mirror of https://github.com/docker/cli.git
616 lines
18 KiB
Go
616 lines
18 KiB
Go
package formatter
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import (
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"fmt"
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"sort"
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"strings"
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"time"
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"github.com/docker/cli/cli/command/inspect"
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"github.com/docker/distribution/reference"
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"github.com/docker/docker/api/types"
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mounttypes "github.com/docker/docker/api/types/mount"
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"github.com/docker/docker/api/types/swarm"
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"github.com/docker/docker/pkg/stringid"
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units "github.com/docker/go-units"
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"github.com/pkg/errors"
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)
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const serviceInspectPrettyTemplate Format = `
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ID: {{.ID}}
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Name: {{.Name}}
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{{- if .Labels }}
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Labels:
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{{- range $k, $v := .Labels }}
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{{ $k }}{{if $v }}={{ $v }}{{ end }}
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{{- end }}{{ end }}
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Service Mode:
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{{- if .IsModeGlobal }} Global
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{{- else if .IsModeReplicated }} Replicated
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{{- if .ModeReplicatedReplicas }}
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Replicas: {{ .ModeReplicatedReplicas }}
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{{- end }}{{ end }}
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{{- if .HasUpdateStatus }}
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UpdateStatus:
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State: {{ .UpdateStatusState }}
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{{- if .HasUpdateStatusStarted }}
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Started: {{ .UpdateStatusStarted }}
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{{- end }}
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{{- if .UpdateIsCompleted }}
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Completed: {{ .UpdateStatusCompleted }}
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{{- end }}
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Message: {{ .UpdateStatusMessage }}
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{{- end }}
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Placement:
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{{- if .TaskPlacementConstraints }}
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Constraints: {{ .TaskPlacementConstraints }}
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{{- end }}
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{{- if .TaskPlacementPreferences }}
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Preferences: {{ .TaskPlacementPreferences }}
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{{- end }}
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{{- if .HasUpdateConfig }}
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UpdateConfig:
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Parallelism: {{ .UpdateParallelism }}
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{{- if .HasUpdateDelay}}
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Delay: {{ .UpdateDelay }}
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{{- end }}
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On failure: {{ .UpdateOnFailure }}
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{{- if .HasUpdateMonitor}}
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Monitoring Period: {{ .UpdateMonitor }}
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{{- end }}
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Max failure ratio: {{ .UpdateMaxFailureRatio }}
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Update order: {{ .UpdateOrder }}
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{{- end }}
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{{- if .HasRollbackConfig }}
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RollbackConfig:
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Parallelism: {{ .RollbackParallelism }}
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{{- if .HasRollbackDelay}}
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Delay: {{ .RollbackDelay }}
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{{- end }}
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On failure: {{ .RollbackOnFailure }}
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{{- if .HasRollbackMonitor}}
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Monitoring Period: {{ .RollbackMonitor }}
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{{- end }}
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Max failure ratio: {{ .RollbackMaxFailureRatio }}
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Rollback order: {{ .RollbackOrder }}
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{{- end }}
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ContainerSpec:
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Image: {{ .ContainerImage }}
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{{- if .ContainerArgs }}
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Args: {{ range $arg := .ContainerArgs }}{{ $arg }} {{ end }}
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{{- end -}}
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{{- if .ContainerEnv }}
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Env: {{ range $env := .ContainerEnv }}{{ $env }} {{ end }}
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{{- end -}}
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{{- if .ContainerWorkDir }}
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Dir: {{ .ContainerWorkDir }}
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{{- end -}}
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{{- if .ContainerUser }}
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User: {{ .ContainerUser }}
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{{- end }}
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{{- if .ContainerMounts }}
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Mounts:
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{{- end }}
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{{- range $mount := .ContainerMounts }}
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Target = {{ $mount.Target }}
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Source = {{ $mount.Source }}
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ReadOnly = {{ $mount.ReadOnly }}
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Type = {{ $mount.Type }}
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{{- end -}}
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{{- if .HasResources }}
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Resources:
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{{- if .HasResourceReservations }}
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Reservations:
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{{- if gt .ResourceReservationNanoCPUs 0.0 }}
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CPU: {{ .ResourceReservationNanoCPUs }}
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{{- end }}
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{{- if .ResourceReservationMemory }}
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Memory: {{ .ResourceReservationMemory }}
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{{- end }}{{ end }}
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{{- if .HasResourceLimits }}
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Limits:
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{{- if gt .ResourceLimitsNanoCPUs 0.0 }}
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CPU: {{ .ResourceLimitsNanoCPUs }}
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{{- end }}
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{{- if .ResourceLimitMemory }}
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Memory: {{ .ResourceLimitMemory }}
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{{- end }}{{ end }}{{ end }}
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{{- if .Networks }}
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Networks:
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{{- range $network := .Networks }} {{ $network }}{{ end }} {{ end }}
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Endpoint Mode: {{ .EndpointMode }}
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{{- if .Ports }}
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Ports:
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{{- range $port := .Ports }}
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PublishedPort = {{ $port.PublishedPort }}
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Protocol = {{ $port.Protocol }}
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TargetPort = {{ $port.TargetPort }}
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PublishMode = {{ $port.PublishMode }}
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{{- end }} {{ end -}}
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`
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// NewServiceFormat returns a Format for rendering using a Context
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func NewServiceFormat(source string) Format {
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switch source {
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case PrettyFormatKey:
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return serviceInspectPrettyTemplate
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default:
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return Format(strings.TrimPrefix(source, RawFormatKey))
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}
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}
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func resolveNetworks(service swarm.Service, getNetwork inspect.GetRefFunc) map[string]string {
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networkNames := make(map[string]string)
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for _, network := range service.Spec.TaskTemplate.Networks {
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if resolved, _, err := getNetwork(network.Target); err == nil {
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if resolvedNetwork, ok := resolved.(types.NetworkResource); ok {
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networkNames[resolvedNetwork.ID] = resolvedNetwork.Name
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}
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}
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}
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return networkNames
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}
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// ServiceInspectWrite renders the context for a list of services
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func ServiceInspectWrite(ctx Context, refs []string, getRef, getNetwork inspect.GetRefFunc) error {
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if ctx.Format != serviceInspectPrettyTemplate {
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return inspect.Inspect(ctx.Output, refs, string(ctx.Format), getRef)
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}
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render := func(format func(subContext subContext) error) error {
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for _, ref := range refs {
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serviceI, _, err := getRef(ref)
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if err != nil {
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return err
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}
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service, ok := serviceI.(swarm.Service)
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if !ok {
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return errors.Errorf("got wrong object to inspect")
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}
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if err := format(&serviceInspectContext{Service: service, networkNames: resolveNetworks(service, getNetwork)}); err != nil {
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return err
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}
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}
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return nil
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}
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return ctx.Write(&serviceInspectContext{}, render)
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}
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type serviceInspectContext struct {
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swarm.Service
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subContext
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// networkNames is a map from network IDs (as found in
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// Networks[x].Target) to network names.
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networkNames map[string]string
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}
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func (ctx *serviceInspectContext) MarshalJSON() ([]byte, error) {
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return marshalJSON(ctx)
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}
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func (ctx *serviceInspectContext) ID() string {
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return ctx.Service.ID
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}
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func (ctx *serviceInspectContext) Name() string {
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return ctx.Service.Spec.Name
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}
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func (ctx *serviceInspectContext) Labels() map[string]string {
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return ctx.Service.Spec.Labels
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}
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func (ctx *serviceInspectContext) IsModeGlobal() bool {
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return ctx.Service.Spec.Mode.Global != nil
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}
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func (ctx *serviceInspectContext) IsModeReplicated() bool {
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return ctx.Service.Spec.Mode.Replicated != nil
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}
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func (ctx *serviceInspectContext) ModeReplicatedReplicas() *uint64 {
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return ctx.Service.Spec.Mode.Replicated.Replicas
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}
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func (ctx *serviceInspectContext) HasUpdateStatus() bool {
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return ctx.Service.UpdateStatus != nil && ctx.Service.UpdateStatus.State != ""
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}
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func (ctx *serviceInspectContext) UpdateStatusState() swarm.UpdateState {
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return ctx.Service.UpdateStatus.State
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}
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func (ctx *serviceInspectContext) HasUpdateStatusStarted() bool {
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return ctx.Service.UpdateStatus.StartedAt != nil
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}
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func (ctx *serviceInspectContext) UpdateStatusStarted() string {
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return units.HumanDuration(time.Since(*ctx.Service.UpdateStatus.StartedAt)) + " ago"
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}
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func (ctx *serviceInspectContext) UpdateIsCompleted() bool {
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return ctx.Service.UpdateStatus.State == swarm.UpdateStateCompleted && ctx.Service.UpdateStatus.CompletedAt != nil
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}
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func (ctx *serviceInspectContext) UpdateStatusCompleted() string {
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return units.HumanDuration(time.Since(*ctx.Service.UpdateStatus.CompletedAt)) + " ago"
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}
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func (ctx *serviceInspectContext) UpdateStatusMessage() string {
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return ctx.Service.UpdateStatus.Message
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}
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func (ctx *serviceInspectContext) TaskPlacementConstraints() []string {
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if ctx.Service.Spec.TaskTemplate.Placement != nil {
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return ctx.Service.Spec.TaskTemplate.Placement.Constraints
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}
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return nil
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}
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func (ctx *serviceInspectContext) TaskPlacementPreferences() []string {
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if ctx.Service.Spec.TaskTemplate.Placement == nil {
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return nil
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}
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var strings []string
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for _, pref := range ctx.Service.Spec.TaskTemplate.Placement.Preferences {
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if pref.Spread != nil {
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strings = append(strings, "spread="+pref.Spread.SpreadDescriptor)
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}
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}
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return strings
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}
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func (ctx *serviceInspectContext) HasUpdateConfig() bool {
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return ctx.Service.Spec.UpdateConfig != nil
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}
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func (ctx *serviceInspectContext) UpdateParallelism() uint64 {
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return ctx.Service.Spec.UpdateConfig.Parallelism
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}
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func (ctx *serviceInspectContext) HasUpdateDelay() bool {
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return ctx.Service.Spec.UpdateConfig.Delay.Nanoseconds() > 0
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}
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func (ctx *serviceInspectContext) UpdateDelay() time.Duration {
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return ctx.Service.Spec.UpdateConfig.Delay
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}
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func (ctx *serviceInspectContext) UpdateOnFailure() string {
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return ctx.Service.Spec.UpdateConfig.FailureAction
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}
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func (ctx *serviceInspectContext) UpdateOrder() string {
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return ctx.Service.Spec.UpdateConfig.Order
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}
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func (ctx *serviceInspectContext) HasUpdateMonitor() bool {
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return ctx.Service.Spec.UpdateConfig.Monitor.Nanoseconds() > 0
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}
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func (ctx *serviceInspectContext) UpdateMonitor() time.Duration {
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return ctx.Service.Spec.UpdateConfig.Monitor
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}
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func (ctx *serviceInspectContext) UpdateMaxFailureRatio() float32 {
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return ctx.Service.Spec.UpdateConfig.MaxFailureRatio
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}
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func (ctx *serviceInspectContext) HasRollbackConfig() bool {
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return ctx.Service.Spec.RollbackConfig != nil
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}
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func (ctx *serviceInspectContext) RollbackParallelism() uint64 {
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return ctx.Service.Spec.RollbackConfig.Parallelism
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}
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func (ctx *serviceInspectContext) HasRollbackDelay() bool {
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return ctx.Service.Spec.RollbackConfig.Delay.Nanoseconds() > 0
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}
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func (ctx *serviceInspectContext) RollbackDelay() time.Duration {
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return ctx.Service.Spec.RollbackConfig.Delay
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}
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func (ctx *serviceInspectContext) RollbackOnFailure() string {
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return ctx.Service.Spec.RollbackConfig.FailureAction
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}
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func (ctx *serviceInspectContext) HasRollbackMonitor() bool {
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return ctx.Service.Spec.RollbackConfig.Monitor.Nanoseconds() > 0
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}
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func (ctx *serviceInspectContext) RollbackMonitor() time.Duration {
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return ctx.Service.Spec.RollbackConfig.Monitor
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}
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func (ctx *serviceInspectContext) RollbackMaxFailureRatio() float32 {
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return ctx.Service.Spec.RollbackConfig.MaxFailureRatio
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}
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func (ctx *serviceInspectContext) RollbackOrder() string {
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return ctx.Service.Spec.RollbackConfig.Order
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}
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func (ctx *serviceInspectContext) ContainerImage() string {
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return ctx.Service.Spec.TaskTemplate.ContainerSpec.Image
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}
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func (ctx *serviceInspectContext) ContainerArgs() []string {
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return ctx.Service.Spec.TaskTemplate.ContainerSpec.Args
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}
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func (ctx *serviceInspectContext) ContainerEnv() []string {
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return ctx.Service.Spec.TaskTemplate.ContainerSpec.Env
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}
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func (ctx *serviceInspectContext) ContainerWorkDir() string {
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return ctx.Service.Spec.TaskTemplate.ContainerSpec.Dir
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}
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func (ctx *serviceInspectContext) ContainerUser() string {
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return ctx.Service.Spec.TaskTemplate.ContainerSpec.User
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}
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func (ctx *serviceInspectContext) ContainerMounts() []mounttypes.Mount {
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return ctx.Service.Spec.TaskTemplate.ContainerSpec.Mounts
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}
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func (ctx *serviceInspectContext) HasResources() bool {
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return ctx.Service.Spec.TaskTemplate.Resources != nil
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}
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func (ctx *serviceInspectContext) HasResourceReservations() bool {
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if ctx.Service.Spec.TaskTemplate.Resources == nil || ctx.Service.Spec.TaskTemplate.Resources.Reservations == nil {
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return false
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}
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return ctx.Service.Spec.TaskTemplate.Resources.Reservations.NanoCPUs > 0 || ctx.Service.Spec.TaskTemplate.Resources.Reservations.MemoryBytes > 0
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}
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func (ctx *serviceInspectContext) ResourceReservationNanoCPUs() float64 {
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if ctx.Service.Spec.TaskTemplate.Resources.Reservations.NanoCPUs == 0 {
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return float64(0)
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}
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return float64(ctx.Service.Spec.TaskTemplate.Resources.Reservations.NanoCPUs) / 1e9
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}
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func (ctx *serviceInspectContext) ResourceReservationMemory() string {
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if ctx.Service.Spec.TaskTemplate.Resources.Reservations.MemoryBytes == 0 {
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return ""
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}
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return units.BytesSize(float64(ctx.Service.Spec.TaskTemplate.Resources.Reservations.MemoryBytes))
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}
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func (ctx *serviceInspectContext) HasResourceLimits() bool {
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if ctx.Service.Spec.TaskTemplate.Resources == nil || ctx.Service.Spec.TaskTemplate.Resources.Limits == nil {
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return false
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}
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return ctx.Service.Spec.TaskTemplate.Resources.Limits.NanoCPUs > 0 || ctx.Service.Spec.TaskTemplate.Resources.Limits.MemoryBytes > 0
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}
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func (ctx *serviceInspectContext) ResourceLimitsNanoCPUs() float64 {
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return float64(ctx.Service.Spec.TaskTemplate.Resources.Limits.NanoCPUs) / 1e9
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}
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func (ctx *serviceInspectContext) ResourceLimitMemory() string {
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if ctx.Service.Spec.TaskTemplate.Resources.Limits.MemoryBytes == 0 {
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return ""
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}
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return units.BytesSize(float64(ctx.Service.Spec.TaskTemplate.Resources.Limits.MemoryBytes))
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}
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func (ctx *serviceInspectContext) Networks() []string {
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var out []string
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for _, n := range ctx.Service.Spec.TaskTemplate.Networks {
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if name, ok := ctx.networkNames[n.Target]; ok {
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out = append(out, name)
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} else {
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out = append(out, n.Target)
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}
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}
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return out
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}
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func (ctx *serviceInspectContext) EndpointMode() string {
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if ctx.Service.Spec.EndpointSpec == nil {
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return ""
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}
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return string(ctx.Service.Spec.EndpointSpec.Mode)
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}
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func (ctx *serviceInspectContext) Ports() []swarm.PortConfig {
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return ctx.Service.Endpoint.Ports
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}
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const (
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defaultServiceTableFormat = "table {{.ID}}\t{{.Name}}\t{{.Mode}}\t{{.Replicas}}\t{{.Image}}\t{{.Ports}}"
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serviceIDHeader = "ID"
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modeHeader = "MODE"
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replicasHeader = "REPLICAS"
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)
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// NewServiceListFormat returns a Format for rendering using a service Context
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func NewServiceListFormat(source string, quiet bool) Format {
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switch source {
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case TableFormatKey:
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if quiet {
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return defaultQuietFormat
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}
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return defaultServiceTableFormat
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case RawFormatKey:
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if quiet {
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return `id: {{.ID}}`
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}
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return `id: {{.ID}}\nname: {{.Name}}\nmode: {{.Mode}}\nreplicas: {{.Replicas}}\nimage: {{.Image}}\nports: {{.Ports}}\n`
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}
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return Format(source)
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}
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// ServiceListInfo stores the information about mode and replicas to be used by template
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type ServiceListInfo struct {
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Mode string
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Replicas string
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}
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// ServiceListWrite writes the context
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func ServiceListWrite(ctx Context, services []swarm.Service, info map[string]ServiceListInfo) error {
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render := func(format func(subContext subContext) error) error {
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for _, service := range services {
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serviceCtx := &serviceContext{service: service, mode: info[service.ID].Mode, replicas: info[service.ID].Replicas}
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if err := format(serviceCtx); err != nil {
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return err
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}
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}
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return nil
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}
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serviceCtx := serviceContext{}
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serviceCtx.header = map[string]string{
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"ID": serviceIDHeader,
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"Name": nameHeader,
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"Mode": modeHeader,
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"Replicas": replicasHeader,
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"Image": imageHeader,
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"Ports": portsHeader,
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}
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return ctx.Write(&serviceCtx, render)
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}
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type serviceContext struct {
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HeaderContext
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service swarm.Service
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mode string
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replicas string
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}
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func (c *serviceContext) MarshalJSON() ([]byte, error) {
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return marshalJSON(c)
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}
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func (c *serviceContext) ID() string {
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return stringid.TruncateID(c.service.ID)
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}
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func (c *serviceContext) Name() string {
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return c.service.Spec.Name
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}
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func (c *serviceContext) Mode() string {
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return c.mode
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}
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func (c *serviceContext) Replicas() string {
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return c.replicas
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}
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func (c *serviceContext) Image() string {
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var image string
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if c.service.Spec.TaskTemplate.ContainerSpec != nil {
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image = c.service.Spec.TaskTemplate.ContainerSpec.Image
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}
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if ref, err := reference.ParseNormalizedNamed(image); err == nil {
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// update image string for display, (strips any digest)
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if nt, ok := ref.(reference.NamedTagged); ok {
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if namedTagged, err := reference.WithTag(reference.TrimNamed(nt), nt.Tag()); err == nil {
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image = reference.FamiliarString(namedTagged)
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}
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}
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}
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return image
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}
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type portRange struct {
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pStart uint32
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pEnd uint32
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tStart uint32
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tEnd uint32
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protocol swarm.PortConfigProtocol
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}
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func (pr portRange) String() string {
|
|
var (
|
|
pub string
|
|
tgt string
|
|
)
|
|
|
|
if pr.pEnd > pr.pStart {
|
|
pub = fmt.Sprintf("%d-%d", pr.pStart, pr.pEnd)
|
|
} else {
|
|
pub = fmt.Sprintf("%d", pr.pStart)
|
|
}
|
|
if pr.tEnd > pr.tStart {
|
|
tgt = fmt.Sprintf("%d-%d", pr.tStart, pr.tEnd)
|
|
} else {
|
|
tgt = fmt.Sprintf("%d", pr.tStart)
|
|
}
|
|
return fmt.Sprintf("*:%s->%s/%s", pub, tgt, pr.protocol)
|
|
}
|
|
|
|
// Ports formats published ports on the ingress network for output.
|
|
//
|
|
// Where possible, ranges are grouped to produce a compact output:
|
|
// - multiple ports mapped to a single port (80->80, 81->80); is formatted as *:80-81->80
|
|
// - multiple consecutive ports on both sides; (80->80, 81->81) are formatted as: *:80-81->80-81
|
|
//
|
|
// The above should not be grouped together, i.e.:
|
|
// - 80->80, 81->81, 82->80 should be presented as : *:80-81->80-81, *:82->80
|
|
//
|
|
// TODO improve:
|
|
// - combine non-consecutive ports mapped to a single port (80->80, 81->80, 84->80, 86->80, 87->80); to be printed as *:80-81,84,86-87->80
|
|
// - combine tcp and udp mappings if their port-mapping is exactly the same (*:80-81->80-81/tcp+udp instead of *:80-81->80-81/tcp, *:80-81->80-81/udp)
|
|
func (c *serviceContext) Ports() string {
|
|
if c.service.Endpoint.Ports == nil {
|
|
return ""
|
|
}
|
|
|
|
pr := portRange{}
|
|
ports := []string{}
|
|
|
|
sort.Sort(byProtocolAndPublishedPort(c.service.Endpoint.Ports))
|
|
|
|
for _, p := range c.service.Endpoint.Ports {
|
|
if p.PublishMode == swarm.PortConfigPublishModeIngress {
|
|
prIsRange := pr.tEnd != pr.tStart
|
|
tOverlaps := p.TargetPort <= pr.tEnd
|
|
|
|
// Start a new port-range if:
|
|
// - the protocol is different from the current port-range
|
|
// - published or target port are not consecutive to the current port-range
|
|
// - the current port-range is a _range_, and the target port overlaps with the current range's target-ports
|
|
if p.Protocol != pr.protocol || p.PublishedPort-pr.pEnd > 1 || p.TargetPort-pr.tEnd > 1 || prIsRange && tOverlaps {
|
|
// start a new port-range, and print the previous port-range (if any)
|
|
if pr.pStart > 0 {
|
|
ports = append(ports, pr.String())
|
|
}
|
|
pr = portRange{
|
|
pStart: p.PublishedPort,
|
|
pEnd: p.PublishedPort,
|
|
tStart: p.TargetPort,
|
|
tEnd: p.TargetPort,
|
|
protocol: p.Protocol,
|
|
}
|
|
continue
|
|
}
|
|
pr.pEnd = p.PublishedPort
|
|
pr.tEnd = p.TargetPort
|
|
}
|
|
}
|
|
if pr.pStart > 0 {
|
|
ports = append(ports, pr.String())
|
|
}
|
|
return strings.Join(ports, ", ")
|
|
}
|
|
|
|
type byProtocolAndPublishedPort []swarm.PortConfig
|
|
|
|
func (a byProtocolAndPublishedPort) Len() int { return len(a) }
|
|
func (a byProtocolAndPublishedPort) Swap(i, j int) { a[i], a[j] = a[j], a[i] }
|
|
func (a byProtocolAndPublishedPort) Less(i, j int) bool {
|
|
if a[i].Protocol == a[j].Protocol {
|
|
return a[i].PublishedPort < a[j].PublishedPort
|
|
}
|
|
return a[i].Protocol < a[j].Protocol
|
|
}
|