input_linux.go 3.0 KB

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  1. package door
  2. import (
  3. "bufio"
  4. "bytes"
  5. "io"
  6. "log"
  7. "syscall"
  8. "time"
  9. "unicode"
  10. )
  11. var ReaderInterval = time.Duration(200) * time.Millisecond
  12. var ReaderTimeval syscall.Timeval = syscall.Timeval{Sec: 0, Usec: 200}
  13. // syscall.FdSet clear all
  14. func clearAll(fdSetPtr *syscall.FdSet) {
  15. for index := range (*fdSetPtr).Bits {
  16. (*fdSetPtr).Bits[index] = 0
  17. }
  18. }
  19. // syscall.FdSet set fd
  20. func set(fdSetPtr *syscall.FdSet, fd int) {
  21. (*fdSetPtr).Bits[fd/64] |= 1 << uint64(fd%64)
  22. }
  23. const READ_SIZE = 16 // Size of read buffer
  24. var readerBuffer []rune
  25. // go routine Reader for input
  26. // This "times out" every ReaderTimeval
  27. func Reader(d *Door) {
  28. // I need non-blocking reads here.
  29. readerBuffer = make([]rune, 0, READ_SIZE*2)
  30. defer func() {
  31. log.Printf("~Reader\n")
  32. if d.ReaderCanClose {
  33. d.wg.Done()
  34. }
  35. }()
  36. defer func() {
  37. if err := recover(); err != nil {
  38. log.Printf("Reader: %#v\n", err)
  39. }
  40. }()
  41. var fdset syscall.FdSet
  42. var readbuffer [READ_SIZE]byte
  43. var runebuffer bytes.Buffer
  44. var runeread = bufio.NewReaderSize(&runebuffer, 1)
  45. for {
  46. clearAll(&fdset)
  47. set(&fdset, d.READFD)
  48. v, err := syscall.Select(d.READFD+1, &fdset, nil, nil, &ReaderTimeval)
  49. if err == syscall.EINTR {
  50. continue
  51. }
  52. // log.Printf("Select: %#v / %#v\n", v, err)
  53. if err != nil {
  54. log.Printf("Reader ERR: %#v\n", err)
  55. d.readerMutex.Lock()
  56. defer d.readerMutex.Unlock()
  57. if !d.ReaderClosed {
  58. d.ReaderClosed = true
  59. d.Disconnected = true
  60. close(d.readerChannel)
  61. }
  62. return
  63. }
  64. // The buffer used here must have len & cap to size you want to read.
  65. // use [BUFF_SIZE]byte for readone
  66. r, err := syscall.Read(d.READFD, readbuffer[:])
  67. if r == -1 {
  68. log.Println("syscall.Read -1 (closed)")
  69. d.readerMutex.Lock()
  70. defer d.readerMutex.Unlock()
  71. if !d.ReaderClosed {
  72. d.ReaderClosed = true
  73. d.Disconnected = true
  74. close(d.readerChannel)
  75. }
  76. return
  77. }
  78. if r == 0 {
  79. log.Printf("Select said ready, but: %#v %#v\n", r, err)
  80. d.readerMutex.Lock()
  81. defer d.readerMutex.Unlock()
  82. if !d.ReaderClosed {
  83. d.ReaderClosed = true
  84. d.Disconnected = true
  85. close(d.readerChannel)
  86. }
  87. return
  88. }
  89. if DEBUG_INPUT {
  90. log.Printf("Reader << %d, %#v\n", r, readbuffer[:r])
  91. }
  92. runebuffer.Write(readbuffer[:r])
  93. var input rune
  94. // Is this unicode?
  95. err = nil
  96. for err == nil {
  97. //RuneRead:
  98. input, _, err = runeread.ReadRune()
  99. if err == io.EOF {
  100. break // continue
  101. }
  102. if err != nil {
  103. log.Printf("ReadRune: %#v\n", err)
  104. // errors EOF
  105. break // continue // break for loop
  106. }
  107. if input == unicode.ReplacementChar {
  108. runeread.UnreadRune()
  109. b, _ := runeread.ReadByte()
  110. if DEBUG_INPUT {
  111. log.Printf("Reader (byte) >> %x\n", b)
  112. }
  113. readerBuffer = append(readerBuffer, rune(b))
  114. // d.readerChannel <- rune(b)
  115. } else {
  116. if DEBUG_INPUT {
  117. log.Printf("Reader >> %x\n", input)
  118. }
  119. readerBuffer = append(readerBuffer, input)
  120. // d.readerChannel <- input
  121. }
  122. // process(d, true)
  123. } // goto RuneRead
  124. process(d, true)
  125. }
  126. }