mirror of
https://github.com/drewcassidy/KSP-Conformal-Decals.git
synced 2024-09-01 18:23:54 +00:00
216 lines
9.1 KiB
C#
216 lines
9.1 KiB
C#
using System;
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using System.Collections.Generic;
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using System.Reflection;
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using UnityEngine;
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namespace ConformalDecals.Util {
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public static class ParseUtil {
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private static readonly Dictionary<string, Color> NamedColors = new Dictionary<string, Color>();
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private static readonly char[] Separator = {',', ' ', '\t'};
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public delegate bool TryParseDelegate<T>(string valueString, out T value);
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static ParseUtil() {
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// setup named colors
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foreach (var propertyInfo in typeof(Color).GetProperties(BindingFlags.Static | BindingFlags.Public)) {
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if (!propertyInfo.CanRead) continue;
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if (propertyInfo.PropertyType != typeof(Color)) continue;
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NamedColors.Add(propertyInfo.Name, (Color) propertyInfo.GetValue(null, null));
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}
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foreach (var propertyInfo in typeof(XKCDColors).GetProperties(BindingFlags.Static | BindingFlags.Public)) {
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if (!propertyInfo.CanRead) continue;
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if (propertyInfo.PropertyType != typeof(Color)) continue;
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if (NamedColors.ContainsKey(propertyInfo.Name)) throw new Exception("duplicate key " + propertyInfo.Name);
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NamedColors.Add(propertyInfo.Name, (Color) propertyInfo.GetValue(null, null));
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}
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}
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public static string ParseString(ConfigNode node, string valueName, bool isOptional = false, string defaultValue = "") {
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if (!node.HasValue(valueName)) throw new FormatException($"Missing value for {valueName}");
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return node.GetValue(valueName);
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}
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public static bool ParseStringIndirect(ref string value, ConfigNode node, string valueName) {
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if (node.HasValue(valueName)) {
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value = node.GetValue(valueName);
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return true;
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}
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return false;
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}
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public static bool ParseBool(ConfigNode node, string valueName, bool isOptional = false, bool defaultValue = false) {
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return ParseValue(node, valueName, bool.TryParse, isOptional, defaultValue);
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}
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public static bool ParseBoolIndirect(ref bool value, ConfigNode node, string valueName) {
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return ParseValueIndirect(ref value, node, valueName, bool.TryParse);
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}
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public static float ParseFloat(ConfigNode node, string valueName, bool isOptional = false, float defaultValue = 0.0f) {
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return ParseValue(node, valueName, float.TryParse, isOptional, defaultValue);
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}
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public static bool ParseFloatIndirect(ref float value, ConfigNode node, string valueName) {
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return ParseValueIndirect(ref value, node, valueName, float.TryParse);
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}
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public static int ParseInt(ConfigNode node, string valueName, bool isOptional = false, int defaultValue = 0) {
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return ParseValue(node, valueName, int.TryParse, isOptional, defaultValue);
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}
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public static bool ParseIntIndirect(ref int value, ConfigNode node, string valueName) {
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return ParseValueIndirect(ref value, node, valueName, int.TryParse);
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}
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public static Color32 ParseColor32(ConfigNode node, string valueName, bool isOptional = false, Color32 defaultValue = default) {
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return ParseValue(node, valueName, TryParseColor32, isOptional, defaultValue);
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}
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public static bool ParseColor32Indirect(ref Color32 value, ConfigNode node, string valueName) {
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return ParseValueIndirect(ref value, node, valueName, TryParseColor32);
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}
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public static Rect ParseRect(ConfigNode node, string valueName, bool isOptional = false, Rect defaultValue = default) {
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return ParseValue(node, valueName, ParseExtensions.TryParseRect, isOptional, defaultValue);
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}
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public static bool ParseRectIndirect(ref Rect value, ConfigNode node, string valueName) {
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return ParseValueIndirect(ref value, node, valueName, ParseExtensions.TryParseRect);
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}
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public static Vector2 ParseVector2(ConfigNode node, string valueName, bool isOptional = false, Vector2 defaultValue = default) {
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return ParseValue(node, valueName, ParseExtensions.TryParseVector2, isOptional, defaultValue);
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}
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public static bool ParseVector2Indirect(ref Vector2 value, ConfigNode node, string valueName) {
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return ParseValueIndirect(ref value, node, valueName, ParseExtensions.TryParseVector2);
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}
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public static Vector3 ParseVector3(ConfigNode node, string valueName, bool isOptional = false, Vector3 defaultValue = default) {
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return ParseValue(node, valueName, ParseExtensions.TryParseVector3, isOptional, defaultValue);
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}
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public static bool ParseVector3Indirect(ref Vector3 value, ConfigNode node, string valueName) {
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return ParseValueIndirect(ref value, node, valueName, ParseExtensions.TryParseVector3);
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}
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public static T ParseValue<T>(ConfigNode node, string valueName, TryParseDelegate<T> tryParse, bool isOptional = false, T defaultValue = default) {
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string valueString = node.GetValue(valueName);
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if (isOptional) {
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if (string.IsNullOrEmpty(valueString)) return defaultValue;
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}
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else {
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if (valueString == null)
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throw new FormatException($"Missing {typeof(T)} value for {valueName}");
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if (valueString == string.Empty)
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throw new FormatException($"Empty {typeof(T)} value for {valueName}");
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}
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if (tryParse(valueString, out var value)) {
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return value;
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}
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if (isOptional) {
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return defaultValue;
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}
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else {
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throw new FormatException($"Improperly formatted {typeof(T)} value for {valueName} : '{valueString}");
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}
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}
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public static bool ParseValueIndirect<T>(ref T value, ConfigNode node, string valueName, TryParseDelegate<T> tryParse) {
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if (!node.HasValue(valueName)) return false;
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var valueString = node.GetValue(valueName);
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if (tryParse(valueString, out var newValue)) {
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value = newValue;
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return true;
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}
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throw new FormatException($"Improperly formatted {typeof(T)} value for {valueName} : '{valueString}");
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}
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public static bool TryParseColor32(string valueString, out Color32 value) {
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value = new Color32(0, 0, 0, byte.MaxValue);
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// HTML-style hex color
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if (valueString[0] == '#') {
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var hexColorString = valueString.Substring(1);
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if (!int.TryParse(hexColorString, System.Globalization.NumberStyles.HexNumber, null, out var hexColor)) return false;
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switch (hexColorString.Length) {
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case 8: // RRGGBBAA
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value.a = (byte) (hexColor & 0xFF);
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hexColor >>= 8;
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goto case 6;
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case 6: // RRGGBB
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value.b = (byte) (hexColor & 0xFF);
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hexColor >>= 8;
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value.g = (byte) (hexColor & 0xFF);
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hexColor >>= 8;
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value.r = (byte) (hexColor & 0xFF);
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return true;
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case 4: // RGBA
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value.a = (byte) ((hexColor & 0xF) << 4);
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hexColor >>= 4;
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goto case 3;
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case 3: // RGB
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value.b = (byte) (hexColor & 0xF << 4);
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hexColor >>= 4;
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value.g = (byte) (hexColor & 0xF << 4);
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hexColor >>= 4;
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value.r = (byte) (hexColor & 0xF << 4);
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return true;
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default:
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return false;
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}
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}
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// named color
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if (NamedColors.TryGetValue(valueString, out var namedColor)) {
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value = namedColor;
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return true;
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}
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// float color
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var split = valueString.Split(Separator, StringSplitOptions.RemoveEmptyEntries);
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for (int i = 0; i < split.Length; i++) {
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split[i] = split[i].Trim();
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}
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switch (split.Length) {
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case 4:
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if (!float.TryParse(split[4], out var alpha)) return false;
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value.a = (byte) (alpha * 0xFF);
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goto case 3;
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case 3:
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if (!float.TryParse(split[0], out var red)) return false;
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if (!float.TryParse(split[1], out var green)) return false;
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if (!float.TryParse(split[2], out var blue)) return false;
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value.r = (byte) (red * 0xFF);
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value.g = (byte) (green * 0xFF);
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value.b = (byte) (blue * 0xFF);
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return true;
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default:
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return false;
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}
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}
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}
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} |