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104 lines
4.1 KiB
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=======================
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nginx: TLS Fingerprints
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=======================
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.. Warning::
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This manual page is for advanced users only as the feature is not designed to be used by beginners.
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Maybe the curves are not provided by the TLS implementation and you get an empty string.
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If this is the case, it is normal but you should expect trouble if you use them as a later
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version of the software may implement them and then all your connections will be flagged
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as intercepted.
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Requirements
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============
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* To use this feature, you must have an HTTPS server running which writes some logs.
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* Different browsers from different operating systems as clients
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Analysis Page
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=============
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The analysis page is grouped into some sections:
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.. image:: images/nginx_fingerprint_list_colors.png
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======= ================================================================================
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Color Description
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======= ================================================================================
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Orange User-Agent string (HTTP-Header) - technical description of the client
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Red Total count of hits in the log of the UA with this ciphers and curves
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Blue Supported Ciphers and Curves in order of the Client hello - our fingerprint
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Green If you click this button, you can take the fingerprint over to the configuration
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Gray Pie chart of the fingerprints count and the User-Agent (visualized)
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======= ================================================================================
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The pie chart is important to know if a fingerprint is
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intercepted because many intercepting software changes the client hello.
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Let's take a look at this one:
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.. image:: images/nginx_fingerprint_list.png
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There is one small one, which we probably can ignore,
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so lets look at the other two fingerprints:
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One contains ciphers, hashes etc., browsers should not support anymore (for
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example NULL, MD5, ...) so this is probably intercepted (it actually is OWASP
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ZAP_ 2.7.0) in this screenshot, which is intercepting a connection from
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Firefox 63.
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In this case there is onle one big segment left, which is very likely the real
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browser fingerprint (or another proxy).
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In the following example, take a look at the pie chart
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(especially the segment with the cursor on it):
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.. image:: images/nginx_fingerprint_good_sample.png
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The segment has a huge share of the requests with this User-Agent.
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In such a case it can be either always the same client requesting a resource
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and probably only few users are using it or, which is more likely if it is a
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browser, it that it is probably the right fingerprint.
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.. Warning::
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Some proxies are mirroring the client hello, so they won't be detected.
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Also be careful because for example if you have a big customer generating
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a lot of traffic, a big segment of the pie chart (even the biggest one),
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may be intercepted.
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For security reasons you should also take the absolute count into account
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when you are working on a real world sample and that software may be compiled
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width different which may also replace the crypto library which also means
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that it will have a different fingerprint.
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.. _ZAP: https://github.com/zaproxy/zaproxy
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If you click on the store button, a dialog will open and you can create a new
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entry in your configuration, which will be visible on the configuration page.
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For example, our fingerprint could be imported into the configuration like
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shown in the following screenshot:
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.. image:: images/nginx_fingerprint_export.png
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Configuration Page
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==================
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Now in the configuration page under :menuselection:`HTTP --> TLS Fingerprints` there will be an
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entry for the created fingerprint, so it can be edited:
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.. image:: images/nginx_fingerprint_settings.png
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Trusted Fingerprints
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====================
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A trusted fingerprint is a fingerprint, which will be used to detect man in the
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middle attacks by comparing the client hello of the fingerprint with the data
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sent by the client. If there are additional ciphers or curves, you will get
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this information via an HTTP header into your application.
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Please note that you can have only one fingerprint per User-Agent.
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