cb1e0374af
GitOrigin-RevId: 7deac5583350d64cf6fd0e323f2291804e3ba995
482 lines
18 KiB
C++
482 lines
18 KiB
C++
//
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// Copyright Aliaksei Levin (levlam@telegram.org), Arseny Smirnov (arseny30@gmail.com) 2014-2018
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//
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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//
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#include "td/telegram/files/FileDownloader.h"
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#include "td/telegram/telegram_api.h"
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#include "td/telegram/files/FileLoaderUtils.h"
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#include "td/telegram/Global.h"
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#include "td/telegram/UniqueId.h"
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#include "td/utils/buffer.h"
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#include "td/utils/common.h"
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#include "td/utils/crypto.h"
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#include "td/utils/format.h"
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#include "td/utils/logging.h"
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#include "td/utils/misc.h"
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#include "td/utils/port/path.h"
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#include "td/utils/port/Stat.h"
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#include "td/utils/ScopeGuard.h"
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#include "td/utils/Slice.h"
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#include <tuple>
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namespace td {
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FileDownloader::FileDownloader(const FullRemoteFileLocation &remote, const LocalFileLocation &local, int64 size,
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string name, const FileEncryptionKey &encryption_key, bool is_small, bool search_file,
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std::unique_ptr<Callback> callback)
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: remote_(remote)
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, local_(local)
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, size_(size)
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, name_(std::move(name))
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, encryption_key_(encryption_key)
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, callback_(std::move(callback))
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, is_small_(is_small)
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, search_file_(search_file) {
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if (!encryption_key.is_secret()) {
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set_ordered_flag(true);
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}
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}
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Result<FileLoader::FileInfo> FileDownloader::init() {
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SCOPE_EXIT {
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try_release_fd();
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};
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if (local_.type() == LocalFileLocation::Type::Full) {
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return Status::Error("File is already downloaded");
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}
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if (encryption_key_.is_secure() && !encryption_key_.has_value_hash()) {
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LOG(ERROR) << "Can't download Secure file with unknown value_hash";
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}
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if (remote_.file_type_ == FileType::Secure) {
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size_ = 0;
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}
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int ready_part_count = 0;
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int32 part_size = 0;
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if (local_.type() == LocalFileLocation::Type::Partial) {
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const auto &partial = local_.partial();
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path_ = partial.path_;
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auto result_fd = FileFd::open(path_, FileFd::Write | FileFd::Read);
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// TODO: check timestamps..
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if (result_fd.is_ok()) {
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if (encryption_key_.is_secret()) {
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CHECK(partial.iv_.size() == 32) << partial.iv_.size();
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encryption_key_.mutable_iv() = as<UInt256>(partial.iv_.data());
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next_part_ = partial.ready_part_count_;
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}
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fd_ = result_fd.move_as_ok();
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part_size = partial.part_size_;
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ready_part_count = partial.ready_part_count_;
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}
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}
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if (search_file_ && fd_.empty() && size_ > 0 && size_ < 1000 * (1 << 20) && encryption_key_.empty() &&
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!remote_.is_web()) {
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[&] {
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TRY_RESULT(path, search_file(get_files_dir(remote_.file_type_), name_, size_));
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TRY_RESULT(fd, FileFd::open(path, FileFd::Read));
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LOG(INFO) << "Check hash of local file " << path;
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path_ = std::move(path);
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fd_ = std::move(fd);
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need_check_ = true;
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only_check_ = true;
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part_size = 32 * (1 << 10);
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ready_part_count = narrow_cast<int>((size_ + part_size - 1) / part_size);
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return Status::OK();
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}();
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}
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std::vector<int> parts(ready_part_count);
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for (int i = 0; i < ready_part_count; i++) {
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parts[i] = i;
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}
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FileInfo res;
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res.size = size_;
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res.is_size_final = true;
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res.part_size = part_size;
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res.ready_parts = std::move(parts);
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res.use_part_count_limit = false;
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res.only_check = only_check_;
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res.need_delay = !is_small_ && (remote_.file_type_ == FileType::VideoNote ||
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remote_.file_type_ == FileType::VoiceNote || remote_.file_type_ == FileType::Audio ||
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remote_.file_type_ == FileType::Video || remote_.file_type_ == FileType::Animation ||
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(remote_.file_type_ == FileType::Encrypted && size_ > (1 << 20)));
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return res;
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}
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Status FileDownloader::on_ok(int64 size) {
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auto dir = get_files_dir(remote_.file_type_);
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std::string path;
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fd_.close();
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if (encryption_key_.is_secure()) {
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TRY_RESULT(file_path, open_temp_file(remote_.file_type_));
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string tmp_path;
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std::tie(std::ignore, tmp_path) = std::move(file_path);
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TRY_STATUS(secure_storage::decrypt_file(encryption_key_.secret(), encryption_key_.value_hash(), path_, tmp_path));
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unlink(path_).ignore();
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path_ = std::move(tmp_path);
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TRY_RESULT(path_stat, stat(path_));
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size = path_stat.size_;
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}
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if (only_check_) {
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path = path_;
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} else {
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TRY_RESULT(perm_path, create_from_temp(path_, dir, name_));
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path = std::move(perm_path);
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}
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callback_->on_ok(FullLocalFileLocation(remote_.file_type_, std::move(path), 0), size);
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return Status::OK();
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}
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void FileDownloader::on_error(Status status) {
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fd_.close();
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callback_->on_error(std::move(status));
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}
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Result<bool> FileDownloader::should_restart_part(Part part, NetQueryPtr &net_query) {
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// Check if we should use CDN or reupload file to CDN
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if (net_query->is_error()) {
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if (net_query->error().message() == "FILE_TOKEN_INVALID") {
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use_cdn_ = false;
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return true;
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}
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if (net_query->error().message() == "REQUEST_TOKEN_INVALID") {
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return true;
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}
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return false;
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}
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switch (narrow_cast<QueryType>(UniqueId::extract_key(net_query->id()))) {
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case QueryType::Default: {
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if (net_query->ok_tl_constructor() == telegram_api::upload_fileCdnRedirect::ID) {
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LOG(DEBUG) << part.id << " got REDIRECT";
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TRY_RESULT(file_base, fetch_result<telegram_api::upload_getFile>(net_query->ok()));
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CHECK(file_base->get_id() == telegram_api::upload_fileCdnRedirect::ID);
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auto file = move_tl_object_as<telegram_api::upload_fileCdnRedirect>(file_base);
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auto new_cdn_file_token = file->file_token_.as_slice();
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if (cdn_file_token_ == new_cdn_file_token) {
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return true;
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}
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use_cdn_ = true;
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need_check_ = true;
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cdn_file_token_generation_++;
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cdn_file_token_ = new_cdn_file_token.str();
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cdn_dc_id_ = DcId::external(file->dc_id_);
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cdn_encryption_key_ = file->encryption_key_.as_slice().str();
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cdn_encryption_iv_ = file->encryption_iv_.as_slice().str();
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add_hash_info(file->file_hashes_);
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if (cdn_encryption_iv_.size() != 16 || cdn_encryption_key_.size() != 32) {
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return Status::Error("Wrong ctr key or iv size");
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}
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return true;
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}
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return false;
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}
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case QueryType::ReuploadCDN: {
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TRY_RESULT(file_hashes, fetch_result<telegram_api::upload_reuploadCdnFile>(net_query->ok()));
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add_hash_info(file_hashes);
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LOG(DEBUG) << part.id << " got REUPLOAD_OK";
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return true;
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}
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case QueryType::CDN: {
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if (net_query->ok_tl_constructor() == telegram_api::upload_cdnFileReuploadNeeded::ID) {
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LOG(DEBUG) << part.id << " got REUPLOAD";
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TRY_RESULT(file_base, fetch_result<telegram_api::upload_getCdnFile>(net_query->ok()));
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CHECK(file_base->get_id() == telegram_api::upload_cdnFileReuploadNeeded::ID);
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auto file = move_tl_object_as<telegram_api::upload_cdnFileReuploadNeeded>(file_base);
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cdn_part_reupload_token_[part.id] = file->request_token_.as_slice().str();
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return true;
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}
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auto it = cdn_part_file_token_generation_.find(part.id);
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CHECK(it != cdn_part_file_token_generation_.end());
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if (it->second != cdn_file_token_generation_) {
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LOG(DEBUG) << part.id << " got part with old file_token";
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return true;
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}
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return false;
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}
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default:
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UNREACHABLE();
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}
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return false;
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}
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Result<std::pair<NetQueryPtr, bool>> FileDownloader::start_part(Part part, int32 part_count) {
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if (encryption_key_.is_secret()) {
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part.size = (part.size + 15) & ~15; // fix for last part
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}
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// auto size = part.size;
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//// sometimes we can ask more than server has, just to check size
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// if (size < get_part_size()) {
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// size = min(size + 16, get_part_size());
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// LOG(INFO) << "Ask " << size << " instead of " << part.size;
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//}
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auto size = get_part_size();
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CHECK(part.size <= size);
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callback_->on_start_download();
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NetQueryPtr net_query;
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if (!use_cdn_) {
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net_query = G()->net_query_creator().create(
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UniqueId::next(UniqueId::Type::Default, static_cast<uint8>(QueryType::Default)),
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remote_.is_web()
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? create_storer(telegram_api::upload_getWebFile(remote_.as_input_web_file_location(),
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static_cast<int32>(part.offset), static_cast<int32>(size)))
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: create_storer(telegram_api::upload_getFile(remote_.as_input_file_location(),
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static_cast<int32>(part.offset), static_cast<int32>(size))),
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remote_.get_dc_id(), is_small_ ? NetQuery::Type::DownloadSmall : NetQuery::Type::Download);
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} else {
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if (remote_.is_web()) {
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return Status::Error("Can't download web file from CDN");
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}
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auto it = cdn_part_reupload_token_.find(part.id);
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if (it == cdn_part_reupload_token_.end()) {
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auto query = telegram_api::upload_getCdnFile(BufferSlice(cdn_file_token_), static_cast<int32>(part.offset),
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static_cast<int32>(size));
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cdn_part_file_token_generation_[part.id] = cdn_file_token_generation_;
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LOG(DEBUG) << part.id << " " << to_string(query);
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net_query = G()->net_query_creator().create(
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UniqueId::next(UniqueId::Type::Default, static_cast<uint8>(QueryType::CDN)), create_storer(query), cdn_dc_id_,
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is_small_ ? NetQuery::Type::DownloadSmall : NetQuery::Type::Download, NetQuery::AuthFlag::Off);
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} else {
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auto query = telegram_api::upload_reuploadCdnFile(BufferSlice(cdn_file_token_), BufferSlice(it->second));
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LOG(DEBUG) << part.id << " " << to_string(query);
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net_query = G()->net_query_creator().create(
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UniqueId::next(UniqueId::Type::Default, static_cast<uint8>(QueryType::ReuploadCDN)), create_storer(query),
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remote_.get_dc_id(), is_small_ ? NetQuery::Type::DownloadSmall : NetQuery::Type::Download,
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NetQuery::AuthFlag::On);
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cdn_part_reupload_token_.erase(it);
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}
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}
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net_query->file_type_ = narrow_cast<int32>(remote_.file_type_);
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return std::make_pair(std::move(net_query), false);
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}
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Result<size_t> FileDownloader::process_part(Part part, NetQueryPtr net_query) {
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if (net_query->is_error()) {
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return std::move(net_query->error());
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}
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BufferSlice bytes;
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bool need_cdn_decrypt = false;
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auto query_type = narrow_cast<QueryType>(UniqueId::extract_key(net_query->id()));
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switch (query_type) {
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case QueryType::Default: {
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if (remote_.is_web()) {
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TRY_RESULT(file, fetch_result<telegram_api::upload_getWebFile>(net_query->ok()));
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bytes = std::move(file->bytes_);
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} else {
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TRY_RESULT(file_base, fetch_result<telegram_api::upload_getFile>(net_query->ok()));
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CHECK(file_base->get_id() == telegram_api::upload_file::ID);
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auto file = move_tl_object_as<telegram_api::upload_file>(file_base);
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LOG(DEBUG) << part.id << " upload_getFile result";
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bytes = std::move(file->bytes_);
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}
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break;
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}
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case QueryType::CDN: {
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TRY_RESULT(file_base, fetch_result<telegram_api::upload_getCdnFile>(net_query->ok()));
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CHECK(file_base->get_id() == telegram_api::upload_cdnFile::ID);
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auto file = move_tl_object_as<telegram_api::upload_cdnFile>(file_base);
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LOG(DEBUG) << part.id << " upload_getCdnFile result";
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bytes = std::move(file->bytes_);
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need_cdn_decrypt = true;
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break;
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}
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default:
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UNREACHABLE();
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}
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auto padded_size = part.size;
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if (encryption_key_.is_secret()) {
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padded_size = (part.size + 15) & ~15;
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}
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LOG(INFO) << "Got " << bytes.size() << " bytes, padded_size = " << padded_size << " for " << path_;
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if (bytes.size() > padded_size) {
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return Status::Error("Part size is more than requested");
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}
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if (bytes.empty()) {
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return 0;
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}
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// Encryption
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if (need_cdn_decrypt) {
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auto iv = as<UInt128>(cdn_encryption_iv_.c_str());
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CHECK(part.offset % 16 == 0);
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auto offset = narrow_cast<uint32>(part.offset / 16);
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offset =
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((offset & 0xff) << 24) | ((offset & 0xff00) << 8) | ((offset & 0xff0000) >> 8) | ((offset & 0xff000000) >> 24);
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as<uint32>(iv.raw + 12) = offset;
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auto key = as<UInt256>(cdn_encryption_key_.c_str());
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AesCtrState ctr_state;
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ctr_state.init(key, iv);
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ctr_state.decrypt(bytes.as_slice(), bytes.as_slice());
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}
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if (encryption_key_.is_secret()) {
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CHECK(next_part_ == part.id) << tag("expected part.id", next_part_) << "!=" << tag("part.id", part.id);
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CHECK(!next_part_stop_);
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next_part_++;
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if (part.size % 16 != 0) {
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next_part_stop_ = true;
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}
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aes_ige_decrypt(encryption_key_.key(), &encryption_key_.mutable_iv(), bytes.as_slice(), bytes.as_slice());
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}
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auto slice = bytes.as_slice().truncate(part.size);
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TRY_STATUS(acquire_fd());
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TRY_RESULT(written, fd_.pwrite(slice, part.offset));
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// may write less than part.size, when size of downloadable file is unknown
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if (written != slice.size()) {
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return Status::Error("Failed to save file part to the file");
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}
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return written;
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}
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void FileDownloader::on_progress(int32 part_count, int32 part_size, int32 ready_part_count, bool is_ready,
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int64 ready_size) {
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if (is_ready) {
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// do not send partial location. will lead to wrong local_size
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return;
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}
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if (ready_size == 0 || path_.empty()) {
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return;
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}
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if (encryption_key_.empty() || encryption_key_.is_secure()) {
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callback_->on_partial_download(PartialLocalFileLocation{remote_.file_type_, path_, part_size, ready_part_count, ""},
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ready_size);
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} else if (encryption_key_.is_secret()) {
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UInt256 iv;
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if (ready_part_count == next_part_) {
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iv = encryption_key_.mutable_iv();
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} else {
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LOG(FATAL) << tag("ready_part_count", ready_part_count) << tag("next_part", next_part_);
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}
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callback_->on_partial_download(PartialLocalFileLocation{remote_.file_type_, path_, part_size, ready_part_count,
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Slice(iv.raw, sizeof(iv)).str()},
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ready_size);
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} else {
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UNREACHABLE();
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}
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}
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FileLoader::Callback *FileDownloader::get_callback() {
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return static_cast<FileLoader::Callback *>(callback_.get());
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}
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Status FileDownloader::process_check_query(NetQueryPtr net_query) {
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has_hash_query_ = false;
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TRY_RESULT(file_hashes, fetch_result<telegram_api::upload_getCdnFileHashes>(std::move(net_query)));
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add_hash_info(file_hashes);
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return Status::OK();
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}
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Result<FileLoader::CheckInfo> FileDownloader::check_loop(int64 checked_prefix_size, int64 ready_prefix_size,
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bool is_ready) {
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if (!need_check_) {
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return CheckInfo{};
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}
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SCOPE_EXIT {
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try_release_fd();
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};
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CheckInfo info;
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while (checked_prefix_size < ready_prefix_size) {
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//LOG(ERROR) << "NEED TO CHECK: " << checked_prefix_size << "->" << ready_prefix_size - checked_prefix_size;
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HashInfo search_info;
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search_info.offset = checked_prefix_size;
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auto it = hash_info_.upper_bound(search_info);
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if (it != hash_info_.begin()) {
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--it;
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}
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if (it != hash_info_.end() && it->offset <= checked_prefix_size &&
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it->offset + narrow_cast<int64>(it->size) > checked_prefix_size) {
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int64 begin_offset = it->offset;
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int64 end_offset = it->offset + narrow_cast<int64>(it->size);
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if (ready_prefix_size < end_offset) {
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if (!is_ready) {
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break;
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}
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end_offset = ready_prefix_size;
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}
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size_t size = narrow_cast<size_t>(end_offset - begin_offset);
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auto slice = BufferSlice(size);
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TRY_STATUS(acquire_fd());
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TRY_RESULT(read_size, fd_.pread(slice.as_slice(), begin_offset));
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if (size != read_size) {
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return Status::Error("Failed to read file to check hash");
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}
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string hash(32, ' ');
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sha256(slice.as_slice(), hash);
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if (hash != it->hash) {
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if (only_check_) {
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return Status::Error("FILE_DOWNLOAD_RESTART");
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}
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return Status::Error("Hash mismatch");
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}
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checked_prefix_size = end_offset;
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info.changed = true;
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continue;
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}
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if (!has_hash_query_) {
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has_hash_query_ = true;
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auto query =
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telegram_api::upload_getFileHashes(remote_.as_input_file_location(), narrow_cast<int32>(checked_prefix_size));
|
|
auto net_query = G()->net_query_creator().create(
|
|
create_storer(query), remote_.get_dc_id(),
|
|
is_small_ ? NetQuery::Type::DownloadSmall : NetQuery::Type::Download, NetQuery::AuthFlag::On);
|
|
info.queries.push_back(std::move(net_query));
|
|
break;
|
|
}
|
|
// Should fail?
|
|
break;
|
|
}
|
|
info.need_check = need_check_;
|
|
info.checked_prefix_size = checked_prefix_size;
|
|
return std::move(info);
|
|
}
|
|
void FileDownloader::add_hash_info(const std::vector<telegram_api::object_ptr<telegram_api::fileHash>> &hashes) {
|
|
for (auto &hash : hashes) {
|
|
//LOG(ERROR) << "ADD HASH " << hash->offset_ << "->" << hash->limit_;
|
|
HashInfo hash_info;
|
|
hash_info.size = hash->limit_;
|
|
hash_info.offset = hash->offset_;
|
|
hash_info.hash = hash->hash_.as_slice().str();
|
|
hash_info_.insert(std::move(hash_info));
|
|
}
|
|
}
|
|
|
|
void FileDownloader::keep_fd_flag(bool keep_fd) {
|
|
keep_fd_ = keep_fd;
|
|
try_release_fd();
|
|
}
|
|
|
|
void FileDownloader::try_release_fd() {
|
|
if (!keep_fd_ && !fd_.empty()) {
|
|
fd_.close();
|
|
}
|
|
}
|
|
|
|
Status FileDownloader::acquire_fd() {
|
|
if (fd_.empty()) {
|
|
if (path_.empty()) {
|
|
TRY_RESULT(file_path, open_temp_file(remote_.file_type_));
|
|
std::tie(fd_, path_) = std::move(file_path);
|
|
} else {
|
|
TRY_RESULT(fd, FileFd::open(path_, (only_check_ ? 0 : FileFd::Write) | FileFd::Read));
|
|
fd_ = std::move(fd);
|
|
}
|
|
}
|
|
return Status::OK();
|
|
}
|
|
|
|
} // namespace td
|