3ca3dcd651
If hardware supports IEEE 1588 PTP, PTP capability will be set.
Currently, vec and sve burst is unsupported when PTP capability is set.
For sake of Rx/Tx performance, IEEE 1588 PTP is not supported in sve or
vec burst mode. When enabling IEEE 1588 PTP, Rx/Tx burst mode should be
simple or common. Rx/Tx burst mode could be set like this, for example:
-a 0000:35:00.0,rx_func_hint=common,tx_func_hint=common
This patch supports vec and sve burst when PTP is disabled. And only
support simple or common burst When PTP is enabled.
Fixes: 38b539d96e
("net/hns3: support IEEE 1588 PTP")
Cc: stable@dpdk.org
Signed-off-by: Min Hu (Connor) <humin29@huawei.com>
300 lines
9.6 KiB
ReStructuredText
300 lines
9.6 KiB
ReStructuredText
.. SPDX-License-Identifier: BSD-3-Clause
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Copyright(c) 2018-2019 HiSilicon Limited.
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HNS3 Poll Mode Driver
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===============================
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The hns3 PMD (**librte_net_hns3**) provides poll mode driver support
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for the inbuilt HiSilicon Network Subsystem(HNS) network engine
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found in the HiSilicon Kunpeng 920 SoC and Kunpeng 930 SoC .
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Features
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--------
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Features of the HNS3 PMD are:
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- Multiple queues for TX and RX
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- Receive Side Scaling (RSS)
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- Packet type information
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- Checksum offload
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- TSO offload
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- LRO offload
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- Promiscuous mode
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- Multicast mode
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- Port hardware statistics
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- Jumbo frames
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- Link state information
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- Interrupt mode for RX
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- VLAN stripping and inserting
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- QinQ inserting
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- DCB
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- Scattered and gather for TX and RX
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- Vector Poll mode driver
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- Dump register
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- SR-IOV VF
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- Multi-process
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- MAC/VLAN filter
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- MTU update
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- NUMA support
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- Generic flow API
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- IEEE1588/802.1AS timestamping
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Prerequisites
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-------------
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- Get the information about Kunpeng920 chip using
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`<https://www.hisilicon.com/en/products/Kunpeng>`_.
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- Follow the DPDK :ref:`Getting Started Guide for Linux <linux_gsg>` to
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setup the basic DPDK environment.
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Pre-Installation Configuration
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------------------------------
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Config File Options
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~~~~~~~~~~~~~~~~~~~
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The following options can be modified in the ``config/rte_config.h`` file.
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- ``RTE_LIBRTE_HNS3_MAX_TQP_NUM_PER_PF`` (default ``256``)
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Number of MAX queues reserved for PF.
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Runtime Config Options
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~~~~~~~~~~~~~~~~~~~~~~
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- ``rx_func_hint`` (default ``none``)
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Used to select Rx burst function, supported value are ``vec``, ``sve``,
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``simple``, ``common``.
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``vec``, if supported use the ``vec`` Rx function which indicates the
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default vector algorithm, neon for Kunpeng Arm platform.
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``sve``, if supported use the ``sve`` Rx function which indicates the
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sve algorithm.
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``simple``, if supported use the ``simple`` Rx function which indicates
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the scalar simple algorithm.
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``common``, if supported use the ``common`` Rx function which indicates
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the scalar scattered algorithm.
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When provided parameter is not supported, ``vec`` usage condition will
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be first checked, if meets, use the ``vec``. Then, ``simple``, at last
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``common``.
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For example::
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-a 0000:7d:00.0,rx_func_hint=simple
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- ``tx_func_hint`` (default ``none``)
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Used to select Tx burst function, supported value are ``vec``, ``sve``,
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``simple``, ``common``.
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``vec``, if supported use the ``vec`` Tx function which indicates the
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default vector algorithm, neon for Kunpeng Arm platform.
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``sve``, if supported use the ``sve`` Tx function which indicates the
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sve algorithm.
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``simple``, if supported use the ``simple`` Tx function which indicates
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the scalar simple algorithm.
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``common``, if supported use the ``common`` Tx function which indicates
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the scalar algorithm.
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When provided parameter is not supported, ``vec`` usage condition will
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be first checked, if meets, use the ``vec``. Then, ``simple``, at last
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``common``.
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For example::
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-a 0000:7d:00.0,tx_func_hint=common
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- ``dev_caps_mask`` (default ``0``)
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Used to mask the capability which queried from firmware.
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This args take hexadecimal bitmask where each bit represents whether mask
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corresponding capability. eg. If the capability is 0xFFFF queried from
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firmware, and the args value is 0xF which means the bit0~bit3 should be
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masked off, then the capability will be 0xFFF0.
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Its main purpose is to debug and avoid problems.
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For example::
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-a 0000:7d:00.0,dev_caps_mask=0xF
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- ``mbx_time_limit_ms`` (default ``500``)
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Used to define the mailbox time limit by user.
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Current, the max waiting time for MBX response is 500ms, but in
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some scenarios, it is not enough. Since it depends on the response
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of the kernel mode driver, and its response time is related to the
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scheduling of the system. In this special scenario, most of the
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cores are isolated, and only a few cores are used for system
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scheduling. When a large number of services are started, the
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scheduling of the system will be very busy, and the reply of the
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mbx message will time out, which will cause our PMD initialization
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to fail. So provide access to set mailbox time limit for user.
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For example::
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-a 0000:7d:00.0,mbx_time_limit_ms=600
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Link status event Pre-conditions
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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Firmware 1.8.0.0 and later versions support reporting link changes to the PF.
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Therefore, to use the LSC for the PF driver, ensure that the firmware version
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also supports reporting link changes.
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If the VF driver needs to support LSC, special patch must be added:
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`<https://git.kernel.org/pub/scm/linux/kernel/git/next/linux-next.git/commit/drivers/net/ethernet/hisilicon/hns3?h=next-20210428&id=18b6e31f8bf4ac7af7b057228f38a5a530378e4e>`_.
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Note: The patch has been uploaded to 5.13 of the Linux kernel mainline.
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Driver compilation and testing
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------------------------------
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Refer to the document :ref:`compiling and testing a PMD for a NIC <pmd_build_and_test>`
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for details.
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Sample Application Notes
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------------------------
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VLAN filter
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~~~~~~~~~~~
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VLAN filter only works when Promiscuous mode is off.
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To start ``testpmd``, and add VLAN 10 to port 0:
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.. code-block:: console
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./<build_dir>/app/dpdk-testpmd -l 0-15 -n 4 -- -i --forward-mode=mac
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...
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testpmd> set promisc 0 off
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testpmd> vlan set filter on 0
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testpmd> rx_vlan add 10 0
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Flow Director
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~~~~~~~~~~~~~
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The Flow Director works in receive mode to identify specific flows or sets of
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flows and route them to specific queues.
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The Flow Director filters can match the different fields for different type of
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packet: flow type, specific input set per flow type.
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Start ``testpmd``:
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.. code-block:: console
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./<build_dir>/app/dpdk-testpmd -l 0-15 -n 4 -- -i --rxq=8 --txq=8 \
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--nb-cores=8 --nb-ports=1
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Add a rule to direct ``ipv4-udp`` packet whose ``dst_ip=2.2.2.5, src_ip=2.2.2.3,
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src_port=32, dst_port=32`` to queue 1:
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.. code-block:: console
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testpmd> flow create 0 ingress pattern eth / ipv4 src is 2.2.2.3 \
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dst is 2.2.2.5 / udp src is 32 dst is 32 / end \
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actions mark id 1 / queue index 1 / end
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Generic flow API
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~~~~~~~~~~~~~~~~
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- ``RSS Flow``
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RSS Flow supports to set hash input set, hash function, enable hash
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and configure queues.
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For example:
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Configure queues as queue 0, 1, 2, 3.
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.. code-block:: console
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testpmd> flow create 0 ingress pattern end actions rss types end \
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queues 0 1 2 3 end / end
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Enable hash and set input set for IPv4-TCP.
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.. code-block:: console
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testpmd> flow create 0 ingress pattern eth / ipv4 / tcp / end \
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actions rss types ipv4-tcp l3-src-only end queues end / end
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Set symmetric hash enable for flow type IPv4-TCP.
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.. code-block:: console
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testpmd> flow create 0 ingress pattern eth / ipv4 / tcp / end \
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actions rss types ipv4-tcp end queues end func symmetric_toeplitz / end
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Set hash function as simple xor.
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.. code-block:: console
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testpmd> flow create 0 ingress pattern end actions rss types end \
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queues end func simple_xor / end
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Statistics
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----------
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HNS3 supports various methods to report statistics:
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Port statistics can be queried using ``rte_eth_stats_get()``. The number
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of packets received or sent successfully by the PMD. While the received and
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sent packet bytes are through SW only. The imissed counter is the amount of
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packets that could not be delivered to SW because a queue was full. The oerror
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counter is the amount of packets that are dropped by HW in Tx.
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Extended statistics can be queried using ``rte_eth_xstats_get()``. The extended
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statistics expose a wider set of counters counted by the device. The extended
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port statistics contains packets statistics per queue, Mac statistics, HW reset
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count and IO error count.
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Finally per-flow statistics can by queried using ``rte_flow_query`` when attaching
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a count action for specific flow. The flow counter counts the number of packets
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received successfully by the port and match the specific flow.
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Performance tuning
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------------------
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Hardware configuration
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~~~~~~~~~~~~~~~~~~~~~~
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32 GB DIMMs is used to ensure that each channel is fully configured.
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Dynamic CPU Tuning is disabled.
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Queue depth configuration
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~~~~~~~~~~~~~~~~~~~~~~~~~
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According to the actual test, the performance is best when the queue depth
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ranges from 1024 to 2048.
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IO burst configuration
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~~~~~~~~~~~~~~~~~~~~~~
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According to the actual test, the performance is best when IO burst is set to 64.
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IO burst is the number of packets per burst.
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Queue number configuration
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~~~~~~~~~~~~~~~~~~~~~~~~~~
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When the number of port queues corresponds to the number of CPU cores, the
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performance will be better.
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Hugepage configuration
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~~~~~~~~~~~~~~~~~~~~~~
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For 4K systems, 1 GB hugepages are recommended. For 64 KB systems, 512 MB
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hugepages are recommended.
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CPU core isolation
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~~~~~~~~~~~~~~~~~~
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To reduce the possibility of context switching, kernel isolation parameter should
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be provided to avoid scheduling the CPU core used by DPDK application threads for
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other tasks. Before starting the Linux OS, add the kernel isolation boot parameter.
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For example, "isolcpus=1-18 nohz_full=1-18 rcu_nocbs=1-18".
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Limitations or Known issues
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---------------------------
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Currently, we only support VF device driven by DPDK driver when PF is driven
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by kernel mode hns3 ethdev driver. VF is not supported when PF is driven by
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DPDK driver.
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For sake of Rx/Tx performance, IEEE 1588 is not supported when using vec or
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sve burst function. When enabling IEEE 1588, Rx/Tx burst mode should be
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simple or common. It is recommended that enable IEEE 1588 before ethdev
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start. In this way, the correct Rx/Tx burst function can be selected.
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Build with ICC is not supported yet.
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X86-32, Power8, ARMv7 and BSD are not supported yet.
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