First published: Tue Nov 05 2024(Updated: )
In the Linux kernel, the following vulnerability has been resolved: x86: fix user address masking non-canonical speculation issue It turns out that AMD has a "Meltdown Lite(tm)" issue with non-canonical accesses in kernel space. And so using just the high bit to decide whether an access is in user space or kernel space ends up with the good old "leak speculative data" if you have the right gadget using the result: CVE-2020-12965 “Transient Execution of Non-Canonical Accesses“ Now, the kernel surrounds the access with a STAC/CLAC pair, and those instructions end up serializing execution on older Zen architectures, which closes the speculation window. But that was true only up until Zen 5, which renames the AC bit [1]. That improves performance of STAC/CLAC a lot, but also means that the speculation window is now open. Note that this affects not just the new address masking, but also the regular valid_user_address() check used by access_ok(), and the asm version of the sign bit check in the get_user() helpers. It does not affect put_user() or clear_user() variants, since there's no speculative result to be used in a gadget for those operations.
Credit: 416baaa9-dc9f-4396-8d5f-8c081fb06d67
Affected Software | Affected Version | How to fix |
---|---|---|
Linux Kernel | >=6.4<6.11.6 | |
Linux Kernel | =6.12-rc1 | |
Linux Kernel | =6.12-rc2 | |
Linux Kernel | =6.12-rc3 | |
Linux Kernel | =6.12-rc4 | |
debian/linux | 5.10.223-1 5.10.226-1 6.1.123-1 6.1.128-1 6.12.12-1 6.12.15-1 |
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CVE-2024-50102 is considered a high-severity vulnerability due to its potential impact on system security.
To mitigate CVE-2024-50102, users should update their Linux kernel to the latest stable version that includes the fix.
CVE-2024-50102 affects Linux kernel versions up to 6.11.6 and pre-release versions 6.12-rc1 through 6.12-rc4.
CVE-2024-50102 involves a non-canonical speculation issue related to AMD processors that could allow information leaks from kernel memory.
Yes, CVE-2024-50102 specifically affects the x86 architecture, particularly AMD processors.