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day10
| Author | SHA1 | Date | |
|---|---|---|---|
| e0e4bbc958 | |||
| 5ca089afb4 | |||
| fb896a8d20 | |||
| 5bebd71c4e | |||
| 6d24500c69 | |||
| d17308873e | |||
| c6150871a3 |
@@ -9,6 +9,8 @@ An attempt to start programming again.
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- [Day 5](./day05/seeds.go)
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- [Day 6](./day06/race.go)
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- [Day 7](./day07/cards.go)
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- [Day 8](./day08/charpath.go)
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- [Day 9](./day09/oasis.go)
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This repo gets automatically mirrored to [Github](https://github.com/Doddophonique/aoc2023).
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1
day09/inputs
Symbolic link
1
day09/inputs
Symbolic link
@@ -0,0 +1 @@
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../inputs
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149
day09/oasis.go
Normal file
149
day09/oasis.go
Normal file
@@ -0,0 +1,149 @@
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package main
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import(
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"fmt"
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"os"
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"bufio"
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"sync"
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"time"
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"regexp"
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"strconv"
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)
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// Parallel code, global vars
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type Series struct {
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mu sync.Mutex
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numStore [][]int
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total uint64
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}
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func check(e error) {
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if e != nil {
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panic(e)
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}
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}
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func PrintAndWait(x ...any) {
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fmt.Print(x...)
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fmt.Scanln()
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}
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// use defer timer("funcname")() when the function you want to
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// test starts
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func timer(name string) func() {
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start := time.Now()
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return func() {
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fmt.Printf("%s took %v\n", name, time.Since(start))
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}
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}
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func PredictValueBack(numbers []int) []int {
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// Are we finished? By default, true
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temp := true
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for i := 0; i < len(numbers); i++ {
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if numbers[i] != 0 {
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temp = false
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break
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}
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}
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// Check to end recursion
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if temp == true {
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return numbers
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}
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newNums := make([]int, len(numbers) - 1)
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for i := 0; i < len(numbers) - 1; i++ {
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newNums[i] = numbers[i + 1] - numbers[i]
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}
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myNums := PredictValueBack(newNums)
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addValue := newNums[0] - myNums[0]
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// We need to append at the start
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newNums = append([]int{addValue}, newNums...)
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return newNums
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}
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func (ser *Series) CallPredictBack(numbers []int, wg *sync.WaitGroup) {
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tempNum := PredictValueBack(numbers)
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ser.mu.Lock()
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ser.total += uint64(numbers[0] - tempNum[0])
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ser.mu.Unlock()
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wg.Done()
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}
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func PredictValue(numbers []int) []int {
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// Are we finished? By default, true
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temp := true
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for i := 0; i < len(numbers); i++ {
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if numbers[i] != 0 {
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temp = false
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break
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}
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}
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// Check to end recursion
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if temp == true {
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return numbers
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}
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newNums := make([]int, len(numbers) - 1)
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for i := 0; i < len(numbers) - 1; i++ {
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newNums[i] = numbers[i + 1] - numbers[i]
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}
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myNums := PredictValue(newNums)
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addValue := myNums[len(myNums) - 1]
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newNums = append(newNums, newNums[len(newNums) - 1] + addValue)
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return newNums
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}
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func (ser *Series) CallPredict(numbers []int, wg *sync.WaitGroup) {
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tempNum := PredictValue(numbers)
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lt := len(tempNum) - 1
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ln := len(numbers) - 1
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ser.mu.Lock()
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ser.total += uint64(numbers[ln] + tempNum[lt])
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ser.mu.Unlock()
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wg.Done()
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}
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func main() {
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defer timer("main")()
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file, err := os.Open("./inputs/day09_input")
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check(err)
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defer file.Close()
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var wg sync.WaitGroup
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renum := regexp.MustCompile("(\\-[0-9]+|[0-9]+)")
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ser := Series{ total: 0, }
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lines := make([]string, 0)
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scanner := bufio.NewScanner(file)
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for scanner.Scan() {
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lines = append(lines, scanner.Text())
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}
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ser.numStore = make([][]int, len(lines))
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for i := 0; i < len(lines); i++ {
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temp := renum.FindAllString(lines[i], -1)
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for j := 0; j < len(temp); j++ {
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num, err := strconv.Atoi(temp[j])
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check(err)
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ser.numStore[i] = append(ser.numStore[i], num)
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}
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}
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// Now I have a 2D array with all the numbers, I can start RECURSING
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wg.Add(len(ser.numStore))
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for i := 0; i < len(ser.numStore); i++ {
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go ser.CallPredict(ser.numStore[i], &wg)
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}
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wg.Wait()
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fmt.Printf("%d\n", ser.total)
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ser.total = 0
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wg.Add(len(ser.numStore))
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for i := 0; i < len(ser.numStore); i++ {
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go ser.CallPredictBack(ser.numStore[i], &wg)
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}
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wg.Wait()
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fmt.Printf("%d\n", ser.total)
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}
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1
day10/inputs
Symbolic link
1
day10/inputs
Symbolic link
@@ -0,0 +1 @@
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../inputs
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191
day10/maze.go
Normal file
191
day10/maze.go
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@@ -0,0 +1,191 @@
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package main
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import (
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"bufio"
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"fmt"
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"log"
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"os"
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"sync"
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"time"
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)
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// Parallel code, global vars
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type Maze struct {
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mu sync.Mutex
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direction [][]rune
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steps int
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}
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var fromWhere = map[rune]int8{
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'N': 0,
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'S': 1,
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'W': 2,
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'E': 3,
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}
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var mapDirections = map[rune]int8{
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'|': 0, // Vertical
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'-': 1, // Horizontal
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'L': 2, // North to East
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'J': 3, // North to West
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'7': 4, // South to West
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'F': 5, // South to East
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'.': 6, // Ground
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'S': 7, // Start
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}
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func check(e error) {
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if e != nil {
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panic(e)
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}
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}
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func PrintAndWait(x ...any) {
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fmt.Print(x...)
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fmt.Scanln()
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}
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// use defer timer("funcname")() when the function you want to
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// test starts
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func timer(name string) func() {
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start := time.Now()
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return func() {
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fmt.Printf("%s took %v\n", name, time.Since(start))
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}
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}
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func (mz *Maze) ChooseFirstDirection(startPoint [2]int) ([2]int, rune) {
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// For the first step, we don't care about directions, we only need a tile
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// were we can step on. E.g., if we have a J North of S we CAN'T go. A 7 would
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// be OK.
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y := startPoint[0]
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x := startPoint[1]
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// If x - 1 (going west), only 1, 2, 5 allowed
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temp := mapDirections[mz.direction[y][x-1]]
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if temp == 1 || temp == 2 || temp == 5 {
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// We came from East, we also return 'E'
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newSpot := [2]int{y,x-1}
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return newSpot, 'E'
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// If x + 1 (going east), only 1, 3, 4 allowed
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} else if temp := mapDirections[mz.direction[y][x+1]]; temp == 1 || temp == 3 || temp == 4 {
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// We came from West
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newSpot := [2]int{y,x+1}
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return newSpot, 'W'
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// If y - 1 (going north), only 0, 4, 5 allowed
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} else if temp := mapDirections[mz.direction[y-1][x]]; temp == 0 || temp == 4 || temp == 5 {
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// We came from South
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newSpot := [2]int{y-1,x}
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return newSpot, 'S'
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} else {
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log.Fatal("How is this even possible..?")
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}
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s := [2]int{0, 0}
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return s, 'X'
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}
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func (mz *Maze) WeGo(loc [2]int, direction rune) ([2]int, rune) {
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mapDir := fromWhere[direction]
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y, x := loc[0], loc[1]
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thisPipe := mapDirections[mz.direction[y][x]]
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goNorth := [2]int{y-1, x}
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goSouth := [2]int{y+1, x}
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goWest := [2]int{y, x-1}
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goEast := [2]int{y, x+1}
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switch mapDir {
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case 0:
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switch thisPipe {
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case 0:
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return goSouth, 'N'
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case 2:
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return goEast, 'W'
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case 3:
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return goWest, 'E'
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}
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case 1:
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switch thisPipe {
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case 0:
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return goNorth, 'S'
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case 4:
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return goWest, 'E'
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case 5:
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return goEast, 'W'
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}
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case 2:
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switch thisPipe {
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case 1:
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return goEast, 'W'
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case 3:
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return goNorth, 'S'
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case 4:
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return goSouth, 'N'
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}
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case 3:
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switch thisPipe {
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case 1:
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return goWest, 'E'
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case 2:
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return goNorth, 'S'
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case 5:
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return goSouth, 'N'
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}
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}
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s := [2]int{0, 0}
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return s, 'X'
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}
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func (mz *Maze) FindPath(startPoint [2]int) {
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defer timer("FindPath")()
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y, x := startPoint[0], startPoint[1]
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nextCheck, direction := mz.ChooseFirstDirection(startPoint)
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mz.steps++
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curY, curX := nextCheck[0], nextCheck[1]
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for {
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nextCheck, direction = mz.WeGo(nextCheck, direction)
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curY, curX = nextCheck[0], nextCheck[1]
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mz.steps++
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if y == curY && x == curX { break }
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}
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}
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func main() {
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if len(os.Args) != 2 {
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fmt.Println("Must provide exactly one argument. It must be a file.")
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log.Fatal("NOW I WILL SCREAM AND DIE.")
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}
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file, err := os.Open(os.Args[1])
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check(err)
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defer file.Close()
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lines := make([]string, 0)
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mz := Maze{ steps: 0, }
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scanner := bufio.NewScanner(file)
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for scanner.Scan() {
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lines = append(lines, scanner.Text())
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}
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numColumns := len(lines)
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mz.direction = make([][]rune, numColumns)
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// Populate the array of directions
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for i := 0; i < numColumns; i++ {
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for j := 0; j < len(lines[i]); j++ {
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mz.direction[i] = append(mz.direction[i], rune(lines[i][j]))
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}
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}
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var startPoint [2]int
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// Search for the starting point
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for i := 0; i < numColumns; i++ {
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for j := 0; j < len(lines[i]); j++ {
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if mapDirections[mz.direction[i][j]] == 7 {
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startPoint[0] = i
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startPoint[1] = j
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}
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}
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}
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// Going west: x - 1 | Going east: x + 1
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// Going north: y - 1 | Going south: y + 1
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mz.FindPath(startPoint)
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fmt.Printf("Number of steps: %d", mz.steps / 2)
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}
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42
template.go
Normal file
42
template.go
Normal file
@@ -0,0 +1,42 @@
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package main
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import()
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// Parallel code, global vars
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type Nodes struct {
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mu sync.Mutex
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variable type
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}
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func check(e error) {
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if e != nil {
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panic(e)
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}
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}
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func PrintAndWait(x ...any) {
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fmt.Print(x...)
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fmt.Scanln()
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}
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// use defer timer("funcname")() when the function you want to
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// test starts
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func timer(name string) func() {
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start := time.Now()
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return func() {
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fmt.Printf("%s took %v\n", name, time.Since(start))
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}
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}
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func main() {
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file, err := os.Open("./inputs")
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check(err)
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defer file.Close()
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lines := make([]string, 0)
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scanner := bufio.NewScanner(file)
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for scanner.Scan() {
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lines = append(lines, scanner.Text())
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}
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}
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Reference in New Issue
Block a user