mirror of
https://codeberg.org/libreboot/lbmk.git
synced 2026-07-11 14:02:52 +02:00
f44b99c808
at present, lbmk can remove microcode updates on images for a given target, if the target specifies microcode_required="n" in target.cfg lbmk then provides images with microcode, and images without, in a given release. although the user can also remove them manually, this just makes it a bit more convenient, for those users who do wish to run without the updates. this functionality is provided only on those platforms where no-microcode is tested. well, this behaviour implements a compromise on libreboot policy, which is to always include microcode updates by default. see: Binary Blob Reduction Policy the *canoeboot* project now exists, developed in parallel with libreboot, and it ships without microcode updates, on the same targets where lbmk also handled this. running without microcode updates is foolish, and should not be encouraged. clean up lbmk by not providing this kludge. the libreboot documentation will be updated, telling such users to try canoeboot instead, or to remove the update from a given libreboot rom - this is still possible, and mitigations such as PECI disablement on GM45 are still in place (and will be kept), so that this continues to work well. Signed-off-by: Leah Rowe <leah@libreboot.org>
243 lines
6.5 KiB
Bash
Executable File
243 lines
6.5 KiB
Bash
Executable File
#!/usr/bin/env sh
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# SPDX-License-Identifier: GPL-3.0-only
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# SPDX-FileCopyrightText: 2022 Caleb La Grange <thonkpeasant@protonmail.com>
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# SPDX-FileCopyrightText: 2022 Ferass El Hafidi <vitali64pmemail@protonmail.com>
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# SPDX-FileCopyrightText: 2023 Leah Rowe <leah@libreboot.org>
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. "include/err.sh"
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. "include/option.sh"
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nvmutil="util/nvmutil/nvm"
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eval "$(setvars "" archive rom modifygbe nukemode release new_mac)"
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main()
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{
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[ $# -lt 1 ] && err "No options specified."
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if [ "${1}" = "listboards" ]; then
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items config/coreboot || :
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exit 0
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fi
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archive="${1}"
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while getopts n:r:b:m: option; do
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case "${option}" in
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n) nukemode="${OPTARG}" ;;
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r) rom=${OPTARG} ;;
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b) board=${OPTARG} ;;
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m) modifygbe=true
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new_mac=${OPTARG} ;;
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*) : ;;
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esac
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done
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check_board
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build_dependencies
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inject_vendorfiles
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[ "${nukemode}" = "nuke" ] && return 0
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printf "Friendly reminder (this is *not* an error message):\n"
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printf "Please always ensure that the files were inserted correctly.\n"
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}
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check_board()
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{
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failcheck="n"
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check_release "${archive}" || failcheck="y"
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if [ "${failcheck}" = "y" ]; then
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[ -f "${rom}" ] || \
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err "check_board: \"${rom}\" is not a valid path"
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[ -z "${rom+x}" ] && \
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err "check_board: no rom specified"
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[ -n "${board+x}" ] || \
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board=$(detect_board "${rom}")
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else
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release="y"
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board=$(detect_board "${archive}")
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fi
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boarddir="${cbcfgsdir}/${board}"
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[ -d "${boarddir}" ] && return 0
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err "check_board: board ${board} not found"
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}
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check_release()
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{
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[ -f "${archive}" ] || return 1
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[ "${archive##*.}" = "xz" ] || return 1
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printf "%s\n" "Release archive ${archive} detected"
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}
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# This function tries to determine the board from the filename of the rom.
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# It will only succeed if the filename is not changed from the build/download
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detect_board()
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{
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path="${1}"
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filename=$(basename "${path}")
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case ${filename} in
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grub_*)
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board=$(echo "${filename}" | cut -d '_' -f2-3) ;;
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seabios_withgrub_*)
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board=$(echo "${filename}" | cut -d '_' -f3-4) ;;
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*.tar.xz)
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_stripped_prefix=${filename#*_}
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board="${_stripped_prefix%.tar.xz}" ;;
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*)
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err "detect_board $filename: could not detect board type"
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esac
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[ -d "${boarddir}/" ] || \
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err "detect_board: dir, ${boarddir}, doesn't exist"
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printf "%s\n" "${board}"
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}
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build_dependencies()
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{
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[ -d "${cbdir}" ] || x_ ./update trees -f coreboot default
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if [ ! -f "${cbfstool}" ] || [ ! -f "${ifdtool}" ]; then
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x_ ./update trees -b coreboot utils default
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fi
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[ -z "${new_mac}" ] || [ -f "${nvmutil}" ] || x_ make -C util/nvmutil
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[ "${nukemode}" = "nuke" ] && return 0
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x_ ./vendor download ${board}
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}
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inject_vendorfiles()
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{
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if [ "${release}" != "y" ]; then
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patch_rom "${rom}"
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return 0
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fi
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printf "patching release images\n"
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patch_release_roms
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}
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patch_release_roms()
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{
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_tmpdir="tmp/romdir"
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remkdir "${_tmpdir}"
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tar -xf "${archive}" -C "${_tmpdir}" || \
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err "patch_release_roms: !tar -xf \"${archive}\" -C \"${_tmpdir}\""
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for x in "${_tmpdir}"/bin/*/*.rom ; do
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printf "patching rom: %s\n" "$x"
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patch_rom "${x}"
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done
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(
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x_ cd "${_tmpdir}/bin/"* # TODO: very dodgy, re-write accordingly
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# NOTE: For compatibility with older rom releases, defer to sha1
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[ "${nukemode}" = "nuke" ] || sha512sum --status -c vendorhashes || \
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sha1sum --status -c vendorhashes || sha512sum --status -c \
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blobhashes || sha1sum --status -c blobhashes || \
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err "patch_release_roms: ROMs did not match expected hashes"
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) || err "can't verify vendor hashes"
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if [ "${modifygbe}" = "true" ]; then
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for x in "${_tmpdir}"/bin/*/*.rom ; do
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modify_gbe "${x}"
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done
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fi
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[ -d bin/release ] || x_ mkdir -p bin/release
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x_ mv "${_tmpdir}"/bin/* bin/release/
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printf "Success! Your ROMs are in bin/release\n"
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x_ rm -Rf "${_tmpdir}"
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}
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patch_rom()
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{
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rom="${1}"
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check_defconfig "$boarddir" && err "patch_rom $boarddir: no configs"
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set -- "${boarddir}/config/"*
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. "${1}" 2>/dev/null
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[ "$CONFIG_HAVE_MRC" = "y" ] && \
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inject "mrc.bin" "${CONFIG_MRC_FILE}" "mrc" "0xfffa0000"
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[ "${CONFIG_HAVE_ME_BIN}" = "y" ] && \
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inject "IFD" "${CONFIG_ME_BIN_PATH}" "me"
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[ "${CONFIG_KBC1126_FIRMWARE}" = "y" ] && \
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inject "ecfw1.bin" "$CONFIG_KBC1126_FW1" "raw" \
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"${CONFIG_KBC1126_FW1_OFFSET}" && \
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inject "ecfw2.bin" "$CONFIG_KBC1126_FW2" "raw" \
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"${CONFIG_KBC1126_FW2_OFFSET}"
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[ -n "$CONFIG_VGA_BIOS_FILE" ] && [ -n "$CONFIG_VGA_BIOS_ID" ] && \
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inject "pci${CONFIG_VGA_BIOS_ID}.rom" \
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"${CONFIG_VGA_BIOS_FILE}" "optionrom"
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[ "${CONFIG_INCLUDE_SMSC_SCH5545_EC_FW}" = "y" ] && \
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[ -n "${CONFIG_SMSC_SCH5545_EC_FW_FILE}" ] && \
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inject "sch5545_ecfw.bin" "$CONFIG_SMSC_SCH5545_EC_FW_FILE" raw
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[ "${modifygbe}" = "true" ] && ! [ "${release}" = "y" ] && \
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inject "IFD" "${CONFIG_GBE_BIN_PATH}" "GbE"
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printf "ROM image successfully patched: %s\n" "${rom}"
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}
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inject()
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{
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[ $# -lt 3 ] && \
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err "inject $@, $rom: usage: inject name path type (offset)"
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eval "$(setvars "" cbfsname _dest _t _offset)"
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cbfsname="${1}"
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_dest="${2##*../}"
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_t="${3}"
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[ $# -gt 3 ] && _offset="-b ${4}" && [ -z "${4}" ] && \
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err "inject $@, $rom: offset passed, but empty (not defined)"
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[ -z "${_dest}" ] && err "inject $@, ${rom}: empty destination path"
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[ ! -f "${_dest}" ] && [ "${nukemode}" != "nuke" ] && \
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err "inject_${dl_type}: file missing, ${_dest}"
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[ "$nukemode" = "nuke" ] || \
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printf "Inserting %s/%s into file: %s\n" \
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"${cbfsname}" "${_t}" "$rom"
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if [ "${_t}" = "GbE" ]; then
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x_ mkdir -p tmp
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cp "${_dest}" "tmp/gbe.bin" || \
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err "inject: !cp \"${_dest}\" \"tmp/gbe.bin\""
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_dest="tmp/gbe.bin"
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"${nvmutil}" "${_dest}" setmac "${new_mac}" || \
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err "inject ${_dest}: can't change mac address"
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fi
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if [ "${cbfsname}" = "IFD" ]; then
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if [ "${nukemode}" != "nuke" ]; then
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"${ifdtool}" -i ${_t}:${_dest} "${rom}" -O "$rom" || \
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err "inject: can't insert $_t ($dest) into $rom"
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else
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"${ifdtool}" --nuke ${_t} "${rom}" -O "${rom}" || \
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err "inject ${rom}: can't nuke ${_t} in IFD"
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fi
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else
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if [ "${nukemode}" != "nuke" ]; then
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"${cbfstool}" "${rom}" add -f "${_dest}" \
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-n "${cbfsname}" -t ${_t} ${_offset} || \
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err "inject $rom: can't insert $_t file $_dest"
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else
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"${cbfstool}" "${rom}" remove -n "${cbfsname}" || \
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err "inject $rom: can't remove ${cbfsname}"
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fi
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fi
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}
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usage()
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{
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cat <<- EOF
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USAGE: ./vendor inject -r [rom path] -b [boardname] -m [macaddress]
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Example: ./vendor inject -r x230_12mb.rom -b x230_12mb
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Adding a macadress to the gbe is optional.
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If the [-m] parameter is left blank, the gbe will not be touched.
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Type './vendor inject listboards' to get a list of valid boards
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EOF
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}
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main $@
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