mirror of
https://github.com/DarkFlippers/unleashed-firmware
synced 2024-11-24 05:23:06 +00:00
9bfb641d3e
* Makefile: unit tests pack * RFID: pulse joiner and its unit test * Move pulse protocol helpers to appropriate place * Drop pulse_joiner tests * Generic protocol, protocols dictionary, unit test * Protocol dict unit test * iButton: protocols dictionary * Lib: varint * Lib: profiler * Unit test: varint * rfid: worker mockup * LFRFID: em4100 unit test * Storage: file_exist function * rfid: fsk osc * rfid: generic fsk demodulator * rfid: protocol em4100 * rfid: protocol h10301 * rfid: protocol io prox xsf * Unit test: rfid protocols * rfid: new hal * rfid: raw worker * Unit test: fix error output * rfid: worker * rfid: plain c cli * fw: migrate to scons * lfrfid: full io prox support * unit test: io prox protocol * SubGHZ: move bit defines to source * FSK oscillator: level duration compability * libs: bit manipulation library * lfrfid: ioprox protocol, use bit library and new level duration method of FSK ocillator * bit lib: unit tests * Bit lib: parity tests, remove every nth bit, copy bits * Lfrfid: awid protocol * bit lib: uint16 and uint32 getters, unit tests * lfrfid: FDX-B read, draft version * Minunit: better memeq assert * bit lib: reverse, print, print regions * Protocol dict: get protocol features, get protocol validate count * lfrfid worker: improved read * lfrfid raw worker: psk support * Cli: rfid plain C cli * protocol AWID: render * protocol em4100: render * protocol h10301: render * protocol indala26: support every indala 26 scramble * Protocol IO Prox: render * Protocol FDX-B: advanced read * lfrfid: remove unused test function * lfrfid: fix os primitives * bit lib: crc16 and unit tests * FDX-B: save data * lfrfid worker: increase stream size. Alloc raw worker only when needed. * lfrfid: indala26 emulation * lfrfid: prepare to write * lfrfid: fdx-b emulation * lfrfid: awid, ioprox write * lfrfid: write t55xx w\o validation * lfrfid: better t55xx block0 handling * lfrfid: use new t5577 functions in worker * lfrfid: improve protocol description * lfrfid: write and verify * lfrfid: delete cpp cli * lfrfid: improve worker usage * lfrfid-app: step to new worker * lfrfid: old indala (I40134) load fallback * lfrfid: indala26, recover wrong synced data * lfrfid: remove old worker * lfrfid app: dummy read screen * lfrfid app: less dummy read screen * lfrfid: generic 96-bit HID protocol (covers up to HID 37-bit) * rename * lfrfid: improve indala26 read * lfrfid: generic 192-bit HID protocol (covers all HID extended) * lfrfid: TODO about HID render * lfrfid: new protocol FDX-A * lfrfid-app: correct worker stop on exit * misc fixes * lfrfid: FDX-A and HID distinguishability has been fixed. * lfrfid: decode HID size header and render it (#1612) * lfrfid: rename HID96 and HID192 to HIDProx and HIDExt * lfrfid: extra actions scene * lfrfid: decode generic HID Proximity size lazily (#1618) * lib: stream of data buffers concept * lfrfid: raw file helper * lfrfid: changed raw worker api * lfrfid: packed varint pair * lfrfid: read stream speedup * lfrfid app: show read mode * Documentation * lfrfid app: raw read gui * lfrfid app: storage check for raw read * memleak fix * review fixes * lfrfid app: read blink color * lfrfid app: reset key name after read * review fixes * lfrfid app: fix copypasted text * review fixes * lfrfid: disable debug gpio * lfrfid: card detection events * lfrfid: change validation color from magenta to green * Update core_defines. * lfrfid: prefix fdx-b id by zeroes * lfrfid: parse up to 43-bit HID Proximity keys (#1640) * Fbt: downgrade toolchain and fix PS1 * lfrfid: fix unit tests * lfrfid app: remove printf * lfrfid: indala26, use bit 55 as data * lfrfid: indala26, better brief format * lfrfid: indala26, loading fallback * lfrfid: read timing tuning Co-authored-by: James Ide <ide@users.noreply.github.com> Co-authored-by: あく <alleteam@gmail.com>
353 lines
11 KiB
C
353 lines
11 KiB
C
#include <furi.h>
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#include <furi_hal.h>
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#include "ibutton_worker_i.h"
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#include "ibutton_key_command.h"
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#include <stream_buffer.h>
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void ibutton_worker_mode_idle_start(iButtonWorker* worker);
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void ibutton_worker_mode_idle_tick(iButtonWorker* worker);
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void ibutton_worker_mode_idle_stop(iButtonWorker* worker);
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void ibutton_worker_mode_emulate_start(iButtonWorker* worker);
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void ibutton_worker_mode_emulate_tick(iButtonWorker* worker);
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void ibutton_worker_mode_emulate_stop(iButtonWorker* worker);
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void ibutton_worker_mode_read_start(iButtonWorker* worker);
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void ibutton_worker_mode_read_tick(iButtonWorker* worker);
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void ibutton_worker_mode_read_stop(iButtonWorker* worker);
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void ibutton_worker_mode_write_start(iButtonWorker* worker);
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void ibutton_worker_mode_write_tick(iButtonWorker* worker);
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void ibutton_worker_mode_write_stop(iButtonWorker* worker);
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const iButtonWorkerModeType ibutton_worker_modes[] = {
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{
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.quant = FuriWaitForever,
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.start = ibutton_worker_mode_idle_start,
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.tick = ibutton_worker_mode_idle_tick,
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.stop = ibutton_worker_mode_idle_stop,
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},
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{
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.quant = 100,
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.start = ibutton_worker_mode_read_start,
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.tick = ibutton_worker_mode_read_tick,
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.stop = ibutton_worker_mode_read_stop,
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},
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{
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.quant = 1000,
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.start = ibutton_worker_mode_write_start,
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.tick = ibutton_worker_mode_write_tick,
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.stop = ibutton_worker_mode_write_stop,
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},
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{
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.quant = 1000,
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.start = ibutton_worker_mode_emulate_start,
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.tick = ibutton_worker_mode_emulate_tick,
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.stop = ibutton_worker_mode_emulate_stop,
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},
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};
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/*********************** IDLE ***********************/
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void ibutton_worker_mode_idle_start(iButtonWorker* worker) {
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UNUSED(worker);
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}
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void ibutton_worker_mode_idle_tick(iButtonWorker* worker) {
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UNUSED(worker);
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}
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void ibutton_worker_mode_idle_stop(iButtonWorker* worker) {
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UNUSED(worker);
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}
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/*********************** READ ***********************/
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typedef struct {
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uint32_t last_dwt_value;
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StreamBufferHandle_t stream;
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} iButtonReadContext;
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void ibutton_worker_comparator_callback(bool level, void* context) {
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iButtonReadContext* read_context = context;
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uint32_t current_dwt_value = DWT->CYCCNT;
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LevelDuration data =
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level_duration_make(level, current_dwt_value - read_context->last_dwt_value);
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xStreamBufferSend(read_context->stream, &data, sizeof(LevelDuration), 0);
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read_context->last_dwt_value = current_dwt_value;
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}
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bool ibutton_worker_read_comparator(iButtonWorker* worker) {
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bool result = false;
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protocol_dict_decoders_start(worker->protocols);
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furi_hal_rfid_pins_reset();
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// pulldown pull pin, we sense the signal through the analog part of the RFID schematic
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furi_hal_rfid_pin_pull_pulldown();
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iButtonReadContext read_context = {
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.last_dwt_value = DWT->CYCCNT,
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.stream = xStreamBufferCreate(sizeof(LevelDuration) * 512, 1),
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};
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furi_hal_rfid_comp_set_callback(ibutton_worker_comparator_callback, &read_context);
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furi_hal_rfid_comp_start();
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uint32_t tick_start = furi_get_tick();
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while(true) {
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LevelDuration level;
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size_t ret = xStreamBufferReceive(read_context.stream, &level, sizeof(LevelDuration), 100);
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if((furi_get_tick() - tick_start) > 100) {
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break;
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}
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if(ret > 0) {
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ProtocolId decoded_index = protocol_dict_decoders_feed(
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worker->protocols,
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level_duration_get_level(level),
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level_duration_get_duration(level));
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if(decoded_index == PROTOCOL_NO) continue;
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protocol_dict_get_data(
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worker->protocols, decoded_index, worker->key_data, ibutton_key_get_max_size());
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switch(decoded_index) {
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case iButtonProtocolCyfral:
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furi_check(worker->key_p != NULL);
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ibutton_key_set_type(worker->key_p, iButtonKeyCyfral);
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ibutton_key_set_data(worker->key_p, worker->key_data, ibutton_key_get_max_size());
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result = true;
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break;
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case iButtonProtocolMetakom:
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furi_check(worker->key_p != NULL);
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ibutton_key_set_type(worker->key_p, iButtonKeyMetakom);
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ibutton_key_set_data(worker->key_p, worker->key_data, ibutton_key_get_max_size());
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result = true;
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break;
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break;
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default:
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break;
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}
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}
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}
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furi_hal_rfid_comp_stop();
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furi_hal_rfid_comp_set_callback(NULL, NULL);
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furi_hal_rfid_pins_reset();
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vStreamBufferDelete(read_context.stream);
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return result;
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}
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bool ibutton_worker_read_dallas(iButtonWorker* worker) {
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bool result = false;
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onewire_host_start(worker->host);
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furi_delay_ms(100);
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FURI_CRITICAL_ENTER();
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if(onewire_host_search(worker->host, worker->key_data, NORMAL_SEARCH)) {
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onewire_host_reset_search(worker->host);
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// key found, verify
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if(onewire_host_reset(worker->host)) {
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onewire_host_write(worker->host, DS1990_CMD_READ_ROM);
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bool key_valid = true;
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for(uint8_t i = 0; i < ibutton_key_get_max_size(); i++) {
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if(onewire_host_read(worker->host) != worker->key_data[i]) {
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key_valid = false;
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break;
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}
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}
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if(key_valid) {
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result = true;
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furi_check(worker->key_p != NULL);
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ibutton_key_set_type(worker->key_p, iButtonKeyDS1990);
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ibutton_key_set_data(worker->key_p, worker->key_data, ibutton_key_get_max_size());
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}
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}
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} else {
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onewire_host_reset_search(worker->host);
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}
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onewire_host_stop(worker->host);
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FURI_CRITICAL_EXIT();
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return result;
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}
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void ibutton_worker_mode_read_start(iButtonWorker* worker) {
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UNUSED(worker);
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furi_hal_power_enable_otg();
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}
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void ibutton_worker_mode_read_tick(iButtonWorker* worker) {
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bool valid = false;
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if(ibutton_worker_read_dallas(worker)) {
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valid = true;
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} else if(ibutton_worker_read_comparator(worker)) {
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valid = true;
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}
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if(valid) {
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if(worker->read_cb != NULL) {
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worker->read_cb(worker->cb_ctx);
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}
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ibutton_worker_switch_mode(worker, iButtonWorkerIdle);
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}
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}
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void ibutton_worker_mode_read_stop(iButtonWorker* worker) {
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UNUSED(worker);
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furi_hal_power_disable_otg();
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}
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/*********************** EMULATE ***********************/
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static void onewire_slave_callback(void* context) {
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furi_assert(context);
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iButtonWorker* worker = context;
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ibutton_worker_notify_emulate(worker);
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}
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void ibutton_worker_emulate_dallas_start(iButtonWorker* worker) {
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uint8_t* device_id = onewire_device_get_id_p(worker->device);
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const uint8_t* key_id = ibutton_key_get_data_p(worker->key_p);
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const uint8_t key_size = ibutton_key_get_max_size();
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memcpy(device_id, key_id, key_size);
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onewire_slave_attach(worker->slave, worker->device);
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onewire_slave_start(worker->slave);
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onewire_slave_set_result_callback(worker->slave, onewire_slave_callback, worker);
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}
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void ibutton_worker_emulate_dallas_stop(iButtonWorker* worker) {
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onewire_slave_stop(worker->slave);
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onewire_slave_detach(worker->slave);
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}
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void ibutton_worker_emulate_timer_cb(void* context) {
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furi_assert(context);
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iButtonWorker* worker = context;
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LevelDuration level =
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protocol_dict_encoder_yield(worker->protocols, worker->protocol_to_encode);
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furi_hal_ibutton_emulate_set_next(level_duration_get_duration(level));
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if(level_duration_get_level(level)) {
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furi_hal_ibutton_pin_high();
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} else {
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furi_hal_ibutton_pin_low();
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}
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}
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void ibutton_worker_emulate_timer_start(iButtonWorker* worker) {
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furi_assert(worker->key_p);
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const uint8_t* key_id = ibutton_key_get_data_p(worker->key_p);
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const uint8_t key_size = ibutton_key_get_max_size();
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switch(ibutton_key_get_type(worker->key_p)) {
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case iButtonKeyDS1990:
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return;
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break;
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case iButtonKeyCyfral:
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worker->protocol_to_encode = iButtonProtocolCyfral;
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break;
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case iButtonKeyMetakom:
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worker->protocol_to_encode = iButtonProtocolMetakom;
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break;
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}
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protocol_dict_set_data(worker->protocols, worker->protocol_to_encode, key_id, key_size);
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protocol_dict_encoder_start(worker->protocols, worker->protocol_to_encode);
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furi_hal_ibutton_start_drive();
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furi_hal_ibutton_emulate_start(0, ibutton_worker_emulate_timer_cb, worker);
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}
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void ibutton_worker_emulate_timer_stop(iButtonWorker* worker) {
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UNUSED(worker);
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furi_hal_ibutton_emulate_stop();
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}
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void ibutton_worker_mode_emulate_start(iButtonWorker* worker) {
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furi_assert(worker->key_p);
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furi_hal_rfid_pins_reset();
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furi_hal_rfid_pin_pull_pulldown();
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switch(ibutton_key_get_type(worker->key_p)) {
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case iButtonKeyDS1990:
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ibutton_worker_emulate_dallas_start(worker);
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break;
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case iButtonKeyCyfral:
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case iButtonKeyMetakom:
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ibutton_worker_emulate_timer_start(worker);
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break;
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}
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}
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void ibutton_worker_mode_emulate_tick(iButtonWorker* worker) {
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UNUSED(worker);
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}
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void ibutton_worker_mode_emulate_stop(iButtonWorker* worker) {
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furi_assert(worker->key_p);
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furi_hal_rfid_pins_reset();
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switch(ibutton_key_get_type(worker->key_p)) {
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case iButtonKeyDS1990:
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ibutton_worker_emulate_dallas_stop(worker);
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break;
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case iButtonKeyCyfral:
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case iButtonKeyMetakom:
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ibutton_worker_emulate_timer_stop(worker);
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break;
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}
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}
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/*********************** WRITE ***********************/
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void ibutton_worker_mode_write_start(iButtonWorker* worker) {
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furi_hal_power_enable_otg();
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onewire_host_start(worker->host);
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}
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void ibutton_worker_mode_write_tick(iButtonWorker* worker) {
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furi_check(worker->key_p != NULL);
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iButtonWriterResult writer_result = ibutton_writer_write(worker->writer, worker->key_p);
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iButtonWorkerWriteResult result;
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switch(writer_result) {
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case iButtonWriterOK:
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result = iButtonWorkerWriteOK;
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break;
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case iButtonWriterSameKey:
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result = iButtonWorkerWriteSameKey;
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break;
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case iButtonWriterNoDetect:
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result = iButtonWorkerWriteNoDetect;
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break;
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case iButtonWriterCannotWrite:
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result = iButtonWorkerWriteCannotWrite;
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break;
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default:
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result = iButtonWorkerWriteNoDetect;
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break;
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}
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if(worker->write_cb != NULL) {
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worker->write_cb(worker->cb_ctx, result);
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}
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}
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void ibutton_worker_mode_write_stop(iButtonWorker* worker) {
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furi_hal_power_disable_otg();
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onewire_host_stop(worker->host);
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}
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