test_rules_poly.py 3.4 KB

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  1. import unittest
  2. from src.rules.poly import match_combine_polynomes, combine_polynomes
  3. from src.possibilities import Possibility as P
  4. from src.parser import Parser
  5. from tests.parser import ParserWrapper
  6. def tree(exp, **kwargs):
  7. return ParserWrapper(Parser, **kwargs).run([exp])
  8. class TestRulesPoly(unittest.TestCase):
  9. #def test_match_combine_polynomes_numeric_combinations(self):
  10. # l0, l1, l2 = L(1), L(2), L(2)
  11. # plus = N('+', N('+', l0, l1), l2)
  12. # p = match_combine_polynomes(plus)
  13. # self.assertEqualPos(p, [P(plus, combine_polynomes, (l0, l1)),
  14. # P(plus, combine_polynomes, (l0, l2)),
  15. # P(plus, combine_polynomes, (l1, l2))])
  16. def assertEqualPos(self, possibilities, expected):
  17. self.assertEqual(len(possibilities), len(expected))
  18. for p, e in zip(possibilities, expected):
  19. self.assertEqual(p.root, e.root)
  20. for pair in zip(p.args, e.args):
  21. self.assertEqual(*pair)
  22. self.assertEqual(p, e)
  23. def test_numbers(self):
  24. l1, l2 = root = tree('1+2')
  25. self.assertEqualPos(match_combine_polynomes(root),
  26. [P(root, combine_polynomes, ((l1, (l1, l1, l1)),
  27. (l2, (l1, l2, l1))))])
  28. def test_identifiers_basic(self):
  29. l1, l2 = tree('1,2')
  30. a1, a2 = root = tree('a+a')
  31. self.assertEqualPos(match_combine_polynomes(root),
  32. [P(root, combine_polynomes, ((a1, (l1, a1, l1)),
  33. (a2, (l1, a2, l1))))])
  34. def test_identifiers_normal(self):
  35. l1, l2 = tree('1,2')
  36. a1, a2 = root = tree('a+2a')
  37. self.assertEqualPos(match_combine_polynomes(root),
  38. [P(root, combine_polynomes, ((a1, (l1, a1, l1)),
  39. (a2, (l2, a2[1], l1))))])
  40. def test_identifiers_reverse(self):
  41. l1, l2, la = tree('1,2,a')
  42. a1, a2 = root = tree('a+a*2')
  43. self.assertEqualPos(match_combine_polynomes(root),
  44. [P(root, combine_polynomes, ((a1, (l1, a1, l1)),
  45. (a2, (l2, la, l1))))])
  46. def test_identifiers_exponent(self):
  47. l1, l2 = tree('1,2')
  48. a1, a2 = root = tree('a2+a2')
  49. self.assertEqualPos(match_combine_polynomes(root),
  50. [P(root, combine_polynomes, ((a1, (l1, a1[0], l2)),
  51. (a2, (l1, a2[0], l2))))])
  52. def test_basic_subexpressions(self):
  53. a_b, c, d, l1, l5, l7 = tree('a+b,c,d,1,5,7')
  54. left, right = root = tree('(a+b)^d + (a+b)^d')
  55. self.assertEqual(left, right)
  56. self.assertEqualPos(match_combine_polynomes(root),
  57. [P(root, combine_polynomes, ((left, (l1, a_b, d)),
  58. (right, (l1, a_b, d))))])
  59. left, right = root = tree('5(a+b)^d + 7(a+b)^d')
  60. self.assertEqualPos(match_combine_polynomes(root),
  61. [P(root, combine_polynomes, ((left, (l5, a_b, d)),
  62. (right, (l7, a_b, d))))])
  63. left, right = root = tree('c(a+b)^d + c(a+b)^d')
  64. self.assertEqual(left, right)
  65. self.assertEqualPos(match_combine_polynomes(root),
  66. [P(root, combine_polynomes, ((left, (c, a_b, d)),
  67. (right, (c, a_b, d))))])