// Step 585: Workflow Visualization 2.0 (12 tests) #include "WorkflowVisualizationV2.h" #include static int passed = 0, failed = 0; #define TEST(name) { std::cout << " " << #name << "... "; } #define PASS() { std::cout << "PASS\n"; ++passed; } #define FAIL(msg) { std::cout << "FAIL: " << msg << "\n"; ++failed; } #define CHECK(cond, msg) if (!(cond)) { FAIL(msg); return; } else {} static WorkflowNodeVisual node(const std::string& id, WorkflowNodeKind kind, const std::string& label) { WorkflowNodeVisual n; n.nodeId = id; n.kind = kind; n.label = label; n.accentColorHex = "#2F7BFF"; return n; } void test_add_node_success() { TEST(add_node_success); WorkflowVisualizationGraph graph; std::string error; CHECK(WorkflowVisualizationV2::addNode(&graph, node("intake", WorkflowNodeKind::Intake, "Intake"), &error), "add node should succeed"); CHECK(graph.nodes.size() == 1, "node count mismatch"); PASS(); } void test_add_node_rejects_missing_id() { TEST(add_node_rejects_missing_id); WorkflowVisualizationGraph graph; std::string error; auto n = node("", WorkflowNodeKind::Intake, "Intake"); CHECK(!WorkflowVisualizationV2::addNode(&graph, n, &error), "add node should fail"); CHECK(error == "node_id_missing", "wrong error"); PASS(); } void test_add_node_rejects_invalid_color() { TEST(add_node_rejects_invalid_color); WorkflowVisualizationGraph graph; std::string error; auto n = node("intake", WorkflowNodeKind::Intake, "Intake"); n.accentColorHex = "blue"; CHECK(!WorkflowVisualizationV2::addNode(&graph, n, &error), "add node should fail"); CHECK(error == "node_color_invalid", "wrong error"); PASS(); } void test_add_node_rejects_duplicate() { TEST(add_node_rejects_duplicate); WorkflowVisualizationGraph graph; std::string error; CHECK(WorkflowVisualizationV2::addNode(&graph, node("intake", WorkflowNodeKind::Intake, "Intake"), &error), "first add failed"); CHECK(!WorkflowVisualizationV2::addNode(&graph, node("intake", WorkflowNodeKind::Intake, "Intake2"), &error), "duplicate should fail"); CHECK(error == "node_duplicate", "wrong error"); PASS(); } void test_add_edge_success() { TEST(add_edge_success); WorkflowVisualizationGraph graph; std::string error; CHECK(WorkflowVisualizationV2::addNode(&graph, node("a", WorkflowNodeKind::Intake, "A"), &error), "add A failed"); CHECK(WorkflowVisualizationV2::addNode(&graph, node("b", WorkflowNodeKind::ReviewGate, "B"), &error), "add B failed"); WorkflowEdgeVisual e{"edge-1", "a", "b", "needs review due to ambiguity"}; CHECK(WorkflowVisualizationV2::addEdge(&graph, e, &error), "add edge should succeed"); CHECK(graph.edges.size() == 1, "edge count mismatch"); PASS(); } void test_add_edge_rejects_missing_node_reference() { TEST(add_edge_rejects_missing_node_reference); WorkflowVisualizationGraph graph; std::string error; CHECK(WorkflowVisualizationV2::addNode(&graph, node("a", WorkflowNodeKind::Intake, "A"), &error), "add A failed"); WorkflowEdgeVisual e{"edge-1", "a", "missing", "reason"}; CHECK(!WorkflowVisualizationV2::addEdge(&graph, e, &error), "add edge should fail"); CHECK(error == "edge_node_missing", "wrong error"); PASS(); } void test_add_edge_rejects_duplicate_edge_id() { TEST(add_edge_rejects_duplicate_edge_id); WorkflowVisualizationGraph graph; std::string error; CHECK(WorkflowVisualizationV2::addNode(&graph, node("a", WorkflowNodeKind::Intake, "A"), &error), "add A failed"); CHECK(WorkflowVisualizationV2::addNode(&graph, node("b", WorkflowNodeKind::ReviewGate, "B"), &error), "add B failed"); WorkflowEdgeVisual e{"edge-1", "a", "b", "reason"}; CHECK(WorkflowVisualizationV2::addEdge(&graph, e, &error), "first edge add failed"); CHECK(!WorkflowVisualizationV2::addEdge(&graph, e, &error), "duplicate edge should fail"); CHECK(error == "edge_duplicate", "wrong error"); PASS(); } void test_outgoing_filters_by_from_node() { TEST(outgoing_filters_by_from_node); WorkflowVisualizationGraph graph; std::string error; CHECK(WorkflowVisualizationV2::addNode(&graph, node("a", WorkflowNodeKind::Intake, "A"), &error), "add A failed"); CHECK(WorkflowVisualizationV2::addNode(&graph, node("b", WorkflowNodeKind::ReviewGate, "B"), &error), "add B failed"); CHECK(WorkflowVisualizationV2::addNode(&graph, node("c", WorkflowNodeKind::TaskQueue, "C"), &error), "add C failed"); CHECK(WorkflowVisualizationV2::addEdge(&graph, {"e1", "a", "b", "r1"}, &error), "add e1 failed"); CHECK(WorkflowVisualizationV2::addEdge(&graph, {"e2", "a", "c", "r2"}, &error), "add e2 failed"); CHECK(WorkflowVisualizationV2::addEdge(&graph, {"e3", "b", "c", "r3"}, &error), "add e3 failed"); const auto out = WorkflowVisualizationV2::outgoing(graph, "a"); CHECK(out.size() == 2, "outgoing count mismatch"); PASS(); } void test_routing_summary_emits_plain_language_lines() { TEST(routing_summary_emits_plain_language_lines); WorkflowVisualizationGraph graph; std::string error; CHECK(WorkflowVisualizationV2::addNode(&graph, node("intake", WorkflowNodeKind::Intake, "Intake"), &error), "add intake failed"); CHECK(WorkflowVisualizationV2::addNode(&graph, node("review", WorkflowNodeKind::ReviewGate, "Review"), &error), "add review failed"); CHECK(WorkflowVisualizationV2::addEdge(&graph, {"e1", "intake", "review", "ambiguity requires architect review"}, &error), "add edge failed"); const auto lines = WorkflowVisualizationV2::plainLanguageRoutingSummary(graph); CHECK(lines.size() == 1, "summary size mismatch"); CHECK(lines[0].find("ambiguity requires architect review") != std::string::npos, "summary reason missing"); PASS(); } void test_nodes_by_kind_filters_review_gates() { TEST(nodes_by_kind_filters_review_gates); WorkflowVisualizationGraph graph; std::string error; CHECK(WorkflowVisualizationV2::addNode(&graph, node("intake", WorkflowNodeKind::Intake, "Intake"), &error), "add intake failed"); CHECK(WorkflowVisualizationV2::addNode(&graph, node("review1", WorkflowNodeKind::ReviewGate, "Review1"), &error), "add review1 failed"); CHECK(WorkflowVisualizationV2::addNode(&graph, node("review2", WorkflowNodeKind::ReviewGate, "Review2"), &error), "add review2 failed"); const auto reviewNodes = WorkflowVisualizationV2::nodesByKind(graph, WorkflowNodeKind::ReviewGate); CHECK(reviewNodes.size() == 2, "review node count mismatch"); PASS(); } void test_electric_blue_default_is_preserved() { TEST(electric_blue_default_is_preserved); WorkflowVisualizationGraph graph; std::string error; auto n = node("intake", WorkflowNodeKind::Intake, "Intake"); CHECK(WorkflowVisualizationV2::addNode(&graph, n, &error), "add node failed"); CHECK(graph.nodes[0].accentColorHex == "#2F7BFF", "default electric-blue mismatch"); PASS(); } void test_add_edge_rejects_missing_reason() { TEST(add_edge_rejects_missing_reason); WorkflowVisualizationGraph graph; std::string error; CHECK(WorkflowVisualizationV2::addNode(&graph, node("a", WorkflowNodeKind::Intake, "A"), &error), "add A failed"); CHECK(WorkflowVisualizationV2::addNode(&graph, node("b", WorkflowNodeKind::ReviewGate, "B"), &error), "add B failed"); CHECK(!WorkflowVisualizationV2::addEdge(&graph, {"e1", "a", "b", ""}, &error), "edge should fail"); CHECK(error == "edge_reason_missing", "wrong error"); PASS(); } int main() { std::cout << "Step 585: Workflow Visualization 2.0\n"; test_add_node_success(); // 1 test_add_node_rejects_missing_id(); // 2 test_add_node_rejects_invalid_color(); // 3 test_add_node_rejects_duplicate(); // 4 test_add_edge_success(); // 5 test_add_edge_rejects_missing_node_reference(); // 6 test_add_edge_rejects_duplicate_edge_id(); // 7 test_outgoing_filters_by_from_node(); // 8 test_routing_summary_emits_plain_language_lines();// 9 test_nodes_by_kind_filters_review_gates(); // 10 test_electric_blue_default_is_preserved(); // 11 test_add_edge_rejects_missing_reason(); // 12 std::cout << "\nResults: " << passed << "/" << (passed + failed) << " passed\n"; return failed == 0 ? 0 : 1; }