Files
Mike-Solar 66d761b4b7 R8: finish app/ pure C ABI migration (P3-P9) and make OTIO required
- app/ no longer includes engine C++ headers nor holds engine C++ types:
  engine access goes through the oakengine C ABI plus C++ wrappers
  (oakutil/oaknode.h, oakutil/oakvideo.h) and app-local mirror types
  (tooltypes, trackreferencehandle, timelinecommonapp, keyframetypes,
  subtitleapp, serializedlayoutinfoapp, nodevaluehandle, sliderdisplaytypeapp)
- engine: new C ABI functions for block/track/clip/transition navigation
  and predicates, links, caches, waveform/playback, disk folder,
  sequence_track_list, node_free, footage_is_valid, block_get_track,
  get_brush; loadotio/saveotio ported to the current engine API
- OTIO is now a required dependency: CI and CD build it on every
  platform, FindOpenTimelineIO fixed for OTIO 0.16/0.19 (the old deps
  include requirement silently disabled OTIO everywhere), runtime
  libraries are bundled into packages and copied next to macOS binaries
  (oak_copy_otio_runtime)
- fix ProjectViewModel drag&drop mime read/write size mismatch (segfault)
- unify color label naming (k_olive -> "Oak") in the app-side mirror
- docs: OTIO required, FFmpeg minimum corrected to 6.0 (en/zh)
- gtest suite: 1925 passed, 0 failed
2026-07-31 22:46:52 +08:00

229 lines
7.0 KiB
C++

/***
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 <http://www.gnu.org/licenses/>.
***/
#include "widget/timelinewidget/timelinewidget.h"
#include "oakengine/node.h"
#include "oakengine/timeline.h"
#include "oakengine/undo.h"
#include "ripple.h"
#include "widget/timelinewidget/trackhandle.h"
namespace olive
{
RippleTool::RippleTool(TimelineWidget *parent)
: PointerTool(parent)
{
set_movement_allowed(false);
set_gap_trimming_allowed(true);
}
void RippleTool::initiate_drag(OakEngineBlock *clicked_item,
TimelineApp::MovementMode trim_mode,
Qt::KeyboardModifiers modifiers)
{
initiate_drag_internal(clicked_item, trim_mode, modifiers, true, true, false);
if (!parent()->has_ghosts()) {
return;
}
// Find the earliest ripple
Rational earliest_ripple = RATIONAL_MAX;
foreach (TimelineViewGhostItem *ghost, parent()->get_ghost_items()) {
Rational ghost_ripple_point;
if (trim_mode == TimelineApp::k_trim_in) {
ghost_ripple_point = ghost->get_in();
} else {
ghost_ripple_point = ghost->get_out();
}
earliest_ripple = qMin(earliest_ripple, ghost_ripple_point);
}
// For each track that does NOT have a ghost, we need to make one for Gaps
// (engine C ABI: per-type count + indexed access; type ordinals match
// TrackReference::Type/OAKENGINE_TRACK_TYPE_*)
auto *seq_handle = sequence();
int track_counts[3] = { 0, 0, 0 };
oakengine_sequence_track_count(seq_handle, &track_counts[0],
&track_counts[1], &track_counts[2]);
for (int track_type = 0; track_type < 3; track_type++) {
for (int track_index = 0; track_index < track_counts[track_type];
track_index++) {
OakEngineTrack *track =
oakengine_sequence_track_at(seq_handle, track_type,
track_index);
if (track_is_locked(track)) {
continue;
}
// Determine if we've already created a ghost on this track
bool ghost_on_this_track_exists = false;
foreach (TimelineViewGhostItem *ghost, parent()->get_ghost_items()) {
if (parent()->get_track_from_reference(ghost->get_track()) ==
track) {
ghost_on_this_track_exists = true;
break;
}
}
// If there's no ghost on this track, create one
if (!ghost_on_this_track_exists) {
// Find the block that starts just after or at the ripple point
OakEngineBlock *block_after_ripple =
oakengine_track_nearest_block_after_or_at(
track,
core::Timecode::time_to_timestamp(earliest_ripple,
parent()->timebase()));
// Exception for out-transitions, do not create a gap between them
if (block_after_ripple) {
OakEngineBlock *prev_block =
oakengine_block_prev(block_after_ripple);
if (oakengine_node_is_clip(
reinterpret_cast<OakEngineNode *>(prev_block))) {
if (oakengine_clip_out_transition(prev_block) ==
block_after_ripple) {
block_after_ripple =
oakengine_block_next(block_after_ripple);
}
}
}
// If block is null, there will be no blocks after to ripple
if (block_after_ripple) {
TimelineViewGhostItem *ghost;
if (oakengine_block_is_gap(block_after_ripple)) {
// If this Block is already a Gap, ghost it now
ghost = add_ghost_from_block(block_after_ripple, trim_mode);
} else {
// Well we need to ripple SOMETHING, it'll either be the previous block if it's a gap
// or we'll have to create a new gap ourselves
OakEngineBlock *previous =
oakengine_block_prev(block_after_ripple);
if (oakengine_block_is_gap(previous)) {
// Previous is a gap, that'll make a fine substitute
ghost = add_ghost_from_block(previous, trim_mode);
} else {
// Previous is not a gap, we'll have to insert one there ourselves
int in_num = 0, in_den = 1;
oakengine_block_get_in_rational(
reinterpret_cast<const OakEngineNode *>(
block_after_ripple),
&in_num, &in_den);
Rational ripple_in(in_num, in_den);
ghost = add_ghost_from_null(ripple_in,
ripple_in,
ghost_block_track_reference(
block_after_ripple),
trim_mode);
ghost->set_data(TimelineViewGhostItem::k_reference_block,
QtUtils::ptr_to_value(block_after_ripple));
}
}
}
}
}
}
}
void RippleTool::finish_drag(TimelineViewMouseEvent *event)
{
Q_UNUSED(event)
if (parent()->has_ghosts()) {
QVector<QVector<oakengine_ripple_info>> info_list(TrackReference::k_count);
foreach (TimelineViewGhostItem *ghost, parent()->get_ghost_items()) {
if (!ghost->has_been_adjusted()) {
continue;
}
OakEngineTrack *track =
parent()->get_track_from_reference(ghost->get_track());
oakengine_ripple_info info;
OakEngineBlock *b = QtUtils::value_to_ptr<OakEngineBlock>(
ghost->get_data(TimelineViewGhostItem::k_attached_block));
if (b) {
info.block = b;
info.append_gap = 0;
} else {
info.block = QtUtils::value_to_ptr<OakEngineBlock>(
ghost->get_data(TimelineViewGhostItem::k_reference_block));
info.append_gap = 1;
}
info.track = track;
info_list[oakengine_track_type(track)].append(info);
}
void *command = oakengine_undo_command_create_multi();
Rational movement;
if (drag_movement_mode() == TimelineApp::k_trim_out) {
movement = parent()->get_ghost_items().first()->get_out_adjustment();
} else {
movement = parent()->get_ghost_items().first()->get_in_adjustment();
}
for (int i = 0; i < info_list.size(); i++) {
if (!info_list.at(i).isEmpty()) {
oakengine_undo_command_multi_add_child(
command,
oakengine_sequence_ripple_tracks_command(
sequence(), i,
info_list.at(i).constData(), info_list.at(i).size(),
movement.numerator(), movement.denominator(),
drag_movement_mode()));
}
}
if (oakengine_undo_command_multi_child_count(command) > 0) {
TimelineWidgetSelections new_sel = parent()->get_selections();
TimelineViewGhostItem *reference_ghost =
parent()->get_ghost_items().first();
if (drag_movement_mode() == TimelineApp::k_trim_in) {
new_sel.trim_out(-reference_ghost->get_in_adjustment());
} else {
new_sel.trim_out(reference_ghost->get_out_adjustment());
}
oakengine_undo_command_multi_add_child(command, parent()->create_set_selections_command(new_sel, parent()->get_selections(), false));
oakengine_undo_push(
command, qApp->translate("RippleTool", "Rippled Clips").toUtf8().constData());
} else {
oakengine_undo_command_free(command);
}
}
}
}