Files
whetstone_DSL/editor/tests/step444_test.cpp
Bill ad6c1eb1f4 Complete Sprint 20: Legacy Code Ingestion (steps 439-448, 124/124 tests)
Phase 20a delivers legacy analysis, safety audit with CWE mapping,
modernization suggestions with effort routing, and RPC/MCP tools.
Phase 20b adds multi-file migration planning, API boundary preservation,
target-language test generation, and progressive migration execution.

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
2026-02-16 19:22:15 -07:00

180 lines
7.0 KiB
C++

// Step 444: Migration Plan Generator Tests (12 tests)
#include "MigrationPlanGenerator.h"
#include <iostream>
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 {}
// Test project: 3-file C project with dependencies
// utils.c (leaf) -> parser.c (depends on utils) -> main.c (depends on parser, utils)
static std::vector<FileInfo> testProject() {
return {
{"src/utils.c",
"int clamp(int x, int lo, int hi){ return x<lo?lo:x>hi?hi:x; }\n"
"int max(int a, int b){ return a>b?a:b; }\n",
{"clamp", "max"}, {}},
{"src/parser.c",
"// parser module\n"
"#include \"utils.h\"\n"
"typedef struct { int type; char* text; } Token;\n"
"Token* parse(const char* input){ int m = max(1,2); return 0; }\n"
"void free_tokens(Token* t){ }\n"
"int token_count(Token* t){ return clamp(0,0,100); }\n",
{"parse", "free_tokens", "token_count"}, {"max", "clamp"}},
{"src/main.c",
"// main entry point\n"
"#include \"parser.h\"\n"
"#include \"utils.h\"\n"
"int main(){ Token* t = parse(\"hello\"); free_tokens(t); return 0; }\n",
{"main"}, {"parse", "free_tokens"}}
};
}
void test_plan_created_for_project() {
TEST(plan_created_for_project);
auto plan = MigrationPlanGenerator::generate("testproj", testProject(), "c", "rust");
CHECK(plan.projectName == "testproj", "expected project name");
CHECK(plan.sourceLanguage == "c", "expected source language");
CHECK(plan.targetLanguage == "rust", "expected target language");
CHECK(plan.units.size() == 3, "expected 3 units");
PASS();
}
void test_migration_units_identified() {
TEST(migration_units_identified);
auto plan = MigrationPlanGenerator::generate("testproj", testProject(), "c", "rust");
CHECK(plan.hasUnit("src/utils.c"), "expected utils.c unit");
CHECK(plan.hasUnit("src/parser.c"), "expected parser.c unit");
CHECK(plan.hasUnit("src/main.c"), "expected main.c unit");
PASS();
}
void test_module_names_extracted() {
TEST(module_names_extracted);
auto plan = MigrationPlanGenerator::generate("testproj", testProject(), "c", "rust");
auto u = plan.unitByPath("src/utils.c");
CHECK(u.moduleName == "utils", "expected module name 'utils'");
auto p = plan.unitByPath("src/parser.c");
CHECK(p.moduleName == "parser", "expected module name 'parser'");
PASS();
}
void test_dependencies_resolved() {
TEST(dependencies_resolved);
auto plan = MigrationPlanGenerator::generate("testproj", testProject(), "c", "rust");
auto parser = plan.unitByPath("src/parser.c");
CHECK(!parser.dependsOn.empty(), "parser should depend on utils");
auto main = plan.unitByPath("src/main.c");
CHECK(!main.dependsOn.empty(), "main should depend on parser");
PASS();
}
void test_leaf_modules_in_phase_zero() {
TEST(leaf_modules_in_phase_zero);
auto plan = MigrationPlanGenerator::generate("testproj", testProject(), "c", "rust");
auto utils = plan.unitByPath("src/utils.c");
CHECK(utils.phase == 0, "leaf module (utils) should be in phase 0");
PASS();
}
void test_dependent_modules_in_later_phases() {
TEST(dependent_modules_in_later_phases);
auto plan = MigrationPlanGenerator::generate("testproj", testProject(), "c", "rust");
auto utils = plan.unitByPath("src/utils.c");
auto parser = plan.unitByPath("src/parser.c");
auto main = plan.unitByPath("src/main.c");
CHECK(parser.phase > utils.phase, "parser should be after utils");
CHECK(main.phase > utils.phase, "main should be after utils");
PASS();
}
void test_migration_order_dependencies_first() {
TEST(migration_order_dependencies_first);
auto plan = MigrationPlanGenerator::generate("testproj", testProject(), "c", "rust");
auto ordered = plan.orderedUnits();
CHECK(ordered.size() == 3, "expected 3 ordered units");
CHECK(ordered[0].filePath == "src/utils.c", "utils should be first");
PASS();
}
void test_phase_count() {
TEST(phase_count);
auto plan = MigrationPlanGenerator::generate("testproj", testProject(), "c", "rust");
CHECK(plan.phaseCount >= 2, "expected at least 2 phases");
auto phase0 = plan.unitsInPhase(0);
CHECK(!phase0.empty(), "phase 0 should have units");
PASS();
}
void test_effort_classification() {
TEST(effort_classification);
auto plan = MigrationPlanGenerator::generate("testproj", testProject(), "c", "rust");
auto utils = plan.unitByPath("src/utils.c");
CHECK(utils.effort >= 1 && utils.effort <= 3, "effort should be 1-3");
// Small file = low effort
CHECK(utils.effort == 1, "small file should have low effort");
PASS();
}
void test_risk_classification() {
TEST(risk_classification);
auto plan = MigrationPlanGenerator::generate("testproj", testProject(), "c", "rust");
auto parser = plan.unitByPath("src/parser.c");
// Parser has 3 exports and dependencies → medium-high risk
CHECK(parser.risk >= 2, "parser with exports + deps should be medium-high risk");
PASS();
}
void test_routing_assigned() {
TEST(routing_assigned);
auto plan = MigrationPlanGenerator::generate("testproj", testProject(), "c", "rust");
bool hasDetOrLlm = false;
for (const auto& u : plan.units) {
if (u.routing == MigrationRouting::Deterministic ||
u.routing == MigrationRouting::LLM)
hasDetOrLlm = true;
}
CHECK(hasDetOrLlm, "expected at least one non-human routing");
PASS();
}
void test_exports_preserved_in_units() {
TEST(exports_preserved_in_units);
auto plan = MigrationPlanGenerator::generate("testproj", testProject(), "c", "rust");
auto utils = plan.unitByPath("src/utils.c");
CHECK(utils.exports.size() == 2, "utils should have 2 exports");
bool foundClamp = false, foundMax = false;
for (const auto& e : utils.exports) {
if (e == "clamp") foundClamp = true;
if (e == "max") foundMax = true;
}
CHECK(foundClamp && foundMax, "expected clamp and max exports");
PASS();
}
int main() {
std::cout << "Step 444: Migration Plan Generator Tests\n";
test_plan_created_for_project(); // 1
test_migration_units_identified(); // 2
test_module_names_extracted(); // 3
test_dependencies_resolved(); // 4
test_leaf_modules_in_phase_zero(); // 5
test_dependent_modules_in_later_phases(); // 6
test_migration_order_dependencies_first(); // 7
test_phase_count(); // 8
test_effort_classification(); // 9
test_risk_classification(); // 10
test_routing_assigned(); // 11
test_exports_preserved_in_units(); // 12
std::cout << "\nResults: " << passed << "/" << (passed + failed)
<< " passed\n";
return failed == 0 ? 0 : 1;
}