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" <small><i>This notebook was prepared by [Donne Martin](http://donnemartin.com). Source and license info is on [GitHub](https://github.com/donnemartin/interactive-coding-challenges).</i></small> "
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" # Solution Notebook "
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]
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" ## Problem: Partition a linked list around a value x, such that all nodes less than x come before all nodes greater than or equal to x. \n " ,
" \n " ,
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" * [Constraints](#Constraints) \n " ,
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" * [Test Cases](#Test-Cases) \n " ,
" * [Algorithm](#Algorithm) \n " ,
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" * [Code](#Code) \n " ,
" * [Unit Test](#Unit-Test) "
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" ## Constraints \n " ,
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" \n " ,
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" * Can we assume this is a non-circular, singly linked list? \n " ,
" * Yes \n " ,
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" * Do we expect the function to return a new list? \n " ,
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" * Yes \n " ,
" * Can we assume the input x is valid? \n " ,
" * Yes \n " ,
" * Can we assume we already have a linked list class that can be used for this problem? \n " ,
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" * Yes \n " ,
" * Can we create additional data structures? \n " ,
" * 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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" * Empty list -> [] \n " ,
" * One element list -> [element] \n " ,
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" * Left linked list is empty \n " ,
" * Right linked list is empty \n " ,
" * General case \n " ,
" * Partition = 10 \n " ,
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" * Input: 4, 3, 13, 8, 10, 1, 10, 12 \n " ,
" * Output: 4, 3, 8, 1, 10, 10, 13, 12 "
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" ## Algorithm \n " ,
" \n " ,
" * Create left and right linked lists \n " ,
" * For each element in the list \n " ,
" * If elem < x, append to the left list \n " ,
" * else, append to the right list \n " ,
" * Merge left and right lists \n " ,
" \n " ,
" Complexity: \n " ,
" * Time: O(n) \n " ,
" * Space: O(n) "
]
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" ## Code "
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" %r un ../linked_list/linked_list.py "
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" class MyLinkedList(LinkedList): \n " ,
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" \n " ,
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" def partition(self, data): \n " ,
" if self.head is None: \n " ,
" return \n " ,
" left = MyLinkedList(None) \n " ,
" right = MyLinkedList(None) \n " ,
" curr = self.head \n " ,
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" \n " ,
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" # Build the left and right lists \n " ,
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" while curr is not None: \n " ,
" if curr.data < data: \n " ,
" left.append(curr.data) \n " ,
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" elif curr.data == data: \n " ,
" right.insert_to_front(curr.data) \n " ,
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" else: \n " ,
" right.append(curr.data) \n " ,
" curr = curr.next \n " ,
" curr_left = left.head \n " ,
" if curr_left is None: \n " ,
" return right \n " ,
" else: \n " ,
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" # Merge the two lists \n " ,
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" while curr_left.next is not None: \n " ,
" curr_left = curr_left.next \n " ,
" curr_left.next = right.head \n " ,
" return left "
]
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" ## Unit Test "
]
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" execution_count " : 3 ,
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" outputs " : [
{
" name " : " stdout " ,
" output_type " : " stream " ,
" text " : [
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" Overwriting test_partition.py \n "
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]
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" source " : [
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" %% writefile test_partition.py \n " ,
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" from nose.tools import assert_equal \n " ,
" \n " ,
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" \n " ,
" class TestPartition(object): \n " ,
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" \n " ,
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" def test_partition(self): \n " ,
" print( ' Test: Empty list ' ) \n " ,
" linked_list = MyLinkedList(None) \n " ,
" linked_list.partition(10) \n " ,
" assert_equal(linked_list.get_all_data(), []) \n " ,
" \n " ,
" print( ' Test: One element list, left list empty ' ) \n " ,
" linked_list = MyLinkedList(Node(5)) \n " ,
" linked_list.partition(0) \n " ,
" assert_equal(linked_list.get_all_data(), [5]) \n " ,
" \n " ,
" print( ' Test: Right list is empty ' ) \n " ,
" linked_list = MyLinkedList(Node(5)) \n " ,
" linked_list.partition(10) \n " ,
" assert_equal(linked_list.get_all_data(), [5]) \n " ,
" \n " ,
" print( ' Test: General case ' ) \n " ,
" # Partition = 10 \n " ,
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" # Input: 4, 3, 13, 8, 10, 1, 14, 10, 12 \n " ,
" # Output: 4, 3, 8, 1, 10, 10, 13, 14, 12 \n " ,
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" linked_list = MyLinkedList(Node(12)) \n " ,
" linked_list.insert_to_front(10) \n " ,
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" linked_list.insert_to_front(14) \n " ,
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" linked_list.insert_to_front(1) \n " ,
" linked_list.insert_to_front(10) \n " ,
" linked_list.insert_to_front(8) \n " ,
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" linked_list.insert_to_front(13) \n " ,
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" linked_list.insert_to_front(3) \n " ,
" linked_list.insert_to_front(4) \n " ,
" partitioned_list = linked_list.partition(10) \n " ,
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" assert_equal(partitioned_list.get_all_data(), \n " ,
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" [4, 3, 8, 1, 10, 10, 13, 14, 12]) \n " ,
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" \n " ,
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" print( ' Success: test_partition ' ) \n " ,
" \n " ,
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" \n " ,
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" def main(): \n " ,
" test = TestPartition() \n " ,
" test.test_partition() \n " ,
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" \n " ,
" \n " ,
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" if __name__ == ' __main__ ' : \n " ,
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" main() "
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" Test: Empty list \n " ,
" Test: One element list, left list empty \n " ,
" Test: Right list is empty \n " ,
" Test: General case \n " ,
" Success: test_partition \n "
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" run -i test_partition.py "
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