reorg: normalise every protocol alias to its module name
Finish the direct-import convention: a protocol is now aliased to its module name in snake_case in every file that imports one — consumers and the runtime client wrappers alike. This kills the last of the alias variety (the generic `protocol`, plus `power` and `transfer`), so `device_manager_protocol.Hello` means the same thing everywhere and grepping a module name finds all its uses. Pure rename (identifier uses only; prose references left untouched via a guarded pattern). 14 files, 299/299 lines. zig build + test green; 16 QEMU cases pass (smoke, device-manager, driver-restart, device-list, pci-scan, usb-hid, usb-storage, display-service, display-native, display-reattach, input, acpi-ps2, vfs, fat-mount, power-button, orderly-shutdown).
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+22
-22
@@ -19,16 +19,16 @@ const std = @import("std");
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const runtime = @import("runtime");
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const ipc = runtime.ipc;
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const system = runtime.system;
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const protocol = @import("usb-transfer-protocol");
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const usb_transfer_protocol = @import("usb-transfer-protocol");
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/// The USB chapter-9 wire ABI and the class taxonomy, re-exported so a class driver reaches
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/// the whole USB domain through its one `usb` import (`usb.abi.getDescriptor`, `usb.ids.Class`).
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pub const abi = @import("usb-abi");
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pub const ids = @import("usb-ids");
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pub const Endpoint = protocol.Endpoint;
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pub const InterruptReport = protocol.InterruptReport;
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pub const max_report_data = protocol.max_report_data;
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pub const Endpoint = usb_transfer_protocol.Endpoint;
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pub const InterruptReport = usb_transfer_protocol.InterruptReport;
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pub const max_report_data = usb_transfer_protocol.max_report_data;
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// Endpoint transfer types (EndpointDescriptor attributes), for `findEndpoint`.
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pub const transfer_type_bulk: u8 = 2;
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@@ -46,7 +46,7 @@ pub const Device = struct {
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protocol_code: u8,
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interface_number: u8,
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endpoint_count: usize = 0,
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endpoints: [protocol.max_reported_endpoints]Endpoint = undefined,
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endpoints: [usb_transfer_protocol.max_reported_endpoints]Endpoint = undefined,
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/// The interface's first endpoint of the given transfer type and direction
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/// (`transfer_type_bulk` / `transfer_type_interrupt`), or null.
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@@ -58,17 +58,17 @@ pub const Device = struct {
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}
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fn controlTransfer(self: *Device, setup: [8]u8, direction_in: bool, data: []u8) ?usize {
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var request = protocol.ControlRequest{
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var request = usb_transfer_protocol.ControlRequest{
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.device_token = self.token,
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.setup = setup,
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.direction_in = @intFromBool(direction_in),
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.data_length = @intCast(data.len),
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};
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if (!direction_in and data.len > 0) @memcpy(request.data[0..data.len], data);
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var reply: [@sizeOf(protocol.ControlReply)]u8 = undefined;
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var reply: [@sizeOf(usb_transfer_protocol.ControlReply)]u8 = undefined;
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const length = ipc.call(self.bus, std.mem.asBytes(&request), &reply) catch return null;
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if (length < @sizeOf(protocol.ControlReply)) return null;
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const control_reply = std.mem.bytesToValue(protocol.ControlReply, reply[0..@sizeOf(protocol.ControlReply)]);
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if (length < @sizeOf(usb_transfer_protocol.ControlReply)) return null;
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const control_reply = std.mem.bytesToValue(usb_transfer_protocol.ControlReply, reply[0..@sizeOf(usb_transfer_protocol.ControlReply)]);
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if (control_reply.status != 0) return null;
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const actual = @min(control_reply.actual_length, data.len);
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if (direction_in and actual > 0) @memcpy(data[0..actual], control_reply.data[0..actual]);
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@@ -89,30 +89,30 @@ pub const Device = struct {
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/// Begin periodic IN polling of an interrupt endpoint; reports flow back to
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/// `self.endpoint` as asynchronous `InterruptReport` messages.
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pub fn subscribeInterrupt(self: *Device, endpoint_address: u8, max_length: u16) bool {
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var request = protocol.InterruptSubscribeRequest{
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var request = usb_transfer_protocol.InterruptSubscribeRequest{
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.device_token = self.token,
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.endpoint_address = endpoint_address,
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.max_length = max_length,
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};
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var reply: [@sizeOf(protocol.InterruptSubscribeReply)]u8 = undefined;
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var reply: [@sizeOf(usb_transfer_protocol.InterruptSubscribeReply)]u8 = undefined;
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const length = ipc.call(self.bus, std.mem.asBytes(&request), &reply) catch return false;
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if (length < @sizeOf(protocol.InterruptSubscribeReply)) return false;
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return std.mem.bytesToValue(protocol.InterruptSubscribeReply, reply[0..@sizeOf(protocol.InterruptSubscribeReply)]).status == 0;
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if (length < @sizeOf(usb_transfer_protocol.InterruptSubscribeReply)) return false;
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return std.mem.bytesToValue(usb_transfer_protocol.InterruptSubscribeReply, reply[0..@sizeOf(usb_transfer_protocol.InterruptSubscribeReply)]).status == 0;
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}
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/// One bulk transfer (IN or OUT per `endpoint_address`'s direction bit) to or
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/// from the caller's own DMA buffer at `physical`. Returns the bytes moved.
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pub fn bulk(self: *Device, endpoint_address: u8, physical: u64, length: u32) ?u32 {
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var request = protocol.BulkRequest{
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var request = usb_transfer_protocol.BulkRequest{
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.device_token = self.token,
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.physical_address = physical,
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.length = length,
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.endpoint_address = endpoint_address,
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};
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var reply: [@sizeOf(protocol.BulkReply)]u8 = undefined;
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var reply: [@sizeOf(usb_transfer_protocol.BulkReply)]u8 = undefined;
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const replied = ipc.call(self.bus, std.mem.asBytes(&request), &reply) catch return null;
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if (replied < @sizeOf(protocol.BulkReply)) return null;
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const bulk_reply = std.mem.bytesToValue(protocol.BulkReply, reply[0..@sizeOf(protocol.BulkReply)]);
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if (replied < @sizeOf(usb_transfer_protocol.BulkReply)) return null;
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const bulk_reply = std.mem.bytesToValue(usb_transfer_protocol.BulkReply, reply[0..@sizeOf(usb_transfer_protocol.BulkReply)]);
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if (bulk_reply.status != 0) return null;
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return bulk_reply.actual_length;
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}
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@@ -129,11 +129,11 @@ pub fn open(device_id: u64) ?Device {
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} else return null;
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const endpoint = ipc.createIpcEndpoint() orelse return null;
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var request = protocol.OpenRequest{ .device_id = device_id };
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var reply: [@sizeOf(protocol.OpenReply)]u8 = undefined;
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var request = usb_transfer_protocol.OpenRequest{ .device_id = device_id };
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var reply: [@sizeOf(usb_transfer_protocol.OpenReply)]u8 = undefined;
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const result = ipc.callCap(bus, std.mem.asBytes(&request), &reply, endpoint) catch return null;
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if (result.len < @sizeOf(protocol.OpenReply)) return null;
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const open_reply = std.mem.bytesToValue(protocol.OpenReply, reply[0..@sizeOf(protocol.OpenReply)]);
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if (result.len < @sizeOf(usb_transfer_protocol.OpenReply)) return null;
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const open_reply = std.mem.bytesToValue(usb_transfer_protocol.OpenReply, reply[0..@sizeOf(usb_transfer_protocol.OpenReply)]);
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if (open_reply.status != 0) return null;
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var device = Device{
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@@ -144,7 +144,7 @@ pub fn open(device_id: u64) ?Device {
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.subclass = open_reply.interface_subclass,
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.protocol_code = open_reply.interface_protocol,
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.interface_number = open_reply.interface_number,
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.endpoint_count = @min(open_reply.endpoint_count, protocol.max_reported_endpoints),
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.endpoint_count = @min(open_reply.endpoint_count, usb_transfer_protocol.max_reported_endpoints),
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};
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for (0..device.endpoint_count) |index| device.endpoints[index] = open_reply.endpoints[index];
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return device;
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