Vulnerabilidades

Resumen — últimos 7 días

Vulnerabilidades nuevas2517▼ 423 respecto a la semana anterior
Críticas / altas1296▲ 12 respecto a la semana anterior
Nueva explotación activa (KEV)6▼ 5 respecto a la semana anterior
Sin puntuar (sin CVSS)57▼ 471 respecto a la semana anterior
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15 resultados, ordenados por fecha de publicación (más recientes primero)

CVEEstadoSeveridadEPSS Explotación activaTecnologías afectadasPublicada ▼Modificada Descripción
AplazadaCrítica (9)0.52%—ConnmanAI10/4/202517/6/2026
In ConnMan through 1.44, the lookup string in ns_resolv in dnsproxy.c can be NULL or an empty string when the TC (Truncated) bit is set in a DNS response. This allows attackers to cause a denial of service (application crash) or possibly execute arbitrary code, because those lookup values lead to incorrect length…
AplazadaMedia (4.8)0.39%—ConnmanAI5/4/202517/6/2026
In ConnMan through 1.44, parse_rr in dnsproxy.c has a memcpy length that depends on an RR RDLENGTH value, i.e., *rdlen=ntohs(rr->rdlen) and memcpy(response+offset,*end,*rdlen) without a check for whether the sum of *end and *rdlen exceeds max. Consequently, *rdlen may be larger than the amount of remaining packet data…
ModificadaMedia (6.5)0.96%—Intel Connman12/4/202317/6/2026
client.c in gdhcp in ConnMan through 1.41 could be used by network-adjacent attackers (operating a crafted DHCP server) to cause a stack-based buffer overflow and denial of service, terminating the connman process.
ModificadaAlta (8.1)2.0%—Intel ConnmanDebian Linux3/8/202217/6/2026
In ConnMan through 1.41, a man-in-the-middle attack against a WISPR HTTP query could be used to trigger a use-after-free in WISPR handling, leading to crashes or code execution.
ModificadaCrítica (9.8)3.2%—Intel ConnmanDebian Linux3/8/202217/6/2026
In ConnMan through 1.41, remote attackers able to send HTTP requests to the gweb component are able to exploit a heap-based buffer overflow in received_data to execute code.
ModificadaAlta (7.5)2.5%—Intel ConnmanDebian Linux28/1/202217/6/2026
An issue was discovered in the DNS proxy in Connman through 1.40. The TCP server reply implementation has an infinite loop if no data is received.
ModificadaCrítica (9.1)2.4%—Intel ConnmanDebian Linux28/1/202217/6/2026
An issue was discovered in the DNS proxy in Connman through 1.40. forward_dns_reply mishandles a strnlen call, leading to an out-of-bounds read.
ModificadaCrítica (9.1)2.6%—Intel ConnmanDebian Linux28/1/202217/6/2026
An issue was discovered in the DNS proxy in Connman through 1.40. The TCP server reply implementation lacks a check for the presence of sufficient Header Data, leading to an out-of-bounds read.
ModificadaMedia (6.5)1.2%—Intel ConnmanDebian LinuxOpensuse Leap9/2/202117/6/2026
gdhcp in ConnMan before 1.39 could be used by network-adjacent attackers to leak sensitive stack information, allowing further exploitation of bugs in gdhcp.
ModificadaAlta (8.8)1.3%—Intel ConnmanDebian LinuxOpensuse Leap9/2/202117/6/2026
A stack-based buffer overflow in dnsproxy in ConnMan before 1.39 could be used by network adjacent attackers to execute code.
ModificadaCrítica (9.8)5.5%—Intel ConnmanDebian Linux29/8/201717/6/2026
Stack-based buffer overflow in "dnsproxy.c" in connman 1.34 and earlier allows remote attackers to cause a denial of service (crash) or execute arbitrary code via a crafted response query string passed to the "name" variable.
ModificadaMedia (4.3)1.1%—Intel Connman1/1/201316/6/2026
ConnMan 1.3 on Tizen continues to list the bluetooth service after offline mode has been enabled, which might allow remote attackers to obtain sensitive information via Bluetooth packets.
ModificadaMedia (5)3.2%—Connman18/5/201216/6/2026
Integer overflow in the dhcpv6_get_option function in gdhcp/client.c in ConnMan before 0.85 allows remote attackers to cause a denial of service (infinite loop and crash) via an invalid length value in a DHCP packet.
ModificadaAlta (10)5.6%—Connman18/5/201216/6/2026
The loopback plug-in in ConnMan before 0.85 allows remote attackers to execute arbitrary commands via shell metacharacters in the (1) host name or (2) domain name in a DHCP reply.
ModificadaAlta (7.8)2.5%—Connman18/5/201216/6/2026
ConnMan before 0.85 does not ensure that netlink messages originate from the kernel, which allows remote attackers to bypass intended access restrictions and cause a denial of service via a crafted netlink message.