254 lines
5.8 KiB
C++
254 lines
5.8 KiB
C++
/*
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* Copyright 2013 (c) Anna Schumaker.
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*/
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#include <core/audio.h>
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extern "C" {
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#include <core/collection.h>
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#include <core/history.h>
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#include <core/idle.h>
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}
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#include <core/core.h>
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#include "test.h"
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struct track *TRACK_NULL = NULL;
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static unsigned int load_count = 0;
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static bool test_audio_seek(gint64 pos)
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{
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bool ret = audio_seek(pos);
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GstState state;
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do {
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gst_element_get_state(audio_get_player(), &state, NULL,
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GST_CLOCK_TIME_NONE);
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} while (state != GST_STATE_PAUSED && state != GST_STATE_PLAYING);
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return ret;
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}
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class TestDriver : public AudioDriver
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{
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public:
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bool playing;
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std::string cur_file;
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TestDriver() : playing(false) {}
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~TestDriver() {};
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bool is_playing() { return playing; }
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} driver;
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static void test_audio_load(struct track *track, GstState state)
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{
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load_count++;
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}
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static struct audio_ops test_audio_ops = {
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test_audio_load,
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};
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static struct core_init_data test_init_data = {
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NULL,
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NULL,
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NULL,
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NULL,
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&test_audio_ops,
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};
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static void test_init()
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{
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test_equal(audio_get_player(), NULL);
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test_equal(audio_cur_track(), NULL);
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test_equal(audio_get_player(), NULL);
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core :: init(NULL, NULL, &test_init_data);
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test_equal(audio_load(NULL), false);
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test_equal(audio_play(), false);
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test_equal(audio_pause(), false);
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test_equal(audio_stop(), false);
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test_equal(audio_seek(7), false);
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test_equal(audio_position(), 0);
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test_equal(audio_duration(), 0);
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test_equal(audio_cur_track(), NULL);
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test_equal(load_count, 0);
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collection_add("tests/Music/Hyrule Symphony");
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while (idle_run_task()) {};
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test_equal(audio_cur_track(), NULL);
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test_not_equal(audio_get_player(), NULL);
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}
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static void test_playback()
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{
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test_equal(audio_load(track_get(0)), true);
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test_equal(load_count, 1);
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test_equal(audio_cur_track(), track_get(0));
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test_equal(queue_size(history_get_queue()), 1);
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test_equal(audio_duration(), track_get(0)->tr_length * GST_SECOND);
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test_equal(audio_load(NULL), false);
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test_equal(load_count, 1);
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test_equal(audio_cur_track(), track_get(0));
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test_equal(queue_size(history_get_queue()), 1);
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test_equal(audio_load(track_get(0)), false);
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test_equal(load_count, 1);
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test_equal(queue_size(history_get_queue()), 1);
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test_equal(audio_play(), true);
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test_equal(audio_play(), false);
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test_equal(audio_pause(), true);
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test_equal(audio_pause(), false);
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test_equal(test_audio_seek(5 * GST_SECOND), true);
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test_equal(audio_position(), 5 * GST_SECOND);
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test_equal(audio_stop(), true);
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test_equal(audio_position(), 0);
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test_equal(test_audio_seek(42 * GST_SECOND), true);
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test_equal(audio_position(), 42 * GST_SECOND);
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test_equal(audio_play(), true);
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test_equal(audio_stop(), true);
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test_equal(audio_pause(), false);
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test_equal(audio_position(), 0);
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/* Check duration again now that track is fully loaded. */
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test_equal(audio_duration(), track_get(0)->tr_length * GST_SECOND);
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}
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static void test_deinit()
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{
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core :: deinit();
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test_equal(audio_cur_track(), NULL);
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test_equal(audio_get_player(), NULL);
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}
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void test_pre_init()
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{
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TestDriver *driver = (TestDriver *)audio :: get_driver();
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test_equal(audio_cur_track(), TRACK_NULL);
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audio_play();
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test_equal(driver->playing, false);
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driver->playing = true;
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audio_pause();
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test_equal(driver->playing, true);
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audio_stop();
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test_equal(driver->playing, true);
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driver->playing = false;
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audio_seek(4242);
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test_equal(audio_position(), (long)0);
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test_equal(audio_duration(), (long)0);
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audio :: next();
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test_equal(audio_cur_track(), TRACK_NULL);
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audio :: prev();
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test_equal(audio_cur_track(), TRACK_NULL);
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}
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void test_init2()
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{
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struct track *track;
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test_cp_data_dir();
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audio_init(NULL, NULL, &test_audio_ops);
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track = audio_cur_track();
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test_equal(track, TRACK_NULL);
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core :: init(NULL, NULL, &test_init_data);
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track = audio_cur_track();
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test_not_equal(track, TRACK_NULL);
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}
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void test_track_controls()
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{
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struct track *track = NULL;
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TestDriver *driver = (TestDriver *)audio :: get_driver();
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queue_unset_flag(collection_get_queue(), Q_RANDOM);
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driver->playing = audio_pause();
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audio :: next();
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test_not_equal(audio_cur_track()->tr_dbe.dbe_index, (unsigned)2);
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test_equal(driver->is_playing(), false);
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audio_play();
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audio :: next();
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test_equal(driver->is_playing(), true);
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audio_load(track);
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test_not_equal(audio_cur_track(), track);
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track = track_get(0);
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audio_seek(4242);
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audio_load(track);
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test_equal(driver->is_playing(), true);
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test_equal(audio_position(), (long)0);
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audio_seek(4242);
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audio_load(track);
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test_equal(driver->is_playing(), true);
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test_equal(audio_position(), (long)4242);
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track = audio_cur_track();
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driver->eos();
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test_not_equal(audio_cur_track(), track);
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}
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void test_autopause()
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{
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TestDriver *driver = (TestDriver *)audio :: get_driver();
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audio_play();
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test_equal(audio :: pause_enabled(), false);
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test_equal(audio :: pause_count(), (unsigned)0);
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audio :: pause_after(true, 3);
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test_equal(audio :: pause_enabled(), true);
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test_equal(audio :: pause_count(), (unsigned)3);
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audio :: pause_after(false, 3);
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test_equal(audio :: pause_enabled(), false);
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test_equal(audio :: pause_count(), (unsigned)3);
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audio :: pause_after(false, 5);
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test_equal(audio :: pause_enabled(), true);
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test_equal(audio :: pause_count(), (unsigned)5);
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for (int i = 4; i >= 0; i--) {
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driver->eos();
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test_equal(audio :: pause_enabled(), true);
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test_equal(audio :: pause_count(), (unsigned)i);
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test_equal(driver->is_playing(), true);
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}
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driver->eos();
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test_equal(audio :: pause_enabled(), false);
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test_equal(audio :: pause_count(), (unsigned)0);
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test_equal(driver->is_playing(), false);
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}
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DECLARE_UNIT_TESTS(
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UNIT_TEST("Audio Initialization", test_init),
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UNIT_TEST("Audio Playback", test_playback),
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UNIT_TEST("Audio Deinitialization", test_deinit),
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UNIT_TEST("Test Audio Pre-Init", test_pre_init),
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UNIT_TEST("Test Audio Init 2", test_init2),
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UNIT_TEST("Test Audio Automatic Pausing", test_autopause),
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);
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