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1 | 1 | from __future__ import annotations |
2 | 2 |
|
| 3 | +from collections.abc import Iterator |
| 4 | +from dataclasses import dataclass |
3 | 5 |
|
| 6 | + |
| 7 | +@dataclass |
4 | 8 | class Node: |
5 | | - """ |
6 | | - A Node has data variable and pointers to Nodes to its left and right. |
7 | | - """ |
8 | | - |
9 | | - def __init__(self, data: int) -> None: |
10 | | - self.data = data |
11 | | - self.left: Node | None = None |
12 | | - self.right: Node | None = None |
13 | | - |
14 | | - |
15 | | -def display(tree: Node | None) -> None: # In Order traversal of the tree |
16 | | - """ |
17 | | - >>> root = Node(1) |
18 | | - >>> root.left = Node(0) |
19 | | - >>> root.right = Node(2) |
20 | | - >>> display(root) |
21 | | - 0 |
22 | | - 1 |
23 | | - 2 |
24 | | - >>> display(root.right) |
25 | | - 2 |
26 | | - """ |
27 | | - if tree: |
28 | | - display(tree.left) |
29 | | - print(tree.data) |
30 | | - display(tree.right) |
31 | | - |
32 | | - |
33 | | -def depth_of_tree(tree: Node | None) -> int: |
34 | | - """ |
35 | | - Recursive function that returns the depth of a binary tree. |
36 | | -
|
37 | | - >>> root = Node(0) |
38 | | - >>> depth_of_tree(root) |
39 | | - 1 |
40 | | - >>> root.left = Node(0) |
41 | | - >>> depth_of_tree(root) |
42 | | - 2 |
43 | | - >>> root.right = Node(0) |
44 | | - >>> depth_of_tree(root) |
45 | | - 2 |
46 | | - >>> root.left.right = Node(0) |
47 | | - >>> depth_of_tree(root) |
48 | | - 3 |
49 | | - >>> depth_of_tree(root.left) |
50 | | - 2 |
51 | | - """ |
52 | | - return 1 + max(depth_of_tree(tree.left), depth_of_tree(tree.right)) if tree else 0 |
53 | | - |
54 | | - |
55 | | -def is_full_binary_tree(tree: Node) -> bool: |
56 | | - """ |
57 | | - Returns True if this is a full binary tree |
58 | | -
|
59 | | - >>> root = Node(0) |
60 | | - >>> is_full_binary_tree(root) |
61 | | - True |
62 | | - >>> root.left = Node(0) |
63 | | - >>> is_full_binary_tree(root) |
64 | | - False |
65 | | - >>> root.right = Node(0) |
66 | | - >>> is_full_binary_tree(root) |
67 | | - True |
68 | | - >>> root.left.left = Node(0) |
69 | | - >>> is_full_binary_tree(root) |
70 | | - False |
71 | | - >>> root.right.right = Node(0) |
72 | | - >>> is_full_binary_tree(root) |
73 | | - False |
74 | | - """ |
75 | | - if not tree: |
76 | | - return True |
77 | | - if tree.left and tree.right: |
78 | | - return is_full_binary_tree(tree.left) and is_full_binary_tree(tree.right) |
79 | | - else: |
80 | | - return not tree.left and not tree.right |
81 | | - |
82 | | - |
83 | | -def main() -> None: # Main function for testing. |
84 | | - tree = Node(1) |
85 | | - tree.left = Node(2) |
86 | | - tree.right = Node(3) |
87 | | - tree.left.left = Node(4) |
88 | | - tree.left.right = Node(5) |
89 | | - tree.left.right.left = Node(6) |
90 | | - tree.right.left = Node(7) |
91 | | - tree.right.left.left = Node(8) |
92 | | - tree.right.left.left.right = Node(9) |
93 | | - |
94 | | - print(is_full_binary_tree(tree)) |
95 | | - print(depth_of_tree(tree)) |
96 | | - print("Tree is: ") |
97 | | - display(tree) |
| 9 | + data: int |
| 10 | + left: Node | None = None |
| 11 | + right: Node | None = None |
| 12 | + |
| 13 | + def __iter__(self) -> Iterator[int]: |
| 14 | + if self.left: |
| 15 | + yield from self.left |
| 16 | + yield self.data |
| 17 | + if self.right: |
| 18 | + yield from self.right |
| 19 | + |
| 20 | + def __len__(self) -> int: |
| 21 | + return sum(1 for _ in self) |
| 22 | + |
| 23 | + def is_full(self) -> bool: |
| 24 | + if not self or (not self.left and not self.right): |
| 25 | + return True |
| 26 | + if self.left and self.right: |
| 27 | + return self.left.is_full() and self.right.is_full() |
| 28 | + return False |
| 29 | + |
| 30 | + |
| 31 | +@dataclass |
| 32 | +class BinaryTree: |
| 33 | + root: Node |
| 34 | + |
| 35 | + def __iter__(self) -> Iterator[int]: |
| 36 | + return iter(self.root) |
| 37 | + |
| 38 | + def __len__(self) -> int: |
| 39 | + return len(self.root) |
| 40 | + |
| 41 | + @classmethod |
| 42 | + def small_tree(cls) -> BinaryTree: |
| 43 | + """ |
| 44 | + Return a small binary tree with 3 nodes. |
| 45 | + >>> binary_tree = BinaryTree.small_tree() |
| 46 | + >>> len(binary_tree) |
| 47 | + 3 |
| 48 | + >>> list(binary_tree) |
| 49 | + [1, 2, 3] |
| 50 | + """ |
| 51 | + binary_tree = BinaryTree(Node(2)) |
| 52 | + binary_tree.root.left = Node(1) |
| 53 | + binary_tree.root.right = Node(3) |
| 54 | + return binary_tree |
| 55 | + |
| 56 | + @classmethod |
| 57 | + def medium_tree(cls) -> BinaryTree: |
| 58 | + """ |
| 59 | + Return a medium binary tree with 3 nodes. |
| 60 | + >>> binary_tree = BinaryTree.medium_tree() |
| 61 | + >>> len(binary_tree) |
| 62 | + 7 |
| 63 | + >>> list(binary_tree) |
| 64 | + [1, 2, 3, 4, 5, 6, 7] |
| 65 | + """ |
| 66 | + binary_tree = BinaryTree(Node(4)) |
| 67 | + binary_tree.root.left = two = Node(2) |
| 68 | + two.left = Node(1) |
| 69 | + two.right = Node(3) |
| 70 | + binary_tree.root.right = five = Node(5) |
| 71 | + five.right = six = Node(6) |
| 72 | + six.right = Node(7) |
| 73 | + return binary_tree |
| 74 | + |
| 75 | + def depth(self) -> int: |
| 76 | + """ |
| 77 | + Returns the depth of the tree |
| 78 | +
|
| 79 | + >>> BinaryTree(Node(1)).depth() |
| 80 | + 1 |
| 81 | + >>> BinaryTree.small_tree().depth() |
| 82 | + 2 |
| 83 | + >>> BinaryTree.medium_tree().depth() |
| 84 | + 4 |
| 85 | + """ |
| 86 | + return self._depth(self.root) |
| 87 | + |
| 88 | + def _depth(self, node: Node | None) -> int: # noqa: UP007 |
| 89 | + if not node: |
| 90 | + return 0 |
| 91 | + return 1 + max(self._depth(node.left), self._depth(node.right)) |
| 92 | + |
| 93 | + def is_full(self) -> bool: |
| 94 | + """ |
| 95 | + Returns True if the tree is full |
| 96 | +
|
| 97 | + >>> BinaryTree(Node(1)).is_full() |
| 98 | + True |
| 99 | + >>> BinaryTree.small_tree().is_full() |
| 100 | + True |
| 101 | + >>> BinaryTree.medium_tree().is_full() |
| 102 | + False |
| 103 | + """ |
| 104 | + return self.root.is_full() |
98 | 105 |
|
99 | 106 |
|
100 | 107 | if __name__ == "__main__": |
101 | | - main() |
| 108 | + import doctest |
| 109 | + |
| 110 | + doctest.testmod() |
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