mirror of
https://github.com/google/flatbuffers.git
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The ByteBufferFactory interface gives the user an option to specify the method in which the internal ByteBuffer is allocated. This provides flexibility in the type of ByteBuffer that can be used. The sizedInputStream method is an alternative to sizedByteArray that does not make a copy of the data in memory.
412 lines
15 KiB
Java
Executable File
412 lines
15 KiB
Java
Executable File
/*
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* Copyright 2014 Google Inc. All rights reserved.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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import java.io.*;
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import java.nio.ByteBuffer;
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import java.nio.ByteOrder;
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import java.nio.channels.FileChannel;
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import MyGame.Example.*;
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import NamespaceA.*;
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import NamespaceA.NamespaceB.*;
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import com.google.flatbuffers.FlatBufferBuilder;
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class JavaTest {
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public static void main(String[] args) {
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// First, let's test reading a FlatBuffer generated by C++ code:
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// This file was generated from monsterdata_test.json
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byte[] data = null;
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File file = new File("monsterdata_test.mon");
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RandomAccessFile f = null;
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try {
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f = new RandomAccessFile(file, "r");
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data = new byte[(int)f.length()];
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f.readFully(data);
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f.close();
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} catch(java.io.IOException e) {
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System.out.println("FlatBuffers test: couldn't read file");
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return;
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}
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// Now test it:
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ByteBuffer bb = ByteBuffer.wrap(data);
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TestBuffer(bb);
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// Second, let's create a FlatBuffer from scratch in Java, and test it also.
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// We use an initial size of 1 to exercise the reallocation algorithm,
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// normally a size larger than the typical FlatBuffer you generate would be
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// better for performance.
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FlatBufferBuilder fbb = new FlatBufferBuilder(1);
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TestBuilderBasics(fbb);
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TestExtendedBuffer(fbb.dataBuffer().asReadOnlyBuffer());
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TestNamespaceNesting();
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TestNestedFlatBuffer();
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TestCreateByteVector();
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TestCreateUninitializedVector();
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TestByteBufferFactory();
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TestSizedInputStream();
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System.out.println("FlatBuffers test: completed successfully");
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}
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static void TestEnums() {
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TestEq(Color.name(Color.Red), "Red");
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TestEq(Color.name(Color.Blue), "Blue");
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TestEq(Any.name(Any.NONE), "NONE");
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TestEq(Any.name(Any.Monster), "Monster");
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}
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static void TestBuffer(ByteBuffer bb) {
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TestEq(Monster.MonsterBufferHasIdentifier(bb), true);
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Monster monster = Monster.getRootAsMonster(bb);
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TestEq(monster.hp(), (short)80);
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TestEq(monster.mana(), (short)150); // default
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TestEq(monster.name(), "MyMonster");
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// monster.friendly() // can't access, deprecated
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Vec3 pos = monster.pos();
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TestEq(pos.x(), 1.0f);
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TestEq(pos.y(), 2.0f);
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TestEq(pos.z(), 3.0f);
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TestEq(pos.test1(), 3.0);
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TestEq(pos.test2(), Color.Green);
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Test t = pos.test3();
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TestEq(t.a(), (short)5);
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TestEq(t.b(), (byte)6);
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TestEq(monster.testType(), (byte)Any.Monster);
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Monster monster2 = new Monster();
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TestEq(monster.test(monster2) != null, true);
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TestEq(monster2.name(), "Fred");
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TestEq(monster.inventoryLength(), 5);
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int invsum = 0;
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for (int i = 0; i < monster.inventoryLength(); i++)
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invsum += monster.inventory(i);
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TestEq(invsum, 10);
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// Alternative way of accessing a vector:
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ByteBuffer ibb = monster.inventoryAsByteBuffer();
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invsum = 0;
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while (ibb.position() < ibb.limit())
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invsum += ibb.get();
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TestEq(invsum, 10);
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Test test_0 = monster.test4(0);
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Test test_1 = monster.test4(1);
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TestEq(monster.test4Length(), 2);
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TestEq(test_0.a() + test_0.b() + test_1.a() + test_1.b(), 100);
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TestEq(monster.testarrayofstringLength(), 2);
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TestEq(monster.testarrayofstring(0),"test1");
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TestEq(monster.testarrayofstring(1),"test2");
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TestEq(monster.testbool(), false);
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}
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// this method checks additional fields not present in the binary buffer read from file
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// these new tests are performed on top of the regular tests
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static void TestExtendedBuffer(ByteBuffer bb) {
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TestBuffer(bb);
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Monster monster = Monster.getRootAsMonster(bb);
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TestEq(monster.testhashu32Fnv1(), Integer.MAX_VALUE + 1L);
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}
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static void TestNamespaceNesting() {
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// reference / manipulate these to verify compilation
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FlatBufferBuilder fbb = new FlatBufferBuilder(1);
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TableInNestedNS.startTableInNestedNS(fbb);
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TableInNestedNS.addFoo(fbb, 1234);
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int nestedTableOff = TableInNestedNS.endTableInNestedNS(fbb);
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TableInFirstNS.startTableInFirstNS(fbb);
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TableInFirstNS.addFooTable(fbb, nestedTableOff);
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int off = TableInFirstNS.endTableInFirstNS(fbb);
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}
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static void TestNestedFlatBuffer() {
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final String nestedMonsterName = "NestedMonsterName";
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final short nestedMonsterHp = 600;
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final short nestedMonsterMana = 1024;
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FlatBufferBuilder fbb1 = new FlatBufferBuilder(16);
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int str1 = fbb1.createString(nestedMonsterName);
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Monster.startMonster(fbb1);
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Monster.addName(fbb1, str1);
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Monster.addHp(fbb1, nestedMonsterHp);
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Monster.addMana(fbb1, nestedMonsterMana);
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int monster1 = Monster.endMonster(fbb1);
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Monster.finishMonsterBuffer(fbb1, monster1);
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byte[] fbb1Bytes = fbb1.sizedByteArray();
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fbb1 = null;
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FlatBufferBuilder fbb2 = new FlatBufferBuilder(16);
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int str2 = fbb2.createString("My Monster");
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int nestedBuffer = Monster.createTestnestedflatbufferVector(fbb2, fbb1Bytes);
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Monster.startMonster(fbb2);
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Monster.addName(fbb2, str2);
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Monster.addHp(fbb2, (short)50);
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Monster.addMana(fbb2, (short)32);
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Monster.addTestnestedflatbuffer(fbb2, nestedBuffer);
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int monster = Monster.endMonster(fbb2);
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Monster.finishMonsterBuffer(fbb2, monster);
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// Now test the data extracted from the nested buffer
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Monster mons = Monster.getRootAsMonster(fbb2.dataBuffer());
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Monster nestedMonster = mons.testnestedflatbufferAsMonster();
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TestEq(nestedMonsterMana, nestedMonster.mana());
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TestEq(nestedMonsterHp, nestedMonster.hp());
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TestEq(nestedMonsterName, nestedMonster.name());
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}
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static void TestCreateByteVector() {
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FlatBufferBuilder fbb = new FlatBufferBuilder(16);
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int str = fbb.createString("MyMonster");
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byte[] inventory = new byte[] { 0, 1, 2, 3, 4 };
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int vec = fbb.createByteVector(inventory);
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Monster.startMonster(fbb);
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Monster.addInventory(fbb, vec);
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Monster.addName(fbb, str);
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int monster1 = Monster.endMonster(fbb);
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Monster.finishMonsterBuffer(fbb, monster1);
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Monster monsterObject = Monster.getRootAsMonster(fbb.dataBuffer());
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TestEq(monsterObject.inventory(1), (int)inventory[1]);
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TestEq(monsterObject.inventoryLength(), inventory.length);
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TestEq(ByteBuffer.wrap(inventory), monsterObject.inventoryAsByteBuffer());
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}
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static void TestCreateUninitializedVector() {
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FlatBufferBuilder fbb = new FlatBufferBuilder(16);
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int str = fbb.createString("MyMonster");
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byte[] inventory = new byte[] { 0, 1, 2, 3, 4 };
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ByteBuffer bb = fbb.createUnintializedVector(1, inventory.length, 1);
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for (byte i:inventory) {
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bb.put(i);
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}
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int vec = fbb.endVector();
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Monster.startMonster(fbb);
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Monster.addInventory(fbb, vec);
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Monster.addName(fbb, str);
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int monster1 = Monster.endMonster(fbb);
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Monster.finishMonsterBuffer(fbb, monster1);
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Monster monsterObject = Monster.getRootAsMonster(fbb.dataBuffer());
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TestEq(monsterObject.inventory(1), (int)inventory[1]);
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TestEq(monsterObject.inventoryLength(), inventory.length);
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TestEq(ByteBuffer.wrap(inventory), monsterObject.inventoryAsByteBuffer());
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}
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static void TestByteBufferFactory() {
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final class MappedByteBufferFactory implements FlatBufferBuilder.ByteBufferFactory {
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@Override
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public ByteBuffer newByteBuffer(int capacity) {
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ByteBuffer bb;
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try {
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bb = new RandomAccessFile("javatest.bin", "rw").getChannel().map(FileChannel.MapMode.READ_WRITE, 0, capacity).order(ByteOrder.LITTLE_ENDIAN);
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} catch(Throwable e) {
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System.out.println("FlatBuffers test: couldn't map ByteBuffer to a file");
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bb = null;
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}
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return bb;
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}
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}
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FlatBufferBuilder fbb = new FlatBufferBuilder(1, new MappedByteBufferFactory());
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TestBuilderBasics(fbb);
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}
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static void TestSizedInputStream() {
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// Test on default FlatBufferBuilder that uses HeapByteBuffer
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FlatBufferBuilder fbb = new FlatBufferBuilder(1);
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TestBuilderBasics(fbb);
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InputStream in = fbb.sizedInputStream();
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byte[] array = fbb.sizedByteArray();
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int count = 0;
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int currentVal = 0;
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while (currentVal != -1 && count < array.length) {
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try {
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currentVal = in.read();
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} catch(java.io.IOException e) {
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System.out.println("FlatBuffers test: couldn't read from InputStream");
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return;
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}
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TestEq((byte)currentVal, array[count]);
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count++;
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}
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TestEq(count, array.length);
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}
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static void TestBuilderBasics(FlatBufferBuilder fbb) {
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int[] names = {fbb.createString("Frodo"), fbb.createString("Barney"), fbb.createString("Wilma")};
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int[] off = new int[3];
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Monster.startMonster(fbb);
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Monster.addName(fbb, names[0]);
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off[0] = Monster.endMonster(fbb);
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Monster.startMonster(fbb);
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Monster.addName(fbb, names[1]);
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off[1] = Monster.endMonster(fbb);
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Monster.startMonster(fbb);
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Monster.addName(fbb, names[2]);
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off[2] = Monster.endMonster(fbb);
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int sortMons = fbb.createSortedVectorOfTables(new Monster(), off);
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// We set up the same values as monsterdata.json:
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int str = fbb.createString("MyMonster");
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int inv = Monster.createInventoryVector(fbb, new byte[] { 0, 1, 2, 3, 4 });
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int fred = fbb.createString("Fred");
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Monster.startMonster(fbb);
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Monster.addName(fbb, fred);
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int mon2 = Monster.endMonster(fbb);
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Monster.startTest4Vector(fbb, 2);
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Test.createTest(fbb, (short)10, (byte)20);
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Test.createTest(fbb, (short)30, (byte)40);
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int test4 = fbb.endVector();
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int testArrayOfString = Monster.createTestarrayofstringVector(fbb, new int[] {
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fbb.createString("test1"),
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fbb.createString("test2")
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});
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Monster.startMonster(fbb);
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Monster.addPos(fbb, Vec3.createVec3(fbb, 1.0f, 2.0f, 3.0f, 3.0,
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Color.Green, (short)5, (byte)6));
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Monster.addHp(fbb, (short)80);
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Monster.addName(fbb, str);
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Monster.addInventory(fbb, inv);
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Monster.addTestType(fbb, (byte)Any.Monster);
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Monster.addTest(fbb, mon2);
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Monster.addTest4(fbb, test4);
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Monster.addTestarrayofstring(fbb, testArrayOfString);
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Monster.addTestbool(fbb, false);
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Monster.addTesthashu32Fnv1(fbb, Integer.MAX_VALUE + 1L);
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Monster.addTestarrayoftables(fbb, sortMons);
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int mon = Monster.endMonster(fbb);
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Monster.finishMonsterBuffer(fbb, mon);
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// Write the result to a file for debugging purposes:
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// Note that the binaries are not necessarily identical, since the JSON
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// parser may serialize in a slightly different order than the above
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// Java code. They are functionally equivalent though.
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try {
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FileChannel fc = new FileOutputStream("monsterdata_java_wire.mon").getChannel();
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fc.write(fbb.dataBuffer().duplicate());
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fc.close();
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} catch(java.io.IOException e) {
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System.out.println("FlatBuffers test: couldn't write file");
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return;
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}
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// Test it:
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TestExtendedBuffer(fbb.dataBuffer());
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// Make sure it also works with read only ByteBuffers. This is slower,
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// since creating strings incurs an additional copy
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// (see Table.__string).
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TestExtendedBuffer(fbb.dataBuffer().asReadOnlyBuffer());
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TestEnums();
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//Attempt to mutate Monster fields and check whether the buffer has been mutated properly
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// revert to original values after testing
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Monster monster = Monster.getRootAsMonster(fbb.dataBuffer());
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// mana is optional and does not exist in the buffer so the mutation should fail
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// the mana field should retain its default value
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TestEq(monster.mutateMana((short)10), false);
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TestEq(monster.mana(), (short)150);
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// Accessing a vector of sorted by the key tables
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TestEq(monster.testarrayoftables(0).name(), "Barney");
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TestEq(monster.testarrayoftables(1).name(), "Frodo");
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TestEq(monster.testarrayoftables(2).name(), "Wilma");
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// Example of searching for a table by the key
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TestEq(monster.testarrayoftablesByKey("Frodo").name(), "Frodo");
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TestEq(monster.testarrayoftablesByKey("Barney").name(), "Barney");
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TestEq(monster.testarrayoftablesByKey("Wilma").name(), "Wilma");
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// testType is an existing field and mutating it should succeed
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TestEq(monster.testType(), (byte)Any.Monster);
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TestEq(monster.mutateTestType(Any.NONE), true);
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TestEq(monster.testType(), (byte)Any.NONE);
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TestEq(monster.mutateTestType(Any.Monster), true);
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TestEq(monster.testType(), (byte)Any.Monster);
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//mutate the inventory vector
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TestEq(monster.mutateInventory(0, 1), true);
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TestEq(monster.mutateInventory(1, 2), true);
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TestEq(monster.mutateInventory(2, 3), true);
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TestEq(monster.mutateInventory(3, 4), true);
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TestEq(monster.mutateInventory(4, 5), true);
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for (int i = 0; i < monster.inventoryLength(); i++) {
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TestEq(monster.inventory(i), i + 1);
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}
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//reverse mutation
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TestEq(monster.mutateInventory(0, 0), true);
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TestEq(monster.mutateInventory(1, 1), true);
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TestEq(monster.mutateInventory(2, 2), true);
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TestEq(monster.mutateInventory(3, 3), true);
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TestEq(monster.mutateInventory(4, 4), true);
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// get a struct field and edit one of its fields
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Vec3 pos = monster.pos();
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TestEq(pos.x(), 1.0f);
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pos.mutateX(55.0f);
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TestEq(pos.x(), 55.0f);
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pos.mutateX(1.0f);
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TestEq(pos.x(), 1.0f);
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}
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static <T> void TestEq(T a, T b) {
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if (!a.equals(b)) {
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System.out.println("" + a.getClass().getName() + " " + b.getClass().getName());
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System.out.println("FlatBuffers test FAILED: \'" + a + "\' != \'" + b + "\'");
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assert false;
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System.exit(1);
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}
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}
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}
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