163be139eb
* SubGhz: add protocol DataRAW (binarization of data quantized by the minimum correlated duration) * SubGhz: fix name history * SubGhz: add encoder Data_RAW protocol * SubGhz: decreasing the size of the LevelDuration structure * SubGhz: history, added check that there is free RAM * SubGhz: checking for free memory, support to pass without gap * SubGhz: add running average to average the result, auto cut noise at the end of a burst * SubGhz: support for repeating sequences * SubGhz: fix secplus_v2 decoder * SubGhz: bin_RAW fix add history * SubGhz: add debug * SubGhz: debug refactoring * FURI_LOG: add FURI_LOG_RAW_x formatted string output like printf * SubGhz: fix new FURI_LOG metod * FURI_LOG: fix unit test * SubGhz: add enable/disable BinRAW protocol decoding * SubGhz: fix PVS * SubGhz: forcibly turn off the speaker when exiting SubGhz * SubGhz: adaptive adjustment to the noise level Co-authored-by: Aleksandr Kutuzov <alleteam@gmail.com>
150 lines
5.0 KiB
C
150 lines
5.0 KiB
C
#include <stdio.h>
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#include <furi.h>
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#include <furi_hal.h>
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#include "minunit_vars.h"
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#include <notification/notification_messages.h>
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#include <cli/cli.h>
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#include <loader/loader.h>
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#define TAG "UnitTests"
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int run_minunit_test_furi();
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int run_minunit_test_furi_hal();
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int run_minunit_test_furi_string();
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int run_minunit_test_infrared();
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int run_minunit_test_rpc();
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int run_minunit_test_manifest();
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int run_minunit_test_flipper_format();
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int run_minunit_test_flipper_format_string();
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int run_minunit_test_stream();
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int run_minunit_test_storage();
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int run_minunit_test_subghz();
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int run_minunit_test_dirwalk();
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int run_minunit_test_power();
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int run_minunit_test_protocol_dict();
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int run_minunit_test_lfrfid_protocols();
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int run_minunit_test_nfc();
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int run_minunit_test_bit_lib();
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int run_minunit_test_float_tools();
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int run_minunit_test_bt();
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typedef int (*UnitTestEntry)();
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typedef struct {
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const char* name;
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const UnitTestEntry entry;
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} UnitTest;
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const UnitTest unit_tests[] = {
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{.name = "furi", .entry = run_minunit_test_furi},
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{.name = "furi_hal", .entry = run_minunit_test_furi_hal},
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{.name = "furi_string", .entry = run_minunit_test_furi_string},
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{.name = "storage", .entry = run_minunit_test_storage},
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{.name = "stream", .entry = run_minunit_test_stream},
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{.name = "dirwalk", .entry = run_minunit_test_dirwalk},
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{.name = "manifest", .entry = run_minunit_test_manifest},
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{.name = "flipper_format", .entry = run_minunit_test_flipper_format},
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{.name = "flipper_format_string", .entry = run_minunit_test_flipper_format_string},
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{.name = "rpc", .entry = run_minunit_test_rpc},
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{.name = "subghz", .entry = run_minunit_test_subghz},
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{.name = "infrared", .entry = run_minunit_test_infrared},
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{.name = "nfc", .entry = run_minunit_test_nfc},
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{.name = "power", .entry = run_minunit_test_power},
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{.name = "protocol_dict", .entry = run_minunit_test_protocol_dict},
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{.name = "lfrfid", .entry = run_minunit_test_lfrfid_protocols},
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{.name = "bit_lib", .entry = run_minunit_test_bit_lib},
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{.name = "float_tools", .entry = run_minunit_test_float_tools},
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{.name = "bt", .entry = run_minunit_test_bt},
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};
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void minunit_print_progress() {
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static const char progress[] = {'\\', '|', '/', '-'};
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static uint8_t progress_counter = 0;
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static TickType_t last_tick = 0;
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TickType_t current_tick = xTaskGetTickCount();
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if(current_tick - last_tick > 20) {
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last_tick = current_tick;
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printf("[%c]\033[3D", progress[++progress_counter % COUNT_OF(progress)]);
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fflush(stdout);
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}
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}
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void minunit_print_fail(const char* str) {
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printf(_FURI_LOG_CLR_E "%s\r\n" _FURI_LOG_CLR_RESET, str);
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}
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void unit_tests_cli(Cli* cli, FuriString* args, void* context) {
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UNUSED(cli);
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UNUSED(args);
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UNUSED(context);
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minunit_run = 0;
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minunit_assert = 0;
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minunit_fail = 0;
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minunit_status = 0;
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Loader* loader = furi_record_open(RECORD_LOADER);
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NotificationApp* notification = furi_record_open(RECORD_NOTIFICATION);
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// TODO: lock device while test running
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if(loader_is_locked(loader)) {
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printf("RPC: stop all applications to run tests\r\n");
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notification_message(notification, &sequence_blink_magenta_100);
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} else {
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notification_message_block(notification, &sequence_set_only_blue_255);
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uint32_t heap_before = memmgr_get_free_heap();
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uint32_t cycle_counter = furi_get_tick();
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for(size_t i = 0; i < COUNT_OF(unit_tests); i++) {
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if(cli_cmd_interrupt_received(cli)) {
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break;
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}
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if(furi_string_size(args)) {
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if(furi_string_cmp_str(args, unit_tests[i].name) == 0) {
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unit_tests[i].entry();
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} else {
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printf("Skipping %s\r\n", unit_tests[i].name);
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}
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} else {
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unit_tests[i].entry();
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}
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}
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if(minunit_run != 0) {
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printf("\r\nFailed tests: %u\r\n", minunit_fail);
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// Time report
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cycle_counter = (furi_get_tick() - cycle_counter);
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printf("Consumed: %lu ms\r\n", cycle_counter);
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// Wait for tested services and apps to deallocate memory
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furi_delay_ms(200);
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uint32_t heap_after = memmgr_get_free_heap();
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printf("Leaked: %ld\r\n", heap_before - heap_after);
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// Final Report
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if(minunit_fail == 0) {
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notification_message(notification, &sequence_success);
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printf("Status: PASSED\r\n");
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} else {
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notification_message(notification, &sequence_error);
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printf("Status: FAILED\r\n");
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}
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}
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}
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furi_record_close(RECORD_NOTIFICATION);
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furi_record_close(RECORD_LOADER);
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}
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void unit_tests_on_system_start() {
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#ifdef SRV_CLI
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Cli* cli = furi_record_open(RECORD_CLI);
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// We need to launch apps from tests, so we cannot lock loader
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cli_add_command(cli, "unit_tests", CliCommandFlagParallelSafe, unit_tests_cli, NULL);
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furi_record_close(RECORD_CLI);
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#endif
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}
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