Programs can now subscribe to keyboard events (key_down/key_up/key_press) and drivers can broadcast them, through a new user-space input service. The delivery model is forced by danos IPC: a synchronous rendezvous holds one pending reply, so a server cannot park N subscribers blocked in a "wait for next event" call — delivery must be push. But a synchronous push has no timeout and the kernel never wakes a sender parked on a dead peer's endpoint, so one dying subscriber would hang all input. So this lands the roadmap's planned asynchronous buffered send and builds the service on it: - ipc_send (syscall 26): non-blocking post to an endpoint's bounded payload ring, delivered through reply_wait as a buffered message (notify_message_bit). A full ring drops the oldest. It can never hang on a dead/slow peer. - input-protocol + runtime.input helpers (subscribe/next, connectSource/ publish) — the first real consumer of M13 capability passing: a subscriber hands the service its own endpoint as a capability. - input service (fan-out via ipc_send, dead-subscriber pruning), a synthetic input-source, and input-test; the ps2-bus keyboard driver publishes to it. Real IRQ1 scancode decoding (which must live in the bus, the PNP0303 owner) is a documented follow-up; the source is synthetic for now. - build/init wiring, an `input` QEMU case, and docs/input.md. Full QEMU suite 48/48, including the new input case and every IPC/endpoint regression (ipc, ipc-call, ipc-cap, vfs, hpet, bus, irqfree).
41 lines
2.0 KiB
Zig
41 lines
2.0 KiB
Zig
//! danos user-space runtime library — a nascent libc. Every user binary (init,
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//! and later the VFS server + device drivers) imports this as `@import("runtime")`:
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//! system_call wrappers, the C-convention heap, IPC helpers, and the process start
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//! shim. It is compiled into each binary (inheriting its `.large` code model and
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//! freestanding target), so all user programs share one implementation.
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//!
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//! A user binary needs three lines:
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//! const runtime = @import("runtime");
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//! pub const panic = runtime.panic;
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//! comptime { _ = &runtime.start._start; } // pull the entry shim in
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//! and a `pub fn main() void`.
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pub const system = @import("system.zig");
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pub const heap = @import("heap.zig");
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pub const ipc = @import("ipc.zig");
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pub const start = @import("start.zig");
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/// The VFS wire protocol (shared with the VFS server).
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pub const vfs_protocol = @import("vfs-protocol");
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/// Keyboard-event listening (subscribe/next) and broadcasting (publish), over the input
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/// service. See library/runtime/input.zig and system/services/input/.
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pub const input = @import("input.zig");
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/// The input wire protocol (shared with the input service and its clients).
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pub const input_protocol = @import("input-protocol");
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/// POSIX-style file API: open/read/write/lseek/stat/close.
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/// C stdio: fopen/fread/fwrite/fseek/ftell/fclose over unistd.
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/// Device access for drivers: enumerate/claim/mmioMap.
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pub const device = @import("device.zig");
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/// DMA-capable memory for drivers: contiguous, pinned, uncacheable buffers.
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pub const dma = @import("dma.zig");
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/// Re-exported so a user binary can `pub const panic = runtime.panic;`.
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pub const panic = start.panic;
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/// Process arguments (argc/argv, parsed from the kernel-built entry stack):
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/// `argument(0)` is the path or name this binary was spawned as.
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pub const argumentCount = start.argumentCount;
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pub const argument = start.argument;
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/// The heap as a `std.mem.Allocator`, for Zig `std` containers in user code.
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pub const allocator = heap.allocator;
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