mirror of
https://github.com/netbirdio/netbird.git
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d1a323fa9d
* Add gocritic linter `gocritic` provides diagnostics that check for bugs, performance, and style issues We disable the following checks: - commentFormatting - captLocal - deprecatedComment This PR contains many `//nolint:gocritic` to disable `appendAssign`.
436 lines
12 KiB
Go
436 lines
12 KiB
Go
package cmd
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import (
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"context"
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"encoding/json"
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"fmt"
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"net"
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"net/netip"
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"sort"
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"strings"
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"time"
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"github.com/spf13/cobra"
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"google.golang.org/grpc/status"
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"gopkg.in/yaml.v3"
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"github.com/netbirdio/netbird/client/internal"
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"github.com/netbirdio/netbird/client/internal/peer"
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"github.com/netbirdio/netbird/client/proto"
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"github.com/netbirdio/netbird/util"
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"github.com/netbirdio/netbird/version"
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)
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type peerStateDetailOutput struct {
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FQDN string `json:"fqdn" yaml:"fqdn"`
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IP string `json:"netbirdIp" yaml:"netbirdIp"`
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PubKey string `json:"publicKey" yaml:"publicKey"`
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Status string `json:"status" yaml:"status"`
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LastStatusUpdate time.Time `json:"lastStatusUpdate" yaml:"lastStatusUpdate"`
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ConnType string `json:"connectionType" yaml:"connectionType"`
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Direct bool `json:"direct" yaml:"direct"`
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IceCandidateType iceCandidateType `json:"iceCandidateType" yaml:"iceCandidateType"`
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}
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type peersStateOutput struct {
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Total int `json:"total" yaml:"total"`
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Connected int `json:"connected" yaml:"connected"`
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Details []peerStateDetailOutput `json:"details" yaml:"details"`
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}
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type signalStateOutput struct {
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URL string `json:"url" yaml:"url"`
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Connected bool `json:"connected" yaml:"connected"`
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}
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type managementStateOutput struct {
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URL string `json:"url" yaml:"url"`
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Connected bool `json:"connected" yaml:"connected"`
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}
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type iceCandidateType struct {
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Local string `json:"local" yaml:"local"`
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Remote string `json:"remote" yaml:"remote"`
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}
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type statusOutputOverview struct {
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Peers peersStateOutput `json:"peers" yaml:"peers"`
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CliVersion string `json:"cliVersion" yaml:"cliVersion"`
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DaemonVersion string `json:"daemonVersion" yaml:"daemonVersion"`
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ManagementState managementStateOutput `json:"management" yaml:"management"`
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SignalState signalStateOutput `json:"signal" yaml:"signal"`
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IP string `json:"netbirdIp" yaml:"netbirdIp"`
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PubKey string `json:"publicKey" yaml:"publicKey"`
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KernelInterface bool `json:"usesKernelInterface" yaml:"usesKernelInterface"`
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FQDN string `json:"fqdn" yaml:"fqdn"`
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}
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var (
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detailFlag bool
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ipv4Flag bool
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jsonFlag bool
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yamlFlag bool
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ipsFilter []string
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statusFilter string
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ipsFilterMap map[string]struct{}
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)
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var statusCmd = &cobra.Command{
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Use: "status",
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Short: "status of the Netbird Service",
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RunE: statusFunc,
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}
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func init() {
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ipsFilterMap = make(map[string]struct{})
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statusCmd.PersistentFlags().BoolVarP(&detailFlag, "detail", "d", false, "display detailed status information in human-readable format")
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statusCmd.PersistentFlags().BoolVar(&jsonFlag, "json", false, "display detailed status information in json format")
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statusCmd.PersistentFlags().BoolVar(&yamlFlag, "yaml", false, "display detailed status information in yaml format")
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statusCmd.PersistentFlags().BoolVar(&ipv4Flag, "ipv4", false, "display only NetBird IPv4 of this peer, e.g., --ipv4 will output 100.64.0.33")
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statusCmd.MarkFlagsMutuallyExclusive("detail", "json", "yaml", "ipv4")
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statusCmd.PersistentFlags().StringSliceVar(&ipsFilter, "filter-by-ips", []string{}, "filters the detailed output by a list of one or more IPs, e.g., --filter-by-ips 100.64.0.100,100.64.0.200")
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statusCmd.PersistentFlags().StringVar(&statusFilter, "filter-by-status", "", "filters the detailed output by connection status(connected|disconnected), e.g., --filter-by-status connected")
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}
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func statusFunc(cmd *cobra.Command, args []string) error {
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SetFlagsFromEnvVars(rootCmd)
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cmd.SetOut(cmd.OutOrStdout())
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err := parseFilters()
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if err != nil {
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return err
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}
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err = util.InitLog(logLevel, "console")
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if err != nil {
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return fmt.Errorf("failed initializing log %v", err)
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}
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ctx := internal.CtxInitState(context.Background())
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resp, err := getStatus(ctx, cmd)
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if err != nil {
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return err
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}
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if resp.GetStatus() == string(internal.StatusNeedsLogin) || resp.GetStatus() == string(internal.StatusLoginFailed) {
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cmd.Printf("Daemon status: %s\n\n"+
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"Run UP command to log in with SSO (interactive login):\n\n"+
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" netbird up \n\n"+
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"If you are running a self-hosted version and no SSO provider has been configured in your Management Server,\n"+
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"you can use a setup-key:\n\n netbird up --management-url <YOUR_MANAGEMENT_URL> --setup-key <YOUR_SETUP_KEY>\n\n"+
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"More info: https://docs.netbird.io/how-to/register-machines-using-setup-keys\n\n",
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resp.GetStatus(),
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)
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return nil
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}
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if ipv4Flag {
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cmd.Print(parseInterfaceIP(resp.GetFullStatus().GetLocalPeerState().GetIP()))
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return nil
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}
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outputInformationHolder := convertToStatusOutputOverview(resp)
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var statusOutputString string
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switch {
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case detailFlag:
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statusOutputString = parseToFullDetailSummary(outputInformationHolder)
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case jsonFlag:
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statusOutputString, err = parseToJSON(outputInformationHolder)
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case yamlFlag:
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statusOutputString, err = parseToYAML(outputInformationHolder)
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default:
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statusOutputString = parseGeneralSummary(outputInformationHolder, false)
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}
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if err != nil {
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return err
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}
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cmd.Print(statusOutputString)
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return nil
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}
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func getStatus(ctx context.Context, cmd *cobra.Command) (*proto.StatusResponse, error) {
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conn, err := DialClientGRPCServer(ctx, daemonAddr)
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if err != nil {
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return nil, fmt.Errorf("failed to connect to daemon error: %v\n"+
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"If the daemon is not running please run: "+
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"\nnetbird service install \nnetbird service start\n", err)
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}
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defer conn.Close()
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resp, err := proto.NewDaemonServiceClient(conn).Status(cmd.Context(), &proto.StatusRequest{GetFullPeerStatus: true})
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if err != nil {
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return nil, fmt.Errorf("status failed: %v", status.Convert(err).Message())
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}
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return resp, nil
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}
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func parseFilters() error {
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switch strings.ToLower(statusFilter) {
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case "", "disconnected", "connected":
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default:
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return fmt.Errorf("wrong status filter, should be one of connected|disconnected, got: %s", statusFilter)
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}
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if len(ipsFilter) > 0 {
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for _, addr := range ipsFilter {
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_, err := netip.ParseAddr(addr)
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if err != nil {
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return fmt.Errorf("got an invalid IP address in the filter: address %s, error %s", addr, err)
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}
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ipsFilterMap[addr] = struct{}{}
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}
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}
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return nil
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}
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func convertToStatusOutputOverview(resp *proto.StatusResponse) statusOutputOverview {
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pbFullStatus := resp.GetFullStatus()
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managementState := pbFullStatus.GetManagementState()
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managementOverview := managementStateOutput{
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URL: managementState.GetURL(),
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Connected: managementState.GetConnected(),
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}
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signalState := pbFullStatus.GetSignalState()
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signalOverview := signalStateOutput{
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URL: signalState.GetURL(),
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Connected: signalState.GetConnected(),
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}
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peersOverview := mapPeers(resp.GetFullStatus().GetPeers())
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overview := statusOutputOverview{
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Peers: peersOverview,
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CliVersion: version.NetbirdVersion(),
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DaemonVersion: resp.GetDaemonVersion(),
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ManagementState: managementOverview,
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SignalState: signalOverview,
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IP: pbFullStatus.GetLocalPeerState().GetIP(),
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PubKey: pbFullStatus.GetLocalPeerState().GetPubKey(),
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KernelInterface: pbFullStatus.GetLocalPeerState().GetKernelInterface(),
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FQDN: pbFullStatus.GetLocalPeerState().GetFqdn(),
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}
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return overview
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}
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func mapPeers(peers []*proto.PeerState) peersStateOutput {
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var peersStateDetail []peerStateDetailOutput
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localICE := ""
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remoteICE := ""
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connType := ""
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peersConnected := 0
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for _, pbPeerState := range peers {
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isPeerConnected := pbPeerState.ConnStatus == peer.StatusConnected.String()
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if skipDetailByFilters(pbPeerState, isPeerConnected) {
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continue
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}
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if isPeerConnected {
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peersConnected++
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localICE = pbPeerState.GetLocalIceCandidateType()
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remoteICE = pbPeerState.GetRemoteIceCandidateType()
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connType = "P2P"
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if pbPeerState.Relayed {
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connType = "Relayed"
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}
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}
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timeLocal := pbPeerState.GetConnStatusUpdate().AsTime().Local()
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peerState := peerStateDetailOutput{
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IP: pbPeerState.GetIP(),
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PubKey: pbPeerState.GetPubKey(),
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Status: pbPeerState.GetConnStatus(),
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LastStatusUpdate: timeLocal,
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ConnType: connType,
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Direct: pbPeerState.GetDirect(),
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IceCandidateType: iceCandidateType{
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Local: localICE,
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Remote: remoteICE,
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},
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FQDN: pbPeerState.GetFqdn(),
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}
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peersStateDetail = append(peersStateDetail, peerState)
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}
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sortPeersByIP(peersStateDetail)
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peersOverview := peersStateOutput{
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Total: len(peersStateDetail),
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Connected: peersConnected,
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Details: peersStateDetail,
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}
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return peersOverview
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}
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func sortPeersByIP(peersStateDetail []peerStateDetailOutput) {
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if len(peersStateDetail) > 0 {
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sort.SliceStable(peersStateDetail, func(i, j int) bool {
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iAddr, _ := netip.ParseAddr(peersStateDetail[i].IP)
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jAddr, _ := netip.ParseAddr(peersStateDetail[j].IP)
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return iAddr.Compare(jAddr) == -1
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})
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}
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}
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func parseInterfaceIP(interfaceIP string) string {
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ip, _, err := net.ParseCIDR(interfaceIP)
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if err != nil {
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return ""
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}
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return fmt.Sprintf("%s\n", ip)
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}
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func parseToJSON(overview statusOutputOverview) (string, error) {
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jsonBytes, err := json.Marshal(overview)
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if err != nil {
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return "", fmt.Errorf("json marshal failed")
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}
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return string(jsonBytes), err
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}
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func parseToYAML(overview statusOutputOverview) (string, error) {
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yamlBytes, err := yaml.Marshal(overview)
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if err != nil {
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return "", fmt.Errorf("yaml marshal failed")
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}
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return string(yamlBytes), nil
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}
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func parseGeneralSummary(overview statusOutputOverview, showURL bool) string {
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managementConnString := "Disconnected"
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if overview.ManagementState.Connected {
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managementConnString = "Connected"
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if showURL {
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managementConnString = fmt.Sprintf("%s to %s", managementConnString, overview.ManagementState.URL)
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}
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}
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signalConnString := "Disconnected"
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if overview.SignalState.Connected {
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signalConnString = "Connected"
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if showURL {
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signalConnString = fmt.Sprintf("%s to %s", signalConnString, overview.SignalState.URL)
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}
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}
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interfaceTypeString := "Userspace"
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interfaceIP := overview.IP
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if overview.KernelInterface {
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interfaceTypeString = "Kernel"
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} else if overview.IP == "" {
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interfaceTypeString = "N/A"
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interfaceIP = "N/A"
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}
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peersCountString := fmt.Sprintf("%d/%d Connected", overview.Peers.Connected, overview.Peers.Total)
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summary := fmt.Sprintf(
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"Daemon version: %s\n"+
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"CLI version: %s\n"+
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"Management: %s\n"+
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"Signal: %s\n"+
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"FQDN: %s\n"+
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"NetBird IP: %s\n"+
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"Interface type: %s\n"+
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"Peers count: %s\n",
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overview.DaemonVersion,
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version.NetbirdVersion(),
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managementConnString,
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signalConnString,
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overview.FQDN,
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interfaceIP,
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interfaceTypeString,
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peersCountString,
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)
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return summary
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}
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func parseToFullDetailSummary(overview statusOutputOverview) string {
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parsedPeersString := parsePeers(overview.Peers)
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summary := parseGeneralSummary(overview, true)
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return fmt.Sprintf(
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"Peers detail:"+
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"%s\n"+
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"%s",
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parsedPeersString,
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summary,
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)
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}
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func parsePeers(peers peersStateOutput) string {
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var (
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peersString = ""
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)
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for _, peerState := range peers.Details {
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localICE := "-"
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if peerState.IceCandidateType.Local != "" {
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localICE = peerState.IceCandidateType.Local
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}
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remoteICE := "-"
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if peerState.IceCandidateType.Remote != "" {
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remoteICE = peerState.IceCandidateType.Remote
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}
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peerString := fmt.Sprintf(
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"\n %s:\n"+
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" NetBird IP: %s\n"+
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" Public key: %s\n"+
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" Status: %s\n"+
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" -- detail --\n"+
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" Connection type: %s\n"+
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" Direct: %t\n"+
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" ICE candidate (Local/Remote): %s/%s\n"+
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" Last connection update: %s\n",
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peerState.FQDN,
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peerState.IP,
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peerState.PubKey,
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peerState.Status,
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peerState.ConnType,
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peerState.Direct,
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localICE,
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remoteICE,
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peerState.LastStatusUpdate.Format("2006-01-02 15:04:05"),
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)
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peersString += peerString
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}
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return peersString
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}
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func skipDetailByFilters(peerState *proto.PeerState, isConnected bool) bool {
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statusEval := false
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ipEval := false
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if statusFilter != "" {
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lowerStatusFilter := strings.ToLower(statusFilter)
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if lowerStatusFilter == "disconnected" && isConnected {
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statusEval = true
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} else if lowerStatusFilter == "connected" && !isConnected {
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statusEval = true
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}
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}
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if len(ipsFilter) > 0 {
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_, ok := ipsFilterMap[peerState.IP]
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if !ok {
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ipEval = true
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}
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}
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return statusEval || ipEval
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}
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