mirror of
https://github.com/cloud-hypervisor/cloud-hypervisor.git
synced 2024-11-05 11:31:14 +00:00
27b5f8d7e3
Signed-off-by: Muminul Islam <muislam@microsoft.com>
232 lines
8.3 KiB
Bash
Executable File
232 lines
8.3 KiB
Bash
Executable File
#!/bin/bash
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set -x
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source $HOME/.cargo/env
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source $(dirname "$0")/test-util.sh
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export BUILD_TARGET=${BUILD_TARGET-aarch64-unknown-linux-gnu}
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WORKLOADS_DIR="$HOME/workloads"
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WORKLOADS_LOCK="$WORKLOADS_DIR/integration_test.lock"
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mkdir -p "$WORKLOADS_DIR"
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update_workloads() {
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cp scripts/sha1sums-aarch64 $WORKLOADS_DIR
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BIONIC_OS_IMAGE_DOWNLOAD_NAME="bionic-server-cloudimg-arm64.img"
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BIONIC_OS_IMAGE_DOWNLOAD_URL="https://cloudhypervisorstorage.blob.core.windows.net/images/$BIONIC_OS_IMAGE_DOWNLOAD_NAME"
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BIONIC_OS_DOWNLOAD_IMAGE="$WORKLOADS_DIR/$BIONIC_OS_IMAGE_DOWNLOAD_NAME"
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if [ ! -f "$BIONIC_OS_DOWNLOAD_IMAGE" ]; then
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pushd $WORKLOADS_DIR
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time wget --quiet $BIONIC_OS_IMAGE_DOWNLOAD_URL || exit 1
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popd
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fi
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BIONIC_OS_RAW_IMAGE_NAME="bionic-server-cloudimg-arm64.raw"
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BIONIC_OS_RAW_IMAGE="$WORKLOADS_DIR/$BIONIC_OS_RAW_IMAGE_NAME"
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if [ ! -f "$BIONIC_OS_RAW_IMAGE" ]; then
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pushd $WORKLOADS_DIR
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time qemu-img convert -p -f qcow2 -O raw $BIONIC_OS_IMAGE_DOWNLOAD_NAME $BIONIC_OS_RAW_IMAGE_NAME || exit 1
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popd
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fi
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# Convert the raw image to qcow2 image to remove compressed blocks from the disk. Therefore letting the
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# qcow2 format image can be directly used in the integration test.
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BIONIC_OS_QCOW2_IMAGE_UNCOMPRESSED_NAME="bionic-server-cloudimg-arm64.qcow2"
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BIONIC_OS_QCOW2_UNCOMPRESSED_IMAGE="$WORKLOADS_DIR/$BIONIC_OS_QCOW2_IMAGE_UNCOMPRESSED_NAME"
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if [ ! -f "$BIONIC_OS_QCOW2_UNCOMPRESSED_IMAGE" ]; then
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pushd $WORKLOADS_DIR
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time qemu-img convert -p -f raw -O qcow2 $BIONIC_OS_RAW_IMAGE_NAME $BIONIC_OS_QCOW2_UNCOMPRESSED_IMAGE || exit 1
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popd
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fi
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FOCAL_OS_RAW_IMAGE_NAME="focal-server-cloudimg-arm64-custom.raw"
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FOCAL_OS_RAW_IMAGE_DOWNLOAD_URL="https://cloudhypervisorstorage.blob.core.windows.net/images/$FOCAL_OS_RAW_IMAGE_NAME"
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FOCAL_OS_RAW_IMAGE="$WORKLOADS_DIR/$FOCAL_OS_RAW_IMAGE_NAME"
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if [ ! -f "$FOCAL_OS_RAW_IMAGE" ]; then
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pushd $WORKLOADS_DIR
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time wget --quiet $FOCAL_OS_RAW_IMAGE_DOWNLOAD_URL || exit 1
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popd
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fi
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# Convert the raw image to qcow2 image to remove compressed blocks from the disk. Therefore letting the
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# qcow2 format image can be directly used in the integration test.
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FOCAL_OS_QCOW2_IMAGE_UNCOMPRESSED_NAME="focal-server-cloudimg-arm64-custom.qcow2"
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FOCAL_OS_QCOW2_IMAGE_UNCOMPRESSED_DOWNLOAD_URL="https://cloudhypervisorstorage.blob.core.windows.net/images/$FOCAL_OS_QCOW2_IMAGE_UNCOMPRESSED_NAME"
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FOCAL_OS_QCOW2_UNCOMPRESSED_IMAGE="$WORKLOADS_DIR/$FOCAL_OS_QCOW2_IMAGE_UNCOMPRESSED_NAME"
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if [ ! -f "$FOCAL_OS_QCOW2_UNCOMPRESSED_IMAGE" ]; then
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pushd $WORKLOADS_DIR
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time wget --quiet $FOCAL_OS_QCOW2_IMAGE_UNCOMPRESSED_DOWNLOAD_URL || exit 1
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popd
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fi
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ALPINE_MINIROOTFS_URL="http://dl-cdn.alpinelinux.org/alpine/v3.11/releases/aarch64/alpine-minirootfs-3.11.3-aarch64.tar.gz"
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ALPINE_MINIROOTFS_TARBALL="$WORKLOADS_DIR/alpine-minirootfs-aarch64.tar.gz"
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if [ ! -f "$ALPINE_MINIROOTFS_TARBALL" ]; then
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pushd $WORKLOADS_DIR
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time wget --quiet $ALPINE_MINIROOTFS_URL -O $ALPINE_MINIROOTFS_TARBALL || exit 1
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popd
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fi
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ALPINE_INITRAMFS_IMAGE="$WORKLOADS_DIR/alpine_initramfs.img"
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if [ ! -f "$ALPINE_INITRAMFS_IMAGE" ]; then
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pushd $WORKLOADS_DIR
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mkdir alpine-minirootfs
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tar xf "$ALPINE_MINIROOTFS_TARBALL" -C alpine-minirootfs
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cat > alpine-minirootfs/init <<-EOF
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#! /bin/sh
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mount -t devtmpfs dev /dev
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echo \$TEST_STRING > /dev/console
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poweroff -f
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EOF
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chmod +x alpine-minirootfs/init
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cd alpine-minirootfs
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find . -print0 |
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cpio --null --create --verbose --owner root:root --format=newc > "$ALPINE_INITRAMFS_IMAGE"
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popd
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fi
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pushd $WORKLOADS_DIR
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sha1sum sha1sums-aarch64 --check
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if [ $? -ne 0 ]; then
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echo "sha1sum validation of images failed, remove invalid images to fix the issue."
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exit 1
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fi
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popd
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# Build custom kernel based on virtio-pmem and virtio-fs upstream patches
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PE_IMAGE="$WORKLOADS_DIR/Image"
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LINUX_CUSTOM_DIR="$WORKLOADS_DIR/linux-custom"
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build_custom_linux_kernel() {
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pushd $LINUX_CUSTOM_DIR
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time make -j `nproc`
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cp arch/arm64/boot/Image $WORKLOADS_DIR/Image || exit 1
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popd
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}
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SRCDIR=$PWD
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LINUX_CUSTOM_BRANCH="virtio-fs-virtio-iommu-5.8-rc4"
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# Check whether the local HEAD commit same as the remote HEAD or not. Remove the folder if they are different.
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if [ -d "$LINUX_CUSTOM_DIR" ]; then
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pushd $LINUX_CUSTOM_DIR
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git fetch
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LINUX_CUSTOM_LOCAL_HEAD=$(git rev-parse HEAD)
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LINUX_CUSTOM_REMOTE_HEAD=$(git rev-parse remotes/origin/$LINUX_CUSTOM_BRANCH)
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popd
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if [ "$LINUX_CUSTOM_LOCAL_HEAD" != "$LINUX_CUSTOM_REMOTE_HEAD" ]; then
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rm -rf "$LINUX_CUSTOM_DIR"
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fi
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fi
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if [ ! -d "$LINUX_CUSTOM_DIR" ]; then
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time git clone --depth 1 "https://github.com/cloud-hypervisor/linux.git" -b $LINUX_CUSTOM_BRANCH $LINUX_CUSTOM_DIR
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fi
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cp $SRCDIR/resources/linux-config-aarch64 $LINUX_CUSTOM_DIR/.config
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build_custom_linux_kernel
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VIRTIOFSD="$WORKLOADS_DIR/virtiofsd"
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QEMU_DIR="qemu_build"
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if [ ! -f "$VIRTIOFSD" ]; then
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pushd $WORKLOADS_DIR
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git clone --depth 1 "https://gitlab.com/virtio-fs/qemu.git" -b "qemu5.0-virtiofs-dax" $QEMU_DIR
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pushd $QEMU_DIR
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time ./configure --prefix=$PWD --target-list=aarch64-softmmu
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time make virtiofsd -j `nproc`
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cp virtiofsd $VIRTIOFSD || exit 1
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popd
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rm -rf $QEMU_DIR
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popd
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fi
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VIRTIOFSD_RS="$WORKLOADS_DIR/virtiofsd-rs"
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VIRTIOFSD_RS_DIR="virtiofsd_rs_build"
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if [ ! -f "$VIRTIOFSD_RS" ]; then
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pushd $WORKLOADS_DIR
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git clone --depth 1 "https://gitlab.com/virtio-fs/virtiofsd-rs.git" $VIRTIOFSD_RS_DIR
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pushd $VIRTIOFSD_RS_DIR
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time cargo build --release
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cp target/release/virtiofsd-rs $VIRTIOFSD_RS || exit 1
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popd
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rm -rf $VIRTIOFSD_RS_DIR
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popd
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fi
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BLK_IMAGE="$WORKLOADS_DIR/blk.img"
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MNT_DIR="mount_image"
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if [ ! -f "$BLK_IMAGE" ]; then
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pushd $WORKLOADS_DIR
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fallocate -l 16M $BLK_IMAGE
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mkfs.ext4 -j $BLK_IMAGE
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mkdir $MNT_DIR
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sudo mount -t ext4 $BLK_IMAGE $MNT_DIR
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sudo bash -c "echo bar > $MNT_DIR/foo" || exit 1
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sudo umount $BLK_IMAGE
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rm -r $MNT_DIR
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popd
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fi
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SHARED_DIR="$WORKLOADS_DIR/shared_dir"
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if [ ! -d "$SHARED_DIR" ]; then
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mkdir -p $SHARED_DIR
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echo "foo" > "$SHARED_DIR/file1"
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echo "bar" > "$SHARED_DIR/file3" || exit 1
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fi
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}
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process_common_args "$@"
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features_build="--no-default-features --features kvm "
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features_test="--no-default-features --features integration_tests,kvm"
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# lock the workloads folder to avoid parallel updating by different containers
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(
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echo "try to lock $WORKLOADS_DIR folder and update"
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flock -x 12 && update_workloads
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) 12>$WORKLOADS_LOCK
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# Check if there is any error in the execution of `update_workloads`.
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# If there is any error, then kill the shell. Otherwise the script will continue
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# running even if the `update_workloads` function was failed.
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RES=$?
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if [ $RES -ne 0 ]; then
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exit 1
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fi
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# Create tap interface without multiple queues support for vhost_user_net test.
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sudo ip tuntap add name vunet-tap0 mode tap
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# Create tap interface with multiple queues support for vhost_user_net test.
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sudo ip tuntap add name vunet-tap1 mode tap multi_queue
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BUILD_TARGET="aarch64-unknown-linux-${CH_LIBC}"
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CFLAGS=""
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TARGET_CC=""
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if [[ "${BUILD_TARGET}" == "aarch64-unknown-linux-musl" ]]; then
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TARGET_CC="musl-gcc"
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CFLAGS="-I /usr/include/aarch64-linux-musl/ -idirafter /usr/include/"
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fi
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cargo build --all --release $features_build --target $BUILD_TARGET
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strip target/$BUILD_TARGET/release/cloud-hypervisor
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strip target/$BUILD_TARGET/release/vhost_user_net
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strip target/$BUILD_TARGET/release/ch-remote
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# Enable KSM with some reasonable parameters so that it won't take too long
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# for the memory to be merged between two processes.
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sudo bash -c "echo 1000000 > /sys/kernel/mm/ksm/pages_to_scan"
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sudo bash -c "echo 10 > /sys/kernel/mm/ksm/sleep_millisecs"
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sudo bash -c "echo 1 > /sys/kernel/mm/ksm/run"
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export RUST_BACKTRACE=1
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time cargo test $features_test "tests::parallel::"
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RES=$?
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# Tear vhost_user_net test network down
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sudo ip link del vunet-tap0
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sudo ip link del vunet-tap1
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exit $RES
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