tests: Build audio test with ctest

Signed-off-by: Anna Schumaker <Anna@OcarinaProject.net>
This commit is contained in:
Anna Schumaker 2016-03-16 10:34:49 -04:00 committed by Anna Schumaker
parent 926ca09275
commit 8f8e4a4459
3 changed files with 115 additions and 112 deletions

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@ -16,3 +16,4 @@ core_unit_test(Queue)
add_subdirectory(playlists/)
core_unit_test(Tempq)
core_unit_test(Audio)

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@ -37,7 +37,7 @@ res += SConscript("playlists/Sconscript")
core_objs += [ env.Object("../../core/playlist.c") ]
core_objs += [ env.Object("../../core/tempq.c") ]
core_objs += [ env.Object("../../core/core.c") ]
res += [ CoreTest("audio") ]
core_objs += [ env.Object("../../core/audio.c") ]
ignore.close()
Return("res")

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@ -55,32 +55,32 @@ static struct core_init_data test_init_data = {
static void test_init()
{
test_equal((void *)test_audio_player(), NULL);
test_equal((void *)audio_cur_track(), NULL);
test_equal(audio_cur_state(), GST_STATE_NULL);
test_equal((void *)audio_next(), NULL);
g_assert_null(test_audio_player());
g_assert_null(audio_cur_track());
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_NULL);
g_assert_null(audio_next());
core_init(NULL, NULL, &test_init_data);
test_equal(audio_load(NULL), (bool)false);
test_equal((void *)audio_next(), NULL);
test_equal((void *)audio_prev(), NULL);
g_assert_false(audio_load(NULL));
g_assert_null(audio_next());
g_assert_null(audio_prev());
test_send_error();
test_equal(audio_play(), (bool)false);
test_equal(audio_pause(), (bool)false);
test_equal(audio_seek(7), (bool)false);
test_equal(audio_position(), 0);
test_equal(audio_duration(), 0);
test_equal((void *)audio_cur_track(), NULL);
test_equal(audio_cur_state(), GST_STATE_NULL);
test_equal(load_count, 0);
test_equal(state_count, 0);
g_assert_false(audio_play());
g_assert_false(audio_pause());
g_assert_false(audio_seek(7));
g_assert_cmpuint(audio_position(), ==, 0);
g_assert_cmpuint(audio_duration(), ==, 0);
g_assert_null(audio_cur_track());
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_NULL);
g_assert_cmpuint(load_count, ==, 0);
g_assert_cmpuint(state_count, ==, 0);
playlist_new(PL_LIBRARY, "tests/Music/Hyrule Symphony");
while (idle_run_task()) {};
test_equal((void *)audio_cur_track(), NULL);
test_not_equal((void *)test_audio_player(), NULL);
g_assert_null(audio_cur_track());
g_assert_nonnull(test_audio_player());
}
static void test_playback()
@ -89,35 +89,37 @@ static void test_playback()
unsigned int i;
for (i = 0; i < 3; i++) {
test_loop_equal(audio_load(tracks[i]), (bool)(i == 0), i);
test_loop_equal(playlist_size(PL_SYSTEM, "History"), 1, i);
test_loop_equal(load_count, 1, i);
test_loop_equal(state_count, 1, i);
test_loop_equal(audio_cur_state(), GST_STATE_PLAYING, i);
test_loop_equal((void *)audio_cur_track(), (void *)tracks[0], i);
test_loop_equal(audio_duration(),
tracks[0]->tr_length * GST_SECOND, i);
} test_loop_passed();
if (i == 0)
g_assert_true(audio_load(tracks[i]));
else
g_assert_false(audio_load(tracks[i]));
g_assert_cmpuint(playlist_size(PL_SYSTEM, "History"), ==, 1);
g_assert_cmpuint(load_count, ==, 1);
g_assert_cmpuint(state_count, ==, 1);
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PLAYING);
g_assert(audio_cur_track() == tracks[0]);
g_assert_cmpuint(audio_duration(), ==, tracks[0]->tr_length * GST_SECOND);
}
test_equal(audio_pause(), (bool)true);
test_equal(audio_pause(), (bool)false);
test_equal(state_count, 2);
test_equal(audio_cur_state(), GST_STATE_PAUSED);
g_assert_true(audio_pause());
g_assert_false(audio_pause());
g_assert_cmpuint(state_count, ==, 2);
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PAUSED);
test_equal(test_audio_seek(5 * GST_SECOND), (bool)true);
test_equal(audio_position(), 5 * GST_SECOND);
test_equal(test_audio_seek(42 * GST_SECOND), (bool)true);
test_equal(audio_position(), 42 * GST_SECOND);
g_assert_true(test_audio_seek(5 * GST_SECOND));
g_assert_cmpuint(audio_position(), ==, 5 * GST_SECOND);
g_assert_true(test_audio_seek(42 * GST_SECOND));
g_assert_cmpuint(audio_position(), ==, 42 * GST_SECOND);
test_equal(audio_play(), (bool)true);
test_equal(audio_play(), (bool)false);
test_equal(state_count, 3);
test_equal(audio_pause(), (bool)true);
test_equal(state_count, 4);
test_equal(audio_cur_state(), GST_STATE_PAUSED);
g_assert_true(audio_play());
g_assert_false(audio_play());
g_assert_cmpuint(state_count, ==, 3);
g_assert_true(audio_pause());
g_assert_cmpuint(state_count, ==, 4);
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PAUSED);
/* Check duration again now that track is fully loaded. */
test_equal(audio_duration(), track_get(0)->tr_length * GST_SECOND);
g_assert_cmpuint(audio_duration(), ==, track_get(0)->tr_length * GST_SECOND);
}
static void test_next()
@ -133,31 +135,29 @@ static void test_next()
queue_add(temp_q, track_get(0));
for (i = 2; i >= 0; i--) {
test_loop_equal(queue_size(temp_q), i + 1, i);
if (i > 0) {
test_loop_equal(audio_next()->tr_track, track_get(i)->tr_track, i);
} else /* Simulate an error. */
g_assert_cmpuint(queue_size(temp_q), ==, i + 1);
if (i > 0)
g_assert_cmpuint(audio_next()->tr_track, ==, track_get(i)->tr_track);
else /* Simulate an error. */
test_send_error();
test_loop_equal((void *)queue_at(history_q, 0),
(void *)track_get(i), i);
test_loop_equal(audio_cur_state(), GST_STATE_PLAYING, i);
test_loop_equal((void *)audio_cur_track(),
(void *)track_get(i), i);
} test_loop_passed();
test_equal(state_count, 3);
test_equal((void *)tempq_get(0), NULL);
g_assert(queue_at(history_q, 0) == track_get(i));
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PLAYING);
g_assert(audio_cur_track() == track_get(i));
}
g_assert_cmpuint(state_count, ==, 3);
g_assert_null(tempq_get(0));
/* Tracks should now be picked from the collection. */
for (i = 1; i <= 3; i++) {
if (i < 3) {
test_loop_equal(audio_next()->tr_track, i, i);
} else /* Simulate an error. */
if (i < 3)
g_assert_cmpuint(audio_next()->tr_track, ==, i);
else /* Simulate an error. */
test_send_error();
test_loop_equal(queue_at(history_q, 0)->tr_track, i, i);
test_loop_equal(audio_cur_state(), GST_STATE_PLAYING, i);
test_loop_equal(audio_cur_track()->tr_track, i, i);
} test_loop_passed();
test_equal(state_count, 6);
g_assert_cmpuint(queue_at(history_q, 0)->tr_track, ==, i);
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PLAYING);
g_assert_cmpuint(audio_cur_track()->tr_track, ==, i);
}
g_assert_cmpuint(state_count, ==, 6);
}
static void test_prev()
@ -166,36 +166,36 @@ static void test_prev()
struct track *track = queue_at(history_q, 0);
state_count = 0;
test_equal(audio_prev()->tr_track, 2);
test_equal((void *)queue_at(history_q, 0), (void *)track);
test_equal(audio_cur_state(), GST_STATE_PLAYING);
test_equal(audio_cur_track()->tr_track, 2);
test_equal(state_count, 1);
g_assert_cmpuint(audio_prev()->tr_track, ==, 2);
g_assert(queue_at(history_q, 0) == track);
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PLAYING);
g_assert_cmpuint(audio_cur_track()->tr_track, ==, 2);
g_assert_cmpuint(state_count, ==, 1);
test_equal(audio_prev()->tr_track, 1);
test_equal((void *)queue_at(history_q, 0), (void *)track);
test_equal(audio_cur_state(), GST_STATE_PLAYING);
test_equal(audio_cur_track()->tr_track, 1);
test_equal(state_count, 2);
g_assert_cmpuint(audio_prev()->tr_track, ==, 1);
g_assert(queue_at(history_q, 0) == track);
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PLAYING);
g_assert_cmpuint(audio_cur_track()->tr_track, ==, 1);
g_assert_cmpuint(state_count, ==, 2);
test_equal(audio_pause(), (bool)true);
test_equal(audio_prev()->tr_track, track_get(0)->tr_track);
test_equal((void *)queue_at(history_q, 0), (void *)track);
test_equal(audio_cur_state(), GST_STATE_PLAYING);
test_equal(audio_cur_track()->tr_track, track_get(0)->tr_track);
test_equal(state_count, 4);
g_assert_true(audio_pause());
g_assert_cmpuint(audio_prev()->tr_track, ==, track_get(0)->tr_track);
g_assert(queue_at(history_q, 0) == track);
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PLAYING);
g_assert_cmpuint(audio_cur_track()->tr_track, ==, track_get(0)->tr_track);
g_assert_cmpuint(state_count, ==, 4);
test_equal(audio_prev()->tr_track, track_get(1)->tr_track);
test_equal((void *)queue_at(history_q, 0), (void *)track);
test_equal(audio_cur_state(), GST_STATE_PLAYING);
test_equal(audio_cur_track()->tr_track, track_get(1)->tr_track);
test_equal(state_count, 5);
g_assert_cmpuint(audio_prev()->tr_track, ==, track_get(1)->tr_track);
g_assert(queue_at(history_q, 0) == track);
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PLAYING);
g_assert_cmpuint(audio_cur_track()->tr_track, ==, track_get(1)->tr_track);
g_assert_cmpuint(state_count, ==, 5);
test_equal(audio_prev()->tr_track, track_get(2)->tr_track);
test_equal((void *)queue_at(history_q, 0), (void *)track);
test_equal(audio_cur_state(), GST_STATE_PLAYING);
test_equal(audio_cur_track()->tr_track, track_get(2)->tr_track);
test_equal(state_count, 6);
g_assert_cmpuint(audio_prev()->tr_track, ==, track_get(2)->tr_track);
g_assert(queue_at(history_q, 0) == track);
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PLAYING);
g_assert_cmpuint(audio_cur_track()->tr_track, ==, track_get(2)->tr_track);
g_assert_cmpuint(state_count, ==, 6);
}
void test_autopause()
@ -204,47 +204,49 @@ void test_autopause()
int i;
audio_pause_after(3);
test_equal(pause_count, 3);
g_assert_cmpuint(pause_count, ==, 3);
pause_count = 0;
audio_pause_after(3);
test_equal(pause_count, 0);
g_assert_cmpuint(pause_count, ==, 0);
audio_pause_after(5);
test_equal(pause_count, 5);
g_assert_cmpuint(pause_count, ==, 5);
state_count = 0;
for (i = 4; i > -1; i--) {
audio_eos();
test_loop_equal(pause_count, i, i);
test_loop_equal(audio_cur_state(), GST_STATE_PLAYING, i);
test_loop_equal((void *)queue_at(history_q, 0),
(void *)audio_cur_track(), i);
} test_loop_passed();
test_equal(state_count, 5);
g_assert_cmpuint(pause_count, ==, i);
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PLAYING);
g_assert(queue_at(history_q, 0) == audio_cur_track());
}
g_assert_cmpuint(state_count, ==, 5);
audio_eos();
test_equal(pause_count, -1);
test_equal(audio_cur_state(), GST_STATE_PAUSED);
test_equal(state_count, 6);
g_assert_cmpint(pause_count, ==, -1);
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PAUSED);
g_assert_cmpuint(state_count, ==, 6);
test_send_error();
test_equal(audio_cur_state(), GST_STATE_PAUSED);
g_assert_cmpuint(audio_cur_state(), ==, GST_STATE_PAUSED);
}
static void test_deinit()
{
core_deinit();
test_equal((void *)audio_cur_track(), NULL);
test_equal((void *)test_audio_player(), NULL);
g_assert_null(audio_cur_track());
g_assert_null(test_audio_player());
}
DECLARE_UNIT_TESTS(
UNIT_TEST("Audio Initialization", test_init),
UNIT_TEST("Audio Playback", test_playback),
UNIT_TEST("Audio Next", test_next),
UNIT_TEST("Audio Previous", test_prev),
UNIT_TEST("Audio Automatic Pausing", test_autopause),
UNIT_TEST("Audio Deinitialization", test_deinit),
);
int main(int argc, char **argv)
{
g_test_init(&argc, &argv, NULL);
g_test_add_func("/Core/Audio/Initialization", test_init);
g_test_add_func("/Core/Audio/Playback", test_playback);
g_test_add_func("/Core/Audio/Next", test_next);
g_test_add_func("/Core/Audio/Previous", test_prev);
g_test_add_func("/Core/Audio/Automatic Pausing", test_autopause);
g_test_add_func("/Core/Audio/Deinitialization", test_deinit);
return g_test_run();
}