[dts] [PATCH] TestSuite_eventdev_perf.py: Adding Eventdev features performance Testscript

Tu, Lijuan lijuan.tu at intel.com
Wed Jun 12 08:58:24 CEST 2019


Applied, thanks

> -----Original Message-----
> From: dts [mailto:dts-bounces at dpdk.org] On Behalf Of thaq at marvell.com
> Sent: Wednesday, June 12, 2019 2:17 PM
> To: dts at dpdk.org
> Cc: fmasood at marvell.com; avijay at marvell.com; jerinj at marvell.com;
> Thanseerulhaq <thaq at marvell.com>
> Subject: [dts] [PATCH] TestSuite_eventdev_perf.py: Adding Eventdev features
> performance Testscript
> 
> From: Thanseerulhaq <thaq at marvell.com>
> 
> Adding performance testscripts for 1/2/4 NIC ports for eventdev features
> atomic, parallel, order stages with pipeline_atq & queue tests.
> Adding eventdev devices functions to bind/unbind and to set sso,ssow limits
> in dut.py file.
> Adding eventdev_perf testcase supports for Marvell cards in
> test_case_supportlist.json file.
> ---
>  conf/test_case_supportlist.json  |  270 +++++++
>  framework/dut.py                 |   38 +
>  tests/TestSuite_eventdev_perf.py | 1606
> ++++++++++++++++++++++++++++++++++++++
>  3 files changed, 1914 insertions(+)
>  create mode 100644 tests/TestSuite_eventdev_perf.py
> 
> diff --git a/conf/test_case_supportlist.json b/conf/test_case_supportlist.json
> index 04e90be..822fb27 100644
> --- a/conf/test_case_supportlist.json
> +++ b/conf/test_case_supportlist.json
> @@ -960,5 +960,275 @@
>              "Bug ID": "",
>              "Comments": "This case only support on FVL"
>          }
> +    ],
> +    "perf_eventdev_1ports_atq_atomic_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_1ports_atq_parallel_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_1ports_atq_order_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_1ports_queue_atomic_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_1ports_queue_parallel_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_1ports_queue_order_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_2ports_atq_atomic_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_2ports_atq_parallel_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_2ports_atq_order_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_2ports_queue_atomic_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_2ports_queue_parallel_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_2ports_queue_order_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_4ports_atq_atomic_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_4ports_atq_parallel_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_4ports_atq_order_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_4ports_queue_atomic_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_4ports_queue_parallel_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
> +    ],
> +    "perf_eventdev_4ports_queue_order_performance": [
> +        {
> +            "OS": [
> +                "ALL"
> +            ],
> +            "NIC": [
> +                "cavium_a063"
> +            ],
> +            "Target": [
> +                "ALL"
> +            ],
> +            "Bug ID": "",
> +            "Comments": "This case currently support for cavium_a063 "
> +        }
>      ]
>  }
> diff --git a/framework/dut.py b/framework/dut.py
> index 541ab7b..88bc6fc 100644
> --- a/framework/dut.py
> +++ b/framework/dut.py
> @@ -455,6 +455,44 @@ class Dut(Crb):
>          bind_script_path = self.get_dpdk_bind_script()
>          self.send_expect('%s --force %s' % (bind_script_path, binding_list), '# ')
> 
> +    def bind_eventdev_port(self, driver='vfio-pci', port_to_bind=None):
> +        """
> +        Bind the eventdev interfaces to the selected driver. port_to_bind set
> to default, can be
> +        changed at run time
> +        """
> +
> +        binding_list = '--bind=%s %s' % (driver, port_to_bind)
> +        bind_script_path = self.get_dpdk_bind_script()
> +        self.send_expect('%s --force %s' % (bind_script_path, binding_list), '# ')
> +
> +    def set_eventdev_port_limits(self, device_id, port):
> +        """
> +        Setting the eventdev port SSO and SS0W limits.
> +        """
> +
> +        bind_script_path = self.get_dpdk_bind_script()
> +        eventdev_ports = self.send_expect('%s -s |grep -e %s | cut -d " " -f1' %
> (bind_script_path, device_id), '#')
> +        eventdev_ports = eventdev_ports.split("\r\n")
> +        for eventdev_port in eventdev_ports:
> +            self.send_expect('echo 0 >  /sys/bus/pci/devices/%s/limits/sso' %
> (eventdev_port), '#')
> +            self.send_expect('echo 0 >  /sys/bus/pci/devices/%s/limits/ssow' %
> (eventdev_port), '#')
> +        for eventdev_port in eventdev_ports:
> +            if eventdev_port == port:
> +                self.send_expect('echo 0 >  /sys/bus/pci/devices/%s/limits/tim' %
> (eventdev_port), '#')
> +                self.send_expect('echo 1 >  /sys/bus/pci/devices/%s/limits/npa' %
> (eventdev_port), '#')
> +                self.send_expect('echo 10 >  /sys/bus/pci/devices/%s/limits/sso' %
> (eventdev_port), '#')
> +                self.send_expect('echo 32 >  /sys/bus/pci/devices/%s/limits/ssow' %
> (eventdev_port), '#')
> +
> +    def unbind_eventdev_port(self, port_to_unbind=None):
> +        """
> +        Unbind the eventdev interfaces to the selected driver. port_to_unbind
> set to None, can be
> +        changed at run time
> +        """
> +
> +        binding_list = '-u  %s' % (port_to_unbind)
> +        bind_script_path = self.get_dpdk_bind_script()
> +        self.send_expect('%s  %s' % (bind_script_path, binding_list), '# ')
> +
>      def get_ports(self, nic_type='any', perf=None, socket=None):
>          """
>          Return DUT port list with the filter of NIC type, whether run IXIA
> diff --git a/tests/TestSuite_eventdev_perf.py
> b/tests/TestSuite_eventdev_perf.py
> new file mode 100644
> index 0000000..d950a87
> --- /dev/null
> +++ b/tests/TestSuite_eventdev_perf.py
> @@ -0,0 +1,1606 @@
> +# BSD LICENSE
> +# SPDX-License-Identifier: BSD-3-Clause
> +# Copyright (C) 2019 Marvell International Ltd.
> +
> +"""
> +DPDK Test suite.
> +Test userland 10Gb/25Gb/40Gb/100Gb
> +"""
> +
> +import utils
> +import re
> +import time
> +import os
> +
> +from test_case import TestCase
> +from time import sleep
> +from settings import HEADER_SIZE
> +from pmd_output import PmdOutput
> +from etgen import IxiaPacketGenerator
> +
> +from settings import FOLDERS
> +from system_info import SystemInfo
> +import perf_report
> +from datetime import datetime
> +
> +class TestEventdevPerf(TestCase,IxiaPacketGenerator):
> +
> +    def set_up_all(self):
> +        """
> +        Run at the start of each test suite.
> +
> +        PMD prerequisites.
> +        """
> +        self.tester.extend_external_packet_generator(TestEventdevPerf, self)
> +
> +        self.frame_sizes = [64, 128, 256, 512, 1024, 1518]
> +
> +        self.rxfreet_values = [0, 8, 16, 32, 64, 128]
> +
> +        self.test_cycles = [
> +                        {'cores': '1S/2C/1T', 'Mpps': {}, 'pct': {}},
> +                        {'cores': '1S/3C/1T', 'Mpps': {}, 'pct': {}},
> +                        {'cores': '1S/5C/1T', 'Mpps': {}, 'pct': {}},
> +                        {'cores': '1S/9C/1T', 'Mpps': {}, 'pct': {}},
> +                        {'cores': '1S/17C/1T', 'Mpps': {}, 'pct': {}},
> +                        ]
> +        self.get_cores_from_last = True
> +        self.table_header = ['Frame Size']
> +        for test_cycle in self.test_cycles:
> +            m = re.search(r"(\d+S/)(\d+)(C/\d+T)",test_cycle['cores'])
> +            cores = m.group(1) + str(int(m.group(2))-1) + m.group(3)
> +            self.table_header.append("%s Mpps" % cores)
> +            self.table_header.append("% linerate")
> +
> +        self.perf_results = {'header': [], 'data': []}
> +
> +        self.blacklist = ""
> +
> +        # Based on h/w type, choose how many ports to use
> +        self.dut_ports = self.dut.get_ports()
> +        if self.dut.get_os_type() == 'linux':
> +            # Get dut system information
> +            port_num = self.dut_ports[0]
> +            pci_device_id = self.dut.ports_info[port_num]['pci']
> +            ori_driver = self.dut.ports_info[port_num]['port'].get_nic_driver()
> +            self.dut.ports_info[port_num]['port'].bind_driver()
> +
> +            self.dut.ports_info[port_num]['port'].bind_driver(ori_driver)
> +
> +        if self.nic == "cavium_a063":
> +            self.eventdev_device_bus_id = "0002:0e:00.0"
> +            self.eventdev_device_id = "a0f9"
> +
> +        #### Bind evendev device ####
> +
> self.dut.bind_eventdev_port(port_to_bind=self.eventdev_device_bus_id)
> +
> +        #### Configuring evendev SS0 & SSOw limits ####
> +            self.dut.set_eventdev_port_limits(self.eventdev_device_id,
> self.eventdev_device_bus_id)
> +
> +        self.headers_size = HEADER_SIZE['eth'] + HEADER_SIZE[
> +            'ip'] + HEADER_SIZE['tcp']
> +
> +        self.ports_socket = self.dut.get_numa_id(self.dut_ports[0])
> +
> +        self.pmdout = PmdOutput(self.dut)
> +
> +    def set_up(self):
> +        """
> +        Run before each test case.
> +        """
> +        pass
> +
> +    def eventdev_cmd(self, test_type, stlist, nports, worker_cores):
> +
> +        self.Port_pci_ids = []
> +        command_line1 = "dpdk-test-eventdev -l %s -w %s"
> +        for i in range(0, nports):
> +            self.Port_pci_ids.append(self.dut.ports_info[i]['pci'])
> +            ## Adding core-list and pci-ids
> +            command_line1 = command_line1 + " -w %s "
> +        ## Adding test and stage types
> +        command_line2 = "-- --prod_type_ethdev --nb_pkts=0 --verbose 2 --
> test=%s --stlist=%s --wlcores=%s" %(test_type, stlist, worker_cores)
> +        return command_line1 + command_line2
> +
> +    def test_perf_eventdev_1ports_atq_atomic_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 1 ports with
> test_type=pipeline_atq and schedule_type=atomic.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 1, "Insufficient ports for 1 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_atq", "A", 1,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 1)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_1ports_atq_parallel_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 1 ports with
> test_type=pipeline_atq and schedule_type=parallel.
> +        """
> +        self.verify(len(self.dut_ports) >= 1, "Insufficient ports for 1 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_atq", "P", 1,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 1)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_1ports_atq_order_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 1 ports with
> test_type=pipeline_atq and schedule_type=order.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 1, "Insufficient ports for 1 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_atq", "O", 1,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 1)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_1ports_queue_atomic_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 1 ports with
> test_type=pipeline_queue and schedule_type=atomic.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 1, "Insufficient ports for 1 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_queue", "A", 1,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 1)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_1ports_queue_parallel_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 1 ports with
> test_type=pipeline_queue and schedule_type=parallel.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 1, "Insufficient ports for 1 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_queue", "P", 1,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 1)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_1ports_queue_order_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 1 ports with
> test_type=pipeline_queue and schedule_type=order.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 1, "Insufficient ports for 1 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_queue", "O", 1,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 1)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_2ports_atq_atomic_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 2 ports with
> test_type=pipeline_atq and schedule_type=atomic.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 2, "Insufficient ports for 2 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[1]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[1]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_atq", "A", 2,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0], self.Port_pci_ids[1])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 2)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_2ports_atq_parallel_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 2 ports with
> test_type=pipeline_atq and schedule_type=parallel.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 2, "Insufficient ports for 2 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[1]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[1]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_atq", "P", 2,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0], self.Port_pci_ids[1])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 2)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_2ports_atq_order_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 2 ports with
> test_type=pipeline_atq and schedule_type=order.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 2, "Insufficient ports for 2 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[1]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[1]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_atq", "O", 2,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0], self.Port_pci_ids[1])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 2)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_2ports_queue_atomic_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 2 ports with
> test_type=pipeline_queue and schedule_type=atomic.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 2, "Insufficient ports for 2 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[1]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[1]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_queue", "A", 2,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0], self.Port_pci_ids[1])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 2)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_2ports_queue_parallel_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 2 ports with
> test_type=pipeline_queue and schedule_type=parallel.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 2, "Insufficient ports for 2 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[1]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[1]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_queue", "P", 2,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0], self.Port_pci_ids[1])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 2)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_2ports_queue_order_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 2 ports with
> test_type=pipeline_queue and schedule_type=order.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 2, "Insufficient ports for 2 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[1]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[1]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_queue", "O", 2,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0], self.Port_pci_ids[1])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 2)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +
> +    def test_perf_eventdev_4ports_atq_atomic_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 4 ports with
> test_type=pipeline_atq and schedule_type=atomic.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 2, "Insufficient ports for 4 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[1]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[2]),
> +                           self.tester.get_local_port(self.dut_ports[3]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[1]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[3]),
> +                           self.tester.get_local_port(self.dut_ports[2]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_atq", "A", 4,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0], self.Port_pci_ids[1],
> self.Port_pci_ids[2], self.Port_pci_ids[3])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 4)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_4ports_atq_parallel_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 4 ports with
> test_type=pipeline_atq and schedule_type=parallel.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 4, "Insufficient ports for 4 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[1]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[2]),
> +                           self.tester.get_local_port(self.dut_ports[3]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[1]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[3]),
> +                           self.tester.get_local_port(self.dut_ports[2]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_atq", "P", 4,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0], self.Port_pci_ids[1],
> self.Port_pci_ids[2], self.Port_pci_ids[3])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 4)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_4ports_atq_order_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 4 ports with
> test_type=pipeline_atq and schedule_type=order.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 4, "Insufficient ports for 4 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[1]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[2]),
> +                           self.tester.get_local_port(self.dut_ports[3]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[1]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[3]),
> +                           self.tester.get_local_port(self.dut_ports[2]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_atq", "O", 4,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0], self.Port_pci_ids[1],
> self.Port_pci_ids[2], self.Port_pci_ids[3])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 4)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_4ports_queue_atomic_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 4 ports with
> test_type=pipeline_queue and schedule_type=atomic.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 4, "Insufficient ports for 4 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[1]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[2]),
> +                           self.tester.get_local_port(self.dut_ports[3]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[1]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[3]),
> +                           self.tester.get_local_port(self.dut_ports[2]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_queue", "A", 4,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0], self.Port_pci_ids[1],
> self.Port_pci_ids[2], self.Port_pci_ids[3])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 4)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_4ports_queue_parallel_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 4 ports with
> test_type=pipeline_queue and schedule_type=parallel.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 4, "Insufficient ports for 4 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[1]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[2]),
> +                           self.tester.get_local_port(self.dut_ports[3]),
> +                          "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[1]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[3]),
> +                          self.tester.get_local_port(self.dut_ports[2]),
> +                           "event_test.pcap"))
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_queue", "P", 4,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0], self.Port_pci_ids[1],
> self.Port_pci_ids[2], self.Port_pci_ids[3])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 4)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def test_perf_eventdev_4ports_queue_order_performance(self):
> +        """
> +        Evendev Performance Benchmarking with 4 ports with
> test_type=pipeline_queue and schedule_type=order.
> +        """
> +
> +        self.verify(len(self.dut_ports) >= 4, "Insufficient ports for 4 ports
> performance test")
> +        self.perf_results['header'] = []
> +        self.perf_results['data'] = []
> +
> +        all_cores_mask = utils.create_mask(self.dut.get_core_list("all"))
> +
> +        # prepare traffic generator input
> +        tgen_input = []
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[0]),
> +                           self.tester.get_local_port(self.dut_ports[1]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[2]),
> +                           self.tester.get_local_port(self.dut_ports[3]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[1]),
> +                           self.tester.get_local_port(self.dut_ports[0]),
> +                           "event_test.pcap"))
> +        tgen_input.append((self.tester.get_local_port(self.dut_ports[3]),
> +                           self.tester.get_local_port(self.dut_ports[2]),
> +                           "event_test.pcap"))
> +
> +        # run testpmd for each core config
> +        for test_cycle in self.test_cycles:
> +            core_config = test_cycle['cores']
> +
> +            core_list = self.dut.get_core_list(core_config,
> +                                               socket=self.ports_socket, from_last =
> self.get_cores_from_last)
> +            cores_list = "%s-%s" % (core_list[0],core_list[-1])
> +
> +            if len(core_list) > 2:
> +                worker_cores = "%s-%s" %(core_list[1],core_list[-1])
> +            else:
> +                worker_cores = core_list[-1]
> +
> +            command_line = self.eventdev_cmd( "pipeline_queue", "O", 4,
> worker_cores)
> +            command_line = command_line %(cores_list,
> self.eventdev_device_bus_id, self.Port_pci_ids[0], self.Port_pci_ids[1],
> self.Port_pci_ids[2], self.Port_pci_ids[3])
> +            self.dut.send_expect(command_line,"Configured", 100)
> +
> +            info = "Executing Eventdev using %s\n" % test_cycle['cores']
> +            self.logger.info(info)
> +            self.rst_report(info, annex=True)
> +            self.rst_report(command_line + "\n\n", frame=True, annex=True)
> +
> +            for frame_size in self.frame_sizes:
> +                wirespeed = self.wirespeed(self.nic, frame_size, 4)
> +
> +                # create pcap file
> +                self.logger.info("Running with frame size %d " % frame_size)
> +                payload_size = frame_size - self.headers_size
> +                self.tester.scapy_append(
> +                    'wrpcap("event_test.pcap",
> [Ether(src="52:00:00:00:00:00")/IP(src="1.2.3.4",dst="1.1.1.1")/TCP()/("X"*%d)]
> )' % (payload_size))
> +                self.tester.scapy_execute()
> +
> +                # run traffic generator
> +                _, pps = self.tester.traffic_generator_throughput(tgen_input,
> rate_percent=100, delay=60)
> +                pps /= 1000000.0
> +                pct = pps * 100 / wirespeed
> +                test_cycle['Mpps'][frame_size] = float('%.3f' % pps)
> +                test_cycle['pct'][frame_size] = float('%.3f' % pct)
> +
> +            self.dut.send_expect("^C", "# ", 5)
> +            sleep(5)
> +
> +        for n in range(len(self.test_cycles)):
> +            for frame_size in self.frame_sizes:
> +                self.verify(self.test_cycles[n]['Mpps'][
> +                            frame_size] > 0, "No traffic detected")
> +
> +        # Print results
> +        self.result_table_create(self.table_header)
> +        self.perf_results['header'] = self.table_header
> +        for frame_size in self.frame_sizes:
> +            table_row = [frame_size]
> +            for test_cycle in self.test_cycles:
> +                table_row.append(test_cycle['Mpps'][frame_size])
> +                table_row.append(test_cycle['pct'][frame_size])
> +
> +            self.result_table_add(table_row)
> +            self.perf_results['data'].append(table_row)
> +
> +        self.result_table_print()
> +
> +    def ip(self, port, frag, src, proto, tos, dst, chksum, len, options, version,
> flags, ihl, ttl, id):
> +        self.add_tcl_cmd("protocol config -name ip")
> +        self.add_tcl_cmd('ip config -sourceIpAddr "%s"' % src)
> +        self.add_tcl_cmd("ip config -sourceIpAddrMode ipIncrHost")
> +        self.add_tcl_cmd("ip config -sourceIpAddrRepeatCount 100")
> +        self.add_tcl_cmd('ip config -destIpAddr "%s"' % dst)
> +        self.add_tcl_cmd("ip config -destIpAddrMode ipIdle")
> +        self.add_tcl_cmd("ip config -ttl %d" % ttl)
> +        self.add_tcl_cmd("ip config -totalLength %d" % len)
> +        self.add_tcl_cmd("ip config -fragment %d" % frag)
> +        self.add_tcl_cmd("ip config -ipProtocol ipV4ProtocolReserved255")
> +        self.add_tcl_cmd("ip config -identifier %d" % id)
> +        self.add_tcl_cmd("stream config -framesize %d" % (len + 18))
> +        self.add_tcl_cmd("ip set %d %d %d" % (self.chasId, port['card'],
> port['port']))
> +
> +
> +    def tear_down(self):
> +        """
> +        Run after each test case.
> +        """
> +        self.dut.send_expect("^C", "# ", 5)
> +
> self.dut.unbind_eventdev_port(port_to_unbind=self.eventdev_device_bus_i
> d)
> +
> +    def tear_down_all(self):
> +        """
> +        Run after each test suite.
> +        """
> +        self.dut.kill_all()
> --
> 1.8.3.1



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