mirror of
https://github.com/BigfootACA/arch-image-builder.git
synced 2024-11-27 05:33:29 +08:00
builder: disk: add initial Android Boot Image supports
Signed-off-by: BigfootACA <bigfoot@classfun.cn>
This commit is contained in:
parent
4ebe85afb6
commit
4ad6592d3e
123
builder/disk/abootimg.py
Normal file
123
builder/disk/abootimg.py
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@ -0,0 +1,123 @@
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import os
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import io
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import gzip
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from logging import getLogger
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from tempfile import mkstemp
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from builder.disk.content import ImageContentBuilder
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from builder.lib.config import ArchBuilderConfigError
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from external.mkbootimg import main as mkbootimg
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log = getLogger(__name__)
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class AndroidBootBuilder(ImageContentBuilder):
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temps: list[str] = []
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def to_list(self, val: str | list[str] | None) -> list[str]:
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if type(val) is str: return [val]
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if type(val) is None: return []
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if type(val) is list[str]: return val
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raise TypeError("bad type for list")
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def get_input_file(self, name: str):
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ctx = self.builder.ctx
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if name.startswith("/"): return name
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in_root = os.path.join(ctx.get_rootfs(), name)
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in_out = os.path.join(ctx.get_output(), name)
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return in_root if os.path.exists(in_root) else in_out
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def parse_config(self, cfg: dict) -> list:
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ret: list[str] = []
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def add_option(key: str, file: bool = False):
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if key not in cfg: return
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val = str(cfg[key])
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key = "--" + key.replace("-", "_")
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if file: val = self.get_input_file(val)
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ret.extend([key, val])
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file_in = [
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"kernel", "ramdisk", "second", "dtb", "recovery-dtbo",
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"recovery-acpio", "vendor-ramdisk", "vendor-bootconfig",
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]
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fields = [
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"header-version", "cmdline", "vendor-cmdline", "base",
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"kernel-offset", "ramdisk-offset", "second-offset",
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"dtb-offset", "os-version", "os-patch-level", "tags-offset",
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"board", "pagesize", "header-version",
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]
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for arg in fields: add_option(arg)
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for arg in file_in: add_option(arg, True)
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return ret
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def resolve_kernel(self, files: list[str] | str) -> list[str]:
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ret: list[str] = []
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if files is None: return ret
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ctx = self.builder.ctx
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rootfs = ctx.get_rootfs()
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path: str = ctx.get("kernel.path", "")
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if path.startswith("/"): path = path[1:]
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for file in self.to_list(files):
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if file.startswith("/"): file = file[1:]
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ret.append(os.path.join(rootfs, path, file))
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return ret
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def merge_fp(self, files: list[str], fp: io.FileIO):
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for f in files:
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inp = self.get_input_file(f)
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with open(inp, "rb") as fi:
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fp.write(fi.read())
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fp.flush()
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def merge_files(self, files: list[str]):
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fd, file = mkstemp()
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with os.fdopen(fd, "wb") as fo:
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self.merge_fp(files, fo)
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return file
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def load_initramfs(self, cfg: dict):
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ctx = self.builder.ctx
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initramfs = self.resolve_kernel(ctx.get("kernel.initramfs"))
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if "ramdisk" in cfg: initramfs = self.to_list(cfg["ramdisk"])
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if len(initramfs) <= 0: return
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file = self.merge_files(initramfs)
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self.temps.append(file)
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cfg["ramdisk"] = file
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def load_kernel(self, cfg: dict):
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ctx = self.builder.ctx
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if "image-gzip-dtb" not in cfg or not cfg["image-gzip-dtb"]: return
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kernel = self.resolve_kernel(ctx.get("kernel.kernel"))
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dtb = self.resolve_kernel(ctx.get("kernel.devicetree"))
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if "kernel" in cfg: kernel = self.to_list(cfg["kernel"])
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if "dtb" in cfg: dtb = self.to_list(cfg["dtb"])
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if len(kernel) != 1: raise ArchBuilderConfigError("bad number of kernel")
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if len(dtb) < 1: raise ArchBuilderConfigError("no device tree found")
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fd, file = mkstemp()
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log.debug("creating Image.gz-dtb...")
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with os.fdopen(fd, "wb") as fo:
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with open(kernel[0], "rb") as fi:
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fo.write(gzip.compress(fi.read()))
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for d in dtb:
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with open(d, "rb") as fi:
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fo.write(fi.read())
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size = fo.tell()
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log.debug("size: %u bytes", size)
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cfg.pop("dtb", None)
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cfg["kernel"] = file
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self.temps.append(file)
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def build(self):
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try:
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self.temps = []
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cfg = self.builder.config.copy()
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self.load_initramfs(cfg)
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self.load_kernel(cfg)
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args = self.parse_config(cfg)
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match self.builder.type:
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case "aboot": key = "--output"
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case "avndboot": key = "--vendor_boot"
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case _: raise ArchBuilderConfigError("bad type for abootimg")
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args.extend([key, self.builder.device])
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log.debug("run mkbootimg with %s", " ".join(args))
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mkbootimg(args)
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finally:
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for temp in self.temps:
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os.remove(temp)
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@ -1,9 +1,12 @@
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from builder.disk.content import ImageContentBuilder
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from builder.disk.layout.build import DiskLayoutBuilder
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from builder.disk.filesystem.build import FileSystemBuilder
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from builder.disk.abootimg import AndroidBootBuilder
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types: list[tuple[str, type[ImageContentBuilder]]] = [
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("disk", DiskLayoutBuilder),
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("filesystem", FileSystemBuilder),
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("aboot", AndroidBootBuilder),
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("avndboot", AndroidBootBuilder),
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]
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603
external/mkbootimg.py
vendored
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603
external/mkbootimg.py
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#!/usr/bin/env python3
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#
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# Copyright 2015, 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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"""Creates the boot image."""
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from argparse import (ArgumentParser, ArgumentTypeError,
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FileType, RawDescriptionHelpFormatter)
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from hashlib import sha1
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from os import fstat
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from struct import pack
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import array
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import collections
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import re
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# Constant and structure definition is in
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# system/tools/mkbootimg/include/bootimg/bootimg.h
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BOOT_MAGIC = 'ANDROID!'
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BOOT_MAGIC_SIZE = 8
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BOOT_NAME_SIZE = 16
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BOOT_ARGS_SIZE = 512
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BOOT_EXTRA_ARGS_SIZE = 1024
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BOOT_IMAGE_HEADER_V1_SIZE = 1648
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BOOT_IMAGE_HEADER_V2_SIZE = 1660
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BOOT_IMAGE_HEADER_V3_SIZE = 1580
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BOOT_IMAGE_HEADER_V3_PAGESIZE = 4096
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BOOT_IMAGE_HEADER_V4_SIZE = 1584
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BOOT_IMAGE_V4_SIGNATURE_SIZE = 4096
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VENDOR_BOOT_MAGIC = 'VNDRBOOT'
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VENDOR_BOOT_MAGIC_SIZE = 8
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VENDOR_BOOT_NAME_SIZE = BOOT_NAME_SIZE
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VENDOR_BOOT_ARGS_SIZE = 2048
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VENDOR_BOOT_IMAGE_HEADER_V3_SIZE = 2112
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VENDOR_BOOT_IMAGE_HEADER_V4_SIZE = 2128
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VENDOR_RAMDISK_TYPE_NONE = 0
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VENDOR_RAMDISK_TYPE_PLATFORM = 1
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VENDOR_RAMDISK_TYPE_RECOVERY = 2
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VENDOR_RAMDISK_TYPE_DLKM = 3
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VENDOR_RAMDISK_NAME_SIZE = 32
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VENDOR_RAMDISK_TABLE_ENTRY_BOARD_ID_SIZE = 16
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VENDOR_RAMDISK_TABLE_ENTRY_V4_SIZE = 108
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# Names with special meaning, mustn't be specified in --ramdisk_name.
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VENDOR_RAMDISK_NAME_BLOCKLIST = {b'default'}
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PARSER_ARGUMENT_VENDOR_RAMDISK_FRAGMENT = '--vendor_ramdisk_fragment'
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def filesize(f):
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if f is None:
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return 0
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try:
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return fstat(f.fileno()).st_size
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except OSError:
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return 0
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def update_sha(sha, f):
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if f:
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sha.update(f.read())
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f.seek(0)
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sha.update(pack('I', filesize(f)))
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else:
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sha.update(pack('I', 0))
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def pad_file(f, padding):
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pad = (padding - (f.tell() & (padding - 1))) & (padding - 1)
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f.write(pack(str(pad) + 'x'))
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def get_number_of_pages(image_size, page_size):
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"""calculates the number of pages required for the image"""
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return (image_size + page_size - 1) // page_size
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def get_recovery_dtbo_offset(args):
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"""calculates the offset of recovery_dtbo image in the boot image"""
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num_header_pages = 1 # header occupies a page
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num_kernel_pages = get_number_of_pages(filesize(args.kernel), args.pagesize)
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num_ramdisk_pages = get_number_of_pages(filesize(args.ramdisk),
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args.pagesize)
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num_second_pages = get_number_of_pages(filesize(args.second), args.pagesize)
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dtbo_offset = args.pagesize * (num_header_pages + num_kernel_pages +
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num_ramdisk_pages + num_second_pages)
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return dtbo_offset
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def write_header_v3_and_above(args):
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if args.header_version > 3:
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boot_header_size = BOOT_IMAGE_HEADER_V4_SIZE
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else:
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boot_header_size = BOOT_IMAGE_HEADER_V3_SIZE
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args.output.write(pack(f'{BOOT_MAGIC_SIZE}s', BOOT_MAGIC.encode()))
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# kernel size in bytes
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args.output.write(pack('I', filesize(args.kernel)))
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# ramdisk size in bytes
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args.output.write(pack('I', filesize(args.ramdisk)))
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# os version and patch level
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args.output.write(pack('I', (args.os_version << 11) | args.os_patch_level))
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args.output.write(pack('I', boot_header_size))
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# reserved
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args.output.write(pack('4I', 0, 0, 0, 0))
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# version of boot image header
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args.output.write(pack('I', args.header_version))
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args.output.write(pack(f'{BOOT_ARGS_SIZE + BOOT_EXTRA_ARGS_SIZE}s',
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args.cmdline))
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if args.header_version >= 4:
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# The signature used to verify boot image v4.
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boot_signature_size = 0
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args.output.write(pack('I', boot_signature_size))
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pad_file(args.output, BOOT_IMAGE_HEADER_V3_PAGESIZE)
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def write_vendor_boot_header(args):
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if args.header_version > 3:
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vendor_ramdisk_size = args.vendor_ramdisk_total_size
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vendor_boot_header_size = VENDOR_BOOT_IMAGE_HEADER_V4_SIZE
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else:
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vendor_ramdisk_size = filesize(args.vendor_ramdisk)
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vendor_boot_header_size = VENDOR_BOOT_IMAGE_HEADER_V3_SIZE
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args.vendor_boot.write(pack(f'{VENDOR_BOOT_MAGIC_SIZE}s',
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VENDOR_BOOT_MAGIC.encode()))
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# version of boot image header
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args.vendor_boot.write(pack('I', args.header_version))
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# flash page size
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args.vendor_boot.write(pack('I', args.pagesize))
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# kernel physical load address
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args.vendor_boot.write(pack('I', args.base + args.kernel_offset))
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# ramdisk physical load address
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args.vendor_boot.write(pack('I', args.base + args.ramdisk_offset))
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# ramdisk size in bytes
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args.vendor_boot.write(pack('I', vendor_ramdisk_size))
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args.vendor_boot.write(pack(f'{VENDOR_BOOT_ARGS_SIZE}s',
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args.vendor_cmdline))
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# kernel tags physical load address
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args.vendor_boot.write(pack('I', args.base + args.tags_offset))
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# asciiz product name
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args.vendor_boot.write(pack(f'{VENDOR_BOOT_NAME_SIZE}s', args.board))
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# header size in bytes
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args.vendor_boot.write(pack('I', vendor_boot_header_size))
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# dtb size in bytes
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args.vendor_boot.write(pack('I', filesize(args.dtb)))
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# dtb physical load address
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args.vendor_boot.write(pack('Q', args.base + args.dtb_offset))
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if args.header_version > 3:
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vendor_ramdisk_table_size = (args.vendor_ramdisk_table_entry_num *
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VENDOR_RAMDISK_TABLE_ENTRY_V4_SIZE)
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# vendor ramdisk table size in bytes
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args.vendor_boot.write(pack('I', vendor_ramdisk_table_size))
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# number of vendor ramdisk table entries
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args.vendor_boot.write(pack('I', args.vendor_ramdisk_table_entry_num))
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# vendor ramdisk table entry size in bytes
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args.vendor_boot.write(pack('I', VENDOR_RAMDISK_TABLE_ENTRY_V4_SIZE))
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# bootconfig section size in bytes
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args.vendor_boot.write(pack('I', filesize(args.vendor_bootconfig)))
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pad_file(args.vendor_boot, args.pagesize)
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def write_header(args):
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if args.header_version > 4:
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raise ValueError(
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f'Boot header version {args.header_version} not supported')
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if args.header_version in {3, 4}:
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return write_header_v3_and_above(args)
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ramdisk_load_address = ((args.base + args.ramdisk_offset)
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if filesize(args.ramdisk) > 0 else 0)
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second_load_address = ((args.base + args.second_offset)
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if filesize(args.second) > 0 else 0)
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args.output.write(pack(f'{BOOT_MAGIC_SIZE}s', BOOT_MAGIC.encode()))
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# kernel size in bytes
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args.output.write(pack('I', filesize(args.kernel)))
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# kernel physical load address
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args.output.write(pack('I', args.base + args.kernel_offset))
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# ramdisk size in bytes
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args.output.write(pack('I', filesize(args.ramdisk)))
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# ramdisk physical load address
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args.output.write(pack('I', ramdisk_load_address))
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# second bootloader size in bytes
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args.output.write(pack('I', filesize(args.second)))
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# second bootloader physical load address
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args.output.write(pack('I', second_load_address))
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# kernel tags physical load address
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args.output.write(pack('I', args.base + args.tags_offset))
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# flash page size
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args.output.write(pack('I', args.pagesize))
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# version of boot image header
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args.output.write(pack('I', args.header_version))
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# os version and patch level
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args.output.write(pack('I', (args.os_version << 11) | args.os_patch_level))
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# asciiz product name
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args.output.write(pack(f'{BOOT_NAME_SIZE}s', args.board))
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args.output.write(pack(f'{BOOT_ARGS_SIZE}s', args.cmdline))
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sha = sha1()
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update_sha(sha, args.kernel)
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update_sha(sha, args.ramdisk)
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update_sha(sha, args.second)
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if args.header_version > 0:
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update_sha(sha, args.recovery_dtbo)
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if args.header_version > 1:
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update_sha(sha, args.dtb)
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img_id = pack('32s', sha.digest())
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args.output.write(img_id)
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args.output.write(pack(f'{BOOT_EXTRA_ARGS_SIZE}s', args.extra_cmdline))
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if args.header_version > 0:
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if args.recovery_dtbo:
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# recovery dtbo size in bytes
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args.output.write(pack('I', filesize(args.recovery_dtbo)))
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# recovert dtbo offset in the boot image
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args.output.write(pack('Q', get_recovery_dtbo_offset(args)))
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else:
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# Set to zero if no recovery dtbo
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args.output.write(pack('I', 0))
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args.output.write(pack('Q', 0))
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# Populate boot image header size for header versions 1 and 2.
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if args.header_version == 1:
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args.output.write(pack('I', BOOT_IMAGE_HEADER_V1_SIZE))
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elif args.header_version == 2:
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args.output.write(pack('I', BOOT_IMAGE_HEADER_V2_SIZE))
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if args.header_version > 1:
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if filesize(args.dtb) == 0:
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raise ValueError('DTB image must not be empty.')
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# dtb size in bytes
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args.output.write(pack('I', filesize(args.dtb)))
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# dtb physical load address
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args.output.write(pack('Q', args.base + args.dtb_offset))
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pad_file(args.output, args.pagesize)
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return img_id
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class AsciizBytes:
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"""Parses a string and encodes it as an asciiz bytes object.
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>>> AsciizBytes(bufsize=4)('foo')
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b'foo\\x00'
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>>> AsciizBytes(bufsize=4)('foob')
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Traceback (most recent call last):
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...
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argparse.ArgumentTypeError: Encoded asciiz length exceeded: max 4, got 5
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"""
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def __init__(self, bufsize):
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self.bufsize = bufsize
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def __call__(self, arg):
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arg_bytes = arg.encode() + b'\x00'
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if len(arg_bytes) > self.bufsize:
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raise ArgumentTypeError(
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'Encoded asciiz length exceeded: '
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f'max {self.bufsize}, got {len(arg_bytes)}')
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return arg_bytes
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||||
|
||||
|
||||
class VendorRamdiskTableBuilder:
|
||||
"""Vendor ramdisk table builder.
|
||||
|
||||
Attributes:
|
||||
entries: A list of VendorRamdiskTableEntry namedtuple.
|
||||
ramdisk_total_size: Total size in bytes of all ramdisks in the table.
|
||||
"""
|
||||
|
||||
VendorRamdiskTableEntry = collections.namedtuple( # pylint: disable=invalid-name
|
||||
'VendorRamdiskTableEntry',
|
||||
['ramdisk_path', 'ramdisk_size', 'ramdisk_offset', 'ramdisk_type',
|
||||
'ramdisk_name', 'board_id'])
|
||||
|
||||
def __init__(self):
|
||||
self.entries = []
|
||||
self.ramdisk_total_size = 0
|
||||
self.ramdisk_names = set()
|
||||
|
||||
def add_entry(self, ramdisk_path, ramdisk_type, ramdisk_name, board_id):
|
||||
# Strip any trailing null for simple comparison.
|
||||
stripped_ramdisk_name = ramdisk_name.rstrip(b'\x00')
|
||||
if stripped_ramdisk_name in VENDOR_RAMDISK_NAME_BLOCKLIST:
|
||||
raise ValueError(
|
||||
f'Banned vendor ramdisk name: {stripped_ramdisk_name}')
|
||||
if stripped_ramdisk_name in self.ramdisk_names:
|
||||
raise ValueError(
|
||||
f'Duplicated vendor ramdisk name: {stripped_ramdisk_name}')
|
||||
self.ramdisk_names.add(stripped_ramdisk_name)
|
||||
|
||||
if board_id is None:
|
||||
board_id = array.array(
|
||||
'I', [0] * VENDOR_RAMDISK_TABLE_ENTRY_BOARD_ID_SIZE)
|
||||
else:
|
||||
board_id = array.array('I', board_id)
|
||||
if len(board_id) != VENDOR_RAMDISK_TABLE_ENTRY_BOARD_ID_SIZE:
|
||||
raise ValueError('board_id size must be '
|
||||
f'{VENDOR_RAMDISK_TABLE_ENTRY_BOARD_ID_SIZE}')
|
||||
|
||||
with open(ramdisk_path, 'rb') as f:
|
||||
ramdisk_size = filesize(f)
|
||||
self.entries.append(self.VendorRamdiskTableEntry(
|
||||
ramdisk_path, ramdisk_size, self.ramdisk_total_size, ramdisk_type,
|
||||
ramdisk_name, board_id))
|
||||
self.ramdisk_total_size += ramdisk_size
|
||||
|
||||
def write_ramdisks_padded(self, fout, alignment):
|
||||
for entry in self.entries:
|
||||
with open(entry.ramdisk_path, 'rb') as f:
|
||||
fout.write(f.read())
|
||||
pad_file(fout, alignment)
|
||||
|
||||
def write_entries_padded(self, fout, alignment):
|
||||
for entry in self.entries:
|
||||
fout.write(pack('I', entry.ramdisk_size))
|
||||
fout.write(pack('I', entry.ramdisk_offset))
|
||||
fout.write(pack('I', entry.ramdisk_type))
|
||||
fout.write(pack(f'{VENDOR_RAMDISK_NAME_SIZE}s',
|
||||
entry.ramdisk_name))
|
||||
fout.write(entry.board_id)
|
||||
pad_file(fout, alignment)
|
||||
|
||||
|
||||
def write_padded_file(f_out, f_in, padding):
|
||||
if f_in is None:
|
||||
return
|
||||
f_out.write(f_in.read())
|
||||
pad_file(f_out, padding)
|
||||
|
||||
|
||||
def parse_int(x):
|
||||
return int(x, 0)
|
||||
|
||||
|
||||
def parse_os_version(x):
|
||||
match = re.search(r'^(\d{1,3})(?:\.(\d{1,3})(?:\.(\d{1,3}))?)?', x)
|
||||
if match:
|
||||
a = int(match.group(1))
|
||||
b = c = 0
|
||||
if match.lastindex >= 2:
|
||||
b = int(match.group(2))
|
||||
if match.lastindex == 3:
|
||||
c = int(match.group(3))
|
||||
# 7 bits allocated for each field
|
||||
assert a < 128
|
||||
assert b < 128
|
||||
assert c < 128
|
||||
return (a << 14) | (b << 7) | c
|
||||
return 0
|
||||
|
||||
|
||||
def parse_os_patch_level(x):
|
||||
match = re.search(r'^(\d{4})-(\d{2})(?:-(\d{2}))?', x)
|
||||
if match:
|
||||
y = int(match.group(1)) - 2000
|
||||
m = int(match.group(2))
|
||||
# 7 bits allocated for the year, 4 bits for the month
|
||||
assert 0 <= y < 128
|
||||
assert 0 < m <= 12
|
||||
return (y << 4) | m
|
||||
return 0
|
||||
|
||||
|
||||
def parse_vendor_ramdisk_type(x):
|
||||
type_dict = {
|
||||
'none': VENDOR_RAMDISK_TYPE_NONE,
|
||||
'platform': VENDOR_RAMDISK_TYPE_PLATFORM,
|
||||
'recovery': VENDOR_RAMDISK_TYPE_RECOVERY,
|
||||
'dlkm': VENDOR_RAMDISK_TYPE_DLKM,
|
||||
}
|
||||
if x.lower() in type_dict:
|
||||
return type_dict[x.lower()]
|
||||
return parse_int(x)
|
||||
|
||||
|
||||
def get_vendor_boot_v4_usage():
|
||||
return """vendor boot version 4 arguments:
|
||||
--ramdisk_type {none,platform,recovery,dlkm}
|
||||
specify the type of the ramdisk
|
||||
--ramdisk_name NAME
|
||||
specify the name of the ramdisk
|
||||
--board_id{0..15} NUMBER
|
||||
specify the value of the board_id vector, defaults to 0
|
||||
--vendor_ramdisk_fragment VENDOR_RAMDISK_FILE
|
||||
path to the vendor ramdisk file
|
||||
|
||||
These options can be specified multiple times, where each vendor ramdisk
|
||||
option group ends with a --vendor_ramdisk_fragment option.
|
||||
Each option group appends an additional ramdisk to the vendor boot image.
|
||||
"""
|
||||
|
||||
|
||||
def parse_vendor_ramdisk_args(args, args_list):
|
||||
"""Parses vendor ramdisk specific arguments.
|
||||
|
||||
Args:
|
||||
args: An argparse.Namespace object. Parsed results are stored into this
|
||||
object.
|
||||
args_list: A list of argument strings to be parsed.
|
||||
|
||||
Returns:
|
||||
A list argument strings that are not parsed by this method.
|
||||
"""
|
||||
parser = ArgumentParser(add_help=False)
|
||||
parser.add_argument('--ramdisk_type', type=parse_vendor_ramdisk_type,
|
||||
default=VENDOR_RAMDISK_TYPE_NONE)
|
||||
parser.add_argument('--ramdisk_name',
|
||||
type=AsciizBytes(bufsize=VENDOR_RAMDISK_NAME_SIZE),
|
||||
required=True)
|
||||
for i in range(VENDOR_RAMDISK_TABLE_ENTRY_BOARD_ID_SIZE):
|
||||
parser.add_argument(f'--board_id{i}', type=parse_int, default=0)
|
||||
parser.add_argument(PARSER_ARGUMENT_VENDOR_RAMDISK_FRAGMENT, required=True)
|
||||
|
||||
unknown_args = []
|
||||
|
||||
vendor_ramdisk_table_builder = VendorRamdiskTableBuilder()
|
||||
if args.vendor_ramdisk is not None:
|
||||
vendor_ramdisk_table_builder.add_entry(
|
||||
args.vendor_ramdisk.name, VENDOR_RAMDISK_TYPE_PLATFORM, b'', None)
|
||||
|
||||
while PARSER_ARGUMENT_VENDOR_RAMDISK_FRAGMENT in args_list:
|
||||
idx = args_list.index(PARSER_ARGUMENT_VENDOR_RAMDISK_FRAGMENT) + 2
|
||||
vendor_ramdisk_args = args_list[:idx]
|
||||
args_list = args_list[idx:]
|
||||
|
||||
ramdisk_args, extra_args = parser.parse_known_args(vendor_ramdisk_args)
|
||||
ramdisk_args_dict = vars(ramdisk_args)
|
||||
unknown_args.extend(extra_args)
|
||||
|
||||
ramdisk_path = ramdisk_args.vendor_ramdisk_fragment
|
||||
ramdisk_type = ramdisk_args.ramdisk_type
|
||||
ramdisk_name = ramdisk_args.ramdisk_name
|
||||
board_id = [ramdisk_args_dict[f'board_id{i}']
|
||||
for i in range(VENDOR_RAMDISK_TABLE_ENTRY_BOARD_ID_SIZE)]
|
||||
vendor_ramdisk_table_builder.add_entry(ramdisk_path, ramdisk_type,
|
||||
ramdisk_name, board_id)
|
||||
|
||||
if len(args_list) > 0:
|
||||
unknown_args.extend(args_list)
|
||||
|
||||
args.vendor_ramdisk_total_size = (vendor_ramdisk_table_builder
|
||||
.ramdisk_total_size)
|
||||
args.vendor_ramdisk_table_entry_num = len(vendor_ramdisk_table_builder
|
||||
.entries)
|
||||
args.vendor_ramdisk_table_builder = vendor_ramdisk_table_builder
|
||||
return unknown_args
|
||||
|
||||
|
||||
def parse_cmdline(sys_argv=None):
|
||||
version_parser = ArgumentParser(add_help=False)
|
||||
version_parser.add_argument('--header_version', type=parse_int, default=0)
|
||||
if version_parser.parse_known_args()[0].header_version < 3:
|
||||
# For boot header v0 to v2, the kernel commandline field is split into
|
||||
# two fields, cmdline and extra_cmdline. Both fields are asciiz strings,
|
||||
# so we minus one here to ensure the encoded string plus the
|
||||
# null-terminator can fit in the buffer size.
|
||||
cmdline_size = BOOT_ARGS_SIZE + BOOT_EXTRA_ARGS_SIZE - 1
|
||||
else:
|
||||
cmdline_size = BOOT_ARGS_SIZE + BOOT_EXTRA_ARGS_SIZE
|
||||
|
||||
parser = ArgumentParser(formatter_class=RawDescriptionHelpFormatter,
|
||||
epilog=get_vendor_boot_v4_usage())
|
||||
parser.add_argument('--kernel', type=FileType('rb'),
|
||||
help='path to the kernel')
|
||||
parser.add_argument('--ramdisk', type=FileType('rb'),
|
||||
help='path to the ramdisk')
|
||||
parser.add_argument('--second', type=FileType('rb'),
|
||||
help='path to the second bootloader')
|
||||
parser.add_argument('--dtb', type=FileType('rb'), help='path to the dtb')
|
||||
dtbo_group = parser.add_mutually_exclusive_group()
|
||||
dtbo_group.add_argument('--recovery_dtbo', type=FileType('rb'),
|
||||
help='path to the recovery DTBO')
|
||||
dtbo_group.add_argument('--recovery_acpio', type=FileType('rb'),
|
||||
metavar='RECOVERY_ACPIO', dest='recovery_dtbo',
|
||||
help='path to the recovery ACPIO')
|
||||
parser.add_argument('--cmdline', type=AsciizBytes(bufsize=cmdline_size),
|
||||
default='', help='kernel command line arguments')
|
||||
parser.add_argument('--vendor_cmdline',
|
||||
type=AsciizBytes(bufsize=VENDOR_BOOT_ARGS_SIZE),
|
||||
default='',
|
||||
help='vendor boot kernel command line arguments')
|
||||
parser.add_argument('--base', type=parse_int, default=0x10000000,
|
||||
help='base address')
|
||||
parser.add_argument('--kernel_offset', type=parse_int, default=0x00008000,
|
||||
help='kernel offset')
|
||||
parser.add_argument('--ramdisk_offset', type=parse_int, default=0x01000000,
|
||||
help='ramdisk offset')
|
||||
parser.add_argument('--second_offset', type=parse_int, default=0x00f00000,
|
||||
help='second bootloader offset')
|
||||
parser.add_argument('--dtb_offset', type=parse_int, default=0x01f00000,
|
||||
help='dtb offset')
|
||||
|
||||
parser.add_argument('--os_version', type=parse_os_version, default=0,
|
||||
help='operating system version')
|
||||
parser.add_argument('--os_patch_level', type=parse_os_patch_level,
|
||||
default=0, help='operating system patch level')
|
||||
parser.add_argument('--tags_offset', type=parse_int, default=0x00000100,
|
||||
help='tags offset')
|
||||
parser.add_argument('--board', type=AsciizBytes(bufsize=BOOT_NAME_SIZE),
|
||||
default='', help='board name')
|
||||
parser.add_argument('--pagesize', type=parse_int,
|
||||
choices=[2**i for i in range(11, 15)], default=2048,
|
||||
help='page size')
|
||||
parser.add_argument('--id', action='store_true',
|
||||
help='print the image ID on standard output')
|
||||
parser.add_argument('--header_version', type=parse_int, default=0,
|
||||
help='boot image header version')
|
||||
parser.add_argument('-o', '--output', type=FileType('wb'),
|
||||
help='output file name')
|
||||
parser.add_argument('--vendor_boot', type=FileType('wb'),
|
||||
help='vendor boot output file name')
|
||||
parser.add_argument('--vendor_ramdisk', type=FileType('rb'),
|
||||
help='path to the vendor ramdisk')
|
||||
parser.add_argument('--vendor_bootconfig', type=FileType('rb'),
|
||||
help='path to the vendor bootconfig file')
|
||||
|
||||
args, extra_args = parser.parse_known_args(sys_argv)
|
||||
if args.vendor_boot is not None and args.header_version > 3:
|
||||
extra_args = parse_vendor_ramdisk_args(args, extra_args)
|
||||
if len(extra_args) > 0:
|
||||
raise ValueError(f'Unrecognized arguments: {extra_args}')
|
||||
|
||||
if args.header_version < 3:
|
||||
args.extra_cmdline = args.cmdline[BOOT_ARGS_SIZE-1:]
|
||||
args.cmdline = args.cmdline[:BOOT_ARGS_SIZE-1] + b'\x00'
|
||||
assert len(args.cmdline) <= BOOT_ARGS_SIZE
|
||||
assert len(args.extra_cmdline) <= BOOT_EXTRA_ARGS_SIZE
|
||||
|
||||
return args
|
||||
|
||||
|
||||
def write_data(args, pagesize):
|
||||
write_padded_file(args.output, args.kernel, pagesize)
|
||||
write_padded_file(args.output, args.ramdisk, pagesize)
|
||||
write_padded_file(args.output, args.second, pagesize)
|
||||
|
||||
if args.header_version > 0 and args.header_version < 3:
|
||||
write_padded_file(args.output, args.recovery_dtbo, pagesize)
|
||||
if args.header_version == 2:
|
||||
write_padded_file(args.output, args.dtb, pagesize)
|
||||
|
||||
|
||||
def write_vendor_boot_data(args):
|
||||
if args.header_version > 3:
|
||||
builder = args.vendor_ramdisk_table_builder
|
||||
builder.write_ramdisks_padded(args.vendor_boot, args.pagesize)
|
||||
write_padded_file(args.vendor_boot, args.dtb, args.pagesize)
|
||||
builder.write_entries_padded(args.vendor_boot, args.pagesize)
|
||||
write_padded_file(args.vendor_boot, args.vendor_bootconfig,
|
||||
args.pagesize)
|
||||
else:
|
||||
write_padded_file(args.vendor_boot, args.vendor_ramdisk, args.pagesize)
|
||||
write_padded_file(args.vendor_boot, args.dtb, args.pagesize)
|
||||
|
||||
|
||||
def main(sys_argv=None):
|
||||
args = parse_cmdline(sys_argv)
|
||||
if args.vendor_boot is not None:
|
||||
if args.header_version not in {3, 4}:
|
||||
raise ValueError(
|
||||
'--vendor_boot not compatible with given header version')
|
||||
if args.header_version == 3 and args.vendor_ramdisk is None:
|
||||
raise ValueError('--vendor_ramdisk missing or invalid')
|
||||
write_vendor_boot_header(args)
|
||||
write_vendor_boot_data(args)
|
||||
if args.output is not None:
|
||||
if args.second is not None and args.header_version > 2:
|
||||
raise ValueError(
|
||||
'--second not compatible with given header version')
|
||||
img_id = write_header(args)
|
||||
if args.header_version > 2:
|
||||
write_data(args, BOOT_IMAGE_HEADER_V3_PAGESIZE)
|
||||
else:
|
||||
write_data(args, args.pagesize)
|
||||
if args.id and img_id is not None:
|
||||
print('0x' + ''.join(f'{octet:02x}' for octet in img_id))
|
||||
|
||||
|
||||
if __name__ == '__main__':
|
||||
main()
|
Loading…
Reference in New Issue
Block a user