input.go 11 KB

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  1. package door
  2. import (
  3. "fmt"
  4. "log"
  5. "strconv"
  6. "strings"
  7. "time"
  8. "unicode"
  9. )
  10. const DEBUG_INPUT = true
  11. var ErrInactivity error = fmt.Errorf("Inactivity")
  12. var ErrTimeout error = fmt.Errorf("Timeout")
  13. var ErrDisconnected error = fmt.Errorf("Disconnected")
  14. var DefaultTimeout time.Duration = time.Duration(60) * time.Second
  15. var ReaderInterval = time.Duration(200) * time.Millisecond
  16. // Output a nice string representation of the rune buffer.
  17. func extended_output(buffer []rune) string {
  18. var output string = string(buffer)
  19. output = strings.Replace(output, "\x1b", "^[", -1)
  20. return output
  21. }
  22. func RuneToInt8(r rune) int8 {
  23. return int8(r)
  24. }
  25. // Translate these extended codes into these Extended values.
  26. var extendedKeys map[string]Extended = map[string]Extended{
  27. "[A": UP_ARROW,
  28. "[B": DOWN_ARROW,
  29. "[C": RIGHT_ARROW,
  30. "[D": LEFT_ARROW,
  31. "[H": HOME,
  32. "[F": END, // terminal
  33. "[K": END,
  34. "[V": PAGE_UP,
  35. "[U": PAGE_DOWN,
  36. "[@": INSERT,
  37. "[2~": INSERT, // terminal
  38. "[3~": DELETE, // terminal
  39. "[5~": PAGE_UP, // terminal
  40. "[6~": PAGE_DOWN, // terminal
  41. "[15~": F5, // terminal
  42. "[17~": F6, // terminal
  43. "[18~": F7, // terminal
  44. "[19~": F8, // terminal
  45. "[20~": F9, // terminal
  46. "[21~": F10, // terminal
  47. "[23~": F11,
  48. "[24~": F12, // terminal
  49. "OP": F1,
  50. "OQ": F2,
  51. "OR": F3,
  52. "OS": F4, // syncterm "[1" = F1,F2,F3, and F4)
  53. "Ot": F5, // syncterm
  54. }
  55. func process(d *Door, newRune bool) {
  56. // This is like GetKey
  57. var rlen int
  58. var r, r2 rune
  59. var has2 bool
  60. var done bool = false
  61. for !done {
  62. rlen = len(readerBuffer)
  63. if rlen == 0 {
  64. // Nothing to do here
  65. return
  66. }
  67. log.Println("rlen:", rlen, "readerBuffer:", readerBuffer, "newRune:", newRune)
  68. r = readerBuffer[0]
  69. if rlen >= 2 {
  70. r2 = readerBuffer[1]
  71. has2 = true
  72. } else {
  73. r2 = unicode.ReplacementChar
  74. has2 = false
  75. }
  76. // if !has2 and !newRune, then we're "done" (received everything,
  77. // and there's nothing else coming...)
  78. // fyneterm CR
  79. if r == '\x0a' {
  80. if !has2 && !newRune {
  81. ArrayPop(&readerBuffer, 1)
  82. d.readerChannel <- ReaderData{R: '\x0d', Ex: NOP, Err: nil}
  83. return
  84. }
  85. if has2 {
  86. ArrayPop(&readerBuffer, 1)
  87. if r2 == '\x00' || r2 == '\x0a' {
  88. ArrayPop(&readerBuffer, 1)
  89. }
  90. d.readerChannel <- ReaderData{R: '\x0d', Ex: NOP, Err: nil}
  91. } else {
  92. // We don't have a 2nd rune, and we haven't timed out.
  93. return
  94. }
  95. continue
  96. }
  97. // We get 0x0d, 0x00, or 0x0d 0x0a from syncterm
  98. if r == '\x0d' {
  99. if !has2 && !newRune {
  100. ArrayPop(&readerBuffer, 1)
  101. d.readerChannel <- ReaderData{R: r, Ex: NOP, Err: nil}
  102. return
  103. }
  104. if has2 {
  105. ArrayPop(&readerBuffer, 1)
  106. if r2 == '\x00' || r2 == '\x0a' {
  107. ArrayPop(&readerBuffer, 1)
  108. }
  109. d.readerChannel <- ReaderData{R: r, Ex: NOP, Err: nil}
  110. } else {
  111. return
  112. }
  113. continue
  114. }
  115. if r == '\x00' {
  116. // Possibly doorway mode - deprecated?
  117. // syncterm does support this.
  118. if !has2 && !newRune {
  119. // timeout
  120. ArrayPop(&readerBuffer, 1)
  121. d.readerChannel <- ReaderData{R: r, Ex: NOP, Err: nil}
  122. return
  123. }
  124. if has2 {
  125. ArrayPop(&readerBuffer, 2)
  126. switch r2 {
  127. case '\x50':
  128. d.readerChannel <- ReaderData{0, DOWN_ARROW, nil}
  129. case '\x48':
  130. d.readerChannel <- ReaderData{0, UP_ARROW, nil}
  131. case '\x4b':
  132. d.readerChannel <- ReaderData{0, LEFT_ARROW, nil}
  133. case 0x4d:
  134. d.readerChannel <- ReaderData{0, RIGHT_ARROW, nil}
  135. case 0x47:
  136. d.readerChannel <- ReaderData{0, HOME, nil}
  137. case 0x4f:
  138. d.readerChannel <- ReaderData{0, END, nil}
  139. case 0x49:
  140. d.readerChannel <- ReaderData{0, PAGE_UP, nil}
  141. case 0x51:
  142. d.readerChannel <- ReaderData{0, PAGE_DOWN, nil}
  143. case 0x3b:
  144. d.readerChannel <- ReaderData{0, F1, nil}
  145. case 0x3c:
  146. d.readerChannel <- ReaderData{0, F2, nil}
  147. case 0x3d:
  148. d.readerChannel <- ReaderData{0, F3, nil}
  149. case 0x3e:
  150. d.readerChannel <- ReaderData{0, F4, nil}
  151. case 0x3f:
  152. d.readerChannel <- ReaderData{0, F5, nil}
  153. case 0x40:
  154. d.readerChannel <- ReaderData{0, F6, nil}
  155. case 0x41:
  156. d.readerChannel <- ReaderData{0, F7, nil}
  157. case 0x42:
  158. d.readerChannel <- ReaderData{0, F8, nil}
  159. case 0x43:
  160. d.readerChannel <- ReaderData{0, F9, nil}
  161. case 0x44:
  162. d.readerChannel <- ReaderData{0, F10, nil}
  163. case 0x45:
  164. d.readerChannel <- ReaderData{0, F11, nil}
  165. case 0x46:
  166. d.readerChannel <- ReaderData{0, F12, nil}
  167. case 0x52:
  168. d.readerChannel <- ReaderData{0, INSERT, nil}
  169. case 0x53:
  170. d.readerChannel <- ReaderData{0, DELETE, nil}
  171. default:
  172. log.Printf("ERROR Doorway mode: 0x00 %x\n", r2)
  173. d.readerChannel <- ReaderData{0, UNKNOWN, nil}
  174. }
  175. } else {
  176. return
  177. }
  178. continue
  179. } // end doorway mode
  180. if r == '\x1b' {
  181. // Escape key, or ?
  182. // This is a little harder, since we don't know how many we need.
  183. if !has2 && !newRune {
  184. ArrayPop(&readerBuffer, 1)
  185. d.readerChannel <- ReaderData{r, NOP, nil}
  186. return
  187. }
  188. if has2 {
  189. // We at least have the 2nd one...
  190. if r2 == '\x1b' {
  191. ArrayPop(&readerBuffer, 1)
  192. d.readerChannel <- ReaderData{r, NOP, nil}
  193. continue
  194. }
  195. // Can't distinguish between \x1bO and \x1bOP (F1)
  196. /*
  197. if unicode.IsLetter(r2) {
  198. // ALT-KEY
  199. if unicode.IsLower(r2) {
  200. ArrayPop(&readerBuffer, 2)
  201. ex := Extended(int(ALT_a) + int(r2-'a'))
  202. d.readerChannel <- ReaderData{0, ex, nil}
  203. } else {
  204. // Must be upper
  205. ArrayPop(&readerBuffer, 2)
  206. ex := Extended(int(ALT_A) + int(r2-'A'))
  207. d.readerChannel <- ReaderData{0, ex, nil}
  208. }
  209. continue
  210. }
  211. */
  212. var extended []rune = make([]rune, 0, 10)
  213. extended = append(extended, r2)
  214. var extlen = 2 // Length of codes to remove on successful match.
  215. var pos = 2 // Where we get the next rune from
  216. var isMouse bool = false
  217. var found bool = false
  218. log.Println(pos, readerBuffer)
  219. for pos < rlen {
  220. r2 = readerBuffer[pos]
  221. pos++
  222. extlen++
  223. extended = append(extended, r2)
  224. log.Println("0x1b LOOP pos:", pos, "extlen:", extlen, "extended:", string(extended))
  225. ext, has := extendedKeys[string(extended)]
  226. if has {
  227. // Found it!
  228. log.Println("Found Extended Match:", ext.String())
  229. ArrayPop(&readerBuffer, extlen)
  230. d.readerChannel <- ReaderData{0, ext, nil}
  231. found = true
  232. break
  233. }
  234. // Mouse codes can also contain letters.
  235. if !isMouse && unicode.IsLetter(r2) {
  236. // end of extended code, unless mouse!
  237. log.Println("not mouse, is letter...")
  238. if string(extended) == "[M" {
  239. isMouse = true
  240. } else {
  241. break
  242. }
  243. }
  244. if isMouse && len(extended) == 5 {
  245. break
  246. }
  247. }
  248. if found {
  249. continue
  250. }
  251. log.Println("POS:", pos, "EXLEN:", extlen, "Extended:", extended, "readerBuffer:", readerBuffer)
  252. log.Printf("(possible) Extended Code: [%s]", extended_output(extended))
  253. var exString string = string(extended)
  254. if strings.HasPrefix(exString, "[M") && len(extended) == 5 {
  255. // Yes, "valid"
  256. ArrayPop(&readerBuffer, extlen)
  257. // Mouse Extended - input zero based (I add +1 to X, Y, and button)
  258. var mouse Mouse = Mouse{Button: RuneToInt8(extended[2]) - ' ' + 1,
  259. X: RuneToInt8(extended[3]) - '!' + 1,
  260. Y: RuneToInt8(extended[4]) - '!' + 1}
  261. d.mcMutex.Lock()
  262. d.LastMouse = append(d.LastMouse, mouse)
  263. d.mcMutex.Unlock()
  264. log.Println("Mouse:", mouse)
  265. d.readerChannel <- ReaderData{0, MOUSE, nil}
  266. continue
  267. }
  268. if strings.HasSuffix(exString, "R") {
  269. // yes, "valid"
  270. ArrayPop(&readerBuffer, extlen)
  271. // Cursor Position information (or Shift-F3)
  272. var cursor CursorPos
  273. // ^[[1;1R^[[2;3r^[[41;173R
  274. // Y;X
  275. exString = exString[1 : len(exString)-1] // Remove [ and R
  276. pos := SplitToInt(exString, ";")
  277. if len(pos) == 2 {
  278. cursor.X = pos[1]
  279. cursor.Y = pos[0]
  280. d.mcMutex.Lock()
  281. d.LastCursor = append(d.LastCursor, cursor)
  282. d.mcMutex.Unlock()
  283. log.Println("Cursor Pos:", cursor)
  284. d.readerChannel <- ReaderData{0, CURSOR, nil}
  285. continue
  286. } else {
  287. log.Println("ERROR Cursor Pos:", extended)
  288. d.readerChannel <- ReaderData{0, UNKNOWN, nil}
  289. continue
  290. }
  291. }
  292. // Ok, this LOOKS like something invalid...
  293. if !newRune {
  294. // Yes, this is invalid.
  295. ArrayPop(&readerBuffer, extlen)
  296. log.Println("ERROR Extended:", extended)
  297. d.readerChannel <- ReaderData{0, UNKNOWN, nil}
  298. } else {
  299. log.Println("(Possibly) invalid extended:", extended)
  300. return
  301. }
  302. } else {
  303. return
  304. }
  305. continue
  306. }
  307. ArrayPop(&readerBuffer, 1)
  308. d.readerChannel <- ReaderData{r, NOP, nil}
  309. continue
  310. }
  311. }
  312. func (d *Door) WaitKey(timeout time.Duration) (rune, Extended, error) {
  313. /*
  314. d.readerMutex.Lock()
  315. if d.ReaderClosed {
  316. d.readerMutex.Unlock()
  317. return 0, NOP, ErrDisconnected
  318. }
  319. d.readerMutex.Unlock()
  320. */
  321. // Probably faster to just read from closed channel and get ok = false.
  322. select {
  323. case r, ok := <-d.readerChannel:
  324. if ok {
  325. if DEBUG_INPUT {
  326. log.Println("WaitKey:", r)
  327. }
  328. // return bio.GetKey()
  329. return r.R, r.Ex, r.Err
  330. } else {
  331. log.Println("WaitKey: Disconnected")
  332. // Reader has closed.
  333. // Disconnected = true
  334. return 0, NOP, ErrDisconnected
  335. }
  336. case <-time.After(timeout):
  337. return 0, NOP, ErrTimeout
  338. }
  339. }
  340. // Outputs spaces and backspaces
  341. // If you have set a background color, this shows the input area.
  342. func DisplayInput(max int) string {
  343. return strings.Repeat(" ", max) + strings.Repeat("\x08", max)
  344. }
  345. // Input a string of max length.
  346. // This displays the input area if a bg color was set.
  347. // This handles timeout, input, backspace, and enter.
  348. func (d *Door) Input(max int) string {
  349. var line []rune = make([]rune, 0, max)
  350. var length int
  351. // draw input area
  352. d.Write(DisplayInput(max))
  353. var r rune
  354. var ex Extended
  355. var err error
  356. for {
  357. r, ex, err = d.WaitKey(DefaultTimeout)
  358. if err != nil {
  359. // timeout/hangup
  360. return ""
  361. }
  362. if ex != NOP {
  363. continue
  364. }
  365. uw := UnicodeWidth(r)
  366. if strconv.IsPrint(r) {
  367. if length+uw <= max {
  368. d.Write(string(r))
  369. line = append(line, r)
  370. length += uw
  371. } else {
  372. d.Write("\x07")
  373. }
  374. } else {
  375. // Non-print
  376. switch r {
  377. case 0x7f, 0x08:
  378. if len(line) > 0 {
  379. d.Write("\x08 \x08")
  380. rlen := len(line)
  381. if UnicodeWidth(line[rlen-1]) == 2 {
  382. d.Write("\x08 \x08")
  383. length -= 2
  384. } else {
  385. length--
  386. }
  387. line = line[0 : rlen-1]
  388. }
  389. case 0x0d:
  390. return string(line)
  391. }
  392. }
  393. }
  394. }
  395. func (d *Door) GetOneOf(possible string) rune {
  396. var r rune
  397. var err error
  398. for {
  399. r, _, err = d.WaitKey(DefaultTimeout)
  400. if err != nil {
  401. return rune(0)
  402. }
  403. r := unicode.ToUpper(r)
  404. if strings.ContainsRune(possible, r) {
  405. // return upper case rune
  406. return r
  407. }
  408. }
  409. }