13650 matches found
CVE-2025-13824
CVE-2025-13824 affects Rockwell Automation Micro820, Micro850, and Micro870 controllers. The vulnerability stems from improper handling of malformed CIP packets in the IPv6 stack during fuzzing, causing the controller to enter a hard fault and become unresponsive. On power cycle, it enters a reco...
CVE-2025-13824 Micro820®, Micro850®, Micro870® – Specialized Fuzzing Vulnerabilities
A security issue exists due to improper handling of malformed CIP packets during fuzzing. The controller enters a hard fault with solid red Fault LED and becomes unresponsive. Upon power cycle, the controller will enter recoverable fault where the MS LED and Fault LED become flashing red and...
CVE-2025-13823 Micro820®, Micro850®, Micro870® – Specialized Fuzzing Vulnerabilities
A security issue was found in the IPv6 stack in the Micro850 and Micro870 controllers when the controllers received multiple malformed packets during fuzzing. The controllers will go into recoverable fault with fault code 0xFE60. To recover the controller, clear the fault...
CVE-2025-13823 Micro820®, Micro850®, Micro870® – Specialized Fuzzing Vulnerabilities
A security issue was found in the IPv6 stack in the Micro850 and Micro870 controllers when the controllers received multiple malformed packets during fuzzing. The controllers will go into recoverable fault with fault code 0xFE60. To recover the controller, clear the fault...
CVE-2025-13823
CVE-2025-13823 affects Rockwell Automation Micro850 and Micro870 controllers in their IPv6 stack. When receiving multiple malformed packets during fuzzing, the controllers enter a recoverable fault with fault code 0xFE60. To recover, the fault must be cleared. Several connected advisories corrobo...
PT-2025-51236
A security issue was found in the IPv6 stack in the Micro850 and Micro870 controllers when the controllers received multiple malformed packets during fuzzing. The controllers will go into recoverable fault with fault code 0xFE60. To recover the controller, clear the fault...
PT-2025-51237
A security issue exists due to improper handling of malformed CIP packets during fuzzing. The controller enters a hard fault with solid red Fault LED and becomes unresponsive. Upon power cycle, the controller will enter recoverable fault where the MS LED and Fault LED become flashing red and...
Rockwell Automation多款产品 安全漏洞
The Rockwell Automation Micro820, among others, is a programmable controller from Rockwell Automation. A security vulnerability exists in several Rockwell Automation products that stems from improper handling of malformed CIP packets, which could cause the controller to enter an unrecoverable fau...
CVE-2025-67901
openrsync through 0.5.0, as used in OpenBSD through 7.8 and on other platforms, allows a client to cause a server SIGSEGV by specifying a length of zero for block data, because the relationship between p-rem and p-len is not checked...
PT-2025-51180
openrsync through 0.5.0, as used in OpenBSD through 7.8 and on other platforms, allows a client to cause a server SIGSEGV by specifying a length of zero for block data, because the relationship between p-rem and p-len is not checked...
Out-of-bounds Write
Overview Affected versions of this package are vulnerable to Out-of-bounds Write via the parsing process of DICOM files containing encapsulated PixelData fragments. An attacker can cause a segmentation fault and an application crash by supplying a crafted malicious DICOM file. Remediation Upgrade...
CVE-2025-11266
An out-of-bounds write vulnerability exists in the Grassroots DICOM library GDCM. The issue is triggered during parsing of a malformed DICOM file containing encapsulated PixelData fragments compressed image data stored as multiple fragments. This vulnerability leads to a segmentation fault caused...
CVE-2025-11266 Grassroots DICOM (GDCM) Out-of-bounds Write
An out-of-bounds write vulnerability exists in the Grassroots DICOM library GDCM. The issue is triggered during parsing of a malformed DICOM file containing encapsulated PixelData fragments compressed image data stored as multiple fragments. This vulnerability leads to a segmentation fault caused...
CVE-2025-36938
In U-Boot of appenduint32le, there is a possible fault injection due to a logic error in the code. This could lead to physical escalation of privilege with no additional execution privileges needed. User interaction is not needed for exploitation...
EUVD-2025-202882
In U-Boot of appenduint32le, there is a possible fault injection due to a logic error in the code. This could lead to physical escalation of privilege with no additional execution privileges needed. User interaction is not needed for exploitation...
CVE-2025-36938
In U-Boot of appenduint32le, there is a possible fault injection due to a logic error in the code. This could lead to physical escalation of privilege with no additional execution privileges needed. User interaction is not needed for exploitation...
CVE-2025-36938
In U-Boot of appenduint32le, there is a possible fault injection due to a logic error in the code. This could lead to physical escalation of privilege with no additional execution privileges needed. User interaction is not needed for exploitation...
CVE-2025-36938
In U-Boot of appenduint32le, there is a possible fault injection due to a logic error in the code. This could lead to physical escalation of privilege with no additional execution privileges needed. User interaction is not needed for exploitation...
CVE-2025-36938
CVE-2025-36938 concerns a fault injection vulnerability in U-Boot function append_uint32_le() caused by a logic error in the code. The issue enables physical elevation of privilege with no additional execution privileges required and no user interaction needed. Multiple sources (NVD/Red Hat/OSVed...
CVE-2025-36928
CVE-2025-36928 : The issue is a potential out-of-bounds write in GetHostAddress of gxp_buffer.h caused by an incorrect bounds check. This can enable local escalation of privilege with no extra execution privileges required and no user interaction needed. Affected reports appear in multiple feeds ...