go-comic-converter/internal/epub/imageprocessing/epub_image_processing.go
2023-04-27 15:58:40 +02:00

204 lines
4.4 KiB
Go

/*
Extract and transform image into a compressed jpeg.
*/
package epubimageprocessing
import (
"image"
"path/filepath"
"strings"
"sync"
epubimage "github.com/celogeek/go-comic-converter/v2/internal/epub/image"
epubimagedata "github.com/celogeek/go-comic-converter/v2/internal/epub/imagedata"
epubimagefilters "github.com/celogeek/go-comic-converter/v2/internal/epub/imagefilters"
epubprogress "github.com/celogeek/go-comic-converter/v2/internal/epub/progress"
"github.com/disintegration/gift"
)
// only accept jpg, png and webp as source file
func isSupportedImage(path string) bool {
switch strings.ToLower(filepath.Ext(path)) {
case ".jpg", ".jpeg", ".png", ".webp":
{
return true
}
}
return false
}
// extract and convert images
func LoadImages(o *Options) ([]*epubimage.Image, error) {
images := make([]*epubimage.Image, 0)
imageCount, imageInput, err := o.Load()
if err != nil {
return nil, err
}
// dry run, skip convertion
if o.Dry {
for img := range imageInput {
images = append(images, &epubimage.Image{
Id: img.Id,
Path: img.Path,
Name: img.Name,
})
}
return images, nil
}
imageOutput := make(chan *epubimage.Image)
// processing
bar := epubprogress.New(epubprogress.Options{
Quiet: o.Quiet,
Max: imageCount,
Description: "Processing",
CurrentJob: 1,
TotalJob: 2,
})
wg := &sync.WaitGroup{}
for i := 0; i < o.WorkersRatio(50); i++ {
wg.Add(1)
go func() {
defer wg.Done()
for img := range imageInput {
src := img.Image
for part, dst := range TransformImage(src, img.Id, o.Image) {
var raw image.Image
if img.Id == 0 && part == 0 {
raw = dst
}
imageOutput <- &epubimage.Image{
Id: img.Id,
Part: part,
Raw: raw,
Data: epubimagedata.New(img.Id, part, dst, o.Image.Quality),
Width: dst.Bounds().Dx(),
Height: dst.Bounds().Dy(),
IsCover: img.Id == 0 && part == 0,
DoublePage: part == 0 && src.Bounds().Dx() > src.Bounds().Dy(),
Path: img.Path,
Name: img.Name,
}
}
}
}()
}
go func() {
wg.Wait()
close(imageOutput)
}()
for img := range imageOutput {
if img.Part == 0 {
bar.Add(1)
}
if o.Image.NoBlankPage && img.Width == 1 && img.Height == 1 {
continue
}
images = append(images, img)
}
bar.Close()
if len(images) == 0 {
return nil, errNoImagesFound
}
return images, nil
}
// create a title page with the cover
func CoverTitleData(img image.Image, title string, quality int) *epubimagedata.ImageData {
// Create a blur version of the cover
g := gift.New(epubimagefilters.CoverTitle(title))
dst := image.NewGray(g.Bounds(img.Bounds()))
g.Draw(dst, img)
return epubimagedata.NewRaw("OEBPS/Images/title.jpg", dst, quality)
}
// transform image into 1 or 3 images
// only doublepage with autosplit has 3 versions
func TransformImage(src image.Image, srcId int, o *epubimage.Options) []image.Image {
var filters, splitFilter []gift.Filter
var images []image.Image
if o.Crop {
f := epubimagefilters.AutoCrop(
src,
o.CropRatioLeft,
o.CropRatioUp,
o.CropRatioRight,
o.CropRatioBottom,
)
filters = append(filters, f)
splitFilter = append(splitFilter, f)
}
if o.AutoRotate && src.Bounds().Dx() > src.Bounds().Dy() {
filters = append(filters, gift.Rotate90())
}
if o.Contrast != 0 {
f := gift.Contrast(float32(o.Contrast))
filters = append(filters, f)
splitFilter = append(splitFilter, f)
}
if o.Brightness != 0 {
f := gift.Brightness(float32(o.Brightness))
filters = append(filters, f)
splitFilter = append(splitFilter, f)
}
filters = append(filters,
epubimagefilters.Resize(o.ViewWidth, o.ViewHeight, gift.LanczosResampling),
epubimagefilters.Pixel(),
)
// convert
{
g := gift.New(filters...)
dst := image.NewGray(g.Bounds(src.Bounds()))
g.Draw(dst, src)
images = append(images, dst)
}
// auto split off
if !o.AutoSplitDoublePage {
return images
}
// portrait, no need to split
if src.Bounds().Dx() <= src.Bounds().Dy() {
return images
}
// cover
if o.HasCover && srcId == 0 {
return images
}
// convert double page
for _, b := range []bool{o.Manga, !o.Manga} {
g := gift.New(splitFilter...)
g.Add(
epubimagefilters.CropSplitDoublePage(b),
epubimagefilters.Resize(o.ViewWidth, o.ViewHeight, gift.LanczosResampling),
)
dst := image.NewGray(g.Bounds(src.Bounds()))
g.Draw(dst, src)
images = append(images, dst)
}
return images
}