Vulnerabilidades

Resumen — últimos 7 días

Vulnerabilidades nuevas2882▼ 181 respecto a la semana anterior
Críticas / altas1279▼ 60 respecto a la semana anterior
Nueva explotación activa (KEV)5▼ 3 respecto a la semana anterior
Sin puntuar (sin CVSS)487▼ 22 respecto a la semana anterior
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23 resultados, ordenados por fecha de publicación (más recientes primero)

CVEEstadoSeveridadEPSS Explotación activaTecnologías afectadasPublicada ▼Modificada Descripción
Pendiente de análisisAlta (7.5)0.33%—Dell Bsafe Ssl-jAI4/6/202622/7/2026
Dell BSAFE SSL-J contains an allocation of resources without limits or throttling vulnerability. An unauthenticated remote attacker could potentially exploit this vulnerability, leading to a Denial of Service (DoS).
AnalizadaAlta (7.5)0.45%—Dell Bsafe Ssl-j12/2/202517/6/2026
Dell BSAFE SSL-J, versions prior to 6.6 and versions 7.0 through 7.2, contains a deadlock vulnerability. A remote attacker could potentially exploit this vulnerability, leading to a Denial of Service.
AnalizadaAlta (7.5)0.33%—Dell Bsafe Ssl-j12/2/202517/6/2026
Dell BSAFE SSL-J, versions prior to 6.6 and versions 7.0 through 7.2, contains an Improper certificate verification vulnerability. A remote attacker could potentially exploit this vulnerability, leading to information disclosure.
ModificadaMedia (4.4)0.18%—Dell Bsafe Ssl-j10/2/202417/6/2026
Dell BSAFE SSL-J, versions prior to 6.5, and versions 7.0 and 7.1 contain a debug message revealing unnecessary information vulnerability. This may lead to disclosing sensitive information to a locally privileged user.
ModificadaCrítica (9.8)0.98%—Dell Bsafe Ssl-jDell Bsafe Crypto-j2/2/202417/6/2026
Dell BSAFE SSL-J version 7.0 and all versions prior to 6.5, and Dell BSAFE Crypto-J versions prior to 6.2.6.1 contain an unmaintained third-party component vulnerability. An unauthenticated remote attacker could potentially exploit this vulnerability, leading to the compromise of the impacted system. This is a…
ModificadaMedia (4.4)0.19%—Dell Bsafe Ssl-j10/2/202317/6/2026
Dell BSAFE SSL-J, versions before 6.5 and version 7.0 contain a debug message revealing unnecessary information vulnerability. This may lead to disclosing sensitive information to a locally privileged user. .
ModificadaAlta (7.5)0.96%—Dell Bsafe Ssl-j23/2/202217/6/2026
Dell BSAFE SSL-J contains remediation for a covert timing channel vulnerability that may be exploited by malicious users to compromise the affected system. Only customers with active BSAFE maintenance contracts can receive details about this vulnerability. Public disclosure of the vulnerability details will be shared…
ModificadaMedia (6.5)3.8%—Dell Bsafe Cert-jDell Bsafe Crypto-jDell Bsafe Ssl-jOracle Application Performance Management+1418/9/201917/6/2026
RSA BSAFE Crypto-J versions prior to 6.2.5 are vulnerable to an Information Exposure Through Timing Discrepancy vulnerabilities during DSA key generation. A malicious remote attacker could potentially exploit those vulnerabilities to recover DSA keys.
ModificadaMedia (6.5)2.5%—Dell Bsafe Cert-jDell Bsafe Crypto-jDell Bsafe Ssl-jOracle Application Performance Management+1218/9/201917/6/2026
RSA BSAFE Crypto-J versions prior to 6.2.5 are vulnerable to Information Exposure Through Timing Discrepancy vulnerabilities during ECDSA key generation. A malicious remote attacker could potentially exploit those vulnerabilities to recover ECDSA keys.
ModificadaMedia (6.5)1.7%—Dell Bsafe Cert-jDell Bsafe Crypto-jDell Bsafe Ssl-jMcafee Threat Intelligence Exchange Server+1218/9/201917/6/2026
RSA BSAFE Crypto-J versions prior to 6.2.5 are vulnerable to a Missing Required Cryptographic Step vulnerability. A malicious remote attacker could potentially exploit this vulnerability to coerce two parties into computing the same predictable shared key.
ModificadaMedia (5.9)1.7%—Dell Bsafe Crypto-jDell RSA Bsafe Ssl-j11/9/201817/6/2026
RSA BSAFE Crypto-J versions prior to 6.2.4 and RSA BSAFE SSL-J versions prior to 6.2.4 contain a Covert Timing Channel vulnerability during PKCS #1 unpadding operations, also known as a Bleichenbacher attack. A remote attacker may be able to recover a RSA key.
ModificadaMedia (5.9)1.3%—Dell Bsafe Ssl-j11/9/201817/6/2026
RSA BSAFE SSL-J versions prior to 6.2.4 contain a Covert Timing Channel vulnerability during RSA decryption, also known as a Bleichenbacher attack on RSA decryption. A remote attacker may be able to recover a RSA key.
ModificadaMedia (4.6)0.42%—Dell Bsafe Ssl-j11/9/201817/6/2026
RSA BSAFE SSL-J versions prior to 6.2.4 contain a Heap Inspection vulnerability that could allow an attacker with physical access to the system to recover sensitive key material.
ModificadaMedia (5.9)3.5%—Dell Bsafe Crypto-c-micro-editionDell Bsafe Crypto-jDell Bsafe Micro-edition-suiteDell Bsafe Ssl-c+112/4/201617/6/2026
EMC RSA BSAFE Micro Edition Suite (MES) 4.0.x and 4.1.x before 4.1.5, RSA BSAFE Crypto-C Micro Edition (CCME) 4.0.x and 4.1.x before 4.1.3, RSA BSAFE Crypto-J before 6.2.1, RSA BSAFE SSL-J before 6.2.1, and RSA BSAFE SSL-C before 2.8.9 allow remote attackers to discover a private-key prime by conducting a Lenstra…
ModificadaAlta (7.5)1.4%—Dell BsafeDell Bsafe Ssl-cDell Bsafe Ssl-j20/8/201517/6/2026
EMC RSA BSAFE Micro Edition Suite (MES) 4.0.x before 4.0.8 and 4.1.x before 4.1.3, RSA BSAFE Crypto-J before 6.2, RSA BSAFE SSL-J before 6.2, and RSA BSAFE SSL-C 2.8.9 and earlier do not enforce certain constraints on certificate data, which allows remote attackers to defeat a fingerprint-based certificate-blacklist…
ModificadaMedia (4.3)0.90%—Dell Bsafe Micro-edition-suiteDell Bsafe Ssl-j30/12/201417/6/2026
EMC RSA BSAFE Micro Edition Suite (MES) 4.0.x before 4.0.6 and RSA BSAFE SSL-J before 6.1.4 do not ensure that a server's X.509 certificate is the same during renegotiation as it was before renegotiation, which allows man-in-the-middle attackers to obtain sensitive information or modify TLS session data via a "triple…
ModificadaMedia (5)1.5%—Dell Bsafe Ssl-jEMC RSA Bsafe Ssl-j18/2/201417/6/2026
The SSLEngine API implementation in EMC RSA BSAFE SSL-J 5.x before 5.1.3 and 6.x before 6.0.2 allows remote attackers to trigger the selection of a weak cipher suite by using the wrap method during a certain incomplete-handshake state.
ModificadaMedia (5)1.9%—Dell Bsafe Ssl-jEMC RSA Bsafe Ssl-j18/2/201417/6/2026
The (1) JSAFE and (2) JSSE APIs in EMC RSA BSAFE SSL-J 5.x before 5.1.3 and 6.x before 6.0.2 make it easier for remote attackers to bypass intended cryptographic protection mechanisms by triggering application-data processing during the TLS handshake, a time at which the data is both unencrypted and unauthenticated.
ModificadaMedia (5)1.8%—Dell Bsafe Ssl-jEMC RSA Bsafe Ssl-j18/2/201417/6/2026
The SSLSocket implementation in the (1) JSAFE and (2) JSSE APIs in EMC RSA BSAFE SSL-J 5.x before 5.1.3 and 6.x before 6.0.2 allows remote attackers to cause a denial of service (memory consumption) by triggering application-data processing during the TLS handshake, a time at which the data is internally buffered.
ModificadaMedia (5)7.2%—Cisco Firewall Services ModuleHP AAA ServerHP Apache-based WEB ServerSymantec Clientless VPN Gateway 4400+6223/11/200416/6/2026
OpenSSL 0.9.6 before 0.9.6d does not properly handle unknown message types, which allows remote attackers to cause a denial of service (infinite loop), as demonstrated using the Codenomicon TLS Test Tool.
ModificadaMedia (5)10%—Cisco Firewall Services ModuleHP AAA ServerHP Apache-based WEB ServerSymantec Clientless VPN Gateway 4400+6123/11/200416/6/2026
The SSL/TLS handshaking code in OpenSSL 0.9.7a, 0.9.7b, and 0.9.7c, when using Kerberos ciphersuites, does not properly check the length of Kerberos tickets during a handshake, which allows remote attackers to cause a denial of service (crash) via a crafted SSL/TLS handshake that causes an out-of-bounds read.
ModificadaAlta (7.5)9.5%—Cisco Firewall Services ModuleHP AAA ServerHP Apache-based WEB ServerSymantec Clientless VPN Gateway 4400+6223/11/200416/6/2026
The do_change_cipher_spec function in OpenSSL 0.9.6c to 0.9.6k, and 0.9.7a to 0.9.7c, allows remote attackers to cause a denial of service (crash) via a crafted SSL/TLS handshake that triggers a null dereference.
ModificadaAlta (7.5)2.7%—Cisco IcdnDell Bsafe Ssl-j12/9/200116/6/2026
RSA BSAFE SSL-J 3.0, 3.0.1 and 3.1, as used in Cisco iCND 2.0, caches session IDs from failed login attempts, which could allow remote attackers to bypass SSL client authentication and gain access to sensitive data by logging in after an initial failure.