| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| The HTTP module in the (1) Branch Intelligent Management System (BIMS) and (2) web management components on Huawei AR routers and S2000, S3000, S3500, S3900, S5100, S5600, and S7800 switches uses predictable Session ID values, which makes it easier for remote attackers to hijack sessions via a brute-force attack. |
| authenticate_ad_setup_finished.cfm in MediaCAST 8 and earlier allows remote attackers to discover usernames and cleartext passwords by reading the error messages returned for requests that use the UserID parameter. |
| rhc-chk.rb in Red Hat OpenShift Origin before 1.1, when -d (debug mode) is used, outputs the password and other sensitive information in cleartext, which allows context-dependent attackers to obtain sensitive information, as demonstrated by including log files or Bugzilla reports in support channels. |
| Apache CXF 2.5.x before 2.5.10, 2.6.x before CXF 2.6.7, and 2.7.x before CXF 2.7.4 does not verify that a specified cryptographic algorithm is allowed by the WS-SecurityPolicy AlgorithmSuite definition before decrypting, which allows remote attackers to force CXF to use weaker cryptographic algorithms than intended and makes it easier to decrypt communications, aka "XML Encryption backwards compatibility attack." |
| The client in FreeIPA 2.x and 3.x before 3.1.2 does not properly obtain the Certification Authority (CA) certificate from the server, which allows man-in-the-middle attackers to spoof a join procedure via a crafted certificate. |
| Zeacom Chat Server before 5.1 uses too short a random string for the JSESSIONID value, which makes it easier for remote attackers to hijack sessions or cause a denial of service (Chat Server crash or Tomcat daemon crash) via a brute-force attack. |
| The Cryptographic Message Syntax (CMS) implementation in crypto/cms/cms_asn1.c in OpenSSL before 0.9.8o and 1.x before 1.0.0a does not properly handle structures that contain OriginatorInfo, which allows context-dependent attackers to modify invalid memory locations or conduct double-free attacks, and possibly execute arbitrary code, via unspecified vectors. |
| OpenSSL 0.9.8i on the Gaisler Research LEON3 SoC on the Xilinx Virtex-II Pro FPGA uses a Fixed Width Exponentiation (FWE) algorithm for certain signature calculations, and does not verify the signature before providing it to a caller, which makes it easier for physically proximate attackers to determine the private key via a modified supply voltage for the microprocessor, related to a "fault-based attack." |
| tgsrv.exe in the Repair Service in Consona Dynamic Agent, Repair Manager, Subscriber Activation, and Subscriber Agent relies on a predictable timestamp field to validate input to the \\.\pipe\__RepairService_pipe__company named pipe, which allows remote authenticated users to execute arbitrary code by obtaining the current time from (1) tcpip.sys or (2) an SMB2 service. |
| The site-locking implementation in the SdcWebSecureBase interface in tgctlcm.dll in Consona Live Assistance, Dynamic Agent, and Subscriber Assistance relies on a list of server domain names to restrict execution of ActiveX controls, which makes it easier for man-in-the-middle attackers to execute arbitrary code via a DNS hijacking attack. |
| The loginDefaultEncrypt algorithm in loginLib in Wind River VxWorks before 6.9 does not properly support a large set of distinct possible passwords, which makes it easier for remote attackers to obtain access via a (1) telnet, (2) rlogin, or (3) FTP session. |
| Cisco Unified Wireless Network (UWN) Solution 7.x before 7.0.98.0 does not use an adequate message-digest algorithm for a self-signed certificate, which allows remote attackers to bypass intended access restrictions via vectors involving collisions, aka Bug ID CSCtd67660. |
| PGP Desktop 10.0.x before 10.0.3 SP2 and 10.1.0 before 10.1.0 SP1 does not properly implement the "Decrypt/Verify File via Right-Click" functionality for multi-packet OpenPGP messages that represent multi-message input, which allows remote attackers to spoof signed data by concatenating an additional message to the end of a legitimately signed message, related to a "piggy-back" or "unsigned data injection" issue. |
| The offline backup mechanism in Research In Motion (RIM) BlackBerry Desktop Software uses single-iteration PBKDF2, which makes it easier for local users to decrypt a .ipd file via a brute-force attack. |
| The IO::Socket::SSL module 1.35 for Perl, when verify_mode is not VERIFY_NONE, fails open to VERIFY_NONE instead of throwing an error when a ca_file/ca_path cannot be verified, which allows remote attackers to bypass intended certificate restrictions. |
| Passlogix v-GO Self-Service Password Reset (SSPR) and OEM before 7.0A allows physically proximate attackers to execute arbitrary programs without authentication by triggering use of an invalid SSL certificate and using the Internet Explorer interface to navigate through the filesystem via a "Save As" dialog that is reachable from the "Certificate Export" wizard. |
| CollabNet ScrumWorks Basic 1.8.4 uses cleartext credentials for network communication and the internal database, which makes it easier for context-dependent attackers to obtain sensitive information by (1) sniffing the network for transmissions of Java objects or (2) reading the database. |
| The register_user function in client/new_account_form.php in Domain Technologie Control (DTC) before 0.32.9 includes a cleartext password in an e-mail message, which makes it easier for remote attackers to obtain sensitive information by sniffing the network. |
| 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. |
| The W3C XML Encryption Standard, as used in the JBoss Web Services (JBossWS) component in JBoss Enterprise Portal Platform before 5.2.2 and other products, when using block ciphers in cipher-block chaining (CBC) mode, allows remote attackers to obtain plaintext data via a chosen-ciphertext attack on SOAP responses, aka "character encoding pattern attack." |