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  1. import unittest
  2. from datetime import date, datetime
  3. from json import dumps
  4. from kosmorrolib import events
  5. from kosmorrolib.data import Event, ASTERS
  6. from kosmorrolib.core import get_timescale
  7. from unittest_data_provider import data_provider
  8. from kosmorrolib.exceptions import OutOfRangeDateError
  9. class EventTestCase(unittest.TestCase):
  10. def setUp(self) -> None:
  11. self.maxDiff = None
  12. def test_event_only_accepts_valid_values(self):
  13. with self.assertRaises(ValueError):
  14. Event('SUPERNOVA', None, get_timescale().now())
  15. expected_events_provider = lambda: (
  16. (date(2020, 2, 7), []),
  17. (date(2020, 10, 13), [Event('OPPOSITION', [ASTERS[4]], datetime(2020, 10, 13, 23, 25))]),
  18. (date(2022, 12, 8), [Event('CONJUNCTION', [ASTERS[1], ASTERS[4]], datetime(2022, 12, 8, 4, 18)),
  19. Event('OPPOSITION', [ASTERS[4]], datetime(2022, 12, 8, 5, 41))]),
  20. (date(2025, 1, 16), [Event('OPPOSITION', [ASTERS[4]], datetime(2025, 1, 16, 2, 38))]),
  21. (date(2027, 2, 19), [Event('MOON_PERIGEE', [ASTERS[1]], datetime(2027, 2, 19, 7, 38)),
  22. Event('OPPOSITION', [ASTERS[4]], datetime(2027, 2, 19, 15, 50))]),
  23. (date(2020, 1, 2), [Event('MOON_APOGEE', [ASTERS[1]], datetime(2020, 1, 2, 1, 32)),
  24. Event('CONJUNCTION', [ASTERS[2], ASTERS[5]], datetime(2020, 1, 2, 16, 41))]),
  25. (date(2020, 1, 12), [Event('CONJUNCTION', [ASTERS[2], ASTERS[6]], datetime(2020, 1, 12, 9, 51)),
  26. Event('CONJUNCTION', [ASTERS[2], ASTERS[9]], datetime(2020, 1, 12, 10, 13)),
  27. Event('CONJUNCTION', [ASTERS[6], ASTERS[9]], datetime(2020, 1, 12, 16, 57))]),
  28. (date(2020, 2, 10), [Event('MAXIMAL_ELONGATION', [ASTERS[2]], datetime(2020, 2, 10, 13, 46), details='18.2°'),
  29. Event('MOON_PERIGEE', [ASTERS[1]], datetime(2020, 2, 10, 20, 34))]),
  30. (date(2020, 3, 24), [Event('MAXIMAL_ELONGATION', [ASTERS[2]], datetime(2020, 3, 24, 1, 56), details='27.8°'),
  31. Event('MOON_APOGEE', [ASTERS[1]], datetime(2020, 3, 24, 15, 39)),
  32. Event('MAXIMAL_ELONGATION', [ASTERS[3]], datetime(2020, 3, 24, 21, 58), details='46.1°')]),
  33. (date(2005, 6, 16), [Event('OCCULTATION', [ASTERS[1], ASTERS[5]], datetime(2005, 6, 16, 6, 31))]),
  34. (date(2020, 4, 7), [Event('MOON_PERIGEE', [ASTERS[1]], datetime(2020, 4, 7, 18, 14))]),
  35. (date(2020, 1, 29), [Event('MOON_APOGEE', [ASTERS[1]], datetime(2020, 1, 29, 21, 32))])
  36. )
  37. @data_provider(expected_events_provider)
  38. def test_search_events(self, d: date, expected_events: [Event]):
  39. actual_events = events.search_events(d)
  40. self.assertEqual(len(expected_events), len(actual_events),
  41. 'Expected %d elements, got %d for date %s.\n%s' % (len(expected_events),
  42. len(actual_events),
  43. d.isoformat(),
  44. actual_events))
  45. for i, expected_event in enumerate(expected_events):
  46. actual_event = actual_events[i]
  47. # Remove unnecessary precision (seconds and microseconds)
  48. actual_event.start_time = datetime(actual_event.start_time.year,
  49. actual_event.start_time.month,
  50. actual_event.start_time.day,
  51. actual_event.start_time.hour,
  52. actual_event.start_time.minute)
  53. self.assertEqual(expected_event.__dict__, actual_event.__dict__)
  54. def test_get_events_raises_exception_on_out_of_date_range(self):
  55. with self.assertRaises(OutOfRangeDateError):
  56. events.search_events(date(1789, 5, 5))
  57. if __name__ == '__main__':
  58. unittest.main()