test(sandbox-test): updated sandbox
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@@ -27,12 +27,10 @@
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#include "gridfire/partition/composite/partition_composite.h"
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// Keep a copy of the previous handler
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static std::terminate_handler g_previousHandler = nullptr;
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void measure_execution_time(const std::function<void()>& callback, const std::string& name)
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{
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// variable names in camelCase
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const auto startTime = std::chrono::steady_clock::now();
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callback();
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const auto endTime = std::chrono::steady_clock::now();
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@@ -43,14 +41,7 @@ void measure_execution_time(const std::function<void()>& callback, const std::st
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void quill_terminate_handler()
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{
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// 1. Stop the Quill backend (flushes all sinks and joins thread)
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quill::Backend::stop();
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// 2. Optionally, flush individual loggers:
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// for (auto logger : quill::get_all_loggers())
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// logger->flush_log();
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// 3. Chain to the previous terminate handler (or abort if none)
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if (g_previousHandler)
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g_previousHandler();
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else
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@@ -64,8 +55,8 @@ int main() {
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LOG_DEBUG(logger, "Starting Adaptive Engine View Example...");
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using namespace gridfire;
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const std::vector<double> comp = {0.708, 0.0, 2.94e-5, 0.276, 0.003, 0.0011, 9.62e-3, 1.62e-3, 5.16e-4};
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const std::vector<std::string> symbols = {"H-1", "H-2", "He-3", "He-4", "C-12", "N-14", "O-16", "Ne-20", "Mg-24"};
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const std::vector<double> comp = {0.708, 2.94e-5, 0.276, 0.003, 0.0011, 9.62e-3, 1.62e-3, 5.16e-4};
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const std::vector<std::string> symbols = {"H-1", "He-3", "He-4", "C-12", "N-14", "O-16", "Ne-20", "Mg-24"};
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fourdst::composition::Composition composition;
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@@ -77,44 +68,25 @@ int main() {
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BasePartitionType::RauscherThielemann,
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BasePartitionType::GroundState
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});
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GraphEngine ReaclibEngine(composition, partitionFunction);
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NetIn netIn;
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netIn.composition = composition;
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netIn.temperature = 1.5e7;
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netIn.density = 1e2;
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netIn.energy = 0.0;
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netIn.temperature = 1.5e6;
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netIn.density = 1.5e3;
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netIn.energy = 0;
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netIn.tMax = 3e17;
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netIn.dt0 = 1e-12;
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netIn.tMax = 1; // 1 year in seconds
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netIn.dt0 = 1e12;
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GraphEngine ReaclibEngine(composition, partitionFunction, NetworkBuildDepth::SecondOrder);
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auto primedReport = ReaclibEngine.primeEngine(netIn);
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std::cout << primedReport << std::endl;
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std::cout << "Initial Composition\n";
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for (const auto& [symbol, entry] : netIn.composition) {
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std::cout << "\t" << symbol << ": " << entry.mass_fraction() << "\n";
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}
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NetOut netOut;
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netIn.dt0 = 1e-15;
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const auto primedComposition = primeNetwork(netIn, ReaclibEngine);
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netIn.composition = primedComposition;
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netIn.composition.finalize(true);
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MultiscalePartitioningEngineView multiscaleEngine(ReaclibEngine);
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multiscaleEngine.equilibrateNetwork(netIn, 1e12);
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// // std::cout << ReaclibEngine.getPartitionFunction().type() << std::endl;
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// ReaclibEngine.setPrecomputation(true);
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// ReaclibEngine.setUseReverseReactions(false);
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// // // AdaptiveEngineView adaptiveEngine(ReaclibEngine);
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// io::SimpleReactionListFileParser parser{};
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// FileDefinedEngineView approx8EngineView(ReaclibEngine, "approx8.net", parser);
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// approx8EngineView.setScreeningModel(screening::ScreeningType::WEAK);
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// solver::DirectNetworkSolver solver(approx8EngineView);
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// netOut = solver.evaluate(netIn);
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// std::cout << netOut.composition << std::endl;
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// measure_execution_time([&]() {
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// netOut = solver.evaluate(netIn);
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// }, "Approx8 Network Evaluation (Precomputation)");
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// ReaclibEngine.setPrecomputation(false);
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// std::cout << "Precomputation H-1: " << netOut.composition.getMassFraction("H-1") << " in " << netOut.num_steps << " steps." << std::endl;
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std::cout << "\nPrimed Composition\n";
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for (const auto& [symbol, entry] : primedReport.primedComposition) {
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std::cout << "\t" << symbol << ": " << entry.mass_fraction() << "\n";
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}
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}
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