var-202002-0569
Vulnerability from variot
The HTTPS protocol, as used in unspecified web applications, can encrypt compressed data without properly obfuscating the length of the unencrypted data, which makes it easier for man-in-the-middle attackers to obtain plaintext secret values by observing length differences during a series of guesses in which a string in an HTTP request URL potentially matches an unknown string in an HTTP response body, aka a "BREACH" attack, a different issue than CVE-2012-4929. Compressed HTTPS By observing the length of the response, the attacker HTTPS From stream ciphertext, website authentication key, etc. (secret) Is possible to guess. Salesforce.com of Angelo Prado He reports as follows. * Extending the CRIME vulnerability presented at Ekoparty 2012, an attacker can target HTTPS responses to recover data from the response body. * While the CRIME attack is currently believed to be mitigated by disabling TLS/SSL/level compression, compressed HTTP responses represent a significant unmitigated vector which is currently exploitable. By injecting plaintext into an HTTPS request, an attacker can learn information about the corresponding HTTPS response by measuring its size. * This relies on the attacker being able to observe the size of the cipher text received by the browser while triggering a number of strategically crafted requests to a target site. To recover a particular secret in an HTTPS response body, the attacker guesses character by character, sending a pair of requests for each guess. The correct guess will result in a smaller HTTPS response. For each guess the attacker coerces the victim's browser to issue two requests. The first request includes a payload of the form: "target_secret_name=
https://security.gentoo.org/
Severity: Normal Title: nginx: Multiple vulnerabilities Date: June 17, 2016 Bugs: #560854, #573046, #584744 ID: 201606-06
Synopsis
Multiple vulnerabilities have been found in nginx, the worst of which may allow a remote attacker to cause a Denial of Service.
Background
nginx is a robust, small, and high performance HTTP and reverse proxy server.
Affected packages
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Package / Vulnerable / Unaffected
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1 www-servers/nginx < 1.10.1 >= 1.10.1
Description
Multiple vulnerabilities have been discovered in nginx. Please review the CVE identifiers referenced below for details.
Impact
A remote attacker could possibly cause a Denial of Service condition via a crafted packet.
Workaround
There is no known workaround at this time.
Resolution
All nginx users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=www-servers/nginx-1.10.1"
References
[ 1 ] CVE-2013-3587 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2013-3587 [ 2 ] CVE-2016-0742 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-0742 [ 3 ] CVE-2016-0746 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-0746 [ 4 ] CVE-2016-0747 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-0747 [ 5 ] CVE-2016-4450 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-4450 [ 6 ] CVE-2016-4450 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-4450
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201606-06
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2016 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5
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compressed data without properly obfuscating the length of the unencrypted data, which makes it easier for man-in-the-middle attackers to obtain plaintext secret values by observing length differences during a series of guesses in which a string in an HTTP request URL potentially matches an unknown string in an HTTP response body, aka a \"BREACH\" attack, a different issue than CVE-2012-4929. Compressed HTTPS By observing the length of the response, the attacker HTTPS From stream ciphertext, website authentication key, etc. (secret) Is possible to guess. Salesforce.com of Angelo Prado He reports as follows. * Extending the CRIME vulnerability presented at Ekoparty 2012, an attacker can target HTTPS responses to recover data from the response body. * While the CRIME attack is currently believed to be mitigated by disabling TLS/SSL/level compression, compressed HTTP responses represent a significant unmitigated vector which is currently exploitable. By injecting plaintext into an HTTPS request, an attacker can learn information about the corresponding HTTPS response by measuring its size. * This relies on the attacker being able to observe the size of the cipher text received by the browser while triggering a number of strategically crafted requests to a target site. To recover a particular secret in an HTTPS response body, the attacker guesses character by character, sending a pair of requests for each guess. The correct guess will result in a smaller HTTPS response. For each guess the attacker coerces the victim\u0027s browser to issue two requests. The first request includes a payload of the form: \"target_secret_name=\u003calready known part of secret\u003e+\u003cguess\u003e+\u003cpadding\u003e\" ...while the second request includes a payload of the form: \"target_secret_name=\u003calready known part of secret\u003e+\u003cpadding\u003e+\u003cguess\u003e\". * If the size of the first response is smaller than the second response, this indicates that the guess has a good chance of being correct. This method of sending two similar requests and comparing them is due to Duong and Rizzo. If multiple candidates are found, the following is a useful recovery mechanism: move forward in parallel with both candidates until it becomes clear which guess is correct. * With a token of length 32 and a character space of size 16 (e.g. hex), the attacker needs an average of approximately 1,000 request if no recovery mechanisms are needed. In practice, we have been able to recover CSRF tokens with fewer than 4,000 requests. A browser like Google Chrome or Internet Explorer is able to issue this number of requests in under 30 seconds, including callbacks to the attacker command \u0026 control center. [In order to conduct the attack, the following conditions must be true]: * 1. HTTPS-enabled endpoint (ideally with stream ciphers like RC4, although the attack can be made to work with adaptive padding for block ciphers). * 2. The attacker must be able to measure the size of HTTPS responses. * 3. Use of HTTP-level compression (e.g. gzip). * 4. A request parameter that is reflected in the response body. * 5. A static secret in the body (e.g. CSRF token, sessionId, VIEWSTATE, PII, etc.) that can be bootstrapped (either first/last two characters are predictable and/or the secret is padded with something like KnownSecretVariableName=\"\". * 6. An otherwise static or relatively static response. Dynamic pages do not defeat the attack, but make it much more expensive.Encrypted by a remote third party HTTPS From the response, the key used to authenticate the website CSRF Information such as tokens (secret) May get you. TLS protocol is prone to an information-disclosure vulnerability. \nA man-in-the-middle attacker can exploit this issue to gain access to sensitive information that may aid in further attacks. HTTPS (Hypertext Transfer Protocol Secure) is a network security transmission protocol, which communicates via Hypertext Transfer Protocol (HTTP) on a computer network, and uses SSL/TLS to encrypt data packets. The main purpose of HTTPS development is to provide identity authentication to web servers and protect the privacy and integrity of exchanged data. There is an information disclosure vulnerability in the HTTPS protocol, which stems from the fact that the program does not confuse the length of the encrypted data when encrypting the compressed data. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\nGentoo Linux Security Advisory GLSA 201606-06\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n https://security.gentoo.org/\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\n Severity: Normal\n Title: nginx: Multiple vulnerabilities\n Date: June 17, 2016\n Bugs: #560854, #573046, #584744\n ID: 201606-06\n\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\nSynopsis\n========\n\nMultiple vulnerabilities have been found in nginx, the worst of which\nmay allow a remote attacker to cause a Denial of Service. \n\nBackground\n==========\n\nnginx is a robust, small, and high performance HTTP and reverse proxy\nserver. \n\nAffected packages\n=================\n\n -------------------------------------------------------------------\n Package / Vulnerable / Unaffected\n -------------------------------------------------------------------\n 1 www-servers/nginx \u003c 1.10.1 \u003e= 1.10.1\n\nDescription\n===========\n\nMultiple vulnerabilities have been discovered in nginx. Please review\nthe CVE identifiers referenced below for details. \n\nImpact\n======\n\nA remote attacker could possibly cause a Denial of Service condition\nvia a crafted packet. \n\nWorkaround\n==========\n\nThere is no known workaround at this time. \n\nResolution\n==========\n\nAll nginx users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=www-servers/nginx-1.10.1\"\n\nReferences\n==========\n\n[ 1 ] CVE-2013-3587\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2013-3587\n[ 2 ] CVE-2016-0742\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-0742\n[ 3 ] CVE-2016-0746\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-0746\n[ 4 ] CVE-2016-0747\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-0747\n[ 5 ] CVE-2016-4450\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-4450\n[ 6 ] CVE-2016-4450\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-4450\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201606-06\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2016 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n", "sources": [ { "db": "NVD", "id": "CVE-2013-3587" }, { "db": "CERT/CC", "id": "VU#987798" }, { "db": "JVNDB", "id": "JVNDB-2013-003658" }, { "db": "BID", "id": "62618" }, { "db": "VULHUB", "id": "VHN-63589" }, { "db": "VULMON", "id": "CVE-2013-3587" }, { "db": "PACKETSTORM", "id": "137518" } ], "trust": 2.88 }, "external_ids": { "@context": { "@vocab": "https://www.variotdbs.pl/ref/external_ids#", "data": { "@container": "@list" }, "sources": { "@container": "@list", "@context": { "@vocab": "https://www.variotdbs.pl/ref/sources#" } } }, "data": [ { "db": "NVD", "id": "CVE-2013-3587", 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Sightings
Author | Source | Type | Date |
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Nomenclature
- Seen: The vulnerability was mentioned, discussed, or seen somewhere by the user.
- Confirmed: The vulnerability is confirmed from an analyst perspective.
- Exploited: This vulnerability was exploited and seen by the user reporting the sighting.
- Patched: This vulnerability was successfully patched by the user reporting the sighting.
- Not exploited: This vulnerability was not exploited or seen by the user reporting the sighting.
- Not confirmed: The user expresses doubt about the veracity of the vulnerability.
- Not patched: This vulnerability was not successfully patched by the user reporting the sighting.