Files
whetstone_DSL/editor/tests/step330_test.cpp
Bill a026743676 Step 330: Review Gates (12/12 tests)
Configurable auto-approve rules for review gate. Default policy auto-approves
deterministic/template with >=0.9 confidence. @Review(required) always
overrides. Policy serialization, wildcard rules, and 2 new MCP tools.

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
2026-02-15 19:23:06 -07:00

224 lines
7.3 KiB
C++

// Step 330: Review Gates (12 tests)
// Tests auto-approve rules, review policy, confidence thresholds,
// @Review override, custom policies, serialization, MCP tools.
#include "ReviewGate.h"
#include "MCPServer.h"
#include <iostream>
#include <string>
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 WorkItem makeItem(const std::string& name, const std::string& workerType,
bool reviewReq = false) {
WorkItem wi;
wi.id = "wi-" + name;
wi.nodeId = "n-" + name;
wi.nodeName = name;
wi.nodeType = "Function";
wi.workerType = workerType;
wi.reviewRequired = reviewReq;
wi.priority = "medium";
wi.createdAt = workItemTimestamp();
return wi;
}
static WorkItemResult makeResult(float confidence) {
WorkItemResult r;
r.generatedCode = "return 42";
r.confidence = confidence;
return r;
}
ReviewGate gate;
// 1. Deterministic + high confidence → auto-approve
void test_deterministic_auto_approve() {
TEST(deterministic_auto_approve);
auto wi = makeItem("compute", "deterministic");
auto result = makeResult(0.95f);
auto policy = ReviewPolicy::getDefault();
auto decision = gate.shouldAutoApprove(wi, result, policy);
CHECK(decision.approved, "auto-approved");
CHECK(decision.ruleMatched.find("deterministic") != std::string::npos, "matched det rule");
PASS();
}
// 2. LLM result → require review
void test_llm_requires_review() {
TEST(llm_requires_review);
auto wi = makeItem("complex", "llm");
auto result = makeResult(0.8f);
auto policy = ReviewPolicy::getDefault();
auto decision = gate.shouldAutoApprove(wi, result, policy);
CHECK(!decision.approved, "not auto-approved");
PASS();
}
// 3. Low confidence → require review even if deterministic
void test_low_confidence_rejected() {
TEST(low_confidence_rejected);
auto wi = makeItem("compute", "deterministic");
auto result = makeResult(0.4f); // below 0.9 threshold
auto policy = ReviewPolicy::getDefault();
auto decision = gate.shouldAutoApprove(wi, result, policy);
CHECK(!decision.approved, "not approved with low confidence");
PASS();
}
// 4. Template + high confidence → auto-approve
void test_template_auto_approve() {
TEST(template_auto_approve);
auto wi = makeItem("getName", "template");
auto result = makeResult(0.95f);
auto policy = ReviewPolicy::getDefault();
auto decision = gate.shouldAutoApprove(wi, result, policy);
CHECK(decision.approved, "template auto-approved");
PASS();
}
// 5. Custom policy respected
void test_custom_policy() {
TEST(custom_policy);
ReviewPolicy policy;
policy.defaultAction = "require-review";
AutoApproveRule rule;
rule.workerType = "llm";
rule.minConfidence = 0.99f;
policy.autoApproveRules.push_back(rule);
auto wi = makeItem("func", "llm");
auto result = makeResult(0.995f);
auto decision = gate.shouldAutoApprove(wi, result, policy);
CHECK(decision.approved, "llm approved with custom 0.99 threshold");
PASS();
}
// 6. Default policy behavior
void test_default_policy() {
TEST(default_policy);
auto policy = ReviewPolicy::getDefault();
CHECK(policy.defaultAction == "require-review", "default is require-review");
CHECK(policy.autoApproveRules.size() == 2, "2 default rules");
CHECK(policy.autoApproveRules[0].workerType == "deterministic", "first=deterministic");
CHECK(policy.autoApproveRules[1].workerType == "template", "second=template");
PASS();
}
// 7. Explicit @Review(required) overrides auto-approve
void test_review_required_override() {
TEST(review_required_override);
auto wi = makeItem("sensitive", "deterministic", true); // reviewRequired=true
auto result = makeResult(0.99f);
auto policy = ReviewPolicy::getDefault();
auto decision = gate.shouldAutoApprove(wi, result, policy);
CHECK(!decision.approved, "not approved despite high confidence");
CHECK(decision.ruleMatched.find("review-annotation") != std::string::npos,
"overridden by @Review");
PASS();
}
// 8. Wildcard rule matches any worker
void test_wildcard_rule() {
TEST(wildcard_rule);
ReviewPolicy policy;
policy.defaultAction = "require-review";
AutoApproveRule rule;
rule.workerType = "*";
rule.minConfidence = 0.95f;
policy.autoApproveRules.push_back(rule);
auto wi = makeItem("func", "slm");
auto result = makeResult(0.96f);
auto decision = gate.shouldAutoApprove(wi, result, policy);
CHECK(decision.approved, "wildcard matches slm");
PASS();
}
// 9. Policy serialization roundtrip
void test_policy_roundtrip() {
TEST(policy_roundtrip);
auto policy = ReviewPolicy::getDefault();
json j = policy.toJson();
auto policy2 = ReviewPolicy::fromJson(j);
CHECK(policy2.defaultAction == policy.defaultAction, "defaultAction");
CHECK(policy2.autoApproveRules.size() == policy.autoApproveRules.size(), "rules count");
CHECK(policy2.autoApproveRules[0].workerType == "deterministic", "first rule type");
CHECK(policy2.autoApproveRules[0].minConfidence > 0.89f, "first rule confidence");
PASS();
}
// 10. Empty policy uses default action
void test_empty_policy() {
TEST(empty_policy);
ReviewPolicy policy;
policy.defaultAction = "auto-approve";
// No rules
auto wi = makeItem("func", "llm");
auto result = makeResult(0.5f);
auto decision = gate.shouldAutoApprove(wi, result, policy);
CHECK(decision.approved, "default auto-approve");
CHECK(decision.ruleMatched.find("default") != std::string::npos, "matched default");
PASS();
}
// 11. Default require-review with no matching rules
void test_default_require_review() {
TEST(default_require_review);
ReviewPolicy policy;
policy.defaultAction = "require-review";
// No rules
auto wi = makeItem("func", "llm");
auto result = makeResult(0.95f);
auto decision = gate.shouldAutoApprove(wi, result, policy);
CHECK(!decision.approved, "requires review by default");
PASS();
}
// 12. Human worker always requires review (no rule matches)
void test_human_requires_review() {
TEST(human_requires_review);
auto wi = makeItem("ambiguous", "human");
auto result = makeResult(0.0f);
auto policy = ReviewPolicy::getDefault();
auto decision = gate.shouldAutoApprove(wi, result, policy);
CHECK(!decision.approved, "human not auto-approved");
PASS();
}
int main() {
std::cout << "=== Step 330: Review Gates ===\n";
try {
test_deterministic_auto_approve();
test_llm_requires_review();
test_low_confidence_rejected();
test_template_auto_approve();
test_custom_policy();
test_default_policy();
test_review_required_override();
test_wildcard_rule();
test_policy_roundtrip();
test_empty_policy();
test_default_require_review();
test_human_requires_review();
} catch (const std::exception& e) {
std::cout << "EXCEPTION: " << e.what() << "\n";
++failed;
}
std::cout << "\nResults: " << passed << "/" << (passed + failed) << " passed\n";
return failed > 0 ? 1 : 0;
}