CVE-2019-5303
https://notcve.org/view.php?id=CVE-2019-5303
There are two denial of service vulnerabilities on some Huawei smartphones. An attacker may send specially crafted TD-SCDMA messages from a rogue base station to the affected devices. Due to insufficient input validation of two values when parsing the messages, successful exploit may cause device abnormal. This is 2 out of 2 vulnerabilities. Different than CVE-2020-5302. • https://www.huawei.com/en/psirt/security-advisories/huawei-sa-20190814-01-mobile-en • CWE-20: Improper Input Validation •
CVE-2019-5302
https://notcve.org/view.php?id=CVE-2019-5302
There are two denial of service vulnerabilities on some Huawei smartphones. An attacker may send specially crafted TD-SCDMA messages from a rogue base station to the affected devices. Due to insufficient input validation of two values when parsing the messages, successful exploit may cause device abnormal. This is 1 out of 2 vulnerabilities. Different than CVE-2020-5303. • https://www.huawei.com/en/psirt/security-advisories/huawei-sa-20190814-01-mobile-en • CWE-20: Improper Input Validation •
CVE-2019-5235
https://notcve.org/view.php?id=CVE-2019-5235
Some Huawei smart phones have a null pointer dereference vulnerability. An attacker crafts specific packets and sends to the affected product to exploit this vulnerability. Successful exploitation may cause the affected phone to be abnormal. Algunos teléfonos inteligentes Huawei tienen una vulnerabilidad de desreferencia del puntero null. Un atacante crea paquetes específicos y los envía al producto afectado para explotar esta vulnerabilidad. • https://www.huawei.com/en/psirt/security-advisories/huawei-sa-20190821-01-smartphone-en • CWE-476: NULL Pointer Dereference •
CVE-2019-9506 – Blutooth BR/EDR specification does not specify sufficient encryption key length and allows an attacker to influence key length negotiation
https://notcve.org/view.php?id=CVE-2019-9506
The Bluetooth BR/EDR specification up to and including version 5.1 permits sufficiently low encryption key length and does not prevent an attacker from influencing the key length negotiation. This allows practical brute-force attacks (aka "KNOB") that can decrypt traffic and inject arbitrary ciphertext without the victim noticing. La especificación de Bluetooth BR/EDR incluyendo versión 5.1, permite una longitud de clave de cifrado suficientemente baja y no impide que un atacante influya en la negociación de longitud de clave. Esto permite ataques prácticos de fuerza bruta (también se conoce como "KNOB") que pueden descifrar el tráfico e inyectar texto cifrado arbitrario sin que la víctima se dé cuenta. A flaw was discovered in the Bluetooth protocol. • http://lists.opensuse.org/opensuse-security-announce/2019-10/msg00036.html http://lists.opensuse.org/opensuse-security-announce/2019-10/msg00037.html http://seclists.org/fulldisclosure/2019/Aug/11 http://seclists.org/fulldisclosure/2019/Aug/13 http://seclists.org/fulldisclosure/2019/Aug/14 http://seclists.org/fulldisclosure/2019/Aug/15 http://www.cs.ox.ac.uk/publications/publication12404-abstract.html http://www.huawei.com/en/psirt/security-advisories/huawei-sa-20190828-01-knob-en https: • CWE-310: Cryptographic Issues CWE-327: Use of a Broken or Risky Cryptographic Algorithm •
CVE-2018-7911
https://notcve.org/view.php?id=CVE-2018-7911
Some Huawei smart phones ALP-AL00B 8.0.0.106(C00), 8.0.0.113(SP2C00), 8.0.0.113(SP3C00), 8.0.0.113(SP7C00), 8.0.0.118(C00), 8.0.0.120(SP2C00), 8.0.0.125(SP1C00), 8.0.0.125(SP3C00), 8.0.0.126(SP2C00), 8.0.0.126(SP5C00), 8.0.0.127(SP1C00), 8.0.0.128(SP2C00), ALP-AL00B-RSC 1.0.0.2, BLA-TL00B 8.0.0.113(SP7C01), 8.0.0.118(C01), 8.0.0.120(SP2C01), 8.0.0.125(SP1C01), 8.0.0.125(SP2C01), 8.0.0.125(SP3C01), 8.0.0.126(SP2C01), 8.0.0.126(SP5C01), 8.0.0.127(SP1C01), 8.0.0.128(SP2C01), 8.0.0.129(SP2C01), Charlotte-AL00A 8.1.0.105(SP7C00), 8.1.0.106(SP3C00), 8.1.0.107(SP5C00), 8.1.0.107(SP7C00), 8.1.0.108(SP3C00), 8.1.0.108(SP6C00), 8.1.0.109(SP2C00), Emily-AL00A 8.1.0.105(SP6C00), 8.1.0.106(SP2C00), 8.1.0.107(SP5C00), 8.1.0.107(SP7C00), 8.1.0.108(SP2C00), 8.1.0.108(SP6C00), 8.1.0.109(SP5C00) have a Factory Reset Protection (FRP) bypass security vulnerability. When re-configuring the mobile phone using the factory reset protection (FRP) function, an attacker can login the configuration flow by Gaode Map and can perform some operations to update the Google account. As a result, the FRP function is bypassed. Algnos smartphones Huawei ALP-AL00B 8.0.0.106(C00), 8.0.0.113(SP2C00), 8.0.0.113(SP3C00), 8.0.0.113(SP7C00), 8.0.0.118(C00), 8.0.0.120(SP2C00), 8.0.0.125(SP1C00), 8.0.0.125(SP3C00), 8.0.0.126(SP2C00), 8.0.0.126(SP5C00), 8.0.0.127(SP1C00), 8.0.0.128(SP2C00), ALP-AL00B-RSC 1.0.0.2, BLA-TL00B 8.0.0.113(SP7C01), 8.0.0.118(C01), 8.0.0.120(SP2C01), 8.0.0.125(SP1C01), 8.0.0.125(SP2C01), 8.0.0.125(SP3C01), 8.0.0.126(SP2C01), 8.0.0.126(SP5C01), 8.0.0.127(SP1C01), 8.0.0.128(SP2C01), 8.0.0.129(SP2C01), Charlotte-AL00A 8.1.0.105(SP7C00), 8.1.0.106(SP3C00), 8.1.0.107(SP5C00), 8.1.0.107(SP7C00), 8.1.0.108(SP3C00), 8.1.0.108(SP6C00), 8.1.0.109(SP2C00), Emily-AL00A 8.1.0.105(SP6C00), 8.1.0.106(SP2C00), 8.1.0.107(SP5C00), 8.1.0.107(SP7C00), 8.1.0.108(SP2C00), 8.1.0.108(SP6C00) y 8.1.0.109(SP5C00) tienen una vulnerabilidad de omisión de seguridad de FRP (Factory Reset Protection). Al reconfigurar el teléfono móvil mediante la función FRP, un atacante puede iniciar sesión en el flujo de configuración por Gaode Map y puede realizar algunas operaciones para actualizar la cuenta de Google. • http://www.huawei.com/en/psirt/security-advisories/huawei-sa-20180822-01-frpbypass-en •