time_util.go 6.4 KB

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  1. package common
  2. import (
  3. "fmt"
  4. "time"
  5. )
  6. //var (
  7. // formats = map[string]string{
  8. // "MMMM": "January",
  9. // "MMM": "Jan",
  10. // "MM": "01",
  11. // "M": "1",
  12. // "YYYY": "2006",
  13. // "yyyy": "2006",
  14. // "YY": "06",
  15. // "yy": "06",
  16. // "G": "AD",
  17. // "EEEE": "Monday",
  18. // "EEE": "Mon",
  19. // "dd": "02",
  20. // "d": "2",
  21. // "HH": "15",
  22. // "hh": "03",
  23. // "h": "3",
  24. // "mm": "04",
  25. // "m": "4",
  26. // "ss": "05",
  27. // "s": "5",
  28. // "a": "PM",
  29. // "S": ".0",
  30. // "SS": ".00",
  31. // "SSS": ".000",
  32. // "SSSN": ".0000",
  33. // "SSSNN": ".00000",
  34. // "SSSNNN": ".000000",
  35. // "SSSNNNN": ".0000000",
  36. // "SSSNNNNN":".00000000",
  37. // "SSSNNNNNN":".000000000",
  38. // "z": "MST",
  39. // "Z": "-0700",
  40. // "X": "-07",
  41. // "XX": "-0700",
  42. // "XXX": "-07:00",
  43. // }
  44. //)
  45. const JSISO = "2006-01-02T15:04:05.000Z07:00"
  46. const ISO8601 = "2006-01-02T15:04:05"
  47. func TimeToUnixMilli(time time.Time) int64 {
  48. return time.UnixNano() / 1e6
  49. }
  50. func InterfaceToUnixMilli(i interface{}, format string) (int64, error) {
  51. switch t := i.(type) {
  52. case int64:
  53. return t, nil
  54. case int:
  55. return int64(t), nil
  56. case float64:
  57. return int64(t), nil
  58. case time.Time:
  59. return TimeToUnixMilli(t), nil
  60. case string:
  61. var ti time.Time
  62. var err error
  63. var f = JSISO
  64. if format != "" {
  65. f, err = convertFormat(format)
  66. if err != nil {
  67. return 0, err
  68. }
  69. }
  70. ti, err = time.Parse(f, t)
  71. if err != nil {
  72. return 0, err
  73. }
  74. return TimeToUnixMilli(ti), nil
  75. default:
  76. return 0, fmt.Errorf("unsupported type to convert to timestamp %v", t)
  77. }
  78. }
  79. func InterfaceToTime(i interface{}, format string) (time.Time, error) {
  80. switch t := i.(type) {
  81. case int64:
  82. return TimeFromUnixMilli(t), nil
  83. case int:
  84. return TimeFromUnixMilli(int64(t)), nil
  85. case float64:
  86. return TimeFromUnixMilli(int64(t)), nil
  87. case time.Time:
  88. return t, nil
  89. case string:
  90. var ti time.Time
  91. var err error
  92. var f = JSISO
  93. if format != "" {
  94. f, err = convertFormat(format)
  95. if err != nil {
  96. return ti, err
  97. }
  98. }
  99. ti, err = time.Parse(f, t)
  100. if err != nil {
  101. return ti, err
  102. }
  103. return ti, nil
  104. default:
  105. return time.Now(), fmt.Errorf("unsupported type to convert to timestamp %v", t)
  106. }
  107. }
  108. func TimeFromUnixMilli(t int64) time.Time {
  109. return time.Unix(t/1000, t%1000).UTC()
  110. }
  111. func ParseTime(t string, f string) (time.Time, error) {
  112. if f, err := convertFormat(f); err != nil {
  113. return time.Now(), err
  114. } else {
  115. return time.Parse(f, t)
  116. }
  117. }
  118. func FormatTime(time time.Time, f string) (string, error) {
  119. if f, err := convertFormat(f); err != nil {
  120. return "", err
  121. } else {
  122. return time.Format(f), nil
  123. }
  124. }
  125. //func convertFormat(f string) string {
  126. // re := regexp.MustCompile(`(?m)(M{4})|(M{3})|(M{2})|(M{1})|(Y{4})|(Y{2})|(y{4})|(y{2})|(G{1})|(E{4})|(E{3})|(d{2})|(d{1})|(H{2})|(h{2})|(h{1})|(m{2})|(m{1})|(s{2})|(s{1})|(a{1})|(S{3}N{6})|(S{3}N{5})|(S{3}N{4})|(S{3}N{3})|(S{3}N{2})|(S{3}N{1})|(S{3})|(S{2})|(S{1})|(z{1})|(Z{1})|(X{3})|(X{2})|(X{1})`)
  127. // for _, match := range re.FindAllString(f, -1) {
  128. // for key, val := range formats {
  129. // if match == key {
  130. // f = strings.Replace(f, match, val, -1)
  131. // }
  132. // }
  133. // }
  134. // return f
  135. //}
  136. func convertFormat(f string) (string, error) {
  137. formatRune := []rune(f)
  138. lenFormat := len(formatRune)
  139. out := ""
  140. for i := 0; i < len(formatRune); i++ {
  141. switch r := formatRune[i]; r {
  142. case 'Y', 'y':
  143. j := 1
  144. for ; i+j < lenFormat && j <= 4; j++ {
  145. if formatRune[i+j] != r {
  146. break
  147. }
  148. }
  149. i = i + j - 1
  150. switch j {
  151. case 4: // YYYY
  152. out += "2006"
  153. case 2: // YY
  154. out += "06"
  155. default:
  156. return "", fmt.Errorf("invalid time format %s for Y/y", f)
  157. }
  158. case 'G': //era
  159. out += "AD"
  160. case 'M': // M MM MMM MMMM month of year
  161. j := 1
  162. for ; i+j < lenFormat && j <= 4; j++ {
  163. if formatRune[i+j] != r {
  164. break
  165. }
  166. }
  167. i = i + j - 1
  168. switch j {
  169. case 1: // M
  170. out += "1"
  171. case 2: // MM
  172. out += "01"
  173. case 3: // MMM
  174. out += "Jan"
  175. case 4: // MMMM
  176. out += "January"
  177. }
  178. case 'd': // d dd day of month
  179. j := 1
  180. for ; i+j < lenFormat && j <= 2; j++ {
  181. if formatRune[i+j] != r {
  182. break
  183. }
  184. }
  185. i = i + j - 1
  186. switch j {
  187. case 1: // d
  188. out += "2"
  189. case 2: // dd
  190. out += "02"
  191. }
  192. case 'E': // M MM MMM MMMM month of year
  193. j := 1
  194. for ; i+j < lenFormat && j <= 4; j++ {
  195. if formatRune[i+j] != r {
  196. break
  197. }
  198. }
  199. i = i + j - 1
  200. switch j {
  201. case 3: // EEE
  202. out += "Mon"
  203. case 4: // EEEE
  204. out += "Monday"
  205. default:
  206. return "", fmt.Errorf("invalid time format %s for E", f)
  207. }
  208. case 'H': // HH
  209. j := 1
  210. for ; i+j < lenFormat && j <= 2; j++ {
  211. if formatRune[i+j] != r {
  212. break
  213. }
  214. }
  215. i = i + j - 1
  216. switch j {
  217. case 2: // HH
  218. out += "15"
  219. default:
  220. return "", fmt.Errorf("invalid time format %s of H, only HH is supported", f)
  221. }
  222. case 'h': // h hh
  223. j := 1
  224. for ; i+j < lenFormat && j <= 2; j++ {
  225. if formatRune[i+j] != r {
  226. break
  227. }
  228. }
  229. i = i + j - 1
  230. switch j {
  231. case 1: // h
  232. out += "3"
  233. case 2: // hh
  234. out += "03"
  235. }
  236. case 'a': // a
  237. out += "PM"
  238. case 'm': // m mm minute of hour
  239. j := 1
  240. for ; i+j < lenFormat && j <= 2; j++ {
  241. if formatRune[i+j] != r {
  242. break
  243. }
  244. }
  245. i = i + j - 1
  246. switch j {
  247. case 1: // m
  248. out += "4"
  249. case 2: // mm
  250. out += "04"
  251. }
  252. case 's': // s ss
  253. j := 1
  254. for ; i+j < lenFormat && j <= 2; j++ {
  255. if formatRune[i+j] != r {
  256. break
  257. }
  258. }
  259. i = i + j - 1
  260. switch j {
  261. case 1: // s
  262. out += "5"
  263. case 2: // ss
  264. out += "05"
  265. }
  266. case 'S': // S SS SSS
  267. j := 1
  268. for ; i+j < lenFormat && j <= 3; j++ {
  269. if formatRune[i+j] != r {
  270. break
  271. }
  272. }
  273. i = i + j - 1
  274. switch j {
  275. case 1: // S
  276. out += ".0"
  277. case 2: // SS
  278. out += ".00"
  279. case 3: // SSS
  280. out += ".000"
  281. }
  282. case 'z': // z
  283. out += "MST"
  284. case 'Z': // Z
  285. out += "-0700"
  286. case 'X': // X XX XXX
  287. j := 1
  288. for ; i+j < lenFormat && j <= 3; j++ {
  289. if formatRune[i+j] != r {
  290. break
  291. }
  292. }
  293. i = i + j - 1
  294. switch j {
  295. case 1: // X
  296. out += "-07"
  297. case 2: // XX
  298. out += "-0700"
  299. case 3: // XXX
  300. out += "-07:00"
  301. }
  302. case '\'': // ' (text delimiter) or '' (real quote)
  303. // real quote
  304. if formatRune[i+1] == r {
  305. out += "'"
  306. i = i + 1
  307. continue
  308. }
  309. tmp := []rune{}
  310. j := 1
  311. for ; i+j < lenFormat; j++ {
  312. if formatRune[i+j] != r {
  313. tmp = append(tmp, formatRune[i+j])
  314. continue
  315. }
  316. break
  317. }
  318. i = i + j
  319. out += string(tmp)
  320. default:
  321. out += string(r)
  322. }
  323. }
  324. return out, nil
  325. }