/usr/src/linux-headers-5.15.0-190/include/linux
NameSizeModeActions
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atomic/-0755rm
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ssb/-0755rm
sunrpc/-0755rm
surface_aggregator/-0755rm
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
adfs_fs.h5740644editdlrm
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.h18320644editdlrm
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asn1_decoder.h4680644editdlrm
asn1_encoder.h10060644editdlrm
assoc_array.h29490644editdlrm
assoc_array_priv.h54230644editdlrm
async.h44390644editdlrm
async_tx.h68600644editdlrm
ata.h337990644editdlrm
atalk.h45860644editdlrm
ata_platform.h7490644editdlrm
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atm.h2870644editdlrm
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atm_tcp.h5110644editdlrm
atomic.h26440644editdlrm
attribute_container.h28030644editdlrm
audit.h199210644editdlrm
auto_dev-ioctl.h2960644editdlrm
auto_fs.h2780644editdlrm
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auxvec.h3040644editdlrm
average.h24810644editdlrm
backing-dev-defs.h87530644editdlrm
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bcm47xx_wdt.h5550644editdlrm
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bio.h201080644editdlrm
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bits.h13870644editdlrm
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
blkdev.h580410644editdlrm
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blk_types.h156690644editdlrm
blockgroup_lock.h8100644editdlrm
bma150.h12860644editdlrm
bootconfig.h87120644editdlrm
bootmem_info.h17330644editdlrm
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bpf-cgroup.h187960644editdlrm
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bpfilter.h7910644editdlrm
bpfptr.h20290644editdlrm
bpf_lirc.h6980644editdlrm
bpf_local_storage.h53590644editdlrm
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buffer_head.h148140644editdlrm
bug.h22200644editdlrm
build-salt.h3750644editdlrm
buildid.h5610644editdlrm
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cache.h26160644editdlrm
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cb710.h54900644editdlrm
cciss_ioctl.h10530644editdlrm
ccp.h185770644editdlrm
cc_platform.h23780644editdlrm
cdev.h8450644editdlrm
cdrom.h92680644editdlrm
cfag12864b.h15090644editdlrm
cfi.h11520644editdlrm
cgroup-defs.h248150644editdlrm
cgroup.h288400644editdlrm
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cgroup_subsys.h12590644editdlrm
circ_buf.h11200644editdlrm
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cm4000_cs.h1990644editdlrm
cma.h20040644editdlrm
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cn_proc.h18900644editdlrm
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compaction.h73190644editdlrm
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compiler-clang.h41500644editdlrm
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
connector.h39270644editdlrm
console.h77580644editdlrm
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console_struct.h72530644editdlrm
const.h4210644editdlrm
container.h6100644editdlrm
context_tracking.h33620644editdlrm
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cookie.h12540644editdlrm
cordic.h21320644editdlrm
coredump.h11540644editdlrm
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coresight-stm.h1520644editdlrm
coresight.h184490644editdlrm
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cpuidle.h105160644editdlrm
cpuidle_haltpoll.h3120644editdlrm
cpumask.h300890644editdlrm
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cpu_cooling.h19010644editdlrm
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crc4.h1920644editdlrm
crc7.h3160644editdlrm
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crc32.h28940644editdlrm
crc32c.h3310644editdlrm
crc32poly.h6100644editdlrm
crc64.h2800644editdlrm
cred.h128040644editdlrm
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ctype.h19120644editdlrm
cuda.h6130644editdlrm
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
delayacct.h55840644editdlrm
delayed_call.h7090644editdlrm
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device-mapper.h193710644editdlrm
device.h352260644editdlrm
device_cgroup.h16090644editdlrm
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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
dma-buf.h209620644editdlrm
dma-direct.h36810644editdlrm
dma-direction.h4070644editdlrm
dma-fence-array.h21910644editdlrm
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dma-fence.h213570644editdlrm
dma-heap.h16160644editdlrm
dma-iommu.h22650644editdlrm
dma-map-ops.h131970644editdlrm
dma-mapping.h205960644editdlrm
dma-resv.h122360644editdlrm
dmaengine.h548510644editdlrm
dmapool.h18320644editdlrm
dmar.h79290644editdlrm
dmi.h45120644editdlrm
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
eeprom_93xx46.h10620644editdlrm
efi-bgrt.h6440644editdlrm
efi.h430380644editdlrm
efi_embedded_fw.h10600644editdlrm
efs_vh.h15850644editdlrm
eisa.h30310644editdlrm
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
error-injection.h6070644editdlrm
errqueue.h5240644editdlrm
errseq.h3820644editdlrm
etherdevice.h176070644editdlrm
ethtool.h325050644editdlrm
ethtool_netlink.h20290644editdlrm
eventfd.h23360644editdlrm
eventpoll.h24720644editdlrm
evm.h35000644editdlrm
export.h53940644editdlrm
exportfs.h84210644editdlrm
ext2_fs.h9670644editdlrm
extable.h13090644editdlrm
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.h22560644editdlrm
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
fixp-arith.h42900644editdlrm
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font.h17140644editdlrm
fortify-string.h93290644editdlrm
freelist.h38900644editdlrm
freezer.h91930644editdlrm
frontswap.h31180644editdlrm
fs.h1255060644editdlrm
fscache-cache.h190250644editdlrm
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
fsnotify.h102870644editdlrm
fsnotify_backend.h300760644editdlrm
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fs_context.h88180644editdlrm
fs_enet_pd.h34570644editdlrm
fs_parser.h45430644editdlrm
fs_pin.h5390644editdlrm
fs_stack.h8110644editdlrm
fs_struct.h10660644editdlrm
fs_types.h20710644editdlrm
fs_uart_pd.h15230644editdlrm
ftrace.h355970644editdlrm
ftrace_irq.h8840644editdlrm
futex.h24970644editdlrm
fwnode.h75350644editdlrm
fwnode_mdio.h8580644editdlrm
gameport.h55490644editdlrm
gcd.h1930644editdlrm
genalloc.h79120644editdlrm
generic-radix-tree.h65040644editdlrm
genetlink.h5890644editdlrm
genhd.h90550644editdlrm
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
hidden.h9660644editdlrm
hiddev.h14580644editdlrm
hidraw.h11460644editdlrm
highmem-internal.h52390644editdlrm
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hil.h188570644editdlrm
hil_mlc.h52480644editdlrm
hippidevice.h10520644editdlrm
hmm.h41680644editdlrm
host1x.h109930644editdlrm
hpet.h26150644editdlrm
hp_sdc.h143520644editdlrm
hrtimer.h165150644editdlrm
hrtimer_defs.h6600644editdlrm
htcpld.h6170644editdlrm
hugetlb.h306060644editdlrm
hugetlb_cgroup.h72410644editdlrm
hugetlb_inline.h3740644editdlrm
huge_mm.h135930644editdlrm
hwmon-sysfs.h28400644editdlrm
hwmon-vid.h8620644editdlrm
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
if_tunnel.h4090644editdlrm
if_vlan.h216930644editdlrm
igmp.h44130644editdlrm
ihex.h22060644editdlrm
ima.h59340644editdlrm
imx-media.h6050644editdlrm
in.h23450644editdlrm
in6.h16710644editdlrm
indirect_call_wrapper.h24260644editdlrm
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.h600340644editdlrm
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.h258110644editdlrm
mm_types_task.h25550644editdlrm
mnt_idmapping.h78380644editdlrm
mnt_namespace.h6970644editdlrm
module.h246150644editdlrm
moduleloader.h34980644editdlrm
moduleparam.h227780644editdlrm
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.h445450644editdlrm
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.h11470644editdlrm
pps_kernel.h30100644editdlrm
pr.h5660644editdlrm
prandom.h34580644editdlrm
preempt.h150480644editdlrm
prefetch.h17400644editdlrm
prime_numbers.h13840644editdlrm
printk.h227630644editdlrm
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.h102960644editdlrm
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.h603660644editdlrm
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.h1415090644editdlrm
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.h102480644editdlrm
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.h100840644editdlrm
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
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timb_dma.h11930644editdlrm
timb_gpio.h7170644editdlrm
time.h32160644editdlrm
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usb.h799540644editdlrm
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virtio_dma_buf.h11470644editdlrm
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Edit: /usr/src/linux-headers-5.15.0-190/include/linux/dmaengine.h (54851B)
/* SPDX-License-Identifier: GPL-2.0-or-later */ /* * Copyright(c) 2004 - 2006 Intel Corporation. All rights reserved. */ #ifndef LINUX_DMAENGINE_H #define LINUX_DMAENGINE_H #include #include #include #include #include #include #include #include /** * typedef dma_cookie_t - an opaque DMA cookie * * if dma_cookie_t is >0 it's a DMA request cookie, <0 it's an error code */ typedef s32 dma_cookie_t; #define DMA_MIN_COOKIE 1 static inline int dma_submit_error(dma_cookie_t cookie) { return cookie < 0 ? cookie : 0; } /** * enum dma_status - DMA transaction status * @DMA_COMPLETE: transaction completed * @DMA_IN_PROGRESS: transaction not yet processed * @DMA_PAUSED: transaction is paused * @DMA_ERROR: transaction failed */ enum dma_status { DMA_COMPLETE, DMA_IN_PROGRESS, DMA_PAUSED, DMA_ERROR, DMA_OUT_OF_ORDER, }; /** * enum dma_transaction_type - DMA transaction types/indexes * * Note: The DMA_ASYNC_TX capability is not to be set by drivers. It is * automatically set as dma devices are registered. */ enum dma_transaction_type { DMA_MEMCPY, DMA_XOR, DMA_PQ, DMA_XOR_VAL, DMA_PQ_VAL, DMA_MEMSET, DMA_MEMSET_SG, DMA_INTERRUPT, DMA_PRIVATE, DMA_ASYNC_TX, DMA_SLAVE, DMA_CYCLIC, DMA_INTERLEAVE, DMA_COMPLETION_NO_ORDER, DMA_REPEAT, DMA_LOAD_EOT, /* last transaction type for creation of the capabilities mask */ DMA_TX_TYPE_END, }; /** * enum dma_transfer_direction - dma transfer mode and direction indicator * @DMA_MEM_TO_MEM: Async/Memcpy mode * @DMA_MEM_TO_DEV: Slave mode & From Memory to Device * @DMA_DEV_TO_MEM: Slave mode & From Device to Memory * @DMA_DEV_TO_DEV: Slave mode & From Device to Device */ enum dma_transfer_direction { DMA_MEM_TO_MEM, DMA_MEM_TO_DEV, DMA_DEV_TO_MEM, DMA_DEV_TO_DEV, DMA_TRANS_NONE, }; /** * Interleaved Transfer Request * ---------------------------- * A chunk is collection of contiguous bytes to be transferred. * The gap(in bytes) between two chunks is called inter-chunk-gap(ICG). * ICGs may or may not change between chunks. * A FRAME is the smallest series of contiguous {chunk,icg} pairs, * that when repeated an integral number of times, specifies the transfer. * A transfer template is specification of a Frame, the number of times * it is to be repeated and other per-transfer attributes. * * Practically, a client driver would have ready a template for each * type of transfer it is going to need during its lifetime and * set only 'src_start' and 'dst_start' before submitting the requests. * * * | Frame-1 | Frame-2 | ~ | Frame-'numf' | * |====....==.===...=...|====....==.===...=...| ~ |====....==.===...=...| * * == Chunk size * ... ICG */ /** * struct data_chunk - Element of scatter-gather list that makes a frame. * @size: Number of bytes to read from source. * size_dst := fn(op, size_src), so doesn't mean much for destination. * @icg: Number of bytes to jump after last src/dst address of this * chunk and before first src/dst address for next chunk. * Ignored for dst(assumed 0), if dst_inc is true and dst_sgl is false. * Ignored for src(assumed 0), if src_inc is true and src_sgl is false. * @dst_icg: Number of bytes to jump after last dst address of this * chunk and before the first dst address for next chunk. * Ignored if dst_inc is true and dst_sgl is false. * @src_icg: Number of bytes to jump after last src address of this * chunk and before the first src address for next chunk. * Ignored if src_inc is true and src_sgl is false. */ struct data_chunk { size_t size; size_t icg; size_t dst_icg; size_t src_icg; }; /** * struct dma_interleaved_template - Template to convey DMAC the transfer pattern * and attributes. * @src_start: Bus address of source for the first chunk. * @dst_start: Bus address of destination for the first chunk. * @dir: Specifies the type of Source and Destination. * @src_inc: If the source address increments after reading from it. * @dst_inc: If the destination address increments after writing to it. * @src_sgl: If the 'icg' of sgl[] applies to Source (scattered read). * Otherwise, source is read contiguously (icg ignored). * Ignored if src_inc is false. * @dst_sgl: If the 'icg' of sgl[] applies to Destination (scattered write). * Otherwise, destination is filled contiguously (icg ignored). * Ignored if dst_inc is false. * @numf: Number of frames in this template. * @frame_size: Number of chunks in a frame i.e, size of sgl[]. * @sgl: Array of {chunk,icg} pairs that make up a frame. */ struct dma_interleaved_template { dma_addr_t src_start; dma_addr_t dst_start; enum dma_transfer_direction dir; bool src_inc; bool dst_inc; bool src_sgl; bool dst_sgl; size_t numf; size_t frame_size; struct data_chunk sgl[]; }; /** * enum dma_ctrl_flags - DMA flags to augment operation preparation, * control completion, and communicate status. * @DMA_PREP_INTERRUPT - trigger an interrupt (callback) upon completion of * this transaction * @DMA_CTRL_ACK - if clear, the descriptor cannot be reused until the client * acknowledges receipt, i.e. has a chance to establish any dependency * chains * @DMA_PREP_PQ_DISABLE_P - prevent generation of P while generating Q * @DMA_PREP_PQ_DISABLE_Q - prevent generation of Q while generating P * @DMA_PREP_CONTINUE - indicate to a driver that it is reusing buffers as * sources that were the result of a previous operation, in the case of a PQ * operation it continues the calculation with new sources * @DMA_PREP_FENCE - tell the driver that subsequent operations depend * on the result of this operation * @DMA_CTRL_REUSE: client can reuse the descriptor and submit again till * cleared or freed * @DMA_PREP_CMD: tell the driver that the data passed to DMA API is command * data and the descriptor should be in different format from normal * data descriptors. * @DMA_PREP_REPEAT: tell the driver that the transaction shall be automatically * repeated when it ends until a transaction is issued on the same channel * with the DMA_PREP_LOAD_EOT flag set. This flag is only applicable to * interleaved transactions and is ignored for all other transaction types. * @DMA_PREP_LOAD_EOT: tell the driver that the transaction shall replace any * active repeated (as indicated by DMA_PREP_REPEAT) transaction when the * repeated transaction ends. Not setting this flag when the previously queued * transaction is marked with DMA_PREP_REPEAT will cause the new transaction * to never be processed and stay in the issued queue forever. The flag is * ignored if the previous transaction is not a repeated transaction. */ enum dma_ctrl_flags { DMA_PREP_INTERRUPT = (1 << 0), DMA_CTRL_ACK = (1 << 1), DMA_PREP_PQ_DISABLE_P = (1 << 2), DMA_PREP_PQ_DISABLE_Q = (1 << 3), DMA_PREP_CONTINUE = (1 << 4), DMA_PREP_FENCE = (1 << 5), DMA_CTRL_REUSE = (1 << 6), DMA_PREP_CMD = (1 << 7), DMA_PREP_REPEAT = (1 << 8), DMA_PREP_LOAD_EOT = (1 << 9), }; /** * enum sum_check_bits - bit position of pq_check_flags */ enum sum_check_bits { SUM_CHECK_P = 0, SUM_CHECK_Q = 1, }; /** * enum pq_check_flags - result of async_{xor,pq}_zero_sum operations * @SUM_CHECK_P_RESULT - 1 if xor zero sum error, 0 otherwise * @SUM_CHECK_Q_RESULT - 1 if reed-solomon zero sum error, 0 otherwise */ enum sum_check_flags { SUM_CHECK_P_RESULT = (1 << SUM_CHECK_P), SUM_CHECK_Q_RESULT = (1 << SUM_CHECK_Q), }; /** * dma_cap_mask_t - capabilities bitmap modeled after cpumask_t. * See linux/cpumask.h */ typedef struct { DECLARE_BITMAP(bits, DMA_TX_TYPE_END); } dma_cap_mask_t; /** * enum dma_desc_metadata_mode - per descriptor metadata mode types supported * @DESC_METADATA_CLIENT - the metadata buffer is allocated/provided by the * client driver and it is attached (via the dmaengine_desc_attach_metadata() * helper) to the descriptor. * * Client drivers interested to use this mode can follow: * - DMA_MEM_TO_DEV / DEV_MEM_TO_MEM: * 1. prepare the descriptor (dmaengine_prep_*) * construct the metadata in the client's buffer * 2. use dmaengine_desc_attach_metadata() to attach the buffer to the * descriptor * 3. submit the transfer * - DMA_DEV_TO_MEM: * 1. prepare the descriptor (dmaengine_prep_*) * 2. use dmaengine_desc_attach_metadata() to attach the buffer to the * descriptor * 3. submit the transfer * 4. when the transfer is completed, the metadata should be available in the * attached buffer * * @DESC_METADATA_ENGINE - the metadata buffer is allocated/managed by the DMA * driver. The client driver can ask for the pointer, maximum size and the * currently used size of the metadata and can directly update or read it. * dmaengine_desc_get_metadata_ptr() and dmaengine_desc_set_metadata_len() is * provided as helper functions. * * Note: the metadata area for the descriptor is no longer valid after the * transfer has been completed (valid up to the point when the completion * callback returns if used). * * Client drivers interested to use this mode can follow: * - DMA_MEM_TO_DEV / DEV_MEM_TO_MEM: * 1. prepare the descriptor (dmaengine_prep_*) * 2. use dmaengine_desc_get_metadata_ptr() to get the pointer to the engine's * metadata area * 3. update the metadata at the pointer * 4. use dmaengine_desc_set_metadata_len() to tell the DMA engine the amount * of data the client has placed into the metadata buffer * 5. submit the transfer * - DMA_DEV_TO_MEM: * 1. prepare the descriptor (dmaengine_prep_*) * 2. submit the transfer * 3. on transfer completion, use dmaengine_desc_get_metadata_ptr() to get the * pointer to the engine's metadata area * 4. Read out the metadata from the pointer * * Note: the two mode is not compatible and clients must use one mode for a * descriptor. */ enum dma_desc_metadata_mode { DESC_METADATA_NONE = 0, DESC_METADATA_CLIENT = BIT(0), DESC_METADATA_ENGINE = BIT(1), }; /** * struct dma_chan_percpu - the per-CPU part of struct dma_chan * @memcpy_count: transaction counter * @bytes_transferred: byte counter */ struct dma_chan_percpu { /* stats */ unsigned long memcpy_count; unsigned long bytes_transferred; }; /** * struct dma_router - DMA router structure * @dev: pointer to the DMA router device * @route_free: function to be called when the route can be disconnected */ struct dma_router { struct device *dev; void (*route_free)(struct device *dev, void *route_data); }; /** * struct dma_chan - devices supply DMA channels, clients use them * @device: ptr to the dma device who supplies this channel, always !%NULL * @slave: ptr to the device using this channel * @cookie: last cookie value returned to client * @completed_cookie: last completed cookie for this channel * @chan_id: channel ID for sysfs * @dev: class device for sysfs * @name: backlink name for sysfs * @dbg_client_name: slave name for debugfs in format: * dev_name(requester's dev):channel name, for example: "2b00000.mcasp:tx" * @device_node: used to add this to the device chan list * @local: per-cpu pointer to a struct dma_chan_percpu * @client_count: how many clients are using this channel * @table_count: number of appearances in the mem-to-mem allocation table * @router: pointer to the DMA router structure * @route_data: channel specific data for the router * @private: private data for certain client-channel associations */ struct dma_chan { struct dma_device *device; struct device *slave; dma_cookie_t cookie; dma_cookie_t completed_cookie; /* sysfs */ int chan_id; struct dma_chan_dev *dev; const char *name; #ifdef CONFIG_DEBUG_FS char *dbg_client_name; #endif struct list_head device_node; struct dma_chan_percpu __percpu *local; int client_count; int table_count; /* DMA router */ struct dma_router *router; void *route_data; void *private; }; /** * struct dma_chan_dev - relate sysfs device node to backing channel device * @chan: driver channel device * @device: sysfs device * @dev_id: parent dma_device dev_id * @chan_dma_dev: The channel is using custom/different dma-mapping * compared to the parent dma_device */ struct dma_chan_dev { struct dma_chan *chan; struct device device; int dev_id; bool chan_dma_dev; }; /** * enum dma_slave_buswidth - defines bus width of the DMA slave * device, source or target buses */ enum dma_slave_buswidth { DMA_SLAVE_BUSWIDTH_UNDEFINED = 0, DMA_SLAVE_BUSWIDTH_1_BYTE = 1, DMA_SLAVE_BUSWIDTH_2_BYTES = 2, DMA_SLAVE_BUSWIDTH_3_BYTES = 3, DMA_SLAVE_BUSWIDTH_4_BYTES = 4, DMA_SLAVE_BUSWIDTH_8_BYTES = 8, DMA_SLAVE_BUSWIDTH_16_BYTES = 16, DMA_SLAVE_BUSWIDTH_32_BYTES = 32, DMA_SLAVE_BUSWIDTH_64_BYTES = 64, DMA_SLAVE_BUSWIDTH_128_BYTES = 128, }; /** * struct dma_slave_config - dma slave channel runtime config * @direction: whether the data shall go in or out on this slave * channel, right now. DMA_MEM_TO_DEV and DMA_DEV_TO_MEM are * legal values. DEPRECATED, drivers should use the direction argument * to the device_prep_slave_sg and device_prep_dma_cyclic functions or * the dir field in the dma_interleaved_template structure. * @src_addr: this is the physical address where DMA slave data * should be read (RX), if the source is memory this argument is * ignored. * @dst_addr: this is the physical address where DMA slave data * should be written (TX), if the source is memory this argument * is ignored. * @src_addr_width: this is the width in bytes of the source (RX) * register where DMA data shall be read. If the source * is memory this may be ignored depending on architecture. * Legal values: 1, 2, 3, 4, 8, 16, 32, 64, 128. * @dst_addr_width: same as src_addr_width but for destination * target (TX) mutatis mutandis. * @src_maxburst: the maximum number of words (note: words, as in * units of the src_addr_width member, not bytes) that can be sent * in one burst to the device. Typically something like half the * FIFO depth on I/O peripherals so you don't overflow it. This * may or may not be applicable on memory sources. * @dst_maxburst: same as src_maxburst but for destination target * mutatis mutandis. * @src_port_window_size: The length of the register area in words the data need * to be accessed on the device side. It is only used for devices which is using * an area instead of a single register to receive the data. Typically the DMA * loops in this area in order to transfer the data. * @dst_port_window_size: same as src_port_window_size but for the destination * port. * @device_fc: Flow Controller Settings. Only valid for slave channels. Fill * with 'true' if peripheral should be flow controller. Direction will be * selected at Runtime. * @slave_id: Slave requester id. Only valid for slave channels. The dma * slave peripheral will have unique id as dma requester which need to be * pass as slave config. * @peripheral_config: peripheral configuration for programming peripheral * for dmaengine transfer * @peripheral_size: peripheral configuration buffer size * * This struct is passed in as configuration data to a DMA engine * in order to set up a certain channel for DMA transport at runtime. * The DMA device/engine has to provide support for an additional * callback in the dma_device structure, device_config and this struct * will then be passed in as an argument to the function. * * The rationale for adding configuration information to this struct is as * follows: if it is likely that more than one DMA slave controllers in * the world will support the configuration option, then make it generic. * If not: if it is fixed so that it be sent in static from the platform * data, then prefer to do that. */ struct dma_slave_config { enum dma_transfer_direction direction; phys_addr_t src_addr; phys_addr_t dst_addr; enum dma_slave_buswidth src_addr_width; enum dma_slave_buswidth dst_addr_width; u32 src_maxburst; u32 dst_maxburst; u32 src_port_window_size; u32 dst_port_window_size; bool device_fc; unsigned int slave_id; void *peripheral_config; size_t peripheral_size; }; /** * enum dma_residue_granularity - Granularity of the reported transfer residue * @DMA_RESIDUE_GRANULARITY_DESCRIPTOR: Residue reporting is not support. The * DMA channel is only able to tell whether a descriptor has been completed or * not, which means residue reporting is not supported by this channel. The * residue field of the dma_tx_state field will always be 0. * @DMA_RESIDUE_GRANULARITY_SEGMENT: Residue is updated after each successfully * completed segment of the transfer (For cyclic transfers this is after each * period). This is typically implemented by having the hardware generate an * interrupt after each transferred segment and then the drivers updates the * outstanding residue by the size of the segment. Another possibility is if * the hardware supports scatter-gather and the segment descriptor has a field * which gets set after the segment has been completed. The driver then counts * the number of segments without the flag set to compute the residue. * @DMA_RESIDUE_GRANULARITY_BURST: Residue is updated after each transferred * burst. This is typically only supported if the hardware has a progress * register of some sort (E.g. a register with the current read/write address * or a register with the amount of bursts/beats/bytes that have been * transferred or still need to be transferred). */ enum dma_residue_granularity { DMA_RESIDUE_GRANULARITY_DESCRIPTOR = 0, DMA_RESIDUE_GRANULARITY_SEGMENT = 1, DMA_RESIDUE_GRANULARITY_BURST = 2, }; /** * struct dma_slave_caps - expose capabilities of a slave channel only * @src_addr_widths: bit mask of src addr widths the channel supports. * Width is specified in bytes, e.g. for a channel supporting * a width of 4 the mask should have BIT(4) set. * @dst_addr_widths: bit mask of dst addr widths the channel supports * @directions: bit mask of slave directions the channel supports. * Since the enum dma_transfer_direction is not defined as bit flag for * each type, the dma controller should set BIT() and same * should be checked by controller as well * @min_burst: min burst capability per-transfer * @max_burst: max burst capability per-transfer * @max_sg_burst: max number of SG list entries executed in a single burst * DMA tansaction with no software intervention for reinitialization. * Zero value means unlimited number of entries. * @cmd_pause: true, if pause is supported (i.e. for reading residue or * for resume later) * @cmd_resume: true, if resume is supported * @cmd_terminate: true, if terminate cmd is supported * @residue_granularity: granularity of the reported transfer residue * @descriptor_reuse: if a descriptor can be reused by client and * resubmitted multiple times */ struct dma_slave_caps { u32 src_addr_widths; u32 dst_addr_widths; u32 directions; u32 min_burst; u32 max_burst; u32 max_sg_burst; bool cmd_pause; bool cmd_resume; bool cmd_terminate; enum dma_residue_granularity residue_granularity; bool descriptor_reuse; }; static inline const char *dma_chan_name(struct dma_chan *chan) { return dev_name(&chan->dev->device); } void dma_chan_cleanup(struct kref *kref); /** * typedef dma_filter_fn - callback filter for dma_request_channel * @chan: channel to be reviewed * @filter_param: opaque parameter passed through dma_request_channel * * When this optional parameter is specified in a call to dma_request_channel a * suitable channel is passed to this routine for further dispositioning before * being returned. Where 'suitable' indicates a non-busy channel that * satisfies the given capability mask. It returns 'true' to indicate that the * channel is suitable. */ typedef bool (*dma_filter_fn)(struct dma_chan *chan, void *filter_param); typedef void (*dma_async_tx_callback)(void *dma_async_param); enum dmaengine_tx_result { DMA_TRANS_NOERROR = 0, /* SUCCESS */ DMA_TRANS_READ_FAILED, /* Source DMA read failed */ DMA_TRANS_WRITE_FAILED, /* Destination DMA write failed */ DMA_TRANS_ABORTED, /* Op never submitted / aborted */ }; struct dmaengine_result { enum dmaengine_tx_result result; u32 residue; }; typedef void (*dma_async_tx_callback_result)(void *dma_async_param, const struct dmaengine_result *result); struct dmaengine_unmap_data { #if IS_ENABLED(CONFIG_DMA_ENGINE_RAID) u16 map_cnt; #else u8 map_cnt; #endif u8 to_cnt; u8 from_cnt; u8 bidi_cnt; struct device *dev; struct kref kref; size_t len; dma_addr_t addr[]; }; struct dma_async_tx_descriptor; struct dma_descriptor_metadata_ops { int (*attach)(struct dma_async_tx_descriptor *desc, void *data, size_t len); void *(*get_ptr)(struct dma_async_tx_descriptor *desc, size_t *payload_len, size_t *max_len); int (*set_len)(struct dma_async_tx_descriptor *desc, size_t payload_len); }; /** * struct dma_async_tx_descriptor - async transaction descriptor * ---dma generic offload fields--- * @cookie: tracking cookie for this transaction, set to -EBUSY if * this tx is sitting on a dependency list * @flags: flags to augment operation preparation, control completion, and * communicate status * @phys: physical address of the descriptor * @chan: target channel for this operation * @tx_submit: accept the descriptor, assign ordered cookie and mark the * descriptor pending. To be pushed on .issue_pending() call * @callback: routine to call after this operation is complete * @callback_param: general parameter to pass to the callback routine * @desc_metadata_mode: core managed metadata mode to protect mixed use of * DESC_METADATA_CLIENT or DESC_METADATA_ENGINE. Otherwise * DESC_METADATA_NONE * @metadata_ops: DMA driver provided metadata mode ops, need to be set by the * DMA driver if metadata mode is supported with the descriptor * ---async_tx api specific fields--- * @next: at completion submit this descriptor * @parent: pointer to the next level up in the dependency chain * @lock: protect the parent and next pointers */ struct dma_async_tx_descriptor { dma_cookie_t cookie; enum dma_ctrl_flags flags; /* not a 'long' to pack with cookie */ dma_addr_t phys; struct dma_chan *chan; dma_cookie_t (*tx_submit)(struct dma_async_tx_descriptor *tx); int (*desc_free)(struct dma_async_tx_descriptor *tx); dma_async_tx_callback callback; dma_async_tx_callback_result callback_result; void *callback_param; struct dmaengine_unmap_data *unmap; enum dma_desc_metadata_mode desc_metadata_mode; struct dma_descriptor_metadata_ops *metadata_ops; #ifdef CONFIG_ASYNC_TX_ENABLE_CHANNEL_SWITCH struct dma_async_tx_descriptor *next; struct dma_async_tx_descriptor *parent; spinlock_t lock; #endif }; #ifdef CONFIG_DMA_ENGINE static inline void dma_set_unmap(struct dma_async_tx_descriptor *tx, struct dmaengine_unmap_data *unmap) { kref_get(&unmap->kref); tx->unmap = unmap; } struct dmaengine_unmap_data * dmaengine_get_unmap_data(struct device *dev, int nr, gfp_t flags); void dmaengine_unmap_put(struct dmaengine_unmap_data *unmap); #else static inline void dma_set_unmap(struct dma_async_tx_descriptor *tx, struct dmaengine_unmap_data *unmap) { } static inline struct dmaengine_unmap_data * dmaengine_get_unmap_data(struct device *dev, int nr, gfp_t flags) { return NULL; } static inline void dmaengine_unmap_put(struct dmaengine_unmap_data *unmap) { } #endif static inline void dma_descriptor_unmap(struct dma_async_tx_descriptor *tx) { if (!tx->unmap) return; dmaengine_unmap_put(tx->unmap); tx->unmap = NULL; } #ifndef CONFIG_ASYNC_TX_ENABLE_CHANNEL_SWITCH static inline void txd_lock(struct dma_async_tx_descriptor *txd) { } static inline void txd_unlock(struct dma_async_tx_descriptor *txd) { } static inline void txd_chain(struct dma_async_tx_descriptor *txd, struct dma_async_tx_descriptor *next) { BUG(); } static inline void txd_clear_parent(struct dma_async_tx_descriptor *txd) { } static inline void txd_clear_next(struct dma_async_tx_descriptor *txd) { } static inline struct dma_async_tx_descriptor *txd_next(struct dma_async_tx_descriptor *txd) { return NULL; } static inline struct dma_async_tx_descriptor *txd_parent(struct dma_async_tx_descriptor *txd) { return NULL; } #else static inline void txd_lock(struct dma_async_tx_descriptor *txd) { spin_lock_bh(&txd->lock); } static inline void txd_unlock(struct dma_async_tx_descriptor *txd) { spin_unlock_bh(&txd->lock); } static inline void txd_chain(struct dma_async_tx_descriptor *txd, struct dma_async_tx_descriptor *next) { txd->next = next; next->parent = txd; } static inline void txd_clear_parent(struct dma_async_tx_descriptor *txd) { txd->parent = NULL; } static inline void txd_clear_next(struct dma_async_tx_descriptor *txd) { txd->next = NULL; } static inline struct dma_async_tx_descriptor *txd_parent(struct dma_async_tx_descriptor *txd) { return txd->parent; } static inline struct dma_async_tx_descriptor *txd_next(struct dma_async_tx_descriptor *txd) { return txd->next; } #endif /** * struct dma_tx_state - filled in to report the status of * a transfer. * @last: last completed DMA cookie * @used: last issued DMA cookie (i.e. the one in progress) * @residue: the remaining number of bytes left to transmit * on the selected transfer for states DMA_IN_PROGRESS and * DMA_PAUSED if this is implemented in the driver, else 0 * @in_flight_bytes: amount of data in bytes cached by the DMA. */ struct dma_tx_state { dma_cookie_t last; dma_cookie_t used; u32 residue; u32 in_flight_bytes; }; /** * enum dmaengine_alignment - defines alignment of the DMA async tx * buffers */ enum dmaengine_alignment { DMAENGINE_ALIGN_1_BYTE = 0, DMAENGINE_ALIGN_2_BYTES = 1, DMAENGINE_ALIGN_4_BYTES = 2, DMAENGINE_ALIGN_8_BYTES = 3, DMAENGINE_ALIGN_16_BYTES = 4, DMAENGINE_ALIGN_32_BYTES = 5, DMAENGINE_ALIGN_64_BYTES = 6, DMAENGINE_ALIGN_128_BYTES = 7, DMAENGINE_ALIGN_256_BYTES = 8, }; /** * struct dma_slave_map - associates slave device and it's slave channel with * parameter to be used by a filter function * @devname: name of the device * @slave: slave channel name * @param: opaque parameter to pass to struct dma_filter.fn */ struct dma_slave_map { const char *devname; const char *slave; void *param; }; /** * struct dma_filter - information for slave device/channel to filter_fn/param * mapping * @fn: filter function callback * @mapcnt: number of slave device/channel in the map * @map: array of channel to filter mapping data */ struct dma_filter { dma_filter_fn fn; int mapcnt; const struct dma_slave_map *map; }; /** * struct dma_device - info on the entity supplying DMA services * @chancnt: how many DMA channels are supported * @privatecnt: how many DMA channels are requested by dma_request_channel * @channels: the list of struct dma_chan * @global_node: list_head for global dma_device_list * @filter: information for device/slave to filter function/param mapping * @cap_mask: one or more dma_capability flags * @desc_metadata_modes: supported metadata modes by the DMA device * @max_xor: maximum number of xor sources, 0 if no capability * @max_pq: maximum number of PQ sources and PQ-continue capability * @copy_align: alignment shift for memcpy operations * @xor_align: alignment shift for xor operations * @pq_align: alignment shift for pq operations * @fill_align: alignment shift for memset operations * @dev_id: unique device ID * @dev: struct device reference for dma mapping api * @owner: owner module (automatically set based on the provided dev) * @src_addr_widths: bit mask of src addr widths the device supports * Width is specified in bytes, e.g. for a device supporting * a width of 4 the mask should have BIT(4) set. * @dst_addr_widths: bit mask of dst addr widths the device supports * @directions: bit mask of slave directions the device supports. * Since the enum dma_transfer_direction is not defined as bit flag for * each type, the dma controller should set BIT() and same * should be checked by controller as well * @min_burst: min burst capability per-transfer * @max_burst: max burst capability per-transfer * @max_sg_burst: max number of SG list entries executed in a single burst * DMA tansaction with no software intervention for reinitialization. * Zero value means unlimited number of entries. * @residue_granularity: granularity of the transfer residue reported * by tx_status * @device_alloc_chan_resources: allocate resources and return the * number of allocated descriptors * @device_router_config: optional callback for DMA router configuration * @device_free_chan_resources: release DMA channel's resources * @device_prep_dma_memcpy: prepares a memcpy operation * @device_prep_dma_xor: prepares a xor operation * @device_prep_dma_xor_val: prepares a xor validation operation * @device_prep_dma_pq: prepares a pq operation * @device_prep_dma_pq_val: prepares a pqzero_sum operation * @device_prep_dma_memset: prepares a memset operation * @device_prep_dma_memset_sg: prepares a memset operation over a scatter list * @device_prep_dma_interrupt: prepares an end of chain interrupt operation * @device_prep_slave_sg: prepares a slave dma operation * @device_prep_dma_cyclic: prepare a cyclic dma operation suitable for audio. * The function takes a buffer of size buf_len. The callback function will * be called after period_len bytes have been transferred. * @device_prep_interleaved_dma: Transfer expression in a generic way. * @device_prep_dma_imm_data: DMA's 8 byte immediate data to the dst address * @device_caps: May be used to override the generic DMA slave capabilities * with per-channel specific ones * @device_config: Pushes a new configuration to a channel, return 0 or an error * code * @device_pause: Pauses any transfer happening on a channel. Returns * 0 or an error code * @device_resume: Resumes any transfer on a channel previously * paused. Returns 0 or an error code * @device_terminate_all: Aborts all transfers on a channel. Returns 0 * or an error code * @device_synchronize: Synchronizes the termination of a transfers to the * current context. * @device_tx_status: poll for transaction completion, the optional * txstate parameter can be supplied with a pointer to get a * struct with auxiliary transfer status information, otherwise the call * will just return a simple status code * @device_issue_pending: push pending transactions to hardware * @descriptor_reuse: a submitted transfer can be resubmitted after completion * @device_release: called sometime atfer dma_async_device_unregister() is * called and there are no further references to this structure. This * must be implemented to free resources however many existing drivers * do not and are therefore not safe to unbind while in use. * @dbg_summary_show: optional routine to show contents in debugfs; default code * will be used when this is omitted, but custom code can show extra, * controller specific information. */ struct dma_device { struct kref ref; unsigned int chancnt; unsigned int privatecnt; struct list_head channels; struct list_head global_node; struct dma_filter filter; dma_cap_mask_t cap_mask; enum dma_desc_metadata_mode desc_metadata_modes; unsigned short max_xor; unsigned short max_pq; enum dmaengine_alignment copy_align; enum dmaengine_alignment xor_align; enum dmaengine_alignment pq_align; enum dmaengine_alignment fill_align; #define DMA_HAS_PQ_CONTINUE (1 << 15) int dev_id; struct device *dev; struct module *owner; struct ida chan_ida; struct mutex chan_mutex; /* to protect chan_ida */ u32 src_addr_widths; u32 dst_addr_widths; u32 directions; u32 min_burst; u32 max_burst; u32 max_sg_burst; bool descriptor_reuse; enum dma_residue_granularity residue_granularity; int (*device_alloc_chan_resources)(struct dma_chan *chan); int (*device_router_config)(struct dma_chan *chan); void (*device_free_chan_resources)(struct dma_chan *chan); struct dma_async_tx_descriptor *(*device_prep_dma_memcpy)( struct dma_chan *chan, dma_addr_t dst, dma_addr_t src, size_t len, unsigned long flags); struct dma_async_tx_descriptor *(*device_prep_dma_xor)( struct dma_chan *chan, dma_addr_t dst, dma_addr_t *src, unsigned int src_cnt, size_t len, unsigned long flags); struct dma_async_tx_descriptor *(*device_prep_dma_xor_val)( struct dma_chan *chan, dma_addr_t *src, unsigned int src_cnt, size_t len, enum sum_check_flags *result, unsigned long flags); struct dma_async_tx_descriptor *(*device_prep_dma_pq)( struct dma_chan *chan, dma_addr_t *dst, dma_addr_t *src, unsigned int src_cnt, const unsigned char *scf, size_t len, unsigned long flags); struct dma_async_tx_descriptor *(*device_prep_dma_pq_val)( struct dma_chan *chan, dma_addr_t *pq, dma_addr_t *src, unsigned int src_cnt, const unsigned char *scf, size_t len, enum sum_check_flags *pqres, unsigned long flags); struct dma_async_tx_descriptor *(*device_prep_dma_memset)( struct dma_chan *chan, dma_addr_t dest, int value, size_t len, unsigned long flags); struct dma_async_tx_descriptor *(*device_prep_dma_memset_sg)( struct dma_chan *chan, struct scatterlist *sg, unsigned int nents, int value, unsigned long flags); struct dma_async_tx_descriptor *(*device_prep_dma_interrupt)( struct dma_chan *chan, unsigned long flags); struct dma_async_tx_descriptor *(*device_prep_slave_sg)( struct dma_chan *chan, struct scatterlist *sgl, unsigned int sg_len, enum dma_transfer_direction direction, unsigned long flags, void *context); struct dma_async_tx_descriptor *(*device_prep_dma_cyclic)( struct dma_chan *chan, dma_addr_t buf_addr, size_t buf_len, size_t period_len, enum dma_transfer_direction direction, unsigned long flags); struct dma_async_tx_descriptor *(*device_prep_interleaved_dma)( struct dma_chan *chan, struct dma_interleaved_template *xt, unsigned long flags); struct dma_async_tx_descriptor *(*device_prep_dma_imm_data)( struct dma_chan *chan, dma_addr_t dst, u64 data, unsigned long flags); void (*device_caps)(struct dma_chan *chan, struct dma_slave_caps *caps); int (*device_config)(struct dma_chan *chan, struct dma_slave_config *config); int (*device_pause)(struct dma_chan *chan); int (*device_resume)(struct dma_chan *chan); int (*device_terminate_all)(struct dma_chan *chan); void (*device_synchronize)(struct dma_chan *chan); enum dma_status (*device_tx_status)(struct dma_chan *chan, dma_cookie_t cookie, struct dma_tx_state *txstate); void (*device_issue_pending)(struct dma_chan *chan); void (*device_release)(struct dma_device *dev); /* debugfs support */ void (*dbg_summary_show)(struct seq_file *s, struct dma_device *dev); struct dentry *dbg_dev_root; }; static inline int dmaengine_slave_config(struct dma_chan *chan, struct dma_slave_config *config) { if (chan->device->device_config) return chan->device->device_config(chan, config); return -ENOSYS; } static inline bool is_slave_direction(enum dma_transfer_direction direction) { return (direction == DMA_MEM_TO_DEV) || (direction == DMA_DEV_TO_MEM) || (direction == DMA_DEV_TO_DEV); } static inline struct dma_async_tx_descriptor *dmaengine_prep_slave_single( struct dma_chan *chan, dma_addr_t buf, size_t len, enum dma_transfer_direction dir, unsigned long flags) { struct scatterlist sg; sg_init_table(&sg, 1); sg_dma_address(&sg) = buf; sg_dma_len(&sg) = len; if (!chan || !chan->device || !chan->device->device_prep_slave_sg) return NULL; return chan->device->device_prep_slave_sg(chan, &sg, 1, dir, flags, NULL); } static inline struct dma_async_tx_descriptor *dmaengine_prep_slave_sg( struct dma_chan *chan, struct scatterlist *sgl, unsigned int sg_len, enum dma_transfer_direction dir, unsigned long flags) { if (!chan || !chan->device || !chan->device->device_prep_slave_sg) return NULL; return chan->device->device_prep_slave_sg(chan, sgl, sg_len, dir, flags, NULL); } #ifdef CONFIG_RAPIDIO_DMA_ENGINE struct rio_dma_ext; static inline struct dma_async_tx_descriptor *dmaengine_prep_rio_sg( struct dma_chan *chan, struct scatterlist *sgl, unsigned int sg_len, enum dma_transfer_direction dir, unsigned long flags, struct rio_dma_ext *rio_ext) { if (!chan || !chan->device || !chan->device->device_prep_slave_sg) return NULL; return chan->device->device_prep_slave_sg(chan, sgl, sg_len, dir, flags, rio_ext); } #endif static inline struct dma_async_tx_descriptor *dmaengine_prep_dma_cyclic( struct dma_chan *chan, dma_addr_t buf_addr, size_t buf_len, size_t period_len, enum dma_transfer_direction dir, unsigned long flags) { if (!chan || !chan->device || !chan->device->device_prep_dma_cyclic) return NULL; return chan->device->device_prep_dma_cyclic(chan, buf_addr, buf_len, period_len, dir, flags); } static inline struct dma_async_tx_descriptor *dmaengine_prep_interleaved_dma( struct dma_chan *chan, struct dma_interleaved_template *xt, unsigned long flags) { if (!chan || !chan->device || !chan->device->device_prep_interleaved_dma) return NULL; if (flags & DMA_PREP_REPEAT && !test_bit(DMA_REPEAT, chan->device->cap_mask.bits)) return NULL; return chan->device->device_prep_interleaved_dma(chan, xt, flags); } static inline struct dma_async_tx_descriptor *dmaengine_prep_dma_memset( struct dma_chan *chan, dma_addr_t dest, int value, size_t len, unsigned long flags) { if (!chan || !chan->device || !chan->device->device_prep_dma_memset) return NULL; return chan->device->device_prep_dma_memset(chan, dest, value, len, flags); } static inline struct dma_async_tx_descriptor *dmaengine_prep_dma_memcpy( struct dma_chan *chan, dma_addr_t dest, dma_addr_t src, size_t len, unsigned long flags) { if (!chan || !chan->device || !chan->device->device_prep_dma_memcpy) return NULL; return chan->device->device_prep_dma_memcpy(chan, dest, src, len, flags); } static inline bool dmaengine_is_metadata_mode_supported(struct dma_chan *chan, enum dma_desc_metadata_mode mode) { if (!chan) return false; return !!(chan->device->desc_metadata_modes & mode); } #ifdef CONFIG_DMA_ENGINE int dmaengine_desc_attach_metadata(struct dma_async_tx_descriptor *desc, void *data, size_t len); void *dmaengine_desc_get_metadata_ptr(struct dma_async_tx_descriptor *desc, size_t *payload_len, size_t *max_len); int dmaengine_desc_set_metadata_len(struct dma_async_tx_descriptor *desc, size_t payload_len); #else /* CONFIG_DMA_ENGINE */ static inline int dmaengine_desc_attach_metadata( struct dma_async_tx_descriptor *desc, void *data, size_t len) { return -EINVAL; } static inline void *dmaengine_desc_get_metadata_ptr( struct dma_async_tx_descriptor *desc, size_t *payload_len, size_t *max_len) { return NULL; } static inline int dmaengine_desc_set_metadata_len( struct dma_async_tx_descriptor *desc, size_t payload_len) { return -EINVAL; } #endif /* CONFIG_DMA_ENGINE */ /** * dmaengine_terminate_all() - Terminate all active DMA transfers * @chan: The channel for which to terminate the transfers * * This function is DEPRECATED use either dmaengine_terminate_sync() or * dmaengine_terminate_async() instead. */ static inline int dmaengine_terminate_all(struct dma_chan *chan) { if (chan->device->device_terminate_all) return chan->device->device_terminate_all(chan); return -ENOSYS; } /** * dmaengine_terminate_async() - Terminate all active DMA transfers * @chan: The channel for which to terminate the transfers * * Calling this function will terminate all active and pending descriptors * that have previously been submitted to the channel. It is not guaranteed * though that the transfer for the active descriptor has stopped when the * function returns. Furthermore it is possible the complete callback of a * submitted transfer is still running when this function returns. * * dmaengine_synchronize() needs to be called before it is safe to free * any memory that is accessed by previously submitted descriptors or before * freeing any resources accessed from within the completion callback of any * previously submitted descriptors. * * This function can be called from atomic context as well as from within a * complete callback of a descriptor submitted on the same channel. * * If none of the two conditions above apply consider using * dmaengine_terminate_sync() instead. */ static inline int dmaengine_terminate_async(struct dma_chan *chan) { if (chan->device->device_terminate_all) return chan->device->device_terminate_all(chan); return -EINVAL; } /** * dmaengine_synchronize() - Synchronize DMA channel termination * @chan: The channel to synchronize * * Synchronizes to the DMA channel termination to the current context. When this * function returns it is guaranteed that all transfers for previously issued * descriptors have stopped and it is safe to free the memory associated * with them. Furthermore it is guaranteed that all complete callback functions * for a previously submitted descriptor have finished running and it is safe to * free resources accessed from within the complete callbacks. * * The behavior of this function is undefined if dma_async_issue_pending() has * been called between dmaengine_terminate_async() and this function. * * This function must only be called from non-atomic context and must not be * called from within a complete callback of a descriptor submitted on the same * channel. */ static inline void dmaengine_synchronize(struct dma_chan *chan) { might_sleep(); if (chan->device->device_synchronize) chan->device->device_synchronize(chan); } /** * dmaengine_terminate_sync() - Terminate all active DMA transfers * @chan: The channel for which to terminate the transfers * * Calling this function will terminate all active and pending transfers * that have previously been submitted to the channel. It is similar to * dmaengine_terminate_async() but guarantees that the DMA transfer has actually * stopped and that all complete callbacks have finished running when the * function returns. * * This function must only be called from non-atomic context and must not be * called from within a complete callback of a descriptor submitted on the same * channel. */ static inline int dmaengine_terminate_sync(struct dma_chan *chan) { int ret; ret = dmaengine_terminate_async(chan); if (ret) return ret; dmaengine_synchronize(chan); return 0; } static inline int dmaengine_pause(struct dma_chan *chan) { if (chan->device->device_pause) return chan->device->device_pause(chan); return -ENOSYS; } static inline int dmaengine_resume(struct dma_chan *chan) { if (chan->device->device_resume) return chan->device->device_resume(chan); return -ENOSYS; } static inline enum dma_status dmaengine_tx_status(struct dma_chan *chan, dma_cookie_t cookie, struct dma_tx_state *state) { return chan->device->device_tx_status(chan, cookie, state); } static inline dma_cookie_t dmaengine_submit(struct dma_async_tx_descriptor *desc) { return desc->tx_submit(desc); } static inline bool dmaengine_check_align(enum dmaengine_alignment align, size_t off1, size_t off2, size_t len) { return !(((1 << align) - 1) & (off1 | off2 | len)); } static inline bool is_dma_copy_aligned(struct dma_device *dev, size_t off1, size_t off2, size_t len) { return dmaengine_check_align(dev->copy_align, off1, off2, len); } static inline bool is_dma_xor_aligned(struct dma_device *dev, size_t off1, size_t off2, size_t len) { return dmaengine_check_align(dev->xor_align, off1, off2, len); } static inline bool is_dma_pq_aligned(struct dma_device *dev, size_t off1, size_t off2, size_t len) { return dmaengine_check_align(dev->pq_align, off1, off2, len); } static inline bool is_dma_fill_aligned(struct dma_device *dev, size_t off1, size_t off2, size_t len) { return dmaengine_check_align(dev->fill_align, off1, off2, len); } static inline void dma_set_maxpq(struct dma_device *dma, int maxpq, int has_pq_continue) { dma->max_pq = maxpq; if (has_pq_continue) dma->max_pq |= DMA_HAS_PQ_CONTINUE; } static inline bool dmaf_continue(enum dma_ctrl_flags flags) { return (flags & DMA_PREP_CONTINUE) == DMA_PREP_CONTINUE; } static inline bool dmaf_p_disabled_continue(enum dma_ctrl_flags flags) { enum dma_ctrl_flags mask = DMA_PREP_CONTINUE | DMA_PREP_PQ_DISABLE_P; return (flags & mask) == mask; } static inline bool dma_dev_has_pq_continue(struct dma_device *dma) { return (dma->max_pq & DMA_HAS_PQ_CONTINUE) == DMA_HAS_PQ_CONTINUE; } static inline unsigned short dma_dev_to_maxpq(struct dma_device *dma) { return dma->max_pq & ~DMA_HAS_PQ_CONTINUE; } /* dma_maxpq - reduce maxpq in the face of continued operations * @dma - dma device with PQ capability * @flags - to check if DMA_PREP_CONTINUE and DMA_PREP_PQ_DISABLE_P are set * * When an engine does not support native continuation we need 3 extra * source slots to reuse P and Q with the following coefficients: * 1/ {00} * P : remove P from Q', but use it as a source for P' * 2/ {01} * Q : use Q to continue Q' calculation * 3/ {00} * Q : subtract Q from P' to cancel (2) * * In the case where P is disabled we only need 1 extra source: * 1/ {01} * Q : use Q to continue Q' calculation */ static inline int dma_maxpq(struct dma_device *dma, enum dma_ctrl_flags flags) { if (dma_dev_has_pq_continue(dma) || !dmaf_continue(flags)) return dma_dev_to_maxpq(dma); if (dmaf_p_disabled_continue(flags)) return dma_dev_to_maxpq(dma) - 1; if (dmaf_continue(flags)) return dma_dev_to_maxpq(dma) - 3; BUG(); } static inline size_t dmaengine_get_icg(bool inc, bool sgl, size_t icg, size_t dir_icg) { if (inc) { if (dir_icg) return dir_icg; if (sgl) return icg; } return 0; } static inline size_t dmaengine_get_dst_icg(struct dma_interleaved_template *xt, struct data_chunk *chunk) { return dmaengine_get_icg(xt->dst_inc, xt->dst_sgl, chunk->icg, chunk->dst_icg); } static inline size_t dmaengine_get_src_icg(struct dma_interleaved_template *xt, struct data_chunk *chunk) { return dmaengine_get_icg(xt->src_inc, xt->src_sgl, chunk->icg, chunk->src_icg); } /* --- public DMA engine API --- */ #ifdef CONFIG_DMA_ENGINE void dmaengine_get(void); void dmaengine_put(void); #else static inline void dmaengine_get(void) { } static inline void dmaengine_put(void) { } #endif #ifdef CONFIG_ASYNC_TX_DMA #define async_dmaengine_get() dmaengine_get() #define async_dmaengine_put() dmaengine_put() #ifndef CONFIG_ASYNC_TX_ENABLE_CHANNEL_SWITCH #define async_dma_find_channel(type) dma_find_channel(DMA_ASYNC_TX) #else #define async_dma_find_channel(type) dma_find_channel(type) #endif /* CONFIG_ASYNC_TX_ENABLE_CHANNEL_SWITCH */ #else static inline void async_dmaengine_get(void) { } static inline void async_dmaengine_put(void) { } static inline struct dma_chan * async_dma_find_channel(enum dma_transaction_type type) { return NULL; } #endif /* CONFIG_ASYNC_TX_DMA */ void dma_async_tx_descriptor_init(struct dma_async_tx_descriptor *tx, struct dma_chan *chan); static inline void async_tx_ack(struct dma_async_tx_descriptor *tx) { tx->flags |= DMA_CTRL_ACK; } static inline void async_tx_clear_ack(struct dma_async_tx_descriptor *tx) { tx->flags &= ~DMA_CTRL_ACK; } static inline bool async_tx_test_ack(struct dma_async_tx_descriptor *tx) { return (tx->flags & DMA_CTRL_ACK) == DMA_CTRL_ACK; } #define dma_cap_set(tx, mask) __dma_cap_set((tx), &(mask)) static inline void __dma_cap_set(enum dma_transaction_type tx_type, dma_cap_mask_t *dstp) { set_bit(tx_type, dstp->bits); } #define dma_cap_clear(tx, mask) __dma_cap_clear((tx), &(mask)) static inline void __dma_cap_clear(enum dma_transaction_type tx_type, dma_cap_mask_t *dstp) { clear_bit(tx_type, dstp->bits); } #define dma_cap_zero(mask) __dma_cap_zero(&(mask)) static inline void __dma_cap_zero(dma_cap_mask_t *dstp) { bitmap_zero(dstp->bits, DMA_TX_TYPE_END); } #define dma_has_cap(tx, mask) __dma_has_cap((tx), &(mask)) static inline int __dma_has_cap(enum dma_transaction_type tx_type, dma_cap_mask_t *srcp) { return test_bit(tx_type, srcp->bits); } #define for_each_dma_cap_mask(cap, mask) \ for_each_set_bit(cap, mask.bits, DMA_TX_TYPE_END) /** * dma_async_issue_pending - flush pending transactions to HW * @chan: target DMA channel * * This allows drivers to push copies to HW in batches, * reducing MMIO writes where possible. */ static inline void dma_async_issue_pending(struct dma_chan *chan) { chan->device->device_issue_pending(chan); } /** * dma_async_is_tx_complete - poll for transaction completion * @chan: DMA channel * @cookie: transaction identifier to check status of * @last: returns last completed cookie, can be NULL * @used: returns last issued cookie, can be NULL * * If @last and @used are passed in, upon return they reflect the driver * internal state and can be used with dma_async_is_complete() to check * the status of multiple cookies without re-checking hardware state. */ static inline enum dma_status dma_async_is_tx_complete(struct dma_chan *chan, dma_cookie_t cookie, dma_cookie_t *last, dma_cookie_t *used) { struct dma_tx_state state; enum dma_status status; status = chan->device->device_tx_status(chan, cookie, &state); if (last) *last = state.last; if (used) *used = state.used; return status; } /** * dma_async_is_complete - test a cookie against chan state * @cookie: transaction identifier to test status of * @last_complete: last know completed transaction * @last_used: last cookie value handed out * * dma_async_is_complete() is used in dma_async_is_tx_complete() * the test logic is separated for lightweight testing of multiple cookies */ static inline enum dma_status dma_async_is_complete(dma_cookie_t cookie, dma_cookie_t last_complete, dma_cookie_t last_used) { if (last_complete <= last_used) { if ((cookie <= last_complete) || (cookie > last_used)) return DMA_COMPLETE; } else { if ((cookie <= last_complete) && (cookie > last_used)) return DMA_COMPLETE; } return DMA_IN_PROGRESS; } static inline void dma_set_tx_state(struct dma_tx_state *st, dma_cookie_t last, dma_cookie_t used, u32 residue) { if (!st) return; st->last = last; st->used = used; st->residue = residue; } #ifdef CONFIG_DMA_ENGINE struct dma_chan *dma_find_channel(enum dma_transaction_type tx_type); enum dma_status dma_sync_wait(struct dma_chan *chan, dma_cookie_t cookie); enum dma_status dma_wait_for_async_tx(struct dma_async_tx_descriptor *tx); void dma_issue_pending_all(void); struct dma_chan *__dma_request_channel(const dma_cap_mask_t *mask, dma_filter_fn fn, void *fn_param, struct device_node *np); struct dma_chan *dma_request_chan(struct device *dev, const char *name); struct dma_chan *dma_request_chan_by_mask(const dma_cap_mask_t *mask); void dma_release_channel(struct dma_chan *chan); int dma_get_slave_caps(struct dma_chan *chan, struct dma_slave_caps *caps); #else static inline struct dma_chan *dma_find_channel(enum dma_transaction_type tx_type) { return NULL; } static inline enum dma_status dma_sync_wait(struct dma_chan *chan, dma_cookie_t cookie) { return DMA_COMPLETE; } static inline enum dma_status dma_wait_for_async_tx(struct dma_async_tx_descriptor *tx) { return DMA_COMPLETE; } static inline void dma_issue_pending_all(void) { } static inline struct dma_chan *__dma_request_channel(const dma_cap_mask_t *mask, dma_filter_fn fn, void *fn_param, struct device_node *np) { return NULL; } static inline struct dma_chan *dma_request_chan(struct device *dev, const char *name) { return ERR_PTR(-ENODEV); } static inline struct dma_chan *dma_request_chan_by_mask( const dma_cap_mask_t *mask) { return ERR_PTR(-ENODEV); } static inline void dma_release_channel(struct dma_chan *chan) { } static inline int dma_get_slave_caps(struct dma_chan *chan, struct dma_slave_caps *caps) { return -ENXIO; } #endif static inline int dmaengine_desc_set_reuse(struct dma_async_tx_descriptor *tx) { struct dma_slave_caps caps; int ret; ret = dma_get_slave_caps(tx->chan, &caps); if (ret) return ret; if (!caps.descriptor_reuse) return -EPERM; tx->flags |= DMA_CTRL_REUSE; return 0; } static inline void dmaengine_desc_clear_reuse(struct dma_async_tx_descriptor *tx) { tx->flags &= ~DMA_CTRL_REUSE; } static inline bool dmaengine_desc_test_reuse(struct dma_async_tx_descriptor *tx) { return (tx->flags & DMA_CTRL_REUSE) == DMA_CTRL_REUSE; } static inline int dmaengine_desc_free(struct dma_async_tx_descriptor *desc) { /* this is supported for reusable desc, so check that */ if (!dmaengine_desc_test_reuse(desc)) return -EPERM; return desc->desc_free(desc); } /* --- DMA device --- */ int dma_async_device_register(struct dma_device *device); int dmaenginem_async_device_register(struct dma_device *device); void dma_async_device_unregister(struct dma_device *device); int dma_async_device_channel_register(struct dma_device *device, struct dma_chan *chan); void dma_async_device_channel_unregister(struct dma_device *device, struct dma_chan *chan); void dma_run_dependencies(struct dma_async_tx_descriptor *tx); #define dma_request_channel(mask, x, y) \ __dma_request_channel(&(mask), x, y, NULL) /* Deprecated, please use dma_request_chan() directly */ static inline struct dma_chan * __deprecated dma_request_slave_channel(struct device *dev, const char *name) { struct dma_chan *ch = dma_request_chan(dev, name); return IS_ERR(ch) ? NULL : ch; } static inline struct dma_chan *dma_request_slave_channel_compat(const dma_cap_mask_t mask, dma_filter_fn fn, void *fn_param, struct device *dev, const char *name) { struct dma_chan *chan; chan = dma_request_slave_channel(dev, name); if (chan) return chan; if (!fn || !fn_param) return NULL; return __dma_request_channel(&mask, fn, fn_param, NULL); } static inline char * dmaengine_get_direction_text(enum dma_transfer_direction dir) { switch (dir) { case DMA_DEV_TO_MEM: return "DEV_TO_MEM"; case DMA_MEM_TO_DEV: return "MEM_TO_DEV"; case DMA_MEM_TO_MEM: return "MEM_TO_MEM"; case DMA_DEV_TO_DEV: return "DEV_TO_DEV"; default: return "invalid"; } } static inline struct device *dmaengine_get_dma_device(struct dma_chan *chan) { if (chan->dev->chan_dma_dev) return &chan->dev->device; return chan->device->dev; } #endif /* DMAENGINE_H */