1 # Stuff to parse Sun and NeXT audio files.
3 # An audio consists of a header followed by the data. The structure
4 # of the header is as follows.
23 # The magic word consists of the 4 characters '.snd'. Apart from the
24 # info field, all header fields are 4 bytes in size. They are all
25 # 32-bit unsigned integers encoded in big-endian byte order.
27 # The header size really gives the start of the data.
28 # The data size is the physical size of the data. From the other
29 # parameter the number of frames can be calculated.
30 # The encoding gives the way in which audio samples are encoded.
31 # Possible values are listed below.
32 # The info field currently consists of an ASCII string giving a
33 # human-readable description of the audio file. The info field is
34 # padded with NUL bytes to the header size.
38 # Reading audio files:
39 # f = sunau.open(file, 'r')
40 # where file is either the name of a file or an open file pointer.
41 # The open file pointer must have methods read(), seek(), and close().
42 # When the setpos() and rewind() methods are not used, the seek()
43 # method is not necessary.
45 # This returns an instance of a class with the following public methods:
46 # getnchannels() -- returns number of audio channels (1 for
48 # getsampwidth() -- returns sample width in bytes
49 # getframerate() -- returns sampling frequency
50 # getnframes() -- returns number of audio frames
51 # getcomptype() -- returns compression type ('NONE' or 'ULAW')
52 # getcompname() -- returns human-readable version of
53 # compression type ('not compressed' matches 'NONE')
54 # getparams() -- returns a tuple consisting of all of the
55 # above in the above order
56 # getmarkers() -- returns None (for compatibility with the
58 # getmark(id) -- raises an error since the mark does not
59 # exist (for compatibility with the aifc module)
60 # readframes(n) -- returns at most n frames of audio
61 # rewind() -- rewind to the beginning of the audio stream
62 # setpos(pos) -- seek to the specified position
63 # tell() -- return the current position
64 # close() -- close the instance (make it unusable)
65 # The position returned by tell() and the position given to setpos()
66 # are compatible and have nothing to do with the actual postion in the
68 # The close() method is called automatically when the class instance
71 # Writing audio files:
72 # f = sunau.open(file, 'w')
73 # where file is either the name of a file or an open file pointer.
74 # The open file pointer must have methods write(), tell(), seek(), and
77 # This returns an instance of a class with the following public methods:
78 # setnchannels(n) -- set the number of channels
79 # setsampwidth(n) -- set the sample width
80 # setframerate(n) -- set the frame rate
81 # setnframes(n) -- set the number of frames
82 # setcomptype(type, name)
83 # -- set the compression type and the
84 # human-readable compression type
85 # setparams(tuple)-- set all parameters at once
86 # tell() -- return current position in output file
87 # writeframesraw(data)
88 # -- write audio frames without pathing up the
91 # -- write audio frames and patch up the file header
92 # close() -- patch up the file header and close the
94 # You should set the parameters before the first writeframesraw or
95 # writeframes. The total number of frames does not need to be set,
96 # but when it is set to the correct value, the header does not have to
98 # It is best to first set all parameters, perhaps possibly the
99 # compression type, and then write audio frames using writeframesraw.
100 # When all frames have been written, either call writeframes('') or
101 # close() to patch up the sizes in the header.
102 # The close() method is called automatically when the class instance
105 # from <multimedia/audio_filehdr.h>
106 AUDIO_FILE_MAGIC
= 0x2e736e64
107 AUDIO_FILE_ENCODING_MULAW_8
= 1
108 AUDIO_FILE_ENCODING_LINEAR_8
= 2
109 AUDIO_FILE_ENCODING_LINEAR_16
= 3
110 AUDIO_FILE_ENCODING_LINEAR_24
= 4
111 AUDIO_FILE_ENCODING_LINEAR_32
= 5
112 AUDIO_FILE_ENCODING_FLOAT
= 6
113 AUDIO_FILE_ENCODING_DOUBLE
= 7
114 AUDIO_FILE_ENCODING_ADPCM_G721
= 23
115 AUDIO_FILE_ENCODING_ADPCM_G722
= 24
116 AUDIO_FILE_ENCODING_ADPCM_G723_3
= 25
117 AUDIO_FILE_ENCODING_ADPCM_G723_5
= 26
118 AUDIO_FILE_ENCODING_ALAW_8
= 27
120 # from <multimedia/audio_hdr.h>
121 AUDIO_UNKNOWN_SIZE
= 0xFFFFFFFFL
# ((unsigned)(~0))
123 _simple_encodings
= [AUDIO_FILE_ENCODING_MULAW_8
,
124 AUDIO_FILE_ENCODING_LINEAR_8
,
125 AUDIO_FILE_ENCODING_LINEAR_16
,
126 AUDIO_FILE_ENCODING_LINEAR_24
,
127 AUDIO_FILE_ENCODING_LINEAR_32
,
128 AUDIO_FILE_ENCODING_ALAW_8
]
130 Error
= 'sunau.Error'
138 x
= x
*256 + ord(byte
)
141 def _write_u32(file, x
):
144 d
, m
= divmod(x
, 256)
148 file.write(chr(int(data
[i
])))
152 def __init__(self
, f
):
153 if type(f
) == type(''):
155 f
= __builtin__
.open(f
, 'rb')
162 def initfp(self
, file):
165 magic
= int(_read_u32(file))
166 if magic
!= AUDIO_FILE_MAGIC
:
167 raise Error
, 'bad magic number'
168 self
._hdr
_size
= int(_read_u32(file))
169 if self
._hdr
_size
< 24:
170 raise Error
, 'header size too small'
171 if self
._hdr
_size
> 100:
172 raise Error
, 'header size rediculously large'
173 self
._data
_size
= _read_u32(file)
174 if self
._data
_size
!= AUDIO_UNKNOWN_SIZE
:
175 self
._data
_size
= int(self
._data
_size
)
176 self
._encoding
= int(_read_u32(file))
177 if self
._encoding
not in _simple_encodings
:
178 raise Error
, 'encoding not (yet) supported'
179 if self
._encoding
in (AUDIO_FILE_ENCODING_MULAW_8
,
180 AUDIO_FILE_ENCODING_ALAW_8
):
183 elif self
._encoding
== AUDIO_FILE_ENCODING_LINEAR_8
:
184 self
._framesize
= self
._sampwidth
= 1
185 elif self
._encoding
== AUDIO_FILE_ENCODING_LINEAR_16
:
186 self
._framesize
= self
._sampwidth
= 2
187 elif self
._encoding
== AUDIO_FILE_ENCODING_LINEAR_24
:
188 self
._framesize
= self
._sampwidth
= 3
189 elif self
._encoding
== AUDIO_FILE_ENCODING_LINEAR_32
:
190 self
._framesize
= self
._sampwidth
= 4
192 raise Error
, 'unknown encoding'
193 self
._framerate
= int(_read_u32(file))
194 self
._nchannels
= int(_read_u32(file))
195 self
._framesize
= self
._framesize
* self
._nchannels
196 if self
._hdr
_size
> 24:
197 self
._info
= file.read(self
._hdr
_size
- 24)
198 for i
in range(len(self
._info
)):
199 if self
._info
[i
] == '\0':
200 self
._info
= self
._info
[:i
]
208 def getnchannels(self
):
209 return self
._nchannels
211 def getsampwidth(self
):
212 return self
._sampwidth
214 def getframerate(self
):
215 return self
._framerate
217 def getnframes(self
):
218 if self
._data
_size
== AUDIO_UNKNOWN_SIZE
:
219 return AUDIO_UNKNOWN_SIZE
220 if self
._encoding
in _simple_encodings
:
221 return self
._data
_size
/ self
._framesize
222 return 0 # XXX--must do some arithmetic here
224 def getcomptype(self
):
225 if self
._encoding
== AUDIO_FILE_ENCODING_MULAW_8
:
227 elif self
._encoding
== AUDIO_FILE_ENCODING_ALAW_8
:
232 def getcompname(self
):
233 if self
._encoding
== AUDIO_FILE_ENCODING_MULAW_8
:
234 return 'CCITT G.711 u-law'
235 elif self
._encoding
== AUDIO_FILE_ENCODING_ALAW_8
:
236 return 'CCITT G.711 A-law'
238 return 'not compressed'
241 return self
.getnchannels(), self
.getsampwidth(), \
242 self
.getframerate(), self
.getnframes(), \
243 self
.getcomptype(), self
.getcompname()
245 def getmarkers(self
):
248 def getmark(self
, id):
249 raise Error
, 'no marks'
251 def readframes(self
, nframes
):
252 if self
._encoding
in _simple_encodings
:
253 if nframes
== AUDIO_UNKNOWN_SIZE
:
254 data
= self
._file
.read()
256 data
= self
._file
.read(nframes
* self
._framesize
* self
._nchannels
)
257 if self
._encoding
== AUDIO_FILE_ENCODING_MULAW_8
:
259 data
= audioop
.ulaw2lin(data
, self
._sampwidth
)
261 return None # XXX--not implemented yet
265 self
._file
.seek(self
._hdr
_size
)
268 return self
._soundpos
270 def setpos(self
, pos
):
271 if pos
< 0 or pos
> self
.getnframes():
272 raise Error
, 'position not in range'
273 self
._file
.seek(pos
* self
._framesize
+ self
._hdr
_size
)
281 def __init__(self
, f
):
282 if type(f
) == type(''):
284 f
= __builtin__
.open(f
, 'wb')
291 def initfp(self
, file):
297 self
._nframes
= AUDIO_UNKNOWN_SIZE
298 self
._nframeswritten
= 0
299 self
._datawritten
= 0
302 self
._comptype
= 'ULAW' # default is U-law
304 def setnchannels(self
, nchannels
):
305 if self
._nframeswritten
:
306 raise Error
, 'cannot change parameters after starting to write'
307 if nchannels
not in (1, 2, 4):
308 raise Error
, 'only 1, 2, or 4 channels supported'
309 self
._nchannels
= nchannels
311 def getnchannels(self
):
312 if not self
._nchannels
:
313 raise Error
, 'number of channels not set'
314 return self
._nchannels
316 def setsampwidth(self
, sampwidth
):
317 if self
._nframeswritten
:
318 raise Error
, 'cannot change parameters after starting to write'
319 if sampwidth
not in (1, 2, 4):
320 raise Error
, 'bad sample width'
321 self
._sampwidth
= sampwidth
323 def getsampwidth(self
):
324 if not self
._framerate
:
325 raise Error
, 'sample width not specified'
326 return self
._sampwidth
328 def setframerate(self
, framerate
):
329 if self
._nframeswritten
:
330 raise Error
, 'cannot change parameters after starting to write'
331 self
._framerate
= framerate
333 def getframerate(self
):
334 if not self
._framerate
:
335 raise Error
, 'frame rate not set'
336 return self
._framerate
338 def setnframes(self
, nframes
):
339 if self
._nframeswritten
:
340 raise Error
, 'cannot change parameters after starting to write'
342 raise Error
, '# of frames cannot be negative'
343 self
._nframes
= nframes
345 def getnframes(self
):
346 return self
._nframeswritten
348 def setcomptype(self
, type, name
):
349 if type in ('NONE', 'ULAW'):
350 self
._comptype
= type
352 raise Error
, 'unknown compression type'
354 def getcomptype(self
):
355 return self
._comptype
357 def getcompname(self
):
358 if self
._comptype
== 'ULAW':
359 return 'CCITT G.711 u-law'
360 elif self
._comptype
== 'ALAW':
361 return 'CCITT G.711 A-law'
363 return 'not compressed'
365 def setparams(self
, (nchannels
, sampwidth
, framerate
, nframes
, comptype
, compname
)):
366 self
.setnchannels(nchannels
)
367 self
.setsampwidth(sampwidth
)
368 self
.setframerate(framerate
)
369 self
.setnframes(nframes
)
370 self
.setcomptype(comptype
, compname
)
373 return self
.getnchannels(), self
.getsampwidth(), \
374 self
.getframerate(), self
.getnframes(), \
375 self
.getcomptype(), self
.getcompname()
378 return self
._nframeswritten
380 def writeframesraw(self
, data
):
381 self
._ensure
_header
_written
()
382 nframes
= len(data
) / self
._framesize
383 if self
._comptype
== 'ULAW':
385 data
= audioop
.lin2ulaw(data
, self
._sampwidth
)
386 self
._file
.write(data
)
387 self
._nframeswritten
= self
._nframeswritten
+ nframes
388 self
._datawritten
= self
._datawritten
+ len(data
)
390 def writeframes(self
, data
):
391 self
.writeframesraw(data
)
392 if self
._nframeswritten
!= self
._nframes
or \
393 self
._datalength
!= self
._datawritten
:
397 self
._ensure
_header
_written
()
398 if self
._nframeswritten
!= self
._nframes
or \
399 self
._datalength
!= self
._datawritten
:
408 def _ensure_header_written(self
):
409 if not self
._nframeswritten
:
410 if not self
._nchannels
:
411 raise Error
, '# of channels not specified'
412 if not self
._sampwidth
:
413 raise Error
, 'sample width not specified'
414 if not self
._framerate
:
415 raise Error
, 'frame rate not specified'
418 def _write_header(self
):
419 if self
._comptype
== 'NONE':
420 if self
._sampwidth
== 1:
421 encoding
= AUDIO_FILE_ENCODING_LINEAR_8
423 elif self
._sampwidth
== 2:
424 encoding
= AUDIO_FILE_ENCODING_LINEAR_16
426 elif self
._sampwidth
== 4:
427 encoding
= AUDIO_FILE_ENCODING_LINEAR_32
430 raise Error
, 'internal error'
431 elif self
._comptype
== 'ULAW':
432 encoding
= AUDIO_FILE_ENCODING_MULAW_8
435 raise Error
, 'internal error'
436 self
._framesize
= self
._framesize
* self
._nchannels
437 _write_u32(self
._file
, AUDIO_FILE_MAGIC
)
438 header_size
= 25 + len(self
._info
)
439 header_size
= (header_size
+ 7) & ~
7
440 _write_u32(self
._file
, header_size
)
441 if self
._nframes
== AUDIO_UNKNOWN_SIZE
:
442 length
= AUDIO_UNKNOWN_SIZE
444 length
= self
._nframes
* self
._framesize
445 _write_u32(self
._file
, length
)
446 self
._datalength
= length
447 _write_u32(self
._file
, encoding
)
448 _write_u32(self
._file
, self
._framerate
)
449 _write_u32(self
._file
, self
._nchannels
)
450 self
._file
.write(self
._info
)
451 self
._file
.write('\0'*(header_size
- len(self
._info
) - 24))
453 def _patchheader(self
):
455 _write_u32(self
._file
, self
._datawritten
)
456 self
._datalength
= self
._datawritten
457 self
._file
.seek(0, 2)
465 raise Error
, "mode must be 'r' or 'w'"