//go:build ignore package main import ( "bytes" "context" "fmt" "image" "image/color" "image/draw" "image/gif" "image/png" "os" "gen2d/internal/config" "gen2d/internal/service" "gen2d/pkg/splitsprite" ) func main() { cfg := config.Load() service.InitLLMConfig(cfg.LLM) service.InitImageGenConfig(cfg.ImageGen) ctx := context.Background() // 1. PromptAgent 优化提示词 fmt.Println("=== Step 1: Optimize prompt via PromptAgent ===") agentIn := service.PromptAgentInput{ Tags: []string{"像素", "战士", "持剑", "精灵表"}, AssetType: "sprite", Prompt: "生成一个像素风持剑战士的4方向行走精灵表", UserNote: "需要4方向(上下左右),每方向4帧行走动画", } out, err := service.RunPromptAgent(ctx, agentIn) if err != nil { fatalf("PromptAgent failed: %v", err) } fmt.Printf("Optimized prompt:\n%s\n\n", out.Prompt) // 2. 调用文生图 API fmt.Println("=== Step 2: Generate sprite sheet via image API ===") params := service.AssetParams{ Resolution: 1024, Format: "spritesheet", } images, err := service.GenerateImages(ctx, out.Prompt, params) if err != nil { fatalf("GenerateImages failed: %v", err) } if len(images) == 0 { fatalf("no images generated") } fmt.Printf("Generated %d image(s), size=%dx%d\n", len(images), images[0].Width, images[0].Height) os.MkdirAll("test_output", 0755) // 保存原始精灵表 sheetPath := "test_output/sprite_sheet.png" if err := os.WriteFile(sheetPath, images[0].Data, 0644); err != nil { fatalf("save sheet: %v", err) } fmt.Printf("Saved sprite sheet → %s (%d bytes)\n", sheetPath, len(images[0].Data)) // 3. splitsprite 拆分精灵表 fmt.Println("\n=== Step 3: Split sprite sheet ===") sheetImg, err := decodePNG(images[0].Data) if err != nil { fatalf("decode sheet: %v", err) } opts := splitsprite.DefaultOptions() opts.GridRows = 4 opts.GridCols = 4 opts.GridPadding = 2 opts.CenterAlign = true frames, err := splitsprite.Process(sheetImg, opts) if err != nil { fatalf("split failed: %v", err) } fmt.Printf("Detected %d frames\n", len(frames)) // 保存单帧 for i, f := range frames { fn := fmt.Sprintf("test_output/frame_%03d.png", i) if err := savePNG(fn, f); err != nil { fatalf("save frame %d: %v", i, err) } } fmt.Printf("Saved %d frames → test_output/frame_*.png\n", len(frames)) // 4. 生成 GIF 预览 fmt.Println("\n=== Step 4: Generate GIF preview ===") gifPath := "test_output/preview.gif" if err := genGIF(gifPath, frames, 12); err != nil { fatalf("generate GIF: %v", err) } fmt.Printf("GIF preview → %s (%d frames)\n", gifPath, len(frames)) fmt.Println("\n=== Done ===") fmt.Println("Output files:") fmt.Println(" test_output/sprite_sheet.png — original sprite sheet") fmt.Println(" test_output/frame_*.png — individual frames") fmt.Println(" test_output/preview.gif — animated GIF preview") } func genGIF(path string, frames []image.Image, delay int) error { f, err := os.Create(path) if err != nil { return err } defer f.Close() pal := buildPalette(frames) anim := &gif.GIF{} for _, frame := range frames { b := frame.Bounds() paletted := image.NewPaletted(b, pal) draw.Draw(paletted, b, frame, b.Min, draw.Src) anim.Image = append(anim.Image, paletted) anim.Delay = append(anim.Delay, delay) } anim.LoopCount = 0 // loop forever return gif.EncodeAll(f, anim) } func buildPalette(frames []image.Image) color.Palette { hist := make(map[color.RGBA]int) sampleStep := max(1, len(frames)/8) for i := 0; i < len(frames); i += sampleStep { b := frames[i].Bounds() step := max(1, (b.Dx()*b.Dy())/4096) n := 0 for y := b.Min.Y; y < b.Max.Y; y++ { for x := b.Min.X; x < b.Max.X; x++ { if n%step != 0 { n++ continue } n++ r, g, bl, a := frames[i].At(x, y).RGBA() if a > 0 { c := color.RGBA{R: uint8(r >> 8), G: uint8(g >> 8), B: uint8(bl >> 8), A: uint8(a >> 8)} hist[c]++ } } } } pal := make(color.Palette, 0, 256) for c := range hist { pal = append(pal, c) if len(pal) >= 240 { break } } pal = append(pal, color.RGBA{0, 0, 0, 0}, color.RGBA{0, 0, 0, 255}, color.RGBA{255, 255, 255, 255}, ) return pal } func decodePNG(data []byte) (image.Image, error) { img, _, err := image.Decode(bytes.NewReader(data)) if err != nil { return nil, err } return img, nil } func savePNG(path string, img image.Image) error { f, err := os.Create(path) if err != nil { return err } defer f.Close() return png.Encode(f, img) } func fatalf(format string, args ...interface{}) { fmt.Fprintf(os.Stderr, format+"\n", args...) os.Exit(1) }