41c892802f
* Export region with fades * Removed some debug output git-svn-id: svn://localhost/ardour2/branches/3.0@3923 d708f5d6-7413-0410-9779-e7cbd77b26cf
499 lines
15 KiB
C++
499 lines
15 KiB
C++
/*
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Copyright (C) 2008 Paul Davis
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Author: Sakari Bergen
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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 "export_channel_selector.h"
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#include <algorithm>
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#include <pbd/convert.h>
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#include <ardour/audioengine.h>
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#include <ardour/export_channel_configuration.h>
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#include <ardour/export_handler.h>
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#include <ardour/io.h>
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#include <ardour/route.h>
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#include <ardour/audio_port.h>
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#include <ardour/session.h>
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#include <sstream>
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#include "i18n.h"
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using namespace ARDOUR;
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using namespace PBD;
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PortExportChannelSelector::PortExportChannelSelector () :
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channels_label (_("Channels:"), Gtk::ALIGN_LEFT),
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split_checkbox (_("Split to mono files")),
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max_channels (20),
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channel_view (max_channels)
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{
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channels_hbox.pack_start (channels_label, false, false, 0);
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channels_hbox.pack_end (channels_spinbutton, false, false, 0);
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channels_vbox.pack_start (channels_hbox, false, false, 0);
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channels_vbox.pack_start (split_checkbox, false, false, 6);
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channel_alignment.add (channel_scroller);
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channel_alignment.set_padding (0, 0, 12, 0);
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channel_scroller.add (channel_view);
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channel_scroller.set_size_request (-1, 130);
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channel_scroller.set_policy (Gtk::POLICY_AUTOMATIC, Gtk::POLICY_AUTOMATIC);
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pack_start (channels_vbox, false, false, 0);
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pack_start (channel_alignment, true, true, 0);
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/* Channels spinbutton */
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channels_spinbutton.set_digits (0);
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channels_spinbutton.set_increments (1, 2);
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channels_spinbutton.set_range (1, max_channels);
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channels_spinbutton.set_value (2);
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channels_spinbutton.signal_value_changed().connect (sigc::mem_fun (*this, &PortExportChannelSelector::update_channel_count));
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/* Other signals */
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split_checkbox.signal_toggled().connect (sigc::mem_fun (*this, &PortExportChannelSelector::update_split_state));
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channel_view.CriticalSelectionChanged.connect (CriticalSelectionChanged.make_slot());
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/* Finalize */
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show_all_children ();
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}
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PortExportChannelSelector::~PortExportChannelSelector ()
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{
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// if (session) {
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// session->add_instant_xml (get_state(), false);
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// }
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}
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void
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PortExportChannelSelector::set_state (ARDOUR::ExportProfileManager::ChannelConfigStatePtr const state_, ARDOUR::Session * session_)
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{
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state = state_;
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session = session_;
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split_checkbox.set_active (state->config->get_split());
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channels_spinbutton.set_value (state->config->get_n_chans());
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fill_route_list ();
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channel_view.set_config (state->config);
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}
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void
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PortExportChannelSelector::fill_route_list ()
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{
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channel_view.clear_routes ();
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Session::RouteList routes = *session->get_routes();
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/* Add master bus and then everything else */
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ARDOUR::IO * master = session->master_out().get();
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channel_view.add_route (master);
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for (Session::RouteList::iterator it = routes.begin(); it != routes.end(); ++it) {
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if (it->get() == master) {
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continue;
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}
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channel_view.add_route (it->get());
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}
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update_channel_count ();
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}
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void
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PortExportChannelSelector::update_channel_count ()
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{
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uint32_t chans = static_cast<uint32_t> (channels_spinbutton.get_value());
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channel_view.set_channel_count (chans);
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CriticalSelectionChanged();
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}
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void
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PortExportChannelSelector::update_split_state ()
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{
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state->config->set_split (split_checkbox.get_active());
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CriticalSelectionChanged();
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}
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void
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PortExportChannelSelector::RouteCols::add_channels (uint32_t chans)
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{
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while (chans > 0) {
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channels.push_back (Channel (*this));
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++n_channels;
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--chans;
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}
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}
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PortExportChannelSelector::RouteCols::Channel &
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PortExportChannelSelector::RouteCols::get_channel (uint32_t channel)
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{
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if (channel > n_channels) {
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std::cout << "Invalid channel cout for get_channel!" << std::endl;
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}
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std::list<Channel>::iterator it = channels.begin();
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while (channel > 1) { // Channel count starts from one!
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++it;
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--channel;
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}
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return *it;
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}
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PortExportChannelSelector::ChannelTreeView::ChannelTreeView (uint32_t max_channels) :
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n_channels (0)
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{
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/* Main columns */
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route_cols.add_channels (max_channels);
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route_list = Gtk::ListStore::create(route_cols);
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set_model (route_list);
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/* Add column with toggle and text */
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append_column_editable (_("Bus or Track"), route_cols.selected);
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Gtk::CellRendererText* text_renderer = Gtk::manage (new Gtk::CellRendererText);
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text_renderer->property_editable() = false;
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Gtk::TreeView::Column* column = get_column (0);
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column->pack_start (*text_renderer);
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column->add_attribute (text_renderer->property_text(), route_cols.name);
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Gtk::CellRendererToggle *toggle = dynamic_cast<Gtk::CellRendererToggle *>(get_column_cell_renderer (0));
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toggle->signal_toggled().connect (mem_fun (*this, &PortExportChannelSelector::ChannelTreeView::update_toggle_selection));
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static_columns = get_columns().size();
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}
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void
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PortExportChannelSelector::ChannelTreeView::set_config (ChannelConfigPtr c)
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{
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/* TODO Without the following line, the state might get reset.
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* Pointing to the same address does not mean the state of the configuration hasn't changed.
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* In the current code this is safe, but the actual cause of the problem would be good to fix
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*/
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if (config == c) { return; }
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config = c;
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uint32_t i = 1;
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ExportChannelConfiguration::ChannelList chan_list = config->get_channels();
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for (ExportChannelConfiguration::ChannelList::iterator c_it = chan_list.begin(); c_it != chan_list.end(); ++c_it) {
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for (Gtk::ListStore::Children::iterator r_it = route_list->children().begin(); r_it != route_list->children().end(); ++r_it) {
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ARDOUR::PortExportChannel * pec;
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if (!(pec = dynamic_cast<ARDOUR::PortExportChannel *> (c_it->get()))) {
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continue;
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}
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Glib::RefPtr<Gtk::ListStore> port_list = r_it->get_value (route_cols.port_list_col);
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std::set<AudioPort *> route_ports;
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std::set<AudioPort *> intersection;
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std::map<AudioPort *, ustring> port_labels;
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for (Gtk::ListStore::Children::const_iterator p_it = port_list->children().begin(); p_it != port_list->children().end(); ++p_it) {
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route_ports.insert ((*p_it)->get_value (route_cols.port_cols.port));
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port_labels.insert (std::pair<AudioPort*, ustring> ((*p_it)->get_value (route_cols.port_cols.port),
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(*p_it)->get_value (route_cols.port_cols.label)));
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}
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std::set_intersection (pec->get_ports().begin(), pec->get_ports().end(),
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route_ports.begin(), route_ports.end(),
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std::insert_iterator<std::set<AudioPort *> > (intersection, intersection.begin()));
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intersection.erase (0); // Remove "none" selection
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if (intersection.empty()) {
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continue;
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}
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if (!r_it->get_value (route_cols.selected)) {
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r_it->set_value (route_cols.selected, true);
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/* Set previous channels (if any) to none */
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for (uint32_t chn = 1; chn < i; ++chn) {
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r_it->set_value (route_cols.get_channel (chn).port, (AudioPort *) 0);
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r_it->set_value (route_cols.get_channel (chn).label, ustring ("(none)"));
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}
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}
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AudioPort * port = *intersection.begin();
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std::map<AudioPort *, ustring>::iterator label_it = port_labels.find (port);
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ustring label = label_it != port_labels.end() ? label_it->second : "error";
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r_it->set_value (route_cols.get_channel (i).port, port);
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r_it->set_value (route_cols.get_channel (i).label, label);
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}
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++i;
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}
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}
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void
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PortExportChannelSelector::ChannelTreeView::add_route (ARDOUR::IO * route)
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{
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Gtk::TreeModel::iterator iter = route_list->append();
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Gtk::TreeModel::Row row = *iter;
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row[route_cols.selected] = false;
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row[route_cols.name] = route->name();
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row[route_cols.io] = route;
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/* Initialize port list */
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Glib::RefPtr<Gtk::ListStore> port_list = Gtk::ListStore::create (route_cols.port_cols);
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row[route_cols.port_list_col] = port_list;
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uint32_t outs = route->n_outputs().n_audio();
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for (uint32_t i = 0; i < outs; ++i) {
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iter = port_list->append();
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row = *iter;
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row[route_cols.port_cols.selected] = false;
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row[route_cols.port_cols.port] = route->audio_output (i);
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std::ostringstream oss;
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oss << "Out-" << (i + 1);
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row[route_cols.port_cols.label] = oss.str();
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}
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iter = port_list->append();
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row = *iter;
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row[route_cols.port_cols.selected] = false;
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row[route_cols.port_cols.port] = 0;
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row[route_cols.port_cols.label] = "(none)";
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}
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void
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PortExportChannelSelector::ChannelTreeView::set_channel_count (uint32_t channels)
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{
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int offset = channels - n_channels;
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while (offset > 0) {
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++n_channels;
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std::ostringstream oss;
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oss << n_channels;
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/* New column */
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Gtk::TreeView::Column* column = Gtk::manage (new Gtk::TreeView::Column (oss.str()));
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Gtk::CellRendererCombo* combo_renderer = Gtk::manage (new Gtk::CellRendererCombo);
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combo_renderer->property_text_column() = 2;
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column->pack_start (*combo_renderer);
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append_column (*column);
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column->add_attribute (combo_renderer->property_text(), route_cols.get_channel(n_channels).label);
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column->add_attribute (combo_renderer->property_model(), route_cols.port_list_col);
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column->add_attribute (combo_renderer->property_editable(), route_cols.selected);
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combo_renderer->signal_edited().connect (sigc::bind (sigc::mem_fun (*this, &PortExportChannelSelector::ChannelTreeView::update_selection_text), n_channels));
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/* put data into view */
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for (Gtk::ListStore::Children::iterator it = route_list->children().begin(); it != route_list->children().end(); ++it) {
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Glib::ustring label = it->get_value(route_cols.selected) ? "(none)" : "";
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it->set_value (route_cols.get_channel (n_channels).label, label);
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it->set_value (route_cols.get_channel (n_channels).port, (AudioPort *) 0);
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}
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/* set column width */
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get_column (static_columns + n_channels - 1)->set_min_width (80);
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--offset;
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}
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while (offset < 0) {
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--n_channels;
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remove_column (*get_column (n_channels + static_columns));
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++offset;
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}
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update_config ();
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}
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void
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PortExportChannelSelector::ChannelTreeView::update_config ()
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{
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if (!config) { return; }
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config->clear_channels();
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for (uint32_t i = 1; i <= n_channels; ++i) {
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ExportChannelPtr channel (new PortExportChannel ());
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PortExportChannel * pec = static_cast<PortExportChannel *> (channel.get());
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for (Gtk::ListStore::Children::iterator it = route_list->children().begin(); it != route_list->children().end(); ++it) {
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Gtk::TreeModel::Row row = *it;
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if (!row[route_cols.selected]) {
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continue;
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}
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AudioPort * port = row[route_cols.get_channel (i).port];
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if (port) {
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pec->add_port (port);
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}
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}
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config->register_channel (channel);
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}
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CriticalSelectionChanged ();
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}
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void
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PortExportChannelSelector::ChannelTreeView::update_toggle_selection (Glib::ustring const & path)
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{
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Gtk::TreeModel::iterator iter = get_model ()->get_iter (path);
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bool selected = iter->get_value (route_cols.selected);
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for (uint32_t i = 1; i <= n_channels; ++i) {
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if (!selected) {
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iter->set_value (route_cols.get_channel (i).label, Glib::ustring (""));
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continue;
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}
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iter->set_value (route_cols.get_channel (i).label, Glib::ustring("(none)"));
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iter->set_value (route_cols.get_channel (i).port, (AudioPort *) 0);
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Glib::RefPtr<Gtk::ListStore> port_list = iter->get_value (route_cols.port_list_col);
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Gtk::ListStore::Children::iterator port_it;
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uint32_t port_number = 1;
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for (port_it = port_list->children().begin(); port_it != port_list->children().end(); ++port_it) {
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if (port_number == i) {
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iter->set_value (route_cols.get_channel (i).label, (Glib::ustring) (*port_it)->get_value (route_cols.port_cols.label));
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iter->set_value (route_cols.get_channel (i).port, (AudioPort *) (*port_it)->get_value (route_cols.port_cols.port));
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}
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++port_number;
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}
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}
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update_config ();
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}
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void
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PortExportChannelSelector::ChannelTreeView::update_selection_text (Glib::ustring const & path, Glib::ustring const & new_text, uint32_t channel)
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{
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Gtk::TreeModel::iterator iter = get_model ()->get_iter (path);
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iter->set_value (route_cols.get_channel (channel).label, new_text);
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Glib::RefPtr<Gtk::ListStore> port_list = iter->get_value (route_cols.port_list_col);
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Gtk::ListStore::Children::iterator port_it;
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for (port_it = port_list->children().begin(); port_it != port_list->children().end(); ++port_it) {
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Glib::ustring label = port_it->get_value (route_cols.port_cols.label);
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if (label == new_text) {
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iter->set_value (route_cols.get_channel (channel).port, (AudioPort *) (*port_it)[route_cols.port_cols.port]);
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}
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}
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update_config ();
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}
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RegionExportChannelSelector::RegionExportChannelSelector (ARDOUR::AudioRegion const & region, ARDOUR::AudioTrack & track) :
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session (0),
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region (region),
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track (track),
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region_chans (region.n_channels()),
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track_chans (track.n_outputs().n_audio()),
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raw_button (type_group),
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fades_button (type_group),
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processed_button (type_group)
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{
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pack_start (vbox);
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raw_button.set_label (string_compose (_("Region contents without fades (channels: %1)"), region_chans));
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raw_button.signal_toggled ().connect (sigc::mem_fun (*this, &RegionExportChannelSelector::handle_selection));
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vbox.pack_start (raw_button);
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fades_button.set_label (string_compose (_("Region contents with fades (channels: %1)"), region_chans));
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fades_button.signal_toggled ().connect (sigc::mem_fun (*this, &RegionExportChannelSelector::handle_selection));
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vbox.pack_start (fades_button);
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processed_button.set_label (string_compose (_("Track output (channels: %1)"), track_chans));
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processed_button.signal_toggled ().connect (sigc::mem_fun (*this, &RegionExportChannelSelector::handle_selection));
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vbox.pack_start (processed_button);
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vbox.show_all_children ();
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show_all_children ();
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}
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void
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RegionExportChannelSelector::set_state (ARDOUR::ExportProfileManager::ChannelConfigStatePtr const state_, ARDOUR::Session * session_)
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{
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state = state_;
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session = session_;
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handle_selection ();
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}
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void
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RegionExportChannelSelector::handle_selection ()
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{
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if (!state) {
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return;
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}
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state->config->clear_channels ();
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if (raw_button.get_active ()) {
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factory.reset (new RegionExportChannelFactory (session, region, track, RegionExportChannelFactory::Raw));
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} else if (fades_button.get_active ()) {
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factory.reset (new RegionExportChannelFactory (session, region, track, RegionExportChannelFactory::Fades));
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} else if (processed_button.get_active ()) {
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factory.reset (new RegionExportChannelFactory(session, region, track, RegionExportChannelFactory::Processed));
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} else {
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CriticalSelectionChanged ();
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return;
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}
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for (size_t chan = 0; chan < region_chans; ++chan) {
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state->config->register_channel (factory->create (chan));
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}
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CriticalSelectionChanged ();
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}
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