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https://git.hardenedbsd.org/hardenedbsd/HardenedBSD.git
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a5c0d55177
Ensure that we populate /etc/fstab for all the ufs images. Tweak sizes while I'm at it. Note: This file could use a good refactoring... or maybe a rewrite in python or lua. Sponsored by: Netflix Reviewed by: tsoome Differential Revision: https://reviews.freebsd.org/D38317
623 lines
19 KiB
Bash
623 lines
19 KiB
Bash
#!/bin/sh
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# STAND_ROOT is the root of a tree:
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# cache - Cached binaries that we have downloaded
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# trees - binary trees that we use to make image
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# trees/${ARCH}/$thing
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# images - bootable images that we use to test
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# images/${ARCH}/$thing
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# bios - cached bios images (as well as 'vars' files when we start testing
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# different booting scenarios in the precense / absence of variables).
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# scripts - generated scripts that uses images to run the tests.
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#
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# Strategy:
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# Download FreeBSD release isos, Linux kernels (for the kboot tests) and
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# other misc things. We use these to generate dozens of test images that we
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# use qemu-system-XXXX to boot. They all boot the same thing at the moment:
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# an /etc/rc script that prints the boot method, echos success and then
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# halts.
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# What version of FreeBSD to we snag the ISOs from to extract the binaries
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# we are testing
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FREEBSD_VERSION=13.1
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# eg https://download.freebsd.org/releases/amd64/amd64/ISO-IMAGES/13.1/FreeBSD-13.1-RELEASE-amd64-bootonly.iso.xz
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URLBASE="https://download.freebsd.org/releases"
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: ${STAND_ROOT:="${HOME}/stand-test-root"}
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CACHE=${STAND_ROOT}/cache
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TREES=${STAND_ROOT}/trees
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IMAGES=${STAND_ROOT}/images
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BIOS=${STAND_ROOT}/bios
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SCRIPTS=${STAND_ROOT}/scripts
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OVERRIDE=${STAND_ROOT}/override
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# hack -- I have extra junk in my qemu, but it's not needed to recreate things
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if [ $(whoami) = imp ]; then
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qemu_bin=/home/imp/git/qemu/00-build
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else
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qemu_bin=/usr/local/bin
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fi
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# All the architectures under test
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# Note: we can't yet do armv7 because we don't have a good iso for it and would
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# need root to extract the files.
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ARCHES="amd64:amd64 i386:i386 powerpc:powerpc powerpc:powerpc64 powerpc:powerpc64le powerpc:powerpcspe arm64:aarch64 riscv:riscv64"
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# The smallest FAT32 filesystem is 33292 KB
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espsize=33292
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SRCTOP=$(make -v SRCTOP)
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mkdir -p ${CACHE} ${TREES} ${IMAGES} ${BIOS}
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die()
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{
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echo Fatal Error: $*
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exit 1
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}
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ma_combo()
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{
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local m=$1
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local ma=$2
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local ma_combo="${m}"
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[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
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echo ${ma_combo}
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}
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fetch_one()
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{
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local m=$1
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local ma=$2
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local v=$3
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local flavor=$4
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local ma_combo=$(ma_combo $m $ma)
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local file="FreeBSD-${v}-RELEASE-${ma_combo}-${flavor}"
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local url="${URLBASE}/${m}/${ma}/ISO-IMAGES/${v}/${file}.xz"
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mkdir -p ${CACHE}
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[ -r ${CACHE}/${file} ] && echo "Using cached ${file}" && return
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cd ${CACHE}
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echo "Fetching ${url}"
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fetch ${url} || die "Can't fetch ${file} from ${url}"
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xz -d ${file}.xz || die "Can't uncompress ${file}.xz"
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cd ..
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}
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update_freebsd_img_cache()
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{
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local a m ma
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for a in $ARCHES; do
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m=${a%%:*}
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ma=${a##*:}
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fetch_one $m $ma ${FREEBSD_VERSION} bootonly.iso
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done
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fetch_one arm armv7 ${FREEBSD_VERSION} GENERICSD.img
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}
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make_minimal_freebsd_tree()
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{
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local m=$1
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local ma=$2
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local v=$3
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local flavor=$4
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local file d
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local ma_combo="${m}"
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[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
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file="FreeBSD-${v}-RELEASE-${ma_combo}-${flavor}"
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dir=${TREES}/${ma_combo}/freebsd
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rm -rf ${dir}
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# Make a super simple userland. It has just enough to print a santiy value,
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# then say test succeeded, and then halt the system. We assume that /bin/sh
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# has all the library prereqs for the rest...
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mkdir -p ${dir}
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# Make required dirs
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for d in boot/kernel boot/defaults boot/lua boot/loader.conf.d \
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sbin bin lib libexec etc dev; do
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mkdir -p ${dir}/${d}
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done
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# Pretend we don't have a separate /usr
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ln -s . ${dir}/usr
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# snag the binaries for my simple /etc/rc file
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tar -C ${dir} -xf ${CACHE}/$file sbin/reboot sbin/halt sbin/init bin/sh sbin/sysctl \
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lib/libncursesw.so.9 lib/libc.so.7 lib/libedit.so.8 libexec/ld-elf.so.1
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# My simple etc/rc
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cat > ${dir}/etc/rc <<EOF
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#!/bin/sh
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sysctl machdep.bootmethod
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echo "RC COMMAND RUNNING -- SUCCESS!!!!!"
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halt -p
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EOF
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chmod +x ${dir}/etc/rc
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# Check to see if we have overrides here... So we can insert our own kernel
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# instead of the one from the release.
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echo "CHECKING ${OVERRIDE}/${ma_combo}/boot"
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if [ -d ${OVERRIDE}/${ma_combo}/boot ]; then
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o=${OVERRIDE}/${ma_combo}
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for i in \
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boot/device.hints \
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boot/kernel/kernel \
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boot/kernel/acl_nfs4.ko \
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boot/kernel/cryptodev.ko \
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boot/kernel/zfs.ko \
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boot/kernel/geom_eli.ko; do
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[ -r $o/$i ] && echo Copying override $i && cp $o/$i ${dir}/$i
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done
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else
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# Copy the kernel (but not the boot loader, we'll add the one to test later)
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# This will take care of both UFS and ZFS boots as well as geli
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# Note: It's OK for device.hints to be missing. It's mostly for legacy platforms.
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tar -C ${dir} -xf ${CACHE}/$file \
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boot/device.hints \
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boot/kernel/kernel \
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boot/kernel/acl_nfs4.ko \
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boot/kernel/cryptodev.ko \
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boot/kernel/zfs.ko \
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boot/kernel/geom_eli.ko || true
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# XXX WHAT TO DO ABOUT LINKER HINTS -- PUNT FOR NOW
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# XXX also, ZFS not supported on 32-bit powerpc platforms
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fi
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# Setup some common settings for serial console, etc
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echo -h -D -S115200 > ${dir}/boot.config
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cat > ${dir}/boot/loader.conf <<EOF
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comconsole_speed=115200
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autoboot_delay=2
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zfs_load="YES"
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boot_verbose=yes
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kern.cfg.order="acpi,fdt"
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EOF
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}
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make_freebsd_minimal_trees()
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{
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for a in $ARCHES; do
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m=${a%%:*}
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ma=${a##*:}
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make_minimal_freebsd_tree $m $ma ${FREEBSD_VERSION} bootonly.iso
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done
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# Note: armv7 isn't done yet as its the odd-man out -- we need to extract things
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# in a special way, so punt for the moment
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}
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make_freebsd_test_trees()
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{
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for a in $ARCHES; do
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m=${a%%:*}
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ma=${a##*:}
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ma_combo="${m}"
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[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
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dir=${TREES}/${ma_combo}/test-stand
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mkdir -p ${dir}
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mtree -deUW -f ${SRCTOP}/etc/mtree/BSD.root.dist -p ${dir}
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echo "Creating tree for ${m}:${ma}"
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cd ${SRCTOP}/stand
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# Indirection needed because our build system is too complex
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# SHELL="make clean" make buildenv TARGET=${m} TARGET_ARCH=${ma}
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SHELL="make -j 100 all" make buildenv TARGET=${m} TARGET_ARCH=${ma}
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SHELL="make install DESTDIR=${dir} MK_MAN=no MK_INSTALL_AS_USER=yes WITHOUT_DEBUG_FILES=yes" \
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make buildenv TARGET=${m} TARGET_ARCH=${ma}
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rm -rf ${dir}/bin ${dir}/[ac-z]* # Don't care about anything here
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done
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}
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make_linux_initrds()
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{
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# At the moment, we have just two
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for a in amd64:amd64 arm64:aarch64; do
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m=${a%%:*}
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ma=${a##*:}
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ma_combo="${m}"
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[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
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dir=${TREES}/${ma_combo}/linuxboot
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dir2=${TREES}/${ma_combo}/test-stand
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dir3=${TREES}/${ma_combo}/freebsd
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initrd=${TREES}/${ma_combo}/initrd.img
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rm -rf ${dir}
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mkdir -p ${dir}
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cp ${dir2}/boot/loader.kboot ${dir}/init
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# Copy the boot loader
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tar -c -f - -C ${dir2} boot | tar -xf - -C ${dir}
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# Copy the boot kernel
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tar -c -f - -C ${dir3} boot | tar -xf - -C ${dir}
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(cd ${dir} ; find . | LC_ALL=C sort | cpio -o -H newc | gzip > ${initrd})
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done
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}
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make_linux_esps()
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{
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# At the moment, we have just two
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for a in amd64:amd64 arm64:aarch64; do
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m=${a%%:*}
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ma=${a##*:}
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ma_combo="${m}"
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[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
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dir=${TREES}/${ma_combo}/linuxboot-esp
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initrd=${TREES}/${ma_combo}/initrd.img
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mkdir -p ${dir}
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case ${ma} in
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amd64) bin=x64 cons="console=ttyS0,115200" ;;
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aarch64) bin=aa64 ;;
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esac
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mkdir -p ${dir}/efi/boot
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cp ${CACHE}/linux/linux${bin}.efi ${dir}
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cp ${CACHE}/linux/shell${bin}.efi ${dir}/efi/boot/boot${bin}.efi
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cat > ${dir}/startup.nsh <<EOF
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# Run linux
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# Tell it to run with out special initrd that then boot FreeBSD
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\linux${bin} ${cons} initrd=\initrd.img
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EOF
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cp $initrd ${dir}
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done
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}
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make_linuxboot_images()
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{
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# ESP variant: In this variant, amd64 and arm64 are both created more or
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# less the same way. Both are EFI + ACPI implementations
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for a in amd64:amd64 arm64:aarch64; do
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m=${a%%:*}
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ma=${a##*:}
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ma_combo="${m}"
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[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
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src=${TREES}/${ma_combo}/linuxboot-esp
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dir=${TREES}/${ma_combo}/freebsd
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dir2=${TREES}/${ma_combo}/test-stand
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esp=${IMAGES}/${ma_combo}/linuxboot-${ma_combo}.esp
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ufs=${IMAGES}/${ma_combo}/linuxboot-${ma_combo}.ufs
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zfs=${IMAGES}/${ma_combo}/linuxboot-${ma_combo}.zfs
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img=${IMAGES}/${ma_combo}/linuxboot-${ma_combo}.img
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img2=${IMAGES}/${ma_combo}/linuxboot-${ma_combo}-zfs.img
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pool="linuxboot"
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mkdir -p ${IMAGES}/${ma_combo}
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makefs -t msdos -o fat_type=32 -o sectors_per_cluster=1 \
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-o volume_label=EFISYS -s80m ${esp} ${src}
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makefs -t ffs -B little -s 200m -o label=root ${ufs} ${dir} ${dir2}
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mkimg -s gpt -p efi:=${esp} -p freebsd-ufs:=${ufs} -o ${img}
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makefs -t zfs -s 200m \
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-o poolname=${pool} -o bootfs=${pool} -o rootpath=/ \
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${zfs} ${dir} ${dir2}
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mkimg -s gpt \
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-p efi:=${esp} \
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-p freebsd-zfs:=${zfs} -o ${img2}
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rm -f ${esp} # Don't need to keep this around
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done
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# The raw variant, currently used only on arm64. It boots with the raw interface of qemu
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# for testing purposes. This means it makes a good test for the DTB variation, but not ACPI
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# since qemu doesn't currently provide that...
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for a in arm64:aarch64; do
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m=${a%%:*}
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ma=${a##*:}
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ma_combo="${m}"
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[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
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linux="${CACHE}/linux/vmlinux-${m}*"
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initrd=${TREES}/${ma_combo}/initrd.img
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img=${IMAGES}/${ma_combo}/linuxboot-${ma_combo}-raw
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cp ${linux} ${img}.kernel
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cp ${initrd} ${img}.initrd
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done
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}
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make_linuxboot_scripts()
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{
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# At the moment, we have just two -- and the images we've built so far are just
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# the hostfs boot. The boot off anything more complex isn't here.
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for a in amd64:amd64 arm64:aarch64; do
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m=${a%%:*}
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ma=${a##*:}
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ma_combo="${m}"
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[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
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# First off, update the edk firmware
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bios_code=${BIOS}/edk2-${ma_combo}-code.fd
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bios_vars=${BIOS}/edk2-${ma_combo}-vars.fd
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case ${ma} in
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amd64)
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if [ ${bios_code} -ot /usr/local/share/qemu/edk2-x86_64-code.fd ]; then
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cp /usr/local/share/qemu/edk2-x86_64-code.fd ${bios_code}
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# vars file works on both 32 and 64 bit x86
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cp /usr/local/share/qemu/edk2-i386-vars.fd ${bios_vars}
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fi
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;;
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aarch64)
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if [ ${bios_code} -ot /usr/local/share/qemu/edk2-aarch64-code.fd ]; then
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# aarch64 vars starts as an empty file
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dd if=/dev/zero of=${bios_code} bs=1M count=64
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dd if=/dev/zero of=${bios_vars} bs=1M count=64
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dd if=/usr/local/share/qemu/edk2-aarch64-code.fd of=${bios_code} conv=notrunc
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fi
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;;
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esac
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# Now make me a script
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img=${IMAGES}/${ma_combo}/linuxboot-${ma_combo}.img
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img2=${IMAGES}/${ma_combo}/linuxboot-${ma_combo}-raw
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img3=${IMAGES}/${ma_combo}/linuxboot-${ma_combo}-zfs.img
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out=${SCRIPTS}/${ma_combo}/linuxboot-test.sh
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out2=${SCRIPTS}/${ma_combo}/linuxboot-test-raw.sh
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out3=${SCRIPTS}/${ma_combo}/linuxboot-test-zfs.sh
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cd=${CACHE}/FreeBSD-13.1-RELEASE-arm64-aarch64-bootonly.iso
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mkdir -p ${SCRIPTS}/${ma_combo}
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case ${ma} in
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amd64)
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cat > ${out} <<EOF
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${qemu_bin}/qemu-system-x86_64 -nographic -m 512M \\
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-drive file=${img},if=none,id=drive0,cache=writeback,format=raw \\
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-device virtio-blk,drive=drive0,bootindex=0 \\
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-drive file=${bios_code},format=raw,if=pflash \\
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-drive file=${bios_vars},format=raw,if=pflash \\
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-monitor telnet::4444,server,nowait \\
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-serial stdio \$*
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EOF
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;;
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aarch64)
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# ESP version
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raw=${IMAGES}/${ma_combo}/freebsd-arm64-aarch64.img
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cat > ${out} <<EOF
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${qemu_bin}/qemu-system-aarch64 -nographic -machine virt,gic-version=3 -m 512M -smp 4 \\
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-cpu cortex-a57 \\
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-drive file=${img},if=none,id=drive0,cache=writeback \\
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-device virtio-blk,drive=drive0,bootindex=0 \\
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-drive file=${raw},if=none,id=drive1,cache=writeback \\
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-device nvme,serial=fboot,drive=drive1,bootindex=1 \\
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-drive file=${bios_code},format=raw,if=pflash \\
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-drive file=${bios_vars},format=raw,if=pflash \\
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-monitor telnet::4444,server,nowait \\
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-serial stdio \$*
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EOF
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# RAW version
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# Note: We have to use cortex-a57 for raw mode because the
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# kernel we use has issues with max.
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cat > ${out2} <<EOF
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${qemu_bin}/qemu-system-aarch64 -m 1024 -cpu cortex-a57 -M virt \\
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-kernel ${img2}.kernel -initrd ${img2}.initrd \\
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-append "console=ttyAMA0" \\
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-drive file=${cd},if=none,id=drive0,cache=writeback,format=raw \\
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-device virtio-blk,drive=drive0,bootindex=0 \\
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-nographic -monitor telnet::4444,server,nowait \\
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-serial stdio \$*
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EOF
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# ZFS version
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# Note: We have to use cortex-a57 for raw mode because the
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# kernel we use has issues with max.
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cat > ${out3} <<EOF
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${qemu_bin}/qemu-system-aarch64 -nographic -machine virt,gic-version=3 -m 512M -smp 4 \\
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-cpu cortex-a57 \\
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-drive file=${img3},if=none,id=drive0,cache=writeback \\
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-device virtio-blk,drive=drive0,bootindex=0 \\
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-drive file=${bios_code},format=raw,if=pflash \\
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-drive file=${bios_vars},format=raw,if=pflash \\
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-monitor telnet::4444,server,nowait \\
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-serial stdio \$*
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EOF
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;;
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esac
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done
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}
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make_freebsd_esps()
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{
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# At the moment, we have just three (armv7 could also be here too, but we're not doing that)
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for a in amd64:amd64 arm64:aarch64 riscv:riscv64; do
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m=${a%%:*}
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ma=${a##*:}
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ma_combo="${m}"
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[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
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dir=${TREES}/${ma_combo}/freebsd-esp
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dir2=${TREES}/${ma_combo}/test-stand
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rm -rf ${dir}
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mkdir -p ${dir}
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case ${ma} in
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amd64) bin=x64 ;;
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aarch64) bin=aa64 ;;
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esac
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mkdir -p ${dir}/efi/boot
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cp ${dir2}/boot/loader.efi ${dir}/efi/boot/boot${bin}.efi
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done
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}
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|
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make_freebsd_images()
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{
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# ESP variant: In this variant, riscv, amd64 and arm64 are created more or
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|
# less the same way. UEFI + ACPI implementations
|
|
for a in amd64:amd64 arm64:aarch64 riscv:riscv64; do
|
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m=${a%%:*}
|
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ma=${a##*:}
|
|
ma_combo="${m}"
|
|
[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
|
|
src=${TREES}/${ma_combo}/freebsd-esp
|
|
dir=${TREES}/${ma_combo}/freebsd
|
|
dir2=${TREES}/${ma_combo}/test-stand
|
|
esp=${IMAGES}/${ma_combo}/freebsd-${ma_combo}.esp
|
|
ufs=${IMAGES}/${ma_combo}/freebsd-${ma_combo}.ufs
|
|
img=${IMAGES}/${ma_combo}/freebsd-${ma_combo}.img
|
|
mkdir -p ${IMAGES}/${ma_combo}
|
|
mkdir -p ${dir2}/etc
|
|
cat > ${dir2}/etc/fstab <<EOF
|
|
/dev/ufs/root / ufs rw 1 1
|
|
EOF
|
|
makefs -t msdos -o fat_type=32 -o sectors_per_cluster=1 \
|
|
-o volume_label=EFISYS -s100m ${esp} ${src}
|
|
makefs -t ffs -B little -s 200m -o label=root ${ufs} ${dir} ${dir2}
|
|
mkimg -s gpt -p efi:=${esp} -p freebsd-ufs:=${ufs} -o ${img}
|
|
# rm -f ${esp} ${ufs} # Don't need to keep this around
|
|
done
|
|
|
|
set -x
|
|
|
|
# BIOS i386
|
|
a=i386:i386
|
|
m=${a%%:*}
|
|
ma=${a##*:}
|
|
ma_combo="${m}"
|
|
[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
|
|
dir=${TREES}/${ma_combo}/freebsd
|
|
dir2=${TREES}/${ma_combo}/test-stand
|
|
ufs=${IMAGES}/${ma_combo}/freebsd-${ma_combo}.ufs
|
|
img=${IMAGES}/${ma_combo}/freebsd-${ma_combo}.img
|
|
mkdir -p ${IMAGES}/${ma_combo}
|
|
mkdir -p ${dir2}/etc
|
|
cat > ${dir2}/etc/fstab <<EOF
|
|
/dev/ufs/root / ufs rw 1 1
|
|
EOF
|
|
makefs -t ffs -B little -s 200m \
|
|
-o label=root,version=2,bsize=32768,fsize=4096,density=16384 \
|
|
${ufs} ${dir} ${dir2}
|
|
mkimg -s gpt -b ${dir2}/boot/pmbr \
|
|
-p freebsd-boot:=${dir2}/boot/gptboot \
|
|
-p freebsd-ufs:=${ufs} \
|
|
-o ${img}
|
|
rm -f ${src}/etc/fstab
|
|
|
|
# PowerPC for 32-bit mac
|
|
a=powerpc:powerpc
|
|
m=${a%%:*}
|
|
ma=${a##*:}
|
|
ma_combo="${m}"
|
|
[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
|
|
dir=${TREES}/${ma_combo}/freebsd
|
|
dir2=${TREES}/${ma_combo}/test-stand
|
|
ufs=${IMAGES}/${ma_combo}/freebsd-${ma_combo}.ufs
|
|
img=${IMAGES}/${ma_combo}/freebsd-${ma_combo}.img
|
|
mkdir -p ${IMAGES}/${ma_combo}
|
|
mkdir -p ${dir2}/etc
|
|
cat > ${dir2}/etc/fstab <<EOF
|
|
/dev/ufs/root / ufs rw 1 1
|
|
EOF
|
|
makefs -t ffs -B big -s 200m \
|
|
-o label=root,version=2,bsize=32768,fsize=4096,density=16384 \
|
|
${ufs} ${dir} ${dir2}
|
|
mkimg -a 1 -s apm \
|
|
-p freebsd-boot:=${dir2}/boot/boot1.hfs \
|
|
-p freebsd-ufs:=${ufs} \
|
|
-o ${img}
|
|
|
|
set +x
|
|
}
|
|
|
|
make_freebsd_scripts()
|
|
{
|
|
# At the moment, we have just two
|
|
for a in amd64:amd64 arm64:aarch64; do
|
|
m=${a%%:*}
|
|
ma=${a##*:}
|
|
ma_combo="${m}"
|
|
[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
|
|
|
|
# First off, update the edk firmware
|
|
bios_code=${BIOS}/edk2-${ma_combo}-code.fd
|
|
bios_vars=${BIOS}/edk2-${ma_combo}-vars.fd
|
|
case ${ma} in
|
|
amd64)
|
|
if [ ${bios_code} -ot /usr/local/share/qemu/edk2-x86_64-code.fd ]; then
|
|
cp /usr/local/share/qemu/edk2-x86_64-code.fd ${bios_code}
|
|
# vars file works on both 32 and 64 bit x86
|
|
cp /usr/local/share/qemu/edk2-i386-vars.fd ${bios_vars}
|
|
fi
|
|
;;
|
|
aarch64)
|
|
if [ ${bios_code} -ot /usr/local/share/qemu/edk2-aarch64-code.fd ]; then
|
|
# aarch64 vars starts as an empty file
|
|
dd if=/dev/zero of=${bios_code} bs=1M count=64
|
|
dd if=/dev/zero of=${bios_vars} bs=1M count=64
|
|
dd if=/usr/local/share/qemu/edk2-aarch64-code.fd of=${bios_code} conv=notrunc
|
|
fi
|
|
;;
|
|
esac
|
|
|
|
# Now make me a script
|
|
img=${IMAGES}/${ma_combo}/freebsd-${ma_combo}.img
|
|
out=${SCRIPTS}/${ma_combo}/freebsd-test.sh
|
|
mkdir -p ${SCRIPTS}/${ma_combo}
|
|
case ${ma} in
|
|
amd64)
|
|
cat > ${out} <<EOF
|
|
${qemu_bin}/qemu-system-x86_64 -nographic -m 512M \\
|
|
-drive file=${img},if=none,id=drive0,cache=writeback,format=raw \\
|
|
-device virtio-blk,drive=drive0,bootindex=0 \\
|
|
-drive file=${bios_code},format=raw,if=pflash \\
|
|
-drive file=${bios_vars},format=raw,if=pflash \\
|
|
-monitor telnet::4444,server,nowait \\
|
|
-serial stdio \$*
|
|
EOF
|
|
;;
|
|
aarch64)
|
|
# ESP version
|
|
raw=${IMAGES}/${ma_combo}/nvme-test-empty.raw
|
|
cat > ${out} <<EOF
|
|
${qemu_bin}/qemu-system-aarch64 -nographic -machine virt,gic-version=3 -m 512M \\
|
|
-cpu cortex-a57 -drive file=${img},if=none,id=drive0,cache=writeback -smp 4 \\
|
|
-device virtio-blk,drive=drive0,bootindex=0 \\
|
|
-drive file=${bios_code},format=raw,if=pflash \\
|
|
-drive file=${bios_vars},format=raw,if=pflash \\
|
|
-drive file=${raw},if=none,id=drive1,cache=writeback,format=raw \\
|
|
-device nvme,serial=deadbeef,drive=drive1 \\
|
|
-monitor telnet::4444,server,nowait \\
|
|
-serial stdio \$*
|
|
EOF
|
|
;;
|
|
esac
|
|
done
|
|
|
|
set -x
|
|
a=powerpc:powerpc
|
|
m=${a%%:*}
|
|
ma=${a##*:}
|
|
ma_combo="${m}"
|
|
[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
|
|
img=${IMAGES}/${ma_combo}/freebsd-${ma_combo}.img
|
|
out=${SCRIPTS}/${ma_combo}/freebsd-test.sh
|
|
mkdir -p ${SCRIPTS}/${ma_combo}
|
|
cat > ${out} <<EOF
|
|
${qemu_bin}/qemu-system-ppc -m 1g -M mac99,via=pmu \\
|
|
-vga none -nographic \\
|
|
-drive file=${img},if=virtio \\
|
|
-prom-env "boot-device=/pci@f2000000/scsi/disk@0:,\\\\\\:tbxi" \\
|
|
-monitor telnet::4444,server,nowait \\
|
|
-serial stdio \$*
|
|
EOF
|
|
|
|
set -x
|
|
a=i386:i386
|
|
m=${a%%:*}
|
|
ma=${a##*:}
|
|
ma_combo="${m}"
|
|
[ "${m}" != "${ma}" ] && ma_combo="${m}-${ma}"
|
|
img=${IMAGES}/${ma_combo}/freebsd-${ma_combo}.img
|
|
out=${SCRIPTS}/${ma_combo}/freebsd-test.sh
|
|
mkdir -p ${SCRIPTS}/${ma_combo}
|
|
cat > ${out} <<EOF
|
|
${qemu_bin}/qemu-system-i386 -m 1g \\
|
|
-vga none -nographic \\
|
|
-drive file=${img},format=raw \\
|
|
-nographic \\
|
|
-monitor telnet::4444,server,nowait \\
|
|
-serial stdio \$*
|
|
EOF
|
|
}
|
|
|
|
# The smallest FAT32 filesystem is 33292 KB
|
|
espsize=33292
|
|
|
|
set -e
|
|
echo "src/stand test in ${STAND_ROOT}"
|
|
update_freebsd_img_cache
|
|
make_freebsd_minimal_trees
|
|
make_freebsd_test_trees
|
|
make_linux_initrds
|
|
make_linux_esps
|
|
make_freebsd_esps
|
|
make_freebsd_images
|
|
make_freebsd_scripts
|
|
make_linuxboot_images
|
|
make_linuxboot_scripts
|