mirror of
https://github.com/KhronosGroup/SPIRV-Tools
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8e586e46a2
Fixes #3415.
185 lines
6.2 KiB
C++
185 lines
6.2 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 <vector>
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#include "source/fuzz/fuzzer_util.h"
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#include "source/fuzz/transformation_permute_function_parameters.h"
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namespace spvtools {
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namespace fuzz {
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TransformationPermuteFunctionParameters::
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TransformationPermuteFunctionParameters(
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const spvtools::fuzz::protobufs::
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TransformationPermuteFunctionParameters& message)
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: message_(message) {}
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TransformationPermuteFunctionParameters::
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TransformationPermuteFunctionParameters(
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uint32_t function_id, uint32_t new_type_id,
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const std::vector<uint32_t>& permutation) {
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message_.set_function_id(function_id);
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message_.set_new_type_id(new_type_id);
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for (auto index : permutation) {
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message_.add_permutation(index);
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}
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}
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bool TransformationPermuteFunctionParameters::IsApplicable(
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opt::IRContext* ir_context, const TransformationContext& /*unused*/) const {
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// Check that function exists
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const auto* function =
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fuzzerutil::FindFunction(ir_context, message_.function_id());
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if (!function || function->DefInst().opcode() != SpvOpFunction ||
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fuzzerutil::FunctionIsEntryPoint(ir_context, function->result_id())) {
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return false;
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}
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// Check that permutation has valid indices
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const auto* function_type = fuzzerutil::GetFunctionType(ir_context, function);
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assert(function_type && "Function type is null");
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std::vector<uint32_t> permutation(message_.permutation().begin(),
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message_.permutation().end());
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// Don't take return type into account
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auto arg_size = function_type->NumInOperands() - 1;
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// |permutation| vector should be equal to the number of arguments
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if (static_cast<uint32_t>(permutation.size()) != arg_size) {
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return false;
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}
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// Check that permutation doesn't have duplicated values.
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assert(!fuzzerutil::HasDuplicates(permutation) &&
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"Permutation has duplicates");
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// Check that elements in permutation are in range [0, arg_size - 1].
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//
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// We must check whether the permutation is empty first because in that case
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// |arg_size - 1| will produce |std::numeric_limits<uint32_t>::max()| since
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// it's an unsigned integer.
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if (!permutation.empty() &&
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!fuzzerutil::IsPermutationOfRange(permutation, 0, arg_size - 1)) {
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return false;
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}
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// Check that new function's type is valid:
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// - Has the same number of operands
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// - Has the same result type as the old one
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// - Order of arguments is permuted
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auto new_type_id = message_.new_type_id();
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const auto* new_type = ir_context->get_def_use_mgr()->GetDef(new_type_id);
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if (!new_type || new_type->opcode() != SpvOpTypeFunction ||
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new_type->NumInOperands() != function_type->NumInOperands()) {
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return false;
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}
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// Check that both instructions have the same result type
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if (new_type->GetSingleWordInOperand(0) !=
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function_type->GetSingleWordInOperand(0)) {
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return false;
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}
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// Check that new function type has its arguments permuted
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for (int i = 0, n = static_cast<int>(permutation.size()); i < n; ++i) {
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// +1 to take return type into account
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if (new_type->GetSingleWordInOperand(i + 1) !=
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function_type->GetSingleWordInOperand(permutation[i] + 1)) {
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return false;
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}
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}
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return true;
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}
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void TransformationPermuteFunctionParameters::Apply(
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opt::IRContext* ir_context, TransformationContext* /*unused*/) const {
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// Retrieve all data from the message
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uint32_t function_id = message_.function_id();
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uint32_t new_type_id = message_.new_type_id();
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const auto& permutation = message_.permutation();
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// Find the function that will be transformed
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auto* function = fuzzerutil::FindFunction(ir_context, function_id);
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assert(function && "Can't find the function");
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// Change function's type
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function->DefInst().SetInOperand(1, {new_type_id});
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// Adjust OpFunctionParameter instructions
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// Collect ids and types from OpFunctionParameter instructions
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std::vector<uint32_t> param_id, param_type;
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function->ForEachParam(
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[¶m_id, ¶m_type](const opt::Instruction* param) {
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param_id.push_back(param->result_id());
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param_type.push_back(param->type_id());
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});
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// Permute parameters' ids and types
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std::vector<uint32_t> permuted_param_id, permuted_param_type;
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for (auto index : permutation) {
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permuted_param_id.push_back(param_id[index]);
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permuted_param_type.push_back(param_type[index]);
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}
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// Set OpFunctionParameter instructions to point to new parameters
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size_t i = 0;
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function->ForEachParam(
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[&i, &permuted_param_id, &permuted_param_type](opt::Instruction* param) {
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param->SetResultType(permuted_param_type[i]);
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param->SetResultId(permuted_param_id[i]);
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++i;
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});
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// Fix all OpFunctionCall instructions
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ir_context->get_def_use_mgr()->ForEachUser(
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&function->DefInst(),
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[function_id, &permutation](opt::Instruction* call) {
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if (call->opcode() != SpvOpFunctionCall ||
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call->GetSingleWordInOperand(0) != function_id) {
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return;
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}
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opt::Instruction::OperandList call_operands = {
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call->GetInOperand(0) // Function id
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};
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for (auto index : permutation) {
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// Take function id into account
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call_operands.push_back(call->GetInOperand(index + 1));
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}
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call->SetInOperands(std::move(call_operands));
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});
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// Make sure our changes are analyzed
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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 TransformationPermuteFunctionParameters::ToMessage()
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const {
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protobufs::Transformation result;
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*result.mutable_permute_function_parameters() = message_;
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return result;
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}
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} // namespace fuzz
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} // namespace spvtools
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