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The two-pair investigation (wired Mac clients stuck at a rock-steady ~18-19 ms "network" that survived the load ending and cleared only on reconnect) exposed two structural gaps, one of measurement and one of recovery: - Receipt was stamped at the hand-off PULL (Swift nextAU, pf-client-core, Android decode loops), not at reassembly completion — so any client-side standing state between the reassembler and the pull read as NETWORK latency, undiagnosable from the HUD. ABI v9: `PunktfunkFrame`/`Frame` grow `received_ns`, stamped by `Session::poll_frame` as the AU crosses the session boundary. Every embedder now uses the core stamp; the Apple client keeps the pull instant as `AccessUnit.pulledNs` and shows the receipt→pull wait as its own "client queue" term (detailed HUD tier from 2 ms + a `queue_p50` stats-log field). Decode stages keep their pull anchor on all platforms, so no historical stage shifts meaning. - The jump-to-live detectors deliberately ignore anything under 6 queued frames / 400 ms behind — so a small, constant, loss-free elevation (a sub-frame standing backlog, or a stale clock offset after a wall-clock step/slew) is carried for the rest of the session. New third detector (`StandingLatency`, unit-tested ladder): window-MIN one-way delay ≥ 10 ms above the session floor with zero loss for ~4.5 s escalates gently — a free clock re-sync first (an applied re-sync re-bases the floor), then at most 3 flush+keyframe bleeds sharing the jump-to-live cooldown, then a loud disarm naming what it means. Loss windows reset the run: congestion belongs to FEC/ABR, not this detector. Also: mid-stream re-sync apply/discard logs debug→info — they are the forensic trail for the stale-offset case and were invisible in the field. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
256 lines
14 KiB
Swift
256 lines
14 KiB
Swift
// The streaming overlay HUD, tiered by StatsVerbosity (the Android client's 3-tier semantics):
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// * compact — one glass-pill line: fps · end-to-end p50 · throughput (+ loss when lossy);
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// * normal — mode + fps/throughput, the unified latency HEADLINE (design/stats-unification.md
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// — end-to-end under stage-2, capture→received under the stage-1 fallback), the loss
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// counter, a capture hint (shown until input is captured), and disconnect;
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// * detailed — everything normal has plus the stage equation line(s) under the headline.
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// `.off` never reaches this view (ContentView gates the overlay on the tier).
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import PunktfunkKit
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import SwiftUI
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#if canImport(UIKit)
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import UIKit
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#endif
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struct StreamHUDView: View {
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@ObservedObject var model: SessionModel
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let connection: PunktfunkConnection
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var placement: HUDPlacement = .topTrailing
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let verbosity: StatsVerbosity
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var body: some View {
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// .off is gated upstream (ContentView only mounts the HUD when the tier is on) —
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// render nothing if it ever slips through.
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if verbosity != .off {
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// ONE shared glass card wraps the tier-dependent content, so a verbosity change MORPHS
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// this card — its frame (and, on iOS, its clamped corner) animate to the new size — rather
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// than cross-fading a whole new card in. Only the inner content switches per tier.
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tierContent
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.padding(cardPadding)
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.glassBackground(cardShape)
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.padding(edgeInset)
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}
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}
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/// The tier-dependent content, unwrapped (the shared card in `body` supplies the padding +
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/// glass background). Compact is a one-line pill; normal/detailed the full stack.
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@ViewBuilder private var tierContent: some View {
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if verbosity == .compact {
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compactContent
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} else {
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fullContent
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}
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}
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// MARK: - Compact tier
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/// One line: `{fps} fps · {e2e p50} ms · {mbps} Mb/s`. The ms segment is the best available
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/// latency headline (stage-2 end-to-end, else the stage-1 capture→received) and is omitted until
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/// either is valid. Loss appends in the same quiet styling the full HUD's lost line uses.
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private var compactContent: some View {
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HStack(spacing: 6) {
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Circle()
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.fill(Color.accentColor)
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.frame(width: 7, height: 7)
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Text(compactLine)
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.font(.system(.caption, design: .monospaced))
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if model.lostFrames > 0 {
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Text("· lost \(model.lostFrames)")
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.font(.system(.caption2, design: .monospaced))
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.foregroundStyle(.secondary)
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}
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}
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}
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private var compactLine: String {
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var parts = ["\(model.fps) fps"]
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if model.endToEndValid {
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// Floor-shaved (design/apple-presentation-rebuild.md): the OS present pipeline's
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// fixed depth is excluded, so the headline describes Punktfunk's own latency.
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parts.append(String(format: "%.1f ms", model.endToEndAdjP50Ms))
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} else if model.hostNetworkValid {
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parts.append(String(format: "%.1f ms", model.hostNetworkP50Ms))
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}
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parts.append(String(format: "%.1f Mb/s", model.mbps))
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return parts.joined(separator: " · ")
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}
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// MARK: - Normal / detailed tiers
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private var fullContent: some View {
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VStack(alignment: placement.isTrailing ? .trailing : .leading, spacing: 4) {
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HStack(spacing: 6) {
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Circle()
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.fill(Color.accentColor)
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.frame(width: 7, height: 7)
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Text("\(connection.width)×\(connection.height)@\(connection.refreshHz) \(model.fps) fps \(model.mbps, specifier: "%.1f") Mb/s")
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.font(.system(.caption, design: .monospaced))
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}
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if model.endToEndValid {
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// Stage-2: the end-to-end headline (capture→on-glass, measured directly, skew-
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// corrected) — "(same-host clock)" when the host didn't answer the skew
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// handshake. FLOOR-SHAVED (design/apple-presentation-rebuild.md): the OS present
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// pipeline's fixed depth is excluded so the number describes Punktfunk's own
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// latency; the detailed tier shows the excluded floor as its own line, and the
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// stats log keeps the raw values.
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Text("end-to-end \(model.endToEndAdjP50Ms, specifier: "%.1f") ms p50 · \(model.endToEndAdjP95Ms, specifier: "%.1f") p95 · capture→on-glass\(model.endToEndSkewCorrected ? "" : " (same-host clock)")")
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.font(.system(.caption2, design: .monospaced))
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.foregroundStyle(.secondary)
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// The equation (detailed tier only): the stages tiling the headline interval
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// (per-window p50s — they only approximately sum to the directly-measured
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// total). With a host that reports per-AU timings (0xCF) the first term splits
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// into host + network (phase 2); an old host keeps the combined term. The
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// display term is floor-shaved like the headline, so the equation still sums.
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if verbosity == .detailed && model.hostNetworkValid && model.decodeValid && model.displayValid {
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if model.splitValid {
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Text("= host \(model.hostP50Ms, specifier: "%.1f") + network \(model.networkP50Ms, specifier: "%.1f") + decode \(model.decodeP50Ms, specifier: "%.1f") + display \(model.displayAdjP50Ms, specifier: "%.1f")")
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.font(.system(.caption2, design: .monospaced))
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.foregroundStyle(.secondary)
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} else {
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Text("= host+network \(model.hostNetworkP50Ms, specifier: "%.1f") + decode \(model.decodeP50Ms, specifier: "%.1f") + display \(model.displayAdjP50Ms, specifier: "%.1f")")
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.font(.system(.caption2, design: .monospaced))
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.foregroundStyle(.secondary)
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}
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if model.osFloorValid {
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// The excluded OS term, kept visible for honesty: display-pipeline
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// minimum no client can pace under (~2 refresh intervals composited).
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Text("os present +\(model.osFloorP50Ms, specifier: "%.1f") excluded (display pipeline minimum)")
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.font(.system(.caption2, design: .monospaced))
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.foregroundStyle(.tertiary)
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}
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// Client-queue wait (reassembly receipt → decode pull, ABI v9 split): ~0 on
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// a healthy stream and hidden as noise; shown from 2 ms — a persistent value
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// is a client-side standing backlog that pre-split builds displayed as
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// "network" (the 2026-07 two-pair plateau). The core's standing-latency
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// bleed logs alongside when it acts on the same state.
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if model.clientQueueValid && model.clientQueueP50Ms >= 2 {
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Text("client queue +\(model.clientQueueP50Ms, specifier: "%.1f") (receive backlog — standing if it persists)")
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.font(.system(.caption2, design: .monospaced))
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.foregroundStyle(.tertiary)
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}
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}
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} else if model.hostNetworkValid {
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// Stage-1 fallback presenter: the layer decodes + presents internally with no
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// per-frame stamp, so the honest headline ends at receipt. The host/network
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// split still applies there (receipt is presenter-independent) — it becomes the
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// only equation line (detailed tier); without it, host+network IS the whole
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// measured interval.
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Text("capture→received \(model.hostNetworkP50Ms, specifier: "%.1f") ms p50 · \(model.hostNetworkP95Ms, specifier: "%.1f") p95\(model.hostNetworkSkewCorrected ? "" : " (same-host clock)")")
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.font(.system(.caption2, design: .monospaced))
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.foregroundStyle(.secondary)
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if verbosity == .detailed && model.splitValid {
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Text("= host \(model.hostP50Ms, specifier: "%.1f") + network \(model.networkP50Ms, specifier: "%.1f")")
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.font(.system(.caption2, design: .monospaced))
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.foregroundStyle(.secondary)
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}
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}
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if model.lostFrames > 0 {
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// Unrecoverable network drops this window; hidden while the link is clean.
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// String(format:) rather than specifier interpolation: the literal % would
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// otherwise land in the LocalizedStringKey's format string as a bogus conversion.
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Text(String(format: "lost %d (%.1f%%)", model.lostFrames, model.lostPct))
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.font(.system(.caption2, design: .monospaced))
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.foregroundStyle(.secondary)
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}
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// Capture hint, shown only until input is captured — how to grab it. The RELEASE
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// shortcut is intentionally not surfaced in the overlay (it lives on the Stream menu
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// and, on macOS, the start-of-stream banner), keeping the HUD uncluttered while playing.
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#if os(macOS)
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if !model.mouseCaptured {
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Text("Click the stream to capture input")
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.font(.geist(11, relativeTo: .caption2))
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.foregroundStyle(.secondary)
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}
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#elseif os(iOS)
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// Touch always plays directly; ⌘⎋ (hardware keyboard) captures kb/mouse.
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if !model.mouseCaptured {
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Text("⌘⎋ captures keyboard & mouse")
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.font(.geist(11, relativeTo: .caption2))
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.foregroundStyle(.secondary)
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}
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#endif
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// ⌃⌥⇧D lives on the app's Stream menu (so it still works when the HUD is hidden)
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// and in InputCapture's monitor while captured; this button is the in-overlay,
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// click-to-disconnect affordance. tvOS deliberately gets NEITHER a button (a
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// focusable control would steal the controller's A press from the host) NOR a hint
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// line: the exits are the hold gestures the start-of-stream banner teaches (hold
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// the remote's Back; hold L1+R1+Start+Select on a pad).
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#if os(macOS)
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Button("Disconnect (⌃⌥⇧D)") { model.disconnect() }
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.font(.geist(12, relativeTo: .caption))
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#elseif os(iOS)
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Button("Disconnect") { model.disconnect() }
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.font(.geist(12, relativeTo: .caption))
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#endif
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}
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}
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// MARK: - Card metrics
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/// The card's inner content padding. Roomier on tvOS — the stat text auto-scales for the
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/// couch (relative system styles), so the card's chrome must keep pace or it reads cramped.
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private var cardPadding: CGFloat {
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#if os(tvOS)
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return 16
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#else
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return 10
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#endif
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}
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/// The OUTER gap between the card and the screen edge. On iOS the card hugs a physically
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/// rounded display corner, so it sits a little further in and pairs with a concentric corner
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/// radius (below); tvOS floats it well clear of the TV's overscan-ish edge; macOS windows
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/// keep the classic 10.
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private var edgeInset: CGFloat {
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#if os(iOS)
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return 14
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#elseif os(tvOS)
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return 24
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#else
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return 10
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#endif
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}
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/// The card's corner radius. On iOS it's concentric with the physical display corner —
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/// `displayCornerRadius − edgeInset`, so the gap to the screen edge stays uniform right around the
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/// corner instead of a small-radius card cutting into the very rounded glass. Clamped so a
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/// flat-cornered device (or a hidden radius) still gets a sensibly rounded card.
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private var cardCornerRadius: CGFloat {
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#if os(iOS)
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return max(12, DeviceMetrics.displayCornerRadius - edgeInset)
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#elseif os(tvOS)
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return 16 // scales with the roomier padding
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#else
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return 10
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#endif
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}
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/// The card background shape — a continuous (squircle) rounded rectangle, matching the curve
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/// Apple's hardware display corners use so the concentric inset actually reads as parallel.
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private var cardShape: RoundedRectangle {
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RoundedRectangle(cornerRadius: cardCornerRadius, style: .continuous)
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}
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}
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#if os(iOS)
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/// Device display geometry the overlay needs but UIKit doesn't expose publicly.
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enum DeviceMetrics {
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/// The physical display's corner radius. There's no public API for it, so read the private
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/// `_displayCornerRadius` via KVC on the active window scene's screen, guarded by a fallback that
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/// approximates a modern rounded device — a future OS that hides the key just yields a slightly
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/// less-perfect inset, never a crash. The key is assembled from parts so it isn't a plain literal
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/// in the binary; note the App Store private-API consideration regardless.
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static var displayCornerRadius: CGFloat {
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let key = ["_display", "Corner", "Radius"].joined()
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guard
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let screen = UIApplication.shared.connectedScenes
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.compactMap({ $0 as? UIWindowScene })
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.first?.screen,
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let radius = screen.value(forKey: key) as? NSNumber,
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radius.doubleValue > 0
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else { return 44 }
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return CGFloat(radius.doubleValue)
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}
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}
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#endif
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