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2b4707a149
1481698 Commits
| Author | SHA1 | Message | Date | |
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2b4707a149 |
net: mctp: i3c: serialize probe with bus removal
mctp_i3c_probe() drops busdevs_lock after finding the matching bus. A
concurrent I3C_NOTIFY_BUS_REMOVE can then unregister and free the bus
netdev before probe passes its private data to mctp_i3c_add_device().
The latter consequently adds a list node through a freed mbus pointer.
Keep busdevs_lock held until the device has been added. This also
satisfies the __must_hold annotation on mctp_i3c_add_device().
Fixes:
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80dd7e754b |
net: mana: Reserve extra CQ slot for the fence completion CQE
The RX completion queue is sized to hold exactly one CQE per posted RX WQE.
MANA_FENCE_RQ makes hardware post an additional CQE_RX_OBJECT_FENCE after
the packet CQEs. The current sizing reserves no extra slot for it and in
rare cases, CQ has no guaranteed slot for the fence CQE when it is full of
packet CQEs. This can lead to dropping the fence completion while the
driver waits holding RTNL lock throughout the timeout duration.
Reserve one extra CQE slot for CQE_RX_OBJECT_FENCE. mana_gd_alloc_memory()
requires queue_size to be a power-of-two and at least MANA_PAGE_SIZE;
the reservation pushes cq_size past a power-of-two, so round up the CQ size
in mana_create_rxq().
Cc: stable@vger.kernel.org
Fixes:
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db88216424 |
Merge branch 'pds_core-fixes-for-the-pci-reset-path'
Nikhil P. Rao says:
====================
pds_core: fixes for the PCI reset path [part]
Patch 1 is the v2 patch with the pdsc_core_init() and
pdsc_identify_ver() checks removed. Those checks are dead code. commit
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73608de7e5 |
pds_core: don't release PCI regions for VFs on reset
pdsc_reset_prepare() called pci_release_regions() unconditionally, but
only PFs call pci_request_regions() (pdsc_init_pf). On a VF FLR this
makes the kernel warn "Trying to free nonexistent resource".
Fixes:
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7980325b2f |
pds_core: fix cmd_regs access racing BAR unmap on reset
pdsc_reset_prepare() and pdsc_reset_done()'s pdsc_map_bars() error path
clear/iounmap cmd_regs without devcmd_lock, and
pdsc_legacy_firmware_update()'s download loop derefs cmd_regs after
dropping and retaking the lock without re-checking. An FLR concurrent
with a devlink flash can unmap cmd_regs under an in-flight devcmd,
causing a NULL deref or a write to unmapped MMIO.
Take devcmd_lock across the BAR unmap/remap, and re-check cmd_regs in
the download loop. Only the PF maps cmd_regs and runs devcmd, so skip
the unmap on a VF, as pdsc_remove() and pdsc_reset_done() already do.
A reset that completes entirely within the unlocked window is not a
correctness problem for the image: the device clears its update session,
so a resumed download is rejected, and it verifies the staged image
before writing a flash slot, reporting PDS_RC_BAD_FW rather than
activating it.
pdsc_unmap_bars() also clears info_regs, intr_status and intr_ctrl. The
interrupt and start/stop readers of those are quiesced before the unmap
by pdsc_fw_down(), which frees the interrupts and tears down the queues.
The debugfs readers are not, since those files outlive a reset; that is
pre-existing and out of scope here.
Fixes:
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6262acad9d |
Merge branch 'net-cap-tx_queue_len-at-s16_max-to-prevent-oversized-ring-allocations'
Jamal Hadi Salim says: ==================== net: cap tx_queue_len at S16_MAX to prevent oversized ring allocations An unprivileged user (via unshare -Urn) can set a huge tx_queue_len and exhaust global memory through ring allocations sized from it (pfifo_fast skb_arrays, tun/tap ptr_rings). The reproducer from vega@nebusec.ai set the following params for illustration: txqlen of 500000 -> ~32 GiB/ring attempts, 1.6 GB tun, ~960 MB tap. Gets worse when you consider qdiscs like mq. What we fix: every path an unprivileged user can use to install an oversized tx_queue_len is rejected with -ERANGE before any ring is allocated; per-ring memory is bounded at 256 KiB. This is for you sashikos: What we deliberately _do not fix_ bound the NUMBER of rings. With the cap in place the worst case moves from "one knob" to the aggregate of ring x queues x devices, example: ip link add v0 numtxqueues 4096 txqueuelen 32767 type veth tc qdisc add dev v0 root mq -> 4096 * 3 * 32767 * 8 = ~3.0 GiB (one command) 50 tun devices x 256 queues x 32767 x 8 = ~3.1 GiB Unfortunately tx_queue_len is a bit ambigious in meaning: In some cases it means a ring size (which is pre-allocated, ex: tun, tap, and pfifo_fast); a cap of 4096 seems reasonable here. but in other cases it is used to indicate a queue limit ex: the qdisc consumers that allocate nothing (pfifo/bfifo/gred/plug/sfb, htb direct_qlen, qfq, teql). 32767 is a legitimate high-BDP queue length, so we are going to keep that value. Getting back to you sashikos, after this is merged and shows up in net-next we will send followup patches as follows: this series is not misread as "closes the OOM class"): a) Per-site ring limits at six identified locations - pfifo_fast init/resize, - tun attach/resize, - tap minor/resize) if you can spot more in your review we will take care of those as well. b) memcg accounting (GFP_KERNEL_ACCOUNT) for those ring allocations: contains a memcg-limited container's ring memory. Not GFP_KERNEL_ACCOUNT has no effect on the unshare attacker but will protect against containers (memory.max in its cgroup) ==================== Link: https://patch.msgid.link/QDISC-2899.v2.20260901233641@mojatatu.com Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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0a7252d7f8 |
selftests: tc-testing: add tx_queue_len cap regression tests
Add nine test cases for the S16_MAX tx_queue_len cap to the
pfifo_fast suite. Netlink cases exercise the ifla_policy bound
(2/3); the two new sysfs cases exercise the netif_change_tx_queue_len()
choke point that 1/3 owns (SIOCSIFTXQLEN shares it; the ioctl is not
portably reachable from tdc):
- dbe3: set txqueuelen 32767 (S16_MAX) - accepted, pins the exact
boundary value.
- b50e: set txqueuelen 32768 - rejected with -ERANGE.
- 40f8: write 32768 to /sys/class/net/*/tx_queue_len - rejected
(covers patch 1/3 directly; netlink cannot reach this path).
- 4b6e: write 32767 via sysfs - accepted, boundary positive control
for the patch-1 path.
- b90d: create a dummy with txqueuelen 32767 - accepted.
- 57ab: create a dummy with txqueuelen 32768 - rejected at netlink
parse time.
- e777: create a dummy with txqueuelen 500000 - rejected (the v1
bypass path flagged by review).
- 31ac: create a veth with an oversized txqueuelen on the peer nest -
rejected (the peer nest is parsed against ifla_policy too).
- b567: create a veth with txqueuelen on both ends within the cap -
accepted (positive control for the peer nest).
The three negative-creation verifies assert device absence
("ip -o link show" must not contain the device), not merely absence
of a qlen pattern - the device does not exist when creation fails, so
the exit code carries the signal and the verify adds content.
The v1 04b5 "resize rollback" case is dropped: with the cap checked
first, netif_change_tx_queue_len() returns -ERANGE before the write,
the notifier or any qdisc resize, so the case exercised no resize and
no rollback. It was also nondeterministic: pre-patch, the resize
issues three ~11 MB kvmallocs for qlen 500000 which normally succeed,
so the case passed on an unfixed kernel only under memory pressure -
its outcome depended on the test host's free memory.
Test commands run inside the netns, but nsPlugin creates the veth
peer in the root namespace, so the teardown deletes the in-ns end
only; deleting the peer via the pair is implicit.
Note: iproute2 treats "txqueuelen" appearing after "type X" as a
link-type attribute and silently drops it, so the creation cases
place it before "type" to actually reach the kernel.
Signed-off-by: Jamal Hadi Salim <jhs@mojatatu.com>
Link: https://patch.msgid.link/QDISC-2899.v2.20260901233641@mojatatu.com.3
Signed-off-by: Jakub Kicinski <kuba@kernel.org>
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1aa9e143bf |
net: reject oversized tx_queue_len at netlink parse time
rtnl_create_link() assigns IFLA_TXQLEN directly to dev->tx_queue_len
without going through netif_change_tx_queue_len(), so a device created
with "ip link add ... txqueuelen 500000" bypasses the S16_MAX cap and
still triggers the oversized ring allocations in pfifo_fast, tun and
tap. The veth peer nest (rtnl_nla_parse_ifinfomsg()) and the
RTM_NEWLINK-on-existing-device path reach the same sinks.
Enforce the cap in ifla_policy instead: IFLA_TXQLEN becomes
NLA_POLICY_FULL_RANGE(NLA_U32, &txqlen_range) with
txqlen_range = { .min = 0, .max = S16_MAX }. All netlink consumers
parse against this policy - rtnl_setlink(), rtnl_newlink() (create
and change), and the veth peer nest - so every netlink path is capped
at parse time and rejects the attribute with -ERANGE plus a proper
"integer out of range" extack message before any device state is
modified (the RTM_SETLINK half-application wart is gone with it).
Document the bound in the rt-link.yaml netlink spec.
Conditions to recreate the bug:
- CONFIG_NET_SCHED=y, CONFIG_VETH=y, CONFIG_USER_NS=y, CONFIG_NET_NS=y.
- Unprivileged user in a fresh user+net namespace (unshare -Urn):
ip link add v0 txqueuelen 500000 type veth peer name v1
-> on the fixed kernel this is rejected with -ERANGE ("integer out
of range" extack) instead of installing an oversized tx_queue_len
that later inflates pfifo_fast/tun/tap ring allocations.
- ip link set v0 txqueuelen 500000 is likewise rejected at parse time.
Fixes:
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66ab4c59b7 |
net: cap tx_queue_len at S16_MAX to prevent oversized ring allocations
Several subsystems allocate ring buffers sized by dev->tx_queue_len
with no upper bound. An unprivileged user (via unshare -Urn) can set a
huge tx_queue_len and exhaust global memory with ring allocations:
- pfifo_fast: pfifo_fast_init() and pfifo_fast_change_tx_queue_len()
allocate 3 skb_array rings of tx_queue_len entries each.
- tun: tun_queue_resize() and the queue-attach path resize ptr_rings
to tx_queue_len on the NETDEV_CHANGE_TX_QUEUE_LEN notifier.
- tap (macvtap/ipvtap): tap_queue_resize() and tap_init() resize/init
ptr_rings to tx_queue_len on the same notifier.
netif_change_tx_queue_len() is the single entry point for IFLA_TXQLEN,
sysfs, and the SIOCSIFTXQLEN ioctl. Cap new_len at S16_MAX (32767)
there so the oversized value is rejected at set time. This takes
effect whether the device is up or down, before dev->tx_queue_len is
written, before any notifier fires, and before any ring is allocated.
The "> S16_MAX" check also subsumes the previous unsigned-long
truncation test, and a negative ifr_qlen from the ioctl lands far
above the cap after conversion, so both old failure modes are covered
by the one comparison.
tx_queue_len is ambigious: both a per-ring sizing multiplier and a
default queue-length/limit knob for consumers that allocate
nothing at set time (pfifo/bfifo/gred/plug/sfb limits, htb
direct_qlen, qfq max_classes, teql). 32767 is chosen as the largest
value NLA_POLICY_FULL_RANGE can express for the u32 IFLA_TXQLEN
policy in patch 2/3 while staying a legitimate queue length on
high-BDP paths; the ring-memory trade-off of a shared knob is
disclosed below.
Conditions to recreate the bug:
- CONFIG_NET_SCHED=y, CONFIG_VETH=y, CONFIG_USER_NS=y, CONFIG_NET_NS=y.
- Unprivileged user in a fresh user+net namespace (unshare -Urn).
- pfifo_fast: create veth pairs, set tx_queue_len to 500000, attach
mq+pfifo_fast. ~28 iterations OOMs a 2GB guest.
- tun: create 50 tun devices with IFF_MULTI_QUEUE, set tx_queue_len to
500000, open 8 queues each. ~1.6GB of ptr_ring allocations OOMs a
512MB guest.
- tap: same as tun with IFF_TAP. ~960MB OOMs a 512MB guest.
- On the fixed kernel the oversized tx_queue_len is rejected with
-ERANGE at set time (all four paths: RTM_SETLINK, RTM_NEWLINK
create, sysfs, ioctl - the latter two via this check, the former
two via this check and the 2/3 parse policy respectively).
Fixes:
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98fc57d167 |
vxlan: reject dynamic fdb entries that reference a nexthop id
The commit cited in the Fixes tag allowed VXLAN FDB entries to point to
FDB nexthops so that overlay traffic could be load balanced across
multiple VTEPs. Such entries can only be configured from user space,
cannot be learned and cannot roam. They only make sense with a user space
control plane such as E-VPN where data plane learning is disabled.
Despite that, the VXLAN driver does not currently prevent such entries
from being configured with the "dynamic" flag. The per-nexthop FDB list
is only protected by the per-device hash lock, which is not sufficient
when two VXLAN devices point to the same FDB nexthop and therefore share
the list. Aging runs in softirq context without RTNL, so an entry deleted
by one device can race with an addition or deletion from the other,
leading to list corruption:
list_del corruption. next->prev should be ffff8881069d9548, but was
dead000000000122. (next=ffff8881069d9448)
WARNING: CPU: 0 PID: 90 at lib/list_debug.c:65
__list_del_entry_valid_or_report+0x1aa/0x210
...
vxlan_fdb_destroy+0x5b8/0xad0
vxlan_cleanup+0x328/0x450
call_timer_fn+0x2a/0x1c0
run_timer_softirq+0x18c/0x210
BUG: KASAN: slab-use-after-free in vxlan_fdb_destroy
Fix this by rejecting the bogus configuration of dynamic FDB entries that
point to FDB nexthops, both when created and when an existing entry is
updated. As such, the per-nexthop FDB list is only ever mutated under the
RTNL lock. Add test cases to make sure that this does not regress in the
future.
Fixes:
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907a56ab3e |
s390/ism: folio_put() after error
dmb->cpu_addr was allocated via folio_alloc(). Use folio_put() instead of
kfree() in the error exit of ism_alloc_dmb() to avoid slab allocator
corruption.
While at it, reset dmb->cpu_addr after folio_put to avoid unintentional UAF
by future callers.
Fixes:
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1668a31e3b |
dibs: Unregister dibs_class after error
In case dibs_loopback_init() fails, e.g. because of -ENOMEM, dibs_init() must unregister dibs_class. Otherwise dibs_class and /sys/class/dibs exist even though the functionality is not available. A retry to load the module fails with -EEXIST. Unregister dibs_class in the error path of dibs_init. Note that before commit |
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5d50e90add |
net: usb: cx82310_eth: drop URB after 0xffff reboot sentinel to prevent partial_data heap overflow
The 0xffff length sentinel detects a router reboot and schedules
re-enabling of ethernet mode, but then falls through to the rest
of the loop body. The next check is
} else if (len > CX82310_MTU) {
which is the else of the just-matched if -- it never fires for
len == 0xffff. The MTU bound that normally caps the
incomplete-packet save path is silently bypassed.
With 0xffff > skb->len always true (rx_urb_size is 4096), the
incomplete-packet branch saves dev->partial_len = skb->len bytes
into dev->partial_data. partial_data is kmalloc(hard_mtu) =
kmalloc(CX82310_MTU + 2) = 1516 bytes, but skb->len after the
2-byte header pull can be up to 4094. A device that sends a
4096-byte URB starting with [0xff 0xff] therefore copies 4094
device-provided bytes into a buffer allocated for 1516 bytes,
exceeding its requested size by 2578 bytes.
The next URB then reads dev->partial_len (4094) back from the same
1516-byte buffer and dev->partial_rem (65535 - 4094 = 61441) from
the new URB's ~4KB skb, both well past their allocations, and
delivers the spliced result as a 64KB "frame" to the network
stack.
Bail out of rx_fixup after scheduling the re-enable work; the
remainder of a reboot-marker URB is not meaningful packet data.
This restores the invariant that partial_len < CX82310_MTU + 2 on
the save path, since every other route there has already passed
the MTU check.
Fixes:
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78a86d75a7 |
net: mpls: clear inner_protocol when the last label is popped
skb_mpls_push() records the pre-encapsulation network header once, gated on !skb->inner_protocol. skb_mpls_pop() never clears that record, so it outlives the encapsulation it describes. Open vSwitch can then re-push MPLS onto a packet whose inner_network_header still points at the older, deeper offset: push a label, pop every label, recirculate (ovs_flow_key_update() re-derives key->eth.type and resets network_header, but leaves inner_*), then push again. ovs_fragment() trusts the record: skb->network_header = skb->inner_network_header; so skb_network_offset() goes negative. The bound check is signed: if (skb_network_offset(skb) > MAX_L2_LEN) a negative offset passes it, and prepare_frag() widens the value: unsigned int hlen = skb_network_offset(skb); memcpy(&data->l2_data, skb->data, hlen); which is a ~4GiB memcpy out of a 30-byte per-CPU buffer. Reproduced on v7.3-rc1. RDX is the truncated length, (unsigned int)(-8): BUG: unable to handle page fault for address: ffffe8ffffc16000 #PF: supervisor write access in kernel mode Oops: 0002 [#1] SMP KASAN NOPTI RIP: 0010:memcpy+0x8/0x20 RDX: 00000000fffffff8 RSI: ffff888105d732db RDI: ffffe8ffffc16000 prepare_frag+0x3df/0x4e0 ovs_fragment+0x589/0x7e0 do_output+0x4ce/0x5e0 do_execute_actions+0x55d2/0x7b30 ovs_execute_actions+0xea/0x450 Same root-cause shape as commit |
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c91b4d6e5c |
ionic: use netif_txq_maybe_stop() in ionic_tx()
Commit |
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1f29543126 |
octeontx2-af: mcs: Clear stale X2P calibration state before calibration
Some firmware versions leave MCSX_MIL_GLOBAL bit 5 set on boot.
If the bit is already set when the driver attempts X2P calibration,
the hardware sees no rising edge and calibration never triggers.
Clear the bit and wait briefly before starting calibration to ensure
a clean rising edge.
Fixes:
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4b772869a1 |
net: bridge: mcast: properly convert mglist to rcu
Sashiko reported a bug [1] that br_multicast_del_port_group unlists the
port group not using proper rcu helper that preserves the next pointer and
after that immediately frees the port group without waiting for rcu grace
period. The only rcu walker of mglist is br_multicast_list_adjacent() and
it turns out that function has always been buggy because mglist was never
properly converted to RCU. Fix it by converting it to rcu and moving its
initialization after eth_addr's. Initializing p->next can use
RCU_INIT_POINTER because we have a barrier from the hlist_add_head_rcu call
later, besides we're initializing an unpublished structure anyway.
[1] https://netdev-ai.bots.linux.dev/sashiko/#/patchset/20260826014200.362304-1-littleddfu%40gmail.com
Fixes:
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742b94967d |
Merge branch 'eth-fix-bugs-in-ntuple-filter-reporting'
Jakub Kicinski says: ==================== eth: fix bugs in ntuple filter reporting Looking thru some reports prompted by: Add new way to add BPF LSM hooks https://lore.kernel.org/20260831110934.241898-1-a.s.protopopov@gmail.com I/Claude noticed 3 drivers with buggy n-tuple filter dump. Fix these drivers, add a hopefully clearer mention in the doc. ==================== Link: https://patch.msgid.link/20260903032611.3000029-1-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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47a582b2b0 |
ethtool: document that GRXCLSRLALL rule_cnt is a caller-provided limit
Three drivers have shipped a get_rxnfc() which dumps its entire rule table into rule_locs, reading rule_cnt as "how many rules do I have" rather than "how many entries did the caller allocate". Nothing in the callback's documentation contradicted that reading. The distinction only matters because the ioctl lets an unprivileged caller pick rule_cnt directly, so getting it wrong is a heap overflow rather than a truncated dump. Reviewed-by: Joe Damato <joe@dama.to> Link: https://patch.msgid.link/20260903032611.3000029-6-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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b1fffc2731 |
net: dsa: mv88e6xxx: bound the policy rule dump by the caller's buffer size
mv88e6xxx_get_rxnfc() uses rxnfc->rule_cnt as the write index while
dumping the policy IDR, clobbering the input value before it has been
looked at. That input is the number of entries the caller had room for.
ETHTOOL_GRXCLSRLALL requires no CAP_NET_ADMIN and the ioctl sizes the
buffer from the rule_cnt userspace passes in, so once an admin has
installed policy rules any user can ask for fewer slots than there are
rules and run off the end of the allocation. A rule_cnt of 0 leaves the
buffer pointer NULL and the walk dereferences it.
Count into a local so the caller's limit survives the walk, and stop with
-EMSGSIZE once it is reached.
Fixes:
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108bb2142e |
eth: nfp: drop the replaced rule from the list when reprogramming fails
nfp_net_fs_add() replaces an existing rule by deleting it from the
hardware, decrementing nn->fs.count and programming the new one. If
nfp_net_fs_add_hw() fails the old entry stays on nn->fs.list - only the
success path reaches list_replace() - so the list is one longer than
nn->fs.count, and it advertises a rule whose hardware entry has already
been torn down.
nn->fs.count is what ETHTOOL_GRXCLSRLCNT reports, so userspace then sizes
its buffer one entry short of what the GRXCLSRLALL walk wants to write.
That used to overwrite one u32 past the allocation; since the walk is
bounded it is a permanent -EMSGSIZE instead, as nothing ever resyncs the
counter.
Fixes:
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f1986bf87b |
eth: nfp: bound the ntuple rule dump by the caller's buffer size
nfp_net_get_fs_loc() dumps every entry of nn->fs.list into rule_locs[]
without consulting cmd->rule_cnt, which is how many entries the caller
had room for. ETHTOOL_GRXCLSRLALL requires no CAP_NET_ADMIN and the
ioctl sizes the buffer from the rule_cnt userspace passes in, so once an
admin has installed flow steering rules any user can ask for fewer slots
than there are rules and run off the end of the allocation. A rule_cnt
of 0 leaves the buffer pointer NULL and the walk dereferences it.
Bail out with -EMSGSIZE when the buffer fills up, the way the other
ntuple capable drivers do, and report how many locations were filled so
a shrinking rule list does not leave the caller reading stale slots.
Reported-by: VEGA <vega@nebusec.ai>
Fixes:
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cdb719f4b8 |
net: dsa: bcm_sf2: bound the CFP rule dump by the caller's buffer size
bcm_sf2_cfp_rule_get_all() walks the whole cfp.unique bitmap into
rule_locs[] without consulting nfc->rule_cnt, which is how many entries
the caller had room for. ETHTOOL_GRXCLSRLALL requires no CAP_NET_ADMIN
and the ioctl sizes the buffer from the rule_cnt userspace passes in, so
once an admin has installed CFP rules any user can ask for fewer slots
than there are rules and run off the end of the allocation. A rule_cnt
of 0 leaves the buffer pointer NULL and the walk dereferences it.
Fixes:
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1746ef2e2d |
bonding: use skb_cow_head() in bond_do_alb_xmit() and rlb_arp_xmit()
In bond_do_alb_xmit() and rlb_arp_xmit(), make sure to unclone
skb head via skb_cow_head() before modifying the source MAC address
(Ethernet header and ARP payload) to avoid silent corruption if
the skb is shared or cloned. Avoid caching the header pointers
across skb_cow_head().
In rlb_arp_xmit(), only modify arp->mac_src if it differs from
tx_slave->dev->dev_addr to avoid an unnecessary copy and head
reallocation.
Also, we should not assume mac header is set in output path.
Use skb_eth_hdr() instead of eth_hdr() to fix the issue,
and remove now redundant skb_reset_mac_header() calls.
Fixes:
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5bd9e4e7cd |
nexthop: Initialize extack in remove_nh_grp_entry()
remove_nh_grp_entry() prints the extack message when a listener fails to replace the reduced nexthop group. However, extack is not initialized and listeners are not required to set a message when returning an error. Neither netdevsim nor mlxsw do so when an allocation fails, resulting in the dereference of an uninitialized stack pointer. Fix by zero-initializing extack, as was done in commit |
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fb3088dc58 |
Merge tag 'ieee802154-for-net-2026-09-03' of git://git.kernel.org/pub/scm/linux/kernel/git/wpan/wpan
Stefan Schmidt says: ==================== pull-request: ieee802154 for net 2026-09-03 Zhiling Zou fixed a NULL deref when coming from a TUN device. Fan Wu fixed a UAF in the cc2520 driver. Chenguang Zhao fixed up some out of date comments in 6lowpan. David Carlier fixed a potential double free in the hwsim driver. Ibrahim Hashimov reworked the queuing in the RX path to fix a UAF on beacon and MAC frames. * tag 'ieee802154-for-net-2026-09-03' of git://git.kernel.org/pub/scm/linux/kernel/git/wpan/wpan: mac802154: fix use-after-free of sdata via queued RX frames ieee802154: hwsim: serialize pib updates to fix double-free ieee802154: 6lowpan: fix NULL dereference in lowpan_newlink ieee802154: cc2520: fix FIFOP work use-after-free net: 6lowpan: fix mismatched comments ==================== Link: https://patch.msgid.link/20260903093012.4032586-1-stefan@datenfreihafen.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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641d03105c |
Merge branch 'enic-fix-v2-vf-mailbox-reply-matching-and-carrier-reopen'
Satish Kharat says: ==================== enic: fix V2 VF mailbox reply matching and carrier reopen Preserve ENIC V2 VF carrier state across netdev reopen and match mailbox replies to their originating requests. A V2 VF receives carrier state from PF MBOX notifications. enic_stop() forces carrier off, but enic_open() does not request another notification or restore the previous state. An ordinary netdev close/open can therefore leave the VF without carrier until the PF sends another link-state notification. The first patch preserves the last PF-reported link state across an ordinary netdev close/open. Internal reset paths invalidate the saved state before reopening the datapath, so carrier remains off until the PF provides a new notification. Mailbox messages carry a message number that replies and acknowledgments echo. ENIC currently assigns a new number to outgoing replies and accepts VF replies by message type alone. After a request times out, a delayed reply can therefore satisfy a later request of the same type. The second patch makes PF replies and the VF link-state acknowledgment echo the initiating message number. The VF accepts a reply only when both its type and message number match the pending request. Reply handling and timeout cleanup are protected by the same lock, and message numbering remains monotonic across admin-channel reopen. Validation: - The VF module with this series applied passed multiple netdev close/open and ENIC module unload/reload cycles, as well as guest reboot testing, with carrier restored as expected after each operation. - With this series folded into the full SR-IOV development stack, VFIO guests passed bidirectional cross-DUT PF-to-VF, VF-to-PF, and VF-to-VF traffic using standard-sized and 8972-byte jumbo ICMP packets. ==================== Link: https://patch.msgid.link/20260830-b4-enic-v2-mbox-fixes-net-v1-0-23adf9bfd426@cisco.com Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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8972d252f4 |
enic: match mailbox replies to request numbers
The version-1 VF mailbox protocol identifies every message with a message
number, and a reply or acknowledgment echoes the number of the message it
answers. ENIC instead generates a new number for outgoing replies and
accepts a VF reply by message type alone.
If a request times out, a delayed reply can therefore satisfy a subsequent
request of the same type and cause the VF to consume the result of the old
request.
Allow replies to reuse the initiating message number. Make the in-tree PF
handlers and the VF link-state acknowledgment echo that number. Record the
expected reply type and message number on the VF, and require both values
to match before accepting a reply.
Protect expected-reply state with a lock so reply acceptance and timeout
invalidation cannot race. Keep message numbers monotonic across an admin-
channel reopen so a delayed reply from an earlier channel generation cannot
match a new request.
Reply-number echo is part of the established version-1 protocol, so this
remains compatible with deployed V2-capable PF implementations that already
echo msg_num.
Fixes:
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b752e041d5 |
enic: preserve V2 VF carrier across netdev reopen
A V2 VF receives carrier state only from PF MBOX notifications.
enic_stop() forces carrier off, but enic_open() does not request a fresh
notification or restore the previous one. An ordinary down/up cycle
therefore leaves the VF in NO-CARRIER and unable to pass traffic until the
PF repeats the link-state command, even when the physical link remained
up.
Cache each valid PF link-state notification. Serialize updates with the V2
VF datapath running state. Keep carrier off while the netdev is stopped.
Restore the cached state after an ordinary open. Before either internal
reset reopens the datapath, invalidate the cache. Carrier then remains off
until re-registration receives a fresh PF link-state notification.
Fixes:
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39b23c1c40 |
bnxt_en: Prevent queue stop with deferred completions
When the driver receives a burst of packets, it can mark a BD with the
NO_CMPL bit to defer completions. The expectation is that the last
packet in the ring will have this bit unset and the completion generated
by that packet will cleanup that packet and the ones preceding it. This
helps to reduce the number of completions fired.
The suppressed completions are controlled by the driver and the number
of packets with suppressed completions scales with the size of the ring.
SW USO packets, on the other hand, have an upper bound on the maximum
number of BDs which can be consumed which does not scale with the ring
size.
So, for small rings it is possible that: a burst of packets is handed to
the driver, the driver defers completions for all of the packets because
the number of free descriptors stays above the threshold in the driver.
Then, a USO packet arrives, but the number of BDs available is not
enough and the USO code exits early.
In this case, you end up in a state where the ring is full of packets
with their completions suppressed, which can cause the queue to stop and
never be restarted.
Assuming default CONFIG_MAX_SKB_FRAGS, this is only possible for small
rings (<= 457 descriptors, below the driver default value) when
a burst of packets fills the ring, followed by a large USO packet that
can't fit. For larger rings, the delta between the completion
suppression threshold and the BDs required for SW USO is large enough
that completions will fire and this case is unreachable.
This issue was pointed out by Sashiko and while it seems fairly unlikely
given that the queue size must be small to trigger this, it is indeed
possible.
Fix this by tracking the last BD which deferred completions and
centralizing the logic for deciding when to ring the doorbell. The NO_CMPL
bit is now cleared in bnxt_txr_db_kick(), so every doorbell site is
covered, including the SW USO early exit. This guarantees the ring always
ends in a BD which generates a completion to clean it and wake the queue.
Fixes:
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a09ceadff9 |
mailmap: add entries for Lorenzo Bianconi
Add the active email address for Lorenzo Bianconi and map the old, no-longer-used addresses to it, so that git can attribute his contributions to a single identity. This is done to avoid bouncing emails sent to email addresses that are no longer active. Signed-off-by: Lorenzo Bianconi <lorenzo@kernel.org> Link: https://patch.msgid.link/20260901-lorenzo-mailmap-v2-1-0ee832de0caf@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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b58d749633 |
tunnels: Drop stale dst when building an ICMP error for PMTUD
Bridged UDP tunnels such as VXLAN and GENEVE build an ICMP error packet
around an overlay packet if the packet is going to exceed the underlay
path MTU. The ICMP error packet is then injected back into the Rx path
with the source and destination addresses swapped, so that it will be
delivered to the overlay source.
If the overlay packet was routed to the UDP tunnel or locally generated,
then it is already carrying a valid dst entry and this entry is not
dropped when transforming the packet to an ICMP error packet. This
causes the IP layer to reuse the dst entry, leading to the ICMP error
packet being dropped or routed out of the UDP tunnel interface in case
of forwarding.
Prior to the blamed commit this could not happen, as
skb_tunnel_check_pmtu() did not build ICMP errors for PACKET_HOST
packets. Such packets were instead encapsulated and, unless the DF bit
was set in the outer header, fragmented by the underlay.
Fix this by making sure that the ICMP error packet does not have a valid
dst entry, thereby forcing the IP layer to perform a route lookup.
Adjust the bridged PMTU exception selftests accordingly. When the
local sender in ns_a pings the overlay destination with a deadline
(-w), ping exits on the first socket error before any reply is
received and returns a non-zero exit code. The test therefore only
passed because the ICMP error was never delivered. Use a packet count
(-c) like the ns_c line above it, so that the ICMP error counts
against the packet budget and the exit code depends on whether echo
replies were received. This passes with and without the fix.
Fixes:
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6a1094c34d |
genetlink: pin family module during policy dump
The generic netlink controller's policy dump keeps pointers to the target
family's operation and policy tables in its callback state. A dump may be
split across multiple skbs and remain pending after the initial request.
Netlink pins the module which owns the dump callback, but in this case
that is the controller's owner rather than the target family's owner. The
target family can consequently be unregistered and its module unloaded
while a policy dump is pending. Advancing the dump then dereferences
policy memory from the unloaded module.
Take a reference to the target family's module when the dump starts.
Drop it from the error and done paths. This matches the lifetime for which
the dump context retains the family and policy pointers.
Fixes:
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2ac174dfcd |
mlxsw: spectrum_ptp: Fix napi_gro_receive() call from GC workqueue context
Currently mlxsw_sp1_ptp_ht_gc_collect() is run from the PTP
garbage-collection workqueue, rather than the NAPI poll context. For any
unmatched PTP entries carrying an SKB, it calls
mlxsw_sp1_ptp_unmatched_finish() -> mlxsw_sp1_ptp_packet_finish(). For
ingress packets, this calls mlxsw_sp_rx_listener_no_mark_func(). The end
of that function is the following:
skb->protocol = eth_type_trans(skb, skb->dev);
napi_gro_receive(mlxsw_skb_cb(skb)->rx_md_info.napi, skb);
The napi pointer is one that was placed in the SKB control block when the
trapped packet was received in the NAPI context. Later, when the GC reaps
the unmatched entry (up to MLXSW_SP1_PTP_HT_GC_TIMEOUT later), the call to
napi_gro_receive() mutates the NAPI instance's GRO list, which is unsafe
if the poll is running concurrently on another CPU.
In mlxsw_sp1_ptp_ht_gc_collect(), local_bh_disable() is called to prevent
softirq processing, but this only applies to the local CPU. Additionally,
its comment is stale. It states that mlxsw_sp1_ptp_unmatched_finish()
invokes netif_receive_skb(). This has not been accurate since the
referenced commit; this patch makes that comment accurate again.
mlxsw_pci_napi_devs_init() calls netif_threaded_enable() on the NAPI RX
net_device without any conditions. The NAPI instance's poll, which may be
running concurrent to the GC, is running as an independently-scheduled
kthread which may be on a different CPU. The call to local_bh_disable()
does not guard against this.
If a tx-timestamp timeout produces an unmatched entry (which can be easily
reproduced by running ptp4l and waiting for a port to reach the
UNCALIBRATED/SLAVE state) while the owning NAPI thread is in the middle of
a poll on another CPU, both sides mutate the GRO list concurrently, as
shown below:
[39.846] port 1 (swp1): MASTER to UNCALIBRATED on RS_SLAVE
list_add corruption. next->prev should be prev (ffff8d620faf4138), but was ffff8d624150f700. (next=ffff8d620faf4138).
kernel BUG at lib/list_debug.c:29!
Oops: invalid opcode: 0000 [#1] SMP PTI
CPU: 1 UID: 0 PID: 539 Comm: napi/mlxsw_rx-0 Not tainted 6.18.48 #1-NixOS PREEMPT(lazy)
Hardware name: Mellanox Technologies Ltd. MSN2410/VMOD0001, BIOS 4.6.5 09/13/2018
RIP: 0010:__list_add_valid_or_report+0x79/0xb0
RSP: 0018:ffffcdf8c0f27c08 EFLAGS: 00010246
RAX: 0000000000000075 RBX: ffff8d624150fd00 RCX: 0000000000000000
RDX: 0000000000000000 RSI: 0000000000000001 RDI: ffff8d6315d1e540
RBP: ffff8d620faf4070 R08: 0000000000000000 R09: 00000000ffffdfff
R10: ffffffffa5c60fe0 R11: ffffcdf8c0f27ab8 R12: 0000000000000003
R13: 000000000000003d R14: 00000000000001bc R15: 0000000000000001
FS: 0000000000000000(0000) GS:ffff8d636f63f000(0000) knlGS:0000000000000000
CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033
CR2: 0000562689a60c24 CR3: 000000015f224004 CR4: 00000000001726f0
Call Trace:
<TASK>
gro_receive_skb+0xee/0x230
mlxsw_sp1_ptp_got_packet+0x61/0x140 [mlxsw_spectrum]
mlxsw_core_skb_receive+0xdf/0x1b0 [mlxsw_core]
mlxsw_pci_napi_poll_cq_rx+0x780/0x9d0 [mlxsw_pci]
__napi_poll+0x31/0x1e0
napi_threaded_poll_loop+0x16b/0x1c0
napi_threaded_poll+0x71/0xa0
kthread+0xfb/0x260
ret_from_fork+0x22d/0x260
ret_from_fork_asm+0x1a/0x30
</TASK>
Kernel panic - not syncing: Fatal exception in interrupt
The machinery that leads to this kernel panic has not been changed between
6.18.48 and mainline.
This patch adds an ingress-delivery helper for the PTP packet_finish()
path that calls netif_receive_skb() instead of napi_gro_receive().
netif_receive_skb(), unlike napi_gro_receive(), can be called from outside
of the NAPI instance's poll context, which can occur at the call site for
this path. RX stats accounting and the skb->dev assignment are still
preserved; the only change is the delivery call itself.
This removes GRO batching for any PTP event traffic received by the mlxsw
trap, but given the relatively low volume of traffic characteristic of the
protocol, and impact limited to only Spectrum-1 ASICs, this is an
acceptable solution.
Fixes:
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efdfb1e27a |
ipv4: fib: bound automatic table ID allocation
fib_empty_table() probes every table ID from 1 until it finds a
free one. IPv4 tables are stored in a 256-bucket hash table, so a
dense set of IDs makes each probe walk a growing hash chain while
RTNL is held.
Automatic table assignment ("ip rule ... table 0") is an IPv4-only
legacy path. Bound the automatically allocated ID to 4096 so the
RTNL hold stays bounded, without changing lookups of explicitly
specified table IDs.
This changes user-visible behavior. A table-0 rule previously
received the lowest free ID in 1..RT_TABLE_MAX (0xFFFFFFFF). After
this patch the search stops at 4096 and the rule add fails with
ENOBUFS if that range is fully occupied. Explicit table IDs above
4096 remain usable.
The automatic path is unused in practice: it is IPv4-only, not
documented by ip-rule, uncovered by kernel selftests, and both
NetworkManager and systemd refuse table 0.
Fixes:
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b6dd676d32 |
Merge branch 'net-bcmasp-fix-tx-ring-accounting-bugs'
Danesh Petigara says:
====================
net: bcmasp: fix TX ring accounting bugs
Two fixes for TX descriptor ring handling in the bcmasp driver:
- tx_spb_ring_full() re-initialized next_index from
intf->tx_spb_index on every loop iteration instead of advancing
it, so it only ever checked a single descriptor slot regardless
of cnt. This let bcmasp_xmit() proceed even when the ring didn't
actually have enough free slots for the SKB's fragments.
- bcmasp_xmit() only set txcb->last for the final fragment of an
SKB, leaving stale true values in reused descriptor slots from a
prior transmission. Combined with the ring-full miscount above,
this could cause bcmasp_tx_reclaim() to treat a mid-SKB
descriptor as the last one and free the sk_buff while later
fragments were still in flight.
Patch 1 clears txcb->last unconditionally before it is set, and
patch 2 fixes the ring-full slot check to advance through each
candidate slot.
====================
Link: https://patch.msgid.link/20260831184235.4133351-1-danesh.petigara@broadcom.com
Signed-off-by: Jakub Kicinski <kuba@kernel.org>
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0c5cf62e72 |
net: bcmasp: fix tx_spb_ring_full() checking same slot cnt times
The loop initialised next_index from intf->tx_spb_index on every
iteration, so incr_ring() always produced the same result and only
one slot was ever tested. Move the initialisation before the loop
so each iteration advances next_index and the function correctly
checks that cnt consecutive descriptor slots are available before
allowing a new transmission.
Fixes:
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18e5e0ec0e |
net: bcmasp: clear txcb->last before writing each descriptor
bcmasp_xmit() only wrote txcb->last = true for the final fragment
of an SKB; non-final fragments left the field untouched. If a
descriptor slot was reused while it still held a stale true from
a previous SKB (possible when tx_spb_ring_full() underreported
fullness), bcmasp_tx_reclaim() would see last == true mid-SKB and
call dev_consume_skb_any() prematurely, freeing the sk_buff while
its remaining fragments were still in flight.
Unconditionally clear txcb->last before the conditional set so every
descriptor slot starts from a known false state regardless of what a
prior transmission left behind.
Fixes:
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adf50c47a4 |
Including fixes from bluetooth.
Previous releases - regressions:
- page_pool: keep frag_offset aligned for odd-sized requests
- sched: fix u32 duplicate handle when node ID pool is exhausted
- udp: create exceptions before socket matching
- igmp: convert struct ip_sf_list to RCU
- ip6_gre: check tunnel info before xmit in ip6gre_tunnel_xmit
- rds: acquire the fastpath locks in rds_conn_shutdown()
- tipc:
- protect node reset trace dump with node lock
- fix NULL deref in tipc_named_node_up() on empty publication list
- bluetooth:
L2CAP: fix out-of-bounds write in l2cap_ecred_connect
hci_core: fix race condition during device registration
- eth: mlx5e: prevent stale XSK buffer release on refill retries
- eth: bridge: don't truncate the port group walk on teardown
Previous releases - always broken:
- gro: fix nesting of TCP GSO SKBs in skb_gro_receive_list()
- sched: fix skb sizing and action leak on reoffload delete
- tcp: fix use-after-free in do_tcp_getsockopt()
- af_packet: don't cast tpacket_hdr.tp_len to int in tpacket_parse_header().
- sctp: fix soft lockup from unpadded ASCONF-ACK parameter iteration
- iptunnel: fix stale transport header during tunnel decapsulation
- eth: vxlan: fix use-after-free in vxlan_mdb_remote_src_del()
- eth: bonding: fix uninitialized transport header access in alb_determine_nd()
Signed-off-by: Paolo Abeni <pabeni@redhat.com>
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Merge tag 'net-7.3-rc2' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net
Pull networking fixes from Paolo Abeni:
"Including fixes from bluetooth.
Previous releases - regressions:
- page_pool: keep frag_offset aligned for odd-sized requests
- sched: fix u32 duplicate handle when node ID pool is exhausted
- udp: create exceptions before socket matching
- igmp: convert struct ip_sf_list to RCU
- ip6_gre: check tunnel info before xmit in ip6gre_tunnel_xmit
- rds: acquire the fastpath locks in rds_conn_shutdown()
- tipc:
- protect node reset trace dump with node lock
- fix NULL deref in tipc_named_node_up() on empty publication
list
- bluetooth:
- L2CAP: fix out-of-bounds write in l2cap_ecred_connect
- hci_core: fix race condition during device registration
- eth:
- mlx5e: prevent stale XSK buffer release on refill retries
- bridge: don't truncate the port group walk on teardown
Previous releases - always broken:
- gro: fix nesting of TCP GSO SKBs in skb_gro_receive_list()
- sched: fix skb sizing and action leak on reoffload delete
- tcp: fix use-after-free in do_tcp_getsockopt()
- af_packet: don't cast tpacket_hdr.tp_len to int in
tpacket_parse_header()
- sctp: fix soft lockup from unpadded ASCONF-ACK parameter iteration
- iptunnel: fix stale transport header during tunnel decapsulation
- eth:
- vxlan: fix use-after-free in vxlan_mdb_remote_src_del()
- bonding: fix uninitialized transport header access in
alb_determine_nd()"
* tag 'net-7.3-rc2' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net: (83 commits)
net: gro: Fix nesting of TCP GSO SKBs in skb_gro_receive_list()
net: stmmac: reconfigure RX packet parser table in stmmac_hw_setup() after reset
net: airoha: enable RX_DONE interrupt for RX queue 31
net/rds: don't let rds_conn_shutdown() consume a concurrent drop
net/rds: acquire the fastpath locks in rds_conn_shutdown()
net/rds: acquire RDS_IN_XMIT in rds_tcp_reset_callbacks()
net/rds: tcp: don't force RDS_CONN_RESETTING over a concurrent shutdown
net/rds: clear cp_flags bits individually in rds_conn_path_reset()
net/rds: use clear_bit_unlock() in release_refill()
net/rds: use wq_has_sleeper() in release_in_xmit()
net: usb: qmi_wwan: add Compal EXM-G1x support
net: macb: exclude software FCS from TX byte statistics
net: Remove conflicting altnames for dying netns in __dev_change_net_namespace().
net: bridge: mcast: don't truncate the port group walk on teardown
bonding: do not clear curr_active_slave prematurely when releasing all slaves
net: qrtr: Send HELLO message on endpoint register
octeontx2-af: Fix limiting SRIOV VF count logic
bonding: alb: fix uninitialized transport header access in alb_determine_nd()
s390/ctcm: Prevent XID null dereference
net: psp: do not inherit the Rx association on clone
...
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8ab1afb2eb |
- dm-crypt: fix a race condition that could make errors not being reported
- dm-cache: fix rwsem being locked and unlocked from different processes
- dm-integrity: set the 'stable writes' flag
- dm-integrity: fix a buffer overflow introduced in this merge window
- dm-integrity: fix an infinite loop if tag size is greater than 64
- dm-cache: fix demotion statistics
- dm-integrity: fix NULL pointer dereference in the data-recovery mode
- dm-ebs: remove a bogus restriction on the starting sector offset
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Merge tag 'for-7.3/dm-fixes' of git://git.kernel.org/pub/scm/linux/kernel/git/device-mapper/linux-dm
Pull device mapper fixes from Mikulas Patocka:
- fix a dm-crypt race condition that could make errors not being reported
- dm-cache:
- fix rwsem being locked and unlocked from different processes
- fix demotion statistics
- dm-integrity:
- set the 'stable writes' flag
- fix a buffer overflow introduced in this merge window
- fix an infinite loop if tag size is greater than 64
- fix NULL pointer dereference in dm-integrity data-recovery mode
- remove a bogus restriction on the dm-ebs starting sector offset
* tag 'for-7.3/dm-fixes' of git://git.kernel.org/pub/scm/linux/kernel/git/device-mapper/linux-dm:
dm-ebs: fix incorrect device offset check in ebs_ctr()
dm-integrity: fix NULL pointer dereference when the 'R' flag is used
dm cache: fix demotion stats in passthrough mode
dm-integrity: fix infinite loop on discard with large tag size
dm-integrity: fix buffer overflow with keyed discard
dm-integrity: require stable writes for internal hash modes
dm cache: fix issue with background work locking
dm-crypt: fix a tiny race condition in crypt_dec_pending
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97be98b94d |
- Serialize truncate, fallocate, and mmap fault paths with
invalidate_lock, avoiding mmap failures during concurrent size changes
and exposure of uninitialized data during allocation.
- Correct fallocate signal and zeroing error handling.
- Fix FITRIM range alignment to prevent discard requests from extending
into allocated clusters.
- Fix free-cluster accounting when cluster-freeing rollback or bitmap
clearing fails.
- Keep volumes marked dirty when ntfs errors have been recorded.
- Compute bi_sector in 512-byte units, preventing silent corruption on
4Kn devices.
- Validate sectors_per_cluster values and prevent undefined shifts when
parsing MFT and index record sizes.
- Bound $AttrDef traversal to the loaded table size.
- Fix MFT record resizing, memmove overlap, and kmap_local cleanup issues.
- Improve error propagation across attribute, EA, and reparse operations,
including returning -ERANGE for undersized xattr buffers.
- Avoid modifying the HasEA flag when setxattr fails and return
DT_UNKNOWN when directory inode lookup fails.
- Reduce contention in WOF decompression by performing block reads outside
the decompression lock.
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Merge tag 'ntfs-for-7.3-rc2' of git://git.kernel.org/pub/scm/linux/kernel/git/linkinjeon/ntfs
Pull ntfs fixes from Namjae Jeon:
- Serialize truncate, fallocate, and mmap fault paths with
invalidate_lock, avoiding mmap failures during concurrent size
changes and exposure of uninitialized data during allocation
- Correct fallocate signal and zeroing error handling
- Fix FITRIM range alignment to prevent discard requests from extending
into allocated clusters
- Fix free-cluster accounting when cluster-freeing rollback or bitmap
clearing fails
- Keep volumes marked dirty when ntfs errors have been recorded
- Compute bi_sector in 512-byte units, preventing silent corruption on
4Kn devices
- Validate sectors_per_cluster values and prevent undefined shifts when
parsing MFT and index record sizes
- Bound $AttrDef traversal to the loaded table size
- Fix MFT record resizing, memmove overlap, and kmap_local cleanup
issues
- Improve error propagation across attribute, EA, and reparse
operations, including returning -ERANGE for undersized xattr buffers
- Avoid modifying the HasEA flag when setxattr fails and return
DT_UNKNOWN when directory inode lookup fails
- Reduce contention in WOF decompression by performing block reads
outside the decompression lock
* tag 'ntfs-for-7.3-rc2' of git://git.kernel.org/pub/scm/linux/kernel/git/linkinjeon/ntfs: (23 commits)
ntfs: take invalidate_lock in ntfs_filemap_page_mkwrite()
ntfs: take invalidate_lock in ntfs_setattr_size()
ntfs: handle signal interruption in fallocate
ntfs: fix FITRIM range alignment
ntfs: read WOF chunks outside the decompression lock
ntfs: leave HasEA flag untouched on setxattr failure
ntfs: fix race between fallocate and mmap reads
ntfs: fix memmove overlap in ntfs_new_attr_flags
ntfs: compute bi_sector in 512-byte units
ntfs: reject invalid sectors_per_cluster in the boot sector
ntfs: bound $AttrDef table walk to the loaded table size
ntfs: fix undefined behavior in mft/index record size calculation
ntfs: treat any nonzero dio zero-range return as an error
ntfs: fix incorrect MFT record pointer passed to ntfs_attr_record_resize
ntfs: do not mark the volume clean in sync_fs when errors were recorded
ntfs: skip free cluster decrement when rollback fails
ntfs: only count successfully cleared runs when freeing clusters
ntfs: fix kmap_local leak in write_mft_record_nolock() error paths
ntfs: return real error from ntfs_non_resident_attr_record_add()
ntfs: preserve error code in ntfs_resident_attr_record_add()
...
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66817a9794 |
net: gro: Fix nesting of TCP GSO SKBs in skb_gro_receive_list()
Fraglist GRO and hardware GRO can create an fraglist of
HW-GRO packets. This cannot be segmented back into
the original form on TCP tethering scenario.
Avoid constructing such a GSO packet, by flushing an already
built fraglist GRO packet if a hardware GRO packet arrives.
Scenario (Tethering/Forwarding):
1.Driver submits a single TCP packet, P1. P1 is kept in the
gro_list as the first packet.
2. The driver submits a TCP GSO skb, P2. P2 has already aggregated
multiple TCP packets by HW_GRO, and its non-linear data is stored in
frags[].
3. P1 and P2 match the GRO rules, and since there is no local socket,
they are aggregated by skb_gro_receive_list(). The resulting skb,
P3, has a frag_list entry that still contains frags[]:
P3: [ Linear Data ] -> frag_list -> [ Linear Data ]
[ frag[1] ]
[ frag[2] ]
...
4. Later, tcp4_gso_segment() or tcp6_gso_segment() calls
skb_segment_list() to segment P3. However, skb_segment_list() only
segments the entries in frag_list. It does not segment the frags[]
inside P2, so P3 is not restored to the original packets, which leads
to IP fragmentation or packet drop in the following path.
Check skb_is_gso(skb) and current GRO method, make sure fraglist GRO
applies to consecutive non-GSO skb, others adopt regular GRO path.
Fixes:
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6b8fed2675 |
net: stmmac: reconfigure RX packet parser table in stmmac_hw_setup() after reset
The core software reset issued in stmmac_init_dma_engine() during
ndo_open() callback clears the MTL RX packet parser registers, but
stmmac_rxp_config() is only invoked from the cls_u32 add/delete paths.
After an ifdown/ifup cycle the hardware therefore runs with the default
all-pass table while priv->tc_entries still reports the filters as
installed. Re-apply the RX packet parser table from priv->tc_entries in
stmmac_hw_setup(), right after the software reset, so the filters are
restored when the interface is brought up again.
Fixes:
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7db28abbea |
net: airoha: enable RX_DONE interrupt for RX queue 31
RX queue 31 has always been allocated and filled by airoha_qdma_init_rx()
since RX_DONE_INT_MASK spans queues 0-31, but none of the RX_IRQ*
_BANK_PIN_MASK values covered BIT(31). As a consequence the RX_DONE
interrupt for queue 31 was never enabled, airoha_qdma_rx_process() never
ran on that queue and its buffers were never reaped.
Route RX queue 31's RX_DONE interrupt to IRQ bank 1 so that the queue
is drained and its buffers returned to the page pool.
Fixes:
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2f37fba846 |
mac802154: fix use-after-free of sdata via queued RX frames
The RX softirq producer ieee802154_subif_frame() queues received beacon
and MAC-command frames onto local->rx_beacon_list / rx_mac_cmd_list and
schedules a process-context worker, storing a raw mac_pkt->sdata (and
skb->dev == sdata->dev) with neither a reference nor any locking:
- the lists have no lock: the softirq producer list_add_tail()s while the
mac_wq worker list_del()s, so sibling interfaces on the same phy corrupt
the list;
- the workers dereference the interface after it may have been freed.
mac802154_rx_mac_cmd_worker() touches mac_pkt->sdata directly, and
mac802154_rx_beacon_worker() -> mac802154_process_beacon() dereferences
skb->dev (== sdata->dev). Removing an interface frees its sdata
(netdev_priv) while a queued frame still points at it, so a later worker
run is a use-after-free.
Reproduced under KASAN by flooding a victim interface with MAC command
frames and removing it (the beacon path is the same class via skb->dev):
BUG: KASAN: slab-use-after-free in mac802154_rx_mac_cmd_worker+0x463/0x630 [mac802154]
Read of size 4 at addr ffff888002f9ea18 by task kworker/u8:1/31
Workqueue: phy0-mac-cmds mac802154_rx_mac_cmd_worker [mac802154]
Call Trace:
mac802154_rx_mac_cmd_worker+0x463/0x630 [mac802154]
process_one_work+0x611/0xe80
worker_thread+0x52e/0xdc0
kthread+0x30c/0x630
ret_from_fork+0x2fd/0x3e0
Fix both lists together:
- add local->rx_lock and take it around every list access: the softirq
producer (plain spin_lock, softirq context) and the workers and flush
(spin_lock_bh, process context);
- pin the interface for the lifetime of a queued frame with
netdev_hold()/netdev_put(), so the worker can safely dereference sdata /
skb->dev even while the interface is being removed;
- dequeue under the lock at the head and loop-drain the whole list in the
workers (they previously processed one frame per run and relied on a
later enqueue to drain the rest);
- drop not-yet-started frames of an interface before it is unregistered,
from ieee802154_if_remove() (after the RCU grace period) and from the
ieee802154_remove_interfaces() loop -- the latter is the whole-phy
teardown path, which does not go through ieee802154_if_remove().
An in-flight worker that already dequeued a frame keeps its own netdev
reference; unregister_netdevice() then waits it out in netdev_run_todo(),
which runs at rtnl_unlock() (rtnl released) and after the interface has
been closed, so it does not pin rtnl. A worker blocked in an association
TX only delays that one interface's unregister (the usual "waiting for %s
to become free"), it does not hold rtnl. netdev_hold() is used for this
reason instead of a cancel_work_sync() under rtnl, which would block on
the worker's unbounded MLME TX wait via ieee802154_sync_queue().
The mac-command worker additionally skips processing for a stopped
interface (ieee802154_sdata_running()), avoiding a needless association
response during teardown.
Fixes:
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||
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2f38e26a57 |
Merge branch 'net-rds-own-the-fastpath-locks-across-connection-teardown'
Allison Henderson says:
====================
net/rds: own the fastpath locks across connection teardown
This is v5 of the follow-up set to "net/rds: Bug fix ports, part 2"
[1] (v1 at [2], v2 at [3], v3 at [4], v4 at [5]). During review of part 2,
the later half of that series needed more work than a respin, so it was
split off into this set together with the companion fixes identified
along the way. As discussed on the v2 thread, it is targeted at net.
RDS connection teardown quiesces the transmit and receive-refill fast
paths by waiting for the RDS_IN_XMIT/RDS_RECV_REFILL bits to be
sampled clear. Sampling a bit clear is not owning it: the fast path
can re-take its bit right after the wait returns and then run
concurrently with the transport shutdown and the send-state reset.
Oracle UEK closed this by making teardown acquire the bits as locks
("rds: Make sure transmit path and connection tear-down does not run
concurrently"); patches 5 and 6 do the same for the two
rds_send_path_reset() call sites upstream.
Making teardown block on the bits as locks promotes several latent
ordering bugs from rare to load-bearing, so they are fixed first:
Patches 1 and 2 fix the release side of the two bit locks.
release_in_xmit() and release_refill() both clear their bit and then
test for waiters, but the barrier is on the wrong side of the clear
to order the critical section's stores before the release, and the
waiter check does not order against the clear. Once teardown blocks
on these bits as locks (uninterruptible and untimed), a lost wake-up
or a store observed out of order stops mattering only in theory.
Use clear_bit_unlock() and wq_has_sleeper(), the pattern already
half-present in release_in_xmit().
Patch 3: rds_conn_path_reset() wipes the whole cp_flags word with a
plain store. Once teardown owns bits in that word across the reset,
a blanket store would end lock ownership early - and it already
races atomic RMWs on the same word today. Clear the bits the reset
is responsible for individually, as Oracle UEK also does.
Patch 4: rds_tcp_reset_callbacks() stores RDS_CONN_RESETTING
unconditionally, which can overwrite the RDS_CONN_ERROR or
RDS_CONN_DISCONNECTING of a shutdown already in progress on the same
path and send that shutdown through an extra drop cycle. Once the
accept path can park for the duration of a teardown (patch 6) that
window widens, so make the transition conditional first, as Oracle
UEK does.
With those in place, patch 5 converts rds_tcp_reset_callbacks() from
waiting on RDS_IN_XMIT to acquiring it, holding it across the socket
swap and rds_send_path_reset(), and patch 6 has rds_conn_shutdown()
hold both bit locks across the transport shutdown and path reset.
Patch 7 fixes a pre-existing teardown-state hole that this series
makes easier to hit but did not introduce. Since commit
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260c6308fe |
net/rds: don't let rds_conn_shutdown() consume a concurrent drop
rds_conn_shutdown() finishes by moving the path from
RDS_CONN_DISCONNECTING to RDS_CONN_DOWN, and also accepts
RDS_CONN_ERROR as the starting state of that final transition, so that
a FIN processed in softirq context during the teardown does not derail
the shutdown into a noisy error path.
But consuming that RDS_CONN_ERROR also consumes the shutdown pass that
came with it: rds_conn_path_drop() sets RDS_CONN_ERROR and then queues
cp_down_w, and a pass that starts on a path already in RDS_CONN_DOWN
is a no-op. For the FIN case that is harmless - the socket the FIN
arrived on is the very socket the teardown just released. It is not
harmless for a dropper that attached something to the path first.
rds_tcp_accept_one() is such a dropper. Its path claim in
rds_tcp_accept_one_path() transitions RDS_CONN_DOWN ->
RDS_CONN_CONNECTING, and a concurrent drop - a FIN on a previous
socket in softirq context, an administrative reset - can put the path
into RDS_CONN_ERROR between that claim and the state check that
follows, which accepts RDS_CONN_ERROR. The accept then installs the
freshly accepted socket with rds_tcp_set_callbacks() while the queued
teardown - which sampled tc->t_sock before this socket existed - is
still running. rds_connect_path_complete() fails its transition to
RDS_CONN_UP and drops the path again, queueing the pass that should
reap the socket it just installed. If the in-flight shutdown's final
transition consumes that drop's RDS_CONN_ERROR, the queued pass finds
the path in RDS_CONN_DOWN and does nothing. The installed socket is
never torn down: it sits established with its callbacks armed and its
rds_tcp_connection on rds_tcp_tc_list, the peer sees a connection that
nothing ever reads, and the path is wedged in RDS_CONN_DOWN until some
later event drops it again. Reproduced with widened race windows as
an ever-growing receive queue on a socket owned by a path stuck in
RDS_CONN_DOWN, with the peer's send path wedged behind it.
Make the final transition only DISCONNECTING -> DOWN. If it fails
because the path is in RDS_CONN_ERROR, a drop raced the teardown:
cancel the reconnect timer and clear RDS_RECONNECT_PENDING - the one
piece of the skipped tail that must not be left behind - and return,
letting the pass the drop queued finish the job: it tears down
whatever attached to the path in the meantime, completes the
transition to RDS_CONN_DOWN, and re-arms the reconnect from its own
tail.
The timer quiesce in that branch matters because the racing drop does
not always queue that pass: rds_conn_path_drop() returns without
queueing when a destroy is pending - exactly the situation during a
netns teardown or module unload, when a FIN on the dying socket is
processed while rds_conn_path_destroy() flushes cp_down_w. If the
flushed pass is the one that takes this return, no later pass exists,
and rds_conn_path_destroy() would find cp_conn_w still armed
(WARN_ON) and then free a path whose reconnect timer can still fire.
With the cancel in the branch, every exit of a shutdown pass leaves
the timer quiesced no matter which pass completes the transition.
The FIN case keeps making progress, one pass later and still without
noisy logging. Any other state keeps today's rds_conn_path_error()
handling; no current cp_state writer can leave a DISCONNECTING path
in anything but RDS_CONN_ERROR (every other writer is a cmpxchg from
a non-DISCONNECTING state), so that branch is defensive.
On kernels without the preceding patches the same hazard exists with
the sample-based quiesce; the fix applies there equally.
Fixes:
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813f3582ac |
net/rds: acquire the fastpath locks in rds_conn_shutdown()
rds_conn_shutdown() quiesces the transmit and receive-refill paths by
waiting for RDS_IN_XMIT and RDS_RECV_REFILL to be sampled clear, and
then runs the transport shutdown and rds_conn_path_reset(). Sampling
the bits clear is not the same as owning them: the moment after the
wait_event() returns, rds_send_xmit() can re-acquire RDS_IN_XMIT (or
rds_ib_recv_refill() can re-acquire RDS_RECV_REFILL) and run
concurrently with the teardown.
The sender does recheck the connection state after taking the lock,
but that recheck is a classic store-buffering pattern: teardown writes
the state and reads the bit while the sender writes the bit and reads
the state. acquire_in_xmit() is only an acquire operation, so on
weakly ordered architectures both sides can miss each other's write,
and the transmit path then runs while the transport zeroes its rings
(e.g. rds_ib_ring_init()) and rds_send_path_reset() rewrites the
transmit state under it.
Oracle UEK fixed the same class of crashes - a 14-year tail of
BUG_ON()s in rds_ib_sub_signaled(), unexpected op-codes and NULL
dereferences in rds_ib_send_cqe_handler() during failover testing -
by making the teardown path *acquire* the fastpath bit locks instead
of testing them ("rds: Make sure transmit path and connection
tear-down does not run concurrently"). Ownership of a single word is
decided by RMW atomicity, so no cross-variable ordering is needed.
Do the same here: take both locks before calling the transport
shutdown, hold them across rds_conn_path_reset(), and release them
explicitly with a wake-up afterwards. Both are released with
clear_bit_unlock(), so that the ring re-initialization done by the
transport shutdown and the transmit state rewritten by
rds_send_path_reset() are ordered before either bit is seen clear by
the next acquire_in_xmit() or acquire_refill().
The fastpath users of these bits - rds_send_xmit() and
rds_ib_recv_refill() - are trylock style and back off while teardown
owns the locks, so no new lock dependency is introduced for them.
rds_tcp_reset_callbacks() is different: since the previous patch it
acquires RDS_IN_XMIT as well, and it blocks doing so, so its wait now
spans the teardown instead of at most one send batch. That waiter
runs from rds_tcp_accept_one() on the single-threaded krdsd workqueue
and holds rds_tcp_accept_lock and t_conn_path_lock while it waits, so
a duelling SYN accepted while its path is being torn down parks
accept processing for the duration of the teardown - for TCP bounded
by the (up to 5 s) drain loop in rds_tcp_conn_path_shutdown(). An IB
path's drain in rds_ib_conn_path_shutdown() has no round cap, but no
blocking waiter either: rds_tcp_reset_callbacks() is the only blocking
acquirer of these bits and waits only on its own TCP path, and the
fastpaths are trylock-and-back-off on both transports, so a long IB
drain lengthens only that path's own quiesce. The
window is narrow: the accept-side state check has to pass before the
teardown moves the path to RDS_CONN_DISCONNECTING.
Because krdsd is a single global workqueue, everything else queued
there - accept processing for other connections and network
namespaces, and the flush_workqueue(rds_wq) in rds_tcp_listen_stop()
during namespace teardown - waits behind the parked accept worker for
that time. It cannot deadlock, although the waits do point at each
other: the teardown blocks until the bit's holder releases it, and
the holder may be that krdsd accept worker. The holder finishes
without needing anything the teardown owns: the sync cancels
rds_tcp_reset_callbacks() issues target cp_send_w and cp_recv_w on
the path's ordered cp_wq, whose only execution slot is occupied by
the blocked cp_down_w itself, so they are pending at most and cancel
without flushing - a reliance on cp_wq being ordered that is now
noted next to those cancels (on the allocation-failure fallback where
a path shares rds_wq, the work items simply serialize).
Nor is the blocking wait itself new: rds_tcp_reset_callbacks() has
waited on RDS_IN_XMIT from the krdsd work item since
commit
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02c5f9dc2e |
net/rds: acquire RDS_IN_XMIT in rds_tcp_reset_callbacks()
rds_tcp_reset_callbacks() quiesces the transmit path by setting the
path state to RDS_CONN_RESETTING and then waiting for RDS_IN_XMIT to
be sampled clear before swapping the underlying socket and calling
rds_send_path_reset().
Sampling the bit clear is not the same as owning it: rds_send_xmit()
can re-acquire RDS_IN_XMIT right after the wait_event() returns. Its
state recheck after taking the lock is a store-buffering pattern (the
resetter writes the state and reads the bit, the sender writes the
bit and reads the state) and acquire_in_xmit() is only an acquire
operation, so on weakly ordered architectures both sides can miss
each other's write and the transmit path then runs concurrently with
rds_send_path_reset() rewriting cp_xmit_* state - which is exactly
what the comment above rds_send_path_reset() tells its callers to
prevent.
Take the lock instead, hold it across the socket swap and
rds_send_path_reset(), and release it with a wake-up at the end. The
lock-ordering constraint documented above the wait still holds: the
lock is acquired before lock_sock(), so a sender inside tcp_sendmsg()
can never be waited on while we hold the socket lock.
Two details of the old code go away with the same change:
- t_sock is now read only after the lock is acquired. The old code
cached it before waiting; the teardown in rds_conn_shutdown()
releases that socket and clears t_sock, so a pointer cached before
the wait can be stale by the time the accept path resumes. Reading
it under RDS_IN_XMIT is what makes the exclusion complete once the
teardown owns the same lock, which the next patch arranges; until
then the teardown still only samples the bit, and the two paths
remain as exposed to each other as they are today.
- The old !osock early path called rds_send_path_reset() with no
serialization at all. It now runs under the lock like the normal
path. The conditional RDS_CONN_RESETTING transition of the
previous patch happens before the socket check either way: a path
found without a socket is either still connecting (its reconnect
worker blocked on t_conn_path_lock) and legitimately goes
RESETTING -> UP on the new socket, or it has been torn down
meanwhile and is dropped.
The in-function comment describing the old wait-based quiesce is
rewritten to describe the lock-based one, and the stale block comment
above the function (which still described a return value and an
incomplete list of t_sock writers) is refreshed to name all four
writers - the connect, accept, teardown and swap paths - and what
serializes each of them.
Fixes:
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e8e60d74fe |
net/rds: tcp: don't force RDS_CONN_RESETTING over a concurrent shutdown
rds_tcp_reset_callbacks() resolves a duelling SYN by storing RDS_CONN_RESETTING into cp_state unconditionally. Nothing serializes that store against the shutdown path: rds_tcp_accept_one() checks for RDS_CONN_CONNECTING or RDS_CONN_ERROR under t_conn_path_lock, but neither rds_conn_path_drop(), which forces RDS_CONN_ERROR, nor rds_conn_shutdown(), which moves the path to RDS_CONN_DISCONNECTING under cp_cm_lock, takes that lock. The store can therefore land on top of a shutdown that is already in progress, or that gets queued right after the accept-side check. When it does, the shutdown worker's final DISCONNECTING -> DOWN transition fails and the path goes through rds_conn_path_error() and a second drop/shutdown cycle instead of a clean reconnect, tearing down the socket the accept path has just installed. Before commit |