3 {
4
6
7 cdf::timer::timer_t timer;
8
9
10 constexpr auto filename = "driftdiffusion.json";
11
12 nlohmann::json j;
13 std::ifstream inbuf (filename);
14 inbuf >> j;
15
18
19 p.build_mass();
20 p.init_particle_mesh();
21
22 std::map<std::string, vector_t<real_t>> vars=
23 j["grid_vars"].get<std::map<std::string, vector_t<real_t>>> ();
24
25 p.memcpy_host_to_device();
26
27 for (const auto & g : vars)
28 p.device_grid_vars[g.first] = g.second;
29
30 inbuf.close ();
31
32
33 p2g_step1 Jdrift_x(p.device_x.cbegin(), p.device_y.cbegin(), thrust::raw_pointer_cast(p.device_grid_M.data()),
34 thrust::raw_pointer_cast(p.device_grid_vars["Jdrift_x"].data()), p.device_ptcl_to_grd.cbegin(), qg.num_rows(), qg.hx(),
35 qg.hy(), p.device_dprops["BETAx"].cbegin(), p.device_dprops["M"].cbegin(), false);
36
37 p2g_step1 Jdrift_y(p.device_x.cbegin(), p.device_y.cbegin(), thrust::raw_pointer_cast(p.device_grid_M.data()),
38 thrust::raw_pointer_cast(p.device_grid_vars["Jdrift_y"].data()), p.device_ptcl_to_grd.cbegin(), qg.num_rows(), qg.hx(),
39 qg.hy(), p.device_dprops["BETAy"].cbegin(), p.device_dprops["M"].cbegin(), false);
40
41 p2gd_step2 Jdiff_x(p.device_x.cbegin(), p.device_y.cbegin(), thrust::raw_pointer_cast(p.device_grid_M.data()),
42 thrust::raw_pointer_cast(p.device_grid_vars["Jdiff_x"].data()), p.device_ptcl_to_grd.cbegin(), qg.num_rows(), qg.hx(),
43 qg.hy(), 1e-6, p.device_dprops["M"].cbegin(), p.device_dprops["zero"].cbegin(), false);
44
45 p2gd_step2 Jdiff_y(p.device_x.cbegin(), p.device_y.cbegin(), thrust::raw_pointer_cast(p.device_grid_M.data()),
46 thrust::raw_pointer_cast(p.device_grid_vars["Jdiff_y"].data()), p.device_ptcl_to_grd.cbegin(), qg.num_rows(), qg.hx(),
47 qg.hy(), 1e-6, p.device_dprops["zero"].cbegin(), p.device_dprops["M"].cbegin(), false);
48
49 g2p_step3 VX(thrust::raw_pointer_cast(p.device_x.data()), thrust::raw_pointer_cast(p.device_y.data()), p.device_grid_M.cbegin(),
50 p.device_grid_vars["Jdrift_x"].cbegin(), p.device_grid_vars["Jdiff_x"].cbegin(), p.device_ptcl_to_grd.cbegin(), qg.num_rows (), qg.hx (), qg.hy (),
51 thrust::raw_pointer_cast(p.device_dprops["VX"].data()), false);
52
53 g2p_step3 VY(thrust::raw_pointer_cast(p.device_x.data()), thrust::raw_pointer_cast(p.device_y.data()), p.device_grid_M.cbegin(),
54 p.device_grid_vars["Jdrift_y"].cbegin(), p.device_grid_vars["Jdiff_y"].cbegin(), p.device_ptcl_to_grd.cbegin(), qg.num_rows (), qg.hx (), qg.hy (),
55 thrust::raw_pointer_cast(p.device_dprops["VY"].data()), false);
56
57
58 stepper step(p.device_x.begin(), p.device_y.begin(), p.device_dprops[
"VX"].begin(), p.device_dprops[
"VY"].begin(), 1.);
59
60 thrust::counting_iterator<idx_t> first_p(0), last_p(p.num_particles);
61
62
63 for(int it=0; it<1000; ++it){
64
65 thrust::fill(p.device_grid_vars["Jdrift_x"].begin(), p.device_grid_vars["Jdrift_x"].end(), 0.0);
66 thrust::fill(p.device_grid_vars["Jdrift_y"].begin(), p.device_grid_vars["Jdrift_y"].end(), 0.0);
67 thrust::fill(p.device_grid_vars["Jdiff_x"].begin(), p.device_grid_vars["Jdiff_x"].end(), 0.0);
68 thrust::fill(p.device_grid_vars["Jdiff_y"].begin(), p.device_grid_vars["Jdiff_y"].end(), 0.0);
69 thrust::fill(p.device_grid_vars["rho"].begin(), p.device_grid_vars["rho"].end(), 0.0);
70 thrust::fill(p.device_dprops["BETAx"].begin(), p.device_dprops["BETAx"].end(), 0.0);
71 thrust::fill(p.device_dprops["BETAy"].begin(), p.device_dprops["BETAy"].end(), 0.0);
72 thrust::fill(p.device_dprops["VX"].begin(), p.device_dprops["VX"].end(), 0.0);
73 thrust::fill(p.device_dprops["VY"].begin(), p.device_dprops["VY"].end(), 0.0);
74
75
76 timer.tic("g2p_1");
77 p.g2p(p.device_grid_vars, {"betax", "betay"}, {"BETAx", "BETAy"}, false);
78 timer.toc("g2p_1");
79
80
81 timer.tic("p2g");
82 p.p2g(p.device_grid_vars, {"M"}, {"rho"}, false);
83 p.p2g(p.device_grid_vars, Jdrift_x);
84 p.p2g(p.device_grid_vars, Jdrift_y);
85
86 thrust::transform(p.device_grid_vars["Jdrift_x"].begin(), p.device_grid_vars["Jdrift_x"].end(),
87 p.device_grid_vars["rho"].begin(), p.device_grid_vars["Jdrift_x"].begin(), thrust::divides<double>());
88
89 thrust::transform(p.device_grid_vars["Jdrift_y"].begin(), p.device_grid_vars["Jdrift_y"].end(),
90 p.device_grid_vars["rho"].begin(), p.device_grid_vars["Jdrift_y"].begin(), thrust::divides<double>());
91 timer.toc("p2g");
92
93
94 timer.tic("p2gd");
95 p.p2gd(p.device_grid_vars, Jdiff_x);
96 p.p2gd(p.device_grid_vars, Jdiff_y);
97
98 thrust::transform(p.device_grid_vars["Jdiff_x"].begin(), p.device_grid_vars["Jdiff_x"].end(),
99 p.device_grid_vars["rho"].begin(), p.device_grid_vars["Jdiff_x"].begin(), thrust::divides<double>());
100
101 thrust::transform(p.device_grid_vars["Jdiff_y"].begin(), p.device_grid_vars["Jdiff_y"].end(),
102 p.device_grid_vars["rho"].begin(), p.device_grid_vars["Jdiff_y"].begin(), thrust::divides<double>());
103 timer.toc("p2gd");
104
105
106 timer.tic("g2p_2");
107 p.g2p(p.device_grid_vars, VX);
108 p.g2p(p.device_grid_vars, VY);
109 timer.toc("g2p_2");
110
111
112 timer.tic("move partcles");
113 thrust::for_each(thrust::device, first_p, last_p, step);
114 p.update_ptcl_to_grd<particles_t::update_ptcl_to_grd_device>();
115 timer.toc("move partcles");
116
117 if (it % 50 == 0) {
118 p.p2g(p.device_grid_vars, {"M"}, {"rho"}, true);
119 p.memcpy_device_to_host();
120
121 thrust::copy (p.device_grid_vars["rho"].cbegin(), p.device_grid_vars["rho"].cend(), vars.at("rho").begin());
122 thrust::copy (p.device_grid_vars["Jdrift_x"].cbegin(), p.device_grid_vars["Jdrift_x"].cend(), vars.at("Jdrift_x").begin());
123 thrust::copy (p.device_grid_vars["Jdrift_y"].cbegin(), p.device_grid_vars["Jdrift_y"].cend(), vars.at("Jdrift_y").begin());
124 thrust::copy (p.device_grid_vars["Jdiff_x"].cbegin(), p.device_grid_vars["Jdiff_x"].cend(), vars.at("Jdiff_x").begin());
125 thrust::copy (p.device_grid_vars["Jdiff_y"].cbegin(), p.device_grid_vars["Jdiff_y"].cend(), vars.at("Jdiff_y").begin());
126
127
128 const std::string ofilename = "particle";
129 const std::string ofileext = ".csv";
130 const std::string numfile = std::string(".") + std::to_string(it);
131
132 std::ofstream outbuf (ofilename + numfile + ofileext);
134
135 outbuf.close ();
136
137
138 const std::string gfilename = std::string("grid.") + std::to_string(it) + std::string(".vts");
139 qg.vtk_export (gfilename.c_str(), vars);
140
141 }
142
143
144 }
145 timer.print_report();
146 return 0;
147}
Functor class for moving particles.
Class to represent particles embedded in a grid.
quadgrid_t< vector_t< real_t > >::idx_t idx_t
datatype for indexing into vectors of properties