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This CL adds the relational add expression to the spirv writer. Bug: tint:5 Change-Id: Ideed225c63e60f53a019b79803809f8e973299c6 Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/18605 Reviewed-by: David Neto <dneto@google.com>
170 lines
4.1 KiB
C++
170 lines
4.1 KiB
C++
// Copyright 2020 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 <string>
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#include <vector>
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#include "gmock/gmock.h"
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#include "src/reader/spirv/function.h"
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#include "src/reader/spirv/parser_impl.h"
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#include "src/reader/spirv/parser_impl_test_helper.h"
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#include "src/reader/spirv/spirv_tools_helpers_test.h"
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namespace tint {
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namespace reader {
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namespace spirv {
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namespace {
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using ::testing::HasSubstr;
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/// @returns a SPIR-V assembly segment which assigns debug names
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/// to particular IDs.
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std::string Names(std::vector<std::string> ids) {
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std::ostringstream outs;
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for (auto& id : ids) {
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outs << " OpName %" << id << " \"" << id << "\"\n";
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}
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return outs.str();
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}
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std::string CommonTypes() {
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return R"(
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%void = OpTypeVoid
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%voidfn = OpTypeFunction %void
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%float = OpTypeFloat 32
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%uint = OpTypeInt 32 0
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%int = OpTypeInt 32 1
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%float_0 = OpConstant %float 0.0
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)";
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}
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TEST_F(SpvParserTest, EmitFunctionDeclaration_VoidFunctionWithoutParams) {
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auto p = parser(test::Assemble(CommonTypes() + R"(
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%100 = OpFunction %void None %voidfn
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%entry = OpLabel
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OpReturn
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OpFunctionEnd
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)"));
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ASSERT_TRUE(p->BuildAndParseInternalModuleExceptFunctions());
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FunctionEmitter fe(p, *spirv_function(100));
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EXPECT_TRUE(fe.EmitFunctionDeclaration());
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EXPECT_THAT(p->module().to_str(), HasSubstr(R"(
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Function x_100 -> __void
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()
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{
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})"));
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}
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TEST_F(SpvParserTest, EmitFunctionDeclaration_NonVoidResultType) {
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auto p = parser(test::Assemble(CommonTypes() + R"(
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%fn_ret_float = OpTypeFunction %float
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%100 = OpFunction %float None %fn_ret_float
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%entry = OpLabel
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OpReturnValue %float_0
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OpFunctionEnd
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)"));
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ASSERT_TRUE(p->BuildAndParseInternalModuleExceptFunctions());
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FunctionEmitter fe(p, *spirv_function(100));
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EXPECT_TRUE(fe.EmitFunctionDeclaration());
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EXPECT_THAT(p->module().to_str(), HasSubstr(R"(
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Function x_100 -> __f32
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()
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{
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})"));
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}
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TEST_F(SpvParserTest, EmitFunctionDeclaration_MixedParamTypes) {
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auto p = parser(test::Assemble(Names({"a", "b", "c"}) + CommonTypes() + R"(
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%fn_mixed_params = OpTypeFunction %float %uint %float %int
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%100 = OpFunction %void None %fn_mixed_params
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%a = OpFunctionParameter %uint
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%b = OpFunctionParameter %float
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%c = OpFunctionParameter %int
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%mixed_entry = OpLabel
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OpReturn
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OpFunctionEnd
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)"));
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ASSERT_TRUE(p->BuildAndParseInternalModuleExceptFunctions());
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FunctionEmitter fe(p, *spirv_function(100));
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EXPECT_TRUE(fe.EmitFunctionDeclaration());
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EXPECT_THAT(p->module().to_str(), HasSubstr(R"(
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Function x_100 -> __void
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(
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Variable{
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a
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none
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__u32
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}
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Variable{
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b
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none
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__f32
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}
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Variable{
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c
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none
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__i32
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}
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)
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{
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})"));
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}
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TEST_F(SpvParserTest, EmitFunctionDeclaration_GenerateParamNames) {
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auto p = parser(test::Assemble(CommonTypes() + R"(
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%fn_mixed_params = OpTypeFunction %float %uint %float %int
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%100 = OpFunction %void None %fn_mixed_params
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%14 = OpFunctionParameter %uint
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%15 = OpFunctionParameter %float
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%16 = OpFunctionParameter %int
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%mixed_entry = OpLabel
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OpReturn
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OpFunctionEnd
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)"));
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ASSERT_TRUE(p->BuildAndParseInternalModuleExceptFunctions());
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FunctionEmitter fe(p, *spirv_function(100));
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EXPECT_TRUE(fe.EmitFunctionDeclaration());
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EXPECT_THAT(p->module().to_str(), HasSubstr(R"(
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Function x_100 -> __void
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(
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Variable{
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x_14
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none
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__u32
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}
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Variable{
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x_15
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none
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__f32
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}
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Variable{
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x_16
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none
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__i32
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}
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)
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{
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})"));
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}
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} // namespace
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} // namespace spirv
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} // namespace reader
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} // namespace tint
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