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https://github.com/KhronosGroup/SPIRV-Tools
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d35a78db57
Fixes #4960 * Switches to using enum classes with an underlying type to avoid undefined behaviour
186 lines
7.8 KiB
C++
186 lines
7.8 KiB
C++
// Copyright (c) 2020 André Perez Maselco
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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_push_id_through_variable.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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namespace spvtools {
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namespace fuzz {
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TransformationPushIdThroughVariable::TransformationPushIdThroughVariable(
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protobufs::TransformationPushIdThroughVariable message)
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: message_(std::move(message)) {}
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TransformationPushIdThroughVariable::TransformationPushIdThroughVariable(
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uint32_t value_id, uint32_t value_synonym_id, uint32_t variable_id,
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uint32_t variable_storage_class, uint32_t initializer_id,
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const protobufs::InstructionDescriptor& instruction_descriptor) {
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message_.set_value_id(value_id);
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message_.set_value_synonym_id(value_synonym_id);
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message_.set_variable_id(variable_id);
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message_.set_variable_storage_class(variable_storage_class);
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message_.set_initializer_id(initializer_id);
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*message_.mutable_instruction_descriptor() = instruction_descriptor;
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}
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bool TransformationPushIdThroughVariable::IsApplicable(
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opt::IRContext* ir_context, const TransformationContext& /*unused*/) const {
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// |message_.value_synonym_id| and |message_.variable_id| must be fresh.
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if (!fuzzerutil::IsFreshId(ir_context, message_.value_synonym_id()) ||
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!fuzzerutil::IsFreshId(ir_context, message_.variable_id())) {
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return false;
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}
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// The instruction to insert before must be defined.
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auto instruction_to_insert_before =
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FindInstruction(message_.instruction_descriptor(), ir_context);
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if (!instruction_to_insert_before) {
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return false;
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}
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// It must be valid to insert the OpStore and OpLoad instruction before it.
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if (!fuzzerutil::CanInsertOpcodeBeforeInstruction(
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spv::Op::OpStore, instruction_to_insert_before) ||
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!fuzzerutil::CanInsertOpcodeBeforeInstruction(
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spv::Op::OpLoad, instruction_to_insert_before)) {
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return false;
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}
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// The instruction to insert before must belong to a reachable block.
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auto basic_block = ir_context->get_instr_block(instruction_to_insert_before);
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if (!ir_context->IsReachable(*basic_block)) {
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return false;
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}
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// The value instruction must be defined and have a type.
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auto value_instruction =
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ir_context->get_def_use_mgr()->GetDef(message_.value_id());
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if (!value_instruction || !value_instruction->type_id()) {
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return false;
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}
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// A pointer type instruction pointing to the value type must be defined.
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auto pointer_type_id = fuzzerutil::MaybeGetPointerType(
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ir_context, value_instruction->type_id(),
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static_cast<spv::StorageClass>(message_.variable_storage_class()));
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if (!pointer_type_id) {
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return false;
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}
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// |message_.variable_storage_class| must be private or function.
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assert((message_.variable_storage_class() ==
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(uint32_t)spv::StorageClass::Private ||
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message_.variable_storage_class() ==
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(uint32_t)spv::StorageClass::Function) &&
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"The variable storage class must be private or function.");
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// Check that initializer is valid.
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const auto* constant_inst =
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ir_context->get_def_use_mgr()->GetDef(message_.initializer_id());
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if (!constant_inst || !spvOpcodeIsConstant(constant_inst->opcode()) ||
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value_instruction->type_id() != constant_inst->type_id()) {
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return false;
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}
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// |message_.value_id| must be available at the insertion point.
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return fuzzerutil::IdIsAvailableBeforeInstruction(
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ir_context, instruction_to_insert_before, message_.value_id());
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}
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void TransformationPushIdThroughVariable::Apply(
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opt::IRContext* ir_context,
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TransformationContext* transformation_context) const {
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auto value_instruction =
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ir_context->get_def_use_mgr()->GetDef(message_.value_id());
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opt::Instruction* insert_before =
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FindInstruction(message_.instruction_descriptor(), ir_context);
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opt::BasicBlock* enclosing_block = ir_context->get_instr_block(insert_before);
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// A pointer type instruction pointing to the value type must be defined.
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auto pointer_type_id = fuzzerutil::MaybeGetPointerType(
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ir_context, value_instruction->type_id(),
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static_cast<spv::StorageClass>(message_.variable_storage_class()));
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assert(pointer_type_id && "The required pointer type must be available.");
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// Adds whether a global or local variable.
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if (spv::StorageClass(message_.variable_storage_class()) ==
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spv::StorageClass::Private) {
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opt::Instruction* global_variable = fuzzerutil::AddGlobalVariable(
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ir_context, message_.variable_id(), pointer_type_id,
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spv::StorageClass::Private, message_.initializer_id());
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ir_context->get_def_use_mgr()->AnalyzeInstDefUse(global_variable);
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} else {
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opt::Function* function =
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ir_context
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->get_instr_block(
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FindInstruction(message_.instruction_descriptor(), ir_context))
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->GetParent();
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opt::Instruction* local_variable = fuzzerutil::AddLocalVariable(
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ir_context, message_.variable_id(), pointer_type_id,
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function->result_id(), message_.initializer_id());
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ir_context->get_def_use_mgr()->AnalyzeInstDefUse(local_variable);
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ir_context->set_instr_block(local_variable, &*function->entry());
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}
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// First, insert the OpLoad instruction before |instruction_descriptor| and
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// then insert the OpStore instruction before the OpLoad instruction.
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fuzzerutil::UpdateModuleIdBound(ir_context, message_.value_synonym_id());
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opt::Instruction* load_instruction =
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insert_before->InsertBefore(MakeUnique<opt::Instruction>(
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ir_context, spv::Op::OpLoad, value_instruction->type_id(),
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message_.value_synonym_id(),
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opt::Instruction::OperandList(
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{{SPV_OPERAND_TYPE_ID, {message_.variable_id()}}})));
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opt::Instruction* store_instruction =
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load_instruction->InsertBefore(MakeUnique<opt::Instruction>(
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ir_context, spv::Op::OpStore, 0, 0,
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opt::Instruction::OperandList(
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{{SPV_OPERAND_TYPE_ID, {message_.variable_id()}},
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{SPV_OPERAND_TYPE_ID, {message_.value_id()}}})));
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ir_context->get_def_use_mgr()->AnalyzeInstDefUse(store_instruction);
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ir_context->set_instr_block(store_instruction, enclosing_block);
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ir_context->get_def_use_mgr()->AnalyzeInstDefUse(load_instruction);
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ir_context->set_instr_block(load_instruction, enclosing_block);
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// We should be able to create a synonym of |value_id| if it's not irrelevant.
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if (fuzzerutil::CanMakeSynonymOf(ir_context, *transformation_context,
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*value_instruction) &&
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!transformation_context->GetFactManager()->IdIsIrrelevant(
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message_.value_synonym_id())) {
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// Adds the fact that |message_.value_synonym_id|
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// and |message_.value_id| are synonymous.
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transformation_context->GetFactManager()->AddFactDataSynonym(
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MakeDataDescriptor(message_.value_synonym_id(), {}),
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MakeDataDescriptor(message_.value_id(), {}));
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}
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}
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protobufs::Transformation TransformationPushIdThroughVariable::ToMessage()
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const {
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protobufs::Transformation result;
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*result.mutable_push_id_through_variable() = message_;
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return result;
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}
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std::unordered_set<uint32_t> TransformationPushIdThroughVariable::GetFreshIds()
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const {
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return {message_.value_synonym_id(), message_.variable_id()};
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}
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} // namespace fuzz
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} // namespace spvtools
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