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Type: refactor
currently vnet_classify.h is included in ip.h where it's not required.
Change-Id: Id55682637601655aa2edda681536a979c8e323bd
Signed-off-by: Neale Ranns <nranns@cisco.com>
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Type: fix
Change-Id: I684910837ca4d9c8a07262459158bbb0423a33af
Signed-off-by: Zhiyong Yang <zhiyong.yang@intel.com>
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Type: feature
Change-Id: Ib24547a7c4c73ceb5383d1ca8f14ec40e6a90f01
Signed-off-by: Neale Ranns <nranns@cisco.com>
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whole route
Type: fix
Fixes: 097fa66b
Change-Id: I017ab5797670eb278c27c6e306cd8cadaacddf9d
Signed-off-by: Neale Ranns <nranns@cisco.com>
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Enhance the route add/del APIs to take a set of paths rather than just one.
Most unicast routing protocols calcualte all the available paths in one
run of the algorithm so updating all the paths at once is beneficial for the client.
two knobs control the behaviour:
is_multipath - if set the the set of paths passed will be added to those
that already exist, otherwise the set will replace them.
is_add - add or remove the set
is_add=0, is_multipath=1 and an empty set, results in deleting the route.
It is also considerably faster to add multiple paths at once, than one at a time:
vat# ip_add_del_route 1.1.1.1/32 count 100000 multipath via 10.10.10.11
100000 routes in .572240 secs, 174751.80 routes/sec
vat# ip_add_del_route 1.1.1.1/32 count 100000 multipath via 10.10.10.12
100000 routes in .528383 secs, 189256.54 routes/sec
vat# ip_add_del_route 1.1.1.1/32 count 100000 multipath via 10.10.10.13
100000 routes in .757131 secs, 132077.52 routes/sec
vat# ip_add_del_route 1.1.1.1/32 count 100000 multipath via 10.10.10.14
100000 routes in .878317 secs, 113854.12 routes/sec
vat# ip_route_add_del 1.1.1.1/32 count 100000 multipath via 10.10.10.11 via 10.10.10.12 via 10.10.10.13 via 10.10.10.14
100000 routes in .900212 secs, 111084.93 routes/sec
Change-Id: I416b93f7684745099c1adb0b33edac58c9339c1a
Signed-off-by: Neale Ranns <neale.ranns@cisco.com>
Signed-off-by: Ole Troan <ot@cisco.com>
Signed-off-by: Paul Vinciguerra <pvinci@vinciconsulting.com>
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Change-Id: I53ab8d17914e6563110354e4052109ac02bf8f3b
Signed-off-by: Paul Vinciguerra <pvinci@vinciconsulting.com>
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Change-Id: Ib27952935393163eaabf005c69b1cbc2feca2b98
Signed-off-by: Neale Ranns <nranns@cisco.com>
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Change-Id: I28e8a99b980ad343a4209e673201791b91ceab4e
Signed-off-by: Neale Ranns <nranns@cisco.com>
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Change-Id: Ied34720ca5a6e6e717eea4e86003e854031b6eab
Signed-off-by: Dave Barach <dave@barachs.net>
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match against a packet's source address to determine
the VRF for the subsequent destination address lookup.
Change-Id: I48ee0ef54dcb891f0ec7f879e4d3b925a0ed0081
Signed-off-by: Neale Ranns <nranns@cisco.com>
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Change-Id: I57b4ebca29c0b185770373e8878f89a9bd13b742
Signed-off-by: Neale Ranns <nranns@cisco.com>
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Change-Id: I383cfb662b4d2bf4f814e3eb9a1ce4d6bff7066d
Signed-off-by: Neale Ranns <nranns@cisco.com>
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The interpose source allows the source/provider to insert/interpose
a DPO in the forwarding chain of the FIB entry ahead of the forwarding
provided by the next best source. For example if the API source (i.e
the 'control plane') has provided an adjacency for forwarding, then
an interpose source (e.g. a monitoring service) couold interpose a
replicatte DPO to copy the traffic to another location AND forward
using the API's adjacency.
To use the interose feature an existing source (i.e FIB_SOURCE_PLUGIN_HI)
cn specifiy as a flag FIB_ENTRY_FLAG_INTERPOSE and provide a DPO to
interpose. One might also consider using interpose in conjunction with
FIB_ENTRY_FLAG_COVER_INHERIT to ensure the interpose object affects
all prefixes in the sub-tree.
Change-Id: I8b2737b985f8f7c08123406d0491881def347b52
Signed-off-by: Neale Ranns <nranns@cisco.com>
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Change-Id: I7cdc29dd6481242aaace75138cc34e2f5ea76b81
Signed-off-by: Neale Ranns <neale.ranns@cisco.com>
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Change-Id: I26c5d61bc2f6188bcd4ecac4b5e9385821b0398b
Signed-off-by: Dmitry Vakhrushev <dmitry@netgate.com>
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Change-Id: I8f6fdbbeef2ac7e9fe5d87490ae5cba6e9a0b294
Signed-off-by: Neale Ranns <nranns@cisco.com>
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