refactor(workflow): add workflow task runtime facade
This commit is contained in:
300
packages/engine/src/__tests__/workflow-task-runtime.test.ts
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300
packages/engine/src/__tests__/workflow-task-runtime.test.ts
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@@ -0,0 +1,300 @@
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import { describe, expect, it } from "vitest";
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import type { Settings, TaskDetail, WorkflowIr } from "@fusion/core";
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import { WorkflowTaskRuntime, type WorkflowTaskRuntimeDeps } from "../workflow-task-runtime.js";
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import type { WorkflowNodeResult } from "../workflow-graph-executor.js";
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import type { WorkflowLegacySeams } from "../workflow-node-handlers.js";
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const task = { id: "FN-9002" } as TaskDetail;
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const flagOff = { experimentalFeatures: {} } as unknown as Pick<Settings, "experimentalFeatures">;
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function selectedIr(): WorkflowIr {
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return {
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version: "v1",
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name: "selected",
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nodes: [
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{ id: "start", kind: "start" },
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{ id: "prepare", kind: "prompt", config: { prompt: "prepare" } },
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{ id: "execute", kind: "prompt", config: { seam: "execute" } },
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{ id: "zend", kind: "end" },
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],
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edges: [
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{ from: "start", to: "prepare", condition: "success" },
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{ from: "prepare", to: "execute", condition: "success" },
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{ from: "execute", to: "zend", condition: "success" },
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{ from: "execute", to: "zend", condition: "failure" },
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],
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};
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}
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function recordingSeams(calls: string[], overrides: Partial<Record<string, WorkflowNodeResult>> = {}): WorkflowLegacySeams {
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const seam = (name: keyof WorkflowLegacySeams) => async (): Promise<WorkflowNodeResult> => {
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calls.push(name);
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return overrides[name] ?? { outcome: "success" };
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};
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return {
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planning: seam("planning"),
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execute: seam("execute"),
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review: seam("review"),
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merge: seam("merge"),
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schedule: seam("schedule"),
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};
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}
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describe("WorkflowTaskRuntime", () => {
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it("requires execution wiring at the type boundary", () => {
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// @ts-expect-error WorkflowTaskRuntime is an execution entry point, so seams are required.
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const missingSeams: WorkflowTaskRuntimeDeps = {
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store: {
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getTaskWorkflowSelection: () => undefined,
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getWorkflowDefinition: async () => undefined,
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},
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runCustomNode: async () => ({ outcome: "success" }),
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};
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expect(missingSeams).toBeDefined();
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});
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it("runs a selected workflow through the graph engine", async () => {
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const calls: string[] = [];
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const runtime = new WorkflowTaskRuntime({
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store: {
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getTaskWorkflowSelection: () => ({ workflowId: "WF-001", stepIds: [] }),
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getWorkflowDefinition: async () => ({ ir: selectedIr() }),
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},
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seams: recordingSeams(calls),
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runCustomNode: async (node) => {
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calls.push(`custom:${node.id}`);
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return { outcome: "success" };
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},
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});
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const result = await runtime.run(task, flagOff);
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expect(result.disposition).toBe("completed");
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expect(calls).toEqual(["custom:prepare", "execute"]);
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expect(result.visitedNodeIds).toEqual(["start", "prepare", "execute"]);
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});
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it("resolves an unselected task to the built-in coding workflow instead of falling back", async () => {
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const calls: string[] = [];
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const runtime = new WorkflowTaskRuntime({
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store: {
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getTaskWorkflowSelection: () => undefined,
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getWorkflowDefinition: async () => undefined,
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},
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seams: recordingSeams(calls),
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runCustomNode: async (node) => {
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calls.push(`custom:${node.id}`);
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return { outcome: "success" };
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},
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});
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const result = await runtime.run(task, flagOff);
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expect(result.disposition).toBe("completed");
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expect(calls).toEqual(["execute", "review", "merge"]);
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expect(result.visitedNodeIds).toEqual(["start", "execute", "review", "merge"]);
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});
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it("turns selected workflow lookup failures into the built-in workflow via the shared resolver", async () => {
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const calls: string[] = [];
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const runtime = new WorkflowTaskRuntime({
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store: {
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getTaskWorkflowSelection: () => ({ workflowId: "WF-MISSING", stepIds: [] }),
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getWorkflowDefinition: async () => undefined,
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},
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seams: recordingSeams(calls),
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runCustomNode: async () => ({ outcome: "success" }),
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});
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const result = await runtime.run(task, flagOff);
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expect(result.disposition).toBe("completed");
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expect(calls).toEqual(["execute", "review", "merge"]);
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});
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it("turns corrupt selected workflow definitions into the built-in workflow via the shared resolver", async () => {
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const calls: string[] = [];
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const runtime = new WorkflowTaskRuntime({
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store: {
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getTaskWorkflowSelection: () => ({ workflowId: "WF-CORRUPT", stepIds: [] }),
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getWorkflowDefinition: async () => ({ ir: "not a workflow ir" }),
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},
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seams: recordingSeams(calls),
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runCustomNode: async () => ({ outcome: "success" }),
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});
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const result = await runtime.run(task, flagOff);
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expect(result.disposition).toBe("completed");
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expect(calls).toEqual(["execute", "review", "merge"]);
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});
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it("forces only the graph executor flag while preserving other settings", async () => {
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let observedSettings: Pick<Settings, "experimentalFeatures"> | undefined;
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const runtime = new WorkflowTaskRuntime({
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store: {
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getTaskWorkflowSelection: () => ({ workflowId: "WF-001", stepIds: [] }),
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getWorkflowDefinition: async () => ({ ir: selectedIr() }),
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},
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seams: recordingSeams([]),
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runCustomNode: async () => ({ outcome: "success" }),
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handlers: {
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prompt: async (_node, context) => {
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observedSettings = context.settings;
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return { outcome: "success" };
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},
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},
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});
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const settings = {
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experimentalFeatures: { workflowColumns: true },
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testMode: true,
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} as unknown as Settings;
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const result = await runtime.run(task, settings);
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expect(result.disposition).toBe("completed");
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expect(observedSettings?.experimentalFeatures?.workflowGraphExecutor).toBe(true);
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expect(observedSettings?.experimentalFeatures?.workflowColumns).toBe(true);
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expect((observedSettings as Settings | undefined)?.testMode).toBe(true);
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});
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it("uses a workflow-specific default run id", async () => {
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const observedRunIds: string[] = [];
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const runtime = new WorkflowTaskRuntime({
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store: {
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getTaskWorkflowSelection: () => ({ workflowId: "WF-001", stepIds: [] }),
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getWorkflowDefinition: async () => ({ ir: selectedIr() }),
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},
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seams: recordingSeams([]),
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runCustomNode: async () => ({ outcome: "success" }),
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branchPersistence: {
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loadBranchStates: (_taskId, runId) => {
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observedRunIds.push(runId);
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return [];
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},
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},
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});
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await runtime.run(task, flagOff);
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expect(observedRunIds).toContain("FN-9002:WF-001");
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});
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it("uses the built-in workflow id in the default run id for unselected tasks", async () => {
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const observedRunIds: string[] = [];
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const runtime = new WorkflowTaskRuntime({
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store: {
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getTaskWorkflowSelection: () => undefined,
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getWorkflowDefinition: async () => undefined,
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},
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seams: recordingSeams([]),
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runCustomNode: async () => ({ outcome: "success" }),
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branchPersistence: {
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loadBranchStates: (_taskId, runId) => {
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observedRunIds.push(runId);
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return [];
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},
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},
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});
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await runtime.run(task, flagOff);
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expect(observedRunIds).toContain("FN-9002:builtin:coding");
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});
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it("surfaces graph failures as workflow-engine failures, not fallback", async () => {
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const calls: string[] = [];
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const runtime = new WorkflowTaskRuntime({
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store: {
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getTaskWorkflowSelection: () => ({ workflowId: "WF-001", stepIds: [] }),
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getWorkflowDefinition: async () => ({ ir: selectedIr() }),
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},
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seams: recordingSeams(calls, { execute: { outcome: "failure", value: "implementation-incomplete" } }),
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runCustomNode: async (node) => {
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calls.push(`custom:${node.id}`);
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return { outcome: "success" };
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},
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});
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const result = await runtime.run(task, flagOff);
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expect(result.disposition).toBe("failed");
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expect(result.outcome).toBe("failure");
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expect(calls).toEqual(["custom:prepare", "execute"]);
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});
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it("converts interpreter throws into workflow-engine failures", async () => {
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const badIr: WorkflowIr = {
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version: "v1",
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name: "bad",
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nodes: [
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{ id: "start", kind: "start" },
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{ id: "zend", kind: "end" },
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],
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edges: [{ from: "start", to: "ghost" }],
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};
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const runtime = new WorkflowTaskRuntime({
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store: {
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getTaskWorkflowSelection: () => ({ workflowId: "WF-001", stepIds: [] }),
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getWorkflowDefinition: async () => ({ ir: badIr }),
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},
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seams: recordingSeams([]),
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runCustomNode: async () => ({ outcome: "success" }),
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});
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const result = await runtime.run(task, flagOff);
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expect(result.disposition).toBe("failed");
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expect(result.reason).toMatch(/workflow-execution-error/);
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});
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it("preserves invoked node ids when the graph throws after side effects", async () => {
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const cyclicIr: WorkflowIr = {
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version: "v1",
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name: "cyclic",
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nodes: [
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{ id: "start", kind: "start" },
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{ id: "prepare", kind: "prompt", config: { prompt: "prepare" } },
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{ id: "loop", kind: "prompt", config: { prompt: "loop" } },
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],
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edges: [
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{ from: "start", to: "prepare", condition: "success" },
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{ from: "prepare", to: "loop", condition: "success" },
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{ from: "loop", to: "prepare", condition: "success" },
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],
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};
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const runtime = new WorkflowTaskRuntime({
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store: {
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getTaskWorkflowSelection: () => ({ workflowId: "WF-001", stepIds: [] }),
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getWorkflowDefinition: async () => ({ ir: cyclicIr }),
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},
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seams: recordingSeams([]),
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runCustomNode: async () => ({ outcome: "success" }),
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});
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const result = await runtime.run(task, flagOff);
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expect(result.disposition).toBe("failed");
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expect(result.reason).toMatch(/workflow-execution-error/);
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expect(result.visitedNodeIds).toEqual(["prepare", "loop"]);
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});
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it("diagnostic event failures do not affect execution", async () => {
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const runtime = new WorkflowTaskRuntime({
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store: {
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getTaskWorkflowSelection: () => ({ workflowId: "WF-001", stepIds: [] }),
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getWorkflowDefinition: async () => ({ ir: selectedIr() }),
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},
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seams: recordingSeams([]),
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runCustomNode: async () => ({ outcome: "success" }),
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onEvent: () => {
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throw new Error("diagnostics failed");
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},
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});
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const result = await runtime.run(task, flagOff);
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expect(result.disposition).toBe("completed");
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});
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});
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@@ -107,6 +107,12 @@ export {
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type WorkflowGraphTaskRunResult,
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type WorkflowGraphTaskRunnerDeps,
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} from "./workflow-graph-task-runner.js";
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export {
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WorkflowTaskRuntime,
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type WorkflowTaskRuntimeDeps,
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type WorkflowTaskRuntimeDisposition,
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type WorkflowTaskRuntimeResult,
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} from "./workflow-task-runtime.js";
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export { collectTaskEvaluationEvidence } from "./evaluator-evidence.js";
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export { Scheduler, type SchedulerOptions } from "./scheduler.js";
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export { MeshLeaseManager, type MeshLeaseManagerOptions, type LeaseRecoveryContext } from "./mesh-lease-manager.js";
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172
packages/engine/src/workflow-task-runtime.ts
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172
packages/engine/src/workflow-task-runtime.ts
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@@ -0,0 +1,172 @@
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import type { Settings, TaskDetail, WorkflowIr } from "@fusion/core";
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import { resolveWorkflowIrForTask, type WorkflowIrResolverStore } from "@fusion/core";
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import {
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WorkflowGraphExecutor,
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type WorkflowGraphExecutorDeps,
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type WorkflowNodeOutcome,
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} from "./workflow-graph-executor.js";
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import type { WorkflowCustomNodeRunner, WorkflowLegacySeams } from "./workflow-node-handlers.js";
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export type WorkflowTaskRuntimeDisposition = "completed" | "failed";
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export interface WorkflowTaskRuntimeResult {
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disposition: WorkflowTaskRuntimeDisposition;
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outcome: WorkflowNodeOutcome;
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visitedNodeIds: string[];
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context: Record<string, unknown>;
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reason?: string;
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}
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export interface WorkflowTaskRuntimeDeps extends Omit<WorkflowGraphExecutorDeps, "seams" | "runCustomNode"> {
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store: WorkflowIrResolverStore;
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seams: WorkflowLegacySeams;
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runCustomNode: WorkflowCustomNodeRunner;
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onEvent?: (event: { type: "start" | "terminal"; taskId: string; detail: string }) => void;
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}
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/**
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* WorkflowTaskRuntime is the workflow-engine execution facade.
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*
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* It always resolves a task to a workflow IR: explicit selections resolve to
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* their selected workflow, and tasks without a selection resolve to the built-in
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* coding workflow through `resolveWorkflowIrForTask`. This is intentionally
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* different from `WorkflowGraphTaskRunner`, whose current contract still models
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* "no selection" as legacy fallback.
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*/
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export class WorkflowTaskRuntime {
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public constructor(private readonly deps: WorkflowTaskRuntimeDeps) {}
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private emit(type: "start" | "terminal", taskId: string, detail: string): void {
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try {
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this.deps.onEvent?.({ type, taskId, detail });
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} catch {
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// Diagnostics must never affect execution.
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}
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}
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public async run(
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task: TaskDetail,
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settings: (Pick<Settings, "experimentalFeatures"> & Partial<Settings>) | undefined,
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): Promise<WorkflowTaskRuntimeResult> {
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this.emit("start", task.id, "resolve-workflow");
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const workflowId = this.resolveWorkflowId(task.id);
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let ir: WorkflowIr;
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try {
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ir = await resolveWorkflowIrForTask(this.deps.store, task.id);
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} catch (err) {
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const reason = `workflow-resolution-error: ${err instanceof Error ? err.message : String(err)}`;
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this.emit("terminal", task.id, `failed:${reason}`);
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return {
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disposition: "failed",
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outcome: "failure",
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visitedNodeIds: [],
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context: {},
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reason,
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};
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}
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const invoked: string[] = [];
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const wrappedSeams = this.wrapSeams(invoked);
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const wrappedRunCustomNode: WorkflowCustomNodeRunner = (node, nodeTask, context) => {
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invoked.push(node.id);
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return this.deps.runCustomNode(node, nodeTask, context);
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};
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const executor = new WorkflowGraphExecutor({
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...this.deps,
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seams: wrappedSeams,
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runCustomNode: wrappedRunCustomNode,
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// WorkflowTaskRuntime is the execution engine, so internally the graph
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// executor is authoritative even before the old feature flag plumbing is
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// deleted from legacy entry points.
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runId: this.deps.runId ?? `${task.id}:${workflowId}`,
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});
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const runtimeSettings = forceWorkflowGraphExecutor(settings);
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let result: Awaited<ReturnType<WorkflowGraphExecutor["run"]>>;
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try {
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result = await executor.run(task, runtimeSettings, ir);
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} catch (err) {
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const reason = `workflow-execution-error: ${err instanceof Error ? err.message : String(err)}`;
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this.emit("terminal", task.id, `failed:${reason}`);
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return {
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disposition: "failed",
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outcome: "failure",
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visitedNodeIds: invoked,
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context: {},
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reason,
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};
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}
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const disposition: WorkflowTaskRuntimeDisposition = result.outcome === "success" ? "completed" : "failed";
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this.emit("terminal", task.id, disposition);
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return {
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disposition,
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outcome: result.outcome,
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visitedNodeIds: result.visitedNodeIds,
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context: result.context,
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};
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}
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private resolveWorkflowId(taskId: string): string {
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try {
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return this.deps.store.getTaskWorkflowSelection(taskId)?.workflowId ?? "builtin:coding";
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} catch {
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return "builtin:coding";
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}
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}
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private wrapSeams(invoked: string[]): WorkflowLegacySeams {
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const seams = this.deps.seams;
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return {
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planning: (task, context) => {
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invoked.push("planning");
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return seams.planning(task, context);
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},
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execute: (task, context) => {
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invoked.push("execute");
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return seams.execute(task, context);
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},
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review: (task, context) => {
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invoked.push("review");
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return seams.review(task, context);
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},
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merge: (task, context) => {
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invoked.push("merge");
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return seams.merge(task, context);
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},
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schedule: (task, context) => {
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invoked.push("schedule");
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return seams.schedule(task, context);
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},
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...(seams.stepExecute
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? {
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stepExecute: (task, context) => {
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invoked.push("step-execute");
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return seams.stepExecute!(task, context);
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},
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||||
}
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: {}),
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...(seams.stepReview
|
||||
? {
|
||||
stepReview: (task, context, config) => {
|
||||
invoked.push("step-review");
|
||||
return seams.stepReview!(task, context, config);
|
||||
},
|
||||
}
|
||||
: {}),
|
||||
};
|
||||
}
|
||||
}
|
||||
|
||||
function forceWorkflowGraphExecutor(
|
||||
settings: (Pick<Settings, "experimentalFeatures"> & Partial<Settings>) | undefined,
|
||||
): Pick<Settings, "experimentalFeatures"> & Partial<Settings> {
|
||||
return {
|
||||
...(settings ?? {}),
|
||||
experimentalFeatures: {
|
||||
...(settings?.experimentalFeatures ?? {}),
|
||||
workflowGraphExecutor: true,
|
||||
},
|
||||
};
|
||||
}
|
||||
Reference in New Issue
Block a user