Tenda AC5 US_AC5V1.0RTL_V15.03.06.28 was discovered to contain a stack overflow via the setSchedWifi function. This vuln
Tenda AC5 US_AC5V1.0RTL_V15.03.06.28 was discovered to contain a stack overflow via the saveParentControlInfo function.
Tenda AC5 US_AC5V1.0RTL_V15.03.06.28 was discovered to contain a stack overflow via the formSetFirewallCfg function. Thi
Tenda AC5 US_AC5V1.0RTL_V15.03.06.28 was discovered to contain a stack overflow via the formWifiBasicSet function. This
Tenda AC5 US_AC5V1.0RTL_V15.03.06.28 was discovered to contain a stack overflow via the form_fast_setting_wifi_set funct
Tenda AC5 US_AC5V1.0RTL_V15.03.06.28 was discovered to contain a stack overflow via the fromDhcpListClient function. Thi
Tenda AC5 US_AC5V1.0RTL_V15.03.06.28 was discovered to contain a stack overflow via the add_white_node function. This vu
Tenda AC10 US_AC10V4.0si_V16.03.10.13_cn was discovered to contain a stack overflow via the setSchedWifi function. This
Tenda AC10 US_AC10V4.0si_V16.03.10.13_cn was discovered to contain a stack overflow via the get_parentControl_list_Info
Tenda AC10 US_AC10V4.0si_V16.03.10.13_cn was discovered to contain a stack overflow via the sub_46AC38 function. This vu
Tenda AC10 US_AC10V4.0si_V16.03.10.13_cn was discovered to contain a stack overflow via the sub_4A75C0 function. This vu
Tenda AC10 US_AC10V4.0si_V16.03.10.13_cn was discovered to contain a stack overflow via the R7WebsSecurityHandler functi
Tenda AC10 US_AC10V4.0si_V16.03.10.13_cn was discovered to contain a stack overflow via the sub_45DC58 function. This vu
Tenda AC10 US_AC10V4.0si_V16.03.10.13_cn was discovered to contain a stack overflow via the sub_45EC1C function. This vu
Tenda AC10 US_AC10V4.0si_V16.03.10.13_cn was discovered to contain a stack overflow via the sub_458FBC function. This vu
Tenda AC10 US_AC10V4.0si_V16.03.10.13_cn was discovered to contain a stack overflow via the saveParentControlInfo functi
Tenda AC10 US_AC10V4.0si_V16.03.10.13_cn was discovered to contain a stack overflow via the formSetFirewallCfg function.
D-Link DIR878 1.30B08 was discovered to contain a stack overflow in the sub_498308 function. This vulnerability allows a
D-Link DIR878 1.30B08 was discovered to contain a stack overflow in the sub_478360 function. This vulnerability allows a
D-Link DIR878 1.30B08 was discovered to contain a stack overflow in the sub_48d630 function. This vulnerability allows a
A memory corruption issue was addressed with improved state management. This issue is fixed in macOS Ventura 13, iOS 16.
Certain Lexmark devices through 2023-02-19 have an Out-of-bounds Write.
Memory correction in modem due to buffer overwrite during coap connection
Memory corruption in modem due to buffer overwrite while building an IPv6 multicast address based on the MAC address of
D-Link DIR823G_V1.0.2B05 was discovered to contain a stack overflow via the NewPassword parameters in SetPasswdSettings.
Tenda AC5 V15.03.06.28 is vulnerable to Buffer Overflow via the initWebs function.
Tenda AC15 V15.03.05.19 is vulnerable to Buffer Overflow.
RIOT-OS, an operating system that supports Internet of Things devices, contains a network stack with the ability to proc
In Tenda AC15 V15.03.05.19, the function GetValue contains a stack-based buffer overflow vulnerability.
In Tenda AC15 V15.03.05.19, the function "sub_ED14" contains a stack-based buffer overflow vulnerability.
In Tenda AC15 V15.03.05.19, The function "xkjs_ver32" contains a stack-based buffer overflow vulnerability.
In Tenda AC15 V15.03.05.19, the function "xian_pppoe_user" contains a stack-based buffer overflow vulnerability.
In Tenda AC15 V15.03.05.19, the function "getIfIp" contains a stack-based buffer overflow vulnerability.
In Tenda AC15 V15.03.05.19, the function "henan_pppoe_user" contains a stack-based buffer overflow vulnerability.
In Tenda AC15 V15.03.05.19, the function "sub_8EE8" contains a stack-based buffer overflow vulnerability.
RIOT-OS, an operating system that supports Internet of Things devices, contains a network stack with the ability to proc
Certain HP LaserJet Pro print products are potentially vulnerable to Heap Overflow and/or Remote Code Execution.
SmartDNS through 41 before 56d0332 allows an out-of-bounds write because of a stack-based buffer overflow in the _dns_en
H3C GR-1200W MiniGRW1A0V100R006 was discovered to contain a stack overflow via the function set_tftp_upgrad.
H3C GR-1200W MiniGRW1A0V100R006 was discovered to contain a stack overflow via the function version_set.
The issue was addressed with improved memory handling. This issue is fixed in macOS Ventura 13.3, macOS Monterey 12.6.4,
Improper access control settings in ASP Bootloader may allow an attacker to corrupt the return address causing a stack-b
Buffer overflow in CPCA Resource Download process of Office / Small Office Multifunction Printers and Laser Printers(*)
Buffer overflow in the Address Book of Mobile Device function of Office / Small Office Multifunction Printers and Laser
Buffer overflow in mDNS NSEC record registering process of Office / Small Office Multifunction Printers and Laser Printe
Buffer overflow in NetBIOS QNAME registering and communication process of Office / Small Office Multifunction Printers a
Buffer overflow in IPP number-up attribute process of Office / Small Office Multifunction Printers and Laser Printers(*)
Buffer overflow in IPP sides attribute process of Office / Small Office Multifunction Printers and Laser Printers(*) whi
D-Link DIR-605L firmware version 1.17B01 BETA is vulnerable to stack overflow via /goform/formTcpipSetup,
A stack-based buffer overflow in the ChangeFriendlyName() function of Belkin Smart Outlet V2 F7c063 firmware_2.00.11420.
Frequently Asked Questions
What is CWE-787?
CWE-787 (Out-of-bounds Write) is a weakness category in the Common Weakness Enumeration (CWE) system maintained by MITRE. It describes a class of software or hardware vulnerability that can lead to security issues.
How many CVEs are classified as CWE-787?
There are 17,111 CVE records associated with CWE-787 in our database. Of these, 2513 are critical severity, 8761 are high severity, and 2814 are medium severity.
How can I protect against CWE-787 vulnerabilities?
Protection strategies depend on the specific weakness type. General measures include input validation, secure coding practices, regular security testing, and keeping software up to date. CyberStrike can help by automatically scanning your infrastructure for vulnerabilities related to CWE-787 using AI-powered security agents.
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