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f733f119e9
Let's start to kill la.abs in preparation for the subsequent support of the PIE kernel. BTW, Re-tab the indention in arch/loongarch/kernel/entry.S for alignment. Signed-off-by: Xi Ruoyao <xry111@xry111.site> Signed-off-by: Huacai Chen <chenhuacai@loongson.cn>
257 lines
7.5 KiB
C
257 lines
7.5 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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/*
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* Copyright (C) 2020-2022 Loongson Technology Corporation Limited
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*
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* Derived from MIPS:
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* Copyright (C) 1996, 1997, 1998, 1999, 2000, 03, 04 by Ralf Baechle
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* Copyright (C) 1999, 2000 Silicon Graphics, Inc.
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* Copyright (C) 2007 Maciej W. Rozycki
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* Copyright (C) 2014, Imagination Technologies Ltd.
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*/
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#ifndef _ASM_UACCESS_H
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#define _ASM_UACCESS_H
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#include <linux/kernel.h>
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#include <linux/string.h>
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#include <linux/extable.h>
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#include <asm/pgtable.h>
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#include <asm/extable.h>
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#include <asm/asm-extable.h>
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#include <asm-generic/access_ok.h>
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extern u64 __ua_limit;
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#define __UA_ADDR ".dword"
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#define __UA_LIMIT __ua_limit
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/*
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* get_user: - Get a simple variable from user space.
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* @x: Variable to store result.
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* @ptr: Source address, in user space.
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*
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* Context: User context only. This function may sleep if pagefaults are
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* enabled.
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*
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* This macro copies a single simple variable from user space to kernel
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* space. It supports simple types like char and int, but not larger
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* data types like structures or arrays.
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*
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* @ptr must have pointer-to-simple-variable type, and the result of
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* dereferencing @ptr must be assignable to @x without a cast.
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*
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* Returns zero on success, or -EFAULT on error.
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* On error, the variable @x is set to zero.
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*/
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#define get_user(x, ptr) \
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({ \
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const __typeof__(*(ptr)) __user *__p = (ptr); \
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\
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might_fault(); \
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access_ok(__p, sizeof(*__p)) ? __get_user((x), __p) : \
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((x) = 0, -EFAULT); \
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})
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/*
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* put_user: - Write a simple value into user space.
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* @x: Value to copy to user space.
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* @ptr: Destination address, in user space.
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*
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* Context: User context only. This function may sleep if pagefaults are
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* enabled.
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*
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* This macro copies a single simple value from kernel space to user
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* space. It supports simple types like char and int, but not larger
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* data types like structures or arrays.
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*
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* @ptr must have pointer-to-simple-variable type, and @x must be assignable
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* to the result of dereferencing @ptr.
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*
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* Returns zero on success, or -EFAULT on error.
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*/
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#define put_user(x, ptr) \
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({ \
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__typeof__(*(ptr)) __user *__p = (ptr); \
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\
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might_fault(); \
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access_ok(__p, sizeof(*__p)) ? __put_user((x), __p) : -EFAULT; \
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})
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/*
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* __get_user: - Get a simple variable from user space, with less checking.
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* @x: Variable to store result.
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* @ptr: Source address, in user space.
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*
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* Context: User context only. This function may sleep if pagefaults are
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* enabled.
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*
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* This macro copies a single simple variable from user space to kernel
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* space. It supports simple types like char and int, but not larger
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* data types like structures or arrays.
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*
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* @ptr must have pointer-to-simple-variable type, and the result of
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* dereferencing @ptr must be assignable to @x without a cast.
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*
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* Caller must check the pointer with access_ok() before calling this
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* function.
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*
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* Returns zero on success, or -EFAULT on error.
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* On error, the variable @x is set to zero.
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*/
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#define __get_user(x, ptr) \
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({ \
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int __gu_err = 0; \
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\
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__chk_user_ptr(ptr); \
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__get_user_common((x), sizeof(*(ptr)), ptr); \
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__gu_err; \
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})
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/*
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* __put_user: - Write a simple value into user space, with less checking.
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* @x: Value to copy to user space.
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* @ptr: Destination address, in user space.
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*
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* Context: User context only. This function may sleep if pagefaults are
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* enabled.
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*
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* This macro copies a single simple value from kernel space to user
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* space. It supports simple types like char and int, but not larger
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* data types like structures or arrays.
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*
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* @ptr must have pointer-to-simple-variable type, and @x must be assignable
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* to the result of dereferencing @ptr.
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*
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* Caller must check the pointer with access_ok() before calling this
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* function.
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*
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* Returns zero on success, or -EFAULT on error.
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*/
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#define __put_user(x, ptr) \
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({ \
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int __pu_err = 0; \
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__typeof__(*(ptr)) __pu_val; \
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\
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__pu_val = (x); \
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__chk_user_ptr(ptr); \
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__put_user_common(ptr, sizeof(*(ptr))); \
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__pu_err; \
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})
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struct __large_struct { unsigned long buf[100]; };
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#define __m(x) (*(struct __large_struct __user *)(x))
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#define __get_user_common(val, size, ptr) \
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do { \
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switch (size) { \
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case 1: __get_data_asm(val, "ld.b", ptr); break; \
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case 2: __get_data_asm(val, "ld.h", ptr); break; \
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case 4: __get_data_asm(val, "ld.w", ptr); break; \
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case 8: __get_data_asm(val, "ld.d", ptr); break; \
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default: BUILD_BUG(); break; \
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} \
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} while (0)
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#define __get_kernel_common(val, size, ptr) __get_user_common(val, size, ptr)
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#define __get_data_asm(val, insn, ptr) \
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{ \
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long __gu_tmp; \
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\
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__asm__ __volatile__( \
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"1: " insn " %1, %2 \n" \
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"2: \n" \
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_ASM_EXTABLE_UACCESS_ERR_ZERO(1b, 2b, %0, %1) \
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: "+r" (__gu_err), "=r" (__gu_tmp) \
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: "m" (__m(ptr))); \
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\
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(val) = (__typeof__(*(ptr))) __gu_tmp; \
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}
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#define __put_user_common(ptr, size) \
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do { \
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switch (size) { \
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case 1: __put_data_asm("st.b", ptr); break; \
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case 2: __put_data_asm("st.h", ptr); break; \
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case 4: __put_data_asm("st.w", ptr); break; \
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case 8: __put_data_asm("st.d", ptr); break; \
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default: BUILD_BUG(); break; \
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} \
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} while (0)
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#define __put_kernel_common(ptr, size) __put_user_common(ptr, size)
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#define __put_data_asm(insn, ptr) \
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{ \
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__asm__ __volatile__( \
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"1: " insn " %z2, %1 # __put_user_asm\n" \
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"2: \n" \
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_ASM_EXTABLE_UACCESS_ERR(1b, 2b, %0) \
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: "+r" (__pu_err), "=m" (__m(ptr)) \
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: "Jr" (__pu_val)); \
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}
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#define __get_kernel_nofault(dst, src, type, err_label) \
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do { \
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int __gu_err = 0; \
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\
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__get_kernel_common(*((type *)(dst)), sizeof(type), \
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(__force type *)(src)); \
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if (unlikely(__gu_err)) \
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goto err_label; \
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} while (0)
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#define __put_kernel_nofault(dst, src, type, err_label) \
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do { \
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type __pu_val; \
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int __pu_err = 0; \
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\
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__pu_val = *(__force type *)(src); \
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__put_kernel_common(((type *)(dst)), sizeof(type)); \
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if (unlikely(__pu_err)) \
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goto err_label; \
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} while (0)
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extern unsigned long __copy_user(void *to, const void *from, __kernel_size_t n);
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static inline unsigned long __must_check
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raw_copy_from_user(void *to, const void __user *from, unsigned long n)
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{
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return __copy_user(to, (__force const void *)from, n);
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}
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static inline unsigned long __must_check
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raw_copy_to_user(void __user *to, const void *from, unsigned long n)
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{
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return __copy_user((__force void *)to, from, n);
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}
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#define INLINE_COPY_FROM_USER
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#define INLINE_COPY_TO_USER
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/*
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* __clear_user: - Zero a block of memory in user space, with less checking.
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* @addr: Destination address, in user space.
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* @size: Number of bytes to zero.
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*
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* Zero a block of memory in user space. Caller must check
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* the specified block with access_ok() before calling this function.
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*
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* Returns number of bytes that could not be cleared.
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* On success, this will be zero.
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*/
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extern unsigned long __clear_user(void __user *addr, __kernel_size_t size);
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#define clear_user(addr, n) \
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({ \
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void __user *__cl_addr = (addr); \
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unsigned long __cl_size = (n); \
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if (__cl_size && access_ok(__cl_addr, __cl_size)) \
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__cl_size = __clear_user(__cl_addr, __cl_size); \
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__cl_size; \
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})
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extern long strncpy_from_user(char *to, const char __user *from, long n);
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extern long strnlen_user(const char __user *str, long n);
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#endif /* _ASM_UACCESS_H */
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