Compare commits
3
Commits
| Author | SHA1 | Date | |
|---|---|---|---|
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712ee935d6 | ||
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a2aa0a5f97 | ||
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d6b9862f1e |
@@ -57,6 +57,8 @@ let presentDebug = ProcessInfo.processInfo.environment["PUNKTFUNK_PRESENT_DEBUG"
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/// to Console.app wirelessly with no env var / Xcode attach. Always on for deadline pacing (the
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/// to Console.app wirelessly with no env var / Xcode attach. Always on for deadline pacing (the
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/// stats are a few arrays + one log line per second); other pacings keep the env-gated print.
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/// stats are a few arrays + one log line per second); other pacings keep the env-gated print.
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private let presentLog = Logger(subsystem: "io.unom.punktfunk", category: "present")
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private let presentLog = Logger(subsystem: "io.unom.punktfunk", category: "present")
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/// Pump-side events (loss recovery, format seeding) — the stage-2 sibling of StreamPump's log.
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private let pumpLog = Logger(subsystem: "io.unom.punktfunk", category: "pump")
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/// Decoded-frame hand-off between the decode half and the render thread. The POLICY is the
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/// Decoded-frame hand-off between the decode half and the render thread. The POLICY is the
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/// user's presentation intent (design/apple-presentation-rebuild.md — the 2026-07 rebuild that
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/// user's presentation intent (design/apple-presentation-rebuild.md — the 2026-07 rebuild that
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@@ -932,6 +934,21 @@ public final class Stage2Pipeline {
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}
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}
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awaitingIDR = false // a fresh IDR re-anchored decode — recovery complete
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awaitingIDR = false // a fresh IDR re-anchored decode — recovery complete
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}
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}
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if format == nil {
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// No decodable format yet: the opening IDR's parameter sets never
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// arrived (or never parsed), and under the host's infinite GOP nothing
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// re-delivers them unless we ASK. Without this the guard below drops
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// every AU silently, forever — the field "black stream, zero recovery
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// requests" state (2026-08-12): the host streams perfectly, the client
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// shows nothing and says nothing. awaitingIDR routes through the same
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// 100 ms-throttled recovery.request() at the top of the loop.
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if !awaitingIDR {
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pumpLog.warning(
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"video: received AUs but no decodable format (missing/unparsed parameter sets) — requesting an IDR until one seeds it"
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)
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}
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awaitingIDR = true
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}
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guard let f = format, !token.isStopped else { return true }
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guard let f = format, !token.isStopped else { return true }
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if decoder.decode(au: au, format: f) {
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if decoder.decode(au: au, format: f) {
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decodeFailRun = 0
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decodeFailRun = 0
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@@ -116,6 +116,21 @@ final class StreamPump {
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}
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}
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awaitingIDR = false // a fresh IDR re-anchored decode — recovery complete
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awaitingIDR = false // a fresh IDR re-anchored decode — recovery complete
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}
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}
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if format == nil {
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// No decodable format yet: the opening IDR's parameter sets never
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// arrived (or never parsed), and under the host's infinite GOP nothing
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// re-delivers them unless we ASK. Without this the format guard below
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// drops every AU silently, forever — the field "black stream, zero
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// recovery requests" state (2026-08-12). awaitingIDR routes through the
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// same 100 ms-throttled recovery.request() at the top of the loop.
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if !awaitingIDR {
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awaitingSince = Date()
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pumpLog.warning(
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"video: received AUs but no decodable format (missing/unparsed parameter sets) — requesting an IDR until one seeds it"
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)
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}
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awaitingIDR = true
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}
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let failed = layer.status == .failed
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let failed = layer.status == .failed
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if failed {
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if failed {
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// Decode wedged hard (the cold-first-connect case — a lost/corrupt opening
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// Decode wedged hard (the cold-first-connect case — a lost/corrupt opening
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@@ -217,18 +217,32 @@ fn journal_and_disable(targets: Vec<(String, String)>) -> Vec<String> {
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disabled
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disabled
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}
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}
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/// Re-enable `ids` (teardown / recovery) and clear them from the journal.
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/// Re-enable `ids` (teardown / recovery) and clear the ones that actually re-enabled from the
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/// journal. A FAILED re-enable must keep its journal entry: it is the only record that the
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/// devnode is still disabled, and the next host start's [`startup_recover`] is the only thing
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/// left that will retry it. (The old behavior cleared every requested id unconditionally — a
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/// mid-life re-enable failure erased its own crash-recovery entry, leaving the operator's
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/// monitor invisible to Windows AND to every display listing until they re-enabled it by hand
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/// in Device Manager: the "my displays are gone until I restart everything" field class.)
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pub fn enable_instances(ids: &[String]) -> u32 {
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pub fn enable_instances(ids: &[String]) -> u32 {
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let mut ok = 0u32;
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let mut ok = 0u32;
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let mut reenabled: Vec<&String> = Vec::with_capacity(ids.len());
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for id in ids {
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for id in ids {
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if set_devnode(id, false) {
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if set_devnode(id, false) {
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tracing::info!(id, "PnP-disable: monitor devnode re-enabled");
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tracing::info!(id, "PnP-disable: monitor devnode re-enabled");
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reenabled.push(id);
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ok += 1;
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ok += 1;
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} else {
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tracing::warn!(
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id,
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"PnP-disable: monitor devnode re-enable FAILED — keeping its crash-journal \
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entry so the next host start retries (until then this monitor stays disabled)"
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);
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}
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}
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}
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}
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let journal: Vec<String> = read_journal()
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let journal: Vec<String> = read_journal()
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.into_iter()
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.into_iter()
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.filter(|j| !ids.contains(j))
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.filter(|j| !reenabled.contains(&j))
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.collect();
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.collect();
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write_journal(&journal);
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write_journal(&journal);
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ok
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ok
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@@ -1962,29 +1962,173 @@ pub fn restore_displays_ccd(saved: &SavedConfig) {
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isolate_journal::clear();
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isolate_journal::clear();
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}
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}
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/// Every display target that still EXISTS right now — `(adapter LUID low, high, target id)` keys
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/// from a full `QDC_ALL_PATHS` sweep, counting a target present when the OS says a monitor is
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/// attached (`targetAvailable`) OR an active path drives it (the flag reads FALSE transiently
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/// right after a removal — same rule as [`target_inventory`]). `None` when the CCD query itself
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/// fails, so the caller can fall back to trusting its snapshot verbatim.
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fn available_target_keys() -> Option<Vec<(u32, i32, u32)>> {
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let mut np = 0u32;
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let mut nm = 0u32;
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// SAFETY: the CCD contract at the top of this file — `&mut np`/`&mut nm` are live locals the
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// OS fills with the counts it wants for these flags.
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if unsafe { GetDisplayConfigBufferSizes(QDC_ALL_PATHS, &mut np, &mut nm) }.is_err() {
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return None;
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}
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let mut paths = vec![DISPLAYCONFIG_PATH_INFO::default(); np as usize];
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let mut modes = vec![DISPLAYCONFIG_MODE_INFO::default(); nm as usize];
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// SAFETY: the CCD contract — `paths`/`modes` were just allocated with exactly `np`/`nm`
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// elements from the sizing call above, and are handed over with those same counts.
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if unsafe {
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QueryDisplayConfig(
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QDC_ALL_PATHS,
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&mut np,
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paths.as_mut_ptr(),
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&mut nm,
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modes.as_mut_ptr(),
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None,
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)
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}
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.is_err()
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{
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return None;
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}
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paths.truncate(np as usize);
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let mut keys: Vec<(u32, i32, u32)> = Vec::new();
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for p in &paths {
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let t = &p.targetInfo;
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let key = (t.adapterId.LowPart, t.adapterId.HighPart, t.id);
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let present = t.targetAvailable.as_bool() || p.flags & DISPLAYCONFIG_PATH_ACTIVE != 0;
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if present && !keys.contains(&key) {
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keys.push(key);
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}
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}
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Some(keys)
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}
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/// Drop every snapshot path whose TARGET no longer exists (`avail` — the live
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/// [`available_target_keys`] sweep) and rebuild the mode table with only the entries the
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/// survivors reference, remapping their `modeInfoIdx` slots. Both halves matter:
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/// `SetDisplayConfig(SDC_USE_SUPPLIED_DISPLAY_CONFIG)` validates the WHOLE submission, so one
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/// stale path — or one orphaned mode entry left behind by a dropped path — fails the entire
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/// restore with 0x57 ERROR_INVALID_PARAMETER. Returns `(paths, modes, dropped_path_count)`;
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/// pure over its inputs so the remap arithmetic is unit-testable without a live CCD.
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fn prune_saved_config_for_targets(
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paths: &[DISPLAYCONFIG_PATH_INFO],
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modes: &[DISPLAYCONFIG_MODE_INFO],
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avail: &[(u32, i32, u32)],
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) -> (
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Vec<DISPLAYCONFIG_PATH_INFO>,
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Vec<DISPLAYCONFIG_MODE_INFO>,
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usize,
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) {
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let mut kept: Vec<DISPLAYCONFIG_PATH_INFO> = Vec::with_capacity(paths.len());
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let mut new_modes: Vec<DISPLAYCONFIG_MODE_INFO> = Vec::with_capacity(modes.len());
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// old mode index → new mode index, memoized: clone configs legitimately share a source mode
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// entry between paths, and it must land in the rebuilt table exactly once.
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let mut remap: Vec<Option<u32>> = vec![None; modes.len()];
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let take =
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|idx: u32, new_modes: &mut Vec<DISPLAYCONFIG_MODE_INFO>, remap: &mut Vec<Option<u32>>| {
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if idx == DISPLAYCONFIG_PATH_MODE_IDX_INVALID {
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return DISPLAYCONFIG_PATH_MODE_IDX_INVALID;
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}
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match modes.get(idx as usize) {
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// An out-of-range index could never have applied — un-pin the mode rather than
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// shipping a table the whole submission fails on.
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None => DISPLAYCONFIG_PATH_MODE_IDX_INVALID,
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Some(m) => match remap[idx as usize] {
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Some(n) => n,
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None => {
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let n = new_modes.len() as u32;
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new_modes.push(*m);
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remap[idx as usize] = Some(n);
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|
n
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||||||
|
}
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|
},
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||||||
|
}
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|
};
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let mut dropped = 0usize;
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for p in paths {
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let t = &p.targetInfo;
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|
if !avail.contains(&(t.adapterId.LowPart, t.adapterId.HighPart, t.id)) {
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dropped += 1;
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|
continue;
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||||||
|
}
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|
let mut p = *p;
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|
// SAFETY: POD union reads (CCD header contract) — `modeInfoIdx` overlays a same-sized
|
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|
// bitfield struct, both valid for every bit pattern; used only as bounds-checked indices.
|
||||||
|
let (src_idx, tgt_idx) = unsafe {
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||||||
|
(
|
||||||
|
p.sourceInfo.Anonymous.modeInfoIdx,
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||||||
|
p.targetInfo.Anonymous.modeInfoIdx,
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||||||
|
)
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||||||
|
};
|
||||||
|
p.sourceInfo.Anonymous.modeInfoIdx = take(src_idx, &mut new_modes, &mut remap);
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||||||
|
p.targetInfo.Anonymous.modeInfoIdx = take(tgt_idx, &mut new_modes, &mut remap);
|
||||||
|
kept.push(p);
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||||||
|
}
|
||||||
|
(kept, new_modes, dropped)
|
||||||
|
}
|
||||||
|
|
||||||
fn restore_displays_ccd_inner(saved: &SavedConfig) {
|
fn restore_displays_ccd_inner(saved: &SavedConfig) {
|
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let (paths, modes) = saved;
|
let (saved_paths, saved_modes) = saved;
|
||||||
if paths.is_empty() {
|
if saved_paths.is_empty() {
|
||||||
return;
|
return;
|
||||||
}
|
}
|
||||||
// SAFETY: the CCD contract at the top of this file — the path/mode arrays go over as
|
// Prune the snapshot against what is STILL ATTACHED before replaying it. A monitor unplugged
|
||||||
// slices, so pointer and length cannot disagree, and both outlive this synchronous
|
// mid-session leaves the snapshot referencing an absent target, and SetDisplayConfig rejects
|
||||||
// call. `retry_set_display_config` binds it to the input desktop, which is the one
|
// the WHOLE array with 0x57 ERROR_INVALID_PARAMETER — nothing restores, the desk stays dark,
|
||||||
// precondition a caller of this global-state write could otherwise get wrong.
|
// and the next session snapshots that wreckage (the poisoned-snapshot chain's first link;
|
||||||
let rc = crate::input_desktop::retry_set_display_config(|| unsafe {
|
// field 2026-08-12: rc=0x57 across a mid-session unplug, then sessions flipping between
|
||||||
SetDisplayConfig(
|
// black/working at random). Dropping the stale paths lets the surviving displays restore
|
||||||
Some(paths.as_slice()),
|
// normally; when NOTHING survives there is nothing to replay and the dark-desk backstop
|
||||||
Some(modes.as_slice()),
|
// below is the whole answer.
|
||||||
SDC_APPLY | SDC_USE_SUPPLIED_DISPLAY_CONFIG | SDC_ALLOW_CHANGES,
|
let (kept, pruned_modes, dropped);
|
||||||
)
|
let (paths, modes): (&Vec<_>, &Vec<_>) = match available_target_keys() {
|
||||||
});
|
Some(avail) => {
|
||||||
if rc == 0 {
|
(kept, pruned_modes, dropped) =
|
||||||
tracing::info!("display isolate (CCD): restored original topology");
|
prune_saved_config_for_targets(saved_paths, saved_modes, &avail);
|
||||||
} else {
|
if dropped > 0 {
|
||||||
|
tracing::warn!(
|
||||||
|
dropped,
|
||||||
|
kept = kept.len(),
|
||||||
|
"display isolate (CCD): snapshot references target(s) that are no longer \
|
||||||
|
attached (unplugged mid-session?) — pruned them so the survivors can restore \
|
||||||
|
(a verbatim replay fails whole with rc=0x57)"
|
||||||
|
);
|
||||||
|
}
|
||||||
|
(&kept, &pruned_modes)
|
||||||
|
}
|
||||||
|
// The availability query itself failed — replay verbatim, exactly the old behavior.
|
||||||
|
None => (saved_paths, saved_modes),
|
||||||
|
};
|
||||||
|
let mut apply_rc = 0i32; // 0 also when the replay was skipped (nothing left to apply)
|
||||||
|
if paths.is_empty() {
|
||||||
tracing::warn!(
|
tracing::warn!(
|
||||||
"display isolate (CCD): topology restore failed rc={rc:#x}{} — physical displays may be left deactivated",
|
"display isolate (CCD): nothing from the topology snapshot is still attached — \
|
||||||
sdc_access_denied_hint(rc)
|
skipping the replay (the dark-desk backstop decides what lights up)"
|
||||||
);
|
);
|
||||||
|
} else {
|
||||||
|
// SAFETY: the CCD contract at the top of this file — the path/mode arrays go over as
|
||||||
|
// slices, so pointer and length cannot disagree, and both outlive this synchronous
|
||||||
|
// call. `retry_set_display_config` binds it to the input desktop, which is the one
|
||||||
|
// precondition a caller of this global-state write could otherwise get wrong.
|
||||||
|
let rc = crate::input_desktop::retry_set_display_config(|| unsafe {
|
||||||
|
SetDisplayConfig(
|
||||||
|
Some(paths.as_slice()),
|
||||||
|
Some(modes.as_slice()),
|
||||||
|
SDC_APPLY | SDC_USE_SUPPLIED_DISPLAY_CONFIG | SDC_ALLOW_CHANGES,
|
||||||
|
)
|
||||||
|
});
|
||||||
|
apply_rc = rc;
|
||||||
|
if rc == 0 {
|
||||||
|
tracing::info!("display isolate (CCD): restored original topology");
|
||||||
|
} else {
|
||||||
|
tracing::warn!(
|
||||||
|
"display isolate (CCD): topology restore failed rc={rc:#x}{} — physical displays may be left deactivated",
|
||||||
|
sdc_access_denied_hint(rc)
|
||||||
|
);
|
||||||
|
}
|
||||||
}
|
}
|
||||||
// GUARANTEE the desk is never left all-dark. The saved config can be unappliable (field
|
// GUARANTEE the desk is never left all-dark. The saved config can be unappliable (field
|
||||||
// rc=0x64a ERROR_BAD_CONFIGURATION: it pinned a virtual target incarnation that was since
|
// rc=0x64a ERROR_BAD_CONFIGURATION: it pinned a virtual target incarnation that was since
|
||||||
@@ -2020,7 +2164,7 @@ fn restore_displays_ccd_inner(saved: &SavedConfig) {
|
|||||||
return;
|
return;
|
||||||
}
|
}
|
||||||
tracing::warn!(
|
tracing::warn!(
|
||||||
"display isolate (CCD): no external physical display active after the restore (rc={rc:#x}, connected={connected}) — forcing the EXTEND preset so the desk is not left dark"
|
"display isolate (CCD): no external physical display active after the restore (rc={apply_rc:#x}, connected={connected}) — forcing the EXTEND preset so the desk is not left dark"
|
||||||
);
|
);
|
||||||
force_extend_topology();
|
force_extend_topology();
|
||||||
// Measure what the force achieved: a sink still dark AFTER the EXTEND preset can never
|
// Measure what the force achieved: a sink still dark AFTER the EXTEND preset can never
|
||||||
@@ -2128,3 +2272,124 @@ mod live_tests {
|
|||||||
tracing::info!("live CCD query: {n} active display path(s)");
|
tracing::info!("live CCD query: {n} active display path(s)");
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
#[cfg(test)]
|
||||||
|
mod prune_saved_config_tests {
|
||||||
|
//! The snapshot-prune remap arithmetic (`prune_saved_config_for_targets`) — pure over its
|
||||||
|
//! inputs, so the 0x57-poisoned-restore fix is testable without a live CCD: a stale target's
|
||||||
|
//! path must vanish, its modes must not orphan (an orphaned entry fails the whole
|
||||||
|
//! SetDisplayConfig exactly like the stale path did), and clone-shared modes must land once.
|
||||||
|
use super::*;
|
||||||
|
|
||||||
|
fn path(
|
||||||
|
luid_low: u32,
|
||||||
|
target_id: u32,
|
||||||
|
src_mode: u32,
|
||||||
|
tgt_mode: u32,
|
||||||
|
) -> DISPLAYCONFIG_PATH_INFO {
|
||||||
|
let mut p = DISPLAYCONFIG_PATH_INFO::default();
|
||||||
|
p.targetInfo.adapterId.LowPart = luid_low;
|
||||||
|
p.targetInfo.id = target_id;
|
||||||
|
p.sourceInfo.adapterId.LowPart = luid_low;
|
||||||
|
p.sourceInfo.Anonymous.modeInfoIdx = src_mode;
|
||||||
|
p.targetInfo.Anonymous.modeInfoIdx = tgt_mode;
|
||||||
|
p
|
||||||
|
}
|
||||||
|
|
||||||
|
fn mode(marker: u32) -> DISPLAYCONFIG_MODE_INFO {
|
||||||
|
DISPLAYCONFIG_MODE_INFO {
|
||||||
|
id: marker,
|
||||||
|
..Default::default()
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
fn indices(p: &DISPLAYCONFIG_PATH_INFO) -> (u32, u32) {
|
||||||
|
// SAFETY: POD union reads — `modeInfoIdx` overlays a same-sized bitfield struct, both
|
||||||
|
// valid for every bit pattern (the same contract the production reads rely on).
|
||||||
|
unsafe {
|
||||||
|
(
|
||||||
|
p.sourceInfo.Anonymous.modeInfoIdx,
|
||||||
|
p.targetInfo.Anonymous.modeInfoIdx,
|
||||||
|
)
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
#[test]
|
||||||
|
fn everything_attached_survives_with_dense_indices() {
|
||||||
|
let paths = vec![path(1, 100, 0, 1), path(1, 200, 2, 3)];
|
||||||
|
let modes = vec![mode(10), mode(11), mode(12), mode(13)];
|
||||||
|
let avail = vec![(1, 0, 100), (1, 0, 200)];
|
||||||
|
let (kept, new_modes, dropped) = prune_saved_config_for_targets(&paths, &modes, &avail);
|
||||||
|
assert_eq!(dropped, 0);
|
||||||
|
assert_eq!(kept.len(), 2);
|
||||||
|
assert_eq!(new_modes.len(), 4);
|
||||||
|
assert_eq!(indices(&kept[0]), (0, 1));
|
||||||
|
assert_eq!(indices(&kept[1]), (2, 3));
|
||||||
|
assert_eq!(new_modes[3].id, 13, "mode entries follow their paths");
|
||||||
|
}
|
||||||
|
|
||||||
|
#[test]
|
||||||
|
fn a_gone_target_drops_its_path_and_modes() {
|
||||||
|
// Target 200 was unplugged mid-session (the field rc=0x57 case): its path AND its two
|
||||||
|
// mode entries must vanish, and the survivor's indices must be remapped dense.
|
||||||
|
let paths = vec![path(1, 100, 0, 1), path(1, 200, 2, 3)];
|
||||||
|
let modes = vec![mode(10), mode(11), mode(12), mode(13)];
|
||||||
|
let avail = vec![(1, 0, 100)];
|
||||||
|
let (kept, new_modes, dropped) = prune_saved_config_for_targets(&paths, &modes, &avail);
|
||||||
|
assert_eq!(dropped, 1);
|
||||||
|
assert_eq!(kept.len(), 1);
|
||||||
|
assert_eq!(kept[0].targetInfo.id, 100);
|
||||||
|
assert_eq!(
|
||||||
|
new_modes.len(),
|
||||||
|
2,
|
||||||
|
"the dropped path's modes must not orphan"
|
||||||
|
);
|
||||||
|
assert_eq!((new_modes[0].id, new_modes[1].id), (10, 11));
|
||||||
|
assert_eq!(indices(&kept[0]), (0, 1));
|
||||||
|
}
|
||||||
|
|
||||||
|
#[test]
|
||||||
|
fn a_clone_shared_source_mode_lands_exactly_once() {
|
||||||
|
// Clone configs share one source mode entry between paths — the rebuilt table must
|
||||||
|
// contain it once, referenced by both survivors.
|
||||||
|
let paths = vec![path(1, 100, 0, 1), path(1, 200, 0, 2)];
|
||||||
|
let modes = vec![mode(10), mode(11), mode(12)];
|
||||||
|
let avail = vec![(1, 0, 100), (1, 0, 200)];
|
||||||
|
let (kept, new_modes, dropped) = prune_saved_config_for_targets(&paths, &modes, &avail);
|
||||||
|
assert_eq!(dropped, 0);
|
||||||
|
assert_eq!(new_modes.len(), 3);
|
||||||
|
let (a_src, _) = indices(&kept[0]);
|
||||||
|
let (b_src, _) = indices(&kept[1]);
|
||||||
|
assert_eq!(a_src, b_src, "shared source mode keeps one table entry");
|
||||||
|
}
|
||||||
|
|
||||||
|
#[test]
|
||||||
|
fn unpinned_and_corrupt_indices_stay_unpinned() {
|
||||||
|
// The INVALID sentinel must pass through, and an out-of-range index (a corrupt snapshot)
|
||||||
|
// must degrade to unpinned rather than shipping a table the whole apply fails on.
|
||||||
|
let paths = vec![path(1, 100, DISPLAYCONFIG_PATH_MODE_IDX_INVALID, 99)];
|
||||||
|
let modes = vec![mode(10)];
|
||||||
|
let avail = vec![(1, 0, 100)];
|
||||||
|
let (kept, new_modes, dropped) = prune_saved_config_for_targets(&paths, &modes, &avail);
|
||||||
|
assert_eq!(dropped, 0);
|
||||||
|
assert!(new_modes.is_empty());
|
||||||
|
assert_eq!(
|
||||||
|
indices(&kept[0]),
|
||||||
|
(
|
||||||
|
DISPLAYCONFIG_PATH_MODE_IDX_INVALID,
|
||||||
|
DISPLAYCONFIG_PATH_MODE_IDX_INVALID
|
||||||
|
)
|
||||||
|
);
|
||||||
|
}
|
||||||
|
|
||||||
|
#[test]
|
||||||
|
fn different_adapters_do_not_alias_the_same_target_id() {
|
||||||
|
// Target ids are only unique per adapter LUID — a survivor on adapter 2 must not keep a
|
||||||
|
// stale path alive on adapter 1 just because the ids match.
|
||||||
|
let paths = vec![path(1, 100, 0, 1)];
|
||||||
|
let modes = vec![mode(10), mode(11)];
|
||||||
|
let avail = vec![(2, 0, 100)];
|
||||||
|
let (kept, _, dropped) = prune_saved_config_for_targets(&paths, &modes, &avail);
|
||||||
|
assert_eq!((kept.len(), dropped), (0, 1));
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|||||||
Reference in New Issue
Block a user