| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| The TLS protocol 1.2 and earlier, as used in Mozilla Firefox, Google Chrome, Qt, and other products, can encrypt compressed data without properly obfuscating the length of the unencrypted data, which allows man-in-the-middle attackers to obtain plaintext HTTP headers by observing length differences during a series of guesses in which a string in an HTTP request potentially matches an unknown string in an HTTP header, aka a "CRIME" attack. |
| The OS deployment feature in Baramundi Management Suite 7.5 through 8.9 stores credentials in cleartext on deployed machines, which allows remote attackers to obtain sensitive information by reading a file. NOTE: this ID was also incorrectly mapped to a separate issue in Oracle Outside In, but the correct ID for that issue is CVE-2013-5763. |
| The CRC32C feature in the Btrfs implementation in the Linux kernel before 3.8-rc1 allows local users to cause a denial of service (extended runtime of kernel code) by creating many different files whose names are associated with the same CRC32C hash value. |
| IBM WebSphere Application Server (WAS) 6.0.x before 6.0.2.41, 6.1.x before 6.1.0.31, and 7.0.x before 7.0.0.11, when the -trace option (aka debugging mode) is enabled, executes debugging statements that print string representations of unspecified objects, which allows attackers to obtain sensitive information by reading the trace output. |
| Mozilla Firefox before 3.5.14 and 3.6.x before 3.6.11, Thunderbird before 3.0.9 and 3.1.x before 3.1.5, and SeaMonkey before 2.0.9 recognize a wildcard IP address in the subject's Common Name field of an X.509 certificate, which might allow man-in-the-middle attackers to spoof arbitrary SSL servers via a crafted certificate issued by a legitimate Certification Authority. |
| The Math.random function in the JavaScript implementation in Mozilla Firefox 3.5.10 through 3.5.11, 3.6.4 through 3.6.8, and 4.0 Beta1 uses a random number generator that is seeded only once per document object, which makes it easier for remote attackers to track a user, or trick a user into acting upon a spoofed pop-up message, by calculating the seed value, related to a "temporary footprint" and an "in-session phishing attack." NOTE: this vulnerability exists because of an incorrect fix for CVE-2008-5913. |
| The WPA2 implementation on the Belkin N900 F9K1104v1 router establishes a WPS PIN based on 6 digits of the LAN/WLAN MAC address, which makes it easier for remote attackers to obtain access to a Wi-Fi network by reading broadcast packets, a different vulnerability than CVE-2012-4366. |
| WebAdmin in the Mobility Pack before 1.2 in Novell Data Synchronizer 1.x through 1.1.2 build 428 supports weak SSL ciphers, which makes it easier for remote attackers to obtain access via a brute-force attack. |
| Opera before 11.60 does not properly handle certificate revocation, which has unspecified impact and remote attack vectors related to "corner cases." |
| The service utility in EMC Avamar 5.x before 5.0.4 uses cleartext to transmit event details in (1) service requests and (2) e-mail messages, which might allow remote attackers to obtain sensitive information by sniffing the network. |
| Tinyproxy 1.8.3 and earlier allows remote attackers to cause a denial of service (CPU and memory consumption) via (1) a large number of headers or (2) a large number of forged headers that trigger hash collisions predictably. bucket. |
| The CRC32C feature in the Btrfs implementation in the Linux kernel before 3.8-rc1 allows local users to cause a denial of service (prevention of file creation) by leveraging the ability to write to a directory important to the victim, and creating a file with a crafted name that is associated with a specific CRC32C hash value. |
| The IKE implementation in Cisco IOS 12.2 through 12.4 on Cisco 7200 and 7301 routers with VAM2+ allows remote attackers to cause a denial of service (device reload) via a malformed IKE packet, aka Bug ID CSCtb13491. |
| NetSaro Enterprise Messenger Server 2.0 stores cleartext console credentials in configuration.xml, which allows local users to obtain sensitive information by reading this file and performing a base64 decoding step. |
| Algorithmic complexity vulnerability in Gem::Version::ANCHORED_VERSION_PATTERN in lib/rubygems/version.rb in RubyGems before 1.8.23.2, 1.8.24 through 1.8.26, 2.0.x before 2.0.10, and 2.1.x before 2.1.5, as used in Ruby 1.9.0 through 2.0.0p247, allows remote attackers to cause a denial of service (CPU consumption) via a crafted gem version that triggers a large amount of backtracking in a regular expression. NOTE: this issue is due to an incomplete fix for CVE-2013-4287. |
| The implementation of Cryptographic Message Syntax (CMS) and PKCS #7 in OpenSSL before 0.9.8u and 1.x before 1.0.0h does not properly restrict certain oracle behavior, which makes it easier for context-dependent attackers to decrypt data via a Million Message Attack (MMA) adaptive chosen ciphertext attack. |
| Ruby (aka CRuby) 1.9 before 1.9.3-p327 and 2.0 before r37575 computes hash values without properly restricting the ability to trigger hash collisions predictably, which allows context-dependent attackers to cause a denial of service (CPU consumption) via crafted input to an application that maintains a hash table, as demonstrated by a universal multicollision attack against a variant of the MurmurHash2 algorithm, a different vulnerability than CVE-2011-4815. |
| SilverStripe 2.3.x before 2.3.10 and 2.4.x before 2.4.4 uses weak entropy when generating tokens for (1) the CSRF protection mechanism, (2) autologin, (3) "forgot password" functionality, and (4) password salts, which makes it easier for remote attackers to bypass intended access restrictions via unspecified vectors. |
| The Web Client Service in IBM Datacap Taskmaster Capture 8.0.1 before FP1 requires a cleartext password, which has unspecified impact and attack vectors. |
| translate/translate_manager.cc in Google Chrome before 17.0.963.56 and 19.x before 19.0.1036.7 uses an HTTP session to exchange data for translation, which allows remote attackers to obtain sensitive information by sniffing the network. |