}
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})
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*/
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}
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@ -7,6 +7,8 @@ import (
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"fmt"
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"net"
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"sort"
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"sync"
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"sync/atomic"
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"github.com/yggdrasil-network/yggdrasil-go/src/address"
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"github.com/yggdrasil-network/yggdrasil-go/src/crypto"
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@ -17,7 +19,7 @@ import (
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type cryptokey struct {
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tun *TunAdapter
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enabled bool
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enabled atomic.Value // bool
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reconfigure chan chan error
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ipv4routes []cryptokey_route
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ipv6routes []cryptokey_route
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@ -25,6 +27,9 @@ type cryptokey struct {
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ipv6cache map[address.Address]cryptokey_route
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ipv4sources []net.IPNet
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ipv6sources []net.IPNet
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mutexroutes sync.RWMutex
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mutexcaches sync.RWMutex
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mutexsources sync.RWMutex
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}
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type cryptokey_route struct {
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@ -58,8 +63,10 @@ func (c *cryptokey) configure() error {
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c.setEnabled(c.tun.config.Current.TunnelRouting.Enable)
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// Clear out existing routes
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c.mutexroutes.Lock()
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c.ipv6routes = make([]cryptokey_route, 0)
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c.ipv4routes = make([]cryptokey_route, 0)
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c.mutexroutes.Unlock()
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// Add IPv6 routes
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for ipv6, pubkey := range c.tun.config.Current.TunnelRouting.IPv6Destinations {
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@ -76,8 +83,10 @@ func (c *cryptokey) configure() error {
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}
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// Clear out existing sources
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c.mutexsources.Lock()
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c.ipv6sources = make([]net.IPNet, 0)
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c.ipv4sources = make([]net.IPNet, 0)
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c.mutexsources.Unlock()
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// Add IPv6 sources
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c.ipv6sources = make([]net.IPNet, 0)
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@ -96,26 +105,31 @@ func (c *cryptokey) configure() error {
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}
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// Wipe the caches
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c.mutexcaches.Lock()
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c.ipv4cache = make(map[address.Address]cryptokey_route, 0)
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c.ipv6cache = make(map[address.Address]cryptokey_route, 0)
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c.mutexcaches.Unlock()
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return nil
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}
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// Enable or disable crypto-key routing.
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func (c *cryptokey) setEnabled(enabled bool) {
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c.enabled = enabled
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c.enabled.Store(true)
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}
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// Check if crypto-key routing is enabled.
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func (c *cryptokey) isEnabled() bool {
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return c.enabled
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return c.enabled.Load().(bool)
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}
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// Check whether the given address (with the address length specified in bytes)
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// matches either the current node's address, the node's routed subnet or the
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// list of subnets specified in IPv4Sources/IPv6Sources.
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func (c *cryptokey) isValidSource(addr address.Address, addrlen int) bool {
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c.mutexsources.RLock()
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defer c.mutexsources.RUnlock()
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ip := net.IP(addr[:addrlen])
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if addrlen == net.IPv6len {
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@ -158,6 +172,9 @@ func (c *cryptokey) isValidSource(addr address.Address, addrlen int) bool {
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// Adds a source subnet, which allows traffic with these source addresses to
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// be tunnelled using crypto-key routing.
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func (c *cryptokey) addSourceSubnet(cidr string) error {
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c.mutexsources.Lock()
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defer c.mutexsources.Unlock()
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// Is the CIDR we've been given valid?
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_, ipnet, err := net.ParseCIDR(cidr)
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if err != nil {
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@ -195,6 +212,11 @@ func (c *cryptokey) addSourceSubnet(cidr string) error {
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// Adds a destination route for the given CIDR to be tunnelled to the node
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// with the given BoxPubKey.
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func (c *cryptokey) addRoute(cidr string, dest string) error {
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c.mutexroutes.Lock()
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c.mutexcaches.Lock()
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defer c.mutexroutes.Unlock()
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defer c.mutexcaches.Unlock()
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// Is the CIDR we've been given valid?
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ipaddr, ipnet, err := net.ParseCIDR(cidr)
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if err != nil {
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@ -269,6 +291,8 @@ func (c *cryptokey) addRoute(cidr string, dest string) error {
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// length specified in bytes) from the crypto-key routing table. An error is
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// returned if the address is not suitable or no route was found.
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func (c *cryptokey) getPublicKeyForAddress(addr address.Address, addrlen int) (crypto.BoxPubKey, error) {
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c.mutexcaches.RLock()
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// Check if the address is a valid Yggdrasil address - if so it
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// is exempt from all CKR checking
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if addr.IsValid() {
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@ -281,10 +305,8 @@ func (c *cryptokey) getPublicKeyForAddress(addr address.Address, addrlen int) (c
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// Check if the prefix is IPv4 or IPv6
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if addrlen == net.IPv6len {
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routingtable = &c.ipv6routes
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routingcache = &c.ipv6cache
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} else if addrlen == net.IPv4len {
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routingtable = &c.ipv4routes
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routingcache = &c.ipv4cache
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} else {
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return crypto.BoxPubKey{}, errors.New("Unexpected prefix size")
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@ -292,9 +314,24 @@ func (c *cryptokey) getPublicKeyForAddress(addr address.Address, addrlen int) (c
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// Check if there's a cache entry for this addr
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if route, ok := (*routingcache)[addr]; ok {
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c.mutexcaches.RUnlock()
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return route.destination, nil
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}
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c.mutexcaches.RUnlock()
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c.mutexroutes.RLock()
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defer c.mutexroutes.RUnlock()
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// Check if the prefix is IPv4 or IPv6
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if addrlen == net.IPv6len {
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routingtable = &c.ipv6routes
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} else if addrlen == net.IPv4len {
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routingtable = &c.ipv4routes
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} else {
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return crypto.BoxPubKey{}, errors.New("Unexpected prefix size")
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}
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// No cache was found - start by converting the address into a net.IP
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ip := make(net.IP, addrlen)
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copy(ip[:addrlen], addr[:])
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@ -304,6 +341,9 @@ func (c *cryptokey) getPublicKeyForAddress(addr address.Address, addrlen int) (c
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for _, route := range *routingtable {
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// Does this subnet match the given IP?
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if route.subnet.Contains(ip) {
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c.mutexcaches.Lock()
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defer c.mutexcaches.Unlock()
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// Check if the routing cache is above a certain size, if it is evict
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// a random entry so we can make room for this one. We take advantage
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// of the fact that the iteration order is random here
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@ -329,6 +369,9 @@ func (c *cryptokey) getPublicKeyForAddress(addr address.Address, addrlen int) (c
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// Removes a source subnet, which allows traffic with these source addresses to
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// be tunnelled using crypto-key routing.
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func (c *cryptokey) removeSourceSubnet(cidr string) error {
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c.mutexsources.Lock()
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defer c.mutexsources.Unlock()
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// Is the CIDR we've been given valid?
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_, ipnet, err := net.ParseCIDR(cidr)
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if err != nil {
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@ -364,6 +407,11 @@ func (c *cryptokey) removeSourceSubnet(cidr string) error {
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// Removes a destination route for the given CIDR to be tunnelled to the node
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// with the given BoxPubKey.
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func (c *cryptokey) removeRoute(cidr string, dest string) error {
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c.mutexroutes.Lock()
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c.mutexcaches.Lock()
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defer c.mutexroutes.Unlock()
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defer c.mutexcaches.Unlock()
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// Is the CIDR we've been given valid?
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_, ipnet, err := net.ParseCIDR(cidr)
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if err != nil {
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@ -403,7 +451,7 @@ func (c *cryptokey) removeRoute(cidr string, dest string) error {
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for k := range *routingcache {
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delete(*routingcache, k)
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}
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c.tun.log.Infoln("Removed CKR destination subnet %s via %s\n", cidr, dest)
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c.tun.log.Infof("Removed CKR destination subnet %s via %s\n", cidr, dest)
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return nil
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}
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}
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