| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Multiple integer overflows in OpenOffice.org (OOo) 2.0.4 and earlier, and possibly other versions before 2.1.0; and StarOffice 6 through 8; allow user-assisted remote attackers to execute arbitrary code via a crafted (a) WMF or (b) EMF file that triggers heap-based buffer overflows in (1) wmf/winwmf.cxx, during processing of META_ESCAPE records; and wmf/enhwmf.cxx, during processing of (2) EMR_POLYPOLYGON and (3) EMR_POLYPOLYGON16 records. |
| Unspecified vulnerability in the Java Runtime Environment (JRE) Swing library in JDK and JRE 5.0 Update 7 and earlier allows attackers to obtain certain information via unknown attack vectors, related to an untrusted applet accessing data in other applets. |
| Stack-based buffer overflow in ld.so.1 in Sun Solaris 8, 9, and 10 allows local users to execute arbitrary code via large precision padding values in a format string specifier in the format parameter of the doprf function. NOTE: this issue normally does not cross privilege boundaries, except in cases of external introduction of malicious message files, or if it is leveraged with other vulnerabilities such as CVE-2006-6494. |
| Multiple buffer overflows in Sun Java Development Kit (JDK) and Java Runtime Environment (JRE) 5.0 Update 7 and earlier, Java System Development Kit (SDK) and JRE 1.4.2_12 and earlier 1.4.x versions, and SDK and JRE 1.3.1_18 and earlier allow attackers to develop Java applets that read, write, or execute local files, possibly related to (1) integer overflows in the Java_sun_awt_image_ImagingLib_convolveBI, awt_parseRaster, and awt_parseColorModel functions; (2) a stack overflow in the Java_sun_awt_image_ImagingLib_lookupByteRaster function; and (3) improper handling of certain negative values in the Java_sun_font_SunLayoutEngine_nativeLayout function. NOTE: some of these details are obtained from third party information. |
| Unspecified vulnerability in Sun Java Development Kit (JDK) and Java Runtime Environment (JRE) 5.0 Update 5 and earlier, Java System Development Kit (SDK) and JRE 1.4.2_10 and earlier 1.4.x versions, and SDK and JRE 1.3.1_18 and earlier allows attackers to use untrusted applets to "access data in other applets," aka "The first issue." |
| Multiple unspecified vulnerabilities in Sun Java Development Kit (JDK) and Java Runtime Environment (JRE) 5.0 Update 7 and earlier, and Java System Development Kit (SDK) and JRE 1.4.2_12 and earlier 1.4.x versions, allow attackers to develop Java applets or applications that are able to gain privileges, related to serialization in JRE. |
| The libike library, as used by in.iked, elfsign, and kcfd in Sun Solaris 9 and 10, when using an RSA key with exponent 3, removes PKCS-1 padding before generating a hash, which allows remote attackers to forge a PKCS #1 v1.5 signature that is signed by that RSA key and prevents libike from correctly verifying X.509 and other certificates that use PKCS #1, a similar issue to CVE-2006-4339. |
| Sun JRE 5.0 before update 14 allows remote attackers to cause a denial of service (Internet Explorer crash) via an object tag with an encoded applet and an undefined name attribute, which triggers a NULL pointer dereference in jpiexp32.dll when the applet is decoded and passed to the JVM. |
| Sun Java System Content Delivery Server 5.0 and 5.0 PU1 allows remote attackers to obtain sensitive information regarding "content details" via unspecified vectors. |
| Unspecified vulnerability in libnsl in Sun Solaris 8 and 9 allows remote attackers to cause a denial of service (crash) via malformed RPC requests that trigger a crash in rpcbind. |
| Unspecified vulnerability in Sun Solaris 8, 9, and 10 before 20060925 allows local users to cause a denial of service (disable syslog) and prevent security messages from being logged via unspecified vectors. |
| Cross-site scripting (XSS) vulnerability in Webmail in Sun Java System Messaging Server 6.0 through 6.2 and iPlanet Messaging Server 5.2 allows remote attackers to execute arbitrary Javascript via crafted messages. |
| The default configuration of Sun ONE/iPlanet Web Server 4.1 SP1 through SP12 and 6.0 SP1 through SP5 responds to the HTTP TRACE request, which can allow remote attackers to steal information using cross-site tracing (XST) attacks in applications that are vulnerable to cross-site scripting. |
| Sun SDK and Java Runtime Environment (JRE) 1.4.2 through 1.4.2_04, 1.4.1 through 1.4.1_07, and 1.4.0 through 1.4.0_04 allows untrusted applets and unprivileged servlets to gain privileges and read data from other applets via unspecified vectors related to classes in the XSLT processor, aka "XML sniffing." |
| Sun Solaris 10 before patch 118855-16 (20060925), when run on x64 systems using IPv6, allows remote attackers to cause a denial of service (kernel panic) via crafted IPv6 packets. |
| Unspecified vulnerability in Sun Solaris 8, 9 and 10 allows remote attackers to cause a denial of service (panic) via crafted IPv6 packets, a different vulnerability than CVE-2006-5013. |
| Sun Solaris 10 before 20061006 uses "incorrect and insufficient permission checks" that allow local users to intercept or spoof packets by creating a raw socket on a link aggregation (network device aggregation). |
| Race condition in the Xsession script, as used by X Display Manager (xdm) in NetBSD before 20060212, X.Org before 20060225, and Solaris 8 through 10 before 20061006, causes a user's Xsession errors file to have weak permissions before a chmod is performed, which allows local users to read Xsession errors files of other users. |
| Cross-site scripting (XSS) vulnerability in Sun iPlanet Messaging Server Messenger Express allows remote attackers to inject arbitrary web script via the expression Cascading Style Sheets (CSS) function, as demonstrated by setting the width style for an IMG element. NOTE: this issue might be related to CVE-2006-5486, however due to the vagueness of the initial advisory and different researchers, it has been assigned a new CVE. |
| Directory traversal vulnerability in ld.so.1 in Sun Solaris 8, 9, and 10 allows local users to execute arbitrary code via a .. (dot dot) sequence in the LANG environment variable that points to a locale file containing attacker-controlled format string specifiers. |