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authorMatthew Kobayashi <matthew@kobayashi.au>2024-04-18 16:47:57 +1000
committerMergify <37929162+mergify[bot]@users.noreply.github.com>2024-04-18 12:48:31 +0000
commitea48162696e2d34699d1b594772e154c4c6df8d9 (patch)
treed617f2c2f45f8e7fb482d0657204d63289471062
parentbb4dc2ab3c94d437bcf7e7792a027a9acee0cc3e (diff)
downloadvyos-documentation-ea48162696e2d34699d1b594772e154c4c6df8d9.tar.gz
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ethernet: Add details about LRO/GRO
(cherry picked from commit 0130485ced95e2d79ae27b77d8a5591469cfec46)
-rw-r--r--docs/configuration/interfaces/ethernet.rst28
1 files changed, 22 insertions, 6 deletions
diff --git a/docs/configuration/interfaces/ethernet.rst b/docs/configuration/interfaces/ethernet.rst
index ade72c98..fada4d2e 100644
--- a/docs/configuration/interfaces/ethernet.rst
+++ b/docs/configuration/interfaces/ethernet.rst
@@ -61,6 +61,22 @@ Offloading
Enable different types of hardware offloading on the given NIC.
+ :abbr:`LRO (Large Receive Offload)` is a technique designed to boost the
+ efficiency of how your computer's network interface card (NIC) processes
+ incoming network traffic. Typically, network data arrives in smaller chunks
+ called packets. Processing each packet individually consumes CPU (central
+ processing unit) resources. Lots of small packets can lead to a performance
+ bottleneck. Instead of handing the CPU each packet as it comes in, LRO
+ instructs the NIC to combine multiple incoming packets into a single, larger
+ packet. This larger packet is then passed to the CPU for processing.
+
+ .. note:: Under some circumstances, LRO is known to modify the packet headers
+ of forwarded traffic, which breaks the end-to-end principle of computer
+ networking. LRO is also only able to offload TCP segments encapsulated in
+ IPv4 packets. Due to these limitations, it is recommended to use GRO
+ (Generic Receive Offload) where possible. More information on the
+ limitations of LRO can be found here: https://lwn.net/Articles/358910/
+
:abbr:`GSO (Generic Segmentation Offload)` is a pure software offload that is
meant to deal with cases where device drivers cannot perform the offloads
described above. What occurs in GSO is that a given skbuff will have its data
@@ -87,13 +103,13 @@ Offloading
placing the packet on the desired CPU's backlog queue and waking up the CPU
for processing. RPS has some advantages over RSS:
- - it can be used with any NIC,
- - software filters can easily be added to hash over new protocols,
- - it does not increase hardware device interrupt rate (although it does
- introduce inter-processor interrupts (IPIs)).
+ - it can be used with any NIC
+ - software filters can easily be added to hash over new protocols
+ - it does not increase hardware device interrupt rate, although it does
+ introduce inter-processor interrupts (IPIs)
- .. note:: In order to use TSO/LRO with VMXNET3 adaters one must also enable
- the SG offloading option.
+ .. note:: In order to use TSO/LRO with VMXNET3 adapters, the SG offloading
+ option must also be enabled.
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