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/*
 * Copyright (c) 2020 Cisco and/or its affiliates.
 * Licensed under the Apache License, Version 2.0 (the "License");
 * you may not use this file except in compliance with the License.
 * You may obtain a copy of the License at:
 *
 *     http://www.apache.org/licenses/LICENSE-2.0
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS,
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 * See the License for the specific language governing permissions and
 * limitations under the License.
 */

#include <cnat/cnat_session.h>
#include <cnat/cnat_client.h>

static uword
cnat_scanner_process (vlib_main_t * vm,
		      vlib_node_runtime_t * rt, vlib_frame_t * f)
{
  uword event_type, *event_data = 0;
  cnat_main_t *cm = &cnat_main;
  f64 start_time;
  int enabled = 0, i = 0;

  while (1)
    {
      if (enabled)
	vlib_process_wait_for_event_or_clock (vm, cm->scanner_timeout);
      else
	vlib_process_wait_for_event (vm);

      event_type = vlib_process_get_events (vm, &event_data);
      vec_reset_length (event_data);

      start_time = vlib_time_now (vm);

      switch (event_type)
	{
	  /* timer expired */
	case ~0:
	  break;
	case CNAT_SCANNER_OFF:
	  enabled = 0;
	  break;
	case CNAT_SCANNER_ON:
	  enabled = 1;
	  break;
	default:
	  ASSERT (0);
	}

      cnat_client_throttle_pool_process ();
      i = cnat_session_scan (vm, start_time, i);
    }
  return 0;
}

/* *INDENT-OFF* */
VLIB_REGISTER_NODE (cnat_scanner_process_node) = {
  .function = cnat_scanner_process,
  .type = VLIB_NODE_TYPE_PROCESS,
  .name = "cnat-scanner-process",
};
/* *INDENT-ON* */

static clib_error_t *
cnat_scanner_cmd (vlib_main_t * vm,
		  unformat_input_t * input, vlib_cli_command_t * c)
{
  cnat_scanner_cmd_t cmd;

  cmd = CNAT_SCANNER_ON;

  while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT)
    {
      if (unformat (input, "on"))
	cmd = CNAT_SCANNER_ON;
      else if (unformat (input, "off"))
	cmd = CNAT_SCANNER_OFF;
      else
	return (clib_error_return (0, "unknown input '%U'",
				   format_unformat_error, input));
    }
  cnat_enable_disable_scanner (cmd);

  return (NULL);
}

/* *INDENT-OFF* */
VLIB_CLI_COMMAND (cnat_scanner_cmd_node, static) = {
  .path = "test cnat scanner",
  .function = cnat_scanner_cmd,
  .short_help = "test cnat scanner",
};
/* *INDENT-ON* */

static clib_error_t *
cnat_scanner_init (vlib_main_t * vm)
{
  cnat_main_t *cm = &cnat_main;
  cm->scanner_node_index = cnat_scanner_process_node.index;

  return (NULL);
}

VLIB_INIT_FUNCTION (cnat_scanner_init);

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "gnu")
 * End:
 */
ode performance topology with DUT's NIC model | ... | L2 | Intel-X710 | ... | Test Setup | Set up performance test with Ligato Kubernetes | ... | Suite Teardown | Tear down 3-node performance topology | ... | Test Teardown | Tear down performance test with Ligato Kubernetes | ... | Test Template | Local Template | ... | Documentation | *RFC2544: Pkt throughput L2XC test cases* | ... | ... | *[Top] Network Topologies:* TG-DUT1-DUT2-TG 3-node circular topology | ... | with single links between nodes. | ... | *[Enc] Packet Encapsulations:* Eth-IPv4 for L2 cross connect. | ... | *[Cfg] DUT configuration:* DUT1 and DUT2 are configured with L2 cross- | ... | connect. DUT1 and DUT2 tested with 2p10GE NIC X710 by Intel. | ... | VNF Containers are connected to VSWITCH container via Memif interface. | ... | All containers are running same VPP version. Containers are deployed | ... | with Kubernetes. Configuration is applied by vnf-agent. | ... | *[Ver] TG verification:* TG finds and reports throughput NDR (Non Drop | ... | Rate) with zero packet loss tolerance or throughput PDR (Partial Drop | ... | Rate) with non-zero packet loss tolerance (LT) expressed in percentage | ... | of packets transmitted. NDR and PDR are discovered for different | ... | Ethernet L2 frame sizes using MLRsearch library. | ... | TG traffic profile contains two L3 flow-groups | ... | (flow-group per direction, 253 flows per flow-group) with all packets | ... | containing Ethernet header, IPv4 header with IP protocol=61 and static | ... | payload. MAC addresses are matching MAC addresses of the TG node | ... | interfaces. | ... | *[Ref] Applicable standard specifications:* RFC2544. *** Variables *** # X710 bandwidth limit | ${s_limit} | ${10000000000} # SFC profile | ${sfc_profile} | configmaps/eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain # Traffic profile: | ${traffic_profile} | trex-sl-3n-ethip4-ip4src254 # CPU settings | ${system_cpus}= | ${1} | ${vswitch_cpus}= | ${5} | ${vnf_cpus}= | ${2} *** Keywords *** | Local Template | | [Documentation] | | ... | [Cfg] DUT runs Container orchestrated config. | | ... | [Ver] Measure NDR and PDR values using MLRsearch algorithm.\ | | ... | | ... | *Arguments:* | | ... | - framesize - Framesize in Bytes in integer or string (IMIX_v4_1). | | ... | Type: integer, string | | ... | - phy_cores - Number of physical cores. Type: integer | | ... | - rxq - Number of RX queues, default value: ${None}. Type: integer | | ... | | [Arguments] | ${framesize} | ${phy_cores} | ${rxq}=${None} | | ... | | Set Test Variable | ${framesize} | | Set Test Variable | ${min_rate} | ${10000} | | ${max_rate} | ${jumbo} = | Get Max Rate And Jumbo | | ... | ${s_limit} | ${framesize} | | ... | | ${dut1_if1_name}= | Get interface name | ${dut1} | ${dut1_if1} | | ${dut1_if2_name}= | Get interface name | ${dut1} | ${dut1_if2} | | ${dut2_if1_name}= | Get interface name | ${dut2} | ${dut2_if1} | | ${dut2_if2_name}= | Get interface name | ${dut2} | ${dut2_if2} | | ${tg_if1_mac}= | Get Interface MAC | ${tg} | ${tg_if1} | | ${tg_if2_mac}= | Get Interface MAC | ${tg} | ${tg_if2} | | Create Kubernetes VSWITCH startup config on all DUTs | | ... | ${phy_cores} | ${rxq} | ${jumbo} | | Create Kubernetes VNF'1' startup config on all DUTs | | Create Kubernetes VNF'2' startup config on all DUTs | | Create Kubernetes VNF'3' startup config on all DUTs | | Create Kubernetes VNF'4' startup config on all DUTs | | Create Kubernetes CM from file on all DUTs | ${nodes} | csit | | ... | name=vswitch-vpp-cfg | vpp.conf=/tmp/vswitch.conf | | Create Kubernetes CM from file on all DUTs | ${nodes} | csit | | ... | name=vnf1-vpp-cfg | vpp.conf=/tmp/vnf1.conf | | Create Kubernetes CM from file on all DUTs | ${nodes} | csit | | ... | name=vnf2-vpp-cfg | vpp.conf=/tmp/vnf2.conf | | Create Kubernetes CM from file on all DUTs | ${nodes} | csit | | ... | name=vnf3-vpp-cfg | vpp.conf=/tmp/vnf3.conf | | Create Kubernetes CM from file on all DUTs | ${nodes} | csit | | ... | name=vnf4-vpp-cfg | vpp.conf=/tmp/vnf4.conf | | Apply Kubernetes resource on node | ${dut1} | | ... | pods/contiv-vnf.yaml | $$VNF$$=vnf1 | | Apply Kubernetes resource on node | ${dut2} | | ... | pods/contiv-vnf.yaml | $$VNF$$=vnf1 | | Apply Kubernetes resource on node | ${dut1} | | ... | pods/contiv-vnf.yaml | $$VNF$$=vnf2 | | Apply Kubernetes resource on node | ${dut2} | | ... | pods/contiv-vnf.yaml | $$VNF$$=vnf2 | | Apply Kubernetes resource on node | ${dut1} | | ... | pods/contiv-vnf.yaml | $$VNF$$=vnf3 | | Apply Kubernetes resource on node | ${dut2} | | ... | pods/contiv-vnf.yaml | $$VNF$$=vnf3 | | Apply Kubernetes resource on node | ${dut1} | | ... | pods/contiv-vnf.yaml | $$VNF$$=vnf4 | | Apply Kubernetes resource on node | ${dut2} | | ... | pods/contiv-vnf.yaml | $$VNF$$=vnf4 | | Apply Kubernetes resource on node | ${dut1} | | ... | ${sfc_profile}.yaml | $$TEST_NAME$$=${TEST NAME} | | ... | $$VSWITCH_IF1$$=${dut1_if1_name} | | ... | $$VSWITCH_IF2$$=${dut1_if2_name} | | Apply Kubernetes resource on node | ${dut2} | | ... | ${sfc_profile}.yaml | $$TEST_NAME$$=${TEST NAME} | | ... | $$VSWITCH_IF1$$=${dut2_if1_name} | | ... | $$VSWITCH_IF2$$=${dut2_if2_name} | | Wait for Kubernetes PODs on all DUTs | ${nodes} | csit | | Set Kubernetes PODs affinity on all DUTs | ${nodes} | | Find NDR and PDR intervals using optimized search | | ... | ${framesize} | ${traffic_profile} | ${min_rate} | ${max_rate} *** Test Cases *** | tc01-64B-1c-eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain-k8s-ndrpdr | | [Tags] | 64B | 1C | | framesize=${64} | phy_cores=${1} | tc02-64B-2c-eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain-k8s-ndrpdr | | [Tags] | 64B | 2C | | framesize=${64} | phy_cores=${2} | tc03-64B-4c-eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain-k8s-ndrpdr | | [Tags] | 64B | 4C | | framesize=${64} | phy_cores=${4} | tc04-1518B-1c-eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain-k8s-ndrpdr | | [Tags] | 1518B | 1C | | framesize=${1518} | phy_cores=${1} | tc05-1518B-2c-eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain-k8s-ndrpdr | | [Tags] | 1518B | 2C | | framesize=${1518} | phy_cores=${2} | tc06-1518B-4c-eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain-k8s-ndrpdr | | [Tags] | 1518B | 4C | | framesize=${1518} | phy_cores=${4} | tc07-9000B-1c-eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain-k8s-ndrpdr | | [Tags] | 9000B | 1C | | framesize=${9000} | phy_cores=${1} | tc08-9000B-2c-eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain-k8s-ndrpdr | | [Tags] | 9000B | 2C | | framesize=${9000} | phy_cores=${2} | tc09-9000B-4c-eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain-k8s-ndrpdr | | [Tags] | 9000B | 4C | | framesize=${9000} | phy_cores=${4} | tc10-IMIX-1c-eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain-k8s-ndrpdr | | [Tags] | IMIX | 1C | | framesize=IMIX_v4_1 | phy_cores=${1} | tc11-IMIX-2c-eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain-k8s-ndrpdr | | [Tags] | IMIX | 2C | | framesize=IMIX_v4_1 | phy_cores=${2} | tc12-IMIX-4c-eth-1drcl2xcbase-eth-8memif-4drcl2xc-1chain-k8s-ndrpdr | | [Tags] | IMIX | 4C | | framesize=IMIX_v4_1 | phy_cores=${4}