2008-12-12 17:55:03 -05:00
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#include <cmath>
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2010-10-04 20:25:57 -04:00
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#include "ardour/session.h"
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2009-10-30 11:30:22 -04:00
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2008-12-12 17:55:03 -05:00
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#include "mackie_jog_wheel.h"
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#include "mackie_control_protocol.h"
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#include "surface_port.h"
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#include "controls.h"
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#include "surface.h"
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#include <algorithm>
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using namespace Mackie;
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using std::isnan;
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JogWheel::JogWheel( MackieControlProtocol & mcp )
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: _mcp( mcp )
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, _transport_speed( 4.0 )
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, _transport_direction( 0 )
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, _shuttle_speed( 0.0 )
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{
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}
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JogWheel::State JogWheel::jog_wheel_state() const
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{
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if ( !_jog_wheel_states.empty() )
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return _jog_wheel_states.top();
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2009-10-30 11:30:22 -04:00
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else
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2008-12-12 17:55:03 -05:00
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return scroll;
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}
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2009-07-28 07:49:14 -04:00
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void JogWheel::zoom_event (SurfacePort &, Control &, const ControlState &)
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2008-12-12 17:55:03 -05:00
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{
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}
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2009-07-28 07:49:14 -04:00
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void JogWheel::scrub_event (SurfacePort &, Control &, const ControlState &)
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2008-12-12 17:55:03 -05:00
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{
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}
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2009-07-28 07:49:14 -04:00
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void JogWheel::speed_event (SurfacePort &, Control &, const ControlState &)
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2008-12-12 17:55:03 -05:00
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{
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}
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2009-07-28 07:49:14 -04:00
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void JogWheel::scroll_event (SurfacePort &, Control &, const ControlState &)
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2008-12-12 17:55:03 -05:00
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{
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}
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2009-07-28 07:49:14 -04:00
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void JogWheel::jog_event (SurfacePort &, Control &, const ControlState & state)
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2008-12-12 17:55:03 -05:00
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{
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// TODO use current snap-to setting?
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switch ( jog_wheel_state() )
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{
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case scroll:
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_mcp.ScrollTimeline( state.delta * state.sign );
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break;
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case zoom:
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// Chunky Zoom.
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// TODO implement something similar to ScrollTimeline which
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// ends up in Editor::control_scroll for smoother zooming.
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if ( state.sign > 0 )
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for ( unsigned int i = 0; i < state.ticks; ++i ) _mcp.ZoomIn();
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else
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for ( unsigned int i = 0; i < state.ticks; ++i ) _mcp.ZoomOut();
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break;
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case speed:
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// locally, _transport_speed is an positive value
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_transport_speed += _mcp.surface().scaled_delta( state, _mcp.get_session().transport_speed() );
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// make sure no weirdness gets to the session
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if ( _transport_speed < 0 || isnan( _transport_speed ) )
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{
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_transport_speed = 0.0;
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}
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// translate _transport_speed speed to a signed transport velocity
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_mcp.get_session().request_transport_speed( transport_speed() * transport_direction() );
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break;
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case scrub:
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{
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if ( state.sign != 0 )
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{
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add_scrub_interval( _scrub_timer.restart() );
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// x clicks per second => speed == 1.0
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float speed = _mcp.surface().scrub_scaling_factor() / average_scrub_interval() * state.ticks;
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_mcp.get_session().request_transport_speed( speed * state.sign );
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}
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else
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{
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// we have a stop event
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check_scrubbing();
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}
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break;
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}
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case shuttle:
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_shuttle_speed = _mcp.get_session().transport_speed();
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_shuttle_speed += _mcp.surface().scaled_delta( state, _mcp.get_session().transport_speed() );
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_mcp.get_session().request_transport_speed( _shuttle_speed );
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break;
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case select:
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2009-05-13 11:45:38 -04:00
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std::cout << "JogWheel select not implemented" << std::endl;
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2008-12-12 17:55:03 -05:00
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break;
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}
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}
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void JogWheel::check_scrubbing()
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{
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// if the last elapsed is greater than the average + std deviation, then stop
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if ( !_scrub_intervals.empty() && _scrub_timer.elapsed() > average_scrub_interval() + std_dev_scrub_interval() )
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{
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_mcp.get_session().request_transport_speed( 0.0 );
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_scrub_intervals.clear();
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}
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}
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void JogWheel::push( State state )
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{
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_jog_wheel_states.push( state );
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}
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void JogWheel::pop()
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{
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if ( _jog_wheel_states.size() > 0 )
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{
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_jog_wheel_states.pop();
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}
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}
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void JogWheel::zoom_state_toggle()
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{
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if ( jog_wheel_state() == zoom )
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pop();
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else
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push( zoom );
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}
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JogWheel::State JogWheel::scrub_state_cycle()
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{
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State top = jog_wheel_state();
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if ( top == scrub )
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{
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// stop scrubbing and go to shuttle
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pop();
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push( shuttle );
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_shuttle_speed = 0.0;
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}
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else if ( top == shuttle )
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{
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// default to scroll, or the last selected
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pop();
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}
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else
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{
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// start with scrub
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push( scrub );
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}
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return jog_wheel_state();
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}
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void JogWheel::add_scrub_interval( unsigned long elapsed )
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{
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if ( _scrub_intervals.size() > 5 )
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{
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_scrub_intervals.pop_front();
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}
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_scrub_intervals.push_back( elapsed );
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}
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float JogWheel::average_scrub_interval()
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{
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float sum = 0.0;
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for ( std::deque<unsigned long>::iterator it = _scrub_intervals.begin(); it != _scrub_intervals.end(); ++it )
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{
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sum += *it;
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}
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return sum / _scrub_intervals.size();
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}
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float JogWheel::std_dev_scrub_interval()
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{
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float average = average_scrub_interval();
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// calculate standard deviation
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float sum = 0.0;
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for ( std::deque<unsigned long>::iterator it = _scrub_intervals.begin(); it != _scrub_intervals.end(); ++it )
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{
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sum += pow( *it - average, 2 );
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}
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return sqrt( sum / _scrub_intervals.size() -1 );
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}
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