net: include xdp generic metadata definition - #5
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Definition is only a proposal. There should be free place for 8B of tx timestamp. Signed-off-by: Michal Swiatkowski <michal.swiatkowski@intel.com>
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…itch
FPU_STATUS register contains FP exception flags bits which are updated
by core as side-effect of FP instructions but can also be manually
wiggled such as by glibc C99 functions fe{raise,clear,test}except() etc.
To effect the update, the programming model requires OR'ing FWE
bit (31). This bit is write-only and RAZ, meaning it is effectively
auto-cleared after write and thus needs to be set everytime: which
is how glibc implements this.
However there's another usecase of FPU_STATUS update, at the time of
Linux task switch when incoming task value needs to be programmed into
the register. This was added as part of f45ba2b ("ARCv2:
fpu: preserve userspace fpu state") which missed OR'ing FWE bit,
meaning the new value is effectively not being written at all.
This patch remedies that.
Interestingly, this snafu was not caught in interm glibc testing as the
race window which relies on a specific exception bit to be set/clear is
really small specially when it nvolves context switch.
Fortunately this was caught by glibc's math/test-fenv-tls test which
repeatedly set/clear exception flags in a big loop, concurrently in main
program and also in a thread.
Fixes: foss-for-synopsys-dwc-arc-processors#54
Fixes: f45ba2b ("ARCv2: fpu: preserve userspace fpu state")
Cc: stable@vger.kernel.org #5.6+
Signed-off-by: Vineet Gupta <vgupta@synopsys.com>
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Ammar reports that he's seeing a lockdep splat on running test/rsrc_tags from the regression suite: ====================================================== WARNING: possible circular locking dependency detected 5.14.0-rc3-bluetea-test-00249-gc7d102232649 #5 Tainted: G OE ------------------------------------------------------ kworker/2:4/2684 is trying to acquire lock: ffff88814bb1c0a8 (&ctx->uring_lock){+.+.}-{3:3}, at: io_rsrc_put_work+0x13d/0x1a0 but task is already holding lock: ffffc90001c6be70 ((work_completion)(&(&ctx->rsrc_put_work)->work)){+.+.}-{0:0}, at: process_one_work+0x1bc/0x530 which lock already depends on the new lock. the existing dependency chain (in reverse order) is: -> #1 ((work_completion)(&(&ctx->rsrc_put_work)->work)){+.+.}-{0:0}: __flush_work+0x31b/0x490 io_rsrc_ref_quiesce.part.0.constprop.0+0x35/0xb0 __do_sys_io_uring_register+0x45b/0x1060 do_syscall_64+0x35/0xb0 entry_SYSCALL_64_after_hwframe+0x44/0xae -> #0 (&ctx->uring_lock){+.+.}-{3:3}: __lock_acquire+0x119a/0x1e10 lock_acquire+0xc8/0x2f0 __mutex_lock+0x86/0x740 io_rsrc_put_work+0x13d/0x1a0 process_one_work+0x236/0x530 worker_thread+0x52/0x3b0 kthread+0x135/0x160 ret_from_fork+0x1f/0x30 other info that might help us debug this: Possible unsafe locking scenario: CPU0 CPU1 ---- ---- lock((work_completion)(&(&ctx->rsrc_put_work)->work)); lock(&ctx->uring_lock); lock((work_completion)(&(&ctx->rsrc_put_work)->work)); lock(&ctx->uring_lock); *** DEADLOCK *** 2 locks held by kworker/2:4/2684: #0: ffff88810004d938 ((wq_completion)events){+.+.}-{0:0}, at: process_one_work+0x1bc/0x530 #1: ffffc90001c6be70 ((work_completion)(&(&ctx->rsrc_put_work)->work)){+.+.}-{0:0}, at: process_one_work+0x1bc/0x530 stack backtrace: CPU: 2 PID: 2684 Comm: kworker/2:4 Tainted: G OE 5.14.0-rc3-bluetea-test-00249-gc7d102232649 #5 Hardware name: Acer Aspire ES1-421/OLVIA_BE, BIOS V1.05 07/02/2015 Workqueue: events io_rsrc_put_work Call Trace: dump_stack_lvl+0x6a/0x9a check_noncircular+0xfe/0x110 __lock_acquire+0x119a/0x1e10 lock_acquire+0xc8/0x2f0 ? io_rsrc_put_work+0x13d/0x1a0 __mutex_lock+0x86/0x740 ? io_rsrc_put_work+0x13d/0x1a0 ? io_rsrc_put_work+0x13d/0x1a0 ? io_rsrc_put_work+0x13d/0x1a0 ? process_one_work+0x1ce/0x530 io_rsrc_put_work+0x13d/0x1a0 process_one_work+0x236/0x530 worker_thread+0x52/0x3b0 ? process_one_work+0x530/0x530 kthread+0x135/0x160 ? set_kthread_struct+0x40/0x40 ret_from_fork+0x1f/0x30 which is due to holding the ctx->uring_lock when flushing existing pending work, while the pending work flushing may need to grab the uring lock if we're using IOPOLL. Fix this by dropping the uring_lock a bit earlier as part of the flush. Cc: stable@vger.kernel.org Link: axboe/liburing#404 Tested-by: Ammar Faizi <ammarfaizi2@gmail.com> Signed-off-by: Jens Axboe <axboe@kernel.dk>
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Following test case reproduces lockdep warning. Test case: $ mkfs.btrfs -f <dev1> $ btrfstune -S 1 <dev1> $ mount <dev1> <mnt> $ btrfs device add <dev2> <mnt> -f $ umount <mnt> $ mount <dev2> <mnt> $ umount <mnt> The warning claims a possible ABBA deadlock between the threads initiated by [#1] btrfs device add and [#0] the mount. [ 540.743122] WARNING: possible circular locking dependency detected [ 540.743129] 5.11.0-rc7+ #5 Not tainted [ 540.743135] ------------------------------------------------------ [ 540.743142] mount/2515 is trying to acquire lock: [ 540.743149] ffffa0c5544c2ce0 (&fs_devs->device_list_mutex){+.+.}-{4:4}, at: clone_fs_devices+0x6d/0x210 [btrfs] [ 540.743458] but task is already holding lock: [ 540.743461] ffffa0c54a7932b8 (btrfs-chunk-00){++++}-{4:4}, at: __btrfs_tree_read_lock+0x32/0x200 [btrfs] [ 540.743541] which lock already depends on the new lock. [ 540.743543] the existing dependency chain (in reverse order) is: [ 540.743546] -> #1 (btrfs-chunk-00){++++}-{4:4}: [ 540.743566] down_read_nested+0x48/0x2b0 [ 540.743585] __btrfs_tree_read_lock+0x32/0x200 [btrfs] [ 540.743650] btrfs_read_lock_root_node+0x70/0x200 [btrfs] [ 540.743733] btrfs_search_slot+0x6c6/0xe00 [btrfs] [ 540.743785] btrfs_update_device+0x83/0x260 [btrfs] [ 540.743849] btrfs_finish_chunk_alloc+0x13f/0x660 [btrfs] <--- device_list_mutex [ 540.743911] btrfs_create_pending_block_groups+0x18d/0x3f0 [btrfs] [ 540.743982] btrfs_commit_transaction+0x86/0x1260 [btrfs] [ 540.744037] btrfs_init_new_device+0x1600/0x1dd0 [btrfs] [ 540.744101] btrfs_ioctl+0x1c77/0x24c0 [btrfs] [ 540.744166] __x64_sys_ioctl+0xe4/0x140 [ 540.744170] do_syscall_64+0x4b/0x80 [ 540.744174] entry_SYSCALL_64_after_hwframe+0x44/0xa9 [ 540.744180] -> #0 (&fs_devs->device_list_mutex){+.+.}-{4:4}: [ 540.744184] __lock_acquire+0x155f/0x2360 [ 540.744188] lock_acquire+0x10b/0x5c0 [ 540.744190] __mutex_lock+0xb1/0xf80 [ 540.744193] mutex_lock_nested+0x27/0x30 [ 540.744196] clone_fs_devices+0x6d/0x210 [btrfs] [ 540.744270] btrfs_read_chunk_tree+0x3c7/0xbb0 [btrfs] [ 540.744336] open_ctree+0xf6e/0x2074 [btrfs] [ 540.744406] btrfs_mount_root.cold.72+0x16/0x127 [btrfs] [ 540.744472] legacy_get_tree+0x38/0x90 [ 540.744475] vfs_get_tree+0x30/0x140 [ 540.744478] fc_mount+0x16/0x60 [ 540.744482] vfs_kern_mount+0x91/0x100 [ 540.744484] btrfs_mount+0x1e6/0x670 [btrfs] [ 540.744536] legacy_get_tree+0x38/0x90 [ 540.744537] vfs_get_tree+0x30/0x140 [ 540.744539] path_mount+0x8d8/0x1070 [ 540.744541] do_mount+0x8d/0xc0 [ 540.744543] __x64_sys_mount+0x125/0x160 [ 540.744545] do_syscall_64+0x4b/0x80 [ 540.744547] entry_SYSCALL_64_after_hwframe+0x44/0xa9 [ 540.744551] other info that might help us debug this: [ 540.744552] Possible unsafe locking scenario: [ 540.744553] CPU0 CPU1 [ 540.744554] ---- ---- [ 540.744555] lock(btrfs-chunk-00); [ 540.744557] lock(&fs_devs->device_list_mutex); [ 540.744560] lock(btrfs-chunk-00); [ 540.744562] lock(&fs_devs->device_list_mutex); [ 540.744564] *** DEADLOCK *** [ 540.744565] 3 locks held by mount/2515: [ 540.744567] #0: ffffa0c56bf7a0e0 (&type->s_umount_key#42/1){+.+.}-{4:4}, at: alloc_super.isra.16+0xdf/0x450 [ 540.744574] #1: ffffffffc05a9628 (uuid_mutex){+.+.}-{4:4}, at: btrfs_read_chunk_tree+0x63/0xbb0 [btrfs] [ 540.744640] #2: ffffa0c54a7932b8 (btrfs-chunk-00){++++}-{4:4}, at: __btrfs_tree_read_lock+0x32/0x200 [btrfs] [ 540.744708] stack backtrace: [ 540.744712] CPU: 2 PID: 2515 Comm: mount Not tainted 5.11.0-rc7+ #5 But the device_list_mutex in clone_fs_devices() is redundant, as explained below. Two threads [1] and [2] (below) could lead to clone_fs_device(). [1] open_ctree <== mount sprout fs btrfs_read_chunk_tree() mutex_lock(&uuid_mutex) <== global lock read_one_dev() open_seed_devices() clone_fs_devices() <== seed fs_devices mutex_lock(&orig->device_list_mutex) <== seed fs_devices [2] btrfs_init_new_device() <== sprouting mutex_lock(&uuid_mutex); <== global lock btrfs_prepare_sprout() lockdep_assert_held(&uuid_mutex) clone_fs_devices(seed_fs_device) <== seed fs_devices Both of these threads hold uuid_mutex which is sufficient to protect getting the seed device(s) freed while we are trying to clone it for sprouting [2] or mounting a sprout [1] (as above). A mounted seed device can not free/write/replace because it is read-only. An unmounted seed device can be freed by btrfs_free_stale_devices(), but it needs uuid_mutex. So this patch removes the unnecessary device_list_mutex in clone_fs_devices(). And adds a lockdep_assert_held(&uuid_mutex) in clone_fs_devices(). Reported-by: Su Yue <l@damenly.su> Tested-by: Su Yue <l@damenly.su> Signed-off-by: Anand Jain <anand.jain@oracle.com> Signed-off-by: David Sterba <dsterba@suse.com>
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If CONFIG_BLK_DEV_LOOP && CONFIG_MTD (at least; there might be other
combinations), lockdep complains circular locking dependency at
__loop_clr_fd(), for major_names_lock serves as a locking dependency
aggregating hub across multiple block modules.
======================================================
WARNING: possible circular locking dependency detected
5.14.0+ #757 Tainted: G E
------------------------------------------------------
systemd-udevd/7568 is trying to acquire lock:
ffff88800f334d48 ((wq_completion)loop0){+.+.}-{0:0}, at: flush_workqueue+0x70/0x560
but task is already holding lock:
ffff888014a7d4a0 (&lo->lo_mutex){+.+.}-{3:3}, at: __loop_clr_fd+0x4d/0x400 [loop]
which lock already depends on the new lock.
the existing dependency chain (in reverse order) is:
-> #6 (&lo->lo_mutex){+.+.}-{3:3}:
lock_acquire+0xbe/0x1f0
__mutex_lock_common+0xb6/0xe10
mutex_lock_killable_nested+0x17/0x20
lo_open+0x23/0x50 [loop]
blkdev_get_by_dev+0x199/0x540
blkdev_open+0x58/0x90
do_dentry_open+0x144/0x3a0
path_openat+0xa57/0xda0
do_filp_open+0x9f/0x140
do_sys_openat2+0x71/0x150
__x64_sys_openat+0x78/0xa0
do_syscall_64+0x3d/0xb0
entry_SYSCALL_64_after_hwframe+0x44/0xae
-> #5 (&disk->open_mutex){+.+.}-{3:3}:
lock_acquire+0xbe/0x1f0
__mutex_lock_common+0xb6/0xe10
mutex_lock_nested+0x17/0x20
bd_register_pending_holders+0x20/0x100
device_add_disk+0x1ae/0x390
loop_add+0x29c/0x2d0 [loop]
blk_request_module+0x5a/0xb0
blkdev_get_no_open+0x27/0xa0
blkdev_get_by_dev+0x5f/0x540
blkdev_open+0x58/0x90
do_dentry_open+0x144/0x3a0
path_openat+0xa57/0xda0
do_filp_open+0x9f/0x140
do_sys_openat2+0x71/0x150
__x64_sys_openat+0x78/0xa0
do_syscall_64+0x3d/0xb0
entry_SYSCALL_64_after_hwframe+0x44/0xae
-> #4 (major_names_lock){+.+.}-{3:3}:
lock_acquire+0xbe/0x1f0
__mutex_lock_common+0xb6/0xe10
mutex_lock_nested+0x17/0x20
blkdev_show+0x19/0x80
devinfo_show+0x52/0x60
seq_read_iter+0x2d5/0x3e0
proc_reg_read_iter+0x41/0x80
vfs_read+0x2ac/0x330
ksys_read+0x6b/0xd0
do_syscall_64+0x3d/0xb0
entry_SYSCALL_64_after_hwframe+0x44/0xae
-> #3 (&p->lock){+.+.}-{3:3}:
lock_acquire+0xbe/0x1f0
__mutex_lock_common+0xb6/0xe10
mutex_lock_nested+0x17/0x20
seq_read_iter+0x37/0x3e0
generic_file_splice_read+0xf3/0x170
splice_direct_to_actor+0x14e/0x350
do_splice_direct+0x84/0xd0
do_sendfile+0x263/0x430
__se_sys_sendfile64+0x96/0xc0
do_syscall_64+0x3d/0xb0
entry_SYSCALL_64_after_hwframe+0x44/0xae
-> #2 (sb_writers#3){.+.+}-{0:0}:
lock_acquire+0xbe/0x1f0
lo_write_bvec+0x96/0x280 [loop]
loop_process_work+0xa68/0xc10 [loop]
process_one_work+0x293/0x480
worker_thread+0x23d/0x4b0
kthread+0x163/0x180
ret_from_fork+0x1f/0x30
-> #1 ((work_completion)(&lo->rootcg_work)){+.+.}-{0:0}:
lock_acquire+0xbe/0x1f0
process_one_work+0x280/0x480
worker_thread+0x23d/0x4b0
kthread+0x163/0x180
ret_from_fork+0x1f/0x30
-> #0 ((wq_completion)loop0){+.+.}-{0:0}:
validate_chain+0x1f0d/0x33e0
__lock_acquire+0x92d/0x1030
lock_acquire+0xbe/0x1f0
flush_workqueue+0x8c/0x560
drain_workqueue+0x80/0x140
destroy_workqueue+0x47/0x4f0
__loop_clr_fd+0xb4/0x400 [loop]
blkdev_put+0x14a/0x1d0
blkdev_close+0x1c/0x20
__fput+0xfd/0x220
task_work_run+0x69/0xc0
exit_to_user_mode_prepare+0x1ce/0x1f0
syscall_exit_to_user_mode+0x26/0x60
do_syscall_64+0x4c/0xb0
entry_SYSCALL_64_after_hwframe+0x44/0xae
other info that might help us debug this:
Chain exists of:
(wq_completion)loop0 --> &disk->open_mutex --> &lo->lo_mutex
Possible unsafe locking scenario:
CPU0 CPU1
---- ----
lock(&lo->lo_mutex);
lock(&disk->open_mutex);
lock(&lo->lo_mutex);
lock((wq_completion)loop0);
*** DEADLOCK ***
2 locks held by systemd-udevd/7568:
#0: ffff888012554128 (&disk->open_mutex){+.+.}-{3:3}, at: blkdev_put+0x4c/0x1d0
#1: ffff888014a7d4a0 (&lo->lo_mutex){+.+.}-{3:3}, at: __loop_clr_fd+0x4d/0x400 [loop]
stack backtrace:
CPU: 0 PID: 7568 Comm: systemd-udevd Tainted: G E 5.14.0+ #757
Hardware name: VMware, Inc. VMware Virtual Platform/440BX Desktop Reference Platform, BIOS 6.00 02/27/2020
Call Trace:
dump_stack_lvl+0x79/0xbf
print_circular_bug+0x5d6/0x5e0
? stack_trace_save+0x42/0x60
? save_trace+0x3d/0x2d0
check_noncircular+0x10b/0x120
validate_chain+0x1f0d/0x33e0
? __lock_acquire+0x953/0x1030
? __lock_acquire+0x953/0x1030
__lock_acquire+0x92d/0x1030
? flush_workqueue+0x70/0x560
lock_acquire+0xbe/0x1f0
? flush_workqueue+0x70/0x560
flush_workqueue+0x8c/0x560
? flush_workqueue+0x70/0x560
? sched_clock_cpu+0xe/0x1a0
? drain_workqueue+0x41/0x140
drain_workqueue+0x80/0x140
destroy_workqueue+0x47/0x4f0
? blk_mq_freeze_queue_wait+0xac/0xd0
__loop_clr_fd+0xb4/0x400 [loop]
? __mutex_unlock_slowpath+0x35/0x230
blkdev_put+0x14a/0x1d0
blkdev_close+0x1c/0x20
__fput+0xfd/0x220
task_work_run+0x69/0xc0
exit_to_user_mode_prepare+0x1ce/0x1f0
syscall_exit_to_user_mode+0x26/0x60
do_syscall_64+0x4c/0xb0
entry_SYSCALL_64_after_hwframe+0x44/0xae
RIP: 0033:0x7f0fd4c661f7
Code: 00 00 f7 d8 64 89 02 48 c7 c0 ff ff ff ff eb b7 0f 1f 00 f3 0f 1e fa 64 8b 04 25 18 00 00 00 85 c0 75 10 b8 03 00 00 00 0f 05 <48> 3d 00 f0 ff ff 77 41 c3 48 83 ec 18 89 7c 24 0c e8 13 fc ff ff
RSP: 002b:00007ffd1c9e9fd8 EFLAGS: 00000246 ORIG_RAX: 0000000000000003
RAX: 0000000000000000 RBX: 00007f0fd46be6c8 RCX: 00007f0fd4c661f7
RDX: 0000000000000000 RSI: 0000000000000000 RDI: 0000000000000006
RBP: 0000000000000006 R08: 000055fff1eaf400 R09: 0000000000000000
R10: 00007f0fd46be6c8 R11: 0000000000000246 R12: 0000000000000000
R13: 0000000000000000 R14: 0000000000002f08 R15: 00007ffd1c9ea050
Commit 1c500ad ("loop: reduce the loop_ctl_mutex scope") is for
breaking "loop_ctl_mutex => &lo->lo_mutex" dependency chain. But enabling
a different block module results in forming circular locking dependency
due to shared major_names_lock mutex.
The simplest fix is to call probe function without holding
major_names_lock [1], but Christoph Hellwig does not like such idea.
Therefore, instead of holding major_names_lock in blkdev_show(),
introduce a different lock for blkdev_show() in order to break
"sb_writers#$N => &p->lock => major_names_lock" dependency chain.
Link: https://lkml.kernel.org/r/b2af8a5b-3c1b-204e-7f56-bea0b15848d6@i-love.sakura.ne.jp [1]
Signed-off-by: Tetsuo Handa <penguin-kernel@I-love.SAKURA.ne.jp>
Link: https://lore.kernel.org/r/18a02da2-0bf3-550e-b071-2b4ab13c49f0@i-love.sakura.ne.jp
Signed-off-by: Jens Axboe <axboe@kernel.dk>
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Sep 23, 2021
As previously noted in commit 66e4f4a ("rtc: cmos: Use spin_lock_irqsave() in cmos_interrupt()"): <4>[ 254.192378] WARNING: inconsistent lock state <4>[ 254.192384] 5.12.0-rc1-CI-CI_DRM_9834+ #1 Not tainted <4>[ 254.192396] -------------------------------- <4>[ 254.192400] inconsistent {IN-HARDIRQ-W} -> {HARDIRQ-ON-W} usage. <4>[ 254.192409] rtcwake/5309 [HC0[0]:SC0[0]:HE1:SE1] takes: <4>[ 254.192429] ffffffff8263c5f8 (rtc_lock){?...}-{2:2}, at: cmos_interrupt+0x18/0x100 <4>[ 254.192481] {IN-HARDIRQ-W} state was registered at: <4>[ 254.192488] lock_acquire+0xd1/0x3d0 <4>[ 254.192504] _raw_spin_lock+0x2a/0x40 <4>[ 254.192519] cmos_interrupt+0x18/0x100 <4>[ 254.192536] rtc_handler+0x1f/0xc0 <4>[ 254.192553] acpi_ev_fixed_event_detect+0x109/0x13c <4>[ 254.192574] acpi_ev_sci_xrupt_handler+0xb/0x28 <4>[ 254.192596] acpi_irq+0x13/0x30 <4>[ 254.192620] __handle_irq_event_percpu+0x43/0x2c0 <4>[ 254.192641] handle_irq_event_percpu+0x2b/0x70 <4>[ 254.192661] handle_irq_event+0x2f/0x50 <4>[ 254.192680] handle_fasteoi_irq+0x9e/0x150 <4>[ 254.192693] __common_interrupt+0x76/0x140 <4>[ 254.192715] common_interrupt+0x96/0xc0 <4>[ 254.192732] asm_common_interrupt+0x1e/0x40 <4>[ 254.192750] _raw_spin_unlock_irqrestore+0x38/0x60 <4>[ 254.192767] resume_irqs+0xba/0xf0 <4>[ 254.192786] dpm_resume_noirq+0x245/0x3d0 <4>[ 254.192811] suspend_devices_and_enter+0x230/0xaa0 <4>[ 254.192835] pm_suspend.cold.8+0x301/0x34a <4>[ 254.192859] state_store+0x7b/0xe0 <4>[ 254.192879] kernfs_fop_write_iter+0x11d/0x1c0 <4>[ 254.192899] new_sync_write+0x11d/0x1b0 <4>[ 254.192916] vfs_write+0x265/0x390 <4>[ 254.192933] ksys_write+0x5a/0xd0 <4>[ 254.192949] do_syscall_64+0x33/0x80 <4>[ 254.192965] entry_SYSCALL_64_after_hwframe+0x44/0xae <4>[ 254.192986] irq event stamp: 43775 <4>[ 254.192994] hardirqs last enabled at (43775): [<ffffffff81c00c42>] asm_sysvec_apic_timer_interrupt+0x12/0x20 <4>[ 254.193023] hardirqs last disabled at (43774): [<ffffffff81aa691a>] sysvec_apic_timer_interrupt+0xa/0xb0 <4>[ 254.193049] softirqs last enabled at (42548): [<ffffffff81e00342>] __do_softirq+0x342/0x48e <4>[ 254.193074] softirqs last disabled at (42543): [<ffffffff810b45fd>] irq_exit_rcu+0xad/0xd0 <4>[ 254.193101] other info that might help us debug this: <4>[ 254.193107] Possible unsafe locking scenario: <4>[ 254.193112] CPU0 <4>[ 254.193117] ---- <4>[ 254.193121] lock(rtc_lock); <4>[ 254.193137] <Interrupt> <4>[ 254.193142] lock(rtc_lock); <4>[ 254.193156] *** DEADLOCK *** <4>[ 254.193161] 6 locks held by rtcwake/5309: <4>[ 254.193174] #0: ffff888104861430 (sb_writers#5){.+.+}-{0:0}, at: ksys_write+0x5a/0xd0 <4>[ 254.193232] #1: ffff88810f823288 (&of->mutex){+.+.}-{3:3}, at: kernfs_fop_write_iter+0xe7/0x1c0 <4>[ 254.193282] #2: ffff888100cef3c0 (kn->active#285 <7>[ 254.192706] i915 0000:00:02.0: [drm:intel_modeset_setup_hw_state [i915]] [CRTC:51:pipe A] hw state readout: disabled <4>[ 254.193307] ){.+.+}-{0:0}, at: kernfs_fop_write_iter+0xf0/0x1c0 <4>[ 254.193333] #3: ffffffff82649fa8 (system_transition_mutex){+.+.}-{3:3}, at: pm_suspend.cold.8+0xce/0x34a <4>[ 254.193387] #4: ffffffff827a2108 (acpi_scan_lock){+.+.}-{3:3}, at: acpi_suspend_begin+0x47/0x70 <4>[ 254.193433] #5: ffff8881019ea178 (&dev->mutex){....}-{3:3}, at: device_resume+0x68/0x1e0 <4>[ 254.193485] stack backtrace: <4>[ 254.193492] CPU: 1 PID: 5309 Comm: rtcwake Not tainted 5.12.0-rc1-CI-CI_DRM_9834+ #1 <4>[ 254.193514] Hardware name: Google Soraka/Soraka, BIOS MrChromebox-4.10 08/25/2019 <4>[ 254.193524] Call Trace: <4>[ 254.193536] dump_stack+0x7f/0xad <4>[ 254.193567] mark_lock.part.47+0x8ca/0xce0 <4>[ 254.193604] __lock_acquire+0x39b/0x2590 <4>[ 254.193626] ? asm_sysvec_apic_timer_interrupt+0x12/0x20 <4>[ 254.193660] lock_acquire+0xd1/0x3d0 <4>[ 254.193677] ? cmos_interrupt+0x18/0x100 <4>[ 254.193716] _raw_spin_lock+0x2a/0x40 <4>[ 254.193735] ? cmos_interrupt+0x18/0x100 <4>[ 254.193758] cmos_interrupt+0x18/0x100 <4>[ 254.193785] cmos_resume+0x2ac/0x2d0 <4>[ 254.193813] ? acpi_pm_set_device_wakeup+0x1f/0x110 <4>[ 254.193842] ? pnp_bus_suspend+0x10/0x10 <4>[ 254.193864] pnp_bus_resume+0x5e/0x90 <4>[ 254.193885] dpm_run_callback+0x5f/0x240 <4>[ 254.193914] device_resume+0xb2/0x1e0 <4>[ 254.193942] ? pm_dev_err+0x25/0x25 <4>[ 254.193974] dpm_resume+0xea/0x3f0 <4>[ 254.194005] dpm_resume_end+0x8/0x10 <4>[ 254.194030] suspend_devices_and_enter+0x29b/0xaa0 <4>[ 254.194066] pm_suspend.cold.8+0x301/0x34a <4>[ 254.194094] state_store+0x7b/0xe0 <4>[ 254.194124] kernfs_fop_write_iter+0x11d/0x1c0 <4>[ 254.194151] new_sync_write+0x11d/0x1b0 <4>[ 254.194183] vfs_write+0x265/0x390 <4>[ 254.194207] ksys_write+0x5a/0xd0 <4>[ 254.194232] do_syscall_64+0x33/0x80 <4>[ 254.194251] entry_SYSCALL_64_after_hwframe+0x44/0xae <4>[ 254.194274] RIP: 0033:0x7f07d79691e7 <4>[ 254.194293] Code: 64 89 02 48 c7 c0 ff ff ff ff eb bb 0f 1f 80 00 00 00 00 f3 0f 1e fa 64 8b 04 25 18 00 00 00 85 c0 75 10 b8 01 00 00 00 0f 05 <48> 3d 00 f0 ff ff 77 51 c3 48 83 ec 28 48 89 54 24 18 48 89 74 24 <4>[ 254.194312] RSP: 002b:00007ffd9cc2c768 EFLAGS: 00000246 ORIG_RAX: 0000000000000001 <4>[ 254.194337] RAX: ffffffffffffffda RBX: 0000000000000004 RCX: 00007f07d79691e7 <4>[ 254.194352] RDX: 0000000000000004 RSI: 0000556ebfc63590 RDI: 000000000000000b <4>[ 254.194366] RBP: 0000556ebfc63590 R08: 0000000000000000 R09: 0000000000000004 <4>[ 254.194379] R10: 0000556ebf0ec2a6 R11: 0000000000000246 R12: 0000000000000004 which breaks S3-resume on fi-kbl-soraka presumably as that's slow enough to trigger the alarm during the suspend. Fixes: 6950d04 ("rtc: cmos: Replace spin_lock_irqsave with spin_lock in hard IRQ") References: 66e4f4a ("rtc: cmos: Use spin_lock_irqsave() in cmos_interrupt()"): Signed-off-by: Chris Wilson <chris@chris-wilson.co.uk> Cc: Xiaofei Tan <tanxiaofei@huawei.com> Cc: Alexandre Belloni <alexandre.belloni@bootlin.com> Cc: Alessandro Zummo <a.zummo@towertech.it> Cc: Ville Syrjälä <ville.syrjala@linux.intel.com> Reviewed-by: Ville Syrjälä <ville.syrjala@linux.intel.com> Signed-off-by: Alexandre Belloni <alexandre.belloni@bootlin.com> Link: https://lore.kernel.org/r/20210305122140.28774-1-chris@chris-wilson.co.uk
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It's later supposed to be either a correct address or NULL. Without the initialization, it may contain an undefined value which results in the following segmentation fault: # perf top --sort comm -g --ignore-callees=do_idle terminates with: #0 0x00007ffff56b7685 in __strlen_avx2 () from /lib64/libc.so.6 #1 0x00007ffff55e3802 in strdup () from /lib64/libc.so.6 #2 0x00005555558cb139 in hist_entry__init (callchain_size=<optimized out>, sample_self=true, template=0x7fffde7fb110, he=0x7fffd801c250) at util/hist.c:489 #3 hist_entry__new (template=template@entry=0x7fffde7fb110, sample_self=sample_self@entry=true) at util/hist.c:564 #4 0x00005555558cb4ba in hists__findnew_entry (hists=hists@entry=0x5555561d9e38, entry=entry@entry=0x7fffde7fb110, al=al@entry=0x7fffde7fb420, sample_self=sample_self@entry=true) at util/hist.c:657 #5 0x00005555558cba1b in __hists__add_entry (hists=hists@entry=0x5555561d9e38, al=0x7fffde7fb420, sym_parent=<optimized out>, bi=bi@entry=0x0, mi=mi@entry=0x0, sample=sample@entry=0x7fffde7fb4b0, sample_self=true, ops=0x0, block_info=0x0) at util/hist.c:288 #6 0x00005555558cbb70 in hists__add_entry (sample_self=true, sample=0x7fffde7fb4b0, mi=0x0, bi=0x0, sym_parent=<optimized out>, al=<optimized out>, hists=0x5555561d9e38) at util/hist.c:1056 #7 iter_add_single_cumulative_entry (iter=0x7fffde7fb460, al=<optimized out>) at util/hist.c:1056 #8 0x00005555558cc8a4 in hist_entry_iter__add (iter=iter@entry=0x7fffde7fb460, al=al@entry=0x7fffde7fb420, max_stack_depth=<optimized out>, arg=arg@entry=0x7fffffff7db0) at util/hist.c:1231 #9 0x00005555557cdc9a in perf_event__process_sample (machine=<optimized out>, sample=0x7fffde7fb4b0, evsel=<optimized out>, event=<optimized out>, tool=0x7fffffff7db0) at builtin-top.c:842 #10 deliver_event (qe=<optimized out>, qevent=<optimized out>) at builtin-top.c:1202 #11 0x00005555558a9318 in do_flush (show_progress=false, oe=0x7fffffff80e0) at util/ordered-events.c:244 #12 __ordered_events__flush (oe=oe@entry=0x7fffffff80e0, how=how@entry=OE_FLUSH__TOP, timestamp=timestamp@entry=0) at util/ordered-events.c:323 #13 0x00005555558a9789 in __ordered_events__flush (timestamp=<optimized out>, how=<optimized out>, oe=<optimized out>) at util/ordered-events.c:339 #14 ordered_events__flush (how=OE_FLUSH__TOP, oe=0x7fffffff80e0) at util/ordered-events.c:341 #15 ordered_events__flush (oe=oe@entry=0x7fffffff80e0, how=how@entry=OE_FLUSH__TOP) at util/ordered-events.c:339 #16 0x00005555557cd631 in process_thread (arg=0x7fffffff7db0) at builtin-top.c:1114 #17 0x00007ffff7bb817a in start_thread () from /lib64/libpthread.so.0 #18 0x00007ffff5656dc3 in clone () from /lib64/libc.so.6 If you look at the frame #2, the code is: 488 if (he->srcline) { 489 he->srcline = strdup(he->srcline); 490 if (he->srcline == NULL) 491 goto err_rawdata; 492 } If he->srcline is not NULL (it is not NULL if it is uninitialized rubbish), it gets strdupped and strdupping a rubbish random string causes the problem. Also, if you look at the commit 1fb7d06, it adds the srcline property into the struct, but not initializing it everywhere needed. Committer notes: Now I see, when using --ignore-callees=do_idle we end up here at line 2189 in add_callchain_ip(): 2181 if (al.sym != NULL) { 2182 if (perf_hpp_list.parent && !*parent && 2183 symbol__match_regex(al.sym, &parent_regex)) 2184 *parent = al.sym; 2185 else if (have_ignore_callees && root_al && 2186 symbol__match_regex(al.sym, &ignore_callees_regex)) { 2187 /* Treat this symbol as the root, 2188 forgetting its callees. */ 2189 *root_al = al; 2190 callchain_cursor_reset(cursor); 2191 } 2192 } And the al that doesn't have the ->srcline field initialized will be copied to the root_al, so then, back to: 1211 int hist_entry_iter__add(struct hist_entry_iter *iter, struct addr_location *al, 1212 int max_stack_depth, void *arg) 1213 { 1214 int err, err2; 1215 struct map *alm = NULL; 1216 1217 if (al) 1218 alm = map__get(al->map); 1219 1220 err = sample__resolve_callchain(iter->sample, &callchain_cursor, &iter->parent, 1221 iter->evsel, al, max_stack_depth); 1222 if (err) { 1223 map__put(alm); 1224 return err; 1225 } 1226 1227 err = iter->ops->prepare_entry(iter, al); 1228 if (err) 1229 goto out; 1230 1231 err = iter->ops->add_single_entry(iter, al); 1232 if (err) 1233 goto out; 1234 That al at line 1221 is what hist_entry_iter__add() (called from sample__resolve_callchain()) saw as 'root_al', and then: iter->ops->add_single_entry(iter, al); will go on with al->srcline with a bogus value, I'll add the above sequence to the cset and apply, thanks! Signed-off-by: Michael Petlan <mpetlan@redhat.com> CC: Milian Wolff <milian.wolff@kdab.com> Cc: Jiri Olsa <jolsa@redhat.com> Fixes: 1fb7d06 ("perf report Use srcline from callchain for hist entries") Link: https //lore.kernel.org/r/20210719145332.29747-1-mpetlan@redhat.com Reported-by: Juri Lelli <jlelli@redhat.com> Signed-off-by: Arnaldo Carvalho de Melo <acme@redhat.com>
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FD uses xyarray__entry that may return NULL if an index is out of
bounds. If NULL is returned then a segv happens as FD unconditionally
dereferences the pointer. This was happening in a case of with perf
iostat as shown below. The fix is to make FD an "int*" rather than an
int and handle the NULL case as either invalid input or a closed fd.
$ sudo gdb --args perf stat --iostat list
...
Breakpoint 1, perf_evsel__alloc_fd (evsel=0x5555560951a0, ncpus=1, nthreads=1) at evsel.c:50
50 {
(gdb) bt
#0 perf_evsel__alloc_fd (evsel=0x5555560951a0, ncpus=1, nthreads=1) at evsel.c:50
#1 0x000055555585c188 in evsel__open_cpu (evsel=0x5555560951a0, cpus=0x555556093410,
threads=0x555556086fb0, start_cpu=0, end_cpu=1) at util/evsel.c:1792
#2 0x000055555585cfb2 in evsel__open (evsel=0x5555560951a0, cpus=0x0, threads=0x555556086fb0)
at util/evsel.c:2045
#3 0x000055555585d0db in evsel__open_per_thread (evsel=0x5555560951a0, threads=0x555556086fb0)
at util/evsel.c:2065
#4 0x00005555558ece64 in create_perf_stat_counter (evsel=0x5555560951a0,
config=0x555555c34700 <stat_config>, target=0x555555c2f1c0 <target>, cpu=0) at util/stat.c:590
#5 0x000055555578e927 in __run_perf_stat (argc=1, argv=0x7fffffffe4a0, run_idx=0)
at builtin-stat.c:833
#6 0x000055555578f3c6 in run_perf_stat (argc=1, argv=0x7fffffffe4a0, run_idx=0)
at builtin-stat.c:1048
#7 0x0000555555792ee5 in cmd_stat (argc=1, argv=0x7fffffffe4a0) at builtin-stat.c:2534
#8 0x0000555555835ed3 in run_builtin (p=0x555555c3f540 <commands+288>, argc=3,
argv=0x7fffffffe4a0) at perf.c:313
#9 0x0000555555836154 in handle_internal_command (argc=3, argv=0x7fffffffe4a0) at perf.c:365
#10 0x000055555583629f in run_argv (argcp=0x7fffffffe2ec, argv=0x7fffffffe2e0) at perf.c:409
#11 0x0000555555836692 in main (argc=3, argv=0x7fffffffe4a0) at perf.c:539
...
(gdb) c
Continuing.
Error:
The sys_perf_event_open() syscall returned with 22 (Invalid argument) for event (uncore_iio_0/event=0x83,umask=0x04,ch_mask=0xF,fc_mask=0x07/).
/bin/dmesg | grep -i perf may provide additional information.
Program received signal SIGSEGV, Segmentation fault.
0x00005555559b03ea in perf_evsel__close_fd_cpu (evsel=0x5555560951a0, cpu=1) at evsel.c:166
166 if (FD(evsel, cpu, thread) >= 0)
v3. fixes a bug in perf_evsel__run_ioctl where the sense of a branch was
backward.
Signed-off-by: Ian Rogers <irogers@google.com>
Acked-by: Jiri Olsa <jolsa@redhat.com>
Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com>
Cc: Mark Rutland <mark.rutland@arm.com>
Cc: Namhyung Kim <namhyung@kernel.org>
Cc: Peter Zijlstra <peterz@infradead.org>
Cc: Stephane Eranian <eranian@google.com>
Link: http://lore.kernel.org/lkml/20210918054440.2350466-1-irogers@google.com
Signed-off-by: Arnaldo Carvalho de Melo <acme@redhat.com>
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Peter's e-mail in MAINTAINERS is defunct:
This is the qmail-send program at a.mx.sunsite.dk.
<jacmet@sunsite.dk>:
Sorry, no mailbox here by that name. (#5.1.1)
Peter says:
** Ahh yes, it should be changed to peter@korsgaard.com.
However he also says:
** I haven't had access to c67x00 hw for quite some years though, so maybe
** it should be marked Orphan instead?
So change as he wishes.
Cc: Peter Korsgaard <peter@korsgaard.com>
Cc: Linus Torvalds <torvalds@linux-foundation.org>
Cc: linux-usb@vger.kernel.org
Acked-by: Peter Korsgaard <peter@korsgaard.com>
Signed-off-by: Jiri Slaby <jslaby@suse.cz>
Link: https://lore.kernel.org/r/20210922063008.25758-1-jslaby@suse.cz
Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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Ido Schimmel says: ==================== mlxsw: Add support for IP-in-IP with IPv6 underlay Currently, mlxsw only supports IP-in-IP with IPv4 underlay. Traffic routed through 'gre' netdevs is encapsulated with IPv4 and GRE headers. Similarly, incoming IPv4 GRE packets are decapsulated and routed in the overlay VRF (which can be the same as the underlay VRF). This patchset adds support for IPv6 underlay using the 'ip6gre' netdev. Due to architectural differences between Spectrum-1 and later ASICs, this functionality is only supported on Spectrum-2 onwards (the software data path is used for Spectrum-1). Patchset overview: Patches #1-#5 are preparations. Patches #6-#9 add and extend required device registers. Patches #10-#14 gradually add IPv6 underlay support. A follow-up patchset will add net/forwarding/ selftests. ==================== Signed-off-by: David S. Miller <davem@davemloft.net>
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…r-mode' Ido Schimmel says: ==================== ethtool: Add ability to control transceiver modules' power mode This patchset extends the ethtool netlink API to allow user space to control transceiver modules. Two specific APIs are added, but the plan is to extend the interface with more APIs in the future (see "Future plans"). This submission is a complete rework of a previous submission [1] that tried to achieve the same goal by allowing user space to write to the EEPROMs of these modules. It was rejected as it could have enabled user space binary blob drivers. However, the main issue is that by directly writing to some pages of these EEPROMs, we are interfering with the entity that is controlling the modules (kernel / device firmware). In addition, some functionality cannot be implemented solely by writing to the EEPROM, as it requires the assertion / de-assertion of hardware signals (e.g., "ResetL" pin in SFF-8636). Motivation ========== The kernel can currently dump the contents of module EEPROMs to user space via the ethtool legacy ioctl API or the new netlink API. These dumps can then be parsed by ethtool(8) according to the specification that defines the memory map of the EEPROM. For example, SFF-8636 [2] for QSFP and CMIS [3] for QSFP-DD. In addition to read-only elements, these specifications also define writeable elements that can be used to control the behavior of the module. For example, controlling whether the module is put in low or high power mode to limit its power consumption. The CMIS specification even defines a message exchange mechanism (CDB, Command Data Block) on top of the module's memory map. This allows the host to send various commands to the module. For example, to update its firmware. Implementation ============== The ethtool netlink API is extended with two new messages, 'ETHTOOL_MSG_MODULE_SET' and 'ETHTOOL_MSG_MODULE_GET', that allow user space to set and get transceiver module parameters. Specifically, the 'ETHTOOL_A_MODULE_POWER_MODE_POLICY' attribute allows user space to control the power mode policy of the module in order to limit its power consumption. See detailed description in patch #1. The user API is designed to be generic enough so that it could be used for modules with different memory maps (e.g., SFF-8636, CMIS). The only implementation of the device driver API in this series is for a MAC driver (mlxsw) where the module is controlled by the device's firmware, but it is designed to be generic enough so that it could also be used by implementations where the module is controlled by the kernel. Testing and introspection ========================= See detailed description in patches #1 and #5. Patchset overview ================= Patch #1 adds the initial infrastructure in ethtool along with the ability to control transceiver modules' power mode. Patches #2-#3 add required device registers in mlxsw. Patch #4 implements in mlxsw the ethtool operations added in patch #1. Patch #5 adds extended link states in order to allow user space to troubleshoot link down issues related to transceiver modules. Patch #6 adds support for these extended states in mlxsw. Future plans ============ * Extend 'ETHTOOL_MSG_MODULE_SET' to control Tx output among other attributes. * Add new ethtool message(s) to update firmware on transceiver modules. * Extend ethtool(8) to parse more diagnostic information from CMIS modules. No kernel changes required. [1] https://lore.kernel.org/netdev/20210623075925.2610908-1-idosch@idosch.org/ [2] https://members.snia.org/document/dl/26418 [3] http://www.qsfp-dd.com/wp-content/uploads/2021/05/CMIS5p0.pdf Previous versions: [4] https://lore.kernel.org/netdev/20211003073219.1631064-1-idosch@idosch.org/ [5] https://lore.kernel.org/netdev/20210824130344.1828076-1-idosch@idosch.org/ [6] https://lore.kernel.org/netdev/20210818155202.1278177-1-idosch@idosch.org/ [7] https://lore.kernel.org/netdev/20210809102152.719961-1-idosch@idosch.org/ ==================== Link: https://lore.kernel.org/r/20211006104647.2357115-1-idosch@idosch.org Signed-off-by: Jakub Kicinski <kuba@kernel.org>
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Ido Schimmel says: ==================== selftests: forwarding: Add ip6gre tests This patchset adds forwarding selftests for ip6gre. The tests can be run with veth pairs or with physical loopbacks. Patch #1 adds a new config option to determine if 'skip_sw' / 'skip_hw' flags are used when installing tc filters. By default, it is not set which means the flags are not used. 'skip_sw' is useful to ensure traffic is forwarded by the hardware data path. Patch #2 adds a new helper function. Patches #3-#4 add the forwarding selftests. Patch #5 adds a mlxsw-specific selftest to validate correct behavior of the 'decap_error' trap with IPv6 underlay. Patches #6-#8 align the corresponding IPv4 underlay test to the IPv6 one. ==================== Signed-off-by: David S. Miller <davem@davemloft.net>
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Oct 11, 2021
On SiFive Unmatched, I recently fell onto the following BUG when booting: [ 0.000000] ftrace: allocating 36610 entries in 144 pages [ 0.000000] Oops - illegal instruction [#1] [ 0.000000] Modules linked in: [ 0.000000] CPU: 0 PID: 0 Comm: swapper Not tainted 5.13.1+ #5 [ 0.000000] Hardware name: SiFive HiFive Unmatched A00 (DT) [ 0.000000] epc : riscv_cpuid_to_hartid_mask+0x6/0xae [ 0.000000] ra : __sbi_rfence_v02+0xc8/0x10a [ 0.000000] epc : ffffffff80007240 ra : ffffffff80009964 sp : ffffffff81803e10 [ 0.000000] gp : ffffffff81a1ea70 tp : ffffffff8180f500 t0 : ffffffe07fe30000 [ 0.000000] t1 : 0000000000000004 t2 : 0000000000000000 s0 : ffffffff81803e60 [ 0.000000] s1 : 0000000000000000 a0 : ffffffff81a22238 a1 : ffffffff81803e10 [ 0.000000] a2 : 0000000000000000 a3 : 0000000000000000 a4 : 0000000000000000 [ 0.000000] a5 : 0000000000000000 a6 : ffffffff8000989c a7 : 0000000052464e43 [ 0.000000] s2 : ffffffff81a220c8 s3 : 0000000000000000 s4 : 0000000000000000 [ 0.000000] s5 : 0000000000000000 s6 : 0000000200000100 s7 : 0000000000000001 [ 0.000000] s8 : ffffffe07fe04040 s9 : ffffffff81a22c80 s10: 0000000000001000 [ 0.000000] s11: 0000000000000004 t3 : 0000000000000001 t4 : 0000000000000008 [ 0.000000] t5 : ffffffcf04000808 t6 : ffffffe3ffddf188 [ 0.000000] status: 0000000200000100 badaddr: 0000000000000000 cause: 0000000000000002 [ 0.000000] [<ffffffff80007240>] riscv_cpuid_to_hartid_mask+0x6/0xae [ 0.000000] [<ffffffff80009474>] sbi_remote_fence_i+0x1e/0x26 [ 0.000000] [<ffffffff8000b8f4>] flush_icache_all+0x12/0x1a [ 0.000000] [<ffffffff8000666c>] patch_text_nosync+0x26/0x32 [ 0.000000] [<ffffffff8000884e>] ftrace_init_nop+0x52/0x8c [ 0.000000] [<ffffffff800f051e>] ftrace_process_locs.isra.0+0x29c/0x360 [ 0.000000] [<ffffffff80a0e3c6>] ftrace_init+0x80/0x130 [ 0.000000] [<ffffffff80a00f8c>] start_kernel+0x5c4/0x8f6 [ 0.000000] ---[ end trace f67eb9af4d8d492b ]--- [ 0.000000] Kernel panic - not syncing: Attempted to kill the idle task! [ 0.000000] ---[ end Kernel panic - not syncing: Attempted to kill the idle task! ]--- While ftrace is looping over a list of addresses to patch, it always failed when patching the same function: riscv_cpuid_to_hartid_mask. Looking at the backtrace, the illegal instruction is encountered in this same function. However, patch_text_nosync, after patching the instructions, calls flush_icache_range. But looking at what happens in this function: flush_icache_range -> flush_icache_all -> sbi_remote_fence_i -> __sbi_rfence_v02 -> riscv_cpuid_to_hartid_mask The icache and dcache of the current cpu are never synchronized between the patching of riscv_cpuid_to_hartid_mask and calling this same function. So fix this by flushing the current cpu's icache before asking for the other cpus to do the same. Signed-off-by: Alexandre Ghiti <alex@ghiti.fr> Fixes: fab957c ("RISC-V: Atomic and Locking Code") Cc: stable@vger.kernel.org Signed-off-by: Palmer Dabbelt <palmerdabbelt@google.com>
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Ido Schimmel says: ==================== mlxsw: Add support for ECN mirroring Petr says: Patches in this set have been floating around for some time now together with trap_fwd support. That will however need more work, time for which is nowhere to be found, apparently. Instead, this patchset enables offload of only packet mirroring on RED mark qevent, enabling mirroring of ECN-marked packets. Formally it enables offload of filters added to blocks bound to the RED qevent mark if: - The switch ASIC is Spectrum-2 or above. - Only a single filter is attached at the block, at chain 0 (the default), and its classifier is matchall. - The filter has hw_stats set to disabled. - The filter has a single action, which is mirror. This differs from early_drop qevent offload, which supports mirroring and trapping. However trapping in context of ECN-marked packets is not suitable, because the HW does not drop the packet, as the trap action implies. And there is as of now no way to express only the part of trapping that transfers the packet to the SW datapath, sans the HW-datapath drop. The patchset progresses as follows: Patch #1 is an extack propagation. Mirroring of ECN-marked packets is configured in the ASIC through an ECN trigger, which is considered "egress", unlike the EARLY_DROP trigger. In patch #2, add a helper to classify triggers as ingress. As clarified above, traps cannot be offloaded on mark qevent. Similarly, given a trap_fwd action, it would not be offloadable on early_drop qevent. In patch #3, introduce support for tracking actions permissible on a given block. Patch #4 actually adds the mark qevent offload. In patch #5, fix a small style issue in one of the selftests, and in patch #6 add mark offload selftests. ==================== Signed-off-by: David S. Miller <davem@davemloft.net>
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Sebastian Andrzej Siewior says:
====================
Try to simplify the gnet_stats and remove qdisc->running sequence counter.
The first few patches is a follow up to
https://lore.kernel.org/all/20211007175000.2334713-1-bigeasy@linutronix.de/
The remaining patches (#5+) remove the seqcount_t (Qdisc::running) from
the Qdisc. The statistics (Qdisc::bstats and Qdisc::cpu_bstats) use
u64_stats_t and the "running state" is now represented by a bit in
Qdisc::state.
By removing the seqcount_t from Qdisc and decoupling the bstats
statistics from the seqcount_t it is possible to query the statistics
even if the Qdisc is running instead of waiting until it is idle again.
The try-lock like usage of the seqcount_t in qdisc_run_begin() is
problematic on PREEMPT_RT. Inside the qdisc_run_begin/end() qdisc->running
sequence counter write sections, at sch_direct_xmit(), the seqcount write
serialization lock is released then re-acquired. This is fine for !RT, because
the writer is in a BH disabled region and there is a no in-IRQ reader. For RT
though, BH sections are preemptible. The earlier introduced seqcount_LOCKNAME_t
mechanism, which for RT the reader acquires then relesaes the write
serailization lock to avoid infinite spinning if it preempts a seqcount write
section, cannot work: the qdisc->running write serialization lock is already
intermittingly released inside the seqcount write section.
====================
Signed-off-by: David S. Miller <davem@davemloft.net>
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Ido Schimmel says: ==================== mlxsw: Multi-level qdisc offload Petr says: Currently, mlxsw admits for offload a suitable root qdisc, and its children. Thus up to two levels of hierarchy are offloaded. Often, this is enough: one can configure TCs with RED and TCs with a shaper on, and can even see counters for each TC by looking at a qdisc at a sufficiently shallow position. While simple, the system has obvious shortcomings. It is not possible to configure both RED and shaping on one TC. It is not possible to place a PRIO below root TBF, which would then be offloaded as port shaper. FIFOs are only offloaded at root or directly below, which is confusing to users, because RED and TBF of course have their own FIFO. This patch set lifts assumptions that prevent offloading multi-level qdisc trees. In patch #1, offload of a graft operation is added to TBF. Grafts are issued as another qdisc is linked to the qdisc in question, and give drivers a chance to react to the linking. The absence of this event was not a major issue so far, because TBF was not considered classful, which changes with this patchset. The codebase currently assumes that ETS and PRIO are the only classful qdiscs. The following patches gradually lift this assumption. In patch #2, calculation of traffic class and priomap of a qdisc is fixed. Patch #3 fixes handling of future FIFOs. Child FIFO qdiscs may be created and notified before their parent qdisc exists and therefore need special handling. Patches #4, #5 and #6 unify, respectively, child destruction, child grafting, and cleanup of statistics. Patch #7 adds a function that validates whether a given qdisc topology is offloadable. Finally in patch #8, TBF and RED become classful. At this point, FIFO qdiscs grafted to an offloaded qdisc should always be offloaded. Patch #9 adds a selftest to verify some offloadable and unoffloadable qdisc trees. ==================== Signed-off-by: David S. Miller <davem@davemloft.net>
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Ido Schimmel says: ==================== mlxsw: Support multiple RIF MAC prefixes Currently, mlxsw enforces that all the netdevs used as router interfaces (RIFs) have the same MAC prefix (e.g., same 38 MSBs in Spectrum-1). Otherwise, an error is returned to user space with extack. This patchset relaxes the limitation through the use of RIF MAC profiles. A RIF MAC profile is a hardware entity that represents a particular MAC prefix which multiple RIFs can reference. Therefore, the number of possible MAC prefixes is no longer one, but the number of profiles supported by the device. The ability to change the MAC of a particular netdev is useful, for example, for users who use the netdev to connect to an upstream provider that performs MAC filtering. Currently, such users are either forced to negotiate with the provider or change the MAC address of all other netdevs so that they share the same prefix. Patchset overview: Patches #1-#3 are preparations. Patch #4 adds actual support for RIF MAC profiles. Patch #5 exposes RIF MAC profiles as a devlink resource, so that user space has visibility into the maximum number of profiles and current occupancy. Useful for debugging and testing (next 3 patches). Patches #6-#8 add both scale and functional tests. Patch #9 removes tests that validated the previous limitation. It is now covered by patch #6 for devices that support a single profile. ==================== Signed-off-by: David S. Miller <davem@davemloft.net>
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We got the following lockdep splat while running fstests (specifically btrfs/003 and btrfs/020 in a row) with the new rc. This was uncovered by 87579e9 ("loop: use worker per cgroup instead of kworker") which converted loop to using workqueues, which comes with lockdep annotations that don't exist with kworkers. The lockdep splat is as follows: WARNING: possible circular locking dependency detected 5.14.0-rc2-custom+ #34 Not tainted ------------------------------------------------------ losetup/156417 is trying to acquire lock: ffff9c7645b02d38 ((wq_completion)loop0){+.+.}-{0:0}, at: flush_workqueue+0x84/0x600 but task is already holding lock: ffff9c7647395468 (&lo->lo_mutex){+.+.}-{3:3}, at: __loop_clr_fd+0x41/0x650 [loop] which lock already depends on the new lock. the existing dependency chain (in reverse order) is: -> #5 (&lo->lo_mutex){+.+.}-{3:3}: __mutex_lock+0xba/0x7c0 lo_open+0x28/0x60 [loop] blkdev_get_whole+0x28/0xf0 blkdev_get_by_dev.part.0+0x168/0x3c0 blkdev_open+0xd2/0xe0 do_dentry_open+0x163/0x3a0 path_openat+0x74d/0xa40 do_filp_open+0x9c/0x140 do_sys_openat2+0xb1/0x170 __x64_sys_openat+0x54/0x90 do_syscall_64+0x3b/0x90 entry_SYSCALL_64_after_hwframe+0x44/0xae -> #4 (&disk->open_mutex){+.+.}-{3:3}: __mutex_lock+0xba/0x7c0 blkdev_get_by_dev.part.0+0xd1/0x3c0 blkdev_get_by_path+0xc0/0xd0 btrfs_scan_one_device+0x52/0x1f0 [btrfs] btrfs_control_ioctl+0xac/0x170 [btrfs] __x64_sys_ioctl+0x83/0xb0 do_syscall_64+0x3b/0x90 entry_SYSCALL_64_after_hwframe+0x44/0xae -> #3 (uuid_mutex){+.+.}-{3:3}: __mutex_lock+0xba/0x7c0 btrfs_rm_device+0x48/0x6a0 [btrfs] btrfs_ioctl+0x2d1c/0x3110 [btrfs] __x64_sys_ioctl+0x83/0xb0 do_syscall_64+0x3b/0x90 entry_SYSCALL_64_after_hwframe+0x44/0xae -> #2 (sb_writers#11){.+.+}-{0:0}: lo_write_bvec+0x112/0x290 [loop] loop_process_work+0x25f/0xcb0 [loop] process_one_work+0x28f/0x5d0 worker_thread+0x55/0x3c0 kthread+0x140/0x170 ret_from_fork+0x22/0x30 -> #1 ((work_completion)(&lo->rootcg_work)){+.+.}-{0:0}: process_one_work+0x266/0x5d0 worker_thread+0x55/0x3c0 kthread+0x140/0x170 ret_from_fork+0x22/0x30 -> #0 ((wq_completion)loop0){+.+.}-{0:0}: __lock_acquire+0x1130/0x1dc0 lock_acquire+0xf5/0x320 flush_workqueue+0xae/0x600 drain_workqueue+0xa0/0x110 destroy_workqueue+0x36/0x250 __loop_clr_fd+0x9a/0x650 [loop] lo_ioctl+0x29d/0x780 [loop] block_ioctl+0x3f/0x50 __x64_sys_ioctl+0x83/0xb0 do_syscall_64+0x3b/0x90 entry_SYSCALL_64_after_hwframe+0x44/0xae other info that might help us debug this: Chain exists of: (wq_completion)loop0 --> &disk->open_mutex --> &lo->lo_mutex Possible unsafe locking scenario: CPU0 CPU1 ---- ---- lock(&lo->lo_mutex); lock(&disk->open_mutex); lock(&lo->lo_mutex); lock((wq_completion)loop0); *** DEADLOCK *** 1 lock held by losetup/156417: #0: ffff9c7647395468 (&lo->lo_mutex){+.+.}-{3:3}, at: __loop_clr_fd+0x41/0x650 [loop] stack backtrace: CPU: 8 PID: 156417 Comm: losetup Not tainted 5.14.0-rc2-custom+ #34 Hardware name: QEMU Standard PC (Q35 + ICH9, 2009), BIOS 0.0.0 02/06/2015 Call Trace: dump_stack_lvl+0x57/0x72 check_noncircular+0x10a/0x120 __lock_acquire+0x1130/0x1dc0 lock_acquire+0xf5/0x320 ? flush_workqueue+0x84/0x600 flush_workqueue+0xae/0x600 ? flush_workqueue+0x84/0x600 drain_workqueue+0xa0/0x110 destroy_workqueue+0x36/0x250 __loop_clr_fd+0x9a/0x650 [loop] lo_ioctl+0x29d/0x780 [loop] ? __lock_acquire+0x3a0/0x1dc0 ? update_dl_rq_load_avg+0x152/0x360 ? lock_is_held_type+0xa5/0x120 ? find_held_lock.constprop.0+0x2b/0x80 block_ioctl+0x3f/0x50 __x64_sys_ioctl+0x83/0xb0 do_syscall_64+0x3b/0x90 entry_SYSCALL_64_after_hwframe+0x44/0xae RIP: 0033:0x7f645884de6b Usually the uuid_mutex exists to protect the fs_devices that map together all of the devices that match a specific uuid. In rm_device we're messing with the uuid of a device, so it makes sense to protect that here. However in doing that it pulls in a whole host of lockdep dependencies, as we call mnt_may_write() on the sb before we grab the uuid_mutex, thus we end up with the dependency chain under the uuid_mutex being added under the normal sb write dependency chain, which causes problems with loop devices. We don't need the uuid mutex here however. If we call btrfs_scan_one_device() before we scratch the super block we will find the fs_devices and not find the device itself and return EBUSY because the fs_devices is open. If we call it after the scratch happens it will not appear to be a valid btrfs file system. We do not need to worry about other fs_devices modifying operations here because we're protected by the exclusive operations locking. So drop the uuid_mutex here in order to fix the lockdep splat. A more detailed explanation from the discussion: We are worried about rm and scan racing with each other, before this change we'll zero the device out under the UUID mutex so when scan does run it'll make sure that it can go through the whole device scan thing without rm messing with us. We aren't worried if the scratch happens first, because the result is we don't think this is a btrfs device and we bail out. The only case we are concerned with is we scratch _after_ scan is able to read the superblock and gets a seemingly valid super block, so lets consider this case. Scan will call device_list_add() with the device we're removing. We'll call find_fsid_with_metadata_uuid() and get our fs_devices for this UUID. At this point we lock the fs_devices->device_list_mutex. This is what protects us in this case, but we have two cases here. 1. We aren't to the device removal part of the RM. We found our device, and device name matches our path, we go down and we set total_devices to our super number of devices, which doesn't affect anything because we haven't done the remove yet. 2. We are past the device removal part, which is protected by the device_list_mutex. Scan doesn't find the device, it goes down and does the if (fs_devices->opened) return -EBUSY; check and we bail out. Nothing about this situation is ideal, but the lockdep splat is real, and the fix is safe, tho admittedly a bit scary looking. Reviewed-by: Anand Jain <anand.jain@oracle.com> Signed-off-by: Josef Bacik <josef@toxicpanda.com> Reviewed-by: David Sterba <dsterba@suse.com> [ copy more from the discussion ] Signed-off-by: David Sterba <dsterba@suse.com>
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Attempting to defragment a Btrfs file containing a transparent huge page immediately deadlocks with the following stack trace: #0 context_switch (kernel/sched/core.c:4940:2) #1 __schedule (kernel/sched/core.c:6287:8) #2 schedule (kernel/sched/core.c:6366:3) #3 io_schedule (kernel/sched/core.c:8389:2) #4 wait_on_page_bit_common (mm/filemap.c:1356:4) #5 __lock_page (mm/filemap.c:1648:2) #6 lock_page (./include/linux/pagemap.h:625:3) #7 pagecache_get_page (mm/filemap.c:1910:4) #8 find_or_create_page (./include/linux/pagemap.h:420:9) #9 defrag_prepare_one_page (fs/btrfs/ioctl.c:1068:9) #10 defrag_one_range (fs/btrfs/ioctl.c:1326:14) #11 defrag_one_cluster (fs/btrfs/ioctl.c:1421:9) #12 btrfs_defrag_file (fs/btrfs/ioctl.c:1523:9) #13 btrfs_ioctl_defrag (fs/btrfs/ioctl.c:3117:9) #14 btrfs_ioctl (fs/btrfs/ioctl.c:4872:10) #15 vfs_ioctl (fs/ioctl.c:51:10) #16 __do_sys_ioctl (fs/ioctl.c:874:11) #17 __se_sys_ioctl (fs/ioctl.c:860:1) #18 __x64_sys_ioctl (fs/ioctl.c:860:1) #19 do_syscall_x64 (arch/x86/entry/common.c:50:14) #20 do_syscall_64 (arch/x86/entry/common.c:80:7) #21 entry_SYSCALL_64+0x7c/0x15b (arch/x86/entry/entry_64.S:113) A huge page is represented by a compound page, which consists of a struct page for each PAGE_SIZE page within the huge page. The first struct page is the "head page", and the remaining are "tail pages". Defragmentation attempts to lock each page in the range. However, lock_page() on a tail page actually locks the corresponding head page. So, if defragmentation tries to lock more than one struct page in a compound page, it tries to lock the same head page twice and deadlocks with itself. Ideally, we should be able to defragment transparent huge pages. However, THP for filesystems is currently read-only, so a lot of code is not ready to use huge pages for I/O. For now, let's just return ETXTBUSY. This can be reproduced with the following on a kernel with CONFIG_READ_ONLY_THP_FOR_FS=y: $ cat create_thp_file.c #include <fcntl.h> #include <stdbool.h> #include <stdio.h> #include <stdint.h> #include <stdlib.h> #include <unistd.h> #include <sys/mman.h> static const char zeroes[1024 * 1024]; static const size_t FILE_SIZE = 2 * 1024 * 1024; int main(int argc, char **argv) { if (argc != 2) { fprintf(stderr, "usage: %s PATH\n", argv[0]); return EXIT_FAILURE; } int fd = creat(argv[1], 0777); if (fd == -1) { perror("creat"); return EXIT_FAILURE; } size_t written = 0; while (written < FILE_SIZE) { ssize_t ret = write(fd, zeroes, sizeof(zeroes) < FILE_SIZE - written ? sizeof(zeroes) : FILE_SIZE - written); if (ret < 0) { perror("write"); return EXIT_FAILURE; } written += ret; } close(fd); fd = open(argv[1], O_RDONLY); if (fd == -1) { perror("open"); return EXIT_FAILURE; } /* * Reserve some address space so that we can align the file mapping to * the huge page size. */ void *placeholder_map = mmap(NULL, FILE_SIZE * 2, PROT_NONE, MAP_PRIVATE | MAP_ANONYMOUS, -1, 0); if (placeholder_map == MAP_FAILED) { perror("mmap (placeholder)"); return EXIT_FAILURE; } void *aligned_address = (void *)(((uintptr_t)placeholder_map + FILE_SIZE - 1) & ~(FILE_SIZE - 1)); void *map = mmap(aligned_address, FILE_SIZE, PROT_READ | PROT_EXEC, MAP_SHARED | MAP_FIXED, fd, 0); if (map == MAP_FAILED) { perror("mmap"); return EXIT_FAILURE; } if (madvise(map, FILE_SIZE, MADV_HUGEPAGE) < 0) { perror("madvise"); return EXIT_FAILURE; } char *line = NULL; size_t line_capacity = 0; FILE *smaps_file = fopen("/proc/self/smaps", "r"); if (!smaps_file) { perror("fopen"); return EXIT_FAILURE; } for (;;) { for (size_t off = 0; off < FILE_SIZE; off += 4096) ((volatile char *)map)[off]; ssize_t ret; bool this_mapping = false; while ((ret = getline(&line, &line_capacity, smaps_file)) > 0) { unsigned long start, end, huge; if (sscanf(line, "%lx-%lx", &start, &end) == 2) { this_mapping = (start <= (uintptr_t)map && (uintptr_t)map < end); } else if (this_mapping && sscanf(line, "FilePmdMapped: %ld", &huge) == 1 && huge > 0) { return EXIT_SUCCESS; } } sleep(6); rewind(smaps_file); fflush(smaps_file); } } $ ./create_thp_file huge $ btrfs fi defrag -czstd ./huge Reviewed-by: Josef Bacik <josef@toxicpanda.com> Signed-off-by: Omar Sandoval <osandov@fb.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
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The Xen interrupt injection for event channels relies on accessing the
guest's vcpu_info structure in __kvm_xen_has_interrupt(), through a
gfn_to_hva_cache.
This requires the srcu lock to be held, which is mostly the case except
for this code path:
[ 11.822877] WARNING: suspicious RCU usage
[ 11.822965] -----------------------------
[ 11.823013] include/linux/kvm_host.h:664 suspicious rcu_dereference_check() usage!
[ 11.823131]
[ 11.823131] other info that might help us debug this:
[ 11.823131]
[ 11.823196]
[ 11.823196] rcu_scheduler_active = 2, debug_locks = 1
[ 11.823253] 1 lock held by dom:0/90:
[ 11.823292] #0: ffff998956ec8118 (&vcpu->mutex){+.+.}, at: kvm_vcpu_ioctl+0x85/0x680
[ 11.823379]
[ 11.823379] stack backtrace:
[ 11.823428] CPU: 2 PID: 90 Comm: dom:0 Kdump: loaded Not tainted 5.4.34+ #5
[ 11.823496] Hardware name: QEMU Standard PC (Q35 + ICH9, 2009), BIOS rel-1.12.1-0-ga5cab58e9a3f-prebuilt.qemu.org 04/01/2014
[ 11.823612] Call Trace:
[ 11.823645] dump_stack+0x7a/0xa5
[ 11.823681] lockdep_rcu_suspicious+0xc5/0x100
[ 11.823726] __kvm_xen_has_interrupt+0x179/0x190
[ 11.823773] kvm_cpu_has_extint+0x6d/0x90
[ 11.823813] kvm_cpu_accept_dm_intr+0xd/0x40
[ 11.823853] kvm_vcpu_ready_for_interrupt_injection+0x20/0x30
< post_kvm_run_save() inlined here >
[ 11.823906] kvm_arch_vcpu_ioctl_run+0x135/0x6a0
[ 11.823947] kvm_vcpu_ioctl+0x263/0x680
Fixes: 40da8cc ("KVM: x86/xen: Add event channel interrupt vector upcall")
Signed-off-by: David Woodhouse <dwmw@amazon.co.uk>
Cc: stable@vger.kernel.org
Message-Id: <606aaaf29fca3850a63aa4499826104e77a72346.camel@infradead.org>
Signed-off-by: Paolo Bonzini <pbonzini@redhat.com>
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Nov 23, 2021
Convert the netfs helper library to use folios throughout, convert the 9p and afs filesystems to use folios in their file I/O paths and convert the ceph filesystem to use just enough folios to compile. With these changes, afs passes -g quick xfstests. Changes ======= ver #5: - Got rid of folio_end{io,_read,_write}() and inlined the stuff it does instead (Willy decided he didn't want this after all). ver #4: - Fixed a bug in afs_redirty_page() whereby it didn't set the next page index in the loop and returned too early. - Simplified a check in v9fs_vfs_write_folio_locked()[1]. - Undid a change to afs_symlink_readpage()[1]. - Used offset_in_folio() in afs_write_end()[1]. - Changed from using page_endio() to folio_end{io,_read,_write}()[1]. ver #2: - Add 9p foliation. Signed-off-by: David Howells <dhowells@redhat.com> Reviewed-by: Jeff Layton <jlayton@kernel.org> Tested-by: Jeff Layton <jlayton@kernel.org> Tested-by: Dominique Martinet <asmadeus@codewreck.org> Tested-by: kafs-testing@auristor.com cc: Matthew Wilcox (Oracle) <willy@infradead.org> cc: Marc Dionne <marc.dionne@auristor.com> cc: Ilya Dryomov <idryomov@gmail.com> cc: Dominique Martinet <asmadeus@codewreck.org> cc: v9fs-developer@lists.sourceforge.net cc: linux-afs@lists.infradead.org cc: ceph-devel@vger.kernel.org cc: linux-cachefs@redhat.com Link: https://lore.kernel.org/r/YYKa3bfQZxK5/wDN@casper.infradead.org/ [1] Link: https://lore.kernel.org/r/2408234.1628687271@warthog.procyon.org.uk/ # rfc Link: https://lore.kernel.org/r/162877311459.3085614.10601478228012245108.stgit@warthog.procyon.org.uk/ Link: https://lore.kernel.org/r/162981153551.1901565.3124454657133703341.stgit@warthog.procyon.org.uk/ Link: https://lore.kernel.org/r/163005745264.2472992.9852048135392188995.stgit@warthog.procyon.org.uk/ # v2 Link: https://lore.kernel.org/r/163584187452.4023316.500389675405550116.stgit@warthog.procyon.org.uk/ # v3 Link: https://lore.kernel.org/r/163649328026.309189.1124218109373941936.stgit@warthog.procyon.org.uk/ # v4 Link: https://lore.kernel.org/r/163657852454.834781.9265101983152100556.stgit@warthog.procyon.org.uk/ # v5
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The exit function fixes a memory leak with the src field as detected by
leak sanitizer. An example of which is:
Indirect leak of 25133184 byte(s) in 207 object(s) allocated from:
#0 0x7f199ecfe987 in __interceptor_calloc libsanitizer/asan/asan_malloc_linux.cpp:154
#1 0x55defe638224 in annotated_source__alloc_histograms util/annotate.c:803
#2 0x55defe6397e4 in symbol__hists util/annotate.c:952
#3 0x55defe639908 in symbol__inc_addr_samples util/annotate.c:968
#4 0x55defe63aa29 in hist_entry__inc_addr_samples util/annotate.c:1119
#5 0x55defe499a79 in hist_iter__report_callback tools/perf/builtin-report.c:182
#6 0x55defe7a859d in hist_entry_iter__add util/hist.c:1236
#7 0x55defe49aa63 in process_sample_event tools/perf/builtin-report.c:315
#8 0x55defe731bc8 in evlist__deliver_sample util/session.c:1473
#9 0x55defe731e38 in machines__deliver_event util/session.c:1510
#10 0x55defe732a23 in perf_session__deliver_event util/session.c:1590
#11 0x55defe72951e in ordered_events__deliver_event util/session.c:183
#12 0x55defe740082 in do_flush util/ordered-events.c:244
#13 0x55defe7407cb in __ordered_events__flush util/ordered-events.c:323
#14 0x55defe740a61 in ordered_events__flush util/ordered-events.c:341
#15 0x55defe73837f in __perf_session__process_events util/session.c:2390
#16 0x55defe7385ff in perf_session__process_events util/session.c:2420
...
Signed-off-by: Ian Rogers <irogers@google.com>
Acked-by: Namhyung Kim <namhyung@kernel.org>
Cc: Alexander Shishkin <alexander.shishkin@linux.intel.com>
Cc: Ingo Molnar <mingo@redhat.com>
Cc: James Clark <james.clark@arm.com>
Cc: Jiri Olsa <jolsa@redhat.com>
Cc: Kajol Jain <kjain@linux.ibm.com>
Cc: Mark Rutland <mark.rutland@arm.com>
Cc: Martin Liška <mliska@suse.cz>
Cc: Peter Zijlstra <peterz@infradead.org>
Cc: Stephane Eranian <eranian@google.com>
Link: https://lore.kernel.org/r/20211112035124.94327-3-irogers@google.com
Signed-off-by: Arnaldo Carvalho de Melo <acme@redhat.com>
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When reading the voltage: $ cat /sys/bus/iio/devices/iio\:device0/in_voltage0_raw Lockdep complains: [ 153.910616] ====================================================== [ 153.916918] WARNING: possible circular locking dependency detected [ 153.923221] 5.14.0+ #5 Not tainted [ 153.926692] ------------------------------------------------------ [ 153.932992] cat/717 is trying to acquire lock: [ 153.937525] c2585358 (&indio_dev->mlock){+.+.}-{3:3}, at: iio_device_claim_direct_mode+0x28/0x44 [ 153.946541] but task is already holding lock: [ 153.952487] c2585860 (&dln2->mutex){+.+.}-{3:3}, at: dln2_adc_read_raw+0x94/0x2bc [dln2_adc] [ 153.961152] which lock already depends on the new lock. Fix this by not calling into the iio core underneath the dln2->mutex lock. Fixes: 7c0299e ("iio: adc: Add support for DLN2 ADC") Cc: Jack Andersen <jackoalan@gmail.com> Signed-off-by: Noralf Trønnes <noralf@tronnes.org> Link: https://lore.kernel.org/r/20211018113731.25723-1-noralf@tronnes.org Cc: <Stable@vger.kernel.org> Signed-off-by: Jonathan Cameron <Jonathan.Cameron@huawei.com>
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With preemption enabled (CONFIG_DEBUG_PREEMPT=y), the following appeared when rnbd client tries to map remote block device. BUG: using smp_processor_id() in preemptible [00000000] code: bash/1733 caller is debug_smp_processor_id+0x17/0x20 CPU: 0 PID: 1733 Comm: bash Not tainted 5.16.0-rc1 #5 Hardware name: QEMU Standard PC (Q35 + ICH9, 2009), BIOS rel-1.14.0-0-g155821a-rebuilt.opensuse.org 04/01/2014 Call Trace: <TASK> dump_stack_lvl+0x5d/0x78 dump_stack+0x10/0x12 check_preemption_disabled+0xe4/0xf0 debug_smp_processor_id+0x17/0x20 rtrs_clt_update_all_stats+0x3b/0x70 [rtrs_client] rtrs_clt_read_req+0xc3/0x380 [rtrs_client] ? rtrs_clt_init_req+0xe3/0x120 [rtrs_client] rtrs_clt_request+0x1a7/0x320 [rtrs_client] ? 0xffffffffc0ab1000 send_usr_msg+0xbf/0x160 [rnbd_client] ? rnbd_clt_put_sess+0x60/0x60 [rnbd_client] ? send_usr_msg+0x160/0x160 [rnbd_client] ? sg_alloc_table+0x27/0xb0 ? sg_zero_buffer+0xd0/0xd0 send_msg_sess_info+0xe9/0x180 [rnbd_client] ? rnbd_clt_put_sess+0x60/0x60 [rnbd_client] ? blk_mq_alloc_tag_set+0x2ef/0x370 rnbd_clt_map_device+0xba8/0xcd0 [rnbd_client] ? send_msg_open+0x200/0x200 [rnbd_client] rnbd_clt_map_device_store+0x3e5/0x620 [rnbd_client To supress the calltrace, let's call get_cpu_ptr/put_cpu_ptr pair in rtrs_clt_update_rdma_stats to disable preemption when accessing per-cpu variable. While at it, let's make the similar change in rtrs_clt_update_wc_stats. And for rtrs_clt_inc_failover_cnt, though it was only called inside rcu section, but it still can be preempted in case CONFIG_PREEMPT_RCU is enabled, so change it to {get,put}_cpu_ptr pair either. Link: https://lore.kernel.org/r/20211128133501.38710-1-guoqing.jiang@linux.dev Signed-off-by: Guoqing Jiang <guoqing.jiang@linux.dev> Reviewed-by: Leon Romanovsky <leonro@nvidia.com> Signed-off-by: Jason Gunthorpe <jgg@nvidia.com>
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When kmalloc in nfc_genl_dump_devices() fails then nfc_genl_dump_devices_done() segfaults as below KASAN: null-ptr-deref in range [0x0000000000000008-0x000000000000000f] CPU: 0 PID: 25 Comm: kworker/0:1 Not tainted 5.16.0-rc4-01180-g2a987e65025e-dirty #5 Hardware name: QEMU Standard PC (i440FX + PIIX, 1996), BIOS 1.14.0-6.fc35 04/01/2014 Workqueue: events netlink_sock_destruct_work RIP: 0010:klist_iter_exit+0x26/0x80 Call Trace: <TASK> class_dev_iter_exit+0x15/0x20 nfc_genl_dump_devices_done+0x3b/0x50 genl_lock_done+0x84/0xd0 netlink_sock_destruct+0x8f/0x270 __sk_destruct+0x64/0x3b0 sk_destruct+0xa8/0xd0 __sk_free+0x2e8/0x3d0 sk_free+0x51/0x90 netlink_sock_destruct_work+0x1c/0x20 process_one_work+0x411/0x710 worker_thread+0x6fd/0xa80 Link: https://syzkaller.appspot.com/bug?id=fc0fa5a53db9edd261d56e74325419faf18bd0df Reported-by: syzbot+f9f76f4a0766420b4a02@syzkaller.appspotmail.com Signed-off-by: Tadeusz Struk <tadeusz.struk@linaro.org> Reviewed-by: Krzysztof Kozlowski <krzysztof.kozlowski@canonical.com> Link: https://lore.kernel.org/r/20211208182742.340542-1-tadeusz.struk@linaro.org Signed-off-by: Jakub Kicinski <kuba@kernel.org>
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For whatever reason, some devices like QCA6390, WCN6855 using ath11k are not in M3 state during PM resume, but still functional. The mhi_pm_resume should then not fail in those cases, and let the higher level device specific stack continue resuming process. Add an API mhi_pm_resume_force(), to force resuming irrespective of the current MHI state. This fixes a regression with non functional ath11k WiFi after suspend/resume cycle on some machines. Bug report: https://bugzilla.kernel.org/show_bug.cgi?id=214179 Link: https://lore.kernel.org/regressions/871r5p0x2u.fsf@codeaurora.org/ Fixes: 020d3b2 ("bus: mhi: Early MHI resume failure in non M3 state") Cc: stable@vger.kernel.org #5.13 Reported-by: Kalle Valo <kvalo@codeaurora.org> Reported-by: Pengyu Ma <mapengyu@gmail.com> Tested-by: Kalle Valo <kvalo@kernel.org> Acked-by: Kalle Valo <kvalo@kernel.org> Signed-off-by: Loic Poulain <loic.poulain@linaro.org> [mani: Switched to API, added bug report, reported-by tags and CCed stable] Signed-off-by: Manivannan Sadhasivam <manivannan.sadhasivam@linaro.org> Link: https://lore.kernel.org/r/20211209131633.4168-1-manivannan.sadhasivam@linaro.org Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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The fixed commit attempts to close inject.output even if it was never opened e.g. $ perf record uname Linux [ perf record: Woken up 1 times to write data ] [ perf record: Captured and wrote 0.002 MB perf.data (7 samples) ] $ perf inject -i perf.data --vm-time-correlation=dry-run Segmentation fault (core dumped) $ gdb --quiet perf Reading symbols from perf... (gdb) r inject -i perf.data --vm-time-correlation=dry-run Starting program: /home/ahunter/bin/perf inject -i perf.data --vm-time-correlation=dry-run [Thread debugging using libthread_db enabled] Using host libthread_db library "/lib/x86_64-linux-gnu/libthread_db.so.1". Program received signal SIGSEGV, Segmentation fault. 0x00007eff8afeef5b in _IO_new_fclose (fp=0x0) at iofclose.c:48 48 iofclose.c: No such file or directory. (gdb) bt #0 0x00007eff8afeef5b in _IO_new_fclose (fp=0x0) at iofclose.c:48 #1 0x0000557fc7b74f92 in perf_data__close (data=data@entry=0x7ffcdafa6578) at util/data.c:376 #2 0x0000557fc7a6b807 in cmd_inject (argc=<optimized out>, argv=<optimized out>) at builtin-inject.c:1085 #3 0x0000557fc7ac4783 in run_builtin (p=0x557fc8074878 <commands+600>, argc=4, argv=0x7ffcdafb6a60) at perf.c:313 #4 0x0000557fc7a25d5c in handle_internal_command (argv=<optimized out>, argc=<optimized out>) at perf.c:365 #5 run_argv (argcp=<optimized out>, argv=<optimized out>) at perf.c:409 #6 main (argc=4, argv=0x7ffcdafb6a60) at perf.c:539 (gdb) Fixes: 02e6246 ("perf inject: Close inject.output on exit") Signed-off-by: Adrian Hunter <adrian.hunter@intel.com> Tested-by: Arnaldo Carvalho de Melo <acme@redhat.com> Cc: Jiri Olsa <jolsa@redhat.com> Cc: Namhyung Kim <namhyung@kernel.org> Cc: Riccardo Mancini <rickyman7@gmail.com> Cc: stable@vger.kernel.org Link: http://lore.kernel.org/lkml/20211213084829.114772-2-adrian.hunter@intel.com Signed-off-by: Arnaldo Carvalho de Melo <acme@redhat.com>
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The fixed commit attempts to get the output file descriptor even if the file was never opened e.g. $ perf record uname Linux [ perf record: Woken up 1 times to write data ] [ perf record: Captured and wrote 0.002 MB perf.data (7 samples) ] $ perf inject -i perf.data --vm-time-correlation=dry-run Segmentation fault (core dumped) $ gdb --quiet perf Reading symbols from perf... (gdb) r inject -i perf.data --vm-time-correlation=dry-run Starting program: /home/ahunter/bin/perf inject -i perf.data --vm-time-correlation=dry-run [Thread debugging using libthread_db enabled] Using host libthread_db library "/lib/x86_64-linux-gnu/libthread_db.so.1". Program received signal SIGSEGV, Segmentation fault. __GI___fileno (fp=0x0) at fileno.c:35 35 fileno.c: No such file or directory. (gdb) bt #0 __GI___fileno (fp=0x0) at fileno.c:35 #1 0x00005621e48dd987 in perf_data__fd (data=0x7fff4c68bd08) at util/data.h:72 #2 perf_data__fd (data=0x7fff4c68bd08) at util/data.h:69 #3 cmd_inject (argc=<optimized out>, argv=0x7fff4c69c1f0) at builtin-inject.c:1017 #4 0x00005621e4936783 in run_builtin (p=0x5621e4ee6878 <commands+600>, argc=4, argv=0x7fff4c69c1f0) at perf.c:313 #5 0x00005621e4897d5c in handle_internal_command (argv=<optimized out>, argc=<optimized out>) at perf.c:365 #6 run_argv (argcp=<optimized out>, argv=<optimized out>) at perf.c:409 #7 main (argc=4, argv=0x7fff4c69c1f0) at perf.c:539 (gdb) Fixes: 0ae0389 ("perf tools: Pass a fd to perf_file_header__read_pipe()") Signed-off-by: Adrian Hunter <adrian.hunter@intel.com> Tested-by: Arnaldo Carvalho de Melo <acme@redhat.com> Cc: Jiri Olsa <jolsa@redhat.com> Cc: Namhyung Kim <namhyung@kernel.org> Cc: Riccardo Mancini <rickyman7@gmail.com> Cc: stable@vger.kernel.org Link: http://lore.kernel.org/lkml/20211213084829.114772-3-adrian.hunter@intel.com Signed-off-by: Arnaldo Carvalho de Melo <acme@redhat.com>
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As guest_irq is coming from KVM_IRQFD API call, it may trigger crash in svm_update_pi_irte() due to out-of-bounds: crash> bt PID: 22218 TASK: ffff951a6ad74980 CPU: 73 COMMAND: "vcpu8" #0 [ffffb1ba6707fa40] machine_kexec at ffffffff8565b397 #1 [ffffb1ba6707fa90] __crash_kexec at ffffffff85788a6d #2 [ffffb1ba6707fb58] crash_kexec at ffffffff8578995d #3 [ffffb1ba6707fb70] oops_end at ffffffff85623c0d #4 [ffffb1ba6707fb90] no_context at ffffffff856692c9 #5 [ffffb1ba6707fbf8] exc_page_fault at ffffffff85f95b51 #6 [ffffb1ba6707fc50] asm_exc_page_fault at ffffffff86000ace [exception RIP: svm_update_pi_irte+227] RIP: ffffffffc0761b53 RSP: ffffb1ba6707fd08 RFLAGS: 00010086 RAX: ffffb1ba6707fd78 RBX: ffffb1ba66d91000 RCX: 0000000000000001 RDX: 00003c803f63f1c0 RSI: 000000000000019a RDI: ffffb1ba66db2ab8 RBP: 000000000000019a R8: 0000000000000040 R9: ffff94ca41b82200 R10: ffffffffffffffcf R11: 0000000000000001 R12: 0000000000000001 R13: 0000000000000001 R14: ffffffffffffffcf R15: 000000000000005f ORIG_RAX: ffffffffffffffff CS: 0010 SS: 0018 #7 [ffffb1ba6707fdb8] kvm_irq_routing_update at ffffffffc09f19a1 [kvm] #8 [ffffb1ba6707fde0] kvm_set_irq_routing at ffffffffc09f2133 [kvm] #9 [ffffb1ba6707fe18] kvm_vm_ioctl at ffffffffc09ef544 [kvm] RIP: 00007f143c36488b RSP: 00007f143a4e04b8 RFLAGS: 00000246 RAX: ffffffffffffffda RBX: 00007f05780041d0 RCX: 00007f143c36488b RDX: 00007f05780041d0 RSI: 000000004008ae6a RDI: 0000000000000020 RBP: 00000000000004e8 R8: 0000000000000008 R9: 00007f05780041e0 R10: 00007f0578004560 R11: 0000000000000246 R12: 00000000000004e0 R13: 000000000000001a R14: 00007f1424001c60 R15: 00007f0578003bc0 ORIG_RAX: 0000000000000010 CS: 0033 SS: 002b Vmx have been fix this in commit 3a8b067 (KVM: VMX: Do not BUG() on out-of-bounds guest IRQ), so we can just copy source from that to fix this. Co-developed-by: Yi Liu <liu.yi24@zte.com.cn> Signed-off-by: Yi Liu <liu.yi24@zte.com.cn> Signed-off-by: Yi Wang <wang.yi59@zte.com.cn> Message-Id: <20220309113025.44469-1-wang.yi59@zte.com.cn> Cc: stable@vger.kernel.org Signed-off-by: Paolo Bonzini <pbonzini@redhat.com>
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There is possible circular locking dependency detected on event_mutex
(see below logs). This is due to set fail safe mode is done at
dp_panel_read_sink_caps() within event_mutex scope. To break this
possible circular locking, this patch move setting fail safe mode
out of event_mutex scope.
[ 23.958078] ======================================================
[ 23.964430] WARNING: possible circular locking dependency detected
[ 23.970777] 5.17.0-rc2-lockdep-00088-g05241de1f69e #148 Not tainted
[ 23.977219] ------------------------------------------------------
[ 23.983570] DrmThread/1574 is trying to acquire lock:
[ 23.988763] ffffff808423aab0 (&dp->event_mutex){+.+.}-{3:3}, at: msm_dp_displ ay_enable+0x58/0x164
[ 23.997895]
[ 23.997895] but task is already holding lock:
[ 24.003895] ffffff808420b280 (&kms->commit_lock[i]/1){+.+.}-{3:3}, at: lock_c rtcs+0x80/0x8c
[ 24.012495]
[ 24.012495] which lock already depends on the new lock.
[ 24.012495]
[ 24.020886]
[ 24.020886] the existing dependency chain (in reverse order) is:
[ 24.028570]
[ 24.028570] -> #5 (&kms->commit_lock[i]/1){+.+.}-{3:3}:
[ 24.035472] __mutex_lock+0xc8/0x384
[ 24.039695] mutex_lock_nested+0x54/0x74
[ 24.044272] lock_crtcs+0x80/0x8c
[ 24.048222] msm_atomic_commit_tail+0x1e8/0x3d0
[ 24.053413] commit_tail+0x7c/0xfc
[ 24.057452] drm_atomic_helper_commit+0x158/0x15c
[ 24.062826] drm_atomic_commit+0x60/0x74
[ 24.067403] drm_mode_atomic_ioctl+0x6b0/0x908
[ 24.072508] drm_ioctl_kernel+0xe8/0x168
[ 24.077086] drm_ioctl+0x320/0x370
[ 24.081123] drm_compat_ioctl+0x40/0xdc
[ 24.085602] __arm64_compat_sys_ioctl+0xe0/0x150
[ 24.090895] invoke_syscall+0x80/0x114
[ 24.095294] el0_svc_common.constprop.3+0xc4/0xf8
[ 24.100668] do_el0_svc_compat+0x2c/0x54
[ 24.105242] el0_svc_compat+0x4c/0xe4
[ 24.109548] el0t_32_sync_handler+0xc4/0xf4
[ 24.114381] el0t_32_sync+0x178
[ 24.118688]
[ 24.118688] -> #4 (&kms->commit_lock[i]){+.+.}-{3:3}:
[ 24.125408] __mutex_lock+0xc8/0x384
[ 24.129628] mutex_lock_nested+0x54/0x74
[ 24.134204] lock_crtcs+0x80/0x8c
[ 24.138155] msm_atomic_commit_tail+0x1e8/0x3d0
[ 24.143345] commit_tail+0x7c/0xfc
[ 24.147382] drm_atomic_helper_commit+0x158/0x15c
[ 24.152755] drm_atomic_commit+0x60/0x74
[ 24.157323] drm_atomic_helper_set_config+0x68/0x90
[ 24.162869] drm_mode_setcrtc+0x394/0x648
[ 24.167535] drm_ioctl_kernel+0xe8/0x168
[ 24.172102] drm_ioctl+0x320/0x370
[ 24.176135] drm_compat_ioctl+0x40/0xdc
[ 24.180621] __arm64_compat_sys_ioctl+0xe0/0x150
[ 24.185904] invoke_syscall+0x80/0x114
[ 24.190302] el0_svc_common.constprop.3+0xc4/0xf8
[ 24.195673] do_el0_svc_compat+0x2c/0x54
[ 24.200241] el0_svc_compat+0x4c/0xe4
[ 24.204544] el0t_32_sync_handler+0xc4/0xf4
[ 24.209378] el0t_32_sync+0x174/0x178
[ 24.213680] -> #3 (crtc_ww_class_mutex){+.+.}-{3:3}:
[ 24.220308] __ww_mutex_lock.constprop.20+0xe8/0x878
[ 24.225951] ww_mutex_lock+0x60/0xd0
[ 24.230166] modeset_lock+0x190/0x19c
[ 24.234467] drm_modeset_lock+0x34/0x54
[ 24.238953] drmm_mode_config_init+0x550/0x764
[ 24.244065] msm_drm_bind+0x170/0x59c
[ 24.248374] try_to_bring_up_master+0x244/0x294
[ 24.253572] __component_add+0xf4/0x14c
[ 24.258057] component_add+0x2c/0x38
[ 24.262273] dsi_dev_attach+0x2c/0x38
[ 24.266575] dsi_host_attach+0xc4/0x120
[ 24.271060] mipi_dsi_attach+0x34/0x48
[ 24.275456] devm_mipi_dsi_attach+0x28/0x68
[ 24.280298] ti_sn_bridge_probe+0x2b4/0x2dc
[ 24.285137] auxiliary_bus_probe+0x78/0x90
[ 24.289893] really_probe+0x1e4/0x3d8
[ 24.294194] __driver_probe_device+0x14c/0x164
[ 24.299298] driver_probe_device+0x54/0xf8
[ 24.304043] __device_attach_driver+0xb4/0x118
[ 24.309145] bus_for_each_drv+0xb0/0xd4
[ 24.313628] __device_attach+0xcc/0x158
[ 24.318112] device_initial_probe+0x24/0x30
[ 24.322954] bus_probe_device+0x38/0x9c
[ 24.327439] deferred_probe_work_func+0xd4/0xf0
[ 24.332628] process_one_work+0x2f0/0x498
[ 24.337289] process_scheduled_works+0x44/0x48
[ 24.342391] worker_thread+0x1e4/0x26c
[ 24.346788] kthread+0xe4/0xf4
[ 24.350470] ret_from_fork+0x10/0x20
[ 24.354683]
[ 24.354683]
[ 24.354683] -> #2 (crtc_ww_class_acquire){+.+.}-{0:0}:
[ 24.361489] drm_modeset_acquire_init+0xe4/0x138
[ 24.366777] drm_helper_probe_detect_ctx+0x44/0x114
[ 24.372327] check_connector_changed+0xbc/0x198
[ 24.377517] drm_helper_hpd_irq_event+0xcc/0x11c
[ 24.382804] dsi_hpd_worker+0x24/0x30
[ 24.387104] process_one_work+0x2f0/0x498
[ 24.391762] worker_thread+0x1d0/0x26c
[ 24.396158] kthread+0xe4/0xf4
[ 24.399840] ret_from_fork+0x10/0x20
[ 24.404053]
[ 24.404053] -> #1 (&dev->mode_config.mutex){+.+.}-{3:3}:
[ 24.411032] __mutex_lock+0xc8/0x384
[ 24.415247] mutex_lock_nested+0x54/0x74
[ 24.419819] dp_panel_read_sink_caps+0x23c/0x26c
[ 24.425108] dp_display_process_hpd_high+0x34/0xd4
[ 24.430570] dp_display_usbpd_configure_cb+0x30/0x3c
[ 24.436205] hpd_event_thread+0x2ac/0x550
[ 24.440864] kthread+0xe4/0xf4
[ 24.444544] ret_from_fork+0x10/0x20
[ 24.448757]
[ 24.448757] -> #0 (&dp->event_mutex){+.+.}-{3:3}:
[ 24.455116] __lock_acquire+0xe2c/0x10d8
[ 24.459690] lock_acquire+0x1ac/0x2d0
[ 24.463988] __mutex_lock+0xc8/0x384
[ 24.468201] mutex_lock_nested+0x54/0x74
[ 24.472773] msm_dp_display_enable+0x58/0x164
[ 24.477789] dp_bridge_enable+0x24/0x30
[ 24.482273] drm_atomic_bridge_chain_enable+0x78/0x9c
[ 24.488006] drm_atomic_helper_commit_modeset_enables+0x1bc/0x244
[ 24.494801] msm_atomic_commit_tail+0x248/0x3d0
[ 24.499992] commit_tail+0x7c/0xfc
[ 24.504031] drm_atomic_helper_commit+0x158/0x15c
[ 24.509404] drm_atomic_commit+0x60/0x74
[ 24.513976] drm_mode_atomic_ioctl+0x6b0/0x908
[ 24.519079] drm_ioctl_kernel+0xe8/0x168
[ 24.523650] drm_ioctl+0x320/0x370
[ 24.527689] drm_compat_ioctl+0x40/0xdc
[ 24.532175] __arm64_compat_sys_ioctl+0xe0/0x150
[ 24.537463] invoke_syscall+0x80/0x114
[ 24.541861] el0_svc_common.constprop.3+0xc4/0xf8
[ 24.547235] do_el0_svc_compat+0x2c/0x54
[ 24.551806] el0_svc_compat+0x4c/0xe4
[ 24.556106] el0t_32_sync_handler+0xc4/0xf4
[ 24.560948] el0t_32_sync+0x174/0x178
Changes in v2:
-- add circular lockiing trace
Fixes: d4aca42 ("drm/msm/dp: always add fail-safe mode into connector mode list")
Signed-off-by: Kuogee Hsieh <quic_khsieh@quicinc.com>
Reviewed-by: Dmitry Baryshkov <dmitry.baryshkov@linaro.org>
Patchwork: https://patchwork.freedesktop.org/patch/481396/
Link: https://lore.kernel.org/r/1649451894-554-1-git-send-email-quic_khsieh@quicinc.com
Signed-off-by: Dmitry Baryshkov <dmitry.baryshkov@linaro.org>
Signed-off-by: Rob Clark <robdclark@chromium.org>
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Our detector found a concurrent use-after-free bug when detaching an
NCI device. The main reason for this bug is the unexpected scheduling
between the used delayed mechanism (timer and workqueue).
The race can be demonstrated below:
Thread-1 Thread-2
| nci_dev_up()
| nci_open_device()
| __nci_request(nci_reset_req)
| nci_send_cmd
| queue_work(cmd_work)
nci_unregister_device() |
nci_close_device() | ...
del_timer_sync(cmd_timer)[1] |
... | Worker
nci_free_device() | nci_cmd_work()
kfree(ndev)[3] | mod_timer(cmd_timer)[2]
In short, the cleanup routine thought that the cmd_timer has already
been detached by [1] but the mod_timer can re-attach the timer [2], even
it is already released [3], resulting in UAF.
This UAF is easy to trigger, crash trace by POC is like below
[ 66.703713] ==================================================================
[ 66.703974] BUG: KASAN: use-after-free in enqueue_timer+0x448/0x490
[ 66.703974] Write of size 8 at addr ffff888009fb7058 by task kworker/u4:1/33
[ 66.703974]
[ 66.703974] CPU: 1 PID: 33 Comm: kworker/u4:1 Not tainted 5.18.0-rc2 #5
[ 66.703974] Workqueue: nfc2_nci_cmd_wq nci_cmd_work
[ 66.703974] Call Trace:
[ 66.703974] <TASK>
[ 66.703974] dump_stack_lvl+0x57/0x7d
[ 66.703974] print_report.cold+0x5e/0x5db
[ 66.703974] ? enqueue_timer+0x448/0x490
[ 66.703974] kasan_report+0xbe/0x1c0
[ 66.703974] ? enqueue_timer+0x448/0x490
[ 66.703974] enqueue_timer+0x448/0x490
[ 66.703974] __mod_timer+0x5e6/0xb80
[ 66.703974] ? mark_held_locks+0x9e/0xe0
[ 66.703974] ? try_to_del_timer_sync+0xf0/0xf0
[ 66.703974] ? lockdep_hardirqs_on_prepare+0x17b/0x410
[ 66.703974] ? queue_work_on+0x61/0x80
[ 66.703974] ? lockdep_hardirqs_on+0xbf/0x130
[ 66.703974] process_one_work+0x8bb/0x1510
[ 66.703974] ? lockdep_hardirqs_on_prepare+0x410/0x410
[ 66.703974] ? pwq_dec_nr_in_flight+0x230/0x230
[ 66.703974] ? rwlock_bug.part.0+0x90/0x90
[ 66.703974] ? _raw_spin_lock_irq+0x41/0x50
[ 66.703974] worker_thread+0x575/0x1190
[ 66.703974] ? process_one_work+0x1510/0x1510
[ 66.703974] kthread+0x2a0/0x340
[ 66.703974] ? kthread_complete_and_exit+0x20/0x20
[ 66.703974] ret_from_fork+0x22/0x30
[ 66.703974] </TASK>
[ 66.703974]
[ 66.703974] Allocated by task 267:
[ 66.703974] kasan_save_stack+0x1e/0x40
[ 66.703974] __kasan_kmalloc+0x81/0xa0
[ 66.703974] nci_allocate_device+0xd3/0x390
[ 66.703974] nfcmrvl_nci_register_dev+0x183/0x2c0
[ 66.703974] nfcmrvl_nci_uart_open+0xf2/0x1dd
[ 66.703974] nci_uart_tty_ioctl+0x2c3/0x4a0
[ 66.703974] tty_ioctl+0x764/0x1310
[ 66.703974] __x64_sys_ioctl+0x122/0x190
[ 66.703974] do_syscall_64+0x3b/0x90
[ 66.703974] entry_SYSCALL_64_after_hwframe+0x44/0xae
[ 66.703974]
[ 66.703974] Freed by task 406:
[ 66.703974] kasan_save_stack+0x1e/0x40
[ 66.703974] kasan_set_track+0x21/0x30
[ 66.703974] kasan_set_free_info+0x20/0x30
[ 66.703974] __kasan_slab_free+0x108/0x170
[ 66.703974] kfree+0xb0/0x330
[ 66.703974] nfcmrvl_nci_unregister_dev+0x90/0xd0
[ 66.703974] nci_uart_tty_close+0xdf/0x180
[ 66.703974] tty_ldisc_kill+0x73/0x110
[ 66.703974] tty_ldisc_hangup+0x281/0x5b0
[ 66.703974] __tty_hangup.part.0+0x431/0x890
[ 66.703974] tty_release+0x3a8/0xc80
[ 66.703974] __fput+0x1f0/0x8c0
[ 66.703974] task_work_run+0xc9/0x170
[ 66.703974] exit_to_user_mode_prepare+0x194/0x1a0
[ 66.703974] syscall_exit_to_user_mode+0x19/0x50
[ 66.703974] do_syscall_64+0x48/0x90
[ 66.703974] entry_SYSCALL_64_after_hwframe+0x44/0xae
To fix the UAF, this patch adds flush_workqueue() to ensure the
nci_cmd_work is finished before the following del_timer_sync.
This combination will promise the timer is actually detached.
Fixes: 6a2968a ("NFC: basic NCI protocol implementation")
Signed-off-by: Lin Ma <linma@zju.edu.cn>
Reviewed-by: Krzysztof Kozlowski <krzysztof.kozlowski@linaro.org>
Signed-off-by: David S. Miller <davem@davemloft.net>
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…e name Add prefix "lc#n" to thermal zones associated with the thermal objects found on line cards. For example thermal zone for module #9 located at line card #7 will have type: mlxsw-lc7-module9. And thermal zone for gearbox #3 located at line card #5 will have type: mlxsw-lc5-gearbox3. Signed-off-by: Vadim Pasternak <vadimp@nvidia.com> Reviewed-by: Jiri Pirko <jiri@nvidia.com> Signed-off-by: Ido Schimmel <idosch@nvidia.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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Ido Schimmel says: ==================== mlxsw: Preparations for line cards support Currently, mlxsw registers thermal zones as well as hwmon entries for objects such as transceiver modules and gearboxes. In upcoming modular systems, these objects are no longer found on the main board (i.e., slot 0), but on plug-able line cards. This patchset prepares mlxsw for such systems in terms of hwmon, thermal and cable access support. Patches #1-#3 gradually prepare mlxsw for transceiver modules access support for line cards by splitting some of the internal structures and some APIs. Patches #4-#5 gradually prepare mlxsw for hwmon support for line cards by splitting some of the internal structures and augmenting them with a slot index. Patches #6-#7 do the same for thermal zones. Patch #8 selects cooling device for binding to a thermal zone by exact name match to prevent binding to non-relevant devices. Patch #9 replaces internal define for thermal zone name length with a common define. ==================== Signed-off-by: David S. Miller <davem@davemloft.net>
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…de-initialization Add callback functions for line card thermal area initialization and de-initialization. Each line card is associated with the relevant thermal area, which may contain thermal zones for cages and gearboxes found on this line card. The line card thermal initialization / de-initialization APIs are to be called when line card is set to active / inactive state by got_active() / got_inactive() callbacks from line card state machine. For example thermal zone for module #9 located at line card #7 will have type: mlxsw-lc7-module9. And thermal zone for gearbox #2 located at line card #5 will have type: mlxsw-lc5-gearbox2. Signed-off-by: Vadim Pasternak <vadimp@nvidia.com> Signed-off-by: Ido Schimmel <idosch@nvidia.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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…-initialization Add callback functions for line card 'hwmon' initialization and de-initialization. Each line card is associated with the relevant 'hwmon' device, which may contain thermal attributes for the cages and gearboxes found on this line card. The line card 'hwmon' initialization / de-initialization APIs are to be called when line card is set to active / inactive state by got_active() / got_inactive() callbacks from line card state machine. For example cage temperature for module #9 located at line card #7 will be exposed by utility 'sensors' like: linecard#07 front panel 009: +32.0C (crit = +70.0C, emerg = +80.0C) And temperature for gearbox #3 located at line card #5 will be exposed like: linecard#05 gearbox 003: +41.0C (highest = +41.0C) Signed-off-by: Vadim Pasternak <vadimp@nvidia.com> Signed-off-by: Ido Schimmel <idosch@nvidia.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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Ido Schimmel says: ==================== mlxsw: Line cards status tracking When a line card is provisioned, netdevs corresponding to the ports found on the line card are registered. User space can then perform various logical configurations (e.g., splitting, setting MTU) on these netdevs. However, since the line card is not present / powered on (i.e., it is not in 'active' state), user space cannot access the various components found on the line card. For example, user space cannot read the temperature of gearboxes or transceiver modules found on the line card via hwmon / thermal. Similarly, it cannot dump the EEPROM contents of these transceiver modules. The above is only possible when the line card becomes active. This patchset solves the problem by tracking the status of each line card and invoking callbacks from interested parties when a line card becomes active / inactive. Patchset overview: Patch #1 adds the infrastructure in the line cards core that allows users to registers a set of callbacks that are invoked when a line card becomes active / inactive. To avoid races, if a line card is already active during registration, the got_active() callback is invoked. Patches #2-#3 are preparations. Patch #4 changes the port module core to register a set of callbacks with the line cards core. See detailed description with examples in the commit message. Patches #5-#6 do the same with regards to thermal / hwmon support, so that user space will be able to monitor the temperature of various components on the line card when it becomes active. ==================== Signed-off-by: David S. Miller <davem@davemloft.net>
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While handling PCI errors (AER flow) driver tries to disable NAPI [napi_disable()] after NAPI is deleted [__netif_napi_del()] which causes unexpected system hang/crash. System message log shows the following: ======================================= [ 3222.537510] EEH: Detected PCI bus error on PHB#384-PE#800000 [ 3222.537511] EEH: This PCI device has failed 2 times in the last hour and will be permanently disabled after 5 failures. [ 3222.537512] EEH: Notify device drivers to shutdown [ 3222.537513] EEH: Beginning: 'error_detected(IO frozen)' [ 3222.537514] EEH: PE#800000 (PCI 0384:80:00.0): Invoking bnx2x->error_detected(IO frozen) [ 3222.537516] bnx2x: [bnx2x_io_error_detected:14236(eth14)]IO error detected [ 3222.537650] EEH: PE#800000 (PCI 0384:80:00.0): bnx2x driver reports: 'need reset' [ 3222.537651] EEH: PE#800000 (PCI 0384:80:00.1): Invoking bnx2x->error_detected(IO frozen) [ 3222.537651] bnx2x: [bnx2x_io_error_detected:14236(eth13)]IO error detected [ 3222.537729] EEH: PE#800000 (PCI 0384:80:00.1): bnx2x driver reports: 'need reset' [ 3222.537729] EEH: Finished:'error_detected(IO frozen)' with aggregate recovery state:'need reset' [ 3222.537890] EEH: Collect temporary log [ 3222.583481] EEH: of node=0384:80:00.0 [ 3222.583519] EEH: PCI device/vendor: 168e14e4 [ 3222.583557] EEH: PCI cmd/status register: 00100140 [ 3222.583557] EEH: PCI-E capabilities and status follow: [ 3222.583744] EEH: PCI-E 00: 00020010 012c8da 00095d5e 00455c82 [ 3222.583892] EEH: PCI-E 10: 10820000 00000000 00000000 00000000 [ 3222.583893] EEH: PCI-E 20: 00000000 [ 3222.583893] EEH: PCI-E AER capability register set follows: [ 3222.584079] EEH: PCI-E AER 00: 13c10001 00000000 00000000 00062030 [ 3222.584230] EEH: PCI-E AER 10: 00002000 000031c0 000001e0 00000000 [ 3222.584378] EEH: PCI-E AER 20: 00000000 00000000 00000000 00000000 [ 3222.584416] EEH: PCI-E AER 30: 00000000 00000000 [ 3222.584416] EEH: of node=0384:80:00.1 [ 3222.584454] EEH: PCI device/vendor: 168e14e4 [ 3222.584491] EEH: PCI cmd/status register: 00100140 [ 3222.584492] EEH: PCI-E capabilities and status follow: [ 3222.584677] EEH: PCI-E 00: 00020010 012c8da 00095d5e 00455c82 [ 3222.584825] EEH: PCI-E 10: 10820000 00000000 00000000 00000000 [ 3222.584826] EEH: PCI-E 20: 00000000 [ 3222.584826] EEH: PCI-E AER capability register set follows: [ 3222.585011] EEH: PCI-E AER 00: 13c10001 00000000 00000000 00062030 [ 3222.585160] EEH: PCI-E AER 10: 00002000 000031c0 000001e0 00000000 [ 3222.585309] EEH: PCI-E AER 20: 00000000 00000000 00000000 00000000 [ 3222.585347] EEH: PCI-E AER 30: 00000000 00000000 [ 3222.586872] RTAS: event: 5, Type: Platform Error (224), Severity: 2 [ 3222.586873] EEH: Reset without hotplug activity [ 3224.762767] EEH: Beginning: 'slot_reset' [ 3224.762770] EEH: PE#800000 (PCI 0384:80:00.0): Invoking bnx2x->slot_reset() [ 3224.762771] bnx2x: [bnx2x_io_slot_reset:14271(eth14)]IO slot reset initializing... [ 3224.762887] bnx2x 0384:80:00.0: enabling device (0140 -> 0142) [ 3224.768157] bnx2x: [bnx2x_io_slot_reset:14287(eth14)]IO slot reset --> driver unload Uninterruptible tasks ===================== crash> ps | grep UN 213 2 11 c000000004c89e00 UN 0.0 0 0 [eehd] 215 2 0 c000000004c80000 UN 0.0 0 0 [kworker/0:2] 2196 1 28 c000000004504f00 UN 0.1 15936 11136 wickedd 4287 1 9 c00000020d076800 UN 0.0 4032 3008 agetty 4289 1 20 c00000020d056680 UN 0.0 7232 3840 agetty 32423 2 26 c00000020038c580 UN 0.0 0 0 [kworker/26:3] 32871 4241 27 c0000002609ddd00 UN 0.1 18624 11648 sshd 32920 10130 16 c00000027284a100 UN 0.1 48512 12608 sendmail 33092 32987 0 c000000205218b00 UN 0.1 48512 12608 sendmail 33154 4567 16 c000000260e51780 UN 0.1 48832 12864 pickup 33209 4241 36 c000000270cb6500 UN 0.1 18624 11712 sshd 33473 33283 0 c000000205211480 UN 0.1 48512 12672 sendmail 33531 4241 37 c00000023c902780 UN 0.1 18624 11648 sshd EEH handler hung while bnx2x sleeping and holding RTNL lock =========================================================== crash> bt 213 PID: 213 TASK: c000000004c89e00 CPU: 11 COMMAND: "eehd" #0 [c000000004d477e0] __schedule at c000000000c70808 #1 [c000000004d478b0] schedule at c000000000c70ee0 #2 [c000000004d478e0] schedule_timeout at c000000000c76dec #3 [c000000004d479c0] msleep at c0000000002120cc #4 [c000000004d479f0] napi_disable at c000000000a06448 ^^^^^^^^^^^^^^^^ #5 [c000000004d47a30] bnx2x_netif_stop at c0080000018dba94 [bnx2x] #6 [c000000004d47a60] bnx2x_io_slot_reset at c0080000018a551c [bnx2x] #7 [c000000004d47b20] eeh_report_reset at c00000000004c9bc #8 [c000000004d47b90] eeh_pe_report at c00000000004d1a8 #9 [c000000004d47c40] eeh_handle_normal_event at c00000000004da64 And the sleeping source code ============================ crash> dis -ls c000000000a06448 FILE: ../net/core/dev.c LINE: 6702 6697 { 6698 might_sleep(); 6699 set_bit(NAPI_STATE_DISABLE, &n->state); 6700 6701 while (test_and_set_bit(NAPI_STATE_SCHED, &n->state)) * 6702 msleep(1); 6703 while (test_and_set_bit(NAPI_STATE_NPSVC, &n->state)) 6704 msleep(1); 6705 6706 hrtimer_cancel(&n->timer); 6707 6708 clear_bit(NAPI_STATE_DISABLE, &n->state); 6709 } EEH calls into bnx2x twice based on the system log above, first through bnx2x_io_error_detected() and then bnx2x_io_slot_reset(), and executes the following call chains: bnx2x_io_error_detected() +-> bnx2x_eeh_nic_unload() +-> bnx2x_del_all_napi() +-> __netif_napi_del() bnx2x_io_slot_reset() +-> bnx2x_netif_stop() +-> bnx2x_napi_disable() +->napi_disable() Fix this by correcting the sequence of NAPI APIs usage, that is delete the NAPI after disabling it. Fixes: 7fa6f34 ("bnx2x: AER revised") Reported-by: David Christensen <drc@linux.vnet.ibm.com> Tested-by: David Christensen <drc@linux.vnet.ibm.com> Signed-off-by: Manish Chopra <manishc@marvell.com> Signed-off-by: Ariel Elior <aelior@marvell.com> Link: https://lore.kernel.org/r/20220426153913.6966-1-manishc@marvell.com Signed-off-by: Jakub Kicinski <kuba@kernel.org>
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Ido Schimmel says: ==================== mlxsw: Various updates Patches #1-#3 add missing topology diagrams in selftests and perform small cleanups. Patches #4-#5 make small adjustments in QoS configuration. See detailed description in the commit messages. Patches #6-#8 reduce the number of background EMAD transactions. The driver periodically queries the device (via EMAD transactions) about updates that cannot happen in certain situations. This can negatively impact the latency of time critical transactions, as the device is busy processing other transactions. Before: # perf stat -a -e devlink:devlink_hwmsg -- sleep 10 Performance counter stats for 'system wide': 452 devlink:devlink_hwmsg 10.009736160 seconds time elapsed After: # perf stat -a -e devlink:devlink_hwmsg -- sleep 10 Performance counter stats for 'system wide': 0 devlink:devlink_hwmsg 10.001726333 seconds time elapsed ==================== Signed-off-by: David S. Miller <davem@davemloft.net>
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May 13, 2022
As reported by Alan, the CFI (Call Frame Information) in the VDSO time routines is incorrect since commit ce7d805 ("powerpc/vdso: Prepare for switching VDSO to generic C implementation."). DWARF has a concept called the CFA (Canonical Frame Address), which on powerpc is calculated as an offset from the stack pointer (r1). That means when the stack pointer is changed there must be a corresponding CFI directive to update the calculation of the CFA. The current code is missing those directives for the changes to r1, which prevents gdb from being able to generate a backtrace from inside VDSO functions, eg: Breakpoint 1, 0x00007ffff7f804dc in __kernel_clock_gettime () (gdb) bt #0 0x00007ffff7f804dc in __kernel_clock_gettime () #1 0x00007ffff7d8872c in clock_gettime@@GLIBC_2.17 () from /lib64/libc.so.6 #2 0x00007fffffffd960 in ?? () #3 0x00007ffff7d8872c in clock_gettime@@GLIBC_2.17 () from /lib64/libc.so.6 Backtrace stopped: frame did not save the PC Alan helpfully describes some rules for correctly maintaining the CFI information: 1) Every adjustment to the current frame address reg (ie. r1) must be described, and exactly at the instruction where r1 changes. Why? Because stack unwinding might want to access previous frames. 2) If a function changes LR or any non-volatile register, the save location for those regs must be given. The CFI can be at any instruction after the saves up to the point that the reg is changed. (Exception: LR save should be described before a bl. not after) 3) If asychronous unwind info is needed then restores of LR and non-volatile regs must also be described. The CFI can be at any instruction after the reg is restored up to the point where the save location is (potentially) trashed. Fix the inability to backtrace by adding CFI directives describing the changes to r1, ie. satisfying rule 1. Also change the information for LR to point to the copy saved on the stack, not the value in r0 that will be overwritten by the function call. Finally, add CFI directives describing the save/restore of r2. With the fix gdb can correctly back trace and navigate up and down the stack: Breakpoint 1, 0x00007ffff7f804dc in __kernel_clock_gettime () (gdb) bt #0 0x00007ffff7f804dc in __kernel_clock_gettime () #1 0x00007ffff7d8872c in clock_gettime@@GLIBC_2.17 () from /lib64/libc.so.6 #2 0x0000000100015b60 in gettime () #3 0x000000010000c8bc in print_long_format () #4 0x000000010000d180 in print_current_files () #5 0x00000001000054ac in main () (gdb) up #1 0x00007ffff7d8872c in clock_gettime@@GLIBC_2.17 () from /lib64/libc.so.6 (gdb) #2 0x0000000100015b60 in gettime () (gdb) #3 0x000000010000c8bc in print_long_format () (gdb) #4 0x000000010000d180 in print_current_files () (gdb) #5 0x00000001000054ac in main () (gdb) Initial frame selected; you cannot go up. (gdb) down #4 0x000000010000d180 in print_current_files () (gdb) #3 0x000000010000c8bc in print_long_format () (gdb) #2 0x0000000100015b60 in gettime () (gdb) #1 0x00007ffff7d8872c in clock_gettime@@GLIBC_2.17 () from /lib64/libc.so.6 (gdb) #0 0x00007ffff7f804dc in __kernel_clock_gettime () (gdb) Fixes: ce7d805 ("powerpc/vdso: Prepare for switching VDSO to generic C implementation.") Cc: stable@vger.kernel.org # v5.11+ Reported-by: Alan Modra <amodra@gmail.com> Signed-off-by: Michael Ellerman <mpe@ellerman.id.au> Reviewed-by: Segher Boessenkool <segher@kernel.crashing.org> Link: https://lore.kernel.org/r/20220502125010.1319370-1-mpe@ellerman.id.au
alobakin
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Jun 10, 2022
Send along the already-allocated fattr along with nfs4_fs_locations, and drop the memcpy of fattr. We end up growing two more allocations, but this fixes up a crash as: PID: 790 TASK: ffff88811b43c000 CPU: 0 COMMAND: "ls" #0 [ffffc90000857920] panic at ffffffff81b9bfde #1 [ffffc900008579c0] do_trap at ffffffff81023a9b #2 [ffffc90000857a10] do_error_trap at ffffffff81023b78 #3 [ffffc90000857a58] exc_stack_segment at ffffffff81be1f45 #4 [ffffc90000857a80] asm_exc_stack_segment at ffffffff81c009de #5 [ffffc90000857b08] nfs_lookup at ffffffffa0302322 [nfs] #6 [ffffc90000857b70] __lookup_slow at ffffffff813a4a5f #7 [ffffc90000857c60] walk_component at ffffffff813a86c4 #8 [ffffc90000857cb8] path_lookupat at ffffffff813a9553 #9 [ffffc90000857cf0] filename_lookup at ffffffff813ab86b Suggested-by: Trond Myklebust <trondmy@hammerspace.com> Fixes: 9558a00 ("NFS: Remove the label from the nfs4_lookup_res struct") Signed-off-by: Benjamin Coddington <bcodding@redhat.com> Signed-off-by: Anna Schumaker <Anna.Schumaker@Netapp.com>
alobakin
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Jun 27, 2022
Rework MDIO locking to avoid potential circular locking: WARNING: possible circular locking dependency detected 5.19.0-rc1-ar9331-00017-g3ab364c7c48c #5 Not tainted ------------------------------------------------------ kworker/u2:4/68 is trying to acquire lock: 81f3c83c (ar9331:1005:(&ar9331_mdio_regmap_config)->lock){+.+.}-{4:4}, at: regmap_write+0x50/0x8c but task is already holding lock: 81f60494 (&bus->mdio_lock){+.+.}-{4:4}, at: mdiobus_read+0x40/0x78 which lock already depends on the new lock. the existing dependency chain (in reverse order) is: -> #1 (&bus->mdio_lock){+.+.}-{4:4}: lock_acquire+0x2d4/0x360 __mutex_lock+0xf8/0x384 mutex_lock_nested+0x2c/0x38 mdiobus_write+0x44/0x80 ar9331_sw_bus_write+0x50/0xe4 _regmap_raw_write_impl+0x604/0x724 _regmap_bus_raw_write+0x9c/0xb4 _regmap_write+0xdc/0x1a0 _regmap_update_bits+0xf4/0x118 _regmap_select_page+0x108/0x138 _regmap_raw_read+0x25c/0x288 _regmap_bus_read+0x60/0x98 _regmap_read+0xd4/0x1b0 _regmap_update_bits+0xc4/0x118 regmap_update_bits_base+0x64/0x8c ar9331_sw_irq_bus_sync_unlock+0x40/0x6c __irq_set_handler+0x7c/0xac ar9331_sw_irq_map+0x48/0x7c irq_domain_associate+0x174/0x208 irq_create_mapping_affinity+0x1a8/0x230 ar9331_sw_probe+0x22c/0x388 mdio_probe+0x44/0x70 really_probe+0x200/0x424 __driver_probe_device+0x290/0x298 driver_probe_device+0x54/0xe4 __device_attach_driver+0xe4/0x130 bus_for_each_drv+0xb4/0xd8 __device_attach+0x104/0x1a4 bus_probe_device+0x48/0xc4 device_add+0x600/0x800 mdio_device_register+0x68/0xa0 of_mdiobus_register+0x2bc/0x3c4 ag71xx_probe+0x6e4/0x984 platform_probe+0x78/0xd0 really_probe+0x200/0x424 __driver_probe_device+0x290/0x298 driver_probe_device+0x54/0xe4 __driver_attach+0x17c/0x190 bus_for_each_dev+0x8c/0xd0 bus_add_driver+0x110/0x228 driver_register+0xe4/0x12c do_one_initcall+0x104/0x2a0 kernel_init_freeable+0x250/0x288 kernel_init+0x34/0x130 ret_from_kernel_thread+0x14/0x1c -> #0 (ar9331:1005:(&ar9331_mdio_regmap_config)->lock){+.+.}-{4:4}: check_noncircular+0x88/0xc0 __lock_acquire+0x10bc/0x18bc lock_acquire+0x2d4/0x360 __mutex_lock+0xf8/0x384 mutex_lock_nested+0x2c/0x38 regmap_write+0x50/0x8c ar9331_sw_mbus_read+0x74/0x1b8 __mdiobus_read+0x90/0xec mdiobus_read+0x50/0x78 get_phy_device+0xa0/0x18c fwnode_mdiobus_register_phy+0x120/0x1d4 of_mdiobus_register+0x244/0x3c4 devm_of_mdiobus_register+0xe8/0x100 ar9331_sw_setup+0x16c/0x3a0 dsa_register_switch+0x7dc/0xcc0 ar9331_sw_probe+0x370/0x388 mdio_probe+0x44/0x70 really_probe+0x200/0x424 __driver_probe_device+0x290/0x298 driver_probe_device+0x54/0xe4 __device_attach_driver+0xe4/0x130 bus_for_each_drv+0xb4/0xd8 __device_attach+0x104/0x1a4 bus_probe_device+0x48/0xc4 deferred_probe_work_func+0xf0/0x10c process_one_work+0x314/0x4d4 worker_thread+0x2a4/0x354 kthread+0x134/0x13c ret_from_kernel_thread+0x14/0x1c other info that might help us debug this: Possible unsafe locking scenario: CPU0 CPU1 ---- ---- lock(&bus->mdio_lock); lock(ar9331:1005:(&ar9331_mdio_regmap_config)->lock); lock(&bus->mdio_lock); lock(ar9331:1005:(&ar9331_mdio_regmap_config)->lock); *** DEADLOCK *** 5 locks held by kworker/u2:4/68: #0: 81c04eb4 ((wq_completion)events_unbound){+.+.}-{0:0}, at: process_one_work+0x1e4/0x4d4 #1: 81f0de78 (deferred_probe_work){+.+.}-{0:0}, at: process_one_work+0x1e4/0x4d4 #2: 81f0a88 (&dev->mutex){....}-{4:4}, at: __device_attach+0x40/0x1a4 #3: 80c8aee0 (dsa2_mutex){+.+.}-{4:4}, at: dsa_register_switch+0x5c/0xcc0 #4: 81f60494 (&bus->mdio_lock){+.+.}-{4:4}, at: mdiobus_read+0x40/0x78 stack backtrace: CPU: 0 PID: 68 Comm: kworker/u2:4 Not tainted 5.19.0-rc1-ar9331-00017-g3ab364c7c48c #5 Workqueue: events_unbound deferred_probe_work_func Stack : 00000056 800d4638 81f0d64c 00000004 00000018 00000000 80a20000 80a20000 80937590 81ef3858 81f0d760 3913578a 00000005 8045e824 81f0d600 a8db84cc 00000000 00000000 80937590 00000a44 00000000 00000002 00000001 ffffffff 81f0d6a4 80982d7c 0000000f 20202020 80a20000 00000001 80937590 81ef3858 81f0d760 3913578a 00000005 00000005 00000000 03bd0000 00000000 80e00000 ... Call Trace: [<80069db0>] show_stack+0x94/0x130 [<8045e824>] dump_stack_lvl+0x54/0x8c [<800c7fac>] check_noncircular+0x88/0xc0 [<800ca068>] __lock_acquire+0x10bc/0x18bc [<800cb478>] lock_acquire+0x2d4/0x360 [<807b84c4>] __mutex_lock+0xf8/0x384 [<807b877c>] mutex_lock_nested+0x2c/0x38 [<804ea640>] regmap_write+0x50/0x8c [<80501e38>] ar9331_sw_mbus_read+0x74/0x1b8 [<804fe9a0>] __mdiobus_read+0x90/0xec [<804feac4>] mdiobus_read+0x50/0x78 [<804fcf74>] get_phy_device+0xa0/0x18c [<804ffeb4>] fwnode_mdiobus_register_phy+0x120/0x1d4 [<805004f0>] of_mdiobus_register+0x244/0x3c4 [<804f0c50>] devm_of_mdiobus_register+0xe8/0x100 [<805017a0>] ar9331_sw_setup+0x16c/0x3a0 [<807355c8>] dsa_register_switch+0x7dc/0xcc0 [<80501468>] ar9331_sw_probe+0x370/0x388 [<804ff0c0>] mdio_probe+0x44/0x70 [<804d1848>] really_probe+0x200/0x424 [<804d1cfc>] __driver_probe_device+0x290/0x298 [<804d1d58>] driver_probe_device+0x54/0xe4 [<804d2298>] __device_attach_driver+0xe4/0x130 [<804cf048>] bus_for_each_drv+0xb4/0xd8 [<804d200c>] __device_attach+0x104/0x1a4 [<804d026c>] bus_probe_device+0x48/0xc4 [<804d108c>] deferred_probe_work_func+0xf0/0x10c [<800a0ffc>] process_one_work+0x314/0x4d4 [<800a17fc>] worker_thread+0x2a4/0x354 [<800a9a54>] kthread+0x134/0x13c [<8006306c>] ret_from_kernel_thread+0x14/0x1c [ Signed-off-by: Oleksij Rempel <o.rempel@pengutronix.de> Link: https://lore.kernel.org/r/20220616112550.877118-1-o.rempel@pengutronix.de Signed-off-by: Jakub Kicinski <kuba@kernel.org>
alobakin
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This was missed in c3ed222 ("NFSv4: Fix free of uninitialized nfs4_label on referral lookup.") and causes a panic when mounting with '-o trunkdiscovery': PID: 1604 TASK: ffff93dac3520000 CPU: 3 COMMAND: "mount.nfs" #0 [ffffb79140f738f8] machine_kexec at ffffffffaec64bee #1 [ffffb79140f73950] __crash_kexec at ffffffffaeda67fd #2 [ffffb79140f73a18] crash_kexec at ffffffffaeda76ed #3 [ffffb79140f73a30] oops_end at ffffffffaec2658d #4 [ffffb79140f73a50] general_protection at ffffffffaf60111e [exception RIP: nfs_fattr_init+0x5] RIP: ffffffffc0c18265 RSP: ffffb79140f73b08 RFLAGS: 00010246 RAX: 0000000000000000 RBX: ffff93dac304a800 RCX: 0000000000000000 RDX: ffffb79140f73bb0 RSI: ffff93dadc8cbb40 RDI: d03ee11cfaf6bd50 RBP: ffffb79140f73be8 R8: ffffffffc0691560 R9: 0000000000000006 R10: ffff93db3ffd3df8 R11: 0000000000000000 R12: ffff93dac4040000 R13: ffff93dac2848e00 R14: ffffb79140f73b60 R15: ffffb79140f73b30 ORIG_RAX: ffffffffffffffff CS: 0010 SS: 0018 #5 [ffffb79140f73b08] _nfs41_proc_get_locations at ffffffffc0c73d53 [nfsv4] #6 [ffffb79140f73bf0] nfs4_proc_get_locations at ffffffffc0c83e90 [nfsv4] #7 [ffffb79140f73c60] nfs4_discover_trunking at ffffffffc0c83fb7 [nfsv4] #8 [ffffb79140f73cd8] nfs_probe_fsinfo at ffffffffc0c0f95f [nfs] #9 [ffffb79140f73da0] nfs_probe_server at ffffffffc0c1026a [nfs] RIP: 00007f6254fce26e RSP: 00007ffc69496ac8 RFLAGS: 00000246 RAX: ffffffffffffffda RBX: 0000000000000000 RCX: 00007f6254fce26e RDX: 00005600220a82a0 RSI: 00005600220a64d0 RDI: 00005600220a6520 RBP: 00007ffc69496c50 R8: 00005600220a8710 R9: 003035322e323231 R10: 0000000000000000 R11: 0000000000000246 R12: 00007ffc69496c50 R13: 00005600220a8440 R14: 0000000000000010 R15: 0000560020650ef9 ORIG_RAX: 00000000000000a5 CS: 0033 SS: 002b Fixes: c3ed222 ("NFSv4: Fix free of uninitialized nfs4_label on referral lookup.") Signed-off-by: Scott Mayhew <smayhew@redhat.com> Signed-off-by: Anna Schumaker <Anna.Schumaker@Netapp.com>
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Ido Schimmel says: ==================== mlxsw: Unified bridge conversion - part 6/6 This is the sixth and final part of the conversion of mlxsw to the unified bridge model. It transitions the last bits of functionality that were under firmware's responsibility in the legacy model to the driver. The last patches flip the driver to the unified bridge model and clean up code that was used to make the conversion easier to review. Patchset overview: Patch #1 sets the egress VID for known unicast packets. For multicast packets, the egress VID is configured using the MPE table. See commit 8c2da08 ("mlxsw: spectrum_fid: Configure egress VID classification for multicast"). Patch #2 configures the VNI to FID classification that is used during decapsulation. Patch #3 configures ingress router interface (RIF) in FID classification records, so that when a packet reaches the router block, its ingress RIF is known. Care is taken to configure this in all the different flows (e.g., RIF set on a FID, {Port, VID} joins a FID that already has a RIF etc.). Patch #4 configures the egress VID for routed packets. For such packets, the egress VID is not set by the MPE table or by an FDB record at the egress bridge, but instead by a dedicated table that maps {Egress RIF, Egress port} to a VID. Patch #5 removes VID configuration from RIF creation as in the unified bridge model firmware no longer needs it. Patch #6 sets the egress FID to use in RIF configuration so that the device knows using which FID to bridge the packet after routing. Patches #7-#9 add a new 802.1Q family and associated VLAN RIFs. In the unified bridge model, we no longer need to emulate 802.1Q FIDs using 802.1D FIDs as VNI can be associated with both. Patches #10-#11 finally flip the driver to the unified bridge model. Patches #12-#13 clean up code that was used to make the conversion easier to review. v2: * Fix build failure [1] in patch #1. [1] https://lore.kernel.org/netdev/20220630201709.6e66a1bb@kernel.org/ ==================== Signed-off-by: David S. Miller <davem@davemloft.net>
alobakin
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Jul 19, 2022
Add a lock_class_key per devlink instance to avoid DEADLOCK warning by
lockdep, while locking more than one devlink instance in driver code,
for example in opening VFs flow.
Kernel log:
[ 101.433802] ============================================
[ 101.433803] WARNING: possible recursive locking detected
[ 101.433810] 5.19.0-rc1+ #35 Not tainted
[ 101.433812] --------------------------------------------
[ 101.433813] bash/892 is trying to acquire lock:
[ 101.433815] ffff888127bfc2f8 (&devlink->lock){+.+.}-{3:3}, at: probe_one+0x3c/0x690 [mlx5_core]
[ 101.433909]
but task is already holding lock:
[ 101.433910] ffff888118f4c2f8 (&devlink->lock){+.+.}-{3:3}, at: mlx5_core_sriov_configure+0x62/0x280 [mlx5_core]
[ 101.433989]
other info that might help us debug this:
[ 101.433990] Possible unsafe locking scenario:
[ 101.433991] CPU0
[ 101.433991] ----
[ 101.433992] lock(&devlink->lock);
[ 101.433993] lock(&devlink->lock);
[ 101.433995]
*** DEADLOCK ***
[ 101.433996] May be due to missing lock nesting notation
[ 101.433996] 6 locks held by bash/892:
[ 101.433998] #0: ffff88810eb50448 (sb_writers#3){.+.+}-{0:0}, at: ksys_write+0xf3/0x1d0
[ 101.434009] #1: ffff888114777c88 (&of->mutex){+.+.}-{3:3}, at: kernfs_fop_write_iter+0x20d/0x520
[ 101.434017] #2: ffff888102b58660 (kn->active#231){.+.+}-{0:0}, at: kernfs_fop_write_iter+0x230/0x520
[ 101.434023] #3: ffff888102d70198 (&dev->mutex){....}-{3:3}, at: sriov_numvfs_store+0x132/0x310
[ 101.434031] #4: ffff888118f4c2f8 (&devlink->lock){+.+.}-{3:3}, at: mlx5_core_sriov_configure+0x62/0x280 [mlx5_core]
[ 101.434108] #5: ffff88812adce198 (&dev->mutex){....}-{3:3}, at: __device_attach+0x76/0x430
[ 101.434116]
stack backtrace:
[ 101.434118] CPU: 5 PID: 892 Comm: bash Not tainted 5.19.0-rc1+ #35
[ 101.434120] Hardware name: QEMU Standard PC (Q35 + ICH9, 2009), BIOS rel-1.13.0-0-gf21b5a4aeb02-prebuilt.qemu.org 04/01/2014
[ 101.434130] Call Trace:
[ 101.434133] <TASK>
[ 101.434135] dump_stack_lvl+0x57/0x7d
[ 101.434145] __lock_acquire.cold+0x1df/0x3e7
[ 101.434151] ? register_lock_class+0x1880/0x1880
[ 101.434157] lock_acquire+0x1c1/0x550
[ 101.434160] ? probe_one+0x3c/0x690 [mlx5_core]
[ 101.434229] ? lockdep_hardirqs_on_prepare+0x400/0x400
[ 101.434232] ? __xa_alloc+0x1ed/0x2d0
[ 101.434236] ? ksys_write+0xf3/0x1d0
[ 101.434239] __mutex_lock+0x12c/0x14b0
[ 101.434243] ? probe_one+0x3c/0x690 [mlx5_core]
[ 101.434312] ? probe_one+0x3c/0x690 [mlx5_core]
[ 101.434380] ? devlink_alloc_ns+0x11b/0x910
[ 101.434385] ? mutex_lock_io_nested+0x1320/0x1320
[ 101.434388] ? lockdep_init_map_type+0x21a/0x7d0
[ 101.434391] ? lockdep_init_map_type+0x21a/0x7d0
[ 101.434393] ? __init_swait_queue_head+0x70/0xd0
[ 101.434397] probe_one+0x3c/0x690 [mlx5_core]
[ 101.434467] pci_device_probe+0x1b4/0x480
[ 101.434471] really_probe+0x1e0/0xaa0
[ 101.434474] __driver_probe_device+0x219/0x480
[ 101.434478] driver_probe_device+0x49/0x130
[ 101.434481] __device_attach_driver+0x1b8/0x280
[ 101.434484] ? driver_allows_async_probing+0x140/0x140
[ 101.434487] bus_for_each_drv+0x123/0x1a0
[ 101.434489] ? bus_for_each_dev+0x1a0/0x1a0
[ 101.434491] ? lockdep_hardirqs_on_prepare+0x286/0x400
[ 101.434494] ? trace_hardirqs_on+0x2d/0x100
[ 101.434498] __device_attach+0x1a3/0x430
[ 101.434501] ? device_driver_attach+0x1e0/0x1e0
[ 101.434503] ? pci_bridge_d3_possible+0x1e0/0x1e0
[ 101.434506] ? pci_create_resource_files+0xeb/0x190
[ 101.434511] pci_bus_add_device+0x6c/0xa0
[ 101.434514] pci_iov_add_virtfn+0x9e4/0xe00
[ 101.434517] ? trace_hardirqs_on+0x2d/0x100
[ 101.434521] sriov_enable+0x64a/0xca0
[ 101.434524] ? pcibios_sriov_disable+0x10/0x10
[ 101.434528] mlx5_core_sriov_configure+0xab/0x280 [mlx5_core]
[ 101.434602] sriov_numvfs_store+0x20a/0x310
[ 101.434605] ? sriov_totalvfs_show+0xc0/0xc0
[ 101.434608] ? sysfs_file_ops+0x170/0x170
[ 101.434611] ? sysfs_file_ops+0x117/0x170
[ 101.434614] ? sysfs_file_ops+0x170/0x170
[ 101.434616] kernfs_fop_write_iter+0x348/0x520
[ 101.434619] new_sync_write+0x2e5/0x520
[ 101.434621] ? new_sync_read+0x520/0x520
[ 101.434624] ? lock_acquire+0x1c1/0x550
[ 101.434626] ? lockdep_hardirqs_on_prepare+0x400/0x400
[ 101.434630] vfs_write+0x5cb/0x8d0
[ 101.434633] ksys_write+0xf3/0x1d0
[ 101.434635] ? __x64_sys_read+0xb0/0xb0
[ 101.434638] ? lockdep_hardirqs_on_prepare+0x286/0x400
[ 101.434640] ? syscall_enter_from_user_mode+0x1d/0x50
[ 101.434643] do_syscall_64+0x3d/0x90
[ 101.434647] entry_SYSCALL_64_after_hwframe+0x46/0xb0
[ 101.434650] RIP: 0033:0x7f5ff536b2f7
[ 101.434658] Code: 0d 00 f7 d8 64 89 02 48 c7 c0 ff ff ff ff eb b7 0f
1f 00 f3 0f 1e fa 64 8b 04 25 18 00 00 00 85 c0 75 10 b8 01 00 00 00 0f
05 <48> 3d 00 f0 ff ff 77 51 c3 48 83 ec 28 48 89 54 24 18 48 89 74 24
[ 101.434661] RSP: 002b:00007ffd9ea85d58 EFLAGS: 00000246 ORIG_RAX: 0000000000000001
[ 101.434664] RAX: ffffffffffffffda RBX: 0000000000000002 RCX: 00007f5ff536b2f7
[ 101.434666] RDX: 0000000000000002 RSI: 000055c4c279e230 RDI: 0000000000000001
[ 101.434668] RBP: 000055c4c279e230 R08: 000000000000000a R09: 0000000000000001
[ 101.434669] R10: 000055c4c283cbf0 R11: 0000000000000246 R12: 0000000000000002
[ 101.434670] R13: 00007f5ff543d500 R14: 0000000000000002 R15: 00007f5ff543d700
[ 101.434673] </TASK>
Signed-off-by: Moshe Shemesh <moshe@nvidia.com>
Signed-off-by: Jiri Pirko <jiri@nvidia.com>
Signed-off-by: Jakub Kicinski <kuba@kernel.org>
alobakin
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Petr Machata says: ==================== mlxsw: Introduce modular system support by minimal driver Vadim Pasternak writes: This patchset adds line cards support in mlxsw_minimal, which is used for monitoring purposes on BMC systems. The BMC is connected to the ASIC over I2C bus, unlike the host CPU that is connected to the ASIC via PCI bus. The BMC system needs to be notified whenever line cards become active or inactive, so that, for example, netdevs will be registered / unregistered by mlxsw_minimal. However, traps cannot be generated towards the BMC over the I2C bus. To overcome that, the I2C bus driver (i.e., mlxsw_i2c) registers an handler for an IRQ that is fired upon specific system wide changes, like line card activation and deactivation. The generated event is handled by mlxsw_core, which checks whether anything changed in the state of available line cards. If a line card becomes active or inactive, interested parties such as mlxsw_minimal are notified via their registered line card event callback. Patch set overview: Patches #1 is preparations. Patches #2-#3 extend mlxsw_core with an infrastructure to handle the previously mentioned system events. Patch #4 extends the I2C bus driver to register an handler for the IRQ fired upon specific system wide changes. Patches #5-#8 gradually add line cards support in mlxsw_minimal by dynamically registering / unregistering netdevs for ports found on line cards, whenever a line card becomes active / inactive. ==================== Link: https://lore.kernel.org/r/cover.1661093502.git.petrm@nvidia.com Signed-off-by: Jakub Kicinski <kuba@kernel.org>
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We have been hitting the following lockdep splat with btrfs/187 recently
WARNING: possible circular locking dependency detected
5.19.0-rc8+ #775 Not tainted
------------------------------------------------------
btrfs/752500 is trying to acquire lock:
ffff97e1875a97b8 (btrfs-treloc-02#2){+.+.}-{3:3}, at: __btrfs_tree_lock+0x24/0x110
but task is already holding lock:
ffff97e1875a9278 (btrfs-tree-01/1){+.+.}-{3:3}, at: __btrfs_tree_lock+0x24/0x110
which lock already depends on the new lock.
the existing dependency chain (in reverse order) is:
-> #2 (btrfs-tree-01/1){+.+.}-{3:3}:
down_write_nested+0x41/0x80
__btrfs_tree_lock+0x24/0x110
btrfs_init_new_buffer+0x7d/0x2c0
btrfs_alloc_tree_block+0x120/0x3b0
__btrfs_cow_block+0x136/0x600
btrfs_cow_block+0x10b/0x230
btrfs_search_slot+0x53b/0xb70
btrfs_lookup_inode+0x2a/0xa0
__btrfs_update_delayed_inode+0x5f/0x280
btrfs_async_run_delayed_root+0x24c/0x290
btrfs_work_helper+0xf2/0x3e0
process_one_work+0x271/0x590
worker_thread+0x52/0x3b0
kthread+0xf0/0x120
ret_from_fork+0x1f/0x30
-> #1 (btrfs-tree-01){++++}-{3:3}:
down_write_nested+0x41/0x80
__btrfs_tree_lock+0x24/0x110
btrfs_search_slot+0x3c3/0xb70
do_relocation+0x10c/0x6b0
relocate_tree_blocks+0x317/0x6d0
relocate_block_group+0x1f1/0x560
btrfs_relocate_block_group+0x23e/0x400
btrfs_relocate_chunk+0x4c/0x140
btrfs_balance+0x755/0xe40
btrfs_ioctl+0x1ea2/0x2c90
__x64_sys_ioctl+0x88/0xc0
do_syscall_64+0x38/0x90
entry_SYSCALL_64_after_hwframe+0x63/0xcd
-> #0 (btrfs-treloc-02#2){+.+.}-{3:3}:
__lock_acquire+0x1122/0x1e10
lock_acquire+0xc2/0x2d0
down_write_nested+0x41/0x80
__btrfs_tree_lock+0x24/0x110
btrfs_lock_root_node+0x31/0x50
btrfs_search_slot+0x1cb/0xb70
replace_path+0x541/0x9f0
merge_reloc_root+0x1d6/0x610
merge_reloc_roots+0xe2/0x260
relocate_block_group+0x2c8/0x560
btrfs_relocate_block_group+0x23e/0x400
btrfs_relocate_chunk+0x4c/0x140
btrfs_balance+0x755/0xe40
btrfs_ioctl+0x1ea2/0x2c90
__x64_sys_ioctl+0x88/0xc0
do_syscall_64+0x38/0x90
entry_SYSCALL_64_after_hwframe+0x63/0xcd
other info that might help us debug this:
Chain exists of:
btrfs-treloc-02#2 --> btrfs-tree-01 --> btrfs-tree-01/1
Possible unsafe locking scenario:
CPU0 CPU1
---- ----
lock(btrfs-tree-01/1);
lock(btrfs-tree-01);
lock(btrfs-tree-01/1);
lock(btrfs-treloc-02#2);
*** DEADLOCK ***
7 locks held by btrfs/752500:
#0: ffff97e292fdf460 (sb_writers#12){.+.+}-{0:0}, at: btrfs_ioctl+0x208/0x2c90
#1: ffff97e284c02050 (&fs_info->reclaim_bgs_lock){+.+.}-{3:3}, at: btrfs_balance+0x55f/0xe40
#2: ffff97e284c00878 (&fs_info->cleaner_mutex){+.+.}-{3:3}, at: btrfs_relocate_block_group+0x236/0x400
#3: ffff97e292fdf650 (sb_internal#2){.+.+}-{0:0}, at: merge_reloc_root+0xef/0x610
#4: ffff97e284c02378 (btrfs_trans_num_writers){++++}-{0:0}, at: join_transaction+0x1a8/0x5a0
#5: ffff97e284c023a0 (btrfs_trans_num_extwriters){++++}-{0:0}, at: join_transaction+0x1a8/0x5a0
#6: ffff97e1875a9278 (btrfs-tree-01/1){+.+.}-{3:3}, at: __btrfs_tree_lock+0x24/0x110
stack backtrace:
CPU: 1 PID: 752500 Comm: btrfs Not tainted 5.19.0-rc8+ #775
Hardware name: QEMU Standard PC (Q35 + ICH9, 2009), BIOS 1.13.0-2.fc32 04/01/2014
Call Trace:
dump_stack_lvl+0x56/0x73
check_noncircular+0xd6/0x100
? lock_is_held_type+0xe2/0x140
__lock_acquire+0x1122/0x1e10
lock_acquire+0xc2/0x2d0
? __btrfs_tree_lock+0x24/0x110
down_write_nested+0x41/0x80
? __btrfs_tree_lock+0x24/0x110
__btrfs_tree_lock+0x24/0x110
btrfs_lock_root_node+0x31/0x50
btrfs_search_slot+0x1cb/0xb70
? lock_release+0x137/0x2d0
? _raw_spin_unlock+0x29/0x50
? release_extent_buffer+0x128/0x180
replace_path+0x541/0x9f0
merge_reloc_root+0x1d6/0x610
merge_reloc_roots+0xe2/0x260
relocate_block_group+0x2c8/0x560
btrfs_relocate_block_group+0x23e/0x400
btrfs_relocate_chunk+0x4c/0x140
btrfs_balance+0x755/0xe40
btrfs_ioctl+0x1ea2/0x2c90
? lock_is_held_type+0xe2/0x140
? lock_is_held_type+0xe2/0x140
? __x64_sys_ioctl+0x88/0xc0
__x64_sys_ioctl+0x88/0xc0
do_syscall_64+0x38/0x90
entry_SYSCALL_64_after_hwframe+0x63/0xcd
This isn't necessarily new, it's just tricky to hit in practice. There
are two competing things going on here. With relocation we create a
snapshot of every fs tree with a reloc tree. Any extent buffers that
get initialized here are initialized with the reloc root lockdep key.
However since it is a snapshot, any blocks that are currently in cache
that originally belonged to the fs tree will have the normal tree
lockdep key set. This creates the lock dependency of
reloc tree -> normal tree
for the extent buffer locking during the first phase of the relocation
as we walk down the reloc root to relocate blocks.
However this is problematic because the final phase of the relocation is
merging the reloc root into the original fs root. This involves
searching down to any keys that exist in the original fs root and then
swapping the relocated block and the original fs root block. We have to
search down to the fs root first, and then go search the reloc root for
the block we need to replace. This creates the dependency of
normal tree -> reloc tree
which is why lockdep complains.
Additionally even if we were to fix this particular mismatch with a
different nesting for the merge case, we're still slotting in a block
that has a owner of the reloc root objectid into a normal tree, so that
block will have its lockdep key set to the tree reloc root, and create a
lockdep splat later on when we wander into that block from the fs root.
Unfortunately the only solution here is to make sure we do not set the
lockdep key to the reloc tree lockdep key normally, and then reset any
blocks we wander into from the reloc root when we're doing the merged.
This solves the problem of having mixed tree reloc keys intermixed with
normal tree keys, and then allows us to make sure in the merge case we
maintain the lock order of
normal tree -> reloc tree
We handle this by setting a bit on the reloc root when we do the search
for the block we want to relocate, and any block we search into or COW
at that point gets set to the reloc tree key. This works correctly
because we only ever COW down to the parent node, so we aren't resetting
the key for the block we're linking into the fs root.
With this patch we no longer have the lockdep splat in btrfs/187.
Signed-off-by: Josef Bacik <josef@toxicpanda.com>
Reviewed-by: David Sterba <dsterba@suse.com>
Signed-off-by: David Sterba <dsterba@suse.com>
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When use 'echo c > /proc/sysrq-trigger' to trigger kdump, riscv_crash_save_regs() will be called to save regs for vmcore, we found "epc" value 00ffffffa5537400 is not a valid kernel virtual address, but is a user virtual address. Other regs(eg, ra, sp, gp...) are correct kernel virtual address. Actually 0x00ffffffb0dd9400 is the user mode PC of 'PID: 113 Comm: sh', which is saved in the task's stack. [ 21.201701] CPU: 0 PID: 113 Comm: sh Kdump: loaded Not tainted 5.18.9 #45 [ 21.201979] Hardware name: riscv-virtio,qemu (DT) [ 21.202160] epc : 00ffffffa5537400 ra : ffffffff80088640 sp : ff20000010333b90 [ 21.202435] gp : ffffffff810dde38 tp : ff6000000226c200 t0 : ffffffff8032be7c [ 21.202707] t1 : 0720072007200720 t2 : 30203a7375746174 s0 : ff20000010333cf0 [ 21.202973] s1 : 0000000000000000 a0 : ff20000010333b98 a1 : 0000000000000001 [ 21.203243] a2 : 0000000000000010 a3 : 0000000000000000 a4 : 28c8f0aeffea4e00 [ 21.203519] a5 : 28c8f0aeffea4e00 a6 : 0000000000000009 a7 : ffffffff8035c9b8 [ 21.203794] s2 : ffffffff810df0a8 s3 : ffffffff810df718 s4 : ff20000010333b98 [ 21.204062] s5 : 0000000000000000 s6 : 0000000000000007 s7 : ffffffff80c4a468 [ 21.204331] s8 : 00ffffffef451410 s9 : 0000000000000007 s10: 00aaaaaac0510700 [ 21.204606] s11: 0000000000000001 t3 : ff60000001218f00 t4 : ff60000001218f00 [ 21.204876] t5 : ff60000001218000 t6 : ff200000103338b8 [ 21.205079] status: 0000000200000020 badaddr: 0000000000000000 cause: 0000000000000008 With the incorrect PC, the backtrace showed by crash tool as below, the first stack frame is abnormal, crash> bt PID: 113 TASK: ff60000002269600 CPU: 0 COMMAND: "sh" #0 [ff2000001039bb90] __efistub_.Ldebug_info0 at 00ffffffa5537400 <-- Abnormal #1 [ff2000001039bcf0] panic at ffffffff806578ba #2 [ff2000001039bd50] sysrq_reset_seq_param_set at ffffffff8038c030 #3 [ff2000001039bda0] __handle_sysrq at ffffffff8038c5f8 #4 [ff2000001039be00] write_sysrq_trigger at ffffffff8038cad8 #5 [ff2000001039be20] proc_reg_write at ffffffff801b7edc #6 [ff2000001039be40] vfs_write at ffffffff80152ba6 #7 [ff2000001039be80] ksys_write at ffffffff80152ece #8 [ff2000001039bed0] sys_write at ffffffff80152f46 With the patch, we can get current kernel mode PC, the output as below, [ 17.607658] CPU: 0 PID: 113 Comm: sh Kdump: loaded Not tainted 5.18.9 #42 [ 17.607937] Hardware name: riscv-virtio,qemu (DT) [ 17.608150] epc : ffffffff800078f8 ra : ffffffff8008862c sp : ff20000010333b90 [ 17.608441] gp : ffffffff810dde38 tp : ff6000000226c200 t0 : ffffffff8032be68 [ 17.608741] t1 : 0720072007200720 t2 : 666666666666663c s0 : ff20000010333cf0 [ 17.609025] s1 : 0000000000000000 a0 : ff20000010333b98 a1 : 0000000000000001 [ 17.609320] a2 : 0000000000000010 a3 : 0000000000000000 a4 : 0000000000000000 [ 17.609601] a5 : ff60000001c78000 a6 : 000000000000003c a7 : ffffffff8035c9a4 [ 17.609894] s2 : ffffffff810df0a8 s3 : ffffffff810df718 s4 : ff20000010333b98 [ 17.610186] s5 : 0000000000000000 s6 : 0000000000000007 s7 : ffffffff80c4a468 [ 17.610469] s8 : 00ffffffca281410 s9 : 0000000000000007 s10: 00aaaaaab5bb6700 [ 17.610755] s11: 0000000000000001 t3 : ff60000001218f00 t4 : ff60000001218f00 [ 17.611041] t5 : ff60000001218000 t6 : ff20000010333988 [ 17.611255] status: 0000000200000020 badaddr: 0000000000000000 cause: 0000000000000008 With the correct PC, the backtrace showed by crash tool as below, crash> bt PID: 113 TASK: ff6000000226c200 CPU: 0 COMMAND: "sh" #0 [ff20000010333b90] riscv_crash_save_regs at ffffffff800078f8 <--- Normal #1 [ff20000010333cf0] panic at ffffffff806578c6 #2 [ff20000010333d50] sysrq_reset_seq_param_set at ffffffff8038c03c #3 [ff20000010333da0] __handle_sysrq at ffffffff8038c604 #4 [ff20000010333e00] write_sysrq_trigger at ffffffff8038cae4 #5 [ff20000010333e20] proc_reg_write at ffffffff801b7ee8 #6 [ff20000010333e40] vfs_write at ffffffff80152bb2 #7 [ff20000010333e80] ksys_write at ffffffff80152eda #8 [ff20000010333ed0] sys_write at ffffffff80152f52 Fixes: e53d281 ("RISC-V: Add kdump support") Co-developed-by: Guo Ren <guoren@kernel.org> Signed-off-by: Xianting Tian <xianting.tian@linux.alibaba.com> Link: https://lore.kernel.org/r/20220811074150.3020189-3-xianting.tian@linux.alibaba.com Cc: stable@vger.kernel.org Signed-off-by: Palmer Dabbelt <palmer@rivosinc.com>
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There are two problems with the current code of memory_intersects: First, it doesn't check whether the region (begin, end) falls inside the region (virt, vend), that is (virt < begin && vend > end). The second problem is if vend is equal to begin, it will return true but this is wrong since vend (virt + size) is not the last address of the memory region but (virt + size -1) is. The wrong determination will trigger the misreporting when the function check_for_illegal_area calls memory_intersects to check if the dma region intersects with stext region. The misreporting is as below (stext is at 0x80100000): WARNING: CPU: 0 PID: 77 at kernel/dma/debug.c:1073 check_for_illegal_area+0x130/0x168 DMA-API: chipidea-usb2 e0002000.usb: device driver maps memory from kernel text or rodata [addr=800f0000] [len=65536] Modules linked in: CPU: 1 PID: 77 Comm: usb-storage Not tainted 5.19.0-yocto-standard #5 Hardware name: Xilinx Zynq Platform unwind_backtrace from show_stack+0x18/0x1c show_stack from dump_stack_lvl+0x58/0x70 dump_stack_lvl from __warn+0xb0/0x198 __warn from warn_slowpath_fmt+0x80/0xb4 warn_slowpath_fmt from check_for_illegal_area+0x130/0x168 check_for_illegal_area from debug_dma_map_sg+0x94/0x368 debug_dma_map_sg from __dma_map_sg_attrs+0x114/0x128 __dma_map_sg_attrs from dma_map_sg_attrs+0x18/0x24 dma_map_sg_attrs from usb_hcd_map_urb_for_dma+0x250/0x3b4 usb_hcd_map_urb_for_dma from usb_hcd_submit_urb+0x194/0x214 usb_hcd_submit_urb from usb_sg_wait+0xa4/0x118 usb_sg_wait from usb_stor_bulk_transfer_sglist+0xa0/0xec usb_stor_bulk_transfer_sglist from usb_stor_bulk_srb+0x38/0x70 usb_stor_bulk_srb from usb_stor_Bulk_transport+0x150/0x360 usb_stor_Bulk_transport from usb_stor_invoke_transport+0x38/0x440 usb_stor_invoke_transport from usb_stor_control_thread+0x1e0/0x238 usb_stor_control_thread from kthread+0xf8/0x104 kthread from ret_from_fork+0x14/0x2c Refactor memory_intersects to fix the two problems above. Before the 1d7db83 ("dma-debug: use memory_intersects() directly"), memory_intersects is called only by printk_late_init: printk_late_init -> init_section_intersects ->memory_intersects. There were few places where memory_intersects was called. When commit 1d7db83 ("dma-debug: use memory_intersects() directly") was merged and CONFIG_DMA_API_DEBUG is enabled, the DMA subsystem uses it to check for an illegal area and the calltrace above is triggered. [akpm@linux-foundation.org: fix nearby comment typo] Link: https://lkml.kernel.org/r/20220819081145.948016-1-quanyang.wang@windriver.com Fixes: 9795593 ("asm/sections: add helpers to check for section data") Signed-off-by: Quanyang Wang <quanyang.wang@windriver.com> Cc: Ard Biesheuvel <ardb@kernel.org> Cc: Arnd Bergmann <arnd@arndb.de> Cc: Thierry Reding <treding@nvidia.com> Cc: <stable@vger.kernel.org> Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
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The SRv6 layer allows defining HMAC data that can later be used to sign IPv6 Segment Routing Headers. This configuration is realised via netlink through four attributes: SEG6_ATTR_HMACKEYID, SEG6_ATTR_SECRET, SEG6_ATTR_SECRETLEN and SEG6_ATTR_ALGID. Because the SECRETLEN attribute is decoupled from the actual length of the SECRET attribute, it is possible to provide invalid combinations (e.g., secret = "", secretlen = 64). This case is not checked in the code and with an appropriately crafted netlink message, an out-of-bounds read of up to 64 bytes (max secret length) can occur past the skb end pointer and into skb_shared_info: Breakpoint 1, seg6_genl_sethmac (skb=<optimized out>, info=<optimized out>) at net/ipv6/seg6.c:208 208 memcpy(hinfo->secret, secret, slen); (gdb) bt #0 seg6_genl_sethmac (skb=<optimized out>, info=<optimized out>) at net/ipv6/seg6.c:208 #1 0xffffffff81e012e9 in genl_family_rcv_msg_doit (skb=skb@entry=0xffff88800b1f9f00, nlh=nlh@entry=0xffff88800b1b7600, extack=extack@entry=0xffffc90000ba7af0, ops=ops@entry=0xffffc90000ba7a80, hdrlen=4, net=0xffffffff84237580 <init_net>, family=<optimized out>, family=<optimized out>) at net/netlink/genetlink.c:731 #2 0xffffffff81e01435 in genl_family_rcv_msg (extack=0xffffc90000ba7af0, nlh=0xffff88800b1b7600, skb=0xffff88800b1f9f00, family=0xffffffff82fef6c0 <seg6_genl_family>) at net/netlink/genetlink.c:775 #3 genl_rcv_msg (skb=0xffff88800b1f9f00, nlh=0xffff88800b1b7600, extack=0xffffc90000ba7af0) at net/netlink/genetlink.c:792 #4 0xffffffff81dfffc3 in netlink_rcv_skb (skb=skb@entry=0xffff88800b1f9f00, cb=cb@entry=0xffffffff81e01350 <genl_rcv_msg>) at net/netlink/af_netlink.c:2501 #5 0xffffffff81e00919 in genl_rcv (skb=0xffff88800b1f9f00) at net/netlink/genetlink.c:803 #6 0xffffffff81dff6ae in netlink_unicast_kernel (ssk=0xffff888010eec800, skb=0xffff88800b1f9f00, sk=0xffff888004aed000) at net/netlink/af_netlink.c:1319 #7 netlink_unicast (ssk=ssk@entry=0xffff888010eec800, skb=skb@entry=0xffff88800b1f9f00, portid=portid@entry=0, nonblock=<optimized out>) at net/netlink/af_netlink.c:1345 #8 0xffffffff81dff9a4 in netlink_sendmsg (sock=<optimized out>, msg=0xffffc90000ba7e48, len=<optimized out>) at net/netlink/af_netlink.c:1921 ... (gdb) p/x ((struct sk_buff *)0xffff88800b1f9f00)->head + ((struct sk_buff *)0xffff88800b1f9f00)->end $1 = 0xffff88800b1b76c0 (gdb) p/x secret $2 = 0xffff88800b1b76c0 (gdb) p slen $3 = 64 '@' The OOB data can then be read back from userspace by dumping HMAC state. This commit fixes this by ensuring SECRETLEN cannot exceed the actual length of SECRET. Reported-by: Lucas Leong <wmliang.tw@gmail.com> Tested: verified that EINVAL is correctly returned when secretlen > len(secret) Fixes: 4f4853d ("ipv6: sr: implement API to control SR HMAC structure") Signed-off-by: David Lebrun <dlebrun@google.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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Syzkaller reported BUG_ON as follows: ------------[ cut here ]------------ kernel BUG at fs/ntfs/dir.c:86! invalid opcode: 0000 [#1] PREEMPT SMP KASAN PTI CPU: 3 PID: 758 Comm: a.out Not tainted 5.19.0-next-20220808 #5 Hardware name: QEMU Standard PC (i440FX + PIIX, 1996), BIOS rel-1.16.0-0-gd239552ce722-prebuilt.qemu.org 04/01/2014 RIP: 0010:ntfs_lookup_inode_by_name+0xd11/0x2d10 Code: ff e9 b9 01 00 00 e8 1e fe d6 fe 48 8b 7d 98 49 8d 5d 07 e8 91 85 29 ff 48 c7 45 98 00 00 00 00 e9 5a fb ff ff e8 ff fd d6 fe <0f> 0b e8 f8 fd d6 fe 0f 0b e8 f1 fd d6 fe 48 8b b5 50 ff ff ff 4c RSP: 0018:ffff888079607978 EFLAGS: 00010293 RAX: 0000000000000000 RBX: 0000000000008000 RCX: 0000000000000000 RDX: ffff88807cf10000 RSI: ffffffff82a4a081 RDI: 0000000000000003 RBP: ffff888079607a70 R08: 0000000000000001 R09: ffff88807a6d01d7 R10: ffffed100f4da03a R11: 0000000000000000 R12: ffff88800f0fb110 R13: ffff88800f0ee000 R14: ffff88800f0fb000 R15: 0000000000000001 FS: 00007f33b63c7540(0000) GS:ffff888108580000(0000) knlGS:0000000000000000 CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 CR2: 00007f33b635c090 CR3: 000000000f39e005 CR4: 0000000000770ee0 DR0: 0000000000000000 DR1: 0000000000000000 DR2: 0000000000000000 DR3: 0000000000000000 DR6: 00000000fffe0ff0 DR7: 0000000000000400 PKRU: 55555554 Call Trace: <TASK> load_system_files+0x1f7f/0x3620 ntfs_fill_super+0xa01/0x1be0 mount_bdev+0x36a/0x440 ntfs_mount+0x3a/0x50 legacy_get_tree+0xfb/0x210 vfs_get_tree+0x8f/0x2f0 do_new_mount+0x30a/0x760 path_mount+0x4de/0x1880 __x64_sys_mount+0x2b3/0x340 do_syscall_64+0x38/0x90 entry_SYSCALL_64_after_hwframe+0x63/0xcd RIP: 0033:0x7f33b62ff9ea Code: 48 8b 0d a9 f4 0b 00 f7 d8 64 89 01 48 83 c8 ff c3 66 2e 0f 1f 84 00 00 00 00 00 0f 1f 44 00 00 49 89 ca b8 a5 00 00 00 0f 05 <48> 3d 01 f0 ff ff 73 01 c3 48 8b 0d 76 f4 0b 00 f7 d8 64 89 01 48 RSP: 002b:00007ffd0c471aa8 EFLAGS: 00000202 ORIG_RAX: 00000000000000a5 RAX: ffffffffffffffda RBX: 0000000000000000 RCX: 00007f33b62ff9ea RDX: 0000000020000000 RSI: 0000000020000100 RDI: 00007ffd0c471be0 RBP: 00007ffd0c471c60 R08: 00007ffd0c471ae0 R09: 00007ffd0c471c24 R10: 0000000000000000 R11: 0000000000000202 R12: 000055bac5afc160 R13: 0000000000000000 R14: 0000000000000000 R15: 0000000000000000 </TASK> Modules linked in: ---[ end trace 0000000000000000 ]--- Fix this by adding sanity check on extended system files' directory inode to ensure that it is directory, just like ntfs_extend_init() when mounting ntfs3. Link: https://lkml.kernel.org/r/20220809064730.2316892-1-chenxiaosong2@huawei.com Signed-off-by: ChenXiaoSong <chenxiaosong2@huawei.com> Cc: Anton Altaparmakov <anton@tuxera.com> Cc: <stable@vger.kernel.org> Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
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Petr Machata says: ==================== mlxsw: Adjust QOS tests for Spectrum-4 testing Amit writes: Quality Of Service tests create congestion and verify the switch behavior. To create congestion, they need to have more traffic than the port can handle, so some of them force 1Gbps speed. The tests assume that 1Gbps speed is supported. Spectrum-4 ASIC will not support this speed in all ports, so to be able to run QOS tests there, some adjustments are required. Patch set overview: Patch #1 adjusts qos_ets_strict, qos_mc_aware and sch_ets tests. Patch #2 adjusts RED tests. Patch #3 extends devlink_lib to support querying maximum pool size. Patch #4 adds a test which can be used instead of qos_burst and do not assume that 1Gbps speed is supported. Patch #5 removes qos_burst test. ==================== Link: https://lore.kernel.org/r/cover.1663152826.git.petrm@nvidia.com Signed-off-by: Jakub Kicinski <kuba@kernel.org>
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Haoyue Xu says: ==================== net: ll_temac: Cleanup for clearing static warnings Most static warnings are detected by Checkpatch.pl, mainly about: (1) #1: About the comments. (2) #2: About function name in a string. (3) #3: About the open parenthesis. (4) #4: About the else branch. (6) #6: About trailing statements. (7) #5,#7: About blank lines and spaces. ==================== Link: https://lore.kernel.org/r/20220917103843.526877-1-xuhaoyue1@hisilicon.com Signed-off-by: Jakub Kicinski <kuba@kernel.org>
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Daniel Machon says:
====================
net: Add QoS offload support for sparx5
This patch series adds support for offloading QoS features with the tc
command suite, to the sparx5 switch. The new offloadable QoS features
introduced in this patch series are:
- tc-mqprio for mapping traffic class to hardware queue. Queues are by
default mapped 1:1 in hardware, as such the mqprio qdisc is used as
an attachment point for qdiscs tbf and ets.
$ tc qdisc add dev eth0 root handle 1:0 mqprio
- tc-tbf for setting up shaping on scheduler elements of the HSCH
(Hierarchical Scheduler) block. Shaping on either port output or
queue output is supported.
Port shaper: $ tc qdisc add dev eth0 root handle 1:0 tbf rate \
10000000 burst 8192 limit 1m
Queue shaper: $ tc qdisc replace dev eth0 parent 1:5 handle 2:0 tbf \
rate 10000000 burst 8192 limit 1m
- tc-ets for setting up strict and or bandwidth-sharing bands on one
through eight priority queues.
Configure a mix of strict and bw-sharing bands:
$ tc qdisc add dev eth0 handle 1: root ets bands 8 strict 5 \
quanta 1000 1000 1000 priomap 7 6 5 4 3 2 1 0
Patch #1 Sets up the tc hook.
Patch #2 Adds support for offloading the tc-mqprio qdisc.
Patch #3 Adds support for offloading the tc-tbf qdisc.
Patch #4 Adds support for offloading the tc-ets qdisc.
Patch #5 Updates the maintainers of the sparx5 driver.
========================================================================
v1:
https://lore.kernel.org/netdev/20220919120215.3815696-1-daniel.machon@microchip.com/
v1 -> v2:
- Fix compiler warning in patch #2
- Fix comment style in patch #4
====================
Signed-off-by: David S. Miller <davem@davemloft.net>
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Andrii Nakryiko says: ==================== A small patch set adding few usability improvements and features making veristat a more convenient tool to be used for work on BPF verifier: - patch #2 speeds up and makes stats parsing from BPF verifier log more robust; - patch #3 makes veristat less strict about input object files; veristat will ignore non-BPF ELF files; - patch #4 adds progress log, by default, so that user doing mass-verification is aware that veristat is not stuck; - patch #5 allows to tune requested BPF verifier log level, which makes veristat a simplest way to get BPF verifier log, especially successfully verified ones. v1->v2: - don't emit progress in non-table mode, as it breaks CSV output. ==================== Signed-off-by: Alexei Starovoitov <ast@kernel.org>
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ASAN reports an use-after-free in btf_dump_name_dups:
ERROR: AddressSanitizer: heap-use-after-free on address 0xffff927006db at pc 0xaaaab5dfb618 bp 0xffffdd89b890 sp 0xffffdd89b928
READ of size 2 at 0xffff927006db thread T0
#0 0xaaaab5dfb614 in __interceptor_strcmp.part.0 (test_progs+0x21b614)
#1 0xaaaab635f144 in str_equal_fn tools/lib/bpf/btf_dump.c:127
#2 0xaaaab635e3e0 in hashmap_find_entry tools/lib/bpf/hashmap.c:143
#3 0xaaaab635e72c in hashmap__find tools/lib/bpf/hashmap.c:212
#4 0xaaaab6362258 in btf_dump_name_dups tools/lib/bpf/btf_dump.c:1525
#5 0xaaaab636240c in btf_dump_resolve_name tools/lib/bpf/btf_dump.c:1552
#6 0xaaaab6362598 in btf_dump_type_name tools/lib/bpf/btf_dump.c:1567
#7 0xaaaab6360b48 in btf_dump_emit_struct_def tools/lib/bpf/btf_dump.c:912
#8 0xaaaab6360630 in btf_dump_emit_type tools/lib/bpf/btf_dump.c:798
#9 0xaaaab635f720 in btf_dump__dump_type tools/lib/bpf/btf_dump.c:282
#10 0xaaaab608523c in test_btf_dump_incremental tools/testing/selftests/bpf/prog_tests/btf_dump.c:236
#11 0xaaaab6097530 in test_btf_dump tools/testing/selftests/bpf/prog_tests/btf_dump.c:875
#12 0xaaaab6314ed0 in run_one_test tools/testing/selftests/bpf/test_progs.c:1062
#13 0xaaaab631a0a8 in main tools/testing/selftests/bpf/test_progs.c:1697
#14 0xffff9676d214 in __libc_start_main ../csu/libc-start.c:308
#15 0xaaaab5d65990 (test_progs+0x185990)
0xffff927006db is located 11 bytes inside of 16-byte region [0xffff927006d0,0xffff927006e0)
freed by thread T0 here:
#0 0xaaaab5e2c7c4 in realloc (test_progs+0x24c7c4)
#1 0xaaaab634f4a0 in libbpf_reallocarray tools/lib/bpf/libbpf_internal.h:191
#2 0xaaaab634f840 in libbpf_add_mem tools/lib/bpf/btf.c:163
#3 0xaaaab636643c in strset_add_str_mem tools/lib/bpf/strset.c:106
#4 0xaaaab6366560 in strset__add_str tools/lib/bpf/strset.c:157
#5 0xaaaab6352d70 in btf__add_str tools/lib/bpf/btf.c:1519
#6 0xaaaab6353e10 in btf__add_field tools/lib/bpf/btf.c:2032
#7 0xaaaab6084fcc in test_btf_dump_incremental tools/testing/selftests/bpf/prog_tests/btf_dump.c:232
#8 0xaaaab6097530 in test_btf_dump tools/testing/selftests/bpf/prog_tests/btf_dump.c:875
#9 0xaaaab6314ed0 in run_one_test tools/testing/selftests/bpf/test_progs.c:1062
#10 0xaaaab631a0a8 in main tools/testing/selftests/bpf/test_progs.c:1697
#11 0xffff9676d214 in __libc_start_main ../csu/libc-start.c:308
#12 0xaaaab5d65990 (test_progs+0x185990)
previously allocated by thread T0 here:
#0 0xaaaab5e2c7c4 in realloc (test_progs+0x24c7c4)
#1 0xaaaab634f4a0 in libbpf_reallocarray tools/lib/bpf/libbpf_internal.h:191
#2 0xaaaab634f840 in libbpf_add_mem tools/lib/bpf/btf.c:163
#3 0xaaaab636643c in strset_add_str_mem tools/lib/bpf/strset.c:106
#4 0xaaaab6366560 in strset__add_str tools/lib/bpf/strset.c:157
#5 0xaaaab6352d70 in btf__add_str tools/lib/bpf/btf.c:1519
#6 0xaaaab6353ff0 in btf_add_enum_common tools/lib/bpf/btf.c:2070
#7 0xaaaab6354080 in btf__add_enum tools/lib/bpf/btf.c:2102
#8 0xaaaab6082f50 in test_btf_dump_incremental tools/testing/selftests/bpf/prog_tests/btf_dump.c:162
#9 0xaaaab6097530 in test_btf_dump tools/testing/selftests/bpf/prog_tests/btf_dump.c:875
#10 0xaaaab6314ed0 in run_one_test tools/testing/selftests/bpf/test_progs.c:1062
#11 0xaaaab631a0a8 in main tools/testing/selftests/bpf/test_progs.c:1697
#12 0xffff9676d214 in __libc_start_main ../csu/libc-start.c:308
#13 0xaaaab5d65990 (test_progs+0x185990)
The reason is that the key stored in hash table name_map is a string
address, and the string memory is allocated by realloc() function, when
the memory is resized by realloc() later, the old memory may be freed,
so the address stored in name_map references to a freed memory, causing
use-after-free.
Fix it by storing duplicated string address in name_map.
Fixes: 919d2b1 ("libbpf: Allow modification of BTF and add btf__add_str API")
Signed-off-by: Xu Kuohai <xukuohai@huawei.com>
Signed-off-by: Andrii Nakryiko <andrii@kernel.org>
Acked-by: Martin KaFai Lau <martin.lau@kernel.org>
Link: https://lore.kernel.org/bpf/20221011120108.782373-2-xukuohai@huaweicloud.com
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Inspired by commit 9fb7410("arm64/BUG: Use BRK instruction for generic BUG traps"), do similar for LoongArch to use generic BUG() handler. This patch uses the BREAK software breakpoint instruction to generate a trap instead, similarly to most other arches, with the generic BUG code generating the dmesg boilerplate. This allows bug metadata to be moved to a separate table and reduces the amount of inline code at BUG() and WARN() sites. This also avoids clobbering any registers before they can be dumped. To mitigate the size of the bug table further, this patch makes use of the existing infrastructure for encoding addresses within the bug table as 32-bit relative pointers instead of absolute pointers. (Note: this limits the max kernel size to 2GB.) Before patch: [ 3018.338013] lkdtm: Performing direct entry BUG [ 3018.342445] Kernel bug detected[#5]: [ 3018.345992] CPU: 2 PID: 865 Comm: cat Tainted: G D 6.0.0-rc6+ #35 After patch: [ 125.585985] lkdtm: Performing direct entry BUG [ 125.590433] ------------[ cut here ]------------ [ 125.595020] kernel BUG at drivers/misc/lkdtm/bugs.c:78! [ 125.600211] Oops - BUG[#1]: [ 125.602980] CPU: 3 PID: 410 Comm: cat Not tainted 6.0.0-rc6+ #36 Out-of-line file/line data information obtained compared to before. Signed-off-by: Youling Tang <tangyouling@loongson.cn> Signed-off-by: Huacai Chen <chenhuacai@loongson.cn>
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The btrfs_alloc_dummy_root() uses ERR_PTR as the error return value rather than NULL, if error happened, there will be a NULL pointer dereference: BUG: KASAN: null-ptr-deref in btrfs_free_dummy_root+0x21/0x50 [btrfs] Read of size 8 at addr 000000000000002c by task insmod/258926 CPU: 2 PID: 258926 Comm: insmod Tainted: G W 6.1.0-rc2+ #5 Hardware name: QEMU Standard PC (i440FX + PIIX, 1996), BIOS 1.14.0-1.fc33 04/01/2014 Call Trace: <TASK> dump_stack_lvl+0x34/0x44 kasan_report+0xb7/0x140 kasan_check_range+0x145/0x1a0 btrfs_free_dummy_root+0x21/0x50 [btrfs] btrfs_test_free_space_cache+0x1a8c/0x1add [btrfs] btrfs_run_sanity_tests+0x65/0x80 [btrfs] init_btrfs_fs+0xec/0x154 [btrfs] do_one_initcall+0x87/0x2a0 do_init_module+0xdf/0x320 load_module+0x3006/0x3390 __do_sys_finit_module+0x113/0x1b0 do_syscall_64+0x35/0x80 entry_SYSCALL_64_after_hwframe+0x46/0xb0 Fixes: aaedb55 ("Btrfs: add tests for btrfs_get_extent") CC: stable@vger.kernel.org # 4.9+ Reviewed-by: Anand Jain <anand.jain@oracle.com> Signed-off-by: Zhang Xiaoxu <zhangxiaoxu5@huawei.com> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
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Daniel Machon says: ==================== Add new PCP and APPTRUST attributes to dcbnl This patch series adds new extension attributes to dcbnl, to support PCP prioritization (and thereby hw offloadable pcp-based queue classification) and per-selector trust and trust order. Additionally, the microchip sparx5 driver has been dcb-enabled to make use of the new attributes to offload PCP, DSCP and Default prio to the switch, and implement trust order of selectors. For pre-RFC discussion see: https://lore.kernel.org/netdev/Yv9VO1DYAxNduw6A@DEN-LT-70577/ For RFC series see: https://lore.kernel.org/netdev/20220915095757.2861822-1-daniel.machon@microchip.com/ In summary: there currently exist no convenient way to offload per-port PCP-based queue classification to hardware. The DCB subsystem offers different ways to prioritize through its APP table, but lacks an option for PCP. Similarly, there is no way to indicate the notion of trust for APP table selectors. This patch series addresses both topics. PCP based queue classification: - 8021Q standardizes the Priority Code Point table (see 6.9.3 of IEEE Std 802.1Q-2018). This patch series makes it possible, to offload the PCP classification to said table. The new PCP selector is not a standard part of the APP managed object, therefore it is encapsulated in a new non-std extension attribute. Selector trust: - ASIC's often has the notion of trust DSCP and trust PCP. The new attribute makes it possible to specify a trust order of app selectors, which drivers can then react on. DCB-enable sparx5 driver: - Now supports offloading of DSCP, PCP and default priority. Only one mapping of protocol:priority is allowed. Consecutive mappings of the same protocol to some new priority, will overwrite the previous. This is to keep a consistent view of the app table and the hardware. - Now supports dscp and pcp trust, by use of the introduced dcbnl_set/getapptrust ops. Sparx5 supports trust orders: [], [dscp], [pcp] and [dscp, pcp]. For now, only DSCP and PCP selectors are supported by the driver, everything else is bounced. Patch #1 introduces a new PCP selector to the APP object, which makes it possible to encode PCP and DEI in the app triplet and offload it to the PCP table of the ASIC. Patch #2 Introduces the new extension attributes DCB_ATTR_DCB_APP_TRUST_TABLE and DCB_ATTR_DCB_APP_TRUST. Trusted selectors are passed in the nested DCB_ATTR_DCB_APP_TRUST_TABLE attribute, and assembled into an array of selectors: u8 selectors[256]; where lower indexes has higher precedence. In the array, selectors are stored consecutively, starting from index zero. With a maximum number of 256 unique selectors, the list has the same maximum size. Patch #3 Sets up the dcbnl ops hook, and adds support for offloading pcp app entries, to the PCP table of the switch. Patch #4 Makes use of the dcbnl_set/getapptrust ops, to set a per-port trust order. Patch #5 Adds support for offloading dscp app entries to the DSCP table of the switch. Patch #6 Adds support for offloading default prio app entries to the switch. ==================== Link: https://lore.kernel.org/r/20221101094834.2726202-1-daniel.machon@microchip.com Signed-off-by: Paolo Abeni <pabeni@redhat.com>
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Definition is only a proposal. There should be free place for 8B of tx
timestamp.
Signed-off-by: Michal Swiatkowski michal.swiatkowski@intel.com