//! /system/services/device-manager — the ring-3 process that turns the device //! tree into a running system. The kernel enumerates the hardware and enforces the //! claim capability (mechanism); this decides *which driver serves which device* //! and, eventually, spawns it (policy). Keeping that split in user space is the //! whole point of the microkernel: the manager is an ordinary, restartable process //! with no special privilege — it uses the same `device_*` system calls any process //! could ([drivers.md](../../../docs/drivers.md), [driver-model.md]). //! //! Increment 2 (this file): enumerate /system/devices, *match* each device to a //! driver, and *spawn* it with `system_spawn` — the kernel loads the named binary //! from the initial-ramdisk as a fresh ring-3 process. On QEMU this discovers the //! HPET, decides `hpet` serves it, and brings that driver all the way up. (The //! kernel still auto-spawns the whole initial-ramdisk at boot; increment 3 removes //! that redundancy so the manager is the sole owner of driver spawning.) const runtime = @import("runtime"); const device = runtime.device; /// The driver that serves each device class — the policy table. In a fuller system /// this comes from the drivers describing what they bind (or a manifest under /// /system/drivers); for now it is a small static map, which is enough to prove the /// manager reads the tree and decides. `null` = no driver for this class yet. fn driverFor(class: u64) ?[]const u8 { if (class == @intFromEnum(device.DeviceClass.timer)) return "hpet"; // the HPET return null; } pub fn main() void { // Enumerate into a heap buffer (too big for the one-page user stack). const buffer = runtime.allocator().alloc(device.DeviceDescriptor, 64) catch { _ = runtime.system.write("device-manager: out of memory\n"); return; }; const total = device.enumerate(buffer); const count = @min(total, buffer.len); var matched: usize = 0; for (buffer[0..count]) |descriptor| { const driver_name = driverFor(descriptor.class) orelse continue; matched += 1; if (runtime.system.spawn(driver_name)) { _ = runtime.system.write("device-manager: spawned "); _ = runtime.system.write(driver_name); _ = runtime.system.write("\n"); } else { _ = runtime.system.write("device-manager: failed to spawn "); _ = runtime.system.write(driver_name); _ = runtime.system.write("\n"); } } if (matched == 0) { _ = runtime.system.write("device-manager: no matchable devices\n"); return; } _ = runtime.system.write("device-manager: ok\n"); while (true) runtime.system.sleep(1000); } pub const panic = runtime.panic; comptime { _ = &runtime.start._start; // pull the runtime entry shim into the image }