// Step 583: Sprint 32 Integration + Summary (8 tests) #include "Sprint32IntegrationSummary.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 bool hasNote(const Sprint32IntegrationResult& r, const std::string& note) { for (const auto& n : r.notes) if (n == note) return true; return false; } static Sprint32Signals allPass() { Sprint32Signals s; s.markdownSpecParser = true; s.requirementNormalization = true; s.scopeMilestoneDecomposer = true; s.architectReviewSurface = true; s.phase32aIntegration = true; s.taskitemGeneratorV2 = true; s.confidenceAmbiguityAnnotation = true; s.acceptanceCriteriaBinding = true; s.intakeQueueSimulationHarness = true; return s; } void test_all_signals_pass_sprint() { TEST(all_signals_pass_sprint); auto r = Sprint32IntegrationSummary::summarize(allPass()); CHECK(r.phase32aPass, "phase32a should pass"); CHECK(r.phase32bPass, "phase32b should pass"); CHECK(r.sprint32Pass, "sprint32 should pass"); PASS(); } void test_phase32a_failure_blocks_sprint() { TEST(phase32a_failure_blocks_sprint); auto s = allPass(); s.architectReviewSurface = false; auto r = Sprint32IntegrationSummary::summarize(s); CHECK(!r.phase32aPass, "phase32a should fail"); CHECK(!r.sprint32Pass, "sprint32 should fail"); CHECK(hasNote(r, "fail:step577_architect_review_surface"), "step577 failure note expected"); PASS(); } void test_phase32b_failure_blocks_sprint() { TEST(phase32b_failure_blocks_sprint); auto s = allPass(); s.acceptanceCriteriaBinding = false; auto r = Sprint32IntegrationSummary::summarize(s); CHECK(!r.phase32bPass, "phase32b should fail"); CHECK(!r.sprint32Pass, "sprint32 should fail"); CHECK(hasNote(r, "fail:step581_acceptance_criteria_binding"), "step581 failure note expected"); PASS(); } void test_success_notes_emitted_on_full_pass() { TEST(success_notes_emitted_on_full_pass); auto r = Sprint32IntegrationSummary::summarize(allPass()); CHECK(hasNote(r, "sprint32:architect_intake_pipeline_ready"), "success note missing"); CHECK(hasNote(r, "sprint32:taskitem_queue_quality_signals_ready"), "success note missing"); CHECK(hasNote(r, "sprint32:markdown_to_constrained_execution_stable"), "success note missing"); PASS(); } void test_blocked_phase_notes_emitted_on_failure() { TEST(blocked_phase_notes_emitted_on_failure); auto s = allPass(); s.markdownSpecParser = false; s.taskitemGeneratorV2 = false; auto r = Sprint32IntegrationSummary::summarize(s); CHECK(hasNote(r, "phase32a:blocked"), "phase32a blocked note expected"); CHECK(hasNote(r, "phase32b:blocked"), "phase32b blocked note expected"); PASS(); } void test_multiple_failure_notes_aggregate() { TEST(multiple_failure_notes_aggregate); auto s = allPass(); s.requirementNormalization = false; s.phase32aIntegration = false; s.intakeQueueSimulationHarness = false; auto r = Sprint32IntegrationSummary::summarize(s); CHECK(hasNote(r, "fail:step575_requirement_normalization"), "step575 failure note missing"); CHECK(hasNote(r, "fail:step578_phase32a_integration"), "step578 failure note missing"); CHECK(hasNote(r, "fail:step582_intake_queue_simulation_harness"), "step582 failure note missing"); PASS(); } void test_all_false_signals_fail_all_phases() { TEST(all_false_signals_fail_all_phases); Sprint32Signals s; auto r = Sprint32IntegrationSummary::summarize(s); CHECK(!r.phase32aPass && !r.phase32bPass && !r.sprint32Pass, "all phases should fail"); PASS(); } void test_single_phase32b_failure_keeps_phase32a_passed() { TEST(single_phase32b_failure_keeps_phase32a_passed); auto s = allPass(); s.confidenceAmbiguityAnnotation = false; auto r = Sprint32IntegrationSummary::summarize(s); CHECK(r.phase32aPass, "phase32a should remain pass"); CHECK(!r.phase32bPass, "phase32b should fail"); PASS(); } int main() { std::cout << "Step 583: Sprint 32 Integration + Summary\n"; test_all_signals_pass_sprint(); // 1 test_phase32a_failure_blocks_sprint(); // 2 test_phase32b_failure_blocks_sprint(); // 3 test_success_notes_emitted_on_full_pass(); // 4 test_blocked_phase_notes_emitted_on_failure(); // 5 test_multiple_failure_notes_aggregate(); // 6 test_all_false_signals_fail_all_phases(); // 7 test_single_phase32b_failure_keeps_phase32a_passed();// 8 std::cout << "\nResults: " << passed << "/" << (passed + failed) << " passed\n"; return failed == 0 ? 0 : 1; }