/* * Copyright (C) 2021 The Android Open Source Project * * 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 "idmap2/ResourceContainer.h" #include #include #include #include #include "androidfw/ApkAssets.h" #include "androidfw/AssetManager.h" #include "androidfw/Util.h" #include "idmap2/FabricatedOverlay.h" #include "idmap2/XmlParser.h" namespace android::idmap2 { namespace { #define REWRITE_PACKAGE(resid, package_id) \ (((resid)&0x00ffffffU) | (((uint32_t)(package_id)) << 24U)) #define EXTRACT_PACKAGE(resid) ((0xff000000 & (resid)) >> 24) constexpr ResourceId kAttrName = 0x01010003; constexpr ResourceId kAttrResourcesMap = 0x01010609; constexpr ResourceId kAttrTargetName = 0x0101044d; constexpr ResourceId kAttrTargetPackage = 0x01010021; // idmap version 0x01 naively assumes that the package to use is always the first ResTable_package // in the resources.arsc blob. In most cases, there is only a single ResTable_package anyway, so // this assumption tends to work out. That said, the correct thing to do is to scan // resources.arsc for a package with a given name as read from the package manifest instead of // relying on a hard-coded index. This however requires storing the package name in the idmap // header, which in turn requires incrementing the idmap version. Because the initial version of // idmap2 is compatible with idmap, this will have to wait for now. const LoadedPackage* GetPackageAtIndex0(const LoadedArsc* loaded_arsc) { const std::vector>& packages = loaded_arsc->GetPackages(); if (packages.empty()) { return nullptr; } return loaded_arsc->GetPackageById(packages[0]->GetPackageId()); } Result CalculateCrc(const ZipAssetsProvider* zip_assets) { constexpr const char* kResourcesArsc = "resources.arsc"; std::optional res_crc = zip_assets->GetCrc(kResourcesArsc); if (!res_crc) { return Error("failed to get CRC for '%s'", kResourcesArsc); } constexpr const char* kManifest = "AndroidManifest.xml"; std::optional man_crc = zip_assets->GetCrc(kManifest); if (!man_crc) { return Error("failed to get CRC for '%s'", kManifest); } return *res_crc ^ *man_crc; } Result OpenXmlParser(const std::string& entry_path, const ZipAssetsProvider* zip) { auto manifest = zip->Open(entry_path); if (manifest == nullptr) { return Error("failed to find %s ", entry_path.c_str()); } auto size = manifest->getLength(); auto buffer = manifest->getIncFsBuffer(true /* aligned */).convert(); if (!buffer.verify(size)) { return Error("failed to read entire %s", entry_path.c_str()); } return XmlParser::Create(buffer.unsafe_ptr(), size, true /* copyData */); } Result OpenXmlParser(ResourceId id, const ZipAssetsProvider* zip, const AssetManager2* am) { const auto ref_table = am->GetDynamicRefTableForCookie(0); if (ref_table == nullptr) { return Error("failed to find dynamic ref table for cookie 0"); } ref_table->lookupResourceId(&id); auto value = am->GetResource(id); if (!value.has_value()) { return Error("failed to find resource for id 0x%08x", id); } if (value->type != Res_value::TYPE_STRING) { return Error("resource for is 0x%08x is not a file", id); } auto string_pool = am->GetStringPoolForCookie(value->cookie); auto file = string_pool->string8ObjectAt(value->data); if (!file.has_value()) { return Error("failed to find string for index %d", value->data); } return OpenXmlParser(file->c_str(), zip); } Result ExtractOverlayManifestInfo(const ZipAssetsProvider* zip, const std::string& name) { Result xml = OpenXmlParser("AndroidManifest.xml", zip); if (!xml) { return xml.GetError(); } auto manifest_it = xml->tree_iterator(); if (manifest_it->event() != XmlParser::Event::START_TAG || manifest_it->name() != "manifest") { return Error("root element tag is not in AndroidManifest.xml"); } std::string package_name; if (auto result_str = manifest_it->GetAttributeStringValue("package")) { package_name = *result_str; } else { return result_str.GetError(); } for (auto&& it : manifest_it) { if (it.event() != XmlParser::Event::START_TAG || it.name() != "overlay") { continue; } OverlayManifestInfo info{}; info.package_name = package_name; if (auto result_str = it.GetAttributeStringValue(kAttrName, "android:name")) { if (*result_str != name) { // A value for android:name was found, but either a the name does not match the requested // name, or an tag with no name was requested. continue; } info.name = *result_str; } else if (!name.empty()) { // This tag does not have a value for android:name, but an tag with a specific name // has been requested. continue; } if (auto result_str = it.GetAttributeStringValue(kAttrTargetPackage, "android:targetPackage")) { info.target_package = *result_str; } else { return Error("android:targetPackage missing from in AndroidManifest.xml"); } if (auto result_str = it.GetAttributeStringValue(kAttrTargetName, "android:targetName")) { info.target_name = *result_str; } if (auto result_value = it.GetAttributeValue(kAttrResourcesMap, "android:resourcesMap")) { if (utils::IsReference((*result_value).dataType)) { info.resource_mapping = (*result_value).data; } else { return Error("android:resourcesMap is not a reference in AndroidManifest.xml"); } } return info; } return Error(" with android:name \"%s\" missing from AndroidManifest.xml", name.c_str()); } Result CreateResourceMapping(ResourceId id, const ZipAssetsProvider* zip, const AssetManager2* overlay_am, const LoadedArsc* overlay_arsc, const LoadedPackage* overlay_package) { auto parser = OpenXmlParser(id, zip, overlay_am); if (!parser) { return parser.GetError(); } OverlayData overlay_data{}; const uint32_t string_pool_offset = overlay_arsc->GetStringPool()->size(); const uint8_t package_id = overlay_package->GetPackageId(); auto root_it = parser->tree_iterator(); if (root_it->event() != XmlParser::Event::START_TAG || root_it->name() != "overlay") { return Error("root element is not tag"); } auto overlay_it_end = root_it.end(); for (auto overlay_it = root_it.begin(); overlay_it != overlay_it_end; ++overlay_it) { if (overlay_it->event() == XmlParser::Event::BAD_DOCUMENT) { return Error("failed to parse overlay xml document"); } if (overlay_it->event() != XmlParser::Event::START_TAG) { continue; } if (overlay_it->name() != "item") { return Error("unexpected tag <%s> in ", overlay_it->name().c_str()); } Result target_resource = overlay_it->GetAttributeStringValue("target"); if (!target_resource) { return Error(R"( tag missing expected attribute "target")"); } Result overlay_resource = overlay_it->GetAttributeValue("value"); if (!overlay_resource) { return Error(R"( tag missing expected attribute "value")"); } if (overlay_resource->dataType == Res_value::TYPE_STRING) { overlay_resource->data += string_pool_offset; } if (utils::IsReference(overlay_resource->dataType)) { // Only rewrite resources defined within the overlay package to their corresponding target // resource ids at runtime. bool rewrite_id = package_id == EXTRACT_PACKAGE(overlay_resource->data); overlay_data.pairs.emplace_back(OverlayData::Value{ *target_resource, OverlayData::ResourceIdValue{overlay_resource->data, rewrite_id}}); } else { overlay_data.pairs.emplace_back( OverlayData::Value{*target_resource, TargetValue{.data_type = overlay_resource->dataType, .data_value = overlay_resource->data}}); } } const auto& string_pool = parser->get_strings(); const uint32_t string_pool_data_length = string_pool.bytes(); overlay_data.string_pool_data = OverlayData::InlineStringPoolData{ .data = std::unique_ptr(new uint8_t[string_pool_data_length]), .data_length = string_pool_data_length, .string_pool_offset = string_pool_offset, }; // Overlays should not be incrementally installed, so calling unsafe_ptr is fine here. memcpy(overlay_data.string_pool_data->data.get(), string_pool.data().unsafe_ptr(), string_pool_data_length); return overlay_data; } OverlayData CreateResourceMappingLegacy(const AssetManager2* overlay_am, const LoadedPackage* overlay_package) { OverlayData overlay_data{}; for (const ResourceId overlay_resid : *overlay_package) { if (auto name = utils::ResToTypeEntryName(*overlay_am, overlay_resid)) { // Disable rewriting. Overlays did not support internal references before // android:resourcesMap. Do not introduce new behavior. overlay_data.pairs.emplace_back(OverlayData::Value{ *name, OverlayData::ResourceIdValue{overlay_resid, false /* rewrite_id */}}); } } return overlay_data; } struct ResState { std::unique_ptr apk_assets; const LoadedArsc* arsc; const LoadedPackage* package; std::unique_ptr am; ZipAssetsProvider* zip_assets; static Result Initialize(std::unique_ptr zip) { ResState state; state.zip_assets = zip.get(); if ((state.apk_assets = ApkAssets::Load(std::move(zip))) == nullptr) { return Error("failed to load apk asset"); } if ((state.arsc = state.apk_assets->GetLoadedArsc()) == nullptr) { return Error("failed to retrieve loaded arsc"); } if ((state.package = GetPackageAtIndex0(state.arsc)) == nullptr) { return Error("failed to retrieve loaded package at index 0"); } state.am = std::make_unique(); if (!state.am->SetApkAssets({state.apk_assets.get()})) { return Error("failed to create asset manager"); } return state; } }; } // namespace struct ApkResourceContainer : public TargetResourceContainer, public OverlayResourceContainer { static Result> FromPath(const std::string& path); // inherited from TargetResourceContainer Result DefinesOverlayable() const override; Result GetOverlayableInfo(ResourceId id) const override; Result GetResourceId(const std::string& name) const override; // inherited from OverlayResourceContainer Result GetOverlayData(const OverlayManifestInfo& info) const override; Result FindOverlayInfo(const std::string& name) const override; // inherited from ResourceContainer Result GetCrc() const override; Result GetResourceName(ResourceId id) const override; const std::string& GetPath() const override; ~ApkResourceContainer() override = default; private: ApkResourceContainer(std::unique_ptr zip_assets, std::string path); Result GetState() const; ZipAssetsProvider* GetZipAssets() const; mutable std::variant, ResState> state_; std::string path_; }; ApkResourceContainer::ApkResourceContainer(std::unique_ptr zip_assets, std::string path) : state_(std::move(zip_assets)), path_(std::move(path)) { } Result> ApkResourceContainer::FromPath( const std::string& path) { auto zip_assets = ZipAssetsProvider::Create(path, 0 /* flags */); if (zip_assets == nullptr) { return Error("failed to load zip assets"); } return std::unique_ptr( new ApkResourceContainer(std::move(zip_assets), path)); } Result ApkResourceContainer::GetState() const { if (auto state = std::get_if(&state_); state != nullptr) { return state; } auto state = ResState::Initialize(std::move(std::get>(state_))); if (!state) { return state.GetError(); } state_ = std::move(*state); return &std::get(state_); } ZipAssetsProvider* ApkResourceContainer::GetZipAssets() const { if (auto zip = std::get_if>(&state_); zip != nullptr) { return zip->get(); } return std::get(state_).zip_assets; } Result ApkResourceContainer::DefinesOverlayable() const { auto state = GetState(); if (!state) { return state.GetError(); } return (*state)->package->DefinesOverlayable(); } Result ApkResourceContainer::GetOverlayableInfo( ResourceId id) const { auto state = GetState(); if (!state) { return state.GetError(); } return (*state)->package->GetOverlayableInfo(id); } Result ApkResourceContainer::FindOverlayInfo(const std::string& name) const { return ExtractOverlayManifestInfo(GetZipAssets(), name); } Result ApkResourceContainer::GetOverlayData(const OverlayManifestInfo& info) const { const auto state = GetState(); if (!state) { return state.GetError(); } if (info.resource_mapping != 0) { return CreateResourceMapping(info.resource_mapping, GetZipAssets(), (*state)->am.get(), (*state)->arsc, (*state)->package); } return CreateResourceMappingLegacy((*state)->am.get(), (*state)->package); } Result ApkResourceContainer::GetCrc() const { return CalculateCrc(GetZipAssets()); } const std::string& ApkResourceContainer::GetPath() const { return path_; } Result ApkResourceContainer::GetResourceId(const std::string& name) const { auto state = GetState(); if (!state) { return state.GetError(); } auto id = (*state)->am->GetResourceId(name, "", (*state)->package->GetPackageName()); if (!id.has_value()) { return Error("failed to find resource '%s'", name.c_str()); } // Retrieve the compile-time resource id of the target resource. return REWRITE_PACKAGE(*id, (*state)->package->GetPackageId()); } Result ApkResourceContainer::GetResourceName(ResourceId id) const { auto state = GetState(); if (!state) { return state.GetError(); } return utils::ResToTypeEntryName(*(*state)->am, id); } Result> TargetResourceContainer::FromPath( std::string path) { auto result = ApkResourceContainer::FromPath(path); if (!result) { return result.GetError(); } return std::unique_ptr(result->release()); } Result> OverlayResourceContainer::FromPath( std::string path) { // Load the path as a fabricated overlay if the file magic indicates this is a fabricated overlay. if (android::IsFabricatedOverlay(path)) { auto result = FabricatedOverlayContainer::FromPath(path); if (!result) { return result.GetError(); } return std::unique_ptr(result->release()); } // Fallback to loading the container as an APK. auto result = ApkResourceContainer::FromPath(path); if (!result) { return result.GetError(); } return std::unique_ptr(result->release()); } } // namespace android::idmap2