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Another medium problem done

master
Lachlan Jacob vor 5 Jahren
Ursprung
Commit
44795522c0
3 geänderte Dateien mit 57 neuen und 0 gelöschten Zeilen
  1. 29
    0
      problems/654/main.py
  2. 25
    0
      problems/654/problem.txt
  3. 3
    0
      problems/654/run.sh

+ 29
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problems/654/main.py Datei anzeigen

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# Definition for a binary tree node.
class TreeNode:
def __init__(self, x):
self.val = x
self.left = None
self.right = None

class Solution:
def constructMaximumBinaryTree(self, nums):
if len(nums) == 0:
return None
elif len(nums) == 1:
return TreeNode(nums[0])
else:
max = -1
maxIndex = -1
for x in range(len(nums)):
if nums[x] > max:
max = nums[x]
maxIndex = x
root = TreeNode(max)
root.left = self.constructMaximumBinaryTree(nums[0:maxIndex])
root.right = self.constructMaximumBinaryTree(nums[maxIndex + 1:])
return root

s = Solution()
print("Expected tree with root 6")
print("Got: tree with root", s.constructMaximumBinaryTree([3, 2, 1, 6, 0, 5]).val)

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problems/654/problem.txt Datei anzeigen

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Given an integer array with no duplicates. A maximum tree building on this array is defined as follow:

The root is the maximum number in the array.
The left subtree is the maximum tree constructed from left part subarray divided by the maximum number.
The right subtree is the maximum tree constructed from right part subarray divided by the maximum number.

Construct the maximum tree by the given array and output the root node of this tree.

Example 1:

Input: [3,2,1,6,0,5]
Output: return the tree root node representing the following tree:

6
/ \
3 5
\ /
2 0
\
1

Note:

The size of the given array will be in the range [1,1000].


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problems/654/run.sh Datei anzeigen

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#!/bin/bash

python3 main.py

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