tool.go 12 KB

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  1. // Copyright 2014 The Gogs Authors. All rights reserved.
  2. // Use of this source code is governed by a MIT-style
  3. // license that can be found in the LICENSE file.
  4. package base
  5. import (
  6. "crypto/hmac"
  7. "crypto/md5"
  8. "crypto/rand"
  9. "crypto/sha1"
  10. "encoding/base64"
  11. "encoding/hex"
  12. "fmt"
  13. "hash"
  14. "html/template"
  15. "math"
  16. "regexp"
  17. "strings"
  18. "time"
  19. "github.com/Unknwon/com"
  20. "github.com/Unknwon/i18n"
  21. "github.com/gogits/gogs/modules/avatar"
  22. "github.com/gogits/gogs/modules/setting"
  23. )
  24. // Encode string to md5 hex value.
  25. func EncodeMd5(str string) string {
  26. m := md5.New()
  27. m.Write([]byte(str))
  28. return hex.EncodeToString(m.Sum(nil))
  29. }
  30. // Encode string to sha1 hex value.
  31. func EncodeSha1(str string) string {
  32. h := sha1.New()
  33. h.Write([]byte(str))
  34. return hex.EncodeToString(h.Sum(nil))
  35. }
  36. func BasicAuthDecode(encoded string) (string, string, error) {
  37. s, err := base64.StdEncoding.DecodeString(encoded)
  38. if err != nil {
  39. return "", "", err
  40. }
  41. auth := strings.SplitN(string(s), ":", 2)
  42. return auth[0], auth[1], nil
  43. }
  44. func BasicAuthEncode(username, password string) string {
  45. return base64.StdEncoding.EncodeToString([]byte(username + ":" + password))
  46. }
  47. // GetRandomString generate random string by specify chars.
  48. func GetRandomString(n int, alphabets ...byte) string {
  49. const alphanum = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz"
  50. var bytes = make([]byte, n)
  51. rand.Read(bytes)
  52. for i, b := range bytes {
  53. if len(alphabets) == 0 {
  54. bytes[i] = alphanum[b%byte(len(alphanum))]
  55. } else {
  56. bytes[i] = alphabets[b%byte(len(alphabets))]
  57. }
  58. }
  59. return string(bytes)
  60. }
  61. // http://code.google.com/p/go/source/browse/pbkdf2/pbkdf2.go?repo=crypto
  62. func PBKDF2(password, salt []byte, iter, keyLen int, h func() hash.Hash) []byte {
  63. prf := hmac.New(h, password)
  64. hashLen := prf.Size()
  65. numBlocks := (keyLen + hashLen - 1) / hashLen
  66. var buf [4]byte
  67. dk := make([]byte, 0, numBlocks*hashLen)
  68. U := make([]byte, hashLen)
  69. for block := 1; block <= numBlocks; block++ {
  70. // N.B.: || means concatenation, ^ means XOR
  71. // for each block T_i = U_1 ^ U_2 ^ ... ^ U_iter
  72. // U_1 = PRF(password, salt || uint(i))
  73. prf.Reset()
  74. prf.Write(salt)
  75. buf[0] = byte(block >> 24)
  76. buf[1] = byte(block >> 16)
  77. buf[2] = byte(block >> 8)
  78. buf[3] = byte(block)
  79. prf.Write(buf[:4])
  80. dk = prf.Sum(dk)
  81. T := dk[len(dk)-hashLen:]
  82. copy(U, T)
  83. // U_n = PRF(password, U_(n-1))
  84. for n := 2; n <= iter; n++ {
  85. prf.Reset()
  86. prf.Write(U)
  87. U = U[:0]
  88. U = prf.Sum(U)
  89. for x := range U {
  90. T[x] ^= U[x]
  91. }
  92. }
  93. }
  94. return dk[:keyLen]
  95. }
  96. // verify time limit code
  97. func VerifyTimeLimitCode(data string, minutes int, code string) bool {
  98. if len(code) <= 18 {
  99. return false
  100. }
  101. // split code
  102. start := code[:12]
  103. lives := code[12:18]
  104. if d, err := com.StrTo(lives).Int(); err == nil {
  105. minutes = d
  106. }
  107. // right active code
  108. retCode := CreateTimeLimitCode(data, minutes, start)
  109. if retCode == code && minutes > 0 {
  110. // check time is expired or not
  111. before, _ := DateParse(start, "YmdHi")
  112. now := time.Now()
  113. if before.Add(time.Minute*time.Duration(minutes)).Unix() > now.Unix() {
  114. return true
  115. }
  116. }
  117. return false
  118. }
  119. const TimeLimitCodeLength = 12 + 6 + 40
  120. // create a time limit code
  121. // code format: 12 length date time string + 6 minutes string + 40 sha1 encoded string
  122. func CreateTimeLimitCode(data string, minutes int, startInf interface{}) string {
  123. format := "YmdHi"
  124. var start, end time.Time
  125. var startStr, endStr string
  126. if startInf == nil {
  127. // Use now time create code
  128. start = time.Now()
  129. startStr = DateFormat(start, format)
  130. } else {
  131. // use start string create code
  132. startStr = startInf.(string)
  133. start, _ = DateParse(startStr, format)
  134. startStr = DateFormat(start, format)
  135. }
  136. end = start.Add(time.Minute * time.Duration(minutes))
  137. endStr = DateFormat(end, format)
  138. // create sha1 encode string
  139. sh := sha1.New()
  140. sh.Write([]byte(data + setting.SecretKey + startStr + endStr + com.ToStr(minutes)))
  141. encoded := hex.EncodeToString(sh.Sum(nil))
  142. code := fmt.Sprintf("%s%06d%s", startStr, minutes, encoded)
  143. return code
  144. }
  145. // AvatarLink returns avatar link by given e-mail.
  146. func AvatarLink(email string) string {
  147. if setting.DisableGravatar {
  148. return setting.AppSubUrl + "/img/avatar_default.jpg"
  149. }
  150. gravatarHash := avatar.HashEmail(email)
  151. if setting.Service.EnableCacheAvatar {
  152. return setting.AppSubUrl + "/avatar/" + gravatarHash
  153. }
  154. return setting.GravatarSource + gravatarHash
  155. }
  156. // Seconds-based time units
  157. const (
  158. Minute = 60
  159. Hour = 60 * Minute
  160. Day = 24 * Hour
  161. Week = 7 * Day
  162. Month = 30 * Day
  163. Year = 12 * Month
  164. )
  165. func computeTimeDiff(diff int64) (int64, string) {
  166. diffStr := ""
  167. switch {
  168. case diff <= 0:
  169. diff = 0
  170. diffStr = "now"
  171. case diff < 2:
  172. diff = 0
  173. diffStr = "1 second"
  174. case diff < 1*Minute:
  175. diffStr = fmt.Sprintf("%d seconds", diff)
  176. diff = 0
  177. case diff < 2*Minute:
  178. diff -= 1 * Minute
  179. diffStr = "1 minute"
  180. case diff < 1*Hour:
  181. diffStr = fmt.Sprintf("%d minutes", diff/Minute)
  182. diff -= diff / Minute * Minute
  183. case diff < 2*Hour:
  184. diff -= 1 * Hour
  185. diffStr = "1 hour"
  186. case diff < 1*Day:
  187. diffStr = fmt.Sprintf("%d hours", diff/Hour)
  188. diff -= diff / Hour * Hour
  189. case diff < 2*Day:
  190. diff -= 1 * Day
  191. diffStr = "1 day"
  192. case diff < 1*Week:
  193. diffStr = fmt.Sprintf("%d days", diff/Day)
  194. diff -= diff / Day * Day
  195. case diff < 2*Week:
  196. diff -= 1 * Week
  197. diffStr = "1 week"
  198. case diff < 1*Month:
  199. diffStr = fmt.Sprintf("%d weeks", diff/Week)
  200. diff -= diff / Week * Week
  201. case diff < 2*Month:
  202. diff -= 1 * Month
  203. diffStr = "1 month"
  204. case diff < 1*Year:
  205. diffStr = fmt.Sprintf("%d months", diff/Month)
  206. diff -= diff / Month * Month
  207. case diff < 2*Year:
  208. diff -= 1 * Year
  209. diffStr = "1 year"
  210. default:
  211. diffStr = fmt.Sprintf("%d years", diff/Year)
  212. diff = 0
  213. }
  214. return diff, diffStr
  215. }
  216. // TimeSincePro calculates the time interval and generate full user-friendly string.
  217. func TimeSincePro(then time.Time) string {
  218. now := time.Now()
  219. diff := now.Unix() - then.Unix()
  220. if then.After(now) {
  221. return "future"
  222. }
  223. var timeStr, diffStr string
  224. for {
  225. if diff == 0 {
  226. break
  227. }
  228. diff, diffStr = computeTimeDiff(diff)
  229. timeStr += ", " + diffStr
  230. }
  231. return strings.TrimPrefix(timeStr, ", ")
  232. }
  233. func timeSince(then time.Time, lang string) string {
  234. now := time.Now()
  235. lbl := i18n.Tr(lang, "tool.ago")
  236. diff := now.Unix() - then.Unix()
  237. if then.After(now) {
  238. lbl = i18n.Tr(lang, "tool.from_now")
  239. diff = then.Unix() - now.Unix()
  240. }
  241. switch {
  242. case diff <= 0:
  243. return i18n.Tr(lang, "tool.now")
  244. case diff <= 2:
  245. return i18n.Tr(lang, "tool.1s", lbl)
  246. case diff < 1*Minute:
  247. return i18n.Tr(lang, "tool.seconds", diff, lbl)
  248. case diff < 2*Minute:
  249. return i18n.Tr(lang, "tool.1m", lbl)
  250. case diff < 1*Hour:
  251. return i18n.Tr(lang, "tool.minutes", diff/Minute, lbl)
  252. case diff < 2*Hour:
  253. return i18n.Tr(lang, "tool.1h", lbl)
  254. case diff < 1*Day:
  255. return i18n.Tr(lang, "tool.hours", diff/Hour, lbl)
  256. case diff < 2*Day:
  257. return i18n.Tr(lang, "tool.1d", lbl)
  258. case diff < 1*Week:
  259. return i18n.Tr(lang, "tool.days", diff/Day, lbl)
  260. case diff < 2*Week:
  261. return i18n.Tr(lang, "tool.1w", lbl)
  262. case diff < 1*Month:
  263. return i18n.Tr(lang, "tool.weeks", diff/Week, lbl)
  264. case diff < 2*Month:
  265. return i18n.Tr(lang, "tool.1mon", lbl)
  266. case diff < 1*Year:
  267. return i18n.Tr(lang, "tool.months", diff/Month, lbl)
  268. case diff < 2*Year:
  269. return i18n.Tr(lang, "tool.1y", lbl)
  270. default:
  271. return i18n.Tr(lang, "tool.years", diff/Year, lbl)
  272. }
  273. }
  274. // TimeSince calculates the time interval and generate user-friendly string.
  275. func TimeSince(t time.Time, lang string) template.HTML {
  276. return template.HTML(fmt.Sprintf(`<span class="time-since" title="%s">%s</span>`, t.Format(setting.TimeFormat), timeSince(t, lang)))
  277. }
  278. const (
  279. Byte = 1
  280. KByte = Byte * 1024
  281. MByte = KByte * 1024
  282. GByte = MByte * 1024
  283. TByte = GByte * 1024
  284. PByte = TByte * 1024
  285. EByte = PByte * 1024
  286. )
  287. var bytesSizeTable = map[string]uint64{
  288. "b": Byte,
  289. "kb": KByte,
  290. "mb": MByte,
  291. "gb": GByte,
  292. "tb": TByte,
  293. "pb": PByte,
  294. "eb": EByte,
  295. }
  296. func logn(n, b float64) float64 {
  297. return math.Log(n) / math.Log(b)
  298. }
  299. func humanateBytes(s uint64, base float64, sizes []string) string {
  300. if s < 10 {
  301. return fmt.Sprintf("%dB", s)
  302. }
  303. e := math.Floor(logn(float64(s), base))
  304. suffix := sizes[int(e)]
  305. val := float64(s) / math.Pow(base, math.Floor(e))
  306. f := "%.0f"
  307. if val < 10 {
  308. f = "%.1f"
  309. }
  310. return fmt.Sprintf(f+"%s", val, suffix)
  311. }
  312. // FileSize calculates the file size and generate user-friendly string.
  313. func FileSize(s int64) string {
  314. sizes := []string{"B", "KB", "MB", "GB", "TB", "PB", "EB"}
  315. return humanateBytes(uint64(s), 1024, sizes)
  316. }
  317. // Subtract deals with subtraction of all types of number.
  318. func Subtract(left interface{}, right interface{}) interface{} {
  319. var rleft, rright int64
  320. var fleft, fright float64
  321. var isInt bool = true
  322. switch left.(type) {
  323. case int:
  324. rleft = int64(left.(int))
  325. case int8:
  326. rleft = int64(left.(int8))
  327. case int16:
  328. rleft = int64(left.(int16))
  329. case int32:
  330. rleft = int64(left.(int32))
  331. case int64:
  332. rleft = left.(int64)
  333. case float32:
  334. fleft = float64(left.(float32))
  335. isInt = false
  336. case float64:
  337. fleft = left.(float64)
  338. isInt = false
  339. }
  340. switch right.(type) {
  341. case int:
  342. rright = int64(right.(int))
  343. case int8:
  344. rright = int64(right.(int8))
  345. case int16:
  346. rright = int64(right.(int16))
  347. case int32:
  348. rright = int64(right.(int32))
  349. case int64:
  350. rright = right.(int64)
  351. case float32:
  352. fright = float64(left.(float32))
  353. isInt = false
  354. case float64:
  355. fleft = left.(float64)
  356. isInt = false
  357. }
  358. if isInt {
  359. return rleft - rright
  360. } else {
  361. return fleft + float64(rleft) - (fright + float64(rright))
  362. }
  363. }
  364. // DateFormat pattern rules.
  365. var datePatterns = []string{
  366. // year
  367. "Y", "2006", // A full numeric representation of a year, 4 digits Examples: 1999 or 2003
  368. "y", "06", //A two digit representation of a year Examples: 99 or 03
  369. // month
  370. "m", "01", // Numeric representation of a month, with leading zeros 01 through 12
  371. "n", "1", // Numeric representation of a month, without leading zeros 1 through 12
  372. "M", "Jan", // A short textual representation of a month, three letters Jan through Dec
  373. "F", "January", // A full textual representation of a month, such as January or March January through December
  374. // day
  375. "d", "02", // Day of the month, 2 digits with leading zeros 01 to 31
  376. "j", "2", // Day of the month without leading zeros 1 to 31
  377. // week
  378. "D", "Mon", // A textual representation of a day, three letters Mon through Sun
  379. "l", "Monday", // A full textual representation of the day of the week Sunday through Saturday
  380. // time
  381. "g", "3", // 12-hour format of an hour without leading zeros 1 through 12
  382. "G", "15", // 24-hour format of an hour without leading zeros 0 through 23
  383. "h", "03", // 12-hour format of an hour with leading zeros 01 through 12
  384. "H", "15", // 24-hour format of an hour with leading zeros 00 through 23
  385. "a", "pm", // Lowercase Ante meridiem and Post meridiem am or pm
  386. "A", "PM", // Uppercase Ante meridiem and Post meridiem AM or PM
  387. "i", "04", // Minutes with leading zeros 00 to 59
  388. "s", "05", // Seconds, with leading zeros 00 through 59
  389. // time zone
  390. "T", "MST",
  391. "P", "-07:00",
  392. "O", "-0700",
  393. // RFC 2822
  394. "r", time.RFC1123Z,
  395. }
  396. // Parse Date use PHP time format.
  397. func DateParse(dateString, format string) (time.Time, error) {
  398. replacer := strings.NewReplacer(datePatterns...)
  399. format = replacer.Replace(format)
  400. return time.ParseInLocation(format, dateString, time.Local)
  401. }
  402. // Date takes a PHP like date func to Go's time format.
  403. func DateFormat(t time.Time, format string) string {
  404. replacer := strings.NewReplacer(datePatterns...)
  405. format = replacer.Replace(format)
  406. return t.Format(format)
  407. }
  408. type xssFilter struct {
  409. reg *regexp.Regexp
  410. repl []byte
  411. }
  412. var (
  413. whiteSpace = []byte(" ")
  414. xssFilters = []xssFilter{
  415. {regexp.MustCompile(`\ [ONon]\w*=["]*`), whiteSpace},
  416. {regexp.MustCompile(`<[SCRIPTscript]{6}`), whiteSpace},
  417. {regexp.MustCompile(`=[` + "`" + `'"]*[JAVASCRIPTjavascript \t\0&#x0D;]*:`), whiteSpace},
  418. }
  419. )
  420. // XSS goes through all the XSS filters to make user input content as safe as possible.
  421. func XSS(in []byte) []byte {
  422. for _, filter := range xssFilters {
  423. in = filter.reg.ReplaceAll(in, filter.repl)
  424. }
  425. return in
  426. }
  427. func XSSString(in string) string {
  428. return string(XSS([]byte(in)))
  429. }