Rtx Quadro Nvs
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Incorrect permission assignment in the NVIDIA Display Driver kernel module on Windows and Linux allows a highly privileged local user to corrupt critical resource permissions, leading to denial of service and potentially data tampering. Affected product lines span GeForce (limited to Maxwell, Volta, and Pascal architectures on some branches), RTX/Quadro/NVS, Tesla, and Guest (vGPU) drivers across multiple version branches. No public exploit exists and no active exploitation has been identified; SSVC assessment rates exploitation as none and impact as partial, consistent with the moderate CVSS score of 4.4.
Local privilege escalation in NVIDIA Display Driver for Linux (GeForce, RTX/Quadro/NVS, Tesla, and vGPU guest drivers) allows an authenticated local user to abuse improper permission handling in a kernel mode layer handler, enabling code execution, privilege elevation, and data tampering. CVSS 7.8 reflects high impact across confidentiality, integrity, and availability, but the attack vector is local and authenticated. No public exploit identified at time of analysis and EPSS is 0.01%, but SSVC marks technical impact as total.
Local privilege escalation in NVIDIA Display Driver for Windows (GeForce, RTX/Quadro/NVS, Tesla, and vGPU guest/manager components) stems from a time-of-check time-of-use (TOCTOU) race condition that can be abused by a low-privileged local user. Successful exploitation may yield code execution, privilege escalation, denial of service, information disclosure, or data tampering with scope change beyond the driver's security boundary. No public exploit identified at time of analysis; EPSS is 0.01% and SSVC exploitation status is 'none', so the practical risk is contingent on local access and winning a high-complexity race.
Local privilege escalation in NVIDIA Display Driver for Windows and Linux allows authenticated low-privilege users to improperly access GPU resources via a kernel mode layer flaw, potentially leading to code execution, privilege escalation, information disclosure, data tampering, and denial of service. The issue affects GeForce, RTX/Quadro/NVS, and Tesla product lines across multiple driver branches and carries a CVSS 7.8 (High) score. No public exploit identified at time of analysis, and EPSS probability is very low (0.01%), but the breadth of affected hardware and total technical impact warrant prompt patching.
Local privilege escalation in the NVIDIA Display Driver for Windows and Linux allows an authenticated low-privileged user to trigger an out-of-bounds write (CWE-787) in the kernel-mode driver, potentially leading to code execution, privilege escalation, information disclosure, data tampering, or denial of service. The flaw affects GeForce, RTX/Quadro/NVS, and Tesla product lines, with NVIDIA confirming the vulnerability and releasing patched driver versions. No public exploit identified at time of analysis, and EPSS rates exploitation probability at just 0.01%.
Out-of-bounds read in NVIDIA Display Driver for Linux (GeForce, RTX/Quadro/NVS, Tesla, and vGPU Guest drivers) allows a locally authenticated user to trigger denial of service and information disclosure. The flaw carries a CVSS 3.1 score of 7.1 (AV:L/AC:L/PR:L), and per CISA SSVC there is no public exploit identified at time of analysis (Exploitation: none), with EPSS at 0.01% indicating negligible near-term exploitation likelihood. NVIDIA has published fixed driver versions across all affected branches in advisory ID 5821.
NVIDIA Display Driver for Linux exposes a denial-of-service condition in the Multi-Instance GPU (MIG) partition management subsystem, rooted in insecure default initialization of memory subsystem routing resources (CWE-1188). A local authenticated user - with low privileges on a Linux system running MIG-enabled Tesla, GeForce, RTX/Quadro/NVS, or Virtual GPU Manager driver branches - can trigger a hang or data corruption during partition reconfiguration, potentially disrupting all GPU workloads sharing the affected physical GPU. No public exploit code exists and this vulnerability is not in CISA KEV; EPSS sits at 0.01% (2nd percentile), indicating no observed mass exploitation at time of analysis.
Race condition exploitation in NVIDIA Display Driver's Linux kernel module allows a local authenticated user to cause denial of service by manipulating compiler or processor memory instruction ordering. Affected product lines span GeForce, RTX/Quadro/NVS, Tesla, and vGPU Guest Driver across multiple driver branches up to the March 2026 release. No active exploitation has been confirmed - this is not listed in CISA KEV, EPSS is 0.01% (1st percentile), and SSVC assessment classifies exploitation status as none - placing this firmly in a patch-and-monitor category rather than emergency response.
Race condition in NVIDIA GPU Display Driver for Linux allows a high-privileged local attacker to leak sensitive kernel or process memory, producing limited information disclosure alongside potential data tampering and denial of service. Affected product lines span GeForce, RTX/Quadro/NVS, and Tesla GPU families running Linux driver branches prior to 580.159.03 or 595.71.05. No public exploit code exists and this vulnerability is absent from the CISA KEV catalog; an EPSS of 0.01% (1st percentile) and SSVC classification of Exploitation: none together place it at the lowest tier of real-world exploitation priority.
Denial of service in NVIDIA Display Driver for Windows and Linux stems from improper lock management (CWE-667), where an attacker with local low-privilege access can leak held driver locks, potentially crashing or hanging the driver stack and denying GPU availability system-wide. Scope is changed (S:C), meaning the impact extends beyond the vulnerable component to the broader kernel or hypervisor layer. No public exploit identified at time of analysis and no CISA KEV listing; EPSS at 0.01% (1st percentile) and SSVC exploitation status of 'none' consistently signal low near-term exploitation likelihood.
Local privilege escalation in NVIDIA Display Driver for Linux (GeForce, RTX/Quadro/NVS, Tesla, and Virtual GPU Manager branches) stems from an incorrect numeric type conversion (CWE-681) that produces a heap buffer overflow. A locally authenticated attacker with low privileges can trigger the flaw to achieve code execution, privilege escalation, information disclosure, data tampering, or denial of service. No public exploit identified at time of analysis, and EPSS is very low (0.01%, 1st percentile), but technical impact per SSVC is total.
Local privilege escalation and code execution in the NVIDIA Display Driver for Linux (GeForce, RTX/Quadro/NVS, Tesla, and vGPU Guest/Manager components) stems from a use-after-free memory corruption flaw (CWE-416) that a local low-privileged user can trigger to compromise the kernel-level driver. The scope-changed CVSS 8.8 score reflects that successful exploitation crosses a trust boundary, potentially yielding code execution, privilege escalation, information disclosure, data tampering, or denial of service. EPSS is 0.01% (1st percentile) and there is no public exploit identified at time of analysis, but a vendor patch is available across all affected branches.
Incorrect permission assignment in the NVIDIA Display Driver kernel module on Windows and Linux allows a highly privileged local user to corrupt critical resource permissions, leading to denial of service and potentially data tampering. Affected product lines span GeForce (limited to Maxwell, Volta, and Pascal architectures on some branches), RTX/Quadro/NVS, Tesla, and Guest (vGPU) drivers across multiple version branches. No public exploit exists and no active exploitation has been identified; SSVC assessment rates exploitation as none and impact as partial, consistent with the moderate CVSS score of 4.4.
Local privilege escalation in NVIDIA Display Driver for Linux (GeForce, RTX/Quadro/NVS, Tesla, and vGPU guest drivers) allows an authenticated local user to abuse improper permission handling in a kernel mode layer handler, enabling code execution, privilege elevation, and data tampering. CVSS 7.8 reflects high impact across confidentiality, integrity, and availability, but the attack vector is local and authenticated. No public exploit identified at time of analysis and EPSS is 0.01%, but SSVC marks technical impact as total.
Local privilege escalation in NVIDIA Display Driver for Windows (GeForce, RTX/Quadro/NVS, Tesla, and vGPU guest/manager components) stems from a time-of-check time-of-use (TOCTOU) race condition that can be abused by a low-privileged local user. Successful exploitation may yield code execution, privilege escalation, denial of service, information disclosure, or data tampering with scope change beyond the driver's security boundary. No public exploit identified at time of analysis; EPSS is 0.01% and SSVC exploitation status is 'none', so the practical risk is contingent on local access and winning a high-complexity race.
Local privilege escalation in NVIDIA Display Driver for Windows and Linux allows authenticated low-privilege users to improperly access GPU resources via a kernel mode layer flaw, potentially leading to code execution, privilege escalation, information disclosure, data tampering, and denial of service. The issue affects GeForce, RTX/Quadro/NVS, and Tesla product lines across multiple driver branches and carries a CVSS 7.8 (High) score. No public exploit identified at time of analysis, and EPSS probability is very low (0.01%), but the breadth of affected hardware and total technical impact warrant prompt patching.
Local privilege escalation in the NVIDIA Display Driver for Windows and Linux allows an authenticated low-privileged user to trigger an out-of-bounds write (CWE-787) in the kernel-mode driver, potentially leading to code execution, privilege escalation, information disclosure, data tampering, or denial of service. The flaw affects GeForce, RTX/Quadro/NVS, and Tesla product lines, with NVIDIA confirming the vulnerability and releasing patched driver versions. No public exploit identified at time of analysis, and EPSS rates exploitation probability at just 0.01%.
Out-of-bounds read in NVIDIA Display Driver for Linux (GeForce, RTX/Quadro/NVS, Tesla, and vGPU Guest drivers) allows a locally authenticated user to trigger denial of service and information disclosure. The flaw carries a CVSS 3.1 score of 7.1 (AV:L/AC:L/PR:L), and per CISA SSVC there is no public exploit identified at time of analysis (Exploitation: none), with EPSS at 0.01% indicating negligible near-term exploitation likelihood. NVIDIA has published fixed driver versions across all affected branches in advisory ID 5821.
NVIDIA Display Driver for Linux exposes a denial-of-service condition in the Multi-Instance GPU (MIG) partition management subsystem, rooted in insecure default initialization of memory subsystem routing resources (CWE-1188). A local authenticated user - with low privileges on a Linux system running MIG-enabled Tesla, GeForce, RTX/Quadro/NVS, or Virtual GPU Manager driver branches - can trigger a hang or data corruption during partition reconfiguration, potentially disrupting all GPU workloads sharing the affected physical GPU. No public exploit code exists and this vulnerability is not in CISA KEV; EPSS sits at 0.01% (2nd percentile), indicating no observed mass exploitation at time of analysis.
Race condition exploitation in NVIDIA Display Driver's Linux kernel module allows a local authenticated user to cause denial of service by manipulating compiler or processor memory instruction ordering. Affected product lines span GeForce, RTX/Quadro/NVS, Tesla, and vGPU Guest Driver across multiple driver branches up to the March 2026 release. No active exploitation has been confirmed - this is not listed in CISA KEV, EPSS is 0.01% (1st percentile), and SSVC assessment classifies exploitation status as none - placing this firmly in a patch-and-monitor category rather than emergency response.
Race condition in NVIDIA GPU Display Driver for Linux allows a high-privileged local attacker to leak sensitive kernel or process memory, producing limited information disclosure alongside potential data tampering and denial of service. Affected product lines span GeForce, RTX/Quadro/NVS, and Tesla GPU families running Linux driver branches prior to 580.159.03 or 595.71.05. No public exploit code exists and this vulnerability is absent from the CISA KEV catalog; an EPSS of 0.01% (1st percentile) and SSVC classification of Exploitation: none together place it at the lowest tier of real-world exploitation priority.
Denial of service in NVIDIA Display Driver for Windows and Linux stems from improper lock management (CWE-667), where an attacker with local low-privilege access can leak held driver locks, potentially crashing or hanging the driver stack and denying GPU availability system-wide. Scope is changed (S:C), meaning the impact extends beyond the vulnerable component to the broader kernel or hypervisor layer. No public exploit identified at time of analysis and no CISA KEV listing; EPSS at 0.01% (1st percentile) and SSVC exploitation status of 'none' consistently signal low near-term exploitation likelihood.
Local privilege escalation in NVIDIA Display Driver for Linux (GeForce, RTX/Quadro/NVS, Tesla, and Virtual GPU Manager branches) stems from an incorrect numeric type conversion (CWE-681) that produces a heap buffer overflow. A locally authenticated attacker with low privileges can trigger the flaw to achieve code execution, privilege escalation, information disclosure, data tampering, or denial of service. No public exploit identified at time of analysis, and EPSS is very low (0.01%, 1st percentile), but technical impact per SSVC is total.
Local privilege escalation and code execution in the NVIDIA Display Driver for Linux (GeForce, RTX/Quadro/NVS, Tesla, and vGPU Guest/Manager components) stems from a use-after-free memory corruption flaw (CWE-416) that a local low-privileged user can trigger to compromise the kernel-level driver. The scope-changed CVSS 8.8 score reflects that successful exploitation crosses a trust boundary, potentially yielding code execution, privilege escalation, information disclosure, data tampering, or denial of service. EPSS is 0.01% (1st percentile) and there is no public exploit identified at time of analysis, but a vendor patch is available across all affected branches.