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Author SHA1 Message Date
Jeremy Grosser bf369bd1b8 Debianize 2013-03-13 00:40:21 +00:00
1087 changed files with 6507 additions and 186431 deletions
+2 -24
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# Docker project generated files to ignore
# if you want to ignore files created by your editor/tools,
# please consider a global .gitignore https://help.github.com/articles/ignoring-files
.vagrant*
bin
.vagrant
docker/docker
dockerd/dockerd
.*.swp
a.out
*.orig
build_src
.flymake*
.idea
.DS_Store
docs/_build
docs/_static
docs/_templates
.gopath/
.dotcloud
*.test
bundles/
.hg/
.git/
vendor/pkg/
pyenv
Vagrantfile
docs/AWS_S3_BUCKET
docs/GIT_BRANCH
docs/VERSION
-60
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# Generate AUTHORS: git log --format='%aN <%aE>' | sort -uf
<charles.hooper@dotcloud.com> <chooper@plumata.com>
<daniel.mizyrycki@dotcloud.com> <daniel@dotcloud.com>
<daniel.mizyrycki@dotcloud.com> <mzdaniel@glidelink.net>
Guillaume J. Charmes <guillaume.charmes@docker.com> <charmes.guillaume@gmail.com>
<guillaume.charmes@docker.com> <guillaume@dotcloud.com>
<guillaume.charmes@docker.com> <guillaume@docker.com>
<guillaume.charmes@docker.com> <guillaume.charmes@dotcloud.com>
<kencochrane@gmail.com> <KenCochrane@gmail.com>
<sridharr@activestate.com> <github@srid.name>
Thatcher Peskens <thatcher@dotcloud.com> dhrp <thatcher@dotcloud.com>
Thatcher Peskens <thatcher@dotcloud.com> dhrp <thatcher@gmx.net>
Jérôme Petazzoni <jerome.petazzoni@dotcloud.com> jpetazzo <jerome.petazzoni@dotcloud.com>
Jérôme Petazzoni <jerome.petazzoni@dotcloud.com> <jp@enix.org>
Joffrey F <joffrey@dotcloud.com>
<joffrey@dotcloud.com> <f.joffrey@gmail.com>
Tim Terhorst <mynamewastaken+git@gmail.com>
Andy Smith <github@anarkystic.com>
<kalessin@kalessin.fr> <louis@dotcloud.com>
<victor.vieux@docker.com> <victor.vieux@dotcloud.com>
<victor.vieux@docker.com> <victor@dotcloud.com>
<victor.vieux@docker.com> <dev@vvieux.com>
<victor.vieux@docker.com> <victor@docker.com>
<victor.vieux@docker.com> <vieux@docker.com>
<dominik@honnef.co> <dominikh@fork-bomb.org>
Thatcher Peskens <thatcher@dotcloud.com>
<ehanchrow@ine.com> <eric.hanchrow@gmail.com>
Walter Stanish <walter@pratyeka.org>
<daniel@gasienica.ch> <dgasienica@zynga.com>
Roberto Hashioka <roberto_hashioka@hotmail.com>
Konstantin Pelykh <kpelykh@zettaset.com>
David Sissitka <me@dsissitka.com>
Nolan Darilek <nolan@thewordnerd.info>
<mastahyeti@gmail.com> <mastahyeti@users.noreply.github.com>
Benoit Chesneau <bchesneau@gmail.com>
Jordan Arentsen <blissdev@gmail.com>
Daniel Garcia <daniel@danielgarcia.info>
Miguel Angel Fernández <elmendalerenda@gmail.com>
Bhiraj Butala <abhiraj.butala@gmail.com>
Faiz Khan <faizkhan00@gmail.com>
Victor Lyuboslavsky <victor@victoreda.com>
Jean-Baptiste Barth <jeanbaptiste.barth@gmail.com>
Matthew Mueller <mattmuelle@gmail.com>
<mosoni@ebay.com> <mohitsoni1989@gmail.com>
Shih-Yuan Lee <fourdollars@gmail.com>
Daniel Mizyrycki <daniel.mizyrycki@dotcloud.com> root <root@vagrant-ubuntu-12.10.vagrantup.com>
Jean-Baptiste Dalido <jeanbaptiste@appgratis.com>
<proppy@google.com> <proppy@aminche.com>
<michael@crosbymichael.com> <crosby.michael@gmail.com>
<github@metaliveblog.com> <github@developersupport.net>
<brandon@ifup.org> <brandon@ifup.co>
<dano@spotify.com> <daniel.norberg@gmail.com>
<danny@codeaholics.org> <Danny.Yates@mailonline.co.uk>
<gurjeet@singh.im> <singh.gurjeet@gmail.com>
<shawn@churchofgit.com> <shawnlandden@gmail.com>
<sjoerd-github@linuxonly.nl> <sjoerd@byte.nl>
<solomon@dotcloud.com> <solomon.hykes@dotcloud.com>
<SvenDowideit@home.org.au> <SvenDowideit@fosiki.com>
Sven Dowideit <SvenDowideit@home.org.au> ¨Sven <¨SvenDowideit@home.org.au¨>
unclejack <unclejacksons@gmail.com> <unclejack@users.noreply.github.com>
-18
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# Note: right now we don't use go-specific features of travis.
# Later we might automate "go test" etc. (or do it inside a docker container...?)
language: go
go: 1.2
# Disable the normal go build.
install: true
before_script:
- env | sort
script:
- hack/make.sh validate-dco
- hack/make.sh validate-gofmt
# vim:set sw=2 ts=2:
-347
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@@ -1,347 +0,0 @@
# This file lists all individuals having contributed content to the repository.
# If you're submitting a patch, please add your name here in alphabetical order as part of the patch.
#
# For a list of active project maintainers, see the MAINTAINERS file.
#
Aanand Prasad <aanand.prasad@gmail.com>
Aaron Feng <aaron.feng@gmail.com>
Abel Muiño <amuino@gmail.com>
Alexander Larsson <alexl@redhat.com>
Alexey Shamrin <shamrin@gmail.com>
Alex Gaynor <alex.gaynor@gmail.com>
Alexis THOMAS <fr.alexisthomas@gmail.com>
Al Tobey <al@ooyala.com>
Andrea Luzzardi <aluzzardi@gmail.com>
Andreas Savvides <andreas@editd.com>
Andreas Tiefenthaler <at@an-ti.eu>
Andrew Duckworth <grillopress@gmail.com>
Andrew Macgregor <andrew.macgregor@agworld.com.au>
Andrew Munsell <andrew@wizardapps.net>
Andrews Medina <andrewsmedina@gmail.com>
Andy Chambers <anchambers@paypal.com>
andy diller <dillera@gmail.com>
Andy Goldstein <agoldste@redhat.com>
Andy Rothfusz <github@metaliveblog.com>
Andy Smith <github@anarkystic.com>
Anthony Bishopric <git@anthonybishopric.com>
Anton Nikitin <anton.k.nikitin@gmail.com>
Antony Messerli <amesserl@rackspace.com>
apocas <petermdias@gmail.com>
Asbjørn Enge <asbjorn@hanafjedle.net>
Barry Allard <barry.allard@gmail.com>
Bartłomiej Piotrowski <b@bpiotrowski.pl>
Benoit Chesneau <bchesneau@gmail.com>
Ben Sargent <ben@brokendigits.com>
Ben Toews <mastahyeti@gmail.com>
Ben Wiklund <ben@daisyowl.com>
Bhiraj Butala <abhiraj.butala@gmail.com>
Bouke Haarsma <bouke@webatoom.nl>
Brandon Liu <bdon@bdon.org>
Brandon Philips <brandon@ifup.org>
Brian Dorsey <brian@dorseys.org>
Brian Goff <cpuguy83@gmail.com>
Brian McCallister <brianm@skife.org>
Brian Olsen <brian@maven-group.org>
Brian Shumate <brian@couchbase.com>
Briehan Lombaard <briehan.lombaard@gmail.com>
Bruno Bigras <bigras.bruno@gmail.com>
Bryan Matsuo <bryan.matsuo@gmail.com>
Caleb Spare <cespare@gmail.com>
Calen Pennington <cale@edx.org>
Carl X. Su <bcbcarl@gmail.com>
Charles Hooper <charles.hooper@dotcloud.com>
Charles Lindsay <chaz@chazomatic.us>
Chia-liang Kao <clkao@clkao.org>
Chris St. Pierre <chris.a.st.pierre@gmail.com>
Christopher Currie <codemonkey+github@gmail.com>
Christopher Rigor <crigor@gmail.com>
Christophe Troestler <christophe.Troestler@umons.ac.be>
Clayton Coleman <ccoleman@redhat.com>
Colin Dunklau <colin.dunklau@gmail.com>
Colin Rice <colin@daedrum.net>
Cory Forsyth <cory.forsyth@gmail.com>
cressie176 <github@stephen-cresswell.net>
Dan Buch <d.buch@modcloth.com>
Dan Hirsch <thequux@upstandinghackers.com>
Daniel Exner <dex@dragonslave.de>
Daniel Garcia <daniel@danielgarcia.info>
Daniel Gasienica <daniel@gasienica.ch>
Daniel Mizyrycki <daniel.mizyrycki@dotcloud.com>
Daniel Norberg <dano@spotify.com>
Daniel Nordberg <dnordberg@gmail.com>
Daniel Robinson <gottagetmac@gmail.com>
Daniel Von Fange <daniel@leancoder.com>
Daniel YC Lin <dlin.tw@gmail.com>
Danny Yates <danny@codeaholics.org>
Darren Coxall <darren@darrencoxall.com>
David Anderson <dave@natulte.net>
David Calavera <david.calavera@gmail.com>
David Mcanulty <github@hellspark.com>
David Sissitka <me@dsissitka.com>
Deni Bertovic <deni@kset.org>
Dinesh Subhraveti <dineshs@altiscale.com>
dkumor <daniel@dkumor.com>
Dmitry Demeshchuk <demeshchuk@gmail.com>
Dominik Honnef <dominik@honnef.co>
Don Spaulding <donspauldingii@gmail.com>
Dražen Lučanin <kermit666@gmail.com>
Dr Nic Williams <drnicwilliams@gmail.com>
Dustin Sallings <dustin@spy.net>
Edmund Wagner <edmund-wagner@web.de>
Elias Probst <mail@eliasprobst.eu>
Emil Hernvall <emil@quench.at>
Emily Rose <emily@contactvibe.com>
Eric Hanchrow <ehanchrow@ine.com>
Eric Lee <thenorthsecedes@gmail.com>
Eric Myhre <hash@exultant.us>
Erno Hopearuoho <erno.hopearuoho@gmail.com>
eugenkrizo <eugen.krizo@gmail.com>
Evan Krall <krall@yelp.com>
Evan Phoenix <evan@fallingsnow.net>
Evan Wies <evan@neomantra.net>
Eystein Måløy Stenberg <eystein.maloy.stenberg@cfengine.com>
ezbercih <cem.ezberci@gmail.com>
Fabio Falci <fabiofalci@gmail.com>
Fabio Rehm <fgrehm@gmail.com>
Fabrizio Regini <freegenie@gmail.com>
Faiz Khan <faizkhan00@gmail.com>
Fareed Dudhia <fareeddudhia@googlemail.com>
Fernando <fermayo@gmail.com>
Flavio Castelli <fcastelli@suse.com>
Francisco Souza <f@souza.cc>
Frank Macreery <frank@macreery.com>
Frederick F. Kautz IV <fkautz@alumni.cmu.edu>
Frederik Loeffert <frederik@zitrusmedia.de>
Freek Kalter <freek@kalteronline.org>
Gabe Rosenhouse <gabe@missionst.com>
Gabriel Monroy <gabriel@opdemand.com>
Galen Sampson <galen.sampson@gmail.com>
Gareth Rushgrove <gareth@morethanseven.net>
Gereon Frey <gereon.frey@dynport.de>
Gert van Valkenhoef <g.h.m.van.valkenhoef@rug.nl>
Graydon Hoare <graydon@pobox.com>
Greg Thornton <xdissent@me.com>
grunny <mwgrunny@gmail.com>
Guillaume J. Charmes <guillaume.charmes@docker.com>
Gurjeet Singh <gurjeet@singh.im>
Guruprasad <lgp171188@gmail.com>
Harley Laue <losinggeneration@gmail.com>
Hector Castro <hectcastro@gmail.com>
Hunter Blanks <hunter@twilio.com>
inglesp <peter.inglesby@gmail.com>
Isaac Dupree <antispam@idupree.com>
Isao Jonas <isao.jonas@gmail.com>
Jake Moshenko <jake@devtable.com>
James Allen <jamesallen0108@gmail.com>
James Carr <james.r.carr@gmail.com>
James Mills <prologic@shortcircuit.net.au>
James Turnbull <james@lovedthanlost.net>
jaseg <jaseg@jaseg.net>
Jason McVetta <jason.mcvetta@gmail.com>
Jean-Baptiste Barth <jeanbaptiste.barth@gmail.com>
Jean-Baptiste Dalido <jeanbaptiste@appgratis.com>
Jeff Lindsay <progrium@gmail.com>
Jeremy Grosser <jeremy@synack.me>
Jérôme Petazzoni <jerome.petazzoni@dotcloud.com>
Jesse Dubay <jesse@thefortytwo.net>
Jim Alateras <jima@comware.com.au>
Jimmy Cuadra <jimmy@jimmycuadra.com>
Joe Beda <joe.github@bedafamily.com>
Joe Van Dyk <joe@tanga.com>
Joffrey F <joffrey@dotcloud.com>
Johan Euphrosine <proppy@google.com>
Johannes 'fish' Ziemke <github@freigeist.org>
Johan Rydberg <johan.rydberg@gmail.com>
John Costa <john.costa@gmail.com>
John Feminella <jxf@jxf.me>
John Gardiner Myers <jgmyers@proofpoint.com>
John Warwick <jwarwick@gmail.com>
Jonas Pfenniger <jonas@pfenniger.name>
Jonathan Mueller <j.mueller@apoveda.ch>
Jonathan Rudenberg <jonathan@titanous.com>
Jon Wedaman <jweede@gmail.com>
Joost Cassee <joost@cassee.net>
Jordan Arentsen <blissdev@gmail.com>
Jordan Sissel <jls@semicomplete.com>
Joseph Anthony Pasquale Holsten <joseph@josephholsten.com>
Joseph Hager <ajhager@gmail.com>
Josh Hawn <josh.hawn@docker.com>
Josh Poimboeuf <jpoimboe@redhat.com>
JP <jpellerin@leapfrogonline.com>
Julien Barbier <write0@gmail.com>
Julien Dubois <julien.dubois@gmail.com>
Justin Force <justin.force@gmail.com>
Justin Plock <jplock@users.noreply.github.com>
Karan Lyons <karan@karanlyons.com>
Karl Grzeszczak <karlgrz@gmail.com>
Kawsar Saiyeed <kawsar.saiyeed@projiris.com>
Keli Hu <dev@keli.hu>
Ken Cochrane <kencochrane@gmail.com>
Kevin Clark <kevin.clark@gmail.com>
Kevin J. Lynagh <kevin@keminglabs.com>
Kevin Wallace <kevin@pentabarf.net>
Keyvan Fatehi <keyvanfatehi@gmail.com>
kim0 <email.ahmedkamal@googlemail.com>
Kim BKC Carlbacker <kim.carlbacker@gmail.com>
Kimbro Staken <kstaken@kstaken.com>
Kiran Gangadharan <kiran.daredevil@gmail.com>
Konstantin Pelykh <kpelykh@zettaset.com>
Kyle Conroy <kyle.j.conroy@gmail.com>
Laurie Voss <github@seldo.com>
Liang-Chi Hsieh <viirya@gmail.com>
Lokesh Mandvekar <lsm5@redhat.com>
Louis Opter <kalessin@kalessin.fr>
lukaspustina <lukas.pustina@centerdevice.com>
Mahesh Tiyyagura <tmahesh@gmail.com>
Manuel Meurer <manuel@krautcomputing.com>
Manuel Woelker <github@manuel.woelker.org>
Marc Kuo <kuomarc2@gmail.com>
Marco Hennings <marco.hennings@freiheit.com>
Marcus Farkas <toothlessgear@finitebox.com>
Marcus Ramberg <marcus@nordaaker.com>
Marek Goldmann <marek.goldmann@gmail.com>
Mark Allen <mrallen1@yahoo.com>
Mark McGranaghan <mmcgrana@gmail.com>
Marko Mikulicic <mmikulicic@gmail.com>
Markus Fix <lispmeister@gmail.com>
Martijn van Oosterhout <kleptog@svana.org>
Martin Redmond <martin@tinychat.com>
Mathieu Le Marec - Pasquet <kiorky@cryptelium.net>
Matt Apperson <me@mattapperson.com>
Matt Bachmann <bachmann.matt@gmail.com>
Matt Haggard <haggardii@gmail.com>
Matthew Mueller <mattmuelle@gmail.com>
mattymo <raytrac3r@gmail.com>
Maxime Petazzoni <max@signalfuse.com>
Maxim Treskin <zerthurd@gmail.com>
meejah <meejah@meejah.ca>
Michael Crosby <michael@crosbymichael.com>
Michael Gorsuch <gorsuch@github.com>
Michael Stapelberg <michael+gh@stapelberg.de>
Miguel Angel Fernández <elmendalerenda@gmail.com>
Mike Gaffney <mike@uberu.com>
Mike Naberezny <mike@naberezny.com>
Mikhail Sobolev <mss@mawhrin.net>
Mohit Soni <mosoni@ebay.com>
Morten Siebuhr <sbhr@sbhr.dk>
Nan Monnand Deng <monnand@gmail.com>
Nate Jones <nate@endot.org>
Nathan Kleyn <nathan@nathankleyn.com>
Nelson Chen <crazysim@gmail.com>
Niall O'Higgins <niallo@unworkable.org>
Nick Payne <nick@kurai.co.uk>
Nick Stenning <nick.stenning@digital.cabinet-office.gov.uk>
Nick Stinemates <nick@stinemates.org>
Nicolas Dudebout <nicolas.dudebout@gatech.edu>
Nicolas Kaiser <nikai@nikai.net>
Nolan Darilek <nolan@thewordnerd.info>
odk- <github@odkurzacz.org>
Oguz Bilgic <fisyonet@gmail.com>
Ole Reifschneider <mail@ole-reifschneider.de>
O.S.Tezer <ostezer@gmail.com>
pandrew <letters@paulnotcom.se>
Pascal Borreli <pascal@borreli.com>
pattichen <craftsbear@gmail.com>
Paul Bowsher <pbowsher@globalpersonals.co.uk>
Paul Hammond <paul@paulhammond.org>
Paul Lietar <paul@lietar.net>
Paul Morie <pmorie@gmail.com>
Paul Nasrat <pnasrat@gmail.com>
Paul <paul9869@gmail.com>
Peter Braden <peterbraden@peterbraden.co.uk>
Peter Waller <peter@scraperwiki.com>
Phil Spitler <pspitler@gmail.com>
Piergiuliano Bossi <pgbossi@gmail.com>
Pierre-Alain RIVIERE <pariviere@ippon.fr>
Piotr Bogdan <ppbogdan@gmail.com>
pysqz <randomq@126.com>
Quentin Brossard <qbrossard@gmail.com>
Rafal Jeczalik <rjeczalik@gmail.com>
Ramkumar Ramachandra <artagnon@gmail.com>
Ramon van Alteren <ramon@vanalteren.nl>
Renato Riccieri Santos Zannon <renato.riccieri@gmail.com>
rgstephens <greg@udon.org>
Rhys Hiltner <rhys@twitch.tv>
Richo Healey <richo@psych0tik.net>
Rick Bradley <rick@users.noreply.github.com>
Robert Obryk <robryk@gmail.com>
Roberto G. Hashioka <roberto.hashioka@docker.com>
Roberto Hashioka <roberto_hashioka@hotmail.com>
Rodrigo Vaz <rodrigo.vaz@gmail.com>
Roel Van Nyen <roel.vannyen@gmail.com>
Roger Peppe <rogpeppe@gmail.com>
Ryan Fowler <rwfowler@gmail.com>
Ryan O'Donnell <odonnellryanc@gmail.com>
Ryan Seto <ryanseto@yak.net>
Sam Alba <sam.alba@gmail.com>
Sam J Sharpe <sam.sharpe@digital.cabinet-office.gov.uk>
Samuel Andaya <samuel@andaya.net>
Scott Bessler <scottbessler@gmail.com>
Sean Cronin <seancron@gmail.com>
Sean P. Kane <skane@newrelic.com>
Shawn Landden <shawn@churchofgit.com>
Shawn Siefkas <shawn.siefkas@meredith.com>
Shih-Yuan Lee <fourdollars@gmail.com>
shin- <joffrey@docker.com>
Silas Sewell <silas@sewell.org>
Simon Taranto <simon.taranto@gmail.com>
Sjoerd Langkemper <sjoerd-github@linuxonly.nl>
Solomon Hykes <solomon@dotcloud.com>
Song Gao <song@gao.io>
Sridatta Thatipamala <sthatipamala@gmail.com>
Sridhar Ratnakumar <sridharr@activestate.com>
Steeve Morin <steeve.morin@gmail.com>
Stefan Praszalowicz <stefan@greplin.com>
sudosurootdev <sudosurootdev@gmail.com>
Sven Dowideit <svendowideit@home.org.au>
Sylvain Bellemare <sylvain.bellemare@ezeep.com>
tang0th <tang0th@gmx.com>
Tatsuki Sugiura <sugi@nemui.org>
Tehmasp Chaudhri <tehmasp@gmail.com>
Thatcher Peskens <thatcher@dotcloud.com>
Thermionix <bond711@gmail.com>
Thijs Terlouw <thijsterlouw@gmail.com>
Thomas Bikeev <thomas.bikeev@mac.com>
Thomas Frössman <thomasf@jossystem.se>
Thomas Hansen <thomas.hansen@gmail.com>
Thomas LEVEIL <thomasleveil@gmail.com>
Tianon Gravi <admwiggin@gmail.com>
Tim Bosse <maztaim@users.noreply.github.com>
Tim Terhorst <mynamewastaken+git@gmail.com>
Tobias Bieniek <Tobias.Bieniek@gmx.de>
Tobias Schmidt <ts@soundcloud.com>
Tobias Schwab <tobias.schwab@dynport.de>
Todd Lunter <tlunter@gmail.com>
Tom Hulihan <hulihan.tom159@gmail.com>
Tommaso Visconti <tommaso.visconti@gmail.com>
Travis Cline <travis.cline@gmail.com>
Tyler Brock <tyler.brock@gmail.com>
Tzu-Jung Lee <roylee17@gmail.com>
Ulysse Carion <ulyssecarion@gmail.com>
unclejack <unclejacksons@gmail.com>
vgeta <gopikannan.venugopalsamy@gmail.com>
Victor Coisne <victor.coisne@dotcloud.com>
Victor Lyuboslavsky <victor@victoreda.com>
Victor Vieux <victor.vieux@docker.com>
Vincent Batts <vbatts@redhat.com>
Vincent Bernat <bernat@luffy.cx>
Vincent Woo <me@vincentwoo.com>
Vinod Kulkarni <vinod.kulkarni@gmail.com>
Vitor Monteiro <vmrmonteiro@gmail.com>
Vivek Agarwal <me@vivek.im>
Vladimir Kirillov <proger@wilab.org.ua>
Vladimir Rutsky <iamironbob@gmail.com>
Walter Stanish <walter@pratyeka.org>
WarheadsSE <max@warheads.net>
Wes Morgan <cap10morgan@gmail.com>
Will Dietz <w@wdtz.org>
William Delanoue <william.delanoue@gmail.com>
Will Rouesnel <w.rouesnel@gmail.com>
Will Weaver <monkey@buildingbananas.com>
Xiuming Chen <cc@cxm.cc>
Yang Bai <hamo.by@gmail.com>
Yurii Rashkovskii <yrashk@gmail.com>
Zain Memon <zain@inzain.net>
Zaiste! <oh@zaiste.net>
Zilin Du <zilin.du@gmail.com>
zimbatm <zimbatm@zimbatm.com>
-1403
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@@ -1,208 +0,0 @@
# Contributing to Docker
Want to hack on Docker? Awesome! Here are instructions to get you
started. They are probably not perfect, please let us know if anything
feels wrong or incomplete.
## Reporting Issues
When reporting [issues](https://github.com/dotcloud/docker/issues)
on GitHub please include your host OS (Ubuntu 12.04, Fedora 19, etc),
the output of `uname -a` and the output of `docker version` along with
the output of `docker info`. Please include the steps required to reproduce
the problem if possible and applicable.
This information will help us review and fix your issue faster.
## Build Environment
For instructions on setting up your development environment, please
see our dedicated [dev environment setup
docs](http://docs.docker.io/en/latest/contributing/devenvironment/).
## Contribution guidelines
### Pull requests are always welcome
We are always thrilled to receive pull requests, and do our best to
process them as fast as possible. Not sure if that typo is worth a pull
request? Do it! We will appreciate it.
If your pull request is not accepted on the first try, don't be
discouraged! If there's a problem with the implementation, hopefully you
received feedback on what to improve.
We're trying very hard to keep Docker lean and focused. We don't want it
to do everything for everybody. This means that we might decide against
incorporating a new feature. However, there might be a way to implement
that feature *on top of* docker.
### Discuss your design on the mailing list
We recommend discussing your plans [on the mailing
list](https://groups.google.com/forum/?fromgroups#!forum/docker-dev)
before starting to code - especially for more ambitious contributions.
This gives other contributors a chance to point you in the right
direction, give feedback on your design, and maybe point out if someone
else is working on the same thing.
### Create issues...
Any significant improvement should be documented as [a GitHub
issue](https://github.com/dotcloud/docker/issues) before anybody
starts working on it.
### ...but check for existing issues first!
Please take a moment to check that an issue doesn't already exist
documenting your bug report or improvement proposal. If it does, it
never hurts to add a quick "+1" or "I have this problem too". This will
help prioritize the most common problems and requests.
### Conventions
Fork the repo and make changes on your fork in a feature branch:
- If it's a bugfix branch, name it XXX-something where XXX is the number of the
issue
- If it's a feature branch, create an enhancement issue to announce your
intentions, and name it XXX-something where XXX is the number of the issue.
Submit unit tests for your changes. Go has a great test framework built in; use
it! Take a look at existing tests for inspiration. Run the full test suite on
your branch before submitting a pull request.
Update the documentation when creating or modifying features. Test
your documentation changes for clarity, concision, and correctness, as
well as a clean documentation build. See ``docs/README.md`` for more
information on building the docs and how docs get released.
Write clean code. Universally formatted code promotes ease of writing, reading,
and maintenance. Always run `go fmt` before committing your changes. Most
editors have plugins that do this automatically, and there's also a git
pre-commit hook:
```
curl -o .git/hooks/pre-commit https://raw.githubusercontent.com/edsrzf/gofmt-git-hook/master/fmt-check && chmod +x .git/hooks/pre-commit
```
Pull requests descriptions should be as clear as possible and include a
reference to all the issues that they address.
Pull requests must not contain commits from other users or branches.
Commit messages must start with a capitalized and short summary (max. 50
chars) written in the imperative, followed by an optional, more detailed
explanatory text which is separated from the summary by an empty line.
Code review comments may be added to your pull request. Discuss, then make the
suggested modifications and push additional commits to your feature branch. Be
sure to post a comment after pushing. The new commits will show up in the pull
request automatically, but the reviewers will not be notified unless you
comment.
Before the pull request is merged, make sure that you squash your commits into
logical units of work using `git rebase -i` and `git push -f`. After every
commit the test suite should be passing. Include documentation changes in the
same commit so that a revert would remove all traces of the feature or fix.
Commits that fix or close an issue should include a reference like `Closes #XXX`
or `Fixes #XXX`, which will automatically close the issue when merged.
Add your name to the AUTHORS file, but make sure the list is sorted and your
name and email address match your git configuration. The AUTHORS file is
regenerated occasionally from the git commit history, so a mismatch may result
in your changes being overwritten.
### Merge approval
Docker maintainers use LGTM (looks good to me) in comments on the code review
to indicate acceptance.
A change requires LGTMs from an absolute majority of the maintainers of each
component affected. For example, if a change affects docs/ and registry/, it
needs an absolute majority from the maintainers of docs/ AND, separately, an
absolute majority of the maintainers of registry.
For more details see [MAINTAINERS.md](hack/MAINTAINERS.md)
### Sign your work
The sign-off is a simple line at the end of the explanation for the
patch, which certifies that you wrote it or otherwise have the right to
pass it on as an open-source patch. The rules are pretty simple: if you
can certify the below (from
[developercertificate.org](http://developercertificate.org/)):
```
Developer Certificate of Origin
Version 1.1
Copyright (C) 2004, 2006 The Linux Foundation and its contributors.
660 York Street, Suite 102,
San Francisco, CA 94110 USA
Everyone is permitted to copy and distribute verbatim copies of this
license document, but changing it is not allowed.
Developer's Certificate of Origin 1.1
By making a contribution to this project, I certify that:
(a) The contribution was created in whole or in part by me and I
have the right to submit it under the open source license
indicated in the file; or
(b) The contribution is based upon previous work that, to the best
of my knowledge, is covered under an appropriate open source
license and I have the right under that license to submit that
work with modifications, whether created in whole or in part
by me, under the same open source license (unless I am
permitted to submit under a different license), as indicated
in the file; or
(c) The contribution was provided directly to me by some other
person who certified (a), (b) or (c) and I have not modified
it.
(d) I understand and agree that this project and the contribution
are public and that a record of the contribution (including all
personal information I submit with it, including my sign-off) is
maintained indefinitely and may be redistributed consistent with
this project or the open source license(s) involved.
```
then you just add a line to every git commit message:
Docker-DCO-1.1-Signed-off-by: Joe Smith <joe.smith@email.com> (github: github_handle)
using your real name (sorry, no pseudonyms or anonymous contributions.)
One way to automate this, is customise your get ``commit.template`` by adding
a ``prepare-commit-msg`` hook to your docker checkout:
```
curl -o .git/hooks/prepare-commit-msg https://raw.github.com/dotcloud/docker/master/contrib/prepare-commit-msg.hook && chmod +x .git/hooks/prepare-commit-msg
```
* Note: the above script expects to find your GitHub user name in ``git config --get github.user``
#### Small patch exception
There are several exceptions to the signing requirement. Currently these are:
* Your patch fixes spelling or grammar errors.
* Your patch is a single line change to documentation.
If you have any questions, please refer to the FAQ in the [docs](http://docs.docker.io)
### How can I become a maintainer?
* Step 1: learn the component inside out
* Step 2: make yourself useful by contributing code, bugfixes, support etc.
* Step 3: volunteer on the irc channel (#docker@freenode)
* Step 4: propose yourself at a scheduled docker meeting in #docker-dev
Don't forget: being a maintainer is a time investment. Make sure you will have time to make yourself available.
You don't have to be a maintainer to make a difference on the project!
-103
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@@ -1,103 +0,0 @@
# This file describes the standard way to build Docker, using docker
#
# Usage:
#
# # Assemble the full dev environment. This is slow the first time.
# docker build -t docker .
#
# # Mount your source in an interactive container for quick testing:
# docker run -v `pwd`:/go/src/github.com/dotcloud/docker --privileged -i -t docker bash
#
# # Run the test suite:
# docker run --privileged docker hack/make.sh test
#
# # Publish a release:
# docker run --privileged \
# -e AWS_S3_BUCKET=baz \
# -e AWS_ACCESS_KEY=foo \
# -e AWS_SECRET_KEY=bar \
# -e GPG_PASSPHRASE=gloubiboulga \
# docker hack/release.sh
#
# Note: Apparmor used to mess with privileged mode, but this is no longer
# the case. Therefore, you don't have to disable it anymore.
#
docker-version 0.6.1
FROM ubuntu:13.10
MAINTAINER Tianon Gravi <admwiggin@gmail.com> (@tianon)
# Packaged dependencies
RUN apt-get update && DEBIAN_FRONTEND=noninteractive apt-get install -yq \
apt-utils \
aufs-tools \
automake \
btrfs-tools \
build-essential \
curl \
dpkg-sig \
git \
iptables \
libapparmor-dev \
libcap-dev \
libsqlite3-dev \
mercurial \
pandoc \
reprepro \
ruby1.9.1 \
ruby1.9.1-dev \
s3cmd=1.1.0* \
--no-install-recommends
# Get and compile LXC 0.8 (since it is the most stable)
RUN git clone --no-checkout https://github.com/lxc/lxc.git /usr/local/lxc && cd /usr/local/lxc && git checkout -q lxc-0.8.0
RUN cd /usr/local/lxc && ./autogen.sh && ./configure --disable-docs && make && make install
# Get lvm2 source for compiling statically
RUN git clone --no-checkout https://git.fedorahosted.org/git/lvm2.git /usr/local/lvm2 && cd /usr/local/lvm2 && git checkout -q v2_02_103
# see https://git.fedorahosted.org/cgit/lvm2.git/refs/tags for release tags
# note: we don't use "git clone -b" above because it then spews big nasty warnings about 'detached HEAD' state that we can't silence as easily as we can silence them using "git checkout" directly
# Compile and install lvm2
RUN cd /usr/local/lvm2 && ./configure --enable-static_link && make device-mapper && make install_device-mapper
# see https://git.fedorahosted.org/cgit/lvm2.git/tree/INSTALL
# Install Go
RUN curl -s https://go.googlecode.com/files/go1.2.1.src.tar.gz | tar -v -C /usr/local -xz
ENV PATH /usr/local/go/bin:$PATH
ENV GOPATH /go:/go/src/github.com/dotcloud/docker/vendor
RUN cd /usr/local/go/src && ./make.bash --no-clean 2>&1
# Compile Go for cross compilation
ENV DOCKER_CROSSPLATFORMS \
linux/386 linux/arm \
darwin/amd64 darwin/386 \
freebsd/amd64 freebsd/386 freebsd/arm
# (set an explicit GOARM of 5 for maximum compatibility)
ENV GOARM 5
RUN cd /usr/local/go/src && bash -xc 'for platform in $DOCKER_CROSSPLATFORMS; do GOOS=${platform%/*} GOARCH=${platform##*/} ./make.bash --no-clean 2>&1; done'
# Grab Go's cover tool for dead-simple code coverage testing
RUN go get code.google.com/p/go.tools/cmd/cover
# TODO replace FPM with some very minimal debhelper stuff
RUN gem install --no-rdoc --no-ri fpm --version 1.0.2
# Get the "busybox" image source so we can build locally instead of pulling
RUN git clone https://github.com/jpetazzo/docker-busybox.git /docker-busybox
# Setup s3cmd config
RUN /bin/echo -e '[default]\naccess_key=$AWS_ACCESS_KEY\nsecret_key=$AWS_SECRET_KEY' > /.s3cfg
# Set user.email so crosbymichael's in-container merge commits go smoothly
RUN git config --global user.email 'docker-dummy@example.com'
VOLUME /var/lib/docker
WORKDIR /go/src/github.com/dotcloud/docker
ENV DOCKER_BUILDTAGS apparmor selinux
# Wrap all commands in the "docker-in-docker" script to allow nested containers
ENTRYPOINT ["hack/dind"]
# Upload docker source
ADD . /go/src/github.com/dotcloud/docker
-24
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@@ -1,24 +0,0 @@
## FIXME
This file is a loose collection of things to improve in the codebase, for the internal
use of the maintainers.
They are not big enough to be in the roadmap, not user-facing enough to be github issues,
and not important enough to be discussed in the mailing list.
They are just like FIXME comments in the source code, except we're not sure where in the source
to put them - so we put them here :)
* Run linter on codebase
* Unify build commands and regular commands
* Move source code into src/ subdir for clarity
* docker build: on non-existent local path for ADD, don't show full absolute path on the host
* use size header for progress bar in pull
* Clean up context upload in build!!!
* Parallel pull
* Upgrade dockerd without stopping containers
* Simple command to remove all untagged images (`docker rmi $(docker images | awk '/^<none>/ { print $3 }')`)
* Simple command to clean up containers for disk space
* Clean up the ProgressReader api, it's a PITA to use
+12 -1
View File
@@ -176,7 +176,18 @@
END OF TERMS AND CONDITIONS
Copyright 2014 Docker, Inc.
APPENDIX: How to apply the Apache License to your work.
To apply the Apache License to your work, attach the following
boilerplate notice, with the fields enclosed by brackets "[]"
replaced with your own identifying information. (Don't include
the brackets!) The text should be enclosed in the appropriate
comment syntax for the file format. We also recommend that a
file or class name and description of purpose be included on the
same "printed page" as the copyright notice for easier
identification within third-party archives.
Copyright [yyyy] [name of copyright owner]
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
-7
View File
@@ -1,7 +0,0 @@
Solomon Hykes <solomon@docker.com> (@shykes)
Guillaume J. Charmes <guillaume@docker.com> (@creack)
Victor Vieux <vieux@docker.com> (@vieux)
Michael Crosby <michael@crosbymichael.com> (@crosbymichael)
.travis.yml: Tianon Gravi <admwiggin@gmail.com> (@tianon)
Dockerfile: Tianon Gravi <admwiggin@gmail.com> (@tianon)
Makefile: Tianon Gravi <admwiggin@gmail.com> (@tianon)
+17 -59
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@@ -1,65 +1,23 @@
.PHONY: all binary build cross default docs docs-build docs-shell shell test test-unit test-integration test-integration-cli validate
GOPATH := $(PWD)/env
BUILDPATH := $(PWD)/build
# to allow `make BINDDIR=. shell` or `make BINDDIR= test`
BINDDIR := bundles
# to allow `make DOCSPORT=9000 docs`
DOCSPORT := 8000
all: docker.o dockerd.o
GIT_BRANCH := $(shell git rev-parse --abbrev-ref HEAD 2>/dev/null)
DOCKER_IMAGE := docker$(if $(GIT_BRANCH),:$(GIT_BRANCH))
DOCKER_DOCS_IMAGE := docker-docs$(if $(GIT_BRANCH),:$(GIT_BRANCH))
DOCKER_MOUNT := $(if $(BINDDIR),-v "$(CURDIR)/$(BINDDIR):/go/src/github.com/dotcloud/docker/$(BINDDIR)")
env:
mkdir -p ${BUILDPATH} ${GOPATH}/src/github.com/dotcloud/
ln -s $(PWD) ${GOPATH}/src/github.com/dotcloud/docker
DOCKER_RUN_DOCKER := docker run --rm -it --privileged -e TESTFLAGS -e TESTDIRS -e DOCKER_GRAPHDRIVER -e DOCKER_EXECDRIVER $(DOCKER_MOUNT) "$(DOCKER_IMAGE)"
# to allow `make DOCSDIR=docs docs-shell`
DOCKER_RUN_DOCS := docker run --rm -it $(if $(DOCSDIR),-v $(CURDIR)/$(DOCSDIR):/$(DOCSDIR)) -e AWS_S3_BUCKET
deps:
GOPATH=${GOPATH} go get github.com/kr/pty
GOPATH=${GOPATH} go get github.com/mattn/go-sqlite3
GOPATH=${GOPATH} go get github.com/shykes/gorp
default: binary
clean:
go clean
rm -rf env build
all: build
$(DOCKER_RUN_DOCKER) hack/make.sh
docker.o: env deps
GOPATH=${GOPATH} go build -o ${BUILDPATH}/docker docker/docker.go
binary: build
$(DOCKER_RUN_DOCKER) hack/make.sh binary
cross: build
$(DOCKER_RUN_DOCKER) hack/make.sh binary cross
docs: docs-build
$(DOCKER_RUN_DOCS) -p $(if $(DOCSPORT),$(DOCSPORT):)8000 "$(DOCKER_DOCS_IMAGE)" mkdocs serve
docs-shell: docs-build
$(DOCKER_RUN_DOCS) -p $(if $(DOCSPORT),$(DOCSPORT):)8000 "$(DOCKER_DOCS_IMAGE)" bash
docs-release: docs-build
$(DOCKER_RUN_DOCS) "$(DOCKER_DOCS_IMAGE)" ./release.sh
test: build
$(DOCKER_RUN_DOCKER) hack/make.sh binary test-unit test-integration test-integration-cli
test-unit: build
$(DOCKER_RUN_DOCKER) hack/make.sh test-unit
test-integration: build
$(DOCKER_RUN_DOCKER) hack/make.sh test-integration
test-integration-cli: build
$(DOCKER_RUN_DOCKER) hack/make.sh binary test-integration-cli
validate: build
$(DOCKER_RUN_DOCKER) hack/make.sh validate-gofmt validate-dco
shell: build
$(DOCKER_RUN_DOCKER) bash
build: bundles
docker build -t "$(DOCKER_IMAGE)" .
docs-build:
cp ./VERSION docs/VERSION
echo "$(GIT_BRANCH)" > docs/GIT_BRANCH
echo "$(AWS_S3_BUCKET)" > docs/AWS_S3_BUCKET
docker build -t "$(DOCKER_DOCS_IMAGE)" docs
bundles:
mkdir bundles
dockerd.o: env deps
GOPATH=${GOPATH} go build -o ${BUILDPATH}/dockerd dockerd/dockerd.go
+3 -16
View File
@@ -1,19 +1,6 @@
Docker
Copyright 2012-2014 Docker, Inc.
Copyright 2012-2013 dotCloud, inc.
This product includes software developed at Docker, Inc. (http://www.docker.com).
This product includes software developed at dotCloud, inc. (http://www.dotcloud.com).
This product contains software (https://github.com/kr/pty) developed
by Keith Rarick, licensed under the MIT License.
The following is courtesy of our legal counsel:
Use and transfer of Docker may be subject to certain restrictions by the
United States and other governments.
It is your responsibility to ensure that your use and/or transfer does not
violate applicable laws.
For more information, please see http://www.bis.doc.gov
See also http://www.apache.org/dev/crypto.html and/or seek legal counsel.
This product contains software (https://github.com/kr/pty) developed by Keith Rarick, licensed under the MIT License.
+145 -164
View File
@@ -1,192 +1,173 @@
Docker: the Linux container engine
==================================
Docker is a process manager with superpowers
============================================
Docker is an open source project to pack, ship and run any application
as a lightweight container
It encapsulates heterogeneous payloads in Standard Containers, and runs them on any server with strong guarantees of isolation and repeatability.
Docker containers are both *hardware-agnostic* and *platform-agnostic*.
This means that they can run anywhere, from your laptop to the largest
EC2 compute instance and everything in between - and they don't require
that you use a particular language, framework or packaging system. That
makes them great building blocks for deploying and scaling web apps,
databases and backend services without depending on a particular stack
or provider.
Is is a great building block for automating distributed systems: large-scale web deployments, database clusters, continuous deployment systems, private PaaS, service-oriented architectures, etc.
Docker is an open-source implementation of the deployment engine which
powers [dotCloud](http://dotcloud.com), a popular Platform-as-a-Service.
It benefits directly from the experience accumulated over several years
of large-scale operation and support of hundreds of thousands of
applications and databases.
<img src="http://bricks.argz.com/bricksfiles/lego/07000/7823/012.jpg"/>
![Docker L](docs/theme/mkdocs/img/logo_compressed.png "Docker")
* *Heterogeneous payloads*: any combination of binaries, libraries, configuration files, scripts, virtualenvs, jars, gems, tarballs, you name it. No more juggling between domain-specific tools. Docker can deploy and run them all.
## Better than VMs
* *Any server*: docker can run on any x64 machine with a modern linux kernel - whether it's a laptop, a bare metal server or a VM. This makes it perfect for multi-cloud deployments.
A common method for distributing applications and sandboxing their
execution is to use virtual machines, or VMs. Typical VM formats are
VMWare's vmdk, Oracle Virtualbox's vdi, and Amazon EC2's ami. In theory
these formats should allow every developer to automatically package
their application into a "machine" for easy distribution and deployment.
In practice, that almost never happens, for a few reasons:
* *Isolation*: docker isolates processes from each other and from the underlying host, using lightweight containers.
* *Size*: VMs are very large which makes them impractical to store
and transfer.
* *Performance*: running VMs consumes significant CPU and memory,
which makes them impractical in many scenarios, for example local
development of multi-tier applications, and large-scale deployment
of cpu and memory-intensive applications on large numbers of
machines.
* *Portability*: competing VM environments don't play well with each
other. Although conversion tools do exist, they are limited and
add even more overhead.
* *Hardware-centric*: VMs were designed with machine operators in
mind, not software developers. As a result, they offer very
limited tooling for what developers need most: building, testing
and running their software. For example, VMs offer no facilities
for application versioning, monitoring, configuration, logging or
service discovery.
By contrast, Docker relies on a different sandboxing method known as
*containerization*. Unlike traditional virtualization, containerization
takes place at the kernel level. Most modern operating system kernels
now support the primitives necessary for containerization, including
Linux with [openvz](http://openvz.org),
[vserver](http://linux-vserver.org) and more recently
[lxc](http://lxc.sourceforge.net), Solaris with
[zones](http://docs.oracle.com/cd/E26502_01/html/E29024/preface-1.html#scrolltoc)
and FreeBSD with
[Jails](http://www.freebsd.org/doc/handbook/jails.html).
Docker builds on top of these low-level primitives to offer developers a
portable format and runtime environment that solves all 4 problems.
Docker containers are small (and their transfer can be optimized with
layers), they have basically zero memory and cpu overhead, they are
completely portable and are designed from the ground up with an
application-centric design.
The best part: because Docker operates at the OS level, it can still be
run inside a VM!
## Plays well with others
Docker does not require that you buy into a particular programming
language, framework, packaging system or configuration language.
Is your application a Unix process? Does it use files, tcp connections,
environment variables, standard Unix streams and command-line arguments
as inputs and outputs? Then Docker can run it.
Can your application's build be expressed as a sequence of such
commands? Then Docker can build it.
## Escape dependency hell
A common problem for developers is the difficulty of managing all
their application's dependencies in a simple and automated way.
This is usually difficult for several reasons:
* *Cross-platform dependencies*. Modern applications often depend on
a combination of system libraries and binaries, language-specific
packages, framework-specific modules, internal components
developed for another project, etc. These dependencies live in
different "worlds" and require different tools - these tools
typically don't work well with each other, requiring awkward
custom integrations.
* Conflicting dependencies. Different applications may depend on
different versions of the same dependency. Packaging tools handle
these situations with various degrees of ease - but they all
handle them in different and incompatible ways, which again forces
the developer to do extra work.
* Custom dependencies. A developer may need to prepare a custom
version of their application's dependency. Some packaging systems
can handle custom versions of a dependency, others can't - and all
of them handle it differently.
* *Repeatability*: because containers are isolated in their own filesystem, they behave the same regardless of where, when, and alongside what they run.
Docker solves dependency hell by giving the developer a simple way to
express *all* their application's dependencies in one place, and
streamline the process of assembling them. If this makes you think of
[XKCD 927](http://xkcd.com/927/), don't worry. Docker doesn't
*replace* your favorite packaging systems. It simply orchestrates
their use in a simple and repeatable way. How does it do that? With
layers.
Notable features
-----------------
Docker defines a build as running a sequence of Unix commands, one
after the other, in the same container. Build commands modify the
contents of the container (usually by installing new files on the
filesystem), the next command modifies it some more, etc. Since each
build command inherits the result of the previous commands, the
*order* in which the commands are executed expresses *dependencies*.
* Filesystem isolation: each process container runs in a completely separate root filesystem.
Here's a typical Docker build process:
* Resource isolation: system resources like cpu and memory can be allocated differently to each process container, using cgroups.
```bash
FROM ubuntu:12.04
RUN apt-get update
RUN apt-get install -q -y python python-pip curl
RUN curl -L https://github.com/shykes/helloflask/archive/master.tar.gz | tar -xzv
RUN cd helloflask-master && pip install -r requirements.txt
```
* Network isolation: each process container runs in its own network namespace, with a virtual interface and IP address of its own.
Note that Docker doesn't care *how* dependencies are built - as long
as they can be built by running a Unix command in a container.
* Copy-on-write: root filesystems are created using copy-on-write, which makes deployment extremeley fast, memory-cheap and disk-cheap.
* Logging: the standard streams (stdout/stderr/stdin) of each process container is collected and logged for real-time or batch retrieval.
* Change management: changes to a container's filesystem can be committed into a new image and re-used to create more containers. No templating or manual configuration required.
* Interactive shell: docker can allocate a pseudo-tty and attach to the standard input of any container, for example to run a throaway interactive shell.
Getting started
===============
Docker can be installed on your local machine as well as servers - both
bare metal and virtualized. It is available as a binary on most modern
Linux systems, or as a VM on Windows, Mac and other systems.
We also offer an interactive tutorial for quickly learning the basics of
using Docker.
For up-to-date install instructions and online tutorials, see the
[Getting Started page](http://www.docker.io/gettingstarted/).
Usage examples
==============
Docker can be used to run short-lived commands, long-running daemons
(app servers, databases etc.), interactive shell sessions, etc.
You can find a [list of real-world
examples](http://docs.docker.io/en/latest/examples/) in the
documentation.
Under the hood
--------------
Under the hood, Docker is built on the following components:
* The
[cgroup](http://blog.dotcloud.com/kernel-secrets-from-the-paas-garage-part-24-c)
and
[namespacing](http://blog.dotcloud.com/under-the-hood-linux-kernels-on-dotcloud-part)
capabilities of the Linux kernel;
* The [Go](http://golang.org) programming language.
Contributing to Docker
======================
* The [cgroup](http://blog.dotcloud.com/kernel-secrets-from-the-paas-garage-part-24-c) and [namespacing](http://blog.dotcloud.com/under-the-hood-linux-kernels-on-dotcloud-part) capabilities of the Linux kernel;
Want to hack on Docker? Awesome! There are instructions to get you
started [here](CONTRIBUTING.md).
* [AUFS](http://aufs.sourceforge.net/aufs.html), a powerful union filesystem with copy-on-write capabilities;
They are probably not perfect, please let us know if anything feels
wrong or incomplete.
* The [Go](http://golang.org) programming language;
### Legal
* [lxc](http://lxc.sourceforge.net/), a set of convenience scripts to simplify the creation of linux containers.
*Brought to you courtesy of our legal counsel. For more context,
please see the Notice document.*
Use and transfer of Docker may be subject to certain restrictions by the
United States and other governments.
It is your responsibility to ensure that your use and/or transfer does not
violate applicable laws.
Setup instructions
==================
Requirements
------------
Right now, the officially supported distributions are:
* Ubuntu 12.04 (precise LTS)
* Ubuntu 12.10 (quantal)
Docker probably works on other distributions featuring a recent kernel, the AUFS patch, and up-to-date lxc. However this has not been tested.
Installation
---------------
1. Set up your host of choice on a physical / virtual machine
2. Assume root identity on your newly installed environment (`sudo -s`)
3. Type the following commands:
apt-get update
apt-get install lxc wget bsdtar curl
4. Download the latest docker binaries: `wget http://docker.io.s3.amazonaws.com/builds/$(uname -s)/$(uname -m)/docker-master.tgz` ([Or get the Linux/x86_64 binaries here](http://docker.io.s3.amazonaws.com/builds/Linux/x86_64/docker-master.tgz) )
5. Extract the contents of the tar file `tar -xf docker-master.tar.gz`
6. Launch the docker daemon in the background `./dockerd &`
7. Download a base image `./docker pull base`
8. Run your first container! `./docker run -i -a -t base /bin/bash`
9. Start exploring `./docker --help`
Consider adding docker and dockerd to your `PATH` for simplicity.
What is a Standard Container?
-----------------------------
Docker defines a unit of software delivery called a Standard Container. The goal of a Standard Container is to encapsulate a software component and all its dependencies in
a format that is self-describing and portable, so that any compliant runtime can run it without extra dependency, regardless of the underlying machine and the contents of the container.
The spec for Standard Containers is currently work in progress, but it is very straightforward. It mostly defines 1) an image format, 2) a set of standard operations, and 3) an execution environment.
A great analogy for this is the shipping container. Just like Standard Containers are a fundamental unit of software delivery, shipping containers (http://bricks.argz.com/ins/7823-1/12) are a fundamental unit of physical delivery.
### 1. STANDARD OPERATIONS
Just like shipping containers, Standard Containers define a set of STANDARD OPERATIONS. Shipping containers can be lifted, stacked, locked, loaded, unloaded and labelled. Similarly, standard containers can be started, stopped, copied, snapshotted, downloaded, uploaded and tagged.
### 2. CONTENT-AGNOSTIC
Just like shipping containers, Standard Containers are CONTENT-AGNOSTIC: all standard operations have the same effect regardless of the contents. A shipping container will be stacked in exactly the same way whether it contains Vietnamese powder coffe or spare Maserati parts. Similarly, Standard Containers are started or uploaded in the same way whether they contain a postgres database, a php application with its dependencies and application server, or Java build artifacts.
### 3. INFRASTRUCTURE-AGNOSTIC
Both types of containers are INFRASTRUCTURE-AGNOSTIC: they can be transported to thousands of facilities around the world, and manipulated by a wide variety of equipment. A shipping container can be packed in a factory in Ukraine, transported by truck to the nearest routing center, stacked onto a train, loaded into a German boat by an Australian-built crane, stored in a warehouse at a US facility, etc. Similarly, a standard container can be bundled on my laptop, uploaded to S3, downloaded, run and snapshotted by a build server at Equinix in Virginia, uploaded to 10 staging servers in a home-made Openstack cluster, then sent to 30 production instances across 3 EC2 regions.
### 4. DESIGNED FOR AUTOMATION
Because they offer the same standard operations regardless of content and infrastructure, Standard Containers, just like their physical counterpart, are extremely well-suited for automation. In fact, you could say automation is their secret weapon.
Many things that once required time-consuming and error-prone human effort can now be programmed. Before shipping containers, a bag of powder coffee was hauled, dragged, dropped, rolled and stacked by 10 different people in 10 different locations by the time it reached its destination. 1 out of 50 disappeared. 1 out of 20 was damaged. The process was slow, inefficient and cost a fortune - and was entirely different depending on the facility and the type of goods.
Similarly, before Standard Containers, by the time a software component ran in production, it had been individually built, configured, bundled, documented, patched, vendored, templated, tweaked and instrumented by 10 different people on 10 different computers. Builds failed, libraries conflicted, mirrors crashed, post-it notes were lost, logs were misplaced, cluster updates were half-broken. The process was slow, inefficient and cost a fortune - and was entirely different depending on the language and infrastructure provider.
### 5. INDUSTRIAL-GRADE DELIVERY
There are 17 million shipping containers in existence, packed with every physical good imaginable. Every single one of them can be loaded on the same boats, by the same cranes, in the same facilities, and sent anywhere in the World with incredible efficiency. It is embarrassing to think that a 30 ton shipment of coffee can safely travel half-way across the World in *less time* than it takes a software team to deliver its code from one datacenter to another sitting 10 miles away.
With Standard Containers we can put an end to that embarrassment, by making INDUSTRIAL-GRADE DELIVERY of software a reality.
Standard Container Specification
--------------------------------
(TODO)
### Image format
### Standard operations
* Copy
* Run
* Stop
* Wait
* Commit
* Attach standard streams
* List filesystem changes
* ...
### Execution environment
#### Root filesystem
#### Environment variables
#### Process arguments
#### Networking
#### Process namespacing
#### Resource limits
#### Process monitoring
#### Logging
#### Signals
#### Pseudo-terminal allocation
#### Security
For more information, please see http://www.bis.doc.gov
-1
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0.11.1
Vendored
+100
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# -*- mode: ruby -*-
# vi: set ft=ruby :
Vagrant::Config.run do |config|
# All Vagrant configuration is done here. The most common configuration
# options are documented and commented below. For a complete reference,
# please see the online documentation at vagrantup.com.
# Every Vagrant virtual environment requires a box to build off of.
config.vm.box = "quantal64_3.5.0-25"
# The url from where the 'config.vm.box' box will be fetched if it
# doesn't already exist on the user's system.
config.vm.box_url = "http://get.docker.io/vbox/ubuntu/12.10/quantal64_3.5.0-25.box"
# Boot with a GUI so you can see the screen. (Default is headless)
# config.vm.boot_mode = :gui
# Assign this VM to a host-only network IP, allowing you to access it
# via the IP. Host-only networks can talk to the host machine as well as
# any other machines on the same network, but cannot be accessed (through this
# network interface) by any external networks.
# config.vm.network :hostonly, "192.168.33.10"
# Assign this VM to a bridged network, allowing you to connect directly to a
# network using the host's network device. This makes the VM appear as another
# physical device on your network.
# config.vm.network :bridged
# Forward a port from the guest to the host, which allows for outside
# computers to access the VM, whereas host only networking does not.
# config.vm.forward_port 80, 8080
# Share an additional folder to the guest VM. The first argument is
# an identifier, the second is the path on the guest to mount the
# folder, and the third is the path on the host to the actual folder.
# config.vm.share_folder "v-data", "/vagrant_data", "../data"
# Enable provisioning with Puppet stand alone. Puppet manifests
# are contained in a directory path relative to this Vagrantfile.
# You will need to create the manifests directory and a manifest in
# the file quantal64.pp in the manifests_path directory.
#
# An example Puppet manifest to provision the message of the day:
#
# # group { "puppet":
# # ensure => "present",
# # }
# #
# # File { owner => 0, group => 0, mode => 0644 }
# #
# # file { '/etc/motd':
# # content => "Welcome to your Vagrant-built virtual machine!
# # Managed by Puppet.\n"
# # }
#
config.vm.provision :puppet do |puppet|
puppet.manifests_path = "puppet/manifests"
puppet.manifest_file = "quantal64.pp"
puppet.module_path = "puppet/modules"
end
# Enable provisioning with chef solo, specifying a cookbooks path, roles
# path, and data_bags path (all relative to this Vagrantfile), and adding
# some recipes and/or roles.
#
# config.vm.provision :chef_solo do |chef|
# chef.cookbooks_path = "../my-recipes/cookbooks"
# chef.roles_path = "../my-recipes/roles"
# chef.data_bags_path = "../my-recipes/data_bags"
# chef.add_recipe "mysql"
# chef.add_role "web"
#
# # You may also specify custom JSON attributes:
# chef.json = { :mysql_password => "foo" }
# end
# Enable provisioning with chef server, specifying the chef server URL,
# and the path to the validation key (relative to this Vagrantfile).
#
# The Opscode Platform uses HTTPS. Substitute your organization for
# ORGNAME in the URL and validation key.
#
# If you have your own Chef Server, use the appropriate URL, which may be
# HTTP instead of HTTPS depending on your configuration. Also change the
# validation key to validation.pem.
#
# config.vm.provision :chef_client do |chef|
# chef.chef_server_url = "https://api.opscode.com/organizations/ORGNAME"
# chef.validation_key_path = "ORGNAME-validator.pem"
# end
#
# If you're using the Opscode platform, your validator client is
# ORGNAME-validator, replacing ORGNAME with your organization name.
#
# IF you have your own Chef Server, the default validation client name is
# chef-validator, unless you changed the configuration.
#
# chef.validation_client_name = "ORGNAME-validator"
end
-1
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Victor Vieux <vieux@docker.com> (@vieux)
-19
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package api
import (
"testing"
)
func TestJsonContentType(t *testing.T) {
if !MatchesContentType("application/json", "application/json") {
t.Fail()
}
if !MatchesContentType("application/json; charset=utf-8", "application/json") {
t.Fail()
}
if MatchesContentType("dockerapplication/json", "application/json") {
t.Fail()
}
}
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package client
import (
"crypto/tls"
"encoding/json"
"fmt"
"io"
"os"
"reflect"
"strings"
"text/template"
flag "github.com/dotcloud/docker/pkg/mflag"
"github.com/dotcloud/docker/pkg/term"
"github.com/dotcloud/docker/registry"
)
var funcMap = template.FuncMap{
"json": func(v interface{}) string {
a, _ := json.Marshal(v)
return string(a)
},
}
func (cli *DockerCli) getMethod(name string) (func(...string) error, bool) {
methodName := "Cmd" + strings.ToUpper(name[:1]) + strings.ToLower(name[1:])
method := reflect.ValueOf(cli).MethodByName(methodName)
if !method.IsValid() {
return nil, false
}
return method.Interface().(func(...string) error), true
}
func (cli *DockerCli) ParseCommands(args ...string) error {
if len(args) > 0 {
method, exists := cli.getMethod(args[0])
if !exists {
fmt.Println("Error: Command not found:", args[0])
return cli.CmdHelp(args[1:]...)
}
return method(args[1:]...)
}
return cli.CmdHelp(args...)
}
func (cli *DockerCli) Subcmd(name, signature, description string) *flag.FlagSet {
flags := flag.NewFlagSet(name, flag.ContinueOnError)
flags.Usage = func() {
fmt.Fprintf(cli.err, "\nUsage: docker %s %s\n\n%s\n\n", name, signature, description)
flags.PrintDefaults()
os.Exit(2)
}
return flags
}
func (cli *DockerCli) LoadConfigFile() (err error) {
cli.configFile, err = registry.LoadConfig(os.Getenv("HOME"))
if err != nil {
fmt.Fprintf(cli.err, "WARNING: %s\n", err)
}
return err
}
func NewDockerCli(in io.ReadCloser, out, err io.Writer, proto, addr string, tlsConfig *tls.Config) *DockerCli {
var (
isTerminal = false
terminalFd uintptr
scheme = "http"
)
if tlsConfig != nil {
scheme = "https"
}
if in != nil {
if file, ok := in.(*os.File); ok {
terminalFd = file.Fd()
isTerminal = term.IsTerminal(terminalFd)
}
}
if err == nil {
err = out
}
return &DockerCli{
proto: proto,
addr: addr,
in: in,
out: out,
err: err,
isTerminal: isTerminal,
terminalFd: terminalFd,
tlsConfig: tlsConfig,
scheme: scheme,
}
}
type DockerCli struct {
proto string
addr string
configFile *registry.ConfigFile
in io.ReadCloser
out io.Writer
err io.Writer
isTerminal bool
terminalFd uintptr
tlsConfig *tls.Config
scheme string
}
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package client
import (
"crypto/tls"
"fmt"
"io"
"net"
"net/http"
"net/http/httputil"
"os"
"runtime"
"strings"
"github.com/dotcloud/docker/api"
"github.com/dotcloud/docker/dockerversion"
"github.com/dotcloud/docker/pkg/term"
"github.com/dotcloud/docker/utils"
)
func (cli *DockerCli) dial() (net.Conn, error) {
if cli.tlsConfig != nil && cli.proto != "unix" {
return tls.Dial(cli.proto, cli.addr, cli.tlsConfig)
}
return net.Dial(cli.proto, cli.addr)
}
func (cli *DockerCli) hijack(method, path string, setRawTerminal bool, in io.ReadCloser, stdout, stderr io.Writer, started chan io.Closer) error {
defer func() {
if started != nil {
close(started)
}
}()
req, err := http.NewRequest(method, fmt.Sprintf("/v%s%s", api.APIVERSION, path), nil)
if err != nil {
return err
}
req.Header.Set("User-Agent", "Docker-Client/"+dockerversion.VERSION)
req.Header.Set("Content-Type", "plain/text")
req.Host = cli.addr
dial, err := cli.dial()
if err != nil {
if strings.Contains(err.Error(), "connection refused") {
return fmt.Errorf("Cannot connect to the Docker daemon. Is 'docker -d' running on this host?")
}
return err
}
clientconn := httputil.NewClientConn(dial, nil)
defer clientconn.Close()
// Server hijacks the connection, error 'connection closed' expected
clientconn.Do(req)
rwc, br := clientconn.Hijack()
defer rwc.Close()
if started != nil {
started <- rwc
}
var receiveStdout chan error
var oldState *term.State
if in != nil && setRawTerminal && cli.isTerminal && os.Getenv("NORAW") == "" {
oldState, err = term.SetRawTerminal(cli.terminalFd)
if err != nil {
return err
}
defer term.RestoreTerminal(cli.terminalFd, oldState)
}
if stdout != nil || stderr != nil {
receiveStdout = utils.Go(func() (err error) {
defer func() {
if in != nil {
if setRawTerminal && cli.isTerminal {
term.RestoreTerminal(cli.terminalFd, oldState)
}
// For some reason this Close call blocks on darwin..
// As the client exists right after, simply discard the close
// until we find a better solution.
if runtime.GOOS != "darwin" {
in.Close()
}
}
}()
// When TTY is ON, use regular copy
if setRawTerminal {
_, err = io.Copy(stdout, br)
} else {
_, err = utils.StdCopy(stdout, stderr, br)
}
utils.Debugf("[hijack] End of stdout")
return err
})
}
sendStdin := utils.Go(func() error {
if in != nil {
io.Copy(rwc, in)
utils.Debugf("[hijack] End of stdin")
}
if tcpc, ok := rwc.(*net.TCPConn); ok {
if err := tcpc.CloseWrite(); err != nil {
utils.Debugf("Couldn't send EOF: %s\n", err)
}
} else if unixc, ok := rwc.(*net.UnixConn); ok {
if err := unixc.CloseWrite(); err != nil {
utils.Debugf("Couldn't send EOF: %s\n", err)
}
}
// Discard errors due to pipe interruption
return nil
})
if stdout != nil || stderr != nil {
if err := <-receiveStdout; err != nil {
utils.Debugf("Error receiveStdout: %s", err)
return err
}
}
if !cli.isTerminal {
if err := <-sendStdin; err != nil {
utils.Debugf("Error sendStdin: %s", err)
return err
}
}
return nil
}
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@@ -1,257 +0,0 @@
package client
import (
"bytes"
"encoding/base64"
"encoding/json"
"errors"
"fmt"
"io"
"io/ioutil"
"net"
"net/http"
"net/url"
"os"
gosignal "os/signal"
"strconv"
"strings"
"syscall"
"github.com/dotcloud/docker/api"
"github.com/dotcloud/docker/dockerversion"
"github.com/dotcloud/docker/engine"
"github.com/dotcloud/docker/pkg/term"
"github.com/dotcloud/docker/registry"
"github.com/dotcloud/docker/utils"
)
var (
ErrConnectionRefused = errors.New("Cannot connect to the Docker daemon. Is 'docker -d' running on this host?")
)
func (cli *DockerCli) HTTPClient() *http.Client {
tr := &http.Transport{
TLSClientConfig: cli.tlsConfig,
Dial: func(network, addr string) (net.Conn, error) {
return net.Dial(cli.proto, cli.addr)
},
}
return &http.Client{Transport: tr}
}
func (cli *DockerCli) call(method, path string, data interface{}, passAuthInfo bool) (io.ReadCloser, int, error) {
params := bytes.NewBuffer(nil)
if data != nil {
if env, ok := data.(engine.Env); ok {
if err := env.Encode(params); err != nil {
return nil, -1, err
}
} else {
buf, err := json.Marshal(data)
if err != nil {
return nil, -1, err
}
if _, err := params.Write(buf); err != nil {
return nil, -1, err
}
}
}
req, err := http.NewRequest(method, fmt.Sprintf("/v%s%s", api.APIVERSION, path), params)
if err != nil {
return nil, -1, err
}
if passAuthInfo {
cli.LoadConfigFile()
// Resolve the Auth config relevant for this server
authConfig := cli.configFile.ResolveAuthConfig(registry.IndexServerAddress())
getHeaders := func(authConfig registry.AuthConfig) (map[string][]string, error) {
buf, err := json.Marshal(authConfig)
if err != nil {
return nil, err
}
registryAuthHeader := []string{
base64.URLEncoding.EncodeToString(buf),
}
return map[string][]string{"X-Registry-Auth": registryAuthHeader}, nil
}
if headers, err := getHeaders(authConfig); err == nil && headers != nil {
for k, v := range headers {
req.Header[k] = v
}
}
}
req.Header.Set("User-Agent", "Docker-Client/"+dockerversion.VERSION)
req.URL.Host = cli.addr
req.URL.Scheme = cli.scheme
if data != nil {
req.Header.Set("Content-Type", "application/json")
} else if method == "POST" {
req.Header.Set("Content-Type", "plain/text")
}
resp, err := cli.HTTPClient().Do(req)
if err != nil {
if strings.Contains(err.Error(), "connection refused") {
return nil, -1, ErrConnectionRefused
}
return nil, -1, err
}
if resp.StatusCode < 200 || resp.StatusCode >= 400 {
body, err := ioutil.ReadAll(resp.Body)
if err != nil {
return nil, -1, err
}
if len(body) == 0 {
return nil, resp.StatusCode, fmt.Errorf("Error: request returned %s for API route and version %s, check if the server supports the requested API version", http.StatusText(resp.StatusCode), req.URL)
}
return nil, resp.StatusCode, fmt.Errorf("Error: %s", bytes.TrimSpace(body))
}
return resp.Body, resp.StatusCode, nil
}
func (cli *DockerCli) stream(method, path string, in io.Reader, out io.Writer, headers map[string][]string) error {
return cli.streamHelper(method, path, true, in, out, nil, headers)
}
func (cli *DockerCli) streamHelper(method, path string, setRawTerminal bool, in io.Reader, stdout, stderr io.Writer, headers map[string][]string) error {
if (method == "POST" || method == "PUT") && in == nil {
in = bytes.NewReader([]byte{})
}
req, err := http.NewRequest(method, fmt.Sprintf("http://v%s%s", api.APIVERSION, path), in)
if err != nil {
return err
}
req.Header.Set("User-Agent", "Docker-Client/"+dockerversion.VERSION)
req.URL.Host = cli.addr
req.URL.Scheme = cli.scheme
if method == "POST" {
req.Header.Set("Content-Type", "plain/text")
}
if headers != nil {
for k, v := range headers {
req.Header[k] = v
}
}
resp, err := cli.HTTPClient().Do(req)
if err != nil {
if strings.Contains(err.Error(), "connection refused") {
return fmt.Errorf("Cannot connect to the Docker daemon. Is 'docker -d' running on this host?")
}
return err
}
defer resp.Body.Close()
if resp.StatusCode < 200 || resp.StatusCode >= 400 {
body, err := ioutil.ReadAll(resp.Body)
if err != nil {
return err
}
if len(body) == 0 {
return fmt.Errorf("Error :%s", http.StatusText(resp.StatusCode))
}
return fmt.Errorf("Error: %s", bytes.TrimSpace(body))
}
if api.MatchesContentType(resp.Header.Get("Content-Type"), "application/json") {
return utils.DisplayJSONMessagesStream(resp.Body, stdout, cli.terminalFd, cli.isTerminal)
}
if stdout != nil || stderr != nil {
// When TTY is ON, use regular copy
if setRawTerminal {
_, err = io.Copy(stdout, resp.Body)
} else {
_, err = utils.StdCopy(stdout, stderr, resp.Body)
}
utils.Debugf("[stream] End of stdout")
return err
}
return nil
}
func (cli *DockerCli) resizeTty(id string) {
height, width := cli.getTtySize()
if height == 0 && width == 0 {
return
}
v := url.Values{}
v.Set("h", strconv.Itoa(height))
v.Set("w", strconv.Itoa(width))
if _, _, err := readBody(cli.call("POST", "/containers/"+id+"/resize?"+v.Encode(), nil, false)); err != nil {
utils.Debugf("Error resize: %s", err)
}
}
func waitForExit(cli *DockerCli, containerId string) (int, error) {
stream, _, err := cli.call("POST", "/containers/"+containerId+"/wait", nil, false)
if err != nil {
return -1, err
}
var out engine.Env
if err := out.Decode(stream); err != nil {
return -1, err
}
return out.GetInt("StatusCode"), nil
}
// getExitCode perform an inspect on the container. It returns
// the running state and the exit code.
func getExitCode(cli *DockerCli, containerId string) (bool, int, error) {
body, _, err := readBody(cli.call("GET", "/containers/"+containerId+"/json", nil, false))
if err != nil {
// If we can't connect, then the daemon probably died.
if err != ErrConnectionRefused {
return false, -1, err
}
return false, -1, nil
}
c := &api.Container{}
if err := json.Unmarshal(body, c); err != nil {
return false, -1, err
}
return c.State.Running, c.State.ExitCode, nil
}
func (cli *DockerCli) monitorTtySize(id string) error {
cli.resizeTty(id)
sigchan := make(chan os.Signal, 1)
gosignal.Notify(sigchan, syscall.SIGWINCH)
go func() {
for _ = range sigchan {
cli.resizeTty(id)
}
}()
return nil
}
func (cli *DockerCli) getTtySize() (int, int) {
if !cli.isTerminal {
return 0, 0
}
ws, err := term.GetWinsize(cli.terminalFd)
if err != nil {
utils.Debugf("Error getting size: %s", err)
if ws == nil {
return 0, 0
}
}
return int(ws.Height), int(ws.Width)
}
func readBody(stream io.ReadCloser, statusCode int, err error) ([]byte, int, error) {
if stream != nil {
defer stream.Close()
}
if err != nil {
return nil, statusCode, err
}
body, err := ioutil.ReadAll(stream)
if err != nil {
return nil, -1, err
}
return body, statusCode, nil
}
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@@ -1,47 +0,0 @@
package api
import (
"fmt"
"github.com/dotcloud/docker/engine"
"github.com/dotcloud/docker/pkg/version"
"github.com/dotcloud/docker/utils"
"mime"
"strings"
)
const (
APIVERSION version.Version = "1.11"
DEFAULTHTTPHOST = "127.0.0.1"
DEFAULTUNIXSOCKET = "/var/run/docker.sock"
)
func ValidateHost(val string) (string, error) {
host, err := utils.ParseHost(DEFAULTHTTPHOST, DEFAULTUNIXSOCKET, val)
if err != nil {
return val, err
}
return host, nil
}
//TODO remove, used on < 1.5 in getContainersJSON
func DisplayablePorts(ports *engine.Table) string {
result := []string{}
ports.SetKey("PublicPort")
ports.Sort()
for _, port := range ports.Data {
if port.Get("IP") == "" {
result = append(result, fmt.Sprintf("%d/%s", port.GetInt("PublicPort"), port.Get("Type")))
} else {
result = append(result, fmt.Sprintf("%s:%d->%d/%s", port.Get("IP"), port.GetInt("PublicPort"), port.GetInt("PrivatePort"), port.Get("Type")))
}
}
return strings.Join(result, ", ")
}
func MatchesContentType(contentType, expectedType string) bool {
mimetype, _, err := mime.ParseMediaType(contentType)
if err != nil {
utils.Errorf("Error parsing media type: %s error: %s", contentType, err.Error())
}
return err == nil && mimetype == expectedType
}
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@@ -1,18 +0,0 @@
package api
import (
"github.com/dotcloud/docker/nat"
"github.com/dotcloud/docker/runconfig"
)
type Container struct {
Config runconfig.Config
HostConfig runconfig.HostConfig
State struct {
Running bool
ExitCode int
}
NetworkSettings struct {
Ports nat.PortMap
}
}
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@@ -1,148 +0,0 @@
package server
import (
"bytes"
"encoding/json"
"fmt"
"github.com/dotcloud/docker/api"
"github.com/dotcloud/docker/engine"
"io"
"net/http"
"net/http/httptest"
"testing"
)
func TestGetBoolParam(t *testing.T) {
if ret, err := getBoolParam("true"); err != nil || !ret {
t.Fatalf("true -> true, nil | got %t %s", ret, err)
}
if ret, err := getBoolParam("True"); err != nil || !ret {
t.Fatalf("True -> true, nil | got %t %s", ret, err)
}
if ret, err := getBoolParam("1"); err != nil || !ret {
t.Fatalf("1 -> true, nil | got %t %s", ret, err)
}
if ret, err := getBoolParam(""); err != nil || ret {
t.Fatalf("\"\" -> false, nil | got %t %s", ret, err)
}
if ret, err := getBoolParam("false"); err != nil || ret {
t.Fatalf("false -> false, nil | got %t %s", ret, err)
}
if ret, err := getBoolParam("0"); err != nil || ret {
t.Fatalf("0 -> false, nil | got %t %s", ret, err)
}
if ret, err := getBoolParam("faux"); err == nil || ret {
t.Fatalf("faux -> false, err | got %t %s", ret, err)
}
}
func TesthttpError(t *testing.T) {
r := httptest.NewRecorder()
httpError(r, fmt.Errorf("No such method"))
if r.Code != http.StatusNotFound {
t.Fatalf("Expected %d, got %d", http.StatusNotFound, r.Code)
}
httpError(r, fmt.Errorf("This accound hasn't been activated"))
if r.Code != http.StatusForbidden {
t.Fatalf("Expected %d, got %d", http.StatusForbidden, r.Code)
}
httpError(r, fmt.Errorf("Some error"))
if r.Code != http.StatusInternalServerError {
t.Fatalf("Expected %d, got %d", http.StatusInternalServerError, r.Code)
}
}
func TestGetVersion(t *testing.T) {
eng := engine.New()
var called bool
eng.Register("version", func(job *engine.Job) engine.Status {
called = true
v := &engine.Env{}
v.SetJson("Version", "42.1")
v.Set("ApiVersion", "1.1.1.1.1")
v.Set("GoVersion", "2.42")
v.Set("Os", "Linux")
v.Set("Arch", "x86_64")
if _, err := v.WriteTo(job.Stdout); err != nil {
return job.Error(err)
}
return engine.StatusOK
})
r := serveRequest("GET", "/version", nil, eng, t)
if !called {
t.Fatalf("handler was not called")
}
v := readEnv(r.Body, t)
if v.Get("Version") != "42.1" {
t.Fatalf("%#v\n", v)
}
if r.HeaderMap.Get("Content-Type") != "application/json" {
t.Fatalf("%#v\n", r)
}
}
func TestGetInfo(t *testing.T) {
eng := engine.New()
var called bool
eng.Register("info", func(job *engine.Job) engine.Status {
called = true
v := &engine.Env{}
v.SetInt("Containers", 1)
v.SetInt("Images", 42000)
if _, err := v.WriteTo(job.Stdout); err != nil {
return job.Error(err)
}
return engine.StatusOK
})
r := serveRequest("GET", "/info", nil, eng, t)
if !called {
t.Fatalf("handler was not called")
}
v := readEnv(r.Body, t)
if v.GetInt("Images") != 42000 {
t.Fatalf("%#v\n", v)
}
if v.GetInt("Containers") != 1 {
t.Fatalf("%#v\n", v)
}
if r.HeaderMap.Get("Content-Type") != "application/json" {
t.Fatalf("%#v\n", r)
}
}
func serveRequest(method, target string, body io.Reader, eng *engine.Engine, t *testing.T) *httptest.ResponseRecorder {
r := httptest.NewRecorder()
req, err := http.NewRequest(method, target, body)
if err != nil {
t.Fatal(err)
}
if err := ServeRequest(eng, api.APIVERSION, r, req); err != nil {
t.Fatal(err)
}
return r
}
func readEnv(src io.Reader, t *testing.T) *engine.Env {
out := engine.NewOutput()
v, err := out.AddEnv()
if err != nil {
t.Fatal(err)
}
if _, err := io.Copy(out, src); err != nil {
t.Fatal(err)
}
out.Close()
return v
}
func toJson(data interface{}, t *testing.T) io.Reader {
var buf bytes.Buffer
if err := json.NewEncoder(&buf).Encode(data); err != nil {
t.Fatal(err)
}
return &buf
}
-1
View File
@@ -1 +0,0 @@
Michael Crosby <michael@crosbymichael.com> (@crosbymichael)
-645
View File
@@ -1,645 +0,0 @@
package archive
import (
"bytes"
"compress/bzip2"
"compress/gzip"
"errors"
"fmt"
"github.com/dotcloud/docker/pkg/system"
"github.com/dotcloud/docker/utils"
"github.com/dotcloud/docker/vendor/src/code.google.com/p/go/src/pkg/archive/tar"
"io"
"io/ioutil"
"os"
"os/exec"
"path"
"path/filepath"
"strings"
"syscall"
)
type (
Archive io.ReadCloser
ArchiveReader io.Reader
Compression int
TarOptions struct {
Includes []string
Compression Compression
}
)
var (
ErrNotImplemented = errors.New("Function not implemented")
)
const (
Uncompressed Compression = iota
Bzip2
Gzip
Xz
)
func DetectCompression(source []byte) Compression {
sourceLen := len(source)
for compression, m := range map[Compression][]byte{
Bzip2: {0x42, 0x5A, 0x68},
Gzip: {0x1F, 0x8B, 0x08},
Xz: {0xFD, 0x37, 0x7A, 0x58, 0x5A, 0x00},
} {
fail := false
if len(m) > sourceLen {
utils.Debugf("Len too short")
continue
}
i := 0
for _, b := range m {
if b != source[i] {
fail = true
break
}
i++
}
if !fail {
return compression
}
}
return Uncompressed
}
func xzDecompress(archive io.Reader) (io.ReadCloser, error) {
args := []string{"xz", "-d", "-c", "-q"}
return CmdStream(exec.Command(args[0], args[1:]...), archive)
}
func DecompressStream(archive io.Reader) (io.ReadCloser, error) {
buf := make([]byte, 10)
totalN := 0
for totalN < 10 {
n, err := archive.Read(buf[totalN:])
if err != nil {
if err == io.EOF {
return nil, fmt.Errorf("Tarball too short")
}
return nil, err
}
totalN += n
utils.Debugf("[tar autodetect] n: %d", n)
}
compression := DetectCompression(buf)
wrap := io.MultiReader(bytes.NewReader(buf), archive)
switch compression {
case Uncompressed:
return ioutil.NopCloser(wrap), nil
case Gzip:
return gzip.NewReader(wrap)
case Bzip2:
return ioutil.NopCloser(bzip2.NewReader(wrap)), nil
case Xz:
return xzDecompress(wrap)
default:
return nil, fmt.Errorf("Unsupported compression format %s", (&compression).Extension())
}
}
func CompressStream(dest io.WriteCloser, compression Compression) (io.WriteCloser, error) {
switch compression {
case Uncompressed:
return utils.NopWriteCloser(dest), nil
case Gzip:
return gzip.NewWriter(dest), nil
case Bzip2, Xz:
// archive/bzip2 does not support writing, and there is no xz support at all
// However, this is not a problem as docker only currently generates gzipped tars
return nil, fmt.Errorf("Unsupported compression format %s", (&compression).Extension())
default:
return nil, fmt.Errorf("Unsupported compression format %s", (&compression).Extension())
}
}
func (compression *Compression) Extension() string {
switch *compression {
case Uncompressed:
return "tar"
case Bzip2:
return "tar.bz2"
case Gzip:
return "tar.gz"
case Xz:
return "tar.xz"
}
return ""
}
func addTarFile(path, name string, tw *tar.Writer) error {
fi, err := os.Lstat(path)
if err != nil {
return err
}
link := ""
if fi.Mode()&os.ModeSymlink != 0 {
if link, err = os.Readlink(path); err != nil {
return err
}
}
hdr, err := tar.FileInfoHeader(fi, link)
if err != nil {
return err
}
if fi.IsDir() && !strings.HasSuffix(name, "/") {
name = name + "/"
}
hdr.Name = name
stat, ok := fi.Sys().(*syscall.Stat_t)
if ok {
// Currently go does not fill in the major/minors
if stat.Mode&syscall.S_IFBLK == syscall.S_IFBLK ||
stat.Mode&syscall.S_IFCHR == syscall.S_IFCHR {
hdr.Devmajor = int64(major(uint64(stat.Rdev)))
hdr.Devminor = int64(minor(uint64(stat.Rdev)))
}
}
capability, _ := system.Lgetxattr(path, "security.capability")
if capability != nil {
hdr.Xattrs = make(map[string]string)
hdr.Xattrs["security.capability"] = string(capability)
}
if err := tw.WriteHeader(hdr); err != nil {
return err
}
if hdr.Typeflag == tar.TypeReg {
if file, err := os.Open(path); err != nil {
return err
} else {
_, err := io.Copy(tw, file)
if err != nil {
return err
}
file.Close()
}
}
return nil
}
func createTarFile(path, extractDir string, hdr *tar.Header, reader io.Reader) error {
// hdr.Mode is in linux format, which we can use for sycalls,
// but for os.Foo() calls we need the mode converted to os.FileMode,
// so use hdrInfo.Mode() (they differ for e.g. setuid bits)
hdrInfo := hdr.FileInfo()
switch hdr.Typeflag {
case tar.TypeDir:
// Create directory unless it exists as a directory already.
// In that case we just want to merge the two
if fi, err := os.Lstat(path); !(err == nil && fi.IsDir()) {
if err := os.Mkdir(path, hdrInfo.Mode()); err != nil {
return err
}
}
case tar.TypeReg, tar.TypeRegA:
// Source is regular file
file, err := os.OpenFile(path, os.O_CREATE|os.O_WRONLY, hdrInfo.Mode())
if err != nil {
return err
}
if _, err := io.Copy(file, reader); err != nil {
file.Close()
return err
}
file.Close()
case tar.TypeBlock, tar.TypeChar, tar.TypeFifo:
mode := uint32(hdr.Mode & 07777)
switch hdr.Typeflag {
case tar.TypeBlock:
mode |= syscall.S_IFBLK
case tar.TypeChar:
mode |= syscall.S_IFCHR
case tar.TypeFifo:
mode |= syscall.S_IFIFO
}
if err := syscall.Mknod(path, mode, int(mkdev(hdr.Devmajor, hdr.Devminor))); err != nil {
return err
}
case tar.TypeLink:
if err := os.Link(filepath.Join(extractDir, hdr.Linkname), path); err != nil {
return err
}
case tar.TypeSymlink:
if err := os.Symlink(hdr.Linkname, path); err != nil {
return err
}
case tar.TypeXGlobalHeader:
utils.Debugf("PAX Global Extended Headers found and ignored")
return nil
default:
return fmt.Errorf("Unhandled tar header type %d\n", hdr.Typeflag)
}
if err := os.Lchown(path, hdr.Uid, hdr.Gid); err != nil {
return err
}
for key, value := range hdr.Xattrs {
if err := system.Lsetxattr(path, key, []byte(value), 0); err != nil {
return err
}
}
// There is no LChmod, so ignore mode for symlink. Also, this
// must happen after chown, as that can modify the file mode
if hdr.Typeflag != tar.TypeSymlink {
if err := os.Chmod(path, hdrInfo.Mode()); err != nil {
return err
}
}
ts := []syscall.Timespec{timeToTimespec(hdr.AccessTime), timeToTimespec(hdr.ModTime)}
// syscall.UtimesNano doesn't support a NOFOLLOW flag atm, and
if hdr.Typeflag != tar.TypeSymlink {
if err := system.UtimesNano(path, ts); err != nil {
return err
}
} else {
if err := system.LUtimesNano(path, ts); err != nil {
return err
}
}
return nil
}
// Tar creates an archive from the directory at `path`, and returns it as a
// stream of bytes.
func Tar(path string, compression Compression) (io.ReadCloser, error) {
return TarFilter(path, &TarOptions{Compression: compression})
}
func escapeName(name string) string {
escaped := make([]byte, 0)
for i, c := range []byte(name) {
if i == 0 && c == '/' {
continue
}
// all printable chars except "-" which is 0x2d
if (0x20 <= c && c <= 0x7E) && c != 0x2d {
escaped = append(escaped, c)
} else {
escaped = append(escaped, fmt.Sprintf("\\%03o", c)...)
}
}
return string(escaped)
}
// Tar creates an archive from the directory at `path`, only including files whose relative
// paths are included in `filter`. If `filter` is nil, then all files are included.
func TarFilter(srcPath string, options *TarOptions) (io.ReadCloser, error) {
pipeReader, pipeWriter := io.Pipe()
compressWriter, err := CompressStream(pipeWriter, options.Compression)
if err != nil {
return nil, err
}
tw := tar.NewWriter(compressWriter)
go func() {
// In general we log errors here but ignore them because
// during e.g. a diff operation the container can continue
// mutating the filesystem and we can see transient errors
// from this
if options.Includes == nil {
options.Includes = []string{"."}
}
for _, include := range options.Includes {
filepath.Walk(filepath.Join(srcPath, include), func(filePath string, f os.FileInfo, err error) error {
if err != nil {
utils.Debugf("Tar: Can't stat file %s to tar: %s\n", srcPath, err)
return nil
}
relFilePath, err := filepath.Rel(srcPath, filePath)
if err != nil {
return nil
}
if err := addTarFile(filePath, relFilePath, tw); err != nil {
utils.Debugf("Can't add file %s to tar: %s\n", srcPath, err)
}
return nil
})
}
// Make sure to check the error on Close.
if err := tw.Close(); err != nil {
utils.Debugf("Can't close tar writer: %s\n", err)
}
if err := compressWriter.Close(); err != nil {
utils.Debugf("Can't close compress writer: %s\n", err)
}
if err := pipeWriter.Close(); err != nil {
utils.Debugf("Can't close pipe writer: %s\n", err)
}
}()
return pipeReader, nil
}
// Untar reads a stream of bytes from `archive`, parses it as a tar archive,
// and unpacks it into the directory at `path`.
// The archive may be compressed with one of the following algorithms:
// identity (uncompressed), gzip, bzip2, xz.
// FIXME: specify behavior when target path exists vs. doesn't exist.
func Untar(archive io.Reader, dest string, options *TarOptions) error {
if archive == nil {
return fmt.Errorf("Empty archive")
}
decompressedArchive, err := DecompressStream(archive)
if err != nil {
return err
}
defer decompressedArchive.Close()
tr := tar.NewReader(decompressedArchive)
var dirs []*tar.Header
// Iterate through the files in the archive.
for {
hdr, err := tr.Next()
if err == io.EOF {
// end of tar archive
break
}
if err != nil {
return err
}
// Normalize name, for safety and for a simple is-root check
hdr.Name = filepath.Clean(hdr.Name)
if !strings.HasSuffix(hdr.Name, "/") {
// Not the root directory, ensure that the parent directory exists
parent := filepath.Dir(hdr.Name)
parentPath := filepath.Join(dest, parent)
if _, err := os.Lstat(parentPath); err != nil && os.IsNotExist(err) {
err = os.MkdirAll(parentPath, 0777)
if err != nil {
return err
}
}
}
path := filepath.Join(dest, hdr.Name)
// If path exits we almost always just want to remove and replace it
// The only exception is when it is a directory *and* the file from
// the layer is also a directory. Then we want to merge them (i.e.
// just apply the metadata from the layer).
if fi, err := os.Lstat(path); err == nil {
if !(fi.IsDir() && hdr.Typeflag == tar.TypeDir) {
if err := os.RemoveAll(path); err != nil {
return err
}
}
}
if err := createTarFile(path, dest, hdr, tr); err != nil {
return err
}
// Directory mtimes must be handled at the end to avoid further
// file creation in them to modify the directory mtime
if hdr.Typeflag == tar.TypeDir {
dirs = append(dirs, hdr)
}
}
for _, hdr := range dirs {
path := filepath.Join(dest, hdr.Name)
ts := []syscall.Timespec{timeToTimespec(hdr.AccessTime), timeToTimespec(hdr.ModTime)}
if err := syscall.UtimesNano(path, ts); err != nil {
return err
}
}
return nil
}
// TarUntar is a convenience function which calls Tar and Untar, with
// the output of one piped into the other. If either Tar or Untar fails,
// TarUntar aborts and returns the error.
func TarUntar(src string, dst string) error {
utils.Debugf("TarUntar(%s %s)", src, dst)
archive, err := TarFilter(src, &TarOptions{Compression: Uncompressed})
if err != nil {
return err
}
defer archive.Close()
return Untar(archive, dst, nil)
}
// UntarPath is a convenience function which looks for an archive
// at filesystem path `src`, and unpacks it at `dst`.
func UntarPath(src, dst string) error {
archive, err := os.Open(src)
if err != nil {
return err
}
defer archive.Close()
if err := Untar(archive, dst, nil); err != nil {
return err
}
return nil
}
// CopyWithTar creates a tar archive of filesystem path `src`, and
// unpacks it at filesystem path `dst`.
// The archive is streamed directly with fixed buffering and no
// intermediary disk IO.
//
func CopyWithTar(src, dst string) error {
srcSt, err := os.Stat(src)
if err != nil {
return err
}
if !srcSt.IsDir() {
return CopyFileWithTar(src, dst)
}
// Create dst, copy src's content into it
utils.Debugf("Creating dest directory: %s", dst)
if err := os.MkdirAll(dst, 0755); err != nil && !os.IsExist(err) {
return err
}
utils.Debugf("Calling TarUntar(%s, %s)", src, dst)
return TarUntar(src, dst)
}
// CopyFileWithTar emulates the behavior of the 'cp' command-line
// for a single file. It copies a regular file from path `src` to
// path `dst`, and preserves all its metadata.
//
// If `dst` ends with a trailing slash '/', the final destination path
// will be `dst/base(src)`.
func CopyFileWithTar(src, dst string) (err error) {
utils.Debugf("CopyFileWithTar(%s, %s)", src, dst)
srcSt, err := os.Stat(src)
if err != nil {
return err
}
if srcSt.IsDir() {
return fmt.Errorf("Can't copy a directory")
}
// Clean up the trailing /
if dst[len(dst)-1] == '/' {
dst = path.Join(dst, filepath.Base(src))
}
// Create the holding directory if necessary
if err := os.MkdirAll(filepath.Dir(dst), 0700); err != nil && !os.IsExist(err) {
return err
}
r, w := io.Pipe()
errC := utils.Go(func() error {
defer w.Close()
srcF, err := os.Open(src)
if err != nil {
return err
}
defer srcF.Close()
tw := tar.NewWriter(w)
hdr, err := tar.FileInfoHeader(srcSt, "")
if err != nil {
return err
}
hdr.Name = filepath.Base(dst)
if err := tw.WriteHeader(hdr); err != nil {
return err
}
if _, err := io.Copy(tw, srcF); err != nil {
return err
}
tw.Close()
return nil
})
defer func() {
if er := <-errC; err != nil {
err = er
}
}()
return Untar(r, filepath.Dir(dst), nil)
}
// CmdStream executes a command, and returns its stdout as a stream.
// If the command fails to run or doesn't complete successfully, an error
// will be returned, including anything written on stderr.
func CmdStream(cmd *exec.Cmd, input io.Reader) (io.ReadCloser, error) {
if input != nil {
stdin, err := cmd.StdinPipe()
if err != nil {
return nil, err
}
// Write stdin if any
go func() {
io.Copy(stdin, input)
stdin.Close()
}()
}
stdout, err := cmd.StdoutPipe()
if err != nil {
return nil, err
}
stderr, err := cmd.StderrPipe()
if err != nil {
return nil, err
}
pipeR, pipeW := io.Pipe()
errChan := make(chan []byte)
// Collect stderr, we will use it in case of an error
go func() {
errText, e := ioutil.ReadAll(stderr)
if e != nil {
errText = []byte("(...couldn't fetch stderr: " + e.Error() + ")")
}
errChan <- errText
}()
// Copy stdout to the returned pipe
go func() {
_, err := io.Copy(pipeW, stdout)
if err != nil {
pipeW.CloseWithError(err)
}
errText := <-errChan
if err := cmd.Wait(); err != nil {
pipeW.CloseWithError(fmt.Errorf("%s: %s", err, errText))
} else {
pipeW.Close()
}
}()
// Run the command and return the pipe
if err := cmd.Start(); err != nil {
return nil, err
}
return pipeR, nil
}
// NewTempArchive reads the content of src into a temporary file, and returns the contents
// of that file as an archive. The archive can only be read once - as soon as reading completes,
// the file will be deleted.
func NewTempArchive(src Archive, dir string) (*TempArchive, error) {
f, err := ioutil.TempFile(dir, "")
if err != nil {
return nil, err
}
if _, err := io.Copy(f, src); err != nil {
return nil, err
}
if err = f.Sync(); err != nil {
return nil, err
}
if _, err := f.Seek(0, 0); err != nil {
return nil, err
}
st, err := f.Stat()
if err != nil {
return nil, err
}
size := st.Size()
return &TempArchive{f, size}, nil
}
type TempArchive struct {
*os.File
Size int64 // Pre-computed from Stat().Size() as a convenience
}
func (archive *TempArchive) Read(data []byte) (int, error) {
n, err := archive.File.Read(data)
if err != nil {
os.Remove(archive.File.Name())
}
return n, err
}
-139
View File
@@ -1,139 +0,0 @@
package archive
import (
"bytes"
"fmt"
"github.com/dotcloud/docker/vendor/src/code.google.com/p/go/src/pkg/archive/tar"
"io"
"io/ioutil"
"os"
"os/exec"
"path"
"testing"
"time"
)
func TestCmdStreamLargeStderr(t *testing.T) {
cmd := exec.Command("/bin/sh", "-c", "dd if=/dev/zero bs=1k count=1000 of=/dev/stderr; echo hello")
out, err := CmdStream(cmd, nil)
if err != nil {
t.Fatalf("Failed to start command: %s", err)
}
errCh := make(chan error)
go func() {
_, err := io.Copy(ioutil.Discard, out)
errCh <- err
}()
select {
case err := <-errCh:
if err != nil {
t.Fatalf("Command should not have failed (err=%.100s...)", err)
}
case <-time.After(5 * time.Second):
t.Fatalf("Command did not complete in 5 seconds; probable deadlock")
}
}
func TestCmdStreamBad(t *testing.T) {
badCmd := exec.Command("/bin/sh", "-c", "echo hello; echo >&2 error couldn\\'t reverse the phase pulser; exit 1")
out, err := CmdStream(badCmd, nil)
if err != nil {
t.Fatalf("Failed to start command: %s", err)
}
if output, err := ioutil.ReadAll(out); err == nil {
t.Fatalf("Command should have failed")
} else if err.Error() != "exit status 1: error couldn't reverse the phase pulser\n" {
t.Fatalf("Wrong error value (%s)", err)
} else if s := string(output); s != "hello\n" {
t.Fatalf("Command output should be '%s', not '%s'", "hello\\n", output)
}
}
func TestCmdStreamGood(t *testing.T) {
cmd := exec.Command("/bin/sh", "-c", "echo hello; exit 0")
out, err := CmdStream(cmd, nil)
if err != nil {
t.Fatal(err)
}
if output, err := ioutil.ReadAll(out); err != nil {
t.Fatalf("Command should not have failed (err=%s)", err)
} else if s := string(output); s != "hello\n" {
t.Fatalf("Command output should be '%s', not '%s'", "hello\\n", output)
}
}
func tarUntar(t *testing.T, origin string, compression Compression) error {
archive, err := Tar(origin, compression)
if err != nil {
t.Fatal(err)
}
defer archive.Close()
buf := make([]byte, 10)
if _, err := archive.Read(buf); err != nil {
return err
}
wrap := io.MultiReader(bytes.NewReader(buf), archive)
detectedCompression := DetectCompression(buf)
if detectedCompression.Extension() != compression.Extension() {
return fmt.Errorf("Wrong compression detected. Actual compression: %s, found %s", compression.Extension(), detectedCompression.Extension())
}
tmp, err := ioutil.TempDir("", "docker-test-untar")
if err != nil {
return err
}
defer os.RemoveAll(tmp)
if err := Untar(wrap, tmp, nil); err != nil {
return err
}
if _, err := os.Stat(tmp); err != nil {
return err
}
changes, err := ChangesDirs(origin, tmp)
if err != nil {
return err
}
if len(changes) != 0 {
t.Fatalf("Unexpected differences after tarUntar: %v", changes)
}
return nil
}
func TestTarUntar(t *testing.T) {
origin, err := ioutil.TempDir("", "docker-test-untar-origin")
if err != nil {
t.Fatal(err)
}
defer os.RemoveAll(origin)
if err := ioutil.WriteFile(path.Join(origin, "1"), []byte("hello world"), 0700); err != nil {
t.Fatal(err)
}
if err := ioutil.WriteFile(path.Join(origin, "2"), []byte("welcome!"), 0700); err != nil {
t.Fatal(err)
}
for _, c := range []Compression{
Uncompressed,
Gzip,
} {
if err := tarUntar(t, origin, c); err != nil {
t.Fatalf("Error tar/untar for compression %s: %s", c.Extension(), err)
}
}
}
// Some tar archives such as http://haproxy.1wt.eu/download/1.5/src/devel/haproxy-1.5-dev21.tar.gz
// use PAX Global Extended Headers.
// Failing prevents the archives from being uncompressed during ADD
func TestTypeXGlobalHeaderDoesNotFail(t *testing.T) {
hdr := tar.Header{Typeflag: tar.TypeXGlobalHeader}
err := createTarFile("pax_global_header", "some_dir", &hdr, nil)
if err != nil {
t.Fatal(err)
}
}
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@@ -1,369 +0,0 @@
package archive
import (
"bytes"
"fmt"
"github.com/dotcloud/docker/pkg/system"
"github.com/dotcloud/docker/utils"
"github.com/dotcloud/docker/vendor/src/code.google.com/p/go/src/pkg/archive/tar"
"io"
"os"
"path/filepath"
"strings"
"syscall"
"time"
)
type ChangeType int
const (
ChangeModify = iota
ChangeAdd
ChangeDelete
)
type Change struct {
Path string
Kind ChangeType
}
func (change *Change) String() string {
var kind string
switch change.Kind {
case ChangeModify:
kind = "C"
case ChangeAdd:
kind = "A"
case ChangeDelete:
kind = "D"
}
return fmt.Sprintf("%s %s", kind, change.Path)
}
// Gnu tar and the go tar writer don't have sub-second mtime
// precision, which is problematic when we apply changes via tar
// files, we handle this by comparing for exact times, *or* same
// second count and either a or b having exactly 0 nanoseconds
func sameFsTime(a, b time.Time) bool {
return a == b ||
(a.Unix() == b.Unix() &&
(a.Nanosecond() == 0 || b.Nanosecond() == 0))
}
func sameFsTimeSpec(a, b syscall.Timespec) bool {
return a.Sec == b.Sec &&
(a.Nsec == b.Nsec || a.Nsec == 0 || b.Nsec == 0)
}
func Changes(layers []string, rw string) ([]Change, error) {
var changes []Change
err := filepath.Walk(rw, func(path string, f os.FileInfo, err error) error {
if err != nil {
return err
}
// Rebase path
path, err = filepath.Rel(rw, path)
if err != nil {
return err
}
path = filepath.Join("/", path)
// Skip root
if path == "/" {
return nil
}
// Skip AUFS metadata
if matched, err := filepath.Match("/.wh..wh.*", path); err != nil || matched {
return err
}
change := Change{
Path: path,
}
// Find out what kind of modification happened
file := filepath.Base(path)
// If there is a whiteout, then the file was removed
if strings.HasPrefix(file, ".wh.") {
originalFile := file[len(".wh."):]
change.Path = filepath.Join(filepath.Dir(path), originalFile)
change.Kind = ChangeDelete
} else {
// Otherwise, the file was added
change.Kind = ChangeAdd
// ...Unless it already existed in a top layer, in which case, it's a modification
for _, layer := range layers {
stat, err := os.Stat(filepath.Join(layer, path))
if err != nil && !os.IsNotExist(err) {
return err
}
if err == nil {
// The file existed in the top layer, so that's a modification
// However, if it's a directory, maybe it wasn't actually modified.
// If you modify /foo/bar/baz, then /foo will be part of the changed files only because it's the parent of bar
if stat.IsDir() && f.IsDir() {
if f.Size() == stat.Size() && f.Mode() == stat.Mode() && sameFsTime(f.ModTime(), stat.ModTime()) {
// Both directories are the same, don't record the change
return nil
}
}
change.Kind = ChangeModify
break
}
}
}
// Record change
changes = append(changes, change)
return nil
})
if err != nil && !os.IsNotExist(err) {
return nil, err
}
return changes, nil
}
type FileInfo struct {
parent *FileInfo
name string
stat syscall.Stat_t
children map[string]*FileInfo
capability []byte
}
func (root *FileInfo) LookUp(path string) *FileInfo {
parent := root
if path == "/" {
return root
}
pathElements := strings.Split(path, "/")
for _, elem := range pathElements {
if elem != "" {
child := parent.children[elem]
if child == nil {
return nil
}
parent = child
}
}
return parent
}
func (info *FileInfo) path() string {
if info.parent == nil {
return "/"
}
return filepath.Join(info.parent.path(), info.name)
}
func (info *FileInfo) isDir() bool {
return info.parent == nil || info.stat.Mode&syscall.S_IFDIR == syscall.S_IFDIR
}
func (info *FileInfo) addChanges(oldInfo *FileInfo, changes *[]Change) {
if oldInfo == nil {
// add
change := Change{
Path: info.path(),
Kind: ChangeAdd,
}
*changes = append(*changes, change)
}
// We make a copy so we can modify it to detect additions
// also, we only recurse on the old dir if the new info is a directory
// otherwise any previous delete/change is considered recursive
oldChildren := make(map[string]*FileInfo)
if oldInfo != nil && info.isDir() {
for k, v := range oldInfo.children {
oldChildren[k] = v
}
}
for name, newChild := range info.children {
oldChild, _ := oldChildren[name]
if oldChild != nil {
// change?
oldStat := &oldChild.stat
newStat := &newChild.stat
// Note: We can't compare inode or ctime or blocksize here, because these change
// when copying a file into a container. However, that is not generally a problem
// because any content change will change mtime, and any status change should
// be visible when actually comparing the stat fields. The only time this
// breaks down is if some code intentionally hides a change by setting
// back mtime
if oldStat.Mode != newStat.Mode ||
oldStat.Uid != newStat.Uid ||
oldStat.Gid != newStat.Gid ||
oldStat.Rdev != newStat.Rdev ||
// Don't look at size for dirs, its not a good measure of change
(oldStat.Size != newStat.Size && oldStat.Mode&syscall.S_IFDIR != syscall.S_IFDIR) ||
!sameFsTimeSpec(system.GetLastModification(oldStat), system.GetLastModification(newStat)) ||
bytes.Compare(oldChild.capability, newChild.capability) != 0 {
change := Change{
Path: newChild.path(),
Kind: ChangeModify,
}
*changes = append(*changes, change)
}
// Remove from copy so we can detect deletions
delete(oldChildren, name)
}
newChild.addChanges(oldChild, changes)
}
for _, oldChild := range oldChildren {
// delete
change := Change{
Path: oldChild.path(),
Kind: ChangeDelete,
}
*changes = append(*changes, change)
}
}
func (info *FileInfo) Changes(oldInfo *FileInfo) []Change {
var changes []Change
info.addChanges(oldInfo, &changes)
return changes
}
func newRootFileInfo() *FileInfo {
root := &FileInfo{
name: "/",
children: make(map[string]*FileInfo),
}
return root
}
func collectFileInfo(sourceDir string) (*FileInfo, error) {
root := newRootFileInfo()
err := filepath.Walk(sourceDir, func(path string, f os.FileInfo, err error) error {
if err != nil {
return err
}
// Rebase path
relPath, err := filepath.Rel(sourceDir, path)
if err != nil {
return err
}
relPath = filepath.Join("/", relPath)
if relPath == "/" {
return nil
}
parent := root.LookUp(filepath.Dir(relPath))
if parent == nil {
return fmt.Errorf("collectFileInfo: Unexpectedly no parent for %s", relPath)
}
info := &FileInfo{
name: filepath.Base(relPath),
children: make(map[string]*FileInfo),
parent: parent,
}
if err := syscall.Lstat(path, &info.stat); err != nil {
return err
}
info.capability, _ = system.Lgetxattr(path, "security.capability")
parent.children[info.name] = info
return nil
})
if err != nil {
return nil, err
}
return root, nil
}
// Compare two directories and generate an array of Change objects describing the changes
func ChangesDirs(newDir, oldDir string) ([]Change, error) {
oldRoot, err := collectFileInfo(oldDir)
if err != nil {
return nil, err
}
newRoot, err := collectFileInfo(newDir)
if err != nil {
return nil, err
}
return newRoot.Changes(oldRoot), nil
}
func ChangesSize(newDir string, changes []Change) int64 {
var size int64
for _, change := range changes {
if change.Kind == ChangeModify || change.Kind == ChangeAdd {
file := filepath.Join(newDir, change.Path)
fileInfo, _ := os.Lstat(file)
if fileInfo != nil && !fileInfo.IsDir() {
size += fileInfo.Size()
}
}
}
return size
}
func major(device uint64) uint64 {
return (device >> 8) & 0xfff
}
func minor(device uint64) uint64 {
return (device & 0xff) | ((device >> 12) & 0xfff00)
}
func ExportChanges(dir string, changes []Change) (Archive, error) {
reader, writer := io.Pipe()
tw := tar.NewWriter(writer)
go func() {
// In general we log errors here but ignore them because
// during e.g. a diff operation the container can continue
// mutating the filesystem and we can see transient errors
// from this
for _, change := range changes {
if change.Kind == ChangeDelete {
whiteOutDir := filepath.Dir(change.Path)
whiteOutBase := filepath.Base(change.Path)
whiteOut := filepath.Join(whiteOutDir, ".wh."+whiteOutBase)
hdr := &tar.Header{
Name: whiteOut[1:],
Size: 0,
ModTime: time.Now(),
AccessTime: time.Now(),
ChangeTime: time.Now(),
}
if err := tw.WriteHeader(hdr); err != nil {
utils.Debugf("Can't write whiteout header: %s\n", err)
}
} else {
path := filepath.Join(dir, change.Path)
if err := addTarFile(path, change.Path[1:], tw); err != nil {
utils.Debugf("Can't add file %s to tar: %s\n", path, err)
}
}
}
// Make sure to check the error on Close.
if err := tw.Close(); err != nil {
utils.Debugf("Can't close layer: %s\n", err)
}
writer.Close()
}()
return reader, nil
}
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@@ -1,301 +0,0 @@
package archive
import (
"io/ioutil"
"os"
"os/exec"
"path"
"sort"
"testing"
"time"
)
func max(x, y int) int {
if x >= y {
return x
}
return y
}
func copyDir(src, dst string) error {
cmd := exec.Command("cp", "-a", src, dst)
if err := cmd.Run(); err != nil {
return err
}
return nil
}
// Helper to sort []Change by path
type byPath struct{ changes []Change }
func (b byPath) Less(i, j int) bool { return b.changes[i].Path < b.changes[j].Path }
func (b byPath) Len() int { return len(b.changes) }
func (b byPath) Swap(i, j int) { b.changes[i], b.changes[j] = b.changes[j], b.changes[i] }
type FileType uint32
const (
Regular FileType = iota
Dir
Symlink
)
type FileData struct {
filetype FileType
path string
contents string
permissions os.FileMode
}
func createSampleDir(t *testing.T, root string) {
files := []FileData{
{Regular, "file1", "file1\n", 0600},
{Regular, "file2", "file2\n", 0666},
{Regular, "file3", "file3\n", 0404},
{Regular, "file4", "file4\n", 0600},
{Regular, "file5", "file5\n", 0600},
{Regular, "file6", "file6\n", 0600},
{Regular, "file7", "file7\n", 0600},
{Dir, "dir1", "", 0740},
{Regular, "dir1/file1-1", "file1-1\n", 01444},
{Regular, "dir1/file1-2", "file1-2\n", 0666},
{Dir, "dir2", "", 0700},
{Regular, "dir2/file2-1", "file2-1\n", 0666},
{Regular, "dir2/file2-2", "file2-2\n", 0666},
{Dir, "dir3", "", 0700},
{Regular, "dir3/file3-1", "file3-1\n", 0666},
{Regular, "dir3/file3-2", "file3-2\n", 0666},
{Dir, "dir4", "", 0700},
{Regular, "dir4/file3-1", "file4-1\n", 0666},
{Regular, "dir4/file3-2", "file4-2\n", 0666},
{Symlink, "symlink1", "target1", 0666},
{Symlink, "symlink2", "target2", 0666},
}
now := time.Now()
for _, info := range files {
p := path.Join(root, info.path)
if info.filetype == Dir {
if err := os.MkdirAll(p, info.permissions); err != nil {
t.Fatal(err)
}
} else if info.filetype == Regular {
if err := ioutil.WriteFile(p, []byte(info.contents), info.permissions); err != nil {
t.Fatal(err)
}
} else if info.filetype == Symlink {
if err := os.Symlink(info.contents, p); err != nil {
t.Fatal(err)
}
}
if info.filetype != Symlink {
// Set a consistent ctime, atime for all files and dirs
if err := os.Chtimes(p, now, now); err != nil {
t.Fatal(err)
}
}
}
}
// Create an directory, copy it, make sure we report no changes between the two
func TestChangesDirsEmpty(t *testing.T) {
src, err := ioutil.TempDir("", "docker-changes-test")
if err != nil {
t.Fatal(err)
}
createSampleDir(t, src)
dst := src + "-copy"
if err := copyDir(src, dst); err != nil {
t.Fatal(err)
}
changes, err := ChangesDirs(dst, src)
if err != nil {
t.Fatal(err)
}
if len(changes) != 0 {
t.Fatalf("Reported changes for identical dirs: %v", changes)
}
os.RemoveAll(src)
os.RemoveAll(dst)
}
func mutateSampleDir(t *testing.T, root string) {
// Remove a regular file
if err := os.RemoveAll(path.Join(root, "file1")); err != nil {
t.Fatal(err)
}
// Remove a directory
if err := os.RemoveAll(path.Join(root, "dir1")); err != nil {
t.Fatal(err)
}
// Remove a symlink
if err := os.RemoveAll(path.Join(root, "symlink1")); err != nil {
t.Fatal(err)
}
// Rewrite a file
if err := ioutil.WriteFile(path.Join(root, "file2"), []byte("fileNN\n"), 0777); err != nil {
t.Fatal(err)
}
// Replace a file
if err := os.RemoveAll(path.Join(root, "file3")); err != nil {
t.Fatal(err)
}
if err := ioutil.WriteFile(path.Join(root, "file3"), []byte("fileMM\n"), 0404); err != nil {
t.Fatal(err)
}
// Touch file
if err := os.Chtimes(path.Join(root, "file4"), time.Now().Add(time.Second), time.Now().Add(time.Second)); err != nil {
t.Fatal(err)
}
// Replace file with dir
if err := os.RemoveAll(path.Join(root, "file5")); err != nil {
t.Fatal(err)
}
if err := os.MkdirAll(path.Join(root, "file5"), 0666); err != nil {
t.Fatal(err)
}
// Create new file
if err := ioutil.WriteFile(path.Join(root, "filenew"), []byte("filenew\n"), 0777); err != nil {
t.Fatal(err)
}
// Create new dir
if err := os.MkdirAll(path.Join(root, "dirnew"), 0766); err != nil {
t.Fatal(err)
}
// Create a new symlink
if err := os.Symlink("targetnew", path.Join(root, "symlinknew")); err != nil {
t.Fatal(err)
}
// Change a symlink
if err := os.RemoveAll(path.Join(root, "symlink2")); err != nil {
t.Fatal(err)
}
if err := os.Symlink("target2change", path.Join(root, "symlink2")); err != nil {
t.Fatal(err)
}
// Replace dir with file
if err := os.RemoveAll(path.Join(root, "dir2")); err != nil {
t.Fatal(err)
}
if err := ioutil.WriteFile(path.Join(root, "dir2"), []byte("dir2\n"), 0777); err != nil {
t.Fatal(err)
}
// Touch dir
if err := os.Chtimes(path.Join(root, "dir3"), time.Now().Add(time.Second), time.Now().Add(time.Second)); err != nil {
t.Fatal(err)
}
}
func TestChangesDirsMutated(t *testing.T) {
src, err := ioutil.TempDir("", "docker-changes-test")
if err != nil {
t.Fatal(err)
}
createSampleDir(t, src)
dst := src + "-copy"
if err := copyDir(src, dst); err != nil {
t.Fatal(err)
}
defer os.RemoveAll(src)
defer os.RemoveAll(dst)
mutateSampleDir(t, dst)
changes, err := ChangesDirs(dst, src)
if err != nil {
t.Fatal(err)
}
sort.Sort(byPath{changes})
expectedChanges := []Change{
{"/dir1", ChangeDelete},
{"/dir2", ChangeModify},
{"/dir3", ChangeModify},
{"/dirnew", ChangeAdd},
{"/file1", ChangeDelete},
{"/file2", ChangeModify},
{"/file3", ChangeModify},
{"/file4", ChangeModify},
{"/file5", ChangeModify},
{"/filenew", ChangeAdd},
{"/symlink1", ChangeDelete},
{"/symlink2", ChangeModify},
{"/symlinknew", ChangeAdd},
}
for i := 0; i < max(len(changes), len(expectedChanges)); i++ {
if i >= len(expectedChanges) {
t.Fatalf("unexpected change %s\n", changes[i].String())
}
if i >= len(changes) {
t.Fatalf("no change for expected change %s\n", expectedChanges[i].String())
}
if changes[i].Path == expectedChanges[i].Path {
if changes[i] != expectedChanges[i] {
t.Fatalf("Wrong change for %s, expected %s, got %s\n", changes[i].Path, changes[i].String(), expectedChanges[i].String())
}
} else if changes[i].Path < expectedChanges[i].Path {
t.Fatalf("unexpected change %s\n", changes[i].String())
} else {
t.Fatalf("no change for expected change %s != %s\n", expectedChanges[i].String(), changes[i].String())
}
}
}
func TestApplyLayer(t *testing.T) {
src, err := ioutil.TempDir("", "docker-changes-test")
if err != nil {
t.Fatal(err)
}
createSampleDir(t, src)
defer os.RemoveAll(src)
dst := src + "-copy"
if err := copyDir(src, dst); err != nil {
t.Fatal(err)
}
mutateSampleDir(t, dst)
defer os.RemoveAll(dst)
changes, err := ChangesDirs(dst, src)
if err != nil {
t.Fatal(err)
}
layer, err := ExportChanges(dst, changes)
if err != nil {
t.Fatal(err)
}
layerCopy, err := NewTempArchive(layer, "")
if err != nil {
t.Fatal(err)
}
if err := ApplyLayer(src, layerCopy); err != nil {
t.Fatal(err)
}
changes2, err := ChangesDirs(src, dst)
if err != nil {
t.Fatal(err)
}
if len(changes2) != 0 {
t.Fatalf("Unexpected differences after reapplying mutation: %v", changes2)
}
}
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@@ -1,160 +0,0 @@
package archive
import (
"fmt"
"github.com/dotcloud/docker/vendor/src/code.google.com/p/go/src/pkg/archive/tar"
"io"
"io/ioutil"
"os"
"path/filepath"
"strings"
"syscall"
"time"
)
// Linux device nodes are a bit weird due to backwards compat with 16 bit device nodes.
// They are, from low to high: the lower 8 bits of the minor, then 12 bits of the major,
// then the top 12 bits of the minor
func mkdev(major int64, minor int64) uint32 {
return uint32(((minor & 0xfff00) << 12) | ((major & 0xfff) << 8) | (minor & 0xff))
}
func timeToTimespec(time time.Time) (ts syscall.Timespec) {
if time.IsZero() {
// Return UTIME_OMIT special value
ts.Sec = 0
ts.Nsec = ((1 << 30) - 2)
return
}
return syscall.NsecToTimespec(time.UnixNano())
}
// ApplyLayer parses a diff in the standard layer format from `layer`, and
// applies it to the directory `dest`.
func ApplyLayer(dest string, layer ArchiveReader) error {
// We need to be able to set any perms
oldmask := syscall.Umask(0)
defer syscall.Umask(oldmask)
layer, err := DecompressStream(layer)
if err != nil {
return err
}
tr := tar.NewReader(layer)
var dirs []*tar.Header
aufsTempdir := ""
aufsHardlinks := make(map[string]*tar.Header)
// Iterate through the files in the archive.
for {
hdr, err := tr.Next()
if err == io.EOF {
// end of tar archive
break
}
if err != nil {
return err
}
// Normalize name, for safety and for a simple is-root check
hdr.Name = filepath.Clean(hdr.Name)
if !strings.HasSuffix(hdr.Name, "/") {
// Not the root directory, ensure that the parent directory exists.
// This happened in some tests where an image had a tarfile without any
// parent directories.
parent := filepath.Dir(hdr.Name)
parentPath := filepath.Join(dest, parent)
if _, err := os.Lstat(parentPath); err != nil && os.IsNotExist(err) {
err = os.MkdirAll(parentPath, 0600)
if err != nil {
return err
}
}
}
// Skip AUFS metadata dirs
if strings.HasPrefix(hdr.Name, ".wh..wh.") {
// Regular files inside /.wh..wh.plnk can be used as hardlink targets
// We don't want this directory, but we need the files in them so that
// such hardlinks can be resolved.
if strings.HasPrefix(hdr.Name, ".wh..wh.plnk") && hdr.Typeflag == tar.TypeReg {
basename := filepath.Base(hdr.Name)
aufsHardlinks[basename] = hdr
if aufsTempdir == "" {
if aufsTempdir, err = ioutil.TempDir("", "dockerplnk"); err != nil {
return err
}
defer os.RemoveAll(aufsTempdir)
}
if err := createTarFile(filepath.Join(aufsTempdir, basename), dest, hdr, tr); err != nil {
return err
}
}
continue
}
path := filepath.Join(dest, hdr.Name)
base := filepath.Base(path)
if strings.HasPrefix(base, ".wh.") {
originalBase := base[len(".wh."):]
originalPath := filepath.Join(filepath.Dir(path), originalBase)
if err := os.RemoveAll(originalPath); err != nil {
return err
}
} else {
// If path exits we almost always just want to remove and replace it.
// The only exception is when it is a directory *and* the file from
// the layer is also a directory. Then we want to merge them (i.e.
// just apply the metadata from the layer).
if fi, err := os.Lstat(path); err == nil {
if !(fi.IsDir() && hdr.Typeflag == tar.TypeDir) {
if err := os.RemoveAll(path); err != nil {
return err
}
}
}
srcData := io.Reader(tr)
srcHdr := hdr
// Hard links into /.wh..wh.plnk don't work, as we don't extract that directory, so
// we manually retarget these into the temporary files we extracted them into
if hdr.Typeflag == tar.TypeLink && strings.HasPrefix(filepath.Clean(hdr.Linkname), ".wh..wh.plnk") {
linkBasename := filepath.Base(hdr.Linkname)
srcHdr = aufsHardlinks[linkBasename]
if srcHdr == nil {
return fmt.Errorf("Invalid aufs hardlink")
}
tmpFile, err := os.Open(filepath.Join(aufsTempdir, linkBasename))
if err != nil {
return err
}
defer tmpFile.Close()
srcData = tmpFile
}
if err := createTarFile(path, dest, srcHdr, srcData); err != nil {
return err
}
// Directory mtimes must be handled at the end to avoid further
// file creation in them to modify the directory mtime
if hdr.Typeflag == tar.TypeDir {
dirs = append(dirs, hdr)
}
}
}
for _, hdr := range dirs {
path := filepath.Join(dest, hdr.Name)
ts := []syscall.Timespec{timeToTimespec(hdr.AccessTime), timeToTimespec(hdr.ModTime)}
if err := syscall.UtimesNano(path, ts); err != nil {
return err
}
}
return nil
}
-59
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@@ -1,59 +0,0 @@
package archive
import (
"bytes"
"github.com/dotcloud/docker/vendor/src/code.google.com/p/go/src/pkg/archive/tar"
"io/ioutil"
)
// Generate generates a new archive from the content provided
// as input.
//
// `files` is a sequence of path/content pairs. A new file is
// added to the archive for each pair.
// If the last pair is incomplete, the file is created with an
// empty content. For example:
//
// Generate("foo.txt", "hello world", "emptyfile")
//
// The above call will return an archive with 2 files:
// * ./foo.txt with content "hello world"
// * ./empty with empty content
//
// FIXME: stream content instead of buffering
// FIXME: specify permissions and other archive metadata
func Generate(input ...string) (Archive, error) {
files := parseStringPairs(input...)
buf := new(bytes.Buffer)
tw := tar.NewWriter(buf)
for _, file := range files {
name, content := file[0], file[1]
hdr := &tar.Header{
Name: name,
Size: int64(len(content)),
}
if err := tw.WriteHeader(hdr); err != nil {
return nil, err
}
if _, err := tw.Write([]byte(content)); err != nil {
return nil, err
}
}
if err := tw.Close(); err != nil {
return nil, err
}
return ioutil.NopCloser(buf), nil
}
func parseStringPairs(input ...string) (output [][2]string) {
output = make([][2]string, 0, len(input)/2+1)
for i := 0; i < len(input); i += 2 {
var pair [2]string
pair[0] = input[i]
if i+1 < len(input) {
pair[1] = input[i+1]
}
output = append(output, pair)
}
return
}
-46
View File
@@ -1,46 +0,0 @@
package builtins
import (
api "github.com/dotcloud/docker/api/server"
"github.com/dotcloud/docker/daemon/networkdriver/bridge"
"github.com/dotcloud/docker/engine"
"github.com/dotcloud/docker/registry"
"github.com/dotcloud/docker/server"
)
func Register(eng *engine.Engine) error {
if err := daemon(eng); err != nil {
return err
}
if err := remote(eng); err != nil {
return err
}
return registry.NewService().Install(eng)
}
// remote: a RESTful api for cross-docker communication
func remote(eng *engine.Engine) error {
return eng.Register("serveapi", api.ServeApi)
}
// daemon: a default execution and storage backend for Docker on Linux,
// with the following underlying components:
//
// * Pluggable storage drivers including aufs, vfs, lvm and btrfs.
// * Pluggable execution drivers including lxc and chroot.
//
// In practice `daemon` still includes most core Docker components, including:
//
// * The reference registry client implementation
// * Image management
// * The build facility
// * Logging
//
// These components should be broken off into plugins of their own.
//
func daemon(eng *engine.Engine) error {
if err := eng.Register("initserver", server.InitServer); err != nil {
return err
}
return eng.Register("init_networkdriver", bridge.InitDriver)
}
+126
View File
@@ -0,0 +1,126 @@
package client
import (
"../future"
"../rcli"
"io"
"io/ioutil"
"log"
"os"
"os/exec"
"path"
"path/filepath"
)
// Run docker in "simple mode": run a single command and return.
func SimpleMode(args []string) error {
var oldState *State
var err error
if IsTerminal(0) && os.Getenv("NORAW") == "" {
oldState, err = MakeRaw(0)
if err != nil {
return err
}
defer Restore(0, oldState)
}
// FIXME: we want to use unix sockets here, but net.UnixConn doesn't expose
// CloseWrite(), which we need to cleanly signal that stdin is closed without
// closing the connection.
// See http://code.google.com/p/go/issues/detail?id=3345
conn, err := rcli.Call("tcp", "127.0.0.1:4242", args...)
if err != nil {
return err
}
receive_stdout := future.Go(func() error {
_, err := io.Copy(os.Stdout, conn)
return err
})
send_stdin := future.Go(func() error {
_, err := io.Copy(conn, os.Stdin)
if err := conn.CloseWrite(); err != nil {
log.Printf("Couldn't send EOF: " + err.Error())
}
return err
})
if err := <-receive_stdout; err != nil {
return err
}
if oldState != nil {
Restore(0, oldState)
}
if !IsTerminal(0) {
if err := <-send_stdin; err != nil {
return err
}
}
return nil
}
// Run docker in "interactive mode": run a bash-compatible shell capable of running docker commands.
func InteractiveMode(scripts ...string) error {
// Determine path of current docker binary
dockerPath, err := exec.LookPath(os.Args[0])
if err != nil {
return err
}
dockerPath, err = filepath.Abs(dockerPath)
if err != nil {
return err
}
// Create a temp directory
tmp, err := ioutil.TempDir("", "docker-shell")
if err != nil {
return err
}
defer os.RemoveAll(tmp)
// For each command, create an alias in temp directory
// FIXME: generate this list dynamically with introspection of some sort
// It might make sense to merge docker and dockerd to keep that introspection
// within a single binary.
for _, cmd := range []string{
"help",
"run",
"ps",
"pull",
"put",
"rm",
"kill",
"wait",
"stop",
"start",
"restart",
"logs",
"diff",
"commit",
"attach",
"info",
"tar",
"web",
"images",
"docker",
} {
if err := os.Symlink(dockerPath, path.Join(tmp, cmd)); err != nil {
return err
}
}
// Run $SHELL with PATH set to temp directory
rcfile, err := ioutil.TempFile("", "docker-shell-rc")
if err != nil {
return err
}
defer os.Remove(rcfile.Name())
io.WriteString(rcfile, "enable -n help\n")
os.Setenv("PATH", tmp+":"+os.Getenv("PATH"))
os.Setenv("PS1", "\\h docker> ")
shell := exec.Command("/bin/bash", append([]string{"--rcfile", rcfile.Name()}, scripts...)...)
shell.Stdin = os.Stdin
shell.Stdout = os.Stdout
shell.Stderr = os.Stderr
if err := shell.Run(); err != nil {
return err
}
return nil
}
+143
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@@ -0,0 +1,143 @@
package client
import (
"syscall"
"unsafe"
)
type Termios struct {
Iflag uintptr
Oflag uintptr
Cflag uintptr
Lflag uintptr
Cc [20]byte
Ispeed uintptr
Ospeed uintptr
}
const (
// Input flags
inpck = 0x010
istrip = 0x020
icrnl = 0x100
ixon = 0x200
// Output flags
opost = 0x1
// Control flags
cs8 = 0x300
// Local flags
icanon = 0x100
iexten = 0x400
)
const (
HUPCL = 0x4000
ICANON = 0x100
ICRNL = 0x100
IEXTEN = 0x400
BRKINT = 0x2
CFLUSH = 0xf
CLOCAL = 0x8000
CREAD = 0x800
CS5 = 0x0
CS6 = 0x100
CS7 = 0x200
CS8 = 0x300
CSIZE = 0x300
CSTART = 0x11
CSTATUS = 0x14
CSTOP = 0x13
CSTOPB = 0x400
CSUSP = 0x1a
IGNBRK = 0x1
IGNCR = 0x80
IGNPAR = 0x4
IMAXBEL = 0x2000
INLCR = 0x40
INPCK = 0x10
ISIG = 0x80
ISTRIP = 0x20
IUTF8 = 0x4000
IXANY = 0x800
IXOFF = 0x400
IXON = 0x200
NOFLSH = 0x80000000
OCRNL = 0x10
OFDEL = 0x20000
OFILL = 0x80
ONLCR = 0x2
ONLRET = 0x40
ONOCR = 0x20
ONOEOT = 0x8
OPOST = 0x1
RENB = 0x1000
PARMRK = 0x8
PARODD = 0x2000
TOSTOP = 0x400000
VDISCARD = 0xf
VDSUSP = 0xb
VEOF = 0x0
VEOL = 0x1
VEOL2 = 0x2
VERASE = 0x3
VINTR = 0x8
VKILL = 0x5
VLNEXT = 0xe
VMIN = 0x10
VQUIT = 0x9
VREPRINT = 0x6
VSTART = 0xc
VSTATUS = 0x12
VSTOP = 0xd
VSUSP = 0xa
VT0 = 0x0
VT1 = 0x10000
VTDLY = 0x10000
VTIME = 0x11
ECHO = 0x00000008
PENDIN = 0x20000000
)
type State struct {
termios Termios
}
// IsTerminal returns true if the given file descriptor is a terminal.
func IsTerminal(fd int) bool {
var termios Termios
_, _, err := syscall.Syscall6(syscall.SYS_IOCTL, uintptr(fd), uintptr(getTermios), uintptr(unsafe.Pointer(&termios)), 0, 0, 0)
return err == 0
}
// MakeRaw put the terminal connected to the given file descriptor into raw
// mode and returns the previous state of the terminal so that it can be
// restored.
func MakeRaw(fd int) (*State, error) {
var oldState State
if _, _, err := syscall.Syscall6(syscall.SYS_IOCTL, uintptr(fd), uintptr(getTermios), uintptr(unsafe.Pointer(&oldState.termios)), 0, 0, 0); err != 0 {
return nil, err
}
newState := oldState.termios
newState.Iflag &^= ISTRIP | INLCR | IGNCR | IXON | IXOFF
newState.Iflag |= ICRNL
newState.Oflag |= ONLCR
newState.Lflag &^= ECHO | ICANON | ISIG
if _, _, err := syscall.Syscall6(syscall.SYS_IOCTL, uintptr(fd), uintptr(setTermios), uintptr(unsafe.Pointer(&newState)), 0, 0, 0); err != 0 {
return nil, err
}
return &oldState, nil
}
// Restore restores the terminal connected to the given file descriptor to a
// previous state.
func Restore(fd int, state *State) error {
_, _, err := syscall.Syscall6(syscall.SYS_IOCTL, uintptr(fd), uintptr(setTermios), uintptr(unsafe.Pointer(&state.termios)), 0, 0, 0)
return err
}
+8
View File
@@ -0,0 +1,8 @@
package client
import "syscall"
const (
getTermios = syscall.TIOCGETA
setTermios = syscall.TIOCSETA
)
+8
View File
@@ -0,0 +1,8 @@
package client
import "syscall"
const (
getTermios = syscall.TCGETS
setTermios = syscall.TCSETS
)
+540
View File
@@ -0,0 +1,540 @@
package docker
import (
"./fs"
"encoding/json"
"errors"
"github.com/kr/pty"
"io"
"io/ioutil"
"log"
"os"
"os/exec"
"path"
"strconv"
"syscall"
"time"
)
var sysInitPath string
func init() {
sysInitPath = SelfPath()
}
type Container struct {
Id string
Root string
Created time.Time
Path string
Args []string
Config *Config
Mountpoint *fs.Mountpoint
State *State
Image string
network *NetworkInterface
networkManager *NetworkManager
NetworkSettings *NetworkSettings
SysInitPath string
lxcConfigPath string
cmd *exec.Cmd
stdout *writeBroadcaster
stderr *writeBroadcaster
stdin io.ReadCloser
stdinPipe io.WriteCloser
stdoutLog *os.File
stderrLog *os.File
}
type Config struct {
Hostname string
User string
Memory int64 // Memory limit (in bytes)
MemorySwap int64 // Total memory usage (memory + swap); set `-1' to disable swap
Ports []int
Tty bool // Attach standard streams to a tty, including stdin if it is not closed.
OpenStdin bool // Open stdin
}
type NetworkSettings struct {
IpAddress string
IpPrefixLen int
Gateway string
PortMapping map[string]string
}
func createContainer(id string, root string, command string, args []string, image *fs.Image, config *Config, netManager *NetworkManager) (*Container, error) {
mountpoint, err := image.Mountpoint(path.Join(root, "rootfs"), path.Join(root, "rw"))
if err != nil {
return nil, err
}
container := &Container{
Id: id,
Root: root,
Created: time.Now(),
Path: command,
Args: args,
Config: config,
Image: image.Id,
Mountpoint: mountpoint,
State: newState(),
networkManager: netManager,
NetworkSettings: &NetworkSettings{},
SysInitPath: sysInitPath,
lxcConfigPath: path.Join(root, "config.lxc"),
stdout: newWriteBroadcaster(),
stderr: newWriteBroadcaster(),
}
if err := os.Mkdir(root, 0700); err != nil {
return nil, err
}
// Setup logging of stdout and stderr to disk
if stdoutLog, err := os.OpenFile(path.Join(container.Root, id+"-stdout.log"), os.O_RDWR|os.O_APPEND|os.O_CREATE, 0600); err != nil {
return nil, err
} else {
container.stdoutLog = stdoutLog
}
if stderrLog, err := os.OpenFile(path.Join(container.Root, id+"-stderr.log"), os.O_RDWR|os.O_APPEND|os.O_CREATE, 0600); err != nil {
return nil, err
} else {
container.stderrLog = stderrLog
}
if container.Config.OpenStdin {
container.stdin, container.stdinPipe = io.Pipe()
} else {
container.stdinPipe = NopWriteCloser(ioutil.Discard) // Silently drop stdin
}
container.stdout.AddWriter(NopWriteCloser(container.stdoutLog))
container.stderr.AddWriter(NopWriteCloser(container.stderrLog))
if err := container.save(); err != nil {
return nil, err
}
return container, nil
}
func loadContainer(store *fs.Store, containerPath string, netManager *NetworkManager) (*Container, error) {
data, err := ioutil.ReadFile(path.Join(containerPath, "config.json"))
if err != nil {
return nil, err
}
mountpoint, err := store.FetchMountpoint(
path.Join(containerPath, "rootfs"),
path.Join(containerPath, "rw"),
)
if err != nil {
return nil, err
} else if mountpoint == nil {
return nil, errors.New("Couldn't load container: unregistered mountpoint.")
}
container := &Container{
stdout: newWriteBroadcaster(),
stderr: newWriteBroadcaster(),
lxcConfigPath: path.Join(containerPath, "config.lxc"),
networkManager: netManager,
NetworkSettings: &NetworkSettings{},
Mountpoint: mountpoint,
}
// Load container settings
if err := json.Unmarshal(data, container); err != nil {
return nil, err
}
// Setup logging of stdout and stderr to disk
if stdoutLog, err := os.OpenFile(path.Join(container.Root, container.Id+"-stdout.log"), os.O_RDWR|os.O_APPEND|os.O_CREATE, 0600); err != nil {
return nil, err
} else {
container.stdoutLog = stdoutLog
}
if stderrLog, err := os.OpenFile(path.Join(container.Root, container.Id+"-stderr.log"), os.O_RDWR|os.O_APPEND|os.O_CREATE, 0600); err != nil {
return nil, err
} else {
container.stderrLog = stderrLog
}
container.stdout.AddWriter(NopWriteCloser(container.stdoutLog))
container.stderr.AddWriter(NopWriteCloser(container.stderrLog))
if container.Config.OpenStdin {
container.stdin, container.stdinPipe = io.Pipe()
} else {
container.stdinPipe = NopWriteCloser(ioutil.Discard) // Silently drop stdin
}
container.State = newState()
return container, nil
}
func (container *Container) Cmd() *exec.Cmd {
return container.cmd
}
func (container *Container) When() time.Time {
return container.Created
}
func (container *Container) loadUserData() (map[string]string, error) {
jsonData, err := ioutil.ReadFile(path.Join(container.Root, "userdata.json"))
if err != nil {
if os.IsNotExist(err) {
return make(map[string]string), nil
}
return nil, err
}
data := make(map[string]string)
if err := json.Unmarshal(jsonData, &data); err != nil {
return nil, err
}
return data, nil
}
func (container *Container) saveUserData(data map[string]string) error {
jsonData, err := json.Marshal(data)
if err != nil {
return err
}
return ioutil.WriteFile(path.Join(container.Root, "userdata.json"), jsonData, 0700)
}
func (container *Container) SetUserData(key, value string) error {
data, err := container.loadUserData()
if err != nil {
return err
}
data[key] = value
return container.saveUserData(data)
}
func (container *Container) GetUserData(key string) string {
data, err := container.loadUserData()
if err != nil {
return ""
}
if value, exists := data[key]; exists {
return value
}
return ""
}
func (container *Container) save() (err error) {
data, err := json.Marshal(container)
if err != nil {
return
}
return ioutil.WriteFile(path.Join(container.Root, "config.json"), data, 0666)
}
func (container *Container) generateLXCConfig() error {
fo, err := os.Create(container.lxcConfigPath)
if err != nil {
return err
}
defer fo.Close()
if err := LxcTemplateCompiled.Execute(fo, container); err != nil {
return err
}
return nil
}
func (container *Container) startPty() error {
stdout_master, stdout_slave, err := pty.Open()
if err != nil {
return err
}
container.cmd.Stdout = stdout_slave
stderr_master, stderr_slave, err := pty.Open()
if err != nil {
return err
}
container.cmd.Stderr = stderr_slave
// Copy the PTYs to our broadcasters
go func() {
defer container.stdout.Close()
io.Copy(container.stdout, stdout_master)
}()
go func() {
defer container.stderr.Close()
io.Copy(container.stderr, stderr_master)
}()
// stdin
var stdin_slave io.ReadCloser
if container.Config.OpenStdin {
stdin_master, stdin_slave, err := pty.Open()
if err != nil {
return err
}
container.cmd.Stdin = stdin_slave
// FIXME: The following appears to be broken.
// "cannot set terminal process group (-1): Inappropriate ioctl for device"
// container.cmd.SysProcAttr = &syscall.SysProcAttr{Setctty: true, Setsid: true}
go func() {
defer container.stdin.Close()
io.Copy(stdin_master, container.stdin)
}()
}
if err := container.cmd.Start(); err != nil {
return err
}
stdout_slave.Close()
stderr_slave.Close()
if stdin_slave != nil {
stdin_slave.Close()
}
return nil
}
func (container *Container) start() error {
container.cmd.Stdout = container.stdout
container.cmd.Stderr = container.stderr
if container.Config.OpenStdin {
stdin, err := container.cmd.StdinPipe()
if err != nil {
return err
}
go func() {
defer stdin.Close()
io.Copy(stdin, container.stdin)
}()
}
return container.cmd.Start()
}
func (container *Container) Start() error {
if err := container.Mountpoint.EnsureMounted(); err != nil {
return err
}
if err := container.allocateNetwork(); err != nil {
return err
}
if err := container.generateLXCConfig(); err != nil {
return err
}
params := []string{
"-n", container.Id,
"-f", container.lxcConfigPath,
"--",
"/sbin/init",
}
// Networking
params = append(params, "-g", container.network.Gateway.String())
// User
if container.Config.User != "" {
params = append(params, "-u", container.Config.User)
}
// Program
params = append(params, "--", container.Path)
params = append(params, container.Args...)
container.cmd = exec.Command("/usr/bin/lxc-start", params...)
var err error
if container.Config.Tty {
err = container.startPty()
} else {
err = container.start()
}
if err != nil {
return err
}
container.State.setRunning(container.cmd.Process.Pid)
container.save()
go container.monitor()
return nil
}
func (container *Container) Run() error {
if err := container.Start(); err != nil {
return err
}
container.Wait()
return nil
}
func (container *Container) Output() (output []byte, err error) {
pipe, err := container.StdoutPipe()
if err != nil {
return nil, err
}
defer pipe.Close()
if err := container.Start(); err != nil {
return nil, err
}
output, err = ioutil.ReadAll(pipe)
container.Wait()
return output, err
}
// StdinPipe() returns a pipe connected to the standard input of the container's
// active process.
//
func (container *Container) StdinPipe() (io.WriteCloser, error) {
return container.stdinPipe, nil
}
func (container *Container) StdoutPipe() (io.ReadCloser, error) {
reader, writer := io.Pipe()
container.stdout.AddWriter(writer)
return newBufReader(reader), nil
}
func (container *Container) StdoutLog() io.Reader {
r, err := os.Open(container.stdoutLog.Name())
if err != nil {
return nil
}
return r
}
func (container *Container) StderrPipe() (io.ReadCloser, error) {
reader, writer := io.Pipe()
container.stderr.AddWriter(writer)
return newBufReader(reader), nil
}
func (container *Container) StderrLog() io.Reader {
r, err := os.Open(container.stderrLog.Name())
if err != nil {
return nil
}
return r
}
func (container *Container) allocateNetwork() error {
iface, err := container.networkManager.Allocate()
if err != nil {
return err
}
container.NetworkSettings.PortMapping = make(map[string]string)
for _, port := range container.Config.Ports {
if extPort, err := iface.AllocatePort(port); err != nil {
iface.Release()
return err
} else {
container.NetworkSettings.PortMapping[strconv.Itoa(port)] = strconv.Itoa(extPort)
}
}
container.network = iface
container.NetworkSettings.IpAddress = iface.IPNet.IP.String()
container.NetworkSettings.IpPrefixLen, _ = iface.IPNet.Mask.Size()
container.NetworkSettings.Gateway = iface.Gateway.String()
return nil
}
func (container *Container) releaseNetwork() error {
err := container.network.Release()
container.network = nil
container.NetworkSettings = &NetworkSettings{}
return err
}
func (container *Container) monitor() {
// Wait for the program to exit
container.cmd.Wait()
exitCode := container.cmd.ProcessState.Sys().(syscall.WaitStatus).ExitStatus()
// Cleanup
if err := container.releaseNetwork(); err != nil {
log.Printf("%v: Failed to release network: %v", container.Id, err)
}
container.stdout.Close()
container.stderr.Close()
if err := container.Mountpoint.Umount(); err != nil {
log.Printf("%v: Failed to umount filesystem: %v", container.Id, err)
}
// Re-create a brand new stdin pipe once the container exited
if container.Config.OpenStdin {
container.stdin, container.stdinPipe = io.Pipe()
}
// Report status back
container.State.setStopped(exitCode)
container.save()
}
func (container *Container) kill() error {
if err := container.cmd.Process.Kill(); err != nil {
return err
}
// Wait for the container to be actually stopped
container.Wait()
return nil
}
func (container *Container) Kill() error {
if !container.State.Running {
return nil
}
return container.kill()
}
func (container *Container) Stop() error {
if !container.State.Running {
return nil
}
// 1. Send a SIGTERM
if output, err := exec.Command("/usr/bin/lxc-kill", "-n", container.Id, "15").CombinedOutput(); err != nil {
log.Printf(string(output))
log.Printf("Failed to send SIGTERM to the process, force killing")
if err := container.Kill(); err != nil {
return err
}
}
// 2. Wait for the process to exit on its own
if err := container.WaitTimeout(10 * time.Second); err != nil {
log.Printf("Container %v failed to exit within 10 seconds of SIGTERM - using the force", container.Id)
if err := container.Kill(); err != nil {
return err
}
}
return nil
}
func (container *Container) Restart() error {
if err := container.Stop(); err != nil {
return err
}
if err := container.Start(); err != nil {
return err
}
return nil
}
// Wait blocks until the container stops running, then returns its exit code.
func (container *Container) Wait() int {
for container.State.Running {
container.State.wait()
}
return container.State.ExitCode
}
func (container *Container) WaitTimeout(timeout time.Duration) error {
done := make(chan bool)
go func() {
container.Wait()
done <- true
}()
select {
case <-time.After(timeout):
return errors.New("Timed Out")
case <-done:
return nil
}
return nil
}
+759
View File
@@ -0,0 +1,759 @@
package docker
import (
"./fs"
"bufio"
"fmt"
"io"
"io/ioutil"
"math/rand"
"os"
"sort"
"strings"
"testing"
"time"
)
func TestCommitRun(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
container1, err := docker.Create(
"precommit_test",
"/bin/sh",
[]string{"-c", "echo hello > /world"},
GetTestImage(docker),
&Config{
Memory: 33554432,
},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container1)
if container1.State.Running {
t.Errorf("Container shouldn't be running")
}
if err := container1.Run(); err != nil {
t.Fatal(err)
}
if container1.State.Running {
t.Errorf("Container shouldn't be running")
}
// FIXME: freeze the container before copying it to avoid data corruption?
rwTar, err := fs.Tar(container1.Mountpoint.Rw, fs.Uncompressed)
if err != nil {
t.Error(err)
}
// Create a new image from the container's base layers + a new layer from container changes
parentImg, err := docker.Store.Get(container1.Image)
if err != nil {
t.Error(err)
}
img, err := docker.Store.Create(rwTar, parentImg, "test_commitrun", "unit test commited image")
if err != nil {
t.Error(err)
}
// FIXME: Make a TestCommit that stops here and check docker.root/layers/img.id/world
container2, err := docker.Create(
"postcommit_test",
"cat",
[]string{"/world"},
img,
&Config{
Memory: 33554432,
},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container2)
stdout, err := container2.StdoutPipe()
stderr, err := container2.StderrPipe()
if err := container2.Start(); err != nil {
t.Fatal(err)
}
container2.Wait()
output, err := ioutil.ReadAll(stdout)
output2, err := ioutil.ReadAll(stderr)
stdout.Close()
stderr.Close()
if string(output) != "hello\n" {
t.Fatalf("\nout: %s\nerr: %s\n", string(output), string(output2))
}
}
func TestRun(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
container, err := docker.Create(
"run_test",
"ls",
[]string{"-al"},
GetTestImage(docker),
&Config{
Memory: 33554432,
},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
if container.State.Running {
t.Errorf("Container shouldn't be running")
}
if err := container.Run(); err != nil {
t.Fatal(err)
}
if container.State.Running {
t.Errorf("Container shouldn't be running")
}
}
func TestOutput(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
container, err := docker.Create(
"output_test",
"echo",
[]string{"-n", "foobar"},
GetTestImage(docker),
&Config{},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
output, err := container.Output()
if err != nil {
t.Fatal(err)
}
if string(output) != "foobar" {
t.Error(string(output))
}
}
func TestKill(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
container, err := docker.Create(
"stop_test",
"cat",
[]string{"/dev/zero"},
GetTestImage(docker),
&Config{},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
if container.State.Running {
t.Errorf("Container shouldn't be running")
}
if err := container.Start(); err != nil {
t.Fatal(err)
}
if !container.State.Running {
t.Errorf("Container should be running")
}
if err := container.Kill(); err != nil {
t.Fatal(err)
}
if container.State.Running {
t.Errorf("Container shouldn't be running")
}
container.Wait()
if container.State.Running {
t.Errorf("Container shouldn't be running")
}
// Try stopping twice
if err := container.Kill(); err != nil {
t.Fatal(err)
}
}
func TestExitCode(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
trueContainer, err := docker.Create(
"exit_test_1",
"/bin/true",
[]string{""},
GetTestImage(docker),
&Config{},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(trueContainer)
if err := trueContainer.Run(); err != nil {
t.Fatal(err)
}
falseContainer, err := docker.Create(
"exit_test_2",
"/bin/false",
[]string{""},
GetTestImage(docker),
&Config{},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(falseContainer)
if err := falseContainer.Run(); err != nil {
t.Fatal(err)
}
if trueContainer.State.ExitCode != 0 {
t.Errorf("Unexpected exit code %v", trueContainer.State.ExitCode)
}
if falseContainer.State.ExitCode != 1 {
t.Errorf("Unexpected exit code %v", falseContainer.State.ExitCode)
}
}
func TestRestart(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
container, err := docker.Create(
"restart_test",
"echo",
[]string{"-n", "foobar"},
GetTestImage(docker),
&Config{},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
output, err := container.Output()
if err != nil {
t.Fatal(err)
}
if string(output) != "foobar" {
t.Error(string(output))
}
// Run the container again and check the output
output, err = container.Output()
if err != nil {
t.Fatal(err)
}
if string(output) != "foobar" {
t.Error(string(output))
}
}
func TestRestartStdin(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
container, err := docker.Create(
"restart_stdin_test",
"cat",
[]string{},
GetTestImage(docker),
&Config{
OpenStdin: true,
},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
stdin, err := container.StdinPipe()
stdout, err := container.StdoutPipe()
if err := container.Start(); err != nil {
t.Fatal(err)
}
io.WriteString(stdin, "hello world")
stdin.Close()
container.Wait()
output, err := ioutil.ReadAll(stdout)
stdout.Close()
if string(output) != "hello world" {
t.Fatal(string(output))
}
// Restart and try again
stdin, err = container.StdinPipe()
stdout, err = container.StdoutPipe()
if err := container.Start(); err != nil {
t.Fatal(err)
}
io.WriteString(stdin, "hello world #2")
stdin.Close()
container.Wait()
output, err = ioutil.ReadAll(stdout)
stdout.Close()
if string(output) != "hello world #2" {
t.Fatal(string(output))
}
}
func TestUser(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
// Default user must be root
container, err := docker.Create(
"user_default",
"id",
[]string{},
GetTestImage(docker),
&Config{},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
output, err := container.Output()
if err != nil {
t.Fatal(err)
}
if !strings.Contains(string(output), "uid=0(root) gid=0(root)") {
t.Error(string(output))
}
// Set a username
container, err = docker.Create(
"user_root",
"id",
[]string{},
GetTestImage(docker),
&Config{
User: "root",
},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
output, err = container.Output()
if err != nil || container.State.ExitCode != 0 {
t.Fatal(err)
}
if !strings.Contains(string(output), "uid=0(root) gid=0(root)") {
t.Error(string(output))
}
// Set a UID
container, err = docker.Create(
"user_uid0",
"id",
[]string{},
GetTestImage(docker),
&Config{
User: "0",
},
)
if err != nil || container.State.ExitCode != 0 {
t.Fatal(err)
}
defer docker.Destroy(container)
output, err = container.Output()
if err != nil || container.State.ExitCode != 0 {
t.Fatal(err)
}
if !strings.Contains(string(output), "uid=0(root) gid=0(root)") {
t.Error(string(output))
}
// Set a different user by uid
container, err = docker.Create(
"user_uid1",
"id",
[]string{},
GetTestImage(docker),
&Config{
User: "1",
},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
output, err = container.Output()
if err != nil {
t.Fatal(err)
} else if container.State.ExitCode != 0 {
t.Fatalf("Container exit code is invalid: %d\nOutput:\n%s\n", container.State.ExitCode, output)
}
if !strings.Contains(string(output), "uid=1(daemon) gid=1(daemon)") {
t.Error(string(output))
}
// Set a different user by username
container, err = docker.Create(
"user_daemon",
"id",
[]string{},
GetTestImage(docker),
&Config{
User: "daemon",
},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
output, err = container.Output()
if err != nil || container.State.ExitCode != 0 {
t.Fatal(err)
}
if !strings.Contains(string(output), "uid=1(daemon) gid=1(daemon)") {
t.Error(string(output))
}
}
func TestMultipleContainers(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
container1, err := docker.Create(
"container1",
"cat",
[]string{"/dev/zero"},
GetTestImage(docker),
&Config{},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container1)
container2, err := docker.Create(
"container2",
"cat",
[]string{"/dev/zero"},
GetTestImage(docker),
&Config{},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container2)
// Start both containers
if err := container1.Start(); err != nil {
t.Fatal(err)
}
if err := container2.Start(); err != nil {
t.Fatal(err)
}
// If we are here, both containers should be running
if !container1.State.Running {
t.Fatal("Container not running")
}
if !container2.State.Running {
t.Fatal("Container not running")
}
// Kill them
if err := container1.Kill(); err != nil {
t.Fatal(err)
}
if err := container2.Kill(); err != nil {
t.Fatal(err)
}
}
func TestStdin(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
container, err := docker.Create(
"stdin_test",
"cat",
[]string{},
GetTestImage(docker),
&Config{
OpenStdin: true,
},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
stdin, err := container.StdinPipe()
stdout, err := container.StdoutPipe()
defer stdin.Close()
defer stdout.Close()
if err := container.Start(); err != nil {
t.Fatal(err)
}
io.WriteString(stdin, "hello world")
stdin.Close()
container.Wait()
output, err := ioutil.ReadAll(stdout)
if string(output) != "hello world" {
t.Fatal(string(output))
}
}
func TestTty(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
container, err := docker.Create(
"tty_test",
"cat",
[]string{},
GetTestImage(docker),
&Config{
OpenStdin: true,
},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
stdin, err := container.StdinPipe()
stdout, err := container.StdoutPipe()
defer stdin.Close()
defer stdout.Close()
if err := container.Start(); err != nil {
t.Fatal(err)
}
io.WriteString(stdin, "hello world")
stdin.Close()
container.Wait()
output, err := ioutil.ReadAll(stdout)
if string(output) != "hello world" {
t.Fatal(string(output))
}
}
func TestEnv(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
container, err := docker.Create(
"env_test",
"/usr/bin/env",
[]string{},
GetTestImage(docker),
&Config{},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
stdout, err := container.StdoutPipe()
if err != nil {
t.Fatal(err)
}
defer stdout.Close()
if err := container.Start(); err != nil {
t.Fatal(err)
}
container.Wait()
output, err := ioutil.ReadAll(stdout)
if err != nil {
t.Fatal(err)
}
actualEnv := strings.Split(string(output), "\n")
if actualEnv[len(actualEnv)-1] == "" {
actualEnv = actualEnv[:len(actualEnv)-1]
}
sort.Strings(actualEnv)
goodEnv := []string{
"PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin",
"HOME=/",
}
sort.Strings(goodEnv)
if len(goodEnv) != len(actualEnv) {
t.Fatalf("Wrong environment: should be %d variables, not: '%s'\n", len(goodEnv), strings.Join(actualEnv, ", "))
}
for i := range goodEnv {
if actualEnv[i] != goodEnv[i] {
t.Fatalf("Wrong environment variable: should be %s, not %s", goodEnv[i], actualEnv[i])
}
}
}
func grepFile(t *testing.T, path string, pattern string) {
f, err := os.Open(path)
if err != nil {
t.Fatal(err)
}
defer f.Close()
r := bufio.NewReader(f)
var (
line string
)
err = nil
for err == nil {
line, err = r.ReadString('\n')
if strings.Contains(line, pattern) == true {
return
}
}
t.Fatalf("grepFile: pattern \"%s\" not found in \"%s\"", pattern, path)
}
func TestLXCConfig(t *testing.T) {
docker, err := newTestDocker()
if err != nil {
t.Fatal(err)
}
defer nuke(docker)
// Memory is allocated randomly for testing
rand.Seed(time.Now().UTC().UnixNano())
memMin := 33554432
memMax := 536870912
mem := memMin + rand.Intn(memMax-memMin)
container, err := docker.Create(
"config_test",
"/bin/true",
[]string{},
GetTestImage(docker),
&Config{
Hostname: "foobar",
Memory: int64(mem),
},
)
if err != nil {
t.Fatal(err)
}
defer docker.Destroy(container)
container.generateLXCConfig()
grepFile(t, container.lxcConfigPath, "lxc.utsname = foobar")
grepFile(t, container.lxcConfigPath,
fmt.Sprintf("lxc.cgroup.memory.limit_in_bytes = %d", mem))
grepFile(t, container.lxcConfigPath,
fmt.Sprintf("lxc.cgroup.memory.memsw.limit_in_bytes = %d", mem*2))
}
func BenchmarkRunSequencial(b *testing.B) {
docker, err := newTestDocker()
if err != nil {
b.Fatal(err)
}
defer nuke(docker)
for i := 0; i < b.N; i++ {
container, err := docker.Create(
fmt.Sprintf("bench_%v", i),
"echo",
[]string{"-n", "foo"},
GetTestImage(docker),
&Config{},
)
if err != nil {
b.Fatal(err)
}
defer docker.Destroy(container)
output, err := container.Output()
if err != nil {
b.Fatal(err)
}
if string(output) != "foo" {
b.Fatalf("Unexecpted output: %v", string(output))
}
if err := docker.Destroy(container); err != nil {
b.Fatal(err)
}
}
}
func BenchmarkRunParallel(b *testing.B) {
docker, err := newTestDocker()
if err != nil {
b.Fatal(err)
}
defer nuke(docker)
var tasks []chan error
for i := 0; i < b.N; i++ {
complete := make(chan error)
tasks = append(tasks, complete)
go func(i int, complete chan error) {
container, err := docker.Create(
fmt.Sprintf("bench_%v", i),
"echo",
[]string{"-n", "foo"},
GetTestImage(docker),
&Config{},
)
if err != nil {
complete <- err
return
}
defer docker.Destroy(container)
if err := container.Start(); err != nil {
complete <- err
return
}
if err := container.WaitTimeout(15 * time.Second); err != nil {
complete <- err
return
}
// if string(output) != "foo" {
// complete <- fmt.Errorf("Unexecpted output: %v", string(output))
// }
if err := docker.Destroy(container); err != nil {
complete <- err
return
}
complete <- nil
}(i, complete)
}
var errors []error
for _, task := range tasks {
err := <-task
if err != nil {
errors = append(errors, err)
}
}
if len(errors) > 0 {
b.Fatal(errors)
}
}
-1
View File
@@ -1 +0,0 @@
Tianon Gravi <admwiggin@gmail.com> (@tianon)
-4
View File
@@ -1,4 +0,0 @@
The `contrib` directory contains scripts, images, and other helpful things
which are not part of the core docker distribution. Please note that they
could be out of date, since they do not receive the same attention as the
rest of the repository.
-153
View File
@@ -1,153 +0,0 @@
#!/usr/bin/env bash
set -e
# bits of this were adapted from lxc-checkconfig
# see also https://github.com/lxc/lxc/blob/lxc-1.0.2/src/lxc/lxc-checkconfig.in
possibleConfigs=(
'/proc/config.gz'
"/boot/config-$(uname -r)"
"/usr/src/linux-$(uname -r)/.config"
'/usr/src/linux/.config'
)
: ${CONFIG:="${possibleConfigs[0]}"}
if ! command -v zgrep &> /dev/null; then
zgrep() {
zcat "$2" | grep "$1"
}
fi
is_set() {
zgrep "CONFIG_$1=[y|m]" "$CONFIG" > /dev/null
}
# see http://en.wikipedia.org/wiki/ANSI_escape_code#Colors
declare -A colors=(
[black]=30
[red]=31
[green]=32
[yellow]=33
[blue]=34
[magenta]=35
[cyan]=36
[white]=37
)
color() {
color=()
if [ "$1" = 'bold' ]; then
color+=( '1' )
shift
fi
if [ $# -gt 0 ] && [ "${colors[$1]}" ]; then
color+=( "${colors[$1]}" )
fi
local IFS=';'
echo -en '\033['"${color[*]}"m
}
wrap_color() {
text="$1"
shift
color "$@"
echo -n "$text"
color reset
echo
}
wrap_good() {
echo "$(wrap_color "$1" white): $(wrap_color "$2" green)"
}
wrap_bad() {
echo "$(wrap_color "$1" bold): $(wrap_color "$2" bold red)"
}
wrap_warning() {
wrap_color >&2 "$*" red
}
check_flag() {
if is_set "$1"; then
wrap_good "CONFIG_$1" 'enabled'
else
wrap_bad "CONFIG_$1" 'missing'
fi
}
check_flags() {
for flag in "$@"; do
echo "- $(check_flag "$flag")"
done
}
if [ ! -e "$CONFIG" ]; then
wrap_warning "warning: $CONFIG does not exist, searching other paths for kernel config..."
for tryConfig in "${possibleConfigs[@]}"; do
if [ -e "$tryConfig" ]; then
CONFIG="$tryConfig"
break
fi
done
if [ ! -e "$CONFIG" ]; then
wrap_warning "error: cannot find kernel config"
wrap_warning " try running this script again, specifying the kernel config:"
wrap_warning " CONFIG=/path/to/kernel/.config $0"
exit 1
fi
fi
wrap_color "info: reading kernel config from $CONFIG ..." white
echo
echo 'Generally Necessary:'
echo -n '- '
cgroupSubsystemDir="$(awk '/[, ](cpu|cpuacct|cpuset|devices|freezer|memory)([, ]|$)/ && $8 == "cgroup" { print $5 }' /proc/$$/mountinfo | head -n1)"
cgroupDir="$(dirname "$cgroupSubsystemDir")"
if [ -d "$cgroupDir/cpu" -o -d "$cgroupDir/cpuacct" -o -d "$cgroupDir/cpuset" -o -d "$cgroupDir/devices" -o -d "$cgroupDir/freezer" -o -d "$cgroupDir/memory" ]; then
echo "$(wrap_good 'cgroup hierarchy' 'properly mounted') [$cgroupDir]"
else
if [ "$cgroupSubsystemDir" ]; then
echo "$(wrap_bad 'cgroup hierarchy' 'single mountpoint!') [$cgroupSubsystemDir]"
else
echo "$(wrap_bad 'cgroup hierarchy' 'nonexistent??')"
fi
echo " $(wrap_color '(see https://github.com/tianon/cgroupfs-mount)' yellow)"
fi
flags=(
NAMESPACES {NET,PID,IPC,UTS}_NS
DEVPTS_MULTIPLE_INSTANCES
CGROUPS CGROUP_DEVICE
MACVLAN VETH BRIDGE
NF_NAT_IPV4 IP_NF_TARGET_MASQUERADE
NETFILTER_XT_MATCH_{ADDRTYPE,CONNTRACK}
NF_NAT NF_NAT_NEEDED
)
check_flags "${flags[@]}"
echo
echo 'Optional Features:'
flags=(
MEMCG_SWAP
RESOURCE_COUNTERS
)
check_flags "${flags[@]}"
echo '- Storage Drivers:'
{
echo '- "'$(wrap_color 'aufs' blue)'":'
check_flags AUFS_FS | sed 's/^/ /'
if ! is_set AUFS_FS && grep -q aufs /proc/filesystems; then
echo " $(wrap_color '(note that some kernels include AUFS patches but not the AUFS_FS flag)' bold black)"
fi
echo '- "'$(wrap_color 'btrfs' blue)'":'
check_flags BTRFS_FS | sed 's/^/ /'
echo '- "'$(wrap_color 'devicemapper' blue)'":'
check_flags BLK_DEV_DM DM_THIN_PROVISIONING EXT4_FS | sed 's/^/ /'
} | sed 's/^/ /'
echo
#echo 'Potential Future Features:'
#check_flags USER_NS
#echo
-689
View File
@@ -1,689 +0,0 @@
#!bash
#
# bash completion file for core docker commands
#
# This script provides supports completion of:
# - commands and their options
# - container ids and names
# - image repos and tags
# - filepaths
#
# To enable the completions either:
# - place this file in /etc/bash_completion.d
# or
# - copy this file and add the line below to your .bashrc after
# bash completion features are loaded
# . docker.bash
#
# Note:
# Currently, the completions will not work if the docker daemon is not
# bound to the default communication port/socket
# If the docker daemon is using a unix socket for communication your user
# must have access to the socket for the completions to function correctly
__docker_q() {
docker 2>/dev/null "$@"
}
__docker_containers_all()
{
local containers="$( __docker_q ps -a -q )"
local names="$( __docker_q inspect --format '{{.Name}}' $containers | sed 's,^/,,' )"
COMPREPLY=( $( compgen -W "$names $containers" -- "$cur" ) )
}
__docker_containers_running()
{
local containers="$( __docker_q ps -q )"
local names="$( __docker_q inspect --format '{{.Name}}' $containers | sed 's,^/,,' )"
COMPREPLY=( $( compgen -W "$names $containers" -- "$cur" ) )
}
__docker_containers_stopped()
{
local containers="$( { __docker_q ps -a -q; __docker_q ps -q; } | sort | uniq -u )"
local names="$( __docker_q inspect --format '{{.Name}}' $containers | sed 's,^/,,' )"
COMPREPLY=( $( compgen -W "$names $containers" -- "$cur" ) )
}
__docker_image_repos()
{
local repos="$( __docker_q images | awk 'NR>1{print $1}' | grep -v '^<none>$' )"
COMPREPLY=( $( compgen -W "$repos" -- "$cur" ) )
}
__docker_image_repos_and_tags()
{
local repos="$( __docker_q images | awk 'NR>1{print $1}' | grep -v '^<none>$' )"
local images="$( __docker_q images | awk 'NR>1{print $1":"$2}' | grep -v '^<none>:' )"
COMPREPLY=( $( compgen -W "$repos $images" -- "$cur" ) )
__ltrim_colon_completions "$cur"
}
__docker_image_repos_and_tags_and_ids()
{
local repos="$( __docker_q images | awk 'NR>1{print $1}' | grep -v '^<none>$' )"
local images="$( __docker_q images | awk 'NR>1{print $1":"$2}' | grep -v '^<none>:' )"
local ids="$( __docker_q images -a -q )"
COMPREPLY=( $( compgen -W "$repos $images $ids" -- "$cur" ) )
__ltrim_colon_completions "$cur"
}
__docker_containers_and_images()
{
local containers="$( __docker_q ps -a -q )"
local names="$( __docker_q inspect --format '{{.Name}}' $containers | sed 's,^/,,' )"
local repos="$( __docker_q images | awk 'NR>1{print $1}' | grep -v '^<none>$' )"
local images="$( __docker_q images | awk 'NR>1{print $1":"$2}' | grep -v '^<none>:' )"
local ids="$( __docker_q images -a -q )"
COMPREPLY=( $( compgen -W "$containers $names $repos $images $ids" -- "$cur" ) )
__ltrim_colon_completions "$cur"
}
__docker_pos_first_nonflag()
{
local argument_flags=$1
local counter=$cpos
while [ $counter -le $cword ]; do
if [ -n "$argument_flags" ] && eval "case '${words[$counter]}' in $argument_flags) true ;; *) false ;; esac"; then
(( counter++ ))
else
case "${words[$counter]}" in
-*)
;;
*)
break
;;
esac
fi
(( counter++ ))
done
echo $counter
}
_docker_docker()
{
case "$prev" in
-H)
return
;;
*)
;;
esac
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-H" -- "$cur" ) )
;;
*)
COMPREPLY=( $( compgen -W "$commands help" -- "$cur" ) )
;;
esac
}
_docker_attach()
{
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "--no-stdin --sig-proxy" -- "$cur" ) )
;;
*)
local counter="$(__docker_pos_first_nonflag)"
if [ $cword -eq $counter ]; then
__docker_containers_running
fi
;;
esac
}
_docker_build()
{
case "$prev" in
-t|--tag)
__docker_image_repos_and_tags
return
;;
*)
;;
esac
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-t --tag -q --quiet --no-cache --rm" -- "$cur" ) )
;;
*)
local counter="$(__docker_pos_first_nonflag '-t|--tag')"
if [ $cword -eq $counter ]; then
_filedir
fi
;;
esac
}
_docker_commit()
{
case "$prev" in
-m|--message|-a|--author|--run)
return
;;
*)
;;
esac
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-m --message -a --author --run" -- "$cur" ) )
;;
*)
local counter=$(__docker_pos_first_nonflag '-m|--message|-a|--author|--run')
if [ $cword -eq $counter ]; then
__docker_containers_all
return
fi
(( counter++ ))
if [ $cword -eq $counter ]; then
__docker_image_repos_and_tags
return
fi
;;
esac
}
_docker_cp()
{
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
case "$cur" in
*:)
return
;;
*)
__docker_containers_all
COMPREPLY=( $( compgen -W "${COMPREPLY[*]}" -S ':' ) )
compopt -o nospace
return
;;
esac
fi
(( counter++ ))
if [ $cword -eq $counter ]; then
_filedir
return
fi
}
_docker_diff()
{
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
__docker_containers_all
fi
}
_docker_events()
{
case "$prev" in
--since)
return
;;
*)
;;
esac
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "--since" -- "$cur" ) )
;;
*)
;;
esac
}
_docker_export()
{
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
__docker_containers_all
fi
}
_docker_help()
{
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
COMPREPLY=( $( compgen -W "$commands" -- "$cur" ) )
fi
}
_docker_history()
{
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-q --quiet --no-trunc" -- "$cur" ) )
;;
*)
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
__docker_image_repos_and_tags_and_ids
fi
;;
esac
}
_docker_images()
{
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-q --quiet -a --all --no-trunc -v --viz -t --tree" -- "$cur" ) )
;;
*)
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
__docker_image_repos
fi
;;
esac
}
_docker_import()
{
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
return
fi
(( counter++ ))
if [ $cword -eq $counter ]; then
__docker_image_repos_and_tags
return
fi
}
_docker_info()
{
return
}
_docker_insert()
{
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
__docker_image_repos_and_tags_and_ids
fi
}
_docker_inspect()
{
case "$prev" in
-f|--format)
return
;;
*)
;;
esac
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-f --format" -- "$cur" ) )
;;
*)
__docker_containers_and_images
;;
esac
}
_docker_kill()
{
__docker_containers_running
}
_docker_load()
{
return
}
_docker_login()
{
case "$prev" in
-u|--username|-p|--password|-e|--email)
return
;;
*)
;;
esac
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-u --username -p --password -e --email" -- "$cur" ) )
;;
*)
;;
esac
}
_docker_logs()
{
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-f --follow" -- "$cur" ) )
;;
*)
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
__docker_containers_all
fi
;;
esac
}
_docker_port()
{
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
__docker_containers_all
fi
}
_docker_ps()
{
case "$prev" in
--since|--before)
__docker_containers_all
;;
-n)
return
;;
*)
;;
esac
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-q --quiet -s --size -a --all --no-trunc -l --latest --since --before -n" -- "$cur" ) )
;;
*)
;;
esac
}
_docker_pull()
{
case "$prev" in
-t|--tag)
return
;;
*)
;;
esac
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-t --tag" -- "$cur" ) )
;;
*)
local counter=$(__docker_pos_first_nonflag '-t|--tag')
if [ $cword -eq $counter ]; then
__docker_image_repos_and_tags
fi
;;
esac
}
_docker_push()
{
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
__docker_image_repos
# TODO replace this with __docker_image_repos_and_tags
# see https://github.com/dotcloud/docker/issues/3411
fi
}
_docker_restart()
{
case "$prev" in
-t|--time)
return
;;
*)
;;
esac
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-t --time" -- "$cur" ) )
;;
*)
__docker_containers_all
;;
esac
}
_docker_rm()
{
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-v --volumes -l --link" -- "$cur" ) )
;;
*)
__docker_containers_stopped
;;
esac
}
_docker_rmi()
{
__docker_image_repos_and_tags_and_ids
}
_docker_run()
{
case "$prev" in
--cidfile)
_filedir
;;
--volumes-from)
__docker_containers_all
;;
-v|--volume)
# TODO something magical with colons and _filedir ?
return
;;
-e|--env)
COMPREPLY=( $( compgen -e -- "$cur" ) )
return
;;
--entrypoint|-h|--hostname|-m|--memory|-u|--user|-w|--workdir|-c|--cpu-shares|-n|--name|-a|--attach|--link|-p|--publish|--expose|--dns|--lxc-conf)
return
;;
*)
;;
esac
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "--rm -d --detach -n --networking --privileged -P --publish-all -i --interactive -t --tty --cidfile --entrypoint -h --hostname -m --memory -u --user -w --workdir -c --cpu-shares --sig-proxy --name -a --attach -v --volume --link -e --env -p --publish --expose --dns --volumes-from --lxc-conf" -- "$cur" ) )
;;
*)
local counter=$(__docker_pos_first_nonflag '--cidfile|--volumes-from|-v|--volume|-e|--env|--entrypoint|-h|--hostname|-m|--memory|-u|--user|-w|--workdir|-c|--cpu-shares|-n|--name|-a|--attach|--link|-p|--publish|--expose|--dns|--lxc-conf')
if [ $cword -eq $counter ]; then
__docker_image_repos_and_tags_and_ids
fi
;;
esac
}
_docker_save()
{
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
__docker_image_repos_and_tags_and_ids
fi
}
_docker_search()
{
case "$prev" in
-s|--stars)
return
;;
*)
;;
esac
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "--no-trunc -t --trusted -s --stars" -- "$cur" ) )
;;
*)
;;
esac
}
_docker_start()
{
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-a --attach -i --interactive" -- "$cur" ) )
;;
*)
__docker_containers_stopped
;;
esac
}
_docker_stop()
{
case "$prev" in
-t|--time)
return
;;
*)
;;
esac
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-t --time" -- "$cur" ) )
;;
*)
__docker_containers_running
;;
esac
}
_docker_tag()
{
case "$cur" in
-*)
COMPREPLY=( $( compgen -W "-f --force" -- "$cur" ) )
;;
*)
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
__docker_image_repos_and_tags
return
fi
(( counter++ ))
if [ $cword -eq $counter ]; then
__docker_image_repos_and_tags
return
fi
;;
esac
}
_docker_top()
{
local counter=$(__docker_pos_first_nonflag)
if [ $cword -eq $counter ]; then
__docker_containers_running
fi
}
_docker_version()
{
return
}
_docker_wait()
{
__docker_containers_all
}
_docker()
{
local commands="
attach
build
commit
cp
diff
events
export
history
images
import
info
insert
inspect
kill
load
login
logs
port
ps
pull
push
restart
rm
rmi
run
save
search
start
stop
tag
top
version
wait
"
COMPREPLY=()
local cur prev words cword
_get_comp_words_by_ref -n : cur prev words cword
local command='docker'
local counter=1
while [ $counter -lt $cword ]; do
case "${words[$counter]}" in
-H)
(( counter++ ))
;;
-*)
;;
*)
command="${words[$counter]}"
cpos=$counter
(( cpos++ ))
break
;;
esac
(( counter++ ))
done
local completions_func=_docker_${command}
declare -F $completions_func >/dev/null && $completions_func
return 0
}
complete -F _docker docker
-261
View File
@@ -1,261 +0,0 @@
# docker.fish - docker completions for fish shell
#
# This file is generated by gen_docker_fish_completions.py from:
# https://github.com/barnybug/docker-fish-completion
#
# To install the completions:
# mkdir -p ~/.config/fish/completions
# cp docker.fish ~/.config/fish/completions
#
# Completion supported:
# - parameters
# - commands
# - containers
# - images
# - repositories
function __fish_docker_no_subcommand --description 'Test if docker has yet to be given the subcommand'
for i in (commandline -opc)
if contains -- $i attach build commit cp diff events export history images import info insert inspect kill load login logs port ps pull push restart rm rmi run save search start stop tag top version wait
return 1
end
end
return 0
end
function __fish_print_docker_containers --description 'Print a list of docker containers' -a select
switch $select
case running
docker ps -a --no-trunc | command awk 'NR>1' | command awk 'BEGIN {FS=" +"}; $5 ~ "^Up" {print $1 "\n" $(NF-1)}' | tr ',' '\n'
case stopped
docker ps -a --no-trunc | command awk 'NR>1' | command awk 'BEGIN {FS=" +"}; $5 ~ "^Exit" {print $1 "\n" $(NF-1)}' | tr ',' '\n'
case all
docker ps -a --no-trunc | command awk 'NR>1' | command awk 'BEGIN {FS=" +"}; {print $1 "\n" $(NF-1)}' | tr ',' '\n'
end
end
function __fish_print_docker_images --description 'Print a list of docker images'
docker images | command awk 'NR>1' | command grep -v '<none>' | command awk '{print $1":"$2}'
end
function __fish_print_docker_repositories --description 'Print a list of docker repositories'
docker images | command awk 'NR>1' | command grep -v '<none>' | command awk '{print $1}' | command sort | command uniq
end
# common options
complete -c docker -f -n '__fish_docker_no_subcommand' -s D -l debug -d 'Enable debug mode'
complete -c docker -f -n '__fish_docker_no_subcommand' -s G -l group -d "Group to assign the unix socket specified by -H when running in daemon mode; use '' (the empty string) to disable setting of a group"
complete -c docker -f -n '__fish_docker_no_subcommand' -s H -l host -d 'tcp://host:port, unix://path/to/socket, fd://* or fd://socketfd to use in daemon mode. Multiple sockets can be specified'
complete -c docker -f -n '__fish_docker_no_subcommand' -l api-enable-cors -d 'Enable CORS headers in the remote API'
complete -c docker -f -n '__fish_docker_no_subcommand' -s b -l bridge -d "Attach containers to a pre-existing network bridge; use 'none' to disable container networking"
complete -c docker -f -n '__fish_docker_no_subcommand' -l bip -d "Use this CIDR notation address for the network bridge's IP, not compatible with -b"
complete -c docker -f -n '__fish_docker_no_subcommand' -s d -l daemon -d 'Enable daemon mode'
complete -c docker -f -n '__fish_docker_no_subcommand' -l dns -d 'Force docker to use specific DNS servers'
complete -c docker -f -n '__fish_docker_no_subcommand' -s e -l exec-driver -d 'Force the docker runtime to use a specific exec driver'
complete -c docker -f -n '__fish_docker_no_subcommand' -s g -l graph -d 'Path to use as the root of the docker runtime'
complete -c docker -f -n '__fish_docker_no_subcommand' -l icc -d 'Enable inter-container communication'
complete -c docker -f -n '__fish_docker_no_subcommand' -l ip -d 'Default IP address to use when binding container ports'
complete -c docker -f -n '__fish_docker_no_subcommand' -l ip-forward -d 'Disable enabling of net.ipv4.ip_forward'
complete -c docker -f -n '__fish_docker_no_subcommand' -l iptables -d "Disable docker's addition of iptables rules"
complete -c docker -f -n '__fish_docker_no_subcommand' -l mtu -d 'Set the containers network MTU; if no value is provided: default to the default route MTU or 1500 if no default route is available'
complete -c docker -f -n '__fish_docker_no_subcommand' -s p -l pidfile -d 'Path to use for daemon PID file'
complete -c docker -f -n '__fish_docker_no_subcommand' -s r -l restart -d 'Restart previously running containers'
complete -c docker -f -n '__fish_docker_no_subcommand' -s s -l storage-driver -d 'Force the docker runtime to use a specific storage driver'
complete -c docker -f -n '__fish_docker_no_subcommand' -s v -l version -d 'Print version information and quit'
# subcommands
# attach
complete -c docker -f -n '__fish_docker_no_subcommand' -a attach -d 'Attach to a running container'
complete -c docker -A -f -n '__fish_seen_subcommand_from attach' -l no-stdin -d 'Do not attach stdin'
complete -c docker -A -f -n '__fish_seen_subcommand_from attach' -l sig-proxy -d 'Proxify all received signal to the process (even in non-tty mode)'
complete -c docker -A -f -n '__fish_seen_subcommand_from attach' -a '(__fish_print_docker_containers running)' -d "Container"
# build
complete -c docker -f -n '__fish_docker_no_subcommand' -a build -d 'Build a container from a Dockerfile'
complete -c docker -A -f -n '__fish_seen_subcommand_from build' -l no-cache -d 'Do not use cache when building the image'
complete -c docker -A -f -n '__fish_seen_subcommand_from build' -s q -l quiet -d 'Suppress the verbose output generated by the containers'
complete -c docker -A -f -n '__fish_seen_subcommand_from build' -l rm -d 'Remove intermediate containers after a successful build'
complete -c docker -A -f -n '__fish_seen_subcommand_from build' -s t -l tag -d 'Repository name (and optionally a tag) to be applied to the resulting image in case of success'
# commit
complete -c docker -f -n '__fish_docker_no_subcommand' -a commit -d "Create a new image from a container's changes"
complete -c docker -A -f -n '__fish_seen_subcommand_from commit' -s a -l author -d 'Author (eg. "John Hannibal Smith <hannibal@a-team.com>"'
complete -c docker -A -f -n '__fish_seen_subcommand_from commit' -s m -l message -d 'Commit message'
complete -c docker -A -f -n '__fish_seen_subcommand_from commit' -l run -d 'Config automatically applied when the image is run. (ex: -run=\'{"Cmd": ["cat", "/world"], "PortSpecs": ["22"]}\')'
complete -c docker -A -f -n '__fish_seen_subcommand_from commit' -a '(__fish_print_docker_containers all)' -d "Container"
# cp
complete -c docker -f -n '__fish_docker_no_subcommand' -a cp -d 'Copy files/folders from the containers filesystem to the host path'
# diff
complete -c docker -f -n '__fish_docker_no_subcommand' -a diff -d "Inspect changes on a container's filesystem"
complete -c docker -A -f -n '__fish_seen_subcommand_from diff' -a '(__fish_print_docker_containers all)' -d "Container"
# events
complete -c docker -f -n '__fish_docker_no_subcommand' -a events -d 'Get real time events from the server'
complete -c docker -A -f -n '__fish_seen_subcommand_from events' -l since -d 'Show previously created events and then stream.'
# export
complete -c docker -f -n '__fish_docker_no_subcommand' -a export -d 'Stream the contents of a container as a tar archive'
complete -c docker -A -f -n '__fish_seen_subcommand_from export' -a '(__fish_print_docker_containers all)' -d "Container"
# history
complete -c docker -f -n '__fish_docker_no_subcommand' -a history -d 'Show the history of an image'
complete -c docker -A -f -n '__fish_seen_subcommand_from history' -l no-trunc -d "Don't truncate output"
complete -c docker -A -f -n '__fish_seen_subcommand_from history' -s q -l quiet -d 'Only show numeric IDs'
complete -c docker -A -f -n '__fish_seen_subcommand_from history' -a '(__fish_print_docker_images)' -d "Image"
# images
complete -c docker -f -n '__fish_docker_no_subcommand' -a images -d 'List images'
complete -c docker -A -f -n '__fish_seen_subcommand_from images' -s a -l all -d 'Show all images (by default filter out the intermediate image layers)'
complete -c docker -A -f -n '__fish_seen_subcommand_from images' -l no-trunc -d "Don't truncate output"
complete -c docker -A -f -n '__fish_seen_subcommand_from images' -s q -l quiet -d 'Only show numeric IDs'
complete -c docker -A -f -n '__fish_seen_subcommand_from images' -s t -l tree -d 'Output graph in tree format'
complete -c docker -A -f -n '__fish_seen_subcommand_from images' -s v -l viz -d 'Output graph in graphviz format'
complete -c docker -A -f -n '__fish_seen_subcommand_from images' -a '(__fish_print_docker_repositories)' -d "Repository"
# import
complete -c docker -f -n '__fish_docker_no_subcommand' -a import -d 'Create a new filesystem image from the contents of a tarball'
# info
complete -c docker -f -n '__fish_docker_no_subcommand' -a info -d 'Display system-wide information'
# insert
complete -c docker -f -n '__fish_docker_no_subcommand' -a insert -d 'Insert a file in an image'
complete -c docker -A -f -n '__fish_seen_subcommand_from insert' -a '(__fish_print_docker_images)' -d "Image"
# inspect
complete -c docker -f -n '__fish_docker_no_subcommand' -a inspect -d 'Return low-level information on a container'
complete -c docker -A -f -n '__fish_seen_subcommand_from inspect' -s f -l format -d 'Format the output using the given go template.'
complete -c docker -A -f -n '__fish_seen_subcommand_from inspect' -a '(__fish_print_docker_images)' -d "Image"
complete -c docker -A -f -n '__fish_seen_subcommand_from inspect' -a '(__fish_print_docker_containers all)' -d "Container"
# kill
complete -c docker -f -n '__fish_docker_no_subcommand' -a kill -d 'Kill a running container'
complete -c docker -A -f -n '__fish_seen_subcommand_from kill' -s s -l signal -d 'Signal to send to the container'
complete -c docker -A -f -n '__fish_seen_subcommand_from kill' -a '(__fish_print_docker_containers running)' -d "Container"
# load
complete -c docker -f -n '__fish_docker_no_subcommand' -a load -d 'Load an image from a tar archive'
# login
complete -c docker -f -n '__fish_docker_no_subcommand' -a login -d 'Register or Login to the docker registry server'
complete -c docker -A -f -n '__fish_seen_subcommand_from login' -s e -l email -d 'Email'
complete -c docker -A -f -n '__fish_seen_subcommand_from login' -s p -l password -d 'Password'
complete -c docker -A -f -n '__fish_seen_subcommand_from login' -s u -l username -d 'Username'
# logs
complete -c docker -f -n '__fish_docker_no_subcommand' -a logs -d 'Fetch the logs of a container'
complete -c docker -A -f -n '__fish_seen_subcommand_from logs' -s f -l follow -d 'Follow log output'
complete -c docker -A -f -n '__fish_seen_subcommand_from logs' -a '(__fish_print_docker_containers running)' -d "Container"
# port
complete -c docker -f -n '__fish_docker_no_subcommand' -a port -d 'Lookup the public-facing port which is NAT-ed to PRIVATE_PORT'
complete -c docker -A -f -n '__fish_seen_subcommand_from port' -a '(__fish_print_docker_containers running)' -d "Container"
# ps
complete -c docker -f -n '__fish_docker_no_subcommand' -a ps -d 'List containers'
complete -c docker -A -f -n '__fish_seen_subcommand_from ps' -s a -l all -d 'Show all containers. Only running containers are shown by default.'
complete -c docker -A -f -n '__fish_seen_subcommand_from ps' -l before -d 'Show only container created before Id or Name, include non-running ones.'
complete -c docker -A -f -n '__fish_seen_subcommand_from ps' -s l -l latest -d 'Show only the latest created container, include non-running ones.'
complete -c docker -A -f -n '__fish_seen_subcommand_from ps' -s n -d 'Show n last created containers, include non-running ones.'
complete -c docker -A -f -n '__fish_seen_subcommand_from ps' -l no-trunc -d "Don't truncate output"
complete -c docker -A -f -n '__fish_seen_subcommand_from ps' -s q -l quiet -d 'Only display numeric IDs'
complete -c docker -A -f -n '__fish_seen_subcommand_from ps' -s s -l size -d 'Display sizes'
complete -c docker -A -f -n '__fish_seen_subcommand_from ps' -l since -d 'Show only containers created since Id or Name, include non-running ones.'
# pull
complete -c docker -f -n '__fish_docker_no_subcommand' -a pull -d 'Pull an image or a repository from the docker registry server'
complete -c docker -A -f -n '__fish_seen_subcommand_from pull' -s t -l tag -d 'Download tagged image in repository'
complete -c docker -A -f -n '__fish_seen_subcommand_from pull' -a '(__fish_print_docker_images)' -d "Image"
complete -c docker -A -f -n '__fish_seen_subcommand_from pull' -a '(__fish_print_docker_repositories)' -d "Repository"
# push
complete -c docker -f -n '__fish_docker_no_subcommand' -a push -d 'Push an image or a repository to the docker registry server'
complete -c docker -A -f -n '__fish_seen_subcommand_from push' -a '(__fish_print_docker_images)' -d "Image"
complete -c docker -A -f -n '__fish_seen_subcommand_from push' -a '(__fish_print_docker_repositories)' -d "Repository"
# restart
complete -c docker -f -n '__fish_docker_no_subcommand' -a restart -d 'Restart a running container'
complete -c docker -A -f -n '__fish_seen_subcommand_from restart' -s t -l time -d 'Number of seconds to try to stop for before killing the container. Once killed it will then be restarted. Default=10'
complete -c docker -A -f -n '__fish_seen_subcommand_from restart' -a '(__fish_print_docker_containers running)' -d "Container"
# rm
complete -c docker -f -n '__fish_docker_no_subcommand' -a rm -d 'Remove one or more containers'
complete -c docker -A -f -n '__fish_seen_subcommand_from rm' -s f -l force -d 'Force removal of running container'
complete -c docker -A -f -n '__fish_seen_subcommand_from rm' -s l -l link -d 'Remove the specified link and not the underlying container'
complete -c docker -A -f -n '__fish_seen_subcommand_from rm' -s v -l volumes -d 'Remove the volumes associated to the container'
complete -c docker -A -f -n '__fish_seen_subcommand_from rm' -a '(__fish_print_docker_containers stopped)' -d "Container"
# rmi
complete -c docker -f -n '__fish_docker_no_subcommand' -a rmi -d 'Remove one or more images'
complete -c docker -A -f -n '__fish_seen_subcommand_from rmi' -s f -l force -d 'Force'
complete -c docker -A -f -n '__fish_seen_subcommand_from rmi' -a '(__fish_print_docker_images)' -d "Image"
# run
complete -c docker -f -n '__fish_docker_no_subcommand' -a run -d 'Run a command in a new container'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s P -l publish-all -d 'Publish all exposed ports to the host interfaces'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s a -l attach -d 'Attach to stdin, stdout or stderr.'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s c -l cpu-shares -d 'CPU shares (relative weight)'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -l cidfile -d 'Write the container ID to the file'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s d -l detach -d 'Detached mode: Run container in the background, print new container id'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -l dns -d 'Set custom dns servers'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s e -l env -d 'Set environment variables'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -l entrypoint -d 'Overwrite the default entrypoint of the image'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -l expose -d 'Expose a port from the container without publishing it to your host'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s h -l hostname -d 'Container host name'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s i -l interactive -d 'Keep stdin open even if not attached'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -l link -d 'Add link to another container (name:alias)'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -l lxc-conf -d 'Add custom lxc options -lxc-conf="lxc.cgroup.cpuset.cpus = 0,1"'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s m -l memory -d 'Memory limit (format: <number><optional unit>, where unit = b, k, m or g)'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s n -l networking -d 'Enable networking for this container'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -l name -d 'Assign a name to the container'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s p -l publish -d "Publish a container's port to the host (format: ip:hostPort:containerPort | ip::containerPort | hostPort:containerPort) (use 'docker port' to see the actual mapping)"
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -l privileged -d 'Give extended privileges to this container'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -l rm -d 'Automatically remove the container when it exits (incompatible with -d)'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -l sig-proxy -d 'Proxify all received signal to the process (even in non-tty mode)'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s t -l tty -d 'Allocate a pseudo-tty'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s u -l user -d 'Username or UID'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s v -l volume -d 'Bind mount a volume (e.g. from the host: -v /host:/container, from docker: -v /container)'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -l volumes-from -d 'Mount volumes from the specified container(s)'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -s w -l workdir -d 'Working directory inside the container'
complete -c docker -A -f -n '__fish_seen_subcommand_from run' -a '(__fish_print_docker_images)' -d "Image"
# save
complete -c docker -f -n '__fish_docker_no_subcommand' -a save -d 'Save an image to a tar archive'
complete -c docker -A -f -n '__fish_seen_subcommand_from save' -a '(__fish_print_docker_images)' -d "Image"
# search
complete -c docker -f -n '__fish_docker_no_subcommand' -a search -d 'Search for an image in the docker index'
complete -c docker -A -f -n '__fish_seen_subcommand_from search' -l no-trunc -d "Don't truncate output"
complete -c docker -A -f -n '__fish_seen_subcommand_from search' -s s -l stars -d 'Only displays with at least xxx stars'
complete -c docker -A -f -n '__fish_seen_subcommand_from search' -s t -l trusted -d 'Only show trusted builds'
# start
complete -c docker -f -n '__fish_docker_no_subcommand' -a start -d 'Start a stopped container'
complete -c docker -A -f -n '__fish_seen_subcommand_from start' -s a -l attach -d "Attach container's stdout/stderr and forward all signals to the process"
complete -c docker -A -f -n '__fish_seen_subcommand_from start' -s i -l interactive -d "Attach container's stdin"
complete -c docker -A -f -n '__fish_seen_subcommand_from start' -a '(__fish_print_docker_containers stopped)' -d "Container"
# stop
complete -c docker -f -n '__fish_docker_no_subcommand' -a stop -d 'Stop a running container'
complete -c docker -A -f -n '__fish_seen_subcommand_from stop' -s t -l time -d 'Number of seconds to wait for the container to stop before killing it.'
complete -c docker -A -f -n '__fish_seen_subcommand_from stop' -a '(__fish_print_docker_containers running)' -d "Container"
# tag
complete -c docker -f -n '__fish_docker_no_subcommand' -a tag -d 'Tag an image into a repository'
complete -c docker -A -f -n '__fish_seen_subcommand_from tag' -s f -l force -d 'Force'
complete -c docker -A -f -n '__fish_seen_subcommand_from tag' -a '(__fish_print_docker_images)' -d "Image"
# top
complete -c docker -f -n '__fish_docker_no_subcommand' -a top -d 'Lookup the running processes of a container'
complete -c docker -A -f -n '__fish_seen_subcommand_from top' -a '(__fish_print_docker_containers running)' -d "Container"
# version
complete -c docker -f -n '__fish_docker_no_subcommand' -a version -d 'Show the docker version information'
# wait
complete -c docker -f -n '__fish_docker_no_subcommand' -a wait -d 'Block until a container stops, then print its exit code'
complete -c docker -A -f -n '__fish_seen_subcommand_from wait' -a '(__fish_print_docker_containers running)' -d "Container"
-242
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@@ -1,242 +0,0 @@
#compdef docker
#
# zsh completion for docker (http://docker.io)
#
# version: 0.2.2
# author: Felix Riedel
# license: BSD License
# github: https://github.com/felixr/docker-zsh-completion
#
__parse_docker_list() {
sed -e '/^ID/d' -e 's/[ ]\{2,\}/|/g' -e 's/ \([hdwm]\)\(inutes\|ays\|ours\|eeks\)/\1/' | awk ' BEGIN {FS="|"} { printf("%s:%7s, %s\n", $1, $4, $2)}'
}
__docker_stoppedcontainers() {
local expl
declare -a stoppedcontainers
stoppedcontainers=(${(f)"$(docker ps -a | grep --color=never 'Exit' | __parse_docker_list )"})
_describe -t containers-stopped "Stopped Containers" stoppedcontainers
}
__docker_runningcontainers() {
local expl
declare -a containers
containers=(${(f)"$(docker ps | __parse_docker_list)"})
_describe -t containers-active "Running Containers" containers
}
__docker_containers () {
__docker_stoppedcontainers
__docker_runningcontainers
}
__docker_images () {
local expl
declare -a images
images=(${(f)"$(docker images | awk '(NR > 1){printf("%s\\:%s\n", $1,$2)}')"})
images=($images ${(f)"$(docker images | awk '(NR > 1){printf("%s:%-15s in %s\n", $3,$2,$1)}')"})
_describe -t docker-images "Images" images
}
__docker_tags() {
local expl
declare -a tags
tags=(${(f)"$(docker images | awk '(NR>1){print $2}'| sort | uniq)"})
_describe -t docker-tags "tags" tags
}
__docker_search() {
# declare -a dockersearch
local cache_policy
zstyle -s ":completion:${curcontext}:" cache-policy cache_policy
if [[ -z "$cache_policy" ]]; then
zstyle ":completion:${curcontext}:" cache-policy __docker_caching_policy
fi
local searchterm cachename
searchterm="${words[$CURRENT]%/}"
cachename=_docker-search-$searchterm
local expl
local -a result
if ( [[ ${(P)+cachename} -eq 0 ]] || _cache_invalid ${cachename#_} ) \
&& ! _retrieve_cache ${cachename#_}; then
_message "Searching for ${searchterm}..."
result=(${(f)"$(docker search ${searchterm} | awk '(NR>2){print $1}')"})
_store_cache ${cachename#_} result
fi
_wanted dockersearch expl 'Available images' compadd -a result
}
__docker_caching_policy()
{
# oldp=( "$1"(Nmh+24) ) # 24 hour
oldp=( "$1"(Nmh+1) ) # 24 hour
(( $#oldp ))
}
__docker_repositories () {
local expl
declare -a repos
repos=(${(f)"$(docker images | sed -e '1d' -e 's/[ ].*//' | sort | uniq)"})
_describe -t docker-repos "Repositories" repos
}
__docker_commands () {
# local -a _docker_subcommands
local cache_policy
zstyle -s ":completion:${curcontext}:" cache-policy cache_policy
if [[ -z "$cache_policy" ]]; then
zstyle ":completion:${curcontext}:" cache-policy __docker_caching_policy
fi
if ( [[ ${+_docker_subcommands} -eq 0 ]] || _cache_invalid docker_subcommands) \
&& ! _retrieve_cache docker_subcommands;
then
_docker_subcommands=(${${(f)"$(_call_program commands
docker 2>&1 | sed -e '1,6d' -e '/^[ ]*$/d' -e 's/[ ]*\([^ ]\+\)\s*\([^ ].*\)/\1:\2/' )"}})
_docker_subcommands=($_docker_subcommands 'help:Show help for a command')
_store_cache docker_subcommands _docker_subcommands
fi
_describe -t docker-commands "docker command" _docker_subcommands
}
__docker_subcommand () {
local -a _command_args
case "$words[1]" in
(attach|wait)
_arguments ':containers:__docker_runningcontainers'
;;
(build)
_arguments \
'-t=-:repository:__docker_repositories' \
':path or URL:_directories'
;;
(commit)
_arguments \
':container:__docker_containers' \
':repository:__docker_repositories' \
':tag: '
;;
(diff|export|logs)
_arguments '*:containers:__docker_containers'
;;
(history)
_arguments '*:images:__docker_images'
;;
(images)
_arguments \
'-a[Show all images]' \
':repository:__docker_repositories'
;;
(inspect)
_arguments '*:containers:__docker_containers'
;;
(history)
_arguments ':images:__docker_images'
;;
(insert)
_arguments '1:containers:__docker_containers' \
'2:URL:(http:// file://)' \
'3:file:_files'
;;
(kill)
_arguments '*:containers:__docker_runningcontainers'
;;
(port)
_arguments '1:containers:__docker_runningcontainers'
;;
(start)
_arguments '*:containers:__docker_stoppedcontainers'
;;
(rm)
_arguments '-v[Remove the volumes associated to the container]' \
'*:containers:__docker_stoppedcontainers'
;;
(rmi)
_arguments '-v[Remove the volumes associated to the container]' \
'*:images:__docker_images'
;;
(top)
_arguments '1:containers:__docker_runningcontainers'
;;
(restart|stop)
_arguments '-t=-[Number of seconds to try to stop for before killing the container]:seconds to before killing:(1 5 10 30 60)' \
'*:containers:__docker_runningcontainers'
;;
(top)
_arguments ':containers:__docker_runningcontainers'
;;
(ps)
_arguments '-a[Show all containers. Only running containers are shown by default]' \
'-h[Show help]' \
'--before-id=-[Show only container created before Id, include non-running one]:containers:__docker_containers' \
'-n=-[Show n last created containers, include non-running one]:n:(1 5 10 25 50)'
;;
(tag)
_arguments \
'-f[force]'\
':image:__docker_images'\
':repository:__docker_repositories' \
':tag:__docker_tags'
;;
(run)
_arguments \
'-a=-[Attach to stdin, stdout or stderr]:toggle:(true false)' \
'-c=-[CPU shares (relative weight)]:CPU shares: ' \
'-d[Detached mode: leave the container running in the background]' \
'*--dns=[Set custom dns servers]:dns server: ' \
'*-e=[Set environment variables]:environment variable: ' \
'--entrypoint=-[Overwrite the default entrypoint of the image]:entry point: ' \
'-h=-[Container host name]:hostname:_hosts' \
'-i[Keep stdin open even if not attached]' \
'-m=-[Memory limit (in bytes)]:limit: ' \
'*-p=-[Expose a container''s port to the host]:port:_ports' \
'-t=-[Allocate a pseudo-tty]:toggle:(true false)' \
'-u=-[Username or UID]:user:_users' \
'*-v=-[Bind mount a volume (e.g. from the host: -v /host:/container, from docker: -v /container)]:volume: '\
'--volumes-from=-[Mount volumes from the specified container]:volume: ' \
'(-):images:__docker_images' \
'(-):command: _command_names -e' \
'*::arguments: _normal'
;;
(pull|search)
_arguments ':name:__docker_search'
;;
(help)
_arguments ':subcommand:__docker_commands'
;;
(*)
_message 'Unknown sub command'
esac
}
_docker () {
local curcontext="$curcontext" state line
typeset -A opt_args
_arguments -C \
'-H=-[tcp://host:port to bind/connect to]:socket: ' \
'(-): :->command' \
'(-)*:: :->option-or-argument'
if (( CURRENT == 1 )); then
fi
case $state in
(command)
__docker_commands
;;
(option-or-argument)
curcontext=${curcontext%:*:*}:docker-$words[1]:
__docker_subcommand
;;
esac
}
_docker "$@"
-125
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@@ -1,125 +0,0 @@
package main
import (
"fmt"
"io"
"log"
"net"
"os"
"os/exec"
"path"
"time"
)
var DOCKERPATH = path.Join(os.Getenv("DOCKERPATH"), "docker")
// WARNING: this crashTest will 1) crash your host, 2) remove all containers
func runDaemon() (*exec.Cmd, error) {
os.Remove("/var/run/docker.pid")
exec.Command("rm", "-rf", "/var/lib/docker/containers").Run()
cmd := exec.Command(DOCKERPATH, "-d")
outPipe, err := cmd.StdoutPipe()
if err != nil {
return nil, err
}
errPipe, err := cmd.StderrPipe()
if err != nil {
return nil, err
}
if err := cmd.Start(); err != nil {
return nil, err
}
go func() {
io.Copy(os.Stdout, outPipe)
}()
go func() {
io.Copy(os.Stderr, errPipe)
}()
return cmd, nil
}
func crashTest() error {
if err := exec.Command("/bin/bash", "-c", "while true; do true; done").Start(); err != nil {
return err
}
var endpoint string
if ep := os.Getenv("TEST_ENDPOINT"); ep == "" {
endpoint = "192.168.56.1:7979"
} else {
endpoint = ep
}
c := make(chan bool)
var conn io.Writer
go func() {
conn, _ = net.Dial("tcp", endpoint)
c <- false
}()
go func() {
time.Sleep(2 * time.Second)
c <- true
}()
<-c
restartCount := 0
totalTestCount := 1
for {
daemon, err := runDaemon()
if err != nil {
return err
}
restartCount++
// time.Sleep(5000 * time.Millisecond)
var stop bool
go func() error {
stop = false
for i := 0; i < 100 && !stop; {
func() error {
cmd := exec.Command(DOCKERPATH, "run", "ubuntu", "echo", fmt.Sprintf("%d", totalTestCount))
i++
totalTestCount++
outPipe, err := cmd.StdoutPipe()
if err != nil {
return err
}
inPipe, err := cmd.StdinPipe()
if err != nil {
return err
}
if err := cmd.Start(); err != nil {
return err
}
if conn != nil {
go io.Copy(conn, outPipe)
}
// Expecting error, do not check
inPipe.Write([]byte("hello world!!!!!\n"))
go inPipe.Write([]byte("hello world!!!!!\n"))
go inPipe.Write([]byte("hello world!!!!!\n"))
inPipe.Close()
if err := cmd.Wait(); err != nil {
return err
}
outPipe.Close()
return nil
}()
}
return nil
}()
time.Sleep(20 * time.Second)
stop = true
if err := daemon.Process.Kill(); err != nil {
return err
}
}
}
func main() {
if err := crashTest(); err != nil {
log.Println(err)
}
}
-11
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@@ -1,11 +0,0 @@
Desktop Integration
===================
The ./contrib/desktop-integration contains examples of typical dockerized
desktop applications.
Examples
========
* Data container: ./data/Dockerfile creates a data image sharing /data volume
* Iceweasel: ./iceweasel/Dockerfile shows a way to dockerize a common multimedia application
@@ -1,38 +0,0 @@
# VERSION: 0.1
# DESCRIPTION: Create data image sharing /data volume
# AUTHOR: Daniel Mizyrycki <daniel@dotcloud.com>
# COMMENTS:
# This image is used as base for all data containers.
# /data volume is owned by sysadmin.
# USAGE:
# # Download data Dockerfile
# wget http://raw.github.com/dotcloud/docker/master/contrib/desktop-integration/data/Dockerfile
#
# # Build data image
# docker build -t data .
#
# # Create a data container. (eg: iceweasel-data)
# docker run --name iceweasel-data data true
#
# # List data from it
# docker run --volumes-from iceweasel-data busybox ls -al /data
docker-version 0.6.5
# Smallest base image, just to launch a container
FROM busybox
MAINTAINER Daniel Mizyrycki <daniel@docker.com>
# Create a regular user
RUN echo 'sysadmin:x:1000:1000::/data:/bin/sh' >> /etc/passwd
RUN echo 'sysadmin:x:1000:' >> /etc/group
# Create directory for that user
RUN mkdir /data
RUN chown sysadmin.sysadmin /data
# Add content to /data. This will keep sysadmin ownership
RUN touch /data/init_volume
# Create /data volume
VOLUME /data
@@ -1,41 +0,0 @@
# VERSION: 0.7
# DESCRIPTION: Create iceweasel container with its dependencies
# AUTHOR: Daniel Mizyrycki <daniel@dotcloud.com>
# COMMENTS:
# This file describes how to build a Iceweasel container with all
# dependencies installed. It uses native X11 unix socket and alsa
# sound devices. Tested on Debian 7.2
# USAGE:
# # Download Iceweasel Dockerfile
# wget http://raw.github.com/dotcloud/docker/master/contrib/desktop-integration/iceweasel/Dockerfile
#
# # Build iceweasel image
# docker build -t iceweasel .
#
# # Run stateful data-on-host iceweasel. For ephemeral, remove -v /data/iceweasel:/data
# docker run -v /data/iceweasel:/data -v /tmp/.X11-unix:/tmp/.X11-unix \
# -v /dev/snd:/dev/snd --lxc-conf='lxc.cgroup.devices.allow = c 116:* rwm' \
# -e DISPLAY=unix$DISPLAY iceweasel
#
# # To run stateful dockerized data containers
# docker run --volumes-from iceweasel-data -v /tmp/.X11-unix:/tmp/.X11-unix \
# -v /dev/snd:/dev/snd --lxc-conf='lxc.cgroup.devices.allow = c 116:* rwm' \
# -e DISPLAY=unix$DISPLAY iceweasel
docker-version 0.6.5
# Base docker image
FROM debian:wheezy
MAINTAINER Daniel Mizyrycki <daniel@docker.com>
# Install Iceweasel and "sudo"
RUN apt-get update && DEBIAN_FRONTEND=noninteractive apt-get install -yq iceweasel sudo
# create sysadmin account
RUN useradd -m -d /data -p saIVpsc0EVTwA sysadmin
RUN sed -Ei 's/sudo:x:27:/sudo:x:27:sysadmin/' /etc/group
RUN sed -Ei 's/(\%sudo\s+ALL=\(ALL\:ALL\) )ALL/\1 NOPASSWD:ALL/' /etc/sudoers
# Autorun iceweasel. -no-remote is necessary to create a new container, as
# iceweasel appears to communicate with itself through X11.
CMD ["/usr/bin/sudo", "-u", "sysadmin", "-H", "-E", "/usr/bin/iceweasel", "-no-remote"]
-170
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@@ -1,170 +0,0 @@
package main
import (
"flag"
"fmt"
"github.com/dotcloud/docker/daemon/graphdriver/devmapper"
"os"
"path"
"sort"
"strconv"
"strings"
)
func usage() {
fmt.Fprintf(os.Stderr, "Usage: %s <flags> [status] | [list] | [device id] | [resize new-pool-size] | [snap new-id base-id] | [remove id] | [mount id mountpoint]\n", os.Args[0])
flag.PrintDefaults()
os.Exit(1)
}
func byteSizeFromString(arg string) (int64, error) {
digits := ""
rest := ""
last := strings.LastIndexAny(arg, "0123456789")
if last >= 0 {
digits = arg[:last+1]
rest = arg[last+1:]
}
val, err := strconv.ParseInt(digits, 10, 64)
if err != nil {
return val, err
}
rest = strings.ToLower(strings.TrimSpace(rest))
var multiplier int64 = 1
switch rest {
case "":
multiplier = 1
case "k", "kb":
multiplier = 1024
case "m", "mb":
multiplier = 1024 * 1024
case "g", "gb":
multiplier = 1024 * 1024 * 1024
case "t", "tb":
multiplier = 1024 * 1024 * 1024 * 1024
default:
return 0, fmt.Errorf("Unknown size unit: %s", rest)
}
return val * multiplier, nil
}
func main() {
root := flag.String("r", "/var/lib/docker", "Docker root dir")
flDebug := flag.Bool("D", false, "Debug mode")
flag.Parse()
if *flDebug {
os.Setenv("DEBUG", "1")
}
if flag.NArg() < 1 {
usage()
}
args := flag.Args()
home := path.Join(*root, "devicemapper")
devices, err := devmapper.NewDeviceSet(home, false)
if err != nil {
fmt.Println("Can't initialize device mapper: ", err)
os.Exit(1)
}
switch args[0] {
case "status":
status := devices.Status()
fmt.Printf("Pool name: %s\n", status.PoolName)
fmt.Printf("Data Loopback file: %s\n", status.DataLoopback)
fmt.Printf("Metadata Loopback file: %s\n", status.MetadataLoopback)
fmt.Printf("Sector size: %d\n", status.SectorSize)
fmt.Printf("Data use: %d of %d (%.1f %%)\n", status.Data.Used, status.Data.Total, 100.0*float64(status.Data.Used)/float64(status.Data.Total))
fmt.Printf("Metadata use: %d of %d (%.1f %%)\n", status.Metadata.Used, status.Metadata.Total, 100.0*float64(status.Metadata.Used)/float64(status.Metadata.Total))
break
case "list":
ids := devices.List()
sort.Strings(ids)
for _, id := range ids {
fmt.Println(id)
}
break
case "device":
if flag.NArg() < 2 {
usage()
}
status, err := devices.GetDeviceStatus(args[1])
if err != nil {
fmt.Println("Can't get device info: ", err)
os.Exit(1)
}
fmt.Printf("Id: %d\n", status.DeviceId)
fmt.Printf("Size: %d\n", status.Size)
fmt.Printf("Transaction Id: %d\n", status.TransactionId)
fmt.Printf("Size in Sectors: %d\n", status.SizeInSectors)
fmt.Printf("Mapped Sectors: %d\n", status.MappedSectors)
fmt.Printf("Highest Mapped Sector: %d\n", status.HighestMappedSector)
break
case "resize":
if flag.NArg() < 2 {
usage()
}
size, err := byteSizeFromString(args[1])
if err != nil {
fmt.Println("Invalid size: ", err)
os.Exit(1)
}
err = devices.ResizePool(size)
if err != nil {
fmt.Println("Error resizeing pool: ", err)
os.Exit(1)
}
break
case "snap":
if flag.NArg() < 3 {
usage()
}
err := devices.AddDevice(args[1], args[2])
if err != nil {
fmt.Println("Can't create snap device: ", err)
os.Exit(1)
}
break
case "remove":
if flag.NArg() < 2 {
usage()
}
err := devices.RemoveDevice(args[1])
if err != nil {
fmt.Println("Can't remove device: ", err)
os.Exit(1)
}
break
case "mount":
if flag.NArg() < 3 {
usage()
}
err := devices.MountDevice(args[1], args[2], false)
if err != nil {
fmt.Println("Can't create snap device: ", err)
os.Exit(1)
}
break
default:
fmt.Printf("Unknown command %s\n", args[0])
usage()
os.Exit(1)
}
return
}
-27
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@@ -1,27 +0,0 @@
#
# This Dockerfile will create an image that allows to generate upstart and
# systemd scripts (more to come)
#
# docker-version 0.6.2
#
FROM ubuntu:12.10
MAINTAINER Guillaume J. Charmes <guillaume@docker.com>
RUN apt-get update && apt-get install -y wget git mercurial
# Install Go
RUN wget --no-check-certificate https://go.googlecode.com/files/go1.1.2.linux-amd64.tar.gz -O go-1.1.2.tar.gz
RUN tar -xzvf go-1.1.2.tar.gz && mv /go /goroot
RUN mkdir /go
ENV GOROOT /goroot
ENV GOPATH /go
ENV PATH $GOROOT/bin:$PATH
RUN go get github.com/dotcloud/docker && cd /go/src/github.com/dotcloud/docker && git checkout v0.6.3
ADD manager.go /manager/
RUN cd /manager && go build -o /usr/bin/manager
ENTRYPOINT ["/usr/bin/manager"]
-4
View File
@@ -1,4 +0,0 @@
FROM busybox
MAINTAINER Guillaume J. Charmes <guillaume@docker.com>
ADD manager /usr/bin/
ENTRYPOINT ["/usr/bin/manager"]
-130
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@@ -1,130 +0,0 @@
package main
import (
"bytes"
"encoding/json"
"flag"
"fmt"
"github.com/dotcloud/docker"
"os"
"strings"
"text/template"
)
var templates = map[string]string{
"upstart": `description "{{.description}}"
author "{{.author}}"
start on filesystem and started lxc-net and started docker
stop on runlevel [!2345]
respawn
exec /home/vagrant/goroot/bin/docker start -a {{.container_id}}
`,
"systemd": `[Unit]
Description={{.description}}
Author={{.author}}
After=docker.service
[Service]
Restart=always
ExecStart=/usr/bin/docker start -a {{.container_id}}
ExecStop=/usr/bin/docker stop -t 2 {{.container_id}}
[Install]
WantedBy=local.target
`,
}
func main() {
// Parse command line for custom options
kind := flag.String("t", "upstart", "Type of manager requested")
author := flag.String("a", "<none>", "Author of the image")
description := flag.String("d", "<none>", "Description of the image")
flag.Usage = func() {
fmt.Fprintf(os.Stderr, "\nUsage: manager <container id>\n\n")
flag.PrintDefaults()
}
flag.Parse()
// We require at least the container ID
if flag.NArg() != 1 {
println(flag.NArg())
flag.Usage()
return
}
// Check that the requested process manager is supported
if _, exists := templates[*kind]; !exists {
panic("Unknown script template")
}
// Load the requested template
tpl, err := template.New("processManager").Parse(templates[*kind])
if err != nil {
panic(err)
}
// Create stdout/stderr buffers
bufOut := bytes.NewBuffer(nil)
bufErr := bytes.NewBuffer(nil)
// Instanciate the Docker CLI
cli := docker.NewDockerCli(nil, bufOut, bufErr, "unix", "/var/run/docker.sock", false, nil)
// Retrieve the container info
if err := cli.CmdInspect(flag.Arg(0)); err != nil {
// As of docker v0.6.3, CmdInspect always returns nil
panic(err)
}
// If there is nothing in the error buffer, then the Docker daemon is there and the container has been found
if bufErr.Len() == 0 {
// Unmarshall the resulting container data
c := []*docker.Container{{}}
if err := json.Unmarshal(bufOut.Bytes(), &c); err != nil {
panic(err)
}
// Reset the buffers
bufOut.Reset()
bufErr.Reset()
// Retrieve the info of the linked image
if err := cli.CmdInspect(c[0].Image); err != nil {
panic(err)
}
// If there is nothing in the error buffer, then the image has been found.
if bufErr.Len() == 0 {
// Unmarshall the resulting image data
img := []*docker.Image{{}}
if err := json.Unmarshal(bufOut.Bytes(), &img); err != nil {
panic(err)
}
// If no author has been set, use the one from the image
if *author == "<none>" && img[0].Author != "" {
*author = strings.Replace(img[0].Author, "\"", "", -1)
}
// If no description has been set, use the comment from the image
if *description == "<none>" && img[0].Comment != "" {
*description = strings.Replace(img[0].Comment, "\"", "", -1)
}
}
}
/// Old version: Wrtie the resulting script to file
// f, err := os.OpenFile(kind, os.O_CREATE|os.O_WRONLY, 0755)
// if err != nil {
// panic(err)
// }
// defer f.Close()
// Create a map with needed data
data := map[string]string{
"author": *author,
"description": *description,
"container_id": flag.Arg(0),
}
// Process the template and output it on Stdout
if err := tpl.Execute(os.Stdout, data); err != nil {
panic(err)
}
}
-53
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@@ -1,53 +0,0 @@
#!/bin/sh
set -e
usage() {
echo >&2 "usage: $0 [-a author] [-d description] container [manager]"
echo >&2 " ie: $0 -a 'John Smith' 4ec9612a37cd systemd"
echo >&2 " ie: $0 -d 'Super Cool System' 4ec9612a37cd # defaults to upstart"
exit 1
}
auth='<none>'
desc='<none>'
have_auth=
have_desc=
while getopts a:d: opt; do
case "$opt" in
a)
auth="$OPTARG"
have_auth=1
;;
d)
desc="$OPTARG"
have_desc=1
;;
esac
done
shift $(($OPTIND - 1))
[ $# -ge 1 -a $# -le 2 ] || usage
cid="$1"
script="${2:-upstart}"
if [ ! -e "manager/$script" ]; then
echo >&2 "Error: manager type '$script' is unknown (PRs always welcome!)."
echo >&2 'The currently supported types are:'
echo >&2 " $(cd manager && echo *)"
exit 1
fi
# TODO https://github.com/dotcloud/docker/issues/734 (docker inspect formatting)
#if command -v docker > /dev/null 2>&1; then
# image="$(docker inspect -f '{{.Image}}' "$cid")"
# if [ "$image" ]; then
# if [ -z "$have_auth" ]; then
# auth="$(docker inspect -f '{{.Author}}' "$image")"
# fi
# if [ -z "$have_desc" ]; then
# desc="$(docker inspect -f '{{.Comment}}' "$image")"
# fi
# fi
#fi
exec "manager/$script" "$cid" "$auth" "$desc"
-20
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@@ -1,20 +0,0 @@
#!/bin/sh
set -e
cid="$1"
auth="$2"
desc="$3"
cat <<-EOF
[Unit]
Description=$desc
Author=$auth
After=docker.service
[Service]
ExecStart=/usr/bin/docker start -a $cid
ExecStop=/usr/bin/docker stop -t 2 $cid
[Install]
WantedBy=local.target
EOF
-15
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@@ -1,15 +0,0 @@
#!/bin/sh
set -e
cid="$1"
auth="$2"
desc="$3"
cat <<-EOF
description "$(echo "$desc" | sed 's/"/\\"/g')"
author "$(echo "$auth" | sed 's/"/\\"/g')"
start on filesystem and started lxc-net and started docker
stop on runlevel [!2345]
respawn
exec /usr/bin/docker start -a "$cid"
EOF
-13
View File
@@ -1,13 +0,0 @@
# /etc/conf.d/docker: config file for /etc/init.d/docker
# where the docker daemon output gets piped
#DOCKER_LOGFILE="/var/log/docker.log"
# where docker's pid get stored
#DOCKER_PIDFILE="/run/docker.pid"
# where the docker daemon itself is run from
#DOCKER_BINARY="/usr/bin/docker"
# any other random options you want to pass to docker
DOCKER_OPTS=""
-31
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@@ -1,31 +0,0 @@
#!/sbin/runscript
# Copyright 1999-2013 Gentoo Foundation
# Distributed under the terms of the GNU General Public License v2
# $Header: $
DOCKER_LOGFILE=${DOCKER_LOGFILE:-/var/log/${SVCNAME}.log}
DOCKER_PIDFILE=${DOCKER_PIDFILE:-/run/${SVCNAME}.pid}
DOCKER_BINARY=${DOCKER_BINARY:-/usr/bin/docker}
DOCKER_OPTS=${DOCKER_OPTS:-}
start() {
checkpath -f -m 0644 -o root:docker "$DOCKER_LOGFILE"
ebegin "Starting docker daemon"
start-stop-daemon --start --background \
--exec "$DOCKER_BINARY" \
--pidfile "$DOCKER_PIDFILE" \
--stdout "$DOCKER_LOGFILE" \
--stderr "$DOCKER_LOGFILE" \
-- -d -p "$DOCKER_PIDFILE" \
$DOCKER_OPTS
eend $?
}
stop() {
ebegin "Stopping docker daemon"
start-stop-daemon --stop \
--exec "$DOCKER_BINARY" \
--pidfile "$DOCKER_PIDFILE"
eend $?
}
-13
View File
@@ -1,13 +0,0 @@
[Unit]
Description=Docker Application Container Engine
Documentation=http://docs.docker.io
After=network.target
[Service]
ExecStart=/usr/bin/docker -d
Restart=on-failure
LimitNOFILE=1048576
LimitNPROC=1048576
[Install]
WantedBy=multi-user.target
@@ -1,13 +0,0 @@
[Unit]
Description=Docker Application Container Engine
Documentation=http://docs.docker.io
After=network.target
[Service]
ExecStart=/usr/bin/docker -d -H fd://
Restart=on-failure
LimitNOFILE=1048576
LimitNPROC=1048576
[Install]
WantedBy=multi-user.target
@@ -1,8 +0,0 @@
[Unit]
Description=Docker Socket for the API
[Socket]
ListenStream=/var/run/docker.sock
[Install]
WantedBy=sockets.target
-129
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@@ -1,129 +0,0 @@
#!/bin/sh
### BEGIN INIT INFO
# Provides: docker
# Required-Start: $syslog $remote_fs
# Required-Stop: $syslog $remote_fs
# Default-Start: 2 3 4 5
# Default-Stop: 0 1 6
# Short-Description: Create lightweight, portable, self-sufficient containers.
# Description:
# Docker is an open-source project to easily create lightweight, portable,
# self-sufficient containers from any application. The same container that a
# developer builds and tests on a laptop can run at scale, in production, on
# VMs, bare metal, OpenStack clusters, public clouds and more.
### END INIT INFO
export PATH=/sbin:/bin:/usr/sbin:/usr/bin:/usr/local/sbin:/usr/local/bin
BASE=$(basename $0)
# modify these in /etc/default/$BASE (/etc/default/docker)
DOCKER=/usr/bin/$BASE
DOCKER_PIDFILE=/var/run/$BASE.pid
DOCKER_LOGFILE=/var/log/$BASE.log
DOCKER_OPTS=
DOCKER_DESC="Docker"
# Get lsb functions
. /lib/lsb/init-functions
if [ -f /etc/default/$BASE ]; then
. /etc/default/$BASE
fi
# see also init_is_upstart in /lib/lsb/init-functions (which isn't available in Ubuntu 12.04, or we'd use it)
if [ -x /sbin/initctl ] && /sbin/initctl version 2>/dev/null | grep -q upstart; then
log_failure_msg "$DOCKER_DESC is managed via upstart, try using service $BASE $1"
exit 1
fi
# Check docker is present
if [ ! -x $DOCKER ]; then
log_failure_msg "$DOCKER not present or not executable"
exit 1
fi
fail_unless_root() {
if [ "$(id -u)" != '0' ]; then
log_failure_msg "$DOCKER_DESC must be run as root"
exit 1
fi
}
cgroupfs_mount() {
# see also https://github.com/tianon/cgroupfs-mount/blob/master/cgroupfs-mount
if grep -v '^#' /etc/fstab | grep -q cgroup \
|| [ ! -e /proc/cgroups ] \
|| [ ! -d /sys/fs/cgroup ]; then
return
fi
if ! mountpoint -q /sys/fs/cgroup; then
mount -t tmpfs -o uid=0,gid=0,mode=0755 cgroup /sys/fs/cgroup
fi
(
cd /sys/fs/cgroup
for sys in $(awk '!/^#/ { if ($4 == 1) print $1 }' /proc/cgroups); do
mkdir -p $sys
if ! mountpoint -q $sys; then
if ! mount -n -t cgroup -o $sys cgroup $sys; then
rmdir $sys || true
fi
fi
done
)
}
case "$1" in
start)
fail_unless_root
cgroupfs_mount
touch "$DOCKER_LOGFILE"
chgrp docker "$DOCKER_LOGFILE"
log_begin_msg "Starting $DOCKER_DESC: $BASE"
start-stop-daemon --start --background \
--no-close \
--exec "$DOCKER" \
--pidfile "$DOCKER_PIDFILE" \
-- \
-d -p "$DOCKER_PIDFILE" \
$DOCKER_OPTS \
>> "$DOCKER_LOGFILE" 2>&1
log_end_msg $?
;;
stop)
fail_unless_root
log_begin_msg "Stopping $DOCKER_DESC: $BASE"
start-stop-daemon --stop --pidfile "$DOCKER_PIDFILE"
log_end_msg $?
;;
restart)
fail_unless_root
docker_pid=`cat "$DOCKER_PIDFILE" 2>/dev/null`
[ -n "$docker_pid" ] \
&& ps -p $docker_pid > /dev/null 2>&1 \
&& $0 stop
$0 start
;;
force-reload)
fail_unless_root
$0 restart
;;
status)
status_of_proc -p "$DOCKER_PIDFILE" "$DOCKER" docker
;;
*)
echo "Usage: $0 {start|stop|restart|status}"
exit 1
;;
esac
exit 0
@@ -1,13 +0,0 @@
# Docker Upstart and SysVinit configuration file
# Customize location of Docker binary (especially for development testing).
#DOCKER="/usr/local/bin/docker"
# Use DOCKER_OPTS to modify the daemon startup options.
#DOCKER_OPTS="--dns 8.8.8.8 --dns 8.8.4.4"
# If you need Docker to use an HTTP proxy, it can also be specified here.
#export http_proxy="http://127.0.0.1:3128/"
# This is also a handy place to tweak where Docker's temporary files go.
#export TMPDIR="/mnt/bigdrive/docker-tmp"
-123
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@@ -1,123 +0,0 @@
#!/bin/sh
#
# /etc/rc.d/init.d/docker
#
# Daemon for docker.io
#
# chkconfig: 2345 95 95
# description: Daemon for docker.io
### BEGIN INIT INFO
# Provides: docker
# Required-Start: $network cgconfig
# Required-Stop:
# Should-Start:
# Should-Stop:
# Default-Start: 2 3 4 5
# Default-Stop: 0 1 6
# Short-Description: start and stop docker
# Description: Daemon for docker.io
### END INIT INFO
# Source function library.
. /etc/rc.d/init.d/functions
prog="docker"
exec="/usr/bin/$prog"
pidfile="/var/run/$prog.pid"
lockfile="/var/lock/subsys/$prog"
logfile="/var/log/$prog"
[ -e /etc/sysconfig/$prog ] && . /etc/sysconfig/$prog
prestart() {
service cgconfig status > /dev/null
if [[ $? != 0 ]]; then
service cgconfig start
fi
}
start() {
[ -x $exec ] || exit 5
if ! [ -f $pidfile ]; then
prestart
printf "Starting $prog:\t"
echo "\n$(date)\n" >> $logfile
$exec -d $other_args &>> $logfile &
pid=$!
touch $lockfile
success
echo
else
failure
echo
printf "$pidfile still exists...\n"
exit 7
fi
}
stop() {
echo -n $"Stopping $prog: "
killproc -p $pidfile $prog
retval=$?
echo
[ $retval -eq 0 ] && rm -f $lockfile
return $retval
}
restart() {
stop
start
}
reload() {
restart
}
force_reload() {
restart
}
rh_status() {
status -p $pidfile $prog
}
rh_status_q() {
rh_status >/dev/null 2>&1
}
case "$1" in
start)
rh_status_q && exit 0
$1
;;
stop)
rh_status_q || exit 0
$1
;;
restart)
$1
;;
reload)
rh_status_q || exit 7
$1
;;
force-reload)
force_reload
;;
status)
rh_status
;;
condrestart|try-restart)
rh_status_q || exit 0
restart
;;
*)
echo $"Usage: $0 {start|stop|status|restart|condrestart|try-restart|reload|force-reload}"
exit 2
esac
exit $?
@@ -1,7 +0,0 @@
# /etc/sysconfig/docker
#
# Other arguments to pass to the docker daemon process
# These will be parsed by the sysv initscript and appended
# to the arguments list passed to docker -d
other_args=""
-41
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@@ -1,41 +0,0 @@
description "Docker daemon"
start on filesystem
stop on runlevel [!2345]
limit nofile 524288 1048576
limit nproc 524288 1048576
respawn
pre-start script
# see also https://github.com/tianon/cgroupfs-mount/blob/master/cgroupfs-mount
if grep -v '^#' /etc/fstab | grep -q cgroup \
|| [ ! -e /proc/cgroups ] \
|| [ ! -d /sys/fs/cgroup ]; then
exit 0
fi
if ! mountpoint -q /sys/fs/cgroup; then
mount -t tmpfs -o uid=0,gid=0,mode=0755 cgroup /sys/fs/cgroup
fi
(
cd /sys/fs/cgroup
for sys in $(awk '!/^#/ { if ($4 == 1) print $1 }' /proc/cgroups); do
mkdir -p $sys
if ! mountpoint -q $sys; then
if ! mount -n -t cgroup -o $sys cgroup $sys; then
rmdir $sys || true
fi
fi
done
)
end script
script
# modify these in /etc/default/$UPSTART_JOB (/etc/default/docker)
DOCKER=/usr/bin/$UPSTART_JOB
DOCKER_OPTS=
if [ -f /etc/default/$UPSTART_JOB ]; then
. /etc/default/$UPSTART_JOB
fi
exec "$DOCKER" -d $DOCKER_OPTS
end script
-2
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@@ -1,2 +0,0 @@
# these are generated by the md/md2man-all.sh script
man*
-5
View File
@@ -1,5 +0,0 @@
FROM fedora:20
MAINTAINER ipbabble <emailwhenry@redhat.com>
# Update and install pandoc
RUN yum -y update; yum clean all;
RUN yum -y install pandoc;
-71
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@@ -1,71 +0,0 @@
Docker Documentation
====================
This directory contains the Docker user manual in the Markdown format.
Do *not* edit the man pages in the man1 directory. Instead, amend the
Markdown (*.md) files.
# File List
docker.md
docker-attach.md
docker-build.md
docker-commit.md
docker-cp.md
docker-diff.md
docker-events.md
docker-export.md
docker-history.md
docker-images.md
docker-import.md
docker-info.md
docker-inspect.md
docker-kill.md
docker-load.md
docker-login.md
docker-logs.md
docker-port.md
docker-ps.md
docker-pull.md
docker-push.md
docker-restart.md
docker-rmi.md
docker-rm.md
docker-run.md
docker-save.md
docker-search.md
docker-start.md
docker-stop.md
docker-tag.md
docker-top.md
docker-wait.md
Dockerfile
md2man-all.sh
# Generating man pages from the Markdown files
The recommended approach for generating the man pages is via a Docker
container. Using the supplied Dockerfile, Docker will create a Fedora based
container and isolate the Pandoc installation. This is a seamless process,
saving you from dealing with Pandoc and dependencies on your own computer.
## Building the Fedora / Pandoc image
There is a Dockerfile provided in the `docker/contrib/man/md` directory.
Using this Dockerfile, create a Docker image tagged `fedora/pandoc`:
docker build -t fedora/pandoc .
## Utilizing the Fedora / Pandoc image
Once the image is built, run a container using the image with *volumes*:
docker run -v /<path-to-git-dir>/docker/contrib/man:/pandoc:rw \
-w /pandoc -i fedora/pandoc /pandoc/md/md2man-all.sh
The Pandoc Docker container will process the Markdown files and generate
the man pages inside the `docker/contrib/man/man1` directory using
Docker volumes. For more information on Docker volumes see the man page for
`docker run` and also look at the article [Sharing Directories via Volumes]
(http://docs.docker.io/use/working_with_volumes/).
-57
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@@ -1,57 +0,0 @@
% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-attach - Attach to a running container
# SYNOPSIS
**docker attach** **--no-stdin**[=*false*] **--sig-proxy**[=*true*] CONTAINER
# DESCRIPTION
If you **docker run** a container in detached mode (**-d**), you can reattach to
the detached container with **docker attach** using the container's ID or name.
You can detach from the container again (and leave it running) with `CTRL-c` (for
a quiet exit) or `CTRL-\` to get a stacktrace of the Docker client when it quits.
When you detach from a container the exit code will be returned to
the client.
# OPTIONS
**--no-stdin**=*true*|*false*
When set to true, do not attach to stdin. The default is *false*.
**--sig-proxy**=*true*|*false*:
When set to true, proxify all received signal to the process (even in non-tty
mode). The default is *true*.
# EXAMPLES
## Attaching to a container
In this example the top command is run inside a container, from an image called
fedora, in detached mode. The ID from the container is passed into the **docker
attach** command:
# ID=$(sudo docker run -d fedora /usr/bin/top -b)
# sudo docker attach $ID
top - 02:05:52 up 3:05, 0 users, load average: 0.01, 0.02, 0.05
Tasks: 1 total, 1 running, 0 sleeping, 0 stopped, 0 zombie
Cpu(s): 0.1%us, 0.2%sy, 0.0%ni, 99.7%id, 0.0%wa, 0.0%hi, 0.0%si, 0.0%st
Mem: 373572k total, 355560k used, 18012k free, 27872k buffers
Swap: 786428k total, 0k used, 786428k free, 221740k cached
PID USER PR NI VIRT RES SHR S %CPU %MEM TIME+ COMMAND
1 root 20 0 17200 1116 912 R 0 0.3 0:00.03 top
top - 02:05:55 up 3:05, 0 users, load average: 0.01, 0.02, 0.05
Tasks: 1 total, 1 running, 0 sleeping, 0 stopped, 0 zombie
Cpu(s): 0.0%us, 0.2%sy, 0.0%ni, 99.8%id, 0.0%wa, 0.0%hi, 0.0%si, 0.0%st
Mem: 373572k total, 355244k used, 18328k free, 27872k buffers
Swap: 786428k total, 0k used, 786428k free, 221776k cached
PID USER PR NI VIRT RES SHR S %CPU %MEM TIME+ COMMAND
1 root 20 0 17208 1144 932 R 0 0.3 0:00.03 top
# HISTORY
April 2014, Originally compiled by William Henry (whenry at redhat dot com)
based on docker.io source material and internal work.
-82
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@@ -1,82 +0,0 @@
% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-build - Build a container image from a Dockerfile source at PATH
# SYNOPSIS
**docker build** [**--no-cache**[=*false*]] [**-q**|**--quiet**[=*false*]]
[**--rm**] [**-t**|**--tag**=TAG] PATH | URL | -
# DESCRIPTION
This will read the Dockerfile from the directory specified in **PATH**.
It also sends any other files and directories found in the current
directory to the Docker daemon. The contents of this directory would
be used by **ADD** commands found within the Dockerfile.
Warning, this will send a lot of data to the Docker daemon depending
on the contents of the current directory. The build is run by the Docker
daemon, not by the CLI, so the whole context must be transferred to the daemon.
The Docker CLI reports "Uploading context" when the context is sent to
the daemon.
When a single Dockerfile is given as the URL, then no context is set.
When a Git repository is set as the **URL**, the repository is used
as context.
# OPTIONS
**-q**, **--quiet**=*true*|*false*
When set to true, suppress verbose build output. Default is *false*.
**--rm**=*true*|*false*
When true, remove intermediate containers that are created during the
build process. The default is true.
**-t**, **--tag**=*tag*
Tag to be applied to the resulting image on successful completion of
the build.
**--no-cache**=*true*|*false*
When set to true, do not use a cache when building the image. The
default is *false*.
# EXAMPLES
## Building an image using a Dockefile located inside the current directory
Docker images can be built using the build command and a Dockerfile:
docker build .
During the build process Docker creates intermediate images. In order to
keep them, you must explicitly set `--rm=false`.
docker build --rm=false .
A good practice is to make a sub-directory with a related name and create
the Dockerfile in that directory. For example, a directory called mongo may
contain a Dockerfile to create a Docker MongoDB image. Likewise, another
directory called httpd may be used to store Dockerfiles for Apache web
server images.
It is also a good practice to add the files required for the image to the
sub-directory. These files will then be specified with the `ADD` instruction
in the Dockerfile. Note: If you include a tar file (a good practice!), then
Docker will automatically extract the contents of the tar file
specified within the `ADD` instruction into the specified target.
## Building an image using a URL
This will clone the specified Github repository from the URL and use it
as context. The Dockerfile at the root of the repository is used as
Dockerfile. This only works if the Github repository is a dedicated
repository.
docker build github.com/scollier/Fedora-Dockerfiles/tree/master/apache
Note: You can set an arbitrary Git repository via the `git://` schema.
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-commit - Create a new image from the changes to an existing
container
# SYNOPSIS
**docker commit** **-a**|**--author**[=""] **-m**|**--message**[=""]
CONTAINER [REPOSITORY[:TAG]]
# DESCRIPTION
Using an existing container's name or ID you can create a new image.
# OPTIONS
**-a, --author**=""
Author name. (eg. "John Hannibal Smith <hannibal@a-team.com>"
**-m, --message**=""
Commit message
# EXAMPLES
## Creating a new image from an existing container
An existing Fedora based container has had Apache installed while running
in interactive mode with the bash shell. Apache is also running. To
create a new image run docker ps to find the container's ID and then run:
# docker commit -me= "Added Apache to Fedora base image" \
--a="A D Ministrator" 98bd7fc99854 fedora/fedora_httpd:20
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-cp - Copy files/folders from the PATH to the HOSTPATH
# SYNOPSIS
**docker cp** CONTAINER:PATH HOSTPATH
# DESCRIPTION
Copy files/folders from the containers filesystem to the host
path. Paths are relative to the root of the filesystem. Files
can be copied from a running or stopped container.
# EXAMPLE
An important shell script file, created in a bash shell, is copied from
the exited container to the current dir on the host:
# docker cp c071f3c3ee81:setup.sh .
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-diff - Inspect changes on a container's filesystem
# SYNOPSIS
**docker diff** CONTAINER
# DESCRIPTION
Inspect changes on a container's filesystem. You can use the full or
shortened container ID or the container name set using
**docker run --name** option.
# EXAMPLE
Inspect the changes to on a nginx container:
# docker diff 1fdfd1f54c1b
C /dev
C /dev/console
C /dev/core
C /dev/stdout
C /dev/fd
C /dev/ptmx
C /dev/stderr
C /dev/stdin
C /run
A /run/nginx.pid
C /var/lib/nginx/tmp
A /var/lib/nginx/tmp/client_body
A /var/lib/nginx/tmp/fastcgi
A /var/lib/nginx/tmp/proxy
A /var/lib/nginx/tmp/scgi
A /var/lib/nginx/tmp/uwsgi
C /var/log/nginx
A /var/log/nginx/access.log
A /var/log/nginx/error.log
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-events - Get real time events from the server
**docker events** **--since**=""|*epoch-time*
# DESCRIPTION
Get event information from the Docker daemon. Information can include historical
information and real-time information.
# OPTIONS
**--since**=""
Show previously created events and then stream. This can be in either
seconds since epoch, or date string.
# EXAMPLES
## Listening for Docker events
After running docker events a container 786d698004576 is started and stopped
(The container name has been shortened in the ouput below):
# docker events
[2014-04-12 18:23:04 -0400 EDT] 786d69800457: (from whenry/testimage:latest) start
[2014-04-12 18:23:13 -0400 EDT] 786d69800457: (from whenry/testimage:latest) die
[2014-04-12 18:23:13 -0400 EDT] 786d69800457: (from whenry/testimage:latest) stop
## Listening for events since a given date
Again the output container IDs have been shortened for the purposes of this document:
# docker events --since '2014-04-12'
[2014-04-12 18:11:28 -0400 EDT] c655dbf640dc: (from whenry/testimage:latest) create
[2014-04-12 18:11:28 -0400 EDT] c655dbf640dc: (from whenry/testimage:latest) start
[2014-04-12 18:14:13 -0400 EDT] 786d69800457: (from whenry/testimage:latest) create
[2014-04-12 18:14:13 -0400 EDT] 786d69800457: (from whenry/testimage:latest) start
[2014-04-12 18:22:44 -0400 EDT] 786d69800457: (from whenry/testimage:latest) die
[2014-04-12 18:22:44 -0400 EDT] 786d69800457: (from whenry/testimage:latest) stop
[2014-04-12 18:23:04 -0400 EDT] 786d69800457: (from whenry/testimage:latest) start
[2014-04-12 18:23:13 -0400 EDT] 786d69800457: (from whenry/testimage:latest) die
[2014-04-12 18:23:13 -0400 EDT] 786d69800457: (from whenry/testimage:latest) stop
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-export - Export the contents of a filesystem as a tar archive to
STDOUT.
# SYNOPSIS
**docker export** CONTAINER
# DESCRIPTION
Export the contents of a container's filesystem using the full or shortened
container ID or container name. The output is exported to STDOUT and can be
redirected to a tar file.
# EXAMPLE
Export the contents of the container called angry_bell to a tar file
called test.tar:
# docker export angry_bell > test.tar
# ls *.tar
test.tar
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-history - Show the history of an image
# SYNOPSIS
**docker history** **--no-trunc**[=*false*] [**-q**|**--quiet**[=*false*]]
IMAGE
# DESCRIPTION
Show the history of when and how an image was created.
# OPTIONS
**--no-trunc**=*true*|*false*
When true don't truncate output. Default is false
**-q**, **--quiet=*true*|*false*
When true only show numeric IDs. Default is false.
# EXAMPLE
$ sudo docker history fedora
IMAGE CREATED CREATED BY SIZE
105182bb5e8b 5 days ago /bin/sh -c #(nop) ADD file:71356d2ad59aa3119d 372.7 MB
73bd853d2ea5 13 days ago /bin/sh -c #(nop) MAINTAINER Lokesh Mandvekar 0 B
511136ea3c5a 10 months ago 0 B
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-images - List the images in the local repository
# SYNOPSIS
**docker images**
[**-a**|**--all**=*false*]
[**--no-trunc**[=*false*]
[**-q**|**--quiet**[=*false*]
[**-t**|**--tree**=*false*]
[**-v**|**--viz**=*false*]
[NAME]
# DESCRIPTION
This command lists the images stored in the local Docker repository.
By default, intermediate images, used during builds, are not listed. Some of the
output, e.g. image ID, is truncated, for space reasons. However the truncated
image ID, and often the first few characters, are enough to be used in other
Docker commands that use the image ID. The output includes repository, tag, image
ID, date created and the virtual size.
The title REPOSITORY for the first title may seem confusing. It is essentially
the image name. However, because you can tag a specific image, and multiple tags
(image instances) can be associated with a single name, the name is really a
repository for all tagged images of the same name. For example consider an image
called fedora. It may be tagged with 18, 19, or 20, etc. to manage different
versions.
# OPTIONS
**-a**, **--all**=*true*|*false*
When set to true, also include all intermediate images in the list. The
default is false.
**--no-trunc**=*true*|*false*
When set to true, list the full image ID and not the truncated ID. The
default is false.
**-q**, **--quiet**=*true*|*false*
When set to true, list the complete image ID as part of the output. The
default is false.
**-t**, **--tree**=*true*|*false*
When set to true, list the images in a tree dependency tree (hierarchy)
format. The default is false.
**-v**, **--viz**=*true*|*false*
When set to true, list the graph in graphviz format. The default is
*false*.
# EXAMPLES
## Listing the images
To list the images in a local repository (not the registry) run:
docker images
The list will contain the image repository name, a tag for the image, and an
image ID, when it was created and its virtual size. Columns: REPOSITORY, TAG,
IMAGE ID, CREATED, and VIRTUAL SIZE.
To get a verbose list of images which contains all the intermediate images
used in builds use **-a**:
docker images -a
## List images dependency tree hierarchy
To list the images in the local repository (not the registry) in a dependency
tree format, use the **-t** option.
docker images -t
This displays a staggered hierarchy tree where the less indented image is
the oldest with dependent image layers branching inward (to the right) on
subsequent lines. The newest or top level image layer is listed last in
any tree branch.
## List images in GraphViz format
To display the list in a format consumable by a GraphViz tools run with
**-v**. For example to produce a .png graph file of the hierarchy use:
docker images --viz | dot -Tpng -o docker.png
## Listing only the shortened image IDs
Listing just the shortened image IDs. This can be useful for some automated
tools.
docker images -q
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-import - Create an empty filesystem image and import the contents
of the tarball into it.
# SYNOPSIS
**docker import** URL|- [REPOSITORY[:TAG]]
# DESCRIPTION
Create a new filesystem image from the contents of a tarball (.tar,
.tar.gz, .tgz, .bzip, .tar.xz, .txz) into it, then optionally tag it.
# EXAMPLES
## Import from a remote location
# docker import http://example.com/exampleimage.tgz example/imagerepo
## Import from a local file
Import to docker via pipe and stdin:
# cat exampleimage.tgz | docker import - example/imagelocal
## Import from a local file and tag
Import to docker via pipe and stdin:
# cat exampleimageV2.tgz | docker import - example/imagelocal:V-2.0
## Import from a local directory
# tar -c . | docker import - exampleimagedir
# HISTORY
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% William Henry
% APRIL 2014
# NAME
docker-info - Display system wide information
# SYNOPSIS
**docker info**
# DESCRIPTION
This command displays system wide information regarding the Docker installation.
Information displayed includes the number of containers and images, pool name,
data file, metadata file, data space used, total data space, metadata space used
, total metadata space, execution driver, and the kernel version.
The data file is where the images are stored and the metadata file is where the
meta data regarding those images are stored. When run for the first time Docker
allocates a certain amount of data space and meta data space from the space
available on the volume where `/var/lib/docker` is mounted.
# OPTIONS
There are no available options.
# EXAMPLES
## Display Docker system information
Here is a sample output:
# docker info
Containers: 18
Images: 95
Storage Driver: devicemapper
Pool Name: docker-8:1-170408448-pool
Data file: /var/lib/docker/devicemapper/devicemapper/data
Metadata file: /var/lib/docker/devicemapper/devicemapper/metadata
Data Space Used: 9946.3 Mb
Data Space Total: 102400.0 Mb
Metadata Space Used: 9.9 Mb
Metadata Space Total: 2048.0 Mb
Execution Driver: native-0.1
Kernel Version: 3.10.0-116.el7.x86_64
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-inspect - Return low-level information on a container/image
# SYNOPSIS
**docker inspect** [**-f**|**--format**="" CONTAINER|IMAGE
[CONTAINER|IMAGE...]
# DESCRIPTION
This displays all the information available in Docker for a given
container or image. By default, this will render all results in a JSON
array. If a format is specified, the given template will be executed for
each result.
# OPTIONS
**-f**, **--format**=""
The text/template package of Go describes all the details of the
format. See examples section
# EXAMPLES
## Getting information on a container
To get information on a container use it's ID or instance name:
#docker inspect 1eb5fabf5a03
[{
"ID": "1eb5fabf5a03807136561b3c00adcd2992b535d624d5e18b6cdc6a6844d9767b",
"Created": "2014-04-04T21:33:52.02361335Z",
"Path": "/usr/sbin/nginx",
"Args": [],
"Config": {
"Hostname": "1eb5fabf5a03",
"Domainname": "",
"User": "",
"Memory": 0,
"MemorySwap": 0,
"CpuShares": 0,
"AttachStdin": false,
"AttachStdout": false,
"AttachStderr": false,
"PortSpecs": null,
"ExposedPorts": {
"80/tcp": {}
},
"Tty": true,
"OpenStdin": false,
"StdinOnce": false,
"Env": [
"HOME=/",
"PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin"
],
"Cmd": [
"/usr/sbin/nginx"
],
"Dns": null,
"DnsSearch": null,
"Image": "summit/nginx",
"Volumes": null,
"VolumesFrom": "",
"WorkingDir": "",
"Entrypoint": null,
"NetworkDisabled": false,
"OnBuild": null,
"Context": {
"mount_label": "system_u:object_r:svirt_sandbox_file_t:s0:c0,c650",
"process_label": "system_u:system_r:svirt_lxc_net_t:s0:c0,c650"
}
},
"State": {
"Running": true,
"Pid": 858,
"ExitCode": 0,
"StartedAt": "2014-04-04T21:33:54.16259207Z",
"FinishedAt": "0001-01-01T00:00:00Z",
"Ghost": false
},
"Image": "df53773a4390e25936f9fd3739e0c0e60a62d024ea7b669282b27e65ae8458e6",
"NetworkSettings": {
"IPAddress": "172.17.0.2",
"IPPrefixLen": 16,
"Gateway": "172.17.42.1",
"Bridge": "docker0",
"PortMapping": null,
"Ports": {
"80/tcp": [
{
"HostIp": "0.0.0.0",
"HostPort": "80"
}
]
}
},
"ResolvConfPath": "/etc/resolv.conf",
"HostnamePath": "/var/lib/docker/containers/1eb5fabf5a03807136561b3c00adcd2992b535d624d5e18b6cdc6a6844d9767b/hostname",
"HostsPath": "/var/lib/docker/containers/1eb5fabf5a03807136561b3c00adcd2992b535d624d5e18b6cdc6a6844d9767b/hosts",
"Name": "/ecstatic_ptolemy",
"Driver": "devicemapper",
"ExecDriver": "native-0.1",
"Volumes": {},
"VolumesRW": {},
"HostConfig": {
"Binds": null,
"ContainerIDFile": "",
"LxcConf": [],
"Privileged": false,
"PortBindings": {
"80/tcp": [
{
"HostIp": "0.0.0.0",
"HostPort": "80"
}
]
},
"Links": null,
"PublishAllPorts": false,
"DriverOptions": {
"lxc": null
},
"CliAddress": ""
}
## Getting the IP address of a container instance
To get the IP address of a container use:
# docker inspect --format='{{.NetworkSettings.IPAddress}}' 1eb5fabf5a03
172.17.0.2
## Listing all port bindings
One can loop over arrays and maps in the results to produce simple text
output:
# docker inspect --format='{{range $p, $conf := .NetworkSettings.Ports}} \
{{$p}} -> {{(index $conf 0).HostPort}} {{end}}' 1eb5fabf5a03
80/tcp -> 80
## Getting information on an image
Use an image's ID or name (e.g. repository/name[:tag]) to get information
on it.
# docker inspect 58394af37342
[{
"id": "58394af373423902a1b97f209a31e3777932d9321ef10e64feaaa7b4df609cf9",
"parent": "8abc22bad04266308ff408ca61cb8f6f4244a59308f7efc64e54b08b496c58db",
"created": "2014-02-03T16:10:40.500814677Z",
"container": "f718f19a28a5147da49313c54620306243734bafa63c76942ef6f8c4b4113bc5",
"container_config": {
"Hostname": "88807319f25e",
"Domainname": "",
"User": "",
"Memory": 0,
"MemorySwap": 0,
"CpuShares": 0,
"AttachStdin": false,
"AttachStdout": false,
"AttachStderr": false,
"PortSpecs": null,
"ExposedPorts": null,
"Tty": false,
"OpenStdin": false,
"StdinOnce": false,
"Env": [
"HOME=/",
"PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin"
],
"Cmd": [
"/bin/sh",
"-c",
"#(nop) ADD fedora-20-dummy.tar.xz in /"
],
"Dns": null,
"DnsSearch": null,
"Image": "8abc22bad04266308ff408ca61cb8f6f4244a59308f7efc64e54b08b496c58db",
"Volumes": null,
"VolumesFrom": "",
"WorkingDir": "",
"Entrypoint": null,
"NetworkDisabled": false,
"OnBuild": null,
"Context": null
},
"docker_version": "0.6.3",
"author": "I P Babble \u003clsm5@ipbabble.com\u003e - ./buildcontainers.sh",
"config": {
"Hostname": "88807319f25e",
"Domainname": "",
"User": "",
"Memory": 0,
"MemorySwap": 0,
"CpuShares": 0,
"AttachStdin": false,
"AttachStdout": false,
"AttachStderr": false,
"PortSpecs": null,
"ExposedPorts": null,
"Tty": false,
"OpenStdin": false,
"StdinOnce": false,
"Env": [
"HOME=/",
"PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin"
],
"Cmd": null,
"Dns": null,
"DnsSearch": null,
"Image": "8abc22bad04266308ff408ca61cb8f6f4244a59308f7efc64e54b08b496c58db",
"Volumes": null,
"VolumesFrom": "",
"WorkingDir": "",
"Entrypoint": null,
"NetworkDisabled": false,
"OnBuild": null,
"Context": null
},
"architecture": "x86_64",
"Size": 385520098
}]
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-kill - Kill a running container (send SIGKILL, or specified signal)
# SYNOPSIS
**docker kill** **--signal**[=*"KILL"*] CONTAINER [CONTAINER...]
# DESCRIPTION
The main process inside each container specified will be sent SIGKILL,
or any signal specified with option --signal.
# OPTIONS
**-s**, **--signal**=*"KILL"*
Signal to send to the container
# HISTORY
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% APRIL 2014
# NAME
docker-load - Load an image from a tar archive on STDIN
# SYNOPSIS
**docker load** **--input**=""
# DESCRIPTION
Loads a tarred repository from a file or the standard input stream.
Restores both images and tags.
# OPTIONS
**-i**, **--input**=""
Read from a tar archive file, instead of STDIN
# EXAMPLE
$ sudo docker images
REPOSITORY TAG IMAGE ID CREATED VIRTUAL SIZE
busybox latest 769b9341d937 7 weeks ago 2.489 MB
$ sudo docker load --input fedora.tar
$ sudo docker images
REPOSITORY TAG IMAGE ID CREATED VIRTUAL SIZE
busybox latest 769b9341d937 7 weeks ago 2.489 MB
fedora rawhide 0d20aec6529d 7 weeks ago 387 MB
fedora 20 58394af37342 7 weeks ago 385.5 MB
fedora heisenbug 58394af37342 7 weeks ago 385.5 MB
fedora latest 58394af37342 7 weeks ago 385.5 MB
# HISTORY
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% William Henry
% APRIL 2014
# NAME
docker-login - Register or Login to a docker registry server.
# SYNOPSIS
**docker login** [**-e**|**-email**=""] [**-p**|**--password**=""]
[**-u**|**--username**=""] [SERVER]
# DESCRIPTION
Register or Login to a docker registry server, if no server is
specified "https://index.docker.io/v1/" is the default. If you want to
login to a private registry you can specify this by adding the server name.
# OPTIONS
**-e**, **--email**=""
Email address
**-p**, **--password**=""
Password
**-u**, **--username**=""
Username
# EXAMPLE
## Login to a local registry
# docker login localhost:8080
# HISTORY
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% William Henry
% APRIL 2014
# NAME
docker-logs - Fetch the logs of a container
# SYNOPSIS
**docker logs** **--follow**[=*false*] CONTAINER
# DESCRIPTION
The **docker logs** command batch-retrieves whatever logs are present for
a container at the time of execution. This does not guarantee execution
order when combined with a docker run (i.e. your run may not have generated
any logs at the time you execute docker logs).
The **docker logs --follow** command combines commands **docker logs** and
**docker attach**. It will first return all logs from the beginning and
then continue streaming new output from the containers stdout and stderr.
# OPTIONS
**-f, --follow**=*true*|*false*
When *true*, follow log output. The default is false.
# HISTORY
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% William Henry
% APRIL 2014
# NAME
docker-port - Lookup the public-facing port which is NAT-ed to PRIVATE_PORT
# SYNOPSIS
**docker port** CONTAINER PRIVATE_PORT
# DESCRIPTION
Lookup the public-facing port which is NAT-ed to PRIVATE_PORT
# HISTORY
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% APRIL 2014
# NAME
docker-ps - List containers
# SYNOPSIS
**docker ps** [**-a**|**--all**=*false*] [**--before**=""]
[**-l**|**--latest**=*false*] [**-n**=*-1*] [**--no-trunc**=*false*]
[**-q**|**--quiet**=*false*] [**-s**|**--size**=*false*]
[**--since**=""]
# DESCRIPTION
List the containers in the local repository. By default this show only
the running containers.
# OPTIONS
**-a**, **--all**=*true*|*false*
When true show all containers. Only running containers are shown by
default. Default is false.
**--before**=""
Show only container created before Id or Name, include non-running
ones.
**-l**, **--latest**=*true*|*false*
When true show only the latest created container, include non-running
ones. The default is false.
**-n**=NUM
Show NUM (integer) last created containers, include non-running ones.
The default is -1 (none)
**--no-trunc**=*true*|*false*
When true truncate output. Default is false.
**-q**, **--quiet**=*true*|*false*
When false only display numeric IDs. Default is false.
**-s**, **--size**=*true*|*false*
When true display container sizes. Default is false.
**--since**=""
Show only containers created since Id or Name, include non-running ones.
# EXAMPLE
# Display all containers, including non-running
# docker ps -a
CONTAINER ID IMAGE COMMAND CREATED STATUS PORTS NAMES
a87ecb4f327c fedora:20 /bin/sh -c #(nop) MA 20 minutes ago Exit 0 desperate_brattain
01946d9d34d8 vpavlin/rhel7:latest /bin/sh -c #(nop) MA 33 minutes ago Exit 0 thirsty_bell
c1d3b0166030 acffc0358b9e /bin/sh -c yum -y up 2 weeks ago Exit 1 determined_torvalds
41d50ecd2f57 fedora:20 /bin/sh -c #(nop) MA 2 weeks ago Exit 0 drunk_pike
# Display only IDs of all containers, including non-running
# docker ps -a -q
a87ecb4f327c
01946d9d34d8
c1d3b0166030
41d50ecd2f57
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-pull - Pull an image or a repository from the registry
# SYNOPSIS
**docker pull** NAME[:TAG]
# DESCRIPTION
This command pulls down an image or a repository from the registry. If
there is more than one image for a repository (e.g. fedora) then all
images for that repository name are pulled down including any tags.
# EXAMPLE
# Pull a reposiotry with multiple images
$ sudo docker pull fedora
Pulling repository fedora
ad57ef8d78d7: Download complete
105182bb5e8b: Download complete
511136ea3c5a: Download complete
73bd853d2ea5: Download complete
$ sudo docker images
REPOSITORY TAG IMAGE ID CREATED VIRTUAL SIZE
fedora rawhide ad57ef8d78d7 5 days ago 359.3 MB
fedora 20 105182bb5e8b 5 days ago 372.7 MB
fedora heisenbug 105182bb5e8b 5 days ago 372.7 MB
fedora latest 105182bb5e8b 5 days ago 372.7 MB
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-push - Push an image or a repository to the registry
# SYNOPSIS
**docker push** NAME[:TAG]
# DESCRIPTION
Push an image or a repository to a registry. The default registry is the Docker
Index located at [index.docker.io](https://index.docker.io/v1/). However the
image can be pushed to another, perhaps private, registry as demonstrated in
the example below.
# EXAMPLE
# Pushing a new image to a registry
First save the new image by finding the container ID (using **docker ps**)
and then committing it to a new image name:
# docker commit c16378f943fe rhel-httpd
Now push the image to the registry using the image ID. In this example
the registry is on host named registry-host and listening on port 5000.
Default Docker commands will push to the default `index.docker.io`
registry. Instead, push to the local registry, which is on a host called
registry-host*. To do this, tag the image with the host name or IP
address, and the port of the registry:
# docker tag rhel-httpd registry-host:5000/myadmin/rhel-httpd
# docker push registry-host:5000/myadmin/rhel-httpd
Check that this worked by running:
# docker images
You should see both `rhel-httpd` and `registry-host:5000/myadmin/rhel-httpd`
listed.
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-restart - Restart a running container
# SYNOPSIS
**docker restart** [**-t**|**--time**[=*10*]] CONTAINER [CONTAINER...]
# DESCRIPTION
Restart each container listed.
# OPTIONS
**-t**, **--time**=NUM
Number of seconds to try to stop for before killing the container. Once
killed it will then be restarted. Default=10
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-rm - Remove one or more containers.
# SYNOPSIS
**docker rm** [**-f**|**--force**[=*false*] [**-l**|**--link**[=*false*] [**-v**|
**--volumes**[=*false*]
CONTAINER [CONTAINER...]
# DESCRIPTION
**docker rm** will remove one or more containers from the host node. The
container name or ID can be used. This does not remove images. You cannot
remove a running container unless you use the \fB-f\fR option. To see all
containers on a host use the **docker ps -a** command.
# OPTIONS
**-f**, **--force**=*true*|*false*
When set to true, force the removal of the container. The default is
*false*.
**-l**, **--link**=*true*|*false*
When set to true, remove the specified link and not the underlying
container. The default is *false*.
**-v**, **--volumes**=*true*|*false*
When set to true, remove the volumes associated to the container. The
default is *false*.
# EXAMPLES
##Removing a container using its ID##
To remove a container using its ID, find either from a **docker ps -a**
command, or use the ID returned from the **docker run** command, or retrieve
it from a file used to store it using the **docker run --cidfile**:
docker rm abebf7571666
##Removing a container using the container name##
The name of the container can be found using the **docker ps -a**
command. The use that name as follows:
docker rm hopeful_morse
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-rmi \- Remove one or more images.
# SYNOPSIS
**docker rmi** [**-f**|**--force**[=*false*] IMAGE [IMAGE...]
# DESCRIPTION
This will remove one or more images from the host node. This does not
remove images from a registry. You cannot remove an image of a running
container unless you use the **-f** option. To see all images on a host
use the **docker images** command.
# OPTIONS
**-f**, **--force**=*true*|*false*
When set to true, force the removal of the image. The default is
*false*.
# EXAMPLES
## Removing an image
Here is an example of removing and image:
docker rmi fedora/httpd
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-run - Run a process in an isolated container
# SYNOPSIS
**docker run**
[**-a**|**--attach**[=]] [**-c**|**--cpu-shares**[=0]
[**-m**|**--memory**=*memory-limit*]
[**--cidfile**=*file*] [**-d**|**--detach**[=*false*]] [**--dns**=*IP-address*]
[**--name**=*name*] [**-u**|**--user**=*username*|*uid*]
[**--link**=*name*:*alias*]
[**-e**|**--env**=*environment*] [**--entrypoint**=*command*]
[**--expose**=*port*] [**-P**|**--publish-all**[=*false*]]
[**-p**|**--publish**=*port-mappping*] [**-h**|**--hostname**=*hostname*]
[**--rm**[=*false*]] [**--priviledged**[=*false*]
[**-i**|**--interactive**[=*false*]
[**-t**|**--tty**[=*false*]] [**--lxc-conf**=*options*]
[**-n**|**--networking**[=*true*]]
[**-v**|**--volume**=*volume*] [**--volumes-from**=*container-id*]
[**-w**|**--workdir**=*directory*] [**--sig-proxy**[=*true*]]
IMAGE [COMMAND] [ARG...]
# DESCRIPTION
Run a process in a new container. **docker run** starts a process with its own
file system, its own networking, and its own isolated process tree. The IMAGE
which starts the process may define defaults related to the process that will be
run in the container, the networking to expose, and more, but **docker run**
gives final control to the operator or administrator who starts the container
from the image. For that reason **docker run** has more options than any other
Docker command.
If the IMAGE is not already loaded then **docker run** will pull the IMAGE, and
all image dependencies, from the repository in the same way running **docker
pull** IMAGE, before it starts the container from that image.
# OPTIONS
**-a**, **--attach**=*stdin*|*stdout*|*stderr*
Attach to stdin, stdout or stderr. In foreground mode (the default when
**-d** is not specified), **docker run** can start the process in the container
and attach the console to the processs standard input, output, and standard
error. It can even pretend to be a TTY (this is what most commandline
executables expect) and pass along signals. The **-a** option can be set for
each of stdin, stdout, and stderr.
**-c**, **--cpu-shares**=0
CPU shares in relative weight. You can increase the priority of a container
with the -c option. By default, all containers run at the same priority and get
the same proportion of CPU cycles, but you can tell the kernel to give more
shares of CPU time to one or more containers when you start them via **docker
run**.
**--cidfile**=*file*
Write the container ID to the file specified.
**-d**, **-detach**=*true*|*false*
Detached mode. This runs the container in the background. It outputs the new
container's ID and any error messages. At any time you can run **docker ps** in
the other shell to view a list of the running containers. You can reattach to a
detached container with **docker attach**. If you choose to run a container in
the detached mode, then you cannot use the **-rm** option.
**--dns**=*IP-address*
Set custom DNS servers. This option can be used to override the DNS
configuration passed to the container. Typically this is necessary when the
host DNS configuration is invalid for the container (eg. 127.0.0.1). When this
is the case the **-dns** flags is necessary for every run.
**-e**, **-env**=*environment*
Set environment variables. This option allows you to specify arbitrary
environment variables that are available for the process that will be launched
inside of the container.
**--entrypoint**=*command*
This option allows you to overwrite the default entrypoint of the image that
is set in the Dockerfile. The ENTRYPOINT of an image is similar to a COMMAND
because it specifies what executable to run when the container starts, but it is
(purposely) more difficult to override. The ENTRYPOINT gives a container its
default nature or behavior, so that when you set an ENTRYPOINT you can run the
container as if it were that binary, complete with default options, and you can
pass in more options via the COMMAND. But, sometimes an operator may want to run
something else inside the container, so you can override the default ENTRYPOINT
at runtime by using a **--entrypoint** and a string to specify the new
ENTRYPOINT.
**--expose**=*port*
Expose a port from the container without publishing it to your host. A
containers port can be exposed to other containers in three ways: 1) The
developer can expose the port using the EXPOSE parameter of the Dockerfile, 2)
the operator can use the **--expose** option with **docker run**, or 3) the
container can be started with the **--link**.
**-m**, **-memory**=*memory-limit*
Allows you to constrain the memory available to a container. If the host
supports swap memory, then the -m memory setting can be larger than physical
RAM. The memory limit format: <number><optional unit>, where unit = b, k, m or
g.
**-P**, **-publish-all**=*true*|*false*
When set to true publish all exposed ports to the host interfaces. The
default is false. If the operator uses -P (or -p) then Docker will make the
exposed port accessible on the host and the ports will be available to any
client that can reach the host. To find the map between the host ports and the
exposed ports, use **docker port**.
**-p**, **-publish**=[]
Publish a container's port to the host (format: ip:hostPort:containerPort |
ip::containerPort | hostPort:containerPort) (use **docker port** to see the
actual mapping)
**-h**, **-hostname**=*hostname*
Sets the container host name that is available inside the container.
**-i**, **-interactive**=*true*|*false*
When set to true, keep stdin open even if not attached. The default is false.
**--link**=*name*:*alias*
Add link to another container. The format is name:alias. If the operator
uses **--link** when starting the new client container, then the client
container can access the exposed port via a private networking interface. Docker
will set some environment variables in the client container to help indicate
which interface and port to use.
**-n**, **-networking**=*true*|*false*
By default, all containers have networking enabled (true) and can make
outgoing connections. The operator can disable networking with **--networking**
to false. This disables all incoming and outgoing networking. In cases like this
, I/O can only be performed through files or by using STDIN/STDOUT.
Also by default, the container will use the same DNS servers as the host. The
operator may override this with **-dns**.
**--name**=*name*
Assign a name to the container. The operator can identify a container in
three ways:
UUID long identifier (“f78375b1c487e03c9438c729345e54db9d20cfa2ac1fc3494b6eb60872e74778”)
UUID short identifier (“f78375b1c487”)
Name (“jonah”)
The UUID identifiers come from the Docker daemon, and if a name is not assigned
to the container with **--name** then the daemon will also generate a random
string name. The name is useful when defining links (see **--link**) (or any
other place you need to identify a container). This works for both background
and foreground Docker containers.
**--privileged**=*true*|*false*
Give extended privileges to this container. By default, Docker containers are
“unprivileged” (=false) and cannot, for example, run a Docker daemon inside the
Docker container. This is because by default a container is not allowed to
access any devices. A “privileged” container is given access to all devices.
When the operator executes **docker run -privileged**, Docker will enable access
to all devices on the host as well as set some configuration in AppArmor to
allow the container nearly all the same access to the host as processes running
outside of a container on the host.
**--rm**=*true*|*false*
If set to *true* the container is automatically removed when it exits. The
default is *false*. This option is incompatible with **-d**.
**--sig-proxy**=*true*|*false*
When set to true, proxify all received signals to the process (even in
non-tty mode). The default is true.
**-t**, **-tty**=*true*|*false*
When set to true Docker can allocate a pseudo-tty and attach to the standard
input of any container. This can be used, for example, to run a throwaway
interactive shell. The default is value is false.
**-u**, **-user**=*username*,*uid*
Set a username or UID for the container.
**-v**, **-volume**=*volume*
Bind mount a volume to the container. The **-v** option can be used one or
more times to add one or more mounts to a container. These mounts can then be
used in other containers using the **--volumes-from** option. See examples.
**--volumes-from**=*container-id*
Will mount volumes from the specified container identified by container-id.
Once a volume is mounted in a one container it can be shared with other
containers using the **--volumes-from** option when running those other
containers. The volumes can be shared even if the original container with the
mount is not running.
**-w**, **-workdir**=*directory*
Working directory inside the container. The default working directory for
running binaries within a container is the root directory (/). The developer can
set a different default with the Dockerfile WORKDIR instruction. The operator
can override the working directory by using the **-w** option.
**IMAGE**
The image name or ID.
**COMMAND**
The command or program to run inside the image.
**ARG**
The arguments for the command to be run in the container.
# EXAMPLES
## Exposing log messages from the container to the host's log
If you want messages that are logged in your container to show up in the host's
syslog/journal then you should bind mount the /var/log directory as follows.
# docker run -v /dev/log:/dev/log -i -t fedora /bin/bash
From inside the container you can test this by sending a message to the log.
(bash)# logger "Hello from my container"
Then exit and check the journal.
# exit
# journalctl -b | grep Hello
This should list the message sent to logger.
## Attaching to one or more from STDIN, STDOUT, STDERR
If you do not specify -a then Docker will attach everything (stdin,stdout,stderr)
. You can specify to which of the three standard streams (stdin, stdout, stderr)
youd like to connect instead, as in:
# docker run -a stdin -a stdout -i -t fedora /bin/bash
## Linking Containers
The link feature allows multiple containers to communicate with each other. For
example, a container whose Dockerfile has exposed port 80 can be run and named
as follows:
# docker run --name=link-test -d -i -t fedora/httpd
A second container, in this case called linker, can communicate with the httpd
container, named link-test, by running with the **--link=<name>:<alias>**
# docker run -t -i --link=link-test:lt --name=linker fedora /bin/bash
Now the container linker is linked to container link-test with the alias lt.
Running the **env** command in the linker container shows environment variables
with the LT (alias) context (**LT_**)
# env
HOSTNAME=668231cb0978
TERM=xterm
LT_PORT_80_TCP=tcp://172.17.0.3:80
LT_PORT_80_TCP_PORT=80
LT_PORT_80_TCP_PROTO=tcp
LT_PORT=tcp://172.17.0.3:80
PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin
PWD=/
LT_NAME=/linker/lt
SHLVL=1
HOME=/
LT_PORT_80_TCP_ADDR=172.17.0.3
_=/usr/bin/env
When linking two containers Docker will use the exposed ports of the container
to create a secure tunnel for the parent to access.
## Mapping Ports for External Usage
The exposed port of an application can be mapped to a host port using the **-p**
flag. For example a httpd port 80 can be mapped to the host port 8080 using the
following:
# docker run -p 8080:80 -d -i -t fedora/httpd
## Creating and Mounting a Data Volume Container
Many applications require the sharing of persistent data across several
containers. Docker allows you to create a Data Volume Container that other
containers can mount from. For example, create a named container that contains
directories /var/volume1 and /tmp/volume2. The image will need to contain these
directories so a couple of RUN mkdir instructions might be required for you
fedora-data image:
# docker run --name=data -v /var/volume1 -v /tmp/volume2 -i -t fedora-data true
# docker run --volumes-from=data --name=fedora-container1 -i -t fedora bash
Multiple -volumes-from parameters will bring together multiple data volumes from
multiple containers. And it's possible to mount the volumes that came from the
DATA container in yet another container via the fedora-container1 intermidiery
container, allowing to abstract the actual data source from users of that data:
# docker run --volumes-from=fedora-container1 --name=fedora-container2 -i -t fedora bash
## Mounting External Volumes
To mount a host directory as a container volume, specify the absolute path to
the directory and the absolute path for the container directory separated by a
colon:
# docker run -v /var/db:/data1 -i -t fedora bash
When using SELinux, be aware that the host has no knowledge of container SELinux
policy. Therefore, in the above example, if SELinux policy is enforced, the
`/var/db` directory is not writable to the container. A "Permission Denied"
message will occur and an avc: message in the host's syslog.
To work around this, at time of writing this man page, the following command
needs to be run in order for the proper SELinux policy type label to be attached
to the host directory:
# chcon -Rt svirt_sandbox_file_t /var/db
Now, writing to the /data1 volume in the container will be allowed and the
changes will also be reflected on the host in /var/db.
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-save - Save an image to a tar archive (streamed to STDOUT by default)
# SYNOPSIS
**docker save** [**-o**|**--output**=""] IMAGE
# DESCRIPTION
Produces a tarred repository to the standard output stream. Contains all
parent layers, and all tags + versions, or specified repo:tag.
Stream to a file instead of STDOUT by using **-o**.
# OPTIONS
**-o**, **--output**=""
Write to an file, instead of STDOUT
# EXAMPLE
Save all fedora repository images to a fedora-all.tar and save the latest
fedora image to a fedora-latest.tar:
$ sudo docker save fedora > fedora-all.tar
$ sudo docker save --output=fedora-latest.tar fedora:latest
$ ls -sh fedora-all.tar
721M fedora-all.tar
$ ls -sh fedora-latest.tar
367M fedora-latest.tar
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-search - Search the docker index for images
# SYNOPSIS
**docker search** **--no-trunc**[=*false*] **-t**|**--trusted**[=*false*]
**-s**|**--stars**[=*0*] TERM
# DESCRIPTION
Search an index for an image with that matches the term TERM. The table
of images returned displays the name, description (truncated by default),
number of stars awarded, whether the image is official, and whether it
is trusted.
# OPTIONS
**--no-trunc**=*true*|*false*
When true display the complete description. The default is false.
**-s**, **--stars**=NUM
Only displays with at least NUM (integer) stars. I.e. only those images
ranked >=NUM.
**-t**, **--trusted**=*true*|*false*
When true only show trusted builds. The default is false.
# EXAMPLE
## Search the registry for ranked images
Search the registry for the term 'fedora' and only display those images
ranked 3 or higher:
$ sudo docker search -s 3 fedora
NAME DESCRIPTION STARS OFFICIAL TRUSTED
mattdm/fedora A basic Fedora image corresponding roughly... 50
fedora (Semi) Official Fedora base image. 38
mattdm/fedora-small A small Fedora image on which to build. Co... 8
goldmann/wildfly A WildFly application server running on a ... 3 [OK]
## Search the registry for trusted images
Search the registry for the term 'fedora' and only display trusted images
ranked 1 or higher:
$ sudo docker search -s 1 -t fedora
NAME DESCRIPTION STARS OFFICIAL TRUSTED
goldmann/wildfly A WildFly application server running on a ... 3 [OK]
tutum/fedora-20 Fedora 20 image with SSH access. For the r... 1 [OK]
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-start - Restart a stopped container
# SYNOPSIS
**docker start** [**a**|**--attach**[=*false*]] [**-i**|**--interactive**
[=*true*] CONTAINER [CONTAINER...]
# DESCRIPTION
Start a stopped container.
# OPTION
**-a**, **--attach**=*true*|*false*
When true attach to container's stdout/stderr and forward all signals to
the process
**-i**, **--interactive**=*true*|*false*
When true attach to container's stdin
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-stop - Stop a running container
grace period)
# SYNOPSIS
**docker stop** [**-t**|**--time**[=*10*]] CONTAINER [CONTAINER...]
# DESCRIPTION
Stop a running container (Send SIGTERM, and then SIGKILL after
grace period)
# OPTIONS
**-t**, **--time**=NUM
Wait NUM number of seconds for the container to stop before killing it.
The default is 10 seconds.
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-tag - Tag an image in the repository
# SYNOPSIS
**docker tag** [**-f**|**--force**[=*false*]
IMAGE [REGISTRYHOST/][USERNAME/]NAME[:TAG]
# DESCRIPTION
This will tag an image in the repository.
# "OPTIONS"
**-f**, **--force**=*true*|*false*
When set to true, force the tag name. The default is *false*.
**REGISTRYHOST**
The hostname of the registry if required. This may also include the port
separated by a ':'
**USERNAME**
The username or other qualifying identifier for the image.
**NAME**
The image name.
**TAG**
The tag you are assigning to the image.
# EXAMPLES
## Tagging an image
Here is an example of tagging an image with the tag version1.0 :
docker tag 0e5574283393 fedora/httpd:version1.0
## Tagging an image for a private repository
To push an image to an private registry and not the central Docker
registry you must tag it with the registry hostname and port (if needed).
docker tag 0e5574283393 myregistryhost:5000/fedora/httpd:version1.0
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-top - Lookup the running processes of a container
# SYNOPSIS
**docker top** CONTAINER [ps-OPTION]
# DESCRIPTION
Look up the running process of the container. ps-OPTION can be any of the
options you would pass to a Linux ps command.
# EXAMPLE
Run **docker top** with the ps option of -x:
$ sudo docker top 8601afda2b -x
PID TTY STAT TIME COMMAND
16623 ? Ss 0:00 sleep 99999
# HISTORY
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% DOCKER(1) Docker User Manuals
% William Henry
% APRIL 2014
# NAME
docker-wait - Block until a container stops, then print its exit code.
# SYNOPSIS
**docker wait** CONTAINER [CONTAINER...]
# DESCRIPTION
Block until a container stops, then print its exit code.
#EXAMPLE
$ sudo docker run -d fedora sleep 99
079b83f558a2bc52ecad6b2a5de13622d584e6bb1aea058c11b36511e85e7622
$ sudo docker wait 079b83f558a2bc
0
# HISTORY
April 2014, Originally compiled by William Henry (whenry at redhat dot com)
based on docker.io source material and internal work.

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