Intel PROSet/Wireless WiFi Software vulnerabilities
20 known CVE vulnerabilities in Intel PROSet/Wireless WiFi Software, translated and rated.
- CVE-2026-24911High
Stack-based buffer overflow in Intel(R) PROSet/Wireless WiFi Software for Windows within Ring 0: Kernel may allow denial of service. An unprivileged software adversary with an unauthenticated user and low complexity attack may enable DoS. This may occur via adjacent access without user interaction. Availability impact is high.
- CVE-2026-22887High
Improper buffer restrictions in Intel(R) PROSet/Wireless WiFi Software for Windows within Ring 0: Kernel may allow denial of service. An unprivileged software adversary with an unauthenticated user and low complexity attack may enable DoS. This may occur via adjacent access without user interaction. Integrity impact is low, availability high.
- CVE-2026-20891High
Improper authentication in Intel(R) PROSet/Wireless WiFi Software for Windows may allow an escalation of privilege. An unprivileged attacker with an unauthenticated user and a low complexity attack may enable local code execution. The attack requires local access, no user interaction, and may impact confidentiality, integrity, and availability.
- CVE-2026-20890High
Improper privilege management in Intel(R) PROSet/Wireless WiFi Software for Windows within Ring 2: Privileged Process may allow privilege escalation. An unprivileged software adversary with an unauthenticated user and high complexity attack may enable escalation. This may occur via local access without user interaction. Confidentiality and integrity impact are low, availability high.
- CVE-2026-20886Medium
Out-of-bounds write in Intel(R) PROSet/Wireless WiFi Software for Windows may allow a denial of service. An attacker with an unauthenticated user and a low complexity attack may cause a denial of service. The attack requires adjacent access, passive user interaction, and may impact availability.
- CVE-2026-20878High
Null pointer dereference in Intel PROSet/Wireless WiFi drivers for Windows may lead to denial of service. The attack requires network access and low complexity, with no user interaction. The impact on system availability is high.
- CVE-2026-20795High
Improper buffer restrictions in Intel PROSet/Wireless WiFi drivers for Windows may lead to denial of service. The attack requires network access and low complexity, with no user interaction. The impact on system availability is high.
- CVE-2026-20789High
Improper access control in Intel PROSet/Wireless WiFi drivers for Windows may allow privilege escalation. The attack requires local access and low complexity, with no user interaction. The impact on confidentiality, integrity, and availability is low, low, and high, respectively.
- CVE-2026-20787High
Null pointer dereference in Intel PROSet/Wireless WiFi drivers for Windows may lead to denial of service. The attack requires network access and low complexity, with no user interaction. The impact on system availability is high.
- CVE-2026-20780Medium
Uncontrolled resource consumption in Intel(R) PROSet/Wireless WiFi Software for Windows within Ring 2: Device Drivers may allow a denial of service. The attack requires local access, low complexity, and no user interaction. The vulnerability impacts system availability (high), but not confidentiality or integrity.
- CVE-2026-20778High
Out-of-bounds read in Intel PROSet/Wireless WiFi drivers for Windows (Ring 0) may lead to denial of service. The attack requires network access and high complexity, with no user interaction. The impact on system availability is high.
- CVE-2026-20776High
Improper conditions check in Intel PROSet/Wireless WiFi drivers may lead to denial of service. The attack requires network access and low complexity, with no user interaction. The impact on system availability is high.
- CVE-2026-20752Medium
Improper authentication in Intel(R) PROSet/Wireless WiFi Software within Ring 0: Kernel may allow an information disclosure. The attack requires a privileged user, low complexity, and local access, with no user interaction. The vulnerability impacts confidentiality (high), but not integrity or availability.
- CVE-2026-20749High
Out-of-bounds read in Intel PROSet/Wireless WiFi drivers may allow privilege escalation. The attack requires network access and low complexity, with no user interaction. The impact on confidentiality, integrity, and availability is low, low, and high, respectively.
- CVE-2026-20747Medium
Improper conditions check in Intel PROSet/Wireless WiFi drivers may lead to denial of service. The attack requires network access and low complexity, with no user interaction. The impact on system availability is high.
- CVE-2026-20745High
Out-of-bounds write in Intel PROSet/Wireless WiFi drivers for Windows may lead to denial of service. The attack requires network access and low complexity, with no user interaction. The impact on integrity and availability is low and high, respectively.
- CVE-2026-20741High
Improper access control in Intel PROSet/Wireless WiFi drivers may lead to denial of service. The attack requires local access and low complexity, with no user interaction. The impact on system availability is high.
- CVE-2026-20739High
Improper conditions check in Intel PROSet/Wireless WiFi drivers for Windows may allow a network adversary to cause a denial of service. The attack requires low complexity and no user interaction, and can be performed via adjacent access. The vulnerability impacts system availability (high), with no impact on confidentiality or integrity.
- CVE-2026-20737Medium
Exposure of sensitive information to an unauthorized actor in Intel(R) PROSet/Wireless WiFi Software for Windows within Ring 2: Device Drivers may allow an escalation of privilege. The attack requires an unauthenticated user, low complexity, and local access, with no user interaction. The vulnerability impacts confidentiality (low), but may lead to local code execution with high impact on confidentiality, integrity, and availability.
- CVE-2026-20727High
A null pointer dereference in Intel PROSet/Wireless WiFi software for Windows in the kernel layer may allow a denial of service. An unprivileged software adversary with an unauthenticated user can exploit the vulnerability with low complexity, no user interaction, via adjacent access. The vulnerability impacts system availability (high), with no impact on confidentiality or integrity.

