mirror of
https://github.com/espressif/esp-idf.git
synced 2026-09-22 13:01:16 +03:00
497 lines
16 KiB
Python
Executable File
497 lines
16 KiB
Python
Executable File
#!/usr/bin/env python
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#
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# otatool is used to perform ota-level operations - flashing ota partition
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# erasing ota partition and switching ota partition
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#
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# SPDX-FileCopyrightText: 2018-2026 Espressif Systems (Shanghai) CO LTD
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# SPDX-License-Identifier: Apache-2.0
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import binascii
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import collections
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import os
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import struct
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import sys
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import tempfile
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import rich_click as click
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from esp_pylib.cli_options import EspRichGroup
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from esp_pylib.cli_options import MutuallyExclusiveOption
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from esp_pylib.cli_options import OptionEatAll
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from esp_pylib.cli_types import AnyIntType
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from esp_pylib.logger import Verbosity
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from esp_pylib.logger import log
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from rich.markup import escape
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try:
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from parttool import PARTITION_TABLE_OFFSET
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from parttool import PartitionName
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from parttool import PartitionType
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from parttool import ParttoolTarget
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except ImportError:
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COMPONENTS_PATH = os.path.expandvars(os.path.join('$IDF_PATH', 'components'))
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PARTTOOL_DIR = os.path.join(COMPONENTS_PATH, 'partition_table')
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sys.path.append(PARTTOOL_DIR)
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from parttool import PARTITION_TABLE_OFFSET
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from parttool import PartitionName
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from parttool import PartitionType
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from parttool import ParttoolTarget
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__version__ = '2.0'
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SPI_FLASH_SEC_SIZE = 0x2000
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class OtatoolTarget:
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OTADATA_PARTITION = PartitionType('data', 'ota')
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def __init__(
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self,
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port=None,
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baud=None,
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partition_table_offset=PARTITION_TABLE_OFFSET,
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partition_table_file=None,
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spi_flash_sec_size=SPI_FLASH_SEC_SIZE,
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esptool_args=[],
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esptool_write_args=[],
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esptool_read_args=[],
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esptool_erase_args=[],
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):
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self.target = ParttoolTarget(
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port,
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baud,
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partition_table_offset,
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partition_table_file,
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esptool_args,
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esptool_write_args,
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esptool_read_args,
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esptool_erase_args,
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)
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self.spi_flash_sec_size = spi_flash_sec_size
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temp_file = tempfile.NamedTemporaryFile(delete=False)
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temp_file.close()
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try:
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self.target.read_partition(OtatoolTarget.OTADATA_PARTITION, temp_file.name)
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with open(temp_file.name, 'rb') as f:
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self.otadata = f.read()
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finally:
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os.unlink(temp_file.name)
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def _check_otadata_partition(self):
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if not self.otadata:
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raise Exception('No otadata partition found')
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def erase_otadata(self):
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self._check_otadata_partition()
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self.target.erase_partition(OtatoolTarget.OTADATA_PARTITION)
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def _get_otadata_info(self):
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info = []
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otadata_info = collections.namedtuple('otadata_info', 'seq crc')
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for i in range(2):
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start = i * (self.spi_flash_sec_size >> 1)
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seq = bytearray(self.otadata[start : start + 4])
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crc = bytearray(self.otadata[start + 28 : start + 32])
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seq = struct.unpack('I', seq)
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crc = struct.unpack('I', crc)
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info.append(otadata_info(seq[0], crc[0]))
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return info
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def _get_partition_id_from_ota_id(self, ota_id):
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if isinstance(ota_id, int):
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return PartitionType('app', 'ota_' + str(ota_id))
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else:
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return PartitionName(ota_id)
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def switch_ota_partition(self, ota_id):
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self._check_otadata_partition()
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import gen_esp32part as gen
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def is_otadata_info_valid(status):
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seq = status.seq % (1 << 32)
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crc = binascii.crc32(struct.pack('I', seq), 0xFFFFFFFF) % (1 << 32)
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return seq < (int('0xFFFFFFFF', 16) % (1 << 32)) and status.crc == crc
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partition_table = self.target.partition_table
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ota_partitions = list()
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for i in range(gen.NUM_PARTITION_SUBTYPE_APP_OTA):
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ota_partition = filter(lambda p: p.subtype == (gen.MIN_PARTITION_SUBTYPE_APP_OTA + i), partition_table)
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try:
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ota_partitions.append(list(ota_partition)[0])
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except IndexError:
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break
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ota_partitions = sorted(ota_partitions, key=lambda p: p.subtype)
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if not ota_partitions:
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raise Exception('No ota app partitions found')
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# Look for the app partition to switch to
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ota_partition_next = None
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try:
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if isinstance(ota_id, int):
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ota_partition_next = filter(
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lambda p: p.subtype - gen.MIN_PARTITION_SUBTYPE_APP_OTA == ota_id, ota_partitions
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)
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else:
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ota_partition_next = filter(lambda p: p.name == ota_id, ota_partitions)
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ota_partition_next = list(ota_partition_next)[0]
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except IndexError:
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raise Exception('Partition to switch to not found')
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otadata_info = self._get_otadata_info()
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# Find the copy to base the computation for ota sequence number on
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otadata_compute_base = -1
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# Both are valid, take the max as computation base
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if is_otadata_info_valid(otadata_info[0]) and is_otadata_info_valid(otadata_info[1]):
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if otadata_info[0].seq >= otadata_info[1].seq:
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otadata_compute_base = 0
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else:
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otadata_compute_base = 1
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# Only one copy is valid, use that
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elif is_otadata_info_valid(otadata_info[0]):
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otadata_compute_base = 0
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elif is_otadata_info_valid(otadata_info[1]):
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otadata_compute_base = 1
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# Both are invalid (could be initial state - all 0xFF's)
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else:
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pass
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ota_seq_next = 0
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ota_partitions_num = len(ota_partitions)
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target_seq = (ota_partition_next.subtype & 0x0F) + 1
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# Find the next ota sequence number
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if otadata_compute_base == 0 or otadata_compute_base == 1:
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base_seq = otadata_info[otadata_compute_base].seq % (1 << 32)
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i = 0
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while base_seq > target_seq % ota_partitions_num + i * ota_partitions_num:
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i += 1
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ota_seq_next = target_seq % ota_partitions_num + i * ota_partitions_num
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else:
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ota_seq_next = target_seq
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# Create binary data from computed values
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ota_seq_next = struct.pack('I', ota_seq_next)
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ota_seq_crc_next = binascii.crc32(ota_seq_next, 0xFFFFFFFF) % (1 << 32)
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ota_seq_crc_next = struct.pack('I', ota_seq_crc_next)
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temp_file = tempfile.NamedTemporaryFile(delete=False)
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temp_file.close()
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try:
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with open(temp_file.name, 'wb') as otadata_next_file:
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start = (1 if otadata_compute_base == 0 else 0) * (self.spi_flash_sec_size >> 1)
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otadata_next_file.write(self.otadata)
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otadata_next_file.seek(start)
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otadata_next_file.write(ota_seq_next)
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otadata_next_file.seek(start + 28)
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otadata_next_file.write(ota_seq_crc_next)
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otadata_next_file.flush()
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self.target.write_partition(OtatoolTarget.OTADATA_PARTITION, temp_file.name)
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finally:
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os.unlink(temp_file.name)
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def read_ota_partition(self, ota_id, output):
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self.target.read_partition(self._get_partition_id_from_ota_id(ota_id), output)
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def write_ota_partition(self, ota_id, input_file):
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self.target.write_partition(self._get_partition_id_from_ota_id(ota_id), input_file)
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def erase_ota_partition(self, ota_id):
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self.target.erase_partition(self._get_partition_id_from_ota_id(ota_id))
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def _read_otadata(target):
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target._check_otadata_partition()
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otadata_info = target._get_otadata_info()
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# Regular tool output (same stream as pre-pylib status()/print).
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log.print(' {:8s} \t {:8s} | \t {:8s} \t {:8s}'.format('OTA_SEQ', 'CRC', 'OTA_SEQ', 'CRC'))
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log.print(
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f'Firmware: {otadata_info[0].seq:#08x} \t{otadata_info[0].crc:#08x} | '
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f'\t{otadata_info[1].seq:#08x} \t {otadata_info[1].crc:#08x}'
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)
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def _erase_otadata(target):
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target.erase_otadata()
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log.print('Erased ota_data partition contents')
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def _switch_ota_partition(target, ota_id):
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target.switch_ota_partition(ota_id)
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def _read_ota_partition(target, ota_id, output):
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target.read_ota_partition(ota_id, output)
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log.print(f'Read ota partition contents to file {escape(str(output))}')
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def _write_ota_partition(target, ota_id, input_file):
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target.write_ota_partition(ota_id, input_file)
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log.print(f'Written contents of file {escape(str(input_file))} to ota partition')
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def _erase_ota_partition(target, ota_id):
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target.erase_ota_partition(ota_id)
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log.print('Erased contents of ota partition')
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def _target_kwargs_from_ctx(ctx_obj, spi_flash_sec_size=None):
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kwargs = {}
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for key, value in (
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('port', ctx_obj.get('port')),
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('baud', ctx_obj.get('baud')),
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('partition_table_offset', ctx_obj.get('partition_table_offset')),
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('partition_table_file', ctx_obj.get('partition_table_file')),
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('esptool_args', ctx_obj.get('esptool_args')),
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('esptool_write_args', ctx_obj.get('esptool_write_args')),
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('esptool_read_args', ctx_obj.get('esptool_read_args')),
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('esptool_erase_args', ctx_obj.get('esptool_erase_args')),
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):
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if value is not None and value != ():
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kwargs[key] = value
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if spi_flash_sec_size is not None:
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kwargs['spi_flash_sec_size'] = spi_flash_sec_size
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return kwargs
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def _resolve_ota_id(slot, name):
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if name is not None:
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return name
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if slot is not None:
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return slot
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return None
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def _run_operation(operation, target, quiet=False, **op_kwargs):
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otatool_ops = {
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'read_otadata': (_read_otadata, []),
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'erase_otadata': (_erase_otadata, []),
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'switch_ota_partition': (_switch_ota_partition, ['ota_id']),
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'read_ota_partition': (_read_ota_partition, ['ota_id', 'output']),
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'write_ota_partition': (_write_ota_partition, ['ota_id', 'input_file']),
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'erase_ota_partition': (_erase_ota_partition, ['ota_id']),
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}
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op, op_arg_names = otatool_ops[operation]
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common_args = {'target': target}
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for op_arg in op_arg_names:
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common_args[op_arg] = op_kwargs[op_arg]
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if quiet:
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try:
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op(**common_args)
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except Exception:
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sys.exit(2)
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else:
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op(**common_args)
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def _slot_or_name_options(func):
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decorators = [
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click.option(
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'--slot',
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type=int,
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cls=MutuallyExclusiveOption,
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exclusive_with=['name'],
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help='slot number of the ota partition',
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),
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click.option(
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'--name',
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cls=MutuallyExclusiveOption,
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exclusive_with=['slot'],
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help='name of the ota partition',
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),
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]
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for decorator in reversed(decorators):
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func = decorator(func)
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return func
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@click.group(
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cls=EspRichGroup,
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invoke_without_command=True,
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context_settings={'help_option_names': ['-h', '--help']},
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help='ESP-IDF OTA Partitions Tool',
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)
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@click.option('--quiet', '-q', is_flag=True, help='suppress status messages')
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@click.option(
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'--esptool-args',
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multiple=True,
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cls=OptionEatAll,
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type=str,
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help='additional main arguments for esptool',
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)
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@click.option(
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'--esptool-write-args',
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multiple=True,
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cls=OptionEatAll,
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type=str,
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help='additional subcommand arguments for esptool write-flash',
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)
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@click.option(
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'--esptool-read-args',
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multiple=True,
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cls=OptionEatAll,
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type=str,
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help='additional subcommand arguments for esptool read-flash',
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)
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@click.option(
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'--esptool-erase-args',
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multiple=True,
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cls=OptionEatAll,
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type=str,
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help='additional subcommand arguments for esptool erase-region',
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)
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@click.option('--port', '-p', help='port where the device to read the partition table from is attached')
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@click.option('--baud', '-b', type=int, help='baudrate to use')
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@click.option('--partition-table-offset', '-o', type=AnyIntType(), help='offset to read the partition table from')
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@click.option(
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'--partition-table-file',
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'-f',
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type=click.Path(),
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help='file (CSV/binary) to read the partition table from; '
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'overrides device attached to specified port as the partition table source when defined',
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)
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@click.pass_context
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def cli(
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ctx,
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quiet,
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esptool_args,
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esptool_write_args,
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esptool_read_args,
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esptool_erase_args,
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port,
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baud,
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partition_table_offset,
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partition_table_file,
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):
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if quiet:
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log.set_verbosity(Verbosity.SILENT)
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ctx.ensure_object(dict)
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ctx.obj.update(
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{
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'quiet': quiet,
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'esptool_args': esptool_args,
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'esptool_write_args': esptool_write_args,
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'esptool_read_args': esptool_read_args,
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'esptool_erase_args': esptool_erase_args,
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'port': port,
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'baud': baud,
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'partition_table_offset': partition_table_offset,
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'partition_table_file': partition_table_file,
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}
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)
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# Match pre-click argparse: no subcommand → help (unless quiet) and exit 1.
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if ctx.invoked_subcommand is None:
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if not quiet:
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click.echo(ctx.get_help())
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sys.exit(1)
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@cli.command('read_otadata', help='read otadata partition')
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@click.option('--spi-flash-sec-size', type=AnyIntType(), help='value of SPI_FLASH_SEC_SIZE macro')
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@click.pass_context
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def read_otadata_cmd(ctx, spi_flash_sec_size):
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target = OtatoolTarget(**_target_kwargs_from_ctx(ctx.obj, spi_flash_sec_size))
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_run_operation('read_otadata', target, quiet=ctx.obj.get('quiet'))
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@cli.command('erase_otadata', help='erase otadata partition')
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@click.pass_context
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def erase_otadata_cmd(ctx):
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target = OtatoolTarget(**_target_kwargs_from_ctx(ctx.obj))
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_run_operation('erase_otadata', target, quiet=ctx.obj.get('quiet'))
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@cli.command('switch_ota_partition', help='switch otadata partition')
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@_slot_or_name_options
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@click.option('--spi-flash-sec-size', type=AnyIntType(), help='value of SPI_FLASH_SEC_SIZE macro')
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@click.pass_context
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def switch_ota_partition_cmd(ctx, slot, name, spi_flash_sec_size):
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ota_id = _resolve_ota_id(slot, name)
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if ota_id is None:
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# Under --quiet, match pre-click: silent exit 2 (exception was swallowed).
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if ctx.obj.get('quiet'):
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sys.exit(2)
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log.die('Partition to switch to should be defined using --slot OR --name')
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target = OtatoolTarget(**_target_kwargs_from_ctx(ctx.obj, spi_flash_sec_size))
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_run_operation('switch_ota_partition', target, quiet=ctx.obj.get('quiet'), ota_id=ota_id)
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@cli.command('read_ota_partition', help='read contents of an ota partition')
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@_slot_or_name_options
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@click.option('--output', help='file to write the contents of the ota partition to', required=True)
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@click.pass_context
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def read_ota_partition_cmd(ctx, slot, name, output):
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ota_id = _resolve_ota_id(slot, name)
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if ota_id is None:
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if ctx.obj.get('quiet'):
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sys.exit(2)
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log.die('OTA partition should be defined using --slot OR --name')
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target = OtatoolTarget(**_target_kwargs_from_ctx(ctx.obj))
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_run_operation('read_ota_partition', target, quiet=ctx.obj.get('quiet'), ota_id=ota_id, output=output)
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@cli.command('write_ota_partition', help='write contents to an ota partition')
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@_slot_or_name_options
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@click.option('--input', 'input_file', help='file whose contents to write to the ota partition')
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@click.pass_context
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def write_ota_partition_cmd(ctx, slot, name, input_file):
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ota_id = _resolve_ota_id(slot, name)
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if ota_id is None:
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if ctx.obj.get('quiet'):
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sys.exit(2)
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log.die('OTA partition should be defined using --slot OR --name')
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target = OtatoolTarget(**_target_kwargs_from_ctx(ctx.obj))
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_run_operation('write_ota_partition', target, quiet=ctx.obj.get('quiet'), ota_id=ota_id, input_file=input_file)
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@cli.command('erase_ota_partition', help='erase contents of an ota partition')
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@_slot_or_name_options
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@click.pass_context
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def erase_ota_partition_cmd(ctx, slot, name):
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ota_id = _resolve_ota_id(slot, name)
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if ota_id is None:
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if ctx.obj.get('quiet'):
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sys.exit(2)
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log.die('OTA partition should be defined using --slot OR --name')
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target = OtatoolTarget(**_target_kwargs_from_ctx(ctx.obj))
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_run_operation('erase_ota_partition', target, quiet=ctx.obj.get('quiet'), ota_id=ota_id)
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def main():
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cli()
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if __name__ == '__main__':
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from esp_pylib.excepthook import install_exception_reporting
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install_exception_reporting()
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main()
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