Vulnerabilities
Summary — last 7 days
New vulnerabilities2,739▲ 36 vs. last week
Critical / high1,474▲ 366 vs. last week
New active exploitation (KEV)7▼ 3 vs. last week
Unscored (no CVSS)62▼ 464 vs. last week
20 results, sorted by published date (most recent first)
| CVE | Status | Severity | EPSS | Active exploitation | Affected technologies | Published ▼ | Modified | Description |
|---|---|---|---|---|---|---|---|---|
| Analyzed | Medium (4) | 0.18% | — | Gnupg Libgcrypt | 4/23/2026 | 6/17/2026 | Libgcrypt before 1.12.2 mishandles Dilithium signing. Writes to a static array lack a bounds check but do not use attacker-controlled data. | |
| Modified | Medium (6.7) | 0.19% | — | Gnupg Libgcrypt | 4/23/2026 | 7/14/2026 | Libgcrypt before 1.12.2 sometimes allows a heap-based buffer overflow and denial of service via crafted ECDH ciphertext to gcry_pk_decrypt. | |
| Deferred | Low (3.1) | 0.41% | — | LibsshAIGnupg LibgcryptAI | 9/9/2025 | 9/1/2026 | A flaw was found in libssh's handling of key exchange (KEX) processes when a client repeatedly sends incorrect KEX guesses. The library fails to free memory during these rekey operations, which can gradually exhaust system memory. This issue can lead to crashes on the client side, particularly when using libgcrypt,… | |
| Deferred | Medium (5.9) | 1.1% | — | Gnupg LibgcryptAI | 3/6/2024 | 6/17/2026 | A timing-based side-channel flaw was found in libgcrypt's RSA implementation. This issue may allow a remote attacker to initiate a Bleichenbacher-style attack, which can lead to the decryption of RSA ciphertexts. | |
| Modified | Medium (5.9) | 1.4% | — | Gnupg Libgcrypt | 9/6/2021 | 6/17/2026 | The ElGamal implementation in Libgcrypt before 1.9.4 allows plaintext recovery because, during interaction between two cryptographic libraries, a certain dangerous combination of the prime defined by the receiver's public key, the generator defined by the receiver's public key, and the sender's ephemeral exponents can… | |
| Modified | High (7.5) | 2.3% | — | Gnupg LibgcryptDebian LinuxFedoraproject FedoraOracle Communications Cloud Native Core Binding Support Function+4 | 6/8/2021 | 6/17/2026 | Libgcrypt before 1.8.8 and 1.9.x before 1.9.3 mishandles ElGamal encryption because it lacks exponent blinding to address a side-channel attack against mpi_powm, and the window size is not chosen appropriately. This, for example, affects use of ElGamal in OpenPGP. | |
| Modified | High (7.8) | 1.1% | — | Gnupg LibgcryptOracle Communications Billing AND Revenue Management | 1/29/2021 | 6/17/2026 | _gcry_md_block_write in cipher/hash-common.c in Libgcrypt version 1.9.0 has a heap-based buffer overflow when the digest final function sets a large count value. It is recommended to upgrade to 1.9.1 or later. | |
| Modified | Medium (5.9) | 2.0% | — | GnupgGnupg LibgcryptDebian Linux | 11/29/2019 | 6/17/2026 | The mpi_powm function in Libgcrypt before 1.6.3 and GnuPG before 1.4.19 allows attackers to obtain sensitive information by leveraging timing differences when accessing a pre-computed table during modular exponentiation, related to a "Last-Level Cache Side-Channel Attack." | |
| Modified | Medium (4.2) | 0.58% | — | GnupgGnupg LibgcryptDebian Linux | 11/29/2019 | 6/17/2026 | Libgcrypt before 1.6.3 and GnuPG before 1.4.19 does not implement ciphertext blinding for Elgamal decryption, which allows physically proximate attackers to obtain the server's private key by determining factors using crafted ciphertext and the fluctuations in the electromagnetic field during multiplication. | |
| Modified | Medium (6.3) | 0.51% | — | Canonical Ubuntu LinuxOpensuse LeapLibgcrypt20 Project Libgcrypt20 | 9/25/2019 | 6/17/2026 | It was discovered that there was a ECDSA timing attack in the libgcrypt20 cryptographic library. Version affected: 1.8.4-5, 1.7.6-2+deb9u3, and 1.6.3-2+deb8u4. Versions fixed: 1.8.5-2 and 1.6.3-2+deb8u7. | |
| Modified | Medium (5.9) | 2.1% | — | Gnupg LibgcryptOpensuse Leap | 6/20/2019 | 6/17/2026 | In Libgcrypt 1.8.4, the C implementation of AES is vulnerable to a flush-and-reload side-channel attack because physical addresses are available to other processes. (The C implementation is used on platforms where an assembly-language implementation is unavailable.) NOTE: the vendor's position is that the issue report… | |
| Modified | Medium (6.8) | 3.8% | — | Gnupg LibgcryptCanonical Ubuntu LinuxDebian Linux | 7/26/2018 | 6/17/2026 | libgcrypt before version 1.7.8 is vulnerable to a cache side-channel attack resulting into a complete break of RSA-1024 while using the left-to-right method for computing the sliding-window expansion. The same attack is believed to work on RSA-2048 with moderately more computation. This side-channel requires that… | |
| Modified | Medium (4.7) | 0.89% | — | Gnupg LibgcryptCanonical Ubuntu LinuxDebian LinuxRedhat Ansible Tower+4 | 6/13/2018 | 6/17/2026 | Libgcrypt before 1.7.10 and 1.8.x before 1.8.3 allows a memory-cache side-channel attack on ECDSA signatures that can be mitigated through the use of blinding during the signing process in the _gcry_ecc_ecdsa_sign function in cipher/ecc-ecdsa.c, aka the Return Of the Hidden Number Problem or ROHNP. To discover an… | |
| Modified | High (7.5) | 1.8% | — | Gnupg Libgcrypt | 2/7/2018 | 6/17/2026 | cipher/elgamal.c in Libgcrypt through 1.8.2, when used to encrypt messages directly, improperly encodes plaintexts, which allows attackers to obtain sensitive information by reading ciphertext data (i.e., it does not have semantic security in face of a ciphertext-only attack). The Decisional Diffie-Hellman (DDH)… | |
| Modified | High (7.5) | 3.5% | — | Gnupg LibgcryptDebian Linux | 8/29/2017 | 6/17/2026 | Libgcrypt before 1.8.1 does not properly consider Curve25519 side-channel attacks, which makes it easier for attackers to discover a secret key, related to cipher/ecc.c and mpi/ec.c. | |
| Modified | Medium (5.9) | 2.3% | — | Gnupg Libgcrypt | 6/11/2017 | 6/17/2026 | In Libgcrypt before 1.7.7, an attacker who learns the EdDSA session key (from side-channel observation during the signing process) can easily recover the long-term secret key. 1.7.7 makes a cipher/ecc-eddsa.c change to store this session key in secure memory, to ensure that constant-time point operations are used in… | |
| Modified | Medium (5.3) | 3.6% | — | Gnupg LibgcryptDebian LinuxCanonical Ubuntu LinuxGnupg | 12/13/2016 | 6/17/2026 | The mixing functions in the random number generator in Libgcrypt before 1.5.6, 1.6.x before 1.6.6, and 1.7.x before 1.7.3 and GnuPG before 1.4.21 make it easier for attackers to obtain the values of 160 bits by leveraging knowledge of the previous 4640 bits. | |
| Modified | Low (2) | 0.43% | — | Gnupg LibgcryptDebian LinuxCanonical Ubuntu Linux | 4/19/2016 | 6/17/2026 | Libgcrypt before 1.6.5 does not properly perform elliptic-point curve multiplication during decryption, which makes it easier for physically proximate attackers to extract ECDH keys by measuring electromagnetic emanations. | |
| Modified | Low (2.1) | 0.53% | — | Gnupg LibgcryptDebian Linux | 10/10/2014 | 6/17/2026 | Libgcrypt before 1.5.4, as used in GnuPG and other products, does not properly perform ciphertext normalization and ciphertext randomization, which makes it easier for physically proximate attackers to conduct key-extraction attacks by leveraging the ability to collect voltage data from exposed metal, a different… | |
| Modified | Low (1.9) | 0.53% | — | Canonical Ubuntu LinuxDebian LinuxGnupgGnupg Libgcrypt+1 | 8/19/2013 | 6/16/2026 | GnuPG before 1.4.14, and Libgcrypt before 1.5.3 as used in GnuPG 2.0.x and possibly other products, allows local users to obtain private RSA keys via a cache side-channel attack involving the L3 cache, aka Flush+Reload. |