amigados.py 4.8 KB

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  1. # greaseweazle/codec/amiga/amigados.py
  2. #
  3. # Written & released by Keir Fraser <keir.xen@gmail.com>
  4. #
  5. # This is free and unencumbered software released into the public domain.
  6. # See the file COPYING for more details, or visit <http://unlicense.org>.
  7. import struct
  8. import itertools as it
  9. from bitarray import bitarray
  10. from greaseweazle.track import MasterTrack, RawTrack
  11. sync_bytes = b'\x44\x89\x44\x89'
  12. sync = bitarray(endian='big')
  13. sync.frombytes(sync_bytes)
  14. class AmigaDOS:
  15. DDSEC = 11
  16. def __init__(self, tracknr, nsec=DDSEC):
  17. self.tracknr = tracknr
  18. self.nsec = nsec
  19. self.sector = [None] * nsec
  20. self.map = [None] * nsec
  21. def exists(self, sec_id, togo):
  22. return ((self.sector[sec_id] is not None)
  23. or (self.map[self.nsec-togo] is not None))
  24. def nr_missing(self):
  25. return len([sec for sec in self.sector if sec is None])
  26. def add(self, sec_id, togo, label, data):
  27. assert not self.exists(sec_id, togo)
  28. self.sector[sec_id] = label, data
  29. self.map[self.nsec-togo] = sec_id
  30. def get_adf_track(self):
  31. tdat = bytearray()
  32. for sec in self.sector:
  33. tdat += sec[1] if sec is not None else bytes(512)
  34. return tdat
  35. def set_adf_track(self, tdat):
  36. self.map = list(range(self.nsec))
  37. for sec in self.map:
  38. self.sector[sec] = bytes(16), tdat[sec*512:(sec+1)*512]
  39. def flux_for_writeout(self):
  40. return self.raw_track().flux_for_writeout()
  41. def flux(self):
  42. return self.raw_track().flux()
  43. def decode_raw(self, track):
  44. raw = RawTrack(clock = 2e-6, data = track)
  45. bits, times = raw.bitarray, raw.timearray
  46. sectors = bits.search(sync)
  47. for offs in bits.itersearch(sync):
  48. if self.nr_missing() == 0:
  49. break
  50. sec = bits[offs:offs+544*16].tobytes()
  51. if len(sec) != 1088:
  52. continue
  53. header = decode(sec[4:12])
  54. format, track, sec_id, togo = tuple(header)
  55. if format != 0xff or track != self.tracknr \
  56. or not(sec_id < self.nsec and 0 < togo <= self.nsec) \
  57. or self.exists(sec_id, togo):
  58. continue
  59. label = decode(sec[12:44])
  60. hsum, = struct.unpack('>I', decode(sec[44:52]))
  61. if hsum != checksum(header + label):
  62. continue
  63. dsum, = struct.unpack('>I', decode(sec[52:60]))
  64. data = decode(sec[60:1084])
  65. gap = decode(sec[1084:1088])
  66. if dsum != checksum(data):
  67. continue;
  68. self.add(sec_id, togo, label, data)
  69. def raw_track(self):
  70. # List of sector IDs missing from the sector map:
  71. missing = iter([x for x in range(self.nsec) if not x in self.map])
  72. # Sector map with the missing entries filled in:
  73. full_map = [next(missing) if x is None else x for x in self.map]
  74. # Post-index track gap.
  75. t = encode(bytes(128 * (self.nsec//11)))
  76. for nr, sec_id in zip(range(self.nsec), full_map):
  77. sector = self.sector[sec_id]
  78. label, data = (bytes(16), bytes(512)) if sector is None else sector
  79. header = bytes([0xff, self.tracknr, sec_id, self.nsec-nr])
  80. t += sync_bytes
  81. t += encode(header)
  82. t += encode(label)
  83. t += encode(struct.pack('>I', checksum(header + label)))
  84. t += encode(struct.pack('>I', checksum(data)))
  85. t += encode(data)
  86. t += encode(bytes(2))
  87. # Add the pre-index gap.
  88. tlen = 101376 * (self.nsec//11)
  89. t += bytes(tlen//8-len(t))
  90. track = MasterTrack(
  91. bits = mfm_encode(t),
  92. time_per_rev = 0.2)
  93. track.verify = self
  94. return track
  95. def verify_track(self, flux):
  96. cyl = self.tracknr // 2
  97. head = self.tracknr & 1
  98. readback_track = decode_track(cyl, head, flux)
  99. return readback_track.nr_missing() == 0
  100. def mfm_encode(dat):
  101. y = 0
  102. out = bytearray()
  103. for x in dat:
  104. y = (y<<8) | x
  105. if (x & 0xaa) == 0:
  106. y |= ~((y>>1)|(y<<1)) & 0xaaaa
  107. y &= 255
  108. out.append(y)
  109. return bytes(out)
  110. def encode(dat):
  111. return bytes(it.chain(map(lambda x: (x >> 1) & 0x55, dat),
  112. map(lambda x: x & 0x55, dat)))
  113. def decode(dat):
  114. length = len(dat)//2
  115. return bytes(map(lambda x, y: (x << 1 & 0xaa) | (y & 0x55),
  116. it.islice(dat, 0, length),
  117. it.islice(dat, length, None)))
  118. def checksum(dat):
  119. csum = 0
  120. for i in range(0, len(dat), 4):
  121. csum ^= struct.unpack('>I', dat[i:i+4])[0]
  122. return (csum ^ (csum>>1)) & 0x55555555
  123. def decode_track(cyl, head, track):
  124. ados = AmigaDOS(cyl*2 + head)
  125. ados.decode_raw(track)
  126. return ados
  127. # Local variables:
  128. # python-indent: 4
  129. # End: