Previously, we conditionally ran one test in per patch, and another in nightly tests. However, the only difference between these tests was the configuration options sent to FIO. All other tests in the build pool follow a pattern where they simply change the options and run the same test in nightly and per-patch. Following that pattern makes it easier to set a specific list of jobs that must be run before a tet run is considered complete. Change-Id: I6b2f49114155fdfa1d1e07faf45f03e64572eeb8 Signed-off-by: Seth Howell <seth.howell@intel.com> Reviewed-on: https://review.gerrithub.io/c/spdk/spdk/+/481908 Tested-by: SPDK CI Jenkins <sys_sgci@intel.com> Reviewed-by: Jim Harris <james.r.harris@intel.com> Reviewed-by: Tomasz Zawadzki <tomasz.zawadzki@intel.com> Reviewed-by: Karol Latecki <karol.latecki@intel.com>
288 lines
8.7 KiB
Bash
Executable File
288 lines
8.7 KiB
Bash
Executable File
#!/usr/bin/env bash
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testdir=$(readlink -f $(dirname $0))
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rootdir=$(readlink -f $testdir/../..)
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source $rootdir/test/common/autotest_common.sh
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source $testdir/nbd_common.sh
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rpc_py="$rootdir/scripts/rpc.py"
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function bdev_bounds() {
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$testdir/bdevio/bdevio -w -s $PRE_RESERVED_MEM -c $testdir/bdev.conf &
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bdevio_pid=$!
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trap 'killprocess $bdevio_pid; exit 1' SIGINT SIGTERM EXIT
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echo "Process bdevio pid: $bdevio_pid"
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waitforlisten $bdevio_pid
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$testdir/bdevio/tests.py perform_tests
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killprocess $bdevio_pid
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trap - SIGINT SIGTERM EXIT
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}
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function nbd_function_test() {
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if [ $(uname -s) = Linux ] && modprobe -n nbd; then
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local rpc_server=/var/tmp/spdk-nbd.sock
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local conf=$1
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local nbd_num=6
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local nbd_all=($(ls /dev/nbd* | grep -v p))
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local bdev_all=($bdevs_name)
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local nbd_list=(${nbd_all[@]:0:$nbd_num})
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local bdev_list=(${bdev_all[@]:0:$nbd_num})
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if [ ! -e $conf ]; then
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return 1
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fi
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modprobe nbd
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$rootdir/test/app/bdev_svc/bdev_svc -r $rpc_server -i 0 -c ${conf} &
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nbd_pid=$!
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trap 'killprocess $nbd_pid; exit 1' SIGINT SIGTERM EXIT
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echo "Process nbd pid: $nbd_pid"
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waitforlisten $nbd_pid $rpc_server
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nbd_rpc_start_stop_verify $rpc_server "${bdev_list[*]}"
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nbd_rpc_data_verify $rpc_server "${bdev_list[*]}" "${nbd_list[*]}"
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$rpc_py -s $rpc_server bdev_passthru_delete TestPT
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killprocess $nbd_pid
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trap - SIGINT SIGTERM EXIT
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fi
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return 0
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}
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function fio_test_suite() {
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# Generate the fio config file given the list of all unclaimed bdevs
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fio_config_gen $testdir/bdev.fio verify AIO
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for b in $(echo $bdevs | jq -r '.name'); do
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fio_config_add_job $testdir/bdev.fio $b
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done
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if [ $RUN_NIGHTLY_FAILING -eq 0 ]; then
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local fio_params="--ioengine=spdk_bdev --iodepth=8 --bs=4k --runtime=10 $testdir/bdev.fio --spdk_conf=./test/bdev/bdev.conf"
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else
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# Use size 192KB which both exceeds typical 128KB max NVMe I/O
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# size and will cross 128KB Intel DC P3700 stripe boundaries.
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local fio_params="--ioengine=spdk_bdev --iodepth=128 --bs=192k --runtime=100 $testdir/bdev.fio --spdk_conf=./test/bdev/bdev.conf"
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fi
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run_test "bdev_fio_rw_verify" fio_bdev $fio_params --spdk_mem=$PRE_RESERVED_MEM \
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--output=$output_dir/blockdev_fio_verify.txt
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rm -f ./*.state
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rm -f $testdir/bdev.fio
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# Generate the fio config file given the list of all unclaimed bdevs that support unmap
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fio_config_gen $testdir/bdev.fio trim
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for b in $(echo $bdevs | jq -r 'select(.supported_io_types.unmap == true) | .name'); do
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fio_config_add_job $testdir/bdev.fio $b
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done
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run_test "bdev_fio_trim" fio_bdev $fio_params --output=$output_dir/blockdev_trim.txt
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rm -f ./*.state
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rm -f $testdir/bdev.fio
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}
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function get_io_result() {
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local limit_type=$1
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local qos_dev=$2
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io_result=$($rpc_py bdev_get_iostat -b $qos_dev)
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if [ $limit_type = IOPS ]; then
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io_result_before=$(echo $io_result | jq -r '.bdevs[0].num_read_ops')
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else
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io_result_before=$(echo $io_result | jq -r '.bdevs[0].bytes_read')
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fi
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tick_rate=$(echo $io_result | jq -r '.tick_rate')
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ticks_before=$(echo $io_result | jq -r '.ticks')
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sleep $QOS_RUN_TIME
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io_result=$($rpc_py bdev_get_iostat -b $qos_dev)
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if [ $limit_type = IOPS ]; then
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io_result_after=$(echo $io_result | jq -r '.bdevs[0].num_read_ops')
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else
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io_result_after=$(echo $io_result | jq -r '.bdevs[0].bytes_read')
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fi
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ticks_after=$(echo $io_result | jq -r '.ticks')
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if [ $limit_type = IOPS ]; then
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io_result_diff=$((io_result_after-io_result_before))
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else
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# To avoid potential overflow as throughput is in byte
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# Return throughput in kilobyte
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io_result_diff=$(((io_result_after-io_result_before)/1024))
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fi
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echo $(((io_result_diff*tick_rate)/(ticks_after-ticks_before)))
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}
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function run_qos_test() {
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local qos_limit=$1
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local qos_result=0
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qos_result=$(get_io_result $2 $3)
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if [ $2 = BANDWIDTH ]; then
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qos_limit=$((qos_limit*1024))
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fi
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lower_limit=$((qos_limit*9/10))
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upper_limit=$((qos_limit*11/10))
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# QoS realization is related with bytes transfered. It currently has some variation.
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if [ $qos_result -lt $lower_limit ] || [ $qos_result -gt $upper_limit ]; then
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echo "Failed to limit the io read rate of NULL bdev by qos"
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$rpc_py bdev_null_delete $QOS_DEV_1
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$rpc_py bdev_null_delete $QOS_DEV_2
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killprocess $QOS_PID
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exit 1
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fi
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}
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function qos_function_test() {
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local qos_lower_iops_limit=1000
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local qos_lower_bw_limit=2
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local io_result=0
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local iops_limit=0
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local bw_limit=0
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io_result=$(get_io_result IOPS $QOS_DEV_1)
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# Set the IOPS limit as one quarter of the measured performance without QoS
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iops_limit=$(((io_result/4)/qos_lower_iops_limit*qos_lower_iops_limit))
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if [ $iops_limit -gt $qos_lower_iops_limit ]; then
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# Run bdevperf with IOPS rate limit on bdev 1
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$rpc_py bdev_set_qos_limit --rw_ios_per_sec $iops_limit $QOS_DEV_1
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run_test "bdev_qos_iops" run_qos_test $iops_limit IOPS $QOS_DEV_1
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# Run bdevperf with bandwidth rate limit on bdev 2
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# Set the bandwidth limit as 1/10 of the measure performance without QoS
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bw_limit=$(get_io_result BANDWIDTH $QOS_DEV_2)
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bw_limit=$((bw_limit/1024/10))
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if [ $bw_limit -lt $qos_lower_bw_limit ]; then
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bw_limit=$qos_lower_bw_limit
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fi
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$rpc_py bdev_set_qos_limit --rw_mbytes_per_sec $bw_limit $QOS_DEV_2
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run_test "bdev_qos_bw" run_qos_test $bw_limit BANDWIDTH $QOS_DEV_2
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# Run bdevperf with additional read only bandwidth rate limit on bdev 1
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$rpc_py bdev_set_qos_limit --r_mbytes_per_sec $qos_lower_bw_limit $QOS_DEV_1
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run_test "bdev_qos_ro_bw" run_qos_test $qos_lower_bw_limit BANDWIDTH $QOS_DEV_1
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else
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echo "Actual IOPS without limiting is too low - exit testing"
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fi
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}
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function qos_test_suite() {
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# Run bdevperf with QoS disabled first
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$testdir/bdevperf/bdevperf -z -m 0x2 -q 256 -o 4096 -w randread -t 60 &
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QOS_PID=$!
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echo "Process qos testing pid: $QOS_PID"
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trap 'killprocess $QOS_PID; exit 1' SIGINT SIGTERM EXIT
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waitforlisten $QOS_PID
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$rpc_py bdev_null_create $QOS_DEV_1 128 512
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waitforbdev $QOS_DEV_1
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$rpc_py bdev_null_create $QOS_DEV_2 128 512
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waitforbdev $QOS_DEV_2
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$rootdir/test/bdev/bdevperf/bdevperf.py perform_tests &
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qos_function_test
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$rpc_py bdev_null_delete $QOS_DEV_1
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$rpc_py bdev_null_delete $QOS_DEV_2
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killprocess $QOS_PID
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trap - SIGINT SIGTERM EXIT
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}
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# Inital bdev creation and configuration
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#-----------------------------------------------------
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QOS_DEV_1="Null_0"
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QOS_DEV_2="Null_1"
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QOS_RUN_TIME=5
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if [ $(uname -s) = Linux ]; then
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# Test dynamic memory management. All hugepages will be reserved at runtime
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PRE_RESERVED_MEM=0
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else
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# Dynamic memory management is not supported on BSD
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PRE_RESERVED_MEM=2048
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fi
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# Create a file to be used as an AIO backend
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dd if=/dev/zero of=/tmp/aiofile bs=2048 count=5000
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cp $testdir/bdev.conf.in $testdir/bdev.conf
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$rootdir/scripts/gen_nvme.sh >> $testdir/bdev.conf
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if [ $SPDK_TEST_RBD -eq 1 ]; then
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timing_enter rbd_setup
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rbd_setup 127.0.0.1
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timing_exit rbd_setup
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$rootdir/scripts/gen_rbd.sh >> $testdir/bdev.conf
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fi
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if [ $SPDK_TEST_CRYPTO -eq 1 ]; then
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$testdir/gen_crypto.sh Malloc6 Malloc7 >> $testdir/bdev.conf
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fi
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if hash pmempool; then
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rm -f /tmp/spdk-pmem-pool
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pmempool create blk --size=32M 512 /tmp/spdk-pmem-pool
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echo "[Pmem]" >> $testdir/bdev.conf
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echo " Blk /tmp/spdk-pmem-pool Pmem0" >> $testdir/bdev.conf
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fi
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timing_enter nbd_gpt
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if grep -q Nvme0 $testdir/bdev.conf; then
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part_dev_by_gpt $testdir/bdev.conf Nvme0n1 $rootdir
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fi
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timing_exit nbd_gpt
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timing_enter bdev_svc
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bdevs=$(discover_bdevs $rootdir $testdir/bdev.conf | jq -r '.[] | select(.claimed == false)')
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timing_exit bdev_svc
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bdevs_name=$(echo $bdevs | jq -r '.name')
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# Create conf file for bdevperf with gpt
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cat > $testdir/bdev_gpt.conf << EOL
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[Gpt]
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Disable No
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EOL
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# Get Nvme info through filtering gen_nvme.sh's result
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$rootdir/scripts/gen_nvme.sh >> $testdir/bdev_gpt.conf
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# End bdev configuration
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#-----------------------------------------------------
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run_test "bdev_hello_world" $rootdir/examples/bdev/hello_world/hello_bdev -c $testdir/bdev.conf -b Malloc0
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run_test "bdev_bounds" bdev_bounds
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run_test "bdev_nbd" nbd_function_test $testdir/bdev.conf "$bdevs_name"
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if [ -d /usr/src/fio ]; then
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run_test "bdev_fio" fio_test_suite
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else
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echo "FIO not available"
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exit 1
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fi
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# Run bdevperf with gpt
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run_test "bdev_gpt_verify" $testdir/bdevperf/bdevperf -c $testdir/bdev_gpt.conf -q 128 -o 4096 -w verify -t 5
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run_test "bdev_gpt_write_zeroes" $testdir/bdevperf/bdevperf -c $testdir/bdev_gpt.conf -q 128 -o 4096 -w write_zeroes -t 1
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run_test "bdev_qos" qos_test_suite
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# Temporarily disabled - infinite loop
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# if [ $RUN_NIGHTLY -eq 1 ]; then
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# run_test "bdev_gpt_reset" $testdir/bdevperf/bdevperf -c $testdir/bdev.conf -q 16 -w reset -o 4096 -t 60
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# fi
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# Bdev and configuration cleanup below this line
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#-----------------------------------------------------
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if grep -q Nvme0 $testdir/bdev.conf; then
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part_dev_by_gpt $testdir/bdev.conf Nvme0n1 $rootdir reset
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fi
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rm -f $testdir/bdev_gpt.conf
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rm -f /tmp/aiofile
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rm -f /tmp/spdk-pmem-pool
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rm -f $testdir/bdev.conf
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rbd_cleanup
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