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The host is installed with OpenOffice.org before 2.4 and is prone to heap-based buffer overflow vulnerability. A flaw is present in application, which fails to properly handle a crafted OLE file. Successful exploitation allows remote attackers to cause a denial of service (crash) and possibly execute arbitrary code.

The host is installed with OpenOffice.org 2.x before 2.4 and is prone to integer overflow vulnerability. A flaw is present in application, which fails to properly handle a crafted file. Successful exploitation allows remote attackers to execute arbitrary code.

The host is installed with OpenOffice.org 2.x before 2.4.2 and is prone to multiple integer overflows vulnerabilities. The flaws are present in application, which fails to properly handle a crafted EMF file. Successful exploitation allows remote attackers to cause a denial of service (application crash) or possibly execute arbitrary code.

The host is installed with OpenOffice.org 2.x before 2.4.2 and is prone to heap-based buffer overflow vulnerability. A flaw is present in application, which fails to properly handle a crafted WMF file. Successful exploitation allows remote attackers to cause a denial of service (application crash) or possibly execute arbitrary code.

The host is installed with Microsoft Office 2013 and is prone to a token reuse vulnerability. A flaw is present in the application, which does not properly validate the path used for loading external libraries. Successful exploitation could allow attackers to execute arbitrary code.

The host is installed with Microsoft Office 2013 and is prone to a microsoft office chinese grammar checking vulnerability. A flaw is present in the application, which does not properly validate the path used for loading external libraries. Successful exploitation could allow attackers to execute arbitrary code.

The host is installed with Microsoft Office 2007 or 2010 or 2013 and is prone to security feature bypass vulnerability. A flaw is present in the application, which fails to handle a specially crafted content. Successful exploitation could allow remote attackers to bypass the ASLR security feature and predict memory offsets of specific instructions in a given call stack.

The host is installed with Wireshark 1.4.x before 1.4.13 or 1.6.x before 1.6.8 and is prone to denial of service vulnerability. A flaw is present in the application, which fails to properly perform data alignment for a certain structure member. Successful exploitation allows attackers to cause a denial of service (crash) via a (1) ICMP or (2) ICMPv6 Echo Request packet.

The host is installed with Wireshark 1.10.x before 1.10.1 and is prone to denial of service vulnerability. A flaw is present in the P1 dissector, which does not properly initialize a global variable. Successful exploitation allows attackers to cause a denial of service (crash).

The host is installed with Wireshark 1.10.x before 1.10.1 and is prone to denial of service vulnerability. A flaw is present in the dissect_radiotap function in epan/dissectors/packet-ieee80211-radiotap.c in the Radiotap dissector, which fails to handle a crafted packet. Successful exploitation allows attackers to cause a denial of service (crash).


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