| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| SawMill 5.0.21 uses weak encryption to store passwords, which allows attackers to easily decrypt the password and modify the SawMill configuration. |
| Total Commander 6.53 uses weak encryption to store FTP usernames and passwords in WCX_FTP.INI, which allows local users to decrypt the passwords and gain access to FTP servers, as possibly demonstrated by the W32.Gudeb worm. |
| Unspecified vulnerability in the Transparent Data Encryption (TDE) Wallet component of Oracle Database server 10.2.0.1 has unspecified impact and attack vectors, as identified by Oracle Vuln# DB27. NOTE: Oracle has not disputed a reliable researcher report that TDA stores the master key without encryption, which allows local users to obtain the key via the SGA. |
| The crypt_gensalt functions for BSDI-style extended DES-based and FreeBSD-sytle MD5-based password hashes in crypt_blowfish 0.4.7 and earlier do not evenly and randomly distribute salts, which makes it easier for attackers to guess passwords from a stolen password file due to the increased number of collisions. |
| Trend Micro Virus Control System (TVCS) Log Collector allows remote attackers to obtain usernames, encrypted passwords, and other sensitive information via a URL request for getservers.exe with the action parameter set to "selects1", which returns log files. |
| RTS CryptoBuddy 1.2 and earlier stores bytes 53 through 55 of a 55-byte passphrase in plaintext, which makes it easier for local users to guess the passphrase. |
| IBM WebSphere Advanced Server Edition 4.0.4 uses a weak encryption algorithm (XOR and base64 encoding), which allows local users to decrypt passwords when the configuration file is exported to XML. |
| Nortel VPN client 5.01 stores the cleartext password in the memory of the Extranet.exe process, which could allow local users to obtain sensitive information. |
| CryptoBuddy 1.0 and 1.2 does not use the user-supplied passphrase to encrypt data, which could allow local users to use their own passphrase to decrypt the data. |
| The default configuration of Mail.app in Mac OS X 10.0 through 10.0.4 and 10.1 through 10.1.5 sends iDisk authentication credentials in cleartext when connecting to Mac.com, which could allow remote attackers to obtain passwords by sniffing network traffic. |
| Implementations of SSH version 1.5, including (1) OpenSSH up to version 2.3.0, (2) AppGate, and (3) ssh-1 up to version 1.2.31, in certain configurations, allow a remote attacker to decrypt and/or alter traffic via a "Bleichenbacher attack" on PKCS#1 version 1.5. |
| 3D3.Com ShopFactory 5.8 uses client-side encryption and decryption for sensitive price data, which allows remote attackers to modify shopping cart prices by using the Javascript to decrypt the cookie that contains the data. |
| CoffeeCup Direct and Free FTP clients uses weak encryption to store passwords in the FTPServers.ini file, which could allow attackers to easily decrypt the passwords. |
| Cisco AS5350 IOS 12.2(11)T with access control lists (ACLs) applied and possibly with ssh running allows remote attackers to cause a denial of service (crash) via a port scan, possibly due to an ssh bug. NOTE: this issue could not be reproduced by the vendor |
| The SSH-1 protocol allows remote servers to conduct man-in-the-middle attacks and replay a client challenge response to a target server by creating a Session ID that matches the Session ID of the target, but which uses a public key pair that is weaker than the target's public key, which allows the attacker to compute the corresponding private key and use the target's Session ID with the compromised key pair to masquerade as the target. |
| The remote administration client for RhinoSoft Serv-U 3.0 sends the user password in plaintext even when S/KEY One-Time Password (OTP) authentication is enabled, which allows remote attackers to sniff passwords. |
| TLS/SSL weak cipher suites enabled. The following products are affected: Acronis Cyber Protect 15 (Windows, Linux) before build 30984. |
| A vulnerability in the detection engine of Cisco Firepower System Software could allow an unauthenticated, remote attacker to restart an instance of the Snort detection engine on an affected device, resulting in a brief denial of service (DoS) condition. The vulnerability is due to the incorrect handling of a Transport Layer Security (TLS) extension during TLS connection setup for the affected software. An attacker could exploit this vulnerability by sending a crafted TLS connection setup request to an affected device. A successful exploit could allow the attacker to cause the Snort detection engine on the affected device to restart, resulting in a DoS condition. Cisco Bug IDs: CSCvg97808. |
| A vulnerability in the detection engine of Cisco Firepower System Software could allow an unauthenticated, remote attacker to restart an instance of the Snort detection engine on an affected device, resulting in a brief denial of service (DoS) condition. The vulnerability is due to the incorrect handling of Transport Layer Security (TLS) TCP connection setup for the affected software. An attacker could exploit this vulnerability by sending crafted TLS traffic to an affected device. A successful exploit could allow the attacker to cause the Snort detection engine on the affected device to restart, resulting in a DoS condition. Cisco Bug IDs: CSCvg99327. |
| A vulnerability in the implementation of Extensible Authentication Protocol over LAN (EAPOL) functionality in Cisco Small Business 100 Series Wireless Access Points and Cisco Small Business 300 Series Wireless Access Points could allow an unauthenticated, adjacent attacker to force the downgrade of the encryption algorithm that is used between an authenticator (access point) and a supplicant (Wi-Fi client). The vulnerability is due to the improper processing of certain EAPOL messages that are received during the Wi-Fi handshake process. An attacker could exploit this vulnerability by establishing a man-in-the-middle position between a supplicant and an authenticator and manipulating an EAPOL message exchange to force usage of a WPA-TKIP cipher instead of the more secure AES-CCMP cipher. A successful exploit could allow the attacker to conduct subsequent cryptographic attacks, which could lead to the disclosure of confidential information. Cisco Bug IDs: CSCvj29229. |