Posted by editor
on January 19, 2010 at 5:58 AM PST
I came across an interesting demonstration and analysis of the Java "code too large" error in a post by Dustin Marx: Reproducing "code too large" Problem in Java...
I came across an interesting demonstration and analysis of the Java "code too large" error in a post by Dustin Marx, Reproducing "code too large" Problem in Java . In the post, Dustin describes his effort to intentionally produce the "code too large" error. Why would someone do this?
In this case, it is because I always understand things better when I tinker with them rather than just reading about them and because doing so gives me a chance to demonstrate Groovy , the Java Compiler API (Java SE 6 ), and javap .
And off Dustin goes. His first discovery is that 65535 bytes of compiled byte code is the number that produces the "code too large" error. And these 65535 bytes have to be the compilation of a single method.
Now, realistically, what programmer would ever create a single method that compiled down to 65535 or more bytes? No one I've ever met. Yet, the "code too large" problem does actually exist "in the wild" (as Dustin calls it) -- specifically, it can happen when code is generated by, for example, Groovy.
To analyze the problem, Dustin built a Groovy script that:
generates a Java class that isn't very exciting. However, the class will have its main function be of an approximate size based on how many conditions I tell the script to create. This allows me to quickly try generating Java classes with different
main() method sizes to ascertain when the
main() becomes too large.
After the script generates the Java class, it also uses the Java Compiler API to automatically compile the newly generated Java class for me. The resultant
.class file is placed in the same directory as the source
The Groovy script generates a very simple Java class consisting of a set of conditional statements. Dustin found the maximum number of conditionals that would produce a runnable class, then used the
javap tool to analyze the class file .
Dustin then presents key snippets from the output of
From the snippets of javap output shown above, we see that the highest
Code offset (65512) for this function pushing the limits of the method size was getting awfully close to the magic 65535 bytes (
Short.MAX_VALUE - Short.MIN_VALUE).
Dustin has named his blog Dustin's Software Development Cogitations and Speculations , and says he uses it as a way to document things for his own future reference, while also providing information to help other developers. For example, his post Favorite Development Cheatsheets is a convenient page to bookmark, since there he's placed links to many useful quick references for Java and other technologies.
Other recent posts investigate
BigDecimal conversion in Java and Groovy, and commentary on the "java is dead" discussion. There are also posts like Using Groovy to Check Seventh Grade Homework .
Dustin Marx does some interesting investigations and documents them well in his blog. I've subscribed and look forward to seeing what he investigates next.
In Java Today , Dustin Marx investigates Reproducing "code too large" Problem in Java :
Code conventions and standard software development wisdom dictate that methods should not be too long because they become difficult to fully comprehend, they lose readability when they get too long, they are difficult to appropriately unit test , and they are difficult to reuse . Because most Java developers strive to write highly modular code with small, highly cohesive methods, the "code too large " error in Java is not seen very often. When this error is seen , it is often in generated code ...
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Much of the development I do for my clients is in Java. While I am still very much a fan of java, it is not without it's complexity. Groovy, on the other hand, builds on java to abstract and simplify a lot of the things we do in java. One particular place that I love using groovy to enhance a java project, is in unit testing. It's simplified syntax, built-in support for mocking and stubbing and meta programming makes unit testing java a complete cinch. In this installment of the Weekly Give, I am going to show an example of using the Groovy StubFor class to stub java method...
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lmcjome is seeing Excessive memory (280K) per connection in grizzly : "Hi. We are doing some benchmarking with glassfish comet/grizzly on SUSE linux 2.6.x. During our prototyping, we established 10000 connections and found that memory consumption is 280K/connection. We ran jprofiler (see attachments) and found that "byte" is consuming most of the memory. We did a heap scan to see what objects are using byte and found that 99% of this use is by com.sun.grizzley.util.WorkerThreadImpl.run..."
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Our current Spotlight is Alexis Moussine-Pouchkine's Testing with the GlassFish Maven plugin and JavaDB Embedded : "Having GlassFish v3 usable in embedded mode made it easy to create a maven plugin with multiple goals (see this previous entry ). This in turn makes it easy to configure the plugin for maven-driven unit testing. Here's an example..."
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We've just published a new java.net Feature Article , Maven Repository Managers for the Enterprise , by John Smart. We're also featuring Jeff Friesen's Reading Newsfeeds in JavaFX with FeedRead , in which Jeff demonstrates how to apply JavaFX's RSS and Atom newsfeed capabilities to create a snazzy little JavaFX app that can run stand-alone or in a browser.
The latest Java Mobility Podcast is Java Mobile Podcast 92: MIDP 3.0 in Depth: Tutorials and Demonstrations : Excerpts from the JavaOne 2009 MIDP 3.0 In Depth: Tutorials and Demonstrations session with Roger Riggs, Lakshmi Dontamsetti and Stan Kao.
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