Implement the presentation layer for terminal output:
- cli/format.go: Human-readable formatting functions — FormatTokens
(K/M/B suffixes), FormatCost (adaptive precision: $X.XX under $10,
$X.X under $100, $X over $100, comma-separated over $1000),
FormatDuration (Xh Ym / Xm / Xs), FormatNumber (comma-separated
integers), FormatPercent (0-1 -> "XX.X%"), FormatDelta (signed
cost delta with +/- prefix), FormatDayOfWeek (weekday number to
3-letter abbreviation).
- cli/render.go: lipgloss-styled output components using the Flexoki
Dark color palette:
* RenderTitle: centered title in a rounded border box.
* RenderTable: full-featured bordered table with auto-calculated
column widths, right-aligned numeric columns (all except first),
separator rows (triggered by "---" sentinel), and proper Unicode
box-drawing characters. Supports optional title header and
explicit column widths.
* RenderProgressBar: bracketed fill bar with current/total counts.
* RenderSparkline: Unicode block sparkline (8-level: ▁ through █)
from arbitrary float64 series, auto-scaled to max.
* RenderHorizontalBar: simple horizontal bar chart entry for
inline comparisons.
Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
282 lines
6.1 KiB
Go
282 lines
6.1 KiB
Go
package cli
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import (
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"fmt"
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"strings"
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"github.com/charmbracelet/lipgloss"
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)
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// Theme colors (Flexoki Dark)
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var (
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ColorBg = lipgloss.Color("#100F0F")
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ColorSurface = lipgloss.Color("#1C1B1A")
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ColorBorder = lipgloss.Color("#282726")
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ColorTextDim = lipgloss.Color("#575653")
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ColorTextMuted = lipgloss.Color("#6F6E69")
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ColorText = lipgloss.Color("#FFFCF0")
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ColorAccent = lipgloss.Color("#3AA99F")
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ColorGreen = lipgloss.Color("#879A39")
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ColorOrange = lipgloss.Color("#DA702C")
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ColorRed = lipgloss.Color("#D14D41")
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ColorBlue = lipgloss.Color("#4385BE")
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ColorPurple = lipgloss.Color("#8B7EC8")
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ColorYellow = lipgloss.Color("#D0A215")
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)
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// Styles
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var (
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titleStyle = lipgloss.NewStyle().
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Bold(true).
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Foreground(ColorText).
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Align(lipgloss.Center)
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headerStyle = lipgloss.NewStyle().
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Bold(true).
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Foreground(ColorAccent)
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valueStyle = lipgloss.NewStyle().
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Foreground(ColorText)
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mutedStyle = lipgloss.NewStyle().
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Foreground(ColorTextMuted)
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costStyle = lipgloss.NewStyle().
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Foreground(ColorGreen)
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tokenStyle = lipgloss.NewStyle().
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Foreground(ColorBlue)
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warnStyle = lipgloss.NewStyle().
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Foreground(ColorOrange)
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dimStyle = lipgloss.NewStyle().
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Foreground(ColorTextDim)
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)
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// Table represents a bordered text table for CLI output.
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type Table struct {
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Title string
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Headers []string
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Rows [][]string
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Widths []int // optional column widths, auto-calculated if nil
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}
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// RenderTitle renders a centered title bar in a bordered box.
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func RenderTitle(title string) string {
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width := 55
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border := lipgloss.NewStyle().
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Border(lipgloss.RoundedBorder()).
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BorderForeground(ColorBorder).
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Width(width).
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Align(lipgloss.Center).
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Padding(0, 1)
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return border.Render(titleStyle.Render(title))
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}
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// RenderTable renders a bordered table with headers and rows.
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func RenderTable(t Table) string {
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if len(t.Rows) == 0 && len(t.Headers) == 0 {
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return ""
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}
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// Calculate column widths
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numCols := len(t.Headers)
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if numCols == 0 && len(t.Rows) > 0 {
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numCols = len(t.Rows[0])
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}
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widths := make([]int, numCols)
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if t.Widths != nil {
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copy(widths, t.Widths)
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} else {
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for i, h := range t.Headers {
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if len(h) > widths[i] {
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widths[i] = len(h)
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}
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}
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for _, row := range t.Rows {
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for i, cell := range row {
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if i < numCols && len(cell) > widths[i] {
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widths[i] = len(cell)
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}
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}
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}
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}
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var b strings.Builder
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// Title above table if present
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if t.Title != "" {
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b.WriteString(" ")
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b.WriteString(headerStyle.Render(t.Title))
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b.WriteString("\n")
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}
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totalWidth := 1 // left border
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for _, w := range widths {
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totalWidth += w + 3 // padding + separator
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}
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// Top border
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b.WriteString(dimStyle.Render("╭"))
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for i, w := range widths {
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b.WriteString(dimStyle.Render(strings.Repeat("─", w+2)))
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if i < numCols-1 {
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b.WriteString(dimStyle.Render("┬"))
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}
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}
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b.WriteString(dimStyle.Render("╮"))
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b.WriteString("\n")
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// Header row
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if len(t.Headers) > 0 {
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b.WriteString(dimStyle.Render("│"))
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for i, h := range t.Headers {
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w := widths[i]
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padded := fmt.Sprintf(" %-*s ", w, h)
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b.WriteString(headerStyle.Render(padded))
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if i < numCols-1 {
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b.WriteString(dimStyle.Render("│"))
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}
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}
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b.WriteString(dimStyle.Render("│"))
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b.WriteString("\n")
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// Header separator
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b.WriteString(dimStyle.Render("├"))
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for i, w := range widths {
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b.WriteString(dimStyle.Render(strings.Repeat("─", w+2)))
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if i < numCols-1 {
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b.WriteString(dimStyle.Render("┼"))
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}
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}
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b.WriteString(dimStyle.Render("┤"))
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b.WriteString("\n")
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}
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// Data rows
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for _, row := range t.Rows {
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if len(row) == 1 && row[0] == "---" {
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// Separator row
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b.WriteString(dimStyle.Render("├"))
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for i, w := range widths {
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b.WriteString(dimStyle.Render(strings.Repeat("─", w+2)))
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if i < numCols-1 {
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b.WriteString(dimStyle.Render("┼"))
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}
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}
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b.WriteString(dimStyle.Render("┤"))
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b.WriteString("\n")
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continue
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}
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b.WriteString(dimStyle.Render("│"))
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for i := 0; i < numCols; i++ {
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w := widths[i]
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cell := ""
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if i < len(row) {
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cell = row[i]
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}
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// Right-align numeric columns (all except first)
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var padded string
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if i == 0 {
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padded = fmt.Sprintf(" %-*s ", w, cell)
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} else {
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padded = fmt.Sprintf(" %*s ", w, cell)
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}
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b.WriteString(valueStyle.Render(padded))
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if i < numCols-1 {
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b.WriteString(dimStyle.Render("│"))
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}
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}
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b.WriteString(dimStyle.Render("│"))
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b.WriteString("\n")
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}
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// Bottom border
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b.WriteString(dimStyle.Render("╰"))
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for i, w := range widths {
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b.WriteString(dimStyle.Render(strings.Repeat("─", w+2)))
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if i < numCols-1 {
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b.WriteString(dimStyle.Render("┴"))
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}
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}
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b.WriteString(dimStyle.Render("╯"))
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b.WriteString("\n")
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return b.String()
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}
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// RenderProgressBar renders a simple text progress bar.
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func RenderProgressBar(current, total int, width int) string {
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if total <= 0 {
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return ""
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}
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pct := float64(current) / float64(total)
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if pct > 1 {
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pct = 1
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}
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filled := int(pct * float64(width))
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if filled > width {
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filled = width
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}
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bar := strings.Repeat("█", filled) + strings.Repeat("░", width-filled)
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return fmt.Sprintf("[%s] %s/%s",
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mutedStyle.Render(bar),
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FormatNumber(int64(current)),
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FormatNumber(int64(total)),
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)
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}
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// RenderSparkline generates a unicode block sparkline from a series of values.
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func RenderSparkline(values []float64) string {
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if len(values) == 0 {
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return ""
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}
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blocks := []rune{'▁', '▂', '▃', '▄', '▅', '▆', '▇', '█'}
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max := values[0]
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for _, v := range values[1:] {
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if v > max {
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max = v
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}
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}
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if max == 0 {
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max = 1
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}
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var b strings.Builder
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for _, v := range values {
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idx := int(v / max * float64(len(blocks)-1))
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if idx >= len(blocks) {
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idx = len(blocks) - 1
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}
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if idx < 0 {
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idx = 0
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}
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b.WriteRune(blocks[idx])
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}
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return b.String()
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}
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// RenderHorizontalBar renders a horizontal bar chart entry.
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func RenderHorizontalBar(label string, value, maxValue float64, maxWidth int) string {
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if maxValue <= 0 {
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return fmt.Sprintf(" %s", label)
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}
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barLen := int(value / maxValue * float64(maxWidth))
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if barLen < 0 {
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barLen = 0
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}
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bar := strings.Repeat("█", barLen)
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return fmt.Sprintf(" %s", bar)
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}
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