/usr/src/linux-headers-5.15.0-181/arch/sparc/include/asm
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adi.h1380644editdlrm
adi_64.h8120644editdlrm
agp.h4340644editdlrm
apb.h10820644editdlrm
asm-offsets.h350644editdlrm
asm-prototypes.h7290644editdlrm
asm.h11010644editdlrm
asmmacro.h11830644editdlrm
atomic.h2190644editdlrm
atomic_32.h17600644editdlrm
atomic_64.h18490644editdlrm
auxio.h3100644editdlrm
auxio_32.h26150644editdlrm
auxio_64.h32530644editdlrm
backoff.h27560644editdlrm
barrier.h2230644editdlrm
barrier_32.h1600644editdlrm
barrier_64.h20040644editdlrm
bbc.h99960644editdlrm
bitext.h6310644editdlrm
bitops.h2190644editdlrm
bitops_32.h28530644editdlrm
bitops_64.h16750644editdlrm
btext.h1450644editdlrm
bug.h5880644editdlrm
cache.h6300644editdlrm
cacheflush.h3730644editdlrm
cacheflush_32.h19510644editdlrm
cacheflush_64.h25570644editdlrm
cachetlb_32.h8820644editdlrm
chafsr.h97100644editdlrm
checksum.h3310644editdlrm
checksum_32.h57910644editdlrm
checksum_64.h38550644editdlrm
chmctrl.h80960644editdlrm
clock.h2310644editdlrm
clocksource.h4070644editdlrm
cmpxchg.h2230644editdlrm
cmpxchg_32.h24830644editdlrm
cmpxchg_64.h52880644editdlrm
compat.h38900644editdlrm
compat_signal.h5650644editdlrm
contregs.h19410644editdlrm
cpudata.h3780644editdlrm
cpudata_32.h7290644editdlrm
cpudata_64.h11530644editdlrm
cpu_type.h5790644editdlrm
current.h9910644editdlrm
dcr.h7280644editdlrm
dcu.h15200644editdlrm
delay.h2150644editdlrm
delay_32.h9070644editdlrm
delay_64.h4030644editdlrm
device.h5650644editdlrm
dma-mapping.h3360644editdlrm
dma.h49890644editdlrm
ebus_dma.h10980644editdlrm
ecc.h44480644editdlrm
eeprom.h2540644editdlrm
elf.h2070644editdlrm
elf_32.h32670644editdlrm
elf_64.h68480644editdlrm
estate.h22870644editdlrm
extable.h7230644editdlrm
fb.h6800644editdlrm
fbio.h23150644editdlrm
fhc.h45330644editdlrm
floppy.h2190644editdlrm
floppy_32.h97960644editdlrm
floppy_64.h193920644editdlrm
fpumacro.h7100644editdlrm
ftrace.h8010644editdlrm
futex.h2150644editdlrm
futex_32.h820644editdlrm
futex_64.h21600644editdlrm
hardirq.h2230644editdlrm
hardirq_32.h3340644editdlrm
hardirq_64.h4120644editdlrm
head.h2110644editdlrm
head_32.h26170644editdlrm
head_64.h21840644editdlrm
hibernate.h4210644editdlrm
highmem.h19660644editdlrm
hugetlb.h15920644editdlrm
hvtramp.h7820644editdlrm
hw_irq.h880644editdlrm
hypervisor.h1176490644editdlrm
ide.h22220644editdlrm
idprom.h6560644editdlrm
intr_queue.h7940644editdlrm
io-unit.h24690644editdlrm
io.h6200644editdlrm
ioctls.h3580644editdlrm
iommu-common.h14450644editdlrm
iommu.h2150644editdlrm
iommu_32.h58650644editdlrm
iommu_64.h24890644editdlrm
io_32.h34300644editdlrm
io_64.h110760644editdlrm
irq.h2070644editdlrm
irqflags.h2270644editdlrm
irqflags_32.h10580644editdlrm
irqflags_64.h19520644editdlrm
irq_32.h5260644editdlrm
irq_64.h31050644editdlrm
jump_label.h10360644editdlrm
Kbuild1770644editdlrm
kdebug.h2190644editdlrm
kdebug_32.h20410644editdlrm
kdebug_64.h3930644editdlrm
kgdb.h10140644editdlrm
kprobes.h14100644editdlrm
ldc.h44750644editdlrm
leon.h78440644editdlrm
leon_amba.h82800644editdlrm
leon_pci.h5120644editdlrm
lsu.h10620644editdlrm
machines.h15400644editdlrm
mbus.h29960644editdlrm
mc146818rtc.h2980644editdlrm
mc146818rtc_32.h6990644editdlrm
mc146818rtc_64.h6890644editdlrm
mdesc.h30660644editdlrm
memctrl.h3110644editdlrm
mman.h26330644editdlrm
mmu.h2070644editdlrm
mmu_32.h2090644editdlrm
mmu_64.h39670644editdlrm
mmu_context.h2390644editdlrm
mmu_context_32.h10820644editdlrm
mmu_context_64.h54810644editdlrm
mmzone.h3630644editdlrm
mxcc.h44290644editdlrm
nmi.h3540644editdlrm
ns87303.h32990644editdlrm
obio.h64100644editdlrm
openprom.h74750644editdlrm
oplib.h2150644editdlrm
oplib_32.h60620644editdlrm
oplib_64.h83570644editdlrm
page.h2740644editdlrm
page_32.h38260644editdlrm
page_64.h47530644editdlrm
parport.h58190644editdlrm
pbm.h15050644editdlrm
pci.h13670644editdlrm
pcic.h59040644editdlrm
pcr.h18930644editdlrm
percpu.h2190644editdlrm
percpu_32.h1680644editdlrm
percpu_64.h5410644editdlrm
perf_event.h8020644editdlrm
pgalloc.h2230644editdlrm
pgalloc_32.h18230644editdlrm
pgalloc_64.h27640644editdlrm
pgtable.h2230644editdlrm
pgtable_32.h110210644editdlrm
pgtable_64.h323690644editdlrm
pgtsrmmu.h48790644editdlrm
pil.h11090644editdlrm
processor.h2310644editdlrm
processor_32.h28360644editdlrm
processor_64.h75770644editdlrm
prom.h17760644editdlrm
psr.h14140644editdlrm
ptrace.h42940644editdlrm
qrwlock.h2050644editdlrm
qspinlock.h2150644editdlrm
ross.h56550644editdlrm
sbi.h34250644editdlrm
scratchpad.h5470644editdlrm
seccomp.h2250644editdlrm
sections.h2890644editdlrm
setup.h15520644editdlrm
sfafsr.h32160644editdlrm
sfp-machine.h2390644editdlrm
sfp-machine_32.h69540644editdlrm
sfp-machine_64.h31780644editdlrm
shmparam.h2270644editdlrm
shmparam_32.h2530644editdlrm
shmparam_64.h3060644editdlrm
sigcontext.h26160644editdlrm
signal.h3510644editdlrm
smp.h2070644editdlrm
smp_32.h33680644editdlrm
smp_64.h17910644editdlrm
sparsemem.h2950644editdlrm
spinlock.h2270644editdlrm
spinlock_32.h43240644editdlrm
spinlock_64.h4090644editdlrm
spinlock_types.h5490644editdlrm
spitfire.h99670644editdlrm
stacktrace.h1660644editdlrm
starfire.h4180644editdlrm
string.h12540644editdlrm
string_32.h4050644editdlrm
string_64.h4090644editdlrm
sunbpp.h33460644editdlrm
swift.h31470644editdlrm
switch_to.h2310644editdlrm
switch_to_32.h36160644editdlrm
switch_to_64.h26400644editdlrm
syscall.h34640644editdlrm
syscalls.h2990644editdlrm
termbits.h1980644editdlrm
termios.h50630644editdlrm
thread_info.h2390644editdlrm
thread_info_32.h37730644editdlrm
thread_info_64.h81950644editdlrm
timer.h2150644editdlrm
timer_32.h12110644editdlrm
timer_64.h24480644editdlrm
timex.h2150644editdlrm
timex_32.h2660644editdlrm
timex_64.h4230644editdlrm
tlb.h2070644editdlrm
tlbflush.h2270644editdlrm
tlbflush_32.h6210644editdlrm
tlbflush_64.h17760644editdlrm
tlb_32.h1380644editdlrm
tlb_64.h10560644editdlrm
topology.h2270644editdlrm
topology_32.h1700644editdlrm
topology_64.h15460644editdlrm
traps.h5770644editdlrm
trap_block.h67860644editdlrm
tsb.h124570644editdlrm
tsunami.h18900644editdlrm
ttable.h208270644editdlrm
turbosparc.h38660644editdlrm
uaccess.h3900644editdlrm
uaccess_32.h70320644editdlrm
uaccess_64.h61420644editdlrm
unistd.h17970644editdlrm
upa.h38080644editdlrm
uprobes.h13040644editdlrm
user.h1020644editdlrm
vaddrs.h20660644editdlrm
vdso.h4910644editdlrm
vga.h9640644editdlrm
viking.h83410644editdlrm
vio.h120970644editdlrm
visasm.h15440644editdlrm
vmalloc.h930644editdlrm
vvar.h15770644editdlrm
winmacro.h47670644editdlrm
xor.h2070644editdlrm
xor_32.h70860644editdlrm
xor_64.h21560644editdlrm
Edit: /usr/src/linux-headers-5.15.0-181/arch/sparc/include/asm/io_64.h (11076B)
/* SPDX-License-Identifier: GPL-2.0 */ #ifndef __SPARC64_IO_H #define __SPARC64_IO_H #include #include #include #include /* IO address mapping routines need this */ #include #include /* BIO layer definitions. */ extern unsigned long kern_base, kern_size; /* __raw_{read,write}{b,w,l,q} uses direct access. * Access the memory as big endian bypassing the cache * by using ASI_PHYS_BYPASS_EC_E */ #define __raw_readb __raw_readb static inline u8 __raw_readb(const volatile void __iomem *addr) { u8 ret; __asm__ __volatile__("lduba\t[%1] %2, %0\t/* pci_raw_readb */" : "=r" (ret) : "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E)); return ret; } #define __raw_readw __raw_readw static inline u16 __raw_readw(const volatile void __iomem *addr) { u16 ret; __asm__ __volatile__("lduha\t[%1] %2, %0\t/* pci_raw_readw */" : "=r" (ret) : "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E)); return ret; } #define __raw_readl __raw_readl static inline u32 __raw_readl(const volatile void __iomem *addr) { u32 ret; __asm__ __volatile__("lduwa\t[%1] %2, %0\t/* pci_raw_readl */" : "=r" (ret) : "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E)); return ret; } #define __raw_readq __raw_readq static inline u64 __raw_readq(const volatile void __iomem *addr) { u64 ret; __asm__ __volatile__("ldxa\t[%1] %2, %0\t/* pci_raw_readq */" : "=r" (ret) : "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E)); return ret; } #define __raw_writeb __raw_writeb static inline void __raw_writeb(u8 b, const volatile void __iomem *addr) { __asm__ __volatile__("stba\t%r0, [%1] %2\t/* pci_raw_writeb */" : /* no outputs */ : "Jr" (b), "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E)); } #define __raw_writew __raw_writew static inline void __raw_writew(u16 w, const volatile void __iomem *addr) { __asm__ __volatile__("stha\t%r0, [%1] %2\t/* pci_raw_writew */" : /* no outputs */ : "Jr" (w), "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E)); } #define __raw_writel __raw_writel static inline void __raw_writel(u32 l, const volatile void __iomem *addr) { __asm__ __volatile__("stwa\t%r0, [%1] %2\t/* pci_raw_writel */" : /* no outputs */ : "Jr" (l), "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E)); } #define __raw_writeq __raw_writeq static inline void __raw_writeq(u64 q, const volatile void __iomem *addr) { __asm__ __volatile__("stxa\t%r0, [%1] %2\t/* pci_raw_writeq */" : /* no outputs */ : "Jr" (q), "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E)); } /* Memory functions, same as I/O accesses on Ultra. * Access memory as little endian bypassing * the cache by using ASI_PHYS_BYPASS_EC_E_L */ #define readb readb #define readb_relaxed readb static inline u8 readb(const volatile void __iomem *addr) { u8 ret; __asm__ __volatile__("lduba\t[%1] %2, %0\t/* pci_readb */" : "=r" (ret) : "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E_L) : "memory"); return ret; } #define readw readw #define readw_relaxed readw static inline u16 readw(const volatile void __iomem *addr) { u16 ret; __asm__ __volatile__("lduha\t[%1] %2, %0\t/* pci_readw */" : "=r" (ret) : "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E_L) : "memory"); return ret; } #define readl readl #define readl_relaxed readl static inline u32 readl(const volatile void __iomem *addr) { u32 ret; __asm__ __volatile__("lduwa\t[%1] %2, %0\t/* pci_readl */" : "=r" (ret) : "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E_L) : "memory"); return ret; } #define readq readq #define readq_relaxed readq static inline u64 readq(const volatile void __iomem *addr) { u64 ret; __asm__ __volatile__("ldxa\t[%1] %2, %0\t/* pci_readq */" : "=r" (ret) : "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E_L) : "memory"); return ret; } #define writeb writeb #define writeb_relaxed writeb static inline void writeb(u8 b, volatile void __iomem *addr) { __asm__ __volatile__("stba\t%r0, [%1] %2\t/* pci_writeb */" : /* no outputs */ : "Jr" (b), "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E_L) : "memory"); } #define writew writew #define writew_relaxed writew static inline void writew(u16 w, volatile void __iomem *addr) { __asm__ __volatile__("stha\t%r0, [%1] %2\t/* pci_writew */" : /* no outputs */ : "Jr" (w), "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E_L) : "memory"); } #define writel writel #define writel_relaxed writel static inline void writel(u32 l, volatile void __iomem *addr) { __asm__ __volatile__("stwa\t%r0, [%1] %2\t/* pci_writel */" : /* no outputs */ : "Jr" (l), "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E_L) : "memory"); } #define writeq writeq #define writeq_relaxed writeq static inline void writeq(u64 q, volatile void __iomem *addr) { __asm__ __volatile__("stxa\t%r0, [%1] %2\t/* pci_writeq */" : /* no outputs */ : "Jr" (q), "r" (addr), "i" (ASI_PHYS_BYPASS_EC_E_L) : "memory"); } #define inb inb static inline u8 inb(unsigned long addr) { return readb((volatile void __iomem *)addr); } #define inw inw static inline u16 inw(unsigned long addr) { return readw((volatile void __iomem *)addr); } #define inl inl static inline u32 inl(unsigned long addr) { return readl((volatile void __iomem *)addr); } #define outb outb static inline void outb(u8 b, unsigned long addr) { writeb(b, (volatile void __iomem *)addr); } #define outw outw static inline void outw(u16 w, unsigned long addr) { writew(w, (volatile void __iomem *)addr); } #define outl outl static inline void outl(u32 l, unsigned long addr) { writel(l, (volatile void __iomem *)addr); } #define inb_p(__addr) inb(__addr) #define outb_p(__b, __addr) outb(__b, __addr) #define inw_p(__addr) inw(__addr) #define outw_p(__w, __addr) outw(__w, __addr) #define inl_p(__addr) inl(__addr) #define outl_p(__l, __addr) outl(__l, __addr) void outsb(unsigned long, const void *, unsigned long); void outsw(unsigned long, const void *, unsigned long); void outsl(unsigned long, const void *, unsigned long); void insb(unsigned long, void *, unsigned long); void insw(unsigned long, void *, unsigned long); void insl(unsigned long, void *, unsigned long); static inline void readsb(void __iomem *port, void *buf, unsigned long count) { insb((unsigned long __force)port, buf, count); } static inline void readsw(void __iomem *port, void *buf, unsigned long count) { insw((unsigned long __force)port, buf, count); } static inline void readsl(void __iomem *port, void *buf, unsigned long count) { insl((unsigned long __force)port, buf, count); } static inline void writesb(void __iomem *port, const void *buf, unsigned long count) { outsb((unsigned long __force)port, buf, count); } static inline void writesw(void __iomem *port, const void *buf, unsigned long count) { outsw((unsigned long __force)port, buf, count); } static inline void writesl(void __iomem *port, const void *buf, unsigned long count) { outsl((unsigned long __force)port, buf, count); } #define ioread8_rep(p,d,l) readsb(p,d,l) #define ioread16_rep(p,d,l) readsw(p,d,l) #define ioread32_rep(p,d,l) readsl(p,d,l) #define iowrite8_rep(p,d,l) writesb(p,d,l) #define iowrite16_rep(p,d,l) writesw(p,d,l) #define iowrite32_rep(p,d,l) writesl(p,d,l) /* Valid I/O Space regions are anywhere, because each PCI bus supported * can live in an arbitrary area of the physical address range. */ #define IO_SPACE_LIMIT 0xffffffffffffffffUL /* Now, SBUS variants, only difference from PCI is that we do * not use little-endian ASIs. */ static inline u8 sbus_readb(const volatile void __iomem *addr) { return __raw_readb(addr); } static inline u16 sbus_readw(const volatile void __iomem *addr) { return __raw_readw(addr); } static inline u32 sbus_readl(const volatile void __iomem *addr) { return __raw_readl(addr); } static inline u64 sbus_readq(const volatile void __iomem *addr) { return __raw_readq(addr); } static inline void sbus_writeb(u8 b, volatile void __iomem *addr) { __raw_writeb(b, addr); } static inline void sbus_writew(u16 w, volatile void __iomem *addr) { __raw_writew(w, addr); } static inline void sbus_writel(u32 l, volatile void __iomem *addr) { __raw_writel(l, addr); } static inline void sbus_writeq(u64 q, volatile void __iomem *addr) { __raw_writeq(q, addr); } static inline void sbus_memset_io(volatile void __iomem *dst, int c, __kernel_size_t n) { while(n--) { sbus_writeb(c, dst); dst++; } } static inline void memset_io(volatile void __iomem *dst, int c, __kernel_size_t n) { volatile void __iomem *d = dst; while (n--) { writeb(c, d); d++; } } static inline void sbus_memcpy_fromio(void *dst, const volatile void __iomem *src, __kernel_size_t n) { char *d = dst; while (n--) { char tmp = sbus_readb(src); *d++ = tmp; src++; } } static inline void memcpy_fromio(void *dst, const volatile void __iomem *src, __kernel_size_t n) { char *d = dst; while (n--) { char tmp = readb(src); *d++ = tmp; src++; } } static inline void sbus_memcpy_toio(volatile void __iomem *dst, const void *src, __kernel_size_t n) { const char *s = src; volatile void __iomem *d = dst; while (n--) { char tmp = *s++; sbus_writeb(tmp, d); d++; } } static inline void memcpy_toio(volatile void __iomem *dst, const void *src, __kernel_size_t n) { const char *s = src; volatile void __iomem *d = dst; while (n--) { char tmp = *s++; writeb(tmp, d); d++; } } #ifdef __KERNEL__ /* On sparc64 we have the whole physical IO address space accessible * using physically addressed loads and stores, so this does nothing. */ static inline void __iomem *ioremap(unsigned long offset, unsigned long size) { return (void __iomem *)offset; } #define ioremap_uc(X,Y) ioremap((X),(Y)) #define ioremap_wc(X,Y) ioremap((X),(Y)) #define ioremap_wt(X,Y) ioremap((X),(Y)) static inline void __iomem *ioremap_np(unsigned long offset, unsigned long size) { return NULL; } static inline void iounmap(volatile void __iomem *addr) { } #define ioread8 readb #define ioread16 readw #define ioread16be __raw_readw #define ioread32 readl #define ioread32be __raw_readl #define iowrite8 writeb #define iowrite16 writew #define iowrite16be __raw_writew #define iowrite32 writel #define iowrite32be __raw_writel /* Create a virtual mapping cookie for an IO port range */ void __iomem *ioport_map(unsigned long port, unsigned int nr); void ioport_unmap(void __iomem *); /* Create a virtual mapping cookie for a PCI BAR (memory or IO) */ struct pci_dev; void pci_iounmap(struct pci_dev *dev, void __iomem *); static inline int sbus_can_dma_64bit(void) { return 1; } static inline int sbus_can_burst64(void) { return 1; } struct device; void sbus_set_sbus64(struct device *, int); /* * Convert a physical pointer to a virtual kernel pointer for /dev/mem * access */ #define xlate_dev_mem_ptr(p) __va(p) #endif #endif /* !(__SPARC64_IO_H) */