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			149 lines
		
	
	
	
		
			5.7 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			149 lines
		
	
	
	
		
			5.7 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 2017-2020 Telegram Systems LLP
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*/
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#include "overlay-broadcast.hpp"
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#include "overlay.hpp"
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#include "keys/encryptor.h"
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namespace ton {
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namespace overlay {
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td::Status BroadcastSimple::check_time() {
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  return overlay_->check_date(date_);
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}
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td::Status BroadcastSimple::check_duplicate() {
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  return overlay_->check_delivered(broadcast_hash_);
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}
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td::Status BroadcastSimple::check_source() {
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  return overlay_->check_source_eligible(source_, cert_.get(), data_size());
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}
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td::BufferSlice BroadcastSimple::to_sign() {
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  return create_serialize_tl_object<ton_api::overlay_broadcast_toSign>(broadcast_hash_, date_);
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}
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td::Status BroadcastSimple::check_signature() {
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  TRY_RESULT(encryptor, overlay_->get_encryptor(source_));
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  return encryptor->check_signature(to_sign().as_slice(), signature_.as_slice());
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}
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td::Status BroadcastSimple::run_checks() {
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  TRY_STATUS(check_time());
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  TRY_STATUS(check_duplicate());
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  TRY_STATUS(check_source());
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  TRY_STATUS(check_signature());
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  return td::Status::OK();
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}
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td::Status BroadcastSimple::distribute() {
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  auto B = serialize();
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  auto nodes = overlay_->get_neighbours(3);
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  auto manager = overlay_->overlay_manager();
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  for (auto &n : nodes) {
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    td::actor::send_closure(manager, &OverlayManager::send_message, n, overlay_->local_id(), overlay_->overlay_id(),
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                            B.clone());
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  }
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  return td::Status::OK();
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}
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tl_object_ptr<ton_api::overlay_broadcast> BroadcastSimple::tl() const {
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  return create_tl_object<ton_api::overlay_broadcast>(source_.tl(), cert_ ? cert_->tl() : Certificate::empty_tl(),
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                                                      flags_, data_.clone(), date_, signature_.clone());
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}
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td::BufferSlice BroadcastSimple::serialize() {
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  return serialize_tl_object(tl(), true);
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}
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td::Status BroadcastSimple::create(OverlayImpl *overlay, tl_object_ptr<ton_api::overlay_broadcast> broadcast) {
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  auto src = PublicKey{broadcast->src_};
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  auto data_hash = sha256_bits256(broadcast->data_.as_slice());
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  auto broadcast_hash = compute_broadcast_id(src, data_hash, broadcast->flags_);
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  TRY_STATUS(overlay->check_date(broadcast->date_));
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  TRY_STATUS(overlay->check_delivered(broadcast_hash));
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  TRY_RESULT(cert, Certificate::create(std::move(broadcast->certificate_)));
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  auto B = std::make_unique<BroadcastSimple>(broadcast_hash, src, std::move(cert), broadcast->flags_,
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                                             std::move(broadcast->data_), broadcast->date_,
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                                             std::move(broadcast->signature_), overlay);
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  TRY_STATUS(B->run());
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  overlay->register_simple_broadcast(std::move(B));
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  return td::Status::OK();
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}
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td::Status BroadcastSimple::create_new(td::actor::ActorId<OverlayImpl> overlay,
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                                       td::actor::ActorId<keyring::Keyring> keyring, PublicKeyHash local_id,
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                                       td::BufferSlice data, td::uint32 flags) {
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  auto data_hash = sha256_bits256(data.as_slice());
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  auto broadcast_hash = compute_broadcast_id(local_id, data_hash, flags);
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  auto date = static_cast<td::uint32>(td::Clocks::system());
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  auto B = std::make_unique<BroadcastSimple>(broadcast_hash, PublicKey{}, nullptr, flags, std::move(data), date,
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                                             td::BufferSlice{}, nullptr);
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  auto to_sign = B->to_sign();
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  auto P = td::PromiseCreator::lambda(
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      [id = overlay, B = std::move(B)](td::Result<std::pair<td::BufferSlice, PublicKey>> R) mutable {
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        if (R.is_error()) {
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          td::actor::send_closure(id, &OverlayImpl::failed_to_create_simple_broadcast, R.move_as_error());
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          return;
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        }
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        auto V = R.move_as_ok();
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        auto pub_id = V.second;
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        B->update_source(pub_id);
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        B->update_signature(std::move(V.first));
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        td::actor::send_closure(id, &OverlayImpl::created_simple_broadcast, std::move(B));
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      });
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  td::actor::send_closure(keyring, &keyring::Keyring::sign_add_get_public_key, local_id, std::move(to_sign),
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                          std::move(P));
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  return td::Status::OK();
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}
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Overlay::BroadcastHash BroadcastSimple::compute_broadcast_id(PublicKeyHash source, Overlay::BroadcastDataHash data_hash,
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                                                             td::uint32 flags) {
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  auto obj = create_tl_object<ton_api::overlay_broadcast_id>(
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      (flags & Overlays::BroadcastFlagAnySender()) ? PublicKeyHash::zero().tl() : source.tl(), data_hash, flags);
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  return get_tl_object_sha_bits256(obj);
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}
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Overlay::BroadcastHash BroadcastSimple::compute_broadcast_id(PublicKey source, Overlay::BroadcastDataHash data_hash,
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                                                             td::uint32 flags) {
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  return compute_broadcast_id(source.compute_short_id(), data_hash, flags);
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}
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void BroadcastSimple::update_overlay(OverlayImpl *overlay) {
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  if (overlay_) {
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    return;
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  }
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  overlay_ = overlay;
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  cert_ = overlay->get_certificate(source_.compute_short_id());
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}
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void BroadcastSimple::deliver() {
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  overlay_->deliver_broadcast(source_.compute_short_id(), data_.clone());
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}
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}  // namespace overlay
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}  // namespace ton
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