/usr/include/mysql/server/private
NameSizeModeActions
atomic/-0755rm
data/-0755rm
providers/-0755rm
aligned.h11360644editdlrm
aria_backup.h17870644editdlrm
assume_aligned.h23500644editdlrm
authors.h101940644editdlrm
backup.h17030644editdlrm
bounded_queue.h60930644editdlrm
client_settings.h19350644editdlrm
compat56.h22800644editdlrm
config.h143510644editdlrm
contributors.h49310644editdlrm
create_options.h41930644editdlrm
create_tmp_table.h28080644editdlrm
cset_narrowing.h39680644editdlrm
custom_conf.h10820644editdlrm
datadict.h17000644editdlrm
ddl_log.h128070644editdlrm
debug.h12340644editdlrm
debug_sync.h20460644editdlrm
derived_handler.h23790644editdlrm
derror.h9800644editdlrm
des_key_file.h12360644editdlrm
discover.h15700644editdlrm
dur_prop.h10820644editdlrm
embedded_priv.h17330644editdlrm
events.h47040644editdlrm
event_data_objects.h41870644editdlrm
event_db_repository.h36480644editdlrm
event_parse_data.h28990644editdlrm
event_queue.h34380644editdlrm
event_scheduler.h32900644editdlrm
field.h2224140644editdlrm
field_comp.h11740644editdlrm
filesort.h72830644editdlrm
filesort_utils.h81950644editdlrm
ft_global.h31130644editdlrm
gcalc_slicescan.h173300644editdlrm
gcalc_tools.h119000644editdlrm
grant.h27580644editdlrm
group_by_handler.h35340644editdlrm
gstream.h24370644editdlrm
handler.h1998570644editdlrm
handle_connections_win.h8840644editdlrm
hash.h44520644editdlrm
hash_filo.h55990644editdlrm
ha_handler_stats.h23350644editdlrm
ha_partition.h646960644editdlrm
ha_sequence.h62450644editdlrm
heap.h94870644editdlrm
hostname.h54190644editdlrm
ilist.h72370644editdlrm
init.h8520644editdlrm
innodb_priv.h13190644editdlrm
item.h2854580644editdlrm
item_cmpfunc.h1352180644editdlrm
item_create.h115080644editdlrm
item_func.h1386830644editdlrm
item_geofunc.h396120644editdlrm
item_jsonfunc.h254290644editdlrm
item_row.h52290644editdlrm
item_strfunc.h752650644editdlrm
item_subselect.h590870644editdlrm
item_sum.h726950644editdlrm
item_timefunc.h658960644editdlrm
item_vers.h44130644editdlrm
item_windowfunc.h350890644editdlrm
item_xmlfunc.h46500644editdlrm
json_table.h96670644editdlrm
key.h21320644editdlrm
keycaches.h19950644editdlrm
lex.h298400644editdlrm
lex_charset.h243130644editdlrm
lex_hash.h1431080644editdlrm
lex_ident.h21220644editdlrm
lex_string.h40770644editdlrm
lex_symbol.h13230644editdlrm
lex_token.h426410644editdlrm
lf.h64620644editdlrm
lock.h22200644editdlrm
log.h464620644editdlrm
log_event.h1894670644editdlrm
log_event_data_type.h18900644editdlrm
log_event_old.h198300644editdlrm
log_slow.h24420644editdlrm
maria.h58720644editdlrm
mariadb.h12770644editdlrm
mdl.h388930644editdlrm
mem_root_array.h71060644editdlrm
message.h11950644editdlrm
multi_range_read.h231790644editdlrm
myisam.h175060644editdlrm
myisamchk.h47340644editdlrm
myisammrg.h48970644editdlrm
myisampack.h149290644editdlrm
mysqld.h412250644editdlrm
mysqld_default_groups.h2040644editdlrm
mysqld_suffix.h12010644editdlrm
mysys_err.h30220644editdlrm
my_alarm.h24290644editdlrm
my_apc.h47470644editdlrm
my_atomic.h72810644editdlrm
my_atomic_wrapper.h30510644editdlrm
my_base.h277500644editdlrm
my_bit.h61960644editdlrm
my_bitmap.h55020644editdlrm
my_check_opt.h26180644editdlrm
my_compare.h111940644editdlrm
my_counter.h17210644editdlrm
my_cpu.h48850644editdlrm
my_crypt.h9040644editdlrm
my_decimal.h145040644editdlrm
my_default.h18800644editdlrm
my_handler_errors.h48820644editdlrm
my_json_writer.h187060644editdlrm
my_libwrap.h11830644editdlrm
my_md5.h14860644editdlrm
my_minidump.h8480644editdlrm
my_nosys.h14380644editdlrm
my_rdtsc.h101190644editdlrm
my_rnd.h10140644editdlrm
my_service_manager.h20870644editdlrm
my_stacktrace.h32150644editdlrm
my_stack_alloc.h64930644editdlrm
my_time.h104140644editdlrm
my_tree.h39910644editdlrm
my_uctype.h695280644editdlrm
my_user.h11260644editdlrm
my_virtual_mem.h12550644editdlrm
opt_histogram_json.h46380644editdlrm
opt_range.h659030644editdlrm
opt_subselect.h145450644editdlrm
opt_trace.h95050644editdlrm
opt_trace_context.h32910644editdlrm
parse_file.h44240644editdlrm
partition_element.h54280644editdlrm
partition_info.h198640644editdlrm
password.h16210644editdlrm
pfs_file_provider.h31530644editdlrm
pfs_idle_provider.h13850644editdlrm
pfs_memory_provider.h16260644editdlrm
pfs_metadata_provider.h18980644editdlrm
pfs_socket_provider.h22580644editdlrm
pfs_stage_provider.h15560644editdlrm
pfs_statement_provider.h43470644editdlrm
pfs_table_provider.h26250644editdlrm
pfs_thread_provider.h55600644editdlrm
pfs_transaction_provider.h28460644editdlrm
privilege.h288530644editdlrm
probes_mysql.h9730644editdlrm
probes_mysql_nodtrace.h60870644editdlrm
procedure.h68190644editdlrm
protocol.h125370644editdlrm
proxy_protocol.h5480644editdlrm
queues.h34770644editdlrm
records.h31470644editdlrm
replication.h161300644editdlrm
repl_failsafe.h15850644editdlrm
rijndael.h17110644editdlrm
rowid_filter.h154740644editdlrm
rpl_constants.h33570644editdlrm
rpl_filter.h47740644editdlrm
rpl_gtid.h299850644editdlrm
rpl_injector.h96210644editdlrm
rpl_mi.h166360644editdlrm
rpl_parallel.h182280644editdlrm
rpl_record.h15850644editdlrm
rpl_record_old.h14070644editdlrm
rpl_reporting.h37130644editdlrm
rpl_rli.h360700644editdlrm
rpl_tblmap.h31770644editdlrm
rpl_utility.h98000644editdlrm
scheduler.h31990644editdlrm
scope.h43930644editdlrm
select_handler.h22280644editdlrm
semisync.h22870644editdlrm
semisync_master.h257640644editdlrm
semisync_master_ack_receiver.h87090644editdlrm
semisync_slave.h37360644editdlrm
service_versions.h22850644editdlrm
session_tracker.h142750644editdlrm
set_var.h173310644editdlrm
slave.h123920644editdlrm
socketpair.h8420644editdlrm
source_revision.h670644editdlrm
sp.h225880644editdlrm
span.h39310644editdlrm
spatial.h226980644editdlrm
sp_cache.h20370644editdlrm
sp_head.h649170644editdlrm
sp_pcontext.h254270644editdlrm
sp_rcontext.h144410644editdlrm
sql_acl.h141670644editdlrm
sql_admin.h29150644editdlrm
sql_alloc.h17320644editdlrm
sql_alter.h153950644editdlrm
sql_analyse.h110520644editdlrm
sql_analyze_stmt.h126830644editdlrm
sql_array.h68580644editdlrm
sql_audit.h141620644editdlrm
sql_base.h260500644editdlrm
sql_basic_types.h95230644editdlrm
sql_binlog.h8950644editdlrm
sql_bitmap.h78420644editdlrm
sql_bootstrap.h18120644editdlrm
sql_cache.h216760644editdlrm
sql_callback.h15420644editdlrm
sql_class.h2718360644editdlrm
sql_cmd.h59620644editdlrm
sql_command.h48000644editdlrm
sql_connect.h40870644editdlrm
sql_const.h116300644editdlrm
sql_crypt.h14370644editdlrm
sql_cte.h164940644editdlrm
sql_cursor.h44280644editdlrm
sql_db.h24380644editdlrm
sql_debug.h57270644editdlrm
sql_delete.h13430644editdlrm
sql_derived.h12890644editdlrm
sql_digest.h38190644editdlrm
sql_digest_stream.h15670644editdlrm
sql_do.h9540644editdlrm
sql_error.h398430644editdlrm
sql_explain.h303190644editdlrm
sql_expression_cache.h43590644editdlrm
sql_get_diagnostics.h78830644editdlrm
sql_handler.h29100644editdlrm
sql_help.h9950644editdlrm
sql_hset.h34010644editdlrm
sql_insert.h51730644editdlrm
sql_i_s.h84870644editdlrm
sql_join_cache.h486590644editdlrm
sql_lex.h1749310644editdlrm
sql_lifo_buffer.h96850644editdlrm
sql_limit.h31870644editdlrm
sql_list.h223910644editdlrm
sql_load.h12760644editdlrm
sql_locale.h27010644editdlrm
sql_manager.h9600644editdlrm
sql_mode.h67350644editdlrm
sql_parse.h89700644editdlrm
sql_partition.h126740644editdlrm
sql_partition_admin.h59400644editdlrm
sql_plist.h77110644editdlrm
sql_plugin.h75770644editdlrm
sql_plugin_compat.h22370644editdlrm
sql_prepare.h114090644editdlrm
sql_priv.h185280644editdlrm
sql_profile.h78160644editdlrm
sql_reload.h10360644editdlrm
sql_rename.h9820644editdlrm
sql_repl.h30450644editdlrm
sql_schema.h33030644editdlrm
sql_select.h897430644editdlrm
sql_sequence.h51770644editdlrm
sql_servers.h17770644editdlrm
sql_show.h98190644editdlrm
sql_signal.h33620644editdlrm
sql_sort.h219640644editdlrm
sql_statistics.h165040644editdlrm
sql_string.h390090644editdlrm
sql_table.h98120644editdlrm
sql_test.h26650644editdlrm
sql_time.h85050644editdlrm
sql_trigger.h123320644editdlrm
sql_truncate.h20790644editdlrm
sql_tvc.h24180644editdlrm
sql_type.h2972720644editdlrm
sql_type_fixedbin.h655780644editdlrm
sql_type_fixedbin_storage.h54670644editdlrm
sql_type_geom.h190390644editdlrm
sql_type_int.h100010644editdlrm
sql_type_json.h61550644editdlrm
sql_type_real.h12570644editdlrm
sql_type_string.h16290644editdlrm
sql_udf.h48500644editdlrm
sql_union.h10680644editdlrm
sql_update.h19230644editdlrm
sql_view.h24700644editdlrm
sql_window.h68140644editdlrm
ssl_compat.h33800644editdlrm
strfunc.h25490644editdlrm
structs.h294570644editdlrm
sys_vars_shared.h27290644editdlrm
table.h1190090644editdlrm
table_cache.h42320644editdlrm
threadpool.h48100644editdlrm
threadpool_generic.h39690644editdlrm
threadpool_winsockets.h22900644editdlrm
thread_cache.h59050644editdlrm
thr_alarm.h29320644editdlrm
thr_lock.h73500644editdlrm
thr_malloc.h12020644editdlrm
thr_timer.h15630644editdlrm
transaction.h14660644editdlrm
tzfile.h50140644editdlrm
tztime.h33970644editdlrm
t_ctype.h56390644editdlrm
uniques.h42170644editdlrm
unireg.h77220644editdlrm
vers_string.h25430644editdlrm
violite.h99560644editdlrm
waiting_threads.h45320644editdlrm
welcome_copyright_notice.h12180644editdlrm
winservice.h60190644editdlrm
win_tzname_data.h65060644editdlrm
wqueue.h15650644editdlrm
wsrep.h33080644editdlrm
wsrep_allowlist_service.h10350644editdlrm
wsrep_applier.h27030644editdlrm
wsrep_binlog.h35510644editdlrm
wsrep_client_service.h26020644editdlrm
wsrep_client_state.h15660644editdlrm
wsrep_condition_variable.h14840644editdlrm
wsrep_high_priority_service.h49120644editdlrm
wsrep_mutex.h12390644editdlrm
wsrep_mysqld.h220060644editdlrm
wsrep_mysqld_c.h12270644editdlrm
wsrep_on.h17180644editdlrm
wsrep_priv.h16340644editdlrm
wsrep_schema.h58860644editdlrm
wsrep_server_service.h36310644editdlrm
wsrep_server_state.h25290644editdlrm
wsrep_sst.h39510644editdlrm
wsrep_status.h18160644editdlrm
wsrep_storage_service.h18090644editdlrm
wsrep_thd.h114870644editdlrm
wsrep_trans_observer.h181740644editdlrm
wsrep_types.h11100644editdlrm
wsrep_utils.h102510644editdlrm
wsrep_var.h46120644editdlrm
wsrep_xid.h15090644editdlrm
xa.h18450644editdlrm
Edit: /usr/include/mysql/server/private/rowid_filter.h (15474B)
/* Copyright (c) 2018, 2019 MariaDB This program 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; version 2 of the License. This program 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 this program; if not, write to the Free Software Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef ROWID_FILTER_INCLUDED #define ROWID_FILTER_INCLUDED #include "mariadb.h" #include "sql_array.h" /* What rowid / primary filters are -------------------------------- Consider a join query Q of the form SELECT * FROM T1, ... , Tk WHERE P. For any of the table reference Ti(Q) from the from clause of Q different rowid / primary key filters (pk-filters for short) can be built. A pk-filter F built for Ti(Q) is a set of rowids / primary keys of Ti F= {pk1,...,pkN} such that for any row r=r1||...||rk from the result set of Q ri's rowid / primary key pk(ri) is contained in F. When pk-filters are useful -------------------------- If building a pk-filter F for Ti(Q )is not too costly and its cardinality #F is much less than the cardinality of T - #T then using the pk-filter when executing Q might be quite beneficial. Let r be a random row from Ti. Let s(F) be the probability that pk(r) belongs to F. Let BC(F) be the cost of building F. Suppose that the optimizer has chosen for Q a plan with this join order T1 => ... Tk and that the table Ti is accessed by a ref access using index I. Let K = {k1,...,kM} be the set of all rowid/primary keys values used to access rows of Ti when looking for matches in this table.to join Ti by index I. Let's assume that two set sets K and F are uncorrelated. With this assumption if before accessing data from Ti by the rowid / primary key k we first check whether k is in F then we can expect saving on M*(1-s(S)) accesses of data rows from Ti. If we can guarantee that test whether k is in F is relatively cheap then we can gain a lot assuming that BC(F) is much less then the cost of fetching M*(1-s(S)) records from Ti and following evaluation of conditions pushed into Ti. Making pk-filter test cheap --------------------------- If the search structure to test whether an element is in F can be fully placed in RAM then this test is expected to be much cheaper than a random access of a record from Ti. We'll consider two search structures for pk-filters: ordered array and bloom filter. Ordered array is easy to implement, but it's space consuming. If a filter contains primary keys then at least space for each primary key from the filter must be allocated in the search structure. On a the opposite a bloom filter requires a fixed number of bits and this number does not depend on the cardinality of the pk-filter (10 bits per element will serve pk-filter of any size). */ /* How and when the optimizer builds and uses range rowid filters -------------------------------------------------------------- 1. In make_join_statistics() for each join table s after the call of get_quick_record_count() the TABLE::method init_cost_info_for_usable_range_rowid_filters() is called The method build an array of Range_rowid_filter_cost_info elements containing the cost info on possible range filters for s->table. The array is optimized for further usage. 2. For each partial join order when the optimizer considers joining table s to this partial join In the function best_access_path() a. When evaluating a ref access r by index idx to join s the optimizer estimates the effect of usage of each possible range filter f and chooses one with the best gain. The gain is taken into account when the cost of thr ref access r is calculated. If it turns out that this is the best ref access to join s then the info about the chosen filter together with the info on r is remembered in the corresponding element of the array of POSITION structures. [We evaluate every pair (ref access, range_filter) rather then every pair (best ref access, range filter) because if the index ref_idx used for ref access r correlates with the index rf_idx used by the filter f then the pair (r,f) is not evaluated at all as we don't know how to estimate the effect of correlation between ref_idx and rf_idx.] b. When evaluating the best range access to join table s the optimizer estimates the effect of usage of each possible range filter f and chooses one with the best gain. [Here we should have evaluated every pair (range access, range filter) as well, but it's not done yet.] 3. When the cheapest execution plan has been chosen and after the call of JOIN::get_best_combination() The method JOIN::make_range_rowid_filters() is called For each range rowid filter used in the chosen execution plan the method creates a quick select object to be able to perform index range scan to fill the filter at the execution stage. The method also creates Range_rowid_filter objects that are used at the execution stage. 4. Just before the execution stage The method JOIN::init_range_rowid_filters() is called. For each join table s that is to be accessed with usage of a range filter the method allocates containers for the range filter and it lets the engine know that the filter will be used when accessing s. 5. At the execution stage In the function sub_select() just before the first access of a join table s employing a range filter The method JOIN_TAB::build_range_rowid_filter_if_needed() is called The method fills the filter using the quick select created by JOIN::make_range_rowid_filters(). 6. The accessed key tuples are checked against the filter within the engine using the info pushed into it. */ struct TABLE; class SQL_SELECT; class Rowid_filter_container; class Range_rowid_filter_cost_info; /* Cost to write rowid into array */ #define ARRAY_WRITE_COST 0.005 /* Factor used to calculate cost of sorting rowids in array */ #define ARRAY_SORT_C 0.01 /* Cost to evaluate condition */ #define COST_COND_EVAL 0.2 typedef enum { SORTED_ARRAY_CONTAINER, BLOOM_FILTER_CONTAINER // Not used yet } Rowid_filter_container_type; /** @class Rowid_filter_container The interface for different types of containers to store info on the set of rowids / primary keys that defines a pk-filter. There will be two implementations of this abstract class. - sorted array - bloom filter */ class Rowid_filter_container : public Sql_alloc { public: virtual Rowid_filter_container_type get_type() = 0; /* Allocate memory for the container */ virtual bool alloc() = 0; /* @brief Add info on a rowid / primary to the container @param ctxt The context info (opaque) @param elem The rowid / primary key to be added to the container @retval true if elem is successfully added */ virtual bool add(void *ctxt, char *elem) = 0; /* @brief Check whether a rowid / primary key is in container @param ctxt The context info (opaque) @param elem The rowid / primary key to be checked against the container @retval False if elem is definitely not in the container */ virtual bool check(void *ctxt, char *elem) = 0; /* True if the container does not contain any element */ virtual bool is_empty() = 0; virtual ~Rowid_filter_container() = default; }; /** @class Rowid_filter The interface for different types of pk-filters Currently we support only range pk filters. */ class Rowid_filter : public Sql_alloc { protected: /* The container to store info the set of elements in the filter */ Rowid_filter_container *container; Rowid_filter_tracker *tracker; public: enum build_return_code { SUCCESS, NON_FATAL_ERROR, FATAL_ERROR, }; Rowid_filter(Rowid_filter_container *container_arg) : container(container_arg) {} /* Build the filter : fill it with info on the set of elements placed there */ virtual build_return_code build() = 0; /* Check whether an element is in the filter. Returns false is the elements is definitely not in the filter. */ virtual bool check(char *elem) = 0; virtual ~Rowid_filter() = default; bool is_empty() { return container->is_empty(); } Rowid_filter_container *get_container() { return container; } void set_tracker(Rowid_filter_tracker *track_arg) { tracker= track_arg; } Rowid_filter_tracker *get_tracker() { return tracker; } }; /** @class Rowid_filter_container The implementation of the Rowid_interface used for pk-filters that are filled when performing range index scans. */ class Range_rowid_filter: public Rowid_filter { /* The table for which the rowid filter is built */ TABLE *table; /* The select to perform the range scan to fill the filter */ SQL_SELECT *select; /* The cost info on the filter (used for EXPLAIN/ANALYZE) */ Range_rowid_filter_cost_info *cost_info; public: Range_rowid_filter(TABLE *tab, Range_rowid_filter_cost_info *cost_arg, Rowid_filter_container *container_arg, SQL_SELECT *sel) : Rowid_filter(container_arg), table(tab), select(sel), cost_info(cost_arg) {} ~Range_rowid_filter(); build_return_code build() override; bool check(char *elem) override { if (container->is_empty()) return false; bool was_checked= container->check(table, elem); tracker->increment_checked_elements_count(was_checked); return was_checked; } SQL_SELECT *get_select() { return select; } }; /** @class Refpos_container_sorted_array The wrapper class over Dynamic_array to facilitate operations over array of elements of the type char[N] where N is the same for all elements */ class Refpos_container_sorted_array : public Sql_alloc { /* Maximum number of elements in the array (Now is used only at the initialization of the dynamic array) */ uint max_elements; /* Number of bytes allocated for an element */ uint elem_size; /* The dynamic array over which the wrapper is built */ Dynamic_array *array; public: Refpos_container_sorted_array(uint max_elems, uint elem_sz) : max_elements(max_elems), elem_size(elem_sz), array(0) {} ~Refpos_container_sorted_array() { delete array; array= 0; } bool alloc() { array= new Dynamic_array (PSI_INSTRUMENT_MEM, elem_size * max_elements, elem_size * max_elements/sizeof(char) + 1); return array == NULL; } bool add(char *elem) { for (uint i= 0; i < elem_size; i++) { if (array->append(elem[i])) return true; } return false; } char *get_pos(uint n) { return array->get_pos(n * elem_size); } uint elements() { return (uint) (array->elements() / elem_size); } void sort(qsort_cmp2 cmp, void *cmp_arg) { my_qsort2(array->front(), array->elements() / elem_size, elem_size, cmp, cmp_arg); } bool is_empty() { return elements() == 0; } }; /** @class Rowid_filter_sorted_array The implementation of the Rowid_filter_container interface as a sorted array container of rowids / primary keys */ class Rowid_filter_sorted_array: public Rowid_filter_container { /* The dynamic array to store rowids / primary keys */ Refpos_container_sorted_array refpos_container; /* Initially false, becomes true after the first call of (check() */ bool is_checked; public: Rowid_filter_sorted_array(uint elems, uint elem_size) : refpos_container(elems, elem_size), is_checked(false) {} Rowid_filter_container_type get_type() override { return SORTED_ARRAY_CONTAINER; } bool alloc() override { return refpos_container.alloc(); } bool add(void *ctxt, char *elem) override { return refpos_container.add(elem); } bool check(void *ctxt, char *elem) override; bool is_empty() override { return refpos_container.is_empty(); } }; /** @class Range_rowid_filter_cost_info An objects of this class is created for each potentially usable range filter. It contains the info that allows to figure out whether usage of the range filter promises some gain. */ class Range_rowid_filter_cost_info : public Sql_alloc { /* The table for which the range filter is to be built (if needed) */ TABLE *table; /* Estimated number of elements in the filter */ ulonglong est_elements; /* The cost of building the range filter */ double b; /* a*N-b yields the gain of the filter for N key tuples of the index key_no */ double a; /* The value of N where the gain is 0 */ double cross_x; /* Used for pruning of the potential range filters */ key_map abs_independent; /* These two parameters are used to choose the best range filter in the function TABLE::best_range_rowid_filter_for_partial_join */ double a_adj; double cross_x_adj; public: /* The type of the container of the range filter */ Rowid_filter_container_type container_type; /* The index whose range scan would be used to build the range filter */ uint key_no; /* The selectivity of the range filter */ double selectivity; Range_rowid_filter_cost_info() : table(0), key_no(0) {} void init(Rowid_filter_container_type cont_type, TABLE *tab, uint key_no); double build_cost(Rowid_filter_container_type container_type); inline double lookup_cost(Rowid_filter_container_type cont_type); inline double avg_access_and_eval_gain_per_row(Rowid_filter_container_type cont_type); inline double avg_adjusted_gain_per_row(double access_cost_factor); inline void set_adjusted_gain_param(double access_cost_factor); /* Get the gain that usage of filter promises for r key tuples */ inline double get_gain(double r) { return r * a - b; } /* Get the adjusted gain that usage of filter promises for r key tuples */ inline double get_adjusted_gain(double r) { return r * a_adj - b; } /* The gain promised by usage of the filter for r key tuples due to less condition evaluations */ inline double get_cmp_gain(double r) { return r * (1 - selectivity) / TIME_FOR_COMPARE; } Rowid_filter_container *create_container(); double get_a() const { return a; } void trace_info(THD *thd); friend void TABLE::prune_range_rowid_filters(); friend void TABLE::init_cost_info_for_usable_range_rowid_filters(THD *thd); friend Range_rowid_filter_cost_info * TABLE::best_range_rowid_filter_for_partial_join(uint access_key_no, double records, double access_cost_factor); }; #endif /* ROWID_FILTER_INCLUDED */