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52da8bda47
- in bridge driver modprobe for br_netfilter only if EnableIPTables==true - move FirewalldInit() to iptables pakcage Init() - move modprobe for nf_nat and xt_conntrack in iptables.initCheck() Signed-off-by: Alessandro Boch <aboch@docker.com>
431 lines
12 KiB
Go
431 lines
12 KiB
Go
package iptables
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import (
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"errors"
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"fmt"
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"net"
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"os/exec"
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"regexp"
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"strconv"
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"strings"
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"sync"
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"github.com/Sirupsen/logrus"
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)
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// Action signifies the iptable action.
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type Action string
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// Table refers to Nat, Filter or Mangle.
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type Table string
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const (
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// Append appends the rule at the end of the chain.
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Append Action = "-A"
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// Delete deletes the rule from the chain.
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Delete Action = "-D"
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// Insert inserts the rule at the top of the chain.
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Insert Action = "-I"
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// Nat table is used for nat translation rules.
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Nat Table = "nat"
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// Filter table is used for filter rules.
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Filter Table = "filter"
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// Mangle table is used for mangling the packet.
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Mangle Table = "mangle"
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)
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var (
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iptablesPath string
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supportsXlock = false
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supportsCOpt = false
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// used to lock iptables commands if xtables lock is not supported
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bestEffortLock sync.Mutex
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// ErrIptablesNotFound is returned when the rule is not found.
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ErrIptablesNotFound = errors.New("Iptables not found")
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probeOnce sync.Once
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firewalldOnce sync.Once
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)
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// ChainInfo defines the iptables chain.
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type ChainInfo struct {
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Name string
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Table Table
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HairpinMode bool
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}
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// ChainError is returned to represent errors during ip table operation.
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type ChainError struct {
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Chain string
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Output []byte
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}
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func (e ChainError) Error() string {
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return fmt.Sprintf("Error iptables %s: %s", e.Chain, string(e.Output))
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}
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func probe() {
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if out, err := exec.Command("modprobe", "-va", "nf_nat").CombinedOutput(); err != nil {
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logrus.Warnf("Running modprobe nf_nat failed with message: `%s`, error: %v", strings.TrimSpace(string(out)), err)
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}
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if out, err := exec.Command("modprobe", "-va", "xt_conntrack").CombinedOutput(); err != nil {
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logrus.Warnf("Running modprobe xt_conntrack failed with message: `%s`, error: %v", strings.TrimSpace(string(out)), err)
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}
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}
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func initFirewalld() {
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if err := FirewalldInit(); err != nil {
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logrus.Debugf("Fail to initialize firewalld: %v, using raw iptables instead", err)
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}
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}
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func initCheck() error {
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if iptablesPath == "" {
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probeOnce.Do(probe)
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firewalldOnce.Do(initFirewalld)
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path, err := exec.LookPath("iptables")
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if err != nil {
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return ErrIptablesNotFound
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}
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iptablesPath = path
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supportsXlock = exec.Command(iptablesPath, "--wait", "-L", "-n").Run() == nil
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mj, mn, mc, err := GetVersion()
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if err != nil {
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logrus.Warnf("Failed to read iptables version: %v", err)
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return nil
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}
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supportsCOpt = supportsCOption(mj, mn, mc)
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}
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return nil
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}
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// NewChain adds a new chain to ip table.
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func NewChain(name string, table Table, hairpinMode bool) (*ChainInfo, error) {
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c := &ChainInfo{
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Name: name,
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Table: table,
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HairpinMode: hairpinMode,
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}
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if string(c.Table) == "" {
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c.Table = Filter
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}
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// Add chain if it doesn't exist
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if _, err := Raw("-t", string(c.Table), "-n", "-L", c.Name); err != nil {
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if output, err := Raw("-t", string(c.Table), "-N", c.Name); err != nil {
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return nil, err
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} else if len(output) != 0 {
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return nil, fmt.Errorf("Could not create %s/%s chain: %s", c.Table, c.Name, output)
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}
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}
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return c, nil
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}
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// ProgramChain is used to add rules to a chain
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func ProgramChain(c *ChainInfo, bridgeName string, hairpinMode, enable bool) error {
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if c.Name == "" {
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return fmt.Errorf("Could not program chain, missing chain name.")
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}
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switch c.Table {
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case Nat:
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preroute := []string{
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"-m", "addrtype",
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"--dst-type", "LOCAL",
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"-j", c.Name}
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if !Exists(Nat, "PREROUTING", preroute...) && enable {
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if err := c.Prerouting(Append, preroute...); err != nil {
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return fmt.Errorf("Failed to inject docker in PREROUTING chain: %s", err)
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}
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} else if Exists(Nat, "PREROUTING", preroute...) && !enable {
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if err := c.Prerouting(Delete, preroute...); err != nil {
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return fmt.Errorf("Failed to remove docker in PREROUTING chain: %s", err)
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}
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}
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output := []string{
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"-m", "addrtype",
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"--dst-type", "LOCAL",
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"-j", c.Name}
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if !hairpinMode {
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output = append(output, "!", "--dst", "127.0.0.0/8")
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}
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if !Exists(Nat, "OUTPUT", output...) && enable {
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if err := c.Output(Append, output...); err != nil {
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return fmt.Errorf("Failed to inject docker in OUTPUT chain: %s", err)
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}
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} else if Exists(Nat, "OUTPUT", output...) && !enable {
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if err := c.Output(Delete, output...); err != nil {
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return fmt.Errorf("Failed to inject docker in OUTPUT chain: %s", err)
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}
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}
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case Filter:
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if bridgeName == "" {
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return fmt.Errorf("Could not program chain %s/%s, missing bridge name.",
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c.Table, c.Name)
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}
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link := []string{
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"-o", bridgeName,
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"-j", c.Name}
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if !Exists(Filter, "FORWARD", link...) && enable {
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insert := append([]string{string(Insert), "FORWARD"}, link...)
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if output, err := Raw(insert...); err != nil {
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return err
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} else if len(output) != 0 {
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return fmt.Errorf("Could not create linking rule to %s/%s: %s", c.Table, c.Name, output)
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}
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} else if Exists(Filter, "FORWARD", link...) && !enable {
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del := append([]string{string(Delete), "FORWARD"}, link...)
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if output, err := Raw(del...); err != nil {
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return err
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} else if len(output) != 0 {
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return fmt.Errorf("Could not delete linking rule from %s/%s: %s", c.Table, c.Name, output)
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}
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}
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}
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return nil
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}
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// RemoveExistingChain removes existing chain from the table.
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func RemoveExistingChain(name string, table Table) error {
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c := &ChainInfo{
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Name: name,
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Table: table,
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}
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if string(c.Table) == "" {
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c.Table = Filter
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}
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return c.Remove()
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}
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// Forward adds forwarding rule to 'filter' table and corresponding nat rule to 'nat' table.
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func (c *ChainInfo) Forward(action Action, ip net.IP, port int, proto, destAddr string, destPort int, bridgeName string) error {
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daddr := ip.String()
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if ip.IsUnspecified() {
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// iptables interprets "0.0.0.0" as "0.0.0.0/32", whereas we
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// want "0.0.0.0/0". "0/0" is correctly interpreted as "any
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// value" by both iptables and ip6tables.
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daddr = "0/0"
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}
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args := []string{"-t", string(Nat), string(action), c.Name,
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"-p", proto,
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"-d", daddr,
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"--dport", strconv.Itoa(port),
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"-j", "DNAT",
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"--to-destination", net.JoinHostPort(destAddr, strconv.Itoa(destPort))}
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if !c.HairpinMode {
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args = append(args, "!", "-i", bridgeName)
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}
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if output, err := Raw(args...); err != nil {
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return err
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} else if len(output) != 0 {
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return ChainError{Chain: "FORWARD", Output: output}
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}
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if output, err := Raw("-t", string(Filter), string(action), c.Name,
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"!", "-i", bridgeName,
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"-o", bridgeName,
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"-p", proto,
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"-d", destAddr,
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"--dport", strconv.Itoa(destPort),
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"-j", "ACCEPT"); err != nil {
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return err
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} else if len(output) != 0 {
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return ChainError{Chain: "FORWARD", Output: output}
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}
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if output, err := Raw("-t", string(Nat), string(action), "POSTROUTING",
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"-p", proto,
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"-s", destAddr,
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"-d", destAddr,
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"--dport", strconv.Itoa(destPort),
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"-j", "MASQUERADE"); err != nil {
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return err
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} else if len(output) != 0 {
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return ChainError{Chain: "FORWARD", Output: output}
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}
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return nil
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}
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// Link adds reciprocal ACCEPT rule for two supplied IP addresses.
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// Traffic is allowed from ip1 to ip2 and vice-versa
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func (c *ChainInfo) Link(action Action, ip1, ip2 net.IP, port int, proto string, bridgeName string) error {
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if output, err := Raw("-t", string(Filter), string(action), c.Name,
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"-i", bridgeName, "-o", bridgeName,
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"-p", proto,
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"-s", ip1.String(),
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"-d", ip2.String(),
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"--dport", strconv.Itoa(port),
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"-j", "ACCEPT"); err != nil {
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return err
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} else if len(output) != 0 {
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return fmt.Errorf("Error iptables forward: %s", output)
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}
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if output, err := Raw("-t", string(Filter), string(action), c.Name,
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"-i", bridgeName, "-o", bridgeName,
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"-p", proto,
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"-s", ip2.String(),
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"-d", ip1.String(),
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"--sport", strconv.Itoa(port),
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"-j", "ACCEPT"); err != nil {
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return err
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} else if len(output) != 0 {
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return fmt.Errorf("Error iptables forward: %s", output)
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}
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return nil
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}
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// Prerouting adds linking rule to nat/PREROUTING chain.
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func (c *ChainInfo) Prerouting(action Action, args ...string) error {
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a := []string{"-t", string(Nat), string(action), "PREROUTING"}
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if len(args) > 0 {
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a = append(a, args...)
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}
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if output, err := Raw(a...); err != nil {
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return err
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} else if len(output) != 0 {
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return ChainError{Chain: "PREROUTING", Output: output}
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}
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return nil
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}
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// Output adds linking rule to an OUTPUT chain.
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func (c *ChainInfo) Output(action Action, args ...string) error {
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a := []string{"-t", string(c.Table), string(action), "OUTPUT"}
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if len(args) > 0 {
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a = append(a, args...)
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}
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if output, err := Raw(a...); err != nil {
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return err
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} else if len(output) != 0 {
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return ChainError{Chain: "OUTPUT", Output: output}
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}
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return nil
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}
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// Remove removes the chain.
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func (c *ChainInfo) Remove() error {
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// Ignore errors - This could mean the chains were never set up
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if c.Table == Nat {
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c.Prerouting(Delete, "-m", "addrtype", "--dst-type", "LOCAL", "-j", c.Name)
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c.Output(Delete, "-m", "addrtype", "--dst-type", "LOCAL", "!", "--dst", "127.0.0.0/8", "-j", c.Name)
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c.Output(Delete, "-m", "addrtype", "--dst-type", "LOCAL", "-j", c.Name) // Created in versions <= 0.1.6
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c.Prerouting(Delete)
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c.Output(Delete)
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}
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Raw("-t", string(c.Table), "-F", c.Name)
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Raw("-t", string(c.Table), "-X", c.Name)
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return nil
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}
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// Exists checks if a rule exists
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func Exists(table Table, chain string, rule ...string) bool {
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if string(table) == "" {
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table = Filter
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}
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initCheck()
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if supportsCOpt {
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// if exit status is 0 then return true, the rule exists
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_, err := Raw(append([]string{"-t", string(table), "-C", chain}, rule...)...)
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return err == nil
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}
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// parse "iptables -S" for the rule (it checks rules in a specific chain
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// in a specific table and it is very unreliable)
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return existsRaw(table, chain, rule...)
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}
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func existsRaw(table Table, chain string, rule ...string) bool {
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ruleString := fmt.Sprintf("%s %s\n", chain, strings.Join(rule, " "))
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existingRules, _ := exec.Command(iptablesPath, "-t", string(table), "-S", chain).Output()
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return strings.Contains(string(existingRules), ruleString)
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}
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// Raw calls 'iptables' system command, passing supplied arguments.
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func Raw(args ...string) ([]byte, error) {
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if firewalldRunning {
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output, err := Passthrough(Iptables, args...)
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if err == nil || !strings.Contains(err.Error(), "was not provided by any .service files") {
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return output, err
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}
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}
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return raw(args...)
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}
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func raw(args ...string) ([]byte, error) {
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if err := initCheck(); err != nil {
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return nil, err
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}
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if supportsXlock {
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args = append([]string{"--wait"}, args...)
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} else {
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bestEffortLock.Lock()
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defer bestEffortLock.Unlock()
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}
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logrus.Debugf("%s, %v", iptablesPath, args)
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output, err := exec.Command(iptablesPath, args...).CombinedOutput()
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if err != nil {
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return nil, fmt.Errorf("iptables failed: iptables %v: %s (%s)", strings.Join(args, " "), output, err)
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}
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// ignore iptables' message about xtables lock
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if strings.Contains(string(output), "waiting for it to exit") {
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output = []byte("")
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}
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return output, err
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}
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// RawCombinedOutput inernally calls the Raw function and returns a non nil
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// error if Raw returned a non nil error or a non empty output
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func RawCombinedOutput(args ...string) error {
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if output, err := Raw(args...); err != nil || len(output) != 0 {
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return fmt.Errorf("%s (%v)", string(output), err)
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}
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return nil
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}
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// RawCombinedOutputNative behave as RawCombinedOutput with the difference it
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// will always invoke `iptables` binary
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func RawCombinedOutputNative(args ...string) error {
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if output, err := raw(args...); err != nil || len(output) != 0 {
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return fmt.Errorf("%s (%v)", string(output), err)
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}
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return nil
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}
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// ExistChain checks if a chain exists
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func ExistChain(chain string, table Table) bool {
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if _, err := Raw("-t", string(table), "-L", chain); err == nil {
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return true
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}
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return false
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}
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// GetVersion reads the iptables version numbers
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func GetVersion() (major, minor, micro int, err error) {
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out, err := Raw("--version")
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if err == nil {
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major, minor, micro = parseVersionNumbers(string(out))
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}
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return
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}
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func parseVersionNumbers(input string) (major, minor, micro int) {
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re := regexp.MustCompile(`v\d*.\d*.\d*`)
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line := re.FindString(input)
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fmt.Sscanf(line, "v%d.%d.%d", &major, &minor, µ)
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return
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}
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// iptables -C, --check option was added in v.1.4.11
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// http://ftp.netfilter.org/pub/iptables/changes-iptables-1.4.11.txt
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func supportsCOption(mj, mn, mc int) bool {
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return mj > 1 || (mj == 1 && (mn > 4 || (mn == 4 && mc >= 11)))
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}
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