update save_results part 1

This commit is contained in:
Vasco C. B. Ferreira
2026-07-01 16:34:27 +02:00
parent be8cf7aa31
commit 2b42bb7d02
3 changed files with 61 additions and 45 deletions
+26 -11
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@@ -59,6 +59,18 @@ using namespace dealii;
// } // }
// return indices; // return indices;
// } // }
inline std::vector<double> make_x_eval(size_t Nx) {
std::vector<double> x_eval(Nx);
for (size_t i = 0; i < Nx; ++i)
x_eval[i] = Parameters::X_DOMAIN_LEFT + i * Parameters::CALC_DX;
return x_eval;
}
inline void reset_x_eval(std::vector<double> &x_vals) {
const size_t Nx = x_vals.size();
for (size_t i = 0; i < Nx; ++i)
x_vals[i] = Parameters::X_DOMAIN_LEFT + i * Parameters::CALC_DX;
};
inline double f0(const double x, const double v, inline double f0(const double x, const double v,
const double eps = Parameters::EPS, const double eps = Parameters::EPS,
@@ -95,11 +107,13 @@ inline double integral_space_vector(const PoissonProblem<1> &poisson,
size_t Nx = Parameters::PLOT_NX) { size_t Nx = Parameters::PLOT_NX) {
double integral = 0.0; double integral = 0.0;
double xmin = Parameters::X_DOMAIN_LEFT; double xmin = Parameters::X_DOMAIN_LEFT;
#pragma omp parallel for reduction(+ : integral) std::vector<double> x_eval(Nx);
for (size_t i = 0; i < Nx; ++i) { for (size_t i = 0; i < Nx; ++i)
double x = xmin + i * dx; x_eval[i] = xmin + i * dx;
integral += eval(x, poisson, solution);
} std::vector<double> tmp = eval(x_eval, poisson, solution);
for (size_t i = 0; i < Nx; ++i)
integral += tmp[i];
return integral * dx; return integral * dx;
}; };
@@ -109,12 +123,13 @@ inline double integral_space_vector_squared(const PoissonProblem<1> &poisson,
size_t Nx = Parameters::PLOT_NX) { size_t Nx = Parameters::PLOT_NX) {
double integral = 0.0; double integral = 0.0;
double xmin = Parameters::X_DOMAIN_LEFT; double xmin = Parameters::X_DOMAIN_LEFT;
#pragma omp parallel for reduction(+ : integral) std::vector<double> x_eval(Nx);
for (size_t i = 0; i < Nx; ++i) { for (size_t i = 0; i < Nx; ++i)
double x = xmin + i * dx; x_eval[i] = xmin + i * dx;
double val = eval(x, poisson, solution);
integral += val * val; std::vector<double> tmp = eval(x_eval, poisson, solution);
} for (size_t i = 0; i < Nx; ++i)
integral += tmp[i] * tmp[i];
return integral * dx; return integral * dx;
}; };
+18 -17
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@@ -134,14 +134,14 @@ NuFISolver::eval_rho(unsigned int n, std::vector<double> &X,
std::vector<double> tmp_int(x_size); std::vector<double> tmp_int(x_size);
for (unsigned int i = 0; i < Nv; ++i) { for (unsigned int i = 0; i < Nv; ++i) {
tmp_int = eval_ftilda(n, X, v_min + i * dv, poisson, tmp_int = eval_ftilda(n, X, v_min + i * dv, poisson, phi_history);
phi_history); // used eval_ftilda once per i
for (size_t ii = 0; ii < x_size; ++ii) for (size_t ii = 0; ii < x_size; ++ii)
integral[ii] += tmp_int[ii]; integral[ii] += tmp_int[ii];
} }
for (size_t i = 0; i < x_size; ++i) for (size_t i = 0; i < x_size; ++i)
integral[i] = 1 - integral[i] * dv; integral[i] = 1 - integral[i] * dv;
reset_x_eval(X);
return integral; return integral;
} }
@@ -155,13 +155,16 @@ void NuFISolver::run() {
reinterpret_cast<double *>(std::aligned_alloc(64, sizeof(double) * Nx)), reinterpret_cast<double *>(std::aligned_alloc(64, sizeof(double) * Nx)),
std::free}; std::free};
if (rho == nullptr)
throw std::bad_alloc{};
std::vector<double> int_E_squared; std::vector<double> int_E_squared;
int_E_squared.reserve(Nt); int_E_squared.reserve(Nt);
std::vector<Vector<double>> phi_history; std::vector<Vector<double>> phi_history;
if (rho == nullptr) size_t CALC_NX = Parameters::CALC_NX;
throw std::bad_alloc{}; std::vector<double> x_eval = make_x_eval(CALC_NX);
double total_time = 0; double total_time = 0;
std::ofstream time_file("results/simulation_time.txt"); std::ofstream time_file("results/simulation_time.txt");
@@ -180,14 +183,12 @@ void NuFISolver::run() {
<< std::endl; << std::endl;
// compute rho // compute rho
std::vector<double> tmp_rho =
eval_rho(it, x_eval, poisson, phi_history, Parameters::NV);
#pragma omp parallel for for (size_t i = 0; i < CALC_NX; ++i) {
for (size_t i = 0; i < Nx; i++) { AssertThrow(std::isfinite(tmp_rho[i]), ExcMessage("NaN detected in rho"));
double x = Parameters::X_DOMAIN_LEFT + i * dx; rho.get()[i] = tmp_rho[i];
double ith_rho = eval_rho(it, x, poisson, phi_history, Parameters::NV);
AssertThrow(std::isfinite(ith_rho), ExcMessage("NaN detected in rho"));
rho.get()[i] = ith_rho;
} }
poisson.set_rhs_function([&rho, x_min, dx, Nx = Nx](const Point<1> &p) { poisson.set_rhs_function([&rho, x_min, dx, Nx = Nx](const Point<1> &p) {
@@ -222,12 +223,12 @@ void NuFISolver::run() {
// save_Efield(it, coeffs.get(), 128, "results/field_" + // save_Efield(it, coeffs.get(), 128, "results/field_" +
// std::to_string(it) + ".dat"); // std::to_string(it) + ".dat");
std::vector<double> E_x(Nx, 0.0); std::vector<double> E_x(CALC_NX);
#pragma omp parallel for std::vector<double> x_eval_Ex = make_x_eval(Parameters::PLOT_NX);
for (size_t ix = 0; ix < Nx; ++ix) { std::vector<double> tmp_Ex = eval(x_eval_Ex, poisson, phi_history[it]);
E_x[ix] = -eval(x_min + ix * dx, poisson, phi_history[it]); reset_x_eval(x_eval_Ex);
} for (size_t i = 0; i < CALC_NX; ++i)
E_x[i] = -tmp_Ex[i];
save_space_vector(E_x, "field", it); save_space_vector(E_x, "field", it);
double int_val = double int_val =
+15 -15
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@@ -4,6 +4,7 @@
#include "nufi/nufi_solver.h" #include "nufi/nufi_solver.h"
#include "nufi/parameters.h" #include "nufi/parameters.h"
#include "nufi/poisson_problem.h" #include "nufi/poisson_problem.h"
#include <cstddef>
#include <fstream> #include <fstream>
#include <stdexcept> #include <stdexcept>
#include <string> #include <string>
@@ -21,22 +22,20 @@ void save_f(const NuFISolver &solver, unsigned int n,
double vmin = Parameters::V_DOMAIN_LEFT; double vmin = Parameters::V_DOMAIN_LEFT;
double vmax = Parameters::V_DOMAIN_RIGHT; double vmax = Parameters::V_DOMAIN_RIGHT;
double dx = (xmax - xmin) / Nx_out;
double dv = (vmax - vmin) / Nv_out; double dv = (vmax - vmin) / Nv_out;
file << Nx_out << " " << Nv_out << "\n"; file << Nx_out << " " << Nv_out << "\n";
file << xmin << " " << xmax << "\n"; file << xmin << " " << xmax << "\n";
file << vmin << " " << vmax << "\n"; file << vmin << " " << vmax << "\n";
for (unsigned int i = 0; i < Nx_out; ++i) { std::vector<double> x_eval = make_x_eval(Nx_out);
double x = xmin + (i + 0.5) * dx; std::vector<double> val(Nx_out);
for (unsigned int j = 0; j < Nv_out; ++j) { for (unsigned int j = 0; j < Nv_out; ++j) {
double v = vmin + (j + 0.5) * dv; double v = vmin + (j + 0.5) * dv;
val = solver.eval_f(n, x_eval, v, poisson, phi_history);
double val = solver.eval_f(n, x, v, poisson, phi_history); for (unsigned int i = 0; i < Nx_out; ++i) {
file << val[i];
file << val;
if (j < Nv_out - 1) if (j < Nv_out - 1)
file << " "; file << " ";
@@ -56,14 +55,14 @@ void save_rho(const NuFISolver &solver, unsigned int n,
double xmin = Parameters::X_DOMAIN_LEFT; double xmin = Parameters::X_DOMAIN_LEFT;
double xmax = Parameters::X_DOMAIN_RIGHT; double xmax = Parameters::X_DOMAIN_RIGHT;
double dx = (xmax - xmin) / Nx_out;
std::vector<double> x_eval = make_x_eval(Nx_out);
file << Nx_out << "\n"; file << Nx_out << "\n";
file << xmin << " " << xmax << "\n"; file << xmin << " " << xmax << "\n";
for (unsigned int i = 0; i < Nx_out; ++i, xmin += dx) { std::vector<double> tmp = solver.eval_rho(n, x_eval, poisson, phi_history);
double val = solver.eval_rho(n, xmin, poisson, phi_history); for (size_t i = 0; i < Nx_out; ++i) {
file << val; file << tmp[i];
file << "\n"; file << "\n";
} }
file.close(); file.close();
@@ -77,16 +76,17 @@ void save_Efield([[maybe_unused]] unsigned int n,
double xmin = Parameters::X_DOMAIN_LEFT; double xmin = Parameters::X_DOMAIN_LEFT;
double xmax = Parameters::X_DOMAIN_RIGHT; double xmax = Parameters::X_DOMAIN_RIGHT;
double dx = (xmax - xmin) / Nx_out;
std::vector<double> x_eval = make_x_eval(Nx_out);
// select from E_coeffs // select from E_coeffs
file << Nx_out << "\n"; file << Nx_out << "\n";
file << xmin << " " << xmax << "\n"; file << xmin << " " << xmax << "\n";
for (unsigned int i = 0; i < Nx_out; ++i, xmin += dx) { std::vector<double> tmp = eval(x_eval, poisson, phi_history[n]);
double val = -eval(xmin, poisson, phi_history[n]); for (size_t i = 0; i < Nx_out; ++i) {
file << val; file << -tmp[i];
file << "\n"; file << "\n";
} }
file.close(); file.close();