mirror of
https://github.com/eried/portapack-mayhem.git
synced 2024-12-20 21:24:22 -05:00
130 lines
4.8 KiB
C++
130 lines
4.8 KiB
C++
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#ifndef __FPROTO_HORMANNBISECURE_H__
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#define __FPROTO_HORMANNBISECURE_H__
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#include "subghzdbase.hpp"
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typedef enum {
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HormannBiSecurDecoderStepReset = 0,
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HormannBiSecurDecoderStepFoundPreambleAlternatingShort,
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HormannBiSecurDecoderStepFoundPreambleHighVeryLong,
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HormannBiSecurDecoderStepFoundPreambleAlternatingLong,
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HormannBiSecurDecoderStepFoundData,
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} HormannBiSecurDecoderStep;
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class FProtoSubGhzDHormannBiSecure : public FProtoSubGhzDBase {
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public:
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FProtoSubGhzDHormannBiSecure() {
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sensorType = FPS_HORMANN;
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te_short = 208;
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te_long = 416;
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te_delta = 104;
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min_count_bit_for_found = 176;
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}
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void subghz_protocol_decoder_hormann_bisecur_reset() {
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parser_step = HormannBiSecurDecoderStepReset;
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for (uint8_t i = 0; i < 22; ++i) dataa[i] = 0;
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data_count_bit = 0;
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manchester_saved_state = ManchesterStateStart1;
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}
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void feed(bool level, uint32_t duration) {
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ManchesterEvent event = ManchesterEventReset;
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switch (parser_step) {
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case HormannBiSecurDecoderStepReset:
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if (!level && DURATION_DIFF(duration, duration_short + duration_half_short) < te_delta) {
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parser_step = HormannBiSecurDecoderStepFoundPreambleAlternatingShort;
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}
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break;
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case HormannBiSecurDecoderStepFoundPreambleAlternatingShort:
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if (DURATION_DIFF(duration, duration_short) < te_delta) {
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// stay on the same step, the pattern repeats around 21 times
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break;
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}
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if (level && DURATION_DIFF(duration, duration_long * 4) < te_delta) {
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parser_step = HormannBiSecurDecoderStepFoundPreambleHighVeryLong;
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break;
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}
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parser_step = HormannBiSecurDecoderStepReset;
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break;
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case HormannBiSecurDecoderStepFoundPreambleHighVeryLong:
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if (!level && DURATION_DIFF(duration, duration_long) < te_delta) {
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sync_cnt = 3;
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parser_step = HormannBiSecurDecoderStepFoundPreambleAlternatingLong;
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break;
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}
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parser_step = HormannBiSecurDecoderStepReset;
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break;
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case HormannBiSecurDecoderStepFoundPreambleAlternatingLong:
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if (level == (sync_cnt-- & 1) &&
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DURATION_DIFF(duration, duration_long) < te_delta) {
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if (!sync_cnt) {
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FProtoGeneral::manchester_advance_alt(manchester_saved_state, event, &manchester_saved_state, NULL);
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parser_step = HormannBiSecurDecoderStepFoundData;
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}
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// stay on the same step, or advance to the next if enough transitions are found
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break;
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}
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parser_step = HormannBiSecurDecoderStepReset;
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break;
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case HormannBiSecurDecoderStepFoundData:
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if (DURATION_DIFF(duration, duration_short) < te_delta ||
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(
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// the last bit can be arbitrary long, but it is parsed as a short
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data_count_bit == min_count_bit_for_found - 1 &&
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duration > duration_short)) {
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event = !level ? ManchesterEventShortHigh : ManchesterEventShortLow;
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}
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if (DURATION_DIFF(duration, duration_long) < te_delta) {
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event = !level ? ManchesterEventLongHigh : ManchesterEventLongLow;
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}
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if (event == ManchesterEventReset) {
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subghz_protocol_decoder_hormann_bisecur_reset();
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} else {
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bool new_level;
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if (manchester_advance_alt(instance->manchester_saved_state, event, &instance->manchester_saved_state, &new_level)) {
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subghz_protocol_decoder_hormann_bisecur_add_bit(instance, new_level);
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}
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}
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break;
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}
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}
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void subghz_protocol_decoder_hormann_bisecur_add_bit(bool level) {
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if (data_count_bit >= min_count_bit_for_found) {
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return;
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}
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if (level) {
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uint8_t byte_index = data_count_bit / 8;
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uint8_t bit_index = data_count_bit % 8;
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dataa[byte_index] |= 1 << (7 - bit_index);
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}
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data_count_bit++;
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if (data_count_bit >= min_count_bit_for_found) {
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if (callback) {
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callback(this);
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} else {
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subghz_protocol_decoder_hormann_bisecur_reset();
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}
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}
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}
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protected:
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ManchesterState manchester_saved_state = ManchesterStateMid1;
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uint8_t dataa[22] = {0};
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uint8_t sync_cnt = 0;
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};
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#endif
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