
org.jruby.compiler.BlockJITClassGenerator Maven / Gradle / Ivy
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package org.jruby.compiler;
import org.jruby.Ruby;
import org.jruby.ir.interpreter.InterpreterContext;
import org.jruby.ir.targets.JVMVisitor;
import org.jruby.ir.targets.JVMVisitorMethodContext;
import org.jruby.runtime.MixedModeIRBlockBody;
import org.jruby.util.cli.Options;
public class BlockJITClassGenerator extends JITClassGenerator {
public BlockJITClassGenerator(String className, String methodName, String key, Ruby ruby, MixedModeIRBlockBody body, JVMVisitor visitor) {
super(className, methodName, key, ruby, visitor);
this.body = body;
}
@SuppressWarnings("unchecked")
protected void compile(JVMVisitorMethodContext context) {
if (bytecode != null) return;
// Time the compilation
long start = System.nanoTime();
InterpreterContext ic = body.ensureInstrsReady();
int insnCount = ic.getInstructions().length;
if (insnCount > Options.JIT_MAXSIZE.load()) {
// methods with more than our limit of basic blocks are likely too large to JIT, so bail out
throw new NotCompilableException("Could not compile " + body + "; instruction count " + insnCount + " exceeds threshold of " + Options.JIT_MAXSIZE.load());
}
// This may not be ok since we'll end up running passes specific to JIT
// CON FIXME: Really should clone scope before passes in any case
bytecode = visitor.compileToBytecode(body.getIRScope(), context);
compileTime = System.nanoTime() - start;
}
@Override
public String toString() {
return "{} at " + body.getFile() + ':' + body.getLine();
}
private final MixedModeIRBlockBody body;
}
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