mirror of
https://github.com/DarkFlippers/unleashed-firmware
synced 2024-12-24 03:33:08 +00:00
e02040107b
* WIP on stripping fw * Compact FW build - use RAM_EXEC=1 COMPACT=1 DEBUG=0 * Fixed uninitialized storage struct; small fixes to compact fw * Flasher srv w/mocked flash ops * Fixed typos & accomodated FFF changes * Alternative fw startup branch * Working load & jmp to RAM fw * +manifest processing for stage loader; + crc verification for stage payload * Fixed questionable code & potential leaks * Lowered screen update rate; added radio stack update stubs; working dfu write * Console EP with manifest & stage validation * Added microtar lib; minor ui fixes for updater * Removed microtar * Removed mtar #2 * Added a better version of microtar * TAR archive api; LFS backup & restore core * Recursive backup/restore * LFS worker thread * Added system apps to loader - not visible in UI; full update process with restarts * Typo fix * Dropped BL & f6; tooling for updater WIP * Minor py fixes * Minor fixes to make it build after merge * Ported flash workaround from BL + fixed visuals * Minor cleanup * Chmod + loader app search fix * Python linter fix * Removed usb stuff & float read support for staged loader == -10% of binary size * Added backup/restore & update pb requests * Added stub impl to RPC for backup/restore/update commands * Reworked TAR to use borrowed Storage api; slightly reduced build size by removing `static string`; hidden update-related RPC behind defines * Moved backup&restore to storage * Fixed new message types * Backup/restore/update RPC impl * Moved furi_hal_crc to LL; minor fixes * CRC HAL rework to LL * Purging STM HAL * Brought back minimal DFU boot mode (no gui); additional crc state checks * Added splash screen, BROKEN usb function * Clock init rework WIP * Stripped graphics from DFU mode * Temp fix for unused static fun * WIP update picker - broken! * Fixed UI * Bumping version * Fixed RTC setup * Backup to update folder instead of ext root * Removed unused scenes & more usb remnants from staged loader * CI updates * Fixed update bundle name * Temporary restored USB handler * Attempt to prevent .text corruption * Comments on how I spent this Saturday * Added update file icon * Documentation updates * Moved common code to lib folder * Storage: more unit tests * Storage: blocking dir open, differentiate file and dir when freed. * Major refactoring; added input processing to updater to allow retrying on failures (not very useful prob). Added API for extraction of thread return value * Removed re-init check for manifest * Changed low-level path manipulation to toolbox/path.h; makefile cleanup; tiny fix in lint.py * Increased update worker stack size * Text fixes in backup CLI * Displaying number of update stages to run; removed timeout in handling errors * Bumping version * Added thread cleanup for spawner thread * Updated build targets to exclude firmware bundle from 'ALL' * Fixed makefile for update_package; skipping VCP init for update mode (ugly) * Switched github build from ALL to update_package * Added +x for dist_update.sh * Cli: add total heap size to "free" command * Moved (RAM) suffix to build version instead of git commit no. * DFU comment * Some fixes suggested by clang-tidy * Fixed recursive PREFIX macro * Makefile: gather all new rules in updater namespace. FuriHal: rename bootloader to boot, isr safe delays * Github: correct build target name in firmware build * FuriHal: move target switch to boot * Makefile: fix firmware flash * Furi, FuriHal: move kernel start to furi, early init * Drop bootloader related stuff * Drop cube. Drop bootloader linker script. * Renamed update_hl, moved constants to #defines * Moved update-related boot mode to separate bitfield * Reworked updater cli to single entry point; fixed crash on tar cleanup * Added Python replacement for dist shell scripts * Linter fixes for dist.py +x * Fixes for environment suffix * Dropped bash scripts * Added dirty build flag to version structure & interfaces * Version string escapes * Fixed flag logic in dist.py; added support for App instances being imported and not terminating the whole program * Fixed fw address in ReadMe.md * Rpc: fix crash on double screen start * Return back original boot behavior and fix jump to system bootloader * Cleanup code, add error sequence for RTC * Update firmware readme * FuriHal: drop boot, restructure RTC registers usage and add header register check * Furi goes first * Toolchain: add ccache support * Renamed update bundle dir Co-authored-by: DrZlo13 <who.just.the.doctor@gmail.com> Co-authored-by: あく <alleteam@gmail.com>
314 lines
No EOL
9 KiB
C
314 lines
No EOL
9 KiB
C
#include <furi.h>
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#include <furi_hal.h>
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#include <stdarg.h>
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#include <cli/cli.h>
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#include <lib/toolbox/args.h>
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#include <one_wire/ibutton/ibutton_worker.h>
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#include <one_wire/one_wire_host.h>
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static void ibutton_cli(Cli* cli, string_t args, void* context);
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static void onewire_cli(Cli* cli, string_t args, void* context);
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// app cli function
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void ibutton_on_system_start() {
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#ifdef SRV_CLI
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Cli* cli = furi_record_open("cli");
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cli_add_command(cli, "ikey", CliCommandFlagDefault, ibutton_cli, cli);
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cli_add_command(cli, "onewire", CliCommandFlagDefault, onewire_cli, cli);
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furi_record_close("cli");
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#else
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UNUSED(ibutton_cli);
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UNUSED(onewire_cli);
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#endif
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}
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void ibutton_cli_print_usage() {
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printf("Usage:\r\n");
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printf("ikey read\r\n");
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printf("ikey emulate <key_type> <key_data>\r\n");
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printf("ikey write Dallas <key_data>\r\n");
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printf("\t<key_type> choose from:\r\n");
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printf("\tDallas (8 bytes key_data)\r\n");
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printf("\tCyfral (2 bytes key_data)\r\n");
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printf("\tMetakom (4 bytes key_data), must contain correct parity\r\n");
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printf("\t<key_data> are hex-formatted\r\n");
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};
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bool ibutton_cli_get_key_type(string_t data, iButtonKeyType* type) {
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bool result = false;
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if(string_cmp_str(data, "Dallas") == 0 || string_cmp_str(data, "dallas") == 0) {
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result = true;
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*type = iButtonKeyDS1990;
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} else if(string_cmp_str(data, "Cyfral") == 0 || string_cmp_str(data, "cyfral") == 0) {
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result = true;
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*type = iButtonKeyCyfral;
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} else if(string_cmp_str(data, "Metakom") == 0 || string_cmp_str(data, "metakom") == 0) {
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result = true;
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*type = iButtonKeyMetakom;
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}
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return result;
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}
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void ibutton_cli_print_key_data(iButtonKey* key) {
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const uint8_t* key_data = ibutton_key_get_data_p(key);
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iButtonKeyType type = ibutton_key_get_type(key);
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printf("%s ", ibutton_key_get_string_by_type(type));
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for(size_t i = 0; i < ibutton_key_get_size_by_type(type); i++) {
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printf("%02X", key_data[i]);
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}
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printf("\r\n");
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}
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#define EVENT_FLAG_IBUTTON_COMPLETE (1 << 0)
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static void ibutton_cli_worker_read_cb(void* context) {
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furi_assert(context);
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osEventFlagsId_t event = context;
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osEventFlagsSet(event, EVENT_FLAG_IBUTTON_COMPLETE);
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}
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void ibutton_cli_read(Cli* cli) {
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iButtonKey* key = ibutton_key_alloc();
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iButtonWorker* worker = ibutton_worker_alloc();
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osEventFlagsId_t event = osEventFlagsNew(NULL);
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ibutton_worker_start_thread(worker);
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ibutton_worker_read_set_callback(worker, ibutton_cli_worker_read_cb, event);
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printf("Reading iButton...\r\nPress Ctrl+C to abort\r\n");
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ibutton_worker_read_start(worker, key);
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while(true) {
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uint32_t flags = osEventFlagsWait(event, EVENT_FLAG_IBUTTON_COMPLETE, osFlagsWaitAny, 100);
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if(flags & EVENT_FLAG_IBUTTON_COMPLETE) {
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ibutton_cli_print_key_data(key);
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if(ibutton_key_get_type(key) == iButtonKeyDS1990) {
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if(!ibutton_key_dallas_crc_is_valid(key)) {
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printf("Warning: invalid CRC\r\n");
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}
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if(!ibutton_key_dallas_is_1990_key(key)) {
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printf("Warning: not a key\r\n");
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}
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}
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break;
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}
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if(cli_cmd_interrupt_received(cli)) break;
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}
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ibutton_worker_stop(worker);
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ibutton_worker_stop_thread(worker);
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ibutton_worker_free(worker);
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ibutton_key_free(key);
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osEventFlagsDelete(event);
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};
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typedef struct {
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osEventFlagsId_t event;
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iButtonWorkerWriteResult result;
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} iButtonWriteContext;
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static void ibutton_cli_worker_write_cb(void* context, iButtonWorkerWriteResult result) {
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furi_assert(context);
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iButtonWriteContext* write_context = (iButtonWriteContext*)context;
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write_context->result = result;
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osEventFlagsSet(write_context->event, EVENT_FLAG_IBUTTON_COMPLETE);
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}
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void ibutton_cli_write(Cli* cli, string_t args) {
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iButtonKey* key = ibutton_key_alloc();
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iButtonWorker* worker = ibutton_worker_alloc();
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iButtonKeyType type;
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iButtonWriteContext write_context;
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uint8_t key_data[IBUTTON_KEY_DATA_SIZE];
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string_t data;
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write_context.event = osEventFlagsNew(NULL);
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string_init(data);
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ibutton_worker_start_thread(worker);
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ibutton_worker_write_set_callback(worker, ibutton_cli_worker_write_cb, &write_context);
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do {
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if(!args_read_string_and_trim(args, data)) {
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ibutton_cli_print_usage();
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break;
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}
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if(!ibutton_cli_get_key_type(data, &type)) {
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ibutton_cli_print_usage();
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break;
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}
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if(type != iButtonKeyDS1990) {
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ibutton_cli_print_usage();
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break;
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}
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if(!args_read_hex_bytes(args, key_data, ibutton_key_get_size_by_type(type))) {
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ibutton_cli_print_usage();
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break;
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}
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ibutton_key_set_type(key, type);
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ibutton_key_set_data(key, key_data, ibutton_key_get_size_by_type(type));
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printf("Writing key ");
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ibutton_cli_print_key_data(key);
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printf("Press Ctrl+C to abort\r\n");
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ibutton_worker_write_start(worker, key);
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while(true) {
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uint32_t flags = osEventFlagsWait(
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write_context.event, EVENT_FLAG_IBUTTON_COMPLETE, osFlagsWaitAny, 100);
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if(flags & EVENT_FLAG_IBUTTON_COMPLETE) {
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if(write_context.result == iButtonWorkerWriteSameKey ||
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write_context.result == iButtonWorkerWriteOK) {
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printf("Write success\r\n");
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break;
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} else if(write_context.result == iButtonWorkerWriteCannotWrite) {
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printf("Write fail\r\n");
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break;
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}
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}
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if(cli_cmd_interrupt_received(cli)) break;
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}
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ibutton_worker_stop(worker);
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} while(false);
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string_clear(data);
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ibutton_worker_stop_thread(worker);
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ibutton_worker_free(worker);
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ibutton_key_free(key);
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osEventFlagsDelete(write_context.event);
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};
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void ibutton_cli_emulate(Cli* cli, string_t args) {
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iButtonKey* key = ibutton_key_alloc();
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iButtonWorker* worker = ibutton_worker_alloc();
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iButtonKeyType type;
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uint8_t key_data[IBUTTON_KEY_DATA_SIZE];
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string_t data;
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string_init(data);
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ibutton_worker_start_thread(worker);
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do {
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if(!args_read_string_and_trim(args, data)) {
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ibutton_cli_print_usage();
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break;
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}
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if(!ibutton_cli_get_key_type(data, &type)) {
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ibutton_cli_print_usage();
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break;
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}
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if(!args_read_hex_bytes(args, key_data, ibutton_key_get_size_by_type(type))) {
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ibutton_cli_print_usage();
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break;
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}
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ibutton_key_set_type(key, type);
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ibutton_key_set_data(key, key_data, ibutton_key_get_size_by_type(type));
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printf("Emulating key ");
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ibutton_cli_print_key_data(key);
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printf("Press Ctrl+C to abort\r\n");
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ibutton_worker_emulate_start(worker, key);
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while(!cli_cmd_interrupt_received(cli)) {
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furi_hal_delay_ms(100);
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};
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ibutton_worker_stop(worker);
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} while(false);
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string_clear(data);
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ibutton_worker_stop_thread(worker);
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ibutton_worker_free(worker);
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ibutton_key_free(key);
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};
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static void ibutton_cli(Cli* cli, string_t args, void* context) {
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string_t cmd;
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string_init(cmd);
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if(!args_read_string_and_trim(args, cmd)) {
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string_clear(cmd);
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ibutton_cli_print_usage();
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return;
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}
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if(string_cmp_str(cmd, "read") == 0) {
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ibutton_cli_read(cli);
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} else if(string_cmp_str(cmd, "write") == 0) {
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ibutton_cli_write(cli, args);
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} else if(string_cmp_str(cmd, "emulate") == 0) {
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ibutton_cli_emulate(cli, args);
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} else {
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ibutton_cli_print_usage();
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}
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string_clear(cmd);
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}
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void onewire_cli_print_usage() {
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printf("Usage:\r\n");
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printf("onewire search\r\n");
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};
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static void onewire_cli_search(Cli* cli) {
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OneWireHost* onewire = onewire_host_alloc();
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uint8_t address[8];
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bool done = false;
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printf("Search started\r\n");
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onewire_host_start(onewire);
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furi_hal_power_enable_otg();
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while(!done) {
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if(onewire_host_search(onewire, address, NORMAL_SEARCH) != 1) {
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printf("Search finished\r\n");
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onewire_host_reset_search(onewire);
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done = true;
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} else {
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printf("Found: ");
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for(uint8_t i = 0; i < 8; i++) {
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printf("%02X", address[i]);
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}
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printf("\r\n");
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}
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furi_hal_delay_ms(100);
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}
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furi_hal_power_disable_otg();
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onewire_host_free(onewire);
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}
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void onewire_cli(Cli* cli, string_t args, void* context) {
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string_t cmd;
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string_init(cmd);
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if(!args_read_string_and_trim(args, cmd)) {
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string_clear(cmd);
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onewire_cli_print_usage();
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return;
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}
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if(string_cmp_str(cmd, "search") == 0) {
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onewire_cli_search(cli);
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}
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string_clear(cmd);
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} |