85bedfac7a
Existing raid UT already checks the logic in the raid unmap code to intelligently send IOs to member disks. The additional value of bdev_raid.sh is in doing a real data validation on writes as well as confirmation that unmaps really result in 0's following the action. Both of these seem worth keeping however with the UT in place to check the logic they are a better fit for nightly testing. Change-Id: I1a758f4681d77dbddd4185162b0dd1f46525cabd Signed-off-by: paul luse <paul.e.luse@intel.com> Reviewed-on: https://review.gerrithub.io/c/spdk/spdk/+/454668 Tested-by: SPDK CI Jenkins <sys_sgci@intel.com> Reviewed-by: Jim Harris <james.r.harris@intel.com> Reviewed-by: Shuhei Matsumoto <shuhei.matsumoto.xt@hitachi.com>
275 lines
7.1 KiB
Bash
Executable File
275 lines
7.1 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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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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set -xe
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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 [ $(uname -s) = Linux ]; then
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# set core_pattern to a known value to avoid ABRT, systemd-coredump, etc.
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echo "core" > /proc/sys/kernel/core_pattern
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# make sure nbd (network block device) driver is loaded if it is available
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# this ensures that when tests need to use nbd, it will be fully initialized
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modprobe nbd || true
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fi
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trap "process_core; autotest_cleanup; exit 1" SIGINT SIGTERM EXIT
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timing_enter autotest
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create_test_list
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src=$(readlink -f $(dirname $0))
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out=$PWD
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cd $src
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./scripts/setup.sh status
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freebsd_update_contigmem_mod
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if hash lcov; then
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# setup output dir for unittest.sh
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export UT_COVERAGE=$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 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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# Let the kernel discover any filesystems or partitions
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sleep 10
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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 blacklist 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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for dev in $(find /dev -maxdepth 1 -regex '/dev/nvme[0-9]+'); 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: blacklisting OCSSD device: $dev ($bdf)"
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PCI_BLACKLIST+=" $bdf"
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OCSSD_PCI_DEVICES+=" $bdf"
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fi
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done
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export OCSSD_PCI_DEVICES
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# Now, bind blacklisted devices to pci-stub module. This will prevent
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# automatic grabbing these devices when we add device/vendor ID to
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# proper driver.
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if [[ -n "$PCI_BLACKLIST" ]]; then
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PCI_WHITELIST="$PCI_BLACKLIST" \
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PCI_BLACKLIST="" \
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DRIVER_OVERRIDE="pci-stub" \
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./scripts/setup.sh
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# Export our blacklist so it will take effect during next setup.sh
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export PCI_BLACKLIST
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fi
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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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if [ $(uname -s) = Linux ]; then
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# Load RAM disk driver if available
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modprobe brd || true
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fi
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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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timing_enter nvmf_setup
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rdma_device_init
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timing_exit nvmf_setup
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if [[ $SPDK_TEST_CRYPTO -eq 1 || $SPDK_TEST_REDUCE -eq 1 ]]; then
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if grep -q '#define SPDK_CONFIG_IGB_UIO_DRIVER 1' $rootdir/include/spdk/config.h; 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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#####################
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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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timing_enter unittest
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run_test suite ./test/unit/unittest.sh
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report_test_completion "unittest"
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timing_exit unittest
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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 suite test/env/env.sh
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run_test suite test/rpc_client/rpc_client.sh
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run_test suite ./test/json_config/json_config.sh
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if [ $SPDK_TEST_BLOCKDEV -eq 1 ]; then
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run_test suite test/bdev/blockdev.sh
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if [[ $RUN_NIGHTLY -eq 1 ]]; then
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run_test suite test/bdev/bdev_raid.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 suite test/config_converter/test_converter.sh
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fi
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if [ $SPDK_TEST_EVENT -eq 1 ]; then
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run_test suite test/event/event.sh
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fi
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if [ $SPDK_TEST_NVME -eq 1 ]; then
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run_test suite test/nvme/nvme.sh
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if [ $SPDK_TEST_NVME_CLI -eq 1 ]; then
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run_test suite test/nvme/spdk_nvme_cli.sh
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fi
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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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# Temporary workaround for issue #542, annotated for no VM image.
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#if [ $SPDK_RUN_ASAN -eq 0 ]; then
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# run_test suite test/nvme/hotplug.sh intel
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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 suite 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 suite ./test/iscsi_tgt/iscsi_tgt.sh posix
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run_test suite ./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 suite 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 suite ./test/blobfs/rocksdb/rocksdb.sh
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run_test suite ./test/blobstore/blobstore.sh
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fi
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if [ $SPDK_TEST_NVMF -eq 1 ]; then
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run_test suite ./test/nvmf/nvmf.sh
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run_test suite ./test/spdkcli/nvmf.sh
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fi
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if [ $SPDK_TEST_VHOST -eq 1 ]; then
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run_test suite ./test/vhost/vhost.sh
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report_test_completion "vhost"
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fi
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if [ $SPDK_TEST_LVOL -eq 1 ]; then
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timing_enter lvol
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run_test suite ./test/lvol/lvol.sh --test-cases=all
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run_test suite ./test/blobstore/blob_io_wait/blob_io_wait.sh
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report_test_completion "lvol"
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timing_exit lvol
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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 suite ./test/vhost/initiator/blockdev.sh
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run_test suite ./test/spdkcli/virtio.sh
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run_test suite ./test/vhost/shared/shared.sh
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report_test_completion "vhost_initiator"
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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 suite ./test/pmem/pmem.sh -x
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run_test suite ./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 suite ./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 suite ./test/ocf/ocf.sh
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fi
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if [ $SPDK_TEST_BDEV_FTL -eq 1 ]; then
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run_test suite ./test/ftl/ftl.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 $output_dir/timing.txt
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trap - SIGINT SIGTERM EXIT
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# catch any stray core files
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process_core
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if hash lcov; then
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# generate coverage data and combine with baseline
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$LCOV -q -c -d $src -t "$(hostname)" -o cov_test.info
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$LCOV -q -a cov_base.info -a 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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