### Summary
Adds `XInRangeByDistance` and `XInBoundsByDistance` methods to `Map.cs`:
**Item Distance Enumeration:**
```cs
ItemDistanceEnumerable<Item> GetItemsInRangeByDistance(Point3D p);
ItemDistanceEnumerable<Item> GetItemsInRangeByDistance(Point3D p, int range);
ItemDistanceEnumerable<T> GetItemsInRangeByDistance<T>(Point3D p) where T : Item;
ItemDistanceEnumerable<T> GetItemsInRangeByDistance<T>(Point3D p, int range) where T : Item;
ItemDistanceEnumerable<Item> GetItemsInRangeByDistance(Point2D p);
ItemDistanceEnumerable<Item> GetItemsInRangeByDistance(Point2D p, int range);
ItemDistanceEnumerable<T> GetItemsInRangeByDistance<T>(Point2D p) where T : Item;
ItemDistanceEnumerable<T> GetItemsInRangeByDistance<T>(Point2D p, int range) where T : Item;
ItemDistanceEnumerable<Item> GetItemsInRangeByDistance(int x, int y, int range);
ItemDistanceEnumerable<T> GetItemsInRangeByDistance<T>(int x, int y, int range) where T : Item;
ItemDistanceEnumerable<Item> GetItemsInBoundsByDistance(Rectangle2D bounds, , bool makeBoundsInclusive = false);
ItemDistanceEnumerable<T> GetItemsInBoundsByDistance<T>(Rectangle2D bounds, bool makeBoundsInclusive = false) where T : Item;
```
**Mobile Distance Enumeration:**
```cs
MobileDistanceEnumerable<Mobile> GetMobilesInRangeByDistance(Point3D p);
MobileDistanceEnumerable<Mobile> GetMobilesInRangeByDistance(Point3D p, int range);
MobileDistanceEnumerable<T> GetMobilesInRangeByDistance<T>(Point3D p) where T : Mobile;
MobileDistanceEnumerable<T> GetMobilesInRangeByDistance<T>(Point3D p, int range) where T : Mobile;
MobileDistanceEnumerable<Mobile> GetMobilesInRangeByDistance(Point2D p);
MobileDistanceEnumerable<Mobile> GetMobilesInRangeByDistance(Point2D p, int range);
MobileDistanceEnumerable<T> GetMobilesInRangeByDistance<T>(Point2D p) where T : Mobile;
MobileDistanceEnumerable<T> GetMobilesInRangeByDistance<T>(Point2D p, int range) where T : Mobile;
MobileDistanceEnumerable<Mobile> GetMobilesInRangeByDistance(int x, int y, int range);
MobileDistanceEnumerable<T> GetMobilesInRangeByDistance<T>(int x, int y, int range) where T : Mobile;
MobileDistanceEnumerable<Mobile> GetMobilesInBoundsByDistance(Rectangle2D bounds, bool makeBoundsInclusive = false);
MobileDistanceEnumerable<T> GetMobilesInBoundsByDistance<T>(Rectangle2D bounds, bool makeBoundsInclusive = false) where T : Mobile;
```
**Client Distance Enumeration:**
```cs
ClientDistanceEnumerable GetClientsInRangeByDistance(Point3D p);
ClientDistanceEnumerable GetClientsInRangeByDistance(Point3D p, int range);
ClientDistanceEnumerable GetClientsInRangeByDistance(Point2D p);
ClientDistanceEnumerable GetClientsInRangeByDistance(Point2D p, int range);
ClientDistanceEnumerable GetClientsInRangeByDistance(int x, int y, int range);
ClientDistanceEnumerable GetClientsInBoundsByDistance(Rectangle2D bounds, bool makeBoundsInclusive = false);
```
**Example Usage:**
How to use `minDistance` to terminate early when all subsequent mobiles in the iteration will be at an increasing min distance.
```csharp
var playerLocation = player.Location;
const int maxRange = 100;
const int maxMobiles = 12;
var closestMobiles = new SortedSet<Mobile>(Comparer<Mobile>.Create((x, y) =>
{
var distX = x.GetDistanceToSqrt(playerLocation);
var distY = y.GetDistanceToSqrt(playerLocation);
int result = distX.CompareTo(distY);
if (result == 0)
{
result = (x?.Serial ?? Serial.MinusOne).CompareTo(y?.Serial ?? Serial.MinusOne);
}
return result;
}));
int lastMinDistance = 0;
foreach (var (mobile, minDistance) in map.GetMobilesInRangeByDistance(playerLocation, maxRange))
{
// Stop if we have enough and distance starts increasing
if (closestMobiles.Count >= maxMobiles && minDistance > lastMinDistance)
{
break;
}
closestMobiles.Add(mobile);
lastMinDistance = minDistance;
}
// Results are already ordered by proximity
foreach (var mobile in closestMobiles)
{
var actualDistance = mobile.GetDistanceToSqrt(playerLocation);
Console.WriteLine($"{mobile.Name}: ActualDist={actualDistance:F2}");
}
```
484 lines
13 KiB
C#
484 lines
13 KiB
C#
using System;
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using System.Collections.Generic;
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using Server.Items;
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using Xunit;
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namespace Server.Tests.Tests.Maps;
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[Collection("Sequential Server Tests")]
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public class ItemEnumeratorTests
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{
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[Fact]
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public void ItemEnumerator_FiltersByBoundsAndOrder()
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{
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var map = Map.Felucca;
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var rect = new Rectangle2D(100, 100, 32, 32);
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var items = new Item[3];
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try
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{
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items[0] = CreateItem(map, new Point3D(105, 105, 0));
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items[1] = CreateItem(map, new Point3D(130, 130, 0));
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items[2] = CreateItem(map, new Point3D(90, 90, 0));
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var found = new List<Item>();
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foreach (var item in map.GetItemsInBounds<Item>(rect))
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{
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found.Add(item);
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}
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Assert.Equal(2, found.Count);
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Assert.All(found, item => Assert.True(rect.Contains(item.Location)));
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Assert.Equal(new[] { items[0], items[1] }, found);
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}
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finally
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{
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DeleteAll(items);
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}
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}
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[Fact]
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public void ItemEnumerator_DeletedItemsAreSkipped()
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{
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var map = Map.Felucca;
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var rect = new Rectangle2D(200, 200, 16, 16);
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var items = new Item[3];
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try
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{
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items[0] = CreateItem(map, new Point3D(205, 205, 0));
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items[1] = CreateItem(map, new Point3D(206, 205, 0));
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items[2] = CreateItem(map, new Point3D(207, 205, 0));
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items[1].Delete();
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var found = new List<Item>();
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foreach (var item in map.GetItemsInBounds<Item>(rect))
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{
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found.Add(item);
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}
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Assert.Equal(new[] { items[0], items[2] }, found);
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}
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finally
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{
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DeleteAll(items);
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}
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}
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[Fact]
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public void ItemEnumerator_ItemsWithParentAreSkipped()
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{
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var map = Map.Felucca;
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var rect = new Rectangle2D(250, 250, 16, 16);
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var items = new Item[2];
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var container = new Container(0xE75);
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try
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{
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items[0] = CreateItem(map, new Point3D(255, 255, 0));
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items[1] = CreateItem(map, new Point3D(256, 255, 0));
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container.MoveToWorld(new Point3D(255, 255, 0), map);
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// Move items[1] into the container - it should be skipped
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items[1].Parent = container;
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var found = new List<Item>();
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foreach (var item in map.GetItemsInBounds<Item>(rect))
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{
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found.Add(item);
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}
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// Should only find items[0] and container, not items[1] (which has a parent)
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Assert.Equal(2, found.Count);
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Assert.Contains(items[0], found);
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Assert.Contains(container, found);
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Assert.DoesNotContain(items[1], found);
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}
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finally
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{
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DeleteAll(items);
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container?.Delete();
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}
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}
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[Fact]
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public void ItemEnumerator_RespectsMakeBoundsInclusiveFlag()
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{
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var map = Map.Felucca;
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var rect = new Rectangle2D(300, 300, 1, 1);
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var items = new Item[1];
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try
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{
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items[0] = CreateItem(map, new Point3D(301, 301, 0));
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var enumerator = map.GetItemsInBounds<Item>(rect, makeBoundsInclusive: true).GetEnumerator();
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Assert.True(enumerator.MoveNext());
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Assert.Equal(items[0], enumerator.Current);
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}
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finally
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{
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DeleteAll(items);
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}
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}
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[Fact]
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public void ItemEnumerator_MapNullYieldsEmpty()
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{
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var enumerator = new Map.ItemEnumerator<Item>(null, Rectangle2D.Empty, false);
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Assert.False(enumerator.MoveNext());
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}
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[Fact]
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public void ItemEnumerator_ThrowsOnVersionChange()
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{
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var map = Map.Felucca;
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var rect = new Rectangle2D(400, 400, 16, 16);
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var items = new[]
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{
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CreateItem(map, new Point3D(405, 405, 0)),
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CreateItem(map, new Point3D(406, 405, 0))
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};
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try
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{
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var enumerator = map.GetItemsInBounds<Item>(rect).GetEnumerator();
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Assert.True(enumerator.MoveNext());
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items[1].Delete();
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// Ref structs cannot be captured in lambdas, so we test the exception directly
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var exceptionThrown = false;
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try
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{
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enumerator.MoveNext();
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}
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catch (InvalidOperationException)
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{
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exceptionThrown = true;
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}
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Assert.True(exceptionThrown, "Expected InvalidOperationException when collection version changes");
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}
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finally
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{
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DeleteAll(items);
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}
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}
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[Fact]
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public void ItemEnumerator_StepsAcrossSectors()
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{
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var map = Map.Felucca;
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var rect = new Rectangle2D(500, 500, Map.SectorSize * 2, Map.SectorSize * 2);
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var items = new[]
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{
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CreateItem(map, new Point3D(rect.X + 1, rect.Y + 1, 0)),
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CreateItem(map, new Point3D(rect.X + Map.SectorSize + 1, rect.Y + 1, 0)),
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CreateItem(map, new Point3D(rect.X + Map.SectorSize + 1, rect.Y + Map.SectorSize + 1, 0))
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};
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try
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{
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var result = new List<Item>();
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foreach (var item in map.GetItemsInBounds<Item>(rect))
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{
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result.Add(item);
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}
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Assert.Equal(items, result);
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}
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finally
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{
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DeleteAll(items);
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}
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}
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[Fact]
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public void ItemEnumerator_MapBoundsAreClamped()
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{
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var map = Map.Felucca;
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var width = map.Width;
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var height = map.Height;
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var rect = new Rectangle2D(width - Map.SectorSize - 2, height - Map.SectorSize - 2, Map.SectorSize * 2, Map.SectorSize * 2);
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var items = new[]
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{
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CreateItem(map, new Point3D(width - 2, height - 2, 0))
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};
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try
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{
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var enumerator = map.GetItemsInBounds<Item>(rect).GetEnumerator();
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Assert.True(enumerator.MoveNext());
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Assert.Equal(items[0], enumerator.Current);
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Assert.False(enumerator.MoveNext());
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}
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finally
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{
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DeleteAll(items);
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}
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}
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[Fact]
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public void ItemAtEnumerator_FiltersExactLocation()
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{
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var map = Map.Felucca;
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var location = new Point3D(600, 600, 0);
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var items = new Item[3];
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try
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{
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items[0] = CreateItem(map, location);
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items[1] = CreateItem(map, location);
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items[2] = CreateItem(map, new Point3D(601, 600, 0)); // Different location
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var found = new List<Item>();
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foreach (var item in map.GetItemsAt<Item>(location))
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{
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found.Add(item);
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}
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Assert.Equal(2, found.Count);
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Assert.Contains(items[0], found);
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Assert.Contains(items[1], found);
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Assert.DoesNotContain(items[2], found);
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}
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finally
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{
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DeleteAll(items);
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}
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}
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[Fact]
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public void ItemAtEnumerator_DeletedItemsAreSkipped()
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{
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var map = Map.Felucca;
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var location = new Point3D(650, 650, 0);
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var items = new Item[3];
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try
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{
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items[0] = CreateItem(map, location);
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items[1] = CreateItem(map, location);
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items[2] = CreateItem(map, location);
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items[1].Delete();
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var found = new List<Item>();
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foreach (var item in map.GetItemsAt<Item>(location))
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{
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found.Add(item);
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}
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Assert.Equal(new[] { items[0], items[2] }, found);
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}
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finally
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{
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DeleteAll(items);
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}
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}
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[Fact]
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public void ItemAtEnumerator_ItemsWithParentAreSkipped()
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{
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var map = Map.Felucca;
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var location = new Point3D(700, 700, 0);
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var items = new Item[2];
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var container = new Container(0xE75);
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try
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{
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items[0] = CreateItem(map, location);
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items[1] = CreateItem(map, location);
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container.MoveToWorld(location, map);
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// Move items[1] into the container - it should be skipped
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items[1].Parent = container;
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var found = new List<Item>();
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foreach (var item in map.GetItemsAt<Item>(location))
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{
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found.Add(item);
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}
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Assert.Equal(2, found.Count);
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Assert.Contains(items[0], found);
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Assert.Contains(container, found);
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Assert.DoesNotContain(items[1], found);
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}
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finally
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{
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DeleteAll(items);
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container?.Delete();
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}
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}
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[Fact]
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public void ItemAtEnumerator_MapNullYieldsEmpty()
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{
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var enumerator = new Map.ItemAtEnumerator<Item>(null, new Point2D(0, 0));
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Assert.False(enumerator.MoveNext());
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}
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[Fact]
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public void ItemAtEnumerator_ThrowsOnVersionChange()
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{
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var map = Map.Felucca;
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var location = new Point3D(750, 750, 0);
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var items = new[]
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{
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CreateItem(map, location),
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CreateItem(map, location)
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};
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try
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{
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var enumerator = map.GetItemsAt<Item>(location).GetEnumerator();
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Assert.True(enumerator.MoveNext());
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items[1].Delete();
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// Ref structs cannot be captured in lambdas, so we test the exception directly
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var exceptionThrown = false;
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try
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{
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enumerator.MoveNext();
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}
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catch (InvalidOperationException)
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{
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exceptionThrown = true;
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}
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Assert.True(exceptionThrown, "Expected InvalidOperationException when collection version changes");
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}
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finally
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{
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DeleteAll(items);
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}
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}
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[Fact]
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public void ItemAtEnumerator_UsesDifferentPoint3DOverloads()
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{
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var map = Map.Felucca;
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var location = new Point3D(800, 800, 5);
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var items = new Item[1];
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try
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{
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items[0] = CreateItem(map, location);
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// Test Point3D overload
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var found1 = new List<Item>();
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foreach (var item in map.GetItemsAt(location))
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{
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found1.Add(item);
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}
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// Test (int, int) overload - should find the same item (Z is ignored)
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var found2 = new List<Item>();
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foreach (var item in map.GetItemsAt(location.X, location.Y))
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{
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found2.Add(item);
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}
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// Test Point2D overload
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var found3 = new List<Item>();
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foreach (var item in map.GetItemsAt(new Point2D(location.X, location.Y)))
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{
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found3.Add(item);
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}
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Assert.Single(found1);
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Assert.Equal(items[0], found1[0]);
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Assert.Equal(found1, found2);
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Assert.Equal(found1, found3);
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}
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finally
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{
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DeleteAll(items);
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}
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}
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[Fact]
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public void ItemEnumerator_ZeroRangeReturnsOnlyCenter()
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{
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var map = Map.Felucca;
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var center = new Point3D(850, 850, 0);
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const int range = 0;
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var items = new Item[2];
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try
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{
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items[0] = CreateItem(map, center); // Exact center
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items[1] = CreateItem(map, new Point3D(851, 850, 0)); // 1 tile away
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var found = new List<Item>();
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foreach (var item in map.GetItemsInRange<Item>(center, range))
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{
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found.Add(item);
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}
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Assert.Single(found);
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Assert.Equal(items[0], found[0]);
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}
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finally
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{
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DeleteAll(items);
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}
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}
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[Fact]
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public void ItemEnumerator_NegativeRangeCreates1x1Bounds()
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{
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var map = Map.Felucca;
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var center = new Point3D(900, 900, 0);
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const int range = -5;
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var items = new Item[2];
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try
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{
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items[0] = CreateItem(map, center);
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items[1] = CreateItem(map, new Point3D(901, 900, 0)); // 1 tile away
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var found = new List<Item>();
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foreach (var item in map.GetItemsInRange<Item>(center, range))
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{
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found.Add(item);
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}
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// With negative range creating a 1x1 bounds, only exact center matches
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Assert.Single(found);
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Assert.Equal(items[0], found[0]);
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}
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finally
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{
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DeleteAll(items);
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}
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}
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private static Item CreateItem(Map map, Point3D location)
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{
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var item = new Item(0x1);
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item.Movable = false;
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item.MoveToWorld(location, map);
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return item;
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}
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private static void DeleteAll(Item[] items)
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{
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for (var i = 0; i < items.Length; i++)
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{
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items[i]?.Delete();
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}
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}
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}
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