pct(1)
| PCT(1) | Proxmox VE Documentation | PCT(1) |
NAME
pct - Tool to manage Linux Containers (LXC) on Proxmox VE
SYNOPSIS
pct <COMMAND> [ARGS] [OPTIONS]
pct clone <vmid> <newid> [OPTIONS]
Create a container clone/copy
<vmid>: <integer> (1 - N)
<newid>: <integer> (1 - N)
--bwlimit <number> (0 - N) (default = clone limit from datacenter or storage config)
--description <string>
--full <boolean>
--hostname <string>
--pool <string>
--snapname <string>
--storage <string>
--target <string>
pct config <vmid> [OPTIONS]
Get container configuration.
<vmid>: <integer> (1 - N)
--current <boolean> (default = 0)
--snapshot <string>
pct console <vmid> [OPTIONS]
Launch a console for the specified container.
<vmid>: <integer> (1 - N)
--escape \^?[a-z] (default = ^a)
pct cpusets
Print the list of assigned CPU sets.
pct create <vmid> <ostemplate> [OPTIONS]
Create or restore a container.
<vmid>: <integer> (1 - N)
<ostemplate>: <string>
--arch <amd64 | arm64 | armhf | i386 | riscv32 | riscv64> (default = amd64)
--bwlimit <number> (0 - N) (default = restore limit from datacenter or storage config)
--cmode <console | shell | tty> (default = tty)
--console <boolean> (default = 1)
--cores <integer> (1 - 8192)
--cpulimit <number> (0 - 8192) (default = 0)
Note
If the computer has 2 CPUs, it has a total of 2 CPU time. Value 0 indicates no CPU limit.
--cpuunits <integer> (0 - 500000) (default = cgroup v1: 1024, cgroup v2: 100)
--debug <boolean> (default = 0)
--description <string>
--features [force_rw_sys=<1|0>] [,fuse=<1|0>] [,keyctl=<1|0>] [,mknod=<1|0>] [,mount=<fstype;fstype;...>] [,nesting=<1|0>]
--force <boolean>
--hookscript <string>
--hostname <string>
--ignore-unpack-errors <boolean>
--lock <backup | create | destroyed | disk | fstrim | migrate | mounted | rollback | snapshot | snapshot-delete>
--memory <integer> (16 - N) (default = 512)
--mp[n] [volume=]<volume> ,mp=<Path> [,acl=<1|0>] [,backup=<1|0>] [,mountoptions=<opt[;opt...]>] [,quota=<1|0>] [,replicate=<1|0>] [,ro=<1|0>] [,shared=<1|0>] [,size=<DiskSize>]
--nameserver <string>
--net[n] name=<string> [,bridge=<bridge>] [,firewall=<1|0>] [,gw=<GatewayIPv4>] [,gw6=<GatewayIPv6>] [,hwaddr=<XX:XX:XX:XX:XX:XX>] [,ip=<(IPv4/CIDR|dhcp|manual)>] [,ip6=<(IPv6/CIDR|auto|dhcp|manual)>] [,link_down=<1|0>] [,mtu=<integer>] [,rate=<mbps>] [,tag=<integer>] [,trunks=<vlanid[;vlanid...]>] [,type=<veth>]
--onboot <boolean> (default = 0)
--ostype <alpine | altlinux | archlinux | centos | debian | devuan | fedora | gentoo | opensuse | ubuntu | unmanaged>
--password <password>
--pool <string>
--protection <boolean> (default = 0)
--restore <boolean>
--rootfs [volume=]<volume> [,acl=<1|0>] [,mountoptions=<opt[;opt...]>] [,quota=<1|0>] [,replicate=<1|0>] [,ro=<1|0>] [,shared=<1|0>] [,size=<DiskSize>]
--searchdomain <string>
--ssh-public-keys <filepath>
--start <boolean> (default = 0)
--startup `[[order=]\d+] [,up=\d+] [,down=\d+] `
--storage <string> (default = local)
--swap <integer> (0 - N) (default = 512)
--tags <string>
--template <boolean> (default = 0)
--timezone <string>
--tty <integer> (0 - 6) (default = 2)
--unique <boolean>
Note
Requires option(s): restore
--unprivileged <boolean> (default = 0)
--unused[n] [volume=]<volume>
pct delsnapshot <vmid> <snapname> [OPTIONS]
Delete a LXC snapshot.
<vmid>: <integer> (1 - N)
<snapname>: <string>
--force <boolean>
pct destroy <vmid> [OPTIONS]
Destroy the container (also delete all uses files).
<vmid>: <integer> (1 - N)
--destroy-unreferenced-disks <boolean>
--force <boolean> (default = 0)
--purge <boolean> (default = 0)
pct df <vmid>
Get the container’s current disk usage.
<vmid>: <integer> (1 - N)
pct enter <vmid>
Launch a shell for the specified container.
<vmid>: <integer> (1 - N)
pct exec <vmid> [<extra-args>]
Launch a command inside the specified container.
<vmid>: <integer> (1 - N)
<extra-args>: <array>
pct fsck <vmid> [OPTIONS]
Run a filesystem check (fsck) on a container volume.
<vmid>: <integer> (1 - N)
--device <mp0 | mp1 | mp10 | mp100 | mp101 | mp102 | mp103 | mp104 | mp105 | mp106 | mp107 | mp108 | mp109 | mp11 | mp110 | mp111 | mp112 | mp113 | mp114 | mp115 | mp116 | mp117 | mp118 | mp119 | mp12 | mp120 | mp121 | mp122 | mp123 | mp124 | mp125 | mp126 | mp127 | mp128 | mp129 | mp13 | mp130 | mp131 | mp132 | mp133 | mp134 | mp135 | mp136 | mp137 | mp138 | mp139 | mp14 | mp140 | mp141 | mp142 | mp143 | mp144 | mp145 | mp146 | mp147 | mp148 | mp149 | mp15 | mp150 | mp151 | mp152 | mp153 | mp154 | mp155 | mp156 | mp157 | mp158 | mp159 | mp16 | mp160 | mp161 | mp162 | mp163 | mp164 | mp165 | mp166 | mp167 | mp168 | mp169 | mp17 | mp170 | mp171 | mp172 | mp173 | mp174 | mp175 | mp176 | mp177 | mp178 | mp179 | mp18 | mp180 | mp181 | mp182 | mp183 | mp184 | mp185 | mp186 | mp187 | mp188 | mp189 | mp19 | mp190 | mp191 | mp192 | mp193 | mp194 | mp195 | mp196 | mp197 | mp198 | mp199 | mp2 | mp20 | mp200 | mp201 | mp202 | mp203 | mp204 | mp205 | mp206 | mp207 | mp208 | mp209 | mp21 | mp210 | mp211 | mp212 | mp213 | mp214 | mp215 | mp216 | mp217 | mp218 | mp219 | mp22 | mp220 | mp221 | mp222 | mp223 | mp224 | mp225 | mp226 | mp227 | mp228 | mp229 | mp23 | mp230 | mp231 | mp232 | mp233 | mp234 | mp235 | mp236 | mp237 | mp238 | mp239 | mp24 | mp240 | mp241 | mp242 | mp243 | mp244 | mp245 | mp246 | mp247 | mp248 | mp249 | mp25 | mp250 | mp251 | mp252 | mp253 | mp254 | mp255 | mp26 | mp27 | mp28 | mp29 | mp3 | mp30 | mp31 | mp32 | mp33 | mp34 | mp35 | mp36 | mp37 | mp38 | mp39 | mp4 | mp40 | mp41 | mp42 | mp43 | mp44 | mp45 | mp46 | mp47 | mp48 | mp49 | mp5 | mp50 | mp51 | mp52 | mp53 | mp54 | mp55 | mp56 | mp57 | mp58 | mp59 | mp6 | mp60 | mp61 | mp62 | mp63 | mp64 | mp65 | mp66 | mp67 | mp68 | mp69 | mp7 | mp70 | mp71 | mp72 | mp73 | mp74 | mp75 | mp76 | mp77 | mp78 | mp79 | mp8 | mp80 | mp81 | mp82 | mp83 | mp84 | mp85 | mp86 | mp87 | mp88 | mp89 | mp9 | mp90 | mp91 | mp92 | mp93 | mp94 | mp95 | mp96 | mp97 | mp98 | mp99 | rootfs>
--force <boolean> (default = 0)
pct fstrim <vmid> [OPTIONS]
Run fstrim on a chosen CT and its mountpoints, except bind or read-only mountpoints.
<vmid>: <integer> (1 - N)
--ignore-mountpoints <boolean>
pct help [OPTIONS]
Get help about specified command.
--extra-args <array>
--verbose <boolean>
pct list
LXC container index (per node).
pct listsnapshot <vmid>
List all snapshots.
<vmid>: <integer> (1 - N)
pct migrate <vmid> <target> [OPTIONS]
Migrate the container to another node. Creates a new migration task.
<vmid>: <integer> (1 - N)
<target>: <string>
--bwlimit <number> (0 - N) (default = migrate limit from datacenter or storage config)
--online <boolean>
--restart <boolean>
--target-storage <string>
--timeout <integer> (default = 180)
pct mount <vmid>
Mount the container’s filesystem on the host. This will hold a lock on the container and is meant for emergency maintenance only as it will prevent further operations on the container other than start and stop.
<vmid>: <integer> (1 - N)
pct move-volume <vmid> <volume> [<storage>] [<target-vmid>] [<target-volume>] [OPTIONS]
Move a rootfs-/mp-volume to a different storage or to a different container.
<vmid>: <integer> (1 - N)
<volume>: <mp0 | mp1 | mp10 | mp100 | mp101 | mp102 | mp103 | mp104 | mp105 | mp106 | mp107 | mp108 | mp109 | mp11 | mp110 | mp111 | mp112 | mp113 | mp114 | mp115 | mp116 | mp117 | mp118 | mp119 | mp12 | mp120 | mp121 | mp122 | mp123 | mp124 | mp125 | mp126 | mp127 | mp128 | mp129 | mp13 | mp130 | mp131 | mp132 | mp133 | mp134 | mp135 | mp136 | mp137 | mp138 | mp139 | mp14 | mp140 | mp141 | mp142 | mp143 | mp144 | mp145 | mp146 | mp147 | mp148 | mp149 | mp15 | mp150 | mp151 | mp152 | mp153 | mp154 | mp155 | mp156 | mp157 | mp158 | mp159 | mp16 | mp160 | mp161 | mp162 | mp163 | mp164 | mp165 | mp166 | mp167 | mp168 | mp169 | mp17 | mp170 | mp171 | mp172 | mp173 | mp174 | mp175 | mp176 | mp177 | mp178 | mp179 | mp18 | mp180 | mp181 | mp182 | mp183 | mp184 | mp185 | mp186 | mp187 | mp188 | mp189 | mp19 | mp190 | mp191 | mp192 | mp193 | mp194 | mp195 | mp196 | mp197 | mp198 | mp199 | mp2 | mp20 | mp200 | mp201 | mp202 | mp203 | mp204 | mp205 | mp206 | mp207 | mp208 | mp209 | mp21 | mp210 | mp211 | mp212 | mp213 | mp214 | mp215 | mp216 | mp217 | mp218 | mp219 | mp22 | mp220 | mp221 | mp222 | mp223 | mp224 | mp225 | mp226 | mp227 | mp228 | mp229 | mp23 | mp230 | mp231 | mp232 | mp233 | mp234 | mp235 | mp236 | mp237 | mp238 | mp239 | mp24 | mp240 | mp241 | mp242 | mp243 | mp244 | mp245 | mp246 | mp247 | mp248 | mp249 | mp25 | mp250 | mp251 | mp252 | mp253 | mp254 | mp255 | mp26 | mp27 | mp28 | mp29 | mp3 | mp30 | mp31 | mp32 | mp33 | mp34 | mp35 | mp36 | mp37 | mp38 | mp39 | mp4 | mp40 | mp41 | mp42 | mp43 | mp44 | mp45 | mp46 | mp47 | mp48 | mp49 | mp5 | mp50 | mp51 | mp52 | mp53 | mp54 | mp55 | mp56 | mp57 | mp58 | mp59 | mp6 | mp60 | mp61 | mp62 | mp63 | mp64 | mp65 | mp66 | mp67 | mp68 | mp69 | mp7 | mp70 | mp71 | mp72 | mp73 | mp74 | mp75 | mp76 | mp77 | mp78 | mp79 | mp8 | mp80 | mp81 | mp82 | mp83 | mp84 | mp85 | mp86 | mp87 | mp88 | mp89 | mp9 | mp90 | mp91 | mp92 | mp93 | mp94 | mp95 | mp96 | mp97 | mp98 | mp99 | rootfs | unused0 | unused1 | unused10 | unused100 | unused101 | unused102 | unused103 | unused104 | unused105 | unused106 | unused107 | unused108 | unused109 | unused11 | unused110 | unused111 | unused112 | unused113 | unused114 | unused115 | unused116 | unused117 | unused118 | unused119 | unused12 | unused120 | unused121 | unused122 | unused123 | unused124 | unused125 | unused126 | unused127 | unused128 | unused129 | unused13 | unused130 | unused131 | unused132 | unused133 | unused134 | unused135 | unused136 | unused137 | unused138 | unused139 | unused14 | unused140 | unused141 | unused142 | unused143 | unused144 | unused145 | unused146 | unused147 | unused148 | unused149 | unused15 | unused150 | unused151 | unused152 | unused153 | unused154 | unused155 | unused156 | unused157 | unused158 | unused159 | unused16 | unused160 | unused161 | unused162 | unused163 | unused164 | unused165 | unused166 | unused167 | unused168 | unused169 | unused17 | unused170 | unused171 | unused172 | unused173 | unused174 | unused175 | unused176 | unused177 | unused178 | unused179 | unused18 | unused180 | unused181 | unused182 | unused183 | unused184 | unused185 | unused186 | unused187 | unused188 | unused189 | unused19 | unused190 | unused191 | unused192 | unused193 | unused194 | unused195 | unused196 | unused197 | unused198 | unused199 | unused2 | unused20 | unused200 | unused201 | unused202 | unused203 | unused204 | unused205 | unused206 | unused207 | unused208 | unused209 | unused21 | unused210 | unused211 | unused212 | unused213 | unused214 | unused215 | unused216 | unused217 | unused218 | unused219 | unused22 | unused220 | unused221 | unused222 | unused223 | unused224 | unused225 | unused226 | unused227 | unused228 | unused229 | unused23 | unused230 | unused231 | unused232 | unused233 | unused234 | unused235 | unused236 | unused237 | unused238 | unused239 | unused24 | unused240 | unused241 | unused242 | unused243 | unused244 | unused245 | unused246 | unused247 | unused248 | unused249 | unused25 | unused250 | unused251 | unused252 | unused253 | unused254 | unused255 | unused26 | unused27 | unused28 | unused29 | unused3 | unused30 | unused31 | unused32 | unused33 | unused34 | unused35 | unused36 | unused37 | unused38 | unused39 | unused4 | unused40 | unused41 | unused42 | unused43 | unused44 | unused45 | unused46 | unused47 | unused48 | unused49 | unused5 | unused50 | unused51 | unused52 | unused53 | unused54 | unused55 | unused56 | unused57 | unused58 | unused59 | unused6 | unused60 | unused61 | unused62 | unused63 | unused64 | unused65 | unused66 | unused67 | unused68 | unused69 | unused7 | unused70 | unused71 | unused72 | unused73 | unused74 | unused75 | unused76 | unused77 | unused78 | unused79 | unused8 | unused80 | unused81 | unused82 | unused83 | unused84 | unused85 | unused86 | unused87 | unused88 | unused89 | unused9 | unused90 | unused91 | unused92 | unused93 | unused94 | unused95 | unused96 | unused97 | unused98 | unused99>
<storage>: <string>
<target-vmid>: <integer> (1 - N)
<target-volume>: <mp0 | mp1 | mp10 | mp100 | mp101 | mp102 | mp103 | mp104 | mp105 | mp106 | mp107 | mp108 | mp109 | mp11 | mp110 | mp111 | mp112 | mp113 | mp114 | mp115 | mp116 | mp117 | mp118 | mp119 | mp12 | mp120 | mp121 | mp122 | mp123 | mp124 | mp125 | mp126 | mp127 | mp128 | mp129 | mp13 | mp130 | mp131 | mp132 | mp133 | mp134 | mp135 | mp136 | mp137 | mp138 | mp139 | mp14 | mp140 | mp141 | mp142 | mp143 | mp144 | mp145 | mp146 | mp147 | mp148 | mp149 | mp15 | mp150 | mp151 | mp152 | mp153 | mp154 | mp155 | mp156 | mp157 | mp158 | mp159 | mp16 | mp160 | mp161 | mp162 | mp163 | mp164 | mp165 | mp166 | mp167 | mp168 | mp169 | mp17 | mp170 | mp171 | mp172 | mp173 | mp174 | mp175 | mp176 | mp177 | mp178 | mp179 | mp18 | mp180 | mp181 | mp182 | mp183 | mp184 | mp185 | mp186 | mp187 | mp188 | mp189 | mp19 | mp190 | mp191 | mp192 | mp193 | mp194 | mp195 | mp196 | mp197 | mp198 | mp199 | mp2 | mp20 | mp200 | mp201 | mp202 | mp203 | mp204 | mp205 | mp206 | mp207 | mp208 | mp209 | mp21 | mp210 | mp211 | mp212 | mp213 | mp214 | mp215 | mp216 | mp217 | mp218 | mp219 | mp22 | mp220 | mp221 | mp222 | mp223 | mp224 | mp225 | mp226 | mp227 | mp228 | mp229 | mp23 | mp230 | mp231 | mp232 | mp233 | mp234 | mp235 | mp236 | mp237 | mp238 | mp239 | mp24 | mp240 | mp241 | mp242 | mp243 | mp244 | mp245 | mp246 | mp247 | mp248 | mp249 | mp25 | mp250 | mp251 | mp252 | mp253 | mp254 | mp255 | mp26 | mp27 | mp28 | mp29 | mp3 | mp30 | mp31 | mp32 | mp33 | mp34 | mp35 | mp36 | mp37 | mp38 | mp39 | mp4 | mp40 | mp41 | mp42 | mp43 | mp44 | mp45 | mp46 | mp47 | mp48 | mp49 | mp5 | mp50 | mp51 | mp52 | mp53 | mp54 | mp55 | mp56 | mp57 | mp58 | mp59 | mp6 | mp60 | mp61 | mp62 | mp63 | mp64 | mp65 | mp66 | mp67 | mp68 | mp69 | mp7 | mp70 | mp71 | mp72 | mp73 | mp74 | mp75 | mp76 | mp77 | mp78 | mp79 | mp8 | mp80 | mp81 | mp82 | mp83 | mp84 | mp85 | mp86 | mp87 | mp88 | mp89 | mp9 | mp90 | mp91 | mp92 | mp93 | mp94 | mp95 | mp96 | mp97 | mp98 | mp99 | rootfs | unused0 | unused1 | unused10 | unused100 | unused101 | unused102 | unused103 | unused104 | unused105 | unused106 | unused107 | unused108 | unused109 | unused11 | unused110 | unused111 | unused112 | unused113 | unused114 | unused115 | unused116 | unused117 | unused118 | unused119 | unused12 | unused120 | unused121 | unused122 | unused123 | unused124 | unused125 | unused126 | unused127 | unused128 | unused129 | unused13 | unused130 | unused131 | unused132 | unused133 | unused134 | unused135 | unused136 | unused137 | unused138 | unused139 | unused14 | unused140 | unused141 | unused142 | unused143 | unused144 | unused145 | unused146 | unused147 | unused148 | unused149 | unused15 | unused150 | unused151 | unused152 | unused153 | unused154 | unused155 | unused156 | unused157 | unused158 | unused159 | unused16 | unused160 | unused161 | unused162 | unused163 | unused164 | unused165 | unused166 | unused167 | unused168 | unused169 | unused17 | unused170 | unused171 | unused172 | unused173 | unused174 | unused175 | unused176 | unused177 | unused178 | unused179 | unused18 | unused180 | unused181 | unused182 | unused183 | unused184 | unused185 | unused186 | unused187 | unused188 | unused189 | unused19 | unused190 | unused191 | unused192 | unused193 | unused194 | unused195 | unused196 | unused197 | unused198 | unused199 | unused2 | unused20 | unused200 | unused201 | unused202 | unused203 | unused204 | unused205 | unused206 | unused207 | unused208 | unused209 | unused21 | unused210 | unused211 | unused212 | unused213 | unused214 | unused215 | unused216 | unused217 | unused218 | unused219 | unused22 | unused220 | unused221 | unused222 | unused223 | unused224 | unused225 | unused226 | unused227 | unused228 | unused229 | unused23 | unused230 | unused231 | unused232 | unused233 | unused234 | unused235 | unused236 | unused237 | unused238 | unused239 | unused24 | unused240 | unused241 | unused242 | unused243 | unused244 | unused245 | unused246 | unused247 | unused248 | unused249 | unused25 | unused250 | unused251 | unused252 | unused253 | unused254 | unused255 | unused26 | unused27 | unused28 | unused29 | unused3 | unused30 | unused31 | unused32 | unused33 | unused34 | unused35 | unused36 | unused37 | unused38 | unused39 | unused4 | unused40 | unused41 | unused42 | unused43 | unused44 | unused45 | unused46 | unused47 | unused48 | unused49 | unused5 | unused50 | unused51 | unused52 | unused53 | unused54 | unused55 | unused56 | unused57 | unused58 | unused59 | unused6 | unused60 | unused61 | unused62 | unused63 | unused64 | unused65 | unused66 | unused67 | unused68 | unused69 | unused7 | unused70 | unused71 | unused72 | unused73 | unused74 | unused75 | unused76 | unused77 | unused78 | unused79 | unused8 | unused80 | unused81 | unused82 | unused83 | unused84 | unused85 | unused86 | unused87 | unused88 | unused89 | unused9 | unused90 | unused91 | unused92 | unused93 | unused94 | unused95 | unused96 | unused97 | unused98 | unused99>
--bwlimit <number> (0 - N) (default = clone limit from datacenter or storage config)
--delete <boolean> (default = 0)
--digest <string>
--target-digest <string>
pct move_volume
An alias for pct move-volume.
pct pending <vmid>
Get container configuration, including pending changes.
<vmid>: <integer> (1 - N)
pct pull <vmid> <path> <destination> [OPTIONS]
Copy a file from the container to the local system.
<vmid>: <integer> (1 - N)
<path>: <string>
<destination>: <string>
--group <string>
--perms <string>
--user <string>
pct push <vmid> <file> <destination> [OPTIONS]
Copy a local file to the container.
<vmid>: <integer> (1 - N)
<file>: <string>
<destination>: <string>
--group <string>
--perms <string>
--user <string>
pct reboot <vmid> [OPTIONS]
Reboot the container by shutting it down, and starting it again. Applies pending changes.
<vmid>: <integer> (1 - N)
--timeout <integer> (0 - N)
pct remote-migrate <vmid> [<target-vmid>] <target-endpoint> --target-bridge <string> --target-storage <string> [OPTIONS]
Migrate container to a remote cluster. Creates a new migration task. EXPERIMENTAL feature!
<vmid>: <integer> (1 - N)
<target-vmid>: <integer> (1 - N)
<target-endpoint>: apitoken=<A full Proxmox API token including the secret value.> ,host=<Remote Proxmox hostname or IP> [,fingerprint=<Remote host's certificate fingerprint, if not trusted by system store.>] [,port=<integer>]
--bwlimit <integer> (0 - N) (default = migrate limit from datacenter or storage config)
--delete <boolean> (default = 0)
--online <boolean>
--restart <boolean>
--target-bridge <string>
--target-storage <string>
--timeout <integer> (default = 180)
pct rescan [OPTIONS]
Rescan all storages and update disk sizes and unused disk images.
--dryrun <boolean> (default = 0)
--vmid <integer> (1 - N)
pct resize <vmid> <disk> <size> [OPTIONS]
Resize a container mount point.
<vmid>: <integer> (1 - N)
<disk>: <mp0 | mp1 | mp10 | mp100 | mp101 | mp102 | mp103 | mp104 | mp105 | mp106 | mp107 | mp108 | mp109 | mp11 | mp110 | mp111 | mp112 | mp113 | mp114 | mp115 | mp116 | mp117 | mp118 | mp119 | mp12 | mp120 | mp121 | mp122 | mp123 | mp124 | mp125 | mp126 | mp127 | mp128 | mp129 | mp13 | mp130 | mp131 | mp132 | mp133 | mp134 | mp135 | mp136 | mp137 | mp138 | mp139 | mp14 | mp140 | mp141 | mp142 | mp143 | mp144 | mp145 | mp146 | mp147 | mp148 | mp149 | mp15 | mp150 | mp151 | mp152 | mp153 | mp154 | mp155 | mp156 | mp157 | mp158 | mp159 | mp16 | mp160 | mp161 | mp162 | mp163 | mp164 | mp165 | mp166 | mp167 | mp168 | mp169 | mp17 | mp170 | mp171 | mp172 | mp173 | mp174 | mp175 | mp176 | mp177 | mp178 | mp179 | mp18 | mp180 | mp181 | mp182 | mp183 | mp184 | mp185 | mp186 | mp187 | mp188 | mp189 | mp19 | mp190 | mp191 | mp192 | mp193 | mp194 | mp195 | mp196 | mp197 | mp198 | mp199 | mp2 | mp20 | mp200 | mp201 | mp202 | mp203 | mp204 | mp205 | mp206 | mp207 | mp208 | mp209 | mp21 | mp210 | mp211 | mp212 | mp213 | mp214 | mp215 | mp216 | mp217 | mp218 | mp219 | mp22 | mp220 | mp221 | mp222 | mp223 | mp224 | mp225 | mp226 | mp227 | mp228 | mp229 | mp23 | mp230 | mp231 | mp232 | mp233 | mp234 | mp235 | mp236 | mp237 | mp238 | mp239 | mp24 | mp240 | mp241 | mp242 | mp243 | mp244 | mp245 | mp246 | mp247 | mp248 | mp249 | mp25 | mp250 | mp251 | mp252 | mp253 | mp254 | mp255 | mp26 | mp27 | mp28 | mp29 | mp3 | mp30 | mp31 | mp32 | mp33 | mp34 | mp35 | mp36 | mp37 | mp38 | mp39 | mp4 | mp40 | mp41 | mp42 | mp43 | mp44 | mp45 | mp46 | mp47 | mp48 | mp49 | mp5 | mp50 | mp51 | mp52 | mp53 | mp54 | mp55 | mp56 | mp57 | mp58 | mp59 | mp6 | mp60 | mp61 | mp62 | mp63 | mp64 | mp65 | mp66 | mp67 | mp68 | mp69 | mp7 | mp70 | mp71 | mp72 | mp73 | mp74 | mp75 | mp76 | mp77 | mp78 | mp79 | mp8 | mp80 | mp81 | mp82 | mp83 | mp84 | mp85 | mp86 | mp87 | mp88 | mp89 | mp9 | mp90 | mp91 | mp92 | mp93 | mp94 | mp95 | mp96 | mp97 | mp98 | mp99 | rootfs>
<size>: \+?\d+(\.\d+)?[KMGT]?
--digest <string>
pct restore <vmid> <ostemplate> [OPTIONS]
Create or restore a container.
<vmid>: <integer> (1 - N)
<ostemplate>: <string>
--arch <amd64 | arm64 | armhf | i386 | riscv32 | riscv64> (default = amd64)
--bwlimit <number> (0 - N) (default = restore limit from datacenter or storage config)
--cmode <console | shell | tty> (default = tty)
--console <boolean> (default = 1)
--cores <integer> (1 - 8192)
--cpulimit <number> (0 - 8192) (default = 0)
Note
If the computer has 2 CPUs, it has a total of 2 CPU time. Value 0 indicates no CPU limit.
--cpuunits <integer> (0 - 500000) (default = cgroup v1: 1024, cgroup v2: 100)
--debug <boolean> (default = 0)
--description <string>
--features [force_rw_sys=<1|0>] [,fuse=<1|0>] [,keyctl=<1|0>] [,mknod=<1|0>] [,mount=<fstype;fstype;...>] [,nesting=<1|0>]
--force <boolean>
--hookscript <string>
--hostname <string>
--ignore-unpack-errors <boolean>
--lock <backup | create | destroyed | disk | fstrim | migrate | mounted | rollback | snapshot | snapshot-delete>
--memory <integer> (16 - N) (default = 512)
--mp[n] [volume=]<volume> ,mp=<Path> [,acl=<1|0>] [,backup=<1|0>] [,mountoptions=<opt[;opt...]>] [,quota=<1|0>] [,replicate=<1|0>] [,ro=<1|0>] [,shared=<1|0>] [,size=<DiskSize>]
--nameserver <string>
--net[n] name=<string> [,bridge=<bridge>] [,firewall=<1|0>] [,gw=<GatewayIPv4>] [,gw6=<GatewayIPv6>] [,hwaddr=<XX:XX:XX:XX:XX:XX>] [,ip=<(IPv4/CIDR|dhcp|manual)>] [,ip6=<(IPv6/CIDR|auto|dhcp|manual)>] [,link_down=<1|0>] [,mtu=<integer>] [,rate=<mbps>] [,tag=<integer>] [,trunks=<vlanid[;vlanid...]>] [,type=<veth>]
--onboot <boolean> (default = 0)
--ostype <alpine | altlinux | archlinux | centos | debian | devuan | fedora | gentoo | opensuse | ubuntu | unmanaged>
--password <password>
--pool <string>
--protection <boolean> (default = 0)
--rootfs [volume=]<volume> [,acl=<1|0>] [,mountoptions=<opt[;opt...]>] [,quota=<1|0>] [,replicate=<1|0>] [,ro=<1|0>] [,shared=<1|0>] [,size=<DiskSize>]
--searchdomain <string>
--ssh-public-keys <filepath>
--start <boolean> (default = 0)
--startup `[[order=]\d+] [,up=\d+] [,down=\d+] `
--storage <string> (default = local)
--swap <integer> (0 - N) (default = 512)
--tags <string>
--template <boolean> (default = 0)
--timezone <string>
--tty <integer> (0 - 6) (default = 2)
--unique <boolean>
Note
Requires option(s): restore
--unprivileged <boolean> (default = 0)
--unused[n] [volume=]<volume>
pct resume <vmid>
Resume the container.
<vmid>: <integer> (1 - N)
pct rollback <vmid> <snapname> [OPTIONS]
Rollback LXC state to specified snapshot.
<vmid>: <integer> (1 - N)
<snapname>: <string>
--start <boolean> (default = 0)
pct set <vmid> [OPTIONS]
Set container options.
<vmid>: <integer> (1 - N)
--arch <amd64 | arm64 | armhf | i386 | riscv32 | riscv64> (default = amd64)
--cmode <console | shell | tty> (default = tty)
--console <boolean> (default = 1)
--cores <integer> (1 - 8192)
--cpulimit <number> (0 - 8192) (default = 0)
Note
If the computer has 2 CPUs, it has a total of 2 CPU time. Value 0 indicates no CPU limit.
--cpuunits <integer> (0 - 500000) (default = cgroup v1: 1024, cgroup v2: 100)
--debug <boolean> (default = 0)
--delete <string>
--description <string>
--digest <string>
--features [force_rw_sys=<1|0>] [,fuse=<1|0>] [,keyctl=<1|0>] [,mknod=<1|0>] [,mount=<fstype;fstype;...>] [,nesting=<1|0>]
--hookscript <string>
--hostname <string>
--lock <backup | create | destroyed | disk | fstrim | migrate | mounted | rollback | snapshot | snapshot-delete>
--memory <integer> (16 - N) (default = 512)
--mp[n] [volume=]<volume> ,mp=<Path> [,acl=<1|0>] [,backup=<1|0>] [,mountoptions=<opt[;opt...]>] [,quota=<1|0>] [,replicate=<1|0>] [,ro=<1|0>] [,shared=<1|0>] [,size=<DiskSize>]
--nameserver <string>
--net[n] name=<string> [,bridge=<bridge>] [,firewall=<1|0>] [,gw=<GatewayIPv4>] [,gw6=<GatewayIPv6>] [,hwaddr=<XX:XX:XX:XX:XX:XX>] [,ip=<(IPv4/CIDR|dhcp|manual)>] [,ip6=<(IPv6/CIDR|auto|dhcp|manual)>] [,link_down=<1|0>] [,mtu=<integer>] [,rate=<mbps>] [,tag=<integer>] [,trunks=<vlanid[;vlanid...]>] [,type=<veth>]
--onboot <boolean> (default = 0)
--ostype <alpine | altlinux | archlinux | centos | debian | devuan | fedora | gentoo | opensuse | ubuntu | unmanaged>
--protection <boolean> (default = 0)
--revert <string>
--rootfs [volume=]<volume> [,acl=<1|0>] [,mountoptions=<opt[;opt...]>] [,quota=<1|0>] [,replicate=<1|0>] [,ro=<1|0>] [,shared=<1|0>] [,size=<DiskSize>]
--searchdomain <string>
--startup `[[order=]\d+] [,up=\d+] [,down=\d+] `
--swap <integer> (0 - N) (default = 512)
--tags <string>
--template <boolean> (default = 0)
--timezone <string>
--tty <integer> (0 - 6) (default = 2)
--unprivileged <boolean> (default = 0)
--unused[n] [volume=]<volume>
pct shutdown <vmid> [OPTIONS]
Shutdown the container. This will trigger a clean shutdown of the container, see lxc-stop(1) for details.
<vmid>: <integer> (1 - N)
--forceStop <boolean> (default = 0)
--timeout <integer> (0 - N) (default = 60)
pct snapshot <vmid> <snapname> [OPTIONS]
Snapshot a container.
<vmid>: <integer> (1 - N)
<snapname>: <string>
--description <string>
pct start <vmid> [OPTIONS]
Start the container.
<vmid>: <integer> (1 - N)
--debug <boolean> (default = 0)
--skiplock <boolean>
pct status <vmid> [OPTIONS]
Show CT status.
<vmid>: <integer> (1 - N)
--verbose <boolean>
pct stop <vmid> [OPTIONS]
Stop the container. This will abruptly stop all processes running in the container.
<vmid>: <integer> (1 - N)
--skiplock <boolean>
pct suspend <vmid>
Suspend the container. This is experimental.
<vmid>: <integer> (1 - N)
pct template <vmid>
Create a Template.
<vmid>: <integer> (1 - N)
pct unlock <vmid>
Unlock the VM.
<vmid>: <integer> (1 - N)
pct unmount <vmid>
Unmount the container’s filesystem.
<vmid>: <integer> (1 - N)
DESCRIPTION
Containers are a lightweight alternative to fully virtualized machines (VMs). They use the kernel of the host system that they run on, instead of emulating a full operating system (OS). This means that containers can access resources on the host system directly.
The runtime costs for containers is low, usually negligible. However, there are some drawbacks that need be considered:
Proxmox VE uses Linux Containers (LXC)[1] as its underlying container technology. The “Proxmox Container Toolkit” (pct) simplifies the usage and management of LXC, by providing an interface that abstracts complex tasks.
Containers are tightly integrated with Proxmox VE. This means that they are aware of the cluster setup, and they can use the same network and storage resources as virtual machines. You can also use the Proxmox VE firewall, or manage containers using the HA framework.
Our primary goal is to offer an environment that provides the benefits of using a VM, but without the additional overhead. This means that Proxmox Containers can be categorized as “System Containers”, rather than “Application Containers”.
Note
If you want to run application containers, for example, Docker images, it is recommended that you run them inside a Proxmox QEMU VM. This will give you all the advantages of application containerization, while also providing the benefits that VMs offer, such as strong isolation from the host and the ability to live-migrate, which otherwise isn’t possible with containers.
TECHNOLOGY OVERVIEW
SUPPORTED DISTRIBUTIONS
List of officially supported distributions can be found below.
Templates for the following distributions are available through our repositories. You can use pveam (man pct(1)) tool or the Graphical User Interface to download them.
Alpine Linux
.sp Alpine Linux is a security-oriented, lightweight Linux distribution based on musl libc and busybox. -- https://alpinelinux.org
For currently supported releases see:
https://alpinelinux.org/releases/
Arch Linux
.sp Arch Linux, a lightweight and flexible Linux® distribution that tries to Keep It Simple. -- https://archlinux.org/
Arch Linux is using a rolling-release model, see its wiki for more details:
https://wiki.archlinux.org/title/Arch_Linux
CentOS, Almalinux, Rocky Linux
CentOS / CentOS Stream
For currently supported releases see:
https://wiki.centos.org/About/Product
Almalinux
For currently supported releases see:
https://en.wikipedia.org/wiki/AlmaLinux#Releases
Rocky Linux
For currently supported releases see:
https://en.wikipedia.org/wiki/Rocky_Linux#Releases
Debian
.sp Debian is a free operating system, developed and maintained by the Debian project. A free Linux distribution with thousands of applications to meet our users' needs. -- https://www.debian.org/intro/index#software
For currently supported releases see:
https://www.debian.org/releases/stable/releasenotes
Devuan
.sp Devuan GNU+Linux is a fork of Debian without systemd that allows users to reclaim control over their system by avoiding unnecessary entanglements and ensuring Init Freedom. -- https://www.devuan.org
For currently supported releases see:
https://www.devuan.org/os/releases
Fedora
.sp Fedora creates an innovative, free, and open source platform for hardware, clouds, and containers that enables software developers and community members to build tailored solutions for their users. -- https://getfedora.org
For currently supported releases see:
https://fedoraproject.org/wiki/Releases
Gentoo
.sp a highly flexible, source-based Linux distribution. -- https://www.gentoo.org
Gentoo is using a rolling-release model.
OpenSUSE
.sp The makers' choice for sysadmins, developers and desktop users. -- https://www.opensuse.org
For currently supported releases see:
https://get.opensuse.org/leap/
Ubuntu
.sp Ubuntu is the modern, open source operating system on Linux for the enterprise server, desktop, cloud, and IoT. -- https://ubuntu.com/
For currently supported releases see:
https://wiki.ubuntu.com/Releases
CONTAINER IMAGES
Container images, sometimes also referred to as “templates” or “appliances”, are tar archives which contain everything to run a container.
Proxmox VE itself provides a variety of basic templates for the most common Linux distributions (man pct(1)). They can be downloaded using the GUI or the pveam (short for Proxmox VE Appliance Manager) command line utility. Additionally, TurnKey Linux[2] container templates are also available to download.
The list of available templates is updated daily through the pve-daily-update timer. You can also trigger an update manually by executing:
# pveam update
To view the list of available images run:
# pveam available
You can restrict this large list by specifying the section you are interested in, for example basic system images:
List available system images.
# pveam available --section system system alpine-3.12-default_20200823_amd64.tar.xz system alpine-3.13-default_20210419_amd64.tar.xz system alpine-3.14-default_20210623_amd64.tar.xz system archlinux-base_20210420-1_amd64.tar.gz system centos-7-default_20190926_amd64.tar.xz system centos-8-default_20201210_amd64.tar.xz system debian-9.0-standard_9.7-1_amd64.tar.gz system debian-10-standard_10.7-1_amd64.tar.gz system devuan-3.0-standard_3.0_amd64.tar.gz system fedora-33-default_20201115_amd64.tar.xz system fedora-34-default_20210427_amd64.tar.xz system gentoo-current-default_20200310_amd64.tar.xz system opensuse-15.2-default_20200824_amd64.tar.xz system ubuntu-16.04-standard_16.04.5-1_amd64.tar.gz system ubuntu-18.04-standard_18.04.1-1_amd64.tar.gz system ubuntu-20.04-standard_20.04-1_amd64.tar.gz system ubuntu-20.10-standard_20.10-1_amd64.tar.gz system ubuntu-21.04-standard_21.04-1_amd64.tar.gz
Before you can use such a template, you need to download them into one of your storages. If you’re unsure to which one, you can simply use the local named storage for that purpose. For clustered installations, it is preferred to use a shared storage so that all nodes can access those images.
# pveam download local debian-10.0-standard_10.0-1_amd64.tar.gz
You are now ready to create containers using that image, and you can list all downloaded images on storage local with:
# pveam list local local:vztmpl/debian-10.0-standard_10.0-1_amd64.tar.gz 219.95MB
Tip
You can also use the Proxmox VE web interface GUI to download, list and delete container templates.
pct uses them to create a new container, for example:
# pct create 999 local:vztmpl/debian-10.0-standard_10.0-1_amd64.tar.gz
The above command shows you the full Proxmox VE volume identifiers. They include the storage name, and most other Proxmox VE commands can use them. For example you can delete that image later with:
# pveam remove local:vztmpl/debian-10.0-standard_10.0-1_amd64.tar.gz
CONTAINER SETTINGS
General Settings
General settings of a container include
Unprivileged Containers
Unprivileged containers use a new kernel feature called user namespaces. The root UID 0 inside the container is mapped to an unprivileged user outside the container. This means that most security issues (container escape, resource abuse, etc.) in these containers will affect a random unprivileged user, and would be a generic kernel security bug rather than an LXC issue. The LXC team thinks unprivileged containers are safe by design.
This is the default option when creating a new container.
Note
If the container uses systemd as an init system, please be aware the systemd version running inside the container should be equal to or greater than 220.
Privileged Containers
Security in containers is achieved by using mandatory access control AppArmor restrictions, seccomp filters and Linux kernel namespaces. The LXC team considers this kind of container as unsafe, and they will not consider new container escape exploits to be security issues worthy of a CVE and quick fix. That’s why privileged containers should only be used in trusted environments.
CPU
You can restrict the number of visible CPUs inside the container using the cores option. This is implemented using the Linux cpuset cgroup (control group). A special task inside pvestatd tries to distribute running containers among available CPUs periodically. To view the assigned CPUs run the following command:
# pct cpusets
---------------------
102: 6 7
105: 2 3 4 5
108: 0 1
---------------------
Containers use the host kernel directly. All tasks inside a container are handled by the host CPU scheduler. Proxmox VE uses the Linux CFS (Completely Fair Scheduler) scheduler by default, which has additional bandwidth control options.
| cpulimit: | You can use this option to further limit assigned CPU time. Please note that this is a floating point number, so it is perfectly valid to assign two cores to a container, but restrict overall CPU consumption to half a core. cores: 2 cpulimit: 0.5 |
| cpuunits: | This is a relative weight passed to the kernel scheduler. The larger the number is, the more CPU time this container gets. Number is relative to the weights of all the other running containers. The default is 100 (or 1024 if the host uses legacy cgroup v1). You can use this setting to prioritize some containers. |
Memory
Container memory is controlled using the cgroup memory controller.
| memory: | Limit overall memory usage. This corresponds to the memory.limit_in_bytes cgroup setting. |
| swap: | Allows the container to use additional swap memory from the host swap space. This corresponds to the memory.memsw.limit_in_bytes cgroup setting, which is set to the sum of both value (memory + swap). |
Mount Points
The root mount point is configured with the rootfs property. You can configure up to 256 additional mount points. The corresponding options are called mp0 to mp255. They can contain the following settings:
rootfs: [volume=]<volume> [,acl=<1|0>] [,mountoptions=<opt[;opt...]>] [,quota=<1|0>] [,replicate=<1|0>] [,ro=<1|0>] [,shared=<1|0>] [,size=<DiskSize>]
mp[n]: [volume=]<volume> ,mp=<Path> [,acl=<1|0>] [,backup=<1|0>] [,mountoptions=<opt[;opt...]>] [,quota=<1|0>] [,replicate=<1|0>] [,ro=<1|0>] [,shared=<1|0>] [,size=<DiskSize>]
acl=<boolean>
backup=<boolean>
mountoptions=<opt[;opt...]>
mp=<Path>
Note
Must not contain any symlinks for security reasons.
quota=<boolean>
replicate=<boolean> (default = 1)
ro=<boolean>
shared=<boolean> (default = 0)
Warning
This option does not share the mount point automatically, it assumes it is shared already!
size=<DiskSize>
volume=<volume>
Currently there are three types of mount points: storage backed mount points, bind mounts, and device mounts.
Typical container rootfs configuration.
rootfs: thin1:base-100-disk-1,size=8G
Storage Backed Mount Points
Storage backed mount points are managed by the Proxmox VE storage subsystem and come in three different flavors:
Note
The special option syntax STORAGE_ID:SIZE_IN_GB for storage backed mount point volumes will automatically allocate a volume of the specified size on the specified storage. For example, calling
pct set 100 -mp0 thin1:10,mp=/path/in/container
will allocate a 10GB volume on the storage thin1 and replace the volume ID place holder 10 with the allocated volume ID, and setup the moutpoint in the container at /path/in/container
Bind Mount Points
Bind mounts allow you to access arbitrary directories from your Proxmox VE host inside a container. Some potential use cases are:
Bind mounts are considered to not be managed by the storage subsystem, so you cannot make snapshots or deal with quotas from inside the container. With unprivileged containers you might run into permission problems caused by the user mapping and cannot use ACLs.
Note
The contents of bind mount points are not backed up when using vzdump.
Warning
For security reasons, bind mounts should only be established using source directories especially reserved for this purpose, e.g., a directory hierarchy under /mnt/bindmounts. Never bind mount system directories like /, /var or /etc into a container - this poses a great security risk.
Note
The bind mount source path must not contain any symlinks.
For example, to make the directory /mnt/bindmounts/shared accessible in the container with ID 100 under the path /shared, add a configuration line such as:
mp0: /mnt/bindmounts/shared,mp=/shared
into /etc/pve/lxc/100.conf.
Or alternatively use the pct tool:
pct set 100 -mp0 /mnt/bindmounts/shared,mp=/shared
to achieve the same result.
Device Mount Points
Device mount points allow to mount block devices of the host directly into the container. Similar to bind mounts, device mounts are not managed by Proxmox VE’s storage subsystem, but the quota and acl options will be honored.
Note
Device mount points should only be used under special circumstances. In most cases a storage backed mount point offers the same performance and a lot more features.
Note
The contents of device mount points are not backed up when using vzdump.
Network
You can configure up to 10 network interfaces for a single container. The corresponding options are called net0 to net9, and they can contain the following setting:
net[n]: name=<string> [,bridge=<bridge>] [,firewall=<1|0>] [,gw=<GatewayIPv4>] [,gw6=<GatewayIPv6>] [,hwaddr=<XX:XX:XX:XX:XX:XX>] [,ip=<(IPv4/CIDR|dhcp|manual)>] [,ip6=<(IPv6/CIDR|auto|dhcp|manual)>] [,link_down=<1|0>] [,mtu=<integer>] [,rate=<mbps>] [,tag=<integer>] [,trunks=<vlanid[;vlanid...]>] [,type=<veth>]
bridge=<bridge>
firewall=<boolean>
gw=<GatewayIPv4>
gw6=<GatewayIPv6>
hwaddr=<XX:XX:XX:XX:XX:XX>
ip=<(IPv4/CIDR|dhcp|manual)>
ip6=<(IPv6/CIDR|auto|dhcp|manual)>
link_down=<boolean>
mtu=<integer> (64 - 65535)
name=<string>
rate=<mbps>
tag=<integer> (1 - 4094)
trunks=<vlanid[;vlanid...]>
type=<veth>
Automatic Start and Shutdown of Containers
To automatically start a container when the host system boots, select the option Start at boot in the Options panel of the container in the web interface or run the following command:
# pct set CTID -onboot 1
Start and Shutdown Order. If you want to fine tune the boot order of your containers, you can use the following parameters:
Please note that containers without a Start/Shutdown order parameter will always start after those where the parameter is set, and this parameter only makes sense between the machines running locally on a host, and not cluster-wide.
If you require a delay between the host boot and the booting of the first container, see the section on Proxmox VE Node Management.
Hookscripts
You can add a hook script to CTs with the config property hookscript.
# pct set 100 -hookscript local:snippets/hookscript.pl
It will be called during various phases of the guests lifetime. For an example and documentation see the example script under /usr/share/pve-docs/examples/guest-example-hookscript.pl.
SECURITY CONSIDERATIONS
Containers use the kernel of the host system. This exposes an attack surface for malicious users. In general, full virtual machines provide better isolation. This should be considered if containers are provided to unknown or untrusted people.
To reduce the attack surface, LXC uses many security features like AppArmor, CGroups and kernel namespaces.
AppArmor
AppArmor profiles are used to restrict access to possibly dangerous actions. Some system calls, i.e. mount, are prohibited from execution.
To trace AppArmor activity, use:
# dmesg | grep apparmor
Although it is not recommended, AppArmor can be disabled for a container. This brings security risks with it. Some syscalls can lead to privilege escalation when executed within a container if the system is misconfigured or if a LXC or Linux Kernel vulnerability exists.
To disable AppArmor for a container, add the following line to the container configuration file located at /etc/pve/lxc/CTID.conf:
lxc.apparmor.profile = unconfined
Warning
Please note that this is not recommended for production use.
Control Groups (cgroup)
cgroup is a kernel mechanism used to hierarchically organize processes and distribute system resources.
The main resources controlled via cgroups are CPU time, memory and swap limits, and access to device nodes. cgroups are also used to "freeze" a container before taking snapshots.
There are 2 versions of cgroups currently available, legacy[3] and cgroupv2[4].
Since Proxmox VE 7.0, the default is a pure cgroupv2 environment. Previously a "hybrid" setup was used, where resource control was mainly done in cgroupv1 with an additional cgroupv2 controller which could take over some subsystems via the cgroup_no_v1 kernel command line parameter. (See the kernel parameter documentation[5] for details.)
CGroup Version Compatibility
The main difference between pure cgroupv2 and the old hybrid environments regarding Proxmox VE is that with cgroupv2 memory and swap are now controlled independently. The memory and swap settings for containers can map directly to these values, whereas previously only the memory limit and the limit of the sum of memory and swap could be limited.
Another important difference is that the devices controller is configured in a completely different way. Because of this, file system quotas are currently not supported in a pure cgroupv2 environment.
cgroupv2 support by the container’s OS is needed to run in a pure cgroupv2 environment. Containers running systemd version 231 or newer support cgroupv2 [6], as do containers not using systemd as init system [7].
Note
CentOS 7 and Ubuntu 16.10 are two prominent Linux distributions releases, which have a systemd version that is too old to run in a cgroupv2 environment, you can either
Changing CGroup Version
Tip
If file system quotas are not required and all containers support cgroupv2, it is recommended to stick to the new default.
To switch back to the previous version the following kernel command line parameter can be used:
systemd.unified_cgroup_hierarchy=0
GUEST OPERATING SYSTEM CONFIGURATION
Proxmox VE tries to detect the Linux distribution in the container, and modifies some files. Here is a short list of things done at container startup:
set /etc/hostname
modify /etc/hosts
network setup
configure DNS
adapt the init system
set the root password
rewrite ssh_host_keys
randomize crontab
Changes made by Proxmox VE are enclosed by comment markers:
# --- BEGIN PVE --- <data> # --- END PVE ---
Those markers will be inserted at a reasonable location in the file. If such a section already exists, it will be updated in place and will not be moved.
Modification of a file can be prevented by adding a .pve-ignore. file for it. For instance, if the file /etc/.pve-ignore.hosts exists then the /etc/hosts file will not be touched. This can be a simple empty file created via:
# touch /etc/.pve-ignore.hosts
Most modifications are OS dependent, so they differ between different distributions and versions. You can completely disable modifications by manually setting the ostype to unmanaged.
OS type detection is done by testing for certain files inside the container. Proxmox VE first checks the /etc/os-release file [8]. If that file is not present, or it does not contain a clearly recognizable distribution identifier the following distribution specific release files are checked.
Ubuntu
Debian
Fedora
RedHat or CentOS
ArchLinux
Alpine
Gentoo
Note
Container start fails if the configured ostype differs from the auto detected type.
CONTAINER STORAGE
The Proxmox VE LXC container storage model is more flexible than traditional container storage models. A container can have multiple mount points. This makes it possible to use the best suited storage for each application.
For example the root file system of the container can be on slow and cheap storage while the database can be on fast and distributed storage via a second mount point. See section * Mount Points* (man pct(1)) for further details.
Any storage type supported by the Proxmox VE storage library can be used. This means that containers can be stored on local (for example lvm, zfs or directory), shared external (like iSCSI, NFS) or even distributed storage systems like Ceph. Advanced storage features like snapshots or clones can be used if the underlying storage supports them. The vzdump backup tool can use snapshots to provide consistent container backups.
Furthermore, local devices or local directories can be mounted directly using bind mounts. This gives access to local resources inside a container with practically zero overhead. Bind mounts can be used as an easy way to share data between containers.
FUSE Mounts
Warning
Because of existing issues in the Linux kernel’s freezer subsystem the usage of FUSE mounts inside a container is strongly advised against, as containers need to be frozen for suspend or snapshot mode backups.
If FUSE mounts cannot be replaced by other mounting mechanisms or storage technologies, it is possible to establish the FUSE mount on the Proxmox host and use a bind mount point to make it accessible inside the container.
Using Quotas Inside Containers
Quotas allow to set limits inside a container for the amount of disk space that each user can use.
Note
This currently requires the use of legacy cgroups.
Note
This only works on ext4 image based storage types and currently only works with privileged containers.
Activating the quota option causes the following mount options to be used for a mount point: usrjquota=aquota.user,grpjquota=aquota.group,jqfmt=vfsv0
This allows quotas to be used like on any other system. You can initialize the /aquota.user and /aquota.group files by running:
# quotacheck -cmug / # quotaon /
Then edit the quotas using the edquota command. Refer to the documentation of the distribution running inside the container for details.
Note
You need to run the above commands for every mount point by passing the mount point’s path instead of just /.
Using ACLs Inside Containers
The standard Posix Access Control Lists are also available inside containers. ACLs allow you to set more detailed file ownership than the traditional user/group/others model.
Backup of Container mount points
To include a mount point in backups, enable the backup option for it in the container configuration. For an existing mount point mp0
mp0: guests:subvol-100-disk-1,mp=/root/files,size=8G
add backup=1 to enable it.
mp0: guests:subvol-100-disk-1,mp=/root/files,size=8G,backup=1
Note
When creating a new mount point in the GUI, this option is enabled by default.
To disable backups for a mount point, add backup=0 in the way described above, or uncheck the Backup checkbox on the GUI.
Replication of Containers mount points
By default, additional mount points are replicated when the Root Disk is replicated. If you want the Proxmox VE storage replication mechanism to skip a mount point, you can set the Skip replication option for that mount point. As of Proxmox VE 5.0, replication requires a storage of type zfspool. Adding a mount point to a different type of storage when the container has replication configured requires to have Skip replication enabled for that mount point.
BACKUP AND RESTORE
Container Backup
It is possible to use the vzdump tool for container backup. Please refer to the vzdump manual page for details.
Restoring Container Backups
Restoring container backups made with vzdump is possible using the pct restore command. By default, pct restore will attempt to restore as much of the backed up container configuration as possible. It is possible to override the backed up configuration by manually setting container options on the command line (see the pct manual page for details).
Note
pvesm extractconfig can be used to view the backed up configuration contained in a vzdump archive.
There are two basic restore modes, only differing by their handling of mount points:
“Simple” Restore Mode
If neither the rootfs parameter nor any of the optional mpX parameters are explicitly set, the mount point configuration from the backed up configuration file is restored using the following steps:
Note
Since bind and device mount points are never backed up, no files are restored in the last step, but only the configuration options. The assumption is that such mount points are either backed up with another mechanism (e.g., NFS space that is bind mounted into many containers), or not intended to be backed up at all.
This simple mode is also used by the container restore operations in the web interface.
“Advanced” Restore Mode
By setting the rootfs parameter (and optionally, any combination of mpX parameters), the pct restore command is automatically switched into an advanced mode. This advanced mode completely ignores the rootfs and mpX configuration options contained in the backup archive, and instead only uses the options explicitly provided as parameters.
This mode allows flexible configuration of mount point settings at restore time, for example:
MANAGING CONTAINERS WITH PCT
The “Proxmox Container Toolkit” (pct) is the command line tool to manage Proxmox VE containers. It enables you to create or destroy containers, as well as control the container execution (start, stop, reboot, migrate, etc.). It can be used to set parameters in the config file of a container, for example the network configuration or memory limits.
CLI Usage Examples
Create a container based on a Debian template (provided you have already downloaded the template via the web interface)
# pct create 100 /var/lib/vz/template/cache/debian-10.0-standard_10.0-1_amd64.tar.gz
Start container 100
# pct start 100
Start a login session via getty
# pct console 100
Enter the LXC namespace and run a shell as root user
# pct enter 100
Display the configuration
# pct config 100
Add a network interface called eth0, bridged to the host bridge vmbr0, set the address and gateway, while it’s running
# pct set 100 -net0 name=eth0,bridge=vmbr0,ip=192.168.15.147/24,gw=192.168.15.1
Reduce the memory of the container to 512MB
# pct set 100 -memory 512
Destroying a container always removes it from Access Control Lists and it always removes the firewall configuration of the container. You have to activate --purge, if you want to additionally remove the container from replication jobs, backup jobs and HA resource configurations.
# pct destroy 100 --purge
Move a mount point volume to a different storage.
# pct move-volume 100 mp0 other-storage
Reassign a volume to a different CT. This will remove the volume mp0 from the source CT and attaches it as mp1 to the target CT. In the background the volume is being renamed so that the name matches the new owner.
# pct move-volume 100 mp0 --target-vmid 200 --target-volume mp1
Obtaining Debugging Logs
In case pct start is unable to start a specific container, it might be helpful to collect debugging output by passing the --debug flag (replace CTID with the container’s CTID):
# pct start CTID --debug
Alternatively, you can use the following lxc-start command, which will save the debug log to the file specified by the -o output option:
# lxc-start -n CTID -F -l DEBUG -o /tmp/lxc-CTID.log
This command will attempt to start the container in foreground mode, to stop the container run pct shutdown CTID or pct stop CTID in a second terminal.
The collected debug log is written to /tmp/lxc-CTID.log.
Note
If you have changed the container’s configuration since the last start attempt with pct start, you need to run pct start at least once to also update the configuration used by lxc-start.
MIGRATION
If you have a cluster, you can migrate your Containers with
# pct migrate <ctid> <target>
This works as long as your Container is offline. If it has local volumes or mount points defined, the migration will copy the content over the network to the target host if the same storage is defined there.
Running containers cannot live-migrated due to technical limitations. You can do a restart migration, which shuts down, moves and then starts a container again on the target node. As containers are very lightweight, this results normally only in a downtime of some hundreds of milliseconds.
A restart migration can be done through the web interface or by using the --restart flag with the pct migrate command.
A restart migration will shut down the Container and kill it after the specified timeout (the default is 180 seconds). Then it will migrate the Container like an offline migration and when finished, it starts the Container on the target node.
CONFIGURATION
The /etc/pve/lxc/<CTID>.conf file stores container configuration, where <CTID> is the numeric ID of the given container. Like all other files stored inside /etc/pve/, they get automatically replicated to all other cluster nodes.
Note
CTIDs < 100 are reserved for internal purposes, and CTIDs need to be unique cluster wide.
Example Container Configuration.
ostype: debian arch: amd64 hostname: www memory: 512 swap: 512 net0: bridge=vmbr0,hwaddr=66:64:66:64:64:36,ip=dhcp,name=eth0,type=veth rootfs: local:107/vm-107-disk-1.raw,size=7G
The configuration files are simple text files. You can edit them using a normal text editor, for example, vi or nano. This is sometimes useful to do small corrections, but keep in mind that you need to restart the container to apply such changes.
For that reason, it is usually better to use the pct command to generate and modify those files, or do the whole thing using the GUI. Our toolkit is smart enough to instantaneously apply most changes to running containers. This feature is called “hot plug”, and there is no need to restart the container in that case.
In cases where a change cannot be hot-plugged, it will be registered as a pending change (shown in red color in the GUI). They will only be applied after rebooting the container.
File Format
The container configuration file uses a simple colon separated key/value format. Each line has the following format:
# this is a comment OPTION: value
Blank lines in those files are ignored, and lines starting with a # character are treated as comments and are also ignored.
It is possible to add low-level, LXC style configuration directly, for example:
lxc.init_cmd: /sbin/my_own_init
or
lxc.init_cmd = /sbin/my_own_init
The settings are passed directly to the LXC low-level tools.
Snapshots
When you create a snapshot, pct stores the configuration at snapshot time into a separate snapshot section within the same configuration file. For example, after creating a snapshot called “testsnapshot”, your configuration file will look like this:
Container configuration with snapshot.
memory: 512 swap: 512 parent: testsnaphot ... [testsnaphot] memory: 512 swap: 512 snaptime: 1457170803 ...
There are a few snapshot related properties like parent and snaptime. The parent property is used to store the parent/child relationship between snapshots. snaptime is the snapshot creation time stamp (Unix epoch).
Options
arch: <amd64 | arm64 | armhf | i386 | riscv32 | riscv64> (default = amd64)
cmode: <console | shell | tty> (default = tty)
console: <boolean> (default = 1)
cores: <integer> (1 - 8192)
cpulimit: <number> (0 - 8192) (default = 0)
Note
If the computer has 2 CPUs, it has a total of 2 CPU time. Value 0 indicates no CPU limit.
cpuunits: <integer> (0 - 500000) (default = cgroup v1: 1024, cgroup v2: 100)
debug: <boolean> (default = 0)
description: <string>
features: [force_rw_sys=<1|0>] [,fuse=<1|0>] [,keyctl=<1|0>] [,mknod=<1|0>] [,mount=<fstype;fstype;...>] [,nesting=<1|0>]
force_rw_sys=<boolean> (default = 0)
fuse=<boolean> (default = 0)
keyctl=<boolean> (default = 0)
mknod=<boolean> (default = 0)
mount=<fstype;fstype;...>
nesting=<boolean> (default = 0)
hookscript: <string>
hostname: <string>
lock: <backup | create | destroyed | disk | fstrim | migrate | mounted | rollback | snapshot | snapshot-delete>
memory: <integer> (16 - N) (default = 512)
mp[n]: [volume=]<volume> ,mp=<Path> [,acl=<1|0>] [,backup=<1|0>] [,mountoptions=<opt[;opt...]>] [,quota=<1|0>] [,replicate=<1|0>] [,ro=<1|0>] [,shared=<1|0>] [,size=<DiskSize>]
acl=<boolean>
backup=<boolean>
mountoptions=<opt[;opt...]>
mp=<Path>
Note
Must not contain any symlinks for security reasons.
quota=<boolean>
replicate=<boolean> (default = 1)
ro=<boolean>
shared=<boolean> (default = 0)
Warning
This option does not share the mount point automatically, it assumes it is shared already!
size=<DiskSize>
volume=<volume>
nameserver: <string>
net[n]: name=<string> [,bridge=<bridge>] [,firewall=<1|0>] [,gw=<GatewayIPv4>] [,gw6=<GatewayIPv6>] [,hwaddr=<XX:XX:XX:XX:XX:XX>] [,ip=<(IPv4/CIDR|dhcp|manual)>] [,ip6=<(IPv6/CIDR|auto|dhcp|manual)>] [,link_down=<1|0>] [,mtu=<integer>] [,rate=<mbps>] [,tag=<integer>] [,trunks=<vlanid[;vlanid...]>] [,type=<veth>]
bridge=<bridge>
firewall=<boolean>
gw=<GatewayIPv4>
gw6=<GatewayIPv6>
hwaddr=<XX:XX:XX:XX:XX:XX>
ip=<(IPv4/CIDR|dhcp|manual)>
ip6=<(IPv6/CIDR|auto|dhcp|manual)>
link_down=<boolean>
mtu=<integer> (64 - 65535)
name=<string>
rate=<mbps>
tag=<integer> (1 - 4094)
trunks=<vlanid[;vlanid...]>
type=<veth>
onboot: <boolean> (default = 0)
ostype: <alpine | altlinux | archlinux | centos | debian | devuan | fedora | gentoo | opensuse | ubuntu | unmanaged>
protection: <boolean> (default = 0)
rootfs: [volume=]<volume> [,acl=<1|0>] [,mountoptions=<opt[;opt...]>] [,quota=<1|0>] [,replicate=<1|0>] [,ro=<1|0>] [,shared=<1|0>] [,size=<DiskSize>]
acl=<boolean>
mountoptions=<opt[;opt...]>
quota=<boolean>
replicate=<boolean> (default = 1)
ro=<boolean>
shared=<boolean> (default = 0)
Warning
This option does not share the mount point automatically, it assumes it is shared already!
size=<DiskSize>
volume=<volume>
searchdomain: <string>
startup: `[[order=]\d+] [,up=\d+] [,down=\d+] `
swap: <integer> (0 - N) (default = 512)
tags: <string>
template: <boolean> (default = 0)
timezone: <string>
tty: <integer> (0 - 6) (default = 2)
unprivileged: <boolean> (default = 0)
unused[n]: [volume=]<volume>
volume=<volume>
LOCKS
Container migrations, snapshots and backups (vzdump) set a lock to prevent incompatible concurrent actions on the affected container. Sometimes you need to remove such a lock manually (e.g., after a power failure).
# pct unlock <CTID>
Caution
Only do this if you are sure the action which set the lock is no longer running.
FILES
/etc/pve/lxc/<CTID>.conf
COPYRIGHT AND DISCLAIMER
Copyright © 2007-2022 Proxmox Server Solutions GmbH
This program is free software: you can redistribute it and/or modify it under the terms of the GNU Affero General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Affero General Public License for more details.
You should have received a copy of the GNU Affero General Public License along with this program. If not, see https://www.gnu.org/licenses/
AUTHOR
Proxmox Server Solutions Gmbh
www.proxmox.com
NOTES
- 1.
- Linux Containers (LXC)
- 2.
- TurnKey Linux
- 3.
- legacy
- 4.
- cgroupv2
- 5.
- kernel parameter documentation
- 6.
- this includes all newest major versions of container templates shipped by Proxmox VE
- 7.
- for example Alpine Linux
- 8.
- /etc/os-release replaces the multitude of per-distribution release files https://manpages.debian.org/stable/systemd/os-release.5.en.html
| Mon Feb 5 17:59:36 UTC 2024 | 7.4.2 |
