2012-08-27 15:44:50 -03:00
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#ifndef __AP_HAL_AVR_RC_INPUT_H__
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#define __AP_HAL_AVR_RC_INPUT_H__
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2015-08-11 03:28:43 -03:00
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#include <AP_HAL/AP_HAL.h>
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2012-08-27 15:44:50 -03:00
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#include "AP_HAL_AVR_Namespace.h"
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2015-01-20 23:13:49 -04:00
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#define AVR_RC_INPUT_NUM_CHANNELS 11
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2013-04-29 02:35:59 -03:00
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#define AVR_RC_INPUT_MIN_CHANNELS 5 // for ppm sum we allow less than 8 channels to make up a valid packet
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2012-08-27 20:45:27 -03:00
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2015-02-08 02:09:17 -04:00
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/*
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mininum pulse width in microseconds to signal end of a PPM-SUM
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frame. This value is chosen to be smaller than the default 3000 sync
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pulse width for OpenLRSng. Note that this is the total pulse with
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(typically 300us low followed by a long high pulse)
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*/
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#define AVR_RC_INPUT_MIN_SYNC_PULSE_WIDTH 2700
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2012-08-27 15:44:50 -03:00
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class AP_HAL_AVR::APM1RCInput : public AP_HAL::RCInput {
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public:
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2012-12-03 21:47:18 -04:00
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/**
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* init:
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* HAL_AVR::init should pass in a AP_HAL_AVR::ISRRegistry* as a void*
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*/
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2012-08-27 20:45:27 -03:00
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void init(void* isrregistry);
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2012-12-03 21:47:18 -04:00
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/**
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2015-02-08 18:56:32 -04:00
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* Return true if there has been new input since the last read()
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* call. This call also clears the new_input flag, so once it
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* returns true it won't return true again until another frame is
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* received.
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2012-12-03 21:47:18 -04:00
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*/
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2014-03-25 00:39:41 -03:00
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bool new_input();
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/**
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* Return the number of input channels in last read()
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*/
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uint8_t num_channels();
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2012-12-03 21:47:18 -04:00
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/**
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* read(uint8_t):
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* Read a single channel at a time
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*/
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2012-08-27 20:45:27 -03:00
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uint16_t read(uint8_t ch);
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2012-12-03 21:47:18 -04:00
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/**
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* read(uint16_t*,uint8_t):
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* Read an array of channels, return the valid count
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*/
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2012-08-27 20:45:27 -03:00
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uint8_t read(uint16_t* periods, uint8_t len);
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2012-12-03 21:47:18 -04:00
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2012-12-06 16:45:56 -04:00
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/**
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* Overrides: these are really grody and don't belong here but we need
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* them at the moment to make the port work.
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* case v of:
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* v == -1 -> no change to this channel
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* v == 0 -> do not override this channel
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* v > 0 -> set v as override.
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*/
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/* set_overrides: array starts at ch 0, for len channels */
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bool set_overrides(int16_t *overrides, uint8_t len);
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/* set_override: set just a specific channel */
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bool set_override(uint8_t channel, int16_t override);
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/* clear_overrides: equivelant to setting all overrides to 0 */
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void clear_overrides();
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2012-08-27 15:44:50 -03:00
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private:
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2012-08-27 20:45:27 -03:00
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/* private callback for input capture ISR */
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static void _timer4_capt_cb(void);
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/* private variables to communicate with input capture isr */
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static volatile uint16_t _pulse_capt[AVR_RC_INPUT_NUM_CHANNELS];
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2014-03-25 00:39:41 -03:00
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static volatile uint8_t _num_channels;
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static volatile bool _new_input;
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2012-12-06 16:45:56 -04:00
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/* override state */
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uint16_t _override[AVR_RC_INPUT_NUM_CHANNELS];
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2012-08-27 15:44:50 -03:00
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};
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class AP_HAL_AVR::APM2RCInput : public AP_HAL::RCInput {
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2012-08-27 20:45:27 -03:00
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/* Pass in a AP_HAL_AVR::ISRRegistry* as void*. */
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void init(void* isrregistry);
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2014-03-25 00:39:41 -03:00
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bool new_input();
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uint8_t num_channels();
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2012-08-27 20:45:27 -03:00
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uint16_t read(uint8_t ch);
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uint8_t read(uint16_t* periods, uint8_t len);
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2012-12-06 16:45:56 -04:00
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bool set_overrides(int16_t *overrides, uint8_t len);
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bool set_override(uint8_t channel, int16_t override);
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void clear_overrides();
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2012-08-27 15:44:50 -03:00
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private:
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2012-08-27 20:45:27 -03:00
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/* private callback for input capture ISR */
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static void _timer5_capt_cb(void);
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/* private variables to communicate with input capture isr */
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static volatile uint16_t _pulse_capt[AVR_RC_INPUT_NUM_CHANNELS];
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2014-03-25 00:39:41 -03:00
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static volatile uint8_t _num_channels;
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static volatile bool _new_input;
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2012-12-06 16:45:56 -04:00
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/* override state */
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uint16_t _override[AVR_RC_INPUT_NUM_CHANNELS];
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2012-08-27 15:44:50 -03:00
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};
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#endif // __AP_HAL_AVR_RC_INPUT_H__
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