1# SPDX-License-Identifier: GPL-2.0-only 2menu "Xen driver support" 3 depends on XEN 4 5config XEN_BALLOON 6 bool "Xen memory balloon driver" 7 default y 8 help 9 The balloon driver allows the Xen domain to request more memory from 10 the system to expand the domain's memory allocation, or alternatively 11 return unneeded memory to the system. 12 13config XEN_BALLOON_MEMORY_HOTPLUG 14 bool "Memory hotplug support for Xen balloon driver" 15 depends on XEN_BALLOON && MEMORY_HOTPLUG 16 default y 17 help 18 Memory hotplug support for Xen balloon driver allows expanding memory 19 available for the system above limit declared at system startup. 20 It is very useful on critical systems which require long 21 run without rebooting. 22 23 It's also very useful for non PV domains to obtain unpopulated physical 24 memory ranges to use in order to map foreign memory or grants. 25 26 Memory could be hotplugged in following steps: 27 28 1) target domain: ensure that memory auto online policy is in 29 effect by checking /sys/devices/system/memory/auto_online_blocks 30 file (should be 'online'). 31 32 2) control domain: xl mem-max <target-domain> <maxmem> 33 where <maxmem> is >= requested memory size, 34 35 3) control domain: xl mem-set <target-domain> <memory> 36 where <memory> is requested memory size; alternatively memory 37 could be added by writing proper value to 38 /sys/devices/system/xen_memory/xen_memory0/target or 39 /sys/devices/system/xen_memory/xen_memory0/target_kb on the 40 target domain. 41 42 Alternatively, if memory auto onlining was not requested at step 1 43 the newly added memory can be manually onlined in the target domain 44 by doing the following: 45 46 for i in /sys/devices/system/memory/memory*/state; do \ 47 [ "`cat "$i"`" = offline ] && echo online > "$i"; done 48 49 or by adding the following line to udev rules: 50 51 SUBSYSTEM=="memory", ACTION=="add", RUN+="/bin/sh -c '[ -f /sys$devpath/state ] && echo online > /sys$devpath/state'" 52 53config XEN_BALLOON_MEMORY_HOTPLUG_LIMIT 54 int "Hotplugged memory limit (in GiB) for a PV guest" 55 default 512 56 depends on XEN_HAVE_PVMMU 57 depends on XEN_BALLOON_MEMORY_HOTPLUG 58 help 59 Maxmium amount of memory (in GiB) that a PV guest can be 60 expanded to when using memory hotplug. 61 62 A PV guest can have more memory than this limit if is 63 started with a larger maximum. 64 65 This value is used to allocate enough space in internal 66 tables needed for physical memory administration. 67 68config XEN_SCRUB_PAGES_DEFAULT 69 bool "Scrub pages before returning them to system by default" 70 depends on XEN_BALLOON 71 default y 72 help 73 Scrub pages before returning them to the system for reuse by 74 other domains. This makes sure that any confidential data 75 is not accidentally visible to other domains. It is more 76 secure, but slightly less efficient. This can be controlled with 77 xen_scrub_pages=0 parameter and 78 /sys/devices/system/xen_memory/xen_memory0/scrub_pages. 79 This option only sets the default value. 80 81 If in doubt, say yes. 82 83config XEN_DEV_EVTCHN 84 tristate "Xen /dev/xen/evtchn device" 85 default y 86 help 87 The evtchn driver allows a userspace process to trigger event 88 channels and to receive notification of an event channel 89 firing. 90 If in doubt, say yes. 91 92config XEN_BACKEND 93 bool "Backend driver support" 94 default XEN_DOM0 95 help 96 Support for backend device drivers that provide I/O services 97 to other virtual machines. 98 99config XENFS 100 tristate "Xen filesystem" 101 select XEN_PRIVCMD 102 default y 103 help 104 The xen filesystem provides a way for domains to share 105 information with each other and with the hypervisor. 106 For example, by reading and writing the "xenbus" file, guests 107 may pass arbitrary information to the initial domain. 108 If in doubt, say yes. 109 110config XEN_COMPAT_XENFS 111 bool "Create compatibility mount point /proc/xen" 112 depends on XENFS 113 default y 114 help 115 The old xenstore userspace tools expect to find "xenbus" 116 under /proc/xen, but "xenbus" is now found at the root of the 117 xenfs filesystem. Selecting this causes the kernel to create 118 the compatibility mount point /proc/xen if it is running on 119 a xen platform. 120 If in doubt, say yes. 121 122config XEN_SYS_HYPERVISOR 123 bool "Create xen entries under /sys/hypervisor" 124 depends on SYSFS 125 select SYS_HYPERVISOR 126 default y 127 help 128 Create entries under /sys/hypervisor describing the Xen 129 hypervisor environment. When running native or in another 130 virtual environment, /sys/hypervisor will still be present, 131 but will have no xen contents. 132 133config XEN_XENBUS_FRONTEND 134 tristate 135 136config XEN_GNTDEV 137 tristate "userspace grant access device driver" 138 depends on XEN 139 default m 140 select MMU_NOTIFIER 141 help 142 Allows userspace processes to use grants. 143 144config XEN_GNTDEV_DMABUF 145 bool "Add support for dma-buf grant access device driver extension" 146 depends on XEN_GNTDEV && XEN_GRANT_DMA_ALLOC 147 select DMA_SHARED_BUFFER 148 help 149 Allows userspace processes and kernel modules to use Xen backed 150 dma-buf implementation. With this extension grant references to 151 the pages of an imported dma-buf can be exported for other domain 152 use and grant references coming from a foreign domain can be 153 converted into a local dma-buf for local export. 154 155config XEN_GRANT_DEV_ALLOC 156 tristate "User-space grant reference allocator driver" 157 depends on XEN 158 default m 159 help 160 Allows userspace processes to create pages with access granted 161 to other domains. This can be used to implement frontend drivers 162 or as part of an inter-domain shared memory channel. 163 164config XEN_GRANT_DMA_ALLOC 165 bool "Allow allocating DMA capable buffers with grant reference module" 166 depends on XEN && HAS_DMA 167 help 168 Extends grant table module API to allow allocating DMA capable 169 buffers and mapping foreign grant references on top of it. 170 The resulting buffer is similar to one allocated by the balloon 171 driver in that proper memory reservation is made by 172 ({increase|decrease}_reservation and VA mappings are updated if 173 needed). 174 This is useful for sharing foreign buffers with HW drivers which 175 cannot work with scattered buffers provided by the balloon driver, 176 but require DMAable memory instead. 177 178config SWIOTLB_XEN 179 def_bool y 180 select SWIOTLB 181 182config XEN_PCIDEV_BACKEND 183 tristate "Xen PCI-device backend driver" 184 depends on PCI && X86 && XEN 185 depends on XEN_BACKEND 186 default m 187 help 188 The PCI device backend driver allows the kernel to export arbitrary 189 PCI devices to other guests. If you select this to be a module, you 190 will need to make sure no other driver has bound to the device(s) 191 you want to make visible to other guests. 192 193 The parameter "passthrough" allows you specify how you want the PCI 194 devices to appear in the guest. You can choose the default (0) where 195 PCI topology starts at 00.00.0, or (1) for passthrough if you want 196 the PCI devices topology appear the same as in the host. 197 198 The "hide" parameter (only applicable if backend driver is compiled 199 into the kernel) allows you to bind the PCI devices to this module 200 from the default device drivers. The argument is the list of PCI BDFs: 201 xen-pciback.hide=(03:00.0)(04:00.0) 202 203 If in doubt, say m. 204 205config XEN_PVCALLS_FRONTEND 206 tristate "XEN PV Calls frontend driver" 207 depends on INET && XEN 208 select XEN_XENBUS_FRONTEND 209 help 210 Experimental frontend for the Xen PV Calls protocol 211 (https://xenbits.xen.org/docs/unstable/misc/pvcalls.html). It 212 sends a small set of POSIX calls to the backend, which 213 implements them. 214 215config XEN_PVCALLS_BACKEND 216 bool "XEN PV Calls backend driver" 217 depends on INET && XEN && XEN_BACKEND 218 help 219 Experimental backend for the Xen PV Calls protocol 220 (https://xenbits.xen.org/docs/unstable/misc/pvcalls.html). It 221 allows PV Calls frontends to send POSIX calls to the backend, 222 which implements them. 223 224 If in doubt, say n. 225 226config XEN_SCSI_BACKEND 227 tristate "XEN SCSI backend driver" 228 depends on XEN && XEN_BACKEND && TARGET_CORE 229 help 230 The SCSI backend driver allows the kernel to export its SCSI Devices 231 to other guests via a high-performance shared-memory interface. 232 Only needed for systems running as XEN driver domains (e.g. Dom0) and 233 if guests need generic access to SCSI devices. 234 235config XEN_PRIVCMD 236 tristate 237 depends on XEN 238 default m 239 240config XEN_STUB 241 bool "Xen stub drivers" 242 depends on XEN && X86_64 && BROKEN 243 help 244 Allow kernel to install stub drivers, to reserve space for Xen drivers, 245 i.e. memory hotplug and cpu hotplug, and to block native drivers loaded, 246 so that real Xen drivers can be modular. 247 248 To enable Xen features like cpu and memory hotplug, select Y here. 249 250config XEN_ACPI_HOTPLUG_MEMORY 251 tristate "Xen ACPI memory hotplug" 252 depends on XEN_DOM0 && XEN_STUB && ACPI 253 help 254 This is Xen ACPI memory hotplug. 255 256 Currently Xen only support ACPI memory hot-add. If you want 257 to hot-add memory at runtime (the hot-added memory cannot be 258 removed until machine stop), select Y/M here, otherwise select N. 259 260config XEN_ACPI_HOTPLUG_CPU 261 tristate "Xen ACPI cpu hotplug" 262 depends on XEN_DOM0 && XEN_STUB && ACPI 263 select ACPI_CONTAINER 264 help 265 Xen ACPI cpu enumerating and hotplugging 266 267 For hotplugging, currently Xen only support ACPI cpu hotadd. 268 If you want to hotadd cpu at runtime (the hotadded cpu cannot 269 be removed until machine stop), select Y/M here. 270 271config XEN_ACPI_PROCESSOR 272 tristate "Xen ACPI processor" 273 depends on XEN && XEN_DOM0 && X86 && ACPI_PROCESSOR && CPU_FREQ 274 default m 275 help 276 This ACPI processor uploads Power Management information to the Xen 277 hypervisor. 278 279 To do that the driver parses the Power Management data and uploads 280 said information to the Xen hypervisor. Then the Xen hypervisor can 281 select the proper Cx and Pxx states. It also registers itself as the 282 SMM so that other drivers (such as ACPI cpufreq scaling driver) will 283 not load. 284 285 To compile this driver as a module, choose M here: the module will be 286 called xen_acpi_processor If you do not know what to choose, select 287 M here. If the CPUFREQ drivers are built in, select Y here. 288 289config XEN_MCE_LOG 290 bool "Xen platform mcelog" 291 depends on XEN_DOM0 && X86_MCE 292 help 293 Allow kernel fetching MCE error from Xen platform and 294 converting it into Linux mcelog format for mcelog tools 295 296config XEN_HAVE_PVMMU 297 bool 298 299config XEN_EFI 300 def_bool y 301 depends on (ARM || ARM64 || X86_64) && EFI 302 303config XEN_AUTO_XLATE 304 def_bool y 305 depends on ARM || ARM64 || XEN_PVHVM 306 help 307 Support for auto-translated physmap guests. 308 309config XEN_ACPI 310 def_bool y 311 depends on X86 && ACPI 312 313config XEN_SYMS 314 bool "Xen symbols" 315 depends on X86 && XEN_DOM0 && XENFS 316 default y if KALLSYMS 317 help 318 Exports hypervisor symbols (along with their types and addresses) via 319 /proc/xen/xensyms file, similar to /proc/kallsyms 320 321config XEN_HAVE_VPMU 322 bool 323 324config XEN_FRONT_PGDIR_SHBUF 325 tristate 326 327endmenu 328