385 matches found
CVE-2020-11658
CVE-2020-11658 affects the Broadcom/CA API Developer Portal (versions 4.3.1 and earlier). The root cause is insecure handling of shared secret keys, which can let an attacker bypass authorization. The issue is classified with high to critical impact (CVSS scores: CVSS v3.1 base 9.8, HIGH confiden...
CVE-2018-2618
It was discovered that the key agreement implementations in the JCE component of OpenJDK did not guarantee sufficient strength of used keys to adequately protect generated shared secret. This could make it easier to break data encryption by attacking key agreement rather than the encryption using...
Authentication flaw
Jitbit Helpdesk before 9.0.3 allows remote attackers to escalate privileges because of mishandling of the User/AutoLogin userHash parameter. By inspecting the token value provided in a password reset link, a user can leverage a weak PRNG to recover the shared secret used by the server for remote...
CVE-2017-18486
Jitbit Helpdesk before 9.0.3 allows remote attackers to escalate privileges because of mishandling of the User/AutoLogin userHash parameter. By inspecting the token value provided in a password reset link, a user can leverage a weak PRNG to recover the shared secret used by the server for remote...
Authentication Bypass
github.com/influxdata/influxdb is vulnerable to authentication bypass. A remote attacker is able to bypass authentication and gain access to the application by submitting a blank shared secret in a BearerAuthentication...
PT-2019-5775 · Influxdata +3 · Influxdb +3
Name of the Vulnerable Software and Affected Versions: InfluxDB versions prior to 1.7.6 Description: The issue is related to an authentication bypass vulnerability in the authenticate function in services/httpd/handler.go due to a JWT token having an empty SharedSecret. This allows a remote...
CVE-2018-15369
A vulnerability in the TACACS+ client subsystem of Cisco IOS Software and Cisco IOS XE Software could allow an unauthenticated, remote attacker to cause an affected device to reload, resulting in a denial of service DoS condition. The vulnerability is due to improper handling of crafted TACACS+...
CVE-2017-7781
An error occurs in the elliptic curve point addition algorithm that uses mixed Jacobian-affine coordinates where it can yield a result "POINTATINFINITY" when it should not. A man-in-the-middle attacker could use this to interfere with a connection, resulting in an attacked party computing an...
CVE-2017-7781
An error occurs in the elliptic curve point addition algorithm that uses mixed Jacobian-affine coordinates where it can yield a result "POINTATINFINITY" when it should not. A man-in-the-middle attacker could use this to interfere with a connection, resulting in an attacked party computing an...
Code injection
An error occurs in the elliptic curve point addition algorithm that uses mixed Jacobian-affine coordinates where it can yield a result "POINTATINFINITY" when it should not. A man-in-the-middle attacker could use this to interfere with a connection, resulting in an attacked party computing an...
CVE-2017-7781
An error occurs in the elliptic curve point addition algorithm that uses mixed Jacobian-affine coordinates where it can yield a result "POINTATINFINITY" when it should not. A man-in-the-middle attacker could use this to interfere with a connection, resulting in an attacked party computing an...
OpenJDK: insufficient strength of key agreement (JCE, 8185292)
It was discovered that the key agreement implementations in the JCE component of OpenJDK did not guarantee sufficient strength of used keys to adequately protect generated shared secret. This could make it easier to break data encryption by attacking key agreement rather than the encryption using...
OpenJDK: insufficient strength of key agreement (JCE, 8185292)
It was discovered that the key agreement implementations in the JCE component of OpenJDK did not guarantee sufficient strength of used keys to adequately protect generated shared secret. This could make it easier to break data encryption by attacking key agreement rather than the encryption using...
OpenJDK: insufficient strength of key agreement (JCE, 8185292)
It was discovered that the key agreement implementations in the JCE component of OpenJDK did not guarantee sufficient strength of used keys to adequately protect generated shared secret. This could make it easier to break data encryption by attacking key agreement rather than the encryption using...
OpenJDK: insufficient strength of key agreement (JCE, 8185292)
It was discovered that the key agreement implementations in the JCE component of OpenJDK did not guarantee sufficient strength of used keys to adequately protect generated shared secret. This could make it easier to break data encryption by attacking key agreement rather than the encryption using...
OpenJDK: insufficient strength of key agreement (JCE, 8185292)
It was discovered that the key agreement implementations in the JCE component of OpenJDK did not guarantee sufficient strength of used keys to adequately protect generated shared secret. This could make it easier to break data encryption by attacking key agreement rather than the encryption using...
OpenJDK: insufficient strength of key agreement (JCE, 8185292)
It was discovered that the key agreement implementations in the JCE component of OpenJDK did not guarantee sufficient strength of used keys to adequately protect generated shared secret. This could make it easier to break data encryption by attacking key agreement rather than the encryption using...
Timing Attacks
django-anymail is vulnerable to timing attacks. The WEBHOOKAUTHORIZATION shared secret can be obtained because it is not compared in constant time. This allows an attacker to decipher the secret by using the time a call takes to return...
OpenJDK: insufficient strength of key agreement (JCE, 8185292)
It was discovered that the key agreement implementations in the JCE component of OpenJDK did not guarantee sufficient strength of used keys to adequately protect generated shared secret. This could make it easier to break data encryption by attacking key agreement rather than the encryption using...
OpenJDK: insufficient strength of key agreement (JCE, 8185292)
It was discovered that the key agreement implementations in the JCE component of OpenJDK did not guarantee sufficient strength of used keys to adequately protect generated shared secret. This could make it easier to break data encryption by attacking key agreement rather than the encryption using...