2019-05-27 00:41:10 +00:00
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package provisioner
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import (
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"context"
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"crypto/x509"
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2019-12-20 21:30:05 +00:00
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"net/http"
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2019-05-27 00:41:10 +00:00
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"testing"
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"time"
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"github.com/pkg/errors"
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"github.com/smallstep/assert"
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2019-12-20 21:30:05 +00:00
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"github.com/smallstep/certificates/errs"
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2019-05-27 00:41:10 +00:00
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)
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func TestACME_Getters(t *testing.T) {
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p, err := generateACME()
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assert.FatalError(t, err)
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id := "acme/" + p.Name
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if got := p.GetID(); got != id {
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t.Errorf("ACME.GetID() = %v, want %v", got, id)
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}
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if got := p.GetName(); got != p.Name {
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t.Errorf("ACME.GetName() = %v, want %v", got, p.Name)
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}
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if got := p.GetType(); got != TypeACME {
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t.Errorf("ACME.GetType() = %v, want %v", got, TypeACME)
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}
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kid, key, ok := p.GetEncryptedKey()
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if kid != "" || key != "" || ok == true {
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t.Errorf("ACME.GetEncryptedKey() = (%v, %v, %v), want (%v, %v, %v)",
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kid, key, ok, "", "", false)
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}
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}
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func TestACME_Init(t *testing.T) {
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type ProvisionerValidateTest struct {
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p *ACME
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err error
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}
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tests := map[string]func(*testing.T) ProvisionerValidateTest{
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"fail-empty": func(t *testing.T) ProvisionerValidateTest {
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return ProvisionerValidateTest{
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p: &ACME{},
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err: errors.New("provisioner type cannot be empty"),
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}
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},
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"fail-empty-name": func(t *testing.T) ProvisionerValidateTest {
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return ProvisionerValidateTest{
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p: &ACME{
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Type: "ACME",
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},
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err: errors.New("provisioner name cannot be empty"),
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}
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},
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"fail-empty-type": func(t *testing.T) ProvisionerValidateTest {
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return ProvisionerValidateTest{
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p: &ACME{Name: "foo"},
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err: errors.New("provisioner type cannot be empty"),
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}
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},
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"fail-bad-claims": func(t *testing.T) ProvisionerValidateTest {
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return ProvisionerValidateTest{
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p: &ACME{Name: "foo", Type: "bar", Claims: &Claims{DefaultTLSDur: &Duration{0}}},
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err: errors.New("claims: DefaultTLSCertDuration must be greater than 0"),
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}
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},
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"ok": func(t *testing.T) ProvisionerValidateTest {
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return ProvisionerValidateTest{
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p: &ACME{Name: "foo", Type: "bar"},
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}
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},
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}
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config := Config{
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Claims: globalProvisionerClaims,
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Audiences: testAudiences,
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}
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for name, get := range tests {
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t.Run(name, func(t *testing.T) {
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tc := get(t)
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err := tc.p.Init(config)
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if err != nil {
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if assert.NotNil(t, tc.err) {
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assert.Equals(t, tc.err.Error(), err.Error())
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}
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} else {
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assert.Nil(t, tc.err)
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}
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})
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}
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}
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2019-11-14 18:48:06 +00:00
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func TestACME_AuthorizeRenew(t *testing.T) {
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2019-12-20 21:30:05 +00:00
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type test struct {
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p *ACME
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2019-05-27 00:41:10 +00:00
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cert *x509.Certificate
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err error
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2019-12-20 21:30:05 +00:00
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code int
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}
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tests := map[string]func(*testing.T) test{
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"fail/renew-disabled": func(t *testing.T) test {
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p, err := generateACME()
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assert.FatalError(t, err)
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// disable renewal
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disable := true
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p.Claims = &Claims{DisableRenewal: &disable}
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p.claimer, err = NewClaimer(p.Claims, globalProvisionerClaims)
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assert.FatalError(t, err)
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return test{
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p: p,
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cert: &x509.Certificate{},
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code: http.StatusUnauthorized,
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err: errors.Errorf("acme.AuthorizeRenew; renew is disabled for acme provisioner %s", p.GetID()),
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}
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},
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"ok": func(t *testing.T) test {
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p, err := generateACME()
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assert.FatalError(t, err)
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return test{
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p: p,
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cert: &x509.Certificate{},
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}
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},
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2019-05-27 00:41:10 +00:00
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}
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2019-12-20 21:30:05 +00:00
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for name, tt := range tests {
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t.Run(name, func(t *testing.T) {
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tc := tt(t)
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if err := tc.p.AuthorizeRenew(context.Background(), tc.cert); err != nil {
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sc, ok := err.(errs.StatusCoder)
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assert.Fatal(t, ok, "error does not implement StatusCoder interface")
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assert.Equals(t, sc.StatusCode(), tc.code)
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if assert.NotNil(t, tc.err) {
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assert.HasPrefix(t, err.Error(), tc.err.Error())
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2019-05-27 00:41:10 +00:00
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}
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} else {
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assert.Nil(t, tc.err)
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2019-05-27 00:41:10 +00:00
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}
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})
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}
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}
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func TestACME_AuthorizeSign(t *testing.T) {
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type test struct {
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p *ACME
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token string
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code int
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err error
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2019-05-27 00:41:10 +00:00
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}
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2019-12-20 21:30:05 +00:00
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tests := map[string]func(*testing.T) test{
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"ok": func(t *testing.T) test {
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p, err := generateACME()
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assert.FatalError(t, err)
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return test{
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p: p,
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token: "foo",
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}
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},
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}
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for name, tt := range tests {
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t.Run(name, func(t *testing.T) {
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tc := tt(t)
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if opts, err := tc.p.AuthorizeSign(context.Background(), tc.token); err != nil {
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if assert.NotNil(t, tc.err) {
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sc, ok := err.(errs.StatusCoder)
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assert.Fatal(t, ok, "error does not implement StatusCoder interface")
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assert.Equals(t, sc.StatusCode(), tc.code)
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assert.HasPrefix(t, err.Error(), tc.err.Error())
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2019-05-27 00:41:10 +00:00
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}
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} else {
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if assert.Nil(t, tc.err) && assert.NotNil(t, opts) {
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assert.Len(t, 4, opts)
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for _, o := range opts {
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2019-09-05 01:31:09 +00:00
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switch v := o.(type) {
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case *provisionerExtensionOption:
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assert.Equals(t, v.Type, int(TypeACME))
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2019-12-20 21:30:05 +00:00
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assert.Equals(t, v.Name, tc.p.GetName())
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2019-09-05 01:31:09 +00:00
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assert.Equals(t, v.CredentialID, "")
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assert.Len(t, 0, v.KeyValuePairs)
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case profileDefaultDuration:
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2019-12-20 21:30:05 +00:00
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assert.Equals(t, time.Duration(v), tc.p.claimer.DefaultTLSCertDuration())
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2019-09-05 01:31:09 +00:00
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case defaultPublicKeyValidator:
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case *validityValidator:
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2019-12-20 21:30:05 +00:00
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assert.Equals(t, v.min, tc.p.claimer.MinTLSCertDuration())
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assert.Equals(t, v.max, tc.p.claimer.MaxTLSCertDuration())
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2019-09-05 01:31:09 +00:00
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default:
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assert.FatalError(t, errors.Errorf("unexpected sign option of type %T", v))
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}
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}
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2019-05-27 00:41:10 +00:00
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}
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}
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})
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}
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}
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