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在头文件<math.h>中定义



div_t     div( int x, int y );

(1)


ldiv_t    ldiv( long x, long y );

(2)


lldiv_t   lldiv( long long x, long long y );

(3)

(since C99)

Defined in header <inttypes.h>



imaxdiv_t imaxdiv( intmax_t x, intmax_t y );

(4)

(since C99)

用分母x来计算分子除法的商和余数y

同时计算商和余数。商是丢弃任何小数部分的代数商(截断为零)。剩下的就是“* y + rem == x”。

(直到C99)

同时计算商(表达式x / y的结果)和余数(表达式x%y的结果)。

(自C99以来)

参数

x,y

-

整数值

返回值

如果这两个余数和商可以表示为相应的类型的对象(INT,很久长,imaxdiv_t,分别地),同时返回作为类型的对象div_tldiv_tlldiv_timaxdiv_t定义如下:

div_t

struct div_t { int quot; int rem; };

要么。

struct div_t { int rem; int quot; };

ldiv_t

struct ldiv_t { long quot; long rem; };

要么。

struct ldiv_t { long rem; long quot; };

lldiv_t

struct lldiv_t { long long quot; long long rem; };

要么。

struct lldiv_t { long long rem; long long quot; };

imaxdiv_t

struct imaxdiv_t { intmax_t quot; intmax_t rem; };

要么。

struct imaxdiv_t { intmax_t rem; intmax_t quot; };

如果余数或商不能表示,行为是不确定的。

笔记

在C99之前,如果两个操作数中的任何一个都是负数,那么在内建的除法运算符和余数运算符中,商的舍入方向和余数的符号是实现定义的,但是在div和中定义明确ldiv

在许多平台上,单个CPU指令获得商和余数,并且该函数可以利用该指令,尽管编译器通常能够在合适的地方合并near /和%。

#include <stdio.h>#include <math.h>#include <stdlib.h> // demo only: does not check for buffer overflowvoid itoa(int n, int base, char* buf){
    div_t dv = {.quot = n};
    char* p = buf;    do {
        dv = div(dv.quot, base);        *p++ = "0123456789abcdef"[abs(dv.rem)];    } while(dv.quot);    if(n<0) *p++ = '-';    *p-- = '\0';    while(buf < p) { char c = *p; *p-- = *buf; *buf++ = c; } // reverse}
 int main(void){
    char buf[100];    itoa(12346, 10, buf);    printf("%s\n", buf);    itoa(-12346, 10, buf);    printf("%s\n", buf);    itoa(65535, 16, buf);    printf("%s\n", buf);}

输出:

12346-12346ffff

参考

  • C11标准(ISO / IEC 9899:2011):

    • 7.8.2.2 imaxdiv函数(p:219)

    • 7.22.6.2 div,ldiv和lldiv函数(p:356)

  • C99标准(ISO / IEC 9899:1999):

    • 7.8.2.2 imaxdiv函数(p:200)

    • 7.20.6.2 div,ldiv和lldiv函数(p:320)

  • C89 / C90标准(ISO / IEC 9899:1990):

    • 4.10 div_t,ldiv_t

    • 4.10.6.2 div函数

    • 4.10.6.4 ldiv函数

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