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925b65b02e
Property enum items should be named PROP_ for consistency and readability.
446 lines
12 KiB
C
446 lines
12 KiB
C
/* GStreamer TTA plugin
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* (c) 2004 Arwed v. Merkatz <v.merkatz@gmx.net>
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*
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* based on ttalib
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* (c) 1999-2004 Alexander Djourik <sasha@iszf.irk.ru>
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*
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* gstttadec.c: raw TTA bitstream decoder
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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 Library General Public
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* License as published by the Free Software Foundation; either
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* version 2 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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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library General Public
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* License along with this library; if not, write to the
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* Free Software Foundation, Inc., 51 Franklin St, Fifth Floor,
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* Boston, MA 02110-1301, USA.
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*/
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#include <gst/gst.h>
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#include <math.h>
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#include <string.h>
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#include "gstttadec.h"
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#include "ttadec.h"
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#include "filters.h"
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#define TTA_BUFFER_SIZE (1024 * 32 * 8)
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/* this is from ttadec.h originally */
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static const unsigned long bit_mask[] = {
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0x00000000, 0x00000001, 0x00000003, 0x00000007,
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0x0000000f, 0x0000001f, 0x0000003f, 0x0000007f,
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0x000000ff, 0x000001ff, 0x000003ff, 0x000007ff,
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0x00000fff, 0x00001fff, 0x00003fff, 0x00007fff,
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0x0000ffff, 0x0001ffff, 0x0003ffff, 0x0007ffff,
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0x000fffff, 0x001fffff, 0x003fffff, 0x007fffff,
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0x00ffffff, 0x01ffffff, 0x03ffffff, 0x07ffffff,
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0x0fffffff, 0x1fffffff, 0x3fffffff, 0x7fffffff,
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0xffffffff
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};
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static const unsigned long bit_shift[] = {
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0x00000001, 0x00000002, 0x00000004, 0x00000008,
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0x00000010, 0x00000020, 0x00000040, 0x00000080,
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0x00000100, 0x00000200, 0x00000400, 0x00000800,
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0x00001000, 0x00002000, 0x00004000, 0x00008000,
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0x00010000, 0x00020000, 0x00040000, 0x00080000,
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0x00100000, 0x00200000, 0x00400000, 0x00800000,
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0x01000000, 0x02000000, 0x04000000, 0x08000000,
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0x10000000, 0x20000000, 0x40000000, 0x80000000,
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0x80000000, 0x80000000, 0x80000000, 0x80000000,
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0x80000000, 0x80000000, 0x80000000, 0x80000000
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};
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static const unsigned long *shift_16 = bit_shift + 4;
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/* Filter signals and args */
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enum
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{
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LAST_SIGNAL
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};
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enum
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{
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PROP_0
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};
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static GstStaticPadTemplate sink_factory = GST_STATIC_PAD_TEMPLATE ("sink",
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GST_PAD_SINK,
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GST_PAD_ALWAYS,
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GST_STATIC_CAPS ("audio/x-tta, "
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"width = (int) { 8, 16, 24 }, "
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"channels = (int) { 1, 2 }, " "rate = (int) [ 8000, 96000 ]")
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);
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static GstStaticPadTemplate src_factory = GST_STATIC_PAD_TEMPLATE ("src",
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GST_PAD_SRC,
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GST_PAD_ALWAYS,
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GST_STATIC_CAPS ("audio/x-raw-int, "
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"width = (int) { 8, 16, 24 }, "
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"depth = (int) { 8, 16, 24 }, "
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"channels = (int) { 1, 2 }, "
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"rate = (int) [ 8000, 96000 ], "
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"endianness = (int) BYTE_ORDER, " "signed = (boolean) true")
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);
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static void gst_tta_dec_class_init (GstTtaDecClass * klass);
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static void gst_tta_dec_base_init (GstTtaDecClass * klass);
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static void gst_tta_dec_init (GstTtaDec * ttadec);
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static GstFlowReturn gst_tta_dec_chain (GstPad * pad, GstBuffer * in);
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static GstElementClass *parent = NULL;
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static gboolean
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gst_tta_dec_setcaps (GstPad * pad, GstCaps * caps)
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{
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GstTtaDec *ttadec = GST_TTA_DEC (gst_pad_get_parent (pad));
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GstStructure *structure = gst_caps_get_structure (caps, 0);
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GstCaps *srccaps;
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gint bits, channels;
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gint32 samplerate;
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// if (!gst_caps_is_fixed (caps))
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// return GST_PAD_LINK_DELAYED;
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gst_structure_get_int (structure, "rate", &samplerate);
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ttadec->samplerate = (guint32) samplerate;
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gst_structure_get_int (structure, "channels", &channels);
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ttadec->channels = (guint) channels;
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gst_structure_get_int (structure, "width", &bits);
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ttadec->bytes = bits / 8;
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srccaps = gst_caps_new_simple ("audio/x-raw-int",
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"rate", G_TYPE_INT, ttadec->samplerate,
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"channels", G_TYPE_INT, ttadec->channels,
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"depth", G_TYPE_INT, bits,
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"width", G_TYPE_INT, bits,
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"endianness", G_TYPE_INT, G_BYTE_ORDER,
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"signed", G_TYPE_BOOLEAN, TRUE, NULL);
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if (!gst_pad_set_caps (ttadec->srcpad, srccaps))
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return FALSE;
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ttadec->frame_length = FRAME_TIME * ttadec->samplerate;
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ttadec->tta = g_malloc (ttadec->channels * sizeof (decoder));
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ttadec->cache = g_malloc (ttadec->channels * sizeof (long));
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ttadec->decdata =
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(guchar *) g_malloc (ttadec->channels * ttadec->frame_length *
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ttadec->bytes * sizeof (guchar));
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return TRUE;
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}
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GType
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gst_tta_dec_get_type (void)
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{
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static GType plugin_type = 0;
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if (!plugin_type) {
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static const GTypeInfo plugin_info = {
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sizeof (GstTtaDecClass),
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(GBaseInitFunc) gst_tta_dec_base_init,
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NULL,
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(GClassInitFunc) gst_tta_dec_class_init,
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NULL,
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NULL,
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sizeof (GstTtaDec),
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0,
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(GInstanceInitFunc) gst_tta_dec_init,
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};
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plugin_type = g_type_register_static (GST_TYPE_ELEMENT,
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"GstTtaDec", &plugin_info, 0);
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}
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return plugin_type;
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}
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static void
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gst_tta_dec_base_init (GstTtaDecClass * klass)
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{
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GstElementClass *element_class = GST_ELEMENT_CLASS (klass);
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gst_element_class_add_pad_template (element_class,
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gst_static_pad_template_get (&src_factory));
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gst_element_class_add_pad_template (element_class,
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gst_static_pad_template_get (&sink_factory));
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gst_element_class_set_static_metadata (element_class, "TTA audio decoder",
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"Codec/Decoder/Audio",
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"Decode TTA audio data", "Arwed v. Merkatz <v.merkatz@gmx.net>");
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}
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static void
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gst_tta_dec_dispose (GObject * object)
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{
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GstTtaDec *ttadec = GST_TTA_DEC (object);
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g_free (ttadec->tta);
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g_free (ttadec->decdata);
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g_free (ttadec->tta_buf.buffer);
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G_OBJECT_CLASS (parent)->dispose (object);
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}
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static void
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gst_tta_dec_class_init (GstTtaDecClass * klass)
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{
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GObjectClass *gobject_class;
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gobject_class = (GObjectClass *) klass;
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parent = g_type_class_peek_parent (klass);
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gobject_class->dispose = gst_tta_dec_dispose;
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}
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static void
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gst_tta_dec_init (GstTtaDec * ttadec)
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{
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GstElementClass *klass = GST_ELEMENT_GET_CLASS (ttadec);
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ttadec->sinkpad =
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gst_pad_new_from_template (gst_element_class_get_pad_template (klass,
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"sink"), "sink");
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gst_pad_set_setcaps_function (ttadec->sinkpad, gst_tta_dec_setcaps);
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ttadec->srcpad =
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gst_pad_new_from_template (gst_element_class_get_pad_template (klass,
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"src"), "src");
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gst_pad_use_fixed_caps (ttadec->srcpad);
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gst_element_add_pad (GST_ELEMENT (ttadec), ttadec->sinkpad);
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gst_element_add_pad (GST_ELEMENT (ttadec), ttadec->srcpad);
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gst_pad_set_chain_function (ttadec->sinkpad, gst_tta_dec_chain);
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ttadec->tta_buf.buffer = (guchar *) g_malloc (TTA_BUFFER_SIZE + 4);
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ttadec->tta_buf.buffer_end = ttadec->tta_buf.buffer + TTA_BUFFER_SIZE;
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}
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static void
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rice_init (adapt * rice, unsigned long k0, unsigned long k1)
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{
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rice->k0 = k0;
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rice->k1 = k1;
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rice->sum0 = shift_16[k0];
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rice->sum1 = shift_16[k1];
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}
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static void
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decoder_init (decoder * tta, long nch, long byte_size)
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{
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long shift = flt_set[byte_size - 1];
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long i;
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for (i = 0; i < nch; i++) {
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filter_init (&tta[i].fst, shift);
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rice_init (&tta[i].rice, 10, 10);
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tta[i].last = 0;
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}
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}
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static void
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get_binary (tta_buffer * tta_buf, guchar * buffer, unsigned long buffersize,
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unsigned long *value, unsigned long bits)
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{
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while (tta_buf->bit_count < bits) {
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if (tta_buf->bitpos == tta_buf->buffer_end) {
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int max =
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TTA_BUFFER_SIZE <=
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buffersize - tta_buf->offset ? TTA_BUFFER_SIZE : buffersize -
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tta_buf->offset;
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memcpy (tta_buf->buffer, buffer + tta_buf->offset, max);
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tta_buf->offset += max;
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tta_buf->bitpos = tta_buf->buffer;
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}
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tta_buf->bit_cache |= *tta_buf->bitpos << tta_buf->bit_count;
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tta_buf->bit_count += 8;
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tta_buf->bitpos++;
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}
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*value = tta_buf->bit_cache & bit_mask[bits];
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tta_buf->bit_cache >>= bits;
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tta_buf->bit_count -= bits;
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tta_buf->bit_cache &= bit_mask[tta_buf->bit_count];
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}
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static void
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get_unary (tta_buffer * tta_buf, guchar * buffer, unsigned long buffersize,
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unsigned long *value)
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{
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*value = 0;
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while (!(tta_buf->bit_cache ^ bit_mask[tta_buf->bit_count])) {
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if (tta_buf->bitpos == tta_buf->buffer_end) {
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int max =
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TTA_BUFFER_SIZE <=
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buffersize - tta_buf->offset ? TTA_BUFFER_SIZE : buffersize -
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tta_buf->offset;
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memcpy (tta_buf->buffer, buffer + tta_buf->offset, max);
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tta_buf->offset += max;
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tta_buf->bitpos = tta_buf->buffer;
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}
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*value += tta_buf->bit_count;
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tta_buf->bit_cache = *tta_buf->bitpos++;
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tta_buf->bit_count = 8;
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}
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while (tta_buf->bit_cache & 1) {
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(*value)++;
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tta_buf->bit_cache >>= 1;
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tta_buf->bit_count--;
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}
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tta_buf->bit_cache >>= 1;
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tta_buf->bit_count--;
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}
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static GstFlowReturn
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gst_tta_dec_chain (GstPad * pad, GstBuffer * in)
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{
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GstTtaDec *ttadec;
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GstBuffer *outbuf, *buf = GST_BUFFER (in);
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guchar *data, *p;
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decoder *dec;
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unsigned long outsize;
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unsigned long size;
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guint32 frame_samples;
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long res;
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long *prev;
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ttadec = GST_TTA_DEC (GST_OBJECT_PARENT (pad));
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data = GST_BUFFER_DATA (buf);
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size = GST_BUFFER_SIZE (buf);
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ttadec->tta_buf.bit_count = 0;
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ttadec->tta_buf.bit_cache = 0;
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ttadec->tta_buf.bitpos = ttadec->tta_buf.buffer_end;
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ttadec->tta_buf.offset = 0;
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decoder_init (ttadec->tta, ttadec->channels, ttadec->bytes);
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if (GST_BUFFER_DURATION_IS_VALID (buf)) {
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frame_samples =
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ceil ((gdouble) (GST_BUFFER_DURATION (buf) * ttadec->samplerate) /
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(gdouble) GST_SECOND);
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} else {
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frame_samples = ttadec->samplerate * FRAME_TIME;
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}
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outsize = ttadec->channels * frame_samples * ttadec->bytes;
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dec = ttadec->tta;
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p = ttadec->decdata;
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prev = ttadec->cache;
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for (res = 0;
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p < ttadec->decdata + frame_samples * ttadec->channels * ttadec->bytes;) {
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unsigned long unary, binary, depth, k;
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long value, temp_value;
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fltst *fst = &dec->fst;
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adapt *rice = &dec->rice;
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long *last = &dec->last;
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// decode Rice unsigned
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get_unary (&ttadec->tta_buf, data, size, &unary);
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switch (unary) {
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case 0:
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depth = 0;
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k = rice->k0;
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break;
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default:
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depth = 1;
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k = rice->k1;
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unary--;
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}
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if (k) {
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get_binary (&ttadec->tta_buf, data, size, &binary, k);
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value = (unary << k) + binary;
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} else
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value = unary;
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switch (depth) {
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case 1:
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rice->sum1 += value - (rice->sum1 >> 4);
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if (rice->k1 > 0 && rice->sum1 < shift_16[rice->k1])
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rice->k1--;
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else if (rice->sum1 > shift_16[rice->k1 + 1])
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rice->k1++;
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value += bit_shift[rice->k0];
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default:
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rice->sum0 += value - (rice->sum0 >> 4);
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if (rice->k0 > 0 && rice->sum0 < shift_16[rice->k0])
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rice->k0--;
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else if (rice->sum0 > shift_16[rice->k0 + 1])
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rice->k0++;
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}
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/* this only uses a temporary variable to silence a gcc warning */
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temp_value = DEC (value);
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value = temp_value;
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// decompress stage 1: adaptive hybrid filter
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hybrid_filter (fst, &value);
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// decompress stage 2: fixed order 1 prediction
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switch (ttadec->bytes) {
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case 1:
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value += PREDICTOR1 (*last, 4);
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break; // bps 8
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case 2:
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value += PREDICTOR1 (*last, 5);
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break; // bps 16
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case 3:
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value += PREDICTOR1 (*last, 5);
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break; // bps 24
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case 4:
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value += *last;
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break; // bps 32
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}
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*last = value;
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if (dec < ttadec->tta + ttadec->channels - 1) {
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*prev++ = value;
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dec++;
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} else {
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*prev = value;
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if (ttadec->channels > 1) {
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long *r = prev - 1;
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for (*prev += *r / 2; r >= ttadec->cache; r--)
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*r = *(r + 1) - *r;
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for (r = ttadec->cache; r < prev; r++)
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WRITE_BUFFER (r, ttadec->bytes, p);
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}
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WRITE_BUFFER (prev, ttadec->bytes, p);
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prev = ttadec->cache;
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res++;
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dec = ttadec->tta;
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}
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}
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outbuf = gst_buffer_new_and_alloc (outsize);
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memcpy (GST_BUFFER_DATA (outbuf), ttadec->decdata, outsize);
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GST_BUFFER_TIMESTAMP (outbuf) = GST_BUFFER_TIMESTAMP (buf);
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GST_BUFFER_DURATION (outbuf) = GST_BUFFER_DURATION (buf);
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gst_buffer_set_caps (outbuf, GST_PAD_CAPS (ttadec->srcpad));
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return gst_pad_push (ttadec->srcpad, outbuf);
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}
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gboolean
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gst_tta_dec_plugin_init (GstPlugin * plugin)
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{
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return gst_element_register (plugin, "ttadec",
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GST_RANK_NONE, GST_TYPE_TTA_DEC);
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}
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