* Remove srand invocation * PVS High priority fixes * PVS High errors part 2 * Furi: heap tracing inheritance * Furi add __builtin_unreachable to furi_thread_catch
		
			
				
	
	
		
			168 lines
		
	
	
		
			5.4 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			168 lines
		
	
	
		
			5.4 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
#include <furi.h>
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#include <furi_hal.h>
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#include <atomic.h>
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#include "lfrfid_worker_i.h"
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typedef enum {
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    LFRFIDEventStopThread = (1 << 0),
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    LFRFIDEventStopMode = (1 << 1),
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    LFRFIDEventRead = (1 << 2),
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    LFRFIDEventWrite = (1 << 3),
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    LFRFIDEventEmulate = (1 << 4),
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    LFRFIDEventReadRaw = (1 << 5),
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    LFRFIDEventEmulateRaw = (1 << 6),
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    LFRFIDEventAll =
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        (LFRFIDEventStopThread | LFRFIDEventStopMode | LFRFIDEventRead | LFRFIDEventWrite |
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         LFRFIDEventEmulate | LFRFIDEventReadRaw | LFRFIDEventEmulateRaw),
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} LFRFIDEventType;
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static int32_t lfrfid_worker_thread(void* thread_context);
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LFRFIDWorker* lfrfid_worker_alloc(ProtocolDict* dict) {
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    furi_assert(dict);
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    LFRFIDWorker* worker = malloc(sizeof(LFRFIDWorker));
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    worker->mode_index = LFRFIDWorkerIdle;
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    worker->read_cb = NULL;
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    worker->write_cb = NULL;
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    worker->cb_ctx = NULL;
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    worker->raw_filename = NULL;
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    worker->mode_storage = NULL;
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    worker->thread = furi_thread_alloc();
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    furi_thread_set_name(worker->thread, "lfrfid_worker");
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    furi_thread_set_callback(worker->thread, lfrfid_worker_thread);
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    furi_thread_set_context(worker->thread, worker);
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    furi_thread_set_stack_size(worker->thread, 2048);
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    worker->protocols = dict;
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    return worker;
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}
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void lfrfid_worker_free(LFRFIDWorker* worker) {
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    if(worker->raw_filename) {
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        free(worker->raw_filename);
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    }
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    furi_thread_free(worker->thread);
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    free(worker);
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}
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void lfrfid_worker_read_start(
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    LFRFIDWorker* worker,
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    LFRFIDWorkerReadType type,
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    LFRFIDWorkerReadCallback callback,
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    void* context) {
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    furi_assert(worker->mode_index == LFRFIDWorkerIdle);
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    worker->read_type = type;
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    worker->read_cb = callback;
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    worker->cb_ctx = context;
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    furi_thread_flags_set(furi_thread_get_id(worker->thread), LFRFIDEventRead);
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}
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void lfrfid_worker_write_start(
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    LFRFIDWorker* worker,
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    LFRFIDProtocol protocol,
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    LFRFIDWorkerWriteCallback callback,
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    void* context) {
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    furi_assert(worker->mode_index == LFRFIDWorkerIdle);
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    worker->protocol = protocol;
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    worker->write_cb = callback;
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    worker->cb_ctx = context;
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    furi_thread_flags_set(furi_thread_get_id(worker->thread), LFRFIDEventWrite);
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}
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void lfrfid_worker_emulate_start(LFRFIDWorker* worker, LFRFIDProtocol protocol) {
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    furi_assert(worker->mode_index == LFRFIDWorkerIdle);
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    worker->protocol = protocol;
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    furi_thread_flags_set(furi_thread_get_id(worker->thread), LFRFIDEventEmulate);
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}
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void lfrfid_worker_set_filename(LFRFIDWorker* worker, const char* filename) {
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    if(worker->raw_filename) {
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        free(worker->raw_filename);
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    }
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    worker->raw_filename = strdup(filename);
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}
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void lfrfid_worker_read_raw_start(
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    LFRFIDWorker* worker,
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    const char* filename,
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    LFRFIDWorkerReadType type,
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    LFRFIDWorkerReadRawCallback callback,
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    void* context) {
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    furi_assert(worker->mode_index == LFRFIDWorkerIdle);
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    worker->read_type = type;
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    worker->read_raw_cb = callback;
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    worker->cb_ctx = context;
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    lfrfid_worker_set_filename(worker, filename);
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    furi_thread_flags_set(furi_thread_get_id(worker->thread), LFRFIDEventReadRaw);
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}
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void lfrfid_worker_emulate_raw_start(
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    LFRFIDWorker* worker,
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    const char* filename,
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    LFRFIDWorkerEmulateRawCallback callback,
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    void* context) {
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    furi_assert(worker->mode_index == LFRFIDWorkerIdle);
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    lfrfid_worker_set_filename(worker, filename);
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    worker->emulate_raw_cb = callback;
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    worker->cb_ctx = context;
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    furi_thread_flags_set(furi_thread_get_id(worker->thread), LFRFIDEventEmulateRaw);
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}
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void lfrfid_worker_stop(LFRFIDWorker* worker) {
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    furi_thread_flags_set(furi_thread_get_id(worker->thread), LFRFIDEventStopMode);
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}
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void lfrfid_worker_start_thread(LFRFIDWorker* worker) {
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    furi_thread_start(worker->thread);
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}
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void lfrfid_worker_stop_thread(LFRFIDWorker* worker) {
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    furi_assert(worker->mode_index == LFRFIDWorkerIdle);
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    furi_thread_flags_set(furi_thread_get_id(worker->thread), LFRFIDEventStopThread);
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    furi_thread_join(worker->thread);
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}
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bool lfrfid_worker_check_for_stop(LFRFIDWorker* worker) {
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    UNUSED(worker);
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    uint32_t flags = furi_thread_flags_get();
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    return (flags & LFRFIDEventStopMode);
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}
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size_t lfrfid_worker_dict_get_data_size(LFRFIDWorker* worker, LFRFIDProtocol protocol) {
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    furi_assert(worker->mode_index == LFRFIDWorkerIdle);
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    return protocol_dict_get_data_size(worker->protocols, protocol);
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}
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static int32_t lfrfid_worker_thread(void* thread_context) {
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    LFRFIDWorker* worker = thread_context;
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    while(true) {
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        uint32_t flags = furi_thread_flags_wait(LFRFIDEventAll, FuriFlagWaitAny, FuriWaitForever);
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        if(flags != FuriFlagErrorTimeout) {
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            // stop thread
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            if(flags & LFRFIDEventStopThread) break;
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            // switch mode
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            if(flags & LFRFIDEventRead) worker->mode_index = LFRFIDWorkerRead;
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            if(flags & LFRFIDEventWrite) worker->mode_index = LFRFIDWorkerWrite;
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            if(flags & LFRFIDEventEmulate) worker->mode_index = LFRFIDWorkerEmulate;
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            if(flags & LFRFIDEventReadRaw) worker->mode_index = LFRFIDWorkerReadRaw;
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            if(flags & LFRFIDEventEmulateRaw) worker->mode_index = LFRFIDWorkerEmulateRaw;
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            // do mode, if it exists
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            if(lfrfid_worker_modes[worker->mode_index].process) {
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                lfrfid_worker_modes[worker->mode_index].process(worker);
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            }
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            // reset mode
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            worker->mode_index = LFRFIDWorkerIdle;
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        }
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    }
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    return 0;
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} |