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https://github.com/hyperion-project/hyperion.ng.git
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fdaa5c0068
Former-commit-id: b739eba0676d9c105416d9040ffbe78b2dc4bfbd
302 lines
9.5 KiB
C
302 lines
9.5 KiB
C
/* ***********************************************************
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* This file was automatically generated on 2013-12-19. *
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* *
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* Bindings Version 2.0.13 *
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* *
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* If you have a bugfix for this file and want to commit it, *
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* please fix the bug in the generator. You can find a link *
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* to the generator git on tinkerforge.com *
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*************************************************************/
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#ifndef BRICKLET_LED_STRIP_H
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#define BRICKLET_LED_STRIP_H
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#include "ip_connection.h"
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/**
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* \defgroup BrickletLEDStrip LEDStrip Bricklet
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*/
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/**
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* \ingroup BrickletLEDStrip
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*
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* Device to control up to 320 RGB LEDs
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*/
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typedef Device LEDStrip;
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/**
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* \ingroup BrickletLEDStrip
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*/
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#define LED_STRIP_FUNCTION_SET_RGB_VALUES 1
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/**
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* \ingroup BrickletLEDStrip
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*/
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#define LED_STRIP_FUNCTION_GET_RGB_VALUES 2
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/**
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* \ingroup BrickletLEDStrip
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*/
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#define LED_STRIP_FUNCTION_SET_FRAME_DURATION 3
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/**
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* \ingroup BrickletLEDStrip
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*/
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#define LED_STRIP_FUNCTION_GET_FRAME_DURATION 4
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/**
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* \ingroup BrickletLEDStrip
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*/
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#define LED_STRIP_FUNCTION_GET_SUPPLY_VOLTAGE 5
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/**
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* \ingroup BrickletLEDStrip
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*/
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#define LED_STRIP_FUNCTION_SET_CLOCK_FREQUENCY 7
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/**
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* \ingroup BrickletLEDStrip
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*/
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#define LED_STRIP_FUNCTION_GET_CLOCK_FREQUENCY 8
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/**
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* \ingroup BrickletLEDStrip
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*/
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#define LED_STRIP_FUNCTION_GET_IDENTITY 255
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/**
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* \ingroup BrickletLEDStrip
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*
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* Signature: \code void callback(uint16_t length, void *user_data) \endcode
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*
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* This callback is triggered directly after a new frame is rendered.
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*
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* You should send the data for the next frame directly after this callback
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* was triggered.
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*
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* For an explanation of the general approach see {@link led_strip_set_rgb_values}.
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*/
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#define LED_STRIP_CALLBACK_FRAME_RENDERED 6
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/**
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* \ingroup BrickletLEDStrip
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*
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* This constant is used to identify a LEDStrip Bricklet.
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*
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* The {@link led_strip_get_identity} function and the
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* {@link IPCON_CALLBACK_ENUMERATE} callback of the IP Connection have a
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* \c device_identifier parameter to specify the Brick's or Bricklet's type.
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*/
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#define LED_STRIP_DEVICE_IDENTIFIER 231
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/**
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* \ingroup BrickletLEDStrip
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*
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* Creates the device object \c led_strip with the unique device ID \c uid and adds
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* it to the IPConnection \c ipcon.
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*/
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void led_strip_create(LEDStrip *led_strip, const char *uid, IPConnection *ipcon);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Removes the device object \c led_strip from its IPConnection and destroys it.
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* The device object cannot be used anymore afterwards.
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*/
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void led_strip_destroy(LEDStrip *led_strip);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Returns the response expected flag for the function specified by the
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* \c function_id parameter. It is *true* if the function is expected to
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* send a response, *false* otherwise.
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*
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* For getter functions this is enabled by default and cannot be disabled,
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* because those functions will always send a response. For callback
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* configuration functions it is enabled by default too, but can be disabled
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* via the led_strip_set_response_expected function. For setter functions it is
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* disabled by default and can be enabled.
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*
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* Enabling the response expected flag for a setter function allows to
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* detect timeouts and other error conditions calls of this setter as well.
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* The device will then send a response for this purpose. If this flag is
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* disabled for a setter function then no response is send and errors are
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* silently ignored, because they cannot be detected.
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*/
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int led_strip_get_response_expected(LEDStrip *led_strip, uint8_t function_id, bool *ret_response_expected);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Changes the response expected flag of the function specified by the
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* \c function_id parameter. This flag can only be changed for setter
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* (default value: *false*) and callback configuration functions
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* (default value: *true*). For getter functions it is always enabled and
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* callbacks it is always disabled.
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*
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* Enabling the response expected flag for a setter function allows to detect
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* timeouts and other error conditions calls of this setter as well. The device
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* will then send a response for this purpose. If this flag is disabled for a
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* setter function then no response is send and errors are silently ignored,
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* because they cannot be detected.
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*/
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int led_strip_set_response_expected(LEDStrip *led_strip, uint8_t function_id, bool response_expected);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Changes the response expected flag for all setter and callback configuration
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* functions of this device at once.
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*/
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int led_strip_set_response_expected_all(LEDStrip *led_strip, bool response_expected);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Registers a callback with ID \c id to the function \c callback. The
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* \c user_data will be given as a parameter of the callback.
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*/
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void led_strip_register_callback(LEDStrip *led_strip, uint8_t id, void *callback, void *user_data);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Returns the API version (major, minor, release) of the bindings for this
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* device.
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*/
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int led_strip_get_api_version(LEDStrip *led_strip, uint8_t ret_api_version[3]);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Sets the *rgb* values for the LEDs with the given *length* starting
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* from *index*.
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*
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* The maximum length is 16, the index goes from 0 to 319 and the rgb values
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* have 8 bits each.
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*
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* Example: If you set
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*
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* * index to 5,
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* * length to 3,
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* * r to [255, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0],
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* * g to [0, 255, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0] and
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* * b to [0, 0, 255, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]
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*
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* the LED with index 5 will be red, 6 will be green and 7 will be blue.
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*
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* The colors will be transfered to actual LEDs when the next
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* frame duration ends, see {@link led_strip_set_frame_duration}.
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*
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* Generic approach:
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*
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* * Set the frame duration to a value that represents
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* the number of frames per second you want to achieve.
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* * Set all of the LED colors for one frame.
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* * Wait for the {@link LED_STRIP_CALLBACK_FRAME_RENDERED} callback.
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* * Set all of the LED colors for next frame.
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* * Wait for the {@link LED_STRIP_CALLBACK_FRAME_RENDERED} callback.
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* * and so on.
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*
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* This approach ensures that you can change the LED colors with
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* a fixed frame rate.
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*
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* The actual number of controllable LEDs depends on the number of free
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* Bricklet ports. See :ref:`here <led_strip_bricklet_ram_constraints>` for more
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* information. A call of {@link led_strip_set_rgb_values} with index + length above the
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* bounds is ignored completely.
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*/
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int led_strip_set_rgb_values(LEDStrip *led_strip, uint16_t index, uint8_t length, uint8_t r[16], uint8_t g[16], uint8_t b[16]);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Returns the rgb with the given *length* starting from the
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* given *index*.
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*
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* The values are the last values that were set by {@link led_strip_set_rgb_values}.
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*/
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int led_strip_get_rgb_values(LEDStrip *led_strip, uint16_t index, uint8_t length, uint8_t ret_r[16], uint8_t ret_g[16], uint8_t ret_b[16]);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Sets the frame duration in ms.
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*
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* Example: If you want to achieve 20 frames per second, you should
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* set the frame duration to 50ms (50ms * 20 = 1 second).
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*
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* For an explanation of the general approach see {@link led_strip_set_rgb_values}.
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*
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* Default value: 100ms (10 frames per second).
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*/
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int led_strip_set_frame_duration(LEDStrip *led_strip, uint16_t duration);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Returns the frame duration as set by {@link led_strip_set_frame_duration}.
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*/
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int led_strip_get_frame_duration(LEDStrip *led_strip, uint16_t *ret_duration);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Returns the current supply voltage of the LEDs. The voltage is given in mV.
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*/
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int led_strip_get_supply_voltage(LEDStrip *led_strip, uint16_t *ret_voltage);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Sets the frequency of the clock in Hz. The range is 10000Hz (10kHz) up to
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* 2000000Hz (2MHz).
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*
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* The Bricklet will choose the nearest achievable frequency, which may
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* be off by a few Hz. You can get the exact frequency that is used by
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* calling {@link led_strip_get_clock_frequency}.
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*
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* If you have problems with flickering LEDs, they may be bits flipping. You
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* can fix this by either making the connection between the LEDs and the
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* Bricklet shorter or by reducing the frequency.
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*
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* With a decreasing frequency your maximum frames per second will decrease
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* too.
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*
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* The default value is 1.66MHz.
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*
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* \note
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* The frequency in firmware version 2.0.0 is fixed at 2MHz.
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*
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* .. versionadded:: 2.0.1~(Plugin)
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*/
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int led_strip_set_clock_frequency(LEDStrip *led_strip, uint32_t frequency);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Returns the currently used clock frequency.
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*
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* .. versionadded:: 2.0.1~(Plugin)
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*/
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int led_strip_get_clock_frequency(LEDStrip *led_strip, uint32_t *ret_frequency);
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/**
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* \ingroup BrickletLEDStrip
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*
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* Returns the UID, the UID where the Bricklet is connected to,
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* the position, the hardware and firmware version as well as the
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* device identifier.
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*
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* The position can be 'a', 'b', 'c' or 'd'.
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*
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* The device identifiers can be found :ref:`here <device_identifier>`.
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*
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* .. versionadded:: 2.0.0~(Plugin)
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*/
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int led_strip_get_identity(LEDStrip *led_strip, char ret_uid[8], char ret_connected_uid[8], char *ret_position, uint8_t ret_hardware_version[3], uint8_t ret_firmware_version[3], uint16_t *ret_device_identifier);
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#endif
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