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cpe:2.3:o:redhat:enterprise_linux:6.6:*:*:*:*:*:*:*

part: o version: 6.6 update: *

VendorRedhat (e942785a-ca89-506e-bd99-50782639cde3)
ProductEnterprise Linux (3274dc93-112d-51d5-8bcf-fbf18b1917ac)
Edition*
Language*
Software edition*
Target software*
Target hardware*
Other*
NotesImported from NVD CPE 2.0 feed

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Vulnerability references

IdentifiercpeApplicabilitySubmitteddb.gcve.eu detailsRationale
CVE:CVE-2019-14823 vulnerable 2026-06-08 05:12:56.168516 Details available
MEDIUM (6.8)
A flaw was found in the "Leaf and Chain" OCSP policy implementation in JSS' CryptoManager versions after 4.4.6, 4.5.3, 4.6.0, where it implicitly trusted the root certificate of a certificate chain. Applications using this policy may not properly verify the chain and could be vulnerable to attacks such as Man in the Middle.
Published: 2019-10-14T19:35:04.000Z
Updated: 2024-08-05T00:26:39.111Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2018-1111 vulnerable 2026-06-08 05:11:16.929699 Details available
HIGH (7.5)
DHCP packages in Red Hat Enterprise Linux 6 and 7, Fedora 28, and earlier are vulnerable to a command injection flaw in the NetworkManager integration script included in the DHCP client. A malicious DHCP server, or an attacker on the local network able to spoof DHCP responses, could use this flaw to execute arbitrary commands with root privileges on systems using NetworkManager and configured to obtain network configuration using the DHCP protocol.
Published: 2018-05-17T16:00:00.000Z
Updated: 2024-08-05T03:51:48.789Z
Reference links
Imported from gcve-enriched-dumps CVE data
CVE:CVE-2017-1000253 vulnerable 2026-06-08 05:08:34.353949 Details available
Linux distributions that have not patched their long-term kernels with https://git.kernel.org/linus/a87938b2e246b81b4fb713edb371a9fa3c5c3c86 (committed on April 14, 2015). This kernel vulnerability was fixed in April 2015 by commit a87938b2e246b81b4fb713edb371a9fa3c5c3c86 (backported to Linux 3.10.77 in May 2015), but it was not recognized as a security threat. With CONFIG_ARCH_BINFMT_ELF_RANDOMIZE_PIE enabled, and a normal top-down address allocation strategy, load_elf_binary() will attempt to map a PIE binary into an address range immediately below mm->mmap_base. Unfortunately, load_elf_ binary() does not take account of the need to allocate sufficient space for the entire binary which means that, while the first PT_LOAD segment is mapped below mm->mmap_base, the subsequent PT_LOAD segment(s) end up being mapped above mm->mmap_base into the are that is supposed to be the "gap" between the stack and the binary.
Published: 2017-10-04T01:00:00.000Z
Updated: 2025-10-21T23:55:32.192Z
Reference links
Imported from gcve-enriched-dumps CVE data

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