Summary of js computing accuracy issues

Source: Internet
Author: User

Copy codeThe Code is as follows:
// For example, if the 7*0.8 JavaScript code is calculated as follows: 5.6000000000000005

// Addition function, used to obtain accurate addition results
// Note: The addition result of javascript has an error, which is obvious when two floating point numbers are added. This function returns a more accurate addition result.
// Call: accAdd (arg1, arg2)
// Return value: the exact result of adding arg2 to arg1
Function accAdd (arg1, arg2 ){
Var r1, r2, m;
Try {r1 = arg1.toString (). split (".") [1]. length} catch (e) {r1 = 0}
Try {r2 = arg2.toString (). split (".") [1]. length} catch (e) {r2 = 0}
M = Math. pow (10, Math. max (r1, r2 ))
Return (arg1 * m + arg2 * m)/m
}
// Usage:
// Add an add method to the Number type to facilitate calling.
Number. prototype. add = function (arg ){
Return accAdd (arg, this );
}
// For example:
Var t1 = 6.60;
Var t2 = 1.32;
Var t3 = 1.2;
Var t4 = 1.2;
Var t5 = 1.2;
Alert (Number (t1). add (Number (t2). add (Number (t3). add (Number (t4). add (Number (t5 )));

// Subtraction function, used to obtain the exact subtraction result
Function Subtr (arg1, arg2 ){
Var r1, r2, m, n;
Try {r1 = arg1.toString (). split (".") [1]. length} catch (e) {r1 = 0}
Try {r2 = arg2.toString (). split (".") [1]. length} catch (e) {r2 = 0}
M = Math. pow (10, Math. max (r1, r2 ));
// Last modify by deeka
// Dynamically control the Precision Length
N = (r1> = r2 )? R1: r2;
Return (arg1 * m-arg2 * m)/m). toFixed (n );
}

// Multiplication function, used to obtain accurate multiplication results
// Note: there is an error in the javascript multiplication result, which is obvious when two floating point numbers are multiplied. This function returns a more accurate multiplication result.
// Call: accMul (arg1, arg2)
// Return value: the exact result of multiplying arg1 by arg2
Function accMul (arg1, arg2 ){
Var m = 0, s1 = arg1.toString (), s2 = arg2.toString ();
Try {m + = s1.split (".") [1]. length} catch (e ){}
Try {m + = s2.split (".") [1]. length} catch (e ){}
Return Number (s1.replace (".", "") * Number (s2.replace (".", "")/Math. pow (10, m)
}
// Usage:
// Add a mul Method to the Number type to facilitate calling.
Number. prototype. mul = function (arg ){
Return accMul (arg, this );
}

// Division function, used to obtain accurate division results
// Note: the division result of javascript has an error, which is obvious when two floating point numbers are separated. This function returns a more precise division result.
// Call: accDiv (arg1, arg2)
// Return value: the exact result of dividing arg1 by arg2
Function accDiv (arg1, arg2 ){
Var t1 = 0, t2 = 0, r1, r2;
Try {t1 = arg1.toString (). split (".") [1]. length} catch (e ){}
Try {t2 = arg2.toString (). split (".") [1]. length} catch (e ){}
With (Math ){
R1 = Number (arg1.toString (). replace (".",""))
R2 = Number (arg2.toString (). replace (".",""))
Return (r1/r2) * pow (10, t2-t1 );
}
}
// Usage:
// Add a div Method to the Number type to facilitate calling.

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