68d99d00ae
Make is no longer supported for compiling DPDK, references are now removed in the documentation. Signed-off-by: Ciara Power <ciara.power@intel.com> Reviewed-by: Bruce Richardson <bruce.richardson@intel.com> Reviewed-by: Igor Russkikh <irusskikh@marvell.com> Reviewed-by: Ferruh Yigit <ferruh.yigit@intel.com> Reviewed-by: Harman Kalra <hkalra@marvell.com> Acked-by: Ajit Khaparde <ajit.khaparde@broadcom.com> Acked-by: Hyong Youb Kim <hyonkim@cisco.com>
147 lines
4.9 KiB
ReStructuredText
147 lines
4.9 KiB
ReStructuredText
.. SPDX-License-Identifier: BSD-3-Clause
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Copyright 2015 - 2016 CESNET
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SZEDATA2 poll mode driver library
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=================================
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The SZEDATA2 poll mode driver library implements support for the Netcope
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FPGA Boards (**NFB-40G2, NFB-100G2, NFB-200G2QL**) and Silicom **FB2CGG3** card,
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FPGA-based programmable NICs. The SZEDATA2 PMD uses interface provided by the libsze2
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library to communicate with the NFB cards over the sze2 layer.
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More information about the
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`NFB cards <http://www.netcope.com/en/products/fpga-boards>`_
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and used technology
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(`Netcope Development Kit <http://www.netcope.com/en/products/fpga-development-kit>`_)
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can be found on the `Netcope Technologies website <http://www.netcope.com/>`_.
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.. note::
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Currently the driver is supported only on x86_64 architectures.
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Only x86_64 versions of the external libraries are provided.
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Prerequisites
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-------------
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This PMD requires kernel modules which are responsible for initialization and
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allocation of resources needed for sze2 layer function.
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Communication between PMD and kernel modules is mediated by libsze2 library.
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These kernel modules and library are not part of DPDK and must be installed
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separately:
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* **libsze2 library**
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The library provides API for initialization of sze2 transfers, receiving and
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transmitting data segments.
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* **Kernel modules**
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* combo6core
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* combov3
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* szedata2
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* szedata2_cv3 or szedata2_cv3_fdt
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Kernel modules manage initialization of hardware, allocation and
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sharing of resources for user space applications.
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Information about getting the dependencies can be found `here
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<http://www.netcope.com/en/company/community-support/dpdk-libsze2>`_.
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Versions of the packages
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~~~~~~~~~~~~~~~~~~~~~~~~
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The minimum version of the provided packages:
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* for DPDK from 18.05: **4.4.1**
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* for DPDK up to 18.02 (including): **3.0.5**
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Using the SZEDATA2 PMD
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----------------------
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From DPDK version 16.04 the type of SZEDATA2 PMD is changed to PMD_PDEV.
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SZEDATA2 device is automatically recognized during EAL initialization.
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No special command line options are needed.
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Kernel modules have to be loaded before running the DPDK application.
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NFB card architecture
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---------------------
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The NFB cards are multi-port multi-queue cards, where (generally) data from any
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Ethernet port may be sent to any queue.
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They were historically represented in DPDK as a single port.
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However, the new NFB-200G2QL card employs an add-on cable which allows to connect
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it to two physical PCI-E slots at the same time (see the diagram below).
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This is done to allow 200 Gbps of traffic to be transferred through the PCI-E
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bus (note that a single PCI-E 3.0 x16 slot provides only 125 Gbps theoretical
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throughput).
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Since each slot may be connected to a different CPU and therefore to a different
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NUMA node, the card is represented as two ports in DPDK (each with half of the
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queues), which allows DPDK to work with data from the individual queues on the
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right NUMA node.
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.. figure:: img/szedata2_nfb200g_architecture.*
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:align: center
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NFB-200G2QL high-level diagram
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Limitations
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-----------
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The SZEDATA2 PMD does not support operations related to Ethernet ports
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(link_up, link_down, set_mac_address, etc.).
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NFB cards employ multiple Ethernet ports.
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Until now, Ethernet port-related operations were performed on all of them
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(since the whole card was represented as a single port).
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With NFB-200G2QL card, this is no longer viable (see above).
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Since there is no fixed mapping between the queues and Ethernet ports, and since
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a single card can be represented as two ports in DPDK, there is no way of
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telling which (if any) physical ports should be associated with individual
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ports in DPDK.
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Example of usage
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----------------
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Read packets from 0. and 1. receive channel and write them to 0. and 1.
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transmit channel:
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.. code-block:: console
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./<build_dir>/app/dpdk-testpmd -l 0-3 -n 2 \
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-- --port-topology=chained --rxq=2 --txq=2 --nb-cores=2 -i -a
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Example output:
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.. code-block:: console
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[...]
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EAL: PCI device 0000:06:00.0 on NUMA socket -1
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EAL: probe driver: 1b26:c1c1 rte_szedata2_pmd
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PMD: Initializing szedata2 device (0000:06:00.0)
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PMD: SZEDATA2 path: /dev/szedataII0
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PMD: Available DMA channels RX: 8 TX: 8
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PMD: resource0 phys_addr = 0xe8000000 len = 134217728 virt addr = 7f48f8000000
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PMD: szedata2 device (0000:06:00.0) successfully initialized
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Interactive-mode selected
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Auto-start selected
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Configuring Port 0 (socket 0)
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Port 0: 00:11:17:00:00:00
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Checking link statuses...
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Port 0 Link Up - speed 10000 Mbps - full-duplex
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Done
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Start automatic packet forwarding
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io packet forwarding - CRC stripping disabled - packets/burst=32
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nb forwarding cores=2 - nb forwarding ports=1
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RX queues=2 - RX desc=128 - RX free threshold=0
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RX threshold registers: pthresh=0 hthresh=0 wthresh=0
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TX queues=2 - TX desc=512 - TX free threshold=0
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TX threshold registers: pthresh=0 hthresh=0 wthresh=0
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TX RS bit threshold=0 - TXQ flags=0x0
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testpmd>
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