* Add new IrdaApp (half ready), add ButtonMenu * Fix NEC's extension * clang-format * Fix leak * Add submenu optional header * IRDA: add Edit button * clang-format * IrdaApp: Fix scene flow * Add IRDA NEC extended protocol * IRDA: Add address/command length Co-authored-by: SG <who.just.the.doctor@gmail.com>
		
			
				
	
	
		
			127 lines
		
	
	
		
			3.5 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			127 lines
		
	
	
		
			3.5 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
#include <stdbool.h>
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#include <stdint.h>
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#include <furi.h>
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#include "../irda_i.h"
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static bool interpret_nec(IrdaCommonDecoder* decoder);
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static bool interpret_necext(IrdaCommonDecoder* decoder);
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static DecodeStatus decode_repeat_nec(IrdaCommonDecoder* decoder);
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static const IrdaCommonProtocolSpec protocol_nec = {
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    {
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        IRDA_NEC_PREAMBULE_MARK,
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        IRDA_NEC_PREAMBULE_SPACE,
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        IRDA_NEC_BIT1_MARK,
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        IRDA_NEC_BIT1_SPACE,
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        IRDA_NEC_BIT0_MARK,
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        IRDA_NEC_BIT0_SPACE,
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        IRDA_NEC_PREAMBLE_TOLERANCE,
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        IRDA_NEC_BIT_TOLERANCE,
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    },
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    32,
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    irda_common_decode_pdwm,
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    interpret_nec,
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    decode_repeat_nec,
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};
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static const IrdaCommonProtocolSpec protocol_necext = {
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    {
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        IRDA_NEC_PREAMBULE_MARK,
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        IRDA_NEC_PREAMBULE_SPACE,
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        IRDA_NEC_BIT1_MARK,
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        IRDA_NEC_BIT1_SPACE,
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        IRDA_NEC_BIT0_MARK,
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        IRDA_NEC_BIT0_SPACE,
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        IRDA_NEC_PREAMBLE_TOLERANCE,
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        IRDA_NEC_BIT_TOLERANCE,
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    },
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    32,
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    irda_common_decode_pdwm,
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    interpret_necext,
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    decode_repeat_nec,
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};
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static bool interpret_nec(IrdaCommonDecoder* decoder) {
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    furi_assert(decoder);
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    bool result = false;
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    uint8_t address = decoder->data[0];
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    uint8_t address_inverse = decoder->data[1];
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    uint8_t command = decoder->data[2];
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    uint8_t command_inverse = decoder->data[3];
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    if ((command == (uint8_t) ~command_inverse) && (address == (uint8_t) ~address_inverse)) {
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        decoder->message.command = command;
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        decoder->message.address = address;
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        decoder->message.repeat = false;
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        result = true;
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    }
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    return result;
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}
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// Some NEC's extensions allow 16 bit address
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static bool interpret_necext(IrdaCommonDecoder* decoder) {
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    furi_assert(decoder);
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    bool result = false;
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    uint8_t command = decoder->data[2];
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    uint8_t command_inverse = decoder->data[3];
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    if(command == (uint8_t)~command_inverse) {
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        decoder->message.command = command;
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        decoder->message.address = decoder->data[0] | (decoder->data[1] << 8);
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        decoder->message.repeat = false;
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        result = true;
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    }
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    return result;
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}
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// timings start from Space (delay between message and repeat)
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static DecodeStatus decode_repeat_nec(IrdaCommonDecoder* decoder) {
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    furi_assert(decoder);
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    float preamble_tolerance = decoder->protocol->timings.preamble_tolerance;
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    uint32_t bit_tolerance = decoder->protocol->timings.bit_tolerance;
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    DecodeStatus status = DecodeStatusError;
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    if(decoder->timings_cnt < 4) return DecodeStatusOk;
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    if((decoder->timings[0] > IRDA_NEC_REPEAT_PAUSE_MIN) &&
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       (decoder->timings[0] < IRDA_NEC_REPEAT_PAUSE_MAX) &&
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       MATCH_PREAMBLE_TIMING(decoder->timings[1], IRDA_NEC_REPEAT_MARK, preamble_tolerance) &&
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       MATCH_PREAMBLE_TIMING(decoder->timings[2], IRDA_NEC_REPEAT_SPACE, preamble_tolerance) &&
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       MATCH_BIT_TIMING(decoder->timings[3], decoder->protocol->timings.bit1_mark, bit_tolerance)) {
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        status = DecodeStatusReady;
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        decoder->timings_cnt = 0;
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    } else {
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        status = DecodeStatusError;
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    }
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    return status;
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}
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void* irda_decoder_nec_alloc(void) {
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    return irda_common_decoder_alloc(&protocol_nec);
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}
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void* irda_decoder_necext_alloc(void) {
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    return irda_common_decoder_alloc(&protocol_necext);
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}
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IrdaMessage* irda_decoder_nec_decode(void* decoder, bool level, uint32_t duration) {
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    return irda_common_decode(decoder, level, duration);
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}
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void irda_decoder_nec_free(void* decoder) {
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    irda_common_decoder_free(decoder);
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}
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void irda_decoder_nec_reset(void* decoder) {
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    irda_common_decoder_reset(decoder);
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}
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