73192bc1a7
git-svn-id: svn://localhost/ardour2/branches/3.0@8166 d708f5d6-7413-0410-9779-e7cbd77b26cf
529 lines
16 KiB
C++
529 lines
16 KiB
C++
/*
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Copyright (C) 2009 Paul Davis
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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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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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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include <iostream>
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#include <gtkmm/table.h>
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#include <gtkmm/label.h>
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#include <gtkmm/stock.h>
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#include "ardour/audioregion.h"
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#include "ardour/audiosource.h"
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#include "ardour/dB.h"
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#include "ardour_ui.h"
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#include "ardour/session.h"
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#include "gui_thread.h"
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#include "strip_silence_dialog.h"
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#include "canvas_impl.h"
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#include "simpleline.h"
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#include "waveview.h"
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#include "simplerect.h"
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#include "rgb_macros.h"
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#include "i18n.h"
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#include "logmeter.h"
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using namespace ARDOUR;
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using namespace std;
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using namespace ArdourCanvas;
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/** Construct Strip silence dialog box */
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StripSilenceDialog::StripSilenceDialog (Session* s, list<boost::shared_ptr<ARDOUR::AudioRegion> > const & regions)
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: ArdourDialog (_("Strip Silence"))
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, ProgressReporter ()
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, _minimum_length (X_("silence duration"), true, "SilenceDurationClock", true, false, true, false)
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, _fade_length (X_("silence duration"), true, "SilenceDurationClock", true, false, true, false)
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, _wave_width (640)
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, _wave_height (64)
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, _peaks_ready_connection (0)
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, _destroying (false)
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{
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set_session (s);
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Gtk::HBox* hbox = Gtk::manage (new Gtk::HBox);
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Gtk::Table* table = Gtk::manage (new Gtk::Table (3, 3));
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table->set_spacings (6);
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int n = 0;
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table->attach (*Gtk::manage (new Gtk::Label (_("Threshold"), 1, 0.5)), 0, 1, n, n + 1, Gtk::FILL);
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table->attach (_threshold, 1, 2, n, n + 1, Gtk::FILL);
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table->attach (*Gtk::manage (new Gtk::Label (_("dbFS"))), 2, 3, n, n + 1, Gtk::FILL);
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++n;
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_threshold.set_digits (1);
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_threshold.set_increments (1, 10);
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_threshold.set_range (-120, 0);
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_threshold.set_value (-60);
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table->attach (*Gtk::manage (new Gtk::Label (_("Minimum length"), 1, 0.5)), 0, 1, n, n + 1, Gtk::FILL);
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table->attach (_minimum_length, 1, 2, n, n + 1, Gtk::FILL);
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++n;
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_minimum_length.set_session (s);
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_minimum_length.set_mode (AudioClock::Frames);
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_minimum_length.set (1000, true);
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table->attach (*Gtk::manage (new Gtk::Label (_("Fade length"), 1, 0.5)), 0, 1, n, n + 1, Gtk::FILL);
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table->attach (_fade_length, 1, 2, n, n + 1, Gtk::FILL);
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++n;
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_fade_length.set_session (s);
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_fade_length.set_mode (AudioClock::Frames);
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_fade_length.set (64, true);
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hbox->pack_start (*table);
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table = Gtk::manage (new Gtk::Table (3, 2));
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table->set_spacings (6);
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n = 0;
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table->attach (*Gtk::manage (new Gtk::Label (_("Silent segments:"), 1, 0.5)), 3, 4, n, n + 1, Gtk::FILL);
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table->attach (_segment_count_label, 5, 6, n, n + 1, Gtk::FILL);
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_segment_count_label.set_alignment (0, 0.5);
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++n;
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table->attach (*Gtk::manage (new Gtk::Label (_("Shortest silence:"), 1, 0.5)), 3, 4, n, n + 1, Gtk::FILL);
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table->attach (_shortest_silence_label, 5, 6, n, n + 1, Gtk::FILL);
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_shortest_silence_label.set_alignment (0, 0.5);
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++n;
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table->attach (*Gtk::manage (new Gtk::Label (_("Shortest audible:"), 1, 0.5)), 3, 4, n, n + 1, Gtk::FILL);
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table->attach (_shortest_audible_label, 5, 6, n, n + 1, Gtk::FILL);
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_shortest_audible_label.set_alignment (0, 0.5);
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++n;
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hbox->pack_start (*table);
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/* dummy label for padding */
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hbox->pack_start (*Gtk::manage (new Gtk::Label ("")), true, true);
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get_vbox()->pack_start (*hbox, false, false);
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add_button (Gtk::Stock::CANCEL, Gtk::RESPONSE_CANCEL);
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add_button (Gtk::Stock::APPLY, Gtk::RESPONSE_OK);
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_canvas = new CanvasAA ();
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_canvas->signal_size_allocate().connect (sigc::mem_fun (*this, &StripSilenceDialog::canvas_allocation));
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_canvas->set_size_request (_wave_width, _wave_height * regions.size());
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for (list<boost::shared_ptr<ARDOUR::AudioRegion> >::const_iterator i = regions.begin(); i != regions.end(); ++i) {
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Wave* w = new Wave (_canvas->root(), *i);
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_waves.push_back (w);
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}
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get_vbox()->pack_start (*_canvas, true, true);
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get_vbox()->pack_start (_progress_bar, true, true);
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show_all ();
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_threshold.get_adjustment()->signal_value_changed().connect (sigc::mem_fun (*this, &StripSilenceDialog::threshold_changed));
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_minimum_length.ValueChanged.connect (sigc::mem_fun (*this, &StripSilenceDialog::restart_thread));
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create_waves ();
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update_silence_rects ();
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update_threshold_line ();
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/* Create a thread which runs while the dialogue is open to compute the silence regions */
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Completed.connect (_completed_connection, MISSING_INVALIDATOR, ui_bind (&StripSilenceDialog::update, this), gui_context ());
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_thread_should_finish = false;
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pthread_create (&_thread, 0, StripSilenceDialog::_detection_thread_work, this);
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}
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StripSilenceDialog::~StripSilenceDialog ()
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{
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_destroying = true;
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/* Terminate our thread */
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_lock.lock ();
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_interthread_info.cancel = true;
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_thread_should_finish = true;
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_lock.unlock ();
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_run_cond.signal ();
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pthread_join (_thread, 0);
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for (list<Wave*>::iterator i = _waves.begin(); i != _waves.end(); ++i) {
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delete *i;
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}
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_waves.clear ();
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delete _peaks_ready_connection;
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delete _canvas;
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}
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void
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StripSilenceDialog::create_waves ()
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{
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int n = 0;
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delete _peaks_ready_connection;
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_peaks_ready_connection = 0;
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for (list<Wave*>::iterator i = _waves.begin(); i != _waves.end(); ++i) {
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if ((*i)->region->audio_source(0)->peaks_ready (boost::bind (&StripSilenceDialog::peaks_ready, this), &_peaks_ready_connection, gui_context())) {
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(*i)->view = new WaveView (*(_canvas->root()));
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(*i)->view->property_data_src() = static_cast<gpointer>((*i)->region.get());
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(*i)->view->property_cache() = WaveView::create_cache ();
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(*i)->view->property_cache_updater() = true;
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(*i)->view->property_channel() = 0;
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(*i)->view->property_length_function() = (void *) region_length_from_c;
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(*i)->view->property_sourcefile_length_function() = (void *) sourcefile_length_from_c;
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(*i)->view->property_peak_function() = (void *) region_read_peaks_from_c;
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(*i)->view->property_x() = 0;
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(*i)->view->property_y() = n * _wave_height;
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(*i)->view->property_height() = _wave_height;
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(*i)->view->property_samples_per_unit() = (*i)->samples_per_unit;
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(*i)->view->property_region_start() = (*i)->region->start();
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(*i)->view->property_wave_color() = ARDOUR_UI::config()->canvasvar_WaveForm.get();
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(*i)->view->property_fill_color() = ARDOUR_UI::config()->canvasvar_WaveFormFill.get();
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(*i)->view->property_logscaled() = true;
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(*i)->view->property_rectified() = true;
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}
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++n;
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}
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}
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void
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StripSilenceDialog::peaks_ready ()
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{
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delete _peaks_ready_connection;
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_peaks_ready_connection = 0;
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create_waves ();
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}
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void
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StripSilenceDialog::canvas_allocation (Gtk::Allocation& alloc)
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{
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int n = 0;
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_canvas->set_scroll_region (0.0, 0.0, alloc.get_width(), alloc.get_height());
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_wave_width = alloc.get_width ();
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_wave_height = alloc.get_height ();
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for (list<Wave*>::iterator i = _waves.begin(); i != _waves.end(); ++i, ++n) {
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(*i)->samples_per_unit = ((double) (*i)->region->length() / _wave_width);
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if ((*i)->view) {
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(*i)->view->property_y() = n * _wave_height;
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(*i)->view->property_samples_per_unit() = (*i)->samples_per_unit;
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(*i)->view->property_height() = _wave_height;
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}
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}
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resize_silence_rects ();
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update_threshold_line ();
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}
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void
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StripSilenceDialog::resize_silence_rects ()
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{
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int n = 0;
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/* Lock so that we don't contend with the detection thread for access to the silence regions */
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Glib::Mutex::Lock lm (_lock);
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for (list<Wave*>::iterator i = _waves.begin(); i != _waves.end(); ++i) {
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list<pair<frameoffset_t, framecnt_t> >::const_iterator j;
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list<SimpleRect*>::iterator r;
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for (j = (*i)->silence.begin(), r = (*i)->silence_rects.begin();
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j != (*i)->silence.end() && r != (*i)->silence_rects.end(); ++j, ++r) {
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(*r)->property_x1() = j->first / (*i)->samples_per_unit;
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(*r)->property_x2() = j->second / (*i)->samples_per_unit;
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(*r)->property_y1() = n * _wave_height;
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(*r)->property_y2() = (n + 1) * _wave_height;
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(*r)->property_outline_pixels() = 0;
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(*r)->property_fill_color_rgba() = RGBA_TO_UINT (128, 128, 128, 128);
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}
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++n;
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}
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}
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void
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StripSilenceDialog::update_threshold_line ()
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{
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int n = 0;
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/* Don't need to lock here as we're not reading the _waves silence details */
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for (list<Wave*>::iterator i = _waves.begin(); i != _waves.end(); ++i) {
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(*i)->threshold_line->property_x1() = 0;
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(*i)->threshold_line->property_x2() = _wave_width;
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double const y = alt_log_meter (_threshold.get_value());
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(*i)->threshold_line->property_y1() = (n + 1 - y) * _wave_height;
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(*i)->threshold_line->property_y2() = (n + 1 - y) * _wave_height;
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}
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++n;
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}
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void
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StripSilenceDialog::update ()
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{
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update_silence_rects ();
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update_threshold_line ();
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/* XXX: first one only?! */
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update_stats (_waves.front()->silence);
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}
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void
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StripSilenceDialog::update_silence_rects ()
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{
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int n = 0;
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uint32_t max_segments = 0;
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uint32_t sc;
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/* Lock so that we don't contend with the detection thread for access to the silence regions */
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Glib::Mutex::Lock lm (_lock);
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for (list<Wave*>::iterator i = _waves.begin(); i != _waves.end(); ++i) {
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for (list<SimpleRect*>::iterator j = (*i)->silence_rects.begin(); j != (*i)->silence_rects.end(); ++j) {
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delete *j;
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}
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(*i)->silence_rects.clear ();
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sc = 0;
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for (list<pair<frameoffset_t, framecnt_t> >::const_iterator j = (*i)->silence.begin(); j != (*i)->silence.end(); ++j) {
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SimpleRect* r = new SimpleRect (*(_canvas->root()));
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r->property_x1() = j->first / (*i)->samples_per_unit;
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r->property_x2() = j->second / (*i)->samples_per_unit;
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r->property_y1() = n * _wave_height;
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r->property_y2() = (n + 1) * _wave_height;
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r->property_outline_pixels() = 0;
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r->property_fill_color_rgba() = RGBA_TO_UINT (128, 128, 128, 128);
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(*i)->silence_rects.push_back (r);
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sc++;
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}
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max_segments = max (max_segments, sc);
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++n;
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}
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if (min_audible > 0) {
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float ms, ma;
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char const * aunits;
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char const * sunits;
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ma = (float) min_audible/_session->frame_rate();
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ms = (float) min_silence/_session->frame_rate();
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if (min_audible < _session->frame_rate()) {
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aunits = _("ms");
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ma *= 1000.0;
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} else {
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aunits = _("s");
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}
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if (min_silence < _session->frame_rate()) {
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sunits = _("ms");
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ms *= 1000.0;
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} else {
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sunits = _("s");
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}
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_segment_count_label.set_text (string_compose ("%1", max_segments));
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if (max_segments > 0) {
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_shortest_silence_label.set_text (string_compose ("%1 %2", ms, sunits));
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_shortest_audible_label.set_text (string_compose ("%1 %2", ma, aunits));
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} else {
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_shortest_silence_label.set_text ("");
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_shortest_audible_label.set_text ("");
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}
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} else {
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_segment_count_label.set_text (_("Full silence"));
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_shortest_silence_label.set_text ("");
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_shortest_audible_label.set_text ("");
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}
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}
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void *
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StripSilenceDialog::_detection_thread_work (void* arg)
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{
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StripSilenceDialog* d = reinterpret_cast<StripSilenceDialog*> (arg);
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return d->detection_thread_work ();
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}
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/** Body of our silence detection thread */
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void *
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StripSilenceDialog::detection_thread_work ()
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{
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ARDOUR_UI::instance()->register_thread ("gui", pthread_self(), "silence", 32);
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/* Hold this lock when we are doing work */
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_lock.lock ();
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while (1) {
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for (list<Wave*>::iterator i = _waves.begin(); i != _waves.end(); ++i) {
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(*i)->silence = (*i)->region->find_silence (dB_to_coefficient (threshold ()), minimum_length (), _interthread_info);
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if (_interthread_info.cancel) {
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break;
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}
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}
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if (!_interthread_info.cancel) {
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Completed (); /* EMIT SIGNAL */
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}
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/* Our work is done; sleep until there is more to do.
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* The lock is released while we are waiting.
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*/
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_run_cond.wait (_lock);
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if (_thread_should_finish) {
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_lock.unlock ();
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return 0;
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}
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}
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return 0;
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}
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void
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StripSilenceDialog::restart_thread ()
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{
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if (_destroying) {
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/* I don't know how this happens, but it seems to be possible for this
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method to be called after our destructor has finished executing.
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If this happens, bad things follow; _lock cannot be locked and
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Ardour hangs. So if we are destroying, just bail early.
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*/
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return;
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}
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/* Cancel any current run */
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_interthread_info.cancel = true;
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/* Block until the thread waits() */
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_lock.lock ();
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/* Reset the flag */
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_interthread_info.cancel = false;
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_lock.unlock ();
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/* And re-awake the thread */
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_run_cond.signal ();
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}
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void
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StripSilenceDialog::threshold_changed ()
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{
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update_threshold_line ();
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restart_thread ();
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}
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void
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StripSilenceDialog::update_stats (const SilenceResult& res)
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{
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if (res.empty()) {
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return;
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}
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max_silence = 0;
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min_silence = max_framepos;
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max_audible = 0;
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min_audible = max_framepos;
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SilenceResult::const_iterator cur;
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cur = res.begin();
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framepos_t start = 0;
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framepos_t end;
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bool in_silence;
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if (cur->first == 0) {
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/* initial segment, starting at zero, is silent */
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end = cur->second;
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in_silence = true;
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} else {
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/* initial segment, starting at zero, is audible */
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end = cur->first;
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in_silence = false;
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}
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while (cur != res.end()) {
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framecnt_t interval_duration;
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interval_duration = end - start;
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if (in_silence) {
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max_silence = max (max_silence, interval_duration);
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min_silence = min (min_silence, interval_duration);
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} else {
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max_audible = max (max_audible, interval_duration);
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min_audible = min (min_audible, interval_duration);
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}
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start = end;
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++cur;
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end = cur->first;
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in_silence = !in_silence;
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}
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}
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|
|
|
framecnt_t
|
|
StripSilenceDialog::minimum_length () const
|
|
{
|
|
return _minimum_length.current_duration (_waves.front()->region->position());
|
|
}
|
|
|
|
framecnt_t
|
|
StripSilenceDialog::fade_length () const
|
|
{
|
|
return _minimum_length.current_duration (_waves.front()->region->position());
|
|
}
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|
|
|
StripSilenceDialog::Wave::Wave (Group* g, boost::shared_ptr<AudioRegion> r)
|
|
: region (r), view (0), samples_per_unit (1)
|
|
{
|
|
threshold_line = new ArdourCanvas::SimpleLine (*g);
|
|
threshold_line->property_color_rgba() = RGBA_TO_UINT (0, 0, 0, 128);
|
|
}
|
|
|
|
StripSilenceDialog::Wave::~Wave ()
|
|
{
|
|
delete view;
|
|
delete threshold_line;
|
|
for (list<SimpleRect*>::iterator i = silence_rects.begin(); i != silence_rects.end(); ++i) {
|
|
delete *i;
|
|
}
|
|
}
|
|
|
|
void
|
|
StripSilenceDialog::update_progress_gui (float p)
|
|
{
|
|
_progress_bar.set_fraction (p);
|
|
}
|