Kill fields buf, loaded and output_error of struct receiver node.
[paraslash.git] / aacdec_filter.c
1 /*
2  * Copyright (C) 2006-2009 Andre Noll <maan@systemlinux.org>
3  *
4  * Licensed under the GPL v2. For licencing details see COPYING.
5  */
6 /*
7  * based in parts on libfaad, Copyright (C) 2003-2005 M. Bakker,
8  * Ahead Software AG
9  */
10
11 /** \file aacdec_filter.c paraslash's aac (m4a) decoder. */
12
13 #include <regex.h>
14 #include <stdbool.h>
15
16 #include "para.h"
17 #include "list.h"
18 #include "sched.h"
19 #include "ggo.h"
20 #include "buffer_tree.h"
21 #include "filter.h"
22 #include "error.h"
23 #include "string.h"
24 #include "aac.h"
25
26 /** Give up decoding after that many errors. */
27 #define MAX_ERRORS 20
28
29 /**
30  * data specific to the aacdec filter
31  *
32  * \sa filter, filter_node
33  */
34 struct private_aacdec_data {
35         /** the return value of aac_open */
36         NeAACDecHandle handle;
37         /** info about the currently decoded frame */
38         NeAACDecFrameInfo frame_info;
39         /** whether this instance of the aac decoder is already initialized */
40         int initialized;
41         /**
42          * return value of aac_find_esds(). Used to call the right aacdec
43          * init function
44          */
45         unsigned long decoder_length;
46         /** number of times the decoder returned an error */
47         unsigned error_count;
48         /** number of bytes already consumed from the imput stream */
49         size_t consumed_total;
50         /** return value of aac_find_entry_point */
51         size_t entry;
52         /** The number of channels of the current stream. */
53         unsigned int channels;
54         /** Current sample rate in Hz. */
55         unsigned int samplerate;
56 };
57
58 static int aacdec_execute(struct btr_node *btrn, const char *cmd, char **result)
59 {
60         struct filter_node *fn = btr_context(btrn);
61         struct private_aacdec_data *padd = fn->private_data;
62
63         if (!strcmp(cmd, "samplerate")) {
64                 if (padd->samplerate == 0)
65                         return -ERRNO_TO_PARA_ERROR(ENAVAIL);
66                 *result = make_message("%u", padd->samplerate);
67                 return 1;
68         }
69         if (!strcmp(cmd, "channels")) {
70                 if (padd->channels == 0)
71                         return -ERRNO_TO_PARA_ERROR(ENAVAIL);
72                 *result = make_message("%u", padd->channels);
73                 return 1;
74         }
75         return -ERRNO_TO_PARA_ERROR(ENOTSUP);
76 }
77
78 static void aacdec_open(struct filter_node *fn)
79 {
80         struct private_aacdec_data *padd = para_calloc(sizeof(*padd));
81
82         fn->private_data = padd;
83         fn->min_iqs = 2048;
84         padd->handle = aac_open();
85 }
86
87 static void aacdec_close(struct filter_node *fn)
88 {
89         struct private_aacdec_data *padd = fn->private_data;
90
91         NeAACDecClose(padd->handle);
92         free(padd);
93         fn->private_data = NULL;
94 }
95
96 static void aacdec_post_select(__a_unused struct sched *s, struct task *t)
97 {
98         struct filter_node *fn = container_of(t, struct filter_node, task);
99         struct btr_node *btrn = fn->btrn;
100         struct private_aacdec_data *padd = fn->private_data;
101         int i, ret;
102         unsigned char *p, *inbuf, *outbuffer;
103         char *btr_buf;
104         size_t len, skip, consumed, loaded, iqs;
105
106 next_buffer:
107         t->error = 0;
108         ret = btr_node_status(btrn, fn->min_iqs, BTR_NT_INTERNAL);
109         if (ret < 0)
110                 goto err;
111         if (ret == 0)
112                 return;
113         btr_merge(btrn, fn->min_iqs);
114         len = btr_next_buffer(btrn, (char **)&inbuf);
115         consumed = 0;
116         iqs = btr_get_input_queue_size(btrn);
117         if (!padd->initialized) {
118                 unsigned long rate = 0;
119                 unsigned char channels = 0;
120                 ret = aac_find_esds(inbuf, len, &skip, &padd->decoder_length);
121                 if (ret < 0) {
122                         PARA_INFO_LOG("%s\n", para_strerror(-ret));
123                         ret = NeAACDecInit(padd->handle, inbuf,
124                                 len, &rate, &channels);
125                         PARA_INFO_LOG("decoder init: %d\n", ret);
126                         if (ret < 0) {
127                                 ret = -E_AACDEC_INIT;
128                                 goto out;
129                         }
130                         consumed = ret;
131                 } else {
132                         PARA_INFO_LOG("decoder len: %lu\n",
133                                 padd->decoder_length);
134                         consumed += skip;
135                         p = inbuf + consumed;
136                         ret = -E_AACDEC_INIT;
137                         if (NeAACDecInit2(padd->handle, p,
138                                         padd->decoder_length, &rate,
139                                         &channels) < 0)
140                                 goto out;
141                 }
142                 padd->samplerate = rate;
143                 padd->channels = channels;
144                 PARA_INFO_LOG("rate: %u, channels: %d\n",
145                         padd->samplerate, padd->channels);
146                 padd->initialized = 1;
147         }
148         if (padd->decoder_length > 0) {
149                 consumed = 0;
150                 if (!padd->entry) {
151                         ret = aac_find_entry_point(inbuf + consumed,
152                                 len - consumed, &skip);
153                         if (ret < 0) {
154                                 ret = len;
155                                 goto out;
156                         }
157                         consumed += skip;
158                         padd->entry = ret;
159                         PARA_INFO_LOG("entry: %zu\n", padd->entry);
160                 }
161                 ret = len;
162                 if (padd->consumed_total + len < padd->entry)
163                         goto out;
164                 if (padd->consumed_total < padd->entry)
165                         consumed = padd->entry - padd->consumed_total;
166         }
167         for (; consumed < len; consumed++)
168                 if ((inbuf[consumed] & 0xfe) == 0x20)
169                         break;
170         if (consumed >= len)
171                 goto success;
172         p = inbuf + consumed;
173         //PARA_CRIT_LOG("consumed: %zu (%zu + %zu), have: %zu\n", padd->consumed_total + consumed,
174         //      padd->consumed_total, consumed, len - consumed);
175         outbuffer = NeAACDecDecode(padd->handle, &padd->frame_info, p,
176                 len - consumed);
177         if (padd->frame_info.error) {
178                 int err = padd->frame_info.error;
179                 ret = -E_AAC_DECODE;
180                 if (padd->error_count++ > MAX_ERRORS)
181                         goto err;
182                 PARA_ERROR_LOG("frame_error: %d (%s), consumed: %zu + %zd + %lu\n",
183                         err, NeAACDecGetErrorMessage(padd->frame_info.error),
184                         padd->consumed_total, consumed,
185                         padd->frame_info.bytesconsumed);
186                 PARA_ERROR_LOG("%s\n", NeAACDecGetErrorMessage(
187                         padd->frame_info.error));
188                 consumed++; /* catch 21 */
189                 goto success;
190         }
191         padd->error_count = 0;
192         //PARA_CRIT_LOG("decoder ate %lu\n", padd->frame_info.bytesconsumed);
193         consumed += padd->frame_info.bytesconsumed;
194         ret = consumed;
195         if (!padd->frame_info.samples)
196                 goto out;
197         btr_buf = para_malloc(2 * padd->frame_info.samples);
198         loaded = 0;
199         for (i = 0; i < padd->frame_info.samples; i++) {
200                 short sh = ((short *)outbuffer)[i];
201                 write_int16_host_endian(btr_buf + loaded, sh);
202                 loaded += 2;
203         }
204         btr_add_output(btr_buf, loaded, btrn);
205 success:
206         ret = consumed;
207 out:
208         if (ret >= 0) {
209                 padd->consumed_total += ret;
210                 btr_consume(btrn, ret);
211                 goto next_buffer;
212         }
213 err:
214         assert(ret < 0);
215         t->error = ret;
216         btr_remove_node(btrn);
217 }
218
219 /**
220  * The init function of the aacdec filter.
221  *
222  * \param f Pointer to the filter struct to initialize.
223  *
224  * \sa filter::init
225  */
226 void aacdec_filter_init(struct filter *f)
227 {
228         f->open = aacdec_open;
229         f->close = aacdec_close;
230         f->pre_select = generic_filter_pre_select;
231         f->post_select = aacdec_post_select;
232         f->execute = aacdec_execute;
233 }