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authorDavid S. Miller <davem@davemloft.net>2021-06-29 10:46:23 -0700
committerDavid S. Miller <davem@davemloft.net>2021-06-29 10:46:23 -0700
commit7f4e5c5b8cb00138ad1a10cab87bbd1e2d4d3376 (patch)
tree4299fdf57fa2a7d1c6b649089736321a1f1d7cc8 /net/caif
parent84fe73996c2e7407006002ef92d7354a56b69fed (diff)
parent63c51453c82cddc27556233ff41041ea9fc49fe0 (diff)
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Merge branch 'dsa-rx-filtering'
Vladimir Oltean says: ==================== RX filtering in DSA This is my fourth stab (identical to the third one except sent as non-RFC) at creating a list of unicast and multicast addresses that the DSA CPU ports must trap. I am reusing a lot of Tobias's work which he submitted here: https://patchwork.kernel.org/project/netdevbpf/cover/20210116012515.3152-1-tobias@waldekranz.com/ My additions to Tobias' work come in the form of taking some care that additions and removals of host addresses are properly balanced, so that we can do reference counting on them for cross-chip setups and multiple bridges spanning the same switch (I am working on an NXP board where both are real requirements). During the last attempted submission of multiple CPU ports for DSA: https://patchwork.kernel.org/project/netdevbpf/cover/20210410133454.4768-1-ansuelsmth@gmail.com/ it became clear that the concept of multiple CPU ports would not be compatible with the idea of address learning on those CPU ports (when those CPU ports are statically assigned to user ports, not in a LAG) unless the switch supports complete FDB isolation, which most switches do not. So DSA needs to manage in software all addresses that are installed on the CPU port(s), which is what this patch set does. Compared to all earlier attempts, this series does not fiddle with how DSA operates the ports in standalone mode at all, just when bridged. We need to sort that out properly, then any optimization that comes in standalone mode (i.e. IFF_UNICAST_FLT) can come later. ==================== Signed-off-by: David S. Miller <davem@davemloft.net>
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