713 lines
30 KiB
C++
713 lines
30 KiB
C++
/*
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* Copyright (C) 2020 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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#include <PowerStatsAidl.h>
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#include <Gs101CommonDataProviders.h>
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#include "AocStateResidencyDataProvider.h"
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#include "DevfreqStateResidencyDataProvider.h"
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#include "DvfsStateResidencyDataProvider.h"
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#include "UfsStateResidencyDataProvider.h"
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#include <dataproviders/GenericStateResidencyDataProvider.h>
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#include <dataproviders/IioEnergyMeterDataProvider.h>
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#include <dataproviders/PowerStatsEnergyConsumer.h>
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#include <dataproviders/PowerStatsEnergyAttribution.h>
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#include <dataproviders/PixelStateResidencyDataProvider.h>
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#include <android-base/logging.h>
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#include <android-base/properties.h>
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#include <android/binder_manager.h>
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#include <android/binder_process.h>
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#include <log/log.h>
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using aidl::android::hardware::power::stats::AocStateResidencyDataProvider;
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using aidl::android::hardware::power::stats::DevfreqStateResidencyDataProvider;
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using aidl::android::hardware::power::stats::DvfsStateResidencyDataProvider;
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using aidl::android::hardware::power::stats::UfsStateResidencyDataProvider;
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using aidl::android::hardware::power::stats::EnergyConsumerType;
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using aidl::android::hardware::power::stats::GenericStateResidencyDataProvider;
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using aidl::android::hardware::power::stats::IioEnergyMeterDataProvider;
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using aidl::android::hardware::power::stats::PixelStateResidencyDataProvider;
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using aidl::android::hardware::power::stats::PowerStatsEnergyConsumer;
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constexpr char kBootHwSoCRev[] = "ro.boot.hw.soc.rev";
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void addAoC(std::shared_ptr<PowerStats> p) {
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// AoC clock is synced from "libaoc.c"
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static const uint64_t AOC_CLOCK = 4096;
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std::string prefix = "/sys/devices/platform/19000000.aoc/control/";
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// Add AoC cores (a32, ff1, hf0, and hf1)
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std::vector<std::pair<std::string, std::string>> coreIds = {
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{"AoC-A32", prefix + "a32_"},
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{"AoC-FF1", prefix + "ff1_"},
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{"AoC-HF1", prefix + "hf1_"},
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{"AoC-HF0", prefix + "hf0_"},
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};
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std::vector<std::pair<std::string, std::string>> coreStates = {
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{"DWN", "off"}, {"RET", "retention"}, {"WFI", "wfi"}};
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p->addStateResidencyDataProvider(std::make_unique<AocStateResidencyDataProvider>(coreIds,
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coreStates, AOC_CLOCK));
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// Add AoC voltage stats
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std::vector<std::pair<std::string, std::string>> voltageIds = {
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{"AoC-Voltage", prefix + "voltage_"},
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};
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std::vector<std::pair<std::string, std::string>> voltageStates = {{"NOM", "nominal"},
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{"SUD", "super_underdrive"},
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{"UUD", "ultra_underdrive"},
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{"UD", "underdrive"}};
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p->addStateResidencyDataProvider(
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std::make_unique<AocStateResidencyDataProvider>(voltageIds, voltageStates, AOC_CLOCK));
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// Add AoC monitor mode
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std::vector<std::pair<std::string, std::string>> monitorIds = {
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{"AoC", prefix + "monitor_"},
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};
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std::vector<std::pair<std::string, std::string>> monitorStates = {
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{"MON", "mode"},
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};
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p->addStateResidencyDataProvider(
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std::make_unique<AocStateResidencyDataProvider>(monitorIds, monitorStates, AOC_CLOCK));
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// Add AoC restart count
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const GenericStateResidencyDataProvider::StateResidencyConfig restartCountConfig = {
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.entryCountSupported = true,
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.entryCountPrefix = "",
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.totalTimeSupported = false,
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.lastEntrySupported = false,
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};
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const std::vector<std::pair<std::string, std::string>> restartCountHeaders = {
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std::make_pair("RESTART", ""),
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};
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std::vector<GenericStateResidencyDataProvider::PowerEntityConfig> cfgs;
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cfgs.emplace_back(
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generateGenericStateResidencyConfigs(restartCountConfig, restartCountHeaders),
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"AoC-Count", "");
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p->addStateResidencyDataProvider(std::make_unique<GenericStateResidencyDataProvider>(
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"/sys/devices/platform/19000000.aoc/restart_count", cfgs));
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}
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void addDvfsStats(std::shared_ptr<PowerStats> p) {
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// A constant to represent the number of nanoseconds in one millisecond
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const int NS_TO_MS = 1000000;
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std::vector<DvfsStateResidencyDataProvider::Config> cfgs;
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cfgs.push_back({"MIF", {
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std::make_pair("3172MHz", "3172000"),
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std::make_pair("2730MHz", "2730000"),
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std::make_pair("2535MHz", "2535000"),
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std::make_pair("2288MHz", "2288000"),
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std::make_pair("2028MHz", "2028000"),
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std::make_pair("1716MHz", "1716000"),
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std::make_pair("1539MHz", "1539000"),
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std::make_pair("1352MHz", "1352000"),
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std::make_pair("1014MHz", "1014000"),
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std::make_pair("845MHz", "845000"),
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std::make_pair("676MHz", "676000"),
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std::make_pair("546MHz", "546000"),
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std::make_pair("421MHz", "421000"),
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std::make_pair("0MHz", "0"),
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}});
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cfgs.push_back({"CL1", {
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std::make_pair("2466MHz", "2466000"),
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std::make_pair("2393MHz", "2393000"),
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std::make_pair("2348MHz", "2348000"),
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std::make_pair("2253MHz", "2253000"),
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std::make_pair("2130MHz", "2130000"),
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std::make_pair("1999MHz", "1999000"),
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std::make_pair("1836MHz", "1836000"),
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std::make_pair("1663MHz", "1663000"),
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std::make_pair("1491MHz", "1491000"),
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std::make_pair("1328MHz", "1328000"),
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std::make_pair("1197MHz", "1197000"),
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std::make_pair("1024MHz", "1024000"),
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std::make_pair("910MHz", "910000"),
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std::make_pair("799MHz", "799000"),
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std::make_pair("696MHz", "696000"),
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std::make_pair("533MHz", "533000"),
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std::make_pair("400MHz", "400000"),
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std::make_pair("0MHz", "0"),
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}});
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// B0/B1 chips have different DVFS operating points than A0/A1 SoC
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const int socRev = android::base::GetIntProperty(kBootHwSoCRev, 0);
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if (socRev >= 2) {
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cfgs.push_back({"CL0", {
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std::make_pair("2196MHz", "2196000"),
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std::make_pair("2098MHz", "2098000"),
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std::make_pair("2024MHz", "2024000"),
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std::make_pair("1950MHz", "1950000"),
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std::make_pair("1803MHz", "1803000"),
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std::make_pair("1704MHz", "1704000"),
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std::make_pair("1598MHz", "1598000"),
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std::make_pair("1401MHz", "1401000"),
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std::make_pair("1328MHz", "1328000"),
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std::make_pair("1197MHz", "1197000"),
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std::make_pair("1098MHz", "1098000"),
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std::make_pair("930MHz", "930000"),
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std::make_pair("738MHz", "738000"),
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std::make_pair("574MHz", "574000"),
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std::make_pair("300MHz", "300000"),
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std::make_pair("0MHz", "0"),
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}});
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cfgs.push_back({"CL2", {
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std::make_pair("3195MHz", "3195000"),
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std::make_pair("3097MHz", "3097000"),
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std::make_pair("2950MHz", "2950000"),
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std::make_pair("2850MHz", "2850000"),
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std::make_pair("2802MHz", "2802000"),
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std::make_pair("2704MHz", "2704000"),
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std::make_pair("2630MHz", "2630000"),
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std::make_pair("2507MHz", "2507000"),
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std::make_pair("2401MHz", "2401000"),
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std::make_pair("2252MHz", "2252000"),
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std::make_pair("2188MHz", "2188000"),
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std::make_pair("2048MHz", "2048000"),
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std::make_pair("1826MHz", "1826000"),
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std::make_pair("1745MHz", "1745000"),
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std::make_pair("1582MHz", "1582000"),
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std::make_pair("1426MHz", "1426000"),
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std::make_pair("1277MHz", "1277000"),
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std::make_pair("1106MHz", "1106000"),
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std::make_pair("984MHz", "984000"),
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std::make_pair("851MHz", "851000"),
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std::make_pair("500MHz", "500000"),
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std::make_pair("0MHz", "0"),
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}});
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cfgs.push_back({"TPU", {
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std::make_pair("1230MHz", "1230000"),
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std::make_pair("1066MHz", "1066000"),
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std::make_pair("800MHz", "800000"),
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std::make_pair("500MHz", "500000"),
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std::make_pair("226MHz", "226000"),
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std::make_pair("RET_SLOW", "6"),
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std::make_pair("S_OFF", "5"),
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std::make_pair("S_SLOW", "4"),
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std::make_pair("DS_FAST", "3"),
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std::make_pair("DS_SLOW", "2"),
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std::make_pair("DS_OFF", "1"),
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std::make_pair("OFF", "0"),
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}});
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} else {
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cfgs.push_back({"CL0", {
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std::make_pair("2196MHz", "2196000"),
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std::make_pair("2098MHz", "2098000"),
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std::make_pair("2024MHz", "2024000"),
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std::make_pair("1950MHz", "1950000"),
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std::make_pair("1868MHz", "1868000"),
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std::make_pair("1745MHz", "1745000"),
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std::make_pair("1598MHz", "1598000"),
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std::make_pair("1459MHz", "1459000"),
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std::make_pair("1328MHz", "1328000"),
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std::make_pair("1197MHz", "1197000"),
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std::make_pair("1098MHz", "1098000"),
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std::make_pair("889MHz", "889000"),
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std::make_pair("738MHz", "738000"),
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std::make_pair("574MHz", "574000"),
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std::make_pair("300MHz", "300000"),
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std::make_pair("0MHz", "0"),
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}});
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cfgs.push_back({"CL2", {
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std::make_pair("3195MHz", "3195000"),
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std::make_pair("3097MHz", "3097000"),
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std::make_pair("2999MHz", "2999000"),
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std::make_pair("2900MHz", "2900000"),
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std::make_pair("2802MHz", "2802000"),
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std::make_pair("2704MHz", "2704000"),
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std::make_pair("2630MHz", "2630000"),
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std::make_pair("2507MHz", "2507000"),
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std::make_pair("2302MHz", "2302000"),
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std::make_pair("2188MHz", "2188000"),
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std::make_pair("2048MHz", "2048000"),
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std::make_pair("1901MHz", "1901000"),
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std::make_pair("1745MHz", "1745000"),
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std::make_pair("1582MHz", "1582000"),
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std::make_pair("1426MHz", "1426000"),
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std::make_pair("1237MHz", "1237000"),
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std::make_pair("1106MHz", "1106000"),
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std::make_pair("984MHz", "984000"),
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std::make_pair("848MHz", "848000"),
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std::make_pair("500MHz", "500000"),
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std::make_pair("0MHz", "0"),
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}});
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cfgs.push_back({"TPU", {
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std::make_pair("1393MHz", "1393000"),
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std::make_pair("1180MHz", "1180000"),
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std::make_pair("1049MHz", "1049000"),
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std::make_pair("967MHz", "967000"),
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std::make_pair("721MHz", "721000"),
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std::make_pair("648MHz", "648000"),
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std::make_pair("455MHz", "455000"),
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std::make_pair("250MHz", "250000"),
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std::make_pair("RET_SLOW", "6"),
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std::make_pair("S_OFF", "5"),
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std::make_pair("S_SLOW", "4"),
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std::make_pair("DS_FAST", "3"),
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std::make_pair("DS_SLOW", "2"),
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std::make_pair("DS_OFF", "1"),
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std::make_pair("OFF", "0"),
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}});
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}
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p->addStateResidencyDataProvider(std::make_unique<DvfsStateResidencyDataProvider>(
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"/sys/devices/platform/acpm_stats/fvp_stats", NS_TO_MS, cfgs));
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}
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void addSoC(std::shared_ptr<PowerStats> p) {
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// A constant to represent the number of nanoseconds in one millisecond.
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const int NS_TO_MS = 1000000;
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// ACPM stats are reported in nanoseconds. The transform function
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// converts nanoseconds to milliseconds.
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std::function<uint64_t(uint64_t)> acpmNsToMs = [](uint64_t a) { return a / NS_TO_MS; };
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const GenericStateResidencyDataProvider::StateResidencyConfig lpmStateConfig = {
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.entryCountSupported = true,
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.entryCountPrefix = "success_count:",
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.totalTimeSupported = true,
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.totalTimePrefix = "total_time_ns:",
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.totalTimeTransform = acpmNsToMs,
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.lastEntrySupported = true,
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.lastEntryPrefix = "last_entry_time_ns:",
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.lastEntryTransform = acpmNsToMs,
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};
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const GenericStateResidencyDataProvider::StateResidencyConfig downStateConfig = {
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.entryCountSupported = true,
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.entryCountPrefix = "down_count:",
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.totalTimeSupported = true,
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.totalTimePrefix = "total_down_time_ns:",
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.totalTimeTransform = acpmNsToMs,
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.lastEntrySupported = true,
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.lastEntryPrefix = "last_down_time_ns:",
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.lastEntryTransform = acpmNsToMs,
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};
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const GenericStateResidencyDataProvider::StateResidencyConfig reqStateConfig = {
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.entryCountSupported = true,
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.entryCountPrefix = "req_up_count:",
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.totalTimeSupported = true,
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.totalTimePrefix = "total_req_up_time_ns:",
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.totalTimeTransform = acpmNsToMs,
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.lastEntrySupported = true,
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.lastEntryPrefix = "last_req_up_time_ns:",
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.lastEntryTransform = acpmNsToMs,
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};
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const std::vector<std::pair<std::string, std::string>> powerStateHeaders = {
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std::make_pair("SICD", "SICD"),
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std::make_pair("SLEEP", "SLEEP"),
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std::make_pair("SLEEP_SLCMON", "SLEEP_SLCMON"),
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std::make_pair("STOP", "STOP"),
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};
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const std::vector<std::pair<std::string, std::string>> mifReqStateHeaders = {
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std::make_pair("AOC", "AOC"),
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std::make_pair("GSA", "GSA"),
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};
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const std::vector<std::pair<std::string, std::string>> slcReqStateHeaders = {
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std::make_pair("AOC", "AOC"),
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};
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std::vector<GenericStateResidencyDataProvider::PowerEntityConfig> cfgs;
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cfgs.emplace_back(generateGenericStateResidencyConfigs(lpmStateConfig, powerStateHeaders),
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"LPM", "LPM:");
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cfgs.emplace_back(generateGenericStateResidencyConfigs(downStateConfig, powerStateHeaders),
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"MIF", "MIF:");
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cfgs.emplace_back(generateGenericStateResidencyConfigs(reqStateConfig, mifReqStateHeaders),
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"MIF-REQ", "MIF_REQ:");
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cfgs.emplace_back(generateGenericStateResidencyConfigs(downStateConfig, powerStateHeaders),
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"SLC", "SLC:");
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cfgs.emplace_back(generateGenericStateResidencyConfigs(reqStateConfig, slcReqStateHeaders),
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"SLC-REQ", "SLC_REQ:");
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p->addStateResidencyDataProvider(std::make_unique<GenericStateResidencyDataProvider>(
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"/sys/devices/platform/acpm_stats/soc_stats", cfgs));
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}
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void setEnergyMeter(std::shared_ptr<PowerStats> p) {
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std::vector<const std::string> deviceNames { "s2mpg10-odpm", "s2mpg11-odpm" };
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p->setEnergyMeterDataProvider(std::make_unique<IioEnergyMeterDataProvider>(deviceNames, true));
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}
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void addCPUclusters(std::shared_ptr<PowerStats> p) {
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// A constant to represent the number of nanoseconds in one millisecond.
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const int NS_TO_MS = 1000000;
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std::function<uint64_t(uint64_t)> acpmNsToMs = [](uint64_t a) { return a / NS_TO_MS; };
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const GenericStateResidencyDataProvider::StateResidencyConfig cpuStateConfig = {
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.entryCountSupported = true,
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.entryCountPrefix = "down_count:",
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.totalTimeSupported = true,
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.totalTimePrefix = "total_down_time_ns:",
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.totalTimeTransform = acpmNsToMs,
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.lastEntrySupported = true,
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.lastEntryPrefix = "last_down_time_ns:",
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.lastEntryTransform = acpmNsToMs,
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};
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const std::vector<std::pair<std::string, std::string>> cpuStateHeaders = {
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std::make_pair("DOWN", ""),
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};
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std::vector<GenericStateResidencyDataProvider::PowerEntityConfig> cfgs;
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for (std::string name : {"CORE00", "CORE01", "CORE02", "CORE03", "CORE10", "CORE11",
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"CORE20", "CORE21", "CLUSTER0", "CLUSTER1", "CLUSTER2"}) {
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cfgs.emplace_back(generateGenericStateResidencyConfigs(cpuStateConfig, cpuStateHeaders),
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name, name);
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}
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p->addStateResidencyDataProvider(std::make_unique<GenericStateResidencyDataProvider>(
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"/sys/devices/platform/acpm_stats/core_stats", cfgs));
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p->addEnergyConsumer(PowerStatsEnergyConsumer::createMeterConsumer(p,
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EnergyConsumerType::CPU_CLUSTER, "CPUCL0", {"S4M_VDD_CPUCL0"}));
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p->addEnergyConsumer(PowerStatsEnergyConsumer::createMeterConsumer(p,
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EnergyConsumerType::CPU_CLUSTER, "CPUCL1", {"S3M_VDD_CPUCL1"}));
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p->addEnergyConsumer(PowerStatsEnergyConsumer::createMeterConsumer(p,
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EnergyConsumerType::CPU_CLUSTER, "CPUCL2", {"S2M_VDD_CPUCL2"}));
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}
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void addGPU(std::shared_ptr<PowerStats> p) {
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// Add gpu energy consumer
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std::map<std::string, int32_t> stateCoeffs;
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const int socRev = android::base::GetIntProperty(kBootHwSoCRev, 0);
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// B0/B1 chips have different GPU DVFS operating points than A0/A1 SoC
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if (socRev >= 2) {
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stateCoeffs = {
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{"151000", 642},
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{"202000", 890},
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{"251000", 1102},
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{"302000", 1308},
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{"351000", 1522},
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{"400000", 1772},
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{"471000", 2105},
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{"510000", 2292},
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{"572000", 2528},
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{"701000", 3127},
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{"762000", 3452},
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{"848000", 4044}};
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} else {
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stateCoeffs = {
|
|
{"151000", 843},
|
|
{"302000", 1529},
|
|
{"455000", 2298},
|
|
{"572000", 2866},
|
|
{"670000", 3191}};
|
|
}
|
|
|
|
p->addEnergyConsumer(PowerStatsEnergyConsumer::createMeterAndAttrConsumer(p,
|
|
EnergyConsumerType::OTHER, "GPU", {"S2S_VDD_G3D"},
|
|
{{UID_TIME_IN_STATE, "/sys/devices/platform/1c500000.mali/uid_time_in_state"}},
|
|
stateCoeffs));
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<DevfreqStateResidencyDataProvider>("GPU",
|
|
"/sys/bus/platform/devices/1c500000.mali"));
|
|
}
|
|
|
|
void addMobileRadio(std::shared_ptr<PowerStats> p)
|
|
{
|
|
// A constant to represent the number of microseconds in one millisecond.
|
|
const int US_TO_MS = 1000;
|
|
|
|
// modem power_stats are reported in microseconds. The transform function
|
|
// converts microseconds to milliseconds.
|
|
std::function<uint64_t(uint64_t)> modemUsToMs = [](uint64_t a) { return a / US_TO_MS; };
|
|
const GenericStateResidencyDataProvider::StateResidencyConfig powerStateConfig = {
|
|
.entryCountSupported = true,
|
|
.entryCountPrefix = "count:",
|
|
.totalTimeSupported = true,
|
|
.totalTimePrefix = "duration_usec:",
|
|
.totalTimeTransform = modemUsToMs,
|
|
.lastEntrySupported = true,
|
|
.lastEntryPrefix = "last_entry_timestamp_usec:",
|
|
.lastEntryTransform = modemUsToMs,
|
|
};
|
|
const std::vector<std::pair<std::string, std::string>> powerStateHeaders = {
|
|
std::make_pair("SLEEP", "SLEEP:"),
|
|
};
|
|
|
|
std::vector<GenericStateResidencyDataProvider::PowerEntityConfig> cfgs;
|
|
cfgs.emplace_back(generateGenericStateResidencyConfigs(powerStateConfig, powerStateHeaders),
|
|
"MODEM", "");
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<GenericStateResidencyDataProvider>(
|
|
"/sys/devices/platform/cpif/modem/power_stats", cfgs));
|
|
|
|
p->addEnergyConsumer(PowerStatsEnergyConsumer::createMeterConsumer(p,
|
|
EnergyConsumerType::MOBILE_RADIO, "MODEM", {"VSYS_PWR_MODEM", "VSYS_PWR_RFFE"}));
|
|
}
|
|
|
|
void addGNSS(std::shared_ptr<PowerStats> p)
|
|
{
|
|
// A constant to represent the number of microseconds in one millisecond.
|
|
const int US_TO_MS = 1000;
|
|
|
|
// gnss power_stats are reported in microseconds. The transform function
|
|
// converts microseconds to milliseconds.
|
|
std::function<uint64_t(uint64_t)> gnssUsToMs = [](uint64_t a) { return a / US_TO_MS; };
|
|
|
|
const GenericStateResidencyDataProvider::StateResidencyConfig gnssStateConfig = {
|
|
.entryCountSupported = true,
|
|
.entryCountPrefix = "count:",
|
|
.totalTimeSupported = true,
|
|
.totalTimePrefix = "duration_usec:",
|
|
.totalTimeTransform = gnssUsToMs,
|
|
.lastEntrySupported = true,
|
|
.lastEntryPrefix = "last_entry_timestamp_usec:",
|
|
.lastEntryTransform = gnssUsToMs,
|
|
};
|
|
|
|
const std::vector<std::pair<std::string, std::string>> gnssStateHeaders = {
|
|
std::make_pair("ON", "GPS_ON:"),
|
|
std::make_pair("OFF", "GPS_OFF:"),
|
|
};
|
|
|
|
std::vector<GenericStateResidencyDataProvider::PowerEntityConfig> cfgs;
|
|
cfgs.emplace_back(generateGenericStateResidencyConfigs(gnssStateConfig, gnssStateHeaders),
|
|
"GPS", "");
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<GenericStateResidencyDataProvider>(
|
|
"/dev/bbd_pwrstat", cfgs));
|
|
|
|
p->addEnergyConsumer(PowerStatsEnergyConsumer::createMeterConsumer(p,
|
|
EnergyConsumerType::GNSS, "GPS", {"L9S_GNSS_CORE"}));
|
|
}
|
|
|
|
void addPCIe(std::shared_ptr<PowerStats> p) {
|
|
// Add PCIe power entities for Modem and WiFi
|
|
const GenericStateResidencyDataProvider::StateResidencyConfig pcieStateConfig = {
|
|
.entryCountSupported = true,
|
|
.entryCountPrefix = "Cumulative count:",
|
|
.totalTimeSupported = true,
|
|
.totalTimePrefix = "Cumulative duration msec:",
|
|
.lastEntrySupported = true,
|
|
.lastEntryPrefix = "Last entry timestamp msec:",
|
|
};
|
|
const std::vector<std::pair<std::string, std::string>> pcieStateHeaders = {
|
|
std::make_pair("UP", "Link up:"),
|
|
std::make_pair("DOWN", "Link down:"),
|
|
};
|
|
|
|
// Add PCIe - Modem
|
|
const std::vector<GenericStateResidencyDataProvider::PowerEntityConfig> pcieModemCfgs = {
|
|
{generateGenericStateResidencyConfigs(pcieStateConfig, pcieStateHeaders), "PCIe-Modem",
|
|
"Version: 1"}
|
|
};
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<GenericStateResidencyDataProvider>(
|
|
"/sys/devices/platform/11920000.pcie/power_stats", pcieModemCfgs));
|
|
|
|
// Add PCIe - WiFi
|
|
const std::vector<GenericStateResidencyDataProvider::PowerEntityConfig> pcieWifiCfgs = {
|
|
{generateGenericStateResidencyConfigs(pcieStateConfig, pcieStateHeaders),
|
|
"PCIe-WiFi", "Version: 1"}
|
|
};
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<GenericStateResidencyDataProvider>(
|
|
"/sys/devices/platform/14520000.pcie/power_stats", pcieWifiCfgs));
|
|
}
|
|
|
|
void addWifi(std::shared_ptr<PowerStats> p) {
|
|
// The transform function converts microseconds to milliseconds.
|
|
std::function<uint64_t(uint64_t)> usecToMs = [](uint64_t a) { return a / 1000; };
|
|
const GenericStateResidencyDataProvider::StateResidencyConfig stateConfig = {
|
|
.entryCountSupported = true,
|
|
.entryCountPrefix = "count:",
|
|
.totalTimeSupported = true,
|
|
.totalTimePrefix = "duration_usec:",
|
|
.totalTimeTransform = usecToMs,
|
|
.lastEntrySupported = true,
|
|
.lastEntryPrefix = "last_entry_timestamp_usec:",
|
|
.lastEntryTransform = usecToMs,
|
|
};
|
|
const GenericStateResidencyDataProvider::StateResidencyConfig pcieStateConfig = {
|
|
.entryCountSupported = true,
|
|
.entryCountPrefix = "count:",
|
|
.totalTimeSupported = true,
|
|
.totalTimePrefix = "duration_usec:",
|
|
.totalTimeTransform = usecToMs,
|
|
.lastEntrySupported = false,
|
|
};
|
|
|
|
const std::vector<std::pair<std::string, std::string>> stateHeaders = {
|
|
std::make_pair("AWAKE", "AWAKE:"),
|
|
std::make_pair("ASLEEP", "ASLEEP:"),
|
|
|
|
};
|
|
const std::vector<std::pair<std::string, std::string>> pcieStateHeaders = {
|
|
std::make_pair("L0", "L0:"),
|
|
std::make_pair("L1", "L1:"),
|
|
std::make_pair("L1_1", "L1_1:"),
|
|
std::make_pair("L1_2", "L1_2:"),
|
|
std::make_pair("L2", "L2:"),
|
|
};
|
|
|
|
const std::vector<GenericStateResidencyDataProvider::PowerEntityConfig> cfgs = {
|
|
{generateGenericStateResidencyConfigs(stateConfig, stateHeaders), "WIFI", "WIFI"},
|
|
{generateGenericStateResidencyConfigs(pcieStateConfig, pcieStateHeaders), "WIFI-PCIE",
|
|
"WIFI-PCIE"}
|
|
};
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<GenericStateResidencyDataProvider>("/sys/wifi/power_stats",
|
|
cfgs));
|
|
}
|
|
|
|
void addUfs(std::shared_ptr<PowerStats> p) {
|
|
p->addStateResidencyDataProvider(std::make_unique<UfsStateResidencyDataProvider>("/sys/bus/platform/devices/14700000.ufs/ufs_stats/"));
|
|
}
|
|
|
|
void addPowerDomains(std::shared_ptr<PowerStats> p) {
|
|
// A constant to represent the number of nanoseconds in one millisecond.
|
|
const int NS_TO_MS = 1000000;
|
|
|
|
std::function<uint64_t(uint64_t)> acpmNsToMs = [](uint64_t a) { return a / NS_TO_MS; };
|
|
const GenericStateResidencyDataProvider::StateResidencyConfig cpuStateConfig = {
|
|
.entryCountSupported = true,
|
|
.entryCountPrefix = "on_count:",
|
|
.totalTimeSupported = true,
|
|
.totalTimePrefix = "total_on_time_ns:",
|
|
.totalTimeTransform = acpmNsToMs,
|
|
.lastEntrySupported = true,
|
|
.lastEntryPrefix = "last_on_time_ns:",
|
|
.lastEntryTransform = acpmNsToMs,
|
|
};
|
|
|
|
const std::vector<std::pair<std::string, std::string>> cpuStateHeaders = {
|
|
std::make_pair("ON", ""),
|
|
};
|
|
|
|
std::vector<GenericStateResidencyDataProvider::PowerEntityConfig> cfgs;
|
|
for (std::string name : {"pd-tpu", "pd-bo", "pd-tnr", "pd-gdc", "pd-mcsc", "pd-ipp",
|
|
"pd-g3aa", "pd-dns", "pd-itp", "pd-pdp", "pd-csis",
|
|
"pd-mfc", "pd-g2d", "pd-dpu", "pd-disp", "pd-hsi0",
|
|
"pd-embedded_g3d", "pd-g3d", "pd-eh"}) {
|
|
cfgs.emplace_back(generateGenericStateResidencyConfigs(cpuStateConfig, cpuStateHeaders),
|
|
name, name + ":");
|
|
}
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<GenericStateResidencyDataProvider>(
|
|
"/sys/devices/platform/acpm_stats/pd_stats", cfgs));
|
|
}
|
|
|
|
void addDevfreq(std::shared_ptr<PowerStats> p) {
|
|
p->addStateResidencyDataProvider(std::make_unique<DevfreqStateResidencyDataProvider>(
|
|
"INT",
|
|
"/sys/devices/platform/17000020.devfreq_int/devfreq/17000020.devfreq_int"));
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<DevfreqStateResidencyDataProvider>(
|
|
"INTCAM",
|
|
"/sys/devices/platform/17000030.devfreq_intcam/devfreq/17000030.devfreq_intcam"));
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<DevfreqStateResidencyDataProvider>(
|
|
"DISP",
|
|
"/sys/devices/platform/17000040.devfreq_disp/devfreq/17000040.devfreq_disp"));
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<DevfreqStateResidencyDataProvider>(
|
|
"CAM",
|
|
"/sys/devices/platform/17000050.devfreq_cam/devfreq/17000050.devfreq_cam"));
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<DevfreqStateResidencyDataProvider>(
|
|
"TNR",
|
|
"/sys/devices/platform/17000060.devfreq_tnr/devfreq/17000060.devfreq_tnr"));
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<DevfreqStateResidencyDataProvider>(
|
|
"MFC",
|
|
"/sys/devices/platform/17000070.devfreq_mfc/devfreq/17000070.devfreq_mfc"));
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<DevfreqStateResidencyDataProvider>(
|
|
"BO",
|
|
"/sys/devices/platform/17000080.devfreq_bo/devfreq/17000080.devfreq_bo"));
|
|
}
|
|
|
|
void addTPU(std::shared_ptr<PowerStats> p) {
|
|
std::map<std::string, int32_t> stateCoeffs;
|
|
|
|
stateCoeffs = {
|
|
{"226000", 49.25},
|
|
{"500000", 73.80},
|
|
{"800000", 86.99},
|
|
{"1066000", 103.93},
|
|
{"1230000", 108.10}};
|
|
|
|
p->addEnergyConsumer(PowerStatsEnergyConsumer::createMeterAndAttrConsumer(p,
|
|
EnergyConsumerType::OTHER, "TPU", {"S10M_VDD_TPU"},
|
|
{{UID_TIME_IN_STATE, "/sys/class/edgetpu/edgetpu-soc/device/tpu_usage"}},
|
|
stateCoeffs));
|
|
}
|
|
|
|
/**
|
|
* Unlike other data providers, which source power entity state residency data from the kernel,
|
|
* this data provider acts as a general-purpose channel for state residency data providers
|
|
* that live in user space. Entities are defined here and user space clients of this provider's
|
|
* vendor service register callbacks to provide state residency data for their given pwoer entity.
|
|
*/
|
|
void addPixelStateResidencyDataProvider(std::shared_ptr<PowerStats> p) {
|
|
|
|
auto pixelSdp = std::make_unique<PixelStateResidencyDataProvider>();
|
|
|
|
pixelSdp->addEntity("Bluetooth", {{0, "Idle"}, {1, "Active"}, {2, "Tx"}, {3, "Rx"}});
|
|
|
|
pixelSdp->start();
|
|
|
|
p->addStateResidencyDataProvider(std::move(pixelSdp));
|
|
}
|
|
|
|
void addGs101CommonDataProviders(std::shared_ptr<PowerStats> p) {
|
|
setEnergyMeter(p);
|
|
|
|
addPixelStateResidencyDataProvider(p);
|
|
addAoC(p);
|
|
addDvfsStats(p);
|
|
addSoC(p);
|
|
addCPUclusters(p);
|
|
addGPU(p);
|
|
addMobileRadio(p);
|
|
addGNSS(p);
|
|
addPCIe(p);
|
|
addWifi(p);
|
|
addUfs(p);
|
|
addPowerDomains(p);
|
|
addDevfreq(p);
|
|
addTPU(p);
|
|
}
|
|
|
|
void addNFC(std::shared_ptr<PowerStats> p, const std::string& path) {
|
|
const GenericStateResidencyDataProvider::StateResidencyConfig nfcStateConfig = {
|
|
.entryCountSupported = true,
|
|
.entryCountPrefix = "Cumulative count:",
|
|
.totalTimeSupported = true,
|
|
.totalTimePrefix = "Cumulative duration msec:",
|
|
.lastEntrySupported = true,
|
|
.lastEntryPrefix = "Last entry timestamp msec:",
|
|
};
|
|
const std::vector<std::pair<std::string, std::string>> nfcStateHeaders = {
|
|
std::make_pair("IDLE", "Idle mode:"),
|
|
std::make_pair("ACTIVE", "Active mode:"),
|
|
std::make_pair("ACTIVE-RW", "Active Reader/Writer mode:"),
|
|
};
|
|
|
|
std::vector<GenericStateResidencyDataProvider::PowerEntityConfig> cfgs;
|
|
cfgs.emplace_back(generateGenericStateResidencyConfigs(nfcStateConfig, nfcStateHeaders),
|
|
"NFC", "NFC subsystem");
|
|
|
|
p->addStateResidencyDataProvider(std::make_unique<GenericStateResidencyDataProvider>(
|
|
path, cfgs));
|
|
}
|