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https://github.com/KhronosGroup/SPIRV-Tools
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11cd875ed8
The instruction parameter of CanMakeSynonymOf is an input parameter that should never be null, so a const reference is a more appropriate type than a const pointer.
339 lines
13 KiB
C++
339 lines
13 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_add_synonym.h"
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#include <utility>
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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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TransformationAddSynonym::TransformationAddSynonym(
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protobufs::TransformationAddSynonym message)
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: message_(std::move(message)) {}
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TransformationAddSynonym::TransformationAddSynonym(
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uint32_t result_id,
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protobufs::TransformationAddSynonym::SynonymType synonym_type,
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uint32_t synonym_fresh_id,
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const protobufs::InstructionDescriptor& insert_before) {
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message_.set_result_id(result_id);
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message_.set_synonym_type(synonym_type);
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message_.set_synonym_fresh_id(synonym_fresh_id);
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*message_.mutable_insert_before() = insert_before;
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}
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bool TransformationAddSynonym::IsApplicable(
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opt::IRContext* ir_context,
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const TransformationContext& transformation_context) const {
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assert(protobufs::TransformationAddSynonym::SynonymType_IsValid(
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message_.synonym_type()) &&
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"Synonym type is invalid");
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// |synonym_fresh_id| must be fresh.
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if (!fuzzerutil::IsFreshId(ir_context, message_.synonym_fresh_id())) {
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return false;
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}
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// Check that |message_.result_id| is valid.
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auto* synonym = ir_context->get_def_use_mgr()->GetDef(message_.result_id());
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if (!synonym) {
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return false;
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}
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// Check that we can apply |synonym_type| to |result_id|.
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if (!IsInstructionValid(ir_context, transformation_context, synonym,
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message_.synonym_type())) {
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return false;
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}
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// Check that |insert_before| is valid.
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auto* insert_before_inst =
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FindInstruction(message_.insert_before(), ir_context);
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if (!insert_before_inst) {
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return false;
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}
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const auto* insert_before_inst_block =
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ir_context->get_instr_block(insert_before_inst);
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assert(insert_before_inst_block &&
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"|insert_before_inst| must be in some block");
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if (transformation_context.GetFactManager()->BlockIsDead(
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insert_before_inst_block->id())) {
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// We don't create synonyms in dead blocks.
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return false;
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}
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// Check that we can insert |message._synonymous_instruction| before
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// |message_.insert_before| instruction. We use OpIAdd to represent some
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// instruction that can produce a synonym.
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if (!fuzzerutil::CanInsertOpcodeBeforeInstruction(SpvOpIAdd,
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insert_before_inst)) {
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return false;
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}
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// A constant instruction must be present in the module if required.
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if (IsAdditionalConstantRequired(message_.synonym_type()) &&
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MaybeGetConstantId(ir_context, transformation_context) == 0) {
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return false;
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}
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// Domination rules must be satisfied.
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return fuzzerutil::IdIsAvailableBeforeInstruction(
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ir_context, insert_before_inst, message_.result_id());
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}
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void TransformationAddSynonym::Apply(
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opt::IRContext* ir_context,
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TransformationContext* transformation_context) const {
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// Add a synonymous instruction.
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auto new_instruction =
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MakeSynonymousInstruction(ir_context, *transformation_context);
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auto new_instruction_ptr = new_instruction.get();
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auto insert_before = FindInstruction(message_.insert_before(), ir_context);
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insert_before->InsertBefore(std::move(new_instruction));
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fuzzerutil::UpdateModuleIdBound(ir_context, message_.synonym_fresh_id());
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// Inform the def-use manager about the new instruction and record its basic
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// block.
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ir_context->get_def_use_mgr()->AnalyzeInstDefUse(new_instruction_ptr);
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ir_context->set_instr_block(new_instruction_ptr,
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ir_context->get_instr_block(insert_before));
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// Propagate PointeeValueIsIrrelevant fact.
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const auto* new_synonym_type = ir_context->get_type_mgr()->GetType(
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fuzzerutil::GetTypeId(ir_context, message_.synonym_fresh_id()));
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assert(new_synonym_type && "New synonym should have a valid type");
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if (transformation_context->GetFactManager()->PointeeValueIsIrrelevant(
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message_.result_id()) &&
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new_synonym_type->AsPointer()) {
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transformation_context->GetFactManager()->AddFactValueOfPointeeIsIrrelevant(
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message_.synonym_fresh_id());
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}
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// Mark two ids as synonymous.
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transformation_context->GetFactManager()->AddFactDataSynonym(
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MakeDataDescriptor(message_.result_id(), {}),
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MakeDataDescriptor(message_.synonym_fresh_id(), {}));
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}
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protobufs::Transformation TransformationAddSynonym::ToMessage() const {
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protobufs::Transformation result;
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*result.mutable_add_synonym() = message_;
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return result;
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}
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bool TransformationAddSynonym::IsInstructionValid(
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opt::IRContext* ir_context,
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const TransformationContext& transformation_context, opt::Instruction* inst,
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protobufs::TransformationAddSynonym::SynonymType synonym_type) {
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// Instruction must have a result id, type id. We skip OpUndef and
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// OpConstantNull.
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if (!inst || !inst->result_id() || !inst->type_id() ||
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inst->opcode() == SpvOpUndef || inst->opcode() == SpvOpConstantNull) {
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return false;
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}
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if (!fuzzerutil::CanMakeSynonymOf(ir_context, transformation_context,
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*inst)) {
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return false;
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}
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switch (synonym_type) {
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case protobufs::TransformationAddSynonym::ADD_ZERO:
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case protobufs::TransformationAddSynonym::SUB_ZERO:
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case protobufs::TransformationAddSynonym::MUL_ONE: {
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// The instruction must be either scalar or vector of integers or floats.
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const auto* type = ir_context->get_type_mgr()->GetType(inst->type_id());
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assert(type && "Instruction's result id is invalid");
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if (const auto* vector = type->AsVector()) {
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return vector->element_type()->AsInteger() ||
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vector->element_type()->AsFloat();
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}
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return type->AsInteger() || type->AsFloat();
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}
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case protobufs::TransformationAddSynonym::BITWISE_OR:
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case protobufs::TransformationAddSynonym::BITWISE_XOR: {
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// The instruction must be either an integer or a vector of integers.
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const auto* type = ir_context->get_type_mgr()->GetType(inst->type_id());
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assert(type && "Instruction's result id is invalid");
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if (const auto* vector = type->AsVector()) {
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return vector->element_type()->AsInteger();
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}
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return type->AsInteger();
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}
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case protobufs::TransformationAddSynonym::COPY_OBJECT:
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// All checks for OpCopyObject are handled by
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// fuzzerutil::CanMakeSynonymOf.
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return true;
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case protobufs::TransformationAddSynonym::LOGICAL_AND:
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case protobufs::TransformationAddSynonym::LOGICAL_OR: {
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// The instruction must be either a scalar or a vector of booleans.
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const auto* type = ir_context->get_type_mgr()->GetType(inst->type_id());
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assert(type && "Instruction's result id is invalid");
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return (type->AsVector() && type->AsVector()->element_type()->AsBool()) ||
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type->AsBool();
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}
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default:
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assert(false && "Synonym type is not supported");
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return false;
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}
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}
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std::unique_ptr<opt::Instruction>
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TransformationAddSynonym::MakeSynonymousInstruction(
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opt::IRContext* ir_context,
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const TransformationContext& transformation_context) const {
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auto synonym_type_id =
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fuzzerutil::GetTypeId(ir_context, message_.result_id());
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assert(synonym_type_id && "Synonym has invalid type id");
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auto opcode = SpvOpNop;
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const auto* synonym_type =
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ir_context->get_type_mgr()->GetType(synonym_type_id);
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assert(synonym_type && "Synonym has invalid type");
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auto is_integral = (synonym_type->AsVector() &&
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synonym_type->AsVector()->element_type()->AsInteger()) ||
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synonym_type->AsInteger();
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switch (message_.synonym_type()) {
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case protobufs::TransformationAddSynonym::SUB_ZERO:
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opcode = is_integral ? SpvOpISub : SpvOpFSub;
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break;
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case protobufs::TransformationAddSynonym::MUL_ONE:
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opcode = is_integral ? SpvOpIMul : SpvOpFMul;
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break;
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case protobufs::TransformationAddSynonym::ADD_ZERO:
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opcode = is_integral ? SpvOpIAdd : SpvOpFAdd;
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break;
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case protobufs::TransformationAddSynonym::LOGICAL_OR:
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opcode = SpvOpLogicalOr;
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break;
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case protobufs::TransformationAddSynonym::LOGICAL_AND:
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opcode = SpvOpLogicalAnd;
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break;
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case protobufs::TransformationAddSynonym::BITWISE_OR:
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opcode = SpvOpBitwiseOr;
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break;
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case protobufs::TransformationAddSynonym::BITWISE_XOR:
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opcode = SpvOpBitwiseXor;
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break;
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case protobufs::TransformationAddSynonym::COPY_OBJECT:
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return MakeUnique<opt::Instruction>(
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ir_context, SpvOpCopyObject, synonym_type_id,
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message_.synonym_fresh_id(),
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opt::Instruction::OperandList{
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{SPV_OPERAND_TYPE_ID, {message_.result_id()}}});
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default:
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assert(false && "Unhandled synonym type");
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return nullptr;
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}
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return MakeUnique<opt::Instruction>(
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ir_context, opcode, synonym_type_id, message_.synonym_fresh_id(),
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opt::Instruction::OperandList{
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{SPV_OPERAND_TYPE_ID, {message_.result_id()}},
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{SPV_OPERAND_TYPE_ID,
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{MaybeGetConstantId(ir_context, transformation_context)}}});
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}
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uint32_t TransformationAddSynonym::MaybeGetConstantId(
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opt::IRContext* ir_context,
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const TransformationContext& transformation_context) const {
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assert(IsAdditionalConstantRequired(message_.synonym_type()) &&
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"Synonym type doesn't require an additional constant");
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auto synonym_type_id =
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fuzzerutil::GetTypeId(ir_context, message_.result_id());
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assert(synonym_type_id && "Synonym has invalid type id");
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switch (message_.synonym_type()) {
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case protobufs::TransformationAddSynonym::ADD_ZERO:
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case protobufs::TransformationAddSynonym::SUB_ZERO:
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case protobufs::TransformationAddSynonym::LOGICAL_OR:
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case protobufs::TransformationAddSynonym::BITWISE_OR:
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case protobufs::TransformationAddSynonym::BITWISE_XOR:
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return fuzzerutil::MaybeGetZeroConstant(
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ir_context, transformation_context, synonym_type_id, false);
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case protobufs::TransformationAddSynonym::MUL_ONE:
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case protobufs::TransformationAddSynonym::LOGICAL_AND: {
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auto synonym_type = ir_context->get_type_mgr()->GetType(synonym_type_id);
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assert(synonym_type && "Synonym has invalid type");
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if (const auto* vector = synonym_type->AsVector()) {
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auto element_type_id =
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ir_context->get_type_mgr()->GetId(vector->element_type());
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assert(element_type_id && "Vector's element type is invalid");
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auto one_word =
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vector->element_type()->AsFloat() ? fuzzerutil::FloatToWord(1) : 1u;
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if (auto scalar_one_id = fuzzerutil::MaybeGetScalarConstant(
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ir_context, transformation_context, {one_word}, element_type_id,
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false)) {
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return fuzzerutil::MaybeGetCompositeConstant(
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ir_context, transformation_context,
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std::vector<uint32_t>(vector->element_count(), scalar_one_id),
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synonym_type_id, false);
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}
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return 0;
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} else {
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return fuzzerutil::MaybeGetScalarConstant(
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ir_context, transformation_context,
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{synonym_type->AsFloat() ? fuzzerutil::FloatToWord(1) : 1u},
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synonym_type_id, false);
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}
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}
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default:
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// The assertion at the beginning of the function will fail in the debug
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// mode.
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return 0;
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}
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}
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bool TransformationAddSynonym::IsAdditionalConstantRequired(
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protobufs::TransformationAddSynonym::SynonymType synonym_type) {
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switch (synonym_type) {
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case protobufs::TransformationAddSynonym::ADD_ZERO:
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case protobufs::TransformationAddSynonym::SUB_ZERO:
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case protobufs::TransformationAddSynonym::LOGICAL_OR:
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case protobufs::TransformationAddSynonym::MUL_ONE:
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case protobufs::TransformationAddSynonym::LOGICAL_AND:
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case protobufs::TransformationAddSynonym::BITWISE_OR:
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case protobufs::TransformationAddSynonym::BITWISE_XOR:
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return true;
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default:
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return false;
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}
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}
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std::unordered_set<uint32_t> TransformationAddSynonym::GetFreshIds() const {
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return {message_.synonym_fresh_id()};
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}
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} // namespace fuzz
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} // namespace spvtools
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