b7423187a2
Check test flags before calling rdma_device_init if it's really needed, so that we don't call it when doing TCP tests. Change-Id: I2675a008cf84c7c4084cb83b44c279d2a497c3cb Signed-off-by: Karol Latecki <karol.latecki@intel.com> Reviewed-on: https://review.spdk.io/gerrit/c/spdk/spdk/+/6998 Tested-by: SPDK CI Jenkins <sys_sgci@intel.com> Reviewed-by: Maciej Wawryk <maciejx.wawryk@intel.com> Reviewed-by: Tomasz Zawadzki <tomasz.zawadzki@intel.com> Reviewed-by: Jim Harris <james.r.harris@intel.com>
350 lines
11 KiB
Bash
Executable File
350 lines
11 KiB
Bash
Executable File
#!/usr/bin/env bash
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rootdir=$(readlink -f $(dirname $0))
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# In autotest_common.sh all tests are disabled by default.
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# If the configuration of tests is not provided, no tests will be carried out.
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if [[ ! -f $1 ]]; then
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echo "ERROR: SPDK test configuration not specified"
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exit 1
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fi
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# always test with SPDK shared objects.
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export SPDK_LIB_DIR="$rootdir/build/lib"
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# Autotest.sh, as part of autorun.sh, runs in a different
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# shell process than autobuild.sh. Use helper file to pass
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# over env variable containing libraries paths.
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if [[ -e /tmp/spdk-ld-path ]]; then
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source /tmp/spdk-ld-path
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fi
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source "$1"
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source "$rootdir/test/common/autotest_common.sh"
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source "$rootdir/test/nvmf/common.sh"
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if [ $EUID -ne 0 ]; then
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echo "$0 must be run as root"
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exit 1
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fi
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if [ $(uname -s) = Linux ]; then
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old_core_pattern=$(< /proc/sys/kernel/core_pattern)
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mkdir -p "$output_dir/coredumps"
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# set core_pattern to a known value to avoid ABRT, systemd-coredump, etc.
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echo "|$rootdir/scripts/core-collector.sh %P %s %t $output_dir/coredumps" > /proc/sys/kernel/core_pattern
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echo 2 > /proc/sys/kernel/core_pipe_limit
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# Make sure that the hugepage state for our VM is fresh so we don't fail
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# hugepage allocation. Allow time for this action to complete.
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echo 1 > /proc/sys/vm/drop_caches
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sleep 3
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# make sure nbd (network block device) driver is loaded if it is available
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# this ensures that when tests need to use nbd, it will be fully initialized
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modprobe nbd || true
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if udevadm=$(type -P udevadm); then
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"$udevadm" monitor --property &> "$output_dir/udev.log" &
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udevadm_pid=$!
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fi
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fi
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trap "process_core; autotest_cleanup; exit 1" SIGINT SIGTERM EXIT
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timing_enter autotest
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create_test_list
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src=$(readlink -f $(dirname $0))
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out=$output_dir
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cd $src
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freebsd_update_contigmem_mod
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# lcov takes considerable time to process clang coverage.
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# Disabling lcov allow us to do this.
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# More information: https://github.com/spdk/spdk/issues/1693
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CC_TYPE=$(grep CC_TYPE mk/cc.mk)
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if hash lcov && ! [[ "$CC_TYPE" == *"clang"* ]]; then
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# setup output dir for unittest.sh
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export UT_COVERAGE=$out/ut_coverage
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export LCOV_OPTS="
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--rc lcov_branch_coverage=1
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--rc lcov_function_coverage=1
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--rc genhtml_branch_coverage=1
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--rc genhtml_function_coverage=1
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--rc genhtml_legend=1
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--rc geninfo_all_blocks=1
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"
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export LCOV="lcov $LCOV_OPTS --no-external"
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# Print lcov version to log
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$LCOV -v
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# zero out coverage data
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$LCOV -q -c -i -t "Baseline" -d $src -o $out/cov_base.info
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fi
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# Make sure the disks are clean (no leftover partition tables)
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timing_enter cleanup
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# Remove old domain socket pathname just in case
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rm -f /var/tmp/spdk*.sock
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# Load the kernel driver
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./scripts/setup.sh reset
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if [ $(uname -s) = Linux ]; then
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# OCSSD devices drivers don't support IO issues by kernel so
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# detect OCSSD devices and block them (unbind from any driver).
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# If test scripts want to use this device it needs to do this explicitly.
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#
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# If some OCSSD device is bound to other driver than nvme we won't be able to
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# discover if it is OCSSD or not so load the kernel driver first.
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while IFS= read -r -d '' dev; do
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# Send Open Channel 2.0 Geometry opcode "0xe2" - not supported by NVMe device.
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if nvme admin-passthru $dev --namespace-id=1 --data-len=4096 --opcode=0xe2 --read > /dev/null; then
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bdf="$(basename $(readlink -e /sys/class/nvme/${dev#/dev/}/device))"
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echo "INFO: blocking OCSSD device: $dev ($bdf)"
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PCI_BLOCKED+=" $bdf"
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OCSSD_PCI_DEVICES+=" $bdf"
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fi
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done < <(find /dev -maxdepth 1 -regex '/dev/nvme[0-9]+' -print0)
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export OCSSD_PCI_DEVICES
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# Now, bind blocked devices to pci-stub module. This will prevent
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# automatic grabbing these devices when we add device/vendor ID to
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# proper driver.
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if [[ -n "$PCI_BLOCKED" ]]; then
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# shellcheck disable=SC2097,SC2098
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PCI_ALLOWED="$PCI_BLOCKED" \
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PCI_BLOCKED="" \
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DRIVER_OVERRIDE="pci-stub" \
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./scripts/setup.sh
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# Export our blocked list so it will take effect during next setup.sh
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export PCI_BLOCKED
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fi
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run_test "setup.sh" "$rootdir/test/setup/test-setup.sh"
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fi
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./scripts/setup.sh status
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if [[ $(uname -s) == Linux ]]; then
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# Revert NVMe namespaces to default state
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nvme_namespace_revert
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fi
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# Delete all leftover lvols and gpt partitions
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# Matches both /dev/nvmeXnY on Linux and /dev/nvmeXnsY on BSD
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# Filter out nvme with partitions - the "p*" suffix
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for dev in $(ls /dev/nvme*n* | grep -v p || true); do
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dd if=/dev/zero of="$dev" bs=1M count=1
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done
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sync
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timing_exit cleanup
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# set up huge pages
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timing_enter afterboot
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./scripts/setup.sh
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timing_exit afterboot
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if [[ $SPDK_TEST_CRYPTO -eq 1 || $SPDK_TEST_REDUCE -eq 1 ]]; then
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# Make sure that memory is distributed across all NUMA nodes - by default, all goes to
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# node0, but if QAT devices are attached to a different node, all of their VFs will end
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# up under that node too and memory needs to be available there for the tests.
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CLEAR_HUGE=yes HUGE_EVEN_ALLOC=yes ./scripts/setup.sh
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./scripts/setup.sh status
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if [[ $SPDK_TEST_USE_IGB_UIO -eq 1 ]]; then
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./scripts/qat_setup.sh igb_uio
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else
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./scripts/qat_setup.sh
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fi
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fi
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# Revert existing OPAL to factory settings that may have been left from earlier failed tests.
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# This ensures we won't hit any unexpected failures due to NVMe SSDs being locked.
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opal_revert_cleanup
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#####################
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# Unit Tests
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#####################
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if [ $SPDK_TEST_UNITTEST -eq 1 ]; then
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run_test "unittest" ./test/unit/unittest.sh
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run_test "env" test/env/env.sh
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fi
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if [ $SPDK_RUN_FUNCTIONAL_TEST -eq 1 ]; then
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timing_enter lib
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run_test "rpc" test/rpc/rpc.sh
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run_test "rpc_client" test/rpc_client/rpc_client.sh
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run_test "json_config" ./test/json_config/json_config.sh
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run_test "alias_rpc" test/json_config/alias_rpc/alias_rpc.sh
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run_test "spdkcli_tcp" test/spdkcli/tcp.sh
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run_test "dpdk_mem_utility" test/dpdk_memory_utility/test_dpdk_mem_info.sh
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run_test "event" test/event/event.sh
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run_test "accel_engine" test/accel_engine/accel_engine.sh
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if [ $SPDK_TEST_BLOCKDEV -eq 1 ]; then
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run_test "blockdev_general" test/bdev/blockdev.sh
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run_test "bdev_raid" test/bdev/bdev_raid.sh
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run_test "bdevperf_config" test/bdev/bdevperf/test_config.sh
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if [[ $(uname -s) == Linux ]]; then
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run_test "spdk_dd" test/dd/dd.sh
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fi
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fi
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if [ $SPDK_TEST_JSON -eq 1 ]; then
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run_test "test_converter" test/config_converter/test_converter.sh
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fi
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if [ $SPDK_TEST_NVME -eq 1 ]; then
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run_test "blockdev_nvme" test/bdev/blockdev.sh "nvme"
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run_test "blockdev_nvme_gpt" test/bdev/blockdev.sh "gpt"
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run_test "nvme" test/nvme/nvme.sh
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if [[ $SPDK_TEST_NVME_CUSE -eq 1 ]]; then
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run_test "nvme_cuse" test/nvme/cuse/nvme_cuse.sh
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fi
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run_test "nvme_rpc" test/nvme/nvme_rpc.sh
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# Only test hotplug without ASAN enabled. Since if it is
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# enabled, it catches SEGV earlier than our handler which
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# breaks the hotplug logic.
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if [ $SPDK_RUN_ASAN -eq 0 ]; then
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run_test "nvme_hotplug" test/nvme/hotplug.sh root
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fi
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fi
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if [ $SPDK_TEST_IOAT -eq 1 ]; then
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run_test "ioat" test/ioat/ioat.sh
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fi
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timing_exit lib
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if [ $SPDK_TEST_ISCSI -eq 1 ]; then
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run_test "iscsi_tgt" ./test/iscsi_tgt/iscsi_tgt.sh
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run_test "spdkcli_iscsi" ./test/spdkcli/iscsi.sh
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# Run raid spdkcli test under iSCSI since blockdev tests run on systems that can't run spdkcli yet
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run_test "spdkcli_raid" test/spdkcli/raid.sh
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fi
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if [ $SPDK_TEST_BLOBFS -eq 1 ]; then
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run_test "rocksdb" ./test/blobfs/rocksdb/rocksdb.sh
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run_test "blobstore" ./test/blobstore/blobstore.sh
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run_test "blobfs" ./test/blobfs/blobfs.sh
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run_test "hello_blob" $SPDK_EXAMPLE_DIR/hello_blob \
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examples/blob/hello_world/hello_blob.json
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fi
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if [ $SPDK_TEST_NVMF -eq 1 ]; then
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# The NVMe-oF run test cases are split out like this so that the parser that compiles the
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# list of all tests can properly differentiate them. Please do not merge them into one line.
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if [ "$SPDK_TEST_NVMF_TRANSPORT" = "rdma" ]; then
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timing_enter rdma_setup
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rdma_device_init
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timing_exit rdma_setup
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run_test "nvmf_rdma" ./test/nvmf/nvmf.sh --transport=$SPDK_TEST_NVMF_TRANSPORT
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run_test "spdkcli_nvmf_rdma" ./test/spdkcli/nvmf.sh --transport=$SPDK_TEST_NVMF_TRANSPORT
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elif [ "$SPDK_TEST_NVMF_TRANSPORT" = "tcp" ]; then
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run_test "nvmf_tcp" ./test/nvmf/nvmf.sh --transport=$SPDK_TEST_NVMF_TRANSPORT
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run_test "spdkcli_nvmf_tcp" ./test/spdkcli/nvmf.sh --transport=$SPDK_TEST_NVMF_TRANSPORT
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run_test "nvmf_identify_passthru" test/nvmf/target/identify_passthru.sh --transport=$SPDK_TEST_NVMF_TRANSPORT
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run_test "nvmf_dif" test/nvmf/target/dif.sh
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elif [ "$SPDK_TEST_NVMF_TRANSPORT" = "fc" ]; then
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run_test "nvmf_fc" ./test/nvmf/nvmf.sh --transport=$SPDK_TEST_NVMF_TRANSPORT
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run_test "spdkcli_nvmf_fc" ./test/spdkcli/nvmf.sh
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else
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echo "unknown NVMe transport, please specify rdma, tcp, or fc."
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exit 1
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fi
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fi
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if [ $SPDK_TEST_VHOST -eq 1 ]; then
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run_test "vhost" ./test/vhost/vhost.sh
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fi
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if [ $SPDK_TEST_LVOL -eq 1 ]; then
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run_test "lvol" ./test/lvol/lvol.sh
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run_test "blob_io_wait" ./test/blobstore/blob_io_wait/blob_io_wait.sh
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fi
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if [ $SPDK_TEST_VHOST_INIT -eq 1 ]; then
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timing_enter vhost_initiator
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run_test "vhost_blockdev" ./test/vhost/initiator/blockdev.sh
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run_test "spdkcli_virtio" ./test/spdkcli/virtio.sh
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run_test "vhost_shared" ./test/vhost/shared/shared.sh
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run_test "vhost_fuzz" ./test/vhost/fuzz/fuzz.sh
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timing_exit vhost_initiator
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fi
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if [ $SPDK_TEST_PMDK -eq 1 ]; then
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run_test "blockdev_pmem" ./test/bdev/blockdev.sh "pmem"
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run_test "pmem" ./test/pmem/pmem.sh -x
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run_test "spdkcli_pmem" ./test/spdkcli/pmem.sh
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fi
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if [ $SPDK_TEST_RBD -eq 1 ]; then
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run_test "blockdev_rbd" ./test/bdev/blockdev.sh "rbd"
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run_test "spdkcli_rbd" ./test/spdkcli/rbd.sh
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fi
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if [ $SPDK_TEST_OCF -eq 1 ]; then
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run_test "ocf" ./test/ocf/ocf.sh
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fi
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if [ $SPDK_TEST_FTL -eq 1 ]; then
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run_test "ftl" ./test/ftl/ftl.sh
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fi
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if [ $SPDK_TEST_VMD -eq 1 ]; then
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run_test "vmd" ./test/vmd/vmd.sh
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fi
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if [ $SPDK_TEST_REDUCE -eq 1 ]; then
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run_test "compress_qat" ./test/compress/compress.sh "qat"
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run_test "compress_isal" ./test/compress/compress.sh "isal"
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fi
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if [ $SPDK_TEST_OPAL -eq 1 ]; then
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run_test "nvme_opal" ./test/nvme/nvme_opal.sh
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fi
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if [ $SPDK_TEST_CRYPTO -eq 1 ]; then
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run_test "blockdev_crypto_aesni" ./test/bdev/blockdev.sh "crypto_aesni"
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# Proceed with the test only if QAT devices are in place
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if [[ $(lspci -d:37c8) ]]; then
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run_test "blockdev_crypto_qat" ./test/bdev/blockdev.sh "crypto_qat"
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fi
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fi
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if [[ $SPDK_TEST_SCHEDULER -eq 1 ]]; then
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run_test "scheduler" ./test/scheduler/scheduler.sh
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fi
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fi
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timing_enter cleanup
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autotest_cleanup
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timing_exit cleanup
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timing_exit autotest
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chmod a+r $output_dir/timing.txt
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trap - SIGINT SIGTERM EXIT
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# catch any stray core files
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process_core
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if hash lcov && ! [[ "$CC_TYPE" == *"clang"* ]]; then
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# generate coverage data and combine with baseline
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$LCOV -q -c -d $src -t "$(hostname)" -o $out/cov_test.info
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$LCOV -q -a $out/cov_base.info -a $out/cov_test.info -o $out/cov_total.info
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$LCOV -q -r $out/cov_total.info '*/dpdk/*' -o $out/cov_total.info
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$LCOV -q -r $out/cov_total.info '/usr/*' -o $out/cov_total.info
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git clean -f "*.gcda"
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rm -f cov_base.info cov_test.info OLD_STDOUT OLD_STDERR
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fi
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