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// Copyright (c) ppy Pty Ltd <contact@ppy.sh>. Licensed under the MIT Licence.
// See the LICENCE file in the repository root for full licence text.
using System ;
using System.IO ;
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using System.Linq ;
using System.Text ;
using osu.Framework.Extensions ;
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using osu.Framework.Extensions.ObjectExtensions ;
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using osu.Game.Beatmaps ;
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using osu.Game.Beatmaps.Formats ;
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using osu.Game.Extensions ;
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using osu.Game.IO.Legacy ;
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using osu.Game.Replays.Legacy ;
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using osu.Game.Rulesets.Replays ;
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using osu.Game.Rulesets.Replays.Types ;
using SharpCompress.Compressors.LZMA ;
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namespace osu.Game.Scoring.Legacy
{
public class LegacyScoreEncoder
{
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/// <summary>
/// Database version in stable-compatible YYYYMMDD format.
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/// Should be incremented if any changes are made to the format/usage.
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/// </summary>
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public const int LATEST_VERSION = FIRST_LAZER_VERSION ;
/// <summary>
/// The first stable-compatible YYYYMMDD format version given to lazer usage of replays.
/// </summary>
public const int FIRST_LAZER_VERSION = 30000000 ;
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private readonly Score score ;
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private readonly IBeatmap ? beatmap ;
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/// <summary>
/// Create a new score encoder for a specific score.
/// </summary>
/// <param name="score">The score to be encoded.</param>
/// <param name="beatmap">The beatmap used to convert frames for the score. May be null if the frames are already <see cref="LegacyReplayFrame"/>s.</param>
/// <exception cref="ArgumentException"></exception>
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public LegacyScoreEncoder ( Score score , IBeatmap ? beatmap )
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{
this . score = score ;
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this . beatmap = beatmap ;
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if ( beatmap = = null & & ! score . Replay . Frames . All ( f = > f is LegacyReplayFrame ) )
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throw new ArgumentException ( @"Beatmap must be provided if frames are not already legacy frames." , nameof ( beatmap ) ) ;
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if ( ! score . ScoreInfo . Ruleset . IsLegacyRuleset ( ) )
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throw new ArgumentException ( @"Only scores in the osu, taiko, catch, or mania rulesets can be encoded to the legacy score format." , nameof ( score ) ) ;
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}
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public void Encode ( Stream stream )
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{
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using ( SerializationWriter sw = new SerializationWriter ( stream ) )
{
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sw . Write ( ( byte ) ( score . ScoreInfo . Ruleset . OnlineID ) ) ;
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sw . Write ( LATEST_VERSION ) ;
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sw . Write ( score . ScoreInfo . BeatmapInfo . MD5Hash ) ;
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sw . Write ( score . ScoreInfo . User . Username ) ;
sw . Write ( FormattableString . Invariant ( $"lazer-{score.ScoreInfo.User.Username}-{score.ScoreInfo.Date}" ) . ComputeMD5Hash ( ) ) ;
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sw . Write ( ( ushort ) ( score . ScoreInfo . GetCount300 ( ) ? ? 0 ) ) ;
sw . Write ( ( ushort ) ( score . ScoreInfo . GetCount100 ( ) ? ? 0 ) ) ;
sw . Write ( ( ushort ) ( score . ScoreInfo . GetCount50 ( ) ? ? 0 ) ) ;
sw . Write ( ( ushort ) ( score . ScoreInfo . GetCountGeki ( ) ? ? 0 ) ) ;
sw . Write ( ( ushort ) ( score . ScoreInfo . GetCountKatu ( ) ? ? 0 ) ) ;
sw . Write ( ( ushort ) ( score . ScoreInfo . GetCountMiss ( ) ? ? 0 ) ) ;
sw . Write ( ( int ) ( score . ScoreInfo . TotalScore ) ) ;
sw . Write ( ( ushort ) score . ScoreInfo . MaxCombo ) ;
sw . Write ( score . ScoreInfo . Combo = = score . ScoreInfo . MaxCombo ) ;
sw . Write ( ( int ) score . ScoreInfo . Ruleset . CreateInstance ( ) . ConvertToLegacyMods ( score . ScoreInfo . Mods ) ) ;
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sw . Write ( getHpGraphFormatted ( ) ) ;
sw . Write ( score . ScoreInfo . Date . DateTime ) ;
sw . WriteByteArray ( createReplayData ( ) ) ;
sw . Write ( ( long ) 0 ) ;
writeModSpecificData ( score . ScoreInfo , sw ) ;
}
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}
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private void writeModSpecificData ( ScoreInfo score , SerializationWriter sw )
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{
}
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private byte [ ] createReplayData ( )
{
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byte [ ] content = new ASCIIEncoding ( ) . GetBytes ( replayStringContent ) ;
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using ( var outStream = new MemoryStream ( ) )
{
using ( var lzma = new LzmaStream ( new LzmaEncoderProperties ( false , 1 < < 21 , 255 ) , false , outStream ) )
{
outStream . Write ( lzma . Properties ) ;
long fileSize = content . Length ;
for ( int i = 0 ; i < 8 ; i + + )
outStream . WriteByte ( ( byte ) ( fileSize > > ( 8 * i ) ) ) ;
lzma . Write ( content ) ;
}
return outStream . ToArray ( ) ;
}
}
private string replayStringContent
{
get
{
StringBuilder replayData = new StringBuilder ( ) ;
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// As this is baked into hitobject timing (see `LegacyBeatmapDecoder`) we also need to apply this to replay frame timing.
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double offset = beatmap ? . BeatmapInfo . BeatmapVersion < 5 ? - LegacyBeatmapDecoder . EARLY_VERSION_TIMING_OFFSET : 0 ;
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if ( score . Replay ! = null )
{
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int lastTime = 0 ;
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foreach ( var f in score . Replay . Frames )
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{
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var legacyFrame = getLegacyFrame ( f ) ;
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// Rounding because stable could only parse integral values
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int time = ( int ) Math . Round ( legacyFrame . Time + offset ) ;
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replayData . Append ( FormattableString . Invariant ( $"{time - lastTime}|{legacyFrame.MouseX ?? 0}|{legacyFrame.MouseY ?? 0}|{(int)legacyFrame.ButtonState}," ) ) ;
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lastTime = time ;
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}
}
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// Warning: this is purposefully hardcoded as a string rather than interpolating, as in some cultures the minus sign is not encoded as the standard ASCII U+00C2 codepoint,
// which then would break decoding.
replayData . Append ( @"-12345|0|0|0" ) ;
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return replayData . ToString ( ) ;
}
}
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private LegacyReplayFrame getLegacyFrame ( ReplayFrame replayFrame )
{
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switch ( replayFrame )
{
case LegacyReplayFrame legacyFrame :
return legacyFrame ;
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case IConvertibleReplayFrame convertibleFrame :
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return convertibleFrame . ToLegacy ( beatmap . AsNonNull ( ) ) ;
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default :
throw new ArgumentException ( @"Frame could not be converted to legacy frames" , nameof ( replayFrame ) ) ;
}
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}
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private string getHpGraphFormatted ( )
{
// todo: implement, maybe?
return string . Empty ;
}
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}
}