/usr/src/linux-headers-5.15.0-181/arch/arm/include/asm
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hardware/-0755rm
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archrandom.h1920644editdlrm
arch_gicv3.h63270644editdlrm
arch_timer.h31240644editdlrm
arm-cci.h5350644editdlrm
asm-offsets.h350644editdlrm
assembler.h131060644editdlrm
atomic.h125360644editdlrm
auxvec.h290644editdlrm
barrier.h29100644editdlrm
bitops.h76270644editdlrm
bitrev.h4510644editdlrm
bL_switcher.h21860644editdlrm
bug.h26200644editdlrm
bugs.h2970644editdlrm
cache.h7940644editdlrm
cacheflush.h157940644editdlrm
cachetype.h27790644editdlrm
checksum.h40260644editdlrm
clocksource.h1610644editdlrm
cmpxchg.h63280644editdlrm
compiler.h9780644editdlrm
cp15.h33020644editdlrm
cpu.h3870644editdlrm
cpufeature.h12910644editdlrm
cpuidle.h16280644editdlrm
cputype.h87660644editdlrm
cti.h37030644editdlrm
dcc.h6230644editdlrm
delay.h29030644editdlrm
device.h6360644editdlrm
div64.h26400644editdlrm
dma-direct.h13410644editdlrm
dma-iommu.h9080644editdlrm
dma-mapping.h47140644editdlrm
dma.h42870644editdlrm
dmi.h3780644editdlrm
domain.h37510644editdlrm
ecard.h61190644editdlrm
edac.h9950644editdlrm
efi.h25010644editdlrm
elf.h46360644editdlrm
entry-macro-multi.S3360644editdlrm
exception.h4160644editdlrm
fb.h3750644editdlrm
fiq.h13910644editdlrm
firmware.h17280644editdlrm
fixmap.h18810644editdlrm
floppy.h23180644editdlrm
fncpy.h25520644editdlrm
fpstate.h14780644editdlrm
ftrace.h18210644editdlrm
futex.h43570644editdlrm
glue-cache.h35150644editdlrm
glue-df.h21100644editdlrm
glue-pf.h10050644editdlrm
glue-proc.h44240644editdlrm
glue.h6130644editdlrm
gpio.h6150644editdlrm
hardirq.h2460644editdlrm
highmem.h23790644editdlrm
hugetlb-3level.h6900644editdlrm
hugetlb.h5130644editdlrm
hwcap.h3780644editdlrm
hw_breakpoint.h38110644editdlrm
hw_irq.h3490644editdlrm
hypervisor.h2240644editdlrm
ide.h5660644editdlrm
idmap.h3590644editdlrm
insn.h6360644editdlrm
io.h150270644editdlrm
irq.h8870644editdlrm
irqflags.h39690644editdlrm
irq_work.h2340644editdlrm
jump_label.h10090644editdlrm
kasan.h7080644editdlrm
kasan_def.h27260644editdlrm
Kbuild1860644editdlrm
kexec-internal.h2720644editdlrm
kexec.h22550644editdlrm
kgdb.h27830644editdlrm
kprobes.h22480644editdlrm
krait-l2-accessors.h2310644editdlrm
linkage.h2160644editdlrm
mc146818rtc.h7200644editdlrm
mcpm.h120610644editdlrm
mcs_spinlock.h5700644editdlrm
memblock.h2480644editdlrm
memory.h109450644editdlrm
mmu.h9530644editdlrm
mmu_context.h34610644editdlrm
module.h12160644editdlrm
module.lds.h1340644editdlrm
mpu.h33000644editdlrm
mtd-xip.h5200644editdlrm
neon.h10410644editdlrm
nwflash.h1950644editdlrm
opcodes-sec.h3500644editdlrm
opcodes-virt.h6840644editdlrm
opcodes.h81180644editdlrm
outercache.h32680644editdlrm
page-nommu.h8110644editdlrm
page.h34480644editdlrm
paravirt.h4770644editdlrm
patch.h4380644editdlrm
pci.h7940644editdlrm
percpu.h10690644editdlrm
perf_event.h7080644editdlrm
pgalloc.h33730644editdlrm
pgtable-2level-hwdef.h33850644editdlrm
pgtable-2level-types.h12780644editdlrm
pgtable-2level.h86450644editdlrm
pgtable-3level-hwdef.h34350644editdlrm
pgtable-3level-types.h13310644editdlrm
pgtable-3level.h81480644editdlrm
pgtable-hwdef.h3210644editdlrm
pgtable-nommu.h19790644editdlrm
pgtable.h104920644editdlrm
probes.h13320644editdlrm
proc-fns.h47540644editdlrm
processor.h31660644editdlrm
procinfo.h11520644editdlrm
prom.h5520644editdlrm
psci.h3790644editdlrm
ptdump.h9230644editdlrm
ptrace.h48410644editdlrm
seccomp.h2810644editdlrm
sections.h6220644editdlrm
secure_cntvoff.h1520644editdlrm
setup.h7730644editdlrm
set_memory.h7200644editdlrm
shmparam.h4190644editdlrm
signal.h5590644editdlrm
smp.h28390644editdlrm
smp_plat.h25350644editdlrm
smp_scu.h13520644editdlrm
smp_twd.h5900644editdlrm
sparsemem.h7160644editdlrm
spectre.h9060644editdlrm
spinlock.h56450644editdlrm
spinlock_types.h5410644editdlrm
stackprotector.h13570644editdlrm
stacktrace.h7420644editdlrm
string.h21650644editdlrm
suspend.h3690644editdlrm
swab.h10050644editdlrm
switch_to.h10580644editdlrm
sync_bitops.h15140644editdlrm
syscall.h23470644editdlrm
system_info.h7630644editdlrm
system_misc.h10050644editdlrm
tcm.h9250644editdlrm
therm.h6550644editdlrm
thread_info.h49740644editdlrm
thread_notify.h10860644editdlrm
timex.h4310644editdlrm
tlb.h14420644editdlrm
tlbflush.h179090644editdlrm
tls.h31660644editdlrm
topology.h11390644editdlrm
traps.h9110644editdlrm
uaccess-asm.h27030644editdlrm
uaccess.h174310644editdlrm
ucontext.h27450644editdlrm
unified.h9790644editdlrm
unistd.h15780644editdlrm
unwind.h11730644editdlrm
uprobes.h9480644editdlrm
user.h43020644editdlrm
v7m.h32330644editdlrm
vdso.h5070644editdlrm
vdso_datapage.h4440644editdlrm
vermagic.h8000644editdlrm
vfp.h29690644editdlrm
vfpmacros.h20740644editdlrm
vga.h3050644editdlrm
virt.h18550644editdlrm
vmalloc.h870644editdlrm
vmlinux.lds.h44900644editdlrm
word-at-a-time.h21280644editdlrm
xor.h52040644editdlrm
Edit: /usr/src/linux-headers-5.15.0-181/arch/arm/include/asm/bitops.h (7627B)
/* SPDX-License-Identifier: GPL-2.0 */ /* * Copyright 1995, Russell King. * Various bits and pieces copyrights include: * Linus Torvalds (test_bit). * Big endian support: Copyright 2001, Nicolas Pitre * reworked by rmk. * * bit 0 is the LSB of an "unsigned long" quantity. * * Please note that the code in this file should never be included * from user space. Many of these are not implemented in assembler * since they would be too costly. Also, they require privileged * instructions (which are not available from user mode) to ensure * that they are atomic. */ #ifndef __ASM_ARM_BITOPS_H #define __ASM_ARM_BITOPS_H #ifdef __KERNEL__ #ifndef _LINUX_BITOPS_H #error only can be included directly #endif #include #include #include /* * These functions are the basis of our bit ops. * * First, the atomic bitops. These use native endian. */ static inline void ____atomic_set_bit(unsigned int bit, volatile unsigned long *p) { unsigned long flags; unsigned long mask = BIT_MASK(bit); p += BIT_WORD(bit); raw_local_irq_save(flags); *p |= mask; raw_local_irq_restore(flags); } static inline void ____atomic_clear_bit(unsigned int bit, volatile unsigned long *p) { unsigned long flags; unsigned long mask = BIT_MASK(bit); p += BIT_WORD(bit); raw_local_irq_save(flags); *p &= ~mask; raw_local_irq_restore(flags); } static inline void ____atomic_change_bit(unsigned int bit, volatile unsigned long *p) { unsigned long flags; unsigned long mask = BIT_MASK(bit); p += BIT_WORD(bit); raw_local_irq_save(flags); *p ^= mask; raw_local_irq_restore(flags); } static inline int ____atomic_test_and_set_bit(unsigned int bit, volatile unsigned long *p) { unsigned long flags; unsigned int res; unsigned long mask = BIT_MASK(bit); p += BIT_WORD(bit); raw_local_irq_save(flags); res = *p; *p = res | mask; raw_local_irq_restore(flags); return (res & mask) != 0; } static inline int ____atomic_test_and_clear_bit(unsigned int bit, volatile unsigned long *p) { unsigned long flags; unsigned int res; unsigned long mask = BIT_MASK(bit); p += BIT_WORD(bit); raw_local_irq_save(flags); res = *p; *p = res & ~mask; raw_local_irq_restore(flags); return (res & mask) != 0; } static inline int ____atomic_test_and_change_bit(unsigned int bit, volatile unsigned long *p) { unsigned long flags; unsigned int res; unsigned long mask = BIT_MASK(bit); p += BIT_WORD(bit); raw_local_irq_save(flags); res = *p; *p = res ^ mask; raw_local_irq_restore(flags); return (res & mask) != 0; } #include /* * A note about Endian-ness. * ------------------------- * * When the ARM is put into big endian mode via CR15, the processor * merely swaps the order of bytes within words, thus: * * ------------ physical data bus bits ----------- * D31 ... D24 D23 ... D16 D15 ... D8 D7 ... D0 * little byte 3 byte 2 byte 1 byte 0 * big byte 0 byte 1 byte 2 byte 3 * * This means that reading a 32-bit word at address 0 returns the same * value irrespective of the endian mode bit. * * Peripheral devices should be connected with the data bus reversed in * "Big Endian" mode. ARM Application Note 61 is applicable, and is * available from http://www.arm.com/. * * The following assumes that the data bus connectivity for big endian * mode has been followed. * * Note that bit 0 is defined to be 32-bit word bit 0, not byte 0 bit 0. */ /* * Native endian assembly bitops. nr = 0 -> word 0 bit 0. */ extern void _set_bit(int nr, volatile unsigned long * p); extern void _clear_bit(int nr, volatile unsigned long * p); extern void _change_bit(int nr, volatile unsigned long * p); extern int _test_and_set_bit(int nr, volatile unsigned long * p); extern int _test_and_clear_bit(int nr, volatile unsigned long * p); extern int _test_and_change_bit(int nr, volatile unsigned long * p); /* * Little endian assembly bitops. nr = 0 -> byte 0 bit 0. */ extern int _find_first_zero_bit_le(const unsigned long *p, unsigned size); extern int _find_next_zero_bit_le(const unsigned long *p, int size, int offset); extern int _find_first_bit_le(const unsigned long *p, unsigned size); extern int _find_next_bit_le(const unsigned long *p, int size, int offset); /* * Big endian assembly bitops. nr = 0 -> byte 3 bit 0. */ extern int _find_first_zero_bit_be(const unsigned long *p, unsigned size); extern int _find_next_zero_bit_be(const unsigned long *p, int size, int offset); extern int _find_first_bit_be(const unsigned long *p, unsigned size); extern int _find_next_bit_be(const unsigned long *p, int size, int offset); #ifndef CONFIG_SMP /* * The __* form of bitops are non-atomic and may be reordered. */ #define ATOMIC_BITOP(name,nr,p) \ (__builtin_constant_p(nr) ? ____atomic_##name(nr, p) : _##name(nr,p)) #else #define ATOMIC_BITOP(name,nr,p) _##name(nr,p) #endif /* * Native endian atomic definitions. */ #define set_bit(nr,p) ATOMIC_BITOP(set_bit,nr,p) #define clear_bit(nr,p) ATOMIC_BITOP(clear_bit,nr,p) #define change_bit(nr,p) ATOMIC_BITOP(change_bit,nr,p) #define test_and_set_bit(nr,p) ATOMIC_BITOP(test_and_set_bit,nr,p) #define test_and_clear_bit(nr,p) ATOMIC_BITOP(test_and_clear_bit,nr,p) #define test_and_change_bit(nr,p) ATOMIC_BITOP(test_and_change_bit,nr,p) #ifndef __ARMEB__ /* * These are the little endian, atomic definitions. */ #define find_first_zero_bit(p,sz) _find_first_zero_bit_le(p,sz) #define find_next_zero_bit(p,sz,off) _find_next_zero_bit_le(p,sz,off) #define find_first_bit(p,sz) _find_first_bit_le(p,sz) #define find_next_bit(p,sz,off) _find_next_bit_le(p,sz,off) #else /* * These are the big endian, atomic definitions. */ #define find_first_zero_bit(p,sz) _find_first_zero_bit_be(p,sz) #define find_next_zero_bit(p,sz,off) _find_next_zero_bit_be(p,sz,off) #define find_first_bit(p,sz) _find_first_bit_be(p,sz) #define find_next_bit(p,sz,off) _find_next_bit_be(p,sz,off) #endif #if __LINUX_ARM_ARCH__ < 5 #include #include #include #include #else /* * On ARMv5 and above, the gcc built-ins may rely on the clz instruction * and produce optimal inlined code in all cases. On ARMv7 it is even * better by also using the rbit instruction. */ #include #include #include #include #endif #include #include #include #include #include #ifdef __ARMEB__ static inline int find_first_zero_bit_le(const void *p, unsigned size) { return _find_first_zero_bit_le(p, size); } #define find_first_zero_bit_le find_first_zero_bit_le static inline int find_next_zero_bit_le(const void *p, int size, int offset) { return _find_next_zero_bit_le(p, size, offset); } #define find_next_zero_bit_le find_next_zero_bit_le static inline int find_next_bit_le(const void *p, int size, int offset) { return _find_next_bit_le(p, size, offset); } #define find_next_bit_le find_next_bit_le #endif #include #include /* * Ext2 is defined to use little-endian byte ordering. */ #include #endif /* __KERNEL__ */ #endif /* _ARM_BITOPS_H */