mirror of
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
209 lines
7.9 KiB
C++
209 lines
7.9 KiB
C++
// Copyright (c) 2019 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_add_dead_break.h"
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#include "source/fuzz/fuzzer_util.h"
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#include "source/fuzz/transformation_context.h"
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#include "source/opt/basic_block.h"
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#include "source/opt/ir_context.h"
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#include "source/opt/struct_cfg_analysis.h"
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namespace spvtools {
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namespace fuzz {
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TransformationAddDeadBreak::TransformationAddDeadBreak(
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protobufs::TransformationAddDeadBreak message)
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: message_(std::move(message)) {}
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TransformationAddDeadBreak::TransformationAddDeadBreak(
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uint32_t from_block, uint32_t to_block, bool break_condition_value,
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std::vector<uint32_t> phi_id) {
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message_.set_from_block(from_block);
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message_.set_to_block(to_block);
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message_.set_break_condition_value(break_condition_value);
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for (auto id : phi_id) {
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message_.add_phi_id(id);
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}
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}
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bool TransformationAddDeadBreak::AddingBreakRespectsStructuredControlFlow(
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opt::IRContext* ir_context, opt::BasicBlock* bb_from) const {
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// Look at the structured control flow associated with |from_block| and
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// check whether it is contained in an appropriate construct with merge id
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// |to_block| such that a break from |from_block| to |to_block| is legal.
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// There are three legal cases to consider:
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// (1) |from_block| is a loop header and |to_block| is its merge
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// (2) |from_block| is a non-header node of a construct, and |to_block|
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// is the merge for that construct
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// (3) |from_block| is a non-header node of a selection construct, and
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// |to_block| is the merge for the innermost loop containing
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// |from_block|
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//
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// TODO(https://github.com/KhronosGroup/SPIRV-Tools/issues/2653) It may be
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// possible to be more aggressive in breaking from switch constructs.
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//
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// The reason we need to distinguish between cases (1) and (2) is that the
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// structured CFG analysis does not deem a header to be part of the construct
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// that it heads.
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// Consider case (1)
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if (bb_from->IsLoopHeader()) {
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// Case (1) holds if |to_block| is the merge block for the loop;
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// otherwise no case holds
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return bb_from->MergeBlockId() == message_.to_block();
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}
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// Both cases (2) and (3) require that |from_block| is inside some
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// structured control flow construct.
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auto containing_construct =
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ir_context->GetStructuredCFGAnalysis()->ContainingConstruct(
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message_.from_block());
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if (!containing_construct) {
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// |from_block| is not in a construct from which we can break.
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return false;
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}
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// Consider case (2)
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if (message_.to_block() ==
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ir_context->cfg()->block(containing_construct)->MergeBlockId()) {
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// This looks like an instance of case (2).
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// However, the structured CFG analysis regards the continue construct of a
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// loop as part of the loop, but it is not legal to jump from a loop's
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// continue construct to the loop's merge (except from the back-edge block),
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// so we need to check for this case.
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return !fuzzerutil::BlockIsInLoopContinueConstruct(
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ir_context, message_.from_block(), containing_construct) ||
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fuzzerutil::BlockIsBackEdge(ir_context, message_.from_block(),
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containing_construct);
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}
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// Case (3) holds if and only if |to_block| is the merge block for this
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// innermost loop that contains |from_block|
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auto containing_loop_header =
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ir_context->GetStructuredCFGAnalysis()->ContainingLoop(
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message_.from_block());
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if (containing_loop_header &&
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message_.to_block() ==
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ir_context->cfg()->block(containing_loop_header)->MergeBlockId()) {
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return !fuzzerutil::BlockIsInLoopContinueConstruct(
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ir_context, message_.from_block(), containing_loop_header) ||
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fuzzerutil::BlockIsBackEdge(ir_context, message_.from_block(),
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containing_loop_header);
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}
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return false;
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}
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bool TransformationAddDeadBreak::IsApplicable(
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opt::IRContext* ir_context,
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const TransformationContext& transformation_context) const {
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// First, we check that a constant with the same value as
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// |message_.break_condition_value| is present.
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const auto bool_id =
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fuzzerutil::MaybeGetBoolConstant(ir_context, transformation_context,
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message_.break_condition_value(), false);
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if (!bool_id) {
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// The required constant is not present, so the transformation cannot be
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// applied.
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return false;
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}
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// Check that |message_.from_block| and |message_.to_block| really are block
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// ids
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opt::BasicBlock* bb_from =
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fuzzerutil::MaybeFindBlock(ir_context, message_.from_block());
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if (bb_from == nullptr) {
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return false;
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}
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opt::BasicBlock* bb_to =
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fuzzerutil::MaybeFindBlock(ir_context, message_.to_block());
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if (bb_to == nullptr) {
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return false;
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}
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if (!ir_context->IsReachable(*bb_to)) {
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// If the target of the break is unreachable, we conservatively do not
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// allow adding a dead break, to avoid the compilations that arise due to
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// the lack of sensible dominance information for unreachable blocks.
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return false;
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}
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// Check that |message_.from_block| ends with an unconditional branch.
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if (bb_from->terminator()->opcode() != spv::Op::OpBranch) {
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// The block associated with the id does not end with an unconditional
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// branch.
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return false;
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}
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assert(bb_from != nullptr &&
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"We should have found a block if this line of code is reached.");
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assert(
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bb_from->id() == message_.from_block() &&
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"The id of the block we found should match the source id for the break.");
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assert(bb_to != nullptr &&
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"We should have found a block if this line of code is reached.");
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assert(
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bb_to->id() == message_.to_block() &&
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"The id of the block we found should match the target id for the break.");
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// Check whether the data passed to extend OpPhi instructions is appropriate.
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if (!fuzzerutil::PhiIdsOkForNewEdge(ir_context, bb_from, bb_to,
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message_.phi_id())) {
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return false;
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}
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// Check that adding the break would respect the rules of structured
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// control flow.
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if (!AddingBreakRespectsStructuredControlFlow(ir_context, bb_from)) {
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return false;
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}
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// Adding the dead break is only valid if SPIR-V rules related to dominance
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// hold.
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return fuzzerutil::NewTerminatorPreservesDominationRules(
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ir_context, message_.from_block(),
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fuzzerutil::CreateUnreachableEdgeInstruction(
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ir_context, message_.from_block(), message_.to_block(), bool_id));
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}
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void TransformationAddDeadBreak::Apply(
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opt::IRContext* ir_context,
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TransformationContext* transformation_context) const {
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fuzzerutil::AddUnreachableEdgeAndUpdateOpPhis(
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ir_context, ir_context->cfg()->block(message_.from_block()),
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ir_context->cfg()->block(message_.to_block()),
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fuzzerutil::MaybeGetBoolConstant(ir_context, *transformation_context,
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message_.break_condition_value(), false),
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message_.phi_id());
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// Invalidate all analyses
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ir_context->InvalidateAnalysesExceptFor(
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opt::IRContext::Analysis::kAnalysisNone);
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}
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protobufs::Transformation TransformationAddDeadBreak::ToMessage() const {
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protobufs::Transformation result;
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*result.mutable_add_dead_break() = message_;
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return result;
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}
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std::unordered_set<uint32_t> TransformationAddDeadBreak::GetFreshIds() const {
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return std::unordered_set<uint32_t>();
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}
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} // namespace fuzz
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} // namespace spvtools
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