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Revision 1032 - (show annotations) (download) (as text)
Thu Jan 4 01:51:38 2007 UTC (18 years, 10 months ago) by johnpye
File MIME type: text/x-python
File size: 17321 byte(s)
Added a necessary export symbol in extcall for used by bboxtest.
Broke apart Ben's z-bbox test suite and added it to the Python tests.
1 #!/usr/bin/env python
2 import unittest
3
4 import platform, sys
5 if platform.system() != "Windows":
6 import dl
7 sys.setdlopenflags(dl.RTLD_GLOBAL|dl.RTLD_NOW)
8
9 import ascpy
10 import math
11 import os, subprocess
12 import atexit
13 import cunit
14
15 class Ascend(unittest.TestCase):
16
17 def setUp(self):
18 import ascpy
19 self.L = ascpy.Library()
20
21 def tearDown(self):
22 self.L.clear()
23 del self.L
24
25 class AscendSelfTester(Ascend):
26
27 def _run(self,modelname,solvername="QRSlv",filename=None):
28 if filename==None:
29 filename = 'johnpye/%s.a4c' % modelname
30 self.L.load(filename)
31 T = self.L.findType(modelname)
32 M = T.getSimulation('sim')
33 M.build()
34 M.solve(ascpy.Solver(solvername),ascpy.SolverReporter())
35 M.run(T.getMethod('self_test'))
36 return M
37
38 class TestCompiler(Ascend):
39
40 def testloading(self):
41 pass
42
43 def testsystema4l(self):
44 self.L.load('system.a4l')
45
46 def testatomsa4l(self):
47 self.L.load('atoms.a4l')
48
49 class TestSolver(AscendSelfTester):
50
51 def testlog10(self):
52 self._run('testlog10')
53
54 def testconopt(self):
55 self._run('testconopt',"CONOPT")
56
57 def testcmslv2(self):
58 self._run('testcmslv2',"CMSlv")
59
60 def testsunpos1(self):
61 self._run('example_1_6_1',"QRSlv","johnpye/sunpos.a4c")
62
63 def testsunpos2(self):
64 self._run('example_1_6_2',"QRSlv","johnpye/sunpos.a4c")
65
66 def testsunpos3(self):
67 self._run('example_1_7_1',"QRSlv","johnpye/sunpos.a4c")
68
69 def testsunpos4(self):
70 self._run('example_1_7_2',"QRSlv","johnpye/sunpos.a4c")
71
72 def testsunpos5(self):
73 self._run('example_1_7_3',"QRSlv","johnpye/sunpos.a4c")
74
75 def testsunpos6(self):
76 self._run('example_1_8_1',"QRSlv","johnpye/sunpos.a4c")
77
78 class TestIntegrator(Ascend):
79
80 def testListIntegrators(self):
81 I = ascpy.Integrator.getEngines()
82 s1 = sorted([str(i) for i in I.values()])
83 s2 = sorted(['IDA','LSODE','AWW'])
84 assert s1==s2
85
86 # this routine is reused by both testIDA and testLSODE
87 def _testIntegrator(self,integratorname):
88 self.L.load('johnpye/shm.a4c')
89 M = self.L.findType('shm').getSimulation('sim')
90 M.setSolver(ascpy.Solver('QRSlv'))
91 print M.getChildren()
92 assert float(M.x) == 10.0
93 assert float(M.v) == 0.0
94 t_end = math.pi
95
96 I = ascpy.Integrator(M)
97 I.setReporter(ascpy.IntegratorReporterNull(I))
98 I.setEngine(integratorname);
99 I.setLinearTimesteps(ascpy.Units("s"), 0.0, t_end, 100);
100 I.setMinSubStep(0.0005); # these limits are required by IDA at present (numeric diff)
101 I.setMaxSubStep(0.02);
102 I.setInitialSubStep(0.001);
103 I.setMaxSubSteps(200);
104 if(integratorname=='IDA'):
105 I.setParameter('autodiff',False)
106 I.analyse();
107 I.solve();
108 print "At end of simulation,"
109 print "x = %f" % M.x
110 print "v = %f" % M.v
111 assert abs(float(M.x) + 10) < 1e-2
112 assert abs(float(M.v)) < 1e-2
113 assert I.getNumObservedVars() == 3
114
115 def testInvalidIntegrator(self):
116 self.L.load('johnpye/shm.a4c')
117 M = self.L.findType('shm').getSimulation('sim')
118 M.setSolver(ascpy.Solver('QRSlv'))
119 I = ascpy.Integrator(M)
120 try:
121 I.setEngine('___NONEXISTENT____')
122 except RuntimeError:
123 return
124 self.fail("setEngine did not raise error!")
125
126 def testLSODE(self):
127 self._testIntegrator('LSODE')
128
129 def testIDA(self):
130 self._testIntegrator('IDA')
131
132 def testparameters(self):
133 self.L.load('johnpye/shm.a4c')
134 M = self.L.findType('shm').getSimulation('sim')
135 M.build()
136 I = ascpy.Integrator(M)
137 I.setEngine('IDA')
138 P = I.getParameters()
139 for p in P:
140 print p.getName(),"=",p.getValue()
141 assert len(P)==11
142 assert P[0].isStr()
143 assert P[0].getName()=="linsolver"
144 assert P[0].getValue()=='SPGMR'
145 assert P[2].getName()=="autodiff"
146 assert P[2].getValue()==True
147 assert P[7].getName()=="atolvect"
148 assert P[7].getBoolValue() == True
149 P[2].setBoolValue(False)
150 assert P[2].getBoolValue()==False
151 I.setParameters(P)
152 assert I.getParameterValue('autodiff')==False
153 I.setParameter('autodiff',True)
154 try:
155 v = I.getParameterValue('nonexist')
156 except KeyError:
157 pass
158 else:
159 self.fail('Failed to trip invalid Integrator parameter')
160
161 class TestLSODE(Ascend):
162
163 def testzill(self):
164 self.L.load('johnpye/zill.a4c')
165 T = self.L.findType('zill')
166 M = T.getSimulation('sim')
167 M.setSolver(ascpy.Solver('QRSlv'))
168 I = ascpy.Integrator(M)
169 I.setEngine('LSODE')
170 I.setMinSubStep(1e-7)
171 I.setMaxSubStep(0.001)
172 I.setMaxSubSteps(10000)
173 I.setReporter(ascpy.IntegratorReporterConsole(I))
174 I.setLinearTimesteps(ascpy.Units(), 1.0, 1.5, 5)
175 I.analyse()
176 I.solve()
177 M.run(T.getMethod('self_test'))
178
179 def testnewton(self):
180 sys.stderr.write("STARTING TESTNEWTON\n")
181 self.L.load('johnpye/newton.a4c')
182 T = self.L.findType('newton')
183 M = T.getSimulation('sim')
184 M.solve(ascpy.Solver("QRSlv"),ascpy.SolverReporter())
185 I = ascpy.Integrator(M)
186 I.setEngine('LSODE')
187 I.setParameter('rtolvect',False)
188 I.setParameter('rtol',1e-7)
189 I.setParameter('atolvect',False)
190 I.setParameter('atol',1e-7)
191 I.setMinSubStep(1e-7)
192 I.setMaxSubStep(0.001)
193 I.setMaxSubSteps(10000)
194
195 I.setReporter(ascpy.IntegratorReporterConsole(I))
196 I.setLinearTimesteps(ascpy.Units("s"), 0, 2*float(M.v)/float(M.g), 2)
197 I.analyse()
198 I.solve()
199 print "At end of simulation,"
200 print "x = %f" % M.x
201 print "v = %f" % M.v
202 M.run(T.getMethod('self_test'))
203
204 def testlotka(self):
205 self.L.load('johnpye/lotka.a4c')
206 M = self.L.findType('lotka').getSimulation('sim')
207 M.setSolver(ascpy.Solver("QRSlv"))
208 I = ascpy.Integrator(M)
209 I.setEngine('LSODE')
210 I.setReporter(ascpy.IntegratorReporterConsole(I))
211 I.setLinearTimesteps(ascpy.Units("s"), 0, 200, 5)
212 I.analyse()
213 print "Number of vars = %d" % I.getNumVars()
214 assert I.getNumVars()==2
215 I.solve()
216 assert I.getNumObservedVars() == 3;
217 assert abs(M.R - 832) < 1.0
218 assert abs(M.F - 21.36) < 0.1
219
220 #-------------------------------------------------------------------------------
221 # Testing of a external blackbox functions
222
223 class TestBlackBox(AscendSelfTester):
224 def testparsefail0(self):
225 try:
226 self.L.load('test/blackbox/parsefail0.a4c')
227 self.fail("parsefail0 should not have loaded without errors")
228 except:
229 pass
230
231 def testparsefail1(self):
232 try:
233 self.L.load('test/blackbox/parsefail1.a4c')
234 self.fail("parsefail1 should not have loaded without errors")
235 except:
236 pass
237
238 def testparsefail2(self):
239 try:
240 self.L.load('test/blackbox/parsefail2.a4c')
241 self.fail("parsefail2 should not have loaded without errors")
242 except:
243 pass
244
245 def testparsefail3(self):
246 try:
247 self.L.load('test/blackbox/parsefail3.a4c')
248 self.fail("parsefail3 should not have loaded without errors")
249 except:
250 pass
251
252 def testparsefail4(self):
253 try:
254 self.L.load('test/blackbox/parsefail4.a4c')
255 self.fail("parsefail4 should not have loaded")
256 except:
257 pass
258
259 def testfail1(self):
260 """Mismatched arg counts check-- tests bbox, not ascend."""
261 self.L.load('test/blackbox/fail1.a4c')
262 M = self.L.findType('fail1').getSimulation('sim')
263 M.solve(ascpy.Solver("QRSlv"),ascpy.SolverReporter())
264
265 def testfail2(self):
266 """Incorrect data arg check -- tests bbox, not ascend"""
267 self.L.load('test/blackbox/fail2.a4c')
268 M = self.L.findType('fail2').getSimulation('sim')
269 M.solve(ascpy.Solver("QRSlv"),ascpy.SolverReporter())
270
271 def testpass1(self):
272 """simple single bbox forward solve"""
273 M = self._run('pass1',filename='test/blackbox/pass.a4c')
274
275 def testpass2(self):
276 """simple single bbox reverse solve"""
277 M = self._run('pass2',filename='test/blackbox/pass.a4c')
278
279 def testpass3(self):
280 """simple double bbox solve"""
281 M = self._run('pass3',filename='test/blackbox/pass3.a4c')
282
283 def testpass4(self):
284 """simple double bbox reverse solve"""
285 M = self._run('pass4',filename='test/blackbox/pass3.a4c')
286
287 def testpass5(self):
288 M = self._run('pass5',filename='test/blackbox/pass5.a4c')
289
290 def testpass6(self):
291 M = self._run('pass6',filename='test/blackbox/pass5.a4c')
292
293 def testpass7(self):
294 M = self._run('pass7',filename='test/blackbox/passmerge.a4c')
295
296 def testpass8(self):
297 M = self._run('pass8',filename='test/blackbox/passmerge.a4c')
298
299 def testpass9(self):
300 M = self._run('pass9',filename='test/blackbox/passmerge.a4c')
301
302 def testpass10(self):
303 M = self._run('pass10',filename='test/blackbox/passmerge.a4c')
304
305 def testpass11(self):
306 M = self._run('pass11',filename='test/blackbox/passmerge.a4c')
307
308 def testpass12(self):
309 M = self._run('pass12',filename='test/blackbox/passmerge.a4c')
310
311 def testpass13(self):
312 """cross-merged input/output solve"""
313 M = self._run('pass13',filename='test/blackbox/passmerge.a4c')
314
315 def testpass14(self):
316 """cross-merged input/output reverse solve"""
317 M = self._run('pass14',filename='test/blackbox/passmerge.a4c')
318
319 def testpass20(self):
320 M = self._run('pass20',filename='test/blackbox/passarray.a4c')
321
322 def testparsefail21(self):
323 """dense array of black boxes wrong syntax"""
324 try:
325 self.L.load('test/blackbox/parsefail21.a4c')
326 self.fail("parsefail21 should not have loaded without errors")
327 except:
328 pass
329
330 def testpass22(self):
331 M = self._run('pass22',filename='test/blackbox/passarray.a4c')
332
333 def testpass23(self):
334 M = self._run('pass23',filename='test/blackbox/passarray.a4c')
335
336 def testpass61(self):
337 M = self._run('pass61',filename='test/blackbox/reinstantiate.a4c')
338
339 def testpass62(self):
340 M = self._run('pass62',filename='test/blackbox/reinstantiate.a4c')
341
342 def testpass64(self):
343 M = self._run('pass64',filename='test/blackbox/reinstantiate.a4c')
344
345 def testpass65(self):
346 M = self._run('pass65',filename='test/blackbox/reinstantiate.a4c')
347
348 def testpass66(self):
349 M = self._run('pass66',filename='test/blackbox/reinstantiate.a4c')
350
351 def testpass67(self):
352 M = self._run('pass67',filename='test/blackbox/reinstantiate.a4c')
353
354 class TestExtFn(AscendSelfTester):
355 def testextfntest(self):
356 M = self._run('extfntest',filename='johnpye/extfn/extfntest.a4c')
357 self.assertAlmostEqual(M.y, 2);
358 self.assertAlmostEqual(M.x, 1);
359 self.assertAlmostEqual(M.y, M.x + 1);
360
361 # THIS TEST FAILS
362 # def testextrelfor(self):
363 # self.L.load('johnpye/extfn/extrelfor.a4c')
364 # T = self.L.findType('extrelfor')
365 # M = T.getSimulation('sim')
366 # M.solve(ascpy.Solver('QRSlv'),ascpy.SolverReporter())
367 # print "x[1] = %f" % M.x[1]
368 # print "x[2] = %f" % M.x[2]
369 # print "x[3] = %f" % M.x[3]
370 # M.run(T.getMethod('self_test'))
371
372 def testextrelrepeat(self):
373 M = self._run('extrelrepeat',filename='johnpye/extfn/extrelrepeat.a4c')
374
375 #-------------------------------------------------------------------------------
376 # Testing of a ExtPy - external python methods
377
378 class TestExtPy(AscendSelfTester):
379 def testextpytest(self):
380 print "-------------------=--=-=-=-"
381 M = self._run('extpytest',filename='johnpye/extpy/extpytest.a4c')
382
383 #-------------------------------------------------------------------------------
384 # Testing of freesteam external steam properties functions
385
386 with_freesteam = True
387 try:
388 import freesteam
389 have_freesteam = True
390 except ImportError,e:
391 have_freesteam = False
392
393 if with_freesteam and have_freesteam:
394 class TestFreesteam(Ascend):
395 def testload(self):
396 self.L.load('johnpye/thermalequilibrium2.a4c')
397
398 def testinstantiate(self):
399 self.testload()
400 M = self.L.findType('thermalequilibrium2').getSimulation('sim')
401
402 def testsolve(self):
403 self.testinstantiate()
404 M.setSolver(ascpy.Solver("QRSlv"))
405 #I = ascpy.Integrator(M)
406 #I.setEngine('LSODE')
407 #I.setReporter(ascpy.IntegratorReporterConsole(I))
408 #I.setLinearTimesteps(ascpy.Units("s"), 0, 3000, 30)
409 #I.setMinSubStep(0.01)
410 #I.setInitialSubStep(0.1)
411 #I.analyse()
412 #print "Number of vars = %d" % I.getNumVars()
413 #assert I.getNumVars()==2
414 #I.solve()
415 #assert I.getNumObservedVars() == 3;
416 #assert abs(M.R - 832) < 1.0
417 #assert abs(M.F - 21.36) < 0.1
418
419
420 #-------------------------------------------------------------------------------
421 # Testing of IDA models using DENSE linear solver
422
423 class TestIDADENSE(Ascend):
424 """IDA DAE integrator, DENSE linear solver"""
425
426 def testnewton(self):
427 sys.stderr.write("STARTING TESTNEWTON\n")
428 self.L.load('johnpye/newton.a4c')
429 T = self.L.findType('newton')
430 M = T.getSimulation('sim')
431 M.solve(ascpy.Solver("QRSlv"),ascpy.SolverReporter())
432 I = ascpy.Integrator(M)
433 I.setEngine('IDA')
434 I.setParameter('linsolver','DENSE')
435 I.setParameter('safeeval',True)
436 I.setParameter('rtol',1e-8)
437 I.setMaxSubStep(0.001)
438 I.setMaxSubSteps(10000)
439
440 I.setReporter(ascpy.IntegratorReporterConsole(I))
441 I.setLinearTimesteps(ascpy.Units("s"), 0, 2*float(M.v)/float(M.g), 2)
442 I.analyse()
443 I.solve()
444 print "At end of simulation,"
445 print "x = %f" % M.x
446 print "v = %f" % M.v
447 M.run(T.getMethod('self_test'))
448
449 def testlotkaDENSE(self):
450 self.L.load('johnpye/lotka.a4c')
451 M = self.L.findType('lotka').getSimulation('sim')
452 M.setSolver(ascpy.Solver("QRSlv"))
453 I = ascpy.Integrator(M)
454 I.setEngine('IDA')
455 I.setReporter(ascpy.IntegratorReporterConsole(I))
456 I.setLinearTimesteps(ascpy.Units("s"), 0, 200, 5);
457 I.setParameter('linsolver','DENSE')
458 I.setParameter('rtol',1e-8);
459 I.analyse()
460 assert I.getNumVars()==2
461 assert abs(M.R - 1000) < 1e-300
462 I.solve()
463 assert I.getNumObservedVars() == 3
464 assert abs(M.R - 832) < 1.0
465 assert abs(M.F - 21.36) < 0.1
466
467 def testdenx(self):
468 print "-----------------------------====="
469 self.L.load('johnpye/idadenx.a4c')
470 M = self.L.findType('idadenx').getSimulation('sim')
471 M.setSolver(ascpy.Solver("QRSlv"))
472 I = ascpy.Integrator(M)
473 I.setEngine('IDA')
474 I.setParameter('calcic','YA_YPD')
475 I.setParameter('linsolver','DENSE')
476 I.setReporter(ascpy.IntegratorReporterConsole(I))
477 I.setLogTimesteps(ascpy.Units("s"), 0.4, 4e10, 11)
478 I.setMaxSubStep(0);
479 I.setInitialSubStep(0)
480 I.setMaxSubSteps(0);
481 I.setParameter('autodiff',True)
482 I.analyse()
483 I.solve()
484 assert abs(float(M.y1) - 5.1091e-08) < 2e-9
485 assert abs(float(M.y2) - 2.0437e-13) < 2e-14
486 assert abs(float(M.y3) - 1.0) < 1e-5
487
488 def testkryxDENSE(self):
489 self.L.load('johnpye/idakryx.a4c')
490 M = self.L.findType('idakryx').getSimulation('sim')
491 M.setSolver(ascpy.Solver('QRSlv'))
492 M.build()
493 I = ascpy.Integrator(M)
494 I.setEngine('IDA')
495 I.setReporter(ascpy.IntegratorReporterConsole(I))
496 I.setParameter('linsolver','DENSE')
497 I.setParameter('maxl',8)
498 I.setParameter('gsmodified',False)
499 I.setParameter('autodiff',True)
500 I.setParameter('rtol',0)
501 I.setParameter('atol',1e-3);
502 I.setParameter('atolvect',False)
503 I.setParameter('calcic','YA_YDP')
504 I.analyse()
505 I.setLogTimesteps(ascpy.Units("s"), 0.01, 10.24, 11)
506 I.solve()
507 assert abs(M.u[2][2].getValue()) < 1e-5
508
509 #-------------------------------------------------------------------------------
510 # Testing of IDA models using SPGMR linear solver (Krylov)
511
512 # these tests are disabled until SPGMR preconditioning has been implemented
513 class TestIDASPGMR:#(Ascend):
514 def testlotka(self):
515 self.L.load('johnpye/lotka.a4c')
516 M = self.L.findType('lotka').getSimulation('sim')
517 M.setSolver(ascpy.Solver("QRSlv"))
518 I = ascpy.Integrator(M)
519 I.setEngine('IDA')
520 I.setReporter(ascpy.IntegratorReporterConsole(I))
521 I.setLinearTimesteps(ascpy.Units("s"), 0, 200, 5)
522 I.setParameter('rtol',1e-8)
523 I.analyse()
524 assert I.getNumVars()==2
525 assert abs(M.R - 1000) < 1e-300
526 I.solve()
527 assert I.getNumObservedVars() == 3
528 assert abs(M.R - 832) < 1.0
529 assert abs(M.F - 21.36) < 0.1
530
531
532 def testkryx(self):
533 self.L.load('johnpye/idakryx.a4c')
534 M = self.L.findType('idakryx').getSimulation('sim')
535 M.build()
536 I = ascpy.Integrator(M)
537 I.setEngine('IDA')
538 I.setReporter(ascpy.IntegratorReporterConsole(I))
539 I.setParameter('linsolver','SPGMR')
540 I.setParameter('prec','JACOBI')
541 I.setParameter('maxl',8)
542 I.setParameter('gsmodified',False)
543 I.setParameter('autodiff',True)
544 I.setParameter('gsmodified',True)
545 I.setParameter('rtol',0)
546 I.setParameter('atol',1e-3);
547 I.setParameter('atolvect',False)
548 I.setParameter('calcic','Y')
549 I.analyse()
550 I.setLogTimesteps(ascpy.Units("s"), 0.01, 10.24, 10);
551 print M.udot[1][3]
552 I.solve()
553 assert 0
554
555 def testzill(self):
556 self.L.load('johnpye/zill.a4c')
557 T = self.L.findType('zill')
558 M = T.getSimulation('sim')
559 M.setSolver(ascpy.Solver('QRSlv'))
560 I = ascpy.Integrator(M)
561 I.setEngine('IDA')
562 I.setParameter('safeeval',False)
563 I.setMinSubStep(1e-7)
564 I.setMaxSubStep(0.001)
565 I.setMaxSubSteps(10000)
566 I.setReporter(ascpy.IntegratorReporterConsole(I))
567 I.setLinearTimesteps(ascpy.Units(), 1.0, 1.5, 5)
568 I.analyse()
569 I.solve()
570 M.run(T.getMethod('self_test'))
571
572 def testdenxSPGMR(self):
573 self.L.load('johnpye/idadenx.a4c')
574 M = self.L.findType('idadenx').getSimulation('sim')
575 M.setSolver(ascpy.Solver('QRSlv'))
576 I = ascpy.Integrator(M)
577 I.setEngine('IDA')
578 I.setReporter(ascpy.IntegratorReporterConsole(I))
579 I.setLogTimesteps(ascpy.Units("s"), 0.4, 4e10, 11)
580 I.setMaxSubStep(0);
581 I.setInitialSubStep(0);
582 I.setMaxSubSteps(0);
583 I.setParameter('autodiff',True)
584 I.setParameter('linsolver','SPGMR')
585 I.setParameter('gsmodified',False)
586 I.setParameter('maxncf',10)
587 I.analyse()
588 I.solve()
589 assert abs(float(M.y1) - 5.1091e-08) < 1e-10
590 assert abs(float(M.y2) - 2.0437e-13) < 1e-15
591 assert abs(float(M.y3) - 1.0) < 1e-5
592
593 # move code above down here if you want to temporarily avoid testing it
594 class NotToBeTested:
595 def nothing(self):
596 pass
597
598 if __name__=='__main__':
599 atexit.register(ascpy.shutdown)
600 #suite = unittest.TestSuite()
601 #suite = unittest.defaultTestLoader.loadTestsFromName('__main__')
602 #unittest.TextTestRunner(verbosity=2).run(suite)
603 unittest.main()

john.pye@anu.edu.au
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