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CWE-122 堆缓冲区溢出 类漏洞列表 2701

CWE-122 堆缓冲区溢出 类弱点 2701 条 CVE 漏洞汇总,含 AI 中文分析。

CWE-122 堆缓冲区溢出属于内存安全漏洞,指写入数据超出在堆内存(如通过 malloc 分配)中分配的缓冲区边界。攻击者利用此漏洞可覆盖相邻内存数据,导致程序崩溃或执行任意代码,从而获取系统控制权。开发者应避免此类风险,需严格验证输入长度,确保写入操作不超出缓冲区上限,并使用现代安全语言或库来自动管理内存边界。

MITRE CWE 官方描述
CWE:CWE-122 基于堆的缓冲区溢出(Heap-based Buffer Overflow) 英文:堆溢出(Heap overflow)条件是一种缓冲区溢出(Buffer overflow),其中可被覆盖的缓冲区(Buffer)是在内存的堆(Heap)部分分配的,通常意味着该缓冲区是使用 malloc() 等例程分配的。
常见影响 (3)
Availability 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 Control Execute 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, Other 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.
缓解措施 (5)
Pre-design: Use a language or compiler that performs automatic bounds checking.
Architecture and Design Use an abstraction library to abstract away risky APIs. Not a complete solution.
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
Operation, Build and Compilation Run 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
Implementation Implement and perform bounds checking on input.
代码示例 (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 ID 标题 CVSS 风险等级 Published
CVE-2019-18297 Siemens SPPA-T3000 缓冲区错误漏洞 — SPPA-T3000 MS3000 Migration Server 7.8 - 2019-12-12
CVE-2019-5154 LEAD Technologies LEADTOOLS 缓冲区错误漏洞 — LEADTOOLS 8.8 - 2019-12-11
CVE-2019-14895 Linux kernel 缓冲区错误漏洞 — kernel 9.8 - 2019-11-29
CVE-2019-14896 Linux kernel 缓冲区错误漏洞 — kernel 9.8 - 2019-11-27
CVE-2019-14815 Linux kernel 缓冲区错误漏洞 — kernel 7.8 - 2019-11-25
CVE-2019-18240 Fuji Electric V-Server 缓冲区错误漏洞 — Fuji Electric V-Server 4.0.6 and prior 9.8 - 2019-11-13
CVE-2019-5125 LEAD Technologies LEADTOOLS 缓冲区错误漏洞 — LEADTOOLS 8.8 - 2019-11-06
CVE-2019-5030 Antenna House Rainbow PDF Office Server Document Converter 缓冲区错误漏洞 — Antenna House 8.4 - 2019-10-31
CVE-2019-15679 TightVNC 缓冲区错误漏洞 — TightVNC 9.8 - 2019-10-29
CVE-2019-15678 TightVNC 缓冲区错误漏洞 — TightVNC 9.8 - 2019-10-29
CVE-2019-5046 Nitro Software NitroPDF 缓冲区错误漏洞 — NitroPDF 7.8 - 2019-10-09
CVE-2019-5048 Nitro Software NitroPDF 缓冲区错误漏洞 — NitroPDF 7.8 - 2019-10-09
CVE-2019-5050 Nitro Software NitroPDF 缓冲区错误漏洞 — NitroPDF 7.8 - 2019-10-09
CVE-2019-5045 Nitro Software NitroPDF 缓冲区错误漏洞 — NitroPDF 7.8 - 2019-10-09
CVE-2019-14814 Linux kernel 缓冲区错误漏洞 — kernel 7.8 - 2019-09-20
CVE-2019-14816 Linux kernel 缓冲区错误漏洞 — kernel 7.8 - 2019-09-20
CVE-2019-5482 HAXX libcurl 缓冲区错误漏洞 — curl 9.8 - 2019-09-16
CVE-2019-13536 Delta Electronics TPEditor 缓冲区错误漏洞 — TPEditor 7.8 - 2019-09-11
CVE-2019-5039 Openweave-core 缓冲区错误漏洞 — Nest Labs 8.8 - 2019-08-20
CVE-2019-5058 SDL2_image 缓冲区错误漏洞 — SDL 8.8 - 2019-07-31
CVE-2019-5057 SDL2_image 缓冲区错误漏洞 — SDL 8.8 - 2019-07-31
CVE-2019-10982 Delta Electronics CNCSoft ScreenEditor 缓冲区错误漏洞 — CNCSoft ScreenEditor 7.8 - 2019-07-24
CVE-2019-3570 Facebook HHVM 缓冲区错误漏洞 — HHVM 9.8 - 2019-07-18
CVE-2019-10192 Redis Labs Redis hyperloglog 缓冲区错误漏洞 — redis 7.2 - 2019-07-11
CVE-2019-10126 Linux kernel 缓冲区错误漏洞 — kernel 9.8 - 2019-06-14
CVE-2019-6530 Panasonic FPWIN Pro 缓冲区错误漏洞 — FPWIN Pro 7.8 - 2019-06-07
CVE-2019-3846 Linux kernel 缓冲区错误漏洞 — kernel 8.8 - 2019-06-03
CVE-2019-6740 Samsung Galaxy S9 ASN.1解析器缓冲区错误漏洞 — Galaxy S9 8.8 - 2019-06-03
CVE-2019-5436 Haxx libcurl 缓冲区错误漏洞 — curl 7.8 - 2019-05-28
CVE-2019-3568 Facebook WhatsApp 缓冲区错误漏洞 — WhatsApp for Android 9.8 - 2019-05-14

CWE-122(堆缓冲区溢出) 是常见的弱点类别,本平台收录该类弱点关联的 2701 条 CVE 漏洞。