Update Canvas Animation - android

I don't need an answer any more!
I created an app and there should be bubbles bouncing around the screen.
Everything is working, but they're not being drawn live.
Here the code (not ALL the code, but the important code):
The Bubble Class:
public class Bubble{
private int ID;
private float coordX;
private float coordY;
private float velX;
private float velY;
private float radius;
private int color;
private boolean popped;
private boolean alive;
private boolean dead;
public Bubble(int coordX, int coordY, int velocityX, int velocityY, int ID, int color) {
this.coordX = coordX;
this.coordY = coordY;
this.velX = velocityX;
this.velY = velocityY;
this.radius = 30;
this.ID = ID;
this.color = color;
this.alive = true;
}
public void drawMe(Paint paint, Canvas canvas) {
int paintStartColor = paint.getColor();
paint.setColor(this.color);
canvas.drawCircle(this.coordX, this.coordY, radius, paint);
paint.setColor(paintStartColor);
Log.d("Bubble","drawn bubble [" + ID + "] at (" + this.coordX + "|" + this.coordY + ")");
}
public void update() {
//damit die bubble am rand anstößt und zurück prallt
if(this.coordX - this.radius <= 0) this.velX = - this.velX;
if(this.coordY - this.radius <= 0) this.velY = - this.velY;
if(this.coordX + this.radius >= MainActivity.getInstance().getScreenSize().x) this.velX = - this.velX;
if(this.coordY + this.radius >= MainActivity.getInstance().getScreenSize().y) this.velY = - this.velY;
coordX += velX;
coordY += velY;
updateRadius();
// Log.d("Bubble", "CoordX: " + coordX + ", velX: " + velX);
}
}
The drawing method:
public void drawBubbles() {
Paint paint = new Paint();
for(Bubble b : bubbles) {
b.drawMe(paint, MainActivity.getInstance().getCanvas());
}
}
And the game loop:
while(this.isRunning()) {
updateBubbles(); //update bubbles just calls the update() function in every bubble (for each loop)
drawBubbles();
//...sleep...
}
to draw all the bubbles, and it works, but I only see a difference, when I leave (not close!) the app and then go back into it. I call the method in a loop, and it is called 60 times per second, but why does it not appear on the screen? Also I can't invalidate the canvas.

I just misused the invalidate() method, so it worked fine after I fixed that.

Related

Background for each series GraphView

Im using Graphview and work fine, but now i have a problem.
I would like to have a background for each series that is added to the graph, and not for all series
Is this possible?
This is currently (5 August 2014) not possible on the original GraphView library.
I needed this functionality, so I forked the library and implemented the functionality myself. You can find the updated code on the feature/series_specific_styles branch of my fork:
https://github.com/mobiRic/GraphView/tree/feature/series_specific_styles
Hopefully in future these changes will be pulled into the original library.
The actual code changes are relatively simple.
Added required background fields to GraphViewSeries.GraphViewSeriesStyle
Updated LineGraphView.drawSeries() to look for these fields instead of relying on its own internal values.
I have included full updates below, but the easiest way to view them is on the commit page:
allow different background for each series
Here is the updated GraphViewSeriesStyle class:
static public class GraphViewSeriesStyle {
public int color = 0xff0077cc;
public int thickness = 3;
private ValueDependentColor valueDependentColor;
private final Paint paintBackground;
private boolean drawBackground;
private boolean drawDataPoints;
private float dataPointsRadius = 10f;
public GraphViewSeriesStyle() {
super();
paintBackground = new Paint();
paintBackground.setColor(Color.rgb(20, 40, 60));
paintBackground.setStrokeWidth(4);
paintBackground.setAlpha(128);
}
public GraphViewSeriesStyle(int color, int thickness) {
super();
this.color = color;
this.thickness = thickness;
paintBackground = new Paint();
paintBackground.setColor(Color.rgb(20, 40, 60));
paintBackground.setStrokeWidth(4);
paintBackground.setAlpha(128);
}
public ValueDependentColor getValueDependentColor() {
return valueDependentColor;
}
/**
* the color depends on the value of the data.
* only possible in BarGraphView
* #param valueDependentColor
*/
public void setValueDependentColor(ValueDependentColor valueDependentColor) {
this.valueDependentColor = valueDependentColor;
}
public boolean getDrawBackground() {
return drawBackground;
}
public void setDrawBackground(boolean drawBackground) {
this.drawBackground = drawBackground;
}
public Paint getPaintBackground() {
return paintBackground;
}
public int getBackgroundColor() {
return paintBackground.getColor();
}
/**
* sets the background colour for the series. This is not the background
* colour of the whole graph.
*/
public void setBackgroundColor(int color) {
paintBackground.setColor(color);
}
public float getDataPointsRadius() {
return dataPointsRadius;
}
public boolean getDrawDataPoints() {
return drawDataPoints;
}
/**
* sets the radius of the circles at the data points.
* #see #setDrawDataPoints(boolean)
* #param dataPointsRadius
*/
public void setDataPointsRadius(float dataPointsRadius) {
this.dataPointsRadius = dataPointsRadius;
}
/**
* You can set the flag to let the GraphView draw circles at the data points
* #see #setDataPointsRadius(float)
* #param drawDataPoints
*/
public void setDrawDataPoints(boolean drawDataPoints) {
this.drawDataPoints = drawDataPoints;
}
}
Here is the updated LineGraphView.drawSeries() method:
public void drawSeries(Canvas canvas, GraphViewDataInterface[] values, float graphwidth, float graphheight, float border, double minX, double minY, double diffX, double diffY, float horstart, GraphViewSeriesStyle style) {
// draw background
double lastEndY = 0;
double lastEndX = 0;
// draw data
paint.setStrokeWidth(style.thickness);
paint.setColor(style.color);
Path bgPath = null;
if ((drawBackground) || (style.getDrawBackground())) {
bgPath = new Path();
}
lastEndY = 0;
lastEndX = 0;
float firstX = 0;
for (int i = 0; i < values.length; i++) {
double valY = values[i].getY() - minY;
double ratY = valY / diffY;
double y = graphheight * ratY;
double valX = values[i].getX() - minX;
double ratX = valX / diffX;
double x = graphwidth * ratX;
if (i > 0) {
float startX = (float) lastEndX + (horstart + 1);
float startY = (float) (border - lastEndY) + graphheight;
float endX = (float) x + (horstart + 1);
float endY = (float) (border - y) + graphheight;
// draw data point
if (drawDataPoints) {
//fix: last value was not drawn. Draw here now the end values
canvas.drawCircle(endX, endY, dataPointsRadius, paint);
} else if (style.getDrawDataPoints()) {
canvas.drawCircle(endX, endY, style.getDataPointsRadius(), paint);
}
canvas.drawLine(startX, startY, endX, endY, paint);
if (bgPath != null) {
if (i==1) {
firstX = startX;
bgPath.moveTo(startX, startY);
}
bgPath.lineTo(endX, endY);
}
} else if ((drawDataPoints) || (style.getDrawDataPoints())) {
//fix: last value not drawn as datapoint. Draw first point here, and then on every step the end values (above)
float first_X = (float) x + (horstart + 1);
float first_Y = (float) (border - y) + graphheight;
if (drawDataPoints) {
canvas.drawCircle(first_X, first_Y, dataPointsRadius, paint);
} else if (style.getDrawDataPoints()) {
canvas.drawCircle(first_X, first_Y, style.getDataPointsRadius(), paint);
}
}
lastEndY = y;
lastEndX = x;
}
if (bgPath != null) {
// end / close path
bgPath.lineTo((float) lastEndX, graphheight + border);
bgPath.lineTo(firstX, graphheight + border);
bgPath.close();
if (style.getDrawBackground()) {
canvas.drawPath(bgPath, style.getPaintBackground());
} else {
canvas.drawPath(bgPath, paintBackground);
}
}
}
For interest, that branch also allows data points to be configured for each series - code changes visible here:
allow datapoint styling for each series

Canvas Touch not working in S4 Android device

The wheel View (CircleView) is working fine in major of devices but this error coming from S4 and Note 3 devices.
The touch is getting deducted but the that not fall under the weidgetregion.
false - 1 has to be true - 1
Region Log is:
My Circle View code is
public class CircleView extends View implements OnTouchListener{
boolean firstTime = false;
private List<CircleViewBean> mMenuEntries = new ArrayList<CircleViewBean>();
private OnCellTouchListener mOnCellTouchListener = null;
public interface OnCellTouchListener {
public void onTouch(Wedge cell);
}
private Shader mShader;
private Paint mPaint = new Paint(Paint.ANTI_ALIAS_FLAG | Paint.FILTER_BITMAP_FLAG);
private float screen_density = getContext().getResources().getDisplayMetrics().density;
//Radius of inner ring size
private int mMinSize = scalePX(60);
//Radius of outer ring size
private int mMaxSize = scalePX(170);
private int mWedgeQty = 6;
//Center X location of Radial Menu
private int xPosition = scalePX(120);
//Center Y location of Radial Menu
private int yPosition = scalePX(120);
int touchIndex = -1;
private Wedge[] mWedges;
private RectF mViewRect = new RectF();
private int scalePX( int dp_size )
{
return (int) (dp_size * screen_density + 0.5f);
}
public CircleView(Context context) {
this(context, null);
}
public CircleView(Context context, AttributeSet attrs) {
super(context, attrs);
HashMap<String, String> device = Constants.getDeviceDetails(getResources().getDisplayMetrics().heightPixels, getResources().getDisplayMetrics().widthPixels);
mMinSize = Integer.parseInt(device.get("in_arc"));
mMaxSize = Integer.parseInt(device.get("out_arc"));
setBackgroundResource(R.drawable.centre_wheel);
}
private void determineWedges() {
int entriesQty = mMenuEntries.size();
if ( entriesQty > 0) {
mWedgeQty = entriesQty;
float degSlice = 360 / mWedgeQty;
float start_degSlice = 270 - (degSlice/2);
//calculates where to put the images
this.mWedges = new Wedge[mWedgeQty];
double mid = 0, min = 0, max = 0;
for(int i = 0; i < this.mWedges.length; i++) {
this.mWedges[i] = new Wedge(xPosition, yPosition, mMinSize, mMaxSize, (i
* degSlice)+start_degSlice, degSlice, mMenuEntries.get(i).getIndex());
mid = this.mWedges[i].midValue = normalizeAngle( ((i * degSlice) + start_degSlice + degSlice) / 2 );
min = normalizeAngle( (i * degSlice) + start_degSlice );
max = normalizeAngle( (i * degSlice) + start_degSlice + degSlice);
this.mWedges[i].minValue = min;
this.mWedges[i].midValue = mid;
this.mWedges[i].maxValue = max;
mViewRect.union( new RectF( mWedges[i].getWedgeRegion().getBounds() ) );
}
mShader = new RadialGradient(xPosition, yPosition, mMaxSize, new int[] { 0xff595756, 0xffCCC5C3, 0xf878280}, null, Shader.TileMode.MIRROR);
invalidate();
}
}
#Override
public void onDraw(Canvas canvas) {
if(!firstTime){
firstTime = true;
this.xPosition = (int) (getWidth()/2f);
this.yPosition = (int) (getHeight()/2f);
determineWedges();
}
canvas.scale(getWidth() / mViewRect.width(), getHeight() / mViewRect.width(), xPosition, yPosition);
//Saving the canvas and later restoring it so only this image will be rotated.
canvas.save(Canvas.MATRIX_SAVE_FLAG);
canvas.restore();
canvas.save();
canvas.restore();
mPaint.setShader( mShader );
}
private double normalizeAngle(double angle) {
if(angle >= 0) {
while( angle > 360 ) {
angle -= 360;
}
}
else {
while( angle < -360) {
angle += 360;
}
}
return angle;
}
protected void onMeasure(int widthMeasureSpec, int heightMeasureSpec) {
// TODO Auto-generated method stub
int wmode = MeasureSpec.getMode(widthMeasureSpec);
int hmode = MeasureSpec.getMode(heightMeasureSpec);
int wsize = MeasureSpec.getSize(widthMeasureSpec);
int hsize = MeasureSpec.getSize(heightMeasureSpec);
int width = (int)mViewRect.width();
int height = (int) mViewRect.height();
if (wmode == MeasureSpec.EXACTLY) {
width = wsize;
}
if (hmode == MeasureSpec.EXACTLY) {
height = hsize;
}
this.setMeasuredDimension(width, height);
invalidate();
}
public class Wedge extends Path {
private int x, y;
private int InnerSize, OuterSize;
private float StartArc;
private float ArcWidth;
private Region mWedgeRegion;
private int index=0;
public double minValue;
public double midValue;
public double maxValue;
private Wedge(int x, int y, int InnerSize, int OuterSize, float StartArc, float ArcWidth, int category) {
super();
this.index = category;
if (StartArc >= 360) {
StartArc = StartArc-360;
}
minValue = midValue = maxValue = 0;
mWedgeRegion = new Region();
this.x = x; this.y = y;
this.InnerSize = InnerSize;
this.OuterSize = OuterSize;
this.StartArc = StartArc;
this.ArcWidth = ArcWidth;
this.buildPath();
}
public int getCategoryIndex(){
return this.index;
}
public String toString() {
return minValue + " " + midValue + " " + maxValue;
}
/**
*
* #return the bottom rect that will be used for intersection
*/
public Region getWedgeRegion() {
return mWedgeRegion;
}
private void buildPath() {
final RectF rect = new RectF();
final RectF rect2 = new RectF();
//Rectangles values
rect.set(this.x-this.InnerSize, this.y-this.InnerSize, this.x+this.InnerSize, this.y+this.InnerSize);
rect2.set(this.x-this.OuterSize, this.y-this.OuterSize, this.x+this.OuterSize, this.y+this.OuterSize);
this.reset();
//this.moveTo(100, 100);
this.arcTo(rect2, StartArc, ArcWidth);
this.arcTo(rect, StartArc+ArcWidth, -ArcWidth);
this.close();
mWedgeRegion.setPath( this, new Region(0,0,480,800) );
}
}
public boolean addMenuEntry(CircleViewBean menuEntry) {
mMenuEntries.add(menuEntry);
return true;
}
#Override
public boolean onTouchEvent(MotionEvent event) {
if(event.getAction() == MotionEvent.ACTION_UP){
if(mOnCellTouchListener!=null && touchIndex >-1){
int i=0;
for(Wedge day : mWedges) {
if(day.getWedgeRegion().getBounds().contains((int)event.getX(), (int)event.getY()) && touchIndex==i) {
mOnCellTouchListener.onTouch(mWedges[touchIndex]);
break;
}
i++;
}
}
}else if(event.getAction() == MotionEvent.ACTION_DOWN || event.getAction() == MotionEvent.ACTION_MOVE){
int i=0;
for(Wedge day : mWedges) {
if(day.getWedgeRegion().getBounds().contains((int)event.getX(), (int)event.getY())) {
touchIndex = i;
setBackgroundResource(mMenuEntries.get(touchIndex).getIcon());
}
i++;
}
}
return true;
}
public void setOnCellTouchListener(OnCellTouchListener p) {
mOnCellTouchListener = p;
}
public boolean onTouch(View v, MotionEvent event) {
return false;
}
}
First of all, look at line 307. Learn how to read crash logs because it says exactly on what line the crash is, and then it shouldn't be too hard too determine what is wrong.
Not knowing what line it is I guess that mWedges might be null. in the onTouch you do for(Wedge day : mWedges) but it is not guaranteed that is isn't null there. You should check before you do that if it is null.
You put it to a non null value in determineWedges but only when there is at least 1 mMenuEntries. So when there are no entries when you do an onTouch it will crash.
At last i found my mistake in this code that it is working in mdpi and htpi and not in xxhdpi the reason is
mWedgeRegion.setPath( this, new Region(0,0,480,800) );
The bound exceeds the circle size, i mean the xxhdpi draws an circle with 1000x1000 values, so i made this too like this (max values)
mWedgeRegion.setPath( this, new Region(0,0,720,1200) )

getting android. view.inflateException when I use zoomView for pageCurlView

please tell me how can i remove the exception. or give me idea to implement zoom view with curlview.....
my xml file is like this,
<?xml version="1.0" encoding="utf-8"?>
<LinearLayout
xmlns:android="http://schemas.android.com/apk/res/android"
android:layout_width="fill_parent"
android:layout_height="fill_parent"
android:id="#+id/relat">
<com.example.image.ZoomView
>
<com.example.image.PageCurlView
android:layout_width="fill_parent"
android:layout_height="fill_parent"
android:id="#+id/dcgpagecurlPageCurlView1"
>
</com.example.image.PageCurlView>
my java file is
package com.example.image;
public class StandaloneExample extends Activity {
Button bt;LinearLayout lr;
/** Decoded bitmap image */
private Bitmap mBitmap;
private ZoomView zoomview;
#Override
public void onCreate(Bundle savedInstanceState) {
super.onCreate(savedInstanceState);
this.setContentView(R.layout.standalone_example);
View v1 = ((LayoutInflater)getSystemService(Context.LAYOUT_INFLATER_SERVICE)).inflate(R.layout.standalone_example, null, false);
v1.setLayoutParams(new LinearLayout.LayoutParams(LayoutParams.FILL_PARENT, LayoutParams.FILL_PARENT));
zoomview.addView(v1);
lr = (LinearLayout) findViewById(R.id.relat);
lr.addView(zoomview);
}
#Override
public void onDestroy(){
super.onDestroy();
System.gc();
finish();
}
public void lockOrientationLandscape() {
lockOrientation(ActivityInfo.SCREEN_ORIENTATION_LANDSCAPE);
}
public void lockOrientationPortrait() {
lockOrientation(ActivityInfo.SCREEN_ORIENTATION_PORTRAIT);
}
public void lockOrientation( int orientation ) {
setRequestedOrientation(orientation);
}
}
i have implemented zoomView.java as described in a link
pagecurlview.java class is
public class PageCurlView extends View {
private final static String TAG = "PageCurlView";
private Paint mTextPaint;
private TextPaint mTextPaintShadow;
private int mCurlSpeed;
private int mUpdateRate;
private int mInitialEdgeOffset;
private int mCurlMode;
public static final int CURLMODE_SIMPLE = 0;
public static final int CURLMODE_DYNAMIC = 1;
private boolean bEnableDebugMode = false;
private WeakReference<Context> mContext;
private FlipAnimationHandler mAnimationHandler;
private float mFlipRadius;
private Vector2D mMovement;
private Vector2D mFinger;
private Vector2D mOldMovement;
private Paint mCurlEdgePaint;
private Vector2D mA, mB, mC, mD, mE, mF, mOldF, mOrigin;
private int mCurrentLeft, mCurrentTop;
private boolean bViewDrawn;
private boolean bFlipRight;
private boolean bFlipping;
private boolean bUserMoves;
private boolean bBlockTouchInput = false;
private boolean bEnableInputAfterDraw = false;
private Bitmap mForeground;
private Bitmap mBackground;
private ArrayList<Bitmap> mPages;
private int mIndex = 0;
private class Vector2D
{
public float x,y;
public Vector2D(float x, float y)
{
this.x = x;
this.y = y;
}
#Override
public String toString() {
// TODO Auto-generated method stub
return "("+this.x+","+this.y+")";
}
public float length() {
return (float) Math.sqrt(x * x + y * y);
}
public float lengthSquared() {
return (x * x) + (y * y);
}
public boolean equals(Object o) {
if (o instanceof Vector2D) {
Vector2D p = (Vector2D) o;
return p.x == x && p.y == y;
}
return false;
}
public Vector2D reverse() {
return new Vector2D(-x,-y);
}
public Vector2D sum(Vector2D b) {
return new Vector2D(x+b.x,y+b.y);
}
public Vector2D sub(Vector2D b) {
return new Vector2D(x-b.x,y-b.y);
}
public float dot(Vector2D vec) {
return (x * vec.x) + (y * vec.y);
}
public float cross(Vector2D a, Vector2D b) {
return a.cross(b);
}
public float cross(Vector2D vec) {
return x * vec.y - y * vec.x;
}
public float distanceSquared(Vector2D other) {
float dx = other.x - x;
float dy = other.y - y;
return (dx * dx) + (dy * dy);
}
public float distance(Vector2D other) {
return (float) Math.sqrt(distanceSquared(other));
}
public float dotProduct(Vector2D other) {
return other.x * x + other.y * y;
}
public Vector2D normalize() {
float magnitude = (float) Math.sqrt(dotProduct(this));
return new Vector2D(x / magnitude, y / magnitude);
}
public Vector2D mult(float scalar) {
return new Vector2D(x*scalar,y*scalar);
}
}
class FlipAnimationHandler extends Handler {
#Override
public void handleMessage(Message msg) {
PageCurlView.this.FlipAnimationStep();
}
public void sleep(long millis) {
this.removeMessages(0);
sendMessageDelayed(obtainMessage(0), millis);
}
}
public PageCurlView(Context context) {
super(context);
init(context);
ResetClipEdge();
}
public PageCurlView(Context context, AttributeSet attrs) {
super(context, attrs);
init(context);
// Get the data from the XML AttributeSet
{
TypedArray a = context.obtainStyledAttributes(attrs, R.styleable.PageCurlView);
// Get data
bEnableDebugMode = a.getBoolean(R.styleable.PageCurlView_enableDebugMode, bEnableDebugMode);
mCurlSpeed = a.getInt(R.styleable.PageCurlView_curlSpeed, mCurlSpeed);
mUpdateRate = a.getInt(R.styleable.PageCurlView_updateRate, mUpdateRate);
mInitialEdgeOffset = a.getInt(R.styleable.PageCurlView_initialEdgeOffset, mInitialEdgeOffset);
mCurlMode = a.getInt(R.styleable.PageCurlView_curlMode, mCurlMode);
Log.i(TAG, "mCurlSpeed: " + mCurlSpeed);
Log.i(TAG, "mUpdateRate: " + mUpdateRate);
Log.i(TAG, "mInitialEdgeOffset: " + mInitialEdgeOffset);
Log.i(TAG, "mCurlMode: " + mCurlMode);
// recycle object (so it can be used by others)
a.recycle();
}
ResetClipEdge();
}
private final void init(Context context) {
// Foreground text paint
mTextPaint = new Paint();
mTextPaint.setAntiAlias(true);
mTextPaint.setTextSize(16);
mTextPaint.setColor(0xFF000000);
// The shadow
mTextPaintShadow = new TextPaint();
mTextPaintShadow.setAntiAlias(true);
mTextPaintShadow.setTextSize(16);
mTextPaintShadow.setColor(0x00000000);
// Cache the context
mContext = new WeakReference<Context>(context);
// Base padding
setPadding(3, 3, 3, 3);
// The focus flags are needed
setFocusable(true);
setFocusableInTouchMode(true);
mMovement = new Vector2D(0,0);
mFinger = new Vector2D(0,0);
mOldMovement = new Vector2D(0,0);
// Create our curl animation handler
mAnimationHandler = new FlipAnimationHandler();
// Create our edge paint
mCurlEdgePaint = new Paint();
mCurlEdgePaint.setColor(Color.WHITE);
mCurlEdgePaint.setAntiAlias(true);
mCurlEdgePaint.setStyle(Paint.Style.FILL);
mCurlEdgePaint.setShadowLayer(10, -5, 5, 0x99000000);
// Set the default props, those come from an XML :D
mCurlSpeed = 30;
mUpdateRate = 33;
mInitialEdgeOffset = 20;
mCurlMode = 1;
// LEGACY PAGE HANDLING!
// Create pages
mPages = new ArrayList<Bitmap>();
mPages.add(BitmapFactory.decodeResource(getResources(), R.drawable.princess));
mPages.add(BitmapFactory.decodeResource(getResources(), R.drawable.temp));
// Create some sample images
mForeground = mPages.get(0);
mBackground = mPages.get(1);
}
public void ResetClipEdge()
{
// Set our base movement
mMovement.x = mInitialEdgeOffset;
mMovement.y = mInitialEdgeOffset;
mOldMovement.x = 0;
mOldMovement.y = 0;
// Now set the points
// TODO: OK, those points MUST come from our measures and
// the actual bounds of the view!
mA = new Vector2D(mInitialEdgeOffset, 0);
mB = new Vector2D(this.getWidth(), this.getHeight());
mC = new Vector2D(this.getWidth(), 0);
mD = new Vector2D(0, 0);
mE = new Vector2D(0, 0);
mF = new Vector2D(0, 0);
mOldF = new Vector2D(0, 0);
// The movement origin point
mOrigin = new Vector2D(this.getWidth(), 0);
}
private Context GetContext() {
return mContext.get();
}
public boolean IsCurlModeDynamic()
{
return mCurlMode == CURLMODE_DYNAMIC;
}
public void SetCurlSpeed(int curlSpeed)
{
if ( curlSpeed < 1 )
throw new IllegalArgumentException("curlSpeed must be greated than 0");
mCurlSpeed = curlSpeed;
}
public int GetCurlSpeed()
{
return mCurlSpeed;
}
public void SetUpdateRate(int updateRate)
{
if ( updateRate < 1 )
throw new IllegalArgumentException("updateRate must be greated than 0");
mUpdateRate = updateRate;
}
public int GetUpdateRate()
{
return mUpdateRate;
}
public void SetInitialEdgeOffset(int initialEdgeOffset)
{
if ( initialEdgeOffset < 0 )
throw new IllegalArgumentException("initialEdgeOffset can not negative");
mInitialEdgeOffset = initialEdgeOffset;
}
public int GetInitialEdgeOffset()
{
return mInitialEdgeOffset;
}
public void SetCurlMode(int curlMode)
{
if ( curlMode != CURLMODE_SIMPLE &&
curlMode != CURLMODE_DYNAMIC )
throw new IllegalArgumentException("Invalid curlMode");
mCurlMode = curlMode;
}
public int GetCurlMode()
{
return mCurlMode;
}
public void SetEnableDebugMode(boolean bFlag)
{
bEnableDebugMode = bFlag;
}
public boolean IsDebugModeEnabled()
{
return bEnableDebugMode;
}
#Override
protected void onMeasure(int widthMeasureSpec, int heightMeasureSpec) {
int finalWidth, finalHeight;
finalWidth = measureWidth(widthMeasureSpec);
finalHeight = measureHeight(heightMeasureSpec);
setMeasuredDimension(finalWidth, finalHeight);
}
private int measureWidth(int measureSpec) {
int result = 0;
int specMode = MeasureSpec.getMode(measureSpec);
int specSize = MeasureSpec.getSize(measureSpec);
if (specMode == MeasureSpec.EXACTLY) {
// We were told how big to be
result = specSize;
} else {
// Measure the text
result = specSize;
}
return result;
}
private int measureHeight(int measureSpec) {
int result = 0;
int specMode = MeasureSpec.getMode(measureSpec);
int specSize = MeasureSpec.getSize(measureSpec);
if (specMode == MeasureSpec.EXACTLY) {
// We were told how big to be
result = specSize;
} else {
// Measure the text (beware: ascent is a negative number)
result = specSize;
}
return result;
}
#Override
public boolean onTouchEvent(MotionEvent event) {
if (!bBlockTouchInput) {
// Get our finger position
mFinger.x = event.getX();
mFinger.y = event.getY();
int width = getWidth();
// Depending on the action do what we need to
switch (event.getAction()) {
case MotionEvent.ACTION_DOWN:
mOldMovement.x = mFinger.x;
mOldMovement.y = mFinger.y;
// If we moved over the half of the display flip to next
if (mOldMovement.x > (width >> 1)) {
mMovement.x = mInitialEdgeOffset;
mMovement.y = mInitialEdgeOffset;
// Set the right movement flag
bFlipRight = true;
} else {
// Set the left movement flag
bFlipRight = false;
// go to next previous page
previousView();
// Set new movement
mMovement.x = IsCurlModeDynamic()?width<<1:width;
mMovement.y = mInitialEdgeOffset;
}
break;
case MotionEvent.ACTION_UP:
bUserMoves=false;
bFlipping=true;
FlipAnimationStep();
break;
case MotionEvent.ACTION_MOVE:
bUserMoves=true;
// Get movement
mMovement.x -= mFinger.x - mOldMovement.x;
mMovement.y -= mFinger.y - mOldMovement.y;
mMovement = CapMovement(mMovement, true);
// Make sure the y value get's locked at a nice level
if ( mMovement.y <= 1 )
mMovement.y = 1;
// Get movement direction
if (mFinger.x < mOldMovement.x ) {
bFlipRight = true;
} else {
bFlipRight = false;
}
// Save old movement values
mOldMovement.x = mFinger.x;
mOldMovement.y = mFinger.y;
// Force a new draw call
DoPageCurl();
this.invalidate();
break;
}
}
// TODO: Only consume event if we need to.
return true;
}
private Vector2D CapMovement(Vector2D point, boolean bMaintainMoveDir)
{
// Make sure we never ever move too much
if (point.distance(mOrigin) > mFlipRadius)
{
if ( bMaintainMoveDir )
{
// Maintain the direction
point = mOrigin.sum(point.sub(mOrigin).normalize().mult(mFlipRadius));
}
else
{
// Change direction
if ( point.x > (mOrigin.x+mFlipRadius))
point.x = (mOrigin.x+mFlipRadius);
else if ( point.x < (mOrigin.x-mFlipRadius) )
point.x = (mOrigin.x-mFlipRadius);
point.y = (float) (Math.sin(Math.acos(Math.abs(point.x-mOrigin.x)/mFlipRadius))*mFlipRadius);
}
}
return point;
}
public void FlipAnimationStep() {
if ( !bFlipping )
return;
int width = getWidth();
// No input when flipping
bBlockTouchInput = true;
// Handle speed
float curlSpeed = mCurlSpeed;
if ( !bFlipRight )
curlSpeed *= -1;
// Move us
mMovement.x += curlSpeed;
mMovement = CapMovement(mMovement, false);
// Create values
DoPageCurl();
// Check for endings :D
if (mA.x < 1 || mA.x > width - 1) {
bFlipping = false;
if (bFlipRight) {
//SwapViews();
nextView();
}
ResetClipEdge();
// Create values
DoPageCurl();
// Enable touch input after the next draw event
bEnableInputAfterDraw = true;
}
else
{
mAnimationHandler.sleep(mUpdateRate);
}
// Force a new draw call
this.invalidate();
}
private void DoPageCurl()
{
if(bFlipping){
if ( IsCurlModeDynamic() )
doDynamicCurl();
else
doSimpleCurl();
} else {
if ( IsCurlModeDynamic() )
doDynamicCurl();
else
doSimpleCurl();
}
}
private void doSimpleCurl() {
int width = getWidth();
int height = getHeight();
// Calculate point A
mA.x = width - mMovement.x;
mA.y = height;
// Calculate point D
mD.x = 0;
mD.y = 0;
if (mA.x > width / 2) {
mD.x = width;
mD.y = height - (width - mA.x) * height / mA.x;
} else {
mD.x = 2 * mA.x;
mD.y = 0;
}
double angle = Math.atan((height - mD.y) / (mD.x + mMovement.x - width));
double _cos = Math.cos(2 * angle);
double _sin = Math.sin(2 * angle);
mF.x = (float) (width - mMovement.x + _cos * mMovement.x);
mF.y = (float) (height - _sin * mMovement.x);
// If the x position of A is above half of the page we are still not
// folding the upper-right edge and so E and D are equal.
if (mA.x > width / 2) {
mE.x = mD.x;
mE.y = mD.y;
}
else
{
// So get E
mE.x = (float) (mD.x + _cos * (width - mD.x));
mE.y = (float) -(_sin * (width - mD.x));
}
}
private void doDynamicCurl() {
int width = getWidth();
int height = getHeight();
mF.x = width - mMovement.x+0.1f;
mF.y = height - mMovement.y+0.1f;
if(mA.x==0) {
mF.x= Math.min(mF.x, mOldF.x);
mF.y= Math.max(mF.y, mOldF.y);
}
// Get diffs
float deltaX = width-mF.x;
float deltaY = height-mF.y;
float BH = (float) (Math.sqrt(deltaX * deltaX + deltaY * deltaY) / 2);
double tangAlpha = deltaY / deltaX;
double alpha = Math.atan(deltaY / deltaX);
double _cos = Math.cos(alpha);
double _sin = Math.sin(alpha);
mA.x = (float) (width - (BH / _cos));
mA.y = height;
mD.y = (float) (height - (BH / _sin));
mD.x = width;
mA.x = Math.max(0,mA.x);
if(mA.x==0) {
mOldF.x = mF.x;
mOldF.y = mF.y;
}
// Get W
mE.x = mD.x;
mE.y = mD.y;
// Correct
if (mD.y < 0) {
mD.x = width + (float) (tangAlpha * mD.y);
mE.y = 0;
mE.x = width + (float) (Math.tan(2 * alpha) * mD.y);
}
}
#Deprecated
private void SwapViews() {
Bitmap temp = mForeground;
mForeground = mBackground;
mBackground = temp;
}
private void nextView() {
int foreIndex = mIndex + 1;
if(foreIndex >= mPages.size()) {
foreIndex = 0;
}
int backIndex = foreIndex + 1;
if(backIndex >= mPages.size()) {
backIndex = 0;
}
mIndex = foreIndex;
setViews(foreIndex, backIndex);
}
private void previousView() {
int backIndex = mIndex;
int foreIndex = backIndex - 1;
if(foreIndex < 0) {
foreIndex = mPages.size()-1;
}
mIndex = foreIndex;
setViews(foreIndex, backIndex);
}
private void setViews(int foreground, int background) {
mForeground = mPages.get(foreground);
mBackground = mPages.get(background);
}
#Override
protected void onDraw(Canvas canvas) {
mCurrentLeft = getLeft();
mCurrentTop = getTop();
if ( !bViewDrawn ) {
bViewDrawn = true;
onFirstDrawEvent(canvas);
}
canvas.drawColor(Color.WHITE);
Rect rect = new Rect();
rect.left = 0;
rect.top = 0;
rect.bottom = getHeight();
rect.right = getWidth();
// First Page render
Paint paint = new Paint();
// Draw our elements
drawForeground(canvas, rect, paint);
drawBackground(canvas, rect, paint);
drawCurlEdge(canvas);
// Draw any debug info once we are done
if ( bEnableDebugMode )
drawDebug(canvas);
// Check if we can re-enable input
if ( bEnableInputAfterDraw )
{
bBlockTouchInput = false;
bEnableInputAfterDraw = false;
}
// Restore canvas
//canvas.restore();
}
protected void onFirstDrawEvent(Canvas canvas) {
mFlipRadius = getWidth();
ResetClipEdge();
DoPageCurl();
}
private void drawForeground( Canvas canvas, Rect rect, Paint paint ) {
canvas.drawBitmap(mForeground, null, rect, paint);
// Draw the page number (first page is 1 in real life :D
// there is no page number 0 hehe)
drawPageNum(canvas, mIndex);
}
private Path createBackgroundPath() {
Path path = new Path();
path.moveTo(mA.x, mA.y);
path.lineTo(mB.x, mB.y);
path.lineTo(mC.x, mC.y);
path.lineTo(mD.x, mD.y);
path.lineTo(mA.x, mA.y);
return path;
}
private void drawBackground( Canvas canvas, Rect rect, Paint paint ) {
Path mask = createBackgroundPath();
// Save current canvas so we do not mess it up
canvas.save();
canvas.clipPath(mask);
canvas.drawBitmap(mBackground, null, rect, paint);
// Draw the page number (first page is 1 in real life :D
// there is no page number 0 hehe)
drawPageNum(canvas, mIndex);
canvas.restore();
}
private Path createCurlEdgePath() {
Path path = new Path();
path.moveTo(mA.x, mA.y);
path.lineTo(mD.x, mD.y);
path.lineTo(mE.x, mE.y);
path.lineTo(mF.x, mF.y);
path.lineTo(mA.x, mA.y);
return path;
}
private void drawCurlEdge( Canvas canvas )
{
Path path = createCurlEdgePath();
canvas.drawPath(path, mCurlEdgePaint);
}
private void drawPageNum(Canvas canvas, int pageNum)
{
mTextPaint.setColor(Color.WHITE);
String pageNumText = "- "+pageNum+" -";
drawCentered(canvas, pageNumText,canvas.getHeight()-mTextPaint.getTextSize()-5,mTextPaint,mTextPaintShadow);
}
public static void drawTextShadowed(Canvas canvas, String text, float x, float y, Paint textPain, Paint shadowPaint) {
canvas.drawText(text, x-1, y, shadowPaint);
canvas.drawText(text, x, y+1, shadowPaint);
canvas.drawText(text, x+1, y, shadowPaint);
canvas.drawText(text, x, y-1, shadowPaint);
canvas.drawText(text, x, y, textPain);
}
public static void drawCentered(Canvas canvas, String text, float y, Paint textPain, Paint shadowPaint)
{
float posx = (canvas.getWidth() - textPain.measureText(text))/2;
drawTextShadowed(canvas, text, posx, y, textPain, shadowPaint);
}
private void drawDebug(Canvas canvas)
{
float posX = 10;
float posY = 20;
Paint paint = new Paint();
paint.setStrokeWidth(5);
paint.setStyle(Style.STROKE);
paint.setColor(Color.BLACK);
canvas.drawCircle(mOrigin.x, mOrigin.y, getWidth(), paint);
paint.setStrokeWidth(3);
paint.setColor(Color.RED);
canvas.drawCircle(mOrigin.x, mOrigin.y, getWidth(), paint);
paint.setStrokeWidth(5);
paint.setColor(Color.BLACK);
canvas.drawLine(mOrigin.x, mOrigin.y, mMovement.x, mMovement.y, paint);
paint.setStrokeWidth(3);
paint.setColor(Color.RED);
canvas.drawLine(mOrigin.x, mOrigin.y, mMovement.x, mMovement.y, paint);
posY = debugDrawPoint(canvas,"A",mA,Color.RED,posX,posY);
posY = debugDrawPoint(canvas,"B",mB,Color.GREEN,posX,posY);
posY = debugDrawPoint(canvas,"C",mC,Color.BLUE,posX,posY);
posY = debugDrawPoint(canvas,"D",mD,Color.CYAN,posX,posY);
posY = debugDrawPoint(canvas,"E",mE,Color.YELLOW,posX,posY);
posY = debugDrawPoint(canvas,"F",mF,Color.LTGRAY,posX,posY);
posY = debugDrawPoint(canvas,"Mov",mMovement,Color.DKGRAY,posX,posY);
posY = debugDrawPoint(canvas,"Origin",mOrigin,Color.MAGENTA,posX,posY);
posY = debugDrawPoint(canvas,"Finger",mFinger,Color.GREEN,posX,posY);
}
private float debugDrawPoint(Canvas canvas, String name, Vector2D point, int color, float posX, float posY) {
return debugDrawPoint(canvas,name+" "+point.toString(),point.x, point.y, color, posX, posY);
}
private float debugDrawPoint(Canvas canvas, String name, float X, float Y, int color, float posX, float posY) {
mTextPaint.setColor(color);
drawTextShadowed(canvas,name,posX , posY, mTextPaint,mTextPaintShadow);
Paint paint = new Paint();
paint.setStrokeWidth(5);
paint.setColor(color);
canvas.drawPoint(X, Y, paint);
return posY+15;
}
}

Remove continuous spawn sprite when touched

I am new with AndEngine. I just created a scene with many spawned sprites that come from above screen height in landscape mode. Now I want to remove a sprite when I touch on it. Problem is, when I touched the screen the most recent sprite is removed and I can't remove the tapped sprite individually.
Here is my code:
//======== TimerHandler for collision detection and cleaning up ======
IUpdateHandler detect = new IUpdateHandler() {
#Override
public void reset() {
}
#Override
public void onUpdate(float pSecondsElapsed) {
targets = targetLL.iterator();
while (targets.hasNext()) {
_target = targets.next();
if (_target.getY() >= cameraHeight) {
// removeSprite(_target, targets);
tPool.recyclePoolItem(_target);
targets.remove();
Log.d("ok", "---------Looop Inside-----");
// fail();
break;
}
// i don't know whether below code is valid for this postion
mMainScene.setOnSceneTouchListener(new IOnSceneTouchListener() {
#Override
public boolean onSceneTouchEvent(Scene arg0,
TouchEvent pSceneTouchEvent) {
try {
// i can't use this two
final float touchX = pSceneTouchEvent.getX();
final float touchY = pSceneTouchEvent.getY();
if (pSceneTouchEvent.getAction() == TouchEvent.ACTION_DOWN) {
//call to remove sprite
removeSprite(_target, targets);
}
} catch (ArrayIndexOutOfBoundsException e) {
e.printStackTrace();
} catch (Exception e) {
e.printStackTrace();
}
return true;
}
});
}
targetLL.addAll(TargetsToBeAdded);
TargetsToBeAdded.clear();
}
};
code for adding target:
/** adds a target at a random location and let it move along the y-axis */
public void addTarget() {
Random rand = new Random();
int minX = mTargetTextureRegion.getWidth();
int maxX = (int) (mCamera.getWidth() - mTargetTextureRegion.getWidth());
int rangeX = maxX - minX;
Log.d("----point----", "minX:" + minX + "maxX:" + maxX + "rangeX:"
+ rangeX);
int rX = rand.nextInt(rangeX) + minX;
int rY = (int) mCamera.getHeight() + mTargetTextureRegion.getHeight();
Log.d("---Random x----", "Random x" + rX + "Random y" + rY);
//HERE I USE POOL TO CREATE NEW SPRITE
//tPool is object of TargetsPool Class
target = tPool.obtainPoolItem();
target.setPosition(rX, rY);
target.animate(100);
mMainScene.attachChild(target, 1);
mMainScene.registerTouchArea(target);
int minDuration = 2;
int maxDuration = 32;
int rangeDuration = maxDuration - minDuration;
int actualDuration = rand.nextInt(rangeDuration) + minDuration;
// MoveXModifier mod = new MoveXModifier(actualDuration, target.getX(),
// -target.getWidth());
MoveYModifier mody = new MoveYModifier(actualDuration,
-target.getHeight(), cameraHeight + 10);
target.registerEntityModifier(mody.deepCopy());
TargetsToBeAdded.add(target);
}
code for remove sprite when touched:
// ==============the method to remove sprite=====================
public void removeSprite(final AnimatedSprite _sprite, Iterator it) {
runOnUpdateThread(new Runnable() {
#Override
public void run() {
_target = _sprite;
mMainScene.detachChild(_target);
}
});
it.remove();
}
I use GenericPool to create new sprite.
I am not sure where I have to write code for the specific touched sprite and remove it.
ohh.. I found the solution here.
I implemented an IOnAreaTouchListener in BaseGameActivity class. So, my class declaration looks like:
public class CrazyMonkeyActivity extends BaseGameActivity implements
IOnAreaTouchListener
and my override method looks like:
#Override
public boolean onAreaTouched(final TouchEvent pSceneTouchEvent,
final ITouchArea pTouchArea, final float pTouchAreaLocalX,
final float pTouchAreaLocalY) {
if (pSceneTouchEvent.isActionDown()) {
this.removeSprite((AnimatedSprite) pTouchArea);
return true;
}
return false;
}
And remove Sprite methods should be like:
// ==============the method to remove spirit=====================
public void removeSprite(final AnimatedSprite target) {
runOnUpdateThread(new Runnable() {
#Override
public void run() {
mMainScene.detachChild(target);
mMainScene.unregisterTouchArea(target);
System.gc();
}
});
}
To create continuous Spawn Sprite I use a time handler inside this method. Below method should be called inside onLoadScene() method:
/** a Time Handler for spawning targets Sprites, triggers every 2 second */
private void createSpriteSpawnTimeHandler() {
TimerHandler spriteTimerHandler;
float mEffectSpawnDelay = 2f;
spriteTimerHandler = new TimerHandler(mEffectSpawnDelay, true,
new ITimerCallback() {
#Override
public void onTimePassed(TimerHandler pTimerHandler) {
//position for random sprite
final float xPos = MathUtils.random(30.0f,
(cameraWidth - 30.0f));
final float yPos = MathUtils.random(30.0f,
(cameraHeight - 30.0f));
//below method call for new sprite
addTarget(xPos, yPos);
}
});
getEngine().registerUpdateHandler(spriteTimerHandler);
}
And addTarget() looks like:
public void addTarget(float xPos, float yPos) {
Random rand = new Random();
Log.d("---Random x----", "Random x" + xPos + "Random y" + yPos);
target = new AnimatedSprite(xPos, yPos, mTargetTextureRegion);
target.animate(100);
mMainScene.attachChild(target);
mMainScene.registerTouchArea(target);
int minDuration = 2;
int maxDuration = 32;
int rangeDuration = maxDuration - minDuration;
int actualDuration = rand.nextInt(rangeDuration) + minDuration;
MoveYModifier mody = new MoveYModifier(actualDuration,
-target.getHeight(), cameraHeight + 10);
target.registerEntityModifier(mody.deepCopy());
}
Hope this might help others too!

How to warp images in Android?

I am developing an application in which there is a module for Image warping.I referred several sites but could not get any solution that could solve my problem.
Any tutorials/links or suggestions for face warping would be helpful.
This is from the samples shipped with Android SDK. From your question it's not clear if you want to know the Android API or the very warping algorithm
public class BitmapMesh extends GraphicsActivity {
#Override
protected void onCreate(Bundle savedInstanceState) {
super.onCreate(savedInstanceState);
setContentView(new SampleView(this));
}
private static class SampleView extends View {
private static final int WIDTH = 20;
private static final int HEIGHT = 20;
private static final int COUNT = (WIDTH + 1) * (HEIGHT + 1);
private final Bitmap mBitmap;
private final float[] mVerts = new float[COUNT*2];
private final float[] mOrig = new float[COUNT*2];
private final Matrix mMatrix = new Matrix();
private final Matrix mInverse = new Matrix();
private static void setXY(float[] array, int index, float x, float y) {
array[index*2 + 0] = x;
array[index*2 + 1] = y;
}
public SampleView(Context context) {
super(context);
setFocusable(true);
mBitmap = BitmapFactory.decodeResource(getResources(),
R.drawable.beach);
float w = mBitmap.getWidth();
float h = mBitmap.getHeight();
// construct our mesh
int index = 0;
for (int y = 0; y <= HEIGHT; y++) {
float fy = h * y / HEIGHT;
for (int x = 0; x <= WIDTH; x++) {
float fx = w * x / WIDTH;
setXY(mVerts, index, fx, fy);
setXY(mOrig, index, fx, fy);
index += 1;
}
}
mMatrix.setTranslate(10, 10);
mMatrix.invert(mInverse);
}
#Override protected void onDraw(Canvas canvas) {
canvas.drawColor(0xFFCCCCCC);
canvas.concat(mMatrix);
canvas.drawBitmapMesh(mBitmap, WIDTH, HEIGHT, mVerts, 0,
null, 0, null);
}
private void warp(float cx, float cy) {
final float K = 10000;
float[] src = mOrig;
float[] dst = mVerts;
for (int i = 0; i < COUNT*2; i += 2) {
float x = src[i+0];
float y = src[i+1];
float dx = cx - x;
float dy = cy - y;
float dd = dx*dx + dy*dy;
float d = FloatMath.sqrt(dd);
float pull = K / (dd + 0.000001f);
pull /= (d + 0.000001f);
// android.util.Log.d("skia", "index " + i + " dist=" + d + " pull=" + pull);
if (pull >= 1) {
dst[i+0] = cx;
dst[i+1] = cy;
} else {
dst[i+0] = x + dx * pull;
dst[i+1] = y + dy * pull;
}
}
}
private int mLastWarpX = -9999; // don't match a touch coordinate
private int mLastWarpY;
#Override public boolean onTouchEvent(MotionEvent event) {
float[] pt = { event.getX(), event.getY() };
mInverse.mapPoints(pt);
int x = (int)pt[0];
int y = (int)pt[1];
if (mLastWarpX != x || mLastWarpY != y) {
mLastWarpX = x;
mLastWarpY = y;
warp(pt[0], pt[1]);
invalidate();
}
return true;
}
}
}
Image warping generally consists of two main stages. In the first stage you look for points that match on each image. The second stage involves finding a transformation between the set of matched points. Neither stage is trivial and image warping (generally speaking) remains a difficult problem. I have had to solve this problem in the past and so can speak from experience.
By dividing the problem into two parts you can devise solutions for each part independently. It would be helpful to read some material on the web, http://groups.csail.mit.edu/graphics/classes/CompPhoto06/html/lecturenotes/14_WarpMorph_6.pdf, for example.
In stage one, cross correlation is often used as the basis for finding matching points on the two images.
The transformations used in stage two will determine how accurately you can warp one image onto another. A linear transformation will now be very good while a two dimensional transformation that uses spline approximation will certainly cope with nonlinearities.
Here is another helpful link

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