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360 lines
18 KiB
XML
360 lines
18 KiB
XML
<?xml version="1.0" encoding="US-ASCII"?>
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<!-- This template is for creating an Internet Draft using xml2rfc,
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which is available here: http://xml.resource.org. -->
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<!DOCTYPE rfc SYSTEM "rfc2629.dtd" [
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There has to be one entity for each item to be referenced.
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An alternate method (rfc include) is described in the references. -->
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<!ENTITY RFC2119 SYSTEM "http://xml.resource.org/public/rfc/bibxml/reference.RFC.2119.xml">
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<!ENTITY RFC6648 SYSTEM "http://xml.resource.org/public/rfc/bibxml/reference.RFC.6648.xml">
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<!ENTITY I-D.narten-iana-considerations-rfc2434bis SYSTEM "http://xml.resource.org/public/rfc/bibxml3/reference.I-D.narten-iana-considerations-rfc2434bis.xml">
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]>
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<?xml-stylesheet type='text/xsl' href='rfc2629.xslt' ?>
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<!-- For a complete list and description of processing instructions (PIs),
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please see http://xml.resource.org/authoring/README.html. -->
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<!-- Below are generally applicable Processing Instructions (PIs) that most I-Ds might want to use.
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(Here they are set differently than their defaults in xml2rfc v1.32) -->
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<?rfc strict="yes" ?>
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<!-- give errors regarding ID-nits and DTD validation -->
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<!-- control the table of contents (ToC) -->
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<?rfc toc="yes"?>
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<!-- generate a ToC -->
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<?rfc tocdepth="4"?>
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<!-- the number of levels of subsections in ToC. default: 3 -->
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<!-- control references -->
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<?rfc symrefs="yes"?>
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<!-- use symbolic references tags, i.e, [RFC2119] instead of [1] -->
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<?rfc sortrefs="yes" ?>
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(using these PIs as follows is recommended by the RFC Editor) -->
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<?rfc compact="yes" ?>
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<?rfc subcompact="no" ?>
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<!-- keep one blank line between list items -->
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<rfc category="info" docName="draft-ietf-dulaunoy-kaplan-pDNS-cof-00" ipr="trust200902">
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<!-- category values: std, bcp, info, exp, and historic
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ipr values: full3667, noModification3667, noDerivatives3667
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you can add the attributes updates="NNNN" and obsoletes="NNNN"
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they will automatically be output with "(if approved)" -->
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<!-- ***** FRONT MATTER ***** -->
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<front>
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<title abbrev="Passive DNS - Common Output Format">Passive DNS - Common Output Format</title>
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<author fullname="Alexandre Dulaunoy" initials="A."
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surname="Dulaunoy">
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<organization>CIRCL</organization>
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<address>
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<postal>
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<street>41, avenue de la gare</street>
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<city>Luxembourg</city>
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<region></region>
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<code>L-1611</code>
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<country>LU</country>
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</postal>
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<phone>(+352) 247 88444</phone>
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<email>alexandre.dulaunoy@circl.lu</email>
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<uri>http://www.circl.lu/</uri>
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<!-- uri and facsimile elements may also be added -->
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</address>
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</author>
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<author fullname="L. Aaron Kaplan" initials="A."
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surname="Kaplan">
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<organization>CERT.at</organization>
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<address>
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<postal>
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<street>Karlsplatz 1/2/9</street>
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<city>Vienna</city>
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<region></region>
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<code>A-1010</code>
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<country>AT</country>
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</postal>
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<phone>+43 1 5056416 78</phone>
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<email>kaplan@cert.at</email>
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<uri>http://www.cert.at/</uri>
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</address>
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</author>
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<author fullname="Paul Vixie" initials="P."
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surname="Vixie">
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<organization>Farsight Security, Inc.</organization>
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<address>
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<postal>
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<street></street>
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<city></city>
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<region></region>
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<code></code>
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<country></country>
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</postal>
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<phone></phone>
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<email>paul@redbarn.org</email>
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<uri>/</uri>
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</address>
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</author>
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<author fullname="Henry Stern" initials="H." surname="Stern">
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<organization>Cisco</organization>
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<address>
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<postal>
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<street>1741 Brunswick Street, Suite 500</street>
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<city>Halifax</city>
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<region>Nova Scotia</region>
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<code>B3J 3X8</code>
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<country>Canada</country>
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</postal>
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<phone>+1 408 922 4555</phone>
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<email>hestern@cisco.com</email>
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<uri>http://www.cisco.com/security</uri>
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</address>
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</author>
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<date month="December" year="2013" />
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<area>General</area>
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<workgroup>Internet Engineering Task Force</workgroup>
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<keyword>dns</keyword>
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<abstract>
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<t>This document describes a common output format of Passive DNS Servers which clients can query. The output format description includes also in addition a common semantic for each Passive DNS system. By having multiple Passive DNS Systems adhere to the same output format for queries, users of multiple Passive DNS servers will be able to combine result sets easily.</t>
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</abstract>
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</front>
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<middle>
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<section title="Introduction">
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<t>Passive DNS is a technique described by Florian Weimer in 2005 in <xref target="WEINERPDNS">Passive DNS replication, F Weimer - 17th Annual FIRST Conference on Computer Security</xref>. Since then multiple Passive DNS implementations evolved over time. Users of these Passive DNS servers may query a server (often via <xref target="RFC3912">WHOIS</xref> or HTTP <xref target="REST">REST</xref>), parse the results and process them in other applications.</t>
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<t>
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There are multiple implementations of Passive DNS software. Users of passive DNS query each implementation and aggregate the results for their search. This document describes the output format of four Passive DNS Systems (<xref target="DNSDB"/>,<xref target="PDNSCERTAT"/>, <xref target="PDNSCIRCL"/> and <xref target="PDNSCOF"/>) which are in use today and which already share a nearly identical output format.
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As the format and the meaning of output fields from each Passive DNS need to be consistent, we propose in this document a solution to commonly name each field along with their corresponding interpretation. The format follows a simple key-value structure in <xref target="RFC4627">JSON</xref> format.
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The benefit of having a consistent Passive DNS output format is that multiple client implementations can query different servers without having to have a separate parser for each
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individual server. <xref target="PDNSCLIENT">passivedns-client</xref>currently implements multiple parsers due to a lack of standardization.
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The document does not describe the protocol (e.g. <xref target="RFC3912">WHOIS</xref>, HTTP <xref target="REST">REST</xref>) nor the query format used to query the Passive DNS. Neither does this document describe "pre-recursor" Passive DNS Systems. Both of these are separate topics and deserve their own RFC document.
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</t>
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<section title="Requirements Language">
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<t>The key words "MUST", "MUST NOT", "REQUIRED", "SHALL", "SHALL NOT",
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"SHOULD", "SHOULD NOT", "RECOMMENDED", "MAY", and "OPTIONAL" in this
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document are to be interpreted as described in <xref
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target="RFC2119">RFC 2119</xref>.</t>
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</section>
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</section>
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<section title="Limitation">
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<t> As a Passive DNS can include protection mechanisms for their operation, results might be different due to those protection measures. These mechanisms filter out DNS answers if they fail some criteria. The <xref target="BAILIWICK">bailiwick algorithm</xref> protects the Passive DNS Database from <xref target="CACHEPOISONING">cache poisoning attacks</xref>.
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Another limitiation that clients querying the database need to be aware of is that each query simply gets an snapshot-answer of the time of querying. Clients MUST NOT rely on consistent answers. Not must they assume that answers must be identical across multiple Passive DNS Servers.
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</t>
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</section>
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<section title="Common Output Format">
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<t>The formatting of the answer follows the <xref target="RFC4627">JSON</xref> format. The order of the fields is not significant for the same resource type. That means, the same name tuple plus timing information identifies a unique answer per server.</t>
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<section title="Overview and Example">
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<t>The intent of this output format is to be easily parseable by scripts. Every implementation MUST support the JSON output format.</t>
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<figure><preamble>A sample output using the JSON format:</preamble><artwork><![CDATA[
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... (list of )...
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{ "count": 97167,
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"time_first": "1277353744",
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"rrtype": "A", "rrname": "google-public-dns-a.google.com.",
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"rdata": "8.8.8.8",
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"time_last": "1386405372" }
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... (separated by newline)...
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]]></artwork></figure>
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</section>
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<section title="Mandatory Fields">
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<t>Implementation MUST support all the mandatory fields.</t>
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<t>The tuple (rrname,rrtype,rdata) will always be unique within one answer per server.</t>
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<section title="rrname">
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<t>This field returns the name of the queried resource.</t>
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</section>
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<section title="rrtype">
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<t>This field returns the resource record type as seen by the passive DNS. The key is rrtype and the value is in the interpreted record type. If the value cannot be interpreted the
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decimal value is returned following the principle of transparency as described in <xref target="RFC3597">RFC 3597</xref>.
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The resource record type can be any values as described by IANA in the DNS parameters document in the section 'DNS Label types' (http://www.iana.org/assignments/dns-parameters).
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Currently known and supported textual descriptions of rrtypes are: A, AAAA, CNAME, PTR, SOA, TXT, DNAME, NS, SRV, RP, NAPTR, HINFO, A6.
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A client MUST be able to understand these textual rtype values. In addition, a client MUST be able to handle a decimal value (as mentioned above) as answer.
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</t>
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</section>
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<section title="rdata">
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<t>This field returns the data of the queried resource. In general, this is to be interpreted as string. Depending on the rtype, this can be an IPv4 or IPv6 address, a domain name (as in the case of CNAMEs), an SPF record, etc. A client MUST be able to interpret any value which is legal as the right hand side in a DNS zone file <xref target="RFC1035">RFC 1035</xref> and <xref target="RFC1034">RFC 1034</xref>. If the rdata came from an unknown DNS resource records, the server must follow the transparency principle as described in <xref target="RFC3597">RFC 3597</xref>.</t>
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</section>
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<section title="time_first">
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<t>This field returns the first time that the record / unique tuple (rrname, rrtype, rdata) has been seen by the passive DNS. The date is expressed in seconds (decimal ascii) since 1st of January 1970 (unix timestamp). The time zone MUST be UTC.</t>
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</section>
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<section title="time_last">
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<t>This field returns the last time that the unique tuple (rrname, rrtype, rdata) record has been seen by the passive DNS. The date is expressed in seconds (decimal ascii) since 1st of January 1970 (unix timestamp). The time zone MUST be UTC.</t>
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</section>
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</section>
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<section title="Optional Fields">
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<t>Implementations SHOULD support one or more field.</t>
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<section title="count">
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<t>Specifies how many authoritative DNS answers were received at the Passive DNS Server's collectors with the set of answers (i.e. same data). The number of requests is expressed as a decimal value.</t>
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<t>Specifies the number of times this particular event denoted by the other type fields has been seen in the given time interval (between time_last and time_first). Decimal number.</t>
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</section>
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<section title="bailiwick">
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<t>The bailiwick is the best estimate of the apex of the zone where this data is authoritative. String.</t>
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</section>
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</section>
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<section title="Additional Fields">
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<t>Implementations MAY support the following fields:</t>
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<section title="sensor_id">
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<t>This field returns the sensor information where the record was seen. The sensor_id is an opaque byte string as defined by <xref target="RFC5001"> RFC 5001 in section 2.3</xref>.</t>
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</section>
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<section title="zone_time_first">
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<t>This field returns the first time that the unique tuple (rrname, rrtype, rdata) record has been seen via zone file import. The date is expressed in seconds (decimal ascii) since 1st of January 1970 (unix timestamp). The time zone MUST be UTC.</t>
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</section>
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<section title="zone_time_last">
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<t>This field returns the last time that the unique tuple (rrname, rrtype, rdata) record has been seen via zone file import. The date is expressed in seconds (decimal ascii) since 1st of January 1970 (unix timestamp). The time zone MUST be UTC.</t>
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</section>
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</section>
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<section title="Additional Fields Registry">
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<t>In accordance with <xref target="RFC6648"/>, designers of new passive DNS applications that would need additional fields can request and register new field name at https://github.com/adulau/pdns-qof/wiki/Additional-Fields.</t>
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</section>
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</section>
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<!-- This PI places the pagebreak correctly (before the section title) in the text output. -->
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<?rfc needLines="8" ?>
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<section anchor="Acknowledgements" title="Acknowledgements">
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<t>Thanks to the Passive DNS developers who contributed to the document.</t>
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</section>
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<!-- Possibly a 'Contributors' section ... -->
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<section anchor="IANA" title="IANA Considerations">
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<t>This memo includes no request to IANA.</t>
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</section>
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<section anchor="Security" title="Security Considerations">
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<t>In some cases, Passive DNS output might contain confidential information and its access might be restricted. When an user is querying multiple Passive DNS and aggregating the data, the sensitivity of the data must be considered.</t>
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</section>
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</middle>
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<!-- *****BACK MATTER ***** -->
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<back>
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<!-- References split into informative and normative -->
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<!-- There are 2 ways to insert reference entries from the citation libraries:
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1. define an ENTITY at the top, and use "ampersand character"RFC2629; here (as shown)
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2. simply use a PI "less than character"?rfc include="reference.RFC.2119.xml"?> here
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(for I-Ds: include="reference.I-D.narten-iana-considerations-rfc2434bis.xml")
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Both are cited textually in the same manner: by using xref elements.
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If you use the PI option, xml2rfc will, by default, try to find included files in the same
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directory as the including file. You can also define the XML_LIBRARY environment variable
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with a value containing a set of directories to search. These can be either in the local
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filing system or remote ones accessed by http (http://domain/dir/... ).-->
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<references title="Normative References">
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<!--?rfc include="http://xml.resource.org/public/rfc/bibxml/reference.RFC.2119.xml"?-->
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&RFC2119;
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&RFC1035;
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&RFC1034;
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&RFC3912;
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&RFC4627;
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&RFC5001;
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&RFC3597;
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&RFC6648;
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</references>
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<references>
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<reference anchor="WEINERPDNS" target="http://www.enyo.de/fw/software/dnslogger/first2005-paper.pdf">
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<front>
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<title>Passive DNS Replication</title>
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<author fullname="Florian Weimer"/>
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<date year="2005"/>
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</front>
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</reference>
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<reference anchor="CACHEPOISONING" target="http://kurser.lobner.dk/dDist/DMK_BO2K8.pdf">
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<front>
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<title>Black ops 2008: It’s the end of the cache as we know it.</title>
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<author fullname="Dan Kaminsky"/>
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<date year="2008"/>
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</front>
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</reference>
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<reference anchor="BAILIWICK" target="https://archive.farsightsecurity.com/Passive_DNS/passive_dns_hardening_handout.pdf">
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<front>
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<title>Passive DNS Hardening</title>
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<author fullname="Robert Edmonds"/>
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<date year="2010"/>
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</front>
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</reference>
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<reference anchor="PDNSCLIENT" target="https://github.com/chrislee35/passivedns-client">
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<front>
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<title>Queries 5 major Passive DNS databases: BFK, CERTEE, DNSParse, ISC, and VirusTotal.</title>
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<author fullname="Chris Lee"/>
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<date year="2013"/>
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</front>
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</reference>
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<reference anchor="REST" target="http://www.ics.uci.edu/~fielding/pubs/dissertation/rest_arch_style.htm">
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<front>
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<title>Representational State Transfer (REST)</title>
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<author fullname="Roy Thomas Fielding"/>
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<date year="2000"/>
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</front>
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</reference>
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<reference anchor="DNSDB" target="https://api.dnsdb.info/">
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<front>
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<title>DNSDB API</title>
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<author fullname="Farsight Security"/>
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<date year="2013"/>
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</front>
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</reference>
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<reference anchor="PDNSCERTAT" target="http://www.centr.org/system/files/agenda/attachment/rd4-papst-passive_dns.pdf">
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<front>
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<title>pDNS presentation at 4th Centr R&D workshop Frankfurt Jun 5th 2012</title>
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<author fullname="CERT.at"/>
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<date year="2012"/>
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</front>
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</reference>
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<reference anchor="PDNSCIRCL" target="http://pdns.circl.lu/">
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<front>
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<title>CIRCL Passive DNS</title>
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<author fullname="CIRCL -Computer Incident Response Center Luxembourg"/>
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<date year="2012"/>
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</front>
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</reference>
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<reference anchor="PDNSCOF" target="https://github.com/adulau/pdns-qof-server/">
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<front>
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<title>Passive DNS server interface using the common output format</title>
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<author fullname="Alexandre Dulaunoy"/>
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<date year="2013"/>
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</front>
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</reference>
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</references>
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<references title="Informative References">
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<!-- Here we use entities that we defined at the beginning. -->
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&RFC3552;
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&I-D.narten-iana-considerations-rfc2434bis;
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</references>
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</back>
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</rfc>
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