21.2 乘法,除法
#include <stdint.h>
uint64_t f3 (uint64_t a, uint64_t b)
{
return a*b;
};
uint64_t f4 (uint64_t a, uint64_t b)
{
return a/b;
};
uint64_t f5 (uint64_t a, uint64_t b)
{
return a % b;
};
代码 21.3: MSVC 2012 /Ox /Ob1
_a$ = 8 ; size = 8
_b$ = 16 ; size = 8
_f3 PROC
push DWORD PTR _b$[esp]
push DWORD PTR _b$[esp]
push DWORD PTR _a$[esp+8]
push DWORD PTR _a$[esp+8]
call __allmul ; long long multiplication
ret 0
_f3 ENDP
_a$ = 8 ; size = 8
_b$ = 16 ; size = 8
_f4 PROC
push DWORD PTR _b$[esp]
push DWORD PTR _b$[esp]
push DWORD PTR _a$[esp+8]
push DWORD PTR _a$[esp+8]
call __aulldiv ; unsigned long long division
ret 0
_f4 ENDP
_a$ = 8 ; size = 8
_b$ = 16 ; size = 8
_f5 PROC
push DWORD PTR _b$[esp]
push DWORD PTR _b$[esp]
push DWORD PTR _a$[esp+8]
push DWORD PTR _a$[esp+8]
call __aullrem ; unsigned long long remainder
ret 0
_f5 ENDP
乘法和除法是更为复杂的操作,一般来说,编译器会嵌入库函数的calls来使用。
部分函数的意义:可参见附录E。
Listing 21.4: GCC 4.8.1 -O3 -fno-inline
_f3:
push ebx
mov edx, DWORD PTR [esp+8]
mov eax, DWORD PTR [esp+16]
mov ebx, DWORD PTR [esp+12]
mov ecx, DWORD PTR [esp+20]
imul ebx, eax
imul ecx, edx
mul edx
add ecx, ebx
add edx, ecx
pop ebx
ret
_f4:
sub esp, 28
mov eax, DWORD PTR [esp+40]
mov edx, DWORD PTR [esp+44]
mov DWORD PTR [esp+8], eax
mov eax, DWORD PTR [esp+32]
mov DWORD PTR [esp+12], edx
mov edx, DWORD PTR [esp+36]
mov DWORD PTR [esp], eax
mov DWORD PTR [esp+4], edx
call ___udivdi3 ; unsigned division
add esp, 28
ret
_f5:
sub esp, 28
mov eax, DWORD PTR [esp+40]
mov edx, DWORD PTR [esp+44]
mov DWORD PTR [esp+8], eax
mov eax, DWORD PTR [esp+32]
mov DWORD PTR [esp+12], edx
mov edx, DWORD PTR [esp+36]
mov DWORD PTR [esp], eax
mov DWORD PTR [esp+4], edx
call ___umoddi3 ; unsigned modulo
add esp, 28
ret
GCC的做法几乎一样,但是乘法代码内联在函数中,可认为这样更有效。
GCC有一些不同的库函数:参见附录D
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