Oracle Communications Cloud Native Core Security Edge Protection Proxy 1.7.0
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cpe:2.3:a:oracle:communications_cloud_native_core_security_edge_protection_proxy:1.7.0:*:*:*:*:*:*:*
part: a version: 1.7.0 update: *
| Vendor | Oracle (3509f9eb-d8a0-57da-b153-b8021021b133) |
|---|---|
| Product | Communications Cloud Native Core Security Edge Protection Proxy (9dccee3e-0c1d-5799-ad89-9e55761d79e7) |
| Edition | * |
| Language | * |
| Software edition | * |
| Target software | * |
| Target hardware | * |
| Other | * |
| Notes | Imported from NVD CPE 2.0 feed |
PURL mappings
| PURL | Source | Last updated |
|---|---|---|
| No PURL mappings for this CPE yet. | ||
Vulnerability references
| Identifier | cpeApplicability | Submitted | db.gcve.eu details | Rationale |
|---|---|---|---|---|
CVE:CVE-2022-22965 |
vulnerable | 2026-06-08 05:40:55.748859 |
Details available
A Spring MVC or Spring WebFlux application running on JDK 9+ may be vulnerable to remote code execution (RCE) via data binding. The specific exploit requires the application to run on Tomcat as a WAR deployment. If the application is deployed as a Spring Boot executable jar, i.e. the default, it is not vulnerable to the exploit. However, the nature of the vulnerability is more general, and there may be other ways to exploit it.
Published: 2022-04-01T22:17:30.000Z
Updated: 2025-10-21T23:15:42.792Z Reference links
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Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2022-22963 |
vulnerable | 2026-06-08 05:40:55.728623 |
Details available
In Spring Cloud Function versions 3.1.6, 3.2.2 and older unsupported versions, when using routing functionality it is possible for a user to provide a specially crafted SpEL as a routing-expression that may result in remote code execution and access to local resources.
Published: 2022-04-01T00:00:00.000Z
Updated: 2025-10-21T23:15:42.941Z Reference links
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Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2021-45105 |
vulnerable | 2026-06-08 05:36:47.859114 |
Apache Log4j2 does not always protect from infinite recursion in lookup evaluation
Apache Log4j2 versions 2.0-alpha1 through 2.16.0 (excluding 2.12.3 and 2.3.1) did not protect from uncontrolled recursion from self-referential lookups. This allows an attacker with control over Thread Context Map data to cause a denial of service when a crafted string is interpreted. This issue was fixed in Log4j 2.17.0, 2.12.3, and 2.3.1.
Published: 2021-12-18T11:55:08.000Z
Updated: 2026-05-29T11:45:26.064Z Reference links
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Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2021-43797 |
vulnerable | 2026-06-08 05:36:44.293716 |
HTTP fails to validate against control chars in header names which may lead to HTTP request smuggling
MEDIUM (6.5)
Netty is an asynchronous event-driven network application framework for rapid development of maintainable high performance protocol servers & clients. Netty prior to version 4.1.71.Final skips control chars when they are present at the beginning / end of the header name. It should instead fail fast as these are not allowed by the spec and could lead to HTTP request smuggling. Failing to do the validation might cause netty to "sanitize" header names before it forward these to another remote system when used as proxy. This remote system can't see the invalid usage anymore, and therefore does not do the validation itself. Users should upgrade to version 4.1.71.Final.
Published: 2021-12-09T00:00:00.000Z
Updated: 2024-08-04T04:03:08.898Z Reference links
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Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2021-3712 |
vulnerable | 2026-06-08 05:33:53.769816 |
Read buffer overruns processing ASN.1 strings
ASN.1 strings are represented internally within OpenSSL as an ASN1_STRING structure which contains a buffer holding the string data and a field holding the buffer length. This contrasts with normal C strings which are repesented as a buffer for the string data which is terminated with a NUL (0) byte. Although not a strict requirement, ASN.1 strings that are parsed using OpenSSL's own "d2i" functions (and other similar parsing functions) as well as any string whose value has been set with the ASN1_STRING_set() function will additionally NUL terminate the byte array in the ASN1_STRING structure. However, it is possible for applications to directly construct valid ASN1_STRING structures which do not NUL terminate the byte array by directly setting the "data" and "length" fields in the ASN1_STRING array. This can also happen by using the ASN1_STRING_set0() function. Numerous OpenSSL functions that print ASN.1 data have been found to assume that the ASN1_STRING byte array will be NUL terminated, even though this is not guaranteed for strings that have been directly constructed. Where an application requests an ASN.1 structure to be printed, and where that ASN.1 structure contains ASN1_STRINGs that have been directly constructed by the application without NUL terminating the "data" field, then a read buffer overrun can occur. The same thing can also occur during name constraints processing of certificates (for example if a certificate has been directly constructed by the application instead of loading it via the OpenSSL parsing functions, and the certificate contains non NUL terminated ASN1_STRING structures). It can also occur in the X509_get1_email(), X509_REQ_get1_email() and X509_get1_ocsp() functions. If a malicious actor can cause an application to directly construct an ASN1_STRING and then process it through one of the affected OpenSSL functions then this issue could be hit. This might result in a crash (causing a Denial of Service attack). It could also result in the disclosure of private memory contents (such as private keys, or sensitive plaintext). Fixed in OpenSSL 1.1.1l (Affected 1.1.1-1.1.1k). Fixed in OpenSSL 1.0.2za (Affected 1.0.2-1.0.2y).
Published: 2021-08-24T14:50:14.704Z
Updated: 2026-04-16T14:11:16.454Z Reference links
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Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2021-3711 |
vulnerable | 2026-06-08 05:33:53.605013 | db.gcve.eu details were skipped to keep the page responsive. | Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2021-37136 |
vulnerable | 2026-06-08 05:32:53.412846 | db.gcve.eu details were skipped to keep the page responsive. | Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2021-2471 |
vulnerable | 2026-06-08 05:31:46.774403 | db.gcve.eu details were skipped to keep the page responsive. | Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2019-17195 |
vulnerable | 2026-06-08 05:13:10.095389 | db.gcve.eu details were skipped to keep the page responsive. | Imported from gcve-enriched-dumps CVE data |
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