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RGBTable.java
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59 lines (52 loc) · 3.74 KB
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// automatically generated by the FlatBuffers compiler, do not modify
package battlecode.schema;
import java.nio.*;
import java.lang.*;
import java.util.*;
import com.google.flatbuffers.*;
@SuppressWarnings("unused")
/**
* A table of RGB values.
*/
public final class RGBTable extends Table {
public static RGBTable getRootAsRGBTable(ByteBuffer _bb) { return getRootAsRGBTable(_bb, new RGBTable()); }
public static RGBTable getRootAsRGBTable(ByteBuffer _bb, RGBTable obj) { _bb.order(ByteOrder.LITTLE_ENDIAN); return (obj.__assign(_bb.getInt(_bb.position()) + _bb.position(), _bb)); }
public void __init(int _i, ByteBuffer _bb) { bb_pos = _i; bb = _bb; vtable_start = bb_pos - bb.getInt(bb_pos); vtable_size = bb.getShort(vtable_start); }
public RGBTable __assign(int _i, ByteBuffer _bb) { __init(_i, _bb); return this; }
public int red(int j) { int o = __offset(4); return o != 0 ? bb.getInt(__vector(o) + j * 4) : 0; }
public int redLength() { int o = __offset(4); return o != 0 ? __vector_len(o) : 0; }
public ByteBuffer redAsByteBuffer() { return __vector_as_bytebuffer(4, 4); }
public ByteBuffer redInByteBuffer(ByteBuffer _bb) { return __vector_in_bytebuffer(_bb, 4, 4); }
public int green(int j) { int o = __offset(6); return o != 0 ? bb.getInt(__vector(o) + j * 4) : 0; }
public int greenLength() { int o = __offset(6); return o != 0 ? __vector_len(o) : 0; }
public ByteBuffer greenAsByteBuffer() { return __vector_as_bytebuffer(6, 4); }
public ByteBuffer greenInByteBuffer(ByteBuffer _bb) { return __vector_in_bytebuffer(_bb, 6, 4); }
public int blue(int j) { int o = __offset(8); return o != 0 ? bb.getInt(__vector(o) + j * 4) : 0; }
public int blueLength() { int o = __offset(8); return o != 0 ? __vector_len(o) : 0; }
public ByteBuffer blueAsByteBuffer() { return __vector_as_bytebuffer(8, 4); }
public ByteBuffer blueInByteBuffer(ByteBuffer _bb) { return __vector_in_bytebuffer(_bb, 8, 4); }
public static int createRGBTable(FlatBufferBuilder builder,
int redOffset,
int greenOffset,
int blueOffset) {
builder.startObject(3);
RGBTable.addBlue(builder, blueOffset);
RGBTable.addGreen(builder, greenOffset);
RGBTable.addRed(builder, redOffset);
return RGBTable.endRGBTable(builder);
}
public static void startRGBTable(FlatBufferBuilder builder) { builder.startObject(3); }
public static void addRed(FlatBufferBuilder builder, int redOffset) { builder.addOffset(0, redOffset, 0); }
public static int createRedVector(FlatBufferBuilder builder, int[] data) { builder.startVector(4, data.length, 4); for (int i = data.length - 1; i >= 0; i--) builder.addInt(data[i]); return builder.endVector(); }
public static void startRedVector(FlatBufferBuilder builder, int numElems) { builder.startVector(4, numElems, 4); }
public static void addGreen(FlatBufferBuilder builder, int greenOffset) { builder.addOffset(1, greenOffset, 0); }
public static int createGreenVector(FlatBufferBuilder builder, int[] data) { builder.startVector(4, data.length, 4); for (int i = data.length - 1; i >= 0; i--) builder.addInt(data[i]); return builder.endVector(); }
public static void startGreenVector(FlatBufferBuilder builder, int numElems) { builder.startVector(4, numElems, 4); }
public static void addBlue(FlatBufferBuilder builder, int blueOffset) { builder.addOffset(2, blueOffset, 0); }
public static int createBlueVector(FlatBufferBuilder builder, int[] data) { builder.startVector(4, data.length, 4); for (int i = data.length - 1; i >= 0; i--) builder.addInt(data[i]); return builder.endVector(); }
public static void startBlueVector(FlatBufferBuilder builder, int numElems) { builder.startVector(4, numElems, 4); }
public static int endRGBTable(FlatBufferBuilder builder) {
int o = builder.endObject();
return o;
}
}