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/*
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*/
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package main
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import (
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"flag"
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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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"strings"
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"sync"
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"sync/atomic"
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"syscall"
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"time"
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"github.com/miekg/dns"
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)
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// ndCounts holds various statistics about the running system
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type NodeCounts struct {
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NdStatus []uint32 // number of nodes at each of the 4 statuses - RG, CG, WG, NG
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NdStarts []uint32 // number of crawles started last startcrawlers run
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DNSCounts []uint32 // number of dns requests for each dns type - dnsV4Std, dnsV4Non, dnsV6Std, dnsV6Non
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mtx sync.RWMutex // protect the structures
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}
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// configData holds information on the application
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type configData struct {
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uptime time.Time // application start time
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port string // port for the dns server to listen on
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http string // port for the web server to listen on
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version string // application version
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verbose bool // verbose output cmdline option
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debug bool // debug cmdline option
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stats bool // stats cmdline option
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seeders map[string]*dnsseeder // holds a pointer to all the current seeders
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smtx sync.RWMutex // protect the seeders map
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order []string // the order of loading the netfiles so we can display in this order
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dns map[string][]dns.RR // holds details of all the currently served dns records
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dnsmtx sync.RWMutex // protect the dns map
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dnsUnknown uint64 // the number of dns requests for we are not configured to handle
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}
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var config configData
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var netfile string
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func main() {
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var j bool
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// FIXME - update with git hash during build
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config.version = "0.6.0"
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config.uptime = time.Now()
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flag.StringVar(&netfile, "netfile", "", "List of json config files to load")
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flag.StringVar(&config.port, "p", "8053", "DNS Port to listen on")
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flag.StringVar(&config.http, "w", "", "Web Port to listen on. No port specified & no web server running")
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flag.BoolVar(&j, "j", false, "Write network template file (dnsseeder.json) and exit")
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flag.BoolVar(&config.verbose, "v", false, "Display verbose output")
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flag.BoolVar(&config.debug, "d", false, "Display debug output")
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flag.BoolVar(&config.stats, "s", false, "Display stats output")
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flag.Parse()
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if j == true {
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createNetFile()
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fmt.Printf("Template file has been created\n")
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os.Exit(0)
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}
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// configure the network options so we can start crawling
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netwFiles := strings.Split(netfile, ",")
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if len(netwFiles) == 0 {
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fmt.Printf("Error - No filenames specified. Please add -net=<file[, file2]> to load these files\n")
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os.Exit(1)
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}
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config.seeders = make(map[string]*dnsseeder)
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config.dns = make(map[string][]dns.RR)
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config.order = []string{}
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for _, nwFile := range netwFiles {
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nnw, err := loadNetwork(nwFile)
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if err != nil {
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fmt.Printf("Error loading data from netfile %s - %v\n", nwFile, err)
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os.Exit(1)
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}
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if nnw != nil {
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// FIXME - lock this
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config.seeders[nnw.name] = nnw
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config.order = append(config.order, nnw.name)
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}
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}
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if config.debug == true {
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config.verbose = true
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config.stats = true
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}
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if config.verbose == true {
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config.stats = true
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}
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if config.verbose == false {
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log.Printf("status - Running in quiet mode with limited output produced\n")
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} else {
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for _, v := range config.seeders {
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log.Printf("status - system is configured for network: %s\n", v.name)
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}
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}
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// start the web interface if we want it running
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if config.http != "" {
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go startHTTP(config.http)
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}
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// start dns server
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dns.HandleFunc(".", handleDNS)
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go serve("udp", config.port)
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//go serve("tcp", config.port)
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// seed the seeder with some ip addresses
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for _, s := range config.seeders {
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s.initCrawlers()
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s.startCrawlers()
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}
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sig := make(chan os.Signal)
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signal.Notify(sig, syscall.SIGINT, syscall.SIGTERM)
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// extract good dns records from all nodes on regular basis
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dnsChan := time.NewTicker(time.Second * dnsDelay).C
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// used to start crawlers on a regular basis
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crawlChan := time.NewTicker(time.Second * crawlDelay).C
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// used to remove old statusNG nodes that have reached fail count
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auditChan := time.NewTicker(time.Minute * auditDelay).C
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dowhile := true
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for dowhile == true {
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select {
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case <-sig:
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dowhile = false
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case <-auditChan:
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if config.debug {
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log.Printf("debug - Audit nodes timer triggered\n")
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}
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for _, s := range config.seeders {
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// FIXME goroutines for these
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s.auditNodes()
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}
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case <-dnsChan:
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if config.debug {
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log.Printf("debug - DNS - Updating latest ip addresses timer triggered\n")
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}
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for _, s := range config.seeders {
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s.loadDNS()
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}
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case <-crawlChan:
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if config.debug {
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log.Printf("debug - Start crawlers timer triggered\n")
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}
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for _, s := range config.seeders {
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s.startCrawlers()
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}
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}
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}
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// FIXME - call dns server.Shutdown()
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fmt.Printf("\nProgram exiting. Bye\n")
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}
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// updateNodeCounts runs in a goroutine and updates the global stats with the latest
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// counts from a startCrawlers run
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func updateNodeCounts(s *dnsseeder, status, total, started uint32) {
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// update the stats counters
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s.counts.mtx.Lock()
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s.counts.NdStatus[status] = total
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s.counts.NdStarts[status] = started
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s.counts.mtx.Unlock()
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}
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// updateDNSCounts runs in a goroutine and updates the global stats for the number of DNS requests
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func updateDNSCounts(name, qtype string) {
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var ndType uint32
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var counted bool
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nonstd := strings.HasPrefix(name, "nonstd.")
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switch qtype {
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case "A":
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if nonstd {
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ndType = dnsV4Non
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} else {
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ndType = dnsV4Std
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}
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case "AAAA":
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if nonstd {
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ndType = dnsV6Non
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} else {
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ndType = dnsV6Std
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}
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default:
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ndType = dnsInvalid
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}
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// for DNS requests we do not have a reference to a seeder so we have to find it
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for _, s := range config.seeders {
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s.counts.mtx.Lock()
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if name == s.dnsHost+"." || name == "nonstd."+s.dnsHost+"." {
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s.counts.DNSCounts[ndType]++
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counted = true
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}
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s.counts.mtx.Unlock()
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}
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if counted != true {
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atomic.AddUint64(&config.dnsUnknown, 1)
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}
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}
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/*
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*/
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