VRT 391,192 CVEs tracked · 15,442 in RASP scope · data as of 18 hours ago
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Oracle product: Oracle Fusion Middleware / Product Code (OpenSSL)
Overview 4 matches · 0 in RASP scope · 0 protected · 0 KEV · 0 public PoC · 0 CISA SSVC · 0 EPSS ≥ 0.5 · 0 disputed
4matches 0in RASP scope0.0% 0protected0.0% 0KEV0.0% 0public PoC0.0% 0CISA SSVC0.0% 0EPSS ≥ 0.50.0% 0disputed0.0%
Critical 0 0.0% High 0 0.0% Medium 4 100.0% Low 0 0.0% None 0 0.0% Unknown 0 0.0%
Protected by RASP 0 0.0% Rule in development 0 0.0% Mitigation candidate 0 0.0% No exploit published 0 0.0% No fix identified 0 0.0% Mitigated by environment configuration 0 0.0% Queued for review 0 0.0% Not applicable 2 50.0% Out of RASP scope 2 50.0% Rejected 0 0.0%
blocked by ARMR today 0 0.0% not blocked 4 100.0% not established 0 0.0% unrecorded 0 0.0%
Exploited in the wild 0 0.0% Working exploit published 0 0.0% Proof of concept only 0 0.0% Forecast only 0 0.0% No public exploit 4 100.0%
split by peak 1 / quarter
Unknown: 0None: 0Low: 0Medium: 4High: 0Critical: 0 Rejected: 0Out of RASP scope: 2Not applicable: 2Queued for review: 0Mitigated by environment configuration: 0No fix identified: 0No exploit published: 0Mitigation candidate: 0Rule in development: 0Protected by RASP: 0 unrecorded: 0not established: 0not blocked: 4blocked by ARMR today: 0 No public exploit: 4Forecast only: 0Proof of concept only: 0Working exploit published: 0Exploited in the wild: 0 Q1 2018: 1 CVE Q2 2018: 0 CVEs Q3 2018: 0 CVEs Q4 2018: 1 CVE Q1 2019: 1 CVE Q2 2019: 0 CVEs Q3 2019: 1 CVE
Q1 18Q2 18Q3 18Q4 18Q1 19Q2 19Q3 19
4 matches CSV JSON
CVE Severity Published Status Exploitation Description
CVE-2019-1547 Medium 2019-09-10 Not applicable No public exploit Normally in OpenSSL EC groups always have a co-factor present and this is used in side channel resistant code paths. However, in some cases, it is possible to construct a group using explicit parameters (instead of using a named curve). In those cases it is possible that such a group does not have the cofactor present. This can occur even where all the parameters match a known named curve. If such a curve is used then OpenSSL falls back to non-side channel resistant code paths which may result in full key recovery during an ECDSA signature operation. In order to be vulnerable an attacker would have to have the ability to time the creation of a large number of signatures where explicit parameters with no co-factor present are in use by an application using libcrypto. For the avoidance of doubt libssl is not vulnerable because explicit parameters are never used. Fixed in OpenSSL 1.1.1d (Affected 1.1.1-1.1.1c). Fixed in OpenSSL 1.1.0l (Affected 1.1.0-1.1.0k). Fixed in OpenSSL 1.0.2t (Affected 1.0.2-1.0.2s).
CVE-2019-1559 Medium 2019-02-27 Out of RASP scope No public exploit If an application encounters a fatal protocol error and then calls SSL_shutdown() twice (once to send a close_notify, and once to receive one) then OpenSSL can respond differently to the calling application if a 0 byte record is received with invalid padding compared to if a 0 byte record is received with an invalid MAC. If the application then behaves differently based on that in a way that is detectable to the remote peer, then this amounts to a padding oracle that could be used to decrypt data. In order for this to be exploitable "non-stitched" ciphersuites must be in use. Stitched ciphersuites are optimised implementations of certain commonly used ciphersuites. Also the application must call SSL_shutdown() twice even if a protocol error has occurred (applications should not do this but some do anyway). Fixed in OpenSSL 1.0.2r (Affected 1.0.2-1.0.2q).
CVE-2018-0734 Medium 2018-10-30 Out of RASP scope No public exploit The OpenSSL DSA signature algorithm has been shown to be vulnerable to a timing side channel attack. An attacker could use variations in the signing algorithm to recover the private key. Fixed in OpenSSL 1.1.1a (Affected 1.1.1). Fixed in OpenSSL 1.1.0j (Affected 1.1.0-1.1.0i). Fixed in OpenSSL 1.0.2q (Affected 1.0.2-1.0.2p).
CVE-2018-0739 Medium 2018-03-27 Not applicable No public exploit Constructed ASN.1 types with a recursive definition (such as can be found in PKCS7) could eventually exceed the stack given malicious input with excessive recursion. This could result in a Denial Of Service attack. There are no such structures used within SSL/TLS that come from untrusted sources so this is considered safe. Fixed in OpenSSL 1.1.0h (Affected 1.1.0-1.1.0g). Fixed in OpenSSL 1.0.2o (Affected 1.0.2b-1.0.2n).