/usr/src/kernels/4.18.0-553.121.1.el8_10.x86_64/include/linux
NameSizeModeActions
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avf/-0755rm
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byteorder/-0755rm
can/-0755rm
ceph/-0755rm
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crush/-0755rm
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qed/-0755rm
raid/-0755rm
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rpmsg/-0755rm
rtc/-0755rm
sched/-0755rm
soc/-0755rm
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spi/-0755rm
ssb/-0755rm
sunrpc/-0755rm
ulpi/-0755rm
unaligned/-0755rm
usb/-0755rm
uwb/-0755rm
wimax/-0755rm
8250_pci.h10380644editdlrm
a.out.h3540644editdlrm
acct.h25510644editdlrm
acpi.h431300644editdlrm
acpi_apmt.h3670644editdlrm
acpi_dma.h33000644editdlrm
acpi_iort.h32350644editdlrm
acpi_pmtmr.h6740644editdlrm
adb.h18320644editdlrm
adfs_fs.h5740644editdlrm
adxl.h3100644editdlrm
aer.h18220644editdlrm
agpgart.h39080644editdlrm
agp_backend.h35340644editdlrm
ahci-remap.h6070644editdlrm
ahci_platform.h17720644editdlrm
aio.h6510644editdlrm
alarmtimer.h18750644editdlrm
altera_jtaguart.h3790644editdlrm
altera_uart.h3970644editdlrm
amd-iommu.h69310644editdlrm
amd-pstate.h33560644editdlrm
anon_inodes.h4940644editdlrm
aperture.h16190644editdlrm
apm-emulation.h15750644editdlrm
apm_bios.h27460644editdlrm
apple-gmux.h14590644editdlrm
apple_bl.h4980644editdlrm
arch_topology.h19830644editdlrm
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arm-smccc.h160660644editdlrm
arm_sdei.h26410644editdlrm
ascii85.h5320644editdlrm
asn1.h20390644editdlrm
asn1_ber_bytecode.h27830644editdlrm
asn1_decoder.h6750644editdlrm
assoc_array.h31560644editdlrm
assoc_array_priv.h56300644editdlrm
async.h45910644editdlrm
async_tx.h74870644editdlrm
ata.h339800644editdlrm
atalk.h45500644editdlrm
ata_platform.h7290644editdlrm
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atm.h2870644editdlrm
atmdev.h104570644editdlrm
atmel-mci.h14290644editdlrm
atmel-ssc.h99710644editdlrm
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atomic.h375460644editdlrm
attribute_container.h27990644editdlrm
audit.h203320644editdlrm
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auxiliary_bus.h27870644editdlrm
auxvec.h3040644editdlrm
average.h24810644editdlrm
b1pcmcia.h6660644editdlrm
backing-dev-defs.h103270644editdlrm
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bch.h26600644editdlrm
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bio.h206900644editdlrm
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bits.h15120644editdlrm
bit_spinlock.h23600644editdlrm
blk-cgroup.h227280644editdlrm
blk-mq-pci.h2690644editdlrm
blk-mq-rdma.h2340644editdlrm
blk-mq-virtio.h2930644editdlrm
blk-mq.h160740644editdlrm
blk-pm.h7170644editdlrm
blkdev.h588980644editdlrm
blkpg.h4360644editdlrm
blktrace_api.h37770644editdlrm
blk_types.h153420644editdlrm
blockgroup_lock.h8100644editdlrm
bma150.h19380644editdlrm
bottom_half.h8030644editdlrm
bpf-cgroup.h198180644editdlrm
bpf-netns.h15590644editdlrm
bpf.h728240644editdlrm
bpfilter.h7910644editdlrm
bpfptr.h17330644editdlrm
bpf_lirc.h6980644editdlrm
bpf_local_storage.h53490644editdlrm
bpf_lsm.h14310644editdlrm
bpf_trace.h1660644editdlrm
bpf_types.h53950644editdlrm
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btree-128.h27370644editdlrm
btree-type.h39910644editdlrm
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bug.h19670644editdlrm
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bvec.h41190644editdlrm
c2port.h15290644editdlrm
cache.h21820644editdlrm
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capability.h81790644editdlrm
cb710.h58270644editdlrm
cciss_ioctl.h10530644editdlrm
ccp.h186970644editdlrm
cc_platform.h31400644editdlrm
cdev.h8450644editdlrm
cdrom.h91930644editdlrm
cfag12864b.h14990644editdlrm
cgroup-defs.h272420644editdlrm
cgroup.h288800644editdlrm
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cgroup_subsys.h12590644editdlrm
circ_buf.h11200644editdlrm
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clk-provider.h375420644editdlrm
clk.h251570644editdlrm
clkdev.h16980644editdlrm
clockchips.h74450644editdlrm
clocksource.h91880644editdlrm
clock_cooling.h21060644editdlrm
cm4000_cs.h1990644editdlrm
cma.h12120644editdlrm
cmdline-parser.h12380644editdlrm
cnt32_to_63.h36910644editdlrm
cn_proc.h18900644editdlrm
coda.h22440644editdlrm
coda_psdev.h26920644editdlrm
compaction.h76540644editdlrm
compat.h357390644editdlrm
compat_time.h4990644editdlrm
compiler-clang.h24460644editdlrm
compiler-gcc.h57560644editdlrm
compiler-intel.h9490644editdlrm
compiler.h157180644editdlrm
compiler_attributes.h106000644editdlrm
compiler_types.h69310644editdlrm
completion.h42010644editdlrm
component.h44590644editdlrm
concap.h37780644editdlrm
configfs.h94410644editdlrm
connector.h24900644editdlrm
console.h75040644editdlrm
consolemap.h10680644editdlrm
console_struct.h69660644editdlrm
const.h4210644editdlrm
container.h6680644editdlrm
container_of.h12780644editdlrm
context_tracking.h51680644editdlrm
context_tracking_state.h15290644editdlrm
cookie.h12540644editdlrm
cordic.h17940644editdlrm
coredump.h7970644editdlrm
coresight-pmu.h9890644editdlrm
coresight-stm.h1520644editdlrm
coresight.h96760644editdlrm
counter.h154970644editdlrm
counter_enum.h14630644editdlrm
count_zeros.h16600644editdlrm
cper.h168260644editdlrm
cpu.h79590644editdlrm
cpufeature.h18820644editdlrm
cpufreq.h342480644editdlrm
cpuhotplug.h142690644editdlrm
cpuidle.h130610644editdlrm
cpuidle_haltpoll.h3120644editdlrm
cpumask.h297210644editdlrm
cpuset.h82970644editdlrm
cpu_cooling.h23890644editdlrm
cpu_pm.h28500644editdlrm
cpu_rmap.h19020644editdlrm
crash_core.h32920644editdlrm
crash_dump.h51930644editdlrm
crc-ccitt.h6090644editdlrm
crc-itu-t.h6130644editdlrm
crc-t10dif.h4530644editdlrm
crc4.h1920644editdlrm
crc7.h3160644editdlrm
crc8.h37470644editdlrm
crc16.h6220644editdlrm
crc32.h28940644editdlrm
crc32c.h3310644editdlrm
crc32poly.h6100644editdlrm
cred.h127490644editdlrm
crypto.h593930644editdlrm
cryptohash.h5460644editdlrm
cs5535.h64260644editdlrm
ctype.h17910644editdlrm
cuda.h5010644editdlrm
cxl_err.h4680644editdlrm
cyclades.h106070644editdlrm
damon.h196160644editdlrm
davinci_emac.h11500644editdlrm
dax.h75530644editdlrm
dca.h26980644editdlrm
dcache.h196210644editdlrm
dccp.h109890644editdlrm
dcookies.h13290644editdlrm
debugfs.h119210644editdlrm
debugobjects.h39880644editdlrm
debug_locks.h16270644editdlrm
delay.h23350644editdlrm
delayacct.h62850644editdlrm
delayed_call.h7090644editdlrm
dell-led.h1280644editdlrm
devcoredump.h28490644editdlrm
devfreq-event.h57780644editdlrm
devfreq.h129870644editdlrm
devfreq_cooling.h36080644editdlrm
device-mapper.h195290644editdlrm
device.h672750644editdlrm
device_cgroup.h16800644editdlrm
devm-helpers.h27400644editdlrm
devpts_fs.h13140644editdlrm
dev_printk.h77310644editdlrm
digsig.h13790644editdlrm
dim.h89510644editdlrm
dio.h112290644editdlrm
dirent.h2160644editdlrm
dlm.h72400644editdlrm
dlm_plock.h6780644editdlrm
dm-bufio.h45740644editdlrm
dm-dirty-log.h40380644editdlrm
dm-io.h19800644editdlrm
dm-kcopyd.h30130644editdlrm
dm-region-hash.h31820644editdlrm
dm9000.h11360644editdlrm
dma-buf.h215470644editdlrm
dma-contiguous.h50700644editdlrm
dma-direct.h36810644editdlrm
dma-direction.h4070644editdlrm
dma-fence-array.h29830644editdlrm
dma-fence-chain.h35760644editdlrm
dma-fence-unwrap.h22980644editdlrm
dma-fence.h211620644editdlrm
dma-iommu.h30200644editdlrm
dma-map-ops.h108630644editdlrm
dma-mapping.h231700644editdlrm
dma-resv.h172450644editdlrm
dmaengine.h548910644editdlrm
dmapool.h18320644editdlrm
dmar.h87910644editdlrm
dmi.h43750644editdlrm
dnotify.h10470644editdlrm
dns_resolver.h13390644editdlrm
dqblk_qtree.h22380644editdlrm
dqblk_v1.h3270644editdlrm
dqblk_v2.h4060644editdlrm
drbd.h109230644editdlrm
drbd_genl.h220100644editdlrm
drbd_genl_api.h18080644editdlrm
drbd_limits.h80030644editdlrm
ds2782_battery.h1580644editdlrm
dtlk.h35840644editdlrm
dw_apb_timer.h17430644editdlrm
dynamic_debug.h58310644editdlrm
dynamic_queue_limits.h38120644editdlrm
earlycpio.h3590644editdlrm
ecryptfs.h39150644editdlrm
edac.h207180644editdlrm
edd.h14690644editdlrm
edma.h8070644editdlrm
eeprom_93cx6.h30080644editdlrm
eeprom_93xx46.h7760644editdlrm
efi-bgrt.h6440644editdlrm
efi.h628130644editdlrm
efs_vh.h15850644editdlrm
eisa.h30310644editdlrm
elevator.h60590644editdlrm
elf-fdpic.h22370644editdlrm
elf-randomize.h5830644editdlrm
elf.h15650644editdlrm
elfcore-compat.h12670644editdlrm
elfcore.h21600644editdlrm
elfnote.h36250644editdlrm
enclosure.h47110644editdlrm
energy_model.h59940644editdlrm
err.h15830644editdlrm
errname.h2830644editdlrm
errno.h14240644editdlrm
error-injection.h6070644editdlrm
errqueue.h5240644editdlrm
errseq.h3820644editdlrm
etherdevice.h169170644editdlrm
ethtool.h355800644editdlrm
ethtool_netlink.h19200644editdlrm
eventfd.h21670644editdlrm
eventpoll.h24570644editdlrm
evm.h29850644editdlrm
export.h36970644editdlrm
exportfs.h76920644editdlrm
ext2_fs.h9670644editdlrm
extable.h13090644editdlrm
extcon-provider.h44310644editdlrm
extcon.h102700644editdlrm
f2fs_fs.h185260644editdlrm
f75375s.h5410644editdlrm
falloc.h17190644editdlrm
fanotify.h23360644editdlrm
fault-inject.h19750644editdlrm
fb.h287120644editdlrm
fbcon.h21360644editdlrm
fcdevice.h9880644editdlrm
fcntl.h18080644editdlrm
fd.h4900644editdlrm
fddidevice.h10440644editdlrm
fdtable.h36160644editdlrm
fec.h6090644editdlrm
file.h31470644editdlrm
filter.h427810644editdlrm
fips.h1670644editdlrm
firewire.h138680644editdlrm
firmware-map.h13510644editdlrm
firmware.h58740644editdlrm
fixp-arith.h45160644editdlrm
flat.h16530644editdlrm
flex_array.h44120644editdlrm
flex_proportions.h28810644editdlrm
fmc-sdb.h13190644editdlrm
fmc.h98770644editdlrm
font.h15980644editdlrm
fortify-string.h165500644editdlrm
freezer.h92570644editdlrm
frontswap.h31210644editdlrm
fs.h1177400644editdlrm
fscache-cache.h192540644editdlrm
fscache.h295770644editdlrm
fscrypt.h94410644editdlrm
fscrypt_notsupp.h50770644editdlrm
fscrypt_supp.h74210644editdlrm
fsi.h24240644editdlrm
fsl-diu-fb.h41790644editdlrm
fsldma.h3980644editdlrm
fsl_devices.h44300644editdlrm
fsl_hypervisor.h28240644editdlrm
fsl_ifc.h256580644editdlrm
fsnotify.h77960644editdlrm
fsnotify_backend.h205950644editdlrm
fs_context.h90970644editdlrm
fs_enet_pd.h34570644editdlrm
fs_parser.h47500644editdlrm
fs_pin.h6190644editdlrm
fs_stack.h8110644editdlrm
fs_struct.h17510644editdlrm
fs_uart_pd.h15230644editdlrm
ftrace.h336190644editdlrm
ftrace_irq.h11630644editdlrm
futex.h24970644editdlrm
fwnode.h75790644editdlrm
gameport.h56950644editdlrm
gcd.h1930644editdlrm
genalloc.h79500644editdlrm
generic-radix-tree.h66710644editdlrm
genetlink.h13790644editdlrm
genhd.h160760644editdlrm
genl_magic_func.h118690644editdlrm
genl_magic_struct.h78050644editdlrm
getcpu.h6410644editdlrm
gfp.h242080644editdlrm
glob.h2560644editdlrm
goldfish.h6050644editdlrm
gpio-pxa.h5710644editdlrm
gpio.h54780644editdlrm
gpio_keys.h17820644editdlrm
hardirq.h32640644editdlrm
hash.h29980644editdlrm
hashtable.h68050644editdlrm
hdlc.h34130644editdlrm
hdlcdrv.h64700644editdlrm
hdmi.h128510644editdlrm
hid-debug.h14580644editdlrm
hid-roccat.h4840644editdlrm
hid-sensor-hub.h91900644editdlrm
hid-sensor-ids.h76170644editdlrm
hid.h383390644editdlrm
hidden.h9660644editdlrm
hiddev.h14580644editdlrm
hidraw.h11460644editdlrm
highmem-internal.h49520644editdlrm
highmem.h82350644editdlrm
highuid.h31940644editdlrm
hil.h188570644editdlrm
hil_mlc.h52490644editdlrm
hippidevice.h12630644editdlrm
hmm.h46560644editdlrm
host1x.h86180644editdlrm
hpet.h26150644editdlrm
hp_sdc.h143520644editdlrm
hrtimer.h166510644editdlrm
hrtimer_defs.h6600644editdlrm
htcpld.h6170644editdlrm
hugetlb.h274960644editdlrm
hugetlb_cgroup.h70560644editdlrm
hugetlb_inline.h3740644editdlrm
huge_mm.h157430644editdlrm
hwmon-sysfs.h20240644editdlrm
hwmon-vid.h15180644editdlrm
hwmon.h140840644editdlrm
hwspinlock.h130440644editdlrm
hw_breakpoint.h44050644editdlrm
hw_random.h23770644editdlrm
hyperv.h500100644editdlrm
hypervisor.h7480644editdlrm
i2c-algo-bit.h23220644editdlrm
i2c-algo-pca.h25990644editdlrm
i2c-algo-pcf.h19260644editdlrm
i2c-dev.h3710644editdlrm
i2c-mux.h16680644editdlrm
i2c-pxa.h4380644editdlrm
i2c-smbus.h19910644editdlrm
i2c.h378740644editdlrm
i8042.h21910644editdlrm
i8253.h8090644editdlrm
icmp.h10850644editdlrm
icmpv6.h17320644editdlrm
ide.h474030644editdlrm
idr.h97150644editdlrm
ieee80211.h1530580644editdlrm
ieee802154.h117800644editdlrm
if_arp.h19000644editdlrm
if_bridge.h53800644editdlrm
if_eql.h11000644editdlrm
if_ether.h15060644editdlrm
if_fddi.h35260644editdlrm
if_frad.h29370644editdlrm
if_link.h5920644editdlrm
if_ltalk.h1880644editdlrm
if_macvlan.h27570644editdlrm
if_phonet.h3190644editdlrm
if_pppol2tp.h7270644editdlrm
if_pppox.h29790644editdlrm
if_tap.h22880644editdlrm
if_team.h82970644editdlrm
if_tun.h20500644editdlrm
if_tunnel.h4090644editdlrm
if_vlan.h211240644editdlrm
igmp.h47530644editdlrm
ihex.h20010644editdlrm
ima.h34960644editdlrm
imx-media.h8110644editdlrm
in.h25920644editdlrm
in6.h18930644editdlrm
indirect_call_wrapper.h21910644editdlrm
inet.h29180644editdlrm
inetdevice.h86580644editdlrm
inet_diag.h26060644editdlrm
init.h97780644editdlrm
initrd.h7890644editdlrm
init_ohci1394_dma.h1960644editdlrm
init_task.h14070644editdlrm
inotify.h7130644editdlrm
input-polldev.h20740644editdlrm
input.h190020644editdlrm
instrumented.h28680644editdlrm
integrity.h10740644editdlrm
intel-iommu.h320630644editdlrm
intel-ish-client-if.h40910644editdlrm
intel-pti.h16000644editdlrm
intel_rapl.h42650644editdlrm
intel_th.h25010644editdlrm
interrupt.h247770644editdlrm
interval_tree.h8310644editdlrm
interval_tree_generic.h75130644editdlrm
io-64-nonatomic-hi-lo.h24560644editdlrm
io-64-nonatomic-lo-hi.h24560644editdlrm
io-mapping.h52220644editdlrm
io-pgtable.h84980644editdlrm
io.h62010644editdlrm
ioasid.h21740644editdlrm
ioc3.h32140644editdlrm
ioc4.h59200644editdlrm
iocontext.h48780644editdlrm
iomap.h138930644editdlrm
iommu-helper.h11460644editdlrm
iommu.h370000644editdlrm
iopoll.h81750644editdlrm
ioport.h126860644editdlrm
ioprio.h24640644editdlrm
iosys-map.h153110644editdlrm
iova.h42650644editdlrm
ip.h12350644editdlrm
ipack.h90620644editdlrm
ipc.h6130644editdlrm
ipc_namespace.h46820644editdlrm
ipmi-fru.h36940644editdlrm
ipmi.h116330644editdlrm
ipmi_smi.h110220644editdlrm
ipv6.h92830644editdlrm
ipv6_route.h5940644editdlrm
irq.h417830644editdlrm
irqbypass.h36810644editdlrm
irqchip.h15970644editdlrm
irqdesc.h84600644editdlrm
irqdomain.h206450644editdlrm
irqflags.h81050644editdlrm
irqhandler.h3620644editdlrm
irqnr.h8560644editdlrm
irqreturn.h5030644editdlrm
irq_cpustat.h8450644editdlrm
irq_poll.h5750644editdlrm
irq_sim.h9710644editdlrm
irq_work.h19240644editdlrm
isa.h21660644editdlrm
isapnp.h38960644editdlrm
iscsi_boot_sysfs.h41850644editdlrm
iscsi_ibft.h13060644editdlrm
isdn.h235450644editdlrm
isdnif.h197230644editdlrm
isdn_divertif.h13010644editdlrm
isdn_ppp.h67970644editdlrm
isicom.h15280644editdlrm
ism.h22730644editdlrm
iversion.h126700644editdlrm
jbd2.h479710644editdlrm
jhash.h47350644editdlrm
jiffies.h163400644editdlrm
journal-head.h29340644editdlrm
joystick.h4370644editdlrm
jump_label.h153760644editdlrm
jump_label_ratelimit.h28670644editdlrm
jz4740-adc.h10230644editdlrm
jz4780-nemc.h11850644editdlrm
kallsyms.h43350644editdlrm
kasan-checks.h14950644editdlrm
kasan.h126780644editdlrm
kbd_diacr.h1980644editdlrm
kbd_kern.h39310644editdlrm
kbuild.h3800644editdlrm
kconfig.h24810644editdlrm
kcore.h8910644editdlrm
kcov.h24630644editdlrm
kcsan-checks.h88590644editdlrm
kcsan.h19480644editdlrm
kdb.h74780644editdlrm
kdebug.h4870644editdlrm
kdev_t.h17440644editdlrm
kernel-page-flags.h5050644editdlrm
kernel.h207590644editdlrm
kernelcapi.h45520644editdlrm
kernel_stat.h30310644editdlrm
kernfs.h193360644editdlrm
kern_levels.h16110644editdlrm
kexec.h108960644editdlrm
key-type.h65830644editdlrm
key.h131490644editdlrm
keyboard.h6650644editdlrm
kfifo.h254310644editdlrm
kgdb.h115690644editdlrm
khugepaged.h28320644editdlrm
klist.h19260644editdlrm
kmemleak.h39540644editdlrm
kmod.h17520644editdlrm
kmsg_dump.h26270644editdlrm
kobject.h77270644editdlrm
kobject_ns.h19340644editdlrm
kobj_map.h5450644editdlrm
kprobes.h132220644editdlrm
kref.h33610644editdlrm
ks0108.h9600644editdlrm
ks8842.h12230644editdlrm
ks8851_mll.h10630644editdlrm
ksm.h27530644editdlrm
kstrtox.h67510644editdlrm
kthread.h79240644editdlrm
ktime.h66070644editdlrm
kvm_dirty_ring.h26330644editdlrm
kvm_host.h655830644editdlrm
kvm_irqfd.h24580644editdlrm
kvm_para.h4020644editdlrm
kvm_types.h32640644editdlrm
l2tp.h2610644editdlrm
lapb.h17520644editdlrm
latencytop.h12070644editdlrm
lcd.h38670644editdlrm
lcm.h2750644editdlrm
led-class-flash.h56190644editdlrm
led-lm3530.h37930644editdlrm
leds-bd2802.h6420644editdlrm
leds-lp3944.h10990644editdlrm
leds-lp3952.h25590644editdlrm
leds-pca9532.h10310644editdlrm
leds-regulator.h13170644editdlrm
leds-tca6507.h10420644editdlrm
leds.h156230644editdlrm
leds_pwm.h4070644editdlrm
libata.h685400644editdlrm
libfdt.h2020644editdlrm
libfdt_env.h4910644editdlrm
libgcc.h10990644editdlrm
libnvdimm.h98730644editdlrm
libps2.h20770644editdlrm
license.h3740644editdlrm
lightnvm.h119800644editdlrm
limits.h7150644editdlrm
linear_range.h16450644editdlrm
linkage.h93310644editdlrm
linkmode.h25590644editdlrm
linux_logo.h19560644editdlrm
lis3lv02d.h51250644editdlrm
list.h321050644editdlrm
list_bl.h49050644editdlrm
list_lru.h81930644editdlrm
list_nulls.h43220644editdlrm
list_sort.h3070644editdlrm
livepatch.h91090644editdlrm
llc.h7490644editdlrm
llist.h93680644editdlrm
local_lock.h13620644editdlrm
local_lock_internal.h34990644editdlrm
lockdep.h215850644editdlrm
lockdep_types.h53080644editdlrm
lockref.h14400644editdlrm
log2.h65420644editdlrm
logic_pio.h32570644editdlrm
lp.h28270644editdlrm
lru_cache.h127220644editdlrm
lsm_audit.h27850644editdlrm
lsm_hooks.h707950644editdlrm
lsm_hook_defs.h201670644editdlrm
lz4.h270720644editdlrm
lzo.h14040644editdlrm
mailbox_client.h18370644editdlrm
mailbox_controller.h55020644editdlrm
maple.h27750644editdlrm
marvell_phy.h16910644editdlrm
math.h51850644editdlrm
math64.h76620644editdlrm
max17040_battery.h4740644editdlrm
mbcache.h22080644editdlrm
mbus.h31680644editdlrm
mc6821.h12090644editdlrm
mc146818rtc.h45670644editdlrm
mcb.h39750644editdlrm
mdev.h58590644editdlrm
mdio-bitbang.h11490644editdlrm
mdio-gpio.h1770644editdlrm
mdio-mux.h10210644editdlrm
mdio.h137300644editdlrm
mei_aux.h9290644editdlrm
mei_cl_bus.h41960644editdlrm
memblock.h210090644editdlrm
memcontrol.h462430644editdlrm
memfd.h3650644editdlrm
memory.h40800644editdlrm
memory_hotplug.h109810644editdlrm
mempolicy.h80840644editdlrm
mempool.h34300644editdlrm
memregion.h4170644editdlrm
memremap.h78180644editdlrm
memstick.h99820644editdlrm
mem_encrypt.h9260644editdlrm
mhi.h269080644editdlrm
mhi_ep.h98660644editdlrm
micrel_phy.h15220644editdlrm
microchipphy.h33100644editdlrm
mic_bus.h32720644editdlrm
migrate.h62780644editdlrm
migrate_mode.h7580644editdlrm
mii.h162830644editdlrm
mii_timestamper.h36530644editdlrm
minmax.h63730644editdlrm
min_heap.h33770644editdlrm
miscdevice.h28640644editdlrm
misc_cgroup.h30070644editdlrm
mISDNdsp.h12170644editdlrm
mISDNhw.h59210644editdlrm
mISDNif.h152760644editdlrm
mm-arch-hooks.h6790644editdlrm
mm.h1015570644editdlrm
mman.h33570644editdlrm
mmap_lock.h20860644editdlrm
mmdebug.h23790644editdlrm
mmiotrace.h31220644editdlrm
mmu_context.h4650644editdlrm
mmu_notifier.h284620644editdlrm
mmzone.h516150644editdlrm
mm_inline.h30590644editdlrm
mm_types.h268440644editdlrm
mm_types_task.h24570644editdlrm
mnt_namespace.h5470644editdlrm
module.h236590644editdlrm
moduleloader.h31700644editdlrm
moduleparam.h202750644editdlrm
module_signature.h12500644editdlrm
mod_devicetable.h225130644editdlrm
mount.h37080644editdlrm
mpage.h7370644editdlrm
mpi.h33810644editdlrm
mpls.h3940644editdlrm
mpls_iptunnel.h1780644editdlrm
mroute.h19980644editdlrm
mroute6.h24490644editdlrm
mroute_base.h124330644editdlrm
msdos_fs.h2730644editdlrm
msdos_partition.h16550644editdlrm
msg.h3950644editdlrm
msi.h156650644editdlrm
mutex.h78370644editdlrm
mv643xx.h536570644editdlrm
mv643xx_eth.h20010644editdlrm
mv643xx_i2c.h5450644editdlrm
mvebu-pmsu.h5200644editdlrm
mxm-wmi.h10780644editdlrm
namei.h39460644editdlrm
nd.h76010644editdlrm
net.h124050644editdlrm
netdevice.h1695260644editdlrm
netdev_features.h105190644editdlrm
netfilter.h126770644editdlrm
netfilter_bridge.h19770644editdlrm
netfilter_defs.h4860644editdlrm
netfilter_ingress.h14720644editdlrm
netfilter_ipv4.h10770644editdlrm
netfilter_ipv6.h36980644editdlrm
netlink.h91700644editdlrm
netpoll.h26010644editdlrm
nfs.h11450644editdlrm
nfs3.h2600644editdlrm
nfs4.h195270644editdlrm
nfsacl.h14350644editdlrm
nfs_fs.h185780644editdlrm
nfs_fs_i.h3080644editdlrm
nfs_fs_sb.h105370644editdlrm
nfs_iostat.h42850644editdlrm
nfs_page.h69910644editdlrm
nfs_xdr.h425020644editdlrm
nitro_enclaves.h2670644editdlrm
nl802154.h43360644editdlrm
nls.h31620644editdlrm
nmi.h67580644editdlrm
node.h43990644editdlrm
nodemask.h174400644editdlrm
nospec.h21870644editdlrm
notifier.h84180644editdlrm
nsc_gpio.h14590644editdlrm
nsproxy.h26760644editdlrm
ns_common.h3010644editdlrm
ntb.h536910644editdlrm
ntb_transport.h38920644editdlrm
nubus.h56740644editdlrm
numa.h10040644editdlrm
nvme-fc-driver.h472160644editdlrm
nvme-fc.h99550644editdlrm
nvme-rdma.h25350644editdlrm
nvme-tcp.h45380644editdlrm
nvme.h391280644editdlrm
nvmem-consumer.h44540644editdlrm
nvmem-provider.h32670644editdlrm
nvram.h4950644editdlrm
n_r3964.h41550644editdlrm
objagg.h19830644editdlrm
objtool.h11550644editdlrm
of.h433070644editdlrm
of_address.h46030644editdlrm
of_clk.h7530644editdlrm
of_device.h32270644editdlrm
of_dma.h23530644editdlrm
of_fdt.h41880644editdlrm
of_gpio.h40530644editdlrm
of_graph.h36360644editdlrm
of_iommu.h5050644editdlrm
of_irq.h36910644editdlrm
of_mdio.h32130644editdlrm
of_net.h8870644editdlrm
of_pci.h9150644editdlrm
of_pdt.h12220644editdlrm
of_platform.h39740644editdlrm
of_reserved_mem.h24030644editdlrm
oid_registry.h39660644editdlrm
olpc-ec.h11040644editdlrm
omap-dma.h107540644editdlrm
omap-dmaengine.h5830644editdlrm
omap-gpmc.h30110644editdlrm
omap-iommu.h6850644editdlrm
omap-mailbox.h7770644editdlrm
omapfb.h12460644editdlrm
once.h18800644editdlrm
oom.h33410644editdlrm
openvswitch.h10190644editdlrm
oprofile.h62460644editdlrm
osq_lock.h10660644editdlrm
overflow.h122690644editdlrm
padata.h74310644editdlrm
page-flags-layout.h35010644editdlrm
page-flags.h281560644editdlrm
page-isolation.h21240644editdlrm
pageblock-flags.h33570644editdlrm
pagemap.h246490644editdlrm
pagevec.h23830644editdlrm
pagewalk.h41670644editdlrm
page_counter.h34470644editdlrm
page_ext.h17220644editdlrm
page_idle.h26830644editdlrm
page_owner.h23610644editdlrm
page_ref.h53610644editdlrm
page_reporting.h8340644editdlrm
parman.h29340644editdlrm
parport.h182730644editdlrm
parport_pc.h67130644editdlrm
parser.h11410644editdlrm
pata_arasan_cf_data.h12500644editdlrm
patchkey.h7570644editdlrm
path.h5720644editdlrm
pch_dma.h9990644editdlrm
pci-acpi.h42800644editdlrm
pci-ats.h18020644editdlrm
pci-dma-compat.h37500644editdlrm
pci-ecam.h33580644editdlrm
pci-ep-cfs.h9570644editdlrm
pci-epc.h73360644editdlrm
pci-epf.h48680644editdlrm
pci-p2pdma.h40490644editdlrm
pci.h917980644editdlrm
pci_hotplug.h47520644editdlrm
pci_ids.h1282480644editdlrm
pda_power.h11510644editdlrm
pe.h162040644editdlrm
percpu-defs.h186090644editdlrm
percpu-refcount.h111690644editdlrm
percpu-rwsem.h45730644editdlrm
percpu.h48490644editdlrm
percpu_counter.h43720644editdlrm
perf_event.h507870644editdlrm
perf_regs.h10760644editdlrm
personality.h3930644editdlrm
pfn.h6660644editdlrm
pfn_t.h33100644editdlrm
phonet.h11460644editdlrm
phy.h563860644editdlrm
phylink.h237070644editdlrm
phy_fixed.h18140644editdlrm
phy_led_triggers.h14910644editdlrm
pid.h60590644editdlrm
pid_namespace.h23860644editdlrm
pim.h27370644editdlrm
pipe_fs_i.h64710644editdlrm
pkeys.h9610644editdlrm
pktcdvd.h60110644editdlrm
pl320-ipc.h7580644editdlrm
platform_device.h141600644editdlrm
platform_profile.h11550644editdlrm
pldmfw.h48790644editdlrm
plist.h88940644editdlrm
pm-trace.h9400644editdlrm
pm.h374800644editdlrm
pm2301_charger.h17230644editdlrm
pmbus.h16210644editdlrm
pmu.h23920644editdlrm
pm_clock.h26380644editdlrm
pm_domain.h132930644editdlrm
pm_opp.h115360644editdlrm
pm_qos.h106620644editdlrm
pm_runtime.h103290644editdlrm
pm_wakeirq.h15180644editdlrm
pm_wakeup.h73540644editdlrm
pnfs_osd_xdr.h94900644editdlrm
pnp.h157650644editdlrm
poison.h26510644editdlrm
poll.h41090644editdlrm
posix-clock.h46600644editdlrm
posix-timers.h64600644editdlrm
posix_acl.h31670644editdlrm
posix_acl_xattr.h16210644editdlrm
powercap.h128890644editdlrm
power_supply.h150250644editdlrm
ppp-comp.h31720644editdlrm
ppp_channel.h31460644editdlrm
ppp_defs.h8120644editdlrm
pps-gpio.h10330644editdlrm
pps_kernel.h36200644editdlrm
pr.h5660644editdlrm
prandom.h38860644editdlrm
preempt.h122320644editdlrm
prefetch.h17400644editdlrm
prime_numbers.h13840644editdlrm
printk.h169080644editdlrm
prmt.h1430644editdlrm
processor.h18890644editdlrm
proc_fs.h61380644editdlrm
proc_ns.h28970644editdlrm
profile.h27430644editdlrm
projid.h22690644editdlrm
property.h174100644editdlrm
psci.h19510644editdlrm
pseudo_fs.h3550644editdlrm
psi.h17060644editdlrm
psi_types.h39940644editdlrm
psp-platform-access.h17220644editdlrm
psp-sev.h189210644editdlrm
psp-tee.h23160644editdlrm
psp.h6970644editdlrm
pstore.h77640644editdlrm
pstore_ram.h29800644editdlrm
pti.h1980644editdlrm
ptp_classify.h50070644editdlrm
ptp_clock_kernel.h124310644editdlrm
ptrace.h152100644editdlrm
ptr_ring.h168900644editdlrm
purgatory.h5890644editdlrm
pvclock_gtod.h5480644editdlrm
pwm.h173410644editdlrm
pwm_backlight.h8020644editdlrm
pxa2xx_ssp.h104700644editdlrm
pxa168_eth.h7280644editdlrm
qcom-geni-se.h124710644editdlrm
qcom_scm.h43810644editdlrm
qnx6_fs.h33490644editdlrm
quicklist.h21860644editdlrm
quota.h192310644editdlrm
quotaops.h105530644editdlrm
radix-tree.h179780644editdlrm
raid_class.h21490644editdlrm
ramfs.h6950644editdlrm
random.h38550644editdlrm
range.h7750644editdlrm
ras.h12110644editdlrm
ratelimit.h17610644editdlrm
ratelimit_types.h11700644editdlrm
rational.h6390644editdlrm
rbtree.h97890644editdlrm
rbtree_augmented.h104850644editdlrm
rbtree_latch.h68150644editdlrm
rbtree_types.h9460644editdlrm
rculist.h284440644editdlrm
rculist_bl.h33740644editdlrm
rculist_nulls.h55130644editdlrm
rcupdate.h385480644editdlrm
rcupdate_trace.h28820644editdlrm
rcupdate_wait.h17690644editdlrm
rcutiny.h42320644editdlrm
rcutree.h30770644editdlrm
rcuwait.h19000644editdlrm
rcu_node_tree.h44680644editdlrm
rcu_segcblist.h112920644editdlrm
rcu_sync.h23120644editdlrm
reboot-mode.h6000644editdlrm
reboot.h20980644editdlrm
reciprocal_div.h33560644editdlrm
refcount.h27990644editdlrm
regmap.h544470644editdlrm
regset.h155270644editdlrm
relay.h89080644editdlrm
remoteproc.h200780644editdlrm
resctrl.h88910644editdlrm
reservation.h92260644editdlrm
reset-controller.h30670644editdlrm
reset.h137390644editdlrm
resource.h3390644editdlrm
resource_ext.h25420644editdlrm
restart_block.h11140644editdlrm
rfkill.h110400644editdlrm
rhashtable-types.h37420644editdlrm
rhashtable.h352780644editdlrm
rh_flags.h9050644editdlrm
rh_kabi.h226330644editdlrm
rh_kabi_attributes.h5010644editdlrm
rh_kabi_aux.h9170644editdlrm
rh_kabi_memcg.h37600644editdlrm
rh_tasklist_lock.h9590644editdlrm
rh_waived.h4410644editdlrm
ring_buffer.h73710644editdlrm
rio.h196870644editdlrm
rio_drv.h150610644editdlrm
rio_ids.h13170644editdlrm
rio_regs.h197370644editdlrm
rmap.h110370644editdlrm
rmi.h124790644editdlrm
rndis.h172690644editdlrm
rodata_test.h5590644editdlrm
root_dev.h6190644editdlrm
rpmsg.h71170644editdlrm
rslib.h37540644editdlrm
rtc.h94270644editdlrm
rtmutex.h31470644editdlrm
rtnetlink.h46040644editdlrm
rtsx_common.h14750644editdlrm
rtsx_pci.h411350644editdlrm
rtsx_usb.h163340644editdlrm
rwbase_rt.h8760644editdlrm
rwlock.h40540644editdlrm
rwlock_api_smp.h77360644editdlrm
rwlock_rt.h30530644editdlrm
rwlock_types.h18140644editdlrm
rwsem.h74050644editdlrm
s3c_adc_battery.h9710644editdlrm
sa11x0-dma.h5720644editdlrm
sbitmap.h202030644editdlrm
scatterlist.h180030644editdlrm
scc.h29050644editdlrm
sched.h644870644editdlrm
sched_clock.h16170644editdlrm
scif.h602800644editdlrm
scmi_protocol.h92840644editdlrm
scpi_protocol.h26420644editdlrm
screen_info.h1910644editdlrm
scs.h18280644editdlrm
sctp.h241240644editdlrm
scx200.h18630644editdlrm
scx200_gpio.h24380644editdlrm
sdb.h42700644editdlrm
sdla.h70660644editdlrm
seccomp.h29720644editdlrm
securebits.h2390644editdlrm
security.h515320644editdlrm
sed-opal.h19850644editdlrm
seg6.h1210644editdlrm
seg6_genl.h1360644editdlrm
seg6_hmac.h1360644editdlrm
seg6_iptunnel.h1480644editdlrm
seg6_local.h1000644editdlrm
selection.h15950644editdlrm
sem.h5990644editdlrm
semaphore.h14000644editdlrm
seqlock.h392440644editdlrm
seqno-fence.h40500644editdlrm
seq_buf.h34050644editdlrm
seq_file.h82910644editdlrm
seq_file_net.h7300644editdlrm
serdev.h101010644editdlrm
serial.h6300644editdlrm
serial_8250.h65810644editdlrm
serial_bcm63xx.h48430644editdlrm
serial_core.h180580644editdlrm
serial_max3100.h14230644editdlrm
serial_pnx8xxx.h26700644editdlrm
serial_s3c.h87840644editdlrm
serial_sci.h16110644editdlrm
serio.h45280644editdlrm
set_memory.h14970644editdlrm
sfi.h58900644editdlrm
sfi_acpi.h34720644editdlrm
sfp.h162160644editdlrm
shdma-base.h45200644editdlrm
shm.h9680644editdlrm
shmem_fs.h57790644editdlrm
shrinker.h33650644editdlrm
sh_clk.h60980644editdlrm
sh_dma.h36960644editdlrm
sh_eth.h3690644editdlrm
sh_intc.h35060644editdlrm
sh_timer.h1720644editdlrm
signal.h135130644editdlrm
signalfd.h8170644editdlrm
signal_types.h12410644editdlrm
siox.h20750644editdlrm
siphash.h47380644editdlrm
sirfsoc_dma.h1620644editdlrm
sizes.h14510644editdlrm
skbuff.h1388220644editdlrm
skb_array.h55120644editdlrm
skmsg.h135570644editdlrm
slab.h250990644editdlrm
slab_def.h30090644editdlrm
slimbus.h54100644editdlrm
slub_def.h65880644editdlrm
sm501-regs.h120460644editdlrm
sm501.h47430644editdlrm
smc91x.h16040644editdlrm
smc911x.h2940644editdlrm
smp.h70850644editdlrm
smpboot.h22150644editdlrm
smp_types.h13400644editdlrm
smsc911x.h23400644editdlrm
smscphy.h12830644editdlrm
socket.h144270644editdlrm
sockptr.h22790644editdlrm
sock_diag.h23700644editdlrm
sonet.h4690644editdlrm
sony-laptop.h14410644editdlrm
sonypi.h24100644editdlrm
sort.h2470644editdlrm
sound.h6850644editdlrm
soundcard.h16310644editdlrm
spinlock.h159330644editdlrm
spinlock_api_smp.h53460644editdlrm
spinlock_api_up.h33940644editdlrm
spinlock_rt.h42090644editdlrm
spinlock_types.h18260644editdlrm
spinlock_types_raw.h17260644editdlrm
spinlock_types_up.h7260644editdlrm
spinlock_up.h21260644editdlrm
splice.h29810644editdlrm
spmi.h60940644editdlrm
sram.h8440644editdlrm
srcu.h78580644editdlrm
srcutiny.h34110644editdlrm
srcutree.h54370644editdlrm
ssbi.h11400644editdlrm
stackdepot.h13090644editdlrm
stackprotector.h3610644editdlrm
stacktrace.h43010644editdlrm
start_kernel.h3340644editdlrm
stat.h12120644editdlrm
statfs.h13460644editdlrm
static_call.h70340644editdlrm
static_call_types.h5350644editdlrm
static_key.h300644editdlrm
stddef.h32750644editdlrm
stm.h44530644editdlrm
stmmac.h76070644editdlrm
stmp3xxx_rtc_wdt.h3320644editdlrm
stmp_device.h6190644editdlrm
stop_machine.h48420644editdlrm
string.h99090644editdlrm
stringhash.h27150644editdlrm
stringify.h3410644editdlrm
string_helpers.h30820644editdlrm
sudmac.h12690644editdlrm
sungem_phy.h40310644editdlrm
sunserialcore.h11020644editdlrm
sunxi-rsb.h29550644editdlrm
superhyway.h28780644editdlrm
suspend.h214830644editdlrm
svga.h38370644editdlrm
sw842.h3280644editdlrm
swab.h5690644editdlrm
swait.h102840644editdlrm
swap.h231090644editdlrm
swapfile.h5560644editdlrm
swapops.h88950644editdlrm
swap_cgroup.h9710644editdlrm
swap_slots.h8410644editdlrm
swiotlb.h54720644editdlrm
switchtec.h115300644editdlrm
sxgbe_platform.h13710644editdlrm
synclink.h9890644editdlrm
sync_core.h5810644editdlrm
sync_file.h16060644editdlrm
sys.h9600644editdlrm
syscalls.h519130644editdlrm
syscore_ops.h6350644editdlrm
sysctl.h77700644editdlrm
sysfs.h180900644editdlrm
syslog.h19310644editdlrm
sysrq.h18960644editdlrm
sysv_fs.h92500644editdlrm
sys_soc.h12630644editdlrm
t10-pi.h15380644editdlrm
taskstats_kern.h9570644editdlrm
task_io_accounting.h11590644editdlrm
task_io_accounting_ops.h26100644editdlrm
task_work.h7180644editdlrm
tboot.h40890644editdlrm
tc.h34890644editdlrm
tca6416_keypad.h8470644editdlrm
tcp.h180920644editdlrm
tee_drv.h166850644editdlrm
textsearch.h48420644editdlrm
textsearch_fsm.h12140644editdlrm
tfrc.h19330644editdlrm
thermal.h199280644editdlrm
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Edit: /usr/src/kernels/4.18.0-553.121.1.el8_10.x86_64/include/linux/crypto.h (59393B)
/* * Scatterlist Cryptographic API. * * Copyright (c) 2002 James Morris * Copyright (c) 2002 David S. Miller (davem@redhat.com) * Copyright (c) 2005 Herbert Xu * * Portions derived from Cryptoapi, by Alexander Kjeldaas * and Nettle, by Niels Möller. * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License as published by the Free * Software Foundation; either version 2 of the License, or (at your option) * any later version. * */ #ifndef _LINUX_CRYPTO_H #define _LINUX_CRYPTO_H #include #include #include #include #include #include #include #include /* * Autoloaded crypto modules should only use a prefixed name to avoid allowing * arbitrary modules to be loaded. Loading from userspace may still need the * unprefixed names, so retains those aliases as well. * This uses __MODULE_INFO directly instead of MODULE_ALIAS because pre-4.3 * gcc (e.g. avr32 toolchain) uses __LINE__ for uniqueness, and this macro * expands twice on the same line. Instead, use a separate base name for the * alias. */ #define MODULE_ALIAS_CRYPTO(name) \ __MODULE_INFO(alias, alias_userspace, name); \ __MODULE_INFO(alias, alias_crypto, "crypto-" name) /* * Algorithm masks and types. */ #define CRYPTO_ALG_TYPE_MASK 0x0000000f #define CRYPTO_ALG_TYPE_CIPHER 0x00000001 #define CRYPTO_ALG_TYPE_COMPRESS 0x00000002 #define CRYPTO_ALG_TYPE_AEAD 0x00000003 #define CRYPTO_ALG_TYPE_BLKCIPHER 0x00000004 #define CRYPTO_ALG_TYPE_ABLKCIPHER 0x00000005 #define CRYPTO_ALG_TYPE_SKCIPHER 0x00000005 #define CRYPTO_ALG_TYPE_GIVCIPHER 0x00000006 #define CRYPTO_ALG_TYPE_KPP 0x00000008 #define CRYPTO_ALG_TYPE_ACOMPRESS 0x0000000a #define CRYPTO_ALG_TYPE_SCOMPRESS 0x0000000b #define CRYPTO_ALG_TYPE_RNG 0x0000000c #define CRYPTO_ALG_TYPE_AKCIPHER 0x0000000d #define CRYPTO_ALG_TYPE_DIGEST 0x0000000e #define CRYPTO_ALG_TYPE_HASH 0x0000000e #define CRYPTO_ALG_TYPE_SHASH 0x0000000e #define CRYPTO_ALG_TYPE_AHASH 0x0000000f #define CRYPTO_ALG_TYPE_HASH_MASK 0x0000000e #define CRYPTO_ALG_TYPE_AHASH_MASK 0x0000000e #define CRYPTO_ALG_TYPE_BLKCIPHER_MASK 0x0000000c #define CRYPTO_ALG_TYPE_ACOMPRESS_MASK 0x0000000e #define CRYPTO_ALG_LARVAL 0x00000010 #define CRYPTO_ALG_DEAD 0x00000020 #define CRYPTO_ALG_DYING 0x00000040 #define CRYPTO_ALG_ASYNC 0x00000080 /* * Set this bit if and only if the algorithm requires another algorithm of * the same type to handle corner cases. */ #define CRYPTO_ALG_NEED_FALLBACK 0x00000100 /* * This bit is set for symmetric key ciphers that have already been wrapped * with a generic IV generator to prevent them from being wrapped again. */ #define CRYPTO_ALG_GENIV 0x00000200 /* * Set if the algorithm has passed automated run-time testing. Note that * if there is no run-time testing for a given algorithm it is considered * to have passed. */ #define CRYPTO_ALG_TESTED 0x00000400 /* * Set if the algorithm is an instance that is built from templates. */ #define CRYPTO_ALG_INSTANCE 0x00000800 /* Set this bit if the algorithm provided is hardware accelerated but * not available to userspace via instruction set or so. */ #define CRYPTO_ALG_KERN_DRIVER_ONLY 0x00001000 /* * Mark a cipher as a service implementation only usable by another * cipher and never by a normal user of the kernel crypto API */ #define CRYPTO_ALG_INTERNAL 0x00002000 /* * Set if the algorithm has a ->setkey() method but can be used without * calling it first, i.e. there is a default key. */ #define CRYPTO_ALG_OPTIONAL_KEY 0x00004000 /* * Don't trigger module loading */ #define CRYPTO_NOLOAD 0x00008000 /* * The algorithm may allocate memory during request processing, i.e. during * encryption, decryption, or hashing. Users can request an algorithm with this * flag unset if they can't handle memory allocation failures. * * This flag is currently only implemented for algorithms of type "skcipher", * "aead", "ahash", "shash", and "cipher". Algorithms of other types might not * have this flag set even if they allocate memory. * * In some edge cases, algorithms can allocate memory regardless of this flag. * To avoid these cases, users must obey the following usage constraints: * skcipher: * - The IV buffer and all scatterlist elements must be aligned to the * algorithm's alignmask. * - If the data were to be divided into chunks of size * crypto_skcipher_walksize() (with any remainder going at the end), no * chunk can cross a page boundary or a scatterlist element boundary. * aead: * - The IV buffer and all scatterlist elements must be aligned to the * algorithm's alignmask. * - The first scatterlist element must contain all the associated data, * and its pages must be !PageHighMem. * - If the plaintext/ciphertext were to be divided into chunks of size * crypto_aead_walksize() (with the remainder going at the end), no chunk * can cross a page boundary or a scatterlist element boundary. * ahash: * - The result buffer must be aligned to the algorithm's alignmask. * - crypto_ahash_finup() must not be used unless the algorithm implements * ->finup() natively. */ #define CRYPTO_ALG_ALLOCATES_MEMORY 0x00010000 /* * Mark an algorithm as a service implementation only usable by a * template and never by a normal user of the kernel crypto API. * This is intended to be used by algorithms that are themselves * not FIPS-approved but may instead be used to implement parts of * a FIPS-approved algorithm (e.g., dh vs. ffdhe2048(dh)). */ #define CRYPTO_ALG_FIPS_INTERNAL 0x00020000 /* * Transform masks and values (for crt_flags). */ #define CRYPTO_TFM_NEED_KEY 0x00000001 #define CRYPTO_TFM_REQ_MASK 0x000fff00 #define CRYPTO_TFM_RES_MASK 0xfff00000 #define CRYPTO_TFM_REQ_WEAK_KEY 0x00000100 #define CRYPTO_TFM_REQ_MAY_SLEEP 0x00000200 #define CRYPTO_TFM_REQ_MAY_BACKLOG 0x00000400 #define CRYPTO_TFM_REQ_NEED_RESEED 0x00000800 #define CRYPTO_TFM_RES_WEAK_KEY 0x00100000 #define CRYPTO_TFM_RES_BAD_KEY_LEN 0x00200000 #define CRYPTO_TFM_RES_BAD_KEY_SCHED 0x00400000 #define CRYPTO_TFM_RES_BAD_BLOCK_LEN 0x00800000 #define CRYPTO_TFM_RES_BAD_FLAGS 0x01000000 #define CRYPTO_TFM_FIPS_COMPLIANCE 0x80000000 /* * Miscellaneous stuff. */ #define CRYPTO_MAX_ALG_NAME 128 /* * The macro CRYPTO_MINALIGN_ATTR (along with the void * type in the actual * declaration) is used to ensure that the crypto_tfm context structure is * aligned correctly for the given architecture so that there are no alignment * faults for C data types. In particular, this is required on platforms such * as arm where pointers are 32-bit aligned but there are data types such as * u64 which require 64-bit alignment. */ #define CRYPTO_MINALIGN ARCH_KMALLOC_MINALIGN #define CRYPTO_MINALIGN_ATTR __attribute__ ((__aligned__(CRYPTO_MINALIGN))) struct scatterlist; struct crypto_ablkcipher; struct crypto_async_request; struct crypto_blkcipher; struct crypto_tfm; struct crypto_type; struct skcipher_givcrypt_request; typedef void (*crypto_completion_t)(struct crypto_async_request *req, int err); /** * DOC: Block Cipher Context Data Structures * * These data structures define the operating context for each block cipher * type. */ struct crypto_async_request { struct list_head list; crypto_completion_t complete; void *data; struct crypto_tfm *tfm; u32 flags; }; struct ablkcipher_request { struct crypto_async_request base; unsigned int nbytes; void *info; struct scatterlist *src; struct scatterlist *dst; void *__ctx[] CRYPTO_MINALIGN_ATTR; }; struct blkcipher_desc { struct crypto_blkcipher *tfm; void *info; u32 flags; }; struct cipher_desc { struct crypto_tfm *tfm; void (*crfn)(struct crypto_tfm *tfm, u8 *dst, const u8 *src); unsigned int (*prfn)(const struct cipher_desc *desc, u8 *dst, const u8 *src, unsigned int nbytes); void *info; }; /** * DOC: Block Cipher Algorithm Definitions * * These data structures define modular crypto algorithm implementations, * managed via crypto_register_alg() and crypto_unregister_alg(). */ /** * struct ablkcipher_alg - asynchronous block cipher definition * @min_keysize: Minimum key size supported by the transformation. This is the * smallest key length supported by this transformation algorithm. * This must be set to one of the pre-defined values as this is * not hardware specific. Possible values for this field can be * found via git grep "_MIN_KEY_SIZE" include/crypto/ * @max_keysize: Maximum key size supported by the transformation. This is the * largest key length supported by this transformation algorithm. * This must be set to one of the pre-defined values as this is * not hardware specific. Possible values for this field can be * found via git grep "_MAX_KEY_SIZE" include/crypto/ * @setkey: Set key for the transformation. This function is used to either * program a supplied key into the hardware or store the key in the * transformation context for programming it later. Note that this * function does modify the transformation context. This function can * be called multiple times during the existence of the transformation * object, so one must make sure the key is properly reprogrammed into * the hardware. This function is also responsible for checking the key * length for validity. In case a software fallback was put in place in * the @cra_init call, this function might need to use the fallback if * the algorithm doesn't support all of the key sizes. * @encrypt: Encrypt a scatterlist of blocks. This function is used to encrypt * the supplied scatterlist containing the blocks of data. The crypto * API consumer is responsible for aligning the entries of the * scatterlist properly and making sure the chunks are correctly * sized. In case a software fallback was put in place in the * @cra_init call, this function might need to use the fallback if * the algorithm doesn't support all of the key sizes. In case the * key was stored in transformation context, the key might need to be * re-programmed into the hardware in this function. This function * shall not modify the transformation context, as this function may * be called in parallel with the same transformation object. * @decrypt: Decrypt a single block. This is a reverse counterpart to @encrypt * and the conditions are exactly the same. * @givencrypt: Update the IV for encryption. With this function, a cipher * implementation may provide the function on how to update the IV * for encryption. * @givdecrypt: Update the IV for decryption. This is the reverse of * @givencrypt . * @geniv: The transformation implementation may use an "IV generator" provided * by the kernel crypto API. Several use cases have a predefined * approach how IVs are to be updated. For such use cases, the kernel * crypto API provides ready-to-use implementations that can be * referenced with this variable. * @ivsize: IV size applicable for transformation. The consumer must provide an * IV of exactly that size to perform the encrypt or decrypt operation. * * All fields except @givencrypt , @givdecrypt , @geniv and @ivsize are * mandatory and must be filled. */ struct ablkcipher_alg { int (*setkey)(struct crypto_ablkcipher *tfm, const u8 *key, unsigned int keylen); int (*encrypt)(struct ablkcipher_request *req); int (*decrypt)(struct ablkcipher_request *req); int (*givencrypt)(struct skcipher_givcrypt_request *req); int (*givdecrypt)(struct skcipher_givcrypt_request *req); const char *geniv; unsigned int min_keysize; unsigned int max_keysize; unsigned int ivsize; }; /** * struct blkcipher_alg - synchronous block cipher definition * @min_keysize: see struct ablkcipher_alg * @max_keysize: see struct ablkcipher_alg * @setkey: see struct ablkcipher_alg * @encrypt: see struct ablkcipher_alg * @decrypt: see struct ablkcipher_alg * @geniv: see struct ablkcipher_alg * @ivsize: see struct ablkcipher_alg * * All fields except @geniv and @ivsize are mandatory and must be filled. */ struct blkcipher_alg { int (*setkey)(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen); int (*encrypt)(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes); int (*decrypt)(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes); const char *geniv; unsigned int min_keysize; unsigned int max_keysize; unsigned int ivsize; }; /** * struct cipher_alg - single-block symmetric ciphers definition * @cia_min_keysize: Minimum key size supported by the transformation. This is * the smallest key length supported by this transformation * algorithm. This must be set to one of the pre-defined * values as this is not hardware specific. Possible values * for this field can be found via git grep "_MIN_KEY_SIZE" * include/crypto/ * @cia_max_keysize: Maximum key size supported by the transformation. This is * the largest key length supported by this transformation * algorithm. This must be set to one of the pre-defined values * as this is not hardware specific. Possible values for this * field can be found via git grep "_MAX_KEY_SIZE" * include/crypto/ * @cia_setkey: Set key for the transformation. This function is used to either * program a supplied key into the hardware or store the key in the * transformation context for programming it later. Note that this * function does modify the transformation context. This function * can be called multiple times during the existence of the * transformation object, so one must make sure the key is properly * reprogrammed into the hardware. This function is also * responsible for checking the key length for validity. * @cia_encrypt: Encrypt a single block. This function is used to encrypt a * single block of data, which must be @cra_blocksize big. This * always operates on a full @cra_blocksize and it is not possible * to encrypt a block of smaller size. The supplied buffers must * therefore also be at least of @cra_blocksize size. Both the * input and output buffers are always aligned to @cra_alignmask. * In case either of the input or output buffer supplied by user * of the crypto API is not aligned to @cra_alignmask, the crypto * API will re-align the buffers. The re-alignment means that a * new buffer will be allocated, the data will be copied into the * new buffer, then the processing will happen on the new buffer, * then the data will be copied back into the original buffer and * finally the new buffer will be freed. In case a software * fallback was put in place in the @cra_init call, this function * might need to use the fallback if the algorithm doesn't support * all of the key sizes. In case the key was stored in * transformation context, the key might need to be re-programmed * into the hardware in this function. This function shall not * modify the transformation context, as this function may be * called in parallel with the same transformation object. * @cia_decrypt: Decrypt a single block. This is a reverse counterpart to * @cia_encrypt, and the conditions are exactly the same. * * All fields are mandatory and must be filled. */ struct cipher_alg { unsigned int cia_min_keysize; unsigned int cia_max_keysize; int (*cia_setkey)(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen); void (*cia_encrypt)(struct crypto_tfm *tfm, u8 *dst, const u8 *src); void (*cia_decrypt)(struct crypto_tfm *tfm, u8 *dst, const u8 *src); }; struct compress_alg { int (*coa_compress)(struct crypto_tfm *tfm, const u8 *src, unsigned int slen, u8 *dst, unsigned int *dlen); int (*coa_decompress)(struct crypto_tfm *tfm, const u8 *src, unsigned int slen, u8 *dst, unsigned int *dlen); }; #define cra_ablkcipher cra_u.ablkcipher #define cra_blkcipher cra_u.blkcipher #define cra_cipher cra_u.cipher #define cra_compress cra_u.compress /** * struct crypto_alg - definition of a cryptograpic cipher algorithm * @cra_flags: Flags describing this transformation. See include/linux/crypto.h * CRYPTO_ALG_* flags for the flags which go in here. Those are * used for fine-tuning the description of the transformation * algorithm. * @cra_blocksize: Minimum block size of this transformation. The size in bytes * of the smallest possible unit which can be transformed with * this algorithm. The users must respect this value. * In case of HASH transformation, it is possible for a smaller * block than @cra_blocksize to be passed to the crypto API for * transformation, in case of any other transformation type, an * error will be returned upon any attempt to transform smaller * than @cra_blocksize chunks. * @cra_ctxsize: Size of the operational context of the transformation. This * value informs the kernel crypto API about the memory size * needed to be allocated for the transformation context. * @cra_alignmask: Alignment mask for the input and output data buffer. The data * buffer containing the input data for the algorithm must be * aligned to this alignment mask. The data buffer for the * output data must be aligned to this alignment mask. Note that * the Crypto API will do the re-alignment in software, but * only under special conditions and there is a performance hit. * The re-alignment happens at these occasions for different * @cra_u types: cipher -- For both input data and output data * buffer; ahash -- For output hash destination buf; shash -- * For output hash destination buf. * This is needed on hardware which is flawed by design and * cannot pick data from arbitrary addresses. * @cra_priority: Priority of this transformation implementation. In case * multiple transformations with same @cra_name are available to * the Crypto API, the kernel will use the one with highest * @cra_priority. * @cra_name: Generic name (usable by multiple implementations) of the * transformation algorithm. This is the name of the transformation * itself. This field is used by the kernel when looking up the * providers of particular transformation. * @cra_driver_name: Unique name of the transformation provider. This is the * name of the provider of the transformation. This can be any * arbitrary value, but in the usual case, this contains the * name of the chip or provider and the name of the * transformation algorithm. * @cra_type: Type of the cryptographic transformation. This is a pointer to * struct crypto_type, which implements callbacks common for all * transformation types. There are multiple options: * &crypto_blkcipher_type, &crypto_ablkcipher_type, * &crypto_ahash_type, &crypto_rng_type. * This field might be empty. In that case, there are no common * callbacks. This is the case for: cipher, compress, shash. * @cra_u: Callbacks implementing the transformation. This is a union of * multiple structures. Depending on the type of transformation selected * by @cra_type and @cra_flags above, the associated structure must be * filled with callbacks. This field might be empty. This is the case * for ahash, shash. * @cra_init: Initialize the cryptographic transformation object. This function * is used to initialize the cryptographic transformation object. * This function is called only once at the instantiation time, right * after the transformation context was allocated. In case the * cryptographic hardware has some special requirements which need to * be handled by software, this function shall check for the precise * requirement of the transformation and put any software fallbacks * in place. * @cra_exit: Deinitialize the cryptographic transformation object. This is a * counterpart to @cra_init, used to remove various changes set in * @cra_init. * @cra_u.ablkcipher: Union member which contains an asynchronous block cipher * definition. See @struct @ablkcipher_alg. * @cra_u.blkcipher: Union member which contains a synchronous block cipher * definition See @struct @blkcipher_alg. * @cra_u.cipher: Union member which contains a single-block symmetric cipher * definition. See @struct @cipher_alg. * @cra_u.compress: Union member which contains a (de)compression algorithm. * See @struct @compress_alg. * @cra_module: Owner of this transformation implementation. Set to THIS_MODULE * @cra_list: internally used * @cra_users: internally used * @cra_refcnt: internally used * @cra_destroy: internally used * * The struct crypto_alg describes a generic Crypto API algorithm and is common * for all of the transformations. Any variable not documented here shall not * be used by a cipher implementation as it is internal to the Crypto API. */ struct crypto_alg { struct list_head cra_list; struct list_head cra_users; u32 cra_flags; unsigned int cra_blocksize; unsigned int cra_ctxsize; unsigned int cra_alignmask; int cra_priority; refcount_t cra_refcnt; char cra_name[CRYPTO_MAX_ALG_NAME]; char cra_driver_name[CRYPTO_MAX_ALG_NAME]; const struct crypto_type *cra_type; union { struct ablkcipher_alg ablkcipher; struct blkcipher_alg blkcipher; struct cipher_alg cipher; struct compress_alg compress; } cra_u; int (*cra_init)(struct crypto_tfm *tfm); void (*cra_exit)(struct crypto_tfm *tfm); void (*cra_destroy)(struct crypto_alg *alg); struct module *cra_module; } CRYPTO_MINALIGN_ATTR; /* * A helper struct for waiting for completion of async crypto ops */ struct crypto_wait { struct completion completion; int err; }; /* * Macro for declaring a crypto op async wait object on stack */ #define DECLARE_CRYPTO_WAIT(_wait) \ struct crypto_wait _wait = { \ COMPLETION_INITIALIZER_ONSTACK((_wait).completion), 0 } /* * Async ops completion helper functioons */ void crypto_req_done(struct crypto_async_request *req, int err); static inline int crypto_wait_req(int err, struct crypto_wait *wait) { switch (err) { case -EINPROGRESS: case -EBUSY: wait_for_completion(&wait->completion); reinit_completion(&wait->completion); err = wait->err; break; }; return err; } static inline void crypto_init_wait(struct crypto_wait *wait) { init_completion(&wait->completion); } /* * Algorithm registration interface. */ int crypto_register_alg(struct crypto_alg *alg); int crypto_unregister_alg(struct crypto_alg *alg); int crypto_register_algs(struct crypto_alg *algs, int count); int crypto_unregister_algs(struct crypto_alg *algs, int count); /* * Algorithm query interface. */ int crypto_has_alg(const char *name, u32 type, u32 mask); /* * Transforms: user-instantiated objects which encapsulate algorithms * and core processing logic. Managed via crypto_alloc_*() and * crypto_free_*(), as well as the various helpers below. */ struct ablkcipher_tfm { int (*setkey)(struct crypto_ablkcipher *tfm, const u8 *key, unsigned int keylen); int (*encrypt)(struct ablkcipher_request *req); int (*decrypt)(struct ablkcipher_request *req); struct crypto_ablkcipher *base; unsigned int ivsize; unsigned int reqsize; }; struct blkcipher_tfm { void *iv; int (*setkey)(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen); int (*encrypt)(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes); int (*decrypt)(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes); }; struct cipher_tfm { int (*cit_setkey)(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen); void (*cit_encrypt_one)(struct crypto_tfm *tfm, u8 *dst, const u8 *src); void (*cit_decrypt_one)(struct crypto_tfm *tfm, u8 *dst, const u8 *src); }; struct compress_tfm { int (*cot_compress)(struct crypto_tfm *tfm, const u8 *src, unsigned int slen, u8 *dst, unsigned int *dlen); int (*cot_decompress)(struct crypto_tfm *tfm, const u8 *src, unsigned int slen, u8 *dst, unsigned int *dlen); }; #define crt_ablkcipher crt_u.ablkcipher #define crt_blkcipher crt_u.blkcipher #define crt_cipher crt_u.cipher #define crt_compress crt_u.compress struct crypto_tfm { u32 crt_flags; union { struct ablkcipher_tfm ablkcipher; struct blkcipher_tfm blkcipher; struct cipher_tfm cipher; struct compress_tfm compress; } crt_u; void (*exit)(struct crypto_tfm *tfm); struct crypto_alg *__crt_alg; void *__crt_ctx[] CRYPTO_MINALIGN_ATTR; }; struct crypto_ablkcipher { struct crypto_tfm base; }; struct crypto_blkcipher { struct crypto_tfm base; }; struct crypto_cipher { struct crypto_tfm base; }; struct crypto_comp { struct crypto_tfm base; }; enum { CRYPTOA_UNSPEC, CRYPTOA_ALG, CRYPTOA_TYPE, CRYPTOA_U32, __CRYPTOA_MAX, }; #define CRYPTOA_MAX (__CRYPTOA_MAX - 1) /* Maximum number of (rtattr) parameters for each template. */ #define CRYPTO_MAX_ATTRS 32 struct crypto_attr_alg { char name[CRYPTO_MAX_ALG_NAME]; }; struct crypto_attr_type { u32 type; u32 mask; }; struct crypto_attr_u32 { u32 num; }; /* * Transform user interface. */ struct crypto_tfm *crypto_alloc_base(const char *alg_name, u32 type, u32 mask); void crypto_destroy_tfm(void *mem, struct crypto_tfm *tfm); static inline void crypto_free_tfm(struct crypto_tfm *tfm) { return crypto_destroy_tfm(tfm, tfm); } int alg_test(const char *driver, const char *alg, u32 type, u32 mask); /* * Transform helpers which query the underlying algorithm. */ static inline const char *crypto_tfm_alg_name(struct crypto_tfm *tfm) { return tfm->__crt_alg->cra_name; } static inline const char *crypto_tfm_alg_driver_name(struct crypto_tfm *tfm) { return tfm->__crt_alg->cra_driver_name; } static inline int crypto_tfm_alg_priority(struct crypto_tfm *tfm) { return tfm->__crt_alg->cra_priority; } static inline u32 crypto_tfm_alg_type(struct crypto_tfm *tfm) { return tfm->__crt_alg->cra_flags & CRYPTO_ALG_TYPE_MASK; } static inline unsigned int crypto_tfm_alg_blocksize(struct crypto_tfm *tfm) { return tfm->__crt_alg->cra_blocksize; } static inline unsigned int crypto_tfm_alg_alignmask(struct crypto_tfm *tfm) { return tfm->__crt_alg->cra_alignmask; } static inline u32 crypto_tfm_get_flags(struct crypto_tfm *tfm) { return tfm->crt_flags; } static inline void crypto_tfm_set_flags(struct crypto_tfm *tfm, u32 flags) { tfm->crt_flags |= flags; } static inline void crypto_tfm_clear_flags(struct crypto_tfm *tfm, u32 flags) { tfm->crt_flags &= ~flags; } static inline void *crypto_tfm_ctx(struct crypto_tfm *tfm) { return tfm->__crt_ctx; } static inline unsigned int crypto_tfm_ctx_alignment(void) { struct crypto_tfm *tfm; return __alignof__(tfm->__crt_ctx); } /* * API wrappers. */ static inline struct crypto_ablkcipher *__crypto_ablkcipher_cast( struct crypto_tfm *tfm) { return (struct crypto_ablkcipher *)tfm; } static inline u32 crypto_skcipher_type(u32 type) { type &= ~(CRYPTO_ALG_TYPE_MASK | CRYPTO_ALG_GENIV); type |= CRYPTO_ALG_TYPE_BLKCIPHER; return type; } static inline u32 crypto_skcipher_mask(u32 mask) { mask &= ~(CRYPTO_ALG_TYPE_MASK | CRYPTO_ALG_GENIV); mask |= CRYPTO_ALG_TYPE_BLKCIPHER_MASK; return mask; } /** * DOC: Asynchronous Block Cipher API * * Asynchronous block cipher API is used with the ciphers of type * CRYPTO_ALG_TYPE_ABLKCIPHER (listed as type "ablkcipher" in /proc/crypto). * * Asynchronous cipher operations imply that the function invocation for a * cipher request returns immediately before the completion of the operation. * The cipher request is scheduled as a separate kernel thread and therefore * load-balanced on the different CPUs via the process scheduler. To allow * the kernel crypto API to inform the caller about the completion of a cipher * request, the caller must provide a callback function. That function is * invoked with the cipher handle when the request completes. * * To support the asynchronous operation, additional information than just the * cipher handle must be supplied to the kernel crypto API. That additional * information is given by filling in the ablkcipher_request data structure. * * For the asynchronous block cipher API, the state is maintained with the tfm * cipher handle. A single tfm can be used across multiple calls and in * parallel. For asynchronous block cipher calls, context data supplied and * only used by the caller can be referenced the request data structure in * addition to the IV used for the cipher request. The maintenance of such * state information would be important for a crypto driver implementer to * have, because when calling the callback function upon completion of the * cipher operation, that callback function may need some information about * which operation just finished if it invoked multiple in parallel. This * state information is unused by the kernel crypto API. */ static inline struct crypto_tfm *crypto_ablkcipher_tfm( struct crypto_ablkcipher *tfm) { return &tfm->base; } /** * crypto_free_ablkcipher() - zeroize and free cipher handle * @tfm: cipher handle to be freed */ static inline void crypto_free_ablkcipher(struct crypto_ablkcipher *tfm) { crypto_free_tfm(crypto_ablkcipher_tfm(tfm)); } /** * crypto_has_ablkcipher() - Search for the availability of an ablkcipher. * @alg_name: is the cra_name / name or cra_driver_name / driver name of the * ablkcipher * @type: specifies the type of the cipher * @mask: specifies the mask for the cipher * * Return: true when the ablkcipher is known to the kernel crypto API; false * otherwise */ static inline int crypto_has_ablkcipher(const char *alg_name, u32 type, u32 mask) { return crypto_has_alg(alg_name, crypto_skcipher_type(type), crypto_skcipher_mask(mask)); } static inline struct ablkcipher_tfm *crypto_ablkcipher_crt( struct crypto_ablkcipher *tfm) { return &crypto_ablkcipher_tfm(tfm)->crt_ablkcipher; } /** * crypto_ablkcipher_ivsize() - obtain IV size * @tfm: cipher handle * * The size of the IV for the ablkcipher referenced by the cipher handle is * returned. This IV size may be zero if the cipher does not need an IV. * * Return: IV size in bytes */ static inline unsigned int crypto_ablkcipher_ivsize( struct crypto_ablkcipher *tfm) { return crypto_ablkcipher_crt(tfm)->ivsize; } /** * crypto_ablkcipher_blocksize() - obtain block size of cipher * @tfm: cipher handle * * The block size for the ablkcipher referenced with the cipher handle is * returned. The caller may use that information to allocate appropriate * memory for the data returned by the encryption or decryption operation * * Return: block size of cipher */ static inline unsigned int crypto_ablkcipher_blocksize( struct crypto_ablkcipher *tfm) { return crypto_tfm_alg_blocksize(crypto_ablkcipher_tfm(tfm)); } static inline unsigned int crypto_ablkcipher_alignmask( struct crypto_ablkcipher *tfm) { return crypto_tfm_alg_alignmask(crypto_ablkcipher_tfm(tfm)); } static inline u32 crypto_ablkcipher_get_flags(struct crypto_ablkcipher *tfm) { return crypto_tfm_get_flags(crypto_ablkcipher_tfm(tfm)); } static inline void crypto_ablkcipher_set_flags(struct crypto_ablkcipher *tfm, u32 flags) { crypto_tfm_set_flags(crypto_ablkcipher_tfm(tfm), flags); } static inline void crypto_ablkcipher_clear_flags(struct crypto_ablkcipher *tfm, u32 flags) { crypto_tfm_clear_flags(crypto_ablkcipher_tfm(tfm), flags); } /** * crypto_ablkcipher_setkey() - set key for cipher * @tfm: cipher handle * @key: buffer holding the key * @keylen: length of the key in bytes * * The caller provided key is set for the ablkcipher referenced by the cipher * handle. * * Note, the key length determines the cipher type. Many block ciphers implement * different cipher modes depending on the key size, such as AES-128 vs AES-192 * vs. AES-256. When providing a 16 byte key for an AES cipher handle, AES-128 * is performed. * * Return: 0 if the setting of the key was successful; < 0 if an error occurred */ static inline int crypto_ablkcipher_setkey(struct crypto_ablkcipher *tfm, const u8 *key, unsigned int keylen) { struct ablkcipher_tfm *crt = crypto_ablkcipher_crt(tfm); return crt->setkey(crt->base, key, keylen); } /** * crypto_ablkcipher_reqtfm() - obtain cipher handle from request * @req: ablkcipher_request out of which the cipher handle is to be obtained * * Return the crypto_ablkcipher handle when furnishing an ablkcipher_request * data structure. * * Return: crypto_ablkcipher handle */ static inline struct crypto_ablkcipher *crypto_ablkcipher_reqtfm( struct ablkcipher_request *req) { return __crypto_ablkcipher_cast(req->base.tfm); } /** * crypto_ablkcipher_encrypt() - encrypt plaintext * @req: reference to the ablkcipher_request handle that holds all information * needed to perform the cipher operation * * Encrypt plaintext data using the ablkcipher_request handle. That data * structure and how it is filled with data is discussed with the * ablkcipher_request_* functions. * * Return: 0 if the cipher operation was successful; < 0 if an error occurred */ static inline int crypto_ablkcipher_encrypt(struct ablkcipher_request *req) { struct ablkcipher_tfm *crt = crypto_ablkcipher_crt(crypto_ablkcipher_reqtfm(req)); return crt->encrypt(req); } /** * crypto_ablkcipher_decrypt() - decrypt ciphertext * @req: reference to the ablkcipher_request handle that holds all information * needed to perform the cipher operation * * Decrypt ciphertext data using the ablkcipher_request handle. That data * structure and how it is filled with data is discussed with the * ablkcipher_request_* functions. * * Return: 0 if the cipher operation was successful; < 0 if an error occurred */ static inline int crypto_ablkcipher_decrypt(struct ablkcipher_request *req) { struct ablkcipher_tfm *crt = crypto_ablkcipher_crt(crypto_ablkcipher_reqtfm(req)); return crt->decrypt(req); } /** * DOC: Asynchronous Cipher Request Handle * * The ablkcipher_request data structure contains all pointers to data * required for the asynchronous cipher operation. This includes the cipher * handle (which can be used by multiple ablkcipher_request instances), pointer * to plaintext and ciphertext, asynchronous callback function, etc. It acts * as a handle to the ablkcipher_request_* API calls in a similar way as * ablkcipher handle to the crypto_ablkcipher_* API calls. */ /** * crypto_ablkcipher_reqsize() - obtain size of the request data structure * @tfm: cipher handle * * Return: number of bytes */ static inline unsigned int crypto_ablkcipher_reqsize( struct crypto_ablkcipher *tfm) { return crypto_ablkcipher_crt(tfm)->reqsize; } /** * ablkcipher_request_set_tfm() - update cipher handle reference in request * @req: request handle to be modified * @tfm: cipher handle that shall be added to the request handle * * Allow the caller to replace the existing ablkcipher handle in the request * data structure with a different one. */ static inline void ablkcipher_request_set_tfm( struct ablkcipher_request *req, struct crypto_ablkcipher *tfm) { req->base.tfm = crypto_ablkcipher_tfm(crypto_ablkcipher_crt(tfm)->base); } static inline struct ablkcipher_request *ablkcipher_request_cast( struct crypto_async_request *req) { return container_of(req, struct ablkcipher_request, base); } /** * ablkcipher_request_alloc() - allocate request data structure * @tfm: cipher handle to be registered with the request * @gfp: memory allocation flag that is handed to kmalloc by the API call. * * Allocate the request data structure that must be used with the ablkcipher * encrypt and decrypt API calls. During the allocation, the provided ablkcipher * handle is registered in the request data structure. * * Return: allocated request handle in case of success, or NULL if out of memory */ static inline struct ablkcipher_request *ablkcipher_request_alloc( struct crypto_ablkcipher *tfm, gfp_t gfp) { struct ablkcipher_request *req; req = kmalloc(sizeof(struct ablkcipher_request) + crypto_ablkcipher_reqsize(tfm), gfp); if (likely(req)) ablkcipher_request_set_tfm(req, tfm); return req; } /** * ablkcipher_request_free() - zeroize and free request data structure * @req: request data structure cipher handle to be freed */ static inline void ablkcipher_request_free(struct ablkcipher_request *req) { kzfree(req); } /** * ablkcipher_request_set_callback() - set asynchronous callback function * @req: request handle * @flags: specify zero or an ORing of the flags * CRYPTO_TFM_REQ_MAY_BACKLOG the request queue may back log and * increase the wait queue beyond the initial maximum size; * CRYPTO_TFM_REQ_MAY_SLEEP the request processing may sleep * @compl: callback function pointer to be registered with the request handle * @data: The data pointer refers to memory that is not used by the kernel * crypto API, but provided to the callback function for it to use. Here, * the caller can provide a reference to memory the callback function can * operate on. As the callback function is invoked asynchronously to the * related functionality, it may need to access data structures of the * related functionality which can be referenced using this pointer. The * callback function can access the memory via the "data" field in the * crypto_async_request data structure provided to the callback function. * * This function allows setting the callback function that is triggered once the * cipher operation completes. * * The callback function is registered with the ablkcipher_request handle and * must comply with the following template:: * * void callback_function(struct crypto_async_request *req, int error) */ static inline void ablkcipher_request_set_callback( struct ablkcipher_request *req, u32 flags, crypto_completion_t compl, void *data) { req->base.complete = compl; req->base.data = data; req->base.flags = flags; } /** * ablkcipher_request_set_crypt() - set data buffers * @req: request handle * @src: source scatter / gather list * @dst: destination scatter / gather list * @nbytes: number of bytes to process from @src * @iv: IV for the cipher operation which must comply with the IV size defined * by crypto_ablkcipher_ivsize * * This function allows setting of the source data and destination data * scatter / gather lists. * * For encryption, the source is treated as the plaintext and the * destination is the ciphertext. For a decryption operation, the use is * reversed - the source is the ciphertext and the destination is the plaintext. */ static inline void ablkcipher_request_set_crypt( struct ablkcipher_request *req, struct scatterlist *src, struct scatterlist *dst, unsigned int nbytes, void *iv) { req->src = src; req->dst = dst; req->nbytes = nbytes; req->info = iv; } /** * DOC: Synchronous Block Cipher API * * The synchronous block cipher API is used with the ciphers of type * CRYPTO_ALG_TYPE_BLKCIPHER (listed as type "blkcipher" in /proc/crypto) * * Synchronous calls, have a context in the tfm. But since a single tfm can be * used in multiple calls and in parallel, this info should not be changeable * (unless a lock is used). This applies, for example, to the symmetric key. * However, the IV is changeable, so there is an iv field in blkcipher_tfm * structure for synchronous blkcipher api. So, its the only state info that can * be kept for synchronous calls without using a big lock across a tfm. * * The block cipher API allows the use of a complete cipher, i.e. a cipher * consisting of a template (a block chaining mode) and a single block cipher * primitive (e.g. AES). * * The plaintext data buffer and the ciphertext data buffer are pointed to * by using scatter/gather lists. The cipher operation is performed * on all segments of the provided scatter/gather lists. * * The kernel crypto API supports a cipher operation "in-place" which means that * the caller may provide the same scatter/gather list for the plaintext and * cipher text. After the completion of the cipher operation, the plaintext * data is replaced with the ciphertext data in case of an encryption and vice * versa for a decryption. The caller must ensure that the scatter/gather lists * for the output data point to sufficiently large buffers, i.e. multiples of * the block size of the cipher. */ static inline struct crypto_blkcipher *__crypto_blkcipher_cast( struct crypto_tfm *tfm) { return (struct crypto_blkcipher *)tfm; } static inline struct crypto_blkcipher *crypto_blkcipher_cast( struct crypto_tfm *tfm) { BUG_ON(crypto_tfm_alg_type(tfm) != CRYPTO_ALG_TYPE_BLKCIPHER); return __crypto_blkcipher_cast(tfm); } /** * crypto_alloc_blkcipher() - allocate synchronous block cipher handle * @alg_name: is the cra_name / name or cra_driver_name / driver name of the * blkcipher cipher * @type: specifies the type of the cipher * @mask: specifies the mask for the cipher * * Allocate a cipher handle for a block cipher. The returned struct * crypto_blkcipher is the cipher handle that is required for any subsequent * API invocation for that block cipher. * * Return: allocated cipher handle in case of success; IS_ERR() is true in case * of an error, PTR_ERR() returns the error code. */ static inline struct crypto_blkcipher *crypto_alloc_blkcipher( const char *alg_name, u32 type, u32 mask) { type &= ~CRYPTO_ALG_TYPE_MASK; type |= CRYPTO_ALG_TYPE_BLKCIPHER; mask |= CRYPTO_ALG_TYPE_MASK; return __crypto_blkcipher_cast(crypto_alloc_base(alg_name, type, mask)); } static inline struct crypto_tfm *crypto_blkcipher_tfm( struct crypto_blkcipher *tfm) { return &tfm->base; } /** * crypto_free_blkcipher() - zeroize and free the block cipher handle * @tfm: cipher handle to be freed */ static inline void crypto_free_blkcipher(struct crypto_blkcipher *tfm) { crypto_free_tfm(crypto_blkcipher_tfm(tfm)); } /** * crypto_has_blkcipher() - Search for the availability of a block cipher * @alg_name: is the cra_name / name or cra_driver_name / driver name of the * block cipher * @type: specifies the type of the cipher * @mask: specifies the mask for the cipher * * Return: true when the block cipher is known to the kernel crypto API; false * otherwise */ static inline int crypto_has_blkcipher(const char *alg_name, u32 type, u32 mask) { type &= ~CRYPTO_ALG_TYPE_MASK; type |= CRYPTO_ALG_TYPE_BLKCIPHER; mask |= CRYPTO_ALG_TYPE_MASK; return crypto_has_alg(alg_name, type, mask); } /** * crypto_blkcipher_name() - return the name / cra_name from the cipher handle * @tfm: cipher handle * * Return: The character string holding the name of the cipher */ static inline const char *crypto_blkcipher_name(struct crypto_blkcipher *tfm) { return crypto_tfm_alg_name(crypto_blkcipher_tfm(tfm)); } static inline struct blkcipher_tfm *crypto_blkcipher_crt( struct crypto_blkcipher *tfm) { return &crypto_blkcipher_tfm(tfm)->crt_blkcipher; } static inline struct blkcipher_alg *crypto_blkcipher_alg( struct crypto_blkcipher *tfm) { return &crypto_blkcipher_tfm(tfm)->__crt_alg->cra_blkcipher; } /** * crypto_blkcipher_ivsize() - obtain IV size * @tfm: cipher handle * * The size of the IV for the block cipher referenced by the cipher handle is * returned. This IV size may be zero if the cipher does not need an IV. * * Return: IV size in bytes */ static inline unsigned int crypto_blkcipher_ivsize(struct crypto_blkcipher *tfm) { return crypto_blkcipher_alg(tfm)->ivsize; } /** * crypto_blkcipher_blocksize() - obtain block size of cipher * @tfm: cipher handle * * The block size for the block cipher referenced with the cipher handle is * returned. The caller may use that information to allocate appropriate * memory for the data returned by the encryption or decryption operation. * * Return: block size of cipher */ static inline unsigned int crypto_blkcipher_blocksize( struct crypto_blkcipher *tfm) { return crypto_tfm_alg_blocksize(crypto_blkcipher_tfm(tfm)); } static inline unsigned int crypto_blkcipher_alignmask( struct crypto_blkcipher *tfm) { return crypto_tfm_alg_alignmask(crypto_blkcipher_tfm(tfm)); } static inline u32 crypto_blkcipher_get_flags(struct crypto_blkcipher *tfm) { return crypto_tfm_get_flags(crypto_blkcipher_tfm(tfm)); } static inline void crypto_blkcipher_set_flags(struct crypto_blkcipher *tfm, u32 flags) { crypto_tfm_set_flags(crypto_blkcipher_tfm(tfm), flags); } static inline void crypto_blkcipher_clear_flags(struct crypto_blkcipher *tfm, u32 flags) { crypto_tfm_clear_flags(crypto_blkcipher_tfm(tfm), flags); } /** * crypto_blkcipher_setkey() - set key for cipher * @tfm: cipher handle * @key: buffer holding the key * @keylen: length of the key in bytes * * The caller provided key is set for the block cipher referenced by the cipher * handle. * * Note, the key length determines the cipher type. Many block ciphers implement * different cipher modes depending on the key size, such as AES-128 vs AES-192 * vs. AES-256. When providing a 16 byte key for an AES cipher handle, AES-128 * is performed. * * Return: 0 if the setting of the key was successful; < 0 if an error occurred */ static inline int crypto_blkcipher_setkey(struct crypto_blkcipher *tfm, const u8 *key, unsigned int keylen) { return crypto_blkcipher_crt(tfm)->setkey(crypto_blkcipher_tfm(tfm), key, keylen); } /** * crypto_blkcipher_encrypt() - encrypt plaintext * @desc: reference to the block cipher handle with meta data * @dst: scatter/gather list that is filled by the cipher operation with the * ciphertext * @src: scatter/gather list that holds the plaintext * @nbytes: number of bytes of the plaintext to encrypt. * * Encrypt plaintext data using the IV set by the caller with a preceding * call of crypto_blkcipher_set_iv. * * The blkcipher_desc data structure must be filled by the caller and can * reside on the stack. The caller must fill desc as follows: desc.tfm is filled * with the block cipher handle; desc.flags is filled with either * CRYPTO_TFM_REQ_MAY_SLEEP or 0. * * Return: 0 if the cipher operation was successful; < 0 if an error occurred */ static inline int crypto_blkcipher_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { desc->info = crypto_blkcipher_crt(desc->tfm)->iv; return crypto_blkcipher_crt(desc->tfm)->encrypt(desc, dst, src, nbytes); } /** * crypto_blkcipher_encrypt_iv() - encrypt plaintext with dedicated IV * @desc: reference to the block cipher handle with meta data * @dst: scatter/gather list that is filled by the cipher operation with the * ciphertext * @src: scatter/gather list that holds the plaintext * @nbytes: number of bytes of the plaintext to encrypt. * * Encrypt plaintext data with the use of an IV that is solely used for this * cipher operation. Any previously set IV is not used. * * The blkcipher_desc data structure must be filled by the caller and can * reside on the stack. The caller must fill desc as follows: desc.tfm is filled * with the block cipher handle; desc.info is filled with the IV to be used for * the current operation; desc.flags is filled with either * CRYPTO_TFM_REQ_MAY_SLEEP or 0. * * Return: 0 if the cipher operation was successful; < 0 if an error occurred */ static inline int crypto_blkcipher_encrypt_iv(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { return crypto_blkcipher_crt(desc->tfm)->encrypt(desc, dst, src, nbytes); } /** * crypto_blkcipher_decrypt() - decrypt ciphertext * @desc: reference to the block cipher handle with meta data * @dst: scatter/gather list that is filled by the cipher operation with the * plaintext * @src: scatter/gather list that holds the ciphertext * @nbytes: number of bytes of the ciphertext to decrypt. * * Decrypt ciphertext data using the IV set by the caller with a preceding * call of crypto_blkcipher_set_iv. * * The blkcipher_desc data structure must be filled by the caller as documented * for the crypto_blkcipher_encrypt call above. * * Return: 0 if the cipher operation was successful; < 0 if an error occurred * */ static inline int crypto_blkcipher_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { desc->info = crypto_blkcipher_crt(desc->tfm)->iv; return crypto_blkcipher_crt(desc->tfm)->decrypt(desc, dst, src, nbytes); } /** * crypto_blkcipher_decrypt_iv() - decrypt ciphertext with dedicated IV * @desc: reference to the block cipher handle with meta data * @dst: scatter/gather list that is filled by the cipher operation with the * plaintext * @src: scatter/gather list that holds the ciphertext * @nbytes: number of bytes of the ciphertext to decrypt. * * Decrypt ciphertext data with the use of an IV that is solely used for this * cipher operation. Any previously set IV is not used. * * The blkcipher_desc data structure must be filled by the caller as documented * for the crypto_blkcipher_encrypt_iv call above. * * Return: 0 if the cipher operation was successful; < 0 if an error occurred */ static inline int crypto_blkcipher_decrypt_iv(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { return crypto_blkcipher_crt(desc->tfm)->decrypt(desc, dst, src, nbytes); } /** * crypto_blkcipher_set_iv() - set IV for cipher * @tfm: cipher handle * @src: buffer holding the IV * @len: length of the IV in bytes * * The caller provided IV is set for the block cipher referenced by the cipher * handle. */ static inline void crypto_blkcipher_set_iv(struct crypto_blkcipher *tfm, const u8 *src, unsigned int len) { memcpy(crypto_blkcipher_crt(tfm)->iv, src, len); } /** * crypto_blkcipher_get_iv() - obtain IV from cipher * @tfm: cipher handle * @dst: buffer filled with the IV * @len: length of the buffer dst * * The caller can obtain the IV set for the block cipher referenced by the * cipher handle and store it into the user-provided buffer. If the buffer * has an insufficient space, the IV is truncated to fit the buffer. */ static inline void crypto_blkcipher_get_iv(struct crypto_blkcipher *tfm, u8 *dst, unsigned int len) { memcpy(dst, crypto_blkcipher_crt(tfm)->iv, len); } /** * DOC: Single Block Cipher API * * The single block cipher API is used with the ciphers of type * CRYPTO_ALG_TYPE_CIPHER (listed as type "cipher" in /proc/crypto). * * Using the single block cipher API calls, operations with the basic cipher * primitive can be implemented. These cipher primitives exclude any block * chaining operations including IV handling. * * The purpose of this single block cipher API is to support the implementation * of templates or other concepts that only need to perform the cipher operation * on one block at a time. Templates invoke the underlying cipher primitive * block-wise and process either the input or the output data of these cipher * operations. */ static inline struct crypto_cipher *__crypto_cipher_cast(struct crypto_tfm *tfm) { return (struct crypto_cipher *)tfm; } static inline struct crypto_cipher *crypto_cipher_cast(struct crypto_tfm *tfm) { BUG_ON(crypto_tfm_alg_type(tfm) != CRYPTO_ALG_TYPE_CIPHER); return __crypto_cipher_cast(tfm); } /** * crypto_alloc_cipher() - allocate single block cipher handle * @alg_name: is the cra_name / name or cra_driver_name / driver name of the * single block cipher * @type: specifies the type of the cipher * @mask: specifies the mask for the cipher * * Allocate a cipher handle for a single block cipher. The returned struct * crypto_cipher is the cipher handle that is required for any subsequent API * invocation for that single block cipher. * * Return: allocated cipher handle in case of success; IS_ERR() is true in case * of an error, PTR_ERR() returns the error code. */ static inline struct crypto_cipher *crypto_alloc_cipher(const char *alg_name, u32 type, u32 mask) { type &= ~CRYPTO_ALG_TYPE_MASK; type |= CRYPTO_ALG_TYPE_CIPHER; mask |= CRYPTO_ALG_TYPE_MASK; return __crypto_cipher_cast(crypto_alloc_base(alg_name, type, mask)); } static inline struct crypto_tfm *crypto_cipher_tfm(struct crypto_cipher *tfm) { return &tfm->base; } /** * crypto_free_cipher() - zeroize and free the single block cipher handle * @tfm: cipher handle to be freed */ static inline void crypto_free_cipher(struct crypto_cipher *tfm) { crypto_free_tfm(crypto_cipher_tfm(tfm)); } /** * crypto_has_cipher() - Search for the availability of a single block cipher * @alg_name: is the cra_name / name or cra_driver_name / driver name of the * single block cipher * @type: specifies the type of the cipher * @mask: specifies the mask for the cipher * * Return: true when the single block cipher is known to the kernel crypto API; * false otherwise */ static inline int crypto_has_cipher(const char *alg_name, u32 type, u32 mask) { type &= ~CRYPTO_ALG_TYPE_MASK; type |= CRYPTO_ALG_TYPE_CIPHER; mask |= CRYPTO_ALG_TYPE_MASK; return crypto_has_alg(alg_name, type, mask); } static inline struct cipher_tfm *crypto_cipher_crt(struct crypto_cipher *tfm) { return &crypto_cipher_tfm(tfm)->crt_cipher; } /** * crypto_cipher_blocksize() - obtain block size for cipher * @tfm: cipher handle * * The block size for the single block cipher referenced with the cipher handle * tfm is returned. The caller may use that information to allocate appropriate * memory for the data returned by the encryption or decryption operation * * Return: block size of cipher */ static inline unsigned int crypto_cipher_blocksize(struct crypto_cipher *tfm) { return crypto_tfm_alg_blocksize(crypto_cipher_tfm(tfm)); } static inline unsigned int crypto_cipher_alignmask(struct crypto_cipher *tfm) { return crypto_tfm_alg_alignmask(crypto_cipher_tfm(tfm)); } static inline u32 crypto_cipher_get_flags(struct crypto_cipher *tfm) { return crypto_tfm_get_flags(crypto_cipher_tfm(tfm)); } static inline void crypto_cipher_set_flags(struct crypto_cipher *tfm, u32 flags) { crypto_tfm_set_flags(crypto_cipher_tfm(tfm), flags); } static inline void crypto_cipher_clear_flags(struct crypto_cipher *tfm, u32 flags) { crypto_tfm_clear_flags(crypto_cipher_tfm(tfm), flags); } /** * crypto_cipher_setkey() - set key for cipher * @tfm: cipher handle * @key: buffer holding the key * @keylen: length of the key in bytes * * The caller provided key is set for the single block cipher referenced by the * cipher handle. * * Note, the key length determines the cipher type. Many block ciphers implement * different cipher modes depending on the key size, such as AES-128 vs AES-192 * vs. AES-256. When providing a 16 byte key for an AES cipher handle, AES-128 * is performed. * * Return: 0 if the setting of the key was successful; < 0 if an error occurred */ static inline int crypto_cipher_setkey(struct crypto_cipher *tfm, const u8 *key, unsigned int keylen) { return crypto_cipher_crt(tfm)->cit_setkey(crypto_cipher_tfm(tfm), key, keylen); } /** * crypto_cipher_encrypt_one() - encrypt one block of plaintext * @tfm: cipher handle * @dst: points to the buffer that will be filled with the ciphertext * @src: buffer holding the plaintext to be encrypted * * Invoke the encryption operation of one block. The caller must ensure that * the plaintext and ciphertext buffers are at least one block in size. */ static inline void crypto_cipher_encrypt_one(struct crypto_cipher *tfm, u8 *dst, const u8 *src) { crypto_cipher_crt(tfm)->cit_encrypt_one(crypto_cipher_tfm(tfm), dst, src); } /** * crypto_cipher_decrypt_one() - decrypt one block of ciphertext * @tfm: cipher handle * @dst: points to the buffer that will be filled with the plaintext * @src: buffer holding the ciphertext to be decrypted * * Invoke the decryption operation of one block. The caller must ensure that * the plaintext and ciphertext buffers are at least one block in size. */ static inline void crypto_cipher_decrypt_one(struct crypto_cipher *tfm, u8 *dst, const u8 *src) { crypto_cipher_crt(tfm)->cit_decrypt_one(crypto_cipher_tfm(tfm), dst, src); } static inline struct crypto_comp *__crypto_comp_cast(struct crypto_tfm *tfm) { return (struct crypto_comp *)tfm; } static inline struct crypto_comp *crypto_comp_cast(struct crypto_tfm *tfm) { BUG_ON((crypto_tfm_alg_type(tfm) ^ CRYPTO_ALG_TYPE_COMPRESS) & CRYPTO_ALG_TYPE_MASK); return __crypto_comp_cast(tfm); } static inline struct crypto_comp *crypto_alloc_comp(const char *alg_name, u32 type, u32 mask) { type &= ~CRYPTO_ALG_TYPE_MASK; type |= CRYPTO_ALG_TYPE_COMPRESS; mask |= CRYPTO_ALG_TYPE_MASK; return __crypto_comp_cast(crypto_alloc_base(alg_name, type, mask)); } static inline struct crypto_tfm *crypto_comp_tfm(struct crypto_comp *tfm) { return &tfm->base; } static inline void crypto_free_comp(struct crypto_comp *tfm) { crypto_free_tfm(crypto_comp_tfm(tfm)); } static inline int crypto_has_comp(const char *alg_name, u32 type, u32 mask) { type &= ~CRYPTO_ALG_TYPE_MASK; type |= CRYPTO_ALG_TYPE_COMPRESS; mask |= CRYPTO_ALG_TYPE_MASK; return crypto_has_alg(alg_name, type, mask); } static inline const char *crypto_comp_name(struct crypto_comp *tfm) { return crypto_tfm_alg_name(crypto_comp_tfm(tfm)); } static inline struct compress_tfm *crypto_comp_crt(struct crypto_comp *tfm) { return &crypto_comp_tfm(tfm)->crt_compress; } static inline int crypto_comp_compress(struct crypto_comp *tfm, const u8 *src, unsigned int slen, u8 *dst, unsigned int *dlen) { return crypto_comp_crt(tfm)->cot_compress(crypto_comp_tfm(tfm), src, slen, dst, dlen); } static inline int crypto_comp_decompress(struct crypto_comp *tfm, const u8 *src, unsigned int slen, u8 *dst, unsigned int *dlen) { return crypto_comp_crt(tfm)->cot_decompress(crypto_comp_tfm(tfm), src, slen, dst, dlen); } #endif /* _LINUX_CRYPTO_H */