Files
1Panel/agent/utils/firewall/forwarding/iptables.go

658 lines
19 KiB
Go

package forwarding
import (
"context"
"errors"
"fmt"
"os"
"path/filepath"
"strconv"
"strings"
"time"
"github.com/1Panel-dev/1Panel/agent/global"
"github.com/1Panel-dev/1Panel/agent/utils/cmd"
firewallutil "github.com/1Panel-dev/1Panel/agent/utils/firewall"
"github.com/1Panel-dev/1Panel/agent/utils/firewall/iptables_helper"
"github.com/1Panel-dev/1Panel/agent/utils/firewall/lifecycle"
"github.com/mattn/go-shellwords"
)
type iptablesBackend interface {
IPv6Available() bool
Run(table string, args ...string) error
RunWithStd(table string, args ...string) (string, error)
RunIPv6(table string, args ...string) error
RunIPv6WithStd(table string, args ...string) (string, error)
Restore(family, input string) error
LoadRulesFromFile(table, chain, fileName string) error
LoadIPv6RulesFromFile(table, chain, fileName string) error
}
type systemIptablesBackend struct{}
func (systemIptablesBackend) IPv6Available() bool {
commands, err := lifecycle.ResolveIptablesCommands()
return err == nil && commands.IPv6Available()
}
func (systemIptablesBackend) Run(table string, args ...string) error {
return iptables_helper.Run(table, args...)
}
func (systemIptablesBackend) RunWithStd(table string, args ...string) (string, error) {
if len(args) == 1 && args[0] == "-S" {
return iptables_helper.ReadTable(context.Background(), table, false)
}
return iptables_helper.RunWithStd(table, args...)
}
func (systemIptablesBackend) RunIPv6(table string, args ...string) error {
return iptables_helper.RunIPv6(table, args...)
}
func (systemIptablesBackend) RunIPv6WithStd(table string, args ...string) (string, error) {
if len(args) == 1 && args[0] == "-S" {
return iptables_helper.ReadTable(context.Background(), table, true)
}
return iptables_helper.RunIPv6WithStd(table, args...)
}
func (systemIptablesBackend) Restore(family, input string) error {
commands, err := lifecycle.ResolveIptablesCommands()
if err != nil {
return err
}
executable := commands.Restore4
if family == FamilyIPv6 {
executable = commands.Restore6
if executable == "" {
return fmt.Errorf("ip6tables-restore command family is unavailable")
}
}
manager := cmd.NewCommandMgr(cmd.WithTimeout(60*time.Second), cmd.WithStdin(strings.NewReader(input)))
err = manager.RunWithOptionalSudo(executable, "--noflush", "--wait")
return firewallutil.WrapBatchCommandError(executable+" --noflush --wait", input, err)
}
func (systemIptablesBackend) LoadRulesFromFile(table, chain, fileName string) error {
return iptables_helper.LoadRulesFromFile(table, chain, fileName)
}
func (systemIptablesBackend) LoadIPv6RulesFromFile(table, chain, fileName string) error {
return iptables_helper.LoadIPv6RulesFromFile(table, chain, fileName)
}
type forwardingSystem interface {
ReadFile(name string) ([]byte, error)
WriteFile(name string, data []byte, perm os.FileMode) error
RunWithOptionalSudo(name string, args ...string) error
}
type defaultForwardingSystem struct{}
func (defaultForwardingSystem) ReadFile(name string) ([]byte, error) {
return os.ReadFile(name)
}
func (defaultForwardingSystem) WriteFile(name string, data []byte, perm os.FileMode) error {
return cmd.WriteFileWithOptionalSudo(name, data, perm)
}
func (defaultForwardingSystem) RunWithOptionalSudo(name string, args ...string) error {
return cmd.NewCommandMgr().RunWithOptionalSudo(name, args...)
}
type iptablesNATAdapter struct {
provider string
backend iptablesBackend
system forwardingSystem
}
func newIptablesNATAdapter(provider string) *iptablesNATAdapter {
return &iptablesNATAdapter{
provider: provider,
backend: systemIptablesBackend{},
system: defaultForwardingSystem{},
}
}
func (l *iptablesNATAdapter) Name() string {
return l.provider
}
func (l *iptablesNATAdapter) List() ([]Rule, error) {
stdout, err := l.backend.RunWithStd(iptables_helper.NatTab, "-S")
if err != nil {
return nil, fmt.Errorf("failed to list NAT rules: %w", err)
}
rules := parseIptablesRules(stdout, FamilyIPv4)
if !l.backend.IPv6Available() {
return rules, nil
}
stdout, err = l.backend.RunIPv6WithStd(iptables_helper.NatTab, "-S")
if err != nil {
return nil, fmt.Errorf("failed to list IPv6 NAT rules: %w", err)
}
return append(rules, parseIptablesRules(stdout, FamilyIPv6)...), nil
}
func (l *iptablesNATAdapter) Reconcile(rules []Rule) error {
byFamily := map[string][]Rule{
FamilyIPv4: nil,
FamilyIPv6: nil,
}
for _, rule := range rules {
normalized, err := NormalizeRule(rule)
if err != nil {
return err
}
if normalized.Family == FamilyIPv6 && !l.backend.IPv6Available() {
return fmt.Errorf("ip6tables command family is unavailable")
}
byFamily[normalized.Family] = append(byFamily[normalized.Family], normalized)
}
for _, family := range []string{FamilyIPv4, FamilyIPv6} {
if family == FamilyIPv6 && !l.backend.IPv6Available() {
continue
}
if err := l.batchEnsureChains(family); err != nil {
return err
}
script, err := buildIptablesForwardRestoreScript(byFamily[family])
if err != nil {
return err
}
if err := l.backend.Restore(family, script); err != nil {
return fmt.Errorf("restore %s forwarding rules: %w", family, err)
}
}
return nil
}
func buildIptablesForwardRestoreScript(rules []Rule) (string, error) {
natRules := [][]string{{"-F", ChainPreRouting}, {"-F", ChainPostRouting}}
filterRules := [][]string{{"-F", ChainForward}}
for _, rule := range rules {
sourcePort := strings.ReplaceAll(rule.Port, "-", ":")
targetPort := strings.ReplaceAll(rule.TargetPort, "-", ":")
preRouting := []string{"-A", ChainPreRouting}
if rule.Interface != "" {
preRouting = append(preRouting, "-i", rule.Interface)
}
preRouting = append(preRouting, "-p", rule.Protocol, "--dport", sourcePort)
if !isRemoteTarget(rule.Family, rule.TargetIP) {
natRules = append(natRules, append(preRouting, "-j", "REDIRECT", "--to-port", rule.TargetPort))
continue
}
natRules = append(natRules,
append(preRouting, "-j", "DNAT", "--to-destination", forwardingTarget(rule)),
[]string{"-A", ChainPostRouting, "-d", rule.TargetIP, "-p", rule.Protocol, "--dport", targetPort, "-j", "MASQUERADE"},
)
filterRules = append(filterRules,
[]string{"-A", ChainForward, "-d", rule.TargetIP, "-p", rule.Protocol, "--dport", targetPort, "-j", "ACCEPT"},
[]string{"-A", ChainForward, "-s", rule.TargetIP, "-p", rule.Protocol, "--sport", targetPort, "-j", "ACCEPT"},
)
}
var script strings.Builder
for _, table := range []struct {
name string
rules [][]string
}{{iptables_helper.NatTab, natRules}, {iptables_helper.FilterTab, filterRules}} {
script.WriteByte('*')
script.WriteString(table.name)
script.WriteByte('\n')
for _, rule := range table.rules {
for index, token := range rule {
if token == "" || strings.ContainsAny(token, " \t\r\n\"'") {
return "", fmt.Errorf("invalid iptables-restore token %q", token)
}
if index > 0 {
script.WriteByte(' ')
}
script.WriteString(token)
}
script.WriteByte('\n')
}
script.WriteString("COMMIT\n")
}
return script.String(), nil
}
func forwardingTarget(rule Rule) string {
if rule.Family == FamilyIPv6 {
return "[" + rule.TargetIP + "]:" + rule.TargetPort
}
return rule.TargetIP + ":" + rule.TargetPort
}
func isRemoteTarget(family, target string) bool {
if family == FamilyIPv6 {
return target != "" && target != "::1" && target != "localhost"
}
return target != "" && target != "127.0.0.1" && target != "localhost"
}
func (l *iptablesNATAdapter) Enable() error {
if err := ensureForwardingSysctls(l.system, l.backend.IPv6Available()); err != nil {
return err
}
for _, family := range []string{FamilyIPv4, FamilyIPv6} {
if family == FamilyIPv6 && !l.backend.IPv6Available() {
continue
}
if err := l.batchEnsureChains(family); err != nil {
return err
}
}
return nil
}
func (l *iptablesNATAdapter) batchEnsureChains(family string) error {
list := l.backend.RunWithStd
if family == FamilyIPv6 {
list = l.backend.RunIPv6WithStd
}
outputs := make(map[string]string, 2)
for _, table := range []string{iptables_helper.NatTab, iptables_helper.FilterTab} {
output, err := list(table, "-S")
if err != nil {
return err
}
outputs[table] = output
}
script := buildIptablesForwardLifecycleScript(outputs, true)
if script == "" {
return nil
}
if err := l.backend.Restore(family, script); err != nil {
return fmt.Errorf("batch initialize %s forwarding chains: %w", family, err)
}
return nil
}
func (l *iptablesNATAdapter) Cleanup() error {
for _, family := range []string{FamilyIPv4, FamilyIPv6} {
if family == FamilyIPv6 && !l.backend.IPv6Available() {
continue
}
list := l.backend.RunWithStd
if family == FamilyIPv6 {
list = l.backend.RunIPv6WithStd
}
outputs := make(map[string]string, 2)
for _, table := range []string{iptables_helper.NatTab, iptables_helper.FilterTab} {
rules, err := list(table, "-S")
if err != nil {
return err
}
outputs[table] = rules
}
script := buildIptablesForwardLifecycleScript(outputs, false)
if script != "" {
if err := l.backend.Restore(family, script); err != nil {
return fmt.Errorf("batch delete %s forwarding chains: %w", family, err)
}
}
}
for _, file := range []string{ForwardFile, PreRoutingFile, PostRoutingFile,
iptables_helper.IPv6FileName(ForwardFile), iptables_helper.IPv6FileName(PreRoutingFile), iptables_helper.IPv6FileName(PostRoutingFile)} {
if err := os.Remove(filepath.Join(global.Dir.FirewallDir, file)); err != nil && !errors.Is(err, os.ErrNotExist) {
return err
}
}
return nil
}
func buildIptablesForwardLifecycleScript(outputs map[string]string, create bool) string {
items := []struct{ table, parent, chain string }{
{iptables_helper.NatTab, "PREROUTING", ChainPreRouting},
{iptables_helper.NatTab, "POSTROUTING", ChainPostRouting},
}
byTable := make(map[string][]string, 2)
for _, item := range items {
output := outputs[item.table]
chainExists := containsExactLine(output, "-N "+item.chain)
binding := "-A " + item.parent + " -j " + item.chain
bindingCount := countExactLines(output, binding)
if create {
if !chainExists {
byTable[item.table] = append(byTable[item.table], "-N "+item.chain)
}
if bindingCount == 0 {
byTable[item.table] = append(byTable[item.table], "-A "+item.parent+" -j "+item.chain)
}
continue
}
for range bindingCount {
byTable[item.table] = append(byTable[item.table], "-D "+item.parent+" -j "+item.chain)
}
if chainExists {
byTable[item.table] = append(byTable[item.table], "-F "+item.chain, "-X "+item.chain)
}
}
filterOutput := outputs[iptables_helper.FilterTab]
filterChainExists := containsExactLine(filterOutput, "-N "+ChainForward)
filterBinding := "-A FORWARD -j " + ChainForward
filterBindingCount := countExactLines(filterOutput, filterBinding)
if create {
if !filterChainExists {
byTable[iptables_helper.FilterTab] = append(byTable[iptables_helper.FilterTab], "-N "+ChainForward)
}
if !forwardBindingEffective(filterOutput) {
for range filterBindingCount {
byTable[iptables_helper.FilterTab] = append(byTable[iptables_helper.FilterTab], "-D FORWARD -j "+ChainForward)
}
byTable[iptables_helper.FilterTab] = append(byTable[iptables_helper.FilterTab], canonicalForwardBindingRule(filterOutput))
}
} else {
for range filterBindingCount {
byTable[iptables_helper.FilterTab] = append(byTable[iptables_helper.FilterTab], "-D FORWARD -j "+ChainForward)
}
if filterChainExists {
byTable[iptables_helper.FilterTab] = append(byTable[iptables_helper.FilterTab], "-F "+ChainForward, "-X "+ChainForward)
}
}
var script strings.Builder
for _, table := range []string{iptables_helper.NatTab, iptables_helper.FilterTab} {
lines := byTable[table]
if len(lines) == 0 {
continue
}
script.WriteByte('*')
script.WriteString(table)
script.WriteByte('\n')
script.WriteString(strings.Join(lines, "\n"))
script.WriteString("\nCOMMIT\n")
}
return script.String()
}
func countExactLines(output, want string) int {
count := 0
for _, line := range strings.Split(output, "\n") {
if strings.TrimSpace(line) == want {
count++
}
}
return count
}
func forwardBindingEffective(output string) bool {
binding := "-A FORWARD -j " + ChainForward
bindingPosition := 0
terminalPosition := 0
position := 0
bindings := 0
for _, line := range strings.Split(output, "\n") {
line = strings.TrimSpace(line)
if !strings.HasPrefix(line, "-A FORWARD ") {
continue
}
position++
if line == binding {
bindings++
bindingPosition = position
}
if terminalPosition == 0 && isUnconditionalForwardTerminal(line) {
terminalPosition = position
}
}
return bindings == 1 && (terminalPosition == 0 || bindingPosition < terminalPosition)
}
func canonicalForwardBindingRule(output string) string {
binding := "-A FORWARD -j " + ChainForward
position := 1
for _, line := range strings.Split(output, "\n") {
line = strings.TrimSpace(line)
if !strings.HasPrefix(line, "-A FORWARD ") || line == binding {
continue
}
if isUnconditionalForwardTerminal(line) {
return fmt.Sprintf("-I FORWARD %d -j %s", position, ChainForward)
}
position++
}
return "-A FORWARD -j " + ChainForward
}
func isUnconditionalForwardTerminal(line string) bool {
fields := strings.Fields(line)
if len(fields) < 4 || fields[0] != "-A" || fields[1] != "FORWARD" || fields[2] != "-j" {
return false
}
switch fields[3] {
case "ACCEPT", "DROP", "REJECT", "RETURN":
return true
default:
return false
}
}
func containsExactLine(output, want string) bool {
for _, line := range strings.Split(output, "\n") {
if strings.TrimSpace(line) == want {
return true
}
}
return false
}
func (l *iptablesNATAdapter) InitStatus() (bool, bool, error) {
ipv4Init, ipv4Bind, err := l.familyInitStatus(FamilyIPv4)
if err != nil {
return false, false, err
}
if !l.backend.IPv6Available() {
return ipv4Init, ipv4Bind, nil
}
ipv6Init, ipv6Bind, err := l.familyInitStatus(FamilyIPv6)
if err != nil {
return false, false, err
}
return ipv4Init && ipv6Init, ipv4Bind && ipv6Bind, nil
}
func (l *iptablesNATAdapter) familyInitStatus(family string) (bool, bool, error) {
sysctlPath := "/proc/sys/net/ipv4/ip_forward"
label := "IPv4"
list := l.backend.RunWithStd
if family == FamilyIPv6 {
sysctlPath = "/proc/sys/net/ipv6/conf/all/forwarding"
label = "IPv6"
list = l.backend.RunIPv6WithStd
}
data, err := l.system.ReadFile(sysctlPath)
if err != nil {
return false, false, fmt.Errorf("read %s forwarding status: %w", label, err)
}
forwardingEnabled := strings.TrimSpace(string(data)) != "0"
natRules, err := list(iptables_helper.NatTab, "-S")
if err != nil {
return false, false, fmt.Errorf("list %s NAT initialization rules: %w", label, err)
}
natInit, natBind := checkInitAndBind(
[]string{"-N " + ChainPreRouting, "-N " + ChainPostRouting},
[]string{"-A PREROUTING -j " + ChainPreRouting, "-A POSTROUTING -j " + ChainPostRouting},
strings.Split(natRules, "\n"),
)
if !natInit {
return false, false, nil
}
filterRules, err := list(iptables_helper.FilterTab, "-S")
if err != nil {
return false, false, fmt.Errorf("list %s filter initialization rules: %w", label, err)
}
filterInit, _ := checkInitAndBind(
[]string{"-N " + ChainForward},
nil,
strings.Split(filterRules, "\n"),
)
filterBind := forwardBindingEffective(filterRules)
return natInit && filterInit, forwardingEnabled && natBind && filterInit && filterBind, nil
}
func (l *iptablesNATAdapter) FamilyStatus(family string) (bool, bool, error) {
if family == FamilyIPv6 && !l.backend.IPv6Available() {
return false, false, nil
}
return l.familyInitStatus(family)
}
func checkInitAndBind(initRules, bindRules, lines []string) (bool, bool) {
for _, rule := range initRules {
if !containsExactRule(lines, rule) {
return false, false
}
}
for _, rule := range bindRules {
if !containsExactRule(lines, rule) {
return true, false
}
}
return true, true
}
func containsExactRule(lines []string, rule string) bool {
for _, line := range lines {
if strings.TrimSpace(line) == strings.TrimSpace(rule) {
return true
}
}
return false
}
func (l *iptablesNATAdapter) Replay() error {
for _, family := range []string{FamilyIPv4, FamilyIPv6} {
if family == FamilyIPv6 && !l.backend.IPv6Available() {
continue
}
if err := l.batchEnsureChains(family); err != nil {
return err
}
}
for _, item := range []struct {
table string
chain string
file string
}{
{iptables_helper.FilterTab, ChainForward, ForwardFile},
{iptables_helper.NatTab, ChainPreRouting, PreRoutingFile},
{iptables_helper.NatTab, ChainPostRouting, PostRoutingFile},
} {
if err := l.backend.LoadRulesFromFile(item.table, item.chain, item.file); err != nil {
return err
}
if l.backend.IPv6Available() {
if err := l.backend.LoadIPv6RulesFromFile(item.table, item.chain, iptables_helper.IPv6FileName(item.file)); err != nil {
return err
}
}
}
return nil
}
func parseIptablesRules(stdout, family string) []Rule {
var rules []Rule
num := 0
lines:
for _, line := range strings.Split(stdout, "\n") {
fields, err := shellwords.Parse(line)
if err != nil || len(fields) < 2 || fields[0] != "-A" || fields[1] != ChainPreRouting {
continue
}
num++
rule := Rule{Num: strconv.Itoa(num), Family: family}
target := ""
for index := 2; index < len(fields); index++ {
var value *string
switch fields[index] {
case "!":
continue lines
case "-p", "--protocol":
value = &rule.Protocol
case "-i", "--in-interface":
value = &rule.Interface
case "--dport", "--destination-port":
value = &rule.Port
case "-j", "--jump":
value = &target
case "--to-destination":
if index+1 >= len(fields) {
continue lines
}
index++
rule.TargetIP, rule.TargetPort = parseIptablesTarget(fields[index])
case "--to-ports", "--to-port":
value = &rule.TargetPort
case "-m", "--match", "--comment":
if index+1 >= len(fields) {
continue lines
}
index++
}
if value != nil {
if index+1 >= len(fields) {
continue lines
}
index++
*value = fields[index]
}
}
if rule.Protocol == "" || rule.Port == "" || rule.TargetPort == "" {
continue
}
switch target {
case "REDIRECT":
rule.TargetIP = "127.0.0.1"
if family == FamilyIPv6 {
rule.TargetIP = "::1"
}
case "DNAT":
if rule.TargetIP == "" {
continue
}
default:
continue
}
rule.Protocol = loadProtocol(rule.Protocol)
rule.Port = strings.ReplaceAll(rule.Port, ":", "-")
rule.TargetPort = strings.ReplaceAll(rule.TargetPort, ":", "-")
rules = append(rules, rule)
}
return rules
}
func parseIptablesTarget(value string) (string, string) {
if strings.HasPrefix(value, "[") {
separator := strings.LastIndex(value, "]:")
if separator > 0 {
return value[1:separator], value[separator+2:]
}
return "", ""
}
separator := strings.LastIndex(value, ":")
if separator <= 0 {
return "", ""
}
return value[:separator], value[separator+1:]
}
func loadProtocol(protocol string) string {
switch protocol {
case "0":
return "all"
case "1":
return "icmp"
case "6":
return "tcp"
case "17":
return "udp"
default:
return protocol
}
}