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cpe:2.3:a:oracle:api_gateway:11.1.2.4.0:*:*:*:*:*:*:*

part: a version: 11.1.2.4.0 update: *

VendorOracle (3509f9eb-d8a0-57da-b153-b8021021b133)
ProductApi Gateway (8cda7f40-1c02-543e-b9e1-109bde2346d7)
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NotesImported from NVD CPE 2.0 feed

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Vulnerability references

IdentifiercpeApplicabilitySubmitteddb.gcve.eu detailsRationale
CVE:CVE-2020-1971 vulnerable 2026-06-08 05:21:03.822381 EDIPARTYNAME NULL pointer dereference
The X.509 GeneralName type is a generic type for representing different types of names. One of those name types is known as EDIPartyName. OpenSSL provides a function GENERAL_NAME_cmp which compares different instances of a GENERAL_NAME to see if they are equal or not. This function behaves incorrectly when both GENERAL_NAMEs contain an EDIPARTYNAME. A NULL pointer dereference and a crash may occur leading to a possible denial of service attack. OpenSSL itself uses the GENERAL_NAME_cmp function for two purposes: 1) Comparing CRL distribution point names between an available CRL and a CRL distribution point embedded in an X509 certificate 2) When verifying that a timestamp response token signer matches the timestamp authority name (exposed via the API functions TS_RESP_verify_response and TS_RESP_verify_token) If an attacker can control both items being compared then that attacker could trigger a crash. For example if the attacker can trick a client or server into checking a malicious certificate against a malicious CRL then this may occur. Note that some applications automatically download CRLs based on a URL embedded in a certificate. This checking happens prior to the signatures on the certificate and CRL being verified. OpenSSL's s_server, s_client and verify tools have support for the "-crl_download" option which implements automatic CRL downloading and this attack has been demonstrated to work against those tools. Note that an unrelated bug means that affected versions of OpenSSL cannot parse or construct correct encodings of EDIPARTYNAME. However it is possible to construct a malformed EDIPARTYNAME that OpenSSL's parser will accept and hence trigger this attack. All OpenSSL 1.1.1 and 1.0.2 versions are affected by this issue. Other OpenSSL releases are out of support and have not been checked. Fixed in OpenSSL 1.1.1i (Affected 1.1.1-1.1.1h). Fixed in OpenSSL 1.0.2x (Affected 1.0.2-1.0.2w).
Published: 2020-12-08T15:30:16.835Z
Updated: 2026-05-29T15:40:28.488Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2020-11979 vulnerable 2026-06-08 05:17:55.925866 Details available
As mitigation for CVE-2020-1945 Apache Ant 1.10.8 changed the permissions of temporary files it created so that only the current user was allowed to access them. Unfortunately the fixcrlf task deleted the temporary file and created a new one without said protection, effectively nullifying the effort. This would still allow an attacker to inject modified source files into the build process.
Published: 2020-10-01T19:24:57.000Z
Updated: 2024-08-04T11:48:57.549Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2019-1559 vulnerable 2026-06-08 05:13:26.135642 0-byte record padding oracle
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).
Published: 2019-02-27T23:00:00.000Z
Updated: 2024-09-17T04:20:35.057Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2019-17566 vulnerable 2026-06-08 05:13:10.689408 Details available
Apache Batik is vulnerable to server-side request forgery, caused by improper input validation by the "xlink:href" attributes. By using a specially-crafted argument, an attacker could exploit this vulnerability to cause the underlying server to make arbitrary GET requests.
Published: 2020-11-12T00:00:00.000Z
Updated: 2024-08-05T01:40:15.834Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2018-5407 vulnerable 2026-06-08 05:11:50.876446 Details available
Simultaneous Multi-threading (SMT) in processors can enable local users to exploit software vulnerable to timing attacks via a side-channel timing attack on 'port contention'.
Published: 2018-11-15T21:00:00.000Z
Updated: 2024-08-05T05:33:44.232Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2018-1000613 vulnerable 2026-06-08 05:10:25.815081 db.gcve.eu details were skipped to keep the page responsive. Imported from gcve-enriched-dumps CVE data
CVE:CVE-2018-1000180 vulnerable 2026-06-08 05:10:25.590731 db.gcve.eu details were skipped to keep the page responsive. Imported from gcve-enriched-dumps CVE data
CVE:CVE-2018-0735 vulnerable 2026-06-08 05:10:24.632863 db.gcve.eu details were skipped to keep the page responsive. Imported from gcve-enriched-dumps CVE data
CVE:CVE-2018-0734 vulnerable 2026-06-08 05:10:24.613307 db.gcve.eu details were skipped to keep the page responsive. Imported from gcve-enriched-dumps CVE data
CVE:CVE-2017-5645 vulnerable 2026-06-08 05:09:47.460231 db.gcve.eu details were skipped to keep the page responsive. Imported from gcve-enriched-dumps CVE data
CVE:CVE-2017-3601 vulnerable 2026-06-08 05:09:35.972358 db.gcve.eu details were skipped to keep the page responsive. Imported from gcve-enriched-dumps CVE data
CVE:CVE-2015-3195 vulnerable 2026-06-08 05:06:37.506099 db.gcve.eu details were skipped to keep the page responsive. Imported from gcve-enriched-dumps CVE data

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