/usr/src/linux-headers-5.15.0-190/arch/mips/include/asm
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abi.h8530644editdlrm
addrspace.h40390644editdlrm
amon.h4090644editdlrm
arch_hweight.h7920644editdlrm
asm-eva.h73430644editdlrm
asm-offsets.h350644editdlrm
asm-prototypes.h2280644editdlrm
asm.h66880644editdlrm
asmmacro-32.h25290644editdlrm
asmmacro-64.h12540644editdlrm
asmmacro.h146390644editdlrm
atomic.h82990644editdlrm
barrier.h35070644editdlrm
bcache.h20860644editdlrm
bitops.h109140644editdlrm
bitrev.h6080644editdlrm
bmips-spaces.h2680644editdlrm
bmips.h30970644editdlrm
bootinfo.h49280644editdlrm
branch.h25030644editdlrm
break.h7870644editdlrm
bug.h7590644editdlrm
bugs.h6400644editdlrm
cache.h5270644editdlrm
cacheflush.h48630644editdlrm
cacheops.h38010644editdlrm
cdmm.h37610644editdlrm
cevt-r4k.h8230644editdlrm
checksum.h57430644editdlrm
clocksource.h2730644editdlrm
cmp.h4920644editdlrm
cmpxchg.h88800644editdlrm
compat-signal.h6400644editdlrm
compat.h38660644editdlrm
compiler.h26690644editdlrm
cop2.h18120644editdlrm
cpu-features.h227230644editdlrm
cpu-info.h62760644editdlrm
cpu-type.h42560644editdlrm
cpu.h169550644editdlrm
cpufeature.h5100644editdlrm
debug.h4470644editdlrm
delay.h8410644editdlrm
div64.h22230644editdlrm
dma-direct.h2550644editdlrm
dma-mapping.h3650644editdlrm
dma.h101610644editdlrm
dmi.h5470644editdlrm
ds1287.h3330644editdlrm
dsemul.h35950644editdlrm
dsp.h17470644editdlrm
edac.h8390644editdlrm
elf.h155590644editdlrm
elfcore-compat.h8410644editdlrm
errno.h4290644editdlrm
eva.h7960644editdlrm
exec.h5790644editdlrm
extable.h2410644editdlrm
fb.h3720644editdlrm
fixmap.h22190644editdlrm
floppy.h16090644editdlrm
fpregdef.h27260644editdlrm
fpu.h73320644editdlrm
fpu_emulator.h48440644editdlrm
ftrace.h26590644editdlrm
futex.h52410644editdlrm
ginvt.h10560644editdlrm
gio_device.h14110644editdlrm
gt64120.h192180644editdlrm
hardirq.h5440644editdlrm
hazards.h86730644editdlrm
highmem.h17410644editdlrm
hpet.h19740644editdlrm
hugetlb.h21650644editdlrm
hw_irq.h4750644editdlrm
i8259.h24400644editdlrm
ide.h3300644editdlrm
idle.h7270644editdlrm
inst.h23980644editdlrm
io.h173340644editdlrm
irq.h24080644editdlrm
irqflags.h42060644editdlrm
irq_cpu.h4270644editdlrm
irq_gt641xx.h20740644editdlrm
irq_regs.h5400644editdlrm
isa-rev.h5560644editdlrm
isadep.h6030644editdlrm
jazz.h81920644editdlrm
jazzdma.h28260644editdlrm
jump_label.h15710644editdlrm
Kbuild4140644editdlrm
kdebug.h3030644editdlrm
kexec.h14900644editdlrm
kgdb.h12220644editdlrm
kprobes.h17270644editdlrm
kvm_host.h304880644editdlrm
kvm_types.h1840644editdlrm
linkage.h3060644editdlrm
llsc.h9230644editdlrm
local.h54730644editdlrm
maar.h42700644editdlrm
machine.h27950644editdlrm
mc146818-time.h37790644editdlrm
mc146818rtc.h4500644editdlrm
mips-cm.h168570644editdlrm
mips-cpc.h57660644editdlrm
mips-cps.h64940644editdlrm
mips-gic.h123870644editdlrm
mips-r2-to-r6-emul.h20950644editdlrm
mipsmtregs.h111710644editdlrm
mipsprom.h21460644editdlrm
mipsregs.h969260644editdlrm
mips_mt.h7070644editdlrm
mmiowb.h1970644editdlrm
mmu.h5550644editdlrm
mmu_context.h62050644editdlrm
mmzone.h4270644editdlrm
module.h23880644editdlrm
msa.h75250644editdlrm
msc01_ic.h67090644editdlrm
paccess.h31400644editdlrm
page.h76100644editdlrm
pci.h39020644editdlrm
perf_event.h3360644editdlrm
pgalloc.h25710644editdlrm
pgtable-32.h81490644editdlrm
pgtable-64.h97090644editdlrm
pgtable-bits.h78520644editdlrm
pgtable.h185290644editdlrm
pm-cps.h15150644editdlrm
pm.h38710644editdlrm
prefetch.h21480644editdlrm
processor.h113210644editdlrm
prom.h6960644editdlrm
ptrace.h55820644editdlrm
r4k-timer.h6040644editdlrm
r4kcache.h113730644editdlrm
reboot.h4400644editdlrm
reg.h260644editdlrm
regdef.h26930644editdlrm
rtlx.h21480644editdlrm
seccomp.h8100644editdlrm
setup.h9410644editdlrm
sgialib.h17430644editdlrm
sgiarcs.h140220644editdlrm
shmparam.h3520644editdlrm
sigcontext.h10600644editdlrm
signal.h10420644editdlrm
sim.h20700644editdlrm
smp-cps.h9980644editdlrm
smp-ops.h24760644editdlrm
smp.h36960644editdlrm
sni.h74950644editdlrm
socket.h13770644editdlrm
sparsemem.h4860644editdlrm
spinlock.h8220644editdlrm
spinlock_types.h1880644editdlrm
spram.h2610644editdlrm
stackframe.h111570644editdlrm
stackprotector.h11770644editdlrm
stacktrace.h21990644editdlrm
string.h6920644editdlrm
switch_to.h44550644editdlrm
sync.h78230644editdlrm
syscall.h37030644editdlrm
termios.h29330644editdlrm
thread_info.h66400644editdlrm
time.h16170644editdlrm
timex.h29370644editdlrm
tlb.h6130644editdlrm
tlbdebug.h4030644editdlrm
tlbex.h9770644editdlrm
tlbflush.h16830644editdlrm
tlbmisc.h3200644editdlrm
topology.h6190644editdlrm
traps.h12290644editdlrm
txx9irq.h7430644editdlrm
txx9pio.h5920644editdlrm
txx9tmr.h16250644editdlrm
types.h4590644editdlrm
uaccess.h164500644editdlrm
uasm.h95780644editdlrm
unaligned-emul.h268560644editdlrm
unistd.h18600644editdlrm
unroll.h28600644editdlrm
uprobes.h11410644editdlrm
vdso.h14690644editdlrm
vermagic.h23720644editdlrm
vga.h12910644editdlrm
vmalloc.h900644editdlrm
vpe.h28430644editdlrm
war.h22820644editdlrm
watch.h8270644editdlrm
wbflush.h6940644editdlrm
yamon-dt.h17170644editdlrm
Edit: /usr/src/linux-headers-5.15.0-190/arch/mips/include/asm/uaccess.h (16450B)
/* * This file is subject to the terms and conditions of the GNU General Public * License. See the file "COPYING" in the main directory of this archive * for more details. * * Copyright (C) 1996, 1997, 1998, 1999, 2000, 03, 04 by Ralf Baechle * Copyright (C) 1999, 2000 Silicon Graphics, Inc. * Copyright (C) 2007 Maciej W. Rozycki * Copyright (C) 2014, Imagination Technologies Ltd. */ #ifndef _ASM_UACCESS_H #define _ASM_UACCESS_H #include #include #include #include #ifdef CONFIG_32BIT #define __UA_LIMIT 0x80000000UL #define __UA_ADDR ".word" #define __UA_LA "la" #define __UA_ADDU "addu" #define __UA_t0 "$8" #define __UA_t1 "$9" #endif /* CONFIG_32BIT */ #ifdef CONFIG_64BIT extern u64 __ua_limit; #define __UA_LIMIT __ua_limit #define __UA_ADDR ".dword" #define __UA_LA "dla" #define __UA_ADDU "daddu" #define __UA_t0 "$12" #define __UA_t1 "$13" #endif /* CONFIG_64BIT */ /* * Is a address valid? This does a straightforward calculation rather * than tests. * * Address valid if: * - "addr" doesn't have any high-bits set * - AND "size" doesn't have any high-bits set * - AND "addr+size" doesn't have any high-bits set * - OR we are in kernel mode. * * __ua_size() is a trick to avoid runtime checking of positive constant * sizes; for those we already know at compile time that the size is ok. */ #define __ua_size(size) \ ((__builtin_constant_p(size) && (signed long) (size) > 0) ? 0 : (size)) /* * 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. * * Returns true (nonzero) if the memory block may be valid, false (zero) * if it is definitely invalid. * * 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. */ static inline int __access_ok(const void __user *p, unsigned long size) { unsigned long addr = (unsigned long)p; unsigned long end = addr + size - !!size; return (__UA_LIMIT & (addr | end | __ua_size(size))) == 0; } #define access_ok(addr, size) \ likely(__access_ok((addr), (size))) /* * 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. * * Returns zero on success, or -EFAULT on error. */ #define put_user(x, ptr) \ ({ \ __typeof__(*(ptr)) __user *__p = (ptr); \ \ might_fault(); \ access_ok(__p, sizeof(*__p)) ? __put_user((x), __p) : -EFAULT; \ }) /* * 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. * * Returns zero on success, or -EFAULT on error. * On error, the variable @x is set to zero. */ #define get_user(x, ptr) \ ({ \ const __typeof__(*(ptr)) __user *__p = (ptr); \ \ might_fault(); \ access_ok(__p, sizeof(*__p)) ? __get_user((x), __p) : \ ((x) = 0, -EFAULT); \ }) /* * __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. * * Returns zero on success, or -EFAULT on error. */ #define __put_user(x, ptr) \ ({ \ __typeof__(*(ptr)) __user *__pu_ptr = (ptr); \ __typeof__(*(ptr)) __pu_val = (x); \ int __pu_err = 0; \ \ __chk_user_ptr(__pu_ptr); \ switch (sizeof(*__pu_ptr)) { \ case 1: \ __put_data_asm(user_sb, __pu_ptr); \ break; \ case 2: \ __put_data_asm(user_sh, __pu_ptr); \ break; \ case 4: \ __put_data_asm(user_sw, __pu_ptr); \ break; \ case 8: \ __PUT_DW(user_sd, __pu_ptr); \ break; \ default: \ BUILD_BUG(); \ } \ \ __pu_err; \ }) /* * __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. * * Returns zero on success, or -EFAULT on error. * On error, the variable @x is set to zero. */ #define __get_user(x, ptr) \ ({ \ const __typeof__(*(ptr)) __user *__gu_ptr = (ptr); \ int __gu_err = 0; \ \ __chk_user_ptr(__gu_ptr); \ switch (sizeof(*__gu_ptr)) { \ case 1: \ __get_data_asm((x), user_lb, __gu_ptr); \ break; \ case 2: \ __get_data_asm((x), user_lh, __gu_ptr); \ break; \ case 4: \ __get_data_asm((x), user_lw, __gu_ptr); \ break; \ case 8: \ __GET_DW((x), user_ld, __gu_ptr); \ break; \ default: \ BUILD_BUG(); \ } \ \ __gu_err; \ }) struct __large_struct { unsigned long buf[100]; }; #define __m(x) (*(struct __large_struct __user *)(x)) #ifdef CONFIG_32BIT #define __GET_DW(val, insn, ptr) __get_data_asm_ll32(val, insn, ptr) #endif #ifdef CONFIG_64BIT #define __GET_DW(val, insn, ptr) __get_data_asm(val, insn, ptr) #endif #define __get_data_asm(val, insn, addr) \ { \ long __gu_tmp; \ \ __asm__ __volatile__( \ "1: "insn("%1", "%3")" \n" \ "2: \n" \ " .insn \n" \ " .section .fixup,\"ax\" \n" \ "3: li %0, %4 \n" \ " move %1, $0 \n" \ " j 2b \n" \ " .previous \n" \ " .section __ex_table,\"a\" \n" \ " "__UA_ADDR "\t1b, 3b \n" \ " .previous \n" \ : "=r" (__gu_err), "=r" (__gu_tmp) \ : "0" (0), "o" (__m(addr)), "i" (-EFAULT)); \ \ (val) = (__typeof__(*(addr))) __gu_tmp; \ } /* * Get a long long 64 using 32 bit registers. */ #define __get_data_asm_ll32(val, insn, addr) \ { \ union { \ unsigned long long l; \ __typeof__(*(addr)) t; \ } __gu_tmp; \ \ __asm__ __volatile__( \ "1: " insn("%1", "(%3)")" \n" \ "2: " insn("%D1", "4(%3)")" \n" \ "3: \n" \ " .insn \n" \ " .section .fixup,\"ax\" \n" \ "4: li %0, %4 \n" \ " move %1, $0 \n" \ " move %D1, $0 \n" \ " j 3b \n" \ " .previous \n" \ " .section __ex_table,\"a\" \n" \ " " __UA_ADDR " 1b, 4b \n" \ " " __UA_ADDR " 2b, 4b \n" \ " .previous \n" \ : "=r" (__gu_err), "=&r" (__gu_tmp.l) \ : "0" (0), "r" (addr), "i" (-EFAULT)); \ \ (val) = __gu_tmp.t; \ } #define HAVE_GET_KERNEL_NOFAULT #define __get_kernel_nofault(dst, src, type, err_label) \ do { \ int __gu_err; \ \ switch (sizeof(type)) { \ case 1: \ __get_data_asm(*(type *)(dst), kernel_lb, \ (__force type *)(src)); \ break; \ case 2: \ __get_data_asm(*(type *)(dst), kernel_lh, \ (__force type *)(src)); \ break; \ case 4: \ __get_data_asm(*(type *)(dst), kernel_lw, \ (__force type *)(src)); \ break; \ case 8: \ __GET_DW(*(type *)(dst), kernel_ld, \ (__force type *)(src)); \ break; \ default: \ BUILD_BUG(); \ break; \ } \ if (unlikely(__gu_err)) \ goto err_label; \ } while (0) /* * Yuck. We need two variants, one for 64bit operation and one * for 32 bit mode and old iron. */ #ifdef CONFIG_32BIT #define __PUT_DW(insn, ptr) __put_data_asm_ll32(insn, ptr) #endif #ifdef CONFIG_64BIT #define __PUT_DW(insn, ptr) __put_data_asm(insn, ptr) #endif #define __put_data_asm(insn, ptr) \ { \ __asm__ __volatile__( \ "1: "insn("%z2", "%3")" # __put_data_asm \n" \ "2: \n" \ " .insn \n" \ " .section .fixup,\"ax\" \n" \ "3: li %0, %4 \n" \ " j 2b \n" \ " .previous \n" \ " .section __ex_table,\"a\" \n" \ " " __UA_ADDR " 1b, 3b \n" \ " .previous \n" \ : "=r" (__pu_err) \ : "0" (0), "Jr" (__pu_val), "o" (__m(ptr)), \ "i" (-EFAULT)); \ } #define __put_data_asm_ll32(insn, ptr) \ { \ __asm__ __volatile__( \ "1: "insn("%2", "(%3)")" # __put_data_asm_ll32 \n" \ "2: "insn("%D2", "4(%3)")" \n" \ "3: \n" \ " .insn \n" \ " .section .fixup,\"ax\" \n" \ "4: li %0, %4 \n" \ " j 3b \n" \ " .previous \n" \ " .section __ex_table,\"a\" \n" \ " " __UA_ADDR " 1b, 4b \n" \ " " __UA_ADDR " 2b, 4b \n" \ " .previous" \ : "=r" (__pu_err) \ : "0" (0), "r" (__pu_val), "r" (ptr), \ "i" (-EFAULT)); \ } #define __put_kernel_nofault(dst, src, type, err_label) \ do { \ type __pu_val; \ int __pu_err = 0; \ \ __pu_val = *(__force type *)(src); \ switch (sizeof(type)) { \ case 1: \ __put_data_asm(kernel_sb, (type *)(dst)); \ break; \ case 2: \ __put_data_asm(kernel_sh, (type *)(dst)); \ break; \ case 4: \ __put_data_asm(kernel_sw, (type *)(dst)) \ break; \ case 8: \ __PUT_DW(kernel_sd, (type *)(dst)); \ break; \ default: \ BUILD_BUG(); \ break; \ } \ if (unlikely(__pu_err)) \ goto err_label; \ } while (0) /* * We're generating jump to subroutines which will be outside the range of * jump instructions */ #ifdef MODULE #define __MODULE_JAL(destination) \ ".set\tnoat\n\t" \ __UA_LA "\t$1, " #destination "\n\t" \ "jalr\t$1\n\t" \ ".set\tat\n\t" #else #define __MODULE_JAL(destination) \ "jal\t" #destination "\n\t" #endif #if defined(CONFIG_CPU_DADDI_WORKAROUNDS) || (defined(CONFIG_EVA) && \ defined(CONFIG_CPU_HAS_PREFETCH)) #define DADDI_SCRATCH "$3" #else #define DADDI_SCRATCH "$0" #endif extern size_t __raw_copy_from_user(void *__to, const void *__from, size_t __n); extern size_t __raw_copy_to_user(void *__to, const void *__from, size_t __n); static inline unsigned long raw_copy_from_user(void *to, const void __user *from, unsigned long n) { register void *__cu_to_r __asm__("$4"); register const void __user *__cu_from_r __asm__("$5"); register long __cu_len_r __asm__("$6"); __cu_to_r = to; __cu_from_r = from; __cu_len_r = n; __asm__ __volatile__( ".set\tnoreorder\n\t" __MODULE_JAL(__raw_copy_from_user) ".set\tnoat\n\t" __UA_ADDU "\t$1, %1, %2\n\t" ".set\tat\n\t" ".set\treorder" : "+r" (__cu_to_r), "+r" (__cu_from_r), "+r" (__cu_len_r) : : "$8", "$9", "$10", "$11", "$12", "$14", "$15", "$24", "$31", DADDI_SCRATCH, "memory"); return __cu_len_r; } static inline unsigned long raw_copy_to_user(void __user *to, const void *from, unsigned long n) { register void __user *__cu_to_r __asm__("$4"); register const void *__cu_from_r __asm__("$5"); register long __cu_len_r __asm__("$6"); __cu_to_r = (to); __cu_from_r = (from); __cu_len_r = (n); __asm__ __volatile__( __MODULE_JAL(__raw_copy_to_user) : "+r" (__cu_to_r), "+r" (__cu_from_r), "+r" (__cu_len_r) : : "$8", "$9", "$10", "$11", "$12", "$14", "$15", "$24", "$31", DADDI_SCRATCH, "memory"); return __cu_len_r; } #define INLINE_COPY_FROM_USER #define INLINE_COPY_TO_USER extern __kernel_size_t __bzero(void __user *addr, __kernel_size_t size); /* * __clear_user: - Zero a block of memory in user space, with less checking. * @to: Destination address, in user space. * @n: Number of bytes to zero. * * Zero a block of memory in user space. Caller must check * the specified block with access_ok() before calling this function. * * Returns number of bytes that could not be cleared. * On success, this will be zero. */ static inline __kernel_size_t __clear_user(void __user *addr, __kernel_size_t size) { __kernel_size_t res; #ifdef CONFIG_CPU_MICROMIPS /* micromips memset / bzero also clobbers t7 & t8 */ #define bzero_clobbers "$4", "$5", "$6", __UA_t0, __UA_t1, "$15", "$24", "$31" #else #define bzero_clobbers "$4", "$5", "$6", __UA_t0, __UA_t1, "$31" #endif /* CONFIG_CPU_MICROMIPS */ might_fault(); __asm__ __volatile__( "move\t$4, %1\n\t" "move\t$5, $0\n\t" "move\t$6, %2\n\t" __MODULE_JAL(__bzero) "move\t%0, $6" : "=r" (res) : "r" (addr), "r" (size) : bzero_clobbers); return res; } #define clear_user(addr,n) \ ({ \ void __user * __cl_addr = (addr); \ unsigned long __cl_size = (n); \ if (__cl_size && access_ok(__cl_addr, __cl_size)) \ __cl_size = __clear_user(__cl_addr, __cl_size); \ __cl_size; \ }) extern long __strncpy_from_user_asm(char *__to, const char __user *__from, long __len); /* * strncpy_from_user: - Copy a NUL terminated string from userspace. * @dst: Destination address, in kernel space. This buffer must be at * least @count bytes long. * @src: Source address, in user space. * @count: Maximum number of bytes to copy, including the trailing NUL. * * Copies a NUL-terminated string from userspace to kernel space. * * On success, returns the length of the string (not including the trailing * NUL). * * If access to userspace fails, returns -EFAULT (some data may have been * copied). * * If @count is smaller than the length of the string, copies @count bytes * and returns @count. */ static inline long strncpy_from_user(char *__to, const char __user *__from, long __len) { long res; if (!access_ok(__from, __len)) return -EFAULT; might_fault(); __asm__ __volatile__( "move\t$4, %1\n\t" "move\t$5, %2\n\t" "move\t$6, %3\n\t" __MODULE_JAL(__strncpy_from_user_asm) "move\t%0, $2" : "=r" (res) : "r" (__to), "r" (__from), "r" (__len) : "$2", "$3", "$4", "$5", "$6", __UA_t0, "$31", "memory"); return res; } extern long __strnlen_user_asm(const char __user *s, long n); /* * strnlen_user: - Get the size of a string in user space. * @str: The string to measure. * * Context: User context only. This function may sleep if pagefaults are * enabled. * * Get the size of a NUL-terminated string in user space. * * Returns the size of the string INCLUDING the terminating NUL. * On exception, returns 0. * If the string is too long, returns a value greater than @n. */ static inline long strnlen_user(const char __user *s, long n) { long res; if (!access_ok(s, 1)) return 0; might_fault(); __asm__ __volatile__( "move\t$4, %1\n\t" "move\t$5, %2\n\t" __MODULE_JAL(__strnlen_user_asm) "move\t%0, $2" : "=r" (res) : "r" (s), "r" (n) : "$2", "$4", "$5", __UA_t0, "$31"); return res; } #endif /* _ASM_UACCESS_H */