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[tools/medcoupling.git] / src / MEDCoupling_Swig / MEDCouplingBasicsTest4.py
1 #  -*- coding: utf-8 -*-
2 # Copyright (C) 2007-2023  CEA/DEN, EDF R&D
3 #
4 # This library is free software; you can redistribute it and/or
5 # modify it under the terms of the GNU Lesser General Public
6 # License as published by the Free Software Foundation; either
7 # version 2.1 of the License, or (at your option) any later version.
8 #
9 # This library is distributed in the hope that it will be useful,
10 # but WITHOUT ANY WARRANTY; without even the implied warranty of
11 # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
12 # Lesser General Public License for more details.
13 #
14 # You should have received a copy of the GNU Lesser General Public
15 # License along with this library; if not, write to the Free Software
16 # Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307 USA
17 #
18 # See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
19 #
20
21
22 import sys
23 from medcoupling import *
24 import unittest
25 from math import pi,e,sqrt,cos,sin
26 from datetime import datetime
27 from MEDCouplingDataForTest import MEDCouplingDataForTest
28 import rlcompleter,readline # this line has to be here, to ensure a usability of MEDCoupling/MEDLoader. B4 removing it please notify to anthony.geay@edf.fr
29 from sys import platform
30
31 def checkFreeMemory(size):
32     """
33     Get node total memory and memory usage
34     """
35     ret = True
36     dic = {}
37     if platform not in ["win32"]:
38         with open('/proc/meminfo', 'r') as mem:
39             tmp = 0
40             for i in mem:
41                 sline = i.split()
42                 if str(sline[0]) == 'MemTotal:':
43                     dic['total'] = int(sline[1])
44                 elif str(sline[0]) in ('MemFree:', 'Buffers:', 'Cached:'):
45                     tmp += int(sline[1])
46             dic['free'] = tmp
47             dic['used'] = int(dic['total']) - int(dic['free'])
48             ret = dic['free'] > size
49     #TODO: extend this method for Windows OS
50     return ret
51
52
53 class MEDCouplingBasicsTest4(unittest.TestCase):
54     def testSwigDADOp4(self):
55         da = DataArrayDouble.New(list(range(6, 30)), 12, 2)
56         self.assertEqual(12,da.getNumberOfTuples());
57         self.assertEqual(2,da.getNumberOfComponents());
58         for i in range(24):
59             self.assertAlmostEqual(da.getIJ(0,i),float(i+6),13)
60             pass
61         # operator transpose
62         da.transpose()
63         self.assertEqual(2,da.getNumberOfTuples());
64         self.assertEqual(12,da.getNumberOfComponents());
65         for i in range(24):
66             self.assertAlmostEqual(da.getIJ(0,i),float(i+6),13)
67             pass
68         da.transpose()
69         # operator __neg__
70         da2=DataArrayDouble.New(12,1)
71         da2.iota(0.)
72         dabis=-da
73         for i in range(24):
74             self.assertAlmostEqual(dabis.getIJ(0,i),-float(i+6),13)
75             pass
76         # operator+=
77         da+=da2
78         expected1=[6.,7.,9.,10.,12.,13.,15.,16.,18.,19.,21.,22.,24.,25.,27.,28.,30.,31.,33.,34.,36.,37.,39.,40.]
79         for i in range(24):
80             self.assertAlmostEqual(da.getIJ(0,i),expected1[i],13)
81             pass
82         da=-dabis
83         da+=[100.,101.]
84         expected2=[106.,108.,108.,110.,110.,112.,112.,114.,114.,116.,116.,118.,118.,120.,120.,122.,122.,124.,124.,126.,126.,128.,128.,130.]
85         self.assertEqual(12,da.getNumberOfTuples());
86         self.assertEqual(2,da.getNumberOfComponents());
87         for i in range(24):
88             self.assertAlmostEqual(da.getIJ(0,i),expected2[i],13)
89             pass
90         for pos,elt in enumerate(dabis):
91             da[pos]+=elt
92             pass
93         self.assertEqual(12,da.getNumberOfTuples());
94         self.assertEqual(2,da.getNumberOfComponents());
95         for elt in da:
96             li=elt[:]
97             self.assertAlmostEqual(li[0],100.,13) ; self.assertAlmostEqual(li[1],101.,13)
98             pass
99         # operator-=
100         da = DataArrayDouble.New(list(range(6, 30)), 12, 2)
101         da2 = DataArrayDouble.New(list(range(12)), 12, 1)
102         dabis=-da
103         da-=da2
104         expected1=[6.,7.,7.,8.,8.,9.,9.,10.,10.,11.,11.,12.,12.,13.,13.,14.,14.,15.,15.,16.,16.,17.,17.,18.]
105         for i in range(24):
106             self.assertAlmostEqual(da.getIJ(0,i),expected1[i],13)
107             pass
108         da=-dabis
109         da-=[100.,101.]
110         expected2=[-94.,-94.,-92.,-92.,-90.,-90.,-88.,-88.,-86.,-86.,-84.,-84.,-82.,-82.,-80.,-80.,-78.,-78.,-76.,-76.,-74.,-74.,-72.,-72.]
111         self.assertEqual(12,da.getNumberOfTuples());
112         self.assertEqual(2,da.getNumberOfComponents());
113         for i in range(24):
114             self.assertAlmostEqual(da.getIJ(0,i),expected2[i],13)
115             pass
116         for pos,elt in enumerate(dabis):
117             da[pos]-=elt
118             pass
119         self.assertEqual(12,da.getNumberOfTuples());
120         self.assertEqual(2,da.getNumberOfComponents());
121         expected3=[-88.,-87.,-84.,-83.,-80.,-79.,-76.,-75.,-72.,-71.,-68.,-67.,-64.,-63.,-60.,-59.,-56.,-55.,-52.,-51.,-48.,-47.,-44.,-43.]
122         for i in range(24):
123             self.assertAlmostEqual(da.getIJ(0,i),expected3[i],13)
124             pass
125         # operator*=
126         da = DataArrayDouble.New(list(range(6, 30)), 12, 2)
127         da2 = DataArrayDouble.New(list(range(12)), 12, 1)
128         dabis=-da
129         da*=da2
130         expected1=[0.,0.,8.,9.,20.,22.,36.,39.,56.,60.,80.,85.,108.,114.,140.,147.,176.,184.,216.,225.,260.,270.,308.,319.]
131         for i in range(24):
132             self.assertAlmostEqual(da.getIJ(0,i),expected1[i],13)
133             pass
134         da=-dabis
135         da*=[100.,101.]
136         expected2=[600.,707.,800.,909.,1000.,1111.,1200.,1313.,1400.,1515.,1600.,1717.,1800.,1919.,2000.,2121.,2200.,2323.,2400.,2525.,2600.,2727.,2800.,2929.]
137         self.assertEqual(12,da.getNumberOfTuples());
138         self.assertEqual(2,da.getNumberOfComponents());
139         for i in range(24):
140             self.assertAlmostEqual(da.getIJ(0,i),expected2[i],13)
141             pass
142         for pos,elt in enumerate(dabis):
143             da[pos]*=elt
144             pass
145         self.assertEqual(12,da.getNumberOfTuples());
146         self.assertEqual(2,da.getNumberOfComponents());
147         expected3=[-3600.,-4949.,-6400.,-8181.,-10000.,-12221.,-14400.,-17069.,-19600.,-22725.,-25600.,-29189.,-32400.,-36461.,-40000.,-44541.,-48400.,-53429.,-57600.,-63125.,-67600.,-73629.,-78400.,-84941.0]
148         for i in range(24):
149             self.assertAlmostEqual(da.getIJ(0,i),expected3[i],13)
150             pass
151         # operator/=
152         da = DataArrayDouble.New(list(range(6, 30)), 12, 2)
153         da2 = DataArrayDouble.New(list(range(1, 13)), 12, 1)
154         dabis=-da
155         da/=da2
156         expected1=[6.0,7.0,4.0,4.5,3.3333333333333335,3.6666666666666665,3.0,3.25,2.8,3.0,2.6666666666666665,2.8333333333333335,2.5714285714285716,2.7142857142857144,2.5,2.625,2.4444444444444446,2.5555555555555554,2.4,2.5,2.3636363636363638,2.4545454545454546,2.3333333333333335,2.4166666666666665]
157         for i in range(24):
158             self.assertAlmostEqual(da.getIJ(0,i),expected1[i],13)
159             pass
160         da=-dabis
161         da/=[100.,101.]
162         expected2=[0.06,0.06930693069306931,0.08,0.0891089108910891,0.1,0.10891089108910891,0.12,0.12871287128712872,0.14,0.1485148514851485,0.16,0.16831683168316833,0.18,0.18811881188118812,0.2,0.2079207920792079,0.22,0.22772277227722773,0.24,0.24752475247524752,0.26,0.26732673267326734,0.28,0.2871287128712871]
163         self.assertEqual(12,da.getNumberOfTuples());
164         self.assertEqual(2,da.getNumberOfComponents());
165         for i in range(24):
166             self.assertAlmostEqual(da.getIJ(0,i),expected2[i],13)
167             pass
168         for pos,elt in enumerate(dabis):
169             da[pos]/=elt
170             pass
171         self.assertEqual(12,da.getNumberOfTuples());
172         self.assertEqual(2,da.getNumberOfComponents());
173         expected3=[-0.01, -0.009900990099009901, -0.01, -0.009900990099009901, -0.01, -0.009900990099009901, -0.01, -0.009900990099009901, -0.01, -0.009900990099009901, -0.01, -0.009900990099009901, -0.01, -0.009900990099009901, -0.01, -0.009900990099009901, -0.01, -0.009900990099009901, -0.01, -0.009900990099009901, -0.01, -0.009900990099009901, -0.01, -0.0099009900990099]
174         for i in range(24):
175             self.assertAlmostEqual(da.getIJ(0,i),expected3[i],13)
176             pass
177         pass
178
179     def testSwigDAIOp4(self):
180         da = DataArrayInt.New(list(range(6, 30)), 12, 2)
181         self.assertEqual(12,da.getNumberOfTuples());
182         self.assertEqual(2,da.getNumberOfComponents());
183         for i in range(24):
184             self.assertEqual(da.getIJ(0,i),i+6)
185             pass
186         # operator transpose
187         da.transpose()
188         self.assertEqual(2,da.getNumberOfTuples());
189         self.assertEqual(12,da.getNumberOfComponents());
190         for i in range(24):
191             self.assertEqual(da.getIJ(0,i),i+6)
192             pass
193         da.transpose()
194         # operator __neg__
195         da2=DataArrayInt.New(12,1)
196         da2.iota(0)
197         dabis=-da
198         for i in range(24):
199             self.assertEqual(dabis.getIJ(0,i),-(i+6))
200             pass
201         # operator+=
202         da+=da2
203         expected1=[6,7,9,10,12,13,15,16,18,19,21,22,24,25,27,28,30,31,33,34,36,37,39,40]
204         for i in range(24):
205             self.assertEqual(da.getIJ(0,i),expected1[i])
206             pass
207         da=-dabis
208         da+=[100,101]
209         expected2=[106,108,108,110,110,112,112,114,114,116,116,118,118,120,120,122,122,124,124,126,126,128,128,130]
210         self.assertEqual(12,da.getNumberOfTuples());
211         self.assertEqual(2,da.getNumberOfComponents());
212         for i in range(24):
213             self.assertEqual(da.getIJ(0,i),expected2[i])
214             pass
215         for pos,elt in enumerate(dabis):
216             da[pos]+=elt
217             pass
218         self.assertEqual(12,da.getNumberOfTuples());
219         self.assertEqual(2,da.getNumberOfComponents());
220         for elt in da:
221             li=elt[:]
222             self.assertEqual(li[0],100) ; self.assertEqual(li[1],101)
223             pass
224         # operator-=
225         da = DataArrayInt.New(list(range(6, 30)), 12, 2)
226         da2 = DataArrayInt.New(list(range(12)), 12, 1)
227         dabis=-da
228         da-=da2
229         expected1=[6,7,7,8,8,9,9,10,10,11,11,12,12,13,13,14,14,15,15,16,16,17,17,18]
230         for i in range(24):
231             self.assertEqual(da.getIJ(0,i),expected1[i])
232             pass
233         da=-dabis
234         da-=[100,101]
235         expected2=[-94,-94,-92,-92,-90,-90,-88,-88,-86,-86,-84,-84,-82,-82,-80,-80,-78,-78,-76,-76,-74,-74,-72,-72]
236         self.assertEqual(12,da.getNumberOfTuples());
237         self.assertEqual(2,da.getNumberOfComponents());
238         for i in range(24):
239             self.assertEqual(da.getIJ(0,i),expected2[i])
240             pass
241         for pos,elt in enumerate(dabis):
242             da[pos]-=elt
243             pass
244         self.assertEqual(12,da.getNumberOfTuples());
245         self.assertEqual(2,da.getNumberOfComponents());
246         expected3=[-88,-87,-84,-83,-80,-79,-76,-75,-72,-71,-68,-67,-64,-63,-60,-59,-56,-55,-52,-51,-48,-47,-44,-43]
247         for i in range(24):
248             self.assertEqual(da.getIJ(0,i),expected3[i])
249             pass
250         # operator*=
251         da = DataArrayInt.New(list(range(6, 30)), 12, 2)
252         da2 = DataArrayInt.New(list(range(12)), 12, 1)
253         dabis=-da
254         da*=da2
255         expected1=[0,0,8,9,20,22,36,39,56,60,80,85,108,114,140,147,176,184,216,225,260,270,308,319]
256         for i in range(24):
257             self.assertEqual(da.getIJ(0,i),expected1[i])
258             pass
259         da=-dabis
260         da*=[100,101]
261         expected2=[600,707,800,909,1000,1111,1200,1313,1400,1515,1600,1717,1800,1919,2000,2121,2200,2323,2400,2525,2600,2727,2800,2929]
262         self.assertEqual(12,da.getNumberOfTuples());
263         self.assertEqual(2,da.getNumberOfComponents());
264         for i in range(24):
265             self.assertEqual(da.getIJ(0,i),expected2[i])
266             pass
267         for pos,elt in enumerate(dabis):
268             da[pos]*=elt
269             pass
270         self.assertEqual(12,da.getNumberOfTuples());
271         self.assertEqual(2,da.getNumberOfComponents());
272         expected3=[-3600,-4949,-6400,-8181,-10000,-12221,-14400,-17069,-19600,-22725,-25600,-29189,-32400,-36461,-40000,-44541,-48400,-53429,-57600,-63125,-67600,-73629,-78400,-84941.0]
273         for i in range(24):
274             self.assertEqual(da.getIJ(0,i),expected3[i])
275             pass
276         # operator/=
277         da = DataArrayInt.New(list(range(6, 30)), 12, 2)
278         da2 = DataArrayInt.New(list(range(1, 13)), 12, 1)
279         dabis=-da
280         da/=da2
281         expected1=[6,7,4,4,3,3,3,3,2,3,2,2,2,2,2,2,2,2,2,2,2,2,2,2]
282         for i in range(24):
283             self.assertEqual(da.getIJ(0,i),expected1[i])
284             pass
285         da=-dabis
286         da/=DataArrayInt.New([2,3],1,2)
287         self.assertEqual(12,da.getNumberOfTuples());
288         self.assertEqual(2,da.getNumberOfComponents());
289         expected2=[3,2,4,3,5,3,6,4,7,5,8,5,9,6,10,7,11,7,12,8,13,9,14,9]
290         for i in range(24):
291             self.assertEqual(da.getIJ(0,i),expected2[i])
292             pass
293         pass
294
295     def testSwigDADOp5(self):
296         da=DataArrayDouble.New([5,6,7,8,9,6,7,-2,3,9,8,10])
297         da.rearrange(3)
298         da2=DataArrayDouble.New([5.,8.,10.,12])
299         self.assertEqual(4,da2.getNumberOfTuples());
300         self.assertEqual(1,da2.getNumberOfComponents());
301         da3=da+da2
302         self.assertEqual(4,da3.getNumberOfTuples());
303         self.assertEqual(3,da3.getNumberOfComponents());
304         expected1=[10.,11.,12.,16.,17.,14.,17.,8.,13.,21.,20.,22.]
305         for i in range(12):
306             self.assertAlmostEqual(da3.getIJ(0,i),expected1[i],13)
307             pass
308         da3=da2+da
309         self.assertEqual(4,da3.getNumberOfTuples());
310         self.assertEqual(3,da3.getNumberOfComponents());
311         for i in range(12):
312             self.assertAlmostEqual(da3.getIJ(0,i),expected1[i],13)
313             pass
314         # Test new API of classmethod DataArrayDouble.New
315         vals=[5,6,7,8,9,6,7,-2,3,9,8,10]
316         da=DataArrayDouble.New(vals)
317         self.assertEqual(12,da.getNumberOfTuples());
318         self.assertEqual(1,da.getNumberOfComponents());
319         for i in range(12):
320             self.assertAlmostEqual(da.getIJ(0,i),vals[i],13)
321             pass
322         da=DataArrayDouble.New(vals,12)
323         self.assertEqual(12,da.getNumberOfTuples());
324         self.assertEqual(1,da.getNumberOfComponents());
325         for i in range(12):
326             self.assertAlmostEqual(da.getIJ(0,i),vals[i],13)
327             pass
328         da=DataArrayDouble.New(vals,1,12)
329         self.assertEqual(1,da.getNumberOfTuples());
330         self.assertEqual(12,da.getNumberOfComponents());
331         for i in range(12):
332             self.assertAlmostEqual(da.getIJ(0,i),vals[i],13)
333             pass
334         da=DataArrayDouble.New(vals,6,2)
335         self.assertEqual(6,da.getNumberOfTuples());
336         self.assertEqual(2,da.getNumberOfComponents());
337         for i in range(12):
338             self.assertAlmostEqual(da.getIJ(0,i),vals[i],13)
339             pass
340         da=DataArrayDouble.New(vals,4,3)
341         self.assertEqual(4,da.getNumberOfTuples());
342         self.assertEqual(3,da.getNumberOfComponents());
343         for i in range(12):
344             self.assertAlmostEqual(da.getIJ(0,i),vals[i],13)
345             pass
346         self.assertRaises(InterpKernelException,DataArrayDouble.New,vals,11);
347         self.assertRaises(InterpKernelException,DataArrayDouble.New,vals,13);
348         self.assertRaises(InterpKernelException,DataArrayDouble.New,vals,5,2);
349         self.assertRaises(InterpKernelException,DataArrayDouble.New,vals,7,2);
350         pass
351
352     def testSwigDADOp6(self):
353         da=DataArrayInt.New([5,6,7,8,9,6,7,-2,3,9,8,10])
354         da.rearrange(3)
355         da2=DataArrayInt.New([5,8,10,12])
356         self.assertEqual(4,da2.getNumberOfTuples());
357         self.assertEqual(1,da2.getNumberOfComponents());
358         da3=da+da2
359         self.assertEqual(4,da3.getNumberOfTuples());
360         self.assertEqual(3,da3.getNumberOfComponents());
361         expected1=[10,11,12,16,17,14,17,8,13,21,20,22]
362         for i in range(12):
363             self.assertEqual(da3.getIJ(0,i),expected1[i])
364             pass
365         da3=da2+da
366         self.assertEqual(4,da3.getNumberOfTuples());
367         self.assertEqual(3,da3.getNumberOfComponents());
368         for i in range(12):
369             self.assertEqual(da3.getIJ(0,i),expected1[i])
370             pass
371         da3=da+DataArrayInt.New(da2.getValues())
372         # Test new API of classmethod DataArrayInt.New
373         vals=[5,6,7,8,9,6,7,-2,3,9,8,10]
374         da=DataArrayDouble.New(vals)
375         self.assertEqual(12,da.getNumberOfTuples());
376         self.assertEqual(1,da.getNumberOfComponents());
377         for i in range(12):
378             self.assertEqual(da.getIJ(0,i),vals[i])
379             pass
380         da=DataArrayDouble.New(vals,12)
381         self.assertEqual(12,da.getNumberOfTuples());
382         self.assertEqual(1,da.getNumberOfComponents());
383         for i in range(12):
384             self.assertEqual(da.getIJ(0,i),vals[i])
385             pass
386         da=DataArrayDouble.New(vals,1,12)
387         self.assertEqual(1,da.getNumberOfTuples());
388         self.assertEqual(12,da.getNumberOfComponents());
389         for i in range(12):
390             self.assertEqual(da.getIJ(0,i),vals[i])
391             pass
392         da=DataArrayDouble.New(vals,6,2)
393         self.assertEqual(6,da.getNumberOfTuples());
394         self.assertEqual(2,da.getNumberOfComponents());
395         for i in range(12):
396             self.assertEqual(da.getIJ(0,i),vals[i])
397             pass
398         da=DataArrayDouble.New(vals,4,3)
399         self.assertEqual(4,da.getNumberOfTuples());
400         self.assertEqual(3,da.getNumberOfComponents());
401         for i in range(12):
402             self.assertEqual(da.getIJ(0,i),vals[i])
403             pass
404         self.assertRaises(InterpKernelException,DataArrayDouble.New,vals,11);
405         self.assertRaises(InterpKernelException,DataArrayDouble.New,vals,13);
406         self.assertRaises(InterpKernelException,DataArrayDouble.New,vals,5,2);
407         self.assertRaises(InterpKernelException,DataArrayDouble.New,vals,7,2);
408         pass
409
410     def testSwigDADOp9(self):
411         l1=[(1.,2.,3),(4.,5.,6.),(7.,8.,9.),[10.,11.,12.]]
412         da1=DataArrayDouble(l1,4,3)
413         self.assertEqual(4,da1.getNumberOfTuples());
414         self.assertEqual(3,da1.getNumberOfComponents());
415         da2=DataArrayDouble(12) ; da2.iota(1.) ; da2.rearrange(3)
416         self.assertTrue(da2.isEqual(da1,1e-12))
417         self.assertRaises(InterpKernelException,DataArrayDouble.New,l1,3,4);
418         da3=DataArrayDouble(l1,4)
419         self.assertTrue(da3.isEqual(da1,1e-12))
420         self.assertRaises(InterpKernelException,DataArrayDouble.New,l1,3);
421         self.assertRaises(InterpKernelException,DataArrayDouble.New,l1,5);
422         l1=[(1.,2.,3),(4.,(5.),((6.))),(7.,8.,9.),[10.,11.,12.]]
423         da1=DataArrayDouble(l1,4,3)
424         self.assertEqual(4,da1.getNumberOfTuples());
425         self.assertEqual(3,da1.getNumberOfComponents());
426         da2=DataArrayDouble(12) ; da2.iota(1.) ; da2.rearrange(3)
427         self.assertTrue(da2.isEqual(da1,1e-12))
428         self.assertRaises(InterpKernelException,DataArrayDouble.New,l1,3,4);
429         da3=DataArrayDouble(l1,4)
430         self.assertTrue(da3.isEqual(da1,1e-12))
431         self.assertRaises(InterpKernelException,DataArrayDouble.New,l1,3);
432         self.assertRaises(InterpKernelException,DataArrayDouble.New,l1,5);
433         #
434         l1=[(1,2,3),(4,5,6),(7,8,9),[10,11,12]]
435         da1=DataArrayInt(l1,4,3)
436         self.assertEqual(4,da1.getNumberOfTuples());
437         self.assertEqual(3,da1.getNumberOfComponents());
438         da2=DataArrayInt(12) ; da2.iota(1) ; da2.rearrange(3)
439         self.assertTrue(da2.isEqual(da1))
440         self.assertRaises(InterpKernelException,DataArrayInt.New,l1,3,4);
441         da3=DataArrayInt(l1,4)
442         self.assertTrue(da3.isEqual(da1))
443         self.assertRaises(InterpKernelException,DataArrayInt.New,l1,3);
444         self.assertRaises(InterpKernelException,DataArrayInt.New,l1,5);
445         l1=[(1,[2],3),(4,[(5)],6),((([7])),8,9),[10,11,12]]
446         da1=DataArrayInt(l1,4,3)
447         self.assertEqual(4,da1.getNumberOfTuples());
448         self.assertEqual(3,da1.getNumberOfComponents());
449         da2=DataArrayInt(12) ; da2.iota(1) ; da2.rearrange(3)
450         self.assertTrue(da2.isEqual(da1))
451         self.assertRaises(InterpKernelException,DataArrayInt.New,l1,3,4);
452         da3=DataArrayInt(l1,4)
453         self.assertTrue(da3.isEqual(da1))
454         self.assertRaises(InterpKernelException,DataArrayInt.New,l1,3);
455         self.assertRaises(InterpKernelException,DataArrayInt.New,l1,5);
456         pass
457
458     def testRenumberNodesInConn1(self):
459         mesh2DCoords=[-0.3,-0.3,0., 0.2,-0.3,0., 0.7,-0.3,0., -0.3,0.2,0., 0.2,0.2,0., 0.7,0.2,0., -0.3,0.7,0., 0.2,0.7,0., 0.7,0.7,0. ]
460         mesh2DConn=[1,4,2, 4,5,2, 0,3,4,1, 6,7,4,3, 7,8,5,4]
461         mesh2D=MEDCouplingUMesh.New("mesh",2);
462         mesh2D.allocateCells(5);
463         mesh2D.insertNextCell(NORM_TRI3,3,mesh2DConn[0:3])
464         mesh2D.insertNextCell(NORM_TRI3,3,mesh2DConn[3:6])
465         mesh2D.insertNextCell(NORM_QUAD4,4,mesh2DConn[6:10])
466         mesh2D.insertNextCell(NORM_QUAD4,4,mesh2DConn[10:14])
467         mesh2D.insertNextCell(NORM_QUAD4,4,mesh2DConn[14:18])
468         mesh2D.finishInsertingCells();
469         myCoords=DataArrayDouble.New(mesh2DCoords,9,3);
470         mesh2D.setCoords(myCoords);
471         mesh2D.checkConsistencyLight();
472         #
473         mesh3DCoords=[-0.3,-0.3,0., -0.3,0.2,0., 0.2,0.2,0., 0.2,-0.3,0., -0.3,-0.3,1., -0.3,0.2,1., 0.2,0.2,1., 0.2,-0.3,1. ]
474         mesh3DConn=[0,1,2,3,4,5,6,7]
475         mesh3D=MEDCouplingUMesh.New("mesh",3);
476         mesh3D.allocateCells(1);
477         mesh3D.insertNextCell(NORM_HEXA8,8,mesh3DConn[:])
478         mesh3D.finishInsertingCells();
479         myCoords3D=DataArrayDouble.New(mesh3DCoords,8,3);
480         mesh3D.setCoords(myCoords3D);
481         mesh3D.checkConsistencyLight();
482         #
483         mesh3D_2=mesh3D.deepCopy();
484         mesh2D_2=mesh2D.deepCopy();
485         mesh3D_4=mesh3D.deepCopy();
486         mesh2D_4=mesh2D.deepCopy();
487         oldNbOf3DNodes=mesh3D.getNumberOfNodes();
488         renumNodes=DataArrayInt.New();
489         renumNodes.alloc(mesh2D.getNumberOfNodes(),1);
490         renumNodes.iota(oldNbOf3DNodes);
491         coo=DataArrayDouble.Aggregate(mesh3D.getCoords(),mesh2D.getCoords());
492         mesh3D.setCoords(coo);
493         mesh2D.setCoords(coo);
494         mesh2DCpy=mesh2D.deepCopy()
495         mesh2D_3=mesh2D.deepCopy();
496         mesh2D_3.shiftNodeNumbersInConn(oldNbOf3DNodes);
497         mesh2D.renumberNodesInConn(renumNodes);
498         mesh2DCpy.renumberNodesInConn(renumNodes.getValues());
499         self.assertTrue(mesh2D.isEqual(mesh2DCpy,1e-12))
500         self.assertTrue(mesh2D.isEqual(mesh2D_3,1e-12))
501         #
502         da1,da2=mesh3D.checkGeoEquivalWith(mesh3D_2,10,1e-12);
503         self.assertTrue(da1==None);
504         self.assertEqual(8,da2.getNumberOfTuples());
505         self.assertEqual(1,da2.getNumberOfComponents());
506         expected1=[8,11,12,9,4,5,6,7]
507         for i in range(8):
508             self.assertEqual(expected1[i],da2.getIJ(i,0));
509             pass
510         #
511         da1,da2=mesh2D.checkGeoEquivalWith(mesh2D_2,10,1e-12);
512         self.assertTrue(da1==None);
513         self.assertEqual(9,da2.getNumberOfTuples());
514         self.assertEqual(1,da2.getNumberOfComponents());
515         for i in range(9):
516             self.assertEqual(8+i,da2.getIJ(i,0));
517             pass
518         #
519         mesh2D_5=mesh2D_4.deepCopy();
520         mesh2D_5.translate([1.,0.,0.]);
521         meshes=[mesh3D_4,mesh2D_4,mesh2D_5];
522         MEDCouplingUMesh.PutUMeshesOnSameAggregatedCoords(meshes);
523         self.assertTrue(mesh3D_4.getCoords().getHiddenCppPointer()==mesh2D_4.getCoords().getHiddenCppPointer());
524         self.assertTrue(mesh2D_4.getCoords().getHiddenCppPointer()==mesh2D_5.getCoords().getHiddenCppPointer());
525         mesh3D_4.checkConsistencyLight(); mesh2D_4.checkConsistencyLight(); mesh2D_5.checkConsistencyLight();
526         self.assertEqual(26,mesh3D_4.getNumberOfNodes());
527         self.assertEqual(3,mesh3D_4.getSpaceDimension());
528         self.assertEqual(9,mesh3D_4.getNodalConnectivity().getNumberOfTuples());
529         self.assertEqual(23,mesh2D_4.getNodalConnectivity().getNumberOfTuples());
530         self.assertEqual(23,mesh2D_5.getNodalConnectivity().getNumberOfTuples());
531         expected2=[18,0,1,2,3,4,5,6,7]
532         expected3=[3,9,12,10, 3,12,13,10, 4,8,11,12,9, 4,14,15,12,11, 4,15,16,13,12]
533         expected4=[3,18,21,19, 3,21,22,19, 4,17,20,21,18, 4,23,24,21,20, 4,24,25,22,21]
534         expected5=[-0.3,-0.3,0., -0.3,0.2,0., 0.2,0.2,0., 0.2,-0.3,0., -0.3,-0.3,1., -0.3,0.2,1., 0.2,0.2,1., 0.2,-0.3,1., -0.3,-0.3,0., 0.2,-0.3,0., 0.7,-0.3,0., -0.3,0.2,0., 0.2,0.2,0., 0.7,0.2,0., -0.3,0.7,0., 0.2,0.7,0., 0.7,0.7,0., 0.7, -0.3, 0.0, 1.2, -0.3, 0.0, 1.7, -0.3, 0.0, 0.7, 0.2, 0.0, 1.2, 0.2, 0.0, 1.7, 0.2, 0.0, 0.7, 0.7, 0.0, 1.2, 0.7, 0.0, 1.7, 0.7, 0.0]
535         self.assertEqual(expected2,mesh3D_4.getNodalConnectivity().getValues());
536         self.assertEqual(expected3,mesh2D_4.getNodalConnectivity().getValues());
537         self.assertEqual(expected4,mesh2D_5.getNodalConnectivity().getValues());
538         for i in range(78):
539             self.assertAlmostEqual(expected5[i],mesh3D_4.getCoords().getIJ(0,i),12);
540             pass
541         #
542         MEDCouplingUMesh.MergeNodesOnUMeshesSharingSameCoords(meshes,1e-12);
543         mesh3D_4.checkConsistencyLight(); mesh2D_4.checkConsistencyLight(); mesh2D_5.checkConsistencyLight();
544         self.assertTrue(mesh3D_4.getCoords().getHiddenCppPointer()==mesh2D_4.getCoords().getHiddenCppPointer());
545         self.assertTrue(mesh2D_4.getCoords().getHiddenCppPointer()==mesh2D_5.getCoords().getHiddenCppPointer());
546         self.assertEqual(19,mesh3D_4.getNumberOfNodes());
547         self.assertEqual(3,mesh3D_4.getSpaceDimension());
548         self.assertEqual(9,mesh3D_4.getNodalConnectivity().getNumberOfTuples());
549         self.assertEqual(23,mesh2D_4.getNodalConnectivity().getNumberOfTuples());
550         self.assertEqual(23,mesh2D_5.getNodalConnectivity().getNumberOfTuples());
551         expected6=[18,0,1,2,3,4,5,6,7]
552         expected7=[3,3,2,8, 3,2,9,8, 4,0,1,2,3, 4,10,11,2,1, 4,11,12,9,2]
553         expected8=[3,13,15,14, 3,15,16,14, 4,8,9,15,13, 4,12,17,15,9, 4,17,18,16,15]
554         expected9=[-0.3, -0.3, 0., -0.3, 0.2, 0., 0.2, 0.2, 0., 0.2, -0.3, 0., -0.3, -0.3, 1., -0.3, 0.2, 1.,
555                     0.2, 0.2, 1., 0.2, -0.3, 1., 0.7, -0.3, 0., 0.7, 0.2, 0., -0.3, 0.7, 0., 0.2, 0.7, 0.,
556                     0.7, 0.7, 0., 1.2, -0.3, 0., 1.7, -0.3, 0., 1.2, 0.2, 0., 1.7, 0.2, 0., 1.2, 0.7, 0., 1.7, 0.7, 0.]
557         self.assertEqual(expected6,mesh3D_4.getNodalConnectivity().getValues());
558         self.assertEqual(expected7,mesh2D_4.getNodalConnectivity().getValues());
559         self.assertEqual(expected8,mesh2D_5.getNodalConnectivity().getValues());
560         for i in range(57):
561             self.assertAlmostEqual(expected9[i],mesh3D_4.getCoords().getIJ(0,i),12);
562             pass
563         #
564         pass
565
566     def testComputeNeighborsOfCells1(self):
567         m=MEDCouplingDataForTest.build2DTargetMesh_1();
568         d1,d2=m.computeNeighborsOfCells();
569         self.assertEqual(6,d2.getNumberOfTuples());
570         self.assertEqual(10,d1.getNumberOfTuples());
571         expected1=[0,2,4,6,8,10]
572         expected2=[3,1,0,2,4,1,4,0,2,3]
573         self.assertEqual(expected1,d2.getValues());
574         self.assertEqual(expected2,d1.getValues());
575         pass
576
577     def testCheckButterflyCellsBug1(self):
578         mesh2DCoords=[323.85,120.983748908684,317.5,131.982271536747,336.55,120.983748908686,330.2,131.982271536751,323.85,142.98079416481]
579         mesh2DConn=[4,1,0,2,3]
580         mesh2D=MEDCouplingUMesh.New("mesh",2);
581         mesh2D.allocateCells(1);
582         mesh2D.insertNextCell(NORM_POLYGON,5,mesh2DConn[0:5])
583         mesh2D.finishInsertingCells();
584         myCoords=DataArrayDouble.New(mesh2DCoords,5,2);
585         mesh2D.setCoords(myCoords);
586         mesh2D.checkConsistencyLight();
587         #
588         v=mesh2D.checkButterflyCells();
589         self.assertTrue(v.empty());
590         pass
591
592     def testDataArrayIntRange1(self):
593         d=DataArrayInt.Range(2,17,7);
594         expected1=[2,9,16]
595         self.assertEqual(3,d.getNumberOfTuples());
596         self.assertEqual(1,d.getNumberOfComponents());
597         self.assertEqual(expected1,d.getValues());
598         #
599         d=DataArrayInt.Range(2,23,7);
600         self.assertEqual(3,d.getNumberOfTuples());
601         self.assertEqual(1,d.getNumberOfComponents());
602         self.assertEqual(expected1,d.getValues());
603         #
604         d=DataArrayInt.Range(2,24,7);
605         expected2=[2,9,16,23]
606         self.assertEqual(4,d.getNumberOfTuples());
607         self.assertEqual(1,d.getNumberOfComponents());
608         self.assertEqual(expected2,d.getValues());
609         #
610         d=DataArrayInt.Range(24,2,-7);
611         expected3=[24,17,10,3]
612         self.assertEqual(4,d.getNumberOfTuples());
613         self.assertEqual(1,d.getNumberOfComponents());
614         self.assertEqual(expected3,d.getValues());
615         #
616         d=DataArrayInt.Range(23,2,-7);
617         expected4=[23,16,9]
618         self.assertEqual(3,d.getNumberOfTuples());
619         self.assertEqual(1,d.getNumberOfComponents());
620         self.assertEqual(expected4,d.getValues());
621         #
622         d=DataArrayInt.Range(23,22,-7);
623         self.assertEqual(1,d.getNumberOfTuples());
624         self.assertEqual(1,d.getNumberOfComponents());
625         self.assertEqual(23,d.getIJ(0,0));
626         #
627         d=DataArrayInt.Range(22,23,7);
628         self.assertEqual(1,d.getNumberOfTuples());
629         self.assertEqual(1,d.getNumberOfComponents());
630         self.assertEqual(22,d.getIJ(0,0));
631         #
632         d=DataArrayInt.Range(22,22,7);
633         self.assertEqual(0,d.getNumberOfTuples());
634         self.assertEqual(1,d.getNumberOfComponents());
635         #
636         d=DataArrayInt.Range(22,22,-7);
637         self.assertEqual(0,d.getNumberOfTuples());
638         self.assertEqual(1,d.getNumberOfComponents());
639         #
640         self.assertRaises(InterpKernelException,DataArrayInt.Range,22,23,-7);
641         self.assertRaises(InterpKernelException,DataArrayInt.Range,23,22,7);
642         self.assertRaises(InterpKernelException,DataArrayInt.Range,23,22,0);
643         self.assertRaises(InterpKernelException,DataArrayInt.Range,22,23,0);
644         pass
645
646     def testSwigUMeshGetItem1(self):
647         m=MEDCouplingDataForTest.build2DTargetMesh_1();
648         subMesh=m.buildPartOfMySelf([1,3],True);
649         self.assertTrue(isinstance(subMesh,MEDCouplingUMesh))
650         m1=m[[1,3]]
651         self.assertTrue(isinstance(m1,MEDCouplingUMesh))
652         m2=m[(1,3)]
653         self.assertTrue(isinstance(m2,MEDCouplingUMesh))
654         m3=m[1::2]
655         self.assertTrue(isinstance(m3,MEDCouplingUMesh))
656         m4=m[DataArrayInt.New([1,3])]
657         m5_1=m[1]
658         self.assertTrue(isinstance(m5_1,MEDCouplingUMesh))
659         m5_2=m[3]
660         self.assertTrue(isinstance(m5_2,MEDCouplingUMesh))
661         m5=MEDCouplingUMesh.MergeUMeshesOnSameCoords([m5_1,m5_2]);
662         m5.setName(subMesh.getName())
663         self.assertTrue(isinstance(m4,MEDCouplingUMesh))
664         self.assertTrue(subMesh.isEqual(m1,1e-12))
665         self.assertTrue(subMesh.isEqual(m2,1e-12))
666         self.assertTrue(subMesh.isEqual(m3,1e-12))
667         self.assertTrue(subMesh.isEqual(m4,1e-12))
668         self.assertTrue(subMesh.isEqual(m5,1e-12))
669         self.assertRaises(InterpKernelException,m.buildPartOfMySelf,[1,5],True);
670         pass
671
672     def testSwigGetItem3(self):
673         da=DataArrayInt.New([4,5,6])
674         self.assertEqual(5,da[1])
675         self.assertEqual(6,da[-1])
676         self.assertRaises(InterpKernelException,da.__getitem__,3)
677         da=DataArrayInt.New([4,5,6,7,8,9],2,3)
678         self.assertEqual(9,da[1,2])
679         da=DataArrayDouble.New([4.1,5.2,6.3])
680         self.assertAlmostEqual(5.2,da[1],12)
681         self.assertAlmostEqual(6.3,da[-1],12)
682         self.assertRaises(InterpKernelException,da.__getitem__,3)
683         da=DataArrayDouble.New([4.12,5.12,6.12,7.12,8.12,9.12],2,3)
684         self.assertAlmostEqual(9.12,da[1,2],12)
685         pass
686
687     def testSwigDADISub1(self):
688         mesh3D,mesh2D=MEDCouplingDataForTest.build3DExtrudedUMesh_1();
689         bary=mesh3D.computeCellCenterOfMass()
690         bary=bary[:,:2]
691         pts=bary.getDifferentValues(1e-12)
692         expected=[[0,6,12],[1,7,13],[2,8,14],[3,9,15],[4,10,16],[5,11,17]]
693         for pos,pt in enumerate(pts):
694             bary2=bary[:,:2]
695             bary2[:]-=pt
696             norm=bary2.magnitude()
697             self.assertEqual(expected[pos],norm.findIdsInRange(-1.,1e-5).getValues())
698             pass
699         expected2=[[3.,54.],[-141.,180.],[21.,54.],[39.,72.],[-15.,90.],[21.,90.]]
700         for pos,pt in enumerate(pts):
701             bary2=bary[:,:2]
702             bary2[:]+=pt
703             self.assertAlmostEqual(expected2[pos][0],bary2.accumulate()[0],12);
704             self.assertAlmostEqual(expected2[pos][1],bary2.accumulate()[1],12);
705             pass
706         expected3=[[-3.,22.5],[45.,337.5],[-9., 22.5],[-15.,67.5],[3.,112.5],[-9.,112.5]]
707         for pos,pt in enumerate(pts):
708             bary2=bary[:,:2]
709             bary2[:]*=pt
710             self.assertAlmostEqual(expected3[pos][0],bary2.accumulate()[0],12);
711             self.assertAlmostEqual(expected3[pos][1],bary2.accumulate()[1],12);
712             pass
713         expected4=[[-12.,90.],[0.8,6.],[-4,90.],[-2.4,30.],[12.,18],[-4,18.]]
714         for pos,pt in enumerate(pts):
715             bary2=bary[:,:2]
716             bary2[:]/=pt
717             self.assertAlmostEqual(expected4[pos][0],bary2.accumulate()[0],12);
718             self.assertAlmostEqual(expected4[pos][1],bary2.accumulate()[1],12);
719             pass
720         #
721         d=DataArrayInt.New([1,2,0,1,0,2],3,2)
722         e=DataArrayInt.New([1,11,101,2,12,102,3,13,103,4,14,104],4,3)
723         expected5=[[1,11,101,77,77,77,77,77,77,4,14,104],[77,77,77,77,77,77,3,13,103,4,14,104],[77,77,77,2,12,102,77,77,77,4,14,104]]
724         expected6=[[1,77,77,2,77,77,3,77,77,4,77,77],[77,77,101,77,77,102,77,77,103,77,77,104],[77,11,77,77,12,77,77,13,77,77,14,77]]
725         for pos,tup in enumerate(d):
726             f=e[:]
727             self.assertTrue(isinstance(f,DataArrayInt))
728             f[tup]=77
729             self.assertEqual(expected5[pos],f.getValues())
730             self.assertEqual(6*[77],f[tup].getValues())
731             f=e[:]
732             f[:,tup]=77
733             self.assertEqual(expected6[pos],f.getValues())
734             self.assertEqual(8*[77],f[:,tup].getValues())
735             pass
736         #
737         e=e.convertToDblArr()
738         for pos,tup in enumerate(d):
739             f=e[:]
740             self.assertTrue(isinstance(f,DataArrayDouble))
741             f[tup]=77.
742             self.assertEqual(expected5[pos],f.convertToIntArr().getValues())
743             self.assertEqual(6*[77],f[tup].convertToIntArr().getValues())
744             f=e[:]
745             f[:,tup]=77.
746             self.assertEqual(expected6[pos],f.convertToIntArr().getValues())
747             self.assertEqual(8*[77],f[:,tup].convertToIntArr().getValues())
748             pass
749         pass
750
751     def testDataArrayDoubleGetMinMaxPerComponent1(self):
752         values1=[1.,2.,3.,-0.9,2.1,3.,1.3,1.7,3.,1.,1.8,3.]
753         d1=DataArrayDouble.New();
754         self.assertRaises(InterpKernelException,d1.getMinMaxPerComponent)
755         d1=DataArrayDouble.New(values1,4,3);
756         res=d1.getMinMaxPerComponent();
757         self.assertTrue(isinstance(res,list))
758         self.assertEqual(3,len(res))
759         for i in range(3):
760             self.assertTrue(isinstance(res[i],tuple))
761             self.assertEqual(2,len(res[i]))
762             pass
763         expected1=[-0.9,1.3,1.7,2.1,3.,3.]
764         for i in range(6):
765             self.assertAlmostEqual(expected1[i], res[i // 2][i % 2], 14)
766             pass
767         #
768         d1.rearrange(2);
769         res=d1.getMinMaxPerComponent();
770         self.assertTrue(isinstance(res,list))
771         self.assertEqual(2,len(res))
772         for i in range(2):
773             self.assertTrue(isinstance(res[i],tuple))
774             self.assertEqual(2,len(res[i]))
775             pass
776         expected2=[1.,3.,-0.9,3.]
777         for i in range(4):
778             self.assertAlmostEqual(expected2[i], res[i // 2][i % 2], 14)
779             pass
780         #
781         d1.rearrange(1);
782         res=d1.getMinMaxPerComponent();
783         self.assertTrue(isinstance(res,list))
784         self.assertEqual(1,len(res))
785         for i in range(1):
786             self.assertTrue(isinstance(res[i],tuple))
787             self.assertEqual(2,len(res[i]))
788             pass
789         expected3=[-0.9,3.]
790         for i in range(2):
791             self.assertAlmostEqual(expected3[i], res[i // 2][i % 2], 14)
792             pass
793         pass
794
795     def testDataArrayIntGetHashCode1(self):
796         d1 = DataArrayInt.New(list(range(3545)))
797         d2 = DataArrayInt.New(list(range(3545)))
798         self.assertEqual(d2.getHashCode(),d1.getHashCode())
799         self.assertEqual(232341068,d1.getHashCode())
800         d1[886]=6
801         self.assertEqual(232340188,d1.getHashCode())
802         pass
803
804     def testZipConnectivityPol1(self):
805         m1=MEDCouplingDataForTest.build2DTargetMesh_1();
806         cells1=[2,3,4]
807         m2_1=m1.buildPartOfMySelf(cells1,True);
808         m2=m2_1
809         self.assertTrue(isinstance(m2,MEDCouplingUMesh))
810         # no permutation policy 0
811         isOk,arr=m1.areCellsIncludedIn(m2,0)
812         self.assertTrue(isOk);
813         self.assertEqual(3,arr.getNumberOfTuples());
814         self.assertEqual(1,arr.getNumberOfComponents());
815         self.assertEqual(cells1,arr.getValues())
816         # no permutation policy 1
817         isOk,arr=m1.areCellsIncludedIn(m2,1)
818         self.assertTrue(isOk);
819         self.assertEqual(3,arr.getNumberOfTuples());
820         self.assertEqual(1,arr.getNumberOfComponents());
821         self.assertEqual(cells1,arr.getValues())
822         # no permutation policy 2
823         isOk,arr=m1.areCellsIncludedIn(m2,2)
824         self.assertTrue(isOk);
825         self.assertEqual(3,arr.getNumberOfTuples());
826         self.assertEqual(1,arr.getNumberOfComponents());
827         self.assertEqual(cells1,arr.getValues())
828         # some modification into m2
829         modif1=[2,4,5]
830         m2.getNodalConnectivity()[1:4]=modif1
831         #policy 0 fails because cell0 in m2 has same orientation be not same connectivity
832         expected1=[5,3,4]
833         isOk,arr=m1.areCellsIncludedIn(m2,0)
834         self.assertTrue(not isOk);
835         self.assertEqual(3,arr.getNumberOfTuples());
836         self.assertEqual(1,arr.getNumberOfComponents());
837         self.assertEqual(expected1,arr.getValues())
838         #policy 1 succeeds because cell0 in m2 has not exactly the same conn
839         isOk,arr=m1.areCellsIncludedIn(m2,1)
840         self.assertTrue(isOk);
841         self.assertEqual(3,arr.getNumberOfTuples());
842         self.assertEqual(1,arr.getNumberOfComponents());
843         self.assertEqual(cells1,arr.getValues())
844         #policy 2 succeeds because cell0 in m2 has same nodes in connectivity
845         isOk,arr=m1.areCellsIncludedIn(m2,2)
846         self.assertTrue(isOk);
847         self.assertEqual(3,arr.getNumberOfTuples());
848         self.assertEqual(1,arr.getNumberOfComponents());
849         self.assertEqual(cells1,arr.getValues())
850         #some new modification into m2
851         modif2=[2,5,4]
852         m2.getNodalConnectivity()[1:4]=modif2
853         #policy 0 fails because cell0 in m2 has not exactly the same conn
854         isOk,arr=m1.areCellsIncludedIn(m2,0)
855         self.assertTrue(not isOk);
856         self.assertEqual(3,arr.getNumberOfTuples());
857         self.assertEqual(1,arr.getNumberOfComponents());
858         self.assertEqual(expected1,arr.getValues())
859         #policy 1 fails too because cell0 in m2 has not same orientation
860         isOk,arr=m1.areCellsIncludedIn(m2,1)
861         self.assertTrue(not isOk);
862         self.assertEqual(3,arr.getNumberOfTuples());
863         self.assertEqual(1,arr.getNumberOfComponents());
864         self.assertEqual(expected1,arr.getValues())
865         #policy 2 succeeds because cell0 in m2 has same nodes in connectivity
866         isOk,arr=m1.areCellsIncludedIn(m2,2)
867         self.assertTrue(isOk);
868         self.assertEqual(3,arr.getNumberOfTuples());
869         self.assertEqual(1,arr.getNumberOfComponents());
870         self.assertEqual(cells1,arr.getValues())
871         # Now 1D
872         cells2=[3,2]
873         m1=MEDCouplingDataForTest.build1DSourceMesh_2();
874         m2_1=m1.buildPartOfMySelf(cells2,True);
875         m2=m2_1
876         self.assertTrue(isinstance(m2,MEDCouplingUMesh))
877         # no permutation policy 0
878         isOk,arr=m1.areCellsIncludedIn(m2,0)
879         self.assertTrue(isOk);
880         self.assertEqual(2,arr.getNumberOfTuples());
881         self.assertEqual(1,arr.getNumberOfComponents());
882         self.assertEqual(cells2,arr.getValues())
883         # no permutation policy 1
884         isOk,arr=m1.areCellsIncludedIn(m2,1)
885         self.assertTrue(isOk);
886         self.assertEqual(2,arr.getNumberOfTuples());
887         self.assertEqual(1,arr.getNumberOfComponents());
888         self.assertEqual(cells2,arr.getValues())
889         # no permutation policy 2
890         isOk,arr=m1.areCellsIncludedIn(m2,2)
891         self.assertTrue(isOk);
892         self.assertEqual(2,arr.getNumberOfTuples());
893         self.assertEqual(1,arr.getNumberOfComponents());
894         self.assertEqual(cells2,arr.getValues())
895         # some modification into m2
896         modif3=[4,3]
897         m2.getNodalConnectivity()[1:3]=modif3
898         #policy 0 fails because cell0 in m2 has not exactly the same conn
899         expected2=[4,2]
900         isOk,arr=m1.areCellsIncludedIn(m2,0)
901         self.assertTrue(not isOk);
902         self.assertEqual(2,arr.getNumberOfTuples());
903         self.assertEqual(1,arr.getNumberOfComponents());
904         self.assertEqual(expected2,arr.getValues())
905         #policy 1 fails too because cell0 in m2 has not same orientation
906         isOk,arr=m1.areCellsIncludedIn(m2,1)
907         self.assertTrue(not isOk);
908         self.assertEqual(2,arr.getNumberOfTuples());
909         self.assertEqual(1,arr.getNumberOfComponents());
910         self.assertEqual(expected2,arr.getValues())
911         #policy 2 succeeds because cell0 in m2 has same nodes in connectivity
912         isOk,arr=m1.areCellsIncludedIn(m2,2)
913         self.assertTrue(isOk);
914         self.assertEqual(2,arr.getNumberOfTuples());
915         self.assertEqual(1,arr.getNumberOfComponents());
916         self.assertEqual(cells2,arr.getValues())
917         pass
918
919     def toSeeIfDaIIopsAreOK(self,d):
920         d+=5
921         d*=6
922         d/=3
923         d-=2
924         d%=7
925         pass
926
927     def testSwigDAIOp5(self):
928         d=DataArrayInt.New([4,5,6,10,3,-1],2,3)
929         self.toSeeIfDaIIopsAreOK(d)
930         dExp=DataArrayInt.New([2,4,6,0,0,6],2,3)
931         self.assertTrue(d.isEqual(dExp));
932         pass
933
934     def toSeeIfDaDIopsAreOK(self,d):
935         d+=5
936         d*=6
937         d/=3
938         d-=2
939         pass
940
941     def testSwigDADOp7(self):
942         d=DataArrayDouble.New([4.,5.,6.,10.,3.,-1.],2,3)
943         self.toSeeIfDaDIopsAreOK(d)
944         dExp=DataArrayDouble.New([16.,18.,20.,28.,14.,6.],2,3)
945         self.assertTrue(d.isEqual(dExp,1e-14));
946         pass
947
948     def testConvexEnvelop2D1(self):
949 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950         conn=[0,2,3,4,5,6,1,1,8,2,0,6,18,7,2,9,10,3,0,1,8,3,10,11,12,4,0,2,4,3,12,13,14,5,0,5,0,4,14,15,16,6,6,1,0,5,16,17,18,7,20,8,1,18,36,19,8,21,9,2,1,7,20,9,22,23,10,2,8,21,10,23,24,11,3,2,9,11,24,25,26,12,3,10,12,11,26,27,13,4,3,13,12,27,28,29,14,4,14,4,13,29,30,15,5,15,5,14,30,31,32,16,16,6,5,15,32,33,17,17,18,6,16,33,34,35,18,7,1,6,17,35,36,19,38,20,7,36,60,37,20,39,21,8,7,19,38,21,40,22,9,8,20,39,22,41,42,23,9,21,40,23,42,43,24,10,9,22,24,43,44,25,11,10,23,25,44,45,46,26,11,24,26,25,46,47,27,12,11,27,26,47,48,28,13,12,28,27,48,49,50,29,13,29,13,28,50,51,30,14,30,14,29,51,52,31,15,31,15,30,52,53,54,32,32,16,15,31,54,55,33,33,17,16,32,55,56,34,34,35,17,33,56,57,58,35,36,18,17,34,58,59,36,19,7,18,35,59,60,37,62,38,19,60,90,61,38,63,39,20,19,37,62,39,64,40,21,20,38,63,40,65,41,22,21,39,64,41,66,67,42,22,40,65,42,67,68,43,23,22,41,43,68,69,44,24,23,42,44,69,70,45,25,24,43,45,70,71,72,46,25,44,46,45,72,73,47,26,25,47,46,73,74,48,27,26,48,47,74,75,49,28,27,49,48,75,76,77,50,28,50,28,49,77,78,51,29,51,29,50,78,79,52,30,52,30,51,79,80,53,31,53,31,52,80,81,82,54,54,32,31,53,82,83,55,55,33,32,54,83,84,56,56,34,33,55,84,85,57,57,58,34,56,85,86,87,58,59,35,34,57,87,88,59,60,36,35,58,88,89,60,37,19,36,59,89,90,61,92,62,37,90,126,91,62,93,63,38,37,61,92,63,94,64,39,38,62,93,64,95,65,40,39,63,94,65,96,66,41,40,64,95,66,97,98,67,41,65,96,67,98,99,68,42,41,66,68,99,100,69,43,42,67,69,100,101,70,44,43,68,70,101,102,71,45,44,69,71,102,103,104,72,45,70,72,71,104,105,73,46,45,73,72,105,106,74,47,46,74,73,106,107,75,48,47,75,74,107,108,76,49,48,76,75,108,109,110,77,49,77,49,76,110,111,78,50,78,50,77,111,112,79,51,79,51,78,112,113,80,52,80,52,79,113,114,81,53,81,53,80,114,115,116,82,82,54,53,81,116,117,83,83,55,54,82,117,118,84,84,56,55,83,118,119,85,85,57,56,84,119,120,86,86,87,57,85,120,121,122,87,88,58,57,86,122,123,88,89,59,58,87,123,124,89,90,60,59,88,124,125,90,61,37,60,89,125,126,91,128,92,61,126,168,127,92,129,93,62,61,91,128,93,130,94,63,62,92,129,94,131,95,64,63,93,130,95,132,96,65,64,94,131,96,133,97,66,65,95,132,97,134,135,98,66,96,133,98,135,136,99,67,66,97,99,136,137,100,68,67,98,100,137,138,101,69,68,99,101,138,139,102,70,69,100,102,139,140,103,71,70,101,103,140,141,142,104,71,102,104,103,142,143,105,72,71,105,104,143,144,106,73,72,106,105,144,145,107,74,73,107,106,145,146,108,75,74,108,107,146,147,109,76,75,109,108,147,148,149,110,76,110,76,109,149,150,111,77,111,77,110,150,151,112,78,112,78,111,151,152,113,79,113,79,112,152,153,114,80,114,80,113,153,154,115,81,115,81,114,154,155,156,116,116,82,81,115,156,157,117,117,83,82,116,157,158,118,118,84,83,117,158,159,119,119,85,84,118,159,160,120,120,86,85,119,160,161,121,121,122,86,120,161,162,163,122,123,87,86,121,163,164,123,124,88,87,122,164,165,124,125,89,88,123,165,166,125,126,90,89,124,166,167,126,91,61,90,125,167,168,127,170,128,91,168,216,169,128,171,129,92,91,127,170,129,172,130,93,92,128,171,130,173,131,94,93,129,172,131,174,132,95,94,130,173,132,175,133,96,95,131,174,133,176,134,97,96,132,175,134,177,178,135,97,133,176,135,178,179,136,98,97,134,136,179,180,137,99,98,135,137,180,181,138,100,99,136,138,181,182,139,101,100,137,139,182,183,140,102,101,138,140,183,184,141,103,102,139,141,184,185,186,142,103,140,142,141,186,187,143,104,103,143,142,187,188,144,105,104,144,143,188,189,145,106,105,145,144,189,190,146,107,106,146,145,190,191,147,108,107,147,146,191,192,148,109,108,148,147,192,193,194,149,109,149,109,148,194,195,150,110,150,110,149,195,196,151,111,151,111,150,196,197,152,112,152,112,151,197,198,153,113,153,113,152,198,199,154,114,154,114,153,199,200,155,115,155,115,154,200,201,202,156,156,116,115,155,202,203,157,157,117,116,156,203,204,158,158,118,117,157,204,205,159,159,119,118,158,205,206,160,160,120,119,159,206,207,161,161,121,120,160,207,208,162,162,163,121,161,208,209,210,163,164,122,121,162,210,211,164,165,123,122,163,211,212,165,166,124,123,164,212,213,166,167,125,124,165,213,214,167,168,126,125,166,214,215,168,127,91,126,167,215,216,169,218,170,127,216,270,217,170,219,171,128,127,169,218,171,220,172,129,128,170,219,172,221,173,130,129,171,220,173,222,174,131,130,172,221,174,223,175,132,131,173,222,175,224,176,133,132,174,223,176,225,177,134,133,175,224,177,226,227,178,134,176,225,178,227,228,179,135,134,177,179,228,229,180,136,135,178,180,229,230,181,137,136,179,181,230,231,182,138,137,180,182,231,232,183,139,138,181,183,232,233,184,140,139,182,184,233,234,185,141,140,183,185,234,235,236,186,141,184,186,185,236,237,187,142,141,187,186,237,238,188,143,142,188,187,238,239,189,144,143,189,188,239,240,190,145,144,190,189,240,241,191,146,145,191,190,241,242,192,147,146,192,191,242,243,193,148,147,193,192,243,244,245,194,148,194,148,193,245,246,195,149,195,149,194,246,247,196,150,196,150,195,247,248,197,151,197,151,196,248,249,198,152,198,152,197,249,250,199,153,199,153,198,250,251,200,154,200,154,199,251,252,201,155,201,155,200,252,253,254,202,202,156,155,201,254,255,203,203,157,156,202,255,256,204,204,158,157,203,256,257,205,205,159,158,204,257,258,206,206,160,159,205,258,259,207,207,161,160,206,259,260,208,208,162,161,207,260,261,209,209,210,162,208,261,262,263,210,211,163,162,209,263,264,211,212,164,163,210,264,265,212,213,165,164,211,265,266,213,214,166,165,212,266,267,214,215,167,166,213,267,268,215,216,168,167,214,268,269,216,169,127,168,215,269,270,217,272,218,169,270,330,271,218,273,219,170,169,217,272,219,274,220,171,170,218,273,220,275,221,172,171,219,274,221,276,222,173,172,220,275,222,277,223,174,173,221,276,223,278,224,175,174,222,277,224,279,225,176,175,223,278,225,280,226,177,176,224,279,226,281,282,227,177,225,280,227,282,283,228,178,177,226,228,283,284,229,179,178,227,229,284,285,230,180,179,228,230,285,286,231,181,180,229,231,286,287,232,182,181,230,232,287,288,233,183,182,231,233,288,289,234,184,183,232,234,289,290,235,185,184,233,235,290,291,292,236,185,234,236,235,292,293,237,186,185,237,236,293,294,238,187,186,238,237,294,295,239,188,187,239,238,295,296,240,189,188,240,239,296,297,241,190,189,241,240,297,298,242,191,190,242,241,298,299,243,192,191,243,242,299,300,244,193,192,244,243,300,301,302,245,193,245,193,244,302,303,246,194,246,194,245,303,304,247,195,247,195,246,304,305,248,196,248,196,247,305,306,249,197,249,197,248,306,307,250,198,250,198,249,307,308,251,199,251,199,250,308,309,252,200,252,200,251,309,310,253,201,253,201,252,310,311,312,254,254,202,201,253,312,313,255,255,203,202,254,313,314,256,256,204,203,255,314,315,257,257,205,204,256,315,316,258,258,206,205,257,316,317,259,259,207,206,258,317,318,260,260,208,207,259,318,319,261,261,209,208,260,319,320,262,262,263,209,261,320,321,322,263,264,210,209,262,322,323,264,265,211,210,263,323,324,265,266,212,211,264,324,325,266,267,213,212,265,325,326,267,268,214,213,266,326,327,268,269,215,214,267,327,328,269,270,216,215,268,328,329,270,217,169,216,269,329,330,271,272,217,330,273,218,217,271,274,219,218,272,275,220,219,273,276,221,220,274,277,222,221,275,278,223,222,276,279,224,223,277,280,225,224,278,281,226,225,279,281,282,226,280,283,227,226,281,284,228,227,282,285,229,228,283,286,230,229,284,287,231,230,285,288,232,231,286,289,233,232,287,290,234,233,288,291,235,234,289,291,292,235,290,291,293,236,235,292,294,237,236,293,295,238,237,294,296,239,238,295,297,240,239,296,298,241,240,297,299,242,241,298,300,243,242,299,301,244,243,301,300,302,244,244,301,303,245,245,302,304,246,246,303,305,247,247,304,306,248,248,305,307,249,249,306,308,250,250,307,309,251,251,308,310,252,252,309,311,253,311,253,310,312,254,253,311,313,255,254,312,314,256,255,313,315,257,256,314,316,258,257,315,317,259,258,316,318,260,259,317,319,261,260,318,320,262,261,319,321,321,322,262,320,323,263,262,321,324,264,263,322,325,265,264,323,326,266,265,324,327,267,266,325,328,268,267,326,329,269,268,327,330,270,269,328,271,217,270,329]
951         connI=[0,7,14,21,28,35,42,49,56,63,70,77,84,91,98,105,112,119,126,133,140,147,154,161,168,175,182,189,196,203,210,217,224,231,238,245,252,259,266,273,280,287,294,301,308,315,322,329,336,343,350,357,364,371,378,385,392,399,406,413,420,427,434,441,448,455,462,469,476,483,490,497,504,511,518,525,532,539,546,553,560,567,574,581,588,595,602,609,616,623,630,637,644,651,658,665,672,679,686,693,700,707,714,721,728,735,742,749,756,763,770,777,784,791,798,805,812,819,826,833,840,847,854,861,868,875,882,889,896,903,910,917,924,931,938,945,952,959,966,973,980,987,994,1001,1008,1015,1022,1029,1036,1043,1050,1057,1064,1071,1078,1085,1092,1099,1106,1113,1120,1127,1134,1141,1148,1155,1162,1169,1176,1183,1190,1197,1204,1211,1218,1225,1232,1239,1246,1253,1260,1267,1274,1281,1288,1295,1302,1309,1316,1323,1330,1337,1344,1351,1358,1365,1372,1379,1386,1393,1400,1407,1414,1421,1428,1435,1442,1449,1456,1463,1470,1477,1484,1491,1498,1505,1512,1519,1526,1533,1540,1547,1554,1561,1568,1575,1582,1589,1596,1603,1610,1617,1624,1631,1638,1645,1652,1659,1666,1673,1680,1687,1694,1701,1708,1715,1722,1729,1736,1743,1750,1757,1764,1771,1778,1785,1792,1799,1806,1813,1820,1827,1834,1841,1848,1855,1862,1869,1876,1883,1890,1897,1901,1905,1909,1913,1917,1921,1925,1929,1933,1937,1941,1945,1949,1953,1957,1961,1965,1969,1973,1977,1981,1985,1989,1993,1997,2001,2005,2009,2013,2017,2021,2025,2029,2033,2037,2041,2045,2049,2053,2057,2061,2065,2069,2073,2077,2081,2085,2089,2093,2097,2101,2105,2109,2113,2117,2121,2125,2129,2133,2137]
952         #
953         m=MEDCouplingUMesh.New("convexhull",2);
954         m.allocateCells(331);
955         for i in range(331):
956             m.insertNextCell(NORM_POLYGON,conn[connI[i]:connI[i+1]]);
957             pass
958         m.finishInsertingCells();
959         coordsDa=DataArrayDouble.New(coords,331,2);
960         m.setCoords(coordsDa);
961         m.checkConsistencyLight();
962         #
963         da=m.convexEnvelop2D();
964         m.checkConsistencyLight()
965         self.assertEqual(coordsDa.getHiddenCppPointer(),m.getCoords().getHiddenCppPointer())
966         daC=da.buildComplement(m.getNumberOfCells());
967         expected2=DataArrayInt.New([271,272,273,274,275,276,277,278,279,280,281,282,283,284,285,286,287,288,289,290,291,292,293,294,295,296,297,298,299,300,302,303,304,305,306,307,308,309,310,312,313,314,315,316,317,318,319,320,321,322,323,324,325,326,327,328,329,330]);
968         self.assertTrue(expected2.isEqual(daC));
969         #
970         vals=m.getMeasureField(False).getArray()
971         ref=271*[184.69493088478035]+3*[-61.564976961404426,-92.34746544254946,-92.34746544259811,-92.34746544253488,-92.3474654425349,-92.34746544180479,-92.34746544253493,-92.3474654419026,-92.34746544190256,-92.34746544253491]+2*[61.564976961404426,-92.34746544254946,-92.34746544259811,-92.34746544253488,-92.3474654425349,-92.34746544180479,-92.34746544253493,-92.3474654419026,-92.34746544190256,-92.34746544253491]+[-61.564976961404426,-92.34746544254946,-92.34746544259811,-92.34746544253488,-92.3474654425349,-92.34746544180479,-92.34746544253493,-92.3474654419026,-92.34746544190256,-92.34746544253491]
972         vals-=DataArrayDouble.New(ref)
973         vals.abs()
974         theTest=vals.findIdsInRange(-1.,1e-7)
975         self.assertTrue(theTest.isIota(331))
976         pass
977
978     def testSwigDAIOp8(self):
979         da=DataArrayInt.New([7,5,6,7,8,9,9,10,12,13,47,15])
980         self.assertTrue(7 in da)
981         self.assertTrue(47 in da)
982         self.assertTrue(15 in da)
983         self.assertEqual(0,da.index(7))
984         self.assertEqual(10,da.index(47))
985         self.assertTrue(14 not in da)
986         self.assertEqual(5,da.findIdSequence([9,9]))
987         self.assertEqual(-1,da.findIdSequence([5,8]))
988         da.rearrange(2)
989         self.assertTrue([47,16] not in da)
990         self.assertTrue([5,6] not in da)
991         self.assertTrue([6,7] in da)
992         self.assertEqual(4,da.index([12,13]))
993         pass
994
995     def testDataArraySort1(self):
996         arr=DataArrayInt.New();
997         self.assertRaises(InterpKernelException,arr.sort,True)
998         self.assertRaises(InterpKernelException,arr.sort,False)
999         values=[2,1,6,5,4,7]
1000         arr.alloc(3,2);
1001         self.assertRaises(InterpKernelException,arr.sort,True)
1002         self.assertRaises(InterpKernelException,arr.sort,False)
1003         arr.rearrange(1);
1004         arr.setValues(values,6,1)
1005         arr1=arr.deepCopy();
1006         arr2=arr.deepCopy();
1007         arr1.sort(True);
1008         expected1=[1,2,4,5,6,7]
1009         self.assertEqual(6,arr1.getNumberOfTuples());
1010         self.assertEqual(1,arr1.getNumberOfComponents());
1011         self.assertEqual(expected1,arr1.getValues());
1012         arr2.sort(False);
1013         expected2=[7,6,5,4,2,1]
1014         self.assertEqual(6,arr2.getNumberOfTuples());
1015         self.assertEqual(1,arr2.getNumberOfComponents());
1016         self.assertTrue(expected2,arr2.getValues());
1017         #
1018         ard=DataArrayDouble.New();
1019         self.assertRaises(InterpKernelException,ard.sort,True)
1020         self.assertRaises(InterpKernelException,ard.sort,False)
1021         valuesD=[2.,1.,6.,5.,4.,7.]
1022         ard.alloc(3,2);
1023         self.assertRaises(InterpKernelException,ard.sort,True)
1024         self.assertRaises(InterpKernelException,ard.sort,False)
1025         ard.rearrange(1);
1026         ard.setValues(valuesD,6,1)
1027         ard1=ard.deepCopy();
1028         ard2=ard.deepCopy();
1029         ard1.sort(True);
1030         expected3=[1.,2.,4.,5.,6.,7.]
1031         self.assertEqual(6,ard1.getNumberOfTuples());
1032         self.assertEqual(1,ard1.getNumberOfComponents());
1033         for i in range(6):
1034             self.assertAlmostEqual(expected3[i],ard1.getIJ(i,0),12)
1035             pass
1036         ard2.sort(False);
1037         expected4=[7.,6.,5.,4.,2.,1.]
1038         self.assertEqual(6,ard2.getNumberOfTuples());
1039         self.assertEqual(1,ard2.getNumberOfComponents());
1040         for i in range(6):
1041             self.assertAlmostEqual(expected4[i],ard2.getIJ(i,0),12)
1042             pass
1043         pass
1044
1045     def testPartitionBySpreadZone1(self):
1046         m=MEDCouplingDataForTest.build2DTargetMesh_1();
1047         m4=MEDCouplingUMesh.MergeUMeshes([m,m[-3:],m[0:2]]);
1048         m4.renumberCells([5,2,9,6,4,7,0,1,3,8]);
1049         #
1050         v2=m4.partitionBySpreadZone();
1051         self.assertTrue(3,len(v2));
1052         self.assertTrue(v2[0].isEqual(DataArrayInt.New([0,1,7])))
1053         self.assertTrue(v2[1].isEqual(DataArrayInt.New([2,4,5,6,9])))
1054         self.assertTrue(v2[2].isEqual(DataArrayInt.New([3,8])))
1055         #
1056         m5=m4.buildSpreadZonesWithPoly();
1057         self.assertEqual(3,m5.getNumberOfCells());
1058         self.assertTrue(m5.getCoords().getHiddenCppPointer()==m4.getCoords().getHiddenCppPointer());
1059         self.assertEqual([5,15,16,17,14,11,13,12,5,2,1,0,3,6,7,8,5,5,18,21,22,20,19],m5.getNodalConnectivity().getValues())
1060         self.assertEqual([0,8,17,23],m5.getNodalConnectivityIndex().getValues())
1061         #
1062         pass
1063
1064     def testGiveCellsWithType1(self):
1065         expected0=[1,2]
1066         expected1=[0,3,4]
1067         m=MEDCouplingDataForTest.build2DTargetMesh_1();
1068         da=m.giveCellsWithType(NORM_TRI3);
1069         self.assertEqual(2,da.getNumberOfTuples());
1070         self.assertEqual(1,da.getNumberOfComponents());
1071         self.assertEqual(expected0,da.getValues())
1072         #
1073         da=m.giveCellsWithType(NORM_QUAD4);
1074         self.assertEqual(3,da.getNumberOfTuples());
1075         self.assertEqual(1,da.getNumberOfComponents());
1076         self.assertEqual(expected1,da.getValues())
1077         #
1078         da=m.giveCellsWithType(NORM_TRI6);
1079         self.assertEqual(0,da.getNumberOfTuples());
1080         self.assertEqual(1,da.getNumberOfComponents());
1081         #
1082         self.assertRaises(InterpKernelException,m.giveCellsWithType,NORM_SEG2)
1083         self.assertRaises(InterpKernelException,m.giveCellsWithType,NORM_HEXA8)
1084         pass
1085
1086     def testSwigDAOp1(self):
1087         d=DataArrayDouble.New(5,2)
1088         d.rearrange(1) ; d.iota(2.) ; d.rearrange(2)
1089         d.setInfoOnComponents(["X [m]","Y [m]"])
1090         d.setName("AName")
1091         #
1092         d1=d+[8,9]
1093         self.assertTrue(d1.isEqualWithoutConsideringStr(DataArrayDouble.New([10.0,12.0,12.0,14.0,14.0,16.0,16.0,18.0,18.0,20.0]),1e-12))
1094         d1bis=DataArrayDouble.New([8,9],1,2)+d
1095         self.assertTrue(d1bis.isEqual(d1,1e-12))
1096         d1ter=[8,9]+d
1097         self.assertTrue(d1ter.isEqual(d1,1e-12))
1098         #
1099         d2=d1-[8,9]
1100         self.assertTrue(d2.isEqual(d,1e-12))
1101         self.assertRaises(InterpKernelException,d1.__rsub__,[8,9])#[8,9]-d1
1102         #
1103         d3=d*[8,9]
1104         self.assertTrue(d3.isEqualWithoutConsideringStr(DataArrayDouble.New([16.0,27.0,32.0,45.0,48.0,63.0,64.0,81.0,80.0,99.0]),1e-12))
1105         d3bis=DataArrayDouble.New([8,9],1,2)*d
1106         self.assertTrue(d3bis.isEqual(d3,1e-12))
1107         d3ter=[8,9]*d
1108         self.assertTrue(d3ter.isEqual(d3,1e-12))
1109         #
1110         d4=d3/[8,9]
1111         self.assertTrue(d4.isEqual(d,1e-12))
1112         #
1113         d=DataArrayInt.New(5,2)
1114         d.rearrange(1) ; d.iota(2) ; d.rearrange(2)
1115         d.setInfoOnComponents(["X [m]","Y [m]"])
1116         d.setName("AName")
1117         #
1118         d1=d+[8,9]
1119         self.assertEqual(d1.getValues(),[10,12,12,14,14,16,16,18,18,20])
1120         d1bis=DataArrayInt.New([8,9],1,2)+d
1121         self.assertTrue(d1bis.isEqual(d1))
1122         d1ter=[8,9]+d
1123         self.assertTrue(d1ter.isEqual(d1))
1124         #
1125         d2=d1-[8,9]
1126         self.assertTrue(d2.isEqual(d))
1127         self.assertRaises(InterpKernelException,d1.__rsub__,[8,9])
1128         #
1129         d3=d*[8,9]
1130         self.assertEqual(d3.getValues(),[16,27,32,45,48,63,64,81,80,99])
1131         d3bis=DataArrayInt.New([8,9],1,2)*d
1132         self.assertTrue(d3bis.isEqual(d3))
1133         d3ter=[8,9]*d
1134         self.assertTrue(d3ter.isEqual(d3))
1135         #
1136         d4=d3/[8,9]
1137         self.assertTrue(d4.isEqual(d))
1138         #
1139         d5=d%[4,5]
1140         self.assertEqual(d5.getValues(),[2,3,0,0,2,2,0,4,2,1])
1141         pass
1142
1143     def testSwigSelectTupleId2DAIBug1(self):
1144         da=DataArrayInt.New([0,1,2,3,12,13,4,5,6,7,14,15,8,9,10,11,16,17])
1145         self.assertEqual([2,6,10],da[2::6].getValues())
1146         self.assertEqual([0,4,8],da[::6].getValues())
1147         self.assertEqual([5,9],da[7::6].getValues())
1148         self.assertEqual([5],da[7:-5:6].getValues())
1149         pass
1150
1151     def testSwigCpp5Safe1(self):
1152         m=MEDCouplingUMesh.New("toto",2)
1153         coords=DataArrayDouble.New([0.,0.,1.,0.,1.,1.,0.,1.],4,2)
1154         m.setCoords(coords)
1155         vecs=DataArrayDouble.New([2.,3.,4.,5.,6.,7.],3,2)
1156         expected1=[[2.,3.,3.,3.,3.,4.,2.,4.0],[4.,5.,5.,5.,5.,6.,4.,6.0],[6.,7.,7.,7.,7.,8.,6.,8.0]]
1157         for pos,vec in enumerate(vecs):
1158             m2=m.deepCopy()
1159             m2.translate(vec)
1160             self.assertTrue(m2.getCoords().isEqual(DataArrayDouble.New(expected1[pos],4,2),1e-12))
1161             pass
1162         for pos,vec in enumerate(vecs):
1163             m2=m.deepCopy()
1164             m2.translate(vec.buildDADouble())
1165             self.assertTrue(m2.getCoords().isEqual(DataArrayDouble.New(expected1[pos],4,2),1e-12))
1166             pass
1167         pass
1168
1169     def testSwigBugNonRegressionZipDA(self):
1170         angles = [pi / 3 * x for x in range(6)]
1171         radius=3
1172         #
1173         dad=DataArrayDouble.New(6, 2)
1174         dad[:,0]=radius
1175         dad[:,1]=angles
1176         #
1177         dad2=dad.fromPolarToCart()
1178         dads=[dad2.deepCopy() for elt in 7*[None]]
1179         #
1180         translationToPerform=[[0.01,0.02],[3./2.*radius,-radius*sqrt(3.)/2],[3./2.*radius,radius*sqrt(3.)/2],[0.,radius*sqrt(3.)],[-3./2.*radius,radius*sqrt(3.)/2],[-3./2.*radius,-radius*sqrt(3.)/2],[0.,-radius*sqrt(3.)]]
1181         for d,t in zip(dads,translationToPerform):
1182             d+=t
1183             pass
1184         for elt in dads:
1185             self.assertTrue(not dad2.isEqual(elt,1e-12))
1186             pass
1187         for d,t in zip(dads,translationToPerform):
1188             d-=t
1189             pass
1190         for elt in dads:
1191             self.assertTrue(dad2.isEqual(elt,1e-12))
1192             pass
1193         pass
1194
1195     def testBuildSlice3D2(self):
1196         mesh3D,mesh2D=MEDCouplingDataForTest.build3DExtrudedUMesh_1();
1197         vec1=[-0.07,1.,0.07]
1198         origin1=[1.524,1.4552,1.74768]
1199         slice1,ids=mesh3D.buildSlice3D(origin1,vec1,1e-10);
1200         f=MEDCouplingFieldDouble(ON_CELLS,ONE_TIME)
1201         f.setTime(4.5,6,7) ; f.setMesh(mesh3D)
1202         arr=DataArrayDouble(mesh3D.getNumberOfCells(),2)
1203         arr.rearrange(1) ; arr.iota(2.) ; arr.rearrange(2)
1204         f.setArray(arr)
1205         f.checkConsistencyLight()
1206         expected1=DataArrayInt([1,3,4,7,9,10,13,15,16])
1207         self.assertTrue(expected1.isEqual(ids))
1208         arr2=arr[expected1]
1209         #
1210         f2=f.extractSlice3D(origin1,vec1,1e-10)
1211         self.assertTrue(f2.getArray().isEqual(arr2,1e-12));
1212         self.assertTrue(slice1.isEqual(f2.getMesh(),1e-12))
1213         self.assertEqual(6,f2.getTime()[1]) ; self.assertEqual(7,f2.getTime()[2])
1214         self.assertAlmostEqual(4.5,f2.getTime()[0],12);
1215         pass
1216
1217     def testComputeTupleIdsToSelectFromCellIds1(self):
1218         m=MEDCouplingDataForTest.build2DTargetMesh_3()
1219         f=MEDCouplingFieldDouble.New(ON_GAUSS_NE,NO_TIME);
1220         f.setMesh(m);
1221         arr=DataArrayDouble(52,2) ; arr.rearrange(1) ; arr.iota(7.) ; arr.rearrange(2)
1222         f.setArray(arr)
1223         #
1224         f2=f.buildSubPart([1,5,9])
1225         f2.checkConsistencyLight()
1226         cI=m.computeNbOfNodesPerCell()
1227         cI.computeOffsetsFull()
1228         sel=DataArrayInt([1,5,9])
1229         res=sel.buildExplicitArrByRanges(cI)
1230         arr2=arr[res]
1231         self.assertTrue(arr2.isEqual(DataArrayDouble([13,14,15,16,17,18,19,20,59,60,61,62,63,64,95,96,97,98,99,100,101,102,103,104,105,106,107,108,109,110],15,2),1e-12))
1232         self.assertTrue(arr2.isEqual(f2.getArray(),1e-12))
1233         pass
1234
1235     def testComputeSkin1(self):
1236         arrX=DataArrayDouble([2.,3.4,5.6,7.7,8.0]) ; arrY=DataArrayDouble([2.,3.4,5.6,7.7,9.0,14.2])
1237         cmesh=MEDCouplingCMesh() ; cmesh.setCoordsAt(0,arrX) ; cmesh.setCoordsAt(1,arrY)
1238         umesh=cmesh.buildUnstructured()
1239         #
1240         skin=umesh.computeSkin()
1241         self.assertEqual(18,skin.getNumberOfCells())
1242         self.assertEqual(1,skin.getMeshDimension())
1243         self.assertTrue(skin.getCoords().getHiddenCppPointer()==umesh.getCoords().getHiddenCppPointer())
1244         self.assertEqual([0,3,6,9,12,15,18,21,24,27,30,33,36,39,42,45,48,51,54],skin.getNodalConnectivityIndex().getValues())
1245         self.assertEqual([1,1,0,1,0,5,1,2,1,1,3,2,1,4,3,1,9,4,1,5,10,1,14,9,1,10,15,1,19,14,1,15,20,1,24,19,1,20,25,1,25,26,1,26,27,1,27,28,1,28,29,1,29,24],skin.getNodalConnectivity().getValues())
1246         ids=skin.computeFetchedNodeIds()
1247         self.assertEqual([0,1,2,3,4,5,9,10,14,15,19,20,24,25,26,27,28,29],ids.getValues())
1248         part=umesh.buildFacePartOfMySelfNode(ids,True)
1249         part.setName(skin.getName());
1250         self.assertTrue(part.isEqual(skin,1e-12))
1251         part2=part[1::2]
1252         part[::2]=part2
1253         self.assertTrue(not part.isEqual(skin,1e-12))
1254         trad=part.zipConnectivityTraducer(0)
1255         self.assertEqual(9,part.getNumberOfCells())
1256         self.assertEqual([0,0,1,1,2,2,3,3,4,4,5,5,6,6,7,7,8,8],trad.getValues())
1257         pass
1258
1259     def testUMeshSetPartOfMySelf2(self):
1260         # resize with explicit ids list
1261         m=MEDCouplingDataForTest.build2DTargetMesh_1()
1262         self.assertEqual([3,4],m.getAllGeoTypes())
1263         part=m[[0,3,4]]
1264         part.simplexize(0)
1265         part2=part[[1,2,5]]
1266         m[[0,3,4]]=part2
1267         self.assertEqual([3,0,4,1,3,1,4,2,3,4,5,2,3,6,7,4,3,7,5,4],m.getNodalConnectivity().getValues())
1268         self.assertEqual([0,4,8,12,16,20],m.getNodalConnectivityIndex().getValues())
1269         self.assertEqual([3],m.getAllGeoTypes())
1270         # no resize with explicit ids list
1271         m=MEDCouplingDataForTest.build2DTargetMesh_1()
1272         part=m[[0,3]]
1273         part.convertAllToPoly()
1274         m[[3,4]]=part
1275         self.assertEqual([4,0,3,4,1,3,1,4,2,3,4,5,2,5,0,3,4,1,5,6,7,4,3],m.getNodalConnectivity().getValues())
1276         self.assertEqual([0,5,9,13,18,23],m.getNodalConnectivityIndex().getValues())
1277         self.assertEqual([3,4,5],m.getAllGeoTypes())
1278         # resize with range ids
1279         m=MEDCouplingDataForTest.build2DTargetMesh_1()
1280         part=m[3:]
1281         m[1:3]=part
1282         self.assertEqual([4,0,3,4,1,4,6,7,4,3,4,7,8,5,4,4,6,7,4,3,4,7,8,5,4],m.getNodalConnectivity().getValues())
1283         self.assertEqual([0,5,10,15,20,25],m.getNodalConnectivityIndex().getValues())
1284         self.assertEqual([4],m.getAllGeoTypes())
1285         # no resize with range ids
1286         m=MEDCouplingDataForTest.build2DTargetMesh_1()
1287         part=m[0::3]
1288         part.convertAllToPoly()
1289         m[3:]=part
1290         self.assertEqual([4,0,3,4,1,3,1,4,2,3,4,5,2,5,0,3,4,1,5,6,7,4,3],m.getNodalConnectivity().getValues())
1291         self.assertEqual([0,5,9,13,18,23],m.getNodalConnectivityIndex().getValues())
1292         self.assertEqual([3,4,5],m.getAllGeoTypes())
1293         # no resize with range ids negative direction
1294         m=MEDCouplingDataForTest.build2DTargetMesh_1()
1295         part=m[3::-3]
1296         part.convertAllToPoly()
1297         m[:-3:-1]=part
1298         self.assertEqual([4,0,3,4,1,3,1,4,2,3,4,5,2,5,0,3,4,1,5,6,7,4,3],m.getNodalConnectivity().getValues())
1299         self.assertEqual([0,5,9,13,18,23],m.getNodalConnectivityIndex().getValues())
1300         self.assertEqual([3,4,5],m.getAllGeoTypes())
1301         pass
1302
1303     def testUnPolyze3(self):
1304         coord=[0.0,0.5,-0.5,-0.5,-0.5,-0.5,0.5,-0.5,-0.5,0.0,0.5,0.5,-0.5,-0.5,0.5,0.5,-0.5,0.5]
1305         conn=[1,2,5,4,-1,4,3,0,1,-1,2,0,3,5,-1,0,2,1,-1,4,5,3]
1306         m=MEDCouplingUMesh.New("a mesh",3);
1307         m.allocateCells(1);
1308         m.insertNextCell(NORM_POLYHED,22,conn[0:22])
1309         m.finishInsertingCells();
1310         coords=DataArrayDouble(coord,6,3);
1311         m.setCoords(coords);
1312         m.checkConsistencyLight();
1313         #
1314         vol=m.getMeasureField(False);
1315         self.assertEqual(1,vol.getArray().getNumberOfTuples());
1316         self.assertAlmostEqual(0.5,vol.getArray().getIJ(0,0),12)
1317         #
1318         m.unPolyze();
1319         #
1320         self.assertEqual([NORM_PENTA6],m.getAllGeoTypes())
1321         self.assertTrue(DataArrayInt([0,7]).isEqual(m.getNodalConnectivityIndex()))
1322         self.assertTrue(DataArrayInt([16,0,2,1,3,5,4]).isEqual(m.getNodalConnectivity()))
1323         #
1324         vol=m.getMeasureField(False);
1325         self.assertEqual(1,vol.getArray().getNumberOfTuples());
1326         self.assertAlmostEqual(0.5,vol.getArray().getIJ(0,0),12)
1327         pass
1328
1329     def testKrSpatialDiscretization1(self):
1330         srcPointCoordsX=[0.8401877171547095, 0.7830992237586059, 0.9116473579367843, 0.335222755714889, 0.2777747108031878, 0.4773970518621602, 0.3647844727918433, 0.9522297251747128, 0.6357117279599009, 0.1416025553558034]
1331         srcFieldValsOnPoints=[2.129892434968836, 2.295320474540621, 1.931948594981134, 2.728013590937196, 2.715603240418478, 2.661778472822935, 2.695696990104364, 1.893710234970982, 2.529628016549284, 2.728432341300668]
1332         targetPointCoordsX=[-0.5,-0.45,-0.4,-0.35,-0.3,-0.25,-0.2,-0.15,-0.1,-0.05,-6.93889390391e-17,0.05,0.1,0.15,0.2,0.25,0.3,0.35,0.4,0.45,0.5,0.55,0.6,0.65,0.7,0.75,0.8,0.85,0.9,0.95,1.0,1.05,1.1,1.15,1.2,1.25,1.3,1.35,1.4,1.45]
1333         targetFieldValsExpected=[2.975379475824351, 2.95613491917003, 2.936890362515361, 2.917645805861018, 2.898401249206574, 2.879156692552137, 2.859912135897732, 2.840667579243201, 2.821423022588731, 2.802178465934342, 2.78293390927989, 2.763689352625457, 2.744444795971001, 2.725209522098197, 2.709077577124666, 2.706677252549218, 2.727467797847971, 2.713338094723676, 2.671342424824244, 2.664877370146978, 2.653840141412181, 2.619607861392791, 2.569777214476479, 2.513263929794591, 2.450732752808528, 2.368313560985155, 2.250909795670307, 2.098194272085416, 1.954257891732065, 1.895040660973802, 1.865256788315972, 1.835475248687992, 1.80569370905998, 1.775912169431971, 1.746130629803976, 1.716349090175918, 1.686567550547855, 1.656786010919941, 1.627004471291988, 1.597222931663817]
1334         coeffsExpected=DataArrayDouble.New([52.238272642008695, 26.186513281350948, -173.42106377948534, 324.56733663875184, -104.64968873410248, 34.375030568158316, -256.12372208190425, 105.2292032463934, -16.239907618144965, 7.838025836978943, 2.621910745077291, -0.4902609628247241])
1335         #
1336         nbOfInputPoints=10;
1337         f=MEDCouplingFieldDouble.New(ON_NODES_KR,ONE_TIME);
1338         srcArrX=DataArrayDouble.New(srcPointCoordsX,nbOfInputPoints,1);
1339         cmesh=MEDCouplingCMesh.New("aMesh");
1340         cmesh.setCoordsAt(0,srcArrX);
1341         umesh=cmesh.buildUnstructured();
1342         f.setMesh(umesh);
1343         srcVals=DataArrayDouble.New(srcFieldValsOnPoints,nbOfInputPoints,1);
1344         f.setArray(srcVals);
1345         f.checkConsistencyLight();
1346         #
1347         res0=f.getValueOn(targetPointCoordsX[:1]);
1348         self.assertAlmostEqual(targetFieldValsExpected[0],res0[0],10)
1349         #
1350         valuesToTest=f.getValueOnMulti(targetPointCoordsX);
1351         self.assertEqual(40,valuesToTest.getNumberOfTuples());
1352         self.assertEqual(1,valuesToTest.getNumberOfComponents());
1353         for i in range(40):
1354             self.assertAlmostEqual(targetFieldValsExpected[i],valuesToTest.getIJ(i,0),10)
1355             pass
1356         fd=f.getDiscretization()
1357         del f
1358         self.assertTrue(isinstance(fd,MEDCouplingFieldDiscretizationKriging))
1359         coeffs,isDrift=fd.computeVectorOfCoefficients(umesh,srcVals)
1360         self.assertEqual(2,isDrift)
1361         self.assertTrue(coeffsExpected.isEqual(coeffs,1e-8))
1362         #
1363         pass
1364
1365     def testDuplicateEachTupleNTimes1(self):
1366         d=DataArrayDouble.New([9.,8.,7.,6.],4,1) ; d.setInfoOnComponents(["mass [kg]"]) ; d.setName("aname")
1367         d2=d.duplicateEachTupleNTimes(3)
1368         self.assertTrue(d2.isEqualWithoutConsideringStr(DataArrayDouble.New([9.,9.,9.,8.,8.,8.,7.,7.,7.,6.,6.,6.],4*3,1),1e-14))
1369         self.assertEqual("aname",d2.getName())
1370         self.assertEqual(["mass [kg]"],d2.getInfoOnComponents())
1371         #
1372         d=DataArrayInt.New([9,8,7,6],4,1) ; d.setInfoOnComponents(["mass [kg]"]) ; d.setName("aname")
1373         d2=d.duplicateEachTupleNTimes(3)
1374         self.assertTrue(d2.isEqualWithoutConsideringStr(DataArrayInt.New([9,9,9,8,8,8,7,7,7,6,6,6],4*3,1)))
1375         self.assertEqual("aname",d2.getName())
1376         self.assertEqual(["mass [kg]"],d2.getInfoOnComponents())
1377         pass
1378
1379     def testSwigComputeTupleIdsNearTuples1(self):
1380         da=DataArrayDouble([5.,6.,-5.,-6.,5.,-6.,-5.,6.,5.,6.],5,2)
1381         arr,arrI=da.computeTupleIdsNearTuples(DataArrayDouble([5.,-6.,5.,6.,-5.,-6.],3,2),1e-10)
1382         self.assertEqual([2,0,4,1],arr.getValues())
1383         self.assertEqual([0,1,3,4],arrI.getValues())
1384         arr,arrI=da.computeTupleIdsNearTuples([5.,-6.,5.,6.,-5.,-6.],1e-10)
1385         self.assertEqual([2,0,4,1],arr.getValues())
1386         self.assertEqual([0,1,3,4],arrI.getValues())
1387         expected0=[[2],[0,4],[1]]
1388         expected1=[[0,1],[0,2],[0,1]]
1389         for pos,it in enumerate(DataArrayDouble([5.,-6.,5.,6.,-5.,-6.],3,2)):
1390             arr,arrI=da.computeTupleIdsNearTuples(it,1e-10)
1391             self.assertEqual(expected0[pos],arr.getValues())
1392             self.assertEqual(expected1[pos],arrI.getValues())
1393             pass
1394         pass
1395
1396     def testSwigDataTupleIOp1(self):
1397         d=DataArrayDouble(10,1)
1398         d.iota(7.)
1399         for elt in d:
1400             elt+=2.
1401             pass
1402         toTest=DataArrayDouble([9.0,10.0,11.0,12.0,13.0,14.0,15.0,16.0,17.0,18.0])
1403         self.assertTrue(toTest.isEqual(d,1e-12))
1404         for elt in d:
1405             elt-=2.
1406             pass
1407         toTest=DataArrayDouble([7.0,8.0,9.0,10.0,11.0,12.0,13.0,14.0,15.0,16.0])
1408         self.assertTrue(toTest.isEqual(d,1e-12))
1409         for elt in d:
1410             elt*=2.
1411             pass
1412         toTest=DataArrayDouble([14.0,16.0,18.0,20.0,22.0,24.0,26.0,28.0,30.0,32.0])
1413         self.assertTrue(toTest.isEqual(d,1e-12))
1414         for elt in d:
1415             elt/=2.
1416             pass
1417         toTest=DataArrayDouble([7.0,8.0,9.0,10.0,11.0,12.0,13.0,14.0,15.0,16.0])
1418         self.assertTrue(toTest.isEqual(d,1e-12))
1419         #
1420         d=DataArrayInt(10,1)
1421         d.iota(7)
1422         for elt in d:
1423             elt+=2
1424             pass
1425         self.assertEqual(d.getValues(),[9,10,11,12,13,14,15,16,17,18])
1426         for elt in d:
1427             elt-=2
1428             pass
1429         self.assertEqual(d.getValues(),[7,8,9,10,11,12,13,14,15,16])
1430         for elt in d:
1431             elt*=2
1432             pass
1433         self.assertEqual(d.getValues(),[14,16,18,20,22,24,26,28,30,32])
1434         for elt in d:
1435             elt/=2
1436             pass
1437         self.assertEqual(d.getValues(),[7,8,9,10,11,12,13,14,15,16])
1438         for elt in d:
1439             elt%=3
1440             pass
1441         self.assertEqual(d.getValues(),[1,2,0,1,2,0,1,2,0,1])
1442         pass
1443
1444     def testDAIBuildUnique1(self):
1445         d=DataArrayInt([1,2,2,3,3,3,3,4,5,5,7,7,7,19])
1446         e=d.buildUnique()
1447         self.assertTrue(e.isEqual(DataArrayInt([1,2,3,4,5,7,19])))
1448         pass
1449
1450     def testDAIPartitionByDifferentValues1(self):
1451         d=DataArrayInt([1,0,1,2,0,2,2,-3,2])
1452         expected=[[-3,[7]],[0,[1,4]],[1,[0,2]],[2,[3,5,6,8]]]
1453         for i,elt in enumerate(zip(*d.partitionByDifferentValues())):
1454             self.assertEqual(expected[i][0],elt[1])
1455             self.assertEqual(expected[i][1],elt[0].getValues())
1456             pass
1457         pass
1458
1459     def testFieldGaussMultiDiscPerType1(self):
1460         coords=DataArrayDouble([0.,0.,0.,1.,1.,1.,1.,0.,0.,0.5,0.5,1.,1.,0.5,0.5,0.],8,2)
1461         mQ8=MEDCouplingUMesh("",2) ; mQ8.setCoords(coords)
1462         mQ8.allocateCells(1)
1463         mQ8.insertNextCell(NORM_QUAD8, list(range(8)))
1464         mQ8.finishInsertingCells()
1465         mQ4=MEDCouplingUMesh("",2) ; mQ4.setCoords(coords)
1466         mQ4.allocateCells(1)
1467         mQ4.insertNextCell(NORM_QUAD4, list(range(4)))
1468         mQ4.finishInsertingCells()
1469         mT3=MEDCouplingUMesh("",2) ; mT3.setCoords(coords)
1470         mT3.allocateCells(1)
1471         mT3.insertNextCell(NORM_TRI3, list(range(3)))
1472         mT3.finishInsertingCells()
1473
1474         tr=[[0.,0.],[2.,0.], [0.,2.],[2.,2.],[4.,2.],[6.,2.],[8.,2.],[10.,2.],[12.,2.],[0.,4.],[2.,4.],[4.,4.],[6.,4.],[8.,4.],[10.,4.],[12.,4.],[14.,4.],[16.,4.],[18.,4.],[20.,4.],[22.,4.]]
1475         ms=2*[mQ4]+7*[mQ8]+11*[mT3]
1476         ms[:]=(elt.deepCopy() for elt in ms)
1477         for m,t in zip(ms,tr):
1478             d=m.getCoords() ; d+= t
1479             pass
1480         m=MEDCouplingUMesh.MergeUMeshes(ms)
1481         f=MEDCouplingFieldDouble.New(ON_GAUSS_PT,NO_TIME)
1482         f.setMesh(m)
1483         # throw because cell 0,1 are QUAD4 and cell 3 is QUAD8
1484         self.assertRaises(InterpKernelException,f.setGaussLocalizationOnCells,[0,1,3],[0.,0.,1.,0.,1.,1.,0.,1.],[0.3,0.3,0.7,0.7],[0.8,0.2])
1485         f.setGaussLocalizationOnCells([0,1],[0.,0.,1.,0.,1.,1.,0.,1.],[0.3,0.3,0.7,0.7],[0.8,0.2])
1486         f.setGaussLocalizationOnCells([3,2,5],[0.,0.,1.,0.,1.,1.,0.,1.,0.5,0.,1.,0.5,0.5,1.,0.,0.5],[0.3,0.3,0.7,0.7,0.9,0.9],[0.8,0.05,0.15])
1487         f.setGaussLocalizationOnCells([4,6,8,7],[0.,0.,1.,0.,1.,1.,0.,1.,0.5,0.,1.,0.5,0.5,1.,0.,0.5],[0.3,0.3,0.7,0.7,0.9,0.9,-0.1,0.3],[0.7,0.05,0.15,0.1])
1488         f.setGaussLocalizationOnCells([9,10,11,12,13],[0.,0.,1.,0.,1.,1.],[0.4,0.4],[1.])
1489         f.setGaussLocalizationOnCells([14,15,16,17,18,19],[0.,0.,1.,0.,1.,1.],[0.4,0.4,0.14,0.16],[0.22,0.78])
1490         self.assertEqual(46,f.getNumberOfTuplesExpected())
1491         vals=DataArrayDouble.New(46*3,1) ; vals.iota(7.7) ; vals.rearrange(3)
1492         f.setArray(vals)
1493         f.checkConsistencyLight()
1494         #f.getLocalizationOfDiscr()
1495         self.assertRaises(InterpKernelException,f.getGaussLocalizationIdOfOneType,NORM_QUAD8) #throw because several loc
1496         self.assertEqual([1,2],f.getGaussLocalizationIdsOfOneType(NORM_QUAD8))
1497         self.assertEqual([0,0,1,1,2,1,2,2,2,3,3,3,3,3,4,4,4,4,4,4],f.getDiscretization().getArrayOfDiscIds().getValues())
1498         fc=f[[1,2,3,8]]
1499         fc.checkConsistencyLight()
1500         self.assertTrue(DataArrayDouble([13.7,14.7,15.7,16.7,17.7,18.7,19.7,20.7,21.7,22.7,23.7,24.7,25.7,26.7,27.7,28.7,29.7,30.7,31.7,32.7,33.7,34.7,35.7,36.7,82.7,83.7,84.7,85.7,86.7,87.7,88.7,89.7,90.7,91.7,92.7,93.7],12,3).isEqual(fc.getArray(),1e-10))
1501         fc.renumberCells([3,2,0,1])
1502         self.assertTrue(DataArrayDouble([28.7, 29.7, 30.7, 31.7, 32.7, 33.7, 34.7, 35.7, 36.7, 82.7, 83.7, 84.7, 85.7, 86.7, 87.7, 88.7, 89.7, 90.7, 91.7, 92.7, 93.7, 19.7, 20.7, 21.7, 22.7, 23.7, 24.7, 25.7, 26.7, 27.7, 13.7, 14.7, 15.7, 16.7, 17.7, 18.7],12,3).isEqual(fc.getArray(),1e-10))
1503         fc.getArray()
1504         pass
1505
1506     def testSwigRotate(self):
1507         d=DataArrayDouble([1.,2.,3.,4.,6.,5.],2,3)
1508         MEDCouplingPointSet.Rotate3DAlg([0.,0.,0.],[0.,1.,0.],1.5707963267948966,d)
1509         self.assertTrue(d.isEqual(DataArrayDouble([3.,2.,-1.,5.,6.,-4.],2,3),1e-12))
1510         d=DataArrayDouble([1.,2.,3.,4.,6.,5.],3,2)
1511         MEDCouplingPointSet.Rotate2DAlg([0.,0.],1.5707963267948966,d)
1512         self.assertTrue(d.isEqual(DataArrayDouble([-2.,1.,-4.,3.,-5.,6.],3,2),1e-12))
1513         pass
1514
1515     def testSwigCMeshProtection(self):
1516         cm=MEDCouplingCMesh()
1517         self.assertRaises(InterpKernelException,cm.setCoordsAt,0,DataArrayDouble([4.,4.5,6.,7.],2,2))
1518         self.assertRaises(InterpKernelException,cm.setCoords,DataArrayDouble([4.,4.5,6.,7.],2,2))
1519         pass
1520
1521     def testSwigCellsInBoundingBox1(self):
1522         m3D=MEDCouplingDataForTest.build3DExtrudedUMesh_1()[0]
1523         self.assertTrue(m3D.getCellsInBoundingBox([(0,3),(0,3),(0,1)],-1e-12).isEqual(DataArrayInt([0,1,2,3,4,5])))
1524         self.assertRaises(InterpKernelException,m3D.getCellsInBoundingBox,[(0,3,0),(3,0,1)],-1e-12)
1525         pass
1526
1527     def testDAICheckMonotonic1(self):
1528         data1=[-1,0,2,2,4,5]
1529         data2=[6,2,0,-8,-9,-56]
1530         data3=[-1,0,3,2,4,6]
1531         data4=[7,5,2,3,0,-6]
1532         d=DataArrayInt.New(data1);
1533         self.assertTrue(d.isMonotonic(True));
1534         self.assertTrue(not d.isMonotonic(False));
1535         d.checkMonotonic(True);
1536         self.assertRaises(InterpKernelException,d.checkMonotonic,False)
1537         d=DataArrayInt.New(data2);
1538         self.assertTrue(d.isMonotonic(False));
1539         self.assertTrue(not d.isMonotonic(True));
1540         d.checkMonotonic(False);
1541         self.assertRaises(InterpKernelException,d.checkMonotonic,True)
1542         d=DataArrayInt.New(data3);
1543         self.assertTrue(not d.isMonotonic(False));
1544         self.assertTrue(not d.isMonotonic(True));
1545         self.assertRaises(InterpKernelException,d.checkMonotonic,True)
1546         self.assertRaises(InterpKernelException,d.checkMonotonic,False)
1547         d=DataArrayInt.New(data4);
1548         self.assertTrue(not d.isMonotonic(False));
1549         self.assertTrue(not d.isMonotonic(True));
1550         self.assertRaises(InterpKernelException,d.checkMonotonic,True)
1551         self.assertRaises(InterpKernelException,d.checkMonotonic,False)
1552         d=DataArrayInt.New(0,1)
1553         self.assertTrue(d.isMonotonic(True));
1554         self.assertTrue(d.isMonotonic(False));
1555         d.checkMonotonic(True);
1556         d.checkMonotonic(False);
1557         d=DataArrayInt.New(data4,3,2);#throw because nbComp!=1
1558         self.assertRaises(InterpKernelException,d.isMonotonic,True)
1559         self.assertRaises(InterpKernelException,d.isMonotonic,False)
1560         self.assertRaises(InterpKernelException,d.checkMonotonic,True)
1561         self.assertRaises(InterpKernelException,d.checkMonotonic,False)
1562         pass
1563
1564     def testSwigDASetItemOnEmpty1(self):
1565         d=DataArrayInt(0,1)
1566         isThrow=False
1567         try:
1568             d[0:1000:2]=4
1569         except InterpKernelException as e:
1570             isThrow=True
1571             pass
1572         self.assertTrue(isThrow)
1573         d[:]=4
1574         d[::2]=5
1575         #
1576         d=DataArrayDouble(0,1)
1577         isThrow=False
1578         try:
1579             d[0:1000:2]=4
1580         except InterpKernelException as e:
1581             isThrow=True
1582             pass
1583         self.assertTrue(isThrow)
1584         d[:]=4
1585         d[::2]=5
1586         d=DataArrayInt([],0,1)
1587         d2=DataArrayInt(0)
1588         self.assertTrue(d2.isEqual(d))
1589         d=DataArrayDouble([],0,1)
1590         d2=DataArrayDouble(0)
1591         self.assertTrue(d2.isEqual(d,1e-12))
1592         pass
1593
1594     def testSwigDAITransformWithIndArr1(self):
1595         arr=DataArrayInt([0,4,5,1])
1596         d=DataArrayInt([7,8,9,10])
1597         self.assertRaises(InterpKernelException,arr.transformWithIndArr,d)
1598         pass
1599
1600     def testIntersect2DMeshesTmp6(self):
1601         # coordinates
1602         coords=DataArrayDouble.New([2.7554552980815448e-15,45,-45,5.5109105961630896e-15,-31.819805153394636,31.81980515339464,2.8779199779962799e-15,47,2.8166876380389124e-15,46,-47,5.7558399559925599e-15,-33.234018715767732,33.234018715767739,-46,5.6333752760778247e-15],8,2);
1603         # connectivity
1604         conn=DataArrayInt.New([8,0,3,5,1,4,6,7,2])
1605         connI=DataArrayInt.New([0,9]);
1606         m1=MEDCouplingUMesh.New("Fixe",2);
1607         m1.setCoords(coords);
1608         m1.setConnectivity(conn,connI,True);
1609         #
1610         coords=DataArrayDouble.New([-7.3800475508445391,41.854329503018846,-3.7041190667754655,42.338274668899189,-3.7041190667754655,45.338274668899189,-7.3800475508445382,44.854329503018839,-5.5473631693521845,42.136406608386956,-3.7041190667754655,43.838274668899189,-5.5420833088100014,45.09630208595901,-7.3800475508445382,43.354329503018839,-3.7041190667754651,52.338274668899189,-7.3800475508445382,51.854329503018839,-3.7041190667754655,48.838274668899189,-5.5420833088100014,52.09630208595901,-7.3800475508445382,48.354329503018839],13,2);
1611         # connectivity
1612         conn=DataArrayInt.New([8,0,1,2,3,4,5,6,7,8,3,2,8,9,6,10,11,12]);
1613         connI=DataArrayInt.New([0,9,18]);
1614         #
1615         m2=MEDCouplingUMesh.New("Mobile",2);
1616         m2.setCoords(coords);
1617         m2.setConnectivity(conn,connI,True);
1618         #
1619         m3,d1,d2=MEDCouplingUMesh.Intersect2DMeshes(m1,m2,1e-10);
1620         self.assertTrue(d1.isEqual(DataArrayInt([0,0,0,0])));
1621         self.assertTrue(d2.isEqual(DataArrayInt([0,1,-1,-1])));
1622         self.assertEqual(4,m3.getNumberOfCells());
1623         self.assertEqual(4,d1.getNumberOfTuples());
1624         self.assertEqual(4,d2.getNumberOfTuples());
1625         self.assertEqual(43,m3.getNumberOfNodes());
1626         dI,areMerged,newNbOfNodes=m3.mergeNodes(1e-12)
1627         self.assertEqual(35,m3.getNumberOfNodes());
1628         m3.zipCoords();
1629         self.assertEqual(23,m3.getNumberOfNodes());
1630         #
1631         f=m3.getMeasureField(True);
1632         valuesExpected=DataArrayDouble([1.6603638692585716,5.747555728471923,129.68907101754394,7.4162714498559694])
1633         self.assertTrue(f.getArray().isEqual(valuesExpected,1e-12))
1634         pass
1635
1636     def testDAPushBack(self):
1637         d=DataArrayDouble(0,1)
1638         for i in range(8):
1639             d.pushBackSilent(i)
1640             pass
1641         self.assertEqual(d.getNumberOfTuples(),8)
1642         self.assertEqual(d.getNbOfElemAllocated(),8)
1643         d.pushBackSilent(4.44)
1644         self.assertEqual(d.getNumberOfTuples(),9)
1645         self.assertEqual(d.getNbOfElemAllocated(),16)
1646         self.assertTrue(d.isEqual(DataArrayDouble([0.,1.,2.,3.,4.,5.,6.,7.,4.44]),1e-12))
1647         e=d.deepCopy()
1648         self.assertEqual(e.getNumberOfTuples(),9)
1649         self.assertEqual(e.getNbOfElemAllocated(),9)
1650         self.assertTrue(e.isEqual(DataArrayDouble([0.,1.,2.,3.,4.,5.,6.,7.,4.44]),1e-12))
1651         self.assertAlmostEqual(d.popBackSilent(),4.44,12)
1652         self.assertEqual(d.getNumberOfTuples(),8)
1653         self.assertEqual(d.getNbOfElemAllocated(),16)
1654         self.assertTrue(d.isEqual(DataArrayDouble([0.,1.,2.,3.,4.,5.,6.,7.]),1e-12))
1655         f=DataArrayDouble()
1656         f.reserve(1000)
1657         f.pushBackSilent(4.)
1658         self.assertTrue(f.isEqual(DataArrayDouble([4.]),1e-12))
1659         self.assertEqual(f.getNumberOfTuples(),1)
1660         self.assertEqual(f.getNbOfElemAllocated(),1000)
1661         ff=f[:]
1662         self.assertTrue(ff.isEqual(DataArrayDouble([4.]),1e-12))
1663         self.assertEqual(ff.getNumberOfTuples(),1)
1664         self.assertEqual(ff.getNbOfElemAllocated(),1)
1665         d=DataArrayDouble()
1666         d.pushBackSilent(4.44)
1667         d.pushBackSilent(5.55)
1668         d.pushBackSilent(6.66)
1669         self.assertTrue(d.isEqual(DataArrayDouble([4.44,5.55,6.66]),1e-12))
1670         #
1671         d=DataArrayInt(0,1)
1672         for i in range(8):
1673             d.pushBackSilent(i)
1674             pass
1675         self.assertEqual(d.getNumberOfTuples(),8)
1676         self.assertEqual(d.getNbOfElemAllocated(),8)
1677         d.pushBackSilent(444)
1678         self.assertEqual(d.getNumberOfTuples(),9)
1679         self.assertEqual(d.getNbOfElemAllocated(),16)
1680         self.assertTrue(d.isEqual(DataArrayInt([0,1,2,3,4,5,6,7,444])))
1681         e=d.deepCopy()
1682         self.assertEqual(e.getNumberOfTuples(),9)
1683         self.assertEqual(e.getNbOfElemAllocated(),9)
1684         self.assertTrue(e.isEqual(DataArrayInt([0,1,2,3,4,5,6,7,444])))
1685         self.assertEqual(d.popBackSilent(),444)
1686         self.assertEqual(d.getNumberOfTuples(),8)
1687         self.assertEqual(d.getNbOfElemAllocated(),16)
1688         self.assertTrue(d.isEqual(DataArrayInt([0,1,2,3,4,5,6,7])))
1689         f=DataArrayInt()
1690         f.reserve(1000)
1691         f.pushBackSilent(4)
1692         self.assertTrue(f.isEqual(DataArrayInt([4])))
1693         self.assertEqual(f.getNumberOfTuples(),1)
1694         self.assertEqual(f.getNbOfElemAllocated(),1000)
1695         ff=f[:]
1696         self.assertTrue(ff.isEqual(DataArrayInt([4])))
1697         self.assertEqual(ff.getNumberOfTuples(),1)
1698         self.assertEqual(ff.getNbOfElemAllocated(),1)
1699         d=DataArrayInt()
1700         d.pushBackSilent(444)
1701         d.pushBackSilent(555)
1702         d.pushBackSilent(666)
1703         self.assertTrue(d.isEqual(DataArrayInt([444,555,666])))
1704         #
1705         d=DataArrayInt()
1706         d.alloc(10,1)
1707         d.setInfoOnComponent(0,"ABC")
1708         d.setName("dEf")
1709         d.iota(7)
1710         e=DataArrayInt([7,8,9,10,11,12,13,14,15,16]) ; e.copyStringInfoFrom(d) ; self.assertTrue(d.isEqual(e))
1711         self.assertEqual(10,d.getNbOfElemAllocated())
1712         d.pushBackSilent(55)
1713         e=DataArrayInt([7,8,9,10,11,12,13,14,15,16,55]) ; e.copyStringInfoFrom(d) ; self.assertTrue(d.isEqual(e))
1714         self.assertEqual(20,d.getNbOfElemAllocated())
1715         d.reserve(4)
1716         e=DataArrayInt([7,8,9,10]) ; e.copyStringInfoFrom(d) ; self.assertTrue(d.isEqual(e))
1717         self.assertEqual(4,d.getNbOfElemAllocated())
1718         d.pushBackSilent(5)
1719         e=DataArrayInt([7,8,9,10,5]) ; e.copyStringInfoFrom(d) ; self.assertTrue(d.isEqual(e))
1720         self.assertEqual(8,d.getNbOfElemAllocated())
1721         self.assertEqual(5,d.popBackSilent())
1722         e=DataArrayInt([7,8,9,10]) ; e.copyStringInfoFrom(d) ; self.assertTrue(d.isEqual(e))
1723         self.assertEqual(8,d.getNbOfElemAllocated())
1724         self.assertRaises(OverflowError,d.reserve,-1)
1725         e=DataArrayInt([7,8,9,10]) ; e.copyStringInfoFrom(d) ; self.assertTrue(d.isEqual(e))
1726         self.assertEqual(8,d.getNbOfElemAllocated())
1727         d.reserve(0)
1728         e=DataArrayInt([]) ; e.setInfoOnComponent(0,"ABC") ; e.setName("dEf") ; self.assertTrue(d.isEqual(e))
1729         self.assertEqual(0,d.getNbOfElemAllocated())
1730         #
1731         d=DataArrayDouble()
1732         d.alloc(10,1)
1733         d.setInfoOnComponent(0,"ABC")
1734         d.setName("dEf")
1735         d.iota(7)
1736         e=DataArrayDouble([7,8,9,10,11,12,13,14,15,16]) ; e.copyStringInfoFrom(d) ; self.assertTrue(d.isEqual(e,1e-14))
1737         self.assertEqual(10,d.getNbOfElemAllocated())
1738         d.pushBackSilent(55)
1739         e=DataArrayDouble([7,8,9,10,11,12,13,14,15,16,55]) ; e.copyStringInfoFrom(d) ; self.assertTrue(d.isEqual(e,1e-14))
1740         self.assertEqual(20,d.getNbOfElemAllocated())
1741         d.reserve(4)
1742         e=DataArrayDouble([7,8,9,10]) ; e.copyStringInfoFrom(d) ; self.assertTrue(d.isEqual(e,1e-14))
1743         self.assertEqual(4,d.getNbOfElemAllocated())
1744         d.pushBackSilent(5)
1745         e=DataArrayDouble([7,8,9,10,5]) ; e.copyStringInfoFrom(d) ; self.assertTrue(d.isEqual(e,1e-14))
1746         self.assertEqual(8,d.getNbOfElemAllocated())
1747         self.assertEqual(5.,d.popBackSilent())
1748         e=DataArrayDouble([7,8,9,10]) ; e.copyStringInfoFrom(d) ; self.assertTrue(d.isEqual(e,1e-14))
1749         self.assertEqual(8,d.getNbOfElemAllocated())
1750         self.assertRaises(OverflowError,d.reserve,-1)
1751         e=DataArrayDouble([7,8,9,10]) ; e.copyStringInfoFrom(d) ; self.assertTrue(d.isEqual(e,1e-14))
1752         self.assertEqual(8,d.getNbOfElemAllocated())
1753         d.reserve(0)
1754         e=DataArrayDouble([]) ; e.setInfoOnComponent(0,"ABC") ; e.setName("dEf") ; self.assertTrue(d.isEqual(e,1e-14))
1755         self.assertEqual(0,d.getNbOfElemAllocated())
1756         pass
1757
1758     def testDAIBuildSubstractionOptimized1(self):
1759         da1=DataArrayInt.New([1,3,5,6,7,9,13])
1760         da2=DataArrayInt.New([3,5,9])
1761         da3=DataArrayInt.New([1,3,5])
1762         da4=DataArrayInt.New([1,3,5,6,7,9,13])
1763         #
1764         a=da1.buildSubstractionOptimized(da2);
1765         self.assertTrue(a.isEqual(DataArrayInt([1,6,7,13])));
1766         #
1767         a=da1.buildSubstractionOptimized(da3);
1768         self.assertTrue(a.isEqual(DataArrayInt([6,7,9,13])));
1769         #
1770         a=da1.buildSubstractionOptimized(da4);
1771         self.assertTrue(a.isEqual(DataArrayInt([])));
1772         pass
1773
1774     def testDAIIsStrictlyMonotonic1(self):
1775         da1=DataArrayInt.New([1,3,5,6,7,9,13])
1776         self.assertTrue(da1.isStrictlyMonotonic(True));
1777         da1.checkStrictlyMonotonic(True);
1778         self.assertTrue(da1.isMonotonic(True));
1779         da1.checkMonotonic(True);
1780         self.assertTrue(not da1.isStrictlyMonotonic(False));
1781         self.assertRaises(InterpKernelException,da1.checkStrictlyMonotonic,False)
1782         self.assertTrue(not da1.isMonotonic(False));
1783         self.assertRaises(InterpKernelException,da1.checkMonotonic,False)
1784         #
1785         da1=DataArrayInt.New([1,3,5,6,6,9,13])
1786         self.assertTrue(not da1.isStrictlyMonotonic(True));
1787         self.assertRaises(InterpKernelException,da1.checkStrictlyMonotonic,True)
1788         self.assertTrue(da1.isMonotonic(True));
1789         da1.checkMonotonic(True);
1790         self.assertTrue(not da1.isStrictlyMonotonic(False));
1791         self.assertRaises(InterpKernelException,da1.checkStrictlyMonotonic,False)
1792         self.assertTrue(not da1.isMonotonic(False));
1793         self.assertRaises(InterpKernelException,da1.checkMonotonic,False)
1794         #
1795         da1=DataArrayInt.New([1,3,5,6,5,9,13])
1796         self.assertTrue(not da1.isStrictlyMonotonic(True));
1797         self.assertRaises(InterpKernelException,da1.checkStrictlyMonotonic,True)
1798         self.assertTrue(not da1.isMonotonic(True));
1799         self.assertRaises(InterpKernelException,da1.checkMonotonic,True)
1800         self.assertTrue(not da1.isStrictlyMonotonic(False));
1801         self.assertRaises(InterpKernelException,da1.checkStrictlyMonotonic,False)
1802         self.assertTrue(not da1.isMonotonic(False));
1803         self.assertRaises(InterpKernelException,da1.checkMonotonic,False)
1804         #
1805         da1=DataArrayInt.New([13,9,7,6,5,3,1])
1806         self.assertTrue(not da1.isStrictlyMonotonic(True));
1807         self.assertRaises(InterpKernelException,da1.checkStrictlyMonotonic,True)
1808         self.assertTrue(not da1.isMonotonic(True));
1809         self.assertRaises(InterpKernelException,da1.checkMonotonic,True)
1810         self.assertTrue(da1.isStrictlyMonotonic(False));
1811         da1.checkStrictlyMonotonic(False);
1812         self.assertTrue(da1.isMonotonic(False));
1813         da1.checkMonotonic(False);
1814         #
1815         da1=DataArrayInt.New([13,9,6,6,5,3,1])
1816         self.assertTrue(not da1.isStrictlyMonotonic(True));
1817         self.assertRaises(InterpKernelException,da1.checkStrictlyMonotonic,True)
1818         self.assertTrue(not da1.isMonotonic(True));
1819         self.assertRaises(InterpKernelException,da1.checkMonotonic,True)
1820         self.assertTrue(not da1.isStrictlyMonotonic(False));
1821         self.assertRaises(InterpKernelException,da1.checkStrictlyMonotonic,False)
1822         self.assertTrue(da1.isMonotonic(False));
1823         da1.checkMonotonic(False);
1824         #
1825         da1=DataArrayInt.New([13,9,5,6,5,3,1])
1826         self.assertTrue(not da1.isStrictlyMonotonic(True));
1827         self.assertRaises(InterpKernelException,da1.checkStrictlyMonotonic,True)
1828         self.assertTrue(not da1.isMonotonic(True));
1829         self.assertRaises(InterpKernelException,da1.checkMonotonic,True)
1830         self.assertTrue(not da1.isStrictlyMonotonic(False));
1831         self.assertRaises(InterpKernelException,da1.checkStrictlyMonotonic,False)
1832         self.assertTrue(not da1.isMonotonic(False));
1833         self.assertRaises(InterpKernelException,da1.checkMonotonic,False)
1834         #
1835         da1=DataArrayInt.New([])
1836         self.assertTrue(da1.isStrictlyMonotonic(True));
1837         da1.checkStrictlyMonotonic(True);
1838         self.assertTrue(da1.isMonotonic(True));
1839         da1.checkMonotonic(True);
1840         self.assertTrue(da1.isStrictlyMonotonic(False));
1841         da1.checkStrictlyMonotonic(False);
1842         self.assertTrue(da1.isMonotonic(False));
1843         da1.checkMonotonic(False);
1844         #
1845         da1=DataArrayInt.New([13])
1846         self.assertTrue(da1.isStrictlyMonotonic(True));
1847         da1.checkStrictlyMonotonic(True);
1848         self.assertTrue(da1.isMonotonic(True));
1849         da1.checkMonotonic(True);
1850         self.assertTrue(da1.isStrictlyMonotonic(False));
1851         da1.checkStrictlyMonotonic(False);
1852         self.assertTrue(da1.isMonotonic(False));
1853         da1.checkMonotonic(False);
1854         pass
1855
1856     def testFindAndCorrectBadOriented3DCells1(self):
1857         nbOfDisc=20
1858         vects=([0,0,-1],[0.3,0.7,0.2],[-0.3,0.7,0.2],[-0.3,-0.7,0.2])
1859         #
1860         m0=MEDCouplingUMesh("m",3) ; m0.allocateCells(0); m0.insertNextCell(NORM_TETRA4,[0,1,2,3]); #Well oriented
1861         m1=MEDCouplingUMesh("m",3) ; m1.allocateCells(0); m1.insertNextCell(NORM_PYRA5,[0,1,2,3,4]); #Well oriented
1862         m2=MEDCouplingUMesh("m",3) ; m2.allocateCells(0); m2.insertNextCell(NORM_PENTA6,[0,1,2,3,4,5]); #Well oriented
1863         m3=MEDCouplingUMesh("m",3) ; m3.allocateCells(0); m3.insertNextCell(NORM_HEXA8,[0,1,2,3,4,5,6,7]); #Well oriented
1864         m4=MEDCouplingUMesh("m",3) ; m4.allocateCells(0)
1865         self.assertRaises(InterpKernelException,m4.insertNextCell,NORM_HEXGP12,[0,1,2,3,4,5,6,7,8,9,10,11,12]);
1866         m4.insertNextCell(NORM_HEXGP12,[0,1,2,3,4,5,6,7,8,9,10,11]); #Well oriented
1867         c0=DataArrayDouble([0.,0.,0.,0.,1.,0.,1.,0.,0.,0.,0.,1.],4,3) ; m0.setCoords(c0)
1868         c1=DataArrayDouble([0.,0.,0.,0.,1.,0.,1.,1.,0.,1.,0.,0.,0.,0.,1.],5,3) ; m1.setCoords(c1)
1869         c2=DataArrayDouble([0.,0.,0.,0.,1.,0.,1.,0.,0., 0.,0.,1.,0.,1.,1.,1.,0.,1.],6,3) ; m2.setCoords(c2)
1870         c3=DataArrayDouble([0.,0.,0.,0.,1.,0.,1.,1.,0.,1.,0.,0.,0.,0.,1.,0.,1.,1.,1.,1.,1.,1.,0.,1.],8,3) ; m3.setCoords(c3)
1871         c4=DataArrayDouble([0.,0.,0.,0.,1.,0.,1.,1.,0.,1.,0.,0.,0.8,0.,0.,0.45,0.,0.,   0.,0.,1.,0.,1.,1.,1.,1.,1.,1.,0.,1.,0.8,0.,1.,0.45,0.,1.],12,3) ; m4.setCoords(c4)
1872         m=MEDCouplingMesh.MergeMeshes([m0,m1,m2,m3,m4])
1873         expected1=DataArrayDouble([0.16666666666666666,0.3333333333333333,0.5,1.,1.])
1874         for v in vects:
1875             for i in range(nbOfDisc):
1876                 mm=m.deepCopy()
1877                 mm.rotate([0.,0.,0.],[0.3,0.7,0.2],float(i)/float(nbOfDisc)*2*pi)
1878                 mm2=mm.deepCopy()
1879                 self.assertTrue(mm.getMeasureField(False).getArray().isEqual(expected1,1e-14))
1880                 self.assertTrue(mm.findAndCorrectBadOriented3DCells().empty())
1881                 self.assertTrue(mm.isEqual(mm2,1e-14))
1882                 self.assertTrue(mm.getMeasureField(False).getArray().isEqual(expected1,1e-14))
1883                 mm.convertAllToPoly()
1884                 self.assertTrue(mm.getMeasureField(False).getArray().isEqual(expected1,1e-14))
1885                 pass
1886             pass
1887         #
1888         mOK=m.deepCopy()
1889         m0=MEDCouplingUMesh("m",3) ; m0.allocateCells(0); m0.insertNextCell(NORM_TETRA4,[0,2,1,3]); #Not well oriented
1890         m1=MEDCouplingUMesh("m",3) ; m1.allocateCells(0); m1.insertNextCell(NORM_PYRA5,[0,1,2,3,4]); #Well oriented
1891         m2=MEDCouplingUMesh("m",3) ; m2.allocateCells(0); m2.insertNextCell(NORM_PENTA6,[0,1,2,3,4,5]); #Well oriented
1892         m3=MEDCouplingUMesh("m",3) ; m3.allocateCells(0); m3.insertNextCell(NORM_HEXA8,[0,3,2,1,4,7,6,5]); #Not well oriented
1893         m4=MEDCouplingUMesh("m",3) ; m4.allocateCells(0); m4.insertNextCell(NORM_HEXGP12,[0,5,4,3,2,1,6,11,10,9,8,7]); #Not well oriented
1894         m0.setCoords(c0) ; m1.setCoords(c1) ; m2.setCoords(c2) ; m3.setCoords(c3) ; m4.setCoords(c4)
1895         m=MEDCouplingMesh.MergeMeshes([m0,m1,m2,m3,m4])
1896         expected2=DataArrayDouble([-0.16666666666666666,0.3333333333333333,0.5,-1.,-1.])
1897         for v in vects:
1898             for i in range(nbOfDisc):
1899                 mm=m.deepCopy()
1900                 mm.rotate([0.,0.,0.],[0.3,0.7,0.2],float(i)/float(nbOfDisc)*2*pi)
1901                 mm2=mm.deepCopy() ; mm3=mm.deepCopy() ; mm3.convertAllToPoly()
1902                 self.assertTrue(mm3.getMeasureField(False).getArray().isEqual(expected2,1e-14))
1903                 self.assertTrue(mm.getMeasureField(False).getArray().isEqual(expected2,1e-14))
1904                 self.assertTrue(mm.findAndCorrectBadOriented3DCells().isEqual(DataArrayInt([0,3,4])))
1905                 mOK.setCoords(mm.getCoords())
1906                 self.assertTrue(mm.isEqual(mOK,1e-14))
1907                 self.assertTrue(mm.getMeasureField(False).getArray().isEqual(expected1,1e-14))
1908                 mmm=mm.deepCopy()
1909                 self.assertTrue(mmm.findAndCorrectBadOriented3DCells().empty())
1910                 mm.convertAllToPoly()
1911                 self.assertTrue(mm.getMeasureField(False).getArray().isEqual(expected1,1e-14))
1912                 pass
1913             pass
1914         #
1915         m0=MEDCouplingUMesh("m",3) ; m0.allocateCells(0); m0.insertNextCell(NORM_TETRA4,[0,1,2,3]); #Well oriented
1916         m1=MEDCouplingUMesh("m",3) ; m1.allocateCells(0); m1.insertNextCell(NORM_PYRA5,[0,3,2,1,4]); #Not well oriented
1917         m2=MEDCouplingUMesh("m",3) ; m2.allocateCells(0); m2.insertNextCell(NORM_PENTA6,[0,2,1,3,5,4]); #Not well oriented
1918         m3=MEDCouplingUMesh("m",3) ; m3.allocateCells(0); m3.insertNextCell(NORM_HEXA8,[0,1,2,3,4,5,6,7]); #Well oriented
1919         m4 = MEDCouplingUMesh("m", 3) ; m4.allocateCells(0); m4.insertNextCell(NORM_HEXGP12, list(range(12)));  # Well oriented
1920         m0.setCoords(c0) ; m1.setCoords(c1) ; m2.setCoords(c2) ; m3.setCoords(c3) ; m4.setCoords(c4)
1921         m=MEDCouplingMesh.MergeMeshes([m0,m1,m2,m3,m4])
1922         expected3=DataArrayDouble([0.16666666666666666,-0.3333333333333333,-0.5,1.,1.])
1923         for v in vects:
1924             for i in range(nbOfDisc):
1925                 mm=m.deepCopy()
1926                 mm.rotate([0.,0.,0.],[0.3,0.7,0.2],float(i)/float(nbOfDisc)*2*pi)
1927                 mm2=mm.deepCopy() ; mm3=mm.deepCopy() ; mm3.convertAllToPoly()
1928                 self.assertTrue(mm3.getMeasureField(False).getArray().isEqual(expected3,1e-14))
1929                 self.assertTrue(mm.getMeasureField(False).getArray().isEqual(expected3,1e-14))
1930                 self.assertTrue(mm.findAndCorrectBadOriented3DCells().isEqual(DataArrayInt([1,2])))
1931                 mOK.setCoords(mm.getCoords())
1932                 self.assertTrue(mm.isEqual(mOK,1e-14))
1933                 self.assertTrue(mm.getMeasureField(False).getArray().isEqual(expected1,1e-14))
1934                 mmm=mm.deepCopy()
1935                 self.assertTrue(mmm.findAndCorrectBadOriented3DCells().empty())
1936                 mm.convertAllToPoly()
1937                 self.assertTrue(mm.getMeasureField(False).getArray().isEqual(expected1,1e-14))
1938                 pass
1939             pass
1940         pass
1941
1942     def testSwig2CellOrientation1(self):
1943         coords=DataArrayDouble([-0.21606,-0.10803,0.29999999999999999,-0.21606,-0.10803,0.37700000000000006,0,-0.10803,0.29999999999999999,0,-0.10803,0.37700000000000006,0,0.10803,0.29999999999999999,0,0.10803,0.37700000000000006,-0.21606,0.10803,0.29999999999999999,-0.21606,0.10803,0.37700000000000006,0,0.03601,0.29999999999999999,0,0.03601,0.37700000000000006,0,-0.03601,0.29999999999999999,0,-0.03601,0.37700000000000006],12,3)
1944         conn=[[0,2,10,8,4,6],[1,3,11,9,5,7],[0,1,3,2],[2,3,11,10],[10,11,9,8],[8,9,5,4],[4,5,7,6],[6,7,1,0]]
1945         for i in range(256):
1946             mesh=MEDCouplingUMesh("FluidMesh_1",3);
1947             mesh.allocateCells(0)
1948             conn2=[elt[:] for elt in conn]
1949             code=bin(i)[2:] ; code='0'*(8-len(code))+code
1950             for face,rev in zip(conn2,code):
1951                 if bool(int(rev)):
1952                     face.reverse()
1953                     pass
1954                 pass
1955             conn3=[elt+[-1] for elt in conn2]
1956             conn3=sum(conn3,[])[:-1]
1957             mesh.insertNextCell(NORM_POLYHED,conn3)
1958             mesh.setCoords(coords)
1959             mesh.orientCorrectlyPolyhedrons()
1960             self.assertTrue(mesh.computeCellCenterOfMass().isEqual(DataArrayDouble([-0.10803,0.,0.3385],1,3),1e-12))
1961             pass
1962         pass
1963
1964     def testSwig2CheckConsecutiveCellTypesForMEDFileFrmt1(self):
1965         m1=MEDCouplingUMesh("",2) ; m1.allocateCells(0)
1966         m1.insertNextCell(NORM_QUAD4,[0,1,2,3])
1967         m1.insertNextCell(NORM_TRI3,[0,1,2])
1968         d=DataArrayDouble(4,3) ; d[:]=0.
1969         m1.setCoords(d)
1970         self.assertTrue(m1.checkConsecutiveCellTypes())
1971         self.assertTrue(not m1.checkConsecutiveCellTypesForMEDFileFrmt())
1972         m1.renumberCells([1,0])
1973         self.assertTrue(m1.checkConsecutiveCellTypes())
1974         self.assertTrue(m1.checkConsecutiveCellTypesForMEDFileFrmt())
1975         pass
1976
1977     def testSwig2DAAccumulate1(self):
1978         d=DataArrayInt(10) ; d.iota(0)
1979         self.assertEqual([45],d.accumulate())
1980         self.assertEqual(45,d.accumulate(0))
1981         d=DataArrayInt(30) ; d.iota(0) ; d.rearrange(3)
1982         self.assertEqual([135,145,155],d.accumulate())
1983         self.assertEqual(135,d.accumulate(0))
1984         self.assertEqual(145,d.accumulate(1))
1985         self.assertEqual(155,d.accumulate(2))
1986         d=DataArrayDouble(10) ; d.iota(0.)
1987         self.assertEqual([45.],d.accumulate())
1988         self.assertEqual(45.,d.accumulate(0))
1989         d=DataArrayDouble(30) ; d.iota(0) ; d.rearrange(3)
1990         self.assertEqual([135.,145.,155.],d.accumulate())
1991         self.assertEqual(135.,d.accumulate(0))
1992         self.assertEqual(145.,d.accumulate(1))
1993         self.assertEqual(155.,d.accumulate(2))
1994         pass
1995
1996     def testSwig2UMeshDistanceToMesh1(self):
1997         m=MEDCouplingUMesh("toto",2)
1998         coords=DataArrayDouble([2.3,3.4,5.6,6.5,-4.3,3.2,-9.8,7.6,-5.4],3,3)
1999         m.setCoords(coords)
2000         m.allocateCells(0)
2001         m.insertNextCell(NORM_TRI3,[0,1,2])
2002         a,b=m.distanceToPoint([-0.335,2.27,1.21])
2003         self.assertEqual(0,b)
2004         self.assertAlmostEqual(0.0223609881003,a,12);
2005         a,b=m.distanceToPoint(DataArrayDouble([-0.335,2.27,1.21],1,3))
2006         self.assertEqual(0,b)
2007         self.assertAlmostEqual(0.0223609881003,a,12);
2008         a,b=coords.distanceToTuple([-0.335,2.27,1.21])
2009         self.assertAlmostEqual(5.243302871282566,a,14)
2010         self.assertEqual(0,b)
2011         #
2012         m=MEDCouplingUMesh("toto",2)
2013         coords=DataArrayDouble([0.,0.,0., 8.,0.,0., 8.,8.,0., 0.,8.,0.],4,3)
2014         m.setCoords(coords)
2015         m.allocateCells(0)
2016         m.insertNextCell(NORM_QUAD4,[0,1,2,3])
2017         m.checkConsistency()
2018         self.assertEqual([4,0,1,2,3],m.getNodalConnectivity().getValues())
2019         a,b=m.distanceToPoint([5.,2.,0.1])
2020         self.assertAlmostEqual(0.1,a,14) ; self.assertEqual(0,b)
2021         a,b=m.distanceToPoint([5.,-2.,4.])
2022         self.assertAlmostEqual(sqrt(2*2+4*4),a,14) ; self.assertEqual(0,b)
2023         m.allocateCells(0)
2024         m.insertNextCell(NORM_POLYGON,[0,1,2,3])
2025         m.checkConsistency()
2026         self.assertEqual([5,0,1,2,3],m.getNodalConnectivity().getValues())
2027         a,b=m.distanceToPoint([11.,3.,4.])
2028         self.assertAlmostEqual(sqrt(3*3+4*4),a,14) ; self.assertEqual(0,b)
2029         a,b=m.distanceToPoint([4.,12.,5.])
2030         self.assertAlmostEqual(sqrt(4*4+5*5),a,14) ; self.assertEqual(0,b)
2031         d=DataArrayDouble([-1.2,3.,2.],1,3)
2032         for elt in d:
2033             a,b=m.distanceToPoint(d)
2034             self.assertAlmostEqual(sqrt(1.2*1.2+2*2),a,14) ; self.assertEqual(0,b)
2035             pass
2036         #
2037         m=MEDCouplingUMesh("toto",1)
2038         coords=DataArrayDouble([0.,0.,4.,0.,0.,4.],3,2) ; m.setCoords(coords)
2039         m.allocateCells(0) ; m.insertNextCell(NORM_SEG2,[0,1]) ; m.insertNextCell(NORM_SEG2,[1,2])
2040         a,b=m.distanceToPoint([-0.1,4.1])
2041         self.assertAlmostEqual(0.14142135623730925,a,14)  # b==1 self.assertEqual(2,c)
2042         a,b=m.distanceToPoint([0.,3.9])
2043         self.assertAlmostEqual(0.07071067811865482,a,14) ; self.assertEqual(1,b) # self.assertEqual(2,c)
2044         pass
2045
2046     def testSwig2UMeshDistanceToMesh2(self):
2047         mesh = MEDCouplingUMesh('Solid_3', 2)
2048         coo = DataArrayDouble([(99.75,-1.42109e-14,102.75),(99.75,200,102.75),(2.5,0,200),(2.5,200,200),(197,0,200),(197,200,200)])
2049         mesh.setCoords(coo)
2050         c = DataArrayInt([3, 4, 0, 1, 3, 4, 1, 5, 3, 1, 0, 3, 3, 3, 0, 2])
2051         cI = DataArrayInt([0, 4, 8, 12, 16])
2052         mesh.setConnectivity(c, cI)
2053         mesh.checkConsistency()
2054         pt = [125.0, 175.0, 175.0]
2055         # Values computed from GEOM:
2056         exp1, exp2, exp3, exp4 = 54.0633707597, 33.2340187158, 68.9429111657, 99.5221476482
2057         d1, _ = mesh[0].distanceToPoint(pt)
2058         d2, _ = mesh[1].distanceToPoint(pt)
2059         d3, _ = mesh[2].distanceToPoint(pt)
2060         d4, _ = mesh[3].distanceToPoint(pt)
2061         self.assertAlmostEqual(exp1,d1,10)
2062         self.assertAlmostEqual(exp2,d2,10)
2063         self.assertAlmostEqual(exp3,d3,10)
2064         self.assertAlmostEqual(exp4,d4,10)
2065         pass
2066
2067     def testSwig2NonRegressionPartitionBySpreadZone1(self):
2068         m=MEDCouplingCMesh()
2069         arr=DataArrayDouble(6) ; arr.iota(0.)
2070         m.setCoords(arr,arr,arr)
2071         m=m.buildUnstructured()
2072         mPart=m[50,80,85,87,92,122]
2073         zones=mPart.partitionBySpreadZone()
2074         self.assertEqual(4,len(zones))
2075         self.assertTrue(zones[0].isEqual(DataArrayInt([0])))
2076         self.assertTrue(zones[1].isEqual(DataArrayInt([1,2])))
2077         self.assertTrue(zones[2].isEqual(DataArrayInt([3,4])))
2078         self.assertTrue(zones[3].isEqual(DataArrayInt([5])))
2079         #
2080         n,ni=m.computeNeighborsOfCells()
2081         a,b=MEDCouplingUMesh.ComputeSpreadZoneGraduallyFromSeed(0,n,ni)
2082         self.assertEqual(13,b) ; self.assertTrue(a.isIota(125))
2083         a,b=MEDCouplingUMesh.ComputeSpreadZoneGraduallyFromSeed([1],n,ni)
2084         self.assertEqual(12,b) ; self.assertTrue(a.isIota(125))
2085         a,b=MEDCouplingUMesh.ComputeSpreadZoneGraduallyFromSeed((2,),n,ni)
2086         self.assertEqual(11,b) ; self.assertTrue(a.isIota(125))
2087         a,b=MEDCouplingUMesh.ComputeSpreadZoneGraduallyFromSeed(DataArrayInt([3]),n,ni)
2088         self.assertEqual(12,b) ; self.assertTrue(a.isIota(125))
2089         pass
2090
2091     def testSwigUMeshInsertNextCell1(self):
2092         m=MEDCouplingUMesh("toto",2)
2093         #
2094         coords=DataArrayDouble([0.,0.,1.,1.,1.,0.]) ; m.setCoords(coords)
2095         da=DataArrayInt([0,1,2])
2096         m.allocateCells(0)
2097         for i in range(5):
2098             m.insertNextCell(NORM_TRI3,da)
2099             pass
2100         self.assertTrue(m.getNodalConnectivity().isEqual(DataArrayInt([3,0,1,2,3,0,1,2,3,0,1,2,3,0,1,2,3,0,1,2])))
2101         self.assertTrue(m.getNodalConnectivityIndex().isEqual(DataArrayInt([0,4,8,12,16,20])))
2102         #
2103         da=DataArrayInt([0,1,2,3])
2104         m.allocateCells(0)
2105         for i in range(5):
2106             m.insertNextCell(NORM_TRI3,3,da)
2107             pass
2108         self.assertTrue(m.getNodalConnectivity().isEqual(DataArrayInt([3,0,1,2,3,0,1,2,3,0,1,2,3,0,1,2,3,0,1,2])))
2109         self.assertTrue(m.getNodalConnectivityIndex().isEqual(DataArrayInt([0,4,8,12,16,20])))
2110         #
2111         da=DataArrayInt([0,1])
2112         m.allocateCells(0)
2113         self.assertRaises(InterpKernelException,m.insertNextCell,NORM_TRI3,3,da)
2114         #
2115         da=DataArrayInt([0,1,2,0,1,3,0,1,4,0,1,5,0,1,6],5,3)
2116         m.allocateCells(0)
2117         for t in da:
2118             m.insertNextCell(NORM_TRI3,t)
2119             pass
2120         self.assertTrue(m.getNodalConnectivity().isEqual(DataArrayInt([3,0,1,2,3,0,1,3,3,0,1,4,3,0,1,5,3,0,1,6])))
2121         self.assertTrue(m.getNodalConnectivityIndex().isEqual(DataArrayInt([0,4,8,12,16,20])))
2122         self.assertRaises(InterpKernelException,m.insertNextCell,NORM_TRI3,None)
2123         pass
2124
2125     def testSwigCurveLinearMesh1(self):
2126         m=MEDCouplingCurveLinearMesh("toto")
2127         m.setNodeGridStructure([2,3])
2128         coords=DataArrayDouble([0.,0., 2.,0., 0.,1., 1.9,1.1, 0.3,1.9, 2.2,2.1],6,2)
2129         m.setCoords(coords)
2130         m.checkConsistencyLight()
2131         m0=m.deepCopy()
2132         self.assertTrue(m0.isEqual(m,1e-12))
2133         m.getCoords().setInfoOnComponents(["X [m]","Y [m]"])
2134         self.assertTrue(not m0.isEqual(m,1e-12))
2135         m0=m.deepCopy()
2136         self.assertTrue(m0.isEqual(m,1e-12))
2137         self.assertEqual(m.getNodeGridStructure(),(2,3))
2138         pass
2139
2140     def testSimplexize3(self):
2141         m=MEDCouplingUMesh("toto",3)
2142         m.allocateCells(0)
2143         m.insertNextCell(NORM_TETRA4,[0,1,2,3])
2144         self.assertEqual([NORM_TETRA4],m.getAllGeoTypesSorted())
2145         m.insertNextCell(NORM_HEXA8,[4,5,6,7,8,9,10,11])
2146         self.assertEqual([NORM_TETRA4,NORM_HEXA8],m.getAllGeoTypesSorted())
2147         m.insertNextCell(NORM_HEXA8,[12,13,14,15,16,17,18,19])
2148         self.assertEqual([NORM_TETRA4,NORM_HEXA8],m.getAllGeoTypesSorted())
2149         m.insertNextCell(NORM_TETRA4,[20,21,22,23])
2150         self.assertEqual([NORM_TETRA4,NORM_HEXA8,NORM_TETRA4],m.getAllGeoTypesSorted())
2151         c1=DataArrayDouble([0.,0.,0.,0.,1.,0.,1.,0.,0.,0.,0.,1.],4,3)
2152         c2=DataArrayDouble([0.,0.,0.,0.,1.,0.,1.,1.,0.,1.,0.,0., 0.,0.,1.,0.,1.,1.,1.,1.,1.,1.,0.,1.],8,3) ; c2+=[2.,0.,0.]
2153         c3=c2+[2.,0.,0.]
2154         c4=c1+[6.,0.,0.]
2155         c=DataArrayDouble.Aggregate([c1,c2,c3,c4])
2156         m.setCoords(c)
2157         m.checkConsistency()
2158         #
2159         m1=m.deepCopy()
2160         d1=m1.simplexize(PLANAR_FACE_5)
2161         m1.checkConsistency()
2162         vol1=m1.getMeasureField(False).getArray()
2163         self.assertTrue(vol1.isEqual(DataArrayDouble([1./6, 1./6, 1./6,1./6, 1./6, 1./3,1./6, 1./6, 1./6, 1./6, 1./3, 1./6]),1e-12))
2164         self.assertEqual(m1.getNodalConnectivity().getValues(),[14,0,1,2,3,14,4,9,5,6,14,4,8,9,11,14,4,7,11,6,14,9,11,10,6,14,4,9,6,11,14,12,17,13,14,14,12,16,17,19,14,12,15,19,14,14,17,19,18,14,14,12,17,14,19,14,20,21,22,23])
2165         self.assertEqual(m1.getNodalConnectivityIndex().getValues(),[0,5,10,15,20,25,30,35,40,45,50,55,60])
2166         self.assertTrue(d1.isEqual(DataArrayInt([0,1,1,1,1,1,2,2,2,2,2,3])))
2167         #
2168         m2=m.deepCopy()
2169         d2=m2.simplexize(PLANAR_FACE_6)
2170         m2.checkConsistency()
2171         vol2=m2.getMeasureField(False).getArray()
2172         self.assertTrue(vol2.isEqual(DataArrayDouble([1./6, 1./6, 1./6,1./6, 1./6, 1./6,1./6,1./6, 1./6, 1./6, 1./6, 1./6,1./6,1./6]),1e-12))
2173         self.assertEqual(m2.getNodalConnectivity().getValues(),[14,0,1,2,3,14,4,9,5,10,14,4,5,6,10,14,4,8,9,10,14,4,11,8,10,14,4,6,7,10,14,4,7,11,10,14,12,17,13,18,14,12,13,14,18,14,12,16,17,18,14,12,19,16,18,14,12,14,15,18,14,12,15,19,18,14,20,21,22,23])
2174         self.assertEqual(m2.getNodalConnectivityIndex().getValues(),[0,5,10,15,20,25,30,35,40,45,50,55,60,65,70])
2175         self.assertTrue(d2.isEqual(DataArrayInt([0,1,1,1,1,1,1,2,2,2,2,2,2,3])))
2176         pass
2177
2178     def testSwig2CurveLinearMesh2(self):
2179         c=MEDCouplingCMesh()
2180         #2D
2181         arr1=DataArrayDouble([0,1,3,7])
2182         arr2=DataArrayDouble([0,1,1.5])
2183         c.setCoords(arr1,arr2)
2184         u=c.buildUnstructured()
2185         coo=u.getCoords()
2186         cl=MEDCouplingCurveLinearMesh()
2187         cl.setCoords(coo)
2188         cl.setNodeGridStructure([4,3])
2189         cl.checkConsistency()
2190         li1=[1.,2.,4.,0.5,1.,2.]
2191         self.assertTrue(cl.getMeasureField(False).getArray().isEqual(DataArrayDouble(li1),1e-14))
2192         self.assertTrue(u.getMeasureField(False).getArray().isEqual(DataArrayDouble(li1),1e-14))
2193         li1_1=[0.5,0.5,2.,0.5,5.,0.5,0.5,1.25,2.,1.25,5.,1.25]
2194         self.assertTrue(cl.computeCellCenterOfMass().isEqual(DataArrayDouble(li1_1,6,2),1e-14))
2195         self.assertTrue(u.computeCellCenterOfMass().isEqual(DataArrayDouble(li1_1,6,2),1e-14))
2196         #3D
2197         c.setCoords(arr1,arr2,arr2)
2198         u=c.buildUnstructured()
2199         coo=u.getCoords()
2200         cl=MEDCouplingCurveLinearMesh()
2201         cl.setCoords(coo)
2202         cl.setNodeGridStructure([4,3,3])
2203         cl.checkConsistency()
2204         li2=[1.,2.,4.,0.5, 1.,2.,0.5,1.,2.,0.25,0.5,1.]
2205         li2_1=[0.5,0.5,0.5,2.,0.5,0.5,5.,0.5,0.5,0.5,1.25,0.5,2.,1.25,0.5,5.,1.25,0.5,0.5,0.5,1.25,2.,0.5,1.25,5.,0.5,1.25,0.5,1.25,1.25,2.,1.25,1.25,5.,1.25,1.25]
2206         self.assertTrue(cl.getMeasureField(False).getArray().isEqual(DataArrayDouble(li2),1e-14))
2207         self.assertTrue(u.getMeasureField(False).getArray().isEqual(DataArrayDouble(li2),1e-14))
2208         self.assertTrue(cl.computeCellCenterOfMass().isEqual(DataArrayDouble(li2_1,12,3),1e-14))
2209         self.assertTrue(u.computeCellCenterOfMass().isEqual(DataArrayDouble(li2_1,12,3),1e-14))
2210         #1D spaceDim 1
2211         coo=DataArrayDouble(5) ; coo.iota(0.)
2212         coo=coo*coo
2213         cl.setCoords(coo)
2214         cl.setNodeGridStructure([5])
2215         cl.checkConsistency()
2216         li3=[1.,3.,5.,7.]
2217         li3_1=[0.5,2.5,6.5,12.5]
2218         self.assertTrue(cl.getMeasureField(False).getArray().isEqual(DataArrayDouble(li3),1e-14))
2219         self.assertTrue(cl.buildUnstructured().getMeasureField(False).getArray().isEqual(DataArrayDouble(li3),1e-14))
2220         self.assertTrue(cl.computeCellCenterOfMass().isEqual(DataArrayDouble(li3_1),1e-14))
2221         self.assertTrue(cl.buildUnstructured().computeCellCenterOfMass().isEqual(DataArrayDouble(li3_1),1e-14))
2222         #1D spaceDim 2
2223         coo=DataArrayDouble.Meld(coo,coo)
2224         cl.setCoords(coo)
2225         cl.checkConsistency()
2226         li4=[sqrt(2.)*elt for elt in [1.,3.,5.,7.]]
2227         li4_1=[0.5,0.5,2.5,2.5,6.5,6.5,12.5,12.5]
2228         self.assertEqual(2,cl.getSpaceDimension())
2229         self.assertEqual(1,cl.getMeshDimension())
2230         self.assertEqual(4,cl.getNumberOfCells())
2231         self.assertEqual(5,cl.getNumberOfNodes())
2232         self.assertTrue(cl.getMeasureField(False).getArray().isEqual(DataArrayDouble(li4),1e-14))
2233         self.assertTrue(cl.buildUnstructured().getMeasureField(False).getArray().isEqual(DataArrayDouble(li4),1e-14))
2234         self.assertTrue(cl.computeCellCenterOfMass().isEqual(DataArrayDouble(li4_1,4,2),1e-14))
2235         self.assertTrue(cl.buildUnstructured().computeCellCenterOfMass().isEqual(DataArrayDouble(li4_1,4,2),1e-14))
2236         pass
2237
2238     def testSwig2CurveLinearMeshNonRegression1(self):
2239         coords=DataArrayDouble([0.0, 0.0, 0.10000000149011612, 0.6000000238418579, 0.10000000149011612, 0.30000001192092896, 1.100000023841858, 0.10000000149011612, 0.20000000298023224, 0.10000000149011612, 0.6000000238418579, 0.20000000298023224, 0.699999988079071, 0.6000000238418579, 0.10000000149011612, 1.2000000476837158, 0.6000000238418579, 0.30000001192092896, 0.10000000149011612, 1.100000023841858, 0.30000001192092896, 0.5, 1.100000023841858, 0.20000000298023224, 1.0, 1.2000000476837158, 0.10000000149011612, 0.0, 0.10000000149011612, 0.5, 0.5, 0.10000000149011612, 0.6000000238418579, 1.2000000476837158, 0.10000000149011612, 0.699999988079071, 0.10000000149011612, 0.6000000238418579, 0.699999988079071, 0.6000000238418579, 0.6000000238418579, 0.5, 1.100000023841858, 0.6000000238418579, 0.6000000238418579, 0.10000000149011612, 1.0, 0.6000000238418579, 0.699999988079071, 1.2000000476837158, 0.699999988079071, 0.8999999761581421, 1.0, 0.5, 0.10000000149011612, 0.10000000149011612, 1.2000000476837158, 0.699999988079071, 0.10000000149011612, 1.0, 1.0, 0.10000000149011612, 1.100000023841858, 0.10000000149011612, 0.6000000238418579, 1.100000023841858, 0.6000000238418579, 0.6000000238418579, 1.100000023841858, 1.100000023841858, 0.6000000238418579, 1.2000000476837158, 0.10000000149011612, 1.2000000476837158, 1.0, 0.5, 1.100000023841858, 1.2000000476837158, 1.2000000476837158, 1.100000023841858, 1.0],27,3)
2240         m=MEDCouplingCurveLinearMesh("toto")
2241         m.setCoords(coords)
2242         m.setNodeGridStructure([3,3,3])
2243         #
2244         vol=m.getMeasureField(False).getArray()
2245         self.assertTrue(vol.isEqual(DataArrayDouble([0.11450000709295281, 0.10583334351579375,0.11149999939029423,0.08866666863113633, 0.1404166805123294,0.1250000135352219,0.1270833433481557,0.13258334288001067]),1e-12))
2246         self.assertTrue(vol.isEqual(m.buildUnstructured().getMeasureField(False).getArray(),1e-12))
2247         #
2248         self.assertTrue(m.computeCellCenterOfMass().isEqual(m.buildUnstructured().computeCellCenterOfMass(),1e-12))
2249         pass
2250
2251     def testSwig2NonRegressionDASetSelectedComponents1(self):
2252         da=DataArrayDouble.New([1.,2.,3.,4.,5.,6.],3,2)
2253         dv=DataArrayDouble.New();
2254         dv.alloc(4,4)
2255         dv.fillWithZero()
2256         # da has less tuples than dv
2257         dv.setSelectedComponents(da,[1,0])
2258         #
2259         self.assertTrue(dv.isEqual(DataArrayDouble([2.,1.,0.,0.,4.,3.,0.,0.,6.,5.,0.,0.,0.,0.,0.,0.],4,4),1e-14))
2260         #
2261         da=DataArrayInt.New([1,2,3,4,5,6],3,2)
2262         dv=DataArrayInt.New();
2263         dv.alloc(4,4)
2264         dv.fillWithZero()
2265         # da has less tuples than dv
2266         dv.setSelectedComponents(da,[1,0])
2267         #
2268         self.assertTrue(dv.isEqual(DataArrayInt([2,1,0,0,4,3,0,0,6,5,0,0,0,0,0,0],4,4)))
2269         pass
2270
2271     def testSwigSetItem3(self):
2272         # 1-2
2273         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2274         d[3]=[1,2]
2275         self.assertTrue(d.isEqual(DataArrayDouble([0,0,0,0,0,0,1,2,0,0,0,0],6,2),1e-14))
2276         # 2-2 false
2277         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2278         d[[5,3,2]]=[1,2]
2279         self.assertTrue(d.isEqual(DataArrayDouble([0,0,0,0,1,2,1,2,0,0,1,2],6,2),1e-14))
2280         # 3-2 false
2281         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2282         d[:]=[1,2]
2283         self.assertTrue(d.isEqual(DataArrayDouble([1,2,1,2,1,2,1,2,1,2,1,2],6,2),1e-14))
2284         # 4-2 false
2285         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2286         d[DataArrayInt([0,3,4])]=[1,2]
2287         self.assertTrue(d.isEqual(DataArrayDouble([1,2,0,0,0,0,1,2,1,2,0,0],6,2),1e-14))
2288         # 5-2
2289         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2290         d[5,1]=[7]
2291         self.assertTrue(d.isEqual(DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,7],6,2),1e-14))
2292         # 6-2 false
2293         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2294         d[[3,5],1]=[7]
2295         self.assertTrue(d.isEqual(DataArrayDouble([0,0,0,0,0,0,0,7,0,0,0,7],6,2),1e-14))
2296         # 7-2 false
2297         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2298         d[:-1:2,1]=[7]
2299         self.assertTrue(d.isEqual(DataArrayDouble([0,7,0,0,0,7,0,0,0,7,0,0],6,2),1e-14))
2300         # 8-2 false
2301         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2302         d[DataArrayInt([0,3,4]),1]=[7]
2303         self.assertTrue(d.isEqual(DataArrayDouble([0,7,0,0,0,0,0,7,0,7,0,0],6,2),1e-14))
2304         # 9-2
2305         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2306         d[3,[1,0]]=[7,8]
2307         self.assertTrue(d.isEqual(DataArrayDouble([0,0,0,0,0,0,8,7,0,0,0,0],6,2),1e-14))
2308         # 10-2 false
2309         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2310         d[[1,3,4],[1,0]]=[7,8]
2311         self.assertTrue(d.isEqual(DataArrayDouble([0,0,8,7,0,0,8,7,8,7,0,0],6,2),1e-14))
2312         # 11-2 false
2313         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2314         d[1::2,[1,0]]=[7,8]
2315         self.assertTrue(d.isEqual(DataArrayDouble([0,0,8,7,0,0,8,7,0,0,8,7],6,2),1e-14))
2316         # 12-2 false
2317         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2318         d[DataArrayInt([1,4]),[1,0]]=[7,8]
2319         self.assertTrue(d.isEqual(DataArrayDouble([0,0,8,7,0,0,0,0,8,7,0,0],6,2),1e-14))
2320         # 13-2
2321         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2322         d[1,:-1]=[9]
2323         self.assertTrue(d.isEqual(DataArrayDouble([0,0,9,0,0,0,0,0,0,0,0,0],6,2),1e-14))
2324         # 14-2 false
2325         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2326         d[[1,4,5],:]=[7,8]
2327         self.assertTrue(d.isEqual(DataArrayDouble([0,0,7,8,0,0,0,0,7,8,7,8],6,2),1e-14))
2328         # 15-2 false
2329         d=DataArrayDouble([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2330         d[1::2,:]=[3,9]
2331         self.assertTrue(d.isEqual(DataArrayDouble([0,0,3,9,0,0,3,9,0,0,3,9],6,2),1e-14))
2332         # 1-2
2333         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2334         d[3]=[1,2]
2335         self.assertTrue(d.isEqual(DataArrayInt([0,0,0,0,0,0,1,2,0,0,0,0],6,2)))
2336         # 2-2 false
2337         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2338         d[[5,3,2]]=[1,2]
2339         self.assertTrue(d.isEqual(DataArrayInt([0,0,0,0,1,2,1,2,0,0,1,2],6,2)))
2340         # 3-2 false
2341         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2342         d[:]=[1,2]
2343         self.assertTrue(d.isEqual(DataArrayInt([1,2,1,2,1,2,1,2,1,2,1,2],6,2)))
2344         # 4-2 false
2345         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2346         d[DataArrayInt([0,3,4])]=[1,2]
2347         self.assertTrue(d.isEqual(DataArrayInt([1,2,0,0,0,0,1,2,1,2,0,0],6,2)))
2348         # 5-2
2349         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2350         d[5,1]=[7]
2351         self.assertTrue(d.isEqual(DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,7],6,2)))
2352         # 6-2 false
2353         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2354         d[[3,5],1]=[7]
2355         self.assertTrue(d.isEqual(DataArrayInt([0,0,0,0,0,0,0,7,0,0,0,7],6,2)))
2356         # 7-2 false
2357         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2358         d[:-1:2,1]=[7]
2359         self.assertTrue(d.isEqual(DataArrayInt([0,7,0,0,0,7,0,0,0,7,0,0],6,2)))
2360         # 8-2 false
2361         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2362         d[DataArrayInt([0,3,4]),1]=[7]
2363         self.assertTrue(d.isEqual(DataArrayInt([0,7,0,0,0,0,0,7,0,7,0,0],6,2)))
2364         # 9-2
2365         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2366         d[3,[1,0]]=[7,8]
2367         self.assertTrue(d.isEqual(DataArrayInt([0,0,0,0,0,0,8,7,0,0,0,0],6,2)))
2368         # 10-2 false
2369         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2370         d[[1,3,4],[1,0]]=[7,8]
2371         self.assertTrue(d.isEqual(DataArrayInt([0,0,8,7,0,0,8,7,8,7,0,0],6,2)))
2372         # 11-2 false
2373         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2374         d[1::2,[1,0]]=[7,8]
2375         self.assertTrue(d.isEqual(DataArrayInt([0,0,8,7,0,0,8,7,0,0,8,7],6,2)))
2376         # 12-2 false
2377         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2378         d[DataArrayInt([1,4]),[1,0]]=[7,8]
2379         self.assertTrue(d.isEqual(DataArrayInt([0,0,8,7,0,0,0,0,8,7,0,0],6,2)))
2380         # 13-2
2381         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2382         d[1,:-1]=[9]
2383         self.assertTrue(d.isEqual(DataArrayInt([0,0,9,0,0,0,0,0,0,0,0,0],6,2)))
2384         # 14-2 false
2385         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2386         d[[1,4,5],:]=[7,8]
2387         self.assertTrue(d.isEqual(DataArrayInt([0,0,7,8,0,0,0,0,7,8,7,8],6,2)))
2388         # 15-2 false
2389         d=DataArrayInt([0,0,0,0,0,0,0,0,0,0,0,0],6,2)
2390         d[1::2,:]=[3,9]
2391         self.assertTrue(d.isEqual(DataArrayInt([0,0,3,9,0,0,3,9,0,0,3,9],6,2)))
2392         pass
2393
2394     def testSwig2ConvertLinearCellsToQuadratic1(self):
2395         coordsExp=DataArrayDouble([-0.3,-0.3,0.2,-0.3,0.7,-0.3,-0.3,0.2,0.2,0.2,0.7,0.2,-0.3,0.7,0.2,0.7,0.7,0.7,-0.3,-0.05,-0.05,0.2,0.2,-0.05,-0.05,-0.3,0.45,-0.05,0.45,-0.3,0.45,0.2,0.7,-0.05,-0.05,0.7,0.2,0.45,-0.3,0.45,0.45,0.7,0.7,0.45],22,2)
2396         # 2D
2397         m2D=MEDCouplingDataForTest.build2DTargetMesh_1()
2398         m2D.convertLinearCellsToQuadratic(0)
2399         m2D.checkConsistency()
2400         self.assertEqual(m2D.getNodalConnectivity().getValues(),[8,0,3,4,1,9,10,11,12,6,1,4,2,11,13,14,6,4,5,2,15,16,13,8,6,7,4,3,17,18,10,19,8,7,8,5,4,20,21,15,18])
2401         self.assertEqual(m2D.getNodalConnectivityIndex().getValues(),[0,9,16,23,32,41])
2402         self.assertTrue(m2D.getCoords().isEqual(coordsExp,1e-14))
2403         # 1D
2404         m1D=MEDCouplingDataForTest.build2DTargetMesh_1().buildDescendingConnectivity()[0]
2405         m1D.convertLinearCellsToQuadratic(0)
2406         m1D.checkConsistency()
2407         self.assertEqual(m1D.getNodalConnectivity().getValues(),[2,0,3,9,2,3,4,10,2,4,1,11,2,1,0,12,2,4,2,13,2,2,1,14,2,4,5,15,2,5,2,16,2,6,7,17,2,7,4,18,2,3,6,19,2,7,8,20,2,8,5,21])
2408         self.assertEqual(m1D.getNodalConnectivityIndex().getValues(),[0,4,8,12,16,20,24,28,32,36,40,44,48,52])
2409         self.assertTrue(m1D.getCoords().isEqual(coordsExp,1e-14))
2410         # 3D
2411         m2D=MEDCouplingDataForTest.build2DTargetMesh_1()
2412         m2D.changeSpaceDimension(3)
2413         arr=DataArrayDouble(4);  arr.iota(0) ; z=MEDCouplingCMesh() ; z.setCoords(arr)
2414         m1D=z.buildUnstructured() ; m1D.setCoords(arr.changeNbOfComponents(3,0.))
2415         m1D.getCoords()[:]=m1D.getCoords()[:,[1,2,0]]
2416         cooTmp=m2D.getCoords()[:]
2417         m3D=m2D.buildExtrudedMesh(m1D,0)
2418         m3D.convertLinearCellsToQuadratic(0)
2419         m3D.checkConsistency()
2420         # check of new m3D content
2421         coordsExp2 = [coordsExp.changeNbOfComponents(3, i) for i in range(4)]
2422         coordsExp3 = [DataArrayDouble.Meld(cooTmp[:, [0, 1]], cooTmp[:, 2] + (0.5 + float(i))) for i in range(3)]
2423         coordsExp4=DataArrayDouble.Aggregate([coordsExp2[0],coordsExp3[0],coordsExp2[1],coordsExp3[1],coordsExp2[2],coordsExp3[2],coordsExp2[3]])
2424         c=DataArrayDouble.Aggregate(m3D.getCoords(),coordsExp4)
2425         self.assertEqual(len(coordsExp4),115)
2426         self.assertEqual(len(m3D.getCoords()),115)
2427         a,b=c.findCommonTuples(1e-14)
2428         self.assertEqual(len(b),len(coordsExp4)+1)
2429         e,f=DataArrayInt.ConvertIndexArrayToO2N(2*115,a,b)
2430         self.assertEqual(f,115)
2431         self.assertTrue(e.isEqual(DataArrayInt([0,1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,25,26,27,28,29,30,31,32,33,34,35,36,37,38,39,40,41,42,43,44,45,46,47,48,49,50,51,52,53,54,55,56,57,58,59,60,61,62,63,64,65,66,67,68,69,70,71,72,73,74,75,76,77,78,79,80,81,82,83,84,85,86,87,88,89,90,91,92,93,94,95,96,97,98,99,100,101,102,103,104,105,106,107,108,109,110,111,112,113,114,0,1,2,3,4,5,6,7,8,36,37,38,39,48,49,53,54,58,59,60,66,67,44,47,52,45,46,57,64,65,70,9,10,11,12,13,14,15,16,17,40,41,42,43,50,51,55,56,61,62,63,68,69,75,78,81,76,77,84,88,89,92,18,19,20,21,22,23,24,25,26,71,72,73,74,79,80,82,83,85,86,87,90,91,97,100,103,98,99,106,110,111,114,27,28,29,30,31,32,33,34,35,93,94,95,96,101,102,104,105,107,108,109,112,113])))
2432         self.assertTrue(DataArrayInt([30,0,3,4,1,9,12,13,10,36,37,38,39,40,41,42,43,44,45,46,47,25,1,4,2,10,13,11,38,48,49,42,50,51,47,46,52,25,4,5,2,13,14,11,53,54,48,55,56,50,46,57,52,30,6,7,4,3,15,16,13,12,58,59,37,60,61,62,41,63,64,65,46,45,30,7,8,5,4,16,17,14,13,66,67,53,59,68,69,55,62,65,70,57,46,30,9,12,13,10,18,21,22,19,40,41,42,43,71,72,73,74,75,76,77,78,25,10,13,11,19,22,20,42,50,51,73,79,80,78,77,81,25,13,14,11,22,23,20,55,56,50,82,83,79,77,84,81,30,15,16,13,12,24,25,22,21,61,62,41,63,85,86,72,87,88,89,77,76,30,16,17,14,13,25,26,23,22,68,69,55,62,90,91,82,86,89,92,84,77,30,18,21,22,19,27,30,31,28,71,72,73,74,93,94,95,96,97,98,99,100,25,19,22,20,28,31,29,73,79,80,95,101,102,100,99,103,25,22,23,20,31,32,29,82,83,79,104,105,101,99,106,103,30,24,25,22,21,33,34,31,30,85,86,72,87,107,108,94,109,110,111,99,98,30,25,26,23,22,34,35,32,31,90,91,82,86,112,113,104,108,111,114,106,99]).isEqual(m3D.getNodalConnectivity()))
2433         self.assertTrue(DataArrayInt([0,21,37,53,74,95,116,132,148,169,190,211,227,243,264,285]).isEqual(m3D.getNodalConnectivityIndex()))
2434         # testing explode3DMeshTo1D
2435         m3DSlice0=m3D[:5]
2436         m3DSlice0.zipCoords()
2437         a,b,c,d,e=m3DSlice0.explode3DMeshTo1D()
2438         self.assertTrue(b.isEqual(DataArrayInt([0,1,2,3,4,5,6,7,8,9,10,11,2,12,13,6,14,15,11,10,16,17,18,12,19,20,14,10,21,16,22,23,1,24,25,26,5,27,28,29,10,9,30,31,17,23,32,33,19,26,29,34,21,10])))
2439         self.assertTrue(c.isEqual(DataArrayInt([0,12,21,30,42,54])))
2440         self.assertTrue(d.isEqual(DataArrayInt([0,0,3,0,1,0,0,0,3,0,1,0,0,0,3,0,1,2,3,4,0,1,1,2,1,1,2,1,1,2,2,4,2,2,4,2,2,4,3,3,4,3,3,3,4,3,3,3,4,4,4,4,4,4])))
2441         self.assertTrue(e.isEqual(DataArrayInt([0,1,3,5,6,7,9,11,12,13,15,20,22,24,25,27,28,30,32,33,35,36,38,39,41,42,43,45,46,47,49,50,51,52,53,54])))
2442         self.assertTrue(a.getNodalConnectivity().isEqual(DataArrayInt([2,0,3,18,2,3,4,19,2,4,1,20,2,1,0,21,2,9,12,22,2,12,13,23,2,13,10,24,2,10,9,25,2,0,9,26,2,3,12,27,2,4,13,28,2,1,10,29,2,4,2,30,2,2,1,31,2,13,11,32,2,11,10,33,2,2,11,34,2,4,5,35,2,5,2,36,2,13,14,37,2,14,11,38,2,5,14,39,2,6,7,40,2,7,4,41,2,3,6,42,2,15,16,43,2,16,13,44,2,12,15,45,2,6,15,46,2,7,16,47,2,7,8,48,2,8,5,49,2,16,17,50,2,17,14,51,2,8,17,52])))
2443         self.assertTrue(a.getNodalConnectivityIndex().isEqual(DataArrayInt([0,4,8,12,16,20,24,28,32,36,40,44,48,52,56,60,64,68,72,76,80,84,88,92,96,100,104,108,112,116,120,124,128,132,136,140])))
2444         self.assertTrue(a.getCoords().isEqual(DataArrayDouble([-0.3,-0.3,0.0,0.2,-0.3,0.0,0.7,-0.3,0.0,-0.3,0.2,0.0,0.2,0.2,0.0,0.7,0.2,0.0,-0.3,0.7,0.0,0.2,0.7,0.0,0.7,0.7,0.0,-0.3,-0.3,1.0,0.2,-0.3,1.0,0.7,-0.3,1.0,-0.3,0.2,1.0,0.2,0.2,1.0,0.7,0.2,1.0,-0.3,0.7,1.0,0.2,0.7,1.0,0.7,0.7,1.0,-0.3,-0.05,0.0,-0.05,0.2,0.0,0.2,-0.05,0.0,-0.05,-0.3,0.0,-0.3,-0.05,1.0,-0.05,0.2,1.0,0.2,-0.05,1.0,-0.05,-0.3,1.0,-0.3,-0.3,0.5,-0.3,0.2,0.5,0.2,0.2,0.5,0.2,-0.3,0.5,0.45,-0.05,0.0,0.45,-0.3,0.0,0.45,-0.05,1.0,0.45,-0.3,1.0,0.7,-0.3,0.5,0.45,0.2,0.0,0.7,-0.05,0.0,0.45,0.2,1.0,0.7,-0.05,1.0,0.7,0.2,0.5,-0.05,0.7,0.0,0.2,0.45,0.0,-0.3,0.45,0.0,-0.05,0.7,1.0,0.2,0.45,1.0,-0.3,0.45,1.0,-0.3,0.7,0.5,0.2,0.7,0.5,0.45,0.7,0.0,0.7,0.45,0.0,0.45,0.7,1.0,0.7,0.45,1.0,0.7,0.7,0.5],53,3),1e-14))
2445         pass
2446
2447     def testSwig2DataArrayPushBackValsSilent1(self):
2448         d=DataArrayDouble()
2449         d.pushBackValsSilent([4,5,6])
2450         self.assertTrue(d.isEqual(DataArrayDouble([4.,5.,6.]),1e-14))
2451         e=DataArrayDouble([1,2,3],1,3)
2452         for t in e: d.pushBackValsSilent(t)
2453         self.assertTrue(d.isEqual(DataArrayDouble([4.,5.,6.,1.,2.,3.]),1e-14))
2454         d.pushBackValsSilent(DataArrayDouble([9,10.]))
2455         self.assertTrue(d.isEqual(DataArrayDouble([4.,5.,6.,1.,2.,3.,9.,10.]),1e-14))
2456         d.pushBackValsSilent(DataArrayDouble(0,1))
2457         self.assertTrue(d.isEqual(DataArrayDouble([4.,5.,6.,1.,2.,3.,9.,10.]),1e-14))
2458         e=DataArrayDouble([1,2,3],3,1)
2459         for t in e: d.pushBackValsSilent(t)
2460         self.assertTrue(d.isEqual(DataArrayDouble([4.,5.,6.,1.,2.,3.,9.,10.,1.,2.,3.]),1e-14))
2461         d.pushBackValsSilent(77)
2462         self.assertTrue(d.isEqual(DataArrayDouble([4.,5.,6.,1.,2.,3.,9.,10.,1.,2.,3.,77.]),1e-14))
2463         #
2464         d=DataArrayInt()
2465         d.pushBackValsSilent([4,5,6])
2466         self.assertTrue(d.isEqual(DataArrayInt([4,5,6])))
2467         e=DataArrayInt([1,2,3],1,3)
2468         for t in e: d.pushBackValsSilent(t)
2469         self.assertTrue(d.isEqual(DataArrayInt([4,5,6,1,2,3])))
2470         d.pushBackValsSilent(DataArrayInt([9,10]))
2471         self.assertTrue(d.isEqual(DataArrayInt([4,5,6,1,2,3,9,10])))
2472         d.pushBackValsSilent(DataArrayInt(0,1))
2473         self.assertTrue(d.isEqual(DataArrayInt([4,5,6,1,2,3,9,10])))
2474         e=DataArrayInt([1,2,3],3,1)
2475         for t in e: d.pushBackValsSilent(t)
2476         self.assertTrue(d.isEqual(DataArrayInt([4,5,6,1,2,3,9,10,1,2,3])))
2477         d.pushBackValsSilent(77)
2478         self.assertTrue(d.isEqual(DataArrayInt([4,5,6,1,2,3,9,10,1,2,3,77])))
2479         pass
2480
2481     def testSwig2ConvertLinearCellsToQuadratic2(self):
2482         m2D=MEDCouplingDataForTest.build2DTargetMesh_1()
2483         ret=m2D.convertLinearCellsToQuadratic(1)
2484         self.assertTrue(ret.isIota(5))
2485         m2D.checkConsistency()
2486         coordsExp=DataArrayDouble([-0.3,-0.3,0.2,-0.3,0.7,-0.3,-0.3,0.2,0.2,0.2,0.7,0.2,-0.3,0.7,0.2,0.7,0.7,0.7,-0.3,-0.05,-0.05,0.2,0.2,-0.05,-0.05,-0.3,0.45,-0.05,0.45,-0.3,0.45,0.2,0.7,-0.05,-0.05,0.7,0.2,0.45,-0.3,0.45,0.45,0.7,0.7,0.45,-0.05,-0.05,0.3666666666666667,-0.1333333333333333,0.5333333333333332,0.03333333333333334,-0.05,0.45,0.45,0.45],27,2)
2487         self.assertTrue(m2D.getCoords().isEqual(coordsExp,1e-14))
2488         self.assertTrue(m2D.getNodalConnectivity().isEqual(DataArrayInt([9,0,3,4,1,9,10,11,12,22,7,1,4,2,11,13,14,23,7,4,5,2,15,16,13,24,9,6,7,4,3,17,18,10,19,25,9,7,8,5,4,20,21,15,18,26])))
2489         self.assertTrue(m2D.getNodalConnectivityIndex().isEqual(DataArrayInt([0,10,18,26,36,46])))
2490         #
2491         m2D=MEDCouplingDataForTest.build2DTargetMesh_1()[(0,3)] ; m2D.zipCoords()
2492         m2D.changeSpaceDimension(3)
2493         arr=DataArrayDouble(3);  arr.iota(0) ; z=MEDCouplingCMesh() ; z.setCoords(arr)
2494         m1D=z.buildUnstructured() ; m1D.setCoords(arr.changeNbOfComponents(3,0.))
2495         m1D.getCoords()[:]=m1D.getCoords()[:,[1,2,0]]
2496         cooTmp=m2D.getCoords()[:]
2497         m3D=m2D.buildExtrudedMesh(m1D,0)
2498         ret=m3D.convertLinearCellsToQuadratic(1)
2499         self.assertTrue(ret.isIota(4))
2500         m3D.checkConsistency()
2501         coordsExp2=DataArrayDouble([-0.3,-0.3,0.0,0.2,-0.3,0.0,-0.3,0.2,0.0,0.2,0.2,0.0,-0.3,0.7,0.0,0.2,0.7,0.0,-0.3,-0.3,1.0,0.2,-0.3,1.0,-0.3,0.2,1.0,0.2,0.2,1.0,-0.3,0.7,1.0,0.2,0.7,1.0,-0.3,-0.3,2.0,0.2,-0.3,2.0,-0.3,0.2,2.0,0.2,0.2,2.0,-0.3,0.7,2.0,0.2,0.7,2.0,-0.3,-0.05,0.0,-0.05,0.2,0.0,0.2,-0.05,0.0,-0.05,-0.3,0.0,-0.3,-0.05,1.0,-0.05,0.2,1.0,0.2,-0.05,1.0,-0.05,-0.3,1.0,-0.3,-0.3,0.5,-0.3,0.2,0.5,0.2,0.2,0.5,0.2,-0.3,0.5,-0.05,0.7,0.0,0.2,0.45,0.0,-0.3,0.45,0.0,-0.05,0.7,1.0,0.2,0.45,1.0,-0.3,0.45,1.0,-0.3,0.7,0.5,0.2,0.7,0.5,-0.3,-0.05,2.0,-0.05,0.2,2.0,0.2,-0.05,2.0,-0.05,-0.3,2.0,-0.3,-0.3,1.5,-0.3,0.2,1.5,0.2,0.2,1.5,0.2,-0.3,1.5,-0.05,0.7,2.0,0.2,0.45,2.0,-0.3,0.45,2.0,-0.3,0.7,1.5,0.2,0.7,1.5,-0.05,-0.05,0.0,-0.3,-0.05,0.5,-0.05,0.2,0.5,0.2,-0.05,0.5,-0.05,-0.3,0.5,-0.05,-0.05,1.0,-0.05,0.45,0.0,-0.05,0.7,0.5,0.2,0.45,0.5,-0.3,0.45,0.5,-0.05,0.45,1.0,-0.3,-0.05,1.5,-0.05,0.2,1.5,0.2,-0.05,1.5,-0.05,-0.3,1.5,-0.05,-0.05,2.0,-0.05,0.7,1.5,0.2,0.45,1.5,-0.3,0.45,1.5,-0.05,0.45,2.0,-0.05,-0.05,0.5,-0.05,0.45,0.5,-0.05,-0.05,1.5,-0.05,0.45,1.5],75,3)
2502         self.assertTrue(m3D.getCoords().isEqual(coordsExp2,1e-14))
2503         self.assertTrue(m3D.getNodalConnectivity().isEqual(DataArrayInt([27,0,2,3,1,6,8,9,7,18,19,20,21,22,23,24,25,26,27,28,29,51,52,53,54,55,56,71,27,4,5,3,2,10,11,9,8,30,31,19,32,33,34,23,35,36,37,28,27,57,58,59,53,60,61,72,27,6,8,9,7,12,14,15,13,22,23,24,25,38,39,40,41,42,43,44,45,56,62,63,64,65,66,73,27,10,11,9,8,16,17,15,14,33,34,23,35,46,47,39,48,49,50,44,43,61,67,68,63,69,70,74])))
2504         self.assertTrue(m3D.getNodalConnectivityIndex().isEqual(DataArrayInt([0,28,56,84,112])))
2505         pass
2506
2507     def testSwig2GaussNEIntegral1(self):
2508         m2D=MEDCouplingDataForTest.build2DTargetMesh_1()
2509         m0=m2D[0] ; m0.zipCoords()
2510         m1=m2D[[1,2]] ; m1.zipCoords()
2511         m2=m2D[[3,4]] ; m2.zipCoords()
2512         m0.convertLinearCellsToQuadratic(1)
2513         m1.convertLinearCellsToQuadratic(0)
2514         m2.convertLinearCellsToQuadratic(1)
2515         m=MEDCouplingUMesh.MergeUMeshes([m0,m1,m2])
2516         m.mergeNodes(1e-12)
2517         f=MEDCouplingFieldDouble(ON_GAUSS_NE)
2518         f.setMesh(m)
2519         arr=DataArrayDouble([1.1,2.2,3.3,4.4,5.5,6.6,7.7,8.8,9.9,
2520                              11.1,12.2,13.3,14.4,15.5,16.6,
2521                              21.1,22.2,23.3,24.4,25.5,26.6,
2522                              31.1,32.2,33.3,34.4,35.5,36.6,37.7,38.8,39.9,
2523                              41.1,42.2,43.3,44.4,45.5,46.6,47.7,48.8,49.9])
2524         arr2=DataArrayDouble(len(arr),2)
2525         arr2[:,0]=arr ; arr2[:,1]=arr+100
2526         f.setArray(arr2)
2527         f.checkConsistencyLight()
2528         res=f.integral(False)
2529         # a=25./81 ; b=40./81 ; c=64./81
2530         # p1=0.11169079483905 ; p2=0.0549758718227661
2531         # 1st compo
2532         # c0=(a*(1.1+2.2+3.3+4.4)+b*(5.5+6.6+7.7+8.8)+c*9.9)*0.25/3.9999999999999978 ; c0=1.5837962962962973
2533         # c1=(p2*(11.1+12.2+13.3)+p1*(14.4+15.5+16.6))*0.125/0.4999999999854482 ; c1=1.8014347172346943
2534         # c2=(p2*(21.1+22.2+23.3)+p1*(24.4+25.5+26.6))*0.125/0.4999999999854482 ; c2=3.0514347172346943
2535         # c3=(a*(31.1+32.2+33.3+34.4)+b*(35.5+36.6+37.7+38.8)+c*39.9)*0.25/3.9999999999999978 ; c3=9.0837962962963
2536         # c4=(a*(41.1+42.2+43.3+44.4)+b*(45.5+46.6+47.7+48.8)+c*49.9)*0.25/3.9999999999999978 ; c4=11.583796296296303
2537         # c0+c1+c2+c3+c4=27.104258323358287
2538         integExp0=27.104258323358287
2539         self.assertAlmostEqual(res[0],integExp0,13)
2540         # 2nd compo
2541         # c0=(a*(101.1+102.2+103.3+104.4)+b*(105.5+106.6+107.7+108.8)+c*109.9)*0.25/3.9999999999999978 ; c0=26.58379629629631
2542         # c1=(p2*(111.1+112.2+113.3)+p1*(114.4+115.5+116.6))*0.125/0.4999999999854482 ; c1=14.301434717234699
2543         # c2=(p2*(121.1+122.2+123.3)+p1*(124.4+125.5+126.6))*0.125/0.4999999999854482 ; c2=15.5514347172347
2544         # c3=(a*(131.1+132.2+133.3+134.4)+b*(135.5+136.6+137.7+138.8)+c*139.9)*0.25/3.9999999999999978 ; c3=34.08379629629631
2545         # c4=(a*(141.1+142.2+143.3+144.4)+b*(145.5+146.6+147.7+148.8)+c*149.9)*0.25/3.9999999999999978 ; c4=36.58379629629632
2546         # c0+c1+c2+c3+c4=127.10425832335835
2547         integExp1=127.10425832335835
2548         self.assertAlmostEqual(res[1],integExp1,12)
2549         meas=f.getDiscretization().getMeasureField(f.getMesh(),False)
2550         intPerTuple=meas*f
2551         res2=intPerTuple.accumulate()
2552         self.assertAlmostEqual(res2[0],integExp0,13)
2553         self.assertAlmostEqual(res2[1],integExp1,12)
2554         #
2555         meas2=f.buildMeasureField(False)
2556         intPerTuple=meas2*f
2557         res3=intPerTuple.accumulate()
2558         self.assertAlmostEqual(res3[0],integExp0,13)
2559         self.assertAlmostEqual(res3[1],integExp1,12)
2560         #
2561         res4=f.getWeightedAverageValue(False) # res4==res2 because sum of area of mesh is equal to 1
2562         self.assertAlmostEqual(res4[0],integExp0,13)
2563         self.assertAlmostEqual(res4[1],integExp1,12)
2564         #
2565         m.scale([0,0],2.)
2566         #
2567         res5=f.getWeightedAverageValue() # res4==res4 because weighted average is not sensitive to the scaling
2568         self.assertAlmostEqual(res5[0],integExp0,13)
2569         self.assertAlmostEqual(res5[1],integExp1,12)
2570         meas3=f.buildMeasureField(False)
2571         delta=4*meas2.getArray()-meas3.getArray()
2572         delta.abs()
2573         self.assertTrue(delta.isUniform(0.,1e-16))
2574         res6=f.integral(False)
2575         self.assertAlmostEqual(res6[0],4.*integExp0,12)
2576         self.assertAlmostEqual(res6[1],4.*integExp1,11)
2577         pass
2578
2579     def testSwig2SlowDADFindClosestTupleId(self):
2580         nbPts=[10,]
2581         for nbPt in nbPts:
2582             d=DataArrayDouble(nbPt) ; d.iota() ; d*=1./(nbPt-1)
2583             c=MEDCouplingCMesh() ; c.setCoords(d,d) ; m=c.buildUnstructured() ; pts=m.getCoords() ; del m
2584             #
2585             d0=DataArrayDouble((nbPt-1)*(nbPt-1)) ; d0.iota() ; d0*=(3./((nbPt-1)*(nbPt-1))) ; d0=d0.applyFunc("exp(x)-1")
2586             d1=DataArrayDouble((nbPt-1)*(nbPt-1)) ; d1.iota()
2587             d2=DataArrayDouble.Meld(d0,d1) ; d2=d2.fromPolarToCart() ; d2+=[0.32,0.73]
2588             ids=pts.findClosestTupleId(d2)
2589             #print "Start of costly computation"
2590             idsExpected=DataArrayInt(len(d2))
2591             tmp=1e300
2592             for i,elt in enumerate(d2):
2593                 l,m=(pts-elt).magnitude().getMinValue()
2594                 idsExpected.setIJSilent(i,0,m)
2595                 if l<tmp:
2596                     tmp=l ; tmp1=m ; tmp2=i
2597                     pass
2598                 pass
2599             #print "End of costly computation"
2600             self.assertTrue(idsExpected.isEqual(ids))
2601             a,b,c=pts.minimalDistanceTo(d2)
2602             self.assertEqual(tmp,a)
2603             self.assertEqual(tmp1,b)
2604             self.assertEqual(tmp2,c)
2605             #
2606             l=[d2[:,i] for i in [0,1]]
2607             for elt in l: elt.reverse()
2608             d2i=DataArrayDouble.Meld(l)
2609             ids1=pts.findClosestTupleId(d2i)
2610             idsExpectedI=idsExpected.deepCopy() ; idsExpectedI.reverse()
2611             self.assertTrue(idsExpectedI.isEqual(ids1))
2612             #
2613             l=[pts[:,i] for i in [0,1]]
2614             for elt in l: elt.reverse()
2615             ptsi=DataArrayDouble.Meld(l)
2616             ids2=ptsi.findClosestTupleId(d2)
2617             idsExpected2=nbPt*nbPt-1-ids
2618             self.assertTrue(idsExpected2.isEqual(ids2))
2619             #
2620             ids3=ptsi.findClosestTupleId(d2i)
2621             idsExpected3=idsExpected2.deepCopy() ; idsExpected3.reverse()
2622             self.assertTrue(idsExpected3.isEqual(ids3))
2623             
2624             #
2625             ones = [1.0]*nbPt
2626             twos = [2.0]*nbPt
2627             d3=DataArrayDouble.Meld( DataArrayDouble(ones), DataArrayDouble(twos) )
2628             d4=DataArrayDouble.Meld( DataArrayDouble(ones), DataArrayDouble(ones) )
2629             idsExpected4 = DataArrayInt([0]*nbPt)
2630             ids4 = d3.findClosestTupleId(d4)
2631             self.assertTrue(idsExpected.isEqual(ids))
2632             pass
2633     
2634
2635     def testSwig2DataArrayAsciiChar1(self):
2636         alpha=DataArrayInt(26) ; alpha.iota(ord("A"))
2637         d=DataArrayAsciiChar(alpha.getValues(),2,13)
2638         d.setInfoOnComponents(["c%i" % (v) for v in range(13)])
2639         self.assertEqual('ABCDEFGHIJKLM',d.getTuple(0))
2640         self.assertEqual('NOPQRSTUVWXYZ',d.getTuple(1))
2641         self.assertEqual(2,d.getNumberOfTuples())
2642         self.assertEqual(26,d.getNbOfElems())
2643         self.assertEqual(13,d.getNumberOfComponents())
2644         dd=d.deepCopy()
2645         self.assertTrue(d.isEqual(dd))
2646         dd.setIJ(0,3,'d')
2647         self.assertTrue(not d.isEqual(dd))
2648         d.setIJ(0,3,ord('d'))
2649         self.assertTrue(d.isEqual(dd))
2650         d.rearrange(1)
2651         d.reserve(20)
2652         self.assertEqual(20,d.getNumberOfTuples())
2653         self.assertEqual(20,d.getNbOfElems())
2654         self.assertEqual(1,d.getNumberOfComponents())
2655         #
2656         d0=DataArrayAsciiChar([ord('a')],1,1)
2657         self.assertEqual('a',d0.asciiCharValue())
2658         self.assertTrue(not d0.empty())
2659         d0=DataArrayAsciiChar(0,3)
2660         self.assertTrue(d0.empty())
2661         d.pushBackSilent("U") ; d.pushBackSilent("V") ; d.pushBackSilent("W")
2662         self.assertEqual("W",d.popBackSilent())
2663         d.rearrange(2)
2664         self.assertEqual(['AB','Cd','EF','GH','IJ','KL','MN','OP','QR','ST','UV'],d.toStrList())
2665         d.fillWithZero()
2666         self.assertEqual(11*[''],d.toStrList())
2667         d.fillWithValue('T')
2668         self.assertEqual(11*["TT"],d.toStrList())
2669         d.rearrange(1)
2670         self.assertTrue(d.isUniform("T"))
2671         d.rearrange(2)
2672         #
2673         dd.rearrange(2)
2674         dd2=dd.deepCopy()
2675         dd.renumberInPlace([3,1,2,4,0,11,10,9,8,7,5,12,6])
2676         self.assertEqual(dd.toStrList(),['IJ','Cd','EF','AB','GH','UV','YZ','ST','QR','OP','MN','KL','WX'])
2677         dd.renumberInPlaceR([3,1,2,4,0,11,10,9,8,7,5,12,6])
2678         self.assertEqual(['AB','Cd','EF','GH','IJ','KL','MN','OP','QR','ST','UV','WX','YZ'],dd.toStrList())
2679         e=dd.renumber([3,1,2,4,0,11,10,9,8,7,5,12,6])
2680         self.assertEqual(e.toStrList(),['IJ','Cd','EF','AB','GH','UV','YZ','ST','QR','OP','MN','KL','WX'])
2681         e=dd.renumberR([3,1,2,4,0,11,10,9,8,7,5,12,6])
2682         self.assertEqual(e.toStrList(),['GH','Cd','EF','IJ','AB','WX','UV','ST','QR','OP','KL','YZ','MN'])
2683         e=dd.renumberAndReduce([1,1,1,1,1,1,1,2,0,0,0,0,0],3)
2684         self.assertEqual(['YZ','MN','OP'],e.toStrList())
2685         self.assertEqual(['GH','IJ'],dd.selectByTupleIdSafe([3,4]).toStrList())
2686         self.assertEqual(['AB','GH','MN','ST','YZ'],dd.selectByTupleIdSafeSlice(0,13,3).toStrList())
2687         dd3=dd.changeNbOfComponents(3,"G")
2688         self.assertEqual(['ABG','CdG','EFG','GHG','IJG','KLG','MNG','OPG','QRG','STG','UVG','WXG','YZG'],dd3.toStrList())
2689         dd3.rearrange(1) ; self.assertEqual("G",dd3.back()) ; dd3.rearrange(3)
2690         self.assertTrue(dd3.changeNbOfComponents(2,"\0").isEqual(dd))
2691         self.assertEqual(len(dd),13)
2692         d=DataArrayAsciiChar(13,2) ; d.fillWithValue('Y')
2693         dd3.meldWith(d)
2694         self.assertEqual(['ABGYY','CdGYY','EFGYY','GHGYY','IJGYY','KLGYY','MNGYY','OPGYY','QRGYY','STGYY','UVGYY','WXGYY','YZGYY'],dd3.toStrList())
2695         self.assertEqual("d",dd3.getIJ(0,6))
2696         self.assertRaises(InterpKernelException,dd3.getIJSafe,0,6)
2697         self.assertEqual("d",dd3.getIJSafe(1,1))
2698         dd3.rearrange(1)
2699         e=dd3.findIdsEqual("Y")
2700         self.assertTrue(e.isEqual(DataArrayInt([3,4,8,9,13,14,18,19,23,24,28,29,33,34,38,39,43,44,48,49,53,54,58,59,60,63,64])))
2701         e=dd3.findIdsNotEqual("Y")
2702         self.assertTrue(e.isEqual(DataArrayInt([0,1,2,5,6,7,10,11,12,15,16,17,20,21,22,25,26,27,30,31,32,35,36,37,40,41,42,45,46,47,50,51,52,55,56,57,61,62])))
2703         self.assertEqual(("d",6),dd3.getMaxValue())
2704         self.assertEqual(("A",0),dd3.getMinValue())
2705         self.assertEqual(26,dd3.findIdSequence("LGYYM"))
2706         self.assertEqual(-1,dd3.findIdSequence("LGYYN"))
2707         dd3.rearrange(5)
2708         self.assertEqual(7,dd3.findIdFirstEqualTuple("OPGYY"))
2709         self.assertTrue("OPGYY" in dd3)
2710         self.assertEqual(7,dd3.index("OPGYY"))
2711         self.assertEqual(-1,dd3.findIdFirstEqualTuple("OPGYP"))
2712         dd3.rearrange(1)
2713         self.assertEqual(2,dd3.findIdFirstEqual("OPGYY"))
2714         self.assertTrue(dd3.presenceOfValue("OPGYY"))
2715         self.assertTrue("O" in dd3)
2716         self.assertTrue(not dd3.presenceOfValue("z"))
2717         self.assertTrue("z" not in dd3)
2718         dd3.rearrange(5)
2719         l=list(dd3)
2720         self.assertEqual([e.buildDAAsciiChar().toStrList()[0] for e in list(dd3)],dd3.toStrList())
2721         dd3.reAlloc(5)
2722         dd4=DataArrayChar.Aggregate(dd3,dd3)
2723         self.assertEqual(['ABGYY','CdGYY','EFGYY','GHGYY','IJGYY','ABGYY','CdGYY','EFGYY','GHGYY','IJGYY'],dd4.toStrList())
2724         dd5=DataArrayChar.Aggregate([dd4,dd3,dd4])
2725         self.assertEqual(['ABGYY','CdGYY','EFGYY','GHGYY','IJGYY','ABGYY','CdGYY','EFGYY','GHGYY','IJGYY','ABGYY','CdGYY','EFGYY','GHGYY','IJGYY','ABGYY','CdGYY','EFGYY','GHGYY','IJGYY','ABGYY','CdGYY','EFGYY','GHGYY','IJGYY'],dd5.toStrList())
2726         # getitem,__iter__,__setitem__
2727         a=list(dd3)
2728         self.assertEqual("ABGYY",str(a[0]))
2729         dd4=dd3[::2]
2730         self.assertEqual(['ABGYY','EFGYY','IJGYY'],dd4.toStrList())
2731         dd4=dd3[(3,2,1)]
2732         self.assertEqual(['GHGYY','EFGYY','CdGYY'],dd4.toStrList())
2733         dd4=dd3[:]
2734         dd4[::2]=["12","345","67890"]
2735         self.assertEqual(['12   ','CdGYY','345  ','GHGYY','67890'],dd4.toStrList())
2736         dd4=dd3[:]
2737         dd4[[1,2]]=" "
2738         self.assertEqual(['ABGYY','     ','     ','GHGYY','IJGYY'],dd4.toStrList())
2739         dd4=dd3[:]
2740         dd4[4]='12345'
2741         self.assertEqual(['ABGYY','CdGYY','EFGYY','GHGYY','12345'],dd4.toStrList())
2742         dd4[0]=dd4[1]
2743         self.assertEqual(['CdGYY','CdGYY','EFGYY','GHGYY','12345'],dd4.toStrList())
2744         dd4=DataArrayAsciiChar(["abc","de","fghi"])
2745         self.assertEqual(['abc ','de  ','fghi'],dd4.toStrList())
2746         dd4=DataArrayAsciiChar(["abc","de","fghi"],"t")
2747         self.assertEqual(['abct','dett','fghi'],dd4.toStrList())
2748         pass
2749
2750     def testSwig2GaussNELocalizationOfDiscValues(self):
2751         m=MEDCouplingDataForTest.build2DTargetMesh_3()[[0,1,3,4,5,6,8,9]] # suppression of polygons
2752         f=MEDCouplingFieldDouble(ON_GAUSS_NE)
2753         f.setMesh(m)
2754         loc=f.getLocalizationOfDiscr()
2755         self.assertEqual(42,len(loc))
2756         self.assertTrue(loc.isEqual(DataArrayDouble([0.,0.,1.,0.,0.5,1.,0.,0.,1.,0.,1.,1.,0.,1.,0.,0.,1.,0.,0.5,1.,0.5,0.,0.75,0.5,0.25,0.5,0.,0.,1.,0.,1.,1.,0.,1.,0.5,0.,1.,0.5,0.5,1.,0.,0.5,0.,0.,0.5,1.,1.,0.,0.,0.,0.,1.,1.,1.,1.,0.,0.,0.,0.5,1.,1.,0.,0.25,0.5,0.75,0.5,0.5,0.,0.,0.,0.,1.,1.,1.,1.,0.,0.,0.5,0.5,1.,1.,0.5,0.5,0.],42,2),1e-13))
2757         m.changeSpaceDimension(3)
2758         m.getCoords()[:,2]=7.
2759         loc=f.getLocalizationOfDiscr()
2760         self.assertEqual(42,len(loc))
2761         self.assertTrue(loc.isEqual(DataArrayDouble([0.,0.,7.,1.,0.,7.,0.5,1.,7.,0.,0.,7.,1.,0.,7.,1.,1.,7.,0.,1.,7.,0.,0.,7.,1.,0.,7.,0.5,1.,7.,0.5,0.,7.,0.75,0.5,7.,0.25,0.5,7.,0.,0.,7.,1.,0.,7.,1.,1.,7.,0.,1.,7.,0.5,0.,7.,1.,0.5,7.,0.5,1.,7.,0.,0.5,7.,0.,0.,7.,0.5,1.,7.,1.,0.,7.,0.,0.,7.,0.,1.,7.,1.,1.,7.,1.,0.,7.,0.,0.,7.,0.5,1.,7.,1.,0.,7.,0.25,0.5,7.,0.75,0.5,7.,0.5,0.,7.,0.,0.,7.,0.,1.,7.,1.,1.,7.,1.,0.,7.,0.,0.5,7.,0.5,1.,7.,1.,0.5,7.,0.5,0.,7.],42,3),1e-13))
2762         pass
2763
2764     def testSwig2GaussMeasureAndIntegral(self):
2765         ft=MEDCouplingDataForTest.buildFieldOnGauss_1()
2766         mea=ft.buildMeasureField(False)
2767         mea.checkConsistencyLight()
2768         self.assertTrue(mea.getArray().isEqual(DataArrayDouble([0.08504076274779823, 0.06378057206084897, 0.08504076274779869, 0.10630095343474463, 0.12756114412169625, 0.10630095343474734, 0.0637805720608491, 0.0850407627477968, 0.1063009534347449, 0.0850407627477994, 0.10630095343474809, 0.1275611441216954, 0.034136689498128064, 0.04027397790619449, 0.04027397790619487, 0.034136689498128446, 0.04476678484160338, 0.05090407324967005, 0.050904073249668745, 0.04476678484160208, 0.05539688018507733, 0.061534168593143805, 0.06153416859314442, 0.055396880185077955, 0.03413668949812847, 0.04027397790619517, 0.04027397790619497, 0.03413668949812827, 0.04476678484160235, 0.05090407324966857, 0.05090407324966929, 0.044766784841603076, 0.05539688018507761, 0.06153416859314382, 0.06153416859314359, 0.05539688018507738, 0.04109914601299856, 0.03748636227195687, 0.03771775769378482, 0.03872147624188224, 0.042334259982919814, 0.04261193448911228, 0.03507783977793162, 0.031465056036892154, 0.0353092351997554, 0.03041505840443063, 0.030229942066968697, 0.03384272580800827, 0.02658630560301859, 0.022973521861980706, 0.02311235911507622, 0.02420863583190326, 0.027821419572943488, 0.02800653591040381, 0.04233425998291915, 0.038721476241882075, 0.04261193448911155, 0.0377177576937831, 0.03748636227195874, 0.041099146012996766, 0.03384272580800756, 0.030229942066968624, 0.030415058404430012, 0.03146505603689226, 0.035077839777932385, 0.035309235199757406, 0.0278214195729437, 0.024208635831903073, 0.02800653591040439, 0.023112359115075753, 0.02297352186197992, 0.026586305603019535, 0.019921063519116766, 0.01730003285741078, 0.017300032857410663, 0.019921063519115587, 0.029776877101222114, 0.027364571036248495, 0.0297768771012211, 0.03151042326217079, 0.04709999543873555, 0.016537327484887662, 0.013916296823180364, 0.0139162968231802, 0.01653732748488678, 0.024362899446454346, 0.022012298827300398, 0.02436289944645354, 0.026158151053224943, 0.038536359904420205, 0.013153591450657661, 0.01053256078895069, 0.010532560788950497, 0.013153591450657937, 0.018948921791686592, 0.016660026618353183, 0.01894892179168666, 0.020805878844278196, 0.029972724370104942, 0.01992106351911645, 0.017300032857410823, 0.017300032857409463, 0.01992106351911769, 0.029776877101221757, 0.027364571036247978, 0.029776877101221573, 0.03151042326217261, 0.047099995438736386, 0.016537327484886743, 0.013916296823180036, 0.013916296823180596, 0.0165373274848873, 0.024362899446453434, 0.022012298827300106, 0.024362899446454343, 0.026158151053224426, 0.038536359904419636, 0.013153591450657875, 0.010532560788950653, 0.010532560788951054, 0.013153591450656942, 0.018948921791686835, 0.016660026618353606, 0.01894892179168645, 0.020805878844277627, 0.029972724370105074]),1e-8))
2769         f=MEDCouplingFieldDouble(ft)
2770         arr=DataArrayDouble(126,2)
2771         arr[:, 0] = list(range(126))
2772         arr[:, 1] = list(range(126))
2773         arr[:,1]+=1000
2774         f.setArray(arr)
2775         f.checkConsistencyLight()
2776         self.assertTrue(DataArrayDouble(f.integral(False)).isEqual(DataArrayDouble([211.67679879443182, 4863.855680512835]),1e-11))
2777         self.assertTrue(DataArrayDouble(f.getWeightedAverageValue()).isEqual(DataArrayDouble([45.50057170549804, 1045.5005717054983]),1e-11))
2778         self.assertTrue(DataArrayDouble(f.normL1()).isEqual(DataArrayDouble([45.50057170549804, 1045.5005717054983]),1e-11))
2779         self.assertTrue(DataArrayDouble(f.normL2()).isEqual(DataArrayDouble([58.175073473810194, 1046.1288078361474]),1e-11))
2780         pass
2781
2782     def testSwig2FieldDiscretizationComputeMeshRestrictionFromTupleIds1(self):
2783         m=MEDCouplingDataForTest.build3DSurfTargetMesh_1()
2784         f=MEDCouplingFieldDouble(ON_GAUSS_NE)
2785         f.setMesh(m)
2786         a,b=f.getDiscretization().computeMeshRestrictionFromTupleIds(f.getMesh(),[3,4,5,6,8,9,10,14,15,16,17])
2787         self.assertTrue(a.isEqual(DataArrayInt([1,4])))
2788         self.assertTrue(b.isEqual(DataArrayInt([4,5,6,14,15,16,17])))
2789         a,b=f.getDiscretization().computeMeshRestrictionFromTupleIds(f.getMesh(),DataArrayInt([0,1,2,3,5,7,8,9,10,11,12,18]))
2790         self.assertTrue(a.isEqual(DataArrayInt([0,2])))
2791         self.assertTrue(b.isEqual(DataArrayInt([0,1,2,3,7,8,9])))
2792         #
2793         f=MEDCouplingFieldDouble(ON_CELLS)
2794         f.setMesh(m)
2795         a,b=f.getDiscretization().computeMeshRestrictionFromTupleIds(f.getMesh(),[3,4])
2796         self.assertTrue(a.isEqual(DataArrayInt([3,4])))
2797         self.assertTrue(b.isEqual(DataArrayInt([3,4])))
2798         #
2799         f=MEDCouplingFieldDouble(ON_NODES)
2800         f.setMesh(m)
2801         a,b=f.getDiscretization().computeMeshRestrictionFromTupleIds(f.getMesh(),[1,2,3,4])
2802         self.assertTrue(a.isEqual(DataArrayInt([1])))
2803         self.assertTrue(b.isEqual(DataArrayInt([1,2,4])))
2804         #
2805         f=MEDCouplingDataForTest.buildFieldOnGauss_1()
2806         a,b=f.getDiscretization().computeMeshRestrictionFromTupleIds(f.getMesh(),[0,11,12,13,14,15,17,18,19,36,37,38,115,117,118,119,120,121,122,123,124,125])
2807         self.assertTrue(a.isEqual(DataArrayInt([0,11,12,18,35])))
2808         self.assertTrue(b.isEqual(DataArrayInt([0,11,12,13,14,15,36,37,38,117,118,119,120,121,122,123,124,125])))
2809         #
2810         d=DataArrayInt([0,3,7,9,15,18])
2811         e=DataArrayInt([0,1,2,3,7,8,15,16,17])
2812         a,b=d.findIdsRangesInListOfIds(e)
2813         self.assertTrue(a.isEqual(DataArrayInt([0,2,4])))
2814         self.assertTrue(b.isEqual(DataArrayInt([0,1,2,7,8,15,16,17])))
2815         pass
2816
2817     @unittest.skipUnless(checkFreeMemory((223456789*16)/(1024)), "Not enough memory")
2818     def testSwig2BigMem(self):
2819         if MEDCouplingSizeOfVoidStar()==64 and MEDCouplingSizeOfIDs()==32:
2820             d=DataArrayAsciiChar(223456789,16)
2821             self.assertTrue(d.getNumberOfTuples(),223456789)
2822             self.assertTrue(d.getNumberOfComponents(),16)
2823             d.setIJ(223456788,5,"r")
2824             self.assertTrue(d.getIJ(223456788,5),'r')
2825             d[223456787]="1234567890123456"
2826             self.assertTrue(d[223456787],'1234567890123456')
2827             self.assertRaises(InterpKernelException,d.rearrange,1)# fails because it would lead to nb of tuples > 2147483647
2828             pass
2829         pass
2830
2831     def testSwig2DAReverseMultiCompo1(self):
2832         d=DataArrayDouble(6,2)
2833         d[:, 0] = list(range(6))
2834         d[:, 1] = list(range(10, 16))
2835         d.reverse()
2836         self.assertTrue(d.isEqual(DataArrayDouble([5.,15.,4.,14.,3.,13.,2.,12.,1.,11.,0.,10.],6,2),1e-14))
2837         d=DataArrayDouble(7,2)
2838         d[:, 0] = list(range(7))
2839         d[:, 1] = list(range(10, 17))
2840         d.reverse()
2841         self.assertTrue(d.isEqual(DataArrayDouble([6.,16.,5.,15.,4.,14.,3.,13.,2.,12.,1.,11.,0.,10.],7,2),1e-14))
2842         #
2843         d=DataArrayInt(6,2)
2844         d[:, 0] = list(range(6))
2845         d[:, 1] = list(range(10, 16))
2846         d.reverse()
2847         self.assertTrue(d.isEqual(DataArrayInt([5,15,4,14,3,13,2,12,1,11,0,10],6,2)))
2848         d=DataArrayInt(7,2)
2849         d[:, 0] = list(range(7))
2850         d[:, 1] = list(range(10, 17))
2851         d.reverse()
2852         self.assertTrue(d.isEqual(DataArrayInt([6,16,5,15,4,14,3,13,2,12,1,11,0,10],7,2)))
2853         pass
2854
2855     def testSwigDAPow1(self):
2856         d=DataArrayInt(10)
2857         d.iota(0)
2858         d1=d.deepCopy()
2859         d.setIJ(2,0,-2)
2860         self.assertTrue((d**2).isEqual(DataArrayInt([0,1,4,9,16,25,36,49,64,81])))
2861         self.assertTrue((d**3).isEqual(DataArrayInt([0,1,-8,27,64,125,216,343,512,729])))
2862         for elt in [d]:
2863             elt**=2
2864             pass
2865         self.assertTrue(d.isEqual(DataArrayInt([0,1,4,9,16,25,36,49,64,81])))
2866         self.assertTrue((d1[:4]**d1[:4]).isEqual(DataArrayInt([1,1,4,27])))
2867         self.assertTrue((3**d1[:4]).isEqual(DataArrayInt([1,3,9,27])))
2868         d2=d1[:4]
2869         d2**=d2
2870         self.assertTrue(d2.isEqual(DataArrayInt([1,1,4,27])))
2871         self.assertRaises(InterpKernelException,d2.__pow__,-1)#non supporting negative pow in DataArrayInt.__pow__
2872         self.assertRaises(InterpKernelException,d2.__ipow__,-1)#non supporting negative pow in DataArrayInt.__pow__
2873         #
2874         d=DataArrayDouble(10)
2875         d.iota(0)
2876         d1=d.deepCopy()
2877         d.setIJ(2,0,-2.)
2878         self.assertTrue((d**2).isEqual(DataArrayDouble([0,1,4,9,16,25,36,49,64,81]),1e-12))
2879         self.assertTrue((d**3).isEqual(DataArrayDouble([0,1,-8,27,64,125,216,343,512,729]),1e-12))
2880         self.assertRaises(InterpKernelException,d.__pow__,3.1)#3.1 is double not integer -> not supporting negative values in d
2881         for elt in [d]:
2882             elt**=2
2883             pass
2884         self.assertTrue(d.isEqual(DataArrayDouble([0,1,4,9,16,25,36,49,64,81]),1e-12))
2885         self.assertTrue((d1[:4]**d1[:4]).isEqual(DataArrayDouble([1,1,4,27]),1e-12))
2886         self.assertTrue((3**d1[:4]).isEqual(DataArrayDouble([1,3,9,27]),1e-12))
2887         d2=d1[:4]
2888         d2**=d2
2889         self.assertTrue(d2.isEqual(DataArrayDouble([1,1,4,27]),1e-12))
2890         d2**=-0.5
2891         self.assertTrue(d2.isEqual(DataArrayDouble([1,1,1./2,1./sqrt(27.)]),1e-14))
2892         d3=-1./d1[1:5]
2893         self.assertTrue((3**d3).isEqual(DataArrayDouble([0.3333333333333333,0.5773502691896257,0.6933612743506348,0.7598356856515925]),1e-14))
2894         d4=d3.deepCopy() ; d4.abs()
2895         self.assertTrue((d4**d3).isEqual(DataArrayDouble([1.,sqrt(2.),1.4422495703074083,sqrt(2.)]),1e-14))
2896         d4**=d3
2897         self.assertTrue(d4.isEqual(DataArrayDouble([1.,sqrt(2.),1.4422495703074083,sqrt(2.)]),1e-14))
2898         pass
2899
2900     def testSwig2Baryenter3DForCellsWithVolumeZero1(self):
2901         coo=DataArrayDouble([0.,0.,0.,1.,0.,0.,0.,1.,0.],3,3)
2902         m2=MEDCouplingUMesh("mesh",2)
2903         m2.allocateCells(0)
2904         m2.insertNextCell(NORM_POLYGON,[0,1,2])
2905         m2.setCoords(coo)
2906         m2.checkConsistency()
2907         #
2908         coo2=DataArrayDouble([0.,0.,0.,0.,0.,0.,0.,0.,2.],3,3)
2909         m1=MEDCouplingUMesh("mesh",1)
2910         m1.allocateCells(0)
2911         m1.insertNextCell(NORM_SEG2,[0,1])
2912         m1.insertNextCell(NORM_SEG2,[1,2])
2913         m1.setCoords(coo2)
2914         m1.checkConsistency()
2915         #
2916         m3=m2.buildExtrudedMesh(m1,0)
2917         m3.insertNextCell(NORM_POLYHED,[3,4,5,-1,8,7,6,-1,4,3,6,7,-1,5,4,7,8,-1,5,4,-1,3,5,8,6])# addition of face #4 with null surface
2918         self.assertTrue(m3.computeCellCenterOfMass().isEqual(DataArrayDouble([0.3333333333333333,0.3333333333333333,0.,0.3333333333333333,0.3333333333333333,1.,0.3333333333333333,0.3333333333333333,1.],3,3),1e-13))
2919         m4,a,b,c,d=m3.buildDescendingConnectivity()
2920         self.assertTrue(m4.computeCellCenterOfMass().isEqual(DataArrayDouble([0.3333333333333333,0.3333333333333333,0.,0.3333333333333333,0.3333333333333333,0.,0.5,0.,0.,0.5,0.5,0.,0.,0.5,0.,0.3333333333333333,0.3333333333333333,2.,0.5,0.,1.,0.5,0.5,1.,0.,0.5,1.,0.5,0.5,0.],10,3),1e-13))
2921         pass
2922
2923     def testSwigRepr1(self):
2924         d=DataArrayDouble()
2925         self.assertTrue(len(d.__repr__())<120)
2926         d.alloc(1000,0) ; self.assertTrue(len(d.__repr__())<100)
2927         for i in range(100):
2928             d.alloc(i,1) ; d.iota(1.1234567890123456) ; d*=1e123
2929             self.assertTrue(len(d.__repr__())<500)
2930             pass
2931         for i in range(50):
2932             d.alloc(i,2) ; d.rearrange(1) ; d.iota(1.1234567890123456) ; d.rearrange(2) ; d*=1e123
2933             self.assertTrue(len(d.__repr__())<500)
2934             pass
2935         d.alloc(4000,1) ; d.iota() ; self.assertTrue(len(d.__repr__())<500)
2936         for i in range(2, 4):
2937             d.alloc(362880,1) ; d.iota() ; d.rearrange(i) ; self.assertTrue(len(d.__repr__())<500)
2938             pass
2939         d.alloc(0,9)
2940         self.assertTrue(len(d.__repr__())<120)
2941         #
2942         d=DataArrayInt()
2943         self.assertTrue(len(d.__repr__())<100)
2944         d.alloc(1000,0) ; self.assertTrue(len(d.__repr__())<100)
2945         for i in range(100):
2946             d.alloc(i,1) ; d.iota(123456789)
2947             self.assertTrue(len(d.__repr__())<500)
2948             pass
2949         for i in range(50):
2950             d.alloc(i,2) ; d.rearrange(1) ; d.iota(123456789) ; d.rearrange(2)
2951             self.assertTrue(len(d.__repr__())<500)
2952             pass
2953         d.alloc(4000,1) ; d.iota() ; self.assertTrue(len(d.__repr__())<500)
2954         for i in range(2, 10):
2955             d.alloc(362880,1) ; d.iota() ; d.rearrange(i) ; self.assertTrue(len(d.__repr__())<500)
2956             pass
2957         d.alloc(0,9)
2958         self.assertTrue(len(d.__repr__())<100)
2959         #
2960         d=DataArrayAsciiChar()
2961         d.alloc(1000,0) ; self.assertTrue(len(d.__repr__())<100)
2962         d.alloc(2,16) ; d[:]='1234567890ABCDEF'
2963         self.assertTrue(len(d.__repr__())<500)
2964         d.alloc(2000,16) ; d[:]='1234567890ABCDEF'
2965         self.assertTrue(len(d.__repr__())<500)
2966         d.alloc(0,16) ; d[:]='1234567890ABCDEF'
2967         self.assertTrue(len(d.__repr__())<120)
2968         #
2969         d=DataArrayByte()
2970         self.assertTrue(len(d.__repr__())<100)
2971         d.alloc(1000,0) ; self.assertTrue(len(d.__repr__())<100)
2972         d.alloc(0,16) ; self.assertTrue(len(d.__repr__())<100)
2973         d.alloc(5,1) ; d.fillWithValue(127)
2974         self.assertTrue(len(d.__repr__())<200)
2975         d.alloc(1000,1) ; d.fillWithValue(127)
2976         self.assertTrue(len(d.__repr__())<500)
2977         d.alloc(1000,3) ; d.fillWithValue(127)
2978         self.assertTrue(len(d.__repr__())<500)
2979         pass
2980
2981     def testSwig2MeshComputeIsoBarycenterOfNodesPerCell1(self):
2982         coo=DataArrayDouble([26.17509821414239,5.0374,200.,26.175098214142388,-5.0374,200.,17.450065476094927,20.1496,200.,8.725032738047464,25.187,200.,43.62516369023732,5.0374,200.,34.90013095218986,10.0748,200.,34.900130952189855,-10.0748,200.,43.625163690237315,-5.0374,200.,26.175098214142402,25.187,200.,26.175098214142395,35.2618,200.,17.45006547609493,40.2992,200.,8.725032738047469,35.2618,200.,26.17509821414239,5.0374,200.,26.175098214142388,-5.0374,200.,17.450065476094927,20.1496,200.,8.725032738047464,25.187,200.,43.62516369023732,5.0374,200.,34.90013095218986,10.0748,200.,34.900130952189855,-10.0748,200.,43.625163690237315,-5.0374,200.,26.175098214142402,25.187,200.,26.175098214142395,35.2618,200.,17.45006547609493,40.2992,200.,8.725032738047469,35.2618,200.],24,3)
2983         m=MEDCouplingUMesh.New("toto",3)
2984         m.allocateCells(0)
2985         m.insertNextCell(NORM_POLYHED,[4,5,0,1,6,7,-1,19,18,13,12,17,16,-1,5,4,16,17,-1,0,5,17,12,-1,1,0,12,13,-1,6,1,13,18,-1,7,6,18,19,-1,4,7,19,16])
2986         m.insertNextCell(NORM_POLYHED,[9,10,11,3,2,8,-1,20,14,15,23,22,21,-1,10,9,21,22,-1,11,10,22,23,-1,3,11,23,15,-1,2,3,15,14,-1,8,2,14,20,-1,9,8,20,21])
2987         m.setCoords(coo)
2988         m.checkConsistency()
2989         #
2990         dReference=DataArrayDouble([(34.900130952189848,0.,200),(17.450065476094931,30.2244,200.)])
2991         self.assertTrue(m.computeIsoBarycenterOfNodesPerCell().isEqual(dReference,1e-12))
2992         m.getNodalConnectivity().setIJ(87,0,24)
2993         self.assertRaises(InterpKernelException,m.computeIsoBarycenterOfNodesPerCell)
2994         m.getNodalConnectivity().setIJ(87,0,-2)
2995         self.assertRaises(InterpKernelException,m.computeIsoBarycenterOfNodesPerCell)
2996         m.getNodalConnectivity().setIJ(87,0,21)# put again 21 as at the beginning
2997         #
2998         self.assertTrue(m.unPolyze())
2999         self.assertEqual([NORM_HEXGP12],m.getAllGeoTypes())
3000         self.assertTrue(m.computeIsoBarycenterOfNodesPerCell().isEqual(dReference,1e-12))
3001         m.getNodalConnectivity().setIJ(25,0,24)
3002         self.assertRaises(InterpKernelException,m.computeIsoBarycenterOfNodesPerCell)
3003         m.getNodalConnectivity().setIJ(25,0,-1)
3004         self.assertRaises(InterpKernelException,m.computeIsoBarycenterOfNodesPerCell)
3005         pass
3006
3007     def testSwig2NonRegressionBugDescHexa20(self):
3008         coo=DataArrayDouble([0.,0.,0.,1.23,0.,0.,0.615,0.,0.,0.,2.1,0.,0.615,2.1,0.,1.23,2.1,0.,1.23,1.05,0.,0.,1.05,0.,0.,0.,2.16,1.23,0.,2.16,1.23,2.1,2.16,0.,2.1,2.16,0.,0.,4.32,0.615,0.,4.32,1.23,0.,4.32,1.23,1.05,4.32,1.23,2.1,4.32,0.615,2.1,4.32,0.,2.1,4.32,0.,1.05,4.32],20,3)
3009         m=MEDCouplingUMesh('mesh',3)
3010         m.allocateCells(0)
3011         m.insertNextCell(NORM_HEXA20,[0,3,5,1,12,18,16,14,7,4,6,2,19,17,15,13,8,11,10,9])
3012         m.setCoords(coo)
3013         m.checkConsistency()
3014         #
3015         a,b,c,d,e=m.buildDescendingConnectivity()
3016         m2=MEDCouplingUMesh('mesh',2)
3017         m2.allocateCells(0)
3018         m2.setCoords(coo)
3019         conn2=[[0,3,5,1,7,4,6,2],[12,14,16,18,13,15,17,19],[0,12,18,3,8,19,11,7],[3,18,16,5,11,17,10,4],[5,16,14,1,10,15,9,6],[1,14,12,0,9,13,8,2]]
3020         for i in range(6):
3021             m2.insertNextCell(NORM_QUAD8,conn2[i])
3022             pass
3023         self.assertTrue(m2.isEqual(a,1e-12))
3024         self.assertTrue(b.isEqual(DataArrayInt([0,1,2,3,4,5])))
3025         self.assertTrue(c.isEqual(DataArrayInt([0,6])))
3026         self.assertTrue(d.isEqual(DataArrayInt([0,0,0,0,0,0])))
3027         self.assertTrue(e.isEqual(DataArrayInt([0,1,2,3,4,5,6])))
3028         #
3029         m.convertQuadraticCellsToLinear() ; m.zipCoords()
3030         m.convertLinearCellsToQuadratic(1)
3031         #
3032         coo2=DataArrayDouble([0.,0.,0.,1.23,0.,0.,0.,2.1,0.,1.23,2.1,0.,0.,0.,4.32,1.23,0.,4.32,1.23,2.1,4.32,0.,2.1,4.32,0.,1.05,0.,0.615,2.1,0.,1.23,1.05,0.,0.615,0.,0.,0.,1.05,4.32,0.615,2.1,4.32,1.23,1.05,4.32,0.615,0.,4.32,0.,0.,2.16,0.,2.1,2.16,1.23,2.1,2.16,1.23,0.,2.16,0.615,1.05,0.,0.,1.05,2.16,0.615,2.1,2.16,1.23,1.05,2.16,0.615,0.,2.16,0.615,1.05,4.32,0.615,1.05,2.16],27,3)
3033         m3=MEDCouplingUMesh("mesh",3)
3034         m3.allocateCells(1)
3035         m3.insertNextCell(NORM_HEXA27,[0,2,3,1,4,7,6,5,8,9,10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,25,26])
3036         m3.setCoords(coo2)
3037         self.assertTrue(m3.isEqual(m,1e-12))
3038         #
3039         a,b,c,d,e=m.buildDescendingConnectivity()
3040         conn4=[[0,2,3,1,8,9,10,11,20],[4,5,6,7,15,14,13,12,25],[0,4,7,2,16,12,17,8,21],[2,7,6,3,17,13,18,9,22],[3,6,5,1,18,14,19,10,23],[1,5,4,0,19,15,16,11,24]]
3041         m4=MEDCouplingUMesh("mesh",2)
3042         m4.allocateCells(0)
3043         for i in range(6):
3044             m4.insertNextCell(NORM_QUAD9,conn4[i])
3045             pass
3046         m4.setCoords(coo2)
3047         self.assertTrue(m4.isEqual(a,1e-12))
3048         self.assertTrue(b.isEqual(DataArrayInt([0,1,2,3,4,5])))
3049         self.assertTrue(c.isEqual(DataArrayInt([0,6])))
3050         self.assertTrue(d.isEqual(DataArrayInt([0,0,0,0,0,0])))
3051         self.assertTrue(e.isEqual(DataArrayInt([0,1,2,3,4,5,6])))
3052         pass
3053
3054     def testSwigAdvGauss(self):
3055         f=MEDCouplingFieldTemplate(ON_GAUSS_PT)
3056         f.setDiscretization(None)
3057         f.__repr__() ; f.__str__()
3058         #
3059         f=MEDCouplingFieldTemplate(ON_GAUSS_PT)
3060         d=f.getDiscretization()
3061         i=DataArrayInt() ; i.alloc(10,1) ; i.iota(1)
3062         d.setArrayOfDiscIds(i)
3063         f.__repr__() ; f.__str__()
3064         i2=d.getArrayOfDiscIds()
3065         self.assertEqual(i.__repr__(),i2.__repr__())
3066         #
3067         f=MEDCouplingFieldDouble(ON_GAUSS_PT)
3068         f.setDiscretization(None)
3069         f.__repr__() ; f.__str__()
3070         #
3071         f=MEDCouplingFieldDouble(ON_GAUSS_PT)
3072         d=f.getDiscretization()
3073         i=DataArrayInt() ; i.alloc(10,1) ; i.iota(1)
3074         d.setArrayOfDiscIds(i)
3075         f.__repr__() ; f.__str__()
3076         #
3077         gl=MEDCouplingGaussLocalization(NORM_SEG2,[0,1],[0.5],[1.])
3078         gl.setWeights([3.])
3079         gl.__repr__() ; gl.__str__()
3080         gl=MEDCouplingGaussLocalization(NORM_ERROR)
3081         gl.setWeights([3.])
3082         gl.__repr__() ; gl.__str__()
3083         pass
3084
3085     def testSwig2NonRegressionBugSubstractInPlaceDM(self):
3086         m0=MEDCouplingCMesh()
3087         arr=DataArrayDouble(5,1) ; arr.iota(0.)
3088         m0.setCoords(arr,arr)
3089         m0=m0.buildUnstructured()
3090         m00=m0[::2] ; m00.simplexize(0) ; m01=m0[1::2]
3091         m0=MEDCouplingUMesh.MergeUMeshes([m00,m01])
3092         m0.getCoords()[:]*=1/4.
3093         m0.setName("mesh")
3094         #
3095         NodeField=MEDCouplingFieldDouble(ON_NODES,ONE_TIME) ; NodeField.setTime(5.6,5,6) ; NodeField.setMesh(m0)
3096         NodeField.setName("NodeField")
3097         NodeField.fillFromAnalytic(1,"exp(-((x-1)*(x-1)+(y-1)*(y-1)))") ; NodeField.getArray().setInfoOnComponent(0,"powernode [W]")
3098         proc0=m0.getCellsInBoundingBox([(0.,0.4),(0.,0.4)],1e-10)
3099         proc1=proc0.buildComplement(m0.getNumberOfCells())
3100         #
3101         NodeField0=NodeField[proc0] ; NodeField0.getMesh().setName(m0.getName())
3102         NodeField1=NodeField[proc1] ; NodeField1.getMesh().setName(m0.getName())
3103         #
3104         NodeField_read=MEDCouplingFieldDouble.MergeFields([NodeField0,NodeField1])
3105         NodeField_read.mergeNodes(1e-10)
3106         NodeFieldCpy=NodeField.deepCopy()
3107         NodeFieldCpy.mergeNodes(1e-10)
3108         NodeField.checkConsistencyLight()
3109         self.assertTrue(not NodeField.getArray().isUniform(0.,1e-12))
3110         NodeField.substractInPlaceDM(NodeField_read,10,1e-12)
3111         self.assertTrue(NodeField.getArray().isUniform(0.,1e-12))
3112         pass
3113
3114     def testSwigFieldOperationOpen1(self):
3115         ## MEDCouplingFieldDouble.__add__
3116         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3117         f=MEDCouplingFieldDouble(ON_CELLS)
3118         f.setMesh(m)
3119         arr=DataArrayDouble(5,2)
3120         arr[:, 0] = list(range(5)) ; arr[:, 1] = 2 * arr[:, 0]
3121         f2=f.clone(True)
3122         self.assertRaises(InterpKernelException,f.__add__,2)
3123         self.assertRaises(InterpKernelException, f.__add__, list(range(5)))
3124         self.assertRaises(InterpKernelException,f.__add__,arr)
3125         self.assertRaises(InterpKernelException,f.__add__,f2)
3126         f.setArray(DataArrayDouble())
3127         self.assertRaises(InterpKernelException,f.__add__,2)
3128         self.assertRaises(InterpKernelException, f.__add__, list(range(5)))
3129         self.assertRaises(InterpKernelException,f.__add__,arr)
3130         self.assertRaises(InterpKernelException,f.__add__,f2)
3131         self.assertRaises(InterpKernelException,f.__getitem__,(slice(None),0))
3132         f.getArray().alloc(5,2)
3133         f.getArray()[:, 0] = list(range(5)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3134         ff=f+2
3135         ff.checkConsistencyLight()
3136         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(2,9),(3,10),(4,11),(5,12),(6,13)]),1e-12))
3137         ff=f+arr
3138         ff.checkConsistencyLight()
3139         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,7),(2,10),(4,13),(6,16),(8,19)]),1e-12))
3140         self.assertRaises(InterpKernelException,f.__add__,f2)
3141         f2.setArray(arr)
3142         ff=f+f2
3143         ff.checkConsistencyLight()
3144         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,7),(2,10),(4,13),(6,16),(8,19)]),1e-12))
3145         ff=f+[5,8]
3146         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(5,15),(6,16),(7,17),(8,18),(9,19)]),1e-12))
3147         ### MEDCouplingFieldDouble.__sub__
3148         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3149         f=MEDCouplingFieldDouble(ON_CELLS)
3150         f.setMesh(m)
3151         arr=DataArrayDouble(5,2)
3152         arr[:, 0] = list(range(5)) ; arr[:, 1] = 2 * arr[:, 0]
3153         f2=f.clone(True)
3154         self.assertRaises(InterpKernelException,f.__sub__,2)
3155         self.assertRaises(InterpKernelException, f.__sub__, list(range(5)))
3156         self.assertRaises(InterpKernelException,f.__sub__,arr)
3157         self.assertRaises(InterpKernelException,f.__sub__,f2)
3158         f.setArray(DataArrayDouble())
3159         self.assertRaises(InterpKernelException,f.__sub__,2)
3160         self.assertRaises(InterpKernelException, f.__sub__, list(range(5)))
3161         self.assertRaises(InterpKernelException,f.__sub__,arr)
3162         self.assertRaises(InterpKernelException,f.__sub__,f2)
3163         self.assertRaises(InterpKernelException,f.__getitem__,(slice(None),0))
3164         f.getArray().alloc(5,2)
3165         f.getArray()[:, 0] = list(range(5)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3166         ff=f-2
3167         ff.checkConsistencyLight()
3168         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(-2,5),(-1,6),(0,7),(1,8),(2,9)]),1e-12))
3169         ff=f-arr
3170         ff.checkConsistencyLight()
3171         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,7),(0,6),(0,5),(0,4),(0,3)]),1e-12))
3172         self.assertRaises(InterpKernelException,f.__sub__,f2)
3173         f2.setArray(arr)
3174         ff=f-f2
3175         ff.checkConsistencyLight()
3176         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,7),(0,6),(0,5),(0,4),(0,3)]),1e-12))
3177         ff=f-[5,8]
3178         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(-5,-1),(-4,0),(-3,1),(-2,2),(-1,3)]),1e-12))
3179         ### MEDCouplingFieldDouble.__mul__
3180         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3181         f=MEDCouplingFieldDouble(ON_CELLS)
3182         f.setMesh(m)
3183         arr=DataArrayDouble(5,2)
3184         arr[:, 0] = list(range(5)) ; arr[:, 1] = 2 * arr[:, 0]
3185         f2=f.clone(True)
3186         self.assertRaises(InterpKernelException,f.__mul__,2)
3187         self.assertRaises(InterpKernelException, f.__mul__, list(range(5)))
3188         self.assertRaises(InterpKernelException,f.__mul__,arr)
3189         self.assertRaises(InterpKernelException,f.__mul__,f2)
3190         f.setArray(DataArrayDouble())
3191         self.assertRaises(InterpKernelException,f.__mul__,2)
3192         self.assertRaises(InterpKernelException, f.__mul__, list(range(5)))
3193         self.assertRaises(InterpKernelException,f.__mul__,arr)
3194         self.assertRaises(InterpKernelException,f.__mul__,f2)
3195         self.assertRaises(InterpKernelException,f.__getitem__,(slice(None),0))
3196         f.getArray().alloc(5,2)
3197         f.getArray()[:, 0] = list(range(5)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3198         ff=f*2
3199         ff.checkConsistencyLight()
3200         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,14),(2,16),(4,18),(6,20),(8,22)]),1e-12))
3201         ff=f*arr
3202         ff.checkConsistencyLight()
3203         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,0),(1,16),(4,36),(9,60),(16,88)]),1e-12))
3204         self.assertRaises(InterpKernelException,f.__mul__,f2)
3205         f2.setArray(arr)
3206         ff=f*f2
3207         ff.checkConsistencyLight()
3208         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,0),(1,16),(4,36),(9,60),(16,88)]),1e-12))
3209         ff=f*[5,8]
3210         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,56),(5,64),(10,72),(15,80),(20,88)]),1e-12))
3211         ### MEDCouplingFieldDouble.__div__
3212         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3213         f=MEDCouplingFieldDouble(ON_CELLS)
3214         f.setMesh(m)
3215         arr=DataArrayDouble(5,2)
3216         arr[:, 0] = list(range(1, 6)) ; arr[:, 1] = 2 * arr[:, 0]
3217         f2=f.clone(True)
3218         self.assertRaises(InterpKernelException,f.__div__,2)
3219         self.assertRaises(InterpKernelException, f.__div__, list(range(5)))
3220         self.assertRaises(InterpKernelException,f.__div__,arr)
3221         self.assertRaises(InterpKernelException,f.__div__,f2)
3222         f.setArray(DataArrayDouble())
3223         self.assertRaises(InterpKernelException,f.__div__,2)
3224         self.assertRaises(InterpKernelException, f.__div__, list(range(5)))
3225         self.assertRaises(InterpKernelException,f.__div__,arr)
3226         self.assertRaises(InterpKernelException,f.__div__,f2)
3227         self.assertRaises(InterpKernelException,f.__getitem__,(slice(None),0))
3228         f.getArray().alloc(5,2)
3229         f.getArray()[:, 0] = list(range(5)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3230         self.assertRaises(InterpKernelException,f.__div__,0)
3231         ff=f/2
3232         ff.checkConsistencyLight()
3233         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,3.5),(0.5,4),(1,4.5),(1.5,5),(2,5.5)]),1e-12))
3234         ff=f/arr
3235         ff.checkConsistencyLight()
3236         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,3.5),(0.5,2),(0.6666666666666666,1.5),(0.75,1.25),(0.8,1.1)]),1e-12))
3237         self.assertRaises(InterpKernelException,f.__div__,f2)
3238         f2.setArray(arr)
3239         ff=f/f2
3240         ff.checkConsistencyLight()
3241         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,3.5),(0.5,2),(0.6666666666666666,1.5),(0.75,1.25),(0.8,1.1)]),1e-12))
3242         ff=f/[5,8]
3243         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,0.875),(0.2,1),(0.4,1.125),(0.6,1.25),(0.8,1.375)]),1e-12))
3244         ### MEDCouplingFieldDouble.__pow__
3245         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3246         f=MEDCouplingFieldDouble(ON_CELLS)
3247         f.setMesh(m)
3248         arr=DataArrayDouble(5)
3249         arr[:]=[1,1,3,2,0]
3250         f2=f.clone(True)
3251         self.assertRaises(InterpKernelException,f.__div__,2)
3252         self.assertRaises(InterpKernelException, f.__div__, list(range(5)))
3253         self.assertRaises(InterpKernelException,f.__div__,arr)
3254         self.assertRaises(InterpKernelException,f.__div__,f2)
3255         f.setArray(DataArrayDouble())
3256         self.assertRaises(InterpKernelException,f.__div__,2)
3257         self.assertRaises(InterpKernelException, f.__div__, list(range(5)))
3258         self.assertRaises(InterpKernelException,f.__div__,arr)
3259         self.assertRaises(InterpKernelException,f.__div__,f2)
3260         self.assertRaises(InterpKernelException,f.__getitem__,(slice(None),0))
3261         f.getArray().alloc(5,1)
3262         f.getArray()[:] = list(range(2, 7))
3263         ff=f**2
3264         ff.checkConsistencyLight()
3265         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([4,9,16,25,36]),1e-12))
3266         ff=f**arr
3267         ff.checkConsistencyLight()
3268         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([2,3,64,25,1]),1e-12))
3269         f2.setArray(arr)
3270         ff=f**f2
3271         ff.checkConsistencyLight()
3272         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([2,3,64,25,1]),1e-12))
3273         ## MEDCouplingFieldDouble.__iadd__
3274         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3275         f=MEDCouplingFieldDouble(ON_CELLS)
3276         f.setMesh(m)
3277         arr=DataArrayDouble(5,2)
3278         arr[:, 0] = list(range(5)) ; arr[:, 1] = 2 * arr[:, 0]
3279         f2=f.clone(True)
3280         self.assertRaises(InterpKernelException,f.__iadd__,2)
3281         self.assertRaises(InterpKernelException, f.__iadd__, list(range(5)))
3282         self.assertRaises(InterpKernelException,f.__iadd__,arr)
3283         self.assertRaises(InterpKernelException,f.__iadd__,f2)
3284         f.setArray(DataArrayDouble())
3285         self.assertRaises(InterpKernelException,f.__iadd__,2)
3286         self.assertRaises(InterpKernelException, f.__iadd__, list(range(5)))
3287         self.assertRaises(InterpKernelException,f.__iadd__,arr)
3288         self.assertRaises(InterpKernelException,f.__iadd__,f2)
3289         f.getArray().alloc(5,2)
3290         f.getArray()[:, 0] = list(range(5)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3291         f.checkConsistencyLight()
3292         f+=2
3293         f.checkConsistencyLight()
3294         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(2,9),(3,10),(4,11),(5,12),(6,13)]),1e-12))
3295         f+=arr
3296         f.checkConsistencyLight()
3297         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(2,9),(4,12),(6,15),(8,18),(10,21)]),1e-12))
3298         f2.setArray(arr)
3299         f+=f2
3300         f.checkConsistencyLight()
3301         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(2,9),(5,14),(8,19),(11,24),(14,29)]),1e-12))
3302         f+=[0.1,0.2]
3303         f.checkConsistencyLight()
3304         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(2.1,9.2),(5.1,14.2),(8.1,19.2),(11.1,24.2),(14.1,29.2)]),1e-12))
3305         ## MEDCouplingFieldDouble.__isub__
3306         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3307         f=MEDCouplingFieldDouble(ON_CELLS)
3308         f.setMesh(m)
3309         arr=DataArrayDouble(5,2)
3310         arr[:, 0] = list(range(5)) ; arr[:, 1] = 2 * arr[:, 0]
3311         f2=f.clone(True)
3312         self.assertRaises(InterpKernelException,f.__isub__,2)
3313         self.assertRaises(InterpKernelException, f.__isub__, list(range(5)))
3314         self.assertRaises(InterpKernelException,f.__isub__,arr)
3315         self.assertRaises(InterpKernelException,f.__isub__,f2)
3316         f.setArray(DataArrayDouble())
3317         self.assertRaises(InterpKernelException,f.__isub__,2)
3318         self.assertRaises(InterpKernelException, f.__isub__, list(range(5)))
3319         self.assertRaises(InterpKernelException,f.__isub__,arr)
3320         self.assertRaises(InterpKernelException,f.__isub__,f2)
3321         f.getArray().alloc(5,2)
3322         f.getArray()[:, 0] = list(range(5)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3323         f.checkConsistencyLight()
3324         f-=2
3325         f.checkConsistencyLight()
3326         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(-2,5),(-1,6),(0,7),(1,8),(2,9)]),1e-12))
3327         f-=arr
3328         f.checkConsistencyLight()
3329         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(-2,5),(-2,4),(-2,3),(-2,2),(-2,1)]),1e-12))
3330         f2.setArray(arr)
3331         f-=f2
3332         f.checkConsistencyLight()
3333         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(-2,5),(-3,2),(-4,-1),(-5,-4),(-6,-7)]),1e-12))
3334         f-=[0.1,0.2]
3335         f.checkConsistencyLight()
3336         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(-2.1,4.8),(-3.1,1.8),(-4.1,-1.2),(-5.1,-4.2),(-6.1,-7.2)]),1e-12))
3337         ## MEDCouplingFieldDouble.__imul__
3338         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3339         f=MEDCouplingFieldDouble(ON_CELLS)
3340         f.setMesh(m)
3341         arr=DataArrayDouble(5,2)
3342         arr[:, 0] = list(range(5)) ; arr[:, 1] = 2 * arr[:, 0]
3343         f2=f.clone(True)
3344         self.assertRaises(InterpKernelException,f.__imul__,2)
3345         self.assertRaises(InterpKernelException, f.__imul__, list(range(5)))
3346         self.assertRaises(InterpKernelException,f.__imul__,arr)
3347         self.assertRaises(InterpKernelException,f.__imul__,f2)
3348         f.setArray(DataArrayDouble())
3349         self.assertRaises(InterpKernelException,f.__imul__,2)
3350         self.assertRaises(InterpKernelException, f.__imul__, list(range(5)))
3351         self.assertRaises(InterpKernelException,f.__imul__,arr)
3352         self.assertRaises(InterpKernelException,f.__imul__,f2)
3353         f.getArray().alloc(5,2)
3354         f.getArray()[:, 0] = list(range(5)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3355         f.checkConsistencyLight()
3356         f*=2
3357         f.checkConsistencyLight()
3358         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(0,14),(2,16),(4,18),(6,20),(8,22)]),1e-12))
3359         f*=arr
3360         f.checkConsistencyLight()
3361         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(0,0),(2,32),(8,72),(18,120),(32,176)]),1e-12))
3362         f2.setArray(arr)
3363         f*=f2
3364         f.checkConsistencyLight()
3365         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(0,0),(2,64),(16,288),(54,720),(128,1408)]),1e-12))
3366         f*=[0.1,0.2]
3367         f.checkConsistencyLight()
3368         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(0,0),(0.2,12.8),(1.6,57.6),(5.4,144),(12.8,281.6)]),1e-12))
3369         ## MEDCouplingFieldDouble.__idiv__
3370         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3371         f=MEDCouplingFieldDouble(ON_CELLS)
3372         f.setMesh(m)
3373         arr=DataArrayDouble(5,2)
3374         arr[:, 0] = list(range(1, 6)) ; arr[:, 1] = 2 * arr[:, 0]
3375         f2=f.clone(True)
3376         self.assertRaises(InterpKernelException,f.__idiv__,2)
3377         self.assertRaises(InterpKernelException, f.__idiv__, list(range(5)))
3378         self.assertRaises(InterpKernelException,f.__idiv__,arr)
3379         self.assertRaises(InterpKernelException,f.__idiv__,f2)
3380         f.setArray(DataArrayDouble())
3381         self.assertRaises(InterpKernelException,f.__idiv__,2)
3382         self.assertRaises(InterpKernelException, f.__idiv__, list(range(5)))
3383         self.assertRaises(InterpKernelException,f.__idiv__,arr)
3384         self.assertRaises(InterpKernelException,f.__idiv__,f2)
3385         f.getArray().alloc(5,2)
3386         f.getArray()[:, 0] = list(range(5)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3387         f.checkConsistencyLight()
3388         f/=2
3389         f.checkConsistencyLight()
3390         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(0,3.5),(0.5,4),(1,4.5),(1.5,5),(2,5.5)]),1e-12))
3391         f/=arr
3392         f.checkConsistencyLight()
3393         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(0,1.75),(0.25,1),(0.3333333333333333,0.75),(0.375,0.625),(0.4,0.55)]),1e-12))
3394         f2.setArray(arr)
3395         f/=f2
3396         f.checkConsistencyLight()
3397         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(0,0.875),(0.125,0.25),(0.1111111111111111,0.125),(0.09375,0.078125),(0.08,0.055)]),1e-12))
3398         f/=[0.1,0.2]
3399         f.checkConsistencyLight()
3400         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(0,4.375),(1.25,1.25),(1.1111111111111111,0.625),(0.9375,0.390625),(0.8,0.275)]),1e-12))
3401         ## MEDCouplingFieldDouble.__ipow__
3402         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3403         f=MEDCouplingFieldDouble(ON_CELLS)
3404         f.setMesh(m)
3405         arr=DataArrayDouble(5,2)
3406         arr[:, 0] = list(range(1, 6)) ; arr[:, 1] = 2 * arr[:, 0]
3407         f2=f.clone(True)
3408         self.assertRaises(InterpKernelException,f.__ipow__,2)
3409         self.assertRaises(InterpKernelException, f.__ipow__, list(range(5)))
3410         self.assertRaises(InterpKernelException,f.__ipow__,arr)
3411         self.assertRaises(InterpKernelException,f.__ipow__,f2)
3412         f.setArray(DataArrayDouble())
3413         self.assertRaises(InterpKernelException,f.__ipow__,2)
3414         self.assertRaises(InterpKernelException, f.__ipow__, list(range(5)))
3415         self.assertRaises(InterpKernelException,f.__ipow__,arr)
3416         self.assertRaises(InterpKernelException,f.__ipow__,f2)
3417         f.getArray().alloc(5,2)
3418         f.getArray()[:, 0] = list(range(5)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3419         f.checkConsistencyLight()
3420         f**=2
3421         f.checkConsistencyLight()
3422         self.assertTrue(f.getArray().isEqual(DataArrayDouble([(0,49),(1,64),(4,81),(9,100),(16,121)]),1e-12))
3423          ## MEDCouplingFieldDouble.__radd__
3424         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3425         f=MEDCouplingFieldDouble(ON_CELLS)
3426         f.setMesh(m)
3427         arr=DataArrayDouble(5,2)
3428         arr[:, 0] = list(range(5)) ; arr[:, 1] = 2 * arr[:, 0]
3429         f2=f.clone(True)
3430         self.assertRaises(InterpKernelException,f.__radd__,2)
3431         self.assertRaises(InterpKernelException, f.__radd__, list(range(5)))
3432         self.assertRaises(InterpKernelException,f.__radd__,arr)
3433         self.assertRaises(InterpKernelException,f.__radd__,f2)
3434         f.setArray(DataArrayDouble())
3435         self.assertRaises(InterpKernelException,f.__radd__,2)
3436         self.assertRaises(InterpKernelException, f.__radd__, list(range(5)))
3437         self.assertRaises(InterpKernelException,f.__radd__,arr)
3438         self.assertRaises(InterpKernelException,f.__radd__,f2)
3439         self.assertRaises(InterpKernelException,f.__getitem__,(slice(None),0))
3440         f.getArray().alloc(5,2)
3441         f.getArray()[:, 0] = list(range(5)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3442         ff=2+f
3443         ff.checkConsistencyLight()
3444         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(2,9),(3,10),(4,11),(5,12),(6,13)]),1e-12))
3445         ff=arr+f
3446         ff.checkConsistencyLight()
3447         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,7),(2,10),(4,13),(6,16),(8,19)]),1e-12))
3448         self.assertRaises(InterpKernelException,f.__radd__,f2)
3449         ff=[5,8]+f
3450         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(5,15),(6,16),(7,17),(8,18),(9,19)]),1e-12))
3451         ### MEDCouplingFieldDouble.__rsub__
3452         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3453         f=MEDCouplingFieldDouble(ON_CELLS)
3454         f.setMesh(m)
3455         arr=DataArrayDouble(5,2)
3456         arr[:, 0] = list(range(5)) ; arr[:, 1] = 2 * arr[:, 0]
3457         f2=f.clone(True)
3458         self.assertRaises(InterpKernelException,f.__rsub__,2)
3459         self.assertRaises(InterpKernelException, f.__rsub__, list(range(5)))
3460         self.assertRaises(InterpKernelException,f.__rsub__,arr)
3461         self.assertRaises(InterpKernelException,f.__rsub__,f2)
3462         f.setArray(DataArrayDouble())
3463         self.assertRaises(InterpKernelException,f.__rsub__,2)
3464         self.assertRaises(InterpKernelException, f.__rsub__, list(range(5)))
3465         self.assertRaises(InterpKernelException,f.__rsub__,arr)
3466         self.assertRaises(InterpKernelException,f.__rsub__,f2)
3467         self.assertRaises(InterpKernelException,f.__getitem__,(slice(None),0))
3468         f.getArray().alloc(5,2)
3469         f.getArray()[:, 0] = list(range(5)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3470         ff=2-f
3471         ff.checkConsistencyLight()
3472         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(2,-5),(1,-6),(0,-7),(-1,-8),(-2,-9)]),1e-12))
3473         ff=arr-f
3474         ff.checkConsistencyLight()
3475         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,-7),(0,-6),(0,-5),(0,-4),(0,-3)]),1e-12))
3476         self.assertRaises(InterpKernelException,f.__rsub__,f2)
3477         ### MEDCouplingFieldDouble.__rmul__
3478         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3479         f=MEDCouplingFieldDouble(ON_CELLS)
3480         f.setMesh(m)
3481         arr=DataArrayDouble(5,2)
3482         arr[:, 0] = list(range(5)) ; arr[:, 1] = 2 * arr[:, 0]
3483         f2=f.clone(True)
3484         self.assertRaises(InterpKernelException,f.__rmul__,2)
3485         self.assertRaises(InterpKernelException, f.__rmul__, list(range(5)))
3486         self.assertRaises(InterpKernelException,f.__rmul__,arr)
3487         self.assertRaises(InterpKernelException,f.__rmul__,f2)
3488         f.setArray(DataArrayDouble())
3489         self.assertRaises(InterpKernelException,f.__rmul__,2)
3490         self.assertRaises(InterpKernelException, f.__rmul__, list(range(5)))
3491         self.assertRaises(InterpKernelException,f.__rmul__,arr)
3492         self.assertRaises(InterpKernelException,f.__rmul__,f2)
3493         self.assertRaises(InterpKernelException,f.__getitem__,(slice(None),0))
3494         f.getArray().alloc(5,2)
3495         f.getArray()[:, 0] = list(range(5)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3496         ff=2*f
3497         ff.checkConsistencyLight()
3498         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,14),(2,16),(4,18),(6,20),(8,22)]),1e-12))
3499         ff=arr*f
3500         ff.checkConsistencyLight()
3501         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,0),(1,16),(4,36),(9,60),(16,88)]),1e-12))
3502         self.assertRaises(InterpKernelException,f.__rmul__,f2)
3503         ff=f*[5,8]
3504         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(0,56),(5,64),(10,72),(15,80),(20,88)]),1e-12))
3505         ### MEDCouplingFieldDouble.__rdiv__
3506         m=MEDCouplingDataForTest.build2DTargetMesh_1()
3507         f=MEDCouplingFieldDouble(ON_CELLS)
3508         f.setMesh(m)
3509         arr=DataArrayDouble(5,2)
3510         arr[:, 0] = list(range(1, 6)) ; arr[:, 1] = 2 * arr[:, 0]
3511         f2=f.clone(True)
3512         self.assertRaises(InterpKernelException,f.__rdiv__,2)
3513         self.assertRaises(InterpKernelException, f.__rdiv__, list(range(5)))
3514         self.assertRaises(InterpKernelException,f.__rdiv__,arr)
3515         self.assertRaises(InterpKernelException,f.__rdiv__,f2)
3516         f.setArray(DataArrayDouble())
3517         self.assertRaises(InterpKernelException,f.__rdiv__,2)
3518         self.assertRaises(InterpKernelException, f.__rdiv__, list(range(5)))
3519         self.assertRaises(InterpKernelException,f.__rdiv__,arr)
3520         self.assertRaises(InterpKernelException,f.__rdiv__,f2)
3521         self.assertRaises(InterpKernelException,f.__getitem__,(slice(None),0))
3522         f.getArray().alloc(5,2)
3523         f.getArray()[:, 0] = list(range(1, 6)) ; f.getArray()[:, 1] = f.getArray()[:, 0] + 7
3524         ff=2/f
3525         ff.checkConsistencyLight()
3526         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(2,0.25),(1,0.22222222222222221),(0.66666666666666663,0.20000000000000001),(0.5,0.18181818181818182),(0.40000000000000002,0.16666666666666666)]),1e-12))
3527         ff=arr/f
3528         ff.checkConsistencyLight()
3529         self.assertTrue(ff.getArray().isEqual(DataArrayDouble([(1,0.25),(1,0.44444444444444442),(1,0.59999999999999998),(1,0.72727272727272729),(1,0.83333333333333337)]),1e-12))
3530         self.assertRaises(InterpKernelException,f.__rdiv__,f2)
3531         pass
3532
3533     pass
3534
3535 if __name__ == '__main__':
3536     unittest.main()
3537