mirror of
https://github.com/KhronosGroup/SPIRV-Tools
synced 2024-12-29 03:01:08 +00:00
502e982956
This fixes a problem where TransformationInlineFunction could lead to distinct instructions having identical unique ids. It adds a validity check to detect this problem in general. Fixes #3911.
721 lines
25 KiB
C++
721 lines
25 KiB
C++
// Copyright (c) 2020 Vasyl Teliman
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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_move_instruction_down.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(TransformationMoveInstructionDownTest, BasicTest) {
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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 310
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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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%9 = OpConstant %6 0
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%16 = OpTypeBool
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%17 = OpConstantFalse %16
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%20 = OpUndef %6
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%13 = OpTypePointer Function %6
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%4 = OpFunction %2 None %3
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%5 = OpLabel
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%12 = OpVariable %13 Function
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%10 = OpIAdd %6 %9 %9
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%11 = OpISub %6 %9 %10
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OpStore %12 %10
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%14 = OpLoad %6 %12
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%15 = OpIMul %6 %9 %14
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OpSelectionMerge %19 None
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OpBranchConditional %17 %18 %19
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%18 = OpLabel
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OpBranch %19
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%19 = OpLabel
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%42 = OpFunctionCall %2 %40
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%22 = OpIAdd %6 %15 %15
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%21 = OpIAdd %6 %15 %15
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OpReturn
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OpFunctionEnd
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%40 = OpFunction %2 None %3
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%41 = OpLabel
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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_3;
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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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// Instruction descriptor is invalid.
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(30, SpvOpNop, 0))
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.IsApplicable(context.get(), transformation_context));
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// Opcode is not supported.
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(5, SpvOpLabel, 0))
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.IsApplicable(context.get(), transformation_context));
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(12, SpvOpVariable, 0))
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.IsApplicable(context.get(), transformation_context));
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(42, SpvOpFunctionCall, 0))
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.IsApplicable(context.get(), transformation_context));
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// Can't move the last instruction in the block.
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(15, SpvOpBranchConditional, 0))
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.IsApplicable(context.get(), transformation_context));
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// Can't move the instruction if the next instruction is the last one in the
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// block.
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(21, SpvOpIAdd, 0))
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.IsApplicable(context.get(), transformation_context));
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// Can't insert instruction's opcode after its successor.
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(15, SpvOpIMul, 0))
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.IsApplicable(context.get(), transformation_context));
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// Instruction's successor depends on the instruction.
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(10, SpvOpIAdd, 0))
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.IsApplicable(context.get(), transformation_context));
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{
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TransformationMoveInstructionDown transformation(
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MakeInstructionDescriptor(11, SpvOpISub, 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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}
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{
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TransformationMoveInstructionDown transformation(
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MakeInstructionDescriptor(22, SpvOpIAdd, 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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}
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std::string after_transformation = 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 310
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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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%9 = OpConstant %6 0
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%16 = OpTypeBool
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%17 = OpConstantFalse %16
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%20 = OpUndef %6
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%13 = OpTypePointer Function %6
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%4 = OpFunction %2 None %3
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%5 = OpLabel
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%12 = OpVariable %13 Function
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%10 = OpIAdd %6 %9 %9
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OpStore %12 %10
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%11 = OpISub %6 %9 %10
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%14 = OpLoad %6 %12
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%15 = OpIMul %6 %9 %14
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OpSelectionMerge %19 None
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OpBranchConditional %17 %18 %19
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%18 = OpLabel
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OpBranch %19
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%19 = OpLabel
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%42 = OpFunctionCall %2 %40
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%21 = OpIAdd %6 %15 %15
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%22 = OpIAdd %6 %15 %15
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OpReturn
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OpFunctionEnd
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%40 = OpFunction %2 None %3
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%41 = OpLabel
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OpReturn
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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(TransformationMoveInstructionDownTest, HandlesUnsupportedInstructions) {
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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 GLCompute %4 "main"
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OpExecutionMode %4 LocalSize 16 1 1
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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 0
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%7 = OpConstant %6 2
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%20 = OpTypePointer Function %6
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%4 = OpFunction %2 None %3
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%5 = OpLabel
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%21 = OpVariable %20 Function %7
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; can swap simple and not supported instructions
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%8 = OpCopyObject %6 %7
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%9 = OpFunctionCall %2 %12
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; cannot swap memory and not supported instruction
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%22 = OpLoad %6 %21
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%23 = OpFunctionCall %2 %12
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; cannot swap barrier and not supported instruction
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OpMemoryBarrier %7 %7
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%24 = OpFunctionCall %2 %12
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OpReturn
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OpFunctionEnd
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%12 = OpFunction %2 None %3
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%13 = OpLabel
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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_3;
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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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// Swap memory instruction with an unsupported one.
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(22, SpvOpLoad, 0))
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.IsApplicable(context.get(), transformation_context));
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// Swap memory barrier with an unsupported one.
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(23, SpvOpMemoryBarrier, 0))
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.IsApplicable(context.get(), transformation_context));
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// Swap simple instruction with an unsupported one.
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TransformationMoveInstructionDown transformation(
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MakeInstructionDescriptor(8, SpvOpCopyObject, 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(), &transformation_context);
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ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(context.get(), validator_options,
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kConsoleMessageConsumer));
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std::string after_transformation = 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 GLCompute %4 "main"
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OpExecutionMode %4 LocalSize 16 1 1
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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 0
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%7 = OpConstant %6 2
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%20 = OpTypePointer Function %6
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%4 = OpFunction %2 None %3
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%5 = OpLabel
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%21 = OpVariable %20 Function %7
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; can swap simple and not supported instructions
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%9 = OpFunctionCall %2 %12
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%8 = OpCopyObject %6 %7
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; cannot swap memory and not supported instruction
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%22 = OpLoad %6 %21
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%23 = OpFunctionCall %2 %12
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; cannot swap barrier and not supported instruction
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OpMemoryBarrier %7 %7
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%24 = OpFunctionCall %2 %12
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OpReturn
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OpFunctionEnd
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%12 = OpFunction %2 None %3
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%13 = OpLabel
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OpReturn
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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(TransformationMoveInstructionDownTest, HandlesBarrierInstructions) {
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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 GLCompute %4 "main"
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OpExecutionMode %4 LocalSize 16 1 1
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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 0
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%7 = OpConstant %6 2
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%20 = OpTypePointer Function %6
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%4 = OpFunction %2 None %3
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%5 = OpLabel
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%21 = OpVariable %20 Function %7
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; cannot swap two barrier instructions
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OpMemoryBarrier %7 %7
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OpMemoryBarrier %7 %7
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; cannot swap barrier and memory instructions
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OpMemoryBarrier %7 %7
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%22 = OpLoad %6 %21
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OpMemoryBarrier %7 %7
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; can swap barrier and simple instructions
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%23 = OpCopyObject %6 %7
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OpMemoryBarrier %7 %7
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OpReturn
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OpFunctionEnd
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%12 = OpFunction %2 None %3
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%13 = OpLabel
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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_3;
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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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// Swap two barrier instructions.
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(21, SpvOpMemoryBarrier, 0))
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.IsApplicable(context.get(), transformation_context));
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// Swap barrier and memory instructions.
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(21, SpvOpMemoryBarrier, 2))
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.IsApplicable(context.get(), transformation_context));
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ASSERT_FALSE(TransformationMoveInstructionDown(
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MakeInstructionDescriptor(22, SpvOpLoad, 0))
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.IsApplicable(context.get(), transformation_context));
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// Swap barrier and simple instructions.
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{
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TransformationMoveInstructionDown transformation(
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MakeInstructionDescriptor(23, SpvOpCopyObject, 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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}
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{
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TransformationMoveInstructionDown transformation(
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MakeInstructionDescriptor(22, SpvOpMemoryBarrier, 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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}
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ASSERT_TRUE(IsEqual(env, shader, context.get()));
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}
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TEST(TransformationMoveInstructionDownTest, HandlesSimpleInstructions) {
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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 GLCompute %4 "main"
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OpExecutionMode %4 LocalSize 16 1 1
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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 0
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%7 = OpConstant %6 2
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%20 = OpTypePointer Function %6
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%4 = OpFunction %2 None %3
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%5 = OpLabel
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%21 = OpVariable %20 Function %7
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; can swap simple and barrier instructions
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%40 = OpCopyObject %6 %7
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OpMemoryBarrier %7 %7
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; can swap simple and memory instructions
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%41 = OpCopyObject %6 %7
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%22 = OpLoad %6 %21
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; can swap two simple instructions
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%23 = OpCopyObject %6 %7
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%42 = OpCopyObject %6 %7
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OpReturn
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OpFunctionEnd
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%12 = OpFunction %2 None %3
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%13 = OpLabel
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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_3;
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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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// Swap simple and barrier instructions.
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{
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TransformationMoveInstructionDown transformation(
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MakeInstructionDescriptor(40, SpvOpCopyObject, 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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}
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{
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TransformationMoveInstructionDown transformation(
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MakeInstructionDescriptor(21, SpvOpMemoryBarrier, 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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}
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// Swap simple and memory instructions.
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{
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TransformationMoveInstructionDown transformation(
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MakeInstructionDescriptor(41, SpvOpCopyObject, 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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}
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{
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TransformationMoveInstructionDown transformation(
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MakeInstructionDescriptor(22, SpvOpLoad, 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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}
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// Swap two simple instructions.
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{
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TransformationMoveInstructionDown transformation(
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MakeInstructionDescriptor(23, SpvOpCopyObject, 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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}
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std::string after_transformation = 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 GLCompute %4 "main"
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OpExecutionMode %4 LocalSize 16 1 1
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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 0
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%7 = OpConstant %6 2
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%20 = OpTypePointer Function %6
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%4 = OpFunction %2 None %3
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%5 = OpLabel
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%21 = OpVariable %20 Function %7
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; can swap simple and barrier instructions
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%40 = OpCopyObject %6 %7
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OpMemoryBarrier %7 %7
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; can swap simple and memory instructions
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%41 = OpCopyObject %6 %7
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%22 = OpLoad %6 %21
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; can swap two simple instructions
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%42 = OpCopyObject %6 %7
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%23 = OpCopyObject %6 %7
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OpReturn
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OpFunctionEnd
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%12 = OpFunction %2 None %3
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%13 = OpLabel
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OpReturn
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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(TransformationMoveInstructionDownTest, HandlesMemoryInstructions) {
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std::string shader = R"(
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OpCapability Shader
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%1 = OpExtInstImport "GLSL.std.450"
|
|
OpMemoryModel Logical GLSL450
|
|
OpEntryPoint GLCompute %4 "main"
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|
OpExecutionMode %4 LocalSize 16 1 1
|
|
OpSource ESSL 320
|
|
%2 = OpTypeVoid
|
|
%3 = OpTypeFunction %2
|
|
%6 = OpTypeInt 32 0
|
|
%7 = OpConstant %6 2
|
|
%20 = OpTypePointer Function %6
|
|
%4 = OpFunction %2 None %3
|
|
%5 = OpLabel
|
|
%21 = OpVariable %20 Function %7
|
|
%22 = OpVariable %20 Function %7
|
|
|
|
; swap R and R instructions
|
|
%23 = OpLoad %6 %21
|
|
%24 = OpLoad %6 %22
|
|
|
|
; swap R and RW instructions
|
|
|
|
; can't swap
|
|
%25 = OpLoad %6 %21
|
|
OpCopyMemory %21 %22
|
|
|
|
; can swap
|
|
%26 = OpLoad %6 %21
|
|
OpCopyMemory %22 %21
|
|
|
|
%27 = OpLoad %6 %22
|
|
OpCopyMemory %21 %22
|
|
|
|
%28 = OpLoad %6 %22
|
|
OpCopyMemory %22 %21
|
|
|
|
; swap R and W instructions
|
|
|
|
; can't swap
|
|
%29 = OpLoad %6 %21
|
|
OpStore %21 %7
|
|
|
|
; can swap
|
|
%30 = OpLoad %6 %22
|
|
OpStore %21 %7
|
|
|
|
%31 = OpLoad %6 %21
|
|
OpStore %22 %7
|
|
|
|
%32 = OpLoad %6 %22
|
|
OpStore %22 %7
|
|
|
|
; swap RW and RW instructions
|
|
|
|
; can't swap
|
|
OpCopyMemory %21 %21
|
|
OpCopyMemory %21 %21
|
|
|
|
OpCopyMemory %21 %22
|
|
OpCopyMemory %21 %21
|
|
|
|
OpCopyMemory %21 %21
|
|
OpCopyMemory %21 %22
|
|
|
|
; can swap
|
|
OpCopyMemory %22 %21
|
|
OpCopyMemory %21 %22
|
|
|
|
OpCopyMemory %22 %21
|
|
OpCopyMemory %22 %21
|
|
|
|
OpCopyMemory %21 %22
|
|
OpCopyMemory %21 %22
|
|
|
|
; swap RW and W instructions
|
|
|
|
; can't swap
|
|
OpCopyMemory %21 %21
|
|
OpStore %21 %7
|
|
|
|
OpStore %21 %7
|
|
OpCopyMemory %21 %21
|
|
|
|
; can swap
|
|
OpCopyMemory %22 %21
|
|
OpStore %21 %7
|
|
|
|
OpCopyMemory %21 %22
|
|
OpStore %21 %7
|
|
|
|
OpCopyMemory %21 %21
|
|
OpStore %22 %7
|
|
|
|
; swap W and W instructions
|
|
|
|
; can't swap
|
|
OpStore %21 %7
|
|
OpStore %21 %7
|
|
|
|
; can swap
|
|
OpStore %22 %7
|
|
OpStore %21 %7
|
|
|
|
OpStore %22 %7
|
|
OpStore %22 %7
|
|
|
|
OpReturn
|
|
OpFunctionEnd
|
|
)";
|
|
|
|
const auto env = SPV_ENV_UNIVERSAL_1_3;
|
|
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);
|
|
transformation_context.GetFactManager()->AddFactValueOfPointeeIsIrrelevant(
|
|
22);
|
|
|
|
// Invalid swaps.
|
|
|
|
protobufs::InstructionDescriptor invalid_swaps[] = {
|
|
// R and RW
|
|
MakeInstructionDescriptor(25, SpvOpLoad, 0),
|
|
|
|
// R and W
|
|
MakeInstructionDescriptor(29, SpvOpLoad, 0),
|
|
|
|
// RW and RW
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 0),
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 2),
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 4),
|
|
|
|
// RW and W
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 12),
|
|
MakeInstructionDescriptor(32, SpvOpStore, 1),
|
|
|
|
// W and W
|
|
MakeInstructionDescriptor(32, SpvOpStore, 6),
|
|
};
|
|
|
|
for (const auto& descriptor : invalid_swaps) {
|
|
ASSERT_FALSE(TransformationMoveInstructionDown(descriptor)
|
|
.IsApplicable(context.get(), transformation_context));
|
|
}
|
|
|
|
// Valid swaps.
|
|
protobufs::InstructionDescriptor valid_swaps[] = {
|
|
// R and R
|
|
MakeInstructionDescriptor(23, SpvOpLoad, 0),
|
|
MakeInstructionDescriptor(24, SpvOpLoad, 0),
|
|
|
|
// R and RW
|
|
MakeInstructionDescriptor(26, SpvOpLoad, 0),
|
|
MakeInstructionDescriptor(25, SpvOpCopyMemory, 1),
|
|
|
|
MakeInstructionDescriptor(27, SpvOpLoad, 0),
|
|
MakeInstructionDescriptor(26, SpvOpCopyMemory, 1),
|
|
|
|
MakeInstructionDescriptor(28, SpvOpLoad, 0),
|
|
MakeInstructionDescriptor(27, SpvOpCopyMemory, 1),
|
|
|
|
// R and W
|
|
MakeInstructionDescriptor(30, SpvOpLoad, 0),
|
|
MakeInstructionDescriptor(29, SpvOpStore, 1),
|
|
|
|
MakeInstructionDescriptor(31, SpvOpLoad, 0),
|
|
MakeInstructionDescriptor(30, SpvOpStore, 1),
|
|
|
|
MakeInstructionDescriptor(32, SpvOpLoad, 0),
|
|
MakeInstructionDescriptor(31, SpvOpStore, 1),
|
|
|
|
// RW and RW
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 6),
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 6),
|
|
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 8),
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 8),
|
|
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 10),
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 10),
|
|
|
|
// RW and W
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 14),
|
|
MakeInstructionDescriptor(32, SpvOpStore, 3),
|
|
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 15),
|
|
MakeInstructionDescriptor(32, SpvOpStore, 4),
|
|
|
|
MakeInstructionDescriptor(32, SpvOpCopyMemory, 16),
|
|
MakeInstructionDescriptor(32, SpvOpStore, 5),
|
|
|
|
// W and W
|
|
MakeInstructionDescriptor(32, SpvOpStore, 8),
|
|
MakeInstructionDescriptor(32, SpvOpStore, 8),
|
|
|
|
MakeInstructionDescriptor(32, SpvOpStore, 10),
|
|
MakeInstructionDescriptor(32, SpvOpStore, 10),
|
|
};
|
|
|
|
for (const auto& descriptor : valid_swaps) {
|
|
TransformationMoveInstructionDown transformation(descriptor);
|
|
ASSERT_TRUE(
|
|
transformation.IsApplicable(context.get(), transformation_context));
|
|
ApplyAndCheckFreshIds(transformation, context.get(),
|
|
&transformation_context);
|
|
ASSERT_TRUE(fuzzerutil::IsValidAndWellFormed(
|
|
context.get(), validator_options, kConsoleMessageConsumer));
|
|
}
|
|
|
|
ASSERT_TRUE(IsEqual(env, shader, context.get()));
|
|
}
|
|
|
|
} // namespace
|
|
} // namespace fuzz
|
|
} // namespace spvtools
|