feat: osijvrsoi
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82
pkg/questions/find_median_from_data_stream/main.go
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82
pkg/questions/find_median_from_data_stream/main.go
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package findmedianfromdatastream
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import "container/heap"
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type IntHeap []int
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func (h IntHeap) Len() int { return len(h) }
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func (h IntHeap) Less(i, j int) bool { return h[i] < h[j] }
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func (h IntHeap) Swap(i, j int) { h[i], h[j] = h[j], h[i] }
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func (h *IntHeap) Push(x any) {
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*h = append(*h, x.(int))
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}
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func (h IntHeap) Peek() int {
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return h[0]
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}
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func (h *IntHeap) Pop() any {
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old := *h
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x := old[len(old)-1]
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*h = old[:len(old)-1]
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return x
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}
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type MedianFinder struct {
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// Positive min-heap of top half of values.
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top *IntHeap
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// Negative min-heap of bottom half of values.
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bottom *IntHeap
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}
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func Constructor() MedianFinder {
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result := MedianFinder{
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top: &IntHeap{},
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bottom: &IntHeap{},
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}
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heap.Init(result.top)
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heap.Init(result.bottom)
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return result
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}
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func (m *MedianFinder) AddNum(num int) {
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if m.bottom.Len() > m.top.Len() {
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if -m.bottom.Peek() <= num {
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heap.Push(m.top, num)
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} else {
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val := heap.Pop(m.bottom).(int)
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heap.Push(m.top, -val)
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heap.Push(m.bottom, -num)
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}
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} else if m.bottom.Len() < m.top.Len() {
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if m.top.Peek() >= num {
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heap.Push(m.bottom, -num)
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} else {
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val := heap.Pop(m.top).(int)
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heap.Push(m.bottom, -val)
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heap.Push(m.top, num)
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}
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} else {
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if m.top.Len() == 0 {
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heap.Push(m.top, num)
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} else {
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if median := m.FindMedian(); float64(num) > median {
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heap.Push(m.top, num)
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} else {
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heap.Push(m.bottom, -num)
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}
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}
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}
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}
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func (m *MedianFinder) FindMedian() float64 {
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if m.bottom.Len() > m.top.Len() {
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return float64(-m.bottom.Peek())
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} else if m.bottom.Len() < m.top.Len() {
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return float64(m.top.Peek())
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} else {
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return float64(m.top.Peek()-m.bottom.Peek()) / 2.0
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}
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}
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