Total
2519 CVE
| CVE | Vendors | Products | Updated | CVSS v2 | CVSS v3 |
|---|---|---|---|---|---|
| CVE-2017-15423 | 3 Debian, Google, Redhat | 5 Debian Linux, Chrome, Enterprise Linux Desktop and 2 more | 2026-06-17 | 5.0 MEDIUM | 5.3 MEDIUM |
| Inappropriate implementation in BoringSSL SPAKE2 in Google Chrome prior to 63.0.3239.84 allowed a remote attacker to leak the low-order bits of SHA512(password) by inspecting protocol traffic. | |||||
| CVE-2017-14852 | 1 Orpak | 1 Siteomat | 2026-06-17 | 5.0 MEDIUM | 8.6 HIGH |
| An insecure communication was found between a user and the Orpak SiteOmat management console for all known versions, due to an invalid SSL certificate. The attack allows for an eavesdropper to capture the communication and decrypt the data. | |||||
| CVE-2017-13097 | 1 - | 1 - | 2026-06-17 | 4.6 MEDIUM | 7.8 HIGH |
| The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including modification of Rights Block to remove or relax license requirement. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts. | |||||
| CVE-2017-13096 | 1 - | 1 - | 2026-06-17 | 4.6 MEDIUM | 7.8 HIGH |
| The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including modification of Rights Block to remove or relax access control. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts. | |||||
| CVE-2017-13095 | 1 - | 1 - | 2026-06-17 | 4.6 MEDIUM | 7.8 HIGH |
| The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including modification of a license-deny response to a license grant. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts. | |||||
| CVE-2017-13094 | 1 - | 1 - | 2026-06-17 | 4.6 MEDIUM | 7.8 HIGH |
| The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including modification of the encryption key and insertion of hardware trojans in any IP. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts. | |||||
| CVE-2017-13093 | 1 - | 1 - | 2026-06-17 | 4.6 MEDIUM | 7.8 HIGH |
| The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including modification of encrypted IP cyphertext to insert hardware trojans. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts. | |||||
| CVE-2017-13092 | 1 - | 1 - | 2026-06-17 | 4.6 MEDIUM | 7.8 HIGH |
| The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including improperly specified HDL syntax allows use of an EDA tool as a decryption oracle. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts. | |||||
| CVE-2017-13091 | 1 - | 1 - | 2026-06-17 | 4.6 MEDIUM | 7.8 HIGH |
| The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including improperly specified padding in CBC mode allows use of an EDA tool as a decryption oracle. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts. | |||||
| CVE-2017-12151 | 4 Debian, Hp, Redhat and 1 more | 8 Debian Linux, Cifs Server, Enterprise Linux and 5 more | 2026-06-17 | 5.8 MEDIUM | 7.4 HIGH |
| A flaw was found in the way samba client before samba 4.4.16, samba 4.5.14 and samba 4.6.8 used encryption with the max protocol set as SMB3. The connection could lose the requirement for signing and encrypting to any DFS redirects, allowing an attacker to read or alter the contents of the connection via a man-in-the-middle attack. | |||||
| CVE-2016-9847 | 1 Phpmyadmin | 1 Phpmyadmin | 2026-06-17 | 5.0 MEDIUM | 5.3 MEDIUM |
| An issue was discovered in phpMyAdmin. When the user does not specify a blowfish_secret key for encrypting cookies, phpMyAdmin generates one at runtime. A vulnerability was reported where the way this value is created uses a weak algorithm. This could allow an attacker to determine the user's blowfish_secret and potentially decrypt their cookies. All 4.6.x versions (prior to 4.6.5), 4.4.x versions (prior to 4.4.15.9), and 4.0.x versions (prior to 4.0.10.18) are affected. | |||||
| CVE-2016-9346 | 1 Moxa | 6 Miineport E1, Miineport E1 Firmware, Miineport E2 and 3 more | 2026-06-17 | 5.0 MEDIUM | 5.3 MEDIUM |
| An issue was discovered in Moxa MiiNePort E1 versions prior to 1.8, E2 versions prior to 1.4, and E3 versions prior to 1.1. Configuration data are stored in a file that is not encrypted. | |||||
| CVE-2016-8889 | 1 Bitcoin Knots Project | 1 Bitcoin Knots | 2026-06-17 | 2.1 LOW | 6.2 MEDIUM |
| In Bitcoin Knots v0.11.0.ljr20150711 through v0.13.0.knots20160814 (fixed in v0.13.1.knots20161027), the debug console stores sensitive information including private keys and the wallet passphrase in its persistent command history. | |||||
| CVE-2016-8224 | 1 Lenovo | 57 Bios, Notebook 110 14ibr, Notebook 110 14ibr Bios and 54 more | 2026-06-17 | 4.6 MEDIUM | 4.4 MEDIUM |
| A vulnerability has been identified in some Lenovo Notebook and ThinkServer systems where an attacker with administrative privileges on a system could install a program that circumvents Intel Management Engine (ME) protections. This could result in a denial of service or privilege escalation attack on the system. | |||||
| CVE-2016-7812 | 1 Mufg | 1 Mitsubishi Ufj | 2026-06-17 | 4.3 MEDIUM | 3.1 LOW |
| The Bank of Tokyo-Mitsubishi UFJ, Ltd. App for Android ver5.3.1, ver5.2.2 and earlier allow a man-in-the-middle attacker to downgrade the communication between the app and the server from TLS v1.2 to SSL v3.0, which may result in the attacker to eavesdrop on an encrypted communication. | |||||
| CVE-2016-7585 | 1 Apple | 1 Mac Os X | 2026-06-17 | 2.1 LOW | 6.8 MEDIUM |
| An issue was discovered in certain Apple products. macOS before 10.12.4 is affected. The issue involves mishandling of DMA in the "EFI" component. It allows physically proximate attackers to discover the FileVault 2 encryption password via a crafted Thunderbolt adapter. | |||||
| CVE-2016-7439 | 1 Wolfssl | 1 Wolfssl | 2026-06-17 | 2.1 LOW | 5.5 MEDIUM |
| The C software implementation of RSA in wolfSSL (formerly CyaSSL) before 3.9.10 makes it easier for local users to discover RSA keys by leveraging cache-bank hit differences. | |||||
| CVE-2016-7438 | 1 Wolfssl | 1 Wolfssl | 2026-06-17 | 2.1 LOW | 5.5 MEDIUM |
| The C software implementation of ECC in wolfSSL (formerly CyaSSL) before 3.9.10 makes it easier for local users to discover RSA keys by leveraging cache-bank hit differences. | |||||
| CVE-2016-7270 | 1 Microsoft | 1 .net Framework | 2026-06-17 | 5.0 MEDIUM | 7.5 HIGH |
| The Data Provider for SQL Server in Microsoft .NET Framework 4.6.2 mishandles a developer-supplied key, which allows remote attackers to bypass the Always Encrypted protection mechanism and obtain sensitive cleartext information by leveraging key guessability, aka ".NET Information Disclosure Vulnerability." | |||||
| CVE-2016-6899 | 1 Huawei | 14 Rh1288 V3 Server, Rh1288 V3 Server Firmware, Rh2288 V3 Server and 11 more | 2026-06-17 | 4.3 MEDIUM | 7.5 HIGH |
| The Intelligent Baseboard Management Controller (iBMC) in Huawei RH1288 V3 servers with software before V100R003C00SPC613, RH2288 V3 servers with software before V100R003C00SPC617, RH2288H V3 servers with software before V100R003C00SPC515, RH5885 V3 servers with software before V100R003C10SPC102, and XH620 V3, XH622 V3, and XH628 V3 servers with software before V100R003C00SPC610 might allow remote attackers to decrypt encrypted data and consequently obtain sensitive information by leveraging selection of an insecure SSL encryption algorithm. | |||||
