428 lines
12 KiB
Go
428 lines
12 KiB
Go
package main
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import (
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"crypto/tls"
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"fmt"
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stdlog "log"
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"net"
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"net/http"
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"os"
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"os/signal"
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"path/filepath"
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"runtime"
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"strconv"
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"sync"
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"syscall"
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"time"
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"github.com/gobuffalo/packr"
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"github.com/hmage/golibs/log"
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)
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// VersionString will be set through ldflags, contains current version
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var VersionString = "undefined"
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var httpServer *http.Server
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var httpsServer struct {
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server *http.Server
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cond *sync.Cond // reacts to config.TLS.Enabled, PortHTTPS, CertificateChain and PrivateKey
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sync.Mutex // protects config.TLS
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}
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const (
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// Used in config to indicate that syslog or eventlog (win) should be used for logger output
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configSyslog = "syslog"
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)
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// main is the entry point
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func main() {
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// config can be specified, which reads options from there, but other command line flags have to override config values
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// therefore, we must do it manually instead of using a lib
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args := loadOptions()
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if args.serviceControlAction != "" {
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handleServiceControlAction(args.serviceControlAction)
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return
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}
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signalChannel := make(chan os.Signal)
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signal.Notify(signalChannel, syscall.SIGINT, syscall.SIGTERM, syscall.SIGHUP, syscall.SIGQUIT)
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go func() {
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<-signalChannel
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cleanup()
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os.Exit(0)
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}()
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// run the protection
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run(args)
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}
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// run initializes configuration and runs the AdGuard Home
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// run is a blocking method and it won't exit until the service is stopped!
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func run(args options) {
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// config file path can be overridden by command-line arguments:
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if args.configFilename != "" {
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config.ourConfigFilename = args.configFilename
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}
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// configure working dir and config path
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initWorkingDir(args)
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// configure log level and output
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configureLogger(args)
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// print the first message after logger is configured
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log.Printf("AdGuard Home, version %s\n", VersionString)
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log.Tracef("Current working directory is %s", config.ourWorkingDir)
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if args.runningAsService {
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log.Printf("AdGuard Home is running as a service")
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}
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config.firstRun = detectFirstRun()
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// Do the upgrade if necessary
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err := upgradeConfig()
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if err != nil {
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log.Fatal(err)
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}
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// parse from config file
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err = parseConfig()
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if err != nil {
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log.Fatal(err)
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}
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// override bind host/port from the console
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if args.bindHost != "" {
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config.BindHost = args.bindHost
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}
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if args.bindPort != 0 {
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config.BindPort = args.bindPort
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}
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// Load filters from the disk
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// And if any filter has zero ID, assign a new one
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for i := range config.Filters {
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filter := &config.Filters[i] // otherwise we're operating on a copy
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if filter.ID == 0 {
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filter.ID = assignUniqueFilterID()
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}
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err = filter.load()
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if err != nil {
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// This is okay for the first start, the filter will be loaded later
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log.Printf("Couldn't load filter %d contents due to %s", filter.ID, err)
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// clear LastUpdated so it gets fetched right away
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}
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if len(filter.Rules) == 0 {
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filter.LastUpdated = time.Time{}
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}
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}
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// Save the updated config
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err = config.write()
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if err != nil {
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log.Fatal(err)
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}
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// Init the DNS server instance before registering HTTP handlers
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dnsBaseDir := filepath.Join(config.ourWorkingDir, dataDir)
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initDNSServer(dnsBaseDir)
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if !config.firstRun {
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err = startDNSServer()
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if err != nil {
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log.Fatal(err)
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}
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err = startDHCPServer()
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if err != nil {
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log.Fatal(err)
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}
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}
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// Update filters we've just loaded right away, don't wait for periodic update timer
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go func() {
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refreshFiltersIfNecessary(false)
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// Save the updated config
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err := config.write()
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if err != nil {
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log.Fatal(err)
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}
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}()
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// Schedule automatic filters updates
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go periodicallyRefreshFilters()
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// Initialize and run the admin Web interface
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box := packr.NewBox("build/static")
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// if not configured, redirect / to /install.html, otherwise redirect /install.html to /
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http.Handle("/", postInstallHandler(optionalAuthHandler(http.FileServer(box))))
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registerControlHandlers()
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// add handlers for /install paths, we only need them when we're not configured yet
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if config.firstRun {
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log.Printf("This is the first launch of AdGuard Home, redirecting everything to /install.html ")
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http.Handle("/install.html", preInstallHandler(http.FileServer(box)))
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registerInstallHandlers()
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}
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httpsServer.cond = sync.NewCond(&httpsServer.Mutex)
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// for https, we have a separate goroutine loop
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go func() {
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for { // this is an endless loop
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httpsServer.cond.L.Lock()
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// this mechanism doesn't let us through until all conditions are ment
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for config.TLS.Enabled == false || config.TLS.PortHTTPS == 0 || config.TLS.PrivateKey == "" || config.TLS.CertificateChain == "" { // sleep until necessary data is supplied
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httpsServer.cond.Wait()
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}
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address := net.JoinHostPort(config.BindHost, strconv.Itoa(config.TLS.PortHTTPS))
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// validate current TLS config and update warnings (it could have been loaded from file)
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data := validateCertificates(config.TLS)
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if !data.usable {
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log.Fatal(data.WarningValidation)
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os.Exit(1)
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}
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config.Lock()
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config.TLS = data // update warnings
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config.Unlock()
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// prepare certs for HTTPS server
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// important -- they have to be copies, otherwise changing the contents in config.TLS will break encryption for in-flight requests
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certchain := make([]byte, len(config.TLS.CertificateChain))
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copy(certchain, []byte(config.TLS.CertificateChain))
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privatekey := make([]byte, len(config.TLS.PrivateKey))
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copy(privatekey, []byte(config.TLS.PrivateKey))
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cert, err := tls.X509KeyPair(certchain, privatekey)
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if err != nil {
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log.Fatal(err)
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os.Exit(1)
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}
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httpsServer.cond.L.Unlock()
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// prepare HTTPS server
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httpsServer.server = &http.Server{
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Addr: address,
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TLSConfig: &tls.Config{
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Certificates: []tls.Certificate{cert},
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},
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}
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printHTTPAddresses("https")
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err = httpsServer.server.ListenAndServeTLS("", "")
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if err != http.ErrServerClosed {
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log.Fatal(err)
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os.Exit(1)
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}
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}
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}()
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// this loop is used as an ability to change listening host and/or port
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for {
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printHTTPAddresses("http")
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// we need to have new instance, because after Shutdown() the Server is not usable
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address := net.JoinHostPort(config.BindHost, strconv.Itoa(config.BindPort))
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httpServer = &http.Server{
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Addr: address,
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}
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err := httpServer.ListenAndServe()
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if err != http.ErrServerClosed {
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log.Fatal(err)
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os.Exit(1)
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}
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// We use ErrServerClosed as a sign that we need to rebind on new address, so go back to the start of the loop
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}
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}
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// initWorkingDir initializes the ourWorkingDir
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// if no command-line arguments specified, we use the directory where our binary file is located
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func initWorkingDir(args options) {
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exec, err := os.Executable()
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if err != nil {
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panic(err)
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}
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if args.workDir != "" {
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// If there is a custom config file, use it's directory as our working dir
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config.ourWorkingDir = args.workDir
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} else {
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config.ourWorkingDir = filepath.Dir(exec)
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}
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}
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// configureLogger configures logger level and output
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func configureLogger(args options) {
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ls := getLogSettings()
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// command-line arguments can override config settings
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if args.verbose {
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ls.Verbose = true
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}
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if args.logFile != "" {
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ls.LogFile = args.logFile
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}
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log.Verbose = ls.Verbose
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if args.runningAsService && ls.LogFile == "" && runtime.GOOS == "windows" {
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// When running as a Windows service, use eventlog by default if nothing else is configured
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// Otherwise, we'll simply loose the log output
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ls.LogFile = configSyslog
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}
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if ls.LogFile == "" {
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return
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}
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if ls.LogFile == configSyslog {
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// Use syslog where it is possible and eventlog on Windows
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err := configureSyslog()
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if err != nil {
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log.Fatalf("cannot initialize syslog: %s", err)
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}
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} else {
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logFilePath := filepath.Join(config.ourWorkingDir, ls.LogFile)
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file, err := os.OpenFile(logFilePath, os.O_WRONLY|os.O_CREATE|os.O_APPEND, 0755)
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if err != nil {
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log.Fatalf("cannot create a log file: %s", err)
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}
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stdlog.SetOutput(file)
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}
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}
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func cleanup() {
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log.Printf("Stopping AdGuard Home")
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err := stopDNSServer()
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if err != nil {
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log.Printf("Couldn't stop DNS server: %s", err)
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}
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err = stopDHCPServer()
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if err != nil {
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log.Printf("Couldn't stop DHCP server: %s", err)
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}
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}
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// command-line arguments
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type options struct {
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verbose bool // is verbose logging enabled
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configFilename string // path to the config file
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workDir string // path to the working directory where we will store the filters data and the querylog
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bindHost string // host address to bind HTTP server on
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bindPort int // port to serve HTTP pages on
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logFile string // Path to the log file. If empty, write to stdout. If "syslog", writes to syslog
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// service control action (see service.ControlAction array + "status" command)
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serviceControlAction string
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// runningAsService flag is set to true when options are passed from the service runner
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runningAsService bool
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}
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// loadOptions reads command line arguments and initializes configuration
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func loadOptions() options {
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o := options{}
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var printHelp func()
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var opts = []struct {
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longName string
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shortName string
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description string
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callbackWithValue func(value string)
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callbackNoValue func()
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}{
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{"config", "c", "path to the config file", func(value string) { o.configFilename = value }, nil},
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{"work-dir", "w", "path to the working directory", func(value string) { o.workDir = value }, nil},
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{"host", "h", "host address to bind HTTP server on", func(value string) { o.bindHost = value }, nil},
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{"port", "p", "port to serve HTTP pages on", func(value string) {
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v, err := strconv.Atoi(value)
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if err != nil {
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panic("Got port that is not a number")
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}
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o.bindPort = v
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}, nil},
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{"service", "s", "service control action: status, install, uninstall, start, stop, restart", func(value string) {
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o.serviceControlAction = value
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}, nil},
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{"logfile", "l", "path to the log file. If empty, writes to stdout, if 'syslog' -- system log", func(value string) {
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o.logFile = value
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}, nil},
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{"verbose", "v", "enable verbose output", nil, func() { o.verbose = true }},
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{"help", "", "print this help", nil, func() {
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printHelp()
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os.Exit(64)
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}},
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}
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printHelp = func() {
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fmt.Printf("Usage:\n\n")
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fmt.Printf("%s [options]\n\n", os.Args[0])
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fmt.Printf("Options:\n")
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for _, opt := range opts {
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if opt.shortName != "" {
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fmt.Printf(" -%s, %-30s %s\n", opt.shortName, "--"+opt.longName, opt.description)
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} else {
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fmt.Printf(" %-34s %s\n", "--"+opt.longName, opt.description)
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}
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}
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}
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for i := 1; i < len(os.Args); i++ {
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v := os.Args[i]
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knownParam := false
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for _, opt := range opts {
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if v == "--"+opt.longName || (opt.shortName != "" && v == "-"+opt.shortName) {
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if opt.callbackWithValue != nil {
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if i+1 >= len(os.Args) {
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log.Printf("ERROR: Got %s without argument\n", v)
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os.Exit(64)
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}
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i++
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opt.callbackWithValue(os.Args[i])
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} else if opt.callbackNoValue != nil {
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opt.callbackNoValue()
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}
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knownParam = true
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break
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}
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}
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if !knownParam {
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log.Printf("ERROR: unknown option %v\n", v)
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printHelp()
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os.Exit(64)
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}
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}
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return o
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}
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// prints IP addresses which user can use to open the admin interface
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// proto is either "http" or "https"
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func printHTTPAddresses(proto string) {
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var address string
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if proto == "https" && config.TLS.ServerName != "" {
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if config.TLS.PortHTTPS == 443 {
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log.Printf("Go to https://%s", config.TLS.ServerName)
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} else {
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log.Printf("Go to https://%s:%d", config.TLS.ServerName, config.TLS.PortHTTPS)
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}
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} else if config.BindHost == "0.0.0.0" {
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log.Println("AdGuard Home is available on the following addresses:")
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ifaces, err := getValidNetInterfacesForWeb()
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if err != nil {
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// That's weird, but we'll ignore it
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address = net.JoinHostPort(config.BindHost, strconv.Itoa(config.BindPort))
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log.Printf("Go to %s://%s", proto, address)
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return
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}
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for _, iface := range ifaces {
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address = net.JoinHostPort(iface.Addresses[0], strconv.Itoa(config.BindPort))
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log.Printf("Go to %s://%s", proto, address)
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}
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} else {
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address = net.JoinHostPort(config.BindHost, strconv.Itoa(config.BindPort))
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log.Printf("Go to %s://%s", proto, address)
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}
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}
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