Vulnerabilidades
Resumen — últimos 7 días
Vulnerabilidades nuevas2700▼ 69 respecto a la semana anterior
Críticas / altas1449▲ 307 respecto a la semana anterior
Nueva explotación activa (KEV)7▼ 3 respecto a la semana anterior
Sin puntuar (sin CVSS)64▼ 462 respecto a la semana anterior
42 resultados, ordenados por fecha de publicación (más recientes primero)
| CVE | Estado | Severidad | EPSS | Explotación activa | Tecnologías afectadas | Publicada ▼ | Modificada | Descripción |
|---|---|---|---|---|---|---|---|---|
| Analizada | Alta (7.1) | 0.47% | — | W1.fi Hostapd | 30/6/2026 | 2/7/2026 | In hostapd before 2.12, a missing bounds check in AP-mode Wi-Fi 7 (IEEE 802.11be) Multi-Link Operation (MLO) association request processing allows an unauthenticated attacker within wireless range to send a crafted management frame containing a malformed Multi-Link Element or Per-STA Profile subelement. In… | |
| Analizada | Baja (3.7) | 0.76% | — | W1.fi Hostapd | 12/3/2025 | 17/6/2026 | hostapd fails to process crafted RADIUS packets properly. When hostapd authenticates wi-fi devices with RADIUS authentication, an attacker in the position between the hostapd and the RADIUS server may inject crafted RADIUS packets and force RADIUS authentications to fail. | |
| Modificada | Media (6.5) | 0.38% | — | W1.fi Hostapd | 11/2/2025 | 14/7/2026 | In hostapd 2.10 and earlier, the PKEX code remains active even after a successful PKEX association. An attacker that successfully bootstrapped public keys with another entity using PKEX in the past, will be able to subvert a future bootstrapping by passively observing public keys, re-using the encrypting element Qi… | |
| Modificada | Crítica (9.8) | 1.9% | — | W1.fi HostapdW1.fi WPA SupplicantFedoraproject Fedora | 17/1/2022 | 14/7/2026 | The implementations of EAP-pwd in hostapd before 2.10 and wpa_supplicant before 2.10 are vulnerable to side-channel attacks as a result of cache access patterns. NOTE: this issue exists because of an incomplete fix for CVE-2019-9495. | |
| Modificada | Crítica (9.8) | 3.1% | — | W1.fi HostapdW1.fi WPA SupplicantFedoraproject Fedora | 17/1/2022 | 14/7/2026 | The implementations of SAE in hostapd before 2.10 and wpa_supplicant before 2.10 are vulnerable to side channel attacks as a result of cache access patterns. NOTE: this issue exists because of an incomplete fix for CVE-2019-9494. | |
| Modificada | Media (5.3) | 1.7% | — | W1.fi HostapdW1.fi WPA Supplicant | 2/4/2021 | 7/7/2026 | In wpa_supplicant and hostapd 2.9, forging attacks may occur because AlgorithmIdentifier parameters are mishandled in tls/pkcs1.c and tls/x509v3.c. | |
| Modificada | Alta (7.5) | 15% | — | UI Unifi ControllerW1.fi HostapdAsus Rt-n11Broadcom Adsl+213 | 8/6/2020 | 17/6/2026 | The Open Connectivity Foundation UPnP specification before 2020-04-17 does not forbid the acceptance of a subscription request with a delivery URL on a different network segment than the fully qualified event-subscription URL, aka the CallStranger issue. | |
| Modificada | Alta (7.5) | 3.8% | — | W1.fi HostapdDebian Linux | 28/2/2020 | 17/6/2026 | hostapd before 2.6, in EAP mode, makes calls to the rand() and random() standard library functions without any preceding srand() or srandom() call, which results in inappropriate use of deterministic values. This was fixed in conjunction with CVE-2016-10743. | |
| Modificada | Media (6.5) | 0.55% | — | W1.fi Hostapd | 12/12/2019 | 17/6/2026 | An exploitable denial-of-service vulnerability exists in the 802.11w security state handling for hostapd 2.6 connected clients with valid 802.11w sessions. By simulating an incomplete new association, an attacker can trigger a deauthentication against stations using 802.11w, resulting in a denial of service. | |
| Modificada | Media (6.5) | 0.92% | — | W1.fi Hostapd | 12/12/2019 | 17/6/2026 | An exploitable denial-of-service vulnerability exists in the hostapd 2.6, where an attacker could trigger AP to send IAPP location updates for stations, before the required authentication process has completed. This could lead to different denial of service scenarios, either by causing CAM table attacks, or by leading… | |
| Modificada | Media (6.5) | 1.2% | — | W1.fi HostapdW1.fi WPA SupplicantDebian LinuxCanonical Ubuntu Linux | 12/9/2019 | 17/6/2026 | hostapd before 2.10 and wpa_supplicant before 2.10 allow an incorrect indication of disconnection in certain situations because source address validation is mishandled. This is a denial of service that should have been prevented by PMF (aka management frame protection). The attacker must send a crafted 802.11 frame… | |
| Modificada | Media (5.9) | 2.5% | — | W1.fi HostapdFedoraproject FedoraCanonical Ubuntu LinuxDebian Linux | 15/8/2019 | 17/6/2026 | The implementations of SAE and EAP-pwd in hostapd and wpa_supplicant 2.x through 2.8 are vulnerable to side-channel attacks as a result of observable timing differences and cache access patterns when Brainpool curves are used. An attacker may be able to gain leaked information from a side-channel attack that can be… | |
| Modificada | Media (5.9) | 3.3% | — | W1.fi HostapdW1.fi WPA Supplicant | 26/4/2019 | 17/6/2026 | The EAP-pwd implementation in hostapd (EAP server) before 2.8 and wpa_supplicant (EAP peer) before 2.8 does not validate fragmentation reassembly state properly for a case where an unexpected fragment could be received. This could result in process termination due to a NULL pointer dereference (denial of service).… | |
| Modificada | Alta (8.1) | 2.2% | — | W1.fi HostapdW1.fi WPA SupplicantFedoraproject FedoraOpensuse Backports SLE+5 | 17/4/2019 | 17/6/2026 | The implementations of EAP-PWD in wpa_supplicant EAP Peer, when built against a crypto library missing explicit validation on imported elements, do not validate the scalar and element values in EAP-pwd-Commit. An attacker may complete authentication, session key and control of the data connection with a client. Both… | |
| Modificada | Alta (8.1) | 2.2% | — | W1.fi HostapdW1.fi WPA SupplicantFedoraproject FedoraOpensuse Backports SLE+5 | 17/4/2019 | 17/6/2026 | The implementations of EAP-PWD in hostapd EAP Server, when built against a crypto library missing explicit validation on imported elements, do not validate the scalar and element values in EAP-pwd-Commit. An attacker may be able to use invalid scalar/element values to complete authentication, gaining session key and… | |
| Modificada | Alta (8.1) | 5.0% | — | W1.fi HostapdW1.fi WPA SupplicantFedoraproject Fedora | 17/4/2019 | 17/6/2026 | The implementations of EAP-PWD in hostapd EAP Server and wpa_supplicant EAP Peer do not validate the scalar and element values in EAP-pwd-Commit. This vulnerability may allow an attacker to complete EAP-PWD authentication without knowing the password. However, unless the crypto library does not implement additional… | |
| Modificada | Alta (7.5) | 4.7% | — | W1.fi HostapdW1.fi WPA SupplicantFedoraproject Fedora | 17/4/2019 | 17/6/2026 | An invalid authentication sequence could result in the hostapd process terminating due to missing state validation steps when processing the SAE confirm message when in hostapd/AP mode. All version of hostapd with SAE support are vulnerable. An attacker may force the hostapd process to terminate, performing a denial… | |
| Modificada | Baja (3.7) | 3.5% | — | W1.fi HostapdW1.fi WPA SupplicantFedoraproject FedoraOpensuse Backports SLE+5 | 17/4/2019 | 17/6/2026 | The implementations of EAP-PWD in hostapd and wpa_supplicant are vulnerable to side-channel attacks as a result of cache access patterns. All versions of hostapd and wpa_supplicant with EAP-PWD support are vulnerable. The ability to install and execute applications is necessary for a successful attack. Memory access… | |
| Modificada | Media (5.9) | 3.9% | — | W1.fi HostapdW1.fi WPA SupplicantFedoraproject FedoraOpensuse Backports SLE+4 | 17/4/2019 | 17/6/2026 | The implementations of SAE in hostapd and wpa_supplicant are vulnerable to side channel attacks as a result of observable timing differences and cache access patterns. An attacker may be able to gain leaked information from a side channel attack that can be used for full password recovery. Both hostapd with SAE… | |
| Modificada | Alta (7.5) | 2.4% | — | W1.fi Hostapd | 23/3/2019 | 17/6/2026 | hostapd before 2.6 does not prevent use of the low-quality PRNG that is reached by an os_random() function call. | |
| Modificada | Media (5.3) | 1.8% | — | Canonical Ubuntu LinuxDebian LinuxFreebsdOpensuse Leap+8 | 17/10/2017 | 17/6/2026 | Wi-Fi Protected Access (WPA and WPA2) that support 802.11v allows reinstallation of the Integrity Group Temporal Key (IGTK) when processing a Wireless Network Management (WNM) Sleep Mode Response frame, allowing an attacker within radio range to replay frames from access points to clients. | |
| Modificada | Media (5.3) | 1.7% | — | Canonical Ubuntu LinuxDebian LinuxFreebsdOpensuse Leap+8 | 17/10/2017 | 17/6/2026 | Wi-Fi Protected Access (WPA and WPA2) that support 802.11v allows reinstallation of the Group Temporal Key (GTK) when processing a Wireless Network Management (WNM) Sleep Mode Response frame, allowing an attacker within radio range to replay frames from access points to clients. | |
| Modificada | Media (6.8) | 2.0% | — | Canonical Ubuntu LinuxDebian LinuxFreebsdOpensuse Leap+8 | 17/10/2017 | 17/6/2026 | Wi-Fi Protected Access (WPA and WPA2) allows reinstallation of the Tunneled Direct-Link Setup (TDLS) Peer Key (TPK) during the TDLS handshake, allowing an attacker within radio range to replay, decrypt, or spoof frames. | |
| Modificada | Media (6.8) | 2.2% | — | Canonical Ubuntu LinuxDebian LinuxFreebsdOpensuse Leap+8 | 17/10/2017 | 17/6/2026 | Wi-Fi Protected Access (WPA and WPA2) allows reinstallation of the Station-To-Station-Link (STSL) Transient Key (STK) during the PeerKey handshake, allowing an attacker within radio range to replay, decrypt, or spoof frames. | |
| Modificada | Alta (8.1) | 4.6% | — | Canonical Ubuntu LinuxDebian LinuxFreebsdOpensuse Leap+8 | 17/10/2017 | 17/6/2026 | Wi-Fi Protected Access (WPA and WPA2) that supports IEEE 802.11r allows reinstallation of the Pairwise Transient Key (PTK) Temporal Key (TK) during the fast BSS transmission (FT) handshake, allowing an attacker within radio range to replay, decrypt, or spoof frames. |