/
usr
/
src
/
linux-headers-5.15.0-190
/
arch
/
x86
/
include
/
asm
/
/usr/src/linux-headers-5.15.0-190/arch/x86/include/asm
mkdir
upload
Name
Size
Mode
Actions
e820/
-
0755
rm
fpu/
-
0755
rm
numachip/
-
0755
rm
trace/
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0755
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uv/
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vdso/
-
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xen/
-
0755
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acenv.h
1450
0644
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dl
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acpi.h
4804
0644
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dl
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acrn.h
1834
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dl
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agp.h
1073
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dl
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alternative.h
13574
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dl
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amd-ibs.h
4247
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dl
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amd_nb.h
3136
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dl
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apic.h
13646
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dl
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apicdef.h
11563
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dl
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apm.h
1842
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dl
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archrandom.h
2347
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dl
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arch_hweight.h
1083
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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
431
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dl
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asm.h
6060
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dl
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atomic.h
6766
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atomic64_32.h
8367
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dl
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atomic64_64.h
6410
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dl
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audit.h
170
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barrier.h
2368
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dl
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bios_ebda.h
914
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bitops.h
10149
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dl
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boot.h
2397
0644
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dl
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bootparam_utils.h
2866
0644
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dl
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bug.h
2392
0644
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dl
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bugs.h
344
0644
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dl
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cache.h
622
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dl
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cacheflush.h
329
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dl
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cacheinfo.h
263
0644
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dl
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ce4100.h
121
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dl
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checksum.h
240
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dl
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checksum_32.h
4682
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checksum_64.h
5164
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clocksource.h
480
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cmdline.h
302
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cmpxchg.h
7937
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cmpxchg_32.h
3243
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cmpxchg_64.h
561
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compat.h
4102
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dl
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cpu.h
2099
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cpufeature.h
8428
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cpufeatures.h
33383
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cpuidle_haltpoll.h
189
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cpumask.h
829
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cpu_device_id.h
10945
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cpu_entry_area.h
4196
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crash.h
300
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current.h
443
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debugreg.h
3641
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delay.h
275
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desc.h
11524
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desc_defs.h
3396
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device.h
176
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disabled-features.h
3173
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div64.h
2335
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dma-mapping.h
519
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dma.h
9811
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dmi.h
556
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doublefault.h
271
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dwarf2.h
1325
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edac.h
474
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efi.h
12308
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elf.h
12623
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elfcore-compat.h
890
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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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dl
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entry-common.h
3322
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espfix.h
426
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exec.h
37
0644
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extable.h
1871
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dl
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extable_fixup_types.h
1875
0644
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dl
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fb.h
540
0644
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dl
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fixmap.h
6094
0644
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dl
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floppy.h
6860
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frame.h
2555
0644
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dl
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fsgsbase.h
2072
0644
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ftrace.h
3234
0644
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dl
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futex.h
2553
0644
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dl
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gart.h
2704
0644
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dl
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GEN-for-each-reg.h
345
0644
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dl
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genapic.h
22
0644
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dl
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geode.h
693
0644
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dl
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hardirq.h
2342
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highmem.h
2466
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hpet.h
3002
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hugetlb.h
243
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hw_breakpoint.h
2112
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hw_irq.h
3070
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hyperv-tlfs.h
17555
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hypervisor.h
2360
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i8259.h
2061
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ia32.h
1791
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dl
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ia32_unistd.h
313
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idtentry.h
24197
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dl
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imr.h
1684
0644
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dl
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inat.h
6092
0644
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dl
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inat_types.h
341
0644
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dl
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init.h
632
0644
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dl
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insn-eval.h
1379
0644
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dl
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insn.h
7867
0644
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dl
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inst.h
2066
0644
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dl
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intel-family.h
5775
0644
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dl
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intel-mid.h
1132
0644
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dl
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intel_ds.h
849
0644
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dl
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intel_pconfig.h
1545
0644
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dl
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intel_pt.h
1235
0644
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dl
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intel_punit_ipc.h
4666
0644
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dl
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intel_scu_ipc.h
2234
0644
edit
dl
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intel_telemetry.h
3723
0644
edit
dl
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invpcid.h
1487
0644
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dl
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io.h
12690
0644
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dl
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iomap.h
536
0644
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dl
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iommu.h
780
0644
edit
dl
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iommu_table.h
3910
0644
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dl
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iosf_mbi.h
7384
0644
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dl
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io_apic.h
5204
0644
edit
dl
rm
io_bitmap.h
1370
0644
edit
dl
rm
irq.h
1280
0644
edit
dl
rm
irqdomain.h
1915
0644
edit
dl
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irqflags.h
2976
0644
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dl
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irq_remapping.h
2061
0644
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dl
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irq_stack.h
7536
0644
edit
dl
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irq_vectors.h
4296
0644
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dl
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irq_work.h
358
0644
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dl
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ist.h
294
0644
edit
dl
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jailhouse_para.h
449
0644
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dl
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jump_label.h
1406
0644
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dl
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kasan.h
1291
0644
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dl
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kaslr.h
398
0644
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dl
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kbdleds.h
454
0644
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dl
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Kbuild
300
0644
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dl
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kdebug.h
1087
0644
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dl
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kexec-bzimage64.h
195
0644
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dl
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kexec.h
6011
0644
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dl
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kfence.h
2140
0644
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dl
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kgdb.h
2143
0644
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dl
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kprobes.h
3463
0644
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dl
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kvm-x86-ops.h
3921
0644
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dl
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kvmclock.h
506
0644
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dl
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kvm_host.h
60066
0644
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dl
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kvm_page_track.h
2504
0644
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dl
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kvm_para.h
3467
0644
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dl
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kvm_types.h
178
0644
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dl
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kvm_vcpu_regs.h
606
0644
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dl
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linkage.h
1139
0644
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dl
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livepatch.h
472
0644
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dl
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local.h
3925
0644
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dl
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mach_timer.h
1590
0644
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dl
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mach_traps.h
1013
0644
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dl
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math_emu.h
395
0644
edit
dl
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mc146818rtc.h
2835
0644
edit
dl
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mce.h
13125
0644
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dl
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memtype.h
899
0644
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dl
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mem_encrypt.h
3427
0644
edit
dl
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microcode.h
3865
0644
edit
dl
rm
microcode_amd.h
1573
0644
edit
dl
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microcode_intel.h
2521
0644
edit
dl
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misc.h
143
0644
edit
dl
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mmconfig.h
374
0644
edit
dl
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mmu.h
1740
0644
edit
dl
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mmu_context.h
6074
0644
edit
dl
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mmx.h
337
0644
edit
dl
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mmzone.h
129
0644
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dl
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mmzone_32.h
343
0644
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dl
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mmzone_64.h
430
0644
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dl
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module.h
324
0644
edit
dl
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mpspec.h
3652
0644
edit
dl
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mpspec_def.h
4256
0644
edit
dl
rm
mshyperv.h
5604
0644
edit
dl
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msi.h
1549
0644
edit
dl
rm
msr-index.h
40230
0644
edit
dl
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msr-trace.h
1387
0644
edit
dl
rm
msr.h
11061
0644
edit
dl
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mtrr.h
4753
0644
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dl
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mwait.h
4457
0644
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dl
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nmi.h
1444
0644
edit
dl
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nops.h
1905
0644
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dl
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nospec-branch.h
13073
0644
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dl
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numa.h
2193
0644
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dl
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numa_32.h
256
0644
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dl
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olpc.h
2382
0644
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dl
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olpc_ofw.h
1128
0644
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dl
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orc_lookup.h
1065
0644
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dl
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orc_types.h
2025
0644
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dl
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page.h
2510
0644
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dl
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page_32.h
1043
0644
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dl
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page_32_types.h
2399
0644
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dl
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page_64.h
2737
0644
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dl
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page_64_types.h
3139
0644
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dl
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page_types.h
2262
0644
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dl
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paravirt.h
18813
0644
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dl
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paravirt_types.h
19671
0644
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dl
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parport.h
314
0644
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dl
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pc-conf-reg.h
723
0644
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dl
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pci-direct.h
850
0644
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dl
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pci-functions.h
654
0644
edit
dl
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pci.h
3191
0644
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dl
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pci_x86.h
6477
0644
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dl
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percpu.h
16992
0644
edit
dl
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perf_event.h
16079
0644
edit
dl
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perf_event_p4.h
26731
0644
edit
dl
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pgalloc.h
5306
0644
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dl
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pgtable-2level.h
2815
0644
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dl
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pgtable-2level_types.h
921
0644
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dl
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pgtable-3level.h
8963
0644
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dl
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pgtable-3level_types.h
1030
0644
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dl
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pgtable-invert.h
1091
0644
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dl
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pgtable.h
33464
0644
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dl
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pgtable_32.h
2346
0644
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dl
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pgtable_32_areas.h
1582
0644
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dl
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pgtable_32_types.h
634
0644
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dl
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pgtable_64.h
7257
0644
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dl
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pgtable_64_types.h
4468
0644
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dl
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pgtable_areas.h
623
0644
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dl
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pgtable_types.h
17580
0644
edit
dl
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pkeys.h
3513
0644
edit
dl
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pkru.h
1346
0644
edit
dl
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platform_sst_audio.h
3101
0644
edit
dl
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pm-trace.h
611
0644
edit
dl
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posix_types.h
144
0644
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dl
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preempt.h
4051
0644
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dl
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probe_roms.h
273
0644
edit
dl
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processor-cyrix.h
383
0644
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dl
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processor-flags.h
1750
0644
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dl
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processor.h
22471
0644
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dl
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prom.h
821
0644
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proto.h
952
0644
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dl
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pti.h
372
0644
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dl
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ptrace.h
10491
0644
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dl
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purgatory.h
235
0644
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dl
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pvclock-abi.h
1530
0644
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dl
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pvclock.h
2702
0644
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dl
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qrwlock.h
199
0644
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dl
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qspinlock.h
3132
0644
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dl
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qspinlock_paravirt.h
1908
0644
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dl
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realmode.h
2099
0644
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reboot.h
948
0644
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dl
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reboot_fixups.h
183
0644
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dl
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required-features.h
2839
0644
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dl
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resctrl.h
2847
0644
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dl
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rmwcc.h
2277
0644
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seccomp.h
1205
0644
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dl
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sections.h
895
0644
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dl
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segment.h
10613
0644
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serial.h
1137
0644
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dl
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setup.h
3633
0644
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setup_arch.h
77
0644
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dl
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set_memory.h
5388
0644
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dl
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sev-common.h
3053
0644
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sev.h
2443
0644
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dl
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sgx.h
11389
0644
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dl
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shmparam.h
193
0644
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sigcontext.h
261
0644
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dl
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sigframe.h
2141
0644
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dl
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sighandling.h
526
0644
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dl
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signal.h
2428
0644
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simd.h
287
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smap.h
2038
0644
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smp.h
5067
0644
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softirq_stack.h
216
0644
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dl
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sparsemem.h
1102
0644
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dl
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spec-ctrl.h
2875
0644
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dl
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special_insns.h
7170
0644
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dl
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spinlock.h
1214
0644
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dl
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spinlock_types.h
253
0644
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dl
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sta2x11.h
352
0644
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dl
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stackprotector.h
3095
0644
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stacktrace.h
2850
0644
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static_call.h
2868
0644
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string.h
129
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dl
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string_32.h
6111
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dl
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string_64.h
2852
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dl
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suspend.h
496
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suspend_32.h
876
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suspend_64.h
1833
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dl
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svm.h
10791
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dl
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swiotlb.h
645
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dl
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switch_to.h
2330
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dl
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sync_bitops.h
3336
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dl
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sync_core.h
3315
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dl
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syscall.h
4310
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dl
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syscalls.h
374
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dl
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syscall_wrapper.h
9998
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dl
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text-patching.h
5646
0644
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dl
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thermal.h
428
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dl
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thread_info.h
7995
0644
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dl
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time.h
331
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dl
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timer.h
1027
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dl
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timex.h
546
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dl
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tlb.h
1200
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dl
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tlbbatch.h
332
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dl
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tlbflush.h
7710
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dl
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topology.h
6482
0644
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dl
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trace_clock.h
406
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dl
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trapnr.h
1316
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dl
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traps.h
1260
0644
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dl
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trap_pf.h
709
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dl
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tsc.h
2016
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dl
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uaccess.h
22210
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dl
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uaccess_32.h
1006
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dl
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uaccess_64.h
2440
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dl
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umip.h
317
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dl
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unistd.h
1630
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dl
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unwind.h
3220
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dl
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unwind_hints.h
1461
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dl
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uprobes.h
1017
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dl
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user.h
2257
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dl
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user32.h
2156
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dl
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user_32.h
5042
0644
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dl
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user_64.h
5339
0644
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dl
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vdso.h
1391
0644
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dl
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vermagic.h
1993
0644
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dl
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vga.h
740
0644
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dl
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vgtod.h
518
0644
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dl
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virtext.h
3460
0644
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dl
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vm86.h
2182
0644
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dl
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vmalloc.h
560
0644
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dl
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vmware.h
1942
0644
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dl
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vmx.h
26141
0644
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dl
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vmxfeatures.h
6049
0644
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dl
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vsyscall.h
988
0644
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dl
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vvar.h
1591
0644
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dl
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word-at-a-time.h
2596
0644
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dl
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x86_init.h
10176
0644
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dl
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xor.h
10107
0644
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dl
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xor_32.h
14347
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dl
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xor_64.h
716
0644
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dl
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xor_avx.h
4344
0644
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dl
rm
Edit:
/usr/src/linux-headers-5.15.0-190/arch/x86/include/asm/uaccess.h
(22210B)
/* SPDX-License-Identifier: GPL-2.0 */ #ifndef _ASM_X86_UACCESS_H #define _ASM_X86_UACCESS_H /* * User space memory access functions */ #include <linux/compiler.h> #include <linux/kasan-checks.h> #include <linux/string.h> #include <asm/asm.h> #include <asm/page.h> #include <asm/smap.h> #include <asm/extable.h> /* * Test whether a block of memory is a valid user space address. * Returns 0 if the range is valid, nonzero otherwise. */ static inline bool __chk_range_not_ok(unsigned long addr, unsigned long size) { unsigned long limit = TASK_SIZE_MAX; /* * If we have used "sizeof()" for the size, * we know it won't overflow the limit (but * it might overflow the 'addr', so it's * important to subtract the size from the * limit, not add it to the address). */ if (__builtin_constant_p(size)) return unlikely(addr > limit - size); /* Arbitrary sizes? Be careful about overflow */ addr += size; if (unlikely(addr < size)) return true; return unlikely(addr > limit); } #define __access_ok(addr, size) \ ({ \ __chk_user_ptr(addr); \ !__chk_range_not_ok((unsigned long __force)(addr), size); \ }) #ifdef CONFIG_DEBUG_ATOMIC_SLEEP static inline bool pagefault_disabled(void); # define WARN_ON_IN_IRQ() \ WARN_ON_ONCE(!in_task() && !pagefault_disabled()) #else # define WARN_ON_IN_IRQ() #endif /** * access_ok - Checks if a user space pointer is valid * @addr: User space pointer to start of block to check * @size: Size of block to check * * Context: User context only. This function may sleep if pagefaults are * enabled. * * Checks if a pointer to a block of memory in user space is valid. * * Note that, depending on architecture, this function probably just * checks that the pointer is in the user space range - after calling * this function, memory access functions may still return -EFAULT. * * Return: true (nonzero) if the memory block may be valid, false (zero) * if it is definitely invalid. */ #define access_ok(addr, size) \ ({ \ WARN_ON_IN_IRQ(); \ likely(__access_ok(addr, size)); \ }) extern int __get_user_1(void); extern int __get_user_2(void); extern int __get_user_4(void); extern int __get_user_8(void); extern int __get_user_nocheck_1(void); extern int __get_user_nocheck_2(void); extern int __get_user_nocheck_4(void); extern int __get_user_nocheck_8(void); extern int __get_user_bad(void); #define __uaccess_begin() stac() #define __uaccess_end() clac() #define __uaccess_begin_nospec() \ ({ \ stac(); \ barrier_nospec(); \ }) /* * This is the smallest unsigned integer type that can fit a value * (up to 'long long') */ #define __inttype(x) __typeof__( \ __typefits(x,char, \ __typefits(x,short, \ __typefits(x,int, \ __typefits(x,long,0ULL))))) #define __typefits(x,type,not) \ __builtin_choose_expr(sizeof(x)<=sizeof(type),(unsigned type)0,not) /* * This is used for both get_user() and __get_user() to expand to * the proper special function call that has odd calling conventions * due to returning both a value and an error, and that depends on * the size of the pointer passed in. * * Careful: we have to cast the result to the type of the pointer * for sign reasons. * * The use of _ASM_DX as the register specifier is a bit of a * simplification, as gcc only cares about it as the starting point * and not size: for a 64-bit value it will use %ecx:%edx on 32 bits * (%ecx being the next register in gcc's x86 register sequence), and * %rdx on 64 bits. * * Clang/LLVM cares about the size of the register, but still wants * the base register for something that ends up being a pair. */ #define do_get_user_call(fn,x,ptr) \ ({ \ int __ret_gu; \ register __inttype(*(ptr)) __val_gu asm("%"_ASM_DX); \ __chk_user_ptr(ptr); \ asm volatile("call __" #fn "_%P4" \ : "=a" (__ret_gu), "=r" (__val_gu), \ ASM_CALL_CONSTRAINT \ : "0" (ptr), "i" (sizeof(*(ptr)))); \ (x) = (__force __typeof__(*(ptr))) __val_gu; \ __builtin_expect(__ret_gu, 0); \ }) /** * get_user - Get a simple variable from user space. * @x: Variable to store result. * @ptr: Source address, in user space. * * Context: User context only. This function may sleep if pagefaults are * enabled. * * This macro copies a single simple variable from user space to kernel * space. It supports simple types like char and int, but not larger * data types like structures or arrays. * * @ptr must have pointer-to-simple-variable type, and the result of * dereferencing @ptr must be assignable to @x without a cast. * * Return: zero on success, or -EFAULT on error. * On error, the variable @x is set to zero. */ #define get_user(x,ptr) ({ might_fault(); do_get_user_call(get_user,x,ptr); }) /** * __get_user - Get a simple variable from user space, with less checking. * @x: Variable to store result. * @ptr: Source address, in user space. * * Context: User context only. This function may sleep if pagefaults are * enabled. * * This macro copies a single simple variable from user space to kernel * space. It supports simple types like char and int, but not larger * data types like structures or arrays. * * @ptr must have pointer-to-simple-variable type, and the result of * dereferencing @ptr must be assignable to @x without a cast. * * Caller must check the pointer with access_ok() before calling this * function. * * Return: zero on success, or -EFAULT on error. * On error, the variable @x is set to zero. */ #define __get_user(x,ptr) do_get_user_call(get_user_nocheck,x,ptr) #ifdef CONFIG_X86_32 #define __put_user_goto_u64(x, addr, label) \ asm_volatile_goto("\n" \ "1: movl %%eax,0(%1)\n" \ "2: movl %%edx,4(%1)\n" \ _ASM_EXTABLE_UA(1b, %l2) \ _ASM_EXTABLE_UA(2b, %l2) \ : : "A" (x), "r" (addr) \ : : label) #else #define __put_user_goto_u64(x, ptr, label) \ __put_user_goto(x, ptr, "q", "er", label) #endif extern void __put_user_bad(void); /* * Strange magic calling convention: pointer in %ecx, * value in %eax(:%edx), return value in %ecx. clobbers %rbx */ extern void __put_user_1(void); extern void __put_user_2(void); extern void __put_user_4(void); extern void __put_user_8(void); extern void __put_user_nocheck_1(void); extern void __put_user_nocheck_2(void); extern void __put_user_nocheck_4(void); extern void __put_user_nocheck_8(void); /* * ptr must be evaluated and assigned to the temporary __ptr_pu before * the assignment of x to __val_pu, to avoid any function calls * involved in the ptr expression (possibly implicitly generated due * to KASAN) from clobbering %ax. */ #define do_put_user_call(fn,x,ptr) \ ({ \ int __ret_pu; \ void __user *__ptr_pu; \ register __typeof__(*(ptr)) __val_pu asm("%"_ASM_AX); \ __chk_user_ptr(ptr); \ __ptr_pu = (ptr); \ __val_pu = (x); \ asm volatile("call __" #fn "_%P[size]" \ : "=c" (__ret_pu), \ ASM_CALL_CONSTRAINT \ : "0" (__ptr_pu), \ "r" (__val_pu), \ [size] "i" (sizeof(*(ptr))) \ :"ebx"); \ __builtin_expect(__ret_pu, 0); \ }) /** * put_user - Write a simple value into user space. * @x: Value to copy to user space. * @ptr: Destination address, in user space. * * Context: User context only. This function may sleep if pagefaults are * enabled. * * This macro copies a single simple value from kernel space to user * space. It supports simple types like char and int, but not larger * data types like structures or arrays. * * @ptr must have pointer-to-simple-variable type, and @x must be assignable * to the result of dereferencing @ptr. * * Return: zero on success, or -EFAULT on error. */ #define put_user(x, ptr) ({ might_fault(); do_put_user_call(put_user,x,ptr); }) /** * __put_user - Write a simple value into user space, with less checking. * @x: Value to copy to user space. * @ptr: Destination address, in user space. * * Context: User context only. This function may sleep if pagefaults are * enabled. * * This macro copies a single simple value from kernel space to user * space. It supports simple types like char and int, but not larger * data types like structures or arrays. * * @ptr must have pointer-to-simple-variable type, and @x must be assignable * to the result of dereferencing @ptr. * * Caller must check the pointer with access_ok() before calling this * function. * * Return: zero on success, or -EFAULT on error. */ #define __put_user(x, ptr) do_put_user_call(put_user_nocheck,x,ptr) #define __put_user_size(x, ptr, size, label) \ do { \ __chk_user_ptr(ptr); \ switch (size) { \ case 1: \ __put_user_goto(x, ptr, "b", "iq", label); \ break; \ case 2: \ __put_user_goto(x, ptr, "w", "ir", label); \ break; \ case 4: \ __put_user_goto(x, ptr, "l", "ir", label); \ break; \ case 8: \ __put_user_goto_u64(x, ptr, label); \ break; \ default: \ __put_user_bad(); \ } \ } while (0) #ifdef CONFIG_CC_HAS_ASM_GOTO_OUTPUT #ifdef CONFIG_X86_32 #define __get_user_asm_u64(x, ptr, label) do { \ unsigned int __gu_low, __gu_high; \ const unsigned int __user *__gu_ptr; \ __gu_ptr = (const void __user *)(ptr); \ __get_user_asm(__gu_low, __gu_ptr, "l", "=r", label); \ __get_user_asm(__gu_high, __gu_ptr+1, "l", "=r", label); \ (x) = ((unsigned long long)__gu_high << 32) | __gu_low; \ } while (0) #else #define __get_user_asm_u64(x, ptr, label) \ __get_user_asm(x, ptr, "q", "=r", label) #endif #define __get_user_size(x, ptr, size, label) \ do { \ __chk_user_ptr(ptr); \ switch (size) { \ case 1: { \ unsigned char x_u8__; \ __get_user_asm(x_u8__, ptr, "b", "=q", label); \ (x) = x_u8__; \ break; \ } \ case 2: \ __get_user_asm(x, ptr, "w", "=r", label); \ break; \ case 4: \ __get_user_asm(x, ptr, "l", "=r", label); \ break; \ case 8: \ __get_user_asm_u64(x, ptr, label); \ break; \ default: \ (x) = __get_user_bad(); \ } \ } while (0) #define __get_user_asm(x, addr, itype, ltype, label) \ asm_volatile_goto("\n" \ "1: mov"itype" %[umem],%[output]\n" \ _ASM_EXTABLE_UA(1b, %l2) \ : [output] ltype(x) \ : [umem] "m" (__m(addr)) \ : : label) #else // !CONFIG_CC_HAS_ASM_GOTO_OUTPUT #ifdef CONFIG_X86_32 #define __get_user_asm_u64(x, ptr, retval) \ ({ \ __typeof__(ptr) __ptr = (ptr); \ asm volatile("\n" \ "1: movl %[lowbits],%%eax\n" \ "2: movl %[highbits],%%edx\n" \ "3:\n" \ ".section .fixup,\"ax\"\n" \ "4: mov %[efault],%[errout]\n" \ " xorl %%eax,%%eax\n" \ " xorl %%edx,%%edx\n" \ " jmp 3b\n" \ ".previous\n" \ _ASM_EXTABLE_UA(1b, 4b) \ _ASM_EXTABLE_UA(2b, 4b) \ : [errout] "=r" (retval), \ [output] "=&A"(x) \ : [lowbits] "m" (__m(__ptr)), \ [highbits] "m" __m(((u32 __user *)(__ptr)) + 1), \ [efault] "i" (-EFAULT), "0" (retval)); \ }) #else #define __get_user_asm_u64(x, ptr, retval) \ __get_user_asm(x, ptr, retval, "q", "=r") #endif #define __get_user_size(x, ptr, size, retval) \ do { \ unsigned char x_u8__; \ \ retval = 0; \ __chk_user_ptr(ptr); \ switch (size) { \ case 1: \ __get_user_asm(x_u8__, ptr, retval, "b", "=q"); \ (x) = x_u8__; \ break; \ case 2: \ __get_user_asm(x, ptr, retval, "w", "=r"); \ break; \ case 4: \ __get_user_asm(x, ptr, retval, "l", "=r"); \ break; \ case 8: \ __get_user_asm_u64(x, ptr, retval); \ break; \ default: \ (x) = __get_user_bad(); \ } \ } while (0) #define __get_user_asm(x, addr, err, itype, ltype) \ asm volatile("\n" \ "1: mov"itype" %[umem],%[output]\n" \ "2:\n" \ ".section .fixup,\"ax\"\n" \ "3: mov %[efault],%[errout]\n" \ " xorl %k[output],%k[output]\n" \ " jmp 2b\n" \ ".previous\n" \ _ASM_EXTABLE_UA(1b, 3b) \ : [errout] "=r" (err), \ [output] ltype(x) \ : [umem] "m" (__m(addr)), \ [efault] "i" (-EFAULT), "0" (err)) #endif // CONFIG_CC_HAS_ASM_GOTO_OUTPUT #ifdef CONFIG_CC_HAS_ASM_GOTO_TIED_OUTPUT #define __try_cmpxchg_user_asm(itype, ltype, _ptr, _pold, _new, label) ({ \ bool success; \ __typeof__(_ptr) _old = (__typeof__(_ptr))(_pold); \ __typeof__(*(_ptr)) __old = *_old; \ __typeof__(*(_ptr)) __new = (_new); \ asm_volatile_goto("\n" \ "1: " LOCK_PREFIX "cmpxchg"itype" %[new], %[ptr]\n"\ _ASM_EXTABLE_UA(1b, %l[label]) \ : CC_OUT(z) (success), \ [ptr] "+m" (*_ptr), \ [old] "+a" (__old) \ : [new] ltype (__new) \ : "memory" \ : label); \ if (unlikely(!success)) \ *_old = __old; \ likely(success); }) #ifdef CONFIG_X86_32 #define __try_cmpxchg64_user_asm(_ptr, _pold, _new, label) ({ \ bool success; \ __typeof__(_ptr) _old = (__typeof__(_ptr))(_pold); \ __typeof__(*(_ptr)) __old = *_old; \ __typeof__(*(_ptr)) __new = (_new); \ asm_volatile_goto("\n" \ "1: " LOCK_PREFIX "cmpxchg8b %[ptr]\n" \ _ASM_EXTABLE_UA(1b, %l[label]) \ : CC_OUT(z) (success), \ "+A" (__old), \ [ptr] "+m" (*_ptr) \ : "b" ((u32)__new), \ "c" ((u32)((u64)__new >> 32)) \ : "memory" \ : label); \ if (unlikely(!success)) \ *_old = __old; \ likely(success); }) #endif // CONFIG_X86_32 #else // !CONFIG_CC_HAS_ASM_GOTO_TIED_OUTPUT #define __try_cmpxchg_user_asm(itype, ltype, _ptr, _pold, _new, label) ({ \ int __err = 0; \ bool success; \ __typeof__(_ptr) _old = (__typeof__(_ptr))(_pold); \ __typeof__(*(_ptr)) __old = *_old; \ __typeof__(*(_ptr)) __new = (_new); \ asm volatile("\n" \ "1: " LOCK_PREFIX "cmpxchg"itype" %[new], %[ptr]\n"\ CC_SET(z) \ "2:\n" \ _ASM_EXTABLE_TYPE_REG(1b, 2b, EX_TYPE_EFAULT_REG, \ %[errout]) \ : CC_OUT(z) (success), \ [errout] "+r" (__err), \ [ptr] "+m" (*_ptr), \ [old] "+a" (__old) \ : [new] ltype (__new) \ : "memory"); \ if (unlikely(__err)) \ goto label; \ if (unlikely(!success)) \ *_old = __old; \ likely(success); }) #ifdef CONFIG_X86_32 /* * Unlike the normal CMPXCHG, hardcode ECX for both success/fail and error. * There are only six GPRs available and four (EAX, EBX, ECX, and EDX) are * hardcoded by CMPXCHG8B, leaving only ESI and EDI. If the compiler uses * both ESI and EDI for the memory operand, compilation will fail if the error * is an input+output as there will be no register available for input. */ #define __try_cmpxchg64_user_asm(_ptr, _pold, _new, label) ({ \ int __result; \ __typeof__(_ptr) _old = (__typeof__(_ptr))(_pold); \ __typeof__(*(_ptr)) __old = *_old; \ __typeof__(*(_ptr)) __new = (_new); \ asm volatile("\n" \ "1: " LOCK_PREFIX "cmpxchg8b %[ptr]\n" \ "mov $0, %%ecx\n\t" \ "setz %%cl\n" \ "2:\n" \ _ASM_EXTABLE_TYPE_REG(1b, 2b, EX_TYPE_EFAULT_REG, %%ecx) \ : [result]"=c" (__result), \ "+A" (__old), \ [ptr] "+m" (*_ptr) \ : "b" ((u32)__new), \ "c" ((u32)((u64)__new >> 32)) \ : "memory", "cc"); \ if (unlikely(__result < 0)) \ goto label; \ if (unlikely(!__result)) \ *_old = __old; \ likely(__result); }) #endif // CONFIG_X86_32 #endif // CONFIG_CC_HAS_ASM_GOTO_TIED_OUTPUT /* FIXME: this hack is definitely wrong -AK */ struct __large_struct { unsigned long buf[100]; }; #define __m(x) (*(struct __large_struct __user *)(x)) /* * Tell gcc we read from memory instead of writing: this is because * we do not write to any memory gcc knows about, so there are no * aliasing issues. */ #define __put_user_goto(x, addr, itype, ltype, label) \ asm_volatile_goto("\n" \ "1: mov"itype" %0,%1\n" \ _ASM_EXTABLE_UA(1b, %l2) \ : : ltype(x), "m" (__m(addr)) \ : : label) extern unsigned long copy_from_user_nmi(void *to, const void __user *from, unsigned long n); extern __must_check long strncpy_from_user(char *dst, const char __user *src, long count); extern __must_check long strnlen_user(const char __user *str, long n); unsigned long __must_check clear_user(void __user *mem, unsigned long len); unsigned long __must_check __clear_user(void __user *mem, unsigned long len); #ifdef CONFIG_ARCH_HAS_COPY_MC unsigned long __must_check copy_mc_to_kernel(void *to, const void *from, unsigned len); #define copy_mc_to_kernel copy_mc_to_kernel unsigned long __must_check copy_mc_to_user(void __user *to, const void *from, unsigned len); #endif /* * movsl can be slow when source and dest are not both 8-byte aligned */ #ifdef CONFIG_X86_INTEL_USERCOPY extern struct movsl_mask { int mask; } ____cacheline_aligned_in_smp movsl_mask; #endif #define ARCH_HAS_NOCACHE_UACCESS 1 #ifdef CONFIG_X86_32 # include <asm/uaccess_32.h> #else # include <asm/uaccess_64.h> #endif /* * The "unsafe" user accesses aren't really "unsafe", but the naming * is a big fat warning: you have to not only do the access_ok() * checking before using them, but you have to surround them with the * user_access_begin/end() pair. */ static __must_check __always_inline bool user_access_begin(const void __user *ptr, size_t len) { if (unlikely(!access_ok(ptr,len))) return 0; __uaccess_begin_nospec(); return 1; } #define user_access_begin(a,b) user_access_begin(a,b) #define user_access_end() __uaccess_end() #define user_access_save() smap_save() #define user_access_restore(x) smap_restore(x) #define unsafe_put_user(x, ptr, label) \ __put_user_size((__typeof__(*(ptr)))(x), (ptr), sizeof(*(ptr)), label) #ifdef CONFIG_CC_HAS_ASM_GOTO_OUTPUT #define unsafe_get_user(x, ptr, err_label) \ do { \ __inttype(*(ptr)) __gu_val; \ __get_user_size(__gu_val, (ptr), sizeof(*(ptr)), err_label); \ (x) = (__force __typeof__(*(ptr)))__gu_val; \ } while (0) #else // !CONFIG_CC_HAS_ASM_GOTO_OUTPUT #define unsafe_get_user(x, ptr, err_label) \ do { \ int __gu_err; \ __inttype(*(ptr)) __gu_val; \ __get_user_size(__gu_val, (ptr), sizeof(*(ptr)), __gu_err); \ (x) = (__force __typeof__(*(ptr)))__gu_val; \ if (unlikely(__gu_err)) goto err_label; \ } while (0) #endif // CONFIG_CC_HAS_ASM_GOTO_OUTPUT extern void __try_cmpxchg_user_wrong_size(void); #ifndef CONFIG_X86_32 #define __try_cmpxchg64_user_asm(_ptr, _oldp, _nval, _label) \ __try_cmpxchg_user_asm("q", "r", (_ptr), (_oldp), (_nval), _label) #endif /* * Force the pointer to u<size> to match the size expected by the asm helper. * clang/LLVM compiles all cases and only discards the unused paths after * processing errors, which breaks i386 if the pointer is an 8-byte value. */ #define unsafe_try_cmpxchg_user(_ptr, _oldp, _nval, _label) ({ \ bool __ret; \ __chk_user_ptr(_ptr); \ switch (sizeof(*(_ptr))) { \ case 1: __ret = __try_cmpxchg_user_asm("b", "q", \ (__force u8 *)(_ptr), (_oldp), \ (_nval), _label); \ break; \ case 2: __ret = __try_cmpxchg_user_asm("w", "r", \ (__force u16 *)(_ptr), (_oldp), \ (_nval), _label); \ break; \ case 4: __ret = __try_cmpxchg_user_asm("l", "r", \ (__force u32 *)(_ptr), (_oldp), \ (_nval), _label); \ break; \ case 8: __ret = __try_cmpxchg64_user_asm((__force u64 *)(_ptr), (_oldp),\ (_nval), _label); \ break; \ default: __try_cmpxchg_user_wrong_size(); \ } \ __ret; }) /* "Returns" 0 on success, 1 on failure, -EFAULT if the access faults. */ #define __try_cmpxchg_user(_ptr, _oldp, _nval, _label) ({ \ int __ret = -EFAULT; \ __uaccess_begin_nospec(); \ __ret = !unsafe_try_cmpxchg_user(_ptr, _oldp, _nval, _label); \ _label: \ __uaccess_end(); \ __ret; \ }) /* * We want the unsafe accessors to always be inlined and use * the error labels - thus the macro games. */ #define unsafe_copy_loop(dst, src, len, type, label) \ while (len >= sizeof(type)) { \ unsafe_put_user(*(type *)(src),(type __user *)(dst),label); \ dst += sizeof(type); \ src += sizeof(type); \ len -= sizeof(type); \ } #define unsafe_copy_to_user(_dst,_src,_len,label) \ do { \ char __user *__ucu_dst = (_dst); \ const char *__ucu_src = (_src); \ size_t __ucu_len = (_len); \ unsafe_copy_loop(__ucu_dst, __ucu_src, __ucu_len, u64, label); \ unsafe_copy_loop(__ucu_dst, __ucu_src, __ucu_len, u32, label); \ unsafe_copy_loop(__ucu_dst, __ucu_src, __ucu_len, u16, label); \ unsafe_copy_loop(__ucu_dst, __ucu_src, __ucu_len, u8, label); \ } while (0) #define HAVE_GET_KERNEL_NOFAULT #ifdef CONFIG_CC_HAS_ASM_GOTO_OUTPUT #define __get_kernel_nofault(dst, src, type, err_label) \ __get_user_size(*((type *)(dst)), (__force type __user *)(src), \ sizeof(type), err_label) #else // !CONFIG_CC_HAS_ASM_GOTO_OUTPUT #define __get_kernel_nofault(dst, src, type, err_label) \ do { \ int __kr_err; \ \ __get_user_size(*((type *)(dst)), (__force type __user *)(src), \ sizeof(type), __kr_err); \ if (unlikely(__kr_err)) \ goto err_label; \ } while (0) #endif // CONFIG_CC_HAS_ASM_GOTO_OUTPUT #define __put_kernel_nofault(dst, src, type, err_label) \ __put_user_size(*((type *)(src)), (__force type __user *)(dst), \ sizeof(type), err_label) #endif /* _ASM_X86_UACCESS_H */
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