2023-01-22 04:02:33 +00:00
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using System;
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2022-01-03 05:35:59 +00:00
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using static System.Buffers.Binary.BinaryPrimitives;
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namespace PKHeX.Core;
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2022-01-08 17:54:32 +00:00
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/// <summary>
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/// Logic for converting a <see cref="string"/> for Generation 8 games.
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/// </summary>
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/// <remarks>Also used by LGP/E; this encoding is essentially the same as Generation 6's.</remarks>
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2022-01-03 05:35:59 +00:00
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public static class StringConverter8
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{
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private const ushort TerminatorNull = 0;
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/// <summary>Converts Generation 7-Beluga encoded data to decoded string.</summary>
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/// <param name="data">Encoded data</param>
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/// <returns>Decoded string.</returns>
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public static string GetString(ReadOnlySpan<byte> data)
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{
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Span<char> result = stackalloc char[data.Length];
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int length = LoadString(data, result);
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2023-01-22 04:02:33 +00:00
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return new string(result[..length]);
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2022-01-03 05:35:59 +00:00
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}
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2023-01-22 04:02:33 +00:00
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/// <inheritdoc cref="GetString(ReadOnlySpan{byte})"/>
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/// <param name="data">Encoded data</param>
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/// <param name="result">Decoded character result buffer</param>
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/// <returns>Character count loaded.</returns>
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public static int LoadString(ReadOnlySpan<byte> data, Span<char> result)
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2022-01-03 05:35:59 +00:00
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{
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int i = 0;
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for (; i < data.Length; i += 2)
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{
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var value = ReadUInt16LittleEndian(data[i..]);
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if (value == TerminatorNull)
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break;
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result[i/2] = StringConverter.SanitizeChar((char)value);
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}
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return i/2;
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}
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/// <summary>Gets the bytes for a Generation 7-Beluga string.</summary>
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2022-01-08 17:54:32 +00:00
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/// <param name="destBuffer">Span of bytes to write encoded string data</param>
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2022-01-03 05:35:59 +00:00
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/// <param name="value">Decoded string.</param>
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/// <param name="maxLength">Maximum length of the input <see cref="value"/></param>
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2022-01-08 17:54:32 +00:00
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/// <param name="option">Buffer pre-formatting option</param>
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2022-01-03 05:35:59 +00:00
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/// <returns>Encoded data.</returns>
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public static int SetString(Span<byte> destBuffer, ReadOnlySpan<char> value, int maxLength,
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StringConverterOption option = StringConverterOption.ClearZero)
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{
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if (value.Length > maxLength)
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value = value[..maxLength]; // Hard cap
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if (option is StringConverterOption.ClearZero)
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destBuffer.Clear();
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bool isFullWidth = StringConverter.GetIsFullWidthString(value);
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for (int i = 0; i < value.Length; i++)
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{
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char c = value[i];
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if (!isFullWidth)
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c = StringConverter.UnSanitizeChar(c);
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WriteUInt16LittleEndian(destBuffer[(i * 2)..], c);
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}
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int count = value.Length * 2;
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if (count == destBuffer.Length)
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return count;
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WriteUInt16LittleEndian(destBuffer[count..], TerminatorNull);
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return count + 2;
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}
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}
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