362 lines
9.9 KiB
Go
362 lines
9.9 KiB
Go
package main
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import (
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"context"
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"crypto/tls"
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"encoding/json"
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"fmt"
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"log"
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"net/http"
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"os"
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"path/filepath"
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"runtime"
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"go.uber.org/atomic"
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"git.xeserv.us/xena/route/internal/database"
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"git.xeserv.us/xena/route/internal/routecrypto"
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proto "git.xeserv.us/xena/route/proto"
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"github.com/Xe/ln"
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"github.com/Xe/uuid"
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jwtcreds "github.com/Xe/x/tools/svc/credentials/jwt"
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"github.com/dickeyxxx/netrc"
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"github.com/kr/pretty"
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"github.com/olekukonko/tablewriter"
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"google.golang.org/grpc"
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"google.golang.org/grpc/credentials"
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"gopkg.in/alecthomas/kingpin.v2"
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)
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var allScopes = []string{
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"token:get", "token:getall", "token:put", "token:delete", "token:deactivate",
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"route:get", "route:getall", "route:put", "route:delete",
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"connect",
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"backend:list", "backend:kill",
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"admin",
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}
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var whoami string
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func userHomeDir() string {
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if runtime.GOOS == "windows" {
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home := os.Getenv("HOMEDRIVE") + os.Getenv("HOMEPATH")
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if home == "" {
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home = os.Getenv("USERPROFILE")
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}
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return home
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}
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return os.Getenv("HOME")
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}
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var (
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app = kingpin.New("route", "An interface to routed")
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grpcServer = app.Flag("routed-addr", "routed grpc address").Default("127.0.0.1:7268").String()
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netrcPath = app.Flag("netrc", "netrc path").Default(filepath.Join(userHomeDir(), ".netrc")).String()
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generateKey = app.Command("generate-key", "generate SSL cert crypto key")
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backends = app.Command("backend", "backend management")
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backendList = backends.Command("list", "list connected backends")
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backendListDomain = backendList.Flag("domain", "if set, match backends against this domain name").String()
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backendListUser = backendList.Flag("user", "if set, match backends against this username").String()
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backendKill = backends.Command("kill", "forcibly disconnect a given backend")
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backendKillID = backendKill.Flag("id", "the ID of the backend to remove").Required().String()
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routes = app.Command("route", "route management")
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routesCreate = routes.Command("create", "create a new route")
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routesCreateDomain = routesCreate.Flag("domain", "domain for the route (if not given one will be generated for you)").String()
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routesInspect = routes.Command("inspect", "inspect one route")
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routesInspectDomain = routesInspect.Flag("domain", "domain to inspect").Required().String()
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routesList = routes.Command("list", "list all routes owned by you")
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routesRm = routes.Command("rm", "remove a route")
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routesRmID = routesRm.Flag("id", "route ID to remove").Required().String()
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testServer = app.Command("test-server", "spawn a simple HTTP test server on a TCP address")
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testServerAddr = testServer.Flag("addr", "TCP address").Default(":9090").String()
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token = app.Command("token", "token management")
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tokenCreate = token.Command("create", "create a new token")
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tokenCreateScopes = tokenCreate.Flag("scope", "token scopes").Default(allScopes...).Strings()
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tokenGenerate = token.Command("generate-root", "generate a root token")
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tokenGenerateKey = tokenGenerate.Flag("key", "token crypto key").Required().String()
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tokenGenerateScopes = tokenGenerate.Flag("scopes", "token scopes").Default(allScopes...).Strings()
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tokenGenerateUsername = tokenGenerate.Flag("username", "token username").Required().String()
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tokenGenerateDatabasePath = tokenGenerate.Flag("db", "database file to add the root token to").Required().String()
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tokenInspect = token.Command("inspect", "inspect a token")
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tokenInspectID = tokenInspect.Flag("token-id", "token id").Required().String()
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tokenList = token.Command("list", "list all tokens belonging to you")
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tokenListDeactivated = tokenList.Flag("deactivated", "list deactivated tokens?").Default("false").Bool()
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tokenRm = token.Command("rm", "remove a token")
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tokenRmHard = tokenRm.Flag("hard", "hard-delete the token instead of deactivating it").Default("false").Bool()
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tokenRmID = tokenRm.Flag("id", "token id").Required().String()
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)
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var (
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hits *atomic.Int64
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)
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func init() {
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hits = atomic.NewInt64(0)
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}
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func handle(w http.ResponseWriter, r *http.Request) {
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fmt.Fprintln(w, "Route is go!")
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fmt.Fprintf(w, "%s\n", pretty.Sprintf("%s", r.Header))
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hn, _ := os.Hostname()
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fmt.Fprintf(w, "Served by %s running %s\n", hn, runtime.GOOS)
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fmt.Fprintf(w, "Hit count: %d", hits.Inc())
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ip := r.Header.Get("X-Remote-Ip")
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if ip != "" {
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log.Printf("Hit from %s: %s", ip, r.RequestURI)
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}
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}
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func main() {
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cmdline := kingpin.MustParse(app.Parse(os.Args[1:]))
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ctx, cancel := context.WithCancel(context.Background())
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defer cancel()
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retry_netrc:
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n, err := netrc.Parse(*netrcPath)
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if err != nil {
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_, err := os.Stat(*netrcPath)
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if err == os.ErrNotExist {
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fout, err := os.Create(*netrcPath)
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("creating netrc"), ln.F{"path": *netrcPath})
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}
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fout.Close()
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goto retry_netrc
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}
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}
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_ = n
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switch cmdline {
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case "test-server":
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http.HandleFunc("/", handle)
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ln.FatalErr(ctx, http.ListenAndServe(*testServerAddr, nil), ln.Action("test server listenAndServe"))
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return
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case "generate-key":
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key, err := routecrypto.GenerateKey()
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("generating encryption key"))
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}
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fmt.Println("Your key is:", routecrypto.ShowKey(key))
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return
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case "token generate-root":
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key, err := routecrypto.ParseKey(*tokenGenerateKey)
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("parsing encryption key"))
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}
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db, err := database.NewBoltStorage(*tokenGenerateDatabasePath, key)
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("opening routed database"))
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}
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tBody := uuid.New()
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_, err = db.PutToken(context.Background(), tBody, *tokenGenerateUsername, *tokenGenerateScopes)
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("add newly created token to database"))
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}
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defer db.Close()
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fmt.Println("Your token is:", tBody)
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n.AddMachine(*grpcServer, *tokenGenerateUsername, tBody)
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err = n.Save()
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("add machine to netrc"))
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}
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return
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}
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m := n.Machine(*grpcServer)
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connCreds := credentials.NewTLS(&tls.Config{
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InsecureSkipVerify: true,
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})
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creds := jwtcreds.NewFromToken(m.Get("password"))
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conn, err := grpc.Dial(*grpcServer,
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grpc.WithTransportCredentials(connCreds),
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grpc.WithPerRPCCredentials(creds))
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("dialing grpc server"), ln.F{"hostname": *grpcServer})
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}
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rc := proto.NewRoutesClient(conn)
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tc := proto.NewTokensClient(conn)
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bc := proto.NewBackendsClient(conn)
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_ = rc
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_ = tc
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_ = bc
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switch cmdline {
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case "route create":
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idr, err := rc.Put(ctx, &proto.Route{Host: *routesCreateDomain})
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("create new route"))
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}
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fmt.Println("created route with id " + idr.Id)
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return
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case "route inspect":
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r, err := rc.Get(context.Background(), &proto.GetRouteRequest{
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Host: *routesCreateDomain,
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})
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("get single route"), ln.F{"domain": *routesCreateDomain})
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}
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json.NewEncoder(os.Stdout).Encode(r)
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fmt.Println()
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return
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case "route list":
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rts, err := rc.GetAll(context.Background(), &proto.Nil{})
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("get all routes"))
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}
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table := tablewriter.NewWriter(os.Stdout)
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table.SetHeader([]string{"ID", "Host"})
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for _, r := range rts.Routes {
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table.Append([]string{r.Id, r.Host})
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}
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table.Render()
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return
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case "route rm":
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_, err := rc.Delete(context.Background(), &proto.Route{Id: *routesRmID})
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("remove single route"), ln.F{"id": *routesRmID})
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}
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return
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case "backend list":
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bkds, err := bc.List(context.Background(), &proto.BackendSelector{
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Domain: *backendListDomain,
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User: *backendListUser,
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})
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("list backends"))
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}
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table := tablewriter.NewWriter(os.Stdout)
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table.SetHeader([]string{"ID", "Proto", "User", "Domain", "Failure Chance", "Host"})
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for _, bknd := range bkds.Backends {
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table.Append([]string{bknd.Id, bknd.Proto, bknd.User, bknd.Domain, fmt.Sprint(bknd.Phi), bknd.Host})
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}
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table.Render()
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return
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case "backend kill":
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_, err := bc.Kill(context.Background(), &proto.BackendID{Id: *backendKillID})
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("attempt to kill backend"), ln.F{"backend_id": *backendKillID})
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}
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fmt.Println("killed backend " + *backendKillID)
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return
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case "token list":
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lis, err := tc.GetAll(ctx, &proto.Nil{})
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("get all tokens"))
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}
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table := tablewriter.NewWriter(os.Stdout)
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table.SetHeader([]string{"ID", "Active", "Scopes"})
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for _, tkn := range lis.Tokens {
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table.Append([]string{tkn.Id, fmt.Sprint(tkn.Active), fmt.Sprint(tkn.Scopes)})
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}
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table.Render()
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return
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case "token create":
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scps := *tokenCreateScopes
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tkn := &proto.Token{
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Scopes: scps,
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}
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ftkn, err := tc.Put(ctx, tkn)
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("put token to server"))
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}
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fmt.Printf("Your token is: %s\n", ftkn.Body)
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fmt.Printf("It has permission for the following scopes: %v\n", ftkn.Scopes)
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return
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case "token inspect":
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tkn, err := tc.Get(ctx, &proto.GetTokenRequest{Id: *tokenInspectID})
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("fetch token from server"), ln.F{"token_id": *tokenInspectID})
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}
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json.NewEncoder(os.Stdout).Encode(tkn)
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return
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case "token rm":
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tkn, err := tc.Get(ctx, &proto.GetTokenRequest{Id: *tokenRmID})
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if err != nil {
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ln.FatalErr(ctx, err, ln.Action("fetch token from server"), ln.F{"token_id": *tokenRmID})
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}
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var action ln.Fer
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if *tokenRmHard {
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_, err = tc.Delete(ctx, tkn)
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action = ln.Action("actually delete token")
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} else {
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_, err = tc.Deactivate(ctx, tkn)
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action = ln.Action("deactivate token")
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}
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if err != nil {
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ln.FatalErr(ctx, err, ln.F{"token_id": *tokenRmID}, action)
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}
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fmt.Printf("token with id %s and body %s removed.\n", tkn.Id, tkn.Body)
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return
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}
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ln.Fatal(ctx, ln.Action("not implemented"), ln.F{"command": cmdline})
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}
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