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	Update counting_sort.go and radix_sort.go
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		@ -8,7 +8,7 @@ type CountingSort struct{}
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/* 计数排序 */
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// 简单实现,无法用于排序对象
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func (c *CountingSort) countingSortNaive(nums []int) {
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func countingSortNaive(nums []int) {
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	// 1. 统计数组最大元素 m
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	m := 0
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	for num := range nums {
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@ -31,7 +31,9 @@ func (c *CountingSort) countingSortNaive(nums []int) {
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	}
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}
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func (c *CountingSort) countingSort(nums []int) {
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/* 计数排序 */
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// 完整实现,可排序对象,并且是稳定排序
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func countingSort(nums []int) {
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	// 1. 统计数组最大元素 m
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	m := 0
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	for num := range nums {
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@ -10,11 +10,10 @@ import (
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)
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func TestCountingSort(t *testing.T) {
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	c := &CountingSort{}
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	nums := []int{1, 0, 1, 2, 0, 4, 0, 2, 2, 4}
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	c.countingSortNaive(nums)
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	countingSortNaive(nums)
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	fmt.Println("计数排序(无法排序对象)完成后 nums = ", nums)
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	c.countingSort(nums)
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	countingSort(nums)
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	fmt.Println("计数排序完成后 nums = ", nums)
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}
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@ -13,7 +13,7 @@ func digit(num, exp int) int {
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}
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/* 计数排序(根据 nums 第 k 位排序) */
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func countingSort(nums []int, exp int) {
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func countingSortDigit(nums []int, exp int) {
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	// 十进制的各位数字范围为 0~9 ,因此需要长度为 10 的桶
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	bucket := make([]int, 10)
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	n := len(nums)
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@ -56,6 +56,6 @@ func radixSort(nums []int) {
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		// k = 2 -> exp = 10
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		// k = 3 -> exp = 100
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		// 即 exp = 10^(k-1)
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		countingSort(nums, exp)
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		countingSortDigit(nums, exp)
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	}
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}
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