4f233ff0a3
* WIP: IRDA: multilen protocol refactoring, NEC42 * IRDA: Refactoring encoder/decoder Co-authored-by: あく <alleteam@gmail.com>
206 lines
6.3 KiB
C
206 lines
6.3 KiB
C
#pragma once
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#include <stdbool.h>
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#include <stdint.h>
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#ifdef __cplusplus
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extern "C" {
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#endif
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#define IRDA_COMMON_CARRIER_FREQUENCY 38000
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#define IRDA_COMMON_DUTY_CYCLE 0.33
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/* if we want to see splitted raw signals during brutforce,
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* we have to have RX raw timing delay less than TX */
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#define IRDA_RAW_RX_TIMING_DELAY_US 150000
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#define IRDA_RAW_TX_TIMING_DELAY_US 180000
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typedef struct IrdaDecoderHandler IrdaDecoderHandler;
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typedef struct IrdaEncoderHandler IrdaEncoderHandler;
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typedef enum {
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IrdaProtocolUnknown = -1,
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IrdaProtocolNEC = 0,
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IrdaProtocolNECext,
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IrdaProtocolNEC42,
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IrdaProtocolNEC42ext,
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IrdaProtocolSamsung32,
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IrdaProtocolRC6,
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IrdaProtocolRC5,
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IrdaProtocolRC5X,
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IrdaProtocolSIRC,
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IrdaProtocolSIRC15,
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IrdaProtocolSIRC20,
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IrdaProtocolMAX,
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} IrdaProtocol;
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typedef struct {
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IrdaProtocol protocol;
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uint32_t address;
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uint32_t command;
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bool repeat;
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} IrdaMessage;
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typedef enum {
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IrdaStatusError,
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IrdaStatusOk,
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IrdaStatusDone,
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IrdaStatusReady,
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} IrdaStatus;
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/**
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* Initialize decoder.
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*
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* \return returns pointer to IRDA decoder handler if success, otherwise - error.
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*/
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IrdaDecoderHandler* irda_alloc_decoder(void);
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/**
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* Provide to decoder next timing.
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*
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* \param[in] handler - handler to IRDA decoders. Should be acquired with \c irda_alloc_decoder().
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* \param[in] level - high(true) or low(false) level of input signal to analyze.
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* it should alternate every call, otherwise it is an error case,
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* and decoder resets its state and start decoding from the start.
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* \param[in] duration - duration of steady high/low input signal.
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* \return if message is ready, returns pointer to decoded message, returns NULL.
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* Note: ownership of returned ptr belongs to handler. So pointer is valid
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* up to next irda_free_decoder(), irda_reset_decoder(),
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* irda_decode(), irda_check_decoder_ready() calls.
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*/
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const IrdaMessage* irda_decode(IrdaDecoderHandler* handler, bool level, uint32_t duration);
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/**
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* Check whether decoder is ready.
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* Functionality is quite similar to irda_decode(), but with no timing providing.
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* Some protocols (e.g. Sony SIRC) has variable payload length, which means we
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* can't recognize end of message right after receiving last bit. That's why
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* application should call to irda_check_decoder_ready() after some timeout to
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* retrieve decoded message, if so.
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*
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* \param[in] handler - handler to IRDA decoders. Should be acquired with \c irda_alloc_decoder().
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* \return if message is ready, returns pointer to decoded message, returns NULL.
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* Note: ownership of returned ptr belongs to handler. So pointer is valid
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* up to next irda_free_decoder(), irda_reset_decoder(),
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* irda_decode(), irda_check_decoder_ready() calls.
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*/
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const IrdaMessage* irda_check_decoder_ready(IrdaDecoderHandler* handler);
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/**
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* Deinitialize decoder and free allocated memory.
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*
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* \param[in] handler - handler to IRDA decoders. Should be acquired with \c irda_alloc_decoder().
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*/
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void irda_free_decoder(IrdaDecoderHandler* handler);
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/**
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* Reset IRDA decoder.
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*
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* \param[in] handler - handler to IRDA decoders. Should be acquired with \c irda_alloc_decoder().
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*/
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void irda_reset_decoder(IrdaDecoderHandler* handler);
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/**
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* Get protocol name by protocol enum.
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*
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* \param[in] protocol - protocol identifier.
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* \return string to protocol name.
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*/
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const char* irda_get_protocol_name(IrdaProtocol protocol);
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/**
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* Get protocol enum by protocol name.
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*
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* \param[in] protocol_name - string to protocol name.
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* \return protocol identifier.
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*/
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IrdaProtocol irda_get_protocol_by_name(const char* protocol_name);
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/**
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* Get address length by protocol enum.
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*
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* \param[in] protocol - protocol identifier.
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* \return length of address in bits.
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*/
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uint8_t irda_get_protocol_address_length(IrdaProtocol protocol);
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/**
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* Get command length by protocol enum.
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*
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* \param[in] protocol - protocol identifier.
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* \return length of command in bits.
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*/
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uint8_t irda_get_protocol_command_length(IrdaProtocol protocol);
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/**
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* Checks whether protocol valid.
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*
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* \param[in] protocol - protocol identifier.
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* \return true if protocol is valid, false otherwise.
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*/
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bool irda_is_protocol_valid(IrdaProtocol protocol);
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/**
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* Allocate IRDA encoder.
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*
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* \return encoder handler.
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*/
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IrdaEncoderHandler* irda_alloc_encoder(void);
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/**
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* Free encoder handler previously allocated with \c irda_alloc_encoder().
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*
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* \param[in] handler - handler to IRDA encoder. Should be acquired with \c irda_alloc_encoder().
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*/
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void irda_free_encoder(IrdaEncoderHandler* handler);
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/**
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* Encode previously set IRDA message.
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* Usage:
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* 1) alloc with \c irda_alloc_encoder()
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* 2) set message to encode with \c irda_reset_encoder()
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* 3) call for \c irda_encode() to continuously get one at a time timings.
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* 4) when \c irda_encode() returns IrdaStatusDone, it means new message is fully encoded.
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* 5) to encode additional timings, just continue calling \c irda_encode().
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*
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* \param[in] handler - handler to IRDA encoder. Should be acquired with \c irda_alloc_encoder().
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* \param[out] duration - encoded timing.
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* \param[out] level - encoded level.
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*
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* \return status of encode operation.
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*/
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IrdaStatus irda_encode(IrdaEncoderHandler* handler, uint32_t* duration, bool* level);
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/**
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* Reset IRDA encoder and set new message to encode. If it's not called after receiveing
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* IrdaStatusDone in \c irda_encode(), encoder will encode repeat messages
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* till the end of time.
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*
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* \param[in] handler - handler to IRDA encoder. Should be acquired with \c irda_alloc_encoder().
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* \param[in] message - message to encode.
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*/
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void irda_reset_encoder(IrdaEncoderHandler* handler, const IrdaMessage* message);
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/**
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* Get PWM frequency value for selected protocol
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*
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* \param[in] protocol - protocol to get from PWM frequency
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*
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* \return frequency
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*/
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uint32_t irda_get_protocol_frequency(IrdaProtocol protocol);
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/**
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* Get PWM duty cycle value for selected protocol
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*
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* \param[in] protocol - protocol to get from PWM duty cycle
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*
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* \return duty cycle
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*/
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float irda_get_protocol_duty_cycle(IrdaProtocol protocol);
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#ifdef __cplusplus
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}
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#endif
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