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// Copyright 2020 The Tint Authors.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#include "src/tint/reader/wgsl/parser_impl_test_helper.h"
namespace tint::reader::wgsl {
namespace {
TEST_F(ParserImplTest, GlobalVariableDecl_WithoutConstructor) {
auto p = parser("var<private> a : f32");
auto attrs = p->attribute_list();
EXPECT_FALSE(attrs.errored);
EXPECT_FALSE(attrs.matched);
auto e = p->global_variable_decl(attrs.value);
ASSERT_FALSE(p->has_error()) << p->error();
EXPECT_TRUE(e.matched);
EXPECT_FALSE(e.errored);
ASSERT_NE(e.value, nullptr);
EXPECT_EQ(e->symbol, p->builder().Symbols().Get("a"));
EXPECT_TRUE(e->type->Is<ast::F32>());
EXPECT_EQ(e->declared_storage_class, ast::StorageClass::kPrivate);
EXPECT_EQ(e->source.range.begin.line, 1u);
EXPECT_EQ(e->source.range.begin.column, 14u);
EXPECT_EQ(e->source.range.end.line, 1u);
EXPECT_EQ(e->source.range.end.column, 15u);
ASSERT_EQ(e->constructor, nullptr);
}
TEST_F(ParserImplTest, GlobalVariableDecl_WithConstructor) {
auto p = parser("var<private> a : f32 = 1.");
auto attrs = p->attribute_list();
EXPECT_FALSE(attrs.errored);
EXPECT_FALSE(attrs.matched);
auto e = p->global_variable_decl(attrs.value);
ASSERT_FALSE(p->has_error()) << p->error();
EXPECT_TRUE(e.matched);
EXPECT_FALSE(e.errored);
ASSERT_NE(e.value, nullptr);
EXPECT_EQ(e->symbol, p->builder().Symbols().Get("a"));
EXPECT_TRUE(e->type->Is<ast::F32>());
EXPECT_EQ(e->declared_storage_class, ast::StorageClass::kPrivate);
EXPECT_EQ(e->source.range.begin.line, 1u);
EXPECT_EQ(e->source.range.begin.column, 14u);
EXPECT_EQ(e->source.range.end.line, 1u);
EXPECT_EQ(e->source.range.end.column, 15u);
ASSERT_NE(e->constructor, nullptr);
ASSERT_TRUE(e->constructor->Is<ast::FloatLiteralExpression>());
}
TEST_F(ParserImplTest, GlobalVariableDecl_WithAttribute) {
auto p = parser("@binding(2) @group(1) var<uniform> a : f32");
auto attrs = p->attribute_list();
EXPECT_FALSE(attrs.errored);
EXPECT_TRUE(attrs.matched);
auto e = p->global_variable_decl(attrs.value);
ASSERT_FALSE(p->has_error()) << p->error();
EXPECT_TRUE(e.matched);
EXPECT_FALSE(e.errored);
ASSERT_NE(e.value, nullptr);
EXPECT_EQ(e->symbol, p->builder().Symbols().Get("a"));
ASSERT_NE(e->type, nullptr);
EXPECT_TRUE(e->type->Is<ast::F32>());
EXPECT_EQ(e->declared_storage_class, ast::StorageClass::kUniform);
EXPECT_EQ(e->source.range.begin.line, 1u);
EXPECT_EQ(e->source.range.begin.column, 36u);
EXPECT_EQ(e->source.range.end.line, 1u);
EXPECT_EQ(e->source.range.end.column, 37u);
ASSERT_EQ(e->constructor, nullptr);
auto& attributes = e->attributes;
ASSERT_EQ(attributes.size(), 2u);
ASSERT_TRUE(attributes[0]->Is<ast::BindingAttribute>());
ASSERT_TRUE(attributes[1]->Is<ast::GroupAttribute>());
}
TEST_F(ParserImplTest, GlobalVariableDecl_WithAttribute_MulitpleGroups) {
auto p = parser("@binding(2) @group(1) var<uniform> a : f32");
auto attrs = p->attribute_list();
EXPECT_FALSE(attrs.errored);
EXPECT_TRUE(attrs.matched);
auto e = p->global_variable_decl(attrs.value);
ASSERT_FALSE(p->has_error()) << p->error();
EXPECT_TRUE(e.matched);
EXPECT_FALSE(e.errored);
ASSERT_NE(e.value, nullptr);
EXPECT_EQ(e->symbol, p->builder().Symbols().Get("a"));
ASSERT_NE(e->type, nullptr);
EXPECT_TRUE(e->type->Is<ast::F32>());
EXPECT_EQ(e->declared_storage_class, ast::StorageClass::kUniform);
EXPECT_EQ(e->source.range.begin.line, 1u);
EXPECT_EQ(e->source.range.begin.column, 36u);
EXPECT_EQ(e->source.range.end.line, 1u);
EXPECT_EQ(e->source.range.end.column, 37u);
ASSERT_EQ(e->constructor, nullptr);
auto& attributes = e->attributes;
ASSERT_EQ(attributes.size(), 2u);
ASSERT_TRUE(attributes[0]->Is<ast::BindingAttribute>());
ASSERT_TRUE(attributes[1]->Is<ast::GroupAttribute>());
}
TEST_F(ParserImplTest, GlobalVariableDecl_InvalidAttribute) {
auto p = parser("@binding() var<uniform> a : f32");
auto attrs = p->attribute_list();
EXPECT_TRUE(attrs.errored);
EXPECT_FALSE(attrs.matched);
auto e = p->global_variable_decl(attrs.value);
EXPECT_FALSE(e.errored);
EXPECT_TRUE(e.matched);
EXPECT_NE(e.value, nullptr);
EXPECT_TRUE(p->has_error());
EXPECT_EQ(p->error(), "1:10: expected signed integer literal for binding attribute");
}
TEST_F(ParserImplTest, GlobalVariableDecl_InvalidConstExpr) {
auto p = parser("var<private> a : f32 = if (a) {}");
auto attrs = p->attribute_list();
EXPECT_FALSE(attrs.errored);
EXPECT_FALSE(attrs.matched);
auto e = p->global_variable_decl(attrs.value);
EXPECT_TRUE(p->has_error());
EXPECT_TRUE(e.errored);
EXPECT_FALSE(e.matched);
EXPECT_EQ(e.value, nullptr);
EXPECT_EQ(p->error(), "1:24: invalid type for const_expr");
}
TEST_F(ParserImplTest, GlobalVariableDecl_InvalidVariableDecl) {
auto p = parser("var<invalid> a : f32;");
auto attrs = p->attribute_list();
EXPECT_FALSE(attrs.errored);
EXPECT_FALSE(attrs.matched);
auto e = p->global_variable_decl(attrs.value);
EXPECT_TRUE(p->has_error());
EXPECT_TRUE(e.errored);
EXPECT_FALSE(e.matched);
EXPECT_EQ(e.value, nullptr);
EXPECT_EQ(p->error(), "1:5: invalid storage class for variable declaration");
}
} // namespace
} // namespace tint::reader::wgsl