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// Copyright 2021 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/transform/add_spirv_block_decoration.h"
#include <memory>
#include <utility>
#include "src/transform/test_helper.h"
namespace tint {
namespace transform {
namespace {
using AddSpirvBlockDecorationTest = TransformTest;
TEST_F(AddSpirvBlockDecorationTest, EmptyModule) {
auto* src = "";
auto* expect = "";
auto got = Run<AddSpirvBlockDecoration>(src);
EXPECT_EQ(expect, str(got));
}
TEST_F(AddSpirvBlockDecorationTest, Noop_UsedForPrivateVar) {
auto* src = R"(
struct S {
f : f32;
};
var<private> p : S;
[[stage(fragment)]]
fn main() {
p.f = 1.0;
}
)";
auto* expect = src;
auto got = Run<AddSpirvBlockDecoration>(src);
EXPECT_EQ(expect, str(got));
}
TEST_F(AddSpirvBlockDecorationTest, Noop_UsedForShaderIO) {
auto* src = R"(
struct S {
[[location(0)]]
f : f32;
};
[[stage(fragment)]]
fn main() -> S {
return S();
}
)";
auto* expect = src;
auto got = Run<AddSpirvBlockDecoration>(src);
EXPECT_EQ(expect, str(got));
}
TEST_F(AddSpirvBlockDecorationTest, Basic) {
auto* src = R"(
struct S {
f : f32;
};
[[group(0), binding(0)]]
var<uniform> u : S;
[[stage(fragment)]]
fn main() {
let f = u.f;
}
)";
auto* expect = R"(
[[internal(spirv_block)]]
struct S {
f : f32;
};
[[group(0), binding(0)]] var<uniform> u : S;
[[stage(fragment)]]
fn main() {
let f = u.f;
}
)";
auto got = Run<AddSpirvBlockDecoration>(src);
EXPECT_EQ(expect, str(got));
}
TEST_F(AddSpirvBlockDecorationTest, Nested_OuterBuffer_InnerNotBuffer) {
auto* src = R"(
struct Inner {
f : f32;
};
struct Outer {
i : Inner;
};
[[group(0), binding(0)]]
var<uniform> u : Outer;
[[stage(fragment)]]
fn main() {
let f = u.i.f;
}
)";
auto* expect = R"(
struct Inner {
f : f32;
};
[[internal(spirv_block)]]
struct Outer {
i : Inner;
};
[[group(0), binding(0)]] var<uniform> u : Outer;
[[stage(fragment)]]
fn main() {
let f = u.i.f;
}
)";
auto got = Run<AddSpirvBlockDecoration>(src);
EXPECT_EQ(expect, str(got));
}
TEST_F(AddSpirvBlockDecorationTest, Nested_OuterBuffer_InnerBuffer) {
auto* src = R"(
struct Inner {
f : f32;
};
struct Outer {
i : Inner;
};
[[group(0), binding(0)]]
var<uniform> u0 : Outer;
[[group(0), binding(1)]]
var<uniform> u1 : Inner;
[[stage(fragment)]]
fn main() {
let f0 = u0.i.f;
let f1 = u1.f;
}
)";
auto* expect = R"(
struct Inner {
f : f32;
};
[[internal(spirv_block)]]
struct Inner_block {
inner : Inner;
};
[[internal(spirv_block)]]
struct Outer {
i : Inner;
};
[[group(0), binding(0)]] var<uniform> u0 : Outer;
[[group(0), binding(1)]] var<uniform> u1 : Inner_block;
[[stage(fragment)]]
fn main() {
let f0 = u0.i.f;
let f1 = u1.inner.f;
}
)";
auto got = Run<AddSpirvBlockDecoration>(src);
EXPECT_EQ(expect, str(got));
}
TEST_F(AddSpirvBlockDecorationTest, Nested_OuterNotBuffer_InnerBuffer) {
auto* src = R"(
struct Inner {
f : f32;
};
struct Outer {
i : Inner;
};
var<private> p : Outer;
[[group(0), binding(1)]]
var<uniform> u : Inner;
[[stage(fragment)]]
fn main() {
let f0 = p.i.f;
let f1 = u.f;
}
)";
auto* expect = R"(
struct Inner {
f : f32;
};
[[internal(spirv_block)]]
struct Inner_block {
inner : Inner;
};
struct Outer {
i : Inner;
};
var<private> p : Outer;
[[group(0), binding(1)]] var<uniform> u : Inner_block;
[[stage(fragment)]]
fn main() {
let f0 = p.i.f;
let f1 = u.inner.f;
}
)";
auto got = Run<AddSpirvBlockDecoration>(src);
EXPECT_EQ(expect, str(got));
}
TEST_F(AddSpirvBlockDecorationTest, Nested_InnerUsedForMultipleBuffers) {
auto* src = R"(
struct Inner {
f : f32;
};
struct S {
i : Inner;
};
[[group(0), binding(0)]]
var<uniform> u0 : S;
[[group(0), binding(1)]]
var<uniform> u1 : Inner;
[[group(0), binding(2)]]
var<uniform> u2 : Inner;
[[stage(fragment)]]
fn main() {
let f0 = u0.i.f;
let f1 = u1.f;
let f2 = u2.f;
}
)";
auto* expect = R"(
struct Inner {
f : f32;
};
[[internal(spirv_block)]]
struct Inner_block {
inner : Inner;
};
[[internal(spirv_block)]]
struct S {
i : Inner;
};
[[group(0), binding(0)]] var<uniform> u0 : S;
[[group(0), binding(1)]] var<uniform> u1 : Inner_block;
[[group(0), binding(2)]] var<uniform> u2 : Inner_block;
[[stage(fragment)]]
fn main() {
let f0 = u0.i.f;
let f1 = u1.inner.f;
let f2 = u2.inner.f;
}
)";
auto got = Run<AddSpirvBlockDecoration>(src);
EXPECT_EQ(expect, str(got));
}
TEST_F(AddSpirvBlockDecorationTest, StructInArray) {
auto* src = R"(
struct S {
f : f32;
};
[[group(0), binding(0)]]
var<uniform> u : S;
[[stage(fragment)]]
fn main() {
let f = u.f;
let a = array<S, 4>();
}
)";
auto* expect = R"(
struct S {
f : f32;
};
[[internal(spirv_block)]]
struct S_block {
inner : S;
};
[[group(0), binding(0)]] var<uniform> u : S_block;
[[stage(fragment)]]
fn main() {
let f = u.inner.f;
let a = array<S, 4>();
}
)";
auto got = Run<AddSpirvBlockDecoration>(src);
EXPECT_EQ(expect, str(got));
}
TEST_F(AddSpirvBlockDecorationTest, StructInArray_MultipleBuffers) {
auto* src = R"(
struct S {
f : f32;
};
[[group(0), binding(0)]]
var<uniform> u0 : S;
[[group(0), binding(1)]]
var<uniform> u1 : S;
[[stage(fragment)]]
fn main() {
let f0 = u0.f;
let f1 = u1.f;
let a = array<S, 4>();
}
)";
auto* expect = R"(
struct S {
f : f32;
};
[[internal(spirv_block)]]
struct S_block {
inner : S;
};
[[group(0), binding(0)]] var<uniform> u0 : S_block;
[[group(0), binding(1)]] var<uniform> u1 : S_block;
[[stage(fragment)]]
fn main() {
let f0 = u0.inner.f;
let f1 = u1.inner.f;
let a = array<S, 4>();
}
)";
auto got = Run<AddSpirvBlockDecoration>(src);
EXPECT_EQ(expect, str(got));
}
TEST_F(AddSpirvBlockDecorationTest, Aliases_Nested_OuterBuffer_InnerBuffer) {
auto* src = R"(
struct Inner {
f : f32;
};
type MyInner = Inner;
struct Outer {
i : MyInner;
};
type MyOuter = Outer;
[[group(0), binding(0)]]
var<uniform> u0 : MyOuter;
[[group(0), binding(1)]]
var<uniform> u1 : MyInner;
[[stage(fragment)]]
fn main() {
let f0 = u0.i.f;
let f1 = u1.f;
}
)";
auto* expect = R"(
struct Inner {
f : f32;
};
[[internal(spirv_block)]]
struct Inner_block {
inner : Inner;
};
type MyInner = Inner;
[[internal(spirv_block)]]
struct Outer {
i : MyInner;
};
type MyOuter = Outer;
[[group(0), binding(0)]] var<uniform> u0 : MyOuter;
[[group(0), binding(1)]] var<uniform> u1 : Inner_block;
[[stage(fragment)]]
fn main() {
let f0 = u0.i.f;
let f1 = u1.inner.f;
}
)";
auto got = Run<AddSpirvBlockDecoration>(src);
EXPECT_EQ(expect, str(got));
}
} // namespace
} // namespace transform
} // namespace tint