I have recently learned Joshua Bloch's builder pattern for creating objects with many optional fields. I've been using something like it for years, but never used an inner-class until Bloch's book suggested it to me. I love it.
I understand that another thread may alter the bulider's configuration, before it's actually built (with build()
), such that it may be necessary to re-validate all values in the constructor of the enclosing class. Below is an example of a builder class that optionally reverifies its data.
So my question is this: Assuming this is a robust enough design, when there are defaults for all values--knowing this class is a poor choice for using defaults--and when every set-attempt is validated, is this re-check necessary? Although it may be different, it would never be invalid. Is that correct?
(Although this design is manageable, it is certainly complicated by the potential need for re-verification. And, honestly, I never multi-thread, but I don't want to make my library unusable by people that do.)
Thank you for any advice.
/**
<P><CODE>java ReverifyBuilderInEnclosingCnstrXmpl</CODE></P>
**/
public class ReverifyBuilderInEnclosingCnstrXmpl {
public static final void main(String[] igno_red) {
//Don't reverify
ReverifyBuilderInEnclosingCnstrXmpl rvbdx = new ReverifyBuilderInEnclosingCnstrXmpl.Cfg().
name("Big Bird").age(6).build();
System.out.println(rvbdx.sName);
System.out.println(rvbdx.iAge);
//Do reverify
rvbdx = new ReverifyBuilderInEnclosingCnstrXmpl.Cfg().
reverifyInEnclosing().
name("Big Bird").age(6).build();
}
public final String sName;
public final int iAge;
/**
<P>Create a new <CODE>ReverifyBuilderInEnclosingCnstrXmpl</CODE> with defaults.</P>
**/
public ReverifyBuilderInEnclosingCnstrXmpl() {
//Does not reverify. No need.
this(new ReverifyBuilderInEnclosingCnstrXmpl.Cfg());
}
private ReverifyBuilderInEnclosingCnstrXmpl(ReverifyBuilderInEnclosingCnstrXmpl.Cfg rbdx_c) {
sName = rbdx_c.sName;
iAge = rbdx_c.iAge;
ReverifyBuilderInEnclosingCnstrXmpl.Cfg.zcibValues(rbdx_c, sName, iAge, "constructor");
}
public static class Cfg {
private String sName = null;
private int iAge = -1;
private boolean bReVrfy = false;
public Cfg() {
//Defaults
bReVrfy = false;
name("Broom Hilda");
age(127);
}
//Self-returning configuration...START
//No way to unset.
public Cfg reverifyInEnclosing() {
bReVrfy = true;
return this;
}
public Cfg name(String s_name) {
zcib_name(s_name, "name");
sName = s_name;
return this;
}
public Cfg age(int i_age) {
zcib_age(i_age, "age");
iAge = i_age;
return this;
}
//Self-returning configuration...END
//Validate config...START
public static final void zcibValues(ReverifyBuilderInEnclosingCnstrXmpl.Cfg rbdx_c, String s_name, int i_age, String s_clgFunc) {
try {
if(!rbdx_c.bReVrfy) {
return;
}
} catch(NullPointerException npx) {
throw new NullPointerException("zcibValues: rbdx_c");
}
zcib_name(s_name, s_clgFunc);
zcib_age(i_age, s_clgFunc);
}
public static final void zcib_name(String s_name, String s_clgFunc) {
if(s_name == null || s_name.length() == 0) {
throw new IllegalArgumentException(s_clgFunc + ": s_name (" + s_name + ") is null or empty.");
}
}
public static final void zcib_age(int i_age, String s_clgFunc) {
if(i_age < 0) {
throw new IllegalArgumentException(s_clgFunc + ": i_age (" + i_age + ") is negative.");
}
}
//Validate config...END
public ReverifyBuilderInEnclosingCnstrXmpl build() {
return (new ReverifyBuilderInEnclosingCnstrXmpl(this));
}
}
}