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/*
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* Copyright (c) 2016, Oracle and/or its affiliates. All rights reserved.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
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* This code is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 only, as
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* published by the Free Software Foundation. Oracle designates this
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* particular file as subject to the "Classpath" exception as provided
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* by Oracle in the LICENSE file that accompanied this code.
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*
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* This code is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* version 2 for more details (a copy is included in the LICENSE file that
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* accompanied this code).
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*
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* You should have received a copy of the GNU General Public License version
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* 2 along with this work; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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*
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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* or visit www.oracle.com if you need additional information or have any
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* questions.
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*/
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/*
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* @test
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* @summary class p1.c1 defined in m1 tries to access p2.c2 defined in unnamed module.
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* @library /testlibrary /test/lib
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* @modules java.base/jdk.internal.module
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* @compile myloaders/MyDiffClassLoader.java
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* @compile p2/c2.java
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* @compile p1/c1.java
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* @compile p1/c1ReadEdgeDiffLoader.java
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* @compile p1/c1Loose.java
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* @build DiffCL_Umod
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* @run main/othervm -Xbootclasspath/a:. DiffCL_Umod
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*/
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import static jdk.test.lib.Asserts.*;
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import java.lang.module.Configuration;
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import java.lang.module.ModuleDescriptor;
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import java.lang.module.ModuleFinder;
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import java.lang.reflect.Layer;
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import java.lang.reflect.Module;
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import java.util.HashMap;
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import java.util.Map;
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import java.util.Set;
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import myloaders.MyDiffClassLoader;
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//
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// ClassLoader1 --> defines m1 --> packages p1
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// package p1 in m1 is exported unqualifiedly
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//
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// class p1.c1 defined in m1 tries to access p2.c2 defined in
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// in unnamed module.
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//
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// Three access attempts occur in this test:
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// 1. The first access is not allowed because a strict module
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// cannot read an unnamed module.
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// 2. In this scenario a strict module establishes readability
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// to the particular unnamed module it is trying to access.
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// Access is allowed.
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// 3. Module m1 in the test_looseModuleLayer() method
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// is transitioned to a loose module, access
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// to all unnamed modules is allowed.
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//
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public class DiffCL_Umod {
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// Create Layers over the boot layer to test different
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// accessing scenarios of a named module to an unnamed module.
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// Module m1 is a strict module and has not established
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// readability to an unnamed module that p2.c2 is defined in.
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public void test_strictModuleLayer() throws Throwable {
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// Define module: m1
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// Can read: java.base
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// Packages: p1
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// Packages exported: p1 is exported unqualifiedly
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ModuleDescriptor descriptor_m1 =
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new ModuleDescriptor.Builder("m1")
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.requires("java.base")
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.exports("p1")
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.build();
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// Set up a ModuleFinder containing all modules for this layer.
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ModuleFinder finder = ModuleLibrary.of(descriptor_m1);
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// Resolves "m1"
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Configuration cf = Layer.boot()
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.configuration()
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.resolveRequires(finder, ModuleFinder.empty(), Set.of("m1"));
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MyDiffClassLoader.loader1 = new MyDiffClassLoader();
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MyDiffClassLoader.loader2 = new MyDiffClassLoader();
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// map module m1 to class loader.
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// class c2 will be loaded in an unnamed module/loader2
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// to achieve differing class loaders.
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Map<String, ClassLoader> map = new HashMap<>();
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map.put("m1", MyDiffClassLoader.loader1);
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// Create Layer that contains m1
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Layer layer = Layer.boot().defineModules(cf, map::get);
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assertTrue(layer.findLoader("m1") == MyDiffClassLoader.loader1);
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assertTrue(layer.findLoader("java.base") == null);
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// now use the same loader to load class p1.c1
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Class p1_c1_class = MyDiffClassLoader.loader1.loadClass("p1.c1");
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// Attempt access
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try {
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p1_c1_class.newInstance();
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throw new RuntimeException("Test Failed, strict module m1 should not be able " +
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"to access public type p2.c2 defined in unnamed module");
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} catch (IllegalAccessError e) {
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}
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}
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// Module m1 is a strict module and has established
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// readability to an unnamed module that p2.c2 is defined in.
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public void test_strictModuleUnnamedReadableLayer() throws Throwable {
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// Define module: m1
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// Can read: java.base
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// Packages: p1
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// Packages exported: p1 is exported unqualifiedly
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ModuleDescriptor descriptor_m1 =
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new ModuleDescriptor.Builder("m1")
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.requires("java.base")
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.exports("p1")
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.build();
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// Set up a ModuleFinder containing all modules for this layer.
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ModuleFinder finder = ModuleLibrary.of(descriptor_m1);
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// Resolves "m1"
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Configuration cf = Layer.boot()
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.configuration()
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.resolveRequires(finder, ModuleFinder.empty(), Set.of("m1"));
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MyDiffClassLoader.loader1 = new MyDiffClassLoader();
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MyDiffClassLoader.loader2 = new MyDiffClassLoader();
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// map module m1 to class loader.
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// class c2 will be loaded in an unnamed module/loader2
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// to achieve differing class loaders.
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Map<String, ClassLoader> map = new HashMap<>();
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map.put("m1", MyDiffClassLoader.loader1);
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// Create Layer that contains m1
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Layer layer = Layer.boot().defineModules(cf, map::get);
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assertTrue(layer.findLoader("m1") == MyDiffClassLoader.loader1);
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assertTrue(layer.findLoader("java.base") == null);
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// now use the same loader to load class p1.c1ReadEdgeDiffLoader
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Class p1_c1_class = MyDiffClassLoader.loader1.loadClass("p1.c1ReadEdgeDiffLoader");
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try {
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// Read edge between m1 and the unnamed module that loads p2.c2 is established in
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// c1ReadEdgeDiffLoader's ctor before attempting access.
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p1_c1_class.newInstance();
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} catch (IllegalAccessError e) {
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throw new RuntimeException("Test Failed, module m1 has established readability to p2/c2 loader's " +
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"unnamed module, access should be allowed: " + e.getMessage());
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}
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}
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// Module m1 is a loose module and thus can read all unnamed modules.
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public void test_looseModuleLayer() throws Throwable {
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// Define module: m1
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// Can read: java.base
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// Packages: p1
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// Packages exported: p1 is exported unqualifiedly
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ModuleDescriptor descriptor_m1 =
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new ModuleDescriptor.Builder("m1")
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.requires("java.base")
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.exports("p1")
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.build();
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// Set up a ModuleFinder containing all modules for this layer.
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ModuleFinder finder = ModuleLibrary.of(descriptor_m1);
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// Resolves "m1"
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Configuration cf = Layer.boot()
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.configuration()
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.resolveRequires(finder, ModuleFinder.empty(), Set.of("m1"));
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MyDiffClassLoader.loader1 = new MyDiffClassLoader();
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MyDiffClassLoader.loader2 = new MyDiffClassLoader();
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// map module m1 to class loader.
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// class c2 will be loaded in an unnamed module/loader2
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// to achieve differing class loaders.
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Map<String, ClassLoader> map = new HashMap<>();
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map.put("m1", MyDiffClassLoader.loader1);
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// Create Layer that contains m1
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Layer layer = Layer.boot().defineModules(cf, map::get);
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assertTrue(layer.findLoader("m1") == MyDiffClassLoader.loader1);
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assertTrue(layer.findLoader("java.base") == null);
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// now use the same loader to load class p1.c1Loose
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Class p1_c1_class = MyDiffClassLoader.loader1.loadClass("p1.c1Loose");
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// change m1 to be a loose module
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Module m1 = layer.findModule("m1").get();
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jdk.internal.module.Modules.addReads(m1, null);
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try {
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p1_c1_class.newInstance();
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} catch (IllegalAccessError e) {
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throw new RuntimeException("Test Failed, loose module m1 should be able to access " +
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"public type p2.c2 defined in unnamed module: " + e.getMessage());
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}
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}
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public static void main(String args[]) throws Throwable {
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DiffCL_Umod test = new DiffCL_Umod();
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test.test_strictModuleLayer(); // access denied
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test.test_strictModuleUnnamedReadableLayer(); // access allowed
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test.test_looseModuleLayer(); // access allowed
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}
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}
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