/
usr
/
src
/
kernels
/
4.18.0-553.157.1.el8_10.x86_64
/
arch
/
x86
/
include
/
asm
/
/usr/src/kernels/4.18.0-553.157.1.el8_10.x86_64/arch/x86/include/asm
mkdir
upload
Name
Size
Mode
Actions
crypto/
-
0755
rm
e820/
-
0755
rm
fpu/
-
0755
rm
numachip/
-
0755
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shared/
-
0755
rm
trace/
-
0755
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uv/
-
0755
rm
vdso/
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0755
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xen/
-
0755
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a.out-core.h
1931
0644
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dl
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acenv.h
1596
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dl
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acpi.h
5300
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dl
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agp.h
1070
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dl
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alternative.h
11407
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dl
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amd-ibs.h
5020
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dl
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amd_hsmp.h
364
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dl
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amd_nb.h
3086
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dl
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apb_timer.h
1466
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dl
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apic.h
14661
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dl
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apicdef.h
11565
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dl
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apic_flat_64.h
151
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dl
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apm.h
1768
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dl
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archrandom.h
3221
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dl
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arch_hweight.h
1311
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dl
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asm-offsets.h
35
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dl
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asm-prototypes.h
946
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dl
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asm.h
5186
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dl
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atomic.h
6279
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atomic64_32.h
8150
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dl
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atomic64_64.h
5933
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audit.h
170
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barrier.h
2471
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bios_ebda.h
914
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bitops.h
10727
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dl
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boot.h
1825
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dl
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bootparam_utils.h
2907
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dl
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bug.h
2117
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dl
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bugs.h
533
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cache.h
641
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cacheflush.h
306
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dl
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cacheinfo.h
209
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calgary.h
2370
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ce4100.h
121
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checksum.h
133
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checksum_32.h
4964
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checksum_64.h
5541
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clocksource.h
480
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cmdline.h
302
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cmpxchg.h
7891
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cmpxchg_32.h
3247
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cmpxchg_64.h
552
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coco.h
482
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compat.h
4861
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cpu.h
2607
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cpufeature.h
9470
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cpufeatures.h
32845
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cpuid.h
498
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cpuidle_haltpoll.h
189
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cpumask.h
408
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cpu_device_id.h
8109
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cpu_entry_area.h
4162
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crash.h
300
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current.h
443
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debugreg.h
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delay.h
275
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desc.h
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desc_defs.h
3396
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device.h
328
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disabled-features.h
3559
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div64.h
2189
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dma-mapping.h
288
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dma.h
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dmi.h
556
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dwarf2.h
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edac.h
474
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efi.h
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elf.h
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emergency-restart.h
202
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emulate_prefix.h
484
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enclu.h
181
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entry_arch.h
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espfix.h
426
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exec.h
37
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export.h
120
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extable.h
1300
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fb.h
540
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fixmap.h
6381
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floppy.h
6748
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frame.h
2237
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fsgsbase.h
2072
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ftrace.h
2777
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futex.h
2269
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gart.h
2682
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genapic.h
22
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geode.h
842
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hardirq.h
2207
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highmem.h
2466
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hpet.h
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hugetlb.h
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hw_breakpoint.h
2112
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hw_irq.h
4126
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hyperv-tlfs.h
22337
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hypervisor.h
1975
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i8259.h
1975
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ia32.h
1789
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ia32_unistd.h
313
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imr.h
1849
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inat.h
6736
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inat_types.h
1013
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init.h
632
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dl
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insn-eval.h
1546
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dl
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insn.h
8098
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dl
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inst.h
5453
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dl
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intel-family.h
5168
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dl
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intel-mid.h
5025
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dl
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intel_ds.h
849
0644
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dl
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intel_mid_vrtc.h
330
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intel_pconfig.h
1545
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intel_pmc_ipc.h
2267
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dl
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intel_pt.h
1276
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dl
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intel_punit_ipc.h
4666
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dl
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intel_scu_ipc.h
2351
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dl
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intel_telemetry.h
4060
0644
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dl
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invpcid.h
1604
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io.h
11872
0644
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dl
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iomap.h
1228
0644
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dl
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iommu.h
935
0644
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dl
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iosf_mbi.h
7354
0644
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io_apic.h
5890
0644
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ipi.h
2873
0644
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dl
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irq.h
1415
0644
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dl
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irqdomain.h
1796
0644
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dl
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irqflags.h
4161
0644
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irq_regs.h
683
0644
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irq_remapping.h
2865
0644
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irq_vectors.h
4105
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irq_work.h
465
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dl
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ist.h
735
0644
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dl
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jailhouse_para.h
449
0644
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jump_label.h
2529
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kasan.h
1291
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kaslr.h
314
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dl
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kbdleds.h
454
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dl
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Kbuild
319
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kdebug.h
1042
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kexec-bzimage64.h
195
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kexec.h
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kgdb.h
2143
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kprobes.h
3701
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kvm-x86-ops.h
3989
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kvmclock.h
506
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kvm_host.h
63925
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kvm_page_track.h
2700
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kvm_para.h
4422
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kvm_types.h
178
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kvm_vcpu_regs.h
606
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linkage.h
1268
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livepatch.h
1039
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local.h
3925
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local64.h
33
0644
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mach_timer.h
1590
0644
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mach_traps.h
1013
0644
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math_emu.h
395
0644
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mc146818rtc.h
2835
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mce.h
11909
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mcsafe_test.h
1418
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memtype.h
815
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mem_encrypt.h
3543
0644
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microcode.h
3557
0644
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dl
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microcode_amd.h
1373
0644
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microcode_intel.h
2619
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misc.h
143
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dl
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mmconfig.h
374
0644
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dl
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mmu.h
1689
0644
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dl
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mmu_context.h
10118
0644
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dl
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mmx.h
337
0644
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dl
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mmzone.h
129
0644
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dl
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mmzone_32.h
1188
0644
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mmzone_64.h
430
0644
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dl
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module.h
2096
0644
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dl
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mpspec.h
4023
0644
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dl
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mpspec_def.h
4256
0644
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dl
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mpx.h
3125
0644
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mshyperv.h
10142
0644
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msi.h
1508
0644
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msidef.h
1814
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msr-index.h
42495
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msr-trace.h
1387
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msr.h
11290
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mtrr.h
4753
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mwait.h
4968
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nmi.h
1496
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nops.h
4412
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dl
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nospec-branch.h
14205
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numa.h
2228
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numa_32.h
256
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olpc.h
3240
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olpc_ofw.h
1128
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orc_lookup.h
1665
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orc_types.h
3577
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page.h
2517
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page_32.h
1039
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page_32_types.h
1691
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page_64.h
1573
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page_64_types.h
2208
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page_types.h
2369
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paravirt.h
24608
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paravirt_types.h
22709
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parport.h
314
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pci-direct.h
740
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pci-functions.h
654
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pci.h
3288
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pci_64.h
684
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pci_x86.h
6283
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percpu.h
20267
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perf_event.h
17896
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perf_event_p4.h
26731
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pgalloc.h
6591
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pgtable-2level.h
2815
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pgtable-2level_types.h
867
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pgtable-3level.h
8832
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pgtable-3level_types.h
1007
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pgtable-invert.h
1091
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pgtable.h
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pgtable_32.h
3159
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pgtable_32_types.h
2121
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pgtable_64.h
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pgtable_64_types.h
4365
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pgtable_types.h
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pkeys.h
3542
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pkru.h
1346
0644
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platform_sst_audio.h
3290
0644
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pm-trace.h
611
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posix_types.h
144
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preempt.h
3217
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probe_roms.h
273
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processor-cyrix.h
879
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processor-flags.h
1750
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processor.h
24480
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prom.h
1028
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proto.h
1313
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pti.h
429
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ptrace.h
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purgatory.h
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pvclock-abi.h
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pvclock.h
2702
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qrwlock.h
199
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qspinlock.h
2598
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qspinlock_paravirt.h
1908
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realmode.h
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reboot.h
898
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reboot_fixups.h
183
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refcount.h
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required-features.h
3043
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resctrl.h
3064
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rio.h
2630
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rmwcc.h
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seccomp.h
510
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sections.h
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segment.h
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serial.h
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setup.h
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setup_arch.h
77
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set_memory.h
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sev-common.h
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sev.h
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sgx.h
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shmparam.h
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sigcontext.h
261
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sigframe.h
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sighandling.h
730
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signal.h
2424
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simd.h
287
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smap.h
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smp.h
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sparsemem.h
994
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spec-ctrl.h
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special_insns.h
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spinlock.h
1214
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spinlock_types.h
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sta2x11.h
352
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stackprotector.h
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stacktrace.h
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string.h
129
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string_32.h
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string_64.h
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suspend.h
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suspend_32.h
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suspend_64.h
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svm.h
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switch_to.h
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sync_bitops.h
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sync_core.h
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syscall.h
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syscalls.h
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syscall_wrapper.h
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sysfb.h
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tce.h
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tdx.h
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text-patching.h
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thermal.h
428
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thread_info.h
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time.h
331
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timer.h
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timex.h
305
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tlb.h
1103
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tlbbatch.h
332
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tlbflush.h
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topology.h
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trace_clock.h
406
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trapnr.h
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traps.h
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trap_pf.h
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tsc.h
1950
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uaccess.h
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uaccess_32.h
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uaccess_64.h
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umip.h
329
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unaligned.h
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unistd.h
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unwind.h
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unwind_hints.h
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uprobes.h
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user.h
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user32.h
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user_32.h
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user_64.h
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vdso.h
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vga.h
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vgtod.h
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virtext.h
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vm86.h
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vmware.h
1942
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vmx.h
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vmxfeatures.h
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vsyscall.h
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vvar.h
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word-at-a-time.h
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x86_init.h
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xor.h
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xor_32.h
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xor_64.h
716
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xor_avx.h
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dl
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/usr/src/kernels/4.18.0-553.157.1.el8_10.x86_64/arch/x86/include/asm/bitops.h
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/* SPDX-License-Identifier: GPL-2.0 */ #ifndef _ASM_X86_BITOPS_H #define _ASM_X86_BITOPS_H /* * Copyright 1992, Linus Torvalds. * * Note: inlines with more than a single statement should be marked * __always_inline to avoid problems with older gcc's inlining heuristics. */ #ifndef _LINUX_BITOPS_H #error only <linux/bitops.h> can be included directly #endif #include <linux/compiler.h> #include <asm/alternative.h> #include <asm/rmwcc.h> #include <asm/barrier.h> #if BITS_PER_LONG == 32 # define _BITOPS_LONG_SHIFT 5 #elif BITS_PER_LONG == 64 # define _BITOPS_LONG_SHIFT 6 #else # error "Unexpected BITS_PER_LONG" #endif #define BIT_64(n) (U64_C(1) << (n)) /* * These have to be done with inline assembly: that way the bit-setting * is guaranteed to be atomic. All bit operations return 0 if the bit * was cleared before the operation and != 0 if it was not. * * bit 0 is the LSB of addr; bit 32 is the LSB of (addr+1). */ #define RLONG_ADDR(x) "m" (*(volatile long *) (x)) #define WBYTE_ADDR(x) "+m" (*(volatile char *) (x)) #define ADDR RLONG_ADDR(addr) /* * We do the locked ops that don't return the old value as * a mask operation on a byte. */ #define IS_IMMEDIATE(nr) (__builtin_constant_p(nr)) #define CONST_MASK_ADDR(nr, addr) WBYTE_ADDR((void *)(addr) + ((nr)>>3)) #define CONST_MASK(nr) (1 << ((nr) & 7)) static __always_inline void arch_set_bit(long nr, volatile unsigned long *addr) { if (IS_IMMEDIATE(nr)) { asm volatile(LOCK_PREFIX "orb %1,%0" : CONST_MASK_ADDR(nr, addr) : "iq" ((u8)CONST_MASK(nr)) : "memory"); } else { asm volatile(LOCK_PREFIX __ASM_SIZE(bts) " %1,%0" : : RLONG_ADDR(addr), "Ir" (nr) : "memory"); } } static __always_inline void arch___set_bit(long nr, volatile unsigned long *addr) { asm volatile(__ASM_SIZE(bts) " %1,%0" : : ADDR, "Ir" (nr) : "memory"); } static __always_inline void arch_clear_bit(long nr, volatile unsigned long *addr) { if (IS_IMMEDIATE(nr)) { asm volatile(LOCK_PREFIX "andb %1,%0" : CONST_MASK_ADDR(nr, addr) : "iq" ((u8)~CONST_MASK(nr))); } else { asm volatile(LOCK_PREFIX __ASM_SIZE(btr) " %1,%0" : : RLONG_ADDR(addr), "Ir" (nr) : "memory"); } } static __always_inline void arch_clear_bit_unlock(long nr, volatile unsigned long *addr) { barrier(); arch_clear_bit(nr, addr); } static __always_inline void arch___clear_bit(long nr, volatile unsigned long *addr) { asm volatile(__ASM_SIZE(btr) " %1,%0" : : ADDR, "Ir" (nr) : "memory"); } static __always_inline bool arch_clear_bit_unlock_is_negative_byte(long nr, volatile unsigned long *addr) { bool negative; asm volatile(LOCK_PREFIX "andb %2,%1" CC_SET(s) : CC_OUT(s) (negative), WBYTE_ADDR(addr) : "ir" ((char) ~(1 << nr)) : "memory"); return negative; } #define arch_clear_bit_unlock_is_negative_byte \ arch_clear_bit_unlock_is_negative_byte static __always_inline void arch___clear_bit_unlock(long nr, volatile unsigned long *addr) { arch___clear_bit(nr, addr); } static __always_inline void arch___change_bit(long nr, volatile unsigned long *addr) { asm volatile(__ASM_SIZE(btc) " %1,%0" : : ADDR, "Ir" (nr) : "memory"); } static __always_inline void arch_change_bit(long nr, volatile unsigned long *addr) { if (IS_IMMEDIATE(nr)) { asm volatile(LOCK_PREFIX "xorb %1,%0" : CONST_MASK_ADDR(nr, addr) : "iq" ((u8)CONST_MASK(nr))); } else { asm volatile(LOCK_PREFIX __ASM_SIZE(btc) " %1,%0" : : RLONG_ADDR(addr), "Ir" (nr) : "memory"); } } static __always_inline bool arch_test_and_set_bit(long nr, volatile unsigned long *addr) { return GEN_BINARY_RMWcc(LOCK_PREFIX __ASM_SIZE(bts), *addr, c, "Ir", nr); } static __always_inline bool arch_test_and_set_bit_lock(long nr, volatile unsigned long *addr) { return arch_test_and_set_bit(nr, addr); } static __always_inline bool arch___test_and_set_bit(long nr, volatile unsigned long *addr) { bool oldbit; asm(__ASM_SIZE(bts) " %2,%1" CC_SET(c) : CC_OUT(c) (oldbit) : ADDR, "Ir" (nr) : "memory"); return oldbit; } static __always_inline bool arch_test_and_clear_bit(long nr, volatile unsigned long *addr) { return GEN_BINARY_RMWcc(LOCK_PREFIX __ASM_SIZE(btr), *addr, c, "Ir", nr); } /* * Note: the operation is performed atomically with respect to * the local CPU, but not other CPUs. Portable code should not * rely on this behaviour. * KVM relies on this behaviour on x86 for modifying memory that is also * accessed from a hypervisor on the same CPU if running in a VM: don't change * this without also updating arch/x86/kernel/kvm.c */ static __always_inline bool arch___test_and_clear_bit(long nr, volatile unsigned long *addr) { bool oldbit; asm volatile(__ASM_SIZE(btr) " %2,%1" CC_SET(c) : CC_OUT(c) (oldbit) : ADDR, "Ir" (nr) : "memory"); return oldbit; } static __always_inline bool arch___test_and_change_bit(long nr, volatile unsigned long *addr) { bool oldbit; asm volatile(__ASM_SIZE(btc) " %2,%1" CC_SET(c) : CC_OUT(c) (oldbit) : ADDR, "Ir" (nr) : "memory"); return oldbit; } static __always_inline bool arch_test_and_change_bit(long nr, volatile unsigned long *addr) { return GEN_BINARY_RMWcc(LOCK_PREFIX __ASM_SIZE(btc), *addr, c, "Ir", nr); } static __no_kcsan_or_inline bool constant_test_bit(long nr, const volatile unsigned long *addr) { /* * Because this is a plain access, we need to disable KCSAN here to * avoid double instrumentation via instrumented bitops. */ return ((1UL << (nr & (BITS_PER_LONG-1))) & (addr[nr >> _BITOPS_LONG_SHIFT])) != 0; } static __always_inline bool constant_test_bit_acquire(long nr, const volatile unsigned long *addr) { bool oldbit; asm volatile("testb %2,%1" CC_SET(nz) : CC_OUT(nz) (oldbit) : "m" (((unsigned char *)addr)[nr >> 3]), "i" (1 << (nr & 7)) :"memory"); return oldbit; } static __always_inline bool variable_test_bit(long nr, volatile const unsigned long *addr) { bool oldbit; asm volatile(__ASM_SIZE(bt) " %2,%1" CC_SET(c) : CC_OUT(c) (oldbit) : "m" (*(unsigned long *)addr), "Ir" (nr) : "memory"); return oldbit; } #define arch_test_bit(nr, addr) \ (__builtin_constant_p((nr)) \ ? constant_test_bit((nr), (addr)) \ : variable_test_bit((nr), (addr))) static __always_inline bool test_bit_acquire(unsigned long nr, const volatile unsigned long *addr) { return __builtin_constant_p(nr) ? constant_test_bit_acquire(nr, addr) : variable_test_bit(nr, addr); } /** * __ffs - find first set bit in word * @word: The word to search * * Undefined if no bit exists, so code should check against 0 first. */ static __always_inline unsigned long __ffs(unsigned long word) { asm("rep; bsf %1,%0" : "=r" (word) : "rm" (word)); return word; } /** * ffz - find first zero bit in word * @word: The word to search * * Undefined if no zero exists, so code should check against ~0UL first. */ static __always_inline unsigned long ffz(unsigned long word) { asm("rep; bsf %1,%0" : "=r" (word) : "r" (~word)); return word; } /* * __fls: find last set bit in word * @word: The word to search * * Undefined if no set bit exists, so code should check against 0 first. */ static __always_inline unsigned long __fls(unsigned long word) { asm("bsr %1,%0" : "=r" (word) : "rm" (word)); return word; } #undef ADDR #ifdef __KERNEL__ /** * ffs - find first set bit in word * @x: the word to search * * This is defined the same way as the libc and compiler builtin ffs * routines, therefore differs in spirit from the other bitops. * * ffs(value) returns 0 if value is 0 or the position of the first * set bit if value is nonzero. The first (least significant) bit * is at position 1. */ static __always_inline int ffs(int x) { int r; #ifdef CONFIG_X86_64 /* * AMD64 says BSFL won't clobber the dest reg if x==0; Intel64 says the * dest reg is undefined if x==0, but their CPU architect says its * value is written to set it to the same as before, except that the * top 32 bits will be cleared. * * We cannot do this on 32 bits because at the very least some * 486 CPUs did not behave this way. */ asm("bsfl %1,%0" : "=r" (r) : "rm" (x), "0" (-1)); #elif defined(CONFIG_X86_CMOV) asm("bsfl %1,%0\n\t" "cmovzl %2,%0" : "=&r" (r) : "rm" (x), "r" (-1)); #else asm("bsfl %1,%0\n\t" "jnz 1f\n\t" "movl $-1,%0\n" "1:" : "=r" (r) : "rm" (x)); #endif return r + 1; } /** * fls - find last set bit in word * @x: the word to search * * This is defined in a similar way as the libc and compiler builtin * ffs, but returns the position of the most significant set bit. * * fls(value) returns 0 if value is 0 or the position of the last * set bit if value is nonzero. The last (most significant) bit is * at position 32. */ static __always_inline int fls(int x) { int r; #ifdef CONFIG_X86_64 /* * AMD64 says BSRL won't clobber the dest reg if x==0; Intel64 says the * dest reg is undefined if x==0, but their CPU architect says its * value is written to set it to the same as before, except that the * top 32 bits will be cleared. * * We cannot do this on 32 bits because at the very least some * 486 CPUs did not behave this way. */ asm("bsrl %1,%0" : "=r" (r) : "rm" (x), "0" (-1)); #elif defined(CONFIG_X86_CMOV) asm("bsrl %1,%0\n\t" "cmovzl %2,%0" : "=&r" (r) : "rm" (x), "rm" (-1)); #else asm("bsrl %1,%0\n\t" "jnz 1f\n\t" "movl $-1,%0\n" "1:" : "=r" (r) : "rm" (x)); #endif return r + 1; } /** * fls64 - find last set bit in a 64-bit word * @x: the word to search * * This is defined in a similar way as the libc and compiler builtin * ffsll, but returns the position of the most significant set bit. * * fls64(value) returns 0 if value is 0 or the position of the last * set bit if value is nonzero. The last (most significant) bit is * at position 64. */ #ifdef CONFIG_X86_64 static __always_inline int fls64(__u64 x) { int bitpos = -1; /* * AMD64 says BSRQ won't clobber the dest reg if x==0; Intel64 says the * dest reg is undefined if x==0, but their CPU architect says its * value is written to set it to the same as before. */ asm("bsrq %1,%q0" : "+r" (bitpos) : "rm" (x)); return bitpos + 1; } #else #include <asm-generic/bitops/fls64.h> #endif #include <asm-generic/bitops/find.h> #include <asm-generic/bitops/sched.h> #include <asm/arch_hweight.h> #include <asm-generic/bitops/const_hweight.h> #include <asm-generic/bitops-instrumented.h> #include <asm-generic/bitops/le.h> #include <asm-generic/bitops/ext2-atomic-setbit.h> #endif /* __KERNEL__ */ #endif /* _ASM_X86_BITOPS_H */
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