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When I test this code:

java.util.Date date = new java.util.Date();
java.util.Date stamp = new java.sql.Timestamp(date.getTime());

assertTrue(date.compareTo(stamp) == 0);
assertTrue(stamp.compareTo(date) == 0);

I´ll be expecting a true, true, true, false. Because of this:

In the javadoc for java.sql.Timestamp, it states:

Note: This type is a composite of a java.util.Date and a separate nanoseconds value. Only integral seconds are stored in the java.util.Date component. The fractional seconds - the nanos - are separate. The Timestamp.equals(Object) method never returns true when passed a value of type java.util.Date because the nanos component of a date is unknown. As a result, the Timestamp.equals(Object) method is not symmetric with respect to the java.util.Date.equals(Object) method. Also, the hashcode method uses the underlying java.util.Date implementation and therefore does not include nanos in its computation.

Due to the differences between the Timestamp class and the java.util.Date class mentioned above, it is recommended that code not view Timestamp values generically as an instance of java.util.Date. The inheritance relationship between Timestamp and java.util.Date really denotes implementation inheritance, and not type inheritance.

But instead I´ll get a true, false, true, false. Any ideas?

EDIT: This problem appear when a I was checking two Dates with the equals method, but one of the Date object come from a Hibernate class and debugging I see that the object contains a TimeStamp. So the equals method evaluate to false, then I found this: http://mattfleming.com/node/141

But when I try the code I get different results...if I can´t use neither equals and compareTo, what I should use to check if 2 Dates are the same?!?!

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Basically: if you want to compare two homogeneous objects (either both Date or Timestamp), there is no problem; do not compare two heterogeneous objects. We can try to address the problem at the source, meaning: why do you have to compare them? –  Viruzzo Jan 20 '12 at 9:05
I´m comparing two Date objects, but the implicit object in one of them is a TimeStamp with is a Date type. If inheritance works in other object, why not here? –  Torres Jan 20 '12 at 12:59
Because the implementation of Timestamp is silly; you should treat those two classes as not being related, as was the intention of whoever wrote it. –  Viruzzo Jan 20 '12 at 13:17

8 Answers 8

Try recreate the object date using "Strings" like this

Date date = new Date();
Date stamp = Timestamp(date.getTime());

SimpleDateFormat ft = new SimpleDateFormat("yyyy-MM-dd hh:mm:ss");
String date1String = ft.format(date);
String date2String = ft.format(stamp);

Date date1 = ft.parse(date1String);
Date date2 = ft.parse(date2String);

assertTrue(date1.equals(date2)); // true
assertTrue(date1.compareTo(date2) == 0); //true
assertTrue(date2.compareTo(date1) == 0); //true
assertTrue(date2.equals(date1)); // true
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A Small note on Implementaion inheritance and Type inheritance..

"An object's class defines how the object is implemented. In contrast, an object's type only refers to its interface. Class inheritance(Implementation inheritance) defines an object's implementation in terms of another object's implementation. Type inheritance describes when an object can be used in place of another."

Timestamp and Date classes have implementation inheritance as JAVADOC said.

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I had the same problem in a test where I wanted to compare java.util.Date and java.sql.Timestamp objects.

I converted them to LocalDate and that worked:

import org.apache.commons.lang.ObjectUtils;

// date1 and date2 can be java.util.Date or java.sql.Timestamp
boolean datesAreEqual = ObjectUtils.equals(toLocalDate(date1), toLocalDate(date2));

where toLocalDate is:

import org.joda.time.LocalDate;
import java.util.Date;

public static void LocalDate toLocalDate(Date date)
    return date != null ? LocalDate.fromDateFields(date) : null;
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Timestamp's nanos value is NOT the number of nanoseconds - it's a nanosecond-resolution number of millis (i.e. fractional seconds). As such, in the Timestamp constructor, it is setting the time on the super to be without milliseconds. Therefore, the Timestamp will always have a lower value for the member fastTime (used in Date's compareTo()) than the corresponding Date (unless, of course, it has no fractional seconds).

Check the source for Timestamp at line 110.

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  1. date.equals(stamp) return true AND stamp equals(date) returns false. REASON :Date neglects the nanosecond part of timestamp and since the other parts happen to be equal so the result is equal. The fractional seconds - the nanos - are separate.The Timestamp.equals(Object) method never returns true when passed a value of type java.util.Date because the nanos component of a date is unknown. See here for more details

    1. date.compareTo(stamp) == 0 returns false AND stamp.compareTo(date) == 0 returns true. REASON: According to this bug compareTo function will behave as it does.
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See this link: mattfleming.com/node/141 –  Torres Jan 19 '12 at 16:58

Nican explained the equals part, about compareTo:

  • Timestamp has a compareTo(Date) method that converts it to Timestamp internally
  • Date does the comparison by downcasting (since Timestamp is a subclass of it); but as the javadoc states: "The inheritance relationship between Timestamp and java.util.Date really denotes implementation inheritance, and not type inheritance"

Which of course is an horrible idea, in my opinion.

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Sadly, the Timestamp class do overloads the equals(Object) method with equals(Timestamp) so comparisons on Timestamps are hard to do.

In the equals(Object) javadocs says:

Tests to see if this Timestamp object is equal to the given object. This version of the method equals has been added to fix the incorrect signature of Timestamp.equals(Timestamp) and to preserve backward compatibility with existing class files. Note: This method is not symmetric with respect to the equals(Object) method in the base class.

My rule of thumb is never to compare timestamps for equality (which is pretty much useless anyway), but if you do have to check for equality, compare them using the result of getTime() (the number of milliseconds from january 1st 1970, 00:00).

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Why "sadly"? Classes are supposed to provide a meaningful equals() implementation, not use the default one that is ignorant of actual data value. –  Viruzzo Jan 19 '12 at 16:33
@Viruzzo: By doing this, it breaks the contract of equals: a date is equals to a timestamp, but a timestamp is not equal to a date. They shouldn't have had an inheritance relationship between those classes. And they should have been immutable. –  JB Nizet Jan 19 '12 at 16:45
@JBNizet I agree on both should's; still, there is nothing wrong (it's in fact better) in providing a more specific override of equals. String too has compareTo(String), as does Integer and so on. –  Viruzzo Jan 19 '12 at 16:52
Sadly because until Java 1.1 the API only implemented only the equals(Timestamp) method, and from 1.2 they added the equals(Object). Usually is not a good idea to overload the equals() method, specially on the precense of inheritance (where this imply that equals will be NOT symmetric). So, it is just the class was implemented and evolved over time to retain its original functionality and not breaking current working code. –  Gabriel Belingueres Jan 19 '12 at 16:55
Yes, but String, Integer, etc. do so without violating the equals contract. And they override Object's equals implementation. Timestamp overrides Date's equals implementation. –  JB Nizet Jan 19 '12 at 16:55

Take a look at the source code compare method for Timestamp:

public boolean equals(java.lang.Object ts) {
  if (ts instanceof Timestamp) {
    return this.equals((Timestamp)ts);
  } else {
    return false;


It will only ever return true if the comparing object is a timestamp. Also, here is the Date source code: http://www.docjar.com/html/api/java/util/Date.java.html , and since Timestamp inherits Date, it can compare it.

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The false assertion he's concerned with is compareTo(), not equals(). –  sarumont Jan 19 '12 at 16:27

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