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* doc/misc/auth.texi (Help for users): Mention placing more specific entries first (bug#45711).
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706 lines
25 KiB
Plaintext
\input texinfo @c -*-texinfo-*-
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@set VERSION 0.3
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@setfilename ../../info/auth.info
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@settitle Emacs auth-source Library @value{VERSION}
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@include docstyle.texi
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@copying
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This file describes the Emacs auth-source library.
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Copyright @copyright{} 2008--2021 Free Software Foundation, Inc.
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@quotation
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Permission is granted to copy, distribute and/or modify this document
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under the terms of the GNU Free Documentation License, Version 1.3 or
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any later version published by the Free Software Foundation; with no
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Invariant Sections, with the Front-Cover Texts being ``A GNU Manual,''
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and with the Back-Cover Texts as in (a) below. A copy of the license
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is included in the section entitled ``GNU Free Documentation License''.
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(a) The FSF's Back-Cover Text is: ``You have the freedom to copy and
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modify this GNU manual.''
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@end quotation
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@end copying
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@dircategory Emacs lisp libraries
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@direntry
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* Auth-source: (auth). The Emacs auth-source library.
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@end direntry
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@titlepage
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@ifset WEBHACKDEVEL
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@title Emacs auth-source Library (DEVELOPMENT VERSION)
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@end ifset
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@ifclear WEBHACKDEVEL
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@title Emacs auth-source Library
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@end ifclear
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@author by Ted Zlatanov
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@page
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@vskip 0pt plus 1filll
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@insertcopying
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@end titlepage
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@contents
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@ifnottex
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@node Top
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@top Emacs auth-source
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This manual describes the Emacs auth-source library.
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It is a way for multiple applications to share a single configuration
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(in Emacs and in files) for user convenience.
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@insertcopying
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@menu
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* Overview:: Overview of the auth-source library.
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* Help for users::
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* Multiple GMail accounts with Gnus::
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* Secret Service API::
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* The Unix password store::
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* Help for developers::
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* GnuPG and EasyPG Assistant Configuration::
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* GNU Free Documentation License:: The license for this documentation.
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* Index::
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* Function Index::
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* Variable Index::
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@end menu
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@end ifnottex
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@node Overview
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@chapter Overview
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The auth-source library is simply a way for Emacs and Gnus, among
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others, to answer the old burning question ``What are my user name and
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password?''
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(This is different from the old question about burning ``Where is the
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fire extinguisher, please?''.)
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The auth-source library supports more than just the user name or the
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password (known as the secret).
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Similarly, the auth-source library supports multiple storage backend,
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currently either the classic ``netrc'' backend, examples of which you
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can see later in this document, JSON files, the Secret Service API, and pass, the
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standard unix password manager. This is done with EIEIO-based
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backends and you can write your own if you want.
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@node Help for users
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@chapter Help for users
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``Netrc'' files are a de facto standard. They look like this:
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@example
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machine @var{mymachine} login @var{myloginname} password @var{mypassword} port @var{myport}
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@end example
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The @code{machine} is the server (either a DNS name or an IP address).
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It's known as @var{:host} in @code{auth-source-search} queries.
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The @code{port} is the connection port or protocol. It's known as
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@var{:port} in @code{auth-source-search} queries.
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The @code{user} is the user name. It's known as @var{:user} in
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@code{auth-source-search} queries. You can also use @code{login} and
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@code{account}.
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Matching entries are usually used in the order they appear, so placing
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the most specific entries first in the file is a good idea. For
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instance:
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@example
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machine example.com login foobar password geheimnis port smtp
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machine example.com login foobar password hemmelig
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@end example
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Here we're using one password for the @code{smtp} service, and a
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different one for all the other services.
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You can also use this file to specify client certificates to use when
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setting up TLS connections. The format is:
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@example
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machine @var{mymachine} port @var{myport} key @var{key} cert @var{cert}
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@end example
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@var{key} and @var{cert} are filenames containing the key and
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certificate to use respectively. In order to make network connections
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use them automatically, either pass @code{:client-certificate t} to
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@code{open-network-stream}, or customize
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@code{network-stream-use-client-certificates} to @code{t}.
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You can use spaces inside a password or other token by surrounding the
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token with either single or double quotes.
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You can use apostrophes inside a password or other token by
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surrounding it with double quotes, e.g., @code{"he'llo"}. Similarly you
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can use double quotes inside a password or other token by surrounding
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it with apostrophes, e.g., @code{'he"llo'}. You can't mix both (so a
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password or other token can't have both apostrophes and double quotes).
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All this is optional. You could just say (but we don't recommend it,
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we're just showing that it's possible)
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@example
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password @var{mypassword}
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@end example
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to use the same password everywhere. Again, @emph{DO NOT DO THIS} or
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you will be pwned as the kids say.
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``Netrc'' files are usually called @file{.authinfo} or @file{.netrc};
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nowadays @file{.authinfo} seems to be more popular and the auth-source
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library encourages this confusion by accepting both, as you'll see
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later.
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If you have problems with the search, set @code{auth-source-debug} to
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@code{'trivia} and see what host, port, and user the library is
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checking in the @file{*Messages*} buffer. Ditto for any other
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problems, your first step is always to see what's being checked. The
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second step, of course, is to write a blog entry about it and wait for
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the answer in the comments.
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You can customize the variable @code{auth-sources}. The following may
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be needed if you are using an older version of Emacs or if the
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auth-source library is not loaded for some other reason.
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@lisp
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(require 'auth-source) ;; probably not necessary
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(customize-variable 'auth-sources) ;; optional, do it once
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@end lisp
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@defvar auth-sources
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The @code{auth-sources} variable tells the auth-source library where
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your netrc files, Secret Service API collection items, or your
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password store live for a particular host and protocol. While you can
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get fancy, the default and simplest configuration is:
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@lisp
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;;; old default: required :host and :port, not needed anymore
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(setq auth-sources '((:source "~/.authinfo.gpg" :host t :port t)))
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;;; mostly equivalent (see below about fallbacks) but shorter:
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(setq auth-sources '((:source "~/.authinfo.gpg")))
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;;; even shorter and the @emph{default}:
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(setq auth-sources '("~/.authinfo.gpg" "~/.authinfo" "~/.netrc"))
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;;; use the Secrets API @var{Login} collection
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;;; (@pxref{Secret Service API})
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(setq auth-sources '("secrets:Login"))
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;;; use pass (@file{~/.password-store})
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;;; (@pxref{The Unix password store})
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(setq auth-sources '(password-store))
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;;; JSON data in format [@{ "machine": "SERVER",
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;;; "login": "USER", "password": "PASSWORD" @}...]
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(setq auth-sources '("~/.authinfo.json.gpg"))
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@end lisp
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By adding multiple entries to @code{auth-sources} with a particular
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host or protocol, you can have specific netrc files for that host or
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protocol. Usually this is unnecessary but may make sense if you have
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shared netrc files or some other unusual setup (90% of Emacs users
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have unusual setups and the remaining 10% are @emph{really} unusual).
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Here's a mixed example using two sources:
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@lisp
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(setq auth-sources '((:source (:secrets default)
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:host "myserver" :user "joe")
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"~/.authinfo.gpg"))
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@end lisp
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@end defvar
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If you don't customize @code{auth-sources}, you'll have to live with
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the defaults: the unencrypted netrc file @file{~/.authinfo} will be
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used for any host and any port.
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If that fails, any host and any port are looked up in the netrc file
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@file{~/.authinfo.gpg}, which is a GnuPG encrypted file (@pxref{GnuPG
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and EasyPG Assistant Configuration}).
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Finally, the unencrypted netrc file @file{~/.netrc} will be used for
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any host and any port.
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The typical netrc line example is without a port.
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@example
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machine YOURMACHINE login YOU password YOURPASSWORD
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@end example
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This will match any authentication port. Simple, right? But what if
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there's a SMTP server on port 433 of that machine that needs a
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different password from the IMAP server?
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@example
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machine YOURMACHINE login YOU password SMTPPASSWORD port 433
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machine YOURMACHINE login YOU password GENERALPASSWORD
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@end example
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If you wish to specify a particular SMTP authentication method to use
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with a machine, you can use the @code{smtp-auth} keyword.
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@xref{Authentication,, Authentication, smtpmail, Emacs SMTP Library},
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for available methods.
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For url-auth authentication (HTTP/HTTPS), you need to put this in your
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netrc file:
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@example
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machine yourmachine.com:80 port http login testuser password testpass
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@end example
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This will match any realm and authentication method (basic or digest)
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over HTTP@. HTTPS is set up similarly. If you want finer controls,
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explore the url-auth source code and variables.
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For Tramp authentication, use:
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@example
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machine yourmachine.com port scp login testuser password testpass
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@end example
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Note that the port denotes the Tramp connection method. When you
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don't use a port entry, you match any Tramp method, as explained
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earlier. Since Tramp has about 88 connection methods, this may be
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necessary if you have an unusual (see earlier comment on those) setup.
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The netrc format is directly translated into JSON, if you are into
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that sort of thing. Just point to a JSON file with entries like this:
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@example
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[
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@{ "machine": "yourmachine.com", "port": "http",
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"login": "testuser", "password": "testpass" @}
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]
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@end example
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@node Multiple GMail accounts with Gnus
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@chapter Multiple GMail accounts with Gnus
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For multiple GMail accounts with Gnus, you have to make two nnimap
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entries in your @code{gnus-secondary-select-methods} with distinct
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names:
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@example
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(setq gnus-secondary-select-methods '((nnimap "gmail"
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(nnimap-address "imap.gmail.com"))
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(nnimap "gmail2"
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(nnimap-address "imap.gmail.com"))))
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@end example
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Your netrc entries will then be:
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@example
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machine gmail login account@@gmail.com password "account password" port imap
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machine gmail2 login account2@@gmail.com password "account2 password" port imap
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@end example
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@node Secret Service API
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@chapter Secret Service API
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The @dfn{Secret Service API} is a standard from
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@uref{https://www.freedesktop.org/wiki/Specifications/secret-storage-spec/,,freedesktop.org}
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to securely store passwords and other confidential information. This
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API is implemented by system daemons such as the GNOME Keyring and the
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KDE Wallet (these are GNOME and KDE packages respectively and should
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be available on most modern GNU/Linux systems).
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The auth-source library uses the @file{secrets.el} library to connect
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through the Secret Service API@. You can also use that library in
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other packages, it's not exclusive to auth-source.
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@defvar secrets-enabled
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After loading @file{secrets.el}, a non-@code{nil} value of this
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variable indicates the existence of a daemon providing the Secret
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Service API.
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@end defvar
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@deffn Command secrets-show-secrets
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This command shows all collections, items, and their attributes.
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@end deffn
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The atomic objects managed by the Secret Service API are @dfn{secret
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items}, which contain things an application wishes to store securely,
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like a password. Secret items have a label (a name), the @dfn{secret}
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(which is the string we want, like a password), and a set of lookup
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attributes. The attributes can be used to search and retrieve a
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secret item at a later date.
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Secret items are grouped in @dfn{collections}. A collection is
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sometimes called a @samp{keyring} or @samp{wallet} in GNOME Keyring
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and KDE Wallet but it's the same thing, a group of secrets.
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Collections are personal and protected so only the owner can open them.
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The most common collection is called @code{"login"}.
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A collection can have an alias. The alias @code{"default"} is
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commonly used so the clients don't have to know the specific name of
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the collection they open. Other aliases are not supported yet.
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Since aliases are globally accessible, set the @code{"default"} alias
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only when you're sure it's appropriate.
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@defun secrets-list-collections
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This function returns all the collection names as a list.
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@end defun
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@defun secrets-set-alias collection alias
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Set @var{alias} as alias of collection labeled @var{collection}.
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Currently only the alias @code{"default"} is supported.
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@end defun
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@defun secrets-get-alias alias
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Return the collection name @var{alias} is referencing to.
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Currently only the alias @code{"default"} is supported.
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@end defun
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Collections can be created and deleted by the functions
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@code{secrets-create-collection} and @code{secrets-delete-collection}.
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Usually, this is not done from within Emacs. Do not delete standard
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collections such as @code{"login"}.
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The special collection @code{"session"} exists for the lifetime of the
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corresponding client session (in our case, Emacs's lifetime). It is
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created automatically when Emacs uses the Secret Service interface and
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it is deleted when Emacs is killed. Therefore, it can be used to
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store and retrieve secret items temporarily. The @code{"session"}
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collection is better than a persistent collection when the secret
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items should not live longer than Emacs. The session collection can
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be specified either by the string @code{"session"}, or by @code{nil},
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whenever a collection parameter is needed in the following functions.
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@defun secrets-list-items collection
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Returns all the item labels of @var{collection} as a list.
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@end defun
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@defun secrets-create-item collection item password &rest attributes
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This function creates a new item in @var{collection} with label
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@var{item} and password @var{password}. The label @var{item} does not
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have to be unique in @var{collection}. @var{attributes} are key-value
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pairs set for the created item. The keys are keyword symbols,
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starting with a colon. Example:
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@example
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;;; The session is "session", the label is "my item"
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;;; and the secret (password) is "geheim".
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(secrets-create-item "session" "my item" "geheim"
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:method "sudo" :user "joe" :host "remote-host")
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@end example
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The key @code{:xdg:schema} determines the scope of the item to be
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generated, i.e.@: for which applications the item is intended for.
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This is just a string like "org.freedesktop.NetworkManager.Mobile" or
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"org.gnome.OnlineAccounts", the other required keys are determined by
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this. If no @code{:xdg:schema} is given,
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"org.freedesktop.Secret.Generic" is used by default.
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@end defun
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@defun secrets-get-secret collection item
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Return the secret of item labeled @var{item} in @var{collection}. If
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there are several items labeled @var{item}, it is undefined which one
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is returned. If there is no such item, return @code{nil}.
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@end defun
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@defun secrets-delete-item collection item
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This function deletes item @var{item} in @var{collection}. If there
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are several items labeled @var{item}, it is undefined which one is
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deleted.
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@end defun
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The lookup attributes, which are specified during creation of a
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secret item, must be a key-value pair. Keys are keyword symbols,
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starting with a colon; values are strings. They can be retrieved
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from a given secret item and they can be used for searching of items.
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@defun secrets-get-attribute collection item attribute
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Returns the value of key @var{attribute} of item labeled @var{item} in
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@var{collection}. If there are several items labeled @var{item}, it
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is undefined which one is returned. If there is no such item, or the
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item doesn't own this key, the function returns @code{nil}.
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@end defun
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@defun secrets-get-attributes collection item
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Return the lookup attributes of item labeled @var{item} in
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@var{collection}. If there are several items labeled @var{item}, it
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is undefined which one is returned. If there is no such item, or the
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item has no attributes, it returns @code{nil}. Example:
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@example
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(secrets-get-attributes "session" "my item")
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@result{} ((:user . "joe") (:host . "remote-host"))
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@end example
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@end defun
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@defun secrets-search-items collection &rest attributes
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Search for the items in @var{collection} with matching
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@var{attributes}. The @var{attributes} are key-value pairs, as used
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in @code{secrets-create-item}. Example:
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@example
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(secrets-search-items "session" :user "joe")
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@result{} ("my item" "another item")
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@end example
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@end defun
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The auth-source library uses the @file{secrets.el} library and thus
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the Secret Service API when you specify a source matching
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@code{"secrets:COLLECTION"}. For instance, you could use
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@code{"secrets:session"} to use the @code{"session"} collection, open only
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for the lifetime of Emacs. Or you could use @code{"secrets:Login"} to
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open the @code{"Login"} collection. As a special case, you can use the
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symbol @code{default} in @code{auth-sources} (not a string, but a
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symbol) to specify the @code{"default"} alias. Here is a contrived
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example that sets @code{auth-sources} to search three collections and
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then fall back to @file{~/.authinfo.gpg}.
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@example
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(setq auth-sources '(default
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"secrets:session"
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"secrets:Login"
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"~/.authinfo.gpg"))
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@end example
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@node The Unix password store
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@chapter The Unix password store
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@uref{https://www.passwordstore.org,,The standard unix password
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manager} (or just @code{pass}) stores your passwords in
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@code{gpg}-protected files following the Unix philosophy. The store
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location (any directory) must be specified in the
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@code{auth-source-pass-filename} variable which defaults to
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@file{~/.password-store}.
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Emacs integration of @code{pass} follows the approach suggested by the
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pass project itself for data organization to find data. In
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particular, to store a password for the user @code{rms} on the host
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@code{gnu.org} and port @code{22}, you should use one of the following
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filenames.
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@table @file
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@item gnu.org.gpg
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No username or port in the filename means that any username and port
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will match.
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@item gnu.org/rms.gpg
|
|
The username to match can be expressed as filename inside a directory
|
|
whose name matches the host. This is useful if the store has
|
|
passwords for several users on the same host.
|
|
|
|
@item rms@@gnu.org.gpg
|
|
The username can also be expressed as a prefix, separated from the
|
|
host with an at-sign (@code{@@}).
|
|
|
|
@item gnu.org:22.gpg
|
|
The port (aka. service) to match can only be expressed after the host and separated with a colon (@code{:}). The separator can be changed through the @code{auth-source-pass-port-separator} variable.
|
|
|
|
@item gnu.org:22/rms.gpg
|
|
|
|
@item rms@@gnu.org:22.gpg
|
|
|
|
@item a/b/gnu.org.gpg
|
|
Entries can be stored in arbitrary directories.
|
|
|
|
@item a/b/gnu.org/rms.gpg
|
|
|
|
@item a/b/rms@@gnu.org.gpg
|
|
|
|
@item a/b/gnu.org:22.gpg
|
|
|
|
@item a/b/gnu.org:22/rms.gpg
|
|
|
|
@item a/b/rms@@gnu.org:22.gpg
|
|
@end table
|
|
|
|
If several entries match, the one matching the most items (where an
|
|
``item'' is one of username, port or host) is preferred. For example,
|
|
while searching for an entry matching the @code{rms} user on host
|
|
@code{gnu.org} and port @code{22}, then the entry
|
|
@file{gnu.org:22/rms.gpg} is preferred over @file{gnu.org.gpg}.
|
|
|
|
Users of @code{pass} may also be interested in functionality provided
|
|
by other Emacs packages:
|
|
|
|
@itemize
|
|
@item
|
|
@uref{https://git.zx2c4.com/password-store/tree/contrib/emacs/password-store.el,,password-store}: library wrapping @code{pass};
|
|
@item
|
|
@uref{https://github.com/NicolasPetton/pass,,pass}: major mode to manipulate the store and edit entries;
|
|
@item
|
|
@uref{https://github.com/jabranham/helm-pass,,helm-pass}: helm interface for pass.
|
|
@end itemize
|
|
|
|
@defvar auth-source-pass-filename
|
|
Set this variable to a string locating the password store on the disk.
|
|
Defaults to @file{~/.password-store}.
|
|
@end defvar
|
|
|
|
@defvar auth-source-pass-port-separator
|
|
Set this variable to a string that should separate an host name from a
|
|
port in an entry. Defaults to @samp{:}.
|
|
@end defvar
|
|
|
|
@node Help for developers
|
|
@chapter Help for developers
|
|
|
|
The auth-source library lets you control logging output easily.
|
|
|
|
@defvar auth-source-debug
|
|
Set this variable to @code{'trivia} to see lots of output in
|
|
@file{*Messages*}, or set it to a function that behaves like
|
|
@code{message} to do your own logging.
|
|
@end defvar
|
|
|
|
The auth-source library only has a few functions for external use.
|
|
|
|
@defun auth-source-search &rest spec &key type max host user port secret require create delete &allow-other-keys
|
|
This function searches (or modifies) authentication backends according
|
|
to @var{spec}. See the function's doc-string for details.
|
|
@c TODO more details.
|
|
@end defun
|
|
|
|
Let's take a look at an example of using @code{auth-source-search}
|
|
from Gnus's @code{nnimap.el}.
|
|
|
|
@example
|
|
(defun nnimap-credentials (address ports)
|
|
(let* ((auth-source-creation-prompts
|
|
'((user . "IMAP user at %h: ")
|
|
(secret . "IMAP password for %u@@%h: ")))
|
|
(found (nth 0 (auth-source-search :max 1
|
|
:host address
|
|
:port ports
|
|
:require '(:user :secret)
|
|
:create t))))
|
|
(if found
|
|
(list (plist-get found :user)
|
|
(let ((secret (plist-get found :secret)))
|
|
(if (functionp secret)
|
|
(funcall secret)
|
|
secret))
|
|
(plist-get found :save-function))
|
|
nil)))
|
|
@end example
|
|
|
|
This call requires the user and password (secret) to be in the
|
|
results. It also requests that an entry be created if it doesn't
|
|
exist already. While the created entry is being assembled, the shown
|
|
prompts will be used to interact with the user. The caller can also
|
|
pass data in @code{auth-source-creation-defaults} to supply defaults
|
|
for any of the prompts.
|
|
|
|
Note that the password needs to be evaluated if it's a function. It's
|
|
wrapped in a function to provide some security.
|
|
|
|
Later, after a successful login, @code{nnimap.el} calls the
|
|
@code{:save-function} like so:
|
|
|
|
@example
|
|
(when (functionp (nth 2 credentials))
|
|
(funcall (nth 2 credentials)))
|
|
@end example
|
|
|
|
This will work whether the @code{:save-function} was provided or not.
|
|
@code{:save-function} will be provided only when a new entry was
|
|
created, so this effectively says ``after a successful login, save the
|
|
authentication information we just used, if it was newly created.''
|
|
|
|
After the first time it's called, the @code{:save-function} will not
|
|
run again (but it will log something if you have set
|
|
@code{auth-source-debug} to @code{'trivia}). This is so it won't ask
|
|
the same question again, which is annoying. This is so it won't ask
|
|
the same question again, which is annoying. This is so it won't ask
|
|
the same question again, which is annoying.
|
|
|
|
So the responsibility of the API user that specified @code{:create t}
|
|
is to call the @code{:save-function} if it's provided.
|
|
|
|
@defun auth-source-delete &rest spec &key delete &allow-other-keys
|
|
This function deletes entries matching @var{spec} from the
|
|
authentication backends. It returns the entries that were deleted.
|
|
The backend may not actually delete the entries.
|
|
@end defun
|
|
|
|
@defun auth-source-forget spec
|
|
This function forgets any cached data that exactly matches @var{spec}.
|
|
It returns @code{t} if it forget some data, and @code{nil} if no
|
|
matching data was found.
|
|
@end defun
|
|
|
|
@defun auth-source-forget+ &rest spec &allow-other-keys
|
|
This function forgets any cached data matching @var{spec}.
|
|
It returns the number of items forgotten.
|
|
@end defun
|
|
|
|
@node GnuPG and EasyPG Assistant Configuration
|
|
@appendix GnuPG and EasyPG Assistant Configuration
|
|
|
|
If the @code{auth-sources} variable contains @file{~/.authinfo.gpg}
|
|
before @file{~/.authinfo}, the auth-source library will try to
|
|
read the GnuPG encrypted @file{.gpg} file first, before
|
|
the unencrypted file.
|
|
|
|
In Emacs 23 or later there is an option @code{auto-encryption-mode} to
|
|
automatically decrypt @file{*.gpg} files. It is enabled by default.
|
|
If you are using earlier versions of Emacs, you will need:
|
|
|
|
@lisp
|
|
(require 'epa-file)
|
|
(epa-file-enable)
|
|
@end lisp
|
|
|
|
If you want your GnuPG passwords to be cached, set up @code{gpg-agent}
|
|
or EasyPG Assistant
|
|
(@pxref{Caching Passphrases, , Caching Passphrases, epa}).
|
|
|
|
To quick start, here are some questions:
|
|
|
|
@itemize
|
|
@item
|
|
Do you use GnuPG version 2 instead of GnuPG version 1?
|
|
@item
|
|
Do you use symmetric encryption rather than public key encryption?
|
|
@item
|
|
Do you want to use gpg-agent?
|
|
@end itemize
|
|
|
|
Here are configurations depending on your answers:
|
|
|
|
@multitable {111} {222} {333} {configuration configuration configuration}
|
|
@item @b{1} @tab @b{2} @tab @b{3} @tab Configuration
|
|
@item Yes @tab Yes @tab Yes @tab Set up gpg-agent.
|
|
@item Yes @tab Yes @tab No @tab You can't, without gpg-agent.
|
|
@item Yes @tab No @tab Yes @tab Set up gpg-agent.
|
|
@item Yes @tab No @tab No @tab You can't, without gpg-agent.
|
|
@item No @tab Yes @tab Yes @tab Set up elisp passphrase cache.
|
|
@item No @tab Yes @tab No @tab Set up elisp passphrase cache.
|
|
@item No @tab No @tab Yes @tab Set up gpg-agent.
|
|
@item No @tab No @tab No @tab You can't, without gpg-agent.
|
|
@end multitable
|
|
|
|
To set up gpg-agent, follow the instruction in GnuPG manual
|
|
(@pxref{Invoking GPG-AGENT, , Invoking GPG-AGENT, gnupg}).
|
|
|
|
To set up elisp passphrase cache, set
|
|
@code{epa-file-cache-passphrase-for-symmetric-encryption}.
|
|
|
|
@node GNU Free Documentation License
|
|
@appendix GNU Free Documentation License
|
|
@include doclicense.texi
|
|
|
|
@node Index
|
|
@unnumbered Index
|
|
@printindex cp
|
|
|
|
@node Function Index
|
|
@unnumbered Function Index
|
|
@printindex fn
|
|
|
|
@node Variable Index
|
|
@unnumbered Variable Index
|
|
@printindex vr
|
|
|
|
@bye
|
|
|
|
@c End:
|