feat: solved day 11 part 2
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+8
-63
@@ -1,7 +1,6 @@
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package main
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import (
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"fmt"
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"strings"
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"github.com/StevanFreeborn/advent-of-code-2025/internal/file"
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@@ -47,60 +46,8 @@ func SolvePartOne(filePath string) int {
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return pathCount
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}
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type node struct {
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value string
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fftSeen bool
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dacSeen bool
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}
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func SolvePartTwo(filePath string) int {
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adjacencyList := map[string][]string{}
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for line := range file.ReadLines(filePath) {
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parts := strings.Split(line, ": ")
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from := parts[0]
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toList := strings.Split(parts[1], " ")
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adjacencyList[from] = toList
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}
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stack := stack.New[node]()
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stack.Push(node{
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value: SVR_NODE,
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})
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pathCount := 0
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for stack.IsEmpty() == false {
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current, _ := stack.Pop()
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if current.value == FFT_NODE {
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current.fftSeen = true
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}
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if current.value == DAC_NODE {
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current.dacSeen = true
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}
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if current.value == OUT_NODE && current.dacSeen && current.fftSeen {
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pathCount++
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continue
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}
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neighbors := adjacencyList[current.value]
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for _, n := range neighbors {
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stack.Push(node{
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value: n,
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fftSeen: current.fftSeen,
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dacSeen: current.dacSeen,
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})
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}
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}
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return pathCount
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}
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func SolvePartTwoAgain(filePath string) int {
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adjacencyList := map[string][]string{}
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inDegrees := map[string]int{}
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allNodes := map[string]bool{}
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@@ -147,8 +94,14 @@ func SolvePartTwoAgain(filePath string) int {
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}
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}
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pathA := countPaths(SVR_NODE, FFT_NODE, processOrder, adjacencyList) * countPaths(FFT_NODE, DAC_NODE, processOrder, adjacencyList) * countPaths(DAC_NODE, OUT_NODE, processOrder, adjacencyList)
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pathB := countPaths(SVR_NODE, DAC_NODE, processOrder, adjacencyList) * countPaths(DAC_NODE, FFT_NODE, processOrder, adjacencyList) * countPaths(FFT_NODE, OUT_NODE, processOrder, adjacencyList)
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return pathA + pathB
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}
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func countPaths(start string, end string, processOrder []string, adjacencyList map[string][]string) int {
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pathsCount := map[string]int{}
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pathsCount[SVR_NODE] = 1
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pathsCount[start] = 1
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for _, item := range processOrder {
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if pathsCount[item] == 0 {
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@@ -160,13 +113,5 @@ func SolvePartTwoAgain(filePath string) int {
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}
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}
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// TODO: Could I process the graph
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// in smaller pieces and then multiply
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// those path to figure out what the
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// total number of paths are.
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fmt.Println(pathsCount[OUT_NODE])
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fmt.Println(pathsCount[DAC_NODE])
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fmt.Println(pathsCount[FFT_NODE])
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return 0
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return pathsCount[end]
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}
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+1
-24
@@ -1,7 +1,6 @@
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package main_test
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import (
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"fmt"
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"testing"
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solution "github.com/StevanFreeborn/advent-of-code-2025/cmd/11"
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@@ -38,9 +37,7 @@ func TestSolvePartTwoWithExampleInput(t *testing.T) {
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}
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func TestSolvePartTwoWithInput(t *testing.T) {
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expected := -1
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fmt.Println("HERE")
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expected := 393_474_305_030_400
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result := solution.SolvePartTwo("INPUT.txt")
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@@ -48,23 +45,3 @@ func TestSolvePartTwoWithInput(t *testing.T) {
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t.Errorf("SolvePartTwo(INPUT.txt) = %d; want %d", result, expected)
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}
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}
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func TestSolvePartTwoAgainWithExampleInput(t *testing.T) {
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expected := 2
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result := solution.SolvePartTwoAgain("EXAMPLE_TWO.txt")
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if result != expected {
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t.Errorf("SolvePartTwoAgain(EXAMPLE_TWO.txt) = %d; want %d", result, expected)
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}
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}
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func TestSolvePartTwoAgainWithInput(t *testing.T) {
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expected := -1
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result := solution.SolvePartTwoAgain("INPUT.txt")
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if result != expected {
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t.Errorf("SolvePartTwoAgain(INPUT.txt) = %d; want %d", result, expected)
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}
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}
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