• Home
  • Features
  • Pricing
  • Docs
  • Announcements
  • Sign In

openmc-dev / openmc / 22500302709

27 Feb 2026 07:16PM UTC coverage: 81.512% (-0.3%) from 81.826%
22500302709

Pull #3830

github

web-flow
Merge 25fbb4266 into b3788f11e
Pull Request #3830: Parallelize sampling external sources and threadsafe rejection counters

17488 of 25193 branches covered (69.42%)

Branch coverage included in aggregate %.

59 of 66 new or added lines in 6 files covered. (89.39%)

841 existing lines in 44 files now uncovered.

57726 of 67081 relevant lines covered (86.05%)

44920080.48 hits per line

Source File
Press 'n' to go to next uncovered line, 'b' for previous

80.68
/src/tallies/filter.cpp
1
#include "openmc/tallies/filter.h"
2

3
#include <algorithm> // for max
4
#include <cassert>
5
#include <cstring> // for strcpy
6
#include <string>
7

8
#include <fmt/core.h>
9

10
#include "openmc/capi.h"
11
#include "openmc/constants.h" // for MAX_LINE_LEN;
12
#include "openmc/error.h"
13
#include "openmc/tallies/filter_azimuthal.h"
14
#include "openmc/tallies/filter_cell.h"
15
#include "openmc/tallies/filter_cell_instance.h"
16
#include "openmc/tallies/filter_cellborn.h"
17
#include "openmc/tallies/filter_cellfrom.h"
18
#include "openmc/tallies/filter_collision.h"
19
#include "openmc/tallies/filter_delayedgroup.h"
20
#include "openmc/tallies/filter_distribcell.h"
21
#include "openmc/tallies/filter_energy.h"
22
#include "openmc/tallies/filter_energyfunc.h"
23
#include "openmc/tallies/filter_legendre.h"
24
#include "openmc/tallies/filter_material.h"
25
#include "openmc/tallies/filter_materialfrom.h"
26
#include "openmc/tallies/filter_mesh.h"
27
#include "openmc/tallies/filter_meshborn.h"
28
#include "openmc/tallies/filter_meshmaterial.h"
29
#include "openmc/tallies/filter_meshsurface.h"
30
#include "openmc/tallies/filter_mu.h"
31
#include "openmc/tallies/filter_musurface.h"
32
#include "openmc/tallies/filter_parent_nuclide.h"
33
#include "openmc/tallies/filter_particle.h"
34
#include "openmc/tallies/filter_particle_production.h"
35
#include "openmc/tallies/filter_polar.h"
36
#include "openmc/tallies/filter_reaction.h"
37
#include "openmc/tallies/filter_sph_harm.h"
38
#include "openmc/tallies/filter_sptl_legendre.h"
39
#include "openmc/tallies/filter_surface.h"
40
#include "openmc/tallies/filter_time.h"
41
#include "openmc/tallies/filter_universe.h"
42
#include "openmc/tallies/filter_weight.h"
43
#include "openmc/tallies/filter_zernike.h"
44
#include "openmc/xml_interface.h"
45

46
// explicit template instantiation definition
47
template class openmc::vector<openmc::FilterMatch>;
48

49
namespace openmc {
50

51
//==============================================================================
52
// Global variables
53
//==============================================================================
54

55
namespace model {
56
std::unordered_map<int, int> filter_map;
57
vector<unique_ptr<Filter>> tally_filters;
58
} // namespace model
59

60
//==============================================================================
61
// Non-member functions
62
//==============================================================================
63

64
extern "C" size_t tally_filters_size()
1,151✔
65
{
66
  return model::tally_filters.size();
1,151✔
67
}
68

69
//==============================================================================
70
// Filter implementation
71
//==============================================================================
72

73
Filter::Filter()
10,771✔
74
{
75
  index_ = model::tally_filters.size(); // Avoids warning about narrowing
10,771✔
76
}
10,771✔
77

78
Filter::~Filter()
10,771✔
79
{
80
  model::filter_map.erase(id_);
10,771✔
81
}
10,771✔
82

83
Filter* Filter::create(pugi::xml_node node)
9,356✔
84
{
85
  // Copy filter id
86
  if (!check_for_node(node, "id")) {
9,356!
UNCOV
87
    fatal_error("Must specify id for filter in tally XML file.");
×
88
  }
89
  int filter_id = std::stoi(get_node_value(node, "id"));
18,712✔
90

91
  // Convert filter type to lower case
92
  std::string s;
9,356✔
93
  if (check_for_node(node, "type")) {
9,356!
94
    s = get_node_value(node, "type", true);
9,356✔
95
  }
96

97
  // Allocate according to the filter type
98
  auto f = Filter::create(s, filter_id);
9,356✔
99

100
  // Read filter data from XML
101
  f->from_xml(node);
9,356✔
102
  return f;
9,356✔
103
}
9,356✔
104

105
Filter* Filter::create(const std::string& type, int32_t id)
10,756✔
106
{
107
  if (type == "azimuthal") {
10,756✔
108
    return Filter::create<AzimuthalFilter>(id);
30✔
109
  } else if (type == "cell") {
10,726✔
110
    return Filter::create<CellFilter>(id);
752✔
111
  } else if (type == "cellborn") {
9,974✔
112
    return Filter::create<CellBornFilter>(id);
15✔
113
  } else if (type == "cellfrom") {
9,959✔
114
    return Filter::create<CellFromFilter>(id);
90✔
115
  } else if (type == "cellinstance") {
9,869✔
116
    return Filter::create<CellInstanceFilter>(id);
32✔
117
  } else if (type == "distribcell") {
9,837✔
118
    return Filter::create<DistribcellFilter>(id);
179✔
119
  } else if (type == "delayedgroup") {
9,658✔
120
    return Filter::create<DelayedGroupFilter>(id);
127✔
121
  } else if (type == "energyfunction") {
9,531✔
122
    return Filter::create<EnergyFunctionFilter>(id);
197✔
123
  } else if (type == "energy") {
9,334✔
124
    return Filter::create<EnergyFilter>(id);
1,887✔
125
  } else if (type == "collision") {
7,447✔
126
    return Filter::create<CollisionFilter>(id);
15✔
127
  } else if (type == "energyout") {
7,432✔
128
    return Filter::create<EnergyoutFilter>(id);
646✔
129
  } else if (type == "legendre") {
6,786✔
130
    return Filter::create<LegendreFilter>(id);
793✔
131
  } else if (type == "material") {
5,993✔
132
    return Filter::create<MaterialFilter>(id);
2,322✔
133
  } else if (type == "materialfrom") {
3,671✔
134
    return Filter::create<MaterialFromFilter>(id);
15✔
135
  } else if (type == "mesh") {
3,656✔
136
    return Filter::create<MeshFilter>(id);
2,317✔
137
  } else if (type == "meshborn") {
1,339✔
138
    return Filter::create<MeshBornFilter>(id);
26✔
139
  } else if (type == "meshmaterial") {
1,313✔
140
    return Filter::create<MeshMaterialFilter>(id);
22✔
141
  } else if (type == "meshsurface") {
1,291✔
142
    return Filter::create<MeshSurfaceFilter>(id);
370✔
143
  } else if (type == "mu") {
921✔
144
    return Filter::create<MuFilter>(id);
30✔
145
  } else if (type == "musurface") {
891✔
146
    return Filter::create<MuSurfaceFilter>(id);
26✔
147
  } else if (type == "parentnuclide") {
865✔
148
    return Filter::create<ParentNuclideFilter>(id);
11✔
149
  } else if (type == "particle") {
854✔
150
    return Filter::create<ParticleFilter>(id);
397✔
151
  } else if (type == "particleproduction") {
457✔
152
    return Filter::create<ParticleProductionFilter>(id);
30✔
153
  } else if (type == "polar") {
427✔
154
    return Filter::create<PolarFilter>(id);
45✔
155
  } else if (type == "reaction") {
382✔
156
    return Filter::create<ReactionFilter>(id);
15✔
157
  } else if (type == "surface") {
367✔
158
    return Filter::create<SurfaceFilter>(id);
168✔
159
  } else if (type == "spatiallegendre") {
199✔
160
    return Filter::create<SpatialLegendreFilter>(id);
11✔
161
  } else if (type == "sphericalharmonics") {
188✔
162
    return Filter::create<SphericalHarmonicsFilter>(id);
37✔
163
  } else if (type == "time") {
151✔
164
    return Filter::create<TimeFilter>(id);
81✔
165
  } else if (type == "universe") {
70✔
166
    return Filter::create<UniverseFilter>(id);
15✔
167
  } else if (type == "weight") {
55✔
168
    return Filter::create<WeightFilter>(id);
11✔
169
  } else if (type == "zernike") {
44!
170
    return Filter::create<ZernikeFilter>(id);
44✔
171
  } else if (type == "zernikeradial") {
×
UNCOV
172
    return Filter::create<ZernikeRadialFilter>(id);
×
173
  } else {
UNCOV
174
    throw std::runtime_error {fmt::format("Unknown filter type: {}", type)};
×
175
  }
176
  return nullptr;
177
}
178

179
void Filter::set_id(int32_t id)
11,922✔
180
{
181
  assert(id >= 0 || id == C_NONE);
11,922!
182

183
  // Clear entry in filter map if an ID was already assigned before
184
  if (id_ != C_NONE) {
11,922✔
185
    model::filter_map.erase(id_);
1,151✔
186
    id_ = C_NONE;
1,151✔
187
  }
188

189
  // Make sure no other filter has same ID
190
  if (model::filter_map.find(id) != model::filter_map.end()) {
11,922!
UNCOV
191
    throw std::runtime_error {
×
UNCOV
192
      "Two filters have the same ID: " + std::to_string(id)};
×
193
  }
194

195
  // If no ID specified, auto-assign next ID in sequence
196
  if (id == C_NONE) {
11,922✔
197
    id = 0;
1,415✔
198
    for (const auto& f : model::tally_filters) {
7,235✔
199
      id = std::max(id, f->id_);
9,955✔
200
    }
201
    ++id;
1,415✔
202
  }
203

204
  // Update ID and entry in filter map
205
  id_ = id;
11,922✔
206
  model::filter_map[id] = index_;
11,922✔
207
}
11,922✔
208

209
//==============================================================================
210
// C API functions
211
//==============================================================================
212

213
int verify_filter(int32_t index)
20,694✔
214
{
215
  if (index < 0 || index >= model::tally_filters.size()) {
20,694!
UNCOV
216
    set_errmsg("Filter index is out of bounds.");
×
UNCOV
217
    return OPENMC_E_OUT_OF_BOUNDS;
×
218
  }
219
  return 0;
220
}
221

222
extern "C" int openmc_filter_get_id(int32_t index, int32_t* id)
10,644✔
223
{
224
  if (int err = verify_filter(index))
10,644!
225
    return err;
226

227
  *id = model::tally_filters[index]->id();
10,644✔
228
  return 0;
10,644✔
229
}
230

231
extern "C" int openmc_filter_set_id(int32_t index, int32_t id)
1,151✔
232
{
233
  if (int err = verify_filter(index))
1,151!
234
    return err;
235

236
  model::tally_filters[index]->set_id(id);
1,151✔
237
  return 0;
1,151✔
238
}
239

240
extern "C" int openmc_filter_get_type(int32_t index, char* type)
5,830✔
241
{
242
  if (int err = verify_filter(index))
5,830!
243
    return err;
244

245
  std::strcpy(type, model::tally_filters[index]->type_str().c_str());
5,830✔
246
  return 0;
5,830✔
247
}
248

249
extern "C" int openmc_filter_get_num_bins(int32_t index, int* n_bins)
132✔
250
{
251
  if (int err = verify_filter(index))
132!
252
    return err;
253

254
  *n_bins = model::tally_filters[index]->n_bins();
132✔
255
  return 0;
132✔
256
}
257

258
extern "C" int openmc_get_filter_index(int32_t id, int32_t* index)
11✔
259
{
260
  auto it = model::filter_map.find(id);
11!
261
  if (it == model::filter_map.end()) {
11!
UNCOV
262
    set_errmsg("No filter exists with ID=" + std::to_string(id) + ".");
×
UNCOV
263
    return OPENMC_E_INVALID_ID;
×
264
  }
265

266
  *index = it->second;
11✔
267
  return 0;
11✔
268
}
269

270
extern "C" void openmc_get_filter_next_id(int32_t* id)
×
271
{
UNCOV
272
  int32_t largest_filter_id = 0;
×
273
  for (const auto& t : model::tally_filters) {
×
274
    largest_filter_id = std::max(largest_filter_id, t->id());
×
275
  }
UNCOV
276
  *id = largest_filter_id + 1;
×
UNCOV
277
}
×
278

279
extern "C" int openmc_new_filter(const char* type, int32_t* index)
1,151✔
280
{
281
  *index = model::tally_filters.size();
1,151✔
282
  Filter::create(type);
1,151✔
283
  return 0;
1,151✔
284
}
285

286
} // namespace openmc
STATUS · Troubleshooting · Open an Issue · Sales · Support · CAREERS · ENTERPRISE · START FREE · SCHEDULE DEMO
ANNOUNCEMENTS · TWITTER · TOS & SLA · Supported CI Services · What's a CI service? · Automated Testing

© 2026 Coveralls, Inc