lcd-m6sp.c: remove \r
[kugel-rb.git] / apps / codecs / demac / demac.c
blob3e97fff2c93bef8ce32f5e7fdbffb02541056732
1 /*
3 demac - A Monkey's Audio decoder
5 $Id$
7 Copyright (C) Dave Chapman 2007
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 2 of the License, or
12 (at your option) any later version.
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
19 You should have received a copy of the GNU General Public License
20 along with this program; if not, write to the Free Software
21 Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110, USA
25 /*
27 This example is intended to demonstrate how the decoder can be used in
28 embedded devices - there is no usage of dynamic memory (i.e. no
29 malloc/free) and small buffer sizes are chosen to minimise both the
30 memory usage and decoding latency.
32 This implementation requires the following memory and supports decoding of all APE files up to 24-bit Stereo.
34 32768 - data from the input stream to be presented to the decoder in one contiguous chunk.
35 18432 - decoding buffer (left channel)
36 18432 - decoding buffer (right channel)
38 17408+5120+2240 - buffers used for filter histories (compression levels 2000-5000)
40 In addition, this example uses a static 27648 byte buffer as temporary
41 storage for outputting the data to a WAV file but that could be
42 avoided by writing the decoded data one sample at a time.
46 #include <stdio.h>
47 #include <inttypes.h>
48 #include <stdlib.h>
49 #include <sys/stat.h>
50 #include <fcntl.h>
51 #include <unistd.h>
52 #include <string.h>
54 #include "demac.h"
55 #include "wavwrite.h"
57 #ifndef __WIN32__
58 #define O_BINARY 0
59 #endif
61 #define CALC_CRC 1
63 #define BLOCKS_PER_LOOP 4608
64 #define MAX_CHANNELS 2
65 #define MAX_BYTESPERSAMPLE 3
67 #define INPUT_CHUNKSIZE (32*1024)
69 #ifndef MIN
70 #define MIN(a,b) ((a) < (b) ? (a) : (b))
71 #endif
74 /* 4608*2*3 = 27648 bytes */
75 static unsigned char wavbuffer[BLOCKS_PER_LOOP*MAX_CHANNELS*MAX_BYTESPERSAMPLE];
77 /* 4608*4 = 18432 bytes per channel */
78 static int32_t decoded0[BLOCKS_PER_LOOP];
79 static int32_t decoded1[BLOCKS_PER_LOOP];
81 /* We assume that 32KB of compressed data is enough to extract up to
82 27648 bytes of decompressed data. */
84 static unsigned char inbuffer[INPUT_CHUNKSIZE];
86 int ape_decode(char* infile, char* outfile)
88 int fd;
89 int fdwav;
90 int currentframe;
91 int nblocks;
92 int bytesconsumed;
93 struct ape_ctx_t ape_ctx;
94 int i, n;
95 unsigned char* p;
96 int bytesinbuffer;
97 int blockstodecode;
98 int res;
99 int firstbyte;
100 int16_t sample16;
101 int32_t sample32;
102 uint32_t frame_crc;
103 int crc_errors = 0;
105 fd = open(infile,O_RDONLY|O_BINARY);
106 if (fd < 0) return -1;
108 /* Read the file headers to populate the ape_ctx struct */
109 if (ape_parseheader(fd,&ape_ctx) < 0) {
110 printf("Cannot read header\n");
111 close(fd);
112 return -1;
115 if ((ape_ctx.fileversion < APE_MIN_VERSION) || (ape_ctx.fileversion > APE_MAX_VERSION)) {
116 printf("Unsupported file version - %.2f\n", ape_ctx.fileversion/1000.0);
117 close(fd);
118 return -2;
121 //ape_dumpinfo(&ape_ctx);
123 printf("Decoding file - v%.2f, compression level %d\n",ape_ctx.fileversion/1000.0,ape_ctx.compressiontype);
125 /* Open the WAV file and write a canonical 44-byte WAV header
126 based on the audio format information in the ape_ctx struct.
128 NOTE: This example doesn't write the original WAV header and
129 tail data which are (optionally) stored in the APE file.
131 fdwav = open_wav(&ape_ctx,outfile);
133 currentframe = 0;
135 /* Initialise the buffer */
136 lseek(fd, ape_ctx.firstframe, SEEK_SET);
137 bytesinbuffer = read(fd, inbuffer, INPUT_CHUNKSIZE);
138 firstbyte = 3; /* Take account of the little-endian 32-bit byte ordering */
140 /* The main decoding loop - we decode the frames a small chunk at a time */
141 while (currentframe < ape_ctx.totalframes)
143 /* Calculate how many blocks there are in this frame */
144 if (currentframe == (ape_ctx.totalframes - 1))
145 nblocks = ape_ctx.finalframeblocks;
146 else
147 nblocks = ape_ctx.blocksperframe;
149 ape_ctx.currentframeblocks = nblocks;
151 /* Initialise the frame decoder */
152 init_frame_decoder(&ape_ctx, inbuffer, &firstbyte, &bytesconsumed);
154 /* Update buffer */
155 memmove(inbuffer,inbuffer + bytesconsumed, bytesinbuffer - bytesconsumed);
156 bytesinbuffer -= bytesconsumed;
158 n = read(fd, inbuffer + bytesinbuffer, INPUT_CHUNKSIZE - bytesinbuffer);
159 bytesinbuffer += n;
161 #if CALC_CRC
162 frame_crc = ape_initcrc();
163 #endif
165 /* Decode the frame a chunk at a time */
166 while (nblocks > 0)
168 blockstodecode = MIN(BLOCKS_PER_LOOP, nblocks);
170 if ((res = decode_chunk(&ape_ctx, inbuffer, &firstbyte,
171 &bytesconsumed,
172 decoded0, decoded1,
173 blockstodecode)) < 0)
175 /* Frame decoding error, abort */
176 close(fd);
177 return res;
180 /* Convert the output samples to WAV format and write to output file */
181 p = wavbuffer;
182 if (ape_ctx.bps == 8) {
183 for (i = 0 ; i < blockstodecode ; i++)
185 /* 8 bit WAV uses unsigned samples */
186 *(p++) = (decoded0[i] + 0x80) & 0xff;
188 if (ape_ctx.channels == 2) {
189 *(p++) = (decoded1[i] + 0x80) & 0xff;
192 } else if (ape_ctx.bps == 16) {
193 for (i = 0 ; i < blockstodecode ; i++)
195 sample16 = decoded0[i];
196 *(p++) = sample16 & 0xff;
197 *(p++) = (sample16 >> 8) & 0xff;
199 if (ape_ctx.channels == 2) {
200 sample16 = decoded1[i];
201 *(p++) = sample16 & 0xff;
202 *(p++) = (sample16 >> 8) & 0xff;
205 } else if (ape_ctx.bps == 24) {
206 for (i = 0 ; i < blockstodecode ; i++)
208 sample32 = decoded0[i];
209 *(p++) = sample32 & 0xff;
210 *(p++) = (sample32 >> 8) & 0xff;
211 *(p++) = (sample32 >> 16) & 0xff;
213 if (ape_ctx.channels == 2) {
214 sample32 = decoded1[i];
215 *(p++) = sample32 & 0xff;
216 *(p++) = (sample32 >> 8) & 0xff;
217 *(p++) = (sample32 >> 16) & 0xff;
222 #if CALC_CRC
223 frame_crc = ape_updatecrc(wavbuffer, p - wavbuffer, frame_crc);
224 #endif
225 write(fdwav,wavbuffer,p - wavbuffer);
227 /* Update the buffer */
228 memmove(inbuffer,inbuffer + bytesconsumed, bytesinbuffer - bytesconsumed);
229 bytesinbuffer -= bytesconsumed;
231 n = read(fd, inbuffer + bytesinbuffer, INPUT_CHUNKSIZE - bytesinbuffer);
232 bytesinbuffer += n;
234 /* Decrement the block count */
235 nblocks -= blockstodecode;
238 #if CALC_CRC
239 frame_crc = ape_finishcrc(frame_crc);
241 if (ape_ctx.CRC != frame_crc)
243 fprintf(stderr,"CRC error in frame %d\n",currentframe);
244 crc_errors++;
246 #endif
248 currentframe++;
251 close(fd);
252 close(fdwav);
254 if (crc_errors > 0)
255 return -1;
256 else
257 return 0;
260 int main(int argc, char* argv[])
262 int res;
264 if (argc != 3) {
265 fprintf(stderr,"Usage: demac infile.ape outfile.wav\n");
266 return 0;
269 res = ape_decode(argv[1], argv[2]);
271 if (res < 0)
273 fprintf(stderr,"DECODING ERROR %d, ABORTING\n", res);
275 else
277 fprintf(stderr,"DECODED OK - NO CRC ERRORS.\n");
280 return 0;