Signals over IPC, one-shot timers, and the service harness (M17.4)
Signals are statements delivered as coalescing notifications to the endpoint a process nominates with signal_bind — never a hijacked stack, never a question (liveness is the zero-length ping the harness answers). process_signal is supervisor-or-self gated, like kill; unbound targets accumulate a pending mask delivered on bind. timer_bind is the missing timed wait: a one-shot deadline landing in the same replyWait as everything else — what stop(), hello deadlines, and restart backoff are built from. runtime.service.run folds requests, signals, and notifications into callbacks; the VFS conversion deletes its hand-rolled loop and gains the whole lifecycle contract. The signals scenario drives ping, reload, terminate->exited, the timer, and the deaf-child deadline->killed path from ring 3. docs/process-lifecycle.md increments 1-4 are now as-built.
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@@ -138,42 +138,36 @@ fn handle(message: []const u8, out: []u8, sender: u32) usize {
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}
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}
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pub fn main() void {
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const endpoint = runtime.ipc.createIpcEndpoint() orelse {
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_ = runtime.system.write("vfs: no endpoint\n");
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return;
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};
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if (!runtime.ipc.register(.vfs, endpoint)) {
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_ = runtime.system.write("vfs: register failed\n");
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return;
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}
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// First subscriber of the published exit events (docs/process-lifecycle.md):
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// when a client dies holding open handles, the notification below is how the
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// VFS learns to release them.
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/// Startup, under the harness: subscribe to the published exit events — when a
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/// client dies holding open handles, the exit notification is how the VFS learns
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/// to release them (docs/process-lifecycle.md).
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fn initialise(endpoint: runtime.ipc.Handle) bool {
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if (!runtime.process.subscribeExits(endpoint)) {
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_ = runtime.system.write("vfs: exit subscription failed\n");
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}
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_ = runtime.system.write("vfs: ready\n");
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return true;
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}
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var reply_buffer: [protocol.message_maximum]u8 = undefined;
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var reply_len: usize = 0;
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var receive: [protocol.message_maximum]u8 = undefined;
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while (true) {
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const got = runtime.ipc.replyWait(endpoint, reply_buffer[0..reply_len], &receive, null);
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if (got.isChildExit()) {
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// A published exit event: a process died; drop whatever it held.
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releaseClientHandles(got.childProcessId());
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reply_len = 0;
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continue;
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}
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if (got.isNotification()) {
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reply_len = 0; // not a request; nothing owed
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continue;
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}
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reply_len = handle(receive[0..got.len], &reply_buffer, got.senderTaskId());
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/// A non-signal notification: the only kind the VFS subscribes to is exit events.
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fn onNotification(badge: u64) void {
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if (badge & runtime.ipc.notify_exit_bit != 0) {
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releaseClientHandles(@intCast(badge & ~(runtime.ipc.notify_badge_bit | runtime.ipc.notify_exit_bit)));
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}
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}
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pub fn main() void {
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// The harness owns the loop: requests dispatch to handle(), exit events to
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// onNotification(), ping and terminate are answered for free — this service
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// gained the whole lifecycle contract by deleting its hand-rolled loop.
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runtime.service.run(protocol.message_maximum, .{
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.service = .vfs,
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.init = initialise,
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.on_message = handle,
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.on_notification = onNotification,
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});
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}
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pub const panic = runtime.panic;
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comptime {
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_ = &runtime.start._start;
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