mirror of
https://github.com/KhronosGroup/SPIRV-Tools
synced 2024-11-25 21:10:04 +00:00
d35a78db57
Fixes #4960 * Switches to using enum classes with an underlying type to avoid undefined behaviour
785 lines
30 KiB
C++
785 lines
30 KiB
C++
// Copyright (c) 2020 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 "source/fuzz/transformation_access_chain.h"
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#include "gtest/gtest.h"
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#include "source/fuzz/fuzzer_util.h"
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#include "source/fuzz/instruction_descriptor.h"
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#include "test/fuzz/fuzz_test_util.h"
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namespace spvtools {
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namespace fuzz {
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namespace {
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TEST(TransformationAccessChainTest, BasicTest) {
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std::string shader = R"(
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OpCapability Shader
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OpCapability VariablePointers
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%1 = OpExtInstImport "GLSL.std.450"
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OpMemoryModel Logical GLSL450
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OpEntryPoint Fragment %4 "main" %48 %54
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OpExecutionMode %4 OriginUpperLeft
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OpSource ESSL 310
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%2 = OpTypeVoid
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%3 = OpTypeFunction %2
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%6 = OpTypeFloat 32
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%7 = OpTypeVector %6 2
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%50 = OpTypeMatrix %7 2
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%70 = OpTypePointer Function %7
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%71 = OpTypePointer Function %50
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%8 = OpTypeStruct %7 %6
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%9 = OpTypePointer Function %8
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%10 = OpTypeInt 32 1
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%11 = OpTypePointer Function %10
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%12 = OpTypeFunction %10 %9 %11
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%17 = OpConstant %10 0
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%18 = OpTypeInt 32 0
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%19 = OpConstant %18 0
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%20 = OpTypePointer Function %6
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%99 = OpTypePointer Private %6
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%29 = OpConstant %6 0
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%30 = OpConstant %6 1
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%31 = OpConstantComposite %7 %29 %30
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%32 = OpConstant %6 2
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%33 = OpConstantComposite %8 %31 %32
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%35 = OpConstant %10 10
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%51 = OpConstant %18 10
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%80 = OpConstant %18 0
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%81 = OpConstant %10 1
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%82 = OpConstant %18 2
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%83 = OpConstant %10 3
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%84 = OpConstant %18 4
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%85 = OpConstant %10 5
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%52 = OpTypeArray %50 %51
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%53 = OpTypePointer Private %52
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%46 = OpConstantNull %9
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%47 = OpTypePointer Private %8
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%48 = OpVariable %47 Private
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%54 = OpVariable %53 Private
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%4 = OpFunction %2 None %3
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%5 = OpLabel
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%28 = OpVariable %9 Function
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%34 = OpVariable %11 Function
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%36 = OpVariable %9 Function
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%38 = OpVariable %11 Function
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%44 = OpCopyObject %9 %36
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OpStore %28 %33
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OpStore %34 %35
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%37 = OpLoad %8 %28
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OpStore %36 %37
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%39 = OpLoad %10 %34
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OpStore %38 %39
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%40 = OpFunctionCall %10 %15 %36 %38
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%41 = OpLoad %10 %34
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%42 = OpIAdd %10 %41 %40
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OpStore %34 %42
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OpReturn
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OpFunctionEnd
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%15 = OpFunction %10 None %12
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%13 = OpFunctionParameter %9
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%14 = OpFunctionParameter %11
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%16 = OpLabel
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%21 = OpAccessChain %20 %13 %17 %19
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%43 = OpCopyObject %9 %13
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%22 = OpLoad %6 %21
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%23 = OpConvertFToS %10 %22
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%24 = OpLoad %10 %14
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%25 = OpIAdd %10 %23 %24
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OpReturnValue %25
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OpFunctionEnd
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)";
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const auto env = SPV_ENV_UNIVERSAL_1_4;
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const auto consumer = nullptr;
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const auto context = BuildModule(env, consumer, shader, kFuzzAssembleOption);
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spvtools::ValidatorOptions validator_options;
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ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(context.get(), validator_options,
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kConsoleMessageConsumer));
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// Types:
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// Ptr | Pointee | Storage class | GLSL for pointee | Ids of this type
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// ----+---------+---------------+---------------------+------------------
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// 9 | 8 | Function | struct(vec2, float) | 28, 36, 44, 13, 43
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// 11 | 10 | Function | int | 34, 38, 14
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// 20 | 6 | Function | float | -
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// 99 | 6 | Private | float | -
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// 53 | 52 | Private | mat2x2[10] | 54
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// 47 | 8 | Private | struct(vec2, float) | 48
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// 70 | 7 | Function | vec2 | -
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// 71 | 59 | Function | mat2x2 | -
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// Indices 0-5 are in ids 80-85
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TransformationContext transformation_context(
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MakeUnique<FactManager>(context.get()), validator_options);
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transformation_context.GetFactManager()->AddFactValueOfPointeeIsIrrelevant(
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54);
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// Check the case where the index type is not a 32-bit integer.
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TransformationAccessChain invalid_index_example1(
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101, 28, {29}, MakeInstructionDescriptor(42, spv::Op::OpReturn, 0));
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// Since the index is not a 32-bit integer type but a 32-bit float type,
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// ValidIndexComposite should return false and thus the transformation is not
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// applicable.
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ASSERT_FALSE(invalid_index_example1.IsApplicable(context.get(),
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transformation_context));
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// Bad: id is not fresh
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ASSERT_FALSE(
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TransformationAccessChain(
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43, 43, {80}, MakeInstructionDescriptor(24, spv::Op::OpLoad, 0))
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.IsApplicable(context.get(), transformation_context));
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// Bad: pointer id does not exist
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ASSERT_FALSE(
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TransformationAccessChain(
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100, 1000, {80}, MakeInstructionDescriptor(24, spv::Op::OpLoad, 0))
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.IsApplicable(context.get(), transformation_context));
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// Bad: pointer id is not a type
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ASSERT_FALSE(
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TransformationAccessChain(
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100, 5, {80}, MakeInstructionDescriptor(24, spv::Op::OpLoad, 0))
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.IsApplicable(context.get(), transformation_context));
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// Bad: pointer id is not a pointer
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ASSERT_FALSE(
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TransformationAccessChain(
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100, 23, {80}, MakeInstructionDescriptor(24, spv::Op::OpLoad, 0))
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.IsApplicable(context.get(), transformation_context));
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// Bad: index id does not exist
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ASSERT_FALSE(
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TransformationAccessChain(
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100, 43, {1000}, MakeInstructionDescriptor(24, spv::Op::OpLoad, 0))
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.IsApplicable(context.get(), transformation_context));
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// Bad: index id is not a constant and the pointer refers to a struct
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ASSERT_FALSE(
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TransformationAccessChain(
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100, 43, {24}, MakeInstructionDescriptor(25, spv::Op::OpIAdd, 0))
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.IsApplicable(context.get(), transformation_context));
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// Bad: too many indices
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ASSERT_FALSE(TransformationAccessChain(
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100, 43, {80, 80, 80},
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MakeInstructionDescriptor(24, spv::Op::OpLoad, 0))
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.IsApplicable(context.get(), transformation_context));
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// Bad: index id is out of bounds when accessing a struct
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ASSERT_FALSE(
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TransformationAccessChain(
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100, 43, {83, 80}, MakeInstructionDescriptor(24, spv::Op::OpLoad, 0))
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.IsApplicable(context.get(), transformation_context));
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// Bad: attempt to insert before variable
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ASSERT_FALSE(
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TransformationAccessChain(
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100, 34, {}, MakeInstructionDescriptor(36, spv::Op::OpVariable, 0))
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.IsApplicable(context.get(), transformation_context));
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// Bad: OpTypeBool must be present in the module to clamp an index
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ASSERT_FALSE(
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TransformationAccessChain(
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100, 36, {80, 81}, MakeInstructionDescriptor(37, spv::Op::OpStore, 0))
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.IsApplicable(context.get(), transformation_context));
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// Bad: pointer not available
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ASSERT_FALSE(TransformationAccessChain(
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100, 43, {80},
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MakeInstructionDescriptor(21, spv::Op::OpAccessChain, 0))
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.IsApplicable(context.get(), transformation_context));
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// Bad: instruction descriptor does not identify anything
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ASSERT_FALSE(
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TransformationAccessChain(
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100, 43, {80}, MakeInstructionDescriptor(24, spv::Op::OpLoad, 100))
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.IsApplicable(context.get(), transformation_context));
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#ifndef NDEBUG
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// Bad: pointer is null
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ASSERT_DEATH(
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TransformationAccessChain(
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100, 46, {80}, MakeInstructionDescriptor(24, spv::Op::OpLoad, 0))
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.IsApplicable(context.get(), transformation_context),
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"Access chains should not be created from null/undefined pointers");
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#endif
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// Bad: pointer to result type does not exist
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ASSERT_FALSE(
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TransformationAccessChain(
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100, 52, {0}, MakeInstructionDescriptor(24, spv::Op::OpLoad, 0))
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.IsApplicable(context.get(), transformation_context));
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{
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TransformationAccessChain transformation(
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100, 43, {80}, MakeInstructionDescriptor(24, spv::Op::OpLoad, 0));
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ASSERT_TRUE(
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transformation.IsApplicable(context.get(), transformation_context));
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ApplyAndCheckFreshIds(transformation, context.get(),
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&transformation_context);
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ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
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context.get(), validator_options, kConsoleMessageConsumer));
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ASSERT_FALSE(
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transformation_context.GetFactManager()->PointeeValueIsIrrelevant(100));
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}
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{
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TransformationAccessChain transformation(
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101, 28, {81}, MakeInstructionDescriptor(42, spv::Op::OpReturn, 0));
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ASSERT_TRUE(
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transformation.IsApplicable(context.get(), transformation_context));
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ApplyAndCheckFreshIds(transformation, context.get(),
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&transformation_context);
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ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
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context.get(), validator_options, kConsoleMessageConsumer));
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ASSERT_FALSE(
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transformation_context.GetFactManager()->PointeeValueIsIrrelevant(101));
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}
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{
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TransformationAccessChain transformation(
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102, 44, {}, MakeInstructionDescriptor(44, spv::Op::OpStore, 0));
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ASSERT_TRUE(
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transformation.IsApplicable(context.get(), transformation_context));
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ApplyAndCheckFreshIds(transformation, context.get(),
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&transformation_context);
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ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
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context.get(), validator_options, kConsoleMessageConsumer));
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ASSERT_FALSE(
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transformation_context.GetFactManager()->PointeeValueIsIrrelevant(103));
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}
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{
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TransformationAccessChain transformation(
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103, 13, {80},
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MakeInstructionDescriptor(21, spv::Op::OpAccessChain, 0));
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ASSERT_TRUE(
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transformation.IsApplicable(context.get(), transformation_context));
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ApplyAndCheckFreshIds(transformation, context.get(),
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&transformation_context);
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ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
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context.get(), validator_options, kConsoleMessageConsumer));
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ASSERT_FALSE(
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transformation_context.GetFactManager()->PointeeValueIsIrrelevant(104));
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}
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{
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TransformationAccessChain transformation(
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104, 34, {}, MakeInstructionDescriptor(44, spv::Op::OpStore, 1));
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ASSERT_TRUE(
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transformation.IsApplicable(context.get(), transformation_context));
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ApplyAndCheckFreshIds(transformation, context.get(),
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&transformation_context);
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ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
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context.get(), validator_options, kConsoleMessageConsumer));
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ASSERT_FALSE(
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transformation_context.GetFactManager()->PointeeValueIsIrrelevant(105));
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}
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{
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TransformationAccessChain transformation(
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105, 38, {}, MakeInstructionDescriptor(40, spv::Op::OpFunctionCall, 0));
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ASSERT_TRUE(
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transformation.IsApplicable(context.get(), transformation_context));
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ApplyAndCheckFreshIds(transformation, context.get(),
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&transformation_context);
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ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
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context.get(), validator_options, kConsoleMessageConsumer));
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ASSERT_FALSE(
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transformation_context.GetFactManager()->PointeeValueIsIrrelevant(106));
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}
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{
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TransformationAccessChain transformation(
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106, 14, {}, MakeInstructionDescriptor(24, spv::Op::OpLoad, 0));
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ASSERT_TRUE(
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transformation.IsApplicable(context.get(), transformation_context));
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ApplyAndCheckFreshIds(transformation, context.get(),
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&transformation_context);
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ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
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context.get(), validator_options, kConsoleMessageConsumer));
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ASSERT_FALSE(
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transformation_context.GetFactManager()->PointeeValueIsIrrelevant(107));
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}
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{
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// Check the case where the access chain's base pointer has the irrelevant
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// pointee fact; the resulting access chain should inherit this fact.
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TransformationAccessChain transformation(
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107, 54, {}, MakeInstructionDescriptor(24, spv::Op::OpLoad, 0));
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ASSERT_TRUE(
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transformation.IsApplicable(context.get(), transformation_context));
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ApplyAndCheckFreshIds(transformation, context.get(),
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&transformation_context);
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ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
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context.get(), validator_options, kConsoleMessageConsumer));
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ASSERT_TRUE(
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transformation_context.GetFactManager()->PointeeValueIsIrrelevant(54));
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}
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std::string after_transformation = R"(
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OpCapability Shader
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OpCapability VariablePointers
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%1 = OpExtInstImport "GLSL.std.450"
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OpMemoryModel Logical GLSL450
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OpEntryPoint Fragment %4 "main" %48 %54
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OpExecutionMode %4 OriginUpperLeft
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OpSource ESSL 310
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%2 = OpTypeVoid
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%3 = OpTypeFunction %2
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%6 = OpTypeFloat 32
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%7 = OpTypeVector %6 2
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%50 = OpTypeMatrix %7 2
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%70 = OpTypePointer Function %7
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%71 = OpTypePointer Function %50
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%8 = OpTypeStruct %7 %6
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%9 = OpTypePointer Function %8
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%10 = OpTypeInt 32 1
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%11 = OpTypePointer Function %10
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%12 = OpTypeFunction %10 %9 %11
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%17 = OpConstant %10 0
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%18 = OpTypeInt 32 0
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%19 = OpConstant %18 0
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%20 = OpTypePointer Function %6
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%99 = OpTypePointer Private %6
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%29 = OpConstant %6 0
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%30 = OpConstant %6 1
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%31 = OpConstantComposite %7 %29 %30
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%32 = OpConstant %6 2
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%33 = OpConstantComposite %8 %31 %32
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%35 = OpConstant %10 10
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%51 = OpConstant %18 10
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%80 = OpConstant %18 0
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%81 = OpConstant %10 1
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%82 = OpConstant %18 2
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%83 = OpConstant %10 3
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%84 = OpConstant %18 4
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%85 = OpConstant %10 5
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%52 = OpTypeArray %50 %51
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%53 = OpTypePointer Private %52
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%46 = OpConstantNull %9
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%47 = OpTypePointer Private %8
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%48 = OpVariable %47 Private
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%54 = OpVariable %53 Private
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%4 = OpFunction %2 None %3
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%5 = OpLabel
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%28 = OpVariable %9 Function
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%34 = OpVariable %11 Function
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%36 = OpVariable %9 Function
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%38 = OpVariable %11 Function
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%44 = OpCopyObject %9 %36
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%102 = OpAccessChain %9 %44
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OpStore %28 %33
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%104 = OpAccessChain %11 %34
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OpStore %34 %35
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%37 = OpLoad %8 %28
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OpStore %36 %37
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%39 = OpLoad %10 %34
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OpStore %38 %39
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%105 = OpAccessChain %11 %38
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%40 = OpFunctionCall %10 %15 %36 %38
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%41 = OpLoad %10 %34
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%42 = OpIAdd %10 %41 %40
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OpStore %34 %42
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%101 = OpAccessChain %20 %28 %81
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OpReturn
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OpFunctionEnd
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%15 = OpFunction %10 None %12
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%13 = OpFunctionParameter %9
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%14 = OpFunctionParameter %11
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%16 = OpLabel
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%103 = OpAccessChain %70 %13 %80
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%21 = OpAccessChain %20 %13 %17 %19
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%43 = OpCopyObject %9 %13
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%22 = OpLoad %6 %21
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%23 = OpConvertFToS %10 %22
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%100 = OpAccessChain %70 %43 %80
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%106 = OpAccessChain %11 %14
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%107 = OpAccessChain %53 %54
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%24 = OpLoad %10 %14
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%25 = OpIAdd %10 %23 %24
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OpReturnValue %25
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OpFunctionEnd
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)";
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ASSERT_TRUE(IsEqual(env, after_transformation, context.get()));
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}
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TEST(TransformationAccessChainTest, StructIndexMustBeConstant) {
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std::string shader = R"(
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OpCapability Shader
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%1 = OpExtInstImport "GLSL.std.450"
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OpMemoryModel Logical GLSL450
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OpEntryPoint Fragment %4 "main"
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OpExecutionMode %4 OriginUpperLeft
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OpSource ESSL 320
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%2 = OpTypeVoid
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%3 = OpTypeFunction %2
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%6 = OpTypeInt 32 1
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%20 = OpUndef %6
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%7 = OpTypeStruct %6 %6
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%8 = OpTypePointer Function %7
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%10 = OpConstant %6 0
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%11 = OpConstant %6 2
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%12 = OpTypePointer Function %6
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%4 = OpFunction %2 None %3
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%5 = OpLabel
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%9 = OpVariable %8 Function
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OpReturn
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OpFunctionEnd
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)";
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const auto env = SPV_ENV_UNIVERSAL_1_4;
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const auto consumer = nullptr;
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const auto context = BuildModule(env, consumer, shader, kFuzzAssembleOption);
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spvtools::ValidatorOptions validator_options;
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ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(context.get(), validator_options,
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kConsoleMessageConsumer));
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TransformationContext transformation_context(
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MakeUnique<FactManager>(context.get()), validator_options);
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// Bad: %9 is a pointer to a struct, but %20 is not a constant.
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ASSERT_FALSE(
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TransformationAccessChain(
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100, 9, {20}, MakeInstructionDescriptor(9, spv::Op::OpReturn, 0))
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.IsApplicable(context.get(), transformation_context));
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}
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TEST(TransformationAccessChainTest, IsomorphicStructs) {
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std::string shader = R"(
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OpCapability Shader
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%1 = OpExtInstImport "GLSL.std.450"
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OpMemoryModel Logical GLSL450
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OpEntryPoint Fragment %4 "main" %11 %12
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OpExecutionMode %4 OriginUpperLeft
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OpSource ESSL 310
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%2 = OpTypeVoid
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%3 = OpTypeFunction %2
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%6 = OpTypeFloat 32
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%7 = OpTypeStruct %6
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%8 = OpTypePointer Private %7
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%9 = OpTypeStruct %6
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%10 = OpTypePointer Private %9
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%11 = OpVariable %8 Private
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%12 = OpVariable %10 Private
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%4 = OpFunction %2 None %3
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%5 = OpLabel
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OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
|
|
const auto env = SPV_ENV_UNIVERSAL_1_4;
|
|
const auto consumer = nullptr;
|
|
const auto context = BuildModule(env, consumer, shader, kFuzzAssembleOption);
|
|
spvtools::ValidatorOptions validator_options;
|
|
ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(context.get(), validator_options,
|
|
kConsoleMessageConsumer));
|
|
TransformationContext transformation_context(
|
|
MakeUnique<FactManager>(context.get()), validator_options);
|
|
{
|
|
TransformationAccessChain transformation(
|
|
100, 11, {}, MakeInstructionDescriptor(5, spv::Op::OpReturn, 0));
|
|
ASSERT_TRUE(
|
|
transformation.IsApplicable(context.get(), transformation_context));
|
|
ApplyAndCheckFreshIds(transformation, context.get(),
|
|
&transformation_context);
|
|
ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
|
|
context.get(), validator_options, kConsoleMessageConsumer));
|
|
}
|
|
{
|
|
TransformationAccessChain transformation(
|
|
101, 12, {}, MakeInstructionDescriptor(5, spv::Op::OpReturn, 0));
|
|
ASSERT_TRUE(
|
|
transformation.IsApplicable(context.get(), transformation_context));
|
|
ApplyAndCheckFreshIds(transformation, context.get(),
|
|
&transformation_context);
|
|
ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
|
|
context.get(), validator_options, kConsoleMessageConsumer));
|
|
}
|
|
|
|
std::string after_transformation = R"(
|
|
OpCapability Shader
|
|
%1 = OpExtInstImport "GLSL.std.450"
|
|
OpMemoryModel Logical GLSL450
|
|
OpEntryPoint Fragment %4 "main" %11 %12
|
|
OpExecutionMode %4 OriginUpperLeft
|
|
OpSource ESSL 310
|
|
%2 = OpTypeVoid
|
|
%3 = OpTypeFunction %2
|
|
%6 = OpTypeFloat 32
|
|
%7 = OpTypeStruct %6
|
|
%8 = OpTypePointer Private %7
|
|
%9 = OpTypeStruct %6
|
|
%10 = OpTypePointer Private %9
|
|
%11 = OpVariable %8 Private
|
|
%12 = OpVariable %10 Private
|
|
%4 = OpFunction %2 None %3
|
|
%5 = OpLabel
|
|
%100 = OpAccessChain %8 %11
|
|
%101 = OpAccessChain %10 %12
|
|
OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
ASSERT_TRUE(IsEqual(env, after_transformation, context.get()));
|
|
}
|
|
|
|
TEST(TransformationAccessChainTest, ClampingVariables) {
|
|
std::string shader = R"(
|
|
OpCapability Shader
|
|
%1 = OpExtInstImport "GLSL.std.450"
|
|
OpMemoryModel Logical GLSL450
|
|
OpEntryPoint Fragment %2 "main" %3
|
|
OpExecutionMode %2 OriginUpperLeft
|
|
OpSource ESSL 310
|
|
%4 = OpTypeVoid
|
|
%5 = OpTypeBool
|
|
%6 = OpTypeFunction %4
|
|
%7 = OpTypeInt 32 1
|
|
%8 = OpTypeVector %7 4
|
|
%9 = OpTypePointer Function %8
|
|
%10 = OpConstant %7 0
|
|
%11 = OpConstant %7 1
|
|
%12 = OpConstant %7 3
|
|
%13 = OpConstant %7 2
|
|
%14 = OpConstantComposite %8 %10 %11 %12 %13
|
|
%15 = OpTypePointer Function %7
|
|
%16 = OpTypeInt 32 0
|
|
%17 = OpConstant %16 1
|
|
%18 = OpConstant %16 3
|
|
%19 = OpTypeStruct %8
|
|
%20 = OpTypePointer Function %19
|
|
%21 = OpConstant %7 9
|
|
%22 = OpConstant %16 10
|
|
%23 = OpTypeArray %19 %22
|
|
%24 = OpTypePointer Function %23
|
|
%25 = OpTypeFloat 32
|
|
%26 = OpTypeVector %25 4
|
|
%27 = OpTypePointer Output %26
|
|
%3 = OpVariable %27 Output
|
|
%2 = OpFunction %4 None %6
|
|
%28 = OpLabel
|
|
%29 = OpVariable %9 Function
|
|
%30 = OpVariable %15 Function
|
|
%31 = OpVariable %15 Function
|
|
%32 = OpVariable %20 Function
|
|
%33 = OpVariable %15 Function
|
|
%34 = OpVariable %24 Function
|
|
OpStore %29 %14
|
|
OpStore %30 %10
|
|
%36 = OpLoad %7 %30
|
|
%38 = OpLoad %8 %29
|
|
%39 = OpCompositeConstruct %19 %38
|
|
%40 = OpLoad %7 %30
|
|
%42 = OpLoad %8 %29
|
|
%43 = OpCompositeConstruct %19 %42
|
|
%45 = OpLoad %7 %30
|
|
%46 = OpLoad %7 %33
|
|
OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
|
|
const auto env = SPV_ENV_UNIVERSAL_1_4;
|
|
const auto consumer = nullptr;
|
|
const auto context = BuildModule(env, consumer, shader, kFuzzAssembleOption);
|
|
spvtools::ValidatorOptions validator_options;
|
|
ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(context.get(), validator_options,
|
|
kConsoleMessageConsumer));
|
|
TransformationContext transformation_context(
|
|
MakeUnique<FactManager>(context.get()), validator_options);
|
|
// Bad: no ids given for clamping
|
|
ASSERT_FALSE(
|
|
TransformationAccessChain(
|
|
100, 29, {17}, MakeInstructionDescriptor(36, spv::Op::OpLoad, 0))
|
|
.IsApplicable(context.get(), transformation_context));
|
|
|
|
// Bad: an id given for clamping is not fresh
|
|
ASSERT_FALSE(TransformationAccessChain(
|
|
100, 29, {17},
|
|
MakeInstructionDescriptor(36, spv::Op::OpLoad, 0),
|
|
{{46, 201}})
|
|
.IsApplicable(context.get(), transformation_context));
|
|
|
|
// Bad: an id given for clamping is not fresh
|
|
ASSERT_FALSE(TransformationAccessChain(
|
|
100, 29, {17},
|
|
MakeInstructionDescriptor(36, spv::Op::OpLoad, 0),
|
|
{{200, 46}})
|
|
.IsApplicable(context.get(), transformation_context));
|
|
|
|
// Bad: an id given for clamping is the same as the id for the access chain
|
|
ASSERT_FALSE(TransformationAccessChain(
|
|
100, 29, {17},
|
|
MakeInstructionDescriptor(36, spv::Op::OpLoad, 0),
|
|
{{100, 201}})
|
|
.IsApplicable(context.get(), transformation_context));
|
|
|
|
// Bad: the fresh ids given are not distinct
|
|
ASSERT_FALSE(TransformationAccessChain(
|
|
100, 29, {17},
|
|
MakeInstructionDescriptor(36, spv::Op::OpLoad, 0),
|
|
{{200, 200}})
|
|
.IsApplicable(context.get(), transformation_context));
|
|
|
|
// Bad: not enough ids given for clamping (2 pairs needed)
|
|
ASSERT_FALSE(TransformationAccessChain(
|
|
104, 34, {45, 10, 46},
|
|
MakeInstructionDescriptor(46, spv::Op::OpReturn, 0),
|
|
{{208, 209}, {209, 211}})
|
|
.IsApplicable(context.get(), transformation_context));
|
|
|
|
// Bad: the fresh ids given are not distinct
|
|
ASSERT_FALSE(TransformationAccessChain(
|
|
104, 34, {45, 10, 46},
|
|
MakeInstructionDescriptor(46, spv::Op::OpReturn, 0),
|
|
{{208, 209}, {209, 211}})
|
|
.IsApplicable(context.get(), transformation_context));
|
|
|
|
{
|
|
TransformationAccessChain transformation(
|
|
100, 29, {17}, MakeInstructionDescriptor(36, spv::Op::OpLoad, 0),
|
|
{{200, 201}});
|
|
ASSERT_TRUE(
|
|
transformation.IsApplicable(context.get(), transformation_context));
|
|
ApplyAndCheckFreshIds(transformation, context.get(),
|
|
&transformation_context);
|
|
ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
|
|
context.get(), validator_options, kConsoleMessageConsumer));
|
|
}
|
|
|
|
{
|
|
TransformationAccessChain transformation(
|
|
101, 29, {36}, MakeInstructionDescriptor(38, spv::Op::OpLoad, 0),
|
|
{{202, 203}});
|
|
ASSERT_TRUE(
|
|
transformation.IsApplicable(context.get(), transformation_context));
|
|
ApplyAndCheckFreshIds(transformation, context.get(),
|
|
&transformation_context);
|
|
ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
|
|
context.get(), validator_options, kConsoleMessageConsumer));
|
|
}
|
|
|
|
{
|
|
TransformationAccessChain transformation(
|
|
102, 32, {10, 40}, MakeInstructionDescriptor(42, spv::Op::OpLoad, 0),
|
|
{{204, 205}});
|
|
ASSERT_TRUE(
|
|
transformation.IsApplicable(context.get(), transformation_context));
|
|
ApplyAndCheckFreshIds(transformation, context.get(),
|
|
&transformation_context);
|
|
ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
|
|
context.get(), validator_options, kConsoleMessageConsumer));
|
|
}
|
|
|
|
{
|
|
TransformationAccessChain transformation(
|
|
103, 34, {11}, MakeInstructionDescriptor(45, spv::Op::OpLoad, 0),
|
|
{{206, 207}});
|
|
ASSERT_TRUE(
|
|
transformation.IsApplicable(context.get(), transformation_context));
|
|
ApplyAndCheckFreshIds(transformation, context.get(),
|
|
&transformation_context);
|
|
ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
|
|
context.get(), validator_options, kConsoleMessageConsumer));
|
|
}
|
|
|
|
{
|
|
TransformationAccessChain transformation(
|
|
104, 34, {45, 10, 46},
|
|
MakeInstructionDescriptor(46, spv::Op::OpReturn, 0),
|
|
{{208, 209}, {210, 211}});
|
|
ASSERT_TRUE(
|
|
transformation.IsApplicable(context.get(), transformation_context));
|
|
ApplyAndCheckFreshIds(transformation, context.get(),
|
|
&transformation_context);
|
|
ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
|
|
context.get(), validator_options, kConsoleMessageConsumer));
|
|
}
|
|
|
|
std::string after_transformation = R"(
|
|
OpCapability Shader
|
|
%1 = OpExtInstImport "GLSL.std.450"
|
|
OpMemoryModel Logical GLSL450
|
|
OpEntryPoint Fragment %2 "main" %3
|
|
OpExecutionMode %2 OriginUpperLeft
|
|
OpSource ESSL 310
|
|
%4 = OpTypeVoid
|
|
%5 = OpTypeBool
|
|
%6 = OpTypeFunction %4
|
|
%7 = OpTypeInt 32 1
|
|
%8 = OpTypeVector %7 4
|
|
%9 = OpTypePointer Function %8
|
|
%10 = OpConstant %7 0
|
|
%11 = OpConstant %7 1
|
|
%12 = OpConstant %7 3
|
|
%13 = OpConstant %7 2
|
|
%14 = OpConstantComposite %8 %10 %11 %12 %13
|
|
%15 = OpTypePointer Function %7
|
|
%16 = OpTypeInt 32 0
|
|
%17 = OpConstant %16 1
|
|
%18 = OpConstant %16 3
|
|
%19 = OpTypeStruct %8
|
|
%20 = OpTypePointer Function %19
|
|
%21 = OpConstant %7 9
|
|
%22 = OpConstant %16 10
|
|
%23 = OpTypeArray %19 %22
|
|
%24 = OpTypePointer Function %23
|
|
%25 = OpTypeFloat 32
|
|
%26 = OpTypeVector %25 4
|
|
%27 = OpTypePointer Output %26
|
|
%3 = OpVariable %27 Output
|
|
%2 = OpFunction %4 None %6
|
|
%28 = OpLabel
|
|
%29 = OpVariable %9 Function
|
|
%30 = OpVariable %15 Function
|
|
%31 = OpVariable %15 Function
|
|
%32 = OpVariable %20 Function
|
|
%33 = OpVariable %15 Function
|
|
%34 = OpVariable %24 Function
|
|
OpStore %29 %14
|
|
OpStore %30 %10
|
|
%200 = OpULessThanEqual %5 %17 %18
|
|
%201 = OpSelect %16 %200 %17 %18
|
|
%100 = OpAccessChain %15 %29 %201
|
|
%36 = OpLoad %7 %30
|
|
%202 = OpULessThanEqual %5 %36 %12
|
|
%203 = OpSelect %7 %202 %36 %12
|
|
%101 = OpAccessChain %15 %29 %203
|
|
%38 = OpLoad %8 %29
|
|
%39 = OpCompositeConstruct %19 %38
|
|
%40 = OpLoad %7 %30
|
|
%204 = OpULessThanEqual %5 %40 %12
|
|
%205 = OpSelect %7 %204 %40 %12
|
|
%102 = OpAccessChain %15 %32 %10 %205
|
|
%42 = OpLoad %8 %29
|
|
%43 = OpCompositeConstruct %19 %42
|
|
%206 = OpULessThanEqual %5 %11 %21
|
|
%207 = OpSelect %7 %206 %11 %21
|
|
%103 = OpAccessChain %20 %34 %207
|
|
%45 = OpLoad %7 %30
|
|
%46 = OpLoad %7 %33
|
|
%208 = OpULessThanEqual %5 %45 %21
|
|
%209 = OpSelect %7 %208 %45 %21
|
|
%210 = OpULessThanEqual %5 %46 %12
|
|
%211 = OpSelect %7 %210 %46 %12
|
|
%104 = OpAccessChain %15 %34 %209 %10 %211
|
|
OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
ASSERT_TRUE(IsEqual(env, after_transformation, context.get()));
|
|
}
|
|
|
|
} // namespace
|
|
} // namespace fuzz
|
|
} // namespace spvtools
|