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OSV
OSV
•added 2026/03/26 6:00 p.m.•9 views

GHSA-PV9V-5J35-XWCR libcrux Panics During Standalone MAC Operations

An incorrect constant for the key length in libcrux-poly1305 caused the standalone MAC function libcruxpoly1305::mac to always panic with an out-of-bounds memory access. Impact Applications wishing to use libcrux-poly1305 as a standalone MAC would experience panics. The use of libcrux-poly1305 in...

8.7CVSS5.9AI score
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RedhatCVE
RedhatCVE
•added 2026/03/26 3:18 p.m.•16 views

CVE-2026-3579

wolfSSL 5.8.4 on RISC-V RV32I architectures lacks a constant-time software implementation for 64-bit multiplication. The compiler-inserted muldi3 subroutine executes in variable time based on operand values. This affects multiple SP math functions sp256mul9, sp256sqr9, etc., leading to a timing...

5.9CVSS5.8AI score0.0027EPSS
SaveExploits0References1
Microsoft CVE
Microsoft CVE
•added 2026/03/26 8:03 a.m.•19 views

ksmbd: Compare MACs in constant time

...

7.4CVSS5.8AI score0.00392EPSS
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RedhatCVE
RedhatCVE
•added 2026/03/25 6:47 p.m.•16 views

CVE-2026-23364

A flaw was found in ksmbd, a Linux kernel module. This vulnerability stems from the use of a non-constant time memory comparison function when verifying Message Authentication Codes MACs. A remote attacker could exploit this timing difference to conduct a timing attack, potentially leading to the...

7.4CVSS5.8AI score0.00392EPSS
SaveExploits0References4
SUSE CVE
SUSE CVE
•added 2026/03/25 4:55 p.m.•12 views

SUSE CVE-2026-23364

In the Linux kernel, the following vulnerability has been resolved: ksmbd: Compare MACs in constant time To prevent timing attacks, MAC comparisons need to be constant-time. Replace the memcmp with the correct function, cryptomemneq...

7.4CVSS5.7AI score0.00392EPSS
SaveExploits0References3
Snyk
Snyk
•added 2026/03/25 4:14 p.m.•15 views

Observable Timing Discrepancy

Overview Affected versions of this package are vulnerable to Observable Timing Discrepancy due to the cryptohmac.cc module using memcmp, a non-constant-time comparison function to validate user-provided HMAC signatures, rather than the timing-safe equivalents used elsewhere in the codebase. An...

6.3CVSS6.9AI score0.00385EPSS
SaveExploits0References2
EUVD
EUVD
•added 2026/03/25 12:30 p.m.•15 views

EUVD-2026-15344

In the Linux kernel, the following vulnerability has been resolved: ksmbd: Compare MACs in constant time To prevent timing attacks, MAC comparisons need to be constant-time. Replace the memcmp with the correct function, cryptomemneq...

5.6AI score0.00392EPSS
SaveExploits0References7
NVD
NVD
•added 2026/03/25 11:16 a.m.•18 views

CVE-2026-23364

In the Linux kernel, the following vulnerability has been resolved: ksmbd: Compare MACs in constant time To prevent timing attacks, MAC comparisons need to be constant-time. Replace the memcmp with the correct function, cryptomemneq...

7.4CVSS0.00392EPSS
SaveExploits0References7
UbuntuCve
UbuntuCve
•added 2026/03/25 11:16 a.m.•22 views

CVE-2026-23364

In the Linux kernel, the following vulnerability has been resolved: ksmbd: Compare MACs in constant time To prevent timing attacks, MAC comparisons need to be constant-time. Replace the memcmp with the correct function, cryptomemneq...

7.4CVSS6.4AI score0.00392EPSS
SaveExploits0References28
OSV
OSV
•added 2026/03/25 11:16 a.m.•19 views

UBUNTU-CVE-2026-23364

In the Linux kernel, the following vulnerability has been resolved: ksmbd: Compare MACs in constant time To prevent timing attacks, MAC comparisons need to be constant-time. Replace the memcmp with the correct function, cryptomemneq...

7.4CVSS6.5AI score0.00392EPSS
SaveExploits0References29
OSV
OSV
•added 2026/03/25 10:27 a.m.•17 views

CVE-2026-23364 ksmbd: Compare MACs in constant time

In the Linux kernel, the following vulnerability has been resolved: ksmbd: Compare MACs in constant time To prevent timing attacks, MAC comparisons need to be constant-time. Replace the memcmp with the correct function, cryptomemneq...

7.4CVSS5.7AI score
SaveExploits0References10
Cvelist
Cvelist
•added 2026/03/25 10:27 a.m.•43 views

CVE-2026-23364 ksmbd: Compare MACs in constant time

In the Linux kernel, the following vulnerability has been resolved: ksmbd: Compare MACs in constant time To prevent timing attacks, MAC comparisons need to be constant-time. Replace the memcmp with the correct function, cryptomemneq...

7.4CVSS0.00392EPSS
SaveExploits0References7
attackerkb
attackerkb
•added 2026/03/25 10:27 a.m.•21 views

CVE-2026-23364

In the Linux kernel, the following vulnerability has been resolved: ksmbd: Compare MACs in constant time To prevent timing attacks, MAC comparisons need to be constant-time. Replace the memcmp with the correct function, cryptomemneq...

5.6AI score0.00392EPSS
SaveExploits0References7Affected Software1
CVE
CVE
•added 2026/03/25 10:27 a.m.•56 views

CVE-2026-23364

CVE-2026-23364 concerns the Linux kernel’s ksmbd path, where MAC comparisons were not performed in constant time. The underlying issue is a timing-attack-prone memcmp() usage; the recommended fix is to replace memcmp() with crypto_memneq() to ensure constant-time comparisons. The vulnerability is...

7.4CVSS5.6AI score0.00392EPSS
SaveExploits0References7Affected Software1
Debian CVE
Debian CVE
•added 2026/03/25 10:27 a.m.•23 views

CVE-2026-23364

In the Linux kernel, the following vulnerability has been resolved: ksmbd: Compare MACs in constant time To prevent timing attacks, MAC comparisons need to be constant-time. Replace the memcmp with the correct function, cryptomemneq...

7.4CVSS5.1AI score0.00392EPSS
SaveExploits0
CNNVD
CNNVD
•added 2026/03/25 12:00 a.m.•22 views

Linux kernel 安全漏洞

The Linux kernel is the kernel used by the Linux operating system developed by the Linux Foundation in the United States. There is a security vulnerability in the Linux kernel, which stems from comparing MAC addresses using non-constant time functions, potentially leading to timing attacks...

7.4CVSS7AI score0.00392EPSS
SaveExploits0References7
EUVD
EUVD
•added 2026/03/19 9:30 p.m.•19 views

EUVD-2026-13170

wolfSSL 5.8.4 on RISC-V RV32I architectures lacks a constant-time software implementation for 64-bit multiplication. The compiler-inserted muldi3 subroutine executes in variable time based on operand values. This affects multiple SP math functions sp256mul9, sp256sqr9, etc., leading to a timing...

2.1CVSS5.8AI score0.0027EPSS
SaveExploits0References2
EUVD
EUVD
•added 2026/03/19 9:30 p.m.•32 views

EUVD-2026-13172

In wolfSSL 5.8.4, constant-time masking logic in sp256getentry2569 is optimized into conditional branches bnez by GCC when targeting RISC-V RV32I with -O3. This transformation breaks the side-channel resistance of ECC scalar multiplication, potentially allowing a local attacker to recover secret...

2.1CVSS5.8AI score0.00123EPSS
SaveExploits0References2
NVD
NVD
•added 2026/03/19 8:16 p.m.•23 views

CVE-2026-3579

wolfSSL 5.8.4 on RISC-V RV32I architectures lacks a constant-time software implementation for 64-bit multiplication. The compiler-inserted muldi3 subroutine executes in variable time based on operand values. This affects multiple SP math functions sp256mul9, sp256sqr9, etc., leading to a timing...

5.9CVSS0.0027EPSS
SaveExploits0References1
OSV
OSV
•added 2026/03/19 8:16 p.m.•19 views

UBUNTU-CVE-2026-3579

wolfSSL 5.8.4 on RISC-V RV32I architectures lacks a constant-time software implementation for 64-bit multiplication. The compiler-inserted muldi3 subroutine executes in variable time based on operand values. This affects multiple SP math functions sp256mul9, sp256sqr9, etc., leading to a timing...

5.9CVSS5.8AI score0.0027EPSS
SaveExploits0References3
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