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whetstone_DSL/editor/tests/step530_test.cpp

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// Step 530: Post-Apply Structural Gate (12 tests)
#include "PostApplyStructuralGate.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 {}
static bool hasCode(const PostApplyResult& result, const std::string& code) {
for (const auto& v : result.diagnostics.violations) {
if (v.code == code) return true;
}
return false;
}
static int countCode(const PostApplyResult& result, const std::string& code) {
int count = 0;
for (const auto& v : result.diagnostics.violations) {
if (v.code == code) ++count;
}
return count;
}
void test_clean_reparse_with_no_drift_passes() {
TEST(clean_reparse_with_no_drift_passes);
PostApplyInput input{true, 0, {"cursor", "count"}, {"cursor", "count"}, {}};
auto result = PostApplyStructuralGate::validate(input);
CHECK(result.valid, "clean post-apply state should pass");
CHECK(result.diagnostics.recommendedAction == "proceed", "should proceed");
PASS();
}
void test_parse_errors_after_apply_fail_integrity_gate() {
TEST(parse_errors_after_apply_fail_integrity_gate);
PostApplyInput input{true, 2, {"cursor"}, {"cursor"}, {}};
auto result = PostApplyStructuralGate::validate(input);
CHECK(!result.valid, "parse errors should fail gate");
CHECK(hasCode(result, "ast_integrity_failure"), "missing integrity violation");
PASS();
}
void test_missing_reparse_fails_gate() {
TEST(missing_reparse_fails_gate);
PostApplyInput input{false, 0, {"cursor"}, {"cursor"}, {}};
auto result = PostApplyStructuralGate::validate(input);
CHECK(!result.valid, "missing reparse should fail");
CHECK(hasCode(result, "region_not_reparsed"), "missing reparse violation");
PASS();
}
void test_unexpected_added_symbol_fails_gate() {
TEST(unexpected_added_symbol_fails_gate);
PostApplyInput input{true, 0, {"cursor"}, {"cursor", "ghost"}, {}};
auto result = PostApplyStructuralGate::validate(input);
CHECK(!result.valid, "unexpected added symbol should fail");
CHECK(hasCode(result, "unexpected_symbol_drift_add"), "missing add drift violation");
PASS();
}
void test_unexpected_removed_symbol_fails_gate() {
TEST(unexpected_removed_symbol_fails_gate);
PostApplyInput input{true, 0, {"cursor", "count"}, {"cursor"}, {}};
auto result = PostApplyStructuralGate::validate(input);
CHECK(!result.valid, "unexpected removed symbol should fail");
CHECK(hasCode(result, "unexpected_symbol_drift_remove"), "missing remove drift violation");
PASS();
}
void test_allowed_added_symbol_drift_passes() {
TEST(allowed_added_symbol_drift_passes);
PostApplyInput input{true, 0, {"cursor"}, {"cursor", "tempAlias"}, {"tempAlias"}};
auto result = PostApplyStructuralGate::validate(input);
CHECK(result.valid, "allowed added drift should pass");
PASS();
}
void test_allowed_removed_symbol_drift_passes() {
TEST(allowed_removed_symbol_drift_passes);
PostApplyInput input{true, 0, {"cursor", "tempAlias"}, {"cursor"}, {"tempAlias"}};
auto result = PostApplyStructuralGate::validate(input);
CHECK(result.valid, "allowed removed drift should pass");
PASS();
}
void test_duplicate_symbols_do_not_create_duplicate_violations() {
TEST(duplicate_symbols_do_not_create_duplicate_violations);
PostApplyInput input{true, 0, {"cursor"}, {"cursor", "ghost", "ghost"}, {}};
auto result = PostApplyStructuralGate::validate(input);
CHECK(countCode(result, "unexpected_symbol_drift_add") == 1,
"duplicate added symbol violations should dedupe");
PASS();
}
void test_multiple_unexpected_drift_entries_are_aggregated() {
TEST(multiple_unexpected_drift_entries_are_aggregated);
PostApplyInput input{true, 0, {"cursor", "count"}, {"cursor", "newA", "newB"}, {}};
auto result = PostApplyStructuralGate::validate(input);
CHECK(!result.valid, "multiple unexpected drift should fail");
CHECK(result.addedSymbols.size() == 2, "expected two added symbols");
CHECK(result.removedSymbols.size() == 1, "expected one removed symbol");
PASS();
}
void test_empty_symbol_graphs_are_valid_when_reparse_is_clean() {
TEST(empty_symbol_graphs_are_valid_when_reparse_is_clean);
PostApplyInput input{true, 0, {}, {}, {}};
auto result = PostApplyStructuralGate::validate(input);
CHECK(result.valid, "empty symbol graphs with clean parse should pass");
PASS();
}
void test_combined_reparse_and_drift_failures_report_all() {
TEST(combined_reparse_and_drift_failures_report_all);
PostApplyInput input{false, 1, {"cursor"}, {"ghost"}, {}};
auto result = PostApplyStructuralGate::validate(input);
CHECK(hasCode(result, "region_not_reparsed"), "missing reparse violation");
CHECK(hasCode(result, "ast_integrity_failure"), "missing integrity violation");
CHECK(hasCode(result, "unexpected_symbol_drift_add"), "missing add drift violation");
CHECK(hasCode(result, "unexpected_symbol_drift_remove"), "missing remove drift violation");
CHECK(result.diagnostics.recommendedAction == "escalate", "combined failures should escalate");
PASS();
}
void test_allowed_drift_with_clean_parse_proceeds() {
TEST(allowed_drift_with_clean_parse_proceeds);
PostApplyInput input{true, 0, {"cursor"}, {"cursor", "alias"}, {"alias"}};
auto result = PostApplyStructuralGate::validate(input);
CHECK(result.valid, "allowed drift should remain valid");
CHECK(result.diagnostics.recommendedAction == "proceed", "allowed drift should proceed");
PASS();
}
int main() {
std::cout << "Step 530: Post-Apply Structural Gate\n";
test_clean_reparse_with_no_drift_passes(); // 1
test_parse_errors_after_apply_fail_integrity_gate(); // 2
test_missing_reparse_fails_gate(); // 3
test_unexpected_added_symbol_fails_gate(); // 4
test_unexpected_removed_symbol_fails_gate(); // 5
test_allowed_added_symbol_drift_passes(); // 6
test_allowed_removed_symbol_drift_passes(); // 7
test_duplicate_symbols_do_not_create_duplicate_violations(); // 8
test_multiple_unexpected_drift_entries_are_aggregated(); // 9
test_empty_symbol_graphs_are_valid_when_reparse_is_clean(); // 10
test_combined_reparse_and_drift_failures_report_all(); // 11
test_allowed_drift_with_clean_parse_proceeds(); // 12
std::cout << "\nResults: " << passed << "/" << (passed + failed) << " passed\n";
return failed == 0 ? 0 : 1;
}