mirror of
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447 lines
14 KiB
Go
447 lines
14 KiB
Go
package provisioner
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import (
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"context"
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"crypto/sha256"
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"crypto/x509"
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"encoding/hex"
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"encoding/json"
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"io"
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"net/http"
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"regexp"
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"strings"
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"time"
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"github.com/pkg/errors"
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"go.step.sm/crypto/jose"
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"go.step.sm/crypto/sshutil"
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"go.step.sm/crypto/x509util"
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"go.step.sm/linkedca"
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"github.com/smallstep/certificates/errs"
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)
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// azureOIDCBaseURL is the base discovery url for Microsoft Azure tokens.
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const azureOIDCBaseURL = "https://login.microsoftonline.com"
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//nolint:gosec // azureIdentityTokenURL is the URL to get the identity token for an instance.
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const azureIdentityTokenURL = "http://169.254.169.254/metadata/identity/oauth2/token?api-version=2018-02-01&resource=https%3A%2F%2Fmanagement.azure.com%2F"
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// azureDefaultAudience is the default audience used.
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const azureDefaultAudience = "https://management.azure.com/"
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// azureXMSMirIDRegExp is the regular expression used to parse the xms_mirid claim.
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// Using case insensitive as resourceGroups appears as resourcegroups.
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var azureXMSMirIDRegExp = regexp.MustCompile(`(?i)^/subscriptions/([^/]+)/resourceGroups/([^/]+)/providers/Microsoft.(Compute/virtualMachines|ManagedIdentity/userAssignedIdentities)/([^/]+)$`)
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type azureConfig struct {
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oidcDiscoveryURL string
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identityTokenURL string
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}
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func newAzureConfig(tenantID string) *azureConfig {
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return &azureConfig{
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oidcDiscoveryURL: azureOIDCBaseURL + "/" + tenantID + "/.well-known/openid-configuration",
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identityTokenURL: azureIdentityTokenURL,
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}
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}
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type azureIdentityToken struct {
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AccessToken string `json:"access_token"`
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RefreshToken string `json:"refresh_token"`
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ClientID string `json:"client_id"`
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ExpiresIn int64 `json:"expires_in,string"`
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ExpiresOn int64 `json:"expires_on,string"`
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ExtExpiresIn int64 `json:"ext_expires_in,string"`
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NotBefore int64 `json:"not_before,string"`
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Resource string `json:"resource"`
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TokenType string `json:"token_type"`
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}
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type azurePayload struct {
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jose.Claims
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AppID string `json:"appid"`
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AppIDAcr string `json:"appidacr"`
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IdentityProvider string `json:"idp"`
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ObjectID string `json:"oid"`
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TenantID string `json:"tid"`
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Version string `json:"ver"`
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XMSMirID string `json:"xms_mirid"`
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}
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// Azure is the provisioner that supports identity tokens created from the
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// Microsoft Azure Instance Metadata service.
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//
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// The default audience is "https://management.azure.com/".
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//
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// If DisableCustomSANs is true, only the internal DNS and IP will be added as a
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// SAN. By default it will accept any SAN in the CSR.
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//
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// If DisableTrustOnFirstUse is true, multiple sign request for this provisioner
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// with the same instance will be accepted. By default only the first request
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// will be accepted.
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//
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// Microsoft Azure identity docs are available at
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// https://docs.microsoft.com/en-us/azure/active-directory/managed-identities-azure-resources/how-to-use-vm-token
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// and https://docs.microsoft.com/en-us/azure/virtual-machines/windows/instance-metadata-service
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type Azure struct {
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*base
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ID string `json:"-"`
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Type string `json:"type"`
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Name string `json:"name"`
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TenantID string `json:"tenantID"`
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ResourceGroups []string `json:"resourceGroups"`
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SubscriptionIDs []string `json:"subscriptionIDs"`
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ObjectIDs []string `json:"objectIDs"`
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Audience string `json:"audience,omitempty"`
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DisableCustomSANs bool `json:"disableCustomSANs"`
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DisableTrustOnFirstUse bool `json:"disableTrustOnFirstUse"`
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Claims *Claims `json:"claims,omitempty"`
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Options *Options `json:"options,omitempty"`
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config *azureConfig
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oidcConfig openIDConfiguration
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keyStore *keyStore
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ctl *Controller
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}
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// GetID returns the provisioner unique identifier.
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func (p *Azure) GetID() string {
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if p.ID != "" {
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return p.ID
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}
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return p.GetIDForToken()
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}
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// GetIDForToken returns an identifier that will be used to load the provisioner
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// from a token.
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func (p *Azure) GetIDForToken() string {
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return p.TenantID
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}
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// GetTokenID returns the identifier of the token. The default value for Azure
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// the SHA256 of "xms_mirid", but if DisableTrustOnFirstUse is set to true, then
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// it will be the token kid.
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func (p *Azure) GetTokenID(token string) (string, error) {
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jwt, err := jose.ParseSigned(token)
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if err != nil {
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return "", errors.Wrap(err, "error parsing token")
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}
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// Get claims w/out verification. We need to look up the provisioner
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// key in order to verify the claims and we need the issuer from the claims
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// before we can look up the provisioner.
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var claims azurePayload
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if err = jwt.UnsafeClaimsWithoutVerification(&claims); err != nil {
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return "", errors.Wrap(err, "error verifying claims")
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}
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// If TOFU is disabled then allow token re-use. Azure caches the token for
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// 24h and without allowing the re-use we cannot use it twice.
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if p.DisableTrustOnFirstUse {
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return "", ErrAllowTokenReuse
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}
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sum := sha256.Sum256([]byte(claims.XMSMirID))
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return strings.ToLower(hex.EncodeToString(sum[:])), nil
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}
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// GetName returns the name of the provisioner.
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func (p *Azure) GetName() string {
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return p.Name
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}
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// GetType returns the type of provisioner.
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func (p *Azure) GetType() Type {
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return TypeAzure
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}
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// GetEncryptedKey is not available in an Azure provisioner.
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func (p *Azure) GetEncryptedKey() (kid, key string, ok bool) {
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return "", "", false
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}
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// GetIdentityToken retrieves from the metadata service the identity token and
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// returns it.
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func (p *Azure) GetIdentityToken(subject, caURL string) (string, error) {
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// Initialize the config if this method is used from the cli.
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p.assertConfig()
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req, err := http.NewRequest("GET", p.config.identityTokenURL, http.NoBody)
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if err != nil {
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return "", errors.Wrap(err, "error creating request")
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}
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req.Header.Set("Metadata", "true")
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resp, err := http.DefaultClient.Do(req)
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if err != nil {
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return "", errors.Wrap(err, "error getting identity token, are you in a Azure VM?")
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}
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defer resp.Body.Close()
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b, err := io.ReadAll(resp.Body)
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if err != nil {
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return "", errors.Wrap(err, "error reading identity token response")
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}
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if resp.StatusCode >= 400 {
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return "", errors.Errorf("error getting identity token: status=%d, response=%s", resp.StatusCode, b)
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}
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var identityToken azureIdentityToken
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if err := json.Unmarshal(b, &identityToken); err != nil {
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return "", errors.Wrap(err, "error unmarshaling identity token response")
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}
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return identityToken.AccessToken, nil
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}
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// Init validates and initializes the Azure provisioner.
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func (p *Azure) Init(config Config) (err error) {
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switch {
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case p.Type == "":
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return errors.New("provisioner type cannot be empty")
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case p.Name == "":
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return errors.New("provisioner name cannot be empty")
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case p.TenantID == "":
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return errors.New("provisioner tenantId cannot be empty")
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case p.Audience == "": // use default audience
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p.Audience = azureDefaultAudience
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}
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// Initialize config
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p.assertConfig()
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// Decode and validate openid-configuration endpoint
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if err = getAndDecode(p.config.oidcDiscoveryURL, &p.oidcConfig); err != nil {
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return
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}
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if err := p.oidcConfig.Validate(); err != nil {
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return errors.Wrapf(err, "error parsing %s", p.config.oidcDiscoveryURL)
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}
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// Get JWK key set
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if p.keyStore, err = newKeyStore(p.oidcConfig.JWKSetURI); err != nil {
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return
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}
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p.ctl, err = NewController(p, p.Claims, config, p.Options)
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return
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}
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// authorizeToken returns the claims, name, group, subscription, identityObjectID, error.
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func (p *Azure) authorizeToken(token string) (*azurePayload, string, string, string, string, error) {
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jwt, err := jose.ParseSigned(token)
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if err != nil {
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return nil, "", "", "", "", errs.Wrap(http.StatusUnauthorized, err, "azure.authorizeToken; error parsing azure token")
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}
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if len(jwt.Headers) == 0 {
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return nil, "", "", "", "", errs.Unauthorized("azure.authorizeToken; azure token missing header")
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}
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var found bool
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var claims azurePayload
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keys := p.keyStore.Get(jwt.Headers[0].KeyID)
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for _, key := range keys {
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if err := jwt.Claims(key.Public(), &claims); err == nil {
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found = true
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break
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}
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}
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if !found {
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return nil, "", "", "", "", errs.Unauthorized("azure.authorizeToken; cannot validate azure token")
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}
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if err := claims.ValidateWithLeeway(jose.Expected{
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Audience: []string{p.Audience},
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Issuer: p.oidcConfig.Issuer,
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Time: time.Now(),
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}, 1*time.Minute); err != nil {
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return nil, "", "", "", "", errs.Wrap(http.StatusUnauthorized, err, "azure.authorizeToken; failed to validate azure token payload")
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}
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// Validate TenantID
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if claims.TenantID != p.TenantID {
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return nil, "", "", "", "", errs.Unauthorized("azure.authorizeToken; azure token validation failed - invalid tenant id claim (tid)")
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}
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re := azureXMSMirIDRegExp.FindStringSubmatch(claims.XMSMirID)
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if len(re) != 5 {
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return nil, "", "", "", "", errs.Unauthorized("azure.authorizeToken; error parsing xms_mirid claim - %s", claims.XMSMirID)
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}
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var subscription, group, name string
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identityObjectID := claims.ObjectID
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subscription, group, name = re[1], re[2], re[4]
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return &claims, name, group, subscription, identityObjectID, nil
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}
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// AuthorizeSign validates the given token and returns the sign options that
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// will be used on certificate creation.
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func (p *Azure) AuthorizeSign(ctx context.Context, token string) ([]SignOption, error) {
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_, name, group, subscription, identityObjectID, err := p.authorizeToken(token)
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if err != nil {
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return nil, errs.Wrap(http.StatusInternalServerError, err, "azure.AuthorizeSign")
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}
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// Filter by resource group
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if len(p.ResourceGroups) > 0 {
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var found bool
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for _, g := range p.ResourceGroups {
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if g == group {
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found = true
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break
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}
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}
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if !found {
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return nil, errs.Unauthorized("azure.AuthorizeSign; azure token validation failed - invalid resource group")
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}
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}
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// Filter by subscription id
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if len(p.SubscriptionIDs) > 0 {
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var found bool
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for _, s := range p.SubscriptionIDs {
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if s == subscription {
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found = true
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break
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}
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}
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if !found {
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return nil, errs.Unauthorized("azure.AuthorizeSign; azure token validation failed - invalid subscription id")
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}
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}
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// Filter by Azure AD identity object id
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if len(p.ObjectIDs) > 0 {
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var found bool
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for _, i := range p.ObjectIDs {
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if i == identityObjectID {
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found = true
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break
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}
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}
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if !found {
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return nil, errs.Unauthorized("azure.AuthorizeSign; azure token validation failed - invalid identity object id")
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}
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}
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// Template options
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data := x509util.NewTemplateData()
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data.SetCommonName(name)
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if v, err := unsafeParseSigned(token); err == nil {
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data.SetToken(v)
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}
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// Enforce known common name and default DNS if configured.
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// By default we'll accept the CN and SANs in the CSR.
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// There's no way to trust them other than TOFU.
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var so []SignOption
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if p.DisableCustomSANs {
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// name will work only inside the virtual network
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so = append(so,
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commonNameValidator(name),
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dnsNamesValidator([]string{name}),
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ipAddressesValidator(nil),
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emailAddressesValidator(nil),
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urisValidator(nil),
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)
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// Enforce SANs in the template.
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data.SetSANs([]string{name})
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}
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templateOptions, err := CustomTemplateOptions(p.Options, data, x509util.DefaultIIDLeafTemplate)
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if err != nil {
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return nil, errs.Wrap(http.StatusInternalServerError, err, "aws.AuthorizeSign")
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}
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return append(so,
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p,
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templateOptions,
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// modifiers / withOptions
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newProvisionerExtensionOption(TypeAzure, p.Name, p.TenantID),
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profileDefaultDuration(p.ctl.Claimer.DefaultTLSCertDuration()),
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// validators
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defaultPublicKeyValidator{},
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newValidityValidator(p.ctl.Claimer.MinTLSCertDuration(), p.ctl.Claimer.MaxTLSCertDuration()),
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newX509NamePolicyValidator(p.ctl.getPolicy().getX509()),
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p.ctl.newWebhookController(data, linkedca.Webhook_X509),
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), nil
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}
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// AuthorizeRenew returns an error if the renewal is disabled.
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// NOTE: This method does not actually validate the certificate or check it's
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// revocation status. Just confirms that the provisioner that created the
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// certificate was configured to allow renewals.
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func (p *Azure) AuthorizeRenew(ctx context.Context, cert *x509.Certificate) error {
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return p.ctl.AuthorizeRenew(ctx, cert)
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}
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// AuthorizeSSHSign returns the list of SignOption for a SignSSH request.
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func (p *Azure) AuthorizeSSHSign(ctx context.Context, token string) ([]SignOption, error) {
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if !p.ctl.Claimer.IsSSHCAEnabled() {
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return nil, errs.Unauthorized("azure.AuthorizeSSHSign; sshCA is disabled for provisioner '%s'", p.GetName())
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}
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_, name, _, _, _, err := p.authorizeToken(token)
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if err != nil {
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return nil, errs.Wrap(http.StatusInternalServerError, err, "azure.AuthorizeSSHSign")
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}
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signOptions := []SignOption{}
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// Enforce host certificate.
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defaults := SignSSHOptions{
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CertType: SSHHostCert,
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}
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// Validated principals.
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principals := []string{name}
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// Only enforce known principals if disable custom sans is true.
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if p.DisableCustomSANs {
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defaults.Principals = principals
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} else {
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// Check that at least one principal is sent in the request.
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signOptions = append(signOptions, &sshCertOptionsRequireValidator{
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Principals: true,
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})
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}
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// Certificate templates.
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data := sshutil.CreateTemplateData(sshutil.HostCert, name, principals)
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if v, err := unsafeParseSigned(token); err == nil {
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data.SetToken(v)
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}
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templateOptions, err := CustomSSHTemplateOptions(p.Options, data, sshutil.DefaultIIDTemplate)
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if err != nil {
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return nil, errs.Wrap(http.StatusInternalServerError, err, "azure.AuthorizeSSHSign")
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}
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signOptions = append(signOptions, templateOptions)
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return append(signOptions,
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p,
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// Validate user SignSSHOptions.
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sshCertOptionsValidator(defaults),
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// Set the validity bounds if not set.
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&sshDefaultDuration{p.ctl.Claimer},
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// Validate public key
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&sshDefaultPublicKeyValidator{},
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// Validate the validity period.
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&sshCertValidityValidator{p.ctl.Claimer},
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// Require all the fields in the SSH certificate
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&sshCertDefaultValidator{},
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// Ensure that all principal names are allowed
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newSSHNamePolicyValidator(p.ctl.getPolicy().getSSHHost(), nil),
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// Call webhooks
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p.ctl.newWebhookController(data, linkedca.Webhook_SSH),
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), nil
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}
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// assertConfig initializes the config if it has not been initialized
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func (p *Azure) assertConfig() {
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if p.config == nil {
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p.config = newAzureConfig(p.TenantID)
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}
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}
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