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synced 2026-04-09 10:56:04 -05:00
-288 KB (-31%) across lvlmove/eggmove/evolve binaries redesign the levelup bins: - be moves_levels rather than the "official" -1 stop of the past era. - gen1/2 reformatted from byte,byte[] to ^ to skip initialization work redesign the eggmove bins: - be simply moves[], rather than the "official" -1 stop of the past era; now is just a struct to keep the array readonly with no further allocation. - same for gen2 skipping initialization byte[]->ushort[] - for gen7/8 formtable indexed, just use the personal table indexing style of SV. added a 16-bit version of BinLinkerAccessor as start/end offsets of <65KB files are always 16bit. Saves a fair bit of space in eggmoves/evo where there's often 0 entries for a species-form. Obviously binlinker16 is an unofficial format, but there's no need to replicate official serialization formats if we instead use a universal & maintainable alternative. Plus they don't even use BinLinker across all their games. Adds a debug BinLinkerWriter because I'm tired of digging up the zipping implementation :)
134 lines
4.6 KiB
C#
134 lines
4.6 KiB
C#
using System;
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using System.Diagnostics.CodeAnalysis;
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using static PKHeX.Core.LearnMethod;
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using static PKHeX.Core.LearnEnvironment;
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using static PKHeX.Core.PersonalInfo4;
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namespace PKHeX.Core;
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/// <summary>
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/// Exposes information about how moves are learned in <see cref="DP"/>.
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/// </summary>
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public sealed class LearnSource4DP : LearnSource4, ILearnSource<PersonalInfo4>, IEggSource
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{
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public static readonly LearnSource4DP Instance = new();
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private static readonly PersonalTable4 Personal = PersonalTable.DP;
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private static readonly Learnset[] Learnsets = LearnsetReader.GetArray(BinLinkerAccessor16.Get(Util.GetBinaryResource("lvlmove_dp.pkl"), "dp"u8));
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private const int MaxSpecies = Legal.MaxSpeciesID_4;
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private const LearnEnvironment Game = DP;
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private const byte Generation = 4;
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private const int CountTM = 92;
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public LearnEnvironment Environment => Game;
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public Learnset GetLearnset(ushort species, byte form) => Learnsets[Personal.GetFormIndex(species, form)];
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public bool TryGetPersonal(ushort species, byte form, [NotNullWhen(true)] out PersonalInfo4? pi)
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{
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pi = null;
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if (species > MaxSpecies)
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return false;
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pi = Personal[species, form];
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return true;
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}
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public bool GetIsEggMove(ushort species, byte form, ushort move)
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{
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var arr = EggMoves;
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if (species >= arr.Length)
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return false;
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var moves = arr[species];
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return moves.GetHasMove(move);
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}
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public ReadOnlySpan<ushort> GetEggMoves(ushort species, byte form)
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{
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var arr = EggMoves;
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if (species >= arr.Length)
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return [];
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return arr[species].Moves;
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}
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public MoveLearnInfo GetCanLearn(PKM pk, PersonalInfo4 pi, EvoCriteria evo, ushort move, MoveSourceType types = MoveSourceType.All, LearnOption option = LearnOption.Current)
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{
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if (types.HasFlag(MoveSourceType.LevelUp))
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{
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var learn = GetLearnset(evo.Species, evo.Form);
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if (learn.TryGetLevelLearnMove(move, out var level) && level <= evo.LevelMax)
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return new(LevelUp, Game, level);
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}
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if (types.HasFlag(MoveSourceType.Machine))
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{
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if (GetIsTM(pi, move))
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return new(TMHM, Game);
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if ((move is (int)Move.Defog || pk.Format == Generation) && GetIsHM(pi, move))
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return new(TMHM, Game);
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}
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if (types.HasFlag(MoveSourceType.TypeTutor) && GetIsTypeTutor(evo.Species, move))
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return new(Tutor, Game);
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if (types.HasFlag(MoveSourceType.SpecialTutor) && GetIsSpecialTutor(pi, move))
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return new(Tutor, Game);
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return default;
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}
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private static bool GetIsTypeTutor(ushort species, ushort move) => move switch
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{
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(ushort)Move.BlastBurn => SpecialTutorBlastBurn.Contains(species),
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(ushort)Move.HydroCannon => SpecialTutorHydroCannon.Contains(species),
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(ushort)Move.FrenzyPlant => SpecialTutorFrenzyPlant.Contains(species),
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(ushort)Move.DracoMeteor => SpecialTutorDracoMeteor.Contains(species),
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_ => false,
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};
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private static bool GetIsSpecialTutor(PersonalInfo4 pi, ushort move)
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{
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var index = TutorMoves.IndexOf(move);
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if (index == -1)
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return false;
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return pi.TypeTutors[index];
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}
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private static bool GetIsTM(PersonalInfo4 info, ushort move)
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{
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var index = MachineMovesTechnical.IndexOf(move);
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return info.GetIsLearnTM(index);
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}
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private static bool GetIsHM(PersonalInfo4 info, ushort move)
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{
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var index = MachineMovesHiddenDPPt.IndexOf(move);
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return info.GetIsLearnTM(CountTM + index);
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}
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public void GetAllMoves(Span<bool> result, PKM pk, EvoCriteria evo, MoveSourceType types = MoveSourceType.All)
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{
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if (!TryGetPersonal(evo.Species, evo.Form, out var pi))
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return;
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if (types.HasFlag(MoveSourceType.LevelUp))
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{
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var learn = GetLearnset(evo.Species, evo.Form);
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var span = learn.GetMoveRange(evo.LevelMax);
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foreach (var move in span)
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result[move] = true;
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}
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if (types.HasFlag(MoveSourceType.Machine))
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{
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pi.SetAllLearnTM(result, MachineMovesTechnical);
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if (pk.Format == Generation)
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pi.SetAllLearnHM(result, MachineMovesHiddenDPPt);
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else if (pi.GetIsLearnHM(4)) // Permit Defog to leak through if transferred to Gen5+ (via HG/SS)
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result[(int)Move.Defog] = true;
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}
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if (types.HasFlag(MoveSourceType.SpecialTutor))
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pi.SetAllLearnTutorType(result, TutorMoves);
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}
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}
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