mirror of
https://gitlab.freedesktop.org/gstreamer/gstreamer.git
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31461ebd0b
Original commit message from CVS: * gst/audiotestsrc/gstaudiotestsrc.c: (gst_audiotestsrc_class_init), (gst_audiotestsrc_get_times), (gst_audiotestsrc_create): * gst/sine/gstsinesrc.c: (gst_sinesrc_class_init), (gst_sinesrc_get_times), (gst_sinesrc_create): * gst/videotestsrc/gstvideotestsrc.c: (gst_videotestsrc_class_init), (gst_videotestsrc_get_times), (gst_videotestsrc_create): The base class can now sync for us.
438 lines
12 KiB
C
438 lines
12 KiB
C
/* GStreamer
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* Copyright (C) 1999,2000 Erik Walthinsen <omega@cse.ogi.edu>
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* 2000 Wim Taymans <wtay@chello.be>
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* 2001 Steve Baker <stevebaker_org@yahoo.co.uk>
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*
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* gstsinesrc.c:
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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., 59 Temple Place - Suite 330,
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* Boston, MA 02111-1307, USA.
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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 <math.h>
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#include <stdlib.h>
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#include <string.h>
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#include <gst/controller/gstcontroller.h>
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#include "gstsinesrc.h"
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GstElementDetails gst_sinesrc_details = {
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"Sine-wave src",
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"Source/Audio",
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"Create a sine wave of a given frequency and volume",
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"Erik Walthinsen <omega@cse.ogi.edu>"
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};
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enum
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{
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PROP_0,
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PROP_SAMPLES_PER_BUFFER,
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PROP_FREQ,
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PROP_VOLUME,
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PROP_IS_LIVE,
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PROP_TIMESTAMP_OFFSET,
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};
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static GstStaticPadTemplate gst_sinesrc_src_template =
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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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"endianness = (int) BYTE_ORDER, "
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"signed = (boolean) true, "
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"width = (int) 16, "
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"depth = (int) 16, " "rate = (int) [ 1, MAX ], " "channels = (int) 1")
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);
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GST_BOILERPLATE (GstSineSrc, gst_sinesrc, GstBaseSrc, GST_TYPE_BASE_SRC);
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static void gst_sinesrc_set_property (GObject * object,
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guint prop_id, const GValue * value, GParamSpec * pspec);
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static void gst_sinesrc_get_property (GObject * object,
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guint prop_id, GValue * value, GParamSpec * pspec);
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static gboolean gst_sinesrc_setcaps (GstBaseSrc * basesrc, GstCaps * caps);
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static void gst_sinesrc_src_fixate (GstPad * pad, GstCaps * caps);
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static const GstQueryType *gst_sinesrc_get_query_types (GstPad * pad);
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static gboolean gst_sinesrc_src_query (GstPad * pad, GstQuery * query);
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static void gst_sinesrc_get_times (GstBaseSrc * basesrc, GstBuffer * buffer,
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GstClockTime * start, GstClockTime * end);
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static GstFlowReturn gst_sinesrc_create (GstBaseSrc * basesrc, guint64 offset,
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guint length, GstBuffer ** buffer);
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static gboolean gst_sinesrc_start (GstBaseSrc * basesrc);
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static gboolean gst_sinesrc_newsegment (GstBaseSrc * basesrc);
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static void
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gst_sinesrc_base_init (gpointer g_class)
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{
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GstElementClass *element_class = GST_ELEMENT_CLASS (g_class);
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gst_element_class_add_pad_template (element_class,
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gst_static_pad_template_get (&gst_sinesrc_src_template));
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gst_element_class_set_details (element_class, &gst_sinesrc_details);
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}
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static void
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gst_sinesrc_class_init (GstSineSrcClass * klass)
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{
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GObjectClass *gobject_class;
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GstBaseSrcClass *gstbasesrc_class;
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gobject_class = (GObjectClass *) klass;
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gstbasesrc_class = (GstBaseSrcClass *) klass;
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gobject_class->set_property = gst_sinesrc_set_property;
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gobject_class->get_property = gst_sinesrc_get_property;
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g_object_class_install_property (gobject_class,
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PROP_SAMPLES_PER_BUFFER,
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g_param_spec_int ("samplesperbuffer", "Samples per buffer",
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"Number of samples in each outgoing buffer",
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1, G_MAXINT, 1024, G_PARAM_READWRITE));
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g_object_class_install_property (gobject_class, PROP_FREQ,
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g_param_spec_double ("freq", "Frequency", "Frequency of sine source",
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0.0, 20000.0, 440.0, G_PARAM_READWRITE | GST_PARAM_CONTROLLABLE));
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g_object_class_install_property (gobject_class, PROP_VOLUME,
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g_param_spec_double ("volume", "Volume", "Volume",
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0.0, 1.0, 0.8, G_PARAM_READWRITE | GST_PARAM_CONTROLLABLE));
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g_object_class_install_property (gobject_class, PROP_IS_LIVE,
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g_param_spec_boolean ("is-live", "Is Live",
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"Whether to act as a live source", FALSE, G_PARAM_READWRITE));
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g_object_class_install_property (G_OBJECT_CLASS (klass),
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PROP_TIMESTAMP_OFFSET,
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g_param_spec_int64 ("timestamp-offset", "Timestamp offset",
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"An offset added to timestamps set on buffers (in ns)", G_MININT64,
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G_MAXINT64, 0, G_PARAM_READWRITE));
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gstbasesrc_class->set_caps = GST_DEBUG_FUNCPTR (gst_sinesrc_setcaps);
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gstbasesrc_class->start = GST_DEBUG_FUNCPTR (gst_sinesrc_start);
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gstbasesrc_class->create = GST_DEBUG_FUNCPTR (gst_sinesrc_create);
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gstbasesrc_class->get_times = GST_DEBUG_FUNCPTR (gst_sinesrc_get_times);
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gstbasesrc_class->newsegment = GST_DEBUG_FUNCPTR (gst_sinesrc_newsegment);
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}
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static void
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gst_sinesrc_init (GstSineSrc * src, GstSineSrcClass * g_class)
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{
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GstPad *pad = GST_BASE_SRC_PAD (src);
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gst_pad_set_fixatecaps_function (pad, gst_sinesrc_src_fixate);
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gst_pad_set_query_function (pad, gst_sinesrc_src_query);
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gst_pad_set_query_type_function (pad, gst_sinesrc_get_query_types);
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src->samplerate = 44100;
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src->volume = 1.0;
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src->freq = 440.0;
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gst_base_src_set_live (GST_BASE_SRC (src), FALSE);
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src->samples_per_buffer = 1024;
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src->timestamp = G_GINT64_CONSTANT (0);
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src->offset = G_GINT64_CONSTANT (0);
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src->timestamp_offset = G_GINT64_CONSTANT (0);
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}
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static void
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gst_sinesrc_src_fixate (GstPad * pad, GstCaps * caps)
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{
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GstStructure *structure;
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structure = gst_caps_get_structure (caps, 0);
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gst_caps_structure_fixate_field_nearest_int (structure, "rate", 44100);
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}
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static gboolean
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gst_sinesrc_setcaps (GstBaseSrc * basesrc, GstCaps * caps)
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{
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GstSineSrc *sinesrc;
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const GstStructure *structure;
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gboolean ret;
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sinesrc = GST_SINESRC (basesrc);
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structure = gst_caps_get_structure (caps, 0);
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ret = gst_structure_get_int (structure, "rate", &sinesrc->samplerate);
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return ret;
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}
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static const GstQueryType *
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gst_sinesrc_get_query_types (GstPad * pad)
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{
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static const GstQueryType query_types[] = {
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GST_QUERY_POSITION,
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GST_QUERY_DURATION,
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0,
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};
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return query_types;
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}
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static gboolean
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gst_sinesrc_src_query (GstPad * pad, GstQuery * query)
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{
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gboolean res = FALSE;
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GstSineSrc *src;
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src = GST_SINESRC (GST_PAD_PARENT (pad));
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switch (GST_QUERY_TYPE (query)) {
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case GST_QUERY_POSITION:
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{
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GstFormat format;
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gint64 current;
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gst_query_parse_position (query, &format, NULL);
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switch (format) {
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case GST_FORMAT_TIME:
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current = src->timestamp;
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res = TRUE;
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break;
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case GST_FORMAT_DEFAULT: /* samples */
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current = src->offset / 2; /* 16bpp audio */
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res = TRUE;
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break;
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case GST_FORMAT_BYTES:
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current = src->offset;
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res = TRUE;
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break;
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default:
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break;
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}
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if (res) {
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gst_query_set_position (query, format, current);
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}
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break;
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}
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case GST_QUERY_DURATION:
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{
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GstFormat format;
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gst_query_parse_duration (query, &format, NULL);
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if (format == GST_FORMAT_TIME && GST_BASE_SRC (src)->num_buffers > 0) {
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gst_query_set_duration (query, GST_FORMAT_TIME, GST_SECOND *
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GST_BASE_SRC (src)->num_buffers * src->samples_per_buffer /
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src->samplerate);
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res = TRUE;
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} else {
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gst_query_set_duration (query, format, -1);
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}
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break;
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}
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default:
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break;
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}
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return res;
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}
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static void
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gst_sinesrc_get_times (GstBaseSrc * basesrc, GstBuffer * buffer,
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GstClockTime * start, GstClockTime * end)
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{
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/* for live sources, sync on the timestamp of the buffer */
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if (gst_base_src_is_live (basesrc)) {
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GstClockTime timestamp = GST_BUFFER_TIMESTAMP (buffer);
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if (GST_CLOCK_TIME_IS_VALID (timestamp)) {
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/* get duration to calculate end time */
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GstClockTime duration = GST_BUFFER_DURATION (buffer);
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if (GST_CLOCK_TIME_IS_VALID (duration)) {
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*end = timestamp + duration;
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}
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*start = timestamp;
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}
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} else {
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*start = -1;
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*end = -1;
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}
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}
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static GstFlowReturn
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gst_sinesrc_create (GstBaseSrc * basesrc, guint64 offset,
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guint length, GstBuffer ** buffer)
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{
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GstSineSrc *src;
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GstBuffer *buf;
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guint tdiff;
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gdouble step;
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gint16 *samples;
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gint i;
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src = GST_SINESRC (basesrc);
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if (!src->tags_pushed) {
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GstTagList *taglist;
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GstEvent *event;
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taglist = gst_tag_list_new ();
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gst_tag_list_add (taglist, GST_TAG_MERGE_APPEND,
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GST_TAG_DESCRIPTION, "sine wave", NULL);
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event = gst_event_new_tag (taglist);
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gst_pad_push_event (basesrc->srcpad, event);
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src->tags_pushed = TRUE;
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}
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tdiff = src->samples_per_buffer * GST_SECOND / src->samplerate;
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buf = gst_buffer_new_and_alloc (src->samples_per_buffer * sizeof (gint16));
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gst_buffer_set_caps (buf, GST_PAD_CAPS (basesrc->srcpad));
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GST_BUFFER_TIMESTAMP (buf) = src->timestamp + src->timestamp_offset;
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/* offset is the number of samples */
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GST_BUFFER_OFFSET (buf) = src->offset;
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GST_BUFFER_OFFSET_END (buf) = src->offset + src->samples_per_buffer;
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GST_BUFFER_DURATION (buf) = tdiff;
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gst_object_sync_values (G_OBJECT (src), src->timestamp);
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samples = (gint16 *) GST_BUFFER_DATA (buf);
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src->timestamp += tdiff;
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src->offset += src->samples_per_buffer;
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step = 2 * M_PI * src->freq / src->samplerate;
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for (i = 0; i < src->samples_per_buffer; i++) {
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src->accumulator += step;
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if (src->accumulator >= 2 * M_PI)
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src->accumulator -= 2 * M_PI;
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samples[i] = sin (src->accumulator) * src->volume * 32767.0;
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}
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*buffer = buf;
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return GST_FLOW_OK;
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}
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static void
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gst_sinesrc_set_property (GObject * object, guint prop_id,
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const GValue * value, GParamSpec * pspec)
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{
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GstSineSrc *src = GST_SINESRC (object);
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switch (prop_id) {
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case PROP_SAMPLES_PER_BUFFER:
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src->samples_per_buffer = g_value_get_int (value);
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break;
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case PROP_FREQ:
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src->freq = g_value_get_double (value);
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break;
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case PROP_VOLUME:
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src->volume = g_value_get_double (value);
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break;
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case PROP_IS_LIVE:
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gst_base_src_set_live (GST_BASE_SRC (src), g_value_get_boolean (value));
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break;
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case PROP_TIMESTAMP_OFFSET:
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src->timestamp_offset = g_value_get_int64 (value);
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break;
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default:
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G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
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break;
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}
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}
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static void
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gst_sinesrc_get_property (GObject * object, guint prop_id,
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GValue * value, GParamSpec * pspec)
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{
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GstSineSrc *src = GST_SINESRC (object);
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switch (prop_id) {
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case PROP_SAMPLES_PER_BUFFER:
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g_value_set_int (value, src->samples_per_buffer);
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break;
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case PROP_FREQ:
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g_value_set_double (value, src->freq);
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break;
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case PROP_VOLUME:
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g_value_set_double (value, src->volume);
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break;
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case PROP_IS_LIVE:
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g_value_set_boolean (value, gst_base_src_is_live (GST_BASE_SRC (src)));
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break;
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case PROP_TIMESTAMP_OFFSET:
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g_value_set_int64 (value, src->timestamp_offset);
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break;
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default:
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G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
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break;
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}
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}
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static gboolean
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gst_sinesrc_newsegment (GstBaseSrc * basesrc)
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{
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GstSineSrc *src = GST_SINESRC (basesrc);
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GstEvent *event;
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gint64 start, end;
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if (basesrc->num_buffers_left > 0) {
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start = src->timestamp;
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end = start + GST_SECOND * basesrc->num_buffers_left *
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src->samples_per_buffer / src->samplerate;
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} else {
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start = src->timestamp;
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end = GST_CLOCK_TIME_NONE;
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}
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GST_DEBUG_OBJECT (basesrc, "Sending newsegment from %" GST_TIME_FORMAT
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" to %" GST_TIME_FORMAT, GST_TIME_ARGS (start), GST_TIME_ARGS (end));
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event = gst_event_new_newsegment (FALSE, 1.0, GST_FORMAT_TIME, start, end, 0);
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return gst_pad_push_event (basesrc->srcpad, event);
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}
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static gboolean
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gst_sinesrc_start (GstBaseSrc * basesrc)
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{
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GstSineSrc *src = GST_SINESRC (basesrc);
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src->timestamp = G_GINT64_CONSTANT (0);
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src->offset = G_GINT64_CONSTANT (0);
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return TRUE;
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}
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static gboolean
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plugin_init (GstPlugin * plugin)
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{
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return gst_element_register (plugin, "sinesrc",
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GST_RANK_NONE, GST_TYPE_SINESRC);
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}
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GST_PLUGIN_DEFINE (GST_VERSION_MAJOR,
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GST_VERSION_MINOR,
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"sine",
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"Sine audio wave generator",
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plugin_init, VERSION, "LGPL", GST_PACKAGE_NAME, GST_PACKAGE_ORIGIN)
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