source: roaraudio/libroardsp/transcode_speex.c @ 2300:a1f45451cd78

Last change on this file since 2300:a1f45451cd78 was 2300:a1f45451cd78, checked in by phi, 15 years ago

wrote decoder part

File size: 5.2 KB
Line 
1//transcode_speex.c:
2
3/*
4 *      Copyright (C) Philipp 'ph3-der-loewe' Schafft - 2009
5 *
6 *  This file is part of libroardsp a part of RoarAudio,
7 *  a cross-platform sound system for both, home and professional use.
8 *  See README for details.
9 *
10 *  This file is free software; you can redistribute it and/or modify
11 *  it under the terms of the GNU General Public License version 3
12 *  as published by the Free Software Foundation.
13 *
14 *  libroardsp 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.
18 *
19 *  You should have received a copy of the GNU General Public License
20 *  along with this software; see the file COPYING.  If not, write to
21 *  the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
22 *
23 */
24
25#include "libroardsp.h"
26
27#ifdef ROAR_HAVE_LIBSPEEX
28
29#define _16BIT (16/8)
30#define _SIZE_LEN 2
31
32int roar_xcoder_speex_init       (struct roar_xcoder * state) {
33 struct roar_xcoder_speex * self = malloc(sizeof(struct roar_xcoder_speex));
34 struct roar_audio_info  * info = &(state->info.pcm);
35 int tmp;
36
37 if ( self == NULL )
38  return -1;
39
40 // curruntly only 16 bit mode is supported
41 if ( info->bits != 16 ) {
42  free(self);
43  return -1;
44 }
45
46 // curruntly only mono mode is supported
47 if ( info->channels != 1 ) {
48  free(self);
49  return -1;
50 }
51
52 memset(self, 0, sizeof(struct roar_xcoder_speex));
53
54 state->inst = self;
55
56 self->mode  = ROAR_SPEEX_MODE_UWB;
57
58 if (state->encode) {
59  switch (self->mode) {
60   case ROAR_SPEEX_MODE_NB:  self->xcoder = speex_encoder_init(&speex_nb_mode);  break;
61   case ROAR_SPEEX_MODE_WB:  self->xcoder = speex_encoder_init(&speex_wb_mode);  break;
62   case ROAR_SPEEX_MODE_UWB: self->xcoder = speex_encoder_init(&speex_uwb_mode); break;
63  }
64  tmp = 8;
65  speex_encoder_ctl(self->xcoder, SPEEX_SET_QUALITY,    &tmp);
66  speex_encoder_ctl(self->xcoder, SPEEX_GET_FRAME_SIZE, &(self->frame_size));
67 } else {
68  self->xcoder = NULL;
69 }
70
71 speex_bits_init(&(self->bits));
72
73 return 0;
74}
75
76int roar_xcoder_speex_uninit     (struct roar_xcoder * state) {
77 struct roar_xcoder_speex * self = state->inst;
78
79 if ( self->xcoder != NULL ) {
80  if (state->encode) {
81   speex_encoder_destroy(self->xcoder);
82  } else {
83   speex_decoder_destroy(self->xcoder);
84  }
85 }
86
87 speex_bits_destroy(&(self->bits));
88
89 free(self);
90
91 return 0;
92}
93
94int roar_xcoder_speex_packet_size(struct roar_xcoder * state, int samples) {
95 struct roar_xcoder_speex * self = state->inst;
96
97 if (!state->encode)
98  if (state->stage != ROAR_XCODER_STAGE_OPENED)
99   return -1;
100
101 return _16BIT * self->frame_size;
102}
103
104int roar_xcoder_speex_encode     (struct roar_xcoder * state, void * buf, size_t len) {
105 struct roar_xcoder_speex * self = state->inst;
106 uint16_t tmp_net;
107 int pkg_len;
108
109 if (!state->encode)
110  return -1;
111
112 ROAR_DBG("roar_xcoder_speex_encode(*): Encoding...");
113
114 if ( state->stage == ROAR_XCODER_STAGE_INITED ) {
115  if ( roar_vio_write(state->backend, ROAR_SPEEX_MAGIC, ROAR_SPEEX_MAGIC_LEN) != ROAR_SPEEX_MAGIC_LEN )
116   return -1;
117  state->stage = ROAR_XCODER_STAGE_MAGIC;
118  ROAR_DBG("roar_xcoder_speex_encode(*): Wrote MAGIC");
119
120  state->stage = ROAR_XCODER_STAGE_OPENING;
121
122  tmp_net = ROAR_HOST2NET16(self->mode);
123  if ( roar_vio_write(state->backend, &tmp_net, 2) != 2 )
124   return -1;
125
126  state->stage = ROAR_XCODER_STAGE_OPENED;
127 }
128
129 speex_bits_reset(&(self->bits));
130
131 speex_encode_int(self->xcoder, (spx_int16_t *) buf, &(self->bits));
132
133 pkg_len = speex_bits_write(&(self->bits), self->cc, ROAR_SPEEX_MAX_CC);
134
135 tmp_net = ROAR_HOST2NET16(pkg_len);
136
137 if ( roar_vio_write(state->backend, &tmp_net, 2) != 2 )
138  return -1;
139
140 if ( roar_vio_write(state->backend, self->cc, pkg_len) != pkg_len )
141   return -1;
142
143 return 0;
144}
145
146int roar_xcoder_speex_decode     (struct roar_xcoder * state, void * buf, size_t len) {
147 struct roar_xcoder_speex * self = state->inst;
148 char magic[ROAR_SPEEX_MAGIC_LEN];
149 uint16_t tmp_net;
150 int pkg_len;
151 int tmp;
152
153 if ( state->stage == ROAR_XCODER_STAGE_INITED ) {
154  if ( roar_vio_read(state->backend, magic, ROAR_SPEEX_MAGIC_LEN) != ROAR_SPEEX_MAGIC_LEN )
155   return -1;
156
157  if ( memcmp(magic, ROAR_SPEEX_MAGIC, ROAR_SPEEX_MAGIC_LEN) != 0 )
158   return -1;
159
160  state->stage = ROAR_XCODER_STAGE_MAGIC;
161
162  if ( roar_vio_read(state->backend, &tmp_net, 2) != 2 )
163   return -1;
164
165  self->mode = ROAR_NET2HOST16(tmp_net);
166
167  state->stage = ROAR_XCODER_STAGE_OPENING;
168
169  switch (self->mode) {
170   case ROAR_SPEEX_MODE_NB:  self->xcoder = speex_decoder_init(&speex_nb_mode);  break;
171   case ROAR_SPEEX_MODE_WB:  self->xcoder = speex_decoder_init(&speex_wb_mode);  break;
172   case ROAR_SPEEX_MODE_UWB: self->xcoder = speex_decoder_init(&speex_uwb_mode); break;
173   default:
174     return -1;
175    break;
176  }
177
178  tmp=1;
179  speex_decoder_ctl(self->xcoder, SPEEX_SET_ENH, &tmp);
180  speex_decoder_ctl(self->xcoder, SPEEX_GET_FRAME_SIZE, &(self->frame_size));
181
182  state->stage = ROAR_XCODER_STAGE_OPENED;
183 }
184
185 if ( roar_vio_read(state->backend, &tmp_net, 2) != 2 )
186  return -1;
187
188 pkg_len = ROAR_NET2HOST16(tmp_net);
189
190 if ( pkg_len > ROAR_SPEEX_MAX_CC )
191  return -1;
192
193 if ( roar_vio_read(state->backend, self->cc, pkg_len) != pkg_len )
194  return -1;
195
196 speex_bits_read_from(&(self->bits), self->cc, pkg_len);
197
198 speex_decode_int(self->xcoder, &(self->bits), buf);
199
200 return 0;
201}
202
203#endif
204
205//ll
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