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Merge branch 'master' of https://github.com/ShauryaDusht/Python
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commit
bc93da6d92
@ -196,8 +196,13 @@ def get_left_most(root: MyNode) -> Any:
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def del_node(root: MyNode, data: Any) -> MyNode | None:
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def del_node(root: MyNode, data: Any) -> MyNode | None:
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if root is None:
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print("Node is empty, nothing to delete")
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return None
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left_child = root.get_left()
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left_child = root.get_left()
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right_child = root.get_right()
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right_child = root.get_right()
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if root.get_data() == data:
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if root.get_data() == data:
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if left_child is not None and right_child is not None:
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if left_child is not None and right_child is not None:
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temp_data = get_left_most(right_child)
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temp_data = get_left_most(right_child)
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@ -209,32 +214,41 @@ def del_node(root: MyNode, data: Any) -> MyNode | None:
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root = right_child
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root = right_child
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else:
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else:
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return None
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return None
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elif root.get_data() > data:
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elif data < root.get_data():
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if left_child is None:
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if left_child is None:
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print("No such data")
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print(f"No such data ({data}) exists in the left subtree.")
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return root
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return root
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else:
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else:
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root.set_left(del_node(left_child, data))
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root.set_left(del_node(left_child, data))
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# root.get_data() < data
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elif right_child is None:
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return root
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else:
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else:
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root.set_right(del_node(right_child, data))
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if right_child is None:
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print(f"No such data ({data}) exists in the right subtree.")
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return root
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else:
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root.set_right(del_node(right_child, data))
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if get_height(right_child) - get_height(left_child) == 2:
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# Update the height of the node
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root.set_height(
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1 + my_max(get_height(root.get_left()), get_height(root.get_right()))
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)
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# Get the balance factor
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balance_factor = get_height(root.get_right()) - get_height(root.get_left())
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# Balance the tree
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if balance_factor == 2:
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assert right_child is not None
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assert right_child is not None
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if get_height(right_child.get_right()) > get_height(right_child.get_left()):
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if get_height(right_child.get_right()) > get_height(right_child.get_left()):
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root = left_rotation(root)
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root = left_rotation(root)
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else:
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else:
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root = rl_rotation(root)
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root = rl_rotation(root)
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elif get_height(right_child) - get_height(left_child) == -2:
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elif balance_factor == -2:
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assert left_child is not None
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assert left_child is not None
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if get_height(left_child.get_left()) > get_height(left_child.get_right()):
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if get_height(left_child.get_left()) > get_height(left_child.get_right()):
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root = right_rotation(root)
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root = right_rotation(root)
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else:
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else:
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root = lr_rotation(root)
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root = lr_rotation(root)
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height = my_max(get_height(root.get_right()), get_height(root.get_left())) + 1
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root.set_height(height)
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return root
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return root
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@ -231,4 +231,4 @@ def main() -> None:
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if __name__ == "__main__":
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if __name__ == "__main__":
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main()
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main()
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@ -39,9 +39,11 @@ def frac_knapsack(vl, wt, w, n):
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return (
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return (
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0
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0
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if k == 0
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if k == 0
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else sum(vl[:k]) + (w - acc[k - 1]) * (vl[k]) / (wt[k])
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else (
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if k != n
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sum(vl[:k]) + (w - acc[k - 1]) * (vl[k]) / (wt[k])
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else sum(vl[:k])
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if k != n
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else sum(vl[:k])
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)
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)
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)
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@ -204,9 +204,11 @@ class Matrix:
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return Matrix(
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return Matrix(
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[
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[
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[
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[
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self.minors().rows[row][column]
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(
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if (row + column) % 2 == 0
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self.minors().rows[row][column]
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else self.minors().rows[row][column] * -1
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if (row + column) % 2 == 0
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else self.minors().rows[row][column] * -1
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)
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for column in range(self.minors().num_columns)
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for column in range(self.minors().num_columns)
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]
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]
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for row in range(self.minors().num_rows)
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for row in range(self.minors().num_rows)
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