CVE Tools

2nd Gen Epyc

18 CVEs tracked. None of them is in CISA KEV.

This hub aggregates every CVE we track for 2nd Gen Epyc, a product in the hardware firmware space. Use it to gauge the current risk picture and drill into individual advisories.

2nd Gen Epyc CVEs per month

Oct 2024 to Sep 2026. Point at a month, or focus the strip and use the arrow keys.
2nd Gen Epyc CVEs per month
MonthCVEs
2024-100
2024-110
2024-120
2025-010
2025-020
2025-030
2025-040
2025-050
2025-060
2025-070
2025-080
2025-090
2025-100
2025-110
2025-120
2026-010
2026-020
2026-030
2026-040
2026-050
2026-060
2026-070
2026-080
2026-090

Severity

How the 18 CVEs score on CVSS. Severity is not exploitation: KEV is counted above.

  • High844%
  • Medium950%
  • Low16%

Latest CVEs

The 15 most recently published vulnerabilities affecting 2nd Gen Epyc.

  1. CVE-2023-20532Insufficient input validation in the SMU may allow an attacker to improperly lock resources, potentially resulting in a denial of service. 5.3
  2. CVE-2023-20531Insufficient bound checks in the SMU may allow an attacker to update the SRAM from/to address space to an invalid value potentially resulting in a denial of service. 7.5
  3. CVE-2023-20529Insufficient bound checks in the SMU may allow an attacker to update the from/to address space to an invalid value potentially resulting in a denial of service. 7.5
  4. CVE-2023-20528Insufficient input validation in the SMU may allow a physical attacker to exfiltrate SMU memory contents over the I2C bus potentially leading to a loss of confidentiality. 2.4
  5. CVE-2023-20527Improper syscall input validation in the ASP Bootloader may allow a privileged attacker to read memory out-of-bounds, potentially leading to a denial-of-service. 6.5
  6. CVE-2023-20525Insufficient syscall input validation in the ASP Bootloader may allow a privileged attacker to read memory outside the bounds of a mapped register potentially leading to a denial of service. 6.5
  7. CVE-2023-20523TOCTOU in the ASP may allow a physical attacker to write beyond the buffer bounds, potentially leading to a loss of integrity or denial of service. 5.7
  8. CVE-2023-20522Insufficient input validation in ASP may allow an attacker with a malicious BIOS to potentially cause a denial of service. 7.5
  9. CVE-2022-23813The software interfaces to ASP and SMU may not enforce the SNP memory security policy resulting in a potential loss of integrity of guest memory in a confidential compute environment. 5.3
  10. CVE-2021-46779Insufficient input validation in SVC_ECC_PRIMITIVE system call in a compromised user application or ABL may allow an attacker to corrupt ASP (AMD Secure Processor) OS memory which may lead to poten...7.1
  11. CVE-2021-46768Insufficient input validation in SEV firmware may allow an attacker to perform out-of-bounds memory reads within the ASP boot loader, potentially leading to a denial of service. 5.5
  12. CVE-2021-46767Insufficient input validation in the ASP may allow an attacker with physical access, unauthorized write access to memory potentially leading to a loss of integrity or denial of service. 6.1
  13. CVE-2021-26407A randomly generated Initialization Vector (IV) may lead to a collision of IVs with the same key potentially resulting in information disclosure. 5.5
  14. CVE-2021-26403Insufficient checks in SEV may lead to a malicious hypervisor disclosing the launch secret potentially resulting in compromise of VM confidentiality. 6.5
  15. CVE-2021-26402Insufficient bounds checking in ASP (AMD Secure Processor) firmware while handling BIOS mailbox commands, may allow an attacker to write partially-controlled data out-of-bounds to SMM or SEV-ES reg...7.1

Product grouping is registry-driven, with AI assist and human review. How it works

We use analytics cookies to see which pages and articles actually help people. Decline and none of them run — the site works the same. What we store