mirror of
https://github.com/kwsch/PKHeX
synced 2024-11-27 14:30:56 +00:00
47071b41f3
Existing `get`/`set` logic is flawed in that it doesn't work on Big Endian operating systems, and it allocates heap objects when it doesn't need to. `System.Buffers.Binary.BinaryPrimitives` in the `System.Memory` NuGet package provides both Little Endian and Big Endian methods to read and write data; all the `get`/`set` operations have been reworked to use this new API. This removes the need for PKHeX's manual `BigEndian` class, as all functions are already covered by the BinaryPrimitives API. The `StringConverter` has now been rewritten to accept a Span to read from & write to, no longer requiring a temporary StringBuilder. Other Fixes included: - The Super Training UI for Gen6 has been reworked according to the latest block structure additions. - Cloning a Stadium2 Save File now works correctly (opening from the Folder browser list). - Checksum & Sanity properties removed from parent PKM class, and is now implemented via interface.
99 lines
No EOL
3.2 KiB
C#
99 lines
No EOL
3.2 KiB
C#
using System.Collections.Generic;
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using System.Linq;
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using FluentAssertions;
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using PKHeX.Core;
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using Xunit;
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namespace PKHeX.Tests.Util
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{
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public class StringQualityTests
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{
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[Theory]
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[InlineData("ja")]
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[InlineData("en")]
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[InlineData("it")]
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[InlineData("de")]
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[InlineData("fr")]
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[InlineData("es")]
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[InlineData("ko")]
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[InlineData("zh")]
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public void HasNoDuplicates(string language)
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{
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CheckMetLocations(language);
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CheckItemNames(language);
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CheckMoveNames(language);
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}
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private static void CheckMoveNames(string language)
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{
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var strings = GameInfo.GetStrings(language);
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var arr = strings.movelist;
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var duplicates = GetDuplicates(arr);
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duplicates.Count.Should().Be(0, "expected no duplicate strings.");
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}
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private static void CheckItemNames(string language)
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{
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var strings = GameInfo.GetStrings(language);
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var arr = strings.itemlist;
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var duplicates = GetDuplicates(arr);
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var questionmarks = arr[129];
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duplicates.RemoveAll(z => z == questionmarks);
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duplicates.Count.Should().Be(0, "expected no duplicate strings.");
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}
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private static List<string> GetDuplicates(string[] arr)
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{
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var hs = new HashSet<string>();
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var duplicates = new List<string>();
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foreach (var line in arr)
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{
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if (line.Length == 0)
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continue;
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if (hs.Contains(line))
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duplicates.Add(line);
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hs.Add(line);
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}
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return duplicates;
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}
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private static void CheckMetLocations(string language)
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{
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var strings = GameInfo.GetStrings(language);
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const string prefix = "met";
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nameof(strings.metBW2_00000).StartsWith(prefix).Should()
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.BeTrue("expected field name to exist prior to using reflection to fetch all");
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var metstrings = typeof(GameStrings).GetFields().Where(z => z.Name.StartsWith(prefix));
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bool iterated = false;
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var duplicates = new List<string>();
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foreach (var p in metstrings)
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{
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iterated = true;
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var name = p.Name;
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var value = p.GetValue(strings);
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Assert.NotNull(value);
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var arr = (string[])value!;
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var hs = new HashSet<string>();
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bool sm0 = name == nameof(GameStrings.metSM_00000);
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for (int i = 0; i < arr.Length; i++)
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{
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var line = arr[i];
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if (line.Length == 0)
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continue;
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if (sm0 && i % 2 != 0)
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continue;
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if (hs.Contains(line))
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duplicates.Add($"{name}\t{line}");
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hs.Add(line);
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}
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}
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duplicates.Count.Should().Be(0, "expected no duplicate strings.");
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iterated.Should().BeTrue();
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}
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}
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} |