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a.out.h
6.73
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acct.h
3.65
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adb.h
1.11
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adfs_fs.h
936
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affs_hardblocks.h
1.51
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agpgart.h
3.85
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aio_abi.h
3.2
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am437x-vpfe.h
3.59
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apm_bios.h
3.6
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arcfb.h
213
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arm_sdei.h
2.69
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aspeed-lpc-ctrl.h
1.74
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atalk.h
1023
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atm.h
7.7
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atm_eni.h
648
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atm_he.h
406
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atm_idt77105.h
955
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atm_nicstar.h
1.25
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atm_tcp.h
1.58
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atm_zatm.h
1.5
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atmapi.h
952
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atmarp.h
1.27
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atmbr2684.h
3.19
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atmclip.h
576
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atmdev.h
7.5
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atmioc.h
1.61
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atmlec.h
2.33
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atmmpc.h
4.13
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atmppp.h
639
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atmsap.h
4.85
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atmsvc.h
1.81
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audit.h
19.09
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aufs_type.h
11.1
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auto_dev-ioctl.h
4.87
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auto_fs.h
2.6
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auto_fs4.h
4.17
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auxvec.h
1.46
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ax25.h
2.76
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b1lli.h
1.68
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batman_adv.h
9.23
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baycom.h
883
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bcache.h
8.17
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bcm933xx_hcs.h
419
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bfs_fs.h
1.85
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binfmts.h
628
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blkpg.h
1.6
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blktrace_api.h
4.59
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blkzoned.h
5.05
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bpf.h
30.32
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bpf_common.h
1.26
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bpf_perf_event.h
516
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bpqether.h
981
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bsg.h
2.44
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bt-bmc.h
572
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btrfs.h
25.75
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btrfs_tree.h
24.64
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can.h
7.7
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capability.h
11.5
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capi.h
3.05
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cciss_defs.h
3.2
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cciss_ioctl.h
2.7
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cdrom.h
28.18
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cec-funcs.h
53.82
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cec.h
36.77
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cgroupstats.h
2.17
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chio.h
5.22
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cm4000_cs.h
1.76
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cn_proc.h
3.26
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coda.h
17.09
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coda_psdev.h
360
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coff.h
12.18
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connector.h
2.2
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const.h
993
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coresight-stm.h
706
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cramfs_fs.h
3.47
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cryptouser.h
3.31
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cuda.h
905
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cyclades.h
16.71
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cycx_cfm.h
2.92
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dcbnl.h
24.37
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dccp.h
6.29
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devlink.h
7.15
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dlm.h
2.49
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dlm_device.h
2.48
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dlm_netlink.h
1.13
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dlm_plock.h
894
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dlmconstants.h
4.96
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dm-ioctl.h
10.62
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dm-log-userspace.h
14.83
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dma-buf.h
1.33
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dn.h
4.53
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dqblk_xfs.h
8.79
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edd.h
5.47
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efs_fs_sb.h
2.17
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elf-em.h
2.14
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elf-fdpic.h
1.1
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elf.h
12.99
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elfcore.h
2.92
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errno.h
23
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errqueue.h
1.34
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ethtool.h
69.81
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eventpoll.h
2.48
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fadvise.h
842
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falloc.h
3.5
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fanotify.h
3.59
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fb.h
16.06
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fcntl.h
3.22
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fd.h
11.4
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fdreg.h
5.29
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fib_rules.h
1.79
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fiemap.h
2.71
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filter.h
2.16
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firewire-cdev.h
42.86
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firewire-constants.h
3.16
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flat.h
2.1
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fou.h
694
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fs.h
14.47
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fsl_hypervisor.h
7.13
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fsmap.h
4.29
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fuse.h
17.06
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futex.h
4.88
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gameport.h
897
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gen_stats.h
1.54
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genetlink.h
1.88
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gfs2_ondisk.h
12.07
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gigaset_dev.h
1.41
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gpio.h
5.62
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gsmmux.h
1.02
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gtp.h
681
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hash_info.h
921
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hdlc.h
637
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hdlcdrv.h
2.84
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hdreg.h
22.17
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hid.h
1.86
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hiddev.h
6.2
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hidraw.h
1.48
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hpet.h
743
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hsr_netlink.h
1.06
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hw_breakpoint.h
742
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hyperv.h
10.32
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hysdn_if.h
1.35
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i2c-dev.h
2.55
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i2c.h
6.96
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i2o-dev.h
11.28
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i8k.h
1.49
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icmp.h
2.91
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icmpv6.h
3.88
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if.h
10.56
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if_addr.h
1.76
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if_addrlabel.h
721
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if_alg.h
1.5
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if_arcnet.h
3.63
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if_arp.h
6.42
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if_bonding.h
4.17
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if_bridge.h
6.55
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if_cablemodem.h
986
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if_eql.h
1.32
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if_ether.h
7.75
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if_fc.h
1.7
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if_fddi.h
3.66
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if_frad.h
2.95
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if_hippi.h
4.14
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if_infiniband.h
1.22
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if_link.h
21.44
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if_ltalk.h
210
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if_macsec.h
5.48
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if_packet.h
7.73
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if_phonet.h
424
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if_plip.h
660
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if_ppp.h
29
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if_pppol2tp.h
3.21
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if_pppox.h
4.76
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if_slip.h
872
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if_team.h
2.54
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if_tun.h
3.88
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if_tunnel.h
3.91
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if_vlan.h
1.75
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if_x25.h
881
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ife.h
351
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igmp.h
2.94
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ila.h
1.2
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in.h
9.6
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in6.h
7.26
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in_route.h
936
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inet_diag.h
4.23
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inotify.h
2.91
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input-event-codes.h
24.11
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input.h
15.09
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ioctl.h
163
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ip.h
4.59
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ip6_tunnel.h
1.91
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ip_vs.h
13.31
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ipc.h
2.05
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ipmi.h
15.86
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ipmi_msgdefs.h
4.43
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ipsec.h
947
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ipv6.h
3.87
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ipv6_route.h
1.86
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ipx.h
2.29
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irda.h
7.38
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irqnr.h
104
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isdn.h
5.64
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isdn_divertif.h
1.17
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isdn_ppp.h
1.88
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isdnif.h
2.31
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iso_fs.h
6.33
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ivtv.h
2.95
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ivtvfb.h
1.18
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ixjuser.h
24.59
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jffs2.h
6.85
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joystick.h
3.56
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kcm.h
822
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kcmp.h
522
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kcov.h
1.07
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kd.h
6.14
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kdev_t.h
383
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kernel-page-flags.h
877
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kernel.h
194
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kernelcapi.h
1019
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kexec.h
1.79
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keyboard.h
12.48
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keyctl.h
3.47
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kfd_ioctl.h
9.37
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kvm.h
40.18
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kvm_para.h
882
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l2tp.h
5.5
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libc-compat.h
8.09
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lightnvm.h
4.76
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limits.h
937
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lirc.h
4.94
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llc.h
3.09
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loop.h
2.46
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lp.h
3.78
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lwtunnel.h
1.24
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magic.h
3.32
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major.h
4.6
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map_to_7segment.h
7.08
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matroxfb.h
1.43
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max2175.h
1.01
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mdio.h
13.8
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media-bus-format.h
6.26
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media.h
12.24
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mei.h
4.7
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membarrier.h
4.12
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memfd.h
1.2
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mempolicy.h
2.1
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meye.h
2.47
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mic_common.h
6.37
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mic_ioctl.h
2.2
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mii.h
7.89
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minix_fs.h
2.07
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mman.h
1.21
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mmtimer.h
2.07
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module.h
255
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mpls.h
2.25
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mpls_iptunnel.h
761
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mqueue.h
2.15
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mroute.h
5.3
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mroute6.h
4.47
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msdos_fs.h
6.8
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msg.h
3.27
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mtio.h
7.98
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n_r3964.h
2.35
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nbd-netlink.h
2.32
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nbd.h
2.95
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ncp.h
5
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ncp_fs.h
3.34
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ncp_mount.h
2.12
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ncp_no.h
714
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ncsi.h
3.79
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ndctl.h
7.98
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neighbour.h
4.24
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net.h
2.04
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net_dropmon.h
1.13
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net_namespace.h
672
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net_tstamp.h
4.33
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netconf.h
589
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netdevice.h
2.2
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netfilter.h
1.78
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netfilter_arp.h
444
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netfilter_bridge.h
901
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netfilter_decnet.h
1.89
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netfilter_ipv4.h
2.08
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netfilter_ipv6.h
2.1
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netlink.h
7.61
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netlink_diag.h
1.49
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netrom.h
807
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nfc.h
10.97
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nfs.h
4.37
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nfs2.h
1.43
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nfs3.h
2.3
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nfs4.h
6.28
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nfs4_mount.h
1.89
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nfs_fs.h
1.57
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nfs_idmap.h
2.19
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nfs_mount.h
2.38
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nfsacl.h
668
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nilfs2_api.h
7.41
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nilfs2_ondisk.h
17.66
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nl80211.h
228.77
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nsfs.h
639
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nubus.h
8.37
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nvme_ioctl.h
1.61
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nvram.h
532
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omap3isp.h
20.25
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omapfb.h
5.78
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oom.h
511
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openvswitch.h
34.48
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packet_diag.h
1.63
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param.h
141
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parport.h
3.56
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patchkey.h
892
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pci.h
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Code Editor : input.h
/* SPDX-License-Identifier: GPL-2.0 WITH Linux-syscall-note */ /* * Copyright (c) 1999-2002 Vojtech Pavlik * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License version 2 as published by * the Free Software Foundation. */ #ifndef _INPUT_H #define _INPUT_H #include <sys/time.h> #include <sys/ioctl.h> #include <sys/types.h> #include <linux/types.h> #include "input-event-codes.h" /* * The event structure itself */ struct input_event { struct timeval time; __u16 type; __u16 code; __s32 value; }; /* * Protocol version. */ #define EV_VERSION 0x010001 /* * IOCTLs (0x00 - 0x7f) */ struct input_id { __u16 bustype; __u16 vendor; __u16 product; __u16 version; }; /** * struct input_absinfo - used by EVIOCGABS/EVIOCSABS ioctls * @value: latest reported value for the axis. * @minimum: specifies minimum value for the axis. * @maximum: specifies maximum value for the axis. * @fuzz: specifies fuzz value that is used to filter noise from * the event stream. * @flat: values that are within this value will be discarded by * joydev interface and reported as 0 instead. * @resolution: specifies resolution for the values reported for * the axis. * * Note that input core does not clamp reported values to the * [minimum, maximum] limits, such task is left to userspace. * * The default resolution for main axes (ABS_X, ABS_Y, ABS_Z) * is reported in units per millimeter (units/mm), resolution * for rotational axes (ABS_RX, ABS_RY, ABS_RZ) is reported * in units per radian. * When INPUT_PROP_ACCELEROMETER is set the resolution changes. * The main axes (ABS_X, ABS_Y, ABS_Z) are then reported in * in units per g (units/g) and in units per degree per second * (units/deg/s) for rotational axes (ABS_RX, ABS_RY, ABS_RZ). */ struct input_absinfo { __s32 value; __s32 minimum; __s32 maximum; __s32 fuzz; __s32 flat; __s32 resolution; }; /** * struct input_keymap_entry - used by EVIOCGKEYCODE/EVIOCSKEYCODE ioctls * @scancode: scancode represented in machine-endian form. * @len: length of the scancode that resides in @scancode buffer. * @index: index in the keymap, may be used instead of scancode * @flags: allows to specify how kernel should handle the request. For * example, setting INPUT_KEYMAP_BY_INDEX flag indicates that kernel * should perform lookup in keymap by @index instead of @scancode * @keycode: key code assigned to this scancode * * The structure is used to retrieve and modify keymap data. Users have * option of performing lookup either by @scancode itself or by @index * in keymap entry. EVIOCGKEYCODE will also return scancode or index * (depending on which element was used to perform lookup). */ struct input_keymap_entry { #define INPUT_KEYMAP_BY_INDEX (1 << 0) __u8 flags; __u8 len; __u16 index; __u32 keycode; __u8 scancode[32]; }; struct input_mask { __u32 type; __u32 codes_size; __u64 codes_ptr; }; #define EVIOCGVERSION _IOR('E', 0x01, int) /* get driver version */ #define EVIOCGID _IOR('E', 0x02, struct input_id) /* get device ID */ #define EVIOCGREP _IOR('E', 0x03, unsigned int[2]) /* get repeat settings */ #define EVIOCSREP _IOW('E', 0x03, unsigned int[2]) /* set repeat settings */ #define EVIOCGKEYCODE _IOR('E', 0x04, unsigned int[2]) /* get keycode */ #define EVIOCGKEYCODE_V2 _IOR('E', 0x04, struct input_keymap_entry) #define EVIOCSKEYCODE _IOW('E', 0x04, unsigned int[2]) /* set keycode */ #define EVIOCSKEYCODE_V2 _IOW('E', 0x04, struct input_keymap_entry) #define EVIOCGNAME(len) _IOC(_IOC_READ, 'E', 0x06, len) /* get device name */ #define EVIOCGPHYS(len) _IOC(_IOC_READ, 'E', 0x07, len) /* get physical location */ #define EVIOCGUNIQ(len) _IOC(_IOC_READ, 'E', 0x08, len) /* get unique identifier */ #define EVIOCGPROP(len) _IOC(_IOC_READ, 'E', 0x09, len) /* get device properties */ /** * EVIOCGMTSLOTS(len) - get MT slot values * @len: size of the data buffer in bytes * * The ioctl buffer argument should be binary equivalent to * * struct input_mt_request_layout { * __u32 code; * __s32 values[num_slots]; * }; * * where num_slots is the (arbitrary) number of MT slots to extract. * * The ioctl size argument (len) is the size of the buffer, which * should satisfy len = (num_slots + 1) * sizeof(__s32). If len is * too small to fit all available slots, the first num_slots are * returned. * * Before the call, code is set to the wanted ABS_MT event type. On * return, values[] is filled with the slot values for the specified * ABS_MT code. * * If the request code is not an ABS_MT value, -EINVAL is returned. */ #define EVIOCGMTSLOTS(len) _IOC(_IOC_READ, 'E', 0x0a, len) #define EVIOCGKEY(len) _IOC(_IOC_READ, 'E', 0x18, len) /* get global key state */ #define EVIOCGLED(len) _IOC(_IOC_READ, 'E', 0x19, len) /* get all LEDs */ #define EVIOCGSND(len) _IOC(_IOC_READ, 'E', 0x1a, len) /* get all sounds status */ #define EVIOCGSW(len) _IOC(_IOC_READ, 'E', 0x1b, len) /* get all switch states */ #define EVIOCGBIT(ev,len) _IOC(_IOC_READ, 'E', 0x20 + (ev), len) /* get event bits */ #define EVIOCGABS(abs) _IOR('E', 0x40 + (abs), struct input_absinfo) /* get abs value/limits */ #define EVIOCSABS(abs) _IOW('E', 0xc0 + (abs), struct input_absinfo) /* set abs value/limits */ #define EVIOCSFF _IOW('E', 0x80, struct ff_effect) /* send a force effect to a force feedback device */ #define EVIOCRMFF _IOW('E', 0x81, int) /* Erase a force effect */ #define EVIOCGEFFECTS _IOR('E', 0x84, int) /* Report number of effects playable at the same time */ #define EVIOCGRAB _IOW('E', 0x90, int) /* Grab/Release device */ #define EVIOCREVOKE _IOW('E', 0x91, int) /* Revoke device access */ /** * EVIOCGMASK - Retrieve current event mask * * This ioctl allows user to retrieve the current event mask for specific * event type. The argument must be of type "struct input_mask" and * specifies the event type to query, the address of the receive buffer and * the size of the receive buffer. * * The event mask is a per-client mask that specifies which events are * forwarded to the client. Each event code is represented by a single bit * in the event mask. If the bit is set, the event is passed to the client * normally. Otherwise, the event is filtered and will never be queued on * the client's receive buffer. * * Event masks do not affect global state of the input device. They only * affect the file descriptor they are applied to. * * The default event mask for a client has all bits set, i.e. all events * are forwarded to the client. If the kernel is queried for an unknown * event type or if the receive buffer is larger than the number of * event codes known to the kernel, the kernel returns all zeroes for those * codes. * * At maximum, codes_size bytes are copied. * * This ioctl may fail with ENODEV in case the file is revoked, EFAULT * if the receive-buffer points to invalid memory, or EINVAL if the kernel * does not implement the ioctl. */ #define EVIOCGMASK _IOR('E', 0x92, struct input_mask) /* Get event-masks */ /** * EVIOCSMASK - Set event mask * * This ioctl is the counterpart to EVIOCGMASK. Instead of receiving the * current event mask, this changes the client's event mask for a specific * type. See EVIOCGMASK for a description of event-masks and the * argument-type. * * This ioctl provides full forward compatibility. If the passed event type * is unknown to the kernel, or if the number of event codes specified in * the mask is bigger than what is known to the kernel, the ioctl is still * accepted and applied. However, any unknown codes are left untouched and * stay cleared. That means, the kernel always filters unknown codes * regardless of what the client requests. If the new mask doesn't cover * all known event-codes, all remaining codes are automatically cleared and * thus filtered. * * This ioctl may fail with ENODEV in case the file is revoked. EFAULT is * returned if the receive-buffer points to invalid memory. EINVAL is returned * if the kernel does not implement the ioctl. */ #define EVIOCSMASK _IOW('E', 0x93, struct input_mask) /* Set event-masks */ #define EVIOCSCLOCKID _IOW('E', 0xa0, int) /* Set clockid to be used for timestamps */ /* * IDs. */ #define ID_BUS 0 #define ID_VENDOR 1 #define ID_PRODUCT 2 #define ID_VERSION 3 #define BUS_PCI 0x01 #define BUS_ISAPNP 0x02 #define BUS_USB 0x03 #define BUS_HIL 0x04 #define BUS_BLUETOOTH 0x05 #define BUS_VIRTUAL 0x06 #define BUS_ISA 0x10 #define BUS_I8042 0x11 #define BUS_XTKBD 0x12 #define BUS_RS232 0x13 #define BUS_GAMEPORT 0x14 #define BUS_PARPORT 0x15 #define BUS_AMIGA 0x16 #define BUS_ADB 0x17 #define BUS_I2C 0x18 #define BUS_HOST 0x19 #define BUS_GSC 0x1A #define BUS_ATARI 0x1B #define BUS_SPI 0x1C #define BUS_RMI 0x1D #define BUS_CEC 0x1E #define BUS_INTEL_ISHTP 0x1F /* * MT_TOOL types */ #define MT_TOOL_FINGER 0 #define MT_TOOL_PEN 1 #define MT_TOOL_PALM 2 #define MT_TOOL_MAX 2 /* * Values describing the status of a force-feedback effect */ #define FF_STATUS_STOPPED 0x00 #define FF_STATUS_PLAYING 0x01 #define FF_STATUS_MAX 0x01 /* * Structures used in ioctls to upload effects to a device * They are pieces of a bigger structure (called ff_effect) */ /* * All duration values are expressed in ms. Values above 32767 ms (0x7fff) * should not be used and have unspecified results. */ /** * struct ff_replay - defines scheduling of the force-feedback effect * @length: duration of the effect * @delay: delay before effect should start playing */ struct ff_replay { __u16 length; __u16 delay; }; /** * struct ff_trigger - defines what triggers the force-feedback effect * @button: number of the button triggering the effect * @interval: controls how soon the effect can be re-triggered */ struct ff_trigger { __u16 button; __u16 interval; }; /** * struct ff_envelope - generic force-feedback effect envelope * @attack_length: duration of the attack (ms) * @attack_level: level at the beginning of the attack * @fade_length: duration of fade (ms) * @fade_level: level at the end of fade * * The @attack_level and @fade_level are absolute values; when applying * envelope force-feedback core will convert to positive/negative * value based on polarity of the default level of the effect. * Valid range for the attack and fade levels is 0x0000 - 0x7fff */ struct ff_envelope { __u16 attack_length; __u16 attack_level; __u16 fade_length; __u16 fade_level; }; /** * struct ff_constant_effect - defines parameters of a constant force-feedback effect * @level: strength of the effect; may be negative * @envelope: envelope data */ struct ff_constant_effect { __s16 level; struct ff_envelope envelope; }; /** * struct ff_ramp_effect - defines parameters of a ramp force-feedback effect * @start_level: beginning strength of the effect; may be negative * @end_level: final strength of the effect; may be negative * @envelope: envelope data */ struct ff_ramp_effect { __s16 start_level; __s16 end_level; struct ff_envelope envelope; }; /** * struct ff_condition_effect - defines a spring or friction force-feedback effect * @right_saturation: maximum level when joystick moved all way to the right * @left_saturation: same for the left side * @right_coeff: controls how fast the force grows when the joystick moves * to the right * @left_coeff: same for the left side * @deadband: size of the dead zone, where no force is produced * @center: position of the dead zone */ struct ff_condition_effect { __u16 right_saturation; __u16 left_saturation; __s16 right_coeff; __s16 left_coeff; __u16 deadband; __s16 center; }; /** * struct ff_periodic_effect - defines parameters of a periodic force-feedback effect * @waveform: kind of the effect (wave) * @period: period of the wave (ms) * @magnitude: peak value * @offset: mean value of the wave (roughly) * @phase: 'horizontal' shift * @envelope: envelope data * @custom_len: number of samples (FF_CUSTOM only) * @custom_data: buffer of samples (FF_CUSTOM only) * * Known waveforms - FF_SQUARE, FF_TRIANGLE, FF_SINE, FF_SAW_UP, * FF_SAW_DOWN, FF_CUSTOM. The exact syntax FF_CUSTOM is undefined * for the time being as no driver supports it yet. * * Note: the data pointed by custom_data is copied by the driver. * You can therefore dispose of the memory after the upload/update. */ struct ff_periodic_effect { __u16 waveform; __u16 period; __s16 magnitude; __s16 offset; __u16 phase; struct ff_envelope envelope; __u32 custom_len; __s16 *custom_data; }; /** * struct ff_rumble_effect - defines parameters of a periodic force-feedback effect * @strong_magnitude: magnitude of the heavy motor * @weak_magnitude: magnitude of the light one * * Some rumble pads have two motors of different weight. Strong_magnitude * represents the magnitude of the vibration generated by the heavy one. */ struct ff_rumble_effect { __u16 strong_magnitude; __u16 weak_magnitude; }; /** * struct ff_effect - defines force feedback effect * @type: type of the effect (FF_CONSTANT, FF_PERIODIC, FF_RAMP, FF_SPRING, * FF_FRICTION, FF_DAMPER, FF_RUMBLE, FF_INERTIA, or FF_CUSTOM) * @id: an unique id assigned to an effect * @direction: direction of the effect * @trigger: trigger conditions (struct ff_trigger) * @replay: scheduling of the effect (struct ff_replay) * @u: effect-specific structure (one of ff_constant_effect, ff_ramp_effect, * ff_periodic_effect, ff_condition_effect, ff_rumble_effect) further * defining effect parameters * * This structure is sent through ioctl from the application to the driver. * To create a new effect application should set its @id to -1; the kernel * will return assigned @id which can later be used to update or delete * this effect. * * Direction of the effect is encoded as follows: * 0 deg -> 0x0000 (down) * 90 deg -> 0x4000 (left) * 180 deg -> 0x8000 (up) * 270 deg -> 0xC000 (right) */ struct ff_effect { __u16 type; __s16 id; __u16 direction; struct ff_trigger trigger; struct ff_replay replay; union { struct ff_constant_effect constant; struct ff_ramp_effect ramp; struct ff_periodic_effect periodic; struct ff_condition_effect condition[2]; /* One for each axis */ struct ff_rumble_effect rumble; } u; }; /* * Force feedback effect types */ #define FF_RUMBLE 0x50 #define FF_PERIODIC 0x51 #define FF_CONSTANT 0x52 #define FF_SPRING 0x53 #define FF_FRICTION 0x54 #define FF_DAMPER 0x55 #define FF_INERTIA 0x56 #define FF_RAMP 0x57 #define FF_EFFECT_MIN FF_RUMBLE #define FF_EFFECT_MAX FF_RAMP /* * Force feedback periodic effect types */ #define FF_SQUARE 0x58 #define FF_TRIANGLE 0x59 #define FF_SINE 0x5a #define FF_SAW_UP 0x5b #define FF_SAW_DOWN 0x5c #define FF_CUSTOM 0x5d #define FF_WAVEFORM_MIN FF_SQUARE #define FF_WAVEFORM_MAX FF_CUSTOM /* * Set ff device properties */ #define FF_GAIN 0x60 #define FF_AUTOCENTER 0x61 /* * ff->playback(effect_id = FF_GAIN) is the first effect_id to * cause a collision with another ff method, in this case ff->set_gain(). * Therefore the greatest safe value for effect_id is FF_GAIN - 1, * and thus the total number of effects should never exceed FF_GAIN. */ #define FF_MAX_EFFECTS FF_GAIN #define FF_MAX 0x7f #define FF_CNT (FF_MAX+1) #endif /* _INPUT_H */
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