feat: wip on day 9 part 2 solution

This commit is contained in:
Stevan Freeborn
2025-12-18 14:04:21 -06:00
parent a24eb9f9d3
commit 2888719dc5
3 changed files with 133 additions and 17 deletions
+104 -16
View File
@@ -2,39 +2,35 @@ package main
import (
"math"
"slices"
"strconv"
"strings"
"github.com/StevanFreeborn/advent-of-code-2025/internal/file"
"github.com/StevanFreeborn/advent-of-code-2025/internal/position"
)
func SolvePartOne(filePath string) int {
points := []struct {
x int
y int
}{}
positions := []position.Position{}
for line := range file.ReadLines(filePath) {
parts := strings.Split(line, ",")
x, _ := strconv.Atoi(parts[0])
y, _ := strconv.Atoi(parts[1])
p := struct {
x int
y int
}{x: x, y: y}
points = append(points, p)
p := position.From(y, x)
positions = append(positions, p)
}
numberOfPoints := len(points)
numberOfPositions := len(positions)
largestArea := 0
for i := range numberOfPoints {
for j := i + 1; j < numberOfPoints; j++ {
start := points[i]
end := points[j]
for i := range numberOfPositions {
for j := i + 1; j < numberOfPositions; j++ {
start := positions[i]
end := positions[j]
width := int(math.Abs(float64(end.x-start.x)) + 1)
height := int(math.Abs(float64(end.y-start.y)) + 1)
width := int(math.Abs(float64(end.Column()-start.Column())) + 1)
height := int(math.Abs(float64(end.Row()-start.Row())) + 1)
a := width * height
@@ -46,3 +42,95 @@ func SolvePartOne(filePath string) int {
return largestArea
}
// TODO: How would we construct all the positions
// in the polygon?
func SolvePartTwo(filePath string) int {
positions := []position.Position{}
for line := range file.ReadLines(filePath) {
parts := strings.Split(line, ",")
x, _ := strconv.Atoi(parts[0])
y, _ := strconv.Atoi(parts[1])
p := position.From(y, x)
positions = append(positions, p)
}
rowPositions := []int{}
columnPositions := []int{}
for _, positions := range positions {
rowPositions = append(rowPositions, positions.Row())
columnPositions = append(columnPositions, positions.Column())
}
minRow := slices.Min(rowPositions)
maxRow := slices.Max(rowPositions)
minCol := slices.Min(columnPositions)
maxCol := slices.Max(columnPositions)
numberOfPositions := len(positions)
largestArea := 0
for i := range numberOfPositions {
for j := i + 1; j < numberOfPositions; j++ {
start := positions[i]
end := positions[j]
width := int(math.Abs(float64(end.Column()-start.Column())) + 1)
height := int(math.Abs(float64(end.Row()-start.Row())) + 1)
a := width * height
if a <= largestArea {
continue
}
rectMinRow := math.Min(float64(start.Row()), float64(end.Row()))
rectMaxRow := math.Max(float64(start.Row()), float64(end.Row()))
rectMinCol := math.Min(float64(start.Column()), float64(end.Column()))
rectMaxCol := math.Max(float64(start.Column()), float64(end.Column()))
// is center of rect inside our polygon?
centerRow := int((rectMaxRow + rectMinRow) / 2)
centerCol := int((rectMaxCol + rectMinCol) / 2)
center := position.From(centerRow, centerCol)
centerIsInside := false
j := numberOfPositions - 1
for i := 0; i < numberOfPositions; i++ {
edgeStart := positions[i]
edgeEnd := positions[j]
edgeCoversCenterRow := (edgeStart.Row() > center.Row()) != (edgeEnd.Row() > center.Row())
edgeHorizontalDistance := edgeEnd.Column() - edgeStart.Column()
edgeVeritcalDistance := edgeEnd.Row() - edgeStart.Row()
centerVerticalOffset := center.Row() - edgeStart.Row()
verticalDistanceCompleted := centerVerticalOffset / edgeVeritcalDistance
xIntersection := center.Column() + edgeHorizontalDistance*verticalDistanceCompleted
edgeIsToRightOfCenter := center.Column() < xIntersection
if edgeCoversCenterRow && edgeIsToRightOfCenter {
centerIsInside = !centerIsInside
}
j = i
}
if centerIsInside == false {
continue
}
// TODO: We need to figure this out
// if edges of polygon intersect with
// edges of rectangle
largestArea = a
}
}
return largestArea
}
+20
View File
@@ -25,3 +25,23 @@ func TestSolvePartOneWithInput(t *testing.T) {
t.Errorf("got %d but wanted %d", result, expected)
}
}
func TestSolvePartTwoWithExampleInput(t *testing.T) {
expected := 24
result := solution.SolvePartTwo("EXAMPLE.txt")
if result != expected {
t.Errorf("got %d but wanted %d", result, expected)
}
}
func TestSolvePartTwoWithInput(t *testing.T) {
expected := -1
result := solution.SolvePartTwo("INPUT.txt")
if result != expected {
t.Errorf("got %d but wanted %d", result, expected)
}
}
+9 -1
View File
@@ -1,7 +1,11 @@
// Package position provides types and functions to represent and manipulate positions and moves on a 2D grid.
package position
import "github.com/StevanFreeborn/advent-of-code-2025/internal/move"
import (
"fmt"
"github.com/StevanFreeborn/advent-of-code-2025/internal/move"
)
type Position interface {
Row() int
@@ -32,3 +36,7 @@ func (p position) Column() int {
func (p position) Move(move move.Move) Position {
return From(p.row+move.NumberOfRows(), p.column+move.NumberOfColumns())
}
func (p position) String() string {
return fmt.Sprintf("c: %d r: %d", p.column, p.row)
}