flipperzero-firmware/lib/infrared/encoder_decoder/kaseikyo/infrared_encoder_kaseikyo.c
Georgii Surkov 75e9de12b0
[FL-3078] Per protocol signal repeat count (#2293)
* 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>
2023-01-13 16:50:19 +03:00

42 lines
1.5 KiB
C

#include "infrared_protocol_kaseikyo_i.h"
#include <core/check.h>
void infrared_encoder_kaseikyo_reset(void* encoder_ptr, const InfraredMessage* message) {
furi_assert(encoder_ptr);
InfraredCommonEncoder* encoder = encoder_ptr;
infrared_common_encoder_reset(encoder);
uint32_t address = message->address;
uint16_t command = message->command;
uint8_t id = (address >> 24) & 3;
uint16_t vendor_id = (address >> 8) & 0xffff;
uint8_t genre1 = (address >> 4) & 0xf;
uint8_t genre2 = address & 0xf;
encoder->data[0] = (uint8_t)(vendor_id & 0xff);
encoder->data[1] = (uint8_t)(vendor_id >> 8);
uint8_t vendor_parity = encoder->data[0] ^ encoder->data[1];
vendor_parity = (vendor_parity & 0xf) ^ (vendor_parity >> 4);
encoder->data[2] = (vendor_parity & 0xf) | (genre1 << 4);
encoder->data[3] = (genre2 & 0xf) | ((uint8_t)(command & 0xf) << 4);
encoder->data[4] = (id << 6) | (uint8_t)(command >> 4);
encoder->data[5] = encoder->data[2] ^ encoder->data[3] ^ encoder->data[4];
encoder->bits_to_encode = encoder->protocol->databit_len[0];
}
void* infrared_encoder_kaseikyo_alloc(void) {
return infrared_common_encoder_alloc(&infrared_protocol_kaseikyo);
}
void infrared_encoder_kaseikyo_free(void* encoder_ptr) {
infrared_common_encoder_free(encoder_ptr);
}
InfraredStatus
infrared_encoder_kaseikyo_encode(void* encoder_ptr, uint32_t* duration, bool* level) {
return infrared_common_encode(encoder_ptr, duration, level);
}