mirror of
https://github.com/KhronosGroup/SPIRV-Tools
synced 2024-11-29 06:21:06 +00:00
ad3514b732
Replace shader's stage variables whose types are array or matrix with scalars/vectors. For example, ``` Before: %foo = OpVariable %_ptr_Output__arr_v2float_uint_4 Output After: %foo = OpVariable %_ptr_Output_v2float Output %foo_0 = OpVariable %_ptr_Output_v2float Output %foo_1 = OpVariable %_ptr_Output_v2float Output %foo_2 = OpVariable %_ptr_Output_v2float Output ```
411 lines
16 KiB
C++
411 lines
16 KiB
C++
// Copyright (c) 2022 Google LLC
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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 <iostream>
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#include "gmock/gmock.h"
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#include "test/opt/assembly_builder.h"
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#include "test/opt/pass_fixture.h"
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#include "test/opt/pass_utils.h"
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namespace spvtools {
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namespace opt {
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namespace {
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using InterfaceVariableScalarReplacementTest = PassTest<::testing::Test>;
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TEST_F(InterfaceVariableScalarReplacementTest,
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ReplaceInterfaceVarsWithScalars) {
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const std::string spirv = R"(
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OpCapability Shader
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OpCapability Tessellation
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OpMemoryModel Logical GLSL450
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OpEntryPoint TessellationControl %func "shader" %x %y %z %w %u %v
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; CHECK: OpName [[x:%\w+]] "x"
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; CHECK-NOT: OpName {{%\w+}} "x"
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; CHECK: OpName [[y:%\w+]] "y"
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; CHECK-NOT: OpName {{%\w+}} "y"
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; CHECK: OpName [[z0:%\w+]] "z"
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; CHECK: OpName [[z1:%\w+]] "z"
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; CHECK: OpName [[w0:%\w+]] "w"
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; CHECK: OpName [[w1:%\w+]] "w"
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; CHECK: OpName [[u0:%\w+]] "u"
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; CHECK: OpName [[u1:%\w+]] "u"
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; CHECK: OpName [[v0:%\w+]] "v"
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; CHECK: OpName [[v1:%\w+]] "v"
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; CHECK: OpName [[v2:%\w+]] "v"
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; CHECK: OpName [[v3:%\w+]] "v"
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; CHECK: OpName [[v4:%\w+]] "v"
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; CHECK: OpName [[v5:%\w+]] "v"
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OpName %x "x"
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OpName %y "y"
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OpName %z "z"
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OpName %w "w"
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OpName %u "u"
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OpName %v "v"
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; CHECK-DAG: OpDecorate [[x]] Location 2
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; CHECK-DAG: OpDecorate [[y]] Location 0
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; CHECK-DAG: OpDecorate [[z0]] Location 0
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; CHECK-DAG: OpDecorate [[z0]] Component 0
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; CHECK-DAG: OpDecorate [[z1]] Location 1
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; CHECK-DAG: OpDecorate [[z1]] Component 0
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; CHECK-DAG: OpDecorate [[z0]] Patch
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; CHECK-DAG: OpDecorate [[z1]] Patch
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; CHECK-DAG: OpDecorate [[w0]] Location 2
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; CHECK-DAG: OpDecorate [[w0]] Component 0
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; CHECK-DAG: OpDecorate [[w1]] Location 3
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; CHECK-DAG: OpDecorate [[w1]] Component 0
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; CHECK-DAG: OpDecorate [[w0]] Patch
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; CHECK-DAG: OpDecorate [[w1]] Patch
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; CHECK-DAG: OpDecorate [[u0]] Location 3
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; CHECK-DAG: OpDecorate [[u0]] Component 2
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; CHECK-DAG: OpDecorate [[u1]] Location 4
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; CHECK-DAG: OpDecorate [[u1]] Component 2
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; CHECK-DAG: OpDecorate [[v0]] Location 3
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; CHECK-DAG: OpDecorate [[v0]] Component 3
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; CHECK-DAG: OpDecorate [[v1]] Location 4
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; CHECK-DAG: OpDecorate [[v1]] Component 3
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; CHECK-DAG: OpDecorate [[v2]] Location 5
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; CHECK-DAG: OpDecorate [[v2]] Component 3
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; CHECK-DAG: OpDecorate [[v3]] Location 6
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; CHECK-DAG: OpDecorate [[v3]] Component 3
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; CHECK-DAG: OpDecorate [[v4]] Location 7
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; CHECK-DAG: OpDecorate [[v4]] Component 3
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; CHECK-DAG: OpDecorate [[v5]] Location 8
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; CHECK-DAG: OpDecorate [[v5]] Component 3
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OpDecorate %z Patch
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OpDecorate %w Patch
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OpDecorate %z Location 0
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OpDecorate %x Location 2
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OpDecorate %v Location 3
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OpDecorate %v Component 3
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OpDecorate %y Location 0
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OpDecorate %w Location 2
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OpDecorate %u Location 3
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OpDecorate %u Component 2
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%uint = OpTypeInt 32 0
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%uint_1 = OpConstant %uint 1
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%uint_2 = OpConstant %uint 2
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%uint_3 = OpConstant %uint 3
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%uint_4 = OpConstant %uint 4
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%_arr_uint_uint_2 = OpTypeArray %uint %uint_2
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%_ptr_Output__arr_uint_uint_2 = OpTypePointer Output %_arr_uint_uint_2
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%_ptr_Input__arr_uint_uint_2 = OpTypePointer Input %_arr_uint_uint_2
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%_ptr_Input_uint = OpTypePointer Input %uint
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%_ptr_Output_uint = OpTypePointer Output %uint
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%_arr_arr_uint_uint_2_3 = OpTypeArray %_arr_uint_uint_2 %uint_3
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%_ptr_Input__arr_arr_uint_uint_2_3 = OpTypePointer Input %_arr_arr_uint_uint_2_3
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%_arr_arr_arr_uint_uint_2_3_4 = OpTypeArray %_arr_arr_uint_uint_2_3 %uint_4
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%_ptr_Output__arr_arr_arr_uint_uint_2_3_4 = OpTypePointer Output %_arr_arr_arr_uint_uint_2_3_4
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%_ptr_Output__arr_arr_uint_uint_2_3 = OpTypePointer Output %_arr_arr_uint_uint_2_3
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%z = OpVariable %_ptr_Output__arr_uint_uint_2 Output
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%x = OpVariable %_ptr_Output__arr_uint_uint_2 Output
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%y = OpVariable %_ptr_Input__arr_uint_uint_2 Input
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%w = OpVariable %_ptr_Input__arr_uint_uint_2 Input
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%u = OpVariable %_ptr_Input__arr_arr_uint_uint_2_3 Input
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%v = OpVariable %_ptr_Output__arr_arr_arr_uint_uint_2_3_4 Output
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; CHECK-DAG: [[x]] = OpVariable %_ptr_Output__arr_uint_uint_2 Output
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; CHECK-DAG: [[y]] = OpVariable %_ptr_Input__arr_uint_uint_2 Input
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; CHECK-DAG: [[z0]] = OpVariable %_ptr_Output_uint Output
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; CHECK-DAG: [[z1]] = OpVariable %_ptr_Output_uint Output
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; CHECK-DAG: [[w0]] = OpVariable %_ptr_Input_uint Input
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; CHECK-DAG: [[w1]] = OpVariable %_ptr_Input_uint Input
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; CHECK-DAG: [[u0]] = OpVariable %_ptr_Input__arr_uint_uint_3 Input
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; CHECK-DAG: [[u1]] = OpVariable %_ptr_Input__arr_uint_uint_3 Input
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; CHECK-DAG: [[v0]] = OpVariable %_ptr_Output__arr_uint_uint_4 Output
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; CHECK-DAG: [[v1]] = OpVariable %_ptr_Output__arr_uint_uint_4 Output
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; CHECK-DAG: [[v2]] = OpVariable %_ptr_Output__arr_uint_uint_4 Output
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; CHECK-DAG: [[v3]] = OpVariable %_ptr_Output__arr_uint_uint_4 Output
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; CHECK-DAG: [[v4]] = OpVariable %_ptr_Output__arr_uint_uint_4 Output
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; CHECK-DAG: [[v5]] = OpVariable %_ptr_Output__arr_uint_uint_4 Output
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%void = OpTypeVoid
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%void_f = OpTypeFunction %void
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%func = OpFunction %void None %void_f
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%label = OpLabel
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; CHECK: [[w0_value:%\w+]] = OpLoad %uint [[w0]]
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; CHECK: [[w1_value:%\w+]] = OpLoad %uint [[w1]]
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; CHECK: [[w_value:%\w+]] = OpCompositeConstruct %_arr_uint_uint_2 [[w0_value]] [[w1_value]]
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; CHECK: [[w0:%\w+]] = OpCompositeExtract %uint [[w_value]] 0
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; CHECK: OpStore [[z0]] [[w0]]
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; CHECK: [[w1:%\w+]] = OpCompositeExtract %uint [[w_value]] 1
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; CHECK: OpStore [[z1]] [[w1]]
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%w_value = OpLoad %_arr_uint_uint_2 %w
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OpStore %z %w_value
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; CHECK: [[u00_ptr:%\w+]] = OpAccessChain %_ptr_Input_uint [[u0]] %uint_0
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; CHECK: [[u00:%\w+]] = OpLoad %uint [[u00_ptr]]
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; CHECK: [[u10_ptr:%\w+]] = OpAccessChain %_ptr_Input_uint [[u1]] %uint_0
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; CHECK: [[u10:%\w+]] = OpLoad %uint [[u10_ptr]]
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; CHECK: [[u01_ptr:%\w+]] = OpAccessChain %_ptr_Input_uint [[u0]] %uint_1
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; CHECK: [[u01:%\w+]] = OpLoad %uint [[u01_ptr]]
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; CHECK: [[u11_ptr:%\w+]] = OpAccessChain %_ptr_Input_uint [[u1]] %uint_1
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; CHECK: [[u11:%\w+]] = OpLoad %uint [[u11_ptr]]
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; CHECK: [[u02_ptr:%\w+]] = OpAccessChain %_ptr_Input_uint [[u0]] %uint_2
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; CHECK: [[u02:%\w+]] = OpLoad %uint [[u02_ptr]]
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; CHECK: [[u12_ptr:%\w+]] = OpAccessChain %_ptr_Input_uint [[u1]] %uint_2
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; CHECK: [[u12:%\w+]] = OpLoad %uint [[u12_ptr]]
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; CHECK-DAG: [[u0_val:%\w+]] = OpCompositeConstruct %_arr_uint_uint_2 [[u00]] [[u10]]
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; CHECK-DAG: [[u1_val:%\w+]] = OpCompositeConstruct %_arr_uint_uint_2 [[u01]] [[u11]]
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; CHECK-DAG: [[u2_val:%\w+]] = OpCompositeConstruct %_arr_uint_uint_2 [[u02]] [[u12]]
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; CHECK: [[u_val:%\w+]] = OpCompositeConstruct %_arr__arr_uint_uint_2_uint_3 [[u0_val]] [[u1_val]] [[u2_val]]
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; CHECK: [[ptr:%\w+]] = OpAccessChain %_ptr_Output_uint [[v0]] %uint_1
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; CHECK: [[val:%\w+]] = OpCompositeExtract %uint [[u_val]] 0 0
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; CHECK: OpStore [[ptr]] [[val]]
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; CHECK: [[ptr:%\w+]] = OpAccessChain %_ptr_Output_uint [[v1]] %uint_1
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; CHECK: [[val:%\w+]] = OpCompositeExtract %uint [[u_val]] 0 1
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; CHECK: OpStore [[ptr]] [[val]]
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; CHECK: [[ptr:%\w+]] = OpAccessChain %_ptr_Output_uint [[v2]] %uint_1
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; CHECK: [[val:%\w+]] = OpCompositeExtract %uint [[u_val]] 1 0
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; CHECK: OpStore [[ptr]] [[val]]
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; CHECK: [[ptr:%\w+]] = OpAccessChain %_ptr_Output_uint [[v3]] %uint_1
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; CHECK: [[val:%\w+]] = OpCompositeExtract %uint [[u_val]] 1 1
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; CHECK: OpStore [[ptr]] [[val]]
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; CHECK: [[ptr:%\w+]] = OpAccessChain %_ptr_Output_uint [[v4]] %uint_1
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; CHECK: [[val:%\w+]] = OpCompositeExtract %uint [[u_val]] 2 0
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; CHECK: OpStore [[ptr]] [[val]]
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; CHECK: [[ptr:%\w+]] = OpAccessChain %_ptr_Output_uint [[v5]] %uint_1
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; CHECK: [[val:%\w+]] = OpCompositeExtract %uint [[u_val]] 2 1
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; CHECK: OpStore [[ptr]] [[val]]
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%v_ptr = OpAccessChain %_ptr_Output__arr_arr_uint_uint_2_3 %v %uint_1
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%u_val = OpLoad %_arr_arr_uint_uint_2_3 %u
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OpStore %v_ptr %u_val
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OpReturn
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OpFunctionEnd
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)";
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SinglePassRunAndMatch<InterfaceVariableScalarReplacement>(spirv, true);
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}
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TEST_F(InterfaceVariableScalarReplacementTest,
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CheckPatchDecorationPreservation) {
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// Make sure scalars for the variables with the extra arrayness have the extra
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// arrayness after running the pass while others do not have it.
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// Only "y" does not have the extra arrayness in the following SPIR-V.
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const std::string spirv = R"(
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OpCapability Shader
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OpCapability Tessellation
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OpMemoryModel Logical GLSL450
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OpEntryPoint TessellationEvaluation %func "shader" %x %y %z %w
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OpDecorate %z Patch
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OpDecorate %w Patch
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OpDecorate %z Location 0
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OpDecorate %x Location 2
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OpDecorate %y Location 0
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OpDecorate %w Location 1
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OpName %x "x"
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OpName %y "y"
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OpName %z "z"
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OpName %w "w"
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; CHECK: OpName [[y:%\w+]] "y"
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; CHECK-NOT: OpName {{%\w+}} "y"
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; CHECK-DAG: OpName [[z0:%\w+]] "z"
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; CHECK-DAG: OpName [[z1:%\w+]] "z"
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; CHECK-DAG: OpName [[w0:%\w+]] "w"
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; CHECK-DAG: OpName [[w1:%\w+]] "w"
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; CHECK-DAG: OpName [[x0:%\w+]] "x"
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; CHECK-DAG: OpName [[x1:%\w+]] "x"
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%uint = OpTypeInt 32 0
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%uint_2 = OpConstant %uint 2
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%_arr_uint_uint_2 = OpTypeArray %uint %uint_2
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%_ptr_Output__arr_uint_uint_2 = OpTypePointer Output %_arr_uint_uint_2
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%_ptr_Input__arr_uint_uint_2 = OpTypePointer Input %_arr_uint_uint_2
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%z = OpVariable %_ptr_Output__arr_uint_uint_2 Output
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%x = OpVariable %_ptr_Output__arr_uint_uint_2 Output
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%y = OpVariable %_ptr_Input__arr_uint_uint_2 Input
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%w = OpVariable %_ptr_Input__arr_uint_uint_2 Input
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; CHECK-DAG: [[y]] = OpVariable %_ptr_Input__arr_uint_uint_2 Input
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; CHECK-DAG: [[z0]] = OpVariable %_ptr_Output_uint Output
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; CHECK-DAG: [[z1]] = OpVariable %_ptr_Output_uint Output
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; CHECK-DAG: [[w0]] = OpVariable %_ptr_Input_uint Input
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; CHECK-DAG: [[w1]] = OpVariable %_ptr_Input_uint Input
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; CHECK-DAG: [[x0]] = OpVariable %_ptr_Output_uint Output
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; CHECK-DAG: [[x1]] = OpVariable %_ptr_Output_uint Output
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%void = OpTypeVoid
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%void_f = OpTypeFunction %void
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%func = OpFunction %void None %void_f
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%label = OpLabel
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OpReturn
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OpFunctionEnd
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)";
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SinglePassRunAndMatch<InterfaceVariableScalarReplacement>(spirv, true);
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}
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TEST_F(InterfaceVariableScalarReplacementTest,
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CheckEntryPointInterfaceOperands) {
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const std::string spirv = R"(
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OpCapability Shader
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OpCapability Tessellation
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OpMemoryModel Logical GLSL450
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OpEntryPoint TessellationEvaluation %tess "tess" %x %y
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OpEntryPoint Vertex %vert "vert" %w
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OpDecorate %z Location 0
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OpDecorate %x Location 2
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OpDecorate %y Location 0
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OpDecorate %w Location 1
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OpName %x "x"
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OpName %y "y"
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OpName %z "z"
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OpName %w "w"
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; CHECK: OpName [[y:%\w+]] "y"
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; CHECK-NOT: OpName {{%\w+}} "y"
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; CHECK-DAG: OpName [[x0:%\w+]] "x"
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; CHECK-DAG: OpName [[x1:%\w+]] "x"
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; CHECK-DAG: OpName [[w0:%\w+]] "w"
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; CHECK-DAG: OpName [[w1:%\w+]] "w"
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; CHECK-DAG: OpName [[z:%\w+]] "z"
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; CHECK-NOT: OpName {{%\w+}} "z"
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%uint = OpTypeInt 32 0
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%uint_2 = OpConstant %uint 2
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%_arr_uint_uint_2 = OpTypeArray %uint %uint_2
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%_ptr_Output__arr_uint_uint_2 = OpTypePointer Output %_arr_uint_uint_2
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%_ptr_Input__arr_uint_uint_2 = OpTypePointer Input %_arr_uint_uint_2
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%z = OpVariable %_ptr_Output__arr_uint_uint_2 Output
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%x = OpVariable %_ptr_Output__arr_uint_uint_2 Output
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%y = OpVariable %_ptr_Input__arr_uint_uint_2 Input
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%w = OpVariable %_ptr_Input__arr_uint_uint_2 Input
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; CHECK-DAG: [[y]] = OpVariable %_ptr_Input__arr_uint_uint_2 Input
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; CHECK-DAG: [[z]] = OpVariable %_ptr_Output__arr_uint_uint_2 Output
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; CHECK-DAG: [[w0]] = OpVariable %_ptr_Input_uint Input
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; CHECK-DAG: [[w1]] = OpVariable %_ptr_Input_uint Input
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; CHECK-DAG: [[x0]] = OpVariable %_ptr_Output_uint Output
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; CHECK-DAG: [[x1]] = OpVariable %_ptr_Output_uint Output
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%void = OpTypeVoid
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%void_f = OpTypeFunction %void
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%tess = OpFunction %void None %void_f
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%bb0 = OpLabel
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OpReturn
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OpFunctionEnd
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%vert = OpFunction %void None %void_f
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%bb1 = OpLabel
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OpReturn
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OpFunctionEnd
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)";
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SinglePassRunAndMatch<InterfaceVariableScalarReplacement>(spirv, true);
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}
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class InterfaceVarSROAErrorTest : public PassTest<::testing::Test> {
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public:
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InterfaceVarSROAErrorTest()
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: consumer_([this](spv_message_level_t level, const char*,
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const spv_position_t& position, const char* message) {
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if (!error_message_.empty()) error_message_ += "\n";
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switch (level) {
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case SPV_MSG_FATAL:
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case SPV_MSG_INTERNAL_ERROR:
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case SPV_MSG_ERROR:
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error_message_ += "ERROR";
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break;
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case SPV_MSG_WARNING:
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error_message_ += "WARNING";
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break;
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case SPV_MSG_INFO:
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error_message_ += "INFO";
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break;
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case SPV_MSG_DEBUG:
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error_message_ += "DEBUG";
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break;
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}
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error_message_ +=
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": " + std::to_string(position.index) + ": " + message;
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}) {}
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Pass::Status RunPass(const std::string& text) {
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std::unique_ptr<IRContext> context_ =
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spvtools::BuildModule(SPV_ENV_UNIVERSAL_1_2, consumer_, text);
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if (!context_.get()) return Pass::Status::Failure;
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PassManager manager;
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manager.SetMessageConsumer(consumer_);
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manager.AddPass<InterfaceVariableScalarReplacement>();
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return manager.Run(context_.get());
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}
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std::string GetErrorMessage() const { return error_message_; }
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void TearDown() override { error_message_.clear(); }
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private:
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spvtools::MessageConsumer consumer_;
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std::string error_message_;
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};
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TEST_F(InterfaceVarSROAErrorTest, CheckConflictOfExtraArraynessBetweenEntries) {
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const std::string spirv = R"(
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OpCapability Shader
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OpCapability Tessellation
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OpMemoryModel Logical GLSL450
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OpEntryPoint TessellationControl %tess "tess" %x %y %z
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OpEntryPoint Vertex %vert "vert" %z %w
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OpDecorate %z Location 0
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OpDecorate %x Location 2
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OpDecorate %y Location 0
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OpDecorate %w Location 1
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OpName %x "x"
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OpName %y "y"
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OpName %z "z"
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OpName %w "w"
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%uint = OpTypeInt 32 0
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%uint_2 = OpConstant %uint 2
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%_arr_uint_uint_2 = OpTypeArray %uint %uint_2
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%_ptr_Output__arr_uint_uint_2 = OpTypePointer Output %_arr_uint_uint_2
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%_ptr_Input__arr_uint_uint_2 = OpTypePointer Input %_arr_uint_uint_2
|
|
%z = OpVariable %_ptr_Output__arr_uint_uint_2 Output
|
|
%x = OpVariable %_ptr_Output__arr_uint_uint_2 Output
|
|
%y = OpVariable %_ptr_Input__arr_uint_uint_2 Input
|
|
%w = OpVariable %_ptr_Input__arr_uint_uint_2 Input
|
|
%void = OpTypeVoid
|
|
%void_f = OpTypeFunction %void
|
|
%tess = OpFunction %void None %void_f
|
|
%bb0 = OpLabel
|
|
OpReturn
|
|
OpFunctionEnd
|
|
%vert = OpFunction %void None %void_f
|
|
%bb1 = OpLabel
|
|
OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
|
|
EXPECT_EQ(RunPass(spirv), Pass::Status::Failure);
|
|
const char expected_error[] =
|
|
"ERROR: 0: A variable is arrayed for an entry point but it is not "
|
|
"arrayed for another entry point\n"
|
|
" %z = OpVariable %_ptr_Output__arr_uint_uint_2 Output";
|
|
EXPECT_STREQ(GetErrorMessage().c_str(), expected_error);
|
|
}
|
|
|
|
} // namespace
|
|
} // namespace opt
|
|
} // namespace spvtools
|