b6ac111abf
Proposal: One Meta Data to Rule Them All => Labels
483 lines
16 KiB
Go
483 lines
16 KiB
Go
package runconfig
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import (
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"fmt"
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"path"
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"strconv"
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"strings"
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"github.com/docker/docker/nat"
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"github.com/docker/docker/opts"
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flag "github.com/docker/docker/pkg/mflag"
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"github.com/docker/docker/pkg/parsers"
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"github.com/docker/docker/pkg/ulimit"
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"github.com/docker/docker/pkg/units"
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"github.com/docker/docker/utils"
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)
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var (
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ErrInvalidWorkingDirectory = fmt.Errorf("The working directory is invalid. It needs to be an absolute path.")
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ErrConflictContainerNetworkAndLinks = fmt.Errorf("Conflicting options: --net=container can't be used with links. This would result in undefined behavior.")
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ErrConflictContainerNetworkAndDns = fmt.Errorf("Conflicting options: --net=container can't be used with --dns. This configuration is invalid.")
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ErrConflictNetworkHostname = fmt.Errorf("Conflicting options: -h and the network mode (--net)")
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ErrConflictHostNetworkAndDns = fmt.Errorf("Conflicting options: --net=host can't be used with --dns. This configuration is invalid.")
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ErrConflictHostNetworkAndLinks = fmt.Errorf("Conflicting options: --net=host can't be used with links. This would result in undefined behavior.")
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)
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func Parse(cmd *flag.FlagSet, args []string) (*Config, *HostConfig, *flag.FlagSet, error) {
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var (
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// FIXME: use utils.ListOpts for attach and volumes?
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flAttach = opts.NewListOpts(opts.ValidateAttach)
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flVolumes = opts.NewListOpts(opts.ValidatePath)
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flLinks = opts.NewListOpts(opts.ValidateLink)
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flEnv = opts.NewListOpts(opts.ValidateEnv)
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flLabels = opts.NewListOpts(opts.ValidateEnv)
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flDevices = opts.NewListOpts(opts.ValidatePath)
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ulimits = make(map[string]*ulimit.Ulimit)
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flUlimits = opts.NewUlimitOpt(ulimits)
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flPublish = opts.NewListOpts(nil)
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flExpose = opts.NewListOpts(nil)
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flDns = opts.NewListOpts(opts.ValidateIPAddress)
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flDnsSearch = opts.NewListOpts(opts.ValidateDnsSearch)
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flExtraHosts = opts.NewListOpts(opts.ValidateExtraHost)
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flVolumesFrom = opts.NewListOpts(nil)
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flLxcOpts = opts.NewListOpts(nil)
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flEnvFile = opts.NewListOpts(nil)
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flCapAdd = opts.NewListOpts(nil)
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flCapDrop = opts.NewListOpts(nil)
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flSecurityOpt = opts.NewListOpts(nil)
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flLabelsFile = opts.NewListOpts(nil)
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flNetwork = cmd.Bool([]string{"#n", "#-networking"}, true, "Enable networking for this container")
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flPrivileged = cmd.Bool([]string{"#privileged", "-privileged"}, false, "Give extended privileges to this container")
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flPidMode = cmd.String([]string{"-pid"}, "", "PID namespace to use")
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flPublishAll = cmd.Bool([]string{"P", "-publish-all"}, false, "Publish all exposed ports to random ports")
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flStdin = cmd.Bool([]string{"i", "-interactive"}, false, "Keep STDIN open even if not attached")
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flTty = cmd.Bool([]string{"t", "-tty"}, false, "Allocate a pseudo-TTY")
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flContainerIDFile = cmd.String([]string{"#cidfile", "-cidfile"}, "", "Write the container ID to the file")
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flEntrypoint = cmd.String([]string{"#entrypoint", "-entrypoint"}, "", "Overwrite the default ENTRYPOINT of the image")
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flHostname = cmd.String([]string{"h", "-hostname"}, "", "Container host name")
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flMemoryString = cmd.String([]string{"m", "-memory"}, "", "Memory limit")
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flMemorySwap = cmd.String([]string{"-memory-swap"}, "", "Total memory (memory + swap), '-1' to disable swap")
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flUser = cmd.String([]string{"u", "-user"}, "", "Username or UID (format: <name|uid>[:<group|gid>])")
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flWorkingDir = cmd.String([]string{"w", "-workdir"}, "", "Working directory inside the container")
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flCpuShares = cmd.Int64([]string{"c", "-cpu-shares"}, 0, "CPU shares (relative weight)")
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flCpusetCpus = cmd.String([]string{"#-cpuset", "-cpuset-cpus"}, "", "CPUs in which to allow execution (0-3, 0,1)")
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flNetMode = cmd.String([]string{"-net"}, "bridge", "Set the Network mode for the container")
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flMacAddress = cmd.String([]string{"-mac-address"}, "", "Container MAC address (e.g. 92:d0:c6:0a:29:33)")
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flIpcMode = cmd.String([]string{"-ipc"}, "", "IPC namespace to use")
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flRestartPolicy = cmd.String([]string{"-restart"}, "no", "Restart policy to apply when a container exits")
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flReadonlyRootfs = cmd.Bool([]string{"-read-only"}, false, "Mount the container's root filesystem as read only")
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)
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cmd.Var(&flAttach, []string{"a", "-attach"}, "Attach to STDIN, STDOUT or STDERR")
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cmd.Var(&flVolumes, []string{"v", "-volume"}, "Bind mount a volume")
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cmd.Var(&flLinks, []string{"#link", "-link"}, "Add link to another container")
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cmd.Var(&flDevices, []string{"-device"}, "Add a host device to the container")
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cmd.Var(&flLabels, []string{"l", "-label"}, "Set meta data on a container")
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cmd.Var(&flLabelsFile, []string{"-label-file"}, "Read in a line delimited file of labels")
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cmd.Var(&flEnv, []string{"e", "-env"}, "Set environment variables")
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cmd.Var(&flEnvFile, []string{"-env-file"}, "Read in a file of environment variables")
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cmd.Var(&flPublish, []string{"p", "-publish"}, "Publish a container's port(s) to the host")
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cmd.Var(&flExpose, []string{"#expose", "-expose"}, "Expose a port or a range of ports")
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cmd.Var(&flDns, []string{"#dns", "-dns"}, "Set custom DNS servers")
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cmd.Var(&flDnsSearch, []string{"-dns-search"}, "Set custom DNS search domains")
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cmd.Var(&flExtraHosts, []string{"-add-host"}, "Add a custom host-to-IP mapping (host:ip)")
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cmd.Var(&flVolumesFrom, []string{"#volumes-from", "-volumes-from"}, "Mount volumes from the specified container(s)")
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cmd.Var(&flLxcOpts, []string{"#lxc-conf", "-lxc-conf"}, "Add custom lxc options")
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cmd.Var(&flCapAdd, []string{"-cap-add"}, "Add Linux capabilities")
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cmd.Var(&flCapDrop, []string{"-cap-drop"}, "Drop Linux capabilities")
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cmd.Var(&flSecurityOpt, []string{"-security-opt"}, "Security Options")
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cmd.Var(flUlimits, []string{"-ulimit"}, "Ulimit options")
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cmd.Require(flag.Min, 1)
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if err := utils.ParseFlags(cmd, args, true); err != nil {
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return nil, nil, cmd, err
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}
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// Validate input params
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if *flWorkingDir != "" && !path.IsAbs(*flWorkingDir) {
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return nil, nil, cmd, ErrInvalidWorkingDirectory
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}
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// Validate the input mac address
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if *flMacAddress != "" {
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if _, err := opts.ValidateMACAddress(*flMacAddress); err != nil {
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return nil, nil, cmd, fmt.Errorf("%s is not a valid mac address", *flMacAddress)
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}
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}
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var (
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attachStdin = flAttach.Get("stdin")
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attachStdout = flAttach.Get("stdout")
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attachStderr = flAttach.Get("stderr")
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)
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if *flNetMode != "bridge" && *flNetMode != "none" && *flHostname != "" {
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return nil, nil, cmd, ErrConflictNetworkHostname
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}
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if *flNetMode == "host" && flLinks.Len() > 0 {
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return nil, nil, cmd, ErrConflictHostNetworkAndLinks
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}
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if *flNetMode == "container" && flLinks.Len() > 0 {
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return nil, nil, cmd, ErrConflictContainerNetworkAndLinks
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}
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if *flNetMode == "host" && flDns.Len() > 0 {
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return nil, nil, cmd, ErrConflictHostNetworkAndDns
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}
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if *flNetMode == "container" && flDns.Len() > 0 {
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return nil, nil, cmd, ErrConflictContainerNetworkAndDns
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}
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// If neither -d or -a are set, attach to everything by default
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if flAttach.Len() == 0 {
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attachStdout = true
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attachStderr = true
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if *flStdin {
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attachStdin = true
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}
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}
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var flMemory int64
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if *flMemoryString != "" {
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parsedMemory, err := units.RAMInBytes(*flMemoryString)
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if err != nil {
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return nil, nil, cmd, err
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}
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flMemory = parsedMemory
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}
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var MemorySwap int64
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if *flMemorySwap != "" {
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if *flMemorySwap == "-1" {
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MemorySwap = -1
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} else {
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parsedMemorySwap, err := units.RAMInBytes(*flMemorySwap)
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if err != nil {
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return nil, nil, cmd, err
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}
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MemorySwap = parsedMemorySwap
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}
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}
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var binds []string
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// add any bind targets to the list of container volumes
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for bind := range flVolumes.GetMap() {
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if arr := strings.Split(bind, ":"); len(arr) > 1 {
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if arr[1] == "/" {
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return nil, nil, cmd, fmt.Errorf("Invalid bind mount: destination can't be '/'")
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}
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// after creating the bind mount we want to delete it from the flVolumes values because
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// we do not want bind mounts being committed to image configs
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binds = append(binds, bind)
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flVolumes.Delete(bind)
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} else if bind == "/" {
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return nil, nil, cmd, fmt.Errorf("Invalid volume: path can't be '/'")
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}
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}
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var (
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parsedArgs = cmd.Args()
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runCmd []string
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entrypoint []string
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image = cmd.Arg(0)
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)
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if len(parsedArgs) > 1 {
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runCmd = parsedArgs[1:]
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}
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if *flEntrypoint != "" {
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entrypoint = []string{*flEntrypoint}
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}
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lxcConf, err := parseKeyValueOpts(flLxcOpts)
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if err != nil {
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return nil, nil, cmd, err
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}
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var (
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domainname string
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hostname = *flHostname
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parts = strings.SplitN(hostname, ".", 2)
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)
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if len(parts) > 1 {
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hostname = parts[0]
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domainname = parts[1]
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}
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ports, portBindings, err := nat.ParsePortSpecs(flPublish.GetAll())
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if err != nil {
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return nil, nil, cmd, err
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}
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// Merge in exposed ports to the map of published ports
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for _, e := range flExpose.GetAll() {
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if strings.Contains(e, ":") {
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return nil, nil, cmd, fmt.Errorf("Invalid port format for --expose: %s", e)
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}
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//support two formats for expose, original format <portnum>/[<proto>] or <startport-endport>/[<proto>]
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proto, port := nat.SplitProtoPort(e)
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//parse the start and end port and create a sequence of ports to expose
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//if expose a port, the start and end port are the same
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start, end, err := parsers.ParsePortRange(port)
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if err != nil {
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return nil, nil, cmd, fmt.Errorf("Invalid range format for --expose: %s, error: %s", e, err)
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}
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for i := start; i <= end; i++ {
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p := nat.NewPort(proto, strconv.FormatUint(i, 10))
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if _, exists := ports[p]; !exists {
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ports[p] = struct{}{}
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}
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}
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}
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// parse device mappings
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deviceMappings := []DeviceMapping{}
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for _, device := range flDevices.GetAll() {
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deviceMapping, err := ParseDevice(device)
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if err != nil {
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return nil, nil, cmd, err
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}
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deviceMappings = append(deviceMappings, deviceMapping)
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}
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// collect all the environment variables for the container
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envVariables, err := readKVStrings(flEnvFile.GetAll(), flEnv.GetAll())
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if err != nil {
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return nil, nil, cmd, err
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}
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// collect all the labels for the container
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labels, err := readKVStrings(flLabelsFile.GetAll(), flLabels.GetAll())
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if err != nil {
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return nil, nil, cmd, err
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}
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ipcMode := IpcMode(*flIpcMode)
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if !ipcMode.Valid() {
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return nil, nil, cmd, fmt.Errorf("--ipc: invalid IPC mode")
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}
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pidMode := PidMode(*flPidMode)
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if !pidMode.Valid() {
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return nil, nil, cmd, fmt.Errorf("--pid: invalid PID mode")
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}
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netMode, err := parseNetMode(*flNetMode)
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if err != nil {
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return nil, nil, cmd, fmt.Errorf("--net: invalid net mode: %v", err)
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}
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restartPolicy, err := parseRestartPolicy(*flRestartPolicy)
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if err != nil {
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return nil, nil, cmd, err
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}
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config := &Config{
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Hostname: hostname,
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Domainname: domainname,
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PortSpecs: nil, // Deprecated
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ExposedPorts: ports,
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User: *flUser,
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Tty: *flTty,
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NetworkDisabled: !*flNetwork,
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OpenStdin: *flStdin,
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Memory: flMemory, // FIXME: for backward compatibility
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MemorySwap: MemorySwap, // FIXME: for backward compatibility
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CpuShares: *flCpuShares, // FIXME: for backward compatibility
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Cpuset: *flCpusetCpus, // FIXME: for backward compatibility
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AttachStdin: attachStdin,
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AttachStdout: attachStdout,
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AttachStderr: attachStderr,
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Env: envVariables,
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Cmd: runCmd,
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Image: image,
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Volumes: flVolumes.GetMap(),
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MacAddress: *flMacAddress,
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Entrypoint: entrypoint,
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WorkingDir: *flWorkingDir,
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Labels: convertKVStringsToMap(labels),
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}
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hostConfig := &HostConfig{
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Binds: binds,
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ContainerIDFile: *flContainerIDFile,
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LxcConf: lxcConf,
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Memory: flMemory,
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MemorySwap: MemorySwap,
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CpuShares: *flCpuShares,
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CpusetCpus: *flCpusetCpus,
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Privileged: *flPrivileged,
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PortBindings: portBindings,
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Links: flLinks.GetAll(),
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PublishAllPorts: *flPublishAll,
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Dns: flDns.GetAll(),
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DnsSearch: flDnsSearch.GetAll(),
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ExtraHosts: flExtraHosts.GetAll(),
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VolumesFrom: flVolumesFrom.GetAll(),
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NetworkMode: netMode,
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IpcMode: ipcMode,
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PidMode: pidMode,
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Devices: deviceMappings,
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CapAdd: flCapAdd.GetAll(),
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CapDrop: flCapDrop.GetAll(),
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RestartPolicy: restartPolicy,
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SecurityOpt: flSecurityOpt.GetAll(),
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ReadonlyRootfs: *flReadonlyRootfs,
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Ulimits: flUlimits.GetList(),
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}
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// When allocating stdin in attached mode, close stdin at client disconnect
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if config.OpenStdin && config.AttachStdin {
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config.StdinOnce = true
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}
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return config, hostConfig, cmd, nil
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}
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// reads a file of line terminated key=value pairs and override that with override parameter
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func readKVStrings(files []string, override []string) ([]string, error) {
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envVariables := []string{}
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for _, ef := range files {
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parsedVars, err := opts.ParseEnvFile(ef)
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if err != nil {
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return nil, err
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}
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envVariables = append(envVariables, parsedVars...)
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}
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// parse the '-e' and '--env' after, to allow override
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envVariables = append(envVariables, override...)
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return envVariables, nil
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}
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// converts ["key=value"] to {"key":"value"}
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func convertKVStringsToMap(values []string) map[string]string {
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result := make(map[string]string, len(values))
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for _, value := range values {
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kv := strings.SplitN(value, "=", 2)
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if len(kv) == 1 {
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result[kv[0]] = ""
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} else {
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result[kv[0]] = kv[1]
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}
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}
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return result
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}
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// parseRestartPolicy returns the parsed policy or an error indicating what is incorrect
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func parseRestartPolicy(policy string) (RestartPolicy, error) {
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p := RestartPolicy{}
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if policy == "" {
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return p, nil
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}
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var (
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parts = strings.Split(policy, ":")
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name = parts[0]
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)
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p.Name = name
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switch name {
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case "always":
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if len(parts) == 2 {
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return p, fmt.Errorf("maximum restart count not valid with restart policy of \"always\"")
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}
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case "no":
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// do nothing
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case "on-failure":
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if len(parts) == 2 {
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count, err := strconv.Atoi(parts[1])
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if err != nil {
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return p, err
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}
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p.MaximumRetryCount = count
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}
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default:
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return p, fmt.Errorf("invalid restart policy %s", name)
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}
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return p, nil
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}
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// options will come in the format of name.key=value or name.option
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func parseDriverOpts(opts opts.ListOpts) (map[string][]string, error) {
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out := make(map[string][]string, len(opts.GetAll()))
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for _, o := range opts.GetAll() {
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parts := strings.SplitN(o, ".", 2)
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if len(parts) < 2 {
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return nil, fmt.Errorf("invalid opt format %s", o)
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} else if strings.TrimSpace(parts[0]) == "" {
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return nil, fmt.Errorf("key cannot be empty %s", o)
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}
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values, exists := out[parts[0]]
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if !exists {
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values = []string{}
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}
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out[parts[0]] = append(values, parts[1])
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}
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return out, nil
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}
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func parseKeyValueOpts(opts opts.ListOpts) ([]utils.KeyValuePair, error) {
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out := make([]utils.KeyValuePair, opts.Len())
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for i, o := range opts.GetAll() {
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k, v, err := parsers.ParseKeyValueOpt(o)
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if err != nil {
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return nil, err
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}
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out[i] = utils.KeyValuePair{Key: k, Value: v}
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}
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return out, nil
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}
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func parseNetMode(netMode string) (NetworkMode, error) {
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parts := strings.Split(netMode, ":")
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switch mode := parts[0]; mode {
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case "bridge", "none", "host":
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case "container":
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if len(parts) < 2 || parts[1] == "" {
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return "", fmt.Errorf("invalid container format container:<name|id>")
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}
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default:
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return "", fmt.Errorf("invalid --net: %s", netMode)
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}
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return NetworkMode(netMode), nil
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}
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func ParseDevice(device string) (DeviceMapping, error) {
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src := ""
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dst := ""
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permissions := "rwm"
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arr := strings.Split(device, ":")
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switch len(arr) {
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case 3:
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permissions = arr[2]
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fallthrough
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case 2:
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dst = arr[1]
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fallthrough
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case 1:
|
|
src = arr[0]
|
|
default:
|
|
return DeviceMapping{}, fmt.Errorf("Invalid device specification: %s", device)
|
|
}
|
|
|
|
if dst == "" {
|
|
dst = src
|
|
}
|
|
|
|
deviceMapping := DeviceMapping{
|
|
PathOnHost: src,
|
|
PathInContainer: dst,
|
|
CgroupPermissions: permissions,
|
|
}
|
|
return deviceMapping, nil
|
|
}
|