2019-04-03 19:37:17 +00:00
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package ca
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import (
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"encoding/json"
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2019-06-18 02:01:04 +00:00
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"net/url"
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2019-04-03 19:37:17 +00:00
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"time"
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"github.com/pkg/errors"
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"github.com/smallstep/certificates/authority/provisioner"
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"github.com/smallstep/cli/crypto/randutil"
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"github.com/smallstep/cli/jose"
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"github.com/smallstep/cli/token"
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"github.com/smallstep/cli/token/provision"
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)
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2019-06-18 02:01:04 +00:00
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const tokenLifetime = 5 * time.Minute
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2019-04-03 19:37:17 +00:00
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// Provisioner is an authorized entity that can sign tokens necessary for
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// signature requests.
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type Provisioner struct {
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*Client
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name string
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kid string
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audience string
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sshAudience string
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fingerprint string
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jwk *jose.JSONWebKey
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tokenLifetime time.Duration
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}
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// NewProvisioner loads and decrypts key material from the CA for the named
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// provisioner. The key identified by `kid` will be used if specified. If `kid`
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// is the empty string we'll use the first key for the named provisioner that
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// decrypts using `password`.
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func NewProvisioner(name, kid, caURL string, password []byte, opts ...ClientOption) (*Provisioner, error) {
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client, err := NewClient(caURL, opts...)
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if err != nil {
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return nil, err
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}
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// Get the fingerprint of the current connection
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fp, err := client.RootFingerprint()
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if err != nil {
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return nil, err
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}
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var jwk *jose.JSONWebKey
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switch {
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case name == "":
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return nil, errors.New("provisioner name cannot be empty")
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case kid == "":
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jwk, err = loadProvisionerJWKByName(client, name, password)
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default:
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jwk, err = loadProvisionerJWKByKid(client, kid, password)
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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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return &Provisioner{
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Client: client,
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name: name,
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kid: jwk.KeyID,
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audience: client.endpoint.ResolveReference(&url.URL{Path: "/1.0/sign"}).String(),
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sshAudience: client.endpoint.ResolveReference(&url.URL{Path: "/1.0/ssh/sign"}).String(),
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fingerprint: fp,
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jwk: jwk,
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tokenLifetime: tokenLifetime,
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}, nil
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}
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// Name returns the provisioner's name.
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func (p *Provisioner) Name() string {
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return p.name
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}
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// Kid returns the provisioners key ID.
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func (p *Provisioner) Kid() string {
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return p.kid
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}
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// SetFingerprint overwrites the default fingerprint used.
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func (p *Provisioner) SetFingerprint(sum string) {
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p.fingerprint = sum
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}
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// Token generates a bootstrap token for a subject.
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func (p *Provisioner) Token(subject string, sans ...string) (string, error) {
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if len(sans) == 0 {
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sans = []string{subject}
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}
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// A random jwt id will be used to identify duplicated tokens
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jwtID, err := randutil.Hex(64) // 256 bits
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if err != nil {
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return "", err
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}
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notBefore := time.Now()
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notAfter := notBefore.Add(tokenLifetime)
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tokOptions := []token.Options{
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token.WithJWTID(jwtID),
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token.WithKid(p.kid),
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token.WithIssuer(p.name),
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token.WithAudience(p.audience),
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token.WithValidity(notBefore, notAfter),
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token.WithSANS(sans),
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}
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if p.fingerprint != "" {
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tokOptions = append(tokOptions, token.WithSHA(p.fingerprint))
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}
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tok, err := provision.New(subject, tokOptions...)
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if err != nil {
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return "", err
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}
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return tok.SignedString(p.jwk.Algorithm, p.jwk.Key)
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}
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2020-02-07 19:42:56 +00:00
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// SSHToken generates a SSH token.
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func (p *Provisioner) SSHToken(certType, keyID string, principals []string) (string, error) {
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jwtID, err := randutil.Hex(64)
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if err != nil {
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return "", err
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}
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notBefore := time.Now()
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notAfter := notBefore.Add(tokenLifetime)
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tokOptions := []token.Options{
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token.WithJWTID(jwtID),
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token.WithKid(p.kid),
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token.WithIssuer(p.name),
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token.WithAudience(p.sshAudience),
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token.WithValidity(notBefore, notAfter),
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token.WithSSH(provisioner.SignSSHOptions{
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CertType: certType,
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Principals: principals,
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KeyID: keyID,
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}),
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}
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if p.fingerprint != "" {
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tokOptions = append(tokOptions, token.WithSHA(p.fingerprint))
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}
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tok, err := provision.New(keyID, tokOptions...)
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if err != nil {
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return "", err
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}
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return tok.SignedString(p.jwk.Algorithm, p.jwk.Key)
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}
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func decryptProvisionerJWK(encryptedKey string, password []byte) (*jose.JSONWebKey, error) {
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enc, err := jose.ParseEncrypted(encryptedKey)
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if err != nil {
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return nil, err
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}
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data, err := enc.Decrypt(password)
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if err != nil {
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return nil, err
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}
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jwk := new(jose.JSONWebKey)
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if err := json.Unmarshal(data, jwk); err != nil {
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return nil, errors.Wrap(err, "error unmarshaling provisioning key")
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}
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return jwk, nil
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}
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// loadProvisionerJWKByKid retrieves a provisioner key from the CA by key ID and
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// decrypts it using the specified password.
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func loadProvisionerJWKByKid(client *Client, kid string, password []byte) (*jose.JSONWebKey, error) {
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encrypted, err := getProvisionerKey(client, kid)
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if err != nil {
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return nil, err
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}
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return decryptProvisionerJWK(encrypted, password)
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}
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// loadProvisionerJWKByName retrieves the list of provisioners and encrypted key then
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// returns the key of the first provisioner with a matching name that can be successfully
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// decrypted with the specified password.
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func loadProvisionerJWKByName(client *Client, name string, password []byte) (key *jose.JSONWebKey, err error) {
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provisioners, err := getProvisioners(client)
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if err != nil {
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err = errors.Wrap(err, "error getting the provisioners")
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return
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}
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for _, provisioner := range provisioners {
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if provisioner.GetName() == name {
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if _, encryptedKey, ok := provisioner.GetEncryptedKey(); ok {
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key, err = decryptProvisionerJWK(encryptedKey, password)
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if err == nil {
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return
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}
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}
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}
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}
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return nil, errors.Errorf("provisioner '%s' not found (or your password is wrong)", name)
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}
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// getProvisioners returns the list of provisioners using the configured client.
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func getProvisioners(client *Client) (provisioner.List, error) {
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var cursor string
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var provisioners provisioner.List
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for {
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resp, err := client.Provisioners(WithProvisionerCursor(cursor), WithProvisionerLimit(100))
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if err != nil {
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return nil, err
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}
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provisioners = append(provisioners, resp.Provisioners...)
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if resp.NextCursor == "" {
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return provisioners, nil
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}
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cursor = resp.NextCursor
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}
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}
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// getProvisionerKey returns the encrypted provisioner key for the given kid.
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func getProvisionerKey(client *Client, kid string) (string, error) {
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resp, err := client.ProvisionerKey(kid)
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if err != nil {
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return "", err
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}
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return resp.Key, nil
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}
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