Reformat fade.ggo
[paraslash.git] / aac_afh.c
1 /*
2  * Copyright (C) 2006 Andre Noll <maan@systemlinux.org>
3  *
4  *     This program is free software; you can redistribute it and/or modify
5  *     it under the terms of the GNU General Public License as published by
6  *     the Free Software Foundation; either version 2 of the License, or
7  *     (at your option) any later version.
8  *
9  *     This program is distributed in the hope that it will be useful,
10  *     but WITHOUT ANY WARRANTY; without even the implied warranty of
11  *     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
12  *     GNU General Public License for more details.
13  *
14  *     You should have received a copy of the GNU General Public License
15  *     along with this program; if not, write to the Free Software
16  *     Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA  02111, USA.
17  */
18 /*
19  * based in parts on libfaad, Copyright (C) 2003-2005 M. Bakker,
20  * Ahead Software AG
21  */
22
23 /** \file aac_afh.c para_server's aac audio format handler */
24
25 #include "server.cmdline.h"
26 #include "server.h"
27 #include "afs.h"
28 #include "afh.h"
29 #include "error.h"
30 #include "string.h"
31 #include "aac.h"
32 #include "fd.h"
33
34 /* must be big enough to hold header */
35 #define DEFAULT_INBUF_SIZE 65536
36
37 static FILE *infile;
38 static int inbuf_size;
39 static unsigned char *inbuf;
40 static size_t inbuf_len;
41 struct audio_format_handler *af;
42 static size_t num_chunks;
43 static size_t entry;
44
45 static size_t *chunk_table;
46 NeAACDecHandle handle;
47
48 static void aac_close_audio_file(void)
49 {
50         if (!infile)
51                 return;
52         fclose(infile);
53         infile = NULL;
54 }
55
56 static int aac_find_stsz(unsigned char *buf, unsigned buflen, size_t *skip)
57 {
58         int i;
59
60         for (i = 0; i + 16 < buflen; i++) {
61                 unsigned char *p = buf + i;
62                 unsigned sample_count, sample_size;
63
64                 if (p[0] != 's' || p[1] != 't' || p[2] != 's' || p[3] != 'z')
65                         continue;
66                 PARA_INFO_LOG("found stsz@%d\n", i);
67                 i += 8;
68                 sample_size = aac_read_int32(buf + i);
69                 PARA_INFO_LOG("sample size: %d\n", sample_size);
70                 i += 4;
71                 sample_count = aac_read_int32(buf + i);
72                 i += 4;
73                 PARA_INFO_LOG("sample count: %d\n", sample_count);
74                 *skip = i;
75                 return sample_count;
76         }
77         PARA_WARNING_LOG("stsz not found, buflen: %d\n", buflen);
78         return -E_STSZ;
79 }
80
81 static int read_chunk_table(size_t skip)
82 {
83         int ret, i;
84         size_t sum = 0;
85
86         for (;;) {
87                 ret = aac_find_stsz(inbuf, inbuf_len, &skip);
88                 if (ret >= 0)
89                         break;
90                 ret = read(fileno(infile), inbuf, inbuf_size);
91                 if (ret <= 0)
92                         return -E_AAC_READ;
93                 PARA_INFO_LOG("next buffer: %d bytes\n", ret);
94         }
95         num_chunks = ret;
96         PARA_INFO_LOG("sz table has %zu entries\n", num_chunks);
97         free(chunk_table);
98         chunk_table = para_malloc(num_chunks * sizeof(size_t));
99         for (i = 0; i < num_chunks; i++) {
100                 if (skip + 4 > inbuf_len) {
101                         skip = inbuf_len - skip;
102                         memmove(inbuf, inbuf + inbuf_len - skip, skip);
103                         ret = read(fileno(infile), inbuf + skip, inbuf_size - skip);
104                         if (ret <= 0)
105                                 return -E_AAC_READ;
106                         inbuf_len = ret + skip;
107                         skip = 0;
108                         PARA_INFO_LOG("next buffer: %zu bytes\n", inbuf_len);
109                 }
110                 sum += aac_read_int32(inbuf + skip);
111                 chunk_table[i] = sum;
112                 skip += 4;
113                 if (i < 10 || i + 10 > num_chunks)
114                         PARA_DEBUG_LOG("offset #%d: %zu\n", i, chunk_table[i]);
115         }
116         return 1;
117
118 }
119
120 long unsigned aac_set_chunk_tv(mp4AudioSpecificConfig *mp4ASC)
121 {
122         float tmp = mp4ASC->sbr_present_flag == 1? 2047 : 1023,
123                 ms = 1000.0 * num_chunks * tmp / mp4ASC->samplingFrequency;
124         struct timeval total;
125
126         ms2tv(ms, &total);
127         tv_divide(num_chunks, &total, &af->chunk_tv);
128         PARA_INFO_LOG("%luHz, %fs (%zd x %lums)\n",
129                 mp4ASC->samplingFrequency, ms / 1000,
130                 num_chunks, tv2ms(&af->chunk_tv));
131         return ms / 1000;
132 }
133
134 /*
135  * Init m4a file and write some tech data to given pointers.
136  */
137 static int aac_get_file_info(FILE *file, char *info_str, long unsigned *frames,
138         int *seconds)
139 {
140         int ret, decoder_len;
141         size_t skip;
142         unsigned long rate = 0;
143         unsigned char channels = 0;
144         mp4AudioSpecificConfig mp4ASC;
145
146         free(inbuf);
147         inbuf_size = DEFAULT_INBUF_SIZE;
148         inbuf = para_malloc(inbuf_size);
149         infile = file;
150
151         ret = read(fileno(infile), inbuf, inbuf_size);
152         if (ret <= 0)
153                 return -E_AAC_READ;
154         inbuf_len = ret;
155         ret = aac_find_esds(inbuf, inbuf_len, &skip);
156         if (ret < 0)
157                 return ret;
158         decoder_len = ret;
159         handle = aac_open();
160         ret = NeAACDecInit(handle, inbuf + skip,
161                 decoder_len, &rate, &channels);
162         if (ret < 0)
163                 return -E_AACDEC_INIT;
164         skip += ret;
165         PARA_INFO_LOG("rate: %lu, channels: %d\n", rate, channels);
166         ret = NeAACDecAudioSpecificConfig(inbuf + skip, inbuf_len - skip,
167                 &mp4ASC);
168         if (ret < 0)
169                 return -E_MP4ASC;
170         ret = read_chunk_table(skip);
171         if (ret < 0)
172                 return ret;
173         *frames = num_chunks;
174         *seconds = aac_set_chunk_tv(&mp4ASC);
175         for (;;) {
176                 ret = aac_find_entry_point(inbuf, inbuf_len, &skip);
177                 if (ret >= 0)
178                         break;
179                 ret = read(fileno(infile), inbuf, inbuf_size);
180                 if (ret <= 0)
181                         return -E_AAC_READ;
182                 PARA_INFO_LOG("next buffer: %d bytes\n", ret);
183         }
184         entry = ret;
185         sprintf(info_str, "audio_file_info1:%zu x %lums\n"
186                 "audio_file_info2:\n"
187                 "audio_file_info3:\n",
188                 num_chunks,
189                 tv2ms(&af->chunk_tv));
190         tv_scale(20, &af->chunk_tv, &af->eof_tv);
191         return 1;
192 }
193
194 /*
195  * nothing to do as we'll seek to the correct offset in aac read_chunk() anyway
196  */
197 static int aac_reposition_stream(__a_unused long unsigned request)
198 {
199         return 1;
200 }
201
202 static char *aac_read_chunk(long unsigned current_chunk, ssize_t *len)
203 {
204         int ret;
205         size_t pos;
206
207         *len = 0;
208         if (current_chunk >= num_chunks)
209                 return NULL;
210         if (!current_chunk) {
211                 *len = chunk_table[0];
212                 pos = entry;
213         } else {
214                 *len = chunk_table[current_chunk] - chunk_table[current_chunk - 1];
215                 pos = entry + chunk_table[current_chunk - 1];
216         }
217         if (inbuf_size < *len) {
218                 inbuf = para_realloc(inbuf, *len);
219                 inbuf_size = *len;
220         }
221 //      PARA_DEBUG_LOG("reading chunk #%lu@%zd (%zd bytes)\n", current_chunk,
222 //              pos, *len);
223         ret = fseek(infile, pos, SEEK_SET);
224         if (ret < 0)
225                 return NULL;
226         ret = para_fread(inbuf, *len, 1, infile);
227         if (ret != *len)
228                 return NULL;
229 //      PARA_DEBUG_LOG("ret: %d, inbuf[0]: %lx - %lx\n", ret, (long unsigned) inbuf[0],
230 //              (long unsigned) inbuf[4]);
231         return (char *)inbuf;
232 }
233
234 static const char* aac_suffixes[] = {"m4a", NULL};
235 /** the init function of the aac audio format handler */
236 void aac_afh_init(struct audio_format_handler *p)
237 {
238         af = p;
239         af->reposition_stream = aac_reposition_stream;
240         af->get_file_info = aac_get_file_info,
241         af->read_chunk = aac_read_chunk;
242         af->close_audio_file = aac_close_audio_file;
243         af->get_header_info = NULL;
244         af->suffixes = aac_suffixes;
245 }