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ability_ability_runtime/frameworks/native/runtime/js_worker.cpp
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/*
* Copyright (c) 2022 Huawei Device Co., Ltd.
* 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 "js_worker.h"
#include <cerrno>
#include <climits>
#include <cstdlib>
#include <fstream>
#include <vector>
#include <unistd.h>
#include "connect_server_manager.h"
#include "commonlibrary/c_utils/base/include/refbase.h"
#ifdef SUPPORT_GRAPHICS
#include "core/common/container_scope.h"
#endif
#include "extractor.h"
#include "foundation/bundlemanager/bundle_framework/interfaces/inner_api/appexecfwk_base/include/bundle_info.h"
#include "foundation/bundlemanager/bundle_framework/interfaces/inner_api/appexecfwk_core/include/bundlemgr/bundle_mgr_proxy.h"
#include "foundation/systemabilitymgr/samgr/interfaces/innerkits/samgr_proxy/include/iservice_registry.h"
#include "foundation/communication/ipc/interfaces/innerkits/ipc_core/include/iremote_object.h"
#include "system_ability_definition.h"
#include "hilog_wrapper.h"
#include "js_console_log.h"
#include "js_runtime_utils.h"
#include "native_engine/impl/ark/ark_native_engine.h"
#ifdef SUPPORT_GRAPHICS
using OHOS::Ace::ContainerScope;
#endif
namespace OHOS {
namespace AbilityRuntime {
namespace {
constexpr int64_t ASSET_FILE_MAX_SIZE = 32 * 1024 * 1024;
const std::string BUNDLE_NAME_FLAG = "@bundle:";
const std::string CACHE_DIRECTORY = "el2";
#ifdef APP_USE_ARM
constexpr char ARK_DEBUGGER_LIB_PATH[] = "/system/lib/libark_debugger.z.so";
#else
constexpr char ARK_DEBUGGER_LIB_PATH[] = "/system/lib64/libark_debugger.z.so";
#endif
bool g_debugMode = false;
void InitWorkerFunc(NativeEngine* nativeEngine)
{
HILOG_INFO("InitWorkerFunc called");
if (nativeEngine == nullptr) {
HILOG_ERROR("Input nativeEngine is nullptr");
return;
}
NativeObject* globalObj = ConvertNativeValueTo<NativeObject>(nativeEngine->GetGlobal());
if (globalObj == nullptr) {
HILOG_ERROR("Failed to get global object");
return;
}
InitConsoleLogModule(*nativeEngine, *globalObj);
if (g_debugMode) {
auto instanceId = gettid();
std::string instanceName = "workerThread_" + std::to_string(instanceId);
bool needBreakPoint = ConnectServerManager::Get().AddInstance(instanceId, instanceName);
auto arkNativeEngine = static_cast<ArkNativeEngine*>(nativeEngine);
auto vm = const_cast<EcmaVM*>(arkNativeEngine->GetEcmaVm());
auto workerPostTask = [nativeEngine](std::function<void()>&& callback) {
nativeEngine->CallDebuggerPostTaskFunc(std::move(callback));
};
panda::JSNApi::StartDebugger(ARK_DEBUGGER_LIB_PATH, vm, needBreakPoint, instanceId, workerPostTask);
}
}
void OffWorkerFunc(NativeEngine* nativeEngine)
{
HILOG_INFO("OffWorkerFunc called");
if (nativeEngine == nullptr) {
HILOG_ERROR("Input nativeEngine is nullptr");
return;
}
if (g_debugMode) {
auto instanceId = gettid();
ConnectServerManager::Get().RemoveInstance(instanceId);
auto arkNativeEngine = static_cast<ArkNativeEngine*>(nativeEngine);
auto vm = const_cast<EcmaVM*>(arkNativeEngine->GetEcmaVm());
panda::JSNApi::StopDebugger(vm);
}
}
struct AssetHelper final {
using Extractor = AbilityBase::Extractor;
using ExtractorUtil = AbilityBase::ExtractorUtil;
using BundleMgrProxy = AppExecFwk::BundleMgrProxy;
explicit AssetHelper(const std::string& codePath, bool isDebugVersion, bool isBundle)
: codePath_(codePath), isDebugVersion_(isDebugVersion), isBundle_(isBundle)
{
if (!codePath_.empty() && codePath.back() != '/') {
codePath_.append("/");
}
}
std::string NormalizedFileName(const std::string& fileName) const
{
std::string normalizedFilePath;
size_t index = 0;
index = fileName.find_last_of(".");
// 1.1 end with file name
// 1.2 end with file name and file type
if (index == std::string::npos) {
HILOG_DEBUG("uri end without file type");
normalizedFilePath = fileName + ".abc";
} else {
HILOG_DEBUG("uri end with file type");
normalizedFilePath = fileName.substr(0, index) + ".abc";
}
return normalizedFilePath;
}
void operator()(const std::string& uri, std::vector<uint8_t>& content, std::string &ami) const
{
if (uri.empty()) {
HILOG_ERROR("Uri is empty.");
return;
}
HILOG_INFO("RegisterAssetFunc called, uri: %{private}s", uri.c_str());
std::string realPath;
std::string filePath;
// 1. compilemode is jsbundle
// 2. compilemode is esmodule
if (isBundle_) {
// 1.1 start with @bundle:bundlename/modulename
// 1.2 start with /modulename
// 1.3 start with modulename
HILOG_DEBUG("The application is packaged using jsbundle mode.");
if (uri.find(BUNDLE_NAME_FLAG) == 0) {
size_t index = 0;
HILOG_DEBUG("uri start with @bundle:");
index = uri.find_first_of("/");
realPath = uri.substr(index + 1);
} else if (uri.find_first_of("/") == 0) {
HILOG_DEBUG("uri start with /modulename");
realPath = uri.substr(1);
} else {
HILOG_DEBUG("uri start with modulename");
realPath = uri;
}
filePath = NormalizedFileName(realPath);
ami = codePath_ + filePath;
HILOG_DEBUG("Get asset, ami: %{private}s", ami.c_str());
if (ami.find(CACHE_DIRECTORY) != std::string::npos) {
if (!ReadAmiData(ami, content)) {
HILOG_ERROR("Get asset content by ami failed.");
}
} else if (!ReadFilePathData(filePath, content)) {
HILOG_ERROR("Get asset content by filepath failed.");
}
} else {
// 2.1 start with @bundle:bundlename/modulename
// 2.2 start with /modulename
// 2.3 start with modulename
HILOG_DEBUG("The application is packaged using esmodule mode.");
if (uri.find(BUNDLE_NAME_FLAG) == 0) {
HILOG_DEBUG("uri start with @bundle:");
ami = NormalizedFileName(uri);;
HILOG_DEBUG("Get asset, ami: %{private}s", ami.c_str());
return;
} else if (uri.find_first_of("/") == 0) {
HILOG_DEBUG("uri start with /modulename");
realPath = uri.substr(1);
} else {
HILOG_DEBUG("uri start with modulename");
realPath = uri;
}
filePath = NormalizedFileName(realPath);
ami = codePath_ + filePath;
HILOG_DEBUG("Get asset, ami: %{private}s", ami.c_str());
}
}
sptr<BundleMgrProxy> GetBundleMgrProxy() const
{
auto systemAbilityManager =
SystemAbilityManagerClient::GetInstance().GetSystemAbilityManager();
if (!systemAbilityManager) {
HILOG_ERROR("fail to get system ability mgr.");
return nullptr;
}
auto remoteObject = systemAbilityManager->GetSystemAbility(BUNDLE_MGR_SERVICE_SYS_ABILITY_ID);
if (!remoteObject) {
HILOG_ERROR("fail to get bundle manager proxy.");
return nullptr;
}
HILOG_DEBUG("get bundle manager proxy success.");
return iface_cast<BundleMgrProxy>(remoteObject);
}
bool ReadAmiData(const std::string& ami, std::vector<uint8_t>& content) const
{
char path[PATH_MAX];
if (realpath(ami.c_str(), path) == nullptr) {
HILOG_ERROR("ReadAmiData realpath(%{private}s) failed, errno = %{public}d", ami.c_str(), errno);
return false;
}
std::ifstream stream(path, std::ios::binary | std::ios::ate);
if (!stream.is_open()) {
HILOG_ERROR("ReadAmiData failed to open file %{private}s", ami.c_str());
return false;
}
auto fileLen = stream.tellg();
if (!isDebugVersion_ && fileLen > ASSET_FILE_MAX_SIZE) {
HILOG_ERROR("ReadAmiData failed, file is too large");
return false;
}
content.resize(fileLen);
stream.seekg(0);
stream.read(reinterpret_cast<char*>(content.data()), content.size());
return true;
}
bool ReadFilePathData(const std::string& filePath, std::vector<uint8_t>& content) const
{
auto bundleMgrProxy = GetBundleMgrProxy();
if (!bundleMgrProxy) {
HILOG_ERROR("bundle mgr proxy is nullptr.");
return false;
}
AppExecFwk::BundleInfo bundleInfo;
auto getInfoResult = bundleMgrProxy->GetBundleInfoForSelf(
static_cast<int32_t>(AppExecFwk::GetBundleInfoFlag::GET_BUNDLE_INFO_WITH_HAP_MODULE), bundleInfo);
if (getInfoResult != 0) {
HILOG_ERROR("GetBundleInfoForSelf failed.");
return false;
}
if (bundleInfo.hapModuleInfos.size() == 0) {
HILOG_ERROR("get hapModuleInfo of bundleInfo failed.");
return false;
}
std::string newHapPath;
size_t pos = filePath.find('/');
for (auto hapModuleInfo : bundleInfo.hapModuleInfos) {
if (hapModuleInfo.moduleName == filePath.substr(0, pos)) {
newHapPath = hapModuleInfo.hapPath;
break;
}
}
bool newCreate = false;
std::string loadPath = ExtractorUtil::GetLoadFilePath(newHapPath);
std::shared_ptr<Extractor> extractor = ExtractorUtil::GetExtractor(loadPath, newCreate);
if (extractor == nullptr) {
HILOG_ERROR("loadPath %{private}s GetExtractor failed", loadPath.c_str());
return false;
}
std::unique_ptr<uint8_t[]> dataPtr = nullptr;
std::string realfilePath = filePath.substr(pos + 1);
size_t fileLen = 0;
HILOG_DEBUG("Get asset, realfilePath: %{private}s", realfilePath.c_str());
if (!extractor->ExtractToBufByName(realfilePath, dataPtr, fileLen)) {
HILOG_ERROR("get mergeAbc fileBuffer failed");
return false;
}
if (!isDebugVersion_ && fileLen > ASSET_FILE_MAX_SIZE) {
HILOG_ERROR("ReadFilePathData failed, file is too large");
return false;
}
content.assign(dataPtr.get(), dataPtr.get() + fileLen);
return true;
}
std::string codePath_;
bool isDebugVersion_ = false;
bool isBundle_ = true;
};
int32_t GetContainerId()
{
#ifdef SUPPORT_GRAPHICS
int32_t scopeId = ContainerScope::CurrentId();
return scopeId;
#else
constexpr int32_t containerScopeDefaultId = 0;
return containerScopeDefaultId;
#endif
}
void UpdateContainerScope(int32_t id)
{
#ifdef SUPPORT_GRAPHICS
ContainerScope::UpdateCurrent(id);
#endif
}
void RestoreContainerScope(int32_t id)
{
#ifdef SUPPORT_GRAPHICS
ContainerScope::UpdateCurrent(-1);
#endif
}
}
void InitWorkerModule(NativeEngine& engine, const std::string& codePath, bool isDebugVersion, bool isBundle)
{
engine.SetInitWorkerFunc(InitWorkerFunc);
engine.SetOffWorkerFunc(OffWorkerFunc);
engine.SetGetAssetFunc(AssetHelper(codePath, isDebugVersion, isBundle));
engine.SetGetContainerScopeIdFunc(GetContainerId);
engine.SetInitContainerScopeFunc(UpdateContainerScope);
engine.SetFinishContainerScopeFunc(RestoreContainerScope);
}
void StartDebuggerInWorkerModule()
{
g_debugMode = true;
}
} // namespace AbilityRuntime
} // namespace OHOS