void stopVibration() { //leaving all config on except clock source // CS1: 0b000 ou o0 ou 0x0void messageFromPC(char dataToFill[], uint8_t sizeOfDataToFill); stopFilter(); vibrationLedOff(); TCCR1B &= ~_BV(CS12); // CS12 = 0 TCCR1B &= ~_BV(CS11); // CS11 = 0 TCCR1B &= ~_BV(CS10); // CS10 = 0 //force output to 0 TCCR1A &= ~(_BV(COM1A1) | _BV(COM1A0) ); PORTD &= ~_BV(RESERVED_FOR_TIMER_PWM_BIT); }
void DVBevents::stop() { int i; if ( !isRunning ) return; isRunning = false; if ( !wait(2000) ) { terminate(); wait(); fprintf(stderr,"dvbEvents %d:%d terminated\n", adapter, tuner); } else fprintf(stderr,"dvbEvents %d:%d ended\n", adapter, tuner); stopFilter(); for ( i=0; i<(int)plugs.count(); ++i ) { plugs.at(i)->stop(); } }
void StepMotionBlurFilter::handleStopEvent( const media_timed_event* pEvent) { PRINT(("StepMotionBlurFilter::handleStopEvent\n")); stopFilter(); }
void OffsetFilter::handleStopEvent( const media_timed_event* pEvent) { PRINT(("OffsetFilter::handleStopEvent\n")); stopFilter(); }
void FlipTransition::handleStopEvent( const media_timed_event* pEvent) { PRINT(("FlipTransition::handleStopEvent\n")); stopFilter(); }
void FlangerNode::handleStopEvent( const media_timed_event* pEvent) { PRINT(("FlangerNode::handleStopEvent\n")); stopFilter(); }