Add shield icon: medieval round shield with Syncthing motif warpaint
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Redesign tray/app icon as a wooden round shield with iron rim, rivets, wood grain, and the Syncthing network motif (ring + 3 nodes + spokes) painted in the state color. Dark shadow outline for wood contrast. Inspired by Stammtisch hero icon style (warm, illustrated wood tones). - Dynamic tray icon changes color per state (green/blue/gray/red) - Static assets: PNG at 7 sizes + multi-size .ico + preview sheet - Icon generator utility (cmd/icongen) Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
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assets/icon-128.png
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After Width: | Height: | Size: 14 KiB |
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assets/icon-16.png
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After Width: | Height: | Size: 788 B |
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assets/icon-256.png
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After Width: | Height: | Size: 32 KiB |
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assets/icon-32.png
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After Width: | Height: | Size: 2.2 KiB |
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assets/icon-48.png
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After Width: | Height: | Size: 4.1 KiB |
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assets/icon-512.png
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After Width: | Height: | Size: 69 KiB |
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assets/icon-64.png
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After Width: | Height: | Size: 6.0 KiB |
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assets/icon-preview.png
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After Width: | Height: | Size: 27 KiB |
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assets/syncwarden.ico
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After Width: | Height: | Size: 40 KiB |
165
cmd/icongen/main.go
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@@ -0,0 +1,165 @@
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// Generates static icon assets for the SyncWarden project.
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// Run: go run ./cmd/icongen/
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package main
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import (
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"bytes"
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"encoding/binary"
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"fmt"
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"image/png"
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"os"
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"path/filepath"
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"github.com/fogleman/gg"
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"git.davoryn.de/calic/syncwarden/internal/icons"
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)
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func main() {
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dir := filepath.Join("assets")
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os.MkdirAll(dir, 0755)
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// Generate PNGs at standard icon sizes (idle/green as canonical)
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sizes := []int{16, 32, 48, 64, 128, 256, 512}
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pngEntries := make(map[int][]byte) // size → PNG data
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for _, sz := range sizes {
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data, err := icons.RenderPNG(icons.StateIdle, sz)
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if err != nil {
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fmt.Fprintf(os.Stderr, "error rendering %d: %v\n", sz, err)
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continue
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}
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pngEntries[sz] = data
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fname := fmt.Sprintf("icon-%d.png", sz)
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fpath := filepath.Join(dir, fname)
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if err := os.WriteFile(fpath, data, 0644); err != nil {
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fmt.Fprintf(os.Stderr, "error writing %s: %v\n", fpath, err)
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continue
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}
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fmt.Printf(" %s (%d bytes)\n", fpath, len(data))
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}
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// Generate multi-size .ico (16, 32, 48, 256)
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icoSizes := []int{16, 32, 48, 256}
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icoData := buildMultiICO(icoSizes, pngEntries)
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icoPath := filepath.Join(dir, "syncwarden.ico")
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if err := os.WriteFile(icoPath, icoData, 0644); err != nil {
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fmt.Fprintf(os.Stderr, "error writing ico: %v\n", err)
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} else {
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fmt.Printf(" %s (%d bytes)\n", icoPath, len(icoData))
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}
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// Generate a large composited preview showing all states
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previewPath := filepath.Join(dir, "icon-preview.png")
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generatePreview(previewPath)
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fmt.Println("Done.")
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}
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func buildMultiICO(sizes []int, pngs map[int][]byte) []byte {
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count := 0
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for _, sz := range sizes {
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if _, ok := pngs[sz]; ok {
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count++
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}
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}
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const headerSize = 6
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const entrySize = 16
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dataOffset := headerSize + entrySize*count
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buf := new(bytes.Buffer)
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// ICONDIR header
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binary.Write(buf, binary.LittleEndian, uint16(0)) // Reserved
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binary.Write(buf, binary.LittleEndian, uint16(1)) // Type: icon
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binary.Write(buf, binary.LittleEndian, uint16(count)) // Count
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// Calculate offsets
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offset := dataOffset
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type entry struct {
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w, h int
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data []byte
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}
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entries := make([]entry, 0, count)
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for _, sz := range sizes {
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data, ok := pngs[sz]
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if !ok {
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continue
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}
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entries = append(entries, entry{sz, sz, data})
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}
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// Write ICONDIRENTRY records
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for _, e := range entries {
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w := byte(e.w)
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if e.w >= 256 {
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w = 0
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}
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h := byte(e.h)
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if e.h >= 256 {
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h = 0
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}
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buf.WriteByte(w)
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buf.WriteByte(h)
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buf.WriteByte(0) // ColorCount
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buf.WriteByte(0) // Reserved
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binary.Write(buf, binary.LittleEndian, uint16(1)) // Planes
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binary.Write(buf, binary.LittleEndian, uint16(32)) // BitCount
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binary.Write(buf, binary.LittleEndian, uint32(len(e.data))) // BytesInRes
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binary.Write(buf, binary.LittleEndian, uint32(offset)) // ImageOffset
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offset += len(e.data)
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}
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// Write image data
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for _, e := range entries {
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buf.Write(e.data)
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}
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return buf.Bytes()
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}
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func generatePreview(path string) {
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states := []struct {
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s icons.State
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name string
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}{
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{icons.StateIdle, "Idle"},
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{icons.StateSyncing, "Syncing"},
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{icons.StatePaused, "Paused"},
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{icons.StateError, "Error"},
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{icons.StateDisconnected, "Disconnected"},
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}
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sz := 128
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pad := 20
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w := len(states)*(sz+pad) + pad
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h := sz + pad*2 + 20
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dc := gg.NewContext(w, h)
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dc.SetHexColor("#1a1a2e")
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dc.DrawRectangle(0, 0, float64(w), float64(h))
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dc.Fill()
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for i, st := range states {
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// Render at 128px
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data, err := icons.RenderPNG(st.s, sz)
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if err != nil {
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continue
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}
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img, err := png.Decode(bytes.NewReader(data))
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if err != nil {
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continue
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}
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x := pad + i*(sz+pad)
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dc.DrawImage(img, x, pad)
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// Label
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dc.SetHexColor("#cccccc")
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dc.DrawStringAnchored(st.name, float64(x)+float64(sz)/2, float64(pad+sz+12), 0.5, 0.5)
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}
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dc.SavePNG(path)
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fmt.Printf(" %s\n", path)
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}
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@@ -3,6 +3,7 @@ package icons
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import (
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"bytes"
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"encoding/binary"
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"image/color"
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"image/png"
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"math"
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"runtime"
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@@ -15,8 +16,13 @@ const iconSize = 64
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// Render generates a tray icon for the given state.
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// Returns ICO bytes on Windows, PNG bytes on other platforms.
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func Render(state State) ([]byte, error) {
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dc := gg.NewContext(iconSize, iconSize)
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drawSyncIcon(dc, state)
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return RenderSize(state, iconSize)
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}
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// RenderSize generates an icon at the given pixel size.
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func RenderSize(state State, size int) ([]byte, error) {
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dc := gg.NewContext(size, size)
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drawShieldIcon(dc, state, float64(size))
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var buf bytes.Buffer
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if err := png.Encode(&buf, dc.Image()); err != nil {
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@@ -25,53 +31,212 @@ func Render(state State) ([]byte, error) {
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pngData := buf.Bytes()
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if runtime.GOOS == "windows" {
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return wrapPNGInICO(pngData, iconSize, iconSize), nil
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return wrapPNGInICO(pngData, size, size), nil
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}
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return pngData, nil
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}
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// drawSyncIcon draws a circular sync arrows icon in the state's color.
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func drawSyncIcon(dc *gg.Context, state State) {
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c := colorForState(state)
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cx := float64(iconSize) / 2
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cy := float64(iconSize) / 2
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radius := float64(iconSize)*0.35
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arrowWidth := 5.0
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// RenderPNG generates a PNG icon at the given size, regardless of platform.
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func RenderPNG(state State, size int) ([]byte, error) {
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dc := gg.NewContext(size, size)
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drawShieldIcon(dc, state, float64(size))
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dc.SetColor(c)
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dc.SetLineWidth(arrowWidth)
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dc.SetLineCap(gg.LineCapRound)
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// Draw two circular arcs (sync arrows)
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// Top arc: from 220° to 320°
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drawArcWithArrow(dc, cx, cy, radius, degToRad(220), degToRad(320), arrowWidth)
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// Bottom arc: from 40° to 140°
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drawArcWithArrow(dc, cx, cy, radius, degToRad(40), degToRad(140), arrowWidth)
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var buf bytes.Buffer
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if err := png.Encode(&buf, dc.Image()); err != nil {
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return nil, err
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}
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return buf.Bytes(), nil
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}
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func drawArcWithArrow(dc *gg.Context, cx, cy, radius, startAngle, endAngle, lineWidth float64) {
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// Draw the arc
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dc.DrawArc(cx, cy, radius, startAngle, endAngle)
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// Shield color palette — warm wood tones inspired by Stammtisch
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var (
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shieldRim = color.RGBA{55, 42, 30, 255} // dark iron rim
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shieldOuter = color.RGBA{130, 82, 38, 255} // darker wood ring
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shieldMid = color.RGBA{175, 118, 58, 255} // warm wood body
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shieldInner = color.RGBA{195, 140, 72, 255} // lighter wood center
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shieldLight = color.RGBA{210, 162, 95, 255} // highlight zone
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grainDark = color.RGBA{145, 90, 40, 200} // wood grain shadow
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rivetBody = color.RGBA{105, 95, 80, 255} // iron rivet
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rivetShine = color.RGBA{160, 150, 130, 255} // rivet highlight
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bossEdge = color.RGBA{80, 65, 45, 255} // boss rim
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bossBody = color.RGBA{145, 130, 105, 255} // boss metal
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bossShine = color.RGBA{190, 180, 160, 255} // boss highlight
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motifShadow = color.RGBA{40, 30, 20, 100} // dark outline behind motif
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)
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func drawShieldIcon(dc *gg.Context, state State, s float64) {
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cx := s / 2
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cy := s / 2
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sc := s / 64 // scale factor relative to 64px base
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// 1. Shield rim (dark outer ring)
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rimR := s * 0.47
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dc.DrawCircle(cx, cy, rimR)
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dc.SetColor(shieldRim)
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dc.Fill()
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// 2. Shield face — layered wood rings
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faceR := s * 0.42
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drawWoodFace(dc, cx, cy, faceR)
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// 3. Wood grain arcs (skip at very small sizes)
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if s >= 48 {
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drawWoodGrain(dc, cx, cy, faceR, sc)
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}
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// 4. Rivets around rim (skip below 32px)
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if s >= 32 {
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rivetCount := 12
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if s < 48 {
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rivetCount = 8
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}
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drawRivets(dc, cx, cy, rimR-2*sc, sc, rivetCount)
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}
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// 5. Syncthing motif — "warpaint" in state color
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drawSyncthingMotif(dc, cx, cy, faceR, state, sc)
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// 6. Center boss
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drawBoss(dc, cx, cy, sc)
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}
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func drawWoodFace(dc *gg.Context, cx, cy, r float64) {
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layers := []struct {
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frac float64
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c color.RGBA
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}{
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{1.00, shieldOuter},
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{0.90, shieldMid},
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{0.72, shieldInner},
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{0.48, shieldLight},
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{0.30, shieldInner},
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}
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for _, l := range layers {
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dc.DrawCircle(cx, cy, r*l.frac)
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dc.SetColor(l.c)
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dc.Fill()
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}
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}
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func drawWoodGrain(dc *gg.Context, cx, cy, r, sc float64) {
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dc.SetColor(grainDark)
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dc.SetLineWidth(math.Max(0.8, 0.7*sc))
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dc.SetLineCap(gg.LineCapRound)
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arcs := []struct{ radius, startDeg, sweepDeg float64 }{
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{0.83, 25, 55},
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{0.83, 195, 50},
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{0.62, 95, 65},
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{0.62, 275, 50},
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{0.42, 5, 75},
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{0.42, 165, 60},
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}
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for _, a := range arcs {
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dc.DrawArc(cx, cy, r*a.radius, degToRad(a.startDeg), degToRad(a.startDeg+a.sweepDeg))
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dc.Stroke()
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}
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}
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func drawRivets(dc *gg.Context, cx, cy, r, sc float64, count int) {
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rr := math.Max(1.2, 1.8*sc) // rivet radius
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for i := 0; i < count; i++ {
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a := float64(i) * 2 * math.Pi / float64(count)
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rx := cx + r*math.Cos(a)
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ry := cy + r*math.Sin(a)
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dc.DrawCircle(rx, ry, rr)
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dc.SetColor(rivetBody)
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dc.Fill()
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// Highlight
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if sc >= 1.0 {
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dc.DrawCircle(rx-rr*0.2, ry-rr*0.3, rr*0.45)
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dc.SetColor(rivetShine)
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dc.Fill()
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}
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}
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}
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func drawSyncthingMotif(dc *gg.Context, cx, cy, faceR float64, state State, sc float64) {
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stateCol := colorForState(state)
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ringR := faceR * 0.58
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lineW := math.Max(1.8, 2.8*sc)
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nodeR := math.Max(2.2, 3.2*sc)
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// Node positions: top, bottom-left, bottom-right
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nodeAngles := []float64{-90, 150, 30}
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||||
nodes := make([][2]float64, 3)
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||||
for i, deg := range nodeAngles {
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rad := degToRad(deg)
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nodes[i] = [2]float64{
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cx + ringR*math.Cos(rad),
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cy + ringR*math.Sin(rad),
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}
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||||
}
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// --- Shadow layer (dark outline behind everything for contrast) ---
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shadowOff := math.Max(0.5, 0.8*sc)
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dc.SetColor(motifShadow)
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dc.SetLineWidth(lineW + 2*shadowOff)
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dc.SetLineCap(gg.LineCapRound)
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||||
|
||||
// Shadow ring
|
||||
dc.DrawCircle(cx, cy, ringR)
|
||||
dc.Stroke()
|
||||
|
||||
// Draw arrowhead at the end of the arc
|
||||
endX := cx + radius*math.Cos(endAngle)
|
||||
endY := cy + radius*math.Sin(endAngle)
|
||||
|
||||
// Arrow direction is tangent to the circle at the endpoint
|
||||
tangentAngle := endAngle + math.Pi/2
|
||||
arrowLen := lineWidth * 2.5
|
||||
|
||||
// Two points of the arrowhead
|
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a1x := endX + arrowLen*math.Cos(tangentAngle+0.5)
|
||||
a1y := endY + arrowLen*math.Sin(tangentAngle+0.5)
|
||||
a2x := endX + arrowLen*math.Cos(tangentAngle-0.5)
|
||||
a2y := endY + arrowLen*math.Sin(tangentAngle-0.5)
|
||||
|
||||
dc.MoveTo(a1x, a1y)
|
||||
dc.LineTo(endX, endY)
|
||||
dc.LineTo(a2x, a2y)
|
||||
// Shadow spokes
|
||||
for _, n := range nodes {
|
||||
dc.DrawLine(cx, cy, n[0], n[1])
|
||||
}
|
||||
dc.Stroke()
|
||||
|
||||
// Shadow nodes
|
||||
for _, n := range nodes {
|
||||
dc.DrawCircle(n[0], n[1], nodeR+shadowOff)
|
||||
dc.Fill()
|
||||
}
|
||||
|
||||
// --- Motif layer (state-colored) ---
|
||||
dc.SetColor(stateCol)
|
||||
dc.SetLineWidth(lineW)
|
||||
dc.SetLineCap(gg.LineCapRound)
|
||||
|
||||
// Ring
|
||||
dc.DrawCircle(cx, cy, ringR)
|
||||
dc.Stroke()
|
||||
|
||||
// Spokes from center to nodes
|
||||
for _, n := range nodes {
|
||||
dc.DrawLine(cx, cy, n[0], n[1])
|
||||
}
|
||||
dc.Stroke()
|
||||
|
||||
// Node circles
|
||||
for _, n := range nodes {
|
||||
dc.DrawCircle(n[0], n[1], nodeR)
|
||||
dc.SetColor(stateCol)
|
||||
dc.Fill()
|
||||
}
|
||||
}
|
||||
|
||||
func drawBoss(dc *gg.Context, cx, cy, sc float64) {
|
||||
br := math.Max(2.5, 4.5*sc)
|
||||
|
||||
// Edge ring
|
||||
dc.DrawCircle(cx, cy, br+0.8*sc)
|
||||
dc.SetColor(bossEdge)
|
||||
dc.Fill()
|
||||
|
||||
// Body
|
||||
dc.DrawCircle(cx, cy, br)
|
||||
dc.SetColor(bossBody)
|
||||
dc.Fill()
|
||||
|
||||
// Highlight (upper-left)
|
||||
dc.DrawCircle(cx-br*0.22, cy-br*0.28, br*0.5)
|
||||
dc.SetColor(bossShine)
|
||||
dc.Fill()
|
||||
}
|
||||
|
||||
func degToRad(deg float64) float64 {
|
||||
|
||||