Rax42V2
Monthly
Stack-based buffer overflow in NETGEAR RAX-series and XR-series routers enables an authenticated administrator, operating from an adjacent network, to trigger unauthorized modifications to router firmware and core functionality beyond what the admin interface normally permits. Affected hardware spans at least 19 model variants including RAX20, RAX35V2, RAX41/V2, RAX42/V2, RAX43/V2, RAX45, RAX49S, RAX50, RAXE450, RAXE500, XR1000, and XR1000V2. No public exploit code has been identified and this CVE is absent from CISA KEV; a vendor-released patch is available from NETGEAR for affected models.
Stack-based buffer overflow in multiple NETGEAR router models (R7000, RAX and XR series) allows an authenticated admin user on an adjacent network to make unauthorized modifications to the router's software and functionality. Exploitation is highly constrained by CVSS 4.0 metrics - adjacent network access, high attack complexity, and pre-existing administrative credentials are all required, yielding an extremely low composite score of 1.9. No public exploit code has been identified and this vulnerability is not listed in the CISA KEV catalog, placing real-world risk well below what the CWE-121 classification alone might suggest.
Command injection in NETGEAR Nighthawk routers and mesh systems (spanning MR, MS, RAX, RS, and XR series) enables a network-adjacent attacker who has achieved a man-in-the-middle position on the local network to compromise device confidentiality and integrity. Exploitation requires intercepting and modifying local network traffic, making this a high-complexity, adjacency-constrained attack. No public exploit code or active exploitation has been identified at time of analysis, and NETGEAR has released per-model firmware patches.
Stack-based buffer overflow in multiple NETGEAR consumer and prosumer router and mesh system models enables an authenticated administrator with adjacent network access to crash affected devices, causing temporary service unavailability. Affected hardware spans the MR, MS, and RAX product lines across at least 15 models and carries a CVSS 4.0 score of 1.1, reflecting the high-privilege prerequisite and narrow impact scope limited to transient availability loss. No public exploits exist and no active exploitation has been reported; vendor firmware patches are available through NETGEAR per-product support pages.
Stack-based buffer overflow across ten NETGEAR RAX-series WiFi 6 routers allows a device administrator with adjacent network access to temporarily disrupt normal device operation, producing a transient denial-of-service. The vulnerability carries a CVSS 4.0 score of 1.1, reflecting its highly constrained attack conditions: high-privilege access and adjacent network adjacency are both required, and the only impact is a brief availability disruption with no confidentiality or integrity consequence. No public exploit code exists and the vulnerability is not listed in CISA KEV; NETGEAR has released firmware patches for all affected models.
Insufficient input validation in NETGEAR RAX-series Wi-Fi 6 routers allows authenticated local-network administrators to push unauthorized modifications to device software and functionality. Affected models span at least ten RAX variants (RAX20 through RAX50) per CPE data, with tags suggesting additional models including RAX54S and RAX54Sv2. The CVSS 4.0 score of 4.3 reflects the high-privilege, adjacent-network prerequisite that substantially limits real-world exploitation surface; no public exploit has been identified at time of analysis, and a vendor-released patch is available across all listed product pages.
Integrity controls on multiple NETGEAR router firmware lines can be subverted by authenticated administrators on the local network through improper input validation (CWE-20), enabling privilege escalation beyond the intended administrative authorization boundary and permitting unauthorized modifications to router software and functionality. Twenty distinct NETGEAR SKUs across the R7000, RAX, RAXE, and XR1000 series are confirmed affected per ENISA EUVD-2026-35452, each with specific patched firmware thresholds now released by the vendor. No public exploit exists at time of analysis (CVSS E:U), and multiple CVSS constraints - adjacent-only attack vector, high complexity, and high privilege requirement - substantially limit the realistic threat population.
Stack-based buffer overflow in NETGEAR RAX-series and XR-series routers enables an authenticated administrator, operating from an adjacent network, to trigger unauthorized modifications to router firmware and core functionality beyond what the admin interface normally permits. Affected hardware spans at least 19 model variants including RAX20, RAX35V2, RAX41/V2, RAX42/V2, RAX43/V2, RAX45, RAX49S, RAX50, RAXE450, RAXE500, XR1000, and XR1000V2. No public exploit code has been identified and this CVE is absent from CISA KEV; a vendor-released patch is available from NETGEAR for affected models.
Stack-based buffer overflow in multiple NETGEAR router models (R7000, RAX and XR series) allows an authenticated admin user on an adjacent network to make unauthorized modifications to the router's software and functionality. Exploitation is highly constrained by CVSS 4.0 metrics - adjacent network access, high attack complexity, and pre-existing administrative credentials are all required, yielding an extremely low composite score of 1.9. No public exploit code has been identified and this vulnerability is not listed in the CISA KEV catalog, placing real-world risk well below what the CWE-121 classification alone might suggest.
Command injection in NETGEAR Nighthawk routers and mesh systems (spanning MR, MS, RAX, RS, and XR series) enables a network-adjacent attacker who has achieved a man-in-the-middle position on the local network to compromise device confidentiality and integrity. Exploitation requires intercepting and modifying local network traffic, making this a high-complexity, adjacency-constrained attack. No public exploit code or active exploitation has been identified at time of analysis, and NETGEAR has released per-model firmware patches.
Stack-based buffer overflow in multiple NETGEAR consumer and prosumer router and mesh system models enables an authenticated administrator with adjacent network access to crash affected devices, causing temporary service unavailability. Affected hardware spans the MR, MS, and RAX product lines across at least 15 models and carries a CVSS 4.0 score of 1.1, reflecting the high-privilege prerequisite and narrow impact scope limited to transient availability loss. No public exploits exist and no active exploitation has been reported; vendor firmware patches are available through NETGEAR per-product support pages.
Stack-based buffer overflow across ten NETGEAR RAX-series WiFi 6 routers allows a device administrator with adjacent network access to temporarily disrupt normal device operation, producing a transient denial-of-service. The vulnerability carries a CVSS 4.0 score of 1.1, reflecting its highly constrained attack conditions: high-privilege access and adjacent network adjacency are both required, and the only impact is a brief availability disruption with no confidentiality or integrity consequence. No public exploit code exists and the vulnerability is not listed in CISA KEV; NETGEAR has released firmware patches for all affected models.
Insufficient input validation in NETGEAR RAX-series Wi-Fi 6 routers allows authenticated local-network administrators to push unauthorized modifications to device software and functionality. Affected models span at least ten RAX variants (RAX20 through RAX50) per CPE data, with tags suggesting additional models including RAX54S and RAX54Sv2. The CVSS 4.0 score of 4.3 reflects the high-privilege, adjacent-network prerequisite that substantially limits real-world exploitation surface; no public exploit has been identified at time of analysis, and a vendor-released patch is available across all listed product pages.
Integrity controls on multiple NETGEAR router firmware lines can be subverted by authenticated administrators on the local network through improper input validation (CWE-20), enabling privilege escalation beyond the intended administrative authorization boundary and permitting unauthorized modifications to router software and functionality. Twenty distinct NETGEAR SKUs across the R7000, RAX, RAXE, and XR1000 series are confirmed affected per ENISA EUVD-2026-35452, each with specific patched firmware thresholds now released by the vendor. No public exploit exists at time of analysis (CVSS E:U), and multiple CVSS constraints - adjacent-only attack vector, high complexity, and high privilege requirement - substantially limit the realistic threat population.