mirror of
https://github.com/smallstep/certificates.git
synced 2024-11-17 15:29:21 +00:00
325 lines
11 KiB
Go
325 lines
11 KiB
Go
package authority
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import (
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"crypto/tls"
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"crypto/x509"
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"encoding/asn1"
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"encoding/base64"
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"encoding/pem"
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"net/http"
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"strings"
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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/certificates/db"
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"github.com/smallstep/cli/crypto/pemutil"
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"github.com/smallstep/cli/crypto/tlsutil"
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"github.com/smallstep/cli/crypto/x509util"
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)
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// GetTLSOptions returns the tls options configured.
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func (a *Authority) GetTLSOptions() *tlsutil.TLSOptions {
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return a.config.TLS
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}
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var oidAuthorityKeyIdentifier = asn1.ObjectIdentifier{2, 5, 29, 35}
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func withDefaultASN1DN(def *x509util.ASN1DN) x509util.WithOption {
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return func(p x509util.Profile) error {
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if def == nil {
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return errors.New("default ASN1DN template cannot be nil")
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}
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crt := p.Subject()
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if len(crt.Subject.Country) == 0 && def.Country != "" {
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crt.Subject.Country = append(crt.Subject.Country, def.Country)
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}
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if len(crt.Subject.Organization) == 0 && def.Organization != "" {
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crt.Subject.Organization = append(crt.Subject.Organization, def.Organization)
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}
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if len(crt.Subject.OrganizationalUnit) == 0 && def.OrganizationalUnit != "" {
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crt.Subject.OrganizationalUnit = append(crt.Subject.OrganizationalUnit, def.OrganizationalUnit)
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}
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if len(crt.Subject.Locality) == 0 && def.Locality != "" {
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crt.Subject.Locality = append(crt.Subject.Locality, def.Locality)
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}
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if len(crt.Subject.Province) == 0 && def.Province != "" {
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crt.Subject.Province = append(crt.Subject.Province, def.Province)
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}
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if len(crt.Subject.StreetAddress) == 0 && def.StreetAddress != "" {
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crt.Subject.StreetAddress = append(crt.Subject.StreetAddress, def.StreetAddress)
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}
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return nil
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}
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}
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// Sign creates a signed certificate from a certificate signing request.
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func (a *Authority) Sign(csr *x509.CertificateRequest, signOpts provisioner.Options, extraOpts ...provisioner.SignOption) (*x509.Certificate, *x509.Certificate, error) {
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var (
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errContext = apiCtx{"csr": csr, "signOptions": signOpts}
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mods = []x509util.WithOption{withDefaultASN1DN(a.config.AuthorityConfig.Template)}
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certValidators = []provisioner.CertificateValidator{}
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issIdentity = a.intermediateIdentity
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)
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for _, op := range extraOpts {
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switch k := op.(type) {
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case provisioner.CertificateValidator:
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certValidators = append(certValidators, k)
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case provisioner.CertificateRequestValidator:
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if err := k.Valid(csr); err != nil {
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return nil, nil, &apiError{errors.Wrap(err, "sign"), http.StatusUnauthorized, errContext}
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}
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case provisioner.ProfileModifier:
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mods = append(mods, k.Option(signOpts))
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default:
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return nil, nil, &apiError{errors.Errorf("sign: invalid extra option type %T", k),
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http.StatusInternalServerError, errContext}
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}
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}
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if err := csr.CheckSignature(); err != nil {
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return nil, nil, &apiError{errors.Wrap(err, "sign: invalid certificate request"),
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http.StatusBadRequest, errContext}
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}
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leaf, err := x509util.NewLeafProfileWithCSR(csr, issIdentity.Crt, issIdentity.Key, mods...)
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if err != nil {
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return nil, nil, &apiError{errors.Wrapf(err, "sign"), http.StatusInternalServerError, errContext}
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}
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for _, v := range certValidators {
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if err := v.Valid(leaf.Subject()); err != nil {
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return nil, nil, &apiError{errors.Wrap(err, "sign"), http.StatusUnauthorized, errContext}
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}
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}
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crtBytes, err := leaf.CreateCertificate()
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if err != nil {
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return nil, nil, &apiError{errors.Wrap(err, "sign: error creating new leaf certificate"),
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http.StatusInternalServerError, errContext}
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}
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serverCert, err := x509.ParseCertificate(crtBytes)
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if err != nil {
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return nil, nil, &apiError{errors.Wrap(err, "sign: error parsing new leaf certificate"),
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http.StatusInternalServerError, errContext}
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}
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caCert, err := x509.ParseCertificate(issIdentity.Crt.Raw)
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if err != nil {
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return nil, nil, &apiError{errors.Wrap(err, "sign: error parsing intermediate certificate"),
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http.StatusInternalServerError, errContext}
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}
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if err = a.db.StoreCertificate(serverCert); err != nil {
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if err != db.ErrNotImplemented {
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return nil, nil, &apiError{errors.Wrap(err, "sign: error storing certificate in db"),
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http.StatusInternalServerError, errContext}
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}
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}
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return serverCert, caCert, nil
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}
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// Renew creates a new Certificate identical to the old certificate, except
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// with a validity window that begins 'now'.
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func (a *Authority) Renew(oldCert *x509.Certificate) (*x509.Certificate, *x509.Certificate, error) {
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// Check step provisioner extensions
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if err := a.authorizeRenewal(oldCert); err != nil {
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return nil, nil, err
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}
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// Issuer
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issIdentity := a.intermediateIdentity
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now := time.Now().UTC()
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duration := oldCert.NotAfter.Sub(oldCert.NotBefore)
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newCert := &x509.Certificate{
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PublicKey: oldCert.PublicKey,
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Issuer: issIdentity.Crt.Subject,
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Subject: oldCert.Subject,
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NotBefore: now,
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NotAfter: now.Add(duration),
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KeyUsage: oldCert.KeyUsage,
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UnhandledCriticalExtensions: oldCert.UnhandledCriticalExtensions,
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ExtKeyUsage: oldCert.ExtKeyUsage,
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UnknownExtKeyUsage: oldCert.UnknownExtKeyUsage,
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BasicConstraintsValid: oldCert.BasicConstraintsValid,
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IsCA: oldCert.IsCA,
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MaxPathLen: oldCert.MaxPathLen,
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MaxPathLenZero: oldCert.MaxPathLenZero,
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OCSPServer: oldCert.OCSPServer,
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IssuingCertificateURL: oldCert.IssuingCertificateURL,
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DNSNames: oldCert.DNSNames,
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EmailAddresses: oldCert.EmailAddresses,
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IPAddresses: oldCert.IPAddresses,
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URIs: oldCert.URIs,
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PermittedDNSDomainsCritical: oldCert.PermittedDNSDomainsCritical,
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PermittedDNSDomains: oldCert.PermittedDNSDomains,
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ExcludedDNSDomains: oldCert.ExcludedDNSDomains,
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PermittedIPRanges: oldCert.PermittedIPRanges,
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ExcludedIPRanges: oldCert.ExcludedIPRanges,
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PermittedEmailAddresses: oldCert.PermittedEmailAddresses,
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ExcludedEmailAddresses: oldCert.ExcludedEmailAddresses,
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PermittedURIDomains: oldCert.PermittedURIDomains,
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ExcludedURIDomains: oldCert.ExcludedURIDomains,
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CRLDistributionPoints: oldCert.CRLDistributionPoints,
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PolicyIdentifiers: oldCert.PolicyIdentifiers,
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}
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// Copy all extensions except for Authority Key Identifier. This one might
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// be different if we rotate the intermediate certificate and it will cause
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// a TLS bad certificate error.
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for _, ext := range oldCert.Extensions {
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if !ext.Id.Equal(oidAuthorityKeyIdentifier) {
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newCert.ExtraExtensions = append(newCert.ExtraExtensions, ext)
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}
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}
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leaf, err := x509util.NewLeafProfileWithTemplate(newCert,
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issIdentity.Crt, issIdentity.Key)
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if err != nil {
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return nil, nil, &apiError{err, http.StatusInternalServerError, apiCtx{}}
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}
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crtBytes, err := leaf.CreateCertificate()
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if err != nil {
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return nil, nil, &apiError{errors.Wrap(err, "error renewing certificate from existing server certificate"),
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http.StatusInternalServerError, apiCtx{}}
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}
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serverCert, err := x509.ParseCertificate(crtBytes)
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if err != nil {
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return nil, nil, &apiError{errors.Wrap(err, "error parsing new server certificate"),
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http.StatusInternalServerError, apiCtx{}}
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}
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caCert, err := x509.ParseCertificate(issIdentity.Crt.Raw)
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if err != nil {
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return nil, nil, &apiError{errors.Wrap(err, "error parsing intermediate certificate"),
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http.StatusInternalServerError, apiCtx{}}
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}
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return serverCert, caCert, nil
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}
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// RevokeOptions are the options for the Revoke API.
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type RevokeOptions struct {
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Serial string
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Reason string
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ReasonCode int
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PassiveOnly bool
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MTLS bool
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Crt *x509.Certificate
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OTT string
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}
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// Revoke revokes a certificate.
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//
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// NOTE: Only supports passive revocation - prevent existing certificates from
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// being renewed.
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//
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// TODO: Add OCSP and CRL support.
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func (a *Authority) Revoke(opts *RevokeOptions) error {
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errContext := apiCtx{
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"serialNumber": opts.Serial,
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"reasonCode": opts.ReasonCode,
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"reason": opts.Reason,
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"passiveOnly": opts.PassiveOnly,
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"mTLS": opts.MTLS,
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}
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if opts.MTLS {
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errContext["certificate"] = base64.StdEncoding.EncodeToString(opts.Crt.Raw)
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} else {
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errContext["ott"] = opts.OTT
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}
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rci := &db.RevokedCertificateInfo{
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Serial: opts.Serial,
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ReasonCode: opts.ReasonCode,
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Reason: opts.Reason,
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MTLS: opts.MTLS,
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RevokedAt: time.Now().UTC(),
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}
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// Authorize mTLS or token request and get back a provisioner interface.
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p, err := a.authorizeRevoke(opts)
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if err != nil {
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return &apiError{errors.Wrap(err, "revoke"),
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http.StatusUnauthorized, errContext}
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}
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// If not mTLS then get the TokenID of the token.
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if !opts.MTLS {
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rci.TokenID, err = p.GetTokenID(opts.OTT)
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if err != nil {
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return &apiError{errors.Wrap(err, "revoke: could not get ID for token"),
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http.StatusInternalServerError, errContext}
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}
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errContext["tokenID"] = rci.TokenID
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}
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rci.ProvisionerID = p.GetID()
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errContext["provisionerID"] = rci.ProvisionerID
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err = a.db.Revoke(rci)
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switch err {
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case nil:
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return nil
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case db.ErrNotImplemented:
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return &apiError{errors.New("revoke: no persistence layer configured"),
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http.StatusNotImplemented, errContext}
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case db.ErrAlreadyExists:
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return &apiError{errors.Errorf("revoke: certificate with serial number %s has already been revoked", rci.Serial),
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http.StatusBadRequest, errContext}
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default:
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return &apiError{err, http.StatusInternalServerError, errContext}
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}
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}
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// GetTLSCertificate creates a new leaf certificate to be used by the CA HTTPS server.
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func (a *Authority) GetTLSCertificate() (*tls.Certificate, error) {
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profile, err := x509util.NewLeafProfile("Step Online CA",
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a.intermediateIdentity.Crt, a.intermediateIdentity.Key,
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x509util.WithHosts(strings.Join(a.config.DNSNames, ",")))
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if err != nil {
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return nil, err
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}
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crtBytes, err := profile.CreateCertificate()
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if err != nil {
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return nil, err
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}
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keyPEM, err := pemutil.Serialize(profile.SubjectPrivateKey())
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if err != nil {
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return nil, err
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}
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crtPEM := pem.EncodeToMemory(&pem.Block{
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Type: "CERTIFICATE",
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Bytes: crtBytes,
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})
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// Load the x509 key pair (combining server and intermediate blocks)
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// to a tls.Certificate.
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intermediatePEM, err := pemutil.Serialize(a.intermediateIdentity.Crt)
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if err != nil {
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return nil, err
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}
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tlsCrt, err := tls.X509KeyPair(append(crtPEM,
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pem.EncodeToMemory(intermediatePEM)...),
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pem.EncodeToMemory(keyPEM))
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if err != nil {
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return nil, errors.Wrap(err, "error creating tls certificate")
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}
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// Get the 'leaf' certificate and set the attribute accordingly.
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leaf, err := x509.ParseCertificate(tlsCrt.Certificate[0])
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if err != nil {
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return nil, errors.Wrap(err, "error parsing tls certificate")
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}
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tlsCrt.Leaf = leaf
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return &tlsCrt, nil
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}
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