Files
box-box/internal/ui/util.go

287 lines
6.7 KiB
Go
Raw Normal View History

2026-03-03 00:48:05 -05:00
package ui
import (
"fmt"
"math"
"strings"
"time"
"unicode/utf8"
"github.com/AmanTahiliani/box-box/internal/models"
"github.com/charmbracelet/lipgloss"
)
// formatSeconds converts a duration in seconds to a lap time string (e.g. "1:31.234").
func formatSeconds(s float64) string {
if s <= 0 {
return "--:--.---"
}
minutes := int(s) / 60
secs := s - float64(minutes*60)
return fmt.Sprintf("%d:%06.3f", minutes, secs)
}
// formatGap formats the gap_to_leader field which can be float64, string, or []interface{}.
func formatGap(v interface{}) string {
if v == nil {
return "LEADER"
}
switch val := v.(type) {
case float64:
if val == 0 {
return "LEADER"
}
return fmt.Sprintf("+%.3fs", val)
case string:
return val
case []interface{}:
// Qualifying: return best Q time
if len(val) == 0 {
return "--"
}
if f, ok := val[len(val)-1].(float64); ok {
return formatSeconds(f)
}
return "--"
}
return "--"
}
// formatDuration formats a session result duration (float64 or []float64 for qualifying).
func formatDuration(v interface{}) string {
if v == nil {
return "--"
}
switch val := v.(type) {
case float64:
return formatSeconds(val)
case []interface{}:
// Qualifying: return best Q time
if len(val) == 0 {
return "--"
}
if f, ok := val[len(val)-1].(float64); ok {
return formatSeconds(f)
}
return "--"
}
return "--"
}
// hexToStyle creates a lipgloss.Style with the given hex color as the foreground.
// The hex string may or may not have a leading '#'.
func hexToStyle(hex string) lipgloss.Style {
if hex == "" {
return lipgloss.NewStyle()
}
if !strings.HasPrefix(hex, "#") {
hex = "#" + hex
}
return lipgloss.NewStyle().Foreground(lipgloss.Color(hex))
}
// sparkline generates a unicode block chart for lap times.
// Pit laps (nil duration) are rendered as spaces.
func sparkline(laps []models.Lap, width int) string {
const blocks = "▁▂▃▄▅▆▇█"
blockRunes := []rune(blocks)
if len(laps) == 0 {
return strings.Repeat(" ", width)
}
// Collect valid lap durations
var durations []float64
minDur, maxDur := math.MaxFloat64, 0.0
for _, lap := range laps {
if lap.LapDuration != nil && *lap.LapDuration > 0 {
d := *lap.LapDuration
durations = append(durations, d)
if d < minDur {
minDur = d
}
if d > maxDur {
maxDur = d
}
} else {
durations = append(durations, -1)
}
}
rng := maxDur - minDur
if rng == 0 {
rng = 1
}
var sb strings.Builder
count := 0
for _, d := range durations {
if count >= width {
break
}
if d < 0 {
sb.WriteRune(' ')
} else {
norm := (d - minDur) / rng
// Invert: fast laps = tall bar (higher index)
idx := int((1.0-norm)*float64(len(blockRunes)-1) + 0.5)
if idx < 0 {
idx = 0
}
if idx >= len(blockRunes) {
idx = len(blockRunes) - 1
}
sb.WriteRune(blockRunes[idx])
}
count++
}
result := sb.String()
resultLen := utf8.RuneCountInString(result)
if resultLen < width {
result += strings.Repeat(" ", width-resultLen)
}
return result
}
// windArrow maps a wind direction in degrees to a unicode arrow.
func windArrow(degrees int) string {
arrows := []string{"↑", "↗", "→", "↘", "↓", "↙", "←", "↖"}
idx := ((degrees + 22) / 45) % 8
return arrows[idx]
}
// tyreStyle returns a lipgloss.Style for a tyre compound.
func tyreStyle(c models.TyreCompound) lipgloss.Style {
switch c {
case models.CompoundSoft:
return lipgloss.NewStyle().Foreground(lipgloss.Color(colorSoft)).Bold(true)
case models.CompoundMedium:
return lipgloss.NewStyle().Foreground(lipgloss.Color(colorMedium)).Bold(true)
case models.CompoundHard:
return lipgloss.NewStyle().Foreground(lipgloss.Color(colorHard)).Bold(true)
case models.CompoundIntermediate:
return lipgloss.NewStyle().Foreground(lipgloss.Color(colorInter)).Bold(true)
case models.CompoundWet:
return lipgloss.NewStyle().Foreground(lipgloss.Color(colorWet)).Bold(true)
default:
return lipgloss.NewStyle().Foreground(lipgloss.Color(colorMuted))
}
}
// tyreAbbrev returns a single-letter abbreviation for a tyre compound.
func tyreAbbrev(c models.TyreCompound) string {
switch c {
case models.CompoundSoft:
return "S"
case models.CompoundMedium:
return "M"
case models.CompoundHard:
return "H"
case models.CompoundIntermediate:
return "I"
case models.CompoundWet:
return "W"
default:
return "?"
}
}
// renderDelta returns a colored ▲N/▼N/= string for position change.
func renderDelta(current, start int) string {
diff := start - current // positive = gained positions
switch {
case diff > 0:
return styleDeltaUp.Render(fmt.Sprintf("▲%d", diff))
case diff < 0:
return styleDeltaDown.Render(fmt.Sprintf("▼%d", -diff))
default:
return styleDeltaEqual.Render("=")
}
}
// meetingStatus returns a status indicator for a meeting.
// isNext should be true only for the first upcoming meeting.
func meetingStatus(m models.Meeting, now time.Time, isNext bool) string {
end, err := time.Parse(time.RFC3339, m.DateEnd)
if err != nil {
// Fallback: try date-only parsing
end, err = time.Parse("2006-01-02", m.DateEnd[:min(len(m.DateEnd), 10)])
if err != nil {
return " "
}
end = end.Add(24 * time.Hour)
}
if end.Before(now) {
return stylePast.Render("✓")
}
if isNext {
return styleNext.Render("◎")
}
return " "
}
// truncate shortens a string to max runes, appending "…" if truncated.
func truncate(s string, max int) string {
runes := []rune(s)
if len(runes) <= max {
return s
}
if max <= 1 {
return "…"
}
return string(runes[:max-1]) + "…"
}
// padRight pads or truncates a string to exactly width runes.
func padRight(s string, width int) string {
runes := []rune(s)
if len(runes) >= width {
return string(runes[:width])
}
return s + strings.Repeat(" ", width-len(runes))
}
// padLeft left-pads a string to exactly width runes.
func padLeft(s string, width int) string {
runes := []rune(s)
if len(runes) >= width {
return string(runes[:width])
}
return strings.Repeat(" ", width-len(runes)) + s
}
func min(a, b int) int {
if a < b {
return a
}
return b
}
func max(a, b int) int {
if a > b {
return a
}
return b
}
// countryFlag converts a country flag URL or code to an emoji flag.
// OpenF1 provides flag URLs; we do a best-effort mapping from country_code.
func countryFlag(countryCode string) string {
// Convert ISO 3166-1 alpha-2 to emoji regional indicators
code := strings.ToUpper(countryCode)
if len(code) != 2 {
return " "
}
// Each letter maps to a regional indicator symbol (U+1F1E6 = 'A')
r1 := rune(0x1F1E6 + int(code[0]-'A'))
r2 := rune(0x1F1E6 + int(code[1]-'A'))
return string(r1) + string(r2)
}
// helpBar renders a horizontal help bar for a set of key hints.
func helpBar(hints ...string) string {
return styleHelp.Render(strings.Join(hints, " "))
}