Files
SnapGo/internal/application/annotation_test.go
T

174 lines
4.1 KiB
Go

package application
import (
"bytes"
"image"
"image/color"
"image/draw"
"image/png"
"testing"
)
func TestApplyAnnotationsDrawsIntoPNG(t *testing.T) {
src := image.NewRGBA(image.Rect(0, 0, 40, 40))
draw.Draw(src, src.Bounds(), &image.Uniform{C: color.White}, image.Point{}, draw.Src)
var buf bytes.Buffer
if err := png.Encode(&buf, src); err != nil {
t.Fatalf("encode source: %v", err)
}
out, err := ApplyAnnotations(buf.Bytes(), []Annotation{
{
Tool: "rect",
Color: "#ef4444",
Points: []Point{
{X: 5, Y: 5},
{X: 30, Y: 30},
},
},
}, 1)
if err != nil {
t.Fatalf("apply annotations: %v", err)
}
img, err := png.Decode(bytes.NewReader(out))
if err != nil {
t.Fatalf("decode output: %v", err)
}
if got := color.RGBAModel.Convert(img.At(5, 5)).(color.RGBA); got.R != 0xef || got.G != 0x44 || got.B != 0x44 {
t.Fatalf("expected annotated pixel at rectangle edge, got %#v", got)
}
}
func TestApplyAnnotationsNoAnnotationsReturnsOriginalBytes(t *testing.T) {
original := []byte("not decoded when no annotations")
out, err := ApplyAnnotations(original, nil, 1)
if err != nil {
t.Fatalf("apply annotations: %v", err)
}
if !bytes.Equal(out, original) {
t.Fatalf("expected original bytes")
}
}
func TestApplyAnnotationsDrawsTextIntoPNG(t *testing.T) {
src := image.NewRGBA(image.Rect(0, 0, 120, 80))
draw.Draw(src, src.Bounds(), &image.Uniform{C: color.White}, image.Point{}, draw.Src)
var buf bytes.Buffer
if err := png.Encode(&buf, src); err != nil {
t.Fatalf("encode source: %v", err)
}
out, err := ApplyAnnotations(buf.Bytes(), []Annotation{
{
Tool: "text",
Color: "#ef4444",
Points: []Point{
{X: 10, Y: 10},
},
Text: "T",
},
}, 1)
if err != nil {
t.Fatalf("apply annotations: %v", err)
}
img, err := png.Decode(bytes.NewReader(out))
if err != nil {
t.Fatalf("decode output: %v", err)
}
found := false
for y := 8; y < 40 && !found; y++ {
for x := 8; x < 40; x++ {
got := color.RGBAModel.Convert(img.At(x, y)).(color.RGBA)
if got.R > 180 && got.G < 180 && got.B < 180 {
found = true
break
}
}
}
if !found {
t.Fatalf("expected red text pixels near annotation point")
}
}
func TestApplyAnnotationsWithScaleDrawsTextAtDevicePosition(t *testing.T) {
src := image.NewRGBA(image.Rect(0, 0, 220, 120))
draw.Draw(src, src.Bounds(), &image.Uniform{C: color.White}, image.Point{}, draw.Src)
var buf bytes.Buffer
if err := png.Encode(&buf, src); err != nil {
t.Fatalf("encode source: %v", err)
}
out, err := ApplyAnnotationsWithScale(buf.Bytes(), []Annotation{
{
Tool: "text",
Color: "#ef4444",
Points: []Point{{X: 50, Y: 20}},
Text: "T",
FontSize: 20,
},
}, 2, 2)
if err != nil {
t.Fatalf("apply annotations: %v", err)
}
img, err := png.Decode(bytes.NewReader(out))
if err != nil {
t.Fatalf("decode output: %v", err)
}
minX := 999
found := false
for y := 0; y < img.Bounds().Dy(); y++ {
for x := 0; x < img.Bounds().Dx(); x++ {
got := color.RGBAModel.Convert(img.At(x, y)).(color.RGBA)
if got.R > 180 && got.G < 180 && got.B < 180 {
found = true
if x < minX {
minX = x
}
}
}
}
if !found {
t.Fatalf("expected red text pixels")
}
if minX < 90 {
t.Fatalf("expected text to be drawn near scaled x=100, min red x=%d", minX)
}
}
func TestApplyAnnotationsUsesStrokeWidth(t *testing.T) {
src := image.NewRGBA(image.Rect(0, 0, 80, 80))
draw.Draw(src, src.Bounds(), &image.Uniform{C: color.White}, image.Point{}, draw.Src)
var buf bytes.Buffer
if err := png.Encode(&buf, src); err != nil {
t.Fatalf("encode source: %v", err)
}
out, err := ApplyAnnotations(buf.Bytes(), []Annotation{
{
Tool: "rect",
Color: "#ef4444",
Points: []Point{{X: 20, Y: 20}, {X: 60, Y: 60}},
StrokeWidth: 8,
},
}, 1)
if err != nil {
t.Fatalf("apply annotations: %v", err)
}
img, err := png.Decode(bytes.NewReader(out))
if err != nil {
t.Fatalf("decode output: %v", err)
}
got := color.RGBAModel.Convert(img.At(20, 24)).(color.RGBA)
if got.R < 180 || got.G > 180 || got.B > 180 {
t.Fatalf("expected thick rectangle stroke to cover y=24, got %#v", got)
}
}