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CVSS: -EPSS: 0%CPEs: 2EXPL: 0

In the Linux kernel, the following vulnerability has been resolved: closures: Change BUG_ON() to WARN_ON() If a BUG_ON() can be hit in the wild, it shouldn't be a BUG_ON() For reference, this has popped up once in the CI, and we'll need more info to debug it: 03240 ------------[ cut here ]------------ 03240 kernel BUG at lib/closure.c:21! 03240 kernel BUG at lib/closure.c:21! 03240 Internal error: Oops - BUG: 00000000f2000800 [#1] SMP 03240 Modules linked in: 03240 CPU: 15 PID: 40534 Comm: kworker/u80:1 Not tainted 6.10.0-rc4-ktest-ga56da69799bd #25570 03240 Hardware name: linux,dummy-virt (DT) 03240 Workqueue: btree_update btree_interior_update_work 03240 pstate: 00001005 (nzcv daif -PAN -UAO -TCO -DIT +SSBS BTYPE=--) 03240 pc : closure_put+0x224/0x2a0 03240 lr : closure_put+0x24/0x2a0 03240 sp : ffff0000d12071c0 03240 x29: ffff0000d12071c0 x28: dfff800000000000 x27: ffff0000d1207360 03240 x26: 0000000000000040 x25: 0000000000000040 x24: 0000000000000040 03240 x23: ffff0000c1f20180 x22: 0000000000000000 x21: ffff0000c1f20168 03240 x20: 0000000040000000 x19: ffff0000c1f20140 x18: 0000000000000001 03240 x17: 0000000000003aa0 x16: 0000000000003ad0 x15: 1fffe0001c326974 03240 x14: 0000000000000a1e x13: 0000000000000000 x12: 1fffe000183e402d 03240 x11: ffff6000183e402d x10: dfff800000000000 x9 : ffff6000183e402e 03240 x8 : 0000000000000001 x7 : 00009fffe7c1bfd3 x6 : ffff0000c1f2016b 03240 x5 : ffff0000c1f20168 x4 : ffff6000183e402e x3 : ffff800081391954 03240 x2 : 0000000000000001 x1 : 0000000000000000 x0 : 00000000a8000000 03240 Call trace: 03240 closure_put+0x224/0x2a0 03240 bch2_check_for_deadlock+0x910/0x1028 03240 bch2_six_check_for_deadlock+0x1c/0x30 03240 six_lock_slowpath.isra.0+0x29c/0xed0 03240 six_lock_ip_waiter+0xa8/0xf8 03240 __bch2_btree_node_lock_write+0x14c/0x298 03240 bch2_trans_lock_write+0x6d4/0xb10 03240 __bch2_trans_commit+0x135c/0x5520 03240 btree_interior_update_work+0x1248/0x1c10 03240 process_scheduled_works+0x53c/0xd90 03240 worker_thread+0x370/0x8c8 03240 kthread+0x258/0x2e8 03240 ret_from_fork+0x10/0x20 03240 Code: aa1303e0 d63f0020 a94363f7 17ffff8c (d4210000) 03240 ---[ end trace 0000000000000000 ]--- 03240 Kernel panic - not syncing: Oops - BUG: Fatal exception 03240 SMP: stopping secondary CPUs 03241 SMP: failed to stop secondary CPUs 13,15 03241 Kernel Offset: disabled 03241 CPU features: 0x00,00000003,80000008,4240500b 03241 Memory Limit: none 03241 ---[ end Kernel panic - not syncing: Oops - BUG: Fatal exception ]--- 03246 ========= FAILED TIMEOUT copygc_torture_no_checksum in 7200s En el kernel de Linux, se ha resuelto la siguiente vulnerabilidad: cierres: Cambie BUG_ON() a WARN_ON() Si se puede acceder a un BUG_ON() en estado salvaje, no debería ser un BUG_ON() Como referencia, ha aparecido esto una vez en el CI, y necesitaremos más información para depurarlo: 03240 ------------[ cortar aquí ]------------ 03240 ERROR del kernel en lib /cierre.c:21! 03240 ERROR del kernel en lib/closure.c:21! 03240 Error interno: Ups - ERROR: 00000000f2000800 [#1] SMP 03240 Módulos vinculados en: 03240 CPU: 15 PID: 40534 Comm: kworker/u80:1 No contaminado 6.10.0-rc4-ktest-ga56da69799bd #25570 Nombre del hardware: linux,dummy-virt (DT) 03240 Cola de trabajo: btree_update btree_interior_update_work 03240 pstate: 00001005 (nzcv daif -PAN -UAO -TCO -DIT +SSBS BTYPE=--) 03240 pc: cierre_put+0x224/0x2a0 03240 lr: cierre_put+0x24/ 0x2a0 03240 sp: ffff0000d12071c0 03240 x29: ffff0000d12071c0 x28: dfff800000000000 x27: ffff0000d1207360 03240 x26: 0000000000000040 0000000000000040 x24: 0000000000000040 03240 x23: ffff0000c1f20180 x22: 0000000000000000 x21: ffff0000c1f20168 03240 x20: 000000 x19: ffff0000c1f20140 x18: 0000000000000001 03240 x17: 0000000000003aa0 x16 : 0000000000003ad0 x15: 1fffe0001c326974 03240 x14: 0000000000000a1e x13: 0000000000000000 x12: 1fffe000183e402d 03240 x11: e402d x10: dfff800000000000 x9: ffff6000183e402e 03240 x8: 0000000000000001 x7: 00009fffe7c1bfd3 x6: ffff0000c1f2016b 03240 x5: 0168 x4: ffff6000183e402e x3: ffff800081391954 03240 x2: 0000000000000001 x1 : 0000000000000000 x0 : 00000000a8000000 03240 Rastreo de llamadas: 03240 cierre_put+0x224/0x2a0 03240 bch2_check_for_deadlock+0x910/0x1028 03240 bch2_six_check_for_deadlock+0x1c /0x30 03240 six_lock_slowpath.isra.0+0x29c/0xed0 03240 six_lock_ip_waiter+0xa8/0xf8 03240 __bch2_btree_node_lock_write+0x14c/0x298 03240 bch2_trans_lock_write+0x6d4/0xb10 03240 __bch2_trans_commit+0x135c/0x5520 03240 btree_interior_update_work+0x1248/0x1c10 03240 Process_scheduled_works+0x53c/0xd90 03240 trabajador_thread+0x37 0/0x8c8 03240 kthread+0x258/0x2e8 03240 ret_from_fork+0x10/0x20 03240 Código: aa1303e0 d63f0020 a94363f7 17ffff8c (d4210000 ) 03240 ---[ seguimiento final 0000000000000000 ]--- 03240 Pánico del kernel - no se sincroniza: Ups - ERROR: Excepción fatal 03240 SMP: deteniendo las CPU secundarias 03241 SMP: no se pudieron detener las CPU secundarias 13,15 03241 Desplazamiento del kernel: deshabilitado 03241 CPU características: 0x00,00000003,80000008,4240500b 03241 Límite de memoria: ninguno 03241 ---[ fin del pánico del kernel - no se sincroniza: Ups - ERROR: excepción fatal ]--- 03246 ========= TIEMPO DE ESPERA FALLIDO copygc_torture_no_checksum en 7200 • https://git.kernel.org/stable/c/5d85f2ab79d5918a66539ebf046c099f7448db8d https://git.kernel.org/stable/c/339b84ab6b1d66900c27bd999271cb2ae40ce812 •

CVSS: -EPSS: 0%CPEs: 6EXPL: 0

In the Linux kernel, the following vulnerability has been resolved: wireguard: allowedips: avoid unaligned 64-bit memory accesses On the parisc platform, the kernel issues kernel warnings because swap_endian() tries to load a 128-bit IPv6 address from an unaligned memory location: Kernel: unaligned access to 0x55f4688c in wg_allowedips_insert_v6+0x2c/0x80 [wireguard] (iir 0xf3010df) Kernel: unaligned access to 0x55f46884 in wg_allowedips_insert_v6+0x38/0x80 [wireguard] (iir 0xf2010dc) Avoid such unaligned memory accesses by instead using the get_unaligned_be64() helper macro. [Jason: replace src[8] in original patch with src+8] • https://git.kernel.org/stable/c/e7096c131e5161fa3b8e52a650d7719d2857adfd https://git.kernel.org/stable/c/ae630de24efb123d7199a43256396d7758f4cb75 https://git.kernel.org/stable/c/b4764f0ad3d68de8a0b847c05f427afb86dd54e6 https://git.kernel.org/stable/c/217978a29c6ceca76d3c640bf94bdf50c268d801 https://git.kernel.org/stable/c/6638a203abad35fa636d59ac47bdbc4bc100fd74 https://git.kernel.org/stable/c/2fb34bf76431e831f9863cd59adc0bd1f67b0fbf https://git.kernel.org/stable/c/948f991c62a4018fb81d85804eeab3029c6209f8 •

CVSS: 5.5EPSS: 0%CPEs: 8EXPL: 0

In the Linux kernel, the following vulnerability has been resolved: net, sunrpc: Remap EPERM in case of connection failure in xs_tcp_setup_socket When using a BPF program on kernel_connect(), the call can return -EPERM. This causes xs_tcp_setup_socket() to loop forever, filling up the syslog and causing the kernel to potentially freeze up. Neil suggested: This will propagate -EPERM up into other layers which might not be ready to handle it. It might be safer to map EPERM to an error we would be more likely to expect from the network system - such as ECONNREFUSED or ENETDOWN. ECONNREFUSED as error seems reasonable. For programs setting a different error can be out of reach (see handling in 4fbac77d2d09) in particular on kernels which do not have f10d05966196 ("bpf: Make BPF_PROG_RUN_ARRAY return -err instead of allow boolean"), thus given that it is better to simply remap for consistent behavior. UDP does handle EPERM in xs_udp_send_request(). • https://git.kernel.org/stable/c/4fbac77d2d092b475dda9eea66da674369665427 https://git.kernel.org/stable/c/bc790261218952635f846aaf90bcc0974f6f62c6 https://git.kernel.org/stable/c/934247ea65bc5eca8bdb7f8c0ddc15cef992a5d6 https://git.kernel.org/stable/c/02ee1976edb21a96ce8e3fd4ef563f14cc16d041 https://git.kernel.org/stable/c/5d8254e012996cee1a0f9cc920531cb7e4d9a011 https://git.kernel.org/stable/c/f2431e7db0fe0daccb2f06bb0d23740affcd2fa6 https://git.kernel.org/stable/c/d6c686c01c5f12ff8f7264e0ddf71df6cb0d4414 https://git.kernel.org/stable/c/f388cfd913a2b96c05339a335f365795d • CWE-835: Loop with Unreachable Exit Condition ('Infinite Loop') •

CVSS: -EPSS: 0%CPEs: 4EXPL: 0

In the Linux kernel, the following vulnerability has been resolved: Revert "sched/fair: Make sure to try to detach at least one movable task" This reverts commit b0defa7ae03ecf91b8bfd10ede430cff12fcbd06. b0defa7ae03ec changed the load balancing logic to ignore env.max_loop if all tasks examined to that point were pinned. The goal of the patch was to make it more likely to be able to detach a task buried in a long list of pinned tasks. However, this has the unfortunate side effect of creating an O(n) iteration in detach_tasks(), as we now must fully iterate every task on a cpu if all or most are pinned. Since this load balance code is done with rq lock held, and often in softirq context, it is very easy to trigger hard lockups. We observed such hard lockups with a user who affined O(10k) threads to a single cpu. When I discussed this with Vincent he initially suggested that we keep the limit on the number of tasks to detach, but increase the number of tasks we can search. • https://git.kernel.org/stable/c/b0defa7ae03ecf91b8bfd10ede430cff12fcbd06 https://git.kernel.org/stable/c/d467194018dd536fe6c65a2fd3aedfcdb1424903 https://git.kernel.org/stable/c/1e116c18e32b035a2d1bd460800072c8bf96bc44 https://git.kernel.org/stable/c/0fa6dcbfa2e2b97c1e6febbea561badf0931a38b https://git.kernel.org/stable/c/2feab2492deb2f14f9675dd6388e9e2bf669c27a •

CVSS: -EPSS: 0%CPEs: 6EXPL: 0

In the Linux kernel, the following vulnerability has been resolved: USB: serial: mos7840: fix crash on resume Since commit c49cfa917025 ("USB: serial: use generic method if no alternative is provided in usb serial layer"), USB serial core calls the generic resume implementation when the driver has not provided one. This can trigger a crash on resume with mos7840 since support for multiple read URBs was added back in 2011. Specifically, both port read URBs are now submitted on resume for open ports, but the context pointer of the second URB is left set to the core rather than mos7840 port structure. Fix this by implementing dedicated suspend and resume functions for mos7840. Tested with Delock 87414 USB 2.0 to 4x serial adapter. [ johan: analyse crash and rewrite commit message; set busy flag on resume; drop bulk-in check; drop unnecessary usb_kill_urb() ] • https://git.kernel.org/stable/c/d83b405383c965498923f3561c3321e2b5df5727 https://git.kernel.org/stable/c/932a86a711c722b45ed47ba2103adca34d225b33 https://git.kernel.org/stable/c/b14aa5673e0a8077ff4b74f0bb260735e7d5e6a4 https://git.kernel.org/stable/c/1094ed500987e67a9d18b0f95e1812f1cc720856 https://git.kernel.org/stable/c/5ae6a64f18211851c8df6b4221381c438b9a7348 https://git.kernel.org/stable/c/553e67dec846323b5575e78a776cf594c13f98c4 https://git.kernel.org/stable/c/c15a688e49987385baa8804bf65d570e362f8576 •