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233 lines
7.8 KiB
233 lines
7.8 KiB
#!/usr/bin/env python |
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# Copyright (C) 2017 The Android Open Source Project |
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# |
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# Licensed under the Apache License, Version 2.0 (the "License"); |
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# you may not use this file except in compliance with the License. |
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# You may obtain a copy of the License at |
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# |
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# http://www.apache.org/licenses/LICENSE-2.0 |
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# |
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# Unless required by applicable law or agreed to in writing, software |
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# distributed under the License is distributed on an "AS IS" BASIS, |
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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# See the License for the specific language governing permissions and |
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# limitations under the License. |
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""" |
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Validate a given (signed) target_files.zip. |
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It performs checks to ensure the integrity of the input zip. |
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- It verifies the file consistency between the ones in IMAGES/system.img (read |
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via IMAGES/system.map) and the ones under unpacked folder of SYSTEM/. The |
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same check also applies to the vendor image if present. |
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""" |
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import common |
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import logging |
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import os.path |
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import re |
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import sparse_img |
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import sys |
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def _GetImage(which, tmpdir): |
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assert which in ('system', 'vendor') |
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path = os.path.join(tmpdir, 'IMAGES', which + '.img') |
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mappath = os.path.join(tmpdir, 'IMAGES', which + '.map') |
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# Map file must exist (allowed to be empty). |
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assert os.path.exists(path) and os.path.exists(mappath) |
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clobbered_blocks = '0' |
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return sparse_img.SparseImage(path, mappath, clobbered_blocks) |
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def _ReadFile(file_name, unpacked_name, round_up=False): |
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"""Constructs and returns a File object. Rounds up its size if needed.""" |
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def RoundUpTo4K(value): |
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rounded_up = value + 4095 |
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return rounded_up - (rounded_up % 4096) |
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assert os.path.exists(unpacked_name) |
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with open(unpacked_name, 'r') as f: |
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file_data = f.read() |
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file_size = len(file_data) |
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if round_up: |
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file_size_rounded_up = RoundUpTo4K(file_size) |
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file_data += '\0' * (file_size_rounded_up - file_size) |
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return common.File(file_name, file_data) |
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def ValidateFileAgainstSha1(input_tmp, file_name, file_path, expected_sha1): |
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"""Check if the file has the expected SHA-1.""" |
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logging.info('Validating the SHA-1 of {}'.format(file_name)) |
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unpacked_name = os.path.join(input_tmp, file_path) |
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assert os.path.exists(unpacked_name) |
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actual_sha1 = _ReadFile(file_name, unpacked_name, False).sha1 |
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assert actual_sha1 == expected_sha1, \ |
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'SHA-1 mismatches for {}. actual {}, expected {}'.format( |
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file_name, actual_sha1, expected_sha1) |
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def ValidateFileConsistency(input_zip, input_tmp): |
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"""Compare the files from image files and unpacked folders.""" |
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def CheckAllFiles(which): |
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logging.info('Checking %s image.', which) |
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image = _GetImage(which, input_tmp) |
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prefix = '/' + which |
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for entry in image.file_map: |
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if not entry.startswith(prefix): |
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continue |
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# Read the blocks that the file resides. Note that it will contain the |
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# bytes past the file length, which is expected to be padded with '\0's. |
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ranges = image.file_map[entry] |
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blocks_sha1 = image.RangeSha1(ranges) |
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# The filename under unpacked directory, such as SYSTEM/bin/sh. |
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unpacked_name = os.path.join( |
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input_tmp, which.upper(), entry[(len(prefix) + 1):]) |
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unpacked_file = _ReadFile(entry, unpacked_name, True) |
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file_size = unpacked_file.size |
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# block.map may contain less blocks, because mke2fs may skip allocating |
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# blocks if they contain all zeros. We can't reconstruct such a file from |
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# its block list. (Bug: 65213616) |
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if file_size > ranges.size() * 4096: |
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logging.warning( |
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'Skipping %s that has less blocks: file size %d-byte,' |
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' ranges %s (%d-byte)', entry, file_size, ranges, |
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ranges.size() * 4096) |
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continue |
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file_sha1 = unpacked_file.sha1 |
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assert blocks_sha1 == file_sha1, \ |
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'file: %s, range: %s, blocks_sha1: %s, file_sha1: %s' % ( |
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entry, ranges, blocks_sha1, file_sha1) |
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logging.info('Validating file consistency.') |
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# Verify IMAGES/system.img. |
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CheckAllFiles('system') |
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# Verify IMAGES/vendor.img if applicable. |
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if 'VENDOR/' in input_zip.namelist(): |
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CheckAllFiles('vendor') |
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# Not checking IMAGES/system_other.img since it doesn't have the map file. |
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def ValidateInstallRecoveryScript(input_tmp, info_dict): |
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"""Validate the SHA-1 embedded in install-recovery.sh. |
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install-recovery.sh is written in common.py and has the following format: |
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1. full recovery: |
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... |
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if ! applypatch -c type:device:size:SHA-1; then |
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applypatch /system/etc/recovery.img type:device sha1 size && ... |
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... |
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2. recovery from boot: |
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... |
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applypatch [-b bonus_args] boot_info recovery_info recovery_sha1 \ |
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recovery_size patch_info && ... |
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... |
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For full recovery, we want to calculate the SHA-1 of /system/etc/recovery.img |
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and compare it against the one embedded in the script. While for recovery |
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from boot, we want to check the SHA-1 for both recovery.img and boot.img |
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under IMAGES/. |
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""" |
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script_path = 'SYSTEM/bin/install-recovery.sh' |
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if not os.path.exists(os.path.join(input_tmp, script_path)): |
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logging.info('{} does not exist in input_tmp'.format(script_path)) |
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return |
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logging.info('Checking {}'.format(script_path)) |
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with open(os.path.join(input_tmp, script_path), 'r') as script: |
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lines = script.read().strip().split('\n') |
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assert len(lines) >= 6 |
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check_cmd = re.search(r'if ! applypatch -c \w+:.+:\w+:(\w+);', |
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lines[1].strip()) |
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expected_recovery_check_sha1 = check_cmd.group(1) |
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patch_cmd = re.search(r'(applypatch.+)&&', lines[2].strip()) |
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applypatch_argv = patch_cmd.group(1).strip().split() |
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full_recovery_image = info_dict.get("full_recovery_image") == "true" |
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if full_recovery_image: |
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assert len(applypatch_argv) == 5 |
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# Check we have the same expected SHA-1 of recovery.img in both check mode |
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# and patch mode. |
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expected_recovery_sha1 = applypatch_argv[3].strip() |
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assert expected_recovery_check_sha1 == expected_recovery_sha1 |
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ValidateFileAgainstSha1(input_tmp, 'recovery.img', |
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'SYSTEM/etc/recovery.img', expected_recovery_sha1) |
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else: |
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# We're patching boot.img to get recovery.img where bonus_args is optional |
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if applypatch_argv[1] == "-b": |
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assert len(applypatch_argv) == 8 |
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boot_info_index = 3 |
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else: |
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assert len(applypatch_argv) == 6 |
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boot_info_index = 1 |
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# boot_info: boot_type:boot_device:boot_size:boot_sha1 |
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boot_info = applypatch_argv[boot_info_index].strip().split(':') |
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assert len(boot_info) == 4 |
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ValidateFileAgainstSha1(input_tmp, file_name='boot.img', |
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file_path='IMAGES/boot.img', expected_sha1=boot_info[3]) |
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recovery_sha1_index = boot_info_index + 2 |
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expected_recovery_sha1 = applypatch_argv[recovery_sha1_index] |
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assert expected_recovery_check_sha1 == expected_recovery_sha1 |
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ValidateFileAgainstSha1(input_tmp, file_name='recovery.img', |
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file_path='IMAGES/recovery.img', |
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expected_sha1=expected_recovery_sha1) |
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logging.info('Done checking {}'.format(script_path)) |
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def main(argv): |
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def option_handler(): |
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return True |
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args = common.ParseOptions( |
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argv, __doc__, extra_opts="", |
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extra_long_opts=[], |
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extra_option_handler=option_handler) |
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if len(args) != 1: |
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common.Usage(__doc__) |
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sys.exit(1) |
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logging_format = '%(asctime)s - %(filename)s - %(levelname)-8s: %(message)s' |
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date_format = '%Y/%m/%d %H:%M:%S' |
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logging.basicConfig(level=logging.INFO, format=logging_format, |
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datefmt=date_format) |
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logging.info("Unzipping the input target_files.zip: %s", args[0]) |
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input_tmp, input_zip = common.UnzipTemp(args[0]) |
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ValidateFileConsistency(input_zip, input_tmp) |
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info_dict = common.LoadInfoDict(input_tmp) |
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ValidateInstallRecoveryScript(input_tmp, info_dict) |
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# TODO: Check if the OTA keys have been properly updated (the ones on /system, |
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# in recovery image). |
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logging.info("Done.") |
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if __name__ == '__main__': |
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try: |
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main(sys.argv[1:]) |
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finally: |
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common.Cleanup()
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