243 lines
8.2 KiB
Go
243 lines
8.2 KiB
Go
package nomad
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import (
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"fmt"
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"strconv"
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"strings"
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"github.com/hashicorp/nomad/nomad/structs"
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)
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type jobExposeCheckHook struct{}
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func (jobExposeCheckHook) Name() string {
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return "expose-check"
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}
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// Mutate will scan every task group for group-services which have checks defined
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// that have the Expose field configured, and generate expose path configurations
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// extrapolated from those check definitions.
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func (jobExposeCheckHook) Mutate(job *structs.Job) (_ *structs.Job, warnings []error, err error) {
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for _, tg := range job.TaskGroups {
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for _, s := range tg.Services {
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for i, c := range s.Checks {
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if c.Expose {
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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 !s.Connect.HasSidecar() {
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continue
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}
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if exposePath, err := exposePathForCheck(tg, s, c, i); err != nil {
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return nil, nil, err
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} else if exposePath != nil {
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serviceExposeConfig := serviceExposeConfig(s)
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// insert only if not already present - required for job
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// updates which would otherwise create duplicates
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if !containsExposePath(serviceExposeConfig.Paths, *exposePath) {
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serviceExposeConfig.Paths = append(
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serviceExposeConfig.Paths, *exposePath,
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)
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}
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}
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}
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}
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}
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}
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return job, nil, nil
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}
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// Validate will ensure:
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// - The job contains valid network configuration for each task group in which
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// an expose path is configured. The network must be of type bridge mode.
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// - The check Expose field is configured only for connect-enabled group-services.
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func (jobExposeCheckHook) Validate(job *structs.Job) (warnings []error, err error) {
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for _, tg := range job.TaskGroups {
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// Make sure any group that contains a group-service that enables expose
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// is configured with one network that is in "bridge" mode. This check
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// is being done independently of the preceding Connect task injection
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// hook, because at some point in the future Connect will not require the
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// use of network namespaces, whereas the use of "expose" does not make
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// sense without the use of network namespace.
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if err := tgValidateUseOfBridgeMode(tg); err != nil {
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return nil, err
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}
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// Make sure any group-service that contains a check that enables expose
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// is connect-enabled and does not specify a custom sidecar task. We only
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// support the expose feature when using the built-in Envoy integration.
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if err := tgValidateUseOfCheckExpose(tg); err != nil {
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return nil, err
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}
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}
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return nil, nil
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}
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// serviceExposeConfig digs through s to extract the connect sidecar service proxy
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// expose configuration. It is not required of the user to provide this, so it
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// is created on demand here as needed in the case where any service check exposes
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// itself.
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//
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// The service, connect, and sidecar_service are assumed not to be nil, as they
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// are enforced in previous hooks / validation.
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func serviceExposeConfig(s *structs.Service) *structs.ConsulExposeConfig {
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if s.Connect.SidecarService.Proxy == nil {
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s.Connect.SidecarService.Proxy = new(structs.ConsulProxy)
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}
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if s.Connect.SidecarService.Proxy.Expose == nil {
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s.Connect.SidecarService.Proxy.Expose = new(structs.ConsulExposeConfig)
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}
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return s.Connect.SidecarService.Proxy.Expose
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}
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// containsExposePath returns true if path is contained in paths.
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func containsExposePath(paths []structs.ConsulExposePath, path structs.ConsulExposePath) bool {
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for _, p := range paths {
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if p == path {
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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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// tgValidateUseOfCheckExpose ensures that any service check in tg making use
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// of the expose field is within an appropriate context to do so. The check must
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// be a group level check, and must use the builtin envoy proxy.
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func tgValidateUseOfCheckExpose(tg *structs.TaskGroup) error {
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// validation for group services (which must use built-in connect proxy)
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for _, s := range tg.Services {
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for _, check := range s.Checks {
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if check.Expose && !s.Connect.HasSidecar() {
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return fmt.Errorf(
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"exposed service check %s->%s->%s requires use of sidecar_proxy",
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tg.Name, s.Name, check.Name,
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)
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}
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}
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}
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// validation for task services (which must not be configured to use Expose)
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for _, t := range tg.Tasks {
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for _, s := range t.Services {
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for _, check := range s.Checks {
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if check.Expose {
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return fmt.Errorf(
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"exposed service check %s[%s]->%s->%s is not a task-group service",
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tg.Name, t.Name, s.Name, check.Name,
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)
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}
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}
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}
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}
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return nil
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}
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// tgValidateUseOfBridgeMode ensures there is exactly 1 network configured for
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// the task group, and that it makes use of "bridge" mode (i.e. enables network
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// namespaces).
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func tgValidateUseOfBridgeMode(tg *structs.TaskGroup) error {
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if tgUsesExposeCheck(tg) {
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if len(tg.Networks) != 1 {
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return fmt.Errorf("group %q must specify one bridge network for exposing service check(s)", tg.Name)
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}
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if tg.Networks[0].Mode != "bridge" {
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return fmt.Errorf("group %q must use bridge network for exposing service check(s)", tg.Name)
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}
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}
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return nil
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}
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// tgUsesExposeCheck returns true if any group service in the task group makes
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// use of the expose field.
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func tgUsesExposeCheck(tg *structs.TaskGroup) bool {
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for _, s := range tg.Services {
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for _, check := range s.Checks {
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if check.Expose {
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return true
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}
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}
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}
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return false
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}
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// checkIsExposable returns true if check is qualified for automatic generation
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// of connect proxy expose path configuration based on configured consul checks.
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// To qualify, the check must be of type "http" or "grpc", and must have a Path
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// configured.
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func checkIsExposable(check *structs.ServiceCheck) bool {
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switch strings.ToLower(check.Type) {
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case "grpc", "http":
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return strings.HasPrefix(check.Path, "/")
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default:
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return false
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}
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}
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// exposePathForCheck extrapolates the necessary expose path configuration for
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// the given consul service check. If the check is not compatible, nil is
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// returned.
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func exposePathForCheck(tg *structs.TaskGroup, s *structs.Service, check *structs.ServiceCheck, i int) (*structs.ConsulExposePath, error) {
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if !checkIsExposable(check) {
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return nil, nil
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}
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// Borrow some of the validation before we start manipulating the group
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// network, which needs to exist once.
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if err := tgValidateUseOfBridgeMode(tg); err != nil {
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return nil, err
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}
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// If the check is exposable but doesn't have a port label set build
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// a port with a generated label, add it to the group's Dynamic ports
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// and set the check port label to the generated label.
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//
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// This lets PortLabel be optional for any exposed check.
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if check.PortLabel == "" {
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// Note: because the check label is not set yet, and we want to create a
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// deterministic label based on the check itself, use the index of the check
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// on the service as part of the service name as input into Hash, ensuring
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// the hash for the check is unique.
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suffix := check.Hash(fmt.Sprintf("%s_%d", s.Name, i))[:6]
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port := structs.Port{
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HostNetwork: "default",
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Label: fmt.Sprintf("svc_%s_ck_%s", s.Name, suffix),
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To: -1,
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}
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tg.Networks[0].DynamicPorts = append(tg.Networks[0].DynamicPorts, port)
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check.PortLabel = port.Label
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}
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// Determine the local service port (i.e. what port the service is actually
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// listening to inside the network namespace).
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//
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// Similar logic exists in getAddress of client.go which is used for
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// creating check & service registration objects.
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//
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// The difference here is the address is predestined to be localhost since
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// it is binding inside the namespace.
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var port int
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if mapping := tg.Networks.Port(s.PortLabel); mapping.Value <= 0 { // try looking up by port label
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if port, _ = strconv.Atoi(s.PortLabel); port <= 0 { // then try direct port value
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return nil, fmt.Errorf(
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"unable to determine local service port for service check %s->%s->%s",
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tg.Name, s.Name, check.Name,
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)
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}
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} else {
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port = mapping.Value
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}
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// The Path, Protocol, and PortLabel are just copied over from the service
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// check definition.
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return &structs.ConsulExposePath{
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Path: check.Path,
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Protocol: check.Protocol,
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LocalPathPort: port,
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ListenerPort: check.PortLabel,
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}, nil
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}
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