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path: root/src/vnet/ethernet/sfp.c
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/*
 * Copyright (c) 2016 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 <vnet/ethernet/sfp.h>

static u8 *
format_space_terminated (u8 * s, va_list * args)
{
  u32 l = va_arg (*args, u32);
  u8 *v = va_arg (*args, u8 *);
  u8 *p;

  for (p = v + l - 1; p >= v && p[0] == ' '; p--)
    ;
  vec_add (s, v, clib_min (p - v + 1, l));
  return s;
}

static u8 *
format_sfp_id (u8 * s, va_list * args)
{
  u32 id = va_arg (*args, u32);
  char *t = 0;
  switch (id)
    {
#define _(f) case SFP_ID_##f: t = #f; break;
      foreach_sfp_id
#undef _
    default:
      return format (s, "unknown 0x%x", id);
    }
  return format (s, "%s", t);
}

static u8 *
format_sfp_compatibility (u8 * s, va_list * args)
{
  u32 c = va_arg (*args, u32);
  char *t = 0;
  switch (c)
    {
#define _(a,b,f) case SFP_COMPATIBILITY_##f: t = #f; break;
      foreach_sfp_compatibility
#undef _
    default:
      return format (s, "unknown 0x%x", c);
    }
  return format (s, "%s", t);
}

u32
sfp_is_comatible (sfp_eeprom_t * e, sfp_compatibility_t c)
{
  static struct
  {
    u8 byte, bit;
  } t[] =
  {
#define _(a,b,f) { .byte = a, .bit = b, },
    foreach_sfp_compatibility
#undef _
  };

  ASSERT (c < ARRAY_LEN (t));
  return (e->compatibility[t[c].byte] & (1 << t[c].bit)) != 0;
}

u8 *
format_sfp_eeprom (u8 * s, va_list * args)
{
  sfp_eeprom_t *e = va_arg (*args, sfp_eeprom_t *);
  uword indent = format_get_indent (s);
  int i;

  if (e->id != SFP_ID_sfp)
    s = format (s, "id %U, ", format_sfp_id, e->id);

  s = format (s, "compatibility:");
  for (i = 0; i < SFP_N_COMPATIBILITY; i++)
    if (sfp_is_comatible (e, i))
      s = format (s, " %U", format_sfp_compatibility, i);

  s = format (s, "\n%Uvendor: %U, part %U",
	      format_white_space, indent,
	      format_space_terminated, sizeof (e->vendor_name),
	      e->vendor_name, format_space_terminated,
	      sizeof (e->vendor_part_number), e->vendor_part_number);
  s =
    format (s, "\n%Urevision: %U, serial: %U, date code: %U",
	    format_white_space, indent, format_space_terminated,
	    sizeof (e->vendor_revision), e->vendor_revision,
	    format_space_terminated, sizeof (e->vendor_serial_number),
	    e->vendor_serial_number, format_space_terminated,
	    sizeof (e->vendor_date_code), e->vendor_date_code);

  return s;
}

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "gnu")
 * End:
 */
class="nn">resources/libraries/robot/performance/performance_setup.robot | ... | Force Tags | 3_NODE_SINGLE_LINK_TOPO | PERFTEST | HW_ENV | NDRPDRDISC | ... | NIC_Intel-X520-DA2 | ETH | L2BDMACLRN | L2BDBASE | SCALE | MEMIF | ... | K8S | 1VSWITCH | 4VNF | VPP_AGENT | SFC_CONTROLLER | HORIZONTAL | ... | Suite Setup | Set up 3-node performance topology with DUT's NIC model | ... | L2 | Intel-X520-DA2 | ... | 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 | ... | Documentation | *RFC2544: Pkt throughput L2BD 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 bridge domain. | ... | *[Cfg] DUT configuration:* DUT1 and DUT2 are configured with two L2 | ... | bridge domains and MAC learning enabled. DUT1 and DUT2 tested with | ... | 2p10GE NIC X520 Niantic 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 either binary search or linear search | ... | algorithms with configured starting rate and final step that determines | ... | throughput measurement resolution. Test packets are generated by TG on | ... | links to DUTs. 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 *** | ${avg_imix_framesize}= | ${357.833} # X520-DA2 bandwidth limit | ${s_limit} | ${10000000000} # SFC profile | ${sfc_profile} | configmaps/ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc # Traffic profile: | ${traffic_profile} | trex-sl-3n-ethip4-ip4src254 # CPU settings | ${system_cpus}= | ${1} | ${vswitch_cpus}= | ${5} | ${vnf_cpus}= | ${2} *** Keywords *** | Create Kubernetes VSWITCH startup config on all DUTs | | [Documentation] | Create base startup configuration of VSWITCH in Kubernetes | | ... | deploy to all DUTs. | | ... | | ... | *Arguments:* | | ... | - ${framesize} - L2 framesize. Type: integer | | ... | - ${wt} - Worker threads. Type: integer | | ... | - ${rxq} - RX queues. Type: integer | | ... | | ... | *Example:* | | ... | | ... | \| Create Kubernetes VSWITCH startup config on all DUTs \| ${64} \ | | ... | \| ${1} \| ${1} | | ... | | [Arguments] | ${framesize} | ${wt} | ${rxq} | | ${dut1_numa}= | Get interfaces numa node | ${dut1} | | ... | ${dut1_if1} | ${dut1_if2} | | ${dut2_numa}= | Get interfaces numa node | ${dut2} | | ... | ${dut2_if1} | ${dut2_if2} | | ${dut1_if1_pci}= | Get Interface PCI Addr | ${dut1} | ${dut1_if1} | | ${dut1_if2_pci}= | Get Interface PCI Addr | ${dut1} | ${dut1_if2} | | ${dut2_if1_pci}= | Get Interface PCI Addr | ${dut2} | ${dut2_if1} | | ${dut2_if2_pci}= | Get Interface PCI Addr | ${dut2} | ${dut2_if2} | | ${cpu_cnt}= | Evaluate | ${wt}+1 | | ${config}= | Run keyword | Create Kubernetes VSWITCH startup config | | ... | node=${dut1} | cpu_cnt=${cpu_cnt} | cpu_node=${dut1_numa} | | ... | cpu_skip=${system_cpus} | smt_used=${False} | | ... | filename=/tmp/vswitch.conf | framesize=${framesize} | rxq=${rxq} | | ... | if1=${dut1_if1_pci} | if2=${dut1_if2_pci} | | ${config}= | Run keyword | Create Kubernetes VSWITCH startup config | | ... | node=${dut2} | cpu_cnt=${cpu_cnt} | cpu_node=${dut2_numa} | | ... | cpu_skip=${system_cpus} | smt_used=${False} | | ... | filename=/tmp/vswitch.conf | framesize=${framesize} | rxq=${rxq} | | ... | if1=${dut2_if1_pci} | if2=${dut2_if2_pci} | Create Kubernetes VNF'${i}' startup config on all DUTs | | [Documentation] | Create base startup configuration of VNF in Kubernetes | | ... | deploy to all DUTs. | | ... | | ${i_int}= | Convert To Integer | ${i} | | ${cpu_skip}= | Evaluate | ${vswitch_cpus}+${system_cpus} | | ${dut1_numa}= | Get interfaces numa node | ${dut1} | | ... | ${dut1_if1} | ${dut1_if2} | | ${dut2_numa}= | Get interfaces numa node | ${dut2} | | ... | ${dut2_if1} | ${dut2_if2} | | ${config}= | Run keyword | Create Kubernetes VNF startup config | | ... | node=${dut1} | cpu_cnt=${vnf_cpus} | cpu_node=${dut1_numa} | | ... | cpu_skip=${cpu_skip} | smt_used=${False} | filename=/tmp/vnf${i}.conf | | ... | i=${i_int} | | ${config}= | Run keyword | Create Kubernetes VNF startup config | | ... | node=${dut2} | cpu_cnt=${vnf_cpus} | cpu_node=${dut2_numa} | | ... | cpu_skip=${cpu_skip} | smt_used=${False} | filename=/tmp/vnf${i}.conf | | ... | i=${i_int} | L2 Bridge Domain Binary Search | | [Arguments] | ${framesize} | ${min_rate} | ${wt} | ${rxq} | ${search_type} | | Set Test Variable | ${framesize} | | Set Test Variable | ${min_rate} | | ${get_framesize}= | Set Variable If | | ... | "${framesize}" == "IMIX_v4_1" | ${avg_imix_framesize} | ${framesize} | | ${max_rate}= | Calculate pps | ${s_limit} | ${get_framesize} | | ${binary_min}= | Set Variable | ${min_rate} | | ${binary_max}= | Set Variable | ${max_rate} | | ${threshold}= | Set Variable | ${min_rate} | | ${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} | | Create Kubernetes VSWITCH startup config on all DUTs | ${get_framesize} | | ... | ${wt} | ${rxq} | | 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 | ${nodes} | | Run Keyword If | '${search_type}' == 'NDR' | | ... | Find NDR using binary search and pps | | ... | ${framesize} | ${binary_min} | ${binary_max} | ${traffic_profile} | | ... | ${min_rate} | ${max_rate} | ${threshold} | | ... | ELSE IF | '${search_type}' == 'PDR' | | ... | Find PDR using binary search and pps | | ... | ${framesize} | ${binary_min} | ${binary_max} | ${traffic_profile} | | ... | ${min_rate} | ${max_rate} | ${threshold} | | ... | ${perf_pdr_loss_acceptance} | ${perf_pdr_loss_acceptance_type} *** Test Cases *** | tc01-64B-1t1c-ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc-k8s-ndrdisc | | [Documentation] | | ... | [Cfg] DUT runs L2BD switching config with 1 thread, 1 phy core,\ | | ... | 1 receive queue per NIC port. | | ... | [Ver] Find NDR for 64 Byte frames using binary search start at 10GE\ | | ... | linerate, step 100kpps. | | ... | | [Tags] | 64B | 1T1C | STHREAD | NDRDISC | | [Template] | L2 Bridge Domain Binary Search | | framesize=${64} | min_rate=${100000} | wt=1 | rxq=1 | search_type=NDR | tc02-64B-1t1c-ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc-k8s-pdrdisc | | [Documentation] | | ... | [Cfg] DUT runs L2BD switching config with 1 thread, 1 phy core,\ | | ... | 1 receive queue per NIC port. | | ... | [Ver] Find PDR for 64 Byte frames using binary search start at 10GE\ | | ... | linerate, step 100kpps, LT=0.5%. | | ... | | [Tags] | 64B | 1T1C | STHREAD | PDRDISC | SKIP_PATCH | | [Template] | L2 Bridge Domain Binary Search | | framesize=${64} | min_rate=${100000} | wt=1 | rxq=1 | search_type=PDR | tc03-IMIX-1t1c-ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc-k8s-ndrdisc | | [Documentation] | | ... | [Cfg] DUT runs L2BD switching config with 1 thread, 1 phy core,\ | | ... | 1 receive queue per NIC port. | | ... | [Ver] Find NDR for IMIX_v4_1 frames using binary search start at 10GE\ | | ... | linerate, step 10kpps. | | ... | IMIX_v4_1 = (28x64B;16x570B;4x1518B) | | ... | | [Tags] | IMIX | 1T1C | STHREAD | NDRDISC | | [Template] | L2 Bridge Domain Binary Search | | framesize=IMIX_v4_1 | min_rate=${10000} | wt=1 | rxq=1 | search_type=NDR | tc04-IMIX-1t1c-ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc-k8s-pdrdisc | | [Documentation] | | ... | [Cfg] DUT runs L2BD switching config with 1 thread, 1 phy core,\ | | ... | 1 receive queue per NIC port. | | ... | [Ver] Find PDR for IMIX_v4_1 frames using binary search start at 10GE\ | | ... | linerate, step 10kpps, LT=0.5%. | | ... | IMIX_v4_1 = (28x64B;16x570B;4x1518B) | | ... | | [Tags] | IMIX | 1T1C | STHREAD | PDRDISC | SKIP_PATCH | | [Template] | L2 Bridge Domain Binary Search | | framesize=IMIX_v4_1 | min_rate=${10000} | wt=1 | rxq=1 | search_type=PDR | tc05-1518B-1t1c-ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc-k8s-ndrdisc | | [Documentation] | | ... | [Cfg] DUT runs L2BD switching config with 1 thread, 1 phy core,\ | | ... | 1 receive queue per NIC port. | | ... | [Ver] Find NDR for 1518 Byte frames using binary search start at 10GE\ | | ... | linerate, step 10kpps. | | ... | | [Tags] | 1518B | 1T1C | STHREAD | NDRDISC | | [Template] | L2 Bridge Domain Binary Search | | framesize=${1518} | min_rate=${10000} | wt=1 | rxq=1 | search_type=NDR | tc06-1518B-1t1c-ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc-k8s-pdrdisc | | [Documentation] | | ... | [Cfg] DUT runs L2BD switching config with 1 thread, 1 phy core,\ | | ... | 1 receive queue per NIC port. | | ... | [Ver] Find PDR for 1518 Byte frames using binary search start at 10GE\ | | ... | linerate, step 10kpps, LT=0.5%. | | ... | | [Tags] | 1518B | 1T1C | STHREAD | PDRDISC | SKIP_PATCH | | [Template] | L2 Bridge Domain Binary Search | | framesize=${1518} | min_rate=${10000} | wt=1 | rxq=1 | search_type=PDR | tc07-64B-2t2c-ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc-k8s-ndrdisc | | [Documentation] | | ... | [Cfg] DUT runs L2BD switching config with 2 thread, 2 phy core,\ | | ... | 1 receive queue per NIC port. | | ... | [Ver] Find NDR for 64 Byte frames using binary search start at 10GE\ | | ... | linerate, step 100kpps. | | ... | | [Tags] | 64B | 2T2C | MTHREAD | NDRDISC | | [Template] | L2 Bridge Domain Binary Search | | framesize=${64} | min_rate=${100000} | wt=2 | rxq=1 | search_type=NDR | tc08-64B-2t2c-ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc-k8s-pdrdisc | | [Documentation] | | ... | [Cfg] DUT runs L2BD switching config with 2 thread, 2 phy core,\ | | ... | 1 receive queue per NIC port. | | ... | [Ver] Find PDR for 64 Byte frames using binary search start at 10GE\ | | ... | linerate, step 100kpps, LT=0.5%. | | ... | | [Tags] | 64B | 2T2C | MTHREAD | PDRDISC | SKIP_PATCH | | [Template] | L2 Bridge Domain Binary Search | | framesize=${64} | min_rate=${100000} | wt=2 | rxq=1 | search_type=PDR | tc09-IMIX-2t2c-ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc-k8s-ndrdisc | | [Documentation] | | ... | [Cfg] DUT runs L2BD switching config with 2 thread, 2 phy core,\ | | ... | 1 receive queue per NIC port. | | ... | [Ver] Find NDR for IMIX_v4_1 frames using binary search start at 10GE\ | | ... | linerate, step 10kpps. | | ... | IMIX_v4_1 = (28x64B;16x570B;4x1518B) | | ... | | [Tags] | IMIX | 2T2C | MTHREAD | NDRDISC | SKIP_PATCH | | [Template] | L2 Bridge Domain Binary Search | | framesize=IMIX_v4_1 | min_rate=${10000} | wt=2 | rxq=1 | search_type=NDR | tc10-IMIX-2t2c-ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc-k8s-pdrdisc | | [Documentation] | | ... | [Cfg] DUT runs L2BD switching config with 2 thread, 1 phy core,\ | | ... | 1 receive queue per NIC port. | | ... | [Ver] Find PDR for IMIX_v4_1 frames using binary search start at 10GE\ | | ... | linerate, step 10kpps, LT=0.5%. | | ... | IMIX_v4_1 = (28x64B;16x570B;4x1518B) | | ... | | [Tags] | IMIX | 2T2C | MTHREAD | PDRDISC | SKIP_PATCH | | [Template] | L2 Bridge Domain Binary Search | | framesize=IMIX_v4_1 | min_rate=${10000} | wt=2 | rxq=1 | search_type=PDR | tc11-1518B-2t2c-ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc-k8s-ndrdisc | | [Documentation] | | ... | [Cfg] DUT runs L2BD switching config with 2 thread, 1 phy core,\ | | ... | 1 receive queue per NIC port. | | ... | [Ver] Find NDR for 1518 Byte frames using binary search start at 10GE\ | | ... | linerate, step 10kpps. | | ... | | [Tags] | 1518B | 2T2C | MTHREAD | NDRDISC | SKIP_PATCH | | [Template] | L2 Bridge Domain Binary Search | | framesize=${1518} | min_rate=${10000} | wt=2 | rxq=1 | search_type=NDR | tc12-1518B-2t2c-ho-eth-1drcl2bdbasemaclrn-eth-2memif-4drcl2xc-k8s-pdrdisc | | [Documentation] | | ... | [Cfg] DUT runs L2BD switching config with 2 thread, 1 phy core,\ | | ... | 1 receive queue per NIC port. | | ... | [Ver] Find PDR for 1518 Byte frames using binary search start at 10GE\ | | ... | linerate, step 10kpps, LT=0.5%. | | ... | | [Tags] | 1518B | 2T2C | MTHREAD | PDRDISC | SKIP_PATCH | | [Template] | L2 Bridge Domain Binary Search | | framesize=${1518} | min_rate=${10000} | wt=2 | rxq=1 | search_type=PDR