c258a2d8f0
Signed-off-by: Antonio Murdaca <runcom@redhat.com>
552 lines
12 KiB
Go
552 lines
12 KiB
Go
package integration
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import (
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"bytes"
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"fmt"
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"io"
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"os"
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"strconv"
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"strings"
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"syscall"
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"testing"
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"time"
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"github.com/opencontainers/runc/libcontainer"
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"github.com/opencontainers/runc/libcontainer/configs"
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)
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func TestExecIn(t *testing.T) {
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if testing.Short() {
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return
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}
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rootfs, err := newRootfs()
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ok(t, err)
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defer remove(rootfs)
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config := newTemplateConfig(rootfs)
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container, err := newContainer(config)
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ok(t, err)
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defer container.Destroy()
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// Execute a first process in the container
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stdinR, stdinW, err := os.Pipe()
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ok(t, err)
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process := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"cat"},
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Env: standardEnvironment,
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Stdin: stdinR,
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}
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err = container.Run(process)
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stdinR.Close()
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defer stdinW.Close()
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ok(t, err)
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buffers := newStdBuffers()
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ps := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"ps"},
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Env: standardEnvironment,
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Stdin: buffers.Stdin,
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Stdout: buffers.Stdout,
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Stderr: buffers.Stderr,
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}
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err = container.Run(ps)
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ok(t, err)
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waitProcess(ps, t)
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stdinW.Close()
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waitProcess(process, t)
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out := buffers.Stdout.String()
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if !strings.Contains(out, "cat") || !strings.Contains(out, "ps") {
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t.Fatalf("unexpected running process, output %q", out)
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}
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if strings.Contains(out, "\r") {
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t.Fatalf("unexpected carriage-return in output")
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}
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}
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func TestExecInUsernsRlimit(t *testing.T) {
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if _, err := os.Stat("/proc/self/ns/user"); os.IsNotExist(err) {
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t.Skip("userns is unsupported")
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}
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testExecInRlimit(t, true)
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}
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func TestExecInRlimit(t *testing.T) {
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testExecInRlimit(t, false)
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}
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func testExecInRlimit(t *testing.T, userns bool) {
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if testing.Short() {
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return
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}
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rootfs, err := newRootfs()
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ok(t, err)
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defer remove(rootfs)
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config := newTemplateConfig(rootfs)
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if userns {
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config.UidMappings = []configs.IDMap{{HostID: 0, ContainerID: 0, Size: 1000}}
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config.GidMappings = []configs.IDMap{{HostID: 0, ContainerID: 0, Size: 1000}}
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config.Namespaces = append(config.Namespaces, configs.Namespace{Type: configs.NEWUSER})
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}
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container, err := newContainer(config)
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ok(t, err)
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defer container.Destroy()
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stdinR, stdinW, err := os.Pipe()
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ok(t, err)
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process := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"cat"},
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Env: standardEnvironment,
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Stdin: stdinR,
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}
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err = container.Run(process)
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stdinR.Close()
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defer stdinW.Close()
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ok(t, err)
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buffers := newStdBuffers()
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ps := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"/bin/sh", "-c", "ulimit -n"},
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Env: standardEnvironment,
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Stdin: buffers.Stdin,
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Stdout: buffers.Stdout,
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Stderr: buffers.Stderr,
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Rlimits: []configs.Rlimit{
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// increase process rlimit higher than container rlimit to test per-process limit
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{Type: syscall.RLIMIT_NOFILE, Hard: 1026, Soft: 1026},
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},
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}
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err = container.Run(ps)
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ok(t, err)
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waitProcess(ps, t)
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stdinW.Close()
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waitProcess(process, t)
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out := buffers.Stdout.String()
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if limit := strings.TrimSpace(out); limit != "1026" {
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t.Fatalf("expected rlimit to be 1026, got %s", limit)
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}
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}
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func TestExecInAdditionalGroups(t *testing.T) {
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if testing.Short() {
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return
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}
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rootfs, err := newRootfs()
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ok(t, err)
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defer remove(rootfs)
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config := newTemplateConfig(rootfs)
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container, err := newContainer(config)
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ok(t, err)
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defer container.Destroy()
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// Execute a first process in the container
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stdinR, stdinW, err := os.Pipe()
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ok(t, err)
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process := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"cat"},
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Env: standardEnvironment,
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Stdin: stdinR,
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}
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err = container.Run(process)
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stdinR.Close()
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defer stdinW.Close()
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ok(t, err)
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var stdout bytes.Buffer
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pconfig := libcontainer.Process{
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Cwd: "/",
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Args: []string{"sh", "-c", "id", "-Gn"},
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Env: standardEnvironment,
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Stdin: nil,
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Stdout: &stdout,
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AdditionalGroups: []string{"plugdev", "audio"},
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}
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err = container.Run(&pconfig)
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ok(t, err)
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// Wait for process
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waitProcess(&pconfig, t)
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stdinW.Close()
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waitProcess(process, t)
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outputGroups := string(stdout.Bytes())
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// Check that the groups output has the groups that we specified
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if !strings.Contains(outputGroups, "audio") {
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t.Fatalf("Listed groups do not contain the audio group as expected: %v", outputGroups)
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}
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if !strings.Contains(outputGroups, "plugdev") {
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t.Fatalf("Listed groups do not contain the plugdev group as expected: %v", outputGroups)
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}
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}
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func TestExecInError(t *testing.T) {
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if testing.Short() {
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return
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}
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rootfs, err := newRootfs()
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ok(t, err)
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defer remove(rootfs)
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config := newTemplateConfig(rootfs)
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container, err := newContainer(config)
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ok(t, err)
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defer container.Destroy()
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// Execute a first process in the container
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stdinR, stdinW, err := os.Pipe()
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ok(t, err)
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process := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"cat"},
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Env: standardEnvironment,
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Stdin: stdinR,
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}
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err = container.Run(process)
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stdinR.Close()
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defer func() {
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stdinW.Close()
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if _, err := process.Wait(); err != nil {
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t.Log(err)
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}
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}()
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ok(t, err)
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for i := 0; i < 42; i++ {
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var out bytes.Buffer
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unexistent := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"unexistent"},
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Env: standardEnvironment,
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Stdout: &out,
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}
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err = container.Run(unexistent)
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if err == nil {
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t.Fatal("Should be an error")
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}
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if !strings.Contains(err.Error(), "executable file not found") {
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t.Fatalf("Should be error about not found executable, got %s", err)
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}
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if !bytes.Contains(out.Bytes(), []byte("executable file not found")) {
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t.Fatalf("executable file not found error not delivered to stdio:\n%s", out.String())
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}
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}
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}
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func TestExecInTTY(t *testing.T) {
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if testing.Short() {
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return
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}
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rootfs, err := newRootfs()
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ok(t, err)
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defer remove(rootfs)
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config := newTemplateConfig(rootfs)
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container, err := newContainer(config)
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ok(t, err)
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defer container.Destroy()
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// Execute a first process in the container
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stdinR, stdinW, err := os.Pipe()
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ok(t, err)
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process := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"cat"},
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Env: standardEnvironment,
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Stdin: stdinR,
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}
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err = container.Run(process)
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stdinR.Close()
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defer stdinW.Close()
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ok(t, err)
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var stdout bytes.Buffer
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ps := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"ps"},
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Env: standardEnvironment,
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}
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err = container.Run(ps)
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ok(t, err)
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console, err := ps.GetConsole()
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copy := make(chan struct{})
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go func() {
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io.Copy(&stdout, console)
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close(copy)
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}()
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ok(t, err)
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select {
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case <-time.After(5 * time.Second):
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t.Fatal("Waiting for copy timed out")
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case <-copy:
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}
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waitProcess(ps, t)
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stdinW.Close()
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waitProcess(process, t)
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out := stdout.String()
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if !strings.Contains(out, "cat") || !strings.Contains(out, "ps") {
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t.Fatalf("unexpected running process, output %q", out)
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}
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if strings.Contains(out, "\r") {
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t.Fatalf("unexpected carriage-return in output")
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}
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}
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func TestExecInEnvironment(t *testing.T) {
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if testing.Short() {
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return
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}
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rootfs, err := newRootfs()
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ok(t, err)
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defer remove(rootfs)
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config := newTemplateConfig(rootfs)
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container, err := newContainer(config)
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ok(t, err)
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defer container.Destroy()
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// Execute a first process in the container
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stdinR, stdinW, err := os.Pipe()
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ok(t, err)
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process := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"cat"},
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Env: standardEnvironment,
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Stdin: stdinR,
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}
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err = container.Run(process)
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stdinR.Close()
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defer stdinW.Close()
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ok(t, err)
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buffers := newStdBuffers()
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process2 := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"env"},
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Env: []string{
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"PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin",
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"DEBUG=true",
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"DEBUG=false",
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"ENV=test",
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},
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Stdin: buffers.Stdin,
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Stdout: buffers.Stdout,
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Stderr: buffers.Stderr,
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}
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err = container.Run(process2)
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ok(t, err)
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waitProcess(process2, t)
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stdinW.Close()
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waitProcess(process, t)
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out := buffers.Stdout.String()
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// check execin's process environment
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if !strings.Contains(out, "DEBUG=false") ||
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!strings.Contains(out, "ENV=test") ||
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!strings.Contains(out, "HOME=/root") ||
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!strings.Contains(out, "PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin") ||
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strings.Contains(out, "DEBUG=true") {
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t.Fatalf("unexpected running process, output %q", out)
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}
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}
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func TestExecinPassExtraFiles(t *testing.T) {
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if testing.Short() {
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return
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}
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rootfs, err := newRootfs()
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if err != nil {
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t.Fatal(err)
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}
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defer remove(rootfs)
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config := newTemplateConfig(rootfs)
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container, err := newContainer(config)
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if err != nil {
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t.Fatal(err)
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}
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defer container.Destroy()
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// Execute a first process in the container
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stdinR, stdinW, err := os.Pipe()
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if err != nil {
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t.Fatal(err)
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}
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process := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"cat"},
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Env: standardEnvironment,
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Stdin: stdinR,
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}
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err = container.Run(process)
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stdinR.Close()
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defer stdinW.Close()
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if err != nil {
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t.Fatal(err)
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}
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var stdout bytes.Buffer
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pipeout1, pipein1, err := os.Pipe()
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pipeout2, pipein2, err := os.Pipe()
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inprocess := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"sh", "-c", "cd /proc/$$/fd; echo -n *; echo -n 1 >3; echo -n 2 >4"},
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Env: []string{"PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin"},
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ExtraFiles: []*os.File{pipein1, pipein2},
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Stdin: nil,
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Stdout: &stdout,
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}
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err = container.Run(inprocess)
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if err != nil {
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t.Fatal(err)
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}
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waitProcess(inprocess, t)
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stdinW.Close()
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waitProcess(process, t)
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out := string(stdout.Bytes())
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// fd 5 is the directory handle for /proc/$$/fd
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if out != "0 1 2 3 4 5" {
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t.Fatalf("expected to have the file descriptors '0 1 2 3 4 5' passed to exec, got '%s'", out)
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}
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var buf = []byte{0}
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_, err = pipeout1.Read(buf)
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if err != nil {
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t.Fatal(err)
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}
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out1 := string(buf)
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if out1 != "1" {
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t.Fatalf("expected first pipe to receive '1', got '%s'", out1)
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}
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_, err = pipeout2.Read(buf)
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if err != nil {
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t.Fatal(err)
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}
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out2 := string(buf)
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if out2 != "2" {
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t.Fatalf("expected second pipe to receive '2', got '%s'", out2)
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}
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}
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func TestExecInOomScoreAdj(t *testing.T) {
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if testing.Short() {
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return
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}
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rootfs, err := newRootfs()
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ok(t, err)
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defer remove(rootfs)
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config := newTemplateConfig(rootfs)
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config.OomScoreAdj = 200
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container, err := newContainer(config)
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ok(t, err)
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defer container.Destroy()
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stdinR, stdinW, err := os.Pipe()
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ok(t, err)
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process := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"cat"},
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Env: standardEnvironment,
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Stdin: stdinR,
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}
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err = container.Run(process)
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stdinR.Close()
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defer stdinW.Close()
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ok(t, err)
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buffers := newStdBuffers()
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ps := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"/bin/sh", "-c", "cat /proc/self/oom_score_adj"},
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Env: standardEnvironment,
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Stdin: buffers.Stdin,
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Stdout: buffers.Stdout,
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Stderr: buffers.Stderr,
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}
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err = container.Run(ps)
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ok(t, err)
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waitProcess(ps, t)
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stdinW.Close()
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waitProcess(process, t)
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out := buffers.Stdout.String()
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if oomScoreAdj := strings.TrimSpace(out); oomScoreAdj != strconv.Itoa(config.OomScoreAdj) {
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t.Fatalf("expected oomScoreAdj to be %d, got %s", config.OomScoreAdj, oomScoreAdj)
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}
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}
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func TestExecInUserns(t *testing.T) {
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if _, err := os.Stat("/proc/self/ns/user"); os.IsNotExist(err) {
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t.Skip("userns is unsupported")
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}
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if testing.Short() {
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return
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}
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rootfs, err := newRootfs()
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ok(t, err)
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defer remove(rootfs)
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config := newTemplateConfig(rootfs)
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config.UidMappings = []configs.IDMap{{HostID: 0, ContainerID: 0, Size: 1000}}
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config.GidMappings = []configs.IDMap{{HostID: 0, ContainerID: 0, Size: 1000}}
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config.Namespaces = append(config.Namespaces, configs.Namespace{Type: configs.NEWUSER})
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container, err := newContainer(config)
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ok(t, err)
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defer container.Destroy()
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// Execute a first process in the container
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stdinR, stdinW, err := os.Pipe()
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ok(t, err)
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process := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"cat"},
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Env: standardEnvironment,
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Stdin: stdinR,
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}
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err = container.Run(process)
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stdinR.Close()
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defer stdinW.Close()
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ok(t, err)
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initPID, err := process.Pid()
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ok(t, err)
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initUserns, err := os.Readlink(fmt.Sprintf("/proc/%d/ns/user", initPID))
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ok(t, err)
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buffers := newStdBuffers()
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process2 := &libcontainer.Process{
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Cwd: "/",
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Args: []string{"readlink", "/proc/self/ns/user"},
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Env: []string{
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"PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin",
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},
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Stdout: buffers.Stdout,
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Stderr: os.Stderr,
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}
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err = container.Run(process2)
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ok(t, err)
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waitProcess(process2, t)
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stdinW.Close()
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waitProcess(process, t)
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if out := strings.TrimSpace(buffers.Stdout.String()); out != initUserns {
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t.Errorf("execin userns(%s), wanted %s", out, initUserns)
|
|
}
|
|
}
|