/* * Copyright (C) 2021 The Android Open Source Project * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ #define LOG_TAG "android.hardware.power.stats-service.pixel" #include #include #include #include #include #include #include #include #include #include #include #include using aidl::android::hardware::power::stats::DevfreqStateResidencyDataProvider; using aidl::android::hardware::power::stats::DisplayStateResidencyDataProvider; using aidl::android::hardware::power::stats::EnergyConsumerType; using aidl::android::hardware::power::stats::GenericStateResidencyDataProvider; using aidl::android::hardware::power::stats::PowerStatsEnergyConsumer; void addDisplay(std::shared_ptr p) { // Add display residency stats struct stat buffer; if (!stat("/sys/class/drm/card0/device/primary-panel/time_in_state", &buffer)) { // time_in_state exists addDisplayMrr(p); } else { // time_in_state doesn't exist std::vector states = { "Off", "On: 1600x2560@60", "HBM: 1600x2560@60"}; p->addStateResidencyDataProvider(std::make_unique("Display", "/sys/class/backlight/panel0-backlight/state", states)); } // Add display energy consumer p->addEnergyConsumer(PowerStatsEnergyConsumer::createMeterConsumer( p, EnergyConsumerType::DISPLAY, "Display", {"VSYS_PWR_DISPLAY"})); } void addGPUGs202(std::shared_ptr p) { std::map stateCoeffs; // Add GPU state residency p->addStateResidencyDataProvider(std::make_unique( "GPU", "/sys/devices/platform/28000000.mali")); // Add GPU energy consumer stateCoeffs = { {"202000", 890}, {"251000", 1102}, {"302000", 1308}, {"351000", 1522}, {"400000", 1772}, {"434000", 1931}, {"471000", 2105}, {"510000", 2292}, {"572000", 2528}, {"633000", 2811}, {"701000", 3127}, {"762000", 3452}, {"848000", 4044}}; p->addEnergyConsumer(PowerStatsEnergyConsumer::createMeterAndAttrConsumer( p, EnergyConsumerType::OTHER, "GPU", {"S2S_VDD_G3D", "S8S_VDD_G3D_L2"}, {{UID_TIME_IN_STATE, "/sys/devices/platform/28000000.mali/uid_time_in_state"}}, stateCoeffs)); } void addUwb(std::shared_ptr p) { // A constant to represent the number of nanoseconds in one millisecond. const int NS_TO_MS = 1000000; // ACPM stats are reported in nanoseconds. The transform function // converts nanoseconds to milliseconds. std::function uwbNsToMs = [](uint64_t a) { return a / NS_TO_MS; }; const GenericStateResidencyDataProvider::StateResidencyConfig stateConfig = { .entryCountSupported = true, .entryCountPrefix = "count:", .totalTimeSupported = true, .totalTimePrefix = "dur ns:", .totalTimeTransform = uwbNsToMs, .lastEntrySupported = false, }; const std::vector> stateHeaders = { std::make_pair("Off", "Off state:"), std::make_pair("Deep sleep", "Deep sleep state:"), std::make_pair("Run", "Run state:"), std::make_pair("Idle", "Idle state:"), std::make_pair("Tx", "Tx state:"), std::make_pair("Rx", "Rx state:"), }; std::vector cfgs; cfgs.emplace_back(generateGenericStateResidencyConfigs(stateConfig, stateHeaders), "UWB", ""); p->addStateResidencyDataProvider(std::make_unique( "/sys/devices/platform/10db0000.spi/spi_master/spi16/spi16.0/uwb/power_stats", cfgs)); } int main() { LOG(INFO) << "Pixel PowerStats HAL AIDL Service is starting."; // single thread ABinderProcess_setThreadPoolMaxThreadCount(0); std::shared_ptr p = ndk::SharedRefBase::make(); setEnergyMeter(p); addAoC(p); addPixelStateResidencyDataProvider(p); addCPUclusters(p); addDisplay(p); addSoC(p); addWifi(p); addTPU(p); addUfs(p); addUwb(p); addPowerDomains(p); addDevfreq(p); addGPUGs202(p); addDvfsStats(p); const std::string instance = std::string() + PowerStats::descriptor + "/default"; binder_status_t status = AServiceManager_addService(p->asBinder().get(), instance.c_str()); LOG_ALWAYS_FATAL_IF(status != STATUS_OK); ABinderProcess_joinThreadPool(); return EXIT_FAILURE; // should not reach }