Search Results (6901 CVEs found)

CVE Vendors Products Updated CVSS v3.1
CVE-2017-11273 1 Adobe 1 Digital Editions 2025-04-20 N/A
An issue was discovered in Adobe Digital Editions 4.5.6 and earlier versions. Adobe Digital Editions parses crafted XML files in an unsafe manner, which could lead to sensitive information disclosure.
CVE-2017-11271 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable memory corruption vulnerability in the image conversion engine when processing Enhanced Metafile Format (EMF) data related to transfer of pixel blocks. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11269 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable memory corruption vulnerability in the image conversion engine when processing Enhanced Metafile Format (EMF) image stream data. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11268 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable memory corruption vulnerability in the image conversion engine when processing Enhanced Metafile Format (EMF) private JPEG data. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11261 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable memory corruption vulnerability in the image conversion engine when processing Enhanced Metafile Format (EMF) private data and the embedded TIF image. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11257 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable type confusion vulnerability in the XFA layout engine. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11251 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable memory corruption vulnerability in the JPEG 2000 parsing module. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11245 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable memory corruption vulnerability in the image conversion engine when processing Enhanced Metafile Format (EMF) private data. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11241 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable heap overflow vulnerability in the image conversion engine when processing Enhanced Metafile Format (EMF) data related to polygons. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11237 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable memory corruption vulnerability in the font parsing module. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11234 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable memory corruption vulnerability in the image conversion engine when processing TIFF data related to the way how the components of each pixel are stored. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11227 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable memory corruption vulnerability in the image conversion engine when processing Enhanced Metafile Format (EMF) private data. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11226 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable memory corruption vulnerability in the image processing engine when processing JPEG 2000 (JP2) code stream data. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11224 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable use after free vulnerability in the XFA layout engine. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11222 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable memory corruption vulnerability in the Product Representation Compact (PRC) engine. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11221 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable type confusion vulnerability in the annotation functionality. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11220 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable heap overflow vulnerability in an internal data structure. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11219 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable use after free vulnerability in the XFA rendering engine. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11216 3 Adobe, Apple, Microsoft 7 Acrobat, Acrobat Dc, Acrobat Reader and 4 more 2025-04-20 N/A
Adobe Acrobat Reader 2017.009.20058 and earlier, 2017.008.30051 and earlier, 2015.006.30306 and earlier, and 11.0.20 and earlier has an exploitable memory corruption vulnerability in the image conversion engine when processing Enhanced Metafile Format (EMF) data related to bitmap transformations. Successful exploitation could lead to arbitrary code execution.
CVE-2017-11215 6 Adobe, Apple, Google and 3 more 11 Flash Player, Macos, Chrome Os and 8 more 2025-04-20 N/A
An issue was discovered in Adobe Flash Player 27.0.0.183 and earlier versions. This vulnerability is an instance of a use after free vulnerability in the Primetime SDK. The mismatch between an old and a new object can provide an attacker with unintended memory access -- potentially leading to code corruption, control-flow hijack, or an information leak attack. Successful exploitation could lead to arbitrary code execution.