| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Integer overflow in AFP Server for Apple Mac OS X 10.3.9 and 10.4.7 allows remote attackers to cause a denial of service (crash) and execute arbitrary code via unknown vectors. |
| AFP Server in Apple Mac OS X 10.3.9 and 10.4.7 stores reconnect keys in a world-readable file, which allows local users to obtain the keys and access files and folders of other users. |
| NFS on Apple Mac OS X 10.4.x up to 10.4.1 does not properly obey the -network or -mask flags for a filesystem and exports it to everyone, which allows remote attackers to bypass intended access restrictions. |
| Unspecified vulnerability in Apple File Protocol (AFP) server in Apple Mac OS X 10.4 up to 10.4.6 includes the names of restricted files and folders within search results, which might allow remote attackers to obtain sensitive information. |
| Safari 1.2.2 does not properly prevent a frame in one domain from injecting content into a frame that belongs to another domain, which facilitates web site spoofing and other attacks, aka the frame injection vulnerability. |
| Buffer overflow in the legacy client support for AFP Server for Mac OS X 10.4.1 allows attackers to execute arbitrary code. |
| The khtml::RenderTableSection::ensureRows function in KHTMLParser in Apple Mac OS X 10.4.3 and earlier, as used by Safari and TextEdit, allows remote attackers to cause a denial of service (memory consumption and application crash) via HTML files with a large ROWSPAN attribute in a TD tag. |
| Integer overflow on Apple QuickTime before 6.5.2, when running on Windows systems, allows remote attackers to cause a denial of service (memory consumption) via certain inputs that cause a large memory operation. |
| Integer overflow in Apple QuickTime before 7.0.3 allows user-assisted attackers to execute arbitrary code via a crafted MOV file with "Improper movie attributes." |
| CUPS before 1.1.21rc1 treats a Location directive in cupsd.conf as case sensitive, which allows attackers to bypass intended ACLs via a printer name containing uppercase or lowercase letters that are different from what is specified in the directive. |
| Apple iChat AV 2.1, AV 2.0, and 1.0.1 allows remote attackers to execute arbitrary programs via a "link" that references the program. |
| The malloc function in the libSystem library in Apple Mac OS X 10.3.9 and 10.4.2 allows local users to overwrite arbitrary files by setting the MallocLogFile environment variable to the target file before running a setuid application. |
| Mail in Mac OS X 10.3.7, when generating a Message-ID header, generates a GUUID that includes information that identifies the Ethernet hardware being used, which allows remote attackers to link mail messages to a particular machine. |
| Buffer overflow in SMTP HELO command in Sendmail allows a remote attacker to hide activities. |
| Integer overflow in ImageIO in Apple Mac OS X 10.4.7 allows user-assisted attackers to cause a denial of service (crash) and possibly execute arbitrary code via a malformed GIF image. |
| Unspecified vulnerability in ImageIO in Apple Mac OS X 10.4.7 allows user-assisted attackers to cause a denial of service (crash) and possibly execute arbitrary code via a crafted GIF image that triggers a memory allocation failure that is not properly handled. |
| AFP Server on Mac OS X 10.3.x to 10.3.5, under certain conditions, does not properly set the guest group ID, which causes AFP to change a write-only AFP Drop Box to be read-write when the Drop Box is on a share that is mounted by a guest, which allows attackers to read the Drop Box. |
| Heap-based buffer overflow in rsync in Mac OS X 10.4 through 10.4.5 allows remote authenticated users to execute arbitrary code via long extended attributes. |
| The dynamic linker (dyld) in Apple Mac OS X 10.3.9 allows local users to obtain sensitive information via unspecified dynamic linker options that affect the use of standard error (stderr) by privileged applications. |
| The International Domain Name (IDN) support in Safari 1.2.5 allows remote attackers to spoof domain names using punycode encoded domain names that are decoded in URLs and SSL certificates in a way that uses homograph characters from other character sets, which facilitates phishing attacks. |