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" This notebook was prepared by [Donne Martin](https://github.com/donnemartin). Source and license info is on [GitHub](https://github.com/donnemartin/interactive-coding-challenges). "
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" # Solution Notebook "
]
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" ## Problem: Determine if a tree is a valid binary search tree. \n " ,
" \n " ,
" * [Constraints](#Constraints) \n " ,
" * [Test Cases](#Test-Cases) \n " ,
" * [Algorithm](#Algorithm) \n " ,
" * [Code](#Code) \n " ,
" * [Unit Test](#Unit-Test) "
]
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" ## Constraints \n " ,
" \n " ,
" * Can the tree have duplicates? \n " ,
" * Yes \n " ,
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" * If this is called on a None input, should we raise an exception? \n " ,
" * Yes \n " ,
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" * Can we assume we already have a Node class? \n " ,
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" * Yes \n " ,
" * Can we assume this fits in memory? \n " ,
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" * Yes "
]
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" ## Test Cases \n " ,
" \n " ,
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" None -> exception \n " ,
" \n " ,
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" <pre> \n " ,
" Valid: \n " ,
" 5 \n " ,
" / \\ \n " ,
" 5 8 \n " ,
" / \\ / \n " ,
" 4 6 7 \n " ,
" \n " ,
" Invalid: \n " ,
" 5 \n " ,
" / \\ \n " ,
" 5 8 \n " ,
" \\ \n " ,
" 20 \n " ,
" </pre> "
]
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" ## Algorithm \n " ,
" \n " ,
" We ' ll use a recursive solution that valides left <= current < right, passing down the min and max values as we do a depth-first traversal. \n " ,
" \n " ,
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" * If the node is None, return True \n " ,
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" * If min is set and the node ' s value <= min, return False \n " ,
" * if max is set and the node ' s value > max, return False \n " ,
" * Recursively call the validate function on node.left, updating max \n " ,
" * Recursively call the validate function on node.right, updating min \n " ,
" \n " ,
" Complexity: \n " ,
" * Time: O(n) \n " ,
" * Space: O(h), where h is the height of the tree "
]
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" ## Code "
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" source " : [
" %r un ../bst/bst.py "
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" import sys \n " ,
" \n " ,
" \n " ,
" class BstValidate(Bst): \n " ,
" \n " ,
" def validate(self): \n " ,
" if self.root is None: \n " ,
" raise Exception( ' No root node ' ) \n " ,
" return self._validate(self.root) \n " ,
" \n " ,
" def _validate(self, node, mininum=-sys.maxsize, maximum=sys.maxsize): \n " ,
" if node is None: \n " ,
" return True \n " ,
" if node.data <= mininum or node.data > maximum: \n " ,
" return False \n " ,
" if not self._validate(node.left, mininum, node.data): \n " ,
" return False \n " ,
" if not self._validate(node.right, node.data, maximum): \n " ,
" return False \n " ,
" return True "
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]
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" source " : [
" ## Unit Test "
]
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" Overwriting test_bst_validate.py \n "
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" %% writefile test_bst_validate.py \n " ,
" from nose.tools import assert_equal \n " ,
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" from nose.tools import raises \n " ,
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" \n " ,
" \n " ,
" class TestBstValidate(object): \n " ,
" \n " ,
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" @raises(Exception) \n " ,
" def test_bst_validate_empty(self): \n " ,
" validate_bst(None) \n " ,
" \n " ,
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" def test_bst_validate(self): \n " ,
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" bst = BstValidate(Node(5)) \n " ,
" bst.insert(8) \n " ,
" bst.insert(5) \n " ,
" bst.insert(6) \n " ,
" bst.insert(4) \n " ,
" bst.insert(7) \n " ,
" assert_equal(bst.validate(), True) \n " ,
" \n " ,
" bst = BstValidate(Node(5)) \n " ,
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" left = Node(5) \n " ,
" right = Node(8) \n " ,
" invalid = Node(20) \n " ,
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" bst.root.left = left \n " ,
" bst.root.right = right \n " ,
" bst.root.left.right = invalid \n " ,
" assert_equal(bst.validate(), False) \n " ,
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" \n " ,
" print( ' Success: test_bst_validate ' ) \n " ,
" \n " ,
" \n " ,
" def main(): \n " ,
" test = TestBstValidate() \n " ,
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" test.test_bst_validate_empty() \n " ,
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" test.test_bst_validate() \n " ,
" \n " ,
" \n " ,
" if __name__ == ' __main__ ' : \n " ,
" main() "
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" Success: test_bst_validate \n "
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" %r un -i test_bst_validate.py "
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