Files
furlang/furc/test/parser.cpp
T
CHatingPython f4efb53531 Add var assign expression
Signed-off-by: CHatingPython <chatingpython@gmail.com>
2026-05-31 19:16:51 +02:00

274 lines
11 KiB
C++

#include "furc/front/parser.hpp"
#include "gtest/gtest.h"
namespace {
using namespace furc::front;
using namespace furc::ast;
using namespace std::string_view_literals;
TEST(Parser, EmptyFunctions) {
parser parser("<TEMP>", "func main() {}\nfunc foo();");
auto program = parser.parse();
EXPECT_TRUE(program.present());
EXPECT_EQ(program->declarations().size(), 2);
{
auto first = program->declarations()[0];
EXPECT_TRUE(first.present());
EXPECT_EQ(first->declaration_type(), declaration_node_t::FunctionDefinition);
function_definition_node_h funcDef = first;
EXPECT_EQ(funcDef->name()->string, "main");
EXPECT_EQ(funcDef->body()->statements.size(), 0);
}
{
auto second = program->declarations()[1];
EXPECT_TRUE(second.present());
EXPECT_EQ(second->declaration_type(), declaration_node_t::FunctionDeclaration);
function_declaration_node_h funcDecl = second;
EXPECT_EQ(funcDecl->name()->string, "foo");
}
}
TEST(Parser, Literals) {
parser parser("<TEMP>", R"(
func test1() { return 67; }
func test2() { return "uwu"; }
)");
auto program = parser.parse();
EXPECT_TRUE(program.present());
EXPECT_EQ(program->declarations().size(), 2);
{
auto test1 = program->declarations()[0];
EXPECT_TRUE(test1.present());
EXPECT_EQ(test1->declaration_type(), declaration_node_t::FunctionDefinition);
function_definition_node_h funcDef = test1;
EXPECT_EQ(funcDef->name()->string, "test1");
EXPECT_EQ(funcDef->body()->statements.size(), 1);
return_statement_node_h ret = funcDef->body()->statements[0];
EXPECT_EQ(ret->value(), integer_literal_node({ furc::location{ "<TEMP>", 1, 26 }, 67 }));
}
{
auto test2 = program->declarations()[1];
EXPECT_TRUE(test2.present());
EXPECT_EQ(test2->declaration_type(), declaration_node_t::FunctionDefinition);
function_definition_node_h funcDecl = test2;
EXPECT_EQ(funcDecl->name()->string, "test2");
}
}
#define EXPECT_INTLIT(expr, integer) \
do { \
EXPECT_EQ((expr)->expression_type(), expression_node_t::Literal); \
literal_node_h literal = (expr); \
EXPECT_EQ(literal->literal_type(), literal_node_t::Integer); \
integer_literal_node_h intLit = literal; \
EXPECT_EQ(*intLit, (integer)); \
} while (0)
#define EXPECT_VARREAD(expr, varname) \
do { \
EXPECT_EQ((expr)->expression_type(), expression_node_t::VarRead); \
var_read_expression_node_h varRead = (expr); \
EXPECT_EQ(varRead->get_name(), (varname)); \
} while (0)
// TODO: Use arena (I am too exhausted rn to do it)
TEST(Parser, OperatorPrecedence_AddMul) {
parser parser("<TEMP>", "func main() { return 1 + 2 * 3; }");
auto program = parser.parse();
EXPECT_TRUE(program.present());
EXPECT_EQ(program->declarations().size(), 1);
auto func = program->declarations()[0];
EXPECT_TRUE(func.present());
EXPECT_EQ(func->declaration_type(), declaration_node_t::FunctionDefinition);
function_definition_node_h funcDef = func;
EXPECT_EQ(funcDef->name()->string, "main");
EXPECT_EQ(funcDef->body()->statements.size(), 1);
return_statement_node_h ret = funcDef->body()->statements[0];
auto retVal = ret->value();
EXPECT_TRUE(retVal.present());
EXPECT_EQ(retVal->expression_type(), expression_node_t::Binop);
binop_expression_node_h add = retVal;
EXPECT_EQ(add->type(), binop_expression_node_t::Add);
EXPECT_INTLIT(add->lhs(), 1);
EXPECT_EQ(add->rhs()->expression_type(), expression_node_t::Binop);
binop_expression_node_h mul = add->rhs();
EXPECT_EQ(mul->type(), binop_expression_node_t::Mul);
EXPECT_INTLIT(mul->lhs(), 2);
EXPECT_INTLIT(mul->rhs(), 3);
}
TEST(Parser, OperatorPrecedence_Complex) {
parser parser("<TEMP>", "func main() { return 1 + 2 * 3 - 4 / 2; }");
auto program = parser.parse();
EXPECT_TRUE(program.present());
EXPECT_EQ(program->declarations().size(), 1);
auto func = program->declarations()[0];
EXPECT_TRUE(func.present());
EXPECT_EQ(func->declaration_type(), declaration_node_t::FunctionDefinition);
function_definition_node_h funcDef = func;
EXPECT_EQ(funcDef->name()->string, "main");
EXPECT_EQ(funcDef->body()->statements.size(), 1);
return_statement_node_h ret = funcDef->body()->statements[0];
auto retVal = ret->value();
EXPECT_TRUE(retVal.present());
EXPECT_EQ(retVal->expression_type(), expression_node_t::Binop);
binop_expression_node_h sub = retVal;
EXPECT_EQ(sub->type(), binop_expression_node_t::Sub);
EXPECT_EQ(sub->lhs()->expression_type(), expression_node_t::Binop);
binop_expression_node_h add = sub->lhs();
EXPECT_EQ(add->type(), binop_expression_node_t::Add);
EXPECT_INTLIT(add->lhs(), 1);
EXPECT_EQ(add->rhs()->expression_type(), expression_node_t::Binop);
binop_expression_node_h mul = add->rhs();
EXPECT_EQ(mul->type(), binop_expression_node_t::Mul);
EXPECT_INTLIT(mul->lhs(), 2);
EXPECT_INTLIT(mul->rhs(), 3);
EXPECT_EQ(sub->rhs()->expression_type(), expression_node_t::Binop);
binop_expression_node_h div = sub->rhs();
EXPECT_EQ(div->type(), binop_expression_node_t::Div);
EXPECT_INTLIT(div->lhs(), 4);
EXPECT_INTLIT(div->rhs(), 2);
}
TEST(Parser, UnaryOperator_Simple) {
parser parser("<TEMP>", "func main() { return -5; }");
auto program = parser.parse();
EXPECT_TRUE(program.present());
EXPECT_EQ(program->declarations().size(), 1);
auto func = program->declarations()[0];
EXPECT_TRUE(func.present());
EXPECT_EQ(func->declaration_type(), declaration_node_t::FunctionDefinition);
function_definition_node_h funcDef = func;
EXPECT_EQ(funcDef->name()->string, "main");
EXPECT_EQ(funcDef->body()->statements.size(), 1);
return_statement_node_h ret = funcDef->body()->statements[0];
auto retVal = ret->value();
EXPECT_TRUE(retVal.present());
EXPECT_EQ(retVal->expression_type(), expression_node_t::Unaryop);
unaryop_expression_node_h neg = retVal;
EXPECT_EQ(neg->type(), unaryop_expression_node_t::Negative);
EXPECT_INTLIT(neg->get_node(), 5);
}
TEST(Parser, UnaryOperator_PrePost) {
parser parser("<TEMP>", "func main() { return --5++; }");
auto program = parser.parse();
EXPECT_TRUE(program.present());
EXPECT_EQ(program->declarations().size(), 1);
auto func = program->declarations()[0];
EXPECT_TRUE(func.present());
EXPECT_EQ(func->declaration_type(), declaration_node_t::FunctionDefinition);
function_definition_node_h funcDef = func;
EXPECT_EQ(funcDef->name()->string, "main");
EXPECT_EQ(funcDef->body()->statements.size(), 1);
return_statement_node_h ret = funcDef->body()->statements[0];
auto retVal = ret->value();
EXPECT_TRUE(retVal.present());
EXPECT_EQ(retVal->expression_type(), expression_node_t::Unaryop);
unaryop_expression_node_h inc = retVal;
EXPECT_EQ(inc->type(), unaryop_expression_node_t::PostfixIncrement);
EXPECT_EQ(inc->get_node()->expression_type(), expression_node_t::Unaryop);
unaryop_expression_node_h dec = inc->get_node();
EXPECT_INTLIT(dec->get_node(), 5);
}
TEST(Parser, Paren) {
parser parser("<TEMP>", "func main() { return --(x++); }");
auto program = parser.parse();
EXPECT_TRUE(program.present());
EXPECT_EQ(program->declarations().size(), 1);
auto func = program->declarations()[0];
EXPECT_TRUE(func.present());
EXPECT_EQ(func->declaration_type(), declaration_node_t::FunctionDefinition);
function_definition_node_h funcDef = func;
EXPECT_EQ(funcDef->name()->string, "main");
EXPECT_EQ(funcDef->body()->statements.size(), 1);
return_statement_node_h ret = funcDef->body()->statements[0];
auto retVal = ret->value();
EXPECT_TRUE(retVal.present());
EXPECT_EQ(retVal->expression_type(), expression_node_t::Unaryop);
unaryop_expression_node_h dec = retVal;
EXPECT_EQ(dec->type(), unaryop_expression_node_t::PrefixDecrement);
EXPECT_EQ(dec->get_node()->expression_type(), expression_node_t::Unaryop);
unaryop_expression_node_h inc = dec->get_node();
EXPECT_EQ(inc->type(), unaryop_expression_node_t::PostfixIncrement);
EXPECT_VARREAD(inc->get_node(), "x");
}
TEST(Parser, Assignment) {
parser parser("<TEMP>", "func main() { x = 10; }");
auto program = parser.parse();
EXPECT_TRUE(program.present());
EXPECT_EQ(program->declarations().size(), 1);
auto func = program->declarations()[0];
EXPECT_TRUE(func.present());
EXPECT_EQ(func->declaration_type(), declaration_node_t::FunctionDefinition);
function_definition_node_h funcDef = func;
EXPECT_EQ(funcDef->name()->string, "main");
EXPECT_EQ(funcDef->body()->statements.size(), 1);
EXPECT_EQ(funcDef->body()->statements[0]->statement_type(), statement_node_t::Expression);
expression_node_h expr = funcDef->body()->statements[0];
EXPECT_EQ(expr->expression_type(), expression_node_t::VarAssign);
var_assign_expression_node_h assign = expr;
EXPECT_EQ(assign->compound(), binop_expression_node_t::None);
expression_node_h lhs = assign->lhs();
EXPECT_EQ(lhs->expression_type(), expression_node_t::VarRead);
var_read_expression_node_h varRead = lhs;
EXPECT_EQ(varRead->get_name(), "x");
expression_node_h rhs = assign->rhs();
EXPECT_EQ(rhs->expression_type(), expression_node_t::Literal);
EXPECT_INTLIT(rhs, 10);
}
TEST(Parser, CompoundAssignment) {
parser parser("<TEMP>", "func main() { x += 10; }");
auto program = parser.parse();
EXPECT_TRUE(program.present());
EXPECT_EQ(program->declarations().size(), 1);
auto func = program->declarations()[0];
EXPECT_TRUE(func.present());
EXPECT_EQ(func->declaration_type(), declaration_node_t::FunctionDefinition);
function_definition_node_h funcDef = func;
EXPECT_EQ(funcDef->name()->string, "main");
EXPECT_EQ(funcDef->body()->statements.size(), 1);
EXPECT_EQ(funcDef->body()->statements[0]->statement_type(), statement_node_t::Expression);
expression_node_h expr = funcDef->body()->statements[0];
EXPECT_EQ(expr->expression_type(), expression_node_t::VarAssign);
var_assign_expression_node_h assign = expr;
EXPECT_EQ(assign->compound(), binop_expression_node_t::Add);
expression_node_h lhs = assign->lhs();
EXPECT_EQ(lhs->expression_type(), expression_node_t::VarRead);
var_read_expression_node_h varRead = lhs;
EXPECT_EQ(varRead->get_name(), "x");
expression_node_h rhs = assign->rhs();
EXPECT_EQ(rhs->expression_type(), expression_node_t::Literal);
EXPECT_INTLIT(rhs, 10);
}
} // namespace