389ff92cc1
* Makefile, Scripts: new linter * About: remove ID from IC * Firmware: remove double define for DIVC/DIVR * Scripts: check folder names too. Docker: replace syntax check with make lint. * Reformat Sources and Migrate to new file naming convention * Docker: symlink clang-format-12 to clang-format * Add coding style guide
194 lines
4.8 KiB
C++
194 lines
4.8 KiB
C++
#include "cyfral_decoder.h"
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#include <furi.h>
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void CyfralDecoder::reset_state() {
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state = State::WAIT_START_NIBBLE;
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bit_state = BitState::WAIT_FRONT_LOW;
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period_time = 0;
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bit_index = 0;
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ready = false;
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index = 0;
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key_data = 0;
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readed_nibble = 0;
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data_valid = true;
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}
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bool CyfralDecoder::nibble_valid(uint8_t data) {
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uint8_t data_value = data & 0x0F;
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switch(data_value) {
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case 0b1110:
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case 0b1101:
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case 0b1011:
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case 0b0111:
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return true;
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break;
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default:
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return false;
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}
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}
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CyfralDecoder::CyfralDecoder() {
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reset_state();
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max_period = 0;
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}
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void CyfralDecoder::process_front(bool polarity, uint32_t time) {
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bool readed;
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bool value;
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if(max_period == 0) {
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max_period = 230 * (SystemCoreClock / 1000000.0f);
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}
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if(ready) return;
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switch(state) {
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case State::WAIT_START_NIBBLE:
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// wait for start word
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if(process_bit(polarity, time, &readed, &value)) {
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if(readed) {
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readed_nibble = ((readed_nibble << 1) | value) & 0x0F;
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if(readed_nibble == 0b0001) {
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readed_nibble = 0;
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state = State::READ_NIBBLE;
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}
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}
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} else {
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reset_state();
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}
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break;
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case State::READ_NIBBLE:
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// read nibbles
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if(process_bit(polarity, time, &readed, &value)) {
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if(readed) {
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readed_nibble = (readed_nibble << 1) | value;
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bit_index++;
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//convert every nibble to 2-bit index
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if(bit_index == 4) {
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switch(readed_nibble) {
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case 0b1110:
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key_data = (key_data << 2) | 0b11;
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break;
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case 0b1101:
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key_data = (key_data << 2) | 0b10;
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break;
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case 0b1011:
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key_data = (key_data << 2) | 0b01;
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break;
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case 0b0111:
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key_data = (key_data << 2) | 0b00;
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break;
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default:
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data_valid = false;
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break;
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}
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readed_nibble = 0;
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bit_index = 0;
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index++;
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}
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// succefully read 8 nibbles
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if(index == 8) {
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state = State::READ_STOP_NIBBLE;
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}
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}
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} else {
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reset_state();
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}
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break;
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case State::READ_STOP_NIBBLE:
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// read stop nibble
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if(process_bit(polarity, time, &readed, &value)) {
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if(readed) {
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readed_nibble = ((readed_nibble << 1) | value) & 0x0F;
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bit_index++;
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switch(bit_index) {
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case 0:
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case 1:
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case 2:
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case 3:
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break;
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case 4:
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if(readed_nibble == 0b0001) {
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// validate data
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if(data_valid) {
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ready = true;
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} else {
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reset_state();
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}
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} else {
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reset_state();
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}
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break;
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default:
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reset_state();
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break;
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}
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}
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} else {
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reset_state();
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}
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break;
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}
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}
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bool CyfralDecoder::process_bit(bool polarity, uint32_t time, bool* readed, bool* readed_value) {
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bool result = true;
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*readed = false;
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// bit start from low
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switch(bit_state) {
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case BitState::WAIT_FRONT_LOW:
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if(polarity == true) {
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period_time += time;
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*readed = true;
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if(period_time <= max_period) {
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if((period_time / 2) > time) {
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*readed_value = false;
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} else {
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*readed_value = true;
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}
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} else {
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result = false;
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}
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bit_state = BitState::WAIT_FRONT_HIGH;
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} else {
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result = false;
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}
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break;
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case BitState::WAIT_FRONT_HIGH:
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if(polarity == false) {
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period_time = time;
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bit_state = BitState::WAIT_FRONT_LOW;
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} else {
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result = false;
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}
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break;
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}
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return result;
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}
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bool CyfralDecoder::read(uint8_t* _data, uint8_t data_size) {
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furi_check(data_size <= 2);
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bool result = false;
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if(ready) {
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memcpy(_data, &key_data, data_size);
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reset_state();
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result = true;
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}
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return result;
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}
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