* Better Infrared protocol file structure * Rename InfraredProtocolSpec to InfraredProtocolVariant * Slightly better names * Add repeat count field to protocol variant description * Repeat the signal the appropriate number of times when brute-forcing * Repeat the signal the appropriate number of times when sending via worker * Better signal count logic in infrared_transmit * Better variable names * Convert some raw signals to messages in tv.ir Co-authored-by: あく <alleteam@gmail.com>
		
			
				
	
	
		
			69 lines
		
	
	
		
			2.2 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			69 lines
		
	
	
		
			2.2 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
#include "infrared_protocol_sirc_i.h"
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#include <core/check.h>
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void infrared_encoder_sirc_reset(void* encoder_ptr, const InfraredMessage* message) {
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    furi_assert(encoder_ptr);
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    furi_assert(message);
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    InfraredCommonEncoder* encoder = encoder_ptr;
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    infrared_common_encoder_reset(encoder);
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    uint32_t* data = (void*)encoder->data;
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    if(message->protocol == InfraredProtocolSIRC) {
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        *data = (message->command & 0x7F);
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        *data |= (message->address & 0x1F) << 7;
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        encoder->bits_to_encode = 12;
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    } else if(message->protocol == InfraredProtocolSIRC15) {
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        *data = (message->command & 0x7F);
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        *data |= (message->address & 0xFF) << 7;
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        encoder->bits_to_encode = 15;
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    } else if(message->protocol == InfraredProtocolSIRC20) {
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        *data = (message->command & 0x7F);
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        *data |= (message->address & 0x1FFF) << 7;
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        encoder->bits_to_encode = 20;
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    } else {
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        furi_assert(0);
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    }
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}
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InfraredStatus infrared_encoder_sirc_encode_repeat(
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    InfraredCommonEncoder* encoder,
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    uint32_t* duration,
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    bool* level) {
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    furi_assert(encoder);
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    furi_assert(encoder->timings_encoded == (1u + 2 + encoder->bits_to_encode * 2 - 1));
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    furi_assert(encoder->timings_sum < INFRARED_SIRC_REPEAT_PERIOD);
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    *duration = INFRARED_SIRC_REPEAT_PERIOD - encoder->timings_sum;
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    *level = false;
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    encoder->timings_sum = 0;
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    encoder->timings_encoded = 1;
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    encoder->bits_encoded = 0;
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    encoder->state = InfraredCommonEncoderStatePreamble;
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    return InfraredStatusOk;
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}
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void* infrared_encoder_sirc_alloc(void) {
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    return infrared_common_encoder_alloc(&infrared_protocol_sirc);
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}
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void infrared_encoder_sirc_free(void* encoder_ptr) {
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    infrared_common_encoder_free(encoder_ptr);
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}
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InfraredStatus infrared_encoder_sirc_encode(void* encoder_ptr, uint32_t* duration, bool* level) {
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    InfraredCommonEncoder* encoder = encoder_ptr;
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    InfraredStatus status = infrared_common_encode(encoder, duration, level);
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    if((status == InfraredStatusOk) && (encoder->bits_encoded == encoder->bits_to_encode)) {
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        furi_assert(!*level);
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        status = InfraredStatusDone;
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        encoder->state = InfraredCommonEncoderStateEncodeRepeat;
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    }
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    return status;
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}
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