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# Add project specific ProGuard rules here.
# By default, the flags in this file are appended to flags specified
# in C:\Users\Roy\AppData\Local\Android\Sdk/tools/proguard/proguard-android.txt
# You can edit the include path and order by changing the proguardFiles
# directive in build.gradle.
#
# For more details, see
#   http://developer.android.com/guide/developing/tools/proguard.html

# Add any project specific keep options here:

# If your project uses WebView with JS, uncomment the following
# and specify the fully qualified class name to the JavaScript interface
# class:
#-keepclassmembers class fqcn.of.javascript.interface.for.webview {
#   public *;
#}

# Uncomment this to preserve the line number information for
# debugging stack traces.
#-keepattributes SourceFile,LineNumberTable

# If you keep the line number information, uncomment this to
# hide the original source file name.
#-renamesourcefileattribute SourceFile
/// Initializes a new instance of the <see cref="Int32DataPoint"/> class. /// </summary> /// <param name="value">The value.</param> public Int32DataPoint(int value) : base(value) { } /// <summary> /// Performs an implicit conversion from <see cref="System.Int32"/> to <see cref="Int32DataPoint"/>. /// </summary> /// <param name="value">The value.</param> /// <returns> /// The result of the conversion. /// </returns> public static implicit operator Int32DataPoint(int value) { return new Int32DataPoint(value); } /// <summary> /// Implements the operator -. /// </summary> /// <param name="a">a.</param> /// <param name="b">The b.</param> /// <returns> /// The result of the operator. /// </returns> public static Int32DataPoint operator -(Int32DataPoint a, Int32DataPoint b) { return new Int32DataPoint(a.Value - b.Value); } /// <summary> /// Implements the operator +. /// </summary> /// <param name="a">a.</param> /// <param name="b">The b.</param> /// <returns> /// The result of the operator. /// </returns> public static Int32DataPoint operator +(Int32DataPoint a, Int32DataPoint b) { return new Int32DataPoint(a.Value + b.Value); } /// <summary> /// Sums the value of this instance with another instance value and returns the result. /// </summary> /// <param name="other">The other instance.</param> /// <returns></returns> public override IGraphDataPoint Add(IGraphDataPoint other) { return new Int32DataPoint(this.Value + (other as Int32DataPoint).Value); } /// <summary> /// Subtract the value of another instance from this instance and returns the result. /// </summary> /// <param name="other">The other instance.</param> /// <returns></returns> public override IGraphDataPoint Subtract(IGraphDataPoint other) { return new Int32DataPoint(this.Value - (other as Int32DataPoint).Value); } /// <summary> /// Multiplies the value of this instance with another instance value and returns the result. /// </summary> /// <param name="other">The other instance.</param> /// <returns></returns> public override IGraphDataPoint Multiply(IGraphDataPoint other) { return new Int32DataPoint(this.Value * (other as Int32DataPoint).Value); } /// <summary> /// Divides the value of this instance with another instance value and returns the result. /// </summary> /// <param name="other">The other instance.</param> /// <returns></returns> public override IGraphDataPoint Divide(IGraphDataPoint other) { return new Int32DataPoint(this.Value / (other as Int32DataPoint).Value); } /// <summary> /// Returns the percentage value of this instance between the specified minimum and maximum values. /// </summary> /// <param name="min">The minimum.</param> /// <param name="max">The maximum.</param> /// <returns></returns> public override double ComputeRelativePosition(IGraphDataPoint min, IGraphDataPoint max) { Int32DataPoint dMin = min as Int32DataPoint; Int32DataPoint dMax = max as Int32DataPoint; var result = ((Value - dMin) * 100) / (dMax - dMin); return result; } /// <summary> /// Returns the absolute value of the specified percentage value between the specified minimum and maximum values. /// </summary> /// <param name="min">The minimum.</param> /// <param name="max">The maximum.</param> /// <param name="percentage">The percentage.</param> /// <returns></returns> public override IGraphDataPoint ComputeAbsolutePosition(IGraphDataPoint min, IGraphDataPoint max, double percentage) { int minimum = (int)min.GetValue(); int maximum = (int)max.GetValue(); return new Int32DataPoint((int)(minimum + (maximum - minimum) * percentage)); } /// <summary> /// Creates a range of values from the specified minimum and maximum. /// </summary> /// <param name="min">The minimum.</param> /// <param name="max">The maximum.</param> /// <param name="count">The count.</param> /// <returns></returns> public override IEnumerable<IGraphDataPoint> CreateRange(IGraphDataPoint min, IGraphDataPoint max, int count) { int minimum = (int)min.GetValue(); int maximum = (int)max.GetValue(); return Enumerable.Range(0, count). Select(i => minimum + (maximum - minimum) * ((int)i / (count - 1))). Select(x => new Int32DataPoint(x)); } /// <summary> /// Returns a formated string of this data point. /// </summary> /// <param name="format">The format.</param> /// <returns></returns> public override string ToString(string format) { return Value.ToString(format); } } }