| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Microsoft Internet Explorer 6 and 7 embeds FTP credentials in HTML files that are retrieved during an FTP session, which allows context-dependent attackers to obtain sensitive information by reading the HTML source, as demonstrated by a (1) .htm, (2) .html, or (3) .mht file. |
| The setRequestHeader method of the XMLHttpRequest object in Microsoft Internet Explorer 5.01, 6, and 7 does not block dangerous HTTP request headers when certain 8-bit character sequences are appended to a header name, which allows remote attackers to (1) conduct HTTP request splitting and HTTP request smuggling attacks via an incorrect Content-Length header, (2) access arbitrary virtual hosts via a modified Host header, (3) bypass referrer restrictions via an incorrect Referer header, and (4) bypass the same-origin policy and obtain sensitive information via a crafted request header. |
| Microsoft Internet Explorer 7 allows remote attackers to cause a denial of service (browser hang) via JavaScript that matches a regular expression against a long string, as demonstrated using /(.)*/. |
| Use-after-free vulnerability in Microsoft Internet Explorer 5.01 SP4, 6 through SP1, and 7 allows remote attackers to execute arbitrary code via a crafted data stream that triggers memory corruption, as demonstrated using an invalid MIME-type that does not have a registered handler. |
| Microsoft Internet Explorer 6 and 7 accesses uninitialized memory, which allows remote attackers to cause a denial of service (crash) and execute arbitrary code via unknown vectors, aka "HTML Object Memory Corruption Vulnerability." |
| Unspecified vulnerability in Microsoft Internet Explorer 6 allows remote attackers to execute arbitrary code via a crafted Cascading Style Sheets (CSS) tag that triggers memory corruption. |
| Buffer overflow in the Microsoft HeartbeatCtl ActiveX control in HRTBEAT.OCX allows remote attackers to execute arbitrary code via the Host argument to an unspecified method. |
| Hacksoft The Hacker 6.3.1.2.174 and possibly 6.3.0.9.081, when Internet Explorer 6 or 7 is used, allows remote attackers to bypass detection of malware in an HTML document by placing an MZ header (aka "EXE info") at the beginning, and modifying the filename to have (1) no extension, (2) a .txt extension, or (3) a .jpg extension, as demonstrated by a document containing a CVE-2006-5745 exploit. |
| The printing functionality in Microsoft Internet Explorer 8 allows remote attackers to discover a local pathname, and possibly a local username, by reading the dc:title element of a PDF document that was generated from a local web page. |
| Argument injection vulnerability in Microsoft Internet Explorer, when running on systems with Firefox installed and certain URIs registered, allows remote attackers to conduct cross-browser scripting attacks and execute arbitrary commands via shell metacharacters in a (1) FirefoxURL or (2) FirefoxHTML URI, which are inserted into the command line that is created when invoking firefox.exe. NOTE: it has been debated as to whether the issue is in Internet Explorer or Firefox. As of 20070711, it is CVE's opinion that IE appears to be failing to properly delimit the URL argument when invoking Firefox, and this issue could arise with other protocol handlers in IE as well. However, Mozilla has stated that it will address the issue with a "defense in depth" fix that will "prevent IE from sending Firefox malicious data." |
| Unspecified vulnerability in Microsoft Internet Explorer 5.01, 6 SP1 and SP2, and 7 allows remote attackers to execute arbitrary code via crafted HTML layout combinations, aka "HTML Rendering Memory Corruption Vulnerability." |
| Unspecified vulnerability in an ActiveX control (dxtmsft.dll) in Microsoft Internet Explorer 5.01, 6 SP1 and SP2, and 7 allows remote attackers to execute arbitrary code via a crafted image, aka "Argument Handling Memory Corruption Vulnerability." |
| Cross-site scripting (XSS) vulnerability in api.php in (1) MediaWiki 1.11 through 1.11.0rc1, 1.10 through 1.10.2, 1.9 through 1.9.4, and 1.8; and (2) the BotQuery extension for MediaWiki 1.7 and earlier; when Internet Explorer is used, allows remote attackers to inject arbitrary web script or HTML via unspecified vectors. |
| Microsoft Internet Explorer 5.01, 6, and 7 accesses uninitialized memory, which allows remote attackers to cause a denial of service (crash) and execute arbitrary code via unknown vectors, a different vulnerability than CVE-2008-2254, aka "HTML Object Memory Corruption Vulnerability." |
| Microsoft Internet Explorer 5.01, 6, and 7 uses certain COM objects from Imjpcksid.dll as ActiveX controls, which allows remote attackers to execute arbitrary code via unspecified vectors. NOTE: this issue might be related to CVE-2006-4193. |
| Cross-domain vulnerability in Microsoft Internet Explorer 7 and 8 allows remote attackers to change the location property of a frame via the Object data type, and use a frame from a different domain to observe domain-independent events, as demonstrated by observing onkeydown events with caballero-listener. NOTE: according to Microsoft, this is a duplicate of CVE-2008-2947, possibly a different attack vector. |
| Microsoft Internet Explorer 7 allows remote attackers to prevent users from leaving a site, spoof the address bar, and conduct phishing and other attacks via onUnload Javascript handlers. |
| Microsoft Internet Explorer 5.01 through 6 allows remote attackers to execute arbitrary code via crafted layout combinations involving DIV tags and HTML CSS float properties that trigger memory corruption, aka "HTML Rendering Memory Corruption Vulnerability." |
| Microsoft Internet Explorer allows web sites to set cookies for domains that have a public suffix with more than one dot character, which could allow remote attackers to perform a session fixation attack and hijack a user's HTTP session, aka "Cross-Site Cooking." NOTE: this issue may exist because of an insufficient fix for CVE-2004-0866. |
| Microsoft Internet Explorer 8, and possibly other versions, detects http content in https web pages only when the top-level frame uses https, which allows man-in-the-middle attackers to execute arbitrary web script, in an https site's context, by modifying an http page to include an https iframe that references a script file on an http site, related to "HTTP-Intended-but-HTTPS-Loadable (HPIHSL) pages." |