w4c-workflows-api/w4c-workflows-api.Tests/RunLifecycleEngineTests.cs

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2026-09-11 22:02:46 +00:00
using System.Text.Json.Nodes;
using Microsoft.EntityFrameworkCore;
using Microsoft.Extensions.Configuration;
using Microsoft.Extensions.Logging.Abstractions;
using w4c_workflows.Data;
using w4c_workflows.Models;
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using w4c_workflows.Models.Credentials;
using w4c_workflows.Models.Nodes;
using w4c_workflows.Services;
using w4c_workflows.Services.Credentials;
using w4c_workflows.Services.Execution;
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using w4c_workflows.Services.Nodes;
using w4c_workflows.Services.Nodes.Executors;
using w4c_workflows.Services.Nodes.Interpolation;
using w4c_workflows.Services.Runs;
using Xunit;
namespace w4c_workflows.Tests;
[Collection("WorkflowsPostgres")]
public class RunLifecycleEngineTests
{
private readonly WorkflowsPostgresFixture _fixture;
public RunLifecycleEngineTests(WorkflowsPostgresFixture fixture)
{
_fixture = fixture;
}
private static RunLifecycleEngine NewEngine(FakeEventBus events, FakeLeaseService leases, int maxRetries = 3, int retryBaseDelayMs = 0)
=> new(events, leases,
new ConfigurationBuilder()
.AddInMemoryCollection(new Dictionary<string, string?>
{
["Workflows:MaxRetries"] = maxRetries.ToString(),
["Workflows:RetryBaseDelayMs"] = retryBaseDelayMs.ToString(),
})
.Build(),
NullLogger<RunLifecycleEngine>.Instance);
private static TaskDispatcher NewDispatcher(WorkflowsDbContext db, FakeJobQueue jobs)
=> new(db, jobs, new ConfigurationBuilder().Build(), NullLogger<TaskDispatcher>.Instance);
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/// <summary>An engine wired with the node kernel so node-mode workflows run in-process.</summary>
private static RunLifecycleEngine NewNodeEngine(
FakeEventBus events,
FakeLeaseService leases,
IEnumerable<INodeExecutor>? extraExecutors = null,
CredentialVault? vault = null)
{
var catalog = new NodeBlueprintCatalog(NodeBlueprintCatalog.LoadEmbedded());
var executors = new List<INodeExecutor>
{
new NoOpNodeExecutor(),
new SetNodeExecutor(),
new IfNodeExecutor(),
new SplitInBatchesNodeExecutor(),
new ExecuteWorkflowNodeExecutor(),
new CodeNodeExecutor(new RuntimeRegistry(new LanguageRegistry(), Array.Empty<IScriptExecutor>())),
};
if (extraExecutors != null)
executors.AddRange(extraExecutors);
var graphRunner = new NodeGraphRunner(new NodeExecutorRegistry(executors), new NodeParameterInterpolator());
var nodeRunner = new NodeWorkflowRunner(
catalog, graphRunner, vault ?? new CredentialVault(new ReversibleTestCipher(), new CredentialTypeCatalog()));
return new RunLifecycleEngine(
events,
leases,
new ConfigurationBuilder().Build(),
NullLogger<RunLifecycleEngine>.Instance,
nodeRunner);
}
private static IReadOnlyDictionary<string, string> ResultFields(
WorkflowRun run, WorkflowTask task, int attempt, bool success, string? output = null, string? error = null)
{
var invocation = new TaskInvocation(
TaskInvocation.TypeValue, run.Id.ToString(), task.Id.ToString(), task.Key,
task.Language, "x", null, new Dictionary<string, string>(), null, null, run.TenantId, attempt);
var result = new ExecutionResult(success, success ? 0 : 1, string.Empty, string.Empty, output, error, TimeSpan.Zero);
return TaskResultMessage.ToFields(invocation, result);
}
/// <summary>The engine is multi-tenant: it scans the whole DB. The shared Postgres
/// fixture may contain other tests' tenants, so assert on this tenant's jobs only.</summary>
private static List<IReadOnlyDictionary<string, string>> EnqueuedFor(FakeJobQueue jobs, string tenantId)
=> jobs.Enqueued.Where(x => x.TenantId == tenantId).Select(x => x.Fields).ToList();
private static string Tenant() => "t" + Guid.NewGuid().ToString("N")[..12];
[Fact]
public async Task Dispatch_marks_run_running_and_enqueues_root()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var workflow = WorkflowDataHelpers.CompileAndSave(db, tenantId, WorkflowDataHelpers.LinearYaml);
var run = WorkflowDataHelpers.AddPendingRun(db, workflow, "{\"in\":1}");
var jobs = new FakeJobQueue();
var engine = NewEngine(new FakeEventBus(), new FakeLeaseService());
var dispatched = await engine.DispatchPendingAsync(db, NewDispatcher(db, jobs), default);
Assert.True(dispatched >= 1);
var reloaded = await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id);
Assert.Equal(RunStatus.Running, reloaded.Status);
Assert.NotNull(reloaded.StartedAt);
var fields = Assert.Single(EnqueuedFor(jobs, tenantId));
Assert.Equal("root", fields["task_key"]);
Assert.Equal("{\"in\":1}", fields["input"]);
Assert.Equal("1", fields["attempt"]);
}
[Fact]
public async Task Full_chain_runs_to_completion()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var workflow = WorkflowDataHelpers.CompileAndSave(db, tenantId, WorkflowDataHelpers.LinearYaml);
var run = WorkflowDataHelpers.AddPendingRun(db, workflow);
var jobs = new FakeJobQueue();
var events = new FakeEventBus();
var engine = NewEngine(events, new FakeLeaseService());
var dispatcher = NewDispatcher(db, jobs);
var store = new DurableStateStore(db);
await engine.DispatchPendingAsync(db, dispatcher, default);
var root = WorkflowDataHelpers.TaskByKey(workflow, "root");
var a = WorkflowDataHelpers.TaskByKey(workflow, "a");
var b = WorkflowDataHelpers.TaskByKey(workflow, "b");
events.SeedResult(tenantId, ResultFields(run, root, 1, true, "{\"out\":1}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
var mine = EnqueuedFor(jobs, tenantId);
Assert.Equal(2, mine.Count);
Assert.Equal("a", mine[1]["task_key"]);
Assert.Equal("{\"out\":1}", mine[1]["input"]);
Assert.Equal(RunStatus.Running, (await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id)).Status);
events.SeedResult(tenantId, ResultFields(run, a, 1, true, "{\"out\":2}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
mine = EnqueuedFor(jobs, tenantId);
Assert.Equal(3, mine.Count);
Assert.Equal("b", mine[2]["task_key"]);
Assert.Equal("{\"out\":2}", mine[2]["input"]);
events.SeedResult(tenantId, ResultFields(run, b, 1, true, "{\"out\":3}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
var final = await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id);
Assert.Equal(RunStatus.Succeeded, final.Status);
Assert.Equal("{\"out\":3}", final.OutputJson);
Assert.NotNull(final.FinishedAt);
Assert.Equal(3, EnqueuedFor(jobs, tenantId).Count); // no further dispatch
var taskRuns = await db.TaskRuns.Where(t => t.RunId == run.Id).ToListAsync();
Assert.Equal(3, taskRuns.Count);
Assert.All(taskRuns, t => Assert.Equal(TaskRunStatus.Succeeded, t.Status));
}
[Fact]
public async Task Failed_task_without_compensation_is_dead_lettered()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var workflow = WorkflowDataHelpers.CompileAndSave(db, tenantId, WorkflowDataHelpers.LinearYaml);
var run = WorkflowDataHelpers.AddPendingRun(db, workflow);
var jobs = new FakeJobQueue();
var events = new FakeEventBus();
var engine = NewEngine(events, new FakeLeaseService(), maxRetries: 0);
var dispatcher = NewDispatcher(db, jobs);
var store = new DurableStateStore(db);
await engine.DispatchPendingAsync(db, dispatcher, default);
var root = WorkflowDataHelpers.TaskByKey(workflow, "root");
events.SeedResult(tenantId, ResultFields(run, root, 1, false, error: "boom"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
var final = await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id);
Assert.Equal(RunStatus.Dead, final.Status);
Assert.Equal("boom", final.Error);
Assert.NotNull(final.FinishedAt);
var rootRun = await db.TaskRuns.SingleAsync(t => t.RunId == run.Id && t.TaskId == root.Id);
Assert.Equal(TaskRunStatus.Dead, rootRun.Status);
var dlq = Assert.Single(jobs.DeadLetteredFor(tenantId));
Assert.Equal("max_retries_exceeded", dlq.Reason);
Assert.Equal("boom", dlq.Fields["dlq.error"]);
Assert.Equal("root", dlq.Fields["task_key"]);
}
[Fact]
public async Task Failed_task_retries_with_backoff_then_dead_letters()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var workflow = WorkflowDataHelpers.CompileAndSave(db, tenantId, WorkflowDataHelpers.LinearYaml);
var run = WorkflowDataHelpers.AddPendingRun(db, workflow);
var jobs = new FakeJobQueue();
var events = new FakeEventBus();
var engine = NewEngine(events, new FakeLeaseService(), maxRetries: 2);
var dispatcher = NewDispatcher(db, jobs);
var store = new DurableStateStore(db);
await engine.DispatchPendingAsync(db, dispatcher, default);
var root = WorkflowDataHelpers.TaskByKey(workflow, "root");
// Attempt 1 fails → retry scheduled; run stays Running.
events.SeedResult(tenantId, ResultFields(run, root, 1, false, error: "boom"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
Assert.Equal(RunStatus.Running, (await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id)).Status);
Assert.NotNull((await db.TaskRuns.SingleAsync(t => t.RunId == run.Id && t.Attempt == 1)).NextAttemptAt);
// Retry fires attempt 2.
await engine.RetryDueAsync(db, dispatcher, default);
Assert.Equal(2, jobs.EnqueuedFor(tenantId).Count);
// Attempt 2 fails → retry scheduled again.
events.SeedResult(tenantId, ResultFields(run, root, 2, false, error: "boom"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
// Retry fires attempt 3 (maxRetries=2 → 3 total attempts).
await engine.RetryDueAsync(db, dispatcher, default);
Assert.Equal(3, jobs.EnqueuedFor(tenantId).Count);
// Attempt 3 fails → retries exhausted → dead-letter.
events.SeedResult(tenantId, ResultFields(run, root, 3, false, error: "boom"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
Assert.Equal(RunStatus.Dead, (await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id)).Status);
Assert.Single(jobs.DeadLetteredFor(tenantId));
var attempts = await db.TaskRuns.Where(t => t.RunId == run.Id).OrderBy(t => t.Attempt).ToListAsync();
Assert.Equal(3, attempts.Count);
}
[Fact]
public async Task Failed_task_with_onError_runs_compensation_and_marks_run_failed()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var workflow = WorkflowDataHelpers.CompileAndSave(db, tenantId, WorkflowDataHelpers.SagaYaml, "workflows/saga.yaml");
var run = WorkflowDataHelpers.AddPendingRun(db, workflow);
var jobs = new FakeJobQueue();
var events = new FakeEventBus();
var engine = NewEngine(events, new FakeLeaseService(), maxRetries: 0);
var dispatcher = NewDispatcher(db, jobs);
var store = new DurableStateStore(db);
await engine.DispatchPendingAsync(db, dispatcher, default);
var root = WorkflowDataHelpers.TaskByKey(workflow, "root");
var a = WorkflowDataHelpers.TaskByKey(workflow, "a");
var compA = WorkflowDataHelpers.TaskByKey(workflow, "compensate_a");
// root succeeds → dispatches a.
events.SeedResult(tenantId, ResultFields(run, root, 1, true, "{\"out\":1}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
// a fails → retries exhausted → run compensates via a.onError.
events.SeedResult(tenantId, ResultFields(run, a, 1, false, error: "a boom"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
Assert.Equal(RunStatus.Compensating, (await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id)).Status);
Assert.Equal("compensate_a", jobs.EnqueuedFor(tenantId)[^1]["task_key"]);
// Compensation succeeds → run Failed (compensated).
events.SeedResult(tenantId, ResultFields(run, compA, 1, true, "{}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
var final = await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id);
Assert.Equal(RunStatus.Failed, final.Status);
Assert.Equal("a boom", final.Error);
var compRun = await db.TaskRuns.SingleAsync(t => t.RunId == run.Id && t.TaskId == compA.Id);
Assert.Equal(TaskRunStatus.Compensated, compRun.Status);
Assert.True(compRun.IsCompensation);
Assert.Empty(jobs.DeadLetteredFor(tenantId));
}
[Fact]
public async Task Reverse_compensation_walks_succeeded_prefix_in_reverse()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var workflow = WorkflowDataHelpers.CompileAndSave(db, tenantId, WorkflowDataHelpers.SagaYaml, "workflows/saga.yaml");
var run = WorkflowDataHelpers.AddPendingRun(db, workflow);
var jobs = new FakeJobQueue();
var events = new FakeEventBus();
var engine = NewEngine(events, new FakeLeaseService(), maxRetries: 0);
var dispatcher = NewDispatcher(db, jobs);
var store = new DurableStateStore(db);
await engine.DispatchPendingAsync(db, dispatcher, default);
var root = WorkflowDataHelpers.TaskByKey(workflow, "root");
var a = WorkflowDataHelpers.TaskByKey(workflow, "a");
var b = WorkflowDataHelpers.TaskByKey(workflow, "b");
var c = WorkflowDataHelpers.TaskByKey(workflow, "c");
// Drive the success chain root → a → b → c.
events.SeedResult(tenantId, ResultFields(run, root, 1, true, "{\"out\":1}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
events.SeedResult(tenantId, ResultFields(run, a, 1, true, "{\"out\":2}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
events.SeedResult(tenantId, ResultFields(run, b, 1, true, "{\"out\":3}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
// c fails → plan = [compensate_c (own onError), compensate_b, compensate_a].
events.SeedResult(tenantId, ResultFields(run, c, 1, false, error: "c boom"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
var compC = WorkflowDataHelpers.TaskByKey(workflow, "compensate_c");
var compB = WorkflowDataHelpers.TaskByKey(workflow, "compensate_b");
var compA = WorkflowDataHelpers.TaskByKey(workflow, "compensate_a");
Assert.Equal("compensate_c", jobs.EnqueuedFor(tenantId)[^1]["task_key"]);
events.SeedResult(tenantId, ResultFields(run, compC, 1, true, "{}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
Assert.Equal("compensate_b", jobs.EnqueuedFor(tenantId)[^1]["task_key"]);
events.SeedResult(tenantId, ResultFields(run, compB, 1, true, "{}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
Assert.Equal("compensate_a", jobs.EnqueuedFor(tenantId)[^1]["task_key"]);
events.SeedResult(tenantId, ResultFields(run, compA, 1, true, "{}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
Assert.Equal(RunStatus.Failed, (await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id)).Status);
Assert.Empty(jobs.DeadLetteredFor(tenantId));
}
[Fact]
public async Task Failed_compensation_dead_letters_the_run()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var workflow = WorkflowDataHelpers.CompileAndSave(db, tenantId, WorkflowDataHelpers.SagaYaml, "workflows/saga.yaml");
var run = WorkflowDataHelpers.AddPendingRun(db, workflow);
var jobs = new FakeJobQueue();
var events = new FakeEventBus();
var engine = NewEngine(events, new FakeLeaseService(), maxRetries: 0);
var dispatcher = NewDispatcher(db, jobs);
var store = new DurableStateStore(db);
await engine.DispatchPendingAsync(db, dispatcher, default);
var root = WorkflowDataHelpers.TaskByKey(workflow, "root");
var a = WorkflowDataHelpers.TaskByKey(workflow, "a");
var compA = WorkflowDataHelpers.TaskByKey(workflow, "compensate_a");
events.SeedResult(tenantId, ResultFields(run, root, 1, true, "{\"out\":1}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
events.SeedResult(tenantId, ResultFields(run, a, 1, false, error: "a boom"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
// The compensation step itself fails → dead-letter.
events.SeedResult(tenantId, ResultFields(run, compA, 1, false, error: "compensation boom"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
var final = await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id);
Assert.Equal(RunStatus.Dead, final.Status);
Assert.Equal("compensation boom", final.Error);
var compRun = await db.TaskRuns.SingleAsync(t => t.RunId == run.Id && t.TaskId == compA.Id);
Assert.Equal(TaskRunStatus.Dead, compRun.Status);
var dlq = Assert.Single(jobs.DeadLetteredFor(tenantId));
Assert.Equal("max_retries_exceeded", dlq.Reason);
Assert.Equal("compensation boom", dlq.Fields["dlq.error"]);
Assert.Equal("compensate_a", dlq.Fields["task_key"]);
}
[Fact]
public async Task Durable_run_checkpoints_then_clears_on_completion()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var workflow = WorkflowDataHelpers.CompileAndSave(db, tenantId, WorkflowDataHelpers.DurableYaml, "workflows/durable.yaml");
var run = WorkflowDataHelpers.AddPendingRun(db, workflow);
var jobs = new FakeJobQueue();
var events = new FakeEventBus();
var engine = NewEngine(events, new FakeLeaseService());
var dispatcher = NewDispatcher(db, jobs);
var store = new DurableStateStore(db);
await engine.DispatchPendingAsync(db, dispatcher, default);
var root = WorkflowDataHelpers.TaskByKey(workflow, "root");
var a = WorkflowDataHelpers.TaskByKey(workflow, "a");
events.SeedResult(tenantId, ResultFields(run, root, 1, true, "{\"s\":1}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
// Checkpoint recorded: instance = run id, next task = a, input = root output.
var checkpoint = await db.DurableStates.SingleAsync(d => d.InstanceId == run.Id.ToString());
Assert.Equal(a.Id, checkpoint.TaskId);
Assert.Equal("{\"s\":1}", checkpoint.StateJson);
Assert.Equal("test-correlation", checkpoint.CorrelationId);
events.SeedResult(tenantId, ResultFields(run, a, 1, true, "{\"s\":2}"));
await engine.ProcessResultsAsync(db, dispatcher, store, default);
var final = await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id);
Assert.Equal(RunStatus.Succeeded, final.Status);
Assert.False(await db.DurableStates.AnyAsync(d => d.InstanceId == run.Id.ToString()));
}
[Fact]
public async Task Resume_dispatches_the_start_task_instead_of_root()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var workflow = WorkflowDataHelpers.CompileAndSave(db, tenantId, WorkflowDataHelpers.LinearYaml);
var a = WorkflowDataHelpers.TaskByKey(workflow, "a");
var run = WorkflowDataHelpers.AddPendingRun(db, workflow, "{\"resume\":true}", a.Id);
var jobs = new FakeJobQueue();
var engine = NewEngine(new FakeEventBus(), new FakeLeaseService());
await engine.DispatchPendingAsync(db, NewDispatcher(db, jobs), default);
var fields = Assert.Single(EnqueuedFor(jobs, tenantId));
Assert.Equal("a", fields["task_key"]);
Assert.Equal("{\"resume\":true}", fields["input"]);
var reloaded = await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id);
Assert.Equal(RunStatus.Running, reloaded.Status);
}
[Fact]
public async Task Duplicate_result_is_ignored()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var workflow = WorkflowDataHelpers.CompileAndSave(db, tenantId, WorkflowDataHelpers.LinearYaml);
var run = WorkflowDataHelpers.AddPendingRun(db, workflow);
var jobs = new FakeJobQueue();
var events = new FakeEventBus();
var engine = NewEngine(events, new FakeLeaseService());
var dispatcher = NewDispatcher(db, jobs);
var store = new DurableStateStore(db);
await engine.DispatchPendingAsync(db, dispatcher, default);
var root = WorkflowDataHelpers.TaskByKey(workflow, "root");
var rootResult = ResultFields(run, root, 1, true, "{\"out\":1}");
events.SeedResult(tenantId, rootResult);
await engine.ProcessResultsAsync(db, dispatcher, store, default);
Assert.Equal(2, EnqueuedFor(jobs, tenantId).Count); // root + a
// Replay the exact same root result — must be a no-op.
events.SeedResult(tenantId, rootResult);
await engine.ProcessResultsAsync(db, dispatcher, store, default);
Assert.Equal(2, EnqueuedFor(jobs, tenantId).Count); // no new dispatch
var rootRun = await db.TaskRuns.SingleAsync(t => t.TaskId == root.Id);
Assert.Equal(TaskRunStatus.Succeeded, rootRun.Status);
}
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// ------------------------------------------------------------------ node mode
[Fact]
public async Task Node_workflow_runs_in_process_and_records_a_task_run_per_node()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var workflow = WorkflowDataHelpers.CompileAndSave(
db, tenantId, WorkflowDataHelpers.NodeYaml, "workflows/node.yaml");
var run = WorkflowDataHelpers.AddPendingRun(db, workflow);
Assert.Single(workflow.TaskEdges); // seed -> shape edge persisted
var jobs = new FakeJobQueue();
var engine = NewNodeEngine(new FakeEventBus(), new FakeLeaseService());
var dispatched = await engine.DispatchPendingAsync(db, NewDispatcher(db, jobs), default);
Assert.True(dispatched >= 1);
// Node mode is in-process: nothing is enqueued on the subprocess jobs stream.
Assert.Empty(EnqueuedFor(jobs, tenantId));
var reloaded = await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id);
Assert.Equal(RunStatus.Succeeded, reloaded.Status);
var taskRuns = await db.TaskRuns.Where(t => t.RunId == run.Id).ToListAsync();
Assert.Equal(2, taskRuns.Count);
Assert.All(taskRuns, t => Assert.Equal(TaskRunStatus.Succeeded, t.Status));
// The terminal node's output is the run output.
Assert.NotNull(reloaded.OutputJson);
Assert.Contains("copied", reloaded.OutputJson);
}
[Fact]
public async Task Node_workflow_without_an_executor_fails_the_run()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var workflow = WorkflowDataHelpers.CompileAndSave(
db, tenantId, WorkflowDataHelpers.NodeNoExecutorYaml, "workflows/node-fail.yaml");
var run = WorkflowDataHelpers.AddPendingRun(db, workflow);
var jobs = new FakeJobQueue();
var engine = NewNodeEngine(new FakeEventBus(), new FakeLeaseService());
await engine.DispatchPendingAsync(db, NewDispatcher(db, jobs), default);
var reloaded = await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id);
Assert.Equal(RunStatus.Failed, reloaded.Status);
Assert.Contains("no executor", reloaded.Error);
}
[Fact]
public async Task Node_workflow_loop_runs_and_records_each_iteration()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
const string yaml = """
name: loop-run
tasks:
- id: source
node: { type: core.noop }
edges:
- { output: 0, to: loop }
- id: loop
node: { type: core.splitInBatches }
parameters: { batchSize: 2 }
edges:
- { output: 0, to: body }
- { output: 1, to: done }
- id: body
node: { type: core.noop }
edges:
- { output: 0, to: loop }
- id: done
node: { type: core.noop }
""";
var workflow = WorkflowDataHelpers.CompileAndSave(db, tenantId, yaml, "workflows/loop.yaml");
Assert.Contains(workflow.TaskEdges, e => e.IsLoopBack);
var run = WorkflowDataHelpers.AddPendingRun(
db, workflow, """[{"n":1},{"n":2},{"n":3},{"n":4},{"n":5}]""");
var engine = NewNodeEngine(new FakeEventBus(), new FakeLeaseService());
await engine.DispatchPendingAsync(db, NewDispatcher(db, new FakeJobQueue()), default);
var reloaded = await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id);
Assert.Equal(RunStatus.Succeeded, reloaded.Status);
var loopTask = workflow.Tasks.Single(t => t.Key == "loop");
var iterations = await db.TaskRuns.CountAsync(t => t.RunId == run.Id && t.TaskId == loopTask.Id);
Assert.Equal(4, iterations); // 3 batches + the final done invocation
}
/// <summary>Stands in for the HTTP executor and records the credentials it was handed.</summary>
private sealed class CapturingHttpExecutor : INodeExecutor
{
public string Type => "core.httpRequest";
public IReadOnlyDictionary<string, CredentialData>? Seen { get; private set; }
public Task<NodeExecutionOutcome> RunAsync(NodeExecutionContext context, CancellationToken ct)
{
Seen = context.Credentials;
return Task.FromResult(NodeExecutionOutcome.Single(context.Input(0).ToList()));
}
}
[Fact]
public async Task Node_workflow_resolves_declared_credentials_from_the_vault()
{
var tenantId = Tenant();
await using var db = _fixture.CreateContext();
var vault = new CredentialVault(new ReversibleTestCipher(), new CredentialTypeCatalog());
await vault.CreateAsync(
db, tenantId, "my-api", "httpHeaderAuth",
new JsonObject { ["name"] = "X-API-Key", ["value"] = "abc" }, default);
var yaml = """
name: cred-run
tasks:
- id: fetch
node: { type: core.httpRequest }
parameters: { url: "https://api.example.com" }
credentials: { httpAuth: my-api }
""";
var workflow = WorkflowDataHelpers.CompileAndSave(db, tenantId, yaml, "workflows/cred.yaml");
var run = WorkflowDataHelpers.AddPendingRun(db, workflow);
var capturing = new CapturingHttpExecutor();
var engine = NewNodeEngine(new FakeEventBus(), new FakeLeaseService(), new[] { capturing }, vault);
await engine.DispatchPendingAsync(db, NewDispatcher(db, new FakeJobQueue()), default);
Assert.NotNull(capturing.Seen);
Assert.Equal("httpHeaderAuth", capturing.Seen!["httpAuth"].Type);
Assert.Equal("abc", capturing.Seen!["httpAuth"].Data["value"]!.GetValue<string>());
var reloaded = await db.WorkflowRuns.SingleAsync(r => r.Id == run.Id);
Assert.Equal(RunStatus.Succeeded, reloaded.Status);
}
}