mirror of
https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git
synced 2026-08-19 07:38:40 +02:00
185a4caeecabc150106deda1da170b09f2ad803f
1464154
Commits
| Author | SHA1 | Message | Date | |
|---|---|---|---|---|
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1f97760417 |
ASoC: SOF: ipc3-control: Fix TOCTOU in bytes_put and bytes_get
In sof_ipc3_bytes_put(), the size used for the memcpy is derived from
the old data->size already in the buffer, not the incoming new data's
size field. If the new data has a different size, the copy length is
wrong: it may truncate valid data or copy stale bytes.
Similarly, sof_ipc3_bytes_get() checks data->size against max_size
without accounting for the sizeof(struct sof_ipc_ctrl_data) offset
of the flex array within the allocation.
Fix bytes_put to validate and use the incoming data's sof_abi_hdr.size
from ucontrol before copying. Fix bytes_get to subtract sizeof(*cdata)
from the bounds check to match the actual available space.
Fixes:
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390aa4c933 |
ASoC: SOF: ipc3-control: Validate size in snd_sof_update_control
In snd_sof_update_control(), firmware-provided cdata->num_elems is
checked against local_cdata->data->size but never against the actual
allocation size. If local_cdata->data->size was previously set to an
inconsistent value, the memcpy could write past the allocated buffer.
Add a bounds check to ensure num_elems fits within the available space
in the ipc_control_data allocation before copying.
Fixes:
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8791977d72 |
ASoC: SOF: ipc3-control: Use overflow checks in control_update size calc
In sof_ipc3_control_update(), the expected_size calculation uses
firmware-provided cdata->num_elems in arithmetic that could overflow
on 32-bit platforms, wrapping to a small value. This would allow the
cdata->rhdr.hdr.size comparison to pass with mismatched sizes,
potentially leading to out-of-bounds access in snd_sof_update_control.
Use check_mul_overflow() and check_add_overflow() to detect and reject
overflowed size calculations.
Fixes:
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5bdfeccb7f |
ASoC: SOF: ipc4-control: Validate notification payload size
Validate MODULE_NOTIFICATION payload length before reading
bytes/channel data in control update handling.
Fixes:
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3ad673e713 |
ASoC: SOF: ipc4-control: Fix TOCTOU in sof_ipc4_bytes_put
In sof_ipc4_bytes_put(), the copy size is derived from the old
data->size in the buffer rather than the incoming new data's size
field from ucontrol. If the new data has a different size, the copy
uses the wrong length: it may truncate valid data or copy stale bytes.
Fix by validating and using the incoming data's sof_abi_hdr.size from
ucontrol before copying.
Fixes:
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7ecac01cf1 |
s390/ap: Fix locking issue in SE bind and associate sysfs functions
Revisit and reorganize the locking and lock coverage of the
ap->lock spinlock as used in the two sysfs functions
se_bind_store() and se_associate_store().
A kernel run reported a possible deadlock situation, caused by
holding the spinlock (ap->lock) while triggering a uevent.
The fix rearranges the code protected by the spinlock by excluding
the uevent invocation, which does not require protection.
Additionally, the start of the protected region is moved earlier
to cover more lines, ensuring a consistent view of the AP queue
state between reading and updating its struct fields.
=====================================================
WARNING: SOFTIRQ-safe -> SOFTIRQ-unsafe lock order detected
7.1.0-20260601.rc6.git12.516b5dbd4d4a.300.fc44.s390x+debug #1 Not tainted
-----------------------------------------------------
setupseguest.sh/11034 [HC0[0]:SC0[2]:HE1:SE0] is trying to acquire:
000001c991f498e8 (fs_reclaim){+.+.}-{0:0}, at: __kmalloc_cache_noprof+0x5a/0x6d0
and this task is already holding:
000000c4a1a12378 (&aq->lock){+.-.}-{2:2}, at: se_bind_store+0x96/0x3a0
which would create a new lock dependency:
(&aq->lock){+.-.}-{2:2} -> (fs_reclaim){+.+.}-{0:0}
but this new dependency connects a SOFTIRQ-irq-safe lock:
(&aq->lock){+.-.}-{2:2}
... which became SOFTIRQ-irq-safe at:
__lock_acquire+0x5ae/0x15a0
lock_acquire+0x14c/0x400
_raw_spin_lock_bh+0x58/0xb0
ap_tasklet_fn+0x72/0xd0
tasklet_action_common+0x174/0x1b0
handle_softirqs+0x180/0x5c0
irq_exit_rcu+0x196/0x200
do_ext_irq+0x12a/0x4d0
ext_int_handler+0xc6/0xf0
folio_zero_user+0x1c6/0x240
folio_zero_user+0x182/0x240
vma_alloc_anon_folio_pmd+0xa0/0x1d0
__do_huge_pmd_anonymous_page+0x3a/0x200
__handle_mm_fault+0x56c/0x590
handle_mm_fault+0xa2/0x370
do_exception+0x292/0x590
__do_pgm_check+0x136/0x3e0
pgm_check_handler+0x114/0x160
to a SOFTIRQ-irq-unsafe lock:
(fs_reclaim){+.+.}-{0:0}
... which became SOFTIRQ-irq-unsafe at:
...
__lock_acquire+0x5ae/0x15a0
lock_acquire+0x14c/0x400
__fs_reclaim_acquire+0x44/0x50
fs_reclaim_acquire+0xbe/0x100
fs_reclaim_correct_nesting+0x20/0x70
dotest+0x5e/0x148
locking_selftest+0x2854/0x2a88
start_kernel+0x3b2/0x4f0
startup_continue+0x2e/0x40
other info that might help us debug this:
Possible interrupt unsafe locking scenario:
CPU0 CPU1
---- ----
lock(fs_reclaim);
local_irq_disable();
lock(&aq->lock);
lock(fs_reclaim);
<Interrupt>
lock(&aq->lock);
*** DEADLOCK ***
4 locks held by setupseguest.sh/11034:
#0: 000000c485d01440 (sb_writers#4){.+.+}-{0:0}, at: vfs_write+0x2fc/0x380
#1: 000000c4d2283288 (&of->mutex#2){+.+.}-{3:3}, at: kernfs_fop_write_iter+0x12a0x270
#2: 000000c4a1830e48 (kn->active#172){.+.+}-{0:0}, at: kernfs_fop_write_iter+0x1e/0x270
#3: 000000c4a1a12378 (&aq->lock){+.-.}-{2:2}, at: se_bind_store+0x96/0x3a0
the dependencies between SOFTIRQ-irq-safe lock and the holding lock:
-> (&aq->lock){+.-.}-{2:2} {
HARDIRQ-ON-W at:
__lock_acquire+0x5ae/0x15a0
lock_acquire+0x14c/0x400
_raw_spin_lock_bh+0x58/0xb0
ap_queue_init_state+0x2e/0x50
ap_scan_domains+0x5d6/0x620
ap_scan_adapter+0x4c0/0x810
ap_scan_bus+0x70/0x350
ap_scan_bus_wq_callback+0x56/0x80
process_one_work+0x2ba/0x820
worker_thread+0x21a/0x400
kthread+0x164/0x190
__ret_from_fork+0x4c/0x340
ret_from_fork+0xa/0x30
IN-SOFTIRQ-W at:
__lock_acquire+0x5ae/0x15a0
lock_acquire+0x14c/0x400
_raw_spin_lock_bh+0x58/0xb0
ap_tasklet_fn+0x72/0xd0
tasklet_action_common+0x174/0x1b0
handle_softirqs+0x180/0x5c0
irq_exit_rcu+0x196/0x200
do_ext_irq+0x12a/0x4d0
ext_int_handler+0xc6/0xf0
folio_zero_user+0x1c6/0x240
folio_zero_user+0x182/0x240
vma_alloc_anon_folio_pmd+0xa0/0x1d0
__do_huge_pmd_anonymous_page+0x3a/0x200
__handle_mm_fault+0x56c/0x590
handle_mm_fault+0xa2/0x370
do_exception+0x292/0x590
__do_pgm_check+0x136/0x3e0
pgm_check_handler+0x114/0x160
INITIAL USE at:
__lock_acquire+0x5ae/0x15a0
lock_acquire+0x14c/0x400
_raw_spin_lock_bh+0x58/0xb0
ap_queue_init_state+0x2e/0x50
ap_scan_domains+0x5d6/0x620
ap_scan_adapter+0x4c0/0x810
ap_scan_bus+0x70/0x350
ap_scan_bus_wq_callback+0x56/0x80
process_one_work+0x2ba/0x820
worker_thread+0x21a/0x400
kthread+0x164/0x190
__ret_from_fork+0x4c/0x340
ret_from_fork+0xa/0x30
}
... key at: [<000001c9936e8aa0>] __key.7+0x0/0x10
the dependencies between the lock to be acquired
and SOFTIRQ-irq-unsafe lock:
-> (fs_reclaim){+.+.}-{0:0} {
HARDIRQ-ON-W at:
__lock_acquire+0x5ae/0x15a0
lock_acquire+0x14c/0x400
__fs_reclaim_acquire+0x44/0x50
fs_reclaim_acquire+0xbe/0x100
fs_reclaim_correct_nesting+0x20/0x70
dotest+0x5e/0x148
locking_selftest+0x2854/0x2a88
start_kernel+0x3b2/0x4f0
startup_continue+0x2e/0x40
SOFTIRQ-ON-W at:
__lock_acquire+0x5ae/0x15a0
lock_acquire+0x14c/0x400
__fs_reclaim_acquire+0x44/0x50
fs_reclaim_acquire+0xbe/0x100
fs_reclaim_correct_nesting+0x20/0x70
dotest+0x5e/0x148
locking_selftest+0x2854/0x2a88
start_kernel+0x3b2/0x4f0
startup_continue+0x2e/0x40
INITIAL USE at:
__lock_acquire+0x5ae/0x15a0
lock_acquire+0x14c/0x400
__fs_reclaim_acquire+0x44/0x50
fs_reclaim_acquire+0xbe/0x100
fs_reclaim_correct_nesting+0x20/0x70
dotest+0x5e/0x148
locking_selftest+0x2854/0x2a88
start_kernel+0x3b2/0x4f0
startup_continue+0x2e/0x40
}
... key at: [<000001c991f498e8>] __fs_reclaim_map+0x0/0x30
... acquired at:
check_prev_add+0x178/0xf40
__lock_acquire+0x12aa/0x15a0
lock_acquire+0x14c/0x400
__fs_reclaim_acquire+0x44/0x50
fs_reclaim_acquire+0xbe/0x100
__kmalloc_cache_noprof+0x5a/0x6d0
kobject_uevent_env+0xd4/0x420
ap_send_se_bind_uevent+0x48/0x70
se_bind_store+0x146/0x3a0
kernfs_fop_write_iter+0x18c/0x270
vfs_write+0x23c/0x380
ksys_write+0x88/0x120
__do_syscall+0x170/0x750
system_call+0x72/0x90
stack backtrace:
CPU: 6 UID: 0 PID: 11034 Comm: setupseguest.sh Not tainted 7.1.0-20260601.rc6.git2.516b5dbd4d4a.300.fc44.s390x+debug #1 PREEMPT
Hardware name: IBM 9175 ME1 701 (KVM/Linux)
Call Trace:
[<000001c98ffa0a7e>] dump_stack_lvl+0xae/0x108
[<000001c9900a6d7a>] print_bad_irq_dependency+0x47a/0x480
[<000001c9900a7184>] check_irq_usage+0x404/0x4c0
[<000001c9900a73b8>] check_prev_add+0x178/0xf40
[<000001c9900aaf1a>] __lock_acquire+0x12aa/0x15a0
[<000001c9900ab35c>] lock_acquire+0x14c/0x400
[<000001c9903be454>] __fs_reclaim_acquire+0x44/0x50
[<000001c9903be51e>] fs_reclaim_acquire+0xbe/0x100
[<000001c9903cf4ca>] __kmalloc_cache_noprof+0x5a/0x6d0
[<000001c9910ca9d4>] kobject_uevent_env+0xd4/0x420
[<000001c990d84098>] ap_send_se_bind_uevent+0x48/0x70
[<000001c990d87416>] se_bind_store+0x146/0x3a0
[<000001c99057da7c>] kernfs_fop_write_iter+0x18c/0x270
[<000001c99047712c>] vfs_write+0x23c/0x380
[<000001c990477438>] ksys_write+0x88/0x120
[<000001c9910f64e0>] __do_syscall+0x170/0x750
[<000001c99110a412>] system_call+0x72/0x90
INFO: lockdep is turned off.
Fixes:
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25b17c0604 |
ASoC: SOF: amd: set ipc flags to zero
As per design, set IPC conf structure flags to zero during acp init sequence. Link: https://github.com/thesofproject/linux/pull/5642 Signed-off-by: Vijendar Mukunda <Vijendar.Mukunda@amd.com> Tested-by: Umang Jain <uajain@igalia.com> Link: https://patch.msgid.link/20260609160938.3717513-2-Vijendar.Mukunda@amd.com Signed-off-by: Mark Brown <broonie@kernel.org> |
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6042c91df6 |
ASoC: SOF: amd: fix for ipc flags check
Firmware will set dsp_ack to 1 when firmware sends response for the IPC
command issued by host. Similarly dsp_msg flag will be updated to 1.
During ACP D0 entry, the value read from the sof_dsp_ack_write scratch
flag can be uninitialized. A non-zero garbage value is treated as a
pending DSP IPC ack before SOF_FW_BOOT_COMPLETE, causing a spurious
"IPC reply before FW_BOOT_COMPLETE" log.
Fix the condition checks for ipc flags.
Fixes:
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26acdaa357 |
nvme: fix crash and memory leak during invalid cdev teardown
In the NVMe multipath code, if nvme_add_ns_head_cdev() fails during nvme_mpath_set_live(), the error is ignored. However, during teardown, nvme_remove_head() unconditionally calls nvme_cdev_del(). This teardown asymmetry leads to a kernel panic if the character device was never successfully initialized. BUG: kernel NULL pointer dereference, address: 00000000000000d0 device_del+0x39/0x3c0 cdev_device_del+0x15/0x50 nvme_cdev_del+0xe/0x20 [nvme_core] nvme_mpath_shutdown_disk+0x38/0x60 [nvme_core] nvme_ns_remove+0x177/0x1f0 [nvme_core] nvme_remove_namespaces+0xdc/0x130 [nvme_core] nvme_do_delete_ctrl+0x71/0xd0 [nvme_core] Additionally, a memory leak exists in the nvme_cdev_add() failure path. Previously, dev_set_name() was called before ida_alloc(). If ida_alloc() subsequently failed, device_initialize() was never called, meaning put_device() could not be used to clean up the kobject, leaking the memory allocated by dev_set_name(). * Introduces the NVME_NSHEAD_CDEV_LIVE and NVME_NS_CDEV_LIVE bits to track the successful creation of the character devices. Teardown routines now check these bits before attempting deletion. * Refactor nvme_cdev_add() to accept the formatted device name as a parameter, moving dev_set_name() after the IDA allocation and immediately before device_initialize(). This ensures any internally allocated strings are safely cleaned up by put_device() upon failure. Signed-off-by: Maurizio Lombardi <mlombard@redhat.com> Signed-off-by: Keith Busch <kbusch@kernel.org> |
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3abbe30231 |
Merge branch 'net-ethtool-let-ops-locked-drivers-run-without-rtnl_lock'
Jakub Kicinski says:
====================
net: ethtool: let ops locked drivers run without rtnl_lock
With the ethtool_get_link_ksettings() situation hopefully ironed out
the previous series (commit
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b5125db8d0 |
docs: net: ethtool: document ops-locked drivers and op_needs_rtnl
Catch up various bits of documentation after the locking changes. Reviewed-by: Nicolai Buchwitz <nb@tipi-net.de> Reviewed-by: Eric Dumazet <edumazet@google.com> Acked-by: Stanislav Fomichev <sdf@fomichev.me> Reviewed-by: Jacob Keller <jacob.e.keller@intel.com> Link: https://patch.msgid.link/20260605002912.3456868-13-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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f994752b11 |
net: ethtool: optionally skip rtnl_lock on IOCTL path
Convert the IOCTL path similarly to how we converted Netlink. The device lookup gets a little hairy. We could take rtnl_lock unconditionally and drop it before calling the driver (this would avoid the reference + liveness check). But I think being able to make progress even if rtnl is dead-locked is quite useful. First extra concern is handling features. List all the cmds which modify features and always take rtnl_lock. We could fold this list into ethtool_ioctl_needs_rtnl() but seems cleaner to keep ethtool_ioctl_needs_rtnl() driver-related. If a driver changed features and we were not holding rtnl_lock - warn about it. It can only happen on buggy ops locked drivers (buggy because they should have set appropriate "I need rtnl for op X" bit). Second wrinkle is the PHY ID hack which drops the locks while sleeping. Convert its static "busy" variable which used to be protected by rtnl_lock to a field in struct ethtool_netdev_state. This feature is about identifying an adapter or a port within a system, so being able to blink multiple LEDs at the same time is likely not very useful in practice. But it's the simplest fix, we can add a mutex if someone thinks a system should only be ID'ing one port at a time. Reviewed-by: Eric Dumazet <edumazet@google.com> Acked-by: Stanislav Fomichev <sdf@fomichev.me> Reviewed-by: Jacob Keller <jacob.e.keller@intel.com> Link: https://patch.msgid.link/20260605002912.3456868-12-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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f58a40d07b |
net: ethtool: ioctl: concentrate the locking
Add another layer of helper functions to make upcoming locking changes easier. Otherwise we'd need a pretty complex goto structure. netdev instance lock is now taken slightly sooner but that should not be an issue since rtnl_lock is already held, anyway. Reviewed-by: Eric Dumazet <edumazet@google.com> Acked-by: Stanislav Fomichev <sdf@fomichev.me> Reviewed-by: Jacob Keller <jacob.e.keller@intel.com> Link: https://patch.msgid.link/20260605002912.3456868-11-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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732fa5ced1 |
net: ethtool: optionally skip rtnl_lock in RSS context handlers
Skip rtnl_lock in RSS context handlers if device is ops-locked. Fairly trivial conversion. bnxt needed rtnl_lock for changing the main context but looks like additional contexts are fine without it. Note (for review bots?) that ethnl_ops_begin() checks whether the device is still registered. Reviewed-by: Eric Dumazet <edumazet@google.com> Acked-by: Stanislav Fomichev <sdf@fomichev.me> Reviewed-by: Jacob Keller <jacob.e.keller@intel.com> Link: https://patch.msgid.link/20260605002912.3456868-10-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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2526717624 |
net: ethtool: optionally skip rtnl_lock in ethnl_act_module_fw_flash()
Module firmware flashing reads SFF-8024 identifier bytes via .get_module_eeprom_by_page(). Other than that it modifies a bit in the netdev->ethtool struct. Both should be ops-locked at this point. Reviewed-by: Eric Dumazet <edumazet@google.com> Acked-by: Stanislav Fomichev <sdf@fomichev.me> Reviewed-by: Jacob Keller <jacob.e.keller@intel.com> Link: https://patch.msgid.link/20260605002912.3456868-9-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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0c334c21f5 |
net: ethtool: optionally skip rtnl_lock in ethnl_tsinfo_dumpit()
ethnl_tsinfo_dumpit() iterates netdevs and per-netdev PHY topology calling ops->get_ts_info(). Switch to the "ops compat locking" helpers which take either rtnl_lock or instance lock, depending on what the device needs. Reviewed-by: Eric Dumazet <edumazet@google.com> Acked-by: Stanislav Fomichev <sdf@fomichev.me> Reviewed-by: Jacob Keller <jacob.e.keller@intel.com> Link: https://patch.msgid.link/20260605002912.3456868-8-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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f16013fde4 |
net: ethtool: optionally skip rtnl_lock in cable test handlers
Skip rtnl_lock in cable test handlers. This is really a noop since no ops locked device supports these. Reviewed-by: Eric Dumazet <edumazet@google.com> Acked-by: Stanislav Fomichev <sdf@fomichev.me> Reviewed-by: Jacob Keller <jacob.e.keller@intel.com> Link: https://patch.msgid.link/20260605002912.3456868-7-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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f9a3e05114 |
net: ethtool: optionally skip rtnl_lock on Netlink path for SET ops
Make ethtool not take rtnl_lock for SET commands when operation is performed on an ops-locked driver. cfg/cfg_pending are now ops-locked, since only ethtool modifies them. Some SET driver callbacks will still need rtnl_lock, most notably those which may end up calling netdev_update_features() or the qdisc layer (via netif_set_real_num_tx_queues()). Let drivers selectively opt back into the rtnl_lock with a new bitfield in ops. We need two helpers since Netlink and ioctl cmds have different values. Keep the helpers side by side in common.h to make sure they get updated together, even tho they will only get called from ioctl.c and netlink.c. SET commands which don't use ethnl_default_set_doit() are converted by subsequent commits. Reviewed-by: Eric Dumazet <edumazet@google.com> Acked-by: Stanislav Fomichev <sdf@fomichev.me> Reviewed-by: Jacob Keller <jacob.e.keller@intel.com> Link: https://patch.msgid.link/20260605002912.3456868-6-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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45079e0013 |
net: ethtool: optionally skip rtnl_lock on Netlink path for GET ops
ethnl_default_doit() and ethnl_default_dump_one() are both used exclusively for GET callbacks (former to get info for a single device or get global strings). ops-locked devices don't need rtnl_lock for GET callbacks, stop taking it. Introduce an opt-out mechanism for devices which use phylink (fbnic) since phylink currently depends on rtnl_lock protection. Subsequent patches will add more exceptions, anyway. Practically the new helpers for judging if command needs rtnl_lock could also call netdev_need_ops_lock() but I find that it makes the code in the callers slightly less obvious. Add a helper for IOCTLs already, even tho it's unused so that we can keep them in sync as the series progresses. This is the first user-visible step of moving ethtool ops out from under rtnl. Subsequent patches do the same for SET ops, as well as the ioctl path. Reviewed-by: Eric Dumazet <edumazet@google.com> Acked-by: Stanislav Fomichev <sdf@fomichev.me> Reviewed-by: Jacob Keller <jacob.e.keller@intel.com> Link: https://patch.msgid.link/20260605002912.3456868-5-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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97f51bf91b |
net: ethtool: make dev->hwprov ops-protected
dev->hwprov tracks the active hwtstamp provider for the device.
Make it ops protected (instance lock if the netdev driver opts
into holding instance lock around callbacks, otherwise rtnl_lock).
hwprov is written and read in:
- drivers/net/phy/phy_device.c
phydev and ops protection don't currently mix, add a comment
- net/ethtool/
as of now holds both rtnl lock and ops lock, this one will
soon only hold one lock or the other
read in:
- net/core/dev_ioctl.c
holds both rtnl lock and ops lock
- net/core/timestamping.c
RCU reader
The new netdev_ops_lock_dereference() helper does not have
"compat" in the name. The name would be quite long and I think
in this case it should be obvious that we need _a_ lock.
netdev_lock_dereference() already exists and means dev->lock
is always expected.
Reviewed-by: Eric Dumazet <edumazet@google.com>
Acked-by: Stanislav Fomichev <sdf@fomichev.me>
Reviewed-by: Jacob Keller <jacob.e.keller@intel.com>
Link: https://patch.msgid.link/20260605002912.3456868-4-kuba@kernel.org
Signed-off-by: Jakub Kicinski <kuba@kernel.org>
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ded86da4bb |
net: ethtool: relax ethnl_req_get_phydev() locking assertion
phydev <> netdev linking and lifecycle depends on rtnl_lock. We want to switch to instance locks for most ethtool ops. Let's add an assert that ops locked devices don't use phydev today. If one does we can either opt the phy ops out of being purely ops locked, or do deeper surgery to make phy locking ops-compatible. I don't think there's any fundamental challenge to make that work. Reviewed-by: Nicolai Buchwitz <nb@tipi-net.de> Reviewed-by: Maxime Chevallier <maxime.chevallier@bootlin.com> Reviewed-by: Eric Dumazet <edumazet@google.com> Acked-by: Stanislav Fomichev <sdf@fomichev.me> Reviewed-by: Jacob Keller <jacob.e.keller@intel.com> Link: https://patch.msgid.link/20260605002912.3456868-3-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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8845484367 |
net: ethtool: serialize broadcast notification sequence allocation
ethnl_bcast_seq is a global counter stamped into the nlmsg_seq field of every multicast notification, allowing userspace to detect dropped messages. Today the ordering is achieved by using rtnl_lock(). Moving forward we will want ethtool ops to run under just the netdev instance lock so to establish ordering we need a separate lock for notifications. With the netdev instance locks operations on different devices may bypass each other but the expectation is that it should not matter. What we need to prevent is: - notification IDs getting out of order - operations on one device getting out of order For simplicity defer allocating the ID of the notification right before the notification is delivered. This removes the need for special handling in ethnl_rss_create_send_ntf(). Reviewed-by: Eric Dumazet <edumazet@google.com> Acked-by: Stanislav Fomichev <sdf@fomichev.me> Reviewed-by: Jacob Keller <jacob.e.keller@intel.com> Link: https://patch.msgid.link/20260605002912.3456868-2-kuba@kernel.org Signed-off-by: Jakub Kicinski <kuba@kernel.org> |
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38b7a274cf |
igc: skip RX timestamp header for frame preemption verification
When RX hardware timestamping is enabled, a 16-byte inline timestamp header
is added to the start of the packet buffer, causing FPE handshake
verification to fail.
Because an incorrect packet buffer is passed to igc_fpe_handle_mpacket(),
the mem_is_zero() check inspects the timestamp metadata instead of the
actual mPacket payload. As a result, valid Verify/Response mPackets can be
missed when inline RX timestamps are present.
Pass pktbuf + pkt_offset to igc_fpe_handle_mpacket() so it inspects the
actual mPacket payload instead of the timestamp header.
Fixes:
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7bd4355272 |
ixgbe: do not configure xps for XDP queues
netif_set_xps_queue() should not be called for an XDP Tx queue, since such
queues are not netdev-exposed. On systems with number of CPUs >=64, on E610
adapter, netdev is configured with maximum number queue pairs being 63
(due to MSI-X assignment), but configuring XDP results in 64 XDP queues.
So, during XDP program load, when netif_set_xps_queue() is called for the
last XDP queue, we get a WARNING with a call trace and KASAN report
afterwards (if enabled).
[ 2012.699800] WARNING: net/core/dev.c:2854 at __netif_set_xps_queue+0x116a/0x1e40, CPU#36: xdpsock/103668
[...]
[ 2012.700029] RIP: 0010:__netif_set_xps_queue+0x116a/0x1e40
[ 2012.700035] Code: b6 34 06 48 89 f8 83 e0 07 83 c0 01 40 38 f0 7c 09 40 84 f6 0f 85 03 0a 00 00 0f b7 44 24 40 66 43 89 44 6a 18 e9 01 fb ff ff <0f> 0b e9 f2 ee ff ff 44 8b 44 24 44 45 85 c0 74 50 4d 85 e4 0f 84
[ 2012.700040] RSP: 0018:ffff8882369aeb28 EFLAGS: 00010246
[ 2012.700046] RAX: 0000000000000000 RBX: 000000000000003f RCX: 0000000000000000
[ 2012.700050] RDX: 1ffff1111da3d891 RSI: ffff888120e34250 RDI: ffff8888ed1ec488
[ 2012.700054] RBP: ffff888913281560 R08: 0000000000000000 R09: ffff8888ed1ec000
[ 2012.700058] R10: ffff8888a2e83180 R11: 0000000000000000 R12: 0000000000007fa8
[ 2012.700061] R13: 000000000000003f R14: ffff888120e34854 R15: ffff8889132817c8
[ 2012.700065] FS: 00007fc8ea9ff740(0000) GS:ffff88884cefe000(0000) knlGS:0000000000000000
[ 2012.700069] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033
[ 2012.700073] CR2: 00007f81c8000020 CR3: 00000002299f8006 CR4: 00000000007726f0
[ 2012.700077] PKRU: 55555554
[ 2012.700080] Call Trace:
[ 2012.700084] <TASK>
[ 2012.700087] ? ktime_get+0x61/0x150
[ 2012.700097] ? usleep_range_state+0x133/0x1b0
[ 2012.700108] ? __pfx_usleep_range_state+0x10/0x10
[ 2012.700114] netif_set_xps_queue+0x31/0x50
[ 2012.700119] ixgbe_configure_tx_ring+0x472/0x920 [ixgbe]
[...]
[ 2012.700486] ixgbe_xdp+0x38f/0x750 [ixgbe]
[...]
[ 2012.701094] BUG: KASAN: slab-out-of-bounds in __netif_set_xps_queue+0x1ac5/0x1e40
[ 2012.701100] Write of size 4 at addr ffff88888d43cff8 by task xdpsock/103668
Skip XPS configuration for XDP Tx queues.
Fixes:
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d1e8f9fd6b |
idpf: add padding to PTP virtchnl structures
Add padding to virtchnl2 PTP structures to match the Control Plane
expected message sizes:
* virtchnl2_ptp_get_dev_clk_time: 8 -> 16 bytes
* virtchnl2_ptp_set_dev_clk_time: 8 -> 16 bytes
* virtchnl2_ptp_get_cross_time: 16 -> 24 bytes
The FW expects the above sizes and PTP negotiation fails due to the
mismatch. Previously neither the FW nor the driver checked message/reply
sizes strictly, so the problem appeared only after recent validation
improvements.
reproduction steps:
ptp4l -i <pf> -m
Observe: failed to open /dev/ptp0: Permission denied
Fixes:
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f865a57896 |
PCI: mediatek: Fix IRQ domain leak when port fails to enable
When mtk_pcie_enable_port() fails, mtk_pcie_port_free() removes the port
from pcie->ports and frees the port structure. However, the IRQ domains set
up earlier by mtk_pcie_init_irq_domain() are never freed.
Fix this by refactoring mtk_pcie_irq_teardown() into a per-port helper,
mtk_pcie_irq_teardown_port(), and calling it from mtk_pcie_setup() when
mtk_pcie_enable_port() fails. Since the IRQ teardown must only happen in
the probe error path (during resume, child devices may have active MSI
mappings and the NOIRQ context prohibits sleeping locks),
mtk_pcie_enable_port() is changed to return an error code so callers can
distinguish the two paths and act accordingly.
This issue was reported by Sashiko while reviewing the EcoNet EN7528 SoC
support series.
Fixes:
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2a185da3ed |
Merge tag 'microchip-dt64-7.2' of https://git.kernel.org/pub/scm/linux/kernel/git/at91/linux into soc/dt
Microchip ARM64 device tree updates for v7.2 This update includes: - the device tree node for the OTP controller on LAN9691 SoC * tag 'microchip-dt64-7.2' of https://git.kernel.org/pub/scm/linux/kernel/git/at91/linux: arm64: dts: microchip: lan969x: add OTP node Signed-off-by: Arnd Bergmann <arnd@arndb.de> |
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cb78caa297 |
Merge tag 'at91-dt-7.2' of https://git.kernel.org/pub/scm/linux/kernel/git/at91/linux into soc/dt
Microchip AT91 device tree updates for v7.2 This update includes: - I3C controller device tree node for SAMA7D65 SoC * tag 'at91-dt-7.2' of https://git.kernel.org/pub/scm/linux/kernel/git/at91/linux: ARM: dts: microchip: add I3C controller Signed-off-by: Arnd Bergmann <arnd@arndb.de> |
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c268f949e2 |
cxl: Fix CXL_HEADERLOG_SIZE to match RAS Capability size
The CXL r4.0 8.2.4.17.7 RAS Capability Structure has total length 0x58 bytes (CXL_RAS_CAPABILITY_LENGTH); the Header Log occupies the trailing 64 bytes at offset 0x18. CXL_HEADERLOG_SIZE was defined as SZ_512, eight times the actual on-device size. header_log_copy() reads CXL_HEADERLOG_SIZE_U32 (128) dwords from the RAS capability iomap, overrunning the 88-byte mapping by 448 bytes. The cxl_aer_uncorrectable_error trace event memcpy()s CXL_HEADERLOG_SIZE (512) bytes from its source. For the CPER caller the source is struct cxl_ras_capability_regs::header_log[16] (64 bytes) embedded in a stack-local cxl_cper_prot_err_work_data, so the memcpy reads 448 bytes of kernel stack into the trace event ring buffer where userspace can read it via tracefs. Set CXL_HEADERLOG_SIZE to 64 and derive CXL_HEADERLOG_SIZE_U32 from it, bringing all iomap readers into agreement on 16 dwords. Userspace tools such as rasdaemon have grown a dependency on the buggy 512-byte (128 u32) header_log layout in the cxl_aer_uncorrectable_error trace event. Add CXL_HEADERLOG_TRACE_SIZE_U32 = 128 and use it for the trace event __array and its memcpy to preserve that ABI. Both callers now pass a zero-filled u32[CXL_HEADERLOG_TRACE_SIZE_U32] staging buffer with only the first CXL_HEADERLOG_SIZE_U32 (16) entries populated from hardware; the remaining 112 u32s are zero-padded, keeping the 512-byte trace ring buffer layout intact. [ dj: Replaced 64 with SZ_64 per RichardC ] Fixes: |
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2ab5179ebb |
Merge tag 'omap-for-v7.2/dt-signed' of git://git.kernel.org/pub/scm/linux/kernel/git/khilman/linux-omap into soc/dt
ARM: dts: OMAP updates for v7.2 Minor DTS fixes & updates * tag 'omap-for-v7.2/dt-signed' of git://git.kernel.org/pub/scm/linux/kernel/git/khilman/linux-omap: ARM: dts: dm8168-evm: Set stdout-path to uart3 arch: arm: dts: cpcap-mapphone: Add audio-codec jack detection interrupts arch: arm: dts: cpcap-mapphone: Set VAUDIO regulator always-on ARM: dts: ti/omap: omap4-epson-embt2ws: fix typo in iio device property ARM: dts: am335x-sl50: Fix audio bitclock and frame master endpoint Signed-off-by: Arnd Bergmann <arnd@arndb.de> |
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34b9a83c50 |
nvmet: fix refcount leak in nvmet_sq_create()
In nvmet_sq_create(), a reference on the ctrl is taken
via kref_get_unless_zero() before calling nvmet_check_sqid().
If nvmet_check_sqid() fails, the function returns the error
directly without releasing the reference, leading to a leak.
Fix this by jumping to the "ctrl_put" label, which already
performs the necessary nvmet_ctrl_put(ctrl). This ensures the
reference is properly released on this error path.
Cc: stable@vger.kernel.org
Fixes:
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c28364c983 |
Merge tag 'mvebu-arm-7.2-1' of git://git.kernel.org/pub/scm/linux/kernel/git/gclement/mvebu into soc/arm
mvebu arm for 7.2 (part 1) Orion5x: Replace machine_is_mss2() with of_machine_is_compatible() in mss2_pci_init() mvebu_v5_defconfig: Remove stale MACH_LINKSTATION_LSCHL reference Armada 370: Simplify of_node_put calls and drop redundant NULL checks * tag 'mvebu-arm-7.2-1' of git://git.kernel.org/pub/scm/linux/kernel/git/gclement/mvebu: ARM: orion5x: update board check in mss2_pci_init() to use the DT arm: mvebu_v5_defconfig: remove stale MACH_LINKSTATION_LSCHL reference ARM: mvebu: simplify of_node_put calls ARM: mvebu: drop unnecessary NULL check Signed-off-by: Arnd Bergmann <arnd@arndb.de> |
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4b0dc84b29 |
PCI: meson: Add missing remove callback
meson_pcie_probe() powers on the PHY and registers the DesignWare host
bridge with dw_pcie_host_init(), but the driver has no remove callback.
On driver unbind or module unload, the driver core therefore proceeds to
devres cleanup without first unregistering the host bridge or powering off
the PHY.
Add a remove callback that deinitializes the DesignWare host bridge and
powers off the PHY while device-managed resources are still valid.
Fixes:
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e77bb5dc57 |
arm64: dts: aspeed: Add initial AST27xx SoC device tree
Add initial device tree support for the ASPEED AST27xx family, the 8th-generation Baseboard Management Controller (BMC) SoCs. AST27xx SOC Family - https://www.aspeedtech.com/server_ast2700/ - https://www.aspeedtech.com/server_ast2720/ - https://www.aspeedtech.com/server_ast2750/ The AST27xx features a dual-SoC architecture consisting of two dies, referred to as SoC0 and SoC1 - interconnected through an internal proprietary bus. Both SoCs share the same address decoding scheme, while each maintains independent clock and reset domains. - SoC0 (CPU die): contains a quad-core Cortex-A35 cluster and two Cortex-M4 cores, along with high-speed peripherals. - SoC1 (I/O die): includes the BootMCU (responsible for system boot) and its own clock/reset domains low-speed peripherals. The device tree describes the SoC0 and SoC1 domains and their peripheral layouts. Signed-off-by: Ryan Chen <ryan_chen@aspeedtech.com> Link: https://lore.kernel.org/r/20260609-upstream_ast2700-v9-3-f631752f0cb1@aspeedtech.com Signed-off-by: Arnd Bergmann <arnd@arndb.de> |
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b12341b98d |
PCI: meson: Propagate devm_add_action_or_reset() failure
meson_pcie_probe_clock() enables a clock and then registers a devres
action to disable it during teardown. If devm_add_action_or_reset()
fails, it runs the action immediately, disabling the clock.
The return value is currently ignored, so on that failure path,
meson_pcie_probe_clock() returns the disabled clock and probe continues.
Return the error so the existing probe error path unwinds normally.
Fixes:
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ae2eb64bfd |
btrfs: fix use-after-free after relocation failure with concurrent COW
If we get a failure during relocation, before we update all the extent buffers that have file extent items pointing to extents from the block group being relocated, we can trigger a user-after-free on the reloc control structure (fs_info->reloc_control) if we have a concurrent task that is COWing a subvolume leaf. This happens like this: 1) Relocation of data block group X starts; 2) Relocation changes its state to UPDATE_DATA_PTRS; 3) A task doing a rename for example, COWs leaf A from a subvolume tree and ends up at btrfs_reloc_cow_block() and extracts fs_info->reloc_ctl into a local variable, which then passes to replace_file_extents(); 4) The relocation task gets an error and under the label 'out_put_bg' in btrfs_relocate_block_group() calls free_reloc_control(), which frees the reloc control structure that the rename task is using; 5) The rename task triggers a use-after-free on the reloc control structure that was just freed. Syzbot reported this recently, with the following stack trace: [ 88.389822][ T5325] BTRFS error (device loop0 state A): Transaction aborted (error -5) [ 88.389842][ T5325] BTRFS: error (device loop0 state A) in cleanup_transaction:2067: errno=-5 IO failure [ 88.389864][ T5325] BTRFS info (device loop0 state EA): forced readonly [ 88.392277][ T5324] BTRFS: error (device loop0 state EA) in btrfs_sync_log:3572: errno=-5 IO failure [ 88.396630][ T5325] BTRFS info (device loop0 state EA): balance: ended with status: -5 [ 88.400135][ T5346] ================================================================== [ 88.400148][ T5346] BUG: KASAN: slab-use-after-free in replace_file_extents+0x85f/0x1590 [ 88.400288][ T5346] Read of size 8 at addr ffff888012312010 by task syz.0.0/5346 [ 88.400299][ T5346] [ 88.400306][ T5346] CPU: 0 UID: 0 PID: 5346 Comm: syz.0.0 Not tainted syzkaller #0 PREEMPT(full) [ 88.400319][ T5346] Hardware name: QEMU Standard PC (Q35 + ICH9, 2009), BIOS 1.16.3-debian-1.16.3-2 04/01/2014 [ 88.400325][ T5346] Call Trace: [ 88.400331][ T5346] <TASK> [ 88.400336][ T5346] dump_stack_lvl+0xe8/0x150 [ 88.400351][ T5346] print_address_description+0x55/0x1e0 [ 88.400364][ T5346] ? replace_file_extents+0x85f/0x1590 [ 88.400378][ T5346] print_report+0x58/0x70 [ 88.400389][ T5346] kasan_report+0x117/0x150 [ 88.400405][ T5346] ? replace_file_extents+0x85f/0x1590 [ 88.400420][ T5346] replace_file_extents+0x85f/0x1590 [ 88.400440][ T5346] ? __pfx_replace_file_extents+0x10/0x10 [ 88.400452][ T5346] ? update_ref_for_cow+0xa71/0x1270 [ 88.400473][ T5346] btrfs_force_cow_block+0xa4d/0x2450 [ 88.400492][ T5346] ? __pfx_btrfs_force_cow_block+0x10/0x10 [ 88.400508][ T5346] ? __pfx_btrfs_get_32+0x10/0x10 [ 88.400523][ T5346] btrfs_cow_block+0x3c4/0xa90 [ 88.400542][ T5346] push_leaf_left+0x2ac/0x4a0 [ 88.400561][ T5346] split_leaf+0xd16/0x12e0 [ 88.400574][ T5346] ? btrfs_bin_search+0x924/0xc70 [ 88.400592][ T5346] ? __pfx_split_leaf+0x10/0x10 [ 88.400602][ T5346] ? leaf_space_used+0x177/0x1e0 [ 88.400618][ T5346] ? btrfs_leaf_free_space+0x14a/0x2f0 [ 88.400634][ T5346] btrfs_search_slot+0x2641/0x2d20 [ 88.400654][ T5346] ? __pfx_btrfs_search_slot+0x10/0x10 [ 88.400669][ T5346] ? rcu_is_watching+0x15/0xb0 [ 88.400681][ T5346] ? trace_kmem_cache_alloc+0x29/0xe0 [ 88.400694][ T5346] btrfs_insert_empty_items+0x9c/0x190 [ 88.400711][ T5346] btrfs_insert_inode_ref+0x229/0xcb0 [ 88.400724][ T5346] ? __pfx_btrfs_insert_inode_ref+0x10/0x10 [ 88.400736][ T5346] ? __pfx_btrfs_qgroup_convert_reserved_meta+0x10/0x10 [ 88.400751][ T5346] ? btrfs_record_root_in_trans+0x124/0x180 [ 88.400767][ T5346] ? start_transaction+0x8a0/0x1820 [ 88.400778][ T5346] ? btrfs_set_inode_index+0x5e/0x100 [ 88.400787][ T5346] btrfs_rename2+0x17bb/0x40d0 [ 88.400800][ T5346] ? check_noncircular+0xda/0x150 [ 88.400814][ T5346] ? add_lock_to_list+0xc7/0x100 [ 88.400828][ T5346] ? __pfx_btrfs_rename2+0x10/0x10 [ 88.400842][ T5346] ? lockdep_hardirqs_on+0x7a/0x110 [ 88.400901][ T5346] ? lock_acquire+0x221/0x350 [ 88.400915][ T5346] ? down_write_nested+0x174/0x210 [ 88.400931][ T5346] ? __pfx_down_write_nested+0x10/0x10 [ 88.400941][ T5346] ? do_raw_spin_unlock+0x4d/0x210 [ 88.400952][ T5346] ? try_break_deleg+0x5b/0x180 [ 88.400963][ T5346] ? __pfx_btrfs_rename2+0x10/0x10 [ 88.400973][ T5346] vfs_rename+0xa96/0xeb0 [ 88.400992][ T5346] ? __pfx_vfs_rename+0x10/0x10 [ 88.401010][ T5346] ovl_fill_super+0x46b7/0x5e20 [ 88.401030][ T5346] ? __pfx_ovl_fill_super+0x10/0x10 [ 88.401042][ T5346] ? xas_create+0x1902/0x1b90 [ 88.401060][ T5346] ? __pfx___mutex_trylock_common+0x10/0x10 [ 88.401076][ T5346] ? trace_contention_end+0x3d/0x140 [ 88.401094][ T5346] ? shrinker_register+0x124/0x230 [ 88.401111][ T5346] ? __mutex_unlock_slowpath+0x1be/0x6f0 [ 88.401127][ T5346] ? shrinker_register+0x61/0x230 [ 88.401143][ T5346] ? __pfx___mutex_lock+0x10/0x10 [ 88.401158][ T5346] ? __pfx___mutex_unlock_slowpath+0x10/0x10 [ 88.401177][ T5346] ? __raw_spin_lock_init+0x45/0x100 [ 88.401196][ T5346] ? sget_fc+0x962/0xa40 [ 88.401208][ T5346] ? __pfx_set_anon_super_fc+0x10/0x10 [ 88.401222][ T5346] ? __pfx_ovl_fill_super+0x10/0x10 [ 88.401241][ T5346] get_tree_nodev+0xbb/0x150 [ 88.401257][ T5346] vfs_get_tree+0x92/0x2a0 [ 88.401272][ T5346] do_new_mount+0x341/0xd30 [ 88.401283][ T5346] ? apparmor_capable+0x126/0x170 [ 88.401301][ T5346] ? __pfx_do_new_mount+0x10/0x10 [ 88.401311][ T5346] ? ns_capable+0x89/0xe0 [ 88.401322][ T5346] ? path_mount+0x690/0x10e0 [ 88.401333][ T5346] ? user_path_at+0xd4/0x160 [ 88.401346][ T5346] __se_sys_mount+0x31d/0x420 [ 88.401358][ T5346] ? __pfx___se_sys_mount+0x10/0x10 [ 88.401370][ T5346] ? __x64_sys_mount+0x20/0xc0 [ 88.401381][ T5346] ? entry_SYSCALL_64_after_hwframe+0x77/0x7f [ 88.401391][ T5346] do_syscall_64+0x15f/0xf80 [ 88.401403][ T5346] ? trace_irq_disable+0x3b/0x140 [ 88.401413][ T5346] ? clear_bhb_loop+0x40/0x90 [ 88.401421][ T5346] entry_SYSCALL_64_after_hwframe+0x77/0x7f [ 88.401429][ T5346] RIP: 0033:0x7fa1ff79ce59 [ 88.401436][ T5346] Code: ff c3 66 (...) [ 88.401443][ T5346] RSP: 002b:00007fa2005affe8 EFLAGS: 00000246 ORIG_RAX: 00000000000000a5 [ 88.401456][ T5346] RAX: ffffffffffffffda RBX: 00007fa1ffa16180 RCX: 00007fa1ff79ce59 [ 88.401464][ T5346] RDX: 0000200000000100 RSI: 0000200000002240 RDI: 0000000000000000 [ 88.401474][ T5346] RBP: 00007fa1ff832d6f R08: 0000200000000440 R09: 0000000000000000 [ 88.401481][ T5346] R10: 0000000000000000 R11: 0000000000000246 R12: 0000000000000000 [ 88.401488][ T5346] R13: 00007fa1ffa16218 R14: 00007fa1ffa16180 R15: 00007ffc734fba78 [ 88.401500][ T5346] </TASK> [ 88.401506][ T5346] [ 88.401510][ T5346] Allocated by task 5325: [ 88.401516][ T5346] kasan_save_track+0x3e/0x80 [ 88.401529][ T5346] __kasan_kmalloc+0x93/0xb0 [ 88.401542][ T5346] __kmalloc_cache_noprof+0x31c/0x660 [ 88.401554][ T5346] btrfs_relocate_block_group+0x217/0xc40 [ 88.401568][ T5346] btrfs_relocate_chunk+0x115/0x820 [ 88.401577][ T5346] __btrfs_balance+0x1db0/0x2ae0 [ 88.401587][ T5346] btrfs_balance+0xaf3/0x11b0 [ 88.401596][ T5346] btrfs_ioctl_balance+0x3d3/0x610 [ 88.401612][ T5346] __se_sys_ioctl+0xfc/0x170 [ 88.401626][ T5346] do_syscall_64+0x15f/0xf80 [ 88.401640][ T5346] entry_SYSCALL_64_after_hwframe+0x77/0x7f [ 88.401650][ T5346] [ 88.401653][ T5346] Freed by task 5325: [ 88.401659][ T5346] kasan_save_track+0x3e/0x80 [ 88.401671][ T5346] kasan_save_free_info+0x46/0x50 [ 88.401680][ T5346] __kasan_slab_free+0x5c/0x80 [ 88.401692][ T5346] kfree+0x1c5/0x640 [ 88.401703][ T5346] btrfs_relocate_block_group+0x95d/0xc40 [ 88.401715][ T5346] btrfs_relocate_chunk+0x115/0x820 [ 88.401724][ T5346] __btrfs_balance+0x1db0/0x2ae0 [ 88.401733][ T5346] btrfs_balance+0xaf3/0x11b0 [ 88.401742][ T5346] btrfs_ioctl_balance+0x3d3/0x610 [ 88.401757][ T5346] __se_sys_ioctl+0xfc/0x170 [ 88.401770][ T5346] do_syscall_64+0x15f/0xf80 [ 88.401785][ T5346] entry_SYSCALL_64_after_hwframe+0x77/0x7f [ 88.401795][ T5346] [ 88.401798][ T5346] The buggy address belongs to the object at ffff888012312000 [ 88.401798][ T5346] which belongs to the cache kmalloc-2k of size 2048 [ 88.401807][ T5346] The buggy address is located 16 bytes inside of [ 88.401807][ T5346] freed 2048-byte region [ffff888012312000, ffff888012312800) [ 88.401819][ T5346] [ 88.401822][ T5346] The buggy address belongs to the physical page: [ 88.401829][ T5346] page: refcount:0 mapcount:0 mapping:0000000000000000 index:0x0 pfn:0x12310 [ 88.401840][ T5346] head: order:3 mapcount:0 entire_mapcount:0 nr_pages_mapped:0 pincount:0 [ 88.401849][ T5346] flags: 0xfff00000000040(head|node=0|zone=1|lastcpupid=0x7ff) [ 88.401860][ T5346] page_type: f5(slab) [ 88.401871][ T5346] raw: 00fff00000000040 ffff88801ac42000 dead000000000100 dead000000000122 [ 88.401881][ T5346] raw: 0000000000000000 0000000800080008 00000000f5000000 0000000000000000 [ 88.401892][ T5346] head: 00fff00000000040 ffff88801ac42000 dead000000000100 dead000000000122 [ 88.401902][ T5346] head: 0000000000000000 0000000800080008 00000000f5000000 0000000000000000 [ 88.401913][ T5346] head: 00fff00000000003 fffffffffffffe01 00000000ffffffff 00000000ffffffff [ 88.401923][ T5346] head: ffffffffffffffff 0000000000000000 00000000ffffffff 0000000000000008 [ 88.401929][ T5346] page dumped because: kasan: bad access detected [ 88.401935][ T5346] page_owner tracks the page as allocated [ 88.401941][ T5346] page last allocated via order 3, migratetype Unmovable, gfp_mask 0xd20c0(__GFP_IO|__GFP_FS|__GFP_NOWARN|__GFP_NORETRY|__GFP_COMP|__GFP_NOMEMALLOC), pid 9, tgid 9 (kworker/0:0), ts 83905464494, free_ts 83674944822 [ 88.401961][ T5346] post_alloc_hook+0x231/0x280 [ 88.401975][ T5346] get_page_from_freelist+0x24ba/0x2540 [ 88.401990][ T5346] __alloc_frozen_pages_noprof+0x18d/0x380 [ 88.402004][ T5346] allocate_slab+0x77/0x660 [ 88.402019][ T5346] refill_objects+0x339/0x3d0 [ 88.402033][ T5346] __pcs_replace_empty_main+0x321/0x720 [ 88.402043][ T5346] __kmalloc_node_track_caller_noprof+0x572/0x7b0 [ 88.402055][ T5346] __alloc_skb+0x2c1/0x7d0 [ 88.402067][ T5346] mld_newpack+0x14c/0xc90 [ 88.402080][ T5346] add_grhead+0x5a/0x2a0 [ 88.402093][ T5346] add_grec+0x1452/0x1740 [ 88.402105][ T5346] mld_ifc_work+0x6e6/0xe70 [ 88.402116][ T5346] process_scheduled_works+0xb5d/0x1860 [ 88.402127][ T5346] worker_thread+0xa53/0xfc0 [ 88.402138][ T5346] kthread+0x389/0x470 [ 88.402150][ T5346] ret_from_fork+0x514/0xb70 [ 88.402161][ T5346] page last free pid 5282 tgid 5282 stack trace: [ 88.402168][ T5346] __free_frozen_pages+0xbc7/0xd30 [ 88.402180][ T5346] __slab_free+0x274/0x2c0 [ 88.402191][ T5346] qlist_free_all+0x99/0x100 [ 88.402201][ T5346] kasan_quarantine_reduce+0x148/0x160 [ 88.402211][ T5346] __kasan_slab_alloc+0x22/0x80 [ 88.402221][ T5346] __kmalloc_cache_noprof+0x2ba/0x660 [ 88.402231][ T5346] kernfs_fop_open+0x3f0/0xda0 [ 88.402253][ T5346] do_dentry_open+0x785/0x14e0 [ 88.402262][ T5346] vfs_open+0x3b/0x340 [ 88.402270][ T5346] path_openat+0x2e08/0x3860 [ 88.402281][ T5346] do_file_open+0x23e/0x4a0 [ 88.402292][ T5346] do_sys_openat2+0x113/0x200 [ 88.402300][ T5346] __x64_sys_openat+0x138/0x170 [ 88.402309][ T5346] do_syscall_64+0x15f/0xf80 [ 88.402326][ T5346] entry_SYSCALL_64_after_hwframe+0x77/0x7f [ 88.402336][ T5346] [ 88.402339][ T5346] Memory state around the buggy address: [ 88.402345][ T5346] ffff888012311f00: fc fc fc fc fc fc fc fc fc fc fc fc fc fc fc fc [ 88.402352][ T5346] ffff888012311f80: fc fc fc fc fc fc fc fc fc fc fc fc fc fc fc fc [ 88.402359][ T5346] >ffff888012312000: fa fb fb fb fb fb fb fb fb fb fb fb fb fb fb fb [ 88.402365][ T5346] ^ [ 88.402370][ T5346] ffff888012312080: fb fb fb fb fb fb fb fb fb fb fb fb fb fb fb fb [ 88.402380][ T5346] ffff888012312100: fb fb fb fb fb fb fb fb fb fb fb fb fb fb fb fb [ 88.402385][ T5346] ================================================================== Fix this by: 1) Making the reloc control structure ref counted; 2) Make revery place that access fs_info->reloc_ctl outside the relocation code, which at the moment it's only replace_file_extents() and btrfs_init_reloc_root(), get a reference count on the structure. There's also btrfs_update_reloc_root() that is called outside the relocation code, but this case is safe because it's only called in the transaction commit path while under the fs_info->reloc_mutex protection, but nevertheless grab a reference to make the code more consistent and avoid false alerts from AI reviews; 3) Add a spinlock to protect fs_info->reloc_ctl, since we can not take the fs_info->reloc_mutex as that would cause a deadlock since that lock is taken in the transaction commit path. That spinlock is taken before setting fs_info->reloc_ctl to an allocated structure, setting it to NULL and reading fs_info->reloc_ctl; 4) Make sure the structure is freed only when its reference count drops to zero. Reported-by: syzbot+0eea49bba18051dea35e@syzkaller.appspotmail.com Link: https://lore.kernel.org/linux-btrfs/6a1df323.bb0696ed.125a22.000a.GAE@google.com/ Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> |
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|
50c134f2a9 |
btrfs: move WARN_ON on unexpected error in __add_tree_block()
There's no point in having the WARN_ON(1) inside the if statement for the unexpected error. Move it into the if statement's condition, which brings a couple benefits: 1) It marks the branch as unlikely, hinting the compiler to generate better code; 2) The WARN_ON() produces a stack trace after the dumped leaf and error message which can hide that more important information in case we get a truncated dmesg/syslog. Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> |
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|
f51228e1ba |
btrfs: move locking into btrfs_get_reloc_bg_bytenr()
It does not make sense for the single caller to have the responsability to lock the relocation mutex before calling the function and then have the function to assert the lock is held. As this is a function in relocation.c, move the locking details into it. Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> |
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b0d27d4379 |
btrfs: lzo: reject compressed segment that overflows the compressed input
lzo_decompress_bio() validates each on-disk segment length seg_len only
against the workspace cbuf size, not against the compressed input size
(compressed_len, the total folio bytes of the bio). A crafted extent can
carry a segment whose seg_len passes the cbuf check but runs past the end
of the bio, so copy_compressed_segment() walks off the last folio:
get_current_folio() then returns the NULL folio from bio_next_folio(), and
with CONFIG_BTRFS_ASSERT disabled (default) folio_size(NULL) faults.
BUG: KASAN: null-ptr-deref in lzo_decompress_bio (fs/btrfs/lzo.c:383)
Read of size 8 at addr 0000000000000000 by task kworker/u8:1/29
Workqueue: btrfs-endio simple_end_io_work
kasan_report (mm/kasan/report.c:590)
lzo_decompress_bio (fs/btrfs/lzo.c:383)
end_bbio_compressed_read (fs/btrfs/compression.c:1065)
btrfs_bio_end_io (fs/btrfs/bio.c:135)
btrfs_check_read_bio (fs/btrfs/bio.c:180 fs/btrfs/bio.c:285)
simple_end_io_work
process_one_work
worker_thread
Reject any segment whose payload would extend beyond compressed_len before
copying it, treating it as corruption like the other on-disk validation
failures in this function.
Reported-by: Xiang Mei <xmei5@asu.edu>
Fixes:
|
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|
acf9ed3a6c |
btrfs: retry faulting in the pages after a zero sized short direct write
Currently btrfs_direct_write() will not try to fault in the pages, but
directly fall back to buffered writes, if the first page of the buffer
can not be faulted in.
For example, during generic/362 with nodatasum mount option, there is a
write at file offset 0, length PAGE_SIZE, and the page is not faulted in.
Then we go the following callchain and directly fall back to buffered
IO:
btrfs_direct_write()
|- btrfs_dio_write()
|- __iomap_dio_rw()
| |- iomap_iter()
| | |- btrfs_dio_iomap_begin()
| | Now an ordered extent is allocated for the 4K write.
| |
| |- iomi.status = iomap_dio_iter()
| | Where iomap_dio_iter() returned -EFAULT.
| |
| |- ret = iomap_iter()
| | |- btrfs_dio_iomap_end()
| | | | return -ENOTBLK
| | |- return -ENOTBLK
| |- if (ret == -ENOTBLK) { ret = 0; }
| Now the return value is reset to 0.
|
|- ret = iomap_dio_complete()
| Since no byte is submitted, @ret is now zero.
|
|- if (iov_iter_count() > 0 && (ret == -EFAULT || ret > 0))
| @ret is zero, thus not meeting the above retry condition
|
|- Fallback to buffered
Just slightly loosen the condition to allow retry faulting in pages after
a zero sized short write.
Unlike the previous two bug fixes, this one is not really cause any real
bug, but only reducing the chance to do zero-copy direct IO.
Thus it doesn't really require stable-CC nor fixes-tag.
Reviewed-by: Boris Burkov <boris@bur.io>
Signed-off-by: Qu Wenruo <wqu@suse.com>
Signed-off-by: David Sterba <dsterba@suse.com>
|
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|
ff66fe6662 |
btrfs: fix incorrect buffered IO fallback for append direct writes
[BUG]
With the previous bug of short direct writes fixed, test case
generic/362 (*) still fails with the following error with nodatasum
mount option:
generic/362 0s ... - output mismatch (see /home/adam/xfstests/results//generic/362.out.bad)
- output mismatch (see /home/adam/xfstests/results//generic/362.out.bad)
--- tests/generic/362.out 2024-08-24 15:31:37.200000000 +0930
+++ /home/adam/xfstests/results//generic/362.out.bad 2026-05-27 10:13:09.072485767 +0930
@@ -1,2 +1,3 @@
QA output created by 362
+Wrong file size after first write, got 8192 expected 4096
Silence is golden
...
*: If the test case has been executed before with default data checksum,
the failure will not reproduce. Need the following fix to make it
reliably reproducible:
https://lore.kernel.org/linux-btrfs/20260528111659.87113-1-wqu@suse.com/
[CAUSE]
Inside btrfs_dio_iomap_begin() for a direct write, we increase the isize
if it's beyond the current isize.
But if the direct io finished short, we do not revert the isize to the
previous value nor to the short write end.
Then if we need to fall back to buffered writes, and the write has
IOCB_APPEND flag, then the buffered write will be positioned at the
incorrect isize.
The call chain looks like this:
btrfs_direct_write(pos=0, length=4K)
|- __iomap_dio_rw()
| |- iomap_iter()
| | |- btrfs_dio_iomap_begin()
| | |- btrfs_get_blocks_direct_write()
| | |- i_size_write()
| | Which updates the isize to the write end (4K).
| |
| |- iomap_dio_iter()
| | Failed with -EFAULT on the first page.
| |
| |- iomap_iter()
| | |- btrfs_dio_iomap_end()
| | Detects a short write, return -ENOTBLK
| |- if (ret == -ENOTBLK) { ret = 0;}
| Which resets the return value.
|
|- ret = iomap_dio_complet()
| Which returns 0.
|
|- btrfs_buffered_write(iocb, from);
|- generic_write_checks()
|- iocb->ki_pos = i_size_read()
Which is still the new size (4K), other than the original
isize 0.
[FIX]
Introduce the following btrfs_dio_data members:
- old_isize
- updated_isize
If the direct write has enlarged the isize.
Then if we got a short write, and btrfs_dio_data::updated_isize is set,
revert to the correct isize based on old_isize and current file
position.
And here we call i_size_write() without holding an extent lock, which is
a very special case that we're safe to do:
- Only a single writer can be enlarging isize
Enlarging isize will take the exclusive inode lock.
- Buffered readers need to wait for the OE we're holding
Buffered readers will lock extent and wait for OE of the folio range.
Sometimes we can skip the OE wait, but since all page cache is
invalidated, the OE wait can not be skipped.
But I do not think this is the most elegant solution, nor covers all
cases. E.g. if the bio is submitted but IO failed, we are unable to do
the revert.
I believe the more elegant one would be extend the EXTENT_DIO_LOCKED
lifespan for direct writes, so that we can update the isize when a
write beyond EOF finished successfully.
However that change is too huge for a small bug fix.
So only implement the minimal partial fix for now.
[REASON FOR NO FIXES TAG]
The bug is again very old, before commit
|
||
|
|
66ff4d366e |
btrfs: fix false IO failure after falling back to buffered write
[BUG]
The test case generic/362 will fail with "nodatasum" mount option (*):
MOUNT_OPTIONS -- -o nodatasum /dev/mapper/test-scratch1 /mnt/scratch
generic/362 0s ... - output mismatch (see /home/adam/xfstests/results//generic/362.out.bad)
--- tests/generic/362.out 2024-08-24 15:31:37.200000000 +0930
+++ /home/adam/xfstests/results//generic/362.out.bad 2026-05-27 10:21:17.574771567 +0930
@@ -1,2 +1,3 @@
QA output created by 362
+First write failed: Input/output error
Silence is golden
...
*: If the test case has been executed before with default data checksum,
the failure will not reproduce. Need the following fix to make it
reliably reproducible:
https://lore.kernel.org/linux-btrfs/20260528111659.87113-1-wqu@suse.com/
[CAUSE]
Inside __iomap_dio_rw(), the -EFAULT/-ENOTBLK error is not directly returned.
Thus we never got an error pointer from __iomap_dio_rw().
The call chain looks like this:
btrfs_direct_write()
|- btrfs_dio_write()
|- __iomap_dio_rw()
| |- iomap_iter()
| | |- btrfs_dio_iomap_begin()
| | Now an ordered extent is allocated for the 4K write.
| |
| |- iomi.status = iomap_dio_iter()
| | Where iomap_dio_iter() returned -EFAULT.
| |
| |- ret = iomap_iter()
| | |- btrfs_dio_iomap_end()
| | | |- btrfs_finish_ordered_extent(uptodate = false)
| | | | |- can_finish_ordered_extent()
| | | | |- btrfs_mark_ordered_extent_error()
| | | | |- mapping_set_error()
| | | | Now the address space is marked error.
| | | | return -ENOTBLK
| | |- return -ENOTBLK
| |- if (ret == -ENOTBLK) { ret = 0; }
| Now the return value is reset to 0.
| Thus no error pointer will be returned.
|
|- ret = iomap_dio_complete()
| Since no byte is submitted, @ret is 0.
|
|- Fallback to buffered IO
| And the buffered write finished without error
|
|- filemap_fdatawait_range()
|- filemap_check_errors()
The previous error is recorded, thus an error is returned
However the buffered write is properly submitted and finished, the error
is from the btrfs_finish_ordered_extent() call with @uptodate = false.
[FIX]
When a short dio write happened, any range that is submitted will have
btrfs_extract_ordered_extent() to be called, thus the submitted range
will always have an OE just covering the submitted range.
The remaining OE range is never submitted, thus they should be treated
as truncated, not an error. So that we can properly reclaim and not
insert an unnecessary file extent item, without marking the mapping as
error.
Extract a helper, btrfs_mark_ordered_extent_truncated(), and utilize
that helper to mark the direct IO ordered extent as truncated, so it
won't cause failure for the later buffered fallback.
[REASON FOR NO FIXES TAG]
The bug itself is pretty old, at commit
|
||
|
|
c4e7778580 |
btrfs: use verbose assertions in backref.c
While debugging a relocation issue I hit an assertion in backref.c but it was not super useful, since it could not tell what was the unexpected value that triggered the assertion. The stack trace was this: [583246.338097] assertion failed: !cache->nr_nodes, in fs/btrfs/backref.c:3158 [583246.339588] ------------[ cut here ]------------ [583246.340573] kernel BUG at fs/btrfs/backref.c:3158! [583246.342075] Oops: invalid opcode: 0000 [#1] SMP PTI [583246.343294] CPU: 5 UID: 0 PID: 677957 Comm: btrfs Not tainted 7.1.0-rc4-btrfs-next-234+ #1 PREEMPT(full) [583246.345715] Hardware name: QEMU Standard PC (i440FX + PIIX, 1996), BIOS rel-1.16.2-0-gea1b7a073390-prebuilt.qemu.org 04/01/2014 [583246.348694] RIP: 0010:btrfs_backref_release_cache.cold+0x61/0x84 [btrfs] [583246.350759] Code: 90 d5 7c (...) [583246.354923] RSP: 0018:ffffd4fc88c93ad8 EFLAGS: 00010246 [583246.355982] RAX: 000000000000003e RBX: ffff8dec90d97020 RCX: 0000000000000000 [583246.357459] RDX: 0000000000000000 RSI: 0000000000000001 RDI: 00000000ffffffff [583246.359517] RBP: ffff8dec8eeb78c0 R08: 0000000000000000 R09: 3fffffffffefffff [583246.361180] R10: ffffd4fc88c93970 R11: 0000000000000003 R12: ffff8decd21f3470 [583246.363184] R13: 00000000fffffffe R14: ffff8decd21f3000 R15: ffff8decd21f3000 [583246.364666] FS: 00007f9a51751400(0000) GS:ffff8df3f4255000(0000) knlGS:0000000000000000 [583246.366287] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [583246.367443] CR2: 00007f9a518ed8f5 CR3: 00000004467c8002 CR4: 0000000000370ef0 [583246.368969] Call Trace: [583246.369541] <TASK> [583246.370040] relocate_block_group+0xf2/0x520 [btrfs] [583246.371243] btrfs_relocate_block_group+0x9a9/0x22e0 [btrfs] [583246.372443] ? preempt_count_add+0x47/0xa0 [583247.532978] ? btrfs_tree_read_lock_nested+0x19/0x90 [btrfs] [583247.534520] ? mutex_lock+0x1a/0x40 [583247.602233] ? btrfs_scrub_pause+0x2e/0x120 [btrfs] [583247.603543] btrfs_relocate_chunk+0x3b/0x1a0 [btrfs] [583247.604893] btrfs_balance+0x9d5/0x1920 [btrfs] [583247.606189] ? preempt_count_add+0x69/0xa0 [583247.607030] btrfs_ioctl+0x260c/0x2a20 [btrfs] [583247.608015] ? __memcg_slab_free_hook+0x156/0x1a0 [583247.636971] __x64_sys_ioctl+0x92/0xe0 [583247.679247] do_syscall_64+0x60/0xf20 [583247.753297] ? clear_bhb_loop+0x60/0xb0 [583247.756321] entry_SYSCALL_64_after_hwframe+0x76/0x7e [583247.787018] RIP: 0033:0x7f9a5186a8db [583247.787787] Code: 00 48 89 (...) [583247.791410] RSP: 002b:00007fff2ffa6ac0 EFLAGS: 00000246 ORIG_RAX: 0000000000000010 [583247.792897] RAX: ffffffffffffffda RBX: 0000000000000003 RCX: 00007f9a5186a8db [583247.794319] RDX: 00007fff2ffa6bb0 RSI: 00000000c4009420 RDI: 0000000000000003 [583247.795714] RBP: 0000000000000000 R08: 0000000000000000 R09: 0000000000000000 [583247.797149] R10: 0000000000000000 R11: 0000000000000246 R12: 00007fff2ffa903f [583247.798685] R13: 00007fff2ffa6bb0 R14: 0000000000000002 R15: 0000000000000002 [583247.800136] </TASK> So update all simple assertions in backref.c to print out the values when they aren't testing simple boolean conditions. Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> |
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|
7af30ba6eb |
btrfs: print a message when a missing device re-appears
There is a bug report that fstrim crashed, and that crash is eventually pinned down to a missing device which re-appeared and screwed up callers that only checks BTRFS_DEV_STATE_MISSING, but not BTRFS_DEV_STATE_WRITEABLE nor device->bdev. A missing device re-appearing can be very tricky, as for now it will result in a device without WRITEABLE or MISSING flag, and still no bdev pointer. As the first step to enhance handling of such re-appearing missing devices, add a dmesg output when a missing device re-appeared. Reviewed-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: Qu Wenruo <wqu@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> |
||
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1b1937eb08 |
btrfs: do not trim a device which is not writeable
[BUG]
There is a bug report that btrfs/242 can randomly fail with the
following NULL pointer dereference:
run fstests btrfs/242 at 2026-06-01 10:25:08
BTRFS: device fsid d4d7f234-487c-4787-88e4-47a8b68c9874 devid 1 transid 9 /dev/sdc (8:32) scanned by mount (122609)
BTRFS info (device sdc): first mount of filesystem d4d7f234-487c-4787-88e4-47a8b68c9874
BTRFS info (device sdc): using crc32c checksum algorithm
BTRFS warning (device sdc): devid 2 uuid fbe72d72-3272-482d-80fb-ab88ed398192 is missing
BTRFS warning (device sdc): devid 2 uuid fbe72d72-3272-482d-80fb-ab88ed398192 is missing
BTRFS info (device sdc): allowing degraded mounts
BTRFS info (device sdc): turning on async discard
BTRFS info (device sdc): enabling free space tree
Unable to handle kernel NULL pointer dereference at virtual address 0000000000000018
user pgtable: 4k pages, 48-bit VAs, pgdp=000000013fd6b000
CPU: 4 UID: 0 PID: 122625 Comm: fstrim Not tainted 7.0.10-2-default #1 PREEMPT(full) openSUSE Tumbleweed e9a5f6b24978fba3bf015a992f865837fdfff3dd
Hardware name: QEMU KVM Virtual Machine, BIOS edk2-20250812-19.fc42 08/12/2025
pstate: 01400005 (nzcv daif +PAN -UAO -TCO +DIT -SSBS BTYPE=--)
pc : btrfs_trim_fs+0x34c/0xa00 [btrfs]
lr : btrfs_trim_fs+0x1f0/0xa00 [btrfs]
Call trace:
btrfs_trim_fs+0x34c/0xa00 [btrfs f02c1d570ceea621c69d302ba75dd61868083840] (P)
btrfs_ioctl_fitrim+0xe8/0x178 [btrfs f02c1d570ceea621c69d302ba75dd61868083840]
btrfs_ioctl+0xdd4/0x2bd8 [btrfs f02c1d570ceea621c69d302ba75dd61868083840]
__arm64_sys_ioctl+0xac/0x108
invoke_syscall.constprop.0+0x5c/0xd0
el0_svc_common.constprop.0+0x40/0xf0
do_el0_svc+0x24/0x40
el0_svc+0x40/0x1d0
el0t_64_sync_handler+0xa0/0xe8
el0t_64_sync+0x1b0/0x1b8
Code: 17ffff83 f94017e0 f9002be0 f9402ea0 (f9400c00)
---[ end trace 0000000000000000 ]---
Also the reporter is very kind to test the following ASSERT() added to
btrfs_trim_free_extents_throttle():
ASSERT(device->bdev,
"devid=%llu path=%s dev_state=0x%lx\n",
device->devid, btrfs_dev_name(device), device->dev_state);
And it shows the following output:
assertion failed: device->bdev, in extent-tree.c:6630 (devid=2 path=/dev/sdd dev_state=0x82)
Which means the device->bdev is NULL, and the dev_state is
BTRFS_DEV_STATE_IN_FS_METADATA | BTRFS_DEV_STATE_ITEM_FOUND, without
BTRFS_DEV_STATE_WRITEABLE flag set.
[CAUSE]
The pc points to the following call chain:
btrfs_trim_fs()
|- btrfs_trim_free_extents()
|- btrfs_trim_free_extents_throttle()
|- bdev_max_discard_sectors(device->bdev)
So the NULL pointer dereference is caused by device->bdev being NULL.
This looks impossible by a quick glance, as just before calling
btrfs_trim_free_extents_throttle(), we have skipped any device that has
BTRFS_DEV_STATE_MISSING flag set.
However in this particular case, there is a window where the missing
device is later re-scanned, causing btrfs to remove the
BTRFS_DEV_STATE_MISSING flag:
btrfs_control_ioctl()
|- btrfs_scan_one_device()
|- device_list_add()
|- rcu_assign_pointer(device->name, name);
| This updates the missing device's path to the new good path.
|
|- clear_bit(BTRFS_DEV_STATE_MISSING, &device->dev_state)
This removes the BTRFS_DEV_STATE_MISSING flag.
This allows the missing device to re-appear and clear the
BTRFS_DEV_STATE_MISSING flag. However the device still does not have
the BTRFS_DEV_STATE_WRITEABLE flag set, nor is its bdev pointer updated.
The bdev pointer remains NULL, triggering the crash later.
[FIX]
This is a big de-synchronization between BTRFS_DEV_STATE_MISSING and
device->bdev pointer, and shows a gap in btrfs's re-appearing-device
handling.
The proper handling of re-appearing device will need quite some extra
work, which is out of the context of this small fix.
Thankfully the regular bbio submission path has already handled it well
by checking if the device->bdev is NULL before submitting.
So here we just fix the crash by checking if the device is writeable and
has a bdev pointer before calling bdev_max_discard_sectors().
Reported-by: Su Yue <glass.su@suse.com>
Link: https://lore.kernel.org/linux-btrfs/wlwir19t.fsf@damenly.org/
Fixes:
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dad845f192 |
btrfs: return real error after lookup failure in btrfs_ioctl_default_subvol()
If we fail to lookup the dir item, we are always returning -ENOENT but that may not be the reason for the failure, as btrfs_lookup_dir_item() can return many different errors, such as -EIO or -ENOMEM for example. Fix this by returning the real error, and also fixup the silly error message, including the id of the directory and the error. Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> |
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00608e3416 |
btrfs: use mapping shared locking for reading super block
There's no need to exclusively lock the mapping, shared locking is enough to protect from a concurrent set block size operation (BLKBSZSET ioctl). Reviewed-by: Qu Wenruo <wqu@suse.com> Signed-off-by: Filipe Manana <fdmanana@suse.com> Signed-off-by: David Sterba <dsterba@suse.com> |
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1ba72d847c |
btrfs: use lockless read in nr_cached_objects shrinker callback
Under heavy memcg-driven slab reclaim with many memcgs and CPUs, shrink_slab_memcg() invokes the per-superblock count callback once per (memcg, NUMA node) tuple. For btrfs that callback reaches percpu_counter_sum_positive() on fs_info->evictable_extent_maps, which takes the percpu_counter's raw spinlock with IRQs disabled and walks every online CPU. With hundreds of memcgs driving reclaim on a host with dozens of CPUs, this counter lock becomes a global serialization point: profiles show CPU pinned in the spin_lock_irqsave acquire under __percpu_counter_sum, with cross-CPU IPIs hitting csd_lock_wait_toolong while waiting for spinning vCPUs. The shrinker count is advisory -- super_cache_count() already notes "counts can change between super_cache_count and super_cache_scan, so we really don't need locks here." Use percpu_counter_read_positive(), which is lockless. Worst-case skew is bounded by batch * num_online_cpus (a few thousand), negligible compared to the millions of extent maps a busy filesystem accumulates and well within the noise that the shrinker already tolerates. Tested-by: Boris Burkov <boris@bur.io> Reviewed-by: Qu Wenruo <wqu@suse.com> Reviewed-by: Shakeel Butt <shakeel.butt@linux.dev> Signed-off-by: Ben Maurer <bmaurer@meta.com> Signed-off-by: David Sterba <dsterba@suse.com> |
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79bdd88463 |
btrfs: switch local indicator variables to bools
For all local indicator variables do simple switch to bool, done on all files. Signed-off-by: David Sterba <dsterba@suse.com> |
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18a8071177 |
btrfs: send: pass bool for pending_move and refs_processed parameters
We're passing simple indicators as int, switch them to bool types. Signed-off-by: David Sterba <dsterba@suse.com> |