You can now do: fail(unimplemented::cause::PAGING); and: warn(unimplemented::cause::PAGING);
150 lines
6.4 KiB
C++
150 lines
6.4 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 2015 Cloudius Systems
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*
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* Modified by Cloudius Systems
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*/
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#include "cql3/single_column_relation.hh"
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#include "cql3/restrictions/single_column_restriction.hh"
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#include "unimplemented.hh"
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using namespace cql3::restrictions;
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namespace cql3 {
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::shared_ptr<term>
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single_column_relation::to_term(std::vector<::shared_ptr<column_specification>> receivers,
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::shared_ptr<term::raw> raw,
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const sstring& keyspace,
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::shared_ptr<variable_specifications> bound_names)
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{
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// TODO: optimize vector away, accept single column_specification
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assert(receivers.size() == 1);
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auto term = raw->prepare(keyspace, receivers[0]);
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term->collect_marker_specification(bound_names);
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return term;
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}
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::shared_ptr<restrictions::restriction>
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single_column_relation::new_EQ_restriction(schema_ptr schema, ::shared_ptr<variable_specifications> bound_names)
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{
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column_definition& column_def = to_column_definition(schema, _entity);
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if (!_map_key) {
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auto term = to_term(to_receivers(schema, column_def), _value, schema->ks_name, bound_names);
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return ::make_shared<single_column_restriction::EQ>(column_def, std::move(term));
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}
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fail(unimplemented::cause::COLLECTIONS);
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#if 0
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List<? extends ColumnSpecification> receivers = toReceivers(schema, columnDef);
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Term entryKey = toTerm(Collections.singletonList(receivers.get(0)), map_key, schema.ksName, bound_names);
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Term entryValue = toTerm(Collections.singletonList(receivers.get(1)), value, schema.ksName, bound_names);
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return new SingleColumnRestriction.Contains(columnDef, entryKey, entryValue);
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#endif
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}
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std::vector<::shared_ptr<column_specification>>
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single_column_relation::to_receivers(schema_ptr schema, column_definition& column_def)
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{
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auto receiver = column_def.column_specification;
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if (column_def.is_compact_value()) {
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throw exceptions::invalid_request_exception(sprint(
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"Predicates on the non-primary-key column (%s) of a COMPACT table are not yet supported", column_def.name_as_text()));
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}
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if (is_IN()) {
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// For partition keys we only support IN for the last name so far
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if (column_def.is_partition_key() && !schema->is_last_partition_key(column_def)) {
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throw exceptions::invalid_request_exception(sprint(
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"Partition KEY part %s cannot be restricted by IN relation (only the last part of the partition key can)",
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column_def.name_as_text()));
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}
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// We only allow IN on the row key and the clustering key so far, never on non-PK columns, and this even if
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// there's an index
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// Note: for backward compatibility reason, we conside a IN of 1 value the same as a EQ, so we let that
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// slide.
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if (!column_def.is_primary_key() && !can_have_only_one_value()) {
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throw exceptions::invalid_request_exception(sprint(
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"IN predicates on non-primary-key columns (%s) is not yet supported", column_def.name_as_text()));
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}
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} else if (is_slice()) {
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// Non EQ relation is not supported without token(), even if we have a 2ndary index (since even those
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// are ordered by partitioner).
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// Note: In theory we could allow it for 2ndary index queries with ALLOW FILTERING, but that would
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// probably require some special casing
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// Note bis: This is also why we don't bother handling the 'tuple' notation of #4851 for keys. If we
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// lift the limitation for 2ndary
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// index with filtering, we'll need to handle it though.
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if (column_def.is_partition_key()) {
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throw exceptions::invalid_request_exception(
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"Only EQ and IN relation are supported on the partition key (unless you use the token() function)");
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}
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}
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if (is_contains_key()) {
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fail(unimplemented::cause::COLLECTIONS);
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#if 0
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if (!(receiver.type instanceof MapType)) {
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throw exceptions::invalid_request_exception(sprint("Cannot use CONTAINS KEY on non-map column %s", receiver.name_as_text()));
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}
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#endif
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}
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if (_map_key) {
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fail(unimplemented::cause::COLLECTIONS);
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#if 0
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checkFalse(receiver.type instanceof ListType, "Indexes on list entries (%s[index] = value) are not currently supported.", receiver.name);
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checkTrue(receiver.type instanceof MapType, "Column %s cannot be used as a map", receiver.name);
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checkTrue(receiver.type.isMultiCell(), "Map-entry equality predicates on frozen map column %s are not supported", receiver.name);
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checkTrue(isEQ(), "Only EQ relations are supported on map entries");
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#endif
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}
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if (receiver->type->is_collection()) {
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fail(unimplemented::cause::COLLECTIONS);
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#if 0
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// We don't support relations against entire collections (unless they're frozen), like "numbers = {1, 2, 3}"
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checkFalse(receiver.type.isMultiCell() && !isLegalRelationForNonFrozenCollection(),
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"Collection column '%s' (%s) cannot be restricted by a '%s' relation",
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receiver.name,
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receiver.type.asCQL3Type(),
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get_operator());
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if (isContainsKey() || isContains())
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{
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receiver = makeCollectionReceiver(receiver, isContainsKey());
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}
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else if (receiver.type.isMultiCell() && map_key != null && isEQ())
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{
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List<ColumnSpecification> receivers = new ArrayList<>(2);
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receivers.add(makeCollectionReceiver(receiver, true));
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receivers.add(makeCollectionReceiver(receiver, false));
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return receivers;
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}
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#endif
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}
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return {std::move(receiver)};
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}
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}
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