388 lines
13 KiB
Go
388 lines
13 KiB
Go
package tunnel
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import (
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"encoding/json"
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"fmt"
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"os"
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"strings"
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"github.com/google/uuid"
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"github.com/pkg/errors"
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"github.com/rs/zerolog"
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"github.com/urfave/cli/v2"
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"github.com/cloudflare/cloudflared/certutil"
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"github.com/cloudflare/cloudflared/connection"
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"github.com/cloudflare/cloudflared/logger"
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"github.com/cloudflare/cloudflared/tunnelstore"
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)
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type errInvalidJSONCredential struct {
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err error
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path string
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}
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func (e errInvalidJSONCredential) Error() string {
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return "Invalid JSON when parsing tunnel credentials file"
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}
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// subcommandContext carries structs shared between subcommands, to reduce number of arguments needed to
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// pass between subcommands, and make sure they are only initialized once
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type subcommandContext struct {
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c *cli.Context
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log *zerolog.Logger
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isUIEnabled bool
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fs fileSystem
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// These fields should be accessed using their respective Getter
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tunnelstoreClient tunnelstore.Client
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userCredential *userCredential
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}
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func newSubcommandContext(c *cli.Context) (*subcommandContext, error) {
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isUIEnabled := c.IsSet(uiFlag) && c.String("name") != ""
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// If UI is enabled, terminal log output should be disabled -- log should be written into a UI log window instead
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log := logger.CreateLoggerFromContext(c, isUIEnabled)
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return &subcommandContext{
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c: c,
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log: log,
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isUIEnabled: isUIEnabled,
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fs: realFileSystem{},
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}, nil
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}
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// Returns something that can find the given tunnel's credentials file.
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func (sc *subcommandContext) credentialFinder(tunnelID uuid.UUID) CredFinder {
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if path := sc.c.String(CredFileFlag); path != "" {
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return newStaticPath(path, sc.fs)
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}
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return newSearchByID(tunnelID, sc.c, sc.log, sc.fs)
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}
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type userCredential struct {
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cert *certutil.OriginCert
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certPath string
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}
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func (sc *subcommandContext) client() (tunnelstore.Client, error) {
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if sc.tunnelstoreClient != nil {
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return sc.tunnelstoreClient, nil
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}
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credential, err := sc.credential()
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if err != nil {
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return nil, err
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}
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userAgent := fmt.Sprintf("cloudflared/%s", version)
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client, err := tunnelstore.NewRESTClient(
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sc.c.String("api-url"),
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credential.cert.AccountID,
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credential.cert.ZoneID,
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credential.cert.ServiceKey,
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userAgent,
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sc.log,
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)
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if err != nil {
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return nil, err
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}
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sc.tunnelstoreClient = client
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return client, nil
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}
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func (sc *subcommandContext) credential() (*userCredential, error) {
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if sc.userCredential == nil {
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originCertPath := sc.c.String("origincert")
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originCertLog := sc.log.With().
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Str(LogFieldOriginCertPath, originCertPath).
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Logger()
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originCertPath, err := findOriginCert(originCertPath, &originCertLog)
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if err != nil {
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return nil, errors.Wrap(err, "Error locating origin cert")
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}
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blocks, err := readOriginCert(originCertPath)
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if err != nil {
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return nil, errors.Wrapf(err, "Can't read origin cert from %s", originCertPath)
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}
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cert, err := certutil.DecodeOriginCert(blocks)
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if err != nil {
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return nil, errors.Wrap(err, "Error decoding origin cert")
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}
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if cert.AccountID == "" {
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return nil, errors.Errorf(`Origin certificate needs to be refreshed before creating new tunnels.\nDelete %s and run "cloudflared login" to obtain a new cert.`, originCertPath)
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}
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sc.userCredential = &userCredential{
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cert: cert,
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certPath: originCertPath,
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}
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}
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return sc.userCredential, nil
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}
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func (sc *subcommandContext) readTunnelCredentials(credFinder CredFinder) (connection.Credentials, error) {
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filePath, err := credFinder.Path()
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if err != nil {
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return connection.Credentials{}, err
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}
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body, err := sc.fs.readFile(filePath)
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if err != nil {
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return connection.Credentials{}, errors.Wrapf(err, "couldn't read tunnel credentials from %v", filePath)
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}
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var credentials connection.Credentials
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if err = json.Unmarshal(body, &credentials); err != nil {
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if strings.HasSuffix(filePath, ".pem") {
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return connection.Credentials{}, fmt.Errorf("The tunnel credentials file should be .json but you gave a .pem. " +
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"The tunnel credentials file was originally created by `cloudflared tunnel create`. " +
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"You may have accidentally used the filepath to cert.pem, which is generated by `cloudflared tunnel " +
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"login`.")
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}
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return connection.Credentials{}, errInvalidJSONCredential{path: filePath, err: err}
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}
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return credentials, nil
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}
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func (sc *subcommandContext) create(name string, credentialsOutputPath string) (*tunnelstore.Tunnel, error) {
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client, err := sc.client()
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if err != nil {
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return nil, errors.Wrap(err, "couldn't create client to talk to Argo Tunnel backend")
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}
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tunnelSecret, err := generateTunnelSecret()
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if err != nil {
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return nil, errors.Wrap(err, "couldn't generate the secret for your new tunnel")
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}
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tunnel, err := client.CreateTunnel(name, tunnelSecret)
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if err != nil {
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return nil, errors.Wrap(err, "Create Tunnel API call failed")
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}
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credential, err := sc.credential()
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if err != nil {
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return nil, err
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}
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tunnelCredentials := connection.Credentials{
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AccountTag: credential.cert.AccountID,
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TunnelSecret: tunnelSecret,
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TunnelID: tunnel.ID,
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TunnelName: name,
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}
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filePath, writeFileErr := writeTunnelCredentials(credential.certPath, credentialsOutputPath, &tunnelCredentials)
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if writeFileErr != nil {
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var errorLines []string
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errorLines = append(errorLines, fmt.Sprintf("Your tunnel '%v' was created with ID %v. However, cloudflared couldn't write to the tunnel credentials file at %v.json.", tunnel.Name, tunnel.ID, tunnel.ID))
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errorLines = append(errorLines, fmt.Sprintf("The file-writing error is: %v", writeFileErr))
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if deleteErr := client.DeleteTunnel(tunnel.ID); deleteErr != nil {
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errorLines = append(errorLines, fmt.Sprintf("Cloudflared tried to delete the tunnel for you, but encountered an error. You should use `cloudflared tunnel delete %v` to delete the tunnel yourself, because the tunnel can't be run without the tunnelfile.", tunnel.ID))
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errorLines = append(errorLines, fmt.Sprintf("The delete tunnel error is: %v", deleteErr))
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} else {
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errorLines = append(errorLines, fmt.Sprintf("The tunnel was deleted, because the tunnel can't be run without the tunnelfile"))
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}
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errorMsg := strings.Join(errorLines, "\n")
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return nil, errors.New(errorMsg)
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}
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sc.log.Info().Msgf("Tunnel credentials written to %v. cloudflared chose this file based on where your origin certificate was found. Keep this file secret. To revoke these credentials, delete the tunnel.", filePath)
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if outputFormat := sc.c.String(outputFormatFlag.Name); outputFormat != "" {
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return nil, renderOutput(outputFormat, &tunnel)
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}
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sc.log.Info().Msgf("Created tunnel %s with id %s", tunnel.Name, tunnel.ID)
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return tunnel, nil
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}
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func (sc *subcommandContext) list(filter *tunnelstore.Filter) ([]*tunnelstore.Tunnel, error) {
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client, err := sc.client()
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if err != nil {
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return nil, err
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}
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return client.ListTunnels(filter)
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}
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func (sc *subcommandContext) delete(tunnelIDs []uuid.UUID) error {
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forceFlagSet := sc.c.Bool("force")
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client, err := sc.client()
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if err != nil {
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return err
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}
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for _, id := range tunnelIDs {
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tunnel, err := client.GetTunnel(id)
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if err != nil {
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return errors.Wrapf(err, "Can't get tunnel information. Please check tunnel id: %s", tunnel.ID)
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}
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// Check if tunnel DeletedAt field has already been set
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if !tunnel.DeletedAt.IsZero() {
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return fmt.Errorf("Tunnel %s has already been deleted", tunnel.ID)
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}
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// Check if tunnel has existing connections and if force flag is set, cleanup connections
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if len(tunnel.Connections) > 0 {
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if !forceFlagSet {
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return fmt.Errorf("You can not delete tunnel %s because it has active connections. To see connections run the 'list' command. If you believe the tunnel is not active, you can use a -f / --force flag with this command.", id)
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}
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if err := client.CleanupConnections(tunnel.ID); err != nil {
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return errors.Wrapf(err, "Error cleaning up connections for tunnel %s", tunnel.ID)
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}
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}
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if err := client.DeleteTunnel(tunnel.ID); err != nil {
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return errors.Wrapf(err, "Error deleting tunnel %s", tunnel.ID)
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}
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credFinder := sc.credentialFinder(id)
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if tunnelCredentialsPath, err := credFinder.Path(); err == nil {
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if err = os.Remove(tunnelCredentialsPath); err != nil {
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sc.log.Info().Msgf("Tunnel %v was deleted, but we could not remove its credentials file %s: %s. Consider deleting this file manually.", id, tunnelCredentialsPath, err)
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}
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}
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}
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return nil
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}
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// findCredentials will choose the right way to find the credentials file, find it,
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// and add the TunnelID into any old credentials (generated before TUN-3581 added the `TunnelID`
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// field to credentials files)
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func (sc *subcommandContext) findCredentials(tunnelID uuid.UUID) (connection.Credentials, error) {
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credFinder := sc.credentialFinder(tunnelID)
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credentials, err := sc.readTunnelCredentials(credFinder)
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// This line ensures backwards compatibility with credentials files generated before
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// TUN-3581. Those old credentials files don't have a TunnelID field, so we enrich the struct
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// with the ID, which we have already resolved from the user input.
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credentials.TunnelID = tunnelID
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return credentials, err
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}
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func (sc *subcommandContext) run(tunnelID uuid.UUID) error {
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credentials, err := sc.findCredentials(tunnelID)
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if err != nil {
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if e, ok := err.(errInvalidJSONCredential); ok {
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sc.log.Error().Msgf("The credentials file at %s contained invalid JSON. This is probably caused by passing the wrong filepath. Reminder: the credentials file is a .json file created via `cloudflared tunnel create`.", e.path)
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sc.log.Error().Msgf("Invalid JSON when parsing credentials file: %s", e.err.Error())
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}
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return err
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}
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return StartServer(
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sc.c,
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version,
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&connection.NamedTunnelConfig{Credentials: credentials},
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sc.log,
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sc.isUIEnabled,
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)
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}
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func (sc *subcommandContext) cleanupConnections(tunnelIDs []uuid.UUID) error {
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client, err := sc.client()
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if err != nil {
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return err
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}
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for _, tunnelID := range tunnelIDs {
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sc.log.Info().Msgf("Cleanup connection for tunnel %s", tunnelID)
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if err := client.CleanupConnections(tunnelID); err != nil {
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sc.log.Error().Msgf("Error cleaning up connections for tunnel %v, error :%v", tunnelID, err)
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}
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}
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return nil
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}
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func (sc *subcommandContext) route(tunnelID uuid.UUID, r tunnelstore.Route) (tunnelstore.RouteResult, error) {
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client, err := sc.client()
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if err != nil {
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return nil, err
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}
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return client.RouteTunnel(tunnelID, r)
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}
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// Query Tunnelstore to find the active tunnel with the given name.
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func (sc *subcommandContext) tunnelActive(name string) (*tunnelstore.Tunnel, bool, error) {
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filter := tunnelstore.NewFilter()
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filter.NoDeleted()
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filter.ByName(name)
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tunnels, err := sc.list(filter)
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if err != nil {
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return nil, false, err
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}
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if len(tunnels) == 0 {
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return nil, false, nil
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}
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// There should only be 1 active tunnel for a given name
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return tunnels[0], true, nil
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}
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// findID parses the input. If it's a UUID, return the UUID.
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// Otherwise, assume it's a name, and look up the ID of that tunnel.
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func (sc *subcommandContext) findID(input string) (uuid.UUID, error) {
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if u, err := uuid.Parse(input); err == nil {
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return u, nil
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}
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// Look up name in the credentials file.
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credFinder := newStaticPath(sc.c.String(CredFileFlag), sc.fs)
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if credentials, err := sc.readTunnelCredentials(credFinder); err == nil {
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if credentials.TunnelID != uuid.Nil && input == credentials.TunnelName {
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return credentials.TunnelID, nil
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}
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}
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// Fall back to querying Tunnelstore.
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if tunnel, found, err := sc.tunnelActive(input); err != nil {
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return uuid.Nil, err
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} else if found {
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return tunnel.ID, nil
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}
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return uuid.Nil, fmt.Errorf("%s is neither the ID nor the name of any of your tunnels", input)
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}
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// findIDs is just like mapping `findID` over a slice, but it only uses
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// one Tunnelstore API call.
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func (sc *subcommandContext) findIDs(inputs []string) ([]uuid.UUID, error) {
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// First, look up all tunnels the user has
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filter := tunnelstore.NewFilter()
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filter.NoDeleted()
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tunnels, err := sc.list(filter)
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if err != nil {
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return nil, err
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}
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// Do the pure list-processing in its own function, so that it can be
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// unit tested easily.
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return findIDs(tunnels, inputs)
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}
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func findIDs(tunnels []*tunnelstore.Tunnel, inputs []string) ([]uuid.UUID, error) {
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// Put them into a dictionary for faster lookups
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nameToID := make(map[string]uuid.UUID, len(tunnels))
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for _, tunnel := range tunnels {
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nameToID[tunnel.Name] = tunnel.ID
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}
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// For each input, try to find the tunnel ID.
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tunnelIDs := make([]uuid.UUID, len(inputs))
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var badInputs []string
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for i, input := range inputs {
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if id, err := uuid.Parse(input); err == nil {
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tunnelIDs[i] = id
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} else if id, ok := nameToID[input]; ok {
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tunnelIDs[i] = id
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} else {
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badInputs = append(badInputs, input)
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}
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}
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if len(badInputs) > 0 {
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msg := "Please specify either the ID or name of a tunnel. The following inputs were neither: %s"
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return nil, fmt.Errorf(msg, strings.Join(badInputs, ", "))
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}
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return tunnelIDs, nil
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}
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