PerUserTuningDialog previously broadcast one gain/mute/NR set to *all* of a user's streams, even though the core mixer (AudioEngine::RemoteStream) and the C ABI (vc_set_remote_stream) were already per-stream. The UI had no per-mix controls anywhere. Reworks the dialog to enumerate ListUserStreams on open and render one row per stream (kind + label + Gain + Mute + NR), each wiring only to its own stream_id. Adds a read-back ABI counterpart, vc_get_remote_stream, so the dialog opens at the listener's actual current per-stream settings (defaults 1.0/unmuted/NR-off) rather than always 100%. Additive ABI change only; no existing symbols touched. Tests: test_m3_multistream extended with getter round-trip assertions; new C# smoke test exercises the full P/Invoke marshaling path with two clients. Docs: voice.md §10 notes the getter. NR checkbox keeps its honest 'passthrough' label (NS DSP still unbuilt per §8).
396 lines
19 KiB
C#
396 lines
19 KiB
C#
using System.Diagnostics;
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using System.Text.RegularExpressions;
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using VoiceCat.Interop;
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namespace VoiceCat.Interop.Tests;
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/// <summary>
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/// Exercises the full connect -> TOFU event -> confirm -> guest auth -> list channels flow
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/// purely through the P/Invoke layer (NativeMethods/VoiceCatClient), against a real
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/// `voicecat-server.exe` (the same binary the C++ ctest suite uses) — this is the same flow
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/// tests/test_tofu_flow.cpp already proves at the C++ level, now proven reachable through
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/// P/Invoke specifically: marshaling bugs, callback-lifetime bugs, and calling-convention
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/// mistakes are all P/Invoke-specific failure modes ctest alone cannot catch.
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/// </summary>
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public sealed class VoiceCatClientSmokeTests : IDisposable
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{
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private readonly string _tempDir;
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private readonly Process _server;
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private readonly ushort _port;
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public VoiceCatClientSmokeTests()
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{
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_tempDir = Path.Combine(Path.GetTempPath(), "vc_csharp_smoke_" + Guid.NewGuid().ToString("N"));
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Directory.CreateDirectory(_tempDir);
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string serverExe = Path.Combine(FindRepoRoot(), "build", "m1-dev", "bin", "voicecat-server.exe");
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Assert.True(File.Exists(serverExe),
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$"voicecat-server.exe not found at '{serverExe}' — build the m1-dev preset first " +
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"(cmake --preset m1-dev && cmake --build --preset m1-dev).");
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var psi = new ProcessStartInfo(serverExe)
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{
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Arguments = $"--port 0 --data-dir \"{_tempDir}\" --name CSharpSmokeTest",
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RedirectStandardOutput = true,
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RedirectStandardError = true,
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UseShellExecute = false,
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};
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_server = Process.Start(psi) ?? throw new InvalidOperationException("failed to start voicecat-server.exe");
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// "[voicecat-server] <name> — TCP :<port> UDP :<port>" — see server/src/server.cpp.
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// ReadLineAsync()+timeout (not a bare blocking ReadLine() in a deadline loop) so a
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// server that never prints anything (crash, hang) can't hang this constructor forever
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// — the deadline check must apply to the read itself, not just the loop around it.
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ushort? port = null;
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var deadline = DateTime.UtcNow.AddSeconds(10);
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while (port is null && DateTime.UtcNow < deadline)
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{
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var readTask = _server.StandardOutput.ReadLineAsync();
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var remaining = deadline - DateTime.UtcNow;
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if (remaining <= TimeSpan.Zero || !readTask.Wait(remaining)) break;
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string? line = readTask.Result;
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if (line is null) break;
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var m = Regex.Match(line, @"TCP :(\d+)");
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if (m.Success) port = ushort.Parse(m.Groups[1].Value);
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}
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Assert.True(port is not null, "voicecat-server.exe did not report a bound TCP port within 10s.");
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_port = port!.Value;
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// M5: provision a known admin account so we can exercise moderation wrappers end-to-end.
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string adminExe = Path.Combine(FindRepoRoot(), "build", "m1-dev", "bin", "voicecat-admin.exe");
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Assert.True(File.Exists(adminExe), "voicecat-admin.exe not found — build the m1-dev preset.");
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var adminPsi = new ProcessStartInfo(adminExe)
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{
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Arguments = $"--data-dir \"{_tempDir}\" account add admin2 --admin --password testpassword123",
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RedirectStandardOutput = true,
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RedirectStandardError = true,
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UseShellExecute = false,
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};
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using (var adminProc = Process.Start(adminPsi) ?? throw new InvalidOperationException("failed to start voicecat-admin.exe"))
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{
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Assert.True(adminProc.WaitForExit(10000), "voicecat-admin.exe did not exit within 10s.");
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Assert.Equal(0, adminProc.ExitCode);
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}
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}
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public void Dispose()
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{
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try { if (!_server.HasExited) _server.Kill(entireProcessTree: true); } catch { /* best effort */ }
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try { Directory.Delete(_tempDir, recursive: true); } catch { /* best effort */ }
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}
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private static string FindRepoRoot()
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{
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var dir = new DirectoryInfo(AppContext.BaseDirectory);
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while (dir is not null && !File.Exists(Path.Combine(dir.FullName, "CMakePresets.json")))
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dir = dir.Parent;
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return dir?.FullName ?? throw new InvalidOperationException("Could not find repo root (CMakePresets.json) above " + AppContext.BaseDirectory);
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}
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private static bool PumpUntil(VoiceCatClient client, Func<bool> predicate, int timeoutMs)
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{
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var deadline = DateTime.UtcNow.AddMilliseconds(timeoutMs);
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while (DateTime.UtcNow < deadline)
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{
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client.PumpEvents();
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if (predicate()) return true;
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Thread.Sleep(20);
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}
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client.PumpEvents();
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return predicate();
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}
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[Fact]
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public void VersionString_IsNonEmpty()
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{
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Assert.False(string.IsNullOrEmpty(VoiceCatClient.VersionString));
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}
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[Fact]
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public void Connect_Tofu_Auth_ListChannels_RoundTrips()
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{
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var events = new List<VoiceCatEvent>();
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using var client = new VoiceCatClient("vc-csharp-smoke", "0.1", VcLogLevel.Off,
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tofuStorePath: Path.Combine(_tempDir, "tofu_pins.txt"));
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client.EventReceived += events.Add;
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Assert.Equal(VcResult.Ok, client.Connect("127.0.0.1", _port));
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Assert.Equal(VcResult.Ok, client.AuthenticateGuest("CSharpSmoke"));
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Assert.True(PumpUntil(client, () => events.Any(e => e.Type == VcEventType.ServerIdentity), 5000),
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"did not receive VC_EVENT_SERVER_IDENTITY");
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var identityEvent = events.First(e => e.Type == VcEventType.ServerIdentity);
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Assert.Equal((uint)VcTofuStatus.FirstConnect, identityEvent.U32a);
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Assert.NotNull(identityEvent.Text);
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Assert.Equal(64, identityEvent.Text!.Length); // SHA-256 hex, no separators
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// Auth must NOT complete before the identity is confirmed.
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Assert.False(PumpUntil(client, () => events.Any(e => e.Type == VcEventType.AuthResult), 800));
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Assert.Equal(VcResult.Ok, client.ConfirmServerIdentity(accept: true));
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Assert.True(PumpUntil(client, () => events.Any(e => e.Type == VcEventType.AuthResult), 5000),
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"did not receive VC_EVENT_AUTH_RESULT after confirming identity");
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var authEvent = events.First(e => e.Type == VcEventType.AuthResult);
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Assert.Equal(VcResult.Ok, authEvent.Result);
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Assert.True(PumpUntil(client, () => events.Any(e => e.Type == VcEventType.ChannelList), 3000),
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"did not receive VC_EVENT_CHANNEL_LIST");
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var channels = client.ListChannels();
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Assert.Contains(channels, c => c.Id == 1 && c.Name == "Lobby");
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// M5: permissions getter round-trip.
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var perms = client.GetPermissions();
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Assert.False(perms.IsAdmin);
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Assert.False(perms.CanKick);
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// M5: moderation request wrappers queue without error. As a guest, account listing
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// is rejected by the server with a GenericResult, which proves the wrapper path works
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// end-to-end and that the new event type is delivered through P/Invoke.
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Assert.Equal(VcResult.Ok, client.RequestAccountList());
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Assert.True(PumpUntil(client,
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() => events.Any(e => e.Type == VcEventType.GenericResult), 3000),
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"did not receive VC_EVENT_GENERIC_RESULT for guest ListAccounts");
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var generic = events.First(e => e.Type == VcEventType.GenericResult);
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Assert.Equal(VcResult.PermissionDenied, generic.Result);
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client.Disconnect();
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}
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[Fact]
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public void Admin_ChannelCrud_AccountCrud_RoundTrips()
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{
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var events = new List<VoiceCatEvent>();
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using var client = new VoiceCatClient("vc-csharp-admin", "0.1", VcLogLevel.Off,
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tofuStorePath: Path.Combine(_tempDir, "tofu_pins_admin.txt"));
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client.EventReceived += events.Add;
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Assert.Equal(VcResult.Ok, client.Connect("127.0.0.1", _port));
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Assert.Equal(VcResult.Ok, client.AuthenticateUser("admin2", "testpassword123"));
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Assert.True(PumpUntil(client, () => events.Any(e => e.Type == VcEventType.ServerIdentity), 5000));
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Assert.Equal(VcResult.Ok, client.ConfirmServerIdentity(accept: true));
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Assert.True(PumpUntil(client, () => events.Any(e => e.Type == VcEventType.AuthResult), 5000));
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Assert.Equal(VcResult.Ok, events.First(e => e.Type == VcEventType.AuthResult).Result);
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Assert.True(PumpUntil(client, () => events.Any(e => e.Type == VcEventType.ChannelList), 3000));
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var perms = client.GetPermissions();
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Assert.True(perms.IsAdmin || perms.CanAdminAccounts);
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// Channel CRUD
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Assert.Equal(VcResult.Ok, client.CreateChannel(new ChannelEditInfo(
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Id: 0,
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ParentId: 0,
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Name: "CSharp Test Channel",
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Topic: "Created by C# smoke test",
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PasswordProtected: false,
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Password: null,
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MaxUsers: 42,
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SortOrder: 0,
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Audio: new AudioConfigInfo(0, true, 48000, 64000, 20, 1, true, 5, false, 10))));
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Assert.True(PumpUntil(client,
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() => events.Any(e => e.Type == VcEventType.GenericResult && e.Result == VcResult.Ok), 3000),
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"CreateChannel did not succeed");
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var channels = client.ListChannels();
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var created = channels.FirstOrDefault(c => c.Name == "CSharp Test Channel");
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Assert.NotNull(created);
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Assert.Equal("Created by C# smoke test", created.Topic);
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Assert.True(created.PasswordProtected == false);
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Assert.Equal(VcResult.Ok, client.EditChannel(new ChannelEditInfo(
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created.Id,
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created.ParentId,
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created.Name,
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"Updated topic",
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created.PasswordProtected,
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null,
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100,
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0,
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new AudioConfigInfo(0, true, 48000, 64000, 20, 1, true, 5, false, 10))));
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events.Clear();
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Assert.True(PumpUntil(client,
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() => events.Any(e => e.Type == VcEventType.GenericResult && e.Result == VcResult.Ok), 3000),
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"EditChannel did not succeed");
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Assert.Equal(VcResult.Ok, client.DeleteChannel(created.Id));
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events.Clear();
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Assert.True(PumpUntil(client,
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() => events.Any(e => e.Type == VcEventType.GenericResult && e.Result == VcResult.Ok), 3000),
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"DeleteChannel did not succeed");
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// Account CRUD
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Assert.Equal(VcResult.Ok, client.CreateAccount("csharp_smoke_user", "initialpw"));
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events.Clear();
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Assert.True(PumpUntil(client,
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() => events.Any(e => e.Type == VcEventType.GenericResult && e.Result == VcResult.Ok), 3000),
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"CreateAccount did not succeed");
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Assert.Equal(VcResult.Ok, client.RequestAccountList());
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Assert.True(PumpUntil(client, () => events.Any(e => e.Type == VcEventType.AccountList), 3000));
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var accounts = client.ListAccounts();
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Assert.Contains(accounts, a => a.Username == "csharp_smoke_user");
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Assert.Equal(VcResult.Ok, client.ResetPassword("csharp_smoke_user", "newpw123"));
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events.Clear();
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Assert.True(PumpUntil(client,
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() => events.Any(e => e.Type == VcEventType.GenericResult && e.Result == VcResult.Ok), 3000),
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"ResetPassword did not succeed");
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Assert.Equal(VcResult.Ok, client.DeleteAccount("csharp_smoke_user"));
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events.Clear();
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Assert.True(PumpUntil(client,
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() => events.Any(e => e.Type == VcEventType.GenericResult && e.Result == VcResult.Ok), 3000),
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"DeleteAccount did not succeed");
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client.Disconnect();
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}
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/// <summary>
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/// Screen-audio (SCREEN_AUDIO) stream start/stop through the P/Invoke layer. The core's
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/// WASAPI loopback path (VOICECAT_HAS_LOOPBACK) captures the default render endpoint; the
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/// StreamAnnounce succeeds regardless of whether the loopback device actually initializes
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/// on a headless box, so this test passes in CI while still exercising the full
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/// StartStream -> StreamStarted -> StopStream -> StreamStopped path through P/Invoke.
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/// See docs/voice.md §9 and MainForm's BtnScreenShareToggle_Click.
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/// </summary>
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[Fact]
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public void ScreenAudioStream_Starts_And_Stops()
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{
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var events = new List<VoiceCatEvent>();
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using var client = new VoiceCatClient("vc-csharp-screen", "0.1", VcLogLevel.Off,
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tofuStorePath: Path.Combine(_tempDir, "tofu_pins_screen.txt"));
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client.EventReceived += events.Add;
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Assert.Equal(VcResult.Ok, client.Connect("127.0.0.1", _port));
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Assert.Equal(VcResult.Ok, client.AuthenticateGuest("CSharpScreen"));
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Assert.True(PumpUntil(client, () => events.Any(e => e.Type == VcEventType.ServerIdentity), 5000));
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Assert.Equal(VcResult.Ok, client.ConfirmServerIdentity(accept: true));
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Assert.True(PumpUntil(client, () => events.Any(e => e.Type == VcEventType.AuthResult), 5000));
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Assert.Equal(VcResult.Ok, events.First(e => e.Type == VcEventType.AuthResult).Result);
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Assert.True(PumpUntil(client, () => events.Any(e => e.Type == VcEventType.ChannelList), 3000));
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// Give the async UDP binding handshake a moment to land before announcing a stream
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// (mirrors vccli's 500ms sleep after auth).
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Thread.Sleep(500);
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var (startResult, streamId) = client.StartStream(VcStreamKind.ScreenAudio, "Desktop audio");
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Assert.Equal(VcResult.Ok, startResult);
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Assert.True(streamId != 0, "StreamId should be non-zero on success");
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// The core emits VC_EVENT_STREAM_STARTED for the local client too (client.cpp
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// handle_stream_announce_result), so we see our own screen-audio stream start.
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Assert.True(PumpUntil(client,
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() => events.Any(e => e.Type == VcEventType.StreamStarted && e.StreamId == streamId), 5000),
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"did not receive VC_EVENT_STREAM_STARTED for screen-audio stream");
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Assert.Equal(VcResult.Ok, client.StopStream(streamId));
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Assert.True(PumpUntil(client,
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() => events.Any(e => e.Type == VcEventType.StreamStopped && e.StreamId == streamId), 5000),
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"did not receive VC_EVENT_STREAM_STOPPED for screen-audio stream");
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client.Disconnect();
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}
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/// <summary>
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/// Per-stream receive-side controls (gain/mute/NR) round-trip through P/Invoke: two
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/// clients in a channel, one publishes a MIC stream, the other SetRemoteStream's it then
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/// GetRemoteStream's it back. Catches P/Invoke-specific marshaling bugs in
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/// VcRemoteStreamStateNative (field order, bool-from-int, float precision) that the C++
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/// ctest (test_m3_multistream) cannot. See docs/voice.md §1, §10.
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/// </summary>
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[Fact]
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public void PerStream_RecvControls_RoundTrip_Through_PInvoke()
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{
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var eventsA = new List<VoiceCatEvent>();
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var eventsB = new List<VoiceCatEvent>();
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using var a = new VoiceCatClient("vc-csharp-mix-a", "0.1", VcLogLevel.Off,
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tofuStorePath: Path.Combine(_tempDir, "tofu_pins_mix_a.txt"));
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using var b = new VoiceCatClient("vc-csharp-mix-b", "0.1", VcLogLevel.Off,
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tofuStorePath: Path.Combine(_tempDir, "tofu_pins_mix_b.txt"));
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a.EventReceived += eventsA.Add;
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b.EventReceived += eventsB.Add;
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// Connect + auth A first, then B — staggering avoids concurrent TLS handshakes against
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// the same server (mirrors the C++ test_m3_multistream harness, which connects A to
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// completion before starting B).
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Assert.Equal(VcResult.Ok, a.Connect("127.0.0.1", _port));
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Assert.Equal(VcResult.Ok, a.AuthenticateGuest("CSharpMixA"));
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Assert.True(PumpUntil(a, () => eventsA.Any(e => e.Type == VcEventType.ServerIdentity), 5000));
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Assert.Equal(VcResult.Ok, a.ConfirmServerIdentity(accept: true));
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Assert.True(PumpUntil(a, () => eventsA.Any(e => e.Type == VcEventType.AuthResult), 5000));
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Assert.Equal(VcResult.Ok, eventsA.First(e => e.Type == VcEventType.AuthResult).Result);
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Assert.True(PumpUntil(a, () => eventsA.Any(e => e.Type == VcEventType.ChannelList), 3000));
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Assert.Equal(VcResult.Ok, b.Connect("127.0.0.1", _port));
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Assert.Equal(VcResult.Ok, b.AuthenticateGuest("CSharpMixB"));
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Assert.True(PumpUntil(b, () => eventsB.Any(e => e.Type == VcEventType.ServerIdentity), 5000));
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Assert.Equal(VcResult.Ok, b.ConfirmServerIdentity(accept: true));
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Assert.True(PumpUntil(b, () => eventsB.Any(e => e.Type == VcEventType.AuthResult), 5000));
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Assert.Equal(VcResult.Ok, eventsB.First(e => e.Type == VcEventType.AuthResult).Result);
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Assert.True(PumpUntil(b, () => eventsB.Any(e => e.Type == VcEventType.ChannelList), 3000));
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// Both join Lobby (channel 1) so voice relays between them.
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Assert.Equal(VcResult.Ok, a.JoinChannel(1, null));
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Assert.True(PumpUntil(a, () => eventsA.Any(e => e.Type == VcEventType.JoinResult), 5000),
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"A did not receive VC_EVENT_JOIN_RESULT");
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Assert.Equal(VcResult.Ok, b.JoinChannel(1, null));
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Assert.True(PumpUntil(b, () => eventsB.Any(e => e.Type == VcEventType.JoinResult), 5000),
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"B did not receive VC_EVENT_JOIN_RESULT");
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// UDP binding handshake is async; give it a moment (mirrors ScreenAudio test).
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Thread.Sleep(500);
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// A publishes a MIC stream.
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var (startResult, streamId) = a.StartStream(VcStreamKind.Mic, "mix-test-mic");
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Assert.Equal(VcResult.Ok, startResult);
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Assert.True(streamId != 0);
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// B sees A's stream and can enumerate it.
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uint aUid = 0;
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Assert.True(PumpUntil(b, () =>
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{
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return eventsB.Any(e => e.Type == VcEventType.StreamStarted && e.StreamId == streamId);
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}, 5000), "B did not see A's STREAM_STARTED");
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// Resolve A's user id from B's user list.
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Assert.True(PumpUntil(b, () =>
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{
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aUid = b.ListUsers().FirstOrDefault(u => u.Nickname == "CSharpMixA")?.Id ?? 0;
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return aUid != 0;
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}, 3000), "could not resolve A's user id on B");
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Assert.True(aUid != 0);
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Assert.True(PumpUntil(b, () => b.ListUserStreams(aUid).Any(s => s.StreamId == streamId), 3000),
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"B could not enumerate A's stream");
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var bStreams = b.ListUserStreams(aUid);
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Assert.Contains(bStreams, s => s.StreamId == streamId && s.Kind == VcStreamKind.Mic);
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// Before B ever sets anything, defaults read back (gain 1.0, unmuted, NR off).
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var (r0, st0) = b.GetRemoteStream(aUid, streamId);
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Assert.Equal(VcResult.Ok, r0);
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Assert.NotNull(st0);
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Assert.Equal(1.0f, st0!.Gain);
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Assert.False(st0.Muted);
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Assert.False(st0.NoiseReduction);
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// B turns A down to 0.4×, mutes, and enables NR — then reads it back.
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Assert.Equal(VcResult.Ok, b.SetRemoteStream(aUid, streamId, 0.4f, muted: true, noiseReduction: true));
|
||
var (r1, st1) = b.GetRemoteStream(aUid, streamId);
|
||
Assert.Equal(VcResult.Ok, r1);
|
||
Assert.NotNull(st1);
|
||
Assert.Equal(0.4f, st1!.Gain);
|
||
Assert.True(st1.Muted);
|
||
Assert.True(st1.NoiseReduction);
|
||
|
||
// Unknown stream id on a known user -> INVALID_ARG.
|
||
var (rBad, stBad) = b.GetRemoteStream(aUid, 0xDEADBEEF);
|
||
Assert.Equal(VcResult.InvalidArg, rBad);
|
||
Assert.Null(stBad);
|
||
|
||
a.Disconnect();
|
||
b.Disconnect();
|
||
}
|
||
}
|