Code:
/ Dotnetfx_Win7_3.5.1 / Dotnetfx_Win7_3.5.1 / 3.5.1 / DEVDIV / depot / DevDiv / releases / Orcas / NetFXw7 / wpf / src / Base / System / Windows / Generated / Vector.cs / 2 / Vector.cs
//---------------------------------------------------------------------------- // //// Copyright (C) Microsoft Corporation. All rights reserved. // // // This file was generated, please do not edit it directly. // // Please see http://wiki/default.aspx/Microsoft.Projects.Avalon/MilCodeGen.html for more information. // //--------------------------------------------------------------------------- using MS.Internal; using MS.Internal.WindowsBase; using System; using System.Collections; using System.ComponentModel; using System.Diagnostics; using System.Globalization; using System.Reflection; using System.Runtime.InteropServices; using System.ComponentModel.Design.Serialization; using System.Windows.Markup; using System.Windows.Converters; using System.Windows; // These types are aliased to match the unamanaged names used in interop using BOOL = System.UInt32; using WORD = System.UInt16; using Float = System.Single; namespace System.Windows { [Serializable] [TypeConverter(typeof(VectorConverter))] [ValueSerializer(typeof(VectorValueSerializer))] // Used by MarkupWriter partial struct Vector : IFormattable { //----------------------------------------------------- // // Public Methods // //----------------------------------------------------- #region Public Methods ////// Compares two Vector instances for exact equality. /// Note that double values can acquire error when operated upon, such that /// an exact comparison between two values which are logically equal may fail. /// Furthermore, using this equality operator, Double.NaN is not equal to itself. /// ////// bool - true if the two Vector instances are exactly equal, false otherwise /// /// The first Vector to compare /// The second Vector to compare public static bool operator == (Vector vector1, Vector vector2) { return vector1.X == vector2.X && vector1.Y == vector2.Y; } ////// Compares two Vector instances for exact inequality. /// Note that double values can acquire error when operated upon, such that /// an exact comparison between two values which are logically equal may fail. /// Furthermore, using this equality operator, Double.NaN is not equal to itself. /// ////// bool - true if the two Vector instances are exactly unequal, false otherwise /// /// The first Vector to compare /// The second Vector to compare public static bool operator != (Vector vector1, Vector vector2) { return !(vector1 == vector2); } ////// Compares two Vector instances for object equality. In this equality /// Double.NaN is equal to itself, unlike in numeric equality. /// Note that double values can acquire error when operated upon, such that /// an exact comparison between two values which /// are logically equal may fail. /// ////// bool - true if the two Vector instances are exactly equal, false otherwise /// /// The first Vector to compare /// The second Vector to compare public static bool Equals (Vector vector1, Vector vector2) { return vector1.X.Equals(vector2.X) && vector1.Y.Equals(vector2.Y); } ////// Equals - compares this Vector with the passed in object. In this equality /// Double.NaN is equal to itself, unlike in numeric equality. /// Note that double values can acquire error when operated upon, such that /// an exact comparison between two values which /// are logically equal may fail. /// ////// bool - true if the object is an instance of Vector and if it's equal to "this". /// /// The object to compare to "this" public override bool Equals(object o) { if ((null == o) || !(o is Vector)) { return false; } Vector value = (Vector)o; return Vector.Equals(this,value); } ////// Equals - compares this Vector with the passed in object. In this equality /// Double.NaN is equal to itself, unlike in numeric equality. /// Note that double values can acquire error when operated upon, such that /// an exact comparison between two values which /// are logically equal may fail. /// ////// bool - true if "value" is equal to "this". /// /// The Vector to compare to "this" public bool Equals(Vector value) { return Vector.Equals(this, value); } ////// Returns the HashCode for this Vector /// ////// int - the HashCode for this Vector /// public override int GetHashCode() { // Perform field-by-field XOR of HashCodes return X.GetHashCode() ^ Y.GetHashCode(); } ////// Parse - returns an instance converted from the provided string using /// the culture "en-US" /// string with Vector data /// public static Vector Parse(string source) { IFormatProvider formatProvider = System.Windows.Markup.TypeConverterHelper.EnglishUSCulture; TokenizerHelper th = new TokenizerHelper(source, formatProvider); Vector value; String firstToken = th.NextTokenRequired(); value = new Vector( Convert.ToDouble(firstToken, formatProvider), Convert.ToDouble(th.NextTokenRequired(), formatProvider)); // There should be no more tokens in this string. th.LastTokenRequired(); return value; } #endregion Public Methods //------------------------------------------------------ // // Public Properties // //----------------------------------------------------- #region Public Properties ////// X - double. Default value is 0. /// public double X { get { return _x; } set { _x = value; } } ////// Y - double. Default value is 0. /// public double Y { get { return _y; } set { _y = value; } } #endregion Public Properties //------------------------------------------------------ // // Protected Methods // //------------------------------------------------------ #region Protected Methods #endregion ProtectedMethods //----------------------------------------------------- // // Internal Methods // //------------------------------------------------------ #region Internal Methods #endregion Internal Methods //----------------------------------------------------- // // Internal Properties // //----------------------------------------------------- #region Internal Properties ////// Creates a string representation of this object based on the current culture. /// ////// A string representation of this object. /// public override string ToString() { // Delegate to the internal method which implements all ToString calls. return ConvertToString(null /* format string */, null /* format provider */); } ////// Creates a string representation of this object based on the IFormatProvider /// passed in. If the provider is null, the CurrentCulture is used. /// ////// A string representation of this object. /// public string ToString(IFormatProvider provider) { // Delegate to the internal method which implements all ToString calls. return ConvertToString(null /* format string */, provider); } ////// Creates a string representation of this object based on the format string /// and IFormatProvider passed in. /// If the provider is null, the CurrentCulture is used. /// See the documentation for IFormattable for more information. /// ////// A string representation of this object. /// string IFormattable.ToString(string format, IFormatProvider provider) { // Delegate to the internal method which implements all ToString calls. return ConvertToString(format, provider); } ////// Creates a string representation of this object based on the format string /// and IFormatProvider passed in. /// If the provider is null, the CurrentCulture is used. /// See the documentation for IFormattable for more information. /// ////// A string representation of this object. /// internal string ConvertToString(string format, IFormatProvider provider) { // Helper to get the numeric list separator for a given culture. char separator = MS.Internal.TokenizerHelper.GetNumericListSeparator(provider); return String.Format(provider, "{1:" + format + "}{0}{2:" + format + "}", separator, _x, _y); } #endregion Internal Properties //----------------------------------------------------- // // Dependency Properties // //------------------------------------------------------ #region Dependency Properties #endregion Dependency Properties //----------------------------------------------------- // // Internal Fields // //------------------------------------------------------ #region Internal Fields internal double _x; internal double _y; #endregion Internal Fields #region Constructors //------------------------------------------------------ // // Constructors // //----------------------------------------------------- #endregion Constructors } } // File provided for Reference Use Only by Microsoft Corporation (c) 2007. // Copyright (c) Microsoft Corporation. All rights reserved. //---------------------------------------------------------------------------- // //// Copyright (C) Microsoft Corporation. All rights reserved. // // // This file was generated, please do not edit it directly. // // Please see http://wiki/default.aspx/Microsoft.Projects.Avalon/MilCodeGen.html for more information. // //--------------------------------------------------------------------------- using MS.Internal; using MS.Internal.WindowsBase; using System; using System.Collections; using System.ComponentModel; using System.Diagnostics; using System.Globalization; using System.Reflection; using System.Runtime.InteropServices; using System.ComponentModel.Design.Serialization; using System.Windows.Markup; using System.Windows.Converters; using System.Windows; // These types are aliased to match the unamanaged names used in interop using BOOL = System.UInt32; using WORD = System.UInt16; using Float = System.Single; namespace System.Windows { [Serializable] [TypeConverter(typeof(VectorConverter))] [ValueSerializer(typeof(VectorValueSerializer))] // Used by MarkupWriter partial struct Vector : IFormattable { //----------------------------------------------------- // // Public Methods // //----------------------------------------------------- #region Public Methods ////// Compares two Vector instances for exact equality. /// Note that double values can acquire error when operated upon, such that /// an exact comparison between two values which are logically equal may fail. /// Furthermore, using this equality operator, Double.NaN is not equal to itself. /// ////// bool - true if the two Vector instances are exactly equal, false otherwise /// /// The first Vector to compare /// The second Vector to compare public static bool operator == (Vector vector1, Vector vector2) { return vector1.X == vector2.X && vector1.Y == vector2.Y; } ////// Compares two Vector instances for exact inequality. /// Note that double values can acquire error when operated upon, such that /// an exact comparison between two values which are logically equal may fail. /// Furthermore, using this equality operator, Double.NaN is not equal to itself. /// ////// bool - true if the two Vector instances are exactly unequal, false otherwise /// /// The first Vector to compare /// The second Vector to compare public static bool operator != (Vector vector1, Vector vector2) { return !(vector1 == vector2); } ////// Compares two Vector instances for object equality. In this equality /// Double.NaN is equal to itself, unlike in numeric equality. /// Note that double values can acquire error when operated upon, such that /// an exact comparison between two values which /// are logically equal may fail. /// ////// bool - true if the two Vector instances are exactly equal, false otherwise /// /// The first Vector to compare /// The second Vector to compare public static bool Equals (Vector vector1, Vector vector2) { return vector1.X.Equals(vector2.X) && vector1.Y.Equals(vector2.Y); } ////// Equals - compares this Vector with the passed in object. In this equality /// Double.NaN is equal to itself, unlike in numeric equality. /// Note that double values can acquire error when operated upon, such that /// an exact comparison between two values which /// are logically equal may fail. /// ////// bool - true if the object is an instance of Vector and if it's equal to "this". /// /// The object to compare to "this" public override bool Equals(object o) { if ((null == o) || !(o is Vector)) { return false; } Vector value = (Vector)o; return Vector.Equals(this,value); } ////// Equals - compares this Vector with the passed in object. In this equality /// Double.NaN is equal to itself, unlike in numeric equality. /// Note that double values can acquire error when operated upon, such that /// an exact comparison between two values which /// are logically equal may fail. /// ////// bool - true if "value" is equal to "this". /// /// The Vector to compare to "this" public bool Equals(Vector value) { return Vector.Equals(this, value); } ////// Returns the HashCode for this Vector /// ////// int - the HashCode for this Vector /// public override int GetHashCode() { // Perform field-by-field XOR of HashCodes return X.GetHashCode() ^ Y.GetHashCode(); } ////// Parse - returns an instance converted from the provided string using /// the culture "en-US" /// string with Vector data /// public static Vector Parse(string source) { IFormatProvider formatProvider = System.Windows.Markup.TypeConverterHelper.EnglishUSCulture; TokenizerHelper th = new TokenizerHelper(source, formatProvider); Vector value; String firstToken = th.NextTokenRequired(); value = new Vector( Convert.ToDouble(firstToken, formatProvider), Convert.ToDouble(th.NextTokenRequired(), formatProvider)); // There should be no more tokens in this string. th.LastTokenRequired(); return value; } #endregion Public Methods //------------------------------------------------------ // // Public Properties // //----------------------------------------------------- #region Public Properties ////// X - double. Default value is 0. /// public double X { get { return _x; } set { _x = value; } } ////// Y - double. Default value is 0. /// public double Y { get { return _y; } set { _y = value; } } #endregion Public Properties //------------------------------------------------------ // // Protected Methods // //------------------------------------------------------ #region Protected Methods #endregion ProtectedMethods //----------------------------------------------------- // // Internal Methods // //------------------------------------------------------ #region Internal Methods #endregion Internal Methods //----------------------------------------------------- // // Internal Properties // //----------------------------------------------------- #region Internal Properties ////// Creates a string representation of this object based on the current culture. /// ////// A string representation of this object. /// public override string ToString() { // Delegate to the internal method which implements all ToString calls. return ConvertToString(null /* format string */, null /* format provider */); } ////// Creates a string representation of this object based on the IFormatProvider /// passed in. If the provider is null, the CurrentCulture is used. /// ////// A string representation of this object. /// public string ToString(IFormatProvider provider) { // Delegate to the internal method which implements all ToString calls. return ConvertToString(null /* format string */, provider); } ////// Creates a string representation of this object based on the format string /// and IFormatProvider passed in. /// If the provider is null, the CurrentCulture is used. /// See the documentation for IFormattable for more information. /// ////// A string representation of this object. /// string IFormattable.ToString(string format, IFormatProvider provider) { // Delegate to the internal method which implements all ToString calls. return ConvertToString(format, provider); } ////// Creates a string representation of this object based on the format string /// and IFormatProvider passed in. /// If the provider is null, the CurrentCulture is used. /// See the documentation for IFormattable for more information. /// ////// A string representation of this object. /// internal string ConvertToString(string format, IFormatProvider provider) { // Helper to get the numeric list separator for a given culture. char separator = MS.Internal.TokenizerHelper.GetNumericListSeparator(provider); return String.Format(provider, "{1:" + format + "}{0}{2:" + format + "}", separator, _x, _y); } #endregion Internal Properties //----------------------------------------------------- // // Dependency Properties // //------------------------------------------------------ #region Dependency Properties #endregion Dependency Properties //----------------------------------------------------- // // Internal Fields // //------------------------------------------------------ #region Internal Fields internal double _x; internal double _y; #endregion Internal Fields #region Constructors //------------------------------------------------------ // // Constructors // //----------------------------------------------------- #endregion Constructors } } // File provided for Reference Use Only by Microsoft Corporation (c) 2007. // Copyright (c) Microsoft Corporation. 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