Files
TrollSSH/internal/render/render_test.go
T

223 lines
5.8 KiB
Go

package render
import (
"bytes"
"image"
"image/jpeg"
"strings"
"sync"
"testing"
)
func TestResolveCharset(t *testing.T) {
if got := resolveCharset("blocks"); got != " ░▒▓█" {
t.Errorf("blocks preset = %q", got)
}
if got := resolveCharset("XYZ"); got != "XYZ" {
t.Errorf("custom ramp = %q", got)
}
if got := resolveCharset(""); !strings.HasPrefix(got, " .") {
t.Errorf("default = %q", got)
}
}
func TestFrameToAscii(t *testing.T) {
// Below threshold -> first ramp char; full brightness -> last.
opts := Options{BrightnessThreshold: 40, Charset: "standard"}
ramp := []rune(resolveCharset("standard"))
img := &image.RGBA{
Pix: []byte{0, 0, 0, 255, 255, 255, 255, 255},
Stride: 8, Rect: image.Rect(0, 0, 2, 1),
}
out := []rune(string(frameToAscii(img, buildRampLUT(ramp, opts))))
if out[0] != ramp[0] {
t.Errorf("dark px = %q, want %q", out[0], ramp[0])
}
if out[1] != ramp[len(ramp)-1] {
t.Errorf("bright px = %q, want %q", out[1], ramp[len(ramp)-1])
}
}
func TestFrameToAsciiInvert(t *testing.T) {
opts := Options{BrightnessThreshold: 40, Charset: "standard", Invert: true}
ramp := []rune(resolveCharset("standard"))
img := &image.RGBA{
Pix: []byte{255, 255, 255, 255},
Stride: 4, Rect: image.Rect(0, 0, 1, 1),
}
out := []rune(string(frameToAscii(img, buildRampLUT(ramp, opts))))
if out[0] != ramp[0] {
t.Errorf("inverted bright = %q, want %q", out[0], ramp[0])
}
}
func TestRenderConcurrentSameKey(t *testing.T) {
var jpegBuf bytes.Buffer
src := image.NewRGBA(image.Rect(0, 0, 16, 16))
for i := range src.Pix {
src.Pix[i] = byte(i * 7)
}
if err := jpeg.Encode(&jpegBuf, src, nil); err != nil {
t.Fatal(err)
}
r := NewRenderer(0, [][]byte{jpegBuf.Bytes()}, Options{
BrightnessThreshold: 40,
Charset: "standard",
}, NewCache(1<<20, false))
var wg sync.WaitGroup
results := make([][]byte, 32)
for i := range results {
wg.Add(1)
go func(i int) {
defer wg.Done()
ascii, err := r.Render(0, 20, 10, false, ColorTierTrueColor)
if err != nil {
t.Error(err)
return
}
results[i] = ascii
}(i)
}
wg.Wait()
for i, got := range results {
if !bytes.Equal(got, results[0]) {
t.Fatalf("result %d differs from result 0", i)
}
}
}
func incompressible(n int) []byte {
b := make([]byte, n)
x := uint32(0x9e3779b9)
for i := range b {
x ^= x << 13
x ^= x >> 17
x ^= x << 5
b[i] = byte(x)
}
return b
}
func TestRenderCacheEvictsByBytes(t *testing.T) {
key := func(index int) cacheKey { return cacheKey{index: index} }
payload := incompressible(1000)
budget := 3 * entryCost(key(0), compressAscii(payload))
c := NewCache(budget, true)
for i := range 5 {
c.put(key(i), payload)
}
if c.size.Load() > budget {
t.Errorf("size %d exceeds budget %d", c.size.Load(), budget)
}
if _, ok := c.get(key(0)); ok {
t.Error("oldest entry should have been evicted")
}
if _, ok := c.get(key(4)); !ok {
t.Error("newest entry should be cached")
}
}
func TestRenderCacheRoundTrips(t *testing.T) {
for _, compress := range []bool{false, true} {
c := NewCache(1<<20, compress)
want := incompressible(4096)
c.put(cacheKey{}, want)
got, ok := c.get(cacheKey{})
if !ok {
t.Fatalf("compress=%v: entry should be cached", compress)
}
if !bytes.Equal(got, want) {
t.Fatalf("compress=%v: entry does not match original", compress)
}
}
}
func TestRenderCacheDisabled(t *testing.T) {
c := NewCache(0, false)
if c != nil {
t.Fatal("zero budget should disable the cache")
}
c.put(cacheKey{}, []byte("v"))
if _, ok := c.get(cacheKey{}); ok {
t.Error("nil cache should never hit")
}
}
func TestRenderCacheRejectsOversizedEntry(t *testing.T) {
c := NewCache(256, true)
c.put(cacheKey{}, incompressible(10_000))
if _, ok := c.get(cacheKey{}); ok {
t.Error("entry larger than budget should not be cached")
}
if c.size.Load() != 0 {
t.Errorf("size = %d, want 0", c.size.Load())
}
}
func TestRenderCacheAccountsCompressedSize(t *testing.T) {
cache := NewCache(512, true)
value := make([]byte, 1, 4096)
cache.put(cacheKey{}, value)
if _, ok := cache.get(cacheKey{}); !ok {
t.Fatal("small value should be cached regardless of its backing capacity")
}
if got := cache.size.Load(); got > 512 {
t.Fatalf("size = %d, want <= 512", got)
}
}
func TestAnsi256CoalescesQuantizedColors(t *testing.T) {
img := &image.RGBA{
Pix: []byte{96, 96, 96, 255, 100, 100, 100, 255},
Stride: 8,
Rect: image.Rect(0, 0, 2, 1),
}
output := frameToAnsi(img, buildRampLUT([]rune(" .#"), Options{}), ColorTier256)
if count := bytes.Count(output, []byte("\x1b[38;5;")); count != 1 {
t.Fatalf("color escape count = %d, want 1: %q", count, output)
}
}
func TestAnsiDoesNotResetEachRow(t *testing.T) {
img := &image.RGBA{
Pix: []byte{100, 100, 100, 255, 100, 100, 100, 255},
Stride: 4,
Rect: image.Rect(0, 0, 1, 2),
}
output := frameToAnsi(img, buildRampLUT([]rune(" .#"), Options{}), ColorTierTrueColor)
if count := bytes.Count(output, []byte(ansiReset)); count != 1 {
t.Fatalf("reset count = %d, want 1: %q", count, output)
}
}
func TestDetectColorTier(t *testing.T) {
cases := map[string]ColorTier{
"": ColorTierNone,
"dumb": ColorTierNone,
"vt100": ColorTierNone,
"linux": ColorTierNone,
"xterm": ColorTierTrueColor,
"xterm-256color": ColorTier256,
"screen-256color": ColorTier256,
"tmux-256color": ColorTier256,
"xterm-direct": ColorTierTrueColor,
"xterm-kitty": ColorTierTrueColor,
}
for term, want := range cases {
if got := DetectColorTier(term); got != want {
t.Errorf("DetectColorTier(%q) = %d, want %d", term, got, want)
}
}
}
func TestQuantize256(t *testing.T) {
if got := quantize256(0, 0, 0); got != 16 {
t.Errorf("black = %d, want 16", got)
}
if got := quantize256(255, 255, 255); got != 231 {
t.Errorf("white = %d, want 231", got)
}
}