502 lines
13 KiB
C++
502 lines
13 KiB
C++
/*
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* Copyright (C) 2005-2018 Paul Davis <paul@linuxaudiosystems.com>
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* Copyright (C) 2005 Karsten Wiese <fzuuzf@googlemail.com>
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* Copyright (C) 2005 Taybin Rutkin <taybin@taybin.com>
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* Copyright (C) 2007 Doug McLain <doug@nostar.net>
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* Copyright (C) 2008-2014 David Robillard <d@drobilla.net>
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* Copyright (C) 2009-2011 Carl Hetherington <carl@carlh.net>
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* Copyright (C) 2014-2019 Robin Gareus <robin@gareus.org>
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* Copyright (C) 2015 Tim Mayberry <mojofunk@gmail.com>
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* Copyright (C) 2016-2017 Nick Mainsbridge <mainsbridge@gmail.com>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program 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
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along
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* with this program; if not, write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
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#include "evoral/Note.h"
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#include "ardour/parameter_descriptor.h"
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#include "canvas/container.h"
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#include "canvas/polygon.h"
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#include "canvas/rectangle.h"
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#include "canvas/debug.h"
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#include "waveview/wave_view.h"
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#include "automation_time_axis.h"
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#include "ghostregion.h"
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#include "midi_streamview.h"
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#include "midi_time_axis.h"
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#include "region_view.h"
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#include "midi_region_view.h"
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#include "rgb_macros.h"
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#include "note.h"
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#include "hit.h"
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#include "ui_config.h"
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using namespace std;
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using namespace Editing;
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using namespace ARDOUR;
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using ArdourCanvas::Duple;
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GhostRegion::GhostRegion (RegionView& rv,
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ArdourCanvas::Container* parent,
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TimeAxisView& tv,
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TimeAxisView& source_tv,
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double initial_pos)
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: parent_rv(rv)
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, trackview(tv)
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, source_trackview(source_tv)
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{
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group = new ArdourCanvas::Container (parent);
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CANVAS_DEBUG_NAME (group, "ghost region");
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group->set_position (ArdourCanvas::Duple (initial_pos, 0));
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base_rect = new ArdourCanvas::Rectangle (group);
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CANVAS_DEBUG_NAME (base_rect, "ghost region rect");
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base_rect->set_x0 (0);
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base_rect->set_y0 (1.0);
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base_rect->set_y1 (trackview.current_height());
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base_rect->set_outline (false);
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if (!is_automation_ghost()) {
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base_rect->hide();
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}
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GhostRegion::set_colors();
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/* the parent group of a ghostregion is a dedicated group for ghosts,
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so the new ghost would want to get to the top of that group*/
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group->raise_to_top ();
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}
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GhostRegion::~GhostRegion ()
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{
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parent_rv.remove_ghost(this);
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trackview.erase_ghost(this);
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delete base_rect;
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delete group;
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}
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void
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GhostRegion::set_duration (double units)
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{
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base_rect->set_x1 (units);
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}
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void
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GhostRegion::set_height ()
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{
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base_rect->set_y1 (trackview.current_height());
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}
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void
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GhostRegion::set_colors ()
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{
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if (is_automation_ghost()) {
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base_rect->set_fill_color (UIConfiguration::instance().color_mod ("ghost track base", "ghost track base"));
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}
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}
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guint
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GhostRegion::source_track_color(unsigned char alpha)
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{
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Gdk::Color color = source_trackview.color();
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return RGBA_TO_UINT (color.get_red() / 256, color.get_green() / 256, color.get_blue() / 256, alpha);
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}
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bool
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GhostRegion::is_automation_ghost()
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{
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return (dynamic_cast<AutomationTimeAxisView*>(&trackview)) != 0;
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}
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AudioGhostRegion::AudioGhostRegion (RegionView& rv,
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TimeAxisView& tv,
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TimeAxisView& source_tv,
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double initial_unit_pos)
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: GhostRegion(rv, tv.ghost_group(), tv, source_tv, initial_unit_pos)
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{
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}
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void
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AudioGhostRegion::set_samples_per_pixel (double fpp)
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{
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for (vector<ArdourWaveView::WaveView*>::iterator i = waves.begin(); i != waves.end(); ++i) {
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(*i)->set_samples_per_pixel (fpp);
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}
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}
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void
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AudioGhostRegion::set_height ()
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{
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vector<ArdourWaveView::WaveView*>::iterator i;
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uint32_t n;
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GhostRegion::set_height();
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double const ht = ((trackview.current_height()) / (double) waves.size());
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for (n = 0, i = waves.begin(); i != waves.end(); ++i, ++n) {
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(*i)->set_height (ht);
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(*i)->set_y_position (n * ht);
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}
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}
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void
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AudioGhostRegion::set_colors ()
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{
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GhostRegion::set_colors();
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guint fill_color;
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if (is_automation_ghost()) {
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fill_color = UIConfiguration::instance().color_mod("ghost track wave fill", "region alpha");
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} else {
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fill_color = source_track_color(200);
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}
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for (uint32_t n=0; n < waves.size(); ++n) {
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waves[n]->set_outline_color (UIConfiguration::instance().color_mod ("ghost track wave", "region alpha"));
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waves[n]->set_fill_color (fill_color);
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waves[n]->set_clip_color (UIConfiguration::instance().color ("ghost track wave clip"));
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waves[n]->set_zero_color (UIConfiguration::instance().color ("ghost track zero line"));
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}
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}
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/** The general constructor; called when the destination timeaxisview doesn't have
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* a midistreamview.
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*
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* @param rv The parent RegionView that is being ghosted.
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* @param tv TimeAxisView that this ghost region is on.
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* @param source_tv TimeAxisView that we are the ghost for.
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*/
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MidiGhostRegion::MidiGhostRegion(MidiRegionView& rv,
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TimeAxisView& tv,
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TimeAxisView& source_tv,
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double initial_unit_pos)
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: GhostRegion(rv, tv.ghost_group(), tv, source_tv, initial_unit_pos)
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, _note_group (new ArdourCanvas::Container (group))
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, parent_mrv (rv)
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, _optimization_iterator(events.end())
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{
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_outline = UIConfiguration::instance().color ("ghost track midi outline");
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base_rect->lower_to_bottom();
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}
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/**
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* @param rv The parent RegionView being ghosted.
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* @param msv MidiStreamView that this ghost region is on.
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* @param source_tv TimeAxisView that we are the ghost for.
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*/
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MidiGhostRegion::MidiGhostRegion(MidiRegionView& rv,
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MidiStreamView& msv,
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TimeAxisView& source_tv,
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double initial_unit_pos)
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: GhostRegion (rv,
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msv.midi_underlay(),
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msv.trackview(),
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source_tv,
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initial_unit_pos)
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, _note_group (new ArdourCanvas::Container (group))
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, parent_mrv (rv)
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, _optimization_iterator(events.end())
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{
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_outline = UIConfiguration::instance().color ("ghost track midi outline");
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base_rect->lower_to_bottom();
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}
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MidiGhostRegion::~MidiGhostRegion()
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{
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clear_events ();
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delete _note_group;
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}
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MidiGhostRegion::GhostEvent::GhostEvent (NoteBase* e, ArdourCanvas::Container* g)
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: event (e)
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{
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if (dynamic_cast<Note*>(e)) {
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item = new ArdourCanvas::Rectangle(
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g, ArdourCanvas::Rect(e->x0(), e->y0(), e->x1(), e->y1()));
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is_hit = false;
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} else {
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Hit* hit = dynamic_cast<Hit*>(e);
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if (!hit) {
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return;
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}
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ArdourCanvas::Polygon* poly = new ArdourCanvas::Polygon(g);
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poly->set(Hit::points(e->y1() - e->y0()));
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poly->set_position(hit->position());
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item = poly;
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is_hit = true;
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}
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CANVAS_DEBUG_NAME (item, "ghost note item");
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}
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MidiGhostRegion::GhostEvent::~GhostEvent ()
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{
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/* event is not ours to delete */
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delete item;
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}
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void
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MidiGhostRegion::set_samples_per_pixel (double /*spu*/)
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{
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}
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/** @return MidiStreamView that we are providing a ghost for */
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MidiStreamView*
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MidiGhostRegion::midi_view ()
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{
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StreamView* sv = source_trackview.view ();
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assert (sv);
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MidiStreamView* msv = dynamic_cast<MidiStreamView*> (sv);
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assert (msv);
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return msv;
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}
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void
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MidiGhostRegion::set_height ()
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{
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GhostRegion::set_height();
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update_contents_height ();
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}
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void
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MidiGhostRegion::set_colors()
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{
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GhostRegion::set_colors();
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_outline = UIConfiguration::instance().color ("ghost track midi outline");
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for (EventList::iterator it = events.begin(); it != events.end(); ++it) {
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it->second->item->set_fill_color (UIConfiguration::instance().color_mod((*it).second->event->base_color(), "ghost track midi fill"));
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it->second->item->set_outline_color (_outline);
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}
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}
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static double
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note_height(TimeAxisView& trackview, MidiStreamView* mv)
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{
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const double tv_height = trackview.current_height();
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const double note_range = mv->contents_note_range();
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return std::max(1.0, floor(tv_height / note_range - 1.0));
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}
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static double
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note_y(TimeAxisView& trackview, MidiStreamView* mv, uint8_t note_num)
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{
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const double tv_height = trackview.current_height();
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const double note_range = mv->contents_note_range();
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const double s = tv_height / note_range;
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return tv_height - (note_num + 1 - mv->lowest_note()) * s;
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}
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void
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MidiGhostRegion::update_contents_height ()
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{
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MidiStreamView* mv = midi_view();
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if (!mv) {
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return;
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}
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double const h = note_height(trackview, mv);
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for (EventList::iterator it = events.begin(); it != events.end(); ++it) {
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uint8_t const note_num = it->second->event->note()->note();
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double const y = note_y(trackview, mv, note_num);
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if (!it->second->is_hit) {
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_tmp_rect = static_cast<ArdourCanvas::Rectangle*>(it->second->item);
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_tmp_rect->set (ArdourCanvas::Rect (_tmp_rect->x0(), y, _tmp_rect->x1(), y + h));
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} else {
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_tmp_poly = static_cast<ArdourCanvas::Polygon*>(it->second->item);
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ArdourCanvas::Duple position = _tmp_poly->position();
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position.y = y;
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_tmp_poly->set_position(position);
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_tmp_poly->set(Hit::points(h));
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}
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}
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}
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void
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MidiGhostRegion::add_note (NoteBase* n)
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{
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GhostEvent* event = new GhostEvent (n, _note_group);
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events.insert (make_pair (n->note(), event));
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event->item->set_fill_color (UIConfiguration::instance().color_mod(n->base_color(), "ghost track midi fill"));
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event->item->set_outline_color (_outline);
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MidiStreamView* mv = midi_view();
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if (mv) {
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if (!n->item()->visible()) {
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event->item->hide();
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} else {
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uint8_t const note_num = n->note()->note();
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double const h = note_height(trackview, mv);
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double const y = note_y(trackview, mv, note_num);
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if (!event->is_hit) {
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_tmp_rect = static_cast<ArdourCanvas::Rectangle*>(event->item);
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_tmp_rect->set (ArdourCanvas::Rect (_tmp_rect->x0(), y, _tmp_rect->x1(), y + h));
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} else {
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_tmp_poly = static_cast<ArdourCanvas::Polygon*>(event->item);
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Duple position = _tmp_poly->position();
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position.y = y;
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_tmp_poly->set_position(position);
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_tmp_poly->set(Hit::points(h));
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}
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}
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}
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}
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void
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MidiGhostRegion::clear_events()
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{
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_note_group->clear (true);
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events.clear ();
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_optimization_iterator = events.end();
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}
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/** Update the positions of our representation of a note.
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* @param ev The GhostEvent from the parent MidiRegionView.
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*/
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void
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MidiGhostRegion::update_note (GhostEvent* ev)
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{
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MidiStreamView* mv = midi_view();
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if (!mv) {
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return;
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}
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_tmp_rect = static_cast<ArdourCanvas::Rectangle*>(ev->item);
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uint8_t const note_num = ev->event->note()->note();
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double const y = note_y(trackview, mv, note_num);
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double const h = note_height(trackview, mv);
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_tmp_rect->set (ArdourCanvas::Rect (ev->event->x0(), y, ev->event->x1(), y + h));
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}
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/** Update the positions of our representation of a parent's hit.
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* @param ev The GhostEvent from the parent MidiRegionView.
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*/
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void
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MidiGhostRegion::update_hit (GhostEvent* ev)
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{
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MidiStreamView* mv = midi_view();
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if (!mv) {
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return;
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}
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_tmp_poly = static_cast<ArdourCanvas::Polygon*>(ev->item);
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uint8_t const note_num = ev->event->note()->note();
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double const h = note_height(trackview, mv);
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double const y = note_y(trackview, mv, note_num);
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ArdourCanvas::Duple ppos = ev->item->position();
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ArdourCanvas::Duple gpos = _tmp_poly->position();
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gpos.x = ppos.x;
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gpos.y = y;
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_tmp_poly->set_position(gpos);
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_tmp_poly->set(Hit::points(h));
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}
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void
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MidiGhostRegion::remove_note (NoteBase* note)
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{
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EventList::iterator f = events.find (note->note());
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if (f == events.end()) {
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return;
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}
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delete f->second;
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events.erase (f);
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_optimization_iterator = events.end ();
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}
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void
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MidiGhostRegion::view_changed ()
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{
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model_changed();
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}
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void
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MidiGhostRegion::model_changed ()
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{
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/* we rely on the parent MRV having removed notes not in the model */
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for (EventList::iterator i = events.begin(); i != events.end(); ) {
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boost::shared_ptr<NoteType> note = i->first;
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GhostEvent* cne = i->second;
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const bool visible = (note->note() >= parent_mrv._current_range_min) &&
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(note->note() <= parent_mrv._current_range_max);
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if (visible) {
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if (cne->is_hit) {
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update_hit (cne);
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} else {
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update_note (cne);
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}
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cne->item->show ();
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} else {
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cne->item->hide ();
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}
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++i;
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}
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}
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/** Given a note in our parent region (ie the actual MidiRegionView), find our
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* representation of it.
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* @return Our Event, or 0 if not found.
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*/
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MidiGhostRegion::GhostEvent *
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MidiGhostRegion::find_event (boost::shared_ptr<NoteType> parent)
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{
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/* we are using _optimization_iterator to speed up the common case where a caller
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is going through our notes in order.
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*/
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if (_optimization_iterator != events.end()) {
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++_optimization_iterator;
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if (_optimization_iterator != events.end() && _optimization_iterator->first == parent) {
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return _optimization_iterator->second;
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}
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}
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_optimization_iterator = events.find (parent);
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if (_optimization_iterator != events.end()) {
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return _optimization_iterator->second;
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}
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return 0;
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}
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