2026-07-25 19:41:53 -07:00
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package main
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import (
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"fmt"
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"time"
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)
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var (
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uiBg = rgb{0x12, 0x14, 0x18}
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uiPanel = rgb{0x1c, 0x20, 0x26}
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uiRule = rgb{0x2e, 0x34, 0x3c}
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uiFg = rgb{0xe6, 0xe8, 0xea}
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uiDim = rgb{0x7a, 0x82, 0x8c}
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uiCyan = rgb{0x5c, 0xc8, 0xe0}
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uiGreen = rgb{0x4c, 0xc2, 0x6a}
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uiRed = rgb{0xe0, 0x4b, 0x4b}
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uiYellow = rgb{0xe0, 0xb0, 0x40}
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)
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2026-07-25 19:48:15 -07:00
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// Everything tabular sits on one monospace cell grid and every number is
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// right-aligned to a column end, so columns line up by construction.
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const (
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uiMargin = 16
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cellDirA = 0
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cellArrow = 2
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cellDirB = 4
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colTxGbEnd = 14
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colTxPPSEnd = 27
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colRxGbEnd = 37
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colRxPPSEnd = 50
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colFramesEnd = 18
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colDataEnd = 27
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colLostEnd = 38
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colLateEnd = 46
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colCRCEnd = 53
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colKdropEnd = 62
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)
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type display struct {
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fb *framebuffer
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huge *textFace
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grid *textFace
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gridB *textFace
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small *textFace
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}
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func newDisplay() (*display, error) {
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fb, err := openFramebuffer("/dev/fb0")
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if err != nil {
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return nil, err
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}
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d := &display{fb: fb}
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for _, spec := range []struct {
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dst **textFace
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bold bool
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size float64
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}{
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{&d.huge, true, 72},
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{&d.grid, false, 24},
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{&d.gridB, true, 24},
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{&d.small, false, 18},
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} {
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face, err := loadFace(spec.bold, spec.size)
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if err != nil {
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fb.close()
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return nil, err
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}
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*spec.dst = face
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}
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if d.grid.cellW != d.gridB.cellW {
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fb.close()
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return nil, fmt.Errorf("grid faces disagree on cell width: %d vs %d",
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d.grid.cellW, d.gridB.cellW)
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}
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return d, nil
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}
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func (d *display) close() {
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d.fb.close()
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}
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func (d *display) cellX(c int) int {
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return uiMargin + c*d.grid.cellW
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}
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func (d *display) at(c, y int, s string, col rgb) {
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d.grid.draw(d.fb, d.cellX(c), y, s, col)
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}
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func (d *display) atBold(c, y int, s string, col rgb) {
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d.gridB.draw(d.fb, d.cellX(c), y, s, col)
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}
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func (d *display) rightAt(cEnd, y int, s string, col rgb) {
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d.grid.draw(d.fb, d.cellX(cEnd)-len([]rune(s))*d.grid.cellW, y, s, col)
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}
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func (d *display) right(f *textFace, xEnd, y int, s string, col rgb) {
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f.draw(d.fb, xEnd-len([]rune(s))*f.cellW, y, s, col)
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}
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func (d *display) center(f *textFace, y int, s string, col rgb) {
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f.draw(d.fb, (d.fb.w-len([]rune(s))*f.cellW)/2, y, s, col)
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}
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func errColor(n uint64) rgb {
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if n == 0 {
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return uiGreen
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}
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return uiRed
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}
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func rateColor(gb, target float64) rgb {
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switch {
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case gb >= target*rateGreenFrac:
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return uiGreen
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case gb >= target*rateYellowFrac:
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return uiYellow
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default:
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return uiRed
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}
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}
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func (d *display) render(dirs []*direction, views []view, elapsed time.Duration, target float64) {
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fb := d.fb
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fb.fill(uiBg)
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d.small.draw(fb, uiMargin, 10, "cabletest", uiCyan)
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d.small.draw(fb, uiMargin+11*d.small.cellW, 10,
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fmt.Sprintf("%s %s %s %s", dirs[0].tx.tag, dirs[0].tx.name,
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dirs[0].rx.tag, dirs[0].rx.name), uiDim)
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d.right(d.small, fb.w-uiMargin, 10, uptime(elapsed), uiDim)
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var total uint64
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for _, v := range views {
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total += v.errors
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}
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bandY, bandH := 40, 150
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fb.rect(0, bandY, fb.w, bandH, uiPanel)
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fb.rect(0, bandY, 8, bandH, errColor(total))
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word, wc := "NO ERRORS", uiGreen
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if total > 0 {
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word, wc = fmt.Sprintf("%s ERRORS", commas(total)), uiRed
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}
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d.center(d.huge, bandY+(bandH-d.huge.cellH)/2, word, wc)
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// Two tight blocks rather than rows spread over the whole panel, centred in
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// what is left below the band.
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lineH := d.grid.cellH + 4
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sectionH := d.small.cellH + 10 + (1+len(dirs))*lineH
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gap := 30
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avail := fb.h - (bandY + bandH) - 16
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y := bandY + bandH + 8 + (avail-2*sectionH-gap)/2
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y = d.section(y, "INSTANT", "this interval")
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d.rightAt(colTxGbEnd, y, "TX Gb/s", uiDim)
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d.rightAt(colTxPPSEnd, y, "TX pps", uiDim)
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d.rightAt(colRxGbEnd, y, "RX Gb/s", uiDim)
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d.rightAt(colRxPPSEnd, y, "RX pps", uiDim)
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y += lineH
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for i, dir := range dirs {
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d.dirTag(dir, y)
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v := views[i]
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d.rightAt(colTxGbEnd, y, fmt.Sprintf("%.2f", v.txGbps), rateColor(v.txGbps, target))
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d.rightAt(colTxPPSEnd, y, commas(uint64(v.txPPS)), uiFg)
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d.rightAt(colRxGbEnd, y, fmt.Sprintf("%.2f", v.rxGbps), rateColor(v.rxGbps, target))
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d.rightAt(colRxPPSEnd, y, commas(uint64(v.rxPPS)), uiFg)
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y += lineH
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}
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y += gap
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y = d.section(y, "CUMULATIVE", "since reset")
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d.rightAt(colFramesEnd, y, "frames", uiDim)
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d.rightAt(colDataEnd, y, "data", uiDim)
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d.rightAt(colLostEnd, y, "lost", uiDim)
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d.rightAt(colLateEnd, y, "late", uiDim)
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d.rightAt(colCRCEnd, y, "crc", uiDim)
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d.rightAt(colKdropEnd, y, "kdrop", uiDim)
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y += lineH
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for i, dir := range dirs {
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d.dirTag(dir, y)
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v := views[i]
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d.rightAt(colFramesEnd, y, commas(v.txFrames), uiFg)
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d.rightAt(colDataEnd, y, humanBytes(v.txSent), uiFg)
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d.rightAt(colLostEnd, y, commas(v.lost), errColor(v.lost))
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d.rightAt(colLateEnd, y, commas(v.late), errColor(v.late))
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d.rightAt(colCRCEnd, y, commas(v.crc), errColor(v.crc))
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d.rightAt(colKdropEnd, y, commas(v.kdrop), errColor(v.kdrop))
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y += lineH
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}
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fb.flush()
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}
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func (d *display) section(y int, title, sub string) int {
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d.small.draw(d.fb, uiMargin, y, title, uiFg)
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d.small.draw(d.fb, uiMargin+(len(title)+2)*d.small.cellW, y, sub, uiDim)
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ruleY := y + d.small.cellH + 3
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d.fb.rect(uiMargin, ruleY, d.fb.w-2*uiMargin, 1, uiRule)
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return ruleY + 7
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}
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func (d *display) dirTag(dir *direction, y int) {
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d.atBold(cellDirA, y, dir.tx.tag, uiCyan)
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d.arrow(d.cellX(cellArrow), y+d.grid.cellH/2, uiDim)
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d.atBold(cellDirB, y, dir.rx.tag, uiCyan)
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}
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// Drawn because the font has no arrow glyph. Occupies exactly one cell so the
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// grid is unaffected.
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func (d *display) arrow(x, y int, c rgb) {
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w := d.grid.cellW
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d.fb.rect(x, y-1, w-5, 2, c)
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for i := 0; i < 6; i++ {
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d.fb.rect(x+w-6+i, y-5+i, 1, 11-2*i, c)
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}
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}
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