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package daemon
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import (
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"bufio"
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"fmt"
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"io"
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"os/exec"
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"os/user"
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"path"
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"sync"
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"syscall"
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"github.com/subgraph/oz"
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"github.com/subgraph/oz/fs"
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"github.com/subgraph/oz/xpra"
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"github.com/subgraph/oz/network"
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"github.com/op/go-logging"
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)
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const initPath = "/usr/local/bin/oz-init"
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type Sandbox struct {
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daemon *daemonState
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id int
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display int
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profile *oz.Profile
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init *exec.Cmd
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cred *syscall.Credential
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fs *fs.Filesystem
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stderr io.ReadCloser
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addr string
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xpra *xpra.Xpra
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ready sync.WaitGroup
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network *network.SandboxNetwork
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}
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/*
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func findSandbox(id int) *Sandbox {
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for _, sb := range sandboxes {
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if sb.id == id {
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return sb
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}
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}
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return nil
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}
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*/
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func createInitCommand(name, chroot string, uid uint32, display int, stn *network.SandboxNetwork, nettype string) *exec.Cmd {
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cmd := exec.Command(initPath)
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cmd.Dir = "/"
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cloneFlags := uintptr(syscall.CLONE_NEWNS)
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cloneFlags |= syscall.CLONE_NEWIPC
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cloneFlags |= syscall.CLONE_NEWPID
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cloneFlags |= syscall.CLONE_NEWUTS
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if nettype != "host" {
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cloneFlags |= syscall.CLONE_NEWNET
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}
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cmd.SysProcAttr = &syscall.SysProcAttr{
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Chroot: chroot,
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Cloneflags: cloneFlags,
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}
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cmd.Env = []string{
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"INIT_PROFILE=" + name,
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fmt.Sprintf("INIT_UID=%d", uid),
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}
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if stn.Ip != "" {
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cmd.Env = append(cmd.Env, "INIT_ADDR=" + stn.Ip)
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cmd.Env = append(cmd.Env, "INIT_VHOST=" + stn.VethHost)
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cmd.Env = append(cmd.Env, "INIT_VGUEST=" + stn.VethGuest)
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cmd.Env = append(cmd.Env, "INIT_GATEWAY=" + stn.Gateway.String() + "/" + stn.Class)
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}
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cmd.Env = append(cmd.Env, fmt.Sprintf("INIT_DISPLAY=%d", display))
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return cmd
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}
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func (d *daemonState) launch(p *oz.Profile, uid, gid uint32, log *logging.Logger) (*Sandbox, error) {
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u, err := user.LookupId(fmt.Sprintf("%d", uid))
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if err != nil {
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return nil, fmt.Errorf("failed to lookup user for uid=%d: %v", uid, err)
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}
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fs := fs.NewFromProfile(p, u, d.config.SandboxPath, d.config.UseFullDev, d.log)
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if err := fs.Setup(d.config.ProfileDir); err != nil {
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return nil, err
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}
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display := 0
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if p.XServer.Enabled && p.Networking.Nettype == "host" {
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display = d.nextDisplay
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d.nextDisplay += 1
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}
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stn := new(network.SandboxNetwork)
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if p.Networking.Nettype == "bridge" {
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stn, err = network.PrepareSandboxNetwork(d.network, log)
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if err != nil {
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return nil, fmt.Errorf("Unable to prepare veth network: %+v", err)
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}
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}
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cmd := createInitCommand(p.Name, fs.Root(), uid, display, stn, p.Networking.Nettype)
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log.Debug("Command environment: %+v", cmd.Env)
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pp, err := cmd.StderrPipe()
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if err != nil {
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fs.Cleanup()
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return nil, fmt.Errorf("error creating stderr pipe for init process: %v", err)
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}
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if err := cmd.Start(); err != nil {
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fs.Cleanup()
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return nil, fmt.Errorf("Unable to start process: %+v", err)
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}
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sbox := &Sandbox{
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daemon: d,
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id: d.nextSboxId,
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display: display,
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profile: p,
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init: cmd,
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cred: &syscall.Credential{Uid: uid, Gid: gid},
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fs: fs,
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addr: path.Join(fs.Root(), "tmp", "oz-init-control"),
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stderr: pp,
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network: stn,
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}
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if p.Networking.Nettype == "bridge" {
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if err := network.NetInit(stn, d.network, cmd.Process.Pid, log); err != nil {
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cmd.Process.Kill()
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fs.Cleanup()
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return nil, fmt.Errorf("Unable to create veth networking: %+v", err)
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}
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}
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sbox.ready.Add(1)
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go sbox.logMessages()
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if sbox.profile.XServer.Enabled {
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go func() {
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sbox.ready.Wait()
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go sbox.startXpraClient()
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}()
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}
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d.nextSboxId += 1
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d.sandboxes = append(d.sandboxes, sbox)
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return sbox, nil
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}
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func (sbox *Sandbox) remove(log *logging.Logger) {
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sboxes := []*Sandbox{}
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for _, sb := range sbox.daemon.sandboxes {
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if sb == sbox {
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sb.fs.Cleanup()
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if sb.profile.Networking.Nettype == "bridge" {
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sb.network.Cleanup(log)
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}
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} else {
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sboxes = append(sboxes, sb)
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}
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}
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sbox.daemon.sandboxes = sboxes
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}
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func (sbox *Sandbox) logMessages() {
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scanner := bufio.NewScanner(sbox.stderr)
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seenOk := false
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for scanner.Scan() {
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line := scanner.Text()
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if line == "OK" && !seenOk {
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sbox.daemon.log.Info("oz-init (%s) is ready", sbox.profile.Name)
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seenOk = true
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sbox.ready.Done()
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} else if len(line) > 1 {
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sbox.logLine(line)
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}
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}
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sbox.stderr.Close()
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}
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func (sbox *Sandbox) logLine(line string) {
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if len(line) < 2 {
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return
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}
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f := sbox.getLogFunc(line[0])
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msg := line[2:]
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if f != nil {
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f("[%s] %s", sbox.profile.Name, msg)
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} else {
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sbox.daemon.log.Info("[%s] %s", sbox.profile.Name, line)
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}
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}
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func (sbox *Sandbox) getLogFunc(c byte) func(string, ...interface{}) {
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log := sbox.daemon.log
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switch c {
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case 'D':
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return log.Debug
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case 'I':
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return log.Info
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case 'N':
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return log.Notice
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case 'W':
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return log.Warning
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case 'E':
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return log.Error
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case 'C':
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return log.Critical
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}
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return nil
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}
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func (sbox *Sandbox) startXpraClient() {
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sbox.xpra = xpra.NewClient(
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&sbox.profile.XServer,
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uint64(sbox.display),
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sbox.cred,
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sbox.fs.Xpra(),
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sbox.profile.Name,
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sbox.daemon.log)
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if sbox.daemon.config.LogXpra {
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sbox.setupXpraLogging()
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}
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if err := sbox.xpra.Process.Start(); err != nil {
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sbox.daemon.Warning("Failed to start xpra client: %v", err)
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}
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}
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func (sbox *Sandbox) setupXpraLogging() {
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stdout, err := sbox.xpra.Process.StdoutPipe()
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if err != nil {
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sbox.daemon.Warning("Failed to create xpra stdout pipe: %v", err)
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return
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}
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stderr, err := sbox.xpra.Process.StderrPipe()
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if err != nil {
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stdout.Close()
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sbox.daemon.Warning("Failed to create xpra stderr pipe: %v", err)
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}
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go sbox.logPipeOutput(stdout, "xpra-stdout")
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go sbox.logPipeOutput(stderr, "xpra-stderr")
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}
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func (sbox *Sandbox) logPipeOutput(p io.Reader, label string) {
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scanner := bufio.NewScanner(p)
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for scanner.Scan() {
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line := scanner.Text()
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sbox.daemon.log.Info("(%s) %s", label, line)
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}
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}
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