Add binops for all int types
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@ -7,13 +7,33 @@ namespace types {
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auto int_ty = std::shared_ptr<types::Type>{
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new types::FundamentalType{ false, types::FundamentalTypeKind::Int } };
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auto uint_ty = std::shared_ptr<types::Type>{
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new types::FundamentalType{ false, types::FundamentalTypeKind::UInt } };
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auto char_ty = std::shared_ptr<types::Type>{
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new types::FundamentalType{ false, types::FundamentalTypeKind::Char } };
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auto uchar_ty = std::shared_ptr<types::Type>{
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new types::FundamentalType{ false, types::FundamentalTypeKind::UChar } };
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auto short_int_ty = std::shared_ptr<types::Type>{
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new types::FundamentalType{ false, types::FundamentalTypeKind::ShortInt } };
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auto ushort_int_ty = std::shared_ptr<types::Type>{
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new types::FundamentalType{ false, types::FundamentalTypeKind::UShortInt } };
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auto long_int_ty = std::shared_ptr<types::Type>{
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new types::FundamentalType{ false, types::FundamentalTypeKind::LongInt } };
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auto ulong_int_ty = std::shared_ptr<types::Type>{
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new types::FundamentalType{ false, types::FundamentalTypeKind::ULongInt } };
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auto long_long_int_ty = std::shared_ptr<types::Type>{
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new types::FundamentalType{ false, types::FundamentalTypeKind::LongLongInt } };
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auto ulong_long_int_ty = std::shared_ptr<types::Type>{
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new types::FundamentalType{ false, types::FundamentalTypeKind::ULongLongInt } };
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auto bool_ty = std::shared_ptr<types::Type>{
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new types::FundamentalType{ false, types::FundamentalTypeKind::Bool } };
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// Integer arithmetic binops
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for (auto& ty : { int_ty, char_ty, bool_ty }) {
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for (auto& ty : {
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short_int_ty, int_ty, long_int_ty, long_long_int_ty, char_ty,
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ushort_int_ty, uint_ty, ulong_int_ty, ulong_long_int_ty, uchar_ty,
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bool_ty
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}) {
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definitions.push_back(BinopDefinition{
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ty, types::BinOp::Add, ty,
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[](codegen::Builder& builder, llvm::Value* lhs, llvm::Value* rhs) {
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@ -244,6 +244,31 @@ namespace AST {
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}
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}
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// if that fails, accept binops that match the result type perfectly and
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// is able to cast both types successfully
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for (auto& binop : state.binops) {
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if (expected_ty) {
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// Skip any binops that would not be immediately assignable to
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// the expected type
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if (!types::types_equal(binop.result(binop, lhs_ty, rhs_ty), *expected_ty)) {
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continue;
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}
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}
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auto rhs_res = check_type(state, rhs_ty, binop.rhs);
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auto lhs_res = check_type(state, lhs_ty, binop.lhs);
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if (!rhs_res.ok() || !lhs_res.ok())
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continue;
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lhs_ty = this->m_lhs->typecheck(state, scope, binop.lhs).type;
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rhs_ty = this->m_rhs->typecheck(state, scope, binop.rhs).type;
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lhs_res = check_type(state, lhs_ty, binop.lhs);
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rhs_res = check_type(state, rhs_ty, binop.rhs);
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this->m_lhs = handle_res(std::move(this->m_lhs), lhs_res, state);
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this->m_rhs = handle_res(std::move(this->m_rhs), rhs_res, state);
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return { binop.result(binop, lhs_ty, rhs_ty), false, false };
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}
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// Finally check for any binop that allows the result to be implicitly
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// casted to the result
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for (auto& binop : state.binops) {
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