Files
scylladb/cql3/statements/modification_statement.hh
Vladimir Davydov 6c6689f779 cql: refactor statement accounting
Rather than passing a pointer to a cql_stats member corresponding to
the statement type, pass a reference to a cql_stats object and use
statement_type, which is already stored in modification_statement, for
determining which counter to increment. This will allow us to account
conditional statements, which will have a separate set of counters,
right in modification_statement::execute() - all we'll need to do is
add the new counters and bump them in case execute_with_condition is
called.

While we are at it, remove extra inclusions from statement_type.hh so as
not to introduce any extra dependencies for cql_stats.hh users.

Message-Id: <20191022092258.GC21588@esperanza>
2019-10-22 12:39:14 +03:00

266 lines
10 KiB
C++

/*
* Licensed to the Apache Software Foundation (ASF) under one
* or more contributor license agreements. See the NOTICE file
* distributed with this work for additional information
* regarding copyright ownership. The ASF licenses this file
* to you under the Apache License, Version 2.0 (the
* "License"); you may not use this file except in compliance
* with the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
/*
* Copyright (C) 2015 ScyllaDB
*
* Modified by ScyllaDB
*/
/*
* This file is part of Scylla.
*
* Scylla is free software: you can redistribute it and/or modify
* it under the terms of the GNU Affero General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* Scylla 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 more details.
*
* You should have received a copy of the GNU General Public License
* along with Scylla. If not, see <http://www.gnu.org/licenses/>.
*/
#pragma once
#include "cql3/restrictions/restriction.hh"
#include "cql3/statements/raw/cf_statement.hh"
#include "cql3/statements/bound.hh"
#include "cql3/column_identifier.hh"
#include "cql3/update_parameters.hh"
#include "cql3/column_condition.hh"
#include "cql3/cql_statement.hh"
#include "cql3/attributes.hh"
#include "cql3/operation.hh"
#include "cql3/relation.hh"
#include "cql3/restrictions/statement_restrictions.hh"
#include "cql3/single_column_relation.hh"
#include "cql3/statements/statement_type.hh"
#include <seastar/core/shared_ptr.hh>
#include <seastar/core/future-util.hh>
#include "unimplemented.hh"
#include "validation.hh"
#include "service/storage_proxy.hh"
#include <memory>
#include <optional>
namespace cql3 {
namespace statements {
namespace raw { class modification_statement; }
/*
* Abstract parent class of individual modifications, i.e. INSERT, UPDATE and DELETE.
*/
class modification_statement : public cql_statement_no_metadata {
private:
static thread_local const ::shared_ptr<column_identifier> CAS_RESULT_COLUMN;
public:
const statement_type type;
private:
const uint32_t _bound_terms;
// If we have operation on list entries, such as adding or
// removing an entry, the modification statement must prefetch
// the old values of the list to create an idempotent mutation.
// If the statement has conditions, conditional columns must
// also be prefetched, to evaluate conditions. If the
// statement has IF EXISTS/IF NOT EXISTS, we prefetch all
// columns, to match Cassandra behaviour.
// This bitset contains a mask of ordinal_id identifiers
// of the required columns.
column_mask _columns_to_read;
public:
const schema_ptr s;
const std::unique_ptr<attributes> attrs;
protected:
std::vector<::shared_ptr<operation>> _column_operations;
private:
// Separating normal and static conditions makes things somewhat easier
std::vector<::shared_ptr<column_condition>> _column_conditions;
std::vector<::shared_ptr<column_condition>> _static_conditions;
// True if has _if_exists or _if_not_exists or other conditions.
// Pre-computed during statement prepare.
bool _has_conditions = false;
// True if any of update operations requires a prefetch.
// Pre-computed during statement prepare.
bool _requires_read = false;
bool _if_not_exists = false;
bool _if_exists = false;
bool _sets_static_columns = false;
bool _sets_regular_columns = false;
bool _sets_a_collection = false;
std::optional<bool> _is_raw_counter_shard_write;
const std::function<const column_definition&(::shared_ptr<column_condition>)> get_column_for_condition =
[](::shared_ptr<column_condition> cond) -> const column_definition& {
return cond->column;
};
cql_stats& _stats;
protected:
::shared_ptr<restrictions::statement_restrictions> _restrictions;
public:
typedef std::optional<std::unordered_map<sstring, bytes_opt>> json_cache_opt;
modification_statement(statement_type type_, uint32_t bound_terms, schema_ptr schema_, std::unique_ptr<attributes> attrs_, cql_stats& stats);
virtual bool uses_function(const sstring& ks_name, const sstring& function_name) const override;
virtual bool require_full_clustering_key() const = 0;
virtual bool allow_clustering_key_slices() const = 0;
virtual void add_update_for_key(mutation& m, const query::clustering_range& range, const update_parameters& params, const json_cache_opt& json_cache) = 0;
virtual uint32_t get_bound_terms() override;
virtual const sstring& keyspace() const;
virtual const sstring& column_family() const;
virtual bool is_counter() const;
virtual bool is_view() const;
int64_t get_timestamp(int64_t now, const query_options& options) const;
bool is_timestamp_set() const;
gc_clock::duration get_time_to_live(const query_options& options) const;
virtual future<> check_access(const service::client_state& state) override;
void validate(service::storage_proxy&, const service::client_state& state) override;
virtual bool depends_on_keyspace(const sstring& ks_name) const override;
virtual bool depends_on_column_family(const sstring& cf_name) const override;
void add_operation(::shared_ptr<operation> op);
void inc_cql_stats() {
++_stats.statements[size_t(type)];
}
const ::shared_ptr<restrictions::statement_restrictions>& restrictions() const {
return _restrictions;
}
public:
void add_condition(::shared_ptr<column_condition> cond);
void set_if_not_exist_condition();
bool has_if_not_exist_condition() const;
void set_if_exist_condition();
bool has_if_exist_condition() const;
bool is_raw_counter_shard_write() const {
return _is_raw_counter_shard_write.value_or(false);
}
void process_where_clause(database& db, std::vector<relation_ptr> where_clause, ::shared_ptr<variable_specifications> names);
public:
virtual dht::partition_range_vector build_partition_keys(const query_options& options, const json_cache_opt& json_cache);
virtual query::clustering_row_ranges create_clustering_ranges(const query_options& options, const json_cache_opt& json_cache);
private:
bool applies_only_to_static_columns() const {
return _sets_static_columns && !_sets_regular_columns;
}
public:
// True if any of update operations of this statement requires
// a prefetch of the old cell.
bool requires_read() const { return _requires_read; }
// Columns used in this statement conditions or operations.
const column_mask& columns_to_read() const { return _columns_to_read; }
// Build a read_command instance to fetch the previous mutation from storage. The mutation is
// fetched if we need to check LWT conditions or apply updates to non-frozen list elements.
lw_shared_ptr<query::read_command> read_command(query::clustering_row_ranges ranges, db::consistency_level cl) const;
// Create a mutation object for the update operation represented by this modification statement.
// A single mutation object for lightweight transactions, which can only span one partition, or a vector
// of mutations, one per partition key, for statements which affect multiple partition keys,
// e.g. DELETE FROM table WHERE pk IN (1, 2, 3).
std::vector<mutation> apply_updates(
const std::vector<dht::partition_range>& keys,
const std::vector<query::clustering_range>& ranges,
const update_parameters& params,
const json_cache_opt& json_cache);
private:
future<::shared_ptr<cql_transport::messages::result_message>>
do_execute(service::storage_proxy& proxy, service::query_state& qs, const query_options& options);
friend class modification_statement_executor;
public:
// True if the statement has IF conditions. Pre-computed during prepare.
bool has_conditions() const { return _has_conditions; }
virtual future<::shared_ptr<cql_transport::messages::result_message>>
execute(service::storage_proxy& proxy, service::query_state& qs, const query_options& options) override;
private:
future<>
execute_without_condition(service::storage_proxy& proxy, service::query_state& qs, const query_options& options);
future<::shared_ptr<cql_transport::messages::result_message>>
execute_with_condition(service::storage_proxy& proxy, service::query_state& qs, const query_options& options);
public:
/**
* Convert statement into a list of mutations to apply on the server
*
* @param options value for prepared statement markers
* @param local if true, any requests (for collections) performed by getMutation should be done locally only.
* @param now the current timestamp in microseconds to use if no timestamp is user provided.
*
* @return vector of the mutations
* @throws invalid_request_exception on invalid requests
*/
future<std::vector<mutation>> get_mutations(service::storage_proxy& proxy, const query_options& options, db::timeout_clock::time_point timeout, bool local, int64_t now, service::query_state& qs);
protected:
/**
* If there are conditions on the statement, this is called after the where clause and conditions have been
* processed to check that they are compatible.
* @throws InvalidRequestException
*/
virtual void validate_where_clause_for_conditions();
virtual json_cache_opt maybe_prepare_json_cache(const query_options& options);
friend class raw::modification_statement;
};
}
}