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315 lines
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315 lines
12 KiB
Plaintext
systemd System and Service Manager
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DETAILS:
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http://0pointer.de/blog/projects/systemd.html
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WEB SITE:
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https://www.freedesktop.org/wiki/Software/systemd
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GIT:
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git@github.com:systemd/systemd.git
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https://github.com/systemd/systemd.git
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GITWEB:
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https://github.com/systemd/systemd
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MAILING LIST:
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https://lists.freedesktop.org/mailman/listinfo/systemd-devel
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IRC:
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#systemd on irc.freenode.org
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BUG REPORTS:
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https://github.com/systemd/systemd/issues
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AUTHOR:
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Lennart Poettering
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Kay Sievers
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...and many others
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LICENSE:
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LGPLv2.1+ for all code
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- except src/basic/MurmurHash2.c which is Public Domain
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- except src/basic/siphash24.c which is CC0 Public Domain
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- except src/journal/lookup3.c which is Public Domain
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- except src/udev/* which is (currently still) GPLv2, GPLv2+
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REQUIREMENTS:
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Linux kernel >= 3.13
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Linux kernel >= 4.2 for unified cgroup hierarchy support
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Kernel Config Options:
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CONFIG_DEVTMPFS
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CONFIG_CGROUPS (it is OK to disable all controllers)
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CONFIG_INOTIFY_USER
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CONFIG_SIGNALFD
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CONFIG_TIMERFD
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CONFIG_EPOLL
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CONFIG_NET
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CONFIG_SYSFS
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CONFIG_PROC_FS
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CONFIG_FHANDLE (libudev, mount and bind mount handling)
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Kernel crypto/hash API
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CONFIG_CRYPTO_USER_API_HASH
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CONFIG_CRYPTO_HMAC
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CONFIG_CRYPTO_SHA256
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udev will fail to work with the legacy sysfs layout:
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CONFIG_SYSFS_DEPRECATED=n
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Legacy hotplug slows down the system and confuses udev:
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CONFIG_UEVENT_HELPER_PATH=""
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Userspace firmware loading is not supported and should
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be disabled in the kernel:
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CONFIG_FW_LOADER_USER_HELPER=n
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Some udev rules and virtualization detection relies on it:
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CONFIG_DMIID
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Support for some SCSI devices serial number retrieval, to
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create additional symlinks in /dev/disk/ and /dev/tape:
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CONFIG_BLK_DEV_BSG
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Required for PrivateNetwork= and PrivateDevices= in service units:
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CONFIG_NET_NS
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CONFIG_DEVPTS_MULTIPLE_INSTANCES
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Note that systemd-localed.service and other systemd units use
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PrivateNetwork and PrivateDevices so this is effectively required.
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Required for PrivateUsers= in service units:
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CONFIG_USER_NS
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Optional but strongly recommended:
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CONFIG_IPV6
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CONFIG_AUTOFS4_FS
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CONFIG_TMPFS_XATTR
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CONFIG_{TMPFS,EXT4,XFS,BTRFS_FS,...}_POSIX_ACL
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CONFIG_SECCOMP
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CONFIG_SECCOMP_FILTER (required for seccomp support)
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CONFIG_CHECKPOINT_RESTORE (for the kcmp() syscall)
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Required for CPUShares= in resource control unit settings
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CONFIG_CGROUP_SCHED
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CONFIG_FAIR_GROUP_SCHED
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Required for CPUQuota= in resource control unit settings
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CONFIG_CFS_BANDWIDTH
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For UEFI systems:
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CONFIG_EFIVAR_FS
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CONFIG_EFI_PARTITION
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We recommend to turn off Real-Time group scheduling in the
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kernel when using systemd. RT group scheduling effectively
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makes RT scheduling unavailable for most userspace, since it
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requires explicit assignment of RT budgets to each unit whose
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processes making use of RT. As there's no sensible way to
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assign these budgets automatically this cannot really be
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fixed, and it's best to disable group scheduling hence.
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CONFIG_RT_GROUP_SCHED=n
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Note that kernel auditing is broken when used with systemd's
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container code. When using systemd in conjunction with
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containers, please make sure to either turn off auditing at
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runtime using the kernel command line option "audit=0", or
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turn it off at kernel compile time using:
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CONFIG_AUDIT=n
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If systemd is compiled with libseccomp support on
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architectures which do not use socketcall() and where seccomp
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is supported (this effectively means x86-64 and ARM, but
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excludes 32-bit x86!), then nspawn will now install a
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work-around seccomp filter that makes containers boot even
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with audit being enabled. This works correctly only on kernels
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3.14 and newer though. TL;DR: turn audit off, still.
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glibc >= 2.16
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libcap
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libmount >= 2.27.1 (from util-linux)
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(util-linux < 2.29 *must* be built with --enable-libmount-force-mountinfo,
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and later versions without --enable-libmount-support-mtab.)
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libseccomp >= 2.3.1 (optional)
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libblkid >= 2.24 (from util-linux) (optional)
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libkmod >= 15 (optional)
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PAM >= 1.1.2 (optional)
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libcryptsetup (optional)
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libaudit (optional)
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libacl (optional)
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libselinux (optional)
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liblzma (optional)
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liblz4 >= 119 (optional)
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libgcrypt (optional)
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libqrencode (optional)
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libmicrohttpd (optional)
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libpython (optional)
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libidn2 or libidn (optional)
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elfutils >= 158 (optional)
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make, gcc, and similar tools
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During runtime, you need the following additional
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dependencies:
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util-linux >= v2.27.1 required
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dbus >= 1.4.0 (strictly speaking optional, but recommended)
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NOTE: If using dbus < 1.9.18, you should override the default
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policy directory (--with-dbuspolicydir=/etc/dbus-1/system.d).
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dracut (optional)
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PolicyKit (optional)
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Two build systems are supported: meson + ninja-build and autools + make.
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The following tools are needed with both systems:
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pkg-config
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gperf >= 3.1
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docbook-xsl (optional, required for documentation)
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xsltproc (optional, required for documentation)
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python-lxml (optional, required to build the indices)
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When building with meson, python and ninja-build are required.
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To build in directory build/:
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meson build/ && ninja -C build
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Any configuration options can be specfied as -Darg=value... arguments
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to meson. After the build directory is initially configured, meson will
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refuse to run again, and options must be changed with:
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mesonconf -Darg=value...
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mesonconf without any arguments will print out available options and
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their current values.
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Useful commands:
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ninja -v some/target
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ninja test
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sudo ninja install
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DESTDIR=... ninja install
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When building with autotools, the following tools are needed:
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automake
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autoconf
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libtool
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intltool
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python (optional)
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The build system is initialized with ./autogen.sh and the usual
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./configure && make
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should be used.
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A tar ball can be created with:
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git archive --format=tar --prefix=systemd-222/ v222 | xz > systemd-222.tar.xz
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When systemd-hostnamed is used, it is strongly recommended to
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install nss-myhostname to ensure that, in a world of
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dynamically changing hostnames, the hostname stays resolvable
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under all circumstances. In fact, systemd-hostnamed will warn
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if nss-myhostname is not installed.
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Additional packages are necessary to run some tests:
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- busybox (used by test/TEST-13-NSPAWN-SMOKE)
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- nc (used by test/TEST-12-ISSUE-3171)
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- python3-pyparsing
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- python3-evdev (used by hwdb parsing tests)
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- strace (used by test/test-functions)
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- capsh (optional, used by test-execute)
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USERS AND GROUPS:
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Default udev rules use the following standard system group
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names, which need to be resolvable by getgrnam() at any time,
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even in the very early boot stages, where no other databases
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and network are available:
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audio, cdrom, dialout, disk, input, kmem, lp, tape, tty, video
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During runtime, the journal daemon requires the
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"systemd-journal" system group to exist. New journal files will
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be readable by this group (but not writable), which may be used
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to grant specific users read access. In addition, system
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groups "wheel" and "adm" will be given read-only access to
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journal files using systemd-tmpfiles.service.
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The journal gateway daemon requires the
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"systemd-journal-gateway" system user and group to
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exist. During execution this network facing service will drop
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privileges and assume this uid/gid for security reasons.
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Similarly, the NTP daemon requires the "systemd-timesync" system
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user and group to exist.
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Similarly, the network management daemon requires the
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"systemd-network" system user and group to exist.
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Similarly, the name resolution daemon requires the
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"systemd-resolve" system user and group to exist.
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Similarly, the coredump support requires the
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"systemd-coredump" system user and group to exist.
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NSS:
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systemd ships with four glibc NSS modules:
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nss-myhostname resolves the local hostname to locally
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configured IP addresses, as well as "localhost" to
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127.0.0.1/::1.
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nss-resolve enables DNS resolution via the systemd-resolved
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DNS/LLMNR caching stub resolver "systemd-resolved".
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nss-mymachines enables resolution of all local containers registered
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with machined to their respective IP addresses. It also maps UID/GIDs
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ranges used by containers to useful names.
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nss-systemd enables resolution of all dynamically allocated service
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users. (See the DynamicUser= setting in unit files.)
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To make use of these NSS modules, please add them to the "hosts:",
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"passwd:" and "group:" lines in /etc/nsswitch.conf. The "resolve"
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module should replace the glibc "dns" module in this file (and don't
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worry, it chain-loads the "dns" module if it can't talk to resolved).
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The four modules should be used in the following order:
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passwd: compat mymachines systemd
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group: compat mymachines systemd
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hosts: files mymachines resolve myhostname
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SYSV INIT.D SCRIPTS:
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When calling "systemctl enable/disable/is-enabled" on a unit which is a
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SysV init.d script, it calls /usr/lib/systemd/systemd-sysv-install;
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this needs to translate the action into the distribution specific
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mechanism such as chkconfig or update-rc.d. Packagers need to provide
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this script if you need this functionality (you don't if you disabled
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SysV init support).
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Please see src/systemctl/systemd-sysv-install.SKELETON for how this
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needs to look like, and provide an implementation at the marked places.
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WARNINGS:
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systemd will warn you during boot if /usr is on a different
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file system than /. While in systemd itself very little will
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break if /usr is on a separate partition, many of its
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dependencies very likely will break sooner or later in one
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form or another. For example, udev rules tend to refer to
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binaries in /usr, binaries that link to libraries in /usr or
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binaries that refer to data files in /usr. Since these
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breakages are not always directly visible, systemd will warn
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about this, since this kind of file system setup is not really
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supported anymore by the basic set of Linux OS components.
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systemd requires that the /run mount point exists. systemd also
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requires that /var/run is a symlink to /run.
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For more information on this issue consult
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https://www.freedesktop.org/wiki/Software/systemd/separate-usr-is-broken
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To run systemd under valgrind, compile with VALGRIND defined
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(e.g. ./configure CPPFLAGS='... -DVALGRIND=1'). Otherwise,
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false positives will be triggered by code which violates
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some rules but is actually safe.
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ENGINEERING AND CONSULTING SERVICES:
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Kinvolk (https://kinvolk.io) offers professional engineering
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and consulting services for systemd. Please contact Chris Kühl
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<chris@kinvolk.io> for more information.
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