Fill out connect CA rpc endpoint tests
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@ -130,7 +130,7 @@ func (s *ConnectCA) ConfigurationSet(
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// If the config has been committed, update the local provider instance
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s.srv.setCAProvider(newProvider)
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s.srv.logger.Printf("[INFO] connect: provider config updated")
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s.srv.logger.Printf("[INFO] connect: CA provider config updated")
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return nil
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}
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@ -295,7 +295,7 @@ func (s *ConnectCA) Sign(
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}
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// Set the response
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reply = &structs.IssuedCert{
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*reply = structs.IssuedCert{
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SerialNumber: connect.HexString(cert.SerialNumber.Bytes()),
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CertPEM: pem,
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Service: serviceId.Service,
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@ -4,6 +4,7 @@ import (
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"crypto/x509"
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"os"
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"testing"
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"time"
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"github.com/hashicorp/consul/agent/connect"
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"github.com/hashicorp/consul/agent/structs"
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@ -12,6 +13,14 @@ import (
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"github.com/stretchr/testify/assert"
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)
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func testParseCert(t *testing.T, pemValue string) *x509.Certificate {
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cert, err := connect.ParseCert(pemValue)
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if err != nil {
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t.Fatal(err)
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}
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return cert
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}
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// Test listing root CAs.
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func TestConnectCARoots(t *testing.T) {
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t.Parallel()
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@ -30,16 +39,18 @@ func TestConnectCARoots(t *testing.T) {
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ca1 := connect.TestCA(t, nil)
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ca2 := connect.TestCA(t, nil)
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ca2.Active = false
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ok, err := state.CARootSetCAS(1, 0, []*structs.CARoot{ca1, ca2})
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idx, _, err := state.CARoots(nil)
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assert.NoError(err)
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ok, err := state.CARootSetCAS(idx, idx, []*structs.CARoot{ca1, ca2})
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assert.True(ok)
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assert.Nil(err)
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assert.NoError(err)
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// Request
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args := &structs.DCSpecificRequest{
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Datacenter: "dc1",
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}
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var reply structs.IndexedCARoots
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assert.Nil(msgpackrpc.CallWithCodec(codec, "ConnectCA.Roots", args, &reply))
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assert.NoError(msgpackrpc.CallWithCodec(codec, "ConnectCA.Roots", args, &reply))
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// Verify
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assert.Equal(ca1.ID, reply.ActiveRootID)
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@ -51,11 +62,173 @@ func TestConnectCARoots(t *testing.T) {
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}
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}
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func TestConnectCAConfig_GetSet(t *testing.T) {
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t.Parallel()
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assert := assert.New(t)
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dir1, s1 := testServer(t)
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defer os.RemoveAll(dir1)
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defer s1.Shutdown()
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codec := rpcClient(t, s1)
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defer codec.Close()
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testrpc.WaitForLeader(t, s1.RPC, "dc1")
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// Get the starting config
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{
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args := &structs.DCSpecificRequest{
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Datacenter: "dc1",
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}
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var reply structs.CAConfiguration
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assert.NoError(msgpackrpc.CallWithCodec(codec, "ConnectCA.ConfigurationGet", args, &reply))
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actual, err := ParseConsulCAConfig(reply.Config)
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assert.NoError(err)
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expected, err := ParseConsulCAConfig(s1.config.CAConfig.Config)
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assert.NoError(err)
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assert.Equal(reply.Provider, s1.config.CAConfig.Provider)
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assert.Equal(actual, expected)
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}
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// Update a config value
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newConfig := &structs.CAConfiguration{
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Provider: "consul",
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Config: map[string]interface{}{
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"PrivateKey": "",
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"RootCert": "",
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"RotationPeriod": 180 * 24 * time.Hour,
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},
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}
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{
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args := &structs.CARequest{
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Datacenter: "dc1",
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Config: newConfig,
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}
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var reply interface{}
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assert.NoError(msgpackrpc.CallWithCodec(codec, "ConnectCA.ConfigurationSet", args, &reply))
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}
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// Verify the new config was set
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{
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args := &structs.DCSpecificRequest{
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Datacenter: "dc1",
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}
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var reply structs.CAConfiguration
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assert.NoError(msgpackrpc.CallWithCodec(codec, "ConnectCA.ConfigurationGet", args, &reply))
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actual, err := ParseConsulCAConfig(reply.Config)
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assert.NoError(err)
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expected, err := ParseConsulCAConfig(newConfig.Config)
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assert.NoError(err)
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assert.Equal(reply.Provider, newConfig.Provider)
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assert.Equal(actual, expected)
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}
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}
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func TestConnectCAConfig_TriggerRotation(t *testing.T) {
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t.Parallel()
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assert := assert.New(t)
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dir1, s1 := testServer(t)
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defer os.RemoveAll(dir1)
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defer s1.Shutdown()
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codec := rpcClient(t, s1)
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defer codec.Close()
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testrpc.WaitForLeader(t, s1.RPC, "dc1")
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// Store the current root
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rootReq := &structs.DCSpecificRequest{
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Datacenter: "dc1",
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}
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var rootList structs.IndexedCARoots
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assert.Nil(msgpackrpc.CallWithCodec(codec, "ConnectCA.Roots", rootReq, &rootList))
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assert.Len(rootList.Roots, 1)
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oldRoot := rootList.Roots[0]
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// Update the provider config to use a new private key, which should
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// cause a rotation.
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newKey, err := generatePrivateKey()
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assert.NoError(err)
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newConfig := &structs.CAConfiguration{
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Provider: "consul",
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Config: map[string]interface{}{
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"PrivateKey": newKey,
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"RootCert": "",
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"RotationPeriod": 90 * 24 * time.Hour,
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},
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}
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{
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args := &structs.CARequest{
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Datacenter: "dc1",
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Config: newConfig,
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}
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var reply interface{}
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assert.NoError(msgpackrpc.CallWithCodec(codec, "ConnectCA.ConfigurationSet", args, &reply))
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}
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// Make sure the new root has been added along with an intermediate
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// cross-signed by the old root.
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{
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args := &structs.DCSpecificRequest{
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Datacenter: "dc1",
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}
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var reply structs.IndexedCARoots
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assert.Nil(msgpackrpc.CallWithCodec(codec, "ConnectCA.Roots", args, &reply))
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assert.Len(reply.Roots, 2)
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for _, r := range reply.Roots {
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if r.ID == oldRoot.ID {
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// The old root should no longer be marked as the active root,
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// and none of its other fields should have changed.
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assert.False(r.Active)
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assert.Equal(r.Name, oldRoot.Name)
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assert.Equal(r.RootCert, oldRoot.RootCert)
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assert.Equal(r.SigningCert, oldRoot.SigningCert)
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assert.Equal(r.IntermediateCerts, oldRoot.IntermediateCerts)
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} else {
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// The new root should have a valid cross-signed cert from the old
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// root as an intermediate.
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assert.True(r.Active)
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assert.Len(r.IntermediateCerts, 1)
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xc := testParseCert(t, r.IntermediateCerts[0])
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oldRootCert := testParseCert(t, oldRoot.RootCert)
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newRootCert := testParseCert(t, r.RootCert)
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// Should have the authority/subject key IDs and signature algo of the
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// (old) signing CA.
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assert.Equal(xc.AuthorityKeyId, oldRootCert.AuthorityKeyId)
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assert.Equal(xc.SubjectKeyId, oldRootCert.SubjectKeyId)
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assert.Equal(xc.SignatureAlgorithm, oldRootCert.SignatureAlgorithm)
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// The common name and SAN should not have changed.
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assert.Equal(xc.Subject.CommonName, newRootCert.Subject.CommonName)
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assert.Equal(xc.URIs, newRootCert.URIs)
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}
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}
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}
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// Verify the new config was set.
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{
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args := &structs.DCSpecificRequest{
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Datacenter: "dc1",
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}
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var reply structs.CAConfiguration
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assert.NoError(msgpackrpc.CallWithCodec(codec, "ConnectCA.ConfigurationGet", args, &reply))
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actual, err := ParseConsulCAConfig(reply.Config)
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assert.NoError(err)
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expected, err := ParseConsulCAConfig(newConfig.Config)
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assert.NoError(err)
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assert.Equal(reply.Provider, newConfig.Provider)
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assert.Equal(actual, expected)
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}
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}
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// Test CA signing
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//
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// NOTE(mitchellh): Just testing the happy path and not all the other validation
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// issues because the internals of this method will probably be gutted for the
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// CA plugins then we can just test mocks.
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func TestConnectCASign(t *testing.T) {
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t.Parallel()
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@ -68,32 +241,30 @@ func TestConnectCASign(t *testing.T) {
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testrpc.WaitForLeader(t, s1.RPC, "dc1")
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// Insert a CA
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state := s1.fsm.State()
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ca := connect.TestCA(t, nil)
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ok, err := state.CARootSetCAS(1, 0, []*structs.CARoot{ca})
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assert.True(ok)
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assert.Nil(err)
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// Generate a CSR and request signing
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spiffeId := connect.TestSpiffeIDService(t, "web")
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csr, _ := connect.TestCSR(t, spiffeId)
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args := &structs.CASignRequest{
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Datacenter: "dc01",
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Datacenter: "dc1",
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CSR: csr,
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}
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var reply structs.IssuedCert
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assert.Nil(msgpackrpc.CallWithCodec(codec, "ConnectCA.Sign", args, &reply))
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assert.NoError(msgpackrpc.CallWithCodec(codec, "ConnectCA.Sign", args, &reply))
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// Get the current CA
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state := s1.fsm.State()
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_, ca, err := state.CARootActive(nil)
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assert.NoError(err)
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// Verify that the cert is signed by the CA
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roots := x509.NewCertPool()
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assert.True(roots.AppendCertsFromPEM([]byte(ca.RootCert)))
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leaf, err := connect.ParseCert(reply.CertPEM)
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assert.Nil(err)
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assert.NoError(err)
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_, err = leaf.Verify(x509.VerifyOptions{
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Roots: roots,
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})
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assert.Nil(err)
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assert.NoError(err)
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// Verify other fields
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assert.Equal("web", reply.Service)
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@ -30,7 +30,7 @@ type ConsulCAProvider struct {
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// NewConsulCAProvider returns a new instance of the Consul CA provider,
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// bootstrapping its state in the state store necessary
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func NewConsulCAProvider(rawConfig map[string]interface{}, srv *Server) (*ConsulCAProvider, error) {
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conf, err := decodeConfig(rawConfig)
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conf, err := ParseConsulCAConfig(rawConfig)
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if err != nil {
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return nil, err
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}
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@ -116,7 +116,7 @@ func NewConsulCAProvider(rawConfig map[string]interface{}, srv *Server) (*Consul
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return provider, nil
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}
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func decodeConfig(raw map[string]interface{}) (*structs.ConsulCAProviderConfig, error) {
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func ParseConsulCAConfig(raw map[string]interface{}) (*structs.ConsulCAProviderConfig, error) {
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var config *structs.ConsulCAProviderConfig
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if err := mapstructure.WeakDecode(raw, &config); err != nil {
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return nil, fmt.Errorf("error decoding config: %s", err)
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@ -334,6 +334,9 @@ func TestConfig(sources ...config.Source) *config.RuntimeConfig {
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server = true
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node_id = "` + nodeID + `"
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node_name = "Node ` + nodeID + `"
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connect {
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enabled = true
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}
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performance {
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raft_multiplier = 1
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}
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