mirror of
https://github.com/eried/portapack-mayhem.git
synced 2024-12-14 10:14:28 -05:00
130 lines
5.1 KiB
C++
130 lines
5.1 KiB
C++
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#ifndef __FPROTO_Kedsum_H__
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#define __FPROTO_Kedsum_H__
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#include "weatherbase.hpp"
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typedef enum {
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KedsumTHDecoderStepReset = 0,
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KedsumTHDecoderStepCheckPreambule,
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KedsumTHDecoderStepSaveDuration,
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KedsumTHDecoderStepCheckDuration,
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} KedsumTHDecoderStep;
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class FProtoWeatherKedsum : public FProtoWeatherBase {
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public:
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FProtoWeatherKedsum() {
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sensorType = FPW_KEDSUM;
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}
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void feed(bool level, uint32_t duration) {
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switch (parser_step) {
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case KedsumTHDecoderStepReset:
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if ((level) && (DURATION_DIFF(duration, te_short) < te_delta)) {
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parser_step = KedsumTHDecoderStepCheckPreambule;
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te_last = duration;
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header_count = 0;
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}
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break;
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case KedsumTHDecoderStepCheckPreambule:
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if (level) {
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te_last = duration;
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} else {
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if ((DURATION_DIFF(te_last, te_short) < te_delta) &&
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(DURATION_DIFF(duration, te_long * 4) < te_delta * 4)) {
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// Found preambule
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header_count++;
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} else if (
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(DURATION_DIFF(te_last, te_short) < te_delta) &&
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(duration < (te_long * 2 + te_delta * 2))) {
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// Found syncPrefix
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if (header_count > 0) {
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parser_step = KedsumTHDecoderStepSaveDuration;
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decode_data = 0;
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decode_count_bit = 0;
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if ((DURATION_DIFF(te_last, te_short) < te_delta) &&
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(DURATION_DIFF(duration, te_long) < te_delta * 2)) {
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subghz_protocol_blocks_add_bit(0);
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parser_step = KedsumTHDecoderStepSaveDuration;
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} else if (
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(DURATION_DIFF(te_last, te_short) < te_delta) &&
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(DURATION_DIFF(duration, te_long * 2) < te_delta * 4)) {
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subghz_protocol_blocks_add_bit(1);
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parser_step = KedsumTHDecoderStepSaveDuration;
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} else {
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parser_step = KedsumTHDecoderStepReset;
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}
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}
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} else {
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parser_step = KedsumTHDecoderStepReset;
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}
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}
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break;
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case KedsumTHDecoderStepSaveDuration:
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if (level) {
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te_last = duration;
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parser_step = KedsumTHDecoderStepCheckDuration;
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} else {
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parser_step = KedsumTHDecoderStepReset;
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}
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break;
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case KedsumTHDecoderStepCheckDuration:
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if (!level) {
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if (DURATION_DIFF(duration, te_long * 4) < te_delta * 4) {
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// Found syncPostfix
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if ((decode_count_bit ==
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min_count_bit_for_found) &&
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ws_protocol_kedsum_th_check_crc()) {
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if (callback) callback(this);
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}
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decode_data = 0;
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decode_count_bit = 0;
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parser_step = KedsumTHDecoderStepReset;
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break;
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} else if (
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(DURATION_DIFF(te_last, te_short) < te_delta) &&
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(DURATION_DIFF(duration, te_long) < te_delta * 2)) {
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subghz_protocol_blocks_add_bit(0);
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parser_step = KedsumTHDecoderStepSaveDuration;
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} else if (
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(DURATION_DIFF(te_last, te_short) <
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te_delta) &&
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(DURATION_DIFF(duration, te_long * 2) <
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te_delta * 4)) {
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subghz_protocol_blocks_add_bit(1);
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parser_step = KedsumTHDecoderStepSaveDuration;
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} else {
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parser_step = KedsumTHDecoderStepReset;
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}
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} else {
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parser_step = KedsumTHDecoderStepReset;
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}
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break;
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}
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}
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protected:
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uint32_t te_short = 500;
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uint32_t te_long = 2000;
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uint32_t te_delta = 150;
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uint32_t min_count_bit_for_found = 42;
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bool ws_protocol_kedsum_th_check_crc() {
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uint8_t msg[] = {
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static_cast<uint8_t>(decode_data >> 32),
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static_cast<uint8_t>(decode_data >> 24),
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static_cast<uint8_t>(decode_data >> 16),
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static_cast<uint8_t>(decode_data >> 8),
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static_cast<uint8_t>(decode_data)};
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uint8_t crc = FProtoGeneral::subghz_protocol_blocks_crc4(msg, 4, 0x03, 0); // CRC-4 poly 0x3 init 0x0 xor last 4 bits
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crc ^= msg[4] >> 4; // last nibble is only XORed
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return (crc == (msg[4] & 0x0F));
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}
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};
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#endif
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