mirror of
https://github.com/kwsch/PKHeX
synced 2024-12-24 03:13:18 +00:00
88830e0d00
Updates from net46->net7, dropping support for mono in favor of using the latest runtime (along with the performance/API improvements). Releases will be posted as 64bit only for now. Refactors a good amount of internal API methods to be more performant and more customizable for future updates & fixes. Adds functionality for Batch Editor commands to `>`, `<` and <=/>= TID/SID properties renamed to TID16/SID16 for clarity; other properties exposed for Gen7 / display variants. Main window has a new layout to account for DPI scaling (8 point grid) Fixed: Tatsugiri and Paldean Tauros now output Showdown form names as Showdown expects Changed: Gen9 species now interact based on the confirmed National Dex IDs (closes #3724) Fixed: Pokedex set all no longer clears species with unavailable non-base forms (closes #3720) Changed: Hyper Training suggestions now apply for level 50 in SV. (closes #3714) Fixed: B2/W2 hatched egg met locations exclusive to specific versions are now explicitly checked (closes #3691) Added: Properties for ribbon/mark count (closes #3659) Fixed: Traded SV eggs are now checked correctly (closes #3692)
146 lines
4.2 KiB
C#
146 lines
4.2 KiB
C#
using System;
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using System.Collections.Generic;
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using static System.Buffers.Binary.BinaryPrimitives;
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namespace PKHeX.Core;
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public sealed class StrategyMemo
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{
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private readonly bool XD;
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public const int SIZE_ENTRY = 12;
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private readonly List<StrategyMemoEntry> Entries;
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public const int MAX_COUNT = 500;
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private StrategyMemoEntry? this[ushort Species] => Entries.Find(e => e.Species == Species);
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private readonly ushort _unk;
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public StrategyMemo(bool xd = true) : this(stackalloc byte[4], xd) { }
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public StrategyMemo(Span<byte> block, bool xd)
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{
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XD = xd;
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int count = ReadUInt16BigEndian(block);
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if (count > MAX_COUNT)
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count = MAX_COUNT;
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_unk = ReadUInt16BigEndian(block[2..]);
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Entries = new List<StrategyMemoEntry>(count);
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for (int i = 0; i < count; i++)
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{
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var entry = Read(block, i);
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Entries.Add(entry);
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}
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}
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private StrategyMemoEntry Read(Span<byte> block, int index)
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{
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var ofs = 4 + (SIZE_ENTRY * index);
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var span = block.Slice(ofs, SIZE_ENTRY);
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var data = span.ToArray();
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return new StrategyMemoEntry(XD, data);
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}
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public byte[] Write()
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{
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var result = new byte[4 + (Entries.Count * SIZE_ENTRY)];
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WriteInt16BigEndian(result.AsSpan(0), (short)Entries.Count);
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WriteInt16BigEndian(result.AsSpan(2), (short)_unk);
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var count = Math.Min(MAX_COUNT, Entries.Count);
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for (int i = 0; i < count; i++)
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Entries[i].Data.CopyTo(result, 4 + (i * SIZE_ENTRY));
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return result;
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}
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public StrategyMemoEntry GetEntry(ushort Species)
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{
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return this[Species] ?? new StrategyMemoEntry(XD);
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}
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public void SetEntry(StrategyMemoEntry entry)
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{
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int index = Entries.FindIndex(ent => ent.Species == entry.Species);
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if (index >= 0)
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Entries[index] = entry;
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else
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Entries.Add(entry);
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}
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}
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public sealed class StrategyMemoEntry
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{
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public readonly byte[] Data;
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private readonly bool XD;
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public StrategyMemoEntry(bool xd) : this(xd, new byte[StrategyMemo.SIZE_ENTRY]) { }
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public StrategyMemoEntry(bool xd, byte[] data)
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{
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Data = data;
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XD = xd;
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}
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public ushort Species
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{
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get
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{
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var val = (ushort)(ReadUInt16BigEndian(Data.AsSpan(0)) & 0x1FF);
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return SpeciesConverter.GetNational3(val);
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}
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set
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{
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var val = SpeciesConverter.GetInternal3(value);
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var cval = ReadUInt16BigEndian(Data.AsSpan(0));
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cval &= 0xE00; val &= 0x1FF; cval |= val;
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WriteUInt16BigEndian(Data.AsSpan(0x00), cval);
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}
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}
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private bool Flag0 { get => Data[0] >> 6 == 1; set { Data[0] &= 0xBF; if (value) Data[0] |= 0x40; } } // Unused
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private bool Flag1 { get => Data[0] >> 7 == 1; set { Data[0] &= 0x7F; if (value) Data[0] |= 0x80; } } // Complete Entry
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public uint ID32
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{
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get => ReadUInt32BigEndian(Data.AsSpan(0x04));
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set => WriteUInt32BigEndian(Data.AsSpan(0x04), value);
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}
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public ushort SID16 { get => ReadUInt16BigEndian(Data.AsSpan(4)); set => WriteUInt16BigEndian(Data.AsSpan(4), value); }
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public ushort TID16 { get => ReadUInt16BigEndian(Data.AsSpan(6)); set => WriteUInt16BigEndian(Data.AsSpan(6), value); }
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public uint PID { get => ReadUInt32BigEndian(Data.AsSpan(8)); set => WriteUInt32BigEndian(Data.AsSpan(8), value); }
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public bool Seen
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{
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get
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{
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if (XD)
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return !Flag1;
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return Species != 0;
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}
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set
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{
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if (XD)
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Flag1 = !value;
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else if (!value)
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Data.AsSpan(0, StrategyMemo.SIZE_ENTRY).Clear();
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}
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}
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public bool Owned
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{
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get
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{
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if (XD)
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return false;
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return Flag0 || !Flag1;
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}
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set
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{
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if (XD)
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return;
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if (!value)
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Flag1 = true;
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}
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}
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public bool IsEmpty => Species == 0;
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public bool Matches(ushort species, uint pid, uint id32) => Species == species && PID == pid && ID32 == id32;
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}
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