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mylg.go
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// myLG is an open source software utility which combines the functions
// of the different network probes in one network diagnostic tool.
package main
import (
"errors"
"fmt"
"os"
"os/exec"
"regexp"
"runtime"
"strings"
"sync"
"time"
"github.com/briandowns/spinner"
"github.com/mehrdadrad/mylg/cli"
"github.com/mehrdadrad/mylg/disc"
"github.com/mehrdadrad/mylg/http/ping"
"github.com/mehrdadrad/mylg/icmp"
"github.com/mehrdadrad/mylg/lg"
"github.com/mehrdadrad/mylg/nms"
"github.com/mehrdadrad/mylg/ns"
"github.com/mehrdadrad/mylg/packet"
"github.com/mehrdadrad/mylg/peeringdb"
"github.com/mehrdadrad/mylg/scan"
"github.com/mehrdadrad/mylg/services/httpd"
"github.com/mehrdadrad/mylg/speedtest"
"github.com/mehrdadrad/mylg/whois"
)
const (
version = "0.2.7"
)
// Provider represents looking glass
type Provider interface {
Set(host, version string)
GetDefaultNode() string
GetNodes() []string
ChangeNode(node string) bool
Ping() (string, error)
Trace() chan string
BGP() chan string
}
var (
pNames = providerNames()
req = make(chan string, 1)
nxt = make(chan struct{}, 1)
spin = spinner.New(spinner.CharSets[26], 220*time.Millisecond)
eArgs = os.Args
args string
prompt string
cPName string
noIf bool = true
cfg cli.Config
nmsClient nms.Client
nsr *ns.Request
c *cli.Readline
// register looking glass hosts
providers = map[string]Provider{
"telia": new(lg.Telia),
"level3": new(lg.Level3),
"cogent": new(lg.Cogent),
"ntt": new(lg.NTT),
"kpn": new(lg.KPN),
}
// map cmd to function
cmdFunc = map[string]func(){
"web": web, // web dashboard
"dump": dump, // dump traffic
"disc": discovery, // network discovery
"scan": scanPorts, // network scan
"mode": mode, // editor mode
"ping": pingQuery, // ping
"trace": trace, // trace route
"bgp": BGP, // BGP
"whois": whoisLookup, // whois / dns lookup
"peering": peeringDB, // peering DB
"hping": hping, // hping
"dig": dig, // dig
"nms": setNMS, // network management system
"node": node, // change node
"connect": connect, // connect to a country or LG
"local": local, // local
"help": help, // help
"exit": cleanUp, // clean up
"quit": cleanUp, // clean up
"show": show, // show config
"set": setConfig, // set config
"lg": setLG, // prepare looking glass
"ns": setNS, // prepare name server
"speedtest": speedTest, // prepare name server
"version": printVersion, // prints version
}
)
// init
func init() {
// load configuration
cfg = cli.LoadConfig()
// initialize name server
nsr = ns.NewRequest()
go nsr.Init()
// set current provider, prompt
cPName = "local"
prompt = "local"
// with interface
if len(eArgs) == 1 {
// initialize cli
c = cli.Init(version)
go c.Run(req, nxt)
// start web server
go httpd.Run(cfg)
// set interface enabled
noIf = false
// set local as default
local()
}
}
func main() {
// command line w/o interface
if noIf {
cmd := eArgs[1]
args = strings.Join(eArgs[2:], " ")
if f, ok := cmdFunc[cmd]; ok {
f()
} else {
println("Invalid command please try mylg help")
}
return
}
// command like w/ interface
LOOP:
for {
select {
case request, ok := <-req:
if !ok {
break LOOP
}
if len(request) < 1 {
c.Next()
continue
}
subReq := cli.CMDRgx().FindStringSubmatch(request)
if len(subReq) == 0 {
println("syntax error")
c.Next()
continue
}
prompt = c.GetPrompt()
args = strings.TrimSpace(subReq[2])
cmd := strings.TrimSpace(subReq[1])
if f, ok := cmdFunc[cmd]; ok {
f()
} else {
println("Invalid command please try help")
}
c.Next()
}
}
}
// providerName
func providerNames() []string {
pNames := []string{}
for p := range providers {
pNames = append(pNames, p)
}
return pNames
}
// validateProvider
func validateProvider(p string) (string, error) {
pNames := []string{}
match, _ := regexp.MatchString("("+strings.Join(pNames, "|")+")", p)
p = strings.ToLower(p)
if match {
return p, nil
}
return "", errors.New("provider not support")
}
// node handles node cmd
func node() {
switch {
case strings.HasPrefix(prompt, "lg"):
if _, ok := providers[cPName]; ok {
if providers[cPName].ChangeNode(args) {
c.UpdatePromptN(args, 3)
return
}
}
println("the specified node doesn't support")
case strings.HasPrefix(prompt, "ns"):
if !nsr.ChkNode(args) {
println("error: argument is not valid")
} else {
c.UpdatePromptN(args, 3)
}
default:
if cPName == "local" {
println("local doesn't support node")
}
}
}
// dig gets dig info
func dig() {
if ok := nsr.SetOptions(args, prompt); ok {
nsr.Dig()
}
}
// web tries to open web interface at default web browser
func web() {
var openCmd = "open"
println("opening default web broswer ...")
if runtime.GOOS != "darwin" {
openCmd = "xdg-open"
}
cmd := exec.Command(openCmd, fmt.Sprintf("http://%s:%d", cfg.Web.Address, cfg.Web.Port))
err := cmd.Start()
if err != nil {
println("error opening default browser")
}
}
// dump provides decoding packets
func dump() {
p, err := packet.NewPacket(args)
if p == nil || err != nil {
return
}
println(p.Banner())
for l := range p.Open() {
l.PrintPretty()
}
}
// connect handles connect cmd
func connect() {
var (
pName string
err error
)
switch {
case strings.HasPrefix(prompt, "lg"):
if pName, err = validateProvider(args); err != nil {
println("provider not available")
c.Next()
return
}
cPName = pName
if _, ok := providers[cPName]; ok {
c.UpdatePromptN(cPName+"/"+providers[cPName].GetDefaultNode(), 2)
go func() {
c.UpdateCompleter("node", providers[cPName].GetNodes())
}()
} else {
println("it doesn't support")
}
case strings.HasPrefix(prompt, "ns"):
if !nsr.ChkCountry(args) {
println("error: argument is not valid")
} else {
c.SetPrompt("ns/" + args)
c.UpdateCompleter("node", nsr.NodeList())
}
case strings.HasPrefix(prompt, "nms"):
nmsClient, err = nms.NewClient(args, cfg)
if err != nil {
println("error:", err.Error())
} else if nmsClient.Host == "" {
return
} else {
c.SetPrompt("nms/" + nmsClient.Host)
}
}
}
// mode set editor mode
func mode() {
if args == "vim" {
c.SetVim()
} else if args == "emacs" {
c.SetEmacs()
} else {
println("the request mode doesn't support")
}
}
// trace tries to trace from local and lg
func trace() {
switch {
case strings.HasPrefix(prompt, "local"):
trace, err := icmp.NewTrace(args, cfg)
if err != nil {
println(err.Error())
}
if trace == nil {
break
}
trace.Print()
case strings.HasPrefix(prompt, "lg"):
spin.Prefix = "please wait "
spin.Start()
providers[cPName].Set(args, "ipv4")
for l := range providers[cPName].Trace() {
if spin.Prefix != "" {
spin.Stop()
spin.Prefix = ""
fmt.Printf("\n%s\n", l)
} else {
fmt.Println(l)
}
}
spin.Stop()
}
}
// hping tries to ping a web server by http
func hping() {
// it should work at local mode
if cPName != "local" {
return
}
p, err := ping.NewPing(args, cfg)
if err != nil {
println(err.Error())
} else {
p.Run()
}
}
// pingQuery runs ping command (local/LG)
func pingQuery() {
if cPName == "local" {
pingLocal()
} else {
pingLG()
}
}
// pingLG tries to ping through a looking glass
func pingLG() {
spin.Prefix = "please wait "
spin.Start()
providers[cPName].Set(args, "ipv4")
m, err := providers[cPName].Ping()
spin.Stop()
if err != nil {
println(err.Error())
} else {
println(m)
}
}
// pingLocal tries to ping from local source ip
func pingLocal() {
p, err := icmp.NewPing(args, cfg)
if err != nil {
println(err.Error())
}
if p == nil {
return
}
if !p.IsCIDR() {
resp := p.Run()
p.PrintPretty(resp)
} else {
resp := p.MRun()
p.CIDRHeader()
for r := range resp {
icmp.CIDRRespPrint(r)
}
}
}
func speedTest() {
if err := speedtest.Run(); err != nil {
println("\n", err.Error())
}
}
// scanPorts tries to scan tcp/ip ports
func scanPorts() {
scan, err := scan.NewScan(args, cfg)
if err != nil {
println(err.Error())
} else {
spin.Prefix = "please wait "
spin.Start()
scan.Run()
spin.Stop()
}
}
// BGP tries to get BGP lookup from a LG
func BGP() {
if cPName == "local" {
println("no provider selected")
return
}
providers[cPName].Set(args, "ipv4")
for l := range providers[cPName].BGP() {
println(l)
}
}
// discovery handles disc command
func discovery() {
var (
wg sync.WaitGroup
//ts = time.Now()
)
d := disc.New(args)
// help requested
if d == nil {
return
}
spin.Prefix = "please wait "
spin.Start()
// load OUI async
go func() {
wg.Add(1)
d.LoadOUI()
wg.Done()
}()
d.PingLan()
time.Sleep(5 * time.Second)
if err := d.GetARPTable(); err != nil {
println(err.Error())
return
}
wg.Wait()
spin.Stop()
println("\nNetwork LAN Discovery")
d.PrintPretty()
}
// nms
func setNMS() {
items := []string{"interface", "config"}
c.UpdateCompleter("show", items)
c.SetPrompt("nms")
}
// setConfig
func setConfig() {
if err := cli.SetConfig(args, &cfg); err != nil {
println(err.Error())
}
}
// show command
func show() {
var err error
re := regexp.MustCompile(`^([a-z]+)\s*(.*)$`)
m := re.FindStringSubmatch(args)
if len(m) < 3 {
return
}
subItem := m[1]
subArgs := m[2]
switch subItem {
case "config":
cli.ShowConfig(&cfg)
case "interface":
if strings.HasPrefix(prompt, "nms") {
err = nmsClient.ShowInterface(subArgs)
} else {
println("it's available under nms")
}
if err != nil {
println(err.Error())
}
}
}
// setLG set lg prompt and completer
func setLG() {
cPName = "level3"
c.UpdateCompleter("connect", pNames)
c.SetPrompt("lg/" + cPName + "/" + providers[cPName].GetDefaultNode())
go func() {
c.UpdateCompleter("node", providers[cPName].GetNodes())
}()
}
// setNS set ns prompt and update completers
func setNS() {
c.UpdateCompleter("connect", nsr.CountryList())
c.UpdateCompleter("node", []string{})
c.SetPrompt("ns")
}
// peeringDB gets peer info
func peeringDB() {
peeringdb.Search(args)
}
// whoisLookup gets ANS/Prefix info
func whoisLookup() {
whois.Lookup(args)
}
// local set prompts to local
func local() {
nsr.Local()
cPName = "local"
c.UpdateCompleter("show", []string{"config"})
c.SetPrompt(cPName)
}
// printVersion prints version and exits
func printVersion() {
fmt.Printf("myLG v%s\n", version)
}
// cleanUp
func cleanUp() {
c.Close(nxt)
close(req)
}
// help
func help() {
if noIf {
// without command line
h := `
***** TRY IT WITHOUT ANYTHING TO HAVE INTERFACE *****
Usage:
mylg [command] [args...]
Available commands:
ping ping ip address or domain name
trace trace ip address or domain name (real-time w/ -r option)
dig name server looking up
whois resolve AS number/IP/CIDR to holder (provides by ripe ncc)
hping Ping through HTTP/HTTPS w/ GET/HEAD methods
scan scan tcp ports (you can provide range >scan host minport maxport)
dump prints out a description of the contents of packets on a network interface
disc discover all the devices on a LAN
peering peering information (provides by peeringdb.com)
version shows mylg version
Example:
mylg trace freebsd.org -r
mylg whois 8.8.8.8
mylg scan 127.0.0.1
mylg dig google.com +trace
`
fmt.Println(h)
} else {
// with command line interface
c.Help()
}
}