PKHeX/PKHeX.Core/Saves/SAV3RSBox.cs
Kurt 9166d0eb64
Refactoring: Move Source (Legality) (#3560)
Rewrites a good amount of legality APIs pertaining to:
* Legal moves that can be learned
* Evolution chains & cross-generation paths
* Memory validation with forgotten moves

In generation 8, there are 3 separate contexts an entity can exist in: SW/SH, BD/SP, and LA. Not every entity can cross between them, and not every entity from generation 7 can exist in generation 8 (Gogoat, etc). By creating class models representing the restrictions to cross each boundary, we are able to better track and validate data.

The old implementation of validating moves was greedy: it would iterate for all generations and evolutions, and build a full list of every move that can be learned, storing it on the heap. Now, we check one game group at a time to see if the entity can learn a move that hasn't yet been validated. End result is an algorithm that requires 0 allocation, and a smaller/quicker search space.

The old implementation of storing move parses was inefficient; for each move that was parsed, a new object is created and adjusted depending on the parse. Now, move parse results are `struct` and store the move parse contiguously in memory. End result is faster parsing and 0 memory allocation.

* `PersonalTable` objects have been improved with new API methods to check if a species+form can exist in the game.
* `IEncounterTemplate` objects have been improved to indicate the `EntityContext` they originate in (similar to `Generation`).
* Some APIs have been extended to accept `Span<T>` instead of Array/IEnumerable
2022-08-03 16:15:27 -07:00

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using System;
using System.Collections.Generic;
using System.Linq;
using static System.Buffers.Binary.BinaryPrimitives;
namespace PKHeX.Core;
/// <summary>
/// Generation 3 <see cref="SaveFile"/> object for Pokémon Ruby Sapphire Box saves.
/// </summary>
public sealed class SAV3RSBox : SaveFile, IGCSaveFile
{
protected internal override string ShortSummary => $"{Version} #{SaveCount:0000}";
public override string Extension => this.GCExtension();
public override IPersonalTable Personal => PersonalTable.RS;
public override IReadOnlyList<ushort> HeldItems => Legal.HeldItems_RS;
public SAV3GCMemoryCard? MemoryCard { get; init; }
private readonly bool Japanese;
public SAV3RSBox(byte[] data, SAV3GCMemoryCard memCard) : this(data) => MemoryCard = memCard;
public SAV3RSBox(bool japanese = false) : base(SaveUtil.SIZE_G3BOX)
{
Japanese = japanese;
Box = 0;
Blocks = Array.Empty<BlockInfoRSBOX>();
ClearBoxes();
}
public SAV3RSBox(byte[] data) : base(data)
{
Japanese = data[0] == 0x83; // ポケモンボックス
Blocks = ReadBlocks(data);
InitializeData();
}
private void InitializeData()
{
// Detect active save
int[] SaveCounts = Array.ConvertAll(Blocks, block => (int)block.SaveCount);
SaveCount = SaveCounts.Max();
int ActiveSAV = Array.IndexOf(SaveCounts, SaveCount) / BLOCK_COUNT;
Blocks = Blocks.Skip(ActiveSAV * BLOCK_COUNT).Take(BLOCK_COUNT).OrderBy(b => b.ID).ToArray();
// Set up PC data buffer beyond end of save file.
Box = Data.Length;
Array.Resize(ref Data, Data.Length + SIZE_RESERVED); // More than enough empty space.
// Copy block to the allocated location
const int copySize = BLOCK_SIZE - 0x10;
foreach (var b in Blocks)
Array.Copy(Data, b.Offset + 0xC, Data, (int) (Box + (b.ID * copySize)), copySize);
}
private static BlockInfoRSBOX[] ReadBlocks(byte[] data)
{
var blocks = new BlockInfoRSBOX[2 * BLOCK_COUNT];
for (int i = 0; i < blocks.Length; i++)
{
int offset = BLOCK_SIZE + (i * BLOCK_SIZE);
blocks[i] = new BlockInfoRSBOX(data, offset);
}
return blocks;
}
private BlockInfoRSBOX[] Blocks;
private int SaveCount;
private const int BLOCK_COUNT = 23;
private const int BLOCK_SIZE = 0x2000;
private const int SIZE_RESERVED = BLOCK_COUNT * BLOCK_SIZE; // unpacked box data
protected override byte[] GetFinalData()
{
var newFile = GetInnerData();
// Return the gci if Memory Card is not being exported
if (MemoryCard is null)
return newFile;
MemoryCard.WriteSaveGameData(newFile);
return MemoryCard.Data;
}
private byte[] GetInnerData()
{
// Copy Box data back
const int copySize = BLOCK_SIZE - 0x10;
foreach (var b in Blocks)
Array.Copy(Data, (int) (Box + (b.ID * copySize)), Data, b.Offset + 0xC, copySize);
SetChecksums();
return GetData(0, Data.Length - SIZE_RESERVED);
}
// Configuration
protected override SaveFile CloneInternal()
{
var data = GetInnerData();
var sav = MemoryCard is not null ? new SAV3RSBox(data, MemoryCard) : new SAV3RSBox(data);
return sav;
}
protected override int SIZE_STORED => PokeCrypto.SIZE_3STORED + 4;
protected override int SIZE_PARTY => PokeCrypto.SIZE_3PARTY; // unused
public override PKM BlankPKM => new PK3();
public override Type PKMType => typeof(PK3);
public override int MaxMoveID => Legal.MaxMoveID_3;
public override int MaxSpeciesID => Legal.MaxSpeciesID_3;
public override int MaxAbilityID => Legal.MaxAbilityID_3;
public override int MaxItemID => Legal.MaxItemID_3;
public override int MaxBallID => Legal.MaxBallID_3;
public override int MaxGameID => Legal.MaxGameID_3;
public override int MaxEV => 255;
public override int Generation => 3;
public override EntityContext Context => EntityContext.Gen3;
protected override int GiftCountMax => 1;
public override int OTLength => 7;
public override int NickLength => 10;
public override int MaxMoney => 999999;
public override bool HasBoxWallpapers => false;
public override int BoxCount => 50;
public override bool HasParty => false;
public override bool IsPKMPresent(ReadOnlySpan<byte> data) => EntityDetection.IsPresentGBA(data);
// Checksums
protected override void SetChecksums() => Blocks.SetChecksums(Data);
public override bool ChecksumsValid => Blocks.GetChecksumsValid(Data);
public override string ChecksumInfo => Blocks.GetChecksumInfo(Data);
// Trainer Info
public override GameVersion Version { get => GameVersion.RSBOX; protected set { } }
// Storage
public override int GetPartyOffset(int slot) => -1;
public override int GetBoxOffset(int box) => Box + 8 + (SIZE_STORED * box * 30);
public override int CurrentBox
{
get => Data[Box + 4] * 2;
set => Data[Box + 4] = (byte)(value / 2);
}
protected override int GetBoxWallpaperOffset(int box)
{
// Box Wallpaper is directly after the Box Names
int offset = Box + 0x1ED19 + (box / 2);
return offset;
}
public override string GetBoxName(int box)
{
// Tweaked for the 1-30/31-60 box showing
int lo = (30 *(box%2)) + 1;
int hi = 30*((box % 2) + 1);
string boxName = $"[{lo:00}-{hi:00}] ";
box /= 2;
int offset = Box + 0x1EC38 + (9 * box);
if (Data[offset] is 0 or 0xFF)
boxName += $"BOX {box + 1}";
boxName += GetString(offset, 9);
return boxName;
}
public override void SetBoxName(int box, string value)
{
int offset = Box + 0x1EC38 + (9 * box);
var span = Data.AsSpan(offset, 9);
if (value == $"BOX {box + 1}")
{
span.Clear();
return;
}
SetString(span, value.AsSpan(), 8, StringConverterOption.ClearZero);
}
protected override PKM GetPKM(byte[] data)
{
if (data.Length != PokeCrypto.SIZE_3STORED)
Array.Resize(ref data, PokeCrypto.SIZE_3STORED);
return new PK3(data);
}
protected override byte[] DecryptPKM(byte[] data)
{
if (data.Length != PokeCrypto.SIZE_3STORED)
Array.Resize(ref data, PokeCrypto.SIZE_3STORED);
return PokeCrypto.DecryptArray3(data);
}
protected override void SetDex(PKM pk) { /* No Pokedex for this game, do nothing */ }
public override void WriteBoxSlot(PKM pk, Span<byte> data, int offset)
{
base.WriteBoxSlot(pk, data, offset);
WriteUInt16LittleEndian(data[(PokeCrypto.SIZE_3STORED)..], (ushort)pk.TID);
WriteUInt16LittleEndian(data[(PokeCrypto.SIZE_3STORED + 2)..], (ushort)pk.SID);
}
public override string GetString(ReadOnlySpan<byte> data) => StringConverter3.GetString(data, Japanese);
public override int SetString(Span<byte> destBuffer, ReadOnlySpan<char> value, int maxLength, StringConverterOption option)
{
return StringConverter3.SetString(destBuffer, value, maxLength, Japanese, option);
}
}