SPIRV-Tools/source/fuzz/fuzzer_pass_wrap_regions_in_selections.cpp
Alastair Donaldson 9c4481419e
spirv-fuzz: Allow inapplicable transformations to be ignored (#4407)
spirv-fuzz features transformations that should be applicable by
construction. Assertions are used to detect when such transformations
turn out to be inapplicable. Failures of such assertions indicate bugs
in the fuzzer. However, when using the fuzzer at scale (e.g. in
ClusterFuzz) reports of these assertion failures create noise, and
cause the fuzzer to exit early. This change adds an option whereby
inapplicable transformations can be ignored. This reduces noise and
allows fuzzing to continue even when a transformation that should be
applicable but is not has been erroneously created.
2021-07-28 22:59:37 +01:00

139 lines
5.1 KiB
C++

// Copyright (c) 2020 Vasyl Teliman
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#include "source/fuzz/fuzzer_pass_wrap_regions_in_selections.h"
#include "source/fuzz/fuzzer_context.h"
#include "source/fuzz/instruction_descriptor.h"
#include "source/fuzz/transformation_split_block.h"
#include "source/fuzz/transformation_wrap_region_in_selection.h"
namespace spvtools {
namespace fuzz {
FuzzerPassWrapRegionsInSelections::FuzzerPassWrapRegionsInSelections(
opt::IRContext* ir_context, TransformationContext* transformation_context,
FuzzerContext* fuzzer_context,
protobufs::TransformationSequence* transformations,
bool ignore_inapplicable_transformations)
: FuzzerPass(ir_context, transformation_context, fuzzer_context,
transformations, ignore_inapplicable_transformations) {}
void FuzzerPassWrapRegionsInSelections::Apply() {
for (auto& function : *GetIRContext()->module()) {
if (!GetFuzzerContext()->ChoosePercentage(
GetFuzzerContext()->GetChanceOfWrappingRegionInSelection())) {
continue;
}
// It is easier to select an element at random from a vector than from an
// instruction list.
std::vector<opt::BasicBlock*> header_block_candidates;
for (auto& block : function) {
header_block_candidates.push_back(&block);
}
if (header_block_candidates.empty()) {
continue;
}
// Try to get a header block candidate that will increase the chances of the
// transformation being applicable.
auto* header_block_candidate = MaybeGetHeaderBlockCandidate(
header_block_candidates[GetFuzzerContext()->RandomIndex(
header_block_candidates)]);
if (!header_block_candidate) {
continue;
}
std::vector<opt::BasicBlock*> merge_block_candidates;
for (auto& block : function) {
if (GetIRContext()->GetDominatorAnalysis(&function)->StrictlyDominates(
header_block_candidate, &block) &&
GetIRContext()
->GetPostDominatorAnalysis(&function)
->StrictlyDominates(&block, header_block_candidate)) {
merge_block_candidates.push_back(&block);
}
}
if (merge_block_candidates.empty()) {
continue;
}
// Try to get a merge block candidate that will increase the chances of the
// transformation being applicable.
auto* merge_block_candidate = MaybeGetMergeBlockCandidate(
merge_block_candidates[GetFuzzerContext()->RandomIndex(
merge_block_candidates)]);
if (!merge_block_candidate) {
continue;
}
if (!TransformationWrapRegionInSelection::IsApplicableToBlockRange(
GetIRContext(), header_block_candidate->id(),
merge_block_candidate->id())) {
continue;
}
// This boolean constant will be used as a condition for the
// OpBranchConditional instruction. We mark it as irrelevant to be able to
// replace it with a more interesting value later.
auto branch_condition = GetFuzzerContext()->ChooseEven();
FindOrCreateBoolConstant(branch_condition, true);
ApplyTransformation(TransformationWrapRegionInSelection(
header_block_candidate->id(), merge_block_candidate->id(),
branch_condition));
}
}
opt::BasicBlock*
FuzzerPassWrapRegionsInSelections::MaybeGetHeaderBlockCandidate(
opt::BasicBlock* header_block_candidate) {
// Try to create a preheader if |header_block_candidate| is a loop header.
if (header_block_candidate->IsLoopHeader()) {
// GetOrCreateSimpleLoopPreheader only supports reachable blocks.
return GetIRContext()->cfg()->preds(header_block_candidate->id()).size() ==
1
? nullptr
: GetOrCreateSimpleLoopPreheader(header_block_candidate->id());
}
// Try to split |header_block_candidate| if it's already a header block.
if (header_block_candidate->GetMergeInst()) {
SplitBlockAfterOpPhiOrOpVariable(header_block_candidate->id());
}
return header_block_candidate;
}
opt::BasicBlock* FuzzerPassWrapRegionsInSelections::MaybeGetMergeBlockCandidate(
opt::BasicBlock* merge_block_candidate) {
// If |merge_block_candidate| is a merge block of some construct, try to split
// it and return a newly created block.
if (GetIRContext()->GetStructuredCFGAnalysis()->IsMergeBlock(
merge_block_candidate->id())) {
// We can't split a merge block if it's also a loop header.
return merge_block_candidate->IsLoopHeader()
? nullptr
: SplitBlockAfterOpPhiOrOpVariable(merge_block_candidate->id());
}
return merge_block_candidate;
}
} // namespace fuzz
} // namespace spvtools