forked from TrueCloudLab/certificates
315 lines
10 KiB
Go
315 lines
10 KiB
Go
package provisioner
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import (
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"context"
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"crypto/ecdsa"
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"crypto/ed25519"
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"crypto/rsa"
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"crypto/x509"
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"encoding/pem"
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"net/http"
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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/pemutil"
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"go.step.sm/crypto/sshutil"
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"go.step.sm/crypto/x509util"
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"github.com/smallstep/certificates/errs"
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)
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// NOTE: There can be at most one kubernetes service account provisioner configured
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// per instance of step-ca. This is due to a lack of distinguishing information
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// contained in kubernetes service account tokens.
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const (
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// K8sSAName is the default name used for kubernetes service account provisioners.
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K8sSAName = "k8sSA-default"
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// K8sSAID is the default ID for kubernetes service account provisioners.
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K8sSAID = "k8ssa/" + K8sSAName
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k8sSAIssuer = "kubernetes/serviceaccount"
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)
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// jwtPayload extends jwt.Claims with step attributes.
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type k8sSAPayload struct {
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jose.Claims
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Namespace string `json:"kubernetes.io/serviceaccount/namespace,omitempty"`
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SecretName string `json:"kubernetes.io/serviceaccount/secret.name,omitempty"`
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ServiceAccountName string `json:"kubernetes.io/serviceaccount/service-account.name,omitempty"`
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ServiceAccountUID string `json:"kubernetes.io/serviceaccount/service-account.uid,omitempty"`
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}
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// K8sSA represents a Kubernetes ServiceAccount provisioner; an
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// entity trusted to make signature requests.
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type K8sSA 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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PubKeys []byte `json:"publicKeys,omitempty"`
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Claims *Claims `json:"claims,omitempty"`
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Options *Options `json:"options,omitempty"`
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//kauthn kauthn.AuthenticationV1Interface
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pubKeys []interface{}
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ctl *Controller
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}
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// GetID returns the provisioner unique identifier. The name and credential id
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// should uniquely identify any K8sSA provisioner.
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func (p *K8sSA) 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 *K8sSA) GetIDForToken() string {
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return K8sSAID
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}
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// GetTokenID returns an unimplemented error and does not use the input ott.
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func (p *K8sSA) GetTokenID(ott string) (string, error) {
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return "", errors.New("not implemented")
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}
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// GetName returns the name of the provisioner.
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func (p *K8sSA) 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 *K8sSA) GetType() Type {
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return TypeK8sSA
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}
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// GetEncryptedKey returns false, because the kubernetes provisioner does not
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// have access to the private key.
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func (p *K8sSA) GetEncryptedKey() (string, string, bool) {
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return "", "", false
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}
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// Init initializes and validates the fields of a K8sSA type.
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func (p *K8sSA) 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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}
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if p.PubKeys != nil {
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var (
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block *pem.Block
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rest = p.PubKeys
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)
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for rest != nil {
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block, rest = pem.Decode(rest)
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if block == nil {
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break
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}
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key, err := pemutil.ParseKey(pem.EncodeToMemory(block))
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if err != nil {
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return errors.Wrapf(err, "error parsing public key in provisioner '%s'", p.GetName())
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}
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switch q := key.(type) {
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case *rsa.PublicKey, *ecdsa.PublicKey, ed25519.PublicKey:
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default:
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return errors.Errorf("Unexpected public key type %T in provisioner '%s'", q, p.GetName())
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}
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p.pubKeys = append(p.pubKeys, key)
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}
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} else {
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// TODO: Use the TokenReview API if no pub keys provided. This will need to
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// be configured with additional attributes in the K8sSA struct for
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// connecting to the kubernetes API server.
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return errors.New("K8s Service Account provisioner cannot be initialized without pub keys")
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}
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/*
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// NOTE: Not sure if we should be doing this initialization here ...
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// If you have a k8sSA provisioner defined in your config, but you're not
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// in a kubernetes pod then your CA will fail to startup. Maybe we just postpone
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// creating the authn until token validation time?
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if err := checkAccess(k8s.AuthorizationV1()); err != nil {
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return errors.Wrapf(err, "error verifying access to kubernetes authz service for provisioner %s", p.GetID())
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}
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p.kauthn = k8s.AuthenticationV1()
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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 performs common jwt authorization actions and returns the
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// claims for case specific downstream parsing.
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// e.g. a Sign request will auth/validate different fields than a Revoke request.
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func (p *K8sSA) authorizeToken(token string, audiences []string) (*k8sSAPayload, 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,
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"k8ssa.authorizeToken; error parsing k8sSA token")
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}
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var (
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valid bool
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claims k8sSAPayload
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)
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if p.pubKeys == nil {
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return nil, errs.Unauthorized("k8ssa.authorizeToken; k8sSA TokenReview API integration not implemented")
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/* NOTE: We plan to support the TokenReview API in a future release.
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Below is some code that should be useful when we prioritize
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this integration.
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tr := kauthnApi.TokenReview{Spec: kauthnApi.TokenReviewSpec{Token: string(token)}}
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rvw, err := p.kauthn.TokenReviews().Create(&tr)
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if err != nil {
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return nil, errors.Wrap(err, "error using kubernetes TokenReview API")
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}
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if rvw.Status.Error != "" {
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return nil, errors.Errorf("error from kubernetes TokenReviewAPI: %s", rvw.Status.Error)
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}
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if !rvw.Status.Authenticated {
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return nil, errors.New("error from kubernetes TokenReviewAPI: token could not be authenticated")
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}
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if err = jwt.UnsafeClaimsWithoutVerification(&claims); err != nil {
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return nil, errors.Wrap(err, "error parsing claims")
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}
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*/
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}
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for _, pk := range p.pubKeys {
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if err = jwt.Claims(pk, &claims); err == nil {
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valid = true
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break
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}
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}
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if !valid {
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return nil, errs.Unauthorized("k8ssa.authorizeToken; error validating k8sSA token and extracting claims")
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}
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// According to "rfc7519 JSON Web Token" acceptable skew should be no
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// more than a few minutes.
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if err = claims.Validate(jose.Expected{
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Issuer: k8sSAIssuer,
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}); err != nil {
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return nil, errs.Wrap(http.StatusUnauthorized, err, "k8ssa.authorizeToken; invalid k8sSA token claims")
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}
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if claims.Subject == "" {
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return nil, errs.Unauthorized("k8ssa.authorizeToken; k8sSA token subject cannot be empty")
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}
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return &claims, nil
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}
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// AuthorizeRevoke returns an error if the provisioner does not have rights to
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// revoke the certificate with serial number in the `sub` property.
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func (p *K8sSA) AuthorizeRevoke(ctx context.Context, token string) error {
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_, err := p.authorizeToken(token, p.ctl.Audiences.Revoke)
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return errs.Wrap(http.StatusInternalServerError, err, "k8ssa.AuthorizeRevoke")
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}
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// AuthorizeSign validates the given token.
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func (p *K8sSA) AuthorizeSign(ctx context.Context, token string) ([]SignOption, error) {
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claims, err := p.authorizeToken(token, p.ctl.Audiences.Sign)
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if err != nil {
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return nil, errs.Wrap(http.StatusInternalServerError, err, "k8ssa.AuthorizeSign")
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}
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// Add some values to use in custom templates.
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data := x509util.NewTemplateData()
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data.SetCommonName(claims.ServiceAccountName)
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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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// Certificate templates: on K8sSA the default template is the certificate
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// request.
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templateOptions, err := CustomTemplateOptions(p.Options, data, x509util.DefaultAdminLeafTemplate)
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if err != nil {
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return nil, errs.Wrap(http.StatusInternalServerError, err, "k8ssa.AuthorizeSign")
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}
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return []SignOption{
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p,
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templateOptions,
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// modifiers / withOptions
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newProvisionerExtensionOption(TypeK8sSA, p.Name, ""),
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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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}, nil
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}
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// AuthorizeRenew returns an error if the renewal is disabled.
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func (p *K8sSA) 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 validates an request for an SSH certificate.
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func (p *K8sSA) 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("k8ssa.AuthorizeSSHSign; sshCA is disabled for k8sSA provisioner '%s'", p.GetName())
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}
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claims, err := p.authorizeToken(token, p.ctl.Audiences.SSHSign)
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if err != nil {
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return nil, errs.Wrap(http.StatusInternalServerError, err, "k8ssa.AuthorizeSSHSign")
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}
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// Certificate templates.
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// Set some default variables to be used in the templates.
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data := sshutil.CreateTemplateData(sshutil.HostCert, claims.ServiceAccountName, []string{claims.ServiceAccountName})
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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.CertificateRequestTemplate)
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if err != nil {
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return nil, errs.Wrap(http.StatusInternalServerError, err, "k8ssa.AuthorizeSSHSign")
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}
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signOptions := []SignOption{templateOptions}
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return append(signOptions,
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p,
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// Require type, key-id and principals in the SignSSHOptions.
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&sshCertOptionsRequireValidator{CertType: true, KeyID: true, Principals: true},
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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 and validate all the default 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(), p.ctl.getPolicy().getSSHUser()),
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), nil
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}
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/*
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func checkAccess(authz kauthz.AuthorizationV1Interface) error {
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r := &kauthzApi.SelfSubjectAccessReview{
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Spec: kauthzApi.SelfSubjectAccessReviewSpec{
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ResourceAttributes: &kauthzApi.ResourceAttributes{
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Group: "authentication.k8s.io",
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Version: "v1",
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Resource: "tokenreviews",
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Verb: "create",
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},
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},
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}
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rvw, err := authz.SelfSubjectAccessReviews().Create(r)
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if err != nil {
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return err
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}
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if !rvw.Status.Allowed {
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return fmt.Errorf("Unable to create kubernetes token reviews: %s", rvw.Status.Reason)
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}
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return nil
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}
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*/
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