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CWE-120 (未进行输入大小检查的缓冲区拷贝(传统缓冲区溢出)) — Vulnerability Class 1914

1914 vulnerabilities classified as CWE-120 (未进行输入大小检查的缓冲区拷贝(传统缓冲区溢出)). AI Chinese analysis included.

CWE-120 represents a critical memory safety vulnerability where software copies data into a fixed-size buffer without validating the input’s length against the destination’s capacity. This classic buffer overflow occurs when an attacker supplies input exceeding the allocated memory space, causing data to spill into adjacent memory regions. Exploitation typically involves injecting malicious code or altering program control flow, such as overwriting return addresses to execute arbitrary commands. Developers prevent this weakness by implementing rigorous bounds checking before any copy operation, ensuring the input size never exceeds the buffer’s limits. Utilizing safer, language-specific functions that automatically handle size verification, or adopting modern programming languages with built-in memory safety features, effectively mitigates this risk and preserves application integrity against memory corruption attacks.

MITRE CWE Description
The product copies an input buffer to an output buffer without verifying that the size of the input buffer is less than the size of the output buffer.
Common Consequences (2)
Integrity, Confidentiality, Availability Modify Memory, Execute Unauthorized Code or Commands
Buffer overflows often can be used to execute arbitrary code, which is usually outside the scope of the product's implicit security policy. This can often be used to subvert any other security service.
Availability Modify Memory, DoS: Crash, Exit, or Restart, DoS: Resource Consumption (CPU)
Buffer overflows generally lead to crashes. Other attacks leading to lack of availability are possible, including putting the product into an infinite loop.
Mitigations (5)
Requirements Use a language that does not allow this weakness to occur or provides constructs that make this weakness easier to avoid. For example, many languages that perform their own memory management, such as Java and Perl, are not subject to buffer overflows. Other languages, such as Ada and C#, typically provide overflow protection, but the protection can be disabled by the programmer. Be wary that a lan…
Architecture and Design Use a vetted library or framework that does not allow this weakness to occur or provides constructs that make this weakness easier to avoid. Examples include the Safe C String Library (SafeStr) by Messier and Viega [REF-57], and the Strsafe.h library from Microsoft [REF-56]. These libraries provide safer versions of overflow-prone string-handling functions.
Operation, Build and Compilation Use 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
Implementation Consider adhering to the following rules when allocating and managing an application's memory: Double check that your buffer is as large as you specify. When using functions that accept a number of bytes to copy, such as strncpy(), be aware that if the destination buffer size is equal to the source buffer size, it may not NULL-terminate the string. Check buffer boundaries if accessing the buffer i…
Implementation Assume all input is malicious. Use an "accept known good" input validation strategy, i.e., use a list of acceptable inputs that strictly conform to specifications. Reject any input that does not strictly conform to specifications, or transform it into something that does. When performing input validation, consider all potentially relevant properties, including length, type of input, the full range…
Examples (2)
The following code asks the user to enter their last name and then attempts to store the value entered in the last_name array.
char last_name[20]; printf ("Enter your last name: "); scanf ("%s", last_name);
Bad · C
The following code attempts to create a local copy of a buffer to perform some manipulations to the data.
void manipulate_string(char * string){ char buf[24]; strcpy(buf, string); ... }
Bad · C
CVE ID Title CVSS Severity Published
CVE-2025-4344 D-Link DIR-600L formLogin buffer overflow — DIR-600L 8.8 High 2025-05-06
CVE-2025-25052 arkcompiler_ets_runtime has a buffer overflow vulnerability — OpenHarmony 3.3 Low 2025-05-06
CVE-2025-4343 D-Link DIR-600L formEasySetupWizard buffer overflow — DIR-600L 8.8 High 2025-05-06
CVE-2024-49830 Buffer Copy Without Checking Size of Input (`Classic Buffer Overflow`) in Audio — Snapdragon 6.6 Medium 2025-05-06
CVE-2024-49829 Buffer Copy Without Checking Size of Input (`Classic Buffer Overflow`) in Camera — Snapdragon 6.7 Medium 2025-05-06
CVE-2025-4342 D-Link DIR-600L formEasySetupWizard3 buffer overflow — DIR-600L 8.8 High 2025-05-06
CVE-2025-4299 Tenda AC1206 openSchedWifi setSchedWifi buffer overflow — AC1206 8.8 High 2025-05-06
CVE-2025-4298 Tenda AC1206 setcfm formSetCfm buffer overflow — AC1206 8.8 High 2025-05-05
CVE-2025-4290 PCMan FTP Server SMNT Command buffer overflow — FTP Server 7.3 High 2025-05-05
CVE-2025-4289 PCMan FTP Server RNTO Command buffer overflow — FTP Server 7.3 High 2025-05-05
CVE-2025-4288 PCMan FTP Server RNFR Command buffer overflow — FTP Server 7.3 High 2025-05-05
CVE-2025-4255 PCMan FTP Server RMD Command buffer overflow — FTP Server 7.3 High 2025-05-05
CVE-2025-4254 PCMan FTP Server LIST Command buffer overflow — FTP Server 7.3 High 2025-05-04
CVE-2025-4253 PCMan FTP Server HASH Command buffer overflow — FTP Server 7.3 High 2025-05-04
CVE-2025-4252 PCMan FTP Server APPEND Command buffer overflow — FTP Server 7.3 High 2025-05-04
CVE-2025-4251 PCMan FTP Server RMDIR Command buffer overflow — FTP Server 7.3 High 2025-05-04
CVE-2025-4240 PCMan FTP Server LCD Command buffer overflow — FTP Server 7.3 High 2025-05-03
CVE-2025-4239 PCMan FTP Server TYPE Command buffer overflow — FTP Server 7.3 High 2025-05-03
CVE-2025-4238 PCMan FTP Server MGET Command buffer overflow — FTP Server 7.3 High 2025-05-03
CVE-2025-4237 PCMan FTP Server MDELETE Command buffer overflow — FTP Server 7.3 High 2025-05-03
CVE-2025-4236 PCMan FTP Server MDIR Command buffer overflow — FTP Server 7.3 High 2025-05-03
CVE-2025-4184 PCMan FTP Server QUOTE Command buffer overflow — FTP Server 7.3 High 2025-05-01
CVE-2025-4183 PCMan FTP Server RECV Command buffer overflow — FTP Server 7.3 High 2025-05-01
CVE-2025-4182 PCMan FTP Server BELL Command buffer overflow — FTP Server 7.3 High 2025-05-01
CVE-2025-4181 PCMan FTP Server SEND Command buffer overflow — FTP Server 7.3 High 2025-05-01
CVE-2025-4180 PCMan FTP Server TRACE Command buffer overflow — FTP Server 7.3 High 2025-05-01
CVE-2025-4162 PCMan FTP Server ASCII Command buffer overflow — FTP Server 7.3 High 2025-05-01
CVE-2025-4161 PCMan FTP Server VERBOSE Command buffer overflow — FTP Server 7.3 High 2025-05-01
CVE-2025-4160 PCMan FTP Server LS Command buffer overflow — FTP Server 7.3 High 2025-05-01
CVE-2025-4159 PCMan FTP Server GLOB Command buffer overflow — FTP Server 7.3 High 2025-05-01

Vulnerabilities classified as CWE-120 (未进行输入大小检查的缓冲区拷贝(传统缓冲区溢出)) represent 1914 CVEs. The CWE taxonomy describes the weakness; review individual CVEs for product-specific impact.