mirror of
https://github.com/openharmony/ability_ability_runtime.git
synced 2026-08-25 12:23:20 -04:00
b4446d3668
Signed-off-by: 孙旭辉 <sunxuhui7@huawei.com>
229 lines
9.0 KiB
C++
Executable File
229 lines
9.0 KiB
C++
Executable File
/*
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* Copyright (c) 2024 Huawei Device Co., Ltd.
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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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*/
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#include "cacheprocessmanagera_fuzzer.h"
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#include <cstddef>
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#include <cstdint>
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#define private public
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#define protected public
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#include "cache_process_manager.h"
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#include "ability_record.h"
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#undef protected
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#undef private
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#include "app_mgr_service_inner.h"
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using namespace OHOS::AAFwk;
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using namespace OHOS::AppExecFwk;
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using namespace OHOS::AbilityRuntime;
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namespace OHOS {
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namespace {
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constexpr int INPUT_ZERO = 0;
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constexpr int INPUT_ONE = 1;
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constexpr int INPUT_THREE = 3;
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constexpr size_t FOO_MAX_LEN = 1024;
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constexpr size_t U32_AT_SIZE = 4;
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constexpr uint8_t ENABLE = 2;
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constexpr size_t OFFSET_ZERO = 24;
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constexpr size_t OFFSET_ONE = 16;
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constexpr size_t OFFSET_TWO = 8;
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}
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uint32_t GetU32Data(const char* ptr)
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{
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// convert fuzz input data to an integer
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return (ptr[INPUT_ZERO] << OFFSET_ZERO) | (ptr[INPUT_ONE] << OFFSET_ONE) | (ptr[ENABLE] << OFFSET_TWO) |
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ptr[INPUT_THREE];
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}
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sptr<Token> GetFuzzAbilityToken()
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{
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sptr<Token> token = nullptr;
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AbilityRequest abilityRequest;
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abilityRequest.appInfo.bundleName = "com.example.fuzzTest";
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abilityRequest.abilityInfo.name = "MainAbility";
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abilityRequest.abilityInfo.type = AbilityType::DATA;
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std::shared_ptr<AbilityRecord> abilityRecord = AbilityRecord::CreateAbilityRecord(abilityRequest);
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if (abilityRecord) {
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token = abilityRecord->GetToken();
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}
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return token;
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}
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void CacheProcessManagerFuzztestFunc1(bool boolParam, std::string &stringParam, int32_t int32Param)
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{
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std::shared_ptr<CacheProcessManager> mgr = std::make_shared<CacheProcessManager>();
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std::shared_ptr<AppMgrServiceInner> serviceInner1;
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mgr->SetAppMgr(serviceInner1); // null mgr
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mgr->RefreshCacheNum(); // called.
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mgr->QueryEnableProcessCache(); // called.
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mgr->maxProcCacheNum_ = 0;
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mgr->PenddingCacheProcess(nullptr); // called.
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mgr->maxProcCacheNum_ = int32Param;
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std::shared_ptr<ApplicationInfo> appInfo = std::make_shared<ApplicationInfo>();
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std::shared_ptr<AppRunningRecord> appRecord1 = std::make_shared<AppRunningRecord>(appInfo, int32Param, stringParam);
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mgr->PenddingCacheProcess(nullptr); // nullptr
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appRecord1->isKeepAliveApp_ = true;
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appRecord1->isSingleton_ = true;
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appRecord1->isMainProcess_ = true;
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mgr->PenddingCacheProcess(appRecord1); // keepalive
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std::shared_ptr<AppRunningRecord> appRecord2 = std::make_shared<AppRunningRecord>(appInfo, int32Param, stringParam);
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mgr->PenddingCacheProcess(appRecord2); // not alive
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mgr->maxProcCacheNum_ = 0;
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mgr->CheckAndCacheProcess(nullptr); // nullptr
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mgr->maxProcCacheNum_ = int32Param;
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mgr->CheckAndCacheProcess(appRecord2); // not cached
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mgr->cachedAppRecordQueue_.emplace_back(appRecord2);
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mgr->CheckAndCacheProcess(appRecord2); // cached
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mgr->CheckAndNotifyCachedState(nullptr);
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std::shared_ptr<AppMgrServiceInner> serviceInner = std::make_shared<AppMgrServiceInner>();
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mgr->SetAppMgr(serviceInner);
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mgr->CheckAndNotifyCachedState(appRecord2); // appMgr not null
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}
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void CacheProcessManagerFuzztestFunc2(bool boolParam, std::string &stringParam, int32_t int32Param)
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{
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std::shared_ptr<CacheProcessManager> mgr = std::make_shared<CacheProcessManager>();
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std::shared_ptr<AppMgrServiceInner> serviceInner1;
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mgr->SetAppMgr(serviceInner1);
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mgr->IsCachedProcess(nullptr); // called.
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std::shared_ptr<ApplicationInfo> appInfo = std::make_shared<ApplicationInfo>();
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std::shared_ptr<AppRunningRecord> appRecord2 = std::make_shared<AppRunningRecord>(appInfo, int32Param, stringParam);
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mgr->IsCachedProcess(appRecord2); // not cached called.
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mgr->cachedAppRecordQueue_.emplace_back(appRecord2);
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mgr->IsCachedProcess(appRecord2); // cached called.
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mgr->cachedAppRecordQueue_.clear(); // clear
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mgr->maxProcCacheNum_ = int32Param;
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mgr->OnProcessKilled(nullptr); // nullptr called.
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mgr->OnProcessKilled(appRecord2); // not cached called.
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mgr->cachedAppRecordQueue_.emplace_back(appRecord2);
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mgr->OnProcessKilled(appRecord2); // cached called.
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mgr->cachedAppRecordQueue_.clear(); // clear
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mgr->maxProcCacheNum_ = int32Param;
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mgr->ReuseCachedProcess(nullptr);
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mgr->ReuseCachedProcess(appRecord2); // not cached
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mgr->cachedAppRecordQueue_.emplace_back(appRecord2);
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mgr->ReuseCachedProcess(appRecord2); // cached
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mgr->cachedAppRecordQueue_.clear(); // clear
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std::shared_ptr<AppMgrServiceInner> serviceInner = std::make_shared<AppMgrServiceInner>();
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mgr->SetAppMgr(serviceInner); // appInner not null
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mgr->cachedAppRecordQueue_.emplace_back(appRecord2);
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mgr->ReuseCachedProcess(appRecord2); // cached
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mgr->IsAppSupportProcessCache(nullptr); // null ptr check
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std::shared_ptr<AppRunningRecord> appRecord3 = std::make_shared<AppRunningRecord>(nullptr, int32Param, stringParam);
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mgr->IsAppSupportProcessCache(appRecord3); // null appInfo
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mgr->srvExtRecords.emplace(appRecord2);
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mgr->IsAppSupportProcessCache(appRecord2); // appInfo not null
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mgr->srvExtRecords.clear();
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appRecord2->SetAttachedToStatusBar(true);
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mgr->IsAppSupportProcessCache(appRecord2); // appInfo not null &attached true
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appRecord2->SetAttachedToStatusBar(false);
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mgr->IsAppSupportProcessCache(appRecord2); // appInfo not null &attached false
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appRecord2->isKeepAliveApp_ = true;
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appRecord2->isSingleton_ = true;
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appRecord2->isMainProcess_ = true;
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mgr->IsAppSupportProcessCache(appRecord2); // appInfo not null &attached false & keepalive called
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}
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void CacheProcessManagerFuzztestFunc3(bool boolParam, std::string &stringParam, int32_t int32Param)
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{
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std::shared_ptr<CacheProcessManager> mgr = std::make_shared<CacheProcessManager>();
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std::shared_ptr<AppMgrServiceInner> serviceInner1;
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mgr->SetAppMgr(serviceInner1);
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mgr->IsAppSupportProcessCacheInnerFirst(nullptr); // nullptr
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std::shared_ptr<ApplicationInfo> appInfo = std::make_shared<ApplicationInfo>();
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std::shared_ptr<AppRunningRecord> appRecord1 = std::make_shared<AppRunningRecord>(appInfo, int32Param, stringParam);
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mgr->shouldCheckSupport = true;
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appRecord1->procCacheSupportState_ = SupportProcessCacheState::UNSPECIFIED;
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mgr->IsAppSupportProcessCacheInnerFirst(appRecord1); // case CacheState UNSPECIFIED
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appRecord1->procCacheSupportState_ = SupportProcessCacheState::SUPPORT;
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mgr->IsAppSupportProcessCacheInnerFirst(appRecord1); // case CacheState SUPPORT
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appRecord1->procCacheSupportState_ = SupportProcessCacheState::NOT_SUPPORT;
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mgr->IsAppSupportProcessCacheInnerFirst(appRecord1); // case CacheState SUPPORT
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int32_t num = static_cast<int32_t>(SupportProcessCacheState::NOT_SUPPORT) + 1;
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appRecord1->procCacheSupportState_ = static_cast<SupportProcessCacheState>(num);
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mgr->IsAppSupportProcessCacheInnerFirst(appRecord1); // case CacheState default branch
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mgr->shouldCheckSupport = false;
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appRecord1->procCacheSupportState_ = SupportProcessCacheState::UNSPECIFIED;
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mgr->IsAppSupportProcessCacheInnerFirst(appRecord1); // case CacheState UNSPECIFIED
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mgr->IsAppShouldCache(nullptr); // called.
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mgr->maxProcCacheNum_ = int32Param;
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mgr->IsAppShouldCache(appRecord1); // not ccached called.
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mgr->cachedAppRecordQueue_.emplace_back(appRecord1);
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mgr->IsAppShouldCache(appRecord1); //ccached called.
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mgr->IsAppAbilitiesEmpty(nullptr); // called
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mgr->IsAppAbilitiesEmpty(appRecord1); // called
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}
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bool DoSomethingInterestingWithMyAPI(const char* data, size_t size)
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{
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bool boolParam = *data % ENABLE;
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std::string stringParam(data, size);
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int32_t int32Param = static_cast<int32_t>(GetU32Data(data));
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CacheProcessManagerFuzztestFunc1(boolParam, stringParam, int32Param);
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CacheProcessManagerFuzztestFunc2(boolParam, stringParam, int32Param);
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CacheProcessManagerFuzztestFunc3(boolParam, stringParam, int32Param);
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return true;
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}
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}
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/* Fuzzer entry point */
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extern "C" int LLVMFuzzerTestOneInput(const uint8_t* data, size_t size)
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{
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/* Run your code on data */
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if (data == nullptr) {
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return 0;
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}
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/* Validate the length of size */
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if (size < OHOS::U32_AT_SIZE || size > OHOS::FOO_MAX_LEN) {
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return 0;
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}
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char* ch = (char*)malloc(size + 1);
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if (ch == nullptr) {
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std::cout << "malloc failed." << std::endl;
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return 0;
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}
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(void)memset_s(ch, size + 1, 0x00, size + 1);
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if (memcpy_s(ch, size, data, size) != EOK) {
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std::cout << "copy failed." << std::endl;
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free(ch);
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ch = nullptr;
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return 0;
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}
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OHOS::DoSomethingInterestingWithMyAPI(ch, size);
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free(ch);
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ch = nullptr;
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return 0;
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}
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