Goal Reached Thanks to every supporter — we hit 100%!

Goal: 1000 CNY · Raised: 1336 CNY

100%

CWE-125 (跨界内存读) — Vulnerability Class 3495

3495 vulnerabilities classified as CWE-125 (跨界内存读). AI Chinese analysis included.

CWE-125, Out-of-bounds Read, is a memory safety weakness where software accesses memory locations outside the designated buffer boundaries, either before its start or past its end. This vulnerability typically arises from insufficient bounds checking during array indexing or pointer arithmetic, allowing attackers to read sensitive data such as stack canaries, cryptographic keys, or internal application state. By leveraging this flaw, adversaries can achieve information disclosure or potentially facilitate further exploitation techniques like heap spraying. Developers mitigate this risk by implementing rigorous input validation, utilizing static analysis tools to detect unsafe memory access patterns, and adopting safer programming languages or libraries that enforce automatic bounds checking. Additionally, employing compiler protections like Address Sanitizer during development helps identify these errors early, ensuring that memory reads remain strictly within allocated limits to prevent unauthorized data exposure.

MITRE CWE Description
The product reads data past the end, or before the beginning, of the intended buffer.
Common Consequences (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.
Mitigations (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.
Examples (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 Title CVSS Severity Published
CVE-2020-9749 Out-of-bounds read vulnerability in Adobe Animate 20.5 — Animate 7.8 High 2020-10-21
CVE-2020-24410 Adobe Illustrator PDF File Parsing Out-Of-Bounds Read Vulnerability — Illustrator 7.8 High 2020-10-20
CVE-2020-24409 Adobe Illustrator PDF File Parsing Out-Of-Bounds Read Vulnerability — Illustrator 7.8 High 2020-10-20
CVE-2020-6104 F2fs.Fsck 缓冲区错误漏洞 — F2FS-Tools 5.5 - 2020-10-15
CVE-2020-25188 LCDS LAquis SCADA 缓冲区错误漏洞 — LAquis SCADA 7.8 - 2020-10-14
CVE-2020-12911 AMD Radeon Directx 11 Driver缓冲区错误漏洞 — AMD Graphics Driver for Windows 5.5 - 2020-10-13
CVE-2020-12933 AMD Radeon Directx 11 Driver 处理程序功能缓冲区错误漏洞 — AMD Graphics Driver for Windows 5.5 - 2020-10-13
CVE-2020-17411 Foxit PhantomPDF 缓冲区错误漏洞 — PhantomPDF 3.3 - 2020-10-13
CVE-2020-5140 SonicWall SonicOS 缓冲区错误漏洞 — SonicOS 7.5 - 2020-10-12
CVE-2020-5134 SonicWall SonicOS 缓冲区错误漏洞 — SonicOS 6.5 - 2020-10-12
CVE-2020-7466 MPD 缓冲区错误漏洞 — MPD: FreeBSD PPP daemon 7.5 - 2020-10-06
CVE-2020-14377 Ubuntu DPDK 缓冲区错误漏洞 — dpdk 7.1 - 2020-09-30
CVE-2020-15208 Data corruption in tensorflow-lite — tensorflow 7.4 High 2020-09-25
CVE-2020-15211 Out of bounds access in tensorflow-lite — tensorflow 4.8 Medium 2020-09-25
CVE-2020-9745 Adobe Media Encoder PSD File Parsing Out-Of-Bounds Read Information Disclosure Vulnerability — Media Encoder 6.1 Medium 2020-09-18
CVE-2020-9744 Adobe Media Encoder WMV File Parsing Out-Of-Bounds Read Information Disclosure Vulnerability — Media Encoder 6.1 Medium 2020-09-18
CVE-2020-9739 Adobe Media Encoder FLV File Parsing Out-Of-Bounds Read Information Disclosure Vulnerability — Media Encoder 6.1 Medium 2020-09-18
CVE-2020-14314 Linux kernel 缓冲区错误漏洞 — kernel 5.5 Medium 2020-09-15
CVE-2020-9726 FrameMaker File Parsing Out-Of-Bounds Read Vulnerability — FrameMaker 6.1 Medium 2020-09-10
CVE-2020-14364 QEMU 安全漏洞 — QEMU 6.1 - 2020-08-31
CVE-2020-17390 Corel Parallels Desktop 缓冲区错误漏洞 — Desktop 8.8 - 2020-08-25
CVE-2020-8870 Foxit Studio Photo 缓冲区错误漏洞 — Studio Photo 8.8 - 2020-08-19
CVE-2020-15630 Foxit Studio Photo 缓冲区错误漏洞 — Studio Photo 7.3 - 2020-08-19
CVE-2020-16219 Delta Electronics TPEditor 缓冲区错误漏洞 — Delta Electronics TPEditor 7.8 - 2020-08-06
CVE-2020-16211 Advantech WebAccess HMI Designer 缓冲区错误漏洞 — Advantech WebAccess HMI Designer 5.5 - 2020-08-06
CVE-2020-16201 Delta Electronics CNCSoft ScreenEditor 缓冲区错误漏洞 — Delta Industrial Automation CNCSoft ScreenEditor 5.5 - 2020-08-04
CVE-2020-10037 Siemens SICAM MMU、SGU和T 缓冲区错误漏洞 — SICAM MMU 7.5 - 2020-07-14
CVE-2020-11095 Global OOB read in update_recv_primary_order in FreeRDP — FreeRDP 3.5 Low 2020-06-22
CVE-2020-11096 Global OOB read in update_read_cache_bitmap_v3_order in FreeRDP — FreeRDP 3.5 Low 2020-06-22
CVE-2020-11097 OOB read in ntlm_av_pair_get in FreeRDP — FreeRDP 3.5 Low 2020-06-22

Vulnerabilities classified as CWE-125 (跨界内存读) represent 3495 CVEs. The CWE taxonomy describes the weakness; review individual CVEs for product-specific impact.