/usr/src/linux-headers-5.15.0-190/arch/parisc/include/asm
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agp.h5960644editdlrm
alternative.h19540644editdlrm
asm-offsets.h350644editdlrm
asmregs.h24780644editdlrm
assembly.h124960644editdlrm
atomic.h57180644editdlrm
barrier.h25630644editdlrm
bitops.h55780644editdlrm
bug.h24080644editdlrm
cache.h20840644editdlrm
cacheflush.h37730644editdlrm
checksum.h47150644editdlrm
cmpxchg.h37830644editdlrm
compat.h39730644editdlrm
compat_ucontext.h5910644editdlrm
delay.h5330644editdlrm
dma-mapping.h10120644editdlrm
dma.h58490644editdlrm
dwarf.h4560644editdlrm
eisa_bus.h4920644editdlrm
eisa_eeprom.h43180644editdlrm
elf.h143810644editdlrm
fb.h4910644editdlrm
fixmap.h16110644editdlrm
floppy.h61930644editdlrm
ftrace.h6410644editdlrm
futex.h26660644editdlrm
grfioctl.h40900644editdlrm
hardirq.h9760644editdlrm
hardware.h42390644editdlrm
hash.h51940644editdlrm
hugetlb.h13310644editdlrm
ide.h11200644editdlrm
io.h83070644editdlrm
irq.h11710644editdlrm
irqflags.h10460644editdlrm
jump_label.h9900644editdlrm
kbdleds.h4770644editdlrm
Kbuild1750644editdlrm
kexec.h8270644editdlrm
kgdb.h13180644editdlrm
kprobes.h12840644editdlrm
ldcw.h25700644editdlrm
led.h13620644editdlrm
linkage.h7380644editdlrm
machdep.h3490644editdlrm
mckinley.h2700644editdlrm
mmu.h1950644editdlrm
mmu_context.h23550644editdlrm
mmzone.h2020644editdlrm
module.h5270644editdlrm
page.h55330644editdlrm
parisc-device.h19640644editdlrm
parport.h3580644editdlrm
patch.h4450644editdlrm
pci.h59560644editdlrm
pdc.h42690644editdlrm
pdcpat.h169680644editdlrm
pdc_chassis.h147450644editdlrm
perf.h19360644editdlrm
perf_event.h1520644editdlrm
pgalloc.h17220644editdlrm
pgtable.h170620644editdlrm
prefetch.h11470644editdlrm
processor.h94860644editdlrm
psw.h24640644editdlrm
ptrace.h16030644editdlrm
ropes.h100600644editdlrm
rt_sigframe.h7450644editdlrm
runway.h3200644editdlrm
seccomp.h6510644editdlrm
sections.h4940644editdlrm
serial.h1240644editdlrm
shmparam.h2630644editdlrm
signal.h6850644editdlrm
smp.h12760644editdlrm
socket.h3100644editdlrm
sparsemem.h3450644editdlrm
special_insns.h15540644editdlrm
spinlock.h31820644editdlrm
spinlock_types.h7010644editdlrm
string.h2470644editdlrm
superio.h33330644editdlrm
switch_to.h3320644editdlrm
syscall.h14770644editdlrm
termios.h17610644editdlrm
thread_info.h31430644editdlrm
timex.h4030644editdlrm
tlb.h2880644editdlrm
tlbflush.h19750644editdlrm
topology.h9000644editdlrm
traps.h5980644editdlrm
uaccess.h62530644editdlrm
ucontext.h3270644editdlrm
unaligned.h3070644editdlrm
unistd.h57760644editdlrm
unwind.h27230644editdlrm
vmalloc.h960644editdlrm
Edit: /usr/src/linux-headers-5.15.0-190/arch/parisc/include/asm/bitops.h (5578B)
/* SPDX-License-Identifier: GPL-2.0 */ #ifndef _PARISC_BITOPS_H #define _PARISC_BITOPS_H #ifndef _LINUX_BITOPS_H #error only can be included directly #endif #include #include #include #include #include /* See http://marc.theaimsgroup.com/?t=108826637900003 for discussion * on use of volatile and __*_bit() (set/clear/change): * *_bit() want use of volatile. * __*_bit() are "relaxed" and don't use spinlock or volatile. */ static __inline__ void set_bit(int nr, volatile unsigned long * addr) { unsigned long mask = BIT_MASK(nr); unsigned long flags; addr += BIT_WORD(nr); _atomic_spin_lock_irqsave(addr, flags); *addr |= mask; _atomic_spin_unlock_irqrestore(addr, flags); } static __inline__ void clear_bit(int nr, volatile unsigned long * addr) { unsigned long mask = BIT_MASK(nr); unsigned long flags; addr += BIT_WORD(nr); _atomic_spin_lock_irqsave(addr, flags); *addr &= ~mask; _atomic_spin_unlock_irqrestore(addr, flags); } static __inline__ void change_bit(int nr, volatile unsigned long * addr) { unsigned long mask = BIT_MASK(nr); unsigned long flags; addr += BIT_WORD(nr); _atomic_spin_lock_irqsave(addr, flags); *addr ^= mask; _atomic_spin_unlock_irqrestore(addr, flags); } static __inline__ int test_and_set_bit(int nr, volatile unsigned long * addr) { unsigned long mask = BIT_MASK(nr); unsigned long old; unsigned long flags; int set; addr += BIT_WORD(nr); _atomic_spin_lock_irqsave(addr, flags); old = *addr; set = (old & mask) ? 1 : 0; if (!set) *addr = old | mask; _atomic_spin_unlock_irqrestore(addr, flags); return set; } static __inline__ int test_and_clear_bit(int nr, volatile unsigned long * addr) { unsigned long mask = BIT_MASK(nr); unsigned long old; unsigned long flags; int set; addr += BIT_WORD(nr); _atomic_spin_lock_irqsave(addr, flags); old = *addr; set = (old & mask) ? 1 : 0; if (set) *addr = old & ~mask; _atomic_spin_unlock_irqrestore(addr, flags); return set; } static __inline__ int test_and_change_bit(int nr, volatile unsigned long * addr) { unsigned long mask = BIT_MASK(nr); unsigned long oldbit; unsigned long flags; addr += BIT_WORD(nr); _atomic_spin_lock_irqsave(addr, flags); oldbit = *addr; *addr = oldbit ^ mask; _atomic_spin_unlock_irqrestore(addr, flags); return (oldbit & mask) ? 1 : 0; } #include #ifdef __KERNEL__ /** * __ffs - find first bit in word. returns 0 to "BITS_PER_LONG-1". * @word: The word to search * * __ffs() return is undefined if no bit is set. * * 32-bit fast __ffs by LaMont Jones "lamont At hp com". * 64-bit enhancement by Grant Grundler "grundler At parisc-linux org". * (with help from willy/jejb to get the semantics right) * * This algorithm avoids branches by making use of nullification. * One side effect of "extr" instructions is it sets PSW[N] bit. * How PSW[N] (nullify next insn) gets set is determined by the * "condition" field (eg "<>" or "TR" below) in the extr* insn. * Only the 1st and one of either the 2cd or 3rd insn will get executed. * Each set of 3 insn will get executed in 2 cycles on PA8x00 vs 16 or so * cycles for each mispredicted branch. */ static __inline__ unsigned long __ffs(unsigned long x) { unsigned long ret; __asm__( #ifdef CONFIG_64BIT " ldi 63,%1\n" " extrd,u,*<> %0,63,32,%%r0\n" " extrd,u,*TR %0,31,32,%0\n" /* move top 32-bits down */ " addi -32,%1,%1\n" #else " ldi 31,%1\n" #endif " extru,<> %0,31,16,%%r0\n" " extru,TR %0,15,16,%0\n" /* xxxx0000 -> 0000xxxx */ " addi -16,%1,%1\n" " extru,<> %0,31,8,%%r0\n" " extru,TR %0,23,8,%0\n" /* 0000xx00 -> 000000xx */ " addi -8,%1,%1\n" " extru,<> %0,31,4,%%r0\n" " extru,TR %0,27,4,%0\n" /* 000000x0 -> 0000000x */ " addi -4,%1,%1\n" " extru,<> %0,31,2,%%r0\n" " extru,TR %0,29,2,%0\n" /* 0000000y, 1100b -> 0011b */ " addi -2,%1,%1\n" " extru,= %0,31,1,%%r0\n" /* check last bit */ " addi -1,%1,%1\n" : "+r" (x), "=r" (ret) ); return ret; } #include /* * ffs: find first bit set. returns 1 to BITS_PER_LONG or 0 (if none set) * This is defined the same way as the libc and compiler builtin * ffs routines, therefore differs in spirit from the above ffz (man ffs). */ static __inline__ int ffs(int x) { return x ? (__ffs((unsigned long)x) + 1) : 0; } /* * fls: find last (most significant) bit set. * fls(0) = 0, fls(1) = 1, fls(0x80000000) = 32. */ static __inline__ int fls(unsigned int x) { int ret; if (!x) return 0; __asm__( " ldi 1,%1\n" " extru,<> %0,15,16,%%r0\n" " zdep,TR %0,15,16,%0\n" /* xxxx0000 */ " addi 16,%1,%1\n" " extru,<> %0,7,8,%%r0\n" " zdep,TR %0,23,24,%0\n" /* xx000000 */ " addi 8,%1,%1\n" " extru,<> %0,3,4,%%r0\n" " zdep,TR %0,27,28,%0\n" /* x0000000 */ " addi 4,%1,%1\n" " extru,<> %0,1,2,%%r0\n" " zdep,TR %0,29,30,%0\n" /* y0000000 (y&3 = 0) */ " addi 2,%1,%1\n" " extru,= %0,0,1,%%r0\n" " addi 1,%1,%1\n" /* if y & 8, add 1 */ : "+r" (x), "=r" (ret) ); return ret; } #include #include #include #include #include #endif /* __KERNEL__ */ #include #ifdef __KERNEL__ #include #include #endif /* __KERNEL__ */ #endif /* _PARISC_BITOPS_H */