mariadb/storage/innobase/include/page0page.ic
unknown ca9b46f71a Applied innodb-5.1-ss475 snapshot.
* Fix BUG#15650: "DELETE with LEFT JOIN crashes server with innodb_locks_unsafe_for binlog"
* Fix BUG#17134: "Partitions: uncommitted changes are visible"
* Fix BUG#17992: "Partitions: InnoDB, somehow rotten table after UPDATE"
  row0ins.c: MySQL's partitioned table code does not set preduilt->sql_stat_start right
  if it does an insert in the same statement after doing a search first in the same
  partition table. We now write trx id always to the buffer, not just when flag
  sql_stat_start is on. This will waste CPU time very sightly.
* Fix BUG#18077: "InnoDB uses full explicit table locks in stored FUNCTION"
* Fix BUG#18238: "When locks exhaust the buffer pool, InnoDB does not roll back the trx"
* Fix BUG#18252" "Disk space leak in updates of InnoDB BLOB rows in 5.0 and 5.1"
* Fix BUG#18283: "When InnoDB returns error 'lock table full', MySQL can write to binlog too much"
* Fix BUG#18350: "Use consistent read in CREATE ... SELECT ... if innodb_locks_unsafe_for_binlog"
* Fix BUG#18384: "InnoDB memory leak on duplicate key errors in 5.0 if row has many columns"
* Fix BUG#18934: "InnoDB crashes when table uses column names like DB_ROW_ID"
  Refuse tables that use reserved column names.
* InnoDB's SQL parser:
  - Add support for UNSIGNED types, EXIT keyword, quoted identifiers, user-function callbacks
    for processing results of FETCH statements, bound literals, DATA_VARCHAR for bound literals.
  - Allow bound literals of type non-INTEGER to be of length 0.
  - Add make_flex.sh and update lexer/parser generation documentation.
  - Add comment clarifying the difference between 'alias' and 'indirection' fields in sym_node_t.
  - Remove never reached duplicate code in pars_set_dfield_type().
  - Rewrite pars_info datatypes and APIs, add a few helper functions.
  - Since the functions definitions in pars_info_t are accessed after pars_sql() returns
    in the query graph execution stage, we can't free pars_info_t in pars_sql(). Instead,
    make pars_sql() transfer ownership of pars_info_t to the created query graph, and
    make que_graph_free() free it if needed.
  - Allow access to system columns like DB_ROW_ID.
* Use bound literals in row_truncate_table_for_mysql, row_drop_table_for_mysql,
  row_discard_tablespace_for_mysql, and row_rename_table_for_mysql.
* Setting an isolation level of the transaction to read committed weakens the locks for
  this session similarly like the option innodb_locks_unsafe_for binlog. This patch removes
  alnost all gap locking (used in next-key locking) and makes MySQL to release the row locks
  on the rows which does not belong to result set. Additionally, nonlocking selects on
  INSERT INTO SELECT, UPDATE ... (SELECT ...), and CREATE ... SELECT ... use a nonlocking
  consistent read. If a binlog is used, then binlog format should be set to row based
  binloging to make the execution of the complex SQL statements.
* Disable the statistic variables btr_search_n_hash_fail and n_hash_succ, n_hash_fail,
  n_patt_succ, and n_searches of btr_search_t in builds without #ifdef UNIV_SEARCH_PERF_STAT.
* Make innodb.test faster. Group all consistent read test cases to a one test case and
  wait their lock timeout after all have been send to the server. Decrease amount of rows
  inserted in a certain test - this has no effect on the effectiveness of the test and
  reduces the running time by ~10 sec. Remove temporary work-arounds from innodb.result
  now that ALTER TABLE DROP FOREIGN KEY works once again.
* Make innodb_unsafe_binlog.test faster. Grout all consistent read test cases to a one
  test case amd wait their lock timeout after all have been sent to the server. Remove
  unnecessary option --loose_innodb_lock_wait_timeout.
* Print dictionary memory size in SHOW INNODB STATUS.
* Fix memory leaks in row_create_table_for_mysql() in rare corner cases.
* Remove code related to clustered tables. They were never implemented, and the
  implementation would be challenging with ROW_FORMAT=COMPACT. Remove the table types
  DICT_TABLE_CLUSTER_MEMBER and DICT_TABLE_CLUSTER and all related tests and functions.
  dict_table_t: Remove mix_id, mix_len, mix_id_len, mix_id_buf, and cluster_name.
  plan_t: Remove mixed_index.
  dict_create_sys_tables_tuple(): Set MIX_ID=0, MIX_LEN=0, CLUSTER_NAME=NULL when
  inserting into SYS_TABLES.
  dict_tree_check_search_tuple(): Enclose in #ifdef UNIV_DEBUG.
* Move calling of thr_local_free() from trx_free_for_mysql() to
  innobase_close_connection().


mysql-test/r/innodb.result:
  Applied innodb-5.1-ss475 snapshot.
mysql-test/r/innodb_unsafe_binlog.result:
  Applied innodb-5.1-ss475 snapshot.
mysql-test/t/innodb-master.opt:
  Applied innodb-5.1-ss475 snapshot.
mysql-test/t/innodb.test:
  Applied innodb-5.1-ss475 snapshot.
mysql-test/t/innodb_unsafe_binlog-master.opt:
  Applied innodb-5.1-ss475 snapshot.
mysql-test/t/innodb_unsafe_binlog.test:
  Applied innodb-5.1-ss475 snapshot.
sql/ha_innodb.cc:
  Applied innodb-5.1-ss475 snapshot.
   Do not use inlined functions in ha_innodb.cc.
   Remove assertion ut_error which crashes the mysqld server
   if it prints a warning about the adaptive latch.
storage/innobase/Makefile.am:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/btr/btr0btr.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/btr/btr0cur.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/btr/btr0pcur.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/btr/btr0sea.c:
  Applied innodb-5.1-ss475 snapshot.
   Fix compilation problem with non-C99 compilers.
storage/innobase/buf/buf0lru.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/cmakelists.txt:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/configure.in:
  Applied innodb-5.1-ss475 snapshot.
   Add disabled-by-default logic to switch GCC to a strict C89-mode.
   Add -Werror-implicit-function_declaration to CFLAGS when using gcc.
storage/innobase/data/data0type.c:
  Applied innodb-5.1-ss475 snapshot.
   dtype_print(): Recognize DATA_FIXBINARY and DATA_BLOB types.
   Print known flags from prtype. Use a switch statement instead
   of else-if chain.
storage/innobase/dict/dict0crea.c:
  Applied innodb-5.1-ss475 snapshot.
   Use bound literals in all SQL statements instead of elaborately
   constructing correctly allocated and quoted strings to pass the
   data in ASCII form.
storage/innobase/dict/dict0dict.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/dict/dict0load.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/dict/dict0mem.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/eval/eval0proc.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/ibuf/ibuf0ibuf.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/btr0cur.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/btr0cur.ic:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/btr0sea.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/buf0lru.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/dict0dict.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/dict0dict.ic:
  Applied innodb-5.1-ss475 snapshot.
   Remove too strict assertions from some dict_table_t
   accessor functions.
storage/innobase/include/dict0mem.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/eval0proc.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/hash0hash.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/lock0lock.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/mem0mem.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/page0page.ic:
  Applied innodb-5.1-ss475 snapshot.
   Remove UNIV_RELEASE_NOT_YET_STABLE and related checks.
storage/innobase/include/pars0grm.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/pars0pars.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/pars0sym.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/pars0types.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/que0que.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/row0mysql.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/row0sel.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/row0upd.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/trx0trx.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/univ.i:
  Applied innodb-5.1-ss475 snapshot.
   Remove UNIV_RELEASE_NOT_YET_STABLE and related checks.
   When using GCC, use __inline__ instead of inline.
storage/innobase/include/ut0mem.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/lock/lock0lock.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/log/log0recv.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/mem/mem0dbg.c:
  Applied innodb-5.1-ss475 snapshot.
   Add (void*) cast when using the %p printf format specifier.
storage/innobase/mem/mem0mem.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/os/os0sync.c:
  Applied innodb-5.1-ss475 snapshot.
   Add (void*) cast when using the %p printf format specifier.
storage/innobase/pars/lexyy.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/pars/make_bison.sh:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/pars/pars0grm.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/pars/pars0grm.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/pars/pars0grm.y:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/pars/pars0lex.l:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/pars/pars0opt.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/pars/pars0pars.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/pars/pars0sym.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/que/que0que.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/row/row0ins.c:
  Applied innodb-5.1-ss475 snapshot.
   Remove a memory leak when trying to insert a duplicate record to a
   clustered inedx comprising more than about 90 columns (Bug#18384).
   row_ins_duplicate_error_in_clust(): Call mem_heap_free(heap) at
   func_exit if needed.
storage/innobase/row/row0mysql.c:
  Applied innodb-5.1-ss475 snapshot.
   row_mysql_is_system_table(): Use strncmp, not memcmp, since we
   don't know how long the input string is.
storage/innobase/row/row0sel.c:
  Applied innodb-5.1-ss475 snapshot.
   Remove UNIV_RELEASE_NOT_YET_STABLE and related checks.
   row_sel_field_store_in_mysql_format(): Turn the assertions on
   mbminlen, mbmaxlen, and templ->type into debug assertions.
   fetch_step(): Print a more usefull error message when the cursor is closed.
storage/innobase/row/row0upd.c:
  Applied innodb-5.1-ss475 snapshot.
   row_upd_index_replace_new_col_vals_index_pos(): Add a parameter
   order_only for limiting the replacement to the ordering fields
   of the index.
storage/innobase/srv/srv0srv.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/sync/sync0arr.c:
  Applied innodb-5.1-ss475 snapshot.
   Add (void*) cast when using the %p printf format specifier.
storage/innobase/sync/sync0rw.c:
  Applied innodb-5.1-ss475 snapshot.
   Add (void*) cast when using the %p printf format specifier.
storage/innobase/sync/sync0sync.c:
  Applied innodb-5.1-ss475 snapshot.
   Add (void*) cast when using the %p printf format specifier.
storage/innobase/trx/trx0trx.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/ut/Makefile.am:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/ut/ut0mem.c:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/ut0vec.h:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/include/ut0vec.ic:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/pars/make_flex.sh:
  Applied innodb-5.1-ss475 snapshot.
storage/innobase/ut/ut0vec.c:
  Applied innodb-5.1-ss475 snapshot.
2006-04-23 12:48:31 +04:00

828 lines
21 KiB
Text

/******************************************************
Index page routines
(c) 1994-1996 Innobase Oy
Created 2/2/1994 Heikki Tuuri
*******************************************************/
#include "mach0data.h"
#include "rem0cmp.h"
#include "mtr0log.h"
#ifdef UNIV_MATERIALIZE
#undef UNIV_INLINE
#define UNIV_INLINE
#endif
/*****************************************************************
Returns the max trx id field value. */
UNIV_INLINE
dulint
page_get_max_trx_id(
/*================*/
page_t* page) /* in: page */
{
ut_ad(page);
return(mach_read_from_8(page + PAGE_HEADER + PAGE_MAX_TRX_ID));
}
/*****************************************************************
Sets the max trx id field value if trx_id is bigger than the previous
value. */
UNIV_INLINE
void
page_update_max_trx_id(
/*===================*/
page_t* page, /* in: page */
dulint trx_id) /* in: transaction id */
{
ut_ad(page);
if (ut_dulint_cmp(page_get_max_trx_id(page), trx_id) < 0) {
page_set_max_trx_id(page, trx_id);
}
}
/*****************************************************************
Reads the given header field. */
UNIV_INLINE
ulint
page_header_get_field(
/*==================*/
page_t* page, /* in: page */
ulint field) /* in: PAGE_LEVEL, ... */
{
ut_ad(page);
ut_ad(field <= PAGE_INDEX_ID);
return(mach_read_from_2(page + PAGE_HEADER + field));
}
/*****************************************************************
Sets the given header field. */
UNIV_INLINE
void
page_header_set_field(
/*==================*/
page_t* page, /* in: page */
ulint field, /* in: PAGE_LEVEL, ... */
ulint val) /* in: value */
{
ut_ad(page);
ut_ad(field <= PAGE_N_RECS);
ut_ad(field == PAGE_N_HEAP || val < UNIV_PAGE_SIZE);
ut_ad(field != PAGE_N_HEAP || (val & 0x7fff) < UNIV_PAGE_SIZE);
mach_write_to_2(page + PAGE_HEADER + field, val);
}
/*****************************************************************
Returns the pointer stored in the given header field. */
UNIV_INLINE
byte*
page_header_get_ptr(
/*================*/
/* out: pointer or NULL */
page_t* page, /* in: page */
ulint field) /* in: PAGE_FREE, ... */
{
ulint offs;
ut_ad(page);
ut_ad((field == PAGE_FREE)
|| (field == PAGE_LAST_INSERT)
|| (field == PAGE_HEAP_TOP));
offs = page_header_get_field(page, field);
ut_ad((field != PAGE_HEAP_TOP) || offs);
if (offs == 0) {
return(NULL);
}
return(page + offs);
}
/*****************************************************************
Sets the pointer stored in the given header field. */
UNIV_INLINE
void
page_header_set_ptr(
/*================*/
page_t* page, /* in: page */
ulint field, /* in: PAGE_FREE, ... */
byte* ptr) /* in: pointer or NULL*/
{
ulint offs;
ut_ad(page);
ut_ad((field == PAGE_FREE)
|| (field == PAGE_LAST_INSERT)
|| (field == PAGE_HEAP_TOP));
if (ptr == NULL) {
offs = 0;
} else {
offs = ptr - page;
}
ut_ad((field != PAGE_HEAP_TOP) || offs);
page_header_set_field(page, field, offs);
}
/*****************************************************************
Resets the last insert info field in the page header. Writes to mlog
about this operation. */
UNIV_INLINE
void
page_header_reset_last_insert(
/*==========================*/
page_t* page, /* in: page */
mtr_t* mtr) /* in: mtr */
{
ut_ad(page && mtr);
mlog_write_ulint(page + PAGE_HEADER + PAGE_LAST_INSERT, 0,
MLOG_2BYTES, mtr);
}
/****************************************************************
Determine whether the page is in new-style compact format. */
UNIV_INLINE
ulint
page_is_comp(
/*=========*/
/* out: nonzero if the page is in compact
format, zero if it is in old-style format */
page_t* page) /* in: index page */
{
return(UNIV_EXPECT(page_header_get_field(page, PAGE_N_HEAP) & 0x8000,
0x8000));
}
/****************************************************************
TRUE if the record is on a page in compact format. */
UNIV_INLINE
ulint
page_rec_is_comp(
/*=============*/
/* out: nonzero if in compact format */
const rec_t* rec) /* in: record */
{
return(page_is_comp(ut_align_down((rec_t*) rec, UNIV_PAGE_SIZE)));
}
/****************************************************************
Gets the first record on the page. */
UNIV_INLINE
rec_t*
page_get_infimum_rec(
/*=================*/
/* out: the first record in record list */
page_t* page) /* in: page which must have record(s) */
{
ut_ad(page);
if (page_is_comp(page)) {
return(page + PAGE_NEW_INFIMUM);
} else {
return(page + PAGE_OLD_INFIMUM);
}
}
/****************************************************************
Gets the last record on the page. */
UNIV_INLINE
rec_t*
page_get_supremum_rec(
/*==================*/
/* out: the last record in record list */
page_t* page) /* in: page which must have record(s) */
{
ut_ad(page);
if (page_is_comp(page)) {
return(page + PAGE_NEW_SUPREMUM);
} else {
return(page + PAGE_OLD_SUPREMUM);
}
}
/****************************************************************
TRUE if the record is a user record on the page. */
UNIV_INLINE
ibool
page_rec_is_user_rec_low(
/*=====================*/
/* out: TRUE if a user record */
ulint offset) /* in: record offset on page */
{
ut_ad(offset >= PAGE_NEW_INFIMUM);
#if PAGE_OLD_INFIMUM < PAGE_NEW_INFIMUM
# error "PAGE_OLD_INFIMUM < PAGE_NEW_INFIMUM"
#endif
#if PAGE_OLD_SUPREMUM < PAGE_NEW_SUPREMUM
# error "PAGE_OLD_SUPREMUM < PAGE_NEW_SUPREMUM"
#endif
#if PAGE_NEW_INFIMUM > PAGE_OLD_SUPREMUM
# error "PAGE_NEW_INFIMUM > PAGE_OLD_SUPREMUM"
#endif
#if PAGE_OLD_INFIMUM > PAGE_NEW_SUPREMUM
# error "PAGE_OLD_INFIMUM > PAGE_NEW_SUPREMUM"
#endif
#if PAGE_NEW_SUPREMUM > PAGE_OLD_SUPREMUM_END
# error "PAGE_NEW_SUPREMUM > PAGE_OLD_SUPREMUM_END"
#endif
#if PAGE_OLD_SUPREMUM > PAGE_NEW_SUPREMUM_END
# error "PAGE_OLD_SUPREMUM > PAGE_NEW_SUPREMUM_END"
#endif
ut_ad(offset <= UNIV_PAGE_SIZE - PAGE_EMPTY_DIR_START);
return(UNIV_LIKELY(offset != PAGE_NEW_SUPREMUM)
&& UNIV_LIKELY(offset != PAGE_NEW_INFIMUM)
&& UNIV_LIKELY(offset != PAGE_OLD_INFIMUM)
&& UNIV_LIKELY(offset != PAGE_OLD_SUPREMUM));
}
/****************************************************************
TRUE if the record is the supremum record on a page. */
UNIV_INLINE
ibool
page_rec_is_supremum_low(
/*=====================*/
/* out: TRUE if the supremum record */
ulint offset) /* in: record offset on page */
{
ut_ad(offset >= PAGE_NEW_INFIMUM);
ut_ad(offset <= UNIV_PAGE_SIZE - PAGE_EMPTY_DIR_START);
return(UNIV_UNLIKELY(offset == PAGE_NEW_SUPREMUM)
|| UNIV_UNLIKELY(offset == PAGE_OLD_SUPREMUM));
}
/****************************************************************
TRUE if the record is the infimum record on a page. */
UNIV_INLINE
ibool
page_rec_is_infimum_low(
/*====================*/
/* out: TRUE if the infimum record */
ulint offset) /* in: record offset on page */
{
ut_ad(offset >= PAGE_NEW_INFIMUM);
ut_ad(offset <= UNIV_PAGE_SIZE - PAGE_EMPTY_DIR_START);
return(UNIV_UNLIKELY(offset == PAGE_NEW_INFIMUM)
|| UNIV_UNLIKELY(offset == PAGE_OLD_INFIMUM));
}
/****************************************************************
TRUE if the record is a user record on the page. */
UNIV_INLINE
ibool
page_rec_is_user_rec(
/*=================*/
/* out: TRUE if a user record */
const rec_t* rec) /* in: record */
{
return(page_rec_is_user_rec_low(
ut_align_offset(rec, UNIV_PAGE_SIZE)));
}
/****************************************************************
TRUE if the record is the supremum record on a page. */
UNIV_INLINE
ibool
page_rec_is_supremum(
/*=================*/
/* out: TRUE if the supremum record */
const rec_t* rec) /* in: record */
{
return(page_rec_is_supremum_low(
ut_align_offset(rec, UNIV_PAGE_SIZE)));
}
/****************************************************************
TRUE if the record is the infimum record on a page. */
UNIV_INLINE
ibool
page_rec_is_infimum(
/*================*/
/* out: TRUE if the infimum record */
const rec_t* rec) /* in: record */
{
return(page_rec_is_infimum_low(
ut_align_offset(rec, UNIV_PAGE_SIZE)));
}
/*****************************************************************
Compares a data tuple to a physical record. Differs from the function
cmp_dtuple_rec_with_match in the way that the record must reside on an
index page, and also page infimum and supremum records can be given in
the parameter rec. These are considered as the negative infinity and
the positive infinity in the alphabetical order. */
UNIV_INLINE
int
page_cmp_dtuple_rec_with_match(
/*===========================*/
/* out: 1, 0, -1, if dtuple is greater, equal,
less than rec, respectively, when only the
common first fields are compared */
dtuple_t* dtuple, /* in: data tuple */
rec_t* rec, /* in: physical record on a page; may also
be page infimum or supremum, in which case
matched-parameter values below are not
affected */
const ulint* offsets,/* in: array returned by rec_get_offsets() */
ulint* matched_fields, /* in/out: number of already completely
matched fields; when function returns
contains the value for current comparison */
ulint* matched_bytes) /* in/out: number of already matched
bytes within the first field not completely
matched; when function returns contains the
value for current comparison */
{
ulint rec_offset;
ut_ad(dtuple_check_typed(dtuple));
ut_ad(rec_offs_validate(rec, NULL, offsets));
ut_ad(!rec_offs_comp(offsets) == !page_rec_is_comp(rec));
rec_offset = ut_align_offset(rec, UNIV_PAGE_SIZE);
if (UNIV_UNLIKELY(rec_offset == PAGE_NEW_INFIMUM)
|| UNIV_UNLIKELY(rec_offset == PAGE_OLD_INFIMUM)) {
return(1);
}
if (UNIV_UNLIKELY(rec_offset == PAGE_NEW_SUPREMUM)
|| UNIV_UNLIKELY(rec_offset == PAGE_OLD_SUPREMUM)) {
return(-1);
}
return(cmp_dtuple_rec_with_match(dtuple, rec, offsets,
matched_fields,
matched_bytes));
}
/*****************************************************************
Gets the number of user records on page (infimum and supremum records
are not user records). */
UNIV_INLINE
ulint
page_get_n_recs(
/*============*/
/* out: number of user records */
page_t* page) /* in: index page */
{
return(page_header_get_field(page, PAGE_N_RECS));
}
/*****************************************************************
Gets the number of dir slots in directory. */
UNIV_INLINE
ulint
page_dir_get_n_slots(
/*=================*/
/* out: number of slots */
page_t* page) /* in: index page */
{
return(page_header_get_field(page, PAGE_N_DIR_SLOTS));
}
/*****************************************************************
Sets the number of dir slots in directory. */
UNIV_INLINE
void
page_dir_set_n_slots(
/*=================*/
/* out: number of slots */
page_t* page, /* in: index page */
ulint n_slots)/* in: number of slots */
{
page_header_set_field(page, PAGE_N_DIR_SLOTS, n_slots);
}
/*****************************************************************
Gets the number of records in the heap. */
UNIV_INLINE
ulint
page_dir_get_n_heap(
/*================*/
/* out: number of user records */
page_t* page) /* in: index page */
{
return(page_header_get_field(page, PAGE_N_HEAP) & 0x7fff);
}
/*****************************************************************
Sets the number of records in the heap. */
UNIV_INLINE
void
page_dir_set_n_heap(
/*================*/
page_t* page, /* in: index page */
ulint n_heap) /* in: number of records */
{
ut_ad(n_heap < 0x8000);
page_header_set_field(page, PAGE_N_HEAP, n_heap | (0x8000 &
page_header_get_field(page, PAGE_N_HEAP)));
}
/*****************************************************************
Gets pointer to nth directory slot. */
UNIV_INLINE
page_dir_slot_t*
page_dir_get_nth_slot(
/*==================*/
/* out: pointer to dir slot */
page_t* page, /* in: index page */
ulint n) /* in: position */
{
ut_ad(page_dir_get_n_slots(page) > n);
return(page + UNIV_PAGE_SIZE - PAGE_DIR
- (n + 1) * PAGE_DIR_SLOT_SIZE);
}
/******************************************************************
Used to check the consistency of a record on a page. */
UNIV_INLINE
ibool
page_rec_check(
/*===========*/
/* out: TRUE if succeed */
rec_t* rec) /* in: record */
{
page_t* page;
ut_a(rec);
page = buf_frame_align(rec);
ut_a(rec <= page_header_get_ptr(page, PAGE_HEAP_TOP));
ut_a(rec >= page + PAGE_DATA);
return(TRUE);
}
/*******************************************************************
Gets the record pointed to by a directory slot. */
UNIV_INLINE
rec_t*
page_dir_slot_get_rec(
/*==================*/
/* out: pointer to record */
page_dir_slot_t* slot) /* in: directory slot */
{
return(buf_frame_align(slot) + mach_read_from_2(slot));
}
/*******************************************************************
This is used to set the record offset in a directory slot. */
UNIV_INLINE
void
page_dir_slot_set_rec(
/*==================*/
page_dir_slot_t* slot, /* in: directory slot */
rec_t* rec) /* in: record on the page */
{
ut_ad(page_rec_check(rec));
mach_write_to_2(slot, ut_align_offset(rec, UNIV_PAGE_SIZE));
}
/*******************************************************************
Gets the number of records owned by a directory slot. */
UNIV_INLINE
ulint
page_dir_slot_get_n_owned(
/*======================*/
/* out: number of records */
page_dir_slot_t* slot) /* in: page directory slot */
{
rec_t* rec = page_dir_slot_get_rec(slot);
return(rec_get_n_owned(rec, page_rec_is_comp(rec)));
}
/*******************************************************************
This is used to set the owned records field of a directory slot. */
UNIV_INLINE
void
page_dir_slot_set_n_owned(
/*======================*/
page_dir_slot_t* slot, /* in: directory slot */
ulint n) /* in: number of records owned
by the slot */
{
rec_t* rec = page_dir_slot_get_rec(slot);
rec_set_n_owned(rec, page_rec_is_comp(rec), n);
}
/****************************************************************
Calculates the space reserved for directory slots of a given number of
records. The exact value is a fraction number n * PAGE_DIR_SLOT_SIZE /
PAGE_DIR_SLOT_MIN_N_OWNED, and it is rounded upwards to an integer. */
UNIV_INLINE
ulint
page_dir_calc_reserved_space(
/*=========================*/
ulint n_recs) /* in: number of records */
{
return((PAGE_DIR_SLOT_SIZE * n_recs + PAGE_DIR_SLOT_MIN_N_OWNED - 1)
/ PAGE_DIR_SLOT_MIN_N_OWNED);
}
/****************************************************************
Gets the pointer to the next record on the page. */
UNIV_INLINE
rec_t*
page_rec_get_next(
/*==============*/
/* out: pointer to next record */
rec_t* rec) /* in: pointer to record */
{
ulint offs;
page_t* page;
ut_ad(page_rec_check(rec));
page = ut_align_down(rec, UNIV_PAGE_SIZE);
offs = rec_get_next_offs(rec, page_is_comp(page));
if (UNIV_UNLIKELY(offs >= UNIV_PAGE_SIZE)) {
fprintf(stderr,
"InnoDB: Next record offset is nonsensical %lu in record at offset %lu\n"
"InnoDB: rec address %p, first buffer frame %p\n"
"InnoDB: buffer pool high end %p, buf fix count %lu\n",
(ulong)offs, (ulong)(rec - page),
rec, buf_pool->frame_zero,
buf_pool->high_end,
(ulong)buf_block_align(rec)->buf_fix_count);
buf_page_print(page);
ut_error;
}
if (UNIV_UNLIKELY(offs == 0)) {
return(NULL);
}
return(page + offs);
}
/****************************************************************
Sets the pointer to the next record on the page. */
UNIV_INLINE
void
page_rec_set_next(
/*==============*/
rec_t* rec, /* in: pointer to record, must not be page supremum */
rec_t* next) /* in: pointer to next record, must not be page
infimum */
{
page_t* page;
ulint offs;
ut_ad(page_rec_check(rec));
ut_ad(!page_rec_is_supremum(rec));
page = ut_align_down(rec, UNIV_PAGE_SIZE);
if (next) {
ut_ad(!page_rec_is_infimum(next));
ut_ad(page == ut_align_down(next, UNIV_PAGE_SIZE));
offs = (ulint) (next - page);
} else {
offs = 0;
}
rec_set_next_offs(rec, page_is_comp(page), offs);
}
/****************************************************************
Gets the pointer to the previous record. */
UNIV_INLINE
rec_t*
page_rec_get_prev(
/*==============*/
/* out: pointer to previous record */
rec_t* rec) /* in: pointer to record, must not be page
infimum */
{
page_dir_slot_t* slot;
ulint slot_no;
rec_t* rec2;
rec_t* prev_rec = NULL;
page_t* page;
ut_ad(page_rec_check(rec));
page = ut_align_down(rec, UNIV_PAGE_SIZE);
ut_ad(!page_rec_is_infimum(rec));
slot_no = page_dir_find_owner_slot(rec);
ut_a(slot_no != 0);
slot = page_dir_get_nth_slot(page, slot_no - 1);
rec2 = page_dir_slot_get_rec(slot);
while (rec != rec2) {
prev_rec = rec2;
rec2 = page_rec_get_next(rec2);
}
ut_a(prev_rec);
return(prev_rec);
}
/*******************************************************************
Looks for the record which owns the given record. */
UNIV_INLINE
rec_t*
page_rec_find_owner_rec(
/*====================*/
/* out: the owner record */
rec_t* rec) /* in: the physical record */
{
ut_ad(page_rec_check(rec));
if (page_rec_is_comp(rec)) {
while (rec_get_n_owned(rec, TRUE) == 0) {
rec = page_rec_get_next(rec);
}
} else {
while (rec_get_n_owned(rec, FALSE) == 0) {
rec = page_rec_get_next(rec);
}
}
return(rec);
}
/****************************************************************
Returns the sum of the sizes of the records in the record list, excluding
the infimum and supremum records. */
UNIV_INLINE
ulint
page_get_data_size(
/*===============*/
/* out: data in bytes */
page_t* page) /* in: index page */
{
ulint ret;
ret = (ulint)(page_header_get_field(page, PAGE_HEAP_TOP)
- (page_is_comp(page)
? PAGE_NEW_SUPREMUM_END
: PAGE_OLD_SUPREMUM_END)
- page_header_get_field(page, PAGE_GARBAGE));
ut_ad(ret < UNIV_PAGE_SIZE);
return(ret);
}
/*****************************************************************
Calculates free space if a page is emptied. */
UNIV_INLINE
ulint
page_get_free_space_of_empty(
/*=========================*/
/* out: free space */
ulint comp) /* in: nonzero=compact page layout */
{
if (UNIV_LIKELY(comp)) {
return((ulint)(UNIV_PAGE_SIZE
- PAGE_NEW_SUPREMUM_END
- PAGE_DIR
- 2 * PAGE_DIR_SLOT_SIZE));
}
return((ulint)(UNIV_PAGE_SIZE
- PAGE_OLD_SUPREMUM_END
- PAGE_DIR
- 2 * PAGE_DIR_SLOT_SIZE));
}
/****************************************************************
Each user record on a page, and also the deleted user records in the heap
takes its size plus the fraction of the dir cell size /
PAGE_DIR_SLOT_MIN_N_OWNED bytes for it. If the sum of these exceeds the
value of page_get_free_space_of_empty, the insert is impossible, otherwise
it is allowed. This function returns the maximum combined size of records
which can be inserted on top of the record heap. */
UNIV_INLINE
ulint
page_get_max_insert_size(
/*=====================*/
/* out: maximum combined size for inserted records */
page_t* page, /* in: index page */
ulint n_recs) /* in: number of records */
{
ulint occupied;
ulint free_space;
if (page_is_comp(page)) {
occupied = page_header_get_field(page, PAGE_HEAP_TOP)
- PAGE_NEW_SUPREMUM_END + page_dir_calc_reserved_space(
n_recs + page_dir_get_n_heap(page) - 2);
free_space = page_get_free_space_of_empty(TRUE);
} else {
occupied = page_header_get_field(page, PAGE_HEAP_TOP)
- PAGE_OLD_SUPREMUM_END + page_dir_calc_reserved_space(
n_recs + page_dir_get_n_heap(page) - 2);
free_space = page_get_free_space_of_empty(FALSE);
}
/* Above the 'n_recs +' part reserves directory space for the new
inserted records; the '- 2' excludes page infimum and supremum
records */
if (occupied > free_space) {
return(0);
}
return(free_space - occupied);
}
/****************************************************************
Returns the maximum combined size of records which can be inserted on top
of the record heap if a page is first reorganized. */
UNIV_INLINE
ulint
page_get_max_insert_size_after_reorganize(
/*======================================*/
/* out: maximum combined size for inserted records */
page_t* page, /* in: index page */
ulint n_recs) /* in: number of records */
{
ulint occupied;
ulint free_space;
occupied = page_get_data_size(page)
+ page_dir_calc_reserved_space(n_recs + page_get_n_recs(page));
free_space = page_get_free_space_of_empty(page_is_comp(page));
if (occupied > free_space) {
return(0);
}
return(free_space - occupied);
}
/****************************************************************
Puts a record to free list. */
UNIV_INLINE
void
page_mem_free(
/*==========*/
page_t* page, /* in: index page */
rec_t* rec, /* in: pointer to the (origin of) record */
const ulint* offsets)/* in: array returned by rec_get_offsets() */
{
rec_t* free;
ulint garbage;
ut_ad(rec_offs_validate(rec, NULL, offsets));
ut_ad(!rec_offs_comp(offsets) == !page_rec_is_comp(rec));
free = page_header_get_ptr(page, PAGE_FREE);
page_rec_set_next(rec, free);
page_header_set_ptr(page, PAGE_FREE, rec);
#if 0 /* It's better not to destroy the user's data. */
/* Clear the data bytes of the deleted record in order to improve
the compression ratio of the page and to make it easier to read
page dumps in corruption reports. The extra bytes of the record
cannot be cleared, because page_mem_alloc() needs them in order
to determine the size of the deleted record. */
memset(rec, 0, rec_offs_data_size(offsets));
#endif
garbage = page_header_get_field(page, PAGE_GARBAGE);
page_header_set_field(page, PAGE_GARBAGE,
garbage + rec_offs_size(offsets));
}
#ifdef UNIV_MATERIALIZE
#undef UNIV_INLINE
#define UNIV_INLINE UNIV_INLINE_ORIGINAL
#endif