0030675: Visualization - remove redundant proxy classes in hierarchy of PrsMgr_Presen...
[occt.git] / src / QABugs / QABugs_19.cxx
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b311480e 1// Created on: 2002-05-21
2// Created by: QA Admin
973c2be1 3// Copyright (c) 2002-2014 OPEN CASCADE SAS
b311480e 4//
973c2be1 5// This file is part of Open CASCADE Technology software library.
b311480e 6//
d5f74e42 7// This library is free software; you can redistribute it and/or modify it under
8// the terms of the GNU Lesser General Public License version 2.1 as published
973c2be1 9// by the Free Software Foundation, with special exception defined in the file
10// OCCT_LGPL_EXCEPTION.txt. Consult the file LICENSE_LGPL_21.txt included in OCCT
11// distribution for complete text of the license and disclaimer of any warranty.
b311480e 12//
973c2be1 13// Alternatively, this file may be used under the terms of Open CASCADE
14// commercial license or contractual agreement.
b311480e 15
1cd84fee 16#include <QABugs.hxx>
7fd59977 17
f376ac72 18#include <AIS_InteractiveContext.hxx>
a6dee93d 19#include <AIS_Shape.hxx>
431d0f18 20#include <BRepAlgoAPI_Cut.hxx>
6d0e6be5 21#include <BRepOffsetAPI_MakePipe.hxx>
c2ae831c 22#include <BRepPrimAPI_MakeBox.hxx>
23#include <BRepPrimAPI_MakeSphere.hxx>
6d0e6be5 24#include <DBRep.hxx>
25#include <Draw_Interpretor.hxx>
26#include <DrawTrSurf.hxx>
27#include <GCE2d_MakeSegment.hxx>
28#include <Geom2d_TrimmedCurve.hxx>
29#include <GeomFill_Trihedron.hxx>
30#include <Graphic3d_ArrayOfTriangles.hxx>
31#include <gp_Ax1.hxx>
32#include <gp_Pnt2d.hxx>
33#include <gp_Quaternion.hxx>
34#include <Image_Color.hxx>
35#include <Image_PixMap.hxx>
dda67c1c 36#include <NCollection_Handle.hxx>
d09dda09 37#include <NCollection_IncAllocator.hxx>
6d0e6be5 38#include <NCollection_Map.hxx>
39#include <OSD_Parallel.hxx>
40#include <OSD_PerfMeter.hxx>
41#include <OSD_Timer.hxx>
6f498847 42#include <OSD_ThreadPool.hxx>
6d0e6be5 43#include <Precision.hxx>
44#include <Prs3d_ShadingAspect.hxx>
45#include <Prs3d_Text.hxx>
badc9305 46#include <SelectMgr_Filter.hxx>
05d7de53 47#include <Standard_Version.hxx>
6d0e6be5 48#include <StdSelect_BRepOwner.hxx>
49#include <TCollection_HAsciiString.hxx>
50#include <TopExp_Explorer.hxx>
51#include <TopoDS_Shape.hxx>
52#include <V3d_View.hxx>
53#include <ViewerTest.hxx>
6fe96f84 54#include <XmlDrivers_DocumentRetrievalDriver.hxx>
55#include <XmlDrivers_DocumentStorageDriver.hxx>
0f3d1d7c 56#include <TDataStd_Real.hxx>
00af0ebb 57#include <Standard_Atomic.hxx>
05d7de53 58
6f498847 59#ifdef HAVE_TBB
60 #include <tbb/parallel_for.h>
61 #include <tbb/parallel_for_each.h>
62 #include <tbb/blocked_range.h>
63#endif
64
6d0e6be5 65#include <cstdio>
66#include <cmath>
67#include <iostream>
6f498847 68#include <random>
6d0e6be5 69
29cb310a 70#define QCOMPARE(val1, val2) \
71 di << "Checking " #val1 " == " #val2 << \
72 ((val1) == (val2) ? ": OK\n" : ": Error\n")
d2786814 73
7fd59977 74static Standard_Integer OCC230 (Draw_Interpretor& di, Standard_Integer argc, const char ** argv)
75{
76 if ( argc != 4) {
586db386 77 di << "ERROR OCC230: Usage : " << argv[0] << " TrimmedCurve Pnt2d Pnt2d\n";
7fd59977 78 return 1;
79 }
80
81 gp_Pnt2d P1, P2;
82 if ( !DrawTrSurf::GetPoint2d(argv[2],P1)) {
586db386 83 di << "ERROR OCC230: " << argv[2] << " is not Pnt2d\n";
7fd59977 84 return 1;
85 }
86 if ( !DrawTrSurf::GetPoint2d(argv[3],P2)) {
586db386 87 di << "ERROR OCC230: " << argv[3] << " is not Pnt2d\n";
7fd59977 88 return 1;
89 }
90
91 GCE2d_MakeSegment MakeSegment(P1,P2);
92 Handle(Geom2d_TrimmedCurve) TrimmedCurve = MakeSegment.Value();
93 DrawTrSurf::Set(argv[1], TrimmedCurve);
94 return 0;
95}
96
f6f03db9 97static Standard_Integer OCC23361 (Draw_Interpretor& di, Standard_Integer /*argc*/, const char ** /*argv*/)
98{
99 gp_Pnt p(0, 0, 2);
100
101 gp_Trsf t1, t2;
102 t1.SetRotation(gp_Ax1(p, gp_Dir(0, 1, 0)), -0.49328285294022267);
103 t2.SetRotation(gp_Ax1(p, gp_Dir(0, 0, 1)), 0.87538474718473880);
104
105 gp_Trsf tComp = t2 * t1;
106
107 gp_Pnt p1(10, 3, 4);
108 gp_Pnt p2 = p1.Transformed(tComp);
109 gp_Pnt p3 = p1.Transformed(t1);
110 p3.Transform(t2);
111
112 // points must be equal
113 if ( ! p2.IsEqual(p3, Precision::Confusion()) )
586db386 114 di << "ERROR OCC23361: equivalent transformations does not produce equal points\n";
f6f03db9 115 else
586db386 116 di << "OCC23361: OK\n";
f6f03db9 117
118 return 0;
119}
120
c2ae831c 121static Standard_Integer OCC23237 (Draw_Interpretor& di, Standard_Integer /*argc*/, const char** /*argv*/)
122{
123 OSD_PerfMeter aPM("TestMeter",0);
124 OSD_Timer aTM;
125
126 // run some operation in cycle for about 2 seconds to have good values of times to compare
127 int count = 0;
128 printf("OSD_PerfMeter test.\nRunning Boolean operation on solids in loop.\n");
129 for (; aTM.ElapsedTime() < 2.; count++)
130 {
131 aPM.Start();
132 aTM.Start();
133
b3a7aa39 134 // do some operation that will take considerable time compared with time of starting / stopping timers
c2ae831c 135 BRepPrimAPI_MakeBox aBox (10., 10., 10.);
136 BRepPrimAPI_MakeSphere aSphere (10.);
431d0f18 137 BRepAlgoAPI_Cut aCutter (aBox.Shape(), aSphere.Shape());
c2ae831c 138
139 aTM.Stop();
140 aPM.Stop();
141 }
142
143 int aNbEnters = 0;
3510db62 144 Standard_Real aPerfMeter_CPUtime = 0., aTimer_CPUTime = 0., aS;
145 Standard_Integer aM, aH;
146 aTM.Show(aS, aM, aH, aTimer_CPUTime);
c2ae831c 147
148 perf_get_meter("TestMeter", &aNbEnters, &aPerfMeter_CPUtime);
3510db62 149 perf_init_meter("TestMeter");
c2ae831c 150
3510db62 151 Standard_Real aTimeDiff = (fabs(aTimer_CPUTime - aPerfMeter_CPUtime) / aTimer_CPUTime);
c2ae831c 152
153 printf("\nMeasurement results (%d cycles):\n", count);
3510db62 154 printf("\nOSD_PerfMeter CPU time: %lf\nOSD_Timer CPU time: %lf\n",
155 aPerfMeter_CPUtime, aTimer_CPUTime);
c2ae831c 156 printf("Time delta is: %.3lf %%\n", aTimeDiff * 100);
157
158 if (aTimeDiff > 0.2)
159 di << "OCC23237: Error: too much difference between CPU and elapsed times";
160 else if (aNbEnters != count)
161 di << "OCC23237: Error: counter reported by PerfMeter (" << aNbEnters << ") does not correspond to actual number of cycles";
162 else
163 di << "OCC23237: OK";
164
165 return 0;
166}
167
1365140b
RL
168class IncrementerDecrementer
169{
170public:
171 IncrementerDecrementer (Standard_Integer* theVal, Standard_Boolean thePositive) : myVal (theVal), myPositive (thePositive)
172 {}
c7b59798 173 void operator() (const size_t) const
1365140b 174 {
c7b59798 175 if ( myPositive )
176 Standard_Atomic_Increment(myVal);
177 else
178 Standard_Atomic_Decrement(myVal);
1365140b
RL
179 }
180private:
181 Standard_Integer* myVal;
c7b59798 182 Standard_Boolean myPositive;
1365140b 183};
1365140b 184
1365140b
RL
185static Standard_Integer OCC22980 (Draw_Interpretor& di, Standard_Integer /*argc*/, const char ** /*argv*/)
186{
187 int aSum = 0;
188
189 //check returned value
190 QCOMPARE (Standard_Atomic_Decrement (&aSum), -1);
191 QCOMPARE (Standard_Atomic_Increment (&aSum), 0);
192 QCOMPARE (Standard_Atomic_Increment (&aSum), 1);
193 QCOMPARE (Standard_Atomic_Increment (&aSum), 2);
194// QCOMPARE (Standard_Atomic_DecrementTest (&aSum), 0);
195// QCOMPARE (Standard_Atomic_DecrementTest (&aSum), 1);
196
197 //check atomicity
198 aSum = 0;
199 const int N = 1 << 24; //big enough to ensure concurrency
200
201 //increment
c7b59798 202 OSD_Parallel::For(0, N, IncrementerDecrementer (&aSum, true));
1365140b
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203 QCOMPARE (aSum, N);
204
205 //decrement
c7b59798 206 OSD_Parallel::For(0, N, IncrementerDecrementer (&aSum, false));
1365140b
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207 QCOMPARE (aSum, 0);
208
209 return 0;
210}
211
e6aad0ee 212#include <TDocStd_Application.hxx>
e6aad0ee
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213#include <TDocStd_Document.hxx>
214#include <XCAFDoc_ShapeTool.hxx>
215#include <XCAFDoc_DocumentTool.hxx>
216#include <TDF_Label.hxx>
217#include <TDataStd_Name.hxx>
6fe96f84 218#include <DDocStd.hxx>
e6aad0ee 219
773f53f1 220static Standard_Integer OCC23595 (Draw_Interpretor& di, Standard_Integer /*argc*/, const char** /*argv*/)
e6aad0ee 221{
6fe96f84 222 Handle(TDocStd_Application) anApp = DDocStd::GetApplication();
e6aad0ee
RL
223 Handle(TDocStd_Document) aDoc;
224 anApp->NewDocument ("XmlXCAF", aDoc);
225 QCOMPARE (!aDoc.IsNull(), Standard_True);
226
227 Handle(XCAFDoc_ShapeTool) aShTool = XCAFDoc_DocumentTool::ShapeTool (aDoc->Main());
228
229 //check default value
230 Standard_Boolean aValue = XCAFDoc_ShapeTool::AutoNaming();
231 QCOMPARE (aValue, Standard_True);
232
233 //true
234 XCAFDoc_ShapeTool::SetAutoNaming (Standard_True);
235 TopoDS_Shape aShape = BRepPrimAPI_MakeBox (100., 200., 300.).Shape();
236 TDF_Label aLabel = aShTool->AddShape (aShape);
237 Handle(TDataStd_Name) anAttr;
238 QCOMPARE (aLabel.FindAttribute (TDataStd_Name::GetID(), anAttr), Standard_True);
239
240 //false
241 XCAFDoc_ShapeTool::SetAutoNaming (Standard_False);
242 aShape = BRepPrimAPI_MakeBox (300., 200., 100.).Shape();
243 aLabel = aShTool->AddShape (aShape);
244 QCOMPARE (!aLabel.FindAttribute (TDataStd_Name::GetID(), anAttr), Standard_True);
245
246 //restore
247 XCAFDoc_ShapeTool::SetAutoNaming (aValue);
248
249 return 0;
250}
251
5d1833ef 252#include <ExprIntrp_GenExp.hxx>
253Standard_Integer OCC22611 (Draw_Interpretor& di, Standard_Integer argc, const char ** argv)
254{
255
256 if (argc != 3) {
257 di << "Usage : " << argv[0] << " string nb\n";
258 return 1;
259 }
260
261 TCollection_AsciiString aToken = argv[1];
262 Standard_Integer aNb = atoi(argv[2]);
263
264 Handle(ExprIntrp_GenExp) aGen = ExprIntrp_GenExp::Create();
265 for (Standard_Integer i=0; i < aNb; i++)
266 {
267 aGen->Process(aToken);
268 Handle(Expr_GeneralExpression) aExpr = aGen->Expression();
269 }
270
271 return 0;
272}
273
35e08fe8 274Standard_Integer OCC22595 (Draw_Interpretor& di, Standard_Integer /*argc*/, const char ** /*argv*/)
e187cc0a 275{
276 gp_Mat M0;
277 di << "M0 = "
278 << " {" << M0(1,1) << "} {" << M0(1,2) << "} {" << M0(1,3) <<"}"
279 << " {" << M0(2,1) << "} {" << M0(2,2) << "} {" << M0(2,3) <<"}"
280 << " {" << M0(1,1) << "} {" << M0(1,2) << "} {" << M0(1,3) <<"}";
281 return 0;
282}
283
bead40f2 284#include <TopoDS_Face.hxx>
285#include <TopoDS_Face.hxx>
286#include <TopoDS.hxx>
287#include <BRepBuilderAPI_Transform.hxx>
288#include <BRepExtrema_DistShapeShape.hxx>
289#include <BRepTools.hxx>
290
f24125b9 291static Standard_Boolean OCC23774Test(const TopoDS_Face& grossPlateFace, const TopoDS_Shape& originalWire, Draw_Interpretor& di)
bead40f2 292{
293 BRepExtrema_DistShapeShape distShapeShape(grossPlateFace,originalWire,Extrema_ExtFlag_MIN);
294 if(!distShapeShape.IsDone()) {
295 di <<"Distance ShapeShape is Not Done\n";
296 return Standard_False;
297 }
298
299 if(distShapeShape.Value() > 0.01) {
300 di << "Wrong Dist = " <<distShapeShape.Value() << "\n";
301 return Standard_False;
302 } else
303 di << "Dist0 = " <<distShapeShape.Value() <<"\n";
304
305 //////////////////////////////////////////////////////////////////////////
306 /// First Flip Y
307 const gp_Pnt2d axis1P1(1474.8199035519228,1249.9995745636970);
308 const gp_Pnt2d axis1P2(1474.8199035519228,1250.9995745636970);
309
310 gp_Vec2d mirrorVector1(axis1P1,axis1P2);
311
312 gp_Trsf2d mirror1;
313 mirror1.SetMirror(gp_Ax2d(axis1P1,mirrorVector1));
314
315 BRepBuilderAPI_Transform transformer1(mirror1);
316 transformer1.Perform(originalWire);
317 if(!transformer1.IsDone()) {
586db386 318 di << "Not Done1 \n";
bead40f2 319 return Standard_False;
320 }
346cf025 321 TopoDS_Shape step1ModifiedShape = transformer1.ModifiedShape(originalWire);
bead40f2 322
323 BRepExtrema_DistShapeShape distShapeShape1(grossPlateFace,step1ModifiedShape,Extrema_ExtFlag_MIN);
324 if(!distShapeShape1.IsDone())
325 return Standard_False;
326 if(distShapeShape1.Value() > 0.01) {
327 di << "Dist = " <<distShapeShape1.Value() <<"\n";
328 return Standard_False;
329 } else
330 di << "Dist1 = " <<distShapeShape1.Value() <<"\n";
331
332 //////////////////////////////////////////////////////////////////////////
333 /// Second flip Y
334 transformer1.Perform(step1ModifiedShape);
335 if(!transformer1.IsDone()) {
336 di << "Not Done1 \n";
337 return Standard_False;
338 }
346cf025 339 TopoDS_Shape step2ModifiedShape = transformer1.ModifiedShape(step1ModifiedShape);
bead40f2 340
341 //This is identity matrix for values but for type is gp_Rotation ?!
342 gp_Trsf2d mirror11 = mirror1;
343 mirror11.PreMultiply(mirror1);
344
345 BRepExtrema_DistShapeShape distShapeShape2(grossPlateFace,step2ModifiedShape);//,Extrema_ExtFlag_MIN);
346 if(!distShapeShape2.IsDone())
347 return Standard_False;
348
349 //This last test case give error (the value is 1008.8822038689706)
350 if(distShapeShape2.Value() > 0.01) {
351 di << "Wrong Dist2 = " <<distShapeShape2.Value() <<"\n";
352 Standard_Integer N = distShapeShape2.NbSolution();
353 di << "Nb = " <<N <<"\n";
354 for (Standard_Integer i=1;i <= N;i++)
355 di <<"Sol(" <<i<<") = " <<distShapeShape2.PointOnShape1(i).Distance(distShapeShape2.PointOnShape2(i)) <<"\n";
356 return Standard_False;
357 }
358 di << "Distance2 = " <<distShapeShape2.Value() <<"\n";
359
360 return Standard_True;
361}
362static Standard_Integer OCC23774(Draw_Interpretor& di, Standard_Integer n, const char** a)
363{
364
365 if (n != 3) {
366 di <<"OCC23774: invalid number of input parameters\n";
367 return 1;
368 }
369
370 const char *ns1 = (a[1]), *ns2 = (a[2]);
371 TopoDS_Shape S1(DBRep::Get(ns1)), S2(DBRep::Get(ns2));
372 if (S1.IsNull() || S2.IsNull()) {
373 di <<"OCC23774: Null input shapes\n";
374 return 1;
375 }
376 const TopoDS_Face& aFace = TopoDS::Face(S1);
377 if(!OCC23774Test(aFace, S2, di))
378 di << "Something is wrong\n";
379
380 return 0;
381}
382
1ef32e96
RL
383#include <GeomConvert_ApproxSurface.hxx>
384#include <Geom_BSplineSurface.hxx>
385#include <Draw.hxx>
386#include <OSD_Thread.hxx>
1ef32e96 387
7a5f1202 388struct GeomConvertTest_Data
389{
390 Standard_Integer nbupoles;
391 Handle(Geom_Surface) surf;
1ef32e96
RL
392};
393
7a5f1202 394static Standard_Address GeomConvertTest (Standard_Address data)
1ef32e96 395{
7a5f1202 396 GeomConvertTest_Data* info = (GeomConvertTest_Data*)data;
397
398 GeomConvert_ApproxSurface aGAS (info->surf, 1e-4, GeomAbs_C1, GeomAbs_C1, 9, 9, 100, 1);
399 if (!aGAS.IsDone()) {
400 cout << "Error: ApproxSurface is not done!" << endl;
caaeed1b 401 return 0;
7a5f1202 402 }
403 const Handle(Geom_BSplineSurface)& aBSurf = aGAS.Surface();
404 if (aBSurf.IsNull()) {
405 cout << "Error: BSplineSurface is not created!" << endl;
caaeed1b 406 return 0;
7a5f1202 407 }
408 cout << "Number of UPoles:" << aBSurf->NbUPoles();
409 if (aBSurf->NbUPoles() == info->nbupoles)
410 {
411 cout << ": OK" << endl;
412 return data; // any non-null pointer
413 }
414 else
415 {
416 cout << ": Error, must be " << info->nbupoles << endl;
417 return 0;
418 }
1ef32e96
RL
419}
420
421static Standard_Integer OCC23952sweep (Draw_Interpretor& di, Standard_Integer argc, const char ** argv)
422{
7a5f1202 423 if (argc != 3) {
424 cout << "Error: invalid number of arguments" << endl;
425 return 1;
426 }
427
428 struct GeomConvertTest_Data aStorage;
429 aStorage.nbupoles = Draw::Atoi(argv[1]);
430 aStorage.surf = DrawTrSurf::GetSurface(argv[2]);
431 if (aStorage.surf.IsNull())
432 {
433 cout << "Error: " << argv[2] << " is not a DRAW surface!" << endl;
434 return 0;
435 }
436
437 // start conversion in several threads
438 const int NBTHREADS = 100;
439 OSD_Thread aThread[NBTHREADS];
440 for (int i=0; i < NBTHREADS; i++)
441 {
442 aThread[i].SetFunction (GeomConvertTest);
443 if (!aThread[i].Run(&aStorage))
444 di << "Error: Cannot start thread << " << i << "\n";
445 }
446
447 // check results
448 for (int i=0; i < NBTHREADS; i++)
449 {
450 Standard_Address aResult = 0;
451 if (!aThread[i].Wait(aResult))
452 di << "Error: Failed waiting for thread << " << i << "\n";
453 if (!aResult)
454 di << "Error: wrong number of poles in thread " << i << "!\n";
455 }
456
457 return 0;
1ef32e96 458}
d2786814 459
1ef32e96 460#include <GeomInt_IntSS.hxx>
1ef32e96 461
7a5f1202 462struct GeomIntSSTest_Data
463{
464 Standard_Integer nbsol;
465 Handle(Geom_Surface) surf1, surf2;
1ef32e96 466};
7a5f1202 467
468static Standard_Address GeomIntSSTest (Standard_Address data)
1ef32e96 469{
7a5f1202 470 GeomIntSSTest_Data* info = (GeomIntSSTest_Data*)data;
471 GeomInt_IntSS anInter;
472 anInter.Perform (info->surf1, info->surf2, Precision::Confusion(), Standard_True);
473 if (!anInter.IsDone()) {
474 cout << "An intersection is not done!" << endl;
475 return 0;
476 }
477
478 cout << "Number of Lines:" << anInter.NbLines();
479 if (anInter.NbLines() == info->nbsol)
480 {
481 cout << ": OK" << endl;
482 return data; // any non-null pointer
483 }
484 else
485 {
486 cout << ": Error, must be " << info->nbsol << endl;
487 return 0;
488 }
1ef32e96
RL
489}
490
491static Standard_Integer OCC23952intersect (Draw_Interpretor& di, Standard_Integer argc, const char ** argv)
492{
7a5f1202 493 if (argc != 4) {
494 cout << "Error: invalid number of arguments" << endl;
495 return 1;
496 }
497
498 struct GeomIntSSTest_Data aStorage;
499 aStorage.nbsol = Draw::Atoi(argv[1]);
500 aStorage.surf1 = DrawTrSurf::GetSurface(argv[2]);
501 aStorage.surf2 = DrawTrSurf::GetSurface(argv[3]);
502 if (aStorage.surf1.IsNull() || aStorage.surf2.IsNull())
503 {
504 cout << "Error: Either " << argv[2] << " or " << argv[3] << " is not a DRAW surface!" << endl;
505 return 0;
506 }
507
508 // start conversion in several threads
509 const int NBTHREADS = 100;
510 OSD_Thread aThread[NBTHREADS];
511 for (int i=0; i < NBTHREADS; i++)
512 {
513 aThread[i].SetFunction (GeomIntSSTest);
514 if (!aThread[i].Run(&aStorage))
515 di << "Error: Cannot start thread << " << i << "\n";
516 }
517
518 // check results
519 for (int i=0; i < NBTHREADS; i++)
520 {
521 Standard_Address aResult = 0;
522 if (!aThread[i].Wait(aResult))
523 di << "Error: Failed waiting for thread << " << i << "\n";
524 if (!aResult)
525 di << "Error: wrong number of intersections in thread " << i << "!\n";
526 }
527
528 return 0;
1ef32e96
RL
529}
530
531#include <Geom_SurfaceOfRevolution.hxx>
06be28a4
RL
532static Standard_Integer OCC23683 (Draw_Interpretor& di, Standard_Integer argc,const char ** argv)
533{
534 if (argc < 2) {
586db386 535 di<<"Usage: " << argv[0] << " invalid number of arguments\n";
06be28a4
RL
536 return 1;
537 }
538
539 Standard_Integer ucontinuity = 1;
540 Standard_Integer vcontinuity = 1;
541 Standard_Boolean iscnu = false;
542 Standard_Boolean iscnv = false;
543
544 Handle(Geom_Surface) aSurf = DrawTrSurf::GetSurface(argv[1]);
545
546 QCOMPARE (aSurf->IsCNu (ucontinuity), iscnu);
547 QCOMPARE (aSurf->IsCNv (vcontinuity), iscnv);
548
549 return 0;
550}
551
1939140c 552#include <gp_Ax1.hxx>
553#include <gp_Ax22d.hxx>
554#include <Geom_Plane.hxx>
555#include <Geom2d_Circle.hxx>
556#include <Geom2d_TrimmedCurve.hxx>
557#include <BRepBuilderAPI_MakeEdge.hxx>
558#include <BRepPrimAPI_MakeRevol.hxx>
559#include <Geom2d_OffsetCurve.hxx>
560
561static int test_offset(Draw_Interpretor& di, Standard_Integer argc, const char** argv)
562{
563 // Check the command arguments
564 if ( argc != 1 )
565 {
586db386 566 di << "Error: " << argv[0] << " - invalid number of arguments\n";
1939140c 567 di << "Usage: type help " << argv[0] << "\n";
568 return 1; // TCL_ERROR
569 }
570
571 gp_Ax1 RotoAx( gp::Origin(), gp::DZ() );
572 gp_Ax22d Ax2( gp::Origin2d(), gp::DY2d(), gp::DX2d() );
573 Handle(Geom_Surface) Plane = new Geom_Plane( gp::YOZ() );
574
586db386 575 di << "<<<< Preparing sample surface of revolution based on trimmed curve >>>>\n";
576 di << "-----------------------------------------------------------------------\n";
1939140c 577
578 Handle(Geom2d_Circle) C2d1 = new Geom2d_Circle(Ax2, 1.0);
579 Handle(Geom2d_TrimmedCurve) C2d1Trimmed = new Geom2d_TrimmedCurve(C2d1, 0.0, M_PI/2.0);
580 TopoDS_Edge E1 = BRepBuilderAPI_MakeEdge(C2d1Trimmed, Plane);
581
582 DBRep::Set("e1", E1);
583
584 BRepPrimAPI_MakeRevol aRevolBuilder1(E1, RotoAx);
585 TopoDS_Face F1 = TopoDS::Face( aRevolBuilder1.Shape() );
586
587 DBRep::Set("f1", F1);
588
586db386 589 di << "Result: f1\n";
1939140c 590
586db386 591 di << "<<<< Preparing sample surface of revolution based on offset curve >>>>\n";
592 di << "-----------------------------------------------------------------------\n";
1939140c 593
594 Handle(Geom2d_OffsetCurve) C2d2Offset = new Geom2d_OffsetCurve(C2d1Trimmed, -0.5);
595 TopoDS_Edge E2 = BRepBuilderAPI_MakeEdge(C2d2Offset, Plane);
596
597 DBRep::Set("e2", E2);
598
599 BRepPrimAPI_MakeRevol aRevolBuilder2(E2, RotoAx);
600 TopoDS_Face F2 = TopoDS::Face( aRevolBuilder2.Shape() );
601
602 DBRep::Set("f2", F2);
603
586db386 604 di << "Result: f2\n";
1939140c 605
606 return 0;
607}
608
2e9fd4bc 609#include <Geom_Curve.hxx>
610#include <Geom_Surface.hxx>
611#include <Precision.hxx>
612#include <ShapeConstruct_ProjectCurveOnSurface.hxx>
613//=======================================================================
614//function : OCC24008
615//purpose :
616//=======================================================================
617static Standard_Integer OCC24008 (Draw_Interpretor& di, Standard_Integer argc, const char ** argv)
618{
619 if (argc != 3) {
586db386 620 di << "Usage: " << argv[0] << " invalid number of arguments\n";
2e9fd4bc 621 return 1;
622 }
623 Handle(Geom_Curve) aCurve = DrawTrSurf::GetCurve(argv[1]);
624 Handle(Geom_Surface) aSurf = DrawTrSurf::GetSurface(argv[2]);
625 if (aCurve.IsNull()) {
586db386 626 di << "Curve was not read\n";
2e9fd4bc 627 return 1;
628 }
629 if (aSurf.IsNull()) {
586db386 630 di << "Surface was not read\n";
2e9fd4bc 631 return 1;
632 }
633 ShapeConstruct_ProjectCurveOnSurface aProj;
634 aProj.Init (aSurf, Precision::Confusion());
635 try {
636 Handle(Geom2d_Curve) aPCurve;
637 aProj.Perform (aCurve, aCurve->FirstParameter(), aCurve->LastParameter(), aPCurve);
638 if (aPCurve.IsNull()) {
586db386 639 di << "PCurve was not created\n";
2e9fd4bc 640 return 1;
641 }
642 } catch (...) {
586db386 643 di << "Exception was caught\n";
2e9fd4bc 644 }
645 return 0;
646}
647
470ebb43 648#include <GeomAdaptor_Surface.hxx>
649#include <Draw.hxx>
650//=======================================================================
651//function : OCC23945
652//purpose :
653//=======================================================================
654
35e08fe8 655static Standard_Integer OCC23945 (Draw_Interpretor& /*di*/,Standard_Integer n, const char** a)
470ebb43 656{
657 if (n < 5) return 1;
658
659 Handle(Geom_Surface) aS = DrawTrSurf::GetSurface(a[1]);
660 if (aS.IsNull()) return 1;
661
662 GeomAdaptor_Surface GS(aS);
663
664 Standard_Real U = Draw::Atof(a[2]);
665 Standard_Real V = Draw::Atof(a[3]);
666
667 Standard_Boolean DrawPoint = ( n%3 == 2);
668 if ( DrawPoint) n--;
669
670 gp_Pnt P;
671 if (n >= 13) {
672 gp_Vec DU,DV;
673 if (n >= 22) {
674 gp_Vec D2U,D2V,D2UV;
675 GS.D2(U,V,P,DU,DV,D2U,D2V,D2UV);
676 Draw::Set(a[13],D2U.X());
677 Draw::Set(a[14],D2U.Y());
678 Draw::Set(a[15],D2U.Z());
679 Draw::Set(a[16],D2V.X());
680 Draw::Set(a[17],D2V.Y());
681 Draw::Set(a[18],D2V.Z());
682 Draw::Set(a[19],D2UV.X());
683 Draw::Set(a[20],D2UV.Y());
684 Draw::Set(a[21],D2UV.Z());
685 }
686 else
687 GS.D1(U,V,P,DU,DV);
688
689 Draw::Set(a[7],DU.X());
690 Draw::Set(a[8],DU.Y());
691 Draw::Set(a[9],DU.Z());
692 Draw::Set(a[10],DV.X());
693 Draw::Set(a[11],DV.Y());
694 Draw::Set(a[12],DV.Z());
695 }
696 else
697 GS.D0(U,V,P);
698
699 if ( n > 6) {
700 Draw::Set(a[4],P.X());
701 Draw::Set(a[5],P.Y());
702 Draw::Set(a[6],P.Z());
703 }
704 if ( DrawPoint) {
705 DrawTrSurf::Set(a[n],P);
706 }
707
708 return 0;
709}
710
29cb310a 711//=======================================================================
712//function : OCC11758
713//purpose :
714//=======================================================================
498ce76b 715static Standard_Integer OCC11758 (Draw_Interpretor& di, Standard_Integer n, const char**)
29cb310a 716{
717 if (n != 1) return 1;
718
719 const char* theStr = "0123456789";
720 Standard_Integer i, j;
721 for ( i = 0; i < 5; ++i ) {
722 // TCollection_AsciiString(const Standard_CString astring)
723 TCollection_AsciiString a(theStr+i);
724 // IsEqual (const Standard_CString other)const
725 //assert( a == theStr+i );
726 QCOMPARE ( a , theStr+i );
727
728 //TCollection_AsciiString(const Standard_CString astring,const Standard_Integer aLen )
729 TCollection_AsciiString b(theStr+i, 3);
730 //assert( b.Length() == 3 );
731 //assert( strncmp( b.ToCString(), theStr+i, 3 ) == 0 );
732 //assert( strlen( b.ToCString() ) == 3 );
733 QCOMPARE ( b.Length() , 3 );
734 QCOMPARE ( strncmp( b.ToCString() , theStr+i, 3 ) , 0 );
735 QCOMPARE ( b.Length() , 3 );
736
737 //TCollection_AsciiString(const Standard_Integer aValue)
738 TCollection_AsciiString c(i);
739 //assert( c.IsIntegerValue() );
740 //assert( c.IntegerValue() == i );
741 QCOMPARE ( c.IsIntegerValue() , Standard_True );
742 QCOMPARE ( c.IntegerValue() , i );
743
744 //TCollection_AsciiString(const Standard_Real aValue)
745 TCollection_AsciiString d( 0.1*i );
746 //assert( d.IsRealValue() );
747 //assert( TCollection_AsciiString(3.3) == "3.3");
748 QCOMPARE ( d.IsRealValue() , Standard_True );
749 QCOMPARE ( TCollection_AsciiString(3.3) , "3.3" );
750
751 //TCollection_AsciiString(const TCollection_AsciiString& astring)
752 TCollection_AsciiString e(d);
753 //assert( e == d );
754 //assert( e.Length() == d.Length() );
755 //assert( strcmp( e.ToCString(), d.ToCString() ) == 0 );
756 QCOMPARE ( e ,d );
757 QCOMPARE ( e.Length() , d.Length() );
758 QCOMPARE ( strcmp( e.ToCString(), d.ToCString() ) , 0 );
759
760 // TCollection_AsciiString(const TCollection_AsciiString& astring ,
761 // const Standard_Character other )
762 TCollection_AsciiString f(e,'\a');
763 //assert( f.Length() == e.Length() + 1 );
764 //assert( strncmp( f.ToCString(), e.ToCString(), e.Length() ) == 0 );
765 //assert( f.Value( f.Length() ) == '\a');
766 QCOMPARE ( f.Length() , e.Length() + 1 );
767 QCOMPARE ( strncmp( f.ToCString(), e.ToCString(), e.Length() ) , 0 );
768 QCOMPARE ( f.Value( f.Length() ) , '\a' );
769
770 // TCollection_AsciiString(const TCollection_AsciiString& astring ,
771 // const Standard_CString other )
772 TCollection_AsciiString g(f, theStr);
773 //assert( g.Length() == f.Length() + strlen( theStr ));
774 //assert( strncmp( g.ToCString(), f.ToCString(), f.Length() ) == 0 );
775 //assert( g.Search( theStr ) == f.Length() + 1 );
776 QCOMPARE ( g.Length() , f.Length() + (Standard_Integer)strlen( theStr ) );
777 QCOMPARE ( strncmp( g.ToCString(), f.ToCString(), f.Length() ) , 0 );
778 QCOMPARE ( g.Search( theStr ) , f.Length() + 1 );
779
780 // TCollection_AsciiString(const TCollection_AsciiString& astring ,
781 // const TCollection_AsciiString& other )
782 TCollection_AsciiString h(d,a);
783 //assert( h.Length() == d.Length() + a.Length() );
784 //assert( strncmp( h.ToCString(), d.ToCString(), d.Length() ) == 0 );
785 //assert( strncmp( h.ToCString() + d.Length(), a.ToCString(), a.Length() ) == 0 );
786 QCOMPARE ( h.Length() , d.Length() + a.Length() );
787 QCOMPARE ( strncmp( h.ToCString(), d.ToCString(), d.Length() ) , 0 );
788 QCOMPARE ( strncmp( h.ToCString() + d.Length(), a.ToCString(), a.Length() ) , 0 );
789
790 // AssignCat(const Standard_CString other)
791 c.AssignCat( a.ToCString() );
792 //assert( c.Length() == 1 + a.Length() );
793 //assert( c.Search( a ) == 2 );
794 QCOMPARE ( c.Length() , 1 + a.Length() );
795 QCOMPARE ( c.Search( a ) , 2 );
796
797 // AssignCat(const TCollection_AsciiString& other)
798 Standard_Integer dl = d.Length();
799 d.AssignCat( a );
800 //assert( d.Length() == dl + a.Length() );
801 //assert( d.Search( a ) == dl + 1 );
802 QCOMPARE ( d.Length() , dl + a.Length() );
803 QCOMPARE ( d.Search( a ) , dl + 1 );
804
805 // Capitalize()
806 TCollection_AsciiString capitalize("aBC");
807 capitalize.Capitalize();
808 //assert( capitalize == "Abc" );
809 QCOMPARE ( capitalize , "Abc" );
810
811 // Copy(const Standard_CString fromwhere)
812 d = theStr+i;
813 //assert( d == theStr+i );
814 QCOMPARE ( d , theStr+i );
815
816 // Copy(const TCollection_AsciiString& fromwhere)
817 d = h;
818 // IsEqual (const TCollection_AsciiString& other)const
819 //assert( d == h );
820 QCOMPARE ( d , h );
821
822 // Insert(const Standard_Integer where, const Standard_CString what)
823 dl = d.Length();
824 d.Insert( 2, theStr );
825 //assert( d.Length() == dl + strlen( theStr ));
826 //assert( strncmp( d.ToCString() + 1, theStr, strlen( theStr )) == 0 );
827 QCOMPARE ( d.Length() , dl + (Standard_Integer)strlen( theStr ) );
828 QCOMPARE ( strncmp( d.ToCString() + 1, theStr, strlen( theStr )) , 0 );
829
830 //Insert(const Standard_Integer where,const Standard_Character what)
831 d = theStr;
832 d.Insert( i+1, 'i' );
833 //assert( d.Length() == strlen( theStr ) + 1 );
834 //assert( d.Value( i+1 ) == 'i');
835 //assert( strcmp( d.ToCString() + i + 1, theStr+i ) == 0 );
836 QCOMPARE ( d.Length() , (Standard_Integer)strlen( theStr ) + 1 );
837 QCOMPARE ( d.Value( i+1 ) , 'i' );
838 QCOMPARE ( strcmp( d.ToCString() + i + 1, theStr+i ) , 0 );
839
840 //Insert(const Standard_Integer where,const TCollection_AsciiString& what)
841 d = theStr;
842 d.Insert( i+1, TCollection_AsciiString( "i" ));
843 //assert( d.Length() == strlen( theStr ) + 1 );
844 //assert( d.Value( i+1 ) == 'i');
845 //assert( strcmp( d.ToCString() + i + 1, theStr+i ) == 0 );
846 QCOMPARE ( d.Length() , (Standard_Integer)strlen( theStr ) + 1 );
847 QCOMPARE ( d.Value( i+1 ) , 'i' );
848 QCOMPARE ( strcmp( d.ToCString() + i + 1, theStr+i ) , 0 );
849
850 // IsDifferent (const Standard_CString other)const
851 //assert( d.IsDifferent( theStr ));
852 //assert( d.IsDifferent( "theStr" ));
853 //assert( d.IsDifferent( "" ));
854 //assert( !d.IsDifferent( d.ToCString() ));
855 QCOMPARE ( d.IsDifferent( theStr ) , Standard_True );
856 QCOMPARE ( d.IsDifferent( "theStr" ) , Standard_True );
857 QCOMPARE ( d.IsDifferent( "" ) , Standard_True );
858 QCOMPARE ( !d.IsDifferent( d.ToCString() ) , Standard_True );
859
860 // IsDifferent (const TCollection_AsciiString& other)const
861 //assert( d.IsDifferent( TCollection_AsciiString() ));
862 //assert( d.IsDifferent( a ));
863 //assert( d.IsDifferent( h ));
864 //assert( !d.IsDifferent( d ));
865 QCOMPARE ( d.IsDifferent( TCollection_AsciiString() ) , Standard_True );
866 QCOMPARE ( d.IsDifferent( a ) , Standard_True );
867 QCOMPARE ( d.IsDifferent( h ) , Standard_True );
868 QCOMPARE ( !d.IsDifferent( d ) , Standard_True );
869
870 // IsLess (const Standard_CString other)const
871 //assert( TCollection_AsciiString ("0"). IsLess("1"));
872 //assert( TCollection_AsciiString ("0"). IsLess("00"));
873 //assert( TCollection_AsciiString (""). IsLess("0"));
874 //assert( !TCollection_AsciiString("1"). IsLess("0"));
875 //assert( !TCollection_AsciiString("00").IsLess("0"));
876 //assert( !TCollection_AsciiString("0"). IsLess(""));
877 //assert( TCollection_AsciiString (theStr+i).IsLess(theStr+i+1));
878 QCOMPARE ( TCollection_AsciiString ("0"). IsLess("1") , Standard_True );
879 QCOMPARE ( TCollection_AsciiString ("0"). IsLess("00") , Standard_True );
880 QCOMPARE ( TCollection_AsciiString (""). IsLess("0") , Standard_True );
881 QCOMPARE ( !TCollection_AsciiString("1"). IsLess("0"), Standard_True );
882 QCOMPARE ( !TCollection_AsciiString("00").IsLess("0") , Standard_True );
883 QCOMPARE ( !TCollection_AsciiString("0"). IsLess("") , Standard_True );
884 QCOMPARE ( TCollection_AsciiString (theStr+i).IsLess(theStr+i+1) , Standard_True );
885
886 // IsLess (const TCollection_AsciiString& other)const
887 //assert( TCollection_AsciiString ("0"). IsLess(TCollection_AsciiString("1" )));
888 //assert( TCollection_AsciiString ("0"). IsLess(TCollection_AsciiString("00")));
889 //assert( TCollection_AsciiString (""). IsLess(TCollection_AsciiString("0" )));
890 //assert( !TCollection_AsciiString("1"). IsLess(TCollection_AsciiString("0" )));
891 //assert( !TCollection_AsciiString("00").IsLess(TCollection_AsciiString("0" )));
892 //assert( !TCollection_AsciiString("0"). IsLess(TCollection_AsciiString("" )));
893 //assert( TCollection_AsciiString (theStr+i).IsLess(TCollection_AsciiString(theStr+i+1)));
894 QCOMPARE ( TCollection_AsciiString ("0"). IsLess(TCollection_AsciiString("1" )) , Standard_True );
895 QCOMPARE ( TCollection_AsciiString ("0"). IsLess(TCollection_AsciiString("00")) , Standard_True );
896 QCOMPARE ( TCollection_AsciiString (""). IsLess(TCollection_AsciiString("0" )) , Standard_True );
897 QCOMPARE ( !TCollection_AsciiString("1"). IsLess(TCollection_AsciiString("0" )) , Standard_True );
898 QCOMPARE ( !TCollection_AsciiString("00").IsLess(TCollection_AsciiString("0" )) , Standard_True );
899 QCOMPARE ( !TCollection_AsciiString("0"). IsLess(TCollection_AsciiString("" )) , Standard_True );
900 QCOMPARE ( TCollection_AsciiString (theStr+i).IsLess(TCollection_AsciiString(theStr+i+1)) , Standard_True );
901
902 // IsGreater (const Standard_CString other)const
903 //assert( !TCollection_AsciiString("0"). IsGreater("1"));
904 //assert( !TCollection_AsciiString("0"). IsGreater("00"));
905 //assert( !TCollection_AsciiString(""). IsGreater("0"));
906 //assert( TCollection_AsciiString ("1"). IsGreater("0"));
907 //assert( TCollection_AsciiString ("00").IsGreater("0"));
908 //assert( TCollection_AsciiString ("0"). IsGreater(""));
909 //assert( TCollection_AsciiString (theStr+i+1).IsGreater(theStr+i));
910 QCOMPARE ( !TCollection_AsciiString("0"). IsGreater("1") , Standard_True );
911 QCOMPARE ( !TCollection_AsciiString("0"). IsGreater("00") , Standard_True );
912 QCOMPARE ( !TCollection_AsciiString(""). IsGreater("0") , Standard_True );
913 QCOMPARE ( TCollection_AsciiString ("1"). IsGreater("0") , Standard_True );
914 QCOMPARE ( TCollection_AsciiString ("00").IsGreater("0") , Standard_True );
915 QCOMPARE ( TCollection_AsciiString ("0"). IsGreater("") , Standard_True );
916 QCOMPARE ( TCollection_AsciiString (theStr+i+1).IsGreater(theStr+i) , Standard_True );
917
918 // IsGreater (const TCollection_AsciiString& other)const
919 //assert( !TCollection_AsciiString("0"). IsGreater(TCollection_AsciiString("1" )));
920 //assert( !TCollection_AsciiString("0"). IsGreater(TCollection_AsciiString("00")));
921 //assert( !TCollection_AsciiString(""). IsGreater(TCollection_AsciiString("0" )));
922 //assert( TCollection_AsciiString ("1"). IsGreater(TCollection_AsciiString("0" )));
923 //assert( TCollection_AsciiString ("00").IsGreater(TCollection_AsciiString("0" )));
924 //assert( TCollection_AsciiString ("0"). IsGreater(TCollection_AsciiString("" )));
925 //assert( TCollection_AsciiString (theStr+i+1).IsGreater(TCollection_AsciiString(theStr+i)));
926 QCOMPARE ( !TCollection_AsciiString("0"). IsGreater(TCollection_AsciiString("1" )) , Standard_True );
927 QCOMPARE ( !TCollection_AsciiString("0"). IsGreater(TCollection_AsciiString("00")) , Standard_True );
928 QCOMPARE ( !TCollection_AsciiString(""). IsGreater(TCollection_AsciiString("0" )) , Standard_True );
929 QCOMPARE ( TCollection_AsciiString ("1"). IsGreater(TCollection_AsciiString("0" )) , Standard_True );
930 QCOMPARE ( TCollection_AsciiString ("00").IsGreater(TCollection_AsciiString("0" )) , Standard_True );
931 QCOMPARE ( TCollection_AsciiString ("0"). IsGreater(TCollection_AsciiString("" )) , Standard_True );
932 QCOMPARE ( TCollection_AsciiString (theStr+i+1).IsGreater(TCollection_AsciiString(theStr+i)) , Standard_True );
933
934 // void Read(Standard_IStream& astream)
935 std::istringstream is( theStr );
936 e.Read( is );
937 //assert( e == theStr );
938 QCOMPARE ( e , theStr );
939
940 // Standard_Integer SearchFromEnd (const Standard_CString what)const
941 //assert( e.SearchFromEnd( theStr + i ) == i + 1 );
942 QCOMPARE ( e.SearchFromEnd( theStr + i ) , i + 1 );
943
944 // SetValue(const Standard_Integer where, const Standard_CString what)
945 e.SetValue( i+1, "what");
946 //assert( e.Search( "what" ) == i+1 );
947 //assert( e.Length() == strlen( theStr ));
948 QCOMPARE ( e.Search( "what" ) , i+1 );
949 QCOMPARE ( e.Length() , (Standard_Integer)strlen( theStr ) );
950
951 // TCollection_AsciiString Split (const Standard_Integer where)
952 e = theStr;
953 d = e.Split( i+1 );
954 //assert( d.Length() + e.Length() == strlen( theStr ));
955 QCOMPARE ( d.Length() + e.Length() , (Standard_Integer)strlen( theStr ) );
956
957 // TCollection_AsciiString SubString (const Standard_Integer FromIndex,
958 // const Standard_Integer ToIndex) const
959 e = theStr;
960 d = e.SubString( (unsigned int)i+1, (unsigned int)i+3 );
961 //assert( d.Length() == 3 );
962 //assert( d.Value(1) == theStr[ i ]);
963 QCOMPARE ( d.Length() , 3 );
964 QCOMPARE ( d.Value(1) , theStr[ i ] );
965
966 // TCollection_AsciiString Token (const Standard_CString separators,
967 // const Standard_Integer whichone) const
968 e = " ";
969 for ( j = 0; j < i; ++j ) {
970 e += TCollection_AsciiString( theStr[j] ) + " ";
971 //assert( e.Token(" ", j+1 ) == TCollection_AsciiString( theStr+j, 1 ));
972 QCOMPARE ( e.Token(" ", j+1 ) , TCollection_AsciiString( theStr+j, 1 ) );
973 }
974 }
975 for ( i = 0; i < 5; ++i )
976 {
977 // TCollection_ExtendedString (const Standard_CString astring,
978 // const Standard_Boolean isMultiByte)
979 const TCollection_ExtendedString a( theStr+i );
980 //assert( TCollection_AsciiString( a ) == theStr+i );
981 QCOMPARE ( TCollection_AsciiString( a ) , theStr+i );
982
983 //TCollection_ExtendedString (const Standard_ExtString astring)
984 const TCollection_ExtendedString b( a.ToExtString() );
985 //assert( a == b );
986 QCOMPARE ( a , b );
987
988 // TCollection_ExtendedString (const Standard_Integer length,
989 // const Standard_ExtCharacter filler )
990 const TCollection_ExtendedString c( i, 1 );
991 //assert( c.Length() == i );
992 QCOMPARE ( c.Length() , i );
993 if ( c.Length() > 0 ) {
994 //assert( c.Value( i ) == 1 );
995 QCOMPARE ( c.Value( i ) , 1 );
996 }
997
998 // TCollection_ExtendedString (const Standard_Integer aValue)
999 TCollection_ExtendedString d( i );
1000 const TCollection_AsciiString da( d );
1001 //assert( da.IsIntegerValue() );
1002 //assert( da.IntegerValue() == i );
1003 QCOMPARE ( da.IsIntegerValue() , Standard_True );
1004 QCOMPARE ( da.IntegerValue(), i );
1005
1006 // TCollection_ExtendedString (const Standard_Real aValue)
1007 const TCollection_ExtendedString e( 0.1 * i );
1008 const TCollection_AsciiString ea( e );
1009 //assert( ea.IsRealValue() );
1010 //assert( Abs( ea.RealValue() - 0.1 * i ) < 1e-10 );
1011 QCOMPARE ( ea.IsRealValue() , Standard_True );
1012 QCOMPARE ( Abs( ea.RealValue() - 0.1 * i ) < 1e-10 , Standard_True );
1013
1014 // TCollection_ExtendedString (const TCollection_ExtendedString& astring)
1015 const TCollection_ExtendedString f(e);
1016 //assert( f.Length() == e.Length());
1017 //assert( f == e );
1018 QCOMPARE ( f.Length() , e.Length() );
1019 QCOMPARE ( f , e );
1020
1021 // TCollection_ExtendedString (const TCollection_AsciiString& astring)
1022 const TCollection_ExtendedString g( ea );
1023 //assert( g.Length() == ea.Length() );
1024 //assert( TCollection_AsciiString( g ) == ea );
1025 QCOMPARE ( g.Length() , ea.Length() );
1026 QCOMPARE ( TCollection_AsciiString( g ) , ea );
1027
1028 // AssignCat (const TCollection_ExtendedString& other)
1029 const TCollection_ExtendedString sep(",");
1030 d.AssignCat( sep );
1031 d.AssignCat( g );
1032 //assert( d.Length() == 2 + g.Length() );
1033 //assert( d.Token( sep.ToExtString(), 1 ) == TCollection_ExtendedString( i ));
1034 //assert( d.Token( sep.ToExtString(), 2 ) == g );
1035 QCOMPARE ( d.Length() , 2 + g.Length() );
1036 QCOMPARE ( d.Token( sep.ToExtString(), 1 ) , TCollection_ExtendedString( i ) );
1037 QCOMPARE ( d.Token( sep.ToExtString(), 2 ) , g );
1038
1039 // TCollection_ExtendedString Cat (const TCollection_ExtendedString& other) const
1040 const TCollection_ExtendedString cat = a.Cat( sep );
1041 //assert( cat.Length() == a.Length() + sep.Length() );
1042 //assert( cat.Search( a ) == 1 );
1043 //assert( cat.Search( sep ) == a.Length() + 1 );
1044 QCOMPARE ( cat.Length() , a.Length() + sep.Length() );
1045 QCOMPARE ( cat.Search( a ) , 1 );
1046 QCOMPARE ( cat.Search( sep ) , a.Length() + 1 );
1047
1048 // Copy (const TCollection_ExtendedString& fromwhere)
1049 d = cat;
1050 //assert( d.Length() == cat.Length() );
1051 //assert( d == cat );
1052 QCOMPARE ( d.Length() , cat.Length() );
1053 QCOMPARE ( d , cat );
1054
1055 // IsEqual (const Standard_ExtString other) const
1056 //assert( d.IsEqual( d.ToExtString() ));
1057 QCOMPARE ( d.IsEqual( d.ToExtString() ) , Standard_True );
1058
1059 // IsDifferent (const Standard_ExtString other ) const
1060 //assert( d.IsDifferent( a.ToExtString() ));
1061 QCOMPARE ( d.IsDifferent( a.ToExtString() ) , Standard_True );
1062
1063 // IsDifferent (const TCollection_ExtendedString& other) const
1064 //assert( d.IsDifferent( a ));
1065 QCOMPARE ( d.IsDifferent( a ) , Standard_True );
1066
1067 // IsLess (const Standard_ExtString other) const
1068 const TCollection_ExtendedString l0("0"), l1("1"), l00("00"), l, ls(theStr+i), ls1(theStr+i+1);
1069 //assert( l0. IsLess( l1.ToExtString() ));
1070 //assert( l0. IsLess( l00.ToExtString() ));
1071 //assert( l. IsLess( l0.ToExtString() ));
1072 //assert( ! l1. IsLess( l0.ToExtString() ));
1073 //assert( ! l00.IsLess( l0.ToExtString() ));
1074 //assert( ! l0. IsLess( l.ToExtString() ));
1075 //assert( ls.IsLess( ls1.ToExtString() ));
1076 QCOMPARE ( l0. IsLess( l1.ToExtString() ) , Standard_True );
1077 QCOMPARE ( l0. IsLess( l00.ToExtString() ) , Standard_True );
1078 QCOMPARE ( l. IsLess( l0.ToExtString() ) , Standard_True );
1079 QCOMPARE ( ! l1. IsLess( l0.ToExtString() ) , Standard_True );
1080 QCOMPARE ( ! l00.IsLess( l0.ToExtString() ) , Standard_True );
1081 QCOMPARE ( ! l0. IsLess( l.ToExtString() ) , Standard_True );
1082 QCOMPARE ( ls.IsLess( ls1.ToExtString() ) , Standard_True );
1083
1084 // IsLess (const TCollection_ExtendedString& other) const
1085 //assert( l0. IsLess( l1 ));
1086 //assert( l0. IsLess( l00 ));
1087 //assert( l. IsLess( l0 ));
1088 //assert( ! l1. IsLess( l0 ));
1089 //assert( ! l00.IsLess( l0 ));
1090 //assert( ! l0. IsLess( l ));
1091 //assert( ls.IsLess( ls1 ));
1092 QCOMPARE ( l0. IsLess( l1 ) , Standard_True );
1093 QCOMPARE ( l0. IsLess( l00 ) , Standard_True );
1094 QCOMPARE ( l. IsLess( l0 ) , Standard_True );
1095 QCOMPARE ( ! l1. IsLess( l0 ) , Standard_True );
1096 QCOMPARE ( ! l00.IsLess( l0 ) , Standard_True );
1097 QCOMPARE ( ! l0. IsLess( l ) , Standard_True );
1098 QCOMPARE ( ls.IsLess( ls1 ) , Standard_True );
1099
1100 // IsGreater (const Standard_ExtString other) const
1101 //assert( ! l0.IsGreater( l1.ToExtString() ));
1102 //assert( ! l0.IsGreater( l00.ToExtString() ));
1103 //assert( ! l. IsGreater( l0.ToExtString() ));
1104 //assert( l1. IsGreater( l0.ToExtString() ));
1105 //assert( l00.IsGreater( l0.ToExtString() ));
1106 //assert( l0. IsGreater( l.ToExtString() ));
1107 //assert( ls1.IsGreater( ls.ToExtString() ));
1108 QCOMPARE ( ! l0.IsGreater( l1.ToExtString() ) , Standard_True );
1109 QCOMPARE ( ! l0.IsGreater( l00.ToExtString() ) , Standard_True );
1110 QCOMPARE ( ! l. IsGreater( l0.ToExtString() ) , Standard_True );
1111 QCOMPARE ( l1. IsGreater( l0.ToExtString() ) , Standard_True );
1112 QCOMPARE ( l00.IsGreater( l0.ToExtString() ) , Standard_True );
1113 QCOMPARE ( l0. IsGreater( l.ToExtString() ) , Standard_True );
1114 QCOMPARE ( ls1.IsGreater( ls.ToExtString() ) ,Standard_True );
1115
1116 // IsGreater (const TCollection_ExtendedString& other) const
1117 //assert( ! l0.IsGreater( l1));
1118 //assert( ! l0.IsGreater( l00));
1119 //assert( ! l. IsGreater( l0));
1120 //assert( l1. IsGreater( l0));
1121 //assert( l00.IsGreater( l0));
1122 //assert( l0. IsGreater( l));
1123 //assert( ls1.IsGreater( ls));
1124 QCOMPARE ( ! l0.IsGreater( l1) , Standard_True );
1125 QCOMPARE ( ! l0.IsGreater( l00) , Standard_True );
1126 QCOMPARE ( ! l. IsGreater( l0) , Standard_True );
1127 QCOMPARE ( l1. IsGreater( l0) , Standard_True );
1128 QCOMPARE ( l00.IsGreater( l0) , Standard_True );
1129 QCOMPARE ( l0. IsGreater( l) , Standard_True );
1130 QCOMPARE ( ls1.IsGreater( ls) , Standard_True );
1131
1132 // ==========================
1133 //TCollection_HAsciiString::
1134 // ==========================
1135
1136 // IsDifferent(const Handle(TCollection_HAsciiString)& S)
1137 Handle(TCollection_HAsciiString) ha1 = new TCollection_HAsciiString( theStr+i );
1138 Handle(TCollection_HAsciiString) ha2 = new TCollection_HAsciiString( theStr+i+1 );
1139 //assert( ha1->IsDifferent( ha2 ));
1140 //assert( !ha1->IsDifferent( ha1 ));
1141 QCOMPARE ( ha1->IsDifferent( ha2 ) , Standard_True );
1142 QCOMPARE ( !ha1->IsDifferent( ha1 ) , Standard_True );
1143
1144 // IsSameString (const Handle(TCollection_HAsciiString)& S)
1145 //assert( !ha1->IsSameString( ha2 ));
1146 //assert( ha1->IsSameString( ha1 ));
1147 QCOMPARE ( !ha1->IsSameString( ha2 ) , Standard_True );
1148 QCOMPARE ( ha1->IsSameString( ha1 ) , Standard_True );
1149
1150 // IsSameState (const Handle(TCollection_HAsciiString)& other) const
1151 //assert( !ha1->IsSameState( ha2 ));
1152 //assert( ha1->IsSameState( ha1 ));
1153 QCOMPARE ( !ha1->IsSameState( ha2 ) , Standard_True );
1154 QCOMPARE ( ha1->IsSameState( ha1 ) , Standard_True );
1155
1156 // IsSameString (const Handle(TCollection_HAsciiString)& S ,
1157 // const Standard_Boolean CaseSensitive) const
1158 //assert( !ha1->IsSameString( ha2, true ));
1159 //assert( ha1->IsSameString( ha1, true ));
1160 //assert( !ha1->IsSameString( ha2, false ));
1161 //assert( ha1->IsSameString( ha1, false ));
1162 QCOMPARE ( !ha1->IsSameString( ha2, Standard_True ) , Standard_True );
1163 QCOMPARE ( ha1->IsSameString( ha1, Standard_True ) , Standard_True );
1164 QCOMPARE ( !ha1->IsSameString( ha2, Standard_False ) , Standard_True );
1165 QCOMPARE ( ha1->IsSameString( ha1, Standard_False ) , Standard_True );
1166
1167 ha1->SetValue( 1, "AbC0000000");
1168 ha2->SetValue( 1, "aBc0000000");
1169 //assert( !ha1->IsSameString( ha2, true ));
1170 //assert( ha1->IsSameString( ha2, false ));
1171 QCOMPARE ( !ha1->IsSameString( ha2, Standard_True ) , Standard_True );
1172 QCOMPARE ( ha1->IsSameString( ha2, Standard_False ), Standard_True );
1173 }
1174 return 0;
1175}
1176
788cbaf4 1177#include <Geom_CylindricalSurface.hxx>
1178#include <IntTools_FaceFace.hxx>
1179#include <IntTools_Curve.hxx>
1180#include <IntTools_PntOn2Faces.hxx>
1181
1182static Standard_Integer OCC24005 (Draw_Interpretor& theDI, Standard_Integer theNArg, const char** theArgv)
1183{
1184 if(theNArg < 2)
1185 {
1186 theDI << "Wrong a number of arguments!\n";
1187 return 1;
1188 }
1189
857ffd5e 1190 Handle(Geom_Plane) plane(new Geom_Plane(
788cbaf4 1191 gp_Ax3( gp_Pnt(-72.948737453424499, 754.30437716359393, 259.52151854671678),
1192 gp_Dir(6.2471473085930200e-007, -0.99999999999980493, 0.00000000000000000),
1193 gp_Dir(0.99999999999980493, 6.2471473085930200e-007, 0.00000000000000000))));
1194 Handle(Geom_CylindricalSurface) cylinder(
1195 new Geom_CylindricalSurface(
1196 gp_Ax3(gp_Pnt(-6.4812490053250649, 753.39408794522092, 279.16400974257465),
1197 gp_Dir(1.0000000000000000, 0.0, 0.00000000000000000),
1198 gp_Dir(0.0, 1.0000000000000000, 0.00000000000000000)),
1199 19.712534607908712));
1200
1201 DrawTrSurf::Set("pln", plane);
1202 theDI << "pln\n";
1203 DrawTrSurf::Set("cyl", cylinder);
1204 theDI << "cyl\n";
1205
1206 BRep_Builder builder;
1207 TopoDS_Face face1, face2;
1208 builder.MakeFace(face1, plane, Precision::Confusion());
1209 builder.MakeFace(face2, cylinder, Precision::Confusion());
1210 IntTools_FaceFace anInters;
1211 anInters.SetParameters(false, true, true, Precision::Confusion());
1212 anInters.Perform(face1, face2);
1213
1214 if (!anInters.IsDone())
1215 {
586db386 1216 theDI<<"No intersections found!\n";
788cbaf4 1217
1218 return 1;
1219 }
1220
1221 //Handle(Geom_Curve) aResult;
1222 //gp_Pnt aPoint;
1223
1224 const IntTools_SequenceOfCurves& aCvsX=anInters.Lines();
1225 const IntTools_SequenceOfPntOn2Faces& aPntsX=anInters.Points();
1226
1227 char buf[1024];
1228 Standard_Integer aNbCurves, aNbPoints;
1229
1230 aNbCurves=aCvsX.Length();
1231 aNbPoints=aPntsX.Length();
1232
1233 if (aNbCurves >= 2)
1234 {
1235 for (Standard_Integer i=1; i<=aNbCurves; ++i)
1236 {
1237 Sprintf(buf, "%s_%d",theArgv[1],i);
1238 theDI << buf << " ";
1239
1240 const IntTools_Curve& aIC = aCvsX(i);
1241 const Handle(Geom_Curve)& aC3D= aIC.Curve();
1242 DrawTrSurf::Set(buf,aC3D);
1243 }
1244 }
1245 else if (aNbCurves == 1)
1246 {
1247 const IntTools_Curve& aIC = aCvsX(1);
1248 const Handle(Geom_Curve)& aC3D= aIC.Curve();
1249 Sprintf(buf, "%s",theArgv[1]);
1250 theDI << buf << " ";
1251 DrawTrSurf::Set(buf,aC3D);
1252 }
1253
1254 for (Standard_Integer i = 1; i<=aNbPoints; ++i)
1255 {
1256 const IntTools_PntOn2Faces& aPi=aPntsX(i);
1257 const gp_Pnt& aP=aPi.P1().Pnt();
1258
1259 Sprintf(buf,"%s_p_%d",theArgv[1],i);
1260 theDI << buf << " ";
1261 DrawTrSurf::Set(buf, aP);
1262 }
1263
1264 return 0;
1265}
1266
69fd2d1b 1267#include <BRepFeat_SplitShape.hxx>
1268#include <ShapeAnalysis_ShapeContents.hxx>
1269#include <BRepAlgo.hxx>
1270static Standard_Integer OCC24086 (Draw_Interpretor& di, Standard_Integer argc, const char ** argv)
1271{
1272 if (argc != 3) {
1273 di << "Usage : " << argv[0] << " should be 2 arguments (face and wire)";
1274 return 1;
1275 }
1276
1277 Handle(AIS_InteractiveContext) myAISContext = ViewerTest::GetAISContext();
1278 if(myAISContext.IsNull()) {
1279 di << "use 'vinit' command before " << argv[0] << "\n";
1280 return 1;
1281 }
1282
1283 TopoDS_Shape result;
1284 TopoDS_Face face = TopoDS::Face(DBRep::Get(argv[1]));
1285 TopoDS_Wire wire = TopoDS::Wire(DBRep::Get(argv[2]));
1286
1287 BRepFeat_SplitShape asplit(face);
1288 asplit.Add(wire, face);
1289 asplit.Build();
1290 result = asplit.Shape();
1291 ShapeAnalysis_ShapeContents ana;
1292 ana.Perform(result);
1293 ana.NbFaces();
1294
1295 if (!(BRepAlgo::IsValid(result))) {
586db386 1296 di << "Result was checked and it is INVALID\n";
69fd2d1b 1297 } else {
586db386 1298 di << "Result was checked and it is VALID\n";
69fd2d1b 1299 }
1300
1301 Handle(AIS_InteractiveObject) myShape = new AIS_Shape (result);
1302 myAISContext->Display(myShape, Standard_True);
1303
1304 return 0;
1305}
1306
c764e804 1307#include <Geom_Circle.hxx>
1308#include <GeomAdaptor_Curve.hxx>
1309#include <Extrema_ExtPC.hxx>
1310#include <gp_Cylinder.hxx>
1311#include <ElSLib.hxx>
1312static Standard_Integer OCC24945 (Draw_Interpretor& di, Standard_Integer argc, const char ** argv)
1313{
1314 if (argc != 1) {
586db386 1315 di << "Usage: " << argv[0] << " invalid number of arguments\n";
c764e804 1316 return 1;
1317 }
1318
1319 gp_Pnt aP3D( -1725.97, 843.257, -4.22741e-013 );
1320 gp_Ax2 aAxis( gp_Pnt( 0, 843.257, 0 ), gp_Dir( 0, -1, 0 ), gp::DX() );
1321 Handle(Geom_Circle) aCircle = new Geom_Circle( aAxis, 1725.9708621929999 );
1322 GeomAdaptor_Curve aC3D( aCircle );
1323
1324 Extrema_ExtPC aExtPC( aP3D, aC3D );
1325 //Standard_Real aParam = (aExtPC.Point(1)).Parameter();
1326 gp_Pnt aProj = (aExtPC.Point(1)).Value();
1327 di << "Projected point: X = " << aProj.X() << "; Y = " << aProj.Y() << "; Z = " << aProj.Z() << "\n";
1328
1329 // Result of deviation
1330 gp_Ax2 aCylAxis( gp_Pnt( 0, 2103.87, 0 ), -gp::DY(), -gp::DX() );
1331 gp_Cylinder aCylinder( aCylAxis, 1890. );
1332
1333 Standard_Real aU = 0., aV = 0.;
1334 ElSLib::Parameters( aCylinder, aProj, aU, aV );
1335 di << "Parameters on cylinder: U = " << aU << "; V = " << aV << "\n";
1336
1337 return 0;
1338}
1339
e5260e1d 1340#include <Extrema_FuncPSNorm.hxx>
89d8607f 1341#include <math_FunctionSetRoot.hxx>
1342#include <math_Vector.hxx>
1343#include <BRepBuilderAPI_MakeVertex.hxx>
1344static Standard_Integer OCC24137 (Draw_Interpretor& theDI, Standard_Integer theNArg, const char** theArgv)
1345{
1346 Standard_Integer anArgIter = 1;
1347 if (theNArg < 5)
1348 {
586db386 1349 theDI <<"Usage: " << theArgv[0] << " face vertex U V [N]\n";
89d8607f 1350 return 1;
1351 }
1352
1353 // get target shape
1354 Standard_CString aFaceName = theArgv[anArgIter++];
1355 Standard_CString aVertName = theArgv[anArgIter++];
1356 const TopoDS_Shape aShapeF = DBRep::Get (aFaceName);
1357 const TopoDS_Shape aShapeV = DBRep::Get (aVertName);
1358 const Standard_Real aUFrom = Atof (theArgv[anArgIter++]);
1359 const Standard_Real aVFrom = Atof (theArgv[anArgIter++]);
1360 const Standard_Integer aNbIts = (anArgIter < theNArg) ? atol (theArgv[anArgIter++]) : 100;
1361 if (aShapeF.IsNull() || aShapeF.ShapeType() != TopAbs_FACE)
1362 {
1363 std::cout << "Error: " << aFaceName << " shape is null / not a face" << std::endl;
1364 return 1;
1365 }
1366 if (aShapeV.IsNull() || aShapeV.ShapeType() != TopAbs_VERTEX)
1367 {
1368 std::cout << "Error: " << aVertName << " shape is null / not a vertex" << std::endl;
1369 return 1;
1370 }
1371 const TopoDS_Face aFace = TopoDS::Face (aShapeF);
1372 const TopoDS_Vertex aVert = TopoDS::Vertex (aShapeV);
1373 GeomAdaptor_Surface aSurf (BRep_Tool::Surface (aFace));
1374
1375 gp_Pnt aPnt = BRep_Tool::Pnt (aVert), aRes;
1376
e5260e1d 1377 Extrema_FuncPSNorm anExtFunc;
89d8607f 1378 math_FunctionSetRoot aRoot (anExtFunc, aNbIts);
1379
1380 math_Vector aTolUV (1, 2), aUVinf (1, 2), aUVsup (1, 2), aFromUV (1, 2);
1381 aTolUV (1) = Precision::Confusion(); aTolUV (2) = Precision::Confusion();
1382 aUVinf (1) = -Precision::Infinite(); aUVinf (2) = -Precision::Infinite();
1383 aUVsup (1) = Precision::Infinite(); aUVsup (2) = Precision::Infinite();
1384 aFromUV(1) = aUFrom; aFromUV(2) = aVFrom;
1385
1386 anExtFunc.Initialize (aSurf);
1387 anExtFunc.SetPoint (aPnt);
1388 aRoot.SetTolerance (aTolUV);
1389 aRoot.Perform (anExtFunc, aFromUV, aUVinf, aUVsup);
1390 if (!aRoot.IsDone())
1391 {
1392 std::cerr << "No results!\n";
1393 return 1;
1394 }
1395
1396 theDI << aRoot.Root()(1) << " " << aRoot.Root()(2) << "\n";
1397
1398 aSurf.D0 (aRoot.Root()(1), aRoot.Root()(2), aRes);
1399 DBRep::Set ("result", BRepBuilderAPI_MakeVertex (aRes));
1400 return 0;
1401}
1402
ab2db9a5 1403//! Check boolean operations on NCollection_Map
1404static Standard_Integer OCC24271 (Draw_Interpretor& di,
1405 Standard_Integer /*theArgNb*/,
1406 const char** /*theArgVec*/)
1407{
1408 // input data
1409 const Standard_Integer aLeftLower = 1;
1410 const Standard_Integer aLeftUpper = 10;
1411 const Standard_Integer aRightLower = 5;
1412 const Standard_Integer aRightUpper = 15;
1413
1414 // define arguments
1415 NCollection_Map<Standard_Integer> aMapLeft;
1416 for (Standard_Integer aKeyIter = aLeftLower; aKeyIter <= aLeftUpper; ++aKeyIter)
1417 {
1418 aMapLeft.Add (aKeyIter);
1419 }
1420
1421 NCollection_Map<Standard_Integer> aMapRight;
1422 for (Standard_Integer aKeyIter = aRightLower; aKeyIter <= aRightUpper; ++aKeyIter)
1423 {
1424 aMapRight.Add (aKeyIter);
1425 }
1426
1427 QCOMPARE (aMapLeft .Contains (aMapRight), Standard_False);
1428 QCOMPARE (aMapRight.Contains (aMapLeft), Standard_False);
1429
1430 // validate Union operation
1431 NCollection_Map<Standard_Integer> aMapUnion;
1432 aMapUnion.Union (aMapLeft, aMapRight);
1433 QCOMPARE (aMapUnion.Extent(), aRightUpper - aLeftLower + 1);
1434 for (Standard_Integer aKeyIter = aLeftLower; aKeyIter <= aRightUpper; ++aKeyIter)
1435 {
1436 QCOMPARE (aMapUnion.Contains (aKeyIter), Standard_True);
1437 }
1438
1439 // validate Intersection operation
1440 NCollection_Map<Standard_Integer> aMapSect;
1441 aMapSect.Intersection (aMapLeft, aMapRight);
1442 QCOMPARE (aMapSect.Extent(), aLeftUpper - aRightLower + 1);
1443 for (Standard_Integer aKeyIter = aRightLower; aKeyIter <= aLeftUpper; ++aKeyIter)
1444 {
1445 QCOMPARE (aMapSect.Contains (aKeyIter), Standard_True);
1446 }
1447 QCOMPARE (aMapLeft .Contains (aMapSect), Standard_True);
1448 QCOMPARE (aMapRight.Contains (aMapSect), Standard_True);
1449
1450 // validate Substruction operation
1451 NCollection_Map<Standard_Integer> aMapSubsLR;
1452 aMapSubsLR.Subtraction (aMapLeft, aMapRight);
1453 QCOMPARE (aMapSubsLR.Extent(), aRightLower - aLeftLower);
1454 for (Standard_Integer aKeyIter = aLeftLower; aKeyIter < aRightLower; ++aKeyIter)
1455 {
1456 QCOMPARE (aMapSubsLR.Contains (aKeyIter), Standard_True);
1457 }
1458
1459 NCollection_Map<Standard_Integer> aMapSubsRL;
1460 aMapSubsRL.Subtraction (aMapRight, aMapLeft);
1461 QCOMPARE (aMapSubsRL.Extent(), aRightUpper - aLeftUpper);
1462 for (Standard_Integer aKeyIter = aLeftUpper + 1; aKeyIter < aRightUpper; ++aKeyIter)
1463 {
1464 QCOMPARE (aMapSubsRL.Contains (aKeyIter), Standard_True);
1465 }
1466
1467 // validate Difference operation
1468 NCollection_Map<Standard_Integer> aMapDiff;
1469 aMapDiff.Difference (aMapLeft, aMapRight);
1470 QCOMPARE (aMapDiff.Extent(), aRightLower - aLeftLower + aRightUpper - aLeftUpper);
1471 for (Standard_Integer aKeyIter = aLeftLower; aKeyIter < aRightLower; ++aKeyIter)
1472 {
1473 QCOMPARE (aMapDiff.Contains (aKeyIter), Standard_True);
1474 }
1475 for (Standard_Integer aKeyIter = aLeftUpper + 1; aKeyIter < aRightUpper; ++aKeyIter)
1476 {
1477 QCOMPARE (aMapDiff.Contains (aKeyIter), Standard_True);
1478 }
1479
1480 // validate Exchange operation
1481 NCollection_Map<Standard_Integer> aMapSwap;
1482 aMapSwap.Exchange (aMapSect);
1483 for (Standard_Integer aKeyIter = aRightLower; aKeyIter <= aLeftUpper; ++aKeyIter)
1484 {
1485 QCOMPARE (aMapSwap.Contains (aKeyIter), Standard_True);
1486 }
1487 QCOMPARE (aMapSect.IsEmpty(), Standard_True);
1488 aMapSwap.Add (34);
1489 aMapSect.Add (43);
1490
1491 NCollection_Map<Standard_Integer> aMapCopy (aMapSwap);
1492 QCOMPARE (aMapCopy.IsEqual (aMapSwap), Standard_True);
1493 aMapCopy.Remove (34);
1494 aMapCopy.Add (43);
1495 QCOMPARE (aMapCopy.IsEqual (aMapSwap), Standard_False);
1496
1497 return 0;
1498}
1499
e6c9f595 1500#define QVERIFY(val1) \
1501 di << "Checking " #val1 " == Standard_True" << \
1502 ((val1) == Standard_True ? ": OK\n" : ": Error\n")
1503
1504#include <GeomInt_IntSS.hxx>
1505#include <Geom_ConicalSurface.hxx>
1506#include <Standard_ErrorHandler.hxx>
e6c9f595 1507
1508namespace {
1509 static Handle(Geom_ConicalSurface) CreateCone (const gp_Pnt& theLoc,
1510 const gp_Dir& theDir,
1511 const gp_Dir& theXDir,
1512 const Standard_Real theRad,
1513 const Standard_Real theSin,
1514 const Standard_Real theCos)
1515 {
1516 const Standard_Real anA = atan (theSin / theCos);
1517 gp_Ax3 anAxis (theLoc, theDir, theXDir);
1518 Handle(Geom_ConicalSurface) aSurf = new Geom_ConicalSurface (anAxis, anA, theRad);
1519 return aSurf;
1520 }
1521}
1522
3306fdd9 1523static Standard_Integer OCC23972(Draw_Interpretor& /*theDI*/,
1524 Standard_Integer theNArg, const char** theArgs)
e6c9f595 1525{
3306fdd9 1526 if (theNArg != 3) return 1;
1527
1528 //process specific cones, cannot read them from files because
1529 //due to rounding the original error in math_FunctionRoots gets hidden
1530 const Handle(Geom_Surface) aS1 = CreateCone(
1531 gp_Pnt(123.694345356663, 789.9, 68.15),
1532 gp_Dir(-1, 3.48029791472957e-016, -8.41302743359754e-017),
1533 gp_Dir(-3.48029791472957e-016, -1, -3.17572289932207e-016),
1534 3.28206830417112,
1535 0.780868809443031,
1536 0.624695047554424);
1537 const Handle(Geom_Surface) aS2 = CreateCone(
1538 gp_Pnt(123.694345356663, 784.9, 68.15),
1539 gp_Dir(-1, -2.5209507537117e-016, -1.49772808948866e-016),
1540 gp_Dir(1.49772808948866e-016, 3.17572289932207e-016, -1),
1541 3.28206830417112,
1542 0.780868809443031,
1543 0.624695047554424);
e6c9f595 1544
3306fdd9 1545 DrawTrSurf::Set(theArgs[1], aS1);
1546 DrawTrSurf::Set(theArgs[2], aS2);
e6c9f595 1547
1548 return 0;
1549}
1550
e3096dec 1551#include <ShapeFix_EdgeProjAux.hxx>
1552static Standard_Integer OCC24370 (Draw_Interpretor& di, Standard_Integer argc,const char ** argv)
1553{
1554 if (argc < 5) {
586db386 1555 di<<"Usage: " << argv[0] << " invalid number of arguments\n";
e3096dec 1556 return 1;
1557 }
1558
1559 TopoDS_Shape aSh = DBRep::Get(argv[1]);
1560 if (aSh.IsNull()) {
1561 di << argv[0] << " Error: Null input edge\n";
1562 return 1;
1563 }
1564 const TopoDS_Edge& anEdge = TopoDS::Edge (aSh);
1565
1566 Handle(Geom2d_Curve) aC = DrawTrSurf::GetCurve2d(argv[2]);
1567 if (aC.IsNull()) {
1568 di << argv[0] << " Error: Null input curve\n";
1569 return 1;
1570 }
1571
1572 Handle(Geom_Surface) aS = DrawTrSurf::GetSurface(argv[3]);
1573 if (aS.IsNull()) {
1574 di << argv[0] << " Error: Null input surface\n";
1575 return 1;
1576 }
1577
1578 Standard_Real prec = Draw::Atof(argv[4]);
1579
1580 //prepare data
1581 TopoDS_Face aFace;
1582 BRep_Builder aB;
1583 aB.MakeFace (aFace, aS, Precision::Confusion());
1584 aB.UpdateEdge (anEdge, aC, aFace, Precision::Confusion());
1585 aB.Range (anEdge, aFace, aC->FirstParameter(), aC->LastParameter());
1586
1587 //call algorithm
1588 ShapeFix_EdgeProjAux aProj (aFace, anEdge);
1589 aProj.Compute (prec);
1590
1591 Standard_Boolean isfirstdone = aProj.IsFirstDone();
1592 Standard_Boolean islastdone = aProj.IsLastDone();
1593
1594 Standard_Real first = 0.;
1595 Standard_Real last = 0.;
1596 Standard_Integer isfirstdoneInteger = 0;
1597 Standard_Integer islastdoneInteger = 0;
1598
1599
1600 if (isfirstdone) {
1601 first = aProj.FirstParam();
1602 isfirstdoneInteger = 1;
1603 }
1604
1605 if (islastdone) {
1606 last= aProj.LastParam();
1607 islastdoneInteger = 1;
1608 }
1609
1610 di << isfirstdoneInteger << " "<< islastdoneInteger << " "<< first << " "<< last << " \n";
1611
1612 return 0;
1613}
1614
05d7de53 1615template<typename T, typename HT>
1616static void DoIsNull(Draw_Interpretor& di)
1617{
1618 HT aHandle;
1619 // QVERIFY (aHandle.IsNull());
1620 QCOMPARE (aHandle.IsNull(), Standard_True);
c04c30b3 1621 const T* p = aHandle.get();
05d7de53 1622#if OCC_VERSION_HEX > 0x060700
1623 //QVERIFY (!p);
1624 //QVERIFY (p == 0);
1625 QCOMPARE (!p, Standard_True);
1626 QCOMPARE (p == 0, Standard_True);
1627#endif
1628
1629 aHandle = new T;
1630 //QVERIFY (!aHandle.IsNull());
1631 QCOMPARE (!aHandle.IsNull(), Standard_True);
c04c30b3 1632 p = aHandle.get();
05d7de53 1633 //QVERIFY (p);
1634 //QVERIFY (p != 0);
1635 QCOMPARE (p != NULL, Standard_True);
1636 QCOMPARE (p != 0, Standard_True);
1637}
1638
1639//=======================================================================
1640//function : OCC24533
1641//purpose :
1642//=======================================================================
1643static Standard_Integer OCC24533 (Draw_Interpretor& di, Standard_Integer n, const char**)
1644{
1645 if (n != 1) return 1;
1646
857ffd5e 1647 DoIsNull<Standard_Transient, Handle(Standard_Transient)>(di);
05d7de53 1648
1649 return 0;
1650}
1651
dda67c1c 1652// Dummy class to test interface for compilation issues
1653class QABugs_HandleClass : public Standard_Transient
1654{
1655public:
1656 Standard_Integer HandleProc (Draw_Interpretor& , Standard_Integer , const char** theArgVec)
1657 {
1658 std::cerr << "QABugs_HandleClass[" << this << "] " << theArgVec[0] << "\n";
1659 return 0;
1660 }
92efcf78 1661 DEFINE_STANDARD_RTTI_INLINE(QABugs_HandleClass,Standard_Transient) // Type definition
dda67c1c 1662};
1663DEFINE_STANDARD_HANDLE (QABugs_HandleClass, Standard_Transient)
ec357c5c 1664
dda67c1c 1665
1666// Dummy class to test interface for compilation issues
1667struct QABugs_NHandleClass
1668{
1669 Standard_Integer NHandleProc (Draw_Interpretor& , Standard_Integer , const char** theArgVec)
1670 {
586db386 1671 std::cerr << "QABugs_NHandleClass[" << this << "] " << theArgVec[0] << "\n";
dda67c1c 1672 return 0;
1673 }
1674};
1675
574d7236 1676#include <XCAFDoc_ColorTool.hxx>
1677#include <STEPControl_StepModelType.hxx>
1678#include <STEPCAFControl_Writer.hxx>
1679static Standard_Integer OCC23951 (Draw_Interpretor& di, Standard_Integer argc, const char ** argv)
1680{
7a7e8cf1 1681 if (argc != 2) {
586db386 1682 di << "Usage: " << argv[0] << " invalid number of arguments\n";
574d7236 1683 return 1;
1684 }
1685 Handle(TDocStd_Document) aDoc = new TDocStd_Document("dummy");;
1686 TopoDS_Shape s1 = BRepPrimAPI_MakeBox(1,1,1).Shape();
1687 TDF_Label lab1 = XCAFDoc_DocumentTool::ShapeTool (aDoc->Main ())->NewShape();
1688 XCAFDoc_DocumentTool::ShapeTool (aDoc->Main ())->SetShape(lab1, s1);
1689 TDataStd_Name::Set(lab1, "Box1");
1690
1691 Quantity_Color yellow(1,1,0, Quantity_TOC_RGB);
1692 XCAFDoc_DocumentTool::ColorTool (aDoc->Main())->SetColor(lab1, yellow, XCAFDoc_ColorGen);
1693 XCAFDoc_DocumentTool::ColorTool(aDoc->Main())->SetVisibility(lab1, 0);
1694
1695 STEPControl_StepModelType mode = STEPControl_AsIs;
1696 STEPCAFControl_Writer writer;
1697 if ( ! writer.Transfer (aDoc, mode ) )
1698 {
1699 di << "The document cannot be translated or gives no result" << "\n";
1700 return 1;
1701 }
1702
7a7e8cf1 1703 writer.Write(argv[1]);
574d7236 1704 return 0;
1705}
1706
1707
0c674248 1708//=======================================================================
1709//function : OCC23950
1710//purpose :
1711//=======================================================================
1712static Standard_Integer OCC23950 (Draw_Interpretor& di, Standard_Integer argc, const char ** argv)
1713{
1fa7cb8c 1714 if (argc != 2) {
1715 di << "Usage : " << argv[0] << " step_file\n";
0c674248 1716 return 1;
1717 }
1718
1719 Handle(TDocStd_Document) aDoc = new TDocStd_Document ("dummy");
1720 TopoDS_Shape s6 = BRepBuilderAPI_MakeVertex (gp_Pnt (75, 0, 0));
1721 gp_Trsf t0;
1722 TopLoc_Location location0 (t0);
1723
1724 TDF_Label lab1 = XCAFDoc_DocumentTool::ShapeTool (aDoc->Main ())->NewShape ();
1725 XCAFDoc_DocumentTool::ShapeTool (aDoc->Main ())->SetShape (lab1, s6);
1726 TDataStd_Name::Set(lab1, "Point1");
1727
1728 TDF_Label labelA0 = XCAFDoc_DocumentTool::ShapeTool (aDoc->Main ())->NewShape ();
1729 TDataStd_Name::Set(labelA0, "ASSEMBLY");
1730
1731 TDF_Label component01 = XCAFDoc_DocumentTool::ShapeTool (aDoc->Main ())->AddComponent (labelA0, lab1, location0);
acc909a8 1732 XCAFDoc_DocumentTool::ShapeTool (aDoc->Main ())->UpdateAssemblies();
0c674248 1733
1734 Quantity_Color yellow(1,1,0, Quantity_TOC_RGB);
1735 XCAFDoc_DocumentTool::ColorTool (labelA0)->SetColor (component01, yellow, XCAFDoc_ColorGen);
1736 XCAFDoc_DocumentTool::ColorTool (labelA0)->SetVisibility (component01, 0);
1737
1738 STEPControl_StepModelType mode = STEPControl_AsIs;
1739 STEPCAFControl_Writer writer;
1740 if (! writer.Transfer (aDoc, mode))
1741 {
586db386 1742 di << "The document cannot be translated or gives no result\n";
0c674248 1743 return 1;
1744 }
1745
1fa7cb8c 1746 writer.Write (argv[1]);
0c674248 1747 return 0;
1748}
1749
2cd138b8 1750//=======================================================================
1751//function : OCC24667
1752//purpose :
1753//=======================================================================
1754static Standard_Integer OCC24667 (Draw_Interpretor& di, Standard_Integer n, const char** a)
1755{
1756 if (n == 1)
1757 {
586db386 1758 di << "OCC24667 result Wire_spine Profile [Mode [Approx]]\n";
1759 di << "Mode = 0 - CorrectedFrenet,\n";
1760 di << " = 1 - Frenet,\n";
1761 di << " = 2 - DiscreteTrihedron\n";
1762 di << "Approx - force C1-approximation if result is C0\n";
2cd138b8 1763 return 0;
1764 }
1765
1766 if (n > 1 && n < 4) return 1;
1767
1768 TopoDS_Shape Spine = DBRep::Get(a[2],TopAbs_WIRE);
1769 if ( Spine.IsNull()) return 1;
1770
1771 TopoDS_Shape Profile = DBRep::Get(a[3]);
1772 if ( Profile.IsNull()) return 1;
1773
1774 GeomFill_Trihedron Mode = GeomFill_IsCorrectedFrenet;
1775 if (n >= 5)
1776 {
1777 Standard_Integer iMode = atoi(a[4]);
1778 if (iMode == 1)
1779 Mode = GeomFill_IsFrenet;
1780 else if (iMode == 2)
1781 Mode = GeomFill_IsDiscreteTrihedron;
1782 }
1783
1784 Standard_Boolean ForceApproxC1 = Standard_False;
1785 if (n >= 6)
1786 ForceApproxC1 = Standard_True;
1787
1788 BRepOffsetAPI_MakePipe aPipe(TopoDS::Wire(Spine),
1789 Profile,
1790 Mode,
1791 ForceApproxC1);
1792
1793 TopoDS_Shape S = aPipe.Shape();
1794 TopoDS_Shape aSF = aPipe.FirstShape();
1795 TopoDS_Shape aSL = aPipe.LastShape();
1796
1797 DBRep::Set(a[1],S);
1798
1799 TCollection_AsciiString aStrF(a[1], "_f");
1800 TCollection_AsciiString aStrL(a[1], "_l");
1801
1802 DBRep::Set(aStrF.ToCString(), aSF);
1803 DBRep::Set(aStrL.ToCString(), aSL);
1804
1805 return 0;
1806}
1807
70167e69
RL
1808#include <BRepPrimAPI_MakeCylinder.hxx>
1809#include <BRepBuilderAPI_Copy.hxx>
1810#include <BRepTools_NurbsConvertModification.hxx>
1811static TopoDS_Shape CreateTestShape (int& theShapeNb)
1812{
1813 TopoDS_Compound aComp;
1814 BRep_Builder aBuilder;
1815 aBuilder.MakeCompound (aComp);
1816 //NURBS modifier is used to increase footprint of each shape
35c0599a 1817 Handle(BRepTools_NurbsConvertModification) aNurbsModif = new BRepTools_NurbsConvertModification;
70167e69
RL
1818 TopoDS_Shape aRefShape = BRepPrimAPI_MakeCylinder (50., 100.).Solid();
1819 BRepTools_Modifier aModifier (aRefShape, aNurbsModif);
1820 if (aModifier.IsDone()) {
1821 aRefShape = aModifier.ModifiedShape (aRefShape);
1822 }
1823 int aSiblingNb = 0;
1824 for (; theShapeNb > 0; --theShapeNb) {
1825 TopoDS_Shape aShape;
1826 if (++aSiblingNb <= 100) { //number of siblings is limited to avoid long lists
1827 aShape = BRepBuilderAPI_Copy (aRefShape, Standard_True /*CopyGeom*/).Shape();
1828 } else {
1829 aShape = CreateTestShape (theShapeNb);
1830 }
1831 aBuilder.Add (aComp, aShape);
1832 }
1833 return aComp;
1834}
1835
70167e69
RL
1836#include <TDataStd_Integer.hxx>
1837#include <TNaming_Builder.hxx>
1838static Standard_Integer OCC24931 (Draw_Interpretor& di, Standard_Integer argc, const char** argv)
1839{
7a7e8cf1 1840 if (argc != 2) {
586db386 1841 di << "Usage: " << argv[0] << " invalid number of arguments\n";
70167e69
RL
1842 return 1;
1843 }
7a7e8cf1 1844 TCollection_ExtendedString aFileName (argv[1]);
70167e69
RL
1845 PCDM_StoreStatus aSStatus = PCDM_SS_Failure;
1846
6fe96f84 1847 Handle(TDocStd_Application) anApp = DDocStd::GetApplication();
70167e69
RL
1848 {
1849 Handle(TDocStd_Document) aDoc;
1850 anApp->NewDocument ("XmlOcaf", aDoc);
1851 TDF_Label aLab = aDoc->Main();
1852 TDataStd_Integer::Set (aLab, 0);
1853 int n = 10000; //must be big enough
1854 TopoDS_Shape aShape = CreateTestShape (n);
1855 TNaming_Builder aBuilder (aLab);
1856 aBuilder.Generated (aShape);
1857
1858 aSStatus = anApp->SaveAs (aDoc, aFileName);
1859 anApp->Close (aDoc);
1860 }
1861 QCOMPARE (aSStatus, PCDM_SS_OK);
1862 return 0;
1863}
1864
d01cc61d 1865#include <TDF_AttributeIterator.hxx>
1866//=======================================================================
1867//function : OCC24755
1868//purpose :
1869//=======================================================================
1870static Standard_Integer OCC24755 (Draw_Interpretor& di, Standard_Integer n, const char** a)
1871{
1872 if (n != 1)
1873 {
1874 std::cout << "Usage : " << a[0] << "\n";
1875 return 1;
1876 }
1877
6fe96f84 1878 Handle(TDocStd_Application) anApp = DDocStd::GetApplication();
d01cc61d 1879 Handle(TDocStd_Document) aDoc;
fff263bd 1880 anApp->NewDocument ("BinOcaf", aDoc);
d01cc61d 1881 TDF_Label aLab = aDoc->Main();
0f3d1d7c 1882 // Prepend an int value.
d01cc61d 1883 TDataStd_Integer::Set (aLab, 0);
0f3d1d7c 1884 // Prepend a name.
d01cc61d 1885 TDataStd_Name::Set (aLab, "test");
0f3d1d7c 1886 // Append a double value.
1887 aLab.AddAttribute(new TDataStd_Real(), true/*append*/);
d01cc61d 1888
1889 TDF_AttributeIterator i (aLab);
1890 Handle(TDF_Attribute) anAttr = i.Value();
bd6f0d2f 1891 QCOMPARE (anAttr->IsKind (STANDARD_TYPE (TDataStd_Integer)), Standard_True);
0f3d1d7c 1892 i.Next();
1893 anAttr = i.Value();
bd6f0d2f 1894 QCOMPARE (anAttr->IsKind (STANDARD_TYPE (TDataStd_Name)), Standard_True);
d01cc61d 1895 i.Next();
1896 anAttr = i.Value();
0f3d1d7c 1897 QCOMPARE (anAttr->IsKind (STANDARD_TYPE (TDataStd_Real)), Standard_True);
d01cc61d 1898
1899 return 0;
1900}
1901
a73267f2 1902struct MyStubObject
1903{
1904 MyStubObject() : ptr(0L) {}
1905 MyStubObject(void* thePtr) : ptr(thePtr) {}
1906 char overhead[40];
1907 void* ptr;
1908};
1909
1910//=======================================================================
1911//function : OCC24834
1912//purpose :
1913//=======================================================================
1914static Standard_Integer OCC24834 (Draw_Interpretor& di, Standard_Integer n, const char** a)
1915{
1916 if (n != 1)
1917 {
1918 std::cout << "Usage : " << a[0] << "\n";
1919 return 1;
1920 }
5a89733f 1921
1922 int i = sizeof (char*);
1923 if (i > 4) {
2d7b28ac 1924 std::cout << "64-bit architecture is not supported.\n";
1925 return 0;
1926 }
a73267f2 1927
1928 NCollection_List<MyStubObject> aList;
1929 const Standard_Integer aSmallBlockSize = 40;
1930 const Standard_Integer aLargeBlockSize = 1500000;
1931
1932 // quick populate memory with large blocks
1933 try
1934 {
1935 for (;;)
1936 {
1937 aList.Append(MyStubObject(Standard::Allocate(aLargeBlockSize)));
1938 }
1939 }
a738b534 1940 catch (Standard_Failure const&)
a73267f2 1941 {
1942 di << "caught out of memory for large blocks: OK\n";
1943 }
1944 catch (...)
1945 {
1946 di << "skept out of memory for large blocks: Error\n";
1947 }
1948
1949 // allocate small blocks
1950 try
1951 {
1952 for (;;)
1953 {
1954 aList.Append(MyStubObject(Standard::Allocate(aSmallBlockSize)));
1955 }
1956 }
a738b534 1957 catch (Standard_Failure const&)
a73267f2 1958 {
1959 di << "caught out of memory for small blocks: OK\n";
1960 }
1961 catch (...)
1962 {
1963 di << "skept out of memory for small blocks: Error\n";
1964 }
1965
1966 // release all allocated blocks
1967 for (NCollection_List<MyStubObject>::Iterator it(aList); it.More(); it.Next())
1968 {
1969 Standard::Free(it.Value().ptr);
1970 }
1971 return 0;
1972}
1973
8696d65d 1974
1975#include <Geom2dAPI_InterCurveCurve.hxx>
1976#include <IntRes2d_IntersectionPoint.hxx>
1977//=======================================================================
1978//function : OCC24889
1979//purpose :
1980//=======================================================================
1981static Standard_Integer OCC24889 (Draw_Interpretor& theDI,
1982 Standard_Integer /*theNArg*/,
1983 const char** /*theArgs*/)
1984{
1985 // Curves
1986 Handle( Geom2d_Circle ) aCircle1 = new Geom2d_Circle(
1987 gp_Ax22d( gp_Pnt2d( 25, -25 ), gp_Dir2d( 1, 0 ), gp_Dir2d( -0, 1 ) ), 155 );
1988
1989 Handle( Geom2d_Circle ) aCircle2 = new Geom2d_Circle(
1990 gp_Ax22d( gp_Pnt2d( 25, 25 ), gp_Dir2d( 1, 0 ), gp_Dir2d( -0, 1 ) ), 155 );
1991
1992 Handle( Geom2d_TrimmedCurve ) aTrim[2] = {
1993 new Geom2d_TrimmedCurve( aCircle1, 1.57079632679490, 2.97959469729228 ),
1994 new Geom2d_TrimmedCurve( aCircle2, 3.30359060633978, 4.71238898038469 )
1995 };
1996
1997 DrawTrSurf::Set("c_1", aTrim[0]);
1998 DrawTrSurf::Set("c_2", aTrim[1]);
1999
2000 // Intersection
2001 const Standard_Real aTol = Precision::Confusion();
2002 Geom2dAPI_InterCurveCurve aIntTool( aTrim[0], aTrim[1], aTol );
2003
2004 const IntRes2d_IntersectionPoint& aIntPnt =
2005 aIntTool.Intersector().Point( 1 );
2006
2007 gp_Pnt2d aIntRes = aIntTool.Point( 1 );
2008 Standard_Real aPar[2] = {
2009 aIntPnt.ParamOnFirst(),
2010 aIntPnt.ParamOnSecond()
2011 };
2012
2013 //theDI.precision( 5 );
2014 theDI << "Int point: X = " << aIntRes.X() << "; Y = " << aIntRes.Y() << "\n";
2015 for (int i = 0; i < 2; ++i)
2016 {
2017 theDI << "Curve " << i << ": FirstParam = " << aTrim[i]->FirstParameter() <<
2018 "; LastParam = " << aTrim[i]->LastParameter() <<
2019 "; IntParameter = " << aPar[i] << "\n";
2020 }
2021
2022 return 0;
2023}
2024
5493d334 2025#include <math_GlobOptMin.hxx>
2026#include <math_MultipleVarFunctionWithHessian.hxx>
2027//=======================================================================
2028//function : OCC25004
2029//purpose : Check extremaCC on Branin function.
2030//=======================================================================
2031// Function is:
2032// f(u,v) = a*(v - b*u^2 + c*u-r)^2+s(1-t)*cos(u)+s
2033// Standard borders are:
2034// -5 <= u <= 10
2035// 0 <= v <= 15
2036class BraninFunction : public math_MultipleVarFunctionWithHessian
2037{
2038public:
2039 BraninFunction()
2040 {
2041 a = 1.0;
2042 b = 5.1 / (4.0 * M_PI * M_PI);
2043 c = 5.0 / M_PI;
2044 r = 6.0;
2045 s = 10.0;
2046 t = 1.0 / (8.0 * M_PI);
2047 }
2048 virtual Standard_Integer NbVariables() const
2049 {
2050 return 2;
2051 }
2052 virtual Standard_Boolean Value(const math_Vector& X,Standard_Real& F)
2053 {
2054 Standard_Real u = X(1);
2055 Standard_Real v = X(2);
2056
2057 Standard_Real aSqPt = (v - b * u * u + c * u - r); // Square Part of function.
2058 Standard_Real aLnPt = s * (1 - t) * cos(u); // Linear part of funcrtion.
2059 F = a * aSqPt * aSqPt + aLnPt + s;
2060 return Standard_True;
2061 }
2062 virtual Standard_Boolean Gradient(const math_Vector& X,math_Vector& G)
2063 {
2064 Standard_Real u = X(1);
2065 Standard_Real v = X(2);
2066
2067 Standard_Real aSqPt = (v - b * u * u + c * u - r); // Square Part of function.
2068 G(1) = 2 * a * aSqPt * (c - 2 * b * u) - s * (1 - t) * sin(u);
2069 G(2) = 2 * a * aSqPt;
2070
2071 return Standard_True;
2072 }
2073 virtual Standard_Boolean Values(const math_Vector& X,Standard_Real& F,math_Vector& G)
2074 {
2075 Value(X,F);
2076 Gradient(X,G);
2077
2078 return Standard_True;
2079 }
2080 virtual Standard_Boolean Values(const math_Vector& X,Standard_Real& F,math_Vector& G,math_Matrix& H)
2081 {
2082 Value(X,F);
2083 Gradient(X,G);
2084
2085 Standard_Real u = X(1);
2086 Standard_Real v = X(2);
2087
2088 Standard_Real aSqPt = (v - b * u * u + c * u - r); // Square Part of function.
2089 Standard_Real aTmpPt = c - 2 * b *u; // Tmp part.
2090 H(1,1) = 2 * a * aTmpPt * aTmpPt - 4 * a * b * aSqPt - s * (1 - t) * cos(u);
2091 H(1,2) = 2 * a * aTmpPt;
2092 H(2,1) = H(1,2);
2093 H(2,2) = 2 * a;
2094
2095 return Standard_True;
2096 }
2097
2098private:
2099 // Standard parameters.
2100 Standard_Real a, b, c, r, s, t;
2101};
2102
2103static Standard_Integer OCC25004 (Draw_Interpretor& theDI,
2104 Standard_Integer /*theNArg*/,
2105 const char** /*theArgs*/)
2106{
4b65fc77 2107 BraninFunction aFunc;
5493d334 2108
2109 math_Vector aLower(1,2), aUpper(1,2);
2110 aLower(1) = -5;
2111 aLower(2) = 0;
2112 aUpper(1) = 10;
2113 aUpper(2) = 15;
2114
2115 Standard_Integer aGridOrder = 16;
2116 math_Vector aFuncValues(1, aGridOrder * aGridOrder);
2117
2118 Standard_Real aLipConst = 0;
2119 math_Vector aCurrPnt1(1, 2), aCurrPnt2(1, 2);
2120
2121 // Get Lipshitz constant estimation on regular grid.
2122 Standard_Integer i, j, idx = 1;
2123 for(i = 1; i <= aGridOrder; i++)
2124 {
2125 for(j = 1; j <= aGridOrder; j++)
2126 {
2127 aCurrPnt1(1) = aLower(1) + (aUpper(1) - aLower(1)) * (i - 1) / (aGridOrder - 1.0);
2128 aCurrPnt1(2) = aLower(2) + (aUpper(2) - aLower(2)) * (j - 1) / (aGridOrder - 1.0);
2129
4b65fc77 2130 aFunc.Value(aCurrPnt1, aFuncValues(idx));
5493d334 2131 idx++;
2132 }
2133 }
2134
2135 Standard_Integer k, l;
2136 Standard_Integer idx1, idx2;
2137 for(i = 1; i <= aGridOrder; i++)
2138 for(j = 1; j <= aGridOrder; j++)
2139 for(k = 1; k <= aGridOrder; k++)
2140 for(l = 1; l <= aGridOrder; l++)
2141 {
2142 if (i == k && j == l)
2143 continue;
2144
2145 aCurrPnt1(1) = aLower(1) + (aUpper(1) - aLower(1)) * (i - 1) / (aGridOrder - 1.0);
2146 aCurrPnt1(2) = aLower(2) + (aUpper(2) - aLower(2)) * (j - 1) / (aGridOrder - 1.0);
2147 idx1 = (i - 1) * aGridOrder + j;
2148
2149 aCurrPnt2(1) = aLower(1) + (aUpper(1) - aLower(1)) * (k - 1) / (aGridOrder - 1.0);
2150 aCurrPnt2(2) = aLower(2) + (aUpper(2) - aLower(2)) * (l - 1) / (aGridOrder - 1.0);
2151 idx2 = (k - 1) * aGridOrder + l;
2152
2153 aCurrPnt1.Add(-aCurrPnt2);
2154 Standard_Real dist = aCurrPnt1.Norm();
2155
2156 Standard_Real C = Abs(aFuncValues(idx1) - aFuncValues(idx2)) / dist;
2157 if (C > aLipConst)
2158 aLipConst = C;
2159 }
2160
4b65fc77 2161 math_GlobOptMin aFinder(&aFunc, aLower, aUpper, aLipConst);
5493d334 2162 aFinder.Perform();
2163 //(-pi , 12.275), (pi , 2.275), (9.42478, 2.475)
2164
2165 Standard_Real anExtValue = aFinder.GetF();
2166 theDI << "F = " << anExtValue << "\n";
2167
2168 Standard_Integer aNbExt = aFinder.NbExtrema();
2169 theDI << "NbExtrema = " << aNbExt << "\n";
2170
2171 return 0;
2172}
8696d65d 2173
b6c0b841
RL
2174#include <OSD_Environment.hxx>
2175#include <Plugin.hxx>
2176#include <Plugin_Macro.hxx>
2177#include <Resource_Manager.hxx>
2178
2179#define THE_QATEST_DOC_FORMAT "My Proprietary Format"
2180
2181#define QA_CHECK(theDesc, theExpr, theValue) \
2182{\
2183 const bool isTrue = !!(theExpr); \
2184 std::cout << theDesc << (isTrue ? " TRUE " : " FALSE ") << (isTrue == theValue ? " is OK\n" : " is FAIL\n"); \
2185}
2186
2187class Test_TDocStd_Application : public TDocStd_Application
2188{
2189public:
2190
6fe96f84 2191 Test_TDocStd_Application ()
b6c0b841 2192 {
b6c0b841
RL
2193 // explicitly initialize resource manager
2194 myResources = new Resource_Manager ("");
2195 myResources->SetResource ("xml.FileFormat", THE_QATEST_DOC_FORMAT);
2196 myResources->SetResource (THE_QATEST_DOC_FORMAT ".Description", "Test XML Document");
2197 myResources->SetResource (THE_QATEST_DOC_FORMAT ".FileExtension", "xml");
b6c0b841
RL
2198 }
2199
6fe96f84 2200 virtual Handle(PCDM_Reader) ReaderFromFormat (const TCollection_ExtendedString&) Standard_OVERRIDE
2201 {
2202 return new XmlDrivers_DocumentRetrievalDriver ();
2203 }
2204 virtual Handle(PCDM_StorageDriver) WriterFromFormat (const TCollection_ExtendedString&) Standard_OVERRIDE
2205 {
2206 return new XmlDrivers_DocumentStorageDriver ("Test");
2207 }
2208 virtual Standard_CString ResourcesName() Standard_OVERRIDE { return ""; }
b6c0b841
RL
2209};
2210
2211//=======================================================================
2212//function : OCC24925
2213//purpose :
2214//=======================================================================
2215static Standard_Integer OCC24925 (Draw_Interpretor& theDI,
2216 Standard_Integer theArgNb,
2217 const char** theArgVec)
2218{
2219 if (theArgNb != 2
2220 && theArgNb != 5)
2221 {
2222 std::cout << "Error: wrong syntax! See usage:\n";
2223 theDI.PrintHelp (theArgVec[0]);
2224 return 1;
2225 }
2226
2227 Standard_Integer anArgIter = 1;
2228 TCollection_ExtendedString aFileName = theArgVec[anArgIter++];
2229 TCollection_AsciiString aPlugin = "TKXml";
2230 TCollection_AsciiString aSaver = "03a56820-8269-11d5-aab2-0050044b1af1"; // XmlStorageDriver in XmlDrivers.cxx
2231 TCollection_AsciiString aLoader = "03a56822-8269-11d5-aab2-0050044b1af1"; // XmlRetrievalDriver in XmlDrivers.cxx
2232 if (anArgIter < theArgNb)
2233 {
2234 aPlugin = theArgVec[anArgIter++];
2235 aSaver = theArgVec[anArgIter++];
2236 aLoader = theArgVec[anArgIter++];
2237 }
2238
2239 PCDM_StoreStatus aSStatus = PCDM_SS_Failure;
2240 PCDM_ReaderStatus aRStatus = PCDM_RS_OpenError;
2241
6fe96f84 2242 Handle(TDocStd_Application) anApp = new Test_TDocStd_Application ();
b6c0b841
RL
2243 {
2244 Handle(TDocStd_Document) aDoc;
2245 anApp->NewDocument (THE_QATEST_DOC_FORMAT, aDoc);
2246 TDF_Label aLab = aDoc->Main();
2247 TDataStd_Integer::Set (aLab, 0);
2248 TDataStd_Name::Set (aLab, "QABugs_19.cxx");
2249
2250 aSStatus = anApp->SaveAs (aDoc, aFileName);
2251 anApp->Close (aDoc);
2252 }
2253 QA_CHECK ("SaveAs()", aSStatus == PCDM_SS_OK, true);
2254
2255 {
2256 Handle(TDocStd_Document) aDoc;
2257 aRStatus = anApp->Open (aFileName, aDoc);
2258 anApp->Close (aDoc);
2259 }
2260 QA_CHECK ("Open() ", aRStatus == PCDM_RS_OK, true);
2261 return 0;
2262}
2263
a967f104 2264//=======================================================================
2265//function : OCC25043
2266//purpose :
2267//=======================================================================
2268#include <BRepAlgoAPI_Check.hxx>
2269static Standard_Integer OCC25043 (Draw_Interpretor& theDI,
2270 Standard_Integer theArgNb,
2271 const char** theArgVec)
2272{
2273 if (theArgNb != 2) {
2274 theDI << "Usage: " << theArgVec[0] << " shape\n";
2275 return 1;
2276 }
2277
2278 TopoDS_Shape aShape = DBRep::Get(theArgVec[1]);
2279 if (aShape.IsNull())
2280 {
2281 theDI << theArgVec[1] << " shape is NULL\n";
2282 return 1;
2283 }
2284
2285 BRepAlgoAPI_Check anAlgoApiCheck(aShape, Standard_True, Standard_True);
2286
2287 if (!anAlgoApiCheck.IsValid())
2288 {
2289 BOPAlgo_ListIteratorOfListOfCheckResult anCheckIter(anAlgoApiCheck.Result());
2290 for (; anCheckIter.More(); anCheckIter.Next())
2291 {
2292 const BOPAlgo_CheckResult& aCurCheckRes = anCheckIter.Value();
1155d05a 2293 const TopTools_ListOfShape& aCurFaultyShapes = aCurCheckRes.GetFaultyShapes1();
2294 TopTools_ListIteratorOfListOfShape aFaultyIter(aCurFaultyShapes);
a967f104 2295 for (; aFaultyIter.More(); aFaultyIter.Next())
2296 {
2297 const TopoDS_Shape& aFaultyShape = aFaultyIter.Value();
2298
2299 Standard_Boolean anIsFaultyShapeFound = Standard_False;
2300 TopExp_Explorer anExp(aShape, aFaultyShape.ShapeType());
2301 for (; anExp.More() && !anIsFaultyShapeFound; anExp.Next())
2302 {
2303 if (anExp.Current().IsEqual(aFaultyShape))
2304 anIsFaultyShapeFound = Standard_True;
2305 }
2306
2307 if (!anIsFaultyShapeFound)
2308 {
2309 theDI << "Error. Faulty Shape is NOT found in source shape.\n";
2310 return 0;
2311 }
2312 else
2313 {
3510db62 2314 theDI << "Info. Faulty shape is found in source shape\n";
a967f104 2315 }
2316 }
2317 }
2318 }
2319 else
2320 {
3510db62 2321 theDI << "Problems are not detected. Test is not performed.";
a967f104 2322 }
2323
2324 return 0;
2325}
2326
4a350f94 2327//=======================================================================
2328//function : OCC24606
2329//purpose :
2330//=======================================================================
2331static Standard_Integer OCC24606 (Draw_Interpretor& theDI,
2332 Standard_Integer theArgNb,
2333 const char** theArgVec)
2334{
2335 if (theArgNb > 1)
2336 {
2337 std::cerr << "Error: incorrect number of arguments.\n";
2338 theDI << "Usage : " << theArgVec[0] << "\n";
2339 return 1;
2340 }
2341
2342 Handle(V3d_View) aView = ViewerTest::CurrentView();
2343 if (aView.IsNull())
2344 {
2345 std::cerr << "Errro: no active view, please call 'vinit'.\n";
2346 return 1;
2347 }
2348
2349 aView->DepthFitAll();
2350 aView->FitAll();
2351
2352 return 0;
2353}
2354
ab860031 2355//=======================================================================
2356//function : OCC25202
2357//purpose :
2358//=======================================================================
2359#include <ShapeBuild_ReShape.hxx>
2360static Standard_Integer OCC25202 ( Draw_Interpretor& theDI,
2361 Standard_Integer theArgN,
2362 const char** theArgVal)
2363{
2364 // 0 1 2 3 4 5 6
2365 //reshape res shape numF1 face1 numF2 face2
2366 if(theArgN < 7)
2367 {
2368 theDI << "Use: reshape res shape numF1 face1 numF2 face2\n";
2369 return 1;
2370 }
2371
2372 TopoDS_Shape aShape = DBRep::Get(theArgVal[2]);
2373 const Standard_Integer aNumOfRE1 = Draw::Atoi(theArgVal[3]),
2374 aNumOfRE2 = Draw::Atoi(theArgVal[5]);
2375 TopoDS_Face aShapeForRepl1 = TopoDS::Face(DBRep::Get(theArgVal[4])),
2376 aShapeForRepl2 = TopoDS::Face(DBRep::Get(theArgVal[6]));
2377
2378 if(aShape.IsNull())
2379 {
2380 theDI << theArgVal[2] << " is null shape\n";
2381 return 1;
2382 }
2383
2384 if(aShapeForRepl1.IsNull())
2385 {
2386 theDI << theArgVal[4] << " is not a replaced type\n";
2387 return 1;
2388 }
2389
2390 if(aShapeForRepl2.IsNull())
2391 {
2392 theDI << theArgVal[6] << " is not a replaced type\n";
2393 return 1;
2394 }
2395
2396
2397 TopoDS_Shape aReplacedShape;
2398 ShapeBuild_ReShape aReshape;
2399
2400 //////////////////// explode (begin)
2401 TopTools_MapOfShape M;
2402 M.Add(aShape);
2403 Standard_Integer aNbShapes = 0;
2404 for (TopExp_Explorer ex(aShape,TopAbs_FACE); ex.More(); ex.Next())
2405 {
2406 const TopoDS_Shape& Sx = ex.Current();
2407 Standard_Boolean added = M.Add(Sx);
2408 if (added)
2409 {
2410 aNbShapes++;
2411 if(aNbShapes == aNumOfRE1)
2412 {
2413 aReplacedShape = Sx;
2414
2415 aReshape.Replace(aReplacedShape, aShapeForRepl1);
2416 }
2417
2418 if(aNbShapes == aNumOfRE2)
2419 {
2420 aReplacedShape = Sx;
2421
2422 aReshape.Replace(aReplacedShape, aShapeForRepl2);
2423 }
2424 }
2425 }
2426 //////////////////// explode (end)
2427
2428 if(aReplacedShape.IsNull())
2429 {
2430 theDI << "There is not any shape for replacing.\n";
2431 }
2432
2433 DBRep::Set (theArgVal[1],aReshape.Apply (aShape,TopAbs_WIRE,2));
2434
2435 return 0;
2436}
2437
c6037065 2438#include <ShapeFix_Wireframe.hxx>
2439//=======================================================================
2440//function : OCC7570
2441//purpose :
2442//=======================================================================
2443static Standard_Integer OCC7570 (Draw_Interpretor& di, Standard_Integer n, const char** a)
2444{
2445 if (n != 2) {
586db386 2446 di<<"Usage: "<<a[0]<<" invalid number of arguments\n";
c6037065 2447 return 1;
2448 }
2449 TopoDS_Shape in_shape (DBRep::Get (a[1]));
2450 ShapeFix_Wireframe fix_tool (in_shape);
2451 fix_tool.ModeDropSmallEdges () = Standard_True;
2452 fix_tool.SetPrecision (1.e+6);
2453 fix_tool.SetLimitAngle (0.01);
2454 fix_tool.FixSmallEdges ();
2455 TopoDS_Shape new_shape = fix_tool.Shape ();
2456 return 0;
2457}
2458
54a16ee4 2459#include <AIS_TypeFilter.hxx>
5e452c37 2460//=======================================================================
2461//function : OCC25340
2462//purpose :
2463//=======================================================================
54a16ee4 2464static Standard_Integer OCC25340 (Draw_Interpretor& /*theDI*/,
2465 Standard_Integer /*theArgNb*/,
2466 const char** /*theArgVec*/)
2467{
2468 Handle(AIS_InteractiveContext) aCtx = ViewerTest::GetAISContext();
2469 if (aCtx.IsNull())
2470 {
2471 std::cerr << "Error: No opened viewer!\n";
2472 return 1;
2473 }
2474 Handle(AIS_TypeFilter) aFilter = new AIS_TypeFilter (AIS_KOI_Shape);
2475 aCtx->AddFilter (aFilter);
2476 return 0;
2477}
2478
c7b59798 2479//=======================================================================
2480//function : OCC24826
2481//purpose :
2482//=======================================================================
2483class ParallelTest_Saxpy
2484{
2485public:
c7b59798 2486 //! Constructor
6f498847 2487 ParallelTest_Saxpy (const NCollection_Array1<Standard_Real>& theX,
2488 NCollection_Array1<Standard_Real>& theY,
2489 Standard_Real theScalar)
2490 : myX (theX), myY (theY), myScalar (theScalar) {}
2491
2492 int Begin() const { return 0; }
2493 int End() const { return myX.Size(); }
2494
2495 //! Dummy calculation
2496 void operator() (Standard_Integer theIndex) const
c7b59798 2497 {
6f498847 2498 myY(theIndex) = myScalar * myX(theIndex) + myY(theIndex);
c7b59798 2499 }
2500
2501 //! Dummy calculation
6f498847 2502 void operator() (Standard_Integer theThreadIndex, Standard_Integer theIndex) const
c7b59798 2503 {
6f498847 2504 (void )theThreadIndex;
c7b59798 2505 myY(theIndex) = myScalar * myX(theIndex) + myY(theIndex);
2506 }
2507
2508private:
2509 ParallelTest_Saxpy( const ParallelTest_Saxpy& );
2510 ParallelTest_Saxpy& operator =( ParallelTest_Saxpy& );
2511
6f498847 2512protected:
2513 const NCollection_Array1<Standard_Real>& myX;
2514 NCollection_Array1<Standard_Real>& myY;
c7b59798 2515 const Standard_Real myScalar;
2516};
2517
6f498847 2518class ParallelTest_SaxpyBatch : private ParallelTest_Saxpy
2519{
2520public:
2521 static const Standard_Integer THE_BATCH_SIZE = 10000000;
2522
2523 ParallelTest_SaxpyBatch (const NCollection_Array1<Standard_Real>& theX,
2524 NCollection_Array1<Standard_Real>& theY,
2525 Standard_Real theScalar)
2526 : ParallelTest_Saxpy (theX, theY, theScalar),
2527 myNbBatches ((int )Ceiling ((double )theX.Size() / THE_BATCH_SIZE)) {}
2528
2529 int Begin() const { return 0; }
2530 int End() const { return myNbBatches; }
2531
2532 void operator() (int theBatchIndex) const
2533 {
2534 const int aLower = theBatchIndex * THE_BATCH_SIZE;
2535 const int anUpper = Min (aLower + THE_BATCH_SIZE - 1, myX.Upper());
2536 for (int i = aLower; i <= anUpper; ++i)
2537 {
2538 myY(i) = myScalar * myX(i) + myY(i);
2539 }
2540 }
2541
2542 void operator() (int theThreadIndex, int theBatchIndex) const
2543 {
2544 (void )theThreadIndex;
2545 (*this)(theBatchIndex);
2546 }
2547private:
2548 int myNbBatches;
2549};
2550
c7b59798 2551//---------------------------------------------------------------------
2552static Standard_Integer OCC24826(Draw_Interpretor& theDI,
6f498847 2553 Standard_Integer theArgc,
c7b59798 2554 const char** theArgv)
2555{
6f498847 2556 if ( theArgc != 2 )
c7b59798 2557 {
2558 theDI << "Usage: "
2559 << theArgv[0]
2560 << " vec_length\n";
2561 return 1;
2562 }
2563
2564 // Generate data;
2565 Standard_Integer aLength = Draw::Atoi(theArgv[1]);
2566
2567 NCollection_Array1<Standard_Real> aX (0, aLength - 1);
2568 NCollection_Array1<Standard_Real> anY(0, aLength - 1);
c7b59798 2569 for ( Standard_Integer i = 0; i < aLength; ++i )
2570 {
2571 aX(i) = anY(i) = (Standard_Real) i;
2572 }
2573
6f498847 2574 //! Serial processing
2575 NCollection_Array1<Standard_Real> anY1 = anY;
2576 Standard_Real aTimeSeq = 0.0;
2577 {
2578 OSD_Timer aTimer;
2579 aTimer.Start();
2580 const ParallelTest_Saxpy aFunctor (aX, anY1, 1e-6);
2581 for (Standard_Integer i = 0; i < aLength; ++i)
2582 {
2583 aFunctor(i);
2584 }
c7b59798 2585
6f498847 2586 aTimer.Stop();
2587 std::cout << " Processing time (sequential mode): 1x [reference]\n";
2588 aTimeSeq = aTimer.ElapsedTime();
2589 aTimer.Show (std::cout);
2590 }
c7b59798 2591
6f498847 2592 // Parallel processing
2593 for (Standard_Integer aMode = 0; aMode <= 4; ++aMode)
c7b59798 2594 {
6f498847 2595 NCollection_Array1<Standard_Real> anY2 = anY;
2596 OSD_Timer aTimer;
2597 aTimer.Start();
2598 const char* aModeDesc = NULL;
2599 const ParallelTest_Saxpy aFunctor1 (aX, anY2, 1e-6);
2600 const ParallelTest_SaxpyBatch aFunctor2 (aX, anY2, 1e-6);
2601 switch (aMode)
2602 {
2603 case 0:
2604 {
2605 aModeDesc = "OSD_Parallel::For()";
2606 OSD_Parallel::For (aFunctor1.Begin(), aFunctor1.End(), aFunctor1);
2607 break;
2608 }
2609 case 1:
2610 {
2611 aModeDesc = "OSD_ThreadPool::Launcher";
2612 OSD_ThreadPool::Launcher aLauncher (*OSD_ThreadPool::DefaultPool());
2613 aLauncher.Perform (aFunctor1.Begin(), aFunctor1.End(), aFunctor1);
2614 break;
2615 }
2616 case 2:
2617 {
2618 aModeDesc = "OSD_Parallel::Batched()";
2619 OSD_Parallel::For (aFunctor2.Begin(), aFunctor2.End(), aFunctor2);
2620 break;
2621 }
2622 case 3:
2623 {
2624 aModeDesc = "OSD_ThreadPool::Launcher, Batched";
2625 OSD_ThreadPool::Launcher aLauncher (*OSD_ThreadPool::DefaultPool());
2626 aLauncher.Perform (aFunctor2.Begin(), aFunctor2.End(), aFunctor2);
2627 break;
2628 }
2629 case 4:
2630 {
2631 #ifdef HAVE_TBB
2632 aModeDesc = "tbb::parallel_for";
2633 tbb::parallel_for (aFunctor1.Begin(), aFunctor1.End(), aFunctor1);
2634 break;
2635 #else
2636 continue;
2637 #endif
2638 }
2639 }
2640 aTimer.Stop();
2641 std::cout << " " << aModeDesc << ": "
2642 << aTimeSeq / aTimer.ElapsedTime() << "x " << (aTimer.ElapsedTime() < aTimeSeq ? "[boost]" : "[slow-down]") << "\n";
2643 aTimer.Show (std::cout);
2644
2645 for (Standard_Integer i = 0; i < aLength; ++i)
2646 {
2647 if (anY2(i) != anY1(i))
2648 {
2649 std::cerr << "Error: Parallel algorithm produced invalid result!\n";
2650 break;
2651 }
2652 }
c7b59798 2653 }
6f498847 2654 return 0;
2655}
c7b59798 2656
6f498847 2657//! Initializes the given square matrix with values that are generated by the given generator function.
2658template<class GeneratorT> void initRandMatrix (NCollection_Array2<double>& theMat, GeneratorT& theGen)
2659{
2660 for (int i = theMat.LowerRow(); i <= theMat.UpperRow(); ++i)
2661 {
2662 for (int j = theMat.LowerCol(); j <= theMat.UpperCol(); ++j)
2663 {
2664 theMat(i, j) = static_cast<double>(theGen());
2665 }
2666 }
2667}
c7b59798 2668
6f498847 2669//! Compute the product of two square matrices in parallel.
2670class ParallelTest_MatMult
2671{
2672public:
2673 ParallelTest_MatMult (const NCollection_Array2<double>& theMat1,
2674 const NCollection_Array2<double>& theMat2,
2675 NCollection_Array2<double>& theResult, int theSize)
2676 : myMat1 (theMat1), myMat2 (theMat2), myResult (theResult), mySize (theSize) {}
c7b59798 2677
6f498847 2678 int Begin() const { return 0; }
2679 int End() const { return mySize; }
2680
2681 void operator() (int theIndex) const
2682 {
2683 for (int j = 0; j < mySize; ++j)
2684 {
2685 double aTmp = 0;
2686 for (int k = 0; k < mySize; ++k)
2687 {
2688 aTmp += myMat1(theIndex, k) * myMat2(k, j);
2689 }
2690 myResult(theIndex, j) = aTmp;
2691 }
2692 }
2693
2694 void operator() (int theThreadIndex, int theIndex) const
2695 {
2696 (void )theThreadIndex;
2697 (*this)(theIndex);
2698 }
2699
2700private:
2701 ParallelTest_MatMult (const ParallelTest_MatMult& );
2702 ParallelTest_MatMult& operator= (ParallelTest_MatMult& );
2703
2704protected:
2705 const NCollection_Array2<double>& myMat1;
2706 const NCollection_Array2<double>& myMat2;
2707 NCollection_Array2<double>& myResult;
2708 int mySize;
2709};
2710
2711//---------------------------------------------------------------------
2712static Standard_Integer OCC29935(Draw_Interpretor& ,
2713 Standard_Integer theArgc,
2714 const char** theArgv)
2715{
2716 if (theArgc != 2)
2717 {
2718 std::cout << "Syntax error: wrong number of arguments\n";
2719 return 1;
2720 }
2721
2722 // Generate data;
2723 Standard_Integer aSize = Draw::Atoi (theArgv[1]);
2724
2725 opencascade::std::mt19937 aGen (42);
2726 NCollection_Array2<double> aMat1 (0, aSize - 1, 0, aSize - 1);
2727 NCollection_Array2<double> aMat2 (0, aSize - 1, 0, aSize - 1);
2728 NCollection_Array2<double> aMatResRef(0, aSize - 1, 0, aSize - 1);
2729 NCollection_Array2<double> aMatRes (0, aSize - 1, 0, aSize - 1);
2730 initRandMatrix (aMat1, aGen);
2731 initRandMatrix (aMat2, aGen);
2732
2733 //! Serial processing
2734 Standard_Real aTimeSeq = 0.0;
2735 {
2736 OSD_Timer aTimer;
2737 aTimer.Start();
2738 ParallelTest_MatMult aFunctor (aMat1, aMat2, aMatResRef, aSize);
2739 for (int i = aFunctor.Begin(); i < aFunctor.End(); ++i)
2740 {
2741 aFunctor(i);
2742 }
2743
2744 aTimer.Stop();
2745 std::cout << " Processing time (sequential mode): 1x [reference]\n";
2746 aTimeSeq = aTimer.ElapsedTime();
2747 aTimer.Show (std::cout);
2748 }
c7b59798 2749
2750 // Parallel processing
6f498847 2751 for (Standard_Integer aMode = 0; aMode <= 2; ++aMode)
2752 {
2753 aMatRes.Init (0.0);
c7b59798 2754
6f498847 2755 OSD_Timer aTimer;
2756 aTimer.Start();
2757 const char* aModeDesc = NULL;
2758 ParallelTest_MatMult aFunctor1 (aMat1, aMat2, aMatRes, aSize);
2759 switch (aMode)
2760 {
2761 case 0:
2762 {
2763 aModeDesc = "OSD_Parallel::For()";
2764 OSD_Parallel::For (aFunctor1.Begin(), aFunctor1.End(), aFunctor1);
2765 break;
2766 }
2767 case 1:
2768 {
2769 aModeDesc = "OSD_ThreadPool::Launcher";
2770 OSD_ThreadPool::Launcher aLauncher (*OSD_ThreadPool::DefaultPool());
2771 aLauncher.Perform (aFunctor1.Begin(), aFunctor1.End(), aFunctor1);
2772 break;
2773 }
2774 case 2:
2775 {
2776 #ifdef HAVE_TBB
2777 aModeDesc = "tbb::parallel_for";
2778 tbb::parallel_for (aFunctor1.Begin(), aFunctor1.End(), aFunctor1);
2779 break;
2780 #else
2781 continue;
2782 #endif
2783 }
2784 }
2785 aTimer.Stop();
2786 std::cout << " " << aModeDesc << ": "
2787 << aTimeSeq / aTimer.ElapsedTime() << "x " << (aTimer.ElapsedTime() < aTimeSeq ? "[boost]" : "[slow-down]") << "\n";
2788 aTimer.Show (std::cout);
c7b59798 2789
6f498847 2790 for (int i = 0; i < aSize; ++i)
2791 {
2792 for (int j = 0; j < aSize; ++j)
2793 {
2794 if (aMatRes(i, j) != aMatResRef(i, j))
2795 {
2796 std::cerr << "Error: Parallel algorithm produced invalid result!\n";
2797 i = aSize;
2798 break;
2799 }
2800 }
2801 }
2802 }
c7b59798 2803 return 0;
2804}
2805
b6c0b841 2806/*****************************************************************************/
8696d65d 2807
058f130e 2808#include <GeomAPI_IntSS.hxx>
2809//=======================================================================
2810//function : OCC25100
2811//purpose :
2812//=======================================================================
2813static Standard_Integer OCC25100 (Draw_Interpretor& di, Standard_Integer argc, const char ** argv)
2814{
2815 if (argc < 2)
2816 {
2817 di << "the method requires a shape name\n";
2818 return 1;
2819 }
2820
2821 TopoDS_Shape S = DBRep::Get(argv[1]);
2822 if ( S.IsNull() )
2823 {
586db386 2824 di << "Shape is empty\n";
058f130e 2825 return 1;
2826 }
2827
2828 TopExp_Explorer aFaceExp(S, TopAbs_FACE);
2829 const Handle(Geom_Surface)& aSurf = BRep_Tool::Surface(TopoDS::Face(aFaceExp.Current()));
2830
2831 GeomAPI_IntSS anIntersector(aSurf, aSurf, Precision::Confusion());
2832
2833 if (!anIntersector.IsDone())
2834 {
2835 di << "Error. Intersection is not done\n";
2836 return 1;
2837 }
2838
2839 di << "Test complete\n";
2840
2841 return 0;
2842}
2843
5e452c37 2844//=======================================================================
2845//function : OCC25348
2846//purpose :
2847//=======================================================================
2848static Standard_Integer OCC25348 (Draw_Interpretor& theDI,
2849 Standard_Integer /*theArgNb*/,
2850 const char** /*theArgVec*/)
2851{
2852 Handle(NCollection_IncAllocator) anAlloc1;
2853 NCollection_List<int> aList1(anAlloc1);
2854 for (int i=0; i < 10; i++)
2855 {
2856 Handle(NCollection_IncAllocator) anAlloc2;
2857 NCollection_List<int> aList2(anAlloc2);
2858 aList2.Append(i);
2859 aList1.Assign(aList2);
2860 }
2861 theDI << "Test complete\n";
2862 return 0;
2863}
2864
6fb3418e 2865#include <IntCurvesFace_ShapeIntersector.hxx>
2866#include <BRepBndLib.hxx>
2867//=======================================================================
2868//function : OCC25413
2869//purpose :
2870//=======================================================================
2871static Standard_Integer OCC25413 (Draw_Interpretor& di, Standard_Integer narg , const char** a)
2872{
2873 if (narg != 2) {
586db386 2874 di << "Usage: " << a[0] << " invalid number of arguments\n";
6fb3418e 2875 return 1;
2876 }
2877 TopoDS_Shape aShape = DBRep::Get (a[1]);
2878
2879 IntCurvesFace_ShapeIntersector Inter;
2880 Inter.Load(aShape, Precision::Confusion());
2881
2882 Bnd_Box aBndBox;
2883 BRepBndLib::Add(aShape, aBndBox);
2884
2885 gp_Dir aDir(0., 1., 0.);
2886 const int N = 250;
2887 Standard_Real xMin = aBndBox.CornerMin().X();
2888 Standard_Real zMin = aBndBox.CornerMin().Z();
2889 Standard_Real xMax = aBndBox.CornerMax().X();
2890 Standard_Real zMax = aBndBox.CornerMax().Z();
2891 Standard_Real xStep = (xMax - xMin) / N;
2892 Standard_Real zStep = (zMax - zMin) / N;
2893
2894 for (Standard_Real x = xMin; x <= xMax; x += xStep)
2895 for (Standard_Real z = zMin; z <= zMax; z += zStep)
2896 {
2897 gp_Pnt aPoint(x, 0.0, z);
2898 gp_Lin aLine(aPoint, aDir);
2899 Inter.PerformNearest(aLine, -100., 100.);
2900 }
2901 return 0;
2902}
058f130e 2903
c088aa93 2904
2905#include <BOPAlgo_PaveFiller.hxx>
2906//
2907#include <BRepAlgoAPI_BooleanOperation.hxx>
2908#include <BRepAlgoAPI_Common.hxx>
2909#include <BRepAlgoAPI_Fuse.hxx>
2910#include <BRepAlgoAPI_Cut.hxx>
2911#include <BRepAlgoAPI_Section.hxx>
2912//
1155d05a 2913#include <TopExp.hxx>
2914#include <TopTools_MapOfShape.hxx>
c088aa93 2915//=======================================================================
2916//function : OCC25446
2917//purpose :
2918//=======================================================================
2919static Standard_Integer OCC25446 (Draw_Interpretor& theDI,
2920 Standard_Integer argc,
2921 const char ** argv)
2922{
2923 if (argc != 5) {
2924 theDI << "Usage: OCC25446 res b1 b2 op\n";
2925 return 1;
2926 }
2927 //
2928 TopoDS_Shape aS1 = DBRep::Get(argv[2]);
2929 if (aS1.IsNull()) {
2930 theDI << argv[2] << " shape is NULL\n";
2931 return 1;
2932 }
2933 //
2934 TopoDS_Shape aS2 = DBRep::Get(argv[3]);
2935 if (aS2.IsNull()) {
2936 theDI << argv[3] << " shape is NULL\n";
2937 return 1;
2938 }
2939 //
2940 Standard_Integer iOp;
2941 BOPAlgo_Operation aOp;
2942 //
2943 iOp = Draw::Atoi(argv[4]);
2944 if (iOp < 0 || iOp > 4) {
2945 theDI << "Invalid operation type\n";
2946 return 1;
2947 }
2948 aOp = (BOPAlgo_Operation)iOp;
2949 //
2950 Standard_Integer iErr;
1155d05a 2951 TopTools_ListOfShape aLS;
c088aa93 2952 BOPAlgo_PaveFiller aPF;
2953 //
2954 aLS.Append(aS1);
2955 aLS.Append(aS2);
2956 aPF.SetArguments(aLS);
2957 //
2958 aPF.Perform();
33ba8565 2959 iErr = aPF.HasErrors();
c088aa93 2960 if (iErr) {
2961 theDI << "Intersection failed with error status: " << iErr << "\n";
2962 return 1;
2963 }
2964 //
2965 BRepAlgoAPI_BooleanOperation* pBuilder = NULL;
2966 //
2967 switch (aOp) {
2968 case BOPAlgo_COMMON:
2969 pBuilder = new BRepAlgoAPI_Common(aS1, aS2, aPF);
2970 break;
2971 case BOPAlgo_FUSE:
2972 pBuilder = new BRepAlgoAPI_Fuse(aS1, aS2, aPF);
2973 break;
2974 case BOPAlgo_CUT:
2975 pBuilder = new BRepAlgoAPI_Cut (aS1, aS2, aPF);
2976 break;
2977 case BOPAlgo_CUT21:
2978 pBuilder = new BRepAlgoAPI_Cut(aS1, aS2, aPF, Standard_False);
2979 break;
2980 case BOPAlgo_SECTION:
2981 pBuilder = new BRepAlgoAPI_Section(aS1, aS2, aPF);
2982 break;
2983 default:
2984 break;
2985 }
2986 //
33ba8565 2987 iErr = pBuilder->HasErrors();
c088aa93 2988 if (!pBuilder->IsDone()) {
2989 theDI << "BOP failed with error status: " << iErr << "\n";
2990 return 1;
2991 }
2992 //
2993 const TopoDS_Shape& aRes = pBuilder->Shape();
2994 DBRep::Set(argv[1], aRes);
2995 //
1155d05a 2996 TopTools_MapOfShape aMapArgs, aMapShape;
2997 TopTools_MapIteratorOfMapOfShape aIt;
c088aa93 2998 Standard_Boolean bIsDeletedHist, bIsDeletedMap;
2999 TopAbs_ShapeEnum aType;
3000 //
1155d05a 3001 TopExp::MapShapes(aS1, aMapArgs);
3002 TopExp::MapShapes(aS2, aMapArgs);
3003 TopExp::MapShapes(aRes, aMapShape);
c088aa93 3004 //
3005 aIt.Initialize(aMapArgs);
3006 for (; aIt.More(); aIt.Next()) {
3007 const TopoDS_Shape& aS = aIt.Value();
3008 aType = aS.ShapeType();
3009 if (!(aType==TopAbs_EDGE || aType==TopAbs_FACE ||
3010 aType==TopAbs_VERTEX || aType==TopAbs_SOLID)) {
3011 continue;
3012 }
3013 //
3014 bIsDeletedHist = pBuilder->IsDeleted(aS);
3015 bIsDeletedMap = !aMapShape.Contains(aS) &&
3016 (pBuilder->Modified(aS).Extent() == 0);
3017 //
3018 if (bIsDeletedHist != bIsDeletedMap) {
3019 theDI << "Error. Wrong value of IsDeleted flag.\n";
3020 return 1;
3021 }
3022 }
3023 //
3024 theDI << "Test complete\n";
3025 return 0;
3026}
3027
ee6bb37b 3028//====================================================
3029// Auxiliary functor class for the command OCC25545;
3030// it gets access to a vertex with the given index and
3031// checks that X coordinate of the point is equal to index;
3032// if it is not so then a data race is reported.
3033//====================================================
3034struct OCC25545_Functor
3035{
3036 OCC25545_Functor(const std::vector<TopoDS_Shape>& theShapeVec)
3037 : myShapeVec(&theShapeVec),
3038 myIsRaceDetected(0)
3039 {}
3040
3041 void operator()(size_t i) const
3042 {
3043 if (!myIsRaceDetected) {
3044 const TopoDS_Vertex& aV = TopoDS::Vertex (myShapeVec->at(i));
3045 gp_Pnt aP = BRep_Tool::Pnt (aV);
3046 if (aP.X () != static_cast<double> (i)) {
3047 Standard_Atomic_Increment(&myIsRaceDetected);
3048 }
3049 }
3050 }
3051
3052 const std::vector<TopoDS_Shape>* myShapeVec;
3053 mutable volatile int myIsRaceDetected;
3054};
3055
3056//=======================================================================
3057//function : OCC25545
3058//purpose : Tests data race when concurrently accessing TopLoc_Location::Transformation()
3059//=======================================================================
00af0ebb 3060
ee6bb37b 3061static Standard_Integer OCC25545 (Draw_Interpretor& di,
3062 Standard_Integer,
3063 const char **)
3064{
3065 // Place vertices in a vector, giving the i-th vertex the
3066 // transformation that translates it on the vector (i,0,0) from the origin.
00af0ebb 3067 Standard_Integer n = 1000;
ee6bb37b 3068 std::vector<TopoDS_Shape> aShapeVec (n);
3069 std::vector<TopLoc_Location> aLocVec (n);
3070 TopoDS_Shape aShape = BRepBuilderAPI_MakeVertex (gp::Origin ());
3071 aShapeVec[0] = aShape;
00af0ebb 3072 for (Standard_Integer i = 1; i < n; ++i) {
ee6bb37b 3073 gp_Trsf aT;
3074 aT.SetTranslation (gp_Vec (1, 0, 0));
3075 aLocVec[i] = aLocVec[i - 1] * aT;
3076 aShapeVec[i] = aShape.Moved (aLocVec[i]);
3077 }
3078
3079 // Evaluator function will access vertices geometry
3080 // concurrently
3081 OCC25545_Functor aFunc(aShapeVec);
3082
00af0ebb 3083 // concurrently process
3084 OSD_Parallel::For (0, n, aFunc);
3085
ee6bb37b 3086 QVERIFY (!aFunc.myIsRaceDetected);
3087 return 0;
3088}
ee6bb37b 3089
d315303d 3090//=======================================================================
3091//function : OCC25547
3092//purpose :
3093//=======================================================================
3094#include <BRepMesh_GeomTool.hxx>
3095#include <BRepAdaptor_Curve.hxx>
3096#include <Geom_TrimmedCurve.hxx>
3097#include <BRepBuilderAPI_MakeFace.hxx>
3098#include <BRepAdaptor_HSurface.hxx>
3099#include <BRepAdaptor_Surface.hxx>
3100static Standard_Integer OCC25547(
3101 Draw_Interpretor& theDI,
3102 Standard_Integer /*argc*/,
3103 const char ** /*argv*/)
3104{
3105 // The general aim of this test is to prevent linkage errors due to missed
3106 // Standard_EXPORT attribute for static methods.
3107
3108 // However, start checking the main functionality at first.
3109 const Standard_Real aFirstP = 0., aLastP = M_PI;
3110 Handle(Geom_Circle) aCircle = new Geom_Circle(gp_Ax2(gp::Origin(), gp::DZ()), 10);
3111 Handle(Geom_TrimmedCurve) aHalf = new Geom_TrimmedCurve(aCircle, aFirstP, aLastP);
3112 TopoDS_Edge aEdge = BRepBuilderAPI_MakeEdge(aHalf);
3113 BRepAdaptor_Curve aAdaptor(aEdge);
3114 BRepMesh_GeomTool aGeomTool(aAdaptor, aFirstP, aLastP, 0.1, 0.5);
3115
3116 if (aGeomTool.NbPoints() == 0)
3117 {
3118 theDI << "Error. BRepMesh_GeomTool failed to discretize an arc.\n";
3119 return 1;
3120 }
3121
3122 // Test static methods.
3123 TopoDS_Face aFace = BRepBuilderAPI_MakeFace(gp_Pln(gp::Origin(), gp::DZ()));
3124 BRepAdaptor_Surface aSurf(aFace);
3125 Handle(BRepAdaptor_HSurface) aHSurf = new BRepAdaptor_HSurface(aSurf);
3126
3127 gp_Pnt aPnt;
3128 gp_Dir aNormal;
3129 if (!BRepMesh_GeomTool::Normal(aHSurf, 10., 10., aPnt, aNormal))
3130 {
3131 theDI << "Error. BRepMesh_GeomTool failed to take a normal of surface.\n";
3132 return 1;
3133 }
3134
3135 gp_XY aRefPnts[4] = {
3136 gp_XY(-10., -10.), gp_XY(10., 10.),
3137 gp_XY(-10., 10.), gp_XY(10., -10.)
3138 };
3139
3140 gp_Pnt2d aIntPnt;
3141 Standard_Real aParams[2];
3142 BRepMesh_GeomTool::IntFlag aIntFlag = BRepMesh_GeomTool::IntLinLin(
3143 aRefPnts[0], aRefPnts[1], aRefPnts[2], aRefPnts[3],
3144 aIntPnt.ChangeCoord(), aParams);
3145
3146 Standard_Real aDiff = aIntPnt.Distance(gp::Origin2d());
3147 if (aIntFlag != BRepMesh_GeomTool::Cross || aDiff > Precision::PConfusion())
3148 {
3149 theDI << "Error. BRepMesh_GeomTool failed to intersect two lines.\n";
3150 return 1;
3151 }
3152
3153 aIntFlag = BRepMesh_GeomTool::IntSegSeg(
3154 aRefPnts[0], aRefPnts[1], aRefPnts[2], aRefPnts[3],
3155 Standard_False, Standard_False, aIntPnt);
3156
3157 aDiff = aIntPnt.Distance(gp::Origin2d());
3158 if (aIntFlag != BRepMesh_GeomTool::Cross || aDiff > Precision::PConfusion())
3159 {
3160 theDI << "Error. BRepMesh_GeomTool failed to intersect two segments.\n";
3161 return 1;
3162 }
3163
3164
3165 theDI << "Test complete\n";
3166 return 0;
3167}
3168
ec81011f 3169static Standard_Integer OCC26139 (Draw_Interpretor& theDI,
3170 Standard_Integer argc,
3171 const char ** argv)
3172{
3173
3174 Handle(AIS_InteractiveContext) aCtx = ViewerTest::GetAISContext();
3175 if (aCtx.IsNull())
3176 {
3177 theDI << "Use 'vinit' command before " << argv[0] << "\n";
3178 return 1;
3179 }
3180
3181 Standard_Integer aBoxGridSize = 100;
3182 Standard_Integer aCompGridSize = 3;
3183 Standard_Real aBoxSize = 5.0;
3184
3185 if (argc > 1)
3186 {
3187 for (Standard_Integer anArgIdx = 1; anArgIdx < argc; ++anArgIdx)
3188 {
3189 TCollection_AsciiString anArg (argv[anArgIdx]);
3190 anArg.LowerCase();
3191 if (anArg == "-boxgrid")
3192 {
3193 aBoxGridSize = Draw::Atoi (argv[++anArgIdx]);
3194 }
3195 else if (anArg == "-compgrid")
3196 {
3197 aCompGridSize = Draw::Atoi (argv[++anArgIdx]);
3198 }
3199 else if (anArg == "-boxsize")
3200 {
3201 aBoxSize = Draw::Atof (argv[++anArgIdx]);
3202 }
3203 }
3204 }
3205
3206 NCollection_List<Handle(AIS_Shape)> aCompounds;
3207 for (Standard_Integer aCompGridX = 0; aCompGridX < aCompGridSize; ++aCompGridX)
3208 {
3209 for (Standard_Integer aCompGridY = 0; aCompGridY < aCompGridSize; ++aCompGridY)
3210 {
3211 BRep_Builder aBuilder;
3212 TopoDS_Compound aComp;
3213 aBuilder.MakeCompound (aComp);
3214 for (Standard_Integer aBoxGridX = 0; aBoxGridX < aBoxGridSize; ++aBoxGridX)
3215 {
3216 for (Standard_Integer aBoxGridY = 0; aBoxGridY < aBoxGridSize; ++aBoxGridY)
3217 {
3218 BRepPrimAPI_MakeBox aBox (gp_Pnt (aBoxGridX * aBoxSize, aBoxGridY * aBoxSize, 0.0),
3219 aBoxSize, aBoxSize, aBoxSize);
3220 aBuilder.Add (aComp, aBox.Shape());
3221 }
3222 }
3223 gp_Trsf aTrsf;
3224 aTrsf.SetTranslation (gp_Vec (aBoxGridSize * aBoxSize * aCompGridX,
3225 aBoxGridSize * aBoxSize * aCompGridY,
3226 0.0));
3227 TopLoc_Location aLoc (aTrsf);
3228 aComp.Located (aLoc);
3229 aCompounds.Append (new AIS_Shape (aComp));
3230 }
3231 }
3232
3233 OSD_Timer aTimer;
3234 for (NCollection_List<Handle(AIS_Shape)>::Iterator aCompIter (aCompounds); aCompIter.More(); aCompIter.Next())
3235 {
3236 aTimer.Start();
3237 aCtx->Display (aCompIter.Value(), Standard_False);
3238 aTimer.Stop();
3239 theDI << "Display time: " << aTimer.ElapsedTime() << "\n";
3240 aTimer.Reset();
3241 }
3242
3243 aTimer.Reset();
3244 aTimer.Start();
3245 for (NCollection_List<Handle(AIS_Shape)>::Iterator aCompIter (aCompounds); aCompIter.More(); aCompIter.Next())
3246 {
3247 aCtx->Remove (aCompIter.Value(), Standard_False);
3248 }
3249 aTimer.Stop();
3250 theDI << "Remove time: " << aTimer.ElapsedTime() << "\n";
3251
3252 return 0;
3253}
3254
2bfe59b6 3255#include <TColStd_DataMapIteratorOfDataMapOfIntegerInteger.hxx>
3256#include <TColStd_DataMapOfIntegerInteger.hxx>
3257#include <OSD.hxx>
3258#include <ShapeFix_Wire.hxx>
3259#include <ShapeExtend_Status.hxx>
57c28b61 3260#ifdef _WIN32
2bfe59b6 3261#define EXCEPTION ...
3262#else
a738b534 3263#define EXCEPTION Standard_Failure const&
2bfe59b6 3264#endif
3265
3266static ShapeExtend_Status getStatusGap(const Handle(ShapeFix_Wire)& theFix,
3267 const Standard_Boolean theIs3d)
3268{
3269 for (Standard_Integer i=ShapeExtend_OK; i<=ShapeExtend_FAIL; i++)
3270 {
3271 Standard_Boolean isFound;
3272 if (theIs3d)
3273 isFound = theFix->StatusGaps3d( (ShapeExtend_Status) i );
3274 else
3275 isFound = theFix->StatusGaps2d( (ShapeExtend_Status) i );
3276 if (isFound) return ShapeExtend_Status(i);
3277 }
3278 return ShapeExtend_OK;
3279}
3280
3281//===================
3282//function : OCC24881
3283//purpose :
3284//===================
3285static Standard_Integer OCC24881 (Draw_Interpretor& di, Standard_Integer narg , const char** a)
3286{
3287 if (narg < 2) {
586db386 3288 di<<"Usage: "<<a[0]<<" invalid number of arguments\n";
2bfe59b6 3289 return 1;
3290 }
3291// cout <<"FileName1: " << argv[1] <<endl;
3292
3293 TopoDS_Shape aShape = DBRep::Get (a[1]);
3294
3295 OSD::SetSignal();
3296 Handle(ShapeFix_Wire) aWireFix = new ShapeFix_Wire;
3297
3298 // map FixStatus - NbSuchStatuses
3299 TColStd_DataMapOfIntegerInteger aStatusNbDMap;
3300 Standard_Integer nbFixed=0, nbOk=0;
3301
3302//Begin: STEP 7
3303 ShapeExtend_Status aStatus=ShapeExtend_OK;
3304 try {
3305 TopExp_Explorer aFaceExplorer(aShape, TopAbs_FACE);
3306 for (; aFaceExplorer.More(); aFaceExplorer.Next())
3307 {
3308 TopoDS_Shape aFace = aFaceExplorer.Current();
3309 // loop on wires
3310 TopoDS_Iterator aWireItr(aFace);
3311 for (; aWireItr.More(); aWireItr.Next() )
3312 {
3313 Standard_Boolean wasOk = Standard_False;
3314 TopoDS_Wire aSrcWire = TopoDS::Wire(aWireItr.Value());
3315
3316 aWireFix->Load (aSrcWire);
3317 aWireFix->SetFace (TopoDS::Face(aFace));
3318 aWireFix->FixReorder(); //correct order is a prerequisite
3319 // fix 3d
3320 if (!aWireFix->FixGaps3d())
3321 {
3322 // not fixed, why?
3323 aStatus = getStatusGap(aWireFix, Standard_True);
3324 if (aStatus == ShapeExtend_OK)
3325 wasOk = Standard_True;
3326 else
3327 {
3328 // keep 3d fail status
3329 if (aStatusNbDMap.IsBound (aStatus))
3330 aStatusNbDMap(aStatus)++;
3331 else
3332 aStatusNbDMap.Bind(aStatus,1);
3333 continue;
3334 }
3335 }
3336
3337 // fix 2d
3338 if (aWireFix->FixGaps2d())
3339 nbFixed++;
3340 else
3341 {
3342 aStatus = getStatusGap(aWireFix, Standard_False);
3343 if (aStatus == ShapeExtend_OK)
3344 {
3345 if (wasOk)
3346 {
3347 nbOk++;
3348 continue;
3349 }
3350 else
3351 nbFixed++;
3352 }
3353 else
3354 {
3355 // keep 2d fail status
3356 Standard_Integer aStatus2d = aStatus + ShapeExtend_FAIL;
3357 if (aStatusNbDMap.IsBound (aStatus2d))
3358 aStatusNbDMap(aStatus2d)++;
3359 else
3360 aStatusNbDMap.Bind(aStatus2d,1);
3361 continue;
3362 }
3363 }
3364 }
3365 }
3366//End: STEP 7
3367 } catch (EXCEPTION) {
3368 di << "Exception is raised = " <<aStatus << "\n";
3369 return 1;
3370
3371 }
3372// report what is done
3373
3374 if (nbFixed)
3375 {
3376 di <<"Fix_FillGaps_Fixed: nbFixed = "<<nbFixed <<"\n";
3377
3378 }
3379 if (nbOk)
3380 {
586db386 3381 di << "Fix_FillGaps_NothingToDo\n";
2bfe59b6 3382
3383 }
3384 TColStd_DataMapIteratorOfDataMapOfIntegerInteger aStatusItr(aStatusNbDMap);
3385 for (; aStatusItr.More(); aStatusItr.Next())
3386 {
3387 switch ((ShapeExtend_Status) aStatusItr.Key())
3388 {
3389 // treat 3d status
3390 case ShapeExtend_FAIL1:
3391 di <<"Fix_FillGaps_3dNoCurveFail, nb failed = ";
3392 break;
3393 case ShapeExtend_FAIL2:
3394 di <<"Fix_FillGaps_3dSomeGapsFail, nb failed = ";
3395 break;
3396 default:
3397 // treat 2d status
3398 switch ((ShapeExtend_Status) (aStatusItr.Key() - ShapeExtend_FAIL))
3399 {
3400 case ShapeExtend_FAIL1:
3401 di <<"Fix_FillGaps_2dNoPCurveFail, nb failed = ";
3402 break;
3403 case ShapeExtend_FAIL2:
3404 di <<"Fix_FillGaps_2dSomeGapsFail, nb failed = ";
3405 break;
3406 default:
3407 break;
3408 }
3409 }
3410 di <<aStatusItr.Value()<< "\n";
3411 }
3412 di << ("__________________________________") <<"\n";
3413
3414 return 0;
3415}
3416
e11850fd 3417//=======================================================================
3418//function : OCC26284
3419//purpose :
3420//=======================================================================
3421static Standard_Integer OCC26284 (Draw_Interpretor& theDI, Standard_Integer theArgNb, const char** theArgVec)
3422{
3423 if (theArgNb != 1)
3424 {
3425 std::cerr << "Error: wrong number of arguments! See usage:\n";
3426 theDI.PrintHelp (theArgVec[0]);
3427 return 1;
3428 }
3429
3430 Handle(AIS_InteractiveContext) anAISContext = ViewerTest::GetAISContext();
3431 if (anAISContext.IsNull())
3432 {
3433 std::cerr << "Error: no active view. Please call vinit.\n";
3434 return 1;
3435 }
3436
3437 BRepPrimAPI_MakeSphere aSphereBuilder (gp_Pnt (0.0, 0.0, 0.0), 1.0);
3438 Handle(AIS_Shape) aSphere = new AIS_Shape (aSphereBuilder.Shape());
0577ae8c 3439 anAISContext->Display (aSphere, Standard_False);
e11850fd 3440 for (Standard_Integer aChildIdx = 0; aChildIdx < 5; ++aChildIdx)
3441 {
3442 BRepPrimAPI_MakeSphere aBuilder (gp_Pnt (1.0 + aChildIdx, 1.0 + aChildIdx, 1.0 + aChildIdx), 1.0);
3443 Handle(AIS_Shape) aChild = new AIS_Shape (aBuilder.Shape());
3444 aSphere->AddChild (aChild);
0577ae8c 3445 anAISContext->Display (aChild, Standard_False);
e11850fd 3446 }
3447
3448 anAISContext->RecomputeSelectionOnly (aSphere);
0577ae8c 3449 anAISContext->UpdateCurrentViewer();
e11850fd 3450
3451 return 0;
3452}
3453
9bf3177f 3454#include <IntTools_Context.hxx>
3455#include <GeomAPI_ProjectPointOnSurf.hxx>
3456
3457//=======================================================================
3458//function : xprojponf
3459//purpose :
3460//=======================================================================
3461Standard_Integer xprojponf (Draw_Interpretor& di,
3462 Standard_Integer n,
3463 const char** a)
3464{
3465 if (n!=3) {
3466 di<<" use xprojponf p f \n";
3467 return 0;
3468 }
3469 //
3470 gp_Pnt aP, aPS;
3471 TopoDS_Shape aS;
3472 TopoDS_Face aF;
3473 Handle(IntTools_Context) aCtx;
3474 //
3475 DrawTrSurf::GetPoint(a[1], aP);
3476 aS=DBRep::Get(a[2]);
3477 //
3478 if (aS.IsNull()) {
3479 di<<" null shape is not allowed\n";
3480 return 0;
3481 }
3482 //
3483 if (aS.ShapeType()!=TopAbs_FACE) {
3484 di << a[2] << " not a face\n";
3485 return 0;
3486 }
3487 //
3488 aCtx=new IntTools_Context;
3489 //
3490 aF=TopoDS::Face(aS);
3491 GeomAPI_ProjectPointOnSurf& aPPS=aCtx->ProjPS(aF);
3492 //
3493 aPPS.Perform(aP);
3494 if (!aPPS.IsDone()) {
3495 di<<" projection failed\n";
3496 return 0;
3497 }
3498 //
3499 aPS=aPPS.NearestPoint();
3500 di<< " point px " << aPS.X() << " " << aPS.Y() << " " << aPS.Z() << "\n";
3501 //
3502 return 0;
3503}
3504
ec26bf88 3505//=======================================================================
3506//function : OCC25547
3507//purpose :
3508//=======================================================================
3509#include <BRepMesh_CircleTool.hxx>
ec357c5c 3510#include <SelectMgr_EntityOwner.hxx>
ec26bf88 3511
3512static Standard_Boolean inspect_point(const gp_XY& thePoint,
3513 const gp_XY& theCenter,
3514 const Standard_Real theRadius)
3515{
3516 static Standard_Real aPrecision = Precision::PConfusion();
3517 static Standard_Real aSqPrecision = aPrecision * aPrecision;
3518 const gp_XY aDistVec = thePoint - theCenter;
3519 if (aDistVec.SquareModulus() - (theRadius * theRadius) < aSqPrecision)
3520 return Standard_True;
3521 else
3522 return Standard_False;
3523}
3524
3525static Standard_Integer OCC24923(
3526 Draw_Interpretor& theDI,
3527 Standard_Integer argc,
3528 const char ** argv)
3529{
3530 srand(static_cast<unsigned int>(time(NULL)));
3531
3532 const Standard_Real aMaxDeviation = (argc > 1) ? Draw::Atof(argv[1]) : 0.01;
3533 const Standard_Integer aPointsNb = 10000000;
3534 const Standard_Real aMinAngle = 5 * M_PI / 180.;
3535 static Standard_Real aSqPrecision = Precision::PConfusion() * Precision::PConfusion();
3536
3537 Standard_Integer aFailedNb = 0;
3538 for (Standard_Integer i = 0; i < aPointsNb; ++i)
3539 {
3540 gp_XY p[3];
3541 for (Standard_Integer j = 0; j < 3; ++j)
3542 p[j].SetCoord(((Standard_Real)rand())/RAND_MAX, ((Standard_Real)rand())/RAND_MAX);
3543
3544 // Check that points do not compose degenerated triangle.
3545 gp_XY aVec1 = p[1] - p[0];
3546 gp_XY aVec2 = p[2] - p[0];
3547 if (aVec1.SquareModulus() > aSqPrecision &&
3548 aVec2.SquareModulus() > aSqPrecision &&
3549 (aVec1 ^ aVec2) > aMinAngle)
3550 {
3551 gp_XY aCenter;
3552 Standard_Real aRadius;
3553 if (BRepMesh_CircleTool::MakeCircle(p[0], p[1], p[2], aCenter, aRadius))
3554 {
3555 if (!inspect_point(p[0], aCenter, aRadius) ||
3556 !inspect_point(p[1], aCenter, aRadius) ||
3557 !inspect_point(p[2], aCenter, aRadius))
3558 {
3559 /* theDI << "Missed: " <<
3560 "p1=(" << p1.X() << ", " << p1.Y() << "), " <<
3561 "p2=(" << p2.X() << ", " << p2.Y() << "), " <<
3562 "p3=(" << p3.X() << ", " << p3.Y() << "), " <<
3563 "c=(" << aCenter.X() << ", " << aCenter.Y() << "), " <<
3564 "r=" << aRadius << "\n";*/
3565
3566 ++aFailedNb;
3567 }
3568
3569 continue;
3570 }
3571 }
3572
3573 // Ensure that aPointsNb suitable for tests are generated
3574 --i;
3575 }
3576
3577 const Standard_Real aDeviation =
3578 1. - (Standard_Real)(aPointsNb - aFailedNb) / (Standard_Real)aPointsNb;
3579
0e443e13 3580 theDI << "Number of incorrect cases: " << aFailedNb << " (Total " << aPointsNb << ")\n";
ec26bf88 3581 if (aDeviation > aMaxDeviation)
3582 {
3583 theDI << "Failed. Number of incorrect results is too huge: " <<
586db386 3584 aDeviation * 100 << "% (Max " << aMaxDeviation * 100 << "%)\n";
ec26bf88 3585 return 1;
3586 }
3587
3588 theDI << "Deviation of incorrect results is: " <<
586db386 3589 aDeviation * 100 << "% (Max " << aMaxDeviation * 100 << "%)\n";
ec26bf88 3590 theDI << "Test completed\n";
3591 return 0;
3592}
3593
4f5ad416 3594//=======================================================================
3595//function : OCC25574
3596//purpose : check implementation of Euler angles in gp_Quaternion
3597//=======================================================================
3598
3599static Standard_Integer OCC25574 (Draw_Interpretor& theDI, Standard_Integer /*argc*/, const char** /*argv*/)
3600{
3601 Standard_Boolean isTestOk = Standard_True;
3602
3603 // Check consistency of Get and Set operations for Euler angles
3604 gp_Quaternion aQuat;
3605 aQuat.Set(0.06766916507860499, 0.21848101129786085, 0.11994599260380681,0.9660744746954637);
3606 Standard_Real alpha,beta,gamma;
3607 gp_Mat aRinv = aQuat.GetMatrix().Inverted();
3608 gp_Mat aI;
3609 aI.SetIdentity();
3610 const char* names[] = { "Extrinsic_XYZ", "Extrinsic_XZY", "Extrinsic_YZX", "Extrinsic_YXZ", "Extrinsic_ZXY", "Extrinsic_ZYX",
3611 "Intrinsic_XYZ", "Intrinsic_XZY", "Intrinsic_YZX", "Intrinsic_YXZ", "Intrinsic_ZXY", "Intrinsic_ZYX",
3612 "Extrinsic_XYX", "Extrinsic_XZX", "Extrinsic_YZY", "Extrinsic_YXY", "Extrinsic_ZYZ", "Extrinsic_ZXZ",
3613 "Intrinsic_XYX", "Intrinsic_XZX", "Intrinsic_YZY", "Intrinsic_YXY", "Intrinsic_ZXZ", "Intrinsic_ZYZ" };
3614 for (int i = gp_Extrinsic_XYZ; i <= gp_Intrinsic_ZYZ; i++)
3615 {
3616 aQuat.GetEulerAngles (gp_EulerSequence(i), alpha, beta, gamma);
3617
3618 gp_Quaternion aQuat2;
3619 aQuat2.SetEulerAngles (gp_EulerSequence(i), alpha, beta, gamma);
3620
3621 gp_Mat aR = aQuat2.GetMatrix();
3622 gp_Mat aDiff = aR * aRinv - aI;
3623 if (aDiff.Determinant() > 1e-5)
3624 {
3625 theDI << "Error: Euler angles conversion incorrect for sequence " << names[i - gp_Extrinsic_XYZ] << "\n";
3626 isTestOk = Standard_False;
3627 }
3628 }
3629
3630 // Check conversion between intrinsic and extrinsic rotations
3631 // Any extrinsic rotation is equivalent to an intrinsic rotation
3632 // by the same angles but with inverted order of elemental rotations, and vice versa
3633 // For instance:
3634 // Extrinsic_XZY = Incrinsic_XZY
3635 // R = X(A)Z(B)Y(G) --> R = Y(G)Z(B)X(A)
3636 alpha = 0.1517461713131;
3637 beta = 1.5162198410141;
3638 gamma = 1.9313156236541;
3639 Standard_Real alpha2, beta2, gamma2;
3640 gp_EulerSequence pairs[][2] = { {gp_Extrinsic_XYZ, gp_Intrinsic_ZYX},
3641 {gp_Extrinsic_XZY, gp_Intrinsic_YZX},
3642 {gp_Extrinsic_YZX, gp_Intrinsic_XZY},
3643 {gp_Extrinsic_YXZ, gp_Intrinsic_ZXY},
3644 {gp_Extrinsic_ZXY, gp_Intrinsic_YXZ},
3645 {gp_Extrinsic_ZYX, gp_Intrinsic_XYZ} };
3646 for (int i = 0; i < 6; i++)
3647 {
3648 aQuat.SetEulerAngles(pairs[i][0], alpha, beta, gamma);
3649 aQuat.GetEulerAngles(pairs[i][1], gamma2, beta2, alpha2);
3650
3651 if (Abs(alpha - alpha2) > 1e-5 || Abs(beta - beta2) > 1e-5 || Abs(gamma - gamma2) > 1e-5)
3652 {
3653 theDI << "Error: intrinsic and extrinsic conversion incorrect for sequence " << names[i] << "\n";
3654 isTestOk = Standard_False;
3655 }
3656 }
3657
3658 // Check correspondence of enumeration and actual rotation it defines,
3659 // by rotation by one axis and checking that it does not change a point on that axis
3660 for (int i = gp_Extrinsic_XYZ; i <= gp_Intrinsic_ZYZ; i++)
3661 {
3662 // Iterate over rotations R(A)R(B)R(G) for each Euler angle Alpha, Beta, Gamma
3663 // There are three ordered axes corresponding to three rotations.
3664 // Each rotation applyed with current angle around current axis.
3665 for (int j=0; j < 3; j++)
3666 {
3667 // note that current axis index is obtained by parsing of enumeration name!
3668 int anAxis = names[i - gp_Extrinsic_XYZ][10 + j] - 'X';
3669 Standard_ASSERT_RETURN (anAxis >=0 && anAxis <= 2, "Incorrect parsing of enumeration name", 1);
3670
3671 // Set 90 degrees to current Euler angle
3672 double anAngles[3] = {0., 0., 0.};
3673 anAngles[j] = 0.5 * M_PI;
3674
3675 gp_Quaternion q2;
3676 q2.SetEulerAngles (gp_EulerSequence(i), anAngles[0], anAngles[1], anAngles[2]);
3677
3678 // Set point on axis corresponding to current rotation
3679 // We will apply rotation around this axis
3680 gp_XYZ v (0., 0., 0.);
3681 v.SetCoord (anAxis + 1, 1.);
3682
3683 // Apply rotation to point
3684 gp_Trsf aT;
3685 aT.SetRotation (q2);
3686 gp_XYZ v2 = v;
3687 aT.Transforms (v2);
3688
3689 // Check that point is still on origin position
3690 if ((v - v2).SquareModulus() > Precision::SquareConfusion())
3691 {
3692 // avoid reporting small coordinates
3693 for (int k=1; k <= 3; k++)
3694 if (Abs (v2.Coord(k)) < Precision::Confusion())
3695 v2.SetCoord (k, 0.);
3696
3697 isTestOk = Standard_False;
3698 theDI << "Error: Euler sequence " << names[i - gp_Extrinsic_XYZ] << " is incorrect:\n";
3699 theDI << "rotating by angle 90 deg around " << (anAxis == 0 ? "X" : anAxis == 1 ? "Y" : "Z") <<
3700 " converts vector (" << v.X() << ", " << v.Y() << ", " << v.Z() << ") to ("
3701 << v2.X() << ", " << v2.Y() << ", " << v2.Z() << ")\n";
3702 }
3703 }
3704 }
3705
3706 // Check correspondence of enumeration and actual rotation it defines,
3707 // by comparing cumulative rotation matrix with sequence of rotations by axes
3708 const Standard_Real anAngle[3] = { 0.1, 0.2, 0.3 };
3709 for (int i = gp_Extrinsic_XYZ; i <= gp_Intrinsic_ZYZ; i++)
3710 {
3711 // Sequence of rotations
3712 gp_Mat aR[3];
3713 for (int j=0; j < 3; j++)
3714 {
3715 // note that current axis index is obtained by parsing of enumeration name!
3716 int anAxis = names[i - gp_Extrinsic_XYZ][10 + j] - 'X';
3717 Standard_ASSERT_RETURN (anAxis >=0 && anAxis <= 2, "Incorrect parsing of enumeration name", 1);
3718
3719 // Set point on axis corresponding to current rotation
3720 // We will apply rotation around this axis
3721 gp_XYZ v (0., 0., 0.);
3722 v.SetCoord (anAxis + 1, 1.);
3723 aR[j].SetRotation (v, anAngle[j]);
3724 }
3725
3726 // construct cumulative transformation (differently for extrinsic and intrinsic rotations);
3727 // note that we parse first symbol of the enum name to identify its type
3728 gp_Mat aRot;
3729 if (names[i - gp_Extrinsic_XYZ][0] == 'E') // extrinsic
3730 {
3731 aRot = aR[2] * aR[1] * aR[0];
3732 }
3733 else // intrinsic
3734 {
3735 aRot = aR[0] * aR[1] * aR[2];
3736 }
3737
3738 // set the same angles in quaternion
4f5ad416 3739 aQuat.SetEulerAngles (gp_EulerSequence(i), anAngle[0], anAngle[1], anAngle[2]);
3740
3741 gp_Mat aRQ = aQuat.GetMatrix();
3742 gp_Mat aDiff = aRQ * aRot.Inverted() - aI;
3743 if (aDiff.Determinant() > 1e-5)
3744 {
3745 theDI << "Error: Euler angles conversion does not correspond to sequential rotations for " << names[i - gp_Extrinsic_XYZ] << "\n";
3746 isTestOk = Standard_False;
3747 }
3748 }
3749
3750 // similar checkfor YawPitchRoll sequence as defined in description of #25574
3751 {
3752 // Start with world coordinate system
3753 gp_Ax2 world;
3754
3755 // Perform three rotations using the yaw-pitch-roll convention.
3756 // This means: rotate around the original z axis with angle alpha,
3757 // then rotate around the new y axis with angle beta,
3758 // then rotate around the new x axis with angle gamma.
3759 alpha = 0.0 / 180.0 * M_PI;
3760 beta = -35.0 / 180.0 * M_PI;
3761 gamma = 90.0 / 180.0 * M_PI;
3762
3763 const gp_Quaternion rotationZ(world.Direction(), alpha);
3764 const gp_Vec rotY = rotationZ.Multiply(world.YDirection());
3765 const gp_Vec rotX = rotationZ.Multiply(world.XDirection());
3766
3767 const gp_Quaternion rotationY(rotY, beta);
3768 const gp_Vec rotZ = rotationY.Multiply(world.Direction());
3769 const gp_Vec rotRotX = rotationY.Multiply(rotX);
3770
3771 const gp_Quaternion rotationX(rotRotX, gamma);
3772 const gp_Vec rotRotZ = rotationX.Multiply(rotZ);
3773
3774 gp_Ax2 result(gp_Pnt(0.0, 0.0, 0.0), rotRotZ, rotRotX);
3775
3776 // Now compute the Euler angles
3777 gp_Trsf transformation;
3778 transformation.SetDisplacement(gp_Ax2(), result);
3779
3780 Standard_Real computedAlpha;
3781 Standard_Real computedBeta;
3782 Standard_Real computedGamma;
3783
3784 transformation.GetRotation().GetEulerAngles(gp_YawPitchRoll, computedAlpha, computedBeta, computedGamma);
3785
3786 // We expect now to get the same angles as we have used for our rotations
3787 if (Abs(alpha - computedAlpha) > 1e-5 || Abs(beta - computedBeta) > 1e-5 || Abs(gamma - computedGamma) > 1e-5)
3788 {
3789 theDI << "Error: unexpected values of Euler angles for YawPitchRoll sequence:\n";
3790 theDI << "alpha: " << alpha / M_PI * 180.0 << " and computed alpha: "
3791 << computedAlpha / M_PI * 180.0 << "\n";
3792 theDI << "beta: " << beta / M_PI * 180.0 << " and computed beta: "
3793 << computedBeta / M_PI * 180.0 << "\n";
3794 theDI << "gamma: " << gamma / M_PI * 180.0 << " and computed gamma: "
3795 << computedGamma / M_PI * 180.0 << "\n";
3796 isTestOk = Standard_False;
3797 }
3798 }
3799
3800 // test from #25946
3801 {
3802 gp_Quaternion q;
3803 q.Set(0.06766916507860499, 0.21848101129786085, 0.11994599260380681,0.9660744746954637);
3804
3805 q.GetEulerAngles(gp_Intrinsic_ZYX, alpha,beta, gamma);
4f5ad416 3806 q.GetEulerAngles(gp_Extrinsic_XYZ, alpha2,beta2,gamma2);
3807
3808 // gp_Intrinsic_ZYX and gp_Extrinsic_XYZ should produce the same values of angles but in opposite order
3809 if (Abs(alpha - gamma2) > 1e-5 || Abs(beta - beta2) > 1e-5 || Abs(gamma - alpha2) > 1e-5)
3810 {
3811 theDI << "Error: Euler angles computed for gp_Intrinsic_ZYX and gp_Extrinsic_XYZ do not match:\n";
3812 theDI << "alpha: " << alpha / M_PI * 180.0 << " and " << alpha2 / M_PI * 180.0 << "\n";
3813 theDI << "beta: " << beta / M_PI * 180.0 << " and " << beta2 / M_PI * 180.0 << "\n";
3814 theDI << "gamma: " << gamma / M_PI * 180.0 << " and " << gamma2 / M_PI * 180.0 << "\n";
3815 isTestOk = Standard_False;
3816 }
3817 }
3818
3819 theDI << (isTestOk ? "Test completed" : "Test failed") << "\n";
3820 return 0;
3821}
3822
3ceb4c3c 3823#include <TColGeom_Array1OfBSplineCurve.hxx>
3824#include <TColStd_Array1OfReal.hxx>
3825#include <TColGeom_HArray1OfBSplineCurve.hxx>
3826#include <GeomConvert.hxx>
3827
3828//=======================================================================
3829//function : OCC26446
3830//purpose :
3831//=======================================================================
3832Standard_Integer OCC26446 (Draw_Interpretor& di,
3833 Standard_Integer n,
3834 const char** a)
3835{
3836 if (n != 4) {
586db386 3837 di << "Usage: OCC26446 r c1 c2\n";
3ceb4c3c 3838 return 1;
3839 }
3840
3841 Handle(Geom_BSplineCurve) aCurve1 =
3842 Handle(Geom_BSplineCurve)::DownCast(DrawTrSurf::GetCurve(a[2]));
3843 Handle(Geom_BSplineCurve) aCurve2 =
3844 Handle(Geom_BSplineCurve)::DownCast(DrawTrSurf::GetCurve(a[3]));
3845
3846 if (aCurve1.IsNull()) {
586db386 3847 di << a[2] << " is not a BSpline curve\n";
3ceb4c3c 3848 return 1;
3849 }
3850
3851 if (aCurve2.IsNull()) {
586db386 3852 di << a[3] << " is not a BSpline curve\n";
3ceb4c3c 3853 return 1;
3854 }
3855
3856 TColGeom_Array1OfBSplineCurve aCurves (0, 1);
3857 TColStd_Array1OfReal aTolerances (0, 0);
3858 Standard_Real aTolConf = 1.e-3;
3859 Standard_Real aTolClosure = Precision::Confusion();
3860 Handle(TColGeom_HArray1OfBSplineCurve) aConcatCurves;
3861 Handle(TColStd_HArray1OfInteger) anIndices;
3862
3863 aCurves.SetValue(0, aCurve1);
3864 aCurves.SetValue(1, aCurve2);
3865 aTolerances.SetValue(0, aTolConf);
3866
4a361058 3867 Standard_Boolean closed_flag = Standard_False;
3ceb4c3c 3868 GeomConvert::ConcatC1(aCurves,
3869 aTolerances,
3870 anIndices,
3871 aConcatCurves,
4a361058 3872 closed_flag,
3ceb4c3c 3873 aTolClosure);
3874
3875 Handle(Geom_BSplineCurve) aResult =
3876 aConcatCurves->Value(aConcatCurves->Lower());
3877
3878 DrawTrSurf::Set(a[1], aResult);
3879 return 0;
3880}
3881
fac9298e 3882static Standard_Integer OCC26448 (Draw_Interpretor& theDI, Standard_Integer, const char **)
3883{
3884 TColStd_SequenceOfReal aSeq1, aSeq2;
3885 aSeq1.Append(11.);
3886 aSeq1.Prepend (aSeq2);
3887 theDI << "TCollection: 11 -> " << aSeq1.First() << "\n";
3888
3889 NCollection_Sequence<Standard_Real> nSeq1, nSeq2;
3890 nSeq1.Append(11.);
3891 nSeq1.Prepend (nSeq2);
3892 theDI << "NCollection: 11 -> " << nSeq1.First() << "\n";
3893
3894 theDI << "OK";
3895 return 0;
3896}
3897
71316196 3898//=======================================================================
3899//function : OCC26407
3900//purpose :
3901//=======================================================================
3902#include <BRepBuilderAPI_MakeWire.hxx>
3903#include <BRepBuilderAPI_MakeEdge.hxx>
3904#include <BRepMesh_IncrementalMesh.hxx>
3905#include <TCollection_AsciiString.hxx>
3906static Standard_Integer OCC26407 (Draw_Interpretor& theDI, Standard_Integer theArgNb, const char** theArgVec)
3907{
3908 if (theArgNb != 2)
3909 {
3910 std::cerr << "Error: wrong number of arguments! See usage:\n";
3911 theDI.PrintHelp (theArgVec[0]);
3912 return 1;
3913 }
3914
3915 // Construct vertices.
3916 std::vector<TopoDS_Vertex> wire_vertices;
3917 wire_vertices.push_back(BRepBuilderAPI_MakeVertex(gp_Pnt(587.90000000000009094947, 40.6758179230516248026106, 88.5)));
3918 wire_vertices.push_back(BRepBuilderAPI_MakeVertex(gp_Pnt(807.824182076948432040808, 260.599999999999965893949, 88.5)));
3919 wire_vertices.push_back(BRepBuilderAPI_MakeVertex(gp_Pnt(644.174182076948454778176, 424.249999999999943156581, 88.5000000000000142108547)));
3920 wire_vertices.push_back(BRepBuilderAPI_MakeVertex(gp_Pnt(629.978025792618950617907, 424.25, 88.5)));
3921 wire_vertices.push_back(BRepBuilderAPI_MakeVertex(gp_Pnt(793.628025792618700506864, 260.599999999999852207111, 88.5)));
3922 wire_vertices.push_back(BRepBuilderAPI_MakeVertex(gp_Pnt(587.900000000000204636308, 54.8719742073813492311274, 88.5)));
3923 wire_vertices.push_back(BRepBuilderAPI_MakeVertex(gp_Pnt(218.521974207381418864315, 424.250000000000056843419, 88.5)));
3924 wire_vertices.push_back(BRepBuilderAPI_MakeVertex(gp_Pnt(204.325817923051886282337, 424.249999999999943156581, 88.5)));
3925
3926 // Construct wire.
3927 BRepBuilderAPI_MakeWire wire_builder;
3928 for (size_t i = 0; i < wire_vertices.size(); i++)
3929 {
3930 const TopoDS_Vertex &v = wire_vertices[i];
3931 const TopoDS_Vertex &w = wire_vertices[(i+1) % wire_vertices.size()];
3932
3933 wire_builder.Add(BRepBuilderAPI_MakeEdge(v, w));
3934 }
3935
3936 // Create face and triangulate it.
3937 // Construct face.
3938 gp_Pnt v0 = BRep_Tool::Pnt(wire_vertices[0]);
3939 gp_Pnt v1 = BRep_Tool::Pnt(wire_vertices[1]);
3940 gp_Pnt v2 = BRep_Tool::Pnt(wire_vertices[wire_vertices.size() - 1]);
3941
3942 gp_Vec face_normal = gp_Vec(v0, v1).Crossed(gp_Vec(v0, v2));
3943
3944 TopoDS_Face face = BRepBuilderAPI_MakeFace(gp_Pln(v0, face_normal), wire_builder);
3945 BRepMesh_IncrementalMesh m(face, 1e-7);
3946
3947 if (m.GetStatusFlags() != 0)
3948 {
3949 theDI << "Failed. Status for face constructed from vertices: " << m.GetStatusFlags() << "\n";
3950 return 1;
3951 }
3952 DBRep::Set(theArgVec[1], face);
3953 char buf[256];
3954 sprintf(buf, "isos %s 0", theArgVec[1]);
3955 theDI.Eval(buf);
3956
3957 sprintf(buf, "triangles %s", theArgVec[1]);
3958 theDI.Eval(buf);
3959
3960 theDI.Eval("smallview; fit");
3961
3962 theDI << "Test completed\n";
3963 return 0;
3964}
3965
db6c6404 3966//=======================================================================
3967//function : OCC26485
3968//purpose :
3969//=======================================================================
3970#include <Poly.hxx>
3971static Standard_Integer OCC26485 (Draw_Interpretor& theDI, Standard_Integer theArgNb, const char** theArgVec)
3972{
3973 if (theArgNb != 2)
3974 {
3975 std::cerr << "Error: wrong number of arguments! See usage:\n";
3976 theDI.PrintHelp (theArgVec[0]);
3977 return 1;
3978 }
3979
3980 TopoDS_Shape aShape = DBRep::Get(theArgVec[1]);
3981 if (aShape.IsNull())
3982 {
3983 theDI << "Failed. Null shape\n";
3984 return 1;
3985 }
3986
3987 Standard_Boolean isFailed = Standard_False;
3988 TopExp_Explorer aExplorer(aShape, TopAbs_FACE);
3989 for (; aExplorer.More(); aExplorer.Next())
3990 {
3991 const TopoDS_Face& aFace = TopoDS::Face( aExplorer.Current() );
3992 TopLoc_Location L = TopLoc_Location();
3993 const Handle(Poly_Triangulation)& aT = BRep_Tool::Triangulation( aFace , L );
3994
3995 if(aT.IsNull())
3996 continue;
3997
3998 Poly::ComputeNormals(aT);
3999 const TColgp_Array1OfPnt& aVertices = aT->Nodes();
4000 const TShort_Array1OfShortReal& aNormals = aT->Normals();
4001
4002 // Number of nodes in the triangulation
4003 int aVertexNb = aT->Nodes().Length();
4004 if (aVertexNb*3 != aNormals.Length())
4005 {
4006 theDI << "Failed. Different number of normals vs. vertices\n";
4007 return 1;
4008 }
4009
4010 // Get each vertex index, checking common vertexes between shapes
4011 for( int i=0; i < aVertexNb; i++ )
4012 {
4013 gp_Pnt aPoint = aVertices.Value( i+1 );
4014 gp_Vec aNormal = gp_Vec(
4015 aNormals.Value( i*3 + 1 ),
4016 aNormals.Value( i*3 + 2 ),
4017 aNormals.Value( i*3 + 3 ) );
4018
4019 if (aNormal.X() == 0 && aNormal.Y() == 0 && aNormal.Z() == 1)
4020 {
4021 char buf[256];
4022 sprintf(buf, "fail_%d", i+1);
4023 theDI << "Failed. Point " << buf << ": "
4024 << aPoint.X() << " "
4025 << aPoint.Y() << " "
4026 << aPoint.Z() << "\n";
4027
4028 DrawTrSurf::Set (buf, aPoint);
4029 }
4030 }
4031 }
4032
4033 theDI << (isFailed ? "Test failed" : "Test completed") << "\n";
4034 return 0;
4035}
4036
5a8dc41a 4037//=======================================================================
4038//function : OCC26553
4039//purpose :
4040//=======================================================================
4041#include <BRepBuilderAPI_MakeWire.hxx>
4042
4043static Standard_Integer OCC26553 (Draw_Interpretor& theDI, Standard_Integer theArgc, const char** theArgv)
4044{
4045 if (theArgc < 2)
4046 {
4047 theDI << "Error: path to file with shell is missing\n";
4048 return 1;
4049 }
4050
4051 BRep_Builder aBuilder;
4052 TopoDS_Shape aShell;
4053 BRepTools::Read(aShell, theArgv[1], aBuilder);
4054
4055 if (aShell.IsNull())
4056 {
4057 theDI << "Error: shell not loaded\n";
4058 return 1;
4059 }
4060
4061 TopoDS_Edge aPipeEdge = BRepBuilderAPI_MakeEdge (gp_Pnt (0, 0, 0), gp_Pnt (0, 0, 10));
4062 TopoDS_Wire aPipeWire = BRepBuilderAPI_MakeWire(aPipeEdge).Wire();
4063
4064 BRepOffsetAPI_MakePipe aPipeBuilder(aPipeWire, aShell);
4065 if (!aPipeBuilder.IsDone())
4066 {
4067 theDI << "Error: failed to create pipe\n";
4068 return 1;
4069 }
4070
4071 for (TopExp_Explorer aShapeExplorer(aShell, TopAbs_EDGE); aShapeExplorer.More(); aShapeExplorer.Next ()) {
4072 const TopoDS_Shape& aGeneratedShape = aPipeBuilder.Generated(aPipeEdge, aShapeExplorer.Current());
4073 if (aGeneratedShape.IsNull())
4074 {
4075 theDI << "Error: null shape\n";
4076 return 1;
4077 }
4078 }
4079
4080 theDI << "History returned successfully\n";
4081 return 0;
4082}
4083
3bf9a45f 4084//=======================================================================
4085//function : OCC26195
4086//purpose :
4087//=======================================================================
4088#include <SelectMgr_SelectingVolumeManager.hxx>
4089#include <BRepBuilderAPI_MakePolygon.hxx>
4090#include <Geom_CartesianPoint.hxx>
4091#include <AIS_Line.hxx>
4092#include <Aspect_Window.hxx>
4093static Standard_Integer OCC26195 (Draw_Interpretor& theDI, Standard_Integer theArgNb, const char** theArgVec)
4094{
4095 if (theArgNb < 3)
4096 {
4097 std::cerr << "Error: wrong number of arguments! See usage:\n";
4098 theDI.PrintHelp (theArgVec[0]);
4099 return 1;
4100 }
4101
4102 if (ViewerTest::GetAISContext().IsNull())
4103 {
4104 std::cerr << "Error: No opened context!\n";
4105 return 1;
4106 }
4107
4108 gp_Pnt2d aPxPnt1, aPxPnt2;
4109 aPxPnt1.SetX (Draw::Atof (theArgVec[1]));
4110 aPxPnt1.SetY (Draw::Atof (theArgVec[2]));
4111 if (theArgNb > 4)
4112 {
4113 aPxPnt2.SetX (Draw::Atof (theArgVec[3]));
4114 aPxPnt2.SetY (Draw::Atof (theArgVec[4]));
4115 }
4116 Standard_Boolean toPrint = Standard_False;
4117 if (theArgNb % 2 == 0)
4118 {
dde68833 4119 toPrint = Draw::Atoi (theArgVec[theArgNb - 1]) != 0;
3bf9a45f 4120 }
4121
4122 SelectMgr_SelectingVolumeManager* aMgr = new SelectMgr_SelectingVolumeManager();
4123 aMgr->SetActiveSelectionType (theArgNb > 4 ?
4124 SelectMgr_SelectingVolumeManager::Box : SelectMgr_SelectingVolumeManager::Point);
4125 aMgr->SetCamera (ViewerTest::CurrentView()->Camera());
4126 aMgr->SetPixelTolerance (ViewerTest::GetAISContext()->PixelTolerance());
4127 Standard_Integer aWidth, aHeight;
4128 ViewerTest::CurrentView()->View()->Window()->Size (aWidth, aHeight);
4129 aMgr->SetWindowSize (aWidth, aHeight);
4130 if (theArgNb > 4)
4131 {
4132 aMgr->BuildSelectingVolume (aPxPnt1, aPxPnt2);
4133 }
4134 else
4135 {
4136 aMgr->BuildSelectingVolume (aPxPnt1);
4137 }
4138 const gp_Pnt* aVerts = aMgr->GetVertices();
21a8e275 4139 gp_Pnt aNearPnt = aMgr->GetNearPickedPnt();
4140 gp_Pnt aFarPnt = aMgr->GetFarPickedPnt();
3bf9a45f 4141 BRepBuilderAPI_MakePolygon aWireBldrs[4];
4142
4143 aWireBldrs[0].Add (gp_Pnt (aVerts[0].X(), aVerts[0].Y(), aVerts[0].Z()));
4144 aWireBldrs[0].Add (gp_Pnt (aVerts[4].X(), aVerts[4].Y(), aVerts[4].Z()));
4145 aWireBldrs[0].Add (gp_Pnt (aVerts[6].X(), aVerts[6].Y(), aVerts[6].Z()));
4146 aWireBldrs[0].Add (gp_Pnt (aVerts[2].X(), aVerts[2].Y(), aVerts[2].Z()));
4147 aWireBldrs[0].Add (gp_Pnt (aVerts[0].X(), aVerts[0].Y(), aVerts[0].Z()));
4148
4149 aWireBldrs[1].Add (gp_Pnt (aVerts[4].X(), aVerts[4].Y(), aVerts[4].Z()));
4150 aWireBldrs[1].Add (gp_Pnt (aVerts[5].X(), aVerts[5].Y(), aVerts[5].Z()));
4151 aWireBldrs[1].Add (gp_Pnt (aVerts[7].X(), aVerts[7].Y(), aVerts[7].Z()));
4152 aWireBldrs[1].Add (gp_Pnt (aVerts[6].X(), aVerts[6].Y(), aVerts[6].Z()));
4153 aWireBldrs[1].Add (gp_Pnt (aVerts[4].X(), aVerts[4].Y(), aVerts[4].Z()));
4154
4155 aWireBldrs[2].Add (gp_Pnt (aVerts[1].X(), aVerts[1].Y(), aVerts[1].Z()));
4156 aWireBldrs[2].Add (gp_Pnt (aVerts[5].X(), aVerts[5].Y(), aVerts[5].Z()));
4157 aWireBldrs[2].Add (gp_Pnt (aVerts[7].X(), aVerts[7].Y(), aVerts[7].Z()));
4158 aWireBldrs[2].Add (gp_Pnt (aVerts[3].X(), aVerts[3].Y(), aVerts[3].Z()));
4159 aWireBldrs[2].Add (gp_Pnt (aVerts[1].X(), aVerts[1].Y(), aVerts[1].Z()));
4160
4161 aWireBldrs[3].Add (gp_Pnt (aVerts[0].X(), aVerts[0].Y(), aVerts[0].Z()));
4162 aWireBldrs[3].Add (gp_Pnt (aVerts[1].X(), aVerts[1].Y(), aVerts[1].Z()));
4163 aWireBldrs[3].Add (gp_Pnt (aVerts[3].X(), aVerts[3].Y(), aVerts[3].Z()));
4164 aWireBldrs[3].Add (gp_Pnt (aVerts[2].X(), aVerts[2].Y(), aVerts[2].Z()));
4165 aWireBldrs[3].Add (gp_Pnt (aVerts[0].X(), aVerts[0].Y(), aVerts[0].Z()));
4166
4167 TopoDS_Compound aComp;
4168 BRep_Builder aCompBuilder;
4169 aCompBuilder.MakeCompound (aComp);
4170 for (Standard_Integer aWireIdx = 0; aWireIdx < 4; ++aWireIdx)
4171 {
4172 aCompBuilder.Add (aComp, aWireBldrs[aWireIdx].Shape());
4173 }
4174 DBRep::Set ("c", aComp);
4175
4176 Handle(AIS_InteractiveObject) aCmp = new AIS_Shape (aComp);
4177 aCmp->SetColor (Quantity_NOC_GREEN);
4178 ViewerTest::Display ("c", aCmp, Standard_True, Standard_True);
4179
4180 Handle(Geom_CartesianPoint) aPnt1 = new Geom_CartesianPoint (aNearPnt);
4181 Handle(Geom_CartesianPoint) aPnt2 = new Geom_CartesianPoint (aFarPnt);
4182
4183 Handle(AIS_Line) aLine = new AIS_Line (aPnt1, aPnt2);
4184 ViewerTest::Display ("l", aLine, Standard_True, Standard_True);
4185
4186 if (toPrint)
4187 {
4188 theDI << "Near: " << aNearPnt.X() << " " << aNearPnt.Y() << " " << aNearPnt.Z() << "\n";
4189 theDI << "Far: " << aFarPnt.X() << " " << aFarPnt.Y() << " " << aFarPnt.Z() << "\n";
4190 }
4191
4192 return 0;
4193}
4194
8a1170ad 4195//=======================================================================
4196//function : OCC26462
4197//purpose :
4198//=======================================================================
4199static Standard_Integer OCC26462 (Draw_Interpretor& theDI, Standard_Integer /*theArgNb*/, const char** /*theArgVec*/)
4200{
4201 if (ViewerTest::GetAISContext().IsNull())
4202 {
4203 std::cerr << "Error: No opened context!\n";
4204 return 1;
4205 }
4206
4207 BRepPrimAPI_MakeBox aBuilder1 (gp_Pnt (10.0, 10.0, 0.0), 10.0, 10.0, 10.0);
4208 BRepPrimAPI_MakeBox aBuilder2 (10.0, 10.0, 10.0);
4209 Handle(AIS_InteractiveObject) aBox1 = new AIS_Shape (aBuilder1.Shape());
4210 Handle(AIS_InteractiveObject) aBox2 = new AIS_Shape (aBuilder2.Shape());
4211
4212 const Handle(AIS_InteractiveContext) aCtx = ViewerTest::GetAISContext();
0577ae8c 4213 aCtx->Display (aBox1, 0, 2, Standard_False);
4214 aCtx->Display (aBox2, 0, 2, Standard_False);
8a1170ad 4215 ViewerTest::CurrentView()->FitAll();
0577ae8c 4216 aCtx->SetWidth (aBox1, 3, Standard_False);
4217 aCtx->SetWidth (aBox2, 3, Standard_False);
8a1170ad 4218
0577ae8c 4219 aCtx->MoveTo (305, 322, ViewerTest::CurrentView(), Standard_False);
4220 aCtx->ShiftSelect (Standard_False);
4221 aCtx->MoveTo (103, 322, ViewerTest::CurrentView(), Standard_False);
4222 aCtx->ShiftSelect (Standard_False);
8a1170ad 4223 if (aCtx->NbSelected() != 0)
4224 {
4225 theDI << "ERROR: no boxes must be selected!\n";
4226 return 1;
4227 }
4228
4229 aCtx->SetSelectionSensitivity (aBox1, 2, 5);
4230
0577ae8c 4231 aCtx->MoveTo (305, 322, ViewerTest::CurrentView(), Standard_False);
4232 aCtx->ShiftSelect (Standard_False);
8a1170ad 4233 if (aCtx->NbSelected() != 1)
4234 {
4235 theDI << "ERROR: b1 was not selected\n";
4236 return 1;
4237 }
0577ae8c 4238 aCtx->MoveTo (103, 322, ViewerTest::CurrentView(), Standard_False);
4239 aCtx->ShiftSelect (Standard_True);
8a1170ad 4240 if (aCtx->NbSelected() != 1)
4241 {
4242 theDI << "ERROR: b2 is selected after b1's tolerance increased\n";
4243 return 1;
4244 }
4245
4246 return 0;
4247}
4248
43940380 4249
4250#include <BRepBuilderAPI_GTransform.hxx>
4251static Standard_Integer OCC26313(Draw_Interpretor& di,Standard_Integer n,const char** a)
4252{
4253 if (n <= 1) return 1;
4254
4255 gp_Trsf T;
4256 gp_GTrsf GT(T);
4257
4258 gp_Mat rot( 1.0, 0.0, 0.0,
4259 0.0, 2.0, 0.0,
4260 0.0, 0.0, 3.0);
4261
4262 GT.SetVectorialPart(rot);
4263 BRepBuilderAPI_GTransform gtrf(GT);
4264
4265 TopoDS_Shape aSrcShape = DBRep::Get(a[2]);
4266 if (aSrcShape.IsNull()) {
586db386 4267 di << a[2] << " is not a valid shape\n";
43940380 4268 return 1;
4269 }
4270
4271
4272 gtrf.Perform(aSrcShape);
4273 if (gtrf.IsDone())
4274 {
4275 try
4276 {
4277 DBRep::Set(a[1], gtrf.ModifiedShape(aSrcShape));
4278 }
a738b534 4279 catch(Standard_Failure const&)
43940380 4280 {
4281 di << "Error: Exception is thrown\n";
4282 }
4283 }
4284 else
4285 {
4286 di << "Error: Result is not done\n";
4287 return 1;
4288 }
4289
4290 return 0;
4291}
4292
81b47143 4293//=======================================================================
4294//function : OCC26525
4295//purpose : check number of intersection points
4296//=======================================================================
4297#include <BRepAdaptor_Curve.hxx>
4298#include <BRepAdaptor_Surface.hxx>
4299#include <BRepAdaptor_HCurve.hxx>
4300#include <BRepAdaptor_HSurface.hxx>
4301#include <IntCurveSurface_HInter.hxx>
4302Standard_Integer OCC26525 (Draw_Interpretor& di,
4303 Standard_Integer n,
4304 const char** a)
4305{
4306 TopoDS_Shape aS1, aS2;
4307 TopoDS_Edge aE;
4308 TopoDS_Face aF;
4309
4310 if (n<4)
4311 {
4312 di << " use OCC26525 r edge face \n";
4313 return 1;
4314 }
4315
4316 aS1 = DBRep::Get(a[2]);
4317 aS2 = DBRep::Get(a[3]);
4318
4319 if (aS1.IsNull() || aS2.IsNull())
4320 {
4321 di << " Null shapes are not allowed \n";
4322 return 0;
4323 }
4324 if (aS1.ShapeType()!=TopAbs_EDGE)
4325 {
4326 di << " Shape" << a[2] << " should be of type EDGE\n";
4327 return 0;
4328 }
4329 if (aS2.ShapeType()!=TopAbs_FACE)
4330 {
4331 di << " Shape" << a[3] << " should be of type FACE\n";
4332 return 0;
4333 }
4334
4335 aE=TopoDS::Edge(aS1);
4336 aF=TopoDS::Face(aS2);
4337
4338 char buf[128];
4339 Standard_Boolean bIsDone;
4340 Standard_Integer i, aNbPoints;
4341 Standard_Real aU, aV, aT;
4342 gp_Pnt aP;
4343 BRepAdaptor_Curve aBAC;
4344 BRepAdaptor_Surface aBAS;
4345 IntCurveSurface_TransitionOnCurve aTC;
4346 IntCurveSurface_HInter aHInter;
4347
4348 aBAC.Initialize(aE);
4349 aBAS.Initialize(aF);
4350
4351 Handle(BRepAdaptor_HCurve) aHBAC=new BRepAdaptor_HCurve(aBAC);
4352 Handle(BRepAdaptor_HSurface) aHBAS = new BRepAdaptor_HSurface(aBAS);
4353
4354 aHInter.Perform(aHBAC, aHBAS);
4355 bIsDone=aHInter.IsDone();
4356 if (!bIsDone)
4357 {
4358 di << " intersection is not done\n";
4359 return 0;
4360 }
4361
4362 aNbPoints=aHInter.NbPoints();
4363 sprintf (buf, " Number of intersection points found: %d", aNbPoints);
4364 di << buf << "\n";
4365 for (i=1; i<=aNbPoints; ++i)
4366 {
4367 const IntCurveSurface_IntersectionPoint& aIP=aHInter.Point(i);
4368 aIP.Values(aP, aU, aV, aT, aTC);
4369 //
4370 sprintf (buf, "point %s_%d %lg %lg %lg ", a[1], i, aP.X(), aP.Y(), aP.Z());
4371 di << buf << "\n";
4372 }
4373
4374 return 0;
4375}
4376
10a4116e 4377//=======================================================================
4378//function : OCC24537
4379//purpose : Puts inverted numbers (in the sense of little/big endian inversion)
4380// from predefined arrays.
4381//=======================================================================
4382#include <FSD_BinaryFile.hxx>
4383
4384template<int size>
4385inline const unsigned char* SizeRef ();
4386
4387template<>
4388inline const unsigned char* SizeRef <8> ()
4389{
4390 static const unsigned char aSizeRef[] = {
4391 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,
4392 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x02,
4393 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x03,
4394 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x04,
4395 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x05,
4396 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x06,
4397 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x07,
4398 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x08,
4399 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x09,
4400 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00};
4401 return aSizeRef;
4402}
4403
4404template<>
4405inline const unsigned char* SizeRef <4> ()
4406{
4407 static const unsigned char aSizeRef[] = {
4408 0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x02,
4409 0x00,0x00,0x00,0x03,0x00,0x00,0x00,0x04,
4410 0x00,0x00,0x00,0x05,0x00,0x00,0x00,0x06,
4411 0x00,0x00,0x00,0x07,0x00,0x00,0x00,0x08,
4412 0x00,0x00,0x00,0x09,0x00,0x00,0x00,0x00};
4413 return aSizeRef;
4414}
4415
4416static Standard_Integer OCC24537(
4417 Draw_Interpretor& theDI,
4418 Standard_Integer argc,
4419 const char ** argv)
4420{
4421 std::ofstream aF;
4422 if (argc > 1)
4423 {
4424 aF.open(argv[1]);
4425 if (!aF.is_open())
4426 {
4427 cout << "cannot create file " << argv[1] << endl;
4428 return 1;
4429 }
4430 }
4431 Standard_Boolean isErr = Standard_False;
4432 // 1. InverseInt
4433 const unsigned char anIntRef[] = {
4434 0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x02,
4435 0x00,0x00,0x00,0x03,0x00,0x00,0x00,0x04,
4436 0x00,0x00,0x00,0x05,0x00,0x00,0x00,0x06,
4437 0x00,0x00,0x00,0x07,0x00,0x00,0x00,0x08,
4438 0x00,0x00,0x00,0x09,0x00,0x00,0x00,0x00};
4439 Standard_Integer anIntArr[] = {1, 2, 3, 4, 5, 6, 7, 8, 9, 0};
4440 if (aF.is_open())
4441 {
4442 for(int i = 0; i < 10; ++i)
4443 {
4444 Standard_Integer anInv = FSD_BinaryFile::InverseInt(anIntArr[i]);
4445 aF.write(reinterpret_cast<char*>(&anInv), sizeof(anInv));
4446 }
4447 }
4448 else
4449 {
4450 Standard_Integer anInv[10];
4451 for(int i = 0; i < 10; ++i)
4452 anInv[i] = FSD_BinaryFile::InverseInt(anIntArr[i]);
4453 if (memcmp(anInv, anIntRef, sizeof(anIntRef)) != 0)
4454 {
4455 theDI << "Error: incorrect conversion of an integer value\n";
4456 isErr = Standard_True;
4457 }
4458 }
4459
4460 // 1a. Random InverseInt
4461 const unsigned char aRndIntRef[] = {
4462 0xFF,0xC2,0xF7,0x00,0xFF,0xFF,0xFB,0x2E,
4463 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,
4464 0x00,0x00,0x04,0xD2,0x00,0x00,0x04,0xD3,
4465 0xFF,0xFF,0xFD,0x1E,0xFF,0xFF,0xFF,0xFB,
4466 0x00,0x00,0x03,0x8D,0x00,0x3D,0x09,0x00};
4467 Standard_Integer aRndIntArr[] = {-4000000, -1234, 0, 1, 1234, 1235, -738, -5, 909, 4000000};
4468 if (aF.is_open())
4469 {
4470 for(int i = 0; i < 10; ++i)
4471 {
4472 Standard_Integer anInv = FSD_BinaryFile::InverseInt(aRndIntArr[i]);
4473 aF.write(reinterpret_cast<char*>(&anInv), sizeof(anInv));
4474 }
4475 }
4476 else
4477 {
4478 Standard_Integer anInv[10];
4479 for(int i = 0; i < 10; ++i)
4480 anInv[i] = FSD_BinaryFile::InverseInt(aRndIntArr[i]);
4481 if (memcmp(anInv, aRndIntRef, sizeof(aRndIntRef)) != 0)
4482 {
4483 theDI << "Error: incorrect conversion of a dispersed integer value\n";
4484 isErr = Standard_True;
4485 }
4486 }
4487
4488 // 2. InverseReal
4489 const unsigned char aRealRef[] = {
4490 0x3F,0xF0,0x00,0x00,0x00,0x00,0x00,0x00,
4491 0x40,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
4492 0x40,0x08,0x00,0x00,0x00,0x00,0x00,0x00,
4493 0x40,0x10,0x00,0x00,0x00,0x00,0x00,0x00,
4494 0x40,0x14,0x00,0x00,0x00,0x00,0x00,0x00,
4495 0x40,0x18,0x00,0x00,0x00,0x00,0x00,0x00,
4496 0x40,0x1C,0x00,0x00,0x00,0x00,0x00,0x00,
4497 0x40,0x20,0x00,0x00,0x00,0x00,0x00,0x00,
4498 0x40,0x22,0x00,0x00,0x00,0x00,0x00,0x00,
4499 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00};
4500 const Standard_Real aRealArr[] = {1.0, 2.0, 3.0, 4.0, 5.0, 6.0, 7.0, 8.0, 9.0, 0.0};
4501 if (aF.is_open())
4502 {
4503 for(int i = 0; i < 10; ++i)
4504 {
4505 Standard_Real anInv = FSD_BinaryFile::InverseReal(aRealArr[i]);
4506 aF.write(reinterpret_cast<char*>(&anInv), sizeof(anInv));
4507 }
4508 }
4509 else
4510 {
4511 Standard_Real anInv[10];
4512 for(int i = 0; i < 10; ++i)
4513 anInv[i] = FSD_BinaryFile::InverseReal(aRealArr[i]);
4514 if (memcmp(anInv, aRealRef, sizeof(aRealRef)) != 0)
4515 {
4516 theDI << "Error: incorrect conversion of a real value\n";
4517 isErr = Standard_True;
4518 }
4519 }
4520
4521 // 2a. Random InverseReal
4522 const unsigned char aRndRealRef[] = {
4523 0xFE,0x37,0xE4,0x3C,0x88,0x00,0x75,0x9C,
4524 0xBE,0x11,0x2E,0x0B,0xE8,0x26,0xD6,0x95,
4525 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
4526 0x3E,0x11,0x2E,0x0B,0xE8,0x26,0xD6,0x95,
4527 0x3F,0xF0,0x00,0x00,0x00,0x00,0x00,0x00,
4528 0x40,0x09,0x21,0xDA,0x45,0x5B,0x53,0xE4,
4529 0x54,0xB2,0x49,0xAD,0x25,0x94,0xC3,0x7D,
4530 0x40,0x20,0x00,0x00,0x00,0x00,0x00,0x00,
4531 0xC0,0x23,0xCC,0xCC,0xCC,0xCC,0xCC,0xCD,
4532 0x40,0x23,0xCC,0xCC,0xCC,0xCC,0xCC,0xCD};
4533 const Standard_Real aRndRealArr[] = {-1e300, -1.e-9, 0., 1.e-9, 1., 3.1415296, 1.e100, 8.0, -9.9, 9.9};
4534 if (aF.is_open())
4535 {
4536 for(int i = 0; i < 10; ++i)
4537 {
4538 Standard_Real anInv = FSD_BinaryFile::InverseReal(aRndRealArr[i]);
4539 aF.write(reinterpret_cast<char*>(&anInv), sizeof(anInv));
4540 }
4541 }
4542 else
4543 {
4544 Standard_Real anInv[10];
4545 for(int i = 0; i < 10; ++i)
4546 anInv[i] = FSD_BinaryFile::InverseReal(aRndRealArr[i]);
4547 if (memcmp(anInv, aRndRealRef, sizeof(aRndRealRef)) != 0)
4548 {
4549 theDI << "Error: incorrect conversion of a dispersed real value\n";
4550 isErr = Standard_True;
4551 }
4552 }
4553
4554 // 3. InverseShortReal
4555 const unsigned char aShortRealRef[] = {
4556 0x3F,0x80,0x00,0x00,0x40,0x00,0x00,0x00,
4557 0x40,0x40,0x00,0x00,0x40,0x80,0x00,0x00,
4558 0x40,0xA0,0x00,0x00,0x40,0xC0,0x00,0x00,
4559 0x40,0xE0,0x00,0x00,0x41,0x00,0x00,0x00,
4560 0x41,0x10,0x00,0x00,0x00,0x00,0x00,0x00};
4561 const Standard_ShortReal aShortRealArr[] = {
4562 1.0f, 2.0f, 3.0f, 4.0f, 5.0f, 6.0f, 7.0f, 8.0f, 9.0f, 0.0f};
4563 if (aF.is_open())
4564 {
4565 for(int i = 0; i < 10; ++i)
4566 {
4567 Standard_ShortReal anInv = FSD_BinaryFile::InverseShortReal(aShortRealArr[i]);
4568 aF.write(reinterpret_cast<char*>(&anInv), sizeof(anInv));
4569 }
4570 }
4571 else
4572 {
4573 Standard_ShortReal anInv[10];
4574 for(int i = 0; i < 10; ++i)
4575 anInv[i] = FSD_BinaryFile::InverseShortReal(aShortRealArr[i]);
4576 if (memcmp(anInv, aShortRealRef, sizeof(aShortRealRef)) != 0)
4577 {
4578 theDI << "Error: incorrect conversion of a short real value\n";
4579 isErr = Standard_True;
4580 }
4581 }
4582
4583 // 3a. Random InverseShortReal
4584 const unsigned char aRndShortRealRef[] = {
4585 0xB0,0x89,0x70,0x5F,0x00,0x00,0x00,0x00,
4586 0x30,0x89,0x70,0x5F,0x3F,0x80,0x00,0x00,
4587 0x40,0x49,0x0E,0x56,0xC0,0xD6,0x66,0x66,
4588 0x40,0xD6,0x66,0x66,0x42,0xC5,0xCC,0xCD,
4589 0xC2,0xC7,0xCC,0xCD,0x42,0xC7,0xCC,0xCD};
4590 const Standard_ShortReal aRndShortRealArr[] = {
4591 -1.e-9f, 0.f, 1.e-9f, 1.f, 3.1415f, -6.7f, 6.7f, 98.9f, -99.9f, 99.9f};
4592 if (aF.is_open())
4593 {
4594 for(int i = 0; i < 10; ++i)
4595 {
4596 Standard_ShortReal anInv = FSD_BinaryFile::InverseShortReal(aRndShortRealArr[i]);
4597 aF.write(reinterpret_cast<char*>(&anInv), sizeof(anInv));
4598 }
4599 }
4600 else
4601 {
4602 Standard_ShortReal anInv[10];
4603 for(int i = 0; i < 10; ++i)
4604 anInv[i] = FSD_BinaryFile::InverseShortReal(aRndShortRealArr[i]);
4605 if (memcmp(anInv, aRndShortRealRef, sizeof(aRndShortRealRef)) != 0)
4606 {
4607 theDI << "Error: incorrect conversion of a dispersed short real value\n";
4608 isErr = Standard_True;
4609 }
4610 }
4611
4612 // 4. InverseSize
4613 const Standard_Size aSizeArr[] = {1ul, 2ul, 3ul, 4ul, 5ul, 6ul, 7ul, 8ul, 9ul, 0ul};
4614 if (aF.is_open())
4615 {
4616 for(int i = 0; i < 10; ++i)
4617 {
4618 Standard_Size anInv = FSD_BinaryFile::InverseSize(aSizeArr[i]);
4619 aF.write(reinterpret_cast<char*>(&anInv), sizeof(anInv));
4620 }
4621 }
4622 else
4623 {
4624 Standard_Size anInv[10];
4625 const unsigned char* aSizeRef = SizeRef<sizeof(Standard_Size)>();
4626 for(int i = 0; i < 10; ++i)
4627 anInv[i] = FSD_BinaryFile::InverseSize(aSizeArr[i]);
4628 if (memcmp(anInv, aSizeRef, sizeof(Standard_Size)*10) != 0)
4629 {
4630 theDI << "Error: incorrect conversion of a size value\n";
4631 isErr = Standard_True;
4632 }
4633 }
4634
4635 if (!aF.is_open() && !isErr)
4636 theDI << "Conversion was done OK";
4637 if (aF.is_open())
4638 {
4639 cout << "the file " << argv[1] << " has been created" << endl;
4640 aF.close();
4641 }
4642 return 0;
4643}
4644
8cc2a23a 4645
4646#include <TopExp.hxx>
4647#include <BRepOffsetAPI_DraftAngle.hxx>
4648#include <vector>
4649static TopoDS_Shape taper(const TopoDS_Shape &shape, const TopoDS_Face &face_a, const TopoDS_Face &face_b, Standard_Real angle)
4650{
4651 // Use maximum face-to-taper z-offset.
4652 const gp_Pln neutral_plane(gp_Ax3(gp_Pnt(0.0, 0.0, 140.0), gp_Dir(0.0, 0.0, 1.0)));
4653
4654 // Draft angle needs to be in radians, and flipped to adhere to our own (arbitrary) draft
4655 // angle definition.
4656 const Standard_Real draft_angle = -(angle / 180.0) * M_PI;
4657
4658 // Add face to draft. The first argument indicates that all material added/removed during
4659 // drafting is located below the neutral plane
4660 BRepOffsetAPI_DraftAngle drafter(shape);
4661 drafter.Add(face_a, gp_Dir(0.0, 0.0, -1.0), draft_angle, neutral_plane);
4662 drafter.Add(face_b, gp_Dir(0.0, 0.0, -1.0), draft_angle, neutral_plane);
4663 drafter.Build();
4664
4665 return drafter.Shape();
4666}
4667
4668static void dumpShapeVertices(const TopoDS_Shape &shape, std::vector<Standard_Real>& coords)
4669{
4670 TopTools_IndexedMapOfShape shape_vertices;
4671 TopExp::MapShapes(shape, TopAbs_VERTEX, shape_vertices);
4672
4673 for (Standard_Integer i = 1; i <= shape_vertices.Extent(); i++)
4674 {
4675 gp_Pnt p = BRep_Tool::Pnt(TopoDS::Vertex(shape_vertices(i)));
4676 coords.push_back(p.X());
4677 coords.push_back(p.Y());
4678 coords.push_back(p.Z());
4679 }
4680}
4681
4682static void GetCoords(const Standard_CString& path_to_file, std::vector<Standard_Real>& coords)
4683{
4684 TopoDS_Shape shape;
4685 BRep_Builder builder;
4686 BRepTools::Read(shape, path_to_file, builder);
4687 TopTools_IndexedMapOfShape shape_faces;
4688 TopExp::MapShapes(shape, TopAbs_FACE, shape_faces);
4689 TopoDS_Face face_a = TopoDS::Face(shape_faces(1));
4690 TopoDS_Face face_b = TopoDS::Face(shape_faces(5));
4691 dumpShapeVertices(taper(shape, face_a, face_b, 5.0), coords);
4692}
4693
4694static Standard_Integer OCC26396 (Draw_Interpretor& theDI, Standard_Integer theArgc, const char** theArgv)
4695{
4696 if (theArgc < 2)
4697 {
4698 theDI << "Error: path to file is missing\n";
4699 return 1;
4700 }
4701
4702 const int maxInd = 50;
4703
4704 std::vector<Standard_Real> ref_coords;
4705 ref_coords.reserve(100);
4706 Standard_Boolean Stat = Standard_True;
4707
4708 GetCoords(theArgv[1], ref_coords);
4709
4710 std::vector<Standard_Real> coords;
4711 coords.reserve(100);
4712 for (int i = 1; i < maxInd; i++)
4713 {
4714 GetCoords(theArgv[1], coords);
4715 if (coords.size() != ref_coords.size())
4716 {
4717 Stat = Standard_False;
4718 break;
4719 }
4720 for (size_t j = 0; j < coords.size(); j++)
4721 if (Abs(ref_coords[j] - coords[j]) > RealEpsilon())
4722 {
4723 Stat = Standard_False;
4724 break;
4725 }
4726 coords.clear();
4727 }
4728 if (!Stat)
4729 theDI << "Error: unstable results";
4730 else
4731 theDI << "test OK";
4732
4733 return 0;
4734}
4735
d0fcf95a 4736//=======================================================================
4737//function : OCC26750
4738//purpose :
4739//=======================================================================
4740static Standard_Integer OCC26750( Draw_Interpretor& theDI,
4741 Standard_Integer /*theNArg*/,
4742 const char ** /*theArgVal*/)
4743{
4744 const gp_Vec2d aVec1(1.0, 0.0);
4745 const gp_Vec2d aVec2(0.0, -1.0);
4746
4747 if(aVec1.IsNormal(aVec2, Precision::Angular()))
4748 {
4749 theDI << "gp_Vec2d OK. Vectors are normal.\n";
4750 }
4751 else
4752 {
4753 theDI << "Error in gp_Vec2d. Vectors should be normal.\n";
4754 }
4755
4756 const gp_Dir2d aD1(1.0, 0.0);
4757 const gp_Dir2d aD2(0.0, -1.0);
4758
4759 if(aD1.IsNormal(aD2, Precision::Angular()))
4760 {
4761 theDI << "gp_Dir2d OK. Vectors are normal.\n";
4762 }
4763 else
4764 {
4765 theDI << "Error in gp_Dir2d. Vectors should be normal.\n";
4766 }
4767
4768 return 0;
4769}
4770
0b4abfb9 4771//=======================================================================
4772//function : OCC26746
4773//purpose : Checks if coefficients of the torus are computed properly.
4774//=======================================================================
4775#include <Geom_ToroidalSurface.hxx>
92efcf78 4776#include <Geom_BSplineCurve.hxx>
0b4abfb9 4777static Standard_Integer OCC26746(
4778 Draw_Interpretor& theDI,
4779 Standard_Integer theNArg,
4780 const char ** theArgVal)
4781{
4782 if(theNArg < 2)
4783 {
4784 theDI << "Use: OCC26746 torus [toler NbCheckedPoints]\n";
4785 return 1;
4786 }
4787
4788 const Handle(Geom_ToroidalSurface) aGtor =
4789 Handle(Geom_ToroidalSurface)::DownCast(DrawTrSurf::GetSurface(theArgVal[1]));
4790
4791 const Standard_Real aToler = (theNArg >= 3)? Draw::Atof(theArgVal[2]) : 1.0e-7;
4792 const Standard_Integer aNbPntsMax = (theNArg >= 4)? Draw::Atoi(theArgVal[3]) : 5;
4793
4794 const Standard_Integer aLowIndex = 5;
4795 const Standard_Real aStep = 2.0*M_PI/aNbPntsMax;
4796
4797 TColStd_Array1OfReal anArrCoeffs(aLowIndex, aLowIndex+34);
4798 aGtor->Torus().Coefficients(anArrCoeffs);
4799
4800 Standard_Real aUpar = 0.0, aVpar = 0.0;
4801 for(Standard_Integer aUind = 0; aUind <= aNbPntsMax; aUind++)
4802 {
4803 for(Standard_Integer aVind = 0; aVind <= aNbPntsMax; aVind++)
4804 {
4805 const gp_Pnt aPt(aGtor->Value(aUpar, aVpar));
4806 const Standard_Real aX1 = aPt.X();
4807 const Standard_Real aX2 = aX1*aX1;
4808 const Standard_Real aX3 = aX2*aX1;
4809 const Standard_Real aX4 = aX2*aX2;
4810 const Standard_Real aY1 = aPt.Y();
4811 const Standard_Real aY2 = aY1*aY1;
4812 const Standard_Real aY3 = aY2*aY1;
4813 const Standard_Real aY4 = aY2*aY2;
4814 const Standard_Real aZ1 = aPt.Z();
4815 const Standard_Real aZ2 = aZ1*aZ1;
4816 const Standard_Real aZ3 = aZ2*aZ1;
4817 const Standard_Real aZ4 = aZ2*aZ2;
4818
4819 Standard_Integer i = aLowIndex;
4820
4821 Standard_Real aDelta = anArrCoeffs(i++) * aX4; //1
4822 aDelta+= anArrCoeffs(i++) * aY4; //2
4823 aDelta+= anArrCoeffs(i++) * aZ4; //3
4824 aDelta+= anArrCoeffs(i++) * aX3 * aY1; //4
4825 aDelta+= anArrCoeffs(i++) * aX3 * aZ1; //5
4826 aDelta+= anArrCoeffs(i++) * aY3 * aX1; //6
4827 aDelta+= anArrCoeffs(i++) * aY3 * aZ1; //7
4828 aDelta+= anArrCoeffs(i++) * aZ3 * aX1; //8
4829 aDelta+= anArrCoeffs(i++) * aZ3 * aY1; //9
4830 aDelta+= anArrCoeffs(i++) * aX2 * aY2; //10
4831 aDelta+= anArrCoeffs(i++) * aX2 * aZ2; //11
4832 aDelta+= anArrCoeffs(i++) * aY2 * aZ2; //12
4833 aDelta+= anArrCoeffs(i++) * aX2 * aY1 * aZ1; //13
4834 aDelta+= anArrCoeffs(i++) * aX1 * aY2 * aZ1; //14
4835 aDelta+= anArrCoeffs(i++) * aX1 * aY1 * aZ2; //15
4836 aDelta+= anArrCoeffs(i++) * aX3; //16
4837 aDelta+= anArrCoeffs(i++) * aY3; //17
4838 aDelta+= anArrCoeffs(i++) * aZ3; //18
4839 aDelta+= anArrCoeffs(i++) * aX2 * aY1; //19
4840 aDelta+= anArrCoeffs(i++) * aX2 * aZ1; //20
4841 aDelta+= anArrCoeffs(i++) * aY2 * aX1; //21
4842 aDelta+= anArrCoeffs(i++) * aY2 * aZ1; //22
4843 aDelta+= anArrCoeffs(i++) * aZ2 * aX1; //23
4844 aDelta+= anArrCoeffs(i++) * aZ2 * aY1; //24
4845 aDelta+= anArrCoeffs(i++) * aX1 * aY1 * aZ1; //25
4846 aDelta+= anArrCoeffs(i++) * aX2; //26
4847 aDelta+= anArrCoeffs(i++) * aY2; //27
4848 aDelta+= anArrCoeffs(i++) * aZ2; //28
4849 aDelta+= anArrCoeffs(i++) * aX1 * aY1; //29
4850 aDelta+= anArrCoeffs(i++) * aX1 * aZ1; //30
4851 aDelta+= anArrCoeffs(i++) * aY1 * aZ1; //31
4852 aDelta+= anArrCoeffs(i++) * aX1; //32
4853 aDelta+= anArrCoeffs(i++) * aY1; //33
4854 aDelta+= anArrCoeffs(i++) * aZ1; //34
4855 aDelta+= anArrCoeffs(i++); //35
4856
4857 if(Abs(aDelta) > aToler)
4858 {
4859 theDI << "(" << aUpar << ", " << aVpar << "): Error in torus coefficients computation (Delta = " << aDelta << ").\n";
4860 }
4861 else
4862 {
4863 theDI << "(" << aUpar << ", " << aVpar << "): OK (Delta = " << aDelta << ").\n";
4864 }
4865
4866 aVpar = (aVind == aNbPntsMax)? 2.0*M_PI : aVpar + aStep;
4867 }
4868
4869 aVpar = 0.0;
4870 aUpar = (aUind == aNbPntsMax)? 2.0*M_PI : aUpar + aStep;
4871 }
4872
4873 return 0;
4874}
4875
f3a1c0cb 4876//=======================================================================
4877//function : OCC27048
4878//purpose : Calculate value of B-spline surface N times
4879//=======================================================================
4880static Standard_Integer OCC27048(Draw_Interpretor& theDI, Standard_Integer theArgc, const char** theArgv)
4881{
4882 if (theArgc != 5)
4883 {
4884 std::cout << "Incorrect number of arguments. See usage:" << std::endl;
4885 theDI.PrintHelp(theArgv[0]);
4886 return 1;
4887 }
4888
4889 Handle(Geom_Surface) aSurf = DrawTrSurf::GetSurface(theArgv[1]);
4890 GeomAdaptor_Surface anAdaptor(aSurf);
4891
4892 Standard_Real aU = Draw::Atof(theArgv[2]);
4893 Standard_Real aV = Draw::Atof(theArgv[3]);
4894 Standard_Integer aN = Draw::Atoi(theArgv[4]);
4895
4896 for (; aN > 0; --aN)
4897 anAdaptor.Value(aU, aV);
4898
4899 return 0;
4900}
4901
4c0d97ac 4902//========================================================================
4903//function : OCC27318
4904//purpose : Creates a box that is not listed in map of AIS objects of ViewerTest
4905//========================================================================
4906static Standard_Integer OCC27318 (Draw_Interpretor& /*theDI*/, Standard_Integer /*theArgc*/, const char** theArgv)
4907{
4908 const Handle(AIS_InteractiveContext)& aCtx = ViewerTest::GetAISContext();
4909 if (aCtx.IsNull())
4910 {
4911 std::cout << "No interactive context. Use 'vinit' command before " << theArgv[0] << "\n";
4912 return 1;
4913 }
4914
4915 TopoDS_Shape aBox = BRepPrimAPI_MakeBox (20, 20, 20).Shape();
4916 Handle(AIS_Shape) aBoxObj = new AIS_Shape (aBox);
4917 aCtx->Display (aBoxObj, Standard_True);
4918
4919 return 0;
4920}
4921
45d5cbf8 4922//========================================================================
4923//function : OCC27523
4924//purpose : Checks recomputation of deactivated selection mode after object's redisplaying
4925//========================================================================
4926static Standard_Integer OCC27523 (Draw_Interpretor& theDI, Standard_Integer theArgNb, const char** theArgVec)
4927{
4928 if (theArgNb != 1)
4929 {
4930 std::cerr << "Error: wrong number of arguments! See usage:\n";
4931 theDI.PrintHelp (theArgVec[0]);
4932 return 1;
4933 }
4934
4935 Handle(AIS_InteractiveContext) anAISContext = ViewerTest::GetAISContext();
4936 if(anAISContext.IsNull())
4937 {
4938 std::cerr << "Error: no active view. Please call vinit.\n";
4939 return 1;
4940 }
4941
4942 gp_Pnt aStart (100, 100, 100);
4943 gp_Pnt anEnd (300, 400, 600);
4944 BRepBuilderAPI_MakeEdge anEdgeBuilder (aStart, anEnd);
4945 TopoDS_Edge anEdge = anEdgeBuilder.Edge();
4946 Handle(AIS_InteractiveObject) aTestAISShape = new AIS_Shape (anEdge);
0577ae8c 4947 anAISContext->Display (aTestAISShape, Standard_False);
45d5cbf8 4948
4949 // activate it in selection modes
4950 TColStd_SequenceOfInteger aModes;
4951 aModes.Append (AIS_Shape::SelectionMode ((TopAbs_ShapeEnum) TopAbs_VERTEX));
4952
45d5cbf8 4953 anAISContext->Deactivate (aTestAISShape);
68dcee02 4954 anAISContext->Load (aTestAISShape, -1);
45d5cbf8 4955 anAISContext->Activate (aTestAISShape, 0);
4956 anAISContext->Deactivate (aTestAISShape, 0);
4957
4958 // activate in vertices mode
4959 for (Standard_Integer anIt = 1; anIt <= aModes.Length(); ++anIt)
4960 {
4961 anAISContext->Activate (aTestAISShape, aModes (anIt));
4962 }
4963
4964 TopoDS_Shape aVertexShape = BRepBuilderAPI_MakeVertex (gp_Pnt (75, 0, 0));
4965 TopAbs_ShapeEnum aVertexShapeType = aVertexShape.ShapeType();
4966 Handle(AIS_Shape)::DownCast (aTestAISShape)->Set (aVertexShape);
4967 aTestAISShape->Redisplay();
4968
0577ae8c 4969 anAISContext->AddOrRemoveSelected (aTestAISShape, Standard_True);
45d5cbf8 4970
4971 bool aValidShapeType = false;
4972 for (anAISContext->InitSelected(); anAISContext->MoreSelected(); anAISContext->NextSelected())
4973 {
4974 Handle(SelectMgr_EntityOwner) anOwner = anAISContext->SelectedOwner();
4975 Handle(StdSelect_BRepOwner) aBRO = Handle(StdSelect_BRepOwner)::DownCast (anOwner);
4976 if (!aBRO.IsNull() && aBRO->HasShape())
4977 {
4978 TopoDS_Shape aShape = aBRO->Shape();
4979
4980 aValidShapeType = aShape.ShapeType() == aVertexShapeType;
4981 }
4982 }
4983
4984 if (!aValidShapeType)
4985 {
4986 std::cerr << "Error: shape type is invalid.\n";
4987 return 1;
4988 }
4989
4990 return 0;
4991}
4992
6d0e6be5 4993//========================================================================
4994//function : OCC27700
4995//purpose : glPolygonMode() used for frame drawing affects label text shading
4996//========================================================================
4997
4998class OCC27700_Text : public AIS_InteractiveObject
4999{
5000public:
5001
5002 DEFINE_STANDARD_RTTI_INLINE (OCC27700_Text, AIS_InteractiveObject)
5003
5004 virtual void Compute (const Handle(PrsMgr_PresentationManager3d)& /*thePresentationManager*/,
5005 const Handle(Prs3d_Presentation)& thePresentation,
5006 const Standard_Integer /*theMode*/) Standard_OVERRIDE
5007 {
5008 Handle(Graphic3d_ArrayOfTriangles) aFrame = new Graphic3d_ArrayOfTriangles (6, 6);
5009 aFrame->AddVertex (gp_Pnt (-1, 0, 0));
5010 aFrame->AddVertex (gp_Pnt (-1, 1, 0));
5011 aFrame->AddVertex (gp_Pnt ( 3, 1, 0));
5012 aFrame->AddVertex (gp_Pnt ( 3, 0, 0));
5013
5014 aFrame->AddEdge (1);
5015 aFrame->AddEdge (2);
5016 aFrame->AddEdge (3);
5017
5018 aFrame->AddEdge (2);
5019 aFrame->AddEdge (3);
5020 aFrame->AddEdge (4);
5021
5022 Handle(Graphic3d_AspectFillArea3d) aFillAspect =
5023 new Graphic3d_AspectFillArea3d (*myDrawer->ShadingAspect()->Aspect().get());
5024 aFillAspect->SetInteriorStyle (Aspect_IS_POINT);
5025
5026 // create separate group for frame elements
5027 Handle(Graphic3d_Group) aFrameGroup = Prs3d_Root::NewGroup (thePresentation);
5028 aFrameGroup->AddPrimitiveArray (aFrame);
5029 aFrameGroup->SetGroupPrimitivesAspect (aFillAspect);
5030
5031 // create separate group for text elements
5032 Handle(Graphic3d_Group) aTextGroup = Prs3d_Root::NewGroup (thePresentation);
5033 TCollection_ExtendedString aString ("YOU SHOULD SEE THIS TEXT", Standard_True);
4ad142d9 5034 Prs3d_Text::Draw (Prs3d_Root::CurrentGroup (thePresentation), myDrawer->TextAspect(), aString, gp_Ax2 (gp::Origin(), gp::DZ()));
6d0e6be5 5035 }
5036
5037 virtual void ComputeSelection (const Handle(SelectMgr_Selection)& /*theSelection*/,
5038 const Standard_Integer /*theMode*/) Standard_OVERRIDE {}
5039};
5040
5041static Standard_Integer OCC27700 (Draw_Interpretor& /*theDI*/, Standard_Integer /*theArgNb*/, const char** /*theArgVec*/)
5042{
5043 Handle(AIS_InteractiveContext) aContext = ViewerTest::GetAISContext();
5044 if (aContext.IsNull())
5045 {
5046 std::cout << "Error: no view available, call 'vinit' before!" << std::endl;
5047 return 1;
5048 }
5049 Handle(OCC27700_Text) aPresentation = new OCC27700_Text();
0577ae8c 5050 aContext->Display (aPresentation, Standard_True);
6d0e6be5 5051 return 0;
5052}
5053
520cde87 5054//========================================================================
5055//function : OCC27757
5056//purpose : Creates a box that has a sphere as child object and displays it
5057//========================================================================
5058static Standard_Integer OCC27757 (Draw_Interpretor& /*theDI*/, Standard_Integer /*theArgc*/, const char** theArgv)
5059{
5060 const Handle(AIS_InteractiveContext)& aCtx = ViewerTest::GetAISContext();
5061 if (aCtx.IsNull())
5062 {
5063 std::cout << "No interactive context. Use 'vinit' command before " << theArgv[0] << "\n";
5064 return 1;
5065 }
5066
5067 TopoDS_Shape aBox = BRepPrimAPI_MakeBox (20.0, 20.0, 20.0).Shape();
5068 TopoDS_Shape aSphere = BRepPrimAPI_MakeSphere (10.0).Shape();
5069 gp_Trsf aTrsf;
5070 aTrsf.SetTranslationPart (gp_Vec (20.0, 20.0, 0.0));
5071 aSphere.Located (TopLoc_Location (aTrsf));
5072
5073
5074 Handle(AIS_Shape) aBoxObj = new AIS_Shape (aBox);
5075 Handle(AIS_Shape) aSphereObj = new AIS_Shape (aSphere);
5076 aBoxObj->AddChild (aSphereObj);
5077 aCtx->Display (aBoxObj, 1, 0, Standard_False);
5078 aCtx->UpdateCurrentViewer();
5079
5080 return 0;
5081}
5082
8e5fb5ea 5083//========================================================================
5084//function : OCC27818
5085//purpose : Creates three boxes and highlights one of them with own style
5086//========================================================================
5087static Standard_Integer OCC27818 (Draw_Interpretor& /*theDI*/, Standard_Integer /*theArgc*/, const char** theArgv)
5088{
5089 const Handle(AIS_InteractiveContext)& aCtx = ViewerTest::GetAISContext();
5090 if (aCtx.IsNull())
5091 {
5092 std::cout << "No interactive context. Use 'vinit' command before " << theArgv[0] << "\n";
5093 return 1;
5094 }
5095
5096 Handle(AIS_Shape) aBoxObjs[3];
5097 for (Standard_Integer aBoxIdx = 0; aBoxIdx < 3; ++aBoxIdx)
5098 {
5099 TopoDS_Shape aBox = BRepPrimAPI_MakeBox (20.0, 20.0, 20.0).Shape();
5100 aBoxObjs[aBoxIdx] = new AIS_Shape (aBox);
5101 gp_Trsf aTrsf;
5102 aTrsf.SetTranslationPart (gp_Vec (30.0 * aBoxIdx, 30.0 * aBoxIdx, 0.0));
5103 aBoxObjs[aBoxIdx]->SetLocalTransformation (aTrsf);
5104 aBoxObjs[aBoxIdx]->SetHilightMode (AIS_Shaded);
5105 }
5106
f838dac4 5107 {
5108 Handle(Prs3d_Drawer) aHiStyle = new Prs3d_Drawer();
5109 aBoxObjs[1]->SetDynamicHilightAttributes (aHiStyle);
5110 aHiStyle->SetDisplayMode (AIS_Shaded);
5111 aHiStyle->SetColor (Quantity_NOC_RED);
5112 aHiStyle->SetTransparency (0.8f);
5113 }
5114 {
5115 Handle(Prs3d_Drawer) aSelStyle = new Prs3d_Drawer();
5116 aBoxObjs[2]->SetHilightAttributes (aSelStyle);
5117 aSelStyle->SetDisplayMode (AIS_Shaded);
5118 aSelStyle->SetColor (Quantity_NOC_RED);
5119 aSelStyle->SetTransparency (0.0f);
5120 aSelStyle->SetZLayer (Graphic3d_ZLayerId_Topmost);
5121 }
8e5fb5ea 5122
5123 for (Standard_Integer aBoxIdx = 0; aBoxIdx < 3; ++aBoxIdx)
5124 {
5125 aCtx->Display (aBoxObjs[aBoxIdx], AIS_Shaded, 0, Standard_False);
5126 }
5127
5128 aCtx->UpdateCurrentViewer();
5129
5130 return 0;
5131}
5132
0d5880e1 5133//========================================================================
5134//function : OCC27893
5135//purpose : Creates a box and selects it via AIS_InteractiveContext API
5136//========================================================================
5137static Standard_Integer OCC27893 (Draw_Interpretor& /*theDI*/, Standard_Integer /*theArgc*/, const char** theArgv)
5138{
5139 const Handle(AIS_InteractiveContext)& aCtx = ViewerTest::GetAISContext();
5140 if (aCtx.IsNull())
5141 {
5142 std::cout << "No interactive context. Use 'vinit' command before " << theArgv[0] << "\n";
5143 return 1;
5144 }
5145
5146 TopoDS_Shape aBox = BRepPrimAPI_MakeBox (10.0, 10.0, 10.0).Shape();
5147 Handle(AIS_InteractiveObject) aBoxObj = new AIS_Shape (aBox);
5148 aCtx->Display (aBoxObj, AIS_Shaded, 0, Standard_False);
5149 aCtx->SetSelected (aBoxObj, Standard_True);
5150
5151 return 0;
5152}
5153
f2a88e54 5154//========================================================================
5155//function : OCC28310
5156//purpose : Tests validness of iterator in AIS_InteractiveContext after
5157// an removing object from it
5158//========================================================================
5159static Standard_Integer OCC28310 (Draw_Interpretor& /*theDI*/, Standard_Integer /*theArgc*/, const char** theArgv)
5160{
5161 const Handle(AIS_InteractiveContext)& aCtx = ViewerTest::GetAISContext();
5162 if (aCtx.IsNull())
5163 {
5164 std::cout << "No interactive context. Use 'vinit' command before " << theArgv[0] << "\n";
5165 return 1;
5166 }
5167
5168 TopoDS_Shape aBox = BRepPrimAPI_MakeBox (10.0, 10.0, 10.0).Shape();
5169 Handle(AIS_InteractiveObject) aBoxObj = new AIS_Shape (aBox);
5170 aCtx->Display (aBoxObj, AIS_Shaded, 0, Standard_False);
5171 ViewerTest::CurrentView()->FitAll();
2b73a1d1 5172 aCtx->MoveTo (200, 200, ViewerTest::CurrentView(), Standard_True);
5173 aCtx->Select(Standard_True);
f2a88e54 5174
5175 aCtx->Remove (aBoxObj, Standard_True);
5176 // nullify the object explicitly to simulate situation in project,
5177 // when ::Remove is called from another method and the object is destroyed
5178 // before ::DetectedInteractive is called
5179 aBoxObj.Nullify();
5180
5181 for (aCtx->InitDetected(); aCtx->MoreDetected(); aCtx->NextDetected())
5182 {
5183 Handle(AIS_InteractiveObject) anObj = aCtx->DetectedInteractive();
5184 }
5185
5186 return 0;
5187}
5188
9fb8f3f1 5189// repetitive display and removal of multiple small objects in the viewer for
5190// test of memory leak in visualization (OCCT 6.9.0 - 7.0.0)
5191static Standard_Integer OCC29412 (Draw_Interpretor& /*theDI*/, Standard_Integer theArgNb, const char** theArgVec)
5192{
5193 Handle(AIS_InteractiveContext) aCtx = ViewerTest::GetAISContext();
5194 if (aCtx.IsNull())
5195 {
5196 std::cout << "Error: no active view.\n";
5197 return 1;
5198 }
5199
5200 const int aNbIters = (theArgNb <= 1 ? 10000 : Draw::Atoi (theArgVec[1]));
5201 int aProgressPrev = -1;
5202 for (int m_loopIndex = 0; m_loopIndex < aNbIters; m_loopIndex++)
5203 {
5204 gp_Pnt pos;
5205 gp_Vec dir(0, 0,1);
5206
5207 gp_Ax2 center (pos, dir);
5208 gp_Circ circle (center, 1);
5209 Handle(AIS_Shape) feature;
5210
5211 BRepBuilderAPI_MakeEdge builder( circle );
5212
5213 if( builder.Error() == BRepBuilderAPI_EdgeDone )
5214 {
5215 TopoDS_Edge E1 = builder.Edge();
5216 TopoDS_Shape W2 = BRepBuilderAPI_MakeWire(E1).Wire();
5217 feature = new AIS_Shape(W2);
5218 aCtx->Display (feature, true);
5219 }
5220
5221 aCtx->CurrentViewer()->Update();
5222 ViewerTest::CurrentView()->FitAll();
5223 aCtx->Remove (feature, true);
5224
5225 const int aProgress = (m_loopIndex * 100) / aNbIters;
5226 if (aProgress != aProgressPrev)
5227 {
5228 std::cerr << aProgress << "%\r";
5229 aProgressPrev = aProgress;
5230 }
5231 }
5232 return 0;
5233}
5234
6d0e6be5 5235//========================================================================
5236//function : Commands_19
5237//purpose :
5238//========================================================================
5239
1cd84fee 5240void QABugs::Commands_19(Draw_Interpretor& theCommands) {
1365140b 5241 const char *group = "QABugs";
7fd59977 5242
dda67c1c 5243 Handle(QABugs_HandleClass) aClassPtr = new QABugs_HandleClass();
5244 theCommands.Add ("OCC24202_1", "Test Handle-based procedure",
5245 __FILE__, aClassPtr, &QABugs_HandleClass::HandleProc, group);
5246 NCollection_Handle<QABugs_NHandleClass> aNClassPtr = new QABugs_NHandleClass();
5247 theCommands.Add ("OCC24202_2", "Test NCollection_Handle-based procedure",
5248 __FILE__, aNClassPtr, &QABugs_NHandleClass::NHandleProc, group);
5249
7fd59977 5250 theCommands.Add ("OCC230", "OCC230 TrimmedCurve Pnt2d Pnt2d", __FILE__, OCC230, group);
f6f03db9 5251 theCommands.Add ("OCC23361", "OCC23361", __FILE__, OCC23361, group);
1365140b
RL
5252 theCommands.Add ("OCC23237", "OCC23237", __FILE__, OCC23237, group);
5253 theCommands.Add ("OCC22980", "OCC22980", __FILE__, OCC22980, group);
e6aad0ee 5254 theCommands.Add ("OCC23595", "OCC23595", __FILE__, OCC23595, group);
5d1833ef 5255 theCommands.Add ("OCC22611", "OCC22611 string nb", __FILE__, OCC22611, group);
e187cc0a 5256 theCommands.Add ("OCC22595", "OCC22595", __FILE__, OCC22595, group);
bead40f2 5257 theCommands.Add ("OCC23774", "OCC23774 shape1 shape2", __FILE__, OCC23774, group);
06be28a4 5258 theCommands.Add ("OCC23683", "OCC23683 shape", __FILE__, OCC23683, group);
1ef32e96
RL
5259 theCommands.Add ("OCC23952sweep", "OCC23952sweep nbupoles shape", __FILE__, OCC23952sweep, group);
5260 theCommands.Add ("OCC23952intersect", "OCC23952intersect nbsol shape1 shape2", __FILE__, OCC23952intersect, group);
1939140c 5261 theCommands.Add ("test_offset", "test_offset", __FILE__, test_offset, group);
05d7de53 5262 theCommands.Add ("OCC23945", "OCC23945 surfname U V X Y Z [DUX DUY DUZ DVX DVY DVZ [D2UX D2UY D2UZ D2VX D2VY D2VZ D2UVX D2UVY D2UVZ]]", __FILE__, OCC23945,group);
2e9fd4bc 5263 theCommands.Add ("OCC24008", "OCC24008 curve surface", __FILE__, OCC24008, group);
29cb310a 5264 theCommands.Add ("OCC11758", "OCC11758", __FILE__, OCC11758, group);
788cbaf4 5265 theCommands.Add ("OCC24005", "OCC24005 result", __FILE__, OCC24005, group);
89d8607f 5266 theCommands.Add ("OCC24137", "OCC24137 face vertex U V [N]", __FILE__, OCC24137, group);
ab2db9a5 5267 theCommands.Add ("OCC24271", "Boolean operations on NCollection_Map", __FILE__, OCC24271, group);
e6c9f595 5268 theCommands.Add ("OCC23972", "OCC23972", __FILE__, OCC23972, group);
e3096dec 5269 theCommands.Add ("OCC24370", "OCC24370 edge pcurve surface prec", __FILE__, OCC24370, group);
05d7de53 5270 theCommands.Add ("OCC24533", "OCC24533", __FILE__, OCC24533, group);
69fd2d1b 5271 theCommands.Add ("OCC24086", "OCC24086 face wire", __FILE__, OCC24086, group);
2cd138b8 5272 theCommands.Add ("OCC24667", "OCC24667 result Wire_spine Profile [Mode [Approx]], no args to get help", __FILE__, OCC24667, group);
d01cc61d 5273 theCommands.Add ("OCC24755", "OCC24755", __FILE__, OCC24755, group);
a73267f2 5274 theCommands.Add ("OCC24834", "OCC24834", __FILE__, OCC24834, group);
8696d65d 5275 theCommands.Add ("OCC24889", "OCC24889", __FILE__, OCC24889, group);
7a7e8cf1 5276 theCommands.Add ("OCC23951", "OCC23951 path to saved step file", __FILE__, OCC23951, group);
5277 theCommands.Add ("OCC24931", "OCC24931 path to saved xml file", __FILE__, OCC24931, group);
c764e804 5278 theCommands.Add ("OCC24945", "OCC24945", __FILE__, OCC24945, group);
1fa7cb8c 5279 theCommands.Add ("OCC23950", "OCC23950 step_file", __FILE__, OCC23950, group);
5493d334 5280 theCommands.Add ("OCC25004", "OCC25004", __FILE__, OCC25004, group);
b6c0b841
RL
5281 theCommands.Add ("OCC24925",
5282 "OCC24925 filename [pluginLib=TKXml storageGuid retrievalGuid]"
5283 "\nOCAF persistence without setting environment variables",
5284 __FILE__, OCC24925, group);
a967f104 5285 theCommands.Add ("OCC25043", "OCC25043 shape", __FILE__, OCC25043, group);
6f498847 5286 theCommands.Add ("OCC24826,", "This test performs simple saxpy test using multiple threads.\n Usage: OCC24826 length", __FILE__, OCC24826, group);
5287 theCommands.Add ("OCC29935,", "This test performs product of two square matrices using multiple threads.\n Usage: OCC29935 size", __FILE__, OCC29935, group);
4a350f94 5288 theCommands.Add ("OCC24606", "OCC24606 : Tests ::FitAll for V3d view ('vfit' is for NIS view)", __FILE__, OCC24606, group);
ab860031 5289 theCommands.Add ("OCC25202", "OCC25202 res shape numF1 face1 numF2 face2", __FILE__, OCC25202, group);
c6037065 5290 theCommands.Add ("OCC7570", "OCC7570 shape", __FILE__, OCC7570, group);
058f130e 5291 theCommands.Add ("OCC25100", "OCC25100 shape", __FILE__, OCC25100, group);
54a16ee4 5292 theCommands.Add ("OCC25340", "OCC25340", __FILE__, OCC25340, group);
5e452c37 5293 theCommands.Add ("OCC25348", "OCC25348", __FILE__, OCC25348, group);
6fb3418e 5294 theCommands.Add ("OCC25413", "OCC25413 shape", __FILE__, OCC25413, group);
c088aa93 5295 theCommands.Add ("OCC25446", "OCC25446 res b1 b2 op", __FILE__, OCC25446, group);
ee6bb37b 5296 theCommands.Add ("OCC25545",
5297 "no args; tests data race when concurrently accessing \n"
5298 "\t\tTopLoc_Location::Transformation()",
5299 __FILE__, OCC25545, group);
d315303d 5300 theCommands.Add ("OCC25547", "OCC25547", __FILE__, OCC25547, group);
2bfe59b6 5301 theCommands.Add ("OCC24881", "OCC24881 shape", __FILE__, OCC24881, group);
9bf3177f 5302 theCommands.Add ("xprojponf", "xprojponf p f", __FILE__, xprojponf, group);
ec26bf88 5303 theCommands.Add ("OCC24923", "OCC24923", __FILE__, OCC24923, group);
ec81011f 5304 theCommands.Add ("OCC26139", "OCC26139 [-boxsize value] [-boxgrid value] [-compgrid value]", __FILE__, OCC26139, group);
e11850fd 5305 theCommands.Add ("OCC26284", "OCC26284", __FILE__, OCC26284, group);
3ceb4c3c 5306 theCommands.Add ("OCC26446", "OCC26446 r c1 c2", __FILE__, OCC26446, group);
fac9298e 5307 theCommands.Add ("OCC26448", "OCC26448: check method Prepend() of sequence", __FILE__, OCC26448, group);
71316196 5308 theCommands.Add ("OCC26407", "OCC26407 result_name", __FILE__, OCC26407, group);
db6c6404 5309 theCommands.Add ("OCC26485", "OCC26485 shape", __FILE__, OCC26485, group);
5a8dc41a 5310 theCommands.Add ("OCC26553", "OCC26553 file_path", __FILE__, OCC26553, group);
3bf9a45f 5311 theCommands.Add ("OCC26195",
5312 "OCC26195: x1_pix y1_pix [x2_pix y2_pix] [toPrintPixelCoord 0|1]"
5313 "\n\t\t: Draws rectangular selecting frustum defined by point selection in pixel coordinates"
5314 "\n\t\t: [x1_pix, y1_pix] or rectangular selection in pixel coordinates [x1_pix, y1_pix,"
5315 "\n\t\t: x2_pix, y2_pix]."
5316 "\n\t\t: [toPrintPixelCoord 0|1] - prints 3d projection of pixel coordinate or center of"
5317 "\n\t\t: selecting rectangle onto near and far view frustum planes",
5318 __FILE__, OCC26195, group);
8a1170ad 5319 theCommands.Add ("OCC26462",
5320 "OCC26462: Checks the ability to manage sensitivity of a particular selection mode in local context",
5321 __FILE__, OCC26462, group);
43940380 5322
5323 theCommands.Add ("OCC26313", "OCC26313 result shape", __FILE__, OCC26313, group);
8cc2a23a 5324 theCommands.Add ("OCC26396", "OCC26396 shape_file_path", __FILE__, OCC26396, group);
81b47143 5325 theCommands.Add ("OCC26525", "OCC26525 result edge face ", __FILE__, OCC26525, group);
43940380 5326
10a4116e 5327 theCommands.Add ("OCC24537", "OCC24537 [file]", __FILE__, OCC24537, group);
d0fcf95a 5328 theCommands.Add ("OCC26750", "OCC26750", __FILE__, OCC26750, group);
4f5ad416 5329 theCommands.Add ("OCC25574", "OCC25574", __FILE__, OCC25574, group);
0b4abfb9 5330 theCommands.Add ("OCC26746", "OCC26746 torus [toler NbCheckedPoints] ", __FILE__, OCC26746, group);
5331
f3a1c0cb 5332 theCommands.Add ("OCC27048",
5333 "OCC27048 surf U V N\nCalculate value of surface N times in the point (U, V)",
5334 __FILE__, OCC27048, group);
badc9305 5335
4c0d97ac 5336 theCommands.Add ("OCC27318",
5337 "OCC27318: Creates a box that is not listed in map of AIS objects of ViewerTest",
5338 __FILE__, OCC27318, group);
45d5cbf8 5339 theCommands.Add ("OCC27523",
5340 "OCC27523: Checks recomputation of deactivated selection mode after object's redisplaying",
5341 __FILE__, OCC27523, group);
6d0e6be5 5342 theCommands.Add ("OCC27700",
5343 "OCC27700: Checks drawing text after setting interior style",
5344 __FILE__, OCC27700, group);
520cde87 5345 theCommands.Add ("OCC27757",
5346 "OCC27757: Creates a box that has a sphere as child object and displays it",
5347 __FILE__, OCC27757, group);
8e5fb5ea 5348 theCommands.Add ("OCC27818",
5349 "OCC27818: Creates three boxes and highlights one of them with own style",
5350 __FILE__, OCC27818, group);
0d5880e1 5351 theCommands.Add ("OCC27893",
5352 "OCC27893: Creates a box and selects it via AIS_InteractiveContext API",
5353 __FILE__, OCC27893, group);
f2a88e54 5354 theCommands.Add("OCC28310",
5355 "OCC28310: Tests validness of iterator in AIS_InteractiveContext after an removing object from it",
5356 __FILE__, OCC28310, group);
9fb8f3f1 5357 theCommands.Add("OCC29412", "OCC29412 [nb cycles]: test display / remove of many small objects", __FILE__, OCC29412, group);
7fd59977 5358 return;
5359}