kopia lustrzana https://github.com/espressif/esp-idf
esp32s2-ssl_ds: Use CLI interface for espefuse in configure_ds.py
* make the project CMakelists to flash the external partition "pre_prov" * Remove the dependancy of configure_ds.py on esptool.py * Updated README * Fix the help menupull/4512/merge
rodzic
982d4be760
commit
19df6529b2
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@ -9,5 +9,12 @@ set(EXTRA_COMPONENT_DIRS $ENV{IDF_PATH}/examples/common_components/protocol_exam
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include($ENV{IDF_PATH}/tools/cmake/project.cmake)
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include($ENV{IDF_PATH}/tools/cmake/project.cmake)
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project(mqtt_ssl_ds)
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project(mqtt_ssl_ds)
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# Flash the custom partition named `pre_prov`.
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set (partition pre_prov)
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idf_build_get_property(project_dir PROJECT_DIR)
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set(image_file ${project_dir}/esp_ds_data/${partition}.bin)
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partition_table_get_partition_info(offset "--partition-name ${partition}" "offset")
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esptool_py_flash_target_image(flash "${partition}" "${offset}" "${image_file}")
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target_add_binary_data(${CMAKE_PROJECT_NAME}.elf "main/client.crt" TEXT)
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target_add_binary_data(${CMAKE_PROJECT_NAME}.elf "main/client.crt" TEXT)
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target_add_binary_data(${CMAKE_PROJECT_NAME}.elf "main/mosquitto.org.crt" TEXT)
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target_add_binary_data(${CMAKE_PROJECT_NAME}.elf "main/mosquitto.org.crt" TEXT)
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@ -115,7 +115,7 @@ can be provided with
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3. Store `HMAC_KEY` in one of the efuse key blocks (in the hardware).
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3. Store `HMAC_KEY` in one of the efuse key blocks (in the hardware).
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The ID of the efuse key block ( should be in range 1-5) can be provided with the following option. ( default value of 1 is used if not provided),
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The ID of the efuse key block ( should be in range 1-5) can be provided with the following option. ( default value of 1 is used if not provided),
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```
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```
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python configure_ds.py --efuse_key_id /* key id in range 1-5 */ --burn_key
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python configure_ds.py --efuse_key_id /* key id in range 1-5 */
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```
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```
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Currently for development purposes, the `HMAC_KEY` is stored in the efuse key block without read protection so that read operation can be performed on the same key block.
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Currently for development purposes, the `HMAC_KEY` is stored in the efuse key block without read protection so that read operation can be performed on the same key block.
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@ -23,16 +23,6 @@ from cryptography.hazmat.primitives.asymmetric import rsa
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from cryptography.hazmat.primitives.ciphers import Cipher, algorithms, modes
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from cryptography.hazmat.primitives.ciphers import Cipher, algorithms, modes
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from cryptography.utils import int_to_bytes
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from cryptography.utils import int_to_bytes
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try:
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import esptool
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import espefuse
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except ImportError:
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idf_path = os.getenv("IDF_PATH")
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if not idf_path or not os.path.exists(idf_path):
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raise Exception("IDF_PATH not found")
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sys.path.insert(0, os.path.join(idf_path, "components", "esptool_py", "esptool"))
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import esptool
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import espefuse
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try:
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try:
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import nvs_partition_gen as nvs_gen
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import nvs_partition_gen as nvs_gen
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except ImportError:
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except ImportError:
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@ -122,68 +112,14 @@ def calculate_ds_parameters(privkey, priv_key_pass):
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return c, iv, key_size
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return c, iv, key_size
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class DefineArgs(object):
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def efuse_summary(args):
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def __init__(self, attributes):
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os.system("python $IDF_PATH/components/esptool_py/esptool/espefuse.py --chip esp32s2 -p %s summary" % (args.port))
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for key, value in attributes.items():
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self.__setattr__(key, value)
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def efuse_summary(esp,args):
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def efuse_burn_key(args):
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efuses, _efuse_operations = espefuse.get_efuses(esp, esp.CHIP_NAME, False, False, False)
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os.system("python $IDF_PATH/components/esptool_py/esptool/espefuse.py --chip esp32s2 -p %s burn_key"
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"%s %s HMAC_DOWN_DIGITAL_SIGNATURE --no-read-protect"
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summary_args = DefineArgs({
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% ((args.port), ("BLOCK_KEY" + str(args.efuse_key_id)), (hmac_key_file)))
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'baud': 115200,
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'before': 'default_reset',
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'chip': esp.CHIP_NAME,
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'debug': False,
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'do_not_confirm': False,
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'file': sys.stdout,
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'mode':'w',
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'encding': 'utf-8',
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'format': 'summary',
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'operation': 'summary',
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'port':args.port,
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})
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print("\n\n\n\t---SUMMARY START---\n")
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espefuse.summary(esp, efuses, summary_args)
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print("\n\t---SUMMARY END---\n\n")
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def efuse_burn_key(esp, args):
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efuses, efuse_operations = espefuse.get_efuses(esp, esp.CHIP_NAME, False, False, False)
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if args.efuse_key_id is None:
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print("efuse Key id cannot be None")
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sys.exit(-1)
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key_file = open(hmac_key_file, 'rb')
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# First element of _KEYBLOCKS is config data so add offset of 1
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key_block = efuses._KEYBLOCKS[args.efuse_key_id + 1][0]
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burn_key_args = DefineArgs({
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'baud': 115200,
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'before': 'default_reset',
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'chip': esp.CHIP_NAME,
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'debug': False,
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'do_not_confirm': False,
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'block': [key_block],
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'keyfile': [key_file],
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'keypurpose': ['HMAC_DOWN_DIGITAL_SIGNATURE'],
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'operation': 'burn_key',
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'force_write_always': False,
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'no_read_protect': True,
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'no_write_protect': False,
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'port': args.port,
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})
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try:
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efuse_operations.burn_key(esp, efuses, burn_key_args, None)
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key_file.close()
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except esptool.FatalError:
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print("\nERROR: The provided key block already contains previously burned key, please use a different key block ID")
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sys.exit(-1)
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def generate_csv_file(c, iv, hmac_key_id, key_size, csv_file):
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def generate_csv_file(c, iv, hmac_key_id, key_size, csv_file):
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@ -197,6 +133,12 @@ def generate_csv_file(c, iv, hmac_key_id, key_size, csv_file):
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f.write("esp_ds_rsa_len,data,u16,%d\n" % (key_size))
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f.write("esp_ds_rsa_len,data,u16,%d\n" % (key_size))
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class DefineArgs(object):
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def __init__(self, attributes):
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for key, value in attributes.items():
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self.__setattr__(key, value)
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def generate_nvs_partition(input_filename, output_filename):
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def generate_nvs_partition(input_filename, output_filename):
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nvs_args = DefineArgs({
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nvs_args = DefineArgs({
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@ -211,45 +153,16 @@ def generate_nvs_partition(input_filename, output_filename):
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nvs_gen.generate(nvs_args, is_encr_enabled=False, encr_key=None)
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nvs_gen.generate(nvs_args, is_encr_enabled=False, encr_key=None)
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def flash_nvs_partition(bin_path, addr, esp):
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esp.connect()
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print(bin_path)
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abs_bin_path = os.path.dirname(os.path.abspath(__file__)) + '/' + bin_path
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print(abs_bin_path)
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if (os.path.exists(abs_bin_path) is False):
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print("NVS partition not found")
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sys.exit(-1)
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with open(bin_path, 'rb') as nvs_file:
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flash_file = [(addr, nvs_file)]
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flash_args = DefineArgs({
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'flash_size': '4MB',
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'flash_mode': 'qio',
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'flash_freq': '80m',
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'addr_filename': flash_file,
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'no_stub': False,
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'compress': False,
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'verify': False,
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'encrypt': False,
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'erase_all': False,
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})
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esp.change_baud(baud=921600)
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esptool.write_flash(esp, flash_args)
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def main():
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def main():
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parser = argparse.ArgumentParser(description='''Provision the ESPWROOM32SE device with
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parser = argparse.ArgumentParser(description='''Genereate an nvs partition containing the DS private key parameters from the client private key,
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device_certificate and signer_certificate required for TLS authentication''')
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Generate an HMAC key and burn it in the desired efuse key block (required for Digital Signature)''')
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parser.add_argument(
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parser.add_argument(
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'--private-key',
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'--private-key',
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dest='privkey',
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dest='privkey',
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default='main/client.key',
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default='main/client.key',
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metavar='relative/path/to/client-priv-key',
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metavar='relative/path/to/client-priv-key',
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help='relative path(from secure_cert_mfg.py) to signer certificate private key')
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help='relative path to client private key')
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parser.add_argument(
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parser.add_argument(
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"--pwd", '--password',
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"--pwd", '--password',
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@ -283,13 +196,8 @@ def main():
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args = parser.parse_args()
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args = parser.parse_args()
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esp = esptool.ESPLoader.detect_chip(args.port,baud=115200)
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if (esp.CHIP_NAME != 'ESP32-S2'):
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print("Only ESP32S2 chip is supported")
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sys.exit(-1)
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if args.summary is not False:
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if args.summary is not False:
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efuse_summary(esp, args)
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efuse_summary(args)
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sys.exit(0)
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sys.exit(0)
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if (os.path.exists(esp_ds_data_dir) is False):
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if (os.path.exists(esp_ds_data_dir) is False):
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@ -303,11 +211,10 @@ def main():
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print("overwriting previous encrypted private key data, as you have provided \"--overwrite\" option")
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print("overwriting previous encrypted private key data, as you have provided \"--overwrite\" option")
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c, iv, key_size = calculate_ds_parameters(args.privkey, args.priv_key_pass)
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c, iv, key_size = calculate_ds_parameters(args.privkey, args.priv_key_pass)
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efuse_burn_key(esp, args)
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efuse_burn_key(args)
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generate_csv_file(c, iv, args.efuse_key_id, key_size, csv_filename)
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generate_csv_file(c, iv, args.efuse_key_id, key_size, csv_filename)
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generate_nvs_partition(csv_filename, bin_filename)
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generate_nvs_partition(csv_filename, bin_filename)
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flash_nvs_partition(bin_filename, 0x10000, esp)
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if __name__ == "__main__":
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if __name__ == "__main__":
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