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1 Commits

Author SHA1 Message Date
Ashley Mensah
ab987f17f0 update client code ios build tags to add tvos target 2026-01-29 12:04:48 +01:00
310 changed files with 1323 additions and 36164 deletions

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@@ -1,6 +0,0 @@
.env
.env.*
*.pem
*.key
*.crt
*.p12

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@@ -23,7 +23,7 @@ jobs:
- name: Check for problematic license dependencies
run: |
echo "Checking for dependencies on management/, signal/, relay/, and proxy/ packages..."
echo "Checking for dependencies on management/, signal/, and relay/ packages..."
echo ""
# Find all directories except the problematic ones and system dirs
@@ -31,7 +31,7 @@ jobs:
while IFS= read -r dir; do
echo "=== Checking $dir ==="
# Search for problematic imports, excluding test files
RESULTS=$(grep -r "github.com/netbirdio/netbird/\(management\|signal\|relay\|proxy\)" "$dir" --include="*.go" 2>/dev/null | grep -v "_test.go" | grep -v "test_" | grep -v "/test/" || true)
RESULTS=$(grep -r "github.com/netbirdio/netbird/\(management\|signal\|relay\)" "$dir" --include="*.go" 2>/dev/null | grep -v "_test.go" | grep -v "test_" | grep -v "/test/" || true)
if [ -n "$RESULTS" ]; then
echo "❌ Found problematic dependencies:"
echo "$RESULTS"
@@ -39,11 +39,11 @@ jobs:
else
echo "✓ No problematic dependencies found"
fi
done < <(find . -maxdepth 1 -type d -not -name "." -not -name "management" -not -name "signal" -not -name "relay" -not -name "proxy" -not -name ".git*" | sort)
done < <(find . -maxdepth 1 -type d -not -name "." -not -name "management" -not -name "signal" -not -name "relay" -not -name ".git*" | sort)
echo ""
if [ $FOUND_ISSUES -eq 1 ]; then
echo "❌ Found dependencies on management/, signal/, relay/, or proxy/ packages"
echo "❌ Found dependencies on management/, signal/, or relay/ packages"
echo "These packages are licensed under AGPLv3 and must not be imported by BSD-licensed code"
exit 1
else
@@ -88,7 +88,7 @@ jobs:
IMPORTERS=$(go list -json -deps ./... 2>/dev/null | jq -r "select(.Imports[]? == \"$package\") | .ImportPath")
# Check if any importer is NOT in management/signal/relay
BSD_IMPORTER=$(echo "$IMPORTERS" | grep -v "github.com/netbirdio/netbird/\(management\|signal\|relay\|proxy\)" | head -1)
BSD_IMPORTER=$(echo "$IMPORTERS" | grep -v "github.com/netbirdio/netbird/\(management\|signal\|relay\)" | head -1)
if [ -n "$BSD_IMPORTER" ]; then
echo "❌ $package ($license) is imported by BSD-licensed code: $BSD_IMPORTER"

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@@ -43,5 +43,5 @@ jobs:
run: git --no-pager diff --exit-code
- name: Test
run: NETBIRD_STORE_ENGINE=${{ matrix.store }} CI=true go test -tags=devcert -exec 'sudo --preserve-env=CI,NETBIRD_STORE_ENGINE' -timeout 5m -p 1 $(go list ./... | grep -v -e /management -e /signal -e /relay -e /proxy)
run: NETBIRD_STORE_ENGINE=${{ matrix.store }} CI=true go test -tags=devcert -exec 'sudo --preserve-env=CI,NETBIRD_STORE_ENGINE' -timeout 5m -p 1 $(go list ./... | grep -v /management)

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@@ -46,5 +46,6 @@ jobs:
time go test -timeout 1m -failfast ./client/iface/...
time go test -timeout 1m -failfast ./route/...
time go test -timeout 1m -failfast ./sharedsock/...
time go test -timeout 1m -failfast ./signal/...
time go test -timeout 1m -failfast ./util/...
time go test -timeout 1m -failfast ./version/...

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@@ -144,7 +144,7 @@ jobs:
run: git --no-pager diff --exit-code
- name: Test
run: CGO_ENABLED=1 GOARCH=${{ matrix.arch }} CI=true go test -tags devcert -exec 'sudo' -timeout 10m -p 1 $(go list ./... | grep -v -e /management -e /signal -e /relay -e /proxy)
run: CGO_ENABLED=1 GOARCH=${{ matrix.arch }} CI=true go test -tags devcert -exec 'sudo' -timeout 10m -p 1 $(go list ./... | grep -v -e /management -e /signal -e /relay)
test_client_on_docker:
name: "Client (Docker) / Unit"
@@ -204,7 +204,7 @@ jobs:
sh -c ' \
apk update; apk add --no-cache \
ca-certificates iptables ip6tables dbus dbus-dev libpcap-dev build-base; \
go test -buildvcs=false -tags devcert -v -timeout 10m -p 1 $(go list -buildvcs=false ./... | grep -v -e /management -e /signal -e /relay -e /proxy -e /client/ui -e /upload-server)
go test -buildvcs=false -tags devcert -v -timeout 10m -p 1 $(go list -buildvcs=false ./... | grep -v -e /management -e /signal -e /relay -e /client/ui -e /upload-server)
'
test_relay:
@@ -261,53 +261,6 @@ jobs:
-exec 'sudo' \
-timeout 10m -p 1 ./relay/... ./shared/relay/...
test_proxy:
name: "Proxy / Unit"
needs: [build-cache]
strategy:
fail-fast: false
matrix:
arch: [ '386','amd64' ]
runs-on: ubuntu-22.04
steps:
- name: Checkout code
uses: actions/checkout@v4
- name: Install Go
uses: actions/setup-go@v5
with:
go-version-file: "go.mod"
cache: false
- name: Install dependencies
run: sudo apt update && sudo apt install -y gcc-multilib g++-multilib libc6-dev-i386
- name: Get Go environment
run: |
echo "cache=$(go env GOCACHE)" >> $GITHUB_ENV
echo "modcache=$(go env GOMODCACHE)" >> $GITHUB_ENV
- name: Cache Go modules
uses: actions/cache/restore@v4
with:
path: |
${{ env.cache }}
${{ env.modcache }}
key: ${{ runner.os }}-gotest-cache-${{ hashFiles('**/go.sum') }}
restore-keys: |
${{ runner.os }}-gotest-cache-
- name: Install modules
run: go mod tidy
- name: check git status
run: git --no-pager diff --exit-code
- name: Test
run: |
CGO_ENABLED=1 GOARCH=${{ matrix.arch }} \
go test -timeout 10m -p 1 ./proxy/...
test_signal:
name: "Signal / Unit"
needs: [build-cache]

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@@ -63,7 +63,7 @@ jobs:
- run: PsExec64 -s -w ${{ github.workspace }} C:\hostedtoolcache\windows\go\${{ steps.go.outputs.go-version }}\x64\bin\go.exe env -w GOMODCACHE=${{ env.cache }}
- run: PsExec64 -s -w ${{ github.workspace }} C:\hostedtoolcache\windows\go\${{ steps.go.outputs.go-version }}\x64\bin\go.exe env -w GOCACHE=${{ env.modcache }}
- run: PsExec64 -s -w ${{ github.workspace }} C:\hostedtoolcache\windows\go\${{ steps.go.outputs.go-version }}\x64\bin\go.exe mod tidy
- run: echo "files=$(go list ./... | ForEach-Object { $_ } | Where-Object { $_ -notmatch '/management' } | Where-Object { $_ -notmatch '/relay' } | Where-Object { $_ -notmatch '/signal' } | Where-Object { $_ -notmatch '/proxy' })" >> $env:GITHUB_ENV
- run: echo "files=$(go list ./... | ForEach-Object { $_ } | Where-Object { $_ -notmatch '/management' } | Where-Object { $_ -notmatch '/relay' } | Where-Object { $_ -notmatch '/signal' })" >> $env:GITHUB_ENV
- name: test
run: PsExec64 -s -w ${{ github.workspace }} cmd.exe /c "C:\hostedtoolcache\windows\go\${{ steps.go.outputs.go-version }}\x64\bin\go.exe test -tags=devcert -timeout 10m -p 1 ${{ env.files }} > test-out.txt 2>&1"

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@@ -20,7 +20,7 @@ jobs:
uses: codespell-project/actions-codespell@v2
with:
ignore_words_list: erro,clienta,hastable,iif,groupd,testin,groupe,cros,ans
skip: go.mod,go.sum,**/proxy/web/**
skip: go.mod,go.sum
golangci:
strategy:
fail-fast: false

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@@ -9,7 +9,7 @@ on:
pull_request:
env:
SIGN_PIPE_VER: "v0.1.1"
SIGN_PIPE_VER: "v0.1.0"
GORELEASER_VER: "v2.3.2"
PRODUCT_NAME: "NetBird"
COPYRIGHT: "NetBird GmbH"

1
.gitignore vendored
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@@ -2,7 +2,6 @@
.run
*.iml
dist/
!proxy/web/dist/
bin/
.env
conf.json

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@@ -106,26 +106,6 @@ builds:
- -s -w -X github.com/netbirdio/netbird/version.version={{.Version}} -X main.commit={{.Commit}} -X main.date={{.CommitDate}} -X main.builtBy=goreleaser
mod_timestamp: "{{ .CommitTimestamp }}"
- id: netbird-server
dir: combined
env:
- CGO_ENABLED=1
- >-
{{- if eq .Runtime.Goos "linux" }}
{{- if eq .Arch "arm64"}}CC=aarch64-linux-gnu-gcc{{- end }}
{{- if eq .Arch "arm"}}CC=arm-linux-gnueabihf-gcc{{- end }}
{{- end }}
binary: netbird-server
goos:
- linux
goarch:
- amd64
- arm64
- arm
ldflags:
- -s -w -X github.com/netbirdio/netbird/version.version={{.Version}} -X main.commit={{.Commit}} -X main.date={{.CommitDate}} -X main.builtBy=goreleaser
mod_timestamp: "{{ .CommitTimestamp }}"
- id: netbird-upload
dir: upload-server
env: [CGO_ENABLED=0]
@@ -540,55 +520,6 @@ dockers:
- "--label=org.opencontainers.image.revision={{.FullCommit}}"
- "--label=org.opencontainers.image.source=https://github.com/netbirdio/{{.ProjectName}}"
- "--label=maintainer=dev@netbird.io"
- image_templates:
- netbirdio/netbird-server:{{ .Version }}-amd64
- ghcr.io/netbirdio/netbird-server:{{ .Version }}-amd64
ids:
- netbird-server
goarch: amd64
use: buildx
dockerfile: combined/Dockerfile
build_flag_templates:
- "--platform=linux/amd64"
- "--label=org.opencontainers.image.created={{.Date}}"
- "--label=org.opencontainers.image.title={{.ProjectName}}"
- "--label=org.opencontainers.image.version={{.Version}}"
- "--label=org.opencontainers.image.revision={{.FullCommit}}"
- "--label=org.opencontainers.image.source=https://github.com/netbirdio/{{.ProjectName}}"
- "--label=maintainer=dev@netbird.io"
- image_templates:
- netbirdio/netbird-server:{{ .Version }}-arm64v8
- ghcr.io/netbirdio/netbird-server:{{ .Version }}-arm64v8
ids:
- netbird-server
goarch: arm64
use: buildx
dockerfile: combined/Dockerfile
build_flag_templates:
- "--platform=linux/arm64"
- "--label=org.opencontainers.image.created={{.Date}}"
- "--label=org.opencontainers.image.title={{.ProjectName}}"
- "--label=org.opencontainers.image.version={{.Version}}"
- "--label=org.opencontainers.image.revision={{.FullCommit}}"
- "--label=org.opencontainers.image.source=https://github.com/netbirdio/{{.ProjectName}}"
- "--label=maintainer=dev@netbird.io"
- image_templates:
- netbirdio/netbird-server:{{ .Version }}-arm
- ghcr.io/netbirdio/netbird-server:{{ .Version }}-arm
ids:
- netbird-server
goarch: arm
goarm: 6
use: buildx
dockerfile: combined/Dockerfile
build_flag_templates:
- "--platform=linux/arm"
- "--label=org.opencontainers.image.created={{.Date}}"
- "--label=org.opencontainers.image.title={{.ProjectName}}"
- "--label=org.opencontainers.image.version={{.Version}}"
- "--label=org.opencontainers.image.revision={{.FullCommit}}"
- "--label=org.opencontainers.image.source=https://github.com/netbirdio/{{.ProjectName}}"
- "--label=maintainer=dev@netbird.io"
docker_manifests:
- name_template: netbirdio/netbird:{{ .Version }}
image_templates:
@@ -667,18 +598,6 @@ docker_manifests:
- netbirdio/upload:{{ .Version }}-arm
- netbirdio/upload:{{ .Version }}-amd64
- name_template: netbirdio/netbird-server:{{ .Version }}
image_templates:
- netbirdio/netbird-server:{{ .Version }}-arm64v8
- netbirdio/netbird-server:{{ .Version }}-arm
- netbirdio/netbird-server:{{ .Version }}-amd64
- name_template: netbirdio/netbird-server:latest
image_templates:
- netbirdio/netbird-server:{{ .Version }}-arm64v8
- netbirdio/netbird-server:{{ .Version }}-arm
- netbirdio/netbird-server:{{ .Version }}-amd64
- name_template: ghcr.io/netbirdio/netbird:{{ .Version }}
image_templates:
- ghcr.io/netbirdio/netbird:{{ .Version }}-arm64v8
@@ -756,19 +675,6 @@ docker_manifests:
- ghcr.io/netbirdio/upload:{{ .Version }}-arm64v8
- ghcr.io/netbirdio/upload:{{ .Version }}-arm
- ghcr.io/netbirdio/upload:{{ .Version }}-amd64
- name_template: ghcr.io/netbirdio/netbird-server:{{ .Version }}
image_templates:
- ghcr.io/netbirdio/netbird-server:{{ .Version }}-arm64v8
- ghcr.io/netbirdio/netbird-server:{{ .Version }}-arm
- ghcr.io/netbirdio/netbird-server:{{ .Version }}-amd64
- name_template: ghcr.io/netbirdio/netbird-server:latest
image_templates:
- ghcr.io/netbirdio/netbird-server:{{ .Version }}-arm64v8
- ghcr.io/netbirdio/netbird-server:{{ .Version }}-arm
- ghcr.io/netbirdio/netbird-server:{{ .Version }}-amd64
brews:
- ids:
- default

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@@ -60,8 +60,8 @@
https://github.com/user-attachments/assets/10cec749-bb56-4ab3-97af-4e38850108d2
### Self-Host NetBird (Video)
[![Watch the video](https://img.youtube.com/vi/bZAgpT6nzaQ/0.jpg)](https://youtu.be/bZAgpT6nzaQ)
### NetBird on Lawrence Systems (Video)
[![Watch the video](https://img.youtube.com/vi/Kwrff6h0rEw/0.jpg)](https://www.youtube.com/watch?v=Kwrff6h0rEw)
### Key features

View File

@@ -282,9 +282,13 @@ func foregroundLogin(ctx context.Context, cmd *cobra.Command, config *profileman
}
defer authClient.Close()
needsLogin, err := authClient.IsLoginRequired(ctx)
if err != nil {
return fmt.Errorf("check login required: %v", err)
needsLogin := false
err, isAuthError := authClient.Login(ctx, "", "")
if isAuthError {
needsLogin = true
} else if err != nil {
return fmt.Errorf("login check failed: %v", err)
}
jwtToken := ""

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@@ -31,14 +31,6 @@ var (
ErrConfigNotInitialized = errors.New("config not initialized")
)
// PeerConnStatus is a peer's connection status.
type PeerConnStatus = peer.ConnStatus
const (
// PeerStatusConnected indicates the peer is in connected state.
PeerStatusConnected = peer.StatusConnected
)
// Client manages a netbird embedded client instance.
type Client struct {
deviceName string
@@ -77,10 +69,6 @@ type Options struct {
StatePath string
// DisableClientRoutes disables the client routes
DisableClientRoutes bool
// BlockInbound blocks all inbound connections from peers
BlockInbound bool
// WireguardPort is the port for the WireGuard interface. Use 0 for a random port.
WireguardPort *int
}
// validateCredentials checks that exactly one credential type is provided
@@ -149,8 +137,6 @@ func New(opts Options) (*Client, error) {
PreSharedKey: &opts.PreSharedKey,
DisableServerRoutes: &t,
DisableClientRoutes: &opts.DisableClientRoutes,
BlockInbound: &opts.BlockInbound,
WireguardPort: opts.WireguardPort,
}
if opts.ConfigPath != "" {
config, err = profilemanager.UpdateOrCreateConfig(input)
@@ -170,7 +156,6 @@ func New(opts Options) (*Client, error) {
setupKey: opts.SetupKey,
jwtToken: opts.JWTToken,
config: config,
recorder: peer.NewRecorder(config.ManagementURL.String()),
}, nil
}
@@ -192,7 +177,6 @@ func (c *Client) Start(startCtx context.Context) error {
// nolint:staticcheck
ctx = context.WithValue(ctx, system.DeviceNameCtxKey, c.deviceName)
authClient, err := auth.NewAuth(ctx, c.config.PrivateKey, c.config.ManagementURL, c.config)
if err != nil {
return fmt.Errorf("create auth client: %w", err)
@@ -202,7 +186,10 @@ func (c *Client) Start(startCtx context.Context) error {
if err, _ := authClient.Login(ctx, c.setupKey, c.jwtToken); err != nil {
return fmt.Errorf("login: %w", err)
}
client := internal.NewConnectClient(ctx, c.config, c.recorder, false)
recorder := peer.NewRecorder(c.config.ManagementURL.String())
c.recorder = recorder
client := internal.NewConnectClient(ctx, c.config, recorder, false)
client.SetSyncResponsePersistence(true)
// either startup error (permanent backoff err) or nil err (successful engine up)
@@ -355,9 +342,14 @@ func (c *Client) NewHTTPClient() *http.Client {
// Status returns the current status of the client.
func (c *Client) Status() (peer.FullStatus, error) {
c.mu.Lock()
recorder := c.recorder
connect := c.connect
c.mu.Unlock()
if recorder == nil {
return peer.FullStatus{}, errors.New("client not started")
}
if connect != nil {
engine := connect.Engine()
if engine != nil {
@@ -365,7 +357,7 @@ func (c *Client) Status() (peer.FullStatus, error) {
}
}
return c.recorder.GetFullStatus(), nil
return recorder.GetFullStatus(), nil
}
// GetLatestSyncResponse returns the latest sync response from the management server.

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@@ -483,12 +483,7 @@ func (r *router) DeleteRouteRule(rule firewall.Rule) error {
}
if nftRule.Handle == 0 {
log.Warnf("route rule %s has no handle, removing stale entry", ruleKey)
if err := r.decrementSetCounter(nftRule); err != nil {
log.Warnf("decrement set counter for stale rule %s: %v", ruleKey, err)
}
delete(r.rules, ruleKey)
return nil
return fmt.Errorf("route rule %s has no handle", ruleKey)
}
if err := r.deleteNftRule(nftRule, ruleKey); err != nil {
@@ -665,32 +660,13 @@ func (r *router) AddNatRule(pair firewall.RouterPair) error {
}
if err := r.conn.Flush(); err != nil {
r.rollbackRules(pair)
return fmt.Errorf("insert rules for %s: %w", pair.Destination, err)
// TODO: rollback ipset counter
return fmt.Errorf("insert rules for %s: %v", pair.Destination, err)
}
return nil
}
// rollbackRules cleans up unflushed rules and their set counters after a flush failure.
func (r *router) rollbackRules(pair firewall.RouterPair) {
keys := []string{
firewall.GenKey(firewall.ForwardingFormat, pair),
firewall.GenKey(firewall.PreroutingFormat, pair),
firewall.GenKey(firewall.PreroutingFormat, firewall.GetInversePair(pair)),
}
for _, key := range keys {
rule, ok := r.rules[key]
if !ok {
continue
}
if err := r.decrementSetCounter(rule); err != nil {
log.Warnf("rollback set counter for %s: %v", key, err)
}
delete(r.rules, key)
}
}
// addNatRule inserts a nftables rule to the conn client flush queue
func (r *router) addNatRule(pair firewall.RouterPair) error {
sourceExp, err := r.applyNetwork(pair.Source, nil, true)
@@ -952,30 +928,18 @@ func (r *router) addLegacyRouteRule(pair firewall.RouterPair) error {
func (r *router) removeLegacyRouteRule(pair firewall.RouterPair) error {
ruleKey := firewall.GenKey(firewall.ForwardingFormat, pair)
rule, exists := r.rules[ruleKey]
if !exists {
return nil
}
if rule.Handle == 0 {
log.Warnf("legacy forwarding rule %s has no handle, removing stale entry", ruleKey)
if err := r.decrementSetCounter(rule); err != nil {
log.Warnf("decrement set counter for stale rule %s: %v", ruleKey, err)
if rule, exists := r.rules[ruleKey]; exists {
if err := r.conn.DelRule(rule); err != nil {
return fmt.Errorf("remove legacy forwarding rule %s -> %s: %v", pair.Source, pair.Destination, err)
}
log.Debugf("removed legacy forwarding rule %s -> %s", pair.Source, pair.Destination)
delete(r.rules, ruleKey)
return nil
}
if err := r.conn.DelRule(rule); err != nil {
return fmt.Errorf("remove legacy forwarding rule %s -> %s: %w", pair.Source, pair.Destination, err)
}
log.Debugf("removed legacy forwarding rule %s -> %s", pair.Source, pair.Destination)
delete(r.rules, ruleKey)
if err := r.decrementSetCounter(rule); err != nil {
return fmt.Errorf("decrement set counter: %w", err)
if err := r.decrementSetCounter(rule); err != nil {
return fmt.Errorf("decrement set counter: %w", err)
}
}
return nil
@@ -1365,89 +1329,65 @@ func (r *router) RemoveNatRule(pair firewall.RouterPair) error {
return fmt.Errorf(refreshRulesMapError, err)
}
var merr *multierror.Error
if pair.Masquerade {
if err := r.removeNatRule(pair); err != nil {
merr = multierror.Append(merr, fmt.Errorf("remove prerouting rule: %w", err))
return fmt.Errorf("remove prerouting rule: %w", err)
}
if err := r.removeNatRule(firewall.GetInversePair(pair)); err != nil {
merr = multierror.Append(merr, fmt.Errorf("remove inverse prerouting rule: %w", err))
return fmt.Errorf("remove inverse prerouting rule: %w", err)
}
}
if err := r.removeLegacyRouteRule(pair); err != nil {
merr = multierror.Append(merr, fmt.Errorf("remove legacy routing rule: %w", err))
return fmt.Errorf("remove legacy routing rule: %w", err)
}
// Set counters are decremented in the sub-methods above before flush. If flush fails,
// counters will be off until the next successful removal or refresh cycle.
if err := r.conn.Flush(); err != nil {
merr = multierror.Append(merr, fmt.Errorf("flush remove nat rules %s: %w", pair.Destination, err))
}
return nberrors.FormatErrorOrNil(merr)
}
func (r *router) removeNatRule(pair firewall.RouterPair) error {
ruleKey := firewall.GenKey(firewall.PreroutingFormat, pair)
rule, exists := r.rules[ruleKey]
if !exists {
log.Debugf("prerouting rule %s not found", ruleKey)
return nil
}
if rule.Handle == 0 {
log.Warnf("prerouting rule %s has no handle, removing stale entry", ruleKey)
if err := r.decrementSetCounter(rule); err != nil {
log.Warnf("decrement set counter for stale rule %s: %v", ruleKey, err)
}
delete(r.rules, ruleKey)
return nil
}
if err := r.conn.DelRule(rule); err != nil {
return fmt.Errorf("remove prerouting rule %s -> %s: %w", pair.Source, pair.Destination, err)
}
log.Debugf("removed prerouting rule %s -> %s", pair.Source, pair.Destination)
delete(r.rules, ruleKey)
if err := r.decrementSetCounter(rule); err != nil {
return fmt.Errorf("decrement set counter: %w", err)
// TODO: rollback set counter
return fmt.Errorf("remove nat rules rule %s: %v", pair.Destination, err)
}
return nil
}
// refreshRulesMap rebuilds the rule map from the kernel. This removes stale entries
// (e.g. from failed flushes) and updates handles for all existing rules.
func (r *router) removeNatRule(pair firewall.RouterPair) error {
ruleKey := firewall.GenKey(firewall.PreroutingFormat, pair)
if rule, exists := r.rules[ruleKey]; exists {
if err := r.conn.DelRule(rule); err != nil {
return fmt.Errorf("remove prerouting rule %s -> %s: %v", pair.Source, pair.Destination, err)
}
log.Debugf("removed prerouting rule %s -> %s", pair.Source, pair.Destination)
delete(r.rules, ruleKey)
if err := r.decrementSetCounter(rule); err != nil {
return fmt.Errorf("decrement set counter: %w", err)
}
} else {
log.Debugf("prerouting rule %s not found", ruleKey)
}
return nil
}
// refreshRulesMap refreshes the rule map with the latest rules. this is useful to avoid
// duplicates and to get missing attributes that we don't have when adding new rules
func (r *router) refreshRulesMap() error {
var merr *multierror.Error
newRules := make(map[string]*nftables.Rule)
for _, chain := range r.chains {
rules, err := r.conn.GetRules(chain.Table, chain)
if err != nil {
merr = multierror.Append(merr, fmt.Errorf("list rules for chain %s: %w", chain.Name, err))
// preserve existing entries for this chain since we can't verify their state
for k, v := range r.rules {
if v.Chain != nil && v.Chain.Name == chain.Name {
newRules[k] = v
}
}
continue
return fmt.Errorf("list rules: %w", err)
}
for _, rule := range rules {
if len(rule.UserData) > 0 {
newRules[string(rule.UserData)] = rule
r.rules[string(rule.UserData)] = rule
}
}
}
r.rules = newRules
return nberrors.FormatErrorOrNil(merr)
return nil
}
func (r *router) AddDNATRule(rule firewall.ForwardRule) (firewall.Rule, error) {
@@ -1689,34 +1629,20 @@ func (r *router) DeleteDNATRule(rule firewall.Rule) error {
}
var merr *multierror.Error
var needsFlush bool
if dnatRule, exists := r.rules[ruleKey+dnatSuffix]; exists {
if dnatRule.Handle == 0 {
log.Warnf("dnat rule %s has no handle, removing stale entry", ruleKey+dnatSuffix)
delete(r.rules, ruleKey+dnatSuffix)
} else if err := r.conn.DelRule(dnatRule); err != nil {
if err := r.conn.DelRule(dnatRule); err != nil {
merr = multierror.Append(merr, fmt.Errorf("delete dnat rule: %w", err))
} else {
needsFlush = true
}
}
if masqRule, exists := r.rules[ruleKey+snatSuffix]; exists {
if masqRule.Handle == 0 {
log.Warnf("snat rule %s has no handle, removing stale entry", ruleKey+snatSuffix)
delete(r.rules, ruleKey+snatSuffix)
} else if err := r.conn.DelRule(masqRule); err != nil {
if err := r.conn.DelRule(masqRule); err != nil {
merr = multierror.Append(merr, fmt.Errorf("delete snat rule: %w", err))
} else {
needsFlush = true
}
}
if needsFlush {
if err := r.conn.Flush(); err != nil {
merr = multierror.Append(merr, fmt.Errorf(flushError, err))
}
if err := r.conn.Flush(); err != nil {
merr = multierror.Append(merr, fmt.Errorf(flushError, err))
}
if merr == nil {
@@ -1831,25 +1757,16 @@ func (r *router) RemoveInboundDNAT(localAddr netip.Addr, protocol firewall.Proto
ruleID := fmt.Sprintf("inbound-dnat-%s-%s-%d-%d", localAddr.String(), protocol, sourcePort, targetPort)
rule, exists := r.rules[ruleID]
if !exists {
return nil
}
if rule.Handle == 0 {
log.Warnf("inbound DNAT rule %s has no handle, removing stale entry", ruleID)
if rule, exists := r.rules[ruleID]; exists {
if err := r.conn.DelRule(rule); err != nil {
return fmt.Errorf("delete inbound DNAT rule %s: %w", ruleID, err)
}
if err := r.conn.Flush(); err != nil {
return fmt.Errorf("flush delete inbound DNAT rule: %w", err)
}
delete(r.rules, ruleID)
return nil
}
if err := r.conn.DelRule(rule); err != nil {
return fmt.Errorf("delete inbound DNAT rule %s: %w", ruleID, err)
}
if err := r.conn.Flush(); err != nil {
return fmt.Errorf("flush delete inbound DNAT rule: %w", err)
}
delete(r.rules, ruleID)
return nil
}

View File

@@ -18,7 +18,6 @@ import (
firewall "github.com/netbirdio/netbird/client/firewall/manager"
"github.com/netbirdio/netbird/client/firewall/test"
"github.com/netbirdio/netbird/client/iface"
"github.com/netbirdio/netbird/client/internal/acl/id"
)
const (
@@ -720,137 +719,3 @@ func deleteWorkTable() {
}
}
}
func TestRouter_RefreshRulesMap_RemovesStaleEntries(t *testing.T) {
if check() != NFTABLES {
t.Skip("nftables not supported on this system")
}
workTable, err := createWorkTable()
require.NoError(t, err)
defer deleteWorkTable()
r, err := newRouter(workTable, ifaceMock, iface.DefaultMTU)
require.NoError(t, err)
require.NoError(t, r.init(workTable))
defer func() { require.NoError(t, r.Reset()) }()
// Add a real rule to the kernel
ruleKey, err := r.AddRouteFiltering(
nil,
[]netip.Prefix{netip.MustParsePrefix("192.168.1.0/24")},
firewall.Network{Prefix: netip.MustParsePrefix("10.0.0.0/24")},
firewall.ProtocolTCP,
nil,
&firewall.Port{Values: []uint16{80}},
firewall.ActionAccept,
)
require.NoError(t, err)
t.Cleanup(func() {
require.NoError(t, r.DeleteRouteRule(ruleKey))
})
// Inject a stale entry with Handle=0 (simulates store-before-flush failure)
staleKey := "stale-rule-that-does-not-exist"
r.rules[staleKey] = &nftables.Rule{
Table: r.workTable,
Chain: r.chains[chainNameRoutingFw],
Handle: 0,
UserData: []byte(staleKey),
}
require.Contains(t, r.rules, staleKey, "stale entry should be in map before refresh")
err = r.refreshRulesMap()
require.NoError(t, err)
assert.NotContains(t, r.rules, staleKey, "stale entry should be removed after refresh")
realRule, ok := r.rules[ruleKey.ID()]
assert.True(t, ok, "real rule should still exist after refresh")
assert.NotZero(t, realRule.Handle, "real rule should have a valid handle")
}
func TestRouter_DeleteRouteRule_StaleHandle(t *testing.T) {
if check() != NFTABLES {
t.Skip("nftables not supported on this system")
}
workTable, err := createWorkTable()
require.NoError(t, err)
defer deleteWorkTable()
r, err := newRouter(workTable, ifaceMock, iface.DefaultMTU)
require.NoError(t, err)
require.NoError(t, r.init(workTable))
defer func() { require.NoError(t, r.Reset()) }()
// Inject a stale entry with Handle=0
staleKey := "stale-route-rule"
r.rules[staleKey] = &nftables.Rule{
Table: r.workTable,
Chain: r.chains[chainNameRoutingFw],
Handle: 0,
UserData: []byte(staleKey),
}
// DeleteRouteRule should not return an error for stale handles
err = r.DeleteRouteRule(id.RuleID(staleKey))
assert.NoError(t, err, "deleting a stale rule should not error")
assert.NotContains(t, r.rules, staleKey, "stale entry should be cleaned up")
}
func TestRouter_AddNatRule_WithStaleEntry(t *testing.T) {
if check() != NFTABLES {
t.Skip("nftables not supported on this system")
}
manager, err := Create(ifaceMock, iface.DefaultMTU)
require.NoError(t, err)
require.NoError(t, manager.Init(nil))
t.Cleanup(func() {
require.NoError(t, manager.Close(nil))
})
pair := firewall.RouterPair{
ID: "staletest",
Source: firewall.Network{Prefix: netip.MustParsePrefix("100.100.100.1/32")},
Destination: firewall.Network{Prefix: netip.MustParsePrefix("100.100.200.0/24")},
Masquerade: true,
}
rtr := manager.router
// First add succeeds
err = rtr.AddNatRule(pair)
require.NoError(t, err)
t.Cleanup(func() {
require.NoError(t, rtr.RemoveNatRule(pair))
})
// Corrupt the handle to simulate stale state
natRuleKey := firewall.GenKey(firewall.PreroutingFormat, pair)
if rule, exists := rtr.rules[natRuleKey]; exists {
rule.Handle = 0
}
inverseKey := firewall.GenKey(firewall.PreroutingFormat, firewall.GetInversePair(pair))
if rule, exists := rtr.rules[inverseKey]; exists {
rule.Handle = 0
}
// Adding the same rule again should succeed despite stale handles
err = rtr.AddNatRule(pair)
assert.NoError(t, err, "AddNatRule should succeed even with stale entries")
// Verify rules exist in kernel
rules, err := rtr.conn.GetRules(rtr.workTable, rtr.chains[chainNameManglePrerouting])
require.NoError(t, err)
found := 0
for _, rule := range rules {
if len(rule.UserData) > 0 && string(rule.UserData) == natRuleKey {
found++
}
}
assert.Equal(t, 1, found, "NAT rule should exist in kernel")
}

View File

@@ -3,6 +3,12 @@
package uspfilter
import (
"context"
"net/netip"
"time"
log "github.com/sirupsen/logrus"
"github.com/netbirdio/netbird/client/internal/statemanager"
)
@@ -11,7 +17,33 @@ func (m *Manager) Close(stateManager *statemanager.Manager) error {
m.mutex.Lock()
defer m.mutex.Unlock()
m.resetState()
m.outgoingRules = make(map[netip.Addr]RuleSet)
m.incomingDenyRules = make(map[netip.Addr]RuleSet)
m.incomingRules = make(map[netip.Addr]RuleSet)
if m.udpTracker != nil {
m.udpTracker.Close()
}
if m.icmpTracker != nil {
m.icmpTracker.Close()
}
if m.tcpTracker != nil {
m.tcpTracker.Close()
}
if fwder := m.forwarder.Load(); fwder != nil {
fwder.Stop()
}
if m.logger != nil {
ctx, cancel := context.WithTimeout(context.Background(), 2*time.Second)
defer cancel()
if err := m.logger.Stop(ctx); err != nil {
log.Errorf("failed to shutdown logger: %v", err)
}
}
if m.nativeFirewall != nil {
return m.nativeFirewall.Close(stateManager)

View File

@@ -1,9 +1,12 @@
package uspfilter
import (
"context"
"fmt"
"net/netip"
"os/exec"
"syscall"
"time"
log "github.com/sirupsen/logrus"
@@ -23,7 +26,33 @@ func (m *Manager) Close(*statemanager.Manager) error {
m.mutex.Lock()
defer m.mutex.Unlock()
m.resetState()
m.outgoingRules = make(map[netip.Addr]RuleSet)
m.incomingDenyRules = make(map[netip.Addr]RuleSet)
m.incomingRules = make(map[netip.Addr]RuleSet)
if m.udpTracker != nil {
m.udpTracker.Close()
}
if m.icmpTracker != nil {
m.icmpTracker.Close()
}
if m.tcpTracker != nil {
m.tcpTracker.Close()
}
if fwder := m.forwarder.Load(); fwder != nil {
fwder.Stop()
}
if m.logger != nil {
ctx, cancel := context.WithTimeout(context.Background(), 2*time.Second)
defer cancel()
if err := m.logger.Stop(ctx); err != nil {
log.Errorf("failed to shutdown logger: %v", err)
}
}
if !isWindowsFirewallReachable() {
return nil

View File

@@ -115,17 +115,6 @@ func (t *TCPConnTrack) IsTombstone() bool {
return t.tombstone.Load()
}
// IsSupersededBy returns true if this connection should be replaced by a new one
// carrying the given flags. Tombstoned connections are always superseded; TIME-WAIT
// connections are superseded by a pure SYN (a new connection attempt for the same
// four-tuple, as contemplated by RFC 1122 §4.2.2.13 and RFC 6191).
func (t *TCPConnTrack) IsSupersededBy(flags uint8) bool {
if t.tombstone.Load() {
return true
}
return flags&TCPSyn != 0 && flags&TCPAck == 0 && TCPState(t.state.Load()) == TCPStateTimeWait
}
// SetTombstone safely marks the connection for deletion
func (t *TCPConnTrack) SetTombstone() {
t.tombstone.Store(true)
@@ -180,7 +169,7 @@ func (t *TCPTracker) updateIfExists(srcIP, dstIP netip.Addr, srcPort, dstPort ui
conn, exists := t.connections[key]
t.mutex.RUnlock()
if exists && !conn.IsSupersededBy(flags) {
if exists {
t.updateState(key, conn, flags, direction, size)
return key, uint16(conn.DNATOrigPort.Load()), true
}
@@ -252,7 +241,7 @@ func (t *TCPTracker) IsValidInbound(srcIP, dstIP netip.Addr, srcPort, dstPort ui
conn, exists := t.connections[key]
t.mutex.RUnlock()
if !exists || conn.IsSupersededBy(flags) {
if !exists || conn.IsTombstone() {
return false
}

View File

@@ -485,261 +485,6 @@ func TestTCPAbnormalSequences(t *testing.T) {
})
}
// TestTCPPortReuseTombstone verifies that a new connection on a port with a
// tombstoned (closed) conntrack entry is properly tracked. Without the fix,
// updateIfExists treats tombstoned entries as live, causing track() to skip
// creating a new connection. The subsequent SYN-ACK then fails IsValidInbound
// because the entry is tombstoned, and the response packet gets dropped by ACL.
func TestTCPPortReuseTombstone(t *testing.T) {
srcIP := netip.MustParseAddr("100.64.0.1")
dstIP := netip.MustParseAddr("100.64.0.2")
srcPort := uint16(12345)
dstPort := uint16(80)
t.Run("Outbound port reuse after graceful close", func(t *testing.T) {
tracker := NewTCPTracker(DefaultTCPTimeout, logger, flowLogger)
defer tracker.Close()
key := ConnKey{SrcIP: srcIP, DstIP: dstIP, SrcPort: srcPort, DstPort: dstPort}
// Establish and gracefully close a connection (server-initiated close)
establishConnection(t, tracker, srcIP, dstIP, srcPort, dstPort)
// Server sends FIN
valid := tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPFin|TCPAck, 0)
require.True(t, valid)
// Client sends FIN-ACK
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPFin|TCPAck, 0)
// Server sends final ACK
valid = tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPAck, 0)
require.True(t, valid)
// Connection should be tombstoned
conn := tracker.connections[key]
require.NotNil(t, conn, "old connection should still be in map")
require.True(t, conn.IsTombstone(), "old connection should be tombstoned")
// Now reuse the same port for a new connection
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPSyn, 100)
// The old tombstoned entry should be replaced with a new one
newConn := tracker.connections[key]
require.NotNil(t, newConn, "new connection should exist")
require.False(t, newConn.IsTombstone(), "new connection should not be tombstoned")
require.Equal(t, TCPStateSynSent, newConn.GetState())
// SYN-ACK for the new connection should be valid
valid = tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPSyn|TCPAck, 100)
require.True(t, valid, "SYN-ACK for new connection on reused port should be accepted")
require.Equal(t, TCPStateEstablished, newConn.GetState())
// Data transfer should work
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPAck, 100)
valid = tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPPush|TCPAck, 500)
require.True(t, valid, "data should be allowed on new connection")
})
t.Run("Outbound port reuse after RST", func(t *testing.T) {
tracker := NewTCPTracker(DefaultTCPTimeout, logger, flowLogger)
defer tracker.Close()
key := ConnKey{SrcIP: srcIP, DstIP: dstIP, SrcPort: srcPort, DstPort: dstPort}
// Establish and RST a connection
establishConnection(t, tracker, srcIP, dstIP, srcPort, dstPort)
valid := tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPRst|TCPAck, 0)
require.True(t, valid)
conn := tracker.connections[key]
require.True(t, conn.IsTombstone(), "RST connection should be tombstoned")
// Reuse the same port
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPSyn, 100)
newConn := tracker.connections[key]
require.NotNil(t, newConn)
require.False(t, newConn.IsTombstone())
require.Equal(t, TCPStateSynSent, newConn.GetState())
valid = tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPSyn|TCPAck, 100)
require.True(t, valid, "SYN-ACK should be accepted after RST tombstone")
})
t.Run("Inbound port reuse after close", func(t *testing.T) {
tracker := NewTCPTracker(DefaultTCPTimeout, logger, flowLogger)
defer tracker.Close()
clientIP := srcIP
serverIP := dstIP
clientPort := srcPort
serverPort := dstPort
key := ConnKey{SrcIP: clientIP, DstIP: serverIP, SrcPort: clientPort, DstPort: serverPort}
// Inbound connection: client SYN → server SYN-ACK → client ACK
tracker.TrackInbound(clientIP, serverIP, clientPort, serverPort, TCPSyn, nil, 100, 0)
tracker.TrackOutbound(serverIP, clientIP, serverPort, clientPort, TCPSyn|TCPAck, 100)
tracker.TrackInbound(clientIP, serverIP, clientPort, serverPort, TCPAck, nil, 100, 0)
conn := tracker.connections[key]
require.Equal(t, TCPStateEstablished, conn.GetState())
// Server-initiated close to reach Closed/tombstoned:
// Server FIN (opposite dir) → CloseWait
tracker.TrackOutbound(serverIP, clientIP, serverPort, clientPort, TCPFin|TCPAck, 100)
require.Equal(t, TCPStateCloseWait, conn.GetState())
// Client FIN-ACK (same dir as conn) → LastAck
tracker.TrackInbound(clientIP, serverIP, clientPort, serverPort, TCPFin|TCPAck, nil, 100, 0)
require.Equal(t, TCPStateLastAck, conn.GetState())
// Server final ACK (opposite dir) → Closed → tombstoned
tracker.TrackOutbound(serverIP, clientIP, serverPort, clientPort, TCPAck, 100)
require.True(t, conn.IsTombstone())
// New inbound connection on same ports
tracker.TrackInbound(clientIP, serverIP, clientPort, serverPort, TCPSyn, nil, 100, 0)
newConn := tracker.connections[key]
require.NotNil(t, newConn)
require.False(t, newConn.IsTombstone())
require.Equal(t, TCPStateSynReceived, newConn.GetState())
// Complete handshake: server SYN-ACK, then client ACK
tracker.TrackOutbound(serverIP, clientIP, serverPort, clientPort, TCPSyn|TCPAck, 100)
tracker.TrackInbound(clientIP, serverIP, clientPort, serverPort, TCPAck, nil, 100, 0)
require.Equal(t, TCPStateEstablished, newConn.GetState())
})
t.Run("Late ACK on tombstoned connection is harmless", func(t *testing.T) {
tracker := NewTCPTracker(DefaultTCPTimeout, logger, flowLogger)
defer tracker.Close()
key := ConnKey{SrcIP: srcIP, DstIP: dstIP, SrcPort: srcPort, DstPort: dstPort}
// Establish and close via passive close (server-initiated FIN → Closed → tombstoned)
establishConnection(t, tracker, srcIP, dstIP, srcPort, dstPort)
tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPFin|TCPAck, 0) // CloseWait
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPFin|TCPAck, 0) // LastAck
tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPAck, 0) // Closed
conn := tracker.connections[key]
require.True(t, conn.IsTombstone())
// Late ACK should be rejected (tombstoned)
valid := tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPAck, 0)
require.False(t, valid, "late ACK on tombstoned connection should be rejected")
// Late outbound ACK should not create a new connection (not a SYN)
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPAck, 0)
require.True(t, tracker.connections[key].IsTombstone(), "late outbound ACK should not replace tombstoned entry")
})
}
func TestTCPPortReuseTimeWait(t *testing.T) {
srcIP := netip.MustParseAddr("100.64.0.1")
dstIP := netip.MustParseAddr("100.64.0.2")
srcPort := uint16(12345)
dstPort := uint16(80)
t.Run("Outbound port reuse during TIME-WAIT (active close)", func(t *testing.T) {
tracker := NewTCPTracker(DefaultTCPTimeout, logger, flowLogger)
defer tracker.Close()
key := ConnKey{SrcIP: srcIP, DstIP: dstIP, SrcPort: srcPort, DstPort: dstPort}
// Establish connection
establishConnection(t, tracker, srcIP, dstIP, srcPort, dstPort)
// Active close: client (outbound initiator) sends FIN first
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPFin|TCPAck, 0)
conn := tracker.connections[key]
require.Equal(t, TCPStateFinWait1, conn.GetState())
// Server ACKs the FIN
valid := tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPAck, 0)
require.True(t, valid)
require.Equal(t, TCPStateFinWait2, conn.GetState())
// Server sends its own FIN
valid = tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPFin|TCPAck, 0)
require.True(t, valid)
require.Equal(t, TCPStateTimeWait, conn.GetState())
// Client sends final ACK (TIME-WAIT stays, not tombstoned)
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPAck, 0)
require.False(t, conn.IsTombstone(), "TIME-WAIT should not be tombstoned")
// New outbound SYN on the same port (port reuse during TIME-WAIT)
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPSyn, 100)
// Per RFC 1122/6191, new SYN during TIME-WAIT should start a new connection
newConn := tracker.connections[key]
require.NotNil(t, newConn, "new connection should exist")
require.False(t, newConn.IsTombstone(), "new connection should not be tombstoned")
require.Equal(t, TCPStateSynSent, newConn.GetState(), "new connection should be in SYN-SENT")
// SYN-ACK for new connection should be valid
valid = tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPSyn|TCPAck, 100)
require.True(t, valid, "SYN-ACK for new connection should be accepted")
require.Equal(t, TCPStateEstablished, newConn.GetState())
})
t.Run("Inbound SYN during TIME-WAIT falls through to normal tracking", func(t *testing.T) {
tracker := NewTCPTracker(DefaultTCPTimeout, logger, flowLogger)
defer tracker.Close()
key := ConnKey{SrcIP: srcIP, DstIP: dstIP, SrcPort: srcPort, DstPort: dstPort}
// Establish outbound connection and close via active close → TIME-WAIT
establishConnection(t, tracker, srcIP, dstIP, srcPort, dstPort)
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPFin|TCPAck, 0)
tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPAck, 0)
tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPFin|TCPAck, 0)
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPAck, 0)
conn := tracker.connections[key]
require.Equal(t, TCPStateTimeWait, conn.GetState())
// Inbound SYN on same ports during TIME-WAIT: IsValidInbound returns false
// so the filter falls through to ACL check + TrackInbound (which creates
// a new connection via track() → updateIfExists skips TIME-WAIT for SYN)
valid := tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPSyn, 0)
require.False(t, valid, "inbound SYN during TIME-WAIT should fail conntrack validation")
// Simulate what the filter does next: TrackInbound via the normal path
tracker.TrackInbound(dstIP, srcIP, dstPort, srcPort, TCPSyn, nil, 100, 0)
// The new inbound connection uses the inverted key (dst→src becomes src→dst in track)
invertedKey := ConnKey{SrcIP: dstIP, DstIP: srcIP, SrcPort: dstPort, DstPort: srcPort}
newConn := tracker.connections[invertedKey]
require.NotNil(t, newConn, "new inbound connection should be tracked")
require.Equal(t, TCPStateSynReceived, newConn.GetState())
require.False(t, newConn.IsTombstone())
})
t.Run("Late retransmit during TIME-WAIT still allowed", func(t *testing.T) {
tracker := NewTCPTracker(DefaultTCPTimeout, logger, flowLogger)
defer tracker.Close()
key := ConnKey{SrcIP: srcIP, DstIP: dstIP, SrcPort: srcPort, DstPort: dstPort}
// Establish and active close → TIME-WAIT
establishConnection(t, tracker, srcIP, dstIP, srcPort, dstPort)
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPFin|TCPAck, 0)
tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPAck, 0)
tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPFin|TCPAck, 0)
tracker.TrackOutbound(srcIP, dstIP, srcPort, dstPort, TCPAck, 0)
conn := tracker.connections[key]
require.Equal(t, TCPStateTimeWait, conn.GetState())
// Late ACK retransmits during TIME-WAIT should still be accepted
valid := tracker.IsValidInbound(dstIP, srcIP, dstPort, srcPort, TCPAck, 0)
require.True(t, valid, "retransmitted ACK during TIME-WAIT should be accepted")
})
}
func TestTCPTimeoutHandling(t *testing.T) {
// Create tracker with a very short timeout for testing
shortTimeout := 100 * time.Millisecond

View File

@@ -1,7 +1,6 @@
package uspfilter
import (
"context"
"encoding/binary"
"errors"
"fmt"
@@ -13,13 +12,11 @@ import (
"strings"
"sync"
"sync/atomic"
"time"
"github.com/google/gopacket"
"github.com/google/gopacket/layers"
"github.com/google/uuid"
log "github.com/sirupsen/logrus"
"golang.org/x/exp/maps"
firewall "github.com/netbirdio/netbird/client/firewall/manager"
"github.com/netbirdio/netbird/client/firewall/uspfilter/common"
@@ -27,7 +24,6 @@ import (
"github.com/netbirdio/netbird/client/firewall/uspfilter/forwarder"
nblog "github.com/netbirdio/netbird/client/firewall/uspfilter/log"
"github.com/netbirdio/netbird/client/iface/netstack"
nbid "github.com/netbirdio/netbird/client/internal/acl/id"
nftypes "github.com/netbirdio/netbird/client/internal/netflow/types"
"github.com/netbirdio/netbird/client/internal/statemanager"
)
@@ -93,7 +89,6 @@ type Manager struct {
incomingDenyRules map[netip.Addr]RuleSet
incomingRules map[netip.Addr]RuleSet
routeRules RouteRules
routeRulesMap map[nbid.RuleID]*RouteRule
decoders sync.Pool
wgIface common.IFaceMapper
nativeFirewall firewall.Manager
@@ -234,7 +229,6 @@ func create(iface common.IFaceMapper, nativeFirewall firewall.Manager, disableSe
flowLogger: flowLogger,
netstack: netstack.IsEnabled(),
localForwarding: enableLocalForwarding,
routeRulesMap: make(map[nbid.RuleID]*RouteRule),
dnatMappings: make(map[netip.Addr]netip.Addr),
portDNATRules: []portDNATRule{},
netstackServices: make(map[serviceKey]struct{}),
@@ -486,15 +480,11 @@ func (m *Manager) addRouteFiltering(
return m.nativeFirewall.AddRouteFiltering(id, sources, destination, proto, sPort, dPort, action)
}
ruleKey := nbid.GenerateRouteRuleKey(sources, destination, proto, sPort, dPort, action)
if existingRule, ok := m.routeRulesMap[ruleKey]; ok {
return existingRule, nil
}
ruleID := uuid.New().String()
rule := RouteRule{
// TODO: consolidate these IDs
id: string(ruleKey),
id: ruleID,
mgmtId: id,
sources: sources,
dstSet: destination.Set,
@@ -509,7 +499,6 @@ func (m *Manager) addRouteFiltering(
m.routeRules = append(m.routeRules, &rule)
m.routeRules.Sort()
m.routeRulesMap[ruleKey] = &rule
return &rule, nil
}
@@ -526,20 +515,15 @@ func (m *Manager) deleteRouteRule(rule firewall.Rule) error {
return m.nativeFirewall.DeleteRouteRule(rule)
}
ruleKey := nbid.RuleID(rule.ID())
if _, ok := m.routeRulesMap[ruleKey]; !ok {
return fmt.Errorf("route rule not found: %s", ruleKey)
}
ruleID := rule.ID()
idx := slices.IndexFunc(m.routeRules, func(r *RouteRule) bool {
return r.id == string(ruleKey)
return r.id == ruleID
})
if idx < 0 {
return fmt.Errorf("route rule not found in slice: %s", ruleKey)
return fmt.Errorf("route rule not found: %s", ruleID)
}
m.routeRules = slices.Delete(m.routeRules, idx, idx+1)
delete(m.routeRulesMap, ruleKey)
return nil
}
@@ -586,40 +570,6 @@ func (m *Manager) SetLegacyManagement(isLegacy bool) error {
// Flush doesn't need to be implemented for this manager
func (m *Manager) Flush() error { return nil }
// resetState clears all firewall rules and closes connection trackers.
// Must be called with m.mutex held.
func (m *Manager) resetState() {
maps.Clear(m.outgoingRules)
maps.Clear(m.incomingDenyRules)
maps.Clear(m.incomingRules)
maps.Clear(m.routeRulesMap)
m.routeRules = m.routeRules[:0]
if m.udpTracker != nil {
m.udpTracker.Close()
}
if m.icmpTracker != nil {
m.icmpTracker.Close()
}
if m.tcpTracker != nil {
m.tcpTracker.Close()
}
if fwder := m.forwarder.Load(); fwder != nil {
fwder.Stop()
}
if m.logger != nil {
ctx, cancel := context.WithTimeout(context.Background(), 2*time.Second)
defer cancel()
if err := m.logger.Stop(ctx); err != nil {
log.Errorf("failed to shutdown logger: %v", err)
}
}
}
// SetupEBPFProxyNoTrack creates notrack rules for eBPF proxy loopback traffic.
func (m *Manager) SetupEBPFProxyNoTrack(proxyPort, wgPort uint16) error {
if m.nativeFirewall == nil {

View File

@@ -1,376 +0,0 @@
package uspfilter
import (
"net/netip"
"testing"
"github.com/golang/mock/gomock"
"github.com/google/gopacket/layers"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
wgdevice "golang.zx2c4.com/wireguard/device"
fw "github.com/netbirdio/netbird/client/firewall/manager"
"github.com/netbirdio/netbird/client/iface"
"github.com/netbirdio/netbird/client/iface/device"
"github.com/netbirdio/netbird/client/iface/mocks"
"github.com/netbirdio/netbird/client/iface/wgaddr"
)
// TestAddRouteFilteringReturnsExistingRule verifies that adding the same route
// filtering rule twice returns the same rule ID (idempotent behavior).
func TestAddRouteFilteringReturnsExistingRule(t *testing.T) {
manager := setupTestManager(t)
sources := []netip.Prefix{
netip.MustParsePrefix("100.64.1.0/24"),
netip.MustParsePrefix("100.64.2.0/24"),
}
destination := fw.Network{Prefix: netip.MustParsePrefix("192.168.1.0/24")}
// Add rule first time
rule1, err := manager.AddRouteFiltering(
[]byte("policy-1"),
sources,
destination,
fw.ProtocolTCP,
nil,
&fw.Port{Values: []uint16{443}},
fw.ActionAccept,
)
require.NoError(t, err)
require.NotNil(t, rule1)
// Add the same rule again
rule2, err := manager.AddRouteFiltering(
[]byte("policy-1"),
sources,
destination,
fw.ProtocolTCP,
nil,
&fw.Port{Values: []uint16{443}},
fw.ActionAccept,
)
require.NoError(t, err)
require.NotNil(t, rule2)
// These should be the same (idempotent) like nftables/iptables implementations
assert.Equal(t, rule1.ID(), rule2.ID(),
"Adding the same rule twice should return the same rule ID (idempotent)")
manager.mutex.RLock()
ruleCount := len(manager.routeRules)
manager.mutex.RUnlock()
assert.Equal(t, 2, ruleCount,
"Should have exactly 2 rules (1 user rule + 1 block rule)")
}
// TestAddRouteFilteringDifferentRulesGetDifferentIDs verifies that rules with
// different parameters get distinct IDs.
func TestAddRouteFilteringDifferentRulesGetDifferentIDs(t *testing.T) {
manager := setupTestManager(t)
sources := []netip.Prefix{netip.MustParsePrefix("100.64.1.0/24")}
// Add first rule
rule1, err := manager.AddRouteFiltering(
[]byte("policy-1"),
sources,
fw.Network{Prefix: netip.MustParsePrefix("192.168.1.0/24")},
fw.ProtocolTCP,
nil,
&fw.Port{Values: []uint16{443}},
fw.ActionAccept,
)
require.NoError(t, err)
// Add different rule (different destination)
rule2, err := manager.AddRouteFiltering(
[]byte("policy-2"),
sources,
fw.Network{Prefix: netip.MustParsePrefix("192.168.2.0/24")}, // Different!
fw.ProtocolTCP,
nil,
&fw.Port{Values: []uint16{443}},
fw.ActionAccept,
)
require.NoError(t, err)
assert.NotEqual(t, rule1.ID(), rule2.ID(),
"Different rules should have different IDs")
manager.mutex.RLock()
ruleCount := len(manager.routeRules)
manager.mutex.RUnlock()
assert.Equal(t, 3, ruleCount, "Should have 3 rules (2 user rules + 1 block rule)")
}
// TestRouteRuleUpdateDoesNotCauseGap verifies that re-adding the same route
// rule during a network map update does not disrupt existing traffic.
func TestRouteRuleUpdateDoesNotCauseGap(t *testing.T) {
manager := setupTestManager(t)
sources := []netip.Prefix{netip.MustParsePrefix("100.64.1.0/24")}
destination := fw.Network{Prefix: netip.MustParsePrefix("192.168.1.0/24")}
rule1, err := manager.AddRouteFiltering(
[]byte("policy-1"),
sources,
destination,
fw.ProtocolTCP,
nil,
nil,
fw.ActionAccept,
)
require.NoError(t, err)
srcIP := netip.MustParseAddr("100.64.1.5")
dstIP := netip.MustParseAddr("192.168.1.10")
_, pass := manager.routeACLsPass(srcIP, dstIP, layers.LayerTypeTCP, 12345, 443)
require.True(t, pass, "Traffic should pass with rule in place")
// Re-add same rule (simulates network map update)
rule2, err := manager.AddRouteFiltering(
[]byte("policy-1"),
sources,
destination,
fw.ProtocolTCP,
nil,
nil,
fw.ActionAccept,
)
require.NoError(t, err)
// Idempotent IDs mean rule1.ID() == rule2.ID(), so the ACL manager
// won't delete rule1 during cleanup. If IDs differed, deleting rule1
// would remove the only matching rule and cause a traffic gap.
if rule1.ID() != rule2.ID() {
err = manager.DeleteRouteRule(rule1)
require.NoError(t, err)
}
_, passAfter := manager.routeACLsPass(srcIP, dstIP, layers.LayerTypeTCP, 12345, 443)
assert.True(t, passAfter,
"Traffic should still pass after rule update - no gap should occur")
}
// TestBlockInvalidRoutedIdempotent verifies that blockInvalidRouted creates
// exactly one drop rule for the WireGuard network prefix, and calling it again
// returns the same rule without duplicating.
func TestBlockInvalidRoutedIdempotent(t *testing.T) {
ctrl := gomock.NewController(t)
dev := mocks.NewMockDevice(ctrl)
dev.EXPECT().MTU().Return(1500, nil).AnyTimes()
wgNet := netip.MustParsePrefix("100.64.0.1/16")
ifaceMock := &IFaceMock{
SetFilterFunc: func(device.PacketFilter) error { return nil },
AddressFunc: func() wgaddr.Address {
return wgaddr.Address{
IP: wgNet.Addr(),
Network: wgNet,
}
},
GetDeviceFunc: func() *device.FilteredDevice {
return &device.FilteredDevice{Device: dev}
},
GetWGDeviceFunc: func() *wgdevice.Device {
return &wgdevice.Device{}
},
}
manager, err := Create(ifaceMock, false, flowLogger, iface.DefaultMTU)
require.NoError(t, err)
t.Cleanup(func() {
require.NoError(t, manager.Close(nil))
})
// Call blockInvalidRouted directly multiple times
rule1, err := manager.blockInvalidRouted(ifaceMock)
require.NoError(t, err)
require.NotNil(t, rule1)
rule2, err := manager.blockInvalidRouted(ifaceMock)
require.NoError(t, err)
require.NotNil(t, rule2)
rule3, err := manager.blockInvalidRouted(ifaceMock)
require.NoError(t, err)
require.NotNil(t, rule3)
// All should return the same rule
assert.Equal(t, rule1.ID(), rule2.ID(), "Second call should return same rule")
assert.Equal(t, rule2.ID(), rule3.ID(), "Third call should return same rule")
// Should have exactly 1 route rule
manager.mutex.RLock()
ruleCount := len(manager.routeRules)
manager.mutex.RUnlock()
assert.Equal(t, 1, ruleCount, "Should have exactly 1 block rule after 3 calls")
// Verify the rule blocks traffic to the WG network
srcIP := netip.MustParseAddr("10.0.0.1")
dstIP := netip.MustParseAddr("100.64.0.50")
_, pass := manager.routeACLsPass(srcIP, dstIP, layers.LayerTypeTCP, 12345, 80)
assert.False(t, pass, "Block rule should deny traffic to WG prefix")
}
// TestBlockRuleNotAccumulatedOnRepeatedEnableRouting verifies that calling
// EnableRouting multiple times (as happens on each route update) does not
// accumulate duplicate block rules in the routeRules slice.
func TestBlockRuleNotAccumulatedOnRepeatedEnableRouting(t *testing.T) {
ctrl := gomock.NewController(t)
dev := mocks.NewMockDevice(ctrl)
dev.EXPECT().MTU().Return(1500, nil).AnyTimes()
wgNet := netip.MustParsePrefix("100.64.0.1/16")
ifaceMock := &IFaceMock{
SetFilterFunc: func(device.PacketFilter) error { return nil },
AddressFunc: func() wgaddr.Address {
return wgaddr.Address{
IP: wgNet.Addr(),
Network: wgNet,
}
},
GetDeviceFunc: func() *device.FilteredDevice {
return &device.FilteredDevice{Device: dev}
},
GetWGDeviceFunc: func() *wgdevice.Device {
return &wgdevice.Device{}
},
}
manager, err := Create(ifaceMock, false, flowLogger, iface.DefaultMTU)
require.NoError(t, err)
t.Cleanup(func() {
require.NoError(t, manager.Close(nil))
})
// Call EnableRouting multiple times (simulating repeated route updates)
for i := 0; i < 5; i++ {
require.NoError(t, manager.EnableRouting())
}
manager.mutex.RLock()
ruleCount := len(manager.routeRules)
manager.mutex.RUnlock()
assert.Equal(t, 1, ruleCount,
"Repeated EnableRouting should not accumulate block rules")
}
// TestRouteRuleCountStableAcrossUpdates verifies that adding the same route
// rule multiple times does not create duplicate entries.
func TestRouteRuleCountStableAcrossUpdates(t *testing.T) {
manager := setupTestManager(t)
sources := []netip.Prefix{netip.MustParsePrefix("100.64.1.0/24")}
destination := fw.Network{Prefix: netip.MustParsePrefix("192.168.1.0/24")}
// Simulate 5 network map updates with the same route rule
for i := 0; i < 5; i++ {
rule, err := manager.AddRouteFiltering(
[]byte("policy-1"),
sources,
destination,
fw.ProtocolTCP,
nil,
&fw.Port{Values: []uint16{443}},
fw.ActionAccept,
)
require.NoError(t, err)
require.NotNil(t, rule)
}
manager.mutex.RLock()
ruleCount := len(manager.routeRules)
manager.mutex.RUnlock()
assert.Equal(t, 2, ruleCount,
"Should have exactly 2 rules (1 user rule + 1 block rule) after 5 updates")
}
// TestDeleteRouteRuleAfterIdempotentAdd verifies that deleting a route rule
// after adding it multiple times works correctly.
func TestDeleteRouteRuleAfterIdempotentAdd(t *testing.T) {
manager := setupTestManager(t)
sources := []netip.Prefix{netip.MustParsePrefix("100.64.1.0/24")}
destination := fw.Network{Prefix: netip.MustParsePrefix("192.168.1.0/24")}
// Add same rule twice
rule1, err := manager.AddRouteFiltering(
[]byte("policy-1"),
sources,
destination,
fw.ProtocolTCP,
nil,
nil,
fw.ActionAccept,
)
require.NoError(t, err)
rule2, err := manager.AddRouteFiltering(
[]byte("policy-1"),
sources,
destination,
fw.ProtocolTCP,
nil,
nil,
fw.ActionAccept,
)
require.NoError(t, err)
require.Equal(t, rule1.ID(), rule2.ID(), "Should return same rule ID")
// Delete using first reference
err = manager.DeleteRouteRule(rule1)
require.NoError(t, err)
// Verify traffic no longer passes
srcIP := netip.MustParseAddr("100.64.1.5")
dstIP := netip.MustParseAddr("192.168.1.10")
_, pass := manager.routeACLsPass(srcIP, dstIP, layers.LayerTypeTCP, 12345, 443)
assert.False(t, pass, "Traffic should not pass after rule deletion")
}
func setupTestManager(t *testing.T) *Manager {
t.Helper()
ctrl := gomock.NewController(t)
dev := mocks.NewMockDevice(ctrl)
dev.EXPECT().MTU().Return(1500, nil).AnyTimes()
wgNet := netip.MustParsePrefix("100.64.0.1/16")
ifaceMock := &IFaceMock{
SetFilterFunc: func(device.PacketFilter) error { return nil },
AddressFunc: func() wgaddr.Address {
return wgaddr.Address{
IP: wgNet.Addr(),
Network: wgNet,
}
},
GetDeviceFunc: func() *device.FilteredDevice {
return &device.FilteredDevice{Device: dev}
},
GetWGDeviceFunc: func() *wgdevice.Device {
return &wgdevice.Device{}
},
}
manager, err := Create(ifaceMock, false, flowLogger, iface.DefaultMTU)
require.NoError(t, err)
require.NoError(t, manager.EnableRouting())
t.Cleanup(func() {
require.NoError(t, manager.Close(nil))
})
return manager
}

View File

@@ -263,158 +263,6 @@ func TestAddUDPPacketHook(t *testing.T) {
}
}
// TestPeerRuleLifecycleDenyRules verifies that deny rules are correctly added
// to the deny map and can be cleanly deleted without leaving orphans.
func TestPeerRuleLifecycleDenyRules(t *testing.T) {
ifaceMock := &IFaceMock{
SetFilterFunc: func(device.PacketFilter) error { return nil },
}
m, err := Create(ifaceMock, false, flowLogger, nbiface.DefaultMTU)
require.NoError(t, err)
defer func() {
require.NoError(t, m.Close(nil))
}()
ip := net.ParseIP("192.168.1.1")
addr := netip.MustParseAddr("192.168.1.1")
// Add multiple deny rules for different ports
rule1, err := m.AddPeerFiltering(nil, ip, fw.ProtocolTCP, nil,
&fw.Port{Values: []uint16{22}}, fw.ActionDrop, "")
require.NoError(t, err)
rule2, err := m.AddPeerFiltering(nil, ip, fw.ProtocolTCP, nil,
&fw.Port{Values: []uint16{80}}, fw.ActionDrop, "")
require.NoError(t, err)
m.mutex.RLock()
denyCount := len(m.incomingDenyRules[addr])
m.mutex.RUnlock()
require.Equal(t, 2, denyCount, "Should have exactly 2 deny rules")
// Delete the first deny rule
err = m.DeletePeerRule(rule1[0])
require.NoError(t, err)
m.mutex.RLock()
denyCount = len(m.incomingDenyRules[addr])
m.mutex.RUnlock()
require.Equal(t, 1, denyCount, "Should have 1 deny rule after deleting first")
// Delete the second deny rule
err = m.DeletePeerRule(rule2[0])
require.NoError(t, err)
m.mutex.RLock()
_, exists := m.incomingDenyRules[addr]
m.mutex.RUnlock()
require.False(t, exists, "Deny rules IP entry should be cleaned up when empty")
}
// TestPeerRuleAddAndDeleteDontLeak verifies that repeatedly adding and deleting
// peer rules (simulating network map updates) does not leak rules in the maps.
func TestPeerRuleAddAndDeleteDontLeak(t *testing.T) {
ifaceMock := &IFaceMock{
SetFilterFunc: func(device.PacketFilter) error { return nil },
}
m, err := Create(ifaceMock, false, flowLogger, nbiface.DefaultMTU)
require.NoError(t, err)
defer func() {
require.NoError(t, m.Close(nil))
}()
ip := net.ParseIP("192.168.1.1")
addr := netip.MustParseAddr("192.168.1.1")
// Simulate 10 network map updates: add rule, delete old, add new
for i := 0; i < 10; i++ {
// Add a deny rule
rules, err := m.AddPeerFiltering(nil, ip, fw.ProtocolTCP, nil,
&fw.Port{Values: []uint16{22}}, fw.ActionDrop, "")
require.NoError(t, err)
// Add an allow rule
allowRules, err := m.AddPeerFiltering(nil, ip, fw.ProtocolTCP, nil,
&fw.Port{Values: []uint16{80}}, fw.ActionAccept, "")
require.NoError(t, err)
// Delete them (simulating ACL manager cleanup)
for _, r := range rules {
require.NoError(t, m.DeletePeerRule(r))
}
for _, r := range allowRules {
require.NoError(t, m.DeletePeerRule(r))
}
}
m.mutex.RLock()
denyCount := len(m.incomingDenyRules[addr])
allowCount := len(m.incomingRules[addr])
m.mutex.RUnlock()
require.Equal(t, 0, denyCount, "No deny rules should remain after cleanup")
require.Equal(t, 0, allowCount, "No allow rules should remain after cleanup")
}
// TestMixedAllowDenyRulesSameIP verifies that allow and deny rules for the same
// IP are stored in separate maps and don't interfere with each other.
func TestMixedAllowDenyRulesSameIP(t *testing.T) {
ifaceMock := &IFaceMock{
SetFilterFunc: func(device.PacketFilter) error { return nil },
}
m, err := Create(ifaceMock, false, flowLogger, nbiface.DefaultMTU)
require.NoError(t, err)
defer func() {
require.NoError(t, m.Close(nil))
}()
ip := net.ParseIP("192.168.1.1")
// Add allow rule for port 80
allowRule, err := m.AddPeerFiltering(nil, ip, fw.ProtocolTCP, nil,
&fw.Port{Values: []uint16{80}}, fw.ActionAccept, "")
require.NoError(t, err)
// Add deny rule for port 22
denyRule, err := m.AddPeerFiltering(nil, ip, fw.ProtocolTCP, nil,
&fw.Port{Values: []uint16{22}}, fw.ActionDrop, "")
require.NoError(t, err)
addr := netip.MustParseAddr("192.168.1.1")
m.mutex.RLock()
allowCount := len(m.incomingRules[addr])
denyCount := len(m.incomingDenyRules[addr])
m.mutex.RUnlock()
require.Equal(t, 1, allowCount, "Should have 1 allow rule")
require.Equal(t, 1, denyCount, "Should have 1 deny rule")
// Delete allow rule should not affect deny rule
err = m.DeletePeerRule(allowRule[0])
require.NoError(t, err)
m.mutex.RLock()
denyCountAfter := len(m.incomingDenyRules[addr])
m.mutex.RUnlock()
require.Equal(t, 1, denyCountAfter, "Deny rule should still exist after deleting allow rule")
// Delete deny rule
err = m.DeletePeerRule(denyRule[0])
require.NoError(t, err)
m.mutex.RLock()
_, denyExists := m.incomingDenyRules[addr]
_, allowExists := m.incomingRules[addr]
m.mutex.RUnlock()
require.False(t, denyExists, "Deny rules should be empty")
require.False(t, allowExists, "Allow rules should be empty")
}
func TestManagerReset(t *testing.T) {
ifaceMock := &IFaceMock{
SetFilterFunc: func(device.PacketFilter) error { return nil },

View File

@@ -5,8 +5,6 @@ import (
"context"
"fmt"
"io"
"os"
"strconv"
"sync"
"sync/atomic"
"time"
@@ -18,18 +16,9 @@ const (
maxBatchSize = 1024 * 16
maxMessageSize = 1024 * 2
defaultFlushInterval = 2 * time.Second
defaultLogChanSize = 1000
logChannelSize = 1000
)
func getLogChannelSize() int {
if v := os.Getenv("NB_USPFILTER_LOG_BUFFER"); v != "" {
if n, err := strconv.Atoi(v); err == nil && n > 0 {
return n
}
}
return defaultLogChanSize
}
type Level uint32
const (
@@ -80,7 +69,7 @@ type Logger struct {
func NewFromLogrus(logrusLogger *log.Logger) *Logger {
l := &Logger{
output: logrusLogger.Out,
msgChannel: make(chan logMessage, getLogChannelSize()),
msgChannel: make(chan logMessage, logChannelSize),
shutdown: make(chan struct{}),
bufPool: sync.Pool{
New: func() any {

View File

@@ -29,9 +29,8 @@ type PacketFilter interface {
type FilteredDevice struct {
tun.Device
filter PacketFilter
mutex sync.RWMutex
closeOnce sync.Once
filter PacketFilter
mutex sync.RWMutex
}
// newDeviceFilter constructor function
@@ -41,20 +40,6 @@ func newDeviceFilter(device tun.Device) *FilteredDevice {
}
}
// Close closes the underlying tun device exactly once.
// wireguard-go's netTun.Close() panics on double-close due to a bare close(channel),
// and multiple code paths can trigger Close on the same device.
func (d *FilteredDevice) Close() error {
var err error
d.closeOnce.Do(func() {
err = d.Device.Close()
})
if err != nil {
return err
}
return nil
}
// Read wraps read method with filtering feature
func (d *FilteredDevice) Read(bufs [][]byte, sizes []int, offset int) (n int, err error) {
if n, err = d.Device.Read(bufs, sizes, offset); err != nil {

View File

@@ -82,9 +82,7 @@ func (t *TunNetstackDevice) create() (WGConfigurer, error) {
t.configurer = configurer.NewUSPConfigurer(t.device, t.name, t.bind.ActivityRecorder())
err = t.configurer.ConfigureInterface(t.key, t.port)
if err != nil {
if cErr := tunIface.Close(); cErr != nil {
log.Debugf("failed to close tun device: %v", cErr)
}
_ = tunIface.Close()
return nil, fmt.Errorf("error configuring interface: %s", err)
}

View File

@@ -18,7 +18,6 @@ import (
"github.com/netbirdio/netbird/client/errors"
"github.com/netbirdio/netbird/client/iface/configurer"
"github.com/netbirdio/netbird/client/iface/device"
nbnetstack "github.com/netbirdio/netbird/client/iface/netstack"
"github.com/netbirdio/netbird/client/iface/udpmux"
"github.com/netbirdio/netbird/client/iface/wgaddr"
"github.com/netbirdio/netbird/client/iface/wgproxy"
@@ -229,10 +228,6 @@ func (w *WGIface) Close() error {
result = multierror.Append(result, fmt.Errorf("failed to close wireguard interface %s: %w", w.Name(), err))
}
if nbnetstack.IsEnabled() {
return errors.FormatErrorOrNil(result)
}
if err := w.waitUntilRemoved(); err != nil {
log.Warnf("failed to remove WireGuard interface %s: %v", w.Name(), err)
if err := w.Destroy(); err != nil {

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package iface

View File

@@ -66,7 +66,7 @@ func (t *NetStackTun) Create() (tun.Device, *netstack.Net, error) {
}
}()
return t.tundev, tunNet, nil
return nsTunDev, tunNet, nil
}
func (t *NetStackTun) Close() error {

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package udpmux

View File

@@ -189,212 +189,6 @@ func TestDefaultManagerStateless(t *testing.T) {
})
}
// TestDenyRulesNotAccumulatedOnRepeatedApply verifies that applying the same
// deny rules repeatedly does not accumulate duplicate rules in the uspfilter.
// This tests the full ACL manager -> uspfilter integration.
func TestDenyRulesNotAccumulatedOnRepeatedApply(t *testing.T) {
t.Setenv("NB_WG_KERNEL_DISABLED", "true")
networkMap := &mgmProto.NetworkMap{
FirewallRules: []*mgmProto.FirewallRule{
{
PeerIP: "10.93.0.1",
Direction: mgmProto.RuleDirection_IN,
Action: mgmProto.RuleAction_DROP,
Protocol: mgmProto.RuleProtocol_TCP,
Port: "22",
},
{
PeerIP: "10.93.0.2",
Direction: mgmProto.RuleDirection_IN,
Action: mgmProto.RuleAction_DROP,
Protocol: mgmProto.RuleProtocol_TCP,
Port: "80",
},
{
PeerIP: "10.93.0.3",
Direction: mgmProto.RuleDirection_IN,
Action: mgmProto.RuleAction_ACCEPT,
Protocol: mgmProto.RuleProtocol_TCP,
Port: "443",
},
},
FirewallRulesIsEmpty: false,
}
ctrl := gomock.NewController(t)
defer ctrl.Finish()
ifaceMock := mocks.NewMockIFaceMapper(ctrl)
ifaceMock.EXPECT().IsUserspaceBind().Return(true).AnyTimes()
ifaceMock.EXPECT().SetFilter(gomock.Any())
network := netip.MustParsePrefix("172.0.0.1/32")
ifaceMock.EXPECT().Name().Return("lo").AnyTimes()
ifaceMock.EXPECT().Address().Return(wgaddr.Address{
IP: network.Addr(),
Network: network,
}).AnyTimes()
ifaceMock.EXPECT().GetWGDevice().Return(nil).AnyTimes()
fw, err := firewall.NewFirewall(ifaceMock, nil, flowLogger, false, iface.DefaultMTU)
require.NoError(t, err)
defer func() {
require.NoError(t, fw.Close(nil))
}()
acl := NewDefaultManager(fw)
// Apply the same rules 5 times (simulating repeated network map updates)
for i := 0; i < 5; i++ {
acl.ApplyFiltering(networkMap, false)
}
// The ACL manager should track exactly 3 rule pairs (2 deny + 1 accept inbound)
assert.Equal(t, 3, len(acl.peerRulesPairs),
"Should have exactly 3 rule pairs after 5 identical updates")
}
// TestDenyRulesCleanedUpOnRemoval verifies that deny rules are properly cleaned
// up when they're removed from the network map in a subsequent update.
func TestDenyRulesCleanedUpOnRemoval(t *testing.T) {
t.Setenv("NB_WG_KERNEL_DISABLED", "true")
ctrl := gomock.NewController(t)
defer ctrl.Finish()
ifaceMock := mocks.NewMockIFaceMapper(ctrl)
ifaceMock.EXPECT().IsUserspaceBind().Return(true).AnyTimes()
ifaceMock.EXPECT().SetFilter(gomock.Any())
network := netip.MustParsePrefix("172.0.0.1/32")
ifaceMock.EXPECT().Name().Return("lo").AnyTimes()
ifaceMock.EXPECT().Address().Return(wgaddr.Address{
IP: network.Addr(),
Network: network,
}).AnyTimes()
ifaceMock.EXPECT().GetWGDevice().Return(nil).AnyTimes()
fw, err := firewall.NewFirewall(ifaceMock, nil, flowLogger, false, iface.DefaultMTU)
require.NoError(t, err)
defer func() {
require.NoError(t, fw.Close(nil))
}()
acl := NewDefaultManager(fw)
// First update: add deny and accept rules
networkMap1 := &mgmProto.NetworkMap{
FirewallRules: []*mgmProto.FirewallRule{
{
PeerIP: "10.93.0.1",
Direction: mgmProto.RuleDirection_IN,
Action: mgmProto.RuleAction_DROP,
Protocol: mgmProto.RuleProtocol_TCP,
Port: "22",
},
{
PeerIP: "10.93.0.2",
Direction: mgmProto.RuleDirection_IN,
Action: mgmProto.RuleAction_ACCEPT,
Protocol: mgmProto.RuleProtocol_TCP,
Port: "443",
},
},
FirewallRulesIsEmpty: false,
}
acl.ApplyFiltering(networkMap1, false)
assert.Equal(t, 2, len(acl.peerRulesPairs), "Should have 2 rules after first update")
// Second update: remove the deny rule, keep only accept
networkMap2 := &mgmProto.NetworkMap{
FirewallRules: []*mgmProto.FirewallRule{
{
PeerIP: "10.93.0.2",
Direction: mgmProto.RuleDirection_IN,
Action: mgmProto.RuleAction_ACCEPT,
Protocol: mgmProto.RuleProtocol_TCP,
Port: "443",
},
},
FirewallRulesIsEmpty: false,
}
acl.ApplyFiltering(networkMap2, false)
assert.Equal(t, 1, len(acl.peerRulesPairs),
"Should have 1 rule after removing deny rule")
// Third update: remove all rules
networkMap3 := &mgmProto.NetworkMap{
FirewallRules: []*mgmProto.FirewallRule{},
FirewallRulesIsEmpty: true,
}
acl.ApplyFiltering(networkMap3, false)
assert.Equal(t, 0, len(acl.peerRulesPairs),
"Should have 0 rules after removing all rules")
}
// TestRuleUpdateChangingAction verifies that when a rule's action changes from
// accept to deny (or vice versa), the old rule is properly removed and the new
// one added without leaking.
func TestRuleUpdateChangingAction(t *testing.T) {
t.Setenv("NB_WG_KERNEL_DISABLED", "true")
ctrl := gomock.NewController(t)
defer ctrl.Finish()
ifaceMock := mocks.NewMockIFaceMapper(ctrl)
ifaceMock.EXPECT().IsUserspaceBind().Return(true).AnyTimes()
ifaceMock.EXPECT().SetFilter(gomock.Any())
network := netip.MustParsePrefix("172.0.0.1/32")
ifaceMock.EXPECT().Name().Return("lo").AnyTimes()
ifaceMock.EXPECT().Address().Return(wgaddr.Address{
IP: network.Addr(),
Network: network,
}).AnyTimes()
ifaceMock.EXPECT().GetWGDevice().Return(nil).AnyTimes()
fw, err := firewall.NewFirewall(ifaceMock, nil, flowLogger, false, iface.DefaultMTU)
require.NoError(t, err)
defer func() {
require.NoError(t, fw.Close(nil))
}()
acl := NewDefaultManager(fw)
// First update: accept rule
networkMap := &mgmProto.NetworkMap{
FirewallRules: []*mgmProto.FirewallRule{
{
PeerIP: "10.93.0.1",
Direction: mgmProto.RuleDirection_IN,
Action: mgmProto.RuleAction_ACCEPT,
Protocol: mgmProto.RuleProtocol_TCP,
Port: "22",
},
},
FirewallRulesIsEmpty: false,
}
acl.ApplyFiltering(networkMap, false)
assert.Equal(t, 1, len(acl.peerRulesPairs))
// Second update: change to deny (same IP/port/proto, different action)
networkMap.FirewallRules = []*mgmProto.FirewallRule{
{
PeerIP: "10.93.0.1",
Direction: mgmProto.RuleDirection_IN,
Action: mgmProto.RuleAction_DROP,
Protocol: mgmProto.RuleProtocol_TCP,
Port: "22",
},
}
acl.ApplyFiltering(networkMap, false)
// Should still have exactly 1 rule (the old accept removed, new deny added)
assert.Equal(t, 1, len(acl.peerRulesPairs),
"Changing action should result in exactly 1 rule, not 2")
}
func TestPortInfoEmpty(t *testing.T) {
tests := []struct {
name string

View File

@@ -20,7 +20,6 @@ import (
"github.com/netbirdio/netbird/client/iface"
"github.com/netbirdio/netbird/client/iface/device"
"github.com/netbirdio/netbird/client/iface/netstack"
"github.com/netbirdio/netbird/client/internal/dns"
"github.com/netbirdio/netbird/client/internal/listener"
"github.com/netbirdio/netbird/client/internal/peer"
@@ -245,7 +244,7 @@ func (c *ConnectClient) run(mobileDependency MobileDependency, runningChan chan
localPeerState := peer.LocalPeerState{
IP: loginResp.GetPeerConfig().GetAddress(),
PubKey: myPrivateKey.PublicKey().String(),
KernelInterface: device.WireGuardModuleIsLoaded() && !netstack.IsEnabled(),
KernelInterface: device.WireGuardModuleIsLoaded(),
FQDN: loginResp.GetPeerConfig().GetFqdn(),
}
c.statusRecorder.UpdateLocalPeerState(localPeerState)

View File

@@ -1,4 +1,4 @@
//go:build ios || android
//go:build ios || tvos || android
package debug

View File

@@ -112,54 +112,6 @@ func TestHandlerChain_ServeDNS_DomainMatching(t *testing.T) {
matchSubdomains: false,
shouldMatch: false,
},
{
name: "single letter TLD exact match",
handlerDomain: "example.x.",
queryDomain: "example.x.",
isWildcard: false,
matchSubdomains: false,
shouldMatch: true,
},
{
name: "single letter TLD subdomain match",
handlerDomain: "example.x.",
queryDomain: "sub.example.x.",
isWildcard: false,
matchSubdomains: true,
shouldMatch: true,
},
{
name: "single letter TLD wildcard match",
handlerDomain: "*.example.x.",
queryDomain: "sub.example.x.",
isWildcard: true,
matchSubdomains: false,
shouldMatch: true,
},
{
name: "two letter domain labels",
handlerDomain: "a.b.",
queryDomain: "a.b.",
isWildcard: false,
matchSubdomains: false,
shouldMatch: true,
},
{
name: "single character domain",
handlerDomain: "x.",
queryDomain: "x.",
isWildcard: false,
matchSubdomains: false,
shouldMatch: true,
},
{
name: "single character domain with subdomain match",
handlerDomain: "x.",
queryDomain: "sub.x.",
isWildcard: false,
matchSubdomains: true,
shouldMatch: true,
},
}
for _, tt := range tests {

View File

@@ -9,10 +9,8 @@ import (
"io"
"net/netip"
"os/exec"
"slices"
"strconv"
"strings"
"sync"
log "github.com/sirupsen/logrus"
"golang.org/x/exp/maps"
@@ -40,9 +38,6 @@ const (
type systemConfigurator struct {
createdKeys map[string]struct{}
systemDNSSettings SystemDNSSettings
mu sync.RWMutex
origNameservers []netip.Addr
}
func newHostManager() (*systemConfigurator, error) {
@@ -223,7 +218,6 @@ func (s *systemConfigurator) getSystemDNSSettings() (SystemDNSSettings, error) {
}
var dnsSettings SystemDNSSettings
var serverAddresses []netip.Addr
inSearchDomainsArray := false
inServerAddressesArray := false
@@ -250,12 +244,9 @@ func (s *systemConfigurator) getSystemDNSSettings() (SystemDNSSettings, error) {
dnsSettings.Domains = append(dnsSettings.Domains, searchDomain)
} else if inServerAddressesArray {
address := strings.Split(line, " : ")[1]
if ip, err := netip.ParseAddr(address); err == nil && !ip.IsUnspecified() {
ip = ip.Unmap()
serverAddresses = append(serverAddresses, ip)
if !dnsSettings.ServerIP.IsValid() && ip.Is4() {
dnsSettings.ServerIP = ip
}
if ip, err := netip.ParseAddr(address); err == nil && ip.Is4() {
dnsSettings.ServerIP = ip.Unmap()
inServerAddressesArray = false // Stop reading after finding the first IPv4 address
}
}
}
@@ -267,19 +258,9 @@ func (s *systemConfigurator) getSystemDNSSettings() (SystemDNSSettings, error) {
// default to 53 port
dnsSettings.ServerPort = DefaultPort
s.mu.Lock()
s.origNameservers = serverAddresses
s.mu.Unlock()
return dnsSettings, nil
}
func (s *systemConfigurator) getOriginalNameservers() []netip.Addr {
s.mu.RLock()
defer s.mu.RUnlock()
return slices.Clone(s.origNameservers)
}
func (s *systemConfigurator) addSearchDomains(key, domains string, ip netip.Addr, port int) error {
err := s.addDNSState(key, domains, ip, port, true)
if err != nil {

View File

@@ -109,169 +109,3 @@ func removeTestDNSKey(key string) error {
_, err := cmd.CombinedOutput()
return err
}
func TestGetOriginalNameservers(t *testing.T) {
configurator := &systemConfigurator{
createdKeys: make(map[string]struct{}),
origNameservers: []netip.Addr{
netip.MustParseAddr("8.8.8.8"),
netip.MustParseAddr("1.1.1.1"),
},
}
servers := configurator.getOriginalNameservers()
assert.Len(t, servers, 2)
assert.Equal(t, netip.MustParseAddr("8.8.8.8"), servers[0])
assert.Equal(t, netip.MustParseAddr("1.1.1.1"), servers[1])
}
func TestGetOriginalNameserversFromSystem(t *testing.T) {
configurator := &systemConfigurator{
createdKeys: make(map[string]struct{}),
}
_, err := configurator.getSystemDNSSettings()
require.NoError(t, err)
servers := configurator.getOriginalNameservers()
require.NotEmpty(t, servers, "expected at least one DNS server from system configuration")
for _, server := range servers {
assert.True(t, server.IsValid(), "server address should be valid")
assert.False(t, server.IsUnspecified(), "server address should not be unspecified")
}
t.Logf("found %d original nameservers: %v", len(servers), servers)
}
func setupTestConfigurator(t *testing.T) (*systemConfigurator, *statemanager.Manager, func()) {
t.Helper()
tmpDir := t.TempDir()
stateFile := filepath.Join(tmpDir, "state.json")
sm := statemanager.New(stateFile)
sm.RegisterState(&ShutdownState{})
sm.Start()
configurator := &systemConfigurator{
createdKeys: make(map[string]struct{}),
}
searchKey := getKeyWithInput(netbirdDNSStateKeyFormat, searchSuffix)
matchKey := getKeyWithInput(netbirdDNSStateKeyFormat, matchSuffix)
localKey := getKeyWithInput(netbirdDNSStateKeyFormat, localSuffix)
cleanup := func() {
_ = sm.Stop(context.Background())
for _, key := range []string{searchKey, matchKey, localKey} {
_ = removeTestDNSKey(key)
}
}
return configurator, sm, cleanup
}
func TestOriginalNameserversNoTransition(t *testing.T) {
netbirdIP := netip.MustParseAddr("100.64.0.1")
testCases := []struct {
name string
routeAll bool
}{
{"routeall_false", false},
{"routeall_true", true},
}
for _, tc := range testCases {
t.Run(tc.name, func(t *testing.T) {
configurator, sm, cleanup := setupTestConfigurator(t)
defer cleanup()
_, err := configurator.getSystemDNSSettings()
require.NoError(t, err)
initialServers := configurator.getOriginalNameservers()
t.Logf("Initial servers: %v", initialServers)
require.NotEmpty(t, initialServers)
for _, srv := range initialServers {
require.NotEqual(t, netbirdIP, srv, "initial servers should not contain NetBird IP")
}
config := HostDNSConfig{
ServerIP: netbirdIP,
ServerPort: 53,
RouteAll: tc.routeAll,
Domains: []DomainConfig{{Domain: "example.com", MatchOnly: true}},
}
for i := 1; i <= 2; i++ {
err = configurator.applyDNSConfig(config, sm)
require.NoError(t, err)
servers := configurator.getOriginalNameservers()
t.Logf("After apply %d (RouteAll=%v): %v", i, tc.routeAll, servers)
assert.Equal(t, initialServers, servers)
}
})
}
}
func TestOriginalNameserversRouteAllTransition(t *testing.T) {
netbirdIP := netip.MustParseAddr("100.64.0.1")
testCases := []struct {
name string
initialRoute bool
}{
{"start_with_routeall_false", false},
{"start_with_routeall_true", true},
}
for _, tc := range testCases {
t.Run(tc.name, func(t *testing.T) {
configurator, sm, cleanup := setupTestConfigurator(t)
defer cleanup()
_, err := configurator.getSystemDNSSettings()
require.NoError(t, err)
initialServers := configurator.getOriginalNameservers()
t.Logf("Initial servers: %v", initialServers)
require.NotEmpty(t, initialServers)
config := HostDNSConfig{
ServerIP: netbirdIP,
ServerPort: 53,
RouteAll: tc.initialRoute,
Domains: []DomainConfig{{Domain: "example.com", MatchOnly: true}},
}
// First apply
err = configurator.applyDNSConfig(config, sm)
require.NoError(t, err)
servers := configurator.getOriginalNameservers()
t.Logf("After first apply (RouteAll=%v): %v", tc.initialRoute, servers)
assert.Equal(t, initialServers, servers)
// Toggle RouteAll
config.RouteAll = !tc.initialRoute
err = configurator.applyDNSConfig(config, sm)
require.NoError(t, err)
servers = configurator.getOriginalNameservers()
t.Logf("After toggle (RouteAll=%v): %v", config.RouteAll, servers)
assert.Equal(t, initialServers, servers)
// Toggle back
config.RouteAll = tc.initialRoute
err = configurator.applyDNSConfig(config, sm)
require.NoError(t, err)
servers = configurator.getOriginalNameservers()
t.Logf("After toggle back (RouteAll=%v): %v", config.RouteAll, servers)
assert.Equal(t, initialServers, servers)
for _, srv := range servers {
assert.NotEqual(t, netbirdIP, srv, "servers should not contain NetBird IP")
}
})
}
}

View File

@@ -6,9 +6,7 @@ import (
"fmt"
"net/netip"
"net/url"
"os"
"runtime"
"strconv"
"strings"
"sync"
@@ -29,8 +27,6 @@ import (
"github.com/netbirdio/netbird/shared/management/domain"
)
const envSkipDNSProbe = "NB_SKIP_DNS_PROBE"
// ReadyListener is a notification mechanism what indicate the server is ready to handle host dns address changes
type ReadyListener interface {
OnReady()
@@ -443,17 +439,6 @@ func (s *DefaultServer) SearchDomains() []string {
// ProbeAvailability tests each upstream group's servers for availability
// and deactivates the group if no server responds
func (s *DefaultServer) ProbeAvailability() {
if val := os.Getenv(envSkipDNSProbe); val != "" {
skipProbe, err := strconv.ParseBool(val)
if err != nil {
log.Warnf("failed to parse %s: %v", envSkipDNSProbe, err)
}
if skipProbe {
log.Infof("skipping DNS probe due to %s", envSkipDNSProbe)
return
}
}
var wg sync.WaitGroup
for _, mux := range s.dnsMuxMap {
wg.Add(1)
@@ -630,7 +615,7 @@ func (s *DefaultServer) applyHostConfig() {
s.registerFallback(config)
}
// registerFallback registers original nameservers as low-priority fallback handlers.
// registerFallback registers original nameservers as low-priority fallback handlers
func (s *DefaultServer) registerFallback(config HostDNSConfig) {
hostMgrWithNS, ok := s.hostManager.(hostManagerWithOriginalNS)
if !ok {
@@ -639,7 +624,6 @@ func (s *DefaultServer) registerFallback(config HostDNSConfig) {
originalNameservers := hostMgrWithNS.getOriginalNameservers()
if len(originalNameservers) == 0 {
s.deregisterHandler([]string{nbdns.RootZone}, PriorityFallback)
return
}

View File

@@ -8,21 +8,15 @@ import (
type MockResponseWriter struct {
WriteMsgFunc func(m *dns.Msg) error
lastResponse *dns.Msg
}
func (rw *MockResponseWriter) WriteMsg(m *dns.Msg) error {
rw.lastResponse = m
if rw.WriteMsgFunc != nil {
return rw.WriteMsgFunc(m)
}
return nil
}
func (rw *MockResponseWriter) GetLastResponse() *dns.Msg {
return rw.lastResponse
}
func (rw *MockResponseWriter) LocalAddr() net.Addr { return nil }
func (rw *MockResponseWriter) RemoteAddr() net.Addr { return nil }
func (rw *MockResponseWriter) Write([]byte) (int, error) { return 0, nil }

View File

@@ -1,4 +1,4 @@
//go:build ios || android
//go:build ios || tvos || android
package dns

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package dns

View File

@@ -190,75 +190,50 @@ func (f *DNSForwarder) Close(ctx context.Context) error {
return nberrors.FormatErrorOrNil(result)
}
func (f *DNSForwarder) handleDNSQuery(logger *log.Entry, w dns.ResponseWriter, query *dns.Msg, startTime time.Time) {
func (f *DNSForwarder) handleDNSQuery(logger *log.Entry, w dns.ResponseWriter, query *dns.Msg) *dns.Msg {
if len(query.Question) == 0 {
return
return nil
}
question := query.Question[0]
qname := strings.ToLower(question.Name)
logger.Tracef("received DNS request for DNS forwarder: domain=%s type=%s class=%s",
question.Name, dns.TypeToString[question.Qtype], dns.ClassToString[question.Qclass])
logger.Tracef("question: domain=%s type=%s class=%s",
qname, dns.TypeToString[question.Qtype], dns.ClassToString[question.Qclass])
domain := strings.ToLower(question.Name)
resp := query.SetReply(query)
network := resutil.NetworkForQtype(question.Qtype)
if network == "" {
resp.Rcode = dns.RcodeNotImplemented
f.writeResponse(logger, w, resp, qname, startTime)
return
if err := w.WriteMsg(resp); err != nil {
logger.Errorf("failed to write DNS response: %v", err)
}
return nil
}
mostSpecificResId, matchingEntries := f.getMatchingEntries(strings.TrimSuffix(qname, "."))
mostSpecificResId, matchingEntries := f.getMatchingEntries(strings.TrimSuffix(domain, "."))
// query doesn't match any configured domain
if mostSpecificResId == "" {
resp.Rcode = dns.RcodeRefused
f.writeResponse(logger, w, resp, qname, startTime)
return
if err := w.WriteMsg(resp); err != nil {
logger.Errorf("failed to write DNS response: %v", err)
}
return nil
}
ctx, cancel := context.WithTimeout(context.Background(), upstreamTimeout)
defer cancel()
result := resutil.LookupIP(ctx, f.resolver, network, qname, question.Qtype)
result := resutil.LookupIP(ctx, f.resolver, network, domain, question.Qtype)
if result.Err != nil {
f.handleDNSError(ctx, logger, w, question, resp, qname, result, startTime)
return
f.handleDNSError(ctx, logger, w, question, resp, domain, result)
return nil
}
f.updateInternalState(result.IPs, mostSpecificResId, matchingEntries)
resp.Answer = append(resp.Answer, resutil.IPsToRRs(qname, result.IPs, f.ttl)...)
f.cache.set(qname, question.Qtype, result.IPs)
resp.Answer = append(resp.Answer, resutil.IPsToRRs(domain, result.IPs, f.ttl)...)
f.cache.set(domain, question.Qtype, result.IPs)
f.writeResponse(logger, w, resp, qname, startTime)
}
func (f *DNSForwarder) writeResponse(logger *log.Entry, w dns.ResponseWriter, resp *dns.Msg, qname string, startTime time.Time) {
if err := w.WriteMsg(resp); err != nil {
logger.Errorf("failed to write DNS response: %v", err)
return
}
logger.Tracef("response: domain=%s rcode=%s answers=%s took=%s",
qname, dns.RcodeToString[resp.Rcode], resutil.FormatAnswers(resp.Answer), time.Since(startTime))
}
// udpResponseWriter wraps a dns.ResponseWriter to handle UDP-specific truncation.
type udpResponseWriter struct {
dns.ResponseWriter
query *dns.Msg
}
func (u *udpResponseWriter) WriteMsg(resp *dns.Msg) error {
opt := u.query.IsEdns0()
maxSize := dns.MinMsgSize
if opt != nil {
maxSize = int(opt.UDPSize())
}
if resp.Len() > maxSize {
resp.Truncate(maxSize)
}
return u.ResponseWriter.WriteMsg(resp)
return resp
}
func (f *DNSForwarder) handleDNSQueryUDP(w dns.ResponseWriter, query *dns.Msg) {
@@ -268,7 +243,30 @@ func (f *DNSForwarder) handleDNSQueryUDP(w dns.ResponseWriter, query *dns.Msg) {
"dns_id": fmt.Sprintf("%04x", query.Id),
})
f.handleDNSQuery(logger, &udpResponseWriter{ResponseWriter: w, query: query}, query, startTime)
resp := f.handleDNSQuery(logger, w, query)
if resp == nil {
return
}
opt := query.IsEdns0()
maxSize := dns.MinMsgSize
if opt != nil {
// client advertised a larger EDNS0 buffer
maxSize = int(opt.UDPSize())
}
// if our response is too big, truncate and set the TC bit
if resp.Len() > maxSize {
resp.Truncate(maxSize)
}
if err := w.WriteMsg(resp); err != nil {
logger.Errorf("failed to write DNS response: %v", err)
return
}
logger.Tracef("response: domain=%s rcode=%s answers=%s took=%s",
query.Question[0].Name, dns.RcodeToString[resp.Rcode], resutil.FormatAnswers(resp.Answer), time.Since(startTime))
}
func (f *DNSForwarder) handleDNSQueryTCP(w dns.ResponseWriter, query *dns.Msg) {
@@ -278,7 +276,18 @@ func (f *DNSForwarder) handleDNSQueryTCP(w dns.ResponseWriter, query *dns.Msg) {
"dns_id": fmt.Sprintf("%04x", query.Id),
})
f.handleDNSQuery(logger, w, query, startTime)
resp := f.handleDNSQuery(logger, w, query)
if resp == nil {
return
}
if err := w.WriteMsg(resp); err != nil {
logger.Errorf("failed to write DNS response: %v", err)
return
}
logger.Tracef("response: domain=%s rcode=%s answers=%s took=%s",
query.Question[0].Name, dns.RcodeToString[resp.Rcode], resutil.FormatAnswers(resp.Answer), time.Since(startTime))
}
func (f *DNSForwarder) updateInternalState(ips []netip.Addr, mostSpecificResId route.ResID, matchingEntries []*ForwarderEntry) {
@@ -325,7 +334,6 @@ func (f *DNSForwarder) handleDNSError(
resp *dns.Msg,
domain string,
result resutil.LookupResult,
startTime time.Time,
) {
qType := question.Qtype
qTypeName := dns.TypeToString[qType]
@@ -335,7 +343,9 @@ func (f *DNSForwarder) handleDNSError(
// NotFound: cache negative result and respond
if result.Rcode == dns.RcodeNameError || result.Rcode == dns.RcodeSuccess {
f.cache.set(domain, question.Qtype, nil)
f.writeResponse(logger, w, resp, domain, startTime)
if writeErr := w.WriteMsg(resp); writeErr != nil {
logger.Errorf("failed to write failure DNS response: %v", writeErr)
}
return
}
@@ -345,7 +355,9 @@ func (f *DNSForwarder) handleDNSError(
logger.Debugf("serving cached DNS response after upstream failure: domain=%s type=%s", domain, qTypeName)
resp.Answer = append(resp.Answer, resutil.IPsToRRs(domain, ips, f.ttl)...)
resp.Rcode = dns.RcodeSuccess
f.writeResponse(logger, w, resp, domain, startTime)
if writeErr := w.WriteMsg(resp); writeErr != nil {
logger.Errorf("failed to write cached DNS response: %v", writeErr)
}
return
}
@@ -353,7 +365,9 @@ func (f *DNSForwarder) handleDNSError(
verifyResult := resutil.LookupIP(ctx, f.resolver, resutil.NetworkForQtype(qType), domain, qType)
if verifyResult.Rcode == dns.RcodeNameError || verifyResult.Rcode == dns.RcodeSuccess {
resp.Rcode = verifyResult.Rcode
f.writeResponse(logger, w, resp, domain, startTime)
if writeErr := w.WriteMsg(resp); writeErr != nil {
logger.Errorf("failed to write failure DNS response: %v", writeErr)
}
return
}
}
@@ -361,12 +375,15 @@ func (f *DNSForwarder) handleDNSError(
// No cache or verification failed. Log with or without the server field for more context.
var dnsErr *net.DNSError
if errors.As(result.Err, &dnsErr) && dnsErr.Server != "" {
logger.Warnf("upstream failure: type=%s domain=%s server=%s: %v", qTypeName, domain, dnsErr.Server, result.Err)
logger.Warnf("failed to resolve: type=%s domain=%s server=%s: %v", qTypeName, domain, dnsErr.Server, result.Err)
} else {
logger.Warnf(errResolveFailed, domain, result.Err)
}
f.writeResponse(logger, w, resp, domain, startTime)
// Write final failure response.
if writeErr := w.WriteMsg(resp); writeErr != nil {
logger.Errorf("failed to write failure DNS response: %v", writeErr)
}
}
// getMatchingEntries retrieves the resource IDs for a given domain.

View File

@@ -318,9 +318,8 @@ func TestDNSForwarder_UnauthorizedDomainAccess(t *testing.T) {
query.SetQuestion(dns.Fqdn(tt.queryDomain), dns.TypeA)
mockWriter := &test.MockResponseWriter{}
forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, query, time.Now())
resp := forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, query)
resp := mockWriter.GetLastResponse()
if tt.shouldResolve {
require.NotNil(t, resp, "Expected response for authorized domain")
require.Equal(t, dns.RcodeSuccess, resp.Rcode, "Expected successful response")
@@ -330,9 +329,10 @@ func TestDNSForwarder_UnauthorizedDomainAccess(t *testing.T) {
mockFirewall.AssertExpectations(t)
mockResolver.AssertExpectations(t)
} else {
require.NotNil(t, resp, "Expected response")
assert.True(t, len(resp.Answer) == 0 || resp.Rcode != dns.RcodeSuccess,
"Unauthorized domain should not return successful answers")
if resp != nil {
assert.True(t, len(resp.Answer) == 0 || resp.Rcode != dns.RcodeSuccess,
"Unauthorized domain should not return successful answers")
}
mockFirewall.AssertNotCalled(t, "UpdateSet")
mockResolver.AssertNotCalled(t, "LookupNetIP")
}
@@ -466,16 +466,14 @@ func TestDNSForwarder_FirewallSetUpdates(t *testing.T) {
dnsQuery.SetQuestion(dns.Fqdn(tt.query), dns.TypeA)
mockWriter := &test.MockResponseWriter{}
forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, dnsQuery, time.Now())
resp := forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, dnsQuery)
// Verify response
resp := mockWriter.GetLastResponse()
if tt.shouldResolve {
require.NotNil(t, resp, "Expected response for authorized domain")
require.Equal(t, dns.RcodeSuccess, resp.Rcode)
require.NotEmpty(t, resp.Answer)
} else {
require.NotNil(t, resp, "Expected response")
} else if resp != nil {
assert.True(t, resp.Rcode == dns.RcodeRefused || len(resp.Answer) == 0,
"Unauthorized domain should be refused or have no answers")
}
@@ -530,10 +528,9 @@ func TestDNSForwarder_MultipleIPsInSingleUpdate(t *testing.T) {
query.SetQuestion("example.com.", dns.TypeA)
mockWriter := &test.MockResponseWriter{}
forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, query, time.Now())
resp := forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, query)
// Verify response contains all IPs
resp := mockWriter.GetLastResponse()
require.NotNil(t, resp)
require.Equal(t, dns.RcodeSuccess, resp.Rcode)
require.Len(t, resp.Answer, 3, "Should have 3 answer records")
@@ -608,7 +605,7 @@ func TestDNSForwarder_ResponseCodes(t *testing.T) {
},
}
forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, query, time.Now())
_ = forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, query)
// Check the response written to the writer
require.NotNil(t, writtenResp, "Expected response to be written")
@@ -678,8 +675,7 @@ func TestDNSForwarder_ServeFromCacheOnUpstreamFailure(t *testing.T) {
q1 := &dns.Msg{}
q1.SetQuestion(dns.Fqdn("example.com"), dns.TypeA)
w1 := &test.MockResponseWriter{}
forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), w1, q1, time.Now())
resp1 := w1.GetLastResponse()
resp1 := forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), w1, q1)
require.NotNil(t, resp1)
require.Equal(t, dns.RcodeSuccess, resp1.Rcode)
require.Len(t, resp1.Answer, 1)
@@ -687,13 +683,13 @@ func TestDNSForwarder_ServeFromCacheOnUpstreamFailure(t *testing.T) {
// Second query: serve from cache after upstream failure
q2 := &dns.Msg{}
q2.SetQuestion(dns.Fqdn("example.com"), dns.TypeA)
w2 := &test.MockResponseWriter{}
forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), w2, q2, time.Now())
var writtenResp *dns.Msg
w2 := &test.MockResponseWriter{WriteMsgFunc: func(m *dns.Msg) error { writtenResp = m; return nil }}
_ = forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), w2, q2)
resp2 := w2.GetLastResponse()
require.NotNil(t, resp2, "expected response to be written")
require.Equal(t, dns.RcodeSuccess, resp2.Rcode)
require.Len(t, resp2.Answer, 1)
require.NotNil(t, writtenResp, "expected response to be written")
require.Equal(t, dns.RcodeSuccess, writtenResp.Rcode)
require.Len(t, writtenResp.Answer, 1)
mockResolver.AssertExpectations(t)
}
@@ -719,8 +715,7 @@ func TestDNSForwarder_CacheNormalizationCasingAndDot(t *testing.T) {
q1 := &dns.Msg{}
q1.SetQuestion(mixedQuery+".", dns.TypeA)
w1 := &test.MockResponseWriter{}
forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), w1, q1, time.Now())
resp1 := w1.GetLastResponse()
resp1 := forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), w1, q1)
require.NotNil(t, resp1)
require.Equal(t, dns.RcodeSuccess, resp1.Rcode)
require.Len(t, resp1.Answer, 1)
@@ -732,13 +727,13 @@ func TestDNSForwarder_CacheNormalizationCasingAndDot(t *testing.T) {
q2 := &dns.Msg{}
q2.SetQuestion("EXAMPLE.COM", dns.TypeA)
w2 := &test.MockResponseWriter{}
forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), w2, q2, time.Now())
var writtenResp *dns.Msg
w2 := &test.MockResponseWriter{WriteMsgFunc: func(m *dns.Msg) error { writtenResp = m; return nil }}
_ = forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), w2, q2)
resp2 := w2.GetLastResponse()
require.NotNil(t, resp2)
require.Equal(t, dns.RcodeSuccess, resp2.Rcode)
require.Len(t, resp2.Answer, 1)
require.NotNil(t, writtenResp)
require.Equal(t, dns.RcodeSuccess, writtenResp.Rcode)
require.Len(t, writtenResp.Answer, 1)
mockResolver.AssertExpectations(t)
}
@@ -789,9 +784,8 @@ func TestDNSForwarder_MultipleOverlappingPatterns(t *testing.T) {
query.SetQuestion("smtp.mail.example.com.", dns.TypeA)
mockWriter := &test.MockResponseWriter{}
forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, query, time.Now())
resp := forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, query)
resp := mockWriter.GetLastResponse()
require.NotNil(t, resp)
assert.Equal(t, dns.RcodeSuccess, resp.Rcode)
@@ -903,15 +897,26 @@ func TestDNSForwarder_NodataVsNxdomain(t *testing.T) {
query := &dns.Msg{}
query.SetQuestion(dns.Fqdn("example.com"), tt.queryType)
mockWriter := &test.MockResponseWriter{}
forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, query, time.Now())
var writtenResp *dns.Msg
mockWriter := &test.MockResponseWriter{
WriteMsgFunc: func(m *dns.Msg) error {
writtenResp = m
return nil
},
}
resp := mockWriter.GetLastResponse()
require.NotNil(t, resp, "Expected response to be written")
assert.Equal(t, tt.expectedCode, resp.Rcode, tt.description)
resp := forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, query)
// If a response was returned, it means it should be written (happens in wrapper functions)
if resp != nil && writtenResp == nil {
writtenResp = resp
}
require.NotNil(t, writtenResp, "Expected response to be written")
assert.Equal(t, tt.expectedCode, writtenResp.Rcode, tt.description)
if tt.expectNoAnswer {
assert.Empty(t, resp.Answer, "Response should have no answer records")
assert.Empty(t, writtenResp.Answer, "Response should have no answer records")
}
mockResolver.AssertExpectations(t)
@@ -926,8 +931,15 @@ func TestDNSForwarder_EmptyQuery(t *testing.T) {
query := &dns.Msg{}
// Don't set any question
mockWriter := &test.MockResponseWriter{}
forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, query, time.Now())
writeCalled := false
mockWriter := &test.MockResponseWriter{
WriteMsgFunc: func(m *dns.Msg) error {
writeCalled = true
return nil
},
}
resp := forwarder.handleDNSQuery(log.NewEntry(log.StandardLogger()), mockWriter, query)
assert.Nil(t, mockWriter.GetLastResponse(), "Should not write response for empty query")
assert.Nil(t, resp, "Should return nil for empty query")
assert.False(t, writeCalled, "Should not write response for empty query")
}

View File

@@ -28,7 +28,6 @@ import (
"github.com/netbirdio/netbird/client/firewall"
firewallManager "github.com/netbirdio/netbird/client/firewall/manager"
"github.com/netbirdio/netbird/client/iface"
nbnetstack "github.com/netbirdio/netbird/client/iface/netstack"
"github.com/netbirdio/netbird/client/iface/device"
"github.com/netbirdio/netbird/client/iface/udpmux"
"github.com/netbirdio/netbird/client/internal/acl"
@@ -544,12 +543,11 @@ func (e *Engine) Start(netbirdConfig *mgmProto.NetbirdConfig, mgmtURL *url.URL)
// monitor WireGuard interface lifecycle and restart engine on changes
e.wgIfaceMonitor = NewWGIfaceMonitor()
e.shutdownWg.Add(1)
wgIfaceName := e.wgInterface.Name()
go func() {
defer e.shutdownWg.Done()
if shouldRestart, err := e.wgIfaceMonitor.Start(e.ctx, wgIfaceName); shouldRestart {
if shouldRestart, err := e.wgIfaceMonitor.Start(e.ctx, e.wgInterface.Name()); shouldRestart {
log.Infof("WireGuard interface monitor: %s, restarting engine", err)
e.triggerClientRestart()
} else if err != nil {
@@ -830,10 +828,6 @@ func (e *Engine) handleAutoUpdateVersion(autoUpdateSettings *mgmProto.AutoUpdate
}
func (e *Engine) handleSync(update *mgmProto.SyncResponse) error {
started := time.Now()
defer func() {
log.Infof("sync finished in %s", time.Since(started))
}()
e.syncMsgMux.Lock()
defer e.syncMsgMux.Unlock()
@@ -1023,7 +1017,7 @@ func (e *Engine) updateConfig(conf *mgmProto.PeerConfig) error {
state := e.statusRecorder.GetLocalPeerState()
state.IP = e.wgInterface.Address().String()
state.PubKey = e.config.WgPrivateKey.PublicKey().String()
state.KernelInterface = !e.wgInterface.IsUserspaceBind()
state.KernelInterface = device.WireGuardModuleIsLoaded()
state.FQDN = conf.GetFqdn()
e.statusRecorder.UpdateLocalPeerState(state)
@@ -1924,7 +1918,7 @@ func (e *Engine) triggerClientRestart() {
}
func (e *Engine) startNetworkMonitor() {
if !e.config.NetworkMonitor || nbnetstack.IsEnabled() {
if !e.config.NetworkMonitor {
log.Infof("Network monitor is disabled, not starting")
return
}

View File

@@ -10,7 +10,6 @@ import (
log "github.com/sirupsen/logrus"
firewallManager "github.com/netbirdio/netbird/client/firewall/manager"
"github.com/netbirdio/netbird/client/iface/netstack"
nftypes "github.com/netbirdio/netbird/client/internal/netflow/types"
sshauth "github.com/netbirdio/netbird/client/ssh/auth"
sshconfig "github.com/netbirdio/netbird/client/ssh/config"
@@ -95,10 +94,6 @@ func (e *Engine) updateSSH(sshConf *mgmProto.SSHConfig) error {
// updateSSHClientConfig updates the SSH client configuration with peer information
func (e *Engine) updateSSHClientConfig(remotePeers []*mgmProto.RemotePeerConfig) error {
if netstack.IsEnabled() {
return nil
}
peerInfo := e.extractPeerSSHInfo(remotePeers)
if len(peerInfo) == 0 {
log.Debug("no SSH-enabled peers found, skipping SSH config update")
@@ -221,10 +216,6 @@ func (e *Engine) GetPeerSSHKey(peerAddress string) ([]byte, bool) {
// cleanupSSHConfig removes NetBird SSH client configuration on shutdown
func (e *Engine) cleanupSSHConfig() {
if netstack.IsEnabled() {
return
}
configMgr := sshconfig.New()
if err := configMgr.RemoveSSHClientConfig(); err != nil {

View File

@@ -11,7 +11,6 @@ import (
log "github.com/sirupsen/logrus"
"golang.zx2c4.com/wireguard/wgctrl/wgtypes"
"github.com/netbirdio/netbird/client/iface/netstack"
"github.com/netbirdio/netbird/client/iface/wgaddr"
"github.com/netbirdio/netbird/client/internal/lazyconn"
peerid "github.com/netbirdio/netbird/client/internal/peer/id"
@@ -75,13 +74,12 @@ func (m *Manager) createListener(peerCfg lazyconn.PeerConfig) (listener, error)
return NewUDPListener(m.wgIface, peerCfg)
}
// BindListener is used on Windows, JS, and netstack platforms:
// BindListener is only used on Windows and JS platforms:
// - JS: Cannot listen to UDP sockets
// - Windows: IP_UNICAST_IF socket option forces packets out the interface the default
// gateway points to, preventing them from reaching the loopback interface.
// - Netstack: Allows multiple instances on the same host without port conflicts.
// BindListener bypasses these issues by passing data directly through the bind.
if runtime.GOOS != "windows" && runtime.GOOS != "js" && !netstack.IsEnabled() {
// BindListener bypasses this by passing data directly through the bind.
if runtime.GOOS != "windows" && runtime.GOOS != "js" {
return NewUDPListener(m.wgIface, peerCfg)
}

View File

@@ -1,4 +1,4 @@
//go:build ios || android
//go:build ios || tvos || android
package networkmonitor

View File

@@ -390,8 +390,6 @@ func (conn *Conn) onICEConnectionIsReady(priority conntype.ConnPriority, iceConn
}
conn.Log.Infof("configure WireGuard endpoint to: %s", ep.String())
conn.enableWgWatcherIfNeeded()
presharedKey := conn.presharedKey(iceConnInfo.RosenpassPubKey)
if err = conn.endpointUpdater.ConfigureWGEndpoint(ep, presharedKey); err != nil {
conn.handleConfigurationFailure(err, wgProxy)
@@ -404,6 +402,8 @@ func (conn *Conn) onICEConnectionIsReady(priority conntype.ConnPriority, iceConn
conn.wgProxyRelay.RedirectAs(ep)
}
conn.enableWgWatcherIfNeeded()
conn.currentConnPriority = priority
conn.statusICE.SetConnected()
conn.updateIceState(iceConnInfo)
@@ -501,9 +501,6 @@ func (conn *Conn) onRelayConnectionIsReady(rci RelayConnInfo) {
wgProxy.Work()
presharedKey := conn.presharedKey(rci.rosenpassPubKey)
conn.enableWgWatcherIfNeeded()
if err := conn.endpointUpdater.ConfigureWGEndpoint(wgProxy.EndpointAddr(), presharedKey); err != nil {
if err := wgProxy.CloseConn(); err != nil {
conn.Log.Warnf("Failed to close relay connection: %v", err)
@@ -512,6 +509,8 @@ func (conn *Conn) onRelayConnectionIsReady(rci RelayConnInfo) {
return
}
conn.enableWgWatcherIfNeeded()
wgConfigWorkaround()
conn.rosenpassRemoteKey = rci.rosenpassPubKey
conn.currentConnPriority = conntype.Relay

View File

@@ -2,7 +2,6 @@ package ice
import (
"context"
"fmt"
"sync"
"time"
@@ -33,6 +32,24 @@ type ThreadSafeAgent struct {
once sync.Once
}
func (a *ThreadSafeAgent) Close() error {
var err error
a.once.Do(func() {
done := make(chan error, 1)
go func() {
done <- a.Agent.Close()
}()
select {
case err = <-done:
case <-time.After(iceAgentCloseTimeout):
log.Warnf("ICE agent close timed out after %v, proceeding with cleanup", iceAgentCloseTimeout)
err = nil
}
})
return err
}
func NewAgent(ctx context.Context, iFaceDiscover stdnet.ExternalIFaceDiscover, config Config, candidateTypes []ice.CandidateType, ufrag string, pwd string) (*ThreadSafeAgent, error) {
iceKeepAlive := iceKeepAlive()
iceDisconnectedTimeout := iceDisconnectedTimeout()
@@ -76,41 +93,9 @@ func NewAgent(ctx context.Context, iFaceDiscover stdnet.ExternalIFaceDiscover, c
return nil, err
}
if agent == nil {
return nil, fmt.Errorf("ice.NewAgent returned nil agent without error")
}
return &ThreadSafeAgent{Agent: agent}, nil
}
func (a *ThreadSafeAgent) Close() error {
var err error
a.once.Do(func() {
// Defensive check to prevent nil pointer dereference
// This can happen during sleep/wake transitions or memory corruption scenarios
// github.com/netbirdio/netbird/client/internal/peer/ice.(*ThreadSafeAgent).Close(0x40006883f0?)
// [signal 0xc0000005 code=0x0 addr=0x0 pc=0x7ff7e73af83c]
agent := a.Agent
if agent == nil {
log.Warnf("ICE agent is nil during close, skipping")
return
}
done := make(chan error, 1)
go func() {
done <- agent.Close()
}()
select {
case err = <-done:
case <-time.After(iceAgentCloseTimeout):
log.Warnf("ICE agent close timed out after %v, proceeding with cleanup", iceAgentCloseTimeout)
err = nil
}
})
return err
}
func GenerateICECredentials() (string, string, error) {
ufrag, err := randutil.GenerateCryptoRandomString(lenUFrag, runesAlpha)
if err != nil {

View File

@@ -107,10 +107,8 @@ func (w *WorkerICE) OnNewOffer(remoteOfferAnswer *OfferAnswer) {
}
w.log.Debugf("agent already exists, recreate the connection")
w.agentDialerCancel()
if w.agent != nil {
if err := w.agent.Close(); err != nil {
w.log.Warnf("failed to close ICE agent: %s", err)
}
if err := w.agent.Close(); err != nil {
w.log.Warnf("failed to close ICE agent: %s", err)
}
sessionID, err := NewICESessionID()

View File

@@ -252,7 +252,7 @@ func (config *Config) apply(input ConfigInput) (updated bool, err error) {
}
if config.AdminURL == nil {
log.Infof("using default Admin URL %s", DefaultAdminURL)
log.Infof("using default Admin URL %s", DefaultManagementURL)
config.AdminURL, err = parseURL("Admin URL", DefaultAdminURL)
if err != nil {
return false, err

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package dynamic

View File

@@ -173,21 +173,12 @@ func (m *DefaultManager) setupAndroidRoutes(config ManagerConfig) {
}
func (m *DefaultManager) setupRefCounters(useNoop bool) {
var once sync.Once
var wgIface *net.Interface
toInterface := func() *net.Interface {
once.Do(func() {
wgIface = m.wgInterface.ToInterface()
})
return wgIface
}
m.routeRefCounter = refcounter.New(
func(prefix netip.Prefix, _ struct{}) (struct{}, error) {
return struct{}{}, m.sysOps.AddVPNRoute(prefix, toInterface())
return struct{}{}, m.sysOps.AddVPNRoute(prefix, m.wgInterface.ToInterface())
},
func(prefix netip.Prefix, _ struct{}) error {
return m.sysOps.RemoveVPNRoute(prefix, toInterface())
return m.sysOps.RemoveVPNRoute(prefix, m.wgInterface.ToInterface())
},
)

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package notifier

View File

@@ -4,17 +4,16 @@ package systemops
import (
"strings"
"golang.org/x/sys/unix"
"syscall"
)
// filterRoutesByFlags returns true if the route message should be ignored based on its flags.
func filterRoutesByFlags(routeMessageFlags int) bool {
if routeMessageFlags&unix.RTF_UP == 0 {
if routeMessageFlags&syscall.RTF_UP == 0 {
return true
}
if routeMessageFlags&(unix.RTF_REJECT|unix.RTF_BLACKHOLE|unix.RTF_WASCLONED) != 0 {
if routeMessageFlags&(syscall.RTF_REJECT|syscall.RTF_BLACKHOLE|syscall.RTF_WASCLONED) != 0 {
return true
}
@@ -25,51 +24,42 @@ func filterRoutesByFlags(routeMessageFlags int) bool {
func formatBSDFlags(flags int) string {
var flagStrs []string
if flags&unix.RTF_UP != 0 {
if flags&syscall.RTF_UP != 0 {
flagStrs = append(flagStrs, "U")
}
if flags&unix.RTF_GATEWAY != 0 {
if flags&syscall.RTF_GATEWAY != 0 {
flagStrs = append(flagStrs, "G")
}
if flags&unix.RTF_HOST != 0 {
if flags&syscall.RTF_HOST != 0 {
flagStrs = append(flagStrs, "H")
}
if flags&unix.RTF_REJECT != 0 {
if flags&syscall.RTF_REJECT != 0 {
flagStrs = append(flagStrs, "R")
}
if flags&unix.RTF_DYNAMIC != 0 {
if flags&syscall.RTF_DYNAMIC != 0 {
flagStrs = append(flagStrs, "D")
}
if flags&unix.RTF_MODIFIED != 0 {
if flags&syscall.RTF_MODIFIED != 0 {
flagStrs = append(flagStrs, "M")
}
if flags&unix.RTF_STATIC != 0 {
if flags&syscall.RTF_STATIC != 0 {
flagStrs = append(flagStrs, "S")
}
if flags&unix.RTF_LLINFO != 0 {
if flags&syscall.RTF_LLINFO != 0 {
flagStrs = append(flagStrs, "L")
}
if flags&unix.RTF_LOCAL != 0 {
if flags&syscall.RTF_LOCAL != 0 {
flagStrs = append(flagStrs, "l")
}
if flags&unix.RTF_BLACKHOLE != 0 {
if flags&syscall.RTF_BLACKHOLE != 0 {
flagStrs = append(flagStrs, "B")
}
if flags&unix.RTF_CLONING != 0 {
if flags&syscall.RTF_CLONING != 0 {
flagStrs = append(flagStrs, "C")
}
if flags&unix.RTF_WASCLONED != 0 {
if flags&syscall.RTF_WASCLONED != 0 {
flagStrs = append(flagStrs, "W")
}
if flags&unix.RTF_PROTO1 != 0 {
flagStrs = append(flagStrs, "1")
}
if flags&unix.RTF_PROTO2 != 0 {
flagStrs = append(flagStrs, "2")
}
if flags&unix.RTF_PROTO3 != 0 {
flagStrs = append(flagStrs, "3")
}
if len(flagStrs) == 0 {
return "-"

View File

@@ -4,18 +4,17 @@ package systemops
import (
"strings"
"golang.org/x/sys/unix"
"syscall"
)
// filterRoutesByFlags returns true if the route message should be ignored based on its flags.
func filterRoutesByFlags(routeMessageFlags int) bool {
if routeMessageFlags&unix.RTF_UP == 0 {
if routeMessageFlags&syscall.RTF_UP == 0 {
return true
}
// NOTE: RTF_WASCLONED deprecated in FreeBSD 8.0
if routeMessageFlags&(unix.RTF_REJECT|unix.RTF_BLACKHOLE) != 0 {
// NOTE: syscall.RTF_WASCLONED deprecated in FreeBSD 8.0
if routeMessageFlags&(syscall.RTF_REJECT|syscall.RTF_BLACKHOLE) != 0 {
return true
}
@@ -26,46 +25,37 @@ func filterRoutesByFlags(routeMessageFlags int) bool {
func formatBSDFlags(flags int) string {
var flagStrs []string
if flags&unix.RTF_UP != 0 {
if flags&syscall.RTF_UP != 0 {
flagStrs = append(flagStrs, "U")
}
if flags&unix.RTF_GATEWAY != 0 {
if flags&syscall.RTF_GATEWAY != 0 {
flagStrs = append(flagStrs, "G")
}
if flags&unix.RTF_HOST != 0 {
if flags&syscall.RTF_HOST != 0 {
flagStrs = append(flagStrs, "H")
}
if flags&unix.RTF_REJECT != 0 {
if flags&syscall.RTF_REJECT != 0 {
flagStrs = append(flagStrs, "R")
}
if flags&unix.RTF_DYNAMIC != 0 {
if flags&syscall.RTF_DYNAMIC != 0 {
flagStrs = append(flagStrs, "D")
}
if flags&unix.RTF_MODIFIED != 0 {
if flags&syscall.RTF_MODIFIED != 0 {
flagStrs = append(flagStrs, "M")
}
if flags&unix.RTF_STATIC != 0 {
if flags&syscall.RTF_STATIC != 0 {
flagStrs = append(flagStrs, "S")
}
if flags&unix.RTF_LLINFO != 0 {
if flags&syscall.RTF_LLINFO != 0 {
flagStrs = append(flagStrs, "L")
}
if flags&unix.RTF_LOCAL != 0 {
if flags&syscall.RTF_LOCAL != 0 {
flagStrs = append(flagStrs, "l")
}
if flags&unix.RTF_BLACKHOLE != 0 {
if flags&syscall.RTF_BLACKHOLE != 0 {
flagStrs = append(flagStrs, "B")
}
// Note: RTF_CLONING and RTF_WASCLONED deprecated in FreeBSD 8.0
if flags&unix.RTF_PROTO1 != 0 {
flagStrs = append(flagStrs, "1")
}
if flags&unix.RTF_PROTO2 != 0 {
flagStrs = append(flagStrs, "2")
}
if flags&unix.RTF_PROTO3 != 0 {
flagStrs = append(flagStrs, "3")
}
if len(flagStrs) == 0 {
return "-"

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package systemops

View File

@@ -9,8 +9,6 @@ import (
"time"
log "github.com/sirupsen/logrus"
"github.com/netbirdio/netbird/client/iface/netstack"
)
// WGIfaceMonitor monitors the WireGuard interface lifecycle and restarts the engine
@@ -37,11 +35,6 @@ func (m *WGIfaceMonitor) Start(ctx context.Context, ifaceName string) (shouldRes
return false, errors.New("not supported on mobile platforms")
}
if netstack.IsEnabled() {
log.Debugf("Interface monitor: skipped in netstack mode")
return false, nil
}
if ifaceName == "" {
log.Debugf("Interface monitor: empty interface name, skipping monitor")
return false, errors.New("empty interface name")

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package NetBirdSDK

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package NetBirdSDK

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package NetBirdSDK

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package NetBirdSDK

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package NetBirdSDK

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package NetBirdSDK

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package NetBirdSDK

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package NetBirdSDK

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package NetBirdSDK

View File

@@ -1,4 +1,4 @@
//go:build ios
//go:build ios || tvos
package net

View File

@@ -1,5 +0,0 @@
FROM ubuntu:24.04
RUN apt update && apt install -y ca-certificates && rm -fr /var/cache/apt
ENTRYPOINT [ "/go/bin/netbird-server" ]
CMD ["--config", "/etc/netbird/config.yaml"]
COPY netbird-server /go/bin/netbird-server

View File

@@ -1,715 +0,0 @@
package cmd
import (
"context"
"fmt"
"net"
"net/netip"
"os"
"path"
"strings"
"time"
log "github.com/sirupsen/logrus"
"gopkg.in/yaml.v3"
"github.com/netbirdio/netbird/management/server/idp"
"github.com/netbirdio/netbird/management/server/types"
"github.com/netbirdio/netbird/util"
"github.com/netbirdio/netbird/util/crypt"
nbconfig "github.com/netbirdio/netbird/management/internals/server/config"
)
// CombinedConfig is the root configuration for the combined server.
// The combined server is primarily a Management server with optional embedded
// Signal, Relay, and STUN services.
//
// Architecture:
// - Management: Always runs locally (this IS the management server)
// - Signal: Runs locally by default; disabled if server.signalUri is set
// - Relay: Runs locally by default; disabled if server.relays is set
// - STUN: Runs locally on port 3478 by default; disabled if server.stuns is set
//
// All user-facing settings are under "server". The relay/signal/management
// fields are internal and populated automatically from server settings.
type CombinedConfig struct {
Server ServerConfig `yaml:"server"`
// Internal configs - populated from Server settings, not user-configurable
Relay RelayConfig `yaml:"-"`
Signal SignalConfig `yaml:"-"`
Management ManagementConfig `yaml:"-"`
}
// ServerConfig contains server-wide settings
// In simplified mode, this contains all configuration
type ServerConfig struct {
ListenAddress string `yaml:"listenAddress"`
MetricsPort int `yaml:"metricsPort"`
HealthcheckAddress string `yaml:"healthcheckAddress"`
LogLevel string `yaml:"logLevel"`
LogFile string `yaml:"logFile"`
TLS TLSConfig `yaml:"tls"`
// Simplified config fields (used when relay/signal/management sections are omitted)
ExposedAddress string `yaml:"exposedAddress"` // Public address with protocol (e.g., "https://example.com:443")
StunPorts []int `yaml:"stunPorts"` // STUN ports (empty to disable local STUN)
AuthSecret string `yaml:"authSecret"` // Shared secret for relay authentication
DataDir string `yaml:"dataDir"` // Data directory for all services
// External service overrides (simplified mode)
// When these are set, the corresponding local service is NOT started
// and these values are used for client configuration instead
Stuns []HostConfig `yaml:"stuns"` // External STUN servers (disables local STUN)
Relays RelaysConfig `yaml:"relays"` // External relay servers (disables local relay)
SignalURI string `yaml:"signalUri"` // External signal server (disables local signal)
// Management settings (simplified mode)
DisableAnonymousMetrics bool `yaml:"disableAnonymousMetrics"`
DisableGeoliteUpdate bool `yaml:"disableGeoliteUpdate"`
Auth AuthConfig `yaml:"auth"`
Store StoreConfig `yaml:"store"`
ReverseProxy ReverseProxyConfig `yaml:"reverseProxy"`
}
// TLSConfig contains TLS/HTTPS settings
type TLSConfig struct {
CertFile string `yaml:"certFile"`
KeyFile string `yaml:"keyFile"`
LetsEncrypt LetsEncryptConfig `yaml:"letsencrypt"`
}
// LetsEncryptConfig contains Let's Encrypt settings
type LetsEncryptConfig struct {
Enabled bool `yaml:"enabled"`
DataDir string `yaml:"dataDir"`
Domains []string `yaml:"domains"`
Email string `yaml:"email"`
AWSRoute53 bool `yaml:"awsRoute53"`
}
// RelayConfig contains relay service settings
type RelayConfig struct {
Enabled bool `yaml:"enabled"`
ExposedAddress string `yaml:"exposedAddress"`
AuthSecret string `yaml:"authSecret"`
LogLevel string `yaml:"logLevel"`
Stun StunConfig `yaml:"stun"`
}
// StunConfig contains embedded STUN service settings
type StunConfig struct {
Enabled bool `yaml:"enabled"`
Ports []int `yaml:"ports"`
LogLevel string `yaml:"logLevel"`
}
// SignalConfig contains signal service settings
type SignalConfig struct {
Enabled bool `yaml:"enabled"`
LogLevel string `yaml:"logLevel"`
}
// ManagementConfig contains management service settings
type ManagementConfig struct {
Enabled bool `yaml:"enabled"`
LogLevel string `yaml:"logLevel"`
DataDir string `yaml:"dataDir"`
DnsDomain string `yaml:"dnsDomain"`
DisableAnonymousMetrics bool `yaml:"disableAnonymousMetrics"`
DisableGeoliteUpdate bool `yaml:"disableGeoliteUpdate"`
DisableDefaultPolicy bool `yaml:"disableDefaultPolicy"`
Auth AuthConfig `yaml:"auth"`
Stuns []HostConfig `yaml:"stuns"`
Relays RelaysConfig `yaml:"relays"`
SignalURI string `yaml:"signalUri"`
Store StoreConfig `yaml:"store"`
ReverseProxy ReverseProxyConfig `yaml:"reverseProxy"`
}
// AuthConfig contains authentication/identity provider settings
type AuthConfig struct {
Issuer string `yaml:"issuer"`
LocalAuthDisabled bool `yaml:"localAuthDisabled"`
SignKeyRefreshEnabled bool `yaml:"signKeyRefreshEnabled"`
Storage AuthStorageConfig `yaml:"storage"`
DashboardRedirectURIs []string `yaml:"dashboardRedirectURIs"`
CLIRedirectURIs []string `yaml:"cliRedirectURIs"`
Owner *AuthOwnerConfig `yaml:"owner,omitempty"`
}
// AuthStorageConfig contains auth storage settings
type AuthStorageConfig struct {
Type string `yaml:"type"`
File string `yaml:"file"`
}
// AuthOwnerConfig contains initial admin user settings
type AuthOwnerConfig struct {
Email string `yaml:"email"`
Password string `yaml:"password"`
}
// HostConfig represents a STUN/TURN/Signal host
type HostConfig struct {
URI string `yaml:"uri"`
Proto string `yaml:"proto,omitempty"` // udp, dtls, tcp, http, https - defaults based on URI scheme
Username string `yaml:"username,omitempty"`
Password string `yaml:"password,omitempty"`
}
// RelaysConfig contains external relay server settings for clients
type RelaysConfig struct {
Addresses []string `yaml:"addresses"`
CredentialsTTL string `yaml:"credentialsTTL"`
Secret string `yaml:"secret"`
}
// StoreConfig contains database settings
type StoreConfig struct {
Engine string `yaml:"engine"`
EncryptionKey string `yaml:"encryptionKey"`
DSN string `yaml:"dsn"` // Connection string for postgres or mysql engines
}
// ReverseProxyConfig contains reverse proxy settings
type ReverseProxyConfig struct {
TrustedHTTPProxies []string `yaml:"trustedHTTPProxies"`
TrustedHTTPProxiesCount uint `yaml:"trustedHTTPProxiesCount"`
TrustedPeers []string `yaml:"trustedPeers"`
}
// DefaultConfig returns a CombinedConfig with default values
func DefaultConfig() *CombinedConfig {
return &CombinedConfig{
Server: ServerConfig{
ListenAddress: ":443",
MetricsPort: 9090,
HealthcheckAddress: ":9000",
LogLevel: "info",
LogFile: "console",
StunPorts: []int{3478},
DataDir: "/var/lib/netbird/",
Auth: AuthConfig{
Storage: AuthStorageConfig{
Type: "sqlite3",
},
},
Store: StoreConfig{
Engine: "sqlite",
},
},
Relay: RelayConfig{
// LogLevel inherited from Server.LogLevel via ApplySimplifiedDefaults
Stun: StunConfig{
Enabled: false,
Ports: []int{3478},
// LogLevel inherited from Server.LogLevel via ApplySimplifiedDefaults
},
},
Signal: SignalConfig{
// LogLevel inherited from Server.LogLevel via ApplySimplifiedDefaults
},
Management: ManagementConfig{
DataDir: "/var/lib/netbird/",
Auth: AuthConfig{
Storage: AuthStorageConfig{
Type: "sqlite3",
},
},
Relays: RelaysConfig{
CredentialsTTL: "12h",
},
Store: StoreConfig{
Engine: "sqlite",
},
},
}
}
// hasRequiredSettings returns true if the configuration has the required server settings
func (c *CombinedConfig) hasRequiredSettings() bool {
return c.Server.ExposedAddress != ""
}
// parseExposedAddress extracts protocol, host, and host:port from the exposed address
// Input format: "https://example.com:443" or "http://example.com:8080" or "example.com:443"
// Returns: protocol ("https" or "http"), hostname only, and host:port
func parseExposedAddress(exposedAddress string) (protocol, hostname, hostPort string) {
// Default to https if no protocol specified
protocol = "https"
hostPort = exposedAddress
// Check for protocol prefix
if strings.HasPrefix(exposedAddress, "https://") {
protocol = "https"
hostPort = strings.TrimPrefix(exposedAddress, "https://")
} else if strings.HasPrefix(exposedAddress, "http://") {
protocol = "http"
hostPort = strings.TrimPrefix(exposedAddress, "http://")
}
// Extract hostname (without port)
hostname = hostPort
if host, _, err := net.SplitHostPort(hostPort); err == nil {
hostname = host
}
return protocol, hostname, hostPort
}
// ApplySimplifiedDefaults populates internal relay/signal/management configs from server settings.
// Management is always enabled. Signal, Relay, and STUN are enabled unless external
// overrides are configured (server.signalUri, server.relays, server.stuns).
func (c *CombinedConfig) ApplySimplifiedDefaults() {
if !c.hasRequiredSettings() {
return
}
// Parse exposed address to extract protocol and hostname
exposedProto, exposedHost, exposedHostPort := parseExposedAddress(c.Server.ExposedAddress)
// Check for external service overrides
hasExternalRelay := len(c.Server.Relays.Addresses) > 0
hasExternalSignal := c.Server.SignalURI != ""
hasExternalStuns := len(c.Server.Stuns) > 0
// Default stunPorts to [3478] if not specified and no external STUN
if len(c.Server.StunPorts) == 0 && !hasExternalStuns {
c.Server.StunPorts = []int{3478}
}
c.applyRelayDefaults(exposedProto, exposedHostPort, hasExternalRelay, hasExternalStuns)
c.applySignalDefaults(hasExternalSignal)
c.applyManagementDefaults(exposedHost)
// Auto-configure client settings (stuns, relays, signalUri)
c.autoConfigureClientSettings(exposedProto, exposedHost, exposedHostPort, hasExternalStuns, hasExternalRelay, hasExternalSignal)
}
// applyRelayDefaults configures the relay service if no external relay is configured.
func (c *CombinedConfig) applyRelayDefaults(exposedProto, exposedHostPort string, hasExternalRelay, hasExternalStuns bool) {
if hasExternalRelay {
return
}
c.Relay.Enabled = true
relayProto := "rel"
if exposedProto == "https" {
relayProto = "rels"
}
c.Relay.ExposedAddress = fmt.Sprintf("%s://%s", relayProto, exposedHostPort)
c.Relay.AuthSecret = c.Server.AuthSecret
if c.Relay.LogLevel == "" {
c.Relay.LogLevel = c.Server.LogLevel
}
// Enable local STUN only if no external STUN servers and stunPorts are configured
if !hasExternalStuns && len(c.Server.StunPorts) > 0 {
c.Relay.Stun.Enabled = true
c.Relay.Stun.Ports = c.Server.StunPorts
if c.Relay.Stun.LogLevel == "" {
c.Relay.Stun.LogLevel = c.Server.LogLevel
}
}
}
// applySignalDefaults configures the signal service if no external signal is configured.
func (c *CombinedConfig) applySignalDefaults(hasExternalSignal bool) {
if hasExternalSignal {
return
}
c.Signal.Enabled = true
if c.Signal.LogLevel == "" {
c.Signal.LogLevel = c.Server.LogLevel
}
}
// applyManagementDefaults configures the management service (always enabled).
func (c *CombinedConfig) applyManagementDefaults(exposedHost string) {
c.Management.Enabled = true
if c.Management.LogLevel == "" {
c.Management.LogLevel = c.Server.LogLevel
}
if c.Management.DataDir == "" || c.Management.DataDir == "/var/lib/netbird/" {
c.Management.DataDir = c.Server.DataDir
}
c.Management.DnsDomain = exposedHost
c.Management.DisableAnonymousMetrics = c.Server.DisableAnonymousMetrics
c.Management.DisableGeoliteUpdate = c.Server.DisableGeoliteUpdate
// Copy auth config from server if management auth issuer is not set
if c.Management.Auth.Issuer == "" && c.Server.Auth.Issuer != "" {
c.Management.Auth = c.Server.Auth
}
// Copy store config from server if not set
if c.Management.Store.Engine == "" || c.Management.Store.Engine == "sqlite" {
if c.Server.Store.Engine != "" {
c.Management.Store = c.Server.Store
}
}
// Copy reverse proxy config from server
if len(c.Server.ReverseProxy.TrustedHTTPProxies) > 0 || c.Server.ReverseProxy.TrustedHTTPProxiesCount > 0 || len(c.Server.ReverseProxy.TrustedPeers) > 0 {
c.Management.ReverseProxy = c.Server.ReverseProxy
}
}
// autoConfigureClientSettings sets up STUN/relay/signal URIs for clients
// External overrides from server config take precedence over auto-generated values
func (c *CombinedConfig) autoConfigureClientSettings(exposedProto, exposedHost, exposedHostPort string, hasExternalStuns, hasExternalRelay, hasExternalSignal bool) {
// Determine relay protocol from exposed protocol
relayProto := "rel"
if exposedProto == "https" {
relayProto = "rels"
}
// Configure STUN servers for clients
if hasExternalStuns {
// Use external STUN servers from server config
c.Management.Stuns = c.Server.Stuns
} else if len(c.Server.StunPorts) > 0 && len(c.Management.Stuns) == 0 {
// Auto-configure local STUN servers for all ports
for _, port := range c.Server.StunPorts {
c.Management.Stuns = append(c.Management.Stuns, HostConfig{
URI: fmt.Sprintf("stun:%s:%d", exposedHost, port),
})
}
}
// Configure relay for clients
if hasExternalRelay {
// Use external relay config from server
c.Management.Relays = c.Server.Relays
} else if len(c.Management.Relays.Addresses) == 0 {
// Auto-configure local relay
c.Management.Relays.Addresses = []string{
fmt.Sprintf("%s://%s", relayProto, exposedHostPort),
}
}
if c.Management.Relays.Secret == "" {
c.Management.Relays.Secret = c.Server.AuthSecret
}
if c.Management.Relays.CredentialsTTL == "" {
c.Management.Relays.CredentialsTTL = "12h"
}
// Configure signal for clients
if hasExternalSignal {
// Use external signal URI from server config
c.Management.SignalURI = c.Server.SignalURI
} else if c.Management.SignalURI == "" {
// Auto-configure local signal
c.Management.SignalURI = fmt.Sprintf("%s://%s", exposedProto, exposedHostPort)
}
}
// LoadConfig loads configuration from a YAML file
func LoadConfig(configPath string) (*CombinedConfig, error) {
cfg := DefaultConfig()
if configPath == "" {
return cfg, nil
}
data, err := os.ReadFile(configPath)
if err != nil {
return nil, fmt.Errorf("failed to read config file: %w", err)
}
if err := yaml.Unmarshal(data, cfg); err != nil {
return nil, fmt.Errorf("failed to parse config file: %w", err)
}
// Populate internal configs from server settings
cfg.ApplySimplifiedDefaults()
return cfg, nil
}
// Validate validates the configuration
func (c *CombinedConfig) Validate() error {
if c.Server.ExposedAddress == "" {
return fmt.Errorf("server.exposedAddress is required")
}
if c.Server.DataDir == "" {
return fmt.Errorf("server.dataDir is required")
}
// Validate STUN ports
seen := make(map[int]bool)
for _, port := range c.Server.StunPorts {
if port <= 0 || port > 65535 {
return fmt.Errorf("invalid server.stunPorts value %d: must be between 1 and 65535", port)
}
if seen[port] {
return fmt.Errorf("duplicate STUN port %d in server.stunPorts", port)
}
seen[port] = true
}
// authSecret is required only if running local relay (no external relay configured)
hasExternalRelay := len(c.Server.Relays.Addresses) > 0
if !hasExternalRelay && c.Server.AuthSecret == "" {
return fmt.Errorf("server.authSecret is required when running local relay")
}
return nil
}
// HasTLSCert returns true if TLS certificate files are configured
func (c *CombinedConfig) HasTLSCert() bool {
return c.Server.TLS.CertFile != "" && c.Server.TLS.KeyFile != ""
}
// HasLetsEncrypt returns true if Let's Encrypt is configured
func (c *CombinedConfig) HasLetsEncrypt() bool {
return c.Server.TLS.LetsEncrypt.Enabled &&
c.Server.TLS.LetsEncrypt.DataDir != "" &&
len(c.Server.TLS.LetsEncrypt.Domains) > 0
}
// parseExplicitProtocol parses an explicit protocol string to nbconfig.Protocol
func parseExplicitProtocol(proto string) (nbconfig.Protocol, bool) {
switch strings.ToLower(proto) {
case "udp":
return nbconfig.UDP, true
case "dtls":
return nbconfig.DTLS, true
case "tcp":
return nbconfig.TCP, true
case "http":
return nbconfig.HTTP, true
case "https":
return nbconfig.HTTPS, true
default:
return "", false
}
}
// parseStunProtocol determines protocol for STUN/TURN servers.
// stun: → UDP, stuns: → DTLS, turn: → UDP, turns: → DTLS
// Explicit proto overrides URI scheme. Defaults to UDP.
func parseStunProtocol(uri, proto string) nbconfig.Protocol {
if proto != "" {
if p, ok := parseExplicitProtocol(proto); ok {
return p
}
}
uri = strings.ToLower(uri)
switch {
case strings.HasPrefix(uri, "stuns:"):
return nbconfig.DTLS
case strings.HasPrefix(uri, "turns:"):
return nbconfig.DTLS
default:
// stun:, turn:, or no scheme - default to UDP
return nbconfig.UDP
}
}
// parseSignalProtocol determines protocol for Signal servers.
// https:// → HTTPS, http:// → HTTP. Defaults to HTTPS.
func parseSignalProtocol(uri string) nbconfig.Protocol {
uri = strings.ToLower(uri)
switch {
case strings.HasPrefix(uri, "http://"):
return nbconfig.HTTP
default:
// https:// or no scheme - default to HTTPS
return nbconfig.HTTPS
}
}
// stripSignalProtocol removes the protocol prefix from a signal URI.
// Returns just the host:port (e.g., "selfhosted2.demo.netbird.io:443").
func stripSignalProtocol(uri string) string {
uri = strings.TrimPrefix(uri, "https://")
uri = strings.TrimPrefix(uri, "http://")
return uri
}
// ToManagementConfig converts CombinedConfig to management server config
func (c *CombinedConfig) ToManagementConfig() (*nbconfig.Config, error) {
mgmt := c.Management
// Build STUN hosts
var stuns []*nbconfig.Host
for _, s := range mgmt.Stuns {
stuns = append(stuns, &nbconfig.Host{
URI: s.URI,
Proto: parseStunProtocol(s.URI, s.Proto),
Username: s.Username,
Password: s.Password,
})
}
// Build relay config
var relayConfig *nbconfig.Relay
if len(mgmt.Relays.Addresses) > 0 || mgmt.Relays.Secret != "" {
var ttl time.Duration
if mgmt.Relays.CredentialsTTL != "" {
var err error
ttl, err = time.ParseDuration(mgmt.Relays.CredentialsTTL)
if err != nil {
return nil, fmt.Errorf("invalid relay credentials TTL %q: %w", mgmt.Relays.CredentialsTTL, err)
}
}
relayConfig = &nbconfig.Relay{
Addresses: mgmt.Relays.Addresses,
CredentialsTTL: util.Duration{Duration: ttl},
Secret: mgmt.Relays.Secret,
}
}
// Build signal config
var signalConfig *nbconfig.Host
if mgmt.SignalURI != "" {
signalConfig = &nbconfig.Host{
URI: stripSignalProtocol(mgmt.SignalURI),
Proto: parseSignalProtocol(mgmt.SignalURI),
}
}
// Build store config
storeConfig := nbconfig.StoreConfig{
Engine: types.Engine(mgmt.Store.Engine),
}
// Build reverse proxy config
reverseProxy := nbconfig.ReverseProxy{
TrustedHTTPProxiesCount: mgmt.ReverseProxy.TrustedHTTPProxiesCount,
}
for _, p := range mgmt.ReverseProxy.TrustedHTTPProxies {
if prefix, err := netip.ParsePrefix(p); err == nil {
reverseProxy.TrustedHTTPProxies = append(reverseProxy.TrustedHTTPProxies, prefix)
}
}
for _, p := range mgmt.ReverseProxy.TrustedPeers {
if prefix, err := netip.ParsePrefix(p); err == nil {
reverseProxy.TrustedPeers = append(reverseProxy.TrustedPeers, prefix)
}
}
// Build HTTP config (required, even if empty)
httpConfig := &nbconfig.HttpServerConfig{}
// Build embedded IDP config (always enabled in combined server)
storageFile := mgmt.Auth.Storage.File
if storageFile == "" {
storageFile = path.Join(mgmt.DataDir, "idp.db")
}
embeddedIdP := &idp.EmbeddedIdPConfig{
Enabled: true,
Issuer: mgmt.Auth.Issuer,
LocalAuthDisabled: mgmt.Auth.LocalAuthDisabled,
SignKeyRefreshEnabled: mgmt.Auth.SignKeyRefreshEnabled,
Storage: idp.EmbeddedStorageConfig{
Type: mgmt.Auth.Storage.Type,
Config: idp.EmbeddedStorageTypeConfig{
File: storageFile,
},
},
DashboardRedirectURIs: mgmt.Auth.DashboardRedirectURIs,
CLIRedirectURIs: mgmt.Auth.CLIRedirectURIs,
}
if mgmt.Auth.Owner != nil && mgmt.Auth.Owner.Email != "" {
embeddedIdP.Owner = &idp.OwnerConfig{
Email: mgmt.Auth.Owner.Email,
Hash: mgmt.Auth.Owner.Password, // Will be hashed if plain text
}
}
// Set HTTP config fields for embedded IDP
httpConfig.AuthIssuer = mgmt.Auth.Issuer
httpConfig.IdpSignKeyRefreshEnabled = mgmt.Auth.SignKeyRefreshEnabled
return &nbconfig.Config{
Stuns: stuns,
Relay: relayConfig,
Signal: signalConfig,
Datadir: mgmt.DataDir,
DataStoreEncryptionKey: mgmt.Store.EncryptionKey,
HttpConfig: httpConfig,
StoreConfig: storeConfig,
ReverseProxy: reverseProxy,
DisableDefaultPolicy: mgmt.DisableDefaultPolicy,
EmbeddedIdP: embeddedIdP,
}, nil
}
// ApplyEmbeddedIdPConfig applies embedded IdP configuration to the management config.
// This mirrors the logic in management/cmd/management.go ApplyEmbeddedIdPConfig.
func ApplyEmbeddedIdPConfig(ctx context.Context, cfg *nbconfig.Config, mgmtPort int, disableSingleAccMode bool) error {
if cfg.EmbeddedIdP == nil || !cfg.EmbeddedIdP.Enabled {
return nil
}
// Embedded IdP requires single account mode
if disableSingleAccMode {
return fmt.Errorf("embedded IdP requires single account mode; multiple account mode is not supported with embedded IdP")
}
// Set LocalAddress for embedded IdP, used for internal JWT validation
cfg.EmbeddedIdP.LocalAddress = fmt.Sprintf("localhost:%d", mgmtPort)
// Set storage defaults based on Datadir
if cfg.EmbeddedIdP.Storage.Type == "" {
cfg.EmbeddedIdP.Storage.Type = "sqlite3"
}
if cfg.EmbeddedIdP.Storage.Config.File == "" && cfg.Datadir != "" {
cfg.EmbeddedIdP.Storage.Config.File = path.Join(cfg.Datadir, "idp.db")
}
issuer := cfg.EmbeddedIdP.Issuer
// Ensure HttpConfig exists
if cfg.HttpConfig == nil {
cfg.HttpConfig = &nbconfig.HttpServerConfig{}
}
// Set HttpConfig values from EmbeddedIdP
cfg.HttpConfig.AuthIssuer = issuer
cfg.HttpConfig.AuthAudience = "netbird-dashboard"
cfg.HttpConfig.CLIAuthAudience = "netbird-cli"
cfg.HttpConfig.AuthUserIDClaim = "sub"
cfg.HttpConfig.AuthKeysLocation = issuer + "/keys"
cfg.HttpConfig.OIDCConfigEndpoint = issuer + "/.well-known/openid-configuration"
cfg.HttpConfig.IdpSignKeyRefreshEnabled = true
return nil
}
// EnsureEncryptionKey generates an encryption key if not set.
// Unlike management server, we don't write back to the config file.
func EnsureEncryptionKey(ctx context.Context, cfg *nbconfig.Config) error {
if cfg.DataStoreEncryptionKey != "" {
return nil
}
log.WithContext(ctx).Infof("DataStoreEncryptionKey is not set, generating a new key")
key, err := crypt.GenerateKey()
if err != nil {
return fmt.Errorf("failed to generate datastore encryption key: %v", err)
}
cfg.DataStoreEncryptionKey = key
keyPreview := key[:8] + "..."
log.WithContext(ctx).Warnf("DataStoreEncryptionKey generated (%s); add it to your config file under 'server.store.encryptionKey' to persist across restarts", keyPreview)
return nil
}
// LogConfigInfo logs informational messages about the loaded configuration
func LogConfigInfo(cfg *nbconfig.Config) {
if cfg.EmbeddedIdP != nil && cfg.EmbeddedIdP.Enabled {
log.Infof("running with the embedded IdP: %v", cfg.EmbeddedIdP.Issuer)
}
if cfg.Relay != nil {
log.Infof("Relay addresses: %v", cfg.Relay.Addresses)
}
}

View File

@@ -1,33 +0,0 @@
//go:build pprof
// +build pprof
package cmd
import (
"net/http"
_ "net/http/pprof"
"os"
log "github.com/sirupsen/logrus"
)
func init() {
addr := pprofAddr()
go pprof(addr)
}
func pprofAddr() string {
listenAddr := os.Getenv("NB_PPROF_ADDR")
if listenAddr == "" {
return "localhost:6969"
}
return listenAddr
}
func pprof(listenAddr string) {
log.Infof("listening pprof on: %s\n", listenAddr)
if err := http.ListenAndServe(listenAddr, nil); err != nil {
log.Fatalf("Failed to start pprof: %v", err)
}
}

View File

@@ -1,711 +0,0 @@
package cmd
import (
"context"
"crypto/sha256"
"crypto/tls"
"errors"
"fmt"
"net"
"net/http"
"os"
"os/signal"
"strconv"
"strings"
"sync"
"syscall"
"time"
"github.com/coder/websocket"
"github.com/hashicorp/go-multierror"
log "github.com/sirupsen/logrus"
"github.com/spf13/cobra"
"go.opentelemetry.io/otel/metric"
"google.golang.org/grpc"
"github.com/netbirdio/netbird/encryption"
mgmtServer "github.com/netbirdio/netbird/management/internals/server"
nbconfig "github.com/netbirdio/netbird/management/internals/server/config"
"github.com/netbirdio/netbird/management/server/telemetry"
"github.com/netbirdio/netbird/relay/healthcheck"
relayServer "github.com/netbirdio/netbird/relay/server"
"github.com/netbirdio/netbird/relay/server/listener/ws"
sharedMetrics "github.com/netbirdio/netbird/shared/metrics"
"github.com/netbirdio/netbird/shared/relay/auth"
"github.com/netbirdio/netbird/shared/signal/proto"
signalServer "github.com/netbirdio/netbird/signal/server"
"github.com/netbirdio/netbird/stun"
"github.com/netbirdio/netbird/util"
"github.com/netbirdio/netbird/util/wsproxy"
wsproxyserver "github.com/netbirdio/netbird/util/wsproxy/server"
)
var (
configPath string
config *CombinedConfig
rootCmd = &cobra.Command{
Use: "combined",
Short: "Combined Netbird server (Management + Signal + Relay + STUN)",
Long: `Combined Netbird server for self-hosted deployments.
All services (Management, Signal, Relay) are multiplexed on a single port.
Optional STUN server runs on separate UDP ports.
Configuration is loaded from a YAML file specified with --config.`,
SilenceUsage: true,
SilenceErrors: true,
RunE: execute,
}
)
func init() {
rootCmd.PersistentFlags().StringVarP(&configPath, "config", "c", "", "path to YAML configuration file (required)")
_ = rootCmd.MarkPersistentFlagRequired("config")
}
func Execute() error {
return rootCmd.Execute()
}
func waitForExitSignal() {
osSigs := make(chan os.Signal, 1)
signal.Notify(osSigs, syscall.SIGINT, syscall.SIGTERM)
<-osSigs
}
func execute(cmd *cobra.Command, _ []string) error {
if err := initializeConfig(); err != nil {
return err
}
// Management is required as the base server when signal or relay are enabled
if (config.Signal.Enabled || config.Relay.Enabled) && !config.Management.Enabled {
return fmt.Errorf("management must be enabled when signal or relay are enabled (provides the base HTTP server)")
}
servers, err := createAllServers(cmd.Context(), config)
if err != nil {
return err
}
// Register services with management's gRPC server using AfterInit hook
setupServerHooks(servers, config)
// Start management server (this also starts the HTTP listener)
if servers.mgmtSrv != nil {
if err := servers.mgmtSrv.Start(cmd.Context()); err != nil {
cleanupSTUNListeners(servers.stunListeners)
return fmt.Errorf("failed to start management server: %w", err)
}
}
// Start all other servers
wg := sync.WaitGroup{}
startServers(&wg, servers.relaySrv, servers.healthcheck, servers.stunServer, servers.metricsServer)
waitForExitSignal()
ctx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
defer cancel()
err = shutdownServers(ctx, servers.relaySrv, servers.healthcheck, servers.stunServer, servers.mgmtSrv, servers.metricsServer)
wg.Wait()
return err
}
// initializeConfig loads and validates the configuration, then initializes logging.
func initializeConfig() error {
var err error
config, err = LoadConfig(configPath)
if err != nil {
return fmt.Errorf("failed to load config: %w", err)
}
if err := config.Validate(); err != nil {
return fmt.Errorf("invalid config: %w", err)
}
if err := util.InitLog(config.Server.LogLevel, config.Server.LogFile); err != nil {
return fmt.Errorf("failed to initialize log: %w", err)
}
if dsn := config.Server.Store.DSN; dsn != "" {
switch strings.ToLower(config.Server.Store.Engine) {
case "postgres":
os.Setenv("NB_STORE_ENGINE_POSTGRES_DSN", dsn)
case "mysql":
os.Setenv("NB_STORE_ENGINE_MYSQL_DSN", dsn)
}
}
log.Infof("Starting combined NetBird server")
logConfig(config)
logEnvVars()
return nil
}
// serverInstances holds all server instances created during startup.
type serverInstances struct {
relaySrv *relayServer.Server
mgmtSrv *mgmtServer.BaseServer
signalSrv *signalServer.Server
healthcheck *healthcheck.Server
stunServer *stun.Server
stunListeners []*net.UDPConn
metricsServer *sharedMetrics.Metrics
}
// createAllServers creates all server instances based on configuration.
func createAllServers(ctx context.Context, cfg *CombinedConfig) (*serverInstances, error) {
metricsServer, err := sharedMetrics.NewServer(cfg.Server.MetricsPort, "")
if err != nil {
return nil, fmt.Errorf("failed to create metrics server: %w", err)
}
servers := &serverInstances{
metricsServer: metricsServer,
}
_, tlsSupport, err := handleTLSConfig(cfg)
if err != nil {
return nil, fmt.Errorf("failed to setup TLS config: %w", err)
}
if err := servers.createRelayServer(cfg, tlsSupport); err != nil {
return nil, err
}
if err := servers.createManagementServer(ctx, cfg); err != nil {
return nil, err
}
if err := servers.createSignalServer(ctx, cfg); err != nil {
return nil, err
}
if err := servers.createHealthcheckServer(cfg); err != nil {
return nil, err
}
return servers, nil
}
func (s *serverInstances) createRelayServer(cfg *CombinedConfig, tlsSupport bool) error {
if !cfg.Relay.Enabled {
return nil
}
var err error
s.stunListeners, err = createSTUNListeners(cfg)
if err != nil {
return err
}
hashedSecret := sha256.Sum256([]byte(cfg.Relay.AuthSecret))
authenticator := auth.NewTimedHMACValidator(hashedSecret[:], 24*time.Hour)
relayCfg := relayServer.Config{
Meter: s.metricsServer.Meter,
ExposedAddress: cfg.Relay.ExposedAddress,
AuthValidator: authenticator,
TLSSupport: tlsSupport,
}
s.relaySrv, err = createRelayServer(relayCfg, s.stunListeners)
if err != nil {
return err
}
log.Infof("Relay server created")
if len(s.stunListeners) > 0 {
s.stunServer = stun.NewServer(s.stunListeners, cfg.Relay.Stun.LogLevel)
}
return nil
}
func (s *serverInstances) createManagementServer(ctx context.Context, cfg *CombinedConfig) error {
if !cfg.Management.Enabled {
return nil
}
mgmtConfig, err := cfg.ToManagementConfig()
if err != nil {
return fmt.Errorf("failed to create management config: %w", err)
}
_, portStr, portErr := net.SplitHostPort(cfg.Server.ListenAddress)
if portErr != nil {
portStr = "443"
}
mgmtPort, _ := strconv.Atoi(portStr)
if err := ApplyEmbeddedIdPConfig(ctx, mgmtConfig, mgmtPort, false); err != nil {
cleanupSTUNListeners(s.stunListeners)
return fmt.Errorf("failed to apply embedded IdP config: %w", err)
}
if err := EnsureEncryptionKey(ctx, mgmtConfig); err != nil {
cleanupSTUNListeners(s.stunListeners)
return fmt.Errorf("failed to ensure encryption key: %w", err)
}
LogConfigInfo(mgmtConfig)
s.mgmtSrv, err = createManagementServer(cfg, mgmtConfig)
if err != nil {
cleanupSTUNListeners(s.stunListeners)
return fmt.Errorf("failed to create management server: %w", err)
}
// Inject externally-managed AppMetrics so management uses the shared metrics server
appMetrics, err := telemetry.NewAppMetricsWithMeter(ctx, s.metricsServer.Meter)
if err != nil {
cleanupSTUNListeners(s.stunListeners)
return fmt.Errorf("failed to create management app metrics: %w", err)
}
mgmtServer.Inject[telemetry.AppMetrics](s.mgmtSrv, appMetrics)
log.Infof("Management server created")
return nil
}
func (s *serverInstances) createSignalServer(ctx context.Context, cfg *CombinedConfig) error {
if !cfg.Signal.Enabled {
return nil
}
var err error
s.signalSrv, err = signalServer.NewServer(ctx, s.metricsServer.Meter, "signal_")
if err != nil {
cleanupSTUNListeners(s.stunListeners)
return fmt.Errorf("failed to create signal server: %w", err)
}
log.Infof("Signal server created")
return nil
}
func (s *serverInstances) createHealthcheckServer(cfg *CombinedConfig) error {
hCfg := healthcheck.Config{
ListenAddress: cfg.Server.HealthcheckAddress,
ServiceChecker: s.relaySrv,
}
var err error
s.healthcheck, err = createHealthCheck(hCfg, s.stunListeners)
return err
}
// setupServerHooks registers services with management's gRPC server.
func setupServerHooks(servers *serverInstances, cfg *CombinedConfig) {
if servers.mgmtSrv == nil {
return
}
servers.mgmtSrv.AfterInit(func(s *mgmtServer.BaseServer) {
grpcSrv := s.GRPCServer()
if servers.signalSrv != nil {
proto.RegisterSignalExchangeServer(grpcSrv, servers.signalSrv)
log.Infof("Signal server registered on port %s", cfg.Server.ListenAddress)
}
s.SetHandlerFunc(createCombinedHandler(grpcSrv, s.APIHandler(), servers.relaySrv, servers.metricsServer.Meter, cfg))
if servers.relaySrv != nil {
log.Infof("Relay WebSocket handler added (path: /relay)")
}
})
}
func startServers(wg *sync.WaitGroup, srv *relayServer.Server, httpHealthcheck *healthcheck.Server, stunServer *stun.Server, metricsServer *sharedMetrics.Metrics) {
if srv != nil {
instanceURL := srv.InstanceURL()
log.Infof("Relay server instance URL: %s", instanceURL.String())
log.Infof("Relay WebSocket multiplexed on management port (no separate relay listener)")
}
wg.Add(1)
go func() {
defer wg.Done()
log.Infof("running metrics server: %s%s", metricsServer.Addr, metricsServer.Endpoint)
if err := metricsServer.ListenAndServe(); !errors.Is(err, http.ErrServerClosed) {
log.Fatalf("failed to start metrics server: %v", err)
}
}()
wg.Add(1)
go func() {
defer wg.Done()
if err := httpHealthcheck.ListenAndServe(); !errors.Is(err, http.ErrServerClosed) {
log.Fatalf("failed to start healthcheck server: %v", err)
}
}()
if stunServer != nil {
wg.Add(1)
go func() {
defer wg.Done()
if err := stunServer.Listen(); err != nil {
if errors.Is(err, stun.ErrServerClosed) {
return
}
log.Errorf("STUN server error: %v", err)
}
}()
}
}
func shutdownServers(ctx context.Context, srv *relayServer.Server, httpHealthcheck *healthcheck.Server, stunServer *stun.Server, mgmtSrv *mgmtServer.BaseServer, metricsServer *sharedMetrics.Metrics) error {
var errs error
if err := httpHealthcheck.Shutdown(ctx); err != nil {
errs = multierror.Append(errs, fmt.Errorf("failed to close healthcheck server: %w", err))
}
if stunServer != nil {
if err := stunServer.Shutdown(); err != nil {
errs = multierror.Append(errs, fmt.Errorf("failed to close STUN server: %w", err))
}
}
if srv != nil {
if err := srv.Shutdown(ctx); err != nil {
errs = multierror.Append(errs, fmt.Errorf("failed to close relay server: %w", err))
}
}
if mgmtSrv != nil {
log.Infof("shutting down management and signal servers")
if err := mgmtSrv.Stop(); err != nil {
errs = multierror.Append(errs, fmt.Errorf("failed to close management server: %w", err))
}
}
if metricsServer != nil {
log.Infof("shutting down metrics server")
if err := metricsServer.Shutdown(ctx); err != nil {
errs = multierror.Append(errs, fmt.Errorf("failed to close metrics server: %w", err))
}
}
return errs
}
func createHealthCheck(hCfg healthcheck.Config, stunListeners []*net.UDPConn) (*healthcheck.Server, error) {
httpHealthcheck, err := healthcheck.NewServer(hCfg)
if err != nil {
cleanupSTUNListeners(stunListeners)
return nil, fmt.Errorf("failed to create healthcheck server: %w", err)
}
return httpHealthcheck, nil
}
func createRelayServer(cfg relayServer.Config, stunListeners []*net.UDPConn) (*relayServer.Server, error) {
srv, err := relayServer.NewServer(cfg)
if err != nil {
cleanupSTUNListeners(stunListeners)
return nil, fmt.Errorf("failed to create relay server: %w", err)
}
return srv, nil
}
func cleanupSTUNListeners(stunListeners []*net.UDPConn) {
for _, l := range stunListeners {
_ = l.Close()
}
}
func createSTUNListeners(cfg *CombinedConfig) ([]*net.UDPConn, error) {
var stunListeners []*net.UDPConn
if cfg.Relay.Stun.Enabled {
for _, port := range cfg.Relay.Stun.Ports {
listener, err := net.ListenUDP("udp", &net.UDPAddr{Port: port})
if err != nil {
cleanupSTUNListeners(stunListeners)
return nil, fmt.Errorf("failed to create STUN listener on port %d: %w", port, err)
}
stunListeners = append(stunListeners, listener)
log.Infof("STUN server listening on UDP port %d", port)
}
}
return stunListeners, nil
}
func handleTLSConfig(cfg *CombinedConfig) (*tls.Config, bool, error) {
tlsCfg := cfg.Server.TLS
if tlsCfg.LetsEncrypt.AWSRoute53 {
log.Debugf("using Let's Encrypt DNS resolver with Route 53 support")
r53 := encryption.Route53TLS{
DataDir: tlsCfg.LetsEncrypt.DataDir,
Email: tlsCfg.LetsEncrypt.Email,
Domains: tlsCfg.LetsEncrypt.Domains,
}
tc, err := r53.GetCertificate()
if err != nil {
return nil, false, err
}
return tc, true, nil
}
if cfg.HasLetsEncrypt() {
log.Infof("setting up TLS with Let's Encrypt")
certManager, err := encryption.CreateCertManager(tlsCfg.LetsEncrypt.DataDir, tlsCfg.LetsEncrypt.Domains...)
if err != nil {
return nil, false, fmt.Errorf("failed creating LetsEncrypt cert manager: %w", err)
}
return certManager.TLSConfig(), true, nil
}
if cfg.HasTLSCert() {
log.Debugf("using file based TLS config")
tc, err := encryption.LoadTLSConfig(tlsCfg.CertFile, tlsCfg.KeyFile)
if err != nil {
return nil, false, err
}
return tc, true, nil
}
return nil, false, nil
}
func createManagementServer(cfg *CombinedConfig, mgmtConfig *nbconfig.Config) (*mgmtServer.BaseServer, error) {
mgmt := cfg.Management
dnsDomain := mgmt.DnsDomain
singleAccModeDomain := dnsDomain
// Extract port from listen address
_, portStr, err := net.SplitHostPort(cfg.Server.ListenAddress)
if err != nil {
// If no port specified, assume default
portStr = "443"
}
mgmtPort, _ := strconv.Atoi(portStr)
mgmtSrv := mgmtServer.NewServer(
mgmtConfig,
dnsDomain,
singleAccModeDomain,
mgmtPort,
cfg.Server.MetricsPort,
mgmt.DisableAnonymousMetrics,
mgmt.DisableGeoliteUpdate,
// Always enable user deletion from IDP in combined server (embedded IdP is always enabled)
true,
)
return mgmtSrv, nil
}
// createCombinedHandler creates an HTTP handler that multiplexes Management, Signal (via wsproxy), and Relay WebSocket traffic
func createCombinedHandler(grpcServer *grpc.Server, httpHandler http.Handler, relaySrv *relayServer.Server, meter metric.Meter, cfg *CombinedConfig) http.Handler {
wsProxy := wsproxyserver.New(grpcServer, wsproxyserver.WithOTelMeter(meter))
var relayAcceptFn func(conn net.Conn)
if relaySrv != nil {
relayAcceptFn = relaySrv.RelayAccept()
}
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
switch {
// Native gRPC traffic (HTTP/2 with gRPC content-type)
case r.ProtoMajor == 2 && (strings.HasPrefix(r.Header.Get("Content-Type"), "application/grpc") ||
strings.HasPrefix(r.Header.Get("Content-Type"), "application/grpc+proto")):
grpcServer.ServeHTTP(w, r)
// WebSocket proxy for Management gRPC
case r.URL.Path == wsproxy.ProxyPath+wsproxy.ManagementComponent:
wsProxy.Handler().ServeHTTP(w, r)
// WebSocket proxy for Signal gRPC
case r.URL.Path == wsproxy.ProxyPath+wsproxy.SignalComponent:
if cfg.Signal.Enabled {
wsProxy.Handler().ServeHTTP(w, r)
} else {
http.Error(w, "Signal service not enabled", http.StatusNotFound)
}
// Relay WebSocket
case r.URL.Path == "/relay":
if relayAcceptFn != nil {
handleRelayWebSocket(w, r, relayAcceptFn, cfg)
} else {
http.Error(w, "Relay service not enabled", http.StatusNotFound)
}
// Management HTTP API (default)
default:
httpHandler.ServeHTTP(w, r)
}
})
}
// handleRelayWebSocket handles incoming WebSocket connections for the relay service
func handleRelayWebSocket(w http.ResponseWriter, r *http.Request, acceptFn func(conn net.Conn), cfg *CombinedConfig) {
acceptOptions := &websocket.AcceptOptions{
OriginPatterns: []string{"*"},
}
wsConn, err := websocket.Accept(w, r, acceptOptions)
if err != nil {
log.Errorf("failed to accept relay ws connection: %s", err)
return
}
connRemoteAddr := r.RemoteAddr
if r.Header.Get("X-Real-Ip") != "" && r.Header.Get("X-Real-Port") != "" {
connRemoteAddr = net.JoinHostPort(r.Header.Get("X-Real-Ip"), r.Header.Get("X-Real-Port"))
}
rAddr, err := net.ResolveTCPAddr("tcp", connRemoteAddr)
if err != nil {
_ = wsConn.Close(websocket.StatusInternalError, "internal error")
return
}
lAddr, err := net.ResolveTCPAddr("tcp", cfg.Server.ListenAddress)
if err != nil {
_ = wsConn.Close(websocket.StatusInternalError, "internal error")
return
}
log.Debugf("Relay WS client connected from: %s", rAddr)
conn := ws.NewConn(wsConn, lAddr, rAddr)
acceptFn(conn)
}
// logConfig prints all configuration parameters for debugging
func logConfig(cfg *CombinedConfig) {
log.Info("=== Configuration ===")
logServerConfig(cfg)
logComponentsConfig(cfg)
logRelayConfig(cfg)
logManagementConfig(cfg)
log.Info("=== End Configuration ===")
}
func logServerConfig(cfg *CombinedConfig) {
log.Info("--- Server ---")
log.Infof(" Listen address: %s", cfg.Server.ListenAddress)
log.Infof(" Exposed address: %s", cfg.Server.ExposedAddress)
log.Infof(" Healthcheck address: %s", cfg.Server.HealthcheckAddress)
log.Infof(" Metrics port: %d", cfg.Server.MetricsPort)
log.Infof(" Log level: %s", cfg.Server.LogLevel)
log.Infof(" Data dir: %s", cfg.Server.DataDir)
switch {
case cfg.HasTLSCert():
log.Infof(" TLS: cert=%s, key=%s", cfg.Server.TLS.CertFile, cfg.Server.TLS.KeyFile)
case cfg.HasLetsEncrypt():
log.Infof(" TLS: Let's Encrypt (domains=%v)", cfg.Server.TLS.LetsEncrypt.Domains)
default:
log.Info(" TLS: disabled (using reverse proxy)")
}
}
func logComponentsConfig(cfg *CombinedConfig) {
log.Info("--- Components ---")
log.Infof(" Management: %v (log level: %s)", cfg.Management.Enabled, cfg.Management.LogLevel)
log.Infof(" Signal: %v (log level: %s)", cfg.Signal.Enabled, cfg.Signal.LogLevel)
log.Infof(" Relay: %v (log level: %s)", cfg.Relay.Enabled, cfg.Relay.LogLevel)
}
func logRelayConfig(cfg *CombinedConfig) {
if !cfg.Relay.Enabled {
return
}
log.Info("--- Relay ---")
log.Infof(" Exposed address: %s", cfg.Relay.ExposedAddress)
log.Infof(" Auth secret: %s...", maskSecret(cfg.Relay.AuthSecret))
if cfg.Relay.Stun.Enabled {
log.Infof(" STUN ports: %v (log level: %s)", cfg.Relay.Stun.Ports, cfg.Relay.Stun.LogLevel)
} else {
log.Info(" STUN: disabled")
}
}
func logManagementConfig(cfg *CombinedConfig) {
if !cfg.Management.Enabled {
return
}
log.Info("--- Management ---")
log.Infof(" Data dir: %s", cfg.Management.DataDir)
log.Infof(" DNS domain: %s", cfg.Management.DnsDomain)
log.Infof(" Store engine: %s", cfg.Management.Store.Engine)
if cfg.Server.Store.DSN != "" {
log.Infof(" Store DSN: %s", maskDSNPassword(cfg.Server.Store.DSN))
}
log.Info(" Auth (embedded IdP):")
log.Infof(" Issuer: %s", cfg.Management.Auth.Issuer)
log.Infof(" Dashboard redirect URIs: %v", cfg.Management.Auth.DashboardRedirectURIs)
log.Infof(" CLI redirect URIs: %v", cfg.Management.Auth.CLIRedirectURIs)
log.Info(" Client settings:")
log.Infof(" Signal URI: %s", cfg.Management.SignalURI)
for _, s := range cfg.Management.Stuns {
log.Infof(" STUN: %s", s.URI)
}
if len(cfg.Management.Relays.Addresses) > 0 {
log.Infof(" Relay addresses: %v", cfg.Management.Relays.Addresses)
log.Infof(" Relay credentials TTL: %s", cfg.Management.Relays.CredentialsTTL)
}
}
// logEnvVars logs all NB_ environment variables that are currently set
func logEnvVars() {
log.Info("=== Environment Variables ===")
found := false
for _, env := range os.Environ() {
if strings.HasPrefix(env, "NB_") {
key, _, _ := strings.Cut(env, "=")
value := os.Getenv(key)
if strings.Contains(strings.ToLower(key), "secret") || strings.Contains(strings.ToLower(key), "key") || strings.Contains(strings.ToLower(key), "password") {
value = maskSecret(value)
}
log.Infof(" %s=%s", key, value)
found = true
}
}
if !found {
log.Info(" (none set)")
}
log.Info("=== End Environment Variables ===")
}
// maskDSNPassword masks the password in a DSN string.
// Handles both key=value format ("password=secret") and URI format ("user:secret@host").
func maskDSNPassword(dsn string) string {
// Key=value format: "host=localhost user=nb password=secret dbname=nb"
if strings.Contains(dsn, "password=") {
parts := strings.Fields(dsn)
for i, p := range parts {
if strings.HasPrefix(p, "password=") {
parts[i] = "password=****"
}
}
return strings.Join(parts, " ")
}
// URI format: "user:password@host..."
if atIdx := strings.Index(dsn, "@"); atIdx != -1 {
prefix := dsn[:atIdx]
if colonIdx := strings.Index(prefix, ":"); colonIdx != -1 {
return prefix[:colonIdx+1] + "****" + dsn[atIdx:]
}
}
return dsn
}
// maskSecret returns first 4 chars of secret followed by "..."
func maskSecret(secret string) string {
if len(secret) <= 4 {
return "****"
}
return secret[:4] + "..."
}

View File

@@ -1,219 +0,0 @@
package cmd
import (
"context"
"fmt"
"os"
"strconv"
"text/tabwriter"
"time"
log "github.com/sirupsen/logrus"
"github.com/spf13/cobra"
"github.com/netbirdio/netbird/formatter/hook"
"github.com/netbirdio/netbird/management/server/store"
"github.com/netbirdio/netbird/management/server/types"
"github.com/netbirdio/netbird/util"
)
var (
tokenName string
tokenExpireIn string
tokenDatadir string
tokenCmd = &cobra.Command{
Use: "token",
Short: "Manage proxy access tokens",
Long: "Commands for creating, listing, and revoking proxy access tokens used by reverse proxy instances to authenticate with the management server.",
}
tokenCreateCmd = &cobra.Command{
Use: "create",
Short: "Create a new proxy access token",
Long: "Creates a new proxy access token. The plain text token is displayed only once at creation time.",
RunE: tokenCreateRun,
}
tokenListCmd = &cobra.Command{
Use: "list",
Aliases: []string{"ls"},
Short: "List all proxy access tokens",
Long: "Lists all proxy access tokens with their IDs, names, creation dates, expiration, and revocation status.",
RunE: tokenListRun,
}
tokenRevokeCmd = &cobra.Command{
Use: "revoke [token-id]",
Short: "Revoke a proxy access token",
Long: "Revokes a proxy access token by its ID. Revoked tokens can no longer be used for authentication.",
Args: cobra.ExactArgs(1),
RunE: tokenRevokeRun,
}
)
func init() {
tokenCmd.PersistentFlags().StringVar(&tokenDatadir, "datadir", "", "Override the data directory from config (where store.db is located)")
tokenCreateCmd.Flags().StringVar(&tokenName, "name", "", "Name for the token (required)")
tokenCreateCmd.Flags().StringVar(&tokenExpireIn, "expires-in", "", "Token expiration duration (e.g., 365d, 24h, 30d). Empty means no expiration")
tokenCreateCmd.MarkFlagRequired("name") //nolint
tokenCmd.AddCommand(tokenCreateCmd, tokenListCmd, tokenRevokeCmd)
rootCmd.AddCommand(tokenCmd)
}
// withTokenStore initializes logging, loads config, opens the store, and calls fn.
func withTokenStore(cmd *cobra.Command, fn func(ctx context.Context, s store.Store) error) error {
if err := util.InitLog("error", "console"); err != nil {
return fmt.Errorf("init log: %w", err)
}
//nolint
ctx := context.WithValue(cmd.Context(), hook.ExecutionContextKey, hook.SystemSource)
// Load combined server YAML config
cfg, err := LoadConfig(configPath)
if err != nil {
return fmt.Errorf("load config: %w", err)
}
// Get datadir from config or override
datadir := cfg.Server.DataDir
if tokenDatadir != "" {
datadir = tokenDatadir
}
// Get store engine from config
storeEngine := types.Engine(cfg.Server.Store.Engine)
if storeEngine == "" {
storeEngine = "sqlite"
}
s, err := store.NewStore(ctx, storeEngine, datadir, nil, true)
if err != nil {
return fmt.Errorf("create store: %w", err)
}
defer func() {
if err := s.Close(ctx); err != nil {
log.Debugf("close store: %v", err)
}
}()
return fn(ctx, s)
}
func tokenCreateRun(cmd *cobra.Command, _ []string) error {
return withTokenStore(cmd, func(ctx context.Context, s store.Store) error {
expiresIn, err := parseDuration(tokenExpireIn)
if err != nil {
return fmt.Errorf("parse expiration: %w", err)
}
generated, err := types.CreateNewProxyAccessToken(tokenName, expiresIn, nil, "CLI")
if err != nil {
return fmt.Errorf("generate token: %w", err)
}
if err := s.SaveProxyAccessToken(ctx, &generated.ProxyAccessToken); err != nil {
return fmt.Errorf("save token: %w", err)
}
fmt.Println("Token created successfully!") //nolint:forbidigo
fmt.Printf("Token: %s\n", generated.PlainToken) //nolint:forbidigo
fmt.Println() //nolint:forbidigo
fmt.Println("IMPORTANT: Save this token now. It will not be shown again.") //nolint:forbidigo
fmt.Printf("Token ID: %s\n", generated.ID) //nolint:forbidigo
return nil
})
}
func tokenListRun(cmd *cobra.Command, _ []string) error {
return withTokenStore(cmd, func(ctx context.Context, s store.Store) error {
tokens, err := s.GetAllProxyAccessTokens(ctx, store.LockingStrengthNone)
if err != nil {
return fmt.Errorf("list tokens: %w", err)
}
if len(tokens) == 0 {
fmt.Println("No proxy access tokens found.") //nolint:forbidigo
return nil
}
w := tabwriter.NewWriter(os.Stdout, 0, 0, 2, ' ', 0)
fmt.Fprintln(w, "ID\tNAME\tCREATED\tEXPIRES\tLAST USED\tREVOKED")
fmt.Fprintln(w, "--\t----\t-------\t-------\t---------\t-------")
for _, t := range tokens {
expires := "never"
if t.ExpiresAt != nil {
expires = t.ExpiresAt.Format("2006-01-02")
}
lastUsed := "never"
if t.LastUsed != nil {
lastUsed = t.LastUsed.Format("2006-01-02 15:04")
}
revoked := "no"
if t.Revoked {
revoked = "yes"
}
fmt.Fprintf(w, "%s\t%s\t%s\t%s\t%s\t%s\n",
t.ID,
t.Name,
t.CreatedAt.Format("2006-01-02"),
expires,
lastUsed,
revoked,
)
}
w.Flush()
return nil
})
}
func tokenRevokeRun(cmd *cobra.Command, args []string) error {
return withTokenStore(cmd, func(ctx context.Context, s store.Store) error {
tokenID := args[0]
if err := s.RevokeProxyAccessToken(ctx, tokenID); err != nil {
return fmt.Errorf("revoke token: %w", err)
}
fmt.Printf("Token %s revoked successfully.\n", tokenID) //nolint:forbidigo
return nil
})
}
// parseDuration parses a duration string with support for days (e.g., "30d", "365d").
// An empty string returns zero duration (no expiration).
func parseDuration(s string) (time.Duration, error) {
if len(s) == 0 {
return 0, nil
}
if s[len(s)-1] == 'd' {
d, err := strconv.Atoi(s[:len(s)-1])
if err != nil {
return 0, fmt.Errorf("invalid day format: %s", s)
}
if d <= 0 {
return 0, fmt.Errorf("duration must be positive: %s", s)
}
return time.Duration(d) * 24 * time.Hour, nil
}
d, err := time.ParseDuration(s)
if err != nil {
return 0, err
}
if d <= 0 {
return 0, fmt.Errorf("duration must be positive: %s", s)
}
return d, nil
}

View File

@@ -1,111 +0,0 @@
# NetBird Combined Server Configuration
# Copy this file to config.yaml and customize for your deployment
#
# This is a Management server with optional embedded Signal, Relay, and STUN services.
# By default, all services run locally. You can use external services instead by
# setting the corresponding override fields.
#
# Architecture:
# - Management: Always runs locally (this IS the management server)
# - Signal: Local by default; set 'signalUri' to use external (disables local)
# - Relay: Local by default; set 'relays' to use external (disables local)
# - STUN: Local on port 3478 by default; set 'stuns' to use external instead
server:
# Main HTTP/gRPC port for all services (Management, Signal, Relay)
listenAddress: ":443"
# Public address that peers will use to connect to this server
# Used for relay connections and management DNS domain
# Format: protocol://hostname:port (e.g., https://server.mycompany.com:443)
exposedAddress: "https://server.mycompany.com:443"
# STUN server ports (defaults to [3478] if not specified; set 'stuns' to use external)
# stunPorts:
# - 3478
# Metrics endpoint port
metricsPort: 9090
# Healthcheck endpoint address
healthcheckAddress: ":9000"
# Logging configuration
logLevel: "info" # Default log level for all components: panic, fatal, error, warn, info, debug, trace
logFile: "console" # "console" or path to log file
# TLS configuration (optional)
tls:
certFile: ""
keyFile: ""
letsencrypt:
enabled: false
dataDir: ""
domains: []
email: ""
awsRoute53: false
# Shared secret for relay authentication (required when running local relay)
authSecret: "your-secret-key-here"
# Data directory for all services
dataDir: "/var/lib/netbird/"
# ============================================================================
# External Service Overrides (optional)
# Use these to point to external Signal, Relay, or STUN servers instead of
# running them locally. When set, the corresponding local service is disabled.
# ============================================================================
# External STUN servers - disables local STUN server
# stuns:
# - uri: "stun:stun.example.com:3478"
# - uri: "stun:stun.example.com:3479"
# External relay servers - disables local relay server
# relays:
# addresses:
# - "rels://relay.example.com:443"
# credentialsTTL: "12h"
# secret: "relay-shared-secret"
# External signal server - disables local signal server
# signalUri: "https://signal.example.com:443"
# ============================================================================
# Management Settings
# ============================================================================
# Metrics and updates
disableAnonymousMetrics: false
disableGeoliteUpdate: false
# Embedded authentication/identity provider (Dex) configuration (always enabled)
auth:
# OIDC issuer URL - must be publicly accessible
issuer: "https://server.mycompany.com/oauth2"
localAuthDisabled: false
signKeyRefreshEnabled: false
# OAuth2 redirect URIs for dashboard
dashboardRedirectURIs:
- "https://app.netbird.io/nb-auth"
- "https://app.netbird.io/nb-silent-auth"
# OAuth2 redirect URIs for CLI
cliRedirectURIs:
- "http://localhost:53000/"
# Optional initial admin user
# owner:
# email: "admin@example.com"
# password: "initial-password"
# Store configuration
store:
engine: "sqlite" # sqlite, postgres, or mysql
dsn: "" # Connection string for postgres or mysql
encryptionKey: ""
# Reverse proxy settings (optional)
# reverseProxy:
# trustedHTTPProxies: []
# trustedHTTPProxiesCount: 0
# trustedPeers: []

View File

@@ -1,115 +0,0 @@
# Simplified Combined NetBird Server Configuration
# Copy this file to config.yaml and customize for your deployment
# Server-wide settings
server:
# Main HTTP/gRPC port for all services (Management, Signal, Relay)
listenAddress: ":443"
# Metrics endpoint port
metricsPort: 9090
# Healthcheck endpoint address
healthcheckAddress: ":9000"
# Logging configuration
logLevel: "info" # panic, fatal, error, warn, info, debug, trace
logFile: "console" # "console" or path to log file
# TLS configuration (optional)
tls:
certFile: ""
keyFile: ""
letsencrypt:
enabled: false
dataDir: ""
domains: []
email: ""
awsRoute53: false
# Relay service configuration
relay:
# Enable/disable the relay service
enabled: true
# Public address that peers will use to connect to this relay
# Format: hostname:port or ip:port
exposedAddress: "relay.example.com:443"
# Shared secret for relay authentication (required when enabled)
authSecret: "your-secret-key-here"
# Log level for relay (reserved for future use, currently uses global log level)
logLevel: "info"
# Embedded STUN server (optional)
stun:
enabled: false
ports: [3478]
logLevel: "info"
# Signal service configuration
signal:
# Enable/disable the signal service
enabled: true
# Log level for signal (reserved for future use, currently uses global log level)
logLevel: "info"
# Management service configuration
management:
# Enable/disable the management service
enabled: true
# Data directory for management service
dataDir: "/var/lib/netbird/"
# DNS domain for the management server
dnsDomain: ""
# Metrics and updates
disableAnonymousMetrics: false
disableGeoliteUpdate: false
auth:
# OIDC issuer URL - must be publicly accessible
issuer: "https://management.example.com/oauth2"
localAuthDisabled: false
signKeyRefreshEnabled: false
# OAuth2 redirect URIs for dashboard
dashboardRedirectURIs:
- "https://app.example.com/nb-auth"
- "https://app.example.com/nb-silent-auth"
# OAuth2 redirect URIs for CLI
cliRedirectURIs:
- "http://localhost:53000/"
# Optional initial admin user
# owner:
# email: "admin@example.com"
# password: "initial-password"
# External STUN servers (for client config)
stuns: []
# - uri: "stun:stun.example.com:3478"
# External relay servers (for client config)
relays:
addresses: []
# - "rels://relay.example.com:443"
credentialsTTL: "12h"
secret: ""
# External signal server URI (for client config)
signalUri: ""
# Store configuration
store:
engine: "sqlite" # sqlite, postgres, or mysql
dsn: "" # Connection string for postgres or mysql
encryptionKey: ""
# Reverse proxy settings
reverseProxy:
trustedHTTPProxies: []
trustedHTTPProxiesCount: 0
trustedPeers: []

View File

@@ -1,13 +0,0 @@
package main
import (
log "github.com/sirupsen/logrus"
"github.com/netbirdio/netbird/combined/cmd"
)
func main() {
if err := cmd.Execute(); err != nil {
log.Fatalf("failed to execute command: %v", err)
}
}

4
go.mod
View File

@@ -42,7 +42,6 @@ require (
github.com/cilium/ebpf v0.15.0
github.com/coder/websocket v1.8.13
github.com/coreos/go-iptables v0.7.0
github.com/coreos/go-oidc/v3 v3.14.1
github.com/creack/pty v1.1.24
github.com/dexidp/dex v0.0.0-00010101000000-000000000000
github.com/dexidp/dex/api/v2 v2.4.0
@@ -69,7 +68,7 @@ require (
github.com/mdlayher/socket v0.5.1
github.com/miekg/dns v1.1.59
github.com/mitchellh/hashstructure/v2 v2.0.2
github.com/netbirdio/management-integrations/integrations v0.0.0-20260210160626-df4b180c7b25
github.com/netbirdio/management-integrations/integrations v0.0.0-20260122111742-a6f99668844f
github.com/netbirdio/signal-dispatcher/dispatcher v0.0.0-20250805121659-6b4ac470ca45
github.com/oapi-codegen/runtime v1.1.2
github.com/okta/okta-sdk-golang/v2 v2.18.0
@@ -168,6 +167,7 @@ require (
github.com/containerd/containerd v1.7.29 // indirect
github.com/containerd/log v0.1.0 // indirect
github.com/containerd/platforms v0.2.1 // indirect
github.com/coreos/go-oidc/v3 v3.14.1 // indirect
github.com/cpuguy83/dockercfg v0.3.2 // indirect
github.com/davecgh/go-spew v1.1.1 // indirect
github.com/dgryski/go-rendezvous v0.0.0-20200823014737-9f7001d12a5f // indirect

4
go.sum
View File

@@ -406,8 +406,8 @@ github.com/netbirdio/go-netroute v0.0.0-20240611143515-f59b0e1d3944 h1:TDtJKmM6S
github.com/netbirdio/go-netroute v0.0.0-20240611143515-f59b0e1d3944/go.mod h1:sHA6TRxjQ6RLbnI+3R4DZo2Eseg/iKiPRfNmcuNySVQ=
github.com/netbirdio/ice/v4 v4.0.0-20250908184934-6202be846b51 h1:Ov4qdafATOgGMB1wbSuh+0aAHcwz9hdvB6VZjh1mVMI=
github.com/netbirdio/ice/v4 v4.0.0-20250908184934-6202be846b51/go.mod h1:ZSIbPdBn5hePO8CpF1PekH2SfpTxg1PDhEwtbqZS7R8=
github.com/netbirdio/management-integrations/integrations v0.0.0-20260210160626-df4b180c7b25 h1:iwAq/Ncaq0etl4uAlVsbNBzC1yY52o0AmY7uCm2AMTs=
github.com/netbirdio/management-integrations/integrations v0.0.0-20260210160626-df4b180c7b25/go.mod h1:y7CxagMYzg9dgu+masRqYM7BQlOGA5Y8US85MCNFPlY=
github.com/netbirdio/management-integrations/integrations v0.0.0-20260122111742-a6f99668844f h1:CTBf0je/FpKr2lVSMZLak7m8aaWcS6ur4SOfhSSazFI=
github.com/netbirdio/management-integrations/integrations v0.0.0-20260122111742-a6f99668844f/go.mod h1:y7CxagMYzg9dgu+masRqYM7BQlOGA5Y8US85MCNFPlY=
github.com/netbirdio/service v0.0.0-20240911161631-f62744f42502 h1:3tHlFmhTdX9axERMVN63dqyFqnvuD+EMJHzM7mNGON8=
github.com/netbirdio/service v0.0.0-20240911161631-f62744f42502/go.mod h1:CIMRFEJVL+0DS1a3Nx06NaMn4Dz63Ng6O7dl0qH0zVM=
github.com/netbirdio/signal-dispatcher/dispatcher v0.0.0-20250805121659-6b4ac470ca45 h1:ujgviVYmx243Ksy7NdSwrdGPSRNE3pb8kEDSpH0QuAQ=

View File

@@ -327,60 +327,6 @@ func ensureLocalConnector(ctx context.Context, stor storage.Storage) error {
return nil
}
// HasNonLocalConnectors checks if there are any connectors other than the local connector.
func (p *Provider) HasNonLocalConnectors(ctx context.Context) (bool, error) {
connectors, err := p.storage.ListConnectors(ctx)
if err != nil {
return false, fmt.Errorf("failed to list connectors: %w", err)
}
p.logger.Info("checking for non-local connectors", "total_connectors", len(connectors))
for _, conn := range connectors {
p.logger.Info("found connector in storage", "id", conn.ID, "type", conn.Type, "name", conn.Name)
if conn.ID != "local" || conn.Type != "local" {
p.logger.Info("found non-local connector", "id", conn.ID)
return true, nil
}
}
p.logger.Info("no non-local connectors found")
return false, nil
}
// DisableLocalAuth removes the local (password) connector.
// Returns an error if no other connectors are configured.
func (p *Provider) DisableLocalAuth(ctx context.Context) error {
hasOthers, err := p.HasNonLocalConnectors(ctx)
if err != nil {
return err
}
if !hasOthers {
return fmt.Errorf("cannot disable local authentication: no other identity providers configured")
}
// Check if local connector exists
_, err = p.storage.GetConnector(ctx, "local")
if errors.Is(err, storage.ErrNotFound) {
// Already disabled
return nil
}
if err != nil {
return fmt.Errorf("failed to check local connector: %w", err)
}
// Delete the local connector
if err := p.storage.DeleteConnector(ctx, "local"); err != nil {
return fmt.Errorf("failed to delete local connector: %w", err)
}
p.logger.Info("local authentication disabled")
return nil
}
// EnableLocalAuth creates the local (password) connector if it doesn't exist.
func (p *Provider) EnableLocalAuth(ctx context.Context) error {
return ensureLocalConnector(ctx, p.storage)
}
// ensureStaticConnectors creates or updates static connectors in storage
func ensureStaticConnectors(ctx context.Context, stor storage.Storage, connectors []Connector) error {
for _, conn := range connectors {

File diff suppressed because it is too large Load Diff

View File

@@ -1,17 +0,0 @@
FROM golang:1.25-bookworm AS builder
WORKDIR /app
# Install build dependencies
RUN apt-get update && apt-get install -y gcc libc6-dev && rm -rf /var/lib/apt/lists/*
COPY go.mod go.sum ./
RUN go mod download
COPY . .
RUN CGO_ENABLED=1 GOOS=linux go build -ldflags="-s -w" -o netbird-mgmt ./management
FROM ubuntu:24.04
RUN apt update && apt install -y ca-certificates && rm -fr /var/cache/apt
ENTRYPOINT [ "/go/bin/netbird-mgmt","management"]
CMD ["--log-file", "console"]
COPY --from=builder /app/netbird-mgmt /go/bin/netbird-mgmt

View File

@@ -16,15 +16,13 @@ import (
"strings"
"syscall"
"github.com/miekg/dns"
log "github.com/sirupsen/logrus"
"github.com/spf13/cobra"
"github.com/netbirdio/netbird/management/server/types"
"github.com/netbirdio/netbird/formatter/hook"
"github.com/netbirdio/netbird/management/internals/server"
nbconfig "github.com/netbirdio/netbird/management/internals/server/config"
nbdomain "github.com/netbirdio/netbird/shared/management/domain"
"github.com/netbirdio/netbird/util"
"github.com/netbirdio/netbird/util/crypt"
)
@@ -57,7 +55,7 @@ var (
// detect whether user specified a port
userPort := cmd.Flag("port").Changed
config, err = LoadMgmtConfig(ctx, nbconfig.MgmtConfigPath)
config, err = loadMgmtConfig(ctx, nbconfig.MgmtConfigPath)
if err != nil {
return fmt.Errorf("failed reading provided config file: %s: %v", nbconfig.MgmtConfigPath, err)
}
@@ -80,8 +78,9 @@ var (
}
}
if !nbdomain.IsValidDomainNoWildcard(dnsDomain) {
return fmt.Errorf("invalid dns-domain: %s", dnsDomain)
_, valid := dns.IsDomainName(dnsDomain)
if !valid || len(dnsDomain) > 192 {
return fmt.Errorf("failed parsing the provided dns-domain. Valid status: %t, Length: %d", valid, len(dnsDomain))
}
return nil
@@ -135,35 +134,35 @@ var (
}
)
func LoadMgmtConfig(ctx context.Context, mgmtConfigPath string) (*nbconfig.Config, error) {
func loadMgmtConfig(ctx context.Context, mgmtConfigPath string) (*nbconfig.Config, error) {
loadedConfig := &nbconfig.Config{}
if _, err := util.ReadJsonWithEnvSub(mgmtConfigPath, loadedConfig); err != nil {
return nil, err
}
ApplyCommandLineOverrides(loadedConfig)
applyCommandLineOverrides(loadedConfig)
// Apply EmbeddedIdP config to HttpConfig if embedded IdP is enabled
err := ApplyEmbeddedIdPConfig(ctx, loadedConfig)
err := applyEmbeddedIdPConfig(ctx, loadedConfig)
if err != nil {
return nil, err
}
if err := ApplyOIDCConfig(ctx, loadedConfig); err != nil {
if err := applyOIDCConfig(ctx, loadedConfig); err != nil {
return nil, err
}
LogConfigInfo(loadedConfig)
logConfigInfo(loadedConfig)
if err := EnsureEncryptionKey(ctx, mgmtConfigPath, loadedConfig); err != nil {
if err := ensureEncryptionKey(ctx, mgmtConfigPath, loadedConfig); err != nil {
return nil, err
}
return loadedConfig, nil
}
// ApplyCommandLineOverrides applies command-line flag overrides to the config
func ApplyCommandLineOverrides(cfg *nbconfig.Config) {
// applyCommandLineOverrides applies command-line flag overrides to the config
func applyCommandLineOverrides(cfg *nbconfig.Config) {
if mgmtLetsencryptDomain != "" {
cfg.HttpConfig.LetsEncryptDomain = mgmtLetsencryptDomain
}
@@ -176,9 +175,9 @@ func ApplyCommandLineOverrides(cfg *nbconfig.Config) {
}
}
// ApplyEmbeddedIdPConfig populates HttpConfig and EmbeddedIdP storage from config when embedded IdP is enabled.
// applyEmbeddedIdPConfig populates HttpConfig and EmbeddedIdP storage from config when embedded IdP is enabled.
// This allows users to only specify EmbeddedIdP config without duplicating values in HttpConfig.
func ApplyEmbeddedIdPConfig(ctx context.Context, cfg *nbconfig.Config) error {
func applyEmbeddedIdPConfig(ctx context.Context, cfg *nbconfig.Config) error {
if cfg.EmbeddedIdP == nil || !cfg.EmbeddedIdP.Enabled {
return nil
}
@@ -215,20 +214,17 @@ func ApplyEmbeddedIdPConfig(ctx context.Context, cfg *nbconfig.Config) error {
// Set HttpConfig values from EmbeddedIdP
cfg.HttpConfig.AuthIssuer = issuer
cfg.HttpConfig.AuthAudience = "netbird-dashboard"
cfg.HttpConfig.AuthClientID = cfg.HttpConfig.AuthAudience
cfg.HttpConfig.CLIAuthAudience = "netbird-cli"
cfg.HttpConfig.AuthUserIDClaim = "sub"
cfg.HttpConfig.AuthKeysLocation = issuer + "/keys"
cfg.HttpConfig.OIDCConfigEndpoint = issuer + "/.well-known/openid-configuration"
cfg.HttpConfig.IdpSignKeyRefreshEnabled = true
callbackURL := strings.TrimSuffix(cfg.HttpConfig.AuthIssuer, "/oauth2")
cfg.HttpConfig.AuthCallbackURL = callbackURL + types.ProxyCallbackEndpointFull
return nil
}
// ApplyOIDCConfig fetches and applies OIDC configuration if endpoint is specified
func ApplyOIDCConfig(ctx context.Context, cfg *nbconfig.Config) error {
// applyOIDCConfig fetches and applies OIDC configuration if endpoint is specified
func applyOIDCConfig(ctx context.Context, cfg *nbconfig.Config) error {
oidcEndpoint := cfg.HttpConfig.OIDCConfigEndpoint
if oidcEndpoint == "" {
return nil
@@ -254,16 +250,16 @@ func ApplyOIDCConfig(ctx context.Context, cfg *nbconfig.Config) error {
oidcConfig.JwksURI, cfg.HttpConfig.AuthKeysLocation)
cfg.HttpConfig.AuthKeysLocation = oidcConfig.JwksURI
if err := ApplyDeviceAuthFlowConfig(ctx, cfg, &oidcConfig, oidcEndpoint); err != nil {
if err := applyDeviceAuthFlowConfig(ctx, cfg, &oidcConfig, oidcEndpoint); err != nil {
return err
}
ApplyPKCEFlowConfig(ctx, cfg, &oidcConfig)
applyPKCEFlowConfig(ctx, cfg, &oidcConfig)
return nil
}
// ApplyDeviceAuthFlowConfig applies OIDC config to DeviceAuthorizationFlow if enabled
func ApplyDeviceAuthFlowConfig(ctx context.Context, cfg *nbconfig.Config, oidcConfig *OIDCConfigResponse, oidcEndpoint string) error {
// applyDeviceAuthFlowConfig applies OIDC config to DeviceAuthorizationFlow if enabled
func applyDeviceAuthFlowConfig(ctx context.Context, cfg *nbconfig.Config, oidcConfig *OIDCConfigResponse, oidcEndpoint string) error {
if cfg.DeviceAuthorizationFlow == nil || strings.ToLower(cfg.DeviceAuthorizationFlow.Provider) == string(nbconfig.NONE) {
return nil
}
@@ -290,8 +286,8 @@ func ApplyDeviceAuthFlowConfig(ctx context.Context, cfg *nbconfig.Config, oidcCo
return nil
}
// ApplyPKCEFlowConfig applies OIDC config to PKCEAuthorizationFlow if configured
func ApplyPKCEFlowConfig(ctx context.Context, cfg *nbconfig.Config, oidcConfig *OIDCConfigResponse) {
// applyPKCEFlowConfig applies OIDC config to PKCEAuthorizationFlow if configured
func applyPKCEFlowConfig(ctx context.Context, cfg *nbconfig.Config, oidcConfig *OIDCConfigResponse) {
if cfg.PKCEAuthorizationFlow == nil {
return
}
@@ -304,8 +300,8 @@ func ApplyPKCEFlowConfig(ctx context.Context, cfg *nbconfig.Config, oidcConfig *
cfg.PKCEAuthorizationFlow.ProviderConfig.AuthorizationEndpoint = oidcConfig.AuthorizationEndpoint
}
// LogConfigInfo logs informational messages about the loaded configuration
func LogConfigInfo(cfg *nbconfig.Config) {
// logConfigInfo logs informational messages about the loaded configuration
func logConfigInfo(cfg *nbconfig.Config) {
if cfg.EmbeddedIdP != nil {
log.Infof("running with the embedded IdP: %v", cfg.EmbeddedIdP.Issuer)
}
@@ -314,8 +310,8 @@ func LogConfigInfo(cfg *nbconfig.Config) {
}
}
// EnsureEncryptionKey generates and saves a DataStoreEncryptionKey if not set
func EnsureEncryptionKey(ctx context.Context, configPath string, cfg *nbconfig.Config) error {
// ensureEncryptionKey generates and saves a DataStoreEncryptionKey if not set
func ensureEncryptionKey(ctx context.Context, configPath string, cfg *nbconfig.Config) error {
if cfg.DataStoreEncryptionKey != "" {
return nil
}

View File

@@ -30,7 +30,7 @@ func Test_loadMgmtConfig(t *testing.T) {
t.Fatalf("failed to create config: %s", err)
}
cfg, err := LoadMgmtConfig(context.Background(), tmpFile)
cfg, err := loadMgmtConfig(context.Background(), tmpFile)
if err != nil {
t.Fatalf("failed to load management config: %s", err)
}

View File

@@ -80,10 +80,4 @@ func init() {
migrationCmd.AddCommand(upCmd)
rootCmd.AddCommand(migrationCmd)
tokenCmd.PersistentFlags().StringVar(&nbconfig.MgmtConfigPath, "config", defaultMgmtConfig, "Netbird config file location")
tokenCmd.AddCommand(tokenCreateCmd)
tokenCmd.AddCommand(tokenListCmd)
tokenCmd.AddCommand(tokenRevokeCmd)
rootCmd.AddCommand(tokenCmd)
}

View File

@@ -1,209 +0,0 @@
package cmd
import (
"context"
"fmt"
"os"
"strconv"
"text/tabwriter"
"time"
log "github.com/sirupsen/logrus"
"github.com/spf13/cobra"
"github.com/netbirdio/netbird/formatter/hook"
nbconfig "github.com/netbirdio/netbird/management/internals/server/config"
"github.com/netbirdio/netbird/management/server/store"
"github.com/netbirdio/netbird/management/server/types"
"github.com/netbirdio/netbird/util"
)
var (
tokenName string
tokenExpireIn string
tokenDatadir string
tokenCmd = &cobra.Command{
Use: "token",
Short: "Manage proxy access tokens",
Long: "Commands for creating, listing, and revoking proxy access tokens used by reverse proxy instances to authenticate with the management server.",
}
tokenCreateCmd = &cobra.Command{
Use: "create",
Short: "Create a new proxy access token",
Long: "Creates a new proxy access token. The plain text token is displayed only once at creation time.",
RunE: tokenCreateRun,
}
tokenListCmd = &cobra.Command{
Use: "list",
Aliases: []string{"ls"},
Short: "List all proxy access tokens",
Long: "Lists all proxy access tokens with their IDs, names, creation dates, expiration, and revocation status.",
RunE: tokenListRun,
}
tokenRevokeCmd = &cobra.Command{
Use: "revoke [token-id]",
Short: "Revoke a proxy access token",
Long: "Revokes a proxy access token by its ID. Revoked tokens can no longer be used for authentication.",
Args: cobra.ExactArgs(1),
RunE: tokenRevokeRun,
}
)
func init() {
tokenCmd.PersistentFlags().StringVar(&tokenDatadir, "datadir", "", "Override the data directory from config (where store.db is located)")
tokenCreateCmd.Flags().StringVar(&tokenName, "name", "", "Name for the token (required)")
tokenCreateCmd.Flags().StringVar(&tokenExpireIn, "expires-in", "", "Token expiration duration (e.g., 365d, 24h, 30d). Empty means no expiration")
tokenCreateCmd.MarkFlagRequired("name") //nolint
}
// withTokenStore initializes logging, loads config, opens the store, and calls fn.
func withTokenStore(cmd *cobra.Command, fn func(ctx context.Context, s store.Store) error) error {
if err := util.InitLog("error", "console"); err != nil {
return fmt.Errorf("init log: %w", err)
}
//nolint
ctx := context.WithValue(cmd.Context(), hook.ExecutionContextKey, hook.SystemSource)
config, err := loadMgmtConfig(ctx, nbconfig.MgmtConfigPath)
if err != nil {
return fmt.Errorf("load config: %w", err)
}
datadir := config.Datadir
if tokenDatadir != "" {
datadir = tokenDatadir
}
s, err := store.NewStore(ctx, config.StoreConfig.Engine, datadir, nil, true)
if err != nil {
return fmt.Errorf("create store: %w", err)
}
defer func() {
if err := s.Close(ctx); err != nil {
log.Debugf("close store: %v", err)
}
}()
return fn(ctx, s)
}
func tokenCreateRun(cmd *cobra.Command, _ []string) error {
return withTokenStore(cmd, func(ctx context.Context, s store.Store) error {
expiresIn, err := parseDuration(tokenExpireIn)
if err != nil {
return fmt.Errorf("parse expiration: %w", err)
}
generated, err := types.CreateNewProxyAccessToken(tokenName, expiresIn, nil, "CLI")
if err != nil {
return fmt.Errorf("generate token: %w", err)
}
if err := s.SaveProxyAccessToken(ctx, &generated.ProxyAccessToken); err != nil {
return fmt.Errorf("save token: %w", err)
}
fmt.Println("Token created successfully!") //nolint:forbidigo
fmt.Printf("Token: %s\n", generated.PlainToken) //nolint:forbidigo
fmt.Println() //nolint:forbidigo
fmt.Println("IMPORTANT: Save this token now. It will not be shown again.") //nolint:forbidigo
fmt.Printf("Token ID: %s\n", generated.ID) //nolint:forbidigo
return nil
})
}
func tokenListRun(cmd *cobra.Command, _ []string) error {
return withTokenStore(cmd, func(ctx context.Context, s store.Store) error {
tokens, err := s.GetAllProxyAccessTokens(ctx, store.LockingStrengthNone)
if err != nil {
return fmt.Errorf("list tokens: %w", err)
}
if len(tokens) == 0 {
fmt.Println("No proxy access tokens found.") //nolint:forbidigo
return nil
}
w := tabwriter.NewWriter(os.Stdout, 0, 0, 2, ' ', 0)
fmt.Fprintln(w, "ID\tNAME\tCREATED\tEXPIRES\tLAST USED\tREVOKED")
fmt.Fprintln(w, "--\t----\t-------\t-------\t---------\t-------")
for _, t := range tokens {
expires := "never"
if t.ExpiresAt != nil {
expires = t.ExpiresAt.Format("2006-01-02")
}
lastUsed := "never"
if t.LastUsed != nil {
lastUsed = t.LastUsed.Format("2006-01-02 15:04")
}
revoked := "no"
if t.Revoked {
revoked = "yes"
}
fmt.Fprintf(w, "%s\t%s\t%s\t%s\t%s\t%s\n",
t.ID,
t.Name,
t.CreatedAt.Format("2006-01-02"),
expires,
lastUsed,
revoked,
)
}
w.Flush()
return nil
})
}
func tokenRevokeRun(cmd *cobra.Command, args []string) error {
return withTokenStore(cmd, func(ctx context.Context, s store.Store) error {
tokenID := args[0]
if err := s.RevokeProxyAccessToken(ctx, tokenID); err != nil {
return fmt.Errorf("revoke token: %w", err)
}
fmt.Printf("Token %s revoked successfully.\n", tokenID) //nolint:forbidigo
return nil
})
}
// parseDuration parses a duration string with support for days (e.g., "30d", "365d").
// An empty string returns zero duration (no expiration).
func parseDuration(s string) (time.Duration, error) {
if len(s) == 0 {
return 0, nil
}
if s[len(s)-1] == 'd' {
d, err := strconv.Atoi(s[:len(s)-1])
if err != nil {
return 0, fmt.Errorf("invalid day format: %s", s)
}
if d <= 0 {
return 0, fmt.Errorf("duration must be positive: %s", s)
}
return time.Duration(d) * 24 * time.Hour, nil
}
d, err := time.ParseDuration(s)
if err != nil {
return 0, err
}
if d <= 0 {
return 0, fmt.Errorf("duration must be positive: %s", s)
}
return d, nil
}

View File

@@ -1,101 +0,0 @@
package cmd
import (
"testing"
"time"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
)
func TestParseDuration(t *testing.T) {
tests := []struct {
name string
input string
expected time.Duration
wantErr bool
}{
{
name: "empty string returns zero",
input: "",
expected: 0,
},
{
name: "days suffix",
input: "30d",
expected: 30 * 24 * time.Hour,
},
{
name: "one day",
input: "1d",
expected: 24 * time.Hour,
},
{
name: "365 days",
input: "365d",
expected: 365 * 24 * time.Hour,
},
{
name: "hours via Go duration",
input: "24h",
expected: 24 * time.Hour,
},
{
name: "minutes via Go duration",
input: "30m",
expected: 30 * time.Minute,
},
{
name: "complex Go duration",
input: "1h30m",
expected: 90 * time.Minute,
},
{
name: "invalid day format",
input: "abcd",
wantErr: true,
},
{
name: "negative days",
input: "-1d",
wantErr: true,
},
{
name: "zero days",
input: "0d",
wantErr: true,
},
{
name: "non-numeric days",
input: "xyzd",
wantErr: true,
},
{
name: "negative Go duration",
input: "-24h",
wantErr: true,
},
{
name: "zero Go duration",
input: "0s",
wantErr: true,
},
{
name: "invalid Go duration",
input: "notaduration",
wantErr: true,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
result, err := parseDuration(tt.input)
if tt.wantErr {
assert.Error(t, err)
return
}
require.NoError(t, err)
assert.Equal(t, tt.expected, result)
})
}
}

View File

@@ -174,7 +174,6 @@ func (c *Controller) sendUpdateAccountPeers(ctx context.Context, accountID strin
var wg sync.WaitGroup
semaphore := make(chan struct{}, 10)
account.InjectProxyPolicies(ctx)
dnsCache := &cache.DNSConfigCache{}
dnsDomain := c.GetDNSDomain(account.Settings)
peersCustomZone := account.GetPeersCustomZone(ctx, dnsDomain)
@@ -248,10 +247,7 @@ func (c *Controller) sendUpdateAccountPeers(ctx context.Context, accountID strin
update := grpc.ToSyncResponse(ctx, nil, c.config.HttpConfig, c.config.DeviceAuthorizationFlow, p, nil, nil, remotePeerNetworkMap, dnsDomain, postureChecks, dnsCache, account.Settings, extraSetting, maps.Keys(peerGroups), dnsFwdPort)
c.metrics.CountToSyncResponseDuration(time.Since(start))
c.peersUpdateManager.SendUpdate(ctx, p.ID, &network_map.UpdateMessage{
Update: update,
MessageType: network_map.MessageTypeNetworkMap,
})
c.peersUpdateManager.SendUpdate(ctx, p.ID, &network_map.UpdateMessage{Update: update})
}(peer)
}
@@ -327,7 +323,6 @@ func (c *Controller) UpdateAccountPeer(ctx context.Context, accountId string, pe
return fmt.Errorf("failed to get validated peers: %v", err)
}
account.InjectProxyPolicies(ctx)
dnsCache := &cache.DNSConfigCache{}
dnsDomain := c.GetDNSDomain(account.Settings)
peersCustomZone := account.GetPeersCustomZone(ctx, dnsDomain)
@@ -375,10 +370,7 @@ func (c *Controller) UpdateAccountPeer(ctx context.Context, accountId string, pe
dnsFwdPort := computeForwarderPort(maps.Values(account.Peers), network_map.DnsForwarderPortMinVersion)
update := grpc.ToSyncResponse(ctx, nil, c.config.HttpConfig, c.config.DeviceAuthorizationFlow, peer, nil, nil, remotePeerNetworkMap, dnsDomain, postureChecks, dnsCache, account.Settings, extraSettings, maps.Keys(peerGroups), dnsFwdPort)
c.peersUpdateManager.SendUpdate(ctx, peer.ID, &network_map.UpdateMessage{
Update: update,
MessageType: network_map.MessageTypeNetworkMap,
})
c.peersUpdateManager.SendUpdate(ctx, peer.ID, &network_map.UpdateMessage{Update: update})
return nil
}
@@ -443,8 +435,6 @@ func (c *Controller) GetValidatedPeerWithMap(ctx context.Context, isRequiresAppr
}
}
account.InjectProxyPolicies(ctx)
approvedPeersMap, err := c.integratedPeerValidator.GetValidatedPeers(ctx, account.Id, maps.Values(account.Groups), maps.Values(account.Peers), account.Settings.Extra)
if err != nil {
return nil, nil, nil, 0, err
@@ -788,7 +778,6 @@ func (c *Controller) OnPeersDeleted(ctx context.Context, accountID string, peerI
},
},
},
MessageType: network_map.MessageTypeNetworkMap,
})
c.peersUpdateManager.CloseChannel(ctx, peerID)
@@ -851,7 +840,6 @@ func (c *Controller) GetNetworkMap(ctx context.Context, peerID string) (*types.N
if c.experimentalNetworkMap(peer.AccountID) {
networkMap = c.getPeerNetworkMapExp(ctx, peer.AccountID, peerID, validatedPeers, peersCustomZone, accountZones, nil)
} else {
account.InjectProxyPolicies(ctx)
resourcePolicies := account.GetResourcePoliciesMap()
routers := account.GetResourceRoutersMap()
networkMap = account.GetPeerNetworkMap(ctx, peer.ID, peersCustomZone, accountZones, validatedPeers, resourcePolicies, routers, nil, account.GetActiveGroupUsers())

View File

@@ -25,14 +25,11 @@ func TestCreateChannel(t *testing.T) {
func TestSendUpdate(t *testing.T) {
peer := "test-sendupdate"
peersUpdater := NewPeersUpdateManager(nil)
update1 := &network_map.UpdateMessage{
Update: &proto.SyncResponse{
NetworkMap: &proto.NetworkMap{
Serial: 0,
},
update1 := &network_map.UpdateMessage{Update: &proto.SyncResponse{
NetworkMap: &proto.NetworkMap{
Serial: 0,
},
MessageType: network_map.MessageTypeNetworkMap,
}
}}
_ = peersUpdater.CreateChannel(context.Background(), peer)
if _, ok := peersUpdater.peerChannels[peer]; !ok {
t.Error("Error creating the channel")
@@ -48,14 +45,11 @@ func TestSendUpdate(t *testing.T) {
peersUpdater.SendUpdate(context.Background(), peer, update1)
}
update2 := &network_map.UpdateMessage{
Update: &proto.SyncResponse{
NetworkMap: &proto.NetworkMap{
Serial: 10,
},
update2 := &network_map.UpdateMessage{Update: &proto.SyncResponse{
NetworkMap: &proto.NetworkMap{
Serial: 10,
},
MessageType: network_map.MessageTypeNetworkMap,
}
}}
peersUpdater.SendUpdate(context.Background(), peer, update2)
timeout := time.After(5 * time.Second)

View File

@@ -4,19 +4,6 @@ import (
"github.com/netbirdio/netbird/shared/management/proto"
)
// MessageType indicates the type of update message for debouncing strategy
type MessageType int
const (
// MessageTypeNetworkMap represents network map updates (peers, routes, DNS, firewall)
// These updates can be safely debounced - only the latest state matters
MessageTypeNetworkMap MessageType = iota
// MessageTypeControlConfig represents control/config updates (tokens, peer expiration)
// These updates should not be dropped as they contain time-sensitive information
MessageTypeControlConfig
)
type UpdateMessage struct {
Update *proto.SyncResponse
MessageType MessageType
Update *proto.SyncResponse
}

View File

@@ -7,7 +7,6 @@ import (
"fmt"
"time"
"github.com/rs/xid"
log "github.com/sirupsen/logrus"
"github.com/netbirdio/netbird/management/internals/controllers/network_map"
@@ -33,7 +32,6 @@ type Manager interface {
SetIntegratedPeerValidator(integratedPeerValidator integrated_validator.IntegratedValidator)
SetAccountManager(accountManager account.Manager)
GetPeerID(ctx context.Context, peerKey string) (string, error)
CreateProxyPeer(ctx context.Context, accountID string, peerKey string, cluster string) error
}
type managerImpl struct {
@@ -184,36 +182,3 @@ func (m *managerImpl) DeletePeers(ctx context.Context, accountID string, peerIDs
func (m *managerImpl) GetPeerID(ctx context.Context, peerKey string) (string, error) {
return m.store.GetPeerIDByKey(ctx, store.LockingStrengthNone, peerKey)
}
func (m *managerImpl) CreateProxyPeer(ctx context.Context, accountID string, peerKey string, cluster string) error {
existingPeerID, err := m.store.GetPeerIDByKey(ctx, store.LockingStrengthNone, peerKey)
if err == nil && existingPeerID != "" {
// Peer already exists
return nil
}
name := fmt.Sprintf("proxy-%s", xid.New().String())
peer := &peer.Peer{
Ephemeral: true,
ProxyMeta: peer.ProxyMeta{
Cluster: cluster,
Embedded: true,
},
Name: name,
Key: peerKey,
LoginExpirationEnabled: false,
InactivityExpirationEnabled: false,
Meta: peer.PeerSystemMeta{
Hostname: name,
GoOS: "proxy",
OS: "proxy",
},
}
_, _, _, err = m.accountManager.AddPeer(ctx, accountID, "", "", peer, false)
if err != nil {
return fmt.Errorf("failed to create proxy peer: %w", err)
}
return nil
}

View File

@@ -162,17 +162,3 @@ func (mr *MockManagerMockRecorder) SetNetworkMapController(networkMapController
mr.mock.ctrl.T.Helper()
return mr.mock.ctrl.RecordCallWithMethodType(mr.mock, "SetNetworkMapController", reflect.TypeOf((*MockManager)(nil).SetNetworkMapController), networkMapController)
}
// CreateProxyPeer mocks base method.
func (m *MockManager) CreateProxyPeer(ctx context.Context, accountID string, peerKey string, cluster string) error {
m.ctrl.T.Helper()
ret := m.ctrl.Call(m, "CreateProxyPeer", ctx, accountID, peerKey, cluster)
ret0, _ := ret[0].(error)
return ret0
}
// CreateProxyPeer indicates an expected call of CreateProxyPeer.
func (mr *MockManagerMockRecorder) CreateProxyPeer(ctx, accountID, peerKey, cluster interface{}) *gomock.Call {
mr.mock.ctrl.T.Helper()
return mr.mock.ctrl.RecordCallWithMethodType(mr.mock, "CreateProxyPeer", reflect.TypeOf((*MockManager)(nil).CreateProxyPeer), ctx, accountID, peerKey, cluster)
}

View File

@@ -1,105 +0,0 @@
package accesslogs
import (
"net"
"net/netip"
"time"
"github.com/netbirdio/netbird/management/server/peer"
"github.com/netbirdio/netbird/shared/management/http/api"
"github.com/netbirdio/netbird/shared/management/proto"
)
type AccessLogEntry struct {
ID string `gorm:"primaryKey"`
AccountID string `gorm:"index"`
ServiceID string `gorm:"index"`
Timestamp time.Time `gorm:"index"`
GeoLocation peer.Location `gorm:"embedded;embeddedPrefix:location_"`
Method string `gorm:"index"`
Host string `gorm:"index"`
Path string `gorm:"index"`
Duration time.Duration `gorm:"index"`
StatusCode int `gorm:"index"`
Reason string
UserId string `gorm:"index"`
AuthMethodUsed string `gorm:"index"`
}
// FromProto creates an AccessLogEntry from a proto.AccessLog
func (a *AccessLogEntry) FromProto(serviceLog *proto.AccessLog) {
a.ID = serviceLog.GetLogId()
a.ServiceID = serviceLog.GetServiceId()
a.Timestamp = serviceLog.GetTimestamp().AsTime()
a.Method = serviceLog.GetMethod()
a.Host = serviceLog.GetHost()
a.Path = serviceLog.GetPath()
a.Duration = time.Duration(serviceLog.GetDurationMs()) * time.Millisecond
a.StatusCode = int(serviceLog.GetResponseCode())
a.UserId = serviceLog.GetUserId()
a.AuthMethodUsed = serviceLog.GetAuthMechanism()
a.AccountID = serviceLog.GetAccountId()
if sourceIP := serviceLog.GetSourceIp(); sourceIP != "" {
if ip, err := netip.ParseAddr(sourceIP); err == nil {
a.GeoLocation.ConnectionIP = net.IP(ip.AsSlice())
}
}
if !serviceLog.GetAuthSuccess() {
a.Reason = "Authentication failed"
} else if serviceLog.GetResponseCode() >= 400 {
a.Reason = "Request failed"
}
}
// ToAPIResponse converts an AccessLogEntry to the API ProxyAccessLog type
func (a *AccessLogEntry) ToAPIResponse() *api.ProxyAccessLog {
var sourceIP *string
if a.GeoLocation.ConnectionIP != nil {
ip := a.GeoLocation.ConnectionIP.String()
sourceIP = &ip
}
var reason *string
if a.Reason != "" {
reason = &a.Reason
}
var userID *string
if a.UserId != "" {
userID = &a.UserId
}
var authMethod *string
if a.AuthMethodUsed != "" {
authMethod = &a.AuthMethodUsed
}
var countryCode *string
if a.GeoLocation.CountryCode != "" {
countryCode = &a.GeoLocation.CountryCode
}
var cityName *string
if a.GeoLocation.CityName != "" {
cityName = &a.GeoLocation.CityName
}
return &api.ProxyAccessLog{
Id: a.ID,
ServiceId: a.ServiceID,
Timestamp: a.Timestamp,
Method: a.Method,
Host: a.Host,
Path: a.Path,
DurationMs: int(a.Duration.Milliseconds()),
StatusCode: a.StatusCode,
SourceIp: sourceIP,
Reason: reason,
UserId: userID,
AuthMethodUsed: authMethod,
CountryCode: countryCode,
CityName: cityName,
}
}

View File

@@ -1,124 +0,0 @@
package accesslogs
import (
"net/http"
"strconv"
"time"
)
const (
// DefaultPageSize is the default number of records per page
DefaultPageSize = 50
// MaxPageSize is the maximum number of records allowed per page
MaxPageSize = 100
)
// AccessLogFilter holds pagination and filtering parameters for access logs
type AccessLogFilter struct {
// Page is the current page number (1-indexed)
Page int
// PageSize is the number of records per page
PageSize int
// Filtering parameters
Search *string // General search across log ID, host, path, source IP, and user fields
SourceIP *string // Filter by source IP address
Host *string // Filter by host header
Path *string // Filter by request path (supports LIKE pattern)
UserID *string // Filter by authenticated user ID
UserEmail *string // Filter by user email (requires user lookup)
UserName *string // Filter by user name (requires user lookup)
Method *string // Filter by HTTP method
Status *string // Filter by status: "success" (2xx/3xx) or "failed" (1xx/4xx/5xx)
StatusCode *int // Filter by HTTP status code
StartDate *time.Time // Filter by timestamp >= start_date
EndDate *time.Time // Filter by timestamp <= end_date
}
// ParseFromRequest parses pagination and filter parameters from HTTP request query parameters
func (f *AccessLogFilter) ParseFromRequest(r *http.Request) {
queryParams := r.URL.Query()
f.Page = 1
if pageStr := queryParams.Get("page"); pageStr != "" {
if page, err := strconv.Atoi(pageStr); err == nil && page > 0 {
f.Page = page
}
}
f.PageSize = DefaultPageSize
if pageSizeStr := queryParams.Get("page_size"); pageSizeStr != "" {
if pageSize, err := strconv.Atoi(pageSizeStr); err == nil && pageSize > 0 {
f.PageSize = pageSize
if f.PageSize > MaxPageSize {
f.PageSize = MaxPageSize
}
}
}
if search := queryParams.Get("search"); search != "" {
f.Search = &search
}
if sourceIP := queryParams.Get("source_ip"); sourceIP != "" {
f.SourceIP = &sourceIP
}
if host := queryParams.Get("host"); host != "" {
f.Host = &host
}
if path := queryParams.Get("path"); path != "" {
f.Path = &path
}
if userID := queryParams.Get("user_id"); userID != "" {
f.UserID = &userID
}
if userEmail := queryParams.Get("user_email"); userEmail != "" {
f.UserEmail = &userEmail
}
if userName := queryParams.Get("user_name"); userName != "" {
f.UserName = &userName
}
if method := queryParams.Get("method"); method != "" {
f.Method = &method
}
if status := queryParams.Get("status"); status != "" {
f.Status = &status
}
if statusCodeStr := queryParams.Get("status_code"); statusCodeStr != "" {
if statusCode, err := strconv.Atoi(statusCodeStr); err == nil && statusCode > 0 {
f.StatusCode = &statusCode
}
}
if startDate := queryParams.Get("start_date"); startDate != "" {
parsedStartDate, err := time.Parse(time.RFC3339, startDate)
if err == nil {
f.StartDate = &parsedStartDate
}
}
if endDate := queryParams.Get("end_date"); endDate != "" {
parsedEndDate, err := time.Parse(time.RFC3339, endDate)
if err == nil {
f.EndDate = &parsedEndDate
}
}
}
// GetOffset calculates the database offset for pagination
func (f *AccessLogFilter) GetOffset() int {
return (f.Page - 1) * f.PageSize
}
// GetLimit returns the page size for database queries
func (f *AccessLogFilter) GetLimit() int {
return f.PageSize
}

View File

@@ -1,161 +0,0 @@
package accesslogs
import (
"net/http"
"net/http/httptest"
"testing"
"github.com/stretchr/testify/assert"
)
func TestAccessLogFilter_ParseFromRequest(t *testing.T) {
tests := []struct {
name string
queryParams map[string]string
expectedPage int
expectedPageSize int
}{
{
name: "default values when no params provided",
queryParams: map[string]string{},
expectedPage: 1,
expectedPageSize: DefaultPageSize,
},
{
name: "valid page and page_size",
queryParams: map[string]string{
"page": "2",
"page_size": "25",
},
expectedPage: 2,
expectedPageSize: 25,
},
{
name: "page_size exceeds max, should cap at MaxPageSize",
queryParams: map[string]string{
"page": "1",
"page_size": "200",
},
expectedPage: 1,
expectedPageSize: MaxPageSize,
},
{
name: "invalid page number, should use default",
queryParams: map[string]string{
"page": "invalid",
"page_size": "10",
},
expectedPage: 1,
expectedPageSize: 10,
},
{
name: "invalid page_size, should use default",
queryParams: map[string]string{
"page": "2",
"page_size": "invalid",
},
expectedPage: 2,
expectedPageSize: DefaultPageSize,
},
{
name: "zero page number, should use default",
queryParams: map[string]string{
"page": "0",
"page_size": "10",
},
expectedPage: 1,
expectedPageSize: 10,
},
{
name: "negative page number, should use default",
queryParams: map[string]string{
"page": "-1",
"page_size": "10",
},
expectedPage: 1,
expectedPageSize: 10,
},
{
name: "zero page_size, should use default",
queryParams: map[string]string{
"page": "1",
"page_size": "0",
},
expectedPage: 1,
expectedPageSize: DefaultPageSize,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
req := httptest.NewRequest(http.MethodGet, "/test", nil)
q := req.URL.Query()
for key, value := range tt.queryParams {
q.Set(key, value)
}
req.URL.RawQuery = q.Encode()
filter := &AccessLogFilter{}
filter.ParseFromRequest(req)
assert.Equal(t, tt.expectedPage, filter.Page, "Page mismatch")
assert.Equal(t, tt.expectedPageSize, filter.PageSize, "PageSize mismatch")
})
}
}
func TestAccessLogFilter_GetOffset(t *testing.T) {
tests := []struct {
name string
page int
pageSize int
expectedOffset int
}{
{
name: "first page",
page: 1,
pageSize: 50,
expectedOffset: 0,
},
{
name: "second page",
page: 2,
pageSize: 50,
expectedOffset: 50,
},
{
name: "third page with page size 25",
page: 3,
pageSize: 25,
expectedOffset: 50,
},
{
name: "page 10 with page size 10",
page: 10,
pageSize: 10,
expectedOffset: 90,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
filter := &AccessLogFilter{
Page: tt.page,
PageSize: tt.pageSize,
}
offset := filter.GetOffset()
assert.Equal(t, tt.expectedOffset, offset)
})
}
}
func TestAccessLogFilter_GetLimit(t *testing.T) {
filter := &AccessLogFilter{
Page: 2,
PageSize: 25,
}
limit := filter.GetLimit()
assert.Equal(t, 25, limit, "GetLimit should return PageSize")
}

View File

@@ -1,10 +0,0 @@
package accesslogs
import (
"context"
)
type Manager interface {
SaveAccessLog(ctx context.Context, proxyLog *AccessLogEntry) error
GetAllAccessLogs(ctx context.Context, accountID, userID string, filter *AccessLogFilter) ([]*AccessLogEntry, int64, error)
}

View File

@@ -1,64 +0,0 @@
package manager
import (
"net/http"
"github.com/gorilla/mux"
"github.com/netbirdio/netbird/management/internals/modules/reverseproxy/accesslogs"
nbcontext "github.com/netbirdio/netbird/management/server/context"
"github.com/netbirdio/netbird/shared/management/http/api"
"github.com/netbirdio/netbird/shared/management/http/util"
)
type handler struct {
manager accesslogs.Manager
}
func RegisterEndpoints(router *mux.Router, manager accesslogs.Manager) {
h := &handler{
manager: manager,
}
router.HandleFunc("/events/proxy", h.getAccessLogs).Methods("GET", "OPTIONS")
}
func (h *handler) getAccessLogs(w http.ResponseWriter, r *http.Request) {
userAuth, err := nbcontext.GetUserAuthFromContext(r.Context())
if err != nil {
util.WriteError(r.Context(), err, w)
return
}
var filter accesslogs.AccessLogFilter
filter.ParseFromRequest(r)
logs, totalCount, err := h.manager.GetAllAccessLogs(r.Context(), userAuth.AccountId, userAuth.UserId, &filter)
if err != nil {
util.WriteError(r.Context(), err, w)
return
}
apiLogs := make([]api.ProxyAccessLog, 0, len(logs))
for _, log := range logs {
apiLogs = append(apiLogs, *log.ToAPIResponse())
}
response := &api.ProxyAccessLogsResponse{
Data: apiLogs,
Page: filter.Page,
PageSize: filter.PageSize,
TotalRecords: int(totalCount),
TotalPages: getTotalPageCount(int(totalCount), filter.PageSize),
}
util.WriteJSONObject(r.Context(), w, response)
}
// getTotalPageCount calculates the total number of pages
func getTotalPageCount(totalCount, pageSize int) int {
if pageSize <= 0 {
return 0
}
return (totalCount + pageSize - 1) / pageSize
}

View File

@@ -1,108 +0,0 @@
package manager
import (
"context"
"strings"
log "github.com/sirupsen/logrus"
"github.com/netbirdio/netbird/management/internals/modules/reverseproxy/accesslogs"
"github.com/netbirdio/netbird/management/server/geolocation"
"github.com/netbirdio/netbird/management/server/permissions"
"github.com/netbirdio/netbird/management/server/permissions/modules"
"github.com/netbirdio/netbird/management/server/permissions/operations"
"github.com/netbirdio/netbird/management/server/store"
"github.com/netbirdio/netbird/shared/management/status"
)
type managerImpl struct {
store store.Store
permissionsManager permissions.Manager
geo geolocation.Geolocation
}
func NewManager(store store.Store, permissionsManager permissions.Manager, geo geolocation.Geolocation) accesslogs.Manager {
return &managerImpl{
store: store,
permissionsManager: permissionsManager,
geo: geo,
}
}
// SaveAccessLog saves an access log entry to the database after enriching it
func (m *managerImpl) SaveAccessLog(ctx context.Context, logEntry *accesslogs.AccessLogEntry) error {
if m.geo != nil && logEntry.GeoLocation.ConnectionIP != nil {
location, err := m.geo.Lookup(logEntry.GeoLocation.ConnectionIP)
if err != nil {
log.WithContext(ctx).Warnf("failed to get location for access log source IP [%s]: %v", logEntry.GeoLocation.ConnectionIP.String(), err)
} else {
logEntry.GeoLocation.CountryCode = location.Country.ISOCode
logEntry.GeoLocation.CityName = location.City.Names.En
logEntry.GeoLocation.GeoNameID = location.City.GeonameID
}
}
if err := m.store.CreateAccessLog(ctx, logEntry); err != nil {
log.WithContext(ctx).WithFields(log.Fields{
"service_id": logEntry.ServiceID,
"method": logEntry.Method,
"host": logEntry.Host,
"path": logEntry.Path,
"status": logEntry.StatusCode,
}).Errorf("failed to save access log: %v", err)
return err
}
return nil
}
// GetAllAccessLogs retrieves access logs for an account with pagination and filtering
func (m *managerImpl) GetAllAccessLogs(ctx context.Context, accountID, userID string, filter *accesslogs.AccessLogFilter) ([]*accesslogs.AccessLogEntry, int64, error) {
ok, err := m.permissionsManager.ValidateUserPermissions(ctx, accountID, userID, modules.Services, operations.Read)
if err != nil {
return nil, 0, status.NewPermissionValidationError(err)
}
if !ok {
return nil, 0, status.NewPermissionDeniedError()
}
if err := m.resolveUserFilters(ctx, accountID, filter); err != nil {
log.WithContext(ctx).Warnf("failed to resolve user filters: %v", err)
}
logs, totalCount, err := m.store.GetAccountAccessLogs(ctx, store.LockingStrengthNone, accountID, *filter)
if err != nil {
return nil, 0, err
}
return logs, totalCount, nil
}
// resolveUserFilters converts user email/name filters to user ID filter
func (m *managerImpl) resolveUserFilters(ctx context.Context, accountID string, filter *accesslogs.AccessLogFilter) error {
if filter.UserEmail == nil && filter.UserName == nil {
return nil
}
users, err := m.store.GetAccountUsers(ctx, store.LockingStrengthNone, accountID)
if err != nil {
return err
}
var matchingUserIDs []string
for _, user := range users {
if filter.UserEmail != nil && strings.Contains(strings.ToLower(user.Email), strings.ToLower(*filter.UserEmail)) {
matchingUserIDs = append(matchingUserIDs, user.Id)
continue
}
if filter.UserName != nil && strings.Contains(strings.ToLower(user.Name), strings.ToLower(*filter.UserName)) {
matchingUserIDs = append(matchingUserIDs, user.Id)
}
}
if len(matchingUserIDs) > 0 {
filter.UserID = &matchingUserIDs[0]
}
return nil
}

View File

@@ -1,17 +0,0 @@
package domain
type Type string
const (
TypeFree Type = "free"
TypeCustom Type = "custom"
)
type Domain struct {
ID string `gorm:"unique;primaryKey;autoIncrement"`
Domain string `gorm:"unique"` // Domain records must be unique, this avoids domain reuse across accounts.
AccountID string `gorm:"index"`
TargetCluster string // The proxy cluster this domain should be validated against
Type Type `gorm:"-"`
Validated bool
}

View File

@@ -1,12 +0,0 @@
package domain
import (
"context"
)
type Manager interface {
GetDomains(ctx context.Context, accountID, userID string) ([]*Domain, error)
CreateDomain(ctx context.Context, accountID, userID, domainName, targetCluster string) (*Domain, error)
DeleteDomain(ctx context.Context, accountID, userID, domainID string) error
ValidateDomain(ctx context.Context, accountID, userID, domainID string)
}

View File

@@ -1,136 +0,0 @@
package manager
import (
"encoding/json"
"net/http"
"github.com/gorilla/mux"
"github.com/netbirdio/netbird/management/internals/modules/reverseproxy/domain"
nbcontext "github.com/netbirdio/netbird/management/server/context"
"github.com/netbirdio/netbird/shared/management/http/api"
"github.com/netbirdio/netbird/shared/management/http/util"
"github.com/netbirdio/netbird/shared/management/status"
)
type handler struct {
manager Manager
}
func RegisterEndpoints(router *mux.Router, manager Manager) {
h := &handler{
manager: manager,
}
router.HandleFunc("/domains", h.getAllDomains).Methods("GET", "OPTIONS")
router.HandleFunc("/domains", h.createCustomDomain).Methods("POST", "OPTIONS")
router.HandleFunc("/domains/{domainId}", h.deleteCustomDomain).Methods("DELETE", "OPTIONS")
router.HandleFunc("/domains/{domainId}/validate", h.triggerCustomDomainValidation).Methods("GET", "OPTIONS")
}
func domainTypeToApi(t domain.Type) api.ReverseProxyDomainType {
switch t {
case domain.TypeCustom:
return api.ReverseProxyDomainTypeCustom
case domain.TypeFree:
return api.ReverseProxyDomainTypeFree
}
// By default return as a "free" domain as that is more restrictive.
// TODO: is this correct?
return api.ReverseProxyDomainTypeFree
}
func domainToApi(d *domain.Domain) api.ReverseProxyDomain {
resp := api.ReverseProxyDomain{
Domain: d.Domain,
Id: d.ID,
Type: domainTypeToApi(d.Type),
Validated: d.Validated,
}
if d.TargetCluster != "" {
resp.TargetCluster = &d.TargetCluster
}
return resp
}
func (h *handler) getAllDomains(w http.ResponseWriter, r *http.Request) {
userAuth, err := nbcontext.GetUserAuthFromContext(r.Context())
if err != nil {
util.WriteError(r.Context(), err, w)
return
}
domains, err := h.manager.GetDomains(r.Context(), userAuth.AccountId, userAuth.UserId)
if err != nil {
util.WriteError(r.Context(), err, w)
return
}
ret := make([]api.ReverseProxyDomain, 0)
for _, d := range domains {
ret = append(ret, domainToApi(d))
}
util.WriteJSONObject(r.Context(), w, ret)
}
func (h *handler) createCustomDomain(w http.ResponseWriter, r *http.Request) {
userAuth, err := nbcontext.GetUserAuthFromContext(r.Context())
if err != nil {
util.WriteError(r.Context(), err, w)
return
}
var req api.PostApiReverseProxiesDomainsJSONRequestBody
if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
util.WriteErrorResponse("couldn't parse JSON request", http.StatusBadRequest, w)
return
}
domain, err := h.manager.CreateDomain(r.Context(), userAuth.AccountId, userAuth.UserId, req.Domain, req.TargetCluster)
if err != nil {
util.WriteError(r.Context(), err, w)
return
}
util.WriteJSONObject(r.Context(), w, domainToApi(domain))
}
func (h *handler) deleteCustomDomain(w http.ResponseWriter, r *http.Request) {
userAuth, err := nbcontext.GetUserAuthFromContext(r.Context())
if err != nil {
util.WriteError(r.Context(), err, w)
return
}
domainID := mux.Vars(r)["domainId"]
if domainID == "" {
util.WriteError(r.Context(), status.Errorf(status.InvalidArgument, "domain ID is required"), w)
return
}
if err := h.manager.DeleteDomain(r.Context(), userAuth.AccountId, userAuth.UserId, domainID); err != nil {
util.WriteError(r.Context(), err, w)
return
}
w.WriteHeader(http.StatusNoContent)
}
func (h *handler) triggerCustomDomainValidation(w http.ResponseWriter, r *http.Request) {
userAuth, err := nbcontext.GetUserAuthFromContext(r.Context())
if err != nil {
util.WriteError(r.Context(), err, w)
return
}
domainID := mux.Vars(r)["domainId"]
if domainID == "" {
util.WriteError(r.Context(), status.Errorf(status.InvalidArgument, "domain ID is required"), w)
return
}
go h.manager.ValidateDomain(r.Context(), userAuth.AccountId, userAuth.UserId, domainID)
w.WriteHeader(http.StatusAccepted)
}

View File

@@ -1,279 +0,0 @@
package manager
import (
"context"
"fmt"
"net"
"strings"
log "github.com/sirupsen/logrus"
"github.com/netbirdio/netbird/management/internals/modules/reverseproxy/domain"
"github.com/netbirdio/netbird/management/server/permissions"
"github.com/netbirdio/netbird/management/server/permissions/modules"
"github.com/netbirdio/netbird/management/server/permissions/operations"
"github.com/netbirdio/netbird/management/server/types"
"github.com/netbirdio/netbird/shared/management/status"
)
type store interface {
GetAccount(ctx context.Context, accountID string) (*types.Account, error)
GetCustomDomain(ctx context.Context, accountID string, domainID string) (*domain.Domain, error)
ListFreeDomains(ctx context.Context, accountID string) ([]string, error)
ListCustomDomains(ctx context.Context, accountID string) ([]*domain.Domain, error)
CreateCustomDomain(ctx context.Context, accountID string, domainName string, targetCluster string, validated bool) (*domain.Domain, error)
UpdateCustomDomain(ctx context.Context, accountID string, d *domain.Domain) (*domain.Domain, error)
DeleteCustomDomain(ctx context.Context, accountID string, domainID string) error
}
type proxyURLProvider interface {
GetConnectedProxyURLs() []string
}
type Manager struct {
store store
validator domain.Validator
proxyURLProvider proxyURLProvider
permissionsManager permissions.Manager
}
func NewManager(store store, proxyURLProvider proxyURLProvider, permissionsManager permissions.Manager) Manager {
return Manager{
store: store,
proxyURLProvider: proxyURLProvider,
validator: domain.Validator{
Resolver: net.DefaultResolver,
},
permissionsManager: permissionsManager,
}
}
func (m Manager) GetDomains(ctx context.Context, accountID, userID string) ([]*domain.Domain, error) {
ok, err := m.permissionsManager.ValidateUserPermissions(ctx, accountID, userID, modules.Services, operations.Read)
if err != nil {
return nil, status.NewPermissionValidationError(err)
}
if !ok {
return nil, status.NewPermissionDeniedError()
}
domains, err := m.store.ListCustomDomains(ctx, accountID)
if err != nil {
return nil, fmt.Errorf("list custom domains: %w", err)
}
var ret []*domain.Domain
// Add connected proxy clusters as free domains.
// The cluster address itself is the free domain base (e.g., "eu.proxy.netbird.io").
allowList := m.proxyURLAllowList()
log.WithFields(log.Fields{
"accountID": accountID,
"proxyAllowList": allowList,
}).Debug("getting domains with proxy allow list")
for _, cluster := range allowList {
ret = append(ret, &domain.Domain{
Domain: cluster,
AccountID: accountID,
Type: domain.TypeFree,
Validated: true,
})
}
// Add custom domains.
for _, d := range domains {
ret = append(ret, &domain.Domain{
ID: d.ID,
Domain: d.Domain,
AccountID: accountID,
TargetCluster: d.TargetCluster,
Type: domain.TypeCustom,
Validated: d.Validated,
})
}
return ret, nil
}
func (m Manager) CreateDomain(ctx context.Context, accountID, userID, domainName, targetCluster string) (*domain.Domain, error) {
ok, err := m.permissionsManager.ValidateUserPermissions(ctx, accountID, userID, modules.Services, operations.Create)
if err != nil {
return nil, status.NewPermissionValidationError(err)
}
if !ok {
return nil, status.NewPermissionDeniedError()
}
// Verify the target cluster is in the available clusters
allowList := m.proxyURLAllowList()
clusterValid := false
for _, cluster := range allowList {
if cluster == targetCluster {
clusterValid = true
break
}
}
if !clusterValid {
return nil, fmt.Errorf("target cluster %s is not available", targetCluster)
}
// Attempt an initial validation against the specified cluster only
var validated bool
if m.validator.IsValid(ctx, domainName, []string{targetCluster}) {
validated = true
}
d, err := m.store.CreateCustomDomain(ctx, accountID, domainName, targetCluster, validated)
if err != nil {
return d, fmt.Errorf("create domain in store: %w", err)
}
return d, nil
}
func (m Manager) DeleteDomain(ctx context.Context, accountID, userID, domainID string) error {
ok, err := m.permissionsManager.ValidateUserPermissions(ctx, accountID, userID, modules.Services, operations.Delete)
if err != nil {
return status.NewPermissionValidationError(err)
}
if !ok {
return status.NewPermissionDeniedError()
}
if err := m.store.DeleteCustomDomain(ctx, accountID, domainID); err != nil {
// TODO: check for "no records" type error. Because that is a success condition.
return fmt.Errorf("delete domain from store: %w", err)
}
return nil
}
func (m Manager) ValidateDomain(ctx context.Context, accountID, userID, domainID string) {
ok, err := m.permissionsManager.ValidateUserPermissions(ctx, accountID, userID, modules.Services, operations.Create)
if err != nil {
log.WithFields(log.Fields{
"accountID": accountID,
"domainID": domainID,
}).WithError(err).Error("validate domain")
return
}
if !ok {
log.WithFields(log.Fields{
"accountID": accountID,
"domainID": domainID,
}).WithError(err).Error("validate domain")
}
log.WithFields(log.Fields{
"accountID": accountID,
"domainID": domainID,
}).Info("starting domain validation")
d, err := m.store.GetCustomDomain(context.Background(), accountID, domainID)
if err != nil {
log.WithFields(log.Fields{
"accountID": accountID,
"domainID": domainID,
}).WithError(err).Error("get custom domain from store")
return
}
// Validate only against the domain's target cluster
targetCluster := d.TargetCluster
if targetCluster == "" {
log.WithFields(log.Fields{
"accountID": accountID,
"domainID": domainID,
"domain": d.Domain,
}).Warn("domain has no target cluster set, skipping validation")
return
}
log.WithFields(log.Fields{
"accountID": accountID,
"domainID": domainID,
"domain": d.Domain,
"targetCluster": targetCluster,
}).Info("validating domain against target cluster")
if m.validator.IsValid(context.Background(), d.Domain, []string{targetCluster}) {
log.WithFields(log.Fields{
"accountID": accountID,
"domainID": domainID,
"domain": d.Domain,
}).Info("domain validated successfully")
d.Validated = true
if _, err := m.store.UpdateCustomDomain(context.Background(), accountID, d); err != nil {
log.WithFields(log.Fields{
"accountID": accountID,
"domainID": domainID,
"domain": d.Domain,
}).WithError(err).Error("update custom domain in store")
return
}
} else {
log.WithFields(log.Fields{
"accountID": accountID,
"domainID": domainID,
"domain": d.Domain,
"targetCluster": targetCluster,
}).Warn("domain validation failed - CNAME does not match target cluster")
}
}
// proxyURLAllowList retrieves a list of currently connected proxies and
// their URLs
func (m Manager) proxyURLAllowList() []string {
var reverseProxyAddresses []string
if m.proxyURLProvider != nil {
reverseProxyAddresses = m.proxyURLProvider.GetConnectedProxyURLs()
}
return reverseProxyAddresses
}
// DeriveClusterFromDomain determines the proxy cluster for a given domain.
// For free domains (those ending with a known cluster suffix), the cluster is extracted from the domain.
// For custom domains, the cluster is determined by checking the registered custom domain's target cluster.
func (m Manager) DeriveClusterFromDomain(ctx context.Context, accountID, domain string) (string, error) {
allowList := m.proxyURLAllowList()
if len(allowList) == 0 {
return "", fmt.Errorf("no proxy clusters available")
}
if cluster, ok := ExtractClusterFromFreeDomain(domain, allowList); ok {
return cluster, nil
}
customDomains, err := m.store.ListCustomDomains(ctx, accountID)
if err != nil {
return "", fmt.Errorf("list custom domains: %w", err)
}
targetCluster, valid := extractClusterFromCustomDomains(domain, customDomains)
if valid {
return targetCluster, nil
}
return "", fmt.Errorf("domain %s does not match any available proxy cluster", domain)
}
func extractClusterFromCustomDomains(domain string, customDomains []*domain.Domain) (string, bool) {
for _, customDomain := range customDomains {
if strings.HasSuffix(domain, "."+customDomain.Domain) {
return customDomain.TargetCluster, true
}
}
return "", false
}
// ExtractClusterFromFreeDomain extracts the cluster address from a free domain.
// Free domains have the format: <name>.<nonce>.<cluster> (e.g., myapp.abc123.eu.proxy.netbird.io)
// It matches the domain suffix against available clusters and returns the matching cluster.
func ExtractClusterFromFreeDomain(domain string, availableClusters []string) (string, bool) {
for _, cluster := range availableClusters {
if strings.HasSuffix(domain, "."+cluster) {
return cluster, true
}
}
return "", false
}

View File

@@ -1,88 +0,0 @@
package domain
import (
"context"
"net"
"strings"
log "github.com/sirupsen/logrus"
)
type resolver interface {
LookupCNAME(context.Context, string) (string, error)
}
type Validator struct {
Resolver resolver
}
// NewValidator initializes a validator with a specific DNS Resolver.
// If a Validator is used without specifying a Resolver, then it will
// use the net.DefaultResolver.
func NewValidator(resolver resolver) *Validator {
return &Validator{
Resolver: resolver,
}
}
// IsValid looks up the CNAME record for the passed domain with a prefix
// and compares it against the acceptable domains.
// If the returned CNAME matches any accepted domain, it will return true,
// otherwise, including in the event of a DNS error, it will return false.
// The comparison is very simple, so wildcards will not match if included
// in the acceptable domain list.
func (v *Validator) IsValid(ctx context.Context, domain string, accept []string) bool {
_, valid := v.ValidateWithCluster(ctx, domain, accept)
return valid
}
// ValidateWithCluster validates a custom domain and returns the matched cluster address.
// Returns the cluster address and true if valid, or empty string and false if invalid.
func (v *Validator) ValidateWithCluster(ctx context.Context, domain string, accept []string) (string, bool) {
if v.Resolver == nil {
v.Resolver = net.DefaultResolver
}
lookupDomain := "validation." + domain
log.WithFields(log.Fields{
"domain": domain,
"lookupDomain": lookupDomain,
"acceptList": accept,
}).Debug("looking up CNAME for domain validation")
cname, err := v.Resolver.LookupCNAME(ctx, lookupDomain)
if err != nil {
log.WithFields(log.Fields{
"domain": domain,
"lookupDomain": lookupDomain,
}).WithError(err).Warn("CNAME lookup failed for domain validation")
return "", false
}
nakedCNAME := strings.TrimSuffix(cname, ".")
log.WithFields(log.Fields{
"domain": domain,
"cname": cname,
"nakedCNAME": nakedCNAME,
"acceptList": accept,
}).Debug("CNAME lookup result for domain validation")
for _, acceptDomain := range accept {
normalizedAccept := strings.TrimSuffix(acceptDomain, ".")
if nakedCNAME == normalizedAccept {
log.WithFields(log.Fields{
"domain": domain,
"cname": nakedCNAME,
"cluster": acceptDomain,
}).Info("domain CNAME matched cluster")
return acceptDomain, true
}
}
log.WithFields(log.Fields{
"domain": domain,
"cname": nakedCNAME,
"acceptList": accept,
}).Warn("domain CNAME does not match any accepted cluster")
return "", false
}

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