287 lines
7.1 KiB
Go
287 lines
7.1 KiB
Go
// Copyright 2019 Drone.IO Inc. All rights reserved.
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// Use of this source code is governed by the Polyform License
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// that can be found in the LICENSE file.
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package engine
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import (
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"strings"
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"docker.io/go-docker/api/types/container"
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"docker.io/go-docker/api/types/mount"
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"docker.io/go-docker/api/types/network"
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)
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// returns a container configuration.
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func toConfig(spec *Spec, step *Step) *container.Config {
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config := &container.Config{
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Image: step.Image,
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Labels: step.Labels,
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WorkingDir: step.WorkingDir,
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User: step.User,
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AttachStdin: false,
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AttachStdout: true,
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AttachStderr: true,
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Tty: false,
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OpenStdin: false,
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StdinOnce: false,
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ArgsEscaped: false,
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}
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if len(step.Envs) != 0 {
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config.Env = toEnv(step.Envs)
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}
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for _, sec := range step.Secrets {
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config.Env = append(config.Env, sec.Env+"="+string(sec.Data))
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}
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if len(step.Entrypoint) != 0 {
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config.Cmd = step.Entrypoint
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}
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if len(step.Command) != 0 {
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config.Cmd = step.Command
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}
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if len(step.Volumes) != 0 {
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config.Volumes = toVolumeSet(spec, step)
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}
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return config
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}
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// returns a container host configuration.
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func toHostConfig(spec *Spec, step *Step) *container.HostConfig {
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config := &container.HostConfig{
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LogConfig: container.LogConfig{
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Type: "json-file",
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},
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Privileged: step.Privileged,
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// TODO(bradrydzewski) set ShmSize
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}
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// windows does not support privileged so we hard-code
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// this value to false.
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if spec.Platform.OS == "windows" {
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config.Privileged = false
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}
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if len(step.Network) > 0 {
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config.NetworkMode = container.NetworkMode(step.Network)
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}
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if len(step.DNS) > 0 {
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config.DNS = step.DNS
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}
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if len(step.DNSSearch) > 0 {
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config.DNSSearch = step.DNSSearch
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}
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if len(step.ExtraHosts) > 0 {
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config.ExtraHosts = step.ExtraHosts
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}
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// if step.Resources != nil {
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// config.Resources = container.Resources{}
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// if limits := step.Resources.Limits; limits != nil {
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// config.Resources.Memory = limits.Memory
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// // TODO(bradrydewski) set config.Resources.CPUPercent
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// // IMPORTANT docker and kubernetes use
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// // different units of measure for cpu limits.
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// // we need to figure out how to convert from
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// // the kubernetes unit of measure to the docker
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// // unit of measure.
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// }
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// }
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if len(step.Volumes) != 0 {
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config.Devices = toDeviceSlice(spec, step)
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config.Binds = toVolumeSlice(spec, step)
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config.Mounts = toVolumeMounts(spec, step)
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}
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return config
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}
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// helper function returns the container network configuration.
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func toNetConfig(spec *Spec, proc *Step) *network.NetworkingConfig {
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// if the user overrides the default network we do not
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// attach to the user-defined network.
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if proc.Network != "" {
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return &network.NetworkingConfig{}
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}
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endpoints := map[string]*network.EndpointSettings{}
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endpoints[spec.Network.ID] = &network.EndpointSettings{
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NetworkID: spec.Network.ID,
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Aliases: []string{proc.Name},
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}
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return &network.NetworkingConfig{
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EndpointsConfig: endpoints,
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}
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}
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// helper function that converts a slice of device paths to a slice of
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// container.DeviceMapping.
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func toDeviceSlice(spec *Spec, step *Step) []container.DeviceMapping {
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var to []container.DeviceMapping
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for _, mount := range step.Devices {
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device, ok := LookupVolume(spec, mount.Name)
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if !ok {
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continue
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}
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if isDevice(device) == false {
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continue
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}
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to = append(to, container.DeviceMapping{
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PathOnHost: device.HostPath.Path,
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PathInContainer: mount.DevicePath,
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CgroupPermissions: "rwm",
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})
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}
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if len(to) == 0 {
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return nil
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}
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return to
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}
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// helper function that converts a slice of volume paths to a set
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// of unique volume names.
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func toVolumeSet(spec *Spec, step *Step) map[string]struct{} {
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set := map[string]struct{}{}
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for _, mount := range step.Volumes {
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volume, ok := LookupVolume(spec, mount.Name)
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if !ok {
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continue
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}
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if isDevice(volume) {
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continue
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}
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if isNamedPipe(volume) {
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continue
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}
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if isBindMount(volume) == false {
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continue
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}
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set[mount.Path] = struct{}{}
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}
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return set
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}
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// helper function returns a slice of volume mounts.
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func toVolumeSlice(spec *Spec, step *Step) []string {
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// this entire function should be deprecated in
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// favor of toVolumeMounts, however, I am unable
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// to get it working with data volumes.
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var to []string
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for _, mount := range step.Volumes {
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volume, ok := LookupVolume(spec, mount.Name)
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if !ok {
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continue
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}
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if isDevice(volume) {
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continue
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}
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if isDataVolume(volume) {
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path := volume.Metadata.UID + ":" + mount.Path
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to = append(to, path)
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}
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if isBindMount(volume) {
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path := volume.HostPath.Path + ":" + mount.Path
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to = append(to, path)
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}
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}
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return to
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}
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// helper function returns a slice of docker mount
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// configurations.
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func toVolumeMounts(spec *Spec, step *Step) []mount.Mount {
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var mounts []mount.Mount
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for _, target := range step.Volumes {
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source, ok := LookupVolume(spec, target.Name)
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if !ok {
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continue
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}
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if isBindMount(source) && !isDevice(source) {
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continue
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}
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// HACK: this condition can be removed once
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// toVolumeSlice has been fully replaced. at this
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// time, I cannot figure out how to get mounts
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// working with data volumes :(
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if isDataVolume(source) {
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continue
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}
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mounts = append(mounts, toMount(source, target))
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}
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if len(mounts) == 0 {
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return nil
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}
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return mounts
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}
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// helper function converts the volume declaration to a
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// docker mount structure.
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func toMount(source *Volume, target *VolumeMount) mount.Mount {
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to := mount.Mount{
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Target: target.Path,
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Type: toVolumeType(source),
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}
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if isBindMount(source) || isNamedPipe(source) {
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to.Source = source.HostPath.Path
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}
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if isTempfs(source) {
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to.TmpfsOptions = &mount.TmpfsOptions{
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SizeBytes: source.EmptyDir.SizeLimit,
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Mode: 0700,
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}
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}
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return to
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}
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// helper function returns the docker volume enumeration
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// for the given volume.
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func toVolumeType(from *Volume) mount.Type {
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switch {
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case isDataVolume(from):
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return mount.TypeVolume
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case isTempfs(from):
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return mount.TypeTmpfs
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case isNamedPipe(from):
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return mount.TypeNamedPipe
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default:
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return mount.TypeBind
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}
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}
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// helper function that converts a key value map of
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// environment variables to a string slice in key=value
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// format.
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func toEnv(env map[string]string) []string {
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var envs []string
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for k, v := range env {
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envs = append(envs, k+"="+v)
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}
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return envs
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}
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// returns true if the volume is a bind mount.
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func isBindMount(volume *Volume) bool {
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return volume.HostPath != nil
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}
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// returns true if the volume is in-memory.
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func isTempfs(volume *Volume) bool {
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return volume.EmptyDir != nil && volume.EmptyDir.Medium == "memory"
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}
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// returns true if the volume is a data-volume.
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func isDataVolume(volume *Volume) bool {
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return volume.EmptyDir != nil && volume.EmptyDir.Medium != "memory"
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}
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// returns true if the volume is a device
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func isDevice(volume *Volume) bool {
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return volume.HostPath != nil && strings.HasPrefix(volume.HostPath.Path, "/dev/")
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}
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// returns true if the volume is a named pipe.
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func isNamedPipe(volume *Volume) bool {
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return volume.HostPath != nil &&
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strings.HasPrefix(volume.HostPath.Path, `\\.\pipe\`)
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}
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