319 lines
7.6 KiB
Go
319 lines
7.6 KiB
Go
package assets
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import (
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"bufio"
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_ "image/png"
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"io/fs"
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"log"
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"log/slog"
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"openquell/config"
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"openquell/util"
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"os"
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"path/filepath"
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"sort"
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"strconv"
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"strings"
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"github.com/hajimehoshi/ebiten/v2"
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)
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var Levels = LoadLevels("levels")
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var Tiles = InitTiles()
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// Tile: contains image, identifier (as used in level data) and
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// additional properties
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type Tile struct {
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Id byte
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Sprite *ebiten.Image
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Class string
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Solid bool // wall brick
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Player bool // player sphere
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IsPrimary bool // primary player sphere
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Renderable bool // visible, has sprite
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Velocity bool // movable
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Collectible bool // collectible, vanishes once collected
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Transient bool // turns into brick wall when traversed
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Destroyable bool // turns into empty floor when bumped into twice
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Particle int // -1=unused, 0-3 = show image of slice
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Tiles []*ebiten.Image // has N sprites
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TileNames []string // same thing, only the names
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Obstacle bool // is an obstacle/enemy
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Direction int // obstacle business end shows into this direction
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}
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func (tile *Tile) Clone() *Tile {
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newtile := &Tile{
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Id: tile.Id,
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Sprite: tile.Sprite,
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Class: tile.Class,
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Solid: tile.Solid,
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Player: tile.Player,
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IsPrimary: tile.IsPrimary,
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Renderable: tile.Renderable,
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Velocity: tile.Velocity,
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Collectible: tile.Collectible,
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Transient: tile.Transient,
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Destroyable: tile.Destroyable,
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Particle: tile.Particle,
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Tiles: tile.Tiles,
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TileNames: tile.TileNames,
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Obstacle: tile.Obstacle,
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Direction: tile.Direction,
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}
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return newtile
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}
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const (
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Primary bool = true
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Secondary bool = false
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)
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func NewTilePlayer(isprimary bool) *Tile {
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tile := &Tile{
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Id: 'S',
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Class: "sphere",
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Renderable: true,
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Player: true,
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Velocity: true,
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IsPrimary: isprimary,
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}
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switch isprimary {
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case Primary:
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tile.Sprite = Assets["sphere-blue"]
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case Secondary:
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tile.Sprite = Assets["sphere-blue-secondary"]
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tile.Id = 's'
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}
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// primary sprite is always the first one
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tile.Tiles = []*ebiten.Image{Assets["sphere-blue"], Assets["sphere-blue-secondary"]}
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return tile
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}
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func NewTileBlock(class string) *Tile {
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return &Tile{
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Id: '#',
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Sprite: Assets[class],
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Class: class,
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Solid: true,
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Renderable: true,
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}
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}
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func NewTileCollectible(class string) *Tile {
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return &Tile{
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Id: 'o',
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Sprite: Assets[class],
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Class: class,
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Solid: false,
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Renderable: true,
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Collectible: true,
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}
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}
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func NewTileObstacle(class string, direction int) *Tile {
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return &Tile{
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Id: '+',
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Sprite: Assets[class],
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Class: class,
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Solid: false,
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Renderable: true,
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Obstacle: true,
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Direction: direction,
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Velocity: true,
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}
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}
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func NewTileParticle(class []string) *Tile {
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sprites := []*ebiten.Image{}
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for _, sprite := range class {
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sprites = append(sprites, Assets[sprite])
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}
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return &Tile{
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Id: '*',
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Class: "particle",
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Solid: false,
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Renderable: false,
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Particle: 0,
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Tiles: sprites,
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}
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}
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func NewTileTranswall(class []string) *Tile {
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sprites := []*ebiten.Image{}
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names := []string{}
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for _, sprite := range class {
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sprites = append(sprites, Assets[sprite])
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names = append(names, sprite)
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}
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return &Tile{
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Id: 't',
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Class: "transwall",
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Solid: false,
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Renderable: true,
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Transient: true,
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Tiles: sprites,
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Sprite: sprites[0], // initially use the first
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TileNames: names,
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}
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}
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func NewTileHiddenDoor(class []string) *Tile {
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sprites := []*ebiten.Image{}
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names := []string{}
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for _, sprite := range class {
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sprites = append(sprites, Assets[sprite])
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names = append(names, sprite)
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}
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return &Tile{
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Id: 'W',
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Class: "hiddendoor",
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Solid: false,
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Renderable: true,
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Destroyable: true,
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Tiles: sprites,
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Sprite: sprites[0], // initially use the first
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TileNames: names,
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}
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}
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// used to map level data bytes to actual tiles
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type TileRegistry map[byte]*Tile
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// holds a raw level spec:
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//
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// Name: the name of the level file w/o the .lvl extension
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// Background: an image name used as game background for this level
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// Description: text to display on top
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// Data: a level spec consisting of chars of the above mapping and spaces, e.g.:
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// ####
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// # #
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// ####
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//
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// Each level data must be 20 chars wide (= 640 px width) and 15 chars
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// high (=480 px height).
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type RawLevel struct {
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Name string
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Description string
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Background *ebiten.Image
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Data []byte
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MinMoves int
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}
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func InitTiles() TileRegistry {
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return TileRegistry{
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' ': {Id: ' ', Class: "floor", Renderable: false},
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//'#': NewTileBlock("block-grey32"),
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'#': NewTileBlock("block-greycolored"),
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'B': NewTileBlock("block-orange-32"),
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'S': NewTilePlayer(Primary),
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's': NewTilePlayer(Secondary),
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'o': NewTileCollectible("collectible-orange"),
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'+': NewTileObstacle("obstacle-star", config.All),
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'^': NewTileObstacle("obstacle-north", config.North),
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'v': NewTileObstacle("obstacle-south", config.South),
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'<': NewTileObstacle("obstacle-west", config.West),
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'>': NewTileObstacle("obstacle-east", config.East),
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'*': NewTileParticle([]string{
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//"particle-ring-1",
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"particle-ring-2",
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"particle-ring-3",
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"particle-ring-4",
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"particle-ring-5",
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"particle-ring-6",
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}),
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't': NewTileTranswall([]string{"transwall", "block-orange-32"}),
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'W': NewTileHiddenDoor([]string{"block-greycolored", "block-greycolored-damaged"}),
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}
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}
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// load levels at compile time into ram, creates a slice of raw levels
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func LoadLevels(dir string) []RawLevel {
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levels := []RawLevel{}
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// we use embed.FS to iterate over all files in ./levels/
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entries, err := assetfs.ReadDir(dir)
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if err != nil {
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log.Fatalf("failed to read level dir %s: %s", dir, err)
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}
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sort.Slice(entries, func(i, j int) bool {
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return entries[i].Name() < entries[j].Name()
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})
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for _, levelfile := range entries {
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if levelfile.Type().IsRegular() && strings.Contains(levelfile.Name(), ".lvl") {
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path := filepath.Join("assets", dir)
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level := ParseRawLevel(path, levelfile)
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levels = append(levels, level)
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slog.Debug("loaded level", "path", path, "file", levelfile)
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}
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}
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return levels
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}
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func ParseRawLevel(dir string, levelfile fs.DirEntry) RawLevel {
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fd, err := os.Open(filepath.Join(dir, levelfile.Name()))
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if err != nil {
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log.Fatalf("failed to read level file %s: %s", levelfile.Name(), err)
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}
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defer fd.Close()
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name := strings.TrimSuffix(levelfile.Name(), ".lvl")
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des := ""
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background := &ebiten.Image{}
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data := []byte{}
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minmoves := 0
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scanner := bufio.NewScanner(fd)
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for scanner.Scan() {
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// ignore any whitespace
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line := scanner.Text()
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// ignore empty lines
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if len(line) == 0 {
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continue
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}
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switch {
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case strings.Contains(line, "Background:"):
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haveit := strings.Split(line, ": ")
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if util.Exists(Assets, haveit[1]) {
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background = Assets[haveit[1]]
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}
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case strings.Contains(line, "Description:"):
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haveit := strings.Split(line, ": ")
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des = haveit[1]
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case strings.Contains(line, "MinMoves:"):
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haveit := strings.Split(line, ": ")
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minmoves, err = strconv.Atoi(haveit[1])
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if err != nil {
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log.Fatal("Failed to convert MinMoves to int: %w", err)
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}
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default:
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// all other non-empty and non-equalsign lines are
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// level definition matrix data, merge thes into data
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data = append(data, line+"\n"...)
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}
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}
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return RawLevel{
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Name: name,
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Data: data,
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Background: background,
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Description: des,
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MinMoves: minmoves,
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}
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}
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