forked from Minki/linux
7a3d9b0f3a
Similarly to copy_from_user(), where the range check is to protect against kernel memory corruption, copy_to_user() can benefit from such checking too: Here it protects against kernel information leaks. Signed-off-by: Jan Beulich <jbeulich@suse.com> Cc: <arjan@linux.intel.com> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Andrew Morton <akpm@linux-foundation.org> Cc: Peter Zijlstra <a.p.zijlstra@chello.nl> Link: http://lkml.kernel.org/r/5265059502000078000FC4F6@nat28.tlf.novell.com Signed-off-by: Ingo Molnar <mingo@kernel.org> Cc: Arjan van de Ven <arjan@linux.intel.com>
690 lines
20 KiB
C
690 lines
20 KiB
C
/*
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* User address space access functions.
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* The non inlined parts of asm-i386/uaccess.h are here.
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*
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* Copyright 1997 Andi Kleen <ak@muc.de>
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* Copyright 1997 Linus Torvalds
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*/
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#include <linux/mm.h>
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#include <linux/highmem.h>
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#include <linux/blkdev.h>
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#include <linux/module.h>
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#include <linux/backing-dev.h>
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#include <linux/interrupt.h>
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#include <asm/uaccess.h>
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#include <asm/mmx.h>
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#include <asm/asm.h>
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#ifdef CONFIG_X86_INTEL_USERCOPY
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/*
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* Alignment at which movsl is preferred for bulk memory copies.
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*/
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struct movsl_mask movsl_mask __read_mostly;
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#endif
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static inline int __movsl_is_ok(unsigned long a1, unsigned long a2, unsigned long n)
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{
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#ifdef CONFIG_X86_INTEL_USERCOPY
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if (n >= 64 && ((a1 ^ a2) & movsl_mask.mask))
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return 0;
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#endif
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return 1;
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}
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#define movsl_is_ok(a1, a2, n) \
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__movsl_is_ok((unsigned long)(a1), (unsigned long)(a2), (n))
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/*
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* Zero Userspace
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*/
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#define __do_clear_user(addr,size) \
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do { \
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int __d0; \
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might_fault(); \
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__asm__ __volatile__( \
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ASM_STAC "\n" \
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"0: rep; stosl\n" \
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" movl %2,%0\n" \
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"1: rep; stosb\n" \
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"2: " ASM_CLAC "\n" \
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".section .fixup,\"ax\"\n" \
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"3: lea 0(%2,%0,4),%0\n" \
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" jmp 2b\n" \
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".previous\n" \
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_ASM_EXTABLE(0b,3b) \
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_ASM_EXTABLE(1b,2b) \
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: "=&c"(size), "=&D" (__d0) \
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: "r"(size & 3), "0"(size / 4), "1"(addr), "a"(0)); \
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} while (0)
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/**
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* clear_user: - Zero a block of memory in user space.
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* @to: Destination address, in user space.
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* @n: Number of bytes to zero.
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*
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* Zero a block of memory in user space.
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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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unsigned long
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clear_user(void __user *to, unsigned long n)
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{
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might_fault();
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if (access_ok(VERIFY_WRITE, to, n))
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__do_clear_user(to, n);
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return n;
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}
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EXPORT_SYMBOL(clear_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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* @to: Destination address, in user space.
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* @n: 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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unsigned long
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__clear_user(void __user *to, unsigned long n)
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{
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__do_clear_user(to, n);
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return n;
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}
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EXPORT_SYMBOL(__clear_user);
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#ifdef CONFIG_X86_INTEL_USERCOPY
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static unsigned long
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__copy_user_intel(void __user *to, const void *from, unsigned long size)
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{
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int d0, d1;
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__asm__ __volatile__(
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" .align 2,0x90\n"
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"1: movl 32(%4), %%eax\n"
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" cmpl $67, %0\n"
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" jbe 3f\n"
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"2: movl 64(%4), %%eax\n"
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" .align 2,0x90\n"
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"3: movl 0(%4), %%eax\n"
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"4: movl 4(%4), %%edx\n"
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"5: movl %%eax, 0(%3)\n"
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"6: movl %%edx, 4(%3)\n"
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"7: movl 8(%4), %%eax\n"
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"8: movl 12(%4),%%edx\n"
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"9: movl %%eax, 8(%3)\n"
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"10: movl %%edx, 12(%3)\n"
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"11: movl 16(%4), %%eax\n"
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"12: movl 20(%4), %%edx\n"
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"13: movl %%eax, 16(%3)\n"
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"14: movl %%edx, 20(%3)\n"
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"15: movl 24(%4), %%eax\n"
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"16: movl 28(%4), %%edx\n"
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"17: movl %%eax, 24(%3)\n"
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"18: movl %%edx, 28(%3)\n"
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"19: movl 32(%4), %%eax\n"
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"20: movl 36(%4), %%edx\n"
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"21: movl %%eax, 32(%3)\n"
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"22: movl %%edx, 36(%3)\n"
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"23: movl 40(%4), %%eax\n"
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"24: movl 44(%4), %%edx\n"
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"25: movl %%eax, 40(%3)\n"
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"26: movl %%edx, 44(%3)\n"
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"27: movl 48(%4), %%eax\n"
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"28: movl 52(%4), %%edx\n"
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"29: movl %%eax, 48(%3)\n"
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"30: movl %%edx, 52(%3)\n"
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"31: movl 56(%4), %%eax\n"
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"32: movl 60(%4), %%edx\n"
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"33: movl %%eax, 56(%3)\n"
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"34: movl %%edx, 60(%3)\n"
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" addl $-64, %0\n"
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" addl $64, %4\n"
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" addl $64, %3\n"
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" cmpl $63, %0\n"
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" ja 1b\n"
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"35: movl %0, %%eax\n"
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" shrl $2, %0\n"
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" andl $3, %%eax\n"
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" cld\n"
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"99: rep; movsl\n"
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"36: movl %%eax, %0\n"
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"37: rep; movsb\n"
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"100:\n"
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".section .fixup,\"ax\"\n"
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"101: lea 0(%%eax,%0,4),%0\n"
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" jmp 100b\n"
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".previous\n"
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_ASM_EXTABLE(1b,100b)
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_ASM_EXTABLE(2b,100b)
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_ASM_EXTABLE(3b,100b)
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_ASM_EXTABLE(4b,100b)
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_ASM_EXTABLE(5b,100b)
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_ASM_EXTABLE(6b,100b)
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_ASM_EXTABLE(7b,100b)
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_ASM_EXTABLE(8b,100b)
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_ASM_EXTABLE(9b,100b)
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_ASM_EXTABLE(10b,100b)
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_ASM_EXTABLE(11b,100b)
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_ASM_EXTABLE(12b,100b)
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_ASM_EXTABLE(13b,100b)
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_ASM_EXTABLE(14b,100b)
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_ASM_EXTABLE(15b,100b)
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_ASM_EXTABLE(16b,100b)
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_ASM_EXTABLE(17b,100b)
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_ASM_EXTABLE(18b,100b)
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_ASM_EXTABLE(19b,100b)
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_ASM_EXTABLE(20b,100b)
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_ASM_EXTABLE(21b,100b)
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_ASM_EXTABLE(22b,100b)
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_ASM_EXTABLE(23b,100b)
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_ASM_EXTABLE(24b,100b)
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_ASM_EXTABLE(25b,100b)
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_ASM_EXTABLE(26b,100b)
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_ASM_EXTABLE(27b,100b)
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_ASM_EXTABLE(28b,100b)
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_ASM_EXTABLE(29b,100b)
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_ASM_EXTABLE(30b,100b)
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_ASM_EXTABLE(31b,100b)
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_ASM_EXTABLE(32b,100b)
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_ASM_EXTABLE(33b,100b)
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_ASM_EXTABLE(34b,100b)
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_ASM_EXTABLE(35b,100b)
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_ASM_EXTABLE(36b,100b)
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_ASM_EXTABLE(37b,100b)
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_ASM_EXTABLE(99b,101b)
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: "=&c"(size), "=&D" (d0), "=&S" (d1)
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: "1"(to), "2"(from), "0"(size)
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: "eax", "edx", "memory");
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return size;
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}
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static unsigned long
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__copy_user_zeroing_intel(void *to, const void __user *from, unsigned long size)
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{
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int d0, d1;
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__asm__ __volatile__(
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" .align 2,0x90\n"
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"0: movl 32(%4), %%eax\n"
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" cmpl $67, %0\n"
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" jbe 2f\n"
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"1: movl 64(%4), %%eax\n"
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" .align 2,0x90\n"
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"2: movl 0(%4), %%eax\n"
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"21: movl 4(%4), %%edx\n"
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" movl %%eax, 0(%3)\n"
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" movl %%edx, 4(%3)\n"
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"3: movl 8(%4), %%eax\n"
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"31: movl 12(%4),%%edx\n"
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" movl %%eax, 8(%3)\n"
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" movl %%edx, 12(%3)\n"
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"4: movl 16(%4), %%eax\n"
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"41: movl 20(%4), %%edx\n"
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" movl %%eax, 16(%3)\n"
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" movl %%edx, 20(%3)\n"
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"10: movl 24(%4), %%eax\n"
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"51: movl 28(%4), %%edx\n"
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" movl %%eax, 24(%3)\n"
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" movl %%edx, 28(%3)\n"
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"11: movl 32(%4), %%eax\n"
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"61: movl 36(%4), %%edx\n"
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" movl %%eax, 32(%3)\n"
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" movl %%edx, 36(%3)\n"
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"12: movl 40(%4), %%eax\n"
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"71: movl 44(%4), %%edx\n"
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" movl %%eax, 40(%3)\n"
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" movl %%edx, 44(%3)\n"
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"13: movl 48(%4), %%eax\n"
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"81: movl 52(%4), %%edx\n"
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" movl %%eax, 48(%3)\n"
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" movl %%edx, 52(%3)\n"
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"14: movl 56(%4), %%eax\n"
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"91: movl 60(%4), %%edx\n"
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" movl %%eax, 56(%3)\n"
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" movl %%edx, 60(%3)\n"
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" addl $-64, %0\n"
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" addl $64, %4\n"
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" addl $64, %3\n"
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" cmpl $63, %0\n"
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" ja 0b\n"
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"5: movl %0, %%eax\n"
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" shrl $2, %0\n"
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" andl $3, %%eax\n"
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" cld\n"
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"6: rep; movsl\n"
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" movl %%eax,%0\n"
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"7: rep; movsb\n"
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"8:\n"
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".section .fixup,\"ax\"\n"
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"9: lea 0(%%eax,%0,4),%0\n"
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"16: pushl %0\n"
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" pushl %%eax\n"
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" xorl %%eax,%%eax\n"
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" rep; stosb\n"
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" popl %%eax\n"
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" popl %0\n"
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" jmp 8b\n"
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".previous\n"
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_ASM_EXTABLE(0b,16b)
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_ASM_EXTABLE(1b,16b)
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_ASM_EXTABLE(2b,16b)
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_ASM_EXTABLE(21b,16b)
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_ASM_EXTABLE(3b,16b)
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_ASM_EXTABLE(31b,16b)
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_ASM_EXTABLE(4b,16b)
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_ASM_EXTABLE(41b,16b)
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_ASM_EXTABLE(10b,16b)
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_ASM_EXTABLE(51b,16b)
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_ASM_EXTABLE(11b,16b)
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_ASM_EXTABLE(61b,16b)
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_ASM_EXTABLE(12b,16b)
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_ASM_EXTABLE(71b,16b)
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_ASM_EXTABLE(13b,16b)
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_ASM_EXTABLE(81b,16b)
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_ASM_EXTABLE(14b,16b)
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_ASM_EXTABLE(91b,16b)
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_ASM_EXTABLE(6b,9b)
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_ASM_EXTABLE(7b,16b)
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: "=&c"(size), "=&D" (d0), "=&S" (d1)
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: "1"(to), "2"(from), "0"(size)
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: "eax", "edx", "memory");
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return size;
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}
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/*
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* Non Temporal Hint version of __copy_user_zeroing_intel. It is cache aware.
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* hyoshiok@miraclelinux.com
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*/
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static unsigned long __copy_user_zeroing_intel_nocache(void *to,
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const void __user *from, unsigned long size)
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{
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int d0, d1;
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__asm__ __volatile__(
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" .align 2,0x90\n"
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"0: movl 32(%4), %%eax\n"
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" cmpl $67, %0\n"
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" jbe 2f\n"
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"1: movl 64(%4), %%eax\n"
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" .align 2,0x90\n"
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"2: movl 0(%4), %%eax\n"
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"21: movl 4(%4), %%edx\n"
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" movnti %%eax, 0(%3)\n"
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" movnti %%edx, 4(%3)\n"
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"3: movl 8(%4), %%eax\n"
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"31: movl 12(%4),%%edx\n"
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" movnti %%eax, 8(%3)\n"
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" movnti %%edx, 12(%3)\n"
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"4: movl 16(%4), %%eax\n"
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"41: movl 20(%4), %%edx\n"
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" movnti %%eax, 16(%3)\n"
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" movnti %%edx, 20(%3)\n"
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"10: movl 24(%4), %%eax\n"
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"51: movl 28(%4), %%edx\n"
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" movnti %%eax, 24(%3)\n"
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" movnti %%edx, 28(%3)\n"
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"11: movl 32(%4), %%eax\n"
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"61: movl 36(%4), %%edx\n"
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" movnti %%eax, 32(%3)\n"
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" movnti %%edx, 36(%3)\n"
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"12: movl 40(%4), %%eax\n"
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"71: movl 44(%4), %%edx\n"
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" movnti %%eax, 40(%3)\n"
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" movnti %%edx, 44(%3)\n"
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"13: movl 48(%4), %%eax\n"
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"81: movl 52(%4), %%edx\n"
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" movnti %%eax, 48(%3)\n"
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" movnti %%edx, 52(%3)\n"
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"14: movl 56(%4), %%eax\n"
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"91: movl 60(%4), %%edx\n"
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" movnti %%eax, 56(%3)\n"
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" movnti %%edx, 60(%3)\n"
|
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" addl $-64, %0\n"
|
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" addl $64, %4\n"
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" addl $64, %3\n"
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" cmpl $63, %0\n"
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" ja 0b\n"
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" sfence \n"
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"5: movl %0, %%eax\n"
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" shrl $2, %0\n"
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" andl $3, %%eax\n"
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" cld\n"
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"6: rep; movsl\n"
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" movl %%eax,%0\n"
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"7: rep; movsb\n"
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"8:\n"
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".section .fixup,\"ax\"\n"
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"9: lea 0(%%eax,%0,4),%0\n"
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"16: pushl %0\n"
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" pushl %%eax\n"
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" xorl %%eax,%%eax\n"
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" rep; stosb\n"
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" popl %%eax\n"
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" popl %0\n"
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" jmp 8b\n"
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".previous\n"
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_ASM_EXTABLE(0b,16b)
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_ASM_EXTABLE(1b,16b)
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_ASM_EXTABLE(2b,16b)
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_ASM_EXTABLE(21b,16b)
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_ASM_EXTABLE(3b,16b)
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_ASM_EXTABLE(31b,16b)
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_ASM_EXTABLE(4b,16b)
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_ASM_EXTABLE(41b,16b)
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_ASM_EXTABLE(10b,16b)
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_ASM_EXTABLE(51b,16b)
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_ASM_EXTABLE(11b,16b)
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|
_ASM_EXTABLE(61b,16b)
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_ASM_EXTABLE(12b,16b)
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_ASM_EXTABLE(71b,16b)
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|
_ASM_EXTABLE(13b,16b)
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_ASM_EXTABLE(81b,16b)
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_ASM_EXTABLE(14b,16b)
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_ASM_EXTABLE(91b,16b)
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|
_ASM_EXTABLE(6b,9b)
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|
_ASM_EXTABLE(7b,16b)
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: "=&c"(size), "=&D" (d0), "=&S" (d1)
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: "1"(to), "2"(from), "0"(size)
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: "eax", "edx", "memory");
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return size;
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}
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|
|
static unsigned long __copy_user_intel_nocache(void *to,
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const void __user *from, unsigned long size)
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{
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int d0, d1;
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|
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__asm__ __volatile__(
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|
" .align 2,0x90\n"
|
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"0: movl 32(%4), %%eax\n"
|
|
" cmpl $67, %0\n"
|
|
" jbe 2f\n"
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"1: movl 64(%4), %%eax\n"
|
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" .align 2,0x90\n"
|
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"2: movl 0(%4), %%eax\n"
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"21: movl 4(%4), %%edx\n"
|
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" movnti %%eax, 0(%3)\n"
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" movnti %%edx, 4(%3)\n"
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"3: movl 8(%4), %%eax\n"
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"31: movl 12(%4),%%edx\n"
|
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" movnti %%eax, 8(%3)\n"
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" movnti %%edx, 12(%3)\n"
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"4: movl 16(%4), %%eax\n"
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"41: movl 20(%4), %%edx\n"
|
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" movnti %%eax, 16(%3)\n"
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" movnti %%edx, 20(%3)\n"
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"10: movl 24(%4), %%eax\n"
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"51: movl 28(%4), %%edx\n"
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" movnti %%eax, 24(%3)\n"
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" movnti %%edx, 28(%3)\n"
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|
"11: movl 32(%4), %%eax\n"
|
|
"61: movl 36(%4), %%edx\n"
|
|
" movnti %%eax, 32(%3)\n"
|
|
" movnti %%edx, 36(%3)\n"
|
|
"12: movl 40(%4), %%eax\n"
|
|
"71: movl 44(%4), %%edx\n"
|
|
" movnti %%eax, 40(%3)\n"
|
|
" movnti %%edx, 44(%3)\n"
|
|
"13: movl 48(%4), %%eax\n"
|
|
"81: movl 52(%4), %%edx\n"
|
|
" movnti %%eax, 48(%3)\n"
|
|
" movnti %%edx, 52(%3)\n"
|
|
"14: movl 56(%4), %%eax\n"
|
|
"91: movl 60(%4), %%edx\n"
|
|
" movnti %%eax, 56(%3)\n"
|
|
" movnti %%edx, 60(%3)\n"
|
|
" addl $-64, %0\n"
|
|
" addl $64, %4\n"
|
|
" addl $64, %3\n"
|
|
" cmpl $63, %0\n"
|
|
" ja 0b\n"
|
|
" sfence \n"
|
|
"5: movl %0, %%eax\n"
|
|
" shrl $2, %0\n"
|
|
" andl $3, %%eax\n"
|
|
" cld\n"
|
|
"6: rep; movsl\n"
|
|
" movl %%eax,%0\n"
|
|
"7: rep; movsb\n"
|
|
"8:\n"
|
|
".section .fixup,\"ax\"\n"
|
|
"9: lea 0(%%eax,%0,4),%0\n"
|
|
"16: jmp 8b\n"
|
|
".previous\n"
|
|
_ASM_EXTABLE(0b,16b)
|
|
_ASM_EXTABLE(1b,16b)
|
|
_ASM_EXTABLE(2b,16b)
|
|
_ASM_EXTABLE(21b,16b)
|
|
_ASM_EXTABLE(3b,16b)
|
|
_ASM_EXTABLE(31b,16b)
|
|
_ASM_EXTABLE(4b,16b)
|
|
_ASM_EXTABLE(41b,16b)
|
|
_ASM_EXTABLE(10b,16b)
|
|
_ASM_EXTABLE(51b,16b)
|
|
_ASM_EXTABLE(11b,16b)
|
|
_ASM_EXTABLE(61b,16b)
|
|
_ASM_EXTABLE(12b,16b)
|
|
_ASM_EXTABLE(71b,16b)
|
|
_ASM_EXTABLE(13b,16b)
|
|
_ASM_EXTABLE(81b,16b)
|
|
_ASM_EXTABLE(14b,16b)
|
|
_ASM_EXTABLE(91b,16b)
|
|
_ASM_EXTABLE(6b,9b)
|
|
_ASM_EXTABLE(7b,16b)
|
|
: "=&c"(size), "=&D" (d0), "=&S" (d1)
|
|
: "1"(to), "2"(from), "0"(size)
|
|
: "eax", "edx", "memory");
|
|
return size;
|
|
}
|
|
|
|
#else
|
|
|
|
/*
|
|
* Leave these declared but undefined. They should not be any references to
|
|
* them
|
|
*/
|
|
unsigned long __copy_user_zeroing_intel(void *to, const void __user *from,
|
|
unsigned long size);
|
|
unsigned long __copy_user_intel(void __user *to, const void *from,
|
|
unsigned long size);
|
|
unsigned long __copy_user_zeroing_intel_nocache(void *to,
|
|
const void __user *from, unsigned long size);
|
|
#endif /* CONFIG_X86_INTEL_USERCOPY */
|
|
|
|
/* Generic arbitrary sized copy. */
|
|
#define __copy_user(to, from, size) \
|
|
do { \
|
|
int __d0, __d1, __d2; \
|
|
__asm__ __volatile__( \
|
|
" cmp $7,%0\n" \
|
|
" jbe 1f\n" \
|
|
" movl %1,%0\n" \
|
|
" negl %0\n" \
|
|
" andl $7,%0\n" \
|
|
" subl %0,%3\n" \
|
|
"4: rep; movsb\n" \
|
|
" movl %3,%0\n" \
|
|
" shrl $2,%0\n" \
|
|
" andl $3,%3\n" \
|
|
" .align 2,0x90\n" \
|
|
"0: rep; movsl\n" \
|
|
" movl %3,%0\n" \
|
|
"1: rep; movsb\n" \
|
|
"2:\n" \
|
|
".section .fixup,\"ax\"\n" \
|
|
"5: addl %3,%0\n" \
|
|
" jmp 2b\n" \
|
|
"3: lea 0(%3,%0,4),%0\n" \
|
|
" jmp 2b\n" \
|
|
".previous\n" \
|
|
_ASM_EXTABLE(4b,5b) \
|
|
_ASM_EXTABLE(0b,3b) \
|
|
_ASM_EXTABLE(1b,2b) \
|
|
: "=&c"(size), "=&D" (__d0), "=&S" (__d1), "=r"(__d2) \
|
|
: "3"(size), "0"(size), "1"(to), "2"(from) \
|
|
: "memory"); \
|
|
} while (0)
|
|
|
|
#define __copy_user_zeroing(to, from, size) \
|
|
do { \
|
|
int __d0, __d1, __d2; \
|
|
__asm__ __volatile__( \
|
|
" cmp $7,%0\n" \
|
|
" jbe 1f\n" \
|
|
" movl %1,%0\n" \
|
|
" negl %0\n" \
|
|
" andl $7,%0\n" \
|
|
" subl %0,%3\n" \
|
|
"4: rep; movsb\n" \
|
|
" movl %3,%0\n" \
|
|
" shrl $2,%0\n" \
|
|
" andl $3,%3\n" \
|
|
" .align 2,0x90\n" \
|
|
"0: rep; movsl\n" \
|
|
" movl %3,%0\n" \
|
|
"1: rep; movsb\n" \
|
|
"2:\n" \
|
|
".section .fixup,\"ax\"\n" \
|
|
"5: addl %3,%0\n" \
|
|
" jmp 6f\n" \
|
|
"3: lea 0(%3,%0,4),%0\n" \
|
|
"6: pushl %0\n" \
|
|
" pushl %%eax\n" \
|
|
" xorl %%eax,%%eax\n" \
|
|
" rep; stosb\n" \
|
|
" popl %%eax\n" \
|
|
" popl %0\n" \
|
|
" jmp 2b\n" \
|
|
".previous\n" \
|
|
_ASM_EXTABLE(4b,5b) \
|
|
_ASM_EXTABLE(0b,3b) \
|
|
_ASM_EXTABLE(1b,6b) \
|
|
: "=&c"(size), "=&D" (__d0), "=&S" (__d1), "=r"(__d2) \
|
|
: "3"(size), "0"(size), "1"(to), "2"(from) \
|
|
: "memory"); \
|
|
} while (0)
|
|
|
|
unsigned long __copy_to_user_ll(void __user *to, const void *from,
|
|
unsigned long n)
|
|
{
|
|
stac();
|
|
if (movsl_is_ok(to, from, n))
|
|
__copy_user(to, from, n);
|
|
else
|
|
n = __copy_user_intel(to, from, n);
|
|
clac();
|
|
return n;
|
|
}
|
|
EXPORT_SYMBOL(__copy_to_user_ll);
|
|
|
|
unsigned long __copy_from_user_ll(void *to, const void __user *from,
|
|
unsigned long n)
|
|
{
|
|
stac();
|
|
if (movsl_is_ok(to, from, n))
|
|
__copy_user_zeroing(to, from, n);
|
|
else
|
|
n = __copy_user_zeroing_intel(to, from, n);
|
|
clac();
|
|
return n;
|
|
}
|
|
EXPORT_SYMBOL(__copy_from_user_ll);
|
|
|
|
unsigned long __copy_from_user_ll_nozero(void *to, const void __user *from,
|
|
unsigned long n)
|
|
{
|
|
stac();
|
|
if (movsl_is_ok(to, from, n))
|
|
__copy_user(to, from, n);
|
|
else
|
|
n = __copy_user_intel((void __user *)to,
|
|
(const void *)from, n);
|
|
clac();
|
|
return n;
|
|
}
|
|
EXPORT_SYMBOL(__copy_from_user_ll_nozero);
|
|
|
|
unsigned long __copy_from_user_ll_nocache(void *to, const void __user *from,
|
|
unsigned long n)
|
|
{
|
|
stac();
|
|
#ifdef CONFIG_X86_INTEL_USERCOPY
|
|
if (n > 64 && cpu_has_xmm2)
|
|
n = __copy_user_zeroing_intel_nocache(to, from, n);
|
|
else
|
|
__copy_user_zeroing(to, from, n);
|
|
#else
|
|
__copy_user_zeroing(to, from, n);
|
|
#endif
|
|
clac();
|
|
return n;
|
|
}
|
|
EXPORT_SYMBOL(__copy_from_user_ll_nocache);
|
|
|
|
unsigned long __copy_from_user_ll_nocache_nozero(void *to, const void __user *from,
|
|
unsigned long n)
|
|
{
|
|
stac();
|
|
#ifdef CONFIG_X86_INTEL_USERCOPY
|
|
if (n > 64 && cpu_has_xmm2)
|
|
n = __copy_user_intel_nocache(to, from, n);
|
|
else
|
|
__copy_user(to, from, n);
|
|
#else
|
|
__copy_user(to, from, n);
|
|
#endif
|
|
clac();
|
|
return n;
|
|
}
|
|
EXPORT_SYMBOL(__copy_from_user_ll_nocache_nozero);
|
|
|
|
/**
|
|
* copy_to_user: - Copy a block of data into user space.
|
|
* @to: Destination address, in user space.
|
|
* @from: Source address, in kernel space.
|
|
* @n: Number of bytes to copy.
|
|
*
|
|
* Context: User context only. This function may sleep.
|
|
*
|
|
* Copy data from kernel space to user space.
|
|
*
|
|
* Returns number of bytes that could not be copied.
|
|
* On success, this will be zero.
|
|
*/
|
|
unsigned long _copy_to_user(void __user *to, const void *from, unsigned n)
|
|
{
|
|
if (access_ok(VERIFY_WRITE, to, n))
|
|
n = __copy_to_user(to, from, n);
|
|
return n;
|
|
}
|
|
EXPORT_SYMBOL(_copy_to_user);
|
|
|
|
/**
|
|
* copy_from_user: - Copy a block of data from user space.
|
|
* @to: Destination address, in kernel space.
|
|
* @from: Source address, in user space.
|
|
* @n: Number of bytes to copy.
|
|
*
|
|
* Context: User context only. This function may sleep.
|
|
*
|
|
* Copy data from user space to kernel space.
|
|
*
|
|
* Returns number of bytes that could not be copied.
|
|
* On success, this will be zero.
|
|
*
|
|
* If some data could not be copied, this function will pad the copied
|
|
* data to the requested size using zero bytes.
|
|
*/
|
|
unsigned long _copy_from_user(void *to, const void __user *from, unsigned n)
|
|
{
|
|
if (access_ok(VERIFY_READ, from, n))
|
|
n = __copy_from_user(to, from, n);
|
|
else
|
|
memset(to, 0, n);
|
|
return n;
|
|
}
|
|
EXPORT_SYMBOL(_copy_from_user);
|