CVE ID | Published | Description | Score | Severity |
---|---|---|---|---|
In Novell eDirectory before 9.0.3.1 the LDAP interface was not strictly enforcing cipher restrictions allowing weaker ciphers to be used during SSL BIND operations. | 7.5 |
High |
||
The LDAP backend in Novell eDirectory before 9.0 SP4 when switched to EBA (Enhanced Background Authentication) kept open connections without EBA. | 7.5 |
High |
||
A security vulnerability in cookie handling in the http stack implementation in NDSD in Novell eDirectory before 9.0.1 allows remote attackers to bypass intended access restrictions by leveraging predictable cookies. | 7.5 |
High |
||
Unspecified vulnerability in eMBox in Novell eDirectory 8.8 SP5 Patch 2 and earlier allows remote attackers to cause a denial of service (crash) via unknown a crafted SOAP request, a different issue than CVE-2008-0926. | 5 |
|||
Buffer overflow in the LDAP Service in Novell eDirectory 8.7.3 before SP10a and 8.8 before SP3 allows attackers to cause a denial of service (application crash) via vectors involving an "invalid extensibleMatch filter." | 10 |
|||
Heap-based buffer overflows in Novell eDirectory HTTP protocol stack (HTTPSTK) before 8.8 SP3 have unknown impact and attack vectors related to the (1) HTTP language header and (2) HTTP content-length header. | 10 |
|||
Cross-site scripting (XSS) vulnerability in the HTTP Protocol Stack (HTTPSTK) in Novell eDirectory before 8.8 SP3 allows remote attackers to inject arbitrary web script or HTML via unknown vectors. | 4.3 |
|||
Heap-based buffer overflow in the NDS Service in Novell eDirectory before 8.8 SP3 has unknown impact and attack vectors. | 10 |
|||
Use-after-free vulnerability in the NetWare Core Protocol (NCP) feature in Novell eDirectory 8.7.3 SP10 before 8.7.3 SP10 FTF1 and 8.8 SP2 for Windows allows remote attackers to cause a denial of service and possibly execute arbitrary code via a sequence of "Get NCP Extension Information By Name" requests that cause one thread to operate on memory after it has been freed in another thread, which triggers memory corruption, aka Novell Bug 373852. | 9.8 |
Critical |
||
Multiple integer overflows in dhost.exe in Novell eDirectory 8.8 before 8.8.3, and 8.73 before 8.7.3.10 ftf1, allow remote attackers to execute arbitrary code via a crafted (1) Content-Length header in a SOAP request or (2) Netware Core Protocol opcode 0x0F message, which triggers a heap-based buffer overflow. | 10 |
|||
dhost.exe in Novell eDirectory 8.7.3 before sp10 and 8.8.2 allows remote attackers to cause a denial of service (CPU consumption) via an HTTP request with (1) multiple Connection headers or (2) a Connection header with multiple comma-separated values. NOTE: this might be similar to CVE-2008-1777. | 5 |
|||
Stack-based buffer overflow in the DoLBURPRequest function in libnldap in ndsd in Novell eDirectory 8.7.3.9 and earlier, and 8.8.1 and earlier in the 8.8.x series, allows remote attackers to cause a denial of service (daemon crash or CPU consumption) or execute arbitrary code via a long delRequest LDAP Extended Request message, probably involving a long Distinguished Name (DN) field. | 6.8 |
|||
The SOAP interface to the eMBox module in Novell eDirectory 8.7.3.9 and earlier, and 8.8.x before 8.8.2, relies on client-side authentication, which allows remote attackers to bypass authentication via requests for /SOAP URIs, and cause a denial of service (daemon shutdown) or read arbitrary files. NOTE: it was later reported that 8.7.3.10 (aka 8.7.3 SP10) is also affected. | 7.5 |
|||
ncp in Novell eDirectory before 8.7.3 SP9, and 8.8.x before 8.8.1 FTF2, does not properly handle NCP fragments with a negative length, which allows remote attackers to cause a denial of service (daemon crash) when the heap is written to a log file. | 7.8 |
|||
Unspecified vulnerability in Novell eDirectory allows remote attackers to execute arbitrary code, as demonstrated by vd_novell.pm, a "Novell eDirectory remote exploit." NOTE: As of 20061108, this disclosure has no actionable information. However, since it is from a reliable researcher, it is being assigned a CVE identifier for tracking purposes. | 7.5 |
|||
The NCP Engine in Novell eDirectory before 8.7.3.8 FTF1 allows remote attackers to cause an unspecified denial of service via a certain "NCP Fragment." | 5 |
|||
Heap-based buffer overflow in the NCP engine in Novell eDirectory before 8.8.1 FTF1 allows remote attackers to execute arbitrary code via a crafted NCP over IP packet that causes NCP to read more data than intended. | 7.5 |
|||
Multiple stack-based buffer overflows in Novell eDirectory 8.8.x before 8.8.1 FTF1, and 8.x up to 8.7.3.8, and Novell NetMail before 3.52e FTF2, allow remote attackers to execute arbitrary code via (1) a long HTTP Host header, which triggers an overflow in the BuildRedirectURL function; or vectors related to a username containing a . (dot) character in the (2) SMTP, (3) POP, (4) IMAP, (5) HTTP, or (6) Networked Messaging Application Protocol (NMAP) Netmail services. | 7.5 |
|||
Unspecified vulnerability in the NCPENGINE in Novell eDirectory 8.7.3.8 allows local users to cause a denial of service (CPU consumption) via unspecified vectors, as originally demonstrated using a Nessus scan. | 4.9 |
|||
Novell eDirectory 8.6.2 and 8.7 use case insensitive passwords, which makes it easier for remote attackers to conduct brute force password guessing. | 9.8 |
Critical |
||
The do_change_cipher_spec function in OpenSSL 0.9.6c to 0.9.6k, and 0.9.7a to 0.9.7c, allows remote attackers to cause a denial of service (crash) via a crafted SSL/TLS handshake that triggers a null dereference. | 7.5 |
High |
||
OpenSSL 0.9.6 before 0.9.6d does not properly handle unknown message types, which allows remote attackers to cause a denial of service (infinite loop), as demonstrated using the Codenomicon TLS Test Tool. | 5 |
|||
The SSL/TLS handshaking code in OpenSSL 0.9.7a, 0.9.7b, and 0.9.7c, when using Kerberos ciphersuites, does not properly check the length of Kerberos tickets during a handshake, which allows remote attackers to cause a denial of service (crash) via a crafted SSL/TLS handshake that causes an out-of-bounds read. | 5 |