Advanced Micro Devices (AMD) RYZEN 5 3400G FIRMWARE -

CPE Details

Advanced Micro Devices (AMD) RYZEN 5 3400G FIRMWARE -
-
2022-03-17
12h47 +00:00
2022-03-21
16h41 +00:00
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CPE Name: cpe:2.3:o:amd:ryzen_5_3400g_firmware:-:*:*:*:*:*:*:*

Informations

Vendor

amd

Product

ryzen_5_3400g_firmware

Version

-

Related CVE

Open and find in CVE List

CVE ID Published Description Score Severity
CVE-2023-4969 2024-01-16 17h01 +00:00 A GPU kernel can read sensitive data from another GPU kernel (even from another user or app) through an optimized GPU memory region called _local memory_ on various architectures.
6.5
Medium
CVE-2023-20588 2023-08-08 17h06 +00:00 A division-by-zero error on some AMD processors can potentially return speculative data resulting in loss of confidentiality. 
5.5
Medium
CVE-2023-20589 2023-08-08 17h04 +00:00 An attacker with specialized hardware and physical access to an impacted device may be able to perform a voltage fault injection attack resulting in compromise of the ASP secure boot potentially leading to arbitrary code execution. 
6.8
Medium
CVE-2021-26365 2023-05-09 18h58 +00:00 Certain size values in firmware binary headers could trigger out of bounds reads during signature validation, leading to denial of service or potentially limited leakage of information about out-of-bounds memory contents.
8.2
High
CVE-2021-26346 2023-01-10 19h50 +00:00 Failure to validate the integer operand in ASP (AMD Secure Processor) bootloader may allow an attacker to introduce an integer overflow in the L2 directory table in SPI flash resulting in a potential denial of service.
5.5
Medium
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.
5.5
Medium
CVE-2021-26392 2022-11-09 20h44 +00:00 Insufficient verification of missing size check in 'LoadModule' may lead to an out-of-bounds write potentially allowing an attacker with privileges to gain code execution of the OS/kernel by loading a malicious TA.
7.8
High
CVE-2020-12930 2022-11-09 20h44 +00:00 Improper parameters handling in AMD Secure Processor (ASP) drivers may allow a privileged attacker to elevate their privileges potentially leading to loss of integrity.
7.8
High
CVE-2021-26393 2022-11-09 20h44 +00:00 Insufficient memory cleanup in the AMD Secure Processor (ASP) Trusted Execution Environment (TEE) may allow an authenticated attacker with privileges to generate a valid signed TA and potentially poison the contents of the process memory with attacker controlled data resulting in a loss of confidentiality.
5.5
Medium
CVE-2020-12931 2022-11-09 20h44 +00:00 Improper parameters handling in the AMD Secure Processor (ASP) kernel may allow a privileged attacker to elevate their privileges potentially leading to loss of integrity.
7.8
High
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
Medium
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.
6.5
Medium
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.
6.5
Medium
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.
6.5
Medium
CVE-2021-26363 2022-05-12 18h39 +00:00 A malicious or compromised UApp or ABL could potentially change the value that the ASP uses for its reserved DRAM, to one outside of the fenced area, potentially leading to data exposure.
4.4
Medium
CVE-2021-26386 2022-05-12 18h28 +00:00 A malicious or compromised UApp or ABL may be used by an attacker to issue a malformed system call to the Stage 2 Bootloader potentially leading to corrupt memory and code execution.
7.8
High
CVE-2021-26317 2022-05-12 18h27 +00:00 Failure to verify the protocol in SMM may allow an attacker to control the protocol and modify SPI flash resulting in a potential arbitrary code execution.
7.8
High
CVE-2021-26368 2022-05-12 18h22 +00:00 Insufficient check of the process type in Trusted OS (TOS) may allow an attacker with privileges to enable a lesser privileged process to unmap memory owned by a higher privileged process resulting in a denial of service.
4.4
Medium
CVE-2021-26351 2022-05-12 17h18 +00:00 Insufficient DRAM address validation in System Management Unit (SMU) may result in a DMA (Direct Memory Access) read/write from/to invalid DRAM address that could result in denial of service.
5.5
Medium
CVE-2021-26366 2022-05-12 17h09 +00:00 An attacker, who gained elevated privileges via some other vulnerability, may be able to read data from Boot ROM resulting in a loss of system integrity.
7.1
High
CVE-2021-26369 2022-05-12 17h07 +00:00 A malicious or compromised UApp or ABL may be used by an attacker to send a malformed system call to the bootloader, resulting in out-of-bounds memory accesses.
7.8
High
CVE-2021-26339 2022-05-11 16h18 +00:00 A bug in AMD CPU’s core logic may allow for an attacker, using specific code from an unprivileged VM, to trigger a CPU core hang resulting in a potential denial of service. AMD believes the specific code includes a specific x86 instruction sequence that would not be generated by compilers.
5.5
Medium
CVE-2021-26341 2022-03-11 17h54 +00:00 Some AMD CPUs may transiently execute beyond unconditional direct branches, which may potentially result in data leakage.
6.5
Medium
CVE-2021-26401 2022-03-11 17h54 +00:00 LFENCE/JMP (mitigation V2-2) may not sufficiently mitigate CVE-2017-5715 on some AMD CPUs.
5.6
Medium
CVE-2021-26337 2021-11-16 18h24 +00:00 Insufficient DRAM address validation in System Management Unit (SMU) may result in a DMA read from invalid DRAM address to SRAM resulting in SMU not servicing further requests.
5.5
Medium
CVE-2021-26336 2021-11-16 18h04 +00:00 Insufficient bounds checking in System Management Unit (SMU) may cause invalid memory accesses/updates that could result in SMU hang and subsequent failure to service any further requests from other components.
5.5
Medium