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package main
import (
student "student"
"func/correct"
"lib"
)
type Node9 = student.NodeL
type List9 = correct.List
type NodeS9 = correct.NodeL
type ListS9 = student.List
func listPushBackTest9(l1 *ListS9, l2 *List9, data interface{}) {
n := &Node9{Data: data}
n1 := &NodeS9{Data: data}
if l1.Head == nil {
l1.Head = n
} else {
iterator := l1.Head
for iterator.Next != nil {
iterator = iterator.Next
}
iterator.Next = n
}
if l2.Head == nil {
l2.Head = n1
} else {
iterator1 := l2.Head
for iterator1.Next != nil {
iterator1 = iterator1.Next
}
iterator1.Next = n1
}
}
func main() {
link1 := &List9{}
link2 := &ListS9{}
table := []correct.NodeTest{}
table = correct.ElementsToTest(table)
table = append(table,
correct.NodeTest{
Data: []interface{}{"hello", "hello1", "hello2", "hello3"},
},
)
for _, arg := range table {
for i := 0; i < len(arg.Data); i++ {
listPushBackTest9(link2, link1, arg.Data[i])
}
if len(arg.Data) != 0 {
aux1 := student.ListFind(link2, arg.Data[(len(arg.Data)-1)/2], student.CompStr)
aux2 := correct.ListFind(link1, arg.Data[(len(arg.Data)-1)/2], correct.CompStr)
if aux1 != nil || aux2 != nil {
if *aux1 != *aux2 {
lib.Fatalf("ListFind(ref: %s) == %s instead of %s\n", arg.Data[(len(arg.Data)-1)/2], *aux1, *aux2)
}
}
}
link1 = &List9{}
link2 = &ListS9{}
}
for i := 0; i < len(table[0].Data); i++ {
listPushBackTest9(link2, link1, table[0].Data[i])
}
aux1 := student.ListFind(link2, "lksdf", student.CompStr)
aux2 := correct.ListFind(link1, "lksdf", correct.CompStr)
if aux1 != nil && aux2 != nil {
if *aux1 != *aux2 {
lib.Fatalf("ListFind(ref: lksdf) == %s instead of %s\n", *aux1, *aux2)
}
}
}