89 lines
3.9 KiB
Zig
89 lines
3.9 KiB
Zig
//! device-list — the `ps` analog for the device tree (docs/device-manager.md
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//! M18.3): asks the device manager for the tree over IPC, prints it, then
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//! subscribes and prints every published add/remove event. The manager is the
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//! one answer to "what devices exist" for user space; nothing here touches a
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//! device_* system call.
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const std = @import("std");
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const runtime = @import("runtime");
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const protocol = runtime.device_manager_protocol;
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fn writeLine(comptime fmt: []const u8, arguments: anytype) void {
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var line: [96]u8 = undefined;
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_ = runtime.system.write(std.fmt.bufPrint(&line, fmt, arguments) catch return);
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}
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pub fn main() void {
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var manager: ?runtime.ipc.Handle = null;
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var tries: u32 = 0;
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while (manager == null and tries < 200) : (tries += 1) {
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manager = runtime.ipc.lookup(.device_manager);
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if (manager == null) runtime.system.sleep(20);
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}
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const h = manager orelse {
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_ = runtime.system.write("device-list: no device manager\n");
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return;
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};
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// The snapshot — polled briefly, because at boot the bus drivers may still
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// be scanning: an empty first answer usually just means "too early".
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var reply: [protocol.message_maximum]u8 = undefined;
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var count: u32 = 0;
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var length: usize = 0;
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tries = 0;
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while (tries < 20) : (tries += 1) {
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const request = protocol.Enumerate{};
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length = runtime.ipc.call(h, std.mem.asBytes(&request), &reply) catch 0;
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if (length >= @sizeOf(protocol.EnumerateReply)) {
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count = std.mem.bytesToValue(protocol.EnumerateReply, reply[0..@sizeOf(protocol.EnumerateReply)]).count;
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if (count != 0) break;
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}
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runtime.system.sleep(100);
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}
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writeLine("device-list: {d} devices\n", .{count});
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var offset: usize = @sizeOf(protocol.EnumerateReply);
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var index: u32 = 0;
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while (index < count and offset + @sizeOf(protocol.ChildEntry) <= length) : (index += 1) {
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const entry = std.mem.bytesToValue(protocol.ChildEntry, reply[offset..][0..@sizeOf(protocol.ChildEntry)]);
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writeLine("device-list: device {d} port {d} identity {d}\n", .{ entry.parent, entry.bus_address, entry.identity });
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offset += @sizeOf(protocol.ChildEntry);
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}
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// The subscription: our endpoint rides as the call's capability; events
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// arrive as buffered messages carrying the same structs the bus sends.
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const endpoint = runtime.ipc.createIpcEndpoint() orelse {
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_ = runtime.system.write("device-list: no endpoint\n");
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return;
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};
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const subscribe = protocol.Subscribe{};
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_ = runtime.ipc.callCap(h, std.mem.asBytes(&subscribe), &reply, endpoint) catch {
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_ = runtime.system.write("device-list: subscribe failed\n");
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return;
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};
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_ = runtime.system.write("device-list: subscribed\n");
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var receive: [protocol.message_maximum]u8 = undefined;
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while (true) {
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const got = runtime.ipc.replyWait(endpoint, &.{}, &receive, null);
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if (!got.isMessage() or got.len < 1) continue;
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switch (receive[0]) {
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@intFromEnum(protocol.Operation.child_added) => {
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if (got.len < protocol.child_added_size) continue;
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const event = std.mem.bytesToValue(protocol.ChildAdded, receive[0..protocol.child_added_size]);
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writeLine("device-list: added (device {d} port {d})\n", .{ event.parent, event.bus_address });
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},
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@intFromEnum(protocol.Operation.child_removed) => {
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if (got.len < protocol.child_removed_size) continue;
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const event = std.mem.bytesToValue(protocol.ChildRemoved, receive[0..protocol.child_removed_size]);
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writeLine("device-list: removed (device {d} port {d})\n", .{ event.parent, event.bus_address });
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},
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else => {},
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}
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}
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}
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pub const panic = runtime.panic;
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comptime {
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_ = &runtime.start._start; // pull the runtime entry shim into the image
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}
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