📦 205 Mobile Platform Firmware

by Qualcomm

🔍 What is 205 Mobile Platform Firmware?

Description coming soon...

🛡️ Security Overview

Click on a severity to filter vulnerabilities

⚠️ Known Vulnerabilities

CVE-2025-21487

HIGH CVSS 8.2 Sep 24, 2025

This vulnerability allows attackers to read sensitive information from memory when User Equipment (UE) processes malformed RTP packets with manipulated payload length fields. It affects devices using ...

CVE-2024-53021

HIGH CVSS 8.2 Jun 3, 2025

This vulnerability allows information disclosure when processing RTCP goodbye packets in Qualcomm products. Attackers can exploit this to leak sensitive data from affected systems. Primarily impacts d...

CVE-2024-43052

HIGH CVSS 7.8 Dec 2, 2024

This vulnerability allows memory corruption in Qualcomm NPU (Neural Processing Unit) drivers when processing API calls with invalid input. Attackers could potentially execute arbitrary code or cause d...

CVE-2024-33056

HIGH CVSS 8.4 Dec 2, 2024

CVE-2024-33056 is a memory corruption vulnerability in Qualcomm's Shared Memory (SMEM) subsystem that allows attackers to potentially execute arbitrary code or cause denial of service. This affects de...

CVE-2024-38423

HIGH CVSS 7.8 Nov 4, 2024

This vulnerability allows memory corruption during GPU page table switching in Qualcomm GPU drivers. Attackers could potentially execute arbitrary code or cause denial of service. Affects devices usin...

CVE-2024-23385

HIGH CVSS 7.5 Nov 4, 2024

This vulnerability allows attackers to cause a denial-of-service (DoS) condition in mobile devices by sending specially crafted MAC RAR messages with invalid PDU lengths, triggering a modem reset. It ...

CVE-2024-23358

HIGH CVSS 7.5 Sep 2, 2024

This vulnerability in Qualcomm modems allows a transient denial-of-service (DoS) condition when the device receives a registration accept OTA (Over-The-Air) message with incorrect ciphering key data. ...

CVE-2024-23373

HIGH CVSS 8.4 Jul 1, 2024

This vulnerability allows memory corruption when IOMMU unmap operations fail, leading to improper release of DMA and anonymous buffers. It affects systems using Qualcomm chipsets with vulnerable IOMMU...