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Fixes a TODO Bug: tint:60 Change-Id: Ica44d6dbff682374473cacec9d0515e6d3b02f4c Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/45245 Commit-Queue: Ben Clayton <bclayton@google.com> Reviewed-by: David Neto <dneto@google.com>
151 lines
5.5 KiB
C++
151 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/resolver/resolver.h"
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#include "gmock/gmock.h"
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#include "src/resolver/resolver_test_helper.h"
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#include "src/type/access_control_type.h"
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namespace tint {
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namespace resolver {
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namespace {
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using ResolverIsHostSharable = ResolverTest;
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TEST_F(ResolverIsHostSharable, Void) {
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EXPECT_FALSE(r()->IsHostSharable(ty.void_()));
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}
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TEST_F(ResolverIsHostSharable, Bool) {
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EXPECT_FALSE(r()->IsHostSharable(ty.bool_()));
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}
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TEST_F(ResolverIsHostSharable, NumericScalar) {
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EXPECT_TRUE(r()->IsHostSharable(ty.i32()));
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EXPECT_TRUE(r()->IsHostSharable(ty.u32()));
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EXPECT_TRUE(r()->IsHostSharable(ty.f32()));
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}
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TEST_F(ResolverIsHostSharable, NumericVector) {
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EXPECT_TRUE(r()->IsHostSharable(ty.vec2<i32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.vec3<i32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.vec4<i32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.vec2<u32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.vec3<u32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.vec4<u32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.vec2<f32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.vec3<f32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.vec4<f32>()));
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}
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TEST_F(ResolverIsHostSharable, BoolVector) {
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EXPECT_FALSE(r()->IsHostSharable(ty.vec2<bool>()));
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EXPECT_FALSE(r()->IsHostSharable(ty.vec3<bool>()));
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EXPECT_FALSE(r()->IsHostSharable(ty.vec4<bool>()));
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EXPECT_FALSE(r()->IsHostSharable(ty.vec2<bool>()));
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EXPECT_FALSE(r()->IsHostSharable(ty.vec3<bool>()));
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EXPECT_FALSE(r()->IsHostSharable(ty.vec4<bool>()));
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EXPECT_FALSE(r()->IsHostSharable(ty.vec2<bool>()));
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EXPECT_FALSE(r()->IsHostSharable(ty.vec3<bool>()));
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EXPECT_FALSE(r()->IsHostSharable(ty.vec4<bool>()));
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}
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TEST_F(ResolverIsHostSharable, Matrix) {
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EXPECT_TRUE(r()->IsHostSharable(ty.mat2x2<f32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.mat2x3<f32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.mat2x4<f32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.mat3x2<f32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.mat3x3<f32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.mat3x4<f32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.mat4x2<f32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.mat4x3<f32>()));
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EXPECT_TRUE(r()->IsHostSharable(ty.mat4x4<f32>()));
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}
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TEST_F(ResolverIsHostSharable, Pointer) {
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EXPECT_FALSE(
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r()->IsHostSharable(ty.pointer<i32>(ast::StorageClass::kPrivate)));
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}
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TEST_F(ResolverIsHostSharable, AliasVoid) {
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EXPECT_FALSE(r()->IsHostSharable(ty.alias("a", ty.void_())));
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}
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TEST_F(ResolverIsHostSharable, AliasI32) {
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EXPECT_TRUE(r()->IsHostSharable(ty.alias("a", ty.i32())));
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}
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TEST_F(ResolverIsHostSharable, AccessControlVoid) {
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EXPECT_FALSE(r()->IsHostSharable(
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create<type::AccessControl>(ast::AccessControl::kReadOnly, ty.void_())));
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}
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TEST_F(ResolverIsHostSharable, AccessControlI32) {
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EXPECT_TRUE(r()->IsHostSharable(
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create<type::AccessControl>(ast::AccessControl::kReadOnly, ty.i32())));
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}
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TEST_F(ResolverIsHostSharable, ArraySizedOfHostSharable) {
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EXPECT_TRUE(r()->IsHostSharable(ty.array(ty.i32(), 5)));
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}
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TEST_F(ResolverIsHostSharable, ArrayUnsizedOfHostSharable) {
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EXPECT_TRUE(r()->IsHostSharable(ty.array<i32>()));
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}
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TEST_F(ResolverIsHostSharable, Struct_AllMembersHostSharable) {
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EXPECT_TRUE(r()->IsHostSharable(Structure("S", {
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Member("a", ty.i32()),
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Member("b", ty.f32()),
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})));
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}
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TEST_F(ResolverIsHostSharable, Struct_SomeMembersNonHostSharable) {
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auto* ptr_ty = ty.pointer<i32>(ast::StorageClass::kPrivate);
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EXPECT_FALSE(r()->IsHostSharable(Structure("S", {
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Member("a", ty.i32()),
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Member("b", ptr_ty),
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})));
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}
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TEST_F(ResolverIsHostSharable, Struct_NestedHostSharable) {
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auto* host_sharable = Structure("S", {
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Member("a", ty.i32()),
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Member("b", ty.f32()),
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});
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EXPECT_TRUE(r()->IsHostSharable(Structure("S", {
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Member("a", ty.i32()),
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Member("b", host_sharable),
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})));
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}
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TEST_F(ResolverIsHostSharable, Struct_NestedNonHostSharable) {
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auto* ptr_ty = ty.pointer<i32>(ast::StorageClass::kPrivate);
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auto* non_host_sharable =
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Structure("non_host_sharable", {
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Member("a", ty.i32()),
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Member("b", ptr_ty),
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});
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EXPECT_FALSE(
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r()->IsHostSharable(Structure("S", {
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Member("a", ty.i32()),
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Member("b", non_host_sharable),
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})));
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}
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} // namespace
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} // namespace resolver
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} // namespace tint
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