2021 Day 18 Complete
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@ -2,6 +2,7 @@ package main
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import (
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"fmt"
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"math"
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h "git.bullercodeworks.com/brian/adventofcode/helpers"
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)
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@ -11,25 +12,34 @@ func main() {
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var build *SNum
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for i := range inp {
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wrk, _ := ParseSNum(inp[i])
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wrk := ParseSNum(inp[i])
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if build == nil {
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build = wrk
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} else {
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build = build.add(wrk)
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}
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}
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fmt.Println(build)
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v := build.needsExplode(0)
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fmt.Println("Needs Explode:", v)
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v.explode()
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fmt.Println(build)
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fmt.Println()
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fmt.Println("# Part 1")
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fmt.Println("Magnitude:", build.magnitude())
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fmt.Println()
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fmt.Println("# Part 2")
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highest := h.MIN_INT
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for i := 0; i < len(inp)-1; i++ {
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for j := i + 1; j < len(inp); j++ {
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w1 := ParseSNum(inp[i]).add(ParseSNum(inp[j]))
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w2 := ParseSNum(inp[j]).add(ParseSNum(inp[i]))
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/*
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full := inp[0]
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for i := 1; i < len(inp); i++ {
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full = fmt.Sprintf("[%s,%s]", full, inp[i])
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m1, m2 := w1.magnitude(), w2.magnitude()
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if m1 >= m2 && m1 > highest {
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highest = m1
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} else if m2 > highest {
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highest = m2
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}
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*/
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}
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}
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fmt.Println("Highest magnitude from 2:", highest)
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//3225 is too low
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}
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type SNum struct {
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@ -38,16 +48,21 @@ type SNum struct {
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value int
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}
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func ParseSNum(inp string) *SNum {
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s, _ := rParseSNum(inp)
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return s
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}
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// ParseSNum returns an SNum and what's left of inp
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// after it was produced
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func ParseSNum(inp string) (*SNum, string) {
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func rParseSNum(inp string) (*SNum, string) {
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// inp should always start with either a number or a '['
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var rest string
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s := SNum{}
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if inp[0] == '[' {
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s.regular = false
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s.left, rest = ParseSNum(inp[1:])
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s.right, rest = ParseSNum(rest[1:])
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s.left, rest = rParseSNum(inp[1:])
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s.right, rest = rParseSNum(rest[1:])
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s.left.parent = &s
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s.right.parent = &s
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return &s, rest[1:]
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@ -66,13 +81,21 @@ func ParseSNum(inp string) (*SNum, string) {
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return &s, rest
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}
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// When exploding or splitting, we need to find the leftmost pair that matches the condition
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func (s *SNum) needsExplode(depth int) *SNum {
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if depth == 4 && !s.regular {
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return s
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}
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if s.regular {
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return nil
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}
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if depth >= 4 {
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if !s.left.regular {
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return s.left.needsExplode(depth + 1)
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} else if !s.right.regular {
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return s.right.needsExplode(depth + 1)
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} else {
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return s
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}
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}
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if tst := s.left.needsExplode(depth + 1); tst != nil {
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return tst
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} else if tst := s.right.needsExplode(depth + 1); tst != nil {
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@ -85,34 +108,69 @@ func (s *SNum) explode() {
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if s.parent == nil {
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return
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}
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s.parent.addToRegularRightOf(s.right.value, s)
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s.parent.addToRegularLeftOf(s.left.value, s)
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s.parent.addToRegularRightOf(s.right.value, s)
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// Replace s with a regular number that just equals 0
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s.regular, s.value = true, 0
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s.right, s.left = nil, nil
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}
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func (s *SNum) needsSplit() *SNum {
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if s == nil || (s.regular && s.value >= 10) {
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return s
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}
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if tst := s.left.needsSplit(); tst != nil {
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return tst
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} else if tst := s.right.needsSplit(); tst != nil {
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return tst
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}
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return nil
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}
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func (s *SNum) split() {
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if s.parent == nil {
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return
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}
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l := int(math.Floor(float64(s.value) / 2))
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r := int(math.Ceil(float64(s.value) / 2))
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n := SNum{
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parent: s.parent,
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left: &SNum{
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regular: true,
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value: int(l),
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},
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right: &SNum{
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regular: true,
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value: int(r),
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},
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}
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n.left.parent = &n
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n.right.parent = &n
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if s.parent.left == s {
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s.parent.left = &n
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} else if s.parent.right == s {
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s.parent.right = &n
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}
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}
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func (s *SNum) addToRegularLeftOf(v int, c *SNum) {
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if s.right.regular {
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s.right.value += v
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} else {
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if s.right != nil && s.right == c {
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r := s.left.findRightmostRegular()
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if r != nil {
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r.value += v
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if s == nil || v == 0 {
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return
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}
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if s.right != nil && s.right == c {
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s.left.addToRightmostRegular(v)
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} else if s.left != nil && s.left == c {
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s.parent.addToRegularLeftOf(v, s)
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}
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}
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}
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func (s *SNum) addToRegularRightOf(v int, c *SNum) {
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if s.left.regular {
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s.left.value += v
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} else if s.left != nil && s.left == c {
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l := s.right.findLeftmostRegular()
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if l != nil {
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l.value += v
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if s == nil || v == 0 {
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return
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}
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} else if s.right != nil && s.right == c {
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if s.left == c {
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s.right.addToLeftmostRegular(v)
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} else if s.right == c {
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s.parent.addToRegularRightOf(v, s)
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}
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}
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@ -121,24 +179,49 @@ func (s *SNum) contains(n *SNum) bool {
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return s == n || s.left.contains(n) || s.right.contains(n)
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}
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func (s *SNum) findRightmostRegular() *SNum {
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func (s *SNum) addToRightmostRegular(v int) {
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if s.regular {
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return s
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s.value += v
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} else if s.right != nil {
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s.right.addToRightmostRegular(v)
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}
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return s.right.findRightmostRegular()
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}
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func (s *SNum) findLeftmostRegular() *SNum {
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func (s *SNum) addToLeftmostRegular(v int) {
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if s.regular {
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return s
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s.value += v
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} else if s.left != nil {
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s.left.addToLeftmostRegular(v)
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}
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return s.left.findLeftmostRegular()
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}
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func (s *SNum) add(n *SNum) *SNum {
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return &SNum{
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wrk := SNum{
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left: s,
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right: n,
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}
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s.parent = &wrk
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n.parent = &wrk
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changed := true
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for changed {
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changed = false
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if v := wrk.needsExplode(0); v != nil {
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v.explode()
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changed = true
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} else if v := wrk.needsSplit(); v != nil {
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v.split()
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changed = true
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}
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}
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return &wrk
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}
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func (s *SNum) magnitude() int {
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if s.regular {
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return s.value
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}
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return s.left.magnitude()*3 + s.right.magnitude()*2
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}
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func (s SNum) String() string {
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2
2021/day18/testinput2
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2
2021/day18/testinput2
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@ -0,0 +1,2 @@
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[[[[4,3],4],4],[7,[[8,4],9]]]
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[1,1]
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10
2021/day18/testinput3
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10
2021/day18/testinput3
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@ -0,0 +1,10 @@
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[[[0,[5,8]],[[1,7],[9,6]]],[[4,[1,2]],[[1,4],2]]]
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[[[5,[2,8]],4],[5,[[9,9],0]]]
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[6,[[[6,2],[5,6]],[[7,6],[4,7]]]]
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[[[6,[0,7]],[0,9]],[4,[9,[9,0]]]]
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[[[7,[6,4]],[3,[1,3]]],[[[5,5],1],9]]
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[[6,[[7,3],[3,2]]],[[[3,8],[5,7]],4]]
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[[[[5,4],[7,7]],8],[[8,3],8]]
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[[9,3],[[9,9],[6,[4,9]]]]
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[[2,[[7,7],7]],[[5,8],[[9,3],[0,2]]]]
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[[[[5,2],5],[8,[3,7]]],[[5,[7,5]],[4,4]]]
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