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best-meeting-point.py
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best-meeting-point.py
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# Time: O(m * n)
# Space: O(m + n)
from random import randint
class Solution(object):
def minTotalDistance(self, grid):
"""
:type grid: List[List[int]]
:rtype: int
"""
x = [i for i, row in enumerate(grid) for v in row if v == 1]
y = [j for row in grid for j, v in enumerate(row) if v == 1]
mid_x = self.findKthLargest(x, len(x) / 2 + 1)
mid_y = self.findKthLargest(y, len(y) / 2 + 1)
return sum([abs(mid_x-i) + abs(mid_y-j) \
for i, row in enumerate(grid) for j, v in enumerate(row) if v == 1])
def findKthLargest(self, nums, k):
left, right = 0, len(nums) - 1
while left <= right:
pivot_idx = randint(left, right)
new_pivot_idx = self.PartitionAroundPivot(left, right, pivot_idx, nums)
if new_pivot_idx == k - 1:
return nums[new_pivot_idx]
elif new_pivot_idx > k - 1:
right = new_pivot_idx - 1
else: # new_pivot_idx < k - 1.
left = new_pivot_idx + 1
def PartitionAroundPivot(self, left, right, pivot_idx, nums):
pivot_value = nums[pivot_idx]
new_pivot_idx = left
nums[pivot_idx], nums[right] = nums[right], nums[pivot_idx]
for i in xrange(left, right):
if nums[i] > pivot_value:
nums[i], nums[new_pivot_idx] = nums[new_pivot_idx], nums[i]
new_pivot_idx += 1
nums[right], nums[new_pivot_idx] = nums[new_pivot_idx], nums[right]
return new_pivot_idx