Robin Gareus
4050ca5633
Copyright-holder and year information is extracted from git log. git history begins in 2005. So (C) from 1998..2005 is lost. Also some (C) assignment of commits where the committer didn't use --author.
458 lines
12 KiB
C++
458 lines
12 KiB
C++
/*
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* Copyright (C) 2008-2012 Carl Hetherington <carl@carlh.net>
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* Copyright (C) 2008-2012 David Robillard <d@drobilla.net>
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* Copyright (C) 2008-2017 Paul Davis <paul@linuxaudiosystems.com>
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* Copyright (C) 2014-2016 Nick Mainsbridge <mainsbridge@gmail.com>
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* Copyright (C) 2014-2017 Robin Gareus <robin@gareus.org>
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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 <gtkmm/stock.h>
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#include <gtkmm2ext/utils.h>
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#include "pbd/memento_command.h"
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#include "pbd/convert.h"
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#include "ardour/audioregion.h"
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#include "ardour/onset_detector.h"
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#include "ardour/session.h"
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#include "ardour/transient_detector.h"
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#include "rhythm_ferret.h"
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#include "audio_region_view.h"
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#include "editor.h"
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#include "time_axis_view.h"
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#include "pbd/i18n.h"
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using namespace std;
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using namespace Gtk;
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using namespace Gdk;
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using namespace PBD;
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using namespace ARDOUR;
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/* order of these must match the AnalysisMode enums
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in rhythm_ferret.h
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*/
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static const gchar * _analysis_mode_strings[] = {
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N_("Percussive Onset"),
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N_("Note Onset"),
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0
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};
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static const gchar * _onset_function_strings[] = {
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N_("Energy Based"),
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N_("Spectral Difference"),
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N_("High-Frequency Content"),
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N_("Complex Domain"),
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N_("Phase Deviation"),
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N_("Kullback-Liebler"),
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N_("Modified Kullback-Liebler"),
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#ifdef HAVE_AUBIO4
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N_("Spectral Flux"),
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#endif
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0
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};
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static const gchar * _operation_strings[] = {
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N_("Split region"),
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#if 0 // these don't do what a user expects
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N_("Snap regions"),
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N_("Conform regions"),
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#endif
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0
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};
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RhythmFerret::RhythmFerret (Editor& e)
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: ArdourDialog (_("Rhythm Ferret"))
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, editor (e)
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, detection_threshold_adjustment (-35, -80, -6, 1, 6)
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, detection_threshold_scale (detection_threshold_adjustment)
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, sensitivity_adjustment (40, 0, 100, 1, 10)
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, sensitivity_scale (sensitivity_adjustment)
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, analyze_button (_("Analyze"))
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, peak_picker_threshold_adjustment (0.3, 0.0, 1.0, 0.01, 0.1)
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, peak_picker_threshold_scale (peak_picker_threshold_adjustment)
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, silence_threshold_adjustment (-90.0, -120.0, 0.0, 1, 10)
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, silence_threshold_scale (silence_threshold_adjustment)
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#ifdef HAVE_AUBIO4
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, minioi_adjustment (4, 0, 40, 1, 5)
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, minioi_scale (minioi_adjustment)
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#endif
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, trigger_gap_adjustment (3, 0, 100, 1, 10)
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, trigger_gap_spinner (trigger_gap_adjustment)
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, action_button (Stock::APPLY)
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{
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operation_strings = I18N (_operation_strings);
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Gtkmm2ext::set_popdown_strings (operation_selector, operation_strings);
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operation_selector.set_active (0);
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analysis_mode_strings = I18N (_analysis_mode_strings);
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Gtkmm2ext::set_popdown_strings (analysis_mode_selector, analysis_mode_strings);
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analysis_mode_selector.set_active_text (analysis_mode_strings.front());
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analysis_mode_selector.signal_changed().connect (sigc::mem_fun (*this, &RhythmFerret::analysis_mode_changed));
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onset_function_strings = I18N (_onset_function_strings);
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Gtkmm2ext::set_popdown_strings (onset_detection_function_selector, onset_function_strings);
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/* Onset plugin uses complex domain as default function
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XXX there should be a non-hacky way to set this
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*/
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onset_detection_function_selector.set_active_text (onset_function_strings[3]);
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detection_threshold_scale.set_digits (3);
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Table* t = manage (new Table (7, 3));
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t->set_spacings (12);
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int n = 0;
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t->attach (*manage (new Label (_("Mode"), 1, 0.5)), 0, 1, n, n + 1, FILL);
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t->attach (analysis_mode_selector, 1, 2, n, n + 1, FILL);
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++n;
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t->attach (*manage (new Label (_("Detection function"), 1, 0.5)), 0, 1, n, n + 1, FILL);
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t->attach (onset_detection_function_selector, 1, 2, n, n + 1, FILL);
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++n;
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t->attach (*manage (new Label (_("Trigger gap (postproc)"), 1, 0.5)), 0, 1, n, n + 1, FILL);
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t->attach (trigger_gap_spinner, 1, 2, n, n + 1, FILL);
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t->attach (*manage (new Label (_("ms"))), 2, 3, n, n + 1, FILL);
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++n;
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t->attach (*manage (new Label (_("Peak threshold"), 1, 0.5)), 0, 1, n, n + 1, FILL);
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t->attach (peak_picker_threshold_scale, 1, 2, n, n + 1, FILL);
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++n;
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t->attach (*manage (new Label (_("Silence threshold"), 1, 0.5)), 0, 1, n, n + 1, FILL);
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t->attach (silence_threshold_scale, 1, 2, n, n + 1, FILL);
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t->attach (*manage (new Label (_("dB"))), 2, 3, n, n + 1, FILL);
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++n;
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#ifdef HAVE_AUBIO4
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t->attach (*manage (new Label (_("Min Inter-Onset Time"), 1, 0.5)), 0, 1, n, n + 1, FILL);
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t->attach (minioi_scale, 1, 2, n, n + 1, FILL);
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t->attach (*manage (new Label (_("ms"))), 2, 3, n, n + 1, FILL);
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++n;
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#endif
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t->attach (*manage (new Label (_("Sensitivity"), 1, 0.5)), 0, 1, n, n + 1, FILL);
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t->attach (sensitivity_scale, 1, 2, n, n + 1, FILL);
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++n;
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t->attach (*manage (new Label (_("Cut Pos Threshold"), 1, 0.5)), 0, 1, n, n + 1, FILL);
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t->attach (detection_threshold_scale, 1, 2, n, n + 1, FILL);
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t->attach (*manage (new Label (_("dB"))), 2, 3, n, n + 1, FILL);
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++n;
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t->attach (*manage (new Label (_("Operation"), 1, 0.5)), 0, 1, n, n + 1, FILL);
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t->attach (operation_selector, 1, 2, n, n + 1, FILL);
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++n;
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analyze_button.signal_clicked().connect (sigc::mem_fun (*this, &RhythmFerret::run_analysis));
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action_button.signal_clicked().connect (sigc::mem_fun (*this, &RhythmFerret::do_action));
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get_vbox()->set_border_width (6);
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get_vbox()->set_spacing (6);
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get_vbox()->pack_start (*t);
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add_action_widget (analyze_button, 1);
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add_action_widget (action_button, 0);
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show_all ();
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analysis_mode_changed ();
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}
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void
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RhythmFerret::on_response (int response_id)
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{
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Gtk::Dialog::on_response (response_id);
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}
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void
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RhythmFerret::analysis_mode_changed ()
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{
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bool const perc = get_analysis_mode() == PercussionOnset;
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// would be nice to actually hide/show the rows.
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detection_threshold_scale.set_sensitive (perc);
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sensitivity_scale.set_sensitive (perc);
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trigger_gap_spinner.set_sensitive (!perc);
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onset_detection_function_selector.set_sensitive (!perc);
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peak_picker_threshold_scale.set_sensitive (!perc);
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silence_threshold_scale.set_sensitive (!perc);
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#ifdef HAVE_AUBIO4
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minioi_scale.set_sensitive (!perc);
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#endif
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}
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RhythmFerret::AnalysisMode
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RhythmFerret::get_analysis_mode () const
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{
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string str = analysis_mode_selector.get_active_text ();
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if (str == analysis_mode_strings[(int) NoteOnset]) {
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return NoteOnset;
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}
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return PercussionOnset;
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}
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RhythmFerret::Action
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RhythmFerret::get_action () const
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{
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if (operation_selector.get_active_row_number() == 1) {
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return SnapRegionsToGrid;
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} else if (operation_selector.get_active_row_number() == 2) {
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return ConformRegion;
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}
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return SplitRegion;
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}
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void
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RhythmFerret::run_analysis ()
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{
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if (!_session) {
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return;
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}
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clear_transients ();
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regions_with_transients = editor.get_selection().regions;
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current_results.clear ();
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if (regions_with_transients.empty()) {
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return;
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}
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for (RegionSelection::iterator i = regions_with_transients.begin(); i != regions_with_transients.end(); ++i) {
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boost::shared_ptr<Readable> rd = boost::static_pointer_cast<AudioRegion> ((*i)->region());
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switch (get_analysis_mode()) {
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case PercussionOnset:
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run_percussion_onset_analysis (rd, (*i)->region()->position(), current_results);
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break;
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case NoteOnset:
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run_note_onset_analysis (rd, (*i)->region()->position(), current_results);
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break;
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default:
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break;
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}
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(*i)->region()->set_onsets (current_results);
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current_results.clear();
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}
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}
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int
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RhythmFerret::run_percussion_onset_analysis (boost::shared_ptr<Readable> readable, sampleoffset_t /*offset*/, AnalysisFeatureList& results)
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{
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try {
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TransientDetector t (_session->sample_rate());
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for (uint32_t i = 0; i < readable->n_channels(); ++i) {
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AnalysisFeatureList these_results;
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t.reset ();
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float dB = detection_threshold_adjustment.get_value();
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float coeff = dB > -80.0f ? pow (10.0f, dB * 0.05f) : 0.0f;
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t.set_threshold (coeff);
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t.set_sensitivity (4, sensitivity_adjustment.get_value());
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if (t.run ("", readable.get(), i, these_results)) {
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continue;
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}
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/* merge */
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results.insert (results.end(), these_results.begin(), these_results.end());
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these_results.clear ();
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t.update_positions (readable.get(), i, results);
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}
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} catch (failed_constructor& err) {
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error << "Could not load percussion onset detection plugin" << endmsg;
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return -1;
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}
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return 0;
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}
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int
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RhythmFerret::get_note_onset_function ()
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{
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string txt = onset_detection_function_selector.get_active_text();
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for (int n = 0; _onset_function_strings[n]; ++n) {
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/* compare translated versions */
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if (txt == onset_function_strings[n]) {
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return n;
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}
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}
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fatal << string_compose (_("programming error: %1 (%2)"), X_("illegal note onset function string"), txt)
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<< endmsg;
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abort(); /*NOTREACHED*/
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return -1;
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}
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int
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RhythmFerret::run_note_onset_analysis (boost::shared_ptr<Readable> readable, sampleoffset_t /*offset*/, AnalysisFeatureList& results)
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{
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try {
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OnsetDetector t (_session->sample_rate());
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for (uint32_t i = 0; i < readable->n_channels(); ++i) {
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AnalysisFeatureList these_results;
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t.set_function (get_note_onset_function());
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t.set_silence_threshold (silence_threshold_adjustment.get_value());
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t.set_peak_threshold (peak_picker_threshold_adjustment.get_value());
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#ifdef HAVE_AUBIO4
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t.set_minioi (minioi_adjustment.get_value());
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#endif
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// aubio-vamp only picks up new settings on reset.
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t.reset ();
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if (t.run ("", readable.get(), i, these_results)) {
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continue;
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}
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/* merge */
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results.insert (results.end(), these_results.begin(), these_results.end());
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these_results.clear ();
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}
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} catch (failed_constructor& err) {
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error << "Could not load note onset detection plugin" << endmsg;
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return -1;
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}
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if (!results.empty()) {
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OnsetDetector::cleanup_onsets (results, _session->sample_rate(), trigger_gap_adjustment.get_value());
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}
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return 0;
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}
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void
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RhythmFerret::do_action ()
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{
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if (!_session) {
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return;
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}
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switch (get_action()) {
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case SplitRegion:
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do_split_action ();
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break;
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case SnapRegionsToGrid:
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// split first, select all.. ?!
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editor.snap_regions_to_grid();
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break;
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case ConformRegion:
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editor.close_region_gaps();
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break;
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default:
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break;
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}
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}
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void
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RhythmFerret::do_split_action ()
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{
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/* XXX: this is quite a special-case; (currently) the only operation which is
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performed on the selection only (without entered_regionview or the edit point
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being considered)
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*/
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RegionSelection regions = editor.selection->regions;
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if (regions.empty()) {
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return;
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}
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editor.EditorFreeze(); /* Emit signal */
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editor.begin_reversible_command (_("split regions (rhythm ferret)"));
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/* Merge the transient positions for regions in consideration */
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AnalysisFeatureList merged_features;
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for (RegionSelection::iterator i = regions.begin(); i != regions.end(); ++i) {
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AnalysisFeatureList features;
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(*i)->region()->transients(features);
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merged_features.insert (merged_features.end(), features.begin(), features.end());
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}
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merged_features.sort();
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merged_features.unique();
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for (RegionSelection::iterator i = regions.begin(); i != regions.end(); ) {
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RegionSelection::iterator tmp;
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tmp = i;
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++tmp;
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editor.split_region_at_points ((*i)->region(), merged_features, false, false);
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/* i is invalid at this point */
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i = tmp;
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}
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editor.commit_reversible_command ();
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editor.EditorThaw(); /* Emit signal */
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}
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void
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RhythmFerret::set_session (Session* s)
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{
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ArdourDialog::set_session (s);
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current_results.clear ();
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}
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void
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RhythmFerret::on_hide ()
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{
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ArdourDialog::on_hide ();
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clear_transients ();
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}
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/* Clear any transients that we have added */
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void
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RhythmFerret::clear_transients ()
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{
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current_results.clear ();
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for (RegionSelection::iterator i = regions_with_transients.begin(); i != regions_with_transients.end(); ++i) {
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(*i)->region()->set_onsets (current_results);
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}
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regions_with_transients.clear ();
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}
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