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package main
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import (
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"os"
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"os/signal"
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"regexp"
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"sync"
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"syscall"
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"time"
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"unsafe"
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"github.com/op/go-logging"
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"github.com/subgraph/fw-daemon/nfqueue"
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"github.com/subgraph/go-procsnitch"
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)
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var log = logging.MustGetLogger("sgfw")
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var logFormat = logging.MustStringFormatter(
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"%{level:.4s} %{id:03x} %{message}",
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)
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var ttyFormat = logging.MustStringFormatter(
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"%{color}%{time:15:04:05} ▶ %{level:.4s} %{id:03x}%{color:reset} %{message}",
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)
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const ioctlReadTermios = 0x5401
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func isTerminal(fd int) bool {
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var termios syscall.Termios
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_, _, err := syscall.Syscall6(syscall.SYS_IOCTL, uintptr(fd), ioctlReadTermios, uintptr(unsafe.Pointer(&termios)), 0, 0, 0)
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return err == 0
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}
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func setupLoggerBackend(lvl logging.Level) logging.LeveledBackend {
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format := logFormat
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if isTerminal(int(os.Stderr.Fd())) {
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format = ttyFormat
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}
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backend := logging.NewLogBackend(os.Stderr, "", 0)
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formatter := logging.NewBackendFormatter(backend, format)
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leveler := logging.AddModuleLevel(formatter)
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leveler.SetLevel(lvl, "sgfw")
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return leveler
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}
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type Firewall struct {
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dbus *dbusServer
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dns *dnsCache
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enabled bool
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logBackend logging.LeveledBackend
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lock sync.Mutex
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policyMap map[string]*Policy
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policies []*Policy
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ruleLock sync.Mutex
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rulesById map[uint]*Rule
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nextRuleId uint
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reloadRulesChan chan bool
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stopChan chan bool
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}
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func (fw *Firewall) setEnabled(flag bool) {
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fw.lock.Lock()
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defer fw.lock.Unlock()
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fw.enabled = flag
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}
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func (fw *Firewall) isEnabled() bool {
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fw.lock.Lock()
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defer fw.lock.Unlock()
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return fw.enabled
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}
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func (fw *Firewall) clearRules() {
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fw.ruleLock.Lock()
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defer fw.ruleLock.Unlock()
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fw.rulesById = nil
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fw.nextRuleId = 0
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}
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func (fw *Firewall) addRule(r *Rule) {
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fw.ruleLock.Lock()
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defer fw.ruleLock.Unlock()
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r.id = fw.nextRuleId
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fw.nextRuleId += 1
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if fw.rulesById == nil {
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fw.rulesById = make(map[uint]*Rule)
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}
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fw.rulesById[r.id] = r
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}
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func (fw *Firewall) getRuleById(id uint) *Rule {
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fw.ruleLock.Lock()
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defer fw.ruleLock.Unlock()
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if fw.rulesById == nil {
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return nil
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}
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return fw.rulesById[id]
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}
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func (fw *Firewall) stop() {
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fw.stopChan <- true
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}
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func (fw *Firewall) reloadRules() {
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fw.reloadRulesChan <- true
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}
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func (fw *Firewall) runFilter() {
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q := nfqueue.NewNFQueue(0)
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defer q.Destroy()
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q.DefaultVerdict = nfqueue.DROP
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q.Timeout = 5 * time.Minute
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packets := q.Process()
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for {
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select {
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case pkt := <-packets:
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if fw.isEnabled() {
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fw.filterPacket(pkt)
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} else {
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pkt.Accept()
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}
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case <-fw.reloadRulesChan:
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fw.loadRules()
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case <-fw.stopChan:
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return
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}
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}
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}
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var commentRegexp = regexp.MustCompile("^[ \t]*#")
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func main() {
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readConfig()
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logBackend := setupLoggerBackend(FirewallConfig.LoggingLevel)
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log.SetBackend(logBackend)
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procsnitch.SetLogger(log)
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if os.Geteuid() != 0 {
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log.Error("Must be run as root")
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os.Exit(1)
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}
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setupIPTables()
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ds, err := newDbusServer()
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if err != nil {
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log.Error(err.Error())
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os.Exit(1)
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}
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fw := &Firewall{
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dbus: ds,
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dns: NewDnsCache(),
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enabled: true,
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logBackend: logBackend,
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policyMap: make(map[string]*Policy),
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reloadRulesChan: make(chan bool, 0),
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stopChan: make(chan bool, 0),
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}
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ds.fw = fw
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fw.loadRules()
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fw.runFilter()
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// observe process signals and either
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// reload rules or shutdown firewall service
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sigKillChan := make(chan os.Signal, 1)
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signal.Notify(sigKillChan, os.Interrupt, os.Kill)
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sigHupChan := make(chan os.Signal, 1)
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signal.Notify(sigHupChan, syscall.SIGHUP)
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for {
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select {
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case <-sigHupChan:
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fw.reloadRules()
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case <-sigKillChan:
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fw.stop()
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return
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}
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}
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}
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