574 lines
18 KiB
Go
574 lines
18 KiB
Go
package nomad
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import (
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"fmt"
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"strings"
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"time"
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"github.com/hashicorp/nomad/client/taskenv"
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"github.com/hashicorp/nomad/helper"
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"github.com/hashicorp/nomad/helper/envoy"
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"github.com/hashicorp/nomad/helper/uuid"
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"github.com/hashicorp/nomad/nomad/structs"
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"github.com/pkg/errors"
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)
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const (
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// defaultConnectTimeout is the default amount of time a connect gateway will
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// wait for a response from an upstream service (same as consul)
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defaultConnectTimeout = 5 * time.Second
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)
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// connectSidecarResources returns the set of resources used by default for
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// the Consul Connect sidecar task
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func connectSidecarResources() *structs.Resources {
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return &structs.Resources{
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CPU: 250,
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MemoryMB: 128,
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}
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}
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// connectSidecarDriverConfig is the driver configuration used by the injected
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// connect proxy sidecar task.
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func connectSidecarDriverConfig() map[string]interface{} {
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return map[string]interface{}{
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"image": envoy.SidecarConfigVar,
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"args": []interface{}{
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"-c", structs.EnvoyBootstrapPath,
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"-l", "${meta.connect.log_level}",
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"--concurrency", "${meta.connect.proxy_concurrency}",
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"--disable-hot-restart",
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},
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}
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}
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// connectGatewayDriverConfig is the Docker driver configuration used by the
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// injected connect proxy sidecar task.
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//
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// A gateway may run in a group with bridge or host networking, and if host
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// networking is being used the network_mode driver configuration is set here.
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func connectGatewayDriverConfig(hostNetwork bool) map[string]interface{} {
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m := map[string]interface{}{
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"image": envoy.GatewayConfigVar,
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"args": []interface{}{
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"-c", structs.EnvoyBootstrapPath,
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"-l", "${meta.connect.log_level}",
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"--concurrency", "${meta.connect.proxy_concurrency}",
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"--disable-hot-restart",
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},
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}
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if hostNetwork {
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m["network_mode"] = "host"
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}
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return m
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}
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// connectSidecarVersionConstraint is used when building the sidecar task to ensure
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// the proper Consul version is used that supports the necessary Connect
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// features. This includes bootstrapping envoy with a unix socket for Consul's
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// gRPC xDS API.
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func connectSidecarVersionConstraint() *structs.Constraint {
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return &structs.Constraint{
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LTarget: "${attr.consul.version}",
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RTarget: ">= 1.6.0-beta1",
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Operand: structs.ConstraintSemver,
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}
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}
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// connectGatewayVersionConstraint is used when building a connect gateway
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// task to ensure proper Consul version is used that supports Connect Gateway
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// features. This includes making use of Consul Configuration Entries of type
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// {ingress,terminating,mesh}-gateway.
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func connectGatewayVersionConstraint() *structs.Constraint {
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return &structs.Constraint{
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LTarget: "${attr.consul.version}",
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RTarget: ">= 1.8.0",
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Operand: structs.ConstraintSemver,
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}
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}
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func connectListenerConstraint() *structs.Constraint {
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return &structs.Constraint{
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LTarget: "${attr.consul.grpc}",
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RTarget: "0",
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Operand: ">",
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}
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}
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// jobConnectHook implements a job Mutating and Validating admission controller
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type jobConnectHook struct{}
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func (jobConnectHook) Name() string {
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return "connect"
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}
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func (jobConnectHook) Mutate(job *structs.Job) (*structs.Job, []error, error) {
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for _, g := range job.TaskGroups {
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// TG isn't validated yet, but validation
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// may depend on mutation results.
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// Do basic validation here and skip mutation,
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// so Validate can return a meaningful error
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// messages
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if len(g.Networks) == 0 {
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continue
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}
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if err := groupConnectHook(job, g); err != nil {
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return nil, nil, err
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}
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}
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return job, nil, nil
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}
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func (jobConnectHook) Validate(job *structs.Job) ([]error, error) {
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var warnings []error
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for _, g := range job.TaskGroups {
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if err := groupConnectValidate(g); err != nil {
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return nil, err
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}
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}
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return warnings, nil
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}
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// getSidecarTaskForService looks for the sidecar task for a given service within
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// a task group. If no sidecar task is found nil is returned
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func getSidecarTaskForService(tg *structs.TaskGroup, svc string) *structs.Task {
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for _, t := range tg.Tasks {
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if isSidecarForService(t, svc) {
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return t
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}
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}
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return nil
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}
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func isSidecarForService(t *structs.Task, service string) bool {
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return t.Kind == structs.NewTaskKind(structs.ConnectProxyPrefix, service)
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}
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func hasGatewayTaskForService(tg *structs.TaskGroup, service string) bool {
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for _, t := range tg.Tasks {
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switch {
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case isIngressGatewayForService(t, service):
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return true
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case isTerminatingGatewayForService(t, service):
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return true
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case isMeshGatewayForService(t, service):
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return true
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}
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}
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return false
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}
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func isIngressGatewayForService(t *structs.Task, svc string) bool {
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return t.Kind == structs.NewTaskKind(structs.ConnectIngressPrefix, svc)
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}
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func isTerminatingGatewayForService(t *structs.Task, svc string) bool {
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return t.Kind == structs.NewTaskKind(structs.ConnectTerminatingPrefix, svc)
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}
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func isMeshGatewayForService(t *structs.Task, svc string) bool {
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return t.Kind == structs.NewTaskKind(structs.ConnectMeshPrefix, svc)
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}
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// getNamedTaskForNativeService retrieves the Task with the name specified in the
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// group service definition. If the task name is empty and there is only one task
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// in the group, infer the name from the only option.
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func getNamedTaskForNativeService(tg *structs.TaskGroup, serviceName, taskName string) (*structs.Task, error) {
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if taskName == "" {
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if len(tg.Tasks) == 1 {
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return tg.Tasks[0], nil
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}
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return nil, errors.Errorf("task for Consul Connect Native service %s->%s is ambiguous and must be set", tg.Name, serviceName)
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}
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for _, t := range tg.Tasks {
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if t.Name == taskName {
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return t, nil
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}
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}
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return nil, errors.Errorf("task %s named by Consul Connect Native service %s->%s does not exist", taskName, tg.Name, serviceName)
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}
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func injectPort(group *structs.TaskGroup, label string) {
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// check that port hasn't already been defined before adding it to tg
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for _, p := range group.Networks[0].DynamicPorts {
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if p.Label == label {
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return
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}
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}
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// inject a port of label that maps inside the bridge namespace
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group.Networks[0].DynamicPorts = append(group.Networks[0].DynamicPorts, structs.Port{
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Label: label,
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// -1 is a sentinel value to instruct the
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// scheduler to map the host's dynamic port to
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// the same port in the netns.
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To: -1,
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})
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}
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func groupConnectHook(job *structs.Job, g *structs.TaskGroup) error {
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// Create an environment interpolator with what we have at submission time.
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// This should only be used to interpolate connect service names which are
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// used in sidecar or gateway task names. Note that the service name might
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// also be interpolated with job specifics during service canonicalization.
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env := taskenv.NewEmptyBuilder().UpdateTask(&structs.Allocation{
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Job: job,
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TaskGroup: g.Name,
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}, nil).Build()
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for _, service := range g.Services {
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switch {
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// mutate depending on what the connect block is being used for
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case service.Connect.HasSidecar():
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// interpolate the connect service name, which is used to create
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// a name of an injected sidecar task
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service.Name = env.ReplaceEnv(service.Name)
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// Check to see if the sidecar task already exists
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task := getSidecarTaskForService(g, service.Name)
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// If the task doesn't already exist, create a new one and add it to the job
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if task == nil {
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task = newConnectSidecarTask(service.Name)
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// If there happens to be a task defined with the same name
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// append an UUID fragment to the task name
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for _, t := range g.Tasks {
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if t.Name == task.Name {
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task.Name = task.Name + "-" + uuid.Generate()[:6]
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break
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}
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}
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g.Tasks = append(g.Tasks, task)
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}
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if service.Connect.SidecarTask != nil {
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service.Connect.SidecarTask.MergeIntoTask(task)
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}
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// Canonicalize task since this mutator runs after job canonicalization
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task.Canonicalize(job, g)
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// create a port for the sidecar task's proxy port
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portLabel := service.Connect.SidecarService.Port
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if portLabel == "" {
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portLabel = envoy.PortLabel(structs.ConnectProxyPrefix, service.Name, "")
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}
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injectPort(g, portLabel)
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case service.Connect.IsNative():
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// find the task backing this connect native service and set the kind
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nativeTaskName := service.TaskName
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if t, err := getNamedTaskForNativeService(g, service.Name, nativeTaskName); err != nil {
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return err
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} else {
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t.Kind = structs.NewTaskKind(structs.ConnectNativePrefix, service.Name)
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service.TaskName = t.Name // in case the task was inferred
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}
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case service.Connect.IsGateway():
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// interpolate the connect service name, which is used to create
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// a name of an injected gateway task
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service.Name = env.ReplaceEnv(service.Name)
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// Generate a proxy configuration, if one is not provided, that is
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// most appropriate for the network mode being used.
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netMode := g.Networks[0].Mode
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service.Connect.Gateway.Proxy = gatewayProxy(service.Connect.Gateway, netMode)
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// Inject a port whether bridge or host network (if not already set).
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// This port is accessed by the magic of Connect plumbing so it seems
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// reasonable to keep the magic alive here.
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if service.Connect.IsTerminating() && service.PortLabel == "" {
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// Inject a dynamic port for the terminating gateway.
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portLabel := envoy.PortLabel(structs.ConnectTerminatingPrefix, service.Name, "")
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service.PortLabel = portLabel
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injectPort(g, portLabel)
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}
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// A mesh Gateway will need 2 ports (lan and wan).
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if service.Connect.IsMesh() {
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// service port is used for mesh gateway wan address - it should
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// come from a configured host_network to make sense
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if service.PortLabel == "" {
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return errors.New("service.port must be set for mesh gateway service")
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}
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// Inject a dynamic port for mesh gateway LAN address.
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lanPortLabel := envoy.PortLabel(structs.ConnectMeshPrefix, service.Name, "lan")
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injectPort(g, lanPortLabel)
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}
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// inject the gateway task only if it does not yet already exist
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if !hasGatewayTaskForService(g, service.Name) {
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prefix := service.Connect.Gateway.Prefix()
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// detect whether the group is in host networking mode, which will
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// require tweaking the default gateway task config
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netHost := netMode == "host"
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task := newConnectGatewayTask(prefix, service.Name, netHost)
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g.Tasks = append(g.Tasks, task)
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// the connect.sidecar_task stanza can also be used to configure
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// a custom task to use as a gateway proxy
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if service.Connect.SidecarTask != nil {
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service.Connect.SidecarTask.MergeIntoTask(task)
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}
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task.Canonicalize(job, g)
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}
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}
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}
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// re-canonicalize group network since this hook runs after canonicalizaton
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g.Networks[0].Canonicalize()
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return nil
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}
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// gatewayProxyIsDefault returns false if any of these gateway proxy configuration
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// have been modified from their default values, indicating the operator wants
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// custom behavior. Otherwise, we assume the operator wants Nomad to do the Right
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// Thing, setting the configuration automatically.
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//
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// - envoy_gateway_no_default_bind
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// - envoy_gateway_bind_tagged_addresses
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// - envoy_gateway_bind_addresses
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func gatewayProxyIsDefault(proxy *structs.ConsulGatewayProxy) bool {
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if proxy == nil {
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return true
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}
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if !proxy.EnvoyGatewayNoDefaultBind &&
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!proxy.EnvoyGatewayBindTaggedAddresses &&
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len(proxy.EnvoyGatewayBindAddresses) == 0 {
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return true
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}
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return false
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}
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// gatewayProxy scans an existing gateway proxy configuration and tweaks it
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// given an associated configuration entry so that it works as intended with
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// the network mode specified.
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func gatewayProxy(gateway *structs.ConsulGateway, mode string) *structs.ConsulGatewayProxy {
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if gateway == nil {
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return nil
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}
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// operator has supplied custom proxy configuration, just use that without
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// modification
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if !gatewayProxyIsDefault(gateway.Proxy) {
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return gateway.Proxy
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}
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// copy over unrelated fields if proxy block exists
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proxy := new(structs.ConsulGatewayProxy)
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if gateway.Proxy != nil {
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proxy.ConnectTimeout = gateway.Proxy.ConnectTimeout
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proxy.EnvoyDNSDiscoveryType = gateway.Proxy.EnvoyDNSDiscoveryType
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proxy.Config = gateway.Proxy.Config
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}
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// set default connect timeout if not set
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if proxy.ConnectTimeout == nil {
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proxy.ConnectTimeout = helper.TimeToPtr(defaultConnectTimeout)
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}
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if mode == "bridge" {
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// magically configure bind address(es) for bridge networking, per gateway type
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// non-default configuration is gated above
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switch {
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case gateway.Ingress != nil:
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proxy.EnvoyGatewayNoDefaultBind = true
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proxy.EnvoyGatewayBindTaggedAddresses = false
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proxy.EnvoyGatewayBindAddresses = gatewayBindAddressesIngressForBridge(gateway.Ingress)
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case gateway.Terminating != nil:
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proxy.EnvoyGatewayNoDefaultBind = true
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proxy.EnvoyGatewayBindTaggedAddresses = false
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proxy.EnvoyGatewayBindAddresses = map[string]*structs.ConsulGatewayBindAddress{
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"default": {
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Address: "0.0.0.0",
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Port: -1, // filled in later with dynamic port
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}}
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case gateway.Mesh != nil:
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proxy.EnvoyGatewayNoDefaultBind = true
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proxy.EnvoyGatewayBindTaggedAddresses = false
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proxy.EnvoyGatewayBindAddresses = map[string]*structs.ConsulGatewayBindAddress{
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"wan": {
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Address: "0.0.0.0",
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Port: -1, // filled in later with configured port
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},
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"lan": {
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Address: "0.0.0.0",
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Port: -1, // filled in later with generated port
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},
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}
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}
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}
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return proxy
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}
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func gatewayBindAddressesIngressForBridge(ingress *structs.ConsulIngressConfigEntry) map[string]*structs.ConsulGatewayBindAddress {
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if ingress == nil || len(ingress.Listeners) == 0 {
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return make(map[string]*structs.ConsulGatewayBindAddress)
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}
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addresses := make(map[string]*structs.ConsulGatewayBindAddress)
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for _, listener := range ingress.Listeners {
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port := listener.Port
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for _, service := range listener.Services {
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addresses[service.Name] = &structs.ConsulGatewayBindAddress{
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Address: "0.0.0.0",
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Port: port,
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}
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}
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}
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return addresses
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}
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func newConnectGatewayTask(prefix, service string, netHost bool) *structs.Task {
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return &structs.Task{
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// Name is used in container name so must start with '[A-Za-z0-9]'
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Name: fmt.Sprintf("%s-%s", prefix, service),
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Kind: structs.NewTaskKind(prefix, service),
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Driver: "docker",
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Config: connectGatewayDriverConfig(netHost),
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ShutdownDelay: 5 * time.Second,
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LogConfig: &structs.LogConfig{
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MaxFiles: 2,
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MaxFileSizeMB: 2,
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},
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Resources: connectSidecarResources(),
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Constraints: structs.Constraints{
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connectGatewayVersionConstraint(),
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connectListenerConstraint(),
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},
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}
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}
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func newConnectSidecarTask(service string) *structs.Task {
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return &structs.Task{
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// Name is used in container name so must start with '[A-Za-z0-9]'
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Name: fmt.Sprintf("%s-%s", structs.ConnectProxyPrefix, service),
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Kind: structs.NewTaskKind(structs.ConnectProxyPrefix, service),
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Driver: "docker",
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Config: connectSidecarDriverConfig(),
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ShutdownDelay: 5 * time.Second,
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LogConfig: &structs.LogConfig{
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MaxFiles: 2,
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MaxFileSizeMB: 2,
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},
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Resources: connectSidecarResources(),
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Lifecycle: &structs.TaskLifecycleConfig{
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Hook: structs.TaskLifecycleHookPrestart,
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Sidecar: true,
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},
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Constraints: structs.Constraints{
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connectSidecarVersionConstraint(),
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connectListenerConstraint(),
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},
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}
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}
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func groupConnectValidate(g *structs.TaskGroup) error {
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for _, s := range g.Services {
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switch {
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case s.Connect.HasSidecar():
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if err := groupConnectSidecarValidate(g, s); err != nil {
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return err
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}
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case s.Connect.IsNative():
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if err := groupConnectNativeValidate(g, s); err != nil {
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return err
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}
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case s.Connect.IsGateway():
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if err := groupConnectGatewayValidate(g); err != nil {
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return err
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}
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}
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}
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if err := groupConnectUpstreamsValidate(g.Name, g.Services); err != nil {
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return err
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}
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return nil
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}
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func groupConnectUpstreamsValidate(group string, services []*structs.Service) error {
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listeners := make(map[string]string) // address -> service
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for _, service := range services {
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if service.Connect.HasSidecar() && service.Connect.SidecarService.Proxy != nil {
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for _, up := range service.Connect.SidecarService.Proxy.Upstreams {
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listener := fmt.Sprintf("%s:%d", up.LocalBindAddress, up.LocalBindPort)
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if s, exists := listeners[listener]; exists {
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return fmt.Errorf(
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"Consul Connect services %q and %q in group %q using same address for upstreams (%s)",
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service.Name, s, group, listener,
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)
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}
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listeners[listener] = service.Name
|
|
}
|
|
}
|
|
}
|
|
return nil
|
|
}
|
|
|
|
func groupConnectSidecarValidate(g *structs.TaskGroup, s *structs.Service) error {
|
|
if n := len(g.Networks); n != 1 {
|
|
return fmt.Errorf("Consul Connect sidecars require exactly 1 network, found %d in group %q", n, g.Name)
|
|
}
|
|
|
|
if g.Networks[0].Mode != "bridge" {
|
|
return fmt.Errorf("Consul Connect sidecar requires bridge network, found %q in group %q", g.Networks[0].Mode, g.Name)
|
|
}
|
|
|
|
// We must enforce lowercase characters on group and service names for connect
|
|
// sidecar proxies, because Consul assumes this invariant without validating it.
|
|
// https://github.com/hashicorp/consul/blob/v1.9.5/command/connect/proxy/proxy.go#L235
|
|
|
|
if s.Name != strings.ToLower(s.Name) {
|
|
return fmt.Errorf("Consul Connect service name %q in group %q must not contain uppercase characters", s.Name, g.Name)
|
|
}
|
|
|
|
if g.Name != strings.ToLower(g.Name) {
|
|
return fmt.Errorf("Consul Connect group %q with service %q must not contain uppercase characters", g.Name, s.Name)
|
|
}
|
|
|
|
return nil
|
|
}
|
|
|
|
func groupConnectNativeValidate(g *structs.TaskGroup, s *structs.Service) error {
|
|
// note that network mode is not enforced for connect native services
|
|
|
|
if _, err := getNamedTaskForNativeService(g, s.Name, s.TaskName); err != nil {
|
|
return err
|
|
}
|
|
return nil
|
|
}
|
|
|
|
func groupConnectGatewayValidate(g *structs.TaskGroup) error {
|
|
// the group needs to be either bridge or host mode so we know how to configure
|
|
// the docker driver config
|
|
|
|
if n := len(g.Networks); n != 1 {
|
|
return fmt.Errorf("Consul Connect gateways require exactly 1 network, found %d in group %q", n, g.Name)
|
|
}
|
|
|
|
modes := []string{"bridge", "host"}
|
|
if !helper.SliceStringContains(modes, g.Networks[0].Mode) {
|
|
return fmt.Errorf(`Consul Connect Gateway service requires Task Group with network mode of type "bridge" or "host"`)
|
|
}
|
|
|
|
return nil
|
|
}
|