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CWE-121 (栈缓冲区溢出) — Vulnerability Class 2749

2749 vulnerabilities classified as CWE-121 (栈缓冲区溢出). AI Chinese analysis included.

CWE-121 represents a critical memory safety weakness where program data exceeds the allocated bounds of a stack-allocated buffer, corrupting adjacent memory structures. Attackers typically exploit this vulnerability by injecting malicious payloads that overwrite the function’s return address or saved frame pointer, thereby hijacking control flow to execute arbitrary code with the privileges of the compromised process. This exploitation is particularly dangerous because stack buffers are local variables, making the attack surface common in low-level languages like C and C++. Developers mitigate this risk by enforcing strict input validation, utilizing safe string handling functions that prevent unbounded writes, and adopting modern programming languages with automatic memory management. Additionally, implementing compiler-level protections such as stack canaries and Address Space Layout Randomization significantly raises the barrier for successful exploitation, ensuring system integrity remains intact against buffer overflow attempts.

MITRE CWE Description
A stack-based buffer overflow condition is a condition where the buffer being overwritten is allocated on the stack (i.e., is a local variable or, rarely, a parameter to a function).
Common Consequences (3)
AvailabilityModify Memory, DoS: Crash, Exit, or Restart, DoS: Resource Consumption (CPU), DoS: Resource Consumption (Memory)
Buffer overflows generally lead to crashes. Other attacks leading to lack of availability are possible, including putting the program into an infinite loop.
Integrity, Confidentiality, Availability, Access ControlModify Memory, Execute Unauthorized Code or Commands, Bypass Protection Mechanism
Buffer overflows often can be used to execute arbitrary code, which is usually outside the scope of a program's implicit security policy.
Integrity, Confidentiality, Availability, Access Control, OtherModify Memory, Execute Unauthorized Code or Commands, Bypass Protection Mechanism, Other
When the consequence is arbitrary code execution, this can often be used to subvert any other security service.
Mitigations (5)
Operation, Build and CompilationUse automatic buffer overflow detection mechanisms that are offered by certain compilers or compiler extensions. Examples include: the Microsoft Visual Studio /GS flag, Fedora/Red Hat FORTIFY_SOURCE GCC flag, StackGuard, and ProPolice, which provide various mechanisms including canary-based detection and range/index checking. D3-SFCV (Stack Frame Canary Validation) from D3FEND [REF-1334] discusses…
Effectiveness: Defense in Depth
Architecture and DesignUse an abstraction library to abstract away risky APIs. Not a complete solution.
ImplementationImplement and perform bounds checking on input.
ImplementationDo not use dangerous functions such as gets. Use safer, equivalent functions which check for boundary errors.
Operation, Build and CompilationRun or compile the software using features or extensions that randomly arrange the positions of a program's executable and libraries in memory. Because this makes the addresses unpredictable, it can prevent an attacker from reliably jumping to exploitable code. Examples include Address Space Layout Randomization (ASLR) [REF-58] [REF-60] and Position-Independent Executables (PIE) [REF-64]. Imported…
Effectiveness: Defense in Depth
Examples (2)
While buffer overflow examples can be rather complex, it is possible to have very simple, yet still exploitable, stack-based buffer overflows:
#define BUFSIZE 256 int main(int argc, char **argv) { char buf[BUFSIZE]; strcpy(buf, argv[1]); }
Bad · C
This example takes an IP address from a user, verifies that it is well formed and then looks up the hostname and copies it into a buffer.
void host_lookup(char *user_supplied_addr){ struct hostent *hp; in_addr_t *addr; char hostname[64]; in_addr_t inet_addr(const char *cp); /*routine that ensures user_supplied_addr is in the right format for conversion */ validate_addr_form(user_supplied_addr); addr = inet_addr(user_supplied_addr); hp = gethostbyaddr( addr, sizeof(struct in_addr), AF_INET); strcpy(hostname, hp->h_name); }
Bad · C
CVE IDTitleCVSSSeverityPublished
CVE-2026-48389 DNG SDK | Stack-based Buffer Overflow (CWE-121) — DNG SDK 7.8 High2026-07-20
CVE-2026-16277 Rpcbind: rpcbind: stack buffer overflow in rpcinfo rpcbaddrlist() — Red Hat Enterprise Linux 10 6.5 Medium2026-07-20
CVE-2026-16248 Tenda AC10 httpd/netctrl AdvSetLanip fromAdvSetLanip stack-based overflow — AC10 8.8 High2026-07-20
CVE-2026-16097 Shibby Tomato Scheduler Name sub_42537C stack-based overflow — Tomato 8.8 High2026-07-18
CVE-2026-16096 Shibby Tomato webmon_recent_domains sub_40BB50 stack-based overflow — Tomato 8.8 High2026-07-18
CVE-2026-56455 HCL DFXAnalytics is affected by a Buffer Overflow vulnerability that can lead to a Denial of Service (DoS). — DFXAnalytics 5.3 Medium2026-07-16
CVE-2026-48863 Libsolv: stack-based buffer overflow in libsolv eddsa pgp signature verification allows denial of service — libsolv 7.5 High2026-07-16
CVE-2021-27137 DD-WRT 缓冲区错误漏洞 — DD-WRT 8.1 High2026-07-16
CVE-2026-62349 TDengine: Off-by-One Buffer Overflow — TDengine 8.3 High2026-07-15
CVE-2026-47971 Media Encoder | Stack-based Buffer Overflow (CWE-121) — Adobe Media Encoder 7.8 High2026-07-14
CVE-2026-47477 NVIDIA Triton Inference Server 缓冲区错误漏洞 — Triton Inference Server 7.5 High2026-07-14
CVE-2026-50527 .NET Framework Denial of Service Vulnerability — .NET 10.0 7.5 High2026-07-14
CVE-2026-62655 A DoS vulnerability due to stack overflow exists in certain NETGEAR Orbi models — RBR860--2026-07-14
CVE-2026-4017 Buffer overflow in the QNX Neutrino kernel impacts versions of the QNX Software Development Platform and QNX OS for Safety — QNX Software Development Platform 7.4 High2026-07-14
CVE-2026-57091 Windows File History Service Elevation of Privilege Vulnerability — Windows 10 Version 1607 7.8 High2026-07-14
CVE-2026-56642 Microsoft Fabric Data Warehouse Remote Code Execution Vulnerability — Service Fabric 8.8 High2026-07-14
CVE-2026-55134 Microsoft Word Remote Code Execution Vulnerability — Microsoft 365 Apps for Enterprise 7.8 High2026-07-14
CVE-2026-55038 Microsoft Word Remote Code Execution Vulnerability — Microsoft 365 Apps for Enterprise 7.8 High2026-07-14
CVE-2026-55055 Microsoft Word Remote Code Execution Vulnerability — Microsoft 365 Apps for Enterprise 7.8 High2026-07-14
CVE-2026-55141 Microsoft Excel Remote Code Execution Vulnerability — Microsoft 365 Apps for Enterprise 7.8 High2026-07-14
CVE-2026-50501 Windows Resilient File System (ReFS) Remote Code Execution Vulnerability — Windows 11 Version 24H2 7.8 High2026-07-14
CVE-2026-50411 Windows Active Directory Federation Services Denial of Service Vulnerability — Microsoft .NET Framework 3.5 7.5 High2026-07-14
CVE-2026-50387 Windows GDI Elevation of Privilege Vulnerability — Microsoft Office 365 for Mac 7.8 High2026-07-14
CVE-2026-50355 Windows Active Directory Federation Services Denial of Service Vulnerability — Microsoft .NET Framework 3.5 7.5 High2026-07-14
CVE-2026-50368 Windows Active Directory Federation Services Denial of Service Vulnerability — Microsoft .NET Framework 3.5 7.5 High2026-07-14
CVE-2026-50400 Windows App Package Installer Elevation of Privilege Vulnerability — Windows 10 Version 1607 7.8 High2026-07-14
CVE-2026-50412 Windows NTFS Elevation of Privilege Vulnerability — Windows 10 Version 1607 7.8 High2026-07-14
CVE-2026-50304 Windows Active Directory Federation Services Denial of Service Vulnerability — Microsoft .NET Framework 3.5 7.5 High2026-07-14
CVE-2026-50318 Windows Resilient File System (ReFS) Elevation of Privilege Vulnerability — Windows 10 Version 1607 7.8 High2026-07-14
CVE-2026-49789 Windows NTFS Elevation of Privilege Vulnerability — Windows 10 Version 1607 7.3 High2026-07-14

Vulnerabilities classified as CWE-121 (栈缓冲区溢出) represent 2749 CVEs. The CWE taxonomy describes the weakness; review individual CVEs for product-specific impact.