Split WindowManagerImpl into two parts, the WindowManager interface implementation remains where it is but the global communications with the window manager are now handled by the WindowManagerGlobal class. This change greatly simplifies the challenge of having separate WindowManager instances for each Context. Removed WindowManagerImpl.getDefault(). This represents the bulk of this change. Most of the usages of this method were either to perform global functions (now handled by WindowManagerGlobal) or to obtain the default display (now handled by DisplayManager). Explicitly associate each new window with a display and make the Display object available to the View hierarchy. Add stubs for some new display manager API features. Start to split apart the concepts of display id and layer stack. since they operate at different layers of abstraction. While it's true that each logical display uniquely corresponds to a surface flinger layer stack, it is not necessarily the case that they must use the same ids. Added Display.getLayerStack() and started using it in places where it was relatively easy to do. Change-Id: I29ed909114dec86807c4d3a5059c3fa0358bea61
177 lines
6.2 KiB
Java
177 lines
6.2 KiB
Java
/*
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* Copyright (C) 2011 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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package com.android.server.wm;
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import android.graphics.Canvas;
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import android.graphics.Paint;
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import android.graphics.PixelFormat;
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import android.graphics.PorterDuff;
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import android.graphics.Rect;
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import android.graphics.Typeface;
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import android.graphics.Paint.FontMetricsInt;
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import android.util.DisplayMetrics;
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import android.util.Log;
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import android.util.TypedValue;
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import android.view.Display;
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import android.view.Surface;
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import android.view.SurfaceSession;
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import android.view.Surface.OutOfResourcesException;
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/**
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* Displays a watermark on top of the window manager's windows.
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*/
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class Watermark {
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final Display mDisplay;
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final String[] mTokens;
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final String mText;
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final Paint mTextPaint;
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final int mTextWidth;
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final int mTextHeight;
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final int mTextAscent;
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final int mTextDescent;
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final int mDeltaX;
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final int mDeltaY;
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Surface mSurface;
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int mLastDW;
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int mLastDH;
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boolean mDrawNeeded;
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Watermark(Display display, DisplayMetrics dm, SurfaceSession session, String[] tokens) {
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if (false) {
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Log.i(WindowManagerService.TAG, "*********************** WATERMARK");
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for (int i=0; i<tokens.length; i++) {
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Log.i(WindowManagerService.TAG, " TOKEN #" + i + ": " + tokens[i]);
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}
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}
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mDisplay = display;
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mTokens = tokens;
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StringBuilder builder = new StringBuilder(32);
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int len = mTokens[0].length();
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len = len & ~1;
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for (int i=0; i<len; i+=2) {
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int c1 = mTokens[0].charAt(i);
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int c2 = mTokens[0].charAt(i+1);
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if (c1 >= 'a' && c1 <= 'f') c1 = c1 - 'a' + 10;
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else if (c1 >= 'A' && c1 <= 'F') c1 = c1 - 'A' + 10;
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else c1 -= '0';
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if (c2 >= 'a' && c2 <= 'f') c2 = c2 - 'a' + 10;
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else if (c2 >= 'A' && c2 <= 'F') c2 = c2 - 'A' + 10;
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else c2 -= '0';
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builder.append((char)(255-((c1*16)+c2)));
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}
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mText = builder.toString();
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if (false) {
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Log.i(WindowManagerService.TAG, "Final text: " + mText);
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}
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int fontSize = WindowManagerService.getPropertyInt(tokens, 1,
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TypedValue.COMPLEX_UNIT_DIP, 20, dm);
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mTextPaint = new Paint(Paint.ANTI_ALIAS_FLAG);
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mTextPaint.setTextSize(fontSize);
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mTextPaint.setTypeface(Typeface.create(Typeface.SANS_SERIF, Typeface.BOLD));
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FontMetricsInt fm = mTextPaint.getFontMetricsInt();
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mTextWidth = (int)mTextPaint.measureText(mText);
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mTextAscent = fm.ascent;
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mTextDescent = fm.descent;
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mTextHeight = fm.descent - fm.ascent;
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mDeltaX = WindowManagerService.getPropertyInt(tokens, 2,
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TypedValue.COMPLEX_UNIT_PX, mTextWidth*2, dm);
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mDeltaY = WindowManagerService.getPropertyInt(tokens, 3,
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TypedValue.COMPLEX_UNIT_PX, mTextHeight*3, dm);
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int shadowColor = WindowManagerService.getPropertyInt(tokens, 4,
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TypedValue.COMPLEX_UNIT_PX, 0xb0000000, dm);
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int color = WindowManagerService.getPropertyInt(tokens, 5,
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TypedValue.COMPLEX_UNIT_PX, 0x60ffffff, dm);
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int shadowRadius = WindowManagerService.getPropertyInt(tokens, 6,
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TypedValue.COMPLEX_UNIT_PX, 7, dm);
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int shadowDx = WindowManagerService.getPropertyInt(tokens, 8,
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TypedValue.COMPLEX_UNIT_PX, 0, dm);
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int shadowDy = WindowManagerService.getPropertyInt(tokens, 9,
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TypedValue.COMPLEX_UNIT_PX, 0, dm);
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mTextPaint.setColor(color);
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mTextPaint.setShadowLayer(shadowRadius, shadowDx, shadowDy, shadowColor);
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try {
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mSurface = new Surface(session, 0,
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"WatermarkSurface", mDisplay.getLayerStack(),
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1, 1, PixelFormat.TRANSLUCENT, 0);
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mSurface.setLayer(WindowManagerService.TYPE_LAYER_MULTIPLIER*100);
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mSurface.setPosition(0, 0);
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mSurface.show();
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} catch (OutOfResourcesException e) {
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}
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}
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void positionSurface(int dw, int dh) {
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if (mLastDW != dw || mLastDH != dh) {
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mLastDW = dw;
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mLastDH = dh;
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mSurface.setSize(dw, dh);
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mDrawNeeded = true;
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}
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}
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void drawIfNeeded() {
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if (mDrawNeeded) {
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final int dw = mLastDW;
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final int dh = mLastDH;
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mDrawNeeded = false;
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Rect dirty = new Rect(0, 0, dw, dh);
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Canvas c = null;
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try {
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c = mSurface.lockCanvas(dirty);
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} catch (IllegalArgumentException e) {
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} catch (OutOfResourcesException e) {
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}
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if (c != null) {
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c.drawColor(0, PorterDuff.Mode.CLEAR);
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int deltaX = mDeltaX;
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int deltaY = mDeltaY;
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// deltaX shouldn't be close to a round fraction of our
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// x step, or else things will line up too much.
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int div = (dw+mTextWidth)/deltaX;
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int rem = (dw+mTextWidth) - (div*deltaX);
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int qdelta = deltaX/4;
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if (rem < qdelta || rem > (deltaX-qdelta)) {
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deltaX += deltaX/3;
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}
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int y = -mTextHeight;
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int x = -mTextWidth;
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while (y < (dh+mTextHeight)) {
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c.drawText(mText, x, y, mTextPaint);
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x += deltaX;
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if (x >= dw) {
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x -= (dw+mTextWidth);
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y += deltaY;
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}
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}
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mSurface.unlockCanvasAndPost(c);
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}
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}
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}
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} |