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90d5d26026
Cleaning up remote NodePath cache is not trivial since the visibility API allows for certain nodes to be despawned (and re-spawned) on some peers while being retained in the authority. This means that from the server point of view, the node has not changed, and the path simplification protocol won't be run again after respawning. While we can track this information for synchronizers via the replication API, we can't easily track this information for potential child nodes that use RPCs (I'm convinced it is doable, but we need to track the whole dependency tree which would require some more complex refactoring). This commit partially reverts some of the cache cleanup logic to always retain remote IDs, and adds a NodePath lookup fallback when the ObjectID is invalid.
308 lines
11 KiB
C++
308 lines
11 KiB
C++
/**************************************************************************/
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/* scene_cache_interface.cpp */
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/**************************************************************************/
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/* This file is part of: */
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/* GODOT ENGINE */
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/* https://godotengine.org */
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/**************************************************************************/
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/* Copyright (c) 2014-present Godot Engine contributors (see AUTHORS.md). */
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/* Copyright (c) 2007-2014 Juan Linietsky, Ariel Manzur. */
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/* */
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/* Permission is hereby granted, free of charge, to any person obtaining */
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/* a copy of this software and associated documentation files (the */
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/* "Software"), to deal in the Software without restriction, including */
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/* without limitation the rights to use, copy, modify, merge, publish, */
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/* distribute, sublicense, and/or sell copies of the Software, and to */
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/* permit persons to whom the Software is furnished to do so, subject to */
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/* the following conditions: */
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/* */
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/* The above copyright notice and this permission notice shall be */
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/* included in all copies or substantial portions of the Software. */
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/* */
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/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
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/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
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/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. */
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/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
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/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
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/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
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/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
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/**************************************************************************/
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#include "scene_cache_interface.h"
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#include "scene_multiplayer.h"
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#include "core/io/marshalls.h"
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#include "scene/main/node.h"
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#include "scene/main/window.h"
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SceneCacheInterface::NodeCache &SceneCacheInterface::_track(Node *p_node) {
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const ObjectID oid = p_node->get_instance_id();
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NodeCache *nc = nodes_cache.getptr(oid);
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if (!nc) {
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nodes_cache[oid] = NodeCache();
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p_node->connect(SceneStringName(tree_exited), callable_mp(this, &SceneCacheInterface::_remove_node_cache).bind(oid), Object::CONNECT_ONE_SHOT);
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}
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return nodes_cache[oid];
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}
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void SceneCacheInterface::_remove_node_cache(ObjectID p_oid) {
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NodeCache *nc = nodes_cache.getptr(p_oid);
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if (!nc) {
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return;
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}
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if (nc->cache_id) {
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assigned_ids.erase(nc->cache_id);
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}
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#if 0
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// TODO: Find a way to cleanup recv_nodes without breaking visibility and RPCs interactions.
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for (KeyValue<int, int> &E : nc->recv_ids) {
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PeerInfo *pinfo = peers_info.getptr(E.key);
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ERR_CONTINUE(!pinfo);
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pinfo->recv_nodes.erase(E.value);
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}
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#endif
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for (KeyValue<int, bool> &E : nc->confirmed_peers) {
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PeerInfo *pinfo = peers_info.getptr(E.key);
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ERR_CONTINUE(!pinfo);
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pinfo->sent_nodes.erase(p_oid);
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}
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nodes_cache.erase(p_oid);
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}
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void SceneCacheInterface::on_peer_change(int p_id, bool p_connected) {
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if (p_connected) {
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peers_info.insert(p_id, PeerInfo());
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} else {
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PeerInfo *pinfo = peers_info.getptr(p_id);
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ERR_FAIL_NULL(pinfo); // Bug.
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for (KeyValue<int, RecvNode> E : pinfo->recv_nodes) {
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NodeCache *nc = nodes_cache.getptr(E.value.oid);
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if (!nc) {
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// Node might have already been deleted locally.
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continue;
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}
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nc->recv_ids.erase(p_id);
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}
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for (const ObjectID &oid : pinfo->sent_nodes) {
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NodeCache *nc = nodes_cache.getptr(oid);
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ERR_CONTINUE(!nc);
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nc->confirmed_peers.erase(p_id);
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}
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peers_info.erase(p_id);
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}
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}
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void SceneCacheInterface::process_simplify_path(int p_from, const uint8_t *p_packet, int p_packet_len) {
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ERR_FAIL_COND(!peers_info.has(p_from)); // Bug.
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ERR_FAIL_COND_MSG(p_packet_len < 38, "Invalid packet received. Size too small.");
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Node *root_node = SceneTree::get_singleton()->get_root()->get_node(multiplayer->get_root_path());
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ERR_FAIL_NULL(root_node);
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int ofs = 1;
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String methods_md5;
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methods_md5.parse_utf8((const char *)(p_packet + ofs), 32);
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ofs += 33;
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int id = decode_uint32(&p_packet[ofs]);
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ofs += 4;
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ERR_FAIL_COND_MSG(peers_info[p_from].recv_nodes.has(id), vformat("Duplicate remote cache ID %d for peer %d", id, p_from));
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String paths;
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paths.parse_utf8((const char *)(p_packet + ofs), p_packet_len - ofs);
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const NodePath path = paths;
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Node *node = root_node->get_node(path);
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ERR_FAIL_NULL(node);
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const bool valid_rpc_checksum = multiplayer->get_rpc_md5(node) == methods_md5;
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if (valid_rpc_checksum == false) {
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ERR_PRINT("The rpc node checksum failed. Make sure to have the same methods on both nodes. Node path: " + path);
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}
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peers_info[p_from].recv_nodes.insert(id, RecvNode(node->get_instance_id(), path));
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NodeCache &cache = _track(node);
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cache.recv_ids.insert(p_from, id);
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// Send ack.
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Vector<uint8_t> packet;
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packet.resize(1 + 1 + 4);
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packet.write[0] = SceneMultiplayer::NETWORK_COMMAND_CONFIRM_PATH;
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packet.write[1] = valid_rpc_checksum;
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encode_uint32(id, &packet.write[2]);
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Ref<MultiplayerPeer> multiplayer_peer = multiplayer->get_multiplayer_peer();
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ERR_FAIL_COND(multiplayer_peer.is_null());
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multiplayer_peer->set_transfer_channel(0);
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multiplayer_peer->set_transfer_mode(MultiplayerPeer::TRANSFER_MODE_RELIABLE);
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multiplayer->send_command(p_from, packet.ptr(), packet.size());
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}
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void SceneCacheInterface::process_confirm_path(int p_from, const uint8_t *p_packet, int p_packet_len) {
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ERR_FAIL_COND_MSG(p_packet_len != 6, "Invalid packet received. Size too small.");
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Node *root_node = SceneTree::get_singleton()->get_root()->get_node(multiplayer->get_root_path());
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ERR_FAIL_NULL(root_node);
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const bool valid_rpc_checksum = p_packet[1];
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int id = decode_uint32(&p_packet[2]);
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const ObjectID *oid = assigned_ids.getptr(id);
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if (oid == nullptr) {
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return; // May be trying to confirm a node that was removed.
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}
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if (valid_rpc_checksum == false) {
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const Node *node = Object::cast_to<Node>(ObjectDB::get_instance(*oid));
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ERR_FAIL_NULL(node); // Bug.
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ERR_PRINT("The rpc node checksum failed. Make sure to have the same methods on both nodes. Node path: " + node->get_path());
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}
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NodeCache *cache = nodes_cache.getptr(*oid);
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ERR_FAIL_NULL(cache); // Bug.
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bool *confirmed = cache->confirmed_peers.getptr(p_from);
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ERR_FAIL_NULL_MSG(confirmed, "Invalid packet received. Tries to confirm a node which was not requested.");
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*confirmed = true;
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}
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Error SceneCacheInterface::_send_confirm_path(Node *p_node, NodeCache &p_cache, const List<int> &p_peers) {
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// Encode function name.
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const CharString path = String(multiplayer->get_root_path().rel_path_to(p_node->get_path())).utf8();
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const int path_len = encode_cstring(path.get_data(), nullptr);
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// Extract MD5 from rpc methods list.
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const String methods_md5 = multiplayer->get_rpc_md5(p_node);
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const int methods_md5_len = 33; // 32 + 1 for the `0` that is added by the encoder.
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Vector<uint8_t> packet;
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packet.resize(1 + 4 + path_len + methods_md5_len);
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int ofs = 0;
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packet.write[ofs] = SceneMultiplayer::NETWORK_COMMAND_SIMPLIFY_PATH;
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ofs += 1;
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ofs += encode_cstring(methods_md5.utf8().get_data(), &packet.write[ofs]);
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ofs += encode_uint32(p_cache.cache_id, &packet.write[ofs]);
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ofs += encode_cstring(path.get_data(), &packet.write[ofs]);
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Ref<MultiplayerPeer> multiplayer_peer = multiplayer->get_multiplayer_peer();
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ERR_FAIL_COND_V(multiplayer_peer.is_null(), ERR_BUG);
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Error err = OK;
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for (int peer_id : p_peers) {
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multiplayer_peer->set_transfer_channel(0);
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multiplayer_peer->set_transfer_mode(MultiplayerPeer::TRANSFER_MODE_RELIABLE);
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err = multiplayer->send_command(peer_id, packet.ptr(), packet.size());
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ERR_FAIL_COND_V(err != OK, err);
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// Insert into confirmed, but as false since it was not confirmed.
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p_cache.confirmed_peers.insert(peer_id, false);
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ERR_CONTINUE(!peers_info.has(peer_id));
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peers_info[peer_id].sent_nodes.insert(p_node->get_instance_id());
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}
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return err;
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}
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bool SceneCacheInterface::is_cache_confirmed(Node *p_node, int p_peer) {
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ERR_FAIL_NULL_V(p_node, false);
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const ObjectID oid = p_node->get_instance_id();
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NodeCache *cache = nodes_cache.getptr(oid);
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bool *confirmed = cache ? cache->confirmed_peers.getptr(p_peer) : nullptr;
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return confirmed && *confirmed;
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}
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int SceneCacheInterface::make_object_cache(Object *p_obj) {
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Node *node = Object::cast_to<Node>(p_obj);
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ERR_FAIL_NULL_V(node, -1);
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NodeCache &cache = _track(node);
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if (cache.cache_id == 0) {
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cache.cache_id = last_send_cache_id++;
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assigned_ids[cache.cache_id] = p_obj->get_instance_id();
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}
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return cache.cache_id;
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}
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bool SceneCacheInterface::send_object_cache(Object *p_obj, int p_peer_id, int &r_id) {
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Node *node = Object::cast_to<Node>(p_obj);
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ERR_FAIL_NULL_V(node, false);
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// See if the path is cached.
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NodeCache &cache = _track(node);
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if (cache.cache_id == 0) {
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cache.cache_id = last_send_cache_id++;
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assigned_ids[cache.cache_id] = p_obj->get_instance_id();
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}
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r_id = cache.cache_id;
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bool has_all_peers = true;
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List<int> peers_to_add; // If one is missing, take note to add it.
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if (p_peer_id > 0) {
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// Fast single peer check.
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ERR_FAIL_COND_V_MSG(!peers_info.has(p_peer_id), false, "Peer doesn't exist: " + itos(p_peer_id));
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bool *confirmed = cache.confirmed_peers.getptr(p_peer_id);
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if (!confirmed) {
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peers_to_add.push_back(p_peer_id); // Need to also be notified.
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has_all_peers = false;
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} else if (!(*confirmed)) {
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has_all_peers = false;
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}
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} else {
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// Long and painful.
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for (KeyValue<int, PeerInfo> &E : peers_info) {
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if (p_peer_id < 0 && E.key == -p_peer_id) {
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continue; // Continue, excluded.
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}
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bool *confirmed = cache.confirmed_peers.getptr(E.key);
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if (!confirmed) {
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peers_to_add.push_back(E.key); // Need to also be notified.
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has_all_peers = false;
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} else if (!(*confirmed)) {
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has_all_peers = false;
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}
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}
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}
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if (peers_to_add.size()) {
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_send_confirm_path(node, cache, peers_to_add);
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}
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return has_all_peers;
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}
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Object *SceneCacheInterface::get_cached_object(int p_from, uint32_t p_cache_id) {
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PeerInfo *pinfo = peers_info.getptr(p_from);
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ERR_FAIL_NULL_V(pinfo, nullptr);
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RecvNode *recv_node = pinfo->recv_nodes.getptr(p_cache_id);
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ERR_FAIL_NULL_V_MSG(recv_node, nullptr, vformat("ID %d not found in cache of peer %d.", p_cache_id, p_from));
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Node *node = Object::cast_to<Node>(ObjectDB::get_instance(recv_node->oid));
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if (!node) {
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// Fallback to path lookup.
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Node *root_node = SceneTree::get_singleton()->get_root()->get_node(multiplayer->get_root_path());
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ERR_FAIL_NULL_V(root_node, nullptr);
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node = root_node->get_node(recv_node->path);
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if (node) {
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recv_node->oid = node->get_instance_id();
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}
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}
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ERR_FAIL_NULL_V_MSG(node, nullptr, vformat("Failed to get cached node from peer %d with cache ID %d.", p_from, p_cache_id));
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return node;
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}
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void SceneCacheInterface::clear() {
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for (KeyValue<ObjectID, NodeCache> &E : nodes_cache) {
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Object *obj = ObjectDB::get_instance(E.key);
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ERR_CONTINUE(!obj);
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obj->disconnect(SceneStringName(tree_exited), callable_mp(this, &SceneCacheInterface::_remove_node_cache));
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}
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peers_info.clear();
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nodes_cache.clear();
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assigned_ids.clear();
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last_send_cache_id = 1;
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}
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