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If the gptprio.next command fails to give us something to boot we shouldn't try! In order to diagnose why the failure happened halt immediately so the user can see the error message.
230 lines
7.9 KiB
Bash
Executable File
230 lines
7.9 KiB
Bash
Executable File
#!/bin/bash
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# Copyright (c) 2014 The CoreOS 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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# Replacement script for 'grub-install' which does not detect drives
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# properly when partitions are mounted via individual loopback devices.
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SCRIPT_ROOT=$(readlink -f $(dirname "$0")/..)
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. "${SCRIPT_ROOT}/common.sh" || exit 1
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# We're invoked only by build_image, which runs in the chroot
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assert_inside_chroot
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# Flags.
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DEFINE_string board "${DEFAULT_BOARD}" \
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"The name of the board"
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DEFINE_string target "" \
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"The GRUB target to install such as i386-pc or x86_64-efi"
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DEFINE_string disk_image "" \
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"The disk image containing the EFI System partition."
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DEFINE_boolean verity ${FLAGS_FALSE} \
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"Indicates that boot commands should enable dm-verity."
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# Parse flags
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FLAGS "$@" || exit 1
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eval set -- "${FLAGS_ARGV}"
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switch_to_strict_mode
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# must be sourced after flags are parsed.
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. "${BUILD_LIBRARY_DIR}/toolchain_util.sh" || exit 1
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. "${BUILD_LIBRARY_DIR}/board_options.sh" || exit 1
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# Our GRUB lives under coreos/grub so new pygrub versions cannot find grub.cfg
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GRUB_DIR="coreos/grub/${FLAGS_target}"
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# GRUB install location inside the SDK
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GRUB_SRC="/usr/lib/grub/${FLAGS_target}"
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# Modules required to boot a standard CoreOS configuration
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CORE_MODULES=( normal search test fat part_gpt search_fs_uuid gzio search_part_label terminal gptprio configfile memdisk tar echo read )
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# Name of the core image, depends on target
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CORE_NAME=
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# Whether the SDK's grub or the board root's grub is used. Once amd64 is
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# fixed up the board root's grub will always be used.
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BOARD_GRUB=0
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case "${FLAGS_target}" in
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i386-pc)
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CORE_MODULES+=( biosdisk serial )
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CORE_NAME="core.img"
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;;
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x86_64-efi)
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CORE_MODULES+=( serial linuxefi efi_gop getenv smbios efinet verify http tftp )
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CORE_NAME="core.efi"
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;;
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x86_64-xen)
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CORE_NAME="core.elf"
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;;
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arm64-efi)
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CORE_MODULES+=( serial linux efi_gop getenv smbios efinet verify http tftp )
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CORE_NAME="core.efi"
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BOARD_GRUB=1
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;;
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*)
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die_notrace "Unknown GRUB target ${FLAGS_target}"
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;;
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esac
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if [[ $BOARD_GRUB -eq 1 ]]; then
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info "Updating GRUB in ${BOARD_ROOT}"
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emerge-${BOARD} --nodeps --select -qugKN sys-boot/grub
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GRUB_SRC="${BOARD_ROOT}/usr/lib/grub/${FLAGS_target}"
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fi
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[[ -d "${GRUB_SRC}" ]] || die "GRUB not installed at ${GRUB_SRC}"
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# In order for grub-setup-bios to properly detect the layout of the disk
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# image it expects a normal partitioned block device. For most of the build
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# disk_util maps individual loop devices to each partition in the image so
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# the kernel can automatically detach the loop devices on unmount. When
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# using a single loop device with partitions there is no such cleanup.
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# That's the story of why this script has all this goo for loop and mount.
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ESP_DIR=
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LOOP_DEV=
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cleanup() {
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if [[ -d "${ESP_DIR}" ]]; then
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if mountpoint -q "${ESP_DIR}"; then
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sudo umount "${ESP_DIR}"
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fi
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rm -rf "${ESP_DIR}"
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fi
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if [[ -b "${LOOP_DEV}" ]]; then
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sudo losetup --detach "${LOOP_DEV}"
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fi
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if [[ -n "${GRUB_TEMP_DIR}" && -e "${GRUB_TEMP_DIR}" ]]; then
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rm -r "${GRUB_TEMP_DIR}"
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fi
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}
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trap cleanup EXIT
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info "Installing GRUB ${FLAGS_target} in ${FLAGS_disk_image##*/}"
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LOOP_DEV=$(sudo losetup --find --show --partscan "${FLAGS_disk_image}")
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ESP_DIR=$(mktemp --directory)
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# work around slow/buggy udev, make sure the node is there before mounting
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if [[ ! -b "${LOOP_DEV}p1" ]]; then
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# sleep a little just in case udev is ok but just not finished yet
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warn "loopback device node ${LOOP_DEV}p1 missing, waiting on udev..."
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sleep 0.5
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for (( i=0; i<5; i++ )); do
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if [[ -b "${LOOP_DEV}p1" ]]; then
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break
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fi
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warn "looback device node still ${LOOP_DEV}p1 missing, reprobing..."
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sudo blockdev --rereadpt ${LOOP_DEV}
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sleep 0.5
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done
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if [[ ! -b "${LOOP_DEV}p1" ]]; then
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failboat "${LOOP_DEV}p1 where art thou? udev has forsaken us!"
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fi
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fi
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sudo mount -t vfat "${LOOP_DEV}p1" "${ESP_DIR}"
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sudo mkdir -p "${ESP_DIR}/${GRUB_DIR}"
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info "Compressing modules in ${GRUB_DIR}"
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for file in "${GRUB_SRC}"/*{.lst,.mod}; do
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out="${ESP_DIR}/${GRUB_DIR}/${file##*/}"
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gzip --best --stdout "${file}" | sudo_clobber "${out}"
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done
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info "Generating ${GRUB_DIR}/load.cfg"
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# Include a small initial config in the core image to search for the ESP
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# by filesystem ID in case the platform doesn't provide the boot disk.
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# The existing $root value is given as a hint so it is searched first.
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ESP_FSID=$(sudo grub-probe -t fs_uuid -d "${LOOP_DEV}p1")
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sudo_clobber "${ESP_DIR}/${GRUB_DIR}/load.cfg" <<EOF
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search.fs_uuid ${ESP_FSID} root \$root
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set prefix=(memdisk)
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set
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EOF
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# Generate a memdisk containing the appropriately generated grub.cfg. Doing
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# this because we need conflicting default behaviors between verity and
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# non-verity images.
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GRUB_TEMP_DIR=$(mktemp -d)
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if [[ ! -f "${ESP_DIR}/coreos/grub/grub.cfg.tar" ]]; then
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info "Generating grub.cfg memdisk"
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if [[ ${FLAGS_verity} -eq ${FLAGS_TRUE} ]]; then
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# use dm-verity for /usr
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cat "${BUILD_LIBRARY_DIR}/grub.cfg" | \
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sed 's/@@MOUNTUSR@@/mount.usr=\/dev\/mapper\/usr verity.usr/' > \
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"${GRUB_TEMP_DIR}/grub.cfg"
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else
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# uses standard systemd /usr mount
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cat "${BUILD_LIBRARY_DIR}/grub.cfg" | \
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sed 's/@@MOUNTUSR@@/mount.usr/' > "${GRUB_TEMP_DIR}/grub.cfg"
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fi
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sudo tar cf "${ESP_DIR}/coreos/grub/grub.cfg.tar" \
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-C "${GRUB_TEMP_DIR}" "grub.cfg"
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fi
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info "Generating ${GRUB_DIR}/${CORE_NAME}"
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sudo grub-mkimage \
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--compression=auto \
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--format "${FLAGS_target}" \
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--directory "${GRUB_SRC}" \
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--config "${ESP_DIR}/${GRUB_DIR}/load.cfg" \
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--memdisk "${ESP_DIR}/coreos/grub/grub.cfg.tar" \
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--output "${ESP_DIR}/${GRUB_DIR}/${CORE_NAME}" \
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"${CORE_MODULES[@]}"
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# Now target specific steps to make the system bootable
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case "${FLAGS_target}" in
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i386-pc)
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info "Installing MBR and the BIOS Boot partition."
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sudo cp "${GRUB_SRC}/boot.img" "${ESP_DIR}/${GRUB_DIR}"
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sudo grub-bios-setup --device-map=/dev/null \
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--directory="${ESP_DIR}/${GRUB_DIR}" "${LOOP_DEV}"
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# boot.img gets manipulated by grub-bios-setup so it alone isn't
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# sufficient to restore the MBR boot code if it gets corrupted.
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sudo dd bs=448 count=1 if="${LOOP_DEV}" \
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of="${ESP_DIR}/${GRUB_DIR}/mbr.bin"
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;;
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x86_64-efi)
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info "Installing default x86_64 UEFI bootloader."
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sudo mkdir -p "${ESP_DIR}/EFI/boot"
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# Use the test keys for signing unofficial builds
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if [[ ${COREOS_OFFICIAL:-0} -ne 1 ]]; then
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sudo sbsign --key /usr/share/sb_keys/DB.key \
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--cert /usr/share/sb_keys/DB.crt \
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"${ESP_DIR}/${GRUB_DIR}/${CORE_NAME}"
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sudo cp "${ESP_DIR}/${GRUB_DIR}/${CORE_NAME}.signed" \
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"${ESP_DIR}/EFI/boot/grub.efi"
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sudo sbsign --key /usr/share/sb_keys/DB.key \
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--cert /usr/share/sb_keys/DB.crt \
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--output "${ESP_DIR}/EFI/boot/bootx64.efi" \
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"/usr/lib/shim/shim.efi"
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else
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sudo cp "${ESP_DIR}/${GRUB_DIR}/${CORE_NAME}" \
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"${ESP_DIR}/EFI/boot/bootx64.efi"
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fi
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;;
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x86_64-xen)
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info "Installing default x86_64 Xen bootloader."
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sudo mkdir -p "${ESP_DIR}/xen" "${ESP_DIR}/boot/grub"
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sudo cp "${ESP_DIR}/${GRUB_DIR}/${CORE_NAME}" \
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"${ESP_DIR}/xen/pvboot-x86_64.elf"
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sudo cp "${BUILD_LIBRARY_DIR}/menu.lst" \
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"${ESP_DIR}/boot/grub/menu.lst"
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;;
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arm64-efi)
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info "Installing default arm64 UEFI bootloader."
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sudo mkdir -p "${ESP_DIR}/EFI/boot"
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#FIXME(andrejro): shim not ported to aarch64
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sudo cp "${ESP_DIR}/${GRUB_DIR}/${CORE_NAME}" \
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"${ESP_DIR}/EFI/boot/bootaa64.efi"
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;;
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esac
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cleanup
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trap - EXIT
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command_completed
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