bind9 is a free, open source networking & connectivity project written in C and released under MPL-2.0. It has 779 GitHub stars, 186 forks and 0 open issues, and was last pushed 4 hours ago. On this registry it ranks #52 of 55 tracked projects in Networking & Connectivity, with 5 head-to-head comparisons available.

What is bind9?

BIND 9 is a complete, highly portable open-source implementation of the Domain Name System protocol, written in C, for operators and organisations that need to run authoritative, recursive, or forwarding DNS infrastructure themselves.

What it is

BIND (Berkeley Internet Name Domain) is a complete, highly portable implementation of the Domain Name System protocol. Its name server, named, can act as an authoritative name server, a recursive resolver, a DNS forwarder, or all three simultaneously, and it ships alongside a suite of administrative tools including the dig and delv lookup utilities, nsupdate for dynamic DNS zone updates, and rndc for remote name server administration. BIND 9 began as a complete rewrite of the architecture used in versions 4 and 8, and is developed and maintained by Internet Systems Consortium (ISC), a 501(c)(3) US public benefit corporation dedicated to software and services in support of Internet infrastructure. It is open source software licensed under the Mozilla Public License, version 2.0.

The concrete problem BIND 9 solves is running the DNS services that name resolution depends on, with the advanced controls that production networks require, in a single self-hosted package. It addresses split-horizon DNS through views, protects zone data integrity with automatic DNSSEC zone signing and key management, and eases provisioning across fleets of servers through catalog zones. It also mitigates abuse directly: response policy zones (RPZ) protect clients from malicious data, while response rate limiting (RRL) and recursive query limits reduce the impact of distributed denial of service attacks. This repository is an archived mirror of the canonical project at https://gitlab.isc.org/isc-projects/bind9, where issues and merge requests are handled.

Key capabilities

  • Serve as an authoritative name server, recursive resolver, DNS forwarder, or all three at once from the named daemon.
  • Implement views for split-horizon DNS, serving different zone data to different classes of clients.
  • Perform automatic DNSSEC zone signing and key management without separate signing workflows.
  • Distribute zone data across a name server constellation using catalog zones.
  • Block or rewrite responses with response policy zones (RPZ) to protect clients from malicious data.
  • Reduce DDoS exposure through response rate limiting (RRL) and recursive query limits.
  • Operate the server remotely with rndc, update zones dynamically with nsupdate, and inspect resolution with dig and delv.

Who uses it and how

  • Operators deploying named as an authoritative server for zones they host directly, alongside a recursive resolver or forwarder in the same installation.
  • Network teams implementing split-horizon DNS with views, so internal and external clients receive different answers from one deployment.
  • Zone administrators managing fleets of name servers, using catalog zones to propagate zone data throughout the constellation and nsupdate for dynamic updates.
  • Security-minded operators applying RPZ, RRL, and recursive query limits to defend clients and resolvers against malicious data and DDoS traffic.
  • Contributors and downstream packagers working in C against the documented BIND architecture and developer guide, submitting merge requests on the ISC GitLab server.

Getting started

Build the project from source following the build instructions in the README, or obtain current versions and release notes from https://www.isc.org/download/, where supported platforms are also listed in the "Supported Platforms" section of the BIND 9 Administrator Reference Manual.

How it compares

BIND 9 stands alone in this registry: the supplied facts name no other DNS server implementations for it to be compared against. Evaluation against alternatives would need to draw on sources outside this directory page.

When to use it — and when not to

Anyone self-hosting it must operate the name server itself, maintain zone configuration, and — for DNSSEC-enabled zones — manage signing keys, using named-checkconf -px to obscure secrets before pasting configuration into bug reports. It is a poor fit for teams that want a managed DNS service with no server to run, and this particular repository is an archived mirror rather than the canonical source, so issues, pull requests, and merge requests belong on the ISC GitLab at https://gitlab.isc.org/isc-projects/bind9, and professional support and training are obtained from ISC rather than through this mirror.

project readme (upstream, from github) — read inline

BIND 9

Contents

  1. Introduction
  2. Reporting bugs and getting help
  3. Contributing to BIND
  4. Building BIND
  5. Automated testing
  6. Documentation
  7. Acknowledgments

Introduction

BIND (Berkeley Internet Name Domain) is a complete, highly portable implementation of the Domain Name System (DNS) protocol.

The BIND name server, named, can act as an authoritative name server, recursive resolver, DNS forwarder, or all three simultaneously. It implements views for split-horizon DNS, automatic DNSSEC zone signing and key management, catalog zones to facilitate provisioning of zone data throughout a name server constellation, response policy zones (RPZ) to protect clients from malicious data, response rate limiting (RRL) and recursive query limits to reduce distributed denial of service attacks, and many other advanced DNS features. BIND also includes a suite of administrative tools, including the dig and delv DNS lookup tools, nsupdate for dynamic DNS zone updates, rndc for remote name server administration, and more.

BIND 9 began as a complete rewrite of the BIND architecture that was used in versions 4 and 8. Internet Systems Consortium (https://www.isc.org), a 501(c)(3) US public benefit corporation dedicated to providing software and services in support of the Internet infrastructure, developed BIND 9 and is responsible for its ongoing maintenance and improvement. BIND is open source software licensed under the terms of the Mozilla Public License, version 2.0.

For a detailed list of changes made throughout the history of BIND 9, see the changelog.

For up-to-date versions and release notes, see https://www.isc.org/download/.

For information about supported platforms, see the "Supported Platforms" section in the BIND 9 Administrator Reference Manual.

Reporting bugs and getting help

To report non-security-sensitive bugs or request new features, you may open an issue in the BIND 9 project on the ISC GitLab server at https://gitlab.isc.org/isc-projects/bind9.

Please note that, unless you explicitly mark the newly created issue as "confidential," it will be publicly readable. Please do not include any information in bug reports that you consider to be confidential unless the issue has been marked as such. In particular, if submitting the contents of your configuration file in a non-confidential issue, it is advisable to obscure key secrets; this can be done automatically by using named-checkconf -px.

For information about ISC's Security Vulnerability Disclosure Policy and information about reporting potential security issues, please see SECURITY.md.

Professional support and training for BIND are available from ISC. Contact us at https://www.isc.org/contact for more information.

To join the BIND Users mailing list, or view the archives, visit https://lists.isc.org/mailman/listinfo/bind-users.

Contributing to BIND

ISC maintains a public git repository for BIND; details can be found at https://www.isc.org/sourceaccess/.

Information for BIND contributors can be found in the following files:

Patches for BIND may be submitted as merge requests on the ISC GitLab server.

By default, external contributors do not have the ability to fork BIND on the GitLab server; if you wish to contribute code to BIND, you may request permission to do so. Thereafter, you can create git branches and directly submit requests that they be reviewed and merged.

If you prefer, you may also submit code by opening a GitLab issue and including your patch as an attachment, preferably generated by git format-patch.

Building BIND 9

For information about building BIND 9, see the "Building BIND 9" section in the BIND 9 Administrator Reference Manual.

Automated testing

A system test suite can be run with pytest bin/tests/system. The system tests require you to configure a set of virtual IP addresses on your system (this allows multiple servers to run locally and communicate with each other). These IP addresses can be configured by running the command bin/tests/system/ifconfig.sh up as root.

Some tests require Perl and the Net::DNS and/or IO::Socket::IP modules, and are skipped if these are not available. Some tests require Python and the dnspython module and are skipped if these are not available. See bin/tests/system/README for further details.

Unit tests are implemented using the CMocka unit testing framework. To build them, use the option -Dcmocka=enabled. Execution of unit tests is done by the meson's test functionality; run by meson test.

Documentation

The BIND 9 Administrator Reference Manual (ARM) is included with the source distribution, and in .rst format, in the doc/arm directory. The HTML version is automatically generated and can be viewed at https://bind9.readthedocs.io/en/latest/index.html.

The PDF version can be built by running:

meson setup build
ninja -C build arm-pdf

The above requires TeX Live in order to work. The PDF will be written to build/arm-pdf/latex/Bv9ARM.pdf.

Man pages for some of the programs in the BIND 9 distribution are also included in the BIND ARM.

Frequently (and not-so-frequently) asked questions and their answers can be found in the ISC Knowledgebase at https://kb.isc.org.

Additional information on various subjects can be found in other README files throughout the source tree.

Bug report identifiers

Most notes in the ARM Changelog appendix include a reference to a bug report or issue number. Prior to 2018, these were usually of the form [RT #NNN] and referred to entries in the "bind9-bugs" RT database, which was not open to the public. More recent entries use the form [GL #NNN] or, less often, [GL !NNN], which, respectively, refer to issues or merge requests in the GitLab database. Most of these are publicly readable, unless they include information which is confidential or security-sensitive.

To look up a GitLab issue by its number, use the URL https://gitlab.isc.org/isc-projects/bind9/issues/NNN. To look up a merge request, use https://gitlab.isc.org/isc-projects/bind9/merge_requests/NNN.

In rare cases, an issue or merge request number may be followed with the letter "P". This indicates that the information is in the private ISC GitLab instance, which is not visible to the public.

Acknowledgments

Frequently asked questions

Is bind9 free to use?

bind9 is open source under the MPL-2.0 licence. There is no licence fee and no seat count — you can self-host it or, where the project offers one, pay a vendor for a managed version instead.

What does bind9 do?

Archived mirror of https://gitlab.isc.org/isc-projects/bind9, please submit issues and PR/MRs in the GitLab.

What is bind9 written in?

bind9 is primarily written in C. Its source is publicly available at https://github.com/isc-projects/bind9, and it has 779 GitHub stars.