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Make st7735fb work #1
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Add module to bind SPI CS0 to ST7735FB instead (CONFIG_FB_ST7735_MAP). Move st7735fb driver to separate folder to allow loading after SPI if driver is built-in to kernel.
Hi Neil and Lady Ada- Thanks for publishing your work on the ST7735 framebuffer modules. I rebased your code to the 3.2.27+ rpi kernel, and made a bunch of enhancements to it. A demo of the results is at http://www.whence.com/rpi . My ST7735 framebuffer branch is available at https://github.com/kamalmostafa/raspberrypi-linux/commits/rpi-3.2.27%2Bkamal-st7735fb . I added build-time configurable support for "red tab" vs. "green tab" Adafruit panels, based on comments in the Adafruit graphics library. I think my panel is a "red tab" type, but I'd appreciate any additional information about the panel types and/or verification from anyone with a "green tab" type. I also found that I cannot properly drive my panel at the 12 MHz SPI clock rate as coded in Neil's _map module. The fastest reliable SPI rate I've seen is 4 MHz for the image data -- and the initial panel config commands even seem to need to be limited to 2 MHz. (My branch makes both rates configurable). I'm curious about the 12 MHz rate as coded (note that given the clock divisor in spi-bcm2708, that actually results in a rate of 7812500 Hz). Lady Ada, please also note in particular this bug kamalmostafa/raspberrypi-linux@8a6df98 (wrong number of params in the initial panel config sequence), which was introduced in your original commit of the ST7735 driver. Any feedback will be appreciated. Thanks again! |
Hi Kamal, I'm glad to see my work on this helped someone else get it going, and even more glad that you were able to enhance it. Did you manage to get fbcon to work on the screen? Is that the terminal you show on your website? That was my ultimate aim when I started this work, but it wouldn't work for me. With regards to the data rate, I was aware that the coded data rate wasn't theoretically possible, but it seemed to work for me. I haven't got much free time at the moment, so I am not able to verify that it actually works at that rate for me, but as soon as I have the chance I will investigate further. Cheers, On Sunday, 28 October 2012 at 7:57PM, Kamal Mostafa wrote:
|
Hi Neil- I can't get fbcon to work with this driver either. I'm interested in trying to make it work too... Is your comment about fbcon not working with deferred I/O a fact, or just a guess? ;-) The terminal session I'm using in my http://www.whence.com/rpi demo is fbterm (standard apt-get installable version), which I'm launching from inittab. I've just added more details to that page, explaining the particulars of that. |
fbcon works well on my current version at ohporter/linux@aa6a058 You might want to incorporate the fbcon fixes into your working version. After some regmap changes this is what I plan to send upstream. |
This is an fsfuzzer bug. ->s_journal is set at the end of ext3_load_journal() but we try to use it in the error handling from ext3_get_journal() while it's still NULL. [ 337.039041] BUG: unable to handle kernel NULL pointer dereference at 0000000000000024 [ 337.040380] IP: [<ffffffff816e6539>] _raw_spin_lock+0x9/0x30 [ 337.041687] PGD 0 [ 337.043118] Oops: 0002 [#1] SMP [ 337.044483] CPU 3 [ 337.044495] Modules linked in: ecb md4 cifs fuse kvm_intel kvm brcmsmac brcmutil crc8 cordic r8169 [last unloaded: scsi_wait_scan] [ 337.047633] [ 337.049259] Pid: 8308, comm: mount Not tainted 3.2.0-rc2-next-20111121+ raspberrypi#24 SAMSUNG ELECTRONICS CO., LTD. RV411/RV511/E3511/S3511 /RV411/RV511/E3511/S3511 [ 337.051064] RIP: 0010:[<ffffffff816e6539>] [<ffffffff816e6539>] _raw_spin_lock+0x9/0x30 [ 337.052879] RSP: 0018:ffff8800b1d11ae8 EFLAGS: 00010282 [ 337.054668] RAX: 0000000000000100 RBX: 0000000000000000 RCX: ffff8800b77c2000 [ 337.056400] RDX: ffff8800a97b5c00 RSI: 0000000000000000 RDI: 0000000000000024 [ 337.058099] RBP: ffff8800b1d11ae8 R08: 6000000000000000 R09: e018000000000000 [ 337.059841] R10: ff67366cc2607c03 R11: 00000000110688e6 R12: 0000000000000000 [ 337.061607] R13: 0000000000000000 R14: 0000000000000000 R15: ffff8800a78f06e8 [ 337.063385] FS: 00007f9d95652800(0000) GS:ffff8800b7180000(0000) knlGS:0000000000000000 [ 337.065110] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [ 337.066801] CR2: 0000000000000024 CR3: 00000000aef2c000 CR4: 00000000000006e0 [ 337.068581] DR0: 0000000000000000 DR1: 0000000000000000 DR2: 0000000000000000 [ 337.070321] DR3: 0000000000000000 DR6: 00000000ffff0ff0 DR7: 0000000000000400 [ 337.072105] Process mount (pid: 8308, threadinfo ffff8800b1d10000, task ffff8800b1d02be0) [ 337.073800] Stack: [ 337.075487] ffff8800b1d11b08 ffffffff811f48cf ffff88007ac9b158 0000000000000000 [ 337.077255] ffff8800b1d11b38 ffffffff8119405d ffff88007ac9b158 ffff88007ac9b250 [ 337.078851] ffffffff8181bda0 ffffffff8181bda0 ffff8800b1d11b68 ffffffff81131e31 [ 337.080284] Call Trace: [ 337.081706] [<ffffffff811f48cf>] log_start_commit+0x1f/0x40 [ 337.083107] [<ffffffff8119405d>] ext3_evict_inode+0x1fd/0x2a0 [ 337.084490] [<ffffffff81131e31>] evict+0xa1/0x1a0 [ 337.085857] [<ffffffff81132031>] iput+0x101/0x210 [ 337.087220] [<ffffffff811339d1>] iget_failed+0x21/0x30 [ 337.088581] [<ffffffff811905fc>] ext3_iget+0x15c/0x450 [ 337.089936] [<ffffffff8118b0c1>] ? ext3_rsv_window_add+0x81/0x100 [ 337.091284] [<ffffffff816df9a4>] ext3_get_journal+0x15/0xde [ 337.092641] [<ffffffff811a2e9b>] ext3_fill_super+0xf2b/0x1c30 [ 337.093991] [<ffffffff810ddf7d>] ? register_shrinker+0x4d/0x60 [ 337.095332] [<ffffffff8111c112>] mount_bdev+0x1a2/0x1e0 [ 337.096680] [<ffffffff811a1f70>] ? ext3_setup_super+0x210/0x210 [ 337.098026] [<ffffffff8119a770>] ext3_mount+0x10/0x20 [ 337.099362] [<ffffffff8111cbee>] mount_fs+0x3e/0x1b0 [ 337.100759] [<ffffffff810eda1b>] ? __alloc_percpu+0xb/0x10 [ 337.102330] [<ffffffff81135385>] vfs_kern_mount+0x65/0xc0 [ 337.103889] [<ffffffff8113611f>] do_kern_mount+0x4f/0x100 [ 337.105442] [<ffffffff811378fc>] do_mount+0x19c/0x890 [ 337.106989] [<ffffffff810e8456>] ? memdup_user+0x46/0x90 [ 337.108572] [<ffffffff810e84f3>] ? strndup_user+0x53/0x70 [ 337.110114] [<ffffffff811383fb>] sys_mount+0x8b/0xe0 [ 337.111617] [<ffffffff816ed93b>] system_call_fastpath+0x16/0x1b [ 337.113133] Code: 38 c2 74 0f 66 0f 1f 44 00 00 f3 90 0f b6 03 38 c2 75 f7 48 83 c4 08 5b 5d c3 0f 1f 84 00 00 00 00 00 55 b8 00 01 00 00 48 89 e5 <f0> 66 0f c1 07 0f b6 d4 38 c2 74 0c 0f 1f 00 f3 90 0f b6 07 38 [ 337.116588] RIP [<ffffffff816e6539>] _raw_spin_lock+0x9/0x30 [ 337.118260] RSP <ffff8800b1d11ae8> [ 337.119998] CR2: 0000000000000024 [ 337.188701] ---[ end trace c36d790becac1615 ]--- Signed-off-by: Dan Carpenter <dan.carpenter@oracle.com> Signed-off-by: Jan Kara <jack@suse.cz>
If the dummy evgen failed init, the irq allocation functions which assume init succeeded may still be called - causing an OOPS due to wrong assumption. Here's the oops: [ 3.914332] BUG: unable to handle kernel NULL pointer dereference at 0000000000000148 [ 3.915310] IP: [<ffffffff810b3008>] __lock_acquire+0xac/0xe50 [ 3.915310] PGD 0 [ 3.915310] Oops: 0000 [#1] PREEMPT SMP DEBUG_PAGEALLOC [ 3.915310] CPU 1 [ 3.915310] Pid: 1, comm: swapper Not tainted 3.2.0-rc2-sasha-00279-gd7bfb12-dirty raspberrypi#20 [ 3.915310] RIP: 0010:[<ffffffff810b3008>] [<ffffffff810b3008>] __lock_acquire+0xac/0xe50 [ 3.915310] RSP: 0018:ffff880012499bc0 EFLAGS: 00010046 [ 3.915310] RAX: 0000000000000086 RBX: ffff880012490000 RCX: 0000000000000000 [ 3.915310] RDX: 0000000000000000 RSI: 0000000000000000 RDI: 0000000000000148 [ 3.915310] RBP: ffff880012499c90 R08: 0000000000000002 R09: 0000000000000000 [ 3.915310] R10: 0000000000000148 R11: 0000000000000000 R12: 0000000000000148 [ 3.915310] R13: 0000000000000002 R14: 0000000000000000 R15: 0000000000000000 [ 3.915310] FS: 0000000000000000(0000) GS:ffff880013c00000(0000) knlGS:0000000000000000 [ 3.915310] CS: 0010 DS: 0000 ES: 0000 CR0: 000000008005003b [ 3.915310] CR2: 0000000000000148 CR3: 0000000002605000 CR4: 00000000000406e0 [ 3.915310] DR0: 0000000000000000 DR1: 0000000000000000 DR2: 0000000000000000 [ 3.915310] DR3: 0000000000000000 DR6: 00000000ffff0ff0 DR7: 0000000000000400 [ 3.915310] Process swapper (pid: 1, threadinfo ffff880012498000, task ffff880012490000) [ 3.915310] Stack: [ 3.915310] ffff880012490000 ffffffff81e6fd38 ffffffff00000000 0000000000000000 [ 3.915310] 0000000000000148 0000000012499c08 ffffffff00000000 000000000000002e [ 3.915310] 0000000000000001 ffff880012499ce0 ffffffff8161620e 0000000000000000 [ 3.915310] Call Trace: [ 3.915310] [<ffffffff81e6fd38>] ? retint_restore_args+0x13/0x13 [ 3.915310] [<ffffffff8161620e>] ? trace_hardirqs_on_thunk+0x3a/0x3f [ 3.915310] [<ffffffff81e6fd38>] ? retint_restore_args+0x13/0x13 [ 3.915310] [<ffffffff81af8883>] ? iio_dummy_evgen_get_irq+0x33/0x8a [ 3.915310] [<ffffffff810b4255>] lock_acquire+0x8a/0xa7 [ 3.915310] [<ffffffff81af8883>] ? iio_dummy_evgen_get_irq+0x33/0x8a [ 3.915310] [<ffffffff81e6db81>] __mutex_lock_common+0x63/0x491 [ 3.915310] [<ffffffff81af8883>] ? iio_dummy_evgen_get_irq+0x33/0x8a [ 3.915310] [<ffffffff810b474d>] ? debug_check_no_locks_freed+0x135/0x14a [ 3.915310] [<ffffffff810b2c3a>] ? lock_is_held+0x92/0x9d [ 3.915310] [<ffffffff81e6dfe5>] mutex_lock_nested+0x36/0x3b [ 3.915310] [<ffffffff81af8883>] iio_dummy_evgen_get_irq+0x33/0x8a [ 3.915310] [<ffffffff81af8594>] iio_simple_dummy_events_register+0x1b/0x69 [ 3.915310] [<ffffffff82ad4a91>] iio_dummy_init+0x105/0x18d [ 3.915310] [<ffffffff82ad498c>] ? iio_init+0x7d/0x7d [ 3.915310] [<ffffffff82a8dc02>] do_one_initcall+0x7a/0x135 [ 3.915310] [<ffffffff82a8dda7>] kernel_init+0xea/0x16f [ 3.915310] [<ffffffff81e727c4>] kernel_thread_helper+0x4/0x10 [ 3.915310] [<ffffffff81e6fd38>] ? retint_restore_args+0x13/0x13 [ 3.915310] [<ffffffff82a8dcbd>] ? do_one_initcall+0x135/0x135 [ 3.915310] [<ffffffff81e727c0>] ? gs_change+0x13/0x13 [ 3.915310] Code: 95 50 ff ff ff 74 24 e8 1f 3f 56 00 85 c0 0f 84 4e 0d 00 00 be cf 0b 00 00 83 3d 63 7c 58 02 00 0f 85 3c 0d 00 00 e9 c1 0c 00 00 [ 3.915310] 81 3a a0 17 ca 82 b8 01 00 00 00 44 0f 44 e8 83 fe 01 77 0c [ 3.915310] RIP [<ffffffff810b3008>] __lock_acquire+0xac/0xe50 [ 3.915310] RSP <ffff880012499bc0> [ 3.915310] CR2: 0000000000000148 Acked-by: Jonathan Cameron <jic23@cam.ac.uk> Signed-off-by: Sasha Levin <levinsasha928@gmail.com> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
If dma_terminate_all() is called before the ep93xx_dma_tasklet() gets to run, it tries to access an empty ->active list which results following OOPS: Internal error: Oops - undefined instruction: 0 [#1] CPU: 0 Not tainted (3.2.0-rc1EP-1+ raspberrypi#1008) PC is at 0xc184c868 LR is at ep93xx_dma_tasklet+0xec/0x164 pc : [<c184c868>] lr : [<c012b528>] psr: 00000013 sp : c02b7e70 ip : ffffffff fp : c02b7ea4 r10: 00000100 r9 : 80000013 r8 : c02b7e50 r7 : c02b7e70 r6 : c02b7ea4 r5 : 000000a4 r4 : c02b7e70 r3 : c02b751d r2 : 8ae34598 r1 : c184c6e0 r0 : c02b7ea4 Flags: nzcv IRQs on FIQs on Mode SVC_32 ISA ARM Segment kernel Control: c000717f Table: c0004000 DAC: 00000017 Process swapper (pid: 0, stack limit = 0xc02b6270) Stack: (0xc02b7e70 to 0xc02b8000) 7e60: c02b7ea4 c02b7e70 c0008b64 c02bd5c4 7e80: c02d60e0 00000000 00000000 c02bd44c c02d60e0 00000100 c02b7ec4 c02b7ea8 7ea0: c001c49c c012b44c 00000018 00000001 c02d60e0 c02b6000 c02b7f04 c02b7ec8 7ec0: c001cbc0 c001c3e4 c02b7eec c02b7ed8 00000006 0000000a c02bf674 c02c458c 7ee0: 00000011 00000000 c02b7f7c c0004000 41129200 c02b0c80 c02b7f14 c02b7f08 7f00: c001cdd0 c001cb38 c02b7f34 c02b7f18 c000983c c001cd98 c0009a60 60000013 7f20: fefb0001 c02b7f7c c02b7f44 c02b7f38 c0008190 c0009810 c02b7f9c c02b7f48 7f40: c0008b64 c0008190 c02c2bf8 00000002 c02b7f90 60000013 c02b6000 c02d1504 7f60: c02baa88 c02baa80 c0004000 41129200 c02b0c80 c02b7f9c c02b7fa0 c02b7f90 7f80: c0009a54 c0009a60 60000013 ffffffff c02b7fbc c02b7fa0 c000a03c c0009a40 7fa0: c02b80b0 c02b19dc c02b19d8 c02baa80 c02b7fcc c02b7fc0 c02384e4 c0009fd4 7fc0: c02b7ff4 c02b7fd0 c029d924 c0238494 c029d49c 00000000 00000000 c02b19dc 7fe0: c0007175 c02b803c 00000000 c02b7ff8 c000803c c029d700 00000000 00000000 Backtrace: [<c012b43c>] (ep93xx_dma_tasklet+0x0/0x164) from [<c001c49c>] (tasklet_action+0xc8/0xdc) [<c001c3d4>] (tasklet_action+0x0/0xdc) from [<c001cbc0>] (__do_softirq+0x98/0x154) r7:c02b6000 r6:c02d60e0 r5:00000001 r4:00000018 [<c001cb28>] (__do_softirq+0x0/0x154) from [<c001cdd0>] (irq_exit+0x48/0x50) [<c001cd88>] (irq_exit+0x0/0x50) from [<c000983c>] (handle_IRQ+0x3c/0x8c) [<c0009800>] (handle_IRQ+0x0/0x8c) from [<c0008190>] (asm_do_IRQ+0x10/0x14) r7:c02b7f7c r6:fefb0001 r5:60000013 r4:c0009a60 [<c0008180>] (asm_do_IRQ+0x0/0x14) from [<c0008b64>] (__irq_svc+0x24/0xc0) Exception stack(0xc02b7f48 to 0xc02b7f90) 7f40: c02c2bf8 00000002 c02b7f90 60000013 c02b6000 c02d1504 7f60: c02baa88 c02baa80 c0004000 41129200 c02b0c80 c02b7f9c c02b7fa0 c02b7f90 7f80: c0009a54 c0009a60 60000013 ffffffff [<c0009a30>] (default_idle+0x0/0x34) from [<c000a03c>] (cpu_idle+0x78/0xb0) [<c0009fc4>] (cpu_idle+0x0/0xb0) from [<c02384e4>] (rest_init+0x60/0x78) r7:c02baa80 r6:c02b19d8 r5:c02b19dc r4:c02b80b0 [<c0238484>] (rest_init+0x0/0x78) from [<c029d924>] (start_kernel+0x234/0x278) [<c029d6f0>] (start_kernel+0x0/0x278) from [<c000803c>] (0xc000803c) r5:c02b803c r4:c0007175 Code: 42555300 54535953 643d4d45 65766972 (53007372) To make the code a bit more robust against things like these, we modify ep93xx_dma_get_active() to return NULL in case of empty ->active list and make sure that callers handle this correctly. Reported-by: Rafal Prylowski <prylowski@metasoft.pl> Signed-off-by: Mika Westerberg <mika.westerberg@iki.fi> Acked-by: H Hartley Sweeten <hsweeten@visionengravers.com> Signed-off-by: Vinod Koul <vinod.koul@linux.intel.com>
expkey_parse() oopses when handling a 0 length export. This is easily triggerable from usermode by writing 0 bytes into '/proc/[proc id]/net/rpc/nfsd.fh/channel'. Below is the log: [ 1402.286893] BUG: unable to handle kernel paging request at ffff880077c49fff [ 1402.287632] IP: [<ffffffff812b4b99>] expkey_parse+0x28/0x2e1 [ 1402.287632] PGD 2206063 PUD 1fdfd067 PMD 1ffbc067 PTE 8000000077c49160 [ 1402.287632] Oops: 0000 [#1] PREEMPT SMP DEBUG_PAGEALLOC [ 1402.287632] CPU 1 [ 1402.287632] Pid: 20198, comm: trinity Not tainted 3.2.0-rc2-sasha-00058-gc65cd37 #6 [ 1402.287632] RIP: 0010:[<ffffffff812b4b99>] [<ffffffff812b4b99>] expkey_parse+0x28/0x2e1 [ 1402.287632] RSP: 0018:ffff880077f0fd68 EFLAGS: 00010292 [ 1402.287632] RAX: ffff880077c49fff RBX: 00000000ffffffea RCX: 0000000001043400 [ 1402.287632] RDX: 0000000000000000 RSI: ffff880077c4a000 RDI: ffffffff82283de0 [ 1402.287632] RBP: ffff880077f0fe18 R08: 0000000000000001 R09: ffff880000000000 [ 1402.287632] R10: 0000000000000000 R11: 0000000000000001 R12: ffff880077c4a000 [ 1402.287632] R13: ffffffff82283de0 R14: 0000000001043400 R15: ffffffff82283de0 [ 1402.287632] FS: 00007f25fec3f700(0000) GS:ffff88007d400000(0000) knlGS:0000000000000000 [ 1402.287632] CS: 0010 DS: 0000 ES: 0000 CR0: 000000008005003b [ 1402.287632] CR2: ffff880077c49fff CR3: 0000000077e1d000 CR4: 00000000000406e0 [ 1402.287632] DR0: 0000000000000000 DR1: 0000000000000000 DR2: 0000000000000000 [ 1402.287632] DR3: 0000000000000000 DR6: 00000000ffff0ff0 DR7: 0000000000000400 [ 1402.287632] Process trinity (pid: 20198, threadinfo ffff880077f0e000, task ffff880077db17b0) [ 1402.287632] Stack: [ 1402.287632] ffff880077db17b0 ffff880077c4a000 ffff880077f0fdb8 ffffffff810b411e [ 1402.287632] ffff880000000000 ffff880077db17b0 ffff880077c4a000 ffffffff82283de0 [ 1402.287632] 0000000001043400 ffffffff82283de0 ffff880077f0fde8 ffffffff81111f63 [ 1402.287632] Call Trace: [ 1402.287632] [<ffffffff810b411e>] ? lock_release+0x1af/0x1bc [ 1402.287632] [<ffffffff81111f63>] ? might_fault+0x97/0x9e [ 1402.287632] [<ffffffff81111f1a>] ? might_fault+0x4e/0x9e [ 1402.287632] [<ffffffff81a8bcf2>] cache_do_downcall+0x3e/0x4f [ 1402.287632] [<ffffffff81a8c950>] cache_write.clone.16+0xbb/0x130 [ 1402.287632] [<ffffffff81a8c9df>] ? cache_write_pipefs+0x1a/0x1a [ 1402.287632] [<ffffffff81a8c9f8>] cache_write_procfs+0x19/0x1b [ 1402.287632] [<ffffffff8118dc54>] proc_reg_write+0x8e/0xad [ 1402.287632] [<ffffffff8113fe81>] vfs_write+0xaa/0xfd [ 1402.287632] [<ffffffff8114142d>] ? fget_light+0x35/0x9e [ 1402.287632] [<ffffffff8113ff8b>] sys_write+0x48/0x6f [ 1402.287632] [<ffffffff81bbdb92>] system_call_fastpath+0x16/0x1b [ 1402.287632] Code: c0 c9 c3 55 48 63 d2 48 89 e5 48 8d 44 32 ff 41 57 41 56 41 55 41 54 53 bb ea ff ff ff 48 81 ec 88 00 00 00 48 89 b5 58 ff ff ff [ 1402.287632] 38 0a 0f 85 89 02 00 00 c6 00 00 48 8b 3d 44 4a e5 01 48 85 [ 1402.287632] RIP [<ffffffff812b4b99>] expkey_parse+0x28/0x2e1 [ 1402.287632] RSP <ffff880077f0fd68> [ 1402.287632] CR2: ffff880077c49fff [ 1402.287632] ---[ end trace 368ef53ff773a5e3 ]--- Cc: "J. Bruce Fields" <bfields@fieldses.org> Cc: Neil Brown <neilb@suse.de> Cc: linux-nfs@vger.kernel.org Cc: stable@kernel.org Signed-off-by: Sasha Levin <levinsasha928@gmail.com> Signed-off-by: J. Bruce Fields <bfields@redhat.com>
This patch fixes the arch_prepare_kprobe() on MIPS when it tries to find the instruction at the previous address to the probed address. The oops happens when the probed address is the first address in a kernel module and there is no previous address. The patch uses probe_kernel_read() to safely read the previous instruction. CPU 3 Unable to handle kernel paging request at virtual address ffffffffc0211ffc, epc == ffffffff81113204, ra == ffffffff8111511c Oops[#1]: Cpu 3 $ 0 : 0000000000000000 0000000000000001 ffffffffc0212000 0000000000000000 $ 4 : ffffffffc0220030 0000000000000000 0000000000000adf ffffffff81a3f898 $ 8 : ffffffffc0220030 ffffffffffffffff 000000000000ffff 0000000000004821 $12 : 000000000000000a ffffffff81105ddc ffffffff812927d0 0000000000000000 $16 : ffffffff81a40000 ffffffffc0220030 ffffffffc0220030 ffffffffc0212660 $20 : 0000000000000000 0000000000000008 efffffffffffffff ffffffffc0220000 $24 : 0000000000000002 ffffffff8139f5b0 $28 : a800000072adc000 a800000072adfca0 ffffffffc0220000 ffffffff8111511c Hi : 0000000000000000 Lo : 0000000000000000 epc : ffffffff81113204 arch_prepare_kprobe+0x1c/0xe8 Tainted: P ra : ffffffff8111511c register_kprobe+0x33c/0x730 Status: 10008ce3 KX SX UX KERNEL EXL IE Cause : 00800008 BadVA : ffffffffc0211ffc PrId : 000d9008 (Cavium Octeon II) Modules linked in: bpa_mem crashinfo pds tun cpumem ipv6 exportfs nfsd OOBnd(P) OOBhal(P) cvmx_mdio cvmx_gpio aipcmod(P) mtsmod procfs(P) utaker_mod dplr_pci hello atomicm_foo [last unloaded: sysmgr_hb] Process stapio (pid: 5603, threadinfo=a800000072adc000, task=a8000000722e0438, tls=000000002b4bcda0) Stack : ffffffff81a40000 ffffffff81a40000 ffffffffc0220030 ffffffff8111511c ffffffffc0218008 0000000000000001 ffffffffc0218008 0000000000000001 ffffffffc0220000 ffffffffc021efe8 1000000000000000 0000000000000008 efffffffffffffff ffffffffc0220000 ffffffffc0220000 ffffffffc021d500 0000000000000022 0000000000000002 1111000072be02b8 0000000000000000 00000000000015e6 00000000000015e6 00000000007d0f00 a800000072be02b8 0000000000000000 ffffffff811d16c8 a80000000382e3b0 ffffffff811d5ba0 ffffffff81b0a270 ffffffff81b0a270 ffffffffc0212000 0000000000000013 ffffffffc0220030 ffffffffc021ed00 a800000089114c80 000000007f90d590 a800000072adfe38 a800000089114c80 0000000010020000 0000000010020000 ... Call Trace: [<ffffffff81113204>] arch_prepare_kprobe+0x1c/0xe8 [<ffffffff8111511c>] register_kprobe+0x33c/0x730 [<ffffffffc021d500>] _stp_ctl_write_cmd+0x8e8/0xa88 [atomicm_foo] [<ffffffff812925cc>] vfs_write+0xb4/0x178 [<ffffffff81292828>] SyS_write+0x58/0x148 [<ffffffff81103844>] handle_sysn32+0x44/0x84 Code: ffb20010 ffb00000 dc820028 <8c44fffc> 8c500000 0c4449e0 0004203c 14400029 3c048199 Signed-off-by: Maneesh Soni <manesoni@cisco.com> Signed-off-by: Victor Kamensky <kamensky@cisco.com> Cc: David Daney <david.daney@cavium.com> Cc: ananth@in.ibm.com Cc: linux-kernel@vger.kernel.org Cc: linux-mips@linux-mips.org Patchwork: https://patchwork.linux-mips.org/patch/2915/ Signed-off-by: Ralf Baechle <ralf@linux-mips.org>
cic is association between io_context and request_queue. A cic is linked from both ioc and q and should be destroyed when either one goes away. As ioc and q both have their own locks, locking becomes a bit complex - both orders work for removal from one but not from the other. Currently, cfq tries to circumvent this locking order issue with RCU. ioc->lock nests inside queue_lock but the radix tree and cic's are also protected by RCU allowing either side to walk their lists without grabbing lock. This rather unconventional use of RCU quickly devolves into extremely fragile convolution. e.g. The following is from cfqd going away too soon after ioc and q exits raced. general protection fault: 0000 [#1] PREEMPT SMP CPU 2 Modules linked in: [ 88.503444] Pid: 599, comm: hexdump Not tainted 3.1.0-rc10-work+ raspberrypi#158 Bochs Bochs RIP: 0010:[<ffffffff81397628>] [<ffffffff81397628>] cfq_exit_single_io_context+0x58/0xf0 ... Call Trace: [<ffffffff81395a4a>] call_for_each_cic+0x5a/0x90 [<ffffffff81395ab5>] cfq_exit_io_context+0x15/0x20 [<ffffffff81389130>] exit_io_context+0x100/0x140 [<ffffffff81098a29>] do_exit+0x579/0x850 [<ffffffff81098d5b>] do_group_exit+0x5b/0xd0 [<ffffffff81098de7>] sys_exit_group+0x17/0x20 [<ffffffff81b02f2b>] system_call_fastpath+0x16/0x1b The only real hot path here is cic lookup during request initialization and avoiding extra locking requires very confined use of RCU. This patch makes cic removal from both ioc and request_queue perform double-locking and unlink immediately. * From q side, the change is almost trivial as ioc->lock nests inside queue_lock. It just needs to grab each ioc->lock as it walks cic_list and unlink it. * From ioc side, it's a bit more difficult because of inversed lock order. ioc needs its lock to walk its cic_list but can't grab the matching queue_lock and needs to perform unlock-relock dancing. Unlinking is now wholly done from put_io_context() and fast path is optimized by using the queue_lock the caller already holds, which is by far the most common case. If the ioc accessed multiple devices, it tries with trylock. In unlikely cases of fast path failure, it falls back to full double-locking dance from workqueue. Double-locking isn't the prettiest thing in the world but it's *far* simpler and more understandable than RCU trick without adding any meaningful overhead. This still leaves a lot of now unnecessary RCU logics. Future patches will trim them. -v2: Vivek pointed out that cic->q was being dereferenced after cic->release() was called. Updated to use local variable @this_q instead. Signed-off-by: Tejun Heo <tj@kernel.org> Cc: Vivek Goyal <vgoyal@redhat.com> Signed-off-by: Jens Axboe <axboe@kernel.dk>
Booting the Linux kernel on Nokia RM-680 board has been broken since 2.6.39 due to the following: [ 0.217193] omap_hwmod: timer12: enabling [ 0.221435] Unhandled fault: external abort on non-linefetch (0x1028) at 0xfa304010 [ 0.229431] Internal error: : 1028 [#1] SMP [ 0.233825] Modules linked in: [ 0.237060] CPU: 0 Not tainted (3.2.0-rc4-dirty raspberrypi#46) [ 0.242645] PC is at _update_sysc_cache+0x2c/0x7c [ 0.247589] LR is at _enable+0x1b0/0x2d8 [ 0.251708] pc : [<c0026108>] lr : [<c0026df4>] psr: 40000013 [ 0.251708] sp : ef831f40 ip : ef82f380 fp : c06ac0c0 [ 0.263702] r10: 00000000 r9 : c05dfb2c r8 : ef830000 [ 0.269165] r7 : c0027494 r6 : 00000000 r5 : 00000000 r4 : c06608b0 [ 0.276000] r3 : fa304000 r2 : 00000010 r1 : c0661e28 r0 : c06608b0 [ 0.282806] Flags: nZcv IRQs on FIQs on Mode SVC_32 ISA ARM Segment kernel [ 0.290405] Control: 10c5387d Table: 80004019 DAC: 00000017 [ 0.296417] Process swapper (pid: 1, stack limit = 0xef8302f8) [ 0.302520] Stack: (0xef831f40 to 0xef832000) [ 0.307098] 1f40: c06608b0 c0026df4 c06ad094 c0035120 00000001 c06608b0 00000000 c0027530 [ 0.315612] 1f60: c0027604 ef830000 c05dfb2c c06608b0 c0642ac0 c0025bf0 c0621234 c062120c [ 0.324127] 1f80: c0621738 00000013 ef830000 c05dfb6c c0621234 c0008688 c062c880 c009eadc [ 0.332641] 1fa0: 0000005f 00000000 c0621738 35390013 00000000 00000000 00000000 0000019a [ 0.341156] 1fc0: c0681cf4 c0621234 c062120c c0621738 00000013 00000000 00000000 00000000 [ 0.349670] 1fe0: 00000000 c05d5298 00000000 c05d5200 c0014fa8 c0014fa8 ffff0000 ffff0000 [ 0.358184] [<c0026108>] (_update_sysc_cache+0x2c/0x7c) from [<c0026df4>] (_enable+0x1b0/0x2d8) [ 0.367248] [<c0026df4>] (_enable+0x1b0/0x2d8) from [<c0027530>] (_setup+0x9c/0x170) [ 0.375335] [<c0027530>] (_setup+0x9c/0x170) from [<c0025bf0>] (omap_hwmod_for_each+0x38/0x58) [ 0.384307] [<c0025bf0>] (omap_hwmod_for_each+0x38/0x58) from [<c05dfb6c>] (omap_hwmod_setup_all+0x40/0xa0) [ 0.394409] [<c05dfb6c>] (omap_hwmod_setup_all+0x40/0xa0) from [<c0008688>] (do_one_initcall+0x34/0x180) [ 0.404296] [<c0008688>] (do_one_initcall+0x34/0x180) from [<c05d5298>] (kernel_init+0x98/0x144) [ 0.413452] [<c05d5298>] (kernel_init+0x98/0x144) from [<c0014fa8>] (kernel_thread_exit+0x0/0x8) [ 0.422576] Code: e3130c01 1590304c 0590304c 119320b2 (07932002) [ 0.429046] ---[ end trace 1b75b31a2719ed1c ]--- [ 0.433959] Kernel panic - not syncing: Attempted to kill init! Timer 12 is not necessarily available on non-GP devices (see e.g. http://marc.info/?l=linux-omap&m=129433066521102&w=2), so it should be registered only on GP OMAPs. With this change it's again possible to boot RM-680 into the shell. Tested with 3.2-rc4. Signed-off-by: Aaro Koskinen <aaro.koskinen@nokia.com> [paul@pwsan.com: changed subject line] Signed-off-by: Paul Walmsley <paul@pwsan.com>
…ain data AM3517/3505 chips don't have voltage controller and voltage processor IP blocks. Trying to use OMAP34xx/36xx voltage domain data on these chips causes a crash during boot: omap_vc_init_channel: PMIC info requried to configure vc forvdd_core not populated.Hence cannot initialize vc Unable to handle kernel NULL pointer dereference at virtual address 00000025 pgd = c0004000 [00000025] *pgd=00000000 Internal error: Oops: 5 [#1] SMP Modules linked in: CPU: 0 Tainted: G W (3.2.0-rc5-00006-g402ecf4 raspberrypi#304) PC is at omap_vp_init+0x5c/0x14c LR is at omap_vp_init+0x54/0x14c Fix this by using very minimal voltage domain definitions for AM3517/3505. Signed-off-by: Paul Walmsley <paul@pwsan.com> Cc: Igor Grinberg <grinberg@compulab.co.il> Cc: Kevin Hilman <khilman@ti.com> Signed-off-by: Tony Lindgren <tony@atomide.com>
When running the Point Grey "flycap" program for their USB 3.0 camera (which was running as a USB 2.0 device for some reason), I trigger this oops whenever I try to open a video stream: Dec 15 16:48:34 puck kernel: [ 1798.715559] BUG: unable to handle kernel NULL pointer dereference at (null) Dec 15 16:48:34 puck kernel: [ 1798.719153] IP: [<ffffffff8147841e>] free_async+0x1e/0x70 Dec 15 16:48:34 puck kernel: [ 1798.720991] PGD 6f833067 PUD 6fc56067 PMD 0 Dec 15 16:48:34 puck kernel: [ 1798.722815] Oops: 0002 [#1] SMP Dec 15 16:48:34 puck kernel: [ 1798.724627] CPU 0 Dec 15 16:48:34 puck kernel: [ 1798.724636] Modules linked in: ecryptfs encrypted_keys sha1_generic trusted binfmt_misc sha256_generic aesni_intel cryptd aes_x86_64 aes_generic parport_pc dm_crypt ppdev joydev snd_hda_codec_hdmi snd_hda_codec_conexant arc4 iwlwifi snd_hda_intel snd_hda_codec snd_hwdep snd_pcm thinkpad_acpi mac80211 snd_seq_midi snd_rawmidi snd_seq_midi_event snd_seq snd_timer btusb uvcvideo snd_seq_device bluetooth videodev psmouse snd v4l2_compat_ioctl32 serio_raw tpm_tis cfg80211 tpm tpm_bios nvram soundcore snd_page_alloc lp parport i915 xhci_hcd ahci libahci drm_kms_helper drm sdhci_pci sdhci e1000e i2c_algo_bit video Dec 15 16:48:34 puck kernel: [ 1798.734212] Dec 15 16:48:34 puck kernel: [ 1798.736162] Pid: 2713, comm: FlyCap2 Not tainted 3.2.0-rc5+ raspberrypi#28 LENOVO 4286CTO/4286CTO Dec 15 16:48:34 puck kernel: [ 1798.738148] RIP: 0010:[<ffffffff8147841e>] [<ffffffff8147841e>] free_async+0x1e/0x70 Dec 15 16:48:34 puck kernel: [ 1798.740134] RSP: 0018:ffff88005715fd78 EFLAGS: 00010296 Dec 15 16:48:34 puck kernel: [ 1798.742118] RAX: 00000000fffffff4 RBX: ffff88006fe8f900 RCX: 0000000000004118 Dec 15 16:48:34 puck kernel: [ 1798.744116] RDX: 0000000001000000 RSI: 0000000000016390 RDI: 0000000000000000 Dec 15 16:48:34 puck kernel: [ 1798.746087] RBP: ffff88005715fd88 R08: 0000000000000000 R09: ffffffff8146f22e Dec 15 16:48:34 puck kernel: [ 1798.748018] R10: ffff88006e520ac0 R11: 0000000000000001 R12: ffff88005715fe28 Dec 15 16:48:34 puck kernel: [ 1798.749916] R13: ffff88005d31df00 R14: ffff88006fe8f900 R15: 00007f688c995cb8 Dec 15 16:48:34 puck kernel: [ 1798.751785] FS: 00007f68a366da40(0000) GS:ffff880100200000(0000) knlGS:0000000000000000 Dec 15 16:48:34 puck kernel: [ 1798.753659] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 Dec 15 16:48:34 puck kernel: [ 1798.755509] CR2: 0000000000000000 CR3: 00000000706bb000 CR4: 00000000000406f0 Dec 15 16:48:34 puck kernel: [ 1798.757334] DR0: 0000000000000000 DR1: 0000000000000000 DR2: 0000000000000000 Dec 15 16:48:34 puck kernel: [ 1798.759124] DR3: 0000000000000000 DR6: 00000000ffff0ff0 DR7: 0000000000000400 Dec 15 16:48:34 puck kernel: [ 1798.760871] Process FlyCap2 (pid: 2713, threadinfo ffff88005715e000, task ffff88006c675b80) Dec 15 16:48:34 puck kernel: [ 1798.762605] Stack: Dec 15 16:48:34 puck kernel: [ 1798.764297] ffff88005715fe28 0000000000000000 ffff88005715fe08 ffffffff81479058 Dec 15 16:48:34 puck kernel: [ 1798.766020] 0000000000000000 ffffea0000004000 ffff880000004118 0000000000000000 Dec 15 16:48:34 puck kernel: [ 1798.767750] ffff880000000001 ffff88006e520ac0 fffffff46fd81180 0000000000000000 Dec 15 16:48:34 puck kernel: [ 1798.769472] Call Trace: Dec 15 16:48:34 puck kernel: [ 1798.771147] [<ffffffff81479058>] proc_do_submiturb+0x778/0xa00 Dec 15 16:48:34 puck kernel: [ 1798.772798] [<ffffffff8147a5fd>] usbdev_do_ioctl+0x24d/0x1200 Dec 15 16:48:34 puck kernel: [ 1798.774410] [<ffffffff8147b5de>] usbdev_ioctl+0xe/0x20 Dec 15 16:48:34 puck kernel: [ 1798.775975] [<ffffffff81189259>] do_vfs_ioctl+0x99/0x600 Dec 15 16:48:34 puck kernel: [ 1798.777534] [<ffffffff81189851>] sys_ioctl+0x91/0xa0 Dec 15 16:48:34 puck kernel: [ 1798.779088] [<ffffffff816247c2>] system_call_fastpath+0x16/0x1b ec 15 16:48:34 puck kernel: [ 1798.780634] Code: 51 ff ff ff e9 29 ff ff ff 0f 1f 40 00 55 48 89 e5 53 48 83 ec 08 66 66 66 66 90 48 89 fb 48 8b 7f 18 e8 a6 ea c0 ff 4 8 8b 7b 20 <f0> ff 0f 0f 94 c0 84 c0 74 05 e8 d3 99 c1 ff 48 8b 43 40 48 8b Dec 15 16:48:34 puck kernel: [ 1798.783970] RIP [<ffffffff8147841e>] free_async+0x1e/0x70 Dec 15 16:48:34 puck kernel: [ 1798.785630] RSP <ffff88005715fd78> Dec 15 16:48:34 puck kernel: [ 1798.787274] CR2: 0000000000000000 Dec 15 16:48:34 puck kernel: [ 1798.794728] ---[ end trace 52894d3355f88d19 ]--- markup_oops.pl says the oops is in put_cred: ffffffff81478401: 48 89 e5 mov %rsp,%rbp ffffffff81478404: 53 push %rbx ffffffff81478405: 48 83 ec 08 sub $0x8,%rsp ffffffff81478409: e8 f2 c0 1a 00 callq ffffffff81624500 <mcount> ffffffff8147840e: 48 89 fb mov %rdi,%rbx | %ebx => ffff88006fe8f900 put_pid(as->pid); ffffffff81478411: 48 8b 7f 18 mov 0x18(%rdi),%rdi ffffffff81478415: e8 a6 ea c0 ff callq ffffffff81086ec0 <put_pid> put_cred(as->cred); ffffffff8147841a: 48 8b 7b 20 mov 0x20(%rbx),%rdi | %edi => 0 %ebx = ffff88006fe8f900 */ static inline int atomic_dec_and_test(atomic_t *v) { unsigned char c; asm volatile(LOCK_PREFIX "decl %0; sete %1" *ffffffff8147841e: f0 ff 0f lock decl (%rdi) | %edi = 0 <--- faulting instruction ffffffff81478421: 0f 94 c0 sete %al static inline void put_cred(const struct cred *_cred) { struct cred *cred = (struct cred *) _cred; validate_creds(cred); if (atomic_dec_and_test(&(cred)->usage)) ffffffff81478424: 84 c0 test %al,%al ffffffff81478426: 74 05 je ffffffff8147842d <free_async+0x2d> __put_cred(cred); ffffffff81478428: e8 d3 99 c1 ff callq ffffffff81091e00 <__put_cred> kfree(as->urb->transfer_buffer); ffffffff8147842d: 48 8b 43 40 mov 0x40(%rbx),%rax ffffffff81478431: 48 8b 78 68 mov 0x68(%rax),%rdi ffffffff81478435: e8 a6 e1 ce ff callq ffffffff811665e0 <kfree> kfree(as->urb->setup_packet); ffffffff8147843a: 48 8b 43 40 mov 0x40(%rbx),%rax ffffffff8147843e: 48 8b b8 90 00 00 00 mov 0x90(%rax),%rdi ffffffff81478445: e8 96 e1 ce ff callq ffffffff811665e0 <kfree> usb_free_urb(as->urb); ffffffff8147844a: 48 8b 7b 40 mov 0x40(%rbx),%rdi ffffffff8147844e: e8 0d 6b ff ff callq ffffffff8146ef60 <usb_free_urb> This bug seems to have been introduced by commit d178bc3 "user namespace: usb: make usb urbs user namespace aware (v2)" I'm not sure if this is right fix, but it does stop the oops. Unfortunately, the Point Grey software still refuses to work, but it's a closed source app, so I can't fix it. Signed-off-by: Sarah Sharp <sarah.a.sharp@linux.intel.com> Acked-by: Serge Hallyn <serge.hallyn@canonical.com> Cc: stable <stable@vger.kernel.org> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
commit cc77245 [S390] fix list corruption in gmap reverse mapping added a potential dead lock: BUG: sleeping function called from invalid context at mm/page_alloc.c:2260 in_atomic(): 1, irqs_disabled(): 0, pid: 1108, name: qemu-system-s39 3 locks held by qemu-system-s39/1108: #0: (&kvm->slots_lock){+.+.+.}, at: [<000003e004866542>] kvm_set_memory_region+0x3a/0x6c [kvm] #1: (&mm->mmap_sem){++++++}, at: [<0000000000123790>] gmap_map_segment+0x9c/0x298 #2: (&(&mm->page_table_lock)->rlock){+.+.+.}, at: [<00000000001237a8>] gmap_map_segment+0xb4/0x298 CPU: 0 Not tainted 3.1.3 raspberrypi#45 Process qemu-system-s39 (pid: 1108, task: 00000004f8b3cb30, ksp: 00000004fd5978d0) 00000004fd5979a0 00000004fd597920 0000000000000002 0000000000000000 00000004fd5979c0 00000004fd597938 00000004fd597938 0000000000617e96 0000000000000000 00000004f8b3cf58 0000000000000000 0000000000000000 000000000000000d 000000000000000c 00000004fd597988 0000000000000000 0000000000000000 0000000000100a18 00000004fd597920 00000004fd597960 Call Trace: ([<0000000000100926>] show_trace+0xee/0x144) [<0000000000131f3a>] __might_sleep+0x12a/0x158 [<0000000000217fb4>] __alloc_pages_nodemask+0x224/0xadc [<0000000000123086>] gmap_alloc_table+0x46/0x114 [<000000000012395c>] gmap_map_segment+0x268/0x298 [<000003e00486b014>] kvm_arch_commit_memory_region+0x44/0x6c [kvm] [<000003e004866414>] __kvm_set_memory_region+0x3b0/0x4a4 [kvm] [<000003e004866554>] kvm_set_memory_region+0x4c/0x6c [kvm] [<000003e004867c7a>] kvm_vm_ioctl+0x14a/0x314 [kvm] [<0000000000292100>] do_vfs_ioctl+0x94/0x588 [<0000000000292688>] SyS_ioctl+0x94/0xac [<000000000061e124>] sysc_noemu+0x22/0x28 [<000003fffcd5e7ca>] 0x3fffcd5e7ca 3 locks held by qemu-system-s39/1108: #0: (&kvm->slots_lock){+.+.+.}, at: [<000003e004866542>] kvm_set_memory_region+0x3a/0x6c [kvm] #1: (&mm->mmap_sem){++++++}, at: [<0000000000123790>] gmap_map_segment+0x9c/0x298 #2: (&(&mm->page_table_lock)->rlock){+.+.+.}, at: [<00000000001237a8>] gmap_map_segment+0xb4/0x298 Fix this by freeing the lock on the alloc path. This is ok, since the gmap table is never freed until we call gmap_free, so the table we are walking cannot go. Signed-off-by: Christian Borntraeger <borntraeger@de.ibm.com> Signed-off-by: Martin Schwidefsky <schwidefsky@de.ibm.com>
Currently, when smp_switch_to_ipl_cpu() is done, the backchain in the dump analysis tool crash looks like the following: #0 [1f746e70] __machine_kexec at 11dd92 #1 [1f746eb8] smp_restart_cpu at 11820e #0 [00907eb0] cpu_idle at 10602e #1 [00907ef8] start_kernel at 979a08 It would be good to see the registers of the interrupted function. To achieve this, the backchain on the new stack has to be set to zero. This looks then like the following: #0 [1f746e70] __machine_kexec at 11dd8e #1 [1f746eb8] smp_restart_cpu at 11820a PSW: 0706000180000000 00000000005c6fe6 (vtime_stop_cpu+134) GPRS: 0000000000000000 00000000005c6fe6 0000000001ad0228 0000000001ad0248 0000000000907f08 0000000001ad0b40 0000000000979344 0000000000000000 00000000009c0000 00000000009c0010 00000000009ab024 0000000001ad0200 0000000001ad0238 00000000005cc9d8 000000000010602e 0000000000907e68 #0 [00907eb0] cpu_idle at 10602e #1 [00907ef8] start_kernel at 979a08 In addition to this, now also the correct PSW is stored in the pt_regs structure that is located at the start of the panic stack. Signed-off-by: Michael Holzheu <holzheu@linux.vnet.ibm.com> Signed-off-by: Martin Schwidefsky <schwidefsky@de.ibm.com>
…bles the feature to fix an oops Echo vendor and product number of a non usb-storage device to usb-storage driver's new_id, then plug in the device to host and you will find following oops msg, the root cause is usb_stor_probe1() refers invalid id entry if giving a dynamic id, so just disable the feature. [ 3105.018012] general protection fault: 0000 [#1] SMP DEBUG_PAGEALLOC [ 3105.018062] CPU 0 [ 3105.018075] Modules linked in: usb_storage usb_libusual bluetooth dm_crypt binfmt_misc snd_hda_codec_analog snd_hda_intel snd_hda_codec snd_hwdep hp_wmi ppdev sparse_keymap snd_pcm snd_seq_midi snd_rawmidi snd_seq_midi_event snd_seq snd_timer snd_seq_device psmouse snd serio_raw tpm_infineon soundcore i915 snd_page_alloc tpm_tis parport_pc tpm tpm_bios drm_kms_helper drm i2c_algo_bit video lp parport usbhid hid sg sr_mod sd_mod ehci_hcd uhci_hcd usbcore e1000e usb_common floppy [ 3105.018408] [ 3105.018419] Pid: 189, comm: khubd Tainted: G I 3.2.0-rc7+ raspberrypi#29 Hewlett-Packard HP Compaq dc7800p Convertible Minitower/0AACh [ 3105.018481] RIP: 0010:[<ffffffffa045830d>] [<ffffffffa045830d>] usb_stor_probe1+0x2fd/0xc20 [usb_storage] [ 3105.018536] RSP: 0018:ffff880056a3d830 EFLAGS: 00010286 [ 3105.018562] RAX: ffff880065f4e648 RBX: ffff88006bb28000 RCX: 0000000000000000 [ 3105.018597] RDX: ffff88006f23c7b0 RSI: 0000000000000001 RDI: 0000000000000206 [ 3105.018632] RBP: ffff880056a3d900 R08: 0000000000000000 R09: ffff880067365000 [ 3105.018665] R10: 00000000000002ac R11: 0000000000000010 R12: ffff6000b41a7340 [ 3105.018698] R13: ffff880065f4ef60 R14: ffff88006bb28b88 R15: ffff88006f23d270 [ 3105.018733] FS: 0000000000000000(0000) GS:ffff88007a200000(0000) knlGS:0000000000000000 [ 3105.018773] CS: 0010 DS: 0000 ES: 0000 CR0: 000000008005003b [ 3105.018801] CR2: 00007fc99c8c4650 CR3: 0000000001e05000 CR4: 00000000000006f0 [ 3105.018835] DR0: 0000000000000000 DR1: 0000000000000000 DR2: 0000000000000000 [ 3105.018870] DR3: 0000000000000000 DR6: 00000000ffff0ff0 DR7: 0000000000000400 [ 3105.018906] Process khubd (pid: 189, threadinfo ffff880056a3c000, task ffff88005677a400) [ 3105.018945] Stack: [ 3105.018959] 0000000000000000 0000000000000000 ffff880056a3d8d0 0000000000000002 [ 3105.019011] 0000000000000000 ffff880056a3d918 ffff880000000000 0000000000000002 [ 3105.019058] ffff880056a3d8d0 0000000000000012 ffff880056a3d8d0 0000000000000006 [ 3105.019105] Call Trace: [ 3105.019128] [<ffffffffa0458cd4>] storage_probe+0xa4/0xe0 [usb_storage] [ 3105.019173] [<ffffffffa0097822>] usb_probe_interface+0x172/0x330 [usbcore] [ 3105.019211] [<ffffffff815fda67>] driver_probe_device+0x257/0x3b0 [ 3105.019243] [<ffffffff815fdd43>] __device_attach+0x73/0x90 [ 3105.019272] [<ffffffff815fdcd0>] ? __driver_attach+0x110/0x110 [ 3105.019303] [<ffffffff815fb93c>] bus_for_each_drv+0x9c/0xf0 [ 3105.019334] [<ffffffff815fd6c7>] device_attach+0xf7/0x120 [ 3105.019364] [<ffffffff815fc905>] bus_probe_device+0x45/0x80 [ 3105.019396] [<ffffffff815f98a6>] device_add+0x876/0x990 [ 3105.019434] [<ffffffffa0094e42>] usb_set_configuration+0x822/0x9e0 [usbcore] [ 3105.019479] [<ffffffffa00a3492>] generic_probe+0x62/0xf0 [usbcore] [ 3105.019518] [<ffffffffa0097a46>] usb_probe_device+0x66/0xb0 [usbcore] [ 3105.019555] [<ffffffff815fda67>] driver_probe_device+0x257/0x3b0 [ 3105.019589] [<ffffffff815fdd43>] __device_attach+0x73/0x90 [ 3105.019617] [<ffffffff815fdcd0>] ? __driver_attach+0x110/0x110 [ 3105.019648] [<ffffffff815fb93c>] bus_for_each_drv+0x9c/0xf0 [ 3105.019680] [<ffffffff815fd6c7>] device_attach+0xf7/0x120 [ 3105.019709] [<ffffffff815fc905>] bus_probe_device+0x45/0x80 [ 3105.021040] usb usb6: usb auto-resume [ 3105.021045] usb usb6: wakeup_rh [ 3105.024849] [<ffffffff815f98a6>] device_add+0x876/0x990 [ 3105.025086] [<ffffffffa0088987>] usb_new_device+0x1e7/0x2b0 [usbcore] [ 3105.025086] [<ffffffffa008a4d7>] hub_thread+0xb27/0x1ec0 [usbcore] [ 3105.025086] [<ffffffff810d5200>] ? wake_up_bit+0x50/0x50 [ 3105.025086] [<ffffffffa00899b0>] ? usb_remote_wakeup+0xa0/0xa0 [usbcore] [ 3105.025086] [<ffffffff810d49b8>] kthread+0xd8/0xf0 [ 3105.025086] [<ffffffff81939884>] kernel_thread_helper+0x4/0x10 [ 3105.025086] [<ffffffff8192a8c0>] ? _raw_spin_unlock_irq+0x50/0x80 [ 3105.025086] [<ffffffff8192b1b4>] ? retint_restore_args+0x13/0x13 [ 3105.025086] [<ffffffff810d48e0>] ? __init_kthread_worker+0x80/0x80 [ 3105.025086] [<ffffffff81939880>] ? gs_change+0x13/0x13 [ 3105.025086] Code: 00 48 83 05 cd ad 00 00 01 48 83 05 cd ad 00 00 01 4c 8b ab 30 0c 00 00 48 8b 50 08 48 83 c0 30 48 89 45 a0 4c 89 a3 40 0c 00 00 <41> 0f b6 44 24 10 48 89 55 a8 3c ff 0f 84 b8 04 00 00 48 83 05 [ 3105.025086] RIP [<ffffffffa045830d>] usb_stor_probe1+0x2fd/0xc20 [usb_storage] [ 3105.025086] RSP <ffff880056a3d830> [ 3105.060037] hub 6-0:1.0: hub_resume [ 3105.062616] usb usb5: usb auto-resume [ 3105.064317] ehci_hcd 0000:00:1d.7: resume root hub [ 3105.094809] ---[ end trace a7919e7f17c0a727 ]--- [ 3105.130069] hub 5-0:1.0: hub_resume [ 3105.132131] usb usb4: usb auto-resume [ 3105.132136] usb usb4: wakeup_rh [ 3105.180059] hub 4-0:1.0: hub_resume [ 3106.290052] usb usb6: suspend_rh (auto-stop) [ 3106.290077] usb usb4: suspend_rh (auto-stop) Signed-off-by: Huajun Li <huajun.li.lee@gmail.com> Cc: stable <stable@vger.kernel.org> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
This warning was recently reported to me: ------------[ cut here ]------------ WARNING: at lib/kobject.c:595 kobject_put+0x50/0x60() Hardware name: VMware Virtual Platform kobject: '(null)' (ffff880027b0df40): is not initialized, yet kobject_put() is being called. Modules linked in: vmxnet3(+) vmw_balloon i2c_piix4 i2c_core shpchp raid10 vmw_pvscsi Pid: 630, comm: modprobe Tainted: G W 3.1.6-1.fc16.x86_64 #1 Call Trace: [<ffffffff8106b73f>] warn_slowpath_common+0x7f/0xc0 [<ffffffff8106b836>] warn_slowpath_fmt+0x46/0x50 [<ffffffff810da293>] ? free_desc+0x63/0x70 [<ffffffff812a9aa0>] kobject_put+0x50/0x60 [<ffffffff812e4c25>] free_msi_irqs+0xd5/0x120 [<ffffffff812e524c>] pci_enable_msi_block+0x24c/0x2c0 [<ffffffffa017c273>] vmxnet3_alloc_intr_resources+0x173/0x240 [vmxnet3] [<ffffffffa0182e94>] vmxnet3_probe_device+0x615/0x834 [vmxnet3] [<ffffffff812d141c>] local_pci_probe+0x5c/0xd0 [<ffffffff812d2cb9>] pci_device_probe+0x109/0x130 [<ffffffff8138ba2c>] driver_probe_device+0x9c/0x2b0 [<ffffffff8138bceb>] __driver_attach+0xab/0xb0 [<ffffffff8138bc40>] ? driver_probe_device+0x2b0/0x2b0 [<ffffffff8138bc40>] ? driver_probe_device+0x2b0/0x2b0 [<ffffffff8138a8ac>] bus_for_each_dev+0x5c/0x90 [<ffffffff8138b63e>] driver_attach+0x1e/0x20 [<ffffffff8138b240>] bus_add_driver+0x1b0/0x2a0 [<ffffffffa0188000>] ? 0xffffffffa0187fff [<ffffffff8138c246>] driver_register+0x76/0x140 [<ffffffff815ca414>] ? printk+0x51/0x53 [<ffffffffa0188000>] ? 0xffffffffa0187fff [<ffffffff812d2996>] __pci_register_driver+0x56/0xd0 [<ffffffffa018803a>] vmxnet3_init_module+0x3a/0x3c [vmxnet3] [<ffffffff81002042>] do_one_initcall+0x42/0x180 [<ffffffff810aad71>] sys_init_module+0x91/0x200 [<ffffffff815dccc2>] system_call_fastpath+0x16/0x1b ---[ end trace 44593438a59a9558 ]--- Using INTx interrupt, #Rx queues: 1. It occurs when populate_msi_sysfs fails, which in turn causes free_msi_irqs to be called. Because populate_msi_sysfs fails, we never registered any of the msi irq sysfs objects, but free_msi_irqs still calls kobject_del and kobject_put on each of them, which gets flagged in the above stack trace. The fix is pretty straightforward. We can key of the parent pointer in the kobject. It is only set if the kobject_init_and_add succededs in populate_msi_sysfs. If anything fails there, each kobject has its parent reset to NULL Signed-off-by: Neil Horman <nhorman@tuxdriver.com> CC: Bjorn Helgaas <bhelgaas@google.com> CC: Greg Kroah-Hartman <gregkh@suse.de> CC: linux-pci@vger.kernel.org Signed-off-by: Jesse Barnes <jbarnes@virtuousgeek.org>
Some error paths in mtd_blkdevs were fixed in the following commit: commit 94735ec mtd: mtd_blkdevs: fix error path in blktrans_open But on these error paths, the block device's `dev->open' count is already incremented before we check for errors. This meant that, while the error path was handled correctly on the first time through blktrans_open(), the device is erroneously considered already open on the second time through. This problem can be seen, for instance, when a UBI volume is simultaneously mounted as a UBIFS partition and read through its corresponding gluebi mtdblockX device. This results in blktrans_open() passing its error checks (with `dev->open > 0') without actually having a handle on the device. Here's a summarized log of the actions and results with nandsim: # modprobe nandsim # modprobe mtdblock # modprobe gluebi # modprobe ubifs # ubiattach /dev/ubi_ctrl -m 0 ... # ubimkvol /dev/ubi0 -N test -s 16MiB ... # mount -t ubifs ubi0:test /mnt # ls /dev/mtdblock* /dev/mtdblock0 /dev/mtdblock1 # cat /dev/mtdblock1 > /dev/null cat: can't open '/dev/mtdblock4': Device or resource busy # cat /dev/mtdblock1 > /dev/null CPU 0 Unable to handle kernel paging request at virtual address fffffff0, epc == 8031536c, ra == 8031f280 Oops[#1]: ... Call Trace: [<8031536c>] ubi_leb_read+0x14/0x164 [<8031f280>] gluebi_read+0xf0/0x148 [<802edba8>] mtdblock_readsect+0x64/0x198 [<802ecfe4>] mtd_blktrans_thread+0x330/0x3f4 [<8005be98>] kthread+0x88/0x90 [<8000bc04>] kernel_thread_helper+0x10/0x18 Cc: stable@kernel.org [3.0+] Signed-off-by: Brian Norris <computersforpeace@gmail.com> Signed-off-by: Artem Bityutskiy <Artem.Bityutskiy@linux.intel.com> Signed-off-by: David Woodhouse <David.Woodhouse@intel.com>
mempool_alloc/free() use undocumented smp_mb()'s. The code is slightly broken and misleading. The lockless part is in mempool_free(). It wants to determine whether the item being freed needs to be returned to the pool or backing allocator without grabbing pool->lock. Two things need to be guaranteed for correct operation. 1. pool->curr_nr + #allocated should never dip below pool->min_nr. 2. Waiters shouldn't be left dangling. For #1, The only necessary condition is that curr_nr visible at free is from after the allocation of the element being freed (details in the comment). For most cases, this is true without any barrier but there can be fringe cases where the allocated pointer is passed to the freeing task without going through memory barriers. To cover this case, wmb is necessary before returning from allocation and rmb is necessary before reading curr_nr. IOW, ALLOCATING TASK FREEING TASK update pool state after alloc; wmb(); pass pointer to freeing task; read pointer; rmb(); read pool state to free; The current code doesn't have wmb after pool update during allocation and may theoretically, on machines where unlock doesn't behave as full wmb, lead to pool depletion and deadlock. smp_wmb() needs to be added after successful allocation from reserved elements and smp_mb() in mempool_free() can be replaced with smp_rmb(). For #2, the waiter needs to add itself to waitqueue and then check the wait condition and the waker needs to update the wait condition and then wake up. Because waitqueue operations always go through full spinlock synchronization, there is no need for extra memory barriers. Furthermore, mempool_alloc() is already holding pool->lock when it decides that it needs to wait. There is no reason to do unlock - add waitqueue - test condition again. It can simply add itself to waitqueue while holding pool->lock and then unlock and sleep. This patch adds smp_wmb() after successful allocation from reserved pool, replaces smp_mb() in mempool_free() with smp_rmb() and extend pool->lock over waitqueue addition. More importantly, it explains what memory barriers do and how the lockless testing is correct. -v2: Oleg pointed out that unlock doesn't imply wmb. Added explicit smp_wmb() after successful allocation from reserved pool and updated comments accordingly. Signed-off-by: Tejun Heo <tj@kernel.org> Cc: Oleg Nesterov <oleg@redhat.com> Cc: "Paul E. McKenney" <paulmck@linux.vnet.ibm.com> Cc: David Howells <dhowells@redhat.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
get_proc_task() can fail to search the task and return NULL, put_task_struct() will then bomb the kernel with following oops: BUG: unable to handle kernel NULL pointer dereference at 0000000000000010 IP: [<ffffffff81217d34>] proc_pid_permission+0x64/0xe0 PGD 112075067 PUD 112814067 PMD 0 Oops: 0002 [#1] PREEMPT SMP This is a regression introduced by commit 0499680 ("procfs: add hidepid= and gid= mount options"). The kernel should return -ESRCH if get_proc_task() failed. Signed-off-by: Xiaotian Feng <dannyfeng@tencent.com> Cc: Al Viro <viro@zeniv.linux.org.uk> Cc: Vasiliy Kulikov <segoon@openwall.com> Cc: Stephen Wilson <wilsons@start.ca> Acked-by: David Rientjes <rientjes@google.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
. It was useful during development, but now on a production system we can get this (if the user forgot to upload the firmware): [drm] radeon: irq initialized. [drm] GART: num cpu pages 131072, num gpu pages 131072 [drm] radeon: ib pool ready. [drm] Loading SUMO Microcode r600_cp: Failed to load firmware "radeon/SUMO_pfp.bin" atl1c 0000:03:00.0: version 1.0.1.0-NAPI.213057] [drm:evergreen_startup] *ERROR* Failed to load firmware! radeon 0000:00:01.0: disabling GPU acceleration 88] radeon 0000:00:01.0: ffff8801bb782400 unpin not necessary ------------[ cut here ]------------ WARNING: at /home/konrad/linux-linus/drivers/gpu/drm/ttm/ttm_page_alloc_dma.c:956 ttm_dma_unpopulate+0x79/0x300 [ttm]() Hardware name: System Product Name Modules linked in: e1000e atl1c radeon(+) ahci libahci libata scsi_mod fbcon tileblit font ttm bitblit softcursor drm_kms_helper wmi xen_blkfront xen_netfront fb_sys_fops sysimgblt sysfillrect syscopyarea xenfs xen_privcmd Pid: 1600, comm: modprobe Not tainted 3.2.0-06100-ge343a89 #1 Call Trace: [<ffffffff8108973a>] warn_slowpath_common+0x7a/0xb0 [<ffffffff81089785>] warn_slowpath_null+0x15/0x20 [<ffffffffa0060309>] ttm_dma_unpopulate+0x79/0x300 [ttm] [<ffffffffa01341c0>] radeon_ttm_tt_unpopulate+0x120/0x130 [radeon] [<ffffffffa0056e0c>] ttm_tt_destroy+0x2c/0x70 [ttm] [<ffffffffa0057a4e>] ttm_bo_cleanup_memtype_use+0x3e/0x80 [ttm] [<ffffffffa00595a1>] ttm_bo_release+0x251/0x280 [ttm] [<ffffffffa0059610>] ttm_bo_unref+0x40/0x60 [ttm] [<ffffffffa0134d02>] radeon_bo_unref+0x42/0x80 [radeon] [<ffffffffa0186dfb>] radeon_sa_bo_manager_fini+0x6b/0x80 [radeon] [<ffffffffa0146b8f>] radeon_ib_pool_fini+0x6f/0x90 [radeon] [<ffffffffa014be49>] r100_ib_fini+0x19/0x20 [radeon] [<ffffffffa017b47e>] evergreen_init+0x1ee/0x2d0 [radeon] The big WARN() has nothing to do with the culprit - which is that the firmware was not loaded. So lets remove the WARN() from the TTM DMA code. Signed-off-by: Konrad Rzeszutek Wilk <konrad.wilk@oracle.com> Reviewed-by: Jerome Glisse <jglisse@redhat.com> Signed-off-by: Dave Airlie <airlied@redhat.com>
With the changes in life time management between the cfq IO contexts and the cfq queues, we now risk having cfqd->active_queue being freed when cfq_slice_expired() is being called. cfq_preempt_queue() caches this queue and uses it after calling said function, causing a use-after-free condition. This triggers the following oops, when cfqq_type() attempts to dereference it: BUG: unable to handle kernel paging request at ffff8800746c4f0c IP: [<ffffffff81266d59>] cfqq_type+0xb/0x20 PGD 18d4063 PUD 1fe15067 PMD 1ffb9067 PTE 80000000746c4160 Oops: 0000 [#1] SMP DEBUG_PAGEALLOC CPU 3 Modules linked in: Pid: 1, comm: init Not tainted 3.2.0-josef+ raspberrypi#367 Bochs Bochs RIP: 0010:[<ffffffff81266d59>] [<ffffffff81266d59>] cfqq_type+0xb/0x20 RSP: 0018:ffff880079c11778 EFLAGS: 00010046 RAX: 0000000000000000 RBX: ffff880076f3df08 RCX: 0000000000000000 RDX: 0000000000000006 RSI: ffff880074271888 RDI: ffff8800746c4f08 RBP: ffff880079c11778 R08: 0000000000000078 R09: 0000000000000001 R10: 09f911029d74e35b R11: 09f911029d74e35b R12: ffff880076f337f0 R13: ffff8800746c4f08 R14: ffff8800746c4f08 R15: 0000000000000002 FS: 00007f62fd44f700(0000) GS:ffff88007cd80000(0000) knlGS:0000000000000000 CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 CR2: ffff8800746c4f0c CR3: 0000000076c21000 CR4: 00000000000006e0 DR0: 0000000000000000 DR1: 0000000000000000 DR2: 0000000000000000 DR3: 0000000000000000 DR6: 00000000ffff0ff0 DR7: 0000000000000400 Process init (pid: 1, threadinfo ffff880079c10000, task ffff880079c0a040) Stack: ffff880079c117c8 ffffffff812683d8 ffff880079c117a8 ffffffff8125de43 ffff8800744fcf48 ffff880074b43e98 ffff8800770c8828 ffff880074b43e98 0000000000000003 0000000000000000 ffff880079c117f8 ffffffff81254149 Call Trace: [<ffffffff812683d8>] cfq_insert_request+0x3f5/0x47c [<ffffffff8125de43>] ? blk_recount_segments+0x20/0x31 [<ffffffff81254149>] __elv_add_request+0x1ca/0x200 [<ffffffff8125aa99>] blk_queue_bio+0x2ef/0x312 [<ffffffff81258f7b>] generic_make_request+0x9f/0xe0 [<ffffffff8125907b>] submit_bio+0xbf/0xca [<ffffffff81136ec7>] submit_bh+0xdf/0xfe [<ffffffff81176d04>] ext3_bread+0x50/0x99 [<ffffffff811785b3>] dx_probe+0x38/0x291 [<ffffffff81178864>] ext3_dx_find_entry+0x58/0x219 [<ffffffff81178ad5>] ext3_find_entry+0xb0/0x406 [<ffffffff8110c4d5>] ? cache_alloc_debugcheck_after.isra.46+0x14d/0x1a0 [<ffffffff8110cfbd>] ? kmem_cache_alloc+0xef/0x191 [<ffffffff8117a330>] ext3_lookup+0x39/0xe1 [<ffffffff81119461>] d_alloc_and_lookup+0x45/0x6c [<ffffffff8111ac41>] do_lookup+0x1e4/0x2f5 [<ffffffff8111aef6>] link_path_walk+0x1a4/0x6ef [<ffffffff8111b557>] path_lookupat+0x59/0x5ea [<ffffffff8127406c>] ? __strncpy_from_user+0x30/0x5a [<ffffffff8111bce0>] do_path_lookup+0x23/0x59 [<ffffffff8111cfd6>] user_path_at_empty+0x53/0x99 [<ffffffff8107b37b>] ? remove_wait_queue+0x51/0x56 [<ffffffff8111d02d>] user_path_at+0x11/0x13 [<ffffffff811141f5>] vfs_fstatat+0x3a/0x64 [<ffffffff8111425a>] vfs_stat+0x1b/0x1d [<ffffffff81114359>] sys_newstat+0x1a/0x33 [<ffffffff81060e12>] ? task_stopped_code+0x42/0x42 [<ffffffff815d6712>] system_call_fastpath+0x16/0x1b Code: 89 e6 48 89 c7 e8 fa ca fe ff 85 c0 74 06 4c 89 2b 41 b6 01 5b 44 89 f0 41 5c 41 5d 41 5e 5d c3 55 48 89 e5 66 66 66 66 90 31 c0 <8b> 57 04 f6 c6 01 74 0b 83 e2 20 83 fa 01 19 c0 83 c0 02 5d c3 RIP [<ffffffff81266d59>] cfqq_type+0xb/0x20 RSP <ffff880079c11778> CR2: ffff8800746c4f0c Get rid of the caching of cfqd->active_queue, and reorder the check so that it happens before we expire the active queue. Thanks to Tejun for pin pointing the error location. Reported-by: Chris Mason <chris.mason@oracle.com> Tested-by: Chris Mason <chris.mason@oracle.com> Signed-off-by: Jens Axboe <axboe@kernel.dk>
Vivek reported a kernel crash: [ 94.217015] BUG: unable to handle kernel NULL pointer dereference at 000000000000001c [ 94.218004] IP: [<ffffffff81142fae>] kmem_cache_free+0x5e/0x200 [ 94.218004] PGD 13abda067 PUD 137d52067 PMD 0 [ 94.218004] Oops: 0000 [#1] SMP DEBUG_PAGEALLOC [ 94.218004] CPU 0 [ 94.218004] Modules linked in: [last unloaded: scsi_wait_scan] [ 94.218004] [ 94.218004] Pid: 0, comm: swapper/0 Not tainted 3.2.0+ #16 Hewlett-Packard HP xw6600 Workstation/0A9Ch [ 94.218004] RIP: 0010:[<ffffffff81142fae>] [<ffffffff81142fae>] kmem_cache_free+0x5e/0x200 [ 94.218004] RSP: 0018:ffff88013fc03de0 EFLAGS: 00010006 [ 94.218004] RAX: ffffffff81e0d020 RBX: ffff880138b3c680 RCX: 00000001801c001b [ 94.218004] RDX: 00000000003aac1d RSI: ffff880138b3c680 RDI: ffffffff81142fae [ 94.218004] RBP: ffff88013fc03e10 R08: ffff880137830238 R09: 0000000000000001 [ 94.218004] R10: 0000000000000000 R11: 0000000000000000 R12: 0000000000000000 [ 94.218004] R13: ffffea0004e2cf00 R14: ffffffff812f6eb6 R15: 0000000000000246 [ 94.218004] FS: 0000000000000000(0000) GS:ffff88013fc00000(0000) knlGS:0000000000000000 [ 94.218004] CS: 0010 DS: 0000 ES: 0000 CR0: 000000008005003b [ 94.218004] CR2: 000000000000001c CR3: 00000001395ab000 CR4: 00000000000006f0 [ 94.218004] DR0: 0000000000000000 DR1: 0000000000000000 DR2: 0000000000000000 [ 94.218004] DR3: 0000000000000000 DR6: 00000000ffff0ff0 DR7: 0000000000000400 [ 94.218004] Process swapper/0 (pid: 0, threadinfo ffffffff81e00000, task ffffffff81e0d020) [ 94.218004] Stack: [ 94.218004] 0000000000000102 ffff88013fc0db20 ffffffff81e22700 ffff880139500f00 [ 94.218004] 0000000000000001 000000000000000a ffff88013fc03e20 ffffffff812f6eb6 [ 94.218004] ffff88013fc03e90 ffffffff810c8da2 ffffffff81e01fd8 ffff880137830240 [ 94.218004] Call Trace: [ 94.218004] <IRQ> [ 94.218004] [<ffffffff812f6eb6>] icq_free_icq_rcu+0x16/0x20 [ 94.218004] [<ffffffff810c8da2>] __rcu_process_callbacks+0x1c2/0x420 [ 94.218004] [<ffffffff810c9038>] rcu_process_callbacks+0x38/0x250 [ 94.218004] [<ffffffff810405ee>] __do_softirq+0xce/0x3e0 [ 94.218004] [<ffffffff8108ed04>] ? clockevents_program_event+0x74/0x100 [ 94.218004] [<ffffffff81090104>] ? tick_program_event+0x24/0x30 [ 94.218004] [<ffffffff8183ed1c>] call_softirq+0x1c/0x30 [ 94.218004] [<ffffffff8100422d>] do_softirq+0x8d/0xc0 [ 94.218004] [<ffffffff81040c3e>] irq_exit+0xae/0xe0 [ 94.218004] [<ffffffff8183f4be>] smp_apic_timer_interrupt+0x6e/0x99 [ 94.218004] [<ffffffff8183e330>] apic_timer_interrupt+0x70/0x80 Once a queue is quiesced, it's not supposed to have any elvpriv data or icq's, and elevator switching depends on that. Request alloc path followed the rule for elvpriv data but forgot apply it to icq's leading to the following crash during elevator switch. Fix it by not allocating icq's if ELVPRIV is not set for the request. Reported-by: Vivek Goyal <vgoyal@redhat.com> Tested-by: Vivek Goyal <vgoyal@redhat.com> Signed-off-by: Shaohua Li <shaohua.li@intel.com> Acked-by: Tejun Heo <tj@kernel.org> Signed-off-by: Jens Axboe <axboe@kernel.dk>
There is a case in __sk_mem_schedule(), where an allocation is beyond the maximum, but yet we are allowed to proceed. It happens under the following condition: sk->sk_wmem_queued + size >= sk->sk_sndbuf The network code won't revert the allocation in this case, meaning that at some point later it'll try to do it. Since this is never communicated to the underlying res_counter code, there is an inbalance in res_counter uncharge operation. I see two ways of fixing this: 1) storing the information about those allocations somewhere in memcg, and then deducting from that first, before we start draining the res_counter, 2) providing a slightly different allocation function for the res_counter, that matches the original behavior of the network code more closely. I decided to go for #2 here, believing it to be more elegant, since #1 would require us to do basically that, but in a more obscure way. Signed-off-by: Glauber Costa <glommer@parallels.com> Cc: KAMEZAWA Hiroyuki <kamezawa.hiroyu@jp.fujitsu.com> Cc: Johannes Weiner <hannes@cmpxchg.org> Cc: Michal Hocko <mhocko@suse.cz> CC: Tejun Heo <tj@kernel.org> CC: Li Zefan <lizf@cn.fujitsu.com> CC: Laurent Chavey <chavey@google.com> Acked-by: Tejun Heo <tj@kernel.org> Signed-off-by: David S. Miller <davem@davemloft.net>
Fix the following NULL ptr dereference caused by cat /sys/devices/system/memory/memory0/removable Pid: 13979, comm: sed Not tainted 3.0.13-0.5-default #1 IBM BladeCenter LS21 -[7971PAM]-/Server Blade RIP: __count_immobile_pages+0x4/0x100 Process sed (pid: 13979, threadinfo ffff880221c36000, task ffff88022e788480) Call Trace: is_pageblock_removable_nolock+0x34/0x40 is_mem_section_removable+0x74/0xf0 show_mem_removable+0x41/0x70 sysfs_read_file+0xfe/0x1c0 vfs_read+0xc7/0x130 sys_read+0x53/0xa0 system_call_fastpath+0x16/0x1b We are crashing because we are trying to dereference NULL zone which came from pfn=0 (struct page ffffea0000000000). According to the boot log this page is marked reserved: e820 update range: 0000000000000000 - 0000000000010000 (usable) ==> (reserved) and early_node_map confirms that: early_node_map[3] active PFN ranges 1: 0x00000010 -> 0x0000009c 1: 0x00000100 -> 0x000bffa3 1: 0x00100000 -> 0x00240000 The problem is that memory_present works in PAGE_SECTION_MASK aligned blocks so the reserved range sneaks into the the section as well. This also means that free_area_init_node will not take care of those reserved pages and they stay uninitialized. When we try to read the removable status we walk through all available sections and hope that the zone is valid for all pages in the section. But this is not true in this case as the zone and nid are not initialized. We have only one node in this particular case and it is marked as node=1 (rather than 0) and that made the problem visible because page_to_nid will return 0 and there are no zones on the node. Let's check that the zone is valid and that the given pfn falls into its boundaries and mark the section not removable. This might cause some false positives, probably, but we do not have any sane way to find out whether the page is reserved by the platform or it is just not used for whatever other reasons. Signed-off-by: Michal Hocko <mhocko@suse.cz> Acked-by: Mel Gorman <mgorman@suse.de> Cc: KAMEZAWA Hiroyuki <kamezawa.hiroyu@jp.fujitsu.com> Cc: Andrea Arcangeli <aarcange@redhat.com> Cc: David Rientjes <rientjes@google.com> Cc: <stable@vger.kernel.org> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
If we shutdown without stopping the gadget first or removing the cable, gadget manages to configure itself again: root@pandora /root# poweroff The system is going down NOW! Requesting system poweroff [ 47.714385] musb-hm halted. [ 48.120697] gadget: suspend [ 48.123748] gadget: reset config [ 48.127227] gadget: ecm deactivated [ 48.130981] usb0: gether_disconnect [ 48.281799] gadget: high-speed config #1: CDC Ethernet (ECM) [ 48.287872] gadget: init ecm [ 48.290985] gadget: notify connect false [ 48.295288] gadget: notify speed 425984000 This is not only unwanted, it's also happening on half-unitialized state, after musb_shutdown() has returned, which sometimes causes hardware to fail to work after reboot. Let's better properly stop gadget on shutdown too. This patch moves musb_gadget_cleanup out of musb_free(), which has 2 callsites: probe error path and musb_remove. On probe error path it was superflous since musb_gadget_cleanup is called explicitly there, and musb_remove() calls musb_shutdown(), so cleanup will get called as before. Signed-off-by: Grazvydas Ignotas <notasas@gmail.com> Signed-off-by: Felipe Balbi <balbi@ti.com>
At a boot time I observed following bug: BUG: unable to handle kernel paging request at ffff8800a4244000 IP: [<ffffffff81275b5b>] memcpy+0xb/0x120 PGD 1816063 PUD 1fe7d067 PMD 1ff9f067 PTE 80000000a4244160 Oops: 0000 [#1] SMP DEBUG_PAGEALLOC CPU 0 Modules linked in: btusb bluetooth brcmsmac brcmutil crc8 cordic b43 radeon(+) mac80211 cfg80211 ttm ohci_hcd drm_kms_helper rfkill drm ssb agpgart mmc_core sp5100_tco video battery ac thermal processor rtc_cmos thermal_sys snd_hda_codec_hdmi joydev snd_hda_codec_conexant button bcma pcmcia snd_hda_intel snd_hda_codec snd_hwdep snd_pcm shpchp pcmcia_core k8temp snd_timer atl1c snd psmouse hwmon i2c_piix4 i2c_algo_bit soundcore evdev i2c_core ehci_hcd sg serio_raw snd_page_alloc loop btrfs Pid: 1008, comm: modprobe Not tainted 3.3.0-rc1 raspberrypi#21 LENOVO 20046 /AMD CRB RIP: 0010:[<ffffffff81275b5b>] [<ffffffff81275b5b>] memcpy+0xb/0x120 RSP: 0018:ffff8800aa72db00 EFLAGS: 00010246 RAX: ffff8800a4150000 RBX: 0000000000001000 RCX: 0000000000000087 RDX: 0000000000000000 RSI: ffff8800a4244000 RDI: ffff8800a4150bc8 RBP: ffff8800aa72db78 R08: 0000000000000010 R09: ffffffff8174bbec R10: ffffffff812ee010 R11: 0000000000000001 R12: 0000000000001000 R13: 0000000000010000 R14: ffff8800a4140000 R15: ffff8800aaba1800 FS: 00007ff9a3bd4720(0000) GS:ffff8800afa00000(0000) knlGS:0000000000000000 CS: 0010 DS: 0000 ES: 0000 CR0: 000000008005003b CR2: ffff8800a4244000 CR3: 00000000a9c18000 CR4: 00000000000006f0 DR0: 0000000000000000 DR1: 0000000000000000 DR2: 0000000000000000 DR3: 0000000000000000 DR6: 00000000ffff0ff0 DR7: 0000000000000400 Process modprobe (pid: 1008, threadinfo ffff8800aa72c000, task ffff8800aa0e4000) Stack: ffffffffa04e7c7b 0000000000000001 0000000000010000 ffff8800aa72db28 ffffffff00000001 0000000000001000 ffffffff8113cbef 0000000000000020 ffff8800a4243420 ffff880000000002 ffff8800aa72db08 ffff8800a9d42000 Call Trace: [<ffffffffa04e7c7b>] ? radeon_atrm_get_bios_chunk+0x8b/0xd0 [radeon] [<ffffffff8113cbef>] ? kmalloc_order_trace+0x3f/0xb0 [<ffffffffa04a9298>] radeon_get_bios+0x68/0x2f0 [radeon] [<ffffffffa04c7a30>] rv770_init+0x40/0x280 [radeon] [<ffffffffa047d740>] radeon_device_init+0x560/0x600 [radeon] [<ffffffffa047ef4f>] radeon_driver_load_kms+0xaf/0x170 [radeon] [<ffffffffa043cdde>] drm_get_pci_dev+0x18e/0x2c0 [drm] [<ffffffffa04e7e95>] radeon_pci_probe+0xad/0xb5 [radeon] [<ffffffff81296c5f>] local_pci_probe+0x5f/0xd0 [<ffffffff81297418>] pci_device_probe+0x88/0xb0 [<ffffffff813417aa>] ? driver_sysfs_add+0x7a/0xb0 [<ffffffff813418d8>] really_probe+0x68/0x180 [<ffffffff81341be5>] driver_probe_device+0x45/0x70 [<ffffffff81341cb3>] __driver_attach+0xa3/0xb0 [<ffffffff81341c10>] ? driver_probe_device+0x70/0x70 [<ffffffff813400ce>] bus_for_each_dev+0x5e/0x90 [<ffffffff8134172e>] driver_attach+0x1e/0x20 [<ffffffff81341298>] bus_add_driver+0xc8/0x280 [<ffffffff813422c6>] driver_register+0x76/0x140 [<ffffffff812976d6>] __pci_register_driver+0x66/0xe0 [<ffffffffa043d021>] drm_pci_init+0x111/0x120 [drm] [<ffffffff8133c67a>] ? vga_switcheroo_register_handler+0x3a/0x60 [<ffffffffa0229000>] ? 0xffffffffa0228fff [<ffffffffa02290ec>] radeon_init+0xec/0xee [radeon] [<ffffffff810002f2>] do_one_initcall+0x42/0x180 [<ffffffff8109d8d2>] sys_init_module+0x92/0x1e0 [<ffffffff815407a9>] system_call_fastpath+0x16/0x1b Code: 58 2a 43 50 88 43 4e 48 83 c4 08 5b c9 c3 66 90 e8 cb fd ff ff eb e6 90 90 90 90 90 90 90 90 90 48 89 f8 89 d1 c1 e9 03 83 e2 07 <f3> 48 a5 89 d1 f3 a4 c3 20 48 83 ea 20 4c 8b 06 4c 8b 4e 08 4c RIP [<ffffffff81275b5b>] memcpy+0xb/0x120 RSP <ffff8800aa72db00> CR2: ffff8800a4244000 ---[ end trace fcffa1599cf56382 ]--- Call to acpi_evaluate_object() not always returns 4096 bytes chunks, on my system it can return 2048 bytes chunk, so pass the length of retrieved chunk to memcpy(), not the length of the recieving buffer. Signed-off-by: Igor Murzov <e-mail@date.by> Reviewed-by: Alex Deucher <alexander.deucher@amd.com> Signed-off-by: Dave Airlie <airlied@redhat.com>
The sa1111 socket driver oopses when removed: Unable to handle kernel NULL pointer dereference at virtual address 000003b0 pgd = c1b40000 [000003b0] *pgd=00000000 Internal error: Oops: 41b43005 [#1] Modules linked in: CPU: 0 Not tainted (3.3.0-rc1+ raspberrypi#744) PC is at pcmcia_remove+0x3c/0x60 LR is at pcmcia_remove+0x34/0x60 This is because we try to dereference a NULL 's' to obtain the next pointer. Fix this. Signed-off-by: Russell King <rmk+kernel@arm.linux.org.uk>
The dynamic ftrace ops startup test currently fails on Thumb-2 kernels: Testing tracer function: PASSED Testing dynamic ftrace: PASSED Testing dynamic ftrace ops #1: (0 0 0 0 0) FAILED! This is because while the addresses in the mcount records do not have the zero bit set, the IP reported by the mcount call does have it set (because it is copied from the LR). This mismatch causes the ops filtering in ftrace_ops_list_func() to not call the relevant tracers. Fix this by clearing the zero bit before adjusting the LR for the mcount instruction size. Also, combine the mov+sub into a single sub instruction. Acked-by: Dave Martin <dave.martin@linaro.org> Signed-off-by: Rabin Vincent <rabin@rab.in> Signed-off-by: Russell King <rmk+kernel@arm.linux.org.uk>
commit 49bda21 upstream. This commit fixes the following issues: 1. The 9th bit of buf was believed to be the LSB of divisor's exponent, but the hardware interprets it as MSB (9th bit) of the mantissa. The exponent is actually one bit shorter and applies to base 4, not 2 as previously believed. 2. Loop iterations doubled the exponent instead of incrementing. 3. The exponent wasn't checked for overflow. 4. The function returned requested rate instead of actual rate. Due to issue #2, the old code deviated from the wrong formula described in #1 and actually yielded correct rates when divisor was lower than 4096 by using exponents of 0, 2 or 4 base-2, interpreted as 0, 1, 2 base-4 with the 9th mantissa bit clear. However, at 93.75 kbaud or less the rate turned out too slow due to #2 or too fast due to #2 and #3. I tested this patch by sending and validating 0x00,0x01,..,0xff to an FTDI dongle at 234, 987, 2401, 9601, 31415, 115199, 250k, 500k, 750k, 1M, 1.5M, 3M+1 baud. All rates passed. I also used pv to check speed at some rates unsupported by FTDI: 45 (the lowest possible), 2M, 4M, 5M and 6M-1. Looked sane. Signed-off-by: Michal Pecio <michal.pecio@gmail.com> Fixes: 399aa9a ("USB: pl2303: use divisors for unsupported baud rates") [johan: update summary ] Signed-off-by: Johan Hovold <johan@kernel.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 596f5aa upstream. There may be lots of pending requests so that the buffer of PAGE_SIZE can't hold them at all. One typical example is scsi-mq, the queue depth(.can_queue) of scsi_host and blk-mq is quite big but scsi_device's queue_depth is a bit small(.cmd_per_lun), then it is quite easy to have lots of pending requests in hw queue. This patch fixes the following warning and the related memory destruction. [ 359.025101] fill_read_buffer: blk_mq_hw_sysfs_show+0x0/0x7d returned bad count^M [ 359.055595] irq event stamp: 15537^M [ 359.055606] general protection fault: 0000 [#1] PREEMPT SMP DEBUG_PAGEALLOC ^M [ 359.055614] Dumping ftrace buffer:^M [ 359.055660] (ftrace buffer empty)^M [ 359.055672] Modules linked in: nbd ipv6 kvm_intel kvm serio_raw^M [ 359.055678] CPU: 4 PID: 21631 Comm: stress-ng-sysfs Not tainted 4.2.0-rc5-next-20150805 raspberrypi#434^M [ 359.055679] Hardware name: QEMU Standard PC (i440FX + PIIX, 1996), BIOS Bochs 01/01/2011^M [ 359.055682] task: ffff8802161cc000 ti: ffff88021b4a8000 task.ti: ffff88021b4a8000^M [ 359.055693] RIP: 0010:[<ffffffff811541c5>] [<ffffffff811541c5>] __kmalloc+0xe8/0x152^M Signed-off-by: Ming Lei <ming.lei@canonical.com> Signed-off-by: Jens Axboe <axboe@fb.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit bdfe0cb upstream. This reverts commit 08439fe. Unfortunately we still need to test for bdi->dev to avoid a crash when a USB stick is yanked out while a file system is mounted: usb 2-2: USB disconnect, device number 2 Buffer I/O error on dev sdb1, logical block 15237120, lost sync page write JBD2: Error -5 detected when updating journal superblock for sdb1-8. BUG: unable to handle kernel paging request at 34beb000 IP: [<c136ce88>] __percpu_counter_add+0x18/0xc0 *pdpt = 0000000023db9001 *pde = 0000000000000000 Oops: 0000 [#1] SMP CPU: 0 PID: 4083 Comm: umount Tainted: G U OE 4.1.1-040101-generic #201507011435 Hardware name: LENOVO 7675CTO/7675CTO, BIOS 7NETC2WW (2.22 ) 03/22/2011 task: ebf06b50 ti: ebebc000 task.ti: ebebc000 EIP: 0060:[<c136ce88>] EFLAGS: 00010082 CPU: 0 EIP is at __percpu_counter_add+0x18/0xc0 EAX: f21c8e88 EBX: f21c8e88 ECX: 00000000 EDX: 00000001 ESI: 00000001 EDI: 00000000 EBP: ebebde60 ESP: ebebde40 DS: 007b ES: 007b FS: 00d8 GS: 00e0 SS: 0068 CR0: 8005003b CR2: 34beb000 CR3: 33354200 CR4: 000007f0 Stack: c1abe100 edcb0098 edcb00ec ffffffff f21c8e68 ffffffff f21c8e68 f286d160 ebebde84 c1160454 00000010 00000282 f72a77f8 00000984 f72a77f8 f286d160 f286d170 ebebdea0 c11e613f 00000000 00000282 f72a77f8 edd7f4d0 00000000 Call Trace: [<c1160454>] account_page_dirtied+0x74/0x110 [<c11e613f>] __set_page_dirty+0x3f/0xb0 [<c11e6203>] mark_buffer_dirty+0x53/0xc0 [<c124a0cb>] ext4_commit_super+0x17b/0x250 [<c124ac71>] ext4_put_super+0xc1/0x320 [<c11f04ba>] ? fsnotify_unmount_inodes+0x1aa/0x1c0 [<c11cfeda>] ? evict_inodes+0xca/0xe0 [<c11b925a>] generic_shutdown_super+0x6a/0xe0 [<c10a1df0>] ? prepare_to_wait_event+0xd0/0xd0 [<c1165a50>] ? unregister_shrinker+0x40/0x50 [<c11b92f6>] kill_block_super+0x26/0x70 [<c11b94f5>] deactivate_locked_super+0x45/0x80 [<c11ba007>] deactivate_super+0x47/0x60 [<c11d2b39>] cleanup_mnt+0x39/0x80 [<c11d2bc0>] __cleanup_mnt+0x10/0x20 [<c1080b51>] task_work_run+0x91/0xd0 [<c1011e3c>] do_notify_resume+0x7c/0x90 [<c1720da5>] work_notify Code: 8b 55 e8 e9 f4 fe ff ff 90 90 90 90 90 90 90 90 90 90 90 55 89 e5 83 ec 20 89 5d f4 89 c3 89 75 f8 89 d6 89 7d fc 89 cf 8b 48 14 <64> 8b 01 89 45 ec 89 c2 8b 45 08 c1 fa 1f 01 75 ec 89 55 f0 89 EIP: [<c136ce88>] __percpu_counter_add+0x18/0xc0 SS:ESP 0068:ebebde40 CR2: 0000000034beb000 ---[ end trace dd564a7bea834ecd ]--- Bugzilla: https://bugzilla.kernel.org/show_bug.cgi?id=101011 Signed-off-by: Theodore Ts'o <tytso@mit.edu> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 1ab3638 upstream. Not all gpio banks are necessarily enabled, in the current code this can lead to null pointer dereferences. [ 51.130000] Unable to handle kernel NULL pointer dereference at virtual address 00000058 [ 51.130000] pgd = dee04000 [ 51.130000] [00000058] *pgd=3f66d831, *pte=00000000, *ppte=00000000 [ 51.140000] Internal error: Oops: 17 [#1] ARM [ 51.140000] Modules linked in: [ 51.140000] CPU: 0 PID: 1664 Comm: cat Not tainted 4.1.1+ #6 [ 51.140000] Hardware name: Atmel SAMA5 [ 51.140000] task: df6dd880 ti: dec60000 task.ti: dec60000 [ 51.140000] PC is at at91_pinconf_get+0xb4/0x200 [ 51.140000] LR is at at91_pinconf_get+0xb4/0x200 [ 51.140000] pc : [<c01e71a0>] lr : [<c01e71a0>] psr: 600f0013 sp : dec61e48 ip : 600f0013 fp : df522538 [ 51.140000] r10: df52250c r9 : 00000058 r8 : 00000068 [ 51.140000] r7 : 00000000 r6 : df53c910 r5 : 00000000 r4 : dec61e7c [ 51.140000] r3 : 00000000 r2 : c06746d4 r1 : 00000000 r0 : 00000003 [ 51.140000] Flags: nZCv IRQs on FIQs on Mode SVC_32 ISA ARM Segment user [ 51.140000] Control: 10c53c7d Table: 3ee04059 DAC: 00000015 [ 51.140000] Process cat (pid: 1664, stack limit = 0xdec60208) [ 51.140000] Stack: (0xdec61e48 to 0xdec62000) [ 51.140000] 1e40: 00000358 00000000 df522500 ded15f80 c05a9d08 ded15f80 [ 51.140000] 1e60: 0000048c 00000061 df522500 ded15f80 c05a9d08 c01e7304 ded15f80 00000000 [ 51.140000] 1e80: c01e6008 00000060 0000048c c01e6034 c01e5f6c ded15f80 dec61ec0 00000000 [ 51.140000] 1ea0: 00020000 ded6f280 dec61f80 00000001 00000001 c00ae0b8 b6e80000 ded15fb0 [ 51.140000] 1ec0: 00000000 00000000 df4bc974 00000055 00000800 ded6f280 b6e80000 ded6f280 [ 51.140000] 1ee0: ded6f280 00020000 b6e80000 00000000 00020000 c0090dec c0671e1c dec61fb0 [ 51.140000] 1f00: b6f8b510 00000001 00004201 c000924c 00000000 00000003 00000003 00000000 [ 51.140000] 1f20: df4bc940 00022000 00000022 c066e188 b6e7f000 c00836f4 000b6e7f ded6f280 [ 51.140000] 1f40: ded6f280 b6e80000 dec61f80 ded6f280 00020000 c0091508 00000000 00000003 [ 51.140000] 1f60: 00022000 00000000 00000000 ded6f280 ded6f280 00020000 b6e80000 c0091d9c [ 51.140000] 1f80: 00000000 00000000 ffffffff 00020000 00020000 b6e80000 00000003 c000f124 [ 51.140000] 1fa0: dec60000 c000efa0 00020000 00020000 00000003 b6e80000 00020000 000271c4 [ 51.140000] 1fc0: 00020000 00020000 b6e80000 00000003 7fffe000 00000000 00000000 00020000 [ 51.140000] 1fe0: 00000000 bef50b64 00013835 b6f29c76 400f0030 00000003 00000000 00000000 [ 51.140000] [<c01e71a0>] (at91_pinconf_get) from [<c01e7304>] (at91_pinconf_dbg_show+0x18/0x2c0) [ 51.140000] [<c01e7304>] (at91_pinconf_dbg_show) from [<c01e6034>] (pinconf_pins_show+0xc8/0xf8) [ 51.140000] [<c01e6034>] (pinconf_pins_show) from [<c00ae0b8>] (seq_read+0x1a0/0x464) [ 51.140000] [<c00ae0b8>] (seq_read) from [<c0090dec>] (__vfs_read+0x20/0xd0) [ 51.140000] [<c0090dec>] (__vfs_read) from [<c0091508>] (vfs_read+0x7c/0x108) [ 51.140000] [<c0091508>] (vfs_read) from [<c0091d9c>] (SyS_read+0x40/0x94) [ 51.140000] [<c0091d9c>] (SyS_read) from [<c000efa0>] (ret_fast_syscall+0x0/0x3c) [ 51.140000] Code: eb010ec2 e30a0d08 e34c005a eb0ae5a7 (e5993000) [ 51.150000] ---[ end trace fb3c370da3ea4794 ]--- Fixes: a0b957f ("pinctrl: at91: allow to have disabled gpio bank") Signed-off-by: David Dueck <davidcdueck@googlemail.com> Acked-by: Ludovic Desroches <ludovic.desroches@atmel.com> Acked-by: Alexandre Belloni <alexandre.belloni@free-electrons.com> Acked-by: Nicolas Ferre <nicolas.ferre@atmel.com> Cc: Boris Brezillon <boris.brezillon@free-electrons.com> Cc: Jean-Christophe PLAGNIOL-VILLARD <plagnioj@jcrosoft.com> Cc: linux-arm-kernel@lists.infradead.org Cc: linux-kernel@vger.kernel.org Signed-off-by: Linus Walleij <linus.walleij@linaro.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 0469785 upstream. Tony Luck found on his setup, if memory block size 512M will cause crash during booting. BUG: unable to handle kernel paging request at ffffea0074000020 IP: get_nid_for_pfn+0x17/0x40 PGD 128ffcb067 PUD 128ffc9067 PMD 0 Oops: 0000 [#1] SMP Modules linked in: CPU: 0 PID: 1 Comm: swapper/0 Not tainted 4.2.0-rc8 #1 ... Call Trace: ? register_mem_sect_under_node+0x66/0xe0 register_one_node+0x17b/0x240 ? pci_iommu_alloc+0x6e/0x6e topology_init+0x3c/0x95 do_one_initcall+0xcd/0x1f0 The system has non continuous RAM address: BIOS-e820: [mem 0x0000001300000000-0x0000001cffffffff] usable BIOS-e820: [mem 0x0000001d70000000-0x0000001ec7ffefff] usable BIOS-e820: [mem 0x0000001f00000000-0x0000002bffffffff] usable BIOS-e820: [mem 0x0000002c18000000-0x0000002d6fffefff] usable BIOS-e820: [mem 0x0000002e00000000-0x00000039ffffffff] usable So there are start sections in memory block not present. For example: memory block : [0x2c18000000, 0x2c20000000) 512M first three sections are not present. The current register_mem_sect_under_node() assume first section is present, but memory block section number range [start_section_nr, end_section_nr] would include not present section. For arch that support vmemmap, we don't setup memmap for struct page area within not present sections area. So skip the pfn range that belong to absent section. [akpm@linux-foundation.org: simplification] [rientjes@google.com: more simplification] Fixes: bdee237 ("x86: mm: Use 2GB memory block size on large memory x86-64 systems") Fixes: 982792c ("x86, mm: probe memory block size for generic x86 64bit") Signed-off-by: Yinghai Lu <yinghai@kernel.org> Signed-off-by: David Rientjes <rientjes@google.com> Reported-by: Tony Luck <tony.luck@intel.com> Tested-by: Tony Luck <tony.luck@intel.com> Cc: Greg KH <greg@kroah.com> Cc: Ingo Molnar <mingo@elte.hu> Tested-by: David Rientjes <rientjes@google.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
…2 client commit 18e3b73 upstream. ---Steps to Reproduce-- <nfs-server> # cat /etc/exports /nfs/referal *(rw,insecure,no_subtree_check,no_root_squash,crossmnt) /nfs/old *(ro,insecure,subtree_check,root_squash,crossmnt) <nfs-client> # mount -t nfs nfs-server:/nfs/ /mnt/ # ll /mnt/*/ <nfs-server> # cat /etc/exports /nfs/referal *(rw,insecure,no_subtree_check,no_root_squash,crossmnt,refer=/nfs/old/@nfs-server) /nfs/old *(ro,insecure,subtree_check,root_squash,crossmnt) # service nfs restart <nfs-client> # ll /mnt/*/ --->>>>> oops here [ 5123.102925] BUG: unable to handle kernel NULL pointer dereference at (null) [ 5123.103363] IP: [<ffffffffa03ed38b>] nfs4_proc_get_locations+0x9b/0x120 [nfsv4] [ 5123.103752] PGD 587b9067 PUD 3cbf5067 PMD 0 [ 5123.104131] Oops: 0000 [#1] [ 5123.104529] Modules linked in: nfsv4(OE) nfs(OE) fscache(E) nfsd(OE) xfs libcrc32c iscsi_tcp libiscsi_tcp libiscsi scsi_transport_iscsi coretemp crct10dif_pclmul crc32_pclmul crc32c_intel ghash_clmulni_intel ppdev vmw_balloon parport_pc parport i2c_piix4 shpchp auth_rpcgss nfs_acl vmw_vmci lockd grace sunrpc vmwgfx drm_kms_helper ttm drm mptspi serio_raw scsi_transport_spi e1000 mptscsih mptbase ata_generic pata_acpi [last unloaded: nfsd] [ 5123.105887] CPU: 0 PID: 15853 Comm: ::1-manager Tainted: G OE 4.2.0-rc6+ raspberrypi#214 [ 5123.106358] Hardware name: VMware, Inc. VMware Virtual Platform/440BX Desktop Reference Platform, BIOS 6.00 05/20/2014 [ 5123.106860] task: ffff88007620f300 ti: ffff88005877c000 task.ti: ffff88005877c000 [ 5123.107363] RIP: 0010:[<ffffffffa03ed38b>] [<ffffffffa03ed38b>] nfs4_proc_get_locations+0x9b/0x120 [nfsv4] [ 5123.107909] RSP: 0018:ffff88005877fdb8 EFLAGS: 00010246 [ 5123.108435] RAX: ffff880053f3bc00 RBX: ffff88006ce6c908 RCX: ffff880053a0d240 [ 5123.108968] RDX: ffffea0000e6d940 RSI: ffff8800399a0000 RDI: ffff88006ce6c908 [ 5123.109503] RBP: ffff88005877fe28 R08: ffffffff81c708a0 R09: 0000000000000000 [ 5123.110045] R10: 00000000000001a2 R11: ffff88003ba7f5c8 R12: ffff880054c55800 [ 5123.110618] R13: 0000000000000000 R14: ffff880053a0d240 R15: ffff880053a0d240 [ 5123.111169] FS: 0000000000000000(0000) GS:ffffffff81c27000(0000) knlGS:0000000000000000 [ 5123.111726] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [ 5123.112286] CR2: 0000000000000000 CR3: 0000000054cac000 CR4: 00000000001406f0 [ 5123.112888] Stack: [ 5123.113458] ffffea0000e6d940 ffff8800399a0000 00000000000167d0 0000000000000000 [ 5123.114049] 0000000000000000 0000000000000000 0000000000000000 00000000a7ec82c6 [ 5123.114662] ffff88005877fe18 ffffea0000e6d940 ffff8800399a0000 ffff880054c55800 [ 5123.115264] Call Trace: [ 5123.115868] [<ffffffffa03fb44b>] nfs4_try_migration+0xbb/0x220 [nfsv4] [ 5123.116487] [<ffffffffa03fcb3b>] nfs4_run_state_manager+0x4ab/0x7b0 [nfsv4] [ 5123.117104] [<ffffffffa03fc690>] ? nfs4_do_reclaim+0x510/0x510 [nfsv4] [ 5123.117813] [<ffffffff810a4527>] kthread+0xd7/0xf0 [ 5123.118456] [<ffffffff810a4450>] ? kthread_worker_fn+0x160/0x160 [ 5123.119108] [<ffffffff816d9cdf>] ret_from_fork+0x3f/0x70 [ 5123.119723] [<ffffffff810a4450>] ? kthread_worker_fn+0x160/0x160 [ 5123.120329] Code: 4c 8b 6a 58 74 17 eb 52 48 8d 55 a8 89 c6 4c 89 e7 e8 4a b5 ff ff 8b 45 b0 85 c0 74 1c 4c 89 f9 48 8b 55 90 48 8b 75 98 48 89 df <41> ff 55 00 3d e8 d8 ff ff 41 89 c6 74 cf 48 8b 4d c8 65 48 33 [ 5123.121643] RIP [<ffffffffa03ed38b>] nfs4_proc_get_locations+0x9b/0x120 [nfsv4] [ 5123.122308] RSP <ffff88005877fdb8> [ 5123.122942] CR2: 0000000000000000 Fixes: ec011fe ("NFS: Introduce a vector of migration recovery ops") Signed-off-by: Kinglong Mee <kinglongmee@gmail.com> Signed-off-by: Trond Myklebust <trond.myklebust@primarydata.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
[ Upstream commit 0470eb9 ] Kirill A. Shutemov says: This simple test-case trigers few locking asserts in kernel: int main(int argc, char **argv) { unsigned int block_size = 16 * 4096; struct nl_mmap_req req = { .nm_block_size = block_size, .nm_block_nr = 64, .nm_frame_size = 16384, .nm_frame_nr = 64 * block_size / 16384, }; unsigned int ring_size; int fd; fd = socket(AF_NETLINK, SOCK_RAW, NETLINK_GENERIC); if (setsockopt(fd, SOL_NETLINK, NETLINK_RX_RING, &req, sizeof(req)) < 0) exit(1); if (setsockopt(fd, SOL_NETLINK, NETLINK_TX_RING, &req, sizeof(req)) < 0) exit(1); ring_size = req.nm_block_nr * req.nm_block_size; mmap(NULL, 2 * ring_size, PROT_READ|PROT_WRITE, MAP_SHARED, fd, 0); return 0; } +++ exited with 0 +++ BUG: sleeping function called from invalid context at /home/kas/git/public/linux-mm/kernel/locking/mutex.c:616 in_atomic(): 1, irqs_disabled(): 0, pid: 1, name: init 3 locks held by init/1: #0: (reboot_mutex){+.+...}, at: [<ffffffff81080959>] SyS_reboot+0xa9/0x220 #1: ((reboot_notifier_list).rwsem){.+.+..}, at: [<ffffffff8107f379>] __blocking_notifier_call_chain+0x39/0x70 #2: (rcu_callback){......}, at: [<ffffffff810d32e0>] rcu_do_batch.isra.49+0x160/0x10c0 Preemption disabled at:[<ffffffff8145365f>] __delay+0xf/0x20 CPU: 1 PID: 1 Comm: init Not tainted 4.1.0-00009-gbddf4c4818e0 raspberrypi#253 Hardware name: QEMU Standard PC (Q35 + ICH9, 2009), BIOS Debian-1.8.2-1 04/01/2014 ffff88017b3d8000 ffff88027bc03c38 ffffffff81929ceb 0000000000000102 0000000000000000 ffff88027bc03c68 ffffffff81085a9d 0000000000000002 ffffffff81ca2a20 0000000000000268 0000000000000000 ffff88027bc03c98 Call Trace: <IRQ> [<ffffffff81929ceb>] dump_stack+0x4f/0x7b [<ffffffff81085a9d>] ___might_sleep+0x16d/0x270 [<ffffffff81085bed>] __might_sleep+0x4d/0x90 [<ffffffff8192e96f>] mutex_lock_nested+0x2f/0x430 [<ffffffff81932fed>] ? _raw_spin_unlock_irqrestore+0x5d/0x80 [<ffffffff81464143>] ? __this_cpu_preempt_check+0x13/0x20 [<ffffffff8182fc3d>] netlink_set_ring+0x1ed/0x350 [<ffffffff8182e000>] ? netlink_undo_bind+0x70/0x70 [<ffffffff8182fe20>] netlink_sock_destruct+0x80/0x150 [<ffffffff817e484d>] __sk_free+0x1d/0x160 [<ffffffff817e49a9>] sk_free+0x19/0x20 [..] Cong Wang says: We can't hold mutex lock in a rcu callback, [..] Thomas Graf says: The socket should be dead at this point. It might be simpler to add a netlink_release_ring() function which doesn't require locking at all. Reported-by: "Kirill A. Shutemov" <kirill@shutemov.name> Diagnosed-by: Cong Wang <cwang@twopensource.com> Suggested-by: Thomas Graf <tgraf@suug.ch> Signed-off-by: Florian Westphal <fw@strlen.de> Signed-off-by: David S. Miller <davem@davemloft.net> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
This patch fixes a v4.1 only regression bug as reported by Martin where UNIT_ATTENTION checking for pre v4.2-rc1 RCU conversion code legacy se_node_acl->device_list[] was hitting a NULL pointer dereference in: [ 1858.639654] CPU: 2 PID: 1293 Comm: kworker/2:1 Tainted: G I 4.1.6-fixxcopy+ #1 [ 1858.639699] Hardware name: Dell Inc. PowerEdge R410/0N83VF, BIOS 1.11.0 07/20/2012 [ 1858.639747] Workqueue: xcopy_wq target_xcopy_do_work [target_core_mod] [ 1858.639782] task: ffff880036f0cbe0 ti: ffff880317940000 task.ti: ffff880317940000 [ 1858.639822] RIP: 0010:[<ffffffffa01d3774>] [<ffffffffa01d3774>] target_scsi3_ua_check+0x24/0x60 [target_core_mod] [ 1858.639884] RSP: 0018:ffff880317943ce0 EFLAGS: 00010282 [ 1858.639913] RAX: 0000000000000000 RBX: ffff880317943dc0 RCX: 0000000000000000 [ 1858.639950] RDX: 0000000000000000 RSI: ffff880317943dd0 RDI: ffff88030eaee408 [ 1858.639987] RBP: ffff88030eaee408 R08: 0000000000000001 R09: 0000000000000001 [ 1858.640025] R10: 0000000000000000 R11: 00000000000706e0 R12: ffff880315e0a000 [ 1858.640062] R13: ffff88030eaee408 R14: 0000000000000001 R15: ffff88030eaee408 [ 1858.640100] FS: 0000000000000000(0000) GS:ffff880322e80000(0000) knlGS:0000000000000000 [ 1858.640143] CS: 0010 DS: 0000 ES: 0000 CR0: 000000008005003b [ 1858.640173] CR2: 0000000000000000 CR3: 000000000180d000 CR4: 00000000000006e0 [ 1858.640210] Stack: [ 1858.640223] ffffffffa01cadfa ffff88030eaee400 ffff880318e7c340 ffff880315e0a000 [ 1858.640267] ffffffffa01d8c25 ffff8800cae809e0 0000000000000400 0000000000000400 [ 1858.640310] ffff880318e7c3d0 0000000006b75800 0000000000080000 ffff88030eaee400 [ 1858.640354] Call Trace: [ 1858.640379] [<ffffffffa01cadfa>] ? target_setup_cmd_from_cdb+0x13a/0x2c0 [target_core_mod] [ 1858.640429] [<ffffffffa01d8c25>] ? target_xcopy_setup_pt_cmd+0x85/0x320 [target_core_mod] [ 1858.640479] [<ffffffffa01d9424>] ? target_xcopy_do_work+0x264/0x700 [target_core_mod] [ 1858.640526] [<ffffffff810ac3a0>] ? pick_next_task_fair+0x720/0x8f0 [ 1858.640562] [<ffffffff8108b3fb>] ? process_one_work+0x14b/0x430 [ 1858.640595] [<ffffffff8108bf5b>] ? worker_thread+0x6b/0x560 [ 1858.640627] [<ffffffff8108bef0>] ? rescuer_thread+0x390/0x390 [ 1858.640661] [<ffffffff810913b3>] ? kthread+0xd3/0xf0 [ 1858.640689] [<ffffffff810912e0>] ? kthread_create_on_node+0x180/0x180 Also, check for the same se_node_acl->device_list[] during EXTENDED_COPY operation as a non-holding persistent reservation port. Reported-by: Martin Svec <martin,svec@zoner.cz> Tested-by: Martin Svec <martin,svec@zoner.cz> Cc: Martin Svec <martin,svec@zoner.cz> Cc: Alex Gorbachev <ag@iss-integration.com> Signed-off-by: Nicholas Bellinger <nab@linux-iscsi.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit eddd382 upstream. Dmitry Vyukov reported the following using trinity and the memory error detector AddressSanitizer (https://code.google.com/p/address-sanitizer/wiki/AddressSanitizerForKernel). [ 124.575597] ERROR: AddressSanitizer: heap-buffer-overflow on address ffff88002e280000 [ 124.576801] ffff88002e280000 is located 131938492886538 bytes to the left of 28857600-byte region [ffffffff81282e0a, ffffffff82e0830a) [ 124.578633] Accessed by thread T10915: [ 124.579295] inlined in describe_heap_address ./arch/x86/mm/asan/report.c:164 [ 124.579295] #0 ffffffff810dd277 in asan_report_error ./arch/x86/mm/asan/report.c:278 [ 124.580137] #1 ffffffff810dc6a0 in asan_check_region ./arch/x86/mm/asan/asan.c:37 [ 124.581050] #2 ffffffff810dd423 in __tsan_read8 ??:0 [ 124.581893] #3 ffffffff8107c093 in get_wchan ./arch/x86/kernel/process_64.c:444 The address checks in the 64bit implementation of get_wchan() are wrong in several ways: - The lower bound of the stack is not the start of the stack page. It's the start of the stack page plus sizeof (struct thread_info) - The upper bound must be: top_of_stack - TOP_OF_KERNEL_STACK_PADDING - 2 * sizeof(unsigned long). The 2 * sizeof(unsigned long) is required because the stack pointer points at the frame pointer. The layout on the stack is: ... IP FP ... IP FP. So we need to make sure that both IP and FP are in the bounds. Fix the bound checks and get rid of the mix of numeric constants, u64 and unsigned long. Making all unsigned long allows us to use the same function for 32bit as well. Use READ_ONCE() when accessing the stack. This does not prevent a concurrent wakeup of the task and the stack changing, but at least it avoids TOCTOU. Also check task state at the end of the loop. Again that does not prevent concurrent changes, but it avoids walking for nothing. Add proper comments while at it. Reported-by: Dmitry Vyukov <dvyukov@google.com> Reported-by: Sasha Levin <sasha.levin@oracle.com> Based-on-patch-from: Wolfram Gloger <wmglo@dent.med.uni-muenchen.de> Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Reviewed-by: Borislav Petkov <bp@alien8.de> Reviewed-by: Dmitry Vyukov <dvyukov@google.com> Cc: Andrey Ryabinin <ryabinin.a.a@gmail.com> Cc: Andy Lutomirski <luto@amacapital.net> Cc: Andrey Konovalov <andreyknvl@google.com> Cc: Kostya Serebryany <kcc@google.com> Cc: Alexander Potapenko <glider@google.com> Cc: kasan-dev <kasan-dev@googlegroups.com> Cc: Denys Vlasenko <dvlasenk@redhat.com> Cc: Andi Kleen <ak@linux.intel.com> Cc: Wolfram Gloger <wmglo@dent.med.uni-muenchen.de> Link: http://lkml.kernel.org/r/20150930083302.694788319@linutronix.de Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
…fy a fault commit 2f84a89 upstream. SunDong reported the following on https://bugzilla.kernel.org/show_bug.cgi?id=103841 I think I find a linux bug, I have the test cases is constructed. I can stable recurring problems in fedora22(4.0.4) kernel version, arch for x86_64. I construct transparent huge page, when the parent and child process with MAP_SHARE, MAP_PRIVATE way to access the same huge page area, it has the opportunity to lead to huge page copy on write failure, and then it will munmap the child corresponding mmap area, but then the child mmap area with VM_MAYSHARE attributes, child process munmap this area can trigger VM_BUG_ON in set_vma_resv_flags functions (vma - > vm_flags & VM_MAYSHARE). There were a number of problems with the report (e.g. it's hugetlbfs that triggers this, not transparent huge pages) but it was fundamentally correct in that a VM_BUG_ON in set_vma_resv_flags() can be triggered that looks like this vma ffff8804651fd0d0 start 00007fc474e00000 end 00007fc475e00000 next ffff8804651fd018 prev ffff8804651fd188 mm ffff88046b1b1800 prot 8000000000000027 anon_vma (null) vm_ops ffffffff8182a7a0 pgoff 0 file ffff88106bdb9800 private_data (null) flags: 0x84400fb(read|write|shared|mayread|maywrite|mayexec|mayshare|dontexpand|hugetlb) ------------ kernel BUG at mm/hugetlb.c:462! SMP Modules linked in: xt_pkttype xt_LOG xt_limit [..] CPU: 38 PID: 26839 Comm: map Not tainted 4.0.4-default #1 Hardware name: Dell Inc. PowerEdge R810/0TT6JF, BIOS 2.7.4 04/26/2012 set_vma_resv_flags+0x2d/0x30 The VM_BUG_ON is correct because private and shared mappings have different reservation accounting but the warning clearly shows that the VMA is shared. When a private COW fails to allocate a new page then only the process that created the VMA gets the page -- all the children unmap the page. If the children access that data in the future then they get killed. The problem is that the same file is mapped shared and private. During the COW, the allocation fails, the VMAs are traversed to unmap the other private pages but a shared VMA is found and the bug is triggered. This patch identifies such VMAs and skips them. Signed-off-by: Mel Gorman <mgorman@techsingularity.net> Reported-by: SunDong <sund_sky@126.com> Reviewed-by: Michal Hocko <mhocko@suse.com> Cc: Andrea Arcangeli <aarcange@redhat.com> Cc: Hugh Dickins <hughd@google.com> Cc: Naoya Horiguchi <n-horiguchi@ah.jp.nec.com> Cc: David Rientjes <rientjes@google.com> Reviewed-by: Naoya Horiguchi <n-horiguchi@ah.jp.nec.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 8405a8f upstream. Add code to nf_unregister_hook to flush the nf_queue when a hook is unregistered. This guarantees that the pointer that the nf_queue code retains into the nf_hook list will remain valid while a packet is queued. I tested what would happen if we do not flush queued packets and was trivially able to obtain the oops below. All that was required was to stop the nf_queue listening process, to delete all of the nf_tables, and to awaken the nf_queue listening process. > BUG: unable to handle kernel paging request at 0000000100000001 > IP: [<0000000100000001>] 0x100000001 > PGD b9c35067 PUD 0 > Oops: 0010 [#1] SMP > Modules linked in: > CPU: 0 PID: 519 Comm: lt-nfqnl_test Not tainted > task: ffff8800b9c8c050 ti: ffff8800ba9d8000 task.ti: ffff8800ba9d8000 > RIP: 0010:[<0000000100000001>] [<0000000100000001>] 0x100000001 > RSP: 0018:ffff8800ba9dba40 EFLAGS: 00010a16 > RAX: ffff8800bab48a00 RBX: ffff8800ba9dba90 RCX: ffff8800ba9dba90 > RDX: ffff8800b9c10128 RSI: ffff8800ba940900 RDI: ffff8800bab48a00 > RBP: ffff8800b9c10128 R08: ffffffff82976660 R09: ffff8800ba9dbb28 > R10: dead000000100100 R11: dead000000200200 R12: ffff8800ba940900 > R13: ffffffff8313fd50 R14: ffff8800b9c95200 R15: 0000000000000000 > FS: 00007fb91fc34700(0000) GS:ffff8800bfa00000(0000) knlGS:0000000000000000 > CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 > CR2: 0000000100000001 CR3: 00000000babfb000 CR4: 00000000000007f0 > Stack: > ffffffff8206ab0f ffffffff82982240 ffff8800bab48a00 ffff8800b9c100a8 > ffff8800b9c10100 0000000000000001 ffff8800ba940900 ffff8800b9c10128 > ffffffff8206bd65 ffff8800bfb0d5e0 ffff8800bab48a00 0000000000014dc0 > Call Trace: > [<ffffffff8206ab0f>] ? nf_iterate+0x4f/0xa0 > [<ffffffff8206bd65>] ? nf_reinject+0x125/0x190 > [<ffffffff8206dee5>] ? nfqnl_recv_verdict+0x255/0x360 > [<ffffffff81386290>] ? nla_parse+0x80/0xf0 > [<ffffffff8206c42c>] ? nfnetlink_rcv_msg+0x13c/0x240 > [<ffffffff811b2fec>] ? __memcg_kmem_get_cache+0x4c/0x150 > [<ffffffff8206c2f0>] ? nfnl_lock+0x20/0x20 > [<ffffffff82068159>] ? netlink_rcv_skb+0xa9/0xc0 > [<ffffffff820677bf>] ? netlink_unicast+0x12f/0x1c0 > [<ffffffff82067ade>] ? netlink_sendmsg+0x28e/0x650 > [<ffffffff81fdd814>] ? sock_sendmsg+0x44/0x50 > [<ffffffff81fde07b>] ? ___sys_sendmsg+0x2ab/0x2c0 > [<ffffffff810e8f73>] ? __wake_up+0x43/0x70 > [<ffffffff8141a134>] ? tty_write+0x1c4/0x2a0 > [<ffffffff81fde9f4>] ? __sys_sendmsg+0x44/0x80 > [<ffffffff823ff8d7>] ? system_call_fastpath+0x12/0x6a > Code: Bad RIP value. > RIP [<0000000100000001>] 0x100000001 > RSP <ffff8800ba9dba40> > CR2: 0000000100000001 > ---[ end trace 08eb65d42362793f ]--- Signed-off-by: "Eric W. Biederman" <ebiederm@xmission.com> Signed-off-by: David S. Miller <davem@davemloft.net> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 274d835 upstream. Since 9eb1e57 drm/dp/mst: make sure mst_primary mstb is valid in work function we validate the mstb structs in the work function, and doing that takes a reference. So we should never get here with the work function running using the mstb device, only if the work function hasn't run yet or is running for another mstb. So we don't need to sync the work here, this was causing lockdep spew as below. [ +0.000160] ============================================= [ +0.000001] [ INFO: possible recursive locking detected ] [ +0.000002] 3.10.0-320.el7.rhel72.stable.backport.3.x86_64.debug #1 Tainted: G W ------------ [ +0.000001] --------------------------------------------- [ +0.000001] kworker/4:2/1262 is trying to acquire lock: [ +0.000001] ((&mgr->work)){+.+.+.}, at: [<ffffffff810b29a5>] flush_work+0x5/0x2e0 [ +0.000007] but task is already holding lock: [ +0.000001] ((&mgr->work)){+.+.+.}, at: [<ffffffff810b57e4>] process_one_work+0x1b4/0x710 [ +0.000004] other info that might help us debug this: [ +0.000001] Possible unsafe locking scenario: [ +0.000002] CPU0 [ +0.000000] ---- [ +0.000001] lock((&mgr->work)); [ +0.000002] lock((&mgr->work)); [ +0.000001] *** DEADLOCK *** [ +0.000001] May be due to missing lock nesting notation [ +0.000002] 2 locks held by kworker/4:2/1262: [ +0.000001] #0: (events_long){.+.+.+}, at: [<ffffffff810b57e4>] process_one_work+0x1b4/0x710 [ +0.000004] #1: ((&mgr->work)){+.+.+.}, at: [<ffffffff810b57e4>] process_one_work+0x1b4/0x710 [ +0.000003] stack backtrace: [ +0.000003] CPU: 4 PID: 1262 Comm: kworker/4:2 Tainted: G W ------------ 3.10.0-320.el7.rhel72.stable.backport.3.x86_64.debug #1 [ +0.000001] Hardware name: LENOVO 20EGS0R600/20EGS0R600, BIOS GNET71WW (2.19 ) 02/05/2015 [ +0.000008] Workqueue: events_long drm_dp_mst_link_probe_work [drm_kms_helper] [ +0.000001] ffffffff82c26c90 00000000a527b914 ffff88046399bae8 ffffffff816fe04d [ +0.000004] ffff88046399bb58 ffffffff8110f47f ffff880461438000 0001009b840fc003 [ +0.000002] ffff880461438a98 0000000000000000 0000000804dc26e1 ffffffff824a2c00 [ +0.000003] Call Trace: [ +0.000004] [<ffffffff816fe04d>] dump_stack+0x19/0x1b [ +0.000004] [<ffffffff8110f47f>] __lock_acquire+0x115f/0x1250 [ +0.000002] [<ffffffff8110fd49>] lock_acquire+0x99/0x1e0 [ +0.000002] [<ffffffff810b29a5>] ? flush_work+0x5/0x2e0 [ +0.000002] [<ffffffff810b29ee>] flush_work+0x4e/0x2e0 [ +0.000002] [<ffffffff810b29a5>] ? flush_work+0x5/0x2e0 [ +0.000004] [<ffffffff81025905>] ? native_sched_clock+0x35/0x80 [ +0.000002] [<ffffffff81025959>] ? sched_clock+0x9/0x10 [ +0.000002] [<ffffffff810da1f5>] ? local_clock+0x25/0x30 [ +0.000002] [<ffffffff8110dca9>] ? mark_held_locks+0xb9/0x140 [ +0.000003] [<ffffffff810b4ed5>] ? __cancel_work_timer+0x95/0x160 [ +0.000002] [<ffffffff810b4ee8>] __cancel_work_timer+0xa8/0x160 [ +0.000002] [<ffffffff810b4fb0>] cancel_work_sync+0x10/0x20 [ +0.000007] [<ffffffffa0160d17>] drm_dp_destroy_mst_branch_device+0x27/0x120 [drm_kms_helper] [ +0.000006] [<ffffffffa0163968>] drm_dp_mst_link_probe_work+0x78/0xa0 [drm_kms_helper] [ +0.000002] [<ffffffff810b5850>] process_one_work+0x220/0x710 [ +0.000002] [<ffffffff810b57e4>] ? process_one_work+0x1b4/0x710 [ +0.000005] [<ffffffff810b5e5b>] worker_thread+0x11b/0x3a0 [ +0.000003] [<ffffffff810b5d40>] ? process_one_work+0x710/0x710 [ +0.000002] [<ffffffff810beced>] kthread+0xed/0x100 [ +0.000003] [<ffffffff810bec00>] ? insert_kthread_work+0x80/0x80 [ +0.000003] [<ffffffff817121d8>] ret_from_fork+0x58/0x90 v2: add flush_work. Reviewed-by: Daniel Vetter <daniel.vetter@ffwll.ch> Signed-off-by: Dave Airlie <airlied@redhat.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit cf6f54e upstream. Fixes the following lockdep splat: [ 1.244527] ============================================= [ 1.245193] [ INFO: possible recursive locking detected ] [ 1.245193] 4.2.0-rc1+ raspberrypi#37 Not tainted [ 1.245193] --------------------------------------------- [ 1.245193] cp/742 is trying to acquire lock: [ 1.245193] (&sb->s_type->i_mutex_key#9){+.+.+.}, at: [<ffffffff812b3f69>] ubifs_init_security+0x29/0xb0 [ 1.245193] [ 1.245193] but task is already holding lock: [ 1.245193] (&sb->s_type->i_mutex_key#9){+.+.+.}, at: [<ffffffff81198e7f>] path_openat+0x3af/0x1280 [ 1.245193] [ 1.245193] other info that might help us debug this: [ 1.245193] Possible unsafe locking scenario: [ 1.245193] [ 1.245193] CPU0 [ 1.245193] ---- [ 1.245193] lock(&sb->s_type->i_mutex_key#9); [ 1.245193] lock(&sb->s_type->i_mutex_key#9); [ 1.245193] [ 1.245193] *** DEADLOCK *** [ 1.245193] [ 1.245193] May be due to missing lock nesting notation [ 1.245193] [ 1.245193] 2 locks held by cp/742: [ 1.245193] #0: (sb_writers#5){.+.+.+}, at: [<ffffffff811ad37f>] mnt_want_write+0x1f/0x50 [ 1.245193] #1: (&sb->s_type->i_mutex_key#9){+.+.+.}, at: [<ffffffff81198e7f>] path_openat+0x3af/0x1280 [ 1.245193] [ 1.245193] stack backtrace: [ 1.245193] CPU: 2 PID: 742 Comm: cp Not tainted 4.2.0-rc1+ raspberrypi#37 [ 1.245193] Hardware name: QEMU Standard PC (i440FX + PIIX, 1996), BIOS rel-1.7.5-0-ge51488c-20140816_022509-build35 04/01/2014 [ 1.245193] ffffffff8252d530 ffff88007b023a38 ffffffff814f6f49 ffffffff810b56c5 [ 1.245193] ffff88007c30cc80 ffff88007b023af8 ffffffff810a150d ffff88007b023a68 [ 1.245193] 000000008101302a ffff880000000000 00000008f447e23f ffffffff8252d500 [ 1.245193] Call Trace: [ 1.245193] [<ffffffff814f6f49>] dump_stack+0x4c/0x65 [ 1.245193] [<ffffffff810b56c5>] ? console_unlock+0x1c5/0x510 [ 1.245193] [<ffffffff810a150d>] __lock_acquire+0x1a6d/0x1ea0 [ 1.245193] [<ffffffff8109fa78>] ? __lock_is_held+0x58/0x80 [ 1.245193] [<ffffffff810a1a93>] lock_acquire+0xd3/0x270 [ 1.245193] [<ffffffff812b3f69>] ? ubifs_init_security+0x29/0xb0 [ 1.245193] [<ffffffff814fc83b>] mutex_lock_nested+0x6b/0x3a0 [ 1.245193] [<ffffffff812b3f69>] ? ubifs_init_security+0x29/0xb0 [ 1.245193] [<ffffffff812b3f69>] ? ubifs_init_security+0x29/0xb0 [ 1.245193] [<ffffffff812b3f69>] ubifs_init_security+0x29/0xb0 [ 1.245193] [<ffffffff8128e286>] ubifs_create+0xa6/0x1f0 [ 1.245193] [<ffffffff81198e7f>] ? path_openat+0x3af/0x1280 [ 1.245193] [<ffffffff81195d15>] vfs_create+0x95/0xc0 [ 1.245193] [<ffffffff8119929c>] path_openat+0x7cc/0x1280 [ 1.245193] [<ffffffff8109ffe3>] ? __lock_acquire+0x543/0x1ea0 [ 1.245193] [<ffffffff81088f20>] ? sched_clock_cpu+0x90/0xc0 [ 1.245193] [<ffffffff81088c00>] ? calc_global_load_tick+0x60/0x90 [ 1.245193] [<ffffffff81088f20>] ? sched_clock_cpu+0x90/0xc0 [ 1.245193] [<ffffffff811a9cef>] ? __alloc_fd+0xaf/0x180 [ 1.245193] [<ffffffff8119ac55>] do_filp_open+0x75/0xd0 [ 1.245193] [<ffffffff814ffd86>] ? _raw_spin_unlock+0x26/0x40 [ 1.245193] [<ffffffff811a9cef>] ? __alloc_fd+0xaf/0x180 [ 1.245193] [<ffffffff81189bd9>] do_sys_open+0x129/0x200 [ 1.245193] [<ffffffff81189cc9>] SyS_open+0x19/0x20 [ 1.245193] [<ffffffff81500717>] entry_SYSCALL_64_fastpath+0x12/0x6f While the lockdep splat is a false positive, becuase path_openat holds i_mutex of the parent directory and ubifs_init_security() tries to acquire i_mutex of a new inode, it reveals that taking i_mutex in ubifs_init_security() is in vain because it is only being called in the inode allocation path and therefore nobody else can see the inode yet. Reported-and-tested-by: Boris Brezillon <boris.brezillon@free-electrons.com> Reviewed-and-tested-by: Dongsheng Yang <yangds.fnst@cn.fujitsu.com> Signed-off-by: Richard Weinberger <richard@nod.at> Signed-off-by: dedekind1@gmail.com Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit ee556d0 upstream. When function graph tracer is enabled, the following operation will trigger panic: mount -t debugfs nodev /sys/kernel echo next_tgid > /sys/kernel/tracing/set_ftrace_filter echo function_graph > /sys/kernel/tracing/current_tracer ls /proc/ ------------[ cut here ]------------ [ 198.501417] Unable to handle kernel paging request at virtual address cb88537fdc8ba316 [ 198.506126] pgd = ffffffc008f79000 [ 198.509363] [cb88537fdc8ba316] *pgd=00000000488c6003, *pud=00000000488c6003, *pmd=0000000000000000 [ 198.517726] Internal error: Oops: 94000005 [#1] SMP [ 198.518798] Modules linked in: [ 198.520582] CPU: 1 PID: 1388 Comm: ls Tainted: G [ 198.521800] Hardware name: linux,dummy-virt (DT) [ 198.522852] task: ffffffc0fa9e8000 ti: ffffffc0f9ab0000 task.ti: ffffffc0f9ab0000 [ 198.524306] PC is at next_tgid+0x30/0x100 [ 198.525205] LR is at return_to_handler+0x0/0x20 [ 198.526090] pc : [<ffffffc0002a1070>] lr : [<ffffffc0000907c0>] pstate: 60000145 [ 198.527392] sp : ffffffc0f9ab3d40 [ 198.528084] x29: ffffffc0f9ab3d40 x28: ffffffc0f9ab0000 [ 198.529406] x27: ffffffc000d6a000 x26: ffffffc000b786e8 [ 198.530659] x25: ffffffc0002a1900 x24: ffffffc0faf16c00 [ 198.531942] x23: ffffffc0f9ab3ea0 x22: 0000000000000002 [ 198.533202] x21: ffffffc000d85050 x20: 0000000000000002 [ 198.534446] x19: 0000000000000002 x18: 0000000000000000 [ 198.535719] x17: 000000000049fa08 x16: ffffffc000242efc [ 198.537030] x15: 0000007fa472b54c x14: ffffffffff000000 [ 198.538347] x13: ffffffc0fada84a0 x12: 0000000000000001 [ 198.539634] x11: ffffffc0f9ab3d70 x10: ffffffc0f9ab3d70 [ 198.540915] x9 : ffffffc0000907c0 x8 : ffffffc0f9ab3d40 [ 198.542215] x7 : 0000002e330f08f0 x6 : 0000000000000015 [ 198.543508] x5 : 0000000000000f08 x4 : ffffffc0f9835ec0 [ 198.544792] x3 : cb88537fdc8ba316 x2 : cb88537fdc8ba306 [ 198.546108] x1 : 0000000000000002 x0 : ffffffc000d85050 [ 198.547432] [ 198.547920] Process ls (pid: 1388, stack limit = 0xffffffc0f9ab0020) [ 198.549170] Stack: (0xffffffc0f9ab3d40 to 0xffffffc0f9ab4000) [ 198.582568] Call trace: [ 198.583313] [<ffffffc0002a1070>] next_tgid+0x30/0x100 [ 198.584359] [<ffffffc0000907bc>] ftrace_graph_caller+0x6c/0x70 [ 198.585503] [<ffffffc0000907bc>] ftrace_graph_caller+0x6c/0x70 [ 198.586574] [<ffffffc0000907bc>] ftrace_graph_caller+0x6c/0x70 [ 198.587660] [<ffffffc0000907bc>] ftrace_graph_caller+0x6c/0x70 [ 198.588896] Code: aa0003f5 2a0103f4 b4000102 91004043 (885f7c60) [ 198.591092] ---[ end trace 6a346f8f20949ac8 ]--- This is because when using function graph tracer, if the traced function return value is in multi regs ([x0-x7]), return_to_handler may corrupt them. So in return_to_handler, the parameter regs should be protected properly. Signed-off-by: Li Bin <huawei.libin@huawei.com> Acked-by: AKASHI Takahiro <takahiro.akashi@linaro.org> Signed-off-by: Catalin Marinas <catalin.marinas@arm.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 3ec0c97 upstream. If filelayout_decode_layout fail, _filelayout_free_lseg will causes a double freeing of fh_array. [ 1179.279800] BUG: unable to handle kernel NULL pointer dereference at (null) [ 1179.280198] IP: [<ffffffffa027222d>] filelayout_free_fh_array.isra.11+0x1d/0x70 [nfs_layout_nfsv41_files] [ 1179.281010] PGD 0 [ 1179.281443] Oops: 0000 [#1] [ 1179.281831] Modules linked in: nfs_layout_nfsv41_files(OE) nfsv4(OE) nfs(OE) fscache(E) xfs libcrc32c coretemp nfsd crct10dif_pclmul ppdev crc32_pclmul crc32c_intel auth_rpcgss ghash_clmulni_intel nfs_acl lockd vmw_balloon grace sunrpc parport_pc vmw_vmci parport shpchp i2c_piix4 vmwgfx drm_kms_helper ttm drm serio_raw mptspi scsi_transport_spi mptscsih e1000 mptbase ata_generic pata_acpi [last unloaded: fscache] [ 1179.283891] CPU: 0 PID: 13336 Comm: cat Tainted: G OE 4.3.0-rc1-pnfs+ raspberrypi#244 [ 1179.284323] Hardware name: VMware, Inc. VMware Virtual Platform/440BX Desktop Reference Platform, BIOS 6.00 05/20/2014 [ 1179.285206] task: ffff8800501d48c0 ti: ffff88003e3c4000 task.ti: ffff88003e3c4000 [ 1179.285668] RIP: 0010:[<ffffffffa027222d>] [<ffffffffa027222d>] filelayout_free_fh_array.isra.11+0x1d/0x70 [nfs_layout_nfsv41_files] [ 1179.286612] RSP: 0018:ffff88003e3c77f8 EFLAGS: 00010202 [ 1179.287092] RAX: 0000000000000000 RBX: ffff88001fe78900 RCX: 0000000000000000 [ 1179.287731] RDX: ffffea0000f40760 RSI: ffff88001fe789c8 RDI: ffff88001fe789c0 [ 1179.288383] RBP: ffff88003e3c7810 R08: ffffea0000f40760 R09: 0000000000000000 [ 1179.289170] R10: 0000000000000000 R11: 0000000000000001 R12: ffff88001fe789c8 [ 1179.289959] R13: ffff88001fe789c0 R14: ffff88004ec05a80 R15: ffff88004f935b88 [ 1179.290791] FS: 00007f4e66bb5700(0000) GS:ffffffff81c29000(0000) knlGS:0000000000000000 [ 1179.291580] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [ 1179.292209] CR2: 0000000000000000 CR3: 00000000203f8000 CR4: 00000000001406f0 [ 1179.292731] Stack: [ 1179.293195] ffff88001fe78900 00000000000000d0 ffff88001fe78178 ffff88003e3c7868 [ 1179.293676] ffffffffa0272737 0000000000000001 0000000000000001 ffff88001fe78800 [ 1179.294151] 00000000614fffce ffffffff81727671 ffff88001fe78100 ffff88001fe78100 [ 1179.294623] Call Trace: [ 1179.295092] [<ffffffffa0272737>] filelayout_alloc_lseg+0xa7/0x2d0 [nfs_layout_nfsv41_files] [ 1179.295625] [<ffffffff81727671>] ? out_of_line_wait_on_bit+0x81/0xb0 [ 1179.296133] [<ffffffffa040407e>] pnfs_layout_process+0xae/0x320 [nfsv4] [ 1179.296632] [<ffffffffa03e0a01>] nfs4_proc_layoutget+0x2b1/0x360 [nfsv4] [ 1179.297134] [<ffffffffa0402983>] pnfs_update_layout+0x853/0xb30 [nfsv4] [ 1179.297632] [<ffffffffa039db24>] ? nfs_get_lock_context+0x74/0x170 [nfs] [ 1179.298158] [<ffffffffa0271807>] filelayout_pg_init_read+0x37/0x50 [nfs_layout_nfsv41_files] [ 1179.298834] [<ffffffffa03a72d9>] __nfs_pageio_add_request+0x119/0x460 [nfs] [ 1179.299385] [<ffffffffa03a6bd7>] ? nfs_create_request.part.9+0x37/0x2e0 [nfs] [ 1179.299872] [<ffffffffa03a7cc3>] nfs_pageio_add_request+0xa3/0x1b0 [nfs] [ 1179.300362] [<ffffffffa03a8635>] readpage_async_filler+0x85/0x260 [nfs] [ 1179.300907] [<ffffffff81180cb1>] read_cache_pages+0x91/0xd0 [ 1179.301391] [<ffffffffa03a85b0>] ? nfs_read_completion+0x220/0x220 [nfs] [ 1179.301867] [<ffffffffa03a8dc8>] nfs_readpages+0x128/0x200 [nfs] [ 1179.302330] [<ffffffff81180ef3>] __do_page_cache_readahead+0x203/0x280 [ 1179.302784] [<ffffffff81180dc8>] ? __do_page_cache_readahead+0xd8/0x280 [ 1179.303413] [<ffffffff81181116>] ondemand_readahead+0x1a6/0x2f0 [ 1179.303855] [<ffffffff81181371>] page_cache_sync_readahead+0x31/0x50 [ 1179.304286] [<ffffffff811750a6>] generic_file_read_iter+0x4a6/0x5c0 [ 1179.304711] [<ffffffffa03a0316>] ? __nfs_revalidate_mapping+0x1f6/0x240 [nfs] [ 1179.305132] [<ffffffffa039ccf2>] nfs_file_read+0x52/0xa0 [nfs] [ 1179.305540] [<ffffffff811e343c>] __vfs_read+0xcc/0x100 [ 1179.305936] [<ffffffff811e3d15>] vfs_read+0x85/0x130 [ 1179.306326] [<ffffffff811e4a98>] SyS_read+0x58/0xd0 [ 1179.306708] [<ffffffff8172caaf>] entry_SYSCALL_64_fastpath+0x12/0x76 [ 1179.307094] Code: c4 66 66 66 66 2e 0f 1f 84 00 00 00 00 00 0f 1f 44 00 00 55 48 89 e5 41 55 41 54 53 8b 07 49 89 f4 85 c0 74 47 48 8b 06 49 89 fd <48> 8b 38 48 85 ff 74 22 31 db eb 0c 48 63 d3 48 8b 3c d0 48 85 [ 1179.308357] RIP [<ffffffffa027222d>] filelayout_free_fh_array.isra.11+0x1d/0x70 [nfs_layout_nfsv41_files] [ 1179.309177] RSP <ffff88003e3c77f8> [ 1179.309582] CR2: 0000000000000000 Signed-off-by: Kinglong Mee <kinglongmee@gmail.com> Signed-off-by: Trond Myklebust <trond.myklebust@primarydata.com> Cc: William Dauchy <william@gandi.net> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit e81107d upstream. My colleague ran into a program stall on a x86_64 server, where n_tty_read() was waiting for data even if there was data in the buffer in the pty. kernel stack for the stuck process looks like below. #0 [ffff88303d107b58] __schedule at ffffffff815c4b20 #1 [ffff88303d107bd0] schedule at ffffffff815c513e #2 [ffff88303d107bf0] schedule_timeout at ffffffff815c7818 #3 [ffff88303d107ca0] wait_woken at ffffffff81096bd2 #4 [ffff88303d107ce0] n_tty_read at ffffffff8136fa23 #5 [ffff88303d107dd0] tty_read at ffffffff81368013 #6 [ffff88303d107e20] __vfs_read at ffffffff811a3704 #7 [ffff88303d107ec0] vfs_read at ffffffff811a3a57 #8 [ffff88303d107f00] sys_read at ffffffff811a4306 #9 [ffff88303d107f50] entry_SYSCALL_64_fastpath at ffffffff815c86d7 There seems to be two problems causing this issue. First, in drivers/tty/n_tty.c, __receive_buf() stores the data and updates ldata->commit_head using smp_store_release() and then checks the wait queue using waitqueue_active(). However, since there is no memory barrier, __receive_buf() could return without calling wake_up_interactive_poll(), and at the same time, n_tty_read() could start to wait in wait_woken() as in the following chart. __receive_buf() n_tty_read() ------------------------------------------------------------------------ if (waitqueue_active(&tty->read_wait)) /* Memory operations issued after the RELEASE may be completed before the RELEASE operation has completed */ add_wait_queue(&tty->read_wait, &wait); ... if (!input_available_p(tty, 0)) { smp_store_release(&ldata->commit_head, ldata->read_head); ... timeout = wait_woken(&wait, TASK_INTERRUPTIBLE, timeout); ------------------------------------------------------------------------ The second problem is that n_tty_read() also lacks a memory barrier call and could also cause __receive_buf() to return without calling wake_up_interactive_poll(), and n_tty_read() to wait in wait_woken() as in the chart below. __receive_buf() n_tty_read() ------------------------------------------------------------------------ spin_lock_irqsave(&q->lock, flags); /* from add_wait_queue() */ ... if (!input_available_p(tty, 0)) { /* Memory operations issued after the RELEASE may be completed before the RELEASE operation has completed */ smp_store_release(&ldata->commit_head, ldata->read_head); if (waitqueue_active(&tty->read_wait)) __add_wait_queue(q, wait); spin_unlock_irqrestore(&q->lock,flags); /* from add_wait_queue() */ ... timeout = wait_woken(&wait, TASK_INTERRUPTIBLE, timeout); ------------------------------------------------------------------------ There are also other places in drivers/tty/n_tty.c which have similar calls to waitqueue_active(), so instead of adding many memory barrier calls, this patch simply removes the call to waitqueue_active(), leaving just wake_up*() behind. This fixes both problems because, even though the memory access before or after the spinlocks in both wake_up*() and add_wait_queue() can sneak into the critical section, it cannot go past it and the critical section assures that they will be serialized (please see "INTER-CPU ACQUIRING BARRIER EFFECTS" in Documentation/memory-barriers.txt for a better explanation). Moreover, the resulting code is much simpler. Latency measurement using a ping-pong test over a pty doesn't show any visible performance drop. Signed-off-by: Kosuke Tatsukawa <tatsu@ab.jp.nec.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 7180ddd upstream. The kernel may delay interrupts for a long time which can result in timers being delayed. If this occurs the intel_pstate driver will crash with a divide by zero error: divide error: 0000 [#1] SMP Modules linked in: btrfs zlib_deflate raid6_pq xor msdos ext4 mbcache jbd2 binfmt_misc arc4 md4 nls_utf8 cifs dns_resolver tcp_lp bnep bluetooth rfkill fuse dm_service_time iscsi_tcp libiscsi_tcp libiscsi scsi_transport_iscsi nf_conntrack_netbios_ns nf_conntrack_broadcast nf_conntrack_ftp ip6t_rpfilter ip6t_REJECT ipt_REJECT xt_conntrack ebtable_nat ebtable_broute bridge stp llc ebtable_filter ebtables ip6table_nat nf_conntrack_ipv6 nf_defrag_ipv6 nf_nat_ipv6 ip6table_mangle ip6table_security ip6table_raw ip6table_filter ip6_tables iptable_nat nf_conntrack_ipv4 nf_defrag_ipv4 nf_nat_ipv4 nf_nat nf_conntrack iptable_mangle iptable_security iptable_raw iptable_filter ip_tables intel_powerclamp coretemp vfat fat kvm_intel iTCO_wdt iTCO_vendor_support ipmi_devintf sr_mod kvm crct10dif_pclmul crc32_pclmul crc32c_intel ghash_clmulni_intel aesni_intel cdc_ether lrw usbnet cdrom mii gf128mul glue_helper ablk_helper cryptd lpc_ich mfd_core pcspkr sb_edac edac_core ipmi_si ipmi_msghandler ioatdma wmi shpchp acpi_pad nfsd auth_rpcgss nfs_acl lockd uinput dm_multipath sunrpc xfs libcrc32c usb_storage sd_mod crc_t10dif crct10dif_common ixgbe mgag200 syscopyarea sysfillrect sysimgblt mdio drm_kms_helper ttm igb drm ptp pps_core dca i2c_algo_bit megaraid_sas i2c_core dm_mirror dm_region_hash dm_log dm_mod CPU: 113 PID: 0 Comm: swapper/113 Tainted: G W -------------- 3.10.0-229.1.2.el7.x86_64 #1 Hardware name: IBM x3950 X6 -[3837AC2]-/00FN827, BIOS -[A8E112BUS-1.00]- 08/27/2014 task: ffff880fe8abe660 ti: ffff880fe8ae4000 task.ti: ffff880fe8ae4000 RIP: 0010:[<ffffffff814a9279>] [<ffffffff814a9279>] intel_pstate_timer_func+0x179/0x3d0 RSP: 0018:ffff883fff4e3db8 EFLAGS: 00010206 RAX: 0000000027100000 RBX: ffff883fe6965100 RCX: 0000000000000000 RDX: 0000000000000000 RSI: 0000000000000010 RDI: 000000002e53632d RBP: ffff883fff4e3e20 R08: 000e6f69a5a125c0 R09: ffff883fe84ec001 R10: 0000000000000002 R11: 0000000000000005 R12: 00000000000049f5 R13: 0000000000271000 R14: 00000000000049f5 R15: 0000000000000246 FS: 0000000000000000(0000) GS:ffff883fff4e0000(0000) knlGS:0000000000000000 CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 CR2: 00007f7668601000 CR3: 000000000190a000 CR4: 00000000001407e0 DR0: 0000000000000000 DR1: 0000000000000000 DR2: 0000000000000000 DR3: 0000000000000000 DR6: 00000000ffff0ff0 DR7: 0000000000000400 Stack: ffff883fff4e3e58 ffffffff81099dc1 0000000000000086 0000000000000071 ffff883fff4f3680 0000000000000071 fbdc8a965e33afee ffffffff810b69dd ffff883fe84ec000 ffff883fe6965108 0000000000000100 ffffffff814a9100 Call Trace: <IRQ> [<ffffffff81099dc1>] ? run_posix_cpu_timers+0x51/0x840 [<ffffffff810b69dd>] ? trigger_load_balance+0x5d/0x200 [<ffffffff814a9100>] ? pid_param_set+0x130/0x130 [<ffffffff8107df56>] call_timer_fn+0x36/0x110 [<ffffffff814a9100>] ? pid_param_set+0x130/0x130 [<ffffffff8107fdcf>] run_timer_softirq+0x21f/0x320 [<ffffffff81077b2f>] __do_softirq+0xef/0x280 [<ffffffff816156dc>] call_softirq+0x1c/0x30 [<ffffffff81015d95>] do_softirq+0x65/0xa0 [<ffffffff81077ec5>] irq_exit+0x115/0x120 [<ffffffff81616355>] smp_apic_timer_interrupt+0x45/0x60 [<ffffffff81614a1d>] apic_timer_interrupt+0x6d/0x80 <EOI> [<ffffffff814a9c32>] ? cpuidle_enter_state+0x52/0xc0 [<ffffffff814a9c28>] ? cpuidle_enter_state+0x48/0xc0 [<ffffffff814a9d65>] cpuidle_idle_call+0xc5/0x200 [<ffffffff8101d14e>] arch_cpu_idle+0xe/0x30 [<ffffffff810c67c1>] cpu_startup_entry+0xf1/0x290 [<ffffffff8104228a>] start_secondary+0x1ba/0x230 Code: 42 0f 00 45 89 e6 48 01 c2 43 8d 44 6d 00 39 d0 73 26 49 c1 e5 08 89 d2 4d 63 f4 49 63 c5 48 c1 e2 08 48 c1 e0 08 48 63 ca 48 99 <48> f7 f9 48 98 4c 0f af f0 49 c1 ee 08 8b 43 78 c1 e0 08 44 29 RIP [<ffffffff814a9279>] intel_pstate_timer_func+0x179/0x3d0 RSP <ffff883fff4e3db8> The kernel values for cpudata for CPU 113 were: struct cpudata { cpu = 113, timer = { entry = { next = 0x0, prev = 0xdead000000200200 }, expires = 8357799745, base = 0xffff883fe84ec001, function = 0xffffffff814a9100 <intel_pstate_timer_func>, data = 18446612406765768960, <snip> i_gain = 0, d_gain = 0, deadband = 0, last_err = 22489 }, last_sample_time = { tv64 = 4063132438017305 }, prev_aperf = 287326796397463, prev_mperf = 251427432090198, sample = { core_pct_busy = 23081, aperf = 2937407, mperf = 3257884, freq = 2524484, time = { tv64 = 4063149215234118 } } } which results in the time between samples = last_sample_time - sample.time = 4063149215234118 - 4063132438017305 = 16777216813 which is 16.777 seconds. The duration between reads of the APERF and MPERF registers overflowed a s32 sized integer in intel_pstate_get_scaled_busy()'s call to div_fp(). The result is that int_tofp(duration_us) == 0, and the kernel attempts to divide by 0. While the kernel shouldn't be delaying for a long time, it can and does happen and the intel_pstate driver should not panic in this situation. This patch changes the div_fp() function to use div64_s64() to allow for "long" division. This will avoid the overflow condition on long delays. [v2]: use div64_s64() in div_fp() Signed-off-by: Prarit Bhargava <prarit@redhat.com> Signed-off-by: Rafael J. Wysocki <rafael.j.wysocki@intel.com> Cc: Thomas Renninger <trenn@suse.de> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
[ Upstream commit e674016 ] Since commit 2b018d5 ("pppoe: drop PPPOX_ZOMBIEs in pppoe_release"), pppoe_release() calls dev_put(po->pppoe_dev) if sk is in the PPPOX_ZOMBIE state. But pppoe_flush_dev() can set sk->sk_state to PPPOX_ZOMBIE _and_ reset po->pppoe_dev to NULL. This leads to the following oops: [ 570.140800] BUG: unable to handle kernel NULL pointer dereference at 00000000000004e0 [ 570.142931] IP: [<ffffffffa018c701>] pppoe_release+0x50/0x101 [pppoe] [ 570.144601] PGD 3d119067 PUD 3dbc1067 PMD 0 [ 570.144601] Oops: 0000 [#1] SMP [ 570.144601] Modules linked in: l2tp_ppp l2tp_netlink l2tp_core ip6_udp_tunnel udp_tunnel pppoe pppox ppp_generic slhc loop crc32c_intel ghash_clmulni_intel jitterentropy_rng sha256_generic hmac drbg ansi_cprng aesni_intel aes_x86_64 ablk_helper cryptd lrw gf128mul glue_helper acpi_cpufreq evdev serio_raw processor button ext4 crc16 mbcache jbd2 virtio_net virtio_blk virtio_pci virtio_ring virtio [ 570.144601] CPU: 1 PID: 15738 Comm: ppp-apitest Not tainted 4.2.0 #1 [ 570.144601] Hardware name: QEMU Standard PC (i440FX + PIIX, 1996), BIOS Debian-1.8.2-1 04/01/2014 [ 570.144601] task: ffff88003d30d600 ti: ffff880036b60000 task.ti: ffff880036b60000 [ 570.144601] RIP: 0010:[<ffffffffa018c701>] [<ffffffffa018c701>] pppoe_release+0x50/0x101 [pppoe] [ 570.144601] RSP: 0018:ffff880036b63e08 EFLAGS: 00010202 [ 570.144601] RAX: 0000000000000000 RBX: ffff880034340000 RCX: 0000000000000206 [ 570.144601] RDX: 0000000000000006 RSI: ffff88003d30dd20 RDI: ffff88003d30dd20 [ 570.144601] RBP: ffff880036b63e28 R08: 0000000000000001 R09: 0000000000000000 [ 570.144601] R10: 00007ffee9b50420 R11: ffff880034340078 R12: ffff8800387ec780 [ 570.144601] R13: ffff8800387ec7b0 R14: ffff88003e222aa0 R15: ffff8800387ec7b0 [ 570.144601] FS: 00007f5672f48700(0000) GS:ffff88003fc80000(0000) knlGS:0000000000000000 [ 570.144601] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [ 570.144601] CR2: 00000000000004e0 CR3: 0000000037f7e000 CR4: 00000000000406a0 [ 570.144601] Stack: [ 570.144601] ffffffffa018f240 ffff8800387ec780 ffffffffa018f240 ffff8800387ec7b0 [ 570.144601] ffff880036b63e48 ffffffff812caabe ffff880039e4e000 0000000000000008 [ 570.144601] ffff880036b63e58 ffffffff812cabad ffff880036b63ea8 ffffffff811347f5 [ 570.144601] Call Trace: [ 570.144601] [<ffffffff812caabe>] sock_release+0x1a/0x75 [ 570.144601] [<ffffffff812cabad>] sock_close+0xd/0x11 [ 570.144601] [<ffffffff811347f5>] __fput+0xff/0x1a5 [ 570.144601] [<ffffffff811348cb>] ____fput+0x9/0xb [ 570.144601] [<ffffffff81056682>] task_work_run+0x66/0x90 [ 570.144601] [<ffffffff8100189e>] prepare_exit_to_usermode+0x8c/0xa7 [ 570.144601] [<ffffffff81001a26>] syscall_return_slowpath+0x16d/0x19b [ 570.144601] [<ffffffff813babb1>] int_ret_from_sys_call+0x25/0x9f [ 570.144601] Code: 48 8b 83 c8 01 00 00 a8 01 74 12 48 89 df e8 8b 27 14 e1 b8 f7 ff ff ff e9 b7 00 00 00 8a 43 12 a8 0b 74 1c 48 8b 83 a8 04 00 00 <48> 8b 80 e0 04 00 00 65 ff 08 48 c7 83 a8 04 00 00 00 00 00 00 [ 570.144601] RIP [<ffffffffa018c701>] pppoe_release+0x50/0x101 [pppoe] [ 570.144601] RSP <ffff880036b63e08> [ 570.144601] CR2: 00000000000004e0 [ 570.200518] ---[ end trace 46956baf17349563 ]--- pppoe_flush_dev() has no reason to override sk->sk_state with PPPOX_ZOMBIE. pppox_unbind_sock() already sets sk->sk_state to PPPOX_DEAD, which is the correct state given that sk is unbound and po->pppoe_dev is NULL. Fixes: 2b018d5 ("pppoe: drop PPPOX_ZOMBIEs in pppoe_release") Tested-by: Oleksii Berezhniak <core@irc.lg.ua> Signed-off-by: Guillaume Nault <g.nault@alphalink.fr> Signed-off-by: David S. Miller <davem@davemloft.net> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
[ Upstream commit 93d08b6 ] When sockets have a native eBPF program attached through setsockopt(sk, SOL_SOCKET, SO_ATTACH_BPF, ...), and then try to dump these over getsockopt(sk, SOL_SOCKET, SO_GET_FILTER, ...), the following panic appears: [49904.178642] BUG: unable to handle kernel NULL pointer dereference at (null) [49904.178762] IP: [<ffffffff81610fd9>] sk_get_filter+0x39/0x90 [49904.182000] PGD 86fc9067 PUD 531a1067 PMD 0 [49904.185196] Oops: 0000 [#1] SMP [...] [49904.224677] Call Trace: [49904.226090] [<ffffffff815e3d49>] sock_getsockopt+0x319/0x740 [49904.227535] [<ffffffff812f59e3>] ? sock_has_perm+0x63/0x70 [49904.228953] [<ffffffff815e2fc8>] ? release_sock+0x108/0x150 [49904.230380] [<ffffffff812f5a43>] ? selinux_socket_getsockopt+0x23/0x30 [49904.231788] [<ffffffff815dff36>] SyS_getsockopt+0xa6/0xc0 [49904.233267] [<ffffffff8171b9ae>] entry_SYSCALL_64_fastpath+0x12/0x71 The underlying issue is the very same as in commit b382c08 ("sock, diag: fix panic in sock_diag_put_filterinfo"), that is, native eBPF programs don't store an original program since this is only needed in cBPF ones. However, sk_get_filter() wasn't updated to test for this at the time when eBPF could be attached. Just throw an error to the user to indicate that eBPF cannot be dumped over this interface. That way, it can also be known that a program _is_ attached (as opposed to just return 0), and a different (future) method needs to be consulted for a dump. Fixes: 89aa075 ("net: sock: allow eBPF programs to be attached to sockets") Signed-off-by: Daniel Borkmann <daniel@iogearbox.net> Acked-by: Alexei Starovoitov <ast@plumgrid.com> Signed-off-by: David S. Miller <davem@davemloft.net> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 874bbfe upstream. My system keeps crashing with below message. vmstat_update() schedules a delayed work in current cpu and expects the work runs in the cpu. schedule_delayed_work() is expected to make delayed work run in local cpu. The problem is timer can be migrated with NO_HZ. __queue_work() queues work in timer handler, which could run in a different cpu other than where the delayed work is scheduled. The end result is the delayed work runs in different cpu. The patch makes __queue_delayed_work records local cpu earlier. Where the timer runs doesn't change where the work runs with the change. [ 28.010131] ------------[ cut here ]------------ [ 28.010609] kernel BUG at ../mm/vmstat.c:1392! [ 28.011099] invalid opcode: 0000 [#1] PREEMPT SMP DEBUG_PAGEALLOC KASAN [ 28.011860] Modules linked in: [ 28.012245] CPU: 0 PID: 289 Comm: kworker/0:3 Tainted: G W4.3.0-rc3+ raspberrypi#634 [ 28.013065] Hardware name: QEMU Standard PC (i440FX + PIIX, 1996), BIOS 1.7.5-20140709_153802- 04/01/2014 [ 28.014160] Workqueue: events vmstat_update [ 28.014571] task: ffff880117682580 ti: ffff8800ba428000 task.ti: ffff8800ba428000 [ 28.015445] RIP: 0010:[<ffffffff8115f921>] [<ffffffff8115f921>]vmstat_update+0x31/0x80 [ 28.016282] RSP: 0018:ffff8800ba42fd80 EFLAGS: 00010297 [ 28.016812] RAX: 0000000000000000 RBX: ffff88011a858dc0 RCX:0000000000000000 [ 28.017585] RDX: ffff880117682580 RSI: ffffffff81f14d8c RDI:ffffffff81f4df8d [ 28.018366] RBP: ffff8800ba42fd90 R08: 0000000000000001 R09:0000000000000000 [ 28.019169] R10: 0000000000000000 R11: 0000000000000121 R12:ffff8800baa9f640 [ 28.019947] R13: ffff88011a81e340 R14: ffff88011a823700 R15:0000000000000000 [ 28.020071] FS: 0000000000000000(0000) GS:ffff88011a800000(0000)knlGS:0000000000000000 [ 28.020071] CS: 0010 DS: 0000 ES: 0000 CR0: 000000008005003b [ 28.020071] CR2: 00007ff6144b01d0 CR3: 00000000b8e93000 CR4:00000000000006f0 [ 28.020071] Stack: [ 28.020071] ffff88011a858dc0 ffff8800baa9f640 ffff8800ba42fe00ffffffff8106bd88 [ 28.020071] ffffffff8106bd0b 0000000000000096 0000000000000000ffffffff82f9b1e8 [ 28.020071] ffffffff829f0b10 0000000000000000 ffffffff81f18460ffff88011a81e340 [ 28.020071] Call Trace: [ 28.020071] [<ffffffff8106bd88>] process_one_work+0x1c8/0x540 [ 28.020071] [<ffffffff8106bd0b>] ? process_one_work+0x14b/0x540 [ 28.020071] [<ffffffff8106c214>] worker_thread+0x114/0x460 [ 28.020071] [<ffffffff8106c100>] ? process_one_work+0x540/0x540 [ 28.020071] [<ffffffff81071bf8>] kthread+0xf8/0x110 [ 28.020071] [<ffffffff81071b00>] ?kthread_create_on_node+0x200/0x200 [ 28.020071] [<ffffffff81a6522f>] ret_from_fork+0x3f/0x70 [ 28.020071] [<ffffffff81071b00>] ?kthread_create_on_node+0x200/0x200 Signed-off-by: Shaohua Li <shli@fb.com> Signed-off-by: Tejun Heo <tj@kernel.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 8832317 upstream. Currently we do not validate rtas.entry before calling enter_rtas(). This leads to a kernel oops when user space calls rtas system call on a powernv platform (see below). This patch adds code to validate rtas.entry before making enter_rtas() call. Oops: Exception in kernel mode, sig: 4 [#1] SMP NR_CPUS=1024 NUMA PowerNV task: c000000004294b80 ti: c0000007e1a78000 task.ti: c0000007e1a78000 NIP: 0000000000000000 LR: 0000000000009c14 CTR: c000000000423140 REGS: c0000007e1a7b920 TRAP: 0e40 Not tainted (3.18.17-340.el7_1.pkvm3_1_0.2400.1.ppc64le) MSR: 1000000000081000 <HV,ME> CR: 00000000 XER: 00000000 CFAR: c000000000009c0c SOFTE: 0 NIP [0000000000000000] (null) LR [0000000000009c14] 0x9c14 Call Trace: [c0000007e1a7bba0] [c00000000041a7f4] avc_has_perm_noaudit+0x54/0x110 (unreliable) [c0000007e1a7bd80] [c00000000002ddc0] ppc_rtas+0x150/0x2d0 [c0000007e1a7be30] [c000000000009358] syscall_exit+0x0/0x98 Fixes: 55190f8 ("powerpc: Add skeleton PowerNV platform") Reported-by: NAGESWARA R. SASTRY <nasastry@in.ibm.com> Signed-off-by: Vasant Hegde <hegdevasant@linux.vnet.ibm.com> [mpe: Reword change log, trim oops, and add stable + fixes] Signed-off-by: Michael Ellerman <mpe@ellerman.id.au> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
[ Upstream commit 74e98eb ] There was no verification that an underlying transport exists when creating a connection, this would cause dereferencing a NULL ptr. It might happen on sockets that weren't properly bound before attempting to send a message, which will cause a NULL ptr deref: [135546.047719] kasan: GPF could be caused by NULL-ptr deref or user memory accessgeneral protection fault: 0000 [#1] PREEMPT SMP DEBUG_PAGEALLOC KASAN [135546.051270] Modules linked in: [135546.051781] CPU: 4 PID: 15650 Comm: trinity-c4 Not tainted 4.2.0-next-20150902-sasha-00041-gbaa1222-dirty raspberrypi#2527 [135546.053217] task: ffff8800835bc000 ti: ffff8800bc708000 task.ti: ffff8800bc708000 [135546.054291] RIP: __rds_conn_create (net/rds/connection.c:194) [135546.055666] RSP: 0018:ffff8800bc70fab0 EFLAGS: 00010202 [135546.056457] RAX: dffffc0000000000 RBX: 0000000000000f2c RCX: ffff8800835bc000 [135546.057494] RDX: 0000000000000007 RSI: ffff8800835bccd8 RDI: 0000000000000038 [135546.058530] RBP: ffff8800bc70fb18 R08: 0000000000000001 R09: 0000000000000000 [135546.059556] R10: ffffed014d7a3a23 R11: ffffed014d7a3a21 R12: 0000000000000000 [135546.060614] R13: 0000000000000001 R14: ffff8801ec3d0000 R15: 0000000000000000 [135546.061668] FS: 00007faad4ffb700(0000) GS:ffff880252000000(0000) knlGS:0000000000000000 [135546.062836] CS: 0010 DS: 0000 ES: 0000 CR0: 000000008005003b [135546.063682] CR2: 000000000000846a CR3: 000000009d137000 CR4: 00000000000006a0 [135546.064723] Stack: [135546.065048] ffffffffafe2055c ffffffffafe23fc1 ffffed00493097bf ffff8801ec3d0008 [135546.066247] 0000000000000000 00000000000000d0 0000000000000000 ac194a24c0586342 [135546.067438] 1ffff100178e1f78 ffff880320581b00 ffff8800bc70fdd0 ffff880320581b00 [135546.068629] Call Trace: [135546.069028] ? __rds_conn_create (include/linux/rcupdate.h:856 net/rds/connection.c:134) [135546.069989] ? rds_message_copy_from_user (net/rds/message.c:298) [135546.071021] rds_conn_create_outgoing (net/rds/connection.c:278) [135546.071981] rds_sendmsg (net/rds/send.c:1058) [135546.072858] ? perf_trace_lock (include/trace/events/lock.h:38) [135546.073744] ? lockdep_init (kernel/locking/lockdep.c:3298) [135546.074577] ? rds_send_drop_to (net/rds/send.c:976) [135546.075508] ? __might_fault (./arch/x86/include/asm/current.h:14 mm/memory.c:3795) [135546.076349] ? __might_fault (mm/memory.c:3795) [135546.077179] ? rds_send_drop_to (net/rds/send.c:976) [135546.078114] sock_sendmsg (net/socket.c:611 net/socket.c:620) [135546.078856] SYSC_sendto (net/socket.c:1657) [135546.079596] ? SYSC_connect (net/socket.c:1628) [135546.080510] ? trace_dump_stack (kernel/trace/trace.c:1926) [135546.081397] ? ring_buffer_unlock_commit (kernel/trace/ring_buffer.c:2479 kernel/trace/ring_buffer.c:2558 kernel/trace/ring_buffer.c:2674) [135546.082390] ? trace_buffer_unlock_commit (kernel/trace/trace.c:1749) [135546.083410] ? trace_event_raw_event_sys_enter (include/trace/events/syscalls.h:16) [135546.084481] ? do_audit_syscall_entry (include/trace/events/syscalls.h:16) [135546.085438] ? trace_buffer_unlock_commit (kernel/trace/trace.c:1749) [135546.085515] rds_ib_laddr_check(): addr 36.74.25.172 ret -99 node type -1 Acked-by: Santosh Shilimkar <santosh.shilimkar@oracle.com> Signed-off-by: Sasha Levin <sasha.levin@oracle.com> Signed-off-by: David S. Miller <davem@davemloft.net> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit facf47e upstream. For imx27, it needs three clocks to let the controller work, the old code is wrong, and usbmisc has not included clock handling code any more. Without this patch, it will cause below data abort when accessing usbmisc registers. usbcore: registered new interface driver usb-storage Unhandled fault: external abort on non-linefetch (0x008) at 0xf4424600 pgd = c0004000 [f4424600] *pgd=10000452(bad) Internal error: : 8 [#1] PREEMPT ARM Modules linked in: CPU: 0 PID: 1 Comm: swapper Not tainted 4.1.0-next-20150701-dirty raspberrypi#3089 Hardware name: Freescale i.MX27 (Device Tree Support) task: c7832b60 ti: c783e000 task.ti: c783e000 PC is at usbmisc_imx27_init+0x4c/0xbc LR is at usbmisc_imx27_init+0x40/0xbc pc : [<c03cb5c0>] lr : [<c03cb5b4>] psr: 60000093 sp : c783fe08 ip : 00000000 fp : 00000000 r10: c0576434 r9 : 0000009c r8 : c7a773a0 r7 : 01000000 r6 : 60000013 r5 : c7a776f0 r4 : c7a773f0 r3 : f4424600 r2 : 00000000 r1 : 00000001 r0 : 00000001 Flags: nZCv IRQs off FIQs on Mode SVC_32 ISA ARM Segment kernel Control: 0005317f Table: a0004000 DAC: 00000017 Process swapper (pid: 1, stack limit = 0xc783e190) Stack: (0xc783fe08 to 0xc7840000) Signed-off-by: Peter Chen <peter.chen@freescale.com> Reported-by: Fabio Estevam <fabio.estevam@freescale.com> Tested-by: Fabio Estevam <fabio.estevam@freescale.com> Acked-by: Shawn Guo <shawnguo@kernel.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 519ee69 upstream. In case of one shot NOA the interval can be 0, catch that instead of potentially (depending on the driver) crashing like this: divide error: 0000 [#1] SMP [...] Call Trace: <IRQ> [<ffffffffc08e891c>] ieee80211_extend_absent_time+0x6c/0xb0 [mac80211] [<ffffffffc08e8a17>] ieee80211_update_p2p_noa+0xb7/0xe0 [mac80211] [<ffffffffc069cc30>] ath9k_p2p_ps_timer+0x170/0x190 [ath9k] [<ffffffffc070adf8>] ath_gen_timer_isr+0xc8/0xf0 [ath9k_hw] [<ffffffffc0691156>] ath9k_tasklet+0x296/0x2f0 [ath9k] [<ffffffff8107ad65>] tasklet_action+0xe5/0xf0 [...] Signed-off-by: Janusz Dziedzic <janusz.dziedzic@tieto.com> Signed-off-by: Johannes Berg <johannes.berg@intel.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 19cd80a upstream. It is not permitted to set task state before lock. usblp_wwait sets the state to TASK_INTERRUPTIBLE and calls mutex_lock_interruptible. Upon return from that function, the state will be TASK_RUNNING again. This is clearly a bug and a warning is generated with LOCKDEP too: WARNING: CPU: 1 PID: 5109 at kernel/sched/core.c:7404 __might_sleep+0x7d/0x90() do not call blocking ops when !TASK_RUNNING; state=1 set at [<ffffffffa0c588d0>] usblp_wwait+0xa0/0x310 [usblp] Modules linked in: ... CPU: 1 PID: 5109 Comm: captmon Tainted: G W 4.2.5-0.gef2823b-default #1 Hardware name: LENOVO 23252SG/23252SG, BIOS G2ET33WW (1.13 ) 07/24/2012 ffffffff81a4edce ffff880236ec7ba8 ffffffff81716651 0000000000000000 ffff880236ec7bf8 ffff880236ec7be8 ffffffff8106e146 0000000000000282 ffffffff81a50119 000000000000028b 0000000000000000 ffff8802dab7c508 Call Trace: ... [<ffffffff8106e1c6>] warn_slowpath_fmt+0x46/0x50 [<ffffffff8109a8bd>] __might_sleep+0x7d/0x90 [<ffffffff8171b20f>] mutex_lock_interruptible_nested+0x2f/0x4b0 [<ffffffffa0c588fc>] usblp_wwait+0xcc/0x310 [usblp] [<ffffffffa0c58bb2>] usblp_write+0x72/0x350 [usblp] [<ffffffff8121ed98>] __vfs_write+0x28/0xf0 ... Commit 7f47735 (usblp: Implement the ENOSPC convention) moved the set prior locking. So move it back after the lock. Signed-off-by: Jiri Slaby <jslaby@suse.cz> Fixes: 7f47735 ("usblp: Implement the ENOSPC convention") Acked-By: Pete Zaitcev <zaitcev@yahoo.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
[ Upstream commit 74e98eb ] There was no verification that an underlying transport exists when creating a connection, this would cause dereferencing a NULL ptr. It might happen on sockets that weren't properly bound before attempting to send a message, which will cause a NULL ptr deref: [135546.047719] kasan: GPF could be caused by NULL-ptr deref or user memory accessgeneral protection fault: 0000 [#1] PREEMPT SMP DEBUG_PAGEALLOC KASAN [135546.051270] Modules linked in: [135546.051781] CPU: 4 PID: 15650 Comm: trinity-c4 Not tainted 4.2.0-next-20150902-sasha-00041-gbaa1222-dirty raspberrypi#2527 [135546.053217] task: ffff8800835bc000 ti: ffff8800bc708000 task.ti: ffff8800bc708000 [135546.054291] RIP: __rds_conn_create (net/rds/connection.c:194) [135546.055666] RSP: 0018:ffff8800bc70fab0 EFLAGS: 00010202 [135546.056457] RAX: dffffc0000000000 RBX: 0000000000000f2c RCX: ffff8800835bc000 [135546.057494] RDX: 0000000000000007 RSI: ffff8800835bccd8 RDI: 0000000000000038 [135546.058530] RBP: ffff8800bc70fb18 R08: 0000000000000001 R09: 0000000000000000 [135546.059556] R10: ffffed014d7a3a23 R11: ffffed014d7a3a21 R12: 0000000000000000 [135546.060614] R13: 0000000000000001 R14: ffff8801ec3d0000 R15: 0000000000000000 [135546.061668] FS: 00007faad4ffb700(0000) GS:ffff880252000000(0000) knlGS:0000000000000000 [135546.062836] CS: 0010 DS: 0000 ES: 0000 CR0: 000000008005003b [135546.063682] CR2: 000000000000846a CR3: 000000009d137000 CR4: 00000000000006a0 [135546.064723] Stack: [135546.065048] ffffffffafe2055c ffffffffafe23fc1 ffffed00493097bf ffff8801ec3d0008 [135546.066247] 0000000000000000 00000000000000d0 0000000000000000 ac194a24c0586342 [135546.067438] 1ffff100178e1f78 ffff880320581b00 ffff8800bc70fdd0 ffff880320581b00 [135546.068629] Call Trace: [135546.069028] ? __rds_conn_create (include/linux/rcupdate.h:856 net/rds/connection.c:134) [135546.069989] ? rds_message_copy_from_user (net/rds/message.c:298) [135546.071021] rds_conn_create_outgoing (net/rds/connection.c:278) [135546.071981] rds_sendmsg (net/rds/send.c:1058) [135546.072858] ? perf_trace_lock (include/trace/events/lock.h:38) [135546.073744] ? lockdep_init (kernel/locking/lockdep.c:3298) [135546.074577] ? rds_send_drop_to (net/rds/send.c:976) [135546.075508] ? __might_fault (./arch/x86/include/asm/current.h:14 mm/memory.c:3795) [135546.076349] ? __might_fault (mm/memory.c:3795) [135546.077179] ? rds_send_drop_to (net/rds/send.c:976) [135546.078114] sock_sendmsg (net/socket.c:611 net/socket.c:620) [135546.078856] SYSC_sendto (net/socket.c:1657) [135546.079596] ? SYSC_connect (net/socket.c:1628) [135546.080510] ? trace_dump_stack (kernel/trace/trace.c:1926) [135546.081397] ? ring_buffer_unlock_commit (kernel/trace/ring_buffer.c:2479 kernel/trace/ring_buffer.c:2558 kernel/trace/ring_buffer.c:2674) [135546.082390] ? trace_buffer_unlock_commit (kernel/trace/trace.c:1749) [135546.083410] ? trace_event_raw_event_sys_enter (include/trace/events/syscalls.h:16) [135546.084481] ? do_audit_syscall_entry (include/trace/events/syscalls.h:16) [135546.085438] ? trace_buffer_unlock_commit (kernel/trace/trace.c:1749) [135546.085515] rds_ib_laddr_check(): addr 36.74.25.172 ret -99 node type -1 Acked-by: Santosh Shilimkar <santosh.shilimkar@oracle.com> Signed-off-by: Sasha Levin <sasha.levin@oracle.com> Signed-off-by: David S. Miller <davem@davemloft.net> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit facf47e upstream. For imx27, it needs three clocks to let the controller work, the old code is wrong, and usbmisc has not included clock handling code any more. Without this patch, it will cause below data abort when accessing usbmisc registers. usbcore: registered new interface driver usb-storage Unhandled fault: external abort on non-linefetch (0x008) at 0xf4424600 pgd = c0004000 [f4424600] *pgd=10000452(bad) Internal error: : 8 [#1] PREEMPT ARM Modules linked in: CPU: 0 PID: 1 Comm: swapper Not tainted 4.1.0-next-20150701-dirty raspberrypi#3089 Hardware name: Freescale i.MX27 (Device Tree Support) task: c7832b60 ti: c783e000 task.ti: c783e000 PC is at usbmisc_imx27_init+0x4c/0xbc LR is at usbmisc_imx27_init+0x40/0xbc pc : [<c03cb5c0>] lr : [<c03cb5b4>] psr: 60000093 sp : c783fe08 ip : 00000000 fp : 00000000 r10: c0576434 r9 : 0000009c r8 : c7a773a0 r7 : 01000000 r6 : 60000013 r5 : c7a776f0 r4 : c7a773f0 r3 : f4424600 r2 : 00000000 r1 : 00000001 r0 : 00000001 Flags: nZCv IRQs off FIQs on Mode SVC_32 ISA ARM Segment kernel Control: 0005317f Table: a0004000 DAC: 00000017 Process swapper (pid: 1, stack limit = 0xc783e190) Stack: (0xc783fe08 to 0xc7840000) Signed-off-by: Peter Chen <peter.chen@freescale.com> Reported-by: Fabio Estevam <fabio.estevam@freescale.com> Tested-by: Fabio Estevam <fabio.estevam@freescale.com> Acked-by: Shawn Guo <shawnguo@kernel.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 519ee69 upstream. In case of one shot NOA the interval can be 0, catch that instead of potentially (depending on the driver) crashing like this: divide error: 0000 [#1] SMP [...] Call Trace: <IRQ> [<ffffffffc08e891c>] ieee80211_extend_absent_time+0x6c/0xb0 [mac80211] [<ffffffffc08e8a17>] ieee80211_update_p2p_noa+0xb7/0xe0 [mac80211] [<ffffffffc069cc30>] ath9k_p2p_ps_timer+0x170/0x190 [ath9k] [<ffffffffc070adf8>] ath_gen_timer_isr+0xc8/0xf0 [ath9k_hw] [<ffffffffc0691156>] ath9k_tasklet+0x296/0x2f0 [ath9k] [<ffffffff8107ad65>] tasklet_action+0xe5/0xf0 [...] Signed-off-by: Janusz Dziedzic <janusz.dziedzic@tieto.com> Signed-off-by: Johannes Berg <johannes.berg@intel.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 19cd80a upstream. It is not permitted to set task state before lock. usblp_wwait sets the state to TASK_INTERRUPTIBLE and calls mutex_lock_interruptible. Upon return from that function, the state will be TASK_RUNNING again. This is clearly a bug and a warning is generated with LOCKDEP too: WARNING: CPU: 1 PID: 5109 at kernel/sched/core.c:7404 __might_sleep+0x7d/0x90() do not call blocking ops when !TASK_RUNNING; state=1 set at [<ffffffffa0c588d0>] usblp_wwait+0xa0/0x310 [usblp] Modules linked in: ... CPU: 1 PID: 5109 Comm: captmon Tainted: G W 4.2.5-0.gef2823b-default #1 Hardware name: LENOVO 23252SG/23252SG, BIOS G2ET33WW (1.13 ) 07/24/2012 ffffffff81a4edce ffff880236ec7ba8 ffffffff81716651 0000000000000000 ffff880236ec7bf8 ffff880236ec7be8 ffffffff8106e146 0000000000000282 ffffffff81a50119 000000000000028b 0000000000000000 ffff8802dab7c508 Call Trace: ... [<ffffffff8106e1c6>] warn_slowpath_fmt+0x46/0x50 [<ffffffff8109a8bd>] __might_sleep+0x7d/0x90 [<ffffffff8171b20f>] mutex_lock_interruptible_nested+0x2f/0x4b0 [<ffffffffa0c588fc>] usblp_wwait+0xcc/0x310 [usblp] [<ffffffffa0c58bb2>] usblp_write+0x72/0x350 [usblp] [<ffffffff8121ed98>] __vfs_write+0x28/0xf0 ... Commit 7f47735 (usblp: Implement the ENOSPC convention) moved the set prior locking. So move it back after the lock. Signed-off-by: Jiri Slaby <jslaby@suse.cz> Fixes: 7f47735 ("usblp: Implement the ENOSPC convention") Acked-By: Pete Zaitcev <zaitcev@yahoo.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
commit 420902c upstream. If we hold the superblock lock while calling reiserfs_quota_on_mount(), we can deadlock our own worker - mount blocks kworker/3:2, sleeps forever more. crash> ps|grep UN 715 2 3 ffff880220734d30 UN 0.0 0 0 [kworker/3:2] 9369 9341 2 ffff88021ffb7560 UN 1.3 493404 123184 Xorg 9665 9664 3 ffff880225b92ab0 UN 0.0 47368 812 udisks-daemon 10635 10403 3 ffff880222f22c70 UN 0.0 14904 936 mount crash> bt ffff880220734d30 PID: 715 TASK: ffff880220734d30 CPU: 3 COMMAND: "kworker/3:2" #0 [ffff8802244c3c20] schedule at ffffffff8144584b #1 [ffff8802244c3cc8] __rt_mutex_slowlock at ffffffff814472b3 #2 [ffff8802244c3d28] rt_mutex_slowlock at ffffffff814473f5 #3 [ffff8802244c3dc8] reiserfs_write_lock at ffffffffa05f28fd [reiserfs] #4 [ffff8802244c3de8] flush_async_commits at ffffffffa05ec91d [reiserfs] #5 [ffff8802244c3e08] process_one_work at ffffffff81073726 #6 [ffff8802244c3e68] worker_thread at ffffffff81073eba #7 [ffff8802244c3ec8] kthread at ffffffff810782e0 #8 [ffff8802244c3f48] kernel_thread_helper at ffffffff81450064 crash> rd ffff8802244c3cc8 10 ffff8802244c3cc8: ffffffff814472b3 ffff880222f23250 .rD.....P2.".... ffff8802244c3cd8: 0000000000000000 0000000000000286 ................ ffff8802244c3ce8: ffff8802244c3d30 ffff880220734d80 0=L$.....Ms .... ffff8802244c3cf8: ffff880222e8f628 0000000000000000 (.."............ ffff8802244c3d08: 0000000000000000 0000000000000002 ................ crash> struct rt_mutex ffff880222e8f628 struct rt_mutex { wait_lock = { raw_lock = { slock = 65537 } }, wait_list = { node_list = { next = 0xffff8802244c3d48, prev = 0xffff8802244c3d48 } }, owner = 0xffff880222f22c71, save_state = 0 } crash> bt 0xffff880222f22c70 PID: 10635 TASK: ffff880222f22c70 CPU: 3 COMMAND: "mount" #0 [ffff8802216a9868] schedule at ffffffff8144584b #1 [ffff8802216a9910] schedule_timeout at ffffffff81446865 #2 [ffff8802216a99a0] wait_for_common at ffffffff81445f74 #3 [ffff8802216a9a30] flush_work at ffffffff810712d3 #4 [ffff8802216a9ab0] schedule_on_each_cpu at ffffffff81074463 #5 [ffff8802216a9ae0] invalidate_bdev at ffffffff81178aba #6 [ffff8802216a9af0] vfs_load_quota_inode at ffffffff811a3632 #7 [ffff8802216a9b50] dquot_quota_on_mount at ffffffff811a375c #8 [ffff8802216a9b80] finish_unfinished at ffffffffa05dd8b0 [reiserfs] #9 [ffff8802216a9cc0] reiserfs_fill_super at ffffffffa05de825 [reiserfs] RIP: 00007f7b9303997a RSP: 00007ffff443c7a8 RFLAGS: 00010202 RAX: 00000000000000a5 RBX: ffffffff8144ef12 RCX: 00007f7b932e9ee0 RDX: 00007f7b93d9a400 RSI: 00007f7b93d9a3e0 RDI: 00007f7b93d9a3c0 RBP: 00007f7b93d9a2c0 R8: 00007f7b93d9a550 R9: 0000000000000001 R10: ffffffffc0ed040e R11: 0000000000000202 R12: 000000000000040e R13: 0000000000000000 R14: 00000000c0ed040e R15: 00007ffff443ca20 ORIG_RAX: 00000000000000a5 CS: 0033 SS: 002b Signed-off-by: Mike Galbraith <efault@gmx.de> Acked-by: Frederic Weisbecker <fweisbec@gmail.com> Acked-by: Mike Galbraith <mgalbraith@suse.de> Signed-off-by: Jan Kara <jack@suse.cz> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
Can now be built either as two modules or built-in to kernel. NOTE: if built-in, you still cannot use it with fbcon as it appears the fbcon is incompatible with SPI and/or deferred I/O framebuffers.
If built as modules, run:
modprobe st7735fb
modprobe st7735fb_map
You should then get /dev/fb1.