1 /* 2 * Copyright (C) 2009 The Android Open Source Project 3 * 4 * Licensed under the Apache License, Version 2.0 (the "License"); 5 * you may not use this file except in compliance with the License. 6 * You may obtain a copy of the License at 7 * 8 * http://www.apache.org/licenses/LICENSE-2.0 9 * 10 * Unless required by applicable law or agreed to in writing, software 11 * distributed under the License is distributed on an "AS IS" BASIS, 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. 13 * See the License for the specific language governing permissions and 14 * limitations under the License. 15 */ 16 17 package com.android.internal.os; 18 19 20 import android.content.Context; 21 import android.content.res.Resources; 22 import android.content.res.XmlResourceParser; 23 24 import com.android.internal.util.XmlUtils; 25 26 import org.xmlpull.v1.XmlPullParser; 27 import org.xmlpull.v1.XmlPullParserException; 28 29 import java.io.IOException; 30 import java.util.ArrayList; 31 import java.util.HashMap; 32 33 /** 34 * Reports power consumption values for various device activities. Reads values from an XML file. 35 * Customize the XML file for different devices. 36 * [hidden] 37 */ 38 public class PowerProfile { 39 40 /** 41 * No power consumption, or accounted for elsewhere. 42 */ 43 public static final String POWER_NONE = "none"; 44 45 /** 46 * Power consumption when CPU is in power collapse mode. 47 */ 48 public static final String POWER_CPU_IDLE = "cpu.idle"; 49 50 /** 51 * Power consumption when CPU is awake (when a wake lock is held). This 52 * should be 0 on devices that can go into full CPU power collapse even 53 * when a wake lock is held. Otherwise, this is the power consumption in 54 * addition to POWER_CPU_IDLE due to a wake lock being held but with no 55 * CPU activity. 56 */ 57 public static final String POWER_CPU_AWAKE = "cpu.awake"; 58 59 /** 60 * Power consumption when CPU is in power collapse mode. 61 */ 62 @Deprecated 63 public static final String POWER_CPU_ACTIVE = "cpu.active"; 64 65 /** 66 * Power consumption when WiFi driver is scanning for networks. 67 */ 68 public static final String POWER_WIFI_SCAN = "wifi.scan"; 69 70 /** 71 * Power consumption when WiFi driver is on. 72 */ 73 public static final String POWER_WIFI_ON = "wifi.on"; 74 75 /** 76 * Power consumption when WiFi driver is transmitting/receiving. 77 */ 78 public static final String POWER_WIFI_ACTIVE = "wifi.active"; 79 80 // 81 // Updated power constants. These are not estimated, they are real world 82 // currents and voltages for the underlying bluetooth and wifi controllers. 83 // 84 85 public static final String POWER_WIFI_CONTROLLER_IDLE = "wifi.controller.idle"; 86 public static final String POWER_WIFI_CONTROLLER_RX = "wifi.controller.rx"; 87 public static final String POWER_WIFI_CONTROLLER_TX = "wifi.controller.tx"; 88 public static final String POWER_WIFI_CONTROLLER_TX_LEVELS = "wifi.controller.tx_levels"; 89 public static final String POWER_WIFI_CONTROLLER_OPERATING_VOLTAGE = "wifi.controller.voltage"; 90 91 public static final String POWER_BLUETOOTH_CONTROLLER_IDLE = "bluetooth.controller.idle"; 92 public static final String POWER_BLUETOOTH_CONTROLLER_RX = "bluetooth.controller.rx"; 93 public static final String POWER_BLUETOOTH_CONTROLLER_TX = "bluetooth.controller.tx"; 94 public static final String POWER_BLUETOOTH_CONTROLLER_OPERATING_VOLTAGE = 95 "bluetooth.controller.voltage"; 96 97 public static final String POWER_MODEM_CONTROLLER_IDLE = "modem.controller.idle"; 98 public static final String POWER_MODEM_CONTROLLER_RX = "modem.controller.rx"; 99 public static final String POWER_MODEM_CONTROLLER_TX = "modem.controller.tx"; 100 public static final String POWER_MODEM_CONTROLLER_OPERATING_VOLTAGE = 101 "modem.controller.voltage"; 102 103 /** 104 * Power consumption when GPS is on. 105 */ 106 public static final String POWER_GPS_ON = "gps.on"; 107 108 /** 109 * Power consumption when Bluetooth driver is on. 110 * @deprecated 111 */ 112 @Deprecated 113 public static final String POWER_BLUETOOTH_ON = "bluetooth.on"; 114 115 /** 116 * Power consumption when Bluetooth driver is transmitting/receiving. 117 * @deprecated 118 */ 119 @Deprecated 120 public static final String POWER_BLUETOOTH_ACTIVE = "bluetooth.active"; 121 122 /** 123 * Power consumption when Bluetooth driver gets an AT command. 124 * @deprecated 125 */ 126 @Deprecated 127 public static final String POWER_BLUETOOTH_AT_CMD = "bluetooth.at"; 128 129 130 /** 131 * Power consumption when screen is on, not including the backlight power. 132 */ 133 public static final String POWER_SCREEN_ON = "screen.on"; 134 135 /** 136 * Power consumption when cell radio is on but not on a call. 137 */ 138 public static final String POWER_RADIO_ON = "radio.on"; 139 140 /** 141 * Power consumption when cell radio is hunting for a signal. 142 */ 143 public static final String POWER_RADIO_SCANNING = "radio.scanning"; 144 145 /** 146 * Power consumption when talking on the phone. 147 */ 148 public static final String POWER_RADIO_ACTIVE = "radio.active"; 149 150 /** 151 * Power consumption at full backlight brightness. If the backlight is at 152 * 50% brightness, then this should be multiplied by 0.5 153 */ 154 public static final String POWER_SCREEN_FULL = "screen.full"; 155 156 /** 157 * Power consumed by the audio hardware when playing back audio content. This is in addition 158 * to the CPU power, probably due to a DSP and / or amplifier. 159 */ 160 public static final String POWER_AUDIO = "dsp.audio"; 161 162 /** 163 * Power consumed by any media hardware when playing back video content. This is in addition 164 * to the CPU power, probably due to a DSP. 165 */ 166 public static final String POWER_VIDEO = "dsp.video"; 167 168 /** 169 * Average power consumption when camera flashlight is on. 170 */ 171 public static final String POWER_FLASHLIGHT = "camera.flashlight"; 172 173 /** 174 * Average power consumption when the camera is on over all standard use cases. 175 * 176 * TODO: Add more fine-grained camera power metrics. 177 */ 178 public static final String POWER_CAMERA = "camera.avg"; 179 180 @Deprecated 181 public static final String POWER_CPU_SPEEDS = "cpu.speeds"; 182 183 /** 184 * Power consumed by wif batched scaning. Broken down into bins by 185 * Channels Scanned per Hour. May do 1-720 scans per hour of 1-100 channels 186 * for a range of 1-72,000. Going logrithmic (1-8, 9-64, 65-512, 513-4096, 4097-)! 187 */ 188 public static final String POWER_WIFI_BATCHED_SCAN = "wifi.batchedscan"; 189 190 /** 191 * Battery capacity in milliAmpHour (mAh). 192 */ 193 public static final String POWER_BATTERY_CAPACITY = "battery.capacity"; 194 195 static final HashMap<String, Object> sPowerMap = new HashMap<>(); 196 197 private static final String TAG_DEVICE = "device"; 198 private static final String TAG_ITEM = "item"; 199 private static final String TAG_ARRAY = "array"; 200 private static final String TAG_ARRAYITEM = "value"; 201 private static final String ATTR_NAME = "name"; 202 PowerProfile(Context context)203 public PowerProfile(Context context) { 204 // Read the XML file for the given profile (normally only one per 205 // device) 206 if (sPowerMap.size() == 0) { 207 readPowerValuesFromXml(context); 208 } 209 initCpuClusters(); 210 } 211 readPowerValuesFromXml(Context context)212 private void readPowerValuesFromXml(Context context) { 213 int id = com.android.internal.R.xml.power_profile; 214 final Resources resources = context.getResources(); 215 XmlResourceParser parser = resources.getXml(id); 216 boolean parsingArray = false; 217 ArrayList<Double> array = new ArrayList<Double>(); 218 String arrayName = null; 219 220 try { 221 XmlUtils.beginDocument(parser, TAG_DEVICE); 222 223 while (true) { 224 XmlUtils.nextElement(parser); 225 226 String element = parser.getName(); 227 if (element == null) break; 228 229 if (parsingArray && !element.equals(TAG_ARRAYITEM)) { 230 // Finish array 231 sPowerMap.put(arrayName, array.toArray(new Double[array.size()])); 232 parsingArray = false; 233 } 234 if (element.equals(TAG_ARRAY)) { 235 parsingArray = true; 236 array.clear(); 237 arrayName = parser.getAttributeValue(null, ATTR_NAME); 238 } else if (element.equals(TAG_ITEM) || element.equals(TAG_ARRAYITEM)) { 239 String name = null; 240 if (!parsingArray) name = parser.getAttributeValue(null, ATTR_NAME); 241 if (parser.next() == XmlPullParser.TEXT) { 242 String power = parser.getText(); 243 double value = 0; 244 try { 245 value = Double.valueOf(power); 246 } catch (NumberFormatException nfe) { 247 } 248 if (element.equals(TAG_ITEM)) { 249 sPowerMap.put(name, value); 250 } else if (parsingArray) { 251 array.add(value); 252 } 253 } 254 } 255 } 256 if (parsingArray) { 257 sPowerMap.put(arrayName, array.toArray(new Double[array.size()])); 258 } 259 } catch (XmlPullParserException e) { 260 throw new RuntimeException(e); 261 } catch (IOException e) { 262 throw new RuntimeException(e); 263 } finally { 264 parser.close(); 265 } 266 267 // Now collect other config variables. 268 int[] configResIds = new int[]{ 269 com.android.internal.R.integer.config_bluetooth_idle_cur_ma, 270 com.android.internal.R.integer.config_bluetooth_rx_cur_ma, 271 com.android.internal.R.integer.config_bluetooth_tx_cur_ma, 272 com.android.internal.R.integer.config_bluetooth_operating_voltage_mv, 273 com.android.internal.R.integer.config_wifi_idle_receive_cur_ma, 274 com.android.internal.R.integer.config_wifi_active_rx_cur_ma, 275 com.android.internal.R.integer.config_wifi_tx_cur_ma, 276 com.android.internal.R.integer.config_wifi_operating_voltage_mv, 277 }; 278 279 String[] configResIdKeys = new String[]{ 280 POWER_BLUETOOTH_CONTROLLER_IDLE, 281 POWER_BLUETOOTH_CONTROLLER_RX, 282 POWER_BLUETOOTH_CONTROLLER_TX, 283 POWER_BLUETOOTH_CONTROLLER_OPERATING_VOLTAGE, 284 POWER_WIFI_CONTROLLER_IDLE, 285 POWER_WIFI_CONTROLLER_RX, 286 POWER_WIFI_CONTROLLER_TX, 287 POWER_WIFI_CONTROLLER_OPERATING_VOLTAGE, 288 }; 289 290 for (int i = 0; i < configResIds.length; i++) { 291 String key = configResIdKeys[i]; 292 // if we already have some of these parameters in power_profile.xml, ignore the 293 // value in config.xml 294 if ((sPowerMap.containsKey(key) && (Double) sPowerMap.get(key) > 0)) { 295 continue; 296 } 297 int value = resources.getInteger(configResIds[i]); 298 if (value > 0) { 299 sPowerMap.put(key, (double) value); 300 } 301 } 302 } 303 304 private CpuClusterKey[] mCpuClusters; 305 306 private static final String POWER_CPU_CLUSTER_CORE_COUNT = "cpu.clusters.cores"; 307 private static final String POWER_CPU_CLUSTER_SPEED_PREFIX = "cpu.speeds.cluster"; 308 private static final String POWER_CPU_CLUSTER_ACTIVE_PREFIX = "cpu.active.cluster"; 309 310 @SuppressWarnings("deprecated") initCpuClusters()311 private void initCpuClusters() { 312 // Figure out how many CPU clusters we're dealing with 313 final Object obj = sPowerMap.get(POWER_CPU_CLUSTER_CORE_COUNT); 314 if (obj == null || !(obj instanceof Double[])) { 315 // Default to single. 316 mCpuClusters = new CpuClusterKey[1]; 317 mCpuClusters[0] = new CpuClusterKey(POWER_CPU_SPEEDS, POWER_CPU_ACTIVE, 1); 318 319 } else { 320 final Double[] array = (Double[]) obj; 321 mCpuClusters = new CpuClusterKey[array.length]; 322 for (int cluster = 0; cluster < array.length; cluster++) { 323 int numCpusInCluster = (int) Math.round(array[cluster]); 324 mCpuClusters[cluster] = new CpuClusterKey( 325 POWER_CPU_CLUSTER_SPEED_PREFIX + cluster, 326 POWER_CPU_CLUSTER_ACTIVE_PREFIX + cluster, 327 numCpusInCluster); 328 } 329 } 330 } 331 332 public static class CpuClusterKey { 333 private final String timeKey; 334 private final String powerKey; 335 private final int numCpus; 336 CpuClusterKey(String timeKey, String powerKey, int numCpus)337 private CpuClusterKey(String timeKey, String powerKey, int numCpus) { 338 this.timeKey = timeKey; 339 this.powerKey = powerKey; 340 this.numCpus = numCpus; 341 } 342 } 343 getNumCpuClusters()344 public int getNumCpuClusters() { 345 return mCpuClusters.length; 346 } 347 getNumCoresInCpuCluster(int index)348 public int getNumCoresInCpuCluster(int index) { 349 return mCpuClusters[index].numCpus; 350 } 351 getNumSpeedStepsInCpuCluster(int index)352 public int getNumSpeedStepsInCpuCluster(int index) { 353 Object value = sPowerMap.get(mCpuClusters[index].timeKey); 354 if (value != null && value instanceof Double[]) { 355 return ((Double[])value).length; 356 } 357 return 1; // Only one speed 358 } 359 getAveragePowerForCpu(int cluster, int step)360 public double getAveragePowerForCpu(int cluster, int step) { 361 if (cluster >= 0 && cluster < mCpuClusters.length) { 362 return getAveragePower(mCpuClusters[cluster].powerKey, step); 363 } 364 return 0; 365 } 366 367 /** 368 * Returns the average current in mA consumed by the subsystem, or the given 369 * default value if the subsystem has no recorded value. 370 * @param type the subsystem type 371 * @param defaultValue the value to return if the subsystem has no recorded value. 372 * @return the average current in milliAmps. 373 */ getAveragePowerOrDefault(String type, double defaultValue)374 public double getAveragePowerOrDefault(String type, double defaultValue) { 375 if (sPowerMap.containsKey(type)) { 376 Object data = sPowerMap.get(type); 377 if (data instanceof Double[]) { 378 return ((Double[])data)[0]; 379 } else { 380 return (Double) sPowerMap.get(type); 381 } 382 } else { 383 return defaultValue; 384 } 385 } 386 387 /** 388 * Returns the average current in mA consumed by the subsystem 389 * @param type the subsystem type 390 * @return the average current in milliAmps. 391 */ getAveragePower(String type)392 public double getAveragePower(String type) { 393 return getAveragePowerOrDefault(type, 0); 394 } 395 396 /** 397 * Returns the average current in mA consumed by the subsystem for the given level. 398 * @param type the subsystem type 399 * @param level the level of power at which the subsystem is running. For instance, the 400 * signal strength of the cell network between 0 and 4 (if there are 4 bars max.) 401 * If there is no data for multiple levels, the level is ignored. 402 * @return the average current in milliAmps. 403 */ getAveragePower(String type, int level)404 public double getAveragePower(String type, int level) { 405 if (sPowerMap.containsKey(type)) { 406 Object data = sPowerMap.get(type); 407 if (data instanceof Double[]) { 408 final Double[] values = (Double[]) data; 409 if (values.length > level && level >= 0) { 410 return values[level]; 411 } else if (level < 0 || values.length == 0) { 412 return 0; 413 } else { 414 return values[values.length - 1]; 415 } 416 } else { 417 return (Double) data; 418 } 419 } else { 420 return 0; 421 } 422 } 423 424 /** 425 * Returns the battery capacity, if available, in milli Amp Hours. If not available, 426 * it returns zero. 427 * @return the battery capacity in mAh 428 */ getBatteryCapacity()429 public double getBatteryCapacity() { 430 return getAveragePower(POWER_BATTERY_CAPACITY); 431 } 432 } 433