212 matches found
CVE-2020-13594
CVE-2020-13594 concerns the BLE controller in Espressif ESP-IDF 4.2 and earlier for ESP32. The vulnerability arises because the channel map field of the connection request packet is not properly restricted, allowing radio-range attackers to crash the device via a crafted packet ( denial of servic...
Design/Logic Flaw
An encryption-bypass issue was discovered on Espressif ESP-IDF devices through 4.2, ESP8266NONOSSDK devices through 3.0.3, and ESP8266RTOSSDK devices through 3.3. Broadcasting forged beacon frames forces a device to change its authentication mode to OPEN, effectively disabling its 802.11 encrypti...
CVE-2020-12638
The CVE affects Espressif IoT SDKs: ESP-IDF up to 4.2, ESP8266_NONOS_SDK up to 3.0.3, and ESP8266_RTOS_SDK up to 3.3. A forged-beacon-frame exploit forces a device to switch its authentication mode to OPEN, effectively disabling 802.11 encryption. The underlying issue is an encryption bypass trig...
Hamas Ensnares Israeli Soldiers with Pretty 'Ladies'
Hamas has been caught taking a classic “catfish” approach, to tempt Israeli soldiers into installing spyware on their phones. Members posed as teen girls who are looking for quality chat time. This is the third time that the Palestinian group has used the tactic – but this time it upped its...
Hamas hackers posed as women to con IDF into downloading malware
By Waqas The hackers posed as women to send out malware and receive crucial information about the device as well as controlling key functions of the phone. This is a post from HackRead.com Read the original post: Hamas hackers posed as women to con IDF into downloading malware...
CVE-2019-15894
An issue was discovered in Espressif ESP-IDF 2.x, 3.0.x through 3.0.9, 3.1.x through 3.1.6, 3.2.x through 3.2.3, and 3.3.x through 3.3.1. An attacker who uses fault injection to physically disrupt the ESP32 CPU can bypass the Secure Boot digest verification at startup, and boot unverified code fr...
CVE-2019-15894
An issue was discovered in Espressif ESP-IDF 2.x, 3.0.x through 3.0.9, 3.1.x through 3.1.6, 3.2.x through 3.2.3, and 3.3.x through 3.3.1. An attacker who uses fault injection to physically disrupt the ESP32 CPU can bypass the Secure Boot digest verification at startup, and boot unverified code fr...
Design/Logic Flaw
An issue was discovered in Espressif ESP-IDF 2.x, 3.0.x through 3.0.9, 3.1.x through 3.1.6, 3.2.x through 3.2.3, and 3.3.x through 3.3.1. An attacker who uses fault injection to physically disrupt the ESP32 CPU can bypass the Secure Boot digest verification at startup, and boot unverified code fr...
CVE-2019-15894
CVE-2019-15894 affects Espressif ESP-IDF 2.x, 3.0.x–3.0.9, 3.1.x–3.1.6, 3.2.x–3.2.3, and 3.3.x–3.3.1.** An attacker using fault injection to disrupt the ESP32 CPU can bypass the Secure Boot digest verification at startup and boot unverified code from flash. This attack does not disable Flash Encr...
CVE-2019-15894
An issue was discovered in Espressif ESP-IDF 2.x, 3.0.x through 3.0.9, 3.1.x through 3.1.6, 3.2.x through 3.2.3, and 3.3.x through 3.3.1. An attacker who uses fault injection to physically disrupt the ESP32 CPU can bypass the Secure Boot digest verification at startup, and boot unverified code fr...
CVE-2019-12586
The EAP peer implementation in Espressif ESP-IDF 2.0.0 through 4.0.0 and ESP8266NONOSSDK 2.2.0 through 3.1.0 processes EAP Success messages before any EAP method completion or failure, which allows attackers in radio range to cause a denial of service crash via a crafted message...
CVE-2019-12586
The EAP peer implementation in Espressif ESP-IDF 2.0.0 through 4.0.0 and ESP8266NONOSSDK 2.2.0 through 3.1.0 processes EAP Success messages before any EAP method completion or failure, which allows attackers in radio range to cause a denial of service crash via a crafted message...
Design/Logic Flaw
The EAP peer implementation in Espressif ESP-IDF 2.0.0 through 4.0.0 and ESP8266NONOSSDK 2.2.0 through 3.1.0 processes EAP Success messages before any EAP method completion or failure, which allows attackers in radio range to cause a denial of service crash via a crafted message...
CVE-2019-12586
CVE-2019-12586 affects Espressif ESP-IDF (2.0.0–4.0.0) and ESP8266_NONOS_SDK (2.2.0–3.1.0): the EAP peer processes EAP Success messages before any EAP method completion, enabling a radio‑range attacker to crash the device (DoS) via a crafted message. Red Hat and OSV entries confirm the same descr...
CVE-2019-12587
The EAP peer implementation in Espressif ESP-IDF 2.0.0 through 4.0.0 and ESP8266NONOSSDK 2.2.0 through 3.1.0 allows the installation of a zero Pairwise Master Key PMK after the completion of any EAP authentication method, which allows attackers in radio range to replay, decrypt, or spoof frames v...
CVE-2019-12587
The EAP peer implementation in Espressif ESP-IDF 2.0.0 through 4.0.0 and ESP8266NONOSSDK 2.2.0 through 3.1.0 allows the installation of a zero Pairwise Master Key PMK after the completion of any EAP authentication method, which allows attackers in radio range to replay, decrypt, or spoof frames v...
Authentication flaw
The EAP peer implementation in Espressif ESP-IDF 2.0.0 through 4.0.0 and ESP8266NONOSSDK 2.2.0 through 3.1.0 allows the installation of a zero Pairwise Master Key PMK after the completion of any EAP authentication method, which allows attackers in radio range to replay, decrypt, or spoof frames v...
CVE-2019-12587
The EAP peer implementation in Espressif ESP-IDF 2.0.0 through 4.0.0 and ESP8266NONOSSDK 2.2.0 through 3.1.0 allows the installation of a zero Pairwise Master Key PMK after the completion of any EAP authentication method, which allows attackers in radio range to replay, decrypt, or spoof frames v...
CVE-2019-12587
The CVE-2019-12587 entry concerns the EAP peer implementation in Espressif ESP-IDF 2.0.0–4.0.0 and ESP8266_NONOS_SDK 2.2.0–3.1.0, where a zero PMK can be installed after any EAP authentication, enabling attackers in radio range to replay, decrypt, or spoof frames via a rogue AP. Red Hat and OSV r...
CVE-2018-18558
An issue was discovered in Espressif ESP-IDF 2.x and 3.x before 3.0.6 and 3.1.x before 3.1.1. Insufficient validation of input data in the 2nd stage bootloader allows a physically proximate attacker to bypass secure boot checks and execute arbitrary code, by crafting an application binary that...