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280 lines
12 KiB
C#
280 lines
12 KiB
C#
// Copyright (c) ppy Pty Ltd <contact@ppy.sh>. Licensed under the MIT Licence.
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// See the LICENCE file in the repository root for full licence text.
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using System;
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using System.Collections.Generic;
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using System.IO;
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using System.Linq;
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using System.Reflection;
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using System.Threading.Tasks;
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using Newtonsoft.Json;
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using NUnit.Framework;
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using osu.Framework.Audio.Track;
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using osu.Framework.Extensions;
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using osu.Framework.Extensions.ObjectExtensions;
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using osu.Framework.Graphics.Textures;
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using osu.Game.Beatmaps;
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using osu.Game.Beatmaps.Formats;
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using osu.Game.IO;
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using osu.Game.IO.Serialization;
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using osu.Game.Rulesets;
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using osu.Game.Rulesets.Mods;
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using osu.Game.Rulesets.Objects;
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using osu.Game.Skinning;
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namespace osu.Game.Tests.Beatmaps
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{
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[TestFixture]
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public abstract class BeatmapConversionTest<TConvertMapping, TConvertValue>
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where TConvertMapping : ConvertMapping<TConvertValue>, IEquatable<TConvertMapping>, new()
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where TConvertValue : IEquatable<TConvertValue>
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{
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private const string resource_namespace = "Testing.Beatmaps";
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private const string expected_conversion_suffix = "-expected-conversion";
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protected abstract string ResourceAssembly { get; }
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protected void Test(string name, params Type[] mods)
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{
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var ourResult = convert(name, mods.Select(m => (Mod)Activator.CreateInstance(m)).ToArray());
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var expectedResult = read(name);
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foreach (var m in ourResult.Mappings)
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m.PostProcess();
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foreach (var m in expectedResult.Mappings)
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m.PostProcess();
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Assert.Multiple(() =>
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{
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int mappingCounter = 0;
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while (true)
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{
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if (mappingCounter >= ourResult.Mappings.Count && mappingCounter >= expectedResult.Mappings.Count)
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break;
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if (mappingCounter >= ourResult.Mappings.Count)
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Assert.Fail($"A conversion did not generate any hitobjects, but should have, for hitobject at time: {expectedResult.Mappings[mappingCounter].StartTime}\n");
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else if (mappingCounter >= expectedResult.Mappings.Count)
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Assert.Fail($"A conversion generated hitobjects, but should not have, for hitobject at time: {ourResult.Mappings[mappingCounter].StartTime}\n");
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else if (!expectedResult.Mappings[mappingCounter].Equals(ourResult.Mappings[mappingCounter]))
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{
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var expectedMapping = expectedResult.Mappings[mappingCounter];
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var ourMapping = ourResult.Mappings[mappingCounter];
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Assert.Fail($"The conversion mapping differed for object at time {expectedMapping.StartTime}:\n"
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+ $"Expected {JsonConvert.SerializeObject(expectedMapping)}\n"
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+ $"Received: {JsonConvert.SerializeObject(ourMapping)}\n");
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}
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else
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{
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var ourMapping = ourResult.Mappings[mappingCounter];
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var expectedMapping = expectedResult.Mappings[mappingCounter];
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Assert.Multiple(() =>
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{
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int objectCounter = 0;
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while (true)
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{
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if (objectCounter >= ourMapping.Objects.Count && objectCounter >= expectedMapping.Objects.Count)
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break;
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if (objectCounter >= ourMapping.Objects.Count)
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{
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Assert.Fail($"The conversion did not generate a hitobject, but should have, for hitobject at time: {expectedMapping.StartTime}:\n"
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+ $"Expected: {JsonConvert.SerializeObject(expectedMapping.Objects[objectCounter])}\n");
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}
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else if (objectCounter >= expectedMapping.Objects.Count)
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{
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Assert.Fail($"The conversion generated a hitobject, but should not have, for hitobject at time: {ourMapping.StartTime}:\n"
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+ $"Received: {JsonConvert.SerializeObject(ourMapping.Objects[objectCounter])}\n");
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}
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else if (!expectedMapping.Objects[objectCounter].Equals(ourMapping.Objects[objectCounter]))
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{
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Assert.Fail($"The conversion generated differing hitobjects for object at time: {expectedMapping.StartTime}:\n"
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+ $"Expected: {JsonConvert.SerializeObject(expectedMapping.Objects[objectCounter])}\n"
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+ $"Received: {JsonConvert.SerializeObject(ourMapping.Objects[objectCounter])}\n");
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}
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objectCounter++;
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}
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});
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}
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mappingCounter++;
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}
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});
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}
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private ConvertResult convert(string name, Mod[] mods)
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{
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var conversionTask = Task.Factory.StartNew(() =>
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{
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var beatmap = GetBeatmap(name);
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string beforeConversion = beatmap.Serialize();
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var converterResult = new Dictionary<HitObject, IEnumerable<HitObject>>();
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var working = new ConversionWorkingBeatmap(beatmap)
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{
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ConversionGenerated = (o, r, c) =>
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{
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converterResult[o] = r;
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OnConversionGenerated(o, r, c);
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}
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};
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working.GetPlayableBeatmap(CreateRuleset().RulesetInfo, mods);
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string afterConversion = beatmap.Serialize();
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Assert.AreEqual(beforeConversion, afterConversion, "Conversion altered original beatmap");
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return new ConvertResult
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{
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Mappings = converterResult.Select(r =>
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{
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var mapping = CreateConvertMapping(r.Key);
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mapping.StartTime = r.Key.StartTime;
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mapping.Objects.AddRange(r.Value.SelectMany(CreateConvertValue));
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return mapping;
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}).ToList()
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};
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}, TaskCreationOptions.LongRunning);
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if (!conversionTask.Wait(10000))
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Assert.Fail("Conversion timed out");
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return conversionTask.GetResultSafely();
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}
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protected virtual void OnConversionGenerated(HitObject original, IEnumerable<HitObject> result, IBeatmapConverter beatmapConverter)
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{
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}
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private ConvertResult read(string name)
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{
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using (var resStream = openResource($"{resource_namespace}.{name}{expected_conversion_suffix}.json"))
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using (var reader = new StreamReader(resStream))
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{
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string contents = reader.ReadToEnd();
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return JsonConvert.DeserializeObject<ConvertResult>(contents);
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}
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}
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public IBeatmap GetBeatmap(string name)
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{
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using (var resStream = openResource($"{resource_namespace}.{name}.osu"))
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using (var stream = new LineBufferedReader(resStream))
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{
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var decoder = Decoder.GetDecoder<Beatmap>(stream);
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((LegacyBeatmapDecoder)decoder).ApplyOffsets = false;
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var beatmap = decoder.Decode(stream);
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var rulesetInstance = CreateRuleset();
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beatmap.BeatmapInfo.Ruleset = beatmap.BeatmapInfo.Ruleset.OnlineID == rulesetInstance.RulesetInfo.OnlineID ? rulesetInstance.RulesetInfo : new RulesetInfo();
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return beatmap;
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}
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}
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private Stream openResource(string name)
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{
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string localPath = Path.GetDirectoryName(Uri.UnescapeDataString(new UriBuilder(Assembly.GetExecutingAssembly().CodeBase).Path)).AsNonNull();
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return Assembly.LoadFrom(Path.Combine(localPath, $"{ResourceAssembly}.dll")).GetManifestResourceStream($@"{ResourceAssembly}.Resources.{name}");
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}
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/// <summary>
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/// Creates the conversion mapping for a <see cref="HitObject"/>. A conversion mapping stores important information about the conversion process.
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/// This is generated _after_ the <see cref="HitObject"/> has been converted.
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/// <para>
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/// This should be used to validate the integrity of the conversion process after a conversion has occurred.
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/// </para>
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/// </summary>
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protected virtual TConvertMapping CreateConvertMapping(HitObject source) => new TConvertMapping();
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/// <summary>
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/// Creates the conversion value for a <see cref="HitObject"/>. A conversion value stores information about the converted <see cref="HitObject"/>.
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/// <para>
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/// This should be used to validate the integrity of the converted <see cref="HitObject"/>.
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/// </para>
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/// </summary>
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/// <param name="hitObject">The converted <see cref="HitObject"/>.</param>
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protected abstract IEnumerable<TConvertValue> CreateConvertValue(HitObject hitObject);
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/// <summary>
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/// Creates the <see cref="Ruleset"/> applicable to this <see cref="BeatmapConversionTest{TConvertMapping,TConvertValue}"/>.
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/// </summary>
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protected abstract Ruleset CreateRuleset();
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private class ConvertResult
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{
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[JsonProperty]
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public List<TConvertMapping> Mappings = new List<TConvertMapping>();
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}
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private class ConversionWorkingBeatmap : WorkingBeatmap
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{
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public Action<HitObject, IEnumerable<HitObject>, IBeatmapConverter> ConversionGenerated;
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private readonly IBeatmap beatmap;
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public ConversionWorkingBeatmap(IBeatmap beatmap)
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: base(beatmap.BeatmapInfo, null)
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{
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this.beatmap = beatmap;
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}
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protected override IBeatmap GetBeatmap() => beatmap;
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protected override Texture GetBackground() => throw new NotImplementedException();
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protected override Track GetBeatmapTrack() => throw new NotImplementedException();
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protected internal override ISkin GetSkin() => throw new NotImplementedException();
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public override Stream GetStream(string storagePath) => throw new NotImplementedException();
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protected override IBeatmapConverter CreateBeatmapConverter(IBeatmap beatmap, Ruleset ruleset)
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{
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var converter = base.CreateBeatmapConverter(beatmap, ruleset);
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converter.ObjectConverted += (orig, converted) => ConversionGenerated?.Invoke(orig, converted, converter);
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return converter;
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}
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}
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}
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public abstract class BeatmapConversionTest<TConvertValue> : BeatmapConversionTest<ConvertMapping<TConvertValue>, TConvertValue>
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where TConvertValue : IEquatable<TConvertValue>
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{
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}
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public class ConvertMapping<TConvertValue> : IEquatable<ConvertMapping<TConvertValue>>
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where TConvertValue : IEquatable<TConvertValue>
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{
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[JsonProperty]
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public double StartTime;
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[JsonIgnore]
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public List<TConvertValue> Objects = new List<TConvertValue>();
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[JsonProperty("Objects")]
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private List<TConvertValue> setObjects
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{
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set => Objects = value;
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}
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/// <summary>
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/// Invoked after this <see cref="ConvertMapping{TConvertValue}"/> is populated to post-process the contained data.
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/// </summary>
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public virtual void PostProcess()
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{
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}
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public virtual bool Equals(ConvertMapping<TConvertValue> other) => StartTime == other?.StartTime;
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}
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}
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