public static final class PhoneNumberField.Country

  1. Object
  2. PhoneNumberField.Country
A country and its E.164 calling code.

Constructors

public Country(String isoCode, String dialCode, String name)Builds a country entry.

Methods

public String getIsoCode()The two letter ISO 3166 code.
public String getDialCode()The calling code, digits only, without the “+”.
public String getName()The English display name.
public String toString()Returns a string representation of the object.
public boolean equals(Object o)Indicates whether some other object is “equal to” this one.
public int hashCode()Returns a hash code value for the object.

Inherited methods

Constructor details

Country

public Country(String isoCode, String dialCode, String name)
Builds a country entry.

Parameters

isoCode String
the two letter ISO 3166 code, e.g. “IL”
dialCode String
the calling code without the “+”, e.g. “972”
name String
the display name

Method details

getIsoCode

public String getIsoCode()
The two letter ISO 3166 code.

getDialCode

public String getDialCode()
The calling code, digits only, without the “+”.

getName

public String getName()
The English display name.

toString

public String toString()
Returns a string representation of the object. In general, the toString method returns a string that “textually represents” this object. The result should be a concise but informative representation that is easy for a person to read. It is recommended that all subclasses override this method. The toString method for class Object returns a string consisting of the name of the class of which the object is an instance, the at-sign character `@’, and the unsigned hexadecimal representation of the hash code of the object. In other words, this method returns a string equal to the value of: getClass().getName() + ‘@’ + Integer.toHexString(hashCode())

equals

public boolean equals(Object o)
Indicates whether some other object is “equal to” this one. The equals method implements an equivalence relation: It is reflexive: for any reference value x, x.equals(x) should return true. It is symmetric: for any reference values x and y, x.equals(y) should return true if and only if y.equals(x) returns true. It is transitive: for any reference values x, y, and z, if x.equals(y) returns true and y.equals(z) returns true, then x.equals(z) should return true. It is consistent: for any reference values x and y, multiple invocations of x.equals(y) consistently return true or consistently return false, provided no information used in equals comparisons on the object is modified. For any non-null reference value x, x.equals(null) should return false. The equals method for class Object implements the most discriminating possible equivalence relation on objects; that is, for any reference values x and y, this method returns true if and only if x and y refer to the same object (x==y has the value true).

hashCode

public int hashCode()
Returns a hash code value for the object. This method is supported for the benefit of hashtables such as those provided by java.util.Hashtable. The general contract of hashCode is: Whenever it is invoked on the same object more than once during an execution of a Java application, the hashCode method must consistently return the same integer, provided no information used in equals comparisons on the object is modified. This integer need not remain consistent from one execution of an application to another execution of the same application. If two objects are equal according to the equals(Object) method, then calling the hashCode method on each of the two objects must produce the same integer result. It is not required that if two objects are unequal according to the equals(java.lang.Object) method, then calling the hashCode method on each of the two objects must produce distinct integer results. However, the programmer should be aware that producing distinct integer results for unequal objects may improve the performance of hashtables. As much as is reasonably practical, the hashCode method defined by class Object does return distinct integers for distinct objects. (This is typically implemented by converting the internal address of the object into an integer, but this implementation technique is not required by the JavaTM programming language.)