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This adds the boot_kernel to the build boot partiton and updates the relevant config files. Mission accomplished. TODO: Update the installer to not worry about moving files around anymore
141 lines
4.9 KiB
Bash
Executable File
141 lines
4.9 KiB
Bash
Executable File
#!/bin/bash
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# Copyright (c) 2012 The Chromium OS Authors. All rights reserved.
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# Use of this source code is governed by a BSD-style license that can be
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# found in the LICENSE file.
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# Helper script that generates the legacy/efi bootloader partitions.
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# It does not populate the templates, but can update a loop device.
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SCRIPT_ROOT=$(dirname $(readlink -f "$0"))
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. "${SCRIPT_ROOT}/common.sh" || exit 1
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# Need to be inside the chroot to load chromeos-common.sh
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assert_inside_chroot
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# Load functions and constants for chromeos-install
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. /usr/lib/installer/chromeos-common.sh || exit 1
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# Flags.
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DEFINE_string arch "x86" \
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"The boot architecture: arm or x86. (Default: x86)"
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# TODO(wad) once extlinux is dead, we can remove this.
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DEFINE_boolean install_syslinux ${FLAGS_TRUE} \
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"Controls whether syslinux is run on 'to'. (Default: true)"
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DEFINE_string from "/tmp/boot" \
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"Path the legacy bootloader templates are copied from. (Default /tmp/boot)"
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DEFINE_string to "/tmp/esp.img" \
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"Path to esp image (Default: /tmp/esp.img)"
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DEFINE_integer to_offset 0 \
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"Offset in bytes into 'to' if it is a file (Default: 0)"
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DEFINE_integer to_size -1 \
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"Size in bytes of 'to' to use if it is a file. -1 is ignored. (Default: -1)"
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DEFINE_string vmlinuz "/tmp/vmlinuz" \
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"Path to the vmlinuz file to use (Default: /tmp/vmlinuz)"
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DEFINE_string vmlinuz_boot_kernel "/tmp/vmlinuz-boot_kernel" \
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"Path to the vmlinuz-boot_kernel file to use (Default: /tmp/vmlinuz)"
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# Parse flags
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FLAGS "$@" || exit 1
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eval set -- "${FLAGS_ARGV}"
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switch_to_strict_mode
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part_index_to_uuid() {
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local image="$1"
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local index="$2"
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cgpt show -i "$index" -u "$image"
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}
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ESP_DEV=
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if [[ ! -e "${FLAGS_to}" ]]; then
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error "The ESP doesn't exist"
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# This shouldn't happen.
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info "Creating a new esp image at ${FLAGS_to}" anyway.
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# Create EFI System Partition to boot stock EFI BIOS (but not ChromeOS EFI
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# BIOS). ARM uses this space to determine which partition is bootable.
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# NOTE: The size argument for mkfs.vfat is in 1024-byte blocks.
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# We'll hard-code it to 16M for now.
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ESP_BLOCKS=16384
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/usr/sbin/mkfs.vfat -C "${FLAGS_to}" ${ESP_BLOCKS}
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ESP_DEV=$(sudo losetup --show -f "${FLAGS_to}")
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if [ -z "${ESP_DEV}" ]; then
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die "No free loop devices."
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fi
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else
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if [[ -f "${FLAGS_to}" ]]; then
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esp_offset="--offset ${FLAGS_to_offset}"
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esp_size="--sizelimit ${FLAGS_to_size}"
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if [ ${FLAGS_to_size} -lt 0 ]; then
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esp_size=
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fi
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ESP_DEV=$(sudo losetup --show -f ${esp_offset} ${esp_size} "${FLAGS_to}")
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if [ -z "${ESP_DEV}" ]; then
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die "No free loop devices."
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fi
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else
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# If it is a block device or something else, try to mount it anyway.
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ESP_DEV="${FLAGS_to}"
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fi
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fi
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ESP_FS_DIR=$(mktemp -d /tmp/esp.XXXXXX)
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cleanup() {
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set +e
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if ! safe_umount "${ESP_FS_DIR}"; then
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# There is a race condition possible on some ubuntu setups
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# with mounting and unmounting a device very quickly
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# Doing a quick sleep/retry as a temporary workaround
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warn "Initial unmount failed. Possibly crosbug.com/23443. Retrying"
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sleep 5
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safe_umount "${ESP_FS_DIR}"
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fi
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if [[ -n "${ESP_DEV}" && -z "${ESP_DEV//\/dev\/loop*}" ]]; then
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sudo losetup -d "${ESP_DEV}"
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fi
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rm -rf "${ESP_FS_DIR}"
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}
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trap cleanup EXIT
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sudo mount "${ESP_DEV}" "${ESP_FS_DIR}"
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if [[ "${FLAGS_arch}" = "x86" || "${FLAGS_arch}" = "amd64" ]]; then
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# Copy over the grub configurations for cloud machines and the
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# kernel into both the A and B slot
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sudo mkdir -p "${ESP_FS_DIR}"/boot/grub
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sudo cp -r "${FLAGS_from}"/boot/grub/. "${ESP_FS_DIR}"/boot/grub
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sudo cp -r "${FLAGS_from}"/boot/grub/menu.lst.A "${ESP_FS_DIR}"/boot/grub/menu.lst
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# Prepopulate the syslinux directories too and update for verified boot values
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# after the rootfs work is done.
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sudo mkdir -p "${ESP_FS_DIR}"/syslinux
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sudo cp -r "${FLAGS_from}"/syslinux/. "${ESP_FS_DIR}"/syslinux
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# Stage both kernels with the only one we built.
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sudo cp -f "${FLAGS_vmlinuz_boot_kernel}" "${ESP_FS_DIR}"/syslinux/vmlinuz-boot_kernel
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sudo cp -f "${FLAGS_vmlinuz}" "${ESP_FS_DIR}"/syslinux/vmlinuz.A
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sudo cp -f "${FLAGS_vmlinuz}" "${ESP_FS_DIR}"/syslinux/vmlinuz.B
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# Extract kernel flags
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kernel_cfg="cros_debug"
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old_root="%U+1"
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# Install the syslinux loader on the ESP image (part 12) so it is ready when
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# we cut over from rootfs booting (extlinux).
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if [[ ${FLAGS_install_syslinux} -eq ${FLAGS_TRUE} ]]; then
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safe_umount "${ESP_FS_DIR}"
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sudo syslinux -d /syslinux "${ESP_DEV}"
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# mount again for cleanup to free resource gracefully
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sudo mount -o ro "${ESP_DEV}" "${ESP_FS_DIR}"
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fi
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elif [[ "${FLAGS_arch}" = "arm" ]]; then
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# Copy u-boot script to ESP partition
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if [ -r "${FLAGS_from}/boot-A.scr.uimg" ]; then
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sudo mkdir -p "${ESP_FS_DIR}/u-boot"
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sudo cp "${FLAGS_from}/boot-A.scr.uimg" \
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"${ESP_FS_DIR}/u-boot/boot.scr.uimg"
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sudo cp -f "${FLAGS_from}"/vmlinuz "${ESP_FS_DIR}"/vmlinuz.uimg.A
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sudo cp -f "${FLAGS_from}"/zImage "${ESP_FS_DIR}"/vmlinuz.A
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fi
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fi
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set +e
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