2084 matches found
CVE-2020-13895
CVE-2020-13895 affects Crypt::Perl::ECDSA in the Crypt::Perl (p5-Crypt-Perl) distribution for Perl, specifically before version 0.32. The issue is a verification bug where ECDSA signatures may fail to verify correctly when r and s are small and s = 1 on the secp256r1 (prime256v1) curve. The cited...
ECDSA Signature Malleability
elliptic is suffers from ECDSA signature malleability. The vulnerability exists as it fails to ensure that the following tests produces different results, long form encoding of length of sequence, length of sequence contains leading 0, length of integer contains leading 0, uint32 overflow in leng...
CVE-2020-13822
The Elliptic package 6.5.2 for Node.js allows ECDSA signature malleability via variations in encoding, leading '\0' bytes, or integer overflows. This could conceivably have a security-relevant impact if an application relied on a single canonical signature...
DEBIAN-CVE-2020-13822
The Elliptic package 6.5.2 for Node.js allows ECDSA signature malleability via variations in encoding, leading '\0' bytes, or integer overflows. This could conceivably have a security-relevant impact if an application relied on a single canonical signature...
CVE-2020-13822
The Elliptic package 6.5.2 for Node.js allows ECDSA signature malleability via variations in encoding, leading '\0' bytes, or integer overflows. This could conceivably have a security-relevant impact if an application relied on a single canonical signature...
Integer overflow
The Elliptic package 6.5.2 for Node.js allows ECDSA signature malleability via variations in encoding, leading '\0' bytes, or integer overflows. This could conceivably have a security-relevant impact if an application relied on a single canonical signature...
CVE-2020-13822
The Elliptic package 6.5.2 for Node.js allows ECDSA signature malleability via variations in encoding, leading '\0' bytes, or integer overflows. This could conceivably have a security-relevant impact if an application relied on a single canonical signature...
UBUNTU-CVE-2020-13822
The Elliptic package 6.5.2 for Node.js allows ECDSA signature malleability via variations in encoding, leading '\0' bytes, or integer overflows. This could conceivably have a security-relevant impact if an application relied on a single canonical signature...
CVE-2020-13822
The Elliptic package 6.5.2 for Node.js allows ECDSA signature malleability via variations in encoding, leading '\0' bytes, or integer overflows. This could conceivably have a security-relevant impact if an application relied on a single canonical signature...
CVE-2020-13822
The Elliptic package 6.5.2 for Node.js allows ECDSA signature malleability via variations in encoding, leading '\0' bytes, or integer overflows. This could conceivably have a security-relevant impact if an application relied on a single canonical signature...
CVE-2020-13822
CVE-2020-13822 concerns the Elliptic package for Node.js (notably versions around 6.5.2) and describes ECDSA signature malleability caused by variations in encoding, leading to spurious or non-canonical signatures (e.g., leading '\0' bytes) and potential security impact if a single canonical sign...
CVE-2020-12607
An issue was discovered in fastecdsa before 2.1.2. When using the NIST P-256 curve in the ECDSA implementation, the point at infinity is mishandled. This means that for an extreme value in k and s^-1, the signature verification fails even if the signature is correct. This behavior is not solely a...
CVE-2020-12607
An issue was discovered in fastecdsa before 2.1.2. When using the NIST P-256 curve in the ECDSA implementation, the point at infinity is mishandled. This means that for an extreme value in k and s^-1, the signature verification fails even if the signature is correct. This behavior is not solely a...
Code injection
An issue was discovered in fastecdsa before 2.1.2. When using the NIST P-256 curve in the ECDSA implementation, the point at infinity is mishandled. This means that for an extreme value in k and s^-1, the signature verification fails even if the signature is correct. This behavior is not solely a...
PYSEC-2020-42
An issue was discovered in fastecdsa before 2.1.2. When using the NIST P-256 curve in the ECDSA implementation, the point at infinity is mishandled. This means that for an extreme value in k and s^-1, the signature verification fails even if the signature is correct. This behavior is not solely a...
PYSEC-2020-42
An issue was discovered in fastecdsa before 2.1.2. When using the NIST P-256 curve in the ECDSA implementation, the point at infinity is mishandled. This means that for an extreme value in k and s^-1, the signature verification fails even if the signature is correct. This behavior is not solely a...
CVE-2020-12607
CVE-2020-12607 affects the fastecdsa library prior to 2.1.2, where using the NIST P-256 curve in the ECDSA implementation mishandles the point at infinity during signature verification. This can cause verification to fail for an otherwise valid signature when extreme values occur for k and s^-1, ...
CVE-2020-12607
An issue was discovered in fastecdsa before 2.1.2. When using the NIST P-256 curve in the ECDSA implementation, the point at infinity is mishandled. This means that for an extreme value in k and s^-1, the signature verification fails even if the signature is correct. This behavior is not solely a...
PT-2020-13166 · Fastecdsa · Fastecdsa
Name of the Vulnerable Software and Affected Versions: fastecdsa versions prior to 2.1.2 Description: An issue was discovered in the ECDSA implementation when using the NIST P-256 curve. The point at infinity is mishandled, which means that for extreme values in k and s^-1, the signature...
Ubuntu 16.04 LTS / 18.04 LTS : OpenSSL vulnerabilities (USN-4376-1)
The remote Ubuntu 16.04 LTS / 18.04 LTS host has packages installed that are affected by multiple vulnerabilities as referenced in the USN-4376-1 advisory. Cesar Pereida Garca, Sohaib ul Hassan, Nicola Tuveri, Iaroslav Gridin, Alejandro Cabrera Aldaya, and Billy Brumley discovered that OpenSSL...