[FL-1934] Core: wipe memory after free. SubGhz: key encryption tool. (#797)
* Core: wipe memory after free. RFID,iButton: fix iterator use after invalidation. * Debug: support unix wildcards for register matching in svd, update MCU description file and minify it. * Toolbox: getter for File in FlipperFile. * Makefile: conditional flashing * SubGhz: keeloq_mfcodes encryption tool. * FuriHal: proper IV handling on CBC in crypto. SubGhz: add support for encrypted keeloq keys. Makefile: move formatting to top Makefile. * SubGhz: rename some function names to match naming scheme. * SubGhz: encryption tool, fix windows line endings Co-authored-by: DrZlo13 <who.just.the.doctor@gmail.com>
This commit is contained in:
parent
3f93a0ae46
commit
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14
Makefile
14
Makefile
@ -49,12 +49,16 @@ firmware_clean:
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.PHONY: bootloader_flash
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bootloader_flash:
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ifeq ($(FORCE), '1')
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rm $(PROJECT_ROOT)/bootloader/.obj/f*/flash || true
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endif
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$(MAKE) -C $(PROJECT_ROOT)/bootloader -j$(NPROCS) flash
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.PHONY: firmware_flash
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firmware_flash:
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ifeq ($(FORCE), '1')
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rm $(PROJECT_ROOT)/firmware/.obj/f*/flash || true
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endif
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$(MAKE) -C $(PROJECT_ROOT)/firmware -j$(NPROCS) flash
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.PHONY: flash_radio
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@ -73,8 +77,16 @@ flash_radio_fus:
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@echo "================ JUST DON'T ================"
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@echo
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.PHONY:
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.PHONY: flash_radio_fus_please_i_m_not_going_to_complain
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flash_radio_fus_please_i_m_not_going_to_complain:
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$(PROJECT_ROOT)/scripts/flash.py core2fus 0x080EC000 --statement=AGREE_TO_LOOSE_FLIPPER_FEATURES_THAT_USES_CRYPTO_ENCLAVE $(COPRO_DIR)/stm32wb5x_FUS_fw_for_fus_0_5_3.bin
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$(PROJECT_ROOT)/scripts/flash.py core2fus 0x080EC000 --statement=AGREE_TO_LOOSE_FLIPPER_FEATURES_THAT_USES_CRYPTO_ENCLAVE $(COPRO_DIR)/stm32wb5x_FUS_fw.bin
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$(PROJECT_ROOT)/scripts/ob.py set
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FORMAT_SOURCES = $(shell find applications bootloader core -iname "*.h" -o -iname "*.c" -o -iname "*.cpp")
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.PHONY: format
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format:
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@echo "Formatting sources with clang-format"
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@clang-format -style=file -i $(FORMAT_SOURCES)
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@ -48,8 +48,8 @@ iButtonApp::iButtonApp()
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iButtonApp::~iButtonApp() {
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for(std::map<Scene, iButtonScene*>::iterator it = scenes.begin(); it != scenes.end(); ++it) {
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delete it->second;
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scenes.erase(it);
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}
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scenes.clear();
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delete key_worker;
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furi_hal_power_insomnia_exit();
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@ -10,8 +10,9 @@ RfidTimerEmulator::~RfidTimerEmulator() {
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for(it = encoders.begin(); it != encoders.end(); ++it) {
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delete it->second;
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encoders.erase(it);
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}
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encoders.clear();
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}
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void RfidTimerEmulator::start(LfrfidKeyType type, const uint8_t* data, uint8_t data_size) {
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@ -3,26 +3,15 @@
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#include <furi.h>
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#include <furi-hal.h>
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#include <stream_buffer.h>
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#include <lib/toolbox/args.h>
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#include <lib/subghz/subghz_parser.h>
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#include <lib/subghz/subghz_keystore.h>
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#include <lib/subghz/protocols/subghz_protocol_common.h>
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#include <lib/subghz/protocols/subghz_protocol_princeton.h>
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#define SUBGHZ_FREQUENCY_RANGE_STR \
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"299999755...348000000 or 386999938...464000000 or 778999847...928000000"
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void subghz_cli_init() {
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Cli* cli = furi_record_open("cli");
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cli_add_command(
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cli, "subghz_tx_carrier", CliCommandFlagDefault, subghz_cli_command_tx_carrier, NULL);
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cli_add_command(
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cli, "subghz_rx_carrier", CliCommandFlagDefault, subghz_cli_command_rx_carrier, NULL);
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cli_add_command(cli, "subghz_tx", CliCommandFlagDefault, subghz_cli_command_tx, NULL);
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cli_add_command(cli, "subghz_rx", CliCommandFlagDefault, subghz_cli_command_rx, NULL);
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furi_record_close("cli");
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}
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void subghz_cli_command_tx_carrier(Cli* cli, string_t args, void* context) {
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uint32_t frequency = 433920000;
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@ -267,3 +256,88 @@ void subghz_cli_command_rx(Cli* cli, string_t args, void* context) {
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vStreamBufferDelete(instance->stream);
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free(instance);
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}
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void subghz_cli_command_print_usage() {
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printf("Usage:\r\n");
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printf("subghz_crypto <cmd> <args>\r\n");
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printf("Cmd list:\r\n");
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printf(
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"\tkeeloq <plain_text_file> <encrypted_file> <IV:16 bytes in hex>\t - Encrypt keeloq manufacture keys\r\n");
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}
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void subghz_cli_command_encrypt_keeloq(Cli* cli, string_t args) {
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uint8_t iv[16];
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string_t source;
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string_t destination;
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string_init(source);
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string_init(destination);
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SubGhzKeystore* keystore = subghz_keystore_alloc();
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do {
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if(!args_read_string_and_trim(args, source)) {
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subghz_cli_command_print_usage();
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break;
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}
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if(!args_read_string_and_trim(args, destination)) {
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subghz_cli_command_print_usage();
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break;
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}
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if(!args_read_hex_bytes(args, iv, 16)) {
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subghz_cli_command_print_usage();
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break;
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}
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if(!subghz_keystore_load(keystore, string_get_cstr(source))) {
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printf("Failed to load Keystore");
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break;
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}
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if(!subghz_keystore_save(keystore, string_get_cstr(destination), iv)) {
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printf("Failed to save Keystore");
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break;
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}
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} while(false);
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subghz_keystore_free(keystore);
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string_clear(destination);
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string_clear(source);
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}
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void subghz_cli_command(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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do {
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if(!args_read_string_and_trim(args, cmd)) {
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subghz_cli_command_print_usage();
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break;
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}
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if(string_cmp_str(cmd, "encrypt_keeloq") == 0) {
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subghz_cli_command_encrypt_keeloq(cli, args);
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break;
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}
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subghz_cli_command_print_usage();
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} while(false);
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string_clear(cmd);
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}
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void subghz_cli_init() {
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Cli* cli = furi_record_open("cli");
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cli_add_command(
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cli, "subghz_tx_carrier", CliCommandFlagDefault, subghz_cli_command_tx_carrier, NULL);
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cli_add_command(
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cli, "subghz_rx_carrier", CliCommandFlagDefault, subghz_cli_command_rx_carrier, NULL);
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cli_add_command(cli, "subghz_tx", CliCommandFlagDefault, subghz_cli_command_tx, NULL);
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cli_add_command(cli, "subghz_rx", CliCommandFlagDefault, subghz_cli_command_rx, NULL);
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cli_add_command(cli, "subghz", CliCommandFlagDefault, subghz_cli_command, NULL);
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furi_record_close("cli");
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}
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@ -3,15 +3,3 @@
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#include <cli/cli.h>
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void subghz_cli_init();
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void subghz_cli_command_tx_carrier(Cli* cli, string_t args, void* context);
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void subghz_cli_command_rx_carrier(Cli* cli, string_t args, void* context);
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void subghz_cli_command_tx_pt(Cli* cli, string_t args, void* context);
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void subghz_cli_command_rx_pt(Cli* cli, string_t args, void* context);
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void subghz_cli_command_tx(Cli* cli, string_t args, void* context);
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void subghz_cli_command_rx(Cli* cli, string_t args, void* context);
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311
assets/resources/subghz/keeloq_mfcodes
Normal file
311
assets/resources/subghz/keeloq_mfcodes
Normal file
@ -0,0 +1,311 @@
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Filetype: Flipper SubGhz Keystore File
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Version: 0
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Encryption: 1
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IV: 7A 44 FE 5D C3 B3 65 13 73 A6 F4 2D 1E B6 7D F0
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89153B35033574AAA06D7E792CB92A486B37A2CCDF0B0152BF1A563E321518C8
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F6583A3E4148439E8A8D7ED6A095ACC0C3E22A48F1637E78DF023CAC9272934E
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AA0439E6B76CD43F3FCC27CF69C5F3B6508E8103B164E4ECDDF8B2FB222D46FF
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A9826C663033D25AE21CB8790406997ADCE84360B258F2B989D967009659859C
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3474E7BBFA0173928F414CFD5EE19B27A558D9C171D96FE7B7840A01323A7E7446FAE3E98EA9A8C69B4A6B781BD7906A
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2873939A8E0EAC16D748967E987BB0F1079C106E4235B7D35B4BF37F54B21F8E
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EF6F1DC0201FCB8CEBC5642A5194A1FDCFBE1FA772A79CEAD54D2F0DA3AC4F6C
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3F595EAA0E81E96C5D6DB41799D314E3E81E7F4197E19A3341C55592B1B6C4B0
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7B2D75FE11B27E99CA7610E47D712C8CFB619EC69EBC976A70CFD9574C9F4FF8
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39735CF1D009D132A33B9C546D95FA6D3E69BF3A57EF219392E57C9560E7B037
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D56FDDFB0C4E808143D3ED5F15D6FF47F6EDEBD01192FC7ACF3ACCE9FD5162FC297D0089D65ED2CBE3CE05DDA7B96446
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2750D4F0650061C3AF72C88FD080BE241F2BDD8D8C1B0EFE781120EBEFFE2C72D0EECC42CDDED50CFE4AC51C48AE68C6
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F8CE64921CB73015F2672A9EF0A8359269CAE0E515D6DBB3130CFC9E5E1A98AD
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ACF6ADB9E02D67B44EB6C6F126BF64BDAB37926B8BE39E27F323E8F5A0F8FC38
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FBB1302D697F94ECED681CE047819001EDE6E013850258F61E97091DD37D24F2
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D8CD53AB5A94898EB53D4FF46546ADBAA24691181A396052A58AAC657D6817AB
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43200E08C21747CABC59538888A259238E782545732A1A6EEE00A6929EC9DD97A8BA9812372374046AC66652CC561D60
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C38CBE29F22D0E83E58A52E94AA2485DA8E702FBDB89D27249473CB8A19AEF61
|
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9F0EB580F7474985E8460E1682451E213778B77A9CAB4734B75C5386851050BF
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2364EBB8237363B21226565675B9F478482CADAE41E795C27287E26137797C10
|
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775C9A28BA50D759FB438D0200121F01F7DB11986D44D3960F745EAA1E7A2CE2AD92AD718AFCD98BC3269C39F65ADC53
|
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26FB0DDEF3E3AED16D6DBC93AD1A12F9F871AB9E73EA13DAD2715E22F7EE5D27
|
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07BAF6D32302D597E31CB38A205A0D27C6EAE886BF1D7E5EAA911E07DFF9D71007E64F66D92CF3140F3308D35894E690
|
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8AE3F4737608320BCD4FDC51336EBE8C40056D0ACC85D54A74C30F7087F1128F5021255EF36356EDEF1E789AB23541ED
|
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E46E90AA42DD6E95020E31FA2AFE067DF4C47B2C5B101207DD13A72F56BCB2D66666E42B195EA7A800D27DB4469E198C
|
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5DA74C2C12F022379CB8359F11C465464570B822A7EE86B0426FA116F1B3E294
|
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|
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4EC88DC9084B4EA7DCB4AFDF63445CC8B842BC17821D108775FB8FA8DFFEB7F845B32F1C2536FEA4B2E6B8F8526C8FB0
|
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BBDA1F8A815C6586CFD235653B9E58F9AE3A97F4EBF5945F9EB6CA5C1BFE4FE3
|
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|
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592BB6BEC2D30AD7BDFEB234F330C243313A4FE96D85BE27B457963574DD851A1255E8D0EA85BC1CDF132F3F3D0D6085
|
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|
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|
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CFBEA2A3468585001CA05D7402C48F59695FF312D294E2CBB3F1700EEFFFF85C
|
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|
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|
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|
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|
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|
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||||
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||||
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||||
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||||
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|
||||
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|
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
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2577637463D510AA827AF03E2943A78AB18784B63E0EC17C2C5B6762511371C5
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98B127524AB0258075E20A5ACC08B94FAE31E87E402B49EA2172A6DDB3F0E991
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B754EA3DDBCB5173158E57C6BEB62B62ABAF239A3CC22543F6A80BC2BC1834D9
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4AE3EC337D3D5900D86998462C1AF19F056D16EDCDC135AF75F34E49B81AE48D
|
||||
24C1A8DC4730288BE4C3CFB2A7E71022B71AE5DD68A1B6E1CC36534183F9E797
|
||||
A9EBDBB7301E090C9C2629F8D854398C90E8052F482503851AACDACFF6F0070B
|
||||
4F5A864D898A77E02A8F181077751016D811B837DA3F33A2067EAE72A41EDD75
|
||||
A2D4B8D51FA8E1148A053C39005B0B8A9F0C5702A64750AC64BF353C4338F6E1
|
||||
C659ED65157E6FFBE4B956DFB95FBAEF1745F0314A9729179E92B3F1162B9495
|
||||
BC17D9D85193BDCA5FA50ABA581221BE6F5E8AAFAB2D90646AF6ABC501E60662
|
||||
E517B72076E211C90114FB9127B6CA57DE995355916602F3A50A0B61E6CACDA5
|
||||
1C0E79317116FB017B19A47018B2F8EF078A8F6A51E49929E08D27E2ED31D3AB
|
||||
E0502C15BF9D459326841DAB7617B58F482FA502CA5FB719D06CEBFC73FB5495
|
||||
016187A2D8AA8BBB15DC34E3920930D96B372607D842624405EEAFC5A641FA5F
|
||||
FA34C64218ED6CFB15307044B1C38123C939EB12A239E0C2C198D47B8799B99A
|
||||
5AC59ADA228C1E069CF9D106D3171465B150BBC004D138D451517473FB2E946F
|
||||
C47F6CD3C8E4C373C43E448F3EC791956DEE7F06EDC3EAABFD96681DBF7CC160
|
||||
82EB8353D5F481D0E3F3C1BE42EB6F6F80A452412C0C3C9FD951A1942322E8E3
|
||||
DF8CC0F85A18BEEFC613237F7D112DF23F2214E091F6C100A47093541F6A1920
|
||||
0DCBC7478CD07868E1C10AD3626AC324230F328E4ED59C0F4CE98758C407C24B
|
||||
AB1D1526799185CE4168A2BB0E98F4CEE8843EC95ADAFE4E00A369461317183D
|
||||
47FE38F4C59F6BD043D89A6A799864971A65370CB5AC7282D7169EBF31074753
|
||||
CB253FB6096DB3209054C21322A28E742B616BBA97B972043E4FF210A938B994
|
||||
4FE2CDCB89E9DB6A98A6A7CA7374616B54517FE6C62867662727715A8D0995C0
|
||||
45074540C5C990A33E7C3B7ECDD685829FF5ACAE75972F9F2E04CA1C2AB2D86F
|
||||
4D1A95CE69460FBBAF8F3ECF7C211F918D7AF8F99506E96D95C9091BEB9C0519
|
||||
8D8501E5088AC8709AAEE23C83D6E9BADE67F8504A6BDE957AC244E2CF650041
|
||||
3DE31455D33AD144D10914036D272A91D6D2EFE52BF413A5C3B9BFA171AECC64
|
||||
2B02071E56B85BA4D231C18B9BCCD660B7C51ABAE0CECC4DC52A565360E1A42B
|
||||
DF515620894AE9456652FF296426255EF9929D011990CF2839B41F450D063597
|
||||
015075989DE322CB41085D8DD967C1D1589B478F6A45426636E792940317A384
|
||||
29E64270826B9B1573F685493E91DD87A3AD9BF2D10D4E895022EBF7A4760C73
|
||||
F11566B2E6F30ED9B78E3B344668ACE41659796578FACE69C79B16E3D6494C31
|
||||
130C0F515C26A04B6FAACE34268AB974F20DD4EF15054C0A15E34013CBBAF9CF
|
||||
2B11A8D043F717A2BD6A5F56715BA3C571FED25161591749334F32DA236E5856
|
||||
F03B8C9B647A4104BDEB577AAB033781CA2A8EACA243163D5A050BF874396559
|
||||
334AB0839A8680289F1F297273467613CFCD834446DA52D7A2BA146EFDA4CD8E
|
||||
C05E250AF0D5E82E417DD8394B8062DBBBC3C07E477A847F311D0CAC912EF9BB
|
||||
2345D436F59B669297DE8E80BD27FEA98A1DCE61AD4EEF729CDFAC5345EAB8A7
|
||||
D7DA143A0C5934D50F09EFF485F70D3C71C5BD5B5B57C4DC7F3414069432F24C
|
||||
1DF4BABBE29ADF834701C36A850F2EFA8DF92D3E28003F7760A87AB9D8BD91EB
|
||||
71E183330B18FBCF8ED091F2488D3D29B98258C89B6019DCE7C79F8CF5BDCA92
|
||||
EEBB58DE2561795984E933CBD2B4C4BD8EAFEF97C91539917370F7E9A2240265
|
||||
D62E7BF1A7C56653AAC132838C360B2D0DFC5BC800C726159FABD1263B7F19EC
|
||||
12104E12AE577D5437023F945C476FD1654FF9826244F3692C8C186A79566106
|
||||
3805C3704EE0C994FCEAF24CCD9A45CDDF6F2DF60F63D6665742E74880804E1F
|
||||
CCF7B9B5D0C6CFEBE487938ACFAE89884A6CAD16A51515EBA9FF272DC9A57DEC
|
||||
FD4403D41887E6CAE505C2AD9631AD3779F95BF70137B61E9901B3B7058C7DB1
|
||||
EE31F0FC516D508AF085BB6F1CB0FDF73CC0BBD7F5EA9891E0D87D7832E4AB1F
|
||||
A1C5A8391F4132A560CA4693DCF8104CB7F5888F33C7D6586729FD65F57D5158
|
||||
F92194BD8136F05EA48843C514F9465A9D0D7925A364D40B4853C666F726CEE5
|
||||
3DE0E5D07EC75D4FC5B51AF56A371643F206B213263503B9DBE0D3EEE71D8B37
|
||||
E904F9A524C9541AC4CF7195AA3A8D8265BE1B93890D8549F2C9ACE4731733A9
|
||||
4D1B906082ED3E8A59368BACFACEC1886EC52451EC8FF4C444F26DD668C101B9
|
||||
840686B283654FADB08AF6F9E439359B6D41ACFC068845195769033D6618A823
|
||||
8AF622CB10FFD2C85F113EF81F1FF542DD4435BA8ED93CEEBEC1E3A16AE0CE88
|
@ -387,6 +387,7 @@ void vPortFree(void* pv) {
|
||||
/* Add this block to the list of free blocks. */
|
||||
xFreeBytesRemaining += pxLink->xBlockSize;
|
||||
traceFREE(pv, pxLink->xBlockSize);
|
||||
memset(pv, 0, pxLink->xBlockSize - xHeapStructSize);
|
||||
prvInsertBlockIntoFreeList(((BlockLink_t*)pxLink));
|
||||
}
|
||||
(void)xTaskResumeAll();
|
||||
|
@ -22,6 +22,7 @@ import math
|
||||
import sys
|
||||
import struct
|
||||
import pkg_resources
|
||||
import fnmatch
|
||||
|
||||
from .svd import SVDFile
|
||||
|
||||
@ -101,13 +102,6 @@ class LoadSVD(gdb.Command):
|
||||
raise gdb.GdbError("Could not load SVD file {} : {}...\n".format(f, e))
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
# This will also get executed by GDB
|
||||
|
||||
# Create just the svd_load command
|
||||
LoadSVD()
|
||||
|
||||
|
||||
class SVD(gdb.Command):
|
||||
"""The CMSIS SVD (System View Description) inspector command
|
||||
|
||||
@ -321,8 +315,14 @@ class SVD(gdb.Command):
|
||||
container = peripheral.name + " > " + register.name
|
||||
|
||||
self._print_register_fields(container, form, register)
|
||||
|
||||
else:
|
||||
found = False
|
||||
for key in fnmatch.filter(peripheral.registers.keys(), s[1]):
|
||||
register = peripheral.registers[key]
|
||||
container = peripheral.name + " > " + register.name
|
||||
self._print_register_fields(container, form, register)
|
||||
found = True
|
||||
if not found:
|
||||
gdb.write(
|
||||
"Register/cluster {} in peripheral {} does not exist!\n".format(
|
||||
s[1], peripheral.name
|
||||
|
37019
debug/STM32WB55_CM4.svd
37019
debug/STM32WB55_CM4.svd
File diff suppressed because one or more lines are too long
@ -15,21 +15,21 @@ bool furi_hal_crypto_store_add_key(FuriHalCryptoKey* key, uint8_t* slot) {
|
||||
SHCI_C2_FUS_StoreUsrKey_Cmd_Param_t pParam;
|
||||
size_t key_data_size = 0;
|
||||
|
||||
if (key->type == FuriHalCryptoKeyTypeMaster) {
|
||||
if(key->type == FuriHalCryptoKeyTypeMaster) {
|
||||
pParam.KeyType = KEYTYPE_MASTER;
|
||||
} else if (key->type == FuriHalCryptoKeyTypeSimple) {
|
||||
} else if(key->type == FuriHalCryptoKeyTypeSimple) {
|
||||
pParam.KeyType = KEYTYPE_SIMPLE;
|
||||
} else if (key->type == FuriHalCryptoKeyTypeEncrypted) {
|
||||
} else if(key->type == FuriHalCryptoKeyTypeEncrypted) {
|
||||
pParam.KeyType = KEYTYPE_ENCRYPTED;
|
||||
key_data_size += 12;
|
||||
} else {
|
||||
furi_crash("Incorrect key type");
|
||||
}
|
||||
|
||||
if (key->size == FuriHalCryptoKeySize128) {
|
||||
if(key->size == FuriHalCryptoKeySize128) {
|
||||
pParam.KeySize = KEYSIZE_16;
|
||||
key_data_size += 16;
|
||||
} else if (key->size == FuriHalCryptoKeySize256) {
|
||||
} else if(key->size == FuriHalCryptoKeySize256) {
|
||||
pParam.KeySize = KEYSIZE_32;
|
||||
key_data_size += 32;
|
||||
} else {
|
||||
@ -49,11 +49,12 @@ bool furi_hal_crypto_store_load_key(uint8_t slot, const uint8_t* iv) {
|
||||
crypt.Init.KeySize = CRYP_KEYSIZE_256B;
|
||||
crypt.Init.Algorithm = CRYP_AES_CBC;
|
||||
crypt.Init.pInitVect = (uint32_t*)iv;
|
||||
crypt.Init.KeyIVConfigSkip = CRYP_KEYIVCONFIG_ONCE;
|
||||
crypt.Init.pKey = NULL;
|
||||
|
||||
furi_check(HAL_CRYP_Init(&crypt) == HAL_OK);
|
||||
|
||||
if (SHCI_C2_FUS_LoadUsrKey(slot) == SHCI_Success) {
|
||||
if(SHCI_C2_FUS_LoadUsrKey(slot) == SHCI_Success) {
|
||||
return true;
|
||||
} else {
|
||||
furi_check(HAL_CRYP_DeInit(&crypt) == HAL_OK);
|
||||
@ -66,10 +67,10 @@ bool furi_hal_crypto_store_unload_key(uint8_t slot) {
|
||||
return SHCI_C2_FUS_UnloadUsrKey(slot) == SHCI_Success;
|
||||
}
|
||||
|
||||
bool furi_hal_crypto_encrypt(const uint8_t *input, uint8_t *output, size_t size) {
|
||||
return HAL_CRYP_Encrypt(&crypt, (uint32_t*)input, size/4, (uint32_t*)output, 1000) == HAL_OK;
|
||||
bool furi_hal_crypto_encrypt(const uint8_t* input, uint8_t* output, size_t size) {
|
||||
return HAL_CRYP_Encrypt(&crypt, (uint32_t*)input, size / 4, (uint32_t*)output, 1000) == HAL_OK;
|
||||
}
|
||||
|
||||
bool furi_hal_crypto_decrypt(const uint8_t *input, uint8_t *output, size_t size) {
|
||||
return HAL_CRYP_Decrypt(&crypt, (uint32_t*)input, size/4, (uint32_t*)output, 1000) == HAL_OK;
|
||||
bool furi_hal_crypto_decrypt(const uint8_t* input, uint8_t* output, size_t size) {
|
||||
return HAL_CRYP_Decrypt(&crypt, (uint32_t*)input, size / 4, (uint32_t*)output, 1000) == HAL_OK;
|
||||
}
|
||||
|
@ -15,21 +15,21 @@ bool furi_hal_crypto_store_add_key(FuriHalCryptoKey* key, uint8_t* slot) {
|
||||
SHCI_C2_FUS_StoreUsrKey_Cmd_Param_t pParam;
|
||||
size_t key_data_size = 0;
|
||||
|
||||
if (key->type == FuriHalCryptoKeyTypeMaster) {
|
||||
if(key->type == FuriHalCryptoKeyTypeMaster) {
|
||||
pParam.KeyType = KEYTYPE_MASTER;
|
||||
} else if (key->type == FuriHalCryptoKeyTypeSimple) {
|
||||
} else if(key->type == FuriHalCryptoKeyTypeSimple) {
|
||||
pParam.KeyType = KEYTYPE_SIMPLE;
|
||||
} else if (key->type == FuriHalCryptoKeyTypeEncrypted) {
|
||||
} else if(key->type == FuriHalCryptoKeyTypeEncrypted) {
|
||||
pParam.KeyType = KEYTYPE_ENCRYPTED;
|
||||
key_data_size += 12;
|
||||
} else {
|
||||
furi_crash("Incorrect key type");
|
||||
}
|
||||
|
||||
if (key->size == FuriHalCryptoKeySize128) {
|
||||
if(key->size == FuriHalCryptoKeySize128) {
|
||||
pParam.KeySize = KEYSIZE_16;
|
||||
key_data_size += 16;
|
||||
} else if (key->size == FuriHalCryptoKeySize256) {
|
||||
} else if(key->size == FuriHalCryptoKeySize256) {
|
||||
pParam.KeySize = KEYSIZE_32;
|
||||
key_data_size += 32;
|
||||
} else {
|
||||
@ -49,11 +49,12 @@ bool furi_hal_crypto_store_load_key(uint8_t slot, const uint8_t* iv) {
|
||||
crypt.Init.KeySize = CRYP_KEYSIZE_256B;
|
||||
crypt.Init.Algorithm = CRYP_AES_CBC;
|
||||
crypt.Init.pInitVect = (uint32_t*)iv;
|
||||
crypt.Init.KeyIVConfigSkip = CRYP_KEYIVCONFIG_ONCE;
|
||||
crypt.Init.pKey = NULL;
|
||||
|
||||
furi_check(HAL_CRYP_Init(&crypt) == HAL_OK);
|
||||
|
||||
if (SHCI_C2_FUS_LoadUsrKey(slot) == SHCI_Success) {
|
||||
if(SHCI_C2_FUS_LoadUsrKey(slot) == SHCI_Success) {
|
||||
return true;
|
||||
} else {
|
||||
furi_check(HAL_CRYP_DeInit(&crypt) == HAL_OK);
|
||||
@ -66,10 +67,10 @@ bool furi_hal_crypto_store_unload_key(uint8_t slot) {
|
||||
return SHCI_C2_FUS_UnloadUsrKey(slot) == SHCI_Success;
|
||||
}
|
||||
|
||||
bool furi_hal_crypto_encrypt(const uint8_t *input, uint8_t *output, size_t size) {
|
||||
return HAL_CRYP_Encrypt(&crypt, (uint32_t*)input, size/4, (uint32_t*)output, 1000) == HAL_OK;
|
||||
bool furi_hal_crypto_encrypt(const uint8_t* input, uint8_t* output, size_t size) {
|
||||
return HAL_CRYP_Encrypt(&crypt, (uint32_t*)input, size / 4, (uint32_t*)output, 1000) == HAL_OK;
|
||||
}
|
||||
|
||||
bool furi_hal_crypto_decrypt(const uint8_t *input, uint8_t *output, size_t size) {
|
||||
return HAL_CRYP_Decrypt(&crypt, (uint32_t*)input, size/4, (uint32_t*)output, 1000) == HAL_OK;
|
||||
bool furi_hal_crypto_decrypt(const uint8_t* input, uint8_t* output, size_t size) {
|
||||
return HAL_CRYP_Decrypt(&crypt, (uint32_t*)input, size / 4, (uint32_t*)output, 1000) == HAL_OK;
|
||||
}
|
||||
|
@ -59,7 +59,6 @@ bool furi_hal_crypto_store_load_key(uint8_t slot, const uint8_t* iv);
|
||||
*/
|
||||
bool furi_hal_crypto_store_unload_key(uint8_t slot);
|
||||
|
||||
|
||||
/** Encrypt data
|
||||
*
|
||||
* @param input pointer to input data
|
||||
@ -68,7 +67,7 @@ bool furi_hal_crypto_store_unload_key(uint8_t slot);
|
||||
*
|
||||
* @return true on success
|
||||
*/
|
||||
bool furi_hal_crypto_encrypt(const uint8_t *input, uint8_t *output, size_t size);
|
||||
bool furi_hal_crypto_encrypt(const uint8_t* input, uint8_t* output, size_t size);
|
||||
|
||||
/** Decrypt data
|
||||
*
|
||||
@ -78,4 +77,4 @@ bool furi_hal_crypto_encrypt(const uint8_t *input, uint8_t *output, size_t size)
|
||||
*
|
||||
* @return true on success
|
||||
*/
|
||||
bool furi_hal_crypto_decrypt(const uint8_t *input, uint8_t *output, size_t size);
|
||||
bool furi_hal_crypto_decrypt(const uint8_t* input, uint8_t* output, size_t size);
|
||||
|
@ -1,10 +1,28 @@
|
||||
#include "subghz_keystore.h"
|
||||
|
||||
#include <furi.h>
|
||||
#include <furi-hal.h>
|
||||
|
||||
#include <storage/storage.h>
|
||||
#include <lib/toolbox/hex.h>
|
||||
#include <lib/toolbox/flipper-file.h>
|
||||
|
||||
#define SUBGHZ_KEYSTORE_TAG "SubGhzParser"
|
||||
|
||||
#define FILE_BUFFER_SIZE 64
|
||||
|
||||
#define SUBGHZ_KEYSTORE_FILE_TYPE "Flipper SubGhz Keystore File"
|
||||
#define SUBGHZ_KEYSTORE_FILE_VERSION 0
|
||||
|
||||
#define SUBGHZ_KEYSTORE_FILE_ENCRYPTION_KEY_SLOT 1
|
||||
#define SUBGHZ_KEYSTORE_FILE_DECRYPTED_LINE_SIZE 512
|
||||
#define SUBGHZ_KEYSTORE_FILE_ENCRYPTED_LINE_SIZE (SUBGHZ_KEYSTORE_FILE_DECRYPTED_LINE_SIZE*2)
|
||||
|
||||
typedef enum {
|
||||
SubGhzKeystoreEncryptionNone,
|
||||
SubGhzKeystoreEncryptionAES256,
|
||||
} SubGhzKeystoreEncryption;
|
||||
|
||||
struct SubGhzKeystore {
|
||||
SubGhzKeyArray_t data;
|
||||
};
|
||||
@ -37,46 +55,260 @@ static void subghz_keystore_add_key(SubGhzKeystore* instance, const char* name,
|
||||
manufacture_code->type = type;
|
||||
}
|
||||
|
||||
static void subghz_keystore_process_line(SubGhzKeystore* instance, string_t line) {
|
||||
static bool subghz_keystore_process_line(SubGhzKeystore* instance, char* line) {
|
||||
uint64_t key = 0;
|
||||
uint16_t type = 0;
|
||||
char skey[17] = {0};
|
||||
char name[65] = {0};
|
||||
int ret = sscanf(string_get_cstr(line), "%16s:%hu:%64s", skey, &type, name);
|
||||
int ret = sscanf(line, "%16s:%hu:%64s", skey, &type, name);
|
||||
key = strtoull(skey, NULL, 16);
|
||||
if (ret == 3) {
|
||||
subghz_keystore_add_key(instance, name, key, type);
|
||||
return true;
|
||||
} else {
|
||||
printf("Failed to load line: %s\r\n", string_get_cstr(line));
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Failed to load line: %s\r\n", line);
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
void subghz_keystore_load(SubGhzKeystore* instance, const char* file_name) {
|
||||
File* manufacture_keys_file = storage_file_alloc(furi_record_open("storage"));
|
||||
string_t line;
|
||||
string_init(line);
|
||||
if(storage_file_open(manufacture_keys_file, file_name, FSAM_READ, FSOM_OPEN_EXISTING)) {
|
||||
printf("Loading manufacture keys file %s\r\n", file_name);
|
||||
static void subghz_keystore_mess_with_iv(uint8_t* iv) {
|
||||
// Please do not share decrypted manufacture keys
|
||||
// Sharing them will bring some discomfort to legal owners
|
||||
// And potential legal action against you
|
||||
// While you reading this code think about your own personal responsibility
|
||||
asm volatile(
|
||||
"movs r0, #0x0 \n"
|
||||
"movs r1, #0x0 \n"
|
||||
"movs r2, #0x0 \n"
|
||||
"movs r3, #0x0 \n"
|
||||
"nani: \n"
|
||||
"ldrb r1, [r0, %0]\n"
|
||||
"mov r2, r1 \n"
|
||||
"add r1, r3 \n"
|
||||
"mov r3, r2 \n"
|
||||
"strb r1, [r0, %0]\n"
|
||||
"adds r0, #0x1 \n"
|
||||
"cmp r0, #0xF \n"
|
||||
"bls nani \n"
|
||||
:
|
||||
: "r"(iv)
|
||||
: "r0", "r1", "r2", "r3", "memory");
|
||||
}
|
||||
|
||||
static bool subghz_keystore_read_file(SubGhzKeystore* instance, File* file, uint8_t* iv) {
|
||||
bool result = true;
|
||||
char buffer[FILE_BUFFER_SIZE];
|
||||
uint16_t ret;
|
||||
|
||||
char* decrypted_line = furi_alloc(SUBGHZ_KEYSTORE_FILE_DECRYPTED_LINE_SIZE);
|
||||
char* encrypted_line = furi_alloc(SUBGHZ_KEYSTORE_FILE_ENCRYPTED_LINE_SIZE);
|
||||
size_t encrypted_line_cursor = 0;
|
||||
|
||||
if (iv) furi_hal_crypto_store_load_key(SUBGHZ_KEYSTORE_FILE_ENCRYPTION_KEY_SLOT, iv);
|
||||
|
||||
size_t ret = 0;
|
||||
do {
|
||||
ret = storage_file_read(manufacture_keys_file, buffer, FILE_BUFFER_SIZE);
|
||||
ret = storage_file_read(file, buffer, FILE_BUFFER_SIZE);
|
||||
for (uint16_t i=0; i < ret; i++) {
|
||||
if (buffer[i] == '\n' && string_size(line) > 0) {
|
||||
subghz_keystore_process_line(instance, line);
|
||||
string_clean(line);
|
||||
if (buffer[i] == '\n' && encrypted_line_cursor > 0) {
|
||||
// Process line
|
||||
if(iv) {
|
||||
// Data alignment check, 32 instead of 16 because of hex encoding
|
||||
size_t len = strlen(encrypted_line);
|
||||
if (len % 32 == 0) {
|
||||
// Inplace hex to bin conversion
|
||||
for (size_t i=0; i<len; i+=2) {
|
||||
uint8_t hi_nibble=0;
|
||||
uint8_t lo_nibble=0;
|
||||
hex_char_to_hex_nibble(encrypted_line[i], &hi_nibble);
|
||||
hex_char_to_hex_nibble(encrypted_line[i+1], &lo_nibble);
|
||||
encrypted_line[i/2] = (hi_nibble<<4) | lo_nibble;
|
||||
}
|
||||
len /= 2;
|
||||
|
||||
if(furi_hal_crypto_decrypt((uint8_t*)encrypted_line, (uint8_t*)decrypted_line, len)) {
|
||||
subghz_keystore_process_line(instance, decrypted_line);
|
||||
} else {
|
||||
string_push_back(line, buffer[i]);
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Decryption failed");
|
||||
result = false;
|
||||
break;
|
||||
}
|
||||
}
|
||||
} while(ret > 0);
|
||||
} else {
|
||||
printf("Manufacture keys file is not found: %s\r\n", file_name);
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Invalid encrypted data: %s", encrypted_line);
|
||||
}
|
||||
string_clear(line);
|
||||
storage_file_close(manufacture_keys_file);
|
||||
storage_file_free(manufacture_keys_file);
|
||||
} else {
|
||||
subghz_keystore_process_line(instance, encrypted_line);
|
||||
}
|
||||
// reset line buffer
|
||||
memset(decrypted_line, 0, SUBGHZ_KEYSTORE_FILE_DECRYPTED_LINE_SIZE);
|
||||
memset(encrypted_line, 0, SUBGHZ_KEYSTORE_FILE_ENCRYPTED_LINE_SIZE);
|
||||
encrypted_line_cursor = 0;
|
||||
} else if (buffer[i] == '\r' || buffer[i] == '\n') {
|
||||
// do not add line endings to the buffer
|
||||
} else {
|
||||
if (encrypted_line_cursor < SUBGHZ_KEYSTORE_FILE_ENCRYPTED_LINE_SIZE) {
|
||||
encrypted_line[encrypted_line_cursor] = buffer[i];
|
||||
encrypted_line_cursor++;
|
||||
} else {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Malformed file");
|
||||
result = false;
|
||||
break;
|
||||
}
|
||||
}
|
||||
}
|
||||
} while(ret > 0 && result);
|
||||
|
||||
if (iv) furi_hal_crypto_store_unload_key(SUBGHZ_KEYSTORE_FILE_ENCRYPTION_KEY_SLOT);
|
||||
|
||||
free(encrypted_line);
|
||||
free(decrypted_line);
|
||||
|
||||
return result;
|
||||
}
|
||||
|
||||
bool subghz_keystore_load(SubGhzKeystore* instance, const char* file_name) {
|
||||
furi_assert(instance);
|
||||
bool result = false;
|
||||
uint8_t iv[16];
|
||||
uint32_t version;
|
||||
SubGhzKeystoreEncryption encryption;
|
||||
|
||||
string_t filetype;
|
||||
string_init(filetype);
|
||||
|
||||
Storage* storage = furi_record_open("storage");
|
||||
|
||||
FlipperFile* flipper_file = flipper_file_alloc(storage);
|
||||
do {
|
||||
if(!flipper_file_open_read(flipper_file, file_name)) {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Unable to open file for read: %s", file_name);
|
||||
break;
|
||||
}
|
||||
if(!flipper_file_read_header(flipper_file, filetype, &version)) {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Missing or incorrect header");
|
||||
break;
|
||||
}
|
||||
if(!flipper_file_read_uint32(flipper_file, "Encryption", (uint32_t*)&encryption)) {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Missing encryption type");
|
||||
break;
|
||||
}
|
||||
|
||||
if (strcmp(string_get_cstr(filetype), SUBGHZ_KEYSTORE_FILE_TYPE) != 0
|
||||
|| version != SUBGHZ_KEYSTORE_FILE_VERSION) {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Type or version mismatch");
|
||||
break;
|
||||
}
|
||||
|
||||
File* file = flipper_file_get_file(flipper_file);
|
||||
if (encryption == SubGhzKeystoreEncryptionNone) {
|
||||
result = subghz_keystore_read_file(instance, file, NULL);
|
||||
}else if (encryption == SubGhzKeystoreEncryptionAES256) {
|
||||
if(!flipper_file_read_hex_array(flipper_file, "IV", iv, 16)) {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Missing IV");
|
||||
break;
|
||||
}
|
||||
subghz_keystore_mess_with_iv(iv);
|
||||
result = subghz_keystore_read_file(instance, file, iv);
|
||||
} else {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Unknown encryption");
|
||||
break;
|
||||
}
|
||||
} while(0);
|
||||
flipper_file_close(flipper_file);
|
||||
flipper_file_free(flipper_file);
|
||||
|
||||
furi_record_close("storage");
|
||||
|
||||
string_clear(filetype);
|
||||
|
||||
return result;
|
||||
}
|
||||
|
||||
bool subghz_keystore_save(SubGhzKeystore* instance, const char* file_name, uint8_t* iv) {
|
||||
furi_assert(instance);
|
||||
bool result = false;
|
||||
|
||||
Storage* storage = furi_record_open("storage");
|
||||
char* decrypted_line = furi_alloc(SUBGHZ_KEYSTORE_FILE_DECRYPTED_LINE_SIZE);
|
||||
char* encrypted_line = furi_alloc(SUBGHZ_KEYSTORE_FILE_ENCRYPTED_LINE_SIZE);
|
||||
|
||||
FlipperFile* flipper_file = flipper_file_alloc(storage);
|
||||
do {
|
||||
if(!flipper_file_new_write(flipper_file, file_name)) {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Unable to open file for write: %s", file_name);
|
||||
break;
|
||||
}
|
||||
if(!flipper_file_write_header_cstr(flipper_file, SUBGHZ_KEYSTORE_FILE_TYPE, SUBGHZ_KEYSTORE_FILE_VERSION)) {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Unable to add header");
|
||||
break;
|
||||
}
|
||||
if(!flipper_file_write_uint32(flipper_file, "Encryption", SubGhzKeystoreEncryptionAES256)) {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Unable to add Encryption");
|
||||
break;
|
||||
}
|
||||
if(!flipper_file_write_hex_array(flipper_file, "IV", iv, 16)) {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Unable to add IV");
|
||||
break;
|
||||
}
|
||||
|
||||
subghz_keystore_mess_with_iv(iv);
|
||||
|
||||
if(!furi_hal_crypto_store_load_key(SUBGHZ_KEYSTORE_FILE_ENCRYPTION_KEY_SLOT, iv)) {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Unable to load encryption key");
|
||||
break;
|
||||
}
|
||||
|
||||
File* file = flipper_file_get_file(flipper_file);
|
||||
size_t encrypted_line_count = 0;
|
||||
for
|
||||
M_EACH(
|
||||
key,
|
||||
instance->data,
|
||||
SubGhzKeyArray_t) {
|
||||
// Wipe buffer before packing
|
||||
memset(decrypted_line, 0, SUBGHZ_KEYSTORE_FILE_DECRYPTED_LINE_SIZE);
|
||||
memset(encrypted_line, 0, SUBGHZ_KEYSTORE_FILE_ENCRYPTED_LINE_SIZE);
|
||||
// Form unecreypted line
|
||||
int len = snprintf(
|
||||
decrypted_line, SUBGHZ_KEYSTORE_FILE_DECRYPTED_LINE_SIZE,
|
||||
"%08lX%08lX:%hu:%s",
|
||||
(uint32_t)(key->key>>32), (uint32_t)key->key, key->type, string_get_cstr(key->name));
|
||||
// Verify length and align
|
||||
furi_assert(len > 0);
|
||||
if (len % 16 != 0) {
|
||||
len += (16 - len % 16);
|
||||
}
|
||||
furi_assert(len % 16 == 0);
|
||||
furi_assert(len <= SUBGHZ_KEYSTORE_FILE_DECRYPTED_LINE_SIZE);
|
||||
// Form encrypted line
|
||||
if(!furi_hal_crypto_encrypt((uint8_t*)decrypted_line, (uint8_t*)encrypted_line, len)) {
|
||||
FURI_LOG_E(SUBGHZ_KEYSTORE_TAG, "Encryption failed");
|
||||
break;
|
||||
}
|
||||
// HEX Encode encrypted line
|
||||
const char xx[]= "0123456789ABCDEF";
|
||||
for (size_t i=0; i<len; i++) {
|
||||
size_t cursor = len - i - 1;
|
||||
size_t hex_cursor = len*2 - i*2 - 1;
|
||||
encrypted_line[hex_cursor] = xx[encrypted_line[cursor] & 0xF];
|
||||
encrypted_line[hex_cursor-1] = xx[(encrypted_line[cursor]>>4) & 0xF];
|
||||
}
|
||||
storage_file_write(file, encrypted_line, strlen(encrypted_line));
|
||||
storage_file_write(file, "\n", 1);
|
||||
encrypted_line_count++;
|
||||
|
||||
FURI_LOG_I(SUBGHZ_KEYSTORE_TAG, "Encrypted: `%s` -> `%s`", decrypted_line, encrypted_line);
|
||||
}
|
||||
furi_hal_crypto_store_unload_key(SUBGHZ_KEYSTORE_FILE_ENCRYPTION_KEY_SLOT);
|
||||
result = encrypted_line_count == SubGhzKeyArray_size(instance->data);
|
||||
} while(0);
|
||||
flipper_file_close(flipper_file);
|
||||
flipper_file_free(flipper_file);
|
||||
|
||||
free(encrypted_line);
|
||||
free(decrypted_line);
|
||||
furi_record_close("storage");
|
||||
|
||||
return result;
|
||||
}
|
||||
|
||||
SubGhzKeyArray_t* subghz_keystore_get_data(SubGhzKeystore* instance) {
|
||||
|
@ -33,7 +33,14 @@ void subghz_keystore_free(SubGhzKeystore* instance);
|
||||
* @param instance - SubGhzKeystore instance
|
||||
* @param filename - const char* full path to the file
|
||||
*/
|
||||
void subghz_keystore_load(SubGhzKeystore* instance, const char* filename);
|
||||
bool subghz_keystore_load(SubGhzKeystore* instance, const char* filename);
|
||||
|
||||
/** Save manufacture key to file
|
||||
*
|
||||
* @param instance - SubGhzKeystore instance
|
||||
* @param filename - const char* full path to the file
|
||||
*/
|
||||
bool subghz_keystore_save(SubGhzKeystore* instance, const char* filename, uint8_t* iv);
|
||||
|
||||
/** Get array of keys and names manufacture
|
||||
*
|
||||
|
@ -24,6 +24,8 @@
|
||||
#include <furi.h>
|
||||
#include <m-string.h>
|
||||
|
||||
#define SUBGHZ_PARSER_TAG "SubGhzParser"
|
||||
|
||||
typedef enum {
|
||||
SubGhzProtocolTypeCame,
|
||||
SubGhzProtocolTypeCameTwee,
|
||||
@ -214,7 +216,11 @@ void subghz_parser_load_came_atomo_file(SubGhzParser* instance, const char* file
|
||||
}
|
||||
|
||||
void subghz_parser_load_keeloq_file(SubGhzParser* instance, const char* file_name) {
|
||||
subghz_keystore_load(instance->keystore, file_name);
|
||||
if (subghz_keystore_load(instance->keystore, file_name)) {
|
||||
FURI_LOG_I(SUBGHZ_PARSER_TAG, "Successfully loaded keeloq keys from %s", file_name);
|
||||
} else {
|
||||
FURI_LOG_W(SUBGHZ_PARSER_TAG, "Failed to load keeloq keysfrom %s", file_name);
|
||||
}
|
||||
}
|
||||
|
||||
void subghz_parser_reset(SubGhzParser* instance) {
|
||||
|
@ -462,3 +462,10 @@ bool flipper_file_read_hex_array(
|
||||
}
|
||||
return result;
|
||||
}
|
||||
|
||||
File* flipper_file_get_file(FlipperFile* flipper_file) {
|
||||
furi_assert(flipper_file);
|
||||
furi_assert(flipper_file->file);
|
||||
|
||||
return flipper_file->file;
|
||||
}
|
||||
|
@ -39,7 +39,7 @@
|
||||
* Writing:
|
||||
*
|
||||
* ~~~~~~~~~~~~~~~~~~~~~
|
||||
* FlipperFile file = flipper_file_alloc(storage);
|
||||
* FlipperFile* file = flipper_file_alloc(storage);
|
||||
*
|
||||
* do {
|
||||
* const uint32_t version = 1;
|
||||
@ -65,7 +65,7 @@
|
||||
* Reading:
|
||||
*
|
||||
* ~~~~~~~~~~~~~~~~~~~~~
|
||||
* FlipperFile file = flipper_file_alloc(storage);
|
||||
* FlipperFile* file = flipper_file_alloc(storage);
|
||||
*
|
||||
* do {
|
||||
* uint32_t version = 1;
|
||||
@ -262,6 +262,17 @@ bool flipper_file_write_hex_array(
|
||||
const uint8_t* data,
|
||||
const uint16_t data_size);
|
||||
|
||||
/** Get file descriptor.
|
||||
*
|
||||
* We higly don't recommend to use it.
|
||||
* This instance is owned by FlipperFile.
|
||||
*
|
||||
* @param flipper_file pointer to FlipperFile instance
|
||||
*
|
||||
* @return pointer to File instance
|
||||
*/
|
||||
File* flipper_file_get_file(FlipperFile* flipper_file);
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
@ -129,14 +129,6 @@ zz: clean
|
||||
zzz: clean
|
||||
$(MAKE) debug
|
||||
|
||||
FORMAT_SOURCES := $(shell find ../applications -iname "*.h" -o -iname "*.c" -o -iname "*.cpp")
|
||||
FORMAT_SOURCES += $(shell find ../bootloader -iname "*.h" -o -iname "*.c" -o -iname "*.cpp")
|
||||
FORMAT_SOURCES += $(shell find ../core -iname "*.h" -o -iname "*.c" -o -iname "*.cpp")
|
||||
|
||||
format:
|
||||
@echo "Formatting sources with clang-format"
|
||||
@clang-format -style=file -i $(FORMAT_SOURCES)
|
||||
|
||||
generate_cscope_db:
|
||||
@echo "$(C_SOURCES) $(CPP_SOURCES) $(ASM_SOURCES)" | tr ' ' '\n' > $(OBJ_DIR)/source.list.p
|
||||
@cat ~/headers.list >> $(OBJ_DIR)/source.list.p
|
||||
|
Loading…
Reference in New Issue
Block a user