view test/testlibrary/AssertsTest.java @ 12233:40136aa2cdb1

8010722: assert: failed: heap size is too big for compressed oops Summary: Use conservative assumptions of required alignment for the various garbage collector components into account when determining the maximum heap size that supports compressed oops. Using this conservative value avoids several circular dependencies in the calculation. Reviewed-by: stefank, dholmes
author tschatzl
date Wed, 11 Sep 2013 16:25:02 +0200
parents 1a8fb39bdbc4
children
line wrap: on
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/*
 * Copyright (c) 2013, Oracle and/or its affiliates. All rights reserved.
 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
 *
 * This code is free software; you can redistribute it and/or modify it
 * under the terms of the GNU General Public License version 2 only, as
 * published by the Free Software Foundation.
 *
 * This code is distributed in the hope that it will be useful, but WITHOUT
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
 * version 2 for more details (a copy is included in the LICENSE file that
 * accompanied this code).
 *
 * You should have received a copy of the GNU General Public License version
 * 2 along with this work; if not, write to the Free Software Foundation,
 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
 *
 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
 * or visit www.oracle.com if you need additional information or have any
 * questions.
 */

import static com.oracle.java.testlibrary.Asserts.*;

/* @test
 * @summary Tests the different assertions in the Assert class
 * @library /testlibrary
 */
public class AssertsTest {
    private static class Foo implements Comparable<Foo> {
        final int id;
        public Foo(int id) {
            this.id = id;
        }

        public int compareTo(Foo f) {
            return new Integer(id).compareTo(new Integer(f.id));
        }
    }

    public static void main(String[] args) throws Exception {
        testLessThan();
        testLessThanOrEqual();
        testEquals();
        testGreaterThanOrEqual();
        testGreaterThan();
        testNotEquals();
        testNull();
        testNotNull();
        testTrue();
        testFalse();
    }

    private static void testLessThan() throws Exception {
        expectPass(Assertion.LT, 1, 2);

        expectFail(Assertion.LT, 2, 2);
        expectFail(Assertion.LT, 2, 1);
        expectFail(Assertion.LT, null, 2);
        expectFail(Assertion.LT, 2, null);
    }

    private static void testLessThanOrEqual() throws Exception {
        expectPass(Assertion.LTE, 1, 2);
        expectPass(Assertion.LTE, 2, 2);

        expectFail(Assertion.LTE, 3, 2);
        expectFail(Assertion.LTE, null, 2);
        expectFail(Assertion.LTE, 2, null);
    }

    private static void testEquals() throws Exception {
        expectPass(Assertion.EQ, 1, 1);
        expectPass(Assertion.EQ, null, null);

        Foo f1 = new Foo(1);
        expectPass(Assertion.EQ, f1, f1);

        Foo f2 = new Foo(1);
        expectFail(Assertion.EQ, f1, f2);
        expectFail(Assertion.LTE, null, 2);
        expectFail(Assertion.LTE, 2, null);
    }

    private static void testGreaterThanOrEqual() throws Exception {
        expectPass(Assertion.GTE, 1, 1);
        expectPass(Assertion.GTE, 2, 1);

        expectFail(Assertion.GTE, 1, 2);
        expectFail(Assertion.GTE, null, 2);
        expectFail(Assertion.GTE, 2, null);
    }

    private static void testGreaterThan() throws Exception {
        expectPass(Assertion.GT, 2, 1);

        expectFail(Assertion.GT, 1, 1);
        expectFail(Assertion.GT, 1, 2);
        expectFail(Assertion.GT, null, 2);
        expectFail(Assertion.GT, 2, null);
    }

    private static void testNotEquals() throws Exception {
        expectPass(Assertion.NE, null, 1);
        expectPass(Assertion.NE, 1, null);

        Foo f1 = new Foo(1);
        Foo f2 = new Foo(1);
        expectPass(Assertion.NE, f1, f2);

        expectFail(Assertion.NE, null, null);
        expectFail(Assertion.NE, f1, f1);
        expectFail(Assertion.NE, 1, 1);
    }

    private static void testNull() throws Exception {
        expectPass(Assertion.NULL, null);

        expectFail(Assertion.NULL, 1);
    }

    private static void testNotNull() throws Exception {
        expectPass(Assertion.NOTNULL, 1);

        expectFail(Assertion.NOTNULL, null);
    }

    private static void testTrue() throws Exception {
        expectPass(Assertion.TRUE, true);

        expectFail(Assertion.TRUE, false);
    }

    private static void testFalse() throws Exception {
        expectPass(Assertion.FALSE, false);

        expectFail(Assertion.FALSE, true);
    }

    private static <T extends Comparable<T>> void expectPass(Assertion assertion, T ... args)
        throws Exception {
        Assertion.run(assertion, args);
    }

    private static <T extends Comparable<T>> void expectFail(Assertion assertion, T ... args)
        throws Exception {
        try {
            Assertion.run(assertion, args);
        } catch (RuntimeException e) {
            return;
        }
        throw new Exception("Expected " + Assertion.format(assertion, (Object[]) args) +
                            " to throw a RuntimeException");
    }

}

enum Assertion {
    LT, LTE, EQ, GTE, GT, NE, NULL, NOTNULL, FALSE, TRUE;

    public static <T extends Comparable<T>> void run(Assertion assertion, T ... args) {
        String msg = "Expected " + format(assertion, args) + " to pass";
        switch (assertion) {
            case LT:
                assertLessThan(args[0], args[1], msg);
                break;
            case LTE:
                assertLessThanOrEqual(args[0], args[1], msg);
                break;
            case EQ:
                assertEquals(args[0], args[1], msg);
                break;
            case GTE:
                assertGreaterThanOrEqual(args[0], args[1], msg);
                break;
            case GT:
                assertGreaterThan(args[0], args[1], msg);
                break;
            case NE:
                assertNotEquals(args[0], args[1], msg);
                break;
            case NULL:
                assertNull(args == null ? args : args[0], msg);
                break;
            case NOTNULL:
                assertNotNull(args == null ? args : args[0], msg);
                break;
            case FALSE:
                assertFalse((Boolean) args[0], msg);
                break;
            case TRUE:
                assertTrue((Boolean) args[0], msg);
                break;
            default:
                // do nothing
        }
    }

    public static String format(Assertion assertion, Object ... args) {
        switch (assertion) {
            case LT:
                return asString("assertLessThan", args);
            case LTE:
                return asString("assertLessThanOrEqual", args);
            case EQ:
                return asString("assertEquals", args);
            case GTE:
                return asString("assertGreaterThanOrEquals", args);
            case GT:
                return asString("assertGreaterThan", args);
            case NE:
                return asString("assertNotEquals", args);
            case NULL:
                return asString("assertNull", args);
            case NOTNULL:
                return asString("assertNotNull", args);
            case FALSE:
                return asString("assertFalse", args);
            case TRUE:
                return asString("assertTrue", args);
            default:
                return "";
        }
    }

    private static String asString(String assertion, Object ... args) {
        if (args == null) {
            return String.format("%s(null)", assertion);
        }
        if (args.length == 1) {
            return String.format("%s(%s)", assertion, args[0]);
        } else {
            return String.format("%s(%s, %s)", assertion, args[0], args[1]);
        }
    }
}