Java.lang.Number-klasse i Java
Mesteparten av tiden mens vi jobber med tall i java bruker vi primitive datatyper . Men Java gir også forskjellige numeriske innpakning underklasser under abstraktklassen Antall tilstede i java.lang pakke. Det er hovedsakelig seks underklasser under tallklasse. Disse underklassene definerer noen nyttige metoder som brukes ofte når man arbeider med tall.
Disse klassene 'pakker inn' den primitive datatypen i et tilsvarende objekt. Ofte gjøres innpakningen av kompilatoren. Hvis du bruker en primitiv der et objekt forventes, setter kompilatoren inn primitivet i innpakningsklassen for deg. Tilsvarende hvis du bruker et Number-objekt når det forventes en primitiv, pakker kompilatoren ut objektet for deg. Dette kalles også Autoboxing og Unboxing.
Hvorfor bruke et nummerklasseobjekt over primitive data?
- Konstanter definert av tallklassen som MIN_VALUE og MAX_VALUE som gir de øvre og nedre grensene for datatypen er veldig nyttige.
- Tallklasseobjekt kan brukes som et argument for en metode som forventer et objekt (brukes ofte når man manipulerer samlinger av tall).
- Klassemetoder kan brukes for å konvertere verdier til og fra andre primitive typer for konvertering til og fra strenger og for konvertering mellom tallsystemer (desimal oktal heksadesimal binær).
Metoder som er felles for alle underklasser av tall:
Syntax : byte byteValue() short shortValue() int intValue() long longValue() float floatValue() double doubleValue() Parameters : ---- Returns : the numeric value represented by this object after conversion to specified type
//Java program to demonstrate xxxValue() method public class Test { public static void main ( String [] args ) { // Creating a Double Class object with value '6.9685' Double d = new Double ( '6.9685' ); // Converting this Double(Number) object to // different primitive data types byte b = d . byteValue (); short s = d . shortValue (); int i = d . intValue (); long l = d . longValue (); float f = d . floatValue (); double d1 = d . doubleValue (); System . out . println ( 'value of d after converting it to byte : ' + b ); System . out . println ( 'value of d after converting it to short : ' + s ); System . out . println ( 'value of d after converting it to int : ' + i ); System . out . println ( 'value of d after converting it to long : ' + l ); System . out . println ( 'value of d after converting it to float : ' + f ); System . out . println ( 'value of d after converting it to double : ' + d1 ); } }
Produksjon:
value of d after converting it to byte : 6 value of d after converting it to short : 6 value of d after converting it to int : 6 value of d after converting it to long : 6 value of d after converting it to float : 6.9685 value of d after converting it to double : 6.9685
Note : Ved konvertering kan det oppstå mulig presisjonstap. For eksempel som vi kan se at fraction part('.9685') har blitt utelatt under konvertering fra Double object til int datatype.
Syntax : public int compareTo( NumberSubClass referenceName ) Parameters : referenceName - any NumberSubClass type value Returns : the value 0 if the Number is equal to the argument. the value 1 if the Number is less than the argument. the value -1 if the Number is greater than the argument.
//Java program to demonstrate compareTo() method public class Test { public static void main ( String [] args ) { // creating an Integer Class object with value '10' Integer i = new Integer ( '10' ); // comparing value of i System . out . println ( i . compareTo ( 7 )); System . out . println ( i . compareTo ( 11 )); System . out . println ( i . compareTo ( 10 )); } }
Produksjon:
1 -1 0
Syntax : public boolean equals(Object obj) Parameters : obj - any object Returns : The method returns true if the argument is not null and is an object of the same type and with the same numeric value otherwise false.
//Java program to demonstrate equals() method public class Test { public static void main ( String [] args ) { // creating a Short Class object with value '15' Short s = new Short ( '15' ); // creating a Short Class object with value '10' Short x = 10 ; // creating an Integer Class object with value '15' Integer y = 15 ; // creating another Short Class object with value '15' Short z = 15 ; //comparing s with other objects System . out . println ( s . equals ( x )); System . out . println ( s . equals ( y )); System . out . println ( s . equals ( z )); } }
Produksjon:
false false true
Syntax : static int parseInt(String s int radix) Parameters : s - any String representation of decimal radix - any radix value Returns : the integer value represented by the argument in decimal. Throws : NumberFormatException : if the string does not contain a parsable integer.
//Java program to demonstrate Integer.parseInt() method public class Test { public static void main ( String [] args ) { // parsing different strings int z = Integer . parseInt ( '654' 8 ); int a = Integer . parseInt ( '-FF' 16 ); long l = Long . parseLong ( '2158611234' 10 ); System . out . println ( z ); System . out . println ( a ); System . out . println ( l ); // run-time NumberFormatException will occur here // 'Geeks' is not a parsable string int x = Integer . parseInt ( 'Geeks' 8 ); // run-time NumberFormatException will occur here // (for octal(8)allowed digits are [0-7]) int y = Integer . parseInt ( '99' 8 ); } }
Produksjon:
428 -255 2158611234 Exception in thread 'main' java.lang.NumberFormatException: For input string: 'Geeks' at java.lang.NumberFormatException.forInputString(NumberFormatException.java:65) at java.lang.Integer.parseInt(Integer.java:580) at Test.main(Test.java:17)
Syntax : static int parseInt(String s) Parameters : s - any String representation of decimal Returns : the integer value represented by the argument in decimal. Throws : NumberFormatException : if the string does not contain a parsable integer.
//Java program to demonstrate Integer.parseInt() method public class Test { public static void main ( String [] args ) { // parsing different strings int z = Integer . parseInt ( '654' ); long l = Long . parseLong ( '2158611234' ); System . out . println ( z ); System . out . println ( l ); // run-time NumberFormatException will occur here // 'Geeks' is not a parsable string int x = Integer . parseInt ( 'Geeks' ); // run-time NumberFormatException will occur here // (for decimal(10)allowed digits are [0-9]) int a = Integer . parseInt ( '-FF' ); } }
Produksjon:
654 2158611234 Exception in thread 'main' java.lang.NumberFormatException: For input string: 'Geeks' at java.lang.NumberFormatException.forInputString(NumberFormatException.java:65) at java.lang.Integer.parseInt(Integer.java:580) at java.lang.Integer.parseInt(Integer.java:615) at Test.main(Test.java:15)
Syntax : String toString() String toString(int i) Parameters : String toString() - no parameter String toString(int i) - i: any integer value Returns : String toString() - returns a String object representing the value of the Number object on which it is invoked. String toString(int i) - returns a decimal String object representing the specified integer(i)Java
//Java program to demonstrate Integer.toString() //and Integer.toString(int i) method public class Test { public static void main ( String [] args ) { // demonstrating toString() method Integer x = 12 ; System . out . println ( x . toString ()); // demonstrating toString(int i) method System . out . println ( Integer . toString ( 12 )); System . out . println ( Integer . toBinaryString ( 152 )); System . out . println ( Integer . toHexString ( 152 )); System . out . println ( Integer . toOctalString ( 152 )); } }
Produksjon:
12 12 10011000 98 230
Syntax : Integer valueOf(int i) Integer valueOf(String s) Integer valueOf(String s int radix) Parameters : i - any integer value s - any String representation of decimal radix - any radix value Returns : valueOf(int i) : an Integer object holding the valuerepresented by the int argument. valueOf(String s) : an Integer object holding value represented by the string argument. valueOf(String s int radix) : an Integer object holding the value represented by the string argument with base radix. Throws : valueOf(String s) - NumberFormatException : if the string does not contain a parsable integer. valueOf(String s int radix) - NumberFormatException : if the string does not contain a parsable integer.
// Java program to demonstrate valueOf() method public class Test { public static void main ( String [] args ) { // demonstrating valueOf(int i) method System . out . println ( 'Demonstrating valueOf(int i) method' ); Integer i = Integer . valueOf ( 50 ); Double d = Double . valueOf ( 9.36 ); System . out . println ( i ); System . out . println ( d ); // demonstrating valueOf(String s) method System . out . println ( 'Demonstrating valueOf(String s) method' ); Integer n = Integer . valueOf ( '333' ); Integer m = Integer . valueOf ( '-255' ); System . out . println ( n ); System . out . println ( m ); // demonstrating valueOf(String sint radix) method System . out . println ( 'Demonstrating (String sint radix) method' ); Integer y = Integer . valueOf ( '333' 8 ); Integer x = Integer . valueOf ( '-255' 16 ); Long l = Long . valueOf ( '51688245' 16 ); System . out . println ( y ); System . out . println ( x ); System . out . println ( l ); // run-time NumberFormatException will occur in below cases Integer a = Integer . valueOf ( 'Geeks' ); Integer b = Integer . valueOf ( 'Geeks' 16 ); } }
Produksjon:
Demonstrating valueOf(int i) method 50 9.36 Demonstrating valueOf(String s) method 333 -255 Demonstrating (String sint radix) method 219 -597 1365803589 Exception in thread 'main' java.lang.NumberFormatException: For input string: 'Geeks' at java.lang.NumberFormatException.forInputString(NumberFormatException.java:65) at java.lang.Integer.parseInt(Integer.java:580) at java.lang.Integer.valueOf(Integer.java:766) at Test.main(Test.java:28)
Øvingsspørsmål:
Hva er resultatet av den gitte java-koden?
public class Test { public static void main ( String [] args ) { Integer i = Integer . parseInt ( 'Kona' 27 ); System . out . println ( i ); } }
Alternativer:
A) NumberFormatException at run-time B) NumberFormatException at compile-time C) 411787
Svar:
C) 411787
Forklaring:
Siden radix er 27, er tillatte tegn i en streng-literal [0-9][A-Q](for 10 til 26). Så verdien vil beregnes som følger:
=> a*(27^0) + n*(27^1) + o*(27^2) + k*(27^3)
=> 10*1 + 23*27 + 24*27*27 + 20*27*27*27
=> 10 + 621 + 17496 + 393660
=> 411787