8 Commits

Author SHA1 Message Date
33a760489e Remove NVIDIA stuff 2023-07-23 18:04:17 +02:00
10fbcdb0f6 Add missing classes 2023-03-15 15:20:35 +01:00
f383eb1b79 Add average and max aggregator functions 2023-03-15 15:16:56 +01:00
7b0b419a22 Fix crash on startup 2023-01-19 13:32:56 +01:00
ec480f5a17 Remove leftover include statement 2022-11-05 02:50:18 +01:00
0109f66be3 Remove leftover include statement 2022-11-05 02:47:44 +01:00
75d6af4c8b Remove leftover include statement 2022-11-05 02:47:13 +01:00
815b78aa67 Change required version of boost libs 2022-11-05 02:45:12 +01:00
16 changed files with 211 additions and 110 deletions

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@@ -1,12 +1,12 @@
pkgname=fantasize pkgname=fantasize
pkgver=0.1.7 pkgver=0.2.0
pkgrel=1 pkgrel=1
pkgdesc='C++ fan control for Linux' pkgdesc='C++ fan control for Linux'
url='https://github.com/Tabascl/fantasize.git' url='https://github.com/Tabascl/fantasize.git'
source=("$pkgname-$pkgver.tar.gz::https://github.com/Tabascl/fantasize/archive/refs/tags/v$pkgver.tar.gz") source=("$pkgname-$pkgver.tar.gz::https://github.com/Tabascl/fantasize/archive/refs/tags/v$pkgver.tar.gz")
arch=('x86_64') arch=('x86_64')
license=('GPL3') license=('GPL3')
makedepends=('git' 'cmake' 'nlohmann-json' 'boost' 'cuda') makedepends=('git' 'cmake' 'nlohmann-json' 'boost')
sha256sums=('SKIP') sha256sums=('SKIP')
build() { build() {

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@@ -1 +0,0 @@
BasedOnStyle: Google

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@@ -1,38 +1,25 @@
cmake_minimum_required(VERSION 3.0) cmake_minimum_required(VERSION 3.0)
project(fantasize VERSION 0.1.7) project(fantasize VERSION 0.1.8)
set(CMAKE_EXPORT_COMPILE_COMMANDS ON) set(CMAKE_EXPORT_COMPILE_COMMANDS ON)
find_package(nlohmann_json 3.7 REQUIRED) find_package(nlohmann_json 3.11.2 REQUIRED)
find_package(Boost 1.80 COMPONENTS program_options log log_setup date_time REQUIRED) find_package(Boost 1.74 COMPONENTS program_options log log_setup date_time REQUIRED)
find_library(NVML_LIB nvidia-ml)
set(ADDITIONAL_LIBS)
if (NVML_LIB)
set(HAVE_NVML)
add_library(nvidia-sensor-lib STATIC
src/sensor/NvidiaSensor.cxx
src/sensor/GPUSensorsFacade.cxx)
target_link_libraries(nvidia-sensor-lib PUBLIC NVML_LIB)
list(APPEND ADDITIONAL_LIBS nvidia-sensor-lib)
endif()
add_executable(${PROJECT_NAME} add_executable(${PROJECT_NAME}
src/main.cxx src/main.cxx
src/sensor/LMSensorsFacade.cxx src/sensor/LMSensorsFacade.cxx
# src/sensor/GPUSensorsFacade.cxx
src/sensor/Sensor.cxx src/sensor/Sensor.cxx
# src/sensor/NvidiaSensor.cxx
src/sensor/LMSensor.cxx src/sensor/LMSensor.cxx
src/pwm/PWMControl.cxx src/pwm/PWMControl.cxx
src/pwm/PWMControlFacade.cxx src/pwm/PWMControlFacade.cxx
src/fan/HwmonFan.cxx src/fan/HwmonFan.cxx
src/fan/FanCurve.cxx src/fan/FanCurve.cxx
src/fan/FanLabeler.cxx src/fan/FanLabeler.cxx
src/fan/Aggregators.cxx
src/FanGenerator.cxx src/FanGenerator.cxx
src/Serializer.cxx src/Serializer.cxx
src/sensor/SensorManager.cxx src/sensor/SensorManager.cxx
@@ -43,9 +30,10 @@ add_executable(${PROJECT_NAME}
set_property(TARGET ${PROJECT_NAME} PROPERTY CXX_STANDARD 20) set_property(TARGET ${PROJECT_NAME} PROPERTY CXX_STANDARD 20)
target_include_directories(${PROJECT_NAME} PUBLIC include /opt/cuda) # target_include_directories(${PROJECT_NAME} PUBLIC include /opt/cuda)
target_include_directories(${PROJECT_NAME} PUBLIC include)
target_link_libraries(${PROJECT_NAME} PUBLIC sensors nlohmann_json::nlohmann_json tbb ${Boost_LIBRARIES} ${ADDITIONAL_LIBS}) # target_link_libraries(${PROJECT_NAME} PUBLIC sensors nvidia-ml nlohmann_json::nlohmann_json tbb ${Boost_LIBRARIES})
target_link_libraries(${PROJECT_NAME} PUBLIC sensors nlohmann_json::nlohmann_json tbb ${Boost_LIBRARIES})
install(TARGETS ${PROJECT_NAME} DESTINATION usr/local/bin) install(TARGETS ${PROJECT_NAME} DESTINATION usr/local/bin)
install(FILES ${CMAKE_CURRENT_SOURCE_DIR}/unit/fantasize.service DESTINATION usr/lib/systemd/system) install(FILES ${CMAKE_CURRENT_SOURCE_DIR}/unit/fantasize.service DESTINATION usr/lib/systemd/system)

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@@ -7,6 +7,7 @@
#include <nlohmann/json.hpp> #include <nlohmann/json.hpp>
#include <Settings.h> #include <Settings.h>
#include <fan/Aggregators.h>
#include <fan/Fan.h> #include <fan/Fan.h>
#include <fan/FanCurve.h> #include <fan/FanCurve.h>
#include <sensor/Sensor.h> #include <sensor/Sensor.h>
@@ -16,20 +17,22 @@
using json = nlohmann::json; using json = nlohmann::json;
class Serializer { class Serializer
{
public: public:
Serializer(); Serializer();
void SerializeFans(std::vector<std::shared_ptr<Fan>> fans); void SerializeFans(std::vector<std::shared_ptr<Fan>> fans);
std::vector<std::shared_ptr<Fan>> std::vector<std::shared_ptr<Fan>> DeserializeFans(
DeserializeFans(std::vector<std::shared_ptr<Sensor>> availableSensors); std::vector<std::shared_ptr<Sensor>> availableSensors);
std::vector<std::shared_ptr<FanCurve>> std::vector<std::shared_ptr<FanCurve>> DeserializeFanCurves(
DeserializeFanCurves(std::vector<std::shared_ptr<Sensor>> availableSensors, std::vector<std::shared_ptr<Sensor>> availableSensors,
std::vector<std::shared_ptr<Fan>> availableFans); std::vector<std::shared_ptr<Fan>> availableFans);
std::shared_ptr<Settings> DeserializeSettings(); std::shared_ptr<Settings> DeserializeSettings();
private: private:
void WriteJson(json o); void WriteJson(json o);
json ReadJson(); json ReadJson();
std::unique_ptr<Aggregator> aggregatorFromString(std::string str) const;
}; };
#endif // SERIALIZER_H_ #endif // SERIALIZER_H_

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@@ -0,0 +1,27 @@
#ifndef AGGREGATORS_H_
#define AGGREGATORS_H_
#include <sensor/Sensor.h>
class Aggregator
{
public:
virtual int aggregate(std::vector<std::shared_ptr<Sensor>> sensors) const = 0;
virtual const std::string toString() const = 0;
};
class AverageAggregator : public Aggregator
{
public:
int aggregate(std::vector<std::shared_ptr<Sensor>> sensors) const override;
const std::string toString() const override;
};
class MaxAggregator : public Aggregator
{
public:
int aggregate(std::vector<std::shared_ptr<Sensor>> sensors) const override;
const std::string toString() const override;
};
#endif // AGGERGATORS_H_

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@@ -4,19 +4,23 @@
#include <memory> #include <memory>
#include <vector> #include <vector>
#include <fan/Aggregators.h>
#include <fan/HwmonFan.h> #include <fan/HwmonFan.h>
#include <sensor/Sensor.h> #include <sensor/Sensor.h>
struct FanStep { struct FanStep
{
int Temp; int Temp;
int Percent; int Percent;
}; };
class FanCurve { class FanCurve
{
public: public:
FanCurve(std::vector<FanStep> steps, FanCurve(std::vector<FanStep> steps,
std::vector<std::shared_ptr<Sensor>> sensors, std::vector<std::shared_ptr<Sensor>> sensors,
std::vector<std::shared_ptr<Fan>> fans); std::vector<std::shared_ptr<Fan>> fans,
std::unique_ptr<Aggregator> aggregator);
void DoFanControl(); void DoFanControl();
@@ -27,6 +31,7 @@ private:
std::vector<FanStep> mSteps; std::vector<FanStep> mSteps;
std::vector<std::shared_ptr<Sensor>> mTempSensors; std::vector<std::shared_ptr<Sensor>> mTempSensors;
std::vector<std::shared_ptr<Fan>> mFans; std::vector<std::shared_ptr<Fan>> mFans;
std::unique_ptr<Aggregator> mAggregator;
}; };
#endif // FANCURVE_H_ #endif // FANCURVE_H_

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@@ -4,8 +4,6 @@
#include <chrono> #include <chrono>
#include <memory> #include <memory>
#include <boost/json/object.hpp>
#include <fan/Fan.h> #include <fan/Fan.h>
#include <pwm/PWMControl.h> #include <pwm/PWMControl.h>
#include <sensor/Sensor.h> #include <sensor/Sensor.h>

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@@ -1,7 +1,6 @@
#ifndef PWMCONTROL_H_ #ifndef PWMCONTROL_H_
#define PWMCONTROL_H_ #define PWMCONTROL_H_
#include <boost/json/object.hpp>
#include <string> #include <string>
#include <Printable.h> #include <Printable.h>

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@@ -1,4 +1,3 @@
#include "Settings.h"
#include <filesystem> #include <filesystem>
#include <fstream> #include <fstream>
#include <iostream> #include <iostream>
@@ -9,17 +8,21 @@
#include <fan/HwmonFan.h> #include <fan/HwmonFan.h>
#include <pwm/PWMControl.h> #include <pwm/PWMControl.h>
#include <sensor/LMSensor.h> #include <sensor/LMSensor.h>
#include <string>
using namespace std; using namespace std;
namespace fs = filesystem; namespace fs = filesystem;
Serializer::Serializer() { Serializer::Serializer()
{
if (!fs::exists(SERIALIZATION_DIR)) { if (!fs::exists(SERIALIZATION_DIR)) {
fs::create_directory(SERIALIZATION_DIR); fs::create_directory(SERIALIZATION_DIR);
} }
} }
void Serializer::SerializeFans(vector<shared_ptr<Fan>> fans) { void
Serializer::SerializeFans(vector<shared_ptr<Fan>> fans)
{
json obj; json obj;
for (auto f : fans) { for (auto f : fans) {
@@ -30,7 +33,8 @@ void Serializer::SerializeFans(vector<shared_ptr<Fan>> fans) {
} }
vector<shared_ptr<Fan>> vector<shared_ptr<Fan>>
Serializer::DeserializeFans(vector<shared_ptr<Sensor>> availableSensors) { Serializer::DeserializeFans(vector<shared_ptr<Sensor>> availableSensors)
{
vector<shared_ptr<Fan>> fans; vector<shared_ptr<Fan>> fans;
// Create a for the sensors first, then searching becomes cheaper // Create a for the sensors first, then searching becomes cheaper
@@ -41,7 +45,7 @@ Serializer::DeserializeFans(vector<shared_ptr<Sensor>> availableSensors) {
auto data = ReadJson(); auto data = ReadJson();
try { try {
for (auto &el : data["fans"].items()) { for (auto& el : data["fans"].items()) {
auto pwmControl = make_shared<PWMControl>(el.value()["PWMControl"]); auto pwmControl = make_shared<PWMControl>(el.value()["PWMControl"]);
auto rpmSensor = sensorMap[el.value()["LMSensor"]]; auto rpmSensor = sensorMap[el.value()["LMSensor"]];
@@ -56,20 +60,22 @@ Serializer::DeserializeFans(vector<shared_ptr<Sensor>> availableSensors) {
fans.push_back(fan); fans.push_back(fan);
} }
} catch (const std::exception &e) { } catch (const std::exception& e) {
std::cout << "Deserialization error! Message: " << e.what() << std::endl; std::cout << "Deserialization error! Message: " << e.what() << std::endl;
} }
return fans; return fans;
} }
void Serializer::WriteJson(json o) { void
Serializer::WriteJson(json o)
{
json obj; json obj;
if (fs::exists(fs::path(SERIALIZATION_DIR) / FANS_JSON_FILENAME)) { if (fs::exists(fs::path(SERIALIZATION_DIR) / FANS_JSON_FILENAME)) {
obj = ReadJson(); obj = ReadJson();
} }
for (auto &[key, value] : o.items()) { for (auto& [key, value] : o.items()) {
obj[key] = value; obj[key] = value;
} }
@@ -77,14 +83,18 @@ void Serializer::WriteJson(json o) {
ostrm << obj.dump(2) << "\n"; ostrm << obj.dump(2) << "\n";
} }
json Serializer::ReadJson() { json
Serializer::ReadJson()
{
ifstream istrm(fs::path(SERIALIZATION_DIR) / FANS_JSON_FILENAME); ifstream istrm(fs::path(SERIALIZATION_DIR) / FANS_JSON_FILENAME);
return json::parse(istrm); return json::parse(istrm);
} }
vector<shared_ptr<FanCurve>> Serializer::DeserializeFanCurves( vector<shared_ptr<FanCurve>>
Serializer::DeserializeFanCurves(
std::vector<std::shared_ptr<Sensor>> availableSensors, std::vector<std::shared_ptr<Sensor>> availableSensors,
std::vector<std::shared_ptr<Fan>> availableFans) { std::vector<std::shared_ptr<Fan>> availableFans)
{
auto data = ReadJson(); auto data = ReadJson();
map<string, shared_ptr<Sensor>> sensorMap; map<string, shared_ptr<Sensor>> sensorMap;
@@ -99,32 +109,47 @@ vector<shared_ptr<FanCurve>> Serializer::DeserializeFanCurves(
vector<shared_ptr<FanCurve>> curves; vector<shared_ptr<FanCurve>> curves;
for (auto &el : data["fancurves"].items()) { for (auto& el : data["fancurves"].items()) {
vector<FanStep> steps; vector<FanStep> steps;
vector<shared_ptr<Sensor>> sensors; vector<shared_ptr<Sensor>> sensors;
vector<shared_ptr<Fan>> fans; vector<shared_ptr<Fan>> fans;
for (auto &step : el.value()["FanSteps"].items()) { for (auto& step : el.value()["FanSteps"].items()) {
steps.push_back(FanStep{step.value()[0], step.value()[1]}); steps.push_back(FanStep{ step.value()[0], step.value()[1] });
} }
for (auto &sensor : el.value()["Sensors"].items()) { for (auto& sensor : el.value()["Sensors"].items()) {
if (sensorMap.contains(sensor.value())) if (sensorMap.contains(sensor.value()))
sensors.push_back(sensorMap[sensor.value()]); sensors.push_back(sensorMap[sensor.value()]);
} }
for (auto &fan : el.value()["Fans"].items()) { for (auto& fan : el.value()["Fans"].items()) {
if (fanMap.contains(fan.value())) if (fanMap.contains(fan.value()))
fans.push_back(fanMap[fan.value()]); fans.push_back(fanMap[fan.value()]);
} }
curves.push_back(make_shared<FanCurve>(steps, sensors, fans)); std::unique_ptr<Aggregator> aggregator =
aggregatorFromString(el.value()["AggregateFunction"]);
curves.push_back(
make_shared<FanCurve>(steps, sensors, fans, std::move(aggregator)));
} }
return curves; return curves;
} }
shared_ptr<Settings> Serializer::DeserializeSettings() { std::unique_ptr<Aggregator>
Serializer::aggregatorFromString(std::string str) const
{
if (str == "max")
return std::make_unique<MaxAggregator>();
else
return std::make_unique<AverageAggregator>();
}
shared_ptr<Settings>
Serializer::DeserializeSettings()
{
int frequency = FREQUENCY_DEFAULT; int frequency = FREQUENCY_DEFAULT;
auto data = ReadJson(); auto data = ReadJson();

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@@ -0,0 +1,39 @@
#include <climits>
#include <fan/Aggregators.h>
int
AverageAggregator::aggregate(std::vector<std::shared_ptr<Sensor>> sensors) const
{
int sum = 0;
for (auto sensor : sensors) {
sum += sensor->value();
}
return sum / sensors.size();
}
const std::string
AverageAggregator::toString() const
{
return "Average";
}
int
MaxAggregator::aggregate(std::vector<std::shared_ptr<Sensor>> sensors) const
{
int max = INT_MIN;
for (auto sensor : sensors) {
if (sensor->value() > max)
max = sensor->value();
}
return max;
}
const std::string
MaxAggregator::toString() const
{
return "Max";
}

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@@ -1,19 +1,28 @@
#include <fan/FanCurve.h>
#include <boost/log/attributes/named_scope.hpp> #include <boost/log/attributes/named_scope.hpp>
#include <iostream>
#include <boost/log/trivial.hpp> #include <boost/log/trivial.hpp>
#include <sstream>
#include <fan/FanCurve.h>
#include <memory>
using namespace std; using namespace std;
FanCurve::FanCurve(std::vector<FanStep> steps, FanCurve::FanCurve(std::vector<FanStep> steps,
std::vector<std::shared_ptr<Sensor>> sensors, std::vector<std::shared_ptr<Sensor>> sensors,
std::vector<std::shared_ptr<Fan>> fans) std::vector<std::shared_ptr<Fan>> fans,
: mSteps(steps), mTempSensors(sensors), mFans(fans) { std::unique_ptr<Aggregator> aggregator)
: mSteps(steps)
, mTempSensors(sensors)
, mFans(fans)
, mAggregator(std::move(aggregator))
{
PrintInfo(); PrintInfo();
} }
void FanCurve::DoFanControl() { void
FanCurve::DoFanControl()
{
BOOST_LOG_FUNCTION(); BOOST_LOG_FUNCTION();
int temp = AggregateTemperature(); int temp = AggregateTemperature();
@@ -50,17 +59,15 @@ void FanCurve::DoFanControl() {
} }
} }
// Dummy Implementation using AVG int
int FanCurve::AggregateTemperature() { FanCurve::AggregateTemperature()
int sum = 0; {
for (auto s : mTempSensors) { return mAggregator->aggregate(mTempSensors);
sum += s->value();
}
return sum / mTempSensors.size();
} }
void FanCurve::PrintInfo() { void
FanCurve::PrintInfo()
{
BOOST_LOG_FUNCTION() BOOST_LOG_FUNCTION()
BOOST_LOG_TRIVIAL(info) << "### Fan curve:"; BOOST_LOG_TRIVIAL(info) << "### Fan curve:";
@@ -89,4 +96,10 @@ void FanCurve::PrintInfo() {
} }
BOOST_LOG_TRIVIAL(info) << sStream.str(); BOOST_LOG_TRIVIAL(info) << sStream.str();
sStream.str(string());
sStream << "Aggregate function: " << mAggregator->toString();
BOOST_LOG_TRIVIAL(info) << sStream.str();
} }

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@@ -20,7 +20,7 @@
#include <App.h> #include <App.h>
#define PROJECT_VERSION "v0.1.6" #define PROJECT_VERSION "v0.2.0"
namespace po = boost::program_options; namespace po = boost::program_options;
namespace logging = boost::log; namespace logging = boost::log;

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@@ -15,7 +15,9 @@
using namespace std; using namespace std;
namespace fs = filesystem; namespace fs = filesystem;
PWMControl::PWMControl(string controlPath) : mControlPath(controlPath) { PWMControl::PWMControl(string controlPath)
: mControlPath(controlPath)
{
fs::path pathEnable(mControlPath + PWM_POSTFIX_ENABLE); fs::path pathEnable(mControlPath + PWM_POSTFIX_ENABLE);
fs::path pathMode(mControlPath + PWM_POSTFIX_MODE); fs::path pathMode(mControlPath + PWM_POSTFIX_MODE);
@@ -35,21 +37,24 @@ PWMControl::PWMControl(string controlPath) : mControlPath(controlPath) {
istrm.close(); istrm.close();
} }
PWMControl::~PWMControl() { PWMControl::~PWMControl()
{
BOOST_LOG_FUNCTION(); BOOST_LOG_FUNCTION();
BOOST_LOG_TRIVIAL(trace) << "Cleanup"; BOOST_LOG_TRIVIAL(trace) << "Cleanup";
Reset(); Reset();
} }
void PWMControl::Power(int percent) { void
PWMControl::Power(int percent)
{
BOOST_LOG_FUNCTION(); BOOST_LOG_FUNCTION();
int pwmValue = (PWM_MAX_VALUE * percent) / 100; int pwmValue = (PWM_MAX_VALUE * percent) / 100;
if (percent != mCurrentValue) { if (percent != mCurrentValue) {
BOOST_LOG_TRIVIAL(trace) BOOST_LOG_TRIVIAL(trace) << "Updating control value of " << toString()
<< "Updating control value to " << percent << "% (" << pwmValue << ")"; << " to " << percent << "% (" << pwmValue << ")";
ofstream ostrm(mControlPath, ios::trunc); ofstream ostrm(mControlPath, ios::trunc);
ostrm << pwmValue; ostrm << pwmValue;
ostrm.close(); ostrm.close();
@@ -58,7 +63,9 @@ void PWMControl::Power(int percent) {
} }
} }
int PWMControl::Power() { int
PWMControl::Power()
{
int value; int value;
ifstream istrm; ifstream istrm;
@@ -68,13 +75,17 @@ int PWMControl::Power() {
return (value * 100) / PWM_MAX_VALUE; return (value * 100) / PWM_MAX_VALUE;
} }
void PWMControl::EnableManualControl() { void
PWMControl::EnableManualControl()
{
ofstream ostrm(mEnablePath, ios::trunc); ofstream ostrm(mEnablePath, ios::trunc);
ostrm << static_cast<int>(PWM_ENABLE::MANUAL_CONTROL); ostrm << static_cast<int>(PWM_ENABLE::MANUAL_CONTROL);
ostrm.close(); ostrm.close();
} }
void PWMControl::Reset() { void
PWMControl::Reset()
{
ofstream ostrm(mEnablePath, ios::trunc); ofstream ostrm(mEnablePath, ios::trunc);
ostrm << mInitialEnable; ostrm << mInitialEnable;
@@ -86,11 +97,15 @@ void PWMControl::Reset() {
ostrm.close(); ostrm.close();
} }
const string PWMControl::toString() const { const string
PWMControl::toString() const
{
return fs::path(mControlPath).filename(); return fs::path(mControlPath).filename();
} }
json PWMControl::toJson() const { json
json obj = {"PWMControl", mControlPath}; PWMControl::toJson() const
{
json obj = { "PWMControl", mControlPath };
return obj; return obj;
} }

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@@ -1,9 +1,6 @@
#ifdef HAVE_NVML
#include <include/nvml.h> #include <include/nvml.h>
#include <sensor/NvidiaSensor.h>
#include <boost/json/object.hpp> #include <sensor/NvidiaSensor.h>
using namespace std; using namespace std;
@@ -27,5 +24,3 @@ json NvidiaSensor::toJson() const {
json obj = {"NvidiaSensor", toString()}; json obj = {"NvidiaSensor", toString()};
return obj; return obj;
} }
#endif

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@@ -3,26 +3,21 @@
using namespace std; using namespace std;
SensorManager::SensorManager() SensorManager::SensorManager()
: mLMSensorsFacade(make_unique<LMSensorsFacade>()) : mLMSensorsFacade(make_unique<LMSensorsFacade>()),
, mGPUSensorsFacade(make_unique<GPUSensorsFacade>()) mGPUSensorsFacade(make_unique<GPUSensorsFacade>()) {}
{
}
vector<shared_ptr<Sensor>> SensorManager::TemperatureSensors() vector<shared_ptr<Sensor>> SensorManager::TemperatureSensors() {
{
vector<shared_ptr<Sensor>> tempSensors; vector<shared_ptr<Sensor>> tempSensors;
tempSensors = mLMSensorsFacade->TemperatureSensors(); tempSensors = mLMSensorsFacade->TemperatureSensors();
#ifdef HAVE_NVML // auto gpuSensors = mGPUSensorsFacade->TemperatureSensors();
auto gpuSensors = mGPUSensorsFacade->TemperatureSensors(); // tempSensors.insert(tempSensors.end(), gpuSensors.begin(),
tempSensors.insert(tempSensors.end(), gpuSensors.begin(), gpuSensors.end()); // gpuSensors.end());
#endif
return tempSensors; return tempSensors;
} }
vector<shared_ptr<Sensor>> SensorManager::RPMSensors() vector<shared_ptr<Sensor>> SensorManager::RPMSensors() {
{
return mLMSensorsFacade->RPMSensors(); return mLMSensorsFacade->RPMSensors();
} }

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@@ -7,4 +7,4 @@ ExecStart=/usr/local/bin/fantasize
Restart=always Restart=always
[Install] [Install]
WantedBy=multi-user.target WantedBy=graphical.target