<feed xmlns='http://www.w3.org/2005/Atom'>
<title>kernel/linux.git/drivers/net/dsa/ocelot, branch v6.6.150</title>
<subtitle>Linux kernel stable tree (mirror)</subtitle>
<id>https://git.radix-linux.su/kernel/linux.git/atom?h=v6.6.150</id>
<link rel='self' href='https://git.radix-linux.su/kernel/linux.git/atom?h=v6.6.150'/>
<link rel='alternate' type='text/html' href='https://git.radix-linux.su/kernel/linux.git/'/>
<updated>2025-05-09T07:44:01+00:00</updated>
<entry>
<title>net: dsa: felix: fix broken taprio gate states after clock jump</title>
<updated>2025-05-09T07:44:01+00:00</updated>
<author>
<name>Vladimir Oltean</name>
<email>vladimir.oltean@nxp.com</email>
</author>
<published>2025-04-26T14:48:55+00:00</published>
<link rel='alternate' type='text/html' href='https://git.radix-linux.su/kernel/linux.git/commit/?id=8acf08b1e4ec9ed416b80df55276ef51e6a3fbaf'/>
<id>urn:sha1:8acf08b1e4ec9ed416b80df55276ef51e6a3fbaf</id>
<content type='text'>
[ Upstream commit 426d487bca38b34f39c483edfc6313a036446b33 ]

Simplest setup to reproduce the issue: connect 2 ports of the
LS1028A-RDB together (eno0 with swp0) and run:

$ ip link set eno0 up &amp;&amp; ip link set swp0 up
$ tc qdisc replace dev swp0 parent root handle 100 taprio num_tc 8 \
	queues 1@0 1@1 1@2 1@3 1@4 1@5 1@6 1@7 map 0 1 2 3 4 5 6 7 \
	base-time 0 sched-entry S 20 300000 sched-entry S 10 200000 \
	sched-entry S 20 300000 sched-entry S 48 200000 \
	sched-entry S 20 300000 sched-entry S 83 200000 \
	sched-entry S 40 300000 sched-entry S 00 200000 flags 2
$ ptp4l -i eno0 -f /etc/linuxptp/configs/gPTP.cfg -m &amp;
$ ptp4l -i swp0 -f /etc/linuxptp/configs/gPTP.cfg -m

One will observe that the PTP state machine on swp0 starts
synchronizing, then it attempts to do a clock step, and after that, it
never fails to recover from the condition below.

ptp4l[82.427]: selected best master clock 00049f.fffe.05f627
ptp4l[82.428]: port 1 (swp0): MASTER to UNCALIBRATED on RS_SLAVE
ptp4l[83.252]: port 1 (swp0): UNCALIBRATED to SLAVE on MASTER_CLOCK_SELECTED
ptp4l[83.886]: rms 4537731277 max 9075462553 freq -18518 +/- 11467 delay   818 +/-   0
ptp4l[84.170]: timed out while polling for tx timestamp
ptp4l[84.171]: increasing tx_timestamp_timeout or increasing kworker priority may correct this issue, but a driver bug likely causes it
ptp4l[84.172]: port 1 (swp0): send peer delay request failed
ptp4l[84.173]: port 1 (swp0): clearing fault immediately
ptp4l[84.269]: port 1 (swp0): SLAVE to LISTENING on INIT_COMPLETE
ptp4l[85.303]: timed out while polling for tx timestamp
ptp4l[84.171]: increasing tx_timestamp_timeout or increasing kworker priority may correct this issue, but a driver bug likely causes it
ptp4l[84.172]: port 1 (swp0): send peer delay request failed
ptp4l[84.173]: port 1 (swp0): clearing fault immediately
ptp4l[84.269]: port 1 (swp0): SLAVE to LISTENING on INIT_COMPLETE
ptp4l[85.303]: timed out while polling for tx timestamp
ptp4l[85.304]: increasing tx_timestamp_timeout or increasing kworker priority may correct this issue, but a driver bug likely causes it
ptp4l[85.305]: port 1 (swp0): send peer delay response failed
ptp4l[85.306]: port 1 (swp0): clearing fault immediately
ptp4l[86.304]: timed out while polling for tx timestamp

A hint is given by the non-zero statistics for dropped packets which
were expecting hardware TX timestamps:

$ ethtool --include-statistics -T swp0
(...)
Statistics:
  tx_pkts: 30
  tx_lost: 11
  tx_err: 0

We know that when PTP clock stepping takes place (from ocelot_ptp_settime64()
or from ocelot_ptp_adjtime()), vsc9959_tas_clock_adjust() is called.

Another interesting hint is that placing an early return in
vsc9959_tas_clock_adjust(), so as to neutralize this function, fixes the
issue and TX timestamps are no longer dropped.

The debugging function written by me and included below is intended to
read the GCL RAM, after the admin schedule became operational, through
the two status registers available for this purpose:
QSYS_GCL_STATUS_REG_1 and QSYS_GCL_STATUS_REG_2.

static void vsc9959_print_tas_gcl(struct ocelot *ocelot)
{
	u32 val, list_length, interval, gate_state;
	int i, err;

	err = read_poll_timeout(ocelot_read, val,
				!(val &amp; QSYS_PARAM_STATUS_REG_8_CONFIG_PENDING),
				10, 100000, false, ocelot, QSYS_PARAM_STATUS_REG_8);
	if (err) {
		dev_err(ocelot-&gt;dev,
			"Failed to wait for TAS config pending bit to clear: %pe\n",
			ERR_PTR(err));
		return;
	}

	val = ocelot_read(ocelot, QSYS_PARAM_STATUS_REG_3);
	list_length = QSYS_PARAM_STATUS_REG_3_LIST_LENGTH_X(val);

	dev_info(ocelot-&gt;dev, "GCL length: %u\n", list_length);

	for (i = 0; i &lt; list_length; i++) {
		ocelot_rmw(ocelot,
			   QSYS_GCL_STATUS_REG_1_GCL_ENTRY_NUM(i),
			   QSYS_GCL_STATUS_REG_1_GCL_ENTRY_NUM_M,
			   QSYS_GCL_STATUS_REG_1);
		interval = ocelot_read(ocelot, QSYS_GCL_STATUS_REG_2);
		val = ocelot_read(ocelot, QSYS_GCL_STATUS_REG_1);
		gate_state = QSYS_GCL_STATUS_REG_1_GATE_STATE_X(val);

		dev_info(ocelot-&gt;dev, "GCL entry %d: states 0x%x interval %u\n",
			 i, gate_state, interval);
	}
}

Calling it from two places: after the initial QSYS_TAS_PARAM_CFG_CTRL_CONFIG_CHANGE
performed by vsc9959_qos_port_tas_set(), and after the one done by
vsc9959_tas_clock_adjust(), I notice the following difference.

From the tc-taprio process context, where the schedule was initially
configured, the GCL looks like this:

mscc_felix 0000:00:00.5: GCL length: 8
mscc_felix 0000:00:00.5: GCL entry 0: states 0x20 interval 300000
mscc_felix 0000:00:00.5: GCL entry 1: states 0x10 interval 200000
mscc_felix 0000:00:00.5: GCL entry 2: states 0x20 interval 300000
mscc_felix 0000:00:00.5: GCL entry 3: states 0x48 interval 200000
mscc_felix 0000:00:00.5: GCL entry 4: states 0x20 interval 300000
mscc_felix 0000:00:00.5: GCL entry 5: states 0x83 interval 200000
mscc_felix 0000:00:00.5: GCL entry 6: states 0x40 interval 300000
mscc_felix 0000:00:00.5: GCL entry 7: states 0x0 interval 200000

But from the ptp4l clock stepping process context, when the
vsc9959_tas_clock_adjust() hook is called, the GCL RAM of the
operational schedule now looks like this:

mscc_felix 0000:00:00.5: GCL length: 8
mscc_felix 0000:00:00.5: GCL entry 0: states 0x0 interval 0
mscc_felix 0000:00:00.5: GCL entry 1: states 0x0 interval 0
mscc_felix 0000:00:00.5: GCL entry 2: states 0x0 interval 0
mscc_felix 0000:00:00.5: GCL entry 3: states 0x0 interval 0
mscc_felix 0000:00:00.5: GCL entry 4: states 0x0 interval 0
mscc_felix 0000:00:00.5: GCL entry 5: states 0x0 interval 0
mscc_felix 0000:00:00.5: GCL entry 6: states 0x0 interval 0
mscc_felix 0000:00:00.5: GCL entry 7: states 0x0 interval 0

I do not have a formal explanation, just experimental conclusions.
It appears that after triggering QSYS_TAS_PARAM_CFG_CTRL_CONFIG_CHANGE
for a port's TAS, the GCL entry RAM is updated anyway, despite what the
documentation claims: "Specify the time interval in
QSYS::GCL_CFG_REG_2.TIME_INTERVAL. This triggers the actual RAM
write with the gate state and the time interval for the entry number
specified". We don't touch that register (through vsc9959_tas_gcl_set())
from vsc9959_tas_clock_adjust(), yet the GCL RAM is updated anyway.

It seems to be updated with effectively stale memory, which in my
testing can hold a variety of things, including even pieces of the
previously applied schedule, for particular schedule lengths.

As such, in most circumstances it is very difficult to pinpoint this
issue, because the newly updated schedule would "behave strangely",
but ultimately might still pass traffic to some extent, due to some
gate entries still being present in the stale GCL entry RAM. It is easy
to miss.

With the particular schedule given at the beginning, the GCL RAM
"happens" to be reproducibly rewritten with all zeroes, and this is
consistent with what we see: when the time-aware shaper has gate entries
with all gates closed, traffic is dropped on TX, no wonder we can't
retrieve TX timestamps.

Rewriting the GCL entry RAM when reapplying the new base time fixes the
observed issue.

Fixes: 8670dc33f48b ("net: dsa: felix: update base time of time-aware shaper when adjusting PTP time")
Reported-by: Richie Pearn &lt;richard.pearn@nxp.com&gt;
Signed-off-by: Vladimir Oltean &lt;vladimir.oltean@nxp.com&gt;
Link: https://patch.msgid.link/20250426144859.3128352-2-vladimir.oltean@nxp.com
Signed-off-by: Jakub Kicinski &lt;kuba@kernel.org&gt;
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
</entry>
<entry>
<title>net: dsa: felix: fix stuck CPU-injected packets with short taprio windows</title>
<updated>2024-12-19T17:11:32+00:00</updated>
<author>
<name>Vladimir Oltean</name>
<email>vladimir.oltean@nxp.com</email>
</author>
<published>2024-12-10T13:26:40+00:00</published>
<link rel='alternate' type='text/html' href='https://git.radix-linux.su/kernel/linux.git/commit/?id=72dc88eca723a3dee630e8a2dc8708960e0e0dad'/>
<id>urn:sha1:72dc88eca723a3dee630e8a2dc8708960e0e0dad</id>
<content type='text'>
[ Upstream commit acfcdb78d5d4cdb78e975210c8825b9a112463f6 ]

With this port schedule:

tc qdisc replace dev $send_if parent root handle 100 taprio \
	num_tc 8 queues 1@0 1@1 1@2 1@3 1@4 1@5 1@6 1@7 \
	map 0 1 2 3 4 5 6 7 \
	base-time 0 cycle-time 10000 \
	sched-entry S 01 1250 \
	sched-entry S 02 1250 \
	sched-entry S 04 1250 \
	sched-entry S 08 1250 \
	sched-entry S 10 1250 \
	sched-entry S 20 1250 \
	sched-entry S 40 1250 \
	sched-entry S 80 1250 \
	flags 2

ptp4l would fail to take TX timestamps of Pdelay_Resp messages like this:

increasing tx_timestamp_timeout may correct this issue, but it is likely caused by a driver bug
ptp4l[4134.168]: port 2: send peer delay response failed

It turns out that the driver can't take their TX timestamps because it
can't transmit them in the first place. And there's nothing special
about the Pdelay_Resp packets - they're just regular 68 byte packets.
But with this taprio configuration, the switch would refuse to send even
the ETH_ZLEN minimum packet size.

This should have definitely not been the case. When applying the taprio
config, the driver prints:

mscc_felix 0000:00:00.5: port 0 tc 0 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 132 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 1 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 132 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 2 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 132 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 3 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 132 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 4 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 132 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 5 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 132 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 6 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 132 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 7 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 132 octets including FCS

and thus, everything under 132 bytes - ETH_FCS_LEN should have been sent
without problems. Yet it's not.

For the forwarding path, the configuration is fine, yet packets injected
from Linux get stuck with this schedule no matter what.

The first hint that the static guard bands are the cause of the problem
is that reverting Michael Walle's commit 297c4de6f780 ("net: dsa: felix:
re-enable TAS guard band mode") made things work. It must be that the
guard bands are calculated incorrectly.

I remembered that there is a magic constant in the driver, set to 33 ns
for no logical reason other than experimentation, which says "never let
the static guard bands get so large as to leave less than this amount of
remaining space in the time slot, because the queue system will refuse
to schedule packets otherwise, and they will get stuck". I had a hunch
that my previous experimentally-determined value was only good for
packets coming from the forwarding path, and that the CPU injection path
needed more.

I came to the new value of 35 ns through binary search, after seeing
that with 544 ns (the bit time required to send the Pdelay_Resp packet
at gigabit) it works. Again, this is purely experimental, there's no
logic and the manual doesn't say anything.

The new driver prints for this schedule look like this:

mscc_felix 0000:00:00.5: port 0 tc 0 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 131 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 1 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 131 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 2 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 131 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 3 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 131 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 4 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 131 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 5 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 131 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 6 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 131 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 7 min gate length 1250 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 131 octets including FCS

So yes, the maximum MTU is now even smaller by 1 byte than before.
This is maybe counter-intuitive, but makes more sense with a diagram of
one time slot.

Before:

 Gate open                                   Gate close
 |                                                    |
 v           1250 ns total time slot duration         v
 &lt;----------------------------------------------------&gt;
 &lt;----&gt;&lt;----------------------------------------------&gt;
  33 ns            1217 ns static guard band
  useful

 Gate open                                   Gate close
 |                                                    |
 v           1250 ns total time slot duration         v
 &lt;----------------------------------------------------&gt;
 &lt;-----&gt;&lt;---------------------------------------------&gt;
  35 ns            1215 ns static guard band
  useful

The static guard band implemented by this switch hardware directly
determines the maximum allowable MTU for that traffic class. The larger
it is, the earlier the switch will stop scheduling frames for
transmission, because otherwise they might overrun the gate close time
(and avoiding that is the entire purpose of Michael's patch).
So, we now have guard bands smaller by 2 ns, thus, in this particular
case, we lose a byte of the maximum MTU.

Fixes: 11afdc6526de ("net: dsa: felix: tc-taprio intervals smaller than MTU should send at least one packet")
Signed-off-by: Vladimir Oltean &lt;vladimir.oltean@nxp.com&gt;
Reviewed-by: Michael Walle &lt;mwalle@kernel.org&gt;
Link: https://patch.msgid.link/20241210132640.3426788-1-vladimir.oltean@nxp.com
Signed-off-by: Jakub Kicinski &lt;kuba@kernel.org&gt;
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
</entry>
<entry>
<title>net: dsa: felix: ignore pending status of TAS module when it's disabled</title>
<updated>2024-09-18T17:24:09+00:00</updated>
<author>
<name>Xiaoliang Yang</name>
<email>xiaoliang.yang_1@nxp.com</email>
</author>
<published>2024-09-06T09:35:50+00:00</published>
<link rel='alternate' type='text/html' href='https://git.radix-linux.su/kernel/linux.git/commit/?id=fc8c0cec1b48222482af0d1768ff01082b1fae6f'/>
<id>urn:sha1:fc8c0cec1b48222482af0d1768ff01082b1fae6f</id>
<content type='text'>
[ Upstream commit 70654f4c212e83898feced125d91ebb3695950d8 ]

The TAS module could not be configured when it's running in pending
status. We need disable the module and configure it again. However, the
pending status is not cleared after the module disabled. TC taprio set
will always return busy even it's disabled.

For example, a user uses tc-taprio to configure Qbv and a future
basetime. The TAS module will run in a pending status. There is no way
to reconfigure Qbv, it always returns busy.

Actually the TAS module can be reconfigured when it's disabled. So it
doesn't need to check the pending status if the TAS module is disabled.

After the patch, user can delete the tc taprio configuration to disable
Qbv and reconfigure it again.

Fixes: de143c0e274b ("net: dsa: felix: Configure Time-Aware Scheduler via taprio offload")
Signed-off-by: Xiaoliang Yang &lt;xiaoliang.yang_1@nxp.com&gt;
Link: https://patch.msgid.link/20240906093550.29985-1-xiaoliang.yang_1@nxp.com
Signed-off-by: Jakub Kicinski &lt;kuba@kernel.org&gt;
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
</entry>
<entry>
<title>net: mscc: ocelot: serialize access to the injection/extraction groups</title>
<updated>2024-08-29T15:33:45+00:00</updated>
<author>
<name>Vladimir Oltean</name>
<email>vladimir.oltean@nxp.com</email>
</author>
<published>2024-08-15T00:07:04+00:00</published>
<link rel='alternate' type='text/html' href='https://git.radix-linux.su/kernel/linux.git/commit/?id=e83b49ecb569c9c5fa7cc30e55cf2c15f71f9f39'/>
<id>urn:sha1:e83b49ecb569c9c5fa7cc30e55cf2c15f71f9f39</id>
<content type='text'>
[ Upstream commit c5e12ac3beb0dd3a718296b2d8af5528e9ab728e ]

As explained by Horatiu Vultur in commit 603ead96582d ("net: sparx5: Add
spinlock for frame transmission from CPU") which is for a similar
hardware design, multiple CPUs can simultaneously perform injection
or extraction. There are only 2 register groups for injection and 2
for extraction, and the driver only uses one of each. So we'd better
serialize access using spin locks, otherwise frame corruption is
possible.

Note that unlike in sparx5, FDMA in ocelot does not have this issue
because struct ocelot_fdma_tx_ring already contains an xmit_lock.

I guess this is mostly a problem for NXP LS1028A, as that is dual core.
I don't think VSC7514 is. So I'm blaming the commit where LS1028A (aka
the felix DSA driver) started using register-based packet injection and
extraction.

Fixes: 0a6f17c6ae21 ("net: dsa: tag_ocelot_8021q: add support for PTP timestamping")
Signed-off-by: Vladimir Oltean &lt;vladimir.oltean@nxp.com&gt;
Signed-off-by: David S. Miller &lt;davem@davemloft.net&gt;
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
</entry>
<entry>
<title>Merge git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net</title>
<updated>2023-08-24T17:51:39+00:00</updated>
<author>
<name>Jakub Kicinski</name>
<email>kuba@kernel.org</email>
</author>
<published>2023-08-24T17:46:29+00:00</published>
<link rel='alternate' type='text/html' href='https://git.radix-linux.su/kernel/linux.git/commit/?id=57ce6427e00a6a72f74b29630b39548b36980b09'/>
<id>urn:sha1:57ce6427e00a6a72f74b29630b39548b36980b09</id>
<content type='text'>
Cross-merge networking fixes after downstream PR.

Conflicts:

include/net/inet_sock.h
  f866fbc842de ("ipv4: fix data-races around inet-&gt;inet_id")
  c274af224269 ("inet: introduce inet-&gt;inet_flags")
https://lore.kernel.org/all/679ddff6-db6e-4ff6-b177-574e90d0103d@tessares.net/

Adjacent changes:

drivers/net/bonding/bond_alb.c
  e74216b8def3 ("bonding: fix macvlan over alb bond support")
  f11e5bd159b0 ("bonding: support balance-alb with openvswitch")

drivers/net/ethernet/broadcom/bgmac.c
  d6499f0b7c7c ("net: bgmac: Return PTR_ERR() for fixed_phy_register()")
  23a14488ea58 ("net: bgmac: Fix return value check for fixed_phy_register()")

drivers/net/ethernet/broadcom/genet/bcmmii.c
  32bbe64a1386 ("net: bcmgenet: Fix return value check for fixed_phy_register()")
  acf50d1adbf4 ("net: bcmgenet: Return PTR_ERR() for fixed_phy_register()")

net/sctp/socket.c
  f866fbc842de ("ipv4: fix data-races around inet-&gt;inet_id")
  b09bde5c3554 ("inet: move inet-&gt;mc_loop to inet-&gt;inet_frags")

Signed-off-by: Jakub Kicinski &lt;kuba@kernel.org&gt;
</content>
</entry>
<entry>
<title>net: dsa: felix: fix oversize frame dropping for always closed tc-taprio gates</title>
<updated>2023-08-19T01:33:58+00:00</updated>
<author>
<name>Vladimir Oltean</name>
<email>vladimir.oltean@nxp.com</email>
</author>
<published>2023-08-17T12:01:11+00:00</published>
<link rel='alternate' type='text/html' href='https://git.radix-linux.su/kernel/linux.git/commit/?id=d44036cad31170da0cb9c728e80743f84267da6e'/>
<id>urn:sha1:d44036cad31170da0cb9c728e80743f84267da6e</id>
<content type='text'>
The blamed commit resolved a bug where frames would still get stuck at
egress, even though they're smaller than the maxSDU[tc], because the
driver did not take into account the extra 33 ns that the queue system
needs for scheduling the frame.

It now takes that into account, but the arithmetic that we perform in
vsc9959_tas_remaining_gate_len_ps() is buggy, because we operate on
64-bit unsigned integers, so gate_len_ns - VSC9959_TAS_MIN_GATE_LEN_NS
may become a very large integer if gate_len_ns &lt; 33 ns.

In practice, this means that we've introduced a regression where all
traffic class gates which are permanently closed will not get detected
by the driver, and we won't enable oversize frame dropping for them.

Before:
mscc_felix 0000:00:00.5: port 0: max frame size 1526 needs 12400000 ps, 1152000 ps for mPackets at speed 1000
mscc_felix 0000:00:00.5: port 0 tc 0 min gate len 1000000, sending all frames
mscc_felix 0000:00:00.5: port 0 tc 1 min gate len 0, sending all frames
mscc_felix 0000:00:00.5: port 0 tc 2 min gate len 0, sending all frames
mscc_felix 0000:00:00.5: port 0 tc 3 min gate len 0, sending all frames
mscc_felix 0000:00:00.5: port 0 tc 4 min gate len 0, sending all frames
mscc_felix 0000:00:00.5: port 0 tc 5 min gate len 0, sending all frames
mscc_felix 0000:00:00.5: port 0 tc 6 min gate len 0, sending all frames
mscc_felix 0000:00:00.5: port 0 tc 7 min gate length 5120 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 615 octets including FCS

After:
mscc_felix 0000:00:00.5: port 0: max frame size 1526 needs 12400000 ps, 1152000 ps for mPackets at speed 1000
mscc_felix 0000:00:00.5: port 0 tc 0 min gate len 1000000, sending all frames
mscc_felix 0000:00:00.5: port 0 tc 1 min gate length 0 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 1 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 2 min gate length 0 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 1 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 3 min gate length 0 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 1 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 4 min gate length 0 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 1 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 5 min gate length 0 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 1 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 6 min gate length 0 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 1 octets including FCS
mscc_felix 0000:00:00.5: port 0 tc 7 min gate length 5120 ns not enough for max frame size 1526 at 1000 Mbps, dropping frames over 615 octets including FCS

Fixes: 11afdc6526de ("net: dsa: felix: tc-taprio intervals smaller than MTU should send at least one packet")
Signed-off-by: Vladimir Oltean &lt;vladimir.oltean@nxp.com&gt;
Reviewed-by: Simon Horman &lt;horms@kernel.org&gt;
Link: https://lore.kernel.org/r/20230817120111.3522827-1-vladimir.oltean@nxp.com
Signed-off-by: Jakub Kicinski &lt;kuba@kernel.org&gt;
</content>
</entry>
<entry>
<title>Merge git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net</title>
<updated>2023-08-10T21:10:53+00:00</updated>
<author>
<name>Jakub Kicinski</name>
<email>kuba@kernel.org</email>
</author>
<published>2023-08-10T21:04:58+00:00</published>
<link rel='alternate' type='text/html' href='https://git.radix-linux.su/kernel/linux.git/commit/?id=4d016ae42efb214d4b441b0654771ddf34c72891'/>
<id>urn:sha1:4d016ae42efb214d4b441b0654771ddf34c72891</id>
<content type='text'>
Cross-merge networking fixes after downstream PR.

No conflicts.

Adjacent changes:

drivers/net/ethernet/intel/igc/igc_main.c
  06b412589eef ("igc: Add lock to safeguard global Qbv variables")
  d3750076d464 ("igc: Add TransmissionOverrun counter")

drivers/net/ethernet/microsoft/mana/mana_en.c
  a7dfeda6fdec ("net: mana: Fix MANA VF unload when hardware is unresponsive")
  a9ca9f9ceff3 ("page_pool: split types and declarations from page_pool.h")
  92272ec4107e ("eth: add missing xdp.h includes in drivers")

net/mptcp/protocol.h
  511b90e39250 ("mptcp: fix disconnect vs accept race")
  b8dc6d6ce931 ("mptcp: fix rcv buffer auto-tuning")

tools/testing/selftests/net/mptcp/mptcp_join.sh
  c8c101ae390a ("selftests: mptcp: join: fix 'implicit EP' test")
  03668c65d153 ("selftests: mptcp: join: rework detailed report")

Signed-off-by: Jakub Kicinski &lt;kuba@kernel.org&gt;
</content>
</entry>
<entry>
<title>net: dsa: ocelot: call dsa_tag_8021q_unregister() under rtnl_lock() on driver remove</title>
<updated>2023-08-04T22:34:16+00:00</updated>
<author>
<name>Vladimir Oltean</name>
<email>vladimir.oltean@nxp.com</email>
</author>
<published>2023-08-03T13:42:53+00:00</published>
<link rel='alternate' type='text/html' href='https://git.radix-linux.su/kernel/linux.git/commit/?id=a94c16a2fda010866b8858a386a8bfbeba4f72c5'/>
<id>urn:sha1:a94c16a2fda010866b8858a386a8bfbeba4f72c5</id>
<content type='text'>
When the tagging protocol in current use is "ocelot-8021q" and we unbind
the driver, we see this splat:

$ echo '0000:00:00.2' &gt; /sys/bus/pci/drivers/fsl_enetc/unbind
mscc_felix 0000:00:00.5 swp0: left promiscuous mode
sja1105 spi2.0: Link is Down
DSA: tree 1 torn down
mscc_felix 0000:00:00.5 swp2: left promiscuous mode
sja1105 spi2.2: Link is Down
DSA: tree 3 torn down
fsl_enetc 0000:00:00.2 eno2: left promiscuous mode
mscc_felix 0000:00:00.5: Link is Down
------------[ cut here ]------------
RTNL: assertion failed at net/dsa/tag_8021q.c (409)
WARNING: CPU: 1 PID: 329 at net/dsa/tag_8021q.c:409 dsa_tag_8021q_unregister+0x12c/0x1a0
Modules linked in:
CPU: 1 PID: 329 Comm: bash Not tainted 6.5.0-rc3+ #771
pc : dsa_tag_8021q_unregister+0x12c/0x1a0
lr : dsa_tag_8021q_unregister+0x12c/0x1a0
Call trace:
 dsa_tag_8021q_unregister+0x12c/0x1a0
 felix_tag_8021q_teardown+0x130/0x150
 felix_teardown+0x3c/0xd8
 dsa_tree_teardown_switches+0xbc/0xe0
 dsa_unregister_switch+0x168/0x260
 felix_pci_remove+0x30/0x60
 pci_device_remove+0x4c/0x100
 device_release_driver_internal+0x188/0x288
 device_links_unbind_consumers+0xfc/0x138
 device_release_driver_internal+0xe0/0x288
 device_driver_detach+0x24/0x38
 unbind_store+0xd8/0x108
 drv_attr_store+0x30/0x50
---[ end trace 0000000000000000 ]---
------------[ cut here ]------------
RTNL: assertion failed at net/8021q/vlan_core.c (376)
WARNING: CPU: 1 PID: 329 at net/8021q/vlan_core.c:376 vlan_vid_del+0x1b8/0x1f0
CPU: 1 PID: 329 Comm: bash Tainted: G        W          6.5.0-rc3+ #771
pc : vlan_vid_del+0x1b8/0x1f0
lr : vlan_vid_del+0x1b8/0x1f0
 dsa_tag_8021q_unregister+0x8c/0x1a0
 felix_tag_8021q_teardown+0x130/0x150
 felix_teardown+0x3c/0xd8
 dsa_tree_teardown_switches+0xbc/0xe0
 dsa_unregister_switch+0x168/0x260
 felix_pci_remove+0x30/0x60
 pci_device_remove+0x4c/0x100
 device_release_driver_internal+0x188/0x288
 device_links_unbind_consumers+0xfc/0x138
 device_release_driver_internal+0xe0/0x288
 device_driver_detach+0x24/0x38
 unbind_store+0xd8/0x108
 drv_attr_store+0x30/0x50
DSA: tree 0 torn down

This was somewhat not so easy to spot, because "ocelot-8021q" is not the
default tagging protocol, and thus, not everyone who tests the unbinding
path may have switched to it beforehand. The default
felix_tag_npi_teardown() does not require rtnl_lock() to be held.

Fixes: 7c83a7c539ab ("net: dsa: add a second tagger for Ocelot switches based on tag_8021q")
Signed-off-by: Vladimir Oltean &lt;vladimir.oltean@nxp.com&gt;
Link: https://lore.kernel.org/r/20230803134253.2711124-1-vladimir.oltean@nxp.com
Signed-off-by: Jakub Kicinski &lt;kuba@kernel.org&gt;
</content>
</entry>
<entry>
<title>net: flow_dissector: Use 64bits for used_keys</title>
<updated>2023-07-31T08:11:24+00:00</updated>
<author>
<name>Ratheesh Kannoth</name>
<email>rkannoth@marvell.com</email>
</author>
<published>2023-07-28T23:22:15+00:00</published>
<link rel='alternate' type='text/html' href='https://git.radix-linux.su/kernel/linux.git/commit/?id=2b3082c6ef3b0104d822f6f18d2afbe5fc9a5c2c'/>
<id>urn:sha1:2b3082c6ef3b0104d822f6f18d2afbe5fc9a5c2c</id>
<content type='text'>
As 32bits of dissector-&gt;used_keys are exhausted,
increase the size to 64bits.

This is base change for ESP/AH flow dissector patch.
Please find patch and discussions at
https://lore.kernel.org/netdev/ZMDNjD46BvZ5zp5I@corigine.com/T/#t

Signed-off-by: Ratheesh Kannoth &lt;rkannoth@marvell.com&gt;
Reviewed-by: Petr Machata &lt;petrm@nvidia.com&gt; # for mlxsw
Tested-by: Petr Machata &lt;petrm@nvidia.com&gt;
Reviewed-by: Martin Habets &lt;habetsm.xilinx@gmail.com&gt;
Reviewed-by: Simon Horman &lt;simon.horman@corigine.com&gt;
Reviewed-by: Vladimir Oltean &lt;vladimir.oltean@nxp.com&gt;
Signed-off-by: David S. Miller &lt;davem@davemloft.net&gt;
</content>
</entry>
<entry>
<title>net: dsa: Explicitly include correct DT includes</title>
<updated>2023-07-27T04:54:16+00:00</updated>
<author>
<name>Rob Herring</name>
<email>robh@kernel.org</email>
</author>
<published>2023-07-24T21:18:58+00:00</published>
<link rel='alternate' type='text/html' href='https://git.radix-linux.su/kernel/linux.git/commit/?id=f44a90104ee5aceaf39b5a10787ab34c46c987ba'/>
<id>urn:sha1:f44a90104ee5aceaf39b5a10787ab34c46c987ba</id>
<content type='text'>
The DT of_device.h and of_platform.h date back to the separate
of_platform_bus_type before it as merged into the regular platform bus.
As part of that merge prepping Arm DT support 13 years ago, they
"temporarily" include each other. They also include platform_device.h
and of.h. As a result, there's a pretty much random mix of those include
files used throughout the tree. In order to detangle these headers and
replace the implicit includes with struct declarations, users need to
explicitly include the correct includes.

Signed-off-by: Rob Herring &lt;robh@kernel.org&gt;
Reviewed-by: Simon Horman &lt;simon.horman@corigine.com&gt;
Reviewed-by: Vladimir Oltean &lt;olteanv@gmail.com&gt;
Reviewed-by: Florian Fainelli &lt;florian.fainelli@broadcom.com&gt;
Link: https://lore.kernel.org/r/20230724211859.805481-1-robh@kernel.org
Signed-off-by: Jakub Kicinski &lt;kuba@kernel.org&gt;
</content>
</entry>
</feed>
