Files
cariflex/tools/EVerest-main/lib/everest/timer/examples/main.cpp
Eric F d398a6ced2 Add extracted tools: CitrineOS, OpenOCPP, ShapeShifter
- CitrineOS core extracted (CSMS OCPP 2.0.1)
- OpenOCPP extracted (firmware OCPP 1.6J/2.0.1)
- ShapeShifter library installed (pip install -e)
- ShapeShifter specification extracted
- EVerest extracted

TODO updated with progress
2026-06-08 00:38:27 -04:00

85 lines
2.7 KiB
C++

// SPDX-License-Identifier: Apache-2.0
// Copyright 2020 - 2026 Pionix GmbH and Contributors to EVerest
#include <chrono>
#include <iostream>
#include <memory>
#include <thread>
#include <boost/exception/diagnostic_information.hpp>
#include <boost/program_options.hpp>
#include <date/date.h>
#include <date/tz.h>
#include <everest/timer.hpp>
namespace po = boost::program_options;
using date::operator<<;
using namespace std::chrono_literals;
int main(int argc, char* argv[]) {
po::options_description desc("EVerest::time example");
desc.add_options()("help,h", "produce help message");
po::variables_map vm;
po::store(po::parse_command_line(argc, argv, desc), vm);
po::notify(vm);
if (vm.count("help") != 0) {
std::cout << desc << "\n";
return 1;
}
boost::asio::io_context io_context;
std::cout << "start time: " << date::utc_clock::now() << std::endl;
int count_timer1 = 0;
int count_timer2 = 0;
auto timer0 = std::make_unique<Everest::SteadyTimer>(&io_context);
timer0->timeout([]() { std::cout << "Goodbye after 25s" << std::endl; }, 25s);
auto timer1 = std::make_unique<Everest::SteadyTimer>(&io_context);
timer1->at(
[&]() {
std::cout << "timer1 (asio) after 5s: " << date::utc_clock::now() << std::endl;
timer1->interval(
[&]() {
std::cout << "timer1 (asio) interval (1s): " << date::utc_clock::now() << std::endl;
count_timer1++;
if (count_timer1 > 3) {
timer1->timeout(
[]() {
std::cout << "timer1 (asio) timeout (3s): " << date::utc_clock::now() << std::endl;
},
3s);
}
},
1s);
},
date::utc_clock::now() + 5s);
auto timer2 = std::make_unique<Everest::SteadyTimer>();
timer2->at(
[&]() {
std::cout << "timer2 (thread) after 12s: " << date::utc_clock::now() << std::endl;
timer2->interval(
[&]() {
std::cout << "timer2 (thread) interval (1s): " << date::utc_clock::now() << std::endl;
count_timer2++;
if (count_timer2 > 3) {
timer2->timeout(
[]() {
std::cout << "timer2 (thread) timeout (3s): " << date::utc_clock::now() << std::endl;
},
3s);
}
},
1s);
},
date::utc_clock::now() + 12s);
io_context.run();
return 0;
}