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CWE-125 跨界内存读 类漏洞列表 3492

CWE-125 跨界内存读 类弱点 3492 条 CVE 漏洞汇总,含 AI 中文分析。

CWE-125 越界读取属于内存安全漏洞,指程序访问了缓冲区边界之外的内存区域。攻击者利用此缺陷可读取敏感数据或引发信息泄露,甚至通过特定构造触发逻辑错误以辅助后续攻击。开发者应严格实施边界检查,确保索引在有效范围内,并使用支持自动边界检测的高级语言或静态分析工具,从源头杜绝非法内存访问。

MITRE CWE 官方描述
CWE:CWE-125 Out-of-bounds Read 英文:The product reads data past the end, or before the beginning, of the intended buffer. 中文:该产品在预期缓冲区(buffer)的末尾之后或开头之前读取数据。
常见影响 (4)
Confidentiality Read Memory
An attacker could get secret values such as cryptographic keys, PII, memory addresses, or other information that could be used in additional attacks.
Confidentiality Bypass Protection Mechanism
Out-of-bounds memory could contain memory addresses or other information that can be used to bypass ASLR and other protection mechanisms in order to improve the reliability of exploiting a separate weakness for code execution.
Availability DoS: Crash, Exit, or Restart
An attacker could cause a segmentation fault or crash by causing memory to be read outside of the bounds of the buffer. This is especially likely when the code reads a variable amount of data and assumes that a sentinel exists to stop the read operation, such as a NUL in a string.
Other Varies by Context
The read operation could produce other undefined or unexpected results.
缓解措施 (2)
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…
Architecture and Design Use a language that provides appropriate memory abstractions.
代码示例 (2)
In the following code, the method retrieves a value from an array at a specific array index location that is given as an input parameter to the method
int getValueFromArray(int *array, int len, int index) { int value; // check that the array index is less than the maximum // length of the array if (index < len) { // get the value at the specified index of the array value = array[index]; } // if array index is invalid then output error message // and return value indicating error else { printf("Value is: %d\n", array[index]); value = -1; } return value; }
Bad · C
... // check that the array index is within the correct // range of values for the array if (index >= 0 && index < len) { ...
Good · C
In the following C/C++ example the method processMessageFromSocket() will get a message from a socket, placed into a buffer, and will parse the contents of the buffer into a structure that contains the message length and the message body. A for loop is used to copy the message body into a local character string which will be passed to another method for processing.
int processMessageFromSocket(int socket) { int success; char buffer[BUFFER_SIZE]; char message[MESSAGE_SIZE]; // get message from socket and store into buffer //Ignoring possibliity that buffer > BUFFER_SIZE if (getMessage(socket, buffer, BUFFER_SIZE) > 0) { // place contents of the buffer into message structure ExMessage *msg = recastBuffer(buffer); // copy message body into string for processing int index; for (index = 0; index < msg->msgLength; index++) { message[index] = msg->msgBody[index]; } message[index] = '\0'; // process message success = processMessage(message); } return success; }
Bad · C
CVE ID 标题 CVSS 风险等级 Published
CVE-2026-17745 Google Chrome 缓冲区错误漏洞 — Chrome - - 2026-07-30
CVE-2026-17701 Google Chrome 缓冲区错误漏洞 — Chrome - - 2026-07-30
CVE-2026-17678 Google Chrome 缓冲区错误漏洞 — Chrome - - 2026-07-30
CVE-2026-64685 ImageMagick 缓冲区错误漏洞 — ImageMagick 5.3 Medium 2026-07-29
CVE-2026-10684 Zephyr Project zephyr 缓冲区错误漏洞 — zephyr 3.0 Low 2026-07-29
CVE-2026-17550 Autodesk AutoCAD 缓冲区错误漏洞 — AutoCAD 5.5 Medium 2026-07-29
CVE-2026-16465 Autodesk AutoCAD 缓冲区错误漏洞 — AutoCAD 6.1 Medium 2026-07-29
CVE-2026-58160 Apache Traffic Server 缓冲区错误漏洞 — Apache Traffic Server 6.5 Medium 2026-07-29
CVE-2026-50735 EnterpriseDB pglogical 缓冲区错误漏洞 — pglogical 6.1 Medium 2026-07-28
CVE-2026-17072 GStreamer 缓冲区错误漏洞 — Red Hat Enterprise Linux 10 3.3 Low 2026-07-28
CVE-2026-66759 GNOME GIMP 缓冲区错误漏洞 — GIMP 7.1 High 2026-07-27
CVE-2026-66731 facil.io 0.7.5-0.7.6 HTTP/1.1分块传输编码解析崩溃DoS漏洞 — facil.io 7.5 High 2026-07-27
CVE-2026-66729 facil.io 0.7.6 整数下溢拒绝服务漏洞 — facil.io 7.5 High 2026-07-27
CVE-2026-17572 HDF5 SOHM列表索引堆缓冲区溢出漏洞 — HDF5 5.5 Medium 2026-07-27
CVE-2026-15003 GNU Binutils 缓冲区错误漏洞 — Red Hat Hardened Images 5.6 Medium 2026-07-27
CVE-2026-17512 ggml whisper.cpp 缓冲区错误漏洞 — whisper.cpp 3.3 Low 2026-07-27
CVE-2026-58023 Apache Thrift 缓冲区错误漏洞 — Apache Thrift 6.9 Medium 2026-07-27
CVE-2026-66337 GNOME libsoup 缓冲区错误漏洞 — Red Hat Enterprise Linux 10 6.5 Medium 2026-07-24
CVE-2026-66034 libssh2 缓冲区错误漏洞 — libssh2 7.5 High 2026-07-24
CVE-2026-55732 LOYTEC LIP-ME20xC 缓冲区错误漏洞 — LIP-ME20xC 8.7 High 2026-07-24
CVE-2026-56391 GNU coreutils 缓冲区错误漏洞 — coreutils 4.6 Medium 2026-07-24
CVE-2026-16002 Mz Automation lib60870 缓冲区错误漏洞 — lib60870 8.2 High 2026-07-23
CVE-2026-65918 PyTorch 缓冲区错误漏洞 — vision 7.1 High 2026-07-23
CVE-2026-16768 GNOME gdk-pixbuf 缓冲区错误漏洞 — gdk-pixbuf 5.3 Medium 2026-07-23
CVE-2026-13077 MongoDB Server 缓冲区错误漏洞 — MongoDB Server 7.1 High 2026-07-22
CVE-2026-64833 FFmpeg 缓冲区错误漏洞 — FFmpeg 7.1 High 2026-07-22
CVE-2026-48029 strukturag libheif 缓冲区错误漏洞 — libheif 7.1 High 2026-07-22
CVE-2026-16473 BlueZ SBC 缓冲区错误漏洞 — Red Hat Enterprise Linux 10 4.3 Medium 2026-07-22
CVE-2026-10680 zephyrproject zephyr 缓冲区错误漏洞 — zephyr 7.6 High 2026-07-21
CVE-2026-47254 strukturag libheif 缓冲区错误漏洞 — libheif 6.1 Medium 2026-07-21

CWE-125(跨界内存读) 是常见的弱点类别,本平台收录该类弱点关联的 3492 条 CVE 漏洞。