Documentation: networking: add RSS information
Signed-off-by: Madalin Bucur <madalin.bucur@nxp.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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@ -13,6 +13,7 @@ Contents
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- Configuring DPAA Ethernet in your kernel
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- DPAA Ethernet Frame Processing
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- DPAA Ethernet Features
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- DPAA IRQ Affinity and Receive Side Scaling
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- Debugging
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DPAA Ethernet Overview
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@ -147,7 +148,10 @@ gradually.
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The driver has Rx and Tx checksum offloading for UDP and TCP. Currently the Rx
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checksum offload feature is enabled by default and cannot be controlled through
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ethtool.
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ethtool. Also, rx-flow-hash and rx-hashing was added. The addition of RSS
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provides a big performance boost for the forwarding scenarios, allowing
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different traffic flows received by one interface to be processed by different
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CPUs in parallel.
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The driver has support for multiple prioritized Tx traffic classes. Priorities
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range from 0 (lowest) to 3 (highest). These are mapped to HW workqueues with
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@ -166,6 +170,68 @@ classes as follows:
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tc qdisc add dev <int> root handle 1: \
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mqprio num_tc 4 map 0 0 0 0 1 1 1 1 2 2 2 2 3 3 3 3 hw 1
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DPAA IRQ Affinity and Receive Side Scaling
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==========================================
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Traffic coming on the DPAA Rx queues or on the DPAA Tx confirmation
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queues is seen by the CPU as ingress traffic on a certain portal.
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The DPAA QMan portal interrupts are affined each to a certain CPU.
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The same portal interrupt services all the QMan portal consumers.
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By default the DPAA Ethernet driver enables RSS, making use of the
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DPAA FMan Parser and Keygen blocks to distribute traffic on 128
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hardware frame queues using a hash on IP v4/v6 source and destination
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and L4 source and destination ports, in present in the received frame.
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When RSS is disabled, all traffic received by a certain interface is
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received on the default Rx frame queue. The default DPAA Rx frame
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queues are configured to put the received traffic into a pool channel
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that allows any available CPU portal to dequeue the ingress traffic.
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The default frame queues have the HOLDACTIVE option set, ensuring that
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traffic bursts from a certain queue are serviced by the same CPU.
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This ensures a very low rate of frame reordering. A drawback of this
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is that only one CPU at a time can service the traffic received by a
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certain interface when RSS is not enabled.
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To implement RSS, the DPAA Ethernet driver allocates an extra set of
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128 Rx frame queues that are configured to dedicated channels, in a
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round-robin manner. The mapping of the frame queues to CPUs is now
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hardcoded, there is no indirection table to move traffic for a certain
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FQ (hash result) to another CPU. The ingress traffic arriving on one
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of these frame queues will arrive at the same portal and will always
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be processed by the same CPU. This ensures intra-flow order preservation
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and workload distribution for multiple traffic flows.
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RSS can be turned off for a certain interface using ethtool, i.e.
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# ethtool -N fm1-mac9 rx-flow-hash tcp4 ""
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To turn it back on, one needs to set rx-flow-hash for tcp4/6 or udp4/6:
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# ethtool -N fm1-mac9 rx-flow-hash udp4 sfdn
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There is no independent control for individual protocols, any command
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run for one of tcp4|udp4|ah4|esp4|sctp4|tcp6|udp6|ah6|esp6|sctp6 is
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going to control the rx-flow-hashing for all protocols on that interface.
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Besides using the FMan Keygen computed hash for spreading traffic on the
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128 Rx FQs, the DPAA Ethernet driver also sets the skb hash value when
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the NETIF_F_RXHASH feature is on (active by default). This can be turned
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on or off through ethtool, i.e.:
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# ethtool -K fm1-mac9 rx-hashing off
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# ethtool -k fm1-mac9 | grep hash
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receive-hashing: off
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# ethtool -K fm1-mac9 rx-hashing on
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Actual changes:
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receive-hashing: on
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# ethtool -k fm1-mac9 | grep hash
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receive-hashing: on
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Please note that Rx hashing depends upon the rx-flow-hashing being on
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for that interface - turning off rx-flow-hashing will also disable the
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rx-hashing (without ethtool reporting it as off as that depends on the
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NETIF_F_RXHASH feature flag).
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Debugging
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=========
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