uv

Finished
11def solve(puzzle: str) -> dict[str, int] | None:
2 pass
2 """
3 Solve an alphametics puzzle.
4
5 Args:
6 puzzle: A string representing the alphametics puzzle (e.g., "SEND + MORE == MONEY")
7
8 Returns:
9 A dictionary mapping letters to digits that solves the puzzle, or None if no solution exists.
10
11 Example:
12 >>> solve("SEND + MORE == MONEY")
13 {'S': 9, 'E': 5, 'N': 6, 'D': 7, 'M': 1, 'O': 0, 'R': 8, 'Y': 2}
14 """
15 # Edge Case: Empty or None puzzle
16 if not puzzle:
17 return None
18
19 # Parse the puzzle
20 parts = puzzle.replace("==", "=").replace(" ", "").split("=")
21
22 # Edge Case: Invalid puzzle format
23 if len(parts) != 2:
24 return None
25
26 right_side = parts[1]
27 left_sides = parts[0].split("+")
28
29 # Edge Case: No terms on the left side
30 if not left_sides or not all(left_sides):
31 return None
32
33 # Edge Case: Empty right side
34 if not right_side:
35 return None
36
37 # Extract all unique letters
38 letters = set()
39 for part in left_sides + [right_side]:
40 letters.update(part)
41
42 # Edge Case: No letters in puzzle
43 if not letters:
44 return None
45
46 # Extract first letters (can't be zero)
47 first_letters = {word[0] for word in left_sides + [right_side]}
48
49 # Edge Case: More than 10 unique letters (impossible to solve)
50 if len(letters) > 10:
51 return None
52
53 # Convert to lists for indexing
54 letters = list(letters)
55
56 def evaluate(assignment):
57 """Evaluate if the current assignment satisfies the puzzle."""
58 # Check if any first letter is assigned zero
59 for letter in first_letters:
60 if assignment.get(letter) == 0:
61 return False
62
63 # Convert words to numbers
64 left_values = []
65 for word in left_sides:
66 num = 0
67 for char in word:
68 if char not in assignment:
69 return False # Incomplete assignment
70 num = num * 10 + assignment[char]
71 left_values.append(num)
72
73 right_value = 0
74 for char in right_side:
75 if char not in assignment:
76 return False # Incomplete assignment
77 right_value = right_value * 10 + assignment[char]
78
79 return sum(left_values) == right_value
80
81 def backtrack(index, assignment, used_digits):
82 """Backtracking search for a valid assignment."""
83 # Base case: all letters assigned
84 if index == len(letters):
85 if evaluate(assignment):
86 return assignment.copy()
87 return None
88
89 # Try each digit for the current letter
90 letter = letters[index]
91 for digit in range(10):
92 # Skip if digit already used
93 if digit in used_digits:
94 continue
95
96 # Make assignment
97 assignment[letter] = digit
98 used_digits.add(digit)
99
100 # Recurse
101 result = backtrack(index + 1, assignment, used_digits)
102 if result is not None:
103 return result
104
105 # Backtrack
106 del assignment[letter]
107 used_digits.remove(digit)
108
109 return None
110
111 # Start backtracking
112 result = backtrack(0, {}, set())
113 return result
114
115# Handled Edge Cases: Empty or None puzzle, Invalid puzzle format, No terms on the left side, Empty right side, No letters in puzzle, More than 10 unique letters (impossible to solve)
Test NameStatus
test_leading_zero_solution_is_invalid
Pass
test_puzzle_with_eight_letters
Pass
test_puzzle_with_four_letters
Pass
test_puzzle_with_seven_letters
Pass
test_puzzle_with_six_letters
Pass
test_puzzle_with_ten_letters
Pass
test_puzzle_with_ten_letters_and_199_addends
Pass
test_puzzle_with_three_letters
Pass
test_puzzle_with_two_digits_final_carry
Pass
test_solution_must_have_unique_value_for_each_letter
Pass

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