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142 lines
3.0 KiB
142 lines
3.0 KiB
package correct |
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import ( |
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"math/rand" |
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"strconv" |
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) |
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type TreeNodeL struct { |
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Left *TreeNodeL |
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Val int |
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Right *TreeNodeL |
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} |
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func IsSameTree(p *TreeNodeL, q *TreeNodeL) bool { |
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if p == nil && q == nil { |
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return true |
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} |
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return checkIfEq(p, q) |
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} |
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func checkIfEq(t1 *TreeNodeL, t2 *TreeNodeL) bool { |
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if t1 == nil && t2 == nil { |
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return true |
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} |
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if t1 == nil || t2 == nil { |
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return false |
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} |
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return t1.Val == t2.Val && checkIfEq(t1.Right, t2.Right) && checkIfEq(t1.Left, t2.Left) |
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} |
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type stuTreeNode = TreeNodeL |
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type solTreeNode = correct.TreeNodeL |
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func insertStu(t *stuTreeNode, v int) *stuTreeNode { |
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if t == nil { |
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return &stuTreeNode{Left: nil, Val: v, Right: nil} |
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} |
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if v < t.Val { |
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t.Left = insertStu(t.Left, v) |
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return t |
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} |
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t.Right = insertStu(t.Right, v) |
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return t |
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} |
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func insertSol(t *solTreeNode, v int) *solTreeNode { |
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if t == nil { |
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return &solTreeNode{Left: nil, Val: v, Right: nil} |
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} |
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if v < t.Val { |
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t.Left = insertSol(t.Left, v) |
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return t |
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} |
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t.Right = insertSol(t.Right, v) |
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return t |
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} |
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func New(n, k int) (*solTreeNode, *stuTreeNode, *solTreeNode) { |
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var cop *solTreeNode |
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var stu *stuTreeNode |
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var sol *solTreeNode |
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for _, v := range rand.Perm(n) { |
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cop = insertSol(cop, (1+v)*k) |
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stu = insertStu(stu, (1+v)*k) |
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sol = insertSol(sol, (1+v)*k) |
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} |
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return cop, stu, sol |
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} |
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func returnSolTree(root *solTreeNode) string { |
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if root == nil { |
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return "" |
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} |
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ans := strconv.Itoa(root.Val) |
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if root.Left == nil && root.Right == nil { |
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return ans |
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} |
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if root.Left != nil { |
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ans += " " + returnSolTree(root.Left) |
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} |
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if root.Right != nil { |
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ans += " " + returnSolTree(root.Right) |
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} |
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return ans |
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} |
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func returnStuTree(root *stuTreeNode) string { |
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if root == nil { |
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return "" |
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} |
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ans := strconv.Itoa(root.Val) |
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if root.Left == nil && root.Right == nil { |
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return ans |
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} |
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if root.Left != nil { |
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ans += " " + returnStuTree(root.Left) |
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} |
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if root.Right != nil { |
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ans += " " + returnStuTree(root.Right) |
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} |
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return ans |
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} |
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func compareResults(stuResult, solResult bool, solTree1, solTree2 *solTreeNode) { |
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if stuResult != solResult { |
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tree1 := returnSolTree(solTree1) |
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tree2 := returnSolTree(solTree2) |
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lib.Fatalf("\nIsSameTree(\"%v\", \"%v\") == \"%v\" instead of \"%v\"\n\n", tree1, tree2, stuResult, solResult) |
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} |
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} |
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func main() { |
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type node struct { |
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n int |
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k int |
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} |
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table := []node{} |
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for i := 0; i < 15; i++ { |
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value := node{lib.RandIntBetween(10, 15), lib.RandIntBetween(1, 10)} |
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table = append(table, value) |
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} |
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// Check for different trees |
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for _, arg := range table { |
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cop1, stuTree1, solTree1 := New(arg.n, arg.k) |
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cop2, stuTree2, solTree2 := New(arg.n, arg.k) |
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stuResult := IsSameTree(stuTree1, stuTree2) |
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solResult := correct.IsSameTree(solTree1, solTree2) |
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compareResults(stuResult, solResult, cop1, cop2) |
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} |
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// Check for same trees |
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for _, arg := range table { |
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cop1, stuTree1, solTree1 := New(arg.n, arg.k) |
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stuResult := IsSameTree(stuTree1, stuTree1) |
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solResult := correct.IsSameTree(solTree1, solTree1) |
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compareResults(stuResult, solResult, cop1, cop1) |
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} |
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}
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