test_rules_numerics.py 2.2 KB

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  1. from src.rules.numerics import match_divide_numerics, divide_numerics, \
  2. add_numerics
  3. from src.possibilities import Possibility as P
  4. from src.node import ExpressionLeaf as L
  5. from tests.rulestestcase import RulesTestCase
  6. from tests.test_rules_poly import tree
  7. class TestRulesNumerics(RulesTestCase):
  8. def test_match_divide_numerics(self):
  9. # FIXME: Parser does not recognize floats
  10. #i2, i3, i6, f1, f2, f3 = tree('2,3,6,1.0,2.0,3.0')
  11. i2, i3, i6 = tree('2,3,6')
  12. f1, f2, f3 = L(1.0), L(2.0), L(3.0)
  13. root = i6 / i2
  14. possibilities = match_divide_numerics(root)
  15. self.assertEqualPos(possibilities,
  16. [P(root, divide_numerics, (6, 2))])
  17. root = i3 / i2
  18. possibilities = match_divide_numerics(root)
  19. self.assertEqualPos(possibilities, [])
  20. root = f3 / i2
  21. possibilities = match_divide_numerics(root)
  22. self.assertEqualPos(possibilities,
  23. [P(root, divide_numerics, (3.0, 2))])
  24. root = i3 / f2
  25. possibilities = match_divide_numerics(root)
  26. self.assertEqualPos(possibilities,
  27. [P(root, divide_numerics, (3, 2.0))])
  28. root = f3 / f2
  29. possibilities = match_divide_numerics(root)
  30. self.assertEqualPos(possibilities,
  31. [P(root, divide_numerics, (3.0, 2.0))])
  32. root = i3 / f1
  33. possibilities = match_divide_numerics(root)
  34. self.assertEqualPos(possibilities,
  35. [P(root, divide_numerics, (3, 1))])
  36. def test_divide_numerics(self):
  37. # FIXME: Parser does not recognize floats
  38. #i2, i3, i6, f2, f3 = tree('2,3,6,2.0,3.0')
  39. i2, i3, i6 = tree('2,3,6')
  40. f2, f3 = L(2.0), L(3.0)
  41. self.assertEqual(divide_numerics(i6 / i2, (6, 2)), 3)
  42. self.assertEqual(divide_numerics(f3 / i2, (3.0, 2)), 1.5)
  43. self.assertEqual(divide_numerics(i3 / f2, (3, 2.0)), 1.5)
  44. self.assertEqual(divide_numerics(f3 / f2, (3.0, 2.0)), 1.5)
  45. def test_add_numerics(self):
  46. l0, l1 = tree('1,2')
  47. self.assertEqual(add_numerics(l0 + l1, (l0, l1, 1, 2)), 3)
  48. def test_add_numerics(self):
  49. l0, a, l1 = tree('1,a,2')
  50. self.assertEqual(add_numerics(l0 + a + l1, (l0, l1, 1, 2)), L(3) + a)