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whetstone_DSL/editor/tests/step465_test.cpp

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6.2 KiB
C++

// Step 465: Phase 22a Integration Tests (8 tests)
#include "ast/ArmAssemblyParser.h"
#include "ast/AssemblyAnnotationMapper.h"
#include "ast/AssemblyGenerator.h"
#include "ast/X86AssemblyParser.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 {}
void test_parse_realistic_x86_to_valid_ast() {
TEST(parse_realistic_x86_to_valid_ast);
std::string src =
".global main\n"
".text\n"
"main:\n"
" push rbp\n"
" mov rbp, rsp\n"
" add rax, 1\n"
" pop rbp\n"
" ret\n";
auto mod = X86AssemblyParser::parseX86(src);
CHECK(mod->getChildren("functions").size() == 1, "expected one function");
auto* fn = static_cast<Function*>(mod->getChildren("functions")[0]);
CHECK(fn->getChildren("body").size() >= 6, "expected label + instructions");
PASS();
}
void test_parse_realistic_arm_to_valid_ast() {
TEST(parse_realistic_arm_to_valid_ast);
std::string src =
".global main\n"
".text\n"
"main:\n"
" MOV x0, x1\n"
" ADD x0, x0, #1\n"
" RET\n";
auto mod = ArmAssemblyParser::parseArm(src);
CHECK(mod->getChildren("functions").size() == 1, "expected one function");
auto* fn = static_cast<Function*>(mod->getChildren("functions")[0]);
CHECK(fn->getChildren("body").size() >= 4, "expected label + instructions");
PASS();
}
void test_cross_arch_x86_to_arm_simple_translation() {
TEST(cross_arch_x86_to_arm_simple_translation);
std::string src = ".text\nmain:\n mov rax, rbx\n add rax, 1\n jmp done\n ret\ndone:\n ret\n";
auto mod = X86AssemblyParser::parseX86(src);
auto* fn = static_cast<Function*>(mod->getChildren("functions")[0]);
std::vector<AssemblyInstruction> insts;
for (auto* n : fn->getChildren("body")) {
if (n->conceptType == "AssemblyInstruction")
insts.push_back(*static_cast<AssemblyInstruction*>(n));
}
auto mapped = AssemblyGenerator::translateX86ToArmSimple(insts);
CHECK(mapped.size() >= 3, "expected mapped instructions");
CHECK(mapped[0].opcode == "mov", "mov mapping failed");
CHECK(mapped[2].opcode == "b", "jmp should map to b");
PASS();
}
void test_assembly_to_c_lifting_produces_stub() {
TEST(assembly_to_c_lifting_produces_stub);
std::string src = ".text\nmain:\n mov rax, rbx\n ret\n";
auto mod = X86AssemblyParser::parseX86(src);
auto* fn = static_cast<Function*>(mod->getChildren("functions")[0]);
auto c = AssemblyAnnotationMapper::liftAssemblyToC(*fn);
CHECK(c.find("int main()") != std::string::npos, "missing lifted function");
CHECK(c.find("return 0;") != std::string::npos, "missing return in lifted stub");
PASS();
}
void test_c_to_assembly_lowering_annotations_and_shape() {
TEST(c_to_assembly_lowering_annotations_and_shape);
auto x86 = AssemblyAnnotationMapper::lowerCToAssembly("int add(int a, int b)", "x86");
auto arm = AssemblyAnnotationMapper::lowerCToAssembly("int add(int a, int b)", "arm");
CHECK(x86.find(".global add") != std::string::npos, "missing x86 global");
CHECK(arm.find(".global add") != std::string::npos, "missing arm global");
CHECK(arm.find("@ lowered from C function") != std::string::npos, "missing arm comment style");
PASS();
}
void test_annotations_meaningful_for_assembly() {
TEST(annotations_meaningful_for_assembly);
std::string src = ".text\nmain:\n mov rax, rbx\n add rax, 1\n ret\n";
auto mod = X86AssemblyParser::parseX86(src);
auto* fn = static_cast<Function*>(mod->getChildren("functions")[0]);
auto report = AssemblyAnnotationMapper::analyzeFunction(*fn);
bool hasExec = false, hasRisk = false, hasComplexity = false;
for (const auto& a : report.annotations) {
if (a == "@Exec(native)") hasExec = true;
if (a == "@Risk(high)") hasRisk = true;
if (a.find("@Complexity(") != std::string::npos) hasComplexity = true;
}
CHECK(hasExec && hasRisk && hasComplexity, "expected core assembly annotations");
PASS();
}
void test_end_to_end_parse_annotate_generate_arm() {
TEST(end_to_end_parse_annotate_generate_arm);
std::string src = ".text\nmain:\n MOV r0, r1\n RET\n";
auto mod = ArmAssemblyParser::parseArm(src);
auto* fn = static_cast<Function*>(mod->getChildren("functions")[0]);
auto report = AssemblyAnnotationMapper::analyzeFunction(*fn);
auto out = AssemblyGenerator::generateArm(*mod);
CHECK(!report.annotations.empty(), "expected annotations");
CHECK(out.find("main:") != std::string::npos, "expected generated arm label");
CHECK(out.find("mov r0, r1") != std::string::npos, "expected generated arm instruction");
PASS();
}
void test_assembly_ast_node_roundtrip_serialization() {
TEST(assembly_ast_node_roundtrip_serialization);
AssemblyInstruction i("add", {"r0", "r1"});
i.registers.emplace_back("r0", 32);
i.registers.emplace_back("r1", 32);
AssemblyMemoryOperand m;
m.baseRegister = "r2";
m.offset = 4;
i.memoryOperands.push_back(m);
auto j = toJson(i);
auto out = instructionFromJson(j);
CHECK(out.opcode == "add", "opcode roundtrip failed");
CHECK(out.operands.size() == 2, "operand roundtrip failed");
CHECK(out.registers.size() == 2, "register roundtrip failed");
CHECK(out.memoryOperands.size() == 1, "memory roundtrip failed");
PASS();
}
int main() {
std::cout << "Step 465: Phase 22a Integration Tests\n";
test_parse_realistic_x86_to_valid_ast(); // 1
test_parse_realistic_arm_to_valid_ast(); // 2
test_cross_arch_x86_to_arm_simple_translation(); // 3
test_assembly_to_c_lifting_produces_stub(); // 4
test_c_to_assembly_lowering_annotations_and_shape(); // 5
test_annotations_meaningful_for_assembly(); // 6
test_end_to_end_parse_annotate_generate_arm(); // 7
test_assembly_ast_node_roundtrip_serialization(); // 8
std::cout << "\nResults: " << passed << "/" << (passed + failed)
<< " passed\n";
return failed == 0 ? 0 : 1;
}