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@@ -238,23 +238,15 @@ endif()
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add_library(${PROJECT_NAME} INTERFACE ${MCC_SRC})
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add_library(${PROJECT_NAME} INTERFACE ${MCC_SRC})
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target_compile_features(${PROJECT_NAME} INTERFACE cxx_std_23)
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target_compile_features(${PROJECT_NAME} INTERFACE cxx_std_23)
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target_include_directories(
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${PROJECT_NAME}
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INTERFACE
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$<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR};>
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$<INSTALL_INTERFACE:include/${PROJECT_NAME}>
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)
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if(USE_ERFA)
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if(USE_ERFA)
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target_link_libraries(${PROJECT_NAME} INTERFACE PkgConfig::ERFALIB)
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target_link_libraries(${PROJECT_NAME} INTERFACE PkgConfig::ERFALIB)
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target_include_directories(
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${PROJECT_NAME}
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INTERFACE
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# $<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR};${ERFALIB_INCLUDE_DIRS};${FITPACK_INCLUDE_DIR};>
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$<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR};${ERFALIB_INCLUDE_DIRS};>
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$<INSTALL_INTERFACE:include/${PROJECT_NAME}>
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)
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else()
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target_include_directories(
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${PROJECT_NAME}
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INTERFACE
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$<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR};>
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$<INSTALL_INTERFACE:include/${PROJECT_NAME}>
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)
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endif()
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endif()
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if(USE_BSPLINE_PCM)
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if(USE_BSPLINE_PCM)
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@@ -282,6 +274,9 @@ if(BUILD_TESTS)
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add_executable(mcc_netmsg_test tests/mcc_netmsg_test.cpp)
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add_executable(mcc_netmsg_test tests/mcc_netmsg_test.cpp)
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target_link_libraries(mcc_netmsg_test PRIVATE ${PROJECT_NAME})
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target_link_libraries(mcc_netmsg_test PRIVATE ${PROJECT_NAME})
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add_executable(mcc_fitpack_test tests/mcc_fitpack_test.cpp)
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target_link_libraries(mcc_fitpack_test PRIVATE ${PROJECT_NAME})
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else()
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else()
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# This is just a stub to allow access to the path and library settings for the ${PROJECT_NAME} target during development
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# This is just a stub to allow access to the path and library settings for the ${PROJECT_NAME} target during development
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add_executable(just_stub EXCLUDE_FROM_ALL main.cpp)
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add_executable(just_stub EXCLUDE_FROM_ALL main.cpp)
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127
tests/mcc_fitpack_test.cpp
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127
tests/mcc_fitpack_test.cpp
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@@ -0,0 +1,127 @@
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#include <algorithm>
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#include <functional>
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#include <iostream>
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#include <random>
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#include <ranges>
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#include <mcc_bsplines.h>
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int main()
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{
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size_t nt = 30, np = 60, N = nt * np, i = 1;
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// size_t nt = 10, np = 20, N = nt * np, i = 1;
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double ts = std::numbers::pi / (nt + 1);
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double ps = 2.0 * std::numbers::pi / (np + 1);
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std::vector<double> tetha(N), phi(N), func(N);
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auto gen_func = [](double st, size_t& idx) {
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double v = st * idx;
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++idx;
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return v;
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};
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auto print_func = [](const auto& r, std::string_view name) {
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std::cout << name << ": ";
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for (auto& el : r) {
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std::cout << el << " ";
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}
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std::cout << "\n";
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};
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// std::ranges::generate(tetha, std::bind(gen_func, ts, i));
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// i = 1;
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// std::ranges::generate(phi, std::bind(gen_func, ps, i));
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size_t k = 1;
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i = 0;
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for (size_t j = 0; j < nt; ++j) {
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std::ranges::fill_n(tetha.begin() + i * np, np, ts * (i + 1));
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std::ranges::generate(phi | std::views::drop(i * np) | std::views::take(np), std::bind(gen_func, ps, k));
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++i;
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k = 1;
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}
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// std::uniform_real_distribution<double> distr{-0.1, 0.1};
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std::normal_distribution<double> distr{0.0, 1.0};
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std::random_device device;
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std::mt19937 engine{device()};
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std::ranges::generate(func, [ii = 0, &distr, &engine, &tetha, &phi]() mutable {
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double v = (5.0 + tetha[ii]) * 1.3 + (3.0 + phi[ii]) * 3.1 + distr(engine);
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++ii;
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return v;
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});
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int ntk = 24, npk = 29, nf = (ntk + 4) * (npk + 4);
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// int ntk = 3, npk = 6, nf = (ntk + 4) * (npk + 4);
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std::vector<double> tk(ntk + 8), pk(npk + 8), coeffs(nf);
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ts = std::numbers::pi / (ntk + 1);
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ps = 2.0 * std::numbers::pi / (npk + 1);
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i = 1;
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std::ranges::generate(tk | std::views::drop(4) | std::views::take(ntk), std::bind(gen_func, ts, i));
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i = 1;
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std::ranges::generate(pk | std::views::drop(4) | std::views::take(npk), std::bind(gen_func, ps, i));
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double rs = 0.0;
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int ec = mcc::bsplines::fitpack_sphere_fit(tetha, phi, func, 1.0, tk, pk, coeffs, rs);
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std::cout << "FIT EC = " << ec << "\n";
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std::cout << "FIT RESI = " << rs << "\n";
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ntk += 8;
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npk += 8;
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std::ranges::fill(tk, -1);
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std::ranges::fill(pk, -1);
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ec = mcc::bsplines::fitpack_sphere_smooth(tetha, phi, func, 1.0, 1800.0, ntk, npk, tk, pk, coeffs, rs);
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std::cout << "FIT EC = " << ec << "\n";
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std::cout << "FIT RESI = " << rs << "\n";
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std::cout << "NKNOTS: " << ntk << ", " << npk << "\n";
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print_func(coeffs, "coeffs");
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// print_func(tetha, "tetha");
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// print_func(phi, "phi");
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print_func(tk, "tetha_knots");
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print_func(pk, "phi_knots");
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print_func(func, "func");
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std::cout << "\n\n";
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k = 1;
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ts = std::numbers::pi / (nt + 1);
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std::ranges::generate_n(tetha.begin(), nt, std::bind(gen_func, ts, k));
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std::vector<double> f_func;
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tetha.resize(nt);
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phi.resize(np);
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tk.resize(ntk);
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pk.resize(npk);
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print_func(tetha, "TETHA:");
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print_func(phi, "PHI:");
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ec = mcc::bsplines::fitpack_eval_spl2d(tk, pk, coeffs, tetha, phi, f_func);
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// ec = mcc::bsplines::fitpack_eval_spl2d(pk, tk, coeffs, phi, tetha, f_func);
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std::cout << "EVAL EC = " << ec << "\n";
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print_func(f_func, "func");
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std::cout << "\n\n";
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for (size_t l = 0; l < f_func.size(); ++l) {
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auto r = f_func[l] - func[l];
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std::cout << r << " ";
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}
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std::cout << "\n";
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return 0;
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}
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