device-manager: data-driven driver matching via /etc/devices.csv
Replace the three hardcoded switch tables (pciDriverForIdentity, hidDriverFor, usbDriverForIdentity) with an authoritative, human-readable device registry the manager reads at boot. Matching is most-specific-wins across base/subclass/prog_if/vendor/device/subsystem/hid, so a precise vendor:device rule and a generic class rule coexist; an unmatched device is logged, never guessed. This resolves docs' "matching stays code until the third bus". - ABI: child_added and DeviceDescriptor gain vendor/device/subsystem; child_added gains a bus discriminator (BusKind) so PCI and USB class triples match against the right namespace. - pci-bus reads vendor/device (config 0x00) and subsystem (0x2C, type-0) and reports them. - library/device/registry: freestanding CSV parser + matchDriver() with specificity scoring; 5 unit tests wired into `zig build test`. - etc/devices.csv bundled into the initrd; the kernel serves /etc directly, so the manager reads it before any filesystem service is up (fat starts later). - virtio-gpu: drop the now-redundant post-spawn 1AF4:1050 re-confirm, since the registry binds this driver by exact identity. - Remove the orphaned system/drivers/display driver (unreferenced by build or registry). - docs: new devices-csv.md; device-manager.md "matching stays code" resolved. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01KJqSiLLchDUUCoXn5jsiwd
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@@ -23,86 +23,66 @@ const service = @import("service");
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const time = @import("time");
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const memory = @import("memory");
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const logging = @import("logging");
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const acpi_ids = @import("acpi-ids");
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const pci_class = @import("pci-class");
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const usb_ids = @import("usb-ids");
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const device_manager_protocol = @import("device-manager-protocol");
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const registry = @import("device-registry");
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const fs = @import("file-system");
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/// The PCI class/subclass/prog-IF triple of an xHCI (USB 3) host controller —
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/// Serial Bus Controller / USB Controller / XHCI — named from pci-class.zig rather
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/// than written as the bare 0x0C0330 (docs/coding-standards.md, "Named values").
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const xhci_pci_class: u64 = pci_class.ClassCode.pack(.{
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.base = @intFromEnum(pci_class.BaseClass.serial_bus),
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.subclass = @intFromEnum(pci_class.serial_bus.SubClass.usb),
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.prog_if = @intFromEnum(pci_class.serial_bus.usb.ProgIf.xhci),
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});
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// --- the device registry ------------------------------------------------------
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// Driver matching is data-driven and authoritative: /etc/devices.csv (parsed by
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// the device-registry module) names, per bus, which driver binds a reported
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// device, the most-specific match winning. There is no compiled-in fallback — a
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// device no row matches goes unbound and is logged. This retired the hand-kept
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// pciDriverForIdentity / hidDriverFor / usbDriverForIdentity switch tables
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// (docs/device-manager.md: "matching stays code until the third bus").
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/// The PCI class triple of a virtio-gpu — Display Controller / Other (0x80) / 0. The class
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/// alone cannot tell it from any other display/other function, so the driver re-confirms
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/// vendor 0x1AF4 / device 0x1050 from config space once spawned; this only gets it spawned.
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const virtio_gpu_pci_class: u64 = pci_class.ClassCode.pack(.{
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.base = @intFromEnum(pci_class.BaseClass.display),
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.subclass = 0x80, // "Other" — no named SubClass member (PCI convention)
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.prog_if = 0,
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});
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/// The CSV bytes, held for the life of the process because the parsed rules'
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/// string fields (hid, driver) slice into this buffer.
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var registry_source: [8192]u8 = undefined;
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var registry_rules: [64]registry.Rule = undefined;
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var registry_count: usize = 0;
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const vga_compatible_gpu_pci_class: u64 = pci_class.ClassCode.pack(.{
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.base = @intFromEnum(pci_class.BaseClass.display),
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.subclass = @intFromEnum(pci_class.display.SubClass.vga_compatible),
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.prog_if = 0,
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});
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/// The driver that serves a *reported* PCI function (M19.3: matching moved
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/// from the boot snapshot to the bus reports), or null. A machine can carry
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/// several identical controllers — one driver instance per reported device,
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/// its registered id as argv[1].
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fn pciDriverForIdentity(identity: u64) ?[]const u8 {
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return switch (identity) {
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xhci_pci_class => "/system/drivers/usb-xhci-bus",
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vga_compatible_gpu_pci_class => "/system/drivers/display",
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virtio_gpu_pci_class => "/system/drivers/virtio-gpu",
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else => null,
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/// Read and parse /etc/devices.csv once at boot. The file lives in the initial
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/// ramdisk, which the kernel serves directly — no filesystem service need be up
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/// (fat is spawned after the manager), so this is a plain fs.open + read.
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fn loadRegistry() void {
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var file = fs.open("/etc/devices.csv", .{}) orelse {
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_ = logging.write("/system/services/device-manager: /etc/devices.csv missing — nothing will match\n");
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return;
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};
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defer file.close();
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var used: usize = 0;
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while (used < registry_source.len) {
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const n = file.read(registry_source[used..]) orelse break;
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if (n == 0) break;
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used += n;
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}
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const result = registry.parse(registry_source[0..used], ®istry_rules);
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registry_count = result.count;
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if (result.malformed != 0) std.log.info("/etc/devices.csv: {d} malformed line(s) skipped", .{result.malformed});
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if (result.truncated) _ = logging.write("/system/services/device-manager: /etc/devices.csv has more rules than the table holds\n");
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std.log.info("/etc/devices.csv: {d} rule(s) loaded", .{registry_count});
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}
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/// The driver that serves a *reported* ACPI device by its `_HID` (M20.3:
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/// ps2-bus now binds the PS/2 nodes the acpi service reports, not boot-snapshot
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/// nodes the kernel used to build). ps2-bus is a singleton that finds both its
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/// devices by hid once spawned, so keyboard and mouse map to the same name.
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fn hidDriverFor(hid: []const u8) ?[]const u8 {
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if (std.mem.eql(u8, hid, "PNP0303")) return "/system/drivers/ps2-bus"; // PS/2 keyboard
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if (std.mem.eql(u8, hid, "PNP0F13")) return "/system/drivers/ps2-bus"; // PS/2 mouse
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return null;
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}
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/// The driver that serves a *reported* USB interface by its (class, subclass,
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/// protocol) triple — the third bus after PCI and ACPI (docs/device-manager.md:
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/// matching stays code until the third bus). The xHCI bus driver reports each
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/// interface with this packed triple as its identity; the matched class driver is
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/// spawned with the interface's registered id as argv[1], which it presents to the
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/// bus driver to open the device.
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fn usbDriverForIdentity(identity: u64) ?[]const u8 {
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const keyboard = comptime usb_ids.packTriple(
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@intFromEnum(usb_ids.Class.hid),
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@intFromEnum(usb_ids.hid.SubClass.boot),
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@intFromEnum(usb_ids.hid.Protocol.keyboard),
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);
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const mouse = comptime usb_ids.packTriple(
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@intFromEnum(usb_ids.Class.hid),
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@intFromEnum(usb_ids.hid.SubClass.boot),
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@intFromEnum(usb_ids.hid.Protocol.mouse),
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);
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const storage = comptime usb_ids.packTriple(
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@intFromEnum(usb_ids.Class.mass_storage),
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@intFromEnum(usb_ids.mass_storage.SubClass.scsi),
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@intFromEnum(usb_ids.mass_storage.Protocol.bulk_only),
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);
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return switch (identity) {
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keyboard => "/system/drivers/usb-hid-keyboard",
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mouse => "/system/drivers/usb-hid-mouse",
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storage => "/system/drivers/usb-storage",
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else => null,
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/// Build a registry Identity from a bus driver's report: the bus it named, the
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/// class triple unpacked from `identity` (0xCCSSPP — the same packing for a PCI
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/// class code and a USB class triple), the widened numeric ids, and the ACPI hid.
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fn identityFromReport(report: device_manager_protocol.ChildAdded) registry.Identity {
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const bus: registry.Bus = switch (report.bus) {
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@intFromEnum(device_manager_protocol.BusKind.pci) => .pci,
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@intFromEnum(device_manager_protocol.BusKind.usb) => .usb,
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@intFromEnum(device_manager_protocol.BusKind.acpi) => .acpi,
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else => .unknown,
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};
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const hid_len = std.mem.indexOfScalar(u8, &report.hid, 0) orelse report.hid.len;
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return .{
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.bus = bus,
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.base = @truncate(report.identity >> 16),
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.subclass = @truncate(report.identity >> 8),
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.prog_if = @truncate(report.identity),
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.vendor = report.vendor,
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.device = report.device,
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.subsystem = report.subsystem,
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.hid = report.hid[0..hid_len],
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};
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}
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@@ -365,6 +345,10 @@ fn sweepDeadlines() void {
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fn initialise(endpoint: ipc.Handle) bool {
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manager_endpoint = endpoint;
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// Load the authoritative driver-match registry before any bus driver can
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// report a device to match against it.
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loadRegistry();
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// Enumerate into a heap buffer (too big for the one-page user stack).
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const buffer = memory.allocator().alloc(device.DeviceDescriptor, 64) catch {
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_ = logging.write("/system/services/device-manager: out of memory\n");
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@@ -459,24 +443,22 @@ fn onChildAdded(message: []const u8, reply: []u8, sender: u32) usize {
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if (!addChild(report.parent, report.bus_address, report.identity, report.device_id, sender)) status = -1;
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std.log.info("child added (device {d} port {d}, identity {d}) by {s}", .{ report.parent, report.bus_address, report.identity, driver.name() });
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if (status == 0) publishEvent(message[0..device_manager_protocol.child_added_size]);
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// Matching from reports (M19.3): a registered child whose identity
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// names a driver gets one, once — re-reports after a bus restart
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// dedupe on the registered id, exactly like the registrations do.
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// Matching from reports (M19.3), now data-driven via the /etc/devices.csv
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// registry: a registered child gets the most-specific driver its identity
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// matches, once — re-reports after a bus restart dedupe on the registered
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// id, exactly like the registrations do.
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if (status == 0 and report.device_id != device_manager_protocol.no_device) {
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if (pciDriverForIdentity(report.identity)) |child_driver| {
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if (!driverForDevice(report.device_id)) addDriver(child_driver, report.device_id, true);
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}
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// USB interface match: the reported identity is the packed class triple,
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// and the class driver is spawned with the interface's registered id.
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if (usbDriverForIdentity(report.identity)) |usb_driver| {
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if (!driverForDevice(report.device_id)) addDriver(usb_driver, report.device_id, true);
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}
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// ACPI _HID match (M20.3): ps2-bus is a singleton that finds its own
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// devices by hid, so spawn it once, without a device assignment.
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const hid_len = std.mem.indexOfScalar(u8, &report.hid, 0) orelse report.hid.len;
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if (hid_len != 0) {
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if (hidDriverFor(report.hid[0..hid_len])) |hid_driver| {
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if (!alreadySupervised(hid_driver)) addDriver(hid_driver, device_manager_protocol.no_device, false);
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const id = identityFromReport(report);
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if (registry.matchDriver(registry_rules[0..registry_count], id)) |match| {
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if (match.ambiguous)
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std.log.info("/etc/devices.csv: multiple equally-specific rules match the device {s} reported; binding {s}", .{ driver.name(), match.driver });
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if (id.bus == .acpi) {
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// An hid-matched driver (ps2-bus) is a singleton that finds its
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// own devices once spawned — spawn it once, no device assignment.
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if (!alreadySupervised(match.driver)) addDriver(match.driver, device_manager_protocol.no_device, false);
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} else {
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// A per-device driver: one instance, the registered id as argv[1].
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if (!driverForDevice(report.device_id)) addDriver(match.driver, report.device_id, true);
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}
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}
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}
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