Files
whetstone_DSL/editor/tests/step695_test.cpp
Bill 1696b92bb8 Add Sprints 46-59: governance, porting foundation, and language graduation prep (Steps 689-828)
Sprints 46-58 implement the cross-language porting foundation: language-to-IR
adapters, equivalence checking, gate validation, legacy ingestion, managed/dynamic
families, low-level/logic-actor semantics, debug workflow tooling, AST-native
family tools, Rust/CPP raising tools, system-level orchestration, query family,
and porting gates. Sprint 59 adds the governance layer (policy packs, review
boards, waiver packets, ambiguity triage, decision ledger) with the
whetstone_review_porting_decision MCP tool.

Also includes: sprint plans 46-130, MCP taskitem pipeline scripts,
CLAUDE.md, docs, and full test matrix (steps 689-828).

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
2026-02-22 13:18:10 -07:00

113 lines
4.0 KiB
C++

// Step 695: whetstone_get_porting_contract MCP tool (8 tests)
#include "MCPServer.h"
#include <iostream>
static int p = 0, f = 0;
#define T(n) { std::cout << " " << #n << "... "; }
#define P() { std::cout << "PASS\n"; ++p; }
#define F(m) { std::cout << "FAIL: " << m << "\n"; ++f; }
#define C(c,m) if (!(c)) { F(m); return; }
static json callTool(MCPServer& mcp, const std::string& name, const json& args) {
json req = {
{"jsonrpc", "2.0"},
{"id", 1},
{"method", "tools/call"},
{"params", {{"name", name}, {"arguments", args}}}
};
json resp = mcp.handleRequest(req);
std::string text = resp["result"]["content"][0].value("text", "{}");
return json::parse(text);
}
void t1() {
T(tool_registered);
MCPServer mcp;
json req = {{"jsonrpc", "2.0"}, {"id", 2}, {"method", "tools/list"}};
auto resp = mcp.handleRequest(req);
bool found = false;
for (const auto& t : resp["result"]["tools"]) {
if (t.value("name", "") == "whetstone_get_porting_contract") { found = true; break; }
}
C(found, "tool missing");
P();
}
void t2() {
T(pair_lookup_works);
MCPServer mcp;
auto out = callTool(mcp, "whetstone_get_porting_contract", {{"sourceLanguage", "rust"}, {"targetLanguage", "cpp"}});
C(out.value("success", false), "expected success");
C(out.value("pairFound", false), "pair should be found");
P();
}
void t3() {
T(default_thresholds);
MCPServer mcp;
auto out = callTool(mcp, "whetstone_get_porting_contract", {{"sourceLanguage", "python"}, {"targetLanguage", "go"}});
C(out.value("success", false), "expected success");
C(!out.value("pairFound", true), "pair should not be found");
C(out["thresholds"].value("minimumTestPassRate", 0.0f) == 1.0f, "default min test rate mismatch");
P();
}
void t4() {
T(override_thresholds);
MCPServer mcp;
auto out = callTool(mcp, "whetstone_get_porting_contract",
{{"sourceLanguage", "rust"},
{"targetLanguage", "cpp"},
{"overrides", {{"maxPerfRegressionPct", 2.5}, {"maxHighSeverityFindings", 1}}}});
C(out.value("success", false), "expected success");
C(out["thresholds"].value("maxPerfRegressionPct", 0.0f) == 2.5f, "override perf mismatch");
C(out["thresholds"].value("maxHighSeverityFindings", -1) == 1, "override security mismatch");
P();
}
void t5() {
T(missing_pair_fallback);
MCPServer mcp;
auto out = callTool(mcp, "whetstone_get_porting_contract", {{"sourceLanguage", "unknown"}, {"targetLanguage", "unknown"}});
C(out.value("success", false), "expected success fallback");
C(!out.value("pairFound", true), "expected pairFound false");
P();
}
void t6() {
T(error_on_invalid_payload);
MCPServer mcp;
auto out = callTool(mcp, "whetstone_get_porting_contract", {{"sourceLanguage", "rust"}});
C(!out.value("success", true), "expected failure");
C(out.value("error", "") == "target_language_missing", "wrong error");
P();
}
void t7() {
T(machine_readable_gate_list);
MCPServer mcp;
auto out = callTool(mcp, "whetstone_get_porting_contract", {{"sourceLanguage", "rust"}, {"targetLanguage", "cpp"}});
C(out.contains("requiredGates"), "requiredGates missing");
C(out["requiredGates"].is_array(), "requiredGates not array");
C(!out["requiredGates"].empty(), "requiredGates empty");
P();
}
void t8() {
T(deterministic_output);
MCPServer mcp;
auto a = callTool(mcp, "whetstone_get_porting_contract", {{"sourceLanguage", "rust"}, {"targetLanguage", "cpp"}});
auto b = callTool(mcp, "whetstone_get_porting_contract", {{"sourceLanguage", "rust"}, {"targetLanguage", "cpp"}});
C(a.dump() == b.dump(), "nondeterministic output");
P();
}
int main() {
std::cout << "Step 695: porting contract MCP tool\n";
t1(); t2(); t3(); t4(); t5(); t6(); t7(); t8();
std::cout << "\nResults: " << p << "/" << (p + f) << " passed\n";
return f ? 1 : 0;
}