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GHSA-wvqx-v3f6-w8rh

Опубликовано: 23 мар. 2026
Источник: github
Github: Прошло ревью
CVSS4: 8.1
CVSS3: 7.4

Описание

jsrsasign: DSA signatures or X.509 certificates can be forged via DSA domain-parameter validation in KJUR.crypto.DSA.setPublic

Versions of the package jsrsasign before 11.1.1 are vulnerable to Improper Verification of Cryptographic Signature via the DSA domain-parameter validation in KJUR.crypto.DSA.setPublic (and the related DSA/X509 verification flow in src/dsa-2.0.js). An attacker can forge DSA signatures or X.509 certificates that X509.verifySignature() accepts by supplying malicious domain parameters such as g=1, y=1, and a fixed r=1, which make the verification equation true for any hash.

Пакеты

Наименование

jsrsasign

npm
Затронутые версииВерсия исправления

< 11.1.1

11.1.1

EPSS

Процентиль: 1%
0.0001
Низкий

8.1 High

CVSS4

7.4 High

CVSS3

Дефекты

CWE-347

Связанные уязвимости

CVSS3: 8.2
redhat
17 дней назад

Versions of the package jsrsasign before 11.1.1 are vulnerable to Improper Verification of Cryptographic Signature via the DSA domain-parameter validation in KJUR.crypto.DSA.setPublic (and the related DSA/X509 verification flow in src/dsa-2.0.js). An attacker can forge DSA signatures or X.509 certificates that X509.verifySignature() accepts by supplying malicious domain parameters such as g=1, y=1, and a fixed r=1, which make the verification equation true for any hash.

CVSS3: 7.4
nvd
17 дней назад

Versions of the package jsrsasign before 11.1.1 are vulnerable to Improper Verification of Cryptographic Signature via the DSA domain-parameter validation in KJUR.crypto.DSA.setPublic (and the related DSA/X509 verification flow in src/dsa-2.0.js). An attacker can forge DSA signatures or X.509 certificates that X509.verifySignature() accepts by supplying malicious domain parameters such as g=1, y=1, and a fixed r=1, which make the verification equation true for any hash.

EPSS

Процентиль: 1%
0.0001
Низкий

8.1 High

CVSS4

7.4 High

CVSS3

Дефекты

CWE-347