Files
lbmk/include/fw/rom.sh
T
Leah Rowe bf654d4c19 rom.sh: just remove the coreboot cook function
ccache isn't used at all in any of the configs

ensuring that this remains the case is much
cleaner. coreboot will never enable it by default,
precisely because of how buggy it is.

Signed-off-by: Leah Rowe <leah@libreboot.org>
2026-09-17 07:20:25 +01:00

439 lines
11 KiB
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# SPDX-License-Identifier: GPL-3.0-or-later
# Copyright (c) 2014-2016,2020-2021,2023-2025 Leah Rowe <leah@libreboot.org>
# Copyright (c) 2021-2022 Ferass El Hafidi <vitali64pmemail@protonmail.com>
# Copyright (c) 2022 Caleb La Grange <thonkpeasant@protonmail.com>
# Copyright (c) 2022-2023 Alper Nebi Yasak <alpernebiyasak@gmail.com>
# Copyright (c) 2023-2024 Riku Viitanen <riku.viitanen@protonmail.com>
grubdata="config/data/grub"
buildser()
{
if [ "$1" = "pico" ]; then
x_ cmake -DPICO_BOARD="$2" \
-DPICO_SDK_PATH="$picosdk" -B "$sersrc/build" "$sersrc"
x_ cmake --build "$sersrc/build"
elif [ "$1" = "stm32" ]; then
x_ make -C "$sersrc" libopencm3-just-make BOARD=$2
x_ make -C "$sersrc" BOARD=$2
fi
x_ mkdir -p "bin/serprog_$1"
x_ mv "$serx" "bin/serprog_$1/serprog_$2.${serx##*.}"
}
copyps1bios()
{
$if_dry_build \
return 0
remkdir "bin/playstation"
x_ cp src/pcsx-redux/src/mips/openbios/openbios.bin bin/playstation
printf "MIT License\n\nCopyright (c) 2019-2025 PCSX-Redux authors\n\n" \
> bin/playstation/COPYING.txt || \
err "can't write PCSX Redux copyright info" "copyps1bios" "$@"
x_ cat config/snippet/mit >>bin/playstation/COPYING.txt || \
err "can't copy MIT license snippet" "copyps1bios" "$@"
}
mkpayload_grub()
{
eval "`newvar grub_modules grub_install_modules`"
$if_dry_build \
return 0
. "$grubdata/module/$tree" || \
err "Can't read '$grubdata/module/$tree'" "mkpayload_grub" "$@"
x_ rm -f "$srcdir/grub.elf"
x_ "$srcdir/grub-mkstandalone" \
--grub-mkimage="$srcdir/grub-mkimage" \
-O i386-coreboot -o "$srcdir/grub.elf" -d "${srcdir}/grub-core/" \
--fonts= --themes= --locales= --modules="$grub_modules" \
--install-modules="$grub_install_modules" \
"/boot/grub/grub_default.cfg=${srcdir}/.config" \
"/boot/grub/grub.cfg=$grubdata/memdisk.cfg"; :
}
corebootpremake()
{
[ "$XBMK_RELEASE" = "y" ] && [ "$release" = "n" ] && \
return 0
fx_ check_coreboot_util printf "cbfstool\nifdtool\n"
printf "%s\n" "${version%%-*}" > "$srcdir/.coreboot-version" || \
err "!mk $srcdir .coreboot-version" "corebootpremake" "$@"
[ -z "$mode" ] && [ "$target" != "$tree" ] && \
x_ "$mk" download "$target"; :
}
check_coreboot_util()
{
[ "$badhash" = "y" ] && \
x_ rm -f "elf/coreboot/$tree/$1"
if e "elf/coreboot/$tree/$1" f; then
return 0
fi
utilelfdir="elf/coreboot/$tree"
utilsrcdir="src/coreboot/$tree/util/$1"
utilmode=""
[ -n "$mode" ] && \
utilmode="clean"
x_ make -C "$utilsrcdir" $utilmode -j$XBMK_THREADS $makeargs
if [ -n "$mode" ]; then
x_ rm -Rf "$utilelfdir"
return 0
elif [ -n "$mode" ] || [ -f "$utilelfdir/$1" ]; then
return 0
fi
x_ mkdir -p "$utilelfdir"
x_ cp "$utilsrcdir/$1" "$utilelfdir"
[ "$1" = "cbfstool" ] && \
x_ cp "$utilsrcdir/rmodtool" "$utilelfdir"; :
}
coreboot_pad_one_byte()
{
[ "$XBMK_RELEASE" = "y" ] && [ "$release" = "n" ] && \
return 0
$if_not_dry_build \
pad_one_byte "$srcdir/build/coreboot.rom"
}
mkcorebootbin()
{
[ "$XBMK_RELEASE" = "y" ] && [ "$release" = "n" ] && \
return 0
$if_not_dry_build \
forx 'check_coreboot_util %s' cbfstool ifdtool
for y in "$target_dir/config"/*; do
defconfig="$y"
mkcorebootbin_real
done
mkcoreboottar
}
mkcorebootbin_real()
{
[ "$target" = "$tree" ] && \
return 0
tmprom="$xbtmp/coreboot.rom"
initmode="${defconfig##*/}"
displaymode="${initmode##*_}"
if [ "$displaymode" = "$initmode" ]; then
# blank it for "normal" or "fspgop" configs:
displaymode=""
fi
initmode="${initmode%%_*}"
cbfstool="elf/coreboot/$tree/cbfstool"
# cbfstool option backends, if they exist
cbfscfg="config/coreboot/$target/cbfs.cfg"
elfrom="elf/coreboot/$tree/$target/$initmode"
[ -n "$displaymode" ] && \
elfrom="${elfrom}_$displaymode"
elfrom="$elfrom/coreboot.rom"
$if_not_dry_build \
x_ cp "$elfrom" "$tmprom"
$if_not_dry_build \
unpad_one_byte "$tmprom"
[ -n "$payload_uboot" ] && [ "$payload_uboot" != "amd64" ] && \
[ "$payload_uboot" != "i386" ] && [ "$payload_uboot" != "arm64" ] \
&& err "'$target' defines bad u-boot type '$payload_uboot'" \
"mkcorebootbin_real" "$@"
[ -n "$payload_uboot" ] && [ "$payload_uboot" != "arm64" ] && \
payload_seabios="y"
[ -z "$uboot_config" ] && \
uboot_config="default"
[ "$payload_grub" = "y" ] && \
payload_seabios="y"
[ "$payload_seabios" = "y" ] && [ "$payload_uboot" = "arm64" ] && \
$if_not_dry_build \
err "$target: U-Boot arm / SeaBIOS/GRUB both enabled" \
"mkcorebootbin_real" "$@"
[ -z "$grub_scan_disk" ] && \
grub_scan_disk="nvme ahci ata"
[ -z "$grubtree" ] && \
grubtree="default"
grubelf="elf/grub/$grubtree/$grubtree/payload/grub.elf"
[ "$payload_memtest" != "y" ] && \
payload_memtest="n"
[ "$(uname -m)" != "x86_64" ] && \
payload_memtest="n"
[ "$payload_grubsea" = "y" ] && [ "$initmode" = "normal" ] && \
payload_grubsea="n"
[ "$payload_grub" != "y" ] && \
payload_grubsea="n"
$if_dry_build \
return 0
[ -f "$cbfscfg" ] && \
dx_ add_cbfs_option "$cbfscfg"
if grep "CONFIG_PAYLOAD_NONE=y" "$defconfig"; then
if [ "$payload_seabios" = "y" ]; then
pname="seabios"
add_seabios
fi
if [ "$payload_uboot" = "arm64" ]; then
pname="uboot"
add_uboot
fi
else
pname="custom"
cprom
fi; :
}
# options for cbfs backend (as opposed to nvram/smmstore):
add_cbfs_option()
{
op_name="`printf "%s\n" "$1" | awk '{print $1}'`"
op_arg="`printf "%s\n" "$1" | awk '{print $2}'`"
if [ -z "$op_name" ] || [ -z "$op_arg" ]; then
return 0
fi
( x_ "$cbfstool" "$tmprom" remove -n "option/$op_name" 1>/dev/null \
2>/dev/null ) || :
x_ "$cbfstool" "$tmprom" add-int -i "$op_arg" -n "option/$op_name"
}
# in our design, SeaBIOS is also responsible for starting either
# a GRUB or U-Boot payload. this is because SeaBIOS is generally
# a more reliable codebase, so it's less likely to cause a brick
# during testing and development, or user configuration. if one
# of the u-boot or grub payloads fails, the user still has a
# functional SeaBIOS setup to fall back on. watch:
add_seabios()
{
[ -n "$payload_uboot" ] && [ "$payload_uboot" != "arm64" ] && \
$if_not_dry_build \
add_uboot # add u-boot first, due to fixed cbfs offset
_seabioself="elf/seabios/default/default/$initmode/bios.bin.elf"
[ "$initmode" = "fspgop" ] && \
_seabioself="elf/seabios/default/default/libgfxinit/bios.bin.elf"
_seaname="fallback/payload"
[ "$payload_grubsea" = "y" ] && \
_seaname="seabios.elf"
cbfs "$tmprom" "$_seabioself" "$_seaname"
x_ "$cbfstool" "$tmprom" add-int -i 3000 -n etc/ps2-keyboard-spinup
opexec="2"
[ "$initmode" = "vgarom" ] && \
opexec="0"
x_ "$cbfstool" "$tmprom" add-int -i $opexec -n etc/pci-optionrom-exec
x_ "$cbfstool" "$tmprom" add-int -i 0 -n etc/optionroms-checksum
if [ "$initmode" = "libgfxinit" ] || [ "$initmode" = "fspgop" ]; then
cbfs "$tmprom" "$seavgabiosrom" vgaroms/seavgabios.bin raw
fi
[ "$payload_memtest" = "y" ] && \
cbfs "$tmprom" "elf/memtest86plus/memtest.bin" img/memtest
[ "$payload_grub" = "y" ] && \
add_grub
[ "$payload_grubsea" != "y" ] && \
cprom # seabios, but don't load grub/u-boot first
# now make seauboot(u-boot loaded by seabios) and SeaGRUB (GRUB loaded
# by SeaBIOS) images; users can bypass via ESC to boot from SeaBIOS
if [ "$payload_uboot" = "amd64" ] && \
[ "$displaymode" != "txtmode" ] && \
[ "$initmode" != "normal" ] && [ "$payload_grubsea" != "y" ]; then
pname="seauboot"
cprom "seauboot"
fi
if [ "$payload_grub" = "y" ]; then
pname="seagrub"
mkseagrub
fi
}
add_grub()
{
# path in CBFS for the GRUB payload
_grubname="img/grub2"
[ "$payload_grubsea" = "y" ] && \
_grubname="fallback/payload"
cbfs "$tmprom" "$grubelf" "$_grubname"
printf "set grub_scan_disk=\"%s\"\n" "$grub_scan_disk" \
> "$xbtmp/tmpcfg" || \
err "$target: !insert scandisk" "add_grub" "$@"
cbfs "$tmprom" "$xbtmp/tmpcfg" scan.cfg raw
[ "$initmode" != "normal" ] && [ "$displaymode" != "txtmode" ] && \
cbfs "$tmprom" "$grubdata/background/background1280x800.png" \
"background.png" raw; :
}
mkseagrub()
{
if [ "$payload_grubsea" = "y" ]; then
pname="grub"
else
cbfs "$tmprom" "$grubdata/bootorder" bootorder raw
fi
fx_ cprom x_ find "$grubdata/keymap" -type f -name "*.gkb"
}
add_uboot()
{
if [ "$displaymode" = "txtmode" ] || [ "$initmode" = "normal" ]; then
return 0
fi
# TODO: re-work to allow each coreboot target to say which ub tree
# instead of hardcoding as in the current logic below:
# aarch64 targets:
ubcbfsargs=""
ubpath="fallback/payload"
ubtree="default"
ubtarget="$target"
ubootelf="u-boot.elf"
# override for x86/x86_64 targets:
if [ -n "$payload_uboot" ] && [ "$payload_uboot" != "arm64" ]; then
ubcbfsargs="-l 0x1110000 -e 0x1110000" # 64-bit and 32-bit
# on 64-bit, 0x1120000 is the SPL, with a stub that
# loads it, located at 0x1110000
ubpath="img/u-boot" # 64-bit
ubtree="x86_64"
ubtarget="amd64coreboot"
ubootelf="u-boot-x86-with-spl.bin"
if [ "$payload_uboot" = "i386" ]; then
ubpath="u-boot" # 32-bit
ubtree="x86"
ubtarget="i386coreboot"; :
ubootelf="u-boot-dtb.bin"
fi
fi
ubootelf="elf/u-boot/$ubtree/$ubtarget/$uboot_config/$ubootelf"
[ ! -f "$ubootelf" ] && \
ubootelf="${ubootelf%.elf}"
cbfs "$tmprom" "$ubootelf" "$ubpath" $ubcbfsargs
[ "$payload_seabios" != "y" ] && \
cprom; :
}
# prepare the final image in bin/ for user installation:
cprom()
{
cpcmd="cp"
tmpnew=""
newrom="bin/$target/${pname}_${target}_$initmode.rom"
[ -n "$displaymode" ] && \
newrom="${newrom%.rom}_$displaymode.rom"
if [ $# -gt 0 ] && [ "${1%.gkb}" != "$1" ]; then
tmpnew="${1##*/}"
newrom="${newrom%.rom}_${tmpnew%.gkb}.rom"
fi
irom="$tmprom"
if [ $# -gt 0 ]; then
irom="$(mktemp || err "!mk irom, $(echo "$@")")" || \
err "can't copy rom" "cprom" "$@"
x_ cp "$tmprom" "$irom" && cpcmd="mv"
if [ "${1%.gkb}" != "$1" ]; then
cbfs "$irom" "$grubdata/keymap/$tmpnew" keymap.gkb raw
elif [ "$1" = "seauboot" ]; then
cbfs "$irom" "$grubdata/bootorder_uboot" bootorder raw
fi
fi
printf "Creating new %s image: '%s'\n" "$projectname" "$newrom"
x_ mkdir -p "bin/$target"
x_ $cpcmd "$irom" "$newrom"
}
cbfs()
{
ccmd="add-payload"
lzma="-c lzma"
if [ $# -gt 3 ] && [ $# -lt 5 ]; then
ccmd="add"
lzma="-t $4"
elif [ $# -gt 4 ] && [ "$5" = "0x1110000" ]; then
ccmd="add-flat-binary" && \
lzma="-c lzma -l 0x1110000 -e 0x1110000"
fi
x_ "$cbfstool" "$1" $ccmd -f "$2" -n "$3" $lzma
}
# for release files:
mkcoreboottar()
{
$if_dry_build \
return 0
if [ "$target" = "$tree" ] || [ "$XBMK_RELEASE" != "y" ] || \
[ "$release" = "n" ]; then
return 0
fi
mkrom_tarball "bin/$target"
x_ "$mk" inject "bin/${relname}_${target}.tar.xz" nuke
}