iptables.go 19 KB

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  1. // Copyright 2015 CoreOS, Inc.
  2. //
  3. // Licensed under the Apache License, Version 2.0 (the "License");
  4. // you may not use this file except in compliance with the License.
  5. // You may obtain a copy of the License at
  6. //
  7. // http://www.apache.org/licenses/LICENSE-2.0
  8. //
  9. // Unless required by applicable law or agreed to in writing, software
  10. // distributed under the License is distributed on an "AS IS" BASIS,
  11. // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12. // See the License for the specific language governing permissions and
  13. // limitations under the License.
  14. package iptables
  15. import (
  16. "bytes"
  17. "fmt"
  18. "io"
  19. "net"
  20. "os/exec"
  21. "regexp"
  22. "strconv"
  23. "strings"
  24. "syscall"
  25. )
  26. // Adds the output of stderr to exec.ExitError
  27. type Error struct {
  28. exec.ExitError
  29. cmd exec.Cmd
  30. msg string
  31. exitStatus *int //for overriding
  32. }
  33. func (e *Error) ExitStatus() int {
  34. if e.exitStatus != nil {
  35. return *e.exitStatus
  36. }
  37. return e.Sys().(syscall.WaitStatus).ExitStatus()
  38. }
  39. func (e *Error) Error() string {
  40. return fmt.Sprintf("running %v: exit status %v: %v", e.cmd.Args, e.ExitStatus(), e.msg)
  41. }
  42. // IsNotExist returns true if the error is due to the chain or rule not existing
  43. func (e *Error) IsNotExist() bool {
  44. if e.ExitStatus() != 1 {
  45. return false
  46. }
  47. msgNoRuleExist := "Bad rule (does a matching rule exist in that chain?).\n"
  48. msgNoChainExist := "No chain/target/match by that name.\n"
  49. return strings.Contains(e.msg, msgNoRuleExist) || strings.Contains(e.msg, msgNoChainExist)
  50. }
  51. // Protocol to differentiate between IPv4 and IPv6
  52. type Protocol byte
  53. const (
  54. ProtocolIPv4 Protocol = iota
  55. ProtocolIPv6
  56. )
  57. type IPTables struct {
  58. path string
  59. proto Protocol
  60. hasCheck bool
  61. hasWait bool
  62. waitSupportSecond bool
  63. hasRandomFully bool
  64. v1 int
  65. v2 int
  66. v3 int
  67. mode string // the underlying iptables operating mode, e.g. nf_tables
  68. timeout int // time to wait for the iptables lock, default waits forever
  69. }
  70. // Stat represents a structured statistic entry.
  71. type Stat struct {
  72. Packets uint64 `json:"pkts"`
  73. Bytes uint64 `json:"bytes"`
  74. Target string `json:"target"`
  75. Protocol string `json:"prot"`
  76. Opt string `json:"opt"`
  77. Input string `json:"in"`
  78. Output string `json:"out"`
  79. Source *net.IPNet `json:"source"`
  80. Destination *net.IPNet `json:"destination"`
  81. Options string `json:"options"`
  82. }
  83. type option func(*IPTables)
  84. func IPFamily(proto Protocol) option {
  85. return func(ipt *IPTables) {
  86. ipt.proto = proto
  87. }
  88. }
  89. func Timeout(timeout int) option {
  90. return func(ipt *IPTables) {
  91. ipt.timeout = timeout
  92. }
  93. }
  94. // New creates a new IPTables configured with the options passed as parameter.
  95. // For backwards compatibility, by default always uses IPv4 and timeout 0.
  96. // i.e. you can create an IPv6 IPTables using a timeout of 5 seconds passing
  97. // the IPFamily and Timeout options as follow:
  98. //
  99. // ip6t := New(IPFamily(ProtocolIPv6), Timeout(5))
  100. func New(opts ...option) (*IPTables, error) {
  101. ipt := &IPTables{
  102. proto: ProtocolIPv4,
  103. timeout: 0,
  104. }
  105. for _, opt := range opts {
  106. opt(ipt)
  107. }
  108. path, err := exec.LookPath(getIptablesCommand(ipt.proto))
  109. if err != nil {
  110. return nil, err
  111. }
  112. ipt.path = path
  113. vstring, err := getIptablesVersionString(path)
  114. if err != nil {
  115. return nil, fmt.Errorf("could not get iptables version: %v", err)
  116. }
  117. v1, v2, v3, mode, err := extractIptablesVersion(vstring)
  118. if err != nil {
  119. return nil, fmt.Errorf("failed to extract iptables version from [%s]: %v", vstring, err)
  120. }
  121. ipt.v1 = v1
  122. ipt.v2 = v2
  123. ipt.v3 = v3
  124. ipt.mode = mode
  125. checkPresent, waitPresent, waitSupportSecond, randomFullyPresent := getIptablesCommandSupport(v1, v2, v3)
  126. ipt.hasCheck = checkPresent
  127. ipt.hasWait = waitPresent
  128. ipt.waitSupportSecond = waitSupportSecond
  129. ipt.hasRandomFully = randomFullyPresent
  130. return ipt, nil
  131. }
  132. // New creates a new IPTables for the given proto.
  133. // The proto will determine which command is used, either "iptables" or "ip6tables".
  134. func NewWithProtocol(proto Protocol) (*IPTables, error) {
  135. return New(IPFamily(proto), Timeout(0))
  136. }
  137. // Proto returns the protocol used by this IPTables.
  138. func (ipt *IPTables) Proto() Protocol {
  139. return ipt.proto
  140. }
  141. // Exists checks if given rulespec in specified table/chain exists
  142. func (ipt *IPTables) Exists(table, chain string, rulespec ...string) (bool, error) {
  143. if !ipt.hasCheck {
  144. return ipt.existsForOldIptables(table, chain, rulespec)
  145. }
  146. cmd := append([]string{"-t", table, "-C", chain}, rulespec...)
  147. err := ipt.run(cmd...)
  148. eerr, eok := err.(*Error)
  149. switch {
  150. case err == nil:
  151. return true, nil
  152. case eok && eerr.ExitStatus() == 1:
  153. return false, nil
  154. default:
  155. return false, err
  156. }
  157. }
  158. // Insert inserts rulespec to specified table/chain (in specified pos)
  159. func (ipt *IPTables) Insert(table, chain string, pos int, rulespec ...string) error {
  160. cmd := append([]string{"-t", table, "-I", chain, strconv.Itoa(pos)}, rulespec...)
  161. return ipt.run(cmd...)
  162. }
  163. // InsertUnique acts like Insert except that it won't insert a duplicate (no matter the position in the chain)
  164. func (ipt *IPTables) InsertUnique(table, chain string, pos int, rulespec ...string) error {
  165. exists, err := ipt.Exists(table, chain, rulespec...)
  166. if err != nil {
  167. return err
  168. }
  169. if !exists {
  170. return ipt.Insert(table, chain, pos, rulespec...)
  171. }
  172. return nil
  173. }
  174. // Append appends rulespec to specified table/chain
  175. func (ipt *IPTables) Append(table, chain string, rulespec ...string) error {
  176. cmd := append([]string{"-t", table, "-A", chain}, rulespec...)
  177. return ipt.run(cmd...)
  178. }
  179. // AppendUnique acts like Append except that it won't add a duplicate
  180. func (ipt *IPTables) AppendUnique(table, chain string, rulespec ...string) error {
  181. exists, err := ipt.Exists(table, chain, rulespec...)
  182. if err != nil {
  183. return err
  184. }
  185. if !exists {
  186. return ipt.Append(table, chain, rulespec...)
  187. }
  188. return nil
  189. }
  190. // Delete removes rulespec in specified table/chain
  191. func (ipt *IPTables) Delete(table, chain string, rulespec ...string) error {
  192. cmd := append([]string{"-t", table, "-D", chain}, rulespec...)
  193. return ipt.run(cmd...)
  194. }
  195. func (ipt *IPTables) DeleteIfExists(table, chain string, rulespec ...string) error {
  196. exists, err := ipt.Exists(table, chain, rulespec...)
  197. if err == nil && exists {
  198. err = ipt.Delete(table, chain, rulespec...)
  199. }
  200. return err
  201. }
  202. // List rules in specified table/chain
  203. func (ipt *IPTables) ListById(table, chain string, id int) (string, error) {
  204. args := []string{"-t", table, "-S", chain, strconv.Itoa(id)}
  205. rule, err := ipt.executeList(args)
  206. if err != nil {
  207. return "", err
  208. }
  209. return rule[0], nil
  210. }
  211. // List rules in specified table/chain
  212. func (ipt *IPTables) List(table, chain string) ([]string, error) {
  213. args := []string{"-t", table, "-S", chain}
  214. return ipt.executeList(args)
  215. }
  216. // List rules (with counters) in specified table/chain
  217. func (ipt *IPTables) ListWithCounters(table, chain string) ([]string, error) {
  218. args := []string{"-t", table, "-v", "-S", chain}
  219. return ipt.executeList(args)
  220. }
  221. // ListChains returns a slice containing the name of each chain in the specified table.
  222. func (ipt *IPTables) ListChains(table string) ([]string, error) {
  223. args := []string{"-t", table, "-S"}
  224. result, err := ipt.executeList(args)
  225. if err != nil {
  226. return nil, err
  227. }
  228. // Iterate over rules to find all default (-P) and user-specified (-N) chains.
  229. // Chains definition always come before rules.
  230. // Format is the following:
  231. // -P OUTPUT ACCEPT
  232. // -N Custom
  233. var chains []string
  234. for _, val := range result {
  235. if strings.HasPrefix(val, "-P") || strings.HasPrefix(val, "-N") {
  236. chains = append(chains, strings.Fields(val)[1])
  237. } else {
  238. break
  239. }
  240. }
  241. return chains, nil
  242. }
  243. // '-S' is fine with non existing rule index as long as the chain exists
  244. // therefore pass index 1 to reduce overhead for large chains
  245. func (ipt *IPTables) ChainExists(table, chain string) (bool, error) {
  246. err := ipt.run("-t", table, "-S", chain, "1")
  247. eerr, eok := err.(*Error)
  248. switch {
  249. case err == nil:
  250. return true, nil
  251. case eok && eerr.ExitStatus() == 1:
  252. return false, nil
  253. default:
  254. return false, err
  255. }
  256. }
  257. // Stats lists rules including the byte and packet counts
  258. func (ipt *IPTables) Stats(table, chain string) ([][]string, error) {
  259. args := []string{"-t", table, "-L", chain, "-n", "-v", "-x"}
  260. lines, err := ipt.executeList(args)
  261. if err != nil {
  262. return nil, err
  263. }
  264. appendSubnet := func(addr string) string {
  265. if strings.IndexByte(addr, byte('/')) < 0 {
  266. if strings.IndexByte(addr, '.') < 0 {
  267. return addr + "/128"
  268. }
  269. return addr + "/32"
  270. }
  271. return addr
  272. }
  273. ipv6 := ipt.proto == ProtocolIPv6
  274. rows := [][]string{}
  275. for i, line := range lines {
  276. // Skip over chain name and field header
  277. if i < 2 {
  278. continue
  279. }
  280. // Fields:
  281. // 0=pkts 1=bytes 2=target 3=prot 4=opt 5=in 6=out 7=source 8=destination 9=options
  282. line = strings.TrimSpace(line)
  283. fields := strings.Fields(line)
  284. // The ip6tables verbose output cannot be naively split due to the default "opt"
  285. // field containing 2 single spaces.
  286. if ipv6 {
  287. // Check if field 6 is "opt" or "source" address
  288. dest := fields[6]
  289. ip, _, _ := net.ParseCIDR(dest)
  290. if ip == nil {
  291. ip = net.ParseIP(dest)
  292. }
  293. // If we detected a CIDR or IP, the "opt" field is empty.. insert it.
  294. if ip != nil {
  295. f := []string{}
  296. f = append(f, fields[:4]...)
  297. f = append(f, " ") // Empty "opt" field for ip6tables
  298. f = append(f, fields[4:]...)
  299. fields = f
  300. }
  301. }
  302. // Adjust "source" and "destination" to include netmask, to match regular
  303. // List output
  304. fields[7] = appendSubnet(fields[7])
  305. fields[8] = appendSubnet(fields[8])
  306. // Combine "options" fields 9... into a single space-delimited field.
  307. options := fields[9:]
  308. fields = fields[:9]
  309. fields = append(fields, strings.Join(options, " "))
  310. rows = append(rows, fields)
  311. }
  312. return rows, nil
  313. }
  314. // ParseStat parses a single statistic row into a Stat struct. The input should
  315. // be a string slice that is returned from calling the Stat method.
  316. func (ipt *IPTables) ParseStat(stat []string) (parsed Stat, err error) {
  317. // For forward-compatibility, expect at least 10 fields in the stat
  318. if len(stat) < 10 {
  319. return parsed, fmt.Errorf("stat contained fewer fields than expected")
  320. }
  321. // Convert the fields that are not plain strings
  322. parsed.Packets, err = strconv.ParseUint(stat[0], 0, 64)
  323. if err != nil {
  324. return parsed, fmt.Errorf(err.Error(), "could not parse packets")
  325. }
  326. parsed.Bytes, err = strconv.ParseUint(stat[1], 0, 64)
  327. if err != nil {
  328. return parsed, fmt.Errorf(err.Error(), "could not parse bytes")
  329. }
  330. _, parsed.Source, err = net.ParseCIDR(stat[7])
  331. if err != nil {
  332. return parsed, fmt.Errorf(err.Error(), "could not parse source")
  333. }
  334. _, parsed.Destination, err = net.ParseCIDR(stat[8])
  335. if err != nil {
  336. return parsed, fmt.Errorf(err.Error(), "could not parse destination")
  337. }
  338. // Put the fields that are strings
  339. parsed.Target = stat[2]
  340. parsed.Protocol = stat[3]
  341. parsed.Opt = stat[4]
  342. parsed.Input = stat[5]
  343. parsed.Output = stat[6]
  344. parsed.Options = stat[9]
  345. return parsed, nil
  346. }
  347. // StructuredStats returns statistics as structured data which may be further
  348. // parsed and marshaled.
  349. func (ipt *IPTables) StructuredStats(table, chain string) ([]Stat, error) {
  350. rawStats, err := ipt.Stats(table, chain)
  351. if err != nil {
  352. return nil, err
  353. }
  354. structStats := []Stat{}
  355. for _, rawStat := range rawStats {
  356. stat, err := ipt.ParseStat(rawStat)
  357. if err != nil {
  358. return nil, err
  359. }
  360. structStats = append(structStats, stat)
  361. }
  362. return structStats, nil
  363. }
  364. func (ipt *IPTables) executeList(args []string) ([]string, error) {
  365. var stdout bytes.Buffer
  366. if err := ipt.runWithOutput(args, &stdout); err != nil {
  367. return nil, err
  368. }
  369. rules := strings.Split(stdout.String(), "\n")
  370. // strip trailing newline
  371. if len(rules) > 0 && rules[len(rules)-1] == "" {
  372. rules = rules[:len(rules)-1]
  373. }
  374. for i, rule := range rules {
  375. rules[i] = filterRuleOutput(rule)
  376. }
  377. return rules, nil
  378. }
  379. // NewChain creates a new chain in the specified table.
  380. // If the chain already exists, it will result in an error.
  381. func (ipt *IPTables) NewChain(table, chain string) error {
  382. return ipt.run("-t", table, "-N", chain)
  383. }
  384. const existsErr = 1
  385. // ClearChain flushed (deletes all rules) in the specified table/chain.
  386. // If the chain does not exist, a new one will be created
  387. func (ipt *IPTables) ClearChain(table, chain string) error {
  388. err := ipt.NewChain(table, chain)
  389. eerr, eok := err.(*Error)
  390. switch {
  391. case err == nil:
  392. return nil
  393. case eok && eerr.ExitStatus() == existsErr:
  394. // chain already exists. Flush (clear) it.
  395. return ipt.run("-t", table, "-F", chain)
  396. default:
  397. return err
  398. }
  399. }
  400. // RenameChain renames the old chain to the new one.
  401. func (ipt *IPTables) RenameChain(table, oldChain, newChain string) error {
  402. return ipt.run("-t", table, "-E", oldChain, newChain)
  403. }
  404. // DeleteChain deletes the chain in the specified table.
  405. // The chain must be empty
  406. func (ipt *IPTables) DeleteChain(table, chain string) error {
  407. return ipt.run("-t", table, "-X", chain)
  408. }
  409. func (ipt *IPTables) ClearAndDeleteChain(table, chain string) error {
  410. exists, err := ipt.ChainExists(table, chain)
  411. if err != nil || !exists {
  412. return err
  413. }
  414. err = ipt.run("-t", table, "-F", chain)
  415. if err == nil {
  416. err = ipt.run("-t", table, "-X", chain)
  417. }
  418. return err
  419. }
  420. func (ipt *IPTables) ClearAll() error {
  421. return ipt.run("-F")
  422. }
  423. func (ipt *IPTables) DeleteAll() error {
  424. return ipt.run("-X")
  425. }
  426. // ChangePolicy changes policy on chain to target
  427. func (ipt *IPTables) ChangePolicy(table, chain, target string) error {
  428. return ipt.run("-t", table, "-P", chain, target)
  429. }
  430. // Check if the underlying iptables command supports the --random-fully flag
  431. func (ipt *IPTables) HasRandomFully() bool {
  432. return ipt.hasRandomFully
  433. }
  434. // Return version components of the underlying iptables command
  435. func (ipt *IPTables) GetIptablesVersion() (int, int, int) {
  436. return ipt.v1, ipt.v2, ipt.v3
  437. }
  438. // run runs an iptables command with the given arguments, ignoring
  439. // any stdout output
  440. func (ipt *IPTables) run(args ...string) error {
  441. return ipt.runWithOutput(args, nil)
  442. }
  443. // runWithOutput runs an iptables command with the given arguments,
  444. // writing any stdout output to the given writer
  445. func (ipt *IPTables) runWithOutput(args []string, stdout io.Writer) error {
  446. args = append([]string{ipt.path}, args...)
  447. if ipt.hasWait {
  448. args = append(args, "--wait")
  449. if ipt.timeout != 0 && ipt.waitSupportSecond {
  450. args = append(args, strconv.Itoa(ipt.timeout))
  451. }
  452. } else {
  453. fmu, err := newXtablesFileLock()
  454. if err != nil {
  455. return err
  456. }
  457. ul, err := fmu.tryLock()
  458. if err != nil {
  459. syscall.Close(fmu.fd)
  460. return err
  461. }
  462. defer func() {
  463. _ = ul.Unlock()
  464. }()
  465. }
  466. var stderr bytes.Buffer
  467. cmd := exec.Cmd{
  468. Path: ipt.path,
  469. Args: args,
  470. Stdout: stdout,
  471. Stderr: &stderr,
  472. }
  473. if err := cmd.Run(); err != nil {
  474. switch e := err.(type) {
  475. case *exec.ExitError:
  476. return &Error{*e, cmd, stderr.String(), nil}
  477. default:
  478. return err
  479. }
  480. }
  481. return nil
  482. }
  483. // getIptablesCommand returns the correct command for the given protocol, either "iptables" or "ip6tables".
  484. func getIptablesCommand(proto Protocol) string {
  485. if proto == ProtocolIPv6 {
  486. return "ip6tables"
  487. } else {
  488. return "iptables"
  489. }
  490. }
  491. // Checks if iptables has the "-C" and "--wait" flag
  492. func getIptablesCommandSupport(v1 int, v2 int, v3 int) (bool, bool, bool, bool) {
  493. return iptablesHasCheckCommand(v1, v2, v3), iptablesHasWaitCommand(v1, v2, v3), iptablesWaitSupportSecond(v1, v2, v3), iptablesHasRandomFully(v1, v2, v3)
  494. }
  495. // getIptablesVersion returns the first three components of the iptables version
  496. // and the operating mode (e.g. nf_tables or legacy)
  497. // e.g. "iptables v1.3.66" would return (1, 3, 66, legacy, nil)
  498. func extractIptablesVersion(str string) (int, int, int, string, error) {
  499. versionMatcher := regexp.MustCompile(`v([0-9]+)\.([0-9]+)\.([0-9]+)(?:\s+\((\w+))?`)
  500. result := versionMatcher.FindStringSubmatch(str)
  501. if result == nil {
  502. return 0, 0, 0, "", fmt.Errorf("no iptables version found in string: %s", str)
  503. }
  504. v1, err := strconv.Atoi(result[1])
  505. if err != nil {
  506. return 0, 0, 0, "", err
  507. }
  508. v2, err := strconv.Atoi(result[2])
  509. if err != nil {
  510. return 0, 0, 0, "", err
  511. }
  512. v3, err := strconv.Atoi(result[3])
  513. if err != nil {
  514. return 0, 0, 0, "", err
  515. }
  516. mode := "legacy"
  517. if result[4] != "" {
  518. mode = result[4]
  519. }
  520. return v1, v2, v3, mode, nil
  521. }
  522. // Runs "iptables --version" to get the version string
  523. func getIptablesVersionString(path string) (string, error) {
  524. cmd := exec.Command(path, "--version")
  525. var out bytes.Buffer
  526. cmd.Stdout = &out
  527. err := cmd.Run()
  528. if err != nil {
  529. return "", err
  530. }
  531. return out.String(), nil
  532. }
  533. // Checks if an iptables version is after 1.4.11, when --check was added
  534. func iptablesHasCheckCommand(v1 int, v2 int, v3 int) bool {
  535. if v1 > 1 {
  536. return true
  537. }
  538. if v1 == 1 && v2 > 4 {
  539. return true
  540. }
  541. if v1 == 1 && v2 == 4 && v3 >= 11 {
  542. return true
  543. }
  544. return false
  545. }
  546. // Checks if an iptables version is after 1.4.20, when --wait was added
  547. func iptablesHasWaitCommand(v1 int, v2 int, v3 int) bool {
  548. if v1 > 1 {
  549. return true
  550. }
  551. if v1 == 1 && v2 > 4 {
  552. return true
  553. }
  554. if v1 == 1 && v2 == 4 && v3 >= 20 {
  555. return true
  556. }
  557. return false
  558. }
  559. // Checks if an iptablse version is after 1.6.0, when --wait support second
  560. func iptablesWaitSupportSecond(v1 int, v2 int, v3 int) bool {
  561. if v1 > 1 {
  562. return true
  563. }
  564. if v1 == 1 && v2 >= 6 {
  565. return true
  566. }
  567. return false
  568. }
  569. // Checks if an iptables version is after 1.6.2, when --random-fully was added
  570. func iptablesHasRandomFully(v1 int, v2 int, v3 int) bool {
  571. if v1 > 1 {
  572. return true
  573. }
  574. if v1 == 1 && v2 > 6 {
  575. return true
  576. }
  577. if v1 == 1 && v2 == 6 && v3 >= 2 {
  578. return true
  579. }
  580. return false
  581. }
  582. // Checks if a rule specification exists for a table
  583. func (ipt *IPTables) existsForOldIptables(table, chain string, rulespec []string) (bool, error) {
  584. rs := strings.Join(append([]string{"-A", chain}, rulespec...), " ")
  585. args := []string{"-t", table, "-S"}
  586. var stdout bytes.Buffer
  587. err := ipt.runWithOutput(args, &stdout)
  588. if err != nil {
  589. return false, err
  590. }
  591. return strings.Contains(stdout.String(), rs), nil
  592. }
  593. // counterRegex is the regex used to detect nftables counter format
  594. var counterRegex = regexp.MustCompile(`^\[([0-9]+):([0-9]+)\] `)
  595. // filterRuleOutput works around some inconsistencies in output.
  596. // For example, when iptables is in legacy vs. nftables mode, it produces
  597. // different results.
  598. func filterRuleOutput(rule string) string {
  599. out := rule
  600. // work around an output difference in nftables mode where counters
  601. // are output in iptables-save format, rather than iptables -S format
  602. // The string begins with "[0:0]"
  603. //
  604. // Fixes #49
  605. if groups := counterRegex.FindStringSubmatch(out); groups != nil {
  606. // drop the brackets
  607. out = out[len(groups[0]):]
  608. out = fmt.Sprintf("%s -c %s %s", out, groups[1], groups[2])
  609. }
  610. return out
  611. }