Optimize launch times by removing unneeded extra work, including reloading data and tightening chart invalidation. Fix invalidation storm when sweeps overlap. Move chart history into loader instead of blocking main thread. Disable "Split 4G" mode until telephony support is ready, and combine any existing split policies. Async loading of application details. Remove alpha transitions to speed up on some hardware. Hide menus in detail mode. Delay kicking off force-poll. Fix inset padding on large devices. Bug: 5284321, 5273918, 5263056 Change-Id: I746d79c05e2a6ea97bbdbdc5d807e208328d1373
619 lines
21 KiB
Java
619 lines
21 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.settings.widget;
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import android.content.Context;
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import android.content.res.Resources;
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import android.net.NetworkPolicy;
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import android.net.NetworkStatsHistory;
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import android.os.Handler;
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import android.os.Message;
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import android.text.Spannable;
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import android.text.SpannableStringBuilder;
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import android.text.TextUtils;
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import android.text.format.DateUtils;
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import android.util.AttributeSet;
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import android.view.MotionEvent;
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import android.view.View;
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import com.android.internal.util.Objects;
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import com.android.settings.R;
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import com.android.settings.widget.ChartSweepView.OnSweepListener;
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/**
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* Specific {@link ChartView} that displays {@link ChartNetworkSeriesView} along
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* with {@link ChartSweepView} for inspection ranges and warning/limits.
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*/
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public class ChartDataUsageView extends ChartView {
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private static final long KB_IN_BYTES = 1024;
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private static final long MB_IN_BYTES = KB_IN_BYTES * 1024;
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private static final long GB_IN_BYTES = MB_IN_BYTES * 1024;
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private static final int MSG_UPDATE_AXIS = 100;
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private static final long DELAY_MILLIS = 250;
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private static final boolean LIMIT_SWEEPS_TO_VALID_DATA = false;
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private ChartGridView mGrid;
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private ChartNetworkSeriesView mSeries;
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private ChartNetworkSeriesView mDetailSeries;
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private NetworkStatsHistory mHistory;
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private ChartSweepView mSweepLeft;
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private ChartSweepView mSweepRight;
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private ChartSweepView mSweepWarning;
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private ChartSweepView mSweepLimit;
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private Handler mHandler;
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/** Current maximum value of {@link #mVert}. */
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private long mVertMax;
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public interface DataUsageChartListener {
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public void onInspectRangeChanged();
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public void onWarningChanged();
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public void onLimitChanged();
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}
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private DataUsageChartListener mListener;
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public ChartDataUsageView(Context context) {
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this(context, null, 0);
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}
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public ChartDataUsageView(Context context, AttributeSet attrs) {
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this(context, attrs, 0);
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}
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public ChartDataUsageView(Context context, AttributeSet attrs, int defStyle) {
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super(context, attrs, defStyle);
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init(new TimeAxis(), new InvertedChartAxis(new DataAxis()));
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mHandler = new Handler() {
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@Override
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public void handleMessage(Message msg) {
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final ChartSweepView sweep = (ChartSweepView) msg.obj;
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updateVertAxisBounds(sweep);
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updateEstimateVisible();
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// we keep dispatching repeating updates until sweep is dropped
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sendUpdateAxisDelayed(sweep, true);
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}
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};
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}
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@Override
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protected void onFinishInflate() {
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super.onFinishInflate();
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mGrid = (ChartGridView) findViewById(R.id.grid);
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mSeries = (ChartNetworkSeriesView) findViewById(R.id.series);
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mDetailSeries = (ChartNetworkSeriesView) findViewById(R.id.detail_series);
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mDetailSeries.setVisibility(View.GONE);
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mSweepLeft = (ChartSweepView) findViewById(R.id.sweep_left);
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mSweepRight = (ChartSweepView) findViewById(R.id.sweep_right);
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mSweepLimit = (ChartSweepView) findViewById(R.id.sweep_limit);
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mSweepWarning = (ChartSweepView) findViewById(R.id.sweep_warning);
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// prevent sweeps from crossing each other
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mSweepLeft.setValidRangeDynamic(null, mSweepRight);
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mSweepRight.setValidRangeDynamic(mSweepLeft, null);
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mSweepWarning.setValidRangeDynamic(null, mSweepLimit);
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mSweepLimit.setValidRangeDynamic(mSweepWarning, null);
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mSweepLeft.addOnSweepListener(mHorizListener);
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mSweepRight.addOnSweepListener(mHorizListener);
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mSweepWarning.addOnSweepListener(mVertListener);
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mSweepLimit.addOnSweepListener(mVertListener);
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// tell everyone about our axis
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mGrid.init(mHoriz, mVert);
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mSeries.init(mHoriz, mVert);
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mDetailSeries.init(mHoriz, mVert);
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mSweepLeft.init(mHoriz);
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mSweepRight.init(mHoriz);
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mSweepWarning.init(mVert);
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mSweepLimit.init(mVert);
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setActivated(false);
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}
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public void setListener(DataUsageChartListener listener) {
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mListener = listener;
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}
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public void bindNetworkStats(NetworkStatsHistory stats) {
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mSeries.bindNetworkStats(stats);
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mHistory = stats;
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updateVertAxisBounds(null);
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updateEstimateVisible();
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updatePrimaryRange();
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requestLayout();
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}
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public void bindDetailNetworkStats(NetworkStatsHistory stats) {
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mDetailSeries.bindNetworkStats(stats);
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mDetailSeries.setVisibility(stats != null ? View.VISIBLE : View.GONE);
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if (mHistory != null) {
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mDetailSeries.setEndTime(mHistory.getEnd());
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}
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updateVertAxisBounds(null);
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updateEstimateVisible();
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updatePrimaryRange();
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requestLayout();
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}
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public void bindNetworkPolicy(NetworkPolicy policy) {
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if (policy == null) {
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mSweepLimit.setVisibility(View.INVISIBLE);
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mSweepLimit.setValue(-1);
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mSweepWarning.setVisibility(View.INVISIBLE);
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mSweepWarning.setValue(-1);
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return;
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}
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if (policy.limitBytes != NetworkPolicy.LIMIT_DISABLED) {
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mSweepLimit.setVisibility(View.VISIBLE);
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mSweepLimit.setEnabled(true);
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mSweepLimit.setValue(policy.limitBytes);
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} else {
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mSweepLimit.setVisibility(View.VISIBLE);
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mSweepLimit.setEnabled(false);
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mSweepLimit.setValue(-1);
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}
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if (policy.warningBytes != NetworkPolicy.WARNING_DISABLED) {
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mSweepWarning.setVisibility(View.VISIBLE);
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mSweepWarning.setValue(policy.warningBytes);
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} else {
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mSweepWarning.setVisibility(View.INVISIBLE);
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mSweepWarning.setValue(-1);
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}
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updateVertAxisBounds(null);
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requestLayout();
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invalidate();
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}
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/**
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* Update {@link #mVert} to both show data from {@link NetworkStatsHistory}
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* and controls from {@link NetworkPolicy}.
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*/
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private void updateVertAxisBounds(ChartSweepView activeSweep) {
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final long max = mVertMax;
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long newMax = 0;
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if (activeSweep != null) {
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final int adjustAxis = activeSweep.shouldAdjustAxis();
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if (adjustAxis > 0) {
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// hovering around upper edge, grow axis
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newMax = max * 11 / 10;
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} else if (adjustAxis < 0) {
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// hovering around lower edge, shrink axis
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newMax = max * 9 / 10;
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} else {
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newMax = max;
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}
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}
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// always show known data and policy lines
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final long maxSweep = Math.max(mSweepWarning.getValue(), mSweepLimit.getValue());
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final long maxSeries = Math.max(mSeries.getMaxVisible(), mDetailSeries.getMaxVisible());
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final long maxVisible = Math.max(maxSeries, maxSweep) * 12 / 10;
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final long maxDefault = Math.max(maxVisible, 2 * GB_IN_BYTES);
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newMax = Math.max(maxDefault, newMax);
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// only invalidate when vertMax actually changed
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if (newMax != mVertMax) {
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mVertMax = newMax;
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final boolean changed = mVert.setBounds(0L, newMax);
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mSweepWarning.setValidRange(0L, newMax);
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mSweepLimit.setValidRange(0L, newMax);
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if (changed) {
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mSeries.invalidatePath();
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mDetailSeries.invalidatePath();
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}
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mGrid.invalidate();
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// since we just changed axis, make sweep recalculate its value
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if (activeSweep != null) {
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activeSweep.updateValueFromPosition();
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}
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// layout other sweeps to match changed axis
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// TODO: find cleaner way of doing this, such as requesting full
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// layout and making activeSweep discard its tracking MotionEvent.
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if (mSweepLimit != activeSweep) {
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layoutSweep(mSweepLimit);
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}
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if (mSweepWarning != activeSweep) {
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layoutSweep(mSweepWarning);
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}
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}
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}
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/**
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* Control {@link ChartNetworkSeriesView#setEstimateVisible(boolean)} based
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* on how close estimate comes to {@link #mSweepWarning}.
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*/
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private void updateEstimateVisible() {
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final long maxEstimate = mSeries.getMaxEstimate();
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// show estimate when near warning/limit
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long interestLine = Long.MAX_VALUE;
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if (mSweepWarning.isEnabled()) {
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interestLine = mSweepWarning.getValue();
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} else if (mSweepLimit.isEnabled()) {
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interestLine = mSweepLimit.getValue();
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}
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if (interestLine < 0) {
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interestLine = Long.MAX_VALUE;
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}
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final boolean estimateVisible = (maxEstimate >= interestLine * 7 / 10);
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mSeries.setEstimateVisible(estimateVisible);
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}
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private OnSweepListener mHorizListener = new OnSweepListener() {
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public void onSweep(ChartSweepView sweep, boolean sweepDone) {
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updatePrimaryRange();
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// update detail list only when done sweeping
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if (sweepDone && mListener != null) {
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mListener.onInspectRangeChanged();
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}
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}
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};
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private void sendUpdateAxisDelayed(ChartSweepView sweep, boolean force) {
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if (force || !mHandler.hasMessages(MSG_UPDATE_AXIS, sweep)) {
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mHandler.sendMessageDelayed(
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mHandler.obtainMessage(MSG_UPDATE_AXIS, sweep), DELAY_MILLIS);
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}
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}
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private void clearUpdateAxisDelayed(ChartSweepView sweep) {
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mHandler.removeMessages(MSG_UPDATE_AXIS, sweep);
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}
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private OnSweepListener mVertListener = new OnSweepListener() {
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public void onSweep(ChartSweepView sweep, boolean sweepDone) {
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if (sweepDone) {
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clearUpdateAxisDelayed(sweep);
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updateEstimateVisible();
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if (sweep == mSweepWarning && mListener != null) {
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mListener.onWarningChanged();
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} else if (sweep == mSweepLimit && mListener != null) {
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mListener.onLimitChanged();
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}
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} else {
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// while moving, kick off delayed grow/shrink axis updates
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sendUpdateAxisDelayed(sweep, false);
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}
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}
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};
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@Override
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public boolean onTouchEvent(MotionEvent event) {
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if (isActivated()) return false;
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switch (event.getAction()) {
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case MotionEvent.ACTION_DOWN: {
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return true;
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}
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case MotionEvent.ACTION_UP: {
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setActivated(true);
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return true;
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}
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default: {
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return false;
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}
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}
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}
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public long getInspectStart() {
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return mSweepLeft.getValue();
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}
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public long getInspectEnd() {
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return mSweepRight.getValue();
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}
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public long getWarningBytes() {
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return mSweepWarning.getLabelValue();
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}
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public long getLimitBytes() {
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return mSweepLimit.getLabelValue();
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}
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private long getStatsStart() {
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return mHistory != null ? mHistory.getStart() : Long.MIN_VALUE;
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}
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private long getStatsEnd() {
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return mHistory != null ? mHistory.getEnd() : Long.MAX_VALUE;
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}
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/**
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* Set the exact time range that should be displayed, updating how
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* {@link ChartNetworkSeriesView} paints. Moves inspection ranges to be the
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* last "week" of available data, without triggering listener events.
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*/
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public void setVisibleRange(long visibleStart, long visibleEnd) {
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final boolean changed = mHoriz.setBounds(visibleStart, visibleEnd);
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mGrid.setBounds(visibleStart, visibleEnd);
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mSeries.setBounds(visibleStart, visibleEnd);
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mDetailSeries.setBounds(visibleStart, visibleEnd);
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final long validStart = Math.max(visibleStart, getStatsStart());
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final long validEnd = Math.min(visibleEnd, getStatsEnd());
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if (LIMIT_SWEEPS_TO_VALID_DATA) {
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// prevent time sweeps from leaving valid data
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mSweepLeft.setValidRange(validStart, validEnd);
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mSweepRight.setValidRange(validStart, validEnd);
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} else {
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mSweepLeft.setValidRange(visibleStart, visibleEnd);
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mSweepRight.setValidRange(visibleStart, visibleEnd);
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}
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// default sweeps to last week of data
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final long halfRange = (visibleEnd + visibleStart) / 2;
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final long sweepMax = validEnd;
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final long sweepMin = Math.max(visibleStart, (sweepMax - DateUtils.WEEK_IN_MILLIS));
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mSweepLeft.setValue(sweepMin);
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mSweepRight.setValue(sweepMax);
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requestLayout();
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if (changed) {
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mSeries.invalidatePath();
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mDetailSeries.invalidatePath();
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}
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updateVertAxisBounds(null);
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updateEstimateVisible();
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updatePrimaryRange();
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}
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private void updatePrimaryRange() {
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final long left = mSweepLeft.getValue();
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final long right = mSweepRight.getValue();
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// prefer showing primary range on detail series, when available
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if (mDetailSeries.getVisibility() == View.VISIBLE) {
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mDetailSeries.setPrimaryRange(left, right);
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mSeries.setPrimaryRange(0, 0);
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} else {
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mSeries.setPrimaryRange(left, right);
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}
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}
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public static class TimeAxis implements ChartAxis {
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private static final long TICK_INTERVAL = DateUtils.DAY_IN_MILLIS * 7;
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private long mMin;
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private long mMax;
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private float mSize;
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public TimeAxis() {
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final long currentTime = System.currentTimeMillis();
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setBounds(currentTime - DateUtils.DAY_IN_MILLIS * 30, currentTime);
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}
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@Override
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public int hashCode() {
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return Objects.hashCode(mMin, mMax, mSize);
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}
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/** {@inheritDoc} */
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public boolean setBounds(long min, long max) {
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if (mMin != min || mMax != max) {
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mMin = min;
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mMax = max;
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return true;
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} else {
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return false;
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}
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}
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/** {@inheritDoc} */
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public boolean setSize(float size) {
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if (mSize != size) {
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mSize = size;
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return true;
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} else {
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return false;
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}
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}
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/** {@inheritDoc} */
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public float convertToPoint(long value) {
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return (mSize * (value - mMin)) / (mMax - mMin);
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}
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/** {@inheritDoc} */
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public long convertToValue(float point) {
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return (long) (mMin + ((point * (mMax - mMin)) / mSize));
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}
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/** {@inheritDoc} */
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public long buildLabel(Resources res, SpannableStringBuilder builder, long value) {
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// TODO: convert to better string
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builder.replace(0, builder.length(), Long.toString(value));
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return value;
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}
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/** {@inheritDoc} */
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public float[] getTickPoints() {
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// tick mark for every week
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final int tickCount = (int) ((mMax - mMin) / TICK_INTERVAL);
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final float[] tickPoints = new float[tickCount];
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for (int i = 0; i < tickCount; i++) {
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tickPoints[i] = convertToPoint(mMax - (TICK_INTERVAL * (i + 1)));
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}
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return tickPoints;
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}
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/** {@inheritDoc} */
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public int shouldAdjustAxis(long value) {
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// time axis never adjusts
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return 0;
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}
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}
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public static class DataAxis implements ChartAxis {
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private long mMin;
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private long mMax;
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private float mSize;
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@Override
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public int hashCode() {
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return Objects.hashCode(mMin, mMax, mSize);
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}
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/** {@inheritDoc} */
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public boolean setBounds(long min, long max) {
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if (mMin != min || mMax != max) {
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mMin = min;
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mMax = max;
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return true;
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} else {
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return false;
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}
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}
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/** {@inheritDoc} */
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public boolean setSize(float size) {
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if (mSize != size) {
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mSize = size;
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return true;
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} else {
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return false;
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}
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}
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/** {@inheritDoc} */
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public float convertToPoint(long value) {
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// derived polynomial fit to make lower values more visible
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final double normalized = ((double) value - mMin) / (mMax - mMin);
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final double fraction = Math.pow(
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10, 0.36884343106175121463 * Math.log10(normalized) + -0.04328199452018252624);
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return (float) (fraction * mSize);
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}
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/** {@inheritDoc} */
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public long convertToValue(float point) {
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final double normalized = point / mSize;
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final double fraction = 1.3102228476089056629
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* Math.pow(normalized, 2.7111774693164631640);
|
|
return (long) (mMin + (fraction * (mMax - mMin)));
|
|
}
|
|
|
|
private static final Object sSpanSize = new Object();
|
|
private static final Object sSpanUnit = new Object();
|
|
|
|
/** {@inheritDoc} */
|
|
public long buildLabel(Resources res, SpannableStringBuilder builder, long value) {
|
|
|
|
final CharSequence unit;
|
|
final long unitFactor;
|
|
if (value <= 100 * MB_IN_BYTES) {
|
|
unit = res.getText(com.android.internal.R.string.megabyteShort);
|
|
unitFactor = MB_IN_BYTES;
|
|
} else {
|
|
unit = res.getText(com.android.internal.R.string.gigabyteShort);
|
|
unitFactor = GB_IN_BYTES;
|
|
}
|
|
|
|
final double result = (double) value / unitFactor;
|
|
final double resultRounded;
|
|
final CharSequence size;
|
|
if (result < 10) {
|
|
size = String.format("%.1f", result);
|
|
resultRounded = (unitFactor * Math.round(result * 10)) / 10;
|
|
} else {
|
|
size = String.format("%.0f", result);
|
|
resultRounded = unitFactor * Math.round(result);
|
|
}
|
|
|
|
final int[] sizeBounds = findOrCreateSpan(builder, sSpanSize, "^1");
|
|
builder.replace(sizeBounds[0], sizeBounds[1], size);
|
|
final int[] unitBounds = findOrCreateSpan(builder, sSpanUnit, "^2");
|
|
builder.replace(unitBounds[0], unitBounds[1], unit);
|
|
|
|
return (long) resultRounded;
|
|
}
|
|
|
|
/** {@inheritDoc} */
|
|
public float[] getTickPoints() {
|
|
final long range = mMax - mMin;
|
|
final long tickJump;
|
|
if (range < 6 * GB_IN_BYTES) {
|
|
tickJump = 256 * MB_IN_BYTES;
|
|
} else if (range < 12 * GB_IN_BYTES) {
|
|
tickJump = 512 * MB_IN_BYTES;
|
|
} else {
|
|
tickJump = 1 * GB_IN_BYTES;
|
|
}
|
|
|
|
final int tickCount = (int) (range / tickJump);
|
|
final float[] tickPoints = new float[tickCount];
|
|
long value = mMin;
|
|
for (int i = 0; i < tickPoints.length; i++) {
|
|
tickPoints[i] = convertToPoint(value);
|
|
value += tickJump;
|
|
}
|
|
|
|
return tickPoints;
|
|
}
|
|
|
|
/** {@inheritDoc} */
|
|
public int shouldAdjustAxis(long value) {
|
|
final float point = convertToPoint(value);
|
|
if (point < mSize * 0.1) {
|
|
return -1;
|
|
} else if (point > mSize * 0.85) {
|
|
return 1;
|
|
} else {
|
|
return 0;
|
|
}
|
|
}
|
|
}
|
|
|
|
private static int[] findOrCreateSpan(
|
|
SpannableStringBuilder builder, Object key, CharSequence bootstrap) {
|
|
int start = builder.getSpanStart(key);
|
|
int end = builder.getSpanEnd(key);
|
|
if (start == -1) {
|
|
start = TextUtils.indexOf(builder, bootstrap);
|
|
end = start + bootstrap.length();
|
|
builder.setSpan(key, start, end, Spannable.SPAN_INCLUSIVE_INCLUSIVE);
|
|
}
|
|
return new int[] { start, end };
|
|
}
|
|
|
|
}
|