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authorrubidium <rubidium@openttd.org>2010-12-13 15:13:05 +0000
committerrubidium <rubidium@openttd.org>2010-12-13 15:13:05 +0000
commitb20e77be921acc32b5887f9f35ecae8573c588af (patch)
treeab5efe19852fb742a511f9b386f5547875dc5996
parent652e2626010c3cc1a92875ccbaeed61233b1d6fc (diff)
downloadopenttd-b20e77be921acc32b5887f9f35ecae8573c588af.tar.xz
(svn r21499) -Add: diagonal tile iterator. Based on patch by fonsinchen
-rw-r--r--src/tilearea.cpp61
-rw-r--r--src/tilearea_type.h24
2 files changed, 84 insertions, 1 deletions
diff --git a/src/tilearea.cpp b/src/tilearea.cpp
index 7a2d76d70..74f701315 100644
--- a/src/tilearea.cpp
+++ b/src/tilearea.cpp
@@ -104,3 +104,64 @@ void TileArea::ClampToMap()
this->h = min(this->h, MapSizeY() - TileY(this->tile));
}
+DiagonalTileIterator::DiagonalTileIterator(TileIndex corner1, TileIndex corner2) : TileIterator(corner2), base_x(TileX(corner2)), base_y(TileY(corner2)), a_cur(0), b_cur(0)
+{
+ assert(corner1 < MapSize());
+ assert(corner2 < MapSize());
+
+ int dist_x = TileX(corner1) - TileX(corner2);
+ int dist_y = TileY(corner1) - TileY(corner2);
+ this->a_max = dist_x + dist_y;
+ this->b_max = dist_y - dist_x;
+
+ /* Unfortunately we can't find a new base and make all a and b positive because
+ * the new base might be a "flattened" corner where there actually is no single
+ * tile. If we try anyway the result is either inaccurate ("one off" half of the
+ * time) or the code gets much more complex;
+ *
+ * We also need to increment here to have equality as marker for the end of a row or
+ * column. Like that it's shorter than having another if/else in operator++
+ */
+ if (this->a_max > 0) {
+ this->a_max++;
+ } else {
+ this->a_max--;
+ }
+
+ if (this->b_max > 0) {
+ this->b_max++;
+ } else {
+ this->b_max--;
+ }
+}
+
+TileIterator &DiagonalTileIterator::operator++()
+{
+ assert(this->tile != INVALID_TILE);
+
+ do {
+ /* Iterate using the rotated coordinates. */
+ if (this->a_max > 0) {
+ ++this->a_cur;
+ } else {
+ --this->a_cur;
+ }
+ if (this->a_cur == this->a_max) {
+ this->a_cur = 0;
+ if (this->b_max > 0) {
+ ++this->b_cur;
+ } else {
+ --this->b_cur;
+ }
+ }
+
+ /* And convert the coordinates back once we've gone to the next tile. */
+ uint x = this->base_x + (this->a_cur - this->b_cur) / 2;
+ uint y = this->base_y + (this->b_cur + this->a_cur) / 2;
+ /* Prevent wrapping around the map's borders. */
+ this->tile = x >= MapSizeX() || y >= MapSizeY() ? INVALID_TILE : TileXY(x, y);
+ } while (this->tile > MapSize() && this->b_max != this->b_cur);
+
+ if (this->b_max == this->b_cur) this->tile = INVALID_TILE;
+ return *this;
+}
diff --git a/src/tilearea_type.h b/src/tilearea_type.h
index 44a2ba3c2..23813eeb8 100644
--- a/src/tilearea_type.h
+++ b/src/tilearea_type.h
@@ -73,11 +73,12 @@ protected:
{
}
+public:
/** Some compilers really like this. */
virtual ~TileIterator()
{
}
-public:
+
/**
* Get the tile we are currently at.
* @return The tile we are at, or INVALID_TILE when we're done.
@@ -128,6 +129,27 @@ public:
}
};
+/** Iterator to iterate over a diagonal area of the map. */
+class DiagonalTileIterator : public TileIterator {
+private:
+ uint base_x, base_y; ///< The base tile x and y coordinates from where the iterating happens.
+ int a_cur, b_cur; ///< The current (rotated) x and y coordinates of the iteration.
+ int a_max, b_max; ///< The (rotated) x and y coordinates of the end of the iteration.
+
+public:
+ /**
+ * Construct the iterator.
+ * @param begin Tile from where to begin iterating.
+ * @param end Tile where to end the iterating.
+ */
+ DiagonalTileIterator(TileIndex begin, TileIndex end);
+
+ /**
+ * Move ourselves to the next tile in the rectange on the map.
+ */
+ TileIterator& operator ++();
+};
+
/**
* A loop which iterates over the tiles of a TileArea.
* @param var The name of the variable which contains the current tile.