utils.go 15 KB

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  1. // Go MySQL Driver - A MySQL-Driver for Go's database/sql package
  2. //
  3. // Copyright 2012 The Go-MySQL-Driver Authors. All rights reserved.
  4. //
  5. // This Source Code Form is subject to the terms of the Mozilla Public
  6. // License, v. 2.0. If a copy of the MPL was not distributed with this file,
  7. // You can obtain one at http://mozilla.org/MPL/2.0/.
  8. package mysql
  9. import (
  10. "crypto/sha1"
  11. "crypto/tls"
  12. "database/sql/driver"
  13. "encoding/binary"
  14. "errors"
  15. "fmt"
  16. "io"
  17. "log"
  18. "os"
  19. "strings"
  20. "time"
  21. )
  22. var (
  23. errLog *log.Logger // Error Logger
  24. tlsConfigRegister map[string]*tls.Config // Register for custom tls.Configs
  25. errInvalidDSN = errors.New("Invalid DSN")
  26. )
  27. func init() {
  28. errLog = log.New(os.Stderr, "[MySQL] ", log.Ldate|log.Ltime|log.Lshortfile)
  29. tlsConfigRegister = make(map[string]*tls.Config)
  30. }
  31. // RegisterTLSConfig registers a custom tls.Config to be used with sql.Open.
  32. // Use the key as a value in the DSN where tls=value.
  33. //
  34. // rootCertPool := x509.NewCertPool()
  35. // pem, err := ioutil.ReadFile("/path/ca-cert.pem")
  36. // if err != nil {
  37. // log.Fatal(err)
  38. // }
  39. // if ok := rootCertPool.AppendCertsFromPEM(pem); !ok {
  40. // log.Fatal("Failed to append PEM.")
  41. // }
  42. // clientCert := make([]tls.Certificate, 0, 1)
  43. // certs, err := tls.LoadX509KeyPair("/path/client-cert.pem", "/path/client-key.pem")
  44. // if err != nil {
  45. // log.Fatal(err)
  46. // }
  47. // clientCert = append(clientCert, certs)
  48. // mysql.RegisterTLSConfig("custom", &tls.Config{
  49. // RootCAs: rootCertPool,
  50. // Certificates: clientCert,
  51. // })
  52. // db, err := sql.Open("mysql", "user@tcp(localhost:3306)/test?tls=custom")
  53. //
  54. func RegisterTLSConfig(key string, config *tls.Config) error {
  55. if _, isBool := readBool(key); isBool || strings.ToLower(key) == "skip-verify" {
  56. return fmt.Errorf("Key '%s' is reserved", key)
  57. }
  58. tlsConfigRegister[key] = config
  59. return nil
  60. }
  61. // DeregisterTLSConfig removes the tls.Config associated with key.
  62. func DeregisterTLSConfig(key string) {
  63. delete(tlsConfigRegister, key)
  64. }
  65. func parseDSN(dsn string) (cfg *config, err error) {
  66. cfg = new(config)
  67. // TODO: use strings.IndexByte when we can depend on Go 1.2
  68. // [user[:password]@][net[(addr)]]/dbname[?param1=value1&paramN=valueN]
  69. // Find the last '/'
  70. for i := len(dsn) - 1; i >= 0; i-- {
  71. if dsn[i] == '/' {
  72. var j int
  73. // left part is empty if i <= 0
  74. if i > 0 {
  75. // [username[:password]@][protocol[(address)]]
  76. // Find the last '@' in dsn[:i]
  77. for j = i; j >= 0; j-- {
  78. if dsn[j] == '@' {
  79. // username[:password]
  80. // Find the first ':' in dsn[:j]
  81. var k int
  82. for k = 0; k < j; k++ {
  83. if dsn[k] == ':' {
  84. cfg.passwd = dsn[k+1 : j]
  85. break
  86. }
  87. }
  88. cfg.user = dsn[:k]
  89. // [protocol[(address)]]
  90. // Find the first '(' in dsn[j+1:i]
  91. for k = j + 1; k < i; k++ {
  92. if dsn[k] == '(' {
  93. // dsn[i-1] must be == ')' if an adress is specified
  94. if dsn[i-1] != ')' {
  95. return nil, errInvalidDSN
  96. }
  97. cfg.addr = dsn[k+1 : i-1]
  98. break
  99. }
  100. }
  101. cfg.net = dsn[j+1 : k]
  102. break
  103. }
  104. }
  105. // non-empty left part must contain an '@'
  106. if j < 0 {
  107. return nil, errInvalidDSN
  108. }
  109. }
  110. // dbname[?param1=value1&...&paramN=valueN]
  111. // Find the first '?' in dsn[i+1:]
  112. for j = i + 1; j < len(dsn); j++ {
  113. if dsn[j] == '?' {
  114. if err = parseDSNParams(cfg, dsn[j+1:]); err != nil {
  115. return
  116. }
  117. break
  118. }
  119. }
  120. cfg.dbname = dsn[i+1 : j]
  121. break
  122. }
  123. }
  124. // Set default network if empty
  125. if cfg.net == "" {
  126. cfg.net = "tcp"
  127. }
  128. // Set default adress if empty
  129. if cfg.addr == "" {
  130. switch cfg.net {
  131. case "tcp":
  132. cfg.addr = "127.0.0.1:3306"
  133. case "unix":
  134. cfg.addr = "/tmp/mysql.sock"
  135. default:
  136. return nil, errors.New("Default addr for network '" + cfg.net + "' unknown")
  137. }
  138. }
  139. // Set default location if not set
  140. if cfg.loc == nil {
  141. cfg.loc = time.UTC
  142. }
  143. return
  144. }
  145. func parseDSNParams(cfg *config, params string) (err error) {
  146. cfg.params = make(map[string]string)
  147. for _, v := range strings.Split(params, "&") {
  148. param := strings.SplitN(v, "=", 2)
  149. if len(param) != 2 {
  150. continue
  151. }
  152. // cfg params
  153. switch value := param[1]; param[0] {
  154. // Disable INFILE whitelist / enable all files
  155. case "allowAllFiles":
  156. var isBool bool
  157. cfg.allowAllFiles, isBool = readBool(value)
  158. if !isBool {
  159. return fmt.Errorf("Invalid Bool value: %s", value)
  160. }
  161. // Switch "rowsAffected" mode
  162. case "clientFoundRows":
  163. var isBool bool
  164. cfg.clientFoundRows, isBool = readBool(value)
  165. if !isBool {
  166. return fmt.Errorf("Invalid Bool value: %s", value)
  167. }
  168. // Use old authentication mode (pre MySQL 4.1)
  169. case "allowOldPasswords":
  170. var isBool bool
  171. cfg.allowOldPasswords, isBool = readBool(value)
  172. if !isBool {
  173. return fmt.Errorf("Invalid Bool value: %s", value)
  174. }
  175. // Time Location
  176. case "loc":
  177. cfg.loc, err = time.LoadLocation(value)
  178. if err != nil {
  179. return
  180. }
  181. // Dial Timeout
  182. case "timeout":
  183. cfg.timeout, err = time.ParseDuration(value)
  184. if err != nil {
  185. return
  186. }
  187. // TLS-Encryption
  188. case "tls":
  189. boolValue, isBool := readBool(value)
  190. if isBool {
  191. if boolValue {
  192. cfg.tls = &tls.Config{}
  193. }
  194. } else {
  195. if strings.ToLower(value) == "skip-verify" {
  196. cfg.tls = &tls.Config{InsecureSkipVerify: true}
  197. } else if tlsConfig, ok := tlsConfigRegister[value]; ok {
  198. cfg.tls = tlsConfig
  199. } else {
  200. return fmt.Errorf("Invalid value / unknown config name: %s", value)
  201. }
  202. }
  203. default:
  204. cfg.params[param[0]] = value
  205. }
  206. }
  207. return
  208. }
  209. // Returns the bool value of the input.
  210. // The 2nd return value indicates if the input was a valid bool value
  211. func readBool(input string) (value bool, valid bool) {
  212. switch input {
  213. case "1", "true", "TRUE", "True":
  214. return true, true
  215. case "0", "false", "FALSE", "False":
  216. return false, true
  217. }
  218. // Not a valid bool value
  219. return
  220. }
  221. /******************************************************************************
  222. * Authentication *
  223. ******************************************************************************/
  224. // Encrypt password using 4.1+ method
  225. func scramblePassword(scramble, password []byte) []byte {
  226. if len(password) == 0 {
  227. return nil
  228. }
  229. // stage1Hash = SHA1(password)
  230. crypt := sha1.New()
  231. crypt.Write(password)
  232. stage1 := crypt.Sum(nil)
  233. // scrambleHash = SHA1(scramble + SHA1(stage1Hash))
  234. // inner Hash
  235. crypt.Reset()
  236. crypt.Write(stage1)
  237. hash := crypt.Sum(nil)
  238. // outer Hash
  239. crypt.Reset()
  240. crypt.Write(scramble)
  241. crypt.Write(hash)
  242. scramble = crypt.Sum(nil)
  243. // token = scrambleHash XOR stage1Hash
  244. for i := range scramble {
  245. scramble[i] ^= stage1[i]
  246. }
  247. return scramble
  248. }
  249. // Encrypt password using pre 4.1 (old password) method
  250. // https://github.com/atcurtis/mariadb/blob/master/mysys/my_rnd.c
  251. type myRnd struct {
  252. seed1, seed2 uint32
  253. }
  254. const myRndMaxVal = 0x3FFFFFFF
  255. // Pseudo random number generator
  256. func newMyRnd(seed1, seed2 uint32) *myRnd {
  257. return &myRnd{
  258. seed1: seed1 % myRndMaxVal,
  259. seed2: seed2 % myRndMaxVal,
  260. }
  261. }
  262. // Tested to be equivalent to MariaDB's floating point variant
  263. // http://play.golang.org/p/QHvhd4qved
  264. // http://play.golang.org/p/RG0q4ElWDx
  265. func (r *myRnd) NextByte() byte {
  266. r.seed1 = (r.seed1*3 + r.seed2) % myRndMaxVal
  267. r.seed2 = (r.seed1 + r.seed2 + 33) % myRndMaxVal
  268. return byte(uint64(r.seed1) * 31 / myRndMaxVal)
  269. }
  270. // Generate binary hash from byte string using insecure pre 4.1 method
  271. func pwHash(password []byte) (result [2]uint32) {
  272. var add uint32 = 7
  273. var tmp uint32
  274. result[0] = 1345345333
  275. result[1] = 0x12345671
  276. for _, c := range password {
  277. // skip spaces and tabs in password
  278. if c == ' ' || c == '\t' {
  279. continue
  280. }
  281. tmp = uint32(c)
  282. result[0] ^= (((result[0] & 63) + add) * tmp) + (result[0] << 8)
  283. result[1] += (result[1] << 8) ^ result[0]
  284. add += tmp
  285. }
  286. // Remove sign bit (1<<31)-1)
  287. result[0] &= 0x7FFFFFFF
  288. result[1] &= 0x7FFFFFFF
  289. return
  290. }
  291. // Encrypt password using insecure pre 4.1 method
  292. func scrambleOldPassword(scramble, password []byte) []byte {
  293. if len(password) == 0 {
  294. return nil
  295. }
  296. scramble = scramble[:8]
  297. hashPw := pwHash(password)
  298. hashSc := pwHash(scramble)
  299. r := newMyRnd(hashPw[0]^hashSc[0], hashPw[1]^hashSc[1])
  300. var out [8]byte
  301. for i := range out {
  302. out[i] = r.NextByte() + 64
  303. }
  304. mask := r.NextByte()
  305. for i := range out {
  306. out[i] ^= mask
  307. }
  308. return out[:]
  309. }
  310. /******************************************************************************
  311. * Time related utils *
  312. ******************************************************************************/
  313. // NullTime represents a time.Time that may be NULL.
  314. // NullTime implements the Scanner interface so
  315. // it can be used as a scan destination:
  316. //
  317. // var nt NullTime
  318. // err := db.QueryRow("SELECT time FROM foo WHERE id=?", id).Scan(&nt)
  319. // ...
  320. // if nt.Valid {
  321. // // use nt.Time
  322. // } else {
  323. // // NULL value
  324. // }
  325. //
  326. // This NullTime implementation is not driver-specific
  327. type NullTime struct {
  328. Time time.Time
  329. Valid bool // Valid is true if Time is not NULL
  330. }
  331. // Scan implements the Scanner interface.
  332. // The value type must be time.Time or string / []byte (formatted time-string),
  333. // otherwise Scan fails.
  334. func (nt *NullTime) Scan(value interface{}) (err error) {
  335. if value == nil {
  336. nt.Time, nt.Valid = time.Time{}, false
  337. return
  338. }
  339. switch v := value.(type) {
  340. case time.Time:
  341. nt.Time, nt.Valid = v, true
  342. return
  343. case []byte:
  344. nt.Time, err = parseDateTime(string(v), time.UTC)
  345. nt.Valid = (err == nil)
  346. return
  347. case string:
  348. nt.Time, err = parseDateTime(v, time.UTC)
  349. nt.Valid = (err == nil)
  350. return
  351. }
  352. nt.Valid = false
  353. return fmt.Errorf("Can't convert %T to time.Time", value)
  354. }
  355. // Value implements the driver Valuer interface.
  356. func (nt NullTime) Value() (driver.Value, error) {
  357. if !nt.Valid {
  358. return nil, nil
  359. }
  360. return nt.Time, nil
  361. }
  362. func parseDateTime(str string, loc *time.Location) (t time.Time, err error) {
  363. switch len(str) {
  364. case 10: // YYYY-MM-DD
  365. if str == "0000-00-00" {
  366. return
  367. }
  368. t, err = time.Parse(timeFormat[:10], str)
  369. case 19: // YYYY-MM-DD HH:MM:SS
  370. if str == "0000-00-00 00:00:00" {
  371. return
  372. }
  373. t, err = time.Parse(timeFormat, str)
  374. default:
  375. err = fmt.Errorf("Invalid Time-String: %s", str)
  376. return
  377. }
  378. // Adjust location
  379. if err == nil && loc != time.UTC {
  380. y, mo, d := t.Date()
  381. h, mi, s := t.Clock()
  382. t, err = time.Date(y, mo, d, h, mi, s, t.Nanosecond(), loc), nil
  383. }
  384. return
  385. }
  386. func parseBinaryDateTime(num uint64, data []byte, loc *time.Location) (driver.Value, error) {
  387. switch num {
  388. case 0:
  389. return time.Time{}, nil
  390. case 4:
  391. return time.Date(
  392. int(binary.LittleEndian.Uint16(data[:2])), // year
  393. time.Month(data[2]), // month
  394. int(data[3]), // day
  395. 0, 0, 0, 0,
  396. loc,
  397. ), nil
  398. case 7:
  399. return time.Date(
  400. int(binary.LittleEndian.Uint16(data[:2])), // year
  401. time.Month(data[2]), // month
  402. int(data[3]), // day
  403. int(data[4]), // hour
  404. int(data[5]), // minutes
  405. int(data[6]), // seconds
  406. 0,
  407. loc,
  408. ), nil
  409. case 11:
  410. return time.Date(
  411. int(binary.LittleEndian.Uint16(data[:2])), // year
  412. time.Month(data[2]), // month
  413. int(data[3]), // day
  414. int(data[4]), // hour
  415. int(data[5]), // minutes
  416. int(data[6]), // seconds
  417. int(binary.LittleEndian.Uint32(data[7:11]))*1000, // nanoseconds
  418. loc,
  419. ), nil
  420. }
  421. return nil, fmt.Errorf("Invalid DATETIME-packet length %d", num)
  422. }
  423. func formatBinaryDate(num uint64, data []byte) (driver.Value, error) {
  424. switch num {
  425. case 0:
  426. return []byte("0000-00-00"), nil
  427. case 4:
  428. return []byte(fmt.Sprintf(
  429. "%04d-%02d-%02d",
  430. binary.LittleEndian.Uint16(data[:2]),
  431. data[2],
  432. data[3],
  433. )), nil
  434. }
  435. return nil, fmt.Errorf("Invalid DATE-packet length %d", num)
  436. }
  437. func formatBinaryDateTime(num uint64, data []byte) (driver.Value, error) {
  438. switch num {
  439. case 0:
  440. return []byte("0000-00-00 00:00:00"), nil
  441. case 4:
  442. return []byte(fmt.Sprintf(
  443. "%04d-%02d-%02d 00:00:00",
  444. binary.LittleEndian.Uint16(data[:2]),
  445. data[2],
  446. data[3],
  447. )), nil
  448. case 7:
  449. return []byte(fmt.Sprintf(
  450. "%04d-%02d-%02d %02d:%02d:%02d",
  451. binary.LittleEndian.Uint16(data[:2]),
  452. data[2],
  453. data[3],
  454. data[4],
  455. data[5],
  456. data[6],
  457. )), nil
  458. case 11:
  459. return []byte(fmt.Sprintf(
  460. "%04d-%02d-%02d %02d:%02d:%02d.%06d",
  461. binary.LittleEndian.Uint16(data[:2]),
  462. data[2],
  463. data[3],
  464. data[4],
  465. data[5],
  466. data[6],
  467. binary.LittleEndian.Uint32(data[7:11]),
  468. )), nil
  469. }
  470. return nil, fmt.Errorf("Invalid DATETIME-packet length %d", num)
  471. }
  472. /******************************************************************************
  473. * Convert from and to bytes *
  474. ******************************************************************************/
  475. func uint64ToBytes(n uint64) []byte {
  476. return []byte{
  477. byte(n),
  478. byte(n >> 8),
  479. byte(n >> 16),
  480. byte(n >> 24),
  481. byte(n >> 32),
  482. byte(n >> 40),
  483. byte(n >> 48),
  484. byte(n >> 56),
  485. }
  486. }
  487. func uint64ToString(n uint64) []byte {
  488. var a [20]byte
  489. i := 20
  490. // U+0030 = 0
  491. // ...
  492. // U+0039 = 9
  493. var q uint64
  494. for n >= 10 {
  495. i--
  496. q = n / 10
  497. a[i] = uint8(n-q*10) + 0x30
  498. n = q
  499. }
  500. i--
  501. a[i] = uint8(n) + 0x30
  502. return a[i:]
  503. }
  504. // treats string value as unsigned integer representation
  505. func stringToInt(b []byte) int {
  506. val := 0
  507. for i := range b {
  508. val *= 10
  509. val += int(b[i] - 0x30)
  510. }
  511. return val
  512. }
  513. func readLengthEnodedString(b []byte) ([]byte, bool, int, error) {
  514. // Get length
  515. num, isNull, n := readLengthEncodedInteger(b)
  516. if num < 1 {
  517. return nil, isNull, n, nil
  518. }
  519. n += int(num)
  520. // Check data length
  521. if len(b) >= n {
  522. return b[n-int(num) : n], false, n, nil
  523. }
  524. return nil, false, n, io.EOF
  525. }
  526. func skipLengthEnodedString(b []byte) (int, error) {
  527. // Get length
  528. num, _, n := readLengthEncodedInteger(b)
  529. if num < 1 {
  530. return n, nil
  531. }
  532. n += int(num)
  533. // Check data length
  534. if len(b) >= n {
  535. return n, nil
  536. }
  537. return n, io.EOF
  538. }
  539. func readLengthEncodedInteger(b []byte) (num uint64, isNull bool, n int) {
  540. switch b[0] {
  541. // 251: NULL
  542. case 0xfb:
  543. n = 1
  544. isNull = true
  545. return
  546. // 252: value of following 2
  547. case 0xfc:
  548. num = uint64(b[1]) | uint64(b[2])<<8
  549. n = 3
  550. return
  551. // 253: value of following 3
  552. case 0xfd:
  553. num = uint64(b[1]) | uint64(b[2])<<8 | uint64(b[3])<<16
  554. n = 4
  555. return
  556. // 254: value of following 8
  557. case 0xfe:
  558. num = uint64(b[1]) | uint64(b[2])<<8 | uint64(b[3])<<16 |
  559. uint64(b[4])<<24 | uint64(b[5])<<32 | uint64(b[6])<<40 |
  560. uint64(b[7])<<48 | uint64(b[8])<<54
  561. n = 9
  562. return
  563. }
  564. // 0-250: value of first byte
  565. num = uint64(b[0])
  566. n = 1
  567. return
  568. }
  569. func lengthEncodedIntegerToBytes(n uint64) []byte {
  570. switch {
  571. case n <= 250:
  572. return []byte{byte(n)}
  573. case n <= 0xffff:
  574. return []byte{0xfc, byte(n), byte(n >> 8)}
  575. case n <= 0xffffff:
  576. return []byte{0xfd, byte(n), byte(n >> 8), byte(n >> 16)}
  577. }
  578. return nil
  579. }