fd75d2c2ee
The edk2 "build" utility natively supports building modules (that is, INF files) in parallel. The feature is not useful when building a single module (with the "-m" option), but it is useful for platform firmware builds (which include many modules). Add a function that determines the "-n" option argument for "build", from the MAKEFLAGS variable (i.e. based on the presence of a make job server). Signed-off-by: Laszlo Ersek <lersek@redhat.com> Reviewed-by: Philippe Mathieu-Daudé <philmd@redhat.com> Tested-by: Philippe Mathieu-Daudé <philmd@redhat.com> Reviewed-by: Michal Privoznik <mprivozn@redhat.com> Reviewed-by: Michael S. Tsirkin <mst@redhat.com> Tested-by: Igor Mammedov <imammedo@redhat.com> Reviewed-by: Igor Mammedov <imammedo@redhat.com>
254 lines
6.2 KiB
Bash
254 lines
6.2 KiB
Bash
# Shell script that defines functions for determining some environmental
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# characteristics for the edk2 "build" utility.
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#
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# This script is meant to be sourced, in a bash environment.
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#
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# Copyright (C) 2019 Red Hat, Inc.
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#
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# This program and the accompanying materials are licensed and made available
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# under the terms and conditions of the BSD License that accompanies this
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# distribution. The full text of the license may be found at
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# <http://opensource.org/licenses/bsd-license.php>.
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#
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# THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS, WITHOUT
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# WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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# Verify whether the QEMU system emulation target is supported by the UEFI spec
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# and edk2. Print a message to the standard error, and return with nonzero
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# status, if verification fails.
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#
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# Parameters:
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# $1: QEMU system emulation target
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qemu_edk2_verify_arch()
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{
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local emulation_target="$1"
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local program_name=$(basename -- "$0")
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case "$emulation_target" in
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(arm|aarch64|i386|x86_64)
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;;
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(*)
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printf '%s: unknown/unsupported QEMU system emulation target "%s"\n' \
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"$program_name" "$emulation_target" >&2
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return 1
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;;
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esac
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}
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# Translate the QEMU system emulation target to the edk2 architecture
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# identifier. Print the result to the standard output.
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#
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# Parameters:
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# $1: QEMU system emulation target
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qemu_edk2_get_arch()
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{
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local emulation_target="$1"
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if ! qemu_edk2_verify_arch "$emulation_target"; then
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return 1
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fi
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case "$emulation_target" in
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(arm)
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printf 'ARM\n'
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;;
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(aarch64)
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printf 'AARCH64\n'
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;;
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(i386)
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printf 'IA32\n'
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;;
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(x86_64)
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printf 'X64\n'
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;;
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esac
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}
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# Translate the QEMU system emulation target to the gcc cross-compilation
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# architecture identifier. Print the result to the standard output.
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#
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# Parameters:
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# $1: QEMU system emulation target
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qemu_edk2_get_gcc_arch()
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{
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local emulation_target="$1"
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if ! qemu_edk2_verify_arch "$emulation_target"; then
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return 1
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fi
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case "$emulation_target" in
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(arm|aarch64|x86_64)
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printf '%s\n' "$emulation_target"
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;;
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(i386)
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printf 'i686\n'
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;;
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esac
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}
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# Determine the gcc cross-compiler prefix (if any) for use with the edk2
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# toolchain. Print the result to the standard output.
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#
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# Parameters:
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# $1: QEMU system emulation target
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qemu_edk2_get_cross_prefix()
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{
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local emulation_target="$1"
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local gcc_arch
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local host_arch
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if ! gcc_arch=$(qemu_edk2_get_gcc_arch "$emulation_target"); then
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return 1
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fi
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host_arch=$(uname -m)
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if [ "$gcc_arch" == "$host_arch" ] ||
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( [ "$gcc_arch" == i686 ] && [ "$host_arch" == x86_64 ] ); then
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# no cross-compiler needed
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:
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else
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printf '%s-linux-gnu-\n' "$gcc_arch"
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fi
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}
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# Determine the edk2 toolchain tag for the QEMU system emulation target. Print
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# the result to the standard output. Print a message to the standard error, and
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# return with nonzero status, if the (conditional) gcc version check fails.
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#
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# Parameters:
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# $1: QEMU system emulation target
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qemu_edk2_get_toolchain()
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{
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local emulation_target="$1"
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local program_name=$(basename -- "$0")
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local cross_prefix
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local gcc_version
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if ! qemu_edk2_verify_arch "$emulation_target"; then
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return 1
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fi
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case "$emulation_target" in
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(arm|aarch64)
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printf 'GCC5\n'
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;;
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(i386|x86_64)
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if ! cross_prefix=$(qemu_edk2_get_cross_prefix "$emulation_target"); then
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return 1
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fi
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gcc_version=$("${cross_prefix}gcc" -v 2>&1 | tail -1 | awk '{print $3}')
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# Run "git-blame" on "OvmfPkg/build.sh" in edk2 for more information on
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# the mapping below.
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case "$gcc_version" in
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([1-3].*|4.[0-7].*)
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printf '%s: unsupported gcc version "%s"\n' \
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"$program_name" "$gcc_version" >&2
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return 1
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;;
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(4.8.*)
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printf 'GCC48\n'
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;;
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(4.9.*|6.[0-2].*)
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printf 'GCC49\n'
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;;
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(*)
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printf 'GCC5\n'
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;;
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esac
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;;
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esac
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}
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# Determine the name of the environment variable that exposes the
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# cross-compiler prefix to the edk2 "build" utility. Print the result to the
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# standard output.
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#
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# Parameters:
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# $1: QEMU system emulation target
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qemu_edk2_get_cross_prefix_var()
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{
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local emulation_target="$1"
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local edk2_toolchain
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local edk2_arch
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if ! edk2_toolchain=$(qemu_edk2_get_toolchain "$emulation_target"); then
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return 1
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fi
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case "$emulation_target" in
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(arm|aarch64)
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if ! edk2_arch=$(qemu_edk2_get_arch "$emulation_target"); then
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return 1
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fi
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printf '%s_%s_PREFIX\n' "$edk2_toolchain" "$edk2_arch"
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;;
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(i386|x86_64)
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printf '%s_BIN\n' "$edk2_toolchain"
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;;
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esac
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}
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# Set and export the environment variable(s) necessary for cross-compilation,
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# whenever needed by the edk2 "build" utility.
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#
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# Parameters:
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# $1: QEMU system emulation target
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qemu_edk2_set_cross_env()
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{
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local emulation_target="$1"
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local cross_prefix
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local cross_prefix_var
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if ! cross_prefix=$(qemu_edk2_get_cross_prefix "$emulation_target"); then
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return 1
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fi
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if [ -z "$cross_prefix" ]; then
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# Nothing to do.
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return 0
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fi
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if ! cross_prefix_var=$(qemu_edk2_get_cross_prefix_var \
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"$emulation_target"); then
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return 1
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fi
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eval "export $cross_prefix_var=\$cross_prefix"
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}
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# Determine the "-n" option argument (that is, the number of modules to build
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# in parallel) for the edk2 "build" utility. Print the result to the standard
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# output.
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#
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# Parameters:
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# $1: the value of the MAKEFLAGS variable
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qemu_edk2_get_thread_count()
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{
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local makeflags="$1"
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if [[ "$makeflags" == *--jobserver-auth=* ]] ||
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[[ "$makeflags" == *--jobserver-fds=* ]]; then
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# If there is a job server, allow the edk2 "build" utility to parallelize
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# as many module builds as there are logical CPUs in the system. The "make"
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# instances forked by "build" are supposed to limit themselves through the
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# job server. The zero value below causes the edk2 "build" utility to fetch
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# the logical CPU count with Python's multiprocessing.cpu_count() method.
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printf '0\n'
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else
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# Build a single module at a time.
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printf '1\n'
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fi
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}
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