forked from TrueCloudLab/certificates
Be able to start a SSH host or SSH user only CA
In previous versions if the host or user CA is not configured, the start of step-ca was crashing. This allows to configure a user or host only ssh ca.
This commit is contained in:
parent
28bd2ef6c1
commit
aedd7fcc05
2 changed files with 60 additions and 13 deletions
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@ -361,6 +361,8 @@ func (a *Authority) init() error {
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// Append public key to list of host certs
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a.sshCAHostCerts = append(a.sshCAHostCerts, a.sshCAHostCertSignKey.PublicKey())
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a.sshCAHostFederatedCerts = append(a.sshCAHostFederatedCerts, a.sshCAHostCertSignKey.PublicKey())
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// Configure template variables.
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tmplVars.SSH.HostKey = a.sshCAHostCertSignKey.PublicKey()
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}
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if a.config.SSH.UserKey != "" {
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signer, err := a.keyManager.CreateSigner(&kmsapi.CreateSignerRequest{
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@ -387,35 +389,32 @@ func (a *Authority) init() error {
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// Append public key to list of user certs
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a.sshCAUserCerts = append(a.sshCAUserCerts, a.sshCAUserCertSignKey.PublicKey())
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a.sshCAUserFederatedCerts = append(a.sshCAUserFederatedCerts, a.sshCAUserCertSignKey.PublicKey())
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// Configure template variables.
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tmplVars.SSH.UserKey = a.sshCAUserCertSignKey.PublicKey()
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}
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// Append other public keys
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// Append other public keys and add them to the template variables.
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for _, key := range a.config.SSH.Keys {
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publicKey := key.PublicKey()
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switch key.Type {
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case provisioner.SSHHostCert:
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if key.Federated {
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a.sshCAHostFederatedCerts = append(a.sshCAHostFederatedCerts, key.PublicKey())
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a.sshCAHostFederatedCerts = append(a.sshCAHostFederatedCerts, publicKey)
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tmplVars.SSH.HostFederatedKeys = append(tmplVars.SSH.HostFederatedKeys, publicKey)
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} else {
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a.sshCAHostCerts = append(a.sshCAHostCerts, key.PublicKey())
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a.sshCAHostCerts = append(a.sshCAHostCerts, publicKey)
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}
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case provisioner.SSHUserCert:
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if key.Federated {
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a.sshCAUserFederatedCerts = append(a.sshCAUserFederatedCerts, key.PublicKey())
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a.sshCAUserFederatedCerts = append(a.sshCAUserFederatedCerts, publicKey)
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tmplVars.SSH.UserFederatedKeys = append(tmplVars.SSH.UserFederatedKeys, publicKey)
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} else {
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a.sshCAUserCerts = append(a.sshCAUserCerts, key.PublicKey())
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a.sshCAUserCerts = append(a.sshCAUserCerts, publicKey)
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}
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default:
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return errors.Errorf("unsupported type %s", key.Type)
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}
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}
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// Configure template variables.
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tmplVars.SSH.HostKey = a.sshCAHostCertSignKey.PublicKey()
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tmplVars.SSH.UserKey = a.sshCAUserCertSignKey.PublicKey()
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// On the templates we skip the first one because there's a distinction
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// between the main key and federated keys.
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tmplVars.SSH.HostFederatedKeys = append(tmplVars.SSH.HostFederatedKeys, a.sshCAHostFederatedCerts[1:]...)
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tmplVars.SSH.UserFederatedKeys = append(tmplVars.SSH.UserFederatedKeys, a.sshCAUserFederatedCerts[1:]...)
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}
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// Check if a KMS with decryption capability is required and available
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@ -87,6 +87,52 @@ func (m sshTestOptionsModifier) Modify(cert *ssh.Certificate, opts provisioner.S
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return fmt.Errorf(string(m))
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}
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func TestAuthority_initHostOnly(t *testing.T) {
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auth := testAuthority(t, func(a *Authority) error {
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a.config.SSH.UserKey = ""
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return nil
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})
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// Check keys
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keys, err := auth.GetSSHRoots(context.Background())
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assert.NoError(t, err)
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assert.Len(t, 1, keys.HostKeys)
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assert.Len(t, 0, keys.UserKeys)
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// Check templates, user templates should work fine.
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_, err = auth.GetSSHConfig(context.Background(), "user", nil)
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assert.NoError(t, err)
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_, err = auth.GetSSHConfig(context.Background(), "host", map[string]string{
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"Certificate": "ssh_host_ecdsa_key-cert.pub",
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"Key": "ssh_host_ecdsa_key",
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})
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assert.Error(t, err)
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}
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func TestAuthority_initUserOnly(t *testing.T) {
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auth := testAuthority(t, func(a *Authority) error {
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a.config.SSH.HostKey = ""
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return nil
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})
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// Check keys
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keys, err := auth.GetSSHRoots(context.Background())
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assert.NoError(t, err)
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assert.Len(t, 0, keys.HostKeys)
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assert.Len(t, 1, keys.UserKeys)
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// Check templates, host templates should work fine.
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_, err = auth.GetSSHConfig(context.Background(), "host", map[string]string{
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"Certificate": "ssh_host_ecdsa_key-cert.pub",
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"Key": "ssh_host_ecdsa_key",
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})
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assert.NoError(t, err)
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_, err = auth.GetSSHConfig(context.Background(), "user", nil)
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assert.Error(t, err)
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}
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func TestAuthority_SignSSH(t *testing.T) {
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key, err := ecdsa.GenerateKey(elliptic.P256(), rand.Reader)
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assert.FatalError(t, err)
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@ -153,6 +199,8 @@ func TestAuthority_SignSSH(t *testing.T) {
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}{
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{"ok-user", fields{signer, signer}, args{pub, provisioner.SignSSHOptions{}, []provisioner.SignOption{userTemplate, userOptions}}, want{CertType: ssh.UserCert}, false},
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{"ok-host", fields{signer, signer}, args{pub, provisioner.SignSSHOptions{}, []provisioner.SignOption{hostTemplate, hostOptions}}, want{CertType: ssh.HostCert}, false},
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{"ok-user-only", fields{signer, nil}, args{pub, provisioner.SignSSHOptions{}, []provisioner.SignOption{userTemplate, userOptions}}, want{CertType: ssh.UserCert}, false},
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{"ok-host-only", fields{nil, signer}, args{pub, provisioner.SignSSHOptions{}, []provisioner.SignOption{hostTemplate, hostOptions}}, want{CertType: ssh.HostCert}, false},
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{"ok-opts-type-user", fields{signer, signer}, args{pub, provisioner.SignSSHOptions{CertType: "user"}, []provisioner.SignOption{userTemplate}}, want{CertType: ssh.UserCert}, false},
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{"ok-opts-type-host", fields{signer, signer}, args{pub, provisioner.SignSSHOptions{CertType: "host"}, []provisioner.SignOption{hostTemplate}}, want{CertType: ssh.HostCert}, false},
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{"ok-opts-principals", fields{signer, signer}, args{pub, provisioner.SignSSHOptions{CertType: "user", Principals: []string{"user"}}, []provisioner.SignOption{userTemplateWithUser}}, want{CertType: ssh.UserCert, Principals: []string{"user"}}, false},
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