Files
correx/apps/tui-go/internal/app/view.go
T
kami 26621567ac feat(tui-go): transparent modal backdrops
Modals now composite over a dimmed copy of the screen behind them instead of an opaque
scrim, so the transcript stays faintly visible around a modal (opencode-style). center()
stashes the frame's base (View sets m.lastBase), strips+dims it to a faint scrim, and
splices the modal box over it (ANSI-aware via ansi.Truncate/TruncateLeft so the side
margins keep the dimmed content). An idempotence guard passes an already-full-screen
modal through unchanged, so the existing double-center builders don't get re-dimmed.
Geometry tests assert the composite still fills the screen exactly.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-21 09:40:52 +00:00

790 lines
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package app
import (
"fmt"
"os"
"strings"
"github.com/charmbracelet/lipgloss"
"github.com/charmbracelet/x/ansi"
)
const (
statusH = 1
footerH = 1
inputH = 4 // rounded box: 2 borders + 2 content lines
// staleEventThresholdMs: past this gap since the last event, an *active* session's
// last-event clock turns warn-colored — the "thinking vs hung" tell (§2).
staleEventThresholdMs = 30_000
// narrowWidth: below this the side-by-side panels become unreadable, so the main
// area collapses (single column / vertical stack) and the chrome goes compact.
narrowWidth = 96
)
// narrow reports whether the terminal is too slim for the full side-by-side layout
// and full-width chrome.
func (m Model) narrow() bool { return m.width < narrowWidth }
// View renders the whole frame purely from the model (immediate-mode).
func (m Model) View() string {
if m.quitting {
return ""
}
if m.width < 20 || m.height < 8 {
return m.theme.Screen.Render("correx — terminal too small")
}
bottom := m.renderInput()
bottomH := inputH
if m.displayState() == StateApproval {
bottomH = m.approvalBandHeight()
bottom = m.renderApprovalBand(bottomH)
}
mainH := m.height - statusH - footerH - bottomH
if mainH < 3 {
mainH = 3
}
base := lipgloss.JoinVertical(lipgloss.Left,
m.renderStatus(),
m.renderMain(mainH),
bottom,
m.renderFooter(),
)
// Stash the base so center() can composite a modal over a dimmed copy of it.
m.lastBase = base
if m.displayState() == StateClarification {
return m.center(m.clarificationModal())
}
if m.displayState() == StateWorkflowPropose {
return m.center(m.proposeModal())
}
if m.overlay != OverlayNone {
return m.renderOverlay(base)
}
return base
}
// --- top status bar ---
func (m Model) renderStatus() string {
t := m.theme
bg := t.P.BgPanel
span := func(s string, fg lipgloss.Color) string {
return lipgloss.NewStyle().Foreground(fg).Background(bg).Render(s)
}
nrw := m.narrow()
sepStr := " · "
if nrw {
sepStr = " · "
}
sep := span(sepStr, t.P.Faint)
parts := []string{span("correx", t.P.Dim)}
if m.connected {
parts = append(parts, span("●", t.P.OK)+span(" connected", t.P.Dim))
} else if m.reconnecting {
parts = append(parts, span("◌", t.P.Warn)+span(" reconnecting", t.P.Warn))
} else {
parts = append(parts, span("○", t.P.Bad)+span(" disconnected", t.P.Bad))
}
if s := m.session(m.selectedID); s != nil && m.displayState() != StateIdle {
parts = append(parts, span(s.Name, t.P.FgStrong))
if s.CurrentStage != "" {
parts = append(parts, span("⟐ "+s.CurrentStage, t.P.Accent2))
}
if s.Status != "" {
parts = append(parts, lipgloss.NewStyle().Foreground(statusColor(t, s.Status)).Background(bg).Render(statusLabel(s.Status)))
}
if s.WorkspaceRoot != "" && !nrw {
parts = append(parts, span("⌂ "+shortPath(s.WorkspaceRoot), t.P.Faint))
}
}
model := m.currentModel
if model == "" {
model = "no model"
}
if nrw {
parts = append(parts, span(model, t.P.Fg))
} else {
loc := "local"
if m.providerType == "REMOTE" {
loc = "remote"
}
parts = append(parts, span(model, t.P.Fg)+span(" ("+loc+")", t.P.Faint))
}
left := strings.Join(parts, sep)
var right []string
// Last-event clock (§2): always visible in-session, so a silent agent is never
// mistaken for a healthy one. Updates every frame tick; turns warn-colored when an
// active session has gone quiet past the stale threshold.
if s := m.session(m.selectedID); s != nil && m.displayState() != StateIdle {
gap := nowMillis() - s.LastEventAt
clockFg := t.P.Faint
if s.Active && gap > staleEventThresholdMs {
clockFg = t.P.Warn
}
label := "last event " + agoLabel(gap)
if nrw { // compact: "◷ 3s" instead of "last event 3s ago"
label = "◷ " + strings.TrimSuffix(agoLabel(gap), " ago")
}
right = append(right, span(label, clockFg))
}
if g := m.gaugeText(); g != "" && !nrw {
right = append(right, span(g, t.P.Faint))
}
if s := m.session(m.selectedID); s != nil && s.Active {
spin := lipgloss.NewStyle().Foreground(t.P.Accent).Background(bg).Render(m.spinner())
if nrw {
right = append(right, spin)
} else {
right = append(right, spin+span(" active", t.P.Accent2))
}
}
if m.bgUpdates > 0 {
label := itoa(m.bgUpdates) + " elsewhere"
if nrw {
label = itoa(m.bgUpdates) + "↗"
}
right = append(right, span(label, t.P.Warn))
}
if len(right) == 0 {
return m.fill(left, m.width, bg)
}
return m.justify(left, strings.Join(right, sep), m.width, bg)
}
// gaugeText renders the live VRAM/GPU/RAM gauge, omitting any unavailable field.
func (m Model) gaugeText() string {
var parts []string
if m.gpuUsedMB != nil && m.gpuTotalMB != nil {
parts = append(parts, "VRAM "+itoa(int(*m.gpuUsedMB))+"/"+itoa(int(*m.gpuTotalMB))+"M")
}
if m.gpuUtil != nil {
parts = append(parts, "GPU "+itoa(*m.gpuUtil)+"%")
}
if m.sysRamUsedMB != nil && m.sysRamTotalMB != nil {
parts = append(parts, "RAM "+itoa(int(*m.sysRamUsedMB))+"/"+itoa(int(*m.sysRamTotalMB))+"M")
}
if m.ramMB != nil {
parts = append(parts, "proc "+itoa(int(*m.ramMB))+"M")
}
return strings.Join(parts, " ")
}
// agoLabel renders a millisecond age as a compact "Ns ago" / "Nm ago" / "Nh ago" /
// "Nd ago". Drives the last-event clock (§2) — the live signal that distinguishes a
// thinking agent from a hung one.
func agoLabel(deltaMs int64) string {
if deltaMs < 0 {
deltaMs = 0
}
s := deltaMs / 1000
switch {
case s < 60:
return itoa(int(s)) + "s ago"
case s < 3600:
return itoa(int(s/60)) + "m ago"
case s < 86400:
return itoa(int(s/3600)) + "h ago"
default:
return itoa(int(s/86400)) + "d ago"
}
}
var spinnerFrames = []string{"⠋", "⠙", "⠹", "⠸", "⠼", "⠴", "⠦", "⠧", "⠇", "⠏"}
func (m Model) spinner() string { return spinnerFrames[m.frame%len(spinnerFrames)] }
// caretVisible blinks the insert caret roughly twice a second.
func (m Model) caretVisible() bool { return (m.frame/4)%2 == 0 }
// --- bottom footer hints ---
func (m Model) renderFooter() string {
t := m.theme
bg := t.P.BgDeep
hint := func(key, label string) string {
k := lipgloss.NewStyle().Foreground(t.P.Accent).Background(bg).Bold(true).Render(key)
l := lipgloss.NewStyle().Foreground(t.P.Faint).Background(bg).Render(" " + label)
return k + l
}
gap := lipgloss.NewStyle().Background(bg).Render(" ")
nrw := m.narrow()
var hints []string
switch {
case m.editMode == ModeInsert:
hints = []string{hint("enter", "send"), hint("esc", "normal"), hint("↑↓", "history")}
// The `/` command menu only triggers on an empty chat line (mid-line `/` is literal).
if m.inputMode == ModeRouter && m.inputBuffer == "" {
hints = append(hints, hint("/", "cmds"))
}
case m.displayState() == StateApproval:
// Approval actions live in the band itself; the footer offers navigation only.
hints = []string{hint("l", "back"), hint("e", "events"), hint("q", "quit")}
case m.displayState() == StateClarification:
// The question form owns its keys; the footer mirrors the essentials.
hints = []string{hint("←→", "option"), hint("↑↓", "question"), hint("spc", "select"), hint("enter", "submit"), hint("esc", "later")}
case m.displayState() == StateWorkflowPropose:
// The picker owns its keys; the footer mirrors the essentials.
hints = []string{hint("↑↓", "choose"), hint("enter", "launch"), hint("e", "custom"), hint("esc", "later")}
case m.displayState() == StateIdle:
if nrw {
hints = []string{hint("i", "name"), hint("/", "filter"), hint("w", "wf"), hint("R", "resume"), hint("p", "cmds"), hint("q", "quit")}
} else {
hints = []string{hint("i", "name"), hint("/", "filter"), hint("enter", "open"), hint("jk", "move"), hint("w", "workflows"), hint("R", "resume"), hint("p", "cmds"), hint("q", "quit")}
}
default: // StateInSession
if nrw {
hints = []string{hint("i", "msg"), hint("e", "events"), hint("S", "stats"), hint("l", "back"), hint("p", "cmds"), hint("q", "quit")}
} else {
hints = []string{hint("i", "message"), hint("e", "events"), hint("t", "tools"), hint("S", "stats"), hint("m", "model"), hint("s", "mode"), hint("l", "back"), hint("p", "cmds"), hint("q", "quit")}
}
if s := m.session(m.selectedID); s != nil && s.Pending != nil {
hints = append(hints, hint("a", "approval (pending)"))
}
}
left := strings.Join(hints, gap)
// The "Soft · blue" badge is decoration — drop it when slim so the hints get the room.
if nrw {
return m.fill(left, m.width, bg)
}
right := lipgloss.NewStyle().Foreground(t.P.Dim).Background(bg).Render("Soft") +
lipgloss.NewStyle().Foreground(t.P.Faint).Background(bg).Render(" · ") +
lipgloss.NewStyle().Foreground(t.P.Accent).Background(bg).Render("blue")
return m.justify(left, right, m.width, bg)
}
// --- main split ---
func (m Model) renderMain(h int) string {
if m.narrow() {
return m.renderMainNarrow(h)
}
leftW := m.width * 63 / 100
rightW := m.width - leftW
var leftTitle, rightTitle string
var leftBody, rightBody []string
leftActive, rightActive := false, false
switch m.displayState() {
case StateIdle:
leftTitle = "sessions"
if m.wfVisible {
leftTitle = "workflows"
leftBody = m.workflowRows(leftW - 4)
} else {
leftBody = m.sessionRows(leftW - 4)
}
leftActive = true
rightTitle = "welcome"
rightBody = m.welcomeRows(rightW - 4)
case StateInSession, StateApproval:
leftTitle = "output"
leftBody = m.routerRows(leftW-4, h-2)
leftActive = true
rightTitle = "events"
rightBody = m.eventRows(rightW-4, h)
}
left := m.theme.box(leftTitle, leftBody, leftW, h, leftActive)
right := m.theme.box(rightTitle, rightBody, rightW, h, rightActive)
return lipgloss.JoinHorizontal(lipgloss.Top, left, right)
}
// renderMainNarrow gives the main area a single full-width column when the terminal
// is too slim for side-by-side panels: the session list when idle, and the output
// transcript stacked over the live event strip when in-session (so both still fit
// — the strip is too valuable to drop, the constraint is width not height).
func (m Model) renderMainNarrow(h int) string {
w := m.width
if m.displayState() == StateIdle {
title := "sessions"
body := m.sessionRows(w - 4)
if m.wfVisible {
title, body = "workflows", m.workflowRows(w-4)
}
return m.theme.box(title, body, w, h, true)
}
// in-session / approval: stack output over events.
outH := h * 55 / 100
if outH < 3 {
outH = 3
}
evH := h - outH
if evH < 3 {
evH = 3
outH = h - evH
}
out := m.theme.box("output", m.routerRows(w-4, outH-2), w, outH, true)
ev := m.theme.box("events", m.eventRows(w-4, evH), w, evH, false)
return lipgloss.JoinVertical(lipgloss.Left, out, ev)
}
// --- input bar ---
// flattenForDisplay collapses control characters (newlines from a multi-line paste, tabs)
// to a single visible line so the fixed-height input box can't overflow and smear stale cells
// (F-006). The underlying inputBuffer keeps its real characters for submission.
func flattenForDisplay(s string) string {
repl := strings.NewReplacer("\r\n", "↵ ", "\r", "↵ ", "\n", "↵ ", "\t", " ")
return repl.Replace(s)
}
func (m Model) renderInput() string {
t := m.theme
placeholder := "Ask anything…"
switch {
case m.inputMode == ModeIntent:
placeholder = "Describe the task for " + m.wfPendingName + " (Enter to start, empty = none)…"
case m.inputMode == ModeFilter:
placeholder = "Filter sessions…"
case m.displayState() == StateIdle:
placeholder = "Session name…"
}
insert := m.editMode == ModeInsert
caret := t.span(" ", t.P.Bg)
if insert && m.caretVisible() {
caret = lipgloss.NewStyle().Foreground(t.P.Accent).Background(t.P.Bg).Render("▏")
}
var line string
switch {
case m.inputBuffer == "" && !insert:
line = t.span(placeholder, t.P.Faint)
case m.inputBuffer == "":
line = caret + t.span(placeholder, t.P.Faint)
default:
line = t.span(flattenForDisplay(m.inputBuffer), t.P.FgStrong) + caret
}
// status sub-line: <session/none> · <uuid> · <mode>
name := "(no session)"
if s := m.session(m.selectedID); s != nil {
name = s.Name
}
mode := "chat"
if m.chatMode == ChatModeSteering {
mode = "steering"
}
if m.inputMode == ModeFilter {
mode = "filter"
}
if m.inputMode == ModeIntent {
mode = "task"
}
sub := lipgloss.NewStyle().Foreground(t.P.Accent2).Background(t.P.Bg).Render(name)
if m.selectedID != "" {
sub += t.span(" · ", t.P.Faint) +
t.span(m.selectedID, t.P.Faint)
}
sub += t.span(" · ", t.P.Faint) +
t.span(mode, t.P.Dim)
body := []string{line, sub}
return t.box("", body, m.width, inputH, insert)
}
// --- body row builders ---
func (m Model) sessionRows(w int) []string {
t := m.theme
list := m.filteredSessions()
if len(list) == 0 {
return []string{t.span("no sessions yet", t.P.Faint), "", t.span("type a name below to begin", t.P.Faint)}
}
rows := make([]string, 0, len(list))
for _, s := range list {
sel := s.ID == m.selectedID && !m.wfVisible
short := s.ID
if len(short) > 6 {
short = short[:6]
}
nameFg := t.P.Fg
bar := t.span(" ", t.P.Bg)
if sel {
bar = lipgloss.NewStyle().Foreground(t.P.Accent).Background(t.P.Bg).Render("▌ ")
nameFg = t.P.FgStrong
}
idCell := t.span("["+short+"] ", t.P.Faint)
statusCell := lipgloss.NewStyle().Foreground(statusColor(t, s.Status)).Background(t.P.Bg).Bold(true).
Render(padRaw(statusLabel(s.Status), 9))
nameCell := lipgloss.NewStyle().Foreground(nameFg).Background(t.P.Bg).Render(" " + s.Name)
stage := ""
if s.CurrentStage != "" {
stage = t.span(" ["+s.CurrentStage+"]", t.P.Dim)
}
rows = append(rows, bar+idCell+statusCell+nameCell+stage)
}
return rows
}
func (m Model) workflowRows(w int) []string {
t := m.theme
if len(m.workflows) == 0 {
return []string{t.span("no workflows advertised", t.P.Faint)}
}
rows := make([]string, 0, len(m.workflows))
for i, wf := range m.workflows {
marker := t.span(" ", t.P.Bg)
fg := t.P.Fg
if i == m.wfIndex {
marker = lipgloss.NewStyle().Foreground(t.P.Accent).Background(t.P.Bg).Render("▸ ")
fg = t.P.FgStrong
}
rows = append(rows, marker+lipgloss.NewStyle().Foreground(fg).Background(t.P.Bg).Render(wf.ID)+t.span(" "+wf.Description, t.P.Faint))
}
return rows
}
func (m Model) welcomeRows(w int) []string {
t := m.theme
title := lipgloss.NewStyle().Foreground(t.P.FgStrong).Background(t.P.Bg).Bold(true).Render("Corre") +
lipgloss.NewStyle().Foreground(t.P.Accent).Background(t.P.Bg).Bold(true).Render("x") +
lipgloss.NewStyle().Foreground(t.P.FgStrong).Background(t.P.Bg).Bold(true).Render(" Agent Harness")
var status string
if m.connected {
status = lipgloss.NewStyle().Foreground(t.P.OK).Background(t.P.Bg).Render("Connected") +
t.span(" · ", t.P.Faint) + t.span(plural(len(m.sessions), "session"), t.P.Dim)
} else {
status = lipgloss.NewStyle().Foreground(t.P.Bad).Background(t.P.Bg).Render("Disconnected")
}
rows := []string{title, status, "",
t.span("Select a session from the left", t.P.Dim),
t.span("or type a name to start a new one.", t.P.Dim), ""}
if n := len(m.sessions); n > 0 {
rows = append(rows, t.span("recent:", t.P.Faint))
start := 0
if n > 5 {
start = n - 5
}
for _, s := range m.sessions[start:] {
mark := statusGlyph(t, s.Status)
rows = append(rows, t.span(" "+s.Name+" ", t.P.Fg)+t.span(formatTime(s.LastEventAt), t.P.Faint)+" "+mark)
}
}
return rows
}
func (m Model) routerRows(w, h int) []string {
t := m.theme
msgs := m.routerMessages[m.selectedID]
if len(msgs) == 0 {
return []string{t.span("awaiting router response…", t.P.Faint)}
}
var rows []string
for _, e := range msgs {
switch e.Role {
case "user":
tag := lipgloss.NewStyle().Foreground(t.P.Accent).Background(t.P.Bg).Bold(true).Render("")
rows = append(rows, tag+" "+t.span(e.Content, t.P.FgStrong))
case "router":
// The router turn is model output: render it as markdown (bold,
// lists, headings, code) wrapped to the panel width. glamour applies
// its own inline foreground colors; we keep the opaque panel by
// fixing each line's background. On any failure renderMarkdown hands
// back the plain content, which still flows through this path fine.
rendered := renderMarkdown(e.Content, w)
for _, ln := range strings.Split(rendered, "\n") {
rows = append(rows, lipgloss.NewStyle().Background(t.P.Bg).Render(ln))
}
if s := metricsSuffix(e.Metrics); s != "" {
rows = append(rows, t.span(s, t.P.Faint))
}
case "tool":
rows = append(rows, t.span("· tool output ("+itoaLen(e.Content)+" chars) — ^x to view", t.P.Dim))
case "narration_llm":
diamond := lipgloss.NewStyle().Foreground(t.P.Accent).Background(t.P.Bg).Bold(true).Render("◆")
lines := wrap(e.Content, w-2)
for i, ln := range lines {
if i == 0 {
rows = append(rows, diamond+" "+t.span(ln, t.P.FgStrong))
} else {
rows = append(rows, " "+t.span(ln, t.P.FgStrong))
}
}
if s := metricsSuffix(e.Metrics); s != "" {
rows = append(rows, t.span(s, t.P.Faint))
}
case "narration", "stage":
rows = append(rows, t.span(e.Content, t.P.Dim))
}
}
// keep last h rows
if len(rows) > h {
rows = rows[len(rows)-h:]
}
return rows
}
func (m Model) eventRows(w, h int) []string {
t := m.theme
header := lipgloss.NewStyle().Foreground(t.P.Accent).Background(t.P.Bg).Bold(true).Render("event stream") +
t.span(" ", t.P.Bg)
if m.connected {
header += lipgloss.NewStyle().Foreground(t.P.OK).Background(t.P.Bg).Render("● live")
} else {
header += t.span("○ idle", t.P.Faint)
}
s := m.session(m.selectedID)
if s == nil || len(s.Events) == 0 {
return []string{header, "", t.span("no events yet", t.P.Faint)}
}
evRows := make([]string, 0, len(s.Events))
for _, e := range s.Events {
cat := inferCategory(e.Type)
catCell := lipgloss.NewStyle().Foreground(t.categoryColor(cat)).Background(t.P.BgPanel).
Render(" " + padRaw(cat, 9) + " ")
evRows = append(evRows,
t.span(e.Time+" ", t.P.Faint)+catCell+" "+
t.span(padRaw(e.Type, 18), t.P.Fg)+t.span(e.Detail, t.P.Dim))
}
// Show the latest events that fit under the 2-line header (box inner = h-2).
if avail := h - 4; avail >= 1 && len(evRows) > avail {
evRows = evRows[len(evRows)-avail:]
}
return append([]string{header, ""}, evRows...)
}
// --- width helpers ---
// shortPath abbreviates the user's home dir to ~ for a compact cwd in the status bar.
func shortPath(p string) string {
if home := os.Getenv("HOME"); home != "" && strings.HasPrefix(p, home) {
return "~" + p[len(home):]
}
return p
}
// fill left-justifies a styled line and pads with bg to width w.
func (m Model) fill(s string, w int, bg lipgloss.Color) string {
return " " + padTo(s, w-1, bg)
}
// justify places left and right segments on a bg-filled line of width w, truncating
// so the line never overflows w. The left segment is shrunk first (the right holds
// the high-signal status — connection clock / active spinner); the right is clamped
// only as a last resort. ANSI-aware so truncation can't slice through escape codes.
func (m Model) justify(left, right string, w int, bg lipgloss.Color) string {
avail := w - 2 // leading + trailing space
lw := lipgloss.Width(left)
rw := lipgloss.Width(right)
if lw+rw+1 > avail {
maxLeft := avail - rw - 1
if maxLeft < 0 {
maxLeft = 0
}
left = ansi.Truncate(left, maxLeft, "…")
lw = lipgloss.Width(left)
if lw+rw+1 > avail {
right = ansi.Truncate(right, max(0, avail-lw-1), "…")
rw = lipgloss.Width(right)
}
}
mid := avail - lw - rw
if mid < 1 {
mid = 1
}
pad := lipgloss.NewStyle().Background(bg).Render(strings.Repeat(" ", mid))
return " " + left + pad + right + lipgloss.NewStyle().Background(bg).Render(" ")
}
// padTo pads (or truncates) a possibly-styled string to visible width w, filling
// with the given background so the panel stays opaque.
func padTo(s string, w int, bg lipgloss.Color) string {
vw := lipgloss.Width(s)
if vw == w {
return s
}
if vw > w {
return ansi.Truncate(s, w, "")
}
return s + lipgloss.NewStyle().Background(bg).Render(strings.Repeat(" ", w-vw))
}
// padRaw pads a plain (unstyled) string to width w with spaces, truncating with
// an ellipsis only when it genuinely overflows.
func padRaw(s string, w int) string {
n := len([]rune(s))
if n == w {
return s
}
if n > w {
if w <= 1 {
return string([]rune(s)[:w])
}
return string([]rune(s)[:w-1]) + "…"
}
return s + strings.Repeat(" ", w-n)
}
func statusColor(t Theme, status string) lipgloss.Color {
u := strings.ToUpper(status)
switch {
case strings.Contains(u, "FAIL"):
return t.P.Bad
case strings.Contains(u, "COMPLETE"):
return t.P.Dim
case strings.Contains(u, "PAUSE"), strings.Contains(u, "STARTING"):
return t.P.Warn
case strings.Contains(u, "CHAT"), strings.Contains(u, "ACTIVE"):
return t.P.Accent
default:
return t.P.Dim
}
}
func statusLabel(status string) string {
u := strings.ToUpper(status)
if i := strings.Index(u, " "); i > 0 {
return u[:i]
}
return u
}
func statusGlyph(t Theme, status string) string {
u := strings.ToUpper(status)
switch {
case strings.Contains(u, "FAIL"):
return lipgloss.NewStyle().Foreground(t.P.Bad).Background(t.P.Bg).Render("✗")
case strings.Contains(u, "COMPLETE"):
return lipgloss.NewStyle().Foreground(t.P.OK).Background(t.P.Bg).Render("✓")
default:
return t.span("·", t.P.Faint)
}
}
// span renders text with foreground fg over the panel background.
func (t Theme) span(s string, fg lipgloss.Color) string {
return lipgloss.NewStyle().Foreground(fg).Background(t.P.Bg).Render(s)
}
// box draws a rounded, opaque panel with the title embedded in the top border.
func (t Theme) box(title string, body []string, w, h int, active bool) string {
if w < 4 {
w = 4
}
if h < 2 {
h = 2
}
inner := w - 2
textW := inner - 2
bc := t.P.Border
if active {
bc = t.P.BorderHi
}
bs := lipgloss.NewStyle().Foreground(bc).Background(t.P.Bg)
cell := lipgloss.NewStyle().Background(t.P.Bg)
var top string
if title == "" {
top = bs.Render("╭" + strings.Repeat("─", inner) + "╮")
} else {
ts := t.PanelTitle
if active {
ts = t.TitleHi
}
label := strings.ToUpper(title)
fill := inner - (2 + lipgloss.Width(label) + 1)
if fill < 0 {
fill = 0
}
top = bs.Render("╭─ ") + ts.Render(label) + bs.Render(" "+strings.Repeat("─", fill)) + bs.Render("╮")
}
lines := make([]string, 0, h)
lines = append(lines, top)
for i := 0; i < h-2; i++ {
content := ""
if i < len(body) {
content = body[i]
}
padded := padTo(content, textW, t.P.Bg)
lines = append(lines, bs.Render("│")+cell.Render(" ")+padded+cell.Render(" ")+bs.Render("│"))
}
lines = append(lines, bs.Render("╰"+strings.Repeat("─", inner)+"╯"))
return strings.Join(lines, "\n")
}
func plural(n int, word string) string {
s := itoa(n) + " " + word
if n != 1 {
s += "s"
}
return s
}
func itoa(n int) string {
if n == 0 {
return "0"
}
neg := n < 0
if neg {
n = -n
}
var b [20]byte
i := len(b)
for n > 0 {
i--
b[i] = byte('0' + n%10)
n /= 10
}
if neg {
i--
b[i] = '-'
}
return string(b[i:])
}
func itoaLen(s string) string { return itoa(len(s)) }
// metricsSuffix formats the faint latency+token annotation for a ROUTER turn.
func metricsSuffix(mtr *TurnMetrics) string {
if mtr == nil {
return ""
}
return fmt.Sprintf(" %.1fs · %d tokens", float64(mtr.LatencyMs)/1000.0, mtr.TotalTokens)
}
// wrap splits s into lines no wider than w (rune-based, whitespace-greedy).
func wrap(s string, w int) []string {
if w < 1 {
w = 1
}
words := strings.Fields(s)
if len(words) == 0 {
return []string{""}
}
var lines []string
cur := ""
for _, word := range words {
if cur == "" {
cur = word
} else if len(cur)+1+len(word) <= w {
cur += " " + word
} else {
lines = append(lines, cur)
cur = word
}
}
if cur != "" {
lines = append(lines, cur)
}
return lines
}