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							290 lines
						
					
					
						
							5.8 KiB
						
					
					
				
			
		
		
		
			
			
			
		
		
	
	
							290 lines
						
					
					
						
							5.8 KiB
						
					
					
				
								package skiplist
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								import (
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									"bytes"
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									"math/rand"
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									"strconv"
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									"testing"
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								)
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								const (
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									maxN = 10000
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								)
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								var (
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									memStore = newMemStore()
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								)
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								func TestReverseInsert(t *testing.T) {
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									list := NewSeed(100, memStore)
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									list.InsertByKey([]byte("zzz"), 0, []byte("zzz"))
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									list.DeleteByKey([]byte("zzz"))
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									list.InsertByKey([]byte("aaa"), 0, []byte("aaa"))
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									if list.IsEmpty() {
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										t.Fail()
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									}
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								}
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								func TestInsertAndFind(t *testing.T) {
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									k0 := []byte("0")
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									var list *SkipList
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									var listPointer *SkipList
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									listPointer.InsertByKey(k0, 0, k0)
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									if _, _, ok, _ := listPointer.Find(k0); ok {
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										t.Fail()
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									}
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									list = New(memStore)
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									if _, _, ok, _ := list.Find(k0); ok {
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										t.Fail()
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									}
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									if !list.IsEmpty() {
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										t.Fail()
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									}
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									// Test at the beginning of the list.
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									for i := 0; i < maxN; i++ {
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										key := []byte(strconv.Itoa(maxN - i))
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										list.InsertByKey(key, 0, key)
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									}
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									for i := 0; i < maxN; i++ {
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										key := []byte(strconv.Itoa(maxN - i))
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										if _, _, ok, _ := list.Find(key); !ok {
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											t.Fail()
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										}
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									}
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									list = New(memStore)
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									// Test at the end of the list.
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									for i := 0; i < maxN; i++ {
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										key := []byte(strconv.Itoa(i))
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										list.InsertByKey(key, 0, key)
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									}
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									for i := 0; i < maxN; i++ {
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										key := []byte(strconv.Itoa(i))
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										if _, _, ok, _ := list.Find(key); !ok {
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											t.Fail()
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										}
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									}
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									list = New(memStore)
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									// Test at random positions in the list.
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									rList := rand.Perm(maxN)
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									for _, e := range rList {
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										key := []byte(strconv.Itoa(e))
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										// println("insert", e)
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										list.InsertByKey(key, 0, key)
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									}
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									for _, e := range rList {
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										key := []byte(strconv.Itoa(e))
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										// println("find", e)
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										if _, _, ok, _ := list.Find(key); !ok {
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											t.Fail()
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										}
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									}
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									// println("print list")
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									// list.println()
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								}
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								func Element(x int) []byte {
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									return []byte(strconv.Itoa(x))
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								}
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								func TestDelete(t *testing.T) {
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									k0 := []byte("0")
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									var list *SkipList
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									// Delete on empty list
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									list.DeleteByKey(k0)
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									list = New(memStore)
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									list.DeleteByKey(k0)
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									if !list.IsEmpty() {
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										t.Fail()
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									}
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									list.InsertByKey(k0, 0, k0)
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									list.DeleteByKey(k0)
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									if !list.IsEmpty() {
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										t.Fail()
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									}
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									// Delete elements at the beginning of the list.
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									for i := 0; i < maxN; i++ {
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										list.InsertByKey(Element(i), 0, Element(i))
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									}
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									for i := 0; i < maxN; i++ {
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										list.DeleteByKey(Element(i))
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									}
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									if !list.IsEmpty() {
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										t.Fail()
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									}
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									list = New(memStore)
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									// Delete elements at the end of the list.
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									for i := 0; i < maxN; i++ {
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										list.InsertByKey(Element(i), 0, Element(i))
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									}
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									for i := 0; i < maxN; i++ {
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										list.DeleteByKey(Element(maxN - i - 1))
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									}
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									if !list.IsEmpty() {
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										t.Fail()
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									}
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									list = New(memStore)
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									// Delete elements at random positions in the list.
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									rList := rand.Perm(maxN)
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									for _, e := range rList {
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										list.InsertByKey(Element(e), 0, Element(e))
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									}
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									for _, e := range rList {
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										list.DeleteByKey(Element(e))
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									}
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									if !list.IsEmpty() {
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										t.Fail()
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									}
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								}
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								func TestNext(t *testing.T) {
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									list := New(memStore)
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									for i := 0; i < maxN; i++ {
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										list.InsertByKey(Element(i), 0, Element(i))
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									}
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									smallest, _ := list.GetSmallestNode()
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									largest, _ := list.GetLargestNode()
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									lastNode := smallest
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									node := lastNode
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									for node != largest {
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										node, _ = list.Next(node)
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										// Must always be incrementing here!
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										if bytes.Compare(node.Key, lastNode.Key) <= 0 {
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											t.Fail()
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										}
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										// Next.Prev must always point to itself!
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										prevNode, _ := list.Prev(node)
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										nextNode, _ := list.Next(prevNode)
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										if nextNode != node {
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											t.Fail()
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										}
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										lastNode = node
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									}
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									if nextNode, _ := list.Next(largest); nextNode != smallest {
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										t.Fail()
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									}
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								}
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								func TestPrev(t *testing.T) {
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									list := New(memStore)
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									for i := 0; i < maxN; i++ {
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										list.InsertByKey(Element(i), 0, Element(i))
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									}
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									smallest, _ := list.GetSmallestNode()
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									largest, _ := list.GetLargestNode()
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									lastNode := largest
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									node := lastNode
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									for node != smallest {
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										node, _ = list.Prev(node)
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										// Must always be incrementing here!
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										if bytes.Compare(node.Key, lastNode.Key) >= 0 {
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											t.Fail()
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										}
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										// Next.Prev must always point to itself!
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										nextNode, _ := list.Next(node)
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										prevNode, _ := list.Prev(nextNode)
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										if prevNode != node {
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											t.Fail()
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										}
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										lastNode = node
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									}
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									if prevNode, _ := list.Prev(smallest); prevNode != largest {
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										t.Fail()
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									}
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								}
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								func TestFindGreaterOrEqual(t *testing.T) {
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									maxNumber := maxN * 100
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									var list *SkipList
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									var listPointer *SkipList
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									// Test on empty list.
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									if _, _, ok, _ := listPointer.FindGreaterOrEqual(Element(0)); ok {
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										t.Errorf("found element 0 in an empty list")
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									}
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									list = New(memStore)
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									for i := 0; i < maxN; i++ {
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										list.InsertByKey(Element(rand.Intn(maxNumber)), 0, Element(i))
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									}
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									for i := 0; i < maxN; i++ {
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										key := Element(rand.Intn(maxNumber))
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										if _, v, ok, _ := list.FindGreaterOrEqual(key); ok {
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											// if f is v should be bigger than the element before
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											if v.Prev != nil && bytes.Compare(key, v.Prev.Key) < 0 {
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												t.Errorf("PrevV: %s\n    key: %s\n\n", string(v.Prev.Key), string(key))
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											}
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											// v should be bigger or equal to f
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											// If we compare directly, we get an equal key with a difference on the 10th decimal point, which fails.
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											if bytes.Compare(v.Key, key) < 0 {
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												t.Errorf("v: %s\n    key: %s\n\n", string(v.Key), string(key))
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											}
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										} else {
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											lastNode, _ := list.GetLargestNode()
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											lastV := lastNode.GetValue()
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											// It is OK, to fail, as long as f is bigger than the last element.
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											if bytes.Compare(key, lastV) <= 0 {
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												t.Errorf("lastV: %s\n    key: %s\n\n", string(lastV), string(key))
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											}
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										}
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									}
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								}
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								func TestChangeValue(t *testing.T) {
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									list := New(memStore)
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									for i := 0; i < maxN; i++ {
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										list.InsertByKey(Element(i), 0, []byte("value"))
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									}
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									for i := 0; i < maxN; i++ {
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										// The key only looks at the int so the string doesn't matter here!
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										_, f1, ok, _ := list.Find(Element(i))
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										if !ok {
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											t.Fail()
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										}
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										err := list.ChangeValue(f1, []byte("different value"))
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										if err != nil {
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											t.Fail()
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										}
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										_, f2, ok, _ := list.Find(Element(i))
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										if !ok {
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											t.Fail()
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										}
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										if bytes.Compare(f2.GetValue(), []byte("different value")) != 0 {
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											t.Fail()
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										}
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									}
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								}
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