mirror of
https://github.com/KhronosGroup/SPIRV-Tools
synced 2024-11-22 11:40:05 +00:00
756 lines
26 KiB
C++
756 lines
26 KiB
C++
// Copyright (c) 2015-2016 The Khronos Group Inc.
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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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// Validation tests for Logical Layout
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#include <functional>
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#include <string>
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#include <tuple>
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#include <utility>
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#include <vector>
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#include "gmock/gmock.h"
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#include "source/diagnostic.h"
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#include "test/unit_spirv.h"
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#include "test/val/val_fixtures.h"
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namespace spvtools {
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namespace val {
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namespace {
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using ::testing::Eq;
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using ::testing::HasSubstr;
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using ::testing::StrEq;
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using pred_type = std::function<spv_result_t(int)>;
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using ValidateLayout = spvtest::ValidateBase<
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std::tuple<int, std::tuple<std::string, pred_type, pred_type>>>;
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// returns true if order is equal to VAL
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template <int VAL, spv_result_t RET = SPV_ERROR_INVALID_LAYOUT>
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spv_result_t Equals(int order) {
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return order == VAL ? SPV_SUCCESS : RET;
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}
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// returns true if order is between MIN and MAX(inclusive)
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template <int MIN, int MAX, spv_result_t RET = SPV_ERROR_INVALID_LAYOUT>
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struct Range {
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explicit Range(bool inverse = false) : inverse_(inverse) {}
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spv_result_t operator()(int order) {
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return (inverse_ ^ (order >= MIN && order <= MAX)) ? SPV_SUCCESS : RET;
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}
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private:
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bool inverse_;
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};
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// SPIRV source used to test the logical layout
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const std::vector<std::string>& getInstructions() {
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// clang-format off
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static const std::vector<std::string> instructions = {
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"OpCapability Shader",
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"OpExtension \"TestExtension\"",
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"%inst = OpExtInstImport \"GLSL.std.450\"",
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"OpMemoryModel Logical GLSL450",
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"OpEntryPoint GLCompute %func \"\"",
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"OpExecutionMode %func LocalSize 1 1 1",
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"OpExecutionModeId %func LocalSizeId %one %one %one",
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"%str = OpString \"Test String\"",
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"%str2 = OpString \"blabla\"",
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"OpSource GLSL 450 %str \"uniform vec3 var = vec3(4.0);\"",
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"OpSourceContinued \"void main(){return;}\"",
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"OpSourceExtension \"Test extension\"",
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"OpName %func \"MyFunction\"",
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"OpMemberName %struct 1 \"my_member\"",
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"OpDecorate %dgrp RowMajor",
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"OpMemberDecorate %struct 1 RowMajor",
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"%dgrp = OpDecorationGroup",
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"OpGroupDecorate %dgrp %mat33 %mat44",
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"%intt = OpTypeInt 32 1",
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"%floatt = OpTypeFloat 32",
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"%voidt = OpTypeVoid",
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"%boolt = OpTypeBool",
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"%vec4 = OpTypeVector %floatt 4",
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"%vec3 = OpTypeVector %floatt 3",
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"%mat33 = OpTypeMatrix %vec3 3",
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"%mat44 = OpTypeMatrix %vec4 4",
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"%struct = OpTypeStruct %intt %mat33",
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"%vfunct = OpTypeFunction %voidt",
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"%viifunct = OpTypeFunction %voidt %intt %intt",
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"%one = OpConstant %intt 1",
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// TODO(umar): OpConstant fails because the type is not defined
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// TODO(umar): OpGroupMemberDecorate
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"OpLine %str 3 4",
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"OpNoLine",
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"%func = OpFunction %voidt None %vfunct",
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"%l = OpLabel",
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"OpReturn ; %func return",
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"OpFunctionEnd ; %func end",
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"%func2 = OpFunction %voidt None %viifunct",
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"%funcp1 = OpFunctionParameter %intt",
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"%funcp2 = OpFunctionParameter %intt",
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"%fLabel = OpLabel",
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"OpNop",
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"OpReturn ; %func2 return",
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"OpFunctionEnd"
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};
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return instructions;
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}
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static const int kRangeEnd = 1000;
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pred_type All = Range<0, kRangeEnd>();
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INSTANTIATE_TEST_SUITE_P(InstructionsOrder,
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ValidateLayout,
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::testing::Combine(::testing::Range((int)0, (int)getInstructions().size()),
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// Note: Because of ID dependencies between instructions, some instructions
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// are not free to be placed anywhere without triggering an non-layout
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// validation error. Therefore, "Lines to compile" for some instructions
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// are not "All" in the below.
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//
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// | Instruction | Line(s) valid | Lines to compile
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::testing::Values(std::make_tuple(std::string("OpCapability") , Equals<0> , Range<0, 2>())
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, std::make_tuple(std::string("OpExtension") , Equals<1> , All)
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, std::make_tuple(std::string("OpExtInstImport") , Equals<2> , All)
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, std::make_tuple(std::string("OpMemoryModel") , Equals<3> , Range<1, kRangeEnd>())
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, std::make_tuple(std::string("OpEntryPoint") , Equals<4> , All)
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, std::make_tuple(std::string("OpExecutionMode ") , Range<5, 6>() , All)
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, std::make_tuple(std::string("OpExecutionModeId") , Range<5, 6>() , All)
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, std::make_tuple(std::string("OpSource ") , Range<7, 11>() , Range<8, kRangeEnd>())
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, std::make_tuple(std::string("OpSourceContinued ") , Range<7, 11>() , All)
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, std::make_tuple(std::string("OpSourceExtension ") , Range<7, 11>() , All)
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, std::make_tuple(std::string("%str2 = OpString ") , Range<7, 11>() , All)
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, std::make_tuple(std::string("OpName ") , Range<12, 13>() , All)
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, std::make_tuple(std::string("OpMemberName ") , Range<12, 13>() , All)
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, std::make_tuple(std::string("OpDecorate ") , Range<14, 17>() , All)
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, std::make_tuple(std::string("OpMemberDecorate ") , Range<14, 17>() , All)
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, std::make_tuple(std::string("OpGroupDecorate ") , Range<14, 17>() , Range<17, kRangeEnd>())
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, std::make_tuple(std::string("OpDecorationGroup") , Range<14, 17>() , Range<0, 16>())
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, std::make_tuple(std::string("OpTypeBool") , Range<18, 31>() , All)
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, std::make_tuple(std::string("OpTypeVoid") , Range<18, 31>() , Range<0, 26>())
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, std::make_tuple(std::string("OpTypeFloat") , Range<18, 31>() , Range<0,21>())
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, std::make_tuple(std::string("OpTypeInt") , Range<18, 31>() , Range<0, 21>())
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, std::make_tuple(std::string("OpTypeVector %floatt 4") , Range<18, 31>() , Range<20, 24>())
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, std::make_tuple(std::string("OpTypeMatrix %vec4 4") , Range<18, 31>() , Range<23, kRangeEnd>())
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, std::make_tuple(std::string("OpTypeStruct") , Range<18, 31>() , Range<25, kRangeEnd>())
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, std::make_tuple(std::string("%vfunct = OpTypeFunction"), Range<18, 31>() , Range<21, 31>())
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, std::make_tuple(std::string("OpConstant") , Range<18, 31>() , Range<21, kRangeEnd>())
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, std::make_tuple(std::string("OpLine ") , Range<18, kRangeEnd>() , Range<8, kRangeEnd>())
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, std::make_tuple(std::string("OpNoLine") , Range<18, kRangeEnd>() , All)
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, std::make_tuple(std::string("%fLabel = OpLabel") , Equals<39> , All)
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, std::make_tuple(std::string("OpNop") , Equals<40> , Range<40,kRangeEnd>())
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, std::make_tuple(std::string("OpReturn ; %func2 return") , Equals<41> , All)
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)));
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// clang-format on
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// Creates a new vector which removes the string if the substr is found in the
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// instructions vector and reinserts it in the location specified by order.
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// NOTE: This will not work correctly if there are two instances of substr in
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// instructions
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std::vector<std::string> GenerateCode(std::string substr, int order) {
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std::vector<std::string> code(getInstructions().size());
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std::vector<std::string> inst(1);
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partition_copy(std::begin(getInstructions()), std::end(getInstructions()),
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std::begin(code), std::begin(inst),
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[=](const std::string& str) {
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return std::string::npos == str.find(substr);
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});
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code.insert(std::begin(code) + order, inst.front());
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return code;
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}
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// This test will check the logical layout of a binary by removing each
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// instruction in the pair of the INSTANTIATE_TEST_SUITE_P call and moving it in
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// the SPIRV source formed by combining the vector "instructions".
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TEST_P(ValidateLayout, Layout) {
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int order;
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std::string instruction;
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pred_type pred;
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pred_type test_pred; // Predicate to determine if the test should be build
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std::tuple<std::string, pred_type, pred_type> testCase;
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std::tie(order, testCase) = GetParam();
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std::tie(instruction, pred, test_pred) = testCase;
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// Skip test which break the code generation
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if (test_pred(order)) return;
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std::vector<std::string> code = GenerateCode(instruction, order);
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std::stringstream ss;
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std::copy(std::begin(code), std::end(code),
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std::ostream_iterator<std::string>(ss, "\n"));
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const auto env = SPV_ENV_UNIVERSAL_1_3;
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// printf("code: \n%s\n", ss.str().c_str());
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CompileSuccessfully(ss.str(), env);
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spv_result_t result;
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// clang-format off
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ASSERT_EQ(pred(order), result = ValidateInstructions(env))
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<< "Actual: " << spvResultToString(result)
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<< "\nExpected: " << spvResultToString(pred(order))
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<< "\nOrder: " << order
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<< "\nInstruction: " << instruction
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<< "\nCode: \n" << ss.str();
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// clang-format on
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}
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TEST_F(ValidateLayout, MemoryModelMissingBeforeEntryPoint) {
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std::string str = R"(
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OpCapability Matrix
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OpExtension "TestExtension"
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%inst = OpExtInstImport "GLSL.std.450"
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OpEntryPoint GLCompute %func ""
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OpExecutionMode %func LocalSize 1 1 1
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)";
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CompileSuccessfully(str);
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ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT, ValidateInstructions());
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EXPECT_THAT(
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getDiagnosticString(),
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HasSubstr(
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"EntryPoint cannot appear before the memory model instruction"));
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}
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TEST_F(ValidateLayout, MemoryModelMissing) {
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char str[] = R"(OpCapability Linkage)";
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CompileSuccessfully(str, SPV_ENV_UNIVERSAL_1_1);
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ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT,
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ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
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EXPECT_THAT(getDiagnosticString(),
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HasSubstr("Missing required OpMemoryModel instruction"));
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}
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TEST_F(ValidateLayout, MemoryModelSpecifiedTwice) {
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char str[] = R"(
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OpCapability Linkage
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OpCapability Shader
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OpMemoryModel Logical Simple
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OpMemoryModel Logical Simple
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)";
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CompileSuccessfully(str, SPV_ENV_UNIVERSAL_1_1);
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ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT,
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ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
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EXPECT_THAT(getDiagnosticString(),
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HasSubstr("OpMemoryModel should only be provided once"));
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}
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TEST_F(ValidateLayout, FunctionDefinitionBeforeDeclarationBad) {
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char str[] = R"(
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OpCapability Shader
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OpMemoryModel Logical GLSL450
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OpDecorate %var Restrict
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%intt = OpTypeInt 32 1
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%voidt = OpTypeVoid
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%vfunct = OpTypeFunction %voidt
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%vifunct = OpTypeFunction %voidt %intt
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%ptrt = OpTypePointer Function %intt
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%func = OpFunction %voidt None %vfunct
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%funcl = OpLabel
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OpNop
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OpReturn
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OpFunctionEnd
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%func2 = OpFunction %voidt None %vifunct ; must appear before definition
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%func2p = OpFunctionParameter %intt
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OpFunctionEnd
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)";
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CompileSuccessfully(str);
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ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT, ValidateInstructions());
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EXPECT_THAT(
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getDiagnosticString(),
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HasSubstr(
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"Function declarations must appear before function definitions."));
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}
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// TODO(umar): Passes but gives incorrect error message. Should be fixed after
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// type checking
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TEST_F(ValidateLayout, LabelBeforeFunctionParameterBad) {
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char str[] = R"(
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OpCapability Shader
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OpMemoryModel Logical GLSL450
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OpDecorate %var Restrict
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%intt = OpTypeInt 32 1
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%voidt = OpTypeVoid
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%vfunct = OpTypeFunction %voidt
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%vifunct = OpTypeFunction %voidt %intt
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%ptrt = OpTypePointer Function %intt
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%func = OpFunction %voidt None %vifunct
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%funcl = OpLabel ; Label appears before function parameter
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%func2p = OpFunctionParameter %intt
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OpNop
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OpReturn
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OpFunctionEnd
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)";
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CompileSuccessfully(str);
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ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT, ValidateInstructions());
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EXPECT_THAT(getDiagnosticString(),
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HasSubstr("Function parameters must only appear immediately "
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"after the function definition"));
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}
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TEST_F(ValidateLayout, FuncParameterNotImmediatlyAfterFuncBad) {
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char str[] = R"(
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OpCapability Shader
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OpMemoryModel Logical GLSL450
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OpDecorate %var Restrict
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%intt = OpTypeInt 32 1
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%voidt = OpTypeVoid
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%vfunct = OpTypeFunction %voidt
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%vifunct = OpTypeFunction %voidt %intt
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%ptrt = OpTypePointer Function %intt
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%func = OpFunction %voidt None %vifunct
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%funcl = OpLabel
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OpNop
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OpBranch %next
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%func2p = OpFunctionParameter %intt ;FunctionParameter appears in a function but not immediately afterwards
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%next = OpLabel
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OpNop
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OpReturn
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OpFunctionEnd
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)";
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CompileSuccessfully(str);
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ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT, ValidateInstructions());
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EXPECT_THAT(getDiagnosticString(),
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HasSubstr("Function parameters must only appear immediately "
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"after the function definition"));
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}
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TEST_F(ValidateLayout, OpUndefCanAppearInTypeDeclarationSection) {
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std::string str = R"(
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OpCapability Kernel
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OpCapability Linkage
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OpMemoryModel Logical OpenCL
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%voidt = OpTypeVoid
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%uintt = OpTypeInt 32 0
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%funct = OpTypeFunction %voidt
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%udef = OpUndef %uintt
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%func = OpFunction %voidt None %funct
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%entry = OpLabel
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OpReturn
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OpFunctionEnd
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)";
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CompileSuccessfully(str);
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ASSERT_EQ(SPV_SUCCESS, ValidateInstructions());
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}
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TEST_F(ValidateLayout, OpUndefCanAppearInBlock) {
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std::string str = R"(
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OpCapability Kernel
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OpCapability Linkage
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OpMemoryModel Logical OpenCL
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%voidt = OpTypeVoid
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%uintt = OpTypeInt 32 0
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%funct = OpTypeFunction %voidt
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%func = OpFunction %voidt None %funct
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%entry = OpLabel
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%udef = OpUndef %uintt
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OpReturn
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OpFunctionEnd
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)";
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CompileSuccessfully(str);
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ASSERT_EQ(SPV_SUCCESS, ValidateInstructions());
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}
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TEST_F(ValidateLayout, MissingFunctionEndForFunctionWithBody) {
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const auto s = R"(
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OpCapability Shader
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OpCapability Linkage
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OpMemoryModel Logical GLSL450
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%void = OpTypeVoid
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%tf = OpTypeFunction %void
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%f = OpFunction %void None %tf
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%l = OpLabel
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OpReturn
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)";
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CompileSuccessfully(s);
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ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT, ValidateInstructions());
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EXPECT_THAT(getDiagnosticString(),
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StrEq("Missing OpFunctionEnd at end of module."));
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}
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TEST_F(ValidateLayout, MissingFunctionEndForFunctionPrototype) {
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const auto s = R"(
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OpCapability Shader
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OpCapability Linkage
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OpMemoryModel Logical GLSL450
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%void = OpTypeVoid
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%tf = OpTypeFunction %void
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%f = OpFunction %void None %tf
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)";
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CompileSuccessfully(s);
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ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT, ValidateInstructions());
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EXPECT_THAT(getDiagnosticString(),
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StrEq("Missing OpFunctionEnd at end of module."));
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}
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using ValidateOpFunctionParameter = spvtest::ValidateBase<int>;
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TEST_F(ValidateOpFunctionParameter, OpLineBetweenParameters) {
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const auto s = R"(
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OpCapability Shader
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OpCapability Linkage
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OpMemoryModel Logical GLSL450
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%foo_frag = OpString "foo.frag"
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%i32 = OpTypeInt 32 1
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%tf = OpTypeFunction %i32 %i32 %i32
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%c = OpConstant %i32 123
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%f = OpFunction %i32 None %tf
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OpLine %foo_frag 1 1
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%p1 = OpFunctionParameter %i32
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OpNoLine
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%p2 = OpFunctionParameter %i32
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%l = OpLabel
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OpReturnValue %c
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OpFunctionEnd
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)";
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CompileSuccessfully(s);
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ASSERT_EQ(SPV_SUCCESS, ValidateInstructions());
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}
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TEST_F(ValidateOpFunctionParameter, TooManyParameters) {
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const auto s = R"(
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OpCapability Shader
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OpCapability Linkage
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OpMemoryModel Logical GLSL450
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%i32 = OpTypeInt 32 1
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%tf = OpTypeFunction %i32 %i32 %i32
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%c = OpConstant %i32 123
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%f = OpFunction %i32 None %tf
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%p1 = OpFunctionParameter %i32
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%p2 = OpFunctionParameter %i32
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%xp3 = OpFunctionParameter %i32
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%xp4 = OpFunctionParameter %i32
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%xp5 = OpFunctionParameter %i32
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%xp6 = OpFunctionParameter %i32
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%xp7 = OpFunctionParameter %i32
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%l = OpLabel
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OpReturnValue %c
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OpFunctionEnd
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)";
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CompileSuccessfully(s);
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ASSERT_EQ(SPV_ERROR_INVALID_ID, ValidateInstructions());
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}
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using ValidateEntryPoint = spvtest::ValidateBase<bool>;
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// Tests that not having OpEntryPoint causes an error.
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TEST_F(ValidateEntryPoint, NoEntryPointBad) {
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std::string spirv = R"(
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OpCapability Shader
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OpMemoryModel Logical GLSL450)";
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CompileSuccessfully(spirv);
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EXPECT_EQ(SPV_ERROR_INVALID_BINARY, ValidateInstructions());
|
|
EXPECT_THAT(getDiagnosticString(),
|
|
HasSubstr("No OpEntryPoint instruction was found. This is only "
|
|
"allowed if the Linkage capability is being used."));
|
|
}
|
|
|
|
// Invalid. A function may not be a target of both OpEntryPoint and
|
|
// OpFunctionCall.
|
|
TEST_F(ValidateEntryPoint, FunctionIsTargetOfEntryPointAndFunctionCallBad) {
|
|
std::string spirv = R"(
|
|
OpCapability Shader
|
|
OpMemoryModel Logical GLSL450
|
|
OpEntryPoint Fragment %foo "foo"
|
|
OpExecutionMode %foo OriginUpperLeft
|
|
%voidt = OpTypeVoid
|
|
%funct = OpTypeFunction %voidt
|
|
%foo = OpFunction %voidt None %funct
|
|
%entry = OpLabel
|
|
%recurse = OpFunctionCall %voidt %foo
|
|
OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
CompileSuccessfully(spirv);
|
|
EXPECT_EQ(SPV_ERROR_INVALID_BINARY, ValidateInstructions());
|
|
EXPECT_THAT(
|
|
getDiagnosticString(),
|
|
HasSubstr("A function (1) may not be targeted by both an OpEntryPoint "
|
|
"instruction and an OpFunctionCall instruction."));
|
|
}
|
|
|
|
// Invalid. Must be within a function to make a function call.
|
|
TEST_F(ValidateEntryPoint, FunctionCallOutsideFunctionBody) {
|
|
std::string spirv = R"(
|
|
OpCapability Shader
|
|
%1 = OpExtInstImport "GLSL.std.450"
|
|
OpMemoryModel Logical GLSL450
|
|
OpName %variableName "variableName"
|
|
%34 = OpFunctionCall %variableName %1
|
|
)";
|
|
CompileSuccessfully(spirv);
|
|
EXPECT_EQ(SPV_ERROR_INVALID_LAYOUT, ValidateInstructions());
|
|
EXPECT_THAT(getDiagnosticString(),
|
|
HasSubstr("FunctionCall must happen within a function body."));
|
|
}
|
|
|
|
// Valid. Module with a function but no entry point is valid when Linkage
|
|
// Capability is used.
|
|
TEST_F(ValidateEntryPoint, NoEntryPointWithLinkageCapGood) {
|
|
std::string spirv = R"(
|
|
OpCapability Shader
|
|
OpCapability Linkage
|
|
OpMemoryModel Logical GLSL450
|
|
%voidt = OpTypeVoid
|
|
%funct = OpTypeFunction %voidt
|
|
%foo = OpFunction %voidt None %funct
|
|
%entry = OpLabel
|
|
OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
CompileSuccessfully(spirv);
|
|
EXPECT_EQ(SPV_SUCCESS, ValidateInstructions());
|
|
}
|
|
|
|
TEST_F(ValidateLayout, ModuleProcessedInvalidIn10) {
|
|
char str[] = R"(
|
|
OpCapability Shader
|
|
OpCapability Linkage
|
|
OpMemoryModel Logical GLSL450
|
|
OpName %void "void"
|
|
OpModuleProcessed "this is ok in 1.1 and later"
|
|
%void = OpTypeVoid
|
|
)";
|
|
|
|
CompileSuccessfully(str, SPV_ENV_UNIVERSAL_1_1);
|
|
ASSERT_EQ(SPV_ERROR_WRONG_VERSION,
|
|
ValidateInstructions(SPV_ENV_UNIVERSAL_1_0));
|
|
// In a 1.0 environment the version check fails.
|
|
EXPECT_THAT(getDiagnosticString(),
|
|
HasSubstr("Invalid SPIR-V binary version 1.1 for target "
|
|
"environment SPIR-V 1.0."));
|
|
}
|
|
|
|
TEST_F(ValidateLayout, ModuleProcessedValidIn11) {
|
|
char str[] = R"(
|
|
OpCapability Shader
|
|
OpCapability Linkage
|
|
OpMemoryModel Logical GLSL450
|
|
OpName %void "void"
|
|
OpModuleProcessed "this is ok in 1.1 and later"
|
|
%void = OpTypeVoid
|
|
)";
|
|
|
|
CompileSuccessfully(str, SPV_ENV_UNIVERSAL_1_1);
|
|
ASSERT_EQ(SPV_SUCCESS, ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
|
|
EXPECT_THAT(getDiagnosticString(), Eq(""));
|
|
}
|
|
|
|
TEST_F(ValidateLayout, LayoutOrderMixedUp) {
|
|
char str[] = R"(
|
|
OpCapability Shader
|
|
OpCapability Linkage
|
|
OpMemoryModel Logical GLSL450
|
|
OpEntryPoint Fragment %fragmentFloat "fragmentFloat"
|
|
OpExecutionMode %fragmentFloat OriginUpperLeft
|
|
OpEntryPoint Fragment %fragmentUint "fragmentUint"
|
|
OpExecutionMode %fragmentUint OriginUpperLeft
|
|
)";
|
|
|
|
CompileSuccessfully(str, SPV_ENV_UNIVERSAL_1_1);
|
|
ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT,
|
|
ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
|
|
// By the mechanics of the validator, we assume ModuleProcessed is in the
|
|
// right spot, but then that OpName is in the wrong spot.
|
|
EXPECT_THAT(getDiagnosticString(),
|
|
HasSubstr("EntryPoint is in an invalid layout section"));
|
|
}
|
|
|
|
TEST_F(ValidateLayout, ModuleProcessedBeforeLastNameIsTooEarly) {
|
|
char str[] = R"(
|
|
OpCapability Shader
|
|
OpCapability Linkage
|
|
OpMemoryModel Logical GLSL450
|
|
OpModuleProcessed "this is too early"
|
|
OpName %void "void"
|
|
%void = OpTypeVoid
|
|
)";
|
|
|
|
CompileSuccessfully(str, SPV_ENV_UNIVERSAL_1_1);
|
|
ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT,
|
|
ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
|
|
// By the mechanics of the validator, we assume ModuleProcessed is in the
|
|
// right spot, but then that OpName is in the wrong spot.
|
|
EXPECT_THAT(getDiagnosticString(),
|
|
HasSubstr("Name is in an invalid layout section"));
|
|
}
|
|
|
|
TEST_F(ValidateLayout, ModuleProcessedInvalidAfterFirstAnnotation) {
|
|
char str[] = R"(
|
|
OpCapability Shader
|
|
OpCapability Linkage
|
|
OpMemoryModel Logical GLSL450
|
|
OpDecorate %void Volatile ; this is bogus, but keeps the example short
|
|
OpModuleProcessed "this is too late"
|
|
%void = OpTypeVoid
|
|
)";
|
|
|
|
CompileSuccessfully(str, SPV_ENV_UNIVERSAL_1_1);
|
|
ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT,
|
|
ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
|
|
EXPECT_THAT(getDiagnosticString(),
|
|
HasSubstr("ModuleProcessed is in an invalid layout section"));
|
|
}
|
|
|
|
TEST_F(ValidateLayout, ModuleProcessedInvalidInFunctionBeforeLabel) {
|
|
char str[] = R"(
|
|
OpCapability Shader
|
|
OpMemoryModel Logical GLSL450
|
|
OpEntryPoint GLCompute %main "main"
|
|
%void = OpTypeVoid
|
|
%voidfn = OpTypeFunction %void
|
|
%main = OpFunction %void None %voidfn
|
|
OpModuleProcessed "this is too late, in function before label"
|
|
%entry = OpLabel
|
|
OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
|
|
CompileSuccessfully(str, SPV_ENV_UNIVERSAL_1_1);
|
|
ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT,
|
|
ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
|
|
EXPECT_THAT(
|
|
getDiagnosticString(),
|
|
HasSubstr("ModuleProcessed cannot appear in a function declaration"));
|
|
}
|
|
|
|
TEST_F(ValidateLayout, ModuleProcessedInvalidInBasicBlock) {
|
|
char str[] = R"(
|
|
OpCapability Shader
|
|
OpMemoryModel Logical GLSL450
|
|
OpEntryPoint GLCompute %main "main"
|
|
%void = OpTypeVoid
|
|
%voidfn = OpTypeFunction %void
|
|
%main = OpFunction %void None %voidfn
|
|
%entry = OpLabel
|
|
OpModuleProcessed "this is too late, in basic block"
|
|
OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
|
|
CompileSuccessfully(str, SPV_ENV_UNIVERSAL_1_1);
|
|
ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT,
|
|
ValidateInstructions(SPV_ENV_UNIVERSAL_1_1));
|
|
EXPECT_THAT(
|
|
getDiagnosticString(),
|
|
HasSubstr("ModuleProcessed cannot appear in a function declaration"));
|
|
}
|
|
|
|
// TODO(umar): Test optional instructions
|
|
|
|
TEST_F(ValidateLayout, ValidNVBindlessTexturelayout) {
|
|
std::string str = R"(
|
|
OpCapability Shader
|
|
OpCapability BindlessTextureNV
|
|
OpExtension "SPV_NV_bindless_texture"
|
|
OpMemoryModel Logical GLSL450
|
|
OpSamplerImageAddressingModeNV 64
|
|
OpEntryPoint GLCompute %func "main"
|
|
%voidt = OpTypeVoid
|
|
%uintt = OpTypeInt 32 0
|
|
%funct = OpTypeFunction %voidt
|
|
%func = OpFunction %voidt None %funct
|
|
%entry = OpLabel
|
|
%udef = OpUndef %uintt
|
|
OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
|
|
CompileSuccessfully(str);
|
|
ASSERT_EQ(SPV_SUCCESS, ValidateInstructions());
|
|
}
|
|
|
|
TEST_F(ValidateLayout, InvalidValidNVBindlessTexturelayout) {
|
|
std::string str = R"(
|
|
OpCapability Shader
|
|
OpCapability BindlessTextureNV
|
|
OpExtension "SPV_NV_bindless_texture"
|
|
OpMemoryModel Logical GLSL450
|
|
OpEntryPoint GLCompute %func "main"
|
|
OpSamplerImageAddressingModeNV 64
|
|
%voidt = OpTypeVoid
|
|
%uintt = OpTypeInt 32 0
|
|
%funct = OpTypeFunction %voidt
|
|
%func = OpFunction %voidt None %funct
|
|
%entry = OpLabel
|
|
%udef = OpUndef %uintt
|
|
OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
|
|
CompileSuccessfully(str);
|
|
ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT,
|
|
ValidateInstructions(SPV_ENV_UNIVERSAL_1_3));
|
|
EXPECT_THAT(
|
|
getDiagnosticString(),
|
|
HasSubstr(
|
|
"SamplerImageAddressingModeNV is in an invalid layout section"));
|
|
}
|
|
|
|
TEST_F(ValidateLayout, MissingNVBindlessAddressModeFromLayout) {
|
|
std::string str = R"(
|
|
OpCapability Shader
|
|
OpCapability BindlessTextureNV
|
|
OpExtension "SPV_NV_bindless_texture"
|
|
OpMemoryModel Logical GLSL450
|
|
OpEntryPoint GLCompute %func "main"
|
|
%voidt = OpTypeVoid
|
|
%uintt = OpTypeInt 32 0
|
|
%funct = OpTypeFunction %voidt
|
|
%func = OpFunction %voidt None %funct
|
|
%entry = OpLabel
|
|
%udef = OpUndef %uintt
|
|
OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
|
|
CompileSuccessfully(str);
|
|
ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT,
|
|
ValidateInstructions(SPV_ENV_UNIVERSAL_1_3));
|
|
EXPECT_THAT(
|
|
getDiagnosticString(),
|
|
HasSubstr("Missing required OpSamplerImageAddressingModeNV instruction"));
|
|
}
|
|
|
|
TEST_F(ValidateLayout, NVBindlessAddressModeFromLayoutSpecifiedTwice) {
|
|
std::string str = R"(
|
|
OpCapability Shader
|
|
OpCapability BindlessTextureNV
|
|
OpExtension "SPV_NV_bindless_texture"
|
|
OpMemoryModel Logical GLSL450
|
|
OpSamplerImageAddressingModeNV 64
|
|
OpSamplerImageAddressingModeNV 64
|
|
)";
|
|
|
|
CompileSuccessfully(str);
|
|
ASSERT_EQ(SPV_ERROR_INVALID_LAYOUT,
|
|
ValidateInstructions(SPV_ENV_UNIVERSAL_1_3));
|
|
EXPECT_THAT(
|
|
getDiagnosticString(),
|
|
HasSubstr("OpSamplerImageAddressingModeNV should only be provided once"));
|
|
}
|
|
|
|
} // namespace
|
|
} // namespace val
|
|
} // namespace spvtools
|