/usr/src/linux-headers-5.15.0-181/include/linux
NameSizeModeActions
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atomic/-0755rm
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ssb/-0755rm
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ulpi/-0755rm
unaligned/-0755rm
usb/-0755rm
8250_pci.h10380644editdlrm
a.out.h3540644editdlrm
acct.h25510644editdlrm
acpi.h409020644editdlrm
acpi_dma.h31540644editdlrm
acpi_iort.h24030644editdlrm
acpi_mdio.h8190644editdlrm
acpi_pmtmr.h6740644editdlrm
acpi_viot.h4780644editdlrm
adb.h18320644editdlrm
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adreno-smmu-priv.h28070644editdlrm
adxl.h3100644editdlrm
aer.h18220644editdlrm
agpgart.h38810644editdlrm
agp_backend.h35340644editdlrm
ahci-remap.h6070644editdlrm
ahci_platform.h17470644editdlrm
aio.h6510644editdlrm
alarmtimer.h19900644editdlrm
alcor_pci.h90430644editdlrm
align.h5520644editdlrm
altera_jtaguart.h3790644editdlrm
altera_uart.h3970644editdlrm
amd-iommu.h63250644editdlrm
anon_inodes.h6700644editdlrm
apm-emulation.h15990644editdlrm
apm_bios.h23050644editdlrm
apple-gmux.h9180644editdlrm
apple_bl.h4980644editdlrm
arch_topology.h25510644editdlrm
arm-cci.h13900644editdlrm
arm-smccc.h173820644editdlrm
armada-37xx-rwtm-mailbox.h4310644editdlrm
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arm_sdei.h27300644editdlrm
array_size.h3320644editdlrm
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asn1_decoder.h4680644editdlrm
asn1_encoder.h10060644editdlrm
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async.h44390644editdlrm
async_tx.h68600644editdlrm
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atalk.h45860644editdlrm
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atomic.h26440644editdlrm
attribute_container.h28030644editdlrm
audit.h199210644editdlrm
auto_dev-ioctl.h2960644editdlrm
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bit_spinlock.h23600644editdlrm
blk-cgroup.h226480644editdlrm
blk-crypto.h41170644editdlrm
blk-mq-pci.h2690644editdlrm
blk-mq-rdma.h2730644editdlrm
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blk-mq.h198340644editdlrm
blk-pm.h7080644editdlrm
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blk_types.h156690644editdlrm
blockgroup_lock.h8100644editdlrm
bma150.h12860644editdlrm
bootconfig.h87120644editdlrm
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bug.h22200644editdlrm
build-salt.h3750644editdlrm
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cb710.h54900644editdlrm
cciss_ioctl.h10530644editdlrm
ccp.h185770644editdlrm
cc_platform.h23780644editdlrm
cdev.h8450644editdlrm
cdrom.h91970644editdlrm
cfag12864b.h15090644editdlrm
cfi.h11520644editdlrm
cgroup-defs.h248150644editdlrm
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cgroup_subsys.h12590644editdlrm
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cm4000_cs.h1990644editdlrm
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compaction.h73190644editdlrm
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compiler-gcc.h50210644editdlrm
compiler-intel.h9490644editdlrm
compiler-version.h5170644editdlrm
compiler.h85530644editdlrm
compiler_attributes.h135570644editdlrm
compiler_types.h110230644editdlrm
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component.h41630644editdlrm
configfs.h86830644editdlrm
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const.h4210644editdlrm
container.h6100644editdlrm
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cookie.h12540644editdlrm
cordic.h21320644editdlrm
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cpuidle_haltpoll.h3120644editdlrm
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crc32.h28940644editdlrm
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crc32poly.h6100644editdlrm
crc64.h2800644editdlrm
cred.h128040644editdlrm
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cs5535.h62770644editdlrm
ctype.h19120644editdlrm
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damon.h106010644editdlrm
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davinci_emac.h10800644editdlrm
dax.h67190644editdlrm
dca.h19220644editdlrm
dcache.h190760644editdlrm
dccp.h109880644editdlrm
debugfs.h122530644editdlrm
debugobjects.h40850644editdlrm
debug_locks.h16270644editdlrm
delay.h24900644editdlrm
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device-mapper.h193710644editdlrm
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dio.h110190644editdlrm
dirent.h2150644editdlrm
dlm.h60050644editdlrm
dlm_plock.h5320644editdlrm
dm-bufio.h49920644editdlrm
dm-dirty-log.h40380644editdlrm
dm-io.h19800644editdlrm
dm-kcopyd.h30130644editdlrm
dm-region-hash.h31820644editdlrm
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dma-buf-map.h83180644editdlrm
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dma-direct.h36810644editdlrm
dma-direction.h4070644editdlrm
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dma-fence.h213570644editdlrm
dma-heap.h16160644editdlrm
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dma-mapping.h205890644editdlrm
dma-resv.h122360644editdlrm
dmaengine.h548510644editdlrm
dmapool.h18320644editdlrm
dmar.h79290644editdlrm
dmi.h43720644editdlrm
dnotify.h10440644editdlrm
dns_resolver.h13900644editdlrm
dqblk_qtree.h22380644editdlrm
dqblk_v1.h3270644editdlrm
dqblk_v2.h4060644editdlrm
drbd.h103110644editdlrm
drbd_genl.h220100644editdlrm
drbd_genl_api.h18080644editdlrm
drbd_limits.h80030644editdlrm
ds2782_battery.h1580644editdlrm
dtlk.h35840644editdlrm
dtpm.h16840644editdlrm
dw_apb_timer.h15660644editdlrm
dynamic_debug.h64710644editdlrm
dynamic_queue_limits.h38120644editdlrm
earlycpio.h3590644editdlrm
ecryptfs.h39150644editdlrm
edac.h199240644editdlrm
edd.h10770644editdlrm
eeprom_93cx6.h27070644editdlrm
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efi_embedded_fw.h10600644editdlrm
efs_vh.h15850644editdlrm
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elevator.h56530644editdlrm
elf-fdpic.h20300644editdlrm
elf-randomize.h5830644editdlrm
elf.h30300644editdlrm
elfcore-compat.h13020644editdlrm
elfcore.h42090644editdlrm
elfnote-lto.h3140644editdlrm
elfnote.h36260644editdlrm
enclosure.h41120644editdlrm
energy_model.h83610644editdlrm
entry-common.h173590644editdlrm
entry-kvm.h28000644editdlrm
err.h15270644editdlrm
errname.h2830644editdlrm
errno.h14810644editdlrm
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errqueue.h5240644editdlrm
errseq.h3820644editdlrm
etherdevice.h176070644editdlrm
ethtool.h325050644editdlrm
ethtool_netlink.h20290644editdlrm
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eventpoll.h24720644editdlrm
evm.h35000644editdlrm
export.h53940644editdlrm
exportfs.h84210644editdlrm
ext2_fs.h9670644editdlrm
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extcon-provider.h39190644editdlrm
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f2fs_fs.h194710644editdlrm
f75375s.h5410644editdlrm
falloc.h16240644editdlrm
fanotify.h45470644editdlrm
fault-inject-usercopy.h4960644editdlrm
fault-inject.h19750644editdlrm
fb.h289580644editdlrm
fbcon.h21360644editdlrm
fcdevice.h7740644editdlrm
fcntl.h16980644editdlrm
fd.h4900644editdlrm
fddidevice.h8330644editdlrm
fdtable.h35710644editdlrm
fec.h4630644editdlrm
fiemap.h7130644editdlrm
file.h31580644editdlrm
fileattr.h19520644editdlrm
filter.h439950644editdlrm
fips.h3030644editdlrm
firewire.h137180644editdlrm
firmware-map.h9590644editdlrm
firmware.h33480644editdlrm
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font.h17140644editdlrm
fortify-string.h93290644editdlrm
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freezer.h91930644editdlrm
frontswap.h31180644editdlrm
fs.h1255060644editdlrm
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fscache.h303030644editdlrm
fscrypt.h306220644editdlrm
fsi-occ.h6810644editdlrm
fsi-sbefifo.h6290644editdlrm
fsi.h23180644editdlrm
fsl-diu-fb.h39630644editdlrm
fsldma.h2020644editdlrm
fsl_devices.h42610644editdlrm
fsl_hypervisor.h28240644editdlrm
fsl_ifc.h250630644editdlrm
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fsnotify_backend.h300060644editdlrm
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fs_context.h88180644editdlrm
fs_enet_pd.h34570644editdlrm
fs_parser.h45430644editdlrm
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fs_stack.h8110644editdlrm
fs_struct.h10660644editdlrm
fs_types.h20710644editdlrm
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ftrace.h355970644editdlrm
ftrace_irq.h8840644editdlrm
futex.h24970644editdlrm
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fwnode_mdio.h8580644editdlrm
gameport.h55490644editdlrm
gcd.h1930644editdlrm
genalloc.h79120644editdlrm
generic-radix-tree.h65040644editdlrm
genetlink.h5890644editdlrm
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genl_magic_func.h118090644editdlrm
genl_magic_struct.h77930644editdlrm
getcpu.h6410644editdlrm
gfp.h268920644editdlrm
glob.h2560644editdlrm
gnss.h16010644editdlrm
goldfish.h8780644editdlrm
gpio-pxa.h5710644editdlrm
gpio.h54230644editdlrm
gpio_keys.h17820644editdlrm
greybus.h42400644editdlrm
hardirq.h35160644editdlrm
hash.h30710644editdlrm
hashtable.h68270644editdlrm
hdlc.h32670644editdlrm
hdlcdrv.h64680644editdlrm
hdmi.h127050644editdlrm
hid-debug.h14580644editdlrm
hid-roccat.h4840644editdlrm
hid-sensor-hub.h91900644editdlrm
hid-sensor-ids.h76170644editdlrm
hid.h389230644editdlrm
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hiddev.h14580644editdlrm
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highmem-internal.h52390644editdlrm
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hil.h188570644editdlrm
hil_mlc.h52480644editdlrm
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hmm.h41680644editdlrm
host1x.h109930644editdlrm
hpet.h26150644editdlrm
hp_sdc.h143520644editdlrm
hrtimer.h165150644editdlrm
hrtimer_defs.h6600644editdlrm
htcpld.h6170644editdlrm
hugetlb.h304160644editdlrm
hugetlb_cgroup.h72410644editdlrm
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huge_mm.h135930644editdlrm
hwmon-sysfs.h28400644editdlrm
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hwmon.h151310644editdlrm
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hw_breakpoint.h42480644editdlrm
hw_random.h21680644editdlrm
hyperv.h502180644editdlrm
hypervisor.h6080644editdlrm
i2c-algo-bit.h14360644editdlrm
i2c-algo-pca.h29560644editdlrm
i2c-algo-pcf.h12360644editdlrm
i2c-dev.h3710644editdlrm
i2c-mux.h16670644editdlrm
i2c-smbus.h17400644editdlrm
i2c.h395260644editdlrm
i8042.h20410644editdlrm
i8253.h8080644editdlrm
icmp.h10290644editdlrm
icmpv6.h27610644editdlrm
idle_inject.h9320644editdlrm
idr.h99350644editdlrm
ieee80211.h1271320644editdlrm
ieee802154.h113850644editdlrm
if_arp.h18580644editdlrm
if_bridge.h49190644editdlrm
if_eql.h11000644editdlrm
if_ether.h12950644editdlrm
if_fddi.h33150644editdlrm
if_hsr.h5860644editdlrm
if_link.h5920644editdlrm
if_ltalk.h1880644editdlrm
if_macvlan.h27570644editdlrm
if_phonet.h3190644editdlrm
if_pppol2tp.h5160644editdlrm
if_pppox.h29130644editdlrm
if_rmnet.h20840644editdlrm
if_tap.h22660644editdlrm
if_team.h80890644editdlrm
if_tun.h15870644editdlrm
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if_vlan.h216930644editdlrm
igmp.h44130644editdlrm
ihex.h22060644editdlrm
ima.h59340644editdlrm
imx-media.h6050644editdlrm
in.h23450644editdlrm
in6.h16710644editdlrm
indirect_call_wrapper.h22800644editdlrm
inet.h27070644editdlrm
inetdevice.h90850644editdlrm
inet_diag.h28010644editdlrm
init.h116630644editdlrm
initrd.h10440644editdlrm
init_ohci1394_dma.h1960644editdlrm
init_syscalls.h10370644editdlrm
init_task.h13310644editdlrm
inotify.h7130644editdlrm
input.h203620644editdlrm
instrumentation.h19720644editdlrm
instrumented.h36850644editdlrm
integrity.h11790644editdlrm
intel-iommu.h279340644editdlrm
intel-ish-client-if.h40660644editdlrm
intel-svm.h15810644editdlrm
intel_rapl.h42390644editdlrm
intel_th.h25010644editdlrm
interconnect-provider.h56390644editdlrm
interconnect.h29510644editdlrm
interrupt.h258330644editdlrm
interval_tree.h8310644editdlrm
interval_tree_generic.h68630644editdlrm
io-64-nonatomic-hi-lo.h24680644editdlrm
io-64-nonatomic-lo-hi.h24680644editdlrm
io-mapping.h47570644editdlrm
io-pgtable.h88570644editdlrm
io.h51410644editdlrm
ioam6.h2260644editdlrm
ioam6_genl.h2660644editdlrm
ioam6_iptunnel.h2850644editdlrm
ioasid.h21190644editdlrm
iocontext.h46990644editdlrm
iomap.h121980644editdlrm
iommu-helper.h11460644editdlrm
iommu.h348730644editdlrm
iopoll.h77950644editdlrm
ioport.h125770644editdlrm
ioprio.h17720644editdlrm
iova.h63420644editdlrm
io_uring.h8810644editdlrm
ip.h10240644editdlrm
ipack.h89000644editdlrm
ipc.h6130644editdlrm
ipc_namespace.h57640644editdlrm
ipmi.h111460644editdlrm
ipmi_smi.h81690644editdlrm
ipv6.h89120644editdlrm
ipv6_route.h3720644editdlrm
irq.h427640644editdlrm
irqbypass.h35350644editdlrm
irqchip.h23870644editdlrm
irqdesc.h79320644editdlrm
irqdomain.h207270644editdlrm
irqflags.h81000644editdlrm
irqhandler.h3000644editdlrm
irqnr.h8560644editdlrm
irqreturn.h5030644editdlrm
irq_poll.h5750644editdlrm
irq_sim.h7890644editdlrm
irq_work.h18620644editdlrm
isa.h21670644editdlrm
isapnp.h29440644editdlrm
iscsi_boot_sysfs.h37960644editdlrm
iscsi_ibft.h8470644editdlrm
iversion.h126700644editdlrm
jbd2.h524330644editdlrm
jhash.h46730644editdlrm
jiffies.h154300644editdlrm
journal-head.h29840644editdlrm
joystick.h4370644editdlrm
jump_label.h164360644editdlrm
jump_label_ratelimit.h28410644editdlrm
jz4740-adc.h10230644editdlrm
jz4780-nemc.h9760644editdlrm
kallsyms.h47570644editdlrm
kasan-checks.h14950644editdlrm
kasan-tags.h4870644editdlrm
kasan.h137180644editdlrm
kbd_diacr.h1980644editdlrm
kbd_kern.h36870644editdlrm
kbuild.h3800644editdlrm
kconfig.h26910644editdlrm
kcore.h8910644editdlrm
kcov.h25350644editdlrm
kcsan-checks.h162450644editdlrm
kcsan.h19300644editdlrm
kdb.h75080644editdlrm
kdebug.h4870644editdlrm
kdev_t.h18430644editdlrm
kernel-page-flags.h5280644editdlrm
kernel.h174180644editdlrm
kernelcapi.h14850644editdlrm
kernel_read_file.h16760644editdlrm
kernel_stat.h30450644editdlrm
kernfs.h186840644editdlrm
kern_levels.h16110644editdlrm
kexec.h127420644editdlrm
key-type.h67880644editdlrm
key.h161280644editdlrm
keyboard.h6650644editdlrm
keyctl.h12760644editdlrm
keyslot-manager.h38680644editdlrm
kfence.h87680644editdlrm
kfifo.h268040644editdlrm
kgdb.h123420644editdlrm
khugepaged.h28100644editdlrm
klist.h19220644editdlrm
kmemleak.h33490644editdlrm
kmod.h10450644editdlrm
kmsg_dump.h27720644editdlrm
kobject.h78830644editdlrm
kobject_ns.h19430644editdlrm
kobj_map.h5450644editdlrm
kprobes.h150740644editdlrm
kref.h31550644editdlrm
ks0108.h9700644editdlrm
ks8842.h6320644editdlrm
ks8851_mll.h4720644editdlrm
ksm.h25330644editdlrm
kstrtox.h67510644editdlrm
kthread.h78720644editdlrm
ktime.h55120644editdlrm
kvm_dirty_ring.h27940644editdlrm
kvm_host.h600200644editdlrm
kvm_irqfd.h20430644editdlrm
kvm_para.h4020644editdlrm
kvm_types.h22220644editdlrm
l2tp.h2610644editdlrm
lantiq.h3650644editdlrm
lapb.h17520644editdlrm
latencytop.h11920644editdlrm
lcd.h38670644editdlrm
lcm.h2750644editdlrm
led-class-flash.h69000644editdlrm
led-class-multicolor.h33380644editdlrm
led-lm3530.h37860644editdlrm
leds-bd2802.h4760644editdlrm
leds-lp3944.h9500644editdlrm
leds-lp3952.h24100644editdlrm
leds-pca9532.h8660644editdlrm
leds-regulator.h11680644editdlrm
leds-ti-lmu-common.h11490644editdlrm
leds.h184920644editdlrm
libata.h690460644editdlrm
libfdt.h2020644editdlrm
libfdt_env.h4910644editdlrm
libgcc.h4630644editdlrm
libnvdimm.h106240644editdlrm
libps2.h19310644editdlrm
license.h4180644editdlrm
limits.h7150644editdlrm
linear_range.h17660644editdlrm
linkage.h98260644editdlrm
linkmode.h25590644editdlrm
linux_logo.h19560644editdlrm
lis3lv02d.h51250644editdlrm
list.h312000644editdlrm
list_bl.h49050644editdlrm
list_lru.h74630644editdlrm
list_nulls.h43220644editdlrm
list_sort.h3740644editdlrm
litex.h21070644editdlrm
livepatch.h84190644editdlrm
llc.h7490644editdlrm
llist.h92800644editdlrm
local_lock.h13620644editdlrm
local_lock_internal.h34990644editdlrm
lockdep.h220030644editdlrm
lockdep_types.h53080644editdlrm
lockref.h15410644editdlrm
log2.h63660644editdlrm
logic_iomem.h21240644editdlrm
logic_pio.h33100644editdlrm
lp.h28270644editdlrm
lru_cache.h121110644editdlrm
lsm_audit.h28730644editdlrm
lsm_hooks.h761740644editdlrm
lsm_hook_defs.h215110644editdlrm
lz4.h270750644editdlrm
lzo.h19800644editdlrm
mailbox_client.h17540644editdlrm
mailbox_controller.h58350644editdlrm
maple.h27750644editdlrm
marvell_phy.h17340644editdlrm
math.h51850644editdlrm
math64.h76560644editdlrm
mbcache.h22080644editdlrm
mbus.h31680644editdlrm
mc6821.h12090644editdlrm
mc146818rtc.h48000644editdlrm
mcb.h37960644editdlrm
mdev.h60810644editdlrm
mdio-bitbang.h13380644editdlrm
mdio-gpio.h1770644editdlrm
mdio-mux.h10210644editdlrm
mdio.h129900644editdlrm
mei_cl_bus.h38430644editdlrm
memblock.h203530644editdlrm
memcontrol.h446280644editdlrm
memfd.h7190644editdlrm
memory.h61320644editdlrm
memory_hotplug.h116890644editdlrm
mempolicy.h75480644editdlrm
mempool.h34300644editdlrm
memregion.h4170644editdlrm
memremap.h57490644editdlrm
memstick.h98320644editdlrm
mem_encrypt.h8850644editdlrm
mhi.h266640644editdlrm
micrel_phy.h18800644editdlrm
microchipphy.h27100644editdlrm
migrate.h55370644editdlrm
migrate_mode.h7580644editdlrm
mii.h167260644editdlrm
mii_timestamper.h36530644editdlrm
minmax.h102420644editdlrm
min_heap.h33770644editdlrm
miscdevice.h32780644editdlrm
misc_cgroup.h30210644editdlrm
mISDNdsp.h12170644editdlrm
mISDNhw.h55230644editdlrm
mISDNif.h152500644editdlrm
mm.h1082270644editdlrm
mman.h40530644editdlrm
mmap_lock.h43530644editdlrm
mmdebug.h23080644editdlrm
mmiotrace.h31220644editdlrm
mmu_context.h8550644editdlrm
mmu_notifier.h252290644editdlrm
mmzone.h485300644editdlrm
mm_inline.h29860644editdlrm
mm_types.h257340644editdlrm
mm_types_task.h25550644editdlrm
mnt_idmapping.h78380644editdlrm
mnt_namespace.h6970644editdlrm
module.h245400644editdlrm
moduleloader.h34980644editdlrm
moduleparam.h228910644editdlrm
module_signature.h12500644editdlrm
mod_devicetable.h240640644editdlrm
most.h124910644editdlrm
mount.h40230644editdlrm
moxtet.h24210644editdlrm
mpage.h7370644editdlrm
mpi.h86120644editdlrm
mpls.h3940644editdlrm
mpls_iptunnel.h1780644editdlrm
mroute.h20040644editdlrm
mroute6.h24660644editdlrm
mroute_base.h124630644editdlrm
msdos_fs.h2730644editdlrm
msdos_partition.h16550644editdlrm
msg.h3950644editdlrm
msi.h157270644editdlrm
mtio.h13170644editdlrm
mutex.h74830644editdlrm
mv643xx.h522710644editdlrm
mv643xx_eth.h20010644editdlrm
mv643xx_i2c.h3350644editdlrm
mvebu-pmsu.h5200644editdlrm
mxm-wmi.h3990644editdlrm
namei.h46830644editdlrm
nd.h56850644editdlrm
ndctl.h6740644editdlrm
net.h117490644editdlrm
netdevice.h1727810644editdlrm
netdev_features.h110100644editdlrm
netfilter.h138860644editdlrm
netfilter_bridge.h21280644editdlrm
netfilter_defs.h2420644editdlrm
netfilter_ingress.h14740644editdlrm
netfilter_ipv4.h10770644editdlrm
netfilter_ipv6.h59880644editdlrm
netfs.h81250644editdlrm
netlink.h80700644editdlrm
netpoll.h24730644editdlrm
nfs.h15020644editdlrm
nfs3.h2600644editdlrm
nfs4.h198360644editdlrm
nfsacl.h14350644editdlrm
nfs_common.h4020644editdlrm
nfs_fs.h208790644editdlrm
nfs_fs_i.h3080644editdlrm
nfs_fs_sb.h104950644editdlrm
nfs_iostat.h42850644editdlrm
nfs_page.h69640644editdlrm
nfs_ssc.h20610644editdlrm
nfs_xdr.h432720644editdlrm
nitro_enclaves.h2670644editdlrm
nl802154.h39380644editdlrm
nls.h31620644editdlrm
nmi.h69260644editdlrm
node.h47870644editdlrm
nodemask.h175770644editdlrm
nospec.h22900644editdlrm
notifier.h80320644editdlrm
nsc_gpio.h14590644editdlrm
nsproxy.h31650644editdlrm
ns_common.h2830644editdlrm
ntb.h536910644editdlrm
ntb_transport.h38920644editdlrm
nubus.h56750644editdlrm
numa.h12780644editdlrm
nvme-fc-driver.h469580644editdlrm
nvme-fc.h99550644editdlrm
nvme-rdma.h20850644editdlrm
nvme-tcp.h45220644editdlrm
nvme.h392350644editdlrm
nvmem-consumer.h69420644editdlrm
nvmem-provider.h47720644editdlrm
nvram.h35500644editdlrm
objagg.h19830644editdlrm
objtool.h53680644editdlrm
of.h444460644editdlrm
of_address.h42700644editdlrm
of_clk.h8190644editdlrm
of_device.h30350644editdlrm
of_dma.h23530644editdlrm
of_fdt.h37330644editdlrm
of_gpio.h41700644editdlrm
of_graph.h36360644editdlrm
of_iommu.h5050644editdlrm
of_irq.h38430644editdlrm
of_mdio.h39990644editdlrm
of_net.h10090644editdlrm
of_pci.h9150644editdlrm
of_pdt.h11630644editdlrm
of_platform.h39740644editdlrm
of_reserved_mem.h22980644editdlrm
oid_registry.h57670644editdlrm
olpc-ec.h20000644editdlrm
omap-dma.h100210644editdlrm
omap-gpmc.h27040644editdlrm
omap-iommu.h8800644editdlrm
omap-mailbox.h6890644editdlrm
omapfb.h5760644editdlrm
once.h28650644editdlrm
once_lite.h9250644editdlrm
oom.h33410644editdlrm
openvswitch.h4030644editdlrm
osq_lock.h10660644editdlrm
overflow.h80070644editdlrm
packing.h18030644editdlrm
padata.h61040644editdlrm
page-flags-layout.h32870644editdlrm
page-flags.h286730644editdlrm
page-isolation.h16800644editdlrm
pageblock-flags.h23630644editdlrm
pagemap.h312340644editdlrm
pagevec.h20900644editdlrm
pagewalk.h43170644editdlrm
page_counter.h23590644editdlrm
page_ext.h18770644editdlrm
page_idle.h26710644editdlrm
page_owner.h23610644editdlrm
page_ref.h50730644editdlrm
page_reporting.h8950644editdlrm
panic.h26560644editdlrm
panic_notifier.h2960644editdlrm
parman.h29340644editdlrm
parport.h195440644editdlrm
parport_pc.h67130644editdlrm
parser.h11950644editdlrm
part_stat.h24330644editdlrm
pata_arasan_cf_data.h12500644editdlrm
patchkey.h7570644editdlrm
path.h5720644editdlrm
pch_dma.h4080644editdlrm
pci-acpi.h39440644editdlrm
pci-ats.h18020644editdlrm
pci-dma-compat.h37490644editdlrm
pci-ecam.h32800644editdlrm
pci-ep-cfs.h9560644editdlrm
pci-epc.h96980644editdlrm
pci-epf.h72270644editdlrm
pci-p2pdma.h40490644editdlrm
pci.h928510644editdlrm
pci_hotplug.h44580644editdlrm
pci_ids.h1241410644editdlrm
pcs-lynx.h4250644editdlrm
pda_power.h10050644editdlrm
pe.h165540644editdlrm
percpu-defs.h185580644editdlrm
percpu-refcount.h111020644editdlrm
percpu-rwsem.h42570644editdlrm
percpu.h48500644editdlrm
percpu_counter.h56090644editdlrm
perf_event.h483650644editdlrm
perf_regs.h10760644editdlrm
personality.h3930644editdlrm
pfn.h6660644editdlrm
pfn_t.h32870644editdlrm
pgalloc.h9480644editdlrm
pgtable.h455000644editdlrm
phonet.h5370644editdlrm
phy.h594750644editdlrm
phylink.h199390644editdlrm
phy_fixed.h18140644editdlrm
phy_led_triggers.h10350644editdlrm
pid.h65210644editdlrm
pid_namespace.h21330644editdlrm
pim.h27370644editdlrm
pipe_fs_i.h94330644editdlrm
pkeys.h9900644editdlrm
pktcdvd.h60110644editdlrm
pl320-ipc.h2090644editdlrm
platform_device.h130740644editdlrm
platform_profile.h11500644editdlrm
pldmfw.h48790644editdlrm
plist.h88720644editdlrm
pm-trace.h9400644editdlrm
pm.h357090644editdlrm
pmbus.h25430644editdlrm
pmu.h25020644editdlrm
pm_clock.h26370644editdlrm
pm_domain.h135010644editdlrm
pm_opp.h154660644editdlrm
pm_qos.h106630644editdlrm
pm_runtime.h201650644editdlrm
pm_wakeirq.h15180644editdlrm
pm_wakeup.h64270644editdlrm
pnfs_osd_xdr.h94900644editdlrm
pnp.h152530644editdlrm
poison.h25400644editdlrm
poll.h43700644editdlrm
posix-clock.h48080644editdlrm
posix-timers.h73860644editdlrm
posix_acl.h33470644editdlrm
posix_acl_xattr.h19090644editdlrm
powercap.h122630644editdlrm
power_supply.h182270644editdlrm
ppp-comp.h30230644editdlrm
ppp_channel.h30640644editdlrm
ppp_defs.h3050644editdlrm
pps_kernel.h30100644editdlrm
pr.h5660644editdlrm
prandom.h34580644editdlrm
preempt.h150480644editdlrm
prefetch.h17400644editdlrm
prime_numbers.h13840644editdlrm
printk.h227250644editdlrm
prmt.h1430644editdlrm
processor.h18890644editdlrm
proc_fs.h88110644editdlrm
proc_ns.h26270644editdlrm
profile.h26840644editdlrm
projid.h22690644editdlrm
property.h180690644editdlrm
pruss_driver.h12970644editdlrm
psci.h15590644editdlrm
pseudo_fs.h3550644editdlrm
psi.h15960644editdlrm
psi_types.h44160644editdlrm
psp-sev.h181880644editdlrm
psp-tee.h27160644editdlrm
pstore.h78080644editdlrm
pstore_blk.h15670644editdlrm
pstore_ram.h39070644editdlrm
pstore_zone.h23360644editdlrm
ptdump.h5670644editdlrm
pti.h2400644editdlrm
ptp_classify.h49650644editdlrm
ptp_clock_kernel.h124900644editdlrm
ptp_kvm.h4600644editdlrm
ptp_pch.h6230644editdlrm
ptrace.h150010644editdlrm
ptr_ring.h166790644editdlrm
purgatory.h5900644editdlrm
pvclock_gtod.h5480644editdlrm
pwm.h168510644editdlrm
pwm_backlight.h7220644editdlrm
pxa2xx_ssp.h113920644editdlrm
pxa168_eth.h7280644editdlrm
qcom-geni-se.h140650644editdlrm
qcom_scm.h39000644editdlrm
qnx6_fs.h33490644editdlrm
quota.h192170644editdlrm
quotaops.h105230644editdlrm
radix-tree.h160080644editdlrm
raid_class.h20480644editdlrm
ramfs.h7460644editdlrm
random.h40730644editdlrm
randomize_kstack.h25220644editdlrm
range.h7750644editdlrm
ras.h10440644editdlrm
ratelimit.h17610644editdlrm
ratelimit_types.h13570644editdlrm
rational.h6390644editdlrm
rbtree.h91480644editdlrm
rbtree_augmented.h97560644editdlrm
rbtree_latch.h68190644editdlrm
rbtree_types.h9460644editdlrm
rculist.h292420644editdlrm
rculist_bl.h33740644editdlrm
rculist_nulls.h88880644editdlrm
rcupdate.h396200644editdlrm
rcupdate_trace.h31580644editdlrm
rcupdate_wait.h17690644editdlrm
rcutiny.h33970644editdlrm
rcutree.h24010644editdlrm
rcuwait.h18840644editdlrm
rcu_node_tree.h38180644editdlrm
rcu_segcblist.h102730644editdlrm
rcu_sync.h14940644editdlrm
reboot-mode.h6000644editdlrm
reboot.h22350644editdlrm
reciprocal_div.h33560644editdlrm
refcount.h123050644editdlrm
regmap.h655030644editdlrm
regset.h116260644editdlrm
relay.h86690644editdlrm
remoteproc.h253600644editdlrm
resctrl.h66510644editdlrm
reset-controller.h36550644editdlrm
reset.h309640644editdlrm
resource.h3390644editdlrm
resource_ext.h21350644editdlrm
restart_block.h11380644editdlrm
rfkill.h107750644editdlrm
rhashtable-types.h35360644editdlrm
rhashtable.h384920644editdlrm
ring_buffer.h77390644editdlrm
rio.h194720644editdlrm
rio_drv.h146600644editdlrm
rio_ids.h11040644editdlrm
rio_regs.h195240644editdlrm
rmap.h93460644editdlrm
rmi.h123300644editdlrm
rndis.h172690644editdlrm
rodata_test.h3940644editdlrm
root_dev.h6190644editdlrm
rpmsg.h89780644editdlrm
rslib.h37530644editdlrm
rtc.h88610644editdlrm
rtmutex.h30370644editdlrm
rtnetlink.h45620644editdlrm
rtsx_common.h8900644editdlrm
rtsx_pci.h407740644editdlrm
rtsx_usb.h157470644editdlrm
rwbase_rt.h8760644editdlrm
rwlock.h46640644editdlrm
rwlock_api_smp.h78290644editdlrm
rwlock_rt.h30530644editdlrm
rwlock_types.h18140644editdlrm
rwsem.h78100644editdlrm
s3c_adc_battery.h9230644editdlrm
sbitmap.h173060644editdlrm
scatterlist.h179810644editdlrm
scc.h29050644editdlrm
sched.h662820644editdlrm
sched_clock.h14720644editdlrm
scmi_protocol.h266810644editdlrm
scpi_protocol.h27290644editdlrm
screen_info.h1910644editdlrm
scs.h18690644editdlrm
sctp.h234310644editdlrm
scx200.h18630644editdlrm
scx200_gpio.h24380644editdlrm
sdb.h42700644editdlrm
seccomp.h35330644editdlrm
secretmem.h11690644editdlrm
securebits.h2390644editdlrm
security.h603380644editdlrm
sed-opal.h16960644editdlrm
seg6.h1210644editdlrm
seg6_genl.h1360644editdlrm
seg6_hmac.h1360644editdlrm
seg6_iptunnel.h1480644editdlrm
seg6_local.h1000644editdlrm
selection.h18540644editdlrm
sem.h5990644editdlrm
semaphore.h13840644editdlrm
seqlock.h404550644editdlrm
seqno-fence.h36550644editdlrm
seq_buf.h40300644editdlrm
seq_file.h92200644editdlrm
seq_file_net.h7300644editdlrm
serdev.h100510644editdlrm
serial.h6300644editdlrm
serial_8250.h67280644editdlrm
serial_bcm63xx.h48430644editdlrm
serial_core.h209500644editdlrm
serial_max3100.h12160644editdlrm
serial_s3c.h96490644editdlrm
serial_sci.h16350644editdlrm
serio.h43830644editdlrm
set_memory.h16980644editdlrm
sfp.h162530644editdlrm
shdma-base.h43700644editdlrm
shm.h9680644editdlrm
shmem_fs.h59540644editdlrm
shrinker.h33280644editdlrm
sh_clk.h60980644editdlrm
sh_dma.h35500644editdlrm
sh_eth.h3690644editdlrm
sh_intc.h36790644editdlrm
sh_timer.h1720644editdlrm
signal.h140830644editdlrm
signalfd.h8170644editdlrm
signal_types.h17250644editdlrm
siox.h23130644editdlrm
siphash.h57250644editdlrm
sizes.h13050644editdlrm
skbuff.h1411470644editdlrm
skb_array.h53050644editdlrm
skmsg.h137620644editdlrm
slab.h243130644editdlrm
slab_def.h30910644editdlrm
slimbus.h70960644editdlrm
slub_def.h63670644editdlrm
sm501-regs.h119000644editdlrm
sm501.h41140644editdlrm
smc91x.h16040644editdlrm
smc911x.h2940644editdlrm
smp.h78180644editdlrm
smpboot.h17250644editdlrm
smp_types.h13820644editdlrm
smsc911x.h16700644editdlrm
smscphy.h12830644editdlrm
socket.h154600644editdlrm
sockptr.h24140644editdlrm
sock_diag.h23700644editdlrm
sonet.h4690644editdlrm
sony-laptop.h14400644editdlrm
sonypi.h17550644editdlrm
sort.h3460644editdlrm
sound.h6850644editdlrm
soundcard.h16310644editdlrm
spinlock.h154370644editdlrm
spinlock_api_smp.h56050644editdlrm
spinlock_api_up.h33940644editdlrm
spinlock_rt.h42090644editdlrm
spinlock_types.h18260644editdlrm
spinlock_types_raw.h17260644editdlrm
spinlock_types_up.h7260644editdlrm
spinlock_up.h22110644editdlrm
splice.h33900644editdlrm
spmi.h57250644editdlrm
sram.h8440644editdlrm
srcu.h72430644editdlrm
srcutiny.h28130644editdlrm
srcutree.h49160644editdlrm
ssbi.h7260644editdlrm
stackdepot.h6860644editdlrm
stackleak.h9020644editdlrm
stackprotector.h3610644editdlrm
stacktrace.h40660644editdlrm
start_kernel.h4150644editdlrm
stat.h13660644editdlrm
statfs.h18270644editdlrm
static_call.h105000644editdlrm
static_call_types.h28090644editdlrm
static_key.h300644editdlrm
stdarg.h3130644editdlrm
stddef.h32760644editdlrm
stm.h44490644editdlrm
stmmac.h70290644editdlrm
stmp3xxx_rtc_wdt.h3310644editdlrm
stmp_device.h4120644editdlrm
stop_machine.h45170644editdlrm
string.h99890644editdlrm
stringhash.h27150644editdlrm
stringify.h3410644editdlrm
string_helpers.h27580644editdlrm
sungem_phy.h40310644editdlrm
sunserialcore.h11020644editdlrm
sunxi-rsb.h29560644editdlrm
superhyway.h28780644editdlrm
surface_acpi_notify.h10910644editdlrm
suspend.h204960644editdlrm
svga.h38370644editdlrm
sw842.h3280644editdlrm
swab.h5690644editdlrm
swait.h96780644editdlrm
swap.h239920644editdlrm
swapfile.h5560644editdlrm
swapops.h98390644editdlrm
swap_cgroup.h9710644editdlrm
swap_slots.h8410644editdlrm
swiotlb.h54900644editdlrm
switchtec.h111580644editdlrm
sxgbe_platform.h12610644editdlrm
synclink.h9890644editdlrm
sync_core.h5810644editdlrm
sync_file.h16060644editdlrm
sys.h9600644editdlrm
syscalls.h568930644editdlrm
syscall_user_dispatch.h9300644editdlrm
syscore_ops.h6330644editdlrm
sysctl.h88000644editdlrm
sysfb.h27390644editdlrm
sysfs.h180600644editdlrm
syslog.h12660644editdlrm
sysrq.h20020644editdlrm
sysv_fs.h92500644editdlrm
sys_soc.h12940644editdlrm
t10-pi.h15380644editdlrm
taskstats_kern.h9570644editdlrm
task_io_accounting.h11590644editdlrm
task_io_accounting_ops.h26100644editdlrm
task_work.h9340644editdlrm
tboot.h34070644editdlrm
tc.h35340644editdlrm
tca6416_keypad.h6830644editdlrm
tcp.h175530644editdlrm
tee_drv.h187910644editdlrm
textsearch.h48670644editdlrm
textsearch_fsm.h12140644editdlrm
tfrc.h17220644editdlrm
thermal.h158090644editdlrm
threads.h13140644editdlrm
thread_info.h70560644editdlrm
thunderbolt.h212790644editdlrm
ti-emif-sram.h52700644editdlrm
tick.h102880644editdlrm
tifm.h47700644editdlrm
timb_dma.h11930644editdlrm
timb_gpio.h7170644editdlrm
time.h32160644editdlrm
time32.h17950644editdlrm
time64.h45960644editdlrm
timecounter.h42430644editdlrm
timekeeper_internal.h54550644editdlrm
timekeeping.h77890644editdlrm
timer.h81460644editdlrm
timerfd.h5080644editdlrm
timeriomem-rng.h4320644editdlrm
timerqueue.h14300644editdlrm
timex.h68260644editdlrm
time_namespace.h39070644editdlrm
ti_wilink_st.h137810644editdlrm
tnum.h34670644editdlrm
topology.h53770644editdlrm
torture.h45840644editdlrm
toshiba.h4600644editdlrm
tpm.h113400644editdlrm
tpm_command.h8470644editdlrm
tpm_eventlog.h66860644editdlrm
trace.h27900644editdlrm
tracefs.h10180644editdlrm
tracehook.h81580644editdlrm
tracepoint-defs.h23950644editdlrm
tracepoint.h184320644editdlrm
trace_clock.h6670644editdlrm
trace_events.h283420644editdlrm
trace_recursion.h56180644editdlrm
trace_seq.h40390644editdlrm
transport_class.h26410644editdlrm
ts-nbus.h5320644editdlrm
tsacct_kern.h12300644editdlrm
tty.h148690644editdlrm
tty_buffer.h13080644editdlrm
tty_driver.h160620644editdlrm
tty_flip.h17340644editdlrm
tty_ldisc.h86650644editdlrm
tty_port.h74130644editdlrm
typecheck.h7820644editdlrm
types.h58130644editdlrm
u64_stats_sync.h65630644editdlrm
uacce.h38770644editdlrm
uaccess.h133780644editdlrm
ucb1400.h42210644editdlrm
ucs2_string.h6620644editdlrm
udp.h54280644editdlrm
uidgid.h41710644editdlrm
uio.h93190644editdlrm
uio_driver.h48220644editdlrm
umh.h18370644editdlrm
unicode.h10460644editdlrm
units.h26540644editdlrm
uprobes.h61430644editdlrm
usb.h796270644editdlrm
usbdevice_fs.h22340644editdlrm
usb_usual.h36710644editdlrm
user-return-notifier.h12050644editdlrm
user.h220644editdlrm
userfaultfd_k.h65900644editdlrm
usermode_driver.h5150644editdlrm
user_namespace.h61790644editdlrm
util_macros.h25480644editdlrm
uts.h3880644editdlrm
utsname.h18270644editdlrm
uuid.h24000644editdlrm
vbox_utils.h17900644editdlrm
vdpa.h147230644editdlrm
verification.h18150644editdlrm
vermagic.h13080644editdlrm
vexpress.h2970644editdlrm
vfio.h84970644editdlrm
vfio_pci_core.h82660644editdlrm
vfs.h1160644editdlrm
vgaarb.h39720644editdlrm
vga_switcheroo.h88280644editdlrm
vhost_iotlb.h13690644editdlrm
via-core.h67230644editdlrm
via-gpio.h3100644editdlrm
via.h9320644editdlrm
via_i2c.h8440644editdlrm
videodev2.h27690644editdlrm
virtio.h68570644editdlrm
virtio_byteorder.h14910644editdlrm
virtio_caif.h5130644editdlrm
virtio_config.h166430644editdlrm
virtio_console.h19740644editdlrm
virtio_dma_buf.h11470644editdlrm
virtio_net.h61530644editdlrm
virtio_pci_modern.h33310644editdlrm
virtio_ring.h30200644editdlrm
virtio_vsock.h49070644editdlrm
visorbus.h125250644editdlrm
vlynq.h33000644editdlrm
vmacache.h7220644editdlrm
vmalloc.h85970644editdlrm
vme.h57950644editdlrm
vmpressure.h17240644editdlrm
vmstat.h151400644editdlrm
vmw_vmci_api.h29540644editdlrm
vmw_vmci_defs.h307510644editdlrm
vm_event_item.h35380644editdlrm
vringh.h88300644editdlrm
vsc.h19190644editdlrm
vt.h6110644editdlrm
vtime.h47090644editdlrm
vt_buffer.h15300644editdlrm
vt_kern.h54330644editdlrm
w1-gpio.h4930644editdlrm
w1.h91400644editdlrm
wait.h430530644editdlrm
wait_bit.h114680644editdlrm
watchdog.h84090644editdlrm
watch_queue.h39150644editdlrm
win_minmax.h8320644editdlrm
wireless.h16070644editdlrm
wkup_m3_ipc.h17950644editdlrm
wl12xx.h8100644editdlrm
wm97xx.h108420644editdlrm
wmi.h15980644editdlrm
workqueue.h229770644editdlrm
writeback.h131380644editdlrm
wwan.h52550644editdlrm
ww_mutex.h134260644editdlrm
xarray.h578090644editdlrm
xattr.h39770644editdlrm
xxhash.h84730644editdlrm
xz.h114270644editdlrm
yam.h22300644editdlrm
z2_battery.h2990644editdlrm
zconf.h17700644editdlrm
zlib.h287850644editdlrm
zorro.h36530644editdlrm
zpool.h33180644editdlrm
zsmalloc.h16680644editdlrm
zstd.h497460644editdlrm
zutil.h27930644editdlrm
Edit: /usr/src/linux-headers-5.15.0-181/include/linux/ntb.h (53691B)
/* * This file is provided under a dual BSD/GPLv2 license. When using or * redistributing this file, you may do so under either license. * * GPL LICENSE SUMMARY * * Copyright (C) 2015 EMC Corporation. All Rights Reserved. * Copyright (C) 2016 T-Platforms. All Rights Reserved. * * This program is free software; you can redistribute it and/or modify * it under the terms of version 2 of the GNU General Public License as * published by the Free Software Foundation. * * 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 * General Public License for more details. * * BSD LICENSE * * Copyright (C) 2015 EMC Corporation. All Rights Reserved. * Copyright (C) 2016 T-Platforms. All Rights Reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * * * Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * * Redistributions in binary form must reproduce the above copy * notice, this list of conditions and the following disclaimer in * the documentation and/or other materials provided with the * distribution. * * Neither the name of Intel Corporation nor the names of its * contributors may be used to endorse or promote products derived * from this software without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. * * PCIe NTB Linux driver * * Contact Information: * Allen Hubbe */ #ifndef _NTB_H_ #define _NTB_H_ #include #include #include struct ntb_client; struct ntb_dev; struct ntb_msi; struct pci_dev; /** * enum ntb_topo - NTB connection topology * @NTB_TOPO_NONE: Topology is unknown or invalid. * @NTB_TOPO_PRI: On primary side of local ntb. * @NTB_TOPO_SEC: On secondary side of remote ntb. * @NTB_TOPO_B2B_USD: On primary side of local ntb upstream of remote ntb. * @NTB_TOPO_B2B_DSD: On primary side of local ntb downstream of remote ntb. * @NTB_TOPO_SWITCH: Connected via a switch which supports ntb. * @NTB_TOPO_CROSSLINK: Connected via two symmetric switchecs */ enum ntb_topo { NTB_TOPO_NONE = -1, NTB_TOPO_PRI, NTB_TOPO_SEC, NTB_TOPO_B2B_USD, NTB_TOPO_B2B_DSD, NTB_TOPO_SWITCH, NTB_TOPO_CROSSLINK, }; static inline int ntb_topo_is_b2b(enum ntb_topo topo) { switch ((int)topo) { case NTB_TOPO_B2B_USD: case NTB_TOPO_B2B_DSD: return 1; } return 0; } static inline char *ntb_topo_string(enum ntb_topo topo) { switch (topo) { case NTB_TOPO_NONE: return "NTB_TOPO_NONE"; case NTB_TOPO_PRI: return "NTB_TOPO_PRI"; case NTB_TOPO_SEC: return "NTB_TOPO_SEC"; case NTB_TOPO_B2B_USD: return "NTB_TOPO_B2B_USD"; case NTB_TOPO_B2B_DSD: return "NTB_TOPO_B2B_DSD"; case NTB_TOPO_SWITCH: return "NTB_TOPO_SWITCH"; case NTB_TOPO_CROSSLINK: return "NTB_TOPO_CROSSLINK"; } return "NTB_TOPO_INVALID"; } /** * enum ntb_speed - NTB link training speed * @NTB_SPEED_AUTO: Request the max supported speed. * @NTB_SPEED_NONE: Link is not trained to any speed. * @NTB_SPEED_GEN1: Link is trained to gen1 speed. * @NTB_SPEED_GEN2: Link is trained to gen2 speed. * @NTB_SPEED_GEN3: Link is trained to gen3 speed. * @NTB_SPEED_GEN4: Link is trained to gen4 speed. */ enum ntb_speed { NTB_SPEED_AUTO = -1, NTB_SPEED_NONE = 0, NTB_SPEED_GEN1 = 1, NTB_SPEED_GEN2 = 2, NTB_SPEED_GEN3 = 3, NTB_SPEED_GEN4 = 4 }; /** * enum ntb_width - NTB link training width * @NTB_WIDTH_AUTO: Request the max supported width. * @NTB_WIDTH_NONE: Link is not trained to any width. * @NTB_WIDTH_1: Link is trained to 1 lane width. * @NTB_WIDTH_2: Link is trained to 2 lane width. * @NTB_WIDTH_4: Link is trained to 4 lane width. * @NTB_WIDTH_8: Link is trained to 8 lane width. * @NTB_WIDTH_12: Link is trained to 12 lane width. * @NTB_WIDTH_16: Link is trained to 16 lane width. * @NTB_WIDTH_32: Link is trained to 32 lane width. */ enum ntb_width { NTB_WIDTH_AUTO = -1, NTB_WIDTH_NONE = 0, NTB_WIDTH_1 = 1, NTB_WIDTH_2 = 2, NTB_WIDTH_4 = 4, NTB_WIDTH_8 = 8, NTB_WIDTH_12 = 12, NTB_WIDTH_16 = 16, NTB_WIDTH_32 = 32, }; /** * enum ntb_default_port - NTB default port number * @NTB_PORT_PRI_USD: Default port of the NTB_TOPO_PRI/NTB_TOPO_B2B_USD * topologies * @NTB_PORT_SEC_DSD: Default port of the NTB_TOPO_SEC/NTB_TOPO_B2B_DSD * topologies */ enum ntb_default_port { NTB_PORT_PRI_USD, NTB_PORT_SEC_DSD }; #define NTB_DEF_PEER_CNT (1) #define NTB_DEF_PEER_IDX (0) /** * struct ntb_client_ops - ntb client operations * @probe: Notify client of a new device. * @remove: Notify client to remove a device. */ struct ntb_client_ops { int (*probe)(struct ntb_client *client, struct ntb_dev *ntb); void (*remove)(struct ntb_client *client, struct ntb_dev *ntb); }; static inline int ntb_client_ops_is_valid(const struct ntb_client_ops *ops) { /* commented callbacks are not required: */ return ops->probe && ops->remove && 1; } /** * struct ntb_ctx_ops - ntb driver context operations * @link_event: See ntb_link_event(). * @db_event: See ntb_db_event(). * @msg_event: See ntb_msg_event(). */ struct ntb_ctx_ops { void (*link_event)(void *ctx); void (*db_event)(void *ctx, int db_vector); void (*msg_event)(void *ctx); }; static inline int ntb_ctx_ops_is_valid(const struct ntb_ctx_ops *ops) { /* commented callbacks are not required: */ return /* ops->link_event && */ /* ops->db_event && */ /* ops->msg_event && */ 1; } /** * struct ntb_dev_ops - ntb device operations * @port_number: See ntb_port_number(). * @peer_port_count: See ntb_peer_port_count(). * @peer_port_number: See ntb_peer_port_number(). * @peer_port_idx: See ntb_peer_port_idx(). * @link_is_up: See ntb_link_is_up(). * @link_enable: See ntb_link_enable(). * @link_disable: See ntb_link_disable(). * @mw_count: See ntb_mw_count(). * @mw_get_align: See ntb_mw_get_align(). * @mw_set_trans: See ntb_mw_set_trans(). * @mw_clear_trans: See ntb_mw_clear_trans(). * @peer_mw_count: See ntb_peer_mw_count(). * @peer_mw_get_addr: See ntb_peer_mw_get_addr(). * @peer_mw_set_trans: See ntb_peer_mw_set_trans(). * @peer_mw_clear_trans:See ntb_peer_mw_clear_trans(). * @db_is_unsafe: See ntb_db_is_unsafe(). * @db_valid_mask: See ntb_db_valid_mask(). * @db_vector_count: See ntb_db_vector_count(). * @db_vector_mask: See ntb_db_vector_mask(). * @db_read: See ntb_db_read(). * @db_set: See ntb_db_set(). * @db_clear: See ntb_db_clear(). * @db_read_mask: See ntb_db_read_mask(). * @db_set_mask: See ntb_db_set_mask(). * @db_clear_mask: See ntb_db_clear_mask(). * @peer_db_addr: See ntb_peer_db_addr(). * @peer_db_read: See ntb_peer_db_read(). * @peer_db_set: See ntb_peer_db_set(). * @peer_db_clear: See ntb_peer_db_clear(). * @peer_db_read_mask: See ntb_peer_db_read_mask(). * @peer_db_set_mask: See ntb_peer_db_set_mask(). * @peer_db_clear_mask: See ntb_peer_db_clear_mask(). * @spad_is_unsafe: See ntb_spad_is_unsafe(). * @spad_count: See ntb_spad_count(). * @spad_read: See ntb_spad_read(). * @spad_write: See ntb_spad_write(). * @peer_spad_addr: See ntb_peer_spad_addr(). * @peer_spad_read: See ntb_peer_spad_read(). * @peer_spad_write: See ntb_peer_spad_write(). * @msg_count: See ntb_msg_count(). * @msg_inbits: See ntb_msg_inbits(). * @msg_outbits: See ntb_msg_outbits(). * @msg_read_sts: See ntb_msg_read_sts(). * @msg_clear_sts: See ntb_msg_clear_sts(). * @msg_set_mask: See ntb_msg_set_mask(). * @msg_clear_mask: See ntb_msg_clear_mask(). * @msg_read: See ntb_msg_read(). * @peer_msg_write: See ntb_peer_msg_write(). */ struct ntb_dev_ops { int (*port_number)(struct ntb_dev *ntb); int (*peer_port_count)(struct ntb_dev *ntb); int (*peer_port_number)(struct ntb_dev *ntb, int pidx); int (*peer_port_idx)(struct ntb_dev *ntb, int port); u64 (*link_is_up)(struct ntb_dev *ntb, enum ntb_speed *speed, enum ntb_width *width); int (*link_enable)(struct ntb_dev *ntb, enum ntb_speed max_speed, enum ntb_width max_width); int (*link_disable)(struct ntb_dev *ntb); int (*mw_count)(struct ntb_dev *ntb, int pidx); int (*mw_get_align)(struct ntb_dev *ntb, int pidx, int widx, resource_size_t *addr_align, resource_size_t *size_align, resource_size_t *size_max); int (*mw_set_trans)(struct ntb_dev *ntb, int pidx, int widx, dma_addr_t addr, resource_size_t size); int (*mw_clear_trans)(struct ntb_dev *ntb, int pidx, int widx); int (*peer_mw_count)(struct ntb_dev *ntb); int (*peer_mw_get_addr)(struct ntb_dev *ntb, int widx, phys_addr_t *base, resource_size_t *size); int (*peer_mw_set_trans)(struct ntb_dev *ntb, int pidx, int widx, u64 addr, resource_size_t size); int (*peer_mw_clear_trans)(struct ntb_dev *ntb, int pidx, int widx); int (*db_is_unsafe)(struct ntb_dev *ntb); u64 (*db_valid_mask)(struct ntb_dev *ntb); int (*db_vector_count)(struct ntb_dev *ntb); u64 (*db_vector_mask)(struct ntb_dev *ntb, int db_vector); u64 (*db_read)(struct ntb_dev *ntb); int (*db_set)(struct ntb_dev *ntb, u64 db_bits); int (*db_clear)(struct ntb_dev *ntb, u64 db_bits); u64 (*db_read_mask)(struct ntb_dev *ntb); int (*db_set_mask)(struct ntb_dev *ntb, u64 db_bits); int (*db_clear_mask)(struct ntb_dev *ntb, u64 db_bits); int (*peer_db_addr)(struct ntb_dev *ntb, phys_addr_t *db_addr, resource_size_t *db_size, u64 *db_data, int db_bit); u64 (*peer_db_read)(struct ntb_dev *ntb); int (*peer_db_set)(struct ntb_dev *ntb, u64 db_bits); int (*peer_db_clear)(struct ntb_dev *ntb, u64 db_bits); u64 (*peer_db_read_mask)(struct ntb_dev *ntb); int (*peer_db_set_mask)(struct ntb_dev *ntb, u64 db_bits); int (*peer_db_clear_mask)(struct ntb_dev *ntb, u64 db_bits); int (*spad_is_unsafe)(struct ntb_dev *ntb); int (*spad_count)(struct ntb_dev *ntb); u32 (*spad_read)(struct ntb_dev *ntb, int sidx); int (*spad_write)(struct ntb_dev *ntb, int sidx, u32 val); int (*peer_spad_addr)(struct ntb_dev *ntb, int pidx, int sidx, phys_addr_t *spad_addr); u32 (*peer_spad_read)(struct ntb_dev *ntb, int pidx, int sidx); int (*peer_spad_write)(struct ntb_dev *ntb, int pidx, int sidx, u32 val); int (*msg_count)(struct ntb_dev *ntb); u64 (*msg_inbits)(struct ntb_dev *ntb); u64 (*msg_outbits)(struct ntb_dev *ntb); u64 (*msg_read_sts)(struct ntb_dev *ntb); int (*msg_clear_sts)(struct ntb_dev *ntb, u64 sts_bits); int (*msg_set_mask)(struct ntb_dev *ntb, u64 mask_bits); int (*msg_clear_mask)(struct ntb_dev *ntb, u64 mask_bits); u32 (*msg_read)(struct ntb_dev *ntb, int *pidx, int midx); int (*peer_msg_write)(struct ntb_dev *ntb, int pidx, int midx, u32 msg); }; static inline int ntb_dev_ops_is_valid(const struct ntb_dev_ops *ops) { /* commented callbacks are not required: */ return /* Port operations are required for multiport devices */ !ops->peer_port_count == !ops->port_number && !ops->peer_port_number == !ops->port_number && !ops->peer_port_idx == !ops->port_number && /* Link operations are required */ ops->link_is_up && ops->link_enable && ops->link_disable && /* One or both MW interfaces should be developed */ ops->mw_count && ops->mw_get_align && (ops->mw_set_trans || ops->peer_mw_set_trans) && /* ops->mw_clear_trans && */ ops->peer_mw_count && ops->peer_mw_get_addr && /* ops->peer_mw_clear_trans && */ /* Doorbell operations are mostly required */ /* ops->db_is_unsafe && */ ops->db_valid_mask && /* both set, or both unset */ (!ops->db_vector_count == !ops->db_vector_mask) && ops->db_read && /* ops->db_set && */ ops->db_clear && /* ops->db_read_mask && */ ops->db_set_mask && ops->db_clear_mask && /* ops->peer_db_addr && */ /* ops->peer_db_read && */ ops->peer_db_set && /* ops->peer_db_clear && */ /* ops->peer_db_read_mask && */ /* ops->peer_db_set_mask && */ /* ops->peer_db_clear_mask && */ /* Scrachpads interface is optional */ /* !ops->spad_is_unsafe == !ops->spad_count && */ !ops->spad_read == !ops->spad_count && !ops->spad_write == !ops->spad_count && /* !ops->peer_spad_addr == !ops->spad_count && */ /* !ops->peer_spad_read == !ops->spad_count && */ !ops->peer_spad_write == !ops->spad_count && /* Messaging interface is optional */ !ops->msg_inbits == !ops->msg_count && !ops->msg_outbits == !ops->msg_count && !ops->msg_read_sts == !ops->msg_count && !ops->msg_clear_sts == !ops->msg_count && /* !ops->msg_set_mask == !ops->msg_count && */ /* !ops->msg_clear_mask == !ops->msg_count && */ !ops->msg_read == !ops->msg_count && !ops->peer_msg_write == !ops->msg_count && 1; } /** * struct ntb_client - client interested in ntb devices * @drv: Linux driver object. * @ops: See &ntb_client_ops. */ struct ntb_client { struct device_driver drv; const struct ntb_client_ops ops; }; #define drv_ntb_client(__drv) container_of((__drv), struct ntb_client, drv) /** * struct ntb_dev - ntb device * @dev: Linux device object. * @pdev: PCI device entry of the ntb. * @topo: Detected topology of the ntb. * @ops: See &ntb_dev_ops. * @ctx: See &ntb_ctx_ops. * @ctx_ops: See &ntb_ctx_ops. */ struct ntb_dev { struct device dev; struct pci_dev *pdev; enum ntb_topo topo; const struct ntb_dev_ops *ops; void *ctx; const struct ntb_ctx_ops *ctx_ops; /* private: */ /* synchronize setting, clearing, and calling ctx_ops */ spinlock_t ctx_lock; /* block unregister until device is fully released */ struct completion released; #ifdef CONFIG_NTB_MSI struct ntb_msi *msi; #endif }; #define dev_ntb(__dev) container_of((__dev), struct ntb_dev, dev) /** * ntb_register_client() - register a client for interest in ntb devices * @client: Client context. * * The client will be added to the list of clients interested in ntb devices. * The client will be notified of any ntb devices that are not already * associated with a client, or if ntb devices are registered later. * * Return: Zero if the client is registered, otherwise an error number. */ #define ntb_register_client(client) \ __ntb_register_client((client), THIS_MODULE, KBUILD_MODNAME) int __ntb_register_client(struct ntb_client *client, struct module *mod, const char *mod_name); /** * ntb_unregister_client() - unregister a client for interest in ntb devices * @client: Client context. * * The client will be removed from the list of clients interested in ntb * devices. If any ntb devices are associated with the client, the client will * be notified to remove those devices. */ void ntb_unregister_client(struct ntb_client *client); #define module_ntb_client(__ntb_client) \ module_driver(__ntb_client, ntb_register_client, \ ntb_unregister_client) /** * ntb_register_device() - register a ntb device * @ntb: NTB device context. * * The device will be added to the list of ntb devices. If any clients are * interested in ntb devices, each client will be notified of the ntb device, * until at most one client accepts the device. * * Return: Zero if the device is registered, otherwise an error number. */ int ntb_register_device(struct ntb_dev *ntb); /** * ntb_unregister_device() - unregister a ntb device * @ntb: NTB device context. * * The device will be removed from the list of ntb devices. If the ntb device * is associated with a client, the client will be notified to remove the * device. */ void ntb_unregister_device(struct ntb_dev *ntb); /** * ntb_set_ctx() - associate a driver context with an ntb device * @ntb: NTB device context. * @ctx: Driver context. * @ctx_ops: Driver context operations. * * Associate a driver context and operations with a ntb device. The context is * provided by the client driver, and the driver may associate a different * context with each ntb device. * * Return: Zero if the context is associated, otherwise an error number. */ int ntb_set_ctx(struct ntb_dev *ntb, void *ctx, const struct ntb_ctx_ops *ctx_ops); /** * ntb_clear_ctx() - disassociate any driver context from an ntb device * @ntb: NTB device context. * * Clear any association that may exist between a driver context and the ntb * device. */ void ntb_clear_ctx(struct ntb_dev *ntb); /** * ntb_link_event() - notify driver context of a change in link status * @ntb: NTB device context. * * Notify the driver context that the link status may have changed. The driver * should call ntb_link_is_up() to get the current status. */ void ntb_link_event(struct ntb_dev *ntb); /** * ntb_db_event() - notify driver context of a doorbell event * @ntb: NTB device context. * @vector: Interrupt vector number. * * Notify the driver context of a doorbell event. If hardware supports * multiple interrupt vectors for doorbells, the vector number indicates which * vector received the interrupt. The vector number is relative to the first * vector used for doorbells, starting at zero, and must be less than * ntb_db_vector_count(). The driver may call ntb_db_read() to check which * doorbell bits need service, and ntb_db_vector_mask() to determine which of * those bits are associated with the vector number. */ void ntb_db_event(struct ntb_dev *ntb, int vector); /** * ntb_msg_event() - notify driver context of a message event * @ntb: NTB device context. * * Notify the driver context of a message event. If hardware supports * message registers, this event indicates, that a new message arrived in * some incoming message register or last sent message couldn't be delivered. * The events can be masked/unmasked by the methods ntb_msg_set_mask() and * ntb_msg_clear_mask(). */ void ntb_msg_event(struct ntb_dev *ntb); /** * ntb_default_port_number() - get the default local port number * @ntb: NTB device context. * * If hardware driver doesn't specify port_number() callback method, the NTB * is considered with just two ports. So this method returns default local * port number in compliance with topology. * * NOTE Don't call this method directly. The ntb_port_number() function should * be used instead. * * Return: the default local port number */ int ntb_default_port_number(struct ntb_dev *ntb); /** * ntb_default_port_count() - get the default number of peer device ports * @ntb: NTB device context. * * By default hardware driver supports just one peer device. * * NOTE Don't call this method directly. The ntb_peer_port_count() function * should be used instead. * * Return: the default number of peer ports */ int ntb_default_peer_port_count(struct ntb_dev *ntb); /** * ntb_default_peer_port_number() - get the default peer port by given index * @ntb: NTB device context. * @idx: Peer port index (should not differ from zero). * * By default hardware driver supports just one peer device, so this method * shall return the corresponding value from enum ntb_default_port. * * NOTE Don't call this method directly. The ntb_peer_port_number() function * should be used instead. * * Return: the peer device port or negative value indicating an error */ int ntb_default_peer_port_number(struct ntb_dev *ntb, int pidx); /** * ntb_default_peer_port_idx() - get the default peer device port index by * given port number * @ntb: NTB device context. * @port: Peer port number (should be one of enum ntb_default_port). * * By default hardware driver supports just one peer device, so while * specified port-argument indicates peer port from enum ntb_default_port, * the return value shall be zero. * * NOTE Don't call this method directly. The ntb_peer_port_idx() function * should be used instead. * * Return: the peer port index or negative value indicating an error */ int ntb_default_peer_port_idx(struct ntb_dev *ntb, int port); /** * ntb_port_number() - get the local port number * @ntb: NTB device context. * * Hardware must support at least simple two-ports ntb connection * * Return: the local port number */ static inline int ntb_port_number(struct ntb_dev *ntb) { if (!ntb->ops->port_number) return ntb_default_port_number(ntb); return ntb->ops->port_number(ntb); } /** * ntb_peer_port_count() - get the number of peer device ports * @ntb: NTB device context. * * Hardware may support an access to memory of several remote domains * over multi-port NTB devices. This method returns the number of peers, * local device can have shared memory with. * * Return: the number of peer ports */ static inline int ntb_peer_port_count(struct ntb_dev *ntb) { if (!ntb->ops->peer_port_count) return ntb_default_peer_port_count(ntb); return ntb->ops->peer_port_count(ntb); } /** * ntb_peer_port_number() - get the peer port by given index * @ntb: NTB device context. * @pidx: Peer port index. * * Peer ports are continuously enumerated by NTB API logic, so this method * lets to retrieve port real number by its index. * * Return: the peer device port or negative value indicating an error */ static inline int ntb_peer_port_number(struct ntb_dev *ntb, int pidx) { if (!ntb->ops->peer_port_number) return ntb_default_peer_port_number(ntb, pidx); return ntb->ops->peer_port_number(ntb, pidx); } /** * ntb_logical_port_number() - get the logical port number of the local port * @ntb: NTB device context. * * The Logical Port Number is defined to be a unique number for each * port starting from zero through to the number of ports minus one. * This is in contrast to the Port Number where each port can be assigned * any unique physical number by the hardware. * * The logical port number is useful for calculating the resource indexes * used by peers. * * Return: the logical port number or negative value indicating an error */ static inline int ntb_logical_port_number(struct ntb_dev *ntb) { int lport = ntb_port_number(ntb); int pidx; if (lport < 0) return lport; for (pidx = 0; pidx < ntb_peer_port_count(ntb); pidx++) if (lport <= ntb_peer_port_number(ntb, pidx)) return pidx; return pidx; } /** * ntb_peer_logical_port_number() - get the logical peer port by given index * @ntb: NTB device context. * @pidx: Peer port index. * * The Logical Port Number is defined to be a unique number for each * port starting from zero through to the number of ports minus one. * This is in contrast to the Port Number where each port can be assigned * any unique physical number by the hardware. * * The logical port number is useful for calculating the resource indexes * used by peers. * * Return: the peer's logical port number or negative value indicating an error */ static inline int ntb_peer_logical_port_number(struct ntb_dev *ntb, int pidx) { if (ntb_peer_port_number(ntb, pidx) < ntb_port_number(ntb)) return pidx; else return pidx + 1; } /** * ntb_peer_port_idx() - get the peer device port index by given port number * @ntb: NTB device context. * @port: Peer port number. * * Inverse operation of ntb_peer_port_number(), so one can get port index * by specified port number. * * Return: the peer port index or negative value indicating an error */ static inline int ntb_peer_port_idx(struct ntb_dev *ntb, int port) { if (!ntb->ops->peer_port_idx) return ntb_default_peer_port_idx(ntb, port); return ntb->ops->peer_port_idx(ntb, port); } /** * ntb_link_is_up() - get the current ntb link state * @ntb: NTB device context. * @speed: OUT - The link speed expressed as PCIe generation number. * @width: OUT - The link width expressed as the number of PCIe lanes. * * Get the current state of the ntb link. It is recommended to query the link * state once after every link event. It is safe to query the link state in * the context of the link event callback. * * Return: bitfield of indexed ports link state: bit is set/cleared if the * link is up/down respectively. */ static inline u64 ntb_link_is_up(struct ntb_dev *ntb, enum ntb_speed *speed, enum ntb_width *width) { return ntb->ops->link_is_up(ntb, speed, width); } /** * ntb_link_enable() - enable the local port ntb connection * @ntb: NTB device context. * @max_speed: The maximum link speed expressed as PCIe generation number. * @max_width: The maximum link width expressed as the number of PCIe lanes. * * Enable the NTB/PCIe link on the local or remote (for bridge-to-bridge * topology) side of the bridge. If it's supported the ntb device should train * the link to its maximum speed and width, or the requested speed and width, * whichever is smaller. Some hardware doesn't support PCIe link training, so * the last two arguments will be ignored then. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_link_enable(struct ntb_dev *ntb, enum ntb_speed max_speed, enum ntb_width max_width) { return ntb->ops->link_enable(ntb, max_speed, max_width); } /** * ntb_link_disable() - disable the local port ntb connection * @ntb: NTB device context. * * Disable the link on the local or remote (for b2b topology) of the ntb. * The ntb device should disable the link. Returning from this call must * indicate that a barrier has passed, though with no more writes may pass in * either direction across the link, except if this call returns an error * number. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_link_disable(struct ntb_dev *ntb) { return ntb->ops->link_disable(ntb); } /** * ntb_mw_count() - get the number of inbound memory windows, which could * be created for a specified peer device * @ntb: NTB device context. * @pidx: Port index of peer device. * * Hardware and topology may support a different number of memory windows. * Moreover different peer devices can support different number of memory * windows. Simply speaking this method returns the number of possible inbound * memory windows to share with specified peer device. Note: this may return * zero if the link is not up yet. * * Return: the number of memory windows. */ static inline int ntb_mw_count(struct ntb_dev *ntb, int pidx) { return ntb->ops->mw_count(ntb, pidx); } /** * ntb_mw_get_align() - get the restriction parameters of inbound memory window * @ntb: NTB device context. * @pidx: Port index of peer device. * @widx: Memory window index. * @addr_align: OUT - the base alignment for translating the memory window * @size_align: OUT - the size alignment for translating the memory window * @size_max: OUT - the maximum size of the memory window * * Get the alignments of an inbound memory window with specified index. * NULL may be given for any output parameter if the value is not needed. * The alignment and size parameters may be used for allocation of proper * shared memory. Note: this must only be called when the link is up. * * Return: Zero on success, otherwise a negative error number. */ static inline int ntb_mw_get_align(struct ntb_dev *ntb, int pidx, int widx, resource_size_t *addr_align, resource_size_t *size_align, resource_size_t *size_max) { if (!(ntb_link_is_up(ntb, NULL, NULL) & BIT_ULL(pidx))) return -ENOTCONN; return ntb->ops->mw_get_align(ntb, pidx, widx, addr_align, size_align, size_max); } /** * ntb_mw_set_trans() - set the translation of an inbound memory window * @ntb: NTB device context. * @pidx: Port index of peer device. * @widx: Memory window index. * @addr: The dma address of local memory to expose to the peer. * @size: The size of the local memory to expose to the peer. * * Set the translation of a memory window. The peer may access local memory * through the window starting at the address, up to the size. The address * and size must be aligned in compliance with restrictions of * ntb_mw_get_align(). The region size should not exceed the size_max parameter * of that method. * * This method may not be implemented due to the hardware specific memory * windows interface. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_mw_set_trans(struct ntb_dev *ntb, int pidx, int widx, dma_addr_t addr, resource_size_t size) { if (!ntb->ops->mw_set_trans) return 0; return ntb->ops->mw_set_trans(ntb, pidx, widx, addr, size); } /** * ntb_mw_clear_trans() - clear the translation address of an inbound memory * window * @ntb: NTB device context. * @pidx: Port index of peer device. * @widx: Memory window index. * * Clear the translation of an inbound memory window. The peer may no longer * access local memory through the window. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_mw_clear_trans(struct ntb_dev *ntb, int pidx, int widx) { if (!ntb->ops->mw_clear_trans) return ntb_mw_set_trans(ntb, pidx, widx, 0, 0); return ntb->ops->mw_clear_trans(ntb, pidx, widx); } /** * ntb_peer_mw_count() - get the number of outbound memory windows, which could * be mapped to access a shared memory * @ntb: NTB device context. * * Hardware and topology may support a different number of memory windows. * This method returns the number of outbound memory windows supported by * local device. * * Return: the number of memory windows. */ static inline int ntb_peer_mw_count(struct ntb_dev *ntb) { return ntb->ops->peer_mw_count(ntb); } /** * ntb_peer_mw_get_addr() - get map address of an outbound memory window * @ntb: NTB device context. * @widx: Memory window index (within ntb_peer_mw_count() return value). * @base: OUT - the base address of mapping region. * @size: OUT - the size of mapping region. * * Get base and size of memory region to map. NULL may be given for any output * parameter if the value is not needed. The base and size may be used for * mapping the memory window, to access the peer memory. * * Return: Zero on success, otherwise a negative error number. */ static inline int ntb_peer_mw_get_addr(struct ntb_dev *ntb, int widx, phys_addr_t *base, resource_size_t *size) { return ntb->ops->peer_mw_get_addr(ntb, widx, base, size); } /** * ntb_peer_mw_set_trans() - set a translation address of a memory window * retrieved from a peer device * @ntb: NTB device context. * @pidx: Port index of peer device the translation address received from. * @widx: Memory window index. * @addr: The dma address of the shared memory to access. * @size: The size of the shared memory to access. * * Set the translation of an outbound memory window. The local device may * access shared memory allocated by a peer device sent the address. * * This method may not be implemented due to the hardware specific memory * windows interface, so a translation address can be only set on the side, * where shared memory (inbound memory windows) is allocated. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_peer_mw_set_trans(struct ntb_dev *ntb, int pidx, int widx, u64 addr, resource_size_t size) { if (!ntb->ops->peer_mw_set_trans) return 0; return ntb->ops->peer_mw_set_trans(ntb, pidx, widx, addr, size); } /** * ntb_peer_mw_clear_trans() - clear the translation address of an outbound * memory window * @ntb: NTB device context. * @pidx: Port index of peer device. * @widx: Memory window index. * * Clear the translation of a outbound memory window. The local device may no * longer access a shared memory through the window. * * This method may not be implemented due to the hardware specific memory * windows interface. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_peer_mw_clear_trans(struct ntb_dev *ntb, int pidx, int widx) { if (!ntb->ops->peer_mw_clear_trans) return ntb_peer_mw_set_trans(ntb, pidx, widx, 0, 0); return ntb->ops->peer_mw_clear_trans(ntb, pidx, widx); } /** * ntb_db_is_unsafe() - check if it is safe to use hardware doorbell * @ntb: NTB device context. * * It is possible for some ntb hardware to be affected by errata. Hardware * drivers can advise clients to avoid using doorbells. Clients may ignore * this advice, though caution is recommended. * * Return: Zero if it is safe to use doorbells, or One if it is not safe. */ static inline int ntb_db_is_unsafe(struct ntb_dev *ntb) { if (!ntb->ops->db_is_unsafe) return 0; return ntb->ops->db_is_unsafe(ntb); } /** * ntb_db_valid_mask() - get a mask of doorbell bits supported by the ntb * @ntb: NTB device context. * * Hardware may support different number or arrangement of doorbell bits. * * Return: A mask of doorbell bits supported by the ntb. */ static inline u64 ntb_db_valid_mask(struct ntb_dev *ntb) { return ntb->ops->db_valid_mask(ntb); } /** * ntb_db_vector_count() - get the number of doorbell interrupt vectors * @ntb: NTB device context. * * Hardware may support different number of interrupt vectors. * * Return: The number of doorbell interrupt vectors. */ static inline int ntb_db_vector_count(struct ntb_dev *ntb) { if (!ntb->ops->db_vector_count) return 1; return ntb->ops->db_vector_count(ntb); } /** * ntb_db_vector_mask() - get a mask of doorbell bits serviced by a vector * @ntb: NTB device context. * @vector: Doorbell vector number. * * Each interrupt vector may have a different number or arrangement of bits. * * Return: A mask of doorbell bits serviced by a vector. */ static inline u64 ntb_db_vector_mask(struct ntb_dev *ntb, int vector) { if (!ntb->ops->db_vector_mask) return ntb_db_valid_mask(ntb); return ntb->ops->db_vector_mask(ntb, vector); } /** * ntb_db_read() - read the local doorbell register * @ntb: NTB device context. * * Read the local doorbell register, and return the bits that are set. * * Return: The bits currently set in the local doorbell register. */ static inline u64 ntb_db_read(struct ntb_dev *ntb) { return ntb->ops->db_read(ntb); } /** * ntb_db_set() - set bits in the local doorbell register * @ntb: NTB device context. * @db_bits: Doorbell bits to set. * * Set bits in the local doorbell register, which may generate a local doorbell * interrupt. Bits that were already set must remain set. * * This is unusual, and hardware may not support it. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_db_set(struct ntb_dev *ntb, u64 db_bits) { if (!ntb->ops->db_set) return -EINVAL; return ntb->ops->db_set(ntb, db_bits); } /** * ntb_db_clear() - clear bits in the local doorbell register * @ntb: NTB device context. * @db_bits: Doorbell bits to clear. * * Clear bits in the local doorbell register, arming the bits for the next * doorbell. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_db_clear(struct ntb_dev *ntb, u64 db_bits) { return ntb->ops->db_clear(ntb, db_bits); } /** * ntb_db_read_mask() - read the local doorbell mask * @ntb: NTB device context. * * Read the local doorbell mask register, and return the bits that are set. * * This is unusual, though hardware is likely to support it. * * Return: The bits currently set in the local doorbell mask register. */ static inline u64 ntb_db_read_mask(struct ntb_dev *ntb) { if (!ntb->ops->db_read_mask) return 0; return ntb->ops->db_read_mask(ntb); } /** * ntb_db_set_mask() - set bits in the local doorbell mask * @ntb: NTB device context. * @db_bits: Doorbell mask bits to set. * * Set bits in the local doorbell mask register, preventing doorbell interrupts * from being generated for those doorbell bits. Bits that were already set * must remain set. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_db_set_mask(struct ntb_dev *ntb, u64 db_bits) { return ntb->ops->db_set_mask(ntb, db_bits); } /** * ntb_db_clear_mask() - clear bits in the local doorbell mask * @ntb: NTB device context. * @db_bits: Doorbell bits to clear. * * Clear bits in the local doorbell mask register, allowing doorbell interrupts * from being generated for those doorbell bits. If a doorbell bit is already * set at the time the mask is cleared, and the corresponding mask bit is * changed from set to clear, then the ntb driver must ensure that * ntb_db_event() is called. If the hardware does not generate the interrupt * on clearing the mask bit, then the driver must call ntb_db_event() anyway. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_db_clear_mask(struct ntb_dev *ntb, u64 db_bits) { return ntb->ops->db_clear_mask(ntb, db_bits); } /** * ntb_peer_db_addr() - address and size of the peer doorbell register * @ntb: NTB device context. * @db_addr: OUT - The address of the peer doorbell register. * @db_size: OUT - The number of bytes to write the peer doorbell register. * @db_data: OUT - The data of peer doorbell register * @db_bit: door bell bit number * * Return the address of the peer doorbell register. This may be used, for * example, by drivers that offload memory copy operations to a dma engine. * The drivers may wish to ring the peer doorbell at the completion of memory * copy operations. For efficiency, and to simplify ordering of operations * between the dma memory copies and the ringing doorbell, the driver may * append one additional dma memory copy with the doorbell register as the * destination, after the memory copy operations. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_peer_db_addr(struct ntb_dev *ntb, phys_addr_t *db_addr, resource_size_t *db_size, u64 *db_data, int db_bit) { if (!ntb->ops->peer_db_addr) return -EINVAL; return ntb->ops->peer_db_addr(ntb, db_addr, db_size, db_data, db_bit); } /** * ntb_peer_db_read() - read the peer doorbell register * @ntb: NTB device context. * * Read the peer doorbell register, and return the bits that are set. * * This is unusual, and hardware may not support it. * * Return: The bits currently set in the peer doorbell register. */ static inline u64 ntb_peer_db_read(struct ntb_dev *ntb) { if (!ntb->ops->peer_db_read) return 0; return ntb->ops->peer_db_read(ntb); } /** * ntb_peer_db_set() - set bits in the peer doorbell register * @ntb: NTB device context. * @db_bits: Doorbell bits to set. * * Set bits in the peer doorbell register, which may generate a peer doorbell * interrupt. Bits that were already set must remain set. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_peer_db_set(struct ntb_dev *ntb, u64 db_bits) { return ntb->ops->peer_db_set(ntb, db_bits); } /** * ntb_peer_db_clear() - clear bits in the peer doorbell register * @ntb: NTB device context. * @db_bits: Doorbell bits to clear. * * Clear bits in the peer doorbell register, arming the bits for the next * doorbell. * * This is unusual, and hardware may not support it. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_peer_db_clear(struct ntb_dev *ntb, u64 db_bits) { if (!ntb->ops->db_clear) return -EINVAL; return ntb->ops->peer_db_clear(ntb, db_bits); } /** * ntb_peer_db_read_mask() - read the peer doorbell mask * @ntb: NTB device context. * * Read the peer doorbell mask register, and return the bits that are set. * * This is unusual, and hardware may not support it. * * Return: The bits currently set in the peer doorbell mask register. */ static inline u64 ntb_peer_db_read_mask(struct ntb_dev *ntb) { if (!ntb->ops->db_read_mask) return 0; return ntb->ops->peer_db_read_mask(ntb); } /** * ntb_peer_db_set_mask() - set bits in the peer doorbell mask * @ntb: NTB device context. * @db_bits: Doorbell mask bits to set. * * Set bits in the peer doorbell mask register, preventing doorbell interrupts * from being generated for those doorbell bits. Bits that were already set * must remain set. * * This is unusual, and hardware may not support it. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_peer_db_set_mask(struct ntb_dev *ntb, u64 db_bits) { if (!ntb->ops->db_set_mask) return -EINVAL; return ntb->ops->peer_db_set_mask(ntb, db_bits); } /** * ntb_peer_db_clear_mask() - clear bits in the peer doorbell mask * @ntb: NTB device context. * @db_bits: Doorbell bits to clear. * * Clear bits in the peer doorbell mask register, allowing doorbell interrupts * from being generated for those doorbell bits. If the hardware does not * generate the interrupt on clearing the mask bit, then the driver should not * implement this function! * * This is unusual, and hardware may not support it. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_peer_db_clear_mask(struct ntb_dev *ntb, u64 db_bits) { if (!ntb->ops->db_clear_mask) return -EINVAL; return ntb->ops->peer_db_clear_mask(ntb, db_bits); } /** * ntb_spad_is_unsafe() - check if it is safe to use the hardware scratchpads * @ntb: NTB device context. * * It is possible for some ntb hardware to be affected by errata. Hardware * drivers can advise clients to avoid using scratchpads. Clients may ignore * this advice, though caution is recommended. * * Return: Zero if it is safe to use scratchpads, or One if it is not safe. */ static inline int ntb_spad_is_unsafe(struct ntb_dev *ntb) { if (!ntb->ops->spad_is_unsafe) return 0; return ntb->ops->spad_is_unsafe(ntb); } /** * ntb_spad_count() - get the number of scratchpads * @ntb: NTB device context. * * Hardware and topology may support a different number of scratchpads. * Although it must be the same for all ports per NTB device. * * Return: the number of scratchpads. */ static inline int ntb_spad_count(struct ntb_dev *ntb) { if (!ntb->ops->spad_count) return 0; return ntb->ops->spad_count(ntb); } /** * ntb_spad_read() - read the local scratchpad register * @ntb: NTB device context. * @sidx: Scratchpad index. * * Read the local scratchpad register, and return the value. * * Return: The value of the local scratchpad register. */ static inline u32 ntb_spad_read(struct ntb_dev *ntb, int sidx) { if (!ntb->ops->spad_read) return ~(u32)0; return ntb->ops->spad_read(ntb, sidx); } /** * ntb_spad_write() - write the local scratchpad register * @ntb: NTB device context. * @sidx: Scratchpad index. * @val: Scratchpad value. * * Write the value to the local scratchpad register. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_spad_write(struct ntb_dev *ntb, int sidx, u32 val) { if (!ntb->ops->spad_write) return -EINVAL; return ntb->ops->spad_write(ntb, sidx, val); } /** * ntb_peer_spad_addr() - address of the peer scratchpad register * @ntb: NTB device context. * @pidx: Port index of peer device. * @sidx: Scratchpad index. * @spad_addr: OUT - The address of the peer scratchpad register. * * Return the address of the peer scratchpad register. This may be used, for * example, by drivers that offload memory copy operations to a dma engine. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_peer_spad_addr(struct ntb_dev *ntb, int pidx, int sidx, phys_addr_t *spad_addr) { if (!ntb->ops->peer_spad_addr) return -EINVAL; return ntb->ops->peer_spad_addr(ntb, pidx, sidx, spad_addr); } /** * ntb_peer_spad_read() - read the peer scratchpad register * @ntb: NTB device context. * @pidx: Port index of peer device. * @sidx: Scratchpad index. * * Read the peer scratchpad register, and return the value. * * Return: The value of the peer scratchpad register. */ static inline u32 ntb_peer_spad_read(struct ntb_dev *ntb, int pidx, int sidx) { if (!ntb->ops->peer_spad_read) return ~(u32)0; return ntb->ops->peer_spad_read(ntb, pidx, sidx); } /** * ntb_peer_spad_write() - write the peer scratchpad register * @ntb: NTB device context. * @pidx: Port index of peer device. * @sidx: Scratchpad index. * @val: Scratchpad value. * * Write the value to the peer scratchpad register. * * Return: Zero on success, otherwise an error number. */ static inline int ntb_peer_spad_write(struct ntb_dev *ntb, int pidx, int sidx, u32 val) { if (!ntb->ops->peer_spad_write) return -EINVAL; return ntb->ops->peer_spad_write(ntb, pidx, sidx, val); } /** * ntb_msg_count() - get the number of message registers * @ntb: NTB device context. * * Hardware may support a different number of message registers. * * Return: the number of message registers. */ static inline int ntb_msg_count(struct ntb_dev *ntb) { if (!ntb->ops->msg_count) return 0; return ntb->ops->msg_count(ntb); } /** * ntb_msg_inbits() - get a bitfield of inbound message registers status * @ntb: NTB device context. * * The method returns the bitfield of status and mask registers, which related * to inbound message registers. * * Return: bitfield of inbound message registers. */ static inline u64 ntb_msg_inbits(struct ntb_dev *ntb) { if (!ntb->ops->msg_inbits) return 0; return ntb->ops->msg_inbits(ntb); } /** * ntb_msg_outbits() - get a bitfield of outbound message registers status * @ntb: NTB device context. * * The method returns the bitfield of status and mask registers, which related * to outbound message registers. * * Return: bitfield of outbound message registers. */ static inline u64 ntb_msg_outbits(struct ntb_dev *ntb) { if (!ntb->ops->msg_outbits) return 0; return ntb->ops->msg_outbits(ntb); } /** * ntb_msg_read_sts() - read the message registers status * @ntb: NTB device context. * * Read the status of message register. Inbound and outbound message registers * related bits can be filtered by masks retrieved from ntb_msg_inbits() and * ntb_msg_outbits(). * * Return: status bits of message registers */ static inline u64 ntb_msg_read_sts(struct ntb_dev *ntb) { if (!ntb->ops->msg_read_sts) return 0; return ntb->ops->msg_read_sts(ntb); } /** * ntb_msg_clear_sts() - clear status bits of message registers * @ntb: NTB device context. * @sts_bits: Status bits to clear. * * Clear bits in the status register. * * Return: Zero on success, otherwise a negative error number. */ static inline int ntb_msg_clear_sts(struct ntb_dev *ntb, u64 sts_bits) { if (!ntb->ops->msg_clear_sts) return -EINVAL; return ntb->ops->msg_clear_sts(ntb, sts_bits); } /** * ntb_msg_set_mask() - set mask of message register status bits * @ntb: NTB device context. * @mask_bits: Mask bits. * * Mask the message registers status bits from raising the message event. * * Return: Zero on success, otherwise a negative error number. */ static inline int ntb_msg_set_mask(struct ntb_dev *ntb, u64 mask_bits) { if (!ntb->ops->msg_set_mask) return -EINVAL; return ntb->ops->msg_set_mask(ntb, mask_bits); } /** * ntb_msg_clear_mask() - clear message registers mask * @ntb: NTB device context. * @mask_bits: Mask bits to clear. * * Clear bits in the message events mask register. * * Return: Zero on success, otherwise a negative error number. */ static inline int ntb_msg_clear_mask(struct ntb_dev *ntb, u64 mask_bits) { if (!ntb->ops->msg_clear_mask) return -EINVAL; return ntb->ops->msg_clear_mask(ntb, mask_bits); } /** * ntb_msg_read() - read inbound message register with specified index * @ntb: NTB device context. * @pidx: OUT - Port index of peer device a message retrieved from * @midx: Message register index * * Read data from the specified message register. Source port index of a * message is retrieved as well. * * Return: The value of the inbound message register. */ static inline u32 ntb_msg_read(struct ntb_dev *ntb, int *pidx, int midx) { if (!ntb->ops->msg_read) return ~(u32)0; return ntb->ops->msg_read(ntb, pidx, midx); } /** * ntb_peer_msg_write() - write data to the specified peer message register * @ntb: NTB device context. * @pidx: Port index of peer device a message being sent to * @midx: Message register index * @msg: Data to send * * Send data to a specified peer device using the defined message register. * Message event can be raised if the midx registers isn't empty while * calling this method and the corresponding interrupt isn't masked. * * Return: Zero on success, otherwise a negative error number. */ static inline int ntb_peer_msg_write(struct ntb_dev *ntb, int pidx, int midx, u32 msg) { if (!ntb->ops->peer_msg_write) return -EINVAL; return ntb->ops->peer_msg_write(ntb, pidx, midx, msg); } /** * ntb_peer_resource_idx() - get a resource index for a given peer idx * @ntb: NTB device context. * @pidx: Peer port index. * * When constructing a graph of peers, each remote peer must use a different * resource index (mw, doorbell, etc) to communicate with each other * peer. * * In a two peer system, this function should always return 0 such that * resource 0 points to the remote peer on both ports. * * In a 5 peer system, this function will return the following matrix * * pidx \ port 0 1 2 3 4 * 0 0 0 1 2 3 * 1 0 1 1 2 3 * 2 0 1 2 2 3 * 3 0 1 2 3 3 * * For example, if this function is used to program peer's memory * windows, port 0 will program MW 0 on all it's peers to point to itself. * port 1 will program MW 0 in port 0 to point to itself and MW 1 on all * other ports. etc. * * For the legacy two host case, ntb_port_number() and ntb_peer_port_number() * both return zero and therefore this function will always return zero. * So MW 0 on each host would be programmed to point to the other host. * * Return: the resource index to use for that peer. */ static inline int ntb_peer_resource_idx(struct ntb_dev *ntb, int pidx) { int local_port, peer_port; if (pidx >= ntb_peer_port_count(ntb)) return -EINVAL; local_port = ntb_logical_port_number(ntb); peer_port = ntb_peer_logical_port_number(ntb, pidx); if (peer_port < local_port) return local_port - 1; else return local_port; } /** * ntb_peer_highest_mw_idx() - get a memory window index for a given peer idx * using the highest index memory windows first * * @ntb: NTB device context. * @pidx: Peer port index. * * Like ntb_peer_resource_idx(), except it returns indexes starting with * last memory window index. * * Return: the resource index to use for that peer. */ static inline int ntb_peer_highest_mw_idx(struct ntb_dev *ntb, int pidx) { int ret; ret = ntb_peer_resource_idx(ntb, pidx); if (ret < 0) return ret; return ntb_mw_count(ntb, pidx) - ret - 1; } struct ntb_msi_desc { u32 addr_offset; u32 data; }; #ifdef CONFIG_NTB_MSI int ntb_msi_init(struct ntb_dev *ntb, void (*desc_changed)(void *ctx)); int ntb_msi_setup_mws(struct ntb_dev *ntb); void ntb_msi_clear_mws(struct ntb_dev *ntb); int ntbm_msi_request_threaded_irq(struct ntb_dev *ntb, irq_handler_t handler, irq_handler_t thread_fn, const char *name, void *dev_id, struct ntb_msi_desc *msi_desc); void ntbm_msi_free_irq(struct ntb_dev *ntb, unsigned int irq, void *dev_id); int ntb_msi_peer_trigger(struct ntb_dev *ntb, int peer, struct ntb_msi_desc *desc); int ntb_msi_peer_addr(struct ntb_dev *ntb, int peer, struct ntb_msi_desc *desc, phys_addr_t *msi_addr); #else /* not CONFIG_NTB_MSI */ static inline int ntb_msi_init(struct ntb_dev *ntb, void (*desc_changed)(void *ctx)) { return -EOPNOTSUPP; } static inline int ntb_msi_setup_mws(struct ntb_dev *ntb) { return -EOPNOTSUPP; } static inline void ntb_msi_clear_mws(struct ntb_dev *ntb) {} static inline int ntbm_msi_request_threaded_irq(struct ntb_dev *ntb, irq_handler_t handler, irq_handler_t thread_fn, const char *name, void *dev_id, struct ntb_msi_desc *msi_desc) { return -EOPNOTSUPP; } static inline void ntbm_msi_free_irq(struct ntb_dev *ntb, unsigned int irq, void *dev_id) {} static inline int ntb_msi_peer_trigger(struct ntb_dev *ntb, int peer, struct ntb_msi_desc *desc) { return -EOPNOTSUPP; } static inline int ntb_msi_peer_addr(struct ntb_dev *ntb, int peer, struct ntb_msi_desc *desc, phys_addr_t *msi_addr) { return -EOPNOTSUPP; } #endif /* CONFIG_NTB_MSI */ static inline int ntbm_msi_request_irq(struct ntb_dev *ntb, irq_handler_t handler, const char *name, void *dev_id, struct ntb_msi_desc *msi_desc) { return ntbm_msi_request_threaded_irq(ntb, handler, NULL, name, dev_id, msi_desc); } #endif