The flip: ACPI enumeration leaves the kernel (M20.3)

The kernel no longer folds AML Device objects into the device tree — the
ring-3 acpi service is the sole builder of _HID device nodes. The kernel
keeps building the namespace only for the \_S5 sleep type, and still
seeds the static tables (MADT, HPET, MCFG, FADT) and the acpi-tables node.

The device manager matches ps2-bus from the service's _HID reports
(PNP0303 / PNP0F13, singleton-deduped) instead of boot-snapshot nodes;
its dead boot-snapshot ps2 arm is gone. The service registers every
device before reporting any, so a driver the manager spawns on the first
report already sees the full set — no keyboard-before-mouse race. The
acpi-ps2 scenario proves the whole chain: report -> spawn -> ps2-bus
finds the controller and attaches its keyboard, entirely in ring 3. The
ioport test moved to the acpi-tables I/O window, since the kernel-built
PS/2 node it used to scan for no longer exists. The retired
device-building functions in acpi.zig are dead but retained (a botched
mechanical deletion is worse mid-migration than a follow-up sweep, which
is flagged as a task). Suite 58/58.
This commit is contained in:
Daniel Samson
2026-07-13 03:32:15 +01:00
parent 5ca804d827
commit e6d0bb7ef0
6 changed files with 101 additions and 46 deletions
+8 -5
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@@ -123,11 +123,14 @@ branch is green; keep branches; push everything.
the broad io grant. ChildAdded gained `hid`. Matching stays off. The the broad io grant. ChildAdded gained `hid`. Matching stays off. The
`acpi-report` scenario asserts the PS/2 keyboard (3 resources) and mouse `acpi-report` scenario asserts the PS/2 keyboard (3 resources) and mouse
(1 resource) among the reports. Suite 57/57. (1 resource) among the reports. Suite 57/57.
- [ ] **M20.3** — the flip: kernel DSDT device-node building removed (static - [x] **M20.3** — the flip: the kernel's `wireAcpiDevices` call is gone (the
tables + `\_S5` stay, decision 1); manager matches ACPI-hid drivers device-building helpers are retained-but-dead pending a focused sweep,
(ps2-bus) from reports. The `input` and `device-manager` scenarios are spawned as a task; static tables + `\_S5` + the acpi-tables node stay).
the assertion. discovery.md + acpi.md + device-manager.md updated; The manager matches ps2-bus from ACPI `_HID` reports; the service
device-manager.md increment 8 closed. registers all devices before reporting any (no keyboard-before-mouse
race). The `acpi-ps2` scenario proves report → spawn → ps2-bus attaches
its keyboard; `ioport` retargeted to the acpi-tables I/O window (the
kernel-built PS/2 node is gone). Suite 58/58.
- [ ] **merge** `feat/acpi-service` → main, push — **loop ends here**. - [ ] **merge** `feat/acpi-service` → main, push — **loop ends here**.
--- ---
+7 -2
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@@ -405,8 +405,13 @@ pub fn discover(rsdp_physical: u64, memory_regions: []const boot_handoff.MemoryR
aml_stats = .{ .nodes = namespace.?.nodeCount(), .consumed = pr.consumed, .total = pr.total }; aml_stats = .{ .nodes = namespace.?.nodeCount(), .consumed = pr.consumed, .total = pr.total };
power_information.s5 = aml.sleepState(&namespace.?, 5); power_information.s5 = aml.sleepState(&namespace.?, 5);
power_information.s3 = aml.sleepState(&namespace.?, 3); power_information.s3 = aml.sleepState(&namespace.?, 3);
// Fold the namespace's Device objects into the generic tree. // The namespace's Device objects are no longer folded into the kernel
wireAcpiDevices(device_tree, &namespace.?, hal) catch {}; // tree (M20.3): the ring-3 acpi service claims the acpi-tables node
// (published below), re-parses the same blobs, and registers + reports
// the _HID devices itself. The kernel keeps the namespace only for the
// \_S5 sleep type above. The device-building helpers below
// (wireAcpiDevices and friends) are retained but unreferenced — a
// focused dead-code sweep follows the migration.
} else |_| { } else |_| {
// AML parse failed (e.g. out of memory); power stays best-effort with // AML parse failed (e.g. out of memory); power stays best-effort with
// whatever the FADT alone provided. // whatever the FADT alone provided.
+15 -7
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@@ -150,6 +150,8 @@ pub fn run(case: []const u8, boot_information: *const BootInformation) void {
acpiParseTest(boot_information); acpiParseTest(boot_information);
} else if (eql(case, "acpi-report")) { } else if (eql(case, "acpi-report")) {
acpiReportTest(boot_information); acpiReportTest(boot_information);
} else if (eql(case, "acpi-ps2")) {
acpiReportTest(boot_information); // same spawn; the harness regex differs
} else if (eql(case, "initial-ramdisk")) { } else if (eql(case, "initial-ramdisk")) {
initialRamdiskTest(boot_information); initialRamdiskTest(boot_information);
} else if (eql(case, "vfs")) { } else if (eql(case, "vfs")) {
@@ -1134,12 +1136,18 @@ fn ioPortTest() void {
var buffer: [64]device_abi.DeviceDescriptor = undefined; var buffer: [64]device_abi.DeviceDescriptor = undefined;
const n = @min(devices_broker.enumerate(&buffer), buffer.len); const n = @min(devices_broker.enumerate(&buffer), buffer.len);
// Post-M20.3 the PS/2 node is registered at runtime by the ring-3 acpi
// service, so it is absent from this boot snapshot. Exercise the same
// io_port claim/resolve mechanism against the acpi-tables node's broad I/O
// grant — the window that now carries port authority (the service uses it
// for exactly this). The PS/2 status port 0x64 is offset 0x64 within it.
var found_id: ?u64 = null; var found_id: ?u64 = null;
var found_res: u64 = 0; var found_res: u64 = 0;
outer: for (buffer[0..n]) |d| { outer: for (buffer[0..n]) |d| {
if (d.class != @intFromEnum(device_abi.DeviceClass.acpi_tables)) continue;
for (0..d.resource_count) |ri| { for (0..d.resource_count) |ri| {
const r = d.resources[ri]; const r = d.resources[ri];
if (r.kind == @intFromEnum(device_abi.ResourceKind.io_port) and r.start == 0x64 and r.len >= 1) { if (r.kind == @intFromEnum(device_abi.ResourceKind.io_port) and r.start == 0 and r.len > 0x64) {
found_id = d.id; found_id = d.id;
found_res = ri; found_res = ri;
break :outer; break :outer;
@@ -1147,18 +1155,18 @@ fn ioPortTest() void {
} }
} }
const id = found_id orelse { const id = found_id orelse {
check("discovered the PS/2 status port (io_port 0x64)", false); check("discovered the acpi-tables I/O window", false);
result(); result();
return; return;
}; };
check("discovered the PS/2 status port (io_port 0x64)", true); check("discovered the acpi-tables I/O window", true);
const me = scheduler.current(); const me = scheduler.current();
check("claimed the io_port device", devices_broker.claim(id, me.id)); check("claimed the io_port device", devices_broker.claim(id, me.id));
check("an in-range access resolves to port 0x64", process.resolveIoPort(me, id, found_res, 0, 1) == 0x64); check("an in-range access resolves to port 0x64", process.resolveIoPort(me, id, found_res, 0x64, 1) == 0x64);
check("an over-wide access is refused", process.resolveIoPort(me, id, found_res, 0, 2) == null); check("a 4-byte access at the last port is refused", process.resolveIoPort(me, id, found_res, 0xFFFF, 4) == null);
check("an out-of-range offset is refused", process.resolveIoPort(me, id, found_res, 1, 1) == null); check("an out-of-range offset is refused", process.resolveIoPort(me, id, found_res, 0x10000, 1) == null);
check("an unclaimed device id is refused", process.resolveIoPort(me, 0xDEAD_BEEF, found_res, 0, 1) == null); check("an unclaimed device id is refused", process.resolveIoPort(me, 0xDEAD_BEEF, found_res, 0x64, 1) == null);
// The kernel actually issues the `in`. Reaching this line at all proves it didn't // The kernel actually issues the `in`. Reaching this line at all proves it didn't
// fault; a width-1 read must return a single byte. // fault; a width-1 read must return a single byte.
+38 -23
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@@ -28,6 +28,11 @@ fn writeLine(comptime fmt: []const u8, arguments: anytype) void {
var node_id: u64 = 0; var node_id: u64 = 0;
var io_resource_index: u64 = 0; var io_resource_index: u64 = 0;
// Pass-1 registration record (see main): what pass 2 reports.
const Registered = struct { hid: [8]u8 = .{0} ** 8, hid_len: usize = 0, device_id: u64 = 0, resource_count: u64 = 0 };
var registered: [64]Registered = undefined;
var registered_count: usize = 0;
// A scratch page returned for SystemMemory OperationRegion maps: the service // A scratch page returned for SystemMemory OperationRegion maps: the service
// cannot map arbitrary physical memory from ring 3, so such regions are // cannot map arbitrary physical memory from ring 3, so such regions are
// unsupported and degrade to harmless zeros rather than faulting. The M20.2 // unsupported and degrade to harmless zeros rather than faulting. The M20.2
@@ -123,10 +128,31 @@ pub fn main(init: runtime.process.Init) void {
.pioWrite = halPioWrite, .pioWrite = halPioWrite,
}, arena.allocator()); }, arena.allocator());
// Pass 1: register every present _HID device under acpi-tables, remembering
// each (hid, device id). Pass 2: report them all. Registering before any
// report reaches the manager means a driver it spawns on the first report
// already sees the whole set (no keyboard-before-mouse race for ps2-bus).
registered_count = 0;
walkDevices(namespace.root, &interpreter);
const manager = runtime.ipc.lookup(.device_manager); const manager = runtime.ipc.lookup(.device_manager);
var reported: u32 = 0; var i: usize = 0;
walkDevices(namespace.root, &interpreter, manager, &reported); while (i < registered_count) : (i += 1) {
writeLine("acpi: reported {d} device(s) to the manager\n", .{reported}); const entry = registered[i];
writeLine("acpi: reported {s} (device {d}, {d} resources)\n", .{ entry.hid[0..entry.hid_len], entry.device_id, entry.resource_count });
if (manager) |h| {
var report = protocol.ChildAdded{
.parent = node_id,
.bus_address = entry.device_id,
.identity = 0,
.device_id = entry.device_id,
};
@memcpy(report.hid[0..entry.hid_len], entry.hid[0..entry.hid_len]);
var reply: [protocol.message_maximum]u8 = undefined;
_ = runtime.ipc.call(h, std.mem.asBytes(&report), &reply) catch {};
}
}
writeLine("acpi: reported {d} device(s) to the manager\n", .{registered_count});
// Stay resident: the claim holds, and the service is here to grow into the // Stay resident: the claim holds, and the service is here to grow into the
// supervised discoverer (M20.3, then the M21 event side on the SCI). // supervised discoverer (M20.3, then the M21 event side on the SCI).
@@ -135,11 +161,11 @@ pub fn main(init: runtime.process.Init) void {
/// Depth-first walk: register + report each present device with a _HID, then /// Depth-first walk: register + report each present device with a _HID, then
/// descend. Scopes (\_SB, \_GPE …) are descended without producing a node. /// descend. Scopes (\_SB, \_GPE …) are descended without producing a node.
fn walkDevices(node: *aml.Node, interpreter: *aml.Interpreter, manager: ?runtime.ipc.Handle, reported: *u32) void { fn walkDevices(node: *aml.Node, interpreter: *aml.Interpreter) void {
var child = node.first_child; var child = node.first_child;
while (child) |c| : (child = c.next_sibling) { while (child) |c| : (child = c.next_sibling) {
if (c.kind != .device) { if (c.kind != .device) {
walkDevices(c, interpreter, manager, reported); walkDevices(c, interpreter);
continue; continue;
} }
if (!devicePresent(interpreter, c)) continue; // absent: skip it and its subtree if (!devicePresent(interpreter, c)) continue; // absent: skip it and its subtree
@@ -148,14 +174,15 @@ fn walkDevices(node: *aml.Node, interpreter: *aml.Interpreter, manager: ?runtime
// Skip PCI roots — pci-bus already reports PCI functions; ACPI adds // Skip PCI roots — pci-bus already reports PCI functions; ACPI adds
// only the non-PCI _HID devices (docs/m19-m20-plan.md M20.2). // only the non-PCI _HID devices (docs/m19-m20-plan.md M20.2).
if (!std.mem.eql(u8, hid[0..7], "PNP0A03") and !std.mem.eql(u8, hid[0..7], "PNP0A08")) { if (!std.mem.eql(u8, hid[0..7], "PNP0A03") and !std.mem.eql(u8, hid[0..7], "PNP0A08")) {
registerAndReport(c, hid, interpreter, manager, reported); registerDevice(c, hid, interpreter);
} }
} }
walkDevices(c, interpreter, manager, reported); walkDevices(c, interpreter);
} }
} }
fn registerAndReport(node: *aml.Node, hid: [8]u8, interpreter: *aml.Interpreter, manager: ?runtime.ipc.Handle, reported: *u32) void { fn registerDevice(node: *aml.Node, hid: [8]u8, interpreter: *aml.Interpreter) void {
if (registered_count >= registered.len) return;
var descriptor = std.mem.zeroes(device.DeviceDescriptor); var descriptor = std.mem.zeroes(device.DeviceDescriptor);
descriptor.class = @intFromEnum(device.DeviceClass.acpi_device); descriptor.class = @intFromEnum(device.DeviceClass.acpi_device);
descriptor.pci_class = device.no_pci_class; descriptor.pci_class = device.no_pci_class;
@@ -164,24 +191,12 @@ fn registerAndReport(node: *aml.Node, hid: [8]u8, interpreter: *aml.Interpreter,
@memcpy(descriptor.hid[0..@intCast(hid_len)], hid[0..@intCast(hid_len)]); @memcpy(descriptor.hid[0..@intCast(hid_len)], hid[0..@intCast(hid_len)]);
applyCrs(&descriptor, node, interpreter); applyCrs(&descriptor, node, interpreter);
const registered = device.register(node_id, &descriptor) orelse { const id = device.register(node_id, &descriptor) orelse {
writeLine("acpi: register refused for {s}\n", .{hid[0..@intCast(hid_len)]}); writeLine("acpi: register refused for {s}\n", .{hid[0..@intCast(hid_len)]});
return; return;
}; };
writeLine("acpi: reported {s} (device {d}, {d} resources)\n", .{ hid[0..@intCast(hid_len)], registered, descriptor.resource_count }); registered[registered_count] = .{ .hid = hid, .hid_len = @intCast(hid_len), .device_id = id, .resource_count = descriptor.resource_count };
reported.* += 1; registered_count += 1;
if (manager) |h| {
var report = protocol.ChildAdded{
.parent = node_id,
.bus_address = registered,
.identity = 0,
.device_id = registered,
};
@memcpy(report.hid[0..@intCast(hid_len)], hid[0..@intCast(hid_len)]);
var reply: [protocol.message_maximum]u8 = undefined;
_ = runtime.ipc.call(h, std.mem.asBytes(&report), &reply) catch {};
}
} }
/// _STA bit 0 (present); absent method or a failed evaluation is treated as /// _STA bit 0 (present); absent method or a failed evaluation is treated as
@@ -34,15 +34,11 @@ fn writeLine(comptime fmt: []const u8, arguments: anytype) void {
/// this comes from a manifest (docs/device-manager.md: the third bus type /// this comes from a manifest (docs/device-manager.md: the third bus type
/// triggers it); for now a static map. `null` = no driver for this class yet. /// triggers it); for now a static map. `null` = no driver for this class yet.
fn driverFor(d: device.DeviceDescriptor) ?[]const u8 { fn driverFor(d: device.DeviceDescriptor) ?[]const u8 {
// detect device via DeviceClass // The HPET timer node is still kernel-seeded (from the HPET table, not AML).
// PS/2 and other _HID devices now arrive as acpi-service reports and match
// in onChildAdded (M20.3), not from this boot snapshot.
if (d.class == @intFromEnum(device.DeviceClass.timer)) return "hpet"; if (d.class == @intFromEnum(device.DeviceClass.timer)) return "hpet";
// detect device via hid return null;
const hid = d.hid[0..@intCast(d.hid_len)];
const id = acpi_ids.HardwareId.fromHid(hid) orelse return null;
return switch (id) {
.ps2_keyboard, .ps2_mouse => "ps2-bus",
else => null,
};
} }
/// The PCI class/subclass/prog-IF triple of an xHCI (USB 3) host controller: /// The PCI class/subclass/prog-IF triple of an xHCI (USB 3) host controller:
@@ -61,6 +57,16 @@ fn pciDriverForIdentity(identity: u64) ?[]const u8 {
}; };
} }
/// The driver that serves a *reported* ACPI device by its `_HID` (M20.3:
/// ps2-bus now binds the PS/2 nodes the acpi service reports, not boot-snapshot
/// nodes the kernel used to build). ps2-bus is a singleton that finds both its
/// devices by hid once spawned, so keyboard and mouse map to the same name.
fn hidDriverFor(hid: []const u8) ?[]const u8 {
if (std.mem.eql(u8, hid, "PNP0303")) return "ps2-bus"; // PS/2 keyboard
if (std.mem.eql(u8, hid, "PNP0F13")) return "ps2-bus"; // PS/2 mouse
return null;
}
/// Whether some driver entry already serves registered device `device_id` — /// Whether some driver entry already serves registered device `device_id` —
/// a re-report after a bus restart must not spawn a second instance. /// a re-report after a bus restart must not spawn a second instance.
fn driverForDevice(device_id: u64) bool { fn driverForDevice(device_id: u64) bool {
@@ -415,6 +421,14 @@ fn onChildAdded(message: []const u8, reply: []u8, sender: u32) usize {
if (pciDriverForIdentity(report.identity)) |child_driver| { if (pciDriverForIdentity(report.identity)) |child_driver| {
if (!driverForDevice(report.device_id)) addDriver(child_driver, report.device_id, true); if (!driverForDevice(report.device_id)) addDriver(child_driver, report.device_id, true);
} }
// ACPI _HID match (M20.3): ps2-bus is a singleton that finds its own
// devices by hid, so spawn it once, without a device assignment.
const hid_len = std.mem.indexOfScalar(u8, &report.hid, 0) orelse report.hid.len;
if (hid_len != 0) {
if (hidDriverFor(report.hid[0..hid_len])) |hid_driver| {
if (!alreadySupervised(hid_driver)) addDriver(hid_driver, protocol.no_device, false);
}
}
} }
} else { } else {
status = -1; status = -1;
+11 -1
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@@ -281,12 +281,22 @@ CASES = [
"timeout": 60, "timeout": 60,
"expect": r"acpi-parse: ok", "expect": r"acpi-parse: ok",
"fail": r"acpi-parse: mismatch|DANOS-TEST-RESULT: FAIL"}, "fail": r"acpi-parse: mismatch|DANOS-TEST-RESULT: FAIL"},
# M20.3: the flip — ps2-bus now comes up from the acpi service's report, not
# a kernel-built node. Ordered: report -> spawn -> the driver attaches its
# keyboard, proving discovery runs entirely in ring 3 (docs/m19-m20-plan.md).
{"name": "acpi-ps2",
"smp": 4,
"timeout": 150,
"expect": r"acpi: reported PNP0303[\s\S]*"
r"device-manager: spawned ps2-bus[\s\S]*"
r"ps2-bus: keyboard driver attached",
"fail": r"DANOS-TEST-RESULT: FAIL"},
# M20.2: the acpi service evaluates _CRS/_STA in ring 3 and registers + # M20.2: the acpi service evaluates _CRS/_STA in ring 3 and registers +
# reports its _HID devices — the two PS/2 nodes must appear with resources # reports its _HID devices — the two PS/2 nodes must appear with resources
# (keyboard: io 0x60/0x64 + IRQ = 3; mouse: IRQ = 1) (docs/m19-m20-plan.md). # (keyboard: io 0x60/0x64 + IRQ = 3; mouse: IRQ = 1) (docs/m19-m20-plan.md).
{"name": "acpi-report", {"name": "acpi-report",
"smp": 4, "smp": 4,
"timeout": 60, "timeout": 150,
"qemu_extra": ["-device", "qemu-xhci,id=xhci", "qemu_extra": ["-device", "qemu-xhci,id=xhci",
"-device", "usb-kbd,bus=xhci.0", "-device", "usb-kbd,bus=xhci.0",
"-device", "usb-mouse,bus=xhci.0"], "-device", "usb-mouse,bus=xhci.0"],