Количество 12
Количество 12
CVE-2026-26007
cryptography is a package designed to expose cryptographic primitives and recipes to Python developers. Prior to 46.0.5, the public_key_from_numbers (or EllipticCurvePublicNumbers.public_key()), EllipticCurvePublicNumbers.public_key(), load_der_public_key() and load_pem_public_key() functions do not verify that the point belongs to the expected prime-order subgroup of the curve. This missing validation allows an attacker to provide a public key point P from a small-order subgroup. This can lead to security issues in various situations, such as the most commonly used signature verification (ECDSA) and shared key negotiation (ECDH). When the victim computes the shared secret as S = [victim_private_key]P via ECDH, this leaks information about victim_private_key mod (small_subgroup_order). For curves with cofactor > 1, this reveals the least significant bits of the private key. When these weak public keys are used in ECDSA , it's easy to forge signatures on the small subgroup. Only SECT...
CVE-2026-26007
cryptography is a package designed to expose cryptographic primitives and recipes to Python developers. Prior to 46.0.5, the public_key_from_numbers (or EllipticCurvePublicNumbers.public_key()), EllipticCurvePublicNumbers.public_key(), load_der_public_key() and load_pem_public_key() functions do not verify that the point belongs to the expected prime-order subgroup of the curve. This missing validation allows an attacker to provide a public key point P from a small-order subgroup. This can lead to security issues in various situations, such as the most commonly used signature verification (ECDSA) and shared key negotiation (ECDH). When the victim computes the shared secret as S = [victim_private_key]P via ECDH, this leaks information about victim_private_key mod (small_subgroup_order). For curves with cofactor > 1, this reveals the least significant bits of the private key. When these weak public keys are used in ECDSA , it's easy to forge signatures on the small subgroup. Only SECT...
CVE-2026-26007
cryptography is a package designed to expose cryptographic primitives and recipes to Python developers. Prior to 46.0.5, the public_key_from_numbers (or EllipticCurvePublicNumbers.public_key()), EllipticCurvePublicNumbers.public_key(), load_der_public_key() and load_pem_public_key() functions do not verify that the point belongs to the expected prime-order subgroup of the curve. This missing validation allows an attacker to provide a public key point P from a small-order subgroup. This can lead to security issues in various situations, such as the most commonly used signature verification (ECDSA) and shared key negotiation (ECDH). When the victim computes the shared secret as S = [victim_private_key]P via ECDH, this leaks information about victim_private_key mod (small_subgroup_order). For curves with cofactor > 1, this reveals the least significant bits of the private key. When these weak public keys are used in ECDSA , it's easy to forge signatures on the small subgroup. Only SECT cu
CVE-2026-26007
cryptography is a package designed to expose cryptographic primitives ...
GHSA-r6ph-v2qm-q3c2
cryptography Vulnerable to a Subgroup Attack Due to Missing Subgroup Validation for SECT Curves
openSUSE-SU-2026:20506-1
Security update for python-cryptography
RLSA-2026:13672
Important: fence-agents security update
ELSA-2026-13672
ELSA-2026-13672: fence-agents security update (IMPORTANT)
RLSA-2026:19355
Important: fence-agents security update
RLSA-2026:12176
Important: fence-agents security update
ELSA-2026-19355
ELSA-2026-19355: fence-agents security update (IMPORTANT)
ELSA-2026-12176
ELSA-2026-12176: fence-agents security update (IMPORTANT)
Уязвимостей на страницу
Уязвимость | CVSS | EPSS | Опубликовано | |
|---|---|---|---|---|
CVE-2026-26007 cryptography is a package designed to expose cryptographic primitives and recipes to Python developers. Prior to 46.0.5, the public_key_from_numbers (or EllipticCurvePublicNumbers.public_key()), EllipticCurvePublicNumbers.public_key(), load_der_public_key() and load_pem_public_key() functions do not verify that the point belongs to the expected prime-order subgroup of the curve. This missing validation allows an attacker to provide a public key point P from a small-order subgroup. This can lead to security issues in various situations, such as the most commonly used signature verification (ECDSA) and shared key negotiation (ECDH). When the victim computes the shared secret as S = [victim_private_key]P via ECDH, this leaks information about victim_private_key mod (small_subgroup_order). For curves with cofactor > 1, this reveals the least significant bits of the private key. When these weak public keys are used in ECDSA , it's easy to forge signatures on the small subgroup. Only SECT... | CVSS3: 6.5 | 0% Низкий | 6 месяцев назад | |
CVE-2026-26007 cryptography is a package designed to expose cryptographic primitives and recipes to Python developers. Prior to 46.0.5, the public_key_from_numbers (or EllipticCurvePublicNumbers.public_key()), EllipticCurvePublicNumbers.public_key(), load_der_public_key() and load_pem_public_key() functions do not verify that the point belongs to the expected prime-order subgroup of the curve. This missing validation allows an attacker to provide a public key point P from a small-order subgroup. This can lead to security issues in various situations, such as the most commonly used signature verification (ECDSA) and shared key negotiation (ECDH). When the victim computes the shared secret as S = [victim_private_key]P via ECDH, this leaks information about victim_private_key mod (small_subgroup_order). For curves with cofactor > 1, this reveals the least significant bits of the private key. When these weak public keys are used in ECDSA , it's easy to forge signatures on the small subgroup. Only SECT... | CVSS3: 7.4 | 0% Низкий | 6 месяцев назад | |
CVE-2026-26007 cryptography is a package designed to expose cryptographic primitives and recipes to Python developers. Prior to 46.0.5, the public_key_from_numbers (or EllipticCurvePublicNumbers.public_key()), EllipticCurvePublicNumbers.public_key(), load_der_public_key() and load_pem_public_key() functions do not verify that the point belongs to the expected prime-order subgroup of the curve. This missing validation allows an attacker to provide a public key point P from a small-order subgroup. This can lead to security issues in various situations, such as the most commonly used signature verification (ECDSA) and shared key negotiation (ECDH). When the victim computes the shared secret as S = [victim_private_key]P via ECDH, this leaks information about victim_private_key mod (small_subgroup_order). For curves with cofactor > 1, this reveals the least significant bits of the private key. When these weak public keys are used in ECDSA , it's easy to forge signatures on the small subgroup. Only SECT cu | CVSS3: 6.5 | 0% Низкий | 6 месяцев назад | |
CVE-2026-26007 cryptography is a package designed to expose cryptographic primitives ... | CVSS3: 6.5 | 0% Низкий | 6 месяцев назад | |
GHSA-r6ph-v2qm-q3c2 cryptography Vulnerable to a Subgroup Attack Due to Missing Subgroup Validation for SECT Curves | 0% Низкий | 6 месяцев назад | ||
openSUSE-SU-2026:20506-1 Security update for python-cryptography | 4 месяца назад | |||
RLSA-2026:13672 Important: fence-agents security update | 3 месяца назад | |||
ELSA-2026-13672 ELSA-2026-13672: fence-agents security update (IMPORTANT) | 3 месяца назад | |||
RLSA-2026:19355 Important: fence-agents security update | 2 месяца назад | |||
RLSA-2026:12176 Important: fence-agents security update | 3 месяца назад | |||
ELSA-2026-19355 ELSA-2026-19355: fence-agents security update (IMPORTANT) | около 1 месяца назад | |||
ELSA-2026-12176 ELSA-2026-12176: fence-agents security update (IMPORTANT) | 3 месяца назад |
Уязвимостей на страницу