With this it is possible to create user defined functions and aggregates and they are saved to disk and the schema change is propagated. It is just not possible to call them yet. Signed-off-by: Rafael Ávila de Espíndola <espindola@scylladb.com>
132 lines
5.4 KiB
C++
132 lines
5.4 KiB
C++
/*
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* Copyright (C) 2019 ScyllaDB
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*/
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/*
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* This file is part of Scylla.
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*
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* Scylla is free software: you can redistribute it and/or modify
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* it under the terms of the GNU Affero General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* Scylla 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 General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with Scylla. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "cql3/statements/function_statement.hh"
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#include "cql3/functions/functions.hh"
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#include "db/config.hh"
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#include "database.hh"
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#include "service/storage_service.hh"
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namespace cql3 {
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namespace statements {
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future<> function_statement::check_access(const service::client_state& state) { return make_ready_future<>(); }
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function_statement::function_statement(
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functions::function_name name, std::vector<shared_ptr<cql3_type::raw>> raw_arg_types)
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: _name(std::move(name)), _raw_arg_types(std::move(raw_arg_types)) {}
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shared_ptr<cql_transport::event::schema_change> function_statement::create_schema_change(
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const functions::function& func, bool created) {
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using namespace cql_transport;
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std::vector<sstring> options{func.name().name};
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for (const auto& type : func.arg_types()) {
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options.push_back(type->as_cql3_type().to_string());
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}
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auto change = created ? event::schema_change::change_type::CREATED : event::schema_change::change_type::DROPPED;
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auto type = dynamic_cast<const functions::user_function*>(&func) ? event::schema_change::target_type::FUNCTION
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: event::schema_change::target_type::AGGREGATE;
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return ::make_shared<event::schema_change>(change, type, func.name().keyspace, std::move(options));
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}
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data_type function_statement::prepare_type(service::storage_proxy& proxy, cql3_type::raw& t) {
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if (t.is_user_type() && t.is_frozen()) {
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throw exceptions::invalid_request_exception("User defined argument and return types should not be frozen");
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}
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auto&& db = proxy.get_db().local();
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// At the CQL level the argument and return types should not have
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// the frozen keyword.
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// We and cassandra 3 support only frozen UDT arguments and
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// returns, so freeze it here.
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// It looks like cassandra 4 has updated the type checking to
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// allow both frozen and non frozen arguments to a UDF (which is
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// still declared without the frozen keyword).
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auto prepared = t.prepare(db, _name.keyspace).get_type();
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if (t.is_user_type()) {
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return prepared->freeze();
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}
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return prepared;
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}
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void function_statement::create_arg_types(service::storage_proxy& proxy) {
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if (!service::get_local_storage_service().cluster_supports_user_defined_functions()) {
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throw exceptions::invalid_request_exception("User defined functions are disabled. Set enable_user_defined_functions to enable them");
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}
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if (_arg_types.empty()) {
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for (const auto& arg_type : _raw_arg_types) {
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_arg_types.push_back(prepare_type(proxy, *arg_type));
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}
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}
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}
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void function_statement::prepare_keyspace(const service::client_state& state) {
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if (!_name.has_keyspace()) {
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_name.keyspace = state.get_keyspace();
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}
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}
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create_function_statement_base::create_function_statement_base(functions::function_name name,
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std::vector<shared_ptr<cql3_type::raw>> raw_arg_types, bool or_replace, bool if_not_exists)
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: function_statement(std::move(name), std::move(raw_arg_types)), _or_replace(or_replace), _if_not_exists(if_not_exists) {}
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void create_function_statement_base::validate(service::storage_proxy& proxy, const service::client_state& state) {
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create_arg_types(proxy);
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auto old = functions::functions::find(_name, _arg_types);
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if (!old || _or_replace) {
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create(proxy, old.get());
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return;
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}
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if (!_if_not_exists) {
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throw exceptions::invalid_request_exception(format("The function '{}' already exists", old));
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}
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}
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drop_function_statement_base::drop_function_statement_base(functions::function_name name,
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std::vector<shared_ptr<cql3_type::raw>> arg_types, bool args_present, bool if_exists)
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: function_statement(std::move(name), std::move(arg_types)), _args_present(args_present), _if_exists(if_exists) {}
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void drop_function_statement_base::validate(service::storage_proxy& proxy, const service::client_state& state) {
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create_arg_types(proxy);
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if (_args_present) {
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_func = functions::functions::find(_name, _arg_types);
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if (!_func && !_if_exists) {
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throw exceptions::invalid_request_exception(format("User function {}({}) doesn't exist", _name, _arg_types));
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}
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} else {
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auto funcs = functions::functions::find(_name);
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if (funcs.empty()) {
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if (!_if_exists) {
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throw exceptions::invalid_request_exception(format("No function named {} found", _name));
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}
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return;
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}
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auto b = funcs.begin();
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auto i = b;
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if (++i != funcs.end()) {
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throw exceptions::invalid_request_exception(format("There are multiple functions named {}", _name));
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}
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_func = b->second;
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}
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}
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}
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}
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