init
This commit is contained in:
3
.gitignore
vendored
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3
.gitignore
vendored
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@@ -0,0 +1,3 @@
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*.zpl
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*.png
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cmd/zplgfa/zplgfa
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21
LICENSE
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21
LICENSE
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The MIT License (MIT)
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Copyright (c) 2018 Simon Waldherr
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in all
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copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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SOFTWARE.
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62
README.md
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62
README.md
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# ZPLGFA Golang Package
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The ZPLGFA Golang package implements some functions to convert PNG, JPEG and GIF files to ZPL compatible ^GF-elements ([Graphic Fields](https://www.zebra.com/us/en/support-downloads/knowledge-articles/gf-graphic-field-zpl-command.html)).
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## install
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1. [install Golang](https://golang.org/doc/install)
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1. `go get simonwaldherr.de/go/zplgfa`
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## example
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```go
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package main
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import (
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"simonwaldherr.de/go/zplgfa"
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"fmt"
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"image"
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_ "image/gif"
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_ "image/jpeg"
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_ "image/png"
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"log"
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"os"
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)
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func main() {
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// open file
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file, err := os.Open("label.png")
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if err != nil {
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log.Printf("Warning: could not open the file: %s\n", err)
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return
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}
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defer file.Close()
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// load image head information
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config, format, err := image.DecodeConfig(file)
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if err != nil {
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log.Printf("Warning: image not compatible, format: %s, config: %v, error: %s\n", format, config, err)
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}
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// reset file pointer to the beginning of the file
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file.Seek(0, 0)
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// load and decode image
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img, _, err := image.Decode(file)
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if err != nil {
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log.Printf("Warning: could not decode the file, %s\n", err)
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return
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}
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// flatten image
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flat := zplgfa.FlattenImage(img)
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// convert image to zpl compatible type
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gfimg := zplgfa.ConvertToZPL(flat, zplgfa.CompressedASCII)
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// output zpl with graphic field date to stdout
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fmt.Println(gfimg)
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}
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```
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31
cmd/zplgfa/README.md
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31
cmd/zplgfa/README.md
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@@ -0,0 +1,31 @@
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# ZPLGFA CLI Tool
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The ZPLGFA cli tool converts PNG, JPEG and GIF images to [ZPL](https://www.zebra.com/content/dam/zebra/manuals/printers/common/programming/zpl-zbi2-pm-en.pdf) strings.
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So if you need to print labels on a [ZPL](https://en.wikipedia.org/wiki/Zebra_(programming_language) compatible printer
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(like the amazing [ZEBRA ZM400](https://amzn.to/2OD5S4n)), but don't have ZPL-templates, you can use this free tool.
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## install
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1. [install Golang](https://golang.org/doc/install)
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1. `go install simonwaldherr.de/go/zplgfa/cmd/zplgfa`
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## usage
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So if your image file is `label.png` and the IP of your printer is `192.168.178.42` you can print via this command:
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```sh
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./zplgfa -file label.png | nc 192.168.178.42 9100
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```
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You can also use some effects, e.g. blur:
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```sh
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./zplgfa -file label.png -edit blur | nc 192.168.178.42 9100
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```
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The ZPLGFA is actually just a demo application for the ZPLGFA package,
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if you need something for productive work, look at the source and build something, depending on your needs
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## test
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You have your ZPLs, but no ZEBRA printer? You can test almost all ZPL functionality at [labelary.com](http://labelary.com/viewer.html).
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146
cmd/zplgfa/main.go
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146
cmd/zplgfa/main.go
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package main
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import (
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"simonwaldherr.de/go/zplgfa"
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"flag"
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"fmt"
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"github.com/anthonynsimon/bild/blur"
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"github.com/anthonynsimon/bild/effect"
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"github.com/anthonynsimon/bild/segment"
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"github.com/nfnt/resize"
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"image"
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"image/color"
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_ "image/gif"
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_ "image/jpeg"
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_ "image/png"
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"log"
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"math"
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"os"
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"strings"
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)
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func main() {
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var filenameFlag string
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var graphicTypeFlag string
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var imageEditFlag string
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var imageResizeFlag float64
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var graphicType zplgfa.GraphicType
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flag.StringVar(&filenameFlag, "file", "", "filename to convert to zpl")
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flag.StringVar(&graphicTypeFlag, "type", "CompressedASCII", "type of graphic field encoding")
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flag.StringVar(&imageEditFlag, "edit", "", "manipulate the image [invert,monochrome]")
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flag.Float64Var(&imageResizeFlag, "resize", 1.0, "zoom/resize the image")
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// load flag input arguments
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flag.Parse()
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// open file
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file, err := os.Open(filenameFlag)
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if err != nil {
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log.Printf("Warning: could not open the file \"%s\": %s\n", filenameFlag, err)
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return
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}
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defer file.Close()
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// load image head information
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config, format, err := image.DecodeConfig(file)
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if err != nil {
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log.Printf("Warning: image not compatible, format: %s, config: %v, error: %s\n", format, config, err)
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}
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// reset file pointer to the beginning of the file
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file.Seek(0, 0)
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// load and decode image
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img, _, err := image.Decode(file)
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if err != nil {
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log.Printf("Warning: could not decode the file, %s\n", err)
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return
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}
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// select graphic field type
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switch graphicTypeFlag {
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case "ASCII":
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graphicType = zplgfa.ASCII
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case "Binary":
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graphicType = zplgfa.Binary
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case "CompressedASCII":
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graphicType = zplgfa.CompressedASCII
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default:
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graphicType = zplgfa.CompressedASCII
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}
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// apply image manipulation functions
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if strings.Contains(imageEditFlag, "monochrome") {
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img = editImageMonochrome(img)
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}
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if strings.Contains(imageEditFlag, "blur") {
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img = blur.Gaussian(img, float64(config.Width)/300)
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}
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if strings.Contains(imageEditFlag, "edge") {
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img = effect.Sobel(img)
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}
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if strings.Contains(imageEditFlag, "segment") {
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img = segment.Threshold(img, 128)
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}
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if strings.Contains(imageEditFlag, "invert") {
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img = editImageInvert(img)
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}
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// resize image
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if imageResizeFlag != 1.0 {
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img = resize.Resize(uint(float64(config.Width)*imageResizeFlag), uint(float64(config.Height)*imageResizeFlag), img, resize.MitchellNetravali)
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}
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// flatten image
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flat := zplgfa.FlattenImage(img)
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// convert image to zpl compatible type
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gfimg := zplgfa.ConvertToZPL(flat, graphicType)
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// output zpl with graphic field date to stdout
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fmt.Println(gfimg)
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}
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type ImageSet interface {
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Set(x, y int, c color.Color)
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}
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func editImageInvert(img image.Image) image.Image {
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b := img.Bounds()
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imgSet := img.(ImageSet)
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for y := b.Min.Y; y < b.Max.Y; y++ {
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for x := b.Min.X; x < b.Max.X; x++ {
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oldPixel := img.At(x, y)
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r, g, b, a := oldPixel.RGBA()
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r = 65535 - r
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g = 65535 - g
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b = 65535 - b
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pixel := color.RGBA{uint8(r), uint8(g), uint8(b), uint8(a)}
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imgSet.Set(x, y, pixel)
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}
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}
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return img
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}
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func editImageMonochrome(img image.Image) image.Image {
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b := img.Bounds()
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imgSet := img.(ImageSet)
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for y := b.Min.Y; y < b.Max.Y; y++ {
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for x := b.Min.X; x < b.Max.X; x++ {
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oldPixel := img.At(x, y)
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r, g, b, a := oldPixel.RGBA()
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if r > math.MaxUint16/2 || g > math.MaxUint16/2 || b > math.MaxUint16/2 {
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r, g, b = 65535, 65535, 65535
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} else {
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r, g, b = 0, 0, 0
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}
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pixel := color.RGBA{uint8(r), uint8(g), uint8(b), uint8(a)}
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imgSet.Set(x, y, pixel)
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}
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}
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return img
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}
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195
zplgfa.go
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195
zplgfa.go
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@@ -0,0 +1,195 @@
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package zplgfa
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import (
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"encoding/hex"
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"fmt"
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"image"
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"image/color"
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"math"
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"strings"
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)
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type GraphicType int
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const (
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ASCII GraphicType = iota
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Binary
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CompressedASCII
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)
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// ConvertToZPL is just a wrapper for ConvertToGraphicField which also includes the ZPL
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// starting code ^XA and ending code ^XZ, as wall as a Field Separator and Field Origin.
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func ConvertToZPL(img image.Image, graphicType GraphicType) string {
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return fmt.Sprintf("^XA,^FS\n^FO0,0\n%s^FS,^XZ\n", ConvertToGraphicField(img, graphicType))
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}
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func FlattenImage(source image.Image) *image.NRGBA {
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size := source.Bounds().Size()
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background := color.White
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target := image.NewNRGBA(source.Bounds())
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for y := 0; y < size.Y; y++ {
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for x := 0; x < size.X; x++ {
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p := source.At(x, y)
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flat := flatten(p, background)
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target.Set(x, y, flat)
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}
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}
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return target
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}
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func flatten(input color.Color, background color.Color) color.Color {
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source := color.NRGBA64Model.Convert(input).(color.NRGBA64)
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r, g, b, a := source.RGBA()
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bg_r, bg_g, bg_b, _ := background.RGBA()
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alpha := float32(a) / 0xffff
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conv := func(c uint32, bg uint32) uint8 {
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val := 0xffff - uint32((float32(bg) * alpha))
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val = val | uint32(float32(c)*alpha)
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return uint8(val >> 8)
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}
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c := color.NRGBA{
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conv(r, bg_r),
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conv(g, bg_g),
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conv(b, bg_b),
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uint8(0xff),
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}
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return c
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}
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func getRepeatCode(repeatCount int, char string) string {
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repeatStr := ""
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if repeatCount > 419 {
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repeatCount -= 419
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repeatStr += getRepeatCode(repeatCount, char)
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repeatCount = 419
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}
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high := repeatCount / 20
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low := repeatCount % 20
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lowString := " GHIJKLMNOPQRSTUVWXY"
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highString := " ghijklmnopqrstuvwxyz"
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if high > 0 {
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repeatStr += string(highString[high])
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}
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if low > 0 {
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repeatStr += string(lowString[low])
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}
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repeatStr += char
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return repeatStr
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}
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func compressASCII(in string) string {
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in = strings.ToUpper(in)
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var curChar string = ""
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var lastChar string = ""
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var lastCharSince int = 0
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var output string = ""
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var repCode string
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for i := 0; i < len(in)+1; i++ {
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if i == len(in) {
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curChar = ""
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if lastCharSince == 0 {
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switch lastChar {
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case "0":
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output = ","
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return output
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case "F":
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output = "!"
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return output
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}
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}
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} else {
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curChar = string(in[i])
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}
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if lastChar != curChar {
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if i-lastCharSince > 8 {
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repCode = getRepeatCode(i-lastCharSince, lastChar)
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output += repCode
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} else {
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for j := 0; j < i-lastCharSince; j++ {
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output += lastChar
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}
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}
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lastChar = curChar
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lastCharSince = i
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}
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}
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if output == "" {
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output += getRepeatCode(len(in), lastChar)
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}
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return output
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}
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// ConvertToGraphicField converts an image.Image picture to a ZPL compatible Graphic Field.
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// The ZPL ^GF (Graphic Field) supports various data formats, this package supports the
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// normal ASCII encoded, as well as a RLE compressed ASCII format. It also supports the
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// Binary Graphic Field format. The encoding can be choosen by the second argument.
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func ConvertToGraphicField(source image.Image, graphicType GraphicType) string {
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var gfType string
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var lastLine string
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size := source.Bounds().Size()
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width := size.X / 8
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height := size.Y
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if size.Y%8 != 0 {
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width = width + 1
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}
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var GraphicFieldData string
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for y := 0; y < size.Y; y++ {
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line := make([]uint8, width)
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lineIndex := 0
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index := uint8(0)
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currentByte := line[lineIndex]
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for x := 0; x < size.X; x++ {
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index = index + 1
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p := source.At(x, y)
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lum := color.Gray16Model.Convert(p).(color.Gray16)
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if lum.Y < math.MaxUint16/2 {
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currentByte = currentByte | (1 << (8 - index))
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}
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if index >= 8 {
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line[lineIndex] = currentByte
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lineIndex++
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if lineIndex < len(line) {
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currentByte = line[lineIndex]
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}
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index = 0
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}
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}
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hexstr := hex.EncodeToString(line)
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switch graphicType {
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case ASCII:
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GraphicFieldData += fmt.Sprintln(hexstr)
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case CompressedASCII:
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curLine := compressASCII(hexstr)
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if lastLine == curLine {
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GraphicFieldData += ":"
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} else {
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GraphicFieldData += curLine
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}
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lastLine = curLine
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case Binary:
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GraphicFieldData += fmt.Sprintf("%s", line)
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default:
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graphicType = CompressedASCII
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GraphicFieldData += fmt.Sprintln(compressASCII(hexstr))
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}
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}
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if graphicType == ASCII || graphicType == CompressedASCII {
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gfType = "A"
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} else if graphicType == Binary {
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gfType = "B"
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}
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return fmt.Sprintf("^GF%s,%d,%d,%d,\n%s", gfType, len(GraphicFieldData), width*height, width, GraphicFieldData)
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}
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Reference in New Issue
Block a user