356 lines
8.8 KiB
Go
356 lines
8.8 KiB
Go
package docker
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import (
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"fmt"
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"github.com/dotcloud/docker/archive"
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"github.com/dotcloud/docker/pkg/namesgenerator"
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"github.com/dotcloud/docker/utils"
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"io/ioutil"
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"strconv"
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"strings"
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)
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type Change struct {
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archive.Change
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}
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// Compare two Config struct. Do not compare the "Image" nor "Hostname" fields
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// If OpenStdin is set, then it differs
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func CompareConfig(a, b *Config) bool {
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if a == nil || b == nil ||
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a.OpenStdin || b.OpenStdin {
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return false
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}
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if a.AttachStdout != b.AttachStdout ||
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a.AttachStderr != b.AttachStderr ||
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a.User != b.User ||
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a.Memory != b.Memory ||
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a.MemorySwap != b.MemorySwap ||
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a.CpuShares != b.CpuShares ||
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a.OpenStdin != b.OpenStdin ||
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a.Tty != b.Tty ||
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a.VolumesFrom != b.VolumesFrom {
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return false
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}
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if len(a.Cmd) != len(b.Cmd) ||
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len(a.Dns) != len(b.Dns) ||
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len(a.Env) != len(b.Env) ||
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len(a.PortSpecs) != len(b.PortSpecs) ||
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len(a.ExposedPorts) != len(b.ExposedPorts) ||
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len(a.Entrypoint) != len(b.Entrypoint) ||
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len(a.Volumes) != len(b.Volumes) {
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return false
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}
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for i := 0; i < len(a.Cmd); i++ {
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if a.Cmd[i] != b.Cmd[i] {
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return false
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}
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}
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for i := 0; i < len(a.Dns); i++ {
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if a.Dns[i] != b.Dns[i] {
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return false
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}
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}
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for i := 0; i < len(a.Env); i++ {
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if a.Env[i] != b.Env[i] {
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return false
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}
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}
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for i := 0; i < len(a.PortSpecs); i++ {
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if a.PortSpecs[i] != b.PortSpecs[i] {
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return false
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}
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}
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for k := range a.ExposedPorts {
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if _, exists := b.ExposedPorts[k]; !exists {
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return false
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}
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}
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for i := 0; i < len(a.Entrypoint); i++ {
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if a.Entrypoint[i] != b.Entrypoint[i] {
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return false
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}
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}
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for key := range a.Volumes {
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if _, exists := b.Volumes[key]; !exists {
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return false
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}
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}
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return true
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}
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func MergeConfig(userConf, imageConf *Config) error {
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if userConf.User == "" {
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userConf.User = imageConf.User
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}
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if userConf.Memory == 0 {
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userConf.Memory = imageConf.Memory
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}
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if userConf.MemorySwap == 0 {
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userConf.MemorySwap = imageConf.MemorySwap
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}
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if userConf.CpuShares == 0 {
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userConf.CpuShares = imageConf.CpuShares
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}
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if userConf.ExposedPorts == nil || len(userConf.ExposedPorts) == 0 {
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userConf.ExposedPorts = imageConf.ExposedPorts
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} else if imageConf.ExposedPorts != nil {
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if userConf.ExposedPorts == nil {
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userConf.ExposedPorts = make(map[Port]struct{})
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}
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for port := range imageConf.ExposedPorts {
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if _, exists := userConf.ExposedPorts[port]; !exists {
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userConf.ExposedPorts[port] = struct{}{}
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}
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}
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}
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if userConf.PortSpecs != nil && len(userConf.PortSpecs) > 0 {
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if userConf.ExposedPorts == nil {
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userConf.ExposedPorts = make(map[Port]struct{})
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}
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ports, _, err := parsePortSpecs(userConf.PortSpecs)
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if err != nil {
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return err
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}
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for port := range ports {
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if _, exists := userConf.ExposedPorts[port]; !exists {
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userConf.ExposedPorts[port] = struct{}{}
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}
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}
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userConf.PortSpecs = nil
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}
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if imageConf.PortSpecs != nil && len(imageConf.PortSpecs) > 0 {
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utils.Debugf("Migrating image port specs to containter: %s", strings.Join(imageConf.PortSpecs, ", "))
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if userConf.ExposedPorts == nil {
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userConf.ExposedPorts = make(map[Port]struct{})
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}
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ports, _, err := parsePortSpecs(imageConf.PortSpecs)
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if err != nil {
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return err
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}
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for port := range ports {
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if _, exists := userConf.ExposedPorts[port]; !exists {
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userConf.ExposedPorts[port] = struct{}{}
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}
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}
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}
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if !userConf.Tty {
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userConf.Tty = imageConf.Tty
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}
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if !userConf.OpenStdin {
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userConf.OpenStdin = imageConf.OpenStdin
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}
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if !userConf.StdinOnce {
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userConf.StdinOnce = imageConf.StdinOnce
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}
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if userConf.Env == nil || len(userConf.Env) == 0 {
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userConf.Env = imageConf.Env
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} else {
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for _, imageEnv := range imageConf.Env {
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found := false
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imageEnvKey := strings.Split(imageEnv, "=")[0]
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for _, userEnv := range userConf.Env {
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userEnvKey := strings.Split(userEnv, "=")[0]
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if imageEnvKey == userEnvKey {
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found = true
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}
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}
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if !found {
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userConf.Env = append(userConf.Env, imageEnv)
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}
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}
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}
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if userConf.Cmd == nil || len(userConf.Cmd) == 0 {
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userConf.Cmd = imageConf.Cmd
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}
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if userConf.Dns == nil || len(userConf.Dns) == 0 {
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userConf.Dns = imageConf.Dns
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} else {
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//duplicates aren't an issue here
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userConf.Dns = append(userConf.Dns, imageConf.Dns...)
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}
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if userConf.Entrypoint == nil || len(userConf.Entrypoint) == 0 {
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userConf.Entrypoint = imageConf.Entrypoint
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}
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if userConf.WorkingDir == "" {
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userConf.WorkingDir = imageConf.WorkingDir
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}
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if userConf.VolumesFrom == "" {
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userConf.VolumesFrom = imageConf.VolumesFrom
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}
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if userConf.Volumes == nil || len(userConf.Volumes) == 0 {
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userConf.Volumes = imageConf.Volumes
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} else {
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for k, v := range imageConf.Volumes {
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userConf.Volumes[k] = v
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}
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}
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return nil
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}
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func parseLxcConfOpts(opts ListOpts) ([]KeyValuePair, error) {
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out := make([]KeyValuePair, opts.Len())
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for i, o := range opts.GetAll() {
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k, v, err := parseLxcOpt(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] = 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 parseLxcOpt(opt string) (string, string, error) {
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parts := strings.SplitN(opt, "=", 2)
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if len(parts) != 2 {
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return "", "", fmt.Errorf("Unable to parse lxc conf option: %s", opt)
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}
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return strings.TrimSpace(parts[0]), strings.TrimSpace(parts[1]), nil
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}
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// FIXME: network related stuff (including parsing) should be grouped in network file
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const (
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PortSpecTemplate = "ip:hostPort:containerPort"
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PortSpecTemplateFormat = "ip:hostPort:containerPort | ip::containerPort | hostPort:containerPort"
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)
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// We will receive port specs in the format of ip:public:private/proto and these need to be
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// parsed in the internal types
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func parsePortSpecs(ports []string) (map[Port]struct{}, map[Port][]PortBinding, error) {
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var (
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exposedPorts = make(map[Port]struct{}, len(ports))
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bindings = make(map[Port][]PortBinding)
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)
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for _, rawPort := range ports {
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proto := "tcp"
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if i := strings.LastIndex(rawPort, "/"); i != -1 {
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proto = rawPort[i+1:]
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rawPort = rawPort[:i]
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}
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if !strings.Contains(rawPort, ":") {
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rawPort = fmt.Sprintf("::%s", rawPort)
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} else if len(strings.Split(rawPort, ":")) == 2 {
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rawPort = fmt.Sprintf(":%s", rawPort)
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}
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parts, err := utils.PartParser(PortSpecTemplate, rawPort)
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if err != nil {
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return nil, nil, err
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}
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var (
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containerPort = parts["containerPort"]
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rawIp = parts["ip"]
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hostPort = parts["hostPort"]
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)
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if containerPort == "" {
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return nil, nil, fmt.Errorf("No port specified: %s<empty>", rawPort)
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}
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if _, err := strconv.ParseUint(containerPort, 10, 16); err != nil {
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return nil, nil, fmt.Errorf("Invalid containerPort: %s", containerPort)
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}
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if _, err := strconv.ParseUint(hostPort, 10, 16); hostPort != "" && err != nil {
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return nil, nil, fmt.Errorf("Invalid hostPort: %s", hostPort)
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}
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port := NewPort(proto, containerPort)
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if _, exists := exposedPorts[port]; !exists {
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exposedPorts[port] = struct{}{}
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}
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binding := PortBinding{
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HostIp: rawIp,
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HostPort: hostPort,
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}
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bslice, exists := bindings[port]
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if !exists {
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bslice = []PortBinding{}
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}
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bindings[port] = append(bslice, binding)
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}
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return exposedPorts, bindings, nil
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}
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// Splits a port in the format of port/proto
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func splitProtoPort(rawPort string) (string, string) {
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parts := strings.Split(rawPort, "/")
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l := len(parts)
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if l == 0 {
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return "", ""
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}
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if l == 1 {
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return "tcp", rawPort
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}
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return parts[0], parts[1]
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}
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func parsePort(rawPort string) (int, error) {
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port, err := strconv.ParseUint(rawPort, 10, 16)
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if err != nil {
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return 0, err
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}
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return int(port), nil
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}
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func migratePortMappings(config *Config, hostConfig *HostConfig) error {
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if config.PortSpecs != nil {
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ports, bindings, err := parsePortSpecs(config.PortSpecs)
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if err != nil {
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return err
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}
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config.PortSpecs = nil
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if len(bindings) > 0 {
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if hostConfig == nil {
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hostConfig = &HostConfig{}
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}
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hostConfig.PortBindings = bindings
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}
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if config.ExposedPorts == nil {
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config.ExposedPorts = make(map[Port]struct{}, len(ports))
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}
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for k, v := range ports {
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config.ExposedPorts[k] = v
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}
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}
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return nil
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}
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// Links come in the format of
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// name:alias
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func parseLink(rawLink string) (map[string]string, error) {
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return utils.PartParser("name:alias", rawLink)
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}
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func RootIsShared() bool {
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if data, err := ioutil.ReadFile("/proc/self/mountinfo"); err == nil {
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for _, line := range strings.Split(string(data), "\n") {
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cols := strings.Split(line, " ")
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if len(cols) >= 6 && cols[4] == "/" {
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return strings.HasPrefix(cols[6], "shared")
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}
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}
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}
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// No idea, probably safe to assume so
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return true
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}
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type checker struct {
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runtime *Runtime
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}
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func (c *checker) Exists(name string) bool {
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return c.runtime.containerGraph.Exists("/" + name)
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}
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// Generate a random and unique name
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func generateRandomName(runtime *Runtime) (string, error) {
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return namesgenerator.GenerateRandomName(&checker{runtime})
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}
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