Collections are not going to be fully converted to the IMR just yet and still use the old serialisation format. This means that they still don't support fragmented values very well. This patch passes the information when an atomic_cell is created as a member of a collection so that later we can avoid fragmenting the value in such cases.
368 lines
15 KiB
C++
368 lines
15 KiB
C++
/*
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* Licensed to the Apache Software Foundation (ASF) under one
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* or more contributor license agreements. See the NOTICE file
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* distributed with this work for additional information
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* regarding copyright ownership. The ASF licenses this file
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* to you under the Apache License, Version 2.0 (the
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* "License"); you may not use this file except in compliance
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* with the License. You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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/*
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* Copyright (C) 2015 ScyllaDB
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*
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* Modified by 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 "maps.hh"
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#include "cql3/abstract_marker.hh"
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#include "cql3/term.hh"
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#include "operation.hh"
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#include "update_parameters.hh"
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#include "exceptions/exceptions.hh"
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#include "cql3/cql3_type.hh"
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#include "constants.hh"
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namespace cql3 {
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shared_ptr<column_specification>
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maps::key_spec_of(column_specification& column) {
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return ::make_shared<column_specification>(column.ks_name, column.cf_name,
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::make_shared<column_identifier>(sprint("key(%s)", *column.name), true),
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dynamic_pointer_cast<const map_type_impl>(column.type)->get_keys_type());
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}
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shared_ptr<column_specification>
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maps::value_spec_of(column_specification& column) {
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return ::make_shared<column_specification>(column.ks_name, column.cf_name,
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::make_shared<column_identifier>(sprint("value(%s)", *column.name), true),
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dynamic_pointer_cast<const map_type_impl>(column.type)->get_values_type());
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}
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::shared_ptr<term>
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maps::literal::prepare(database& db, const sstring& keyspace, ::shared_ptr<column_specification> receiver) {
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validate_assignable_to(db, keyspace, *receiver);
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auto key_spec = maps::key_spec_of(*receiver);
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auto value_spec = maps::value_spec_of(*receiver);
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std::unordered_map<shared_ptr<term>, shared_ptr<term>> values;
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values.reserve(entries.size());
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bool all_terminal = true;
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for (auto&& entry : entries) {
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auto k = entry.first->prepare(db, keyspace, key_spec);
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auto v = entry.second->prepare(db, keyspace, value_spec);
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if (k->contains_bind_marker() || v->contains_bind_marker()) {
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throw exceptions::invalid_request_exception(sprint("Invalid map literal for %s: bind variables are not supported inside collection literals", *receiver->name));
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}
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if (dynamic_pointer_cast<non_terminal>(k) || dynamic_pointer_cast<non_terminal>(v)) {
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all_terminal = false;
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}
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values.emplace(k, v);
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}
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delayed_value value(static_pointer_cast<const map_type_impl>(receiver->type)->get_keys_type()->as_less_comparator(), values);
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if (all_terminal) {
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return value.bind(query_options::DEFAULT);
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} else {
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return make_shared(std::move(value));
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}
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}
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void
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maps::literal::validate_assignable_to(database& db, const sstring& keyspace, column_specification& receiver) {
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if (!dynamic_pointer_cast<const map_type_impl>(receiver.type)) {
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throw exceptions::invalid_request_exception(sprint("Invalid map literal for %s of type %s", *receiver.name, *receiver.type->as_cql3_type()));
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}
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auto&& key_spec = maps::key_spec_of(receiver);
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auto&& value_spec = maps::value_spec_of(receiver);
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for (auto&& entry : entries) {
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if (!is_assignable(entry.first->test_assignment(db, keyspace, key_spec))) {
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throw exceptions::invalid_request_exception(sprint("Invalid map literal for %s: key %s is not of type %s", *receiver.name, *entry.first, *key_spec->type->as_cql3_type()));
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}
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if (!is_assignable(entry.second->test_assignment(db, keyspace, value_spec))) {
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throw exceptions::invalid_request_exception(sprint("Invalid map literal for %s: value %s is not of type %s", *receiver.name, *entry.second, *value_spec->type->as_cql3_type()));
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}
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}
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}
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assignment_testable::test_result
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maps::literal::test_assignment(database& db, const sstring& keyspace, ::shared_ptr<column_specification> receiver) {
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if (!dynamic_pointer_cast<const map_type_impl>(receiver->type)) {
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return assignment_testable::test_result::NOT_ASSIGNABLE;
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}
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// If there is no elements, we can't say it's an exact match (an empty map if fundamentally polymorphic).
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if (entries.empty()) {
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return assignment_testable::test_result::WEAKLY_ASSIGNABLE;
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}
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auto key_spec = maps::key_spec_of(*receiver);
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auto value_spec = maps::value_spec_of(*receiver);
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// It's an exact match if all are exact match, but is not assignable as soon as any is non assignable.
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auto res = assignment_testable::test_result::EXACT_MATCH;
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for (auto entry : entries) {
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auto t1 = entry.first->test_assignment(db, keyspace, key_spec);
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auto t2 = entry.second->test_assignment(db, keyspace, value_spec);
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if (t1 == assignment_testable::test_result::NOT_ASSIGNABLE || t2 == assignment_testable::test_result::NOT_ASSIGNABLE)
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return assignment_testable::test_result::NOT_ASSIGNABLE;
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if (t1 != assignment_testable::test_result::EXACT_MATCH || t2 != assignment_testable::test_result::EXACT_MATCH)
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res = assignment_testable::test_result::WEAKLY_ASSIGNABLE;
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}
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return res;
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}
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sstring
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maps::literal::to_string() const {
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sstring result = "{";
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for (size_t i = 0; i < entries.size(); i++) {
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if (i > 0) {
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result += ", ";
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}
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result += entries[i].first->to_string();
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result += ":";
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result += entries[i].second->to_string();
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}
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result += "}";
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return result;
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}
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maps::value
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maps::value::from_serialized(bytes_view value, map_type type, cql_serialization_format sf) {
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try {
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// Collections have this small hack that validate cannot be called on a serialized object,
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// but compose does the validation (so we're fine).
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// FIXME: deserialize_for_native_protocol?!
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auto m = value_cast<map_type_impl::native_type>(type->deserialize(value, sf));
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std::map<bytes, bytes, serialized_compare> map(type->get_keys_type()->as_less_comparator());
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for (auto&& e : m) {
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map.emplace(type->get_keys_type()->decompose(e.first),
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type->get_values_type()->decompose(e.second));
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}
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return { std::move(map) };
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} catch (marshal_exception& e) {
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throw exceptions::invalid_request_exception(e.what());
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}
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}
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cql3::raw_value
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maps::value::get(const query_options& options) {
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return cql3::raw_value::make_value(get_with_protocol_version(options.get_cql_serialization_format()));
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}
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bytes
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maps::value::get_with_protocol_version(cql_serialization_format sf) {
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//FIXME: share code with serialize_partially_deserialized_form
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size_t len = collection_value_len(sf) * map.size() * 2 + collection_size_len(sf);
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for (auto&& e : map) {
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len += e.first.size() + e.second.size();
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}
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bytes b(bytes::initialized_later(), len);
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bytes::iterator out = b.begin();
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write_collection_size(out, map.size(), sf);
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for (auto&& e : map) {
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write_collection_value(out, sf, e.first);
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write_collection_value(out, sf, e.second);
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}
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return b;
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}
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bool
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maps::value::equals(map_type mt, const value& v) {
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return std::equal(map.begin(), map.end(),
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v.map.begin(), v.map.end(),
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[mt] (auto&& e1, auto&& e2) {
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return mt->get_keys_type()->compare(e1.first, e2.first) == 0
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&& mt->get_values_type()->compare(e1.second, e2.second) == 0;
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});
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}
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sstring
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maps::value::to_string() const {
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// FIXME:
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abort();
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}
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bool
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maps::delayed_value::contains_bind_marker() const {
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// False since we don't support them in collection
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return false;
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}
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void
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maps::delayed_value::collect_marker_specification(shared_ptr<variable_specifications> bound_names) {
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}
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shared_ptr<terminal>
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maps::delayed_value::bind(const query_options& options) {
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std::map<bytes, bytes, serialized_compare> buffers(_comparator);
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for (auto&& entry : _elements) {
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auto&& key = entry.first;
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auto&& value = entry.second;
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// We don't support values > 64K because the serialization format encode the length as an unsigned short.
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auto key_bytes = key->bind_and_get(options);
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if (key_bytes.is_null()) {
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throw exceptions::invalid_request_exception("null is not supported inside collections");
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}
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if (key_bytes.is_unset_value()) {
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throw exceptions::invalid_request_exception("unset value is not supported inside collections");
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}
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if (key_bytes->size() > std::numeric_limits<uint16_t>::max()) {
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throw exceptions::invalid_request_exception(sprint("Map key is too long. Map keys are limited to %d bytes but %d bytes keys provided",
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std::numeric_limits<uint16_t>::max(),
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key_bytes->size()));
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}
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auto value_bytes = value->bind_and_get(options);
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if (value_bytes.is_null()) {
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throw exceptions::invalid_request_exception("null is not supported inside collections");\
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}
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if (value_bytes.is_unset_value()) {
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return constants::UNSET_VALUE;
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}
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buffers.emplace(std::move(to_bytes(*key_bytes)), std::move(to_bytes(*value_bytes)));
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}
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return ::make_shared<value>(std::move(buffers));
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}
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::shared_ptr<terminal>
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maps::marker::bind(const query_options& options) {
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auto val = options.get_value_at(_bind_index);
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if (val.is_null()) {
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return nullptr;
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}
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if (val.is_unset_value()) {
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return constants::UNSET_VALUE;
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}
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return ::make_shared<maps::value>(maps::value::from_serialized(*val, static_pointer_cast<const map_type_impl>(_receiver->type),
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options.get_cql_serialization_format()));
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}
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void
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maps::setter::execute(mutation& m, const clustering_key_prefix& row_key, const update_parameters& params) {
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auto value = _t->bind(params._options);
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execute(m, row_key, params, column, std::move(value));
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}
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void
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maps::setter::execute(mutation& m, const clustering_key_prefix& row_key, const update_parameters& params, const column_definition& column, ::shared_ptr<terminal> value) {
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if (value == constants::UNSET_VALUE) {
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return;
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}
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if (column.type->is_multi_cell()) {
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// delete + put
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collection_type_impl::mutation mut;
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mut.tomb = params.make_tombstone_just_before();
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auto ctype = static_pointer_cast<const map_type_impl>(column.type);
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auto col_mut = ctype->serialize_mutation_form(std::move(mut));
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m.set_cell(row_key, column, std::move(col_mut));
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}
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do_put(m, row_key, params, value, column);
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}
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void
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maps::setter_by_key::collect_marker_specification(shared_ptr<variable_specifications> bound_names) {
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operation::collect_marker_specification(bound_names);
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_k->collect_marker_specification(bound_names);
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}
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void
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maps::setter_by_key::execute(mutation& m, const clustering_key_prefix& prefix, const update_parameters& params) {
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using exceptions::invalid_request_exception;
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assert(column.type->is_multi_cell()); // "Attempted to set a value for a single key on a frozen map"m
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auto key = _k->bind_and_get(params._options);
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auto value = _t->bind_and_get(params._options);
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if (!key) {
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throw invalid_request_exception("Invalid null map key");
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}
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auto ctype = static_pointer_cast<const map_type_impl>(column.type);
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auto avalue = value ? params.make_cell(*ctype->get_values_type(), *value, atomic_cell::collection_member::yes) : params.make_dead_cell();
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map_type_impl::mutation update;
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update.cells.emplace_back(std::move(to_bytes(*key)), std::move(avalue));
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// should have been verified as map earlier?
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auto col_mut = ctype->serialize_mutation_form(std::move(update));
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m.set_cell(prefix, column, std::move(col_mut));
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}
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void
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maps::putter::execute(mutation& m, const clustering_key_prefix& prefix, const update_parameters& params) {
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assert(column.type->is_multi_cell()); // "Attempted to add items to a frozen map";
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auto value = _t->bind(params._options);
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if (value != constants::UNSET_VALUE) {
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do_put(m, prefix, params, value, column);
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}
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}
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void
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maps::do_put(mutation& m, const clustering_key_prefix& prefix, const update_parameters& params,
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shared_ptr<term> value, const column_definition& column) {
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auto map_value = dynamic_pointer_cast<maps::value>(value);
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if (column.type->is_multi_cell()) {
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collection_type_impl::mutation mut;
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if (!value) {
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return;
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}
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auto ctype = static_pointer_cast<const map_type_impl>(column.type);
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for (auto&& e : map_value->map) {
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mut.cells.emplace_back(e.first, params.make_cell(*ctype->get_values_type(), e.second, atomic_cell::collection_member::yes));
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}
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auto col_mut = ctype->serialize_mutation_form(std::move(mut));
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m.set_cell(prefix, column, std::move(col_mut));
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} else {
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// for frozen maps, we're overwriting the whole cell
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if (!value) {
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m.set_cell(prefix, column, params.make_dead_cell());
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} else {
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auto v = map_type_impl::serialize_partially_deserialized_form({map_value->map.begin(), map_value->map.end()},
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cql_serialization_format::internal());
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m.set_cell(prefix, column, params.make_cell(*column.type, std::move(v)));
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}
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}
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}
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void
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maps::discarder_by_key::execute(mutation& m, const clustering_key_prefix& prefix, const update_parameters& params) {
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assert(column.type->is_multi_cell()); // "Attempted to delete a single key in a frozen map";
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auto&& key = _t->bind(params._options);
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if (!key) {
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throw exceptions::invalid_request_exception("Invalid null map key");
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}
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if (key == constants::UNSET_VALUE) {
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throw exceptions::invalid_request_exception("Invalid unset map key");
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}
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collection_type_impl::mutation mut;
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mut.cells.emplace_back(*key->get(params._options), params.make_dead_cell());
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auto mtype = static_cast<const map_type_impl*>(column.type.get());
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m.set_cell(prefix, column, mtype->serialize_mutation_form(mut));
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}
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}
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