145 lines
5 KiB
Zig
145 lines
5 KiB
Zig
/// Tests inbound proxy table, from-substitution, outbound ID table, and
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/// inbound send-by-ID routing in a single three-step round-trip:
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///
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/// 1. Parent sends send_named to "echo_id" (from_id=0, trigger mode).
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/// 2. Child echo_id sends send_named back (from_id=3) → proxy created,
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/// delivered FROM proxy to TestActor (from-substitution).
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/// 3. TestActor replies to proxy via from.send() → outbound ID assigned,
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/// wire send reaches child with from_id=wire_id_TA, to_id=3.
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/// 4. Child echo_id replies via wire send to wire_id_TA → parent routes
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/// via local_actors to TestActor (inbound send-by-ID).
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/// 5. TestActor receives ["done"] → exits "success".
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const std = @import("std");
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const thespian = @import("thespian");
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const cbor = @import("cbor");
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const endpoint = @import("endpoint");
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const build_options = @import("build_options");
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var trace_file: ?std.fs.File = null;
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var trace_buf: [4096]u8 = undefined;
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var trace_file_writer: std.fs.File.Writer = undefined;
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fn trace_handler(buf: thespian.message.c_buffer_type) callconv(.c) void {
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if (trace_file == null) return;
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cbor.toJsonWriter(buf.base[0..buf.len], &trace_file_writer.interface, .{}) catch return;
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trace_file_writer.interface.writeByte('\n') catch return;
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}
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const Allocator = std.mem.Allocator;
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const result = thespian.result;
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const unexpected = thespian.unexpected;
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const pid_ref = thespian.pid_ref;
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const Receiver = thespian.Receiver;
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const message = thespian.message;
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const TestActor = struct {
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allocator: Allocator,
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ep: thespian.pid,
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receiver: Receiver(*@This()),
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state: enum { waiting_for_hello, waiting_for_done },
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const Args = struct { allocator: Allocator };
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fn start(args: Args) result {
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return init(args) catch |e| return thespian.exit_error(e, @errorReturnTrace());
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}
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fn init(args: Args) !void {
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thespian.env.get().proc_set("test_receiver", thespian.self_pid().ref());
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const argv = try args.allocator.dupe(u8, message.fmt(.{build_options.remote_child_endpoint_path}).buf);
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const ep = try thespian.spawn_link(
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args.allocator,
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endpoint.Args{
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.allocator = args.allocator,
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.argv = argv,
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},
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endpoint.start,
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"endpoint",
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);
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// Trigger child echo_id in trigger mode (from_id=0).
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try ep.send(.{ "send", @as(u64, 0), "echo_id", .{"hello"} });
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const self = try args.allocator.create(@This());
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self.* = .{
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.allocator = args.allocator,
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.ep = ep,
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.receiver = .init(receive_fn, deinit, self),
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.state = .waiting_for_hello,
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};
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errdefer self.deinit();
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thespian.receive(&self.receiver);
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}
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fn deinit(self: *@This()) void {
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self.ep.deinit();
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self.allocator.destroy(self);
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}
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fn receive_fn(self: *@This(), from: pid_ref, m: message) result {
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return self.receive(from, m) catch |e| return thespian.exit_error(e, @errorReturnTrace());
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}
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fn receive(self: *@This(), from: pid_ref, m: message) !void {
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switch (self.state) {
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.waiting_for_hello => {
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if (try m.match(.{"hello"})) {
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// Reply through the proxy — this populates the outbound ID table
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// and sends a wire send to the child with our assigned wire ID.
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try from.send(.{"hello"});
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self.state = .waiting_for_done;
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} else return unexpected(m);
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},
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.waiting_for_done => {
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if (try m.match(.{"done"})) {
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// Arrived via inbound send-by-ID routing through local_actors.
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return thespian.exit("success");
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} else return unexpected(m);
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},
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}
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}
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};
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test "remote: inbound proxy table, from-substitution, outbound ID table, and send-by-ID routing" {
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const allocator = std.testing.allocator;
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var initial_env: ?thespian.env = null;
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if (std.posix.getenv("TRACE") != null) {
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const f = try std.fs.cwd().createFile("remote_endpoint_id_trace.json", .{});
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trace_file = f;
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trace_file_writer = f.writer(&trace_buf);
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var e = thespian.env.init();
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e.on_trace(&trace_handler);
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e.enable_all_channels();
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initial_env = e;
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}
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defer if (initial_env) |e| {
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trace_file_writer.interface.flush() catch {};
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trace_file.?.close();
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trace_file = null;
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e.deinit();
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};
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var ctx = try thespian.context.init(allocator);
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defer ctx.deinit();
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var success = false;
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var exit_handler = thespian.make_exit_handler(&success, struct {
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fn handle(ok: *bool, status: []const u8) void {
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ok.* = std.mem.eql(u8, status, "success");
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}
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}.handle);
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_ = try ctx.spawn_link(
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TestActor.Args{ .allocator = allocator },
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TestActor.start,
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"test_actor",
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&exit_handler,
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if (initial_env) |*e| e else null,
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);
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ctx.run();
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if (!success) return error.TestFailed;
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}
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