* rename old ibutton app to ibutton-test * more renames * updated onewire library compilation condition * add submenu_clean subroutine * add index for submenu callback * c++ guard for gui modules * add released ibutton app * fix the position of the submenu window if there are too few items * iButton app basis * negative icon position info * fix submenu_clean subroutine * add ibutton app to applications makefile * add onewire key read routine to read mode * rename mode to scene * rename files and folder (mode to scene) * rename ibutton view to view manager * rename get_view to get_view_manager * cpp guards * key read, store and notify features * syntax fix * make iButtonScene functions pure virtual * fix syntax * add text store, add new scene (crc error) * not a key scene * syntax fix * read success scene * app, switching to the previous scene with the number of scenes to be skipped * scene whith menu when key is readed * fix font height calculation, fix offsets * add key write scene * view_dispatcher_remove_view subroutine * generic pause/resume os methods * fix furi_assert usage * key store, worker * fix pointer comparsion * saved keys, saved key action scenes * key delete/confirm delete scenes and routines * use last input subsystem changes * fix syntax * fix new model usage in submenu * fix includes * use vibro pin * use stored key name if valid * emulate scene * random name generator * name and save readed key scenes, new icon * fix icon position * fix text scene exit * fix naming, fix text placement, new info scene * state-driven cyfral decoder * better cyfral decoder * better cyfral decoder * one wire: search command set * metakom decoder * more key types * add next scene to error scenes * universal key reader * use new key reader * syntax fix * warning fix * byte input module template * new thread and insomnia api usage * New element: slightly rounded frame * Use elements_slightly_rounded_frame in text input * Gui test app: byte input usage * Byte input module: data drawing and selection * Byte input: comment currently unused fns * remove volatile qualifier * base byte input realisation * App gui test: remove internal fns visibility * Byne input, final version * test install gcc-arm-none-eabi-10-2020-q4-major * test install gcc-arm-none-eabi-10-2020-q4-major * App iButton: byte input view managment * App iButton: add key manually scenes * App iButton: rename scenes, add popup timeout * App iButton: use new scenes, new fn for rollback to specific prevous scene. * App iButton: remove byte input view on app exit * App iButton: edit key scene * Module byte input: reduce swintch value to uint8_t * Module byte input: switch from switch-case to if, unfortunately we need compile-time constants to use with switch * Icons: new small arrows * Module byte input: new arrangement of elements * OneWire slave lib: fix deattach sequence * App iButton: pulse sequencer * App iButton: add more keys to store * App iButton: split key worker to separate read/write/emulate entitys * App iButton: use new read/emulate entities * fix callback pointer saving * App iButton: use KeyReader error enum instead of KeyWorker error list handling * App iButton: do not use insomnia fns in pulse sequencer * App iButton: use KeyReader error enum in read scene * OneWire slave lib: more READ ROM command variants, call callback only if positive result * GPIO resources: add external gpio * App SD/NFC: removed application * App iButton-test: update to new light api * App iButton: update to new light-api * Outdated apps: add api-light-usage * Gpio: update SD card CS pin settings * API-power: added fns to disable/enable external 3v3 dc-dc * API-gpio: separated SD card detect routines * Resources: removed sd cs pin * SD card: low level init now resets card power supply * App SD-filesystem: use new card detect fns * SD card: fix low level init headers * SD card: more realilable low level init, power reset, exit from command read cycle conditionally * App SD-filesystem: led notifiers, init cycling * SD card: backport to F4 * Api PWM: add c++ guards * App iButton: yellow blink in emulate scene, vibro on * App iButton: one wire keys command set * App iButton: successful write scene * App iButton: key writer * App iButton: syntax fix * App iButton: notify write success * App iButton: fix double scene change * SD card: handle eject in init sequence * SD card: api to set level on detect gpio * SPI: api to set state on bus pins * SD card: set low state on bus pins while power reset * File select: init * File select: fix input consuming * SD Card: fixed dir open api error * SD-card: replace strncpy by strlcpy. Fix buffer overflow error. * API HAL OS: replace CMP based ticks with ARR based one, hard reset lptimer on reconfiguration. * GUI: More stack size for (temporary, wee need to implement sd card api in separate thread) * GUI: File select module. * App iButton-test: remove obsolete app Co-authored-by: rusdacent <rusdacentx0x08@gmail.com> Co-authored-by: coreglitch <mail@s3f.ru> Co-authored-by: Aleksandr Kutuzov <alleteam@gmail.com>
		
			
				
	
	
		
			193 lines
		
	
	
		
			5.2 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			193 lines
		
	
	
		
			5.2 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
#include "key-reader.h"
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#include "key-commands.h"
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#include <callback-connector.h>
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#include <maxim_crc.h>
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extern COMP_HandleTypeDef hcomp1;
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KeyReader::Error KeyReader::read(iButtonKey* key) {
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    uint8_t tmp_key_data[8] = {0, 0, 0, 0, 0, 0, 0, 0};
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    iButtonKeyType key_type;
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    KeyReader::Error result = KeyReader::Error::EMPTY;
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    if(read_key(&key_type, tmp_key_data, 8)) {
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        switch(key_type) {
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        case iButtonKeyType::KeyDallas:
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            if(verify_key(key_type, tmp_key_data, 8)) {
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                if(maxim_crc8(tmp_key_data, 8) == 0) {
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                    if(tmp_key_data[0] == 0x01) {
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                        result = KeyReader::Error::OK;
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                    } else {
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                        result = KeyReader::Error::NOT_ARE_KEY;
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                    }
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                } else {
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                    result = KeyReader::Error::CRC_ERROR;
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                }
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            }
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            break;
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        case iButtonKeyType::KeyCyfral:
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            result = KeyReader::Error::OK;
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            break;
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        case iButtonKeyType::KeyMetakom:
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            result = KeyReader::Error::OK;
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            break;
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        }
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        if(result != KeyReader::Error::EMPTY) {
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            key->set_type(key_type);
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            key->set_data(tmp_key_data, 8);
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        }
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    }
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    switch_mode_if_needed();
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    return result;
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}
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KeyReader::KeyReader(OneWireMaster* _onewire_master) {
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    onewire_master = _onewire_master;
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    read_mode_switch_time = 0;
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    read_mode = ReadMode::DALLAS;
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}
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KeyReader::~KeyReader() {
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    stop();
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}
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bool KeyReader::read_key(iButtonKeyType* key_type, uint8_t* data, uint8_t data_size) {
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    bool readed = false;
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    switch(read_mode) {
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    case ReadMode::DALLAS:
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        if(onewire_master->search(data)) {
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            onewire_master->reset_search();
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            readed = true;
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            *key_type = iButtonKeyType::KeyDallas;
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        } else {
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            onewire_master->reset_search();
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        }
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        break;
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    case ReadMode::CYFRAL_METAKOM:
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        if(cyfral_decoder.read(data, 2)) {
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            readed = true;
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            *key_type = iButtonKeyType::KeyCyfral;
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        } else if(metakom_decoder.read(data, 4)) {
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            readed = true;
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            *key_type = iButtonKeyType::KeyMetakom;
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        }
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        break;
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    }
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    return readed;
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}
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bool KeyReader::verify_key(iButtonKeyType key_type, const uint8_t* const data, uint8_t data_size) {
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    bool result = true;
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    switch(key_type) {
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    case iButtonKeyType::KeyDallas:
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        switch_to(ReadMode::DALLAS);
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        if(onewire_master->reset()) {
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            onewire_master->write(DS1990::CMD_READ_ROM);
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            for(uint8_t i = 0; i < data_size; i++) {
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                if(onewire_master->read() != data[i]) {
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                    result = false;
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                }
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            }
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        } else {
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            result = false;
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            break;
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        }
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        break;
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    default:
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        result = false;
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        break;
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    }
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    return result;
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}
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void KeyReader::start_comaparator(void) {
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    // pulldown lf-rfid pins to prevent interference
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    // TODO open record
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    GpioPin rfid_pull_pin = {.port = RFID_PULL_GPIO_Port, .pin = RFID_PULL_Pin};
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    gpio_init(&rfid_pull_pin, GpioModeOutputOpenDrain);
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    gpio_write(&rfid_pull_pin, false);
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    // TODO open record
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    GpioPin rfid_out_pin = {.port = RFID_OUT_GPIO_Port, .pin = RFID_OUT_Pin};
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    gpio_init(&rfid_out_pin, GpioModeOutputOpenDrain);
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    gpio_write(&rfid_out_pin, false);
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    comparator_callback_pointer =
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        cbc::obtain_connector(this, &KeyReader::comparator_trigger_callback);
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    api_interrupt_add(comparator_callback_pointer, InterruptTypeComparatorTrigger, this);
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    last_dwt_value = DWT->CYCCNT;
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    HAL_COMP_Start(&hcomp1);
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}
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void KeyReader::stop_comaparator(void) {
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    HAL_COMP_Stop(&hcomp1);
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    api_interrupt_remove(comparator_callback_pointer, InterruptTypeComparatorTrigger);
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}
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void KeyReader::comparator_trigger_callback(void* hcomp, void* comp_ctx) {
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    COMP_HandleTypeDef* _hcomp = static_cast<COMP_HandleTypeDef*>(hcomp);
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    KeyReader* _this = static_cast<KeyReader*>(comp_ctx);
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    if(hcomp == &hcomp1) {
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        _this->cyfral_decoder.process_front(
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            (HAL_COMP_GetOutputLevel(_hcomp) == COMP_OUTPUT_LEVEL_HIGH),
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            DWT->CYCCNT - last_dwt_value);
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        _this->metakom_decoder.process_front(
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            (HAL_COMP_GetOutputLevel(_hcomp) == COMP_OUTPUT_LEVEL_HIGH),
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            DWT->CYCCNT - last_dwt_value);
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        last_dwt_value = DWT->CYCCNT;
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    }
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}
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void KeyReader::switch_to(ReadMode mode) {
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    switch(mode) {
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    case ReadMode::DALLAS:
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        onewire_master->start();
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        stop_comaparator();
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        break;
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    case ReadMode::CYFRAL_METAKOM:
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        onewire_master->stop();
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        start_comaparator();
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        break;
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    }
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    read_mode = mode;
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}
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void KeyReader::switch_mode_if_needed() {
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    if(osKernelGetTickCount() - read_mode_switch_time > (osKernelGetTickFreq() / 5)) {
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        read_mode_switch_time = osKernelGetTickCount();
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        switch(read_mode) {
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        case ReadMode::DALLAS:
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            switch_to(ReadMode::CYFRAL_METAKOM);
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            break;
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        case ReadMode::CYFRAL_METAKOM:
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            switch_to(ReadMode::DALLAS);
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            break;
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        }
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    }
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}
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void KeyReader::start() {
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    switch_to(ReadMode::CYFRAL_METAKOM);
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}
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void KeyReader::stop() {
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    onewire_master->stop();
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    stop_comaparator();
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}
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