| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Buffer overflow in traceroute in Mac OS X 10.3.9 allows local users to execute arbitrary code via unknown vectors. |
| Buffer overflow in the Mac OS X kernel 10.2.8 and earlier allows local users, and possibly remote attackers, to cause a denial of service (crash), access portions of memory, and possibly execute arbitrary code via a long command line argument (argv[]). |
| Buffer overflow in the Xsan Filesystem driver on Mac OS X 10.4.7 and OS X Server 10.4.7 allows local users with Xsan write access, to execute arbitrary code via unspecified vectors related to "processing a path name." |
| OpenSSL 0.9.6d and earlier, and 0.9.7-beta2 and earlier, does not properly handle ASCII representations of integers on 64 bit platforms, which could allow attackers to cause a denial of service and possibly execute arbitrary code. |
| Buffer overflows in OpenSSL 0.9.6d and earlier, and 0.9.7-beta2 and earlier, allow remote attackers to execute arbitrary code via (1) a large client master key in SSL2 or (2) a large session ID in SSL3. |
| Certain system calls in Apple Mac OS X 10.4.1 do not properly enforce the permissions of certain directories without the POSIX read bit set, but with the execute bits set for group or other, which allows local users to list files in otherwise restricted directories. |
| The ASN1 library in OpenSSL 0.9.6d and earlier, and 0.9.7-beta2 and earlier, allows remote attackers to cause a denial of service via invalid encodings. |
| lpr on SunOS 4.1.1, BSD 4.3, A/UX 2.0.1, and other BSD-based operating systems allows local users to create or overwrite arbitrary files via a symlink attack that is triggered after invoking lpr 1000 times. |
| Multiple integer overflows in Apple QuickTime before 7.1 allow remote attackers to execute arbitrary code via a crafted QuickTime H.264 (M4V) video format file. |
| Mac OS X 10.3.x and earlier uses insecure permissions for a pseudo terminal tty (pty) that is managed by a non-setuid program, which allows local users to read or modify sessions of other users. |
| Multiple stack-based buffer overflows in the AirPort wireless driver on Apple Mac OS X 10.3.9 and 10.4.7 allow physically proximate attackers to execute arbitrary code by injecting crafted frames into a wireless network. |
| Apple Remote Desktop Client 1.2.4 executes a GUI application as root when it is started by an Apple Remote Desktop Administrator application, which allows remote authenticated users to execute arbitrary code when loginwindow is active via Fast User Switching. |
| Multiple buffer overflows in Apple QuickTime before 7.1 allow remote attackers to execute arbitrary code via a crafted QuickTime movie (.MOV), as demonstrated via a large size for a udta Atom. |
| The suidperl and sperl program do not give up root privileges when changing UIDs back to the original users, allowing root access. |
| MacOS uses weak encryption for passwords that are stored in the Users & Groups Data File. |
| Mail in Apple Mac OS X 10.3.9 and 10.4.6 allows remote attackers to execute arbitrary code via an enriched text e-mail message with "invalid color information" that causes Mail to allocate and initialize arbitrary classes. |
| Multiple buffer overflows in Cyrus SASL library 2.1.9 and earlier allow remote attackers to cause a denial of service and possibly execute arbitrary code via (1) long inputs during user name canonicalization, (2) characters that need to be escaped during LDAP authentication using saslauthd, or (3) an off-by-one error in the log writer, which does not allocate space for the null character that terminates a string. |
| exif.c in PHP before 4.3.11 allows remote attackers to cause a denial of service (memory consumption and crash) via an EXIF header with a large IFD nesting level, which causes significant stack recursion. |
| Mac OS X 10.2.2 allows local users to gain privileges by mounting a disk image file that was created on another system, aka "Local User Privilege Elevation via Disk Image File." |
| ServerAdmin in Mac OS X 10.2.8 through 10.3.5 uses the same example self-signed certificate on each system, which allows remote attackers to decrypt sessions. |