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95a14fd470
SBC frame length calculation wasn't being rounded up to the nearest byte (as specified in the A2DP 1.0 specification, section 12.9). This could cause 'stereo' and 'joint stereo' mode SBC streams to have incorrectly calculated frame lengths. https://bugzilla.gnome.org/show_bug.cgi?id=742446
245 lines
7.5 KiB
C
245 lines
7.5 KiB
C
/* GStreamer SBC audio decoder
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*
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* Copyright (C) 2004-2010 Marcel Holtmann <marcel@holtmann.org>
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* Copyright (C) 2013 Tim-Philipp Müller <tim centricular net>
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*
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*/
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/**
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* SECTION:element-sbdec
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*
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* This element decodes a Bluetooth SBC audio streams to raw integer PCM audio
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*
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* <refsect2>
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* <title>Example pipelines</title>
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* |[
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* gst-launch-1.0 -v filesrc location=audio.sbc ! sbcparse ! sbcdec ! audioconvert ! audioresample ! autoaudiosink
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* ]| Decode a raw SBC file.
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* </refsect2>
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*/
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include <string.h>
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#include "gstsbcdec.h"
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/* FIXME: where does this come from? how is it derived? */
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#define BUF_SIZE 8192
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GST_DEBUG_CATEGORY_STATIC (sbc_dec_debug);
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#define GST_CAT_DEFAULT sbc_dec_debug
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#define parent_class gst_sbc_dec_parent_class
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G_DEFINE_TYPE (GstSbcDec, gst_sbc_dec, GST_TYPE_AUDIO_DECODER);
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static GstStaticPadTemplate sbc_dec_sink_factory =
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GST_STATIC_PAD_TEMPLATE ("sink", GST_PAD_SINK, GST_PAD_ALWAYS,
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GST_STATIC_CAPS ("audio/x-sbc, channels = (int) [ 1, 2 ], "
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"rate = (int) { 16000, 32000, 44100, 48000 }, "
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"parsed = (boolean) true"));
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static GstStaticPadTemplate sbc_dec_src_factory =
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GST_STATIC_PAD_TEMPLATE ("src", GST_PAD_SRC, GST_PAD_ALWAYS,
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GST_STATIC_CAPS ("audio/x-raw, format=" GST_AUDIO_NE (S16) ", "
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"rate = (int) { 16000, 32000, 44100, 48000 }, "
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"channels = (int) [ 1, 2 ], layout=interleaved"));
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static GstFlowReturn
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gst_sbc_dec_handle_frame (GstAudioDecoder * audio_dec, GstBuffer * buf)
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{
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GstSbcDec *dec = GST_SBC_DEC (audio_dec);
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GstBuffer *outbuf = NULL;
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GstMapInfo out_map;
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GstMapInfo in_map;
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gsize output_size;
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guint num_frames, i;
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/* no fancy draining */
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if (G_UNLIKELY (buf == NULL))
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return GST_FLOW_OK;
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gst_buffer_map (buf, &in_map, GST_MAP_READ);
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if (G_UNLIKELY (in_map.size == 0))
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goto done;
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/* we assume all frames are of the same size, this is implied by the
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* input caps applying to the whole input buffer, and the parser should
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* also have made sure of that */
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if (G_UNLIKELY (in_map.size % dec->frame_len != 0))
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goto mixed_frames;
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num_frames = in_map.size / dec->frame_len;
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output_size = num_frames * dec->samples_per_frame * sizeof (gint16);
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outbuf = gst_audio_decoder_allocate_output_buffer (audio_dec, output_size);
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if (outbuf == NULL)
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goto no_buffer;
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gst_buffer_map (outbuf, &out_map, GST_MAP_WRITE);
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for (i = 0; i < num_frames; ++i) {
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gssize ret;
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gsize written;
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ret = sbc_decode (&dec->sbc, in_map.data + (i * dec->frame_len),
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dec->frame_len, out_map.data + (i * dec->samples_per_frame * 2),
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dec->samples_per_frame * 2, &written);
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if (ret <= 0 || written != (dec->samples_per_frame * 2)) {
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GST_WARNING_OBJECT (dec, "decoding error, ret = %" G_GSSIZE_FORMAT ", "
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"written = %" G_GSSIZE_FORMAT, ret, written);
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break;
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}
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}
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gst_buffer_unmap (outbuf, &out_map);
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if (i > 0)
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gst_buffer_set_size (outbuf, i * dec->samples_per_frame * 2);
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else
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gst_buffer_replace (&outbuf, NULL);
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done:
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gst_buffer_unmap (buf, &in_map);
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return gst_audio_decoder_finish_frame (audio_dec, outbuf, 1);
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/* ERRORS */
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mixed_frames:
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{
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GST_WARNING_OBJECT (dec, "inconsistent input data/frames, skipping");
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goto done;
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}
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no_buffer:
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{
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GST_ERROR_OBJECT (dec, "could not allocate output buffer");
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goto done;
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}
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}
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static gboolean
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gst_sbc_dec_set_format (GstAudioDecoder * audio_dec, GstCaps * caps)
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{
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GstSbcDec *dec = GST_SBC_DEC (audio_dec);
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const gchar *channel_mode;
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GstAudioInfo info;
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GstStructure *s;
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gint channels, rate, subbands, blocks, bitpool;
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s = gst_caps_get_structure (caps, 0);
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gst_structure_get_int (s, "channels", &channels);
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gst_structure_get_int (s, "rate", &rate);
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/* save input format */
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channel_mode = gst_structure_get_string (s, "channel-mode");
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if (channel_mode == NULL ||
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!gst_structure_get_int (s, "subbands", &subbands) ||
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!gst_structure_get_int (s, "blocks", &blocks) ||
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!gst_structure_get_int (s, "bitpool", &bitpool))
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return FALSE;
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if (strcmp (channel_mode, "mono") == 0) {
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dec->frame_len = 4 + (subbands * 1) / 2 + ((blocks * 1 * bitpool) + 7) / 8;
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} else if (strcmp (channel_mode, "dual") == 0) {
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dec->frame_len = 4 + (subbands * 2) / 2 + ((blocks * 2 * bitpool) + 7) / 8;
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} else if (strcmp (channel_mode, "stereo") == 0) {
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dec->frame_len = 4 + (subbands * 2) / 2 + ((blocks * bitpool) + 7) / 8;
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} else if (strcmp (channel_mode, "joint") == 0) {
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dec->frame_len = 4 + (subbands * 2) / 2 + ((subbands + blocks * bitpool) + 7) / 8;
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} else {
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return FALSE;
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}
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dec->samples_per_frame = channels * blocks * subbands;
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GST_INFO_OBJECT (dec, "frame len: %" G_GSIZE_FORMAT ", samples per frame "
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"%" G_GSIZE_FORMAT, dec->frame_len, dec->samples_per_frame);
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/* set up output format */
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gst_audio_info_init (&info);
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gst_audio_info_set_format (&info, GST_AUDIO_FORMAT_S16, rate, channels, NULL);
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gst_audio_decoder_set_output_format (audio_dec, &info);
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return TRUE;
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}
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static gboolean
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gst_sbc_dec_start (GstAudioDecoder * dec)
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{
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GstSbcDec *sbcdec = GST_SBC_DEC (dec);
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GST_INFO_OBJECT (dec, "Setup subband codec");
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sbc_init (&sbcdec->sbc, 0);
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return TRUE;
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}
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static gboolean
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gst_sbc_dec_stop (GstAudioDecoder * dec)
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{
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GstSbcDec *sbcdec = GST_SBC_DEC (dec);
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GST_INFO_OBJECT (sbcdec, "Finish subband codec");
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sbc_finish (&sbcdec->sbc);
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sbcdec->samples_per_frame = 0;
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sbcdec->frame_len = 0;
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return TRUE;
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}
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static void
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gst_sbc_dec_class_init (GstSbcDecClass * klass)
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{
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GstAudioDecoderClass *audio_decoder_class = (GstAudioDecoderClass *) klass;
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GstElementClass *element_class = (GstElementClass *) klass;
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audio_decoder_class->start = GST_DEBUG_FUNCPTR (gst_sbc_dec_start);
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audio_decoder_class->stop = GST_DEBUG_FUNCPTR (gst_sbc_dec_stop);
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audio_decoder_class->set_format = GST_DEBUG_FUNCPTR (gst_sbc_dec_set_format);
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audio_decoder_class->handle_frame =
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GST_DEBUG_FUNCPTR (gst_sbc_dec_handle_frame);
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gst_element_class_add_pad_template (element_class,
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gst_static_pad_template_get (&sbc_dec_sink_factory));
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gst_element_class_add_pad_template (element_class,
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gst_static_pad_template_get (&sbc_dec_src_factory));
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gst_element_class_set_static_metadata (element_class,
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"Bluetooth SBC audio decoder", "Codec/Decoder/Audio",
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"Decode an SBC audio stream", "Marcel Holtmann <marcel@holtmann.org>");
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GST_DEBUG_CATEGORY_INIT (sbc_dec_debug, "sbcdec", 0, "SBC decoding element");
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}
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static void
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gst_sbc_dec_init (GstSbcDec * dec)
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{
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gst_audio_decoder_set_needs_format (GST_AUDIO_DECODER (dec), TRUE);
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gst_audio_decoder_set_use_default_pad_acceptcaps (GST_AUDIO_DECODER_CAST
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(dec), TRUE);
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GST_PAD_SET_ACCEPT_TEMPLATE (GST_AUDIO_DECODER_SINK_PAD (dec));
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dec->samples_per_frame = 0;
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dec->frame_len = 0;
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}
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