mirror of https://github.com/hashicorp/consul
314 lines
9.8 KiB
Go
314 lines
9.8 KiB
Go
// Copyright (c) HashiCorp, Inc.
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// SPDX-License-Identifier: BUSL-1.1
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package topology
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import (
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"context"
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"fmt"
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"testing"
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"github.com/stretchr/testify/require"
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"github.com/testcontainers/testcontainers-go"
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"github.com/hashicorp/consul/api"
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libassert "github.com/hashicorp/consul/test/integration/consul-container/libs/assert"
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libcluster "github.com/hashicorp/consul/test/integration/consul-container/libs/cluster"
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libservice "github.com/hashicorp/consul/test/integration/consul-container/libs/service"
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"github.com/hashicorp/consul/test/integration/consul-container/libs/utils"
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)
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const (
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AcceptingPeerName = "accepting-to-dialer"
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DialingPeerName = "dialing-to-acceptor"
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)
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type BuiltCluster struct {
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Cluster *libcluster.Cluster
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Context *libcluster.BuildContext
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Service libservice.Service
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Container libservice.Service
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Gateway libservice.Service
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}
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type PeeringClusterSize struct {
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AcceptingNumServers int
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AcceptingNumClients int
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DialingNumServers int
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DialingNumClients int
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}
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// BasicPeeringTwoClustersSetup sets up a scenario for testing peering, which consists of
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//
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// - an accepting cluster with 3 servers and 1 client agent. The client should be used to
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// host a service for export: staticServerSvc.
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// - a dialing cluster with 1 server and 1 client. The client should be used to host a
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// service connecting to staticServerSvc.
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// - Create the peering, export the service from accepting cluster, and verify service
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// connectivity.
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//
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// It returns objects of the accepting cluster, dialing cluster, staticServerSvc, and staticClientSvcSidecar
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func BasicPeeringTwoClustersSetup(
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t *testing.T,
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consulImage string,
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consulVersion string,
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pcs PeeringClusterSize,
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peeringThroughMeshgateway bool,
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) (*BuiltCluster, *BuiltCluster) {
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acceptingCluster, acceptingCtx, acceptingClient := NewCluster(t, &ClusterConfig{
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NumServers: pcs.AcceptingNumServers,
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NumClients: pcs.AcceptingNumClients,
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BuildOpts: &libcluster.BuildOptions{
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Datacenter: "dc1",
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ConsulImageName: consulImage,
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ConsulVersion: consulVersion,
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InjectAutoEncryption: true,
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},
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ApplyDefaultProxySettings: true,
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})
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dialingCluster, dialingCtx, dialingClient := NewCluster(t, &ClusterConfig{
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NumServers: pcs.DialingNumServers,
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NumClients: pcs.DialingNumClients,
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BuildOpts: &libcluster.BuildOptions{
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Datacenter: "dc2",
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ConsulImageName: consulImage,
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ConsulVersion: consulVersion,
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InjectAutoEncryption: true,
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},
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ApplyDefaultProxySettings: true,
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})
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// Create the mesh gateway for dataplane traffic and peering control plane traffic (if enabled)
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gwCfg := libservice.GatewayConfig{
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Name: "mesh",
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Kind: "mesh",
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}
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acceptingClusterGateway, err := libservice.NewGatewayService(context.Background(), gwCfg, acceptingCluster.Clients()[0])
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require.NoError(t, err)
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dialingClusterGateway, err := libservice.NewGatewayService(context.Background(), gwCfg, dialingCluster.Clients()[0])
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require.NoError(t, err)
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// Enable peering control plane traffic through mesh gateway
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if peeringThroughMeshgateway {
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req := &api.MeshConfigEntry{
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Peering: &api.PeeringMeshConfig{
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PeerThroughMeshGateways: true,
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},
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}
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configCluster := func(cli *api.Client) error {
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libassert.CatalogServiceExists(t, cli, "mesh", nil)
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ok, _, err := cli.ConfigEntries().Set(req, &api.WriteOptions{})
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if !ok {
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return fmt.Errorf("config entry is not set")
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}
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if err != nil {
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return fmt.Errorf("error writing config entry: %s", err)
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}
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return nil
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}
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err = configCluster(dialingClient)
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require.NoError(t, err)
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err = configCluster(acceptingClient)
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require.NoError(t, err)
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}
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require.NoError(t, dialingCluster.PeerWithCluster(acceptingClient, AcceptingPeerName, DialingPeerName))
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libassert.PeeringStatus(t, acceptingClient, AcceptingPeerName, api.PeeringStateActive)
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// libassert.PeeringExports(t, acceptingClient, acceptingPeerName, 1)
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// Register a static-server service in acceptingCluster and export to dialing cluster
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var serverService, serverSidecarService libservice.Service
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{
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clientNode := acceptingCluster.Clients()[0]
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// Create a service and proxy instance
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var err error
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// Create a service and proxy instance
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serviceOpts := libservice.ServiceOpts{
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Name: libservice.StaticServerServiceName,
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ID: "static-server",
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Meta: map[string]string{"version": ""},
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HTTPPort: 8080,
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GRPCPort: 8079,
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}
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serverService, serverSidecarService, err = libservice.CreateAndRegisterStaticServerAndSidecar(clientNode, &serviceOpts)
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require.NoError(t, err)
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libassert.CatalogServiceExists(t, acceptingClient, libservice.StaticServerServiceName, nil)
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libassert.CatalogServiceExists(t, acceptingClient, "static-server-sidecar-proxy", nil)
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require.NoError(t, serverService.Export("default", AcceptingPeerName, acceptingClient))
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}
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// Register a static-client service in dialing cluster and set upstream to static-server service
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var clientSidecarService *libservice.ConnectContainer
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{
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clientNode := dialingCluster.Clients()[0]
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// Create a service and proxy instance
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var err error
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clientSidecarService, err = libservice.CreateAndRegisterStaticClientSidecar(clientNode, DialingPeerName, true, false, nil)
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require.NoError(t, err)
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libassert.CatalogServiceExists(t, dialingClient, "static-client-sidecar-proxy", nil)
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}
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_, adminPort := clientSidecarService.GetAdminAddr()
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libassert.AssertUpstreamEndpointStatus(t, adminPort, fmt.Sprintf("static-server.default.%s.external", DialingPeerName), "HEALTHY", 1)
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_, port := clientSidecarService.GetAddr()
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libassert.HTTPServiceEchoes(t, "localhost", port, "")
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libassert.AssertFortioName(t, fmt.Sprintf("http://localhost:%d", port), libservice.StaticServerServiceName, "")
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return &BuiltCluster{
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Cluster: acceptingCluster,
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Context: acceptingCtx,
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Service: serverSidecarService,
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Container: serverSidecarService,
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Gateway: acceptingClusterGateway,
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},
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&BuiltCluster{
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Cluster: dialingCluster,
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Context: dialingCtx,
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Service: nil,
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Container: clientSidecarService,
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Gateway: dialingClusterGateway,
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}
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}
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type ClusterConfig struct {
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NumServers int
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NumClients int
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ApplyDefaultProxySettings bool
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BuildOpts *libcluster.BuildOptions
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Cmd string
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LogConsumer *TestLogConsumer
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// Exposed Ports are available on the cluster's pause container for the purposes
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// of adding external communication to the cluster. An example would be a listener
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// on a gateway.
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ExposedPorts []int
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}
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func NewCluster(
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t *testing.T,
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config *ClusterConfig,
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) (*libcluster.Cluster, *libcluster.BuildContext, *api.Client) {
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return NewClusterWithConfig(t, config, "", "")
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}
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// NewCluster creates a cluster with peering enabled. It also creates
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// and registers a mesh-gateway at the client agent. The API client returned is
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// pointed at the client agent.
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// - proxy-defaults.protocol = tcp
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func NewClusterWithConfig(
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t *testing.T,
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config *ClusterConfig,
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serverHclConfig string,
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clientHclConfig string,
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) (*libcluster.Cluster, *libcluster.BuildContext, *api.Client) {
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var (
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cluster *libcluster.Cluster
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err error
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)
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require.NotEmpty(t, config.BuildOpts.Datacenter)
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require.True(t, config.NumServers > 0)
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opts := libcluster.BuildOptions{
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Datacenter: config.BuildOpts.Datacenter,
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InjectAutoEncryption: config.BuildOpts.InjectAutoEncryption,
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InjectGossipEncryption: true,
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AllowHTTPAnyway: true,
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ConsulVersion: config.BuildOpts.ConsulVersion,
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ACLEnabled: config.BuildOpts.ACLEnabled,
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LogStore: config.BuildOpts.LogStore,
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}
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ctx := libcluster.NewBuildContext(t, opts)
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serverConf := libcluster.NewConfigBuilder(ctx).
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Bootstrap(config.NumServers).
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Peering(true).
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ToAgentConfig(t)
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t.Logf("%s server config: \n%s", opts.Datacenter, serverConf.JSON)
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// optional
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if config.LogConsumer != nil {
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serverConf.LogConsumer = config.LogConsumer
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}
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t.Logf("Cluster config:\n%s", serverConf.JSON)
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// optional custom cmd
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if config.Cmd != "" {
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serverConf.Cmd = append(serverConf.Cmd, config.Cmd)
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}
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if serverHclConfig != "" {
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serverConf.MutatebyAgentConfig(serverHclConfig)
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}
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if config.ExposedPorts != nil {
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cluster, err = libcluster.New(t, []libcluster.Config{*serverConf}, config.ExposedPorts...)
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} else {
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cluster, err = libcluster.NewN(t, *serverConf, config.NumServers)
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}
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require.NoError(t, err)
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// builder generates certs for us, so copy them back
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if opts.InjectAutoEncryption {
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cluster.CACert = serverConf.CACert
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}
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var retryJoin []string
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for i := 0; i < config.NumServers; i++ {
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retryJoin = append(retryJoin, fmt.Sprintf("agent-%d", i))
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}
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// Add numClients static clients to register the service
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configBuilder := libcluster.NewConfigBuilder(ctx).
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Client().
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Peering(true).
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RetryJoin(retryJoin...)
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if cluster.TokenBootstrap != "" {
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configBuilder.SetACLToken(cluster.TokenBootstrap)
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}
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clientConf := configBuilder.ToAgentConfig(t)
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t.Logf("%s client config: \n%s", opts.Datacenter, clientConf.JSON)
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if clientHclConfig != "" {
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clientConf.MutatebyAgentConfig(clientHclConfig)
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}
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require.NoError(t, cluster.AddN(*clientConf, config.NumClients, true))
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// Use the client agent as the HTTP endpoint since we will not rotate it in many tests.
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var client *api.Client
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if config.NumClients > 0 {
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clientNode := cluster.Agents[config.NumServers]
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client = clientNode.GetClient()
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} else {
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client = cluster.Agents[0].GetClient()
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}
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libcluster.WaitForLeader(t, cluster, client)
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libcluster.WaitForMembers(t, client, config.NumServers+config.NumClients)
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// Default Proxy Settings
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if config.ApplyDefaultProxySettings {
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ok, err := utils.ApplyDefaultProxySettings(client)
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require.NoError(t, err)
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require.True(t, ok)
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}
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return cluster, ctx, client
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}
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type TestLogConsumer struct {
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Msgs []string
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}
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func (g *TestLogConsumer) Accept(l testcontainers.Log) {
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g.Msgs = append(g.Msgs, string(l.Content))
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}
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