mirror of
https://github.com/MindWorkAI/AI-Studio.git
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394 lines
14 KiB
C#
394 lines
14 KiB
C#
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using System.Collections.Concurrent;
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using System.Runtime.CompilerServices;
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using AIStudio.Assistants.ModelComparison;
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using Microsoft.Extensions.Logging.Abstractions;
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namespace AIStudio.Tests.Assistants.ModelComparison;
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/// <summary>
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/// Checks how a comparison run treats two models: that they are asked the same, at the same time,
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/// and that whatever one of them does cannot spoil the result of the other.
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/// </summary>
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/// <remarks>
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/// The models are made up here. What is under test is the run, not a provider.
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/// </remarks>
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[TestFixture]
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public sealed class ModelComparisonRunnerTests
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{
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private static readonly ModelComparisonRequest REQUEST = new("The document.", "Summarize it.");
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private static readonly TimeSpan PATIENCE = TimeSpan.FromSeconds(5);
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[Test]
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public async Task BothModelsReceiveTheSamePrompt()
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{
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// Not REQUEST.ToPrompt() itself: the run adds a cache-busting request ID neither call here supplies:
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var prompts = new ConcurrentBag<string>();
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IAsyncEnumerable<string> Ask(string prompt, CancellationToken _)
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{
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prompts.Add(prompt);
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return Chunks("An answer.");
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}
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await CreateRunner().RunAsync(CreateParticipant("1", Ask), CreateParticipant("2", Ask), REQUEST, CancellationToken.None);
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Assert.Multiple(() =>
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{
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Assert.That(prompts, Has.Count.EqualTo(2));
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Assert.That(prompts.Distinct().Count(), Is.EqualTo(1), "Both models must receive the exact same prompt as each other.");
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});
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}
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[Test]
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public async Task RepeatedRunsGetDifferentPromptsSoACachingGatewayCannotAnswerFromACache()
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{
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var prompts = new ConcurrentBag<string>();
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IAsyncEnumerable<string> Ask(string prompt, CancellationToken _)
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{
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prompts.Add(prompt);
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return Chunks("An answer.");
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}
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var runner = CreateRunner();
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await runner.RunAsync(CreateParticipant("1", Ask), CreateParticipant("2", Ask), REQUEST, CancellationToken.None);
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await runner.RunAsync(CreateParticipant("1", Ask), CreateParticipant("2", Ask), REQUEST, CancellationToken.None);
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// Both models of the same run still share one prompt, the same as in BothModelsReceiveTheSamePrompt;
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// it is the two runs that must differ from each other, so a caching gateway cannot answer a
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// repeat run from what it already has cached for the first one:
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Assert.That(prompts.Distinct().Count(), Is.EqualTo(2), "Each run must see a prompt of its own, distinct from the other run's.");
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}
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[Test]
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public async Task TheModelsAreAskedAtTheSameTime()
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{
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var started = 0;
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var bothStarted = new TaskCompletionSource(TaskCreationOptions.RunContinuationsAsynchronously);
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//
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// Neither model answers before the other one has been asked. Asked one after the other, the
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// first would wait in vain, run out of patience and fail, and so would the assertion below.
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//
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async IAsyncEnumerable<string> Ask(string _, [EnumeratorCancellation] CancellationToken token)
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{
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if (Interlocked.Increment(ref started) == 2)
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bothStarted.SetResult();
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await bothStarted.Task.WaitAsync(PATIENCE, token);
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yield return "An answer.";
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}
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var result = await CreateRunner().RunAsync(CreateParticipant("1", Ask), CreateParticipant("2", Ask), REQUEST, CancellationToken.None);
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Assert.That(result.BothCompleted, Is.True);
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}
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[Test]
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public async Task EachAnswerStaysWithTheModelWhichGaveIt()
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{
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var secondIsDone = new TaskCompletionSource(TaskCreationOptions.RunContinuationsAsynchronously);
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// The first model finishes last, so a result assembled in the order of arrival would swap them:
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async IAsyncEnumerable<string> AskFirst(string _, [EnumeratorCancellation] CancellationToken token)
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{
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await secondIsDone.Task.WaitAsync(PATIENCE, token);
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yield return "from the first";
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}
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async IAsyncEnumerable<string> AskSecond(string _, [EnumeratorCancellation] CancellationToken __)
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{
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yield return "from the second";
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secondIsDone.TrySetResult();
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await Task.CompletedTask;
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}
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var result = await CreateRunner().RunAsync(CreateParticipant("1", AskFirst), CreateParticipant("2", AskSecond), REQUEST, CancellationToken.None);
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Assert.Multiple(() =>
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{
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Assert.That(result.First.Text, Is.EqualTo("from the first"));
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Assert.That(result.First.Label, Is.EqualTo("Model 1"));
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Assert.That(result.Second.Text, Is.EqualTo("from the second"));
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Assert.That(result.Second.Label, Is.EqualTo("Model 2"));
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});
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}
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[Test]
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public async Task AnAnswerIsTheChunksJoinedWithoutTheThinking()
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{
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var result = await CreateRunner().RunAsync(
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CreateParticipant("1", (_, _) => Chunks("<think>Let me think.", "</think>", "Hello", " world ")),
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CreateParticipant("2", (_, _) => Chunks("Hi")),
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REQUEST,
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CancellationToken.None);
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Assert.Multiple(() =>
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{
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Assert.That(result.First.Text, Is.EqualTo("Hello world"));
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Assert.That(result.First.Completed, Is.True);
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});
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}
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[Test]
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public async Task TheTimesAreMeasuredOnTheClockOfTheRun()
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{
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var clock = new ManualTimeProvider();
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async IAsyncEnumerable<string> AskFirst(string _, [EnumeratorCancellation] CancellationToken __)
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{
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clock.Advance(TimeSpan.FromMilliseconds(200));
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yield return "Hi";
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clock.Advance(TimeSpan.FromMilliseconds(300));
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yield return " there";
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await Task.CompletedTask;
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}
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// The second model does not touch the clock, so the times of the first one are the only ones which move:
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var result = await CreateRunner(clock).RunAsync(
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CreateParticipant("1", AskFirst),
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CreateParticipant("2", (_, _) => Failing()),
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REQUEST,
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CancellationToken.None);
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Assert.Multiple(() =>
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{
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Assert.That(result.First.FirstTokenTime, Is.EqualTo(TimeSpan.FromMilliseconds(200)));
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Assert.That(result.First.TotalTime, Is.EqualTo(TimeSpan.FromMilliseconds(500)));
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});
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}
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[Test]
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public async Task AModelWhichFailsDoesNotTakeTheOtherOneDown()
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{
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var result = await CreateRunner().RunAsync(
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CreateParticipant("1", (_, _) => Chunks("An answer.")),
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CreateParticipant("2", (_, _) => Failing()),
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REQUEST,
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CancellationToken.None);
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Assert.Multiple(() =>
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{
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Assert.That(result.First.Completed, Is.True);
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Assert.That(result.First.Text, Is.EqualTo("An answer."));
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Assert.That(result.Second.Completed, Is.False);
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Assert.That(result.Second.TotalTime, Is.Null, "A failed request has no total time.");
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Assert.That(result.BothCompleted, Is.False);
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});
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}
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[Test]
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public async Task AnAnswerWhichSaysNothingCountsAsAFailure()
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{
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var result = await CreateRunner().RunAsync(
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CreateParticipant("1", (_, _) => Chunks()),
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CreateParticipant("2", (_, _) => Chunks(" ", "\n")),
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REQUEST,
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CancellationToken.None);
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Assert.Multiple(() =>
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{
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Assert.That(result.First.Completed, Is.False);
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Assert.That(result.Second.Completed, Is.False);
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Assert.That(result.BothCompleted, Is.False);
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});
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}
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[Test]
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public async Task AnAnswerWhichEndsInsideTheThinkingCountsAsAFailure()
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{
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var result = await CreateRunner().RunAsync(
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CreateParticipant("1", (_, _) => Chunks("<think>Still thinking, and out of room")),
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CreateParticipant("2", (_, _) => Chunks("An answer.")),
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REQUEST,
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CancellationToken.None);
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Assert.Multiple(() =>
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{
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Assert.That(result.First.Completed, Is.False);
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Assert.That(result.First.Text, Is.Empty);
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Assert.That(result.Second.Completed, Is.True);
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});
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}
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[Test]
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public async Task ACanceledRunEndsBothModelsWithoutACompletedAnswer()
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{
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using var cancellation = new CancellationTokenSource();
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async IAsyncEnumerable<string> Ask(string _, [EnumeratorCancellation] CancellationToken token)
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{
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yield return "A first piece";
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await Task.Delay(Timeout.Infinite, token);
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}
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cancellation.CancelAfter(TimeSpan.FromMilliseconds(50));
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var result = await CreateRunner().RunAsync(CreateParticipant("1", Ask), CreateParticipant("2", Ask), REQUEST, cancellation.Token);
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Assert.Multiple(() =>
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{
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Assert.That(result.First.Completed, Is.False);
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Assert.That(result.Second.Completed, Is.False);
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Assert.That(result.First.TotalTime, Is.Null);
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Assert.That(result.BothCompleted, Is.False);
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});
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}
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[Test]
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public async Task TheJudgeIsAskedAboutBothCompleteAnswers()
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{
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string? judgePrompt = null;
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IAsyncEnumerable<string> AskJudge(string prompt, CancellationToken _)
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{
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judgePrompt = prompt;
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return Chunks("""{"preferred": "A", "reasoning": "It is more complete."}""");
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}
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var result = await CreateRunner().RunAsync(
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CreateParticipant("1", (_, _) => Chunks("Answer from the first model.")),
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CreateParticipant("2", (_, _) => Chunks("Answer from the second model.")),
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REQUEST,
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CancellationToken.None,
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judge: CreateParticipant("judge", AskJudge),
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judgeInstructions: "Prefer the more complete answer.");
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Assert.Multiple(() =>
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{
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Assert.That(judgePrompt, Does.Contain("Answer from the first model."));
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Assert.That(judgePrompt, Does.Contain("Answer from the second model."));
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Assert.That(judgePrompt, Does.Contain("Prefer the more complete answer."));
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Assert.That(result.Judge, Is.Not.Null);
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Assert.That(result.Judge!.Completed, Is.True);
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Assert.That(result.Judge.Preferred, Is.EqualTo(ModelComparisonVote.COLUMN_A));
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Assert.That(result.Judge.Label, Is.EqualTo("Model judge"));
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});
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}
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[Test]
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public async Task TheJudgeIsToldTheAnswersInPresentationOrder()
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{
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string? judgePrompt = null;
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IAsyncEnumerable<string> AskJudge(string prompt, CancellationToken _)
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{
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judgePrompt = prompt;
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return Chunks("""{"preferred": "A", "reasoning": "n/a"}""");
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}
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// The second model is drawn first, so it is what the judge is told is "Answer A":
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await CreateRunner().RunAsync(
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CreateParticipant("1", (_, _) => Chunks("Answer from the first model.")),
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CreateParticipant("2", (_, _) => Chunks("Answer from the second model.")),
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REQUEST,
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CancellationToken.None,
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ModelComparisonPresentationOrder.SECOND_MODEL_FIRST,
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CreateParticipant("judge", AskJudge));
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Assert.Multiple(() =>
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{
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Assert.That(judgePrompt, Does.Match(@"# Answer A\r?\nAnswer from the second model\."));
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Assert.That(judgePrompt, Does.Match(@"# Answer B\r?\nAnswer from the first model\."));
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});
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}
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[Test]
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public async Task TheJudgeIsNotAskedWhenAModelDidNotAnswer()
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{
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var judgeWasAsked = false;
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IAsyncEnumerable<string> AskJudge(string _, CancellationToken __)
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{
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judgeWasAsked = true;
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return Chunks("""{"preferred": "TIE", "reasoning": "n/a"}""");
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}
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var result = await CreateRunner().RunAsync(
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CreateParticipant("1", (_, _) => Chunks("An answer.")),
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CreateParticipant("2", (_, _) => Failing()),
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REQUEST,
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CancellationToken.None,
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judge: CreateParticipant("judge", AskJudge));
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Assert.Multiple(() =>
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{
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Assert.That(judgeWasAsked, Is.False, "A judge would only ever see one complete answer, which is nothing to judge.");
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Assert.That(result.Judge, Is.Null);
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});
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}
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[Test]
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public async Task WithoutAJudgeTheResultHasNoVerdict()
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{
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var result = await CreateRunner().RunAsync(
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CreateParticipant("1", (_, _) => Chunks("An answer.")),
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CreateParticipant("2", (_, _) => Chunks("Another answer.")),
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REQUEST,
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CancellationToken.None);
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Assert.That(result.Judge, Is.Null);
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}
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[Test]
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public async Task AJudgeWhichFailsLeavesAVerdictWhichIsNotCompleted()
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{
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var result = await CreateRunner().RunAsync(
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CreateParticipant("1", (_, _) => Chunks("An answer.")),
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CreateParticipant("2", (_, _) => Chunks("Another answer.")),
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REQUEST,
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CancellationToken.None,
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judge: CreateParticipant("judge", (_, _) => Failing()));
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Assert.Multiple(() =>
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{
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Assert.That(result.Judge, Is.Not.Null);
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Assert.That(result.Judge!.Completed, Is.False);
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});
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}
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private static ModelComparisonRunner CreateRunner(TimeProvider? clock = null) => new(NullLogger.Instance, clock);
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private static ModelComparisonParticipant CreateParticipant(string id, Func<string, CancellationToken, IAsyncEnumerable<string>> ask) => new()
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{
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Label = $"Model {id}",
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Ask = ask,
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};
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private static async IAsyncEnumerable<string> Chunks(params string[] chunks)
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{
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foreach (var chunk in chunks)
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{
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await Task.Yield();
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yield return chunk;
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}
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|
}
|
||
|
|
|
||
|
|
private static async IAsyncEnumerable<string> Failing()
|
||
|
|
{
|
||
|
|
await Task.Yield();
|
||
|
|
throw new InvalidOperationException("The model is not reachable.");
|
||
|
|
|
||
|
|
#pragma warning disable CS0162 // Unreachable code: the yield is what makes this an iterator
|
||
|
|
yield break;
|
||
|
|
#pragma warning restore CS0162
|
||
|
|
}
|
||
|
|
|
||
|
|
/// <summary>
|
||
|
|
/// A clock which only moves when a test says so.
|
||
|
|
/// </summary>
|
||
|
|
private sealed class ManualTimeProvider : TimeProvider
|
||
|
|
{
|
||
|
|
private long ticks;
|
||
|
|
|
||
|
|
// One timestamp is one tick of a TimeSpan, so the elapsed time of the runner is exactly what Advance added:
|
||
|
|
public override long TimestampFrequency => TimeSpan.TicksPerSecond;
|
||
|
|
|
||
|
|
public void Advance(TimeSpan by) => Interlocked.Add(ref this.ticks, by.Ticks);
|
||
|
|
|
||
|
|
public override long GetTimestamp() => Interlocked.Read(ref this.ticks);
|
||
|
|
}
|
||
|
|
}
|