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https://github.com/kemko/nomad.git
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Add a new hostname string parameter to the network block which allows operators to specify the hostname of the network namespace. Changing this causes a destructive update to the allocation and it is omitted if empty from API responses. This parameter also supports interpolation. In order to have a hostname passed as a configuration param when creating an allocation network, the CreateNetwork func of the DriverNetworkManager interface needs to be updated. In order to minimize the disruption of future changes, rather than add another string func arg, the function now accepts a request struct along with the allocID param. The struct has the hostname as a field. The in-tree implementations of DriverNetworkManager.CreateNetwork have been modified to account for the function signature change. In updating for the change, the enhancement of adding hostnames to network namespaces has also been added to the Docker driver, whilst the default Linux manager does not current implement it.
283 lines
9.3 KiB
Go
283 lines
9.3 KiB
Go
package testutils
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import (
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"context"
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"fmt"
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"io/ioutil"
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"path/filepath"
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"runtime"
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"strings"
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"time"
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testing "github.com/mitchellh/go-testing-interface"
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hclog "github.com/hashicorp/go-hclog"
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plugin "github.com/hashicorp/go-plugin"
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"github.com/hashicorp/nomad/client/allocdir"
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"github.com/hashicorp/nomad/client/config"
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"github.com/hashicorp/nomad/client/logmon"
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"github.com/hashicorp/nomad/client/taskenv"
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"github.com/hashicorp/nomad/helper/testlog"
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"github.com/hashicorp/nomad/helper/uuid"
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"github.com/hashicorp/nomad/nomad/mock"
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"github.com/hashicorp/nomad/nomad/structs"
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"github.com/hashicorp/nomad/plugins/base"
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"github.com/hashicorp/nomad/plugins/drivers"
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"github.com/hashicorp/nomad/plugins/shared/hclspec"
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"github.com/stretchr/testify/require"
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)
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type DriverHarness struct {
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drivers.DriverPlugin
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client *plugin.GRPCClient
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server *plugin.GRPCServer
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t testing.T
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logger hclog.Logger
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impl drivers.DriverPlugin
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}
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func (d *DriverHarness) Impl() drivers.DriverPlugin {
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return d.impl
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}
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func NewDriverHarness(t testing.T, d drivers.DriverPlugin) *DriverHarness {
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logger := testlog.HCLogger(t).Named("driver_harness")
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pd := drivers.NewDriverPlugin(d, logger)
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client, server := plugin.TestPluginGRPCConn(t,
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map[string]plugin.Plugin{
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base.PluginTypeDriver: pd,
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base.PluginTypeBase: &base.PluginBase{Impl: d},
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"logmon": logmon.NewPlugin(logmon.NewLogMon(logger.Named("logmon"))),
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},
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)
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raw, err := client.Dispense(base.PluginTypeDriver)
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if err != nil {
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t.Fatalf("err dispensing plugin: %v", err)
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}
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dClient := raw.(drivers.DriverPlugin)
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h := &DriverHarness{
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client: client,
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server: server,
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DriverPlugin: dClient,
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logger: logger,
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t: t,
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impl: d,
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}
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return h
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}
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func (h *DriverHarness) Kill() {
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h.client.Close()
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h.server.Stop()
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}
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// MkAllocDir creates a temporary directory and allocdir structure.
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// If enableLogs is set to true a logmon instance will be started to write logs
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// to the LogDir of the task
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// A cleanup func is returned and should be deferred so as to not leak dirs
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// between tests.
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func (h *DriverHarness) MkAllocDir(t *drivers.TaskConfig, enableLogs bool) func() {
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dir, err := ioutil.TempDir("", "nomad_driver_harness-")
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require.NoError(h.t, err)
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t.AllocDir = dir
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allocDir := allocdir.NewAllocDir(h.logger, dir)
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require.NoError(h.t, allocDir.Build())
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taskDir := allocDir.NewTaskDir(t.Name)
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caps, err := h.Capabilities()
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require.NoError(h.t, err)
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fsi := caps.FSIsolation
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require.NoError(h.t, taskDir.Build(fsi == drivers.FSIsolationChroot, config.DefaultChrootEnv))
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task := &structs.Task{
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Name: t.Name,
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Env: t.Env,
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}
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// Create the mock allocation
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alloc := mock.Alloc()
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if t.Resources != nil {
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alloc.AllocatedResources.Tasks[task.Name] = t.Resources.NomadResources
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}
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taskBuilder := taskenv.NewBuilder(mock.Node(), alloc, task, "global")
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SetEnvvars(taskBuilder, fsi, taskDir, config.DefaultConfig())
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taskEnv := taskBuilder.Build()
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if t.Env == nil {
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t.Env = taskEnv.Map()
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} else {
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for k, v := range taskEnv.Map() {
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if _, ok := t.Env[k]; !ok {
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t.Env[k] = v
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}
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}
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}
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//logmon
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if enableLogs {
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lm := logmon.NewLogMon(h.logger.Named("logmon"))
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if runtime.GOOS == "windows" {
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id := uuid.Generate()[:8]
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t.StdoutPath = fmt.Sprintf("//./pipe/%s-%s.stdout", t.Name, id)
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t.StderrPath = fmt.Sprintf("//./pipe/%s-%s.stderr", t.Name, id)
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} else {
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t.StdoutPath = filepath.Join(taskDir.LogDir, fmt.Sprintf(".%s.stdout.fifo", t.Name))
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t.StderrPath = filepath.Join(taskDir.LogDir, fmt.Sprintf(".%s.stderr.fifo", t.Name))
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}
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err = lm.Start(&logmon.LogConfig{
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LogDir: taskDir.LogDir,
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StdoutLogFile: fmt.Sprintf("%s.stdout", t.Name),
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StderrLogFile: fmt.Sprintf("%s.stderr", t.Name),
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StdoutFifo: t.StdoutPath,
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StderrFifo: t.StderrPath,
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MaxFiles: 10,
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MaxFileSizeMB: 10,
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})
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require.NoError(h.t, err)
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return func() {
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lm.Stop()
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h.client.Close()
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allocDir.Destroy()
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}
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}
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return func() {
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h.client.Close()
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allocDir.Destroy()
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}
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}
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// WaitUntilStarted will block until the task for the given ID is in the running
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// state or the timeout is reached
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func (h *DriverHarness) WaitUntilStarted(taskID string, timeout time.Duration) error {
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deadline := time.Now().Add(timeout)
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var lastState drivers.TaskState
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for {
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status, err := h.InspectTask(taskID)
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if err != nil {
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return err
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}
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if status.State == drivers.TaskStateRunning {
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return nil
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}
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lastState = status.State
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if time.Now().After(deadline) {
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return fmt.Errorf("task never transitioned to running, currently '%s'", lastState)
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}
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time.Sleep(100 * time.Millisecond)
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}
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}
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// MockDriver is used for testing.
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// Each function can be set as a closure to make assertions about how data
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// is passed through the base plugin layer.
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type MockDriver struct {
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base.MockPlugin
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TaskConfigSchemaF func() (*hclspec.Spec, error)
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FingerprintF func(context.Context) (<-chan *drivers.Fingerprint, error)
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CapabilitiesF func() (*drivers.Capabilities, error)
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RecoverTaskF func(*drivers.TaskHandle) error
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StartTaskF func(*drivers.TaskConfig) (*drivers.TaskHandle, *drivers.DriverNetwork, error)
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WaitTaskF func(context.Context, string) (<-chan *drivers.ExitResult, error)
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StopTaskF func(string, time.Duration, string) error
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DestroyTaskF func(string, bool) error
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InspectTaskF func(string) (*drivers.TaskStatus, error)
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TaskStatsF func(context.Context, string, time.Duration) (<-chan *drivers.TaskResourceUsage, error)
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TaskEventsF func(context.Context) (<-chan *drivers.TaskEvent, error)
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SignalTaskF func(string, string) error
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ExecTaskF func(string, []string, time.Duration) (*drivers.ExecTaskResult, error)
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ExecTaskStreamingF func(context.Context, string, *drivers.ExecOptions) (*drivers.ExitResult, error)
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MockNetworkManager
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}
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type MockNetworkManager struct {
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CreateNetworkF func(string, *drivers.NetworkCreateRequest) (*drivers.NetworkIsolationSpec, bool, error)
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DestroyNetworkF func(string, *drivers.NetworkIsolationSpec) error
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}
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func (m *MockNetworkManager) CreateNetwork(allocID string, req *drivers.NetworkCreateRequest) (*drivers.NetworkIsolationSpec, bool, error) {
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return m.CreateNetworkF(allocID, req)
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}
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func (m *MockNetworkManager) DestroyNetwork(id string, spec *drivers.NetworkIsolationSpec) error {
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return m.DestroyNetworkF(id, spec)
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}
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func (d *MockDriver) TaskConfigSchema() (*hclspec.Spec, error) { return d.TaskConfigSchemaF() }
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func (d *MockDriver) Fingerprint(ctx context.Context) (<-chan *drivers.Fingerprint, error) {
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return d.FingerprintF(ctx)
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}
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func (d *MockDriver) Capabilities() (*drivers.Capabilities, error) { return d.CapabilitiesF() }
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func (d *MockDriver) RecoverTask(h *drivers.TaskHandle) error { return d.RecoverTaskF(h) }
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func (d *MockDriver) StartTask(c *drivers.TaskConfig) (*drivers.TaskHandle, *drivers.DriverNetwork, error) {
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return d.StartTaskF(c)
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}
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func (d *MockDriver) WaitTask(ctx context.Context, id string) (<-chan *drivers.ExitResult, error) {
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return d.WaitTaskF(ctx, id)
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}
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func (d *MockDriver) StopTask(taskID string, timeout time.Duration, signal string) error {
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return d.StopTaskF(taskID, timeout, signal)
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}
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func (d *MockDriver) DestroyTask(taskID string, force bool) error {
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return d.DestroyTaskF(taskID, force)
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}
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func (d *MockDriver) InspectTask(taskID string) (*drivers.TaskStatus, error) {
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return d.InspectTaskF(taskID)
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}
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func (d *MockDriver) TaskStats(ctx context.Context, taskID string, i time.Duration) (<-chan *drivers.TaskResourceUsage, error) {
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return d.TaskStatsF(ctx, taskID, i)
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}
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func (d *MockDriver) TaskEvents(ctx context.Context) (<-chan *drivers.TaskEvent, error) {
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return d.TaskEventsF(ctx)
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}
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func (d *MockDriver) SignalTask(taskID string, signal string) error {
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return d.SignalTaskF(taskID, signal)
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}
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func (d *MockDriver) ExecTask(taskID string, cmd []string, timeout time.Duration) (*drivers.ExecTaskResult, error) {
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return d.ExecTaskF(taskID, cmd, timeout)
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}
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func (d *MockDriver) ExecTaskStreaming(ctx context.Context, taskID string, execOpts *drivers.ExecOptions) (*drivers.ExitResult, error) {
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return d.ExecTaskStreamingF(ctx, taskID, execOpts)
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}
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// SetEnvvars sets path and host env vars depending on the FS isolation used.
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func SetEnvvars(envBuilder *taskenv.Builder, fsi drivers.FSIsolation, taskDir *allocdir.TaskDir, conf *config.Config) {
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envBuilder.SetClientTaskRoot(taskDir.Dir)
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envBuilder.SetClientSharedAllocDir(taskDir.SharedAllocDir)
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envBuilder.SetClientTaskLocalDir(taskDir.LocalDir)
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envBuilder.SetClientTaskSecretsDir(taskDir.SecretsDir)
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// Set driver-specific environment variables
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switch fsi {
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case drivers.FSIsolationNone:
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// Use host paths
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envBuilder.SetAllocDir(taskDir.SharedAllocDir)
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envBuilder.SetTaskLocalDir(taskDir.LocalDir)
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envBuilder.SetSecretsDir(taskDir.SecretsDir)
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default:
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// filesystem isolation; use container paths
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envBuilder.SetAllocDir(allocdir.SharedAllocContainerPath)
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envBuilder.SetTaskLocalDir(allocdir.TaskLocalContainerPath)
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envBuilder.SetSecretsDir(allocdir.TaskSecretsContainerPath)
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}
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// Set the host environment variables for non-image based drivers
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if fsi != drivers.FSIsolationImage {
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// COMPAT(1.0) using inclusive language, blacklist is kept for backward compatibility.
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filter := strings.Split(conf.ReadAlternativeDefault(
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[]string{"env.denylist", "env.blacklist"},
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config.DefaultEnvDenylist,
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), ",")
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envBuilder.SetHostEnvvars(filter)
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}
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}
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