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11-dm-parts.rules 0000644 00000002642 15135723340 0007575 0 ustar 00 # Rules for partitions created by kpartx KERNEL!="dm-*", GOTO="dm_parts_end" ACTION!="add|change", GOTO="dm_parts_end" ENV{DM_UUID}!="part[0-9]*", GOTO="dm_parts_end" # We must take care that symlinks don't get lost, # even if blkid fails in 13-dm-disk.rules later. # # Fixme: we have currently no way to avoid calling blkid on # partitions of broken mpath maps such as DM_NOSCAN. # But when partition devices appear, kpartx has likely read # the partition table shortly before, so odds are not bad # that blkid will also succeed. IMPORT{db}="ID_FS_USAGE" IMPORT{db}="ID_FS_UUID_ENC" IMPORT{db}="ID_FS_LABEL_ENC" IMPORT{db}="ID_PART_ENTRY_NAME" IMPORT{db}="ID_PART_ENTRY_UUID" IMPORT{db}="ID_PART_ENTRY_SCHEME" # Maps should take precedence over their members. ENV{DM_UDEV_LOW_PRIORITY_FLAG}!="1", OPTIONS+="link_priority=50" # Set some additional symlinks that typically exist for mpath # path members, too, and should be overridden. # # kpartx_id is very robust, it works for suspended maps and maps # with 0 dependencies. It sets DM_TYPE, DM_PART, DM_WWN IMPORT{program}=="kpartx_id %M %m $env{DM_UUID}" # DM_TYPE only has a reasonable value for partitions on multipath. ENV{DM_UUID}=="*-mpath-*", ENV{DM_TYPE}=="?*", ENV{DM_SERIAL}=="?*" \ SYMLINK+="disk/by-id/$env{DM_TYPE}-$env{DM_SERIAL}-part$env{DM_PART}" ENV{DM_WWN}=="?*", ENV{DM_PART}=="?*", \ SYMLINK+="disk/by-id/wwn-$env{DM_WWN}-part$env{DM_PART}" LABEL="dm_parts_end" 66-kpartx.rules 0000644 00000002175 15135723340 0007372 0 ustar 00 # # persistent links for device-mapper devices # only hardware-backed device-mapper devices (ie multipath, dmraid, # and kpartx) have meaningful persistent device names # KERNEL!="dm-*", GOTO="kpartx_end" ACTION!="add|change", GOTO="kpartx_end" ENV{DM_UUID}!="?*", GOTO="kpartx_end" # Create dm tables for partitions on multipath devices. ENV{DM_UUID}!="mpath-?*", GOTO="mpath_kpartx_end" # DM_SUBSYSTEM_UDEV_FLAG1 is the "skip_kpartx" flag. # For events not generated by libdevmapper, we need to fetch it from db. ENV{DM_UDEV_PRIMARY_SOURCE_FLAG}!="1", IMPORT{db}="DM_SUBSYSTEM_UDEV_FLAG1" ENV{DM_SUBSYSTEM_UDEV_FLAG1}=="1", GOTO="mpath_kpartx_end" # 11-dm-mpath.rules sets MPATH_UNCHANGED for events that can be ignored. ENV{MPATH_UNCHANGED}=="1", GOTO="mpath_kpartx_end" # Don't run kpartx now if we know it will fail or hang. ENV{DM_SUSPENDED}=="1", GOTO="mpath_kpartx_end" ENV{DM_NOSCAN}=="1", GOTO="mpath_kpartx_end" # Run kpartx GOTO="run_kpartx" LABEL="mpath_kpartx_end" ## Code for other subsystems (non-multipath) could be placed here ## GOTO="kpartx_end" LABEL="run_kpartx" RUN+="/sbin/kpartx -un /dev/$name" LABEL="kpartx_end" 68-del-part-nodes.rules 0000644 00000002166 15135723340 0010701 0 ustar 00 # These rules can delete partitions devnodes for slave devices # for certain aggregate devices such as multipath. # This is desirable to avoid confusion and keep the number # of device nodes and symlinks within limits. # # This is done only once on the first "add" or "change" event for # any given device. # # To suppress this, use the kernel parameter "dont_del_part_nodes", # or create an udev rule file that sets ENV{DONT_DEL_PART_NODES}="1". SUBSYSTEM!="block", GOTO="end_del_part_nodes" KERNEL!="sd*|dasd*", GOTO="end_del_part_nodes" ACTION!="add|change", GOTO="end_del_part_nodes" ENV{DEVTYPE}=="partition", GOTO="end_del_part_nodes" IMPORT{cmdline}="dont_del_part_nodes" ENV{dont_del_part_nodes}=="1", GOTO="end_del_part_nodes" ENV{DONT_DEL_PART_NODES}=="1", GOTO="end_del_part_nodes" # dm-multipath ENV{DM_MULTIPATH_DEVICE_PATH}=="1", GOTO="del_part_nodes" # Other aggregate device types can be added here. GOTO="end_del_part_nodes" LABEL="del_part_nodes" IMPORT{db}="DM_DEL_PART_NODES" ENV{DM_DEL_PART_NODES}!="1", ENV{DM_DEL_PART_NODES}="1", \ RUN+="/usr/sbin/partx -d --nr 1-1024 $env{DEVNAME}" LABEL="end_del_part_nodes" 10-dm.rules 0000444 00000016142 15135723340 0006443 0 ustar 00 # Copyright (C) 2009 Red Hat, Inc. All rights reserved. # # This file is part of LVM2. # Udev rules for device-mapper devices. # # These rules create a DM control node in /dev/mapper directory. # The rules also create nodes named dm-x (x is a number) in /dev # directory and symlinks to these nodes with names given by # the actual DM names. Some udev environment variables are set # for use in later rules: # DM_NAME - actual DM device's name # DM_UUID - UUID set for DM device (blank if not specified) # DM_SUSPENDED - suspended state of DM device (0 or 1) # DM_UDEV_RULES_VSN - DM udev rules version # # These rules cover only basic device-mapper functionality in udev. # # Various DM subsystems may contain further subsystem-specific rules # in 11-dm-<subsystem_name>.rules which should be installed together # with the DM subsystem and which extend these basic rules. # For example: # 11-dm-lvm.rules for LVM subsystem # 11-dm-mpath.rules for multipath subsystem (since version 0.6.0, recommended!) # # Even more specific rules may be required by subsystems so always # check subsystem's upstream repository for recent set of rules. # Also, keep in mind that recent rules may also require recent # subsystem-specific binaries. KERNEL=="device-mapper", NAME="mapper/control" SUBSYSTEM!="block", GOTO="dm_end" KERNEL!="dm-[0-9]*", GOTO="dm_end" # Device created, major and minor number assigned - "add" event generated. # Table loaded - no event generated. # Device resumed (or renamed) - "change" event generated. # Device removed - "remove" event generated. # # The dm-X nodes are always created, even on "add" event, we can't suppress # that (the node is created even earlier with devtmpfs). All the symlinks # (e.g. /dev/mapper) are created in right time after a device has its table # loaded and is properly resumed. For this reason, direct use of dm-X nodes # is not recommended. ACTION!="add|change", GOTO="dm_end" # Decode udev control flags and set environment variables appropriately. # These flags are encoded in DM_COOKIE variable that was introduced in # kernel version 2.6.31. Therefore, we can use this feature with # kernels >= 2.6.31 only. Cookie is not decoded for remove event. ENV{DM_COOKIE}=="?*", IMPORT{program}="/usr/sbin/dmsetup udevflags $env{DM_COOKIE}" # Rule out easy-to-detect inappropriate events first. ENV{DISK_RO}=="1", GOTO="dm_disable" # There is no cookie set nor any flags encoded in events not originating # in libdevmapper so we need to detect this and try to behave correctly. # For such spurious events, regenerate all flags from current udev database content # (this information would normally be inaccessible for spurious ADD and CHANGE events). ENV{DM_UDEV_PRIMARY_SOURCE_FLAG}=="1", ENV{DM_ACTIVATION}="1", GOTO="dm_flags_done" IMPORT{db}="DM_UDEV_DISABLE_DM_RULES_FLAG" IMPORT{db}="DM_UDEV_DISABLE_SUBSYSTEM_RULES_FLAG" IMPORT{db}="DM_UDEV_DISABLE_DISK_RULES_FLAG" IMPORT{db}="DM_UDEV_DISABLE_OTHER_RULES_FLAG" IMPORT{db}="DM_UDEV_LOW_PRIORITY_FLAG" IMPORT{db}="DM_UDEV_DISABLE_LIBRARY_FALLBACK_FLAG" IMPORT{db}="DM_UDEV_PRIMARY_SOURCE_FLAG" IMPORT{db}="DM_UDEV_FLAG7" IMPORT{db}="DM_UDEV_RULES_VSN" LABEL="dm_flags_done" # Normally, we operate on "change" events. But when coldplugging, there's an # "add" event present. We have to recognize this and do our actions in this # particular situation, too. Also, we don't want the nodes to be created # prematurely on "add" events while not coldplugging. We check # DM_UDEV_PRIMARY_SOURCE_FLAG to see if the device was activated correctly # before and if not, we ignore the "add" event totally. This way we can support # udev triggers generating "add" events (e.g. "udevadm trigger --action=add" or # "echo add > /sys/block/<dm_device>/uevent"). The trigger with "add" event is # also used at boot to reevaluate udev rules for all existing devices activated # before (e.g. in initrd). If udev is used in initrd, we require the udev init # script to not remove the existing udev database so we can reuse the information # stored at the time of device activation in the initrd. ACTION!="add", GOTO="dm_no_coldplug" ENV{DM_UDEV_RULES_VSN}!="1", ENV{DM_UDEV_PRIMARY_SOURCE_FLAG}!="1", GOTO="dm_disable" ENV{DM_ACTIVATION}="1" LABEL="dm_no_coldplug" # Putting it together, following table is used to recognize genuine and spurious events. # N.B. Spurious events are generated based on use of the WATCH udev # rule or by triggering an event manually by "udevadm trigger" call # or by "echo <event_name> > /sys/block/dm-X/uevent". # # EVENT DM_UDEV_PRIMARY_SOURCE_FLAG DM_ACTIVATION # ====================================================================== # add event (genuine) 0 0 # change event (genuine) 1 1 # add event (spurious) # |_ dev still not active 0 0 # \_ dev already active 1 1 # change event (spurious) # |_ dev still not active 0 0 # \_ dev already active 1 0 # "dm" sysfs subdirectory is available in newer versions of DM # only (kernels >= 2.6.29). We have to check for its existence # and use dmsetup tool instead to get the DM name, uuid and # suspended state if the "dm" subdirectory is not present. # The "suspended" item was added even later (kernels >= 2.6.31), # so we also have to call dmsetup if the kernel version used # is in between these releases. TEST=="dm", ENV{DM_NAME}="$attr{dm/name}", ENV{DM_UUID}="$attr{dm/uuid}", ENV{DM_SUSPENDED}="$attr{dm/suspended}" TEST!="dm", IMPORT{program}="/usr/sbin/dmsetup info -j %M -m %m -c --nameprefixes --noheadings --rows -o name,uuid,suspended" ENV{DM_SUSPENDED}!="?*", IMPORT{program}="/usr/sbin/dmsetup info -j %M -m %m -c --nameprefixes --noheadings --rows -o suspended" # dmsetup tool provides suspended state information in textual # form with values "Suspended"/"Active". We translate it to # 0/1 respectively to be consistent with sysfs values. ENV{DM_SUSPENDED}=="Active", ENV{DM_SUSPENDED}="0" ENV{DM_SUSPENDED}=="Suspended", ENV{DM_SUSPENDED}="1" # This variable provides a reliable way to check that device-mapper # rules were installed. It means that all needed variables are set # by these rules directly so there's no need to acquire them again # later. Other rules can alternate the functionality based on this # fact (e.g. fallback to rules that behave correctly even without # these rules installed). It also provides versioning for any # possible future changes. # VSN 1 - original rules # VSN 2 - add support for synthesized events ENV{DM_UDEV_RULES_VSN}="2" ENV{DM_UDEV_DISABLE_DM_RULES_FLAG}!="1", ENV{DM_NAME}=="?*", SYMLINK+="mapper/$env{DM_NAME}" # Avoid processing and scanning a DM device in the other (foreign) # rules if it is in suspended state. However, we still keep 'disk' # and 'DM subsystem' related rules enabled in this case. ENV{DM_SUSPENDED}=="1", ENV{DM_UDEV_DISABLE_OTHER_RULES_FLAG}="1" GOTO="dm_end" LABEL="dm_disable" ENV{DM_UDEV_DISABLE_SUBSYSTEM_RULES_FLAG}="1" ENV{DM_UDEV_DISABLE_DISK_RULES_FLAG}="1" ENV{DM_UDEV_DISABLE_OTHER_RULES_FLAG}="1" OPTIONS:="nowatch" LABEL="dm_end" 13-dm-disk.rules 0000444 00000003402 15135723340 0007371 0 ustar 00 # Copyright (C) 2009 Red Hat, Inc. All rights reserved. # # This file is part of LVM2. # Udev rules for device-mapper devices. # # These rules create symlinks in /dev/disk directory. # Symlinks that depend on probing filesystem type, # label and uuid are created only if the device is not # suspended. # "add" event is processed on coldplug only! ACTION!="add|change", GOTO="dm_end" ENV{DM_UDEV_RULES_VSN}!="?*", GOTO="dm_end" ENV{DM_UDEV_DISABLE_DISK_RULES_FLAG}=="1", GOTO="dm_end" SYMLINK+="disk/by-id/dm-name-$env{DM_NAME}" ENV{DM_UUID}=="?*", SYMLINK+="disk/by-id/dm-uuid-$env{DM_UUID}" ENV{DM_SUSPENDED}=="1", GOTO="dm_end" ENV{DM_NOSCAN}=="1", GOTO="dm_watch" IMPORT{builtin}="blkid" ENV{DM_UDEV_LOW_PRIORITY_FLAG}=="1", OPTIONS="link_priority=-100" ENV{ID_FS_USAGE}=="filesystem|other|crypto", ENV{ID_FS_UUID_ENC}=="?*", SYMLINK+="disk/by-uuid/$env{ID_FS_UUID_ENC}" ENV{ID_FS_USAGE}=="filesystem|other", ENV{ID_FS_LABEL_ENC}=="?*", SYMLINK+="disk/by-label/$env{ID_FS_LABEL_ENC}" ENV{ID_PART_ENTRY_UUID}=="?*", SYMLINK+="disk/by-partuuid/$env{ID_PART_ENTRY_UUID}" ENV{ID_PART_ENTRY_SCHEME}=="gpt", ENV{ID_PART_ENTRY_NAME}=="?*", SYMLINK+="disk/by-partlabel/$env{ID_PART_ENTRY_NAME}" ENV{ID_PART_ENTRY_SCHEME}=="gpt", ENV{ID_PART_GPT_AUTO_ROOT}=="1", SYMLINK+="gpt-auto-root" # Add inotify watch to track changes on this device. # Using the watch rule is not optimal - it generates a lot of spurious # and useless events whenever the device opened for read-write is closed. # The best would be to generete the event directly in the tool changing # relevant information so only relevant events will be processed # (like creating a filesystem, changing filesystem label etc.). # # But let's use this until we have something better... LABEL="dm_watch" OPTIONS+="watch" LABEL="dm_end" 95-dm-notify.rules 0000444 00000000743 15135723340 0007766 0 ustar 00 # Copyright (C) 2009 Red Hat, Inc. All rights reserved. # # This file is part of LVM2. # Udev rules for device-mapper devices. # # These rules are responsible for sending a notification to a process # waiting for completion of udev rules. The process is identified by # a cookie value sent within "change" and "remove" events (the cookie # value is set before by that process for every action requested). ENV{DM_COOKIE}=="?*", RUN+="/usr/sbin/dmsetup udevcomplete $env{DM_COOKIE}" 60-raw.rules 0000644 00000000506 15135723340 0006640 0 ustar 00 # # Enter raw device bindings here. # # An example would be: # ACTION=="add", KERNEL=="sda", RUN+="/usr/bin/raw /dev/raw/raw1 %N" # to bind /dev/raw/raw1 to /dev/sda, or # ACTION=="add", ENV{MAJOR}=="8", ENV{MINOR}=="1", RUN+="/usr/bin/raw /dev/raw/raw2 %M %m" # to bind /dev/raw/raw2 to the device with major 8, minor 1. 71-seat.rules 0000644 00000005306 15135723340 0007010 0 ustar 00 # SPDX-License-Identifier: LGPL-2.1+ # # This file is part of systemd. # # systemd is free software; you can redistribute it and/or modify it # under the terms of the GNU Lesser General Public License as published by # the Free Software Foundation; either version 2.1 of the License, or # (at your option) any later version. ACTION=="remove", GOTO="seat_end" TAG=="uaccess", SUBSYSTEM!="sound", TAG+="seat" SUBSYSTEM=="sound", KERNEL=="card*", TAG+="seat" SUBSYSTEM=="input", KERNEL=="input*", TAG+="seat" SUBSYSTEM=="graphics", KERNEL=="fb[0-9]*", TAG+="seat", TAG+="master-of-seat" SUBSYSTEM=="drm", KERNEL=="card[0-9]*", TAG+="seat", TAG+="master-of-seat" SUBSYSTEM=="usb", ATTR{bDeviceClass}=="09", TAG+="seat" # 'Plugable' USB hub, sound, network, graphics adapter SUBSYSTEM=="usb", ATTR{idVendor}=="2230", ATTR{idProduct}=="000[13]", ENV{ID_AUTOSEAT}="1" # qemu (version 2.4+) has a PCI-PCI bridge (-device pci-bridge-seat) to group # devices belonging to one seat. See: # http://git.qemu.org/?p=qemu.git;a=blob;f=docs/multiseat.txt SUBSYSTEM=="pci", ATTR{vendor}=="0x1b36", ATTR{device}=="0x000a", TAG+="seat", ENV{ID_AUTOSEAT}="1" # Mimo 720, with integrated USB hub, displaylink graphics, and e2i # touchscreen. This device carries no proper VID/PID in the USB hub, # but it does carry good ID data in the graphics component, hence we # check it from the parent. There's a bit of a race here however, # given that the child devices might not exist yet at the time this # rule is executed. To work around this we'll trigger the parent from # the child if we notice that the parent wasn't recognized yet. # Match parent SUBSYSTEM=="usb", ATTR{idVendor}=="058f", ATTR{idProduct}=="6254", \ ATTR{%k.2/idVendor}=="17e9", ATTR{%k.2/idProduct}=="401a", ATTR{%k.2/product}=="mimo inc", \ ENV{ID_AUTOSEAT}="1", ENV{ID_AVOID_LOOP}="1" # Match child, look for parent's ID_AVOID_LOOP SUBSYSTEM=="usb", ATTR{idVendor}=="17e9", ATTR{idProduct}=="401a", ATTR{product}=="mimo inc", \ ATTR{../idVendor}=="058f", ATTR{../idProduct}=="6254", \ IMPORT{parent}="ID_AVOID_LOOP" # Match child, retrigger parent SUBSYSTEM=="usb", ATTR{idVendor}=="17e9", ATTR{idProduct}=="401a", ATTR{product}=="mimo inc", \ ATTR{../idVendor}=="058f", ATTR{../idProduct}=="6254", \ ENV{ID_AVOID_LOOP}=="", \ RUN+="/usr/bin/udevadm trigger --parent-match=%p/.." TAG=="seat", ENV{ID_PATH}=="", IMPORT{builtin}="path_id" TAG=="seat", ENV{ID_FOR_SEAT}=="", ENV{ID_PATH_TAG}!="", ENV{ID_FOR_SEAT}="$env{SUBSYSTEM}-$env{ID_PATH_TAG}" SUBSYSTEM=="input", ATTR{name}=="Wiebetech LLC Wiebetech", RUN+="/usr/bin/loginctl lock-sessions" LABEL="seat_end" 73-idrac.rules 0000644 00000000474 15135723340 0007141 0 ustar 00 # do not edit this file, it will be overwritten on update # On Dell PowerEdge systems, the iDRAC7 and later support a USB Virtual NIC # with terminates in the iDRAC. Help identify this with 'idrac' ACTION=="add", SUBSYSTEM=="net", SUBSYSTEMS=="usb", ATTRS{idVendor}=="413c", ATTRS{idProduct}=="a102", NAME="idrac" 73-seat-late.rules 0000644 00000001174 15135723340 0007734 0 ustar 00 # SPDX-License-Identifier: LGPL-2.1+ # # This file is part of systemd. # # systemd is free software; you can redistribute it and/or modify it # under the terms of the GNU Lesser General Public License as published by # the Free Software Foundation; either version 2.1 of the License, or # (at your option) any later version. ACTION=="remove", GOTO="seat_late_end" ENV{ID_SEAT}=="", ENV{ID_AUTOSEAT}=="1", ENV{ID_FOR_SEAT}!="", ENV{ID_SEAT}="seat-$env{ID_FOR_SEAT}" ENV{ID_SEAT}=="", IMPORT{parent}="ID_SEAT" ENV{ID_SEAT}!="", TAG+="$env{ID_SEAT}" TAG=="uaccess", ENV{MAJOR}!="", RUN{builtin}+="uaccess" LABEL="seat_late_end" 75-net-description.rules 0000644 00000000704 15135723340 0011164 0 ustar 00 # do not edit this file, it will be overwritten on update ACTION=="remove", GOTO="net_end" SUBSYSTEM!="net", GOTO="net_end" IMPORT{builtin}="net_id" SUBSYSTEMS=="usb", IMPORT{builtin}="usb_id", IMPORT{builtin}="hwdb --subsystem=usb" SUBSYSTEMS=="usb", GOTO="net_end" SUBSYSTEMS=="pci", ENV{ID_BUS}="pci", ENV{ID_VENDOR_ID}="$attr{vendor}", ENV{ID_MODEL_ID}="$attr{device}" SUBSYSTEMS=="pci", IMPORT{builtin}="hwdb --subsystem=pci" LABEL="net_end" 75-probe_mtd.rules 0000644 00000000256 15135723340 0010032 0 ustar 00 # do not edit this file, it will be overwritten on update ACTION!="add", GOTO="mtd_probe_end" KERNEL=="mtd*ro", IMPORT{program}="mtd_probe $devnode" LABEL="mtd_probe_end" 78-sound-card.rules 0000644 00000011320 15135723340 0010113 0 ustar 00 # do not edit this file, it will be overwritten on update SUBSYSTEM!="sound", GOTO="sound_end" ACTION=="add|change", KERNEL=="controlC*", ATTR{../uevent}="change" ACTION!="change", GOTO="sound_end" # Ok, we probably need a little explanation here for what the two lines above # are good for. # # The story goes like this: when ALSA registers a new sound card it emits a # series of 'add' events to userspace, for the main card device and for all the # child device nodes that belong to it. udev relays those to applications, # however only maintains the order between father and child, but not between # the siblings. The control device node creation can be used as synchronization # point. All other devices that belong to a card are created in the kernel # before it. However unfortunately due to the fact that siblings are forwarded # out of order by udev this fact is lost to applications. # # OTOH before an application can open a device it needs to make sure that all # its device nodes are completely created and set up. # # As a workaround for this issue we have added the udev rule above which will # generate a 'change' event on the main card device from the 'add' event of the # card's control device. Due to the ordering semantics of udev this event will # only be relayed after all child devices have finished processing properly. # When an application needs to listen for appearing devices it can hence look # for 'change' events only, and ignore the actual 'add' events. # # When the application is initialized at the same time as a device is plugged # in it may need to figure out if the 'change' event has already been triggered # or not for a card. To find that out we store the flag environment variable # SOUND_INITIALIZED on the device which simply tells us if the card 'change' # event has already been processed. KERNEL!="card*", GOTO="sound_end" ENV{SOUND_INITIALIZED}="1" IMPORT{builtin}="hwdb" SUBSYSTEMS=="usb", IMPORT{builtin}="usb_id" SUBSYSTEMS=="usb", GOTO="skip_pci" SUBSYSTEMS=="firewire", ATTRS{guid}=="?*", \ ENV{ID_BUS}="firewire", ENV{ID_SERIAL}="$attr{guid}", ENV{ID_SERIAL_SHORT}="$attr{guid}", \ ENV{ID_VENDOR_ID}="$attr{vendor}", ENV{ID_MODEL_ID}="$attr{model}", \ ENV{ID_VENDOR}="$attr{vendor_name}", ENV{ID_MODEL}="$attr{model_name}" SUBSYSTEMS=="firewire", GOTO="skip_pci" SUBSYSTEMS=="pci", ENV{ID_BUS}="pci", ENV{ID_VENDOR_ID}="$attr{vendor}", ENV{ID_MODEL_ID}="$attr{device}" SUBSYSTEMS=="pci", GOTO="skip_pci" # If we reach here, the device nor any of its parents are USB/PCI/firewire bus devices. # If we now find a parent that is a platform device, assume that we're working with # an internal sound card. SUBSYSTEMS=="platform", ENV{SOUND_FORM_FACTOR}="internal", GOTO="sound_end" LABEL="skip_pci" # Define ID_ID if ID_BUS and ID_SERIAL are set. This will work for both # USB and firewire. ENV{ID_SERIAL}=="?*", ENV{ID_USB_INTERFACE_NUM}=="?*", ENV{ID_ID}="$env{ID_BUS}-$env{ID_SERIAL}-$env{ID_USB_INTERFACE_NUM}" ENV{ID_SERIAL}=="?*", ENV{ID_USB_INTERFACE_NUM}=="", ENV{ID_ID}="$env{ID_BUS}-$env{ID_SERIAL}" IMPORT{builtin}="path_id" # The values used here for $SOUND_FORM_FACTOR and $SOUND_CLASS should be kept # in sync with those defined for PulseAudio's src/pulse/proplist.h # PA_PROP_DEVICE_FORM_FACTOR, PA_PROP_DEVICE_CLASS properties. # If the first PCM device of this card has the pcm class 'modem', then the card is a modem ATTR{pcmC%nD0p/pcm_class}=="modem", ENV{SOUND_CLASS}="modem", GOTO="sound_end" # Identify cards on the internal PCI bus as internal SUBSYSTEMS=="pci", DEVPATH=="*/0000:00:??.?/sound/*", ENV{SOUND_FORM_FACTOR}="internal", GOTO="sound_end" # Devices that also support Image/Video interfaces are most likely webcams SUBSYSTEMS=="usb", ENV{ID_USB_INTERFACES}=="*:0e????:*", ENV{SOUND_FORM_FACTOR}="webcam", GOTO="sound_end" # Matching on the model strings is a bit ugly, I admit ENV{ID_MODEL}=="*[Ss]peaker*", ENV{SOUND_FORM_FACTOR}="speaker", GOTO="sound_end" ENV{ID_MODEL_FROM_DATABASE}=="*[Ss]peaker*", ENV{SOUND_FORM_FACTOR}="speaker", GOTO="sound_end" ENV{ID_MODEL}=="*[Hh]eadphone*", ENV{SOUND_FORM_FACTOR}="headphone", GOTO="sound_end" ENV{ID_MODEL_FROM_DATABASE}=="*[Hh]eadphone*", ENV{SOUND_FORM_FACTOR}="headphone", GOTO="sound_end" ENV{ID_MODEL}=="*[Hh]eadset*", ENV{SOUND_FORM_FACTOR}="headset", GOTO="sound_end" ENV{ID_MODEL_FROM_DATABASE}=="*[Hh]eadset*", ENV{SOUND_FORM_FACTOR}="headset", GOTO="sound_end" ENV{ID_MODEL}=="*[Hh]andset*", ENV{SOUND_FORM_FACTOR}="handset", GOTO="sound_end" ENV{ID_MODEL_FROM_DATABASE}=="*[Hh]andset*", ENV{SOUND_FORM_FACTOR}="handset", GOTO="sound_end" ENV{ID_MODEL}=="*[Mm]icrophone*", ENV{SOUND_FORM_FACTOR}="microphone", GOTO="sound_end" ENV{ID_MODEL_FROM_DATABASE}=="*[Mm]icrophone*", ENV{SOUND_FORM_FACTOR}="microphone", GOTO="sound_end" LABEL="sound_end" 80-drivers.rules 0000644 00000001147 15135723340 0007531 0 ustar 00 # do not edit this file, it will be overwritten on update ACTION!="add", GOTO="drivers_end" ENV{MODALIAS}=="?*", RUN{builtin}+="kmod load $env{MODALIAS}" SUBSYSTEM=="tifm", ENV{TIFM_CARD_TYPE}=="SD", RUN{builtin}+="kmod load tifm_sd" SUBSYSTEM=="tifm", ENV{TIFM_CARD_TYPE}=="MS", RUN{builtin}+="kmod load tifm_ms" SUBSYSTEM=="memstick", RUN{builtin}+="kmod load ms_block mspro_block" SUBSYSTEM=="i2o", RUN{builtin}+="kmod load i2o_block" SUBSYSTEM=="module", KERNEL=="parport_pc", RUN{builtin}+="kmod load ppdev" KERNEL=="mtd*ro", ENV{MTD_FTL}=="smartmedia", RUN{builtin}+="kmod load sm_ftl" LABEL="drivers_end" 80-net-setup-link.rules 0000644 00000000444 15135723340 0010731 0 ustar 00 # do not edit this file, it will be overwritten on update SUBSYSTEM!="net", GOTO="net_setup_link_end" IMPORT{builtin}="path_id" ACTION!="add", GOTO="net_setup_link_end" IMPORT{builtin}="net_setup_link" NAME=="", ENV{ID_NET_NAME}!="", NAME="$env{ID_NET_NAME}" LABEL="net_setup_link_end" 90-vconsole.rules 0000644 00000000776 15135723340 0007713 0 ustar 00 # SPDX-License-Identifier: LGPL-2.1+ # # This file is part of systemd. # # systemd is free software; you can redistribute it and/or modify it # under the terms of the GNU Lesser General Public License as published by # the Free Software Foundation; either version 2.1 of the License, or # (at your option) any later version. # Each vtcon keeps its own state of fonts. # ACTION=="add", SUBSYSTEM=="vtconsole", KERNEL=="vtcon*", ATTR{name}!="*dummy device", RUN+="/usr/lib/systemd/systemd-vconsole-setup" 99-systemd.rules 0000644 00000010417 15135723340 0007555 0 ustar 00 # SPDX-License-Identifier: LGPL-2.1+ # # This file is part of systemd. # # systemd is free software; you can redistribute it and/or modify it # under the terms of the GNU Lesser General Public License as published by # the Free Software Foundation; either version 2.1 of the License, or # (at your option) any later version. ACTION=="remove", GOTO="systemd_end" SUBSYSTEM=="tty", KERNEL=="tty[a-zA-Z]*|hvc*|xvc*|hvsi*|ttysclp*|sclp_line*|3270/tty[0-9]*", TAG+="systemd" KERNEL=="vport*", TAG+="systemd" SUBSYSTEM=="ubi", TAG+="systemd" SUBSYSTEM=="block", TAG+="systemd" SUBSYSTEM=="block", ACTION=="add", ENV{DM_UDEV_DISABLE_OTHER_RULES_FLAG}=="1", ENV{SYSTEMD_READY}="0" # Ignore encrypted devices with no identified superblock on it, since # we are probably still calling mke2fs or mkswap on it. SUBSYSTEM=="block", ENV{DM_UUID}=="CRYPT-*", ENV{ID_PART_TABLE_TYPE}=="", ENV{ID_FS_USAGE}=="", ENV{SYSTEMD_READY}="0" # add symlink to GPT root disk SUBSYSTEM=="block", ENV{ID_PART_GPT_AUTO_ROOT}=="1", ENV{ID_FS_TYPE}!="crypto_LUKS", SYMLINK+="gpt-auto-root" SUBSYSTEM=="block", ENV{ID_PART_GPT_AUTO_ROOT}=="1", ENV{ID_FS_TYPE}=="crypto_LUKS", SYMLINK+="gpt-auto-root-luks" SUBSYSTEM=="block", ENV{DM_UUID}=="CRYPT-*", ENV{DM_NAME}=="root", SYMLINK+="gpt-auto-root" # Ignore raid devices that are not yet assembled and started SUBSYSTEM=="block", ENV{DEVTYPE}=="disk", KERNEL=="md*", TEST!="md/array_state", ENV{SYSTEMD_READY}="0" SUBSYSTEM=="block", ENV{DEVTYPE}=="disk", KERNEL=="md*", ATTR{md/array_state}=="|clear|inactive", ENV{SYSTEMD_READY}="0" # Ignore loop devices that don't have any file attached SUBSYSTEM=="block", KERNEL=="loop[0-9]*", ENV{DEVTYPE}=="disk", TEST!="loop/backing_file", ENV{SYSTEMD_READY}="0" # Ignore nbd devices until the PID file exists (which signals a connected device) SUBSYSTEM=="block", KERNEL=="nbd*", ENV{DEVTYPE}=="disk", TEST!="pid", ENV{SYSTEMD_READY}="0" # We need a hardware independent way to identify network devices. We # use the /sys/subsystem/ path for this. Kernel "bus" and "class" names # should be treated as one namespace, like udev handles it. This is mostly # just an identification string for systemd, so whether the path actually is # accessible or not does not matter as long as it is unique and in the # filesystem namespace. # # http://cgit.freedesktop.org/systemd/systemd/tree/src/libudev/libudev-enumerate.c#n955 SUBSYSTEM=="net", KERNEL!="lo", TAG+="systemd", ENV{SYSTEMD_ALIAS}+="/sys/subsystem/net/devices/$name" SUBSYSTEM=="bluetooth", TAG+="systemd", ENV{SYSTEMD_ALIAS}+="/sys/subsystem/bluetooth/devices/%k" SUBSYSTEM=="bluetooth", TAG+="systemd", ENV{SYSTEMD_WANTS}+="bluetooth.target" ENV{ID_SMARTCARD_READER}=="?*", TAG+="systemd", ENV{SYSTEMD_WANTS}+="smartcard.target" SUBSYSTEM=="sound", KERNEL=="card*", TAG+="systemd", ENV{SYSTEMD_WANTS}+="sound.target" SUBSYSTEM=="printer", TAG+="systemd", ENV{SYSTEMD_WANTS}+="printer.target" SUBSYSTEM=="usb", KERNEL=="lp*", TAG+="systemd", ENV{SYSTEMD_WANTS}+="printer.target" SUBSYSTEM=="usb", ENV{DEVTYPE}=="usb_device", ENV{ID_USB_INTERFACES}=="*:0701??:*", TAG+="systemd", ENV{SYSTEMD_WANTS}+="printer.target" # Apply sysctl variables to network devices (and only to those) as they appear. ACTION=="add", SUBSYSTEM=="net", KERNEL!="lo", RUN+="/usr/lib/systemd/systemd-sysctl --prefix=/net/ipv4/conf/$name --prefix=/net/ipv4/neigh/$name --prefix=/net/ipv6/conf/$name --prefix=/net/ipv6/neigh/$name" # Pull in backlight save/restore for all backlight devices and # keyboard backlights SUBSYSTEM=="backlight", TAG+="systemd", IMPORT{builtin}="path_id", ENV{SYSTEMD_WANTS}+="systemd-backlight@backlight:$name.service" SUBSYSTEM=="leds", KERNEL=="*kbd_backlight", TAG+="systemd", IMPORT{builtin}="path_id", ENV{SYSTEMD_WANTS}+="systemd-backlight@leds:$name.service" # Pull in rfkill save/restore for all rfkill devices SUBSYSTEM=="rfkill", ENV{SYSTEMD_RFKILL}="1" SUBSYSTEM=="rfkill", IMPORT{builtin}="path_id" SUBSYSTEM=="misc", KERNEL=="rfkill", TAG+="systemd", ENV{SYSTEMD_WANTS}+="systemd-rfkill.socket" # Asynchronously mount file systems implemented by these modules as soon as they are loaded. SUBSYSTEM=="module", KERNEL=="fuse", TAG+="systemd", ENV{SYSTEMD_WANTS}+="sys-fs-fuse-connections.mount" SUBSYSTEM=="module", KERNEL=="configfs", TAG+="systemd", ENV{SYSTEMD_WANTS}+="sys-kernel-config.mount" LABEL="systemd_end" 85-nm-unmanaged.rules 0000644 00000003735 15135723340 0010434 0 ustar 00 # Do not modify this file, it will get overwritten on updates. # To override or extend the rules place a file in /etc/udev/rules.d SUBSYSTEM!="net", GOTO="nm_unmanaged_end" ACTION!="add|change|move", GOTO="nm_unmanaged_end" # VirtualBox host networking. Out-of-tree driver that looks like an ordinary # Ethernet. No parent device (lives in /virtual/), no support for ethtool # to identify the driver, MAC address defaults to 08:00:27:, but can be # changed. Interface name will have to do, it's always vboxnet*. ENV{INTERFACE}=="vboxnet[0-9]*", ENV{NM_UNMANAGED}="1" # VMWare host networking. Out-of-tree driver that looks like an ordinary # Ethernet. No parent device (lives in /virtual/), no support for # ethtool to identify the driver. They have their own MAC prefix that # can not be changed. ATTR{address}=="00:50:56:*", ENV{INTERFACE}=="vmnet[0-9]*", ENV{NM_UNMANAGED}="1" # Parallels Workstation host networking. Out-of-tree driver that looks like # an ordinary Ethernet. No parent device (lives in /virtual/), no support for # ethtool to identify the driver and the interface name is too generic. # However, they have their own MAC prefix that can not be changed. ATTR{address}=="00:1c:42:*", ENV{INTERFACE}=="vnic[0-9]*", ENV{NM_UNMANAGED}="1" # Virtual Ethernet device pair. Often used to communicate with a peer interface # in another net namespace and managed by libvirt, Docker or the like. # Generally we don't want to mess with those. One exception would be the # full system containers, like LXC or LXD. LXC containers run via libvirt # don't use udev, so this doesn't apply. LXD does, though. To deal with the # LXD situation, let's treat the devices called eth* as regular ethernet. ENV{ID_NET_DRIVER}=="veth", ENV{INTERFACE}!="eth[0-9]*", ENV{NM_UNMANAGED}="1" # USB gadget device. Unmanage by default, since whatever created it # might want to set it up itself (e.g. activate an ipv4.method=shared # connection). ENV{DEVTYPE}=="gadget", ENV{NM_UNMANAGED}="1" LABEL="nm_unmanaged_end" 63-md-raid-arrays.rules 0000644 00000005107 15135723340 0010670 0 ustar 00 # do not edit this file, it will be overwritten on update SUBSYSTEM!="block", GOTO="md_end" # handle md arrays ACTION=="remove", GOTO="md_end" KERNEL!="md*", GOTO="md_end" # partitions have no md/{array_state,metadata_version}, but should not # for that reason be ignored. ENV{DEVTYPE}=="partition", GOTO="md_ignore_state" # container devices have a metadata version of e.g. 'external:ddf' and # never leave state 'inactive' ATTR{md/metadata_version}=="external:[A-Za-z]*", ATTR{md/array_state}=="inactive", GOTO="md_ignore_state" TEST!="md/array_state", ENV{SYSTEMD_READY}="0", GOTO="md_end" ATTR{md/array_state}=="clear*|inactive", ENV{SYSTEMD_READY}="0", GOTO="md_end" ATTR{md/sync_action}=="reshape", ENV{RESHAPE_ACTIVE}="yes" LABEL="md_ignore_state" IMPORT{program}="/usr/sbin/mdadm --detail --no-devices --export $devnode" ENV{DEVTYPE}=="disk", ENV{MD_NAME}=="?*", SYMLINK+="disk/by-id/md-name-$env{MD_NAME}", OPTIONS+="string_escape=replace" ENV{DEVTYPE}=="disk", ENV{MD_UUID}=="?*", SYMLINK+="disk/by-id/md-uuid-$env{MD_UUID}" ENV{DEVTYPE}=="disk", ENV{MD_DEVNAME}=="?*", SYMLINK+="md/$env{MD_DEVNAME}" ENV{DEVTYPE}=="partition", ENV{MD_NAME}=="?*", SYMLINK+="disk/by-id/md-name-$env{MD_NAME}-part%n", OPTIONS+="string_escape=replace" ENV{DEVTYPE}=="partition", ENV{MD_UUID}=="?*", SYMLINK+="disk/by-id/md-uuid-$env{MD_UUID}-part%n" ENV{DEVTYPE}=="partition", ENV{MD_DEVNAME}=="*[^0-9]", SYMLINK+="md/$env{MD_DEVNAME}%n" ENV{DEVTYPE}=="partition", ENV{MD_DEVNAME}=="*[0-9]", SYMLINK+="md/$env{MD_DEVNAME}p%n" IMPORT{builtin}="blkid" OPTIONS+="link_priority=100" OPTIONS+="watch" ENV{ID_FS_USAGE}=="filesystem|other|crypto", ENV{ID_FS_UUID_ENC}=="?*", SYMLINK+="disk/by-uuid/$env{ID_FS_UUID_ENC}" ENV{ID_FS_USAGE}=="filesystem|other", ENV{ID_PART_ENTRY_UUID}=="?*", SYMLINK+="disk/by-partuuid/$env{ID_PART_ENTRY_UUID}" ENV{ID_FS_USAGE}=="filesystem|other", ENV{ID_FS_LABEL_ENC}=="?*", SYMLINK+="disk/by-label/$env{ID_FS_LABEL_ENC}" ENV{MD_LEVEL}=="raid[1-9]*", ENV{SYSTEMD_WANTS}+="mdmonitor.service" # Tell systemd to run mdmon for our container, if we need it. ENV{MD_LEVEL}=="raid[1-9]*", ENV{MD_CONTAINER}=="?*", PROGRAM="/usr/bin/readlink $env{MD_CONTAINER}", ENV{MD_MON_THIS}="%c" ENV{MD_MON_THIS}=="?*", TEST=="/etc/initrd-release", PROGRAM="/usr/bin/basename $env{MD_MON_THIS}", ENV{SYSTEMD_WANTS}+="mdmon@initrd-%c.service" ENV{MD_MON_THIS}=="?*", TEST!="/etc/initrd-release", PROGRAM="/usr/bin/basename $env{MD_MON_THIS}", ENV{SYSTEMD_WANTS}+="mdmon@%c.service" ENV{RESHAPE_ACTIVE}=="yes", PROGRAM="/usr/bin/basename $env{MD_MON_THIS}", ENV{SYSTEMD_WANTS}+="mdadm-grow-continue@%c.service" LABEL="md_end" 69-md-clustered-confirm-device.rules 0000644 00000001532 15135723340 0013340 0 ustar 00 # do not edit this file, it will be overwritten on update SUBSYSTEM!="block", GOTO="clustermd_end" # handle md arrays KERNEL!="md*", GOTO="clustermd_end" ENV{DEVTYPE}!="disk", GOTO="clustermd_end" ACTION!="change", GOTO="clustermd_end" ENV{EVENT}!="ADD_DEVICE", GOTO="clustermd_end" ENV{DEVICE_UUID}!="?*", GOTO="clustermd_end" ENV{RAID_DISK}!="?*", GOTO="clustermd_end" # Based on the received UUID, node confirms the device if # it is found by blkid, otherwise the node reports it is # missing. PROGRAM="/usr/sbin/blkid -o device -t UUID_SUB=$env{DEVICE_UUID}", ENV{.md.newdevice} = "$result" ENV{.md.newdevice}!="", RUN+="/usr/sbin/mdadm --manage $env{DEVNAME} --cluster-confirm $env{RAID_DISK}:$env{.md.newdevice}" ENV{.md.newdevice}=="", RUN+="/usr/sbin/mdadm --manage $env{DEVNAME} --cluster-confirm $env{RAID_DISK}:missing" LABEL="clustermd_end" 60-tpm-udev.rules 0000644 00000000323 15135723340 0007605 0 ustar 00 # tpm devices can only be accessed by the tss user but the tss # group members can access tpmrm devices KERNEL=="tpm[0-9]*", MODE="0660", OWNER="tss" KERNEL=="tpmrm[0-9]*", MODE="0660", OWNER="tss", GROUP="tss" 98-kexec.rules 0000644 00000001267 15135723340 0007166 0 ustar 00 SUBSYSTEM=="cpu", ACTION=="add", GOTO="kdump_reload" SUBSYSTEM=="cpu", ACTION=="remove", GOTO="kdump_reload" SUBSYSTEM=="memory", ACTION=="online", GOTO="kdump_reload" SUBSYSTEM=="memory", ACTION=="offline", GOTO="kdump_reload" GOTO="kdump_reload_end" LABEL="kdump_reload" # If kdump is not loaded, calling kdump-udev-throttle will end up # doing nothing, but systemd-run will always generate extra logs for # each call, so trigger the kdump-udev-throttler only if kdump # service is active to avoid unnecessary logs RUN+="/bin/sh -c '/usr/bin/systemctl is-active kdump.service || exit 0; /usr/bin/systemd-run --quiet --no-block /usr/lib/udev/kdump-udev-throttler'" LABEL="kdump_reload_end" 71-prefixdevname.rules 0000644 00000000623 15135723340 0010706 0 ustar 00 # Do not edit this file, it will be overwritten on updates SUBSYSTEM!="net", GOTO="net_ifnames_prefix_end" ACTION!="add", GOTO="net_ifnames_prefix_end" ATTR{type}!="1", GOTO="net_ifnames_prefix_end" IMPORT{cmdline}="net.ifnames.prefix" ENV{net.ifnames.prefix}!="?*", GOTO="net_ifnames_prefix_end" PROGRAM="/usr/lib/udev/prefixdevname", RESULT=="?*", NAME="$result" LABEL="net_ifnames_prefix_end" 61-scsi-sg3_id.rules 0000644 00000011251 15135723340 0010156 0 ustar 00 # SCSI-ID mappings for sg3_utils ACTION=="remove", GOTO="sg3_utils_id_end" SUBSYSTEM!="block", GOTO="sg3_utils_id_end" # Import values for partitions ENV{DEVTYPE}=="partition", IMPORT{parent}="SCSI_*", ENV{ID_SCSI}="1" # SCSI INQUIRY values # If the 'inquiry' sysfs attribute is present the kernel will already # have scanned for VPD pages, so if the vpd page attribute is not # present it is not supported (or deemed unsafe to access). # Hence we can skip the call to sg_inq and avoid I/O altogether. # Set 'ID_SCSI_INQUIRY=0' in an earlier udev rule if the kernel # fails to scan VPD pages correctly; the rules will then fall # back to calling sg_vpd directly. KERNEL=="sd*[!0-9]|sr*", ENV{ID_SCSI_INQUIRY}!="?*", IMPORT{program}="/usr/bin/sg_inq --export --inhex=/sys/block/$kernel/device/inquiry --raw", ENV{ID_SCSI}="1", ENV{ID_SCSI_INQUIRY}="1" KERNEL=="sd*[!0-9]|sr*", ENV{ID_SCSI}!="1", IMPORT{program}="/usr/bin/sg_inq --export $tempnode", ENV{ID_SCSI}="1" # scsi_id compat mappings ENV{SCSI_VENDOR}=="?*", ENV{ID_VENDOR}="$env{SCSI_VENDOR}" ENV{SCSI_VENDOR_ENC}=="?*", ENV{ID_VENDOR_ENC}="$env{SCSI_VENDOR_ENC}" ENV{SCSI_MODEL}=="?*", ENV{ID_MODEL}="$env{SCSI_MODEL}" ENV{SCSI_MODEL_ENC}=="?*", ENV{ID_MODEL_ENC}="$env{SCSI_MODEL_ENC}" ENV{SCSI_REVISION}=="?*", ENV{ID_REVISION}="$env{SCSI_REVISION}" ENV{SCSI_TYPE}=="?*", ENV{ID_TYPE}="$env{SCSI_TYPE}" # SCSI EVPD page 0x80 values KERNEL=="sd*[!0-9]|sr*", ENV{ID_SCSI}=="1", ENV{ID_SCSI_INQUIRY}=="1", IMPORT{program}="/usr/bin/sg_inq --export --inhex=/sys/block/$kernel/device/vpd_pg80 --raw" KERNEL=="sd*[!0-9]|sr*", ENV{ID_SCSI}=="1", ENV{ID_SCSI_INQUIRY}!="1", IMPORT{program}="/usr/bin/sg_inq --export --page=sn $tempnode" # SCSI EVPD page 0x83 values KERNEL=="sd*[!0-9]", ENV{ID_SCSI}=="1", ENV{ID_SCSI_INQUIRY}=="1", IMPORT{program}="/usr/bin/sg_inq --export --inhex=/sys/block/$kernel/device/vpd_pg83 --raw" KERNEL=="sd*[!0-9]|sr*", ENV{ID_SCSI}=="1", ENV{ID_SCSI_INQUIRY}!="1", IMPORT{program}="/usr/bin/sg_inq --export --page=di $tempnode" # ID_WWN compat mapping ENV{SCSI_IDENT_LUN_NAA_REGEXT}=="?*", ENV{ID_WWN}!="?*", ENV{ID_WWN}="0x$env{SCSI_IDENT_LUN_NAA_REGEXT}" ENV{SCSI_IDENT_LUN_NAA_REG}=="?*", ENV{ID_WWN}!="?*", ENV{ID_WWN}="0x$env{SCSI_IDENT_LUN_NAA_REG}" ENV{SCSI_IDENT_LUN_NAA_EXT}=="?*", ENV{ID_WWN}!="?*", ENV{ID_WWN}="0x$env{SCSI_IDENT_LUN_NAA_EXT}" ENV{SCSI_IDENT_LUN_NAA_LOCAL}=="?*", ENV{ID_WWN}!="?*", ENV{ID_WWN}="0x$env{SCSI_IDENT_LUN_NAA_LOCAL}" ENV{SCSI_IDENT_LUN_NAA_REGEXT}=="?*", ENV{ID_WWN_WITH_EXTENSION}!="?*", ENV{ID_WWN_WITH_EXTENSION}="0x$env{SCSI_IDENT_LUN_NAA_REGEXT}" ENV{SCSI_IDENT_LUN_NAA_EXT}=="?*", ENV{ID_WWN_WITH_EXTENSION}!="?*", ENV{ID_WWN_WITH_EXTENSION}="0x$env{SCSI_IDENT_LUN_NAA_EXT}" ENV{ID_WWN}=="?*", ENV{ID_WWN_WITH_EXTENSION}!="?*", ENV{ID_WWN_WITH_EXTENSION}="$env{ID_WWN}" # ata_id compability ENV{ID_SERIAL}!="?*", ENV{SCSI_IDENT_LUN_ATA}=="?*", ENV{ID_BUS}="ata", ENV{ID_ATA}="1", ENV{ID_SERIAL}="$env{SCSI_IDENT_LUN_ATA}" ENV{ID_SERIAL_SHORT}!="?*", ENV{SCSI_VENDOR}=="ATA", ENV{SCSI_IDENT_LUN_VENDOR}=="?*", ENV{ID_SERIAL_SHORT}="$env{SCSI_IDENT_LUN_VENDOR}" # Compat ID_SERIAL setting ENV{ID_SERIAL}!="?*", ENV{SCSI_IDENT_LUN_NAA_REGEXT}=="?*", ENV{ID_BUS}="scsi", ENV{ID_SERIAL}="3$env{SCSI_IDENT_LUN_NAA_REGEXT}", ENV{ID_SERIAL_SHORT}="$env{SCSI_IDENT_LUN_NAA_REGEXT}" ENV{ID_SERIAL}!="?*", ENV{SCSI_IDENT_LUN_NAA_REG}=="?*", ENV{ID_BUS}="scsi", ENV{ID_SERIAL}="3$env{SCSI_IDENT_LUN_NAA_REG}", ENV{ID_SERIAL_SHORT}="$env{SCSI_IDENT_LUN_NAA_REG}" ENV{ID_SERIAL}!="?*", ENV{SCSI_IDENT_LUN_NAA_EXT}=="?*", ENV{ID_BUS}="scsi", ENV{ID_SERIAL}="3$env{SCSI_IDENT_LUN_NAA}", ENV{ID_SERIAL_SHORT}="$env{SCSI_IDENT_LUN_NAA_EXT}" ENV{ID_SERIAL}!="?*", ENV{SCSI_IDENT_LUN_EUI64}=="?*", ENV{ID_BUS}="scsi", ENV{ID_SERIAL}="2$env{SCSI_IDENT_LUN_EUI64}", ENV{ID_SERIAL_SHORT}="$env{SCSI_IDENT_LUN_EUI64}" ENV{ID_SERIAL}!="?*", ENV{SCSI_IDENT_LUN_NAME}=="?*", ENV{ID_BUS}="scsi", ENV{ID_SERIAL}="8$env{SCSI_IDENT_LUN_NAME}", ENV{ID_SERIAL_SHORT}="$env{SCSI_IDENT_LUN_NAME}" ENV{ID_SERIAL}!="?*", ENV{SCSI_IDENT_LUN_T10}=="?*", ENV{ID_BUS}="scsi", ENV{ID_SERIAL}="1$env{SCSI_IDENT_LUN_T10}", ENV{ID_SERIAL_SHORT}="$env{SCSI_IDENT_LUN_T10}" ENV{ID_SERIAL}!="?*", ENV{SCSI_IDENT_LUN_NAA_LOCAL}=="?*", ENV{ID_BUS}="scsi", ENV{ID_SERIAL}="3$env{SCSI_IDENT_LUN_NAA_LOCAL}", ENV{ID_SERIAL_SHORT}="$env{SCSI_IDENT_LUN_NAA_LOCAL}" ENV{ID_SERIAL}!="?*", ENV{SCSI_IDENT_LUN_VENDOR}=="?*", ENV{ID_BUS}="scsi", ENV{ID_SERIAL}="0$env{SCSI_VENDOR}_$env{SCSI_MODEL}_$env{SCSI_IDENT_LUN_VENDOR}", ENV{ID_SERIAL_SHORT}="$env{SCSI_IDENT_LUN_VENDOR}" ENV{ID_SERIAL}!="?*", ENV{SCSI_IDENT_SERIAL}=="?*", ENV{ID_BUS}="scsi", ENV{ID_SERIAL}="S$env{SCSI_VENDOR}_$env{SCSI_MODEL}_$env{SCSI_IDENT_SERIAL}", ENV{ID_SERIAL_SHORT}="$env{SCSI_IDENT_SERIAL}" LABEL="sg3_utils_id_end" 63-fc-wwpn-id.rules 0000644 00000001160 15135723340 0010022 0 ustar 00 # # FC WWPN-based by-path links # ACTION!="add|change", GOTO="fc_wwpn_end" KERNEL!="sd*", GOTO="fc_wwpn_end" ENV{DEVTYPE}=="disk", IMPORT{program}="fc_wwpn_id %p" ENV{DEVTYPE}=="partition", IMPORT{parent}="FC_*" ENV{FC_TARGET_WWPN}!="?*", GOTO="fc_wwpn_end" ENV{FC_INITIATOR_WWPN}!="?*", GOTO="fc_wwpn_end" ENV{FC_TARGET_LUN}!="?*", GOTO="fc_wwpn_end" ENV{DEVTYPE}=="disk", SYMLINK+="disk/by-path/fc-$env{FC_INITIATOR_WWPN}-$env{FC_TARGET_WWPN}-lun-$env{FC_TARGET_LUN}" ENV{DEVTYPE}=="partition", SYMLINK+="disk/by-path/fc-$env{FC_INITIATOR_WWPN}-$env{FC_TARGET_WWPN}-lun-$env{FC_TARGET_LUN}-part%n" LABEL="fc_wwpn_end" 99-nfs.rules 0000644 00000000137 15135723340 0006651 0 ustar 00 SUBSYSTEM=="bdi", ACTION=="add", PROGRAM="/usr/libexec/nfsrahead %k", ATTR{read_ahead_kb}="%c" 40-elevator.rules 0000644 00000001330 15135723340 0007662 0 ustar 00 # We aren't adding devices skip the elevator check ACTION!="add", GOTO="sched_out" SUBSYSTEM!="block", GOTO="sched_out" ENV{DEVTYPE}!="disk", GOTO="sched_out" # Technically, dm-multipath can be configured to use an I/O scheduler. # However, there are races between the 'add' uevent and the linking in # of the queue/scheduler sysfs file. For now, just skip dm- devices. KERNEL=="dm-*|md*", GOTO="sched_out" # Skip bio-based devices, which don't support an I/O scheduler. ATTR{queue/scheduler}=="none", GOTO="sched_out" # If elevator= is specified on the kernel command line, change the # scheduler to the one specified. IMPORT{cmdline}="elevator" ENV{elevator}!="", ATTR{queue/scheduler}="$env{elevator}" LABEL="sched_out"