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CWE-122 (堆缓冲区溢出) — Vulnerability Class 1863

1863 vulnerabilities classified as CWE-122 (堆缓冲区溢出). AI Chinese analysis included.

CWE-122 represents a critical memory safety weakness where an application writes data beyond the allocated boundaries of a heap-allocated buffer, typically created via functions like malloc. This vulnerability arises when developers fail to validate input lengths or perform insufficient bounds checking before copying data into dynamically allocated memory regions. Attackers exploit this flaw by crafting malicious inputs that exceed buffer limits, allowing them to overwrite adjacent heap metadata or control structures. Such overwrites can corrupt the heap manager’s internal state, leading to application crashes, data leakage, or arbitrary code execution by hijacking control flow. To prevent heap-based buffer overflows, developers must rigorously validate all input sizes against buffer capacities, utilize safe string handling libraries that enforce length limits, and employ modern memory-safe programming languages that automatically manage memory boundaries, thereby eliminating manual pointer arithmetic errors.

MITRE CWE Description
A heap overflow condition is a buffer overflow, where the buffer that can be overwritten is allocated in the heap portion of memory, generally meaning that the buffer was allocated using a routine such as malloc().
Common Consequences (3)
AvailabilityDoS: 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 ControlExecute Unauthorized Code or Commands, Bypass Protection Mechanism, Modify Memory
Buffer overflows often can be used to execute arbitrary code, which is usually outside the scope of a program's implicit security policy. Besides important user data, heap-based overflows can be used to overwrite function pointers that may be living in memory, pointing it to the attacker's code. Eve…
Integrity, Confidentiality, Availability, Access Control, OtherExecute 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)
Pre-design: Use a language or compiler that performs automatic bounds checking.
Architecture and DesignUse an abstraction library to abstract away risky APIs. Not a complete solution.
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
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
ImplementationImplement and perform bounds checking on input.
Examples (2)
While buffer overflow examples can be rather complex, it is possible to have very simple, yet still exploitable, heap-based buffer overflows:
#define BUFSIZE 256 int main(int argc, char **argv) { char *buf; buf = (char *)malloc(sizeof(char)*BUFSIZE); strcpy(buf, argv[1]); }
Bad · C
This example applies an encoding procedure to an input string and stores it into a buffer.
char * copy_input(char *user_supplied_string){ int i, dst_index; char *dst_buf = (char*)malloc(4*sizeof(char) * MAX_SIZE); if ( MAX_SIZE <= strlen(user_supplied_string) ){ die("user string too long, die evil hacker!"); } dst_index = 0; for ( i = 0; i < strlen(user_supplied_string); i++ ){ if( '&' == user_supplied_string[i] ){ dst_buf[dst_index++] = '&'; dst_buf[dst_index++] = 'a'; dst_buf[dst_index++] = 'm'; dst_buf[dst_index++] = 'p'; dst_buf[dst_index++] = ';'; } else if ('<' == user_supplied_string[i] ){ /* encode to &lt; */ } else dst_buf[dst_index++] = user_supplied_string[i]; } return ds
Bad · C
CVE IDTitleCVSSSeverityPublished
CVE-2024-6135 BT:Classic: Multiple missing buf length checks — Zephyr 7.6 High2024-09-13
CVE-2024-6258 BT: Missing length checks of net_buf in rfcomm_handle_data — Zephyr 6.8 Medium2024-09-13
CVE-2024-43756 Photoshop Desktop | Heap-based Buffer Overflow (CWE-122) — Photoshop Desktop 7.8 High2024-09-13
CVE-2024-39380 After Effects | Heap-based Buffer Overflow (CWE-122) — After Effects 7.8 High2024-09-13
CVE-2024-8636 Google Chrome 安全漏洞 — Chrome 8.8AIHighAI2024-09-11
CVE-2024-38045 Windows TCP/IP Remote Code Execution Vulnerability — Windows 10 Version 1809 8.1 High2024-09-10
CVE-2024-21416 Windows TCP/IP Remote Code Execution Vulnerability — Windows 10 Version 1809 8.1 High2024-09-10
CVE-2024-38237 Kernel Streaming WOW Thunk Service Driver Elevation of Privilege Vulnerability — Windows 10 Version 1809 7.8 High2024-09-10
CVE-2024-38238 Kernel Streaming Service Driver Elevation of Privilege Vulnerability — Windows 10 Version 1809 7.8 High2024-09-10
CVE-2024-38242 Kernel Streaming Service Driver Elevation of Privilege Vulnerability — Windows 10 Version 1809 7.8 High2024-09-10
CVE-2024-26191 Microsoft SQL Server Native Scoring Remote Code Execution Vulnerability — Microsoft SQL Server 2017 (GDR) 8.8 High2024-09-10
CVE-2024-37335 Microsoft SQL Server Native Scoring Remote Code Execution Vulnerability — Microsoft SQL Server 2017 (GDR) 8.8 High2024-09-10
CVE-2024-8443 Libopensc: heap buffer overflow in openpgp driver when generating key 2.9 Low2024-09-10
CVE-2024-40754 SAMSUNG Escargot 安全漏洞 — Escargot 9.8AICriticalAI2024-09-10
CVE-2024-33698 Siemens SIMATIC 安全漏洞 — Opcenter Quality 9.8 Critical2024-09-10
CVE-2024-45306 heap-buffer-overflow in Vim — vim 4.5 Medium2024-09-02
CVE-2024-8198 Google Chrome 安全漏洞 — Chrome 8.8AIHighAI2024-08-28
CVE-2024-8193 Google Chrome 安全漏洞 — Chrome 8.8AIHighAI2024-08-28
CVE-2024-43802 heap-buffer-overflow in ins_typebuf() in Vim < 9.1.0697 — vim 4.5 Medium2024-08-26
CVE-2024-43790 heap-buffer-overflow in do_search() in Vim < 9.1.0689 — vim 4.5 Medium2024-08-22
CVE-2024-7973 Google Chrome 安全漏洞 — Chrome 8.8AIHighAI2024-08-21
CVE-2024-7967 Google Chrome 安全漏洞 — Chrome 8.8AIHighAI2024-08-21
CVE-2024-42438 Zoom Workplace Apps, SDKs, Rooms Clients, and Rooms Controllers - Buffer Overflow — Zoom Workplace Apps, SDKs, Rooms Clients, and Rooms Controllers 6.5 Medium2024-08-14
CVE-2024-42437 Zoom Workplace Apps, SDKs, Rooms Clients, and Rooms Controllers - Buffer Overflow — Zoom Workplace Apps, SDKs, Rooms Clients, and Rooms Controllers 6.5 Medium2024-08-14
CVE-2024-42436 Zoom Workplace Apps, SDKs, Rooms Clients, and Rooms Controllers - Buffer Overflow — Zoom Workplace Apps, SDKs, Rooms Clients, and Rooms Controllers 6.5 Medium2024-08-14
CVE-2024-39825 Zoom Workplace Apps and Rooms Clients - Buffer Overflow — Zoom Workplace Apps and Rooms Clients 8.5 High2024-08-14
CVE-2024-41850 Adobe Indesign 2024 TIF File Parsing Heap Memory Corruption — InDesign Desktop 7.8 High2024-08-14
CVE-2024-41853 Indesign 2024 EPS File Parsing Heap Memory Corruption Remote Code Execution Vulnerability — InDesign Desktop 7.8 High2024-08-14
CVE-2024-38120 Windows Routing and Remote Access Service (RRAS) Remote Code Execution Vulnerability — Windows Server 2019 8.8 High2024-08-13
CVE-2024-38170 Microsoft Excel Remote Code Execution Vulnerability — Microsoft 365 Apps for Enterprise 7.1 High2024-08-13

Vulnerabilities classified as CWE-122 (堆缓冲区溢出) represent 1863 CVEs. The CWE taxonomy describes the weakness; review individual CVEs for product-specific impact.