2009-12-25 01:59:39 +01:00
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/*******************************************************************************/
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/* Copyright (C) 2009 Jonathan Moore Liles */
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/* */
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/* This program is free software; you can redistribute it and/or modify it */
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/* under the terms of the GNU General Public License as published by the */
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/* Free Software Foundation; either version 2 of the License, or (at your */
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/* option) any later version. */
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/* */
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/* This program is distributed in the hope that it will be useful, but WITHOUT */
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/* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or */
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/* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for */
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/* 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; see the file COPYING. If not,write to the Free Software */
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/* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
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/*******************************************************************************/
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#include "Controller_Module.H"
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#include <FL/Fl.H>
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2009-12-26 07:58:28 +01:00
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#include "FL/Fl_Value_SliderX.H"
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2009-12-25 01:59:39 +01:00
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#include <FL/Fl_Box.H>
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#include <FL/Fl_Counter.H>
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#include "FL/Fl_Arc_Dial.H"
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#include "FL/Fl_Light_Button.H"
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#include "FL/Boxtypes.H"
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#include <FL/fl_draw.H>
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#include "FL/Fl_Labelpad_Group.H"
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#include <stdio.h>
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#include "Engine/Engine.H"
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#include "Chain.H"
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const float CONTROL_UPDATE_FREQ = 0.1f;
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2009-12-28 06:25:28 +01:00
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void
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Controller_Module::get ( Log_Entry &e ) const
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{
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Port *p = control_output[0].connected_port();
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Module *m = p->module();
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e.add( ":module", m );
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e.add( ":port", m->control_input_port_index( p ) );
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Module::get( e );
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}
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void
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Controller_Module::set ( Log_Entry &e )
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{
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Module::set( e );
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int port = -1;
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Module *module = NULL;
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for ( int i = 0; i < e.size(); ++i )
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{
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const char *s, *v;
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e.get( i, &s, &v );
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if ( ! strcmp( s, ":port" ) )
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{
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port = atoi( v );
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}
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else if ( ! strcmp( s, ":module" ) )
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{
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int i;
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sscanf( v, "%X", &i );
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Module *t = (Module*)Loggable::find( i );
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assert( t );
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module = t;
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}
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}
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if ( port >= 0 && module )
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2010-01-14 04:19:12 +01:00
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{
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2009-12-28 06:25:28 +01:00
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control_output[0].connect_to( &module->control_input[port] );
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2010-01-14 04:19:12 +01:00
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module->chain()->add_control( this );
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label( module->control_input[port].name() );
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}
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2009-12-28 06:25:28 +01:00
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}
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Controller_Module::Controller_Module ( bool is_default ) : Module( is_default, 50, 100, name() )
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2009-12-25 01:59:39 +01:00
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{
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// label( "" );
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box( FL_NO_BOX );
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_pad = true;
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control = 0;
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control_value =0.0f;
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2009-12-28 06:25:28 +01:00
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2009-12-25 01:59:39 +01:00
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add_port( Port( this, Port::OUTPUT, Port::CONTROL ) );
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mode( GUI );
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// mode( CV );
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// configure_inputs( 1 );
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end();
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Fl::add_timeout( CONTROL_UPDATE_FREQ, update_cb, this );
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2009-12-28 06:25:28 +01:00
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log_create();
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2009-12-25 01:59:39 +01:00
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}
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Controller_Module::~Controller_Module ( )
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{
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2009-12-26 09:04:17 +01:00
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Fl::remove_timeout( update_cb, this );
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2009-12-28 06:25:28 +01:00
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log_destroy();
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2009-12-25 01:59:39 +01:00
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}
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void
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Controller_Module::update_cb ( void *v )
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{
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((Controller_Module*)v)->update_cb();
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}
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void
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Controller_Module::update_cb ( void )
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{
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Fl::repeat_timeout( CONTROL_UPDATE_FREQ, update_cb, this );
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if ( control && control_output[0].connected() )
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control->value(control_value);
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}
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void
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Controller_Module::cb_handle ( Fl_Widget *w, void *v )
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{
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((Controller_Module*)v)->cb_handle( w );
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}
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void
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Controller_Module::cb_handle ( Fl_Widget *w )
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{
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control_value = ((Fl_Valuator*)w)->value();
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if ( control_output[0].connected() )
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{
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control_output[0].control_value( control_value );
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Port *p = control_output[0].connected_port();
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Module *m = p->module();
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m->handle_control_changed( p );
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}
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}
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void
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Controller_Module::connect_to ( Port *p )
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{
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control_output[0].connect_to( p );
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if( mode() == CV )
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{
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engine->lock();
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{
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char name[256];
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snprintf( name, sizeof( name ), "%s-CV", p->name() );
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JACK::Port po( engine->client(), JACK::Port::Input, chain()->name(), 0, name );
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if ( po.valid() )
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{
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jack_input.push_back( po );
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}
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}
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engine->unlock();
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}
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Fl_Widget *w;
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if ( p->hints.type == Module::Port::Hints::BOOLEAN )
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{
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Fl_Light_Button *o = new Fl_Light_Button( 0, 0, 40, 40, p->name() );
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w = o;
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o->value( p->control_value() );
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}
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else if ( p->hints.type == Module::Port::Hints::INTEGER )
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{
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Fl_Counter *o = new Fl_Counter(0, 0, 58, 24, p->name() );
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control = o;
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w = o;
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o->type(1);
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o->step(1);
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if ( p->hints.ranged )
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{
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o->minimum( p->hints.minimum );
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o->maximum( p->hints.maximum );
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}
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o->value( p->control_value() );
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}
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else if ( p->hints.type == Module::Port::Hints::LOGARITHMIC )
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{
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2009-12-26 07:58:28 +01:00
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Fl_Value_SliderX *o = new Fl_Value_SliderX(0, 0, 30, 250, p->name() );
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2009-12-25 01:59:39 +01:00
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control = o;
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w = o;
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o->type(4);
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o->color(FL_GRAY0);
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o->selection_color((Fl_Color)1);
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o->minimum(1.5);
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o->maximum(0);
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o->value(1);
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o->textsize(14);
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// o->type( FL_VERTICAL );
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// o->type(1);
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if ( p->hints.ranged )
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{
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o->minimum( p->hints.maximum );
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o->maximum( p->hints.minimum );
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}
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o->value( p->control_value() );
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}
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else
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{
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{ Fl_Arc_Dial *o = new Fl_Arc_Dial( 0, 0, 40, 40, p->name() );
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w = o;
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control = o;
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if ( p->hints.ranged )
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{
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o->minimum( p->hints.minimum );
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o->maximum( p->hints.maximum );
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}
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o->box( FL_BURNISHED_OVAL_BOX );
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// o->box( FL_OVAL_BOX );
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// o->type( FL_FILL_DIAL );
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o->color( fl_darker( fl_darker( FL_GRAY ) ) );
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o->selection_color( FL_WHITE );
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o->value( p->control_value() );
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}
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}
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control_value = p->control_value();
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w->align(FL_ALIGN_TOP);
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w->labelsize( 10 );
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w->callback( cb_handle, this );
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if ( _pad )
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{
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Fl_Labelpad_Group *flg = new Fl_Labelpad_Group( w );
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size( flg->w(), flg->h() );
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add( flg );
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}
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else
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{
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w->resize( x(), y(), this->w(), h() );
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add( w );
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resizable( w );
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}
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}
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2010-01-12 03:31:15 +01:00
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void
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Controller_Module::resize ( int X, int Y, int W, int H )
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{
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Module::resize( X, Y, W, H );
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if ( ! _pad && children() )
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{
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child( 0 )->resize( X, Y, W, H );
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}
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}
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2009-12-25 01:59:39 +01:00
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int
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Controller_Module::handle ( int m )
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{
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return Fl_Group::handle( m );
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}
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void
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Controller_Module::process ( void )
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{
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2010-01-14 04:19:12 +01:00
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THREAD_ASSERT( RT );
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2009-12-25 01:59:39 +01:00
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if ( control_output[0].connected() )
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{
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float f = control_value;
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if ( mode() == CV )
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{
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f = *((float*)jack_input[0].buffer( engine->nframes() ));
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const Port *p = control_output[0].connected_port();
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if (p->hints.ranged )
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{
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// scale value to range.
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// we assume that CV values are between 0 and 1
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float scale = p->hints.maximum - p->hints.minimum;
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float offset = p->hints.minimum;
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f = ( f * scale ) + offset;
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}
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}
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// else
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// f = *((float*)control_output[0].buffer());
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*((float*)control_output[0].buffer()) = f;
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control_value = f;
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}
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}
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