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ci: add CI test for systemd-sysinstall
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183
test/units/TEST-87-AUX-UTILS-VM.sysinstall.sh
Executable file
183
test/units/TEST-87-AUX-UTILS-VM.sysinstall.sh
Executable file
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#!/usr/bin/env bash
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# SPDX-License-Identifier: LGPL-2.1-or-later
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set -eux
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set -o pipefail
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if ! command -v systemd-sysinstall >/dev/null; then
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echo "systemd-sysinstall not found, skipping."
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exit 0
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fi
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if ! command -v systemd-repart >/dev/null; then
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echo "systemd-repart not found, skipping."
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exit 0
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fi
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if ! command -v bootctl >/dev/null; then
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echo "bootctl not found, skipping."
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exit 0
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fi
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if ! command -v ukify >/dev/null; then
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echo "ukify not found, skipping."
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exit 0
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fi
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if [[ ! -d /usr/lib/systemd/boot/efi ]]; then
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echo "sd-boot is not installed, skipping."
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exit 0
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fi
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# We need a real environment to fiddle with loop devices.
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if systemd-detect-virt -cq; then
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echo "Running in a container, skipping."
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exit 0
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fi
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# shellcheck source=test/units/util.sh
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. "$(dirname "$0")"/util.sh
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WORKDIR="$(mktemp --directory /tmp/test-sysinstall.XXXXXXXXXX)"
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LOOPDEV=""
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MOUNTED=0
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cleanup() {
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set +e
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if [[ "$MOUNTED" -eq 1 ]]; then
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umount -R "$WORKDIR/mnt"
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MOUNTED=0
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fi
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if [[ -n "$LOOPDEV" ]]; then
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systemd-dissect --detach "$LOOPDEV"
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LOOPDEV=""
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fi
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rm -rf "$WORKDIR"
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}
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trap cleanup EXIT
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# 1) Build a small fake "OS source" tree. systemd-sysinstall picks this up via
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# the repart.sysinstall.d definitions: CopyFiles= seeds the new root
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# partition with these files.
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SOURCE_ROOT="$WORKDIR/sourceroot"
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mkdir -p "$SOURCE_ROOT/usr/lib" "$SOURCE_ROOT/etc"
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cat >"$SOURCE_ROOT/usr/lib/os-release" <<'EOF'
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ID=testos
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NAME="Test OS"
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PRETTY_NAME="Test OS for systemd-sysinstall"
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VERSION_ID=1
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EOF
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ln -s ../usr/lib/os-release "$SOURCE_ROOT/etc/os-release"
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# 2) Build a minimal UKI. bootctl link only requires a valid PE with .osrel and
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# the systemd-stub SBAT marker, so the .linux/.initrd contents do not need
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# to be a real kernel.
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echo "fake-kernel" >"$WORKDIR/vmlinuz"
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echo "fake-initrd" >"$WORKDIR/initrd"
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ukify build \
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--linux "$WORKDIR/vmlinuz" \
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--initrd "$WORKDIR/initrd" \
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--os-release "@$SOURCE_ROOT/usr/lib/os-release" \
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--uname "1.2.3-testkernel" \
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--cmdline "quiet" \
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--output "$WORKDIR/testuki.efi"
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# 3) Build a sysinstall partition definition: a single ESP plus a root
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# partition seeded from the fake source tree.
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DEFS="$WORKDIR/sysinstall.d"
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mkdir -p "$DEFS"
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cat >"$DEFS/10-esp.conf" <<EOF
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[Partition]
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Type=esp
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Format=vfat
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SizeMinBytes=64M
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SizeMaxBytes=64M
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EOF
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cat >"$DEFS/20-root.conf" <<EOF
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[Partition]
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Type=root
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Format=ext4
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SizeMinBytes=128M
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CopyFiles=$SOURCE_ROOT:/
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EOF
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# 4) Allocate a sparse target file. systemd-sysinstall accepts a regular file
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# path here — systemd-repart and the in-process dissect logic transparently
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# handle the loop attach during install. We can't pre-attach the empty file
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# via systemd-dissect --attach since that requires a valid DDI.
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truncate -s 512M "$WORKDIR/target.img"
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# 5) Run the installer non-interactively against the target image. Also stash a
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# literal credential ('marker') so we can verify it ends up next to the UKI
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# and is referenced from the boot loader entry.
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CRED_VALUE="systemd-sysinstall test credential payload"
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systemd-sysinstall \
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--welcome=no \
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--chrome=no \
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--confirm=no \
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--summary=no \
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--erase=yes \
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--variables=no \
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--reboot=no \
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--mute-console=no \
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--copy-locale=no \
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--copy-keymap=no \
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--copy-timezone=no \
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--set-credential="marker:$CRED_VALUE" \
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--kernel="$WORKDIR/testuki.efi" \
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--definitions="$DEFS" \
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"$WORKDIR/target.img"
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# 6) Attach the freshly installed image as a loopback device for inspection.
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LOOPDEV="$(systemd-dissect --attach "$WORKDIR/target.img")"
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# Verify the resulting on-disk layout. The disk must now carry a GPT with at
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# least an ESP partition.
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sfdisk_dump="$(sfdisk --dump "$LOOPDEV")"
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assert_in "C12A7328-F81F-11D2-BA4B-00A0C93EC93B" "$sfdisk_dump"
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# 7) Mount the image read-only and verify the installed artifacts: an entry
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# file referencing the UKI on the ESP, the UKI itself, and the systemd-boot
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# binary.
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MNT="$WORKDIR/mnt"
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mkdir -p "$MNT"
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systemd-dissect --mount --read-only "$LOOPDEV" "$MNT"
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MOUNTED=1
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ESP="$MNT/efi"
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test -d "$ESP/loader/entries"
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# Exactly one entry should have been linked, and it should reference the UKI
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# we passed via --kernel=.
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ENTRY=$(find "$ESP/loader/entries" -maxdepth 1 -name '*.conf' -type f | head -n1)
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test -n "$ENTRY"
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grep -E "^uki /[^/]+/testuki\.efi$" "$ENTRY" >/dev/null
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# The UKI file referenced in the entry must exist on the ESP.
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UKI_PATH=$(awk '/^uki / { print $2 }' "$ENTRY")
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test -n "$UKI_PATH"
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test -f "$ESP$UKI_PATH"
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# bootctl install should have placed sd-boot on the ESP.
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find "$ESP/EFI/systemd" -type f -iname 'systemd-boot*.efi' | grep . >/dev/null
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# The credential we passed via --set-credential= must have been encrypted and
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# placed next to the UKI, and must be referenced as 'extra' from the entry.
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UKI_DIR="$(dirname "$ESP$UKI_PATH")"
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TOKEN_DIR="$(basename "$UKI_DIR")"
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test -s "$UKI_DIR/marker.cred"
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grep -E "^extra /$TOKEN_DIR/marker\.cred$" "$ENTRY" >/dev/null
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# Locale/keymap/timezone propagation is off, so those .cred files must NOT
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# exist on the ESP.
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test ! -e "$UKI_DIR/firstboot.locale.cred"
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test ! -e "$UKI_DIR/firstboot.keymap.cred"
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test ! -e "$UKI_DIR/firstboot.timezone.cred"
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# 8) The seeded files from the fake source tree must end up in the new root.
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test -f "$MNT/usr/lib/os-release"
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grep '^ID=testos$' "$MNT/usr/lib/os-release" >/dev/null
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