提交 fdf42896 编写于 作者: M Ma, Ling 提交者: H. Peter Anvin

x86, mem: Don't implement forward memmove() as memcpy()

memmove() allow source and destination address to be overlap, but
there is no such limitation for memcpy().  Therefore, explicitly
implement memmove() in both the forwards and backward directions, to
give us the ability to optimize memcpy().
Signed-off-by: NMa Ling <ling.ma@intel.com>
LKML-Reference: <C10D3FB0CD45994C8A51FEC1227CE22F0E483AD86A@shsmsx502.ccr.corp.intel.com>
Signed-off-by: NH. Peter Anvin <hpa@linux.intel.com>
上级 76be97c1
......@@ -25,19 +25,35 @@ void *memmove(void *dest, const void *src, size_t n)
int d0, d1, d2;
if (dest < src) {
memcpy(dest, src, n);
if ((dest + n) < src)
return memcpy(dest, src, n);
else
__asm__ __volatile__(
"rep\n\t"
"movsb\n\t"
: "=&c" (d0), "=&S" (d1), "=&D" (d2)
:"0" (n),
"1" (src),
"2" (dest)
:"memory");
} else {
__asm__ __volatile__(
"std\n\t"
"rep\n\t"
"movsb\n\t"
"cld"
: "=&c" (d0), "=&S" (d1), "=&D" (d2)
:"0" (n),
"1" (n-1+src),
"2" (n-1+dest)
:"memory");
if((src + count) < dest)
return memcpy(dest, src, count);
else
__asm__ __volatile__(
"std\n\t"
"rep\n\t"
"movsb\n\t"
"cld"
: "=&c" (d0), "=&S" (d1), "=&D" (d2)
:"0" (n),
"1" (n-1+src),
"2" (n-1+dest)
:"memory");
}
return dest;
}
EXPORT_SYMBOL(memmove);
......@@ -8,13 +8,49 @@
#undef memmove
void *memmove(void *dest, const void *src, size_t count)
{
unsigned long d0, d1, d2, d3;
if (dest < src) {
return memcpy(dest, src, count);
if ((dest + count) < src)
return memcpy(dest, src, count);
else
__asm__ __volatile__(
"movq %0, %3\n\t"
"shr $3, %0\n\t"
"andq $7, %3\n\t"
"rep\n\t"
"movsq\n\t"
"movq %3, %0\n\t"
"rep\n\t"
"movsb"
: "=&c" (d0), "=&S" (d1), "=&D" (d2), "=r" (d3)
:"0" (count),
"1" (src),
"2" (dest)
:"memory");
} else {
char *p = dest + count;
const char *s = src + count;
while (count--)
*--p = *--s;
if((src + count) < dest)
return memcpy(dest, src, count);
else
__asm__ __volatile__(
"movq %0, %3\n\t"
"lea -8(%1, %0), %1\n\t"
"lea -8(%2, %0), %2\n\t"
"shr $3, %0\n\t"
"andq $7, %3\n\t"
"std\n\t"
"rep\n\t"
"movsq\n\t"
"lea 7(%1), %1\n\t"
"lea 7(%2), %2\n\t"
"movq %3, %0\n\t"
"rep\n\t"
"movsb\n\t"
"cld"
: "=&c" (d0), "=&S" (d1), "=&D" (d2), "=r" (d3)
:"0" (count),
"1" (src),
"2" (dest)
:"memory");
}
return dest;
}
......
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