169 lines
5.5 KiB
C++
169 lines
5.5 KiB
C++
// Copyright 2021 The Tint Authors.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#include "src/program_builder.h"
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#include "src/ast/assignment_statement.h"
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#include "src/ast/call_statement.h"
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#include "src/ast/type_name.h"
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#include "src/ast/variable_decl_statement.h"
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#include "src/debug.h"
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#include "src/demangler.h"
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#include "src/sem/expression.h"
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namespace tint {
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ProgramBuilder::ProgramBuilder()
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: id_(ProgramID::New()),
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ast_(ast_nodes_.Create<ast::Module>(id_, Source{})) {}
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ProgramBuilder::ProgramBuilder(ProgramBuilder&& rhs)
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: id_(std::move(rhs.id_)),
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types_(std::move(rhs.types_)),
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ast_nodes_(std::move(rhs.ast_nodes_)),
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sem_nodes_(std::move(rhs.sem_nodes_)),
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ast_(rhs.ast_),
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sem_(std::move(rhs.sem_)),
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symbols_(std::move(rhs.symbols_)) {
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rhs.MarkAsMoved();
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}
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ProgramBuilder::~ProgramBuilder() = default;
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ProgramBuilder& ProgramBuilder::operator=(ProgramBuilder&& rhs) {
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rhs.MarkAsMoved();
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AssertNotMoved();
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id_ = std::move(rhs.id_);
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types_ = std::move(rhs.types_);
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ast_nodes_ = std::move(rhs.ast_nodes_);
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sem_nodes_ = std::move(rhs.sem_nodes_);
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ast_ = rhs.ast_;
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sem_ = std::move(rhs.sem_);
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symbols_ = std::move(rhs.symbols_);
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return *this;
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}
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ProgramBuilder ProgramBuilder::Wrap(const Program* program) {
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ProgramBuilder builder;
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builder.id_ = program->ID();
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builder.types_ = sem::Manager::Wrap(program->Types());
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builder.ast_ = builder.create<ast::Module>(
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program->AST().source(), program->AST().GlobalDeclarations());
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builder.sem_ = sem::Info::Wrap(program->Sem());
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builder.symbols_ = program->Symbols();
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builder.diagnostics_ = program->Diagnostics();
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return builder;
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}
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bool ProgramBuilder::IsValid() const {
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return !diagnostics_.contains_errors();
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}
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std::string ProgramBuilder::str(const ast::Node* node) const {
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return Demangler().Demangle(Symbols(), node->str(Sem()));
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}
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void ProgramBuilder::MarkAsMoved() {
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AssertNotMoved();
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moved_ = true;
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}
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void ProgramBuilder::AssertNotMoved() const {
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if (moved_) {
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TINT_ICE(const_cast<ProgramBuilder*>(this)->Diagnostics())
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<< "Attempting to use ProgramBuilder after it has been moved";
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}
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}
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sem::Type* ProgramBuilder::TypeOf(ast::Expression* expr) const {
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auto* sem = Sem().Get(expr);
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return sem ? sem->Type() : nullptr;
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}
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ast::ConstructorExpression* ProgramBuilder::ConstructValueFilledWith(
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typ::Type type,
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int elem_value) {
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auto* unwrapped_type = type->UnwrapAliasIfNeeded();
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if (unwrapped_type->Is<sem::Bool>()) {
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return create<ast::ScalarConstructorExpression>(
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create<ast::BoolLiteral>(type, elem_value == 0 ? false : true));
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}
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if (unwrapped_type->Is<sem::I32>()) {
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return create<ast::ScalarConstructorExpression>(create<ast::SintLiteral>(
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type, static_cast<ProgramBuilder::i32>(elem_value)));
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}
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if (unwrapped_type->Is<sem::U32>()) {
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return create<ast::ScalarConstructorExpression>(create<ast::UintLiteral>(
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type, static_cast<ProgramBuilder::u32>(elem_value)));
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}
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if (unwrapped_type->Is<sem::F32>()) {
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return create<ast::ScalarConstructorExpression>(create<ast::FloatLiteral>(
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type, static_cast<ProgramBuilder::f32>(elem_value)));
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}
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if (auto* v = unwrapped_type->As<sem::Vector>()) {
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ast::ExpressionList el(v->size());
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for (size_t i = 0; i < el.size(); i++) {
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el[i] = ConstructValueFilledWith(v->type(), elem_value);
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}
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return create<ast::TypeConstructorExpression>(type, std::move(el));
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}
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if (auto* m = unwrapped_type->As<sem::Matrix>()) {
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auto* col_vec_type = create<sem::Vector>(m->type(), m->rows());
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ast::ExpressionList el(col_vec_type->size());
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for (size_t i = 0; i < el.size(); i++) {
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el[i] = ConstructValueFilledWith(col_vec_type, elem_value);
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}
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return create<ast::TypeConstructorExpression>(type, std::move(el));
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}
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TINT_ASSERT(false);
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return nullptr;
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}
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typ::Type ProgramBuilder::TypesBuilder::MaybeCreateTypename(
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typ::Type type) const {
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if (auto* alias = type.ast->As<ast::Alias>()) {
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return {builder->create<ast::TypeName>(alias->symbol()), type.sem};
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}
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if (auto* str = type.ast->As<ast::Struct>()) {
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return {builder->create<ast::TypeName>(str->name()), type.sem};
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}
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return type;
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}
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ProgramBuilder::TypesBuilder::TypesBuilder(ProgramBuilder* pb) : builder(pb) {}
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ast::Statement* ProgramBuilder::WrapInStatement(ast::Literal* lit) {
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return WrapInStatement(create<ast::ScalarConstructorExpression>(lit));
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}
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ast::Statement* ProgramBuilder::WrapInStatement(ast::Expression* expr) {
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// Create a temporary variable of inferred type from expr.
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return Decl(Var(symbols_.New(), nullptr, ast::StorageClass::kFunction, expr));
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}
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ast::VariableDeclStatement* ProgramBuilder::WrapInStatement(ast::Variable* v) {
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return create<ast::VariableDeclStatement>(v);
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}
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ast::Statement* ProgramBuilder::WrapInStatement(ast::Statement* stmt) {
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return stmt;
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}
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ast::Function* ProgramBuilder::WrapInFunction(ast::StatementList stmts) {
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return Func("test_function", {}, ty.void_(), std::move(stmts),
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{create<ast::StageDecoration>(ast::PipelineStage::kCompute)});
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}
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} // namespace tint
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