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RimApplicationnvd

Blackberry Professional Software

Vulnerabilities
4
Known exploited
0
Max CVSS
9.3
Top EPSS
0.05046

Severity breakdown

Critical
3
High
1
Medium
0
Low
0

Affected version ranges

≤ 4.1.4
Also matched as (raw): blackberry_professional_software,blackberry_enterprise_server

Top vulnerabilities

CVE-2009-4778Multiple unspecified vulnerabilities in the PDF distiller in the Attachment Service component in Research In Motion (RIM) BlackBerry Enterprise Server (BES) software 4.1.3 through 4.1.7 and 5.0.0, and BlackBerry Professional Software 4.1.4, allow user-assisted remote attackers to cause a denial of service (memory corruption) or possibly execute arbitrary code via a crafted .pdf file attachment, a different vulnerability than CVE-2008-3246, CVE-2009-0176, CVE-2009-0219, CVE-2009-2643, and CVE-2009-2646.
CVE-2009-2646Multiple unspecified vulnerabilities in the PDF distiller in the Attachment Service component in Research In Motion (RIM) BlackBerry Enterprise Server (BES) software 4.1.3 through 4.1.6 and BlackBerry Professional Software 4.1.4 allow user-assisted remote attackers to cause a denial of service (memory corruption) or possibly execute arbitrary code via a crafted .pdf file attachment, a different vulnerability than CVE-2008-3246 and CVE-2009-0219.
CVE-2009-2643Multiple unspecified vulnerabilities in the PDF distiller in the Attachment Service component in Research In Motion (RIM) BlackBerry Enterprise Server (BES) software 4.1.3 through 5.0 and BlackBerry Professional Software 4.1.4 allow user-assisted remote attackers to cause a denial of service (memory corruption) or possibly execute arbitrary code via a crafted .pdf file attachment, a different vulnerability than CVE-2008-3246 and CVE-2009-0219.
CVE-2010-2601Multiple buffer overflows in the PDF distiller in the Attachment Service component in Research In Motion (RIM) BlackBerry Enterprise Server (BES) software 4.1.7 and earlier and 5.0.0 through 5.0.2, and BlackBerry Professional Software 4.1.4 and earlier, allow user-assisted remote attackers to cause a denial of service or possibly execute arbitrary code via a crafted PDF document.
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