444 lines
13 KiB
Bash
Executable file
444 lines
13 KiB
Bash
Executable file
#!/bin/sh
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# Copyright 2023 Johannes Schauer Marin Rodrigues <josch@debian.org>
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# Copyright 2023 Helmut Grohne <helmut@subdivi.de>
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# SPDX-License-Identifier: MIT
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# We generally use single quotes to avoid variable expansion:
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# shellcheck disable=SC2016
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# Replacement for autopkgtest-build-qemu and vmdb2 for all architectures
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# supporting EFI booting (amd64, arm64, armhf, i386, riscv64).
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# For use as replacement for autopkgtest-build-qemu and vmdb2 on ppc64el which
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# neither supports extlinux nor efi booting there is an unmaintained script
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# which uses grub instead to boot:
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#
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# https://gitlab.mister-muffin.de/josch/mmdebstrap/src/commit/
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# e523741610a4ed8579642bfc755956f64c847ef3/mmdebstrap-autopkgtest-build-qemu
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: <<'POD2MAN'
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=head1 NAME
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mmdebstrap-autopkgtest-build-qemu - autopkgtest-build-qemu without vmdb2 but mmdebstrap and EFI boot
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=head1 SYNOPSIS
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B<mmdebstrap-autopkgtest-build-qemu> [I<OPTIONS>] B<--boot>=B<efi> I<RELEASE> I<IMAGE>
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=head1 DESCRIPTION
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B<mmdebstrap-autopkgtest-build-qemu> is a mostly compatible drop-in replacement
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for L<autopkgtest-build-qemu(1)> with two main differences: Firstly, it uses
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L<mmdebstrap(1)> instead of L<vmdb2(1)> and thus is able to create QEMU disk
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images without requiring superuser privileges. Secondly, it uses
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L<systemd-boot(7)> and thus only supports booting via EFI. For architectures
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for which L<autopkgtest-virt-qemu(1)> does not default to EFI booting you must
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pass B<--boot=efi> when invoking the autopkgtest virt backend.
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=head1 POSITIONAL PARAMETERS
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=over 8
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=item I<RELEASE>
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The release to download from the I<MIRROR>. This parameter is required.
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=item I<IMAGE>
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The file to write, in raw format. This parameter is required.
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=back
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=head1 OPTIONS
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=over 8
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=item B<--mirror>=I<MIRROR>
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Specify which distribution to install. It defaults to
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http://deb.debian.org/debian (i.e. Debian), but you can pass a mirror of any
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Debian derivative.
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=item B<--architecture>=I<ARCHITECTURE>
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Set the architecture for the virtual machine image, specified as a L<dpkg(1)>
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architecture. If omitted, the host architecture is assumed.
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B<--arch>=I<ARCH> is an alias for this option.
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=item B<--script>=I<SCRIPT>
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Specifies a user script that will be called with the root filesystem of the
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image as its first parameter. This script can them make any necesssary
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modifications to the root filesystem.
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The script must be a POSIX shell script, and should not depend on bash-specific
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features. This script will be executed inside a L<chroot(1)> call in the
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virtual machine root filesystem.
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=item B<--size>=I<SIZE>
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Specifies the image size for the virtual machine, defaulting to 25G.
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=item B<--apt-proxy>=I<PROXY>
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Specify an apt proxy to use in the virtual machine. By default, if you have
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an apt proxy configured on the host, the virtual machine will automatically use
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this, otherwise there is no default.
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=item B<--boot>=B<efi>, B<--efi>
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Select the way the generated image will expect to be booted. Unless you
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explicitly select --boot=efi, operation will fail.
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=item B<--keyring>=I<KEYRING>
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Passes an additional B<--keyring> parameter to B<mmdebstrap>.
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=back
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=head1 EXAMPLES
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Make sure, that F</path/to/debian-unstable.img> is a path that the unshared
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user has access to. This can be done by ensuring world-execute permissions on
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all path components or by creating the image in a world-readable directory like
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/tmp before copying it into its final location.
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$ mmdebstrap-autopkgtest-build-qemu --boot=efi --arch=amd64 unstable /path/to/debian-unstable.img
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[...]
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$ autopkgtest mypackage -- qemu --boot=efi --dpkg-architecture=amd64 /path/to/debian-unstable.img
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Make sure to add B<--boot=efi> to both the B<mmdebstrap-autopkgtest-build-qemu>
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as well as the B<autopkgtest-virt-qemu> invocation.
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=head1 SEE ALSO
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L<autopkgtest-build-qemu(1)>, L<autopkgtest-virt-qemu(1)>, L<mmdebstrap(1)>, L<autopkgtest(1)>
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=cut
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POD2MAN
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set -eu
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die() {
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echo "$*" 1>&2
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exit 1
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}
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usage() {
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die "usage: $0 [--architecture=|--apt-proxy=|--keyring=|--mirror=|--script=|--size=] --boot=efi <RELEASE> <IMAGE>"
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}
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usage_error() {
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echo "error: $*" 1>&2
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usage
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}
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BOOT=auto
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ARCHITECTURE=$(dpkg --print-architecture)
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IMAGE=
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MIRROR=
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KEYRING=
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RELEASE=
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SIZE=25G
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SCRIPT=
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# consumed by setup-testbed
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export AUTOPKGTEST_BUILD_QEMU=1
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opt_boot() {
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BOOT="$1"
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}
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opt_architecture() {
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ARCHITECTURE="$1"
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}
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opt_arch() {
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ARCHITECTURE="$1"
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}
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opt_apt_proxy() {
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# consumed by setup-testbed
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export AUTOPKGTEST_APT_PROXY="$1"
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# consumed by mmdebstrap
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if test "$1" = DIRECT; then
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unset http_proxy
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else
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export http_proxy="$1"
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fi
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}
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opt_keyring() {
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KEYRING="$1"
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}
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opt_mirror() {
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# consumed by setup-testbed
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export MIRROR="$1"
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}
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opt_script() {
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test -f "$1" || die "passed script '$1' does not refer to a file"
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SCRIPT="$1"
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}
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opt_size() {
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SIZE="$1"
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}
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positional=1
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positional_1() {
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# consumed by setup-testbed
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export RELEASE="$1"
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}
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positional_2() {
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IMAGE="$1"
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}
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positional_3() { opt_mirror "$@"; }
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positional_4() { opt_architecture "$@"; }
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positional_5() { opt_script "$@"; }
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positional_6() { opt_size "$@"; }
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positional_7() {
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die "too many positional options"
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}
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while test "$#" -gt 0; do
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case "$1" in
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--architecture=*|--arch=*|--boot=*|--keyring=*|--mirror=*|--script=*|--size=*)
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optname="${1%%=*}"
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"opt_${optname#--}" "${1#*=}"
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;;
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--apt-proxy=*)
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opt_apt_proxy "${1#*=}"
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;;
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--architecture|--arch|--boot|--keyring|--mirror|--script|--size)
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test "$#" -ge 2 || usage_error "missing argument for $1"
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"opt_${1#--}" "$2"
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shift
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;;
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--apt-proxy)
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test "$#" -ge 2 || usage_error "missing argument for $1"
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opt_apt_proxy "$2"
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shift
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;;
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--efi)
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opt_boot efi
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;;
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--*)
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usage_error "unrecognized argument $1"
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;;
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*)
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"positional_$positional" "$1"
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positional=$((positional + 1))
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;;
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esac
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shift
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done
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test -z "$RELEASE" -o -z "$IMAGE" && usage_error "missing positional arguments"
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test "$BOOT" = efi ||
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die "this tool does not support boot modes other than efi"
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case "$ARCHITECTURE" in
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amd64)
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EFIIMG=bootx64.efi
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QEMUARCH=x86_64
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VMFPKG=ovmf
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;;
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arm64)
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EFIIMG=bootaa64.efi
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QEMUARCH=aarch64
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VMFPKG=qemu-efi-aarch64
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;;
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armhf)
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EFIIMG=bootarm.efi
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QEMUARCH=arm
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VMFPKG=qemu-efi-arm
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;;
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i386)
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EFIIMG=bootia32.efi
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QEMUARCH=i386
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VMFPKG=ovmf-ia32
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;;
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riscv64)
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EFIIMG=bootriscv64.efi
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QEMUARCH=riscv64
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VMFPKG=
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;;
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*)
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die "unsupported architecture: $ARCHITECTURE"
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;;
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esac
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if test "$(dpkg-query -f '${db:Status-Status}' -W binutils-multiarch)" = installed; then
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GNU_PREFIX=
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else
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GNU_ARCHITECTURE="$(dpkg-architecture "-a$ARCHITECTURE" -qDEB_HOST_GNU_TYPE)"
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GNU_PREFIX="$GNU_ARCHITECTURE-"
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GNU_SUFFIX="-$(echo "$GNU_ARCHITECTURE" | tr _ -)"
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test "$(dpkg-query -f '${db:Status-Status}' -W "binutils$GNU_SUFFIX")" = installed ||
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die "please install binutils$GNU_SUFFIX or binutils-multiarch"
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fi
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arches=" $(dpkg --print-architecture) $(dpkg --print-foreign-architectures | tr '\n' ' ') "
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case $arches in
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*" $ARCHITECTURE "*) : ;; # nothing to do
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*) die "enable $ARCHITECTURE by running: sudo dpkg --add-architecture $ARCHITECTURE && sudo apt update" ;;
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esac
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for pkg in autopkgtest dosfstools e2fsprogs fdisk mount mtools passwd "systemd-boot-efi:$ARCHITECTURE" uidmap; do
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if [ "$(dpkg-query -f '${db:Status-Status}' -W "$pkg")" != installed ]; then
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die "please install $pkg"
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fi
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done
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BOOTSTUB="/usr/lib/systemd/boot/efi/linux${EFIIMG#boot}.stub"
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WORKDIR=
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cleanup() {
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test -n "$WORKDIR" && rm -Rf "$WORKDIR"
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}
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trap cleanup EXIT INT TERM QUIT
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WORKDIR=$(mktemp -d)
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FAT_OFFSET_SECTORS=$((1024*2))
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FAT_SIZE_SECTORS=$((1024*254))
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# The image is raw and not in qcow2 format because:
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# - faster run-time as the "qemu-image convert" step is not needed
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# - image can be used independent of qemu tooling
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# - modifying the image just with "mount" instead of requiring qemu-nbd
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# - sparse images make the file just as small as with qcow2
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# - trim support is more difficult on qcow2
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# - snapshots and overlays work just as well with raw images
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# - users who prefer qcow2 get to choose to run it themselves with their own
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# custom options like compression
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#
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# Make the image writeable to the first subgid. mmdebstrap will map this gid to
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# the root group. unshare instead will map the current gid to 0 and the first
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# subgid to 1. Therefore mmdebstrap will be able to write to the image.
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rm -f "$IMAGE"
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: >"$IMAGE"
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unshare -U -r --map-groups=auto chown 0:1 "$IMAGE"
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chmod 0660 "$IMAGE"
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# Make sure that the unshared user is able to access the file.
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# Alternatively to using /sbin/mkfs.ext4 could use --format=ext2 which would
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# add an extra copy operation and come with the limitations of ext2.
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# Another solution: https://github.com/tytso/e2fsprogs/pull/118
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if ! mmdebstrap --unshare-helper touch "$IMAGE"; then
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die "$IMAGE cannot be accessed by the unshared user -- either make all path components up to the image itself world-executable or place the image into a world-readable path like /tmp"
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fi
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set -- \
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--mode=unshare \
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--variant=important \
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--architecture="$ARCHITECTURE"
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test "$RELEASE" = jessie &&
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set -- "$@" --hook-dir=/usr/share/mmdebstrap/hooks/jessie-or-older
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set -- "$@" \
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"--include=init,linux-image-$ARCHITECTURE,python3" \
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'--customize-hook=echo host >"$1/etc/hostname"' \
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'--customize-hook=echo 127.0.0.1 localhost host >"$1/etc/hosts"' \
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'--customize-hook=passwd --root "$1" --delete root' \
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'--customize-hook=useradd --root "$1" --home-dir /home/user --create-home user' \
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'--customize-hook=passwd --root "$1" --delete user' \
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'--customize-hook=/usr/share/autopkgtest/setup-commands/setup-testbed'
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if test -n "$SCRIPT"; then
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set -- "$@" \
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"--customize-hook=upload '$SCRIPT' /userscript" \
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"--chrooted-customize-hook=sh /userscript" \
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'--customize-hook=rm -f "$1/userscript"'
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fi
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EXT4_OFFSET_BYTES=$(( (FAT_OFFSET_SECTORS + FAT_SIZE_SECTORS) * 512))
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EXT4_OPTIONS="offset=$EXT4_OFFSET_BYTES,assume_storage_prezeroed=1"
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set -- "$@" \
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"--customize-hook=download vmlinuz '$WORKDIR/kernel'" \
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"--customize-hook=download initrd.img '$WORKDIR/initrd'" \
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'--customize-hook=mount --bind "$1" "$1/mnt"' \
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'--customize-hook=mount --bind "$1/mnt/mnt" "$1/mnt/dev"' \
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'--customize-hook=/sbin/mkfs.ext4 -d "$1/mnt" -L autopkgtestvm -E '"'$EXT4_OPTIONS' '$IMAGE' '$SIZE'" \
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'--customize-hook=umount --lazy "$1/mnt"' \
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"$RELEASE" \
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/dev/null
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test -n "$MIRROR" && set -- "$@" "$MIRROR"
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test -n "$KEYRING" && set -- "$@" "--keyring=$KEYRING"
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echo "mmdebstrap $*"
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mmdebstrap "$@" || die "mmdebstrap failed"
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unshare -U -r --map-groups=auto chown 0:0 "$IMAGE"
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chmod "$(printf %o "$(( 0666 & ~0$(umask) ))")" "$IMAGE"
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echo "root=LABEL=autopkgtestvm rw console=ttyS0" > "$WORKDIR/cmdline"
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align_size() {
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echo "$(( ($1) + ($2) - 1 - (($1) + ($2) - 1) % ($2) ))"
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}
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alignment=$("${GNU_PREFIX}objdump" -p "$BOOTSTUB" | sed 's/^SectionAlignment\s\+\([0-9]\)/0x/;t;d')
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test -z "$alignment" && die "failed to discover the alignment of the efi stub"
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echo "determined efi vma alignment as $alignment"
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test "$RELEASE" = jessie -a "$((alignment))" -lt "$((1024*1024))" && {
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echo "increasing efi vma alignment for jessie"
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alignment=$((1024*1024))
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}
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lastoffset=0
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# shellcheck disable=SC2034 # unused variables serve documentation
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lastoffset="$("${GNU_PREFIX}objdump" -h "$BOOTSTUB" |
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while read -r idx name size vma lma fileoff algn behind; do
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test -z "$behind" -a "${algn#"2**"}" != "$algn" || continue
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offset=$(( 0x$vma + 0x$size ))
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test "$offset" -gt "$lastoffset" || continue
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lastoffset="$offset"
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echo "$lastoffset"
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done | tail -n1)"
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lastoffset=$(align_size "$lastoffset" "$alignment")
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echo "determined minimum efi vma offset as $lastoffset"
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cmdline_size="$(stat -Lc%s "$WORKDIR/cmdline")"
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cmdline_size="$(align_size "$cmdline_size" "$alignment")"
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linux_size="$(stat -Lc%s "$WORKDIR/kernel")"
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linux_size="$(align_size "$linux_size" "$alignment")"
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cmdline_offset="$lastoffset"
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linux_offset=$((cmdline_offset + cmdline_size))
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initrd_offset=$((linux_offset + linux_size))
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SOURCE_DATE_EPOCH=0 \
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"${GNU_PREFIX}objcopy" \
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--enable-deterministic-archives \
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--add-section .cmdline="$WORKDIR/cmdline" \
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--change-section-vma .cmdline="$(printf 0x%x "$cmdline_offset")" \
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--add-section .linux="$WORKDIR/kernel" \
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--change-section-vma .linux="$(printf 0x%x "$linux_offset")" \
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--add-section .initrd="$WORKDIR/initrd" \
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--change-section-vma .initrd="$(printf 0x%x "$initrd_offset")" \
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"$BOOTSTUB" "$WORKDIR/efiimg"
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rm -f "$WORKDIR/kernel" "$WORKDIR/initrd"
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truncate -s "$((FAT_SIZE_SECTORS * 512))" "$WORKDIR/fat"
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/sbin/mkfs.fat -F 32 --invariant "$WORKDIR/fat"
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mmd -i "$WORKDIR/fat" EFI EFI/BOOT
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mcopy -i "$WORKDIR/fat" "$WORKDIR/efiimg" "::EFI/BOOT/$EFIIMG"
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rm -f "$WORKDIR/efiimg"
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truncate --size="+$((34*512))" "$IMAGE"
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/sbin/sfdisk "$IMAGE" <<EOF
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label: gpt
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unit: sectors
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start=$FAT_OFFSET_SECTORS, size=$FAT_SIZE_SECTORS, type=C12A7328-F81F-11D2-BA4B-00A0C93EC93B
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start=$((FAT_OFFSET_SECTORS + FAT_SIZE_SECTORS)), type=0FC63DAF-8483-4772-8E79-3D69D8477DE4
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EOF
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dd if="$WORKDIR/fat" of="$IMAGE" conv=notrunc,sparse bs=512 "seek=$FAT_OFFSET_SECTORS" status=none
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if test "$(dpkg --print-architecture)" != "$ARCHITECTURE" && test "$(dpkg-query -f '${db:Status-Status}' -W "qemu-system-$QEMUARCH")" != installed; then
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echo "I: you might need to install a package providing qemu-system-$QEMUARCH to use this image with autopkgtest-virt-qemu" >&2
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fi
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if test -n "$VMFPKG" && test "$(dpkg-query -f '${db:Status-Status}' -W "$VMFPKG")" != installed; then
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echo "I: you might need to install $VMFPKG to use this image with autopkgtest-virt-qemu" >&2
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fi
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echo "I: don't forget to pass --boot=efi when running autopkgtest-virt-qemu with this image" >&2
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