/***
Olive - Non-Linear video Editor
Copyright (c) 2022 Olive Team
Modifications Copyright (c) 2025 mikesolar
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see .
***/
#include "core.h"
#include "node/block/clip/clip.h"
#include "node/block/transition/crossdissolve/crossdissolvetransition.h"
#include "node/math/math/math.h"
#include "node/math/merge/merge.h"
#include "node/project.h"
#include "node/project/sequence/sequence.h"
#include "testutil.h"
#include "timeline/timelineundogeneral.h"
#include "timeline/timelineundopointer.h"
#include "undo/undocommand.h"
namespace olive
{
#define TIMELINE_TEST_START \
ColorManager::set_up_default_config(); \
Project project; \
Sequence sequence; \
sequence.setParent(&project)
OAK_ADD_TEST(add_track)
{
TIMELINE_TEST_START;
Track *first_video_track, *first_audio_track;
{
// Test creating initial video track
first_video_track = TimelineAddTrackCommand::run_immediately(
sequence.track_list(Track::k_video));
OAK_ASSERT(sequence.get_connected_output(Sequence::k_texture_input) ==
first_video_track);
OAK_ASSERT(sequence.track_list(Track::k_video)->get_track_count() == 1);
OAK_ASSERT(sequence.track_list(Track::k_video)->get_track_at(0) ==
first_video_track);
}
{
// Test creating initial audio track
first_audio_track = TimelineAddTrackCommand::run_immediately(
sequence.track_list(Track::k_audio));
OAK_ASSERT(sequence.get_connected_output(Sequence::k_samples_input) ==
first_audio_track);
OAK_ASSERT(sequence.track_list(Track::k_audio)->get_track_count() == 1);
OAK_ASSERT(sequence.track_list(Track::k_audio)->get_track_at(0) ==
first_audio_track);
}
{
// Test creating second video track with merge
Track *second_video_track = TimelineAddTrackCommand::run_immediately(
sequence.track_list(Track::k_video), true);
OAK_ASSERT(sequence.get_connected_output(Sequence::k_texture_input) !=
first_video_track);
OAK_ASSERT(sequence.get_connected_output(Sequence::k_texture_input) !=
second_video_track);
OAK_ASSERT(sequence.track_list(Track::k_video)->get_track_count() == 2);
OAK_ASSERT(sequence.track_list(Track::k_video)->get_track_at(1) ==
second_video_track);
MergeNode *merge = dynamic_cast(
sequence.get_connected_output(Sequence::k_texture_input));
OAK_ASSERT(merge);
OAK_ASSERT(merge->get_connected_output(MergeNode::k_base_in) ==
first_video_track);
OAK_ASSERT(merge->get_connected_output(MergeNode::k_blend_in) ==
second_video_track);
}
{
// Test creating second audio track with merge
Track *second_audio_track = TimelineAddTrackCommand::run_immediately(
sequence.track_list(Track::k_audio), true);
OAK_ASSERT(sequence.get_connected_output(Sequence::k_samples_input) !=
first_audio_track);
OAK_ASSERT(sequence.get_connected_output(Sequence::k_samples_input) !=
second_audio_track);
OAK_ASSERT(sequence.track_list(Track::k_audio)->get_track_count() == 2);
OAK_ASSERT(sequence.track_list(Track::k_audio)->get_track_at(1) ==
second_audio_track);
MathNode *merge = dynamic_cast(
sequence.get_connected_output(Sequence::k_samples_input));
OAK_ASSERT(merge);
OAK_ASSERT(merge->get_connected_output(MathNode::k_param_a_in) ==
first_audio_track);
OAK_ASSERT(merge->get_connected_output(MathNode::k_param_b_in) ==
second_audio_track);
}
OAK_TEST_END;
}
OAK_ADD_TEST(SequenceDefaults)
{
TIMELINE_TEST_START;
sequence.add_default_nodes();
OAK_ASSERT(sequence.get_tracks().size() == 2);
Track *tex_connect =
dynamic_cast