Advanced Micro Devices (AMD) Ryzen 5 4600u Firmware

CPE Details

Advanced Micro Devices (AMD) Ryzen 5 4600u Firmware
-
2022-06-28
12h23 +00:00
2022-06-29
09h15 +00:00
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CPE Name: cpe:2.3:o:amd:ryzen_5_4600u_firmware:-:*:*:*:*:*:*:*

Informations

Vendor

amd

Product

ryzen_5_4600u_firmware

Version

-

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CVE-2021-46758 2023-11-14 18h54 +00:00 Insufficient validation of SPI flash addresses in the ASP (AMD Secure Processor) bootloader may allow an attacker to read data in memory mapped beyond SPI flash resulting in a potential loss of availability and integrity.
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CVE-2023-20555 2023-08-08 17h07 +00:00 Insufficient input validation in CpmDisplayFeatureSmm may allow an attacker to corrupt SMM memory by overwriting an arbitrary bit in an attacker-controlled pointer potentially leading to arbitrary code execution in SMM.
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CVE-2022-27672 2023-02-14 19h34 +00:00 When SMT is enabled, certain AMD processors may speculatively execute instructions using a target from the sibling thread after an SMT mode switch potentially resulting in information disclosure.
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CVE-2022-23824 2022-11-09 20h48 +00:00 IBPB may not prevent return branch predictions from being specified by pre-IBPB branch targets leading to a potential information disclosure.
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CVE-2021-46778 2022-08-09 20h20 +00:00 Execution unit scheduler contention may lead to a side channel vulnerability found on AMD CPU microarchitectures codenamed “Zen 1”, “Zen 2” and “Zen 3” that use simultaneous multithreading (SMT). By measuring the contention level on scheduler queues an attacker may potentially leak sensitive information.
5.6
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CVE-2022-23825 2022-07-14 19h27 +00:00 Aliases in the branch predictor may cause some AMD processors to predict the wrong branch type potentially leading to information disclosure.
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CVE-2022-29900 2022-07-12 15h50 +00:00 Mis-trained branch predictions for return instructions may allow arbitrary speculative code execution under certain microarchitecture-dependent conditions.
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CVE-2022-23823 2022-06-15 19h13 +00:00 A potential vulnerability in some AMD processors using frequency scaling may allow an authenticated attacker to execute a timing attack to potentially enable information disclosure.
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