Quelle TestELParser.java
Sprache: JAVA
/*
* Licensed to the Apache Software Foundation ( ASF ) under one or more
* contributor license agreements . See the NOTICE file distributed with
* this work for additional information regarding copyright ownership .
* The ASF licenses this file to You under the Apache License , Version 2 . 0
* ( the " License " ) ; you may not use this file except in compliance with
* the License . You may obtain a copy of the License at
*
* http : //www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing , software
* distributed under the License is distributed on an " AS IS " BASIS ,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND , either express or implied .
* See the License for the specific language governing permissions and
* limitations under the License .
*/
package org.apache.el.parser;
import java.io.StringReader;
import jakarta.el.ELContext;
import jakarta.el.ELException;
import jakarta.el.ExpressionFactory;
import jakarta.el.ValueExpression;
import org.junit.Assert ;
import org.junit.Ignore;
import org.junit.Test;
import org.apache.jasper.el.ELContextImpl;
import org.apache.tomcat.util.collections.SynchronizedStack;
public class TestELParser {
@Test
public void testBug49081() {
// OP's report
testExpression("#${1+1}" , "#2" );
// Variations on a theme
testExpression("#" , "#" );
testExpression("##" , "##" );
testExpression("###" , "###" );
testExpression("$" , "$" );
testExpression("$$" , "$$" );
testExpression("$$$" , "$$$" );
testExpression("#$" , "#$" );
testExpression("#$#" , "#$#" );
testExpression("$#" , "$#" );
testExpression("$#$" , "$#$" );
testExpression("#{1+1}" , "2" );
testExpression("##{1+1}" , "#2" );
testExpression("###{1+1}" , "##2" );
testExpression("${1+1}" , "2" );
testExpression("$${1+1}" , "$2" );
testExpression("$$${1+1}" , "$$2" );
testExpression("#${1+1}" , "#2" );
testExpression("#$#{1+1}" , "#$2" );
testExpression("$#{1+1}" , "$2" );
testExpression("$#${1+1}" , "$#2" );
}
@Test
public void testJavaKeyWordSuffix() {
ExpressionFactory factory = ExpressionFactory.newInstance();
ELContext context = new ELContextImpl(factory);
TesterBeanA beanA = new TesterBeanA();
beanA.setInt("five" );
ValueExpression var =
factory.createValueExpression(beanA, TesterBeanA.class );
context.getVariableMapper().setVariable("beanA" , var );
// Should fail
Exception e = null ;
try {
factory.createValueExpression(context, "${beanA.int}" ,
String.class );
} catch (ELException ele) {
e = ele;
}
Assert .assertNotNull(e);
}
@Test
public void testJavaKeyWordIdentifier() {
ExpressionFactory factory = ExpressionFactory.newInstance();
ELContext context = new ELContextImpl(factory);
TesterBeanA beanA = new TesterBeanA();
beanA.setInt("five" );
ValueExpression var =
factory.createValueExpression(beanA, TesterBeanA.class );
context.getVariableMapper().setVariable("this" , var );
// Should fail
Exception e = null ;
try {
factory.createValueExpression(context, "${this}" , String.class );
} catch (ELException ele) {
e = ele;
}
Assert .assertNotNull(e);
}
@Test
public void bug56179a() {
doTestBug56179(0 , "test == true" );
}
@Test
public void bug56179b() {
doTestBug56179(1 , "test == true" );
}
@Test
public void bug56179c() {
doTestBug56179(2 , "test == true" );
}
@Test
public void bug56179d() {
doTestBug56179(3 , "test == true" );
}
@Test
public void bug56179e() {
doTestBug56179(4 , "test == true" );
}
@Test
public void bug56179f() {
doTestBug56179(5 , "test == true" );
}
@Test
public void bug56179g() {
doTestBug56179(0 , "(test) == true" );
}
@Test
public void bug56179h() {
doTestBug56179(1 , "(test) == true" );
}
@Test
public void bug56179i() {
doTestBug56179(2 , "(test) == true" );
}
@Test
public void bug56179j() {
doTestBug56179(3 , "(test) == true" );
}
@Test
public void bug56179k() {
doTestBug56179(4 , "(test) == true" );
}
@Test
public void bug56179l() {
doTestBug56179(5 , "(test) == true" );
}
@Test
public void bug56179m() {
doTestBug56179(5 , "((test)) == true" );
}
@Test
public void bug56179n() {
doTestBug56179(5 , "(((test))) == true" );
}
private void doTestBug56179(int parenthesesCount, String innerExpr) {
ExpressionFactory factory = ExpressionFactory.newInstance();
ELContext context = new ELContextImpl(factory);
ValueExpression var =
factory.createValueExpression(Boolean .TRUE , Boolean .class );
context.getVariableMapper().setVariable("test" , var );
StringBuilder expr = new StringBuilder();
expr.append("${" );
for (int i = 0 ; i < parenthesesCount; i++) {
expr.append('(' );
}
expr.append(innerExpr);
for (int i = 0 ; i < parenthesesCount; i++) {
expr.append(')' );
}
expr.append('}' );
ValueExpression ve = factory.createValueExpression(
context, expr.toString(), String.class );
String result = (String) ve.getValue(context);
Assert .assertEquals("true" , result);
}
@Test
public void bug56185() {
ExpressionFactory factory = ExpressionFactory.newInstance();
ELContext context = new ELContextImpl(factory);
TesterBeanC beanC = new TesterBeanC();
ValueExpression var =
factory.createValueExpression(beanC, TesterBeanC.class );
context.getVariableMapper().setVariable("myBean" , var );
ValueExpression ve = factory.createValueExpression(context,
"${(myBean.int1 > 1 and myBean.myBool) or " +
"((myBean.myBool or myBean.myBool1) and myBean.int1 > 1)}" ,
Boolean .class );
Assert .assertEquals(Boolean .FALSE , ve.getValue(context));
beanC.setInt1(2 );
beanC.setMyBool1(true );
Assert .assertEquals(Boolean .TRUE , ve.getValue(context));
}
private void testExpression(String expression, String expected) {
ExpressionFactory factory = ExpressionFactory.newInstance();
ELContext context = new ELContextImpl(factory);
ValueExpression ve = factory.createValueExpression(
context, expression, String.class );
String result = (String) ve.getValue(context);
Assert .assertEquals(expected, result);
}
/*
* Test to explore if re - using Parser instances is faster .
*
* Tests on my laptop show :
* - overhead by introducing the stack is in the noise for parsing even the
* simplest expression
* - efficiency from re - using the ELParser is measurable for even a single
* reuse of the parser
* - with large numbers of parses ( ~ 10 k ) performance for a trivial parse is
* three times faster
* - around the 100 iterations mark GC overhead adds significant noise to
* the results - for consistent results you either need fewer parses to
* avoid triggering GC or more parses so the GC effects are evenly
* distributed between the runs
*
* Note that the test is single threaded .
*/
@Ignore
@Test
public void testParserPerformance() throws ParseException {
final int runs = 20 ;
final int parseIterations = 10000 ;
for (int j = 0 ; j < runs; j ++) {
long start = System.nanoTime();
SynchronizedStack<ELParser> stack = new SynchronizedStack<>();
for (int i = 0 ; i < parseIterations; i ++) {
ELParser parser = stack.pop();
if (parser == null ) {
parser = new ELParser(new StringReader("${'foo'}" ));
} else {
parser.ReInit(new StringReader("${'foo'}" ));
}
parser.CompositeExpression();
stack.push(parser);
}
long end = System.nanoTime();
System.out.println(parseIterations +
" iterations using ELParser.ReInit(...) took " + (end - start) + "ns" );
}
for (int j = 0 ; j < runs; j ++) {
long start = System.nanoTime();
for (int i = 0 ; i < parseIterations; i ++) {
ELParser parser = new ELParser(new StringReader("${'foo'}" ));
parser.CompositeExpression();
}
long end = System.nanoTime();
System.out.println(parseIterations +
" iterations using new ELParser(...) took " + (end - start) + "ns" );
}
}
}
Messung V0.5 in Prozent C=98 H=90 G=94
¤ Dauer der Verarbeitung: 0.12 Sekunden
(vorverarbeitet am 2026-10-01)
¤
*© Formatika GbR, Deutschland
2026-10-10
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