图片撕纸效果处理

Posted tlmbem

tags:

篇首语:本文由小常识网(cha138.com)小编为大家整理,主要介绍了图片撕纸效果处理相关的知识,希望对你有一定的参考价值。

技术图片   技术图片   技术图片

技术图片

  /// <summary>
  /// 撕纸效果
  /// </summary>
  public class TearHelper
  
    private static SolidBrush out_sb = new SolidBrush(Color.FromArgb(80, 110, 105, 109));
    private static Pen out_pen = new Pen(Color.FromArgb(220, 128, 128, 128));
    /// <summary>
    /// 撕纸
    /// </summary>
    /// <param name="img">要处理的图片</param>
    /// <param name="tearOrientation">撕裂方位</param>
    /// <param name="shadowOrientation">撕裂阴影方位</param>
    /// <param name="avulsion">撕纸效果厚度(默认值8)</param>
    /// <param name="shadow">撕纸效果阴影厚度(默认值4)</param>
    /// <param name="interval">撕纸效果间距(默认值4)</param>
    /// <returns></returns>
    public static Bitmap TearIamge(Image img, TearOrientation tearOrientation = TearOrientation.Bottom|TearOrientation.Right, ShadowOrientation shadowOrientation = ShadowOrientation.Bottom|ShadowOrientation.Right, int avulsion = 8, int shadow = 4, int interval = 4)
    
      Bitmap bmp = new Bitmap(img.Width, img.Height);
      Graphics bmp_g = Graphics.FromImage(bmp);
      Region r = bmp_g.Clip;
      int x = 0;

      #region 内图大小
      Rectangle bmp_in_rect = new Rectangle(0, 0, img.Width, img.Height);
      if (tearOrientation.HasFlag(TearOrientation.Bottom))
      
        bmp_in_rect.Height -= avulsion;
        if (shadowOrientation.HasFlag(ShadowOrientation.Bottom))
        
          bmp_in_rect.Height -= shadow;
        
      
      if (tearOrientation.HasFlag(TearOrientation.Right))
      
        bmp_in_rect.Width -= avulsion;
        if (shadowOrientation.HasFlag(ShadowOrientation.Right))
        
          bmp_in_rect.Width -= shadow;
        
      
      if (tearOrientation.HasFlag(TearOrientation.Left))
      
        bmp_in_rect.Width -= avulsion;
        bmp_in_rect.X += avulsion;
        if (shadowOrientation.HasFlag(ShadowOrientation.Left))
        
          bmp_in_rect.Width -= shadow;
          bmp_in_rect.X += shadow;
        
      
      if (tearOrientation.HasFlag(TearOrientation.Top))
      
        bmp_in_rect.Height -= avulsion;
        bmp_in_rect.Y += avulsion;
        if (shadowOrientation.HasFlag(ShadowOrientation.Top))
        
          bmp_in_rect.Height -= shadow;
          bmp_in_rect.Y += shadow;
        
      
      #endregion

      #region 计算撕纸路径
      #region
      int bottom_in_len = 0;
      Point[] bottom_in_point;
      int bottom_out_len = 0;
      Point[] bottom_out_point;
      if (tearOrientation.HasFlag(TearOrientation.Bottom))
      
        bottom_in_len = (int)Math.Round((double)bmp_in_rect.Width / interval, 0);
        bottom_in_point = new Point[bottom_in_len];
        for (int i = 0; i < bottom_in_len; i++)
        
          x++;
          bottom_in_point[i] = new Point(bmp_in_rect.X + i * interval, bmp_in_rect.Bottom + (int)(RandomNumber(x * interval) * avulsion));
        
        if (bottom_in_point[bottom_in_len - 1].X > bmp_in_rect.Right)
        
          bottom_in_point[bottom_in_len - 1].X = bmp_in_rect.Right;
        

        if (shadowOrientation.HasFlag(ShadowOrientation.Bottom))
        
          bottom_out_len = bottom_in_len;
          bottom_out_point = new Point[bottom_out_len];
          for (int i = 0; i < bottom_out_len; i++)
          
            bottom_out_point[i] = new Point(bottom_in_point[i].X, bottom_in_point[i].Y + shadow);
          
        
        else
        
          bottom_out_len = 2;
          bottom_out_point = new Point[bottom_out_len];
          bottom_out_point[0] = new Point(bmp_in_rect.Left, bmp_in_rect.Bottom);
          bottom_out_point[1] = new Point(bmp_in_rect.Right, bmp_in_rect.Bottom);
        
      
      else
      
        bottom_in_len = 2;
        bottom_in_point = new Point[bottom_in_len];
        bottom_in_point[0] = new Point(bmp_in_rect.Left, bmp_in_rect.Bottom);
        bottom_in_point[1] = new Point(bmp_in_rect.Right, bmp_in_rect.Bottom);
        bottom_out_len = 2;
        bottom_out_point = new Point[bottom_out_len];
        bottom_out_point[0] = new Point(bmp_in_rect.Left, bmp_in_rect.Bottom);
        bottom_out_point[1] = new Point(bmp_in_rect.Right, bmp_in_rect.Bottom);
      
      #endregion
      #region
      int right_in_len = 0;
      Point[] right_in_point;
      int right_out_len = 0;
      Point[] right_out_point;
      if (tearOrientation.HasFlag(TearOrientation.Right))
      
        right_in_len = (int)Math.Round((double)bmp_in_rect.Height / interval, 0);
        right_in_point = new Point[right_in_len];
        for (int i = 0; i < right_in_len; i++)
        
          x++;
          right_in_point[i] = new Point(bmp_in_rect.Right + (int)(RandomNumber(x * interval) * avulsion), bmp_in_rect.Bottom - i * interval);
        
        if (right_in_point[right_in_len - 1].Y < bmp_in_rect.Top)
        
          right_in_point[right_in_len - 1].Y = bmp_in_rect.Top;
        

        if (shadowOrientation.HasFlag(ShadowOrientation.Right))
        
          right_out_len = right_in_len;
          right_out_point = new Point[right_out_len];
          for (int i = 0; i < right_out_len; i++)
          
            right_out_point[i] = new Point(right_in_point[i].X + shadow, right_in_point[i].Y);
          
        
        else
        
          right_out_len = 2;
          right_out_point = new Point[right_out_len];
          right_out_point[0] = new Point(bmp_in_rect.Right, bmp_in_rect.Bottom);
          right_out_point[1] = new Point(bmp_in_rect.Right, bmp_in_rect.Top);
        
      
      else
      
        right_in_len = 2;
        right_in_point = new Point[right_in_len];
        right_in_point[0] = new Point(bmp_in_rect.Right, bmp_in_rect.Bottom);
        right_in_point[1] = new Point(bmp_in_rect.Right, bmp_in_rect.Top);
        right_out_len = 2;
        right_out_point = new Point[right_out_len];
        right_out_point[0] = new Point(bmp_in_rect.Right, bmp_in_rect.Bottom);
        right_out_point[1] = new Point(bmp_in_rect.Right, bmp_in_rect.Top);
      
      #endregion
      #region
      int top_in_len = 0;
      Point[] top_in_point;
      int top_out_len = 0;
      Point[] top_out_point;
      if (tearOrientation.HasFlag(TearOrientation.Top))
      
        top_in_len = (int)Math.Round((double)bmp_in_rect.Width / interval, 0);
        top_in_point = new Point[top_in_len];
        for (int i = 0; i < top_in_len; i++)
        
          x++;
          top_in_point[i] = new Point(bmp_in_rect.Right - i * interval, bmp_in_rect.Y - (int)(RandomNumber(x * interval) * avulsion));
        
        if (top_in_point[top_in_len - 1].X < bmp_in_rect.Left)
        
          top_in_point[top_in_len - 1].X = bmp_in_rect.Left;
        

        if (shadowOrientation.HasFlag(ShadowOrientation.Top))
        
          top_out_len = top_in_len;
          top_out_point = new Point[top_out_len];
          for (int i = 0; i < top_out_len; i++)
          
            top_out_point[i] = new Point(top_in_point[i].X, top_in_point[i].Y - shadow);
          
        
        else
        
          top_out_len = 2;
          top_out_point = new Point[top_out_len];
          top_out_point[0] = new Point(bmp_in_rect.Right, bmp_in_rect.Top);
          top_out_point[1] = new Point(bmp_in_rect.Left, bmp_in_rect.Top);
        
      
      else
      
        top_in_len = 2;
        top_in_point = new Point[top_in_len];
        top_in_point[0] = new Point(bmp_in_rect.Right, bmp_in_rect.Top);
        top_in_point[1] = new Point(bmp_in_rect.Left, bmp_in_rect.Top);
        top_out_len = 2;
        top_out_point = new Point[top_out_len];
        top_out_point[0] = new Point(bmp_in_rect.Right, bmp_in_rect.Top);
        top_out_point[1] = new Point(bmp_in_rect.Left, bmp_in_rect.Top);
      
      #endregion
      #region
      int left_in_len = 0;
      Point[] left_in_point;
      int left_out_len = 0;
      Point[] left_out_point;
      if (tearOrientation.HasFlag(TearOrientation.Left))
      
        left_in_len = (int)Math.Round((double)bmp_in_rect.Height / interval, 0);
        left_in_point = new Point[left_in_len];
        for (int i = 0; i < left_in_len; i++)
        
          x++;
          left_in_point[i] = new Point(bmp_in_rect.X - (int)(RandomNumber(x * interval) * avulsion), bmp_in_rect.Y + i * interval);
        
        if (left_in_point[left_in_len - 1].Y > bmp_in_rect.Bottom)
        
          left_in_point[left_in_len - 1].Y = bmp_in_rect.Bottom;
        

        if (shadowOrientation.HasFlag(ShadowOrientation.Left))
        
          left_out_len = left_in_len;
          left_out_point = new Point[left_out_len];
          for (int i = 0; i < left_out_len; i++)
          
            left_out_point[i] = new Point(left_in_point[i].X - shadow, left_in_point[i].Y);
          
        
        else
        
          left_out_len = 2;
          left_out_point = new Point[left_out_len];
          left_out_point[0] = new Point(bmp_in_rect.Left, bmp_in_rect.Top);
          left_out_point[1] = new Point(bmp_in_rect.Left, bmp_in_rect.Bottom);
        
      
      else
      
        left_in_len = 2;
        left_in_point = new Point[left_in_len];
        left_in_point[0] = new Point(bmp_in_rect.Left, bmp_in_rect.Top);
        left_in_point[1] = new Point(bmp_in_rect.Left, bmp_in_rect.Bottom);
        left_out_len = 2;
        left_out_point = new Point[left_out_len];
        left_out_point[0] = new Point(bmp_in_rect.Left, bmp_in_rect.Top);
        left_out_point[1] = new Point(bmp_in_rect.Left, bmp_in_rect.Bottom);
      
      #endregion
      #endregion

      #region 撕纸效果阴影
      if (shadowOrientation != ShadowOrientation.None)
      
        GraphicsPath out_gp = new GraphicsPath();
        out_gp.AddLines(bottom_out_point);
        out_gp.AddLines(right_out_point);
        out_gp.AddLines(top_out_point);
        out_gp.AddLines(left_out_point);
        Region out_r = new System.Drawing.Region(out_gp);
        bmp_g.Clip = out_r;
        bmp_g.FillRegion(out_sb, out_r);
        out_r.Dispose();
        out_gp.Dispose();
      
      #endregion

      #region 撕纸效果
      GraphicsPath in_gp = new GraphicsPath();
      in_gp.AddLines(bottom_in_point);
      in_gp.AddLines(right_in_point);
      in_gp.AddLines(top_in_point);
      in_gp.AddLines(left_in_point);
      Region in_r = new System.Drawing.Region(in_gp);
      bmp_g.Clip = in_r;
      int in_x = bmp_in_rect.X - (tearOrientation.HasFlag(TearOrientation.Left) ? (shadowOrientation.HasFlag(ShadowOrientation.Left) ? avulsion + shadow : avulsion) : 0);
      int in_y = bmp_in_rect.Y - (tearOrientation.HasFlag(TearOrientation.Top) ? (shadowOrientation.HasFlag(ShadowOrientation.Top) ? avulsion + shadow : avulsion) : 0);
      bmp_g.DrawImage(img, in_x, in_y);
      bmp_g.Clip = r;
      bmp_g.DrawPath(out_pen, in_gp);
      in_gp.Dispose();
      #endregion

      in_r.Dispose();
      bmp_g.Dispose();
      return bmp;
    

    /// <summary>
    ///返回0.0-1.0的随机数
    /// </summary>
    /// <param name="x"></param>
    /// <returns></returns>
    private static double RandomNumber(int x)
    
      x = (x << 13) ^ x;
      return Math.Abs((1.0 - ((x * (x * x * 15731 + 789221) + 1376312589) & 0x7fffffff) / 1073741824.0));
    

    /// <summary>
    /// 撕裂方位
    /// </summary>
    [Flags]
    [Description("撕裂方位")]
    public enum TearOrientation
    
      None = 0,
      /// <summary>
      /// 上边
      /// </summary>
      Top = 2,
      /// <summary>
      /// 下边
      /// </summary>
      Bottom = 4,
      /// <summary>
      /// 左边
      /// </summary>
      Left = 8,
      /// <summary>
      /// 右边
      /// </summary>
      Right = 16
    

    /// <summary>
    /// 撕裂阴影方位
    /// </summary>
    [Flags]
    [Description("撕裂阴影方位")]
    public enum ShadowOrientation
    
      None = 0,
      /// <summary>
      /// 上边
      /// </summary>
      Top = 2,
      /// <summary>
      /// 下边
      /// </summary>
      Bottom = 4,
      /// <summary>
      /// 左边
      /// </summary>
      Left = 8,
      /// <summary>
      /// 右边
      /// </summary>
      Right = 16
    
  

源码下载:撕纸效果.zip

以上是关于图片撕纸效果处理的主要内容,如果未能解决你的问题,请参考以下文章

如何设计邮票?

android图片特效处理之光晕效果

android图片特效处理之怀旧效果

只会直接插入图片到PPT?图片这样处理,PPT的颜值瞬间提升几倍!

[图像处理]彩色图片转手绘效果

android图片特效处理之光照效果