rename Tile.TILE_SIZE to Tile.SIZE, while I'm at refactoring
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@@ -591,9 +591,9 @@ public class MapDatabase implements IMapDatabase {
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Tag[] tags = null;
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Tag[] curTags;
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long x = mTile.tileX * Tile.TILE_SIZE;
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long y = mTile.tileY * Tile.TILE_SIZE + Tile.TILE_SIZE;
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long z = Tile.TILE_SIZE << mTile.zoomLevel;
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long x = mTile.tileX * Tile.SIZE;
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long y = mTile.tileY * Tile.SIZE + Tile.SIZE;
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long z = Tile.SIZE << mTile.zoomLevel;
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long dx = (x - (z >> 1));
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long dy = (y - (z >> 1));
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@@ -1055,9 +1055,9 @@ public class MapDatabase implements IMapDatabase {
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private boolean projectToTile(float[] coords, short[] indices) {
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long x = mTile.tileX * Tile.TILE_SIZE;
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long y = mTile.tileY * Tile.TILE_SIZE + Tile.TILE_SIZE;
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long z = Tile.TILE_SIZE << mTile.zoomLevel;
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long x = mTile.tileX * Tile.SIZE;
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long y = mTile.tileY * Tile.SIZE + Tile.SIZE;
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long z = Tile.SIZE << mTile.zoomLevel;
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double divx, divy = 0;
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long dx = (x - (z >> 1));
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@@ -1081,7 +1081,7 @@ public class MapDatabase implements IMapDatabase {
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lon = (float) ((coords[pos]) / divx - dx);
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double sinLat = Math.sin(coords[pos + 1] * PI180);
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lat = (float) (Tile.TILE_SIZE - (Math.log((1.0 + sinLat) / (1.0 - sinLat)) * divy + dy));
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lat = (float) (Tile.SIZE - (Math.log((1.0 + sinLat) / (1.0 - sinLat)) * divy + dy));
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if (cnt != 0) {
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// drop small distance intermediate nodes
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@@ -31,7 +31,7 @@ public class Projection {
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* @return the longitude value of the tile X number.
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*/
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public static double tileXToLongitude(long tileX, int zoomLevel) {
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return MercatorProjection.pixelXToLongitude(tileX * Tile.TILE_SIZE, zoomLevel);
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return MercatorProjection.pixelXToLongitude(tileX * Tile.SIZE, zoomLevel);
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}
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/**
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@@ -45,7 +45,7 @@ public class Projection {
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* @return the latitude value of the tile Y number.
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*/
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public static double tileYToLatitude(long tileY, int zoomLevel) {
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return MercatorProjection.pixelYToLatitude(tileY * Tile.TILE_SIZE, zoomLevel);
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return MercatorProjection.pixelYToLatitude(tileY * Tile.SIZE, zoomLevel);
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}
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/**
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@@ -86,7 +86,7 @@ public class Projection {
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* @return the tile X number.
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*/
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public static int pixelXToTileX(double pixelX, int zoomLevel) {
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return (int) Math.min(Math.max(pixelX / Tile.TILE_SIZE, 0),
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return (int) Math.min(Math.max(pixelX / Tile.SIZE, 0),
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Math.pow(2, zoomLevel) - 1);
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}
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/**
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@@ -99,7 +99,7 @@ public class Projection {
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* @return the tile Y number.
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*/
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public static int pixelYToTileY(double pixelY, int zoomLevel) {
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return (int) Math.min(Math.max(pixelY / Tile.TILE_SIZE, 0),
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return (int) Math.min(Math.max(pixelY / Tile.SIZE, 0),
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Math.pow(2, zoomLevel) - 1);
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}
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private Projection(){
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@@ -205,7 +205,7 @@ final class RequiredFields {
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static OpenResult readTilePixelSize(ReadBuffer readBuffer, MapFileInfoBuilder mapFileInfoBuilder) {
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// get and check the tile pixel size (2 bytes)
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int tilePixelSize = readBuffer.readShort();
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// if (tilePixelSize != Tile.TILE_SIZE) {
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// if (tilePixelSize != Tile.SIZE) {
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// return new FileOpenResult("unsupported tile pixel size: " + tilePixelSize);
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// }
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mapFileInfoBuilder.tilePixelSize = tilePixelSize;
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