mirror of
https://github.com/danog/ton.git
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184 lines
5.6 KiB
C++
184 lines
5.6 KiB
C++
/*
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This file is part of TON Blockchain Library.
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TON Blockchain Library is free software: you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published by
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the Free Software Foundation, either version 2 of the License, or
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(at your option) any later version.
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TON Blockchain Library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with TON Blockchain Library. If not, see <http://www.gnu.org/licenses/>.
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Copyright 2017-2019 Telegram Systems LLP
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*/
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#include "keyring.hpp"
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#include "common/errorcode.h"
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#include "common/io.hpp"
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#include "td/utils/port/path.h"
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#include "td/utils/filesystem.h"
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#include "td/utils/Random.h"
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namespace ton {
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namespace keyring {
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void KeyringImpl::start_up() {
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td::mkdir(db_root_).ensure();
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}
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td::Result<KeyringImpl::PrivateKeyDescr *> KeyringImpl::load_key(PublicKeyHash key_hash) {
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auto it = map_.find(key_hash);
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if (it != map_.end()) {
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return it->second.get();
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}
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auto name = db_root_ + "/" + key_hash.bits256_value().to_hex();
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auto R = td::read_file(td::CSlice{name});
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if (R.is_error()) {
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return R.move_as_error_prefix("key not in db: ");
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}
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auto data = R.move_as_ok();
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auto R2 = PrivateKey::import(td::SecureString(data));
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R2.ensure();
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auto key = R2.move_as_ok();
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auto pub = key.compute_public_key();
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auto short_id = pub.compute_short_id();
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CHECK(short_id == key_hash);
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auto D = key.create_decryptor_async();
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D.ensure();
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return map_.emplace(short_id, std::make_unique<PrivateKeyDescr>(D.move_as_ok(), pub, false)).first->second.get();
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}
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void KeyringImpl::add_key(PrivateKey key, bool is_temp, td::Promise<td::Unit> promise) {
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auto pub = key.compute_public_key();
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auto short_id = pub.compute_short_id();
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if (map_.count(short_id)) {
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LOG(WARNING) << "duplicate key " << short_id;
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promise.set_value(td::Unit());
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return;
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}
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auto D = key.create_decryptor_async();
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D.ensure();
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map_.emplace(short_id, std::make_unique<PrivateKeyDescr>(D.move_as_ok(), pub, is_temp));
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if (!is_temp && key.exportable()) {
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auto S = key.export_as_slice();
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auto name = db_root_ + "/" + short_id.bits256_value().to_hex();
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td::write_file(td::CSlice(name), S.as_slice()).ensure();
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}
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promise.set_value(td::Unit());
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}
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void KeyringImpl::check_key(PublicKeyHash key_hash, td::Promise<td::Unit> promise) {
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auto S = load_key(key_hash);
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if (S.is_error()) {
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promise.set_error(S.move_as_error());
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} else {
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promise.set_value(td::Unit());
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}
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}
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void KeyringImpl::add_key_short(PublicKeyHash key_hash, td::Promise<PublicKey> promise) {
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auto S = load_key(key_hash);
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if (S.is_error()) {
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promise.set_error(S.move_as_error());
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} else {
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promise.set_result(map_[key_hash]->public_key);
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}
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}
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void KeyringImpl::del_key(PublicKeyHash key_hash, td::Promise<td::Unit> promise) {
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map_.erase(key_hash);
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auto name = db_root_ + "/" + key_hash.bits256_value().to_hex();
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td::BufferSlice d{256};
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td::Random::secure_bytes(d.as_slice());
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td::write_file(name, d.as_slice()).ensure();
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td::unlink(name).ensure();
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promise.set_value(td::Unit());
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}
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void KeyringImpl::get_public_key(PublicKeyHash key_hash, td::Promise<PublicKey> promise) {
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auto S = load_key(key_hash);
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if (S.is_error()) {
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promise.set_error(S.move_as_error());
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} else {
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promise.set_result(map_[key_hash]->public_key);
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}
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}
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void KeyringImpl::sign_message(PublicKeyHash key_hash, td::BufferSlice data, td::Promise<td::BufferSlice> promise) {
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auto S = load_key(key_hash);
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if (S.is_error()) {
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promise.set_error(S.move_as_error());
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} else {
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td::actor::send_closure(S.move_as_ok()->decryptor, &DecryptorAsync::sign, std::move(data), std::move(promise));
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}
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}
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void KeyringImpl::sign_add_get_public_key(PublicKeyHash key_hash, td::BufferSlice data,
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td::Promise<std::pair<td::BufferSlice, PublicKey>> promise) {
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auto S = load_key(key_hash);
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if (S.is_error()) {
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promise.set_error(S.move_as_error());
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return;
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}
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auto D = S.move_as_ok();
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auto P = td::PromiseCreator::lambda(
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[promise = std::move(promise), id = D->public_key](td::Result<td::BufferSlice> R) mutable {
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if (R.is_error()) {
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promise.set_error(R.move_as_error());
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return;
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}
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promise.set_value(std::pair<td::BufferSlice, PublicKey>{R.move_as_ok(), id});
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});
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td::actor::send_closure(D->decryptor, &DecryptorAsync::sign, std::move(data), std::move(P));
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}
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void KeyringImpl::sign_messages(PublicKeyHash key_hash, std::vector<td::BufferSlice> data,
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td::Promise<std::vector<td::Result<td::BufferSlice>>> promise) {
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auto S = load_key(key_hash);
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if (S.is_error()) {
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promise.set_error(S.move_as_error());
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} else {
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td::actor::send_closure(S.move_as_ok()->decryptor, &DecryptorAsync::sign_batch, std::move(data),
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std::move(promise));
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}
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}
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void KeyringImpl::decrypt_message(PublicKeyHash key_hash, td::BufferSlice data, td::Promise<td::BufferSlice> promise) {
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auto S = load_key(key_hash);
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if (S.is_error()) {
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promise.set_error(S.move_as_error());
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} else {
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td::actor::send_closure(S.move_as_ok()->decryptor, &DecryptorAsync::decrypt, std::move(data), std::move(promise));
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}
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}
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td::actor::ActorOwn<Keyring> Keyring::create(std::string db_root) {
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return td::actor::create_actor<KeyringImpl>("keyring", db_root);
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}
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} // namespace keyring
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} // namespace ton
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