This polishes the password resource so that it can actually avoid writing the password to disk, and so that the work actually happens in CheckApply where it can properly interact with the graph. This resource now re-generates the password when it receives a notification. The send/recv plumbing has been extended so that receivers can detect when they're receiving new values. This is particularly important if they might otherwise not expect those values to change and cache them for efficiency purposes.
226 lines
5.0 KiB
Go
226 lines
5.0 KiB
Go
// libmgmt example of send->recv
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package main
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import (
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"fmt"
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"log"
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"os"
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"os/signal"
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"sync"
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"syscall"
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"time"
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"github.com/purpleidea/mgmt/gapi"
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mgmt "github.com/purpleidea/mgmt/mgmtmain"
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"github.com/purpleidea/mgmt/pgraph"
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"github.com/purpleidea/mgmt/resources"
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)
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// MyGAPI implements the main GAPI interface.
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type MyGAPI struct {
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Name string // graph name
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Interval uint // refresh interval, 0 to never refresh
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data gapi.Data
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initialized bool
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closeChan chan struct{}
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wg sync.WaitGroup // sync group for tunnel go routines
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}
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// NewMyGAPI creates a new MyGAPI struct and calls Init().
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func NewMyGAPI(data gapi.Data, name string, interval uint) (*MyGAPI, error) {
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obj := &MyGAPI{
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Name: name,
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Interval: interval,
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}
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return obj, obj.Init(data)
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}
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// Init initializes the MyGAPI struct.
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func (obj *MyGAPI) Init(data gapi.Data) error {
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if obj.initialized {
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return fmt.Errorf("Already initialized!")
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}
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if obj.Name == "" {
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return fmt.Errorf("The graph name must be specified!")
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}
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obj.data = data // store for later
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obj.closeChan = make(chan struct{})
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obj.initialized = true
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return nil
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}
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// Graph returns a current Graph.
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func (obj *MyGAPI) Graph() (*pgraph.Graph, error) {
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if !obj.initialized {
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return nil, fmt.Errorf("libmgmt: MyGAPI is not initialized")
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}
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g := pgraph.NewGraph(obj.Name)
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content := "Delete me to trigger a notification!\n"
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f0 := &resources.FileRes{
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BaseRes: resources.BaseRes{
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Name: "README",
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},
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Path: "/tmp/mgmt/README",
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Content: &content,
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State: "present",
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}
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v0 := pgraph.NewVertex(f0)
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g.AddVertex(v0)
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p1 := &resources.PasswordRes{
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BaseRes: resources.BaseRes{
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Name: "password1",
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},
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Length: 8, // generated string will have this many characters
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Saved: true, // this causes passwords to be stored in plain text!
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}
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v1 := pgraph.NewVertex(p1)
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g.AddVertex(v1)
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f1 := &resources.FileRes{
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BaseRes: resources.BaseRes{
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Name: "file1",
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// send->recv!
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Recv: map[string]*resources.Send{
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"Content": &resources.Send{Res: p1, Key: "Password"},
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},
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},
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Path: "/tmp/mgmt/secret",
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//Content: p1.Password, // won't work
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State: "present",
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}
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v2 := pgraph.NewVertex(f1)
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g.AddVertex(v2)
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n1 := &resources.NoopRes{
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BaseRes: resources.BaseRes{
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Name: "noop1",
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},
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}
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v3 := pgraph.NewVertex(n1)
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g.AddVertex(v3)
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e0 := pgraph.NewEdge("e0")
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e0.Notify = true // send a notification from v0 to v1
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g.AddEdge(v0, v1, e0)
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g.AddEdge(v1, v2, pgraph.NewEdge("e1"))
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e2 := pgraph.NewEdge("e2")
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e2.Notify = true // send a notification from v2 to v3
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g.AddEdge(v2, v3, e2)
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//g, err := config.NewGraphFromConfig(obj.data.Hostname, obj.data.EmbdEtcd, obj.data.Noop)
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return g, nil
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}
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// SwitchStream returns nil errors every time there could be a new graph.
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func (obj *MyGAPI) SwitchStream() chan error {
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if obj.data.NoWatch || obj.Interval <= 0 {
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return nil
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}
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ch := make(chan error)
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obj.wg.Add(1)
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go func() {
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defer obj.wg.Done()
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defer close(ch) // this will run before the obj.wg.Done()
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if !obj.initialized {
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ch <- fmt.Errorf("libmgmt: MyGAPI is not initialized")
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return
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}
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// arbitrarily change graph every interval seconds
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ticker := time.NewTicker(time.Duration(obj.Interval) * time.Second)
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defer ticker.Stop()
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for {
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select {
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case <-ticker.C:
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log.Printf("libmgmt: Generating new graph...")
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ch <- nil // trigger a run
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case <-obj.closeChan:
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return
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}
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}
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}()
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return ch
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}
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// Close shuts down the MyGAPI.
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func (obj *MyGAPI) Close() error {
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if !obj.initialized {
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return fmt.Errorf("libmgmt: MyGAPI is not initialized")
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}
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close(obj.closeChan)
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obj.wg.Wait()
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obj.initialized = false // closed = true
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return nil
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}
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// Run runs an embedded mgmt server.
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func Run() error {
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obj := &mgmt.Main{}
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obj.Program = "libmgmt" // TODO: set on compilation
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obj.Version = "0.0.1" // TODO: set on compilation
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obj.TmpPrefix = true // disable for easy debugging
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//prefix := "/tmp/testprefix/"
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//obj.Prefix = &p // enable for easy debugging
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obj.IdealClusterSize = -1
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obj.ConvergedTimeout = -1
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obj.Noop = false // FIXME: careful!
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obj.GAPI = &MyGAPI{ // graph API
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Name: "libmgmt", // TODO: set on compilation
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Interval: 60 * 10, // arbitrarily change graph every 15 seconds
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}
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if err := obj.Init(); err != nil {
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return err
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}
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// install the exit signal handler
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exit := make(chan struct{})
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defer close(exit)
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go func() {
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signals := make(chan os.Signal, 1)
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signal.Notify(signals, os.Interrupt) // catch ^C
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//signal.Notify(signals, os.Kill) // catch signals
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signal.Notify(signals, syscall.SIGTERM)
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select {
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case sig := <-signals: // any signal will do
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if sig == os.Interrupt {
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log.Println("Interrupted by ^C")
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obj.Exit(nil)
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return
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}
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log.Println("Interrupted by signal")
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obj.Exit(fmt.Errorf("Killed by %v", sig))
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return
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case <-exit:
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return
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}
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}()
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if err := obj.Run(); err != nil {
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return err
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}
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return nil
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}
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func main() {
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log.Printf("Hello!")
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if err := Run(); err != nil {
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fmt.Println(err)
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os.Exit(1)
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return
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}
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log.Printf("Goodbye!")
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}
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