// Copyright (c) 2012 The Chromium Authors. All rights reserved. // Use of this source code is governed by a BSD-style license that can be // found in the LICENSE file. #include "chrome/browser/extensions/convert_web_app.h" #include <cmath> #include <limits> #include <string> #include <vector> #include "base/base64.h" #include "base/file_util.h" #include "base/files/file_path.h" #include "base/files/scoped_temp_dir.h" #include "base/json/json_file_value_serializer.h" #include "base/logging.h" #include "base/numerics/safe_conversions.h" #include "base/path_service.h" #include "base/strings/stringprintf.h" #include "base/strings/utf_string_conversions.h" #include "base/time/time.h" #include "chrome/common/chrome_paths.h" #include "chrome/common/web_application_info.h" #include "crypto/sha2.h" #include "extensions/common/constants.h" #include "extensions/common/extension.h" #include "extensions/common/file_util.h" #include "extensions/common/manifest_constants.h" #include "third_party/skia/include/core/SkBitmap.h" #include "ui/gfx/codec/png_codec.h" #include "url/gurl.h" namespace extensions { namespace keys = manifest_keys; using base::Time; namespace { const char kIconsDirName[] = "icons"; // Create the public key for the converted web app. // // Web apps are not signed, but the public key for an extension doubles as // its unique identity, and we need one of those. A web app's unique identity // is its manifest URL, so we hash that to create a public key. There will be // no corresponding private key, which means that these extensions cannot be // auto-updated using ExtensionUpdater. std::string GenerateKey(const GURL& app_url) { char raw[crypto::kSHA256Length] = {0}; std::string key; crypto::SHA256HashString(app_url.spec().c_str(), raw, crypto::kSHA256Length); base::Base64Encode(std::string(raw, crypto::kSHA256Length), &key); return key; } } // namespace // Generates a version for the converted app using the current date. This isn't // really needed, but it seems like useful information. std::string ConvertTimeToExtensionVersion(const Time& create_time) { Time::Exploded create_time_exploded; create_time.UTCExplode(&create_time_exploded); double micros = static_cast<double>( (create_time_exploded.millisecond * Time::kMicrosecondsPerMillisecond) + (create_time_exploded.second * Time::kMicrosecondsPerSecond) + (create_time_exploded.minute * Time::kMicrosecondsPerMinute) + (create_time_exploded.hour * Time::kMicrosecondsPerHour)); double day_fraction = micros / Time::kMicrosecondsPerDay; double stamp = day_fraction * std::numeric_limits<uint16>::max(); // Ghetto-round, since VC++ doesn't have round(). stamp = stamp >= (floor(stamp) + 0.5) ? (stamp + 1) : stamp; return base::StringPrintf("%i.%i.%i.%i", create_time_exploded.year, create_time_exploded.month, create_time_exploded.day_of_month, static_cast<uint16>(stamp)); } scoped_refptr<Extension> ConvertWebAppToExtension( const WebApplicationInfo& web_app, const Time& create_time, const base::FilePath& extensions_dir) { base::FilePath install_temp_dir = file_util::GetInstallTempDir(extensions_dir); if (install_temp_dir.empty()) { LOG(ERROR) << "Could not get path to profile temporary directory."; return NULL; } base::ScopedTempDir temp_dir; if (!temp_dir.CreateUniqueTempDirUnderPath(install_temp_dir)) { LOG(ERROR) << "Could not create temporary directory."; return NULL; } // Create the manifest scoped_ptr<base::DictionaryValue> root(new base::DictionaryValue); root->SetString(keys::kPublicKey, GenerateKey(web_app.app_url)); root->SetString(keys::kName, base::UTF16ToUTF8(web_app.title)); root->SetString(keys::kVersion, ConvertTimeToExtensionVersion(create_time)); root->SetString(keys::kDescription, base::UTF16ToUTF8(web_app.description)); root->SetString(keys::kLaunchWebURL, web_app.app_url.spec()); // Add the icons. base::DictionaryValue* icons = new base::DictionaryValue(); root->Set(keys::kIcons, icons); for (size_t i = 0; i < web_app.icons.size(); ++i) { std::string size = base::StringPrintf("%i", web_app.icons[i].width); std::string icon_path = base::StringPrintf("%s/%s.png", kIconsDirName, size.c_str()); icons->SetString(size, icon_path); } // Write the manifest. base::FilePath manifest_path = temp_dir.path().Append(kManifestFilename); JSONFileValueSerializer serializer(manifest_path); if (!serializer.Serialize(*root)) { LOG(ERROR) << "Could not serialize manifest."; return NULL; } // Write the icon files. base::FilePath icons_dir = temp_dir.path().AppendASCII(kIconsDirName); if (!base::CreateDirectory(icons_dir)) { LOG(ERROR) << "Could not create icons directory."; return NULL; } for (size_t i = 0; i < web_app.icons.size(); ++i) { // Skip unfetched bitmaps. if (web_app.icons[i].data.config() == SkBitmap::kNo_Config) continue; base::FilePath icon_file = icons_dir.AppendASCII( base::StringPrintf("%i.png", web_app.icons[i].width)); std::vector<unsigned char> image_data; if (!gfx::PNGCodec::EncodeBGRASkBitmap(web_app.icons[i].data, false, &image_data)) { LOG(ERROR) << "Could not create icon file."; return NULL; } const char* image_data_ptr = reinterpret_cast<const char*>(&image_data[0]); int size = base::checked_cast<int>(image_data.size()); if (base::WriteFile(icon_file, image_data_ptr, size) != size) { LOG(ERROR) << "Could not write icon file."; return NULL; } } // Finally, create the extension object to represent the unpacked directory. std::string error; scoped_refptr<Extension> extension = Extension::Create( temp_dir.path(), Manifest::INTERNAL, *root, Extension::FROM_BOOKMARK, &error); if (!extension.get()) { LOG(ERROR) << error; return NULL; } temp_dir.Take(); // The caller takes ownership of the directory. return extension; } } // namespace extensions