/* This file is part of Ingen. * Copyright (C) 2007 Dave Robillard * * Ingen is free software; you can redistribute it and/or modify it under the * terms of the GNU General Public License as published by the Free Software * Foundation; either version 2 of the License, or (at your option) any later * version. * * Ingen is distributed in the hope that it will be useful, but WITHOUT ANY * WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS * FOR A PARTICULAR PURPOSE. See the GNU General Public License for details. * * You should have received a copy of the GNU General Public License along * with this program; if not, write to the Free Software Foundation, Inc., * 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include // atof #include #include #include #include #include #include #include // pair, make_pair #include #include #include #include #include #include #include #include #include "interface/EngineInterface.hpp" #include "interface/Plugin.hpp" #include "interface/Patch.hpp" #include "interface/Node.hpp" #include "interface/Port.hpp" #include "interface/Connection.hpp" #include "Serialiser.hpp" using namespace std; using namespace Raul; using namespace Raul::RDF; using namespace Ingen; using namespace Ingen::Shared; namespace Ingen { namespace Serialisation { Serialiser::Serialiser(Raul::RDF::World& world) : _world(world) { } void Serialiser::to_file(SharedPtr object, const string& filename) { _root_object = object; start_to_filename(filename); serialise(object); finish(); } string Serialiser::to_string(SharedPtr object) { _root_object = object; start_to_string(); serialise(object); return finish(); } /** Begin a serialization to a file. * * This must be called before any serializing methods. */ void Serialiser::start_to_filename(const string& filename) { setlocale(LC_NUMERIC, "C"); _base_uri = "file://" + filename; _model = new RDF::Model(_world); _mode = TO_FILE; } /** Begin a serialization to a string. * * This must be called before any serializing methods. * * The results of the serialization will be returned by the finish() method after * the desired objects have been serialised. */ void Serialiser::start_to_string() { setlocale(LC_NUMERIC, "C"); _base_uri = ""; _model = new RDF::Model(_world); _mode = TO_STRING; } /** Finish a serialization. * * If this was a serialization to a string, the serialization output * will be returned, otherwise the empty string is returned. */ string Serialiser::finish() { string ret = ""; if (_mode == TO_FILE) _model->serialise_to_file(_base_uri); else ret = _model->serialise_to_string(); _base_uri = ""; _node_map.clear(); return ret; } /** Convert a path to an RDF blank node ID for serializing. */ RDF::Node Serialiser::path_to_node_id(const Path& path) { assert(_model); /*string ret = path.substr(1); for (size_t i=0; i < ret.length(); ++i) { if (ret[i] == '/') ret[i] = '_'; } return RDF::Node(Node::BLANK, ret); */ NodeMap::iterator i = _node_map.find(path); if (i != _node_map.end()) { assert(i->second); assert(i->second.get_node()); return i->second; } else { RDF::Node id = _world.blank_id(path.name()); assert(id); _node_map[path] = id; return id; } } #if 0 /** Searches for the filename passed in the path, returning the full * path of the file, or the empty string if not found. * * This function tries to be as friendly a black box as possible - if the path * passed is an absolute path and the file is found there, it will return * that path, etc. * * additional_path is a list (colon delimeted as usual) of additional * directories to look in. ie the directory the parent patch resides in would * be a good idea to pass as additional_path, in the case of a subpatch. */ string Serialiser::find_file(const string& filename, const string& additional_path) { string search_path = additional_path + ":" + _patch_search_path; // Try to open the raw filename first std::ifstream is(filename.c_str(), std::ios::in); if (is.good()) { is.close(); return filename; } string directory; string full_patch_path = ""; while (search_path != "") { directory = search_path.substr(0, search_path.find(':')); if (search_path.find(':') != string::npos) search_path = search_path.substr(search_path.find(':')+1); else search_path = ""; full_patch_path = directory +"/"+ filename; std::ifstream is; is.open(full_patch_path.c_str(), std::ios::in); if (is.good()) { is.close(); return full_patch_path; } else { cerr << "[Serialiser] Could not find patch file " << full_patch_path << endl; } } return ""; } #endif void Serialiser::serialise(SharedPtr object) throw (std::logic_error) { if (!_model) throw std::logic_error("serialise called without serialization in progress"); SharedPtr patch = PtrCast(object); if (patch) { serialise_patch(patch); return; } SharedPtr node = PtrCast(object); if (node) { serialise_node(node, path_to_node_id(node->path())); return; } SharedPtr port = PtrCast(object); if (port) { serialise_port(port.get(), path_to_node_id(port->path())); return; } cerr << "[Serialiser] WARNING: Unsupported object type, " << object->path() << " not serialised." << endl; } RDF::Node Serialiser::patch_path_to_rdf_id(const Path& path) { if (path == _root_object->path()) { return RDF::Node(_model->world(), RDF::Node::RESOURCE, _base_uri); } else { assert(path.length() > _root_object->path().length()); return RDF::Node(_model->world(), RDF::Node::RESOURCE, _base_uri + string("#") + path.substr(_root_object->path().length())); } } void Serialiser::serialise_patch(SharedPtr patch) { assert(_model); const RDF::Node patch_id = patch_path_to_rdf_id(patch->path()); _model->add_statement( patch_id, "rdf:type", RDF::Node(_model->world(), RDF::Node::RESOURCE, "http://drobilla.net/ns/ingen#Patch")); if (patch->path().name().length() > 0) { _model->add_statement( patch_id, "ingen:name", Atom(patch->path().name().c_str())); } _model->add_statement( patch_id, "ingen:polyphony", Atom((int)patch->internal_polyphony())); _model->add_statement( patch_id, "ingen:enabled", Atom(patch->enabled())); serialise_variables(patch_id, patch->variables()); for (GraphObject::const_iterator n = patch->children_begin(); n != patch->children_end(); ++n) { if (n->second->graph_parent() != patch.get()) continue; SharedPtr patch = PtrCast(n->second); SharedPtr node = PtrCast(n->second); if (patch) { _model->add_statement(patch_id, "ingen:node", patch_path_to_rdf_id(patch->path())); serialise_patch(patch); } else if (node) { const RDF::Node node_id = path_to_node_id(n->second->path()); _model->add_statement(patch_id, "ingen:node", node_id); serialise_node(node, node_id); } } for (uint32_t i=0; i < patch->num_ports(); ++i) { Port* p = patch->port(i); const RDF::Node port_id = path_to_node_id(p->path()); _model->add_statement(patch_id, "ingen:port", port_id); serialise_port(p, port_id); } for (Shared::Patch::Connections::const_iterator c = patch->connections().begin(); c != patch->connections().end(); ++c) { serialise_connection(*c); } } void Serialiser::serialise_plugin(SharedPtr plugin) { assert(_model); const RDF::Node plugin_id = RDF::Node(_model->world(), RDF::Node::RESOURCE, plugin->uri()); _model->add_statement( plugin_id, "rdf:type", RDF::Node(_model->world(), RDF::Node::RESOURCE, plugin->type_uri())); } void Serialiser::serialise_node(SharedPtr node, const RDF::Node& node_id) { const RDF::Node plugin_id = RDF::Node(_model->world(), RDF::Node::RESOURCE, node->plugin()->uri()); _model->add_statement( node_id, "rdf:type", RDF::Node(_model->world(), RDF::Node::RESOURCE, "ingen:Node")); _model->add_statement( node_id, "ingen:name", node->path().name()); _model->add_statement( node_id, "ingen:plugin", plugin_id); _model->add_statement( node_id, "ingen:polyphonic", node->polyphonic()); //serialise_plugin(node->plugin()); for (uint32_t i=0; i < node->num_ports(); ++i) { Port* p = node->port(i); assert(p); const RDF::Node port_id = path_to_node_id(p->path()); serialise_port(p, port_id); _model->add_statement(node_id, "ingen:port", port_id); } serialise_variables(node_id, node->variables()); } /** Writes a port subject with various information only if there are some * predicate/object pairs to go with it (eg if the port has variable, or a value, or..). * Audio output ports with no variable will not be written, for example. */ void Serialiser::serialise_port(const Port* port, const RDF::Node& port_id) { if (port->is_input()) _model->add_statement(port_id, "rdf:type", RDF::Node(_model->world(), RDF::Node::RESOURCE, "ingen:InputPort")); else _model->add_statement(port_id, "rdf:type", RDF::Node(_model->world(), RDF::Node::RESOURCE, "ingen:OutputPort")); _model->add_statement(port_id, "ingen:name", Atom(port->path().name().c_str())); _model->add_statement(port_id, "rdf:type", RDF::Node(_model->world(), RDF::Node::RESOURCE, port->type().uri())); if (port->type() == DataType::CONTROL && port->is_input()) _model->add_statement(port_id, "ingen:value", port->value()); serialise_variables(port_id, port->variables()); } void Serialiser::serialise_connection(SharedPtr connection) throw (std::logic_error) { if (!_model) throw std::logic_error("serialise_connection called without serialization in progress"); const RDF::Node src_node = path_to_node_id(connection->src_port_path()); const RDF::Node dst_node = path_to_node_id(connection->dst_port_path()); _model->add_statement(dst_node, "ingen:connectedTo", src_node); } void Serialiser::serialise_variables(RDF::Node subject, const GraphObject::Variables& variables) { for (GraphObject::Variables::const_iterator v = variables.begin(); v != variables.end(); ++v) { if (v->first.find(":") != string::npos) { const RDF::Node var_id = _world.blank_id(); const RDF::Node key(_model->world(), RDF::Node::RESOURCE, v->first); _model->add_statement(subject, "ingen:variable", var_id); _model->add_statement(var_id, "ingen:key", key); _model->add_statement(var_id, "ingen:value", v->second); } else { cerr << "Warning: not serialising variable with key '" << v->first << "'" << endl; } } } } // namespace Serialisation } // namespace Ingen