367 lines
11 KiB
Go
367 lines
11 KiB
Go
package xds
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import (
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"errors"
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"fmt"
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envoy "github.com/envoyproxy/go-control-plane/envoy/api/v2"
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envoycore "github.com/envoyproxy/go-control-plane/envoy/api/v2/core"
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envoyendpoint "github.com/envoyproxy/go-control-plane/envoy/api/v2/endpoint"
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"github.com/gogo/protobuf/proto"
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"github.com/hashicorp/consul/agent/connect"
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"github.com/hashicorp/consul/agent/proxycfg"
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"github.com/hashicorp/consul/agent/structs"
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"github.com/hashicorp/consul/api"
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bexpr "github.com/hashicorp/go-bexpr"
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)
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// endpointsFromSnapshot returns the xDS API representation of the "endpoints"
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func (s *Server) endpointsFromSnapshot(cfgSnap *proxycfg.ConfigSnapshot, token string) ([]proto.Message, error) {
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if cfgSnap == nil {
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return nil, errors.New("nil config given")
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}
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switch cfgSnap.Kind {
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case structs.ServiceKindConnectProxy:
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return s.endpointsFromSnapshotConnectProxy(cfgSnap, token)
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case structs.ServiceKindMeshGateway:
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return s.endpointsFromSnapshotMeshGateway(cfgSnap, token)
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default:
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return nil, fmt.Errorf("Invalid service kind: %v", cfgSnap.Kind)
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}
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}
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// endpointsFromSnapshotConnectProxy returns the xDS API representation of the "endpoints"
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// (upstream instances) in the snapshot.
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func (s *Server) endpointsFromSnapshotConnectProxy(cfgSnap *proxycfg.ConfigSnapshot, token string) ([]proto.Message, error) {
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resources := make([]proto.Message, 0,
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len(cfgSnap.ConnectProxy.UpstreamEndpoints)+len(cfgSnap.ConnectProxy.WatchedUpstreamEndpoints))
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for _, u := range cfgSnap.Proxy.Upstreams {
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id := u.Identifier()
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var chain *structs.CompiledDiscoveryChain
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if u.DestinationType != structs.UpstreamDestTypePreparedQuery {
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chain = cfgSnap.ConnectProxy.DiscoveryChain[id]
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}
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if chain == nil {
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// We ONLY want this branch for prepared queries.
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dc := u.Datacenter
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if dc == "" {
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dc = cfgSnap.Datacenter
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}
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clusterName := connect.UpstreamSNI(&u, "", dc, cfgSnap.Roots.TrustDomain)
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endpoints, ok := cfgSnap.ConnectProxy.UpstreamEndpoints[id]
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if ok {
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la := makeLoadAssignment(
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clusterName,
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[]loadAssignmentEndpointGroup{
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{Endpoints: endpoints},
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},
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cfgSnap.Datacenter,
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)
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resources = append(resources, la)
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}
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} else {
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// Newfangled discovery chain plumbing.
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// Find all resolver nodes.
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for _, node := range chain.Nodes {
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if node.Type != structs.DiscoveryGraphNodeTypeResolver {
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continue
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}
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failover := node.Resolver.Failover
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targetID := node.Resolver.Target
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target := chain.Targets[targetID]
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clusterName := CustomizeClusterName(target.Name, chain)
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// Determine if we have to generate the entire cluster differently.
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failoverThroughMeshGateway := chain.WillFailoverThroughMeshGateway(node)
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if failoverThroughMeshGateway {
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actualTargetID := firstHealthyTarget(
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chain.Targets,
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cfgSnap.ConnectProxy.WatchedUpstreamEndpoints[id],
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targetID,
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failover.Targets,
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)
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if actualTargetID != targetID {
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targetID = actualTargetID
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target = chain.Targets[actualTargetID]
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}
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failover = nil
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}
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primaryGroup, valid := makeLoadAssignmentEndpointGroup(
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chain.Targets,
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cfgSnap.ConnectProxy.WatchedUpstreamEndpoints[id],
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cfgSnap.ConnectProxy.WatchedGatewayEndpoints[id],
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targetID,
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cfgSnap.Datacenter,
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)
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if !valid {
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continue // skip the cluster if we're still populating the snapshot
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}
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var endpointGroups []loadAssignmentEndpointGroup
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if failover != nil && len(failover.Targets) > 0 {
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endpointGroups = make([]loadAssignmentEndpointGroup, 0, len(failover.Targets)+1)
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endpointGroups = append(endpointGroups, primaryGroup)
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for _, failTargetID := range failover.Targets {
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failoverGroup, valid := makeLoadAssignmentEndpointGroup(
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chain.Targets,
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cfgSnap.ConnectProxy.WatchedUpstreamEndpoints[id],
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cfgSnap.ConnectProxy.WatchedGatewayEndpoints[id],
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failTargetID,
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cfgSnap.Datacenter,
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)
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if !valid {
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continue // skip the failover target if we're still populating the snapshot
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}
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endpointGroups = append(endpointGroups, failoverGroup)
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}
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} else {
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endpointGroups = append(endpointGroups, primaryGroup)
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}
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la := makeLoadAssignment(
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clusterName,
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endpointGroups,
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cfgSnap.Datacenter,
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)
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resources = append(resources, la)
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}
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}
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}
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return resources, nil
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}
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func (s *Server) endpointsFromSnapshotMeshGateway(cfgSnap *proxycfg.ConfigSnapshot, token string) ([]proto.Message, error) {
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resources := make([]proto.Message, 0, len(cfgSnap.MeshGateway.GatewayGroups)+len(cfgSnap.MeshGateway.ServiceGroups))
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// generate the endpoints for the gateways in the remote datacenters
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for dc, endpoints := range cfgSnap.MeshGateway.GatewayGroups {
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clusterName := connect.DatacenterSNI(dc, cfgSnap.Roots.TrustDomain)
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la := makeLoadAssignment(
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clusterName,
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[]loadAssignmentEndpointGroup{
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{Endpoints: endpoints},
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},
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cfgSnap.Datacenter,
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)
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resources = append(resources, la)
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}
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// generate the endpoints for the local service groups
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for svc, endpoints := range cfgSnap.MeshGateway.ServiceGroups {
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clusterName := connect.ServiceSNI(svc, "", "default", cfgSnap.Datacenter, cfgSnap.Roots.TrustDomain)
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la := makeLoadAssignment(
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clusterName,
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[]loadAssignmentEndpointGroup{
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{Endpoints: endpoints},
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},
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cfgSnap.Datacenter,
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)
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resources = append(resources, la)
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}
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// generate the endpoints for the service subsets
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for svc, resolver := range cfgSnap.MeshGateway.ServiceResolvers {
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for subsetName, subset := range resolver.Subsets {
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clusterName := connect.ServiceSNI(svc, subsetName, "default", cfgSnap.Datacenter, cfgSnap.Roots.TrustDomain)
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endpoints := cfgSnap.MeshGateway.ServiceGroups[svc]
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// locally execute the subsets filter
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if subset.Filter != "" {
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filter, err := bexpr.CreateFilter(subset.Filter, nil, endpoints)
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if err != nil {
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return nil, err
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}
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raw, err := filter.Execute(endpoints)
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if err != nil {
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return nil, err
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}
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endpoints = raw.(structs.CheckServiceNodes)
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}
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la := makeLoadAssignment(
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clusterName,
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[]loadAssignmentEndpointGroup{
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{
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Endpoints: endpoints,
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OnlyPassing: subset.OnlyPassing,
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},
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},
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cfgSnap.Datacenter,
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)
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resources = append(resources, la)
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}
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}
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return resources, nil
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}
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func makeEndpoint(clusterName, host string, port int) envoyendpoint.LbEndpoint {
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return envoyendpoint.LbEndpoint{
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HostIdentifier: &envoyendpoint.LbEndpoint_Endpoint{
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Endpoint: &envoyendpoint.Endpoint{
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Address: makeAddressPtr(host, port),
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},
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},
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}
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}
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type loadAssignmentEndpointGroup struct {
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Endpoints structs.CheckServiceNodes
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OnlyPassing bool
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OverrideHealth envoycore.HealthStatus
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}
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func makeLoadAssignment(clusterName string, endpointGroups []loadAssignmentEndpointGroup, localDatacenter string) *envoy.ClusterLoadAssignment {
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cla := &envoy.ClusterLoadAssignment{
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ClusterName: clusterName,
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Endpoints: make([]envoyendpoint.LocalityLbEndpoints, 0, len(endpointGroups)),
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}
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if len(endpointGroups) > 1 {
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cla.Policy = &envoy.ClusterLoadAssignment_Policy{
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// We choose such a large value here that the failover math should
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// in effect not happen until zero instances are healthy.
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OverprovisioningFactor: makeUint32Value(100000),
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}
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}
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for priority, endpointGroup := range endpointGroups {
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endpoints := endpointGroup.Endpoints
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es := make([]envoyendpoint.LbEndpoint, 0, len(endpoints))
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for _, ep := range endpoints {
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// TODO (mesh-gateway) - should we respect the translate_wan_addrs configuration here or just always use the wan for cross-dc?
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addr, port := ep.BestAddress(localDatacenter != ep.Node.Datacenter)
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healthStatus, weight := calculateEndpointHealthAndWeight(ep, endpointGroup.OnlyPassing)
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if endpointGroup.OverrideHealth != envoycore.HealthStatus_UNKNOWN {
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healthStatus = endpointGroup.OverrideHealth
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}
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es = append(es, envoyendpoint.LbEndpoint{
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HostIdentifier: &envoyendpoint.LbEndpoint_Endpoint{
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Endpoint: &envoyendpoint.Endpoint{
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Address: makeAddressPtr(addr, port),
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},
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},
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HealthStatus: healthStatus,
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LoadBalancingWeight: makeUint32Value(weight),
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})
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}
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cla.Endpoints = append(cla.Endpoints, envoyendpoint.LocalityLbEndpoints{
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Priority: uint32(priority),
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LbEndpoints: es,
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})
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}
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return cla
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}
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func makeLoadAssignmentEndpointGroup(
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targets map[string]*structs.DiscoveryTarget,
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targetHealth map[string]structs.CheckServiceNodes,
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gatewayHealth map[string]structs.CheckServiceNodes,
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targetID string,
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currentDatacenter string,
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) (loadAssignmentEndpointGroup, bool) {
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realEndpoints, ok := targetHealth[targetID]
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if !ok {
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// skip the cluster if we're still populating the snapshot
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return loadAssignmentEndpointGroup{}, false
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}
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target := targets[targetID]
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var gatewayDatacenter string
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switch target.MeshGateway.Mode {
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case structs.MeshGatewayModeRemote:
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gatewayDatacenter = target.Datacenter
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case structs.MeshGatewayModeLocal:
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gatewayDatacenter = currentDatacenter
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}
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if gatewayDatacenter == "" {
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return loadAssignmentEndpointGroup{
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Endpoints: realEndpoints,
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OnlyPassing: target.Subset.OnlyPassing,
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}, true
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}
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// If using a mesh gateway we need to pull those endpoints instead.
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gatewayEndpoints, ok := gatewayHealth[gatewayDatacenter]
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if !ok {
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// skip the cluster if we're still populating the snapshot
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return loadAssignmentEndpointGroup{}, false
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}
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// But we will use the health from the actual backend service.
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overallHealth := envoycore.HealthStatus_UNHEALTHY
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for _, ep := range realEndpoints {
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health, _ := calculateEndpointHealthAndWeight(ep, target.Subset.OnlyPassing)
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if health == envoycore.HealthStatus_HEALTHY {
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overallHealth = envoycore.HealthStatus_HEALTHY
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break
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}
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}
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return loadAssignmentEndpointGroup{
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Endpoints: gatewayEndpoints,
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OverrideHealth: overallHealth,
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}, true
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}
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func calculateEndpointHealthAndWeight(
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ep structs.CheckServiceNode,
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onlyPassing bool,
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) (envoycore.HealthStatus, int) {
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healthStatus := envoycore.HealthStatus_HEALTHY
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weight := 1
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if ep.Service.Weights != nil {
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weight = ep.Service.Weights.Passing
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}
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for _, chk := range ep.Checks {
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if chk.Status == api.HealthCritical {
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healthStatus = envoycore.HealthStatus_UNHEALTHY
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}
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if onlyPassing && chk.Status != api.HealthPassing {
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healthStatus = envoycore.HealthStatus_UNHEALTHY
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}
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if chk.Status == api.HealthWarning && ep.Service.Weights != nil {
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weight = ep.Service.Weights.Warning
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}
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}
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// Make weights fit Envoy's limits. A zero weight means that either Warning
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// (likely) or Passing (weirdly) weight has been set to 0 effectively making
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// this instance unhealthy and should not be sent traffic.
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if weight < 1 {
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healthStatus = envoycore.HealthStatus_UNHEALTHY
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weight = 1
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}
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if weight > 128 {
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weight = 128
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}
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return healthStatus, weight
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}
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